Author SHA1 Message Date
DCCONSTRUCTIONS 76dc9f19c9 chore: consolidate superseded experiment history into main
History-only merge: retain the original Node worktree snapshot 1c7dd29 without reverting its canonicalized implementation (63ea2be and subsequent main fixes). RAV004 commits 45019f8/cd16ea2/88e47fc and Gaussian commits 2ccf172/2e44e27 are patch-equivalent to commits already in main (verified with git cherry). The current source tree is intentionally unchanged; old snapshots remain reachable for audit.
2026-09-21 08:48:14 +03:00
DCCONSTRUCTIONS e515ab1b8c feat(planning): consolidate recorded-route localization and spatial scene
Preserve the completed teach-and-repeat laboratory stage: reference preparation, cascaded acquisition, local tracking and recovery, recording lifecycle, replay qualification, and persistent Rerun scene controls. Document the open grid-picking regression and Rerun upgrade contract. No autonomous driving or loop-closure optimization is claimed.
2026-09-21 08:47:19 +03:00
DCCONSTRUCTIONS 1c7dd29d8a chore(node): preserve pre-canonicalization experiment snapshot
Historical working copy retained for audit before consolidation into main. The canonicalized plugin architecture and later fixes already live in main; this snapshot is not a release or a request to restore obsolete source layout.
2026-09-21 08:45:34 +03:00
DCCONSTRUCTIONS be58d589e2 feat(fleet): add board observation center with live sources and maps
Add adaptive per-vehicle layouts, full-panel dragging, source controls and automatic preview recovery for RealSense, Insta360 X4 and XGRIDS K1 observation views. Integrate cached Cesium map layers through the private NAS gateway link, retain bounded sensor command receipts, and document validation and operational handoff.
2026-09-10 22:12:05 +03:00
DCCONSTRUCTIONS 5f75afb720 docs(node): record current handoff status and X4 acceptance boundaries 2026-09-10 16:39:29 +03:00
DCCONSTRUCTIONS 99f29218d7 feat(x4): add per-camera manual wake and hide power action when connected 2026-09-10 16:27:48 +03:00
DCCONSTRUCTIONS db14ee5435 Record repeatable X4 reconnect and prepare recovery cancellation test 2026-09-10 14:36:07 +03:00
DCCONSTRUCTIONS 81dd44906d Record first X4 USB reconnect and automatic preview acceptance 2026-09-10 14:28:34 +03:00
DCCONSTRUCTIONS d45b329de8 Add packaged per-camera X4 wake and preview recovery 2026-09-10 14:20:52 +03:00
DCCONSTRUCTIONS f164606828 Add bounded X4 Bluetooth wake and record Android recovery proof 2026-09-10 12:48:09 +03:00
DCCONSTRUCTIONS 556e376a62 Record X4 wake by short Power with USB retained and BLE discovery 2026-09-10 12:08:01 +03:00
DCCONSTRUCTIONS 1a2de8df65 Package bounded X4 BLE diagnostics and USB mode reader 2026-09-10 11:59:00 +03:00
DCCONSTRUCTIONS b536f0049a Document X4 Android reconnect protocol research and recovery options 2026-09-10 11:25:07 +03:00
DCCONSTRUCTIONS 3b85299fd9 Document X4 USB power limits from root hub diagnostics 2026-09-10 11:04:04 +03:00
DCCONSTRUCTIONS 505844adc3 Record failed X4 USB reconnect with preview stopped 2026-09-10 10:44:27 +03:00
DCCONSTRUCTIONS 89b0eeca3f Record automatic X4 USB mode and two-camera viewing confirmation 2026-09-10 10:27:40 +03:00
DCCONSTRUCTIONS 1488a46794 Document X4 USB mode recovery and verified video after restart 2026-09-10 10:09:29 +03:00
DCCONSTRUCTIONS e4339f4e88 Record B11 hardware acceptance and X4 USB reconnect failure 2026-09-10 09:47:34 +03:00
DCCONSTRUCTIONS 7e257275ab Record X4 checkpoint and Ops implementation report
Link the committed Core/Design Guideline pair to MISSIONCOR-77 and preserve
MISSIONCOR-76 baseline through an appended report. Record successful MCP
readback, qualified source comparison and remaining hardware acceptance.
2026-09-10 09:25:12 +03:00
DCCONSTRUCTIONS a3c15e11e9 Add packaged Insta360 X4 integration and recover paired Node channels
Discover independent camera instances and prepare their versioned runtime
from Node or remote Core. Add isolated SDK workers, camera controls, raw
dual-fisheye WebRTC preview, and shared action/region loading states.

Recover existing Node bindings over known Tailscale addresses after a Core
LAN address change. Preserve identities and trust, pin both peers, migrate
endpoints with revision checks, and require real heartbeats for online status.
Fix the Python client certificate profile for Go X509 verification.

Pin Design Guideline 8c53f73 and retain installer/build/acceptance history.
Node 0.8.19 is installed; X4 0.1.3-3 is bundled but hardware activation is pending.

Validation: qualified DG/Node builds and Go race tests; 31 fleet tests;
Python-to-Go certificate interoperability and live tailnet recovery with five
fresh heartbeats; prior 38 X4 tests and bounded remote WebRTC acceptance.
Clean-OS, replug/power autonomy, local X4 video and long-run stability remain open.
2026-09-10 09:21:24 +03:00
DCCONSTRUCTIONS 54a85fdf50 Record installed R19 recovery and onboard K1 acceptance 2026-09-08 11:01:59 +03:00
DCCONSTRUCTIONS 14f8375713 Repair monitor cluster upgrade without blocking K1 package configuration 2026-09-08 10:44:27 +03:00
DCCONSTRUCTIONS 6492ebcdee Record R18 evidence and retain signed telemetry values in plots 2026-09-08 01:53:30 +03:00
DCCONSTRUCTIONS e57511f975 Keep K1 runtime payload manifest in canonical order 2026-09-08 01:41:27 +03:00
DCCONSTRUCTIONS f0802d2713 Fix onboard WebKit preview and archive board telemetry locally 2026-09-08 01:37:52 +03:00
DCCONSTRUCTIONS d8afb61229 Record successful Node R17 installation on owner Ubuntu board 2026-09-07 23:28:46 +03:00
DCCONSTRUCTIONS 421a8c515a Record R17 package validation and pending onboard transfer 2026-09-07 23:03:11 +03:00
DCCONSTRUCTIONS a23c5b2005 Reuse canonical home and settings on Node and admit local K1 viewer 2026-09-07 22:55:13 +03:00
DCCONSTRUCTIONS 1832943558 Record verified Ops publication of onboard K1 laboratory checkpoint 2026-09-07 21:50:38 +03:00
DCCONSTRUCTIONS cc90709919 Record owner-confirmed onboard K1 Bridge laboratory checkpoint 2026-09-07 21:43:19 +03:00
DCCONSTRUCTIONS ee5d760c30 Verify R16 onboard installation and service health 2026-09-07 21:27:40 +03:00
DCCONSTRUCTIONS 0e9faa6824 Record inspected R16 artifacts and pending onboard acceptance 2026-09-07 21:22:41 +03:00
DCCONSTRUCTIONS c6693d6f44 Retain K1 connection between scans and admit the next named acquisition 2026-09-07 21:13:17 +03:00
DCCONSTRUCTIONS ed9a77ba73 Record verified R15 installation after owner restart 2026-09-07 20:16:42 +03:00
DCCONSTRUCTIONS 7dd2c1c836 Record verified R15 packages and pending onboard acceptance 2026-09-07 20:13:37 +03:00
DCCONSTRUCTIONS 762d77ef95 Unify K1 discovery ownership and verification across enrollment paths 2026-09-07 20:04:46 +03:00
DCCONSTRUCTIONS 9c4d70b0e9 Record R14 public artifacts and staged installation scope 2026-09-07 19:04:52 +03:00
DCCONSTRUCTIONS eed53dbc0b Fix onboard K1 enrollment continuity and share named acquisition preparation 2026-09-07 18:53:38 +03:00
DCCONSTRUCTIONS 4f333fc11c Record verified R13 installation on onboard computer 2026-09-07 17:59:36 +03:00
DCCONSTRUCTIONS 35a517f921 Record R13 artifact provenance and pending installation acceptance 2026-09-07 17:54:13 +03:00
DCCONSTRUCTIONS 9bba44f7c4 Preserve onboard preview recordings across backpressure and share the complete spatial scene 2026-09-07 17:47:10 +03:00
DCCONSTRUCTIONS 9b6534287a Record R12 update artifacts and pending clean-cache acceptance 2026-09-07 16:53:32 +03:00
DCCONSTRUCTIONS 9e03404f23 Admit onboard camera preview only after its acquisition producer is ready 2026-09-07 16:44:38 +03:00
DCCONSTRUCTIONS fa8ac760a1 Share the K1 live scene template and preserve idle media channels 2026-09-07 16:38:39 +03:00
DCCONSTRUCTIONS 309bdf759e Confirm installed K1 R11 runtime and authority availability 2026-09-07 15:57:53 +03:00
DCCONSTRUCTIONS ff00851216 Record staged K1 R11 artifact and acceptance gate 2026-09-07 15:54:38 +03:00
DCCONSTRUCTIONS ad24518b71 Refresh selected BlueZ path before K1 GATT operations 2026-09-07 15:50:06 +03:00
DCCONSTRUCTIONS 7ce09eabcd Record R10 release hashes and remaining acceptance gates 2026-09-07 15:32:56 +03:00
DCCONSTRUCTIONS 92b60de945 Preserve RRD preview frames and clarify onboard K1 status 2026-09-07 15:27:13 +03:00
DCCONSTRUCTIONS 67398fef10 Record staged R9 packages and pending installed acceptance 2026-09-07 14:55:28 +03:00
DCCONSTRUCTIONS a93f1f1b8b Accept systemd credential delivery and clarify manual K1 control 2026-09-07 14:44:46 +03:00
DCCONSTRUCTIONS 102e93796b Record staged K1 causal diagnostics release R8 2026-09-07 14:16:18 +03:00
DCCONSTRUCTIONS 4f715e41d2 Preserve native K1 error causes and distinguish Wi-Fi actions 2026-09-07 14:11:34 +03:00
DCCONSTRUCTIONS 8f17a7e282 Confirm installed Linux route contract fix R7 2026-09-07 13:55:50 +03:00
DCCONSTRUCTIONS 7187fd86bd Record prepared Linux route contract fix release R7 2026-09-07 13:53:03 +03:00
DCCONSTRUCTIONS e6521e855a Fix Linux route probe contract and expose K1 verification after Wi-Fi apply 2026-09-07 13:46:01 +03:00
DCCONSTRUCTIONS 06d216ac4a Record installed wireless steps and diagnostic release R6 2026-09-07 13:35:25 +03:00
DCCONSTRUCTIONS d7986cb62f Group onboard wireless steps and trace journalled Bluetooth failures 2026-09-07 13:27:21 +03:00
DCCONSTRUCTIONS a0732386f1 docs(node): record R5 package and pending Ubuntu authentication 2026-09-07 13:08:01 +03:00
DCCONSTRUCTIONS 5c4546a2a6 fix(node): clarify wireless enrollment and restore active K1 after upgrade 2026-09-07 13:02:28 +03:00
DCCONSTRUCTIONS ef1c1f50de docs(k1): record successful onboard Bluetooth discovery 2026-09-07 12:46:14 +03:00
DCCONSTRUCTIONS 2f80507bc0 docs(k1): record R4 onboard installation and pending hardware acceptance 2026-09-07 12:44:22 +03:00
DCCONSTRUCTIONS d2dbfc9c85 fix(k1): translate onboard operation identities at plugin boundary 2026-09-07 12:34:48 +03:00
DCCONSTRUCTIONS 3dffe39c89 Record installation of the onboard discovery fix 2026-09-07 12:20:27 +03:00
DCCONSTRUCTIONS 77acb377e2 Fix onboard BLE admission and stage wireless device enrollment 2026-09-07 12:11:48 +03:00
DCCONSTRUCTIONS 2fdf1d3cc4 Record private K1 installer release and Mini installation acceptance 2026-09-07 11:56:32 +03:00
DCCONSTRUCTIONS d8cc5367c4 Package onboard K1 separately with a private portable installer 2026-09-07 11:43:24 +03:00
DCCONSTRUCTIONS 111fe3dcfb docs(k1): record Node 0.7.1 installation and acceptance boundaries 2026-09-07 10:57:56 +03:00
DCCONSTRUCTIONS 63ea2bed67 feat(k1): stabilize LAB bridge and isolate onboard device integration 2026-09-07 10:31:33 +03:00
DCCONSTRUCTIONS 020a878915 docs(node): reconcile release status and build provenance for 0.6.11 2026-09-06 01:39:02 +03:00
DCCONSTRUCTIONS 404285419f fix(sensors): align device lamp with identity and refresh to end 2026-09-06 01:18:47 +03:00
DCCONSTRUCTIONS ba0c948ca1 fix(node): show camera connectivity and remove company header marks 2026-09-06 01:05:19 +03:00
DCCONSTRUCTIONS 429b4681fe fix(node): use compact guideline copy and plain setup checkmarks 2026-09-06 00:44:23 +03:00
DCCONSTRUCTIONS 22d69107ba feat(node): push USB changes and preserve sensor setup across sessions 2026-09-06 00:24:48 +03:00
DCCONSTRUCTIONS a8647c4d87 fix(node): verify D455 access and share sensor progress and recording UI 2026-09-05 23:25:11 +03:00
DCCONSTRUCTIONS b1aaa40508 Add D455 sensor host and shared Node/Core preparation surface 2026-09-05 22:27:07 +03:00
DCCONSTRUCTIONS 3616acc648 fix(node): clear consumed invitations after confirmed pairing 2026-09-05 21:37:56 +03:00
DCCONSTRUCTIONS e82d012907 feat(node): pair onboard computers with the Core fleet through UI 2026-09-05 21:16:13 +03:00
DCCONSTRUCTIONS fc545f8440 docs(node): proceed to pairing with clean-install acceptance deferred 2026-09-05 20:31:43 +03:00
DCCONSTRUCTIONS a98ef339de fix(node): show completed setup checks with a timestamp 2026-09-05 20:11:17 +03:00
DCCONSTRUCTIONS 9062126913 fix(node): make environment progress readable from the desktop 2026-09-05 19:54:08 +03:00
DCCONSTRUCTIONS 59e14c5bc0 feat(node): configure system environment through the desktop workflow 2026-09-05 19:46:52 +03:00
DCCONSTRUCTIONS 15bb793e5e fix(node): restore Linux network inventory and expose read failures 2026-09-05 18:47:12 +03:00
DCCONSTRUCTIONS 79911eb316 feat(node): consolidate board system views and plan fleet pairing 2026-09-05 18:35:57 +03:00
DCCONSTRUCTIONS d696842f5d feat(node): package Ubuntu desktop setup and trusted access 2026-09-05 17:27:59 +03:00
DCCONSTRUCTIONS 57f2537af3 Document AI Inference architecture and freeze current baseline 2026-09-05 10:05:01 +03:00
DCCONSTRUCTIONS e56eb42507 docs: inventory Rerun customizations and upstream dependencies 2026-09-05 09:21:28 +03:00
DCCONSTRUCTIONS b2a1b23131 fix(observatory): preserve camera across follow transitions 2026-09-05 08:46:35 +03:00
DCCONSTRUCTIONS cada687173 feat(observatory): ship modular AI inference labs 2026-09-04 17:59:05 +03:00
DCCONSTRUCTIONS eff60e490a docs(observatory): record saved replay evidence and open visual gates 2026-09-03 13:24:32 +03:00
DCCONSTRUCTIONS 9db29bcdc6 feat(observatory): share native result replay and expose saved TGS layers 2026-09-03 13:23:56 +03:00
DCCONSTRUCTIONS 27979854a7 feat(observatory): cache sealed camera and TGS replay on Core 2026-09-03 13:15:07 +03:00
DCCONSTRUCTIONS 3ea8d987a7 docs(observatory): record real M49 publication and restart acceptance 2026-09-03 11:50:32 +03:00
DCCONSTRUCTIONS bd947b49f4 fix(observatory): preserve source identity on unchanged reindex 2026-09-03 11:43:03 +03:00
DCCONSTRUCTIONS 54c8d82884 ops(observatory): install exact recorded-progress agent layers 2026-09-03 11:22:03 +03:00
DCCONSTRUCTIONS bee8552003 feat(observatory): expose attempt-bound recorded progress 2026-09-03 11:17:56 +03:00
DCCONSTRUCTIONS 4e0565eb4b docs(observatory): refresh four-stage recorded-first roadmap 2026-09-03 10:35:48 +03:00
DCCONSTRUCTIONS 44afadb021 docs(observatory): record selector rules and local UI acceptance 2026-09-03 10:16:12 +03:00
DCCONSTRUCTIONS e436fb56d4 fix(observatory): offer only uncalculated profiles without completion badges 2026-09-03 10:16:01 +03:00
DCCONSTRUCTIONS c2710b55a7 docs(observatory): record cache activation and Docker memory recovery 2026-09-03 09:44:02 +03:00
DCCONSTRUCTIONS d777f3198b docs(observatory): record cache proof and pending activation 2026-09-03 09:15:12 +03:00
DCCONSTRUCTIONS 1e4ddc2cff feat(observatory): verify exact published result reuse 2026-09-03 09:14:54 +03:00
DCCONSTRUCTIONS 80fc0058cb docs(observatory): record claim-v3 repair and preserved queue history 2026-09-03 00:00:08 +03:00
DCCONSTRUCTIONS 43f1cdc862 fix(worker): preserve transport patch in Docker snapshot layers 2026-09-02 23:50:22 +03:00
DCCONSTRUCTIONS 0041e9fadb fix(worker): bind claim migration to the imported transport module 2026-09-02 23:45:06 +03:00
DCCONSTRUCTIONS cabd3081c7 fix(observatory): version non-binding idle claims and preserve grant history 2026-09-02 23:40:11 +03:00
DCCONSTRUCTIONS 049ed3eed4 docs(observatory): prioritize recorded laboratories and cached review before onboard profiles 2026-09-02 23:16:01 +03:00
DCCONSTRUCTIONS 35c1249631 fix(observatory): reject duplicate active portable computations atomically 2026-09-02 23:15:39 +03:00
DCCONSTRUCTIONS 941183d624 docs(perception): record TLS and direct TCP latency attribution 2026-09-02 22:40:08 +03:00
DCCONSTRUCTIONS 6af4c208ce test(perception): localize transport tails with bounded TLS record witnesses 2026-09-02 22:34:12 +03:00
DCCONSTRUCTIONS 75a5320756 docs(perception): record clock route A/B/A and continuous LAN canary 2026-09-02 22:14:58 +03:00
DCCONSTRUCTIONS 59a74a3677 test(perception): add bounded clock-only route and scheduler diagnostics 2026-09-02 21:57:02 +03:00
DCCONSTRUCTIONS 35d28418f3 docs(perception): record joint startup proof and remaining clock wait 2026-09-02 21:16:03 +03:00
DCCONSTRUCTIONS 48835a0499 fix(perception): require joint clock readiness before source activation 2026-09-02 21:03:33 +03:00
DCCONSTRUCTIONS 93ae1edbb4 docs(perception): record cross-host canary failure and joint startup gate 2026-09-02 20:44:08 +03:00
DCCONSTRUCTIONS 093df8b38f style(perception): format streaming lifecycle guards 2026-09-02 20:43:31 +03:00
DCCONSTRUCTIONS 35b6cd9e9e feat(perception): gate cross-host graph with acknowledged source clocks 2026-09-02 20:37:21 +03:00
DCCONSTRUCTIONS d80df61a7e docs(perception): record cross-host clock and control proof 2026-09-02 19:46:27 +03:00
DCCONSTRUCTIONS d7b8989e43 feat(perception): add scoped stream control and bounded clock observations 2026-09-02 19:41:43 +03:00
DCCONSTRUCTIONS 0cc6b96306 docs(perception): record full-graph network and recovery evidence 2026-09-02 19:05:13 +03:00
DCCONSTRUCTIONS 6469505c41 feat(perception): connect full graph to external streaming source and scene receiver 2026-09-02 19:04:41 +03:00
DCCONSTRUCTIONS 191612282b test(perception): record cross-host gRPC recovery and backpressure proof 2026-09-02 18:14:51 +03:00
DCCONSTRUCTIONS 0310592ee3 feat(perception): add bounded authenticated gRPC stream transport 2026-09-02 18:11:42 +03:00
DCCONSTRUCTIONS df0158e1ba docs(perception): record Worker observability repair and remaining stream gates 2026-09-02 17:40:45 +03:00
DCCONSTRUCTIONS 2ef8c08bf2 feat(perception): export bounded runtime observations outside heartbeat lane 2026-09-02 17:35:46 +03:00
DCCONSTRUCTIONS c570f7d938 fix(telemetry): restore worker agent delivery and truthful system status 2026-09-02 17:35:20 +03:00
DCCONSTRUCTIONS 03e8e71bea docs(perception): record host telemetry recovery and scoped inventory evidence 2026-09-02 16:56:22 +03:00
DCCONSTRUCTIONS 61cbdb30a0 feat(perception): connect scoped host telemetry to recoverable profile lifecycle 2026-09-02 16:50:57 +03:00
DCCONSTRUCTIONS e91721fe6a docs(perception): record full graph recovery and separate availability latency 2026-09-02 16:01:36 +03:00
DCCONSTRUCTIONS 70927ea585 feat(perception): resume full graph on fresh input without restarting models 2026-09-02 15:54:13 +03:00
DCCONSTRUCTIONS 03a7e730ae docs(perception): record recoverable input policy and decoder continuity proof 2026-09-02 15:33:53 +03:00
DCCONSTRUCTIONS c31c46caa5 feat(perception): preserve resident runtime across recoverable input gaps 2026-09-02 15:27:06 +03:00
DCCONSTRUCTIONS 06a66a3da8 docs(perception): record controller readiness boundary and fault evidence 2026-09-02 14:54:43 +03:00
DCCONSTRUCTIONS 92625bf48b feat(perception): gate streaming lifecycle on controller readiness 2026-09-02 14:49:36 +03:00
DCCONSTRUCTIONS b8ba0cae1e docs(perception): record exact parity and fixed-envelope IPC comparison 2026-09-02 14:28:58 +03:00
DCCONSTRUCTIONS f39f1ff0b6 perf(perception): borrow contiguous image buffers for local IPC 2026-09-02 14:20:39 +03:00
DCCONSTRUCTIONS 380b6eaba7 fix(perception): preserve quaternion alignment across binary ingress 2026-09-02 14:20:38 +03:00
DCCONSTRUCTIONS f6d73d8bfb docs(perception): record binary full-graph evidence and remaining gates 2026-09-02 14:02:28 +03:00
DCCONSTRUCTIONS 221e429c0a feat(perception): connect binary ingress to the supervised full graph 2026-09-02 13:53:25 +03:00
DCCONSTRUCTIONS a85aed2e03 docs(perception): record decoder parity and remaining full-graph bridge 2026-09-02 13:14:11 +03:00
DCCONSTRUCTIONS f102712f0b test(perception): verify incremental decoder parity and binary ingress on Worker 2026-09-02 13:07:33 +03:00
DCCONSTRUCTIONS 350366bae0 refactor(perception): decode bounded fMP4 without source file dependencies 2026-09-02 13:07:33 +03:00
DCCONSTRUCTIONS c23e86fd39 docs(perception): record bounded binary ingress evidence and remaining bridge 2026-09-02 12:37:25 +03:00
DCCONSTRUCTIONS 79ce55d197 test(perception): verify reuse of existing raw live ingress 2026-09-02 12:30:16 +03:00
DCCONSTRUCTIONS a937400942 test(perception): seal source end marker before IPC shutdown 2026-09-02 12:28:23 +03:00
DCCONSTRUCTIONS da60feff90 feat(perception): add bounded binary stream ingress 2026-09-02 12:21:25 +03:00
DCCONSTRUCTIONS 85349f42f9 docs(perception): record lifecycle ownership and expiry evidence 2026-09-02 12:05:00 +03:00
DCCONSTRUCTIONS ac69e3b444 test(perception): exercise lifecycle and lease loss in full profile 2026-09-02 11:55:57 +03:00
DCCONSTRUCTIONS 6acf468b25 feat(perception): fence streaming lifecycle with worker-local ownership 2026-09-02 11:55:56 +03:00
DCCONSTRUCTIONS d264cbce04 docs(perception): record stage-two scheduler and cell freshness proof 2026-09-02 11:03:26 +03:00
DCCONSTRUCTIONS 1f8101e4a5 feat(perception): expire costmap permissions per cell 2026-09-02 10:57:42 +03:00
DCCONSTRUCTIONS bcacb02a22 refactor(perception): share bounded streaming scheduler 2026-09-02 10:57:41 +03:00
DCCONSTRUCTIONS adcca7aa81 docs(perception): close stage-one baseline and record freshness proof 2026-09-02 10:21:44 +03:00
DCCONSTRUCTIONS 097e450a87 feat(perception): enforce six-layer freshness through receipt 2026-09-02 10:14:28 +03:00
DCCONSTRUCTIONS 4e633a662c docs(perception): record gpu clock latency proof 2026-09-02 09:42:40 +03:00
DCCONSTRUCTIONS c6c42c29e8 fix(perception): reject material ties and trace gpu pacing 2026-09-02 09:34:20 +03:00
DCCONSTRUCTIONS ce09d30c1a docs(perception): record latency and triton parity limits 2026-09-02 02:52:38 +03:00
DCCONSTRUCTIONS 34f13ba59e feat(perception): add bounded triton runtime diagnostics 2026-09-02 02:52:11 +03:00
DCCONSTRUCTIONS d9ea7c1129 perf(perception): reuse local surface cell observations 2026-09-02 02:03:09 +03:00
DCCONSTRUCTIONS a3c67e249c docs(perception): record rendezvous worker proof 2026-09-02 01:50:35 +03:00
DCCONSTRUCTIONS 294585936f fix(perception): rendezvous completed gpu handoff 2026-09-02 01:48:25 +03:00
DCCONSTRUCTIONS 380a13688c docs(perception): record preroll worker pilot 2026-09-02 01:40:06 +03:00
DCCONSTRUCTIONS fd8313899b fix(perception): separate preroll history from current sensor binding
Preserve rolling points and original clocks; expose per-modality ages, held pose and rejection reasons. Saved-lineage audit changes only the first admission (75 to 76 of 128). No new model/performance claim. 384 focused Python and 62 frontend tests passed.
2026-09-02 01:09:03 +03:00
DCCONSTRUCTIONS 05c99efb68 test(observatory): isolate legacy contracts from installed package pins
Freeze configuration-only legacy fixtures from 7025e17, update current installed-image assertions, and explicitly reject the prior agent image. Production admission and digest validation are unchanged.
2026-09-02 01:02:38 +03:00
DCCONSTRUCTIONS ffd6be5606 docs(observatory): record realtime plan and measured latency evidence 2026-09-02 00:59:48 +03:00
DCCONSTRUCTIONS bfe6ef4c77 feat(perception): add bounded full-graph streaming and latency pilots 2026-09-02 00:59:48 +03:00
DCCONSTRUCTIONS 4e04d06191 feat(perception): define stream-first profile and qualification contracts 2026-09-02 00:59:47 +03:00
DCCONSTRUCTIONS 5a78c997ac feat(observatory-ui): review portable results and retry publication
Checkpoint the existing generic result-viewing and publication lifecycle UI. Focused architecture and Observatory tests: 62 passed; no new visual changes or rebuild in this checkpoint.
2026-09-02 00:59:21 +03:00
DCCONSTRUCTIONS 62d5520c7a feat(worker): package independent installed LAB container steps
Preserve local installer, offline validation and pinned component adapters; 62 focused packaging tests pass. No deployment performed by this commit.
2026-09-02 00:58:51 +03:00
DCCONSTRUCTIONS a945d665dd feat(observatory): add installed package dispatch and durable publication
Checkpoint existing backend lifecycle changes. Focused verification found nine legacy fixture failures in portable LAB V1 executor/runtime tests; repair follows separately without rewriting this snapshot. ADR date retains its intentional Markdown hard break.
2026-09-02 00:58:37 +03:00
DCCONSTRUCTIONS d655d6998d feat(observatory): attest recording equipment and capture profiles 2026-09-02 00:57:27 +03:00
DCCONSTRUCTIONS 7025e173a3 fix(worker): accept omitted empty image command 2026-08-31 21:47:47 +03:00
DCCONSTRUCTIONS 10fe727561 fix(worker): preserve exec-form entrypoint 2026-08-31 21:45:51 +03:00
DCCONSTRUCTIONS 00ee5f163a fix(worker): keep commit labels shell-safe 2026-08-31 21:42:31 +03:00
DCCONSTRUCTIONS cbcc09afd6 fix(worker): mount generated shell scripts 2026-08-31 21:39:07 +03:00
DCCONSTRUCTIONS e958729e9d fix(worker): seal coordinator Python dependencies 2026-08-31 21:31:45 +03:00
DCCONSTRUCTIONS 0fcd037e4f fix(worker): compose staged source paths safely 2026-08-31 21:01:30 +03:00
DCCONSTRUCTIONS 11a146011f feat(worker): install combined observatory profiles 2026-08-31 20:56:29 +03:00
DCCONSTRUCTIONS 44ebbe7ca2 test(lab): import adapters in legacy runtimes 2026-08-31 20:04:31 +03:00
DCCONSTRUCTIONS a3299dcfc3 fix(lab): avoid runtime typing on Python 3.9 2026-08-31 20:01:49 +03:00
DCCONSTRUCTIONS 2989fba99c fix(lab): support legacy Python 3.9 adapters 2026-08-31 19:58:20 +03:00
DCCONSTRUCTIONS 142481f0d8 fix(lab): probe optional adapter image safely 2026-08-31 19:52:34 +03:00
DCCONSTRUCTIONS b2ae29b8d8 feat(lab): install thin adapter layers offline 2026-08-31 19:51:51 +03:00
DCCONSTRUCTIONS 8eced6c34d feat(worker): compose installed LAB V1 profile 2026-08-31 19:47:24 +03:00
DCCONSTRUCTIONS 732cc139fd refactor(worker): externalize runtime registries 2026-08-31 19:47:07 +03:00
DCCONSTRUCTIONS 104e54f4dd refactor(lab): separate release contract identity 2026-08-31 19:46:58 +03:00
DCCONSTRUCTIONS 7b021782d3 feat(lab): install sealed component adapters 2026-08-31 19:46:47 +03:00
DCCONSTRUCTIONS 759830b054 feat(lab): seal reusable EoMT runtime trees 2026-08-31 19:24:42 +03:00
DCCONSTRUCTIONS 19c0bd70d0 feat(lab): bind sealed component adapter images 2026-08-31 19:19:47 +03:00
DCCONSTRUCTIONS 35d99e40d5 perf(m49): verify source payloads during assembly 2026-08-31 19:06:59 +03:00
DCCONSTRUCTIONS bfc1f1bbed feat(worker): define unified agent image artifact 2026-08-31 19:00:06 +03:00
DCCONSTRUCTIONS f41428f907 feat(lab): add sealed local component runners 2026-08-31 18:59:47 +03:00
DCCONSTRUCTIONS 3744d79ad3 feat(lab): seal reusable ffmpeg runtime asset 2026-08-31 18:59:37 +03:00
DCCONSTRUCTIONS b57c3e94da perf(m49): defer fresh stage revalidation 2026-08-31 18:42:31 +03:00
DCCONSTRUCTIONS 73a7d28065 perf(lidar): avoid duplicate replay decode during build 2026-08-31 18:35:12 +03:00
DCCONSTRUCTIONS f64fbb1fa6 feat(worker): compose all ready observatory profiles 2026-08-31 18:31:54 +03:00
DCCONSTRUCTIONS 1ff527b264 perf(observatory): avoid duplicate camera verification 2026-08-31 18:25:09 +03:00
DCCONSTRUCTIONS def8c71410 perf(observatory): bound source destination planning 2026-08-31 18:19:04 +03:00
DCCONSTRUCTIONS 7e59176581 fix(observatory): disable source artifact compression 2026-08-31 18:05:34 +03:00
DCCONSTRUCTIONS 4cd94b5805 perf(observatory): pack camera epoch source transfer 2026-08-31 17:59:18 +03:00
DCCONSTRUCTIONS 1766c0bdb2 feat(observatory): reconcile quarantined recorded jobs 2026-08-31 17:59:03 +03:00
DCCONSTRUCTIONS 56bfeaee7b fix(observatory): admit camera archive metadata overhead 2026-08-31 17:19:45 +03:00
DCCONSTRUCTIONS 892d0085e3 refactor(worker): defer optional visualization imports 2026-08-31 17:15:13 +03:00
DCCONSTRUCTIONS e2de8188ab feat(observatory): bridge local M49 worker container 2026-08-31 16:58:03 +03:00
DCCONSTRUCTIONS 9c69d81296 feat(observatory): install local M49 worker path 2026-08-31 16:51:10 +03:00
DCCONSTRUCTIONS 2f6e45bc96 fix(observatory): validate M49 fixture filtering 2026-08-31 16:12:45 +03:00
DCCONSTRUCTIONS 8a1c578e0e fix(observatory): admit committed M49 executor candidates 2026-08-31 16:06:23 +03:00
DCCONSTRUCTIONS 9beb534108 feat(observatory): add portable calculation profiles 2026-08-31 15:42:56 +03:00
DCCONSTRUCTIONS d1b75efcea fix(observatory): fence portable catalog refresh 2026-08-31 11:11:36 +03:00
DCCONSTRUCTIONS c9302c78c2 feat(observatory): add portable LAB V1 foundation 2026-08-31 11:02:34 +03:00
DCCONSTRUCTIONS d67e86176e feat(observatory): add durable recorded compute queue 2026-08-31 01:04:25 +03:00
DCCONSTRUCTIONS e72609120f fix(observatory): align setup typography 2026-08-30 23:31:09 +03:00
DCCONSTRUCTIONS 177be8869f feat(local-service): allow exact worktree migration 2026-08-30 23:23:36 +03:00
DCCONSTRUCTIONS 2a5763d3fb feat(observatory): seal blocked run preparations 2026-08-30 23:14:05 +03:00
DCCONSTRUCTIONS 8d5aeb0533 feat(observatory): add laboratory setup preflight 2026-08-30 22:21:58 +03:00
DCCONSTRUCTIONS be83283ee0 fix(observatory): refine catalog and replay UX 2026-08-30 20:36:12 +03:00
DCCONSTRUCTIONS 023151c186 feat(observatory): admit canonical recorded replay 2026-08-30 19:21:27 +03:00
DCCONSTRUCTIONS e6a9846167 feat(observatory): add bounded M5.1 session review 2026-08-30 17:29:39 +03:00
DCCONSTRUCTIONS 81fdf6904a refactor(lab): объединить RAV004 в единый Rerun replay 2026-08-30 16:40:12 +03:00
DCCONSTRUCTIONS 9c5259dbc9 fix(lab): запускать RAV004 с первого кадра 2026-08-30 14:33:17 +03:00
DCCONSTRUCTIONS 35daf73d5c fix(lab): сжать и адресовать RAV004 overlay 2026-08-30 14:05:32 +03:00
DCCONSTRUCTIONS 07453142c2 fix(lab): стабилизировать нативный RAV004 replay 2026-08-30 13:28:33 +03:00
DCCONSTRUCTIONS f5ee42751d refactor(lab): перевести RAV004 на канонический Rerun pipeline 2026-08-30 12:59:16 +03:00
DCCONSTRUCTIONS e9ffb829c9 docs(sim): зафиксировать контур AI-улучшения гауссов 2026-08-30 11:57:49 +03:00
DCCONSTRUCTIONS 757d368c86 fix(lab): seal RAV004 spatial replay transport 2026-08-30 10:42:41 +03:00
DCCONSTRUCTIONS f1cbe0061a refactor(lab): restore canonical RAV004 replay 2026-08-30 01:22:44 +03:00
DCCONSTRUCTIONS 74da6437e9 refactor(lab): canonicalize recorded spatial replay 2026-08-29 23:38:17 +03:00
DCCONSTRUCTIONS bd2892140f fix(lab): enforce canonical replay runtime 2026-08-29 22:42:30 +03:00
DCCONSTRUCTIONS 525ab74168 fix(lab): restore canonical RAV004 replay 2026-08-29 21:08:49 +03:00
DCCONSTRUCTIONS c30d77572e fix(lab): restore canonical vegetation evidence layers 2026-08-29 20:33:52 +03:00
DCCONSTRUCTIONS 5179e93f4a fix(lab): restore canonical spatial replay 2026-08-29 19:52:06 +03:00
DCCONSTRUCTIONS c06b709fd7 refactor(viewer): profile rerun loading by playback stage 2026-08-29 17:46:07 +03:00
DCCONSTRUCTIONS 856b61be99 fix(simulation): standardize streamed rendering and UGV proxies 2026-08-29 17:39:40 +03:00
DCCONSTRUCTIONS 76694cc869 fix(simulation): reserve disk space before artifact import 2026-08-29 16:18:56 +03:00
DCCONSTRUCTIONS e6df8cb264 fix(simulation): retry temporary provider proxy failures 2026-08-29 16:01:28 +03:00
DCCONSTRUCTIONS 4b487e367f fix(simulation): retry builds across worker tunnel outages 2026-08-29 14:37:27 +03:00
DCCONSTRUCTIONS d7d9485724 fix(lab): overlay full route semantic masks 2026-08-29 14:19:32 +03:00
DCCONSTRUCTIONS 88e47fc39a fix(lab): overlay full route semantic masks 2026-08-29 14:14:38 +03:00
DCCONSTRUCTIONS 0a0cde7b0e fix(lab): keep full route result indexable 2026-08-29 13:54:40 +03:00
DCCONSTRUCTIONS cd16ea28a6 fix(lab): keep full route result indexable 2026-08-29 13:54:10 +03:00
DCCONSTRUCTIONS 9dec37a8a9 feat(lab): seal full RAVNOVES004TREE semantic review 2026-08-29 13:37:57 +03:00
DCCONSTRUCTIONS 45019f8952 feat(lab): seal full RAVNOVES004TREE semantic review 2026-08-29 13:36:37 +03:00
DCCONSTRUCTIONS 24b65926fe fix(simulation): hold ugv on sloped collision meshes 2026-08-29 12:41:28 +03:00
DCCONSTRUCTIONS 57dacc5a04 fix(simulation): model parked UGV tyre grip 2026-08-29 12:03:33 +03:00
DCCONSTRUCTIONS d9ec8c9cef fix(simulation): tune physical UGV braking 2026-08-29 11:26:01 +03:00
DCCONSTRUCTIONS af1e530162 feat(perception): add mixed-route vegetation review 2026-08-28 23:13:48 +03:00
DCCONSTRUCTIONS e10b96b546 feat(perception): split vegetation evidence layers 2026-08-28 15:37:10 +03:00
DCCONSTRUCTIONS 2e44e27967 feat(simulation): auto-build source mesh collision 2026-08-28 13:48:44 +03:00
DCCONSTRUCTIONS a2c3385062 feat(simulation): auto-build source mesh collision 2026-08-28 13:46:55 +03:00
DCCONSTRUCTIONS 7fcfecd063 perf(perception): phase vegetation behind safety 2026-08-28 13:14:35 +03:00
DCCONSTRUCTIONS 7a3b0b84d0 perf(perception): split safety and vegetation rates 2026-08-28 12:59:34 +03:00
DCCONSTRUCTIONS e1c3e7e90a fix(perception): isolate vegetation qualification IO 2026-08-28 12:30:43 +03:00
DCCONSTRUCTIONS 14877b6683 fix(perception): validate decoded vegetation frames 2026-08-28 12:01:36 +03:00
DCCONSTRUCTIONS 0848cefc89 fix(perception): bound vegetation load decoding 2026-08-28 11:55:54 +03:00
DCCONSTRUCTIONS 2ccf172319 feat(simulation): add Gaussian UGV runtime pipeline 2026-08-28 11:51:48 +03:00
DCCONSTRUCTIONS 722e60e5ef feat(simulation): add Gaussian UGV runtime pipeline 2026-08-28 11:50:47 +03:00
DCCONSTRUCTIONS c4c2392c79 feat(perception): integrate vegetation policy review 2026-08-28 11:22:00 +03:00
DCCONSTRUCTIONS 30080c51aa feat(perception): add DDRNet full-video vegetation replay 2026-08-28 01:13:18 +03:00
DCCONSTRUCTIONS 67e6ae98e2 fix(perception): reuse M4.8 for vegetation evidence 2026-08-28 00:13:58 +03:00
DCCONSTRUCTIONS 57204b3b0b feat(perception): add autonomous vegetation shadow lab 2026-08-27 23:26:35 +03:00
DCCONSTRUCTIONS 7594c71dd1 feat(perception): map vegetation provider labels 2026-08-27 21:53:25 +03:00
DCCONSTRUCTIONS 92aa796c9d chore(perception): freeze vegetation candidates 2026-08-27 21:46:02 +03:00
DCCONSTRUCTIONS 7c0fd81b2f feat(perception): add vegetation mission policy lab 2026-08-27 21:36:25 +03:00
DCCONSTRUCTIONS 95a1ef5057 feat(lab): stabilize autonomous TGS playback 2026-08-27 20:34:20 +03:00
DCCONSTRUCTIONS c8593207d3 docs(lab): record sealed playback data plane 2026-08-27 15:25:54 +03:00
DCCONSTRUCTIONS 7aeea4ed81 perf(lab): retain spatial scenes during replay 2026-08-27 15:19:00 +03:00
DCCONSTRUCTIONS bf76304e00 perf(lab): stream sealed spatial playback tracks 2026-08-27 15:18:45 +03:00
DCCONSTRUCTIONS b70dc4298a docs(perception): accept integrated TGS graph load gate 2026-08-27 12:01:27 +03:00
DCCONSTRUCTIONS f153d671d3 fix(perception): close integrated shadow packaging 2026-08-27 11:39:48 +03:00
DCCONSTRUCTIONS 7720594790 feat(perception): add integrated TGS graph shadow gate 2026-08-27 11:27:28 +03:00
DCCONSTRUCTIONS 296cf610cd fix(lab): preserve replay view and restore SLAM semantics 2026-08-26 23:37:05 +03:00
DCCONSTRUCTIONS 46cef8df17 docs(perception): record full TGS shadow acceptance 2026-08-26 23:07:16 +03:00
DCCONSTRUCTIONS d722b0f82b feat(lab): publish full TGS shadow evidence 2026-08-26 23:07:06 +03:00
DCCONSTRUCTIONS 40c850b167 feat(perception): add full TGS shadow runner 2026-08-26 21:59:39 +03:00
DCCONSTRUCTIONS 6544d9e918 feat(lab): publish fail-closed TGS evidence 2026-08-26 21:32:35 +03:00
DCCONSTRUCTIONS 67d5d6fa05 docs(perception): record gravity-aligned TGS evidence 2026-08-26 19:51:50 +03:00
DCCONSTRUCTIONS 941fb89616 feat(perception): add gravity-aligned TGS evidence gate 2026-08-26 19:47:23 +03:00
DCCONSTRUCTIONS 989a3ce28c docs(perception): reject direct TRAVEL AOS compatibility 2026-08-26 19:34:10 +03:00
DCCONSTRUCTIONS 28d5297237 feat(perception): add TRAVEL RAVNOVES compatibility probe 2026-08-26 19:25:19 +03:00
DCCONSTRUCTIONS b0738438d4 docs(perception): record TRAVEL upstream qualification 2026-08-26 19:06:56 +03:00
DCCONSTRUCTIONS 67578f4ce1 feat(perception): stage TRAVEL qualification 2026-08-26 18:53:26 +03:00
DCCONSTRUCTIONS 83ef98e9e5 docs(perception): record GSeg3D qualification rejection 2026-08-26 18:53:25 +03:00
DCCONSTRUCTIONS 316f0d7f85 fix(perception): match merged ROS test layout 2026-08-26 18:44:41 +03:00
DCCONSTRUCTIONS 2e7abbc56b fix(perception): source ROS setup outside nounset 2026-08-26 18:42:02 +03:00
DCCONSTRUCTIONS b445745d27 fix(perception): run Worker build interactively 2026-08-26 18:32:22 +03:00
DCCONSTRUCTIONS 1cc87e1836 fix(perception): isolate Worker Docker credentials 2026-08-26 18:29:33 +03:00
DCCONSTRUCTIONS aed59030b4 feat(perception): stage GSeg3D qualification 2026-08-26 18:27:39 +03:00
DCCONSTRUCTIONS 2e20ca7777 feat(simulation): load combined rover collision 2026-08-26 17:50:37 +03:00
DCCONSTRUCTIONS ae13ca5946 feat(simulation): prefer rover world terrain 2026-08-26 17:17:48 +03:00
DCCONSTRUCTIONS 1b6131904a docs(perception): define traversability evaluation sequence 2026-08-26 16:56:15 +03:00
DCCONSTRUCTIONS 7fa2bfe52d fix(simulation): reset camera input on layer switch 2026-08-26 16:45:05 +03:00
DCCONSTRUCTIONS 1696b4742b fix(simulation): keep runtime stable on settings save 2026-08-26 16:15:37 +03:00
DCCONSTRUCTIONS ac1dc7d930 fix(lab): show only actionable obstacle boxes 2026-08-26 16:09:32 +03:00
DCCONSTRUCTIONS a98ad929d9 fix(simulation): resume live provider builds 2026-08-26 15:46:46 +03:00
DCCONSTRUCTIONS 5a9738d6aa feat(lab): project system obstacles into fisheye 2026-08-26 15:31:06 +03:00
DCCONSTRUCTIONS 30227b661f fix(runtime): watchdog canonical liveness 2026-08-26 15:26:17 +03:00
DCCONSTRUCTIONS 4bcc35c1a0 docs(simulation): record collision publication contract 2026-08-26 15:21:22 +03:00
DCCONSTRUCTIONS a65ae9c285 feat(simulation): optimize and persist collision viewing 2026-08-26 15:18:34 +03:00
DCCONSTRUCTIONS 5e97fa293f fix(simulation): bound rendering and expose camera inversion 2026-08-26 14:30:25 +03:00
DCCONSTRUCTIONS aba06086ac fix(lab): keep split-view controls clickable 2026-08-26 14:24:24 +03:00
DCCONSTRUCTIONS 424374263e fix(simulation): align LCC layers in PlayCanvas world 2026-08-26 14:20:40 +03:00
DCCONSTRUCTIONS 906a6ce37b docs(mission): record accepted M4.8R3 shadow 2026-08-26 14:13:29 +03:00
DCCONSTRUCTIONS 1496184167 perf(perception): require exact critical-range persistence 2026-08-26 13:59:26 +03:00
DCCONSTRUCTIONS 9561a068ab chore(lab): classify M4.8R3 sealed evidence 2026-08-26 13:47:28 +03:00
DCCONSTRUCTIONS 9e686b3311 build(worker): pin persistent low-step profile 2026-08-26 13:42:43 +03:00
DCCONSTRUCTIONS 936ee479ed feat(lab): visualize M4.8R3 system occupancy 2026-08-26 13:40:24 +03:00
DCCONSTRUCTIONS b82a97fe8b feat(lab): seal M4.8R3 occupancy shadows 2026-08-26 13:39:54 +03:00
DCCONSTRUCTIONS 90bdc27785 feat(perception): confirm persistent sparse low steps 2026-08-26 13:39:01 +03:00
DCCONSTRUCTIONS 0b01bb7775 fix: report missing collision without stale CPU claim 2026-08-26 13:19:30 +03:00
DCCONSTRUCTIONS b688347778 refactor(lab): admit versioned graph ledgers 2026-08-26 13:10:11 +03:00
DCCONSTRUCTIONS 252cbc8495 perf(perception): bound low-step component fanout 2026-08-26 13:10:02 +03:00
DCCONSTRUCTIONS 048716b3b3 build(worker): package M4.8R3 shadow release 2026-08-26 12:41:42 +03:00
DCCONSTRUCTIONS 343ddeac2d feat(perception): add occupied-only low-step shadow 2026-08-26 12:39:54 +03:00
DCCONSTRUCTIONS 5983883ffe docs(perception): record M4.8R2 occupancy gate 2026-08-26 11:52:09 +03:00
DCCONSTRUCTIONS 6290c75210 feat(control-station): present static occupancy qualification 2026-08-26 11:52:03 +03:00
DCCONSTRUCTIONS 3c81c39a1c feat(perception): qualify conservative static occupancy 2026-08-26 11:51:56 +03:00
DCCONSTRUCTIONS 932c5216dc feat(control-station): review native raw fisheye risk cases 2026-08-26 10:15:56 +03:00
DCCONSTRUCTIONS f9a76fed0e feat(lab): seal native risk review evidence 2026-08-26 10:15:49 +03:00
DCCONSTRUCTIONS c05db1fbe0 feat(perception): mine native fisheye risk cases 2026-08-26 10:15:43 +03:00
DCCONSTRUCTIONS 385082c8ca fix: recover failed Gaussian project builds 2026-08-26 09:34:23 +03:00
DCCONSTRUCTIONS cb1e1494af test(perception): qualify native RF-DETR graph shadow 2026-08-26 02:23:26 +03:00
DCCONSTRUCTIONS d943ec853c feat: add Gaussian simulation workspace 2026-08-26 02:09:44 +03:00
DCCONSTRUCTIONS b111406cf8 feat(perception): integrate native RF-DETR shadow provider 2026-08-26 02:06:16 +03:00
DCCONSTRUCTIONS 28effdde23 feat(perception): build native raw RF-DETR engine 2026-08-26 02:06:03 +03:00
DCCONSTRUCTIONS 2920fc7579 feat(simulation): upload real gaussian source bundles 2026-08-26 00:54:28 +03:00
DCCONSTRUCTIONS 147a623df9 docs(perception): record RF-DETR COCO parity evidence 2026-08-26 00:45:32 +03:00
DCCONSTRUCTIONS 62c8ed421a feat(perception): add RF-DETR upstream parity gate 2026-08-26 00:45:17 +03:00
DCCONSTRUCTIONS be079bf18f fix(simulation): require gaussian runtime provenance 2026-08-26 00:35:05 +03:00
DCCONSTRUCTIONS 73fbfddf6c feat(simulation): add portable gaussian provider connector 2026-08-26 00:24:53 +03:00
DCCONSTRUCTIONS 3ff3b9b587 feat(lab): publish M4.8T quality evidence 2026-08-25 23:44:27 +03:00
DCCONSTRUCTIONS 9a956c318a feat(perception): qualify M4.8T semantic identity 2026-08-25 23:44:17 +03:00
DCCONSTRUCTIONS 209d0bfc26 feat(laboratory): publish repeated M48S load envelope 2026-08-25 22:31:27 +03:00
DCCONSTRUCTIONS f50e0077c5 fix(service): supervise canonical Mission Core lifecycle 2026-08-25 21:58:22 +03:00
DCCONSTRUCTIONS fb5bf943c9 fix(perception): isolate recorded decode from realtime admission 2026-08-25 21:58:12 +03:00
DCCONSTRUCTIONS bab0bb2df2 feat(laboratory): publish M48S load envelope 2026-08-25 20:36:26 +03:00
DCCONSTRUCTIONS e21332b9e1 feat(perception): measure M48S load envelope 2026-08-25 20:36:21 +03:00
DCCONSTRUCTIONS 078b8421a6 feat(laboratory): compare M48S runtime hardening 2026-08-25 19:38:11 +03:00
DCCONSTRUCTIONS 84624ae3ea feat(perception): prewarm RF-DETR before source admission 2026-08-25 19:09:53 +03:00
DCCONSTRUCTIONS 477886d100 fix(perception): keep cyclic GC outside realtime loop 2026-08-25 18:50:38 +03:00
DCCONSTRUCTIONS 1d706dd169 fix(perception): correlate GC with active stages 2026-08-25 18:44:57 +03:00
DCCONSTRUCTIONS d1e6e42cf4 chore(perception): trace Python GC pauses 2026-08-25 18:38:33 +03:00
DCCONSTRUCTIONS a0152f371e feat(perception): trace M4.8S pipeline latency 2026-08-25 18:21:57 +03:00
DCCONSTRUCTIONS 5b07372791 fix(perception): release processed source payloads 2026-08-25 18:04:26 +03:00
DCCONSTRUCTIONS b5080671c9 fix(lab): stabilize replay and densify LiDAR overlay 2026-08-25 17:51:50 +03:00
DCCONSTRUCTIONS 15be698097 feat(ui): add M4.8S replay with LiDAR overlay 2026-08-25 16:44:52 +03:00
DCCONSTRUCTIONS 3679e43fe3 feat(lab): publish M4.8S fixed-class detector replay 2026-08-25 16:44:35 +03:00
DCCONSTRUCTIONS 05590867b7 feat(perception): seal M4.8S reference graph replay 2026-08-25 16:44:26 +03:00
DCCONSTRUCTIONS 33cef2fdea feat(perception): evaluate fixed-class detector candidates 2026-08-25 16:44:15 +03:00
DCCONSTRUCTIONS 6276bbf324 feat(perception): define semantic object understanding 2026-08-25 16:43:47 +03:00
DCCONSTRUCTIONS 1084984da2 refactor(ui): reuse canonical graph for M4.8 regression 2026-08-25 00:08:33 +03:00
DCCONSTRUCTIONS 669bb64423 feat(lab): bind M4.8 regression to reference graph 2026-08-25 00:07:58 +03:00
DCCONSTRUCTIONS eb416ff80a docs(lab): freeze M4.8 viewer and regression canon 2026-08-24 22:38:54 +03:00
DCCONSTRUCTIONS 4fa1669ab7 feat(lab): publish M4.8 assisted regression evidence 2026-08-24 22:38:26 +03:00
DCCONSTRUCTIONS 4fa6597b18 feat(ui): stabilize shared M4.8 review viewer 2026-08-24 22:36:08 +03:00
DCCONSTRUCTIONS 992c5a8b74 fix(lab): make recorded replay seek-safe 2026-08-24 02:15:30 +03:00
DCCONSTRUCTIONS 7400fe2fd7 fix(lab): preserve explicit replay seeks 2026-08-24 00:41:29 +03:00
DCCONSTRUCTIONS 8877ee947f fix(lab): make replay pause authoritative 2026-08-24 00:12:49 +03:00
DCCONSTRUCTIONS a7caed70c1 fix(lab): stream synchronized replay fragments 2026-08-23 23:36:04 +03:00
DCCONSTRUCTIONS a55ef475d9 fix(lab): restore semantic overlay in M4.7 2026-08-23 22:40:07 +03:00
DCCONSTRUCTIONS 34ed8a0f5f feat(lab): publish M4.7 Worker graph evidence 2026-08-23 22:00:46 +03:00
DCCONSTRUCTIONS 64860be4ae bind M4.7 graph results to Worker runtime 2026-08-23 20:57:20 +03:00
DCCONSTRUCTIONS 4ac07f7671 compare M4.7 threat parity by component identity 2026-08-23 20:39:16 +03:00
DCCONSTRUCTIONS bcda5d001a defer optional telemetry dependencies in perception graph 2026-08-23 20:29:14 +03:00
DCCONSTRUCTIONS cbbaea9148 accept empty Docker port bindings in M4.7 preflight 2026-08-23 20:21:43 +03:00
DCCONSTRUCTIONS 3d3c0eced2 isolate M4.7 worker shadow runtime 2026-08-23 20:19:13 +03:00
DCCONSTRUCTIONS d50d3bb3d3 Добавление канонического графа M4.7 2026-08-23 20:03:40 +03:00
DCCONSTRUCTIONS 51bb1369eb Стабилизация синхронного LAB-воспроизведения 2026-08-23 18:56:06 +03:00
DCCONSTRUCTIONS a3fc13ad63 Обновление эталона защиты контура K1 2026-08-23 16:24:38 +03:00
DCCONSTRUCTIONS c041a569f6 Стабилизация подключения K1 после сна и ожидания Bluetooth 2026-08-23 16:24:05 +03:00
DCCONSTRUCTIONS 5ebc9fc27c Стабилизация отображения камеры при повторном подключении 2026-08-23 15:33:18 +03:00
DCCONSTRUCTIONS 99eafaf02d Сохранение индикации переподключения Quick Connect 2026-08-23 15:33:11 +03:00
DCCONSTRUCTIONS 03830cd15e Исключение ложного переподключения к выведенному K1 2026-08-23 14:12:57 +03:00
DCCONSTRUCTIONS 6e7428a116 Безопасное завершение калибровки при отключении K1 2026-08-23 13:55:28 +03:00
DCCONSTRUCTIONS 3e5aedd74d Диагностика запуска live-камеры в интерфейсе 2026-08-23 13:54:21 +03:00
DCCONSTRUCTIONS 687c050c28 Устранение гонки запуска live-камеры 2026-08-23 12:47:54 +03:00
DCCONSTRUCTIONS 4e00e804f3 Диагностика допуска правой камеры в интерфейс 2026-08-23 12:21:23 +03:00
DCCONSTRUCTIONS 456141a3f3 Корректное ожидание подтверждения Bridge 2026-08-23 12:14:56 +03:00
DCCONSTRUCTIONS 7d911b4b1f Стабилизация восстановления Bridge и Quick Connect 2026-08-23 10:45:53 +03:00
DCCONSTRUCTIONS 71c8b043c9 Защита Bridge и камеры K1 при переподключении 2026-08-23 01:25:25 +03:00
DCCONSTRUCTIONS 0752e5c6bf Стабилизация переключения Bridge и Quick Connect
Безопасно восстанавливает управляющее подключение и локальные checkpoint без повторных команд сканеру.

Добавляет PCAP/Bridge guardrails и регрессионные проверки одношагового переподключения.

Известный дефект: после второго подключения интерфейс не присоединяется к новой генерации preview правой камеры. В живой Quick Connect-сессии STOP был принят, но READY не подтвердился до таймаута; автоматический повтор STOP запрещён.
2026-08-23 00:15:28 +03:00
DCCONSTRUCTIONS 1001a31638 fix(k1): restore low-latency live recovery path 2026-08-22 16:17:27 +03:00
DCCONSTRUCTIONS 85035fa07b fix(k1): harden live handoff and camera recovery 2026-08-22 13:09:24 +03:00
DCCONSTRUCTIONS eaad9deda1 fix(k1): stabilize live recovery and media admission 2026-08-22 00:03:01 +03:00
DCCONSTRUCTIONS 7217244886 Стабильное подключение в идеальных условиях K1 2026-08-21 12:36:50 +03:00
DCCONSTRUCTIONS c7843a3c7e chore(k1): checkpoint connection recovery work 2026-08-21 08:12:22 +03:00
DCCONSTRUCTIONS a3138f3d71 fix(k1): retire terminal control before read-only recovery 2026-08-20 14:37:00 +03:00
DCCONSTRUCTIONS d01be34cac fix(k1): expose exact supervisor recovery verify 2026-08-20 14:04:55 +03:00
DCCONSTRUCTIONS ac4a00c67d fix(k1): cease reset zero-dispatch checkpoint 2026-08-20 13:16:56 +03:00
DCCONSTRUCTIONS aee60f12b9 fix(k1): admit live rerun only after real data 2026-08-20 12:54:55 +03:00
DCCONSTRUCTIONS 321cde70e8 fix(k1): settle same-process standby checkpoint 2026-08-14 21:32:26 +03:00
DCCONSTRUCTIONS 986ea69610 fix(k1): allow explicit reset after terminal start fault 2026-08-14 21:01:52 +03:00
DCCONSTRUCTIONS 72a2f37c03 fix(k1): use neutral process copy 2026-08-14 20:03:13 +03:00
DCCONSTRUCTIONS 4a24275ddc fix(k1): close verified stop checkpoint gap 2026-08-14 19:46:51 +03:00
DCCONSTRUCTIONS 17a07355cf fix(k1): keep reconnect feedback in place 2026-08-14 19:21:11 +03:00
DCCONSTRUCTIONS cd8a1045c4 fix(k1): keep live viewer on stream edge 2026-08-14 18:20:25 +03:00
DCCONSTRUCTIONS 3235ba7b1c fix(k1): fence start endpoint handoff 2026-08-14 17:40:07 +03:00
DCCONSTRUCTIONS 9e6b5b403a fix(k1): refresh stale endpoint before start 2026-08-14 16:27:03 +03:00
DCCONSTRUCTIONS 9ef115d3b4 fix(k1): admit start after reopened standby 2026-08-14 15:50:03 +03:00
DCCONSTRUCTIONS 606cbbfae2 fix(k1): settle reopened standby after reset 2026-08-14 15:16:30 +03:00
DCCONSTRUCTIONS 0ca7316a24 wip(k1): checkpoint connection recovery rewrite
Capture the current unreleased K1 connection, recovery, lifecycle, viewer, and test work as a single known-bad baseline for subsequent fixes.
2026-08-14 14:57:50 +03:00
DCCONSTRUCTIONS aff331082f fix(k1): restore canonical local connection lifecycle 2026-08-06 13:52:46 +03:00
DCCONSTRUCTIONS 52da9b75b7 fix(k1): harden BLE discovery and bridge recovery 2026-08-06 12:43:00 +03:00
DCCONSTRUCTIONS be50144ca8 docs(m4): record E47 semantic shadow evidence 2026-08-06 11:26:55 +03:00
DCCONSTRUCTIONS 81ae4425cb feat(lab): visualize semantic SLAM shadow 2026-08-06 11:26:46 +03:00
DCCONSTRUCTIONS 8eaa3ab497 feat(perception): add diagnostic semantic SLAM replay 2026-08-06 11:26:37 +03:00
DCCONSTRUCTIONS b7a51e26e6 feat(lab): add bounded local SLAM surface 2026-08-06 09:41:25 +03:00
DCCONSTRUCTIONS b8fb4ebcba fix(lab): align spatial replay controls 2026-08-06 09:14:20 +03:00
DCCONSTRUCTIONS e38f2fb1da fix(lab): stabilize recorded spatial playback 2026-08-06 08:51:10 +03:00
DCCONSTRUCTIONS 9df9f58ab8 feat(lab): add recorded realtime spatial playback 2026-08-05 23:17:48 +03:00
DCCONSTRUCTIONS aacc6dc43b fix(m4): retain compact obstacle evidence 2026-08-05 22:16:33 +03:00
DCCONSTRUCTIONS 13ed096f80 docs(m4): seal rolling map correction evidence 2026-08-05 21:12:59 +03:00
DCCONSTRUCTIONS 31313c3c96 feat(lab): separate current increment from rolling map 2026-08-05 21:12:54 +03:00
DCCONSTRUCTIONS 7aa3ce55c0 fix(perception): reconstruct rolling occupancy from K1 increments 2026-08-05 21:12:47 +03:00
DCCONSTRUCTIONS c70ad345ea fix(perception): stabilize replay body frame 2026-08-05 20:04:08 +03:00
DCCONSTRUCTIONS de19229895 feat(lab): visualize dual evidence replay 2026-08-05 19:18:14 +03:00
DCCONSTRUCTIONS b0d0bc8d7f feat(perception): add dual evidence replay threat 2026-08-05 19:18:01 +03:00
DCCONSTRUCTIONS 6b810952a4 docs(perception): record m4 temporal acceptance 2026-08-05 17:24:56 +03:00
DCCONSTRUCTIONS 998775c3af feat(perception): canonicalize temporal motion 2026-08-05 17:24:48 +03:00
DCCONSTRUCTIONS 438e0ca263 docs(perception): record m4 geometry acceptance 2026-08-05 16:56:25 +03:00
DCCONSTRUCTIONS 3ecbe3fb21 feat(perception): canonicalize metric geometry 2026-08-05 16:56:17 +03:00
DCCONSTRUCTIONS b1f9957317 docs(perception): record m4 detector acceptance 2026-08-05 16:10:40 +03:00
DCCONSTRUCTIONS 8bd632509e refactor(perception): isolate detector runtime 2026-08-05 16:05:26 +03:00
DCCONSTRUCTIONS 8e161a197f fix(perception): keep worker preflight output scalar 2026-08-05 15:59:57 +03:00
DCCONSTRUCTIONS 7756310bdf fix(perception): bind worker dependency trees 2026-08-05 15:59:00 +03:00
DCCONSTRUCTIONS b38cd51338 fix(perception): support worker powershell runtime 2026-08-05 15:56:19 +03:00
DCCONSTRUCTIONS 40794f13aa feat(perception): keep worker shadow local 2026-08-05 15:54:42 +03:00
DCCONSTRUCTIONS 720487379c feat(deploy): build worker shadow artifact 2026-08-05 15:09:34 +03:00
DCCONSTRUCTIONS c9242480c2 refactor(perception): decouple replay from lab layout 2026-08-05 14:51:33 +03:00
DCCONSTRUCTIONS 95ac235122 feat(perception): seal detector replay evidence 2026-08-05 14:36:55 +03:00
DCCONSTRUCTIONS a680debfaf feat(perception): add frozen yolox provider 2026-08-05 14:09:51 +03:00
DCCONSTRUCTIONS 029b486c67 feat(perception): add bounded reference graph 2026-08-05 13:57:27 +03:00
DCCONSTRUCTIONS ae1e41f7fe feat(perception): establish object centric contracts 2026-08-05 13:32:34 +03:00
DCCONSTRUCTIONS 8ef215e98f chore(perception): freeze milestone 4 baseline 2026-08-05 13:32:29 +03:00
DCCONSTRUCTIONS 78a3dc2162 docs(cv): define milestone 4 recorded realtime plan 2026-08-05 12:54:12 +03:00
DCCONSTRUCTIONS 1b3e0b3406 refactor(platform): freeze laboratory and telemetry boundaries 2026-08-05 12:29:06 +03:00
DCCONSTRUCTIONS 6d0abbc569 refactor(platform): bound lab canon and contour identity 2026-08-05 12:00:27 +03:00
DCCONSTRUCTIONS de12e96297 refactor(lab): canonize selected evidence reports 2026-08-05 11:49:44 +03:00
DCCONSTRUCTIONS 4c763bd8aa refactor(platform): harden LAB evidence and telemetry 2026-08-05 10:03:37 +03:00
DCCONSTRUCTIONS 67bd96868f docs(perception): update RAVNOVES00 maturation roadmap 2026-08-05 07:50:10 +03:00
DCCONSTRUCTIONS 7a72a206f1 feat(lab): present chronological perception evidence 2026-08-05 07:49:49 +03:00
DCCONSTRUCTIONS 12c8a2d74c feat(api): publish immutable perception lab evidence 2026-08-05 07:48:58 +03:00
DCCONSTRUCTIONS 3982256f08 feat(perception): add recorded replay maturation labs 2026-08-05 07:47:15 +03:00
DCCONSTRUCTIONS c1b0f6f8a3 feat(lab): separate RAVNOVES transfer from public benchmark 2026-07-31 14:35:51 +03:00
DCCONSTRUCTIONS 55b7821a5c feat(perception): run PointPillars on RAVNOVES00 2026-07-31 14:35:34 +03:00
DCCONSTRUCTIONS b44c4b3265 docs(perception): require visual LAB evidence 2026-07-31 11:47:20 +03:00
DCCONSTRUCTIONS a2cb50d1ad feat(perception): add PointPillars visual audit 2026-07-31 11:47:04 +03:00
DCCONSTRUCTIONS 8fe6184c52 docs(perception): record PointPillars transfer verdict 2026-07-31 10:48:56 +03:00
DCCONSTRUCTIONS a9a5ca5a26 feat(perception): add PointPillars transfer gate 2026-07-31 10:48:27 +03:00
DCCONSTRUCTIONS 29fee5c0ac chore(types): tighten E40 review collections 2026-07-30 23:15:16 +03:00
DCCONSTRUCTIONS dc6f9b66da feat(perception): add full camera-first shadow 2026-07-30 23:15:06 +03:00
DCCONSTRUCTIONS dee6d57133 fix(runtime): keep shared artifacts optional 2026-07-30 23:14:50 +03:00
DCCONSTRUCTIONS 8c91d40e2e fix(runtime): fail closed on offline artifact misses 2026-07-30 22:19:01 +03:00
DCCONSTRUCTIONS 81d7ad1a77 fix(lab): demote E40 to historical evaluation 2026-07-30 22:18:46 +03:00
DCCONSTRUCTIONS e4e5bf6ea1 feat(perception): restore camera-first semantic candidate 2026-07-30 21:53:34 +03:00
DCCONSTRUCTIONS fdcaf57ae7 feat(lab): add lazy E40 evidence review 2026-07-30 21:53:04 +03:00
DCCONSTRUCTIONS e9bbfb9a41 perf(data): bound lidar readers and lab session loading 2026-07-30 21:52:10 +03:00
DCCONSTRUCTIONS 7d1a70d8e0 feat(perception): qualify lossless lidar observations 2026-07-30 11:37:57 +03:00
DCCONSTRUCTIONS e56fa0c074 feat(storage): add portable session artifact gateway 2026-07-30 10:05:48 +03:00
DCCONSTRUCTIONS 2ab9e45548 fix(replay): stream sealed perception overlays 2026-07-30 00:51:14 +03:00
DCCONSTRUCTIONS 091ab2671e feat(perception): prepare blind detector review handoff 2026-07-30 00:03:41 +03:00
DCCONSTRUCTIONS cc6838ed24 fix(replay): serve admitted AI overlays without revalidation 2026-07-29 23:13:42 +03:00
DCCONSTRUCTIONS 8e4891d608 fix(system): keep worker telemetry polling live 2026-07-29 19:19:35 +03:00
DCCONSTRUCTIONS 2678295ca7 feat(map): control ghost pin movement speed 2026-07-29 18:53:00 +03:00
DCCONSTRUCTIONS 0c3855eac5 feat(map): add persisted ghost pin sandbox 2026-07-29 18:29:13 +03:00
DCCONSTRUCTIONS b91d3b913e feat(map): adopt DC Default scene 2026-07-29 17:55:44 +03:00
DCCONSTRUCTIONS 5a06194962 fix(map): complete live Cesium provider path 2026-07-29 17:25:07 +03:00
DCCONSTRUCTIONS f2a4dfe863 fix(map): align canonical map actions 2026-07-29 17:00:50 +03:00
DCCONSTRUCTIONS 8e3710b493 feat(map): add operational Cesium workspace 2026-07-29 16:45:21 +03:00
DCCONSTRUCTIONS 66f8d7a1fa feat(map): add guarded map gateway BFF 2026-07-29 16:45:11 +03:00
DCCONSTRUCTIONS d95a13059c docs(map): define Cesium integration plan 2026-07-29 16:00:07 +03:00
DCCONSTRUCTIONS 6180c3b8b7 fix(ui): restore background after playlist reset 2026-07-29 15:30:35 +03:00
DCCONSTRUCTIONS 32c5d0dda5 feat(storage): index exact content references 2026-07-29 15:21:03 +03:00
DCCONSTRUCTIONS 611853d3af fix(worker): deploy persistent runtime companions 2026-07-29 14:57:34 +03:00
DCCONSTRUCTIONS 9db39347bd feat(perception): gate sealed truth evaluation 2026-07-29 14:34:33 +03:00
DCCONSTRUCTIONS 1e1b7fe43d fix(architecture): restore generic runtime boundaries 2026-07-29 14:20:42 +03:00
DCCONSTRUCTIONS 82a44478fb feat(perception): freeze blind detector gates 2026-07-29 14:20:31 +03:00
DCCONSTRUCTIONS 8b1f109b09 feat(ui): add environment media playlists 2026-07-29 14:20:19 +03:00
DCCONSTRUCTIONS c455301764 docs(telemetry): record managed contour operations 2026-07-29 12:32:56 +03:00
DCCONSTRUCTIONS 636db089ae feat(telemetry): add bounded native pipeline lifecycle 2026-07-29 12:32:52 +03:00
DCCONSTRUCTIONS d8ccc9345a feat(system): manage compute contour network profile 2026-07-29 12:32:41 +03:00
DCCONSTRUCTIONS 1eba7c82ba fix(replay): recover failed archives and release deleted sessions 2026-07-29 01:55:23 +03:00
DCCONSTRUCTIONS 2a97cf28c0 fix(k1): stabilize repeated acquisition and live viewer recovery 2026-07-29 01:55:12 +03:00
DCCONSTRUCTIONS 37b8930527 feat(data): add read-only artifact health monitor 2026-07-29 01:54:41 +03:00
DCCONSTRUCTIONS 79eb4b46f7 feat(telemetry): expose compute pipeline stage metrics 2026-07-29 01:53:31 +03:00
DCCONSTRUCTIONS 783aa444ac feat(lab): publish E40 perception product gate 2026-07-29 01:52:56 +03:00
DCCONSTRUCTIONS bfd95c7fee chore(repo): codify local operator resource limits 2026-07-29 01:52:16 +03:00
DCCONSTRUCTIONS d729abab31 feat(perception): stabilize pre-capture methodology 2026-07-28 17:47:06 +03:00
DCCONSTRUCTIONS 1f20e0d7d9 feat(lab): publish E39 refinement result 2026-07-28 10:06:57 +03:00
DCCONSTRUCTIONS 6e5124bd9c feat(perception): record E39 R1 refinement 2026-07-28 10:06:31 +03:00
DCCONSTRUCTIONS c018f2b074 feat(lab): measure RAVNOVES00 R1 quality baseline 2026-07-28 03:42:32 +03:00
DCCONSTRUCTIONS e35f81ac34 fix(ui): align telemetry and laboratory navigation 2026-07-28 03:18:27 +03:00
DCCONSTRUCTIONS 6db5ac05ef feat(lab): publish E37 R0 acceptance result 2026-07-28 02:37:38 +03:00
DCCONSTRUCTIONS a2fcaa7b39 feat(lab): freeze RAVNOVES00 R0 acceptance contract 2026-07-28 02:24:51 +03:00
DCCONSTRUCTIONS 65a72d40a8 fix(system): preserve MQTT interval draft editing 2026-07-28 01:56:36 +03:00
DCCONSTRUCTIONS d2964a0ddc docs(ui): forbid decorative product outlines 2026-07-28 01:46:01 +03:00
DCCONSTRUCTIONS a63d2fe15b fix(ui): remove decorative outlines and restore lab spacing 2026-07-28 01:46:01 +03:00
DCCONSTRUCTIONS 2ffbb51a7e feat(system): configure telemetry polling per contour 2026-07-28 01:24:05 +03:00
DCCONSTRUCTIONS 4a65b52f6d docs(governance): codify runtime resource boundaries 2026-07-28 00:54:57 +03:00
DCCONSTRUCTIONS 1c0181297d feat(control-station): add compute contour workspace 2026-07-28 00:54:49 +03:00
DCCONSTRUCTIONS 1f4c960cc4 feat(system): add compute contour telemetry APIs 2026-07-28 00:54:18 +03:00
DCCONSTRUCTIONS b8a008b50e feat(telemetry): add portable local telemetry plane 2026-07-28 00:54:11 +03:00
DCCONSTRUCTIONS 9fc002d86f chore(worker): namespace Mission Core containers 2026-07-28 00:53:34 +03:00
DCCONSTRUCTIONS 667db00b52 feat(system): instrument worker pipeline stages 2026-07-27 21:41:40 +03:00
DCCONSTRUCTIONS 67e12a47a4 feat(system): add Worker 006 telemetry and network profile 2026-07-27 21:06:51 +03:00
DCCONSTRUCTIONS 438196cd6d docs(architecture): prioritize RAVNOVES00 maturation 2026-07-27 19:39:11 +03:00
DCCONSTRUCTIONS fa20079c9e feat(perception): audit E36 second-source eligibility 2026-07-27 18:27:40 +03:00
DCCONSTRUCTIONS b894945344 feat(perception): qualify E35 degradation recovery 2026-07-27 17:53:59 +03:00
DCCONSTRUCTIONS 621084fcd6 feat(perception): add E34 temporal occupied layer 2026-07-27 16:55:40 +03:00
DCCONSTRUCTIONS 95c6540691 feat(lab): canonize versioned report template 2026-07-27 16:05:32 +03:00
DCCONSTRUCTIONS 2c016b117d feat(lab): publish E31 through E33 results 2026-07-27 14:42:22 +03:00
DCCONSTRUCTIONS fa2d66ab0e docs(runtime): enforce canonical port 8000 2026-07-27 14:02:20 +03:00
DCCONSTRUCTIONS 9bbd5845b7 feat(perception): qualify E33 worker shadow 2026-07-27 13:43:18 +03:00
DCCONSTRUCTIONS 32257fc2b4 feat(perception): complete E32 full replay 2026-07-27 12:49:42 +03:00
DCCONSTRUCTIONS 10c306f162 feat(perception): define TrackGeometry v1 contract 2026-07-27 11:46:23 +03:00
DCCONSTRUCTIONS 091d560ac8 feat(perception): qualify E31 source binding 2026-07-27 11:33:07 +03:00
DCCONSTRUCTIONS 001d597a89 feat(lab): complete E30 evidence review gate 2026-07-27 11:00:32 +03:00
DCCONSTRUCTIONS a44d7627fd docs(lab): keep blocked gates out of the catalog 2026-07-26 18:27:16 +03:00
DCCONSTRUCTIONS 2ffaf94052 docs(lab): plan the post-E29 research cycle 2026-07-26 18:24:59 +03:00
DCCONSTRUCTIONS f50405d907 docs(lab): codify immutable laboratory runs 2026-07-26 17:56:48 +03:00
DCCONSTRUCTIONS 4db00b53f7 feat(lab): separate evidence catalogs and record methods 2026-07-26 17:56:23 +03:00
DCCONSTRUCTIONS e9ff29297b feat(lab): standardize evidence workspace template 2026-07-26 17:06:13 +03:00
DCCONSTRUCTIONS 360ec39ff3 feat(control-station): configure page-specific shell 2026-07-26 17:06:04 +03:00
DCCONSTRUCTIONS dc55ff16c9 feat(lab): verify and expose real evidence 2026-07-26 15:36:48 +03:00
DCCONSTRUCTIONS 453d760be4 feat(control-station): add configurable environment shell 2026-07-26 14:18:08 +03:00
DCCONSTRUCTIONS 42041b37cd fix(control-station): separate lab contours from recordings 2026-07-26 13:34:12 +03:00
DCCONSTRUCTIONS 05413e3f5c feat(ui): separate live data and lab surfaces 2026-07-26 12:50:10 +03:00
DCCONSTRUCTIONS 677dbdb776 feat: add camera-first lidar geometry fusion 2026-07-26 11:49:27 +03:00
DCCONSTRUCTIONS f791b63890 fix: clarify lidar source and processing result 2026-07-26 10:45:18 +03:00
DCCONSTRUCTIONS 36ea7ea3d8 feat: qualify complete K1 replay on worker 2026-07-26 10:11:56 +03:00
DCCONSTRUCTIONS a1e2cb523f feat: wire physical K1 surface shadow 2026-07-26 01:30:53 +03:00
DCCONSTRUCTIONS e6d5411bdd feat: qualify bounded K1 surface shadow 2026-07-26 01:06:04 +03:00
DCCONSTRUCTIONS 4c83e8a4e7 fix: preserve lidar review scroll 2026-07-26 00:52:50 +03:00
DCCONSTRUCTIONS 796b9306f9 feat: explain local surface residuals 2026-07-26 00:36:38 +03:00
DCCONSTRUCTIONS c6c48fbc38 feat: add local surface review triage 2026-07-26 00:11:42 +03:00
DCCONSTRUCTIONS 3449b2bc3e feat: qualify K1 local surface over time 2026-07-25 23:22:55 +03:00
DCCONSTRUCTIONS 04a658b218 feat: add passive K1 local surface replay 2026-07-25 22:47:12 +03:00
DCCONSTRUCTIONS cfe17e49bb docs: make K1 realtime map the primary lidar source 2026-07-25 22:20:13 +03:00
DCCONSTRUCTIONS d8b7ed4526 feat: publish full RELLIS qualification 2026-07-25 21:38:22 +03:00
DCCONSTRUCTIONS 21c7a5507c fix: distinguish admitted RELLIS previews from smoke 2026-07-25 21:26:02 +03:00
DCCONSTRUCTIONS 15821a1c98 fix: honor official RELLIS train sequence split 2026-07-25 21:20:13 +03:00
DCCONSTRUCTIONS 41e347d20a chore: pin observed RELLIS release archives 2026-07-25 21:16:33 +03:00
DCCONSTRUCTIONS 8446eb4492 chore: bound RELLIS qualification CLI output 2026-07-25 21:14:32 +03:00
DCCONSTRUCTIONS f2f044080f feat: qualify complete RELLIS ground dataset 2026-07-25 21:12:37 +03:00
DCCONSTRUCTIONS 054feec0d2 feat: add RELLIS dataset compatibility smoke 2026-07-25 20:45:30 +03:00
DCCONSTRUCTIONS 13c35ff446 fix(polygon): unify dataset review workflow 2026-07-25 19:54:22 +03:00
DCCONSTRUCTIONS e97573e221 fix(polygon): separate dataset sources from runs 2026-07-25 18:40:56 +03:00
DCCONSTRUCTIONS 2e5c4ba1c5 fix(polygon): focus runs on operator playback 2026-07-25 17:02:35 +03:00
DCCONSTRUCTIONS b037076506 feat(polygon): add full-frame operator review 2026-07-25 16:45:10 +03:00
DCCONSTRUCTIONS cea63f9a1e docs(lidar): record GOOSE qualification evidence 2026-07-25 16:19:07 +03:00
DCCONSTRUCTIONS d6decbe05c feat(polygon): qualify GOOSE ground providers 2026-07-25 16:02:20 +03:00
DCCONSTRUCTIONS 60ba64004b feat(lidar): qualify Patchwork++ on GOOSE 2026-07-25 15:22:28 +03:00
DCCONSTRUCTIONS 951b40c870 feat(lidar): admit and benchmark GOOSE baseline 2026-07-25 14:14:20 +03:00
DCCONSTRUCTIONS 881e97312b fix(control-station): align lidar viewer and expose polygon 2026-07-25 13:23:34 +03:00
DCCONSTRUCTIONS c01712c30d refactor(control-station): separate lidar diagnostics from datasets 2026-07-25 13:06:49 +03:00
DCCONSTRUCTIONS f57d64bf52 feat(lidar): add dataset gateway boundary 2026-07-25 11:21:22 +03:00
DCCONSTRUCTIONS 3333e9ac0f feat(lidar): add RAVNOVES field review 2026-07-25 10:26:07 +03:00
DCCONSTRUCTIONS 2dfb34ef21 feat(lidar): add point-aligned ground review 2026-07-25 09:44:38 +03:00
DCCONSTRUCTIONS 75a3e669d9 feat(lidar): add ground segmentation diagnostic benchmark 2026-07-25 02:09:27 +03:00
DCCONSTRUCTIONS e4fdd9fa20 feat(perception): add lossless lidar replay v2 2026-07-25 01:35:03 +03:00
DCCONSTRUCTIONS 3f549f91f1 feat(perception): qualify lidar evidence before models 2026-07-25 01:00:26 +03:00
DCCONSTRUCTIONS 37c24b5fa8 feat(simulation): add provider-neutral worker profile 2026-07-25 00:29:00 +03:00
DCCONSTRUCTIONS 5abd07d2bf fix(simulation): cache idle worker state 2026-07-24 23:27:51 +03:00
DCCONSTRUCTIONS bc61331604 docs(simulation): record Ackermann motion acceptance 2026-07-24 23:00:07 +03:00
DCCONSTRUCTIONS 49b0f47fea fix(simulation): tolerate cold ROS publisher startup 2026-07-24 22:51:21 +03:00
DCCONSTRUCTIONS 0fb2782f2d fix(simulation): admit cold PX4 rover startup 2026-07-24 22:47:48 +03:00
DCCONSTRUCTIONS 6ad1803aaa fix(simulation): use PX4 rover offboard control level 2026-07-24 22:40:44 +03:00
DCCONSTRUCTIONS 8ace0cd102 fix(simulation): rearm rover during active offboard run 2026-07-24 22:31:43 +03:00
DCCONSTRUCTIONS b9ce5f53a0 perf(simulation): fsync commands without replaying run history 2026-07-24 22:21:25 +03:00
DCCONSTRUCTIONS 8eecb8ed69 perf(simulation): keep rover command path within TTL 2026-07-24 22:14:56 +03:00
DCCONSTRUCTIONS a0e9597cb5 fix(simulation): source ROS setup outside nounset 2026-07-24 22:01:48 +03:00
DCCONSTRUCTIONS 97a3775acf fix(simulation): satisfy worker wrapper shell audit 2026-07-24 21:53:14 +03:00
DCCONSTRUCTIONS f63ed36913 docs(simulation): distinguish live control from archive 2026-07-24 21:51:27 +03:00
DCCONSTRUCTIONS 101707d54c feat(simulation): drive stock rover through PX4 offboard 2026-07-24 21:47:40 +03:00
DCCONSTRUCTIONS 53fd1e3bfc docs(simulation): accept worker-gated polygon ui 2026-07-24 21:29:55 +03:00
DCCONSTRUCTIONS 60e79160c9 fix(simulation): keep rover orbit above ground 2026-07-24 21:16:38 +03:00
DCCONSTRUCTIONS 17a0e7a7f5 fix(simulation): hide launcher panel for polygon 2026-07-24 21:13:17 +03:00
DCCONSTRUCTIONS ee7d1dd26c fix(simulation): open polygon as direct workspace 2026-07-24 21:10:37 +03:00
DCCONSTRUCTIONS 6cc40282e0 feat(simulation): add worker-gated 3d polygon workspace 2026-07-24 21:03:41 +03:00
DCCONSTRUCTIONS 1995dfdf68 docs(simulation): accept S1C live worker 2026-07-24 20:47:08 +03:00
DCCONSTRUCTIONS b7ccca3481 feat(simulation): add Polygon live worker gateway 2026-07-24 20:33:08 +03:00
DCCONSTRUCTIONS 359f0d1d39 docs: define distributed Mission Core topology 2026-07-24 19:40:59 +03:00
DCCONSTRUCTIONS b790f29d59 feat: add Polygon UI-0 run view 2026-07-24 19:02:10 +03:00
DCCONSTRUCTIONS a78c8c83f5 docs(simulation): accept S1B real provider lifecycle 2026-07-24 18:39:59 +03:00
DCCONSTRUCTIONS 6cb14954d4 fix(simulation): stabilize PX4 readiness supervision 2026-07-24 18:34:20 +03:00
DCCONSTRUCTIONS b4e3b3b735 fix(simulation): inspect namespace through netlink 2026-07-24 18:29:52 +03:00
DCCONSTRUCTIONS 01ec12263a feat(simulation): qualify real S1B provider lifecycle 2026-07-24 18:26:43 +03:00
DCCONSTRUCTIONS e1809ac9e1 docs(simulation): record S1 target bootstrap and UI gates 2026-07-24 18:04:11 +03:00
DCCONSTRUCTIONS 630d1ae819 feat(simulation): add S1 worker lifecycle ownership 2026-07-24 17:52:17 +03:00
DCCONSTRUCTIONS 12fba7126d fix(simulation): persist command authority provenance 2026-07-24 17:39:26 +03:00
DCCONSTRUCTIONS fc8c81dbc4 feat(simulation): add S1 qualification run repository 2026-07-24 17:37:55 +03:00
2362 changed files with 730565 additions and 8355 deletions
@@ -0,0 +1,260 @@
---
name: mission-core-product-ui
description: Design and enforce Mission Core product surfaces, information architecture, product UI, and laboratory presentation. Use for every new or relocated workspace, product root, navigation category, panel, viewer, Control Station surface, LAB catalog/summary, visualization control, fullscreen behavior, product-facing status, or UI refactor in NODEDC_MISSION_CORE, including work that could introduce a new component, page pattern, or task-specific composition.
---
# Mission Core product UI
## Required context
Before changing UI:
1. Read the repository `AGENTS.md`.
2. Read `docs/17_PRODUCT_UI_AND_LAB_PRESENTATION_CANON.md`.
3. Read `docs/18_APPLICATION_COMPONENT_ARCHITECTURE.md`.
4. For a new, relocated, or materially changed non-LAB surface, read
`docs/19_PRODUCT_SURFACE_EXTENSION_PROTOCOL.md`.
5. For LAB work, also read `docs/15_LABORATORY_RUN_CANON.md`.
6. Read the sibling Design Guideline:
- `registry/registry.json`
- `registry/components.json`
- `registry/icons.json`
- `docs/COMPONENTS.md`
- `docs/GOVERNANCE.md`
- the documentation for the affected page pattern or component.
Do not start implementation before resolving the required controls and icons in
the registries.
## Canonical local endpoint
- Keep the integrated Mission Core Control Station and API exclusively on
`http://127.0.0.1:8000`.
- Treat the canonical `8000` process as durable operator state, not as a
disposable QA process. Finishing a test, build, browser check, Codex turn, or
implementation increment never authorizes stopping it.
- At the start of every Control Station task, inspect `8000`. If it is not
serving Mission Core, start the canonical integrated service before UI work.
At handoff, verify it again and leave it running.
- A rebuild may replace the process on `8000`, but the replacement must be the
same canonical service and must be listening successfully before handoff.
Never leave the operator with a stopped Control Station after a restart.
- Never start a second integrated backend on an alternate port to bypass a
stale or occupied `8000`. In particular, TCP `8765` is a legacy Foxglove
regression port and is not an operator path.
- Before browser QA or product handoff, inspect listeners on `8000` and `8765`.
If the Mission Core process on `8000` is stale, restart that exact canonical
service instead of launching another instance.
- Use `5173` only for an explicitly requested Vite development session and
`4173` only for an explicitly requested production preview. Both must proxy
the API to `8000`; neither changes the canonical integrated endpoint.
- Finish with exactly one integrated Mission Core backend on `8000` and no
Mission Core backend on `8765`. Open or hand off `8000`, never an alternate
backend URL.
## Local workstation resource gate
- The local operator machine is a 14-inch 2023 MacBook Pro with only 18 GB of
physical memory. Its memory, swap, CPU, GPU, and thermal headroom are part of
the product-test safety boundary.
- Run memory-intensive work sequentially. Never overlap a full frontend test
pass, production build, Docker/Compose build or startup, synthetic replay,
and browser visual QA.
- Before starting a memory-intensive operation, inspect host memory pressure and
the active Docker/process workload. If memory pressure is elevated or swap is
growing, stop temporary work and recover headroom before continuing.
- Prefer focused tests and an existing valid build. Run the full suite and
production build only when they are required acceptance gates, one at a time.
- Do not start Docker Desktop, Compose stacks, duplicate application servers,
duplicate browser automation sessions, or load/stress tests for convenience.
Bounded load work belongs on Worker 006, not on the Mac.
- After each test, build, replay, or visual-QA stage, stop temporary watchers,
publishers, viewers, workers, and containers before starting the next heavy
stage. Preserve only the canonical integrated service on `8000` and other
explicitly required durable operator services.
- Do not change Docker Desktop CPU or memory limits without explicit product
owner approval. A configured Docker VM ceiling is not safe available host
memory.
## Component gate
- Reuse package exports from `@nodedc/ui-react`, `@nodedc/ui-core`,
`@nodedc/tokens`, and `@nodedc/page-patterns`.
- Do not create a local substitute for a button, icon button, segmented switch,
select, dropdown, glass surface, status, window, focus state, hover state, or
page pattern.
- Treat an absent generic visual entity as a product decision. Stop, describe
the user need and proposed generic API, and obtain explicit approval.
- After approval, implement the generic entity in the Design Guideline first,
including registry, documentation, interaction states, catalog example, and
validation. Consume it from Mission Core only afterward.
- Allow Mission Core domain renderers, data adapters, and domain layouts. Build
their controls from canonical exports.
Explicit approval for one entity does not authorize unrelated visual entities.
## Product surface design
Keep product grammar stable without forcing one layout:
- Reuse the canonical shell, controls, states, icons, focus, motion, and
responsive behavior.
- Never add decorative perimeter borders, outlines, inset rings, or persistent
edge strokes to Mission Core cards, panels, topology nodes, telemetry blocks,
task stages, or LAB content surfaces. Separate product hierarchy with
approved surface tones, spacing, typography, and elevation.
- Preserve canonical keyboard focus indicators and accessibility outlines from
the Design Guideline. The no-outline rule applies to decoration, never to
focus visibility, data-visualization grids, or a necessary structural
divider.
- Change composition when the operator job, primary entity, lifecycle, or
action model changes materially.
- Do not treat the LAB template as the default for non-LAB work.
- Choose the smallest complete surface: view mode, inspector/panel, floating
window, existing section, dedicated workspace, product root, plugin slot, or
LAB result.
Before adding or relocating a workspace or changing primary navigation:
1. State the operator job, trigger/frequency, primary entity/lifecycle,
evidence, authority, actions, and complete state grammar.
2. Compare at least two credible placements or compositions.
3. Resolve the Design Guideline primitives and page patterns.
4. Classify the novelty:
- domain content in an admitted composition;
- new Mission Core-specific composition;
- new shared Design Guideline entity/pattern;
- new product root or platform meaning.
5. Present the selected placement and rejected alternative with UX reasoning.
6. Obtain product-owner agreement for a new/relocated workspace, primary
navigation change, new root, or shared visual pattern.
7. Implement only after the decision; do not add placeholder product routes or
temporary navigation.
Valid task-specific compositions include scene-first, map-first,
timeline-first, list/detail queue, table/catalog, form/editor, graph/topology,
dashboard, and immutable LAB review.
## Application architecture
- Preserve `core → components/renderers → workspaces → composition/App`.
- Core owns contracts, adapters, state machines, and domain hooks. It must not
import visual adapters, workspaces, or App.
- Reusable components may consume Core and canonical UI exports. They must not
import workspaces or own product navigation.
- Add every new domain or LAB run as a bounded feature module. Do not append its
API adapter, renderer, selectors, or styles to `App.tsx`,
`Workspaces.tsx`, or `styles/workspaces.css`.
- Keep LAB composition under `workspaces/laboratory` and pass generic host
viewers through typed contracts.
- Treat `productModel.ts` as the application registry. Do not duplicate root,
workspace, icon, or capability lists in the shell.
- Do not introduce a runtime ontology merely to organize code. Use the typed
registry, executable contracts, and experimental vocabulary until the
multi-consumer admission gate in the architecture canon is met.
- Never raise an architecture line-count ratchet to fit a new feature. Split
the feature and retain the boundary test.
## Laboratory product contract
Use the executable template
`missioncore.laboratory-report/v1`:
`selectors → compact summary → evidence → result → optional reusable details`
For every new bounded `workspaces/laboratory/ENNResult.tsx`:
1. Pass typed values into `LaboratorySummary`; always supply `question`,
`approach`, `principalResult`, and `limitation`.
2. Put visual evidence in `LaboratoryEvidence`.
3. Pass result metrics and `proved`, `notProved`, and `decision` into
`LaboratoryResultSummary`.
4. Do not render the `laboratory-summary`, `laboratory-result-summary`,
`laboratory-result-metrics`, or `laboratory-result-conclusion` classes in the
LAB module.
5. Do not change slot order or shared report geometry for one run.
Treat a missing field as missing product evidence, not as permission to omit
the section. An admitted diagnostic viewer may own the result interaction only
when the existing canon explicitly identifies that viewer as the result
instrument.
Changing the v1 anatomy requires product-owner agreement, a new template
version, migration of every consumer, updated canon, and an updated
architecture test. Never drift v1 incrementally from a single LAB.
The compact summary must cover:
- decision question and purpose;
- immutable source and tested bounds;
- pipeline, execution class, models, algorithms, tools, and worker/runtime;
- experimental feature or configuration;
- principal result and limitation;
- retained authority.
Keep manifests, long hashes, implementation files, validation logs, regressions,
rejected approaches, and next-stage planning in the Mission Core Ops report.
Do not expose roadmap steps, next-gate checklists, internal reason taxonomies,
debug controls, placeholder blocks, or implementation scaffolding in product
UI.
## Evidence viewers
- Use one reusable viewer frame for related representations.
- Provide canonical expand/restore through `IconButton` and `Icon`.
- Provide mode switching through `SegmentedControl`.
- Preserve selected evidence and mode across resize.
- Use 3D for spatial shape, range, height, topology, support, and occupied
volume.
- Use 2D for camera-plane reprojection, bbox/mask agreement, calibration,
field-of-view, occlusion, and pixel correspondence.
- When both are useful, keep them as modes of the same viewer and share source
indices and selected case.
- Keep renderer colors semantic and token-derived. Never use them to invent
control states or persistent colored outlines.
## Ops report boundary
When the task includes reporting a completed LAB or architecture milestone, use
the direct `nodedc-ops-agent` tools and write titled structured blocks in this
order:
1. Objective and architecture stage.
2. Decision question and hypothesis.
3. Immutable source evidence and bounds.
4. Method, preprocessing, models, algorithms, tools, and identities.
5. Worker/runtime topology and resource policy.
6. Experimental implementation.
7. Validation and reproduced evidence.
8. Results.
9. Regressions, rejected approaches, and limitations.
10. Decision.
11. Next stage and forbidden authority.
12. Acceptance checker.
Do not turn the product UI into a duplicate Ops report.
## Validation
Before handoff:
1. Search the changed product UI for raw local controls, hard-coded product
colors, decorative perimeter borders/outlines, temporary copy,
gate/checklist UI, and per-LAB page branches. Justify every remaining
`border`, `outline`, or inset `box-shadow` as a canonical focus state,
data-visualization grid, or necessary structural divider.
2. Verify every changed or new bounded `ENNResult.tsx` uses
`LaboratorySummary`, `LaboratoryEvidence`, and `LaboratoryResultSummary`
without raw canonical report markup.
3. For a new surface, verify the product-surface brief names the user job,
selected placement, rejected alternative, state grammar, and real acceptance
evidence.
4. Under the local workstation resource gate, run
`test/applicationArchitecture.test.mjs`, then the full frontend typecheck,
unit tests, and production build sequentially. Never overlap these jobs.
5. After the build/test processes have exited and memory headroom is confirmed,
use the in-app browser to verify normal and expanded modes, every new view
mode, keyboard Escape, and the canonical control states.
6. Verify the default composition answers the primary operator question.
7. Leave a real evidence case open for product-owner review.
@@ -0,0 +1,4 @@
interface:
display_name: "Mission Core Product UI"
short_description: "Mission Core surfaces and LAB product architecture"
default_prompt: "Use $mission-core-product-ui to design or review a Mission Core product surface and its placement."
+161
View File
@@ -24,6 +24,33 @@ and the boundary between Mission Core and vendor-specific integration code.
- Do not install or alter Homebrew/system components unless the user explicitly
authorizes that concrete change.
## Local operator resource envelope
- The local operator machine is a 14-inch 2023 MacBook Pro with only 18 GB of
physical memory. Treat local memory and swap as a hard shared operational
limit, not as disposable build capacity.
- Run frontend tests, production builds, Docker builds, runtime startup, and
browser QA sequentially. Do not launch parallel heavy local jobs.
- Do not start Docker Desktop, a Compose stack, a second browser automation
session, or a full test/build pass merely for convenience. First prove that
the operation is necessary, prefer the narrowest focused check, and keep no
more than one memory-intensive validation job active at a time.
- Do not run load or stress tests on the Mac. Run bounded synthetic load only on
Worker 006, and remove every temporary process after the measurement.
- Use only the canonical Mission Core endpoint on port `8000`; do not start
duplicate application servers to work around stale state.
- Before a memory-intensive local operation, inspect current memory pressure and
active Docker workload. If memory pressure is elevated or swap is growing,
stop and remove temporary jobs before continuing. Prefer focused tests and
existing build artifacts when they are sufficient for acceptance.
- After every local test, build, replay, browser-QA, or Docker operation, stop
temporary workers, watchers, replay publishers, duplicate viewers, and
containers that are not durable operator state. Keep only the canonical
Mission Core service on `8000` and explicitly required operator services.
- Docker Desktop's configured VM ceiling is not evidence that the host can
safely supply that memory. Do not change Docker Desktop CPU or memory limits
without explicit owner approval.
## Evidence rules
- Reference inputs under `docs/reference/` are immutable; write corrections in
@@ -35,7 +62,141 @@ and the boundary between Mission Core and vendor-specific integration code.
- Synthetic or explicitly redacted fixtures may be committed under
`tests/fixtures/`.
## Insta360 and clean-host installation — owner requirement, 2026-09-08
- The current X4 starting point is USB enumeration only. SDK installation,
camera initialization and live video have not been accepted.
- Every Ubuntu change needed for Insta360 must execute through the shipped
installer or the application's versioned device-preparation workflow from
the first board experiment. Do not repair the board with an ad-hoc apt/pip
install, copied library, chmod, environment override, service edit or root
invocation and promise to package it later. Fix the product artifact first,
then rerun that artifact. Read-only engineering inspection remains allowed.
- Document every relevant action and its before/after evidence in
`docs/node/07_INSTA360_X4_INSTALLATION_LEDGER.md`; record the artifact version,
owning installer step, dependencies, idempotency, failure behavior and rollback.
Keep private logs/identifiers/media out of Git and redact their public summary.
- A working prepared Mini is not clean-Ubuntu acceptance. Qualify dependency
closure on the declared clean OS image and actual USB operation separately;
installer, preparation and GUI acceptance must use the same shipped code.
- X4 is operator live video and camera control (settings, photo, recording
start/stop and file access), per the owner’s subsequent scope expansion.
Preview and recording are separate operations. No stitching, AI, navigation
or vehicle-control integration is admitted. Model support and physical device instances are separate: several
cameras of the same model must retain independent identity and lifecycle.
- Follow the scoped implementation plan in
`docs/node/06_INSTA360_X4_AND_MULTI_CAMERA_PLAN.md`. It is a proposed plan,
not evidence that SDK compatibility, hardware capacity or installation passed.
- Subsequent owner direction: the existing Ubuntu Mini is the available build
and qualification machine; do not depend on Worker 006 or another host for
this X4 work. Its existing GCC may compile through a versioned build artifact
in bounded temporary staging. This is a build step, not runtime installation:
no system changes, SDK execution or camera access during compilation. The
final installer must carry the compiled payload so a clean operator Ubuntu
does not inherit an undeclared compiler/build-cache prerequisite. All board
staging/build/install/test actions remain documented and artifact-owned.
## Implementation order
Follow the gates in `docs/01_IMPLEMENTATION_PLAN.md`. Do not build heavy
decoders before BLE/Wi-Fi/data-session evidence exists.
## Docker runtime governance
- Every new or migrated durable NODE.DC-owned Docker container, Compose project,
network, named volume, and first-party image uses the lowercase `ndc-`
namespace. The prefix is mandatory for anything that may leave a laboratory
workstation; a legacy project/network name may survive only behind a bounded,
documented migration barrier.
- Do not retag or rename unrelated third-party runtime owned by another product.
Express NODE.DC ownership through the managed object name and
`com.nodedc.product`, `com.nodedc.stack`, `com.nodedc.role`, and
`com.nodedc.managed-by` labels.
- One operator-managed contour may be one Compose project while still using
separate single-purpose containers. Do not merge a broker, normalizer,
database, or application process into a multi-process container merely to
make Docker Desktop show one row.
- Treat Compose and worker orchestration declarations as the source of truth.
A live `docker rename` is allowed only as a bounded migration with exact
predecessor IDs, a persisted declaration change, rollback, and post-change
health acceptance.
- Keep bounded legacy-name fallback only for an explicit migration window.
New defaults, UI probes, runbooks, and durable runtime names must use `ndc-`.
## Product UI governance
- For every Control Station, LAB, viewer, or product-presentation change, use
`.codex/skills/mission-core-product-ui/SKILL.md` and follow
`docs/17_PRODUCT_UI_AND_LAB_PRESENTATION_CANON.md` and
`docs/18_APPLICATION_COMPONENT_ARCHITECTURE.md`.
- The integrated Control Station and API have one canonical local endpoint:
`http://127.0.0.1:8000`. Never start a second Mission Core backend on another
port to bypass a stale process. TCP `8765` is legacy Foxglove regression
only, not an operator path. Restart the canonical `8000` process and finish
with no Mission Core backend listening on `8765`.
- The canonical `8000` process is durable operator state. A completed test,
build, browser QA pass, Codex turn, or implementation increment never
authorizes stopping it. Every Control Station task starts by checking and, if
necessary, starting the integrated service; every handoff verifies and leaves
that exact service running on `8000`. A rebuild may replace it only when the
replacement is confirmed listening before handoff.
- `NODEDC_DESIGN_GUIDELINE` is the only visual-design source of truth. Before
editing UI, read its `registry/registry.json`, `registry/components.json`,
`registry/icons.json`, and the relevant component documentation.
- Reuse `@nodedc/ui-react`, `@nodedc/ui-core`, tokens, icons, and page patterns.
Do not create an application-local visual control, interaction state,
geometry, color language, or copy of a design-system component.
- If the required visual entity is absent from the Design Guideline, stop and
obtain explicit product-owner approval. After approval, add it to the Design
Guideline first with registry, documentation, states, and validation; only
then consume it here.
- Domain renderers may remain Mission Core code when they visualize Mission
Core data. Their controls and containing surfaces must still be composed from
canonical Design Guideline exports.
- Product UI must not expose implementation steps, roadmap gates, internal
reason taxonomies, debug controls, placeholder status blocks, or temporary
experiment scaffolding. Keep these in Ops, engineering reports, or developer
tooling.
- Extend one reusable application pattern instead of adding per-LAB layouts.
A new LAB supplies data and renderer configuration; it does not invent a new
page hierarchy or visual language.
- Do not generalize the LAB hierarchy into a universal application template.
For a new non-LAB interface, follow
`docs/19_PRODUCT_SURFACE_EXTENSION_PROTOCOL.md`: identify the operator job,
compare placement/composition alternatives, classify the novelty, and obtain
product-owner agreement before adding a workspace, changing primary
navigation, or introducing a new product root.
- Preserve one product grammar while allowing task-specific composition. A
scene, map, timeline, queue, editor, topology, dashboard, and LAB review may
have different layouts when their entity, lifecycle, or action model differs.
- Preserve the internal dependency direction:
`core → components/renderers → workspaces → composition/App`. Core never
imports workspaces or visual adapters; reusable components never import
workspaces. New domains and LAB runs get their own feature module instead of
growing `App.tsx`, `Workspaces.tsx`, or generic CSS buckets.
- Treat `productModel.ts`, executable versioned contracts, and the experimental
vocabulary as the current local semantic sources. Do not add a parallel
runtime ontology unless the admission conditions in
`docs/18_APPLICATION_COMPONENT_ARCHITECTURE.md` are met.
## Laboratory presentation and reporting
- Use one fixed laboratory presentation contract: selectors, one compact
canonical summary, admitted evidence viewer(s), result, and optional reusable
technical details.
- Keep `missioncore.laboratory-report/v1` executable: bounded `ENNResult.tsx`
modules supply all four `LaboratorySummary` brief fields and use
`LaboratoryResultSummary` for metrics plus proved/not-proved/decision. They
never own canonical summary/result markup. Anatomy changes require a new
version and product-owner agreement.
- The compact summary must explain the decision question, immutable source,
tested method/models/algorithms, experimental mode, principal result,
limitations, and retained authority. It is not the engineering report.
- The complete engineering report belongs in the Mission Core Ops card as
titled structured blocks: objective and architecture stage, source evidence,
method/models/algorithms, worker/runtime, implementation, validation,
results, regressions and limitations, decision, next stage, and acceptance
checker.
- Spatial evidence uses 3D by default. Image-space reprojection may be offered
as a 2D diagnostic mode inside the same reusable viewer. Primary evidence
viewers must provide the canonical expand/restore action.
+227 -11
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@@ -121,6 +121,85 @@ performance, direct worker transport and bounded live fan-out remain open. See
[ADR 0014](docs/adr/0014-bounded-external-perception-worker.md)
and the [external worker contract](docs/10_EXTERNAL_PERCEPTION_WORKER.md).
## LiDAR Dataset Gateway
Mission Core now distinguishes a single native LiDAR scan, a normalized
sensor-frame scan and a pose-registered rolling local map. The first Dataset
Gateway adapter reads GOOSE/SemanticKITTI XYZI plus point-wise semantic and
instance labels without silently accumulating or transforming them. Current
K1 `lio_pcl` remains a post-LIO vendor-map increment and is not promoted to a
raw scan. Large dataset bytes are admitted only on the Windows/WSL worker under
`D:\NDC_MISSIONCORE\datasets`; no archive is downloaded automatically.
That representation boundary does not reject K1 as the production starting
sensor. The passively received real-time `lio_pcl` plus `lio_pose` stream is
the primary K1 input for two separate derivatives: a short-TTL local world
model and a persistent territory reconstruction. `RAVNOVES00` is the immutable
private replay dataset for this work. No K1 firmware change, onboard exporter
or new device command is part of the LiDAR roadmap, and the historical
`1.27 m` handheld-height experiment is not a runtime constant.
The first passive replay derivative is now implemented as
`missioncore.k1-local-surface/v1`. It binds the immutable `RAVNOVES00` pack,
estimates a rolling local surface from map points plus compatible pose, and
publishes height, slope, roughness, confidence and conservative observed
surface/occupied/unknown evidence. The complete pack contains `4,489` timeline
frames, `3,928` available/valid LiDAR frames and `9,207,270` points; there were
no stale-pose, insufficient-surface or fit-failed frames. Prior-only
next-frame qualification produced `3,927` samples with `0.04065 m` p50 median
residual and `205` strict temporal jumps. The p95 residual tail remains too
large for planner use. The current complete derivative is the first item in
**Парк → Диагностика LiDAR**.
The earlier content-bound `526`-frame review slice remains available as
historical laboratory evidence. Its deterministic triage contains `37`
attention frames in `21` episodes and four high-priority frames. The selected
frame can switch to the prior-plane residual view; source frame `1254` has
`36/98` evaluated cells above the `0.16 m` band and none below it. This
localizes a positive residual structure without naming an object or granting
safety authority.
The same estimator now runs behind
`missioncore.k1-local-surface-shadow-runtime/v1`, a capacity-two
latest-wins queue with a bounded diagnostic result ring. LAB E27 passed a
`14.995 s` RAVNOVES00 slice at recorded 1× pace: `143/143` available frames
were consumed, maximum queue depth was `1/2`, no frame was replaced, p95
processing latency was `14.777 ms`, and state, point classes, step candidates
and scalar results matched the immutable replay derivative exactly. This is a
recorded-source-paced execution gate only; physical K1 acquisition,
free-space, commands, navigation and safety authority remain unavailable.
The authenticated external-worker seam is now implemented and replay-qualified.
It binds decoded map-frame `lio_pcl` and `lio_pose` in either arrival order
through
`missioncore.k1-local-surface-pose-binder/v1`, then feeds the accepted estimator
without blocking camera cadence. Point input and estimator work are
bounded separately: the authenticated ingress has LiDAR depth eight, while the
freshness-first estimator remains capacity two. LAB E28 replayed the complete
recording at 1× through the actual NVIDIA worker: all `4,570` LiDAR and `4,598`
pose events arrived with zero gaps, all point frames bound, and `4,206`
results were persisted at `9.1945 Hz`. Explicitly superseded work was
`364/4,570` (`7.965%`), p95 result age was `89.530 ms`, and all acceptance
checks passed. Physical K1 acquisition remains a separate commissioning test;
it is not required for replay algorithm development.
The complete RELLIS-3D v1.1 release is now admitted there and its full
`2,413`-frame validation split is available in **Полигон → Датасеты**. The
sealed Current/Patchwork++ comparison rejected Patchwork++ for navigation:
despite much lower latency and a small Ground-IoU gain, obstacle non-ground
recall regressed from `80.46%` to `69.70%`.
Operator review of the later M4.8R3 LOW-STEP replay rejected its connected-
component camera boxes as the product representation for general static
obstacles. The replacement evaluation is terrain-relative and sequential:
GSeg3D plus Nav2 Ground Consistency first, TRAVEL as the class-free challenger,
and nvblox only as a separately measured occupancy/ESDF candidate. See the
[traversability and static-obstacle stack decision](docs/23_TRAVERSABILITY_AND_STATIC_OBSTACLE_STACK_DECISION.md).
See [the Dataset Gateway plan](docs/14_LIDAR_DATASET_GATEWAY.md),
[the laboratory run canon](docs/15_LABORATORY_RUN_CANON.md) and
[ADR 0021](docs/adr/0021-dataset-gateway-representation-boundary.md).
## Simulation Polygon
Mission Core now has a parallel Polygon product branch for reproducible
@@ -129,6 +208,15 @@ lifecycle, authority, canonical contracts, provenance and reports; Gazebo, PX4
SITL, ROS 2, Nav2 and viewers remain replaceable providers. Simulation, replay,
digital twin, HIL and physical shadow keep distinct causal run kinds.
The provider boundary is now executable through
`missioncore.simulation-provider-profile/v1`: worker status declares provider
roles/capabilities, clock, ENU/FLU frames and supported control profiles.
Gazebo/PX4 stays the accepted regression profile. Unreal is evaluated as a
separate high-fidelity provider family; native Unreal, CARLA and Project AirSim
must pass ADR 0017 U0 before a production adapter is selected. Unreal runs on a
worker, never inside React; the existing browser scene, lifecycle, evidence and
safety contracts are retained.
SIM S0 is accepted on the reviewed D-only worker. Its strict profile fixes
loopback-only process isolation, exact provider pins, a 2 ms physics step,
1×/2× RTF/resource budgets and disabled real/direct actuator authority. Two
@@ -142,18 +230,135 @@ uv run missioncore-sim s0 doctor \
--json
```
This accepts simulation infrastructure, not navigation behavior, safety
behavior, S1 command authority or real actuator control.
S1A now adds the first server-owned domain boundary: typed immutable
`QualificationRun` identities, legal lifecycle transitions, canonical
Ackermann/Differential commands, authority generation and TTL validation, and
an append-only crash-safe run/event/command/artifact repository. Active runs
recover as failed/interrupted rather than silently resuming, and reset creates
a new linked run/episode. This is repository-level lifecycle acceptance only;
PX4 command delivery, watchdog/failsafe behavior, navigation behavior and real
actuator control remain unaccepted.
The S1B repository increment adds the transport-neutral
`SimulationApplicationService`, an exact-S0/D-only worker admission guard and a
POSIX process supervisor. Start is idempotent, a second active owner is
rejected, provider processes receive dedicated PGIDs and run-scoped logs, and
shutdown follows the S0 dependency order with residue reported as failure.
Pause/resume/step/reset/stop are owned by the application service through a
worker port.
Commit `6cb1495` has now passed the real D-only `MissionCore-Sim` S1B lifecycle:
the exact immutable source generation started Micro XRCE-DDS Agent and the PX4
v1.17.0/Gazebo Harmonic stock Ackermann rover in a fresh loopback-only
namespace, admitted the run only after world/startup/DDS-writer health markers,
and stopped both owned PGIDs with zero residue. The persisted run reached
`completed`, contains eight lifecycle events and zero control commands. This
run is now visible through UI-0: a direct internal read-only Control Station
surface backed by the same append-only qualification repository. It exposes
identity, terminal reason, provider pins, events, command count, artifact
metadata and the virtual-only authority boundary. Live pause/resume/step/reset,
canonical telemetry, PX4 command mapping, watchdog/failsafe evidence and the
accepted command path remain gated.
S1C commit `b7ccca3` adds the first registered live-worker vertical without
collapsing that boundary. An unprivileged worker agent owns the existing
application service and providers inside a fresh loopback-only network
namespace. Mission Core reaches it through a mode-`0600` Unix socket; React
reaches only same-origin Polygon API routes. The live browser panel can
start/stop the stock rover and show worker/run/provider status. UI-2 commit
`60e7916` adds a worker-gated `Полигон` header root and a browser-native
Three.js Ackermann Rover scene with orbit, zoom, pan, follow and reset. The
deep-link remains for exact-run review; it is no longer the primary operator
entry. Gazebo dynamic-pose ground truth remains explicitly `diagnostic`, not
accepted PX4/ROS 2 telemetry.
The exact D-only UI-2 generation passed 35 target tests and a real UI-driven run
`s1c-60e7916-20260724t182006z-2f164e`: both providers reached readiness, the
browser received live `VehicleState`, the run reached `completed` after
27.74 seconds of Gazebo time, and shutdown left no PX4/Gazebo/XRCE process
residue. The run contained zero commands, so this result does not yet prove
rover motion, PX4 command delivery, watchdog/failsafe behavior, navigation or
safety acceptance.
S1D exact code generation `49b0f47` closes the first virtual Ackermann command
and motion slice. React sends bounded speed/steering intents through the
same-origin Mission Core API and private worker socket. The worker journals each
accepted command before mapping it to PX4 rover-level Offboard setpoints:
`RoverThrottleSetpoint` is calibrated against the stock model's
`RO_MAX_THR_SPEED=3.1`, `RoverSteeringSetpoint` carries normalized steering,
and PX4 retains arming, Offboard loss handling and control allocation. No
`ActuatorMotors` or `ActuatorServos` topic is exposed or published by Mission
Core.
The immutable D-only generation passed 40 focused target tests. Its first cold
start completed in one request after 32.08 seconds. Run
`s1c-49b0f47-20260724t195259z-62edd2` proved 3.74 m straight motion, a curved
turn, reverse motion, 44.6 ms sampled command admission, a 250 ms TTL transition
(`ttl_expired_count` 4 -> 5), stable stopped pose and clean provider shutdown
with no PX4/Gazebo/XRCE residue. This does not accept calibrated closed-loop
speed tracking, Differential Rover, canonical PX4/ROS 2 telemetry,
pause/step/reset, heartbeat/offboard/link-loss cases, Nav2, perception or safety
behavior. Real actuator authority remains false.
Start the worker from the exact immutable D source generation:
```bash
sudo simulation/s1/worker-agent.sh <exact-40-character-mission-core-commit>
```
Then configure the Mission Core backend. When the worker status is available,
open `Полигон` from the Control Station header:
```bash
export MISSIONCORE_POLYGON_RUNS_ROOT=/mnt/d/NDC_MISSIONCORE/simulation/artifacts/s1/runs
export MISSIONCORE_POLYGON_WORKER_SOCKET=/run/missioncore-sim/worker.sock
export MISSIONCORE_POLYGON_WORKER_CONTROL=internal-virtual-only
export MISSIONCORE_COMMIT=<exact-40-character-mission-core-commit>
uv run k1link serve
```
```text
http://127.0.0.1:8000/
```
The direct `?workspace=polygon-run&run=<qualification-run-id>` URL remains a
compatible evidence deep-link. The archive API remains GET-only. The worker API
adds status/live GETs and explicit start, command and stop POSTs; POSTs remain
`403` unless the backend has the `internal-virtual-only` gate and an exact
commit. Missing configuration, transport drift and corrupt evidence fail
closed. The browser receives no Unix socket, D root, artifact bytes, PX4
endpoint or direct provider command.
Do not launch a second integrated backend on another port when `8000` is
already occupied. Stop or restart the stale Mission Core process on `8000`.
TCP `8765` remains reserved for the legacy Foxglove regression module and is
not a Control Station operator path.
See the [Polygon product/SRS](docs/12_SIMULATION_POLYGON_PRODUCT_AND_SRS.md),
[ADR 0015](docs/adr/0015-simulation-polygon-qualification-boundary.md) and the
[SIM S0 worker runbook](docs/runbooks/SIM_S0_AI_WORKER.md).
[ADR 0015](docs/adr/0015-simulation-polygon-qualification-boundary.md),
[ADR 0016](docs/adr/0016-distributed-product-edge-and-worker-topology.md),
[ADR 0017](docs/adr/0017-provider-neutral-simulation-and-unreal-evaluation.md)
and the
[SIM S0 worker runbook](docs/runbooks/SIM_S0_AI_WORKER.md). The live-worker
launch and acceptance procedure is in
[SIM S1C live-worker runbook](docs/runbooks/SIM_S1C_LIVE_WORKER.md).
Mission Core remains a distributed browser product rather than a
platform-specific desktop executable. React runs in the operator browser;
Gateway/API and Control Plane run as long-lived services; Gazebo/PX4/ROS 2/Nav2
run headless on a registered simulation worker; and a future field vehicle runs
a headless onboard Linux Edge Agent with local-first evidence and
store-and-forward synchronization. Native Gazebo GUI is worker-local
diagnostics. The accepted live rover scene uses canonical state in Three.js;
Rerun remains the recorded spatial-evidence path. Field execution never depends
on streaming a simulator desktop.
## Mission Core Control Station and visualization adapters
The browser application is the universal Mission Core Control Station rather than
a K1-specific Foxglove launcher. Its fixed shell contains six architectural
sections — Center, Fleet, Observation, Missions, Data and System — while the K1
a K1-specific Foxglove launcher. Its fixed shell contains Center, Fleet,
Observation, Missions, Data and System; a seventh Polygon section is inserted
only while an admitted Simulation Worker is available. The K1
BLE/Wi-Fi/live workflow remains isolated as the first real device adapter. Its
React provisioning, acquisition/replay and diagnostic blocks live beside the
plugin manifest under `plugins/xgrids-k1/frontend`; the generic application
@@ -185,8 +390,9 @@ telemetry and the stop action. Operator-manual acquisition still finalizes only
local reception; plugin-commanded v0.5.0 acquisition uses the separately gated
canonical K1 START/STOP dialogue.
Plugin v0.6.0 makes the local connection direction explicit. Bridge remains the
default and accepted product path; Direct Connect sends the reviewed station
Plugin v0.7.0 supervises the v0.6.0 local connection matrix with separate
desired, configured and active modes plus exact DeviceInfo-backed Ready.
Bridge remains the default and accepted product path; Direct Connect sends the reviewed station
provisioning frame for an already-running controller hotspot. Quick Connect
sends one separately reviewed AP-enable frame and can associate a prepared Mac
through CoreWLAN. Its device activation and prepared-host association were
@@ -247,9 +453,11 @@ standalone release install. The frontend consumes sibling `file:` packages from
revision or content hash. Publishing/vendoring those packages or enforcing an
immutable donor revision remains a packaging and CI prerequisite.
Polygon is planned as a seventh section, but UI delivery is gated on the
accepted clock/frame/authority contracts and a proven S1 backend lifecycle with
persisted run history. It is not present in the current shell.
Polygon is implemented as a capability-gated seventh section. When Mission Core
confirms an admitted Simulation Worker, its header button opens one direct
workspace with live 3D inspection and the server-owned qualification
repository. `?workspace=polygon-run[&run=<id>]` remains a compatibility
deep-link. Command and safety acceptance remain separate gates.
The Observation spatial workspace embeds the open-source Rerun Web Viewer
inside the Mission Core shell. It can open a compatible RRD over same-origin
@@ -362,6 +570,11 @@ present.
- [Technical audit](docs/00_TECHNICAL_AUDIT.md)
- [Implementation gates](docs/01_IMPLEMENTATION_PLAN.md)
- [Architecture audit execution roadmap](docs/16_ARCHITECTURE_AUDIT_EXECUTION_ROADMAP.md)
- [Laboratory run canon](docs/15_LABORATORY_RUN_CANON.md)
- [Product UI and laboratory presentation canon](docs/17_PRODUCT_UI_AND_LAB_PRESENTATION_CANON.md)
- [Application component architecture](docs/18_APPLICATION_COMPONENT_ARCHITECTURE.md)
- [Product surface extension protocol](docs/19_PRODUCT_SURFACE_EXTENSION_PROTOCOL.md)
- [First lab runbook](docs/02_FIRST_LAB_RUNBOOK.md)
- [Artifact and secret policy](docs/03_ARTIFACT_POLICY.md)
- [Reviewed BLE Wi-Fi profile](docs/04_K1_WIFI_PROVISIONING_PROFILE.md)
@@ -382,6 +595,9 @@ present.
- [Plugin-owned frontend device workflows](docs/adr/0010-plugin-owned-frontend-device-workflows.md)
- [Laboratory plugin runtime handshake and transport seam](docs/adr/0011-laboratory-plugin-runtime-handshake-and-transport-seam.md)
- [Device-bound K1 command authority](docs/adr/0012-device-bound-k1-command-authority.md)
- [Simulation Polygon qualification boundary](docs/adr/0015-simulation-polygon-qualification-boundary.md)
- [Distributed product, edge and worker topology](docs/adr/0016-distributed-product-edge-and-worker-topology.md)
- [Sensor representation capabilities and free-space admission](docs/adr/0023-sensor-representation-capabilities-and-free-space-admission.md)
- [Redacted live lab report](docs/lab/001_K1_LIVE_MQTT_20260715.redacted.md)
- [Canonical control and durable archive milestone](docs/lab/004_K1_CANONICAL_CONTROL_ARCHIVE_20260719.redacted.md)
- [Session manifest schema](schemas/session-manifest.schema.json)
+11 -8
View File
@@ -102,12 +102,13 @@ revisioned API. Смена 2D/3D/карты и семантические сло
| Раздел | Назначение |
| --- | --- |
| Центр | Оперативный обзор, состояние контура и активность оператора. |
| Центр | Живое состояние вычислительных узлов, процессов, сети и подключённых устройств. |
| Парк | Аппараты, текущее устройство, сенсоры и конфигурации борта. |
| Наблюдение | Пространственная сцена, камеры, карта, объекты, телеметрия и время. |
| Наблюдение | Только live-пространственная сцена, камеры, карта, объекты, телеметрия и время. |
| Миссии | Планировщик, маршруты, сценарии и исполнение. Командный backend отключён. |
| Данные | Сессии, потоки, сущности, playback и экспорт доказательств. |
| Данные | Сохранённые сессии, replay, публичные датасеты, потоки, сущности и экспорт. |
| Система | Модули, интеграции, сеть, аудит и настройки платформы. |
| Тестировочный контур | Архив лабораторных работ, конфигурации экспериментов и визуальные результаты. |
Карточки возможностей имеют четыре честных уровня: работает сейчас, готово к
источнику, интерфейсный контракт и последующий этап. Каталог не следует читать
@@ -192,7 +193,7 @@ production-сборки запускается командой `npm run preview
только после реальных сообщений.
11. Физически остановить K1, дождаться steady green, затем остановить локальный
приём из device workflow или spatial block, чтобы запечатать evidence.
12. После нормального stop или recovery открыть **Сохранённые сессии**. Дождаться
12. После нормального stop или recovery открыть **Данные → Сессии и записи**. Дождаться
состояния **Готово**, выбрать запись и использовать host timeline. Evidence
сохраняется автоматически; disk action сохраняет только workspace layout.
@@ -320,10 +321,12 @@ facts и старые presentation-поля `phase`, `message`, `devices`,
активным между сессиями; для его закрытия нужно остановить `k1link serve`.
- Пароль Wi-Fi находится только в React memory, передаётся в JSON POST body,
очищается после успешного ответа и не сохраняется в URL/local storage.
- Bridge и Direct Connect выполняют только отдельно рассмотренную provisioning-
запись; Quick Connect не пишет в GATT и передаёт пароль короткоживущему
CoreWLAN helper только через stdin. Случайные GATT writes и автоматические
повторы запрещены.
- Bridge и Direct Connect выполняют только отдельно рассмотренную 99-байтную
provisioning-запись. Quick Connect выполняет отдельную рассмотренную
100-байтную AP-enable запись и после AP-ready допускает ровно одну системную
ассоциацию с заранее материализованным exact-firmware профилем. Пароль не
попадает в браузер/API/argv; системный Wi-Fi Keychain, post-write prompt и
автоматические повторы запрещены.
- MQTT data live/replay остаётся subscribe-only. Команды изолированы в
plugin-owned canonical control session и доступны только через отдельные
operator-present UI checkpoints.
+120 -9
View File
@@ -7,20 +7,25 @@
"": {
"name": "@nodedc/mission-core-control-station",
"version": "0.1.0",
"hasInstallScript": true,
"dependencies": {
"@noble/hashes": "^2.2.0",
"@nodedc/map-cesium-react": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/map-cesium-react",
"@nodedc/page-patterns": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/page-patterns",
"@nodedc/tokens": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/tokens",
"@nodedc/ui-core": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/ui-core",
"@nodedc/ui-react": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/ui-react",
"@rerun-io/web-viewer": "0.34.1",
"@rerun-io/web-viewer": "0.36.3",
"meshoptimizer": "1.1.1",
"playcanvas": "2.21.4",
"react": "^19.1.0",
"react-dom": "^19.1.0"
"react-dom": "^19.1.0",
"three": "0.185.1"
},
"devDependencies": {
"@types/node": "^24.0.0",
"@types/react": "^19.1.0",
"@types/react-dom": "^19.1.0",
"@types/three": "0.185.1",
"@vitejs/plugin-react": "^4.6.0",
"typescript": "^5.8.3",
"vite": "^7.0.0",
@@ -30,25 +35,43 @@
"node": "^20.19.0 || >=22.12.0"
}
},
"../../../NODEDC_DESIGN_GUIDELINE/packages/map-cesium-react": {
"name": "@nodedc/map-cesium-react",
"version": "0.1.0",
"dependencies": {
"cesium": "1.143.0"
},
"devDependencies": {
"@types/react": "^19.1.0",
"react": "^19.1.0"
},
"peerDependencies": {
"react": ">=18"
}
},
"../../../NODEDC_DESIGN_GUIDELINE/packages/page-patterns": {
"name": "@nodedc/page-patterns",
"version": "0.1.0"
},
"../../../NODEDC_DESIGN_GUIDELINE/packages/tokens": {
"name": "@nodedc/tokens",
"version": "0.6.0"
},
"../../../NODEDC_DESIGN_GUIDELINE/packages/ui-core": {
"name": "@nodedc/ui-core",
"version": "0.6.0",
"version": "0.7.0",
"dependencies": {
"@nodedc/tokens": "0.6.0"
}
},
"../../../NODEDC_DESIGN_GUIDELINE/packages/ui-react": {
"name": "@nodedc/ui-react",
"version": "0.6.0",
"version": "0.7.0",
"dependencies": {
"@dnd-kit/core": "^6.3.1",
"@dnd-kit/sortable": "^10.0.0",
"@dnd-kit/utilities": "^3.2.2",
"@nodedc/ui-core": "0.6.0",
"@nodedc/ui-core": "0.7.0",
"lucide-react": "^0.468.0"
},
"devDependencies": {
@@ -344,6 +367,13 @@
"node": ">=6.9.0"
}
},
"node_modules/@dimforge/rapier3d-compat": {
"version": "0.12.0",
"resolved": "https://registry.npmjs.org/@dimforge/rapier3d-compat/-/rapier3d-compat-0.12.0.tgz",
"integrity": "sha512-uekIGetywIgopfD97oDL5PfeezkFpNhwlzlaEYNOA0N6ghdsOvh/HYjSMek5Q2O1PYvRSDFcqFVJl4r4ZBwOow==",
"dev": true,
"license": "Apache-2.0"
},
"node_modules/@esbuild/aix-ppc64": {
"version": "0.28.1",
"resolved": "https://registry.npmjs.org/@esbuild/aix-ppc64/-/aix-ppc64-0.28.1.tgz",
@@ -848,6 +878,14 @@
"url": "https://paulmillr.com/funding/"
}
},
"node_modules/@nodedc/map-cesium-react": {
"resolved": "../../../NODEDC_DESIGN_GUIDELINE/packages/map-cesium-react",
"link": true
},
"node_modules/@nodedc/page-patterns": {
"resolved": "../../../NODEDC_DESIGN_GUIDELINE/packages/page-patterns",
"link": true
},
"node_modules/@nodedc/tokens": {
"resolved": "../../../NODEDC_DESIGN_GUIDELINE/packages/tokens",
"link": true
@@ -861,9 +899,9 @@
"link": true
},
"node_modules/@rerun-io/web-viewer": {
"version": "0.34.1",
"resolved": "https://registry.npmjs.org/@rerun-io/web-viewer/-/web-viewer-0.34.1.tgz",
"integrity": "sha512-2Oq9Mw3qOs765XArGq4e/0pAIksPFKlAqkgo+PDsRkPd77/KdnQhb835suRmYQ6tuqlbPeVCFhlNIXT0+TjmTg==",
"version": "0.36.3",
"resolved": "https://registry.npmjs.org/@rerun-io/web-viewer/-/web-viewer-0.36.3.tgz",
"integrity": "sha512-LMGnsxRmY5UwiGras2dZrMnEYkow5Xr4v+1hAUSspXWPPiilMqoz9G77jo8Ps/deAaX81TnOq123DFO8iX/Ulw==",
"license": "MIT"
},
"node_modules/@rolldown/pluginutils": {
@@ -1223,6 +1261,13 @@
"win32"
]
},
"node_modules/@tweenjs/tween.js": {
"version": "23.1.3",
"resolved": "https://registry.npmjs.org/@tweenjs/tween.js/-/tween.js-23.1.3.tgz",
"integrity": "sha512-vJmvvwFxYuGnF2axRtPYocag6Clbb5YS7kLL+SO/TeVFzHqDIWrNKYtcsPMibjDx9O+bu+psAy9NKfWklassUA==",
"dev": true,
"license": "MIT"
},
"node_modules/@types/babel__core": {
"version": "7.20.5",
"resolved": "https://registry.npmjs.org/@types/babel__core/-/babel__core-7.20.5.tgz",
@@ -1305,6 +1350,34 @@
"@types/react": "^19.2.0"
}
},
"node_modules/@types/stats.js": {
"version": "0.17.4",
"resolved": "https://registry.npmjs.org/@types/stats.js/-/stats.js-0.17.4.tgz",
"integrity": "sha512-jIBvWWShCvlBqBNIZt0KAshWpvSjhkwkEu4ZUcASoAvhmrgAUI2t1dXrjSL4xXVLB4FznPrIsX3nKXFl/Dt4vA==",
"dev": true,
"license": "MIT"
},
"node_modules/@types/three": {
"version": "0.185.1",
"resolved": "https://registry.npmjs.org/@types/three/-/three-0.185.1.tgz",
"integrity": "sha512-db1xTb+EgYF2didW+eudSvVPtn75zo+fGsY8ShQrJY/B5ZBmC2Fiaykv3aImHAlCNEGuMPkPGXBJGLwzu5mC7A==",
"dev": true,
"license": "MIT",
"dependencies": {
"@dimforge/rapier3d-compat": "~0.12.0",
"@tweenjs/tween.js": "~23.1.3",
"@types/stats.js": "*",
"@types/webxr": ">=0.5.17",
"fflate": "~0.8.2",
"meshoptimizer": "~1.1.1"
}
},
"node_modules/@types/webxr": {
"version": "0.5.24",
"resolved": "https://registry.npmjs.org/@types/webxr/-/webxr-0.5.24.tgz",
"integrity": "sha512-h8fgEd/DpoS9CBrjEQXR+dIDraopAEfu4wYVNY2tEPwk60stPWhvZMf4Foo5FakuQ7HFZoa8WceaWFervK2Ovg==",
"license": "MIT"
},
"node_modules/@vitejs/plugin-react": {
"version": "4.7.0",
"resolved": "https://registry.npmjs.org/@vitejs/plugin-react/-/plugin-react-4.7.0.tgz",
@@ -1326,6 +1399,12 @@
"vite": "^4.2.0 || ^5.0.0 || ^6.0.0 || ^7.0.0"
}
},
"node_modules/@webgpu/types": {
"version": "0.1.72",
"resolved": "https://registry.npmjs.org/@webgpu/types/-/types-0.1.72.tgz",
"integrity": "sha512-0cF7RFM2edNoiIS1ODJp0/Gzv4/xSXhwoR0YCza+OWpJWtn4wmo9DvK91aLlH9+uUnwIriP7ZiC3WitmyhuzBw==",
"license": "BSD-3-Clause"
},
"node_modules/baseline-browser-mapping": {
"version": "2.10.43",
"resolved": "https://registry.npmjs.org/baseline-browser-mapping/-/baseline-browser-mapping-2.10.43.tgz",
@@ -1503,6 +1582,13 @@
}
}
},
"node_modules/fflate": {
"version": "0.8.3",
"resolved": "https://registry.npmjs.org/fflate/-/fflate-0.8.3.tgz",
"integrity": "sha512-tbZNuJrLwGUp3zshBtdy4W+ORxZuIh8a5ilyIEQDC5rY1f3U20JMry0Ll3WBzU58EZKsEuJFXhb5gwv8CsPvgA==",
"dev": true,
"license": "MIT"
},
"node_modules/fsevents": {
"version": "2.3.3",
"resolved": "https://registry.npmjs.org/fsevents/-/fsevents-2.3.3.tgz",
@@ -1571,6 +1657,12 @@
"yallist": "^3.0.2"
}
},
"node_modules/meshoptimizer": {
"version": "1.1.1",
"resolved": "https://registry.npmjs.org/meshoptimizer/-/meshoptimizer-1.1.1.tgz",
"integrity": "sha512-oRFNWJRDA/WTrVj7NWvqa5HqE1t9MYDj2VaWirQCzCCrAd2GHrqR/sQezCxiWATPNlKTcRaPRHPJwIRoPBAp5g==",
"license": "MIT"
},
"node_modules/ms": {
"version": "2.1.3",
"resolved": "https://registry.npmjs.org/ms/-/ms-2.1.3.tgz",
@@ -1627,6 +1719,19 @@
"url": "https://github.com/sponsors/jonschlinkert"
}
},
"node_modules/playcanvas": {
"version": "2.21.4",
"resolved": "https://registry.npmjs.org/playcanvas/-/playcanvas-2.21.4.tgz",
"integrity": "sha512-L4UGy3z/YT8AaNBEY4ITsZup548UFMabF7loh0YQ0DRwQLdjIW8grmZPoQ1+B83+N6sejRS0/XlXV2Vfb11+fw==",
"license": "MIT",
"dependencies": {
"@types/webxr": "^0.5.24",
"@webgpu/types": "^0.1.70"
},
"engines": {
"node": ">=18.3.0"
}
},
"node_modules/postcss": {
"version": "8.5.19",
"resolved": "https://registry.npmjs.org/postcss/-/postcss-8.5.19.tgz",
@@ -1758,6 +1863,12 @@
"node": ">=0.10.0"
}
},
"node_modules/three": {
"version": "0.185.1",
"resolved": "https://registry.npmjs.org/three/-/three-0.185.1.tgz",
"integrity": "sha512-5aojFCXKwnjBRZvUnt3WFfEcvUJgkN5LlijRFN95hMy8WVkG4I0QNcJE+OuWvuJ0bOdStrbfXn0pkd6/QyiAlg==",
"license": "MIT"
},
"node_modules/tinyglobby": {
"version": "0.2.17",
"resolved": "https://registry.npmjs.org/tinyglobby/-/tinyglobby-0.2.17.tgz",
+8 -3
View File
@@ -4,7 +4,6 @@
"private": true,
"type": "module",
"scripts": {
"postinstall": "node scripts/patch-rerun-web-viewer.mjs",
"dev": "vite",
"build": "tsc -b && vite build",
"preview": "vite preview",
@@ -13,17 +12,23 @@
},
"dependencies": {
"@noble/hashes": "^2.2.0",
"@nodedc/map-cesium-react": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/map-cesium-react",
"@nodedc/page-patterns": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/page-patterns",
"@nodedc/tokens": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/tokens",
"@nodedc/ui-core": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/ui-core",
"@nodedc/ui-react": "file:../../../NODEDC_DESIGN_GUIDELINE/packages/ui-react",
"@rerun-io/web-viewer": "0.34.1",
"@rerun-io/web-viewer": "0.36.3",
"meshoptimizer": "1.1.1",
"playcanvas": "2.21.4",
"react": "^19.1.0",
"react-dom": "^19.1.0"
"react-dom": "^19.1.0",
"three": "0.185.1"
},
"devDependencies": {
"@types/node": "^24.0.0",
"@types/react": "^19.1.0",
"@types/react-dom": "^19.1.0",
"@types/three": "0.185.1",
"@vitejs/plugin-react": "^4.6.0",
"typescript": "^5.8.3",
"vite": "^7.0.0",
@@ -0,0 +1,9 @@
# PlayCanvas Ammo runtime
- Source: `https://developer.playcanvas.com/assets/modules/ammo/ammo.wasm.js`
- Source: `https://developer.playcanvas.com/assets/modules/ammo/ammo.wasm.wasm`
- Retrieved: 2026-08-27
- `ammo.wasm.js`: 442459 bytes, SHA-256 `9b765569bce6993e781cd95d548c3711b119f355b512b25722e86a27d6ea8857`
- `ammo.wasm.wasm`: 747690 bytes, SHA-256 `a73b547ed4289aa174bf3424b14b3cb8addc7fe708cd2636d306b72880d6ad13`
The control station loads these pinned same-origin assets before constructing the PlayCanvas application so the rigid-body systems bind to the expected Ammo instance.
@@ -0,0 +1,921 @@
// This is ammo.js, a port of Bullet Physics to JavaScript. zlib licensed.
var Ammo = (() => {
var _scriptDir = typeof document !== 'undefined' && document.currentScript ? document.currentScript.src : undefined;
if (typeof __filename !== 'undefined') _scriptDir = _scriptDir || __filename;
return (
function(Ammo = {}) {
var b;b||(b=typeof Ammo !== 'undefined' ? Ammo : {});var aa,ba;b.ready=new Promise(function(a,c){aa=a;ba=c});var ca=Object.assign({},b),da="object"==typeof window,ea="function"==typeof importScripts,fa="object"==typeof process&&"object"==typeof process.versions&&"string"==typeof process.versions.node,ha="",ia,ja,ka;
if(fa){var fs=require("fs"),la=require("path");ha=ea?la.dirname(ha)+"/":__dirname+"/";ia=(a,c)=>{a=a.startsWith("file://")?new URL(a):la.normalize(a);return fs.readFileSync(a,c?void 0:"utf8")};ka=a=>{a=ia(a,!0);a.buffer||(a=new Uint8Array(a));return a};ja=(a,c,d)=>{a=a.startsWith("file://")?new URL(a):la.normalize(a);fs.readFile(a,function(e,g){e?d(e):c(g.buffer)})};1<process.argv.length&&process.argv[1].replace(/\\/g,"/");process.argv.slice(2);b.inspect=function(){return"[Emscripten Module object]"}}else if(da||
ea)ea?ha=self.location.href:"undefined"!=typeof document&&document.currentScript&&(ha=document.currentScript.src),_scriptDir&&(ha=_scriptDir),ha=0!==ha.indexOf("blob:")?ha.substr(0,ha.replace(/[?#].*/,"").lastIndexOf("/")+1):"",ia=a=>{var c=new XMLHttpRequest;c.open("GET",a,!1);c.send(null);return c.responseText},ea&&(ka=a=>{var c=new XMLHttpRequest;c.open("GET",a,!1);c.responseType="arraybuffer";c.send(null);return new Uint8Array(c.response)}),ja=(a,c,d)=>{var e=new XMLHttpRequest;e.open("GET",a,
!0);e.responseType="arraybuffer";e.onload=()=>{200==e.status||0==e.status&&e.response?c(e.response):d()};e.onerror=d;e.send(null)};b.print||console.log.bind(console);var ma=b.printErr||console.warn.bind(console);Object.assign(b,ca);ca=null;var na;b.wasmBinary&&(na=b.wasmBinary);var noExitRuntime=b.noExitRuntime||!0;"object"!=typeof WebAssembly&&oa("no native wasm support detected");var pa,qa=!1,ra="undefined"!=typeof TextDecoder?new TextDecoder("utf8"):void 0;
function sa(a,c){if(a){var d=ta,e=a+c;for(c=a;d[c]&&!(c>=e);)++c;if(16<c-a&&d.buffer&&ra)a=ra.decode(d.subarray(a,c));else{for(e="";a<c;){var g=d[a++];if(g&128){var n=d[a++]&63;if(192==(g&224))e+=String.fromCharCode((g&31)<<6|n);else{var z=d[a++]&63;g=224==(g&240)?(g&15)<<12|n<<6|z:(g&7)<<18|n<<12|z<<6|d[a++]&63;65536>g?e+=String.fromCharCode(g):(g-=65536,e+=String.fromCharCode(55296|g>>10,56320|g&1023))}}else e+=String.fromCharCode(g)}a=e}}else a="";return a}
var ua,ta,va,wa,xa,ya,za=[],Aa=[],Ba=[],Ca=!1;function Ea(){var a=b.preRun.shift();za.unshift(a)}var Fa=0,Ga=null,Ha=null;function oa(a){if(b.onAbort)b.onAbort(a);a="Aborted("+a+")";ma(a);qa=!0;a=new WebAssembly.RuntimeError(a+". Build with -sASSERTIONS for more info.");ba(a);throw a;}function Ia(a){return a.startsWith("data:application/octet-stream;base64,")}var Ja;Ja="ammo.wasm.wasm";if(!Ia(Ja)){var Ka=Ja;Ja=b.locateFile?b.locateFile(Ka,ha):ha+Ka}
function La(a){try{if(a==Ja&&na)return new Uint8Array(na);if(ka)return ka(a);throw"both async and sync fetching of the wasm failed";}catch(c){oa(c)}}
function Ma(a){if(!na&&(da||ea)){if("function"==typeof fetch&&!a.startsWith("file://"))return fetch(a,{credentials:"same-origin"}).then(function(c){if(!c.ok)throw"failed to load wasm binary file at '"+a+"'";return c.arrayBuffer()}).catch(function(){return La(a)});if(ja)return new Promise(function(c,d){ja(a,function(e){c(new Uint8Array(e))},d)})}return Promise.resolve().then(function(){return La(a)})}
function Na(a,c,d){return Ma(a).then(function(e){return WebAssembly.instantiate(e,c)}).then(function(e){return e}).then(d,function(e){ma("failed to asynchronously prepare wasm: "+e);oa(e)})}
function Oa(a,c){var d=Ja;return na||"function"!=typeof WebAssembly.instantiateStreaming||Ia(d)||d.startsWith("file://")||fa||"function"!=typeof fetch?Na(d,a,c):fetch(d,{credentials:"same-origin"}).then(function(e){return WebAssembly.instantiateStreaming(e,a).then(c,function(g){ma("wasm streaming compile failed: "+g);ma("falling back to ArrayBuffer instantiation");return Na(d,a,c)})})}
var Pa={27338:(a,c,d,e)=>{a=b.getCache(b.DebugDrawer)[a];if(!a.hasOwnProperty("drawLine"))throw"a JSImplementation must implement all functions, you forgot DebugDrawer::drawLine.";a.drawLine(c,d,e)},27558:(a,c,d,e,g,n)=>{a=b.getCache(b.DebugDrawer)[a];if(!a.hasOwnProperty("drawContactPoint"))throw"a JSImplementation must implement all functions, you forgot DebugDrawer::drawContactPoint.";a.drawContactPoint(c,d,e,g,n)},27808:(a,c)=>{a=b.getCache(b.DebugDrawer)[a];if(!a.hasOwnProperty("reportErrorWarning"))throw"a JSImplementation must implement all functions, you forgot DebugDrawer::reportErrorWarning.";
a.reportErrorWarning(c)},28052:(a,c,d)=>{a=b.getCache(b.DebugDrawer)[a];if(!a.hasOwnProperty("draw3dText"))throw"a JSImplementation must implement all functions, you forgot DebugDrawer::draw3dText.";a.draw3dText(c,d)},28275:(a,c)=>{a=b.getCache(b.DebugDrawer)[a];if(!a.hasOwnProperty("setDebugMode"))throw"a JSImplementation must implement all functions, you forgot DebugDrawer::setDebugMode.";a.setDebugMode(c)},28501:a=>{a=b.getCache(b.DebugDrawer)[a];if(!a.hasOwnProperty("getDebugMode"))throw"a JSImplementation must implement all functions, you forgot DebugDrawer::getDebugMode.";
return a.getDebugMode()},28732:(a,c)=>{a=b.getCache(b.MotionState)[a];if(!a.hasOwnProperty("getWorldTransform"))throw"a JSImplementation must implement all functions, you forgot MotionState::getWorldTransform.";a.getWorldTransform(c)},28973:(a,c)=>{a=b.getCache(b.MotionState)[a];if(!a.hasOwnProperty("setWorldTransform"))throw"a JSImplementation must implement all functions, you forgot MotionState::setWorldTransform.";a.setWorldTransform(c)},29214:(a,c,d,e,g,n,z,T)=>{a=b.getCache(b.ConcreteContactResultCallback)[a];
if(!a.hasOwnProperty("addSingleResult"))throw"a JSImplementation must implement all functions, you forgot ConcreteContactResultCallback::addSingleResult.";return a.addSingleResult(c,d,e,g,n,z,T)}};function Qa(a){for(;0<a.length;)a.shift()(b)}var Ra=[];function Sa(a,c,d){Ra.length=0;var e;for(d>>=2;e=ta[c++];)d+=105!=e&d,Ra.push(105==e?va[d]:xa[d++>>1]),++d;return Pa[a].apply(null,Ra)}
var Ta=[],Ua=void 0,Va=[],Wa={b:function(){oa("")},f:function(a,c,d){return Sa(a,c,d)},a:function(a,c,d){return Sa(a,c,d)},d:function(){return Date.now()},e:function(a,c,d){ta.copyWithin(a,c,c+d)},c:function(){oa("OOM")}};
(function(){function a(d){d=d.exports;b.asm=d;pa=b.asm.g;var e=pa.buffer;b.HEAP8=ua=new Int8Array(e);b.HEAP16=new Int16Array(e);b.HEAP32=va=new Int32Array(e);b.HEAPU8=ta=new Uint8Array(e);b.HEAPU16=new Uint16Array(e);b.HEAPU32=new Uint32Array(e);b.HEAPF32=wa=new Float32Array(e);b.HEAPF64=xa=new Float64Array(e);ya=b.asm.iB;Aa.unshift(b.asm.h);Fa--;b.monitorRunDependencies&&b.monitorRunDependencies(Fa);0==Fa&&(null!==Ga&&(clearInterval(Ga),Ga=null),Ha&&(e=Ha,Ha=null,e()));return d}var c={a:Wa};Fa++;
b.monitorRunDependencies&&b.monitorRunDependencies(Fa);if(b.instantiateWasm)try{return b.instantiateWasm(c,a)}catch(d){ma("Module.instantiateWasm callback failed with error: "+d),ba(d)}Oa(c,function(d){a(d.instance)}).catch(ba);return{}})();
var Xa=b._emscripten_bind_btCollisionShape_setLocalScaling_1=function(){return(Xa=b._emscripten_bind_btCollisionShape_setLocalScaling_1=b.asm.i).apply(null,arguments)},Ya=b._emscripten_bind_btCollisionShape_getLocalScaling_0=function(){return(Ya=b._emscripten_bind_btCollisionShape_getLocalScaling_0=b.asm.j).apply(null,arguments)},Za=b._emscripten_bind_btCollisionShape_calculateLocalInertia_2=function(){return(Za=b._emscripten_bind_btCollisionShape_calculateLocalInertia_2=b.asm.k).apply(null,arguments)},
$a=b._emscripten_bind_btCollisionShape_setMargin_1=function(){return($a=b._emscripten_bind_btCollisionShape_setMargin_1=b.asm.l).apply(null,arguments)},ab=b._emscripten_bind_btCollisionShape_getMargin_0=function(){return(ab=b._emscripten_bind_btCollisionShape_getMargin_0=b.asm.m).apply(null,arguments)},bb=b._emscripten_bind_btCollisionShape___destroy___0=function(){return(bb=b._emscripten_bind_btCollisionShape___destroy___0=b.asm.n).apply(null,arguments)},cb=b._emscripten_bind_btCollisionWorld_getDispatcher_0=
function(){return(cb=b._emscripten_bind_btCollisionWorld_getDispatcher_0=b.asm.o).apply(null,arguments)},db=b._emscripten_bind_btCollisionWorld_rayTest_3=function(){return(db=b._emscripten_bind_btCollisionWorld_rayTest_3=b.asm.p).apply(null,arguments)},eb=b._emscripten_bind_btCollisionWorld_getPairCache_0=function(){return(eb=b._emscripten_bind_btCollisionWorld_getPairCache_0=b.asm.q).apply(null,arguments)},fb=b._emscripten_bind_btCollisionWorld_getDispatchInfo_0=function(){return(fb=b._emscripten_bind_btCollisionWorld_getDispatchInfo_0=
b.asm.r).apply(null,arguments)},gb=b._emscripten_bind_btCollisionWorld_addCollisionObject_1=function(){return(gb=b._emscripten_bind_btCollisionWorld_addCollisionObject_1=b.asm.s).apply(null,arguments)},hb=b._emscripten_bind_btCollisionWorld_addCollisionObject_2=function(){return(hb=b._emscripten_bind_btCollisionWorld_addCollisionObject_2=b.asm.t).apply(null,arguments)},ib=b._emscripten_bind_btCollisionWorld_addCollisionObject_3=function(){return(ib=b._emscripten_bind_btCollisionWorld_addCollisionObject_3=
b.asm.u).apply(null,arguments)},jb=b._emscripten_bind_btCollisionWorld_removeCollisionObject_1=function(){return(jb=b._emscripten_bind_btCollisionWorld_removeCollisionObject_1=b.asm.v).apply(null,arguments)},kb=b._emscripten_bind_btCollisionWorld_getBroadphase_0=function(){return(kb=b._emscripten_bind_btCollisionWorld_getBroadphase_0=b.asm.w).apply(null,arguments)},lb=b._emscripten_bind_btCollisionWorld_convexSweepTest_5=function(){return(lb=b._emscripten_bind_btCollisionWorld_convexSweepTest_5=b.asm.x).apply(null,
arguments)},mb=b._emscripten_bind_btCollisionWorld_contactPairTest_3=function(){return(mb=b._emscripten_bind_btCollisionWorld_contactPairTest_3=b.asm.y).apply(null,arguments)},nb=b._emscripten_bind_btCollisionWorld_contactTest_2=function(){return(nb=b._emscripten_bind_btCollisionWorld_contactTest_2=b.asm.z).apply(null,arguments)},ob=b._emscripten_bind_btCollisionWorld_updateSingleAabb_1=function(){return(ob=b._emscripten_bind_btCollisionWorld_updateSingleAabb_1=b.asm.A).apply(null,arguments)},pb=
b._emscripten_bind_btCollisionWorld_setDebugDrawer_1=function(){return(pb=b._emscripten_bind_btCollisionWorld_setDebugDrawer_1=b.asm.B).apply(null,arguments)},qb=b._emscripten_bind_btCollisionWorld_getDebugDrawer_0=function(){return(qb=b._emscripten_bind_btCollisionWorld_getDebugDrawer_0=b.asm.C).apply(null,arguments)},rb=b._emscripten_bind_btCollisionWorld_debugDrawWorld_0=function(){return(rb=b._emscripten_bind_btCollisionWorld_debugDrawWorld_0=b.asm.D).apply(null,arguments)},sb=b._emscripten_bind_btCollisionWorld_debugDrawObject_3=
function(){return(sb=b._emscripten_bind_btCollisionWorld_debugDrawObject_3=b.asm.E).apply(null,arguments)},tb=b._emscripten_bind_btCollisionWorld___destroy___0=function(){return(tb=b._emscripten_bind_btCollisionWorld___destroy___0=b.asm.F).apply(null,arguments)},ub=b._emscripten_bind_btCollisionObject_setAnisotropicFriction_2=function(){return(ub=b._emscripten_bind_btCollisionObject_setAnisotropicFriction_2=b.asm.G).apply(null,arguments)},vb=b._emscripten_bind_btCollisionObject_getCollisionShape_0=
function(){return(vb=b._emscripten_bind_btCollisionObject_getCollisionShape_0=b.asm.H).apply(null,arguments)},wb=b._emscripten_bind_btCollisionObject_setContactProcessingThreshold_1=function(){return(wb=b._emscripten_bind_btCollisionObject_setContactProcessingThreshold_1=b.asm.I).apply(null,arguments)},xb=b._emscripten_bind_btCollisionObject_setActivationState_1=function(){return(xb=b._emscripten_bind_btCollisionObject_setActivationState_1=b.asm.J).apply(null,arguments)},yb=b._emscripten_bind_btCollisionObject_forceActivationState_1=
function(){return(yb=b._emscripten_bind_btCollisionObject_forceActivationState_1=b.asm.K).apply(null,arguments)},zb=b._emscripten_bind_btCollisionObject_activate_0=function(){return(zb=b._emscripten_bind_btCollisionObject_activate_0=b.asm.L).apply(null,arguments)},Ab=b._emscripten_bind_btCollisionObject_activate_1=function(){return(Ab=b._emscripten_bind_btCollisionObject_activate_1=b.asm.M).apply(null,arguments)},Bb=b._emscripten_bind_btCollisionObject_isActive_0=function(){return(Bb=b._emscripten_bind_btCollisionObject_isActive_0=
b.asm.N).apply(null,arguments)},Cb=b._emscripten_bind_btCollisionObject_isKinematicObject_0=function(){return(Cb=b._emscripten_bind_btCollisionObject_isKinematicObject_0=b.asm.O).apply(null,arguments)},Db=b._emscripten_bind_btCollisionObject_isStaticObject_0=function(){return(Db=b._emscripten_bind_btCollisionObject_isStaticObject_0=b.asm.P).apply(null,arguments)},Eb=b._emscripten_bind_btCollisionObject_isStaticOrKinematicObject_0=function(){return(Eb=b._emscripten_bind_btCollisionObject_isStaticOrKinematicObject_0=
b.asm.Q).apply(null,arguments)},Fb=b._emscripten_bind_btCollisionObject_getRestitution_0=function(){return(Fb=b._emscripten_bind_btCollisionObject_getRestitution_0=b.asm.R).apply(null,arguments)},Gb=b._emscripten_bind_btCollisionObject_getFriction_0=function(){return(Gb=b._emscripten_bind_btCollisionObject_getFriction_0=b.asm.S).apply(null,arguments)},Hb=b._emscripten_bind_btCollisionObject_getRollingFriction_0=function(){return(Hb=b._emscripten_bind_btCollisionObject_getRollingFriction_0=b.asm.T).apply(null,
arguments)},Ib=b._emscripten_bind_btCollisionObject_setRestitution_1=function(){return(Ib=b._emscripten_bind_btCollisionObject_setRestitution_1=b.asm.U).apply(null,arguments)},Jb=b._emscripten_bind_btCollisionObject_setFriction_1=function(){return(Jb=b._emscripten_bind_btCollisionObject_setFriction_1=b.asm.V).apply(null,arguments)},Kb=b._emscripten_bind_btCollisionObject_setRollingFriction_1=function(){return(Kb=b._emscripten_bind_btCollisionObject_setRollingFriction_1=b.asm.W).apply(null,arguments)},
Lb=b._emscripten_bind_btCollisionObject_getWorldTransform_0=function(){return(Lb=b._emscripten_bind_btCollisionObject_getWorldTransform_0=b.asm.X).apply(null,arguments)},Mb=b._emscripten_bind_btCollisionObject_getCollisionFlags_0=function(){return(Mb=b._emscripten_bind_btCollisionObject_getCollisionFlags_0=b.asm.Y).apply(null,arguments)},Nb=b._emscripten_bind_btCollisionObject_setCollisionFlags_1=function(){return(Nb=b._emscripten_bind_btCollisionObject_setCollisionFlags_1=b.asm.Z).apply(null,arguments)},
Ob=b._emscripten_bind_btCollisionObject_setWorldTransform_1=function(){return(Ob=b._emscripten_bind_btCollisionObject_setWorldTransform_1=b.asm._).apply(null,arguments)},Pb=b._emscripten_bind_btCollisionObject_setCollisionShape_1=function(){return(Pb=b._emscripten_bind_btCollisionObject_setCollisionShape_1=b.asm.$).apply(null,arguments)},Qb=b._emscripten_bind_btCollisionObject_setCcdMotionThreshold_1=function(){return(Qb=b._emscripten_bind_btCollisionObject_setCcdMotionThreshold_1=b.asm.aa).apply(null,
arguments)},Rb=b._emscripten_bind_btCollisionObject_setCcdSweptSphereRadius_1=function(){return(Rb=b._emscripten_bind_btCollisionObject_setCcdSweptSphereRadius_1=b.asm.ba).apply(null,arguments)},Sb=b._emscripten_bind_btCollisionObject_getUserIndex_0=function(){return(Sb=b._emscripten_bind_btCollisionObject_getUserIndex_0=b.asm.ca).apply(null,arguments)},Tb=b._emscripten_bind_btCollisionObject_setUserIndex_1=function(){return(Tb=b._emscripten_bind_btCollisionObject_setUserIndex_1=b.asm.da).apply(null,
arguments)},Ub=b._emscripten_bind_btCollisionObject_getUserPointer_0=function(){return(Ub=b._emscripten_bind_btCollisionObject_getUserPointer_0=b.asm.ea).apply(null,arguments)},Vb=b._emscripten_bind_btCollisionObject_setUserPointer_1=function(){return(Vb=b._emscripten_bind_btCollisionObject_setUserPointer_1=b.asm.fa).apply(null,arguments)},Wb=b._emscripten_bind_btCollisionObject_getBroadphaseHandle_0=function(){return(Wb=b._emscripten_bind_btCollisionObject_getBroadphaseHandle_0=b.asm.ga).apply(null,
arguments)},Xb=b._emscripten_bind_btCollisionObject___destroy___0=function(){return(Xb=b._emscripten_bind_btCollisionObject___destroy___0=b.asm.ha).apply(null,arguments)},Yb=b._emscripten_bind_btConcaveShape_setLocalScaling_1=function(){return(Yb=b._emscripten_bind_btConcaveShape_setLocalScaling_1=b.asm.ia).apply(null,arguments)},Zb=b._emscripten_bind_btConcaveShape_getLocalScaling_0=function(){return(Zb=b._emscripten_bind_btConcaveShape_getLocalScaling_0=b.asm.ja).apply(null,arguments)},$b=b._emscripten_bind_btConcaveShape_calculateLocalInertia_2=
function(){return($b=b._emscripten_bind_btConcaveShape_calculateLocalInertia_2=b.asm.ka).apply(null,arguments)},ac=b._emscripten_bind_btConcaveShape___destroy___0=function(){return(ac=b._emscripten_bind_btConcaveShape___destroy___0=b.asm.la).apply(null,arguments)},bc=b._emscripten_bind_btCollisionAlgorithm___destroy___0=function(){return(bc=b._emscripten_bind_btCollisionAlgorithm___destroy___0=b.asm.ma).apply(null,arguments)},cc=b._emscripten_bind_btTypedConstraint_enableFeedback_1=function(){return(cc=
b._emscripten_bind_btTypedConstraint_enableFeedback_1=b.asm.na).apply(null,arguments)},ec=b._emscripten_bind_btTypedConstraint_getBreakingImpulseThreshold_0=function(){return(ec=b._emscripten_bind_btTypedConstraint_getBreakingImpulseThreshold_0=b.asm.oa).apply(null,arguments)},fc=b._emscripten_bind_btTypedConstraint_setBreakingImpulseThreshold_1=function(){return(fc=b._emscripten_bind_btTypedConstraint_setBreakingImpulseThreshold_1=b.asm.pa).apply(null,arguments)},gc=b._emscripten_bind_btTypedConstraint_getParam_2=
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function QD(a){if("string"===typeof a){for(var c=0,d=0;d<a.length;++d){var e=a.charCodeAt(d);127>=e?c++:2047>=e?c+=2:55296<=e&&57343>=e?(c+=4,++d):c+=3}c=Array(c+1);e=c.length;d=0;if(0<e){e=d+e-1;for(var g=0;g<a.length;++g){var n=a.charCodeAt(g);if(55296<=n&&57343>=n){var z=a.charCodeAt(++g);n=65536+((n&1023)<<10)|z&1023}if(127>=n){if(d>=e)break;c[d++]=n}else{if(2047>=n){if(d+1>=e)break;c[d++]=192|n>>6}else{if(65535>=n){if(d+2>=e)break;c[d++]=224|n>>12}else{if(d+3>=e)break;c[d++]=240|n>>18;c[d++]=
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l.prototype.getLocalScaling=function(){return k(Ya(this.kB),m)};l.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Za(d,a,c)};l.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$a(c,a)};l.prototype.getMargin=function(){return ab(this.kB)};l.prototype.__destroy__=function(){bb(this.kB)};function SD(){throw"cannot construct a btCollisionWorld, no constructor in IDL";}SD.prototype=Object.create(f.prototype);
SD.prototype.constructor=SD;SD.prototype.lB=SD;SD.mB={};b.btCollisionWorld=SD;SD.prototype.getDispatcher=function(){return k(cb(this.kB),TD)};SD.prototype.rayTest=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);db(e,a,c,d)};SD.prototype.getPairCache=function(){return k(eb(this.kB),UD)};SD.prototype.getDispatchInfo=function(){return k(fb(this.kB),p)};
SD.prototype.addCollisionObject=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?gb(e,a):void 0===d?hb(e,a,c):ib(e,a,c,d)};SD.prototype.removeCollisionObject=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jb(c,a)};SD.prototype.getBroadphase=function(){return k(kb(this.kB),VD)};
SD.prototype.convexSweepTest=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);lb(n,a,c,d,e,g)};SD.prototype.contactPairTest=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);mb(e,a,c,d)};
SD.prototype.contactTest=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);nb(d,a,c)};SD.prototype.updateSingleAabb=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ob(c,a)};SD.prototype.setDebugDrawer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pb(c,a)};SD.prototype.getDebugDrawer=function(){return k(qb(this.kB),WD)};SD.prototype.debugDrawWorld=function(){rb(this.kB)};
SD.prototype.debugDrawObject=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);sb(e,a,c,d)};SD.prototype.__destroy__=function(){tb(this.kB)};function q(){throw"cannot construct a btCollisionObject, no constructor in IDL";}q.prototype=Object.create(f.prototype);q.prototype.constructor=q;q.prototype.lB=q;q.mB={};b.btCollisionObject=q;
q.prototype.setAnisotropicFriction=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);ub(d,a,c)};q.prototype.getCollisionShape=function(){return k(vb(this.kB),l)};q.prototype.setContactProcessingThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);wb(c,a)};q.prototype.setActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xb(c,a)};
q.prototype.forceActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yb(c,a)};q.prototype.activate=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);void 0===a?zb(c):Ab(c,a)};q.prototype.isActive=function(){return!!Bb(this.kB)};q.prototype.isKinematicObject=function(){return!!Cb(this.kB)};q.prototype.isStaticObject=function(){return!!Db(this.kB)};q.prototype.isStaticOrKinematicObject=function(){return!!Eb(this.kB)};q.prototype.getRestitution=function(){return Fb(this.kB)};
q.prototype.getFriction=function(){return Gb(this.kB)};q.prototype.getRollingFriction=function(){return Hb(this.kB)};q.prototype.setRestitution=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ib(c,a)};q.prototype.setFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jb(c,a)};q.prototype.setRollingFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Kb(c,a)};q.prototype.getWorldTransform=function(){return k(Lb(this.kB),r)};q.prototype.getCollisionFlags=function(){return Mb(this.kB)};
q.prototype.setCollisionFlags=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Nb(c,a)};q.prototype.setWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ob(c,a)};q.prototype.setCollisionShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Pb(c,a)};q.prototype.setCcdMotionThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Qb(c,a)};q.prototype.setCcdSweptSphereRadius=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Rb(c,a)};
q.prototype.getUserIndex=function(){return Sb(this.kB)};q.prototype.setUserIndex=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Tb(c,a)};q.prototype.getUserPointer=function(){return k(Ub(this.kB),XD)};q.prototype.setUserPointer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vb(c,a)};q.prototype.getBroadphaseHandle=function(){return k(Wb(this.kB),YD)};q.prototype.__destroy__=function(){Xb(this.kB)};
function ZD(){throw"cannot construct a btConcaveShape, no constructor in IDL";}ZD.prototype=Object.create(l.prototype);ZD.prototype.constructor=ZD;ZD.prototype.lB=ZD;ZD.mB={};b.btConcaveShape=ZD;ZD.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Yb(c,a)};ZD.prototype.getLocalScaling=function(){return k(Zb(this.kB),m)};ZD.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);$b(d,a,c)};
ZD.prototype.__destroy__=function(){ac(this.kB)};function $D(){throw"cannot construct a btCollisionAlgorithm, no constructor in IDL";}$D.prototype=Object.create(f.prototype);$D.prototype.constructor=$D;$D.prototype.lB=$D;$D.mB={};b.btCollisionAlgorithm=$D;$D.prototype.__destroy__=function(){bc(this.kB)};function aE(){throw"cannot construct a btTypedConstraint, no constructor in IDL";}aE.prototype=Object.create(f.prototype);aE.prototype.constructor=aE;aE.prototype.lB=aE;aE.mB={};
b.btTypedConstraint=aE;aE.prototype.enableFeedback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);cc(c,a)};aE.prototype.getBreakingImpulseThreshold=function(){return ec(this.kB)};aE.prototype.setBreakingImpulseThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fc(c,a)};aE.prototype.getParam=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return gc(d,a,c)};
aE.prototype.setParam=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);hc(e,a,c,d)};aE.prototype.__destroy__=function(){ic(this.kB)};function bE(){throw"cannot construct a btDynamicsWorld, no constructor in IDL";}bE.prototype=Object.create(SD.prototype);bE.prototype.constructor=bE;bE.prototype.lB=bE;bE.mB={};b.btDynamicsWorld=bE;bE.prototype.addAction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jc(c,a)};
bE.prototype.removeAction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);kc(c,a)};bE.prototype.getSolverInfo=function(){return k(lc(this.kB),t)};bE.prototype.setInternalTickCallback=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?mc(e,a):void 0===d?nc(e,a,c):oc(e,a,c,d)};bE.prototype.getDispatcher=function(){return k(pc(this.kB),TD)};
bE.prototype.rayTest=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);qc(e,a,c,d)};bE.prototype.getPairCache=function(){return k(rc(this.kB),UD)};bE.prototype.getDispatchInfo=function(){return k(sc(this.kB),p)};
bE.prototype.addCollisionObject=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?tc(e,a):void 0===d?uc(e,a,c):vc(e,a,c,d)};bE.prototype.removeCollisionObject=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);wc(c,a)};bE.prototype.getBroadphase=function(){return k(xc(this.kB),VD)};
bE.prototype.convexSweepTest=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);yc(n,a,c,d,e,g)};bE.prototype.contactPairTest=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);zc(e,a,c,d)};
bE.prototype.contactTest=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Ac(d,a,c)};bE.prototype.updateSingleAabb=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Bc(c,a)};bE.prototype.setDebugDrawer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Cc(c,a)};bE.prototype.getDebugDrawer=function(){return k(Dc(this.kB),WD)};bE.prototype.debugDrawWorld=function(){Ec(this.kB)};
bE.prototype.debugDrawObject=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Fc(e,a,c,d)};bE.prototype.__destroy__=function(){Gc(this.kB)};function WD(){throw"cannot construct a btIDebugDraw, no constructor in IDL";}WD.prototype=Object.create(f.prototype);WD.prototype.constructor=WD;WD.prototype.lB=WD;WD.mB={};b.btIDebugDraw=WD;
WD.prototype.drawLine=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Hc(e,a,c,d)};WD.prototype.drawContactPoint=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);Ic(n,a,c,d,e,g)};
WD.prototype.reportErrorWarning=function(a){var c=this.kB;ND();a=a&&"object"===typeof a?a.kB:QD(a);Jc(c,a)};WD.prototype.draw3dText=function(a,c){var d=this.kB;ND();a&&"object"===typeof a&&(a=a.kB);c=c&&"object"===typeof c?c.kB:QD(c);Kc(d,a,c)};WD.prototype.setDebugMode=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Lc(c,a)};WD.prototype.getDebugMode=function(){return Mc(this.kB)};WD.prototype.__destroy__=function(){Nc(this.kB)};
function m(a,c,d){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);this.kB=void 0===a?Oc():void 0===c?_emscripten_bind_btVector3_btVector3_1(a):void 0===d?_emscripten_bind_btVector3_btVector3_2(a,c):Pc(a,c,d);h(m)[this.kB]=this}m.prototype=Object.create(f.prototype);m.prototype.constructor=m;m.prototype.lB=m;m.mB={};b.btVector3=m;m.prototype.length=m.prototype.length=function(){return Qc(this.kB)};m.prototype.x=m.prototype.x=function(){return Rc(this.kB)};
m.prototype.y=m.prototype.y=function(){return Sc(this.kB)};m.prototype.z=m.prototype.z=function(){return Tc(this.kB)};m.prototype.setX=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Uc(c,a)};m.prototype.setY=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vc(c,a)};m.prototype.setZ=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Wc(c,a)};
m.prototype.setValue=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Xc(e,a,c,d)};m.prototype.normalize=m.prototype.normalize=function(){Yc(this.kB)};m.prototype.rotate=m.prototype.rotate=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return k(Zc(d,a,c),m)};m.prototype.dot=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return $c(c,a)};
m.prototype.op_mul=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(ad(c,a),m)};m.prototype.op_add=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(bd(c,a),m)};m.prototype.op_sub=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(cd(c,a),m)};m.prototype.__destroy__=function(){dd(this.kB)};function cE(){throw"cannot construct a btQuadWord, no constructor in IDL";}cE.prototype=Object.create(f.prototype);cE.prototype.constructor=cE;
cE.prototype.lB=cE;cE.mB={};b.btQuadWord=cE;cE.prototype.x=cE.prototype.x=function(){return ed(this.kB)};cE.prototype.y=cE.prototype.y=function(){return fd(this.kB)};cE.prototype.z=cE.prototype.z=function(){return gd(this.kB)};cE.prototype.w=cE.prototype.w=function(){return hd(this.kB)};cE.prototype.setX=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jd(c,a)};cE.prototype.setY=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);kd(c,a)};
cE.prototype.setZ=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ld(c,a)};cE.prototype.setW=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);md(c,a)};cE.prototype.__destroy__=function(){nd(this.kB)};function dE(){throw"cannot construct a btMotionState, no constructor in IDL";}dE.prototype=Object.create(f.prototype);dE.prototype.constructor=dE;dE.prototype.lB=dE;dE.mB={};b.btMotionState=dE;
dE.prototype.getWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);od(c,a)};dE.prototype.setWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pd(c,a)};dE.prototype.__destroy__=function(){qd(this.kB)};function u(){throw"cannot construct a RayResultCallback, no constructor in IDL";}u.prototype=Object.create(f.prototype);u.prototype.constructor=u;u.prototype.lB=u;u.mB={};b.RayResultCallback=u;u.prototype.hasHit=function(){return!!rd(this.kB)};
u.prototype.get_m_collisionFilterGroup=u.prototype.nB=function(){return sd(this.kB)};u.prototype.set_m_collisionFilterGroup=u.prototype.pB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);td(c,a)};Object.defineProperty(u.prototype,"m_collisionFilterGroup",{get:u.prototype.nB,set:u.prototype.pB});u.prototype.get_m_collisionFilterMask=u.prototype.oB=function(){return ud(this.kB)};
u.prototype.set_m_collisionFilterMask=u.prototype.qB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vd(c,a)};Object.defineProperty(u.prototype,"m_collisionFilterMask",{get:u.prototype.oB,set:u.prototype.qB});u.prototype.get_m_closestHitFraction=u.prototype.rB=function(){return wd(this.kB)};u.prototype.set_m_closestHitFraction=u.prototype.sB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xd(c,a)};Object.defineProperty(u.prototype,"m_closestHitFraction",{get:u.prototype.rB,set:u.prototype.sB});
u.prototype.get_m_collisionObject=u.prototype.vB=function(){return k(yd(this.kB),q)};u.prototype.set_m_collisionObject=u.prototype.CB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zd(c,a)};Object.defineProperty(u.prototype,"m_collisionObject",{get:u.prototype.vB,set:u.prototype.CB});u.prototype.get_m_flags=u.prototype.tB=function(){return Ad(this.kB)};u.prototype.set_m_flags=u.prototype.uB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Bd(c,a)};
Object.defineProperty(u.prototype,"m_flags",{get:u.prototype.tB,set:u.prototype.uB});u.prototype.__destroy__=function(){Cd(this.kB)};function eE(){throw"cannot construct a ContactResultCallback, no constructor in IDL";}eE.prototype=Object.create(f.prototype);eE.prototype.constructor=eE;eE.prototype.lB=eE;eE.mB={};b.ContactResultCallback=eE;
eE.prototype.addSingleResult=function(a,c,d,e,g,n,z){var T=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);n&&"object"===typeof n&&(n=n.kB);z&&"object"===typeof z&&(z=z.kB);return Dd(T,a,c,d,e,g,n,z)};eE.prototype.__destroy__=function(){Ed(this.kB)};function v(){throw"cannot construct a ConvexResultCallback, no constructor in IDL";}v.prototype=Object.create(f.prototype);
v.prototype.constructor=v;v.prototype.lB=v;v.mB={};b.ConvexResultCallback=v;v.prototype.hasHit=function(){return!!Fd(this.kB)};v.prototype.get_m_collisionFilterGroup=v.prototype.nB=function(){return Gd(this.kB)};v.prototype.set_m_collisionFilterGroup=v.prototype.pB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Hd(c,a)};Object.defineProperty(v.prototype,"m_collisionFilterGroup",{get:v.prototype.nB,set:v.prototype.pB});v.prototype.get_m_collisionFilterMask=v.prototype.oB=function(){return Id(this.kB)};
v.prototype.set_m_collisionFilterMask=v.prototype.qB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jd(c,a)};Object.defineProperty(v.prototype,"m_collisionFilterMask",{get:v.prototype.oB,set:v.prototype.qB});v.prototype.get_m_closestHitFraction=v.prototype.rB=function(){return Kd(this.kB)};v.prototype.set_m_closestHitFraction=v.prototype.sB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ld(c,a)};Object.defineProperty(v.prototype,"m_closestHitFraction",{get:v.prototype.rB,set:v.prototype.sB});
v.prototype.__destroy__=function(){Md(this.kB)};function fE(){throw"cannot construct a btConvexShape, no constructor in IDL";}fE.prototype=Object.create(l.prototype);fE.prototype.constructor=fE;fE.prototype.lB=fE;fE.mB={};b.btConvexShape=fE;fE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Nd(c,a)};fE.prototype.getLocalScaling=function(){return k(Od(this.kB),m)};
fE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Pd(d,a,c)};fE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Qd(c,a)};fE.prototype.getMargin=function(){return Rd(this.kB)};fE.prototype.__destroy__=function(){Sd(this.kB)};function gE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=Td(a,c);h(gE)[this.kB]=this}gE.prototype=Object.create(l.prototype);
gE.prototype.constructor=gE;gE.prototype.lB=gE;gE.mB={};b.btCapsuleShape=gE;gE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ud(c,a)};gE.prototype.getMargin=function(){return Vd(this.kB)};gE.prototype.getUpAxis=function(){return Wd(this.kB)};gE.prototype.getRadius=function(){return Xd(this.kB)};gE.prototype.getHalfHeight=function(){return Yd(this.kB)};gE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Zd(c,a)};
gE.prototype.getLocalScaling=function(){return k($d(this.kB),m)};gE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);ae(d,a,c)};gE.prototype.__destroy__=function(){be(this.kB)};function hE(a){a&&"object"===typeof a&&(a=a.kB);this.kB=ce(a);h(hE)[this.kB]=this}hE.prototype=Object.create(l.prototype);hE.prototype.constructor=hE;hE.prototype.lB=hE;hE.mB={};b.btCylinderShape=hE;
hE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);de(c,a)};hE.prototype.getMargin=function(){return ee(this.kB)};hE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fe(c,a)};hE.prototype.getLocalScaling=function(){return k(ge(this.kB),m)};hE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);he(d,a,c)};hE.prototype.__destroy__=function(){ie(this.kB)};
function iE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=je(a,c);h(iE)[this.kB]=this}iE.prototype=Object.create(l.prototype);iE.prototype.constructor=iE;iE.prototype.lB=iE;iE.mB={};b.btConeShape=iE;iE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ke(c,a)};iE.prototype.getLocalScaling=function(){return k(le(this.kB),m)};
iE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);me(d,a,c)};iE.prototype.__destroy__=function(){ne(this.kB)};function jE(){throw"cannot construct a btStridingMeshInterface, no constructor in IDL";}jE.prototype=Object.create(f.prototype);jE.prototype.constructor=jE;jE.prototype.lB=jE;jE.mB={};b.btStridingMeshInterface=jE;jE.prototype.setScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);oe(c,a)};
jE.prototype.__destroy__=function(){pe(this.kB)};function kE(){throw"cannot construct a btTriangleMeshShape, no constructor in IDL";}kE.prototype=Object.create(ZD.prototype);kE.prototype.constructor=kE;kE.prototype.lB=kE;kE.mB={};b.btTriangleMeshShape=kE;kE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);qe(c,a)};kE.prototype.getLocalScaling=function(){return k(re(this.kB),m)};
kE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);se(d,a,c)};kE.prototype.__destroy__=function(){te(this.kB)};function lE(){throw"cannot construct a btPrimitiveManagerBase, no constructor in IDL";}lE.prototype=Object.create(f.prototype);lE.prototype.constructor=lE;lE.prototype.lB=lE;lE.mB={};b.btPrimitiveManagerBase=lE;lE.prototype.is_trimesh=function(){return!!ue(this.kB)};lE.prototype.get_primitive_count=function(){return ve(this.kB)};
lE.prototype.get_primitive_box=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);we(d,a,c)};lE.prototype.get_primitive_triangle=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);xe(d,a,c)};lE.prototype.__destroy__=function(){ye(this.kB)};function w(){throw"cannot construct a btGImpactShapeInterface, no constructor in IDL";}w.prototype=Object.create(ZD.prototype);w.prototype.constructor=w;w.prototype.lB=w;
w.mB={};b.btGImpactShapeInterface=w;w.prototype.updateBound=function(){ze(this.kB)};w.prototype.postUpdate=function(){Ae(this.kB)};w.prototype.getShapeType=function(){return Be(this.kB)};w.prototype.getName=function(){return sa(Ce(this.kB))};w.prototype.getGImpactShapeType=function(){return De(this.kB)};w.prototype.getPrimitiveManager=function(){return k(Ee(this.kB),lE)};w.prototype.getNumChildShapes=function(){return Fe(this.kB)};w.prototype.childrenHasTransform=function(){return!!Ge(this.kB)};
w.prototype.needsRetrieveTriangles=function(){return!!He(this.kB)};w.prototype.needsRetrieveTetrahedrons=function(){return!!Ie(this.kB)};w.prototype.getBulletTriangle=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Je(d,a,c)};w.prototype.getBulletTetrahedron=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Ke(d,a,c)};
w.prototype.getChildShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Le(c,a),l)};w.prototype.getChildTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Me(c,a),r)};w.prototype.setChildTransform=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Ne(d,a,c)};w.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Oe(c,a)};
w.prototype.getLocalScaling=function(){return k(Pe(this.kB),m)};w.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Qe(d,a,c)};w.prototype.__destroy__=function(){Re(this.kB)};function mE(){throw"cannot construct a btActivatingCollisionAlgorithm, no constructor in IDL";}mE.prototype=Object.create($D.prototype);mE.prototype.constructor=mE;mE.prototype.lB=mE;mE.mB={};b.btActivatingCollisionAlgorithm=mE;
mE.prototype.__destroy__=function(){Se(this.kB)};function nE(a){a&&"object"===typeof a&&(a=a.kB);this.kB=void 0===a?Te():Ue(a);h(nE)[this.kB]=this}nE.prototype=Object.create(f.prototype);nE.prototype.constructor=nE;nE.prototype.lB=nE;nE.mB={};b.btDefaultCollisionConfiguration=nE;nE.prototype.__destroy__=function(){Ve(this.kB)};function TD(){throw"cannot construct a btDispatcher, no constructor in IDL";}TD.prototype=Object.create(f.prototype);TD.prototype.constructor=TD;TD.prototype.lB=TD;TD.mB={};
b.btDispatcher=TD;TD.prototype.getNumManifolds=function(){return We(this.kB)};TD.prototype.getManifoldByIndexInternal=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Xe(c,a),oE)};TD.prototype.__destroy__=function(){Ye(this.kB)};
function pE(a,c,d,e,g){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);this.kB=void 0===e?Ze(a,c,d):void 0===g?_emscripten_bind_btGeneric6DofConstraint_btGeneric6DofConstraint_4(a,c,d,e):$e(a,c,d,e,g);h(pE)[this.kB]=this}pE.prototype=Object.create(aE.prototype);pE.prototype.constructor=pE;pE.prototype.lB=pE;pE.mB={};b.btGeneric6DofConstraint=pE;
pE.prototype.setLinearLowerLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);af(c,a)};pE.prototype.setLinearUpperLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);bf(c,a)};pE.prototype.setAngularLowerLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);cf(c,a)};pE.prototype.setAngularUpperLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);df(c,a)};pE.prototype.getFrameOffsetA=function(){return k(ef(this.kB),r)};
pE.prototype.enableFeedback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ff(c,a)};pE.prototype.getBreakingImpulseThreshold=function(){return gf(this.kB)};pE.prototype.setBreakingImpulseThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hf(c,a)};pE.prototype.getParam=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return jf(d,a,c)};
pE.prototype.setParam=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);kf(e,a,c,d)};pE.prototype.__destroy__=function(){lf(this.kB)};function x(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=mf(a,c,d,e);h(x)[this.kB]=this}x.prototype=Object.create(bE.prototype);x.prototype.constructor=x;x.prototype.lB=x;x.mB={};
b.btDiscreteDynamicsWorld=x;x.prototype.setGravity=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);nf(c,a)};x.prototype.getGravity=function(){return k(of(this.kB),m)};x.prototype.addRigidBody=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?pf(e,a):void 0===d?_emscripten_bind_btDiscreteDynamicsWorld_addRigidBody_2(e,a,c):qf(e,a,c,d)};
x.prototype.removeRigidBody=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);rf(c,a)};x.prototype.addConstraint=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);void 0===c?sf(d,a):tf(d,a,c)};x.prototype.removeConstraint=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);uf(c,a)};
x.prototype.stepSimulation=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);return void 0===c?vf(e,a):void 0===d?wf(e,a,c):xf(e,a,c,d)};x.prototype.setContactAddedCallback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yf(c,a)};x.prototype.setContactProcessedCallback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zf(c,a)};
x.prototype.setContactDestroyedCallback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Af(c,a)};x.prototype.getDispatcher=function(){return k(Bf(this.kB),TD)};x.prototype.rayTest=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Cf(e,a,c,d)};x.prototype.getPairCache=function(){return k(Df(this.kB),UD)};x.prototype.getDispatchInfo=function(){return k(Ef(this.kB),p)};
x.prototype.addCollisionObject=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?Ff(e,a):void 0===d?Gf(e,a,c):Hf(e,a,c,d)};x.prototype.removeCollisionObject=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);If(c,a)};x.prototype.getBroadphase=function(){return k(Jf(this.kB),VD)};
x.prototype.convexSweepTest=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);Kf(n,a,c,d,e,g)};x.prototype.contactPairTest=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Lf(e,a,c,d)};
x.prototype.contactTest=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Mf(d,a,c)};x.prototype.updateSingleAabb=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Nf(c,a)};x.prototype.setDebugDrawer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Of(c,a)};x.prototype.getDebugDrawer=function(){return k(Pf(this.kB),WD)};x.prototype.debugDrawWorld=function(){Qf(this.kB)};
x.prototype.debugDrawObject=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Rf(e,a,c,d)};x.prototype.addAction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Sf(c,a)};x.prototype.removeAction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Tf(c,a)};x.prototype.getSolverInfo=function(){return k(Uf(this.kB),t)};
x.prototype.setInternalTickCallback=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?Vf(e,a):void 0===d?Wf(e,a,c):Xf(e,a,c,d)};x.prototype.__destroy__=function(){Yf(this.kB)};function qE(){throw"cannot construct a btVehicleRaycaster, no constructor in IDL";}qE.prototype=Object.create(f.prototype);qE.prototype.constructor=qE;qE.prototype.lB=qE;qE.mB={};b.btVehicleRaycaster=qE;
qE.prototype.castRay=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Zf(e,a,c,d)};qE.prototype.__destroy__=function(){$f(this.kB)};function rE(){throw"cannot construct a btActionInterface, no constructor in IDL";}rE.prototype=Object.create(f.prototype);rE.prototype.constructor=rE;rE.prototype.lB=rE;rE.mB={};b.btActionInterface=rE;
rE.prototype.updateAction=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);ag(d,a,c)};rE.prototype.__destroy__=function(){bg(this.kB)};function y(){this.kB=cg();h(y)[this.kB]=this}y.prototype=Object.create(q.prototype);y.prototype.constructor=y;y.prototype.lB=y;y.mB={};b.btGhostObject=y;y.prototype.getNumOverlappingObjects=function(){return dg(this.kB)};
y.prototype.getOverlappingObject=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(eg(c,a),q)};y.prototype.setAnisotropicFriction=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);fg(d,a,c)};y.prototype.getCollisionShape=function(){return k(gg(this.kB),l)};y.prototype.setContactProcessingThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hg(c,a)};
y.prototype.setActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ig(c,a)};y.prototype.forceActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jg(c,a)};y.prototype.activate=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);void 0===a?kg(c):lg(c,a)};y.prototype.isActive=function(){return!!mg(this.kB)};y.prototype.isKinematicObject=function(){return!!ng(this.kB)};y.prototype.isStaticObject=function(){return!!og(this.kB)};
y.prototype.isStaticOrKinematicObject=function(){return!!pg(this.kB)};y.prototype.getRestitution=function(){return qg(this.kB)};y.prototype.getFriction=function(){return rg(this.kB)};y.prototype.getRollingFriction=function(){return sg(this.kB)};y.prototype.setRestitution=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);tg(c,a)};y.prototype.setFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ug(c,a)};
y.prototype.setRollingFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vg(c,a)};y.prototype.getWorldTransform=function(){return k(wg(this.kB),r)};y.prototype.getCollisionFlags=function(){return xg(this.kB)};y.prototype.setCollisionFlags=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yg(c,a)};y.prototype.setWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zg(c,a)};
y.prototype.setCollisionShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ag(c,a)};y.prototype.setCcdMotionThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Bg(c,a)};y.prototype.setCcdSweptSphereRadius=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Cg(c,a)};y.prototype.getUserIndex=function(){return Dg(this.kB)};y.prototype.setUserIndex=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Eg(c,a)};
y.prototype.getUserPointer=function(){return k(Fg(this.kB),XD)};y.prototype.setUserPointer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Gg(c,a)};y.prototype.getBroadphaseHandle=function(){return k(Hg(this.kB),YD)};y.prototype.__destroy__=function(){Ig(this.kB)};function sE(){throw"cannot construct a btSoftBodySolver, no constructor in IDL";}sE.prototype=Object.create(f.prototype);sE.prototype.constructor=sE;sE.prototype.lB=sE;sE.mB={};b.btSoftBodySolver=sE;sE.prototype.__destroy__=function(){Jg(this.kB)};
function XD(){throw"cannot construct a VoidPtr, no constructor in IDL";}XD.prototype=Object.create(f.prototype);XD.prototype.constructor=XD;XD.prototype.lB=XD;XD.mB={};b.VoidPtr=XD;XD.prototype.__destroy__=function(){Kg(this.kB)};function tE(){this.kB=Lg();h(tE)[this.kB]=this}tE.prototype=Object.create(WD.prototype);tE.prototype.constructor=tE;tE.prototype.lB=tE;tE.mB={};b.DebugDrawer=tE;
tE.prototype.drawLine=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Mg(e,a,c,d)};tE.prototype.drawContactPoint=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);Ng(n,a,c,d,e,g)};
tE.prototype.reportErrorWarning=function(a){var c=this.kB;ND();a=a&&"object"===typeof a?a.kB:QD(a);Og(c,a)};tE.prototype.draw3dText=function(a,c){var d=this.kB;ND();a&&"object"===typeof a&&(a=a.kB);c=c&&"object"===typeof c?c.kB:QD(c);Pg(d,a,c)};tE.prototype.setDebugMode=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Qg(c,a)};tE.prototype.getDebugMode=function(){return Rg(this.kB)};tE.prototype.__destroy__=function(){Sg(this.kB)};
function A(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=void 0===a?Tg():void 0===c?_emscripten_bind_btVector4_btVector4_1(a):void 0===d?_emscripten_bind_btVector4_btVector4_2(a,c):void 0===e?_emscripten_bind_btVector4_btVector4_3(a,c,d):Ug(a,c,d,e);h(A)[this.kB]=this}A.prototype=Object.create(m.prototype);A.prototype.constructor=A;A.prototype.lB=A;A.mB={};b.btVector4=A;
A.prototype.w=A.prototype.w=function(){return Vg(this.kB)};A.prototype.setValue=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);Wg(g,a,c,d,e)};A.prototype.length=A.prototype.length=function(){return Xg(this.kB)};A.prototype.x=A.prototype.x=function(){return Yg(this.kB)};A.prototype.y=A.prototype.y=function(){return Zg(this.kB)};A.prototype.z=A.prototype.z=function(){return $g(this.kB)};
A.prototype.setX=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ah(c,a)};A.prototype.setY=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);bh(c,a)};A.prototype.setZ=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ch(c,a)};A.prototype.normalize=A.prototype.normalize=function(){dh(this.kB)};A.prototype.rotate=A.prototype.rotate=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return k(eh(d,a,c),m)};
A.prototype.dot=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return fh(c,a)};A.prototype.op_mul=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(gh(c,a),m)};A.prototype.op_add=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(hh(c,a),m)};A.prototype.op_sub=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(ih(c,a),m)};A.prototype.__destroy__=function(){jh(this.kB)};
function B(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=kh(a,c,d,e);h(B)[this.kB]=this}B.prototype=Object.create(cE.prototype);B.prototype.constructor=B;B.prototype.lB=B;B.mB={};b.btQuaternion=B;B.prototype.setValue=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);lh(g,a,c,d,e)};
B.prototype.setEulerZYX=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);mh(e,a,c,d)};B.prototype.setRotation=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);nh(d,a,c)};B.prototype.normalize=B.prototype.normalize=function(){oh(this.kB)};B.prototype.length2=function(){return ph(this.kB)};B.prototype.length=B.prototype.length=function(){return qh(this.kB)};
B.prototype.dot=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return rh(c,a)};B.prototype.normalized=function(){return k(sh(this.kB),B)};B.prototype.getAxis=function(){return k(th(this.kB),m)};B.prototype.inverse=B.prototype.inverse=function(){return k(uh(this.kB),B)};B.prototype.getAngle=function(){return vh(this.kB)};B.prototype.getAngleShortestPath=function(){return wh(this.kB)};
B.prototype.angle=B.prototype.angle=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return xh(c,a)};B.prototype.angleShortestPath=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return yh(c,a)};B.prototype.op_add=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(zh(c,a),B)};B.prototype.op_sub=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Ah(c,a),B)};
B.prototype.op_mul=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Bh(c,a),B)};B.prototype.op_mulq=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Ch(c,a),B)};B.prototype.op_div=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Dh(c,a),B)};B.prototype.x=B.prototype.x=function(){return Eh(this.kB)};B.prototype.y=B.prototype.y=function(){return Fh(this.kB)};B.prototype.z=B.prototype.z=function(){return Gh(this.kB)};
B.prototype.w=B.prototype.w=function(){return Hh(this.kB)};B.prototype.setX=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ih(c,a)};B.prototype.setY=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jh(c,a)};B.prototype.setZ=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Kh(c,a)};B.prototype.setW=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Lh(c,a)};B.prototype.__destroy__=function(){Mh(this.kB)};
function uE(){throw"cannot construct a btMatrix3x3, no constructor in IDL";}uE.prototype=Object.create(f.prototype);uE.prototype.constructor=uE;uE.prototype.lB=uE;uE.mB={};b.btMatrix3x3=uE;uE.prototype.setEulerZYX=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Nh(e,a,c,d)};uE.prototype.getRotation=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Oh(c,a)};
uE.prototype.getRow=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Ph(c,a),m)};uE.prototype.__destroy__=function(){Qh(this.kB)};function r(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=void 0===a?Rh():void 0===c?_emscripten_bind_btTransform_btTransform_1(a):Sh(a,c);h(r)[this.kB]=this}r.prototype=Object.create(f.prototype);r.prototype.constructor=r;r.prototype.lB=r;r.mB={};b.btTransform=r;r.prototype.setIdentity=function(){Th(this.kB)};
r.prototype.setOrigin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Uh(c,a)};r.prototype.setRotation=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vh(c,a)};r.prototype.getOrigin=function(){return k(Wh(this.kB),m)};r.prototype.getRotation=function(){return k(Xh(this.kB),B)};r.prototype.getBasis=function(){return k(Yh(this.kB),uE)};r.prototype.setFromOpenGLMatrix=function(a){var c=this.kB;ND();"object"==typeof a&&(a=RD(a));Zh(c,a)};
r.prototype.inverse=r.prototype.inverse=function(){return k($h(this.kB),r)};r.prototype.op_mul=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(ai(c,a),r)};r.prototype.__destroy__=function(){bi(this.kB)};function vE(){this.kB=ci();h(vE)[this.kB]=this}vE.prototype=Object.create(dE.prototype);vE.prototype.constructor=vE;vE.prototype.lB=vE;vE.mB={};b.MotionState=vE;vE.prototype.getWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);di(c,a)};
vE.prototype.setWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ei(c,a)};vE.prototype.__destroy__=function(){fi(this.kB)};function wE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=void 0===a?gi():void 0===c?hi(a):ii(a,c);h(wE)[this.kB]=this}wE.prototype=Object.create(dE.prototype);wE.prototype.constructor=wE;wE.prototype.lB=wE;wE.mB={};b.btDefaultMotionState=wE;
wE.prototype.getWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ji(c,a)};wE.prototype.setWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ki(c,a)};wE.prototype.get_m_graphicsWorldTrans=wE.prototype.lD=function(){return k(li(this.kB),r)};wE.prototype.set_m_graphicsWorldTrans=wE.prototype.cG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);mi(c,a)};Object.defineProperty(wE.prototype,"m_graphicsWorldTrans",{get:wE.prototype.lD,set:wE.prototype.cG});
wE.prototype.__destroy__=function(){ni(this.kB)};function xE(){throw"cannot construct a btCollisionObjectWrapper, no constructor in IDL";}xE.prototype=Object.create(f.prototype);xE.prototype.constructor=xE;xE.prototype.lB=xE;xE.mB={};b.btCollisionObjectWrapper=xE;xE.prototype.getWorldTransform=function(){return k(oi(this.kB),r)};xE.prototype.getCollisionObject=function(){return k(pi(this.kB),q)};xE.prototype.getCollisionShape=function(){return k(qi(this.kB),l)};
function C(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=ri(a,c);h(C)[this.kB]=this}C.prototype=Object.create(u.prototype);C.prototype.constructor=C;C.prototype.lB=C;C.mB={};b.ClosestRayResultCallback=C;C.prototype.hasHit=function(){return!!si(this.kB)};C.prototype.get_m_rayFromWorld=C.prototype.NB=function(){return k(ti(this.kB),m)};C.prototype.set_m_rayFromWorld=C.prototype.XB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ui(c,a)};
Object.defineProperty(C.prototype,"m_rayFromWorld",{get:C.prototype.NB,set:C.prototype.XB});C.prototype.get_m_rayToWorld=C.prototype.OB=function(){return k(vi(this.kB),m)};C.prototype.set_m_rayToWorld=C.prototype.YB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);wi(c,a)};Object.defineProperty(C.prototype,"m_rayToWorld",{get:C.prototype.OB,set:C.prototype.YB});C.prototype.get_m_hitNormalWorld=C.prototype.xB=function(){return k(xi(this.kB),m)};
C.prototype.set_m_hitNormalWorld=C.prototype.EB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yi(c,a)};Object.defineProperty(C.prototype,"m_hitNormalWorld",{get:C.prototype.xB,set:C.prototype.EB});C.prototype.get_m_hitPointWorld=C.prototype.yB=function(){return k(zi(this.kB),m)};C.prototype.set_m_hitPointWorld=C.prototype.FB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ai(c,a)};Object.defineProperty(C.prototype,"m_hitPointWorld",{get:C.prototype.yB,set:C.prototype.FB});
C.prototype.get_m_collisionFilterGroup=C.prototype.nB=function(){return Bi(this.kB)};C.prototype.set_m_collisionFilterGroup=C.prototype.pB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ci(c,a)};Object.defineProperty(C.prototype,"m_collisionFilterGroup",{get:C.prototype.nB,set:C.prototype.pB});C.prototype.get_m_collisionFilterMask=C.prototype.oB=function(){return Di(this.kB)};
C.prototype.set_m_collisionFilterMask=C.prototype.qB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ei(c,a)};Object.defineProperty(C.prototype,"m_collisionFilterMask",{get:C.prototype.oB,set:C.prototype.qB});C.prototype.get_m_closestHitFraction=C.prototype.rB=function(){return Fi(this.kB)};C.prototype.set_m_closestHitFraction=C.prototype.sB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Gi(c,a)};Object.defineProperty(C.prototype,"m_closestHitFraction",{get:C.prototype.rB,set:C.prototype.sB});
C.prototype.get_m_collisionObject=C.prototype.vB=function(){return k(Hi(this.kB),q)};C.prototype.set_m_collisionObject=C.prototype.CB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ii(c,a)};Object.defineProperty(C.prototype,"m_collisionObject",{get:C.prototype.vB,set:C.prototype.CB});C.prototype.get_m_flags=C.prototype.tB=function(){return Ji(this.kB)};C.prototype.set_m_flags=C.prototype.uB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ki(c,a)};
Object.defineProperty(C.prototype,"m_flags",{get:C.prototype.tB,set:C.prototype.uB});C.prototype.__destroy__=function(){Li(this.kB)};function yE(){throw"cannot construct a btConstCollisionObjectArray, no constructor in IDL";}yE.prototype=Object.create(f.prototype);yE.prototype.constructor=yE;yE.prototype.lB=yE;yE.mB={};b.btConstCollisionObjectArray=yE;yE.prototype.size=yE.prototype.size=function(){return Mi(this.kB)};
yE.prototype.at=yE.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Ni(c,a),q)};yE.prototype.__destroy__=function(){Oi(this.kB)};function zE(){throw"cannot construct a btScalarArray, no constructor in IDL";}zE.prototype=Object.create(f.prototype);zE.prototype.constructor=zE;zE.prototype.lB=zE;zE.mB={};b.btScalarArray=zE;zE.prototype.size=zE.prototype.size=function(){return Pi(this.kB)};
zE.prototype.at=zE.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return Qi(c,a)};zE.prototype.__destroy__=function(){Ri(this.kB)};function D(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=Si(a,c);h(D)[this.kB]=this}D.prototype=Object.create(u.prototype);D.prototype.constructor=D;D.prototype.lB=D;D.mB={};b.AllHitsRayResultCallback=D;D.prototype.hasHit=function(){return!!Ti(this.kB)};
D.prototype.get_m_collisionObjects=D.prototype.UC=function(){return k(Ui(this.kB),yE)};D.prototype.set_m_collisionObjects=D.prototype.LF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vi(c,a)};Object.defineProperty(D.prototype,"m_collisionObjects",{get:D.prototype.UC,set:D.prototype.LF});D.prototype.get_m_rayFromWorld=D.prototype.NB=function(){return k(Wi(this.kB),m)};D.prototype.set_m_rayFromWorld=D.prototype.XB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Xi(c,a)};
Object.defineProperty(D.prototype,"m_rayFromWorld",{get:D.prototype.NB,set:D.prototype.XB});D.prototype.get_m_rayToWorld=D.prototype.OB=function(){return k(Yi(this.kB),m)};D.prototype.set_m_rayToWorld=D.prototype.YB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Zi(c,a)};Object.defineProperty(D.prototype,"m_rayToWorld",{get:D.prototype.OB,set:D.prototype.YB});D.prototype.get_m_hitNormalWorld=D.prototype.xB=function(){return k($i(this.kB),AE)};
D.prototype.set_m_hitNormalWorld=D.prototype.EB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);aj(c,a)};Object.defineProperty(D.prototype,"m_hitNormalWorld",{get:D.prototype.xB,set:D.prototype.EB});D.prototype.get_m_hitPointWorld=D.prototype.yB=function(){return k(bj(this.kB),AE)};D.prototype.set_m_hitPointWorld=D.prototype.FB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);cj(c,a)};Object.defineProperty(D.prototype,"m_hitPointWorld",{get:D.prototype.yB,set:D.prototype.FB});
D.prototype.get_m_hitFractions=D.prototype.qD=function(){return k(dj(this.kB),zE)};D.prototype.set_m_hitFractions=D.prototype.hG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ej(c,a)};Object.defineProperty(D.prototype,"m_hitFractions",{get:D.prototype.qD,set:D.prototype.hG});D.prototype.get_m_collisionFilterGroup=D.prototype.nB=function(){return fj(this.kB)};D.prototype.set_m_collisionFilterGroup=D.prototype.pB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);gj(c,a)};
Object.defineProperty(D.prototype,"m_collisionFilterGroup",{get:D.prototype.nB,set:D.prototype.pB});D.prototype.get_m_collisionFilterMask=D.prototype.oB=function(){return hj(this.kB)};D.prototype.set_m_collisionFilterMask=D.prototype.qB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ij(c,a)};Object.defineProperty(D.prototype,"m_collisionFilterMask",{get:D.prototype.oB,set:D.prototype.qB});D.prototype.get_m_closestHitFraction=D.prototype.rB=function(){return jj(this.kB)};
D.prototype.set_m_closestHitFraction=D.prototype.sB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);kj(c,a)};Object.defineProperty(D.prototype,"m_closestHitFraction",{get:D.prototype.rB,set:D.prototype.sB});D.prototype.get_m_collisionObject=D.prototype.vB=function(){return k(lj(this.kB),q)};D.prototype.set_m_collisionObject=D.prototype.CB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);mj(c,a)};Object.defineProperty(D.prototype,"m_collisionObject",{get:D.prototype.vB,set:D.prototype.CB});
D.prototype.get_m_flags=D.prototype.tB=function(){return nj(this.kB)};D.prototype.set_m_flags=D.prototype.uB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);oj(c,a)};Object.defineProperty(D.prototype,"m_flags",{get:D.prototype.tB,set:D.prototype.uB});D.prototype.__destroy__=function(){pj(this.kB)};function E(){throw"cannot construct a btManifoldPoint, no constructor in IDL";}E.prototype=Object.create(f.prototype);E.prototype.constructor=E;E.prototype.lB=E;E.mB={};b.btManifoldPoint=E;
E.prototype.getPositionWorldOnA=function(){return k(qj(this.kB),m)};E.prototype.getPositionWorldOnB=function(){return k(rj(this.kB),m)};E.prototype.getAppliedImpulse=function(){return sj(this.kB)};E.prototype.getDistance=function(){return tj(this.kB)};E.prototype.get_m_localPointA=E.prototype.GD=function(){return k(uj(this.kB),m)};E.prototype.set_m_localPointA=E.prototype.xG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vj(c,a)};
Object.defineProperty(E.prototype,"m_localPointA",{get:E.prototype.GD,set:E.prototype.xG});E.prototype.get_m_localPointB=E.prototype.HD=function(){return k(wj(this.kB),m)};E.prototype.set_m_localPointB=E.prototype.yG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xj(c,a)};Object.defineProperty(E.prototype,"m_localPointB",{get:E.prototype.HD,set:E.prototype.yG});E.prototype.get_m_positionWorldOnB=E.prototype.YD=function(){return k(yj(this.kB),m)};
E.prototype.set_m_positionWorldOnB=E.prototype.PG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zj(c,a)};Object.defineProperty(E.prototype,"m_positionWorldOnB",{get:E.prototype.YD,set:E.prototype.PG});E.prototype.get_m_positionWorldOnA=E.prototype.XD=function(){return k(Aj(this.kB),m)};E.prototype.set_m_positionWorldOnA=E.prototype.OG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Bj(c,a)};Object.defineProperty(E.prototype,"m_positionWorldOnA",{get:E.prototype.XD,set:E.prototype.OG});
E.prototype.get_m_normalWorldOnB=E.prototype.SD=function(){return k(Cj(this.kB),m)};E.prototype.set_m_normalWorldOnB=E.prototype.JG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dj(c,a)};Object.defineProperty(E.prototype,"m_normalWorldOnB",{get:E.prototype.SD,set:E.prototype.JG});E.prototype.get_m_userPersistentData=E.prototype.zE=function(){return Ej(this.kB)};E.prototype.set_m_userPersistentData=E.prototype.rH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Fj(c,a)};
Object.defineProperty(E.prototype,"m_userPersistentData",{get:E.prototype.zE,set:E.prototype.rH});E.prototype.__destroy__=function(){Gj(this.kB)};function BE(){this.kB=Hj();h(BE)[this.kB]=this}BE.prototype=Object.create(eE.prototype);BE.prototype.constructor=BE;BE.prototype.lB=BE;BE.mB={};b.ConcreteContactResultCallback=BE;
BE.prototype.addSingleResult=function(a,c,d,e,g,n,z){var T=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);n&&"object"===typeof n&&(n=n.kB);z&&"object"===typeof z&&(z=z.kB);return Ij(T,a,c,d,e,g,n,z)};BE.prototype.__destroy__=function(){Jj(this.kB)};function CE(){throw"cannot construct a LocalShapeInfo, no constructor in IDL";}CE.prototype=Object.create(f.prototype);
CE.prototype.constructor=CE;CE.prototype.lB=CE;CE.mB={};b.LocalShapeInfo=CE;CE.prototype.get_m_shapePart=CE.prototype.gE=function(){return Kj(this.kB)};CE.prototype.set_m_shapePart=CE.prototype.ZG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Lj(c,a)};Object.defineProperty(CE.prototype,"m_shapePart",{get:CE.prototype.gE,set:CE.prototype.ZG});CE.prototype.get_m_triangleIndex=CE.prototype.vE=function(){return Mj(this.kB)};
CE.prototype.set_m_triangleIndex=CE.prototype.nH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Nj(c,a)};Object.defineProperty(CE.prototype,"m_triangleIndex",{get:CE.prototype.vE,set:CE.prototype.nH});CE.prototype.__destroy__=function(){Oj(this.kB)};function F(a,c,d,e,g){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);this.kB=Pj(a,c,d,e,g);h(F)[this.kB]=this}
F.prototype=Object.create(f.prototype);F.prototype.constructor=F;F.prototype.lB=F;F.mB={};b.LocalConvexResult=F;F.prototype.get_m_hitCollisionObject=F.prototype.LB=function(){return k(Qj(this.kB),q)};F.prototype.set_m_hitCollisionObject=F.prototype.VB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Rj(c,a)};Object.defineProperty(F.prototype,"m_hitCollisionObject",{get:F.prototype.LB,set:F.prototype.VB});F.prototype.get_m_localShapeInfo=F.prototype.ID=function(){return k(Sj(this.kB),CE)};
F.prototype.set_m_localShapeInfo=F.prototype.zG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Tj(c,a)};Object.defineProperty(F.prototype,"m_localShapeInfo",{get:F.prototype.ID,set:F.prototype.zG});F.prototype.get_m_hitNormalLocal=F.prototype.sD=function(){return k(Uj(this.kB),m)};F.prototype.set_m_hitNormalLocal=F.prototype.jG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vj(c,a)};Object.defineProperty(F.prototype,"m_hitNormalLocal",{get:F.prototype.sD,set:F.prototype.jG});
F.prototype.get_m_hitPointLocal=F.prototype.uD=function(){return k(Wj(this.kB),m)};F.prototype.set_m_hitPointLocal=F.prototype.lG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Xj(c,a)};Object.defineProperty(F.prototype,"m_hitPointLocal",{get:F.prototype.uD,set:F.prototype.lG});F.prototype.get_m_hitFraction=F.prototype.pD=function(){return Yj(this.kB)};F.prototype.set_m_hitFraction=F.prototype.gG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Zj(c,a)};
Object.defineProperty(F.prototype,"m_hitFraction",{get:F.prototype.pD,set:F.prototype.gG});F.prototype.__destroy__=function(){ak(this.kB)};function G(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=bk(a,c);h(G)[this.kB]=this}G.prototype=Object.create(v.prototype);G.prototype.constructor=G;G.prototype.lB=G;G.mB={};b.ClosestConvexResultCallback=G;G.prototype.hasHit=function(){return!!ck(this.kB)};
G.prototype.get_m_hitCollisionObject=G.prototype.LB=function(){return k(dk(this.kB),q)};G.prototype.set_m_hitCollisionObject=G.prototype.VB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ek(c,a)};Object.defineProperty(G.prototype,"m_hitCollisionObject",{get:G.prototype.LB,set:G.prototype.VB});G.prototype.get_m_convexFromWorld=G.prototype.ZC=function(){return k(fk(this.kB),m)};
G.prototype.set_m_convexFromWorld=G.prototype.QF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);gk(c,a)};Object.defineProperty(G.prototype,"m_convexFromWorld",{get:G.prototype.ZC,set:G.prototype.QF});G.prototype.get_m_convexToWorld=G.prototype.$C=function(){return k(hk(this.kB),m)};G.prototype.set_m_convexToWorld=G.prototype.RF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ik(c,a)};Object.defineProperty(G.prototype,"m_convexToWorld",{get:G.prototype.$C,set:G.prototype.RF});
G.prototype.get_m_hitNormalWorld=G.prototype.xB=function(){return k(jk(this.kB),m)};G.prototype.set_m_hitNormalWorld=G.prototype.EB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);kk(c,a)};Object.defineProperty(G.prototype,"m_hitNormalWorld",{get:G.prototype.xB,set:G.prototype.EB});G.prototype.get_m_hitPointWorld=G.prototype.yB=function(){return k(lk(this.kB),m)};G.prototype.set_m_hitPointWorld=G.prototype.FB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);mk(c,a)};
Object.defineProperty(G.prototype,"m_hitPointWorld",{get:G.prototype.yB,set:G.prototype.FB});G.prototype.get_m_collisionFilterGroup=G.prototype.nB=function(){return nk(this.kB)};G.prototype.set_m_collisionFilterGroup=G.prototype.pB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ok(c,a)};Object.defineProperty(G.prototype,"m_collisionFilterGroup",{get:G.prototype.nB,set:G.prototype.pB});G.prototype.get_m_collisionFilterMask=G.prototype.oB=function(){return pk(this.kB)};
G.prototype.set_m_collisionFilterMask=G.prototype.qB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);qk(c,a)};Object.defineProperty(G.prototype,"m_collisionFilterMask",{get:G.prototype.oB,set:G.prototype.qB});G.prototype.get_m_closestHitFraction=G.prototype.rB=function(){return rk(this.kB)};G.prototype.set_m_closestHitFraction=G.prototype.sB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);sk(c,a)};Object.defineProperty(G.prototype,"m_closestHitFraction",{get:G.prototype.rB,set:G.prototype.sB});
G.prototype.__destroy__=function(){tk(this.kB)};function DE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=void 0===c?uk(a):vk(a,c);h(DE)[this.kB]=this}DE.prototype=Object.create(fE.prototype);DE.prototype.constructor=DE;DE.prototype.lB=DE;DE.mB={};b.btConvexTriangleMeshShape=DE;DE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);wk(c,a)};DE.prototype.getLocalScaling=function(){return k(xk(this.kB),m)};
DE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);yk(d,a,c)};DE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zk(c,a)};DE.prototype.getMargin=function(){return Ak(this.kB)};DE.prototype.__destroy__=function(){Bk(this.kB)};function EE(a){a&&"object"===typeof a&&(a=a.kB);this.kB=Ck(a);h(EE)[this.kB]=this}EE.prototype=Object.create(l.prototype);EE.prototype.constructor=EE;EE.prototype.lB=EE;
EE.mB={};b.btBoxShape=EE;EE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dk(c,a)};EE.prototype.getMargin=function(){return Ek(this.kB)};EE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Fk(c,a)};EE.prototype.getLocalScaling=function(){return k(Gk(this.kB),m)};EE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Hk(d,a,c)};EE.prototype.__destroy__=function(){Ik(this.kB)};
function FE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=Jk(a,c);h(FE)[this.kB]=this}FE.prototype=Object.create(gE.prototype);FE.prototype.constructor=FE;FE.prototype.lB=FE;FE.mB={};b.btCapsuleShapeX=FE;FE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Kk(c,a)};FE.prototype.getMargin=function(){return Lk(this.kB)};FE.prototype.getUpAxis=function(){return Mk(this.kB)};FE.prototype.getRadius=function(){return Nk(this.kB)};
FE.prototype.getHalfHeight=function(){return Ok(this.kB)};FE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Pk(c,a)};FE.prototype.getLocalScaling=function(){return k(Qk(this.kB),m)};FE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Rk(d,a,c)};FE.prototype.__destroy__=function(){Sk(this.kB)};
function GE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=Tk(a,c);h(GE)[this.kB]=this}GE.prototype=Object.create(gE.prototype);GE.prototype.constructor=GE;GE.prototype.lB=GE;GE.mB={};b.btCapsuleShapeZ=GE;GE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Uk(c,a)};GE.prototype.getMargin=function(){return Vk(this.kB)};GE.prototype.getUpAxis=function(){return Wk(this.kB)};GE.prototype.getRadius=function(){return Xk(this.kB)};
GE.prototype.getHalfHeight=function(){return Yk(this.kB)};GE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Zk(c,a)};GE.prototype.getLocalScaling=function(){return k($k(this.kB),m)};GE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);al(d,a,c)};GE.prototype.__destroy__=function(){bl(this.kB)};function HE(a){a&&"object"===typeof a&&(a=a.kB);this.kB=cl(a);h(HE)[this.kB]=this}
HE.prototype=Object.create(hE.prototype);HE.prototype.constructor=HE;HE.prototype.lB=HE;HE.mB={};b.btCylinderShapeX=HE;HE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);dl(c,a)};HE.prototype.getMargin=function(){return el(this.kB)};HE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fl(c,a)};HE.prototype.getLocalScaling=function(){return k(gl(this.kB),m)};
HE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);hl(d,a,c)};HE.prototype.__destroy__=function(){il(this.kB)};function IE(a){a&&"object"===typeof a&&(a=a.kB);this.kB=jl(a);h(IE)[this.kB]=this}IE.prototype=Object.create(hE.prototype);IE.prototype.constructor=IE;IE.prototype.lB=IE;IE.mB={};b.btCylinderShapeZ=IE;IE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);kl(c,a)};
IE.prototype.getMargin=function(){return ll(this.kB)};IE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ml(c,a)};IE.prototype.getLocalScaling=function(){return k(nl(this.kB),m)};IE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);ol(d,a,c)};IE.prototype.__destroy__=function(){pl(this.kB)};function JE(a){a&&"object"===typeof a&&(a=a.kB);this.kB=ql(a);h(JE)[this.kB]=this}JE.prototype=Object.create(l.prototype);
JE.prototype.constructor=JE;JE.prototype.lB=JE;JE.mB={};b.btSphereShape=JE;JE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);rl(c,a)};JE.prototype.getMargin=function(){return sl(this.kB)};JE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);tl(c,a)};JE.prototype.getLocalScaling=function(){return k(ul(this.kB),m)};
JE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);vl(d,a,c)};JE.prototype.__destroy__=function(){wl(this.kB)};function KE(a,c,d){ND();a&&"object"===typeof a&&(a=a.kB);"object"==typeof c&&(c=RD(c));d&&"object"===typeof d&&(d=d.kB);this.kB=xl(a,c,d);h(KE)[this.kB]=this}KE.prototype=Object.create(l.prototype);KE.prototype.constructor=KE;KE.prototype.lB=KE;KE.mB={};b.btMultiSphereShape=KE;
KE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yl(c,a)};KE.prototype.getLocalScaling=function(){return k(zl(this.kB),m)};KE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Al(d,a,c)};KE.prototype.__destroy__=function(){Bl(this.kB)};function LE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=Cl(a,c);h(LE)[this.kB]=this}LE.prototype=Object.create(iE.prototype);
LE.prototype.constructor=LE;LE.prototype.lB=LE;LE.mB={};b.btConeShapeX=LE;LE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dl(c,a)};LE.prototype.getLocalScaling=function(){return k(El(this.kB),m)};LE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Fl(d,a,c)};LE.prototype.__destroy__=function(){Gl(this.kB)};
function ME(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=Hl(a,c);h(ME)[this.kB]=this}ME.prototype=Object.create(iE.prototype);ME.prototype.constructor=ME;ME.prototype.lB=ME;ME.mB={};b.btConeShapeZ=ME;ME.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Il(c,a)};ME.prototype.getLocalScaling=function(){return k(Jl(this.kB),m)};
ME.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Kl(d,a,c)};ME.prototype.__destroy__=function(){Ll(this.kB)};function NE(){throw"cannot construct a btIntArray, no constructor in IDL";}NE.prototype=Object.create(f.prototype);NE.prototype.constructor=NE;NE.prototype.lB=NE;NE.mB={};b.btIntArray=NE;NE.prototype.size=NE.prototype.size=function(){return Ml(this.kB)};
NE.prototype.at=NE.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return Nl(c,a)};NE.prototype.__destroy__=function(){Ol(this.kB)};function OE(){throw"cannot construct a btFace, no constructor in IDL";}OE.prototype=Object.create(f.prototype);OE.prototype.constructor=OE;OE.prototype.lB=OE;OE.mB={};b.btFace=OE;OE.prototype.get_m_indices=OE.prototype.xD=function(){return k(Pl(this.kB),NE)};
OE.prototype.set_m_indices=OE.prototype.oG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ql(c,a)};Object.defineProperty(OE.prototype,"m_indices",{get:OE.prototype.xD,set:OE.prototype.oG});OE.prototype.get_m_plane=OE.prototype.WD=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return Rl(c,a)};OE.prototype.set_m_plane=OE.prototype.NG=function(a,c){var d=this.kB;ND();a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Sl(d,a,c)};
Object.defineProperty(OE.prototype,"m_plane",{get:OE.prototype.WD,set:OE.prototype.NG});OE.prototype.__destroy__=function(){Tl(this.kB)};function AE(){throw"cannot construct a btVector3Array, no constructor in IDL";}AE.prototype=Object.create(f.prototype);AE.prototype.constructor=AE;AE.prototype.lB=AE;AE.mB={};b.btVector3Array=AE;AE.prototype.size=AE.prototype.size=function(){return Ul(this.kB)};
AE.prototype.at=AE.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Vl(c,a),m)};AE.prototype.__destroy__=function(){Wl(this.kB)};function PE(){throw"cannot construct a btFaceArray, no constructor in IDL";}PE.prototype=Object.create(f.prototype);PE.prototype.constructor=PE;PE.prototype.lB=PE;PE.mB={};b.btFaceArray=PE;PE.prototype.size=PE.prototype.size=function(){return Xl(this.kB)};
PE.prototype.at=PE.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Yl(c,a),OE)};PE.prototype.__destroy__=function(){Zl(this.kB)};function QE(){throw"cannot construct a btConvexPolyhedron, no constructor in IDL";}QE.prototype=Object.create(f.prototype);QE.prototype.constructor=QE;QE.prototype.lB=QE;QE.mB={};b.btConvexPolyhedron=QE;QE.prototype.get_m_vertices=QE.prototype.BE=function(){return k($l(this.kB),AE)};
QE.prototype.set_m_vertices=QE.prototype.tH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);am(c,a)};Object.defineProperty(QE.prototype,"m_vertices",{get:QE.prototype.BE,set:QE.prototype.tH});QE.prototype.get_m_faces=QE.prototype.KB=function(){return k(bm(this.kB),PE)};QE.prototype.set_m_faces=QE.prototype.UB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);cm(c,a)};Object.defineProperty(QE.prototype,"m_faces",{get:QE.prototype.KB,set:QE.prototype.UB});
QE.prototype.__destroy__=function(){dm(this.kB)};function RE(a,c){ND();"object"==typeof a&&(a=RD(a));c&&"object"===typeof c&&(c=c.kB);this.kB=void 0===a?em():void 0===c?fm(a):gm(a,c);h(RE)[this.kB]=this}RE.prototype=Object.create(l.prototype);RE.prototype.constructor=RE;RE.prototype.lB=RE;RE.mB={};b.btConvexHullShape=RE;RE.prototype.addPoint=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);void 0===c?hm(d,a):im(d,a,c)};
RE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jm(c,a)};RE.prototype.getMargin=function(){return km(this.kB)};RE.prototype.getNumVertices=function(){return lm(this.kB)};RE.prototype.initializePolyhedralFeatures=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return!!mm(c,a)};RE.prototype.recalcLocalAabb=function(){nm(this.kB)};RE.prototype.getConvexPolyhedron=function(){return k(om(this.kB),QE)};
RE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pm(c,a)};RE.prototype.getLocalScaling=function(){return k(qm(this.kB),m)};RE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);rm(d,a,c)};RE.prototype.__destroy__=function(){sm(this.kB)};function SE(a){a&&"object"===typeof a&&(a=a.kB);this.kB=tm(a);h(SE)[this.kB]=this}SE.prototype=Object.create(f.prototype);SE.prototype.constructor=SE;
SE.prototype.lB=SE;SE.mB={};b.btShapeHull=SE;SE.prototype.buildHull=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return!!um(c,a)};SE.prototype.numVertices=function(){return wm(this.kB)};SE.prototype.getVertexPointer=function(){return k(xm(this.kB),m)};SE.prototype.__destroy__=function(){ym(this.kB)};function TE(a){a&&"object"===typeof a&&(a=a.kB);this.kB=void 0===a?zm():Am(a);h(TE)[this.kB]=this}TE.prototype=Object.create(l.prototype);TE.prototype.constructor=TE;TE.prototype.lB=TE;
TE.mB={};b.btCompoundShape=TE;TE.prototype.addChildShape=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Bm(d,a,c)};TE.prototype.removeChildShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Cm(c,a)};TE.prototype.removeChildShapeByIndex=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dm(c,a)};TE.prototype.getNumChildShapes=function(){return Em(this.kB)};
TE.prototype.getChildShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Fm(c,a),l)};TE.prototype.updateChildTransform=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===d?Gm(e,a,c):Hm(e,a,c,d)};TE.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Im(c,a)};TE.prototype.getMargin=function(){return Jm(this.kB)};
TE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Km(c,a)};TE.prototype.getLocalScaling=function(){return k(Lm(this.kB),m)};TE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Mm(d,a,c)};TE.prototype.__destroy__=function(){Nm(this.kB)};function UE(){throw"cannot construct a btIndexedMesh, no constructor in IDL";}UE.prototype=Object.create(f.prototype);UE.prototype.constructor=UE;
UE.prototype.lB=UE;UE.mB={};b.btIndexedMesh=UE;UE.prototype.get_m_numTriangles=UE.prototype.UD=function(){return Om(this.kB)};UE.prototype.set_m_numTriangles=UE.prototype.LG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Pm(c,a)};Object.defineProperty(UE.prototype,"m_numTriangles",{get:UE.prototype.UD,set:UE.prototype.LG});UE.prototype.__destroy__=function(){Qm(this.kB)};function VE(){throw"cannot construct a btIndexedMeshArray, no constructor in IDL";}VE.prototype=Object.create(f.prototype);
VE.prototype.constructor=VE;VE.prototype.lB=VE;VE.mB={};b.btIndexedMeshArray=VE;VE.prototype.size=VE.prototype.size=function(){return Rm(this.kB)};VE.prototype.at=VE.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Sm(c,a),UE)};VE.prototype.__destroy__=function(){Tm(this.kB)};function WE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=void 0===a?Um():void 0===c?Vm(a):Wm(a,c);h(WE)[this.kB]=this}WE.prototype=Object.create(jE.prototype);
WE.prototype.constructor=WE;WE.prototype.lB=WE;WE.mB={};b.btTriangleMesh=WE;WE.prototype.addTriangle=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);void 0===e?Xm(g,a,c,d):Ym(g,a,c,d,e)};WE.prototype.findOrAddVertex=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return Zm(d,a,c)};
WE.prototype.addIndex=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$m(c,a)};WE.prototype.getIndexedMeshArray=function(){return k(an(this.kB),VE)};WE.prototype.setScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);bn(c,a)};WE.prototype.__destroy__=function(){cn(this.kB)};function XE(){this.kB=dn();h(XE)[this.kB]=this}XE.prototype=Object.create(ZD.prototype);XE.prototype.constructor=XE;XE.prototype.lB=XE;XE.mB={};b.btEmptyShape=XE;
XE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);en(c,a)};XE.prototype.getLocalScaling=function(){return k(fn(this.kB),m)};XE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);gn(d,a,c)};XE.prototype.__destroy__=function(){hn(this.kB)};function YE(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=jn(a,c);h(YE)[this.kB]=this}YE.prototype=Object.create(ZD.prototype);
YE.prototype.constructor=YE;YE.prototype.lB=YE;YE.mB={};b.btStaticPlaneShape=YE;YE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);kn(c,a)};YE.prototype.getLocalScaling=function(){return k(ln(this.kB),m)};YE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);mn(d,a,c)};YE.prototype.__destroy__=function(){nn(this.kB)};
function ZE(a,c,d){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);this.kB=void 0===d?on(a,c):pn(a,c,d);h(ZE)[this.kB]=this}ZE.prototype=Object.create(kE.prototype);ZE.prototype.constructor=ZE;ZE.prototype.lB=ZE;ZE.mB={};b.btBvhTriangleMeshShape=ZE;ZE.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);qn(c,a)};ZE.prototype.getLocalScaling=function(){return k(rn(this.kB),m)};
ZE.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);sn(d,a,c)};ZE.prototype.__destroy__=function(){tn(this.kB)};
function $E(a,c,d,e,g,n,z,T,Da){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);n&&"object"===typeof n&&(n=n.kB);z&&"object"===typeof z&&(z=z.kB);T&&"object"===typeof T&&(T=T.kB);Da&&"object"===typeof Da&&(Da=Da.kB);this.kB=un(a,c,d,e,g,n,z,T,Da);h($E)[this.kB]=this}$E.prototype=Object.create(ZD.prototype);$E.prototype.constructor=$E;$E.prototype.lB=$E;$E.mB={};
b.btHeightfieldTerrainShape=$E;$E.prototype.setMargin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vn(c,a)};$E.prototype.getMargin=function(){return wn(this.kB)};$E.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xn(c,a)};$E.prototype.getLocalScaling=function(){return k(yn(this.kB),m)};$E.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);zn(d,a,c)};
$E.prototype.__destroy__=function(){An(this.kB)};function aF(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=Bn(a,c,d,e);h(aF)[this.kB]=this}aF.prototype=Object.create(f.prototype);aF.prototype.constructor=aF;aF.prototype.lB=aF;aF.mB={};b.btAABB=aF;aF.prototype.invalidate=function(){Cn(this.kB)};aF.prototype.increment_margin=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dn(c,a)};
aF.prototype.copy_with_margin=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);En(d,a,c)};aF.prototype.__destroy__=function(){Fn(this.kB)};function bF(){this.kB=Gn();h(bF)[this.kB]=this}bF.prototype=Object.create(f.prototype);bF.prototype.constructor=bF;bF.prototype.lB=bF;bF.mB={};b.btPrimitiveTriangle=bF;bF.prototype.__destroy__=function(){Hn(this.kB)};
function cF(a,c,d){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);this.kB=In(a,c,d);h(cF)[this.kB]=this}cF.prototype=Object.create(f.prototype);cF.prototype.constructor=cF;cF.prototype.lB=cF;cF.mB={};b.btTriangleShapeEx=cF;cF.prototype.getAabb=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Jn(e,a,c,d)};
cF.prototype.applyTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Kn(c,a)};cF.prototype.buildTriPlane=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ln(c,a)};cF.prototype.__destroy__=function(){Mn(this.kB)};function dF(){this.kB=Nn();h(dF)[this.kB]=this}dF.prototype=Object.create(f.prototype);dF.prototype.constructor=dF;dF.prototype.lB=dF;dF.mB={};b.btTetrahedronShapeEx=dF;
dF.prototype.setVertices=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);On(g,a,c,d,e)};dF.prototype.__destroy__=function(){Pn(this.kB)};function eF(){throw"cannot construct a CompoundPrimitiveManager, no constructor in IDL";}eF.prototype=Object.create(lE.prototype);eF.prototype.constructor=eF;eF.prototype.lB=eF;eF.mB={};b.CompoundPrimitiveManager=eF;
eF.prototype.get_primitive_count=function(){return Qn(this.kB)};eF.prototype.get_primitive_box=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Rn(d,a,c)};eF.prototype.get_primitive_triangle=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Sn(d,a,c)};eF.prototype.is_trimesh=function(){return!!Tn(this.kB)};eF.prototype.get_m_compoundShape=eF.prototype.VC=function(){return k(Un(this.kB),H)};
eF.prototype.set_m_compoundShape=eF.prototype.MF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vn(c,a)};Object.defineProperty(eF.prototype,"m_compoundShape",{get:eF.prototype.VC,set:eF.prototype.MF});eF.prototype.__destroy__=function(){Wn(this.kB)};function H(a){a&&"object"===typeof a&&(a=a.kB);this.kB=void 0===a?Xn():Yn(a);h(H)[this.kB]=this}H.prototype=Object.create(w.prototype);H.prototype.constructor=H;H.prototype.lB=H;H.mB={};b.btGImpactCompoundShape=H;
H.prototype.childrenHasTransform=function(){return!!Zn(this.kB)};H.prototype.getPrimitiveManager=function(){return k($n(this.kB),lE)};H.prototype.getCompoundPrimitiveManager=function(){return k(ao(this.kB),eF)};H.prototype.getNumChildShapes=function(){return bo(this.kB)};H.prototype.addChildShape=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);co(d,a,c)};
H.prototype.getChildShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(eo(c,a),l)};H.prototype.getChildAabb=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);fo(g,a,c,d,e)};H.prototype.getChildTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(go(c,a),r)};
H.prototype.setChildTransform=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);ho(d,a,c)};H.prototype.calculateLocalInertia=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);io(d,a,c)};H.prototype.getName=function(){return sa(jo(this.kB))};H.prototype.getGImpactShapeType=function(){return ko(this.kB)};H.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);lo(c,a)};
H.prototype.getLocalScaling=function(){return k(mo(this.kB),m)};H.prototype.updateBound=function(){no(this.kB)};H.prototype.postUpdate=function(){oo(this.kB)};H.prototype.getShapeType=function(){return po(this.kB)};H.prototype.needsRetrieveTriangles=function(){return!!qo(this.kB)};H.prototype.needsRetrieveTetrahedrons=function(){return!!ro(this.kB)};H.prototype.getBulletTriangle=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);so(d,a,c)};
H.prototype.getBulletTetrahedron=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);to(d,a,c)};H.prototype.__destroy__=function(){uo(this.kB)};function I(a){a&&"object"===typeof a&&(a=a.kB);this.kB=void 0===a?vo():wo(a);h(I)[this.kB]=this}I.prototype=Object.create(lE.prototype);I.prototype.constructor=I;I.prototype.lB=I;I.mB={};b.TrimeshPrimitiveManager=I;I.prototype.lock=I.prototype.lock=function(){xo(this.kB)};I.prototype.unlock=I.prototype.unlock=function(){yo(this.kB)};
I.prototype.is_trimesh=function(){return!!zo(this.kB)};I.prototype.get_vertex_count=function(){return Ao(this.kB)};I.prototype.get_indices=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);Bo(g,a,c,d,e)};I.prototype.get_vertex=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Co(d,a,c)};
I.prototype.get_bullet_triangle=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Do(d,a,c)};I.prototype.get_m_margin=I.prototype.LD=function(){return Eo(this.kB)};I.prototype.set_m_margin=I.prototype.CG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Fo(c,a)};Object.defineProperty(I.prototype,"m_margin",{get:I.prototype.LD,set:I.prototype.CG});I.prototype.get_m_meshInterface=I.prototype.OD=function(){return k(Go(this.kB),jE)};
I.prototype.set_m_meshInterface=I.prototype.FG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ho(c,a)};Object.defineProperty(I.prototype,"m_meshInterface",{get:I.prototype.OD,set:I.prototype.FG});I.prototype.get_m_part=I.prototype.VD=function(){return Io(this.kB)};I.prototype.set_m_part=I.prototype.MG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jo(c,a)};Object.defineProperty(I.prototype,"m_part",{get:I.prototype.VD,set:I.prototype.MG});
I.prototype.get_m_lock_count=I.prototype.JD=function(){return Ko(this.kB)};I.prototype.set_m_lock_count=I.prototype.AG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Lo(c,a)};Object.defineProperty(I.prototype,"m_lock_count",{get:I.prototype.JD,set:I.prototype.AG});I.prototype.get_numverts=I.prototype.LE=function(){return Mo(this.kB)};I.prototype.set_numverts=I.prototype.DH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);No(c,a)};
Object.defineProperty(I.prototype,"numverts",{get:I.prototype.LE,set:I.prototype.DH});I.prototype.get_type=I.prototype.PE=function(){return Oo(this.kB)};I.prototype.set_type=I.prototype.HH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Po(c,a)};Object.defineProperty(I.prototype,"type",{get:I.prototype.PE,set:I.prototype.HH});I.prototype.get_stride=I.prototype.NE=function(){return Qo(this.kB)};
I.prototype.set_stride=I.prototype.FH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ro(c,a)};Object.defineProperty(I.prototype,"stride",{get:I.prototype.NE,set:I.prototype.FH});I.prototype.get_indexstride=I.prototype.gC=function(){return So(this.kB)};I.prototype.set_indexstride=I.prototype.YE=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);To(c,a)};Object.defineProperty(I.prototype,"indexstride",{get:I.prototype.gC,set:I.prototype.YE});
I.prototype.get_numfaces=I.prototype.KE=function(){return Uo(this.kB)};I.prototype.set_numfaces=I.prototype.CH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vo(c,a)};Object.defineProperty(I.prototype,"numfaces",{get:I.prototype.KE,set:I.prototype.CH});I.prototype.get_indicestype=I.prototype.hC=function(){return Wo(this.kB)};I.prototype.set_indicestype=I.prototype.ZE=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Xo(c,a)};
Object.defineProperty(I.prototype,"indicestype",{get:I.prototype.hC,set:I.prototype.ZE});I.prototype.__destroy__=function(){Yo(this.kB)};function fF(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=Zo(a,c);h(fF)[this.kB]=this}fF.prototype=Object.create(w.prototype);fF.prototype.constructor=fF;fF.prototype.lB=fF;fF.mB={};b.btGImpactMeshShapePart=fF;fF.prototype.getTrimeshPrimitiveManager=function(){return k($o(this.kB),I)};fF.prototype.getVertexCount=function(){return ap(this.kB)};
fF.prototype.getVertex=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);bp(d,a,c)};fF.prototype.getPart=function(){return cp(this.kB)};fF.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);dp(c,a)};fF.prototype.getLocalScaling=function(){return k(ep(this.kB),m)};fF.prototype.updateBound=function(){fp(this.kB)};fF.prototype.postUpdate=function(){gp(this.kB)};fF.prototype.getShapeType=function(){return hp(this.kB)};
fF.prototype.needsRetrieveTriangles=function(){return!!ip(this.kB)};fF.prototype.needsRetrieveTetrahedrons=function(){return!!jp(this.kB)};fF.prototype.getBulletTriangle=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);kp(d,a,c)};fF.prototype.getBulletTetrahedron=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);lp(d,a,c)};fF.prototype.__destroy__=function(){mp(this.kB)};
function gF(a){a&&"object"===typeof a&&(a=a.kB);this.kB=np(a);h(gF)[this.kB]=this}gF.prototype=Object.create(w.prototype);gF.prototype.constructor=gF;gF.prototype.lB=gF;gF.mB={};b.btGImpactMeshShape=gF;gF.prototype.getMeshInterface=function(){return k(op(this.kB),jE)};gF.prototype.getMeshPartCount=function(){return pp(this.kB)};gF.prototype.getMeshPart=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(qp(c,a),fF)};gF.prototype.calculateSerializeBufferSize=function(){return rp(this.kB)};
gF.prototype.setLocalScaling=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);sp(c,a)};gF.prototype.getLocalScaling=function(){return k(tp(this.kB),m)};gF.prototype.updateBound=function(){up(this.kB)};gF.prototype.postUpdate=function(){vp(this.kB)};gF.prototype.getShapeType=function(){return wp(this.kB)};gF.prototype.needsRetrieveTriangles=function(){return!!xp(this.kB)};gF.prototype.needsRetrieveTetrahedrons=function(){return!!yp(this.kB)};
gF.prototype.getBulletTriangle=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);zp(d,a,c)};gF.prototype.getBulletTetrahedron=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Ap(d,a,c)};gF.prototype.__destroy__=function(){Bp(this.kB)};
function hF(a,c){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);this.kB=void 0===a?Cp():void 0===c?_emscripten_bind_btCollisionAlgorithmConstructionInfo_btCollisionAlgorithmConstructionInfo_1(a):Dp(a,c);h(hF)[this.kB]=this}hF.prototype=Object.create(f.prototype);hF.prototype.constructor=hF;hF.prototype.lB=hF;hF.mB={};b.btCollisionAlgorithmConstructionInfo=hF;hF.prototype.get_m_dispatcher1=hF.prototype.eD=function(){return k(Ep(this.kB),TD)};
hF.prototype.set_m_dispatcher1=hF.prototype.WF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Fp(c,a)};Object.defineProperty(hF.prototype,"m_dispatcher1",{get:hF.prototype.eD,set:hF.prototype.WF});hF.prototype.get_m_manifold=hF.prototype.KD=function(){return k(Gp(this.kB),oE)};hF.prototype.set_m_manifold=hF.prototype.BG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Hp(c,a)};Object.defineProperty(hF.prototype,"m_manifold",{get:hF.prototype.KD,set:hF.prototype.BG});
hF.prototype.__destroy__=function(){Ip(this.kB)};function iF(a,c,d){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);this.kB=Jp(a,c,d);h(iF)[this.kB]=this}iF.prototype=Object.create(mE.prototype);iF.prototype.constructor=iF;iF.prototype.lB=iF;iF.mB={};b.btGImpactCollisionAlgorithm=iF;iF.prototype.registerAlgorithm=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Kp(c,a)};iF.prototype.__destroy__=function(){Lp(this.kB)};
function jF(){this.kB=Mp();h(jF)[this.kB]=this}jF.prototype=Object.create(f.prototype);jF.prototype.constructor=jF;jF.prototype.lB=jF;jF.mB={};b.btDefaultCollisionConstructionInfo=jF;jF.prototype.__destroy__=function(){Np(this.kB)};function oE(){this.kB=Op();h(oE)[this.kB]=this}oE.prototype=Object.create(f.prototype);oE.prototype.constructor=oE;oE.prototype.lB=oE;oE.mB={};b.btPersistentManifold=oE;oE.prototype.getBody0=function(){return k(Pp(this.kB),q)};
oE.prototype.getBody1=function(){return k(Qp(this.kB),q)};oE.prototype.getNumContacts=function(){return Rp(this.kB)};oE.prototype.getContactPoint=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Sp(c,a),E)};oE.prototype.__destroy__=function(){Tp(this.kB)};function kF(a){a&&"object"===typeof a&&(a=a.kB);this.kB=Up(a);h(kF)[this.kB]=this}kF.prototype=Object.create(TD.prototype);kF.prototype.constructor=kF;kF.prototype.lB=kF;kF.mB={};b.btCollisionDispatcher=kF;
kF.prototype.getNumManifolds=function(){return Vp(this.kB)};kF.prototype.getManifoldByIndexInternal=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Wp(c,a),oE)};kF.prototype.__destroy__=function(){Xp(this.kB)};function lF(){throw"cannot construct a btOverlappingPairCallback, no constructor in IDL";}lF.prototype=Object.create(f.prototype);lF.prototype.constructor=lF;lF.prototype.lB=lF;lF.mB={};b.btOverlappingPairCallback=lF;lF.prototype.__destroy__=function(){Yp(this.kB)};
function UD(){throw"cannot construct a btOverlappingPairCache, no constructor in IDL";}UD.prototype=Object.create(f.prototype);UD.prototype.constructor=UD;UD.prototype.lB=UD;UD.mB={};b.btOverlappingPairCache=UD;UD.prototype.setInternalGhostPairCallback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Zp(c,a)};UD.prototype.getNumOverlappingPairs=function(){return $p(this.kB)};UD.prototype.__destroy__=function(){aq(this.kB)};
function mF(a,c,d,e,g){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);this.kB=void 0===d?bq(a,c):void 0===e?cq(a,c,d):void 0===g?dq(a,c,d,e):eq(a,c,d,e,g);h(mF)[this.kB]=this}mF.prototype=Object.create(f.prototype);mF.prototype.constructor=mF;mF.prototype.lB=mF;mF.mB={};b.btAxisSweep3=mF;mF.prototype.__destroy__=function(){fq(this.kB)};
function VD(){throw"cannot construct a btBroadphaseInterface, no constructor in IDL";}VD.prototype=Object.create(f.prototype);VD.prototype.constructor=VD;VD.prototype.lB=VD;VD.mB={};b.btBroadphaseInterface=VD;VD.prototype.getOverlappingPairCache=function(){return k(gq(this.kB),UD)};VD.prototype.__destroy__=function(){hq(this.kB)};function nF(){throw"cannot construct a btCollisionConfiguration, no constructor in IDL";}nF.prototype=Object.create(f.prototype);nF.prototype.constructor=nF;
nF.prototype.lB=nF;nF.mB={};b.btCollisionConfiguration=nF;nF.prototype.__destroy__=function(){iq(this.kB)};function oF(){this.kB=jq();h(oF)[this.kB]=this}oF.prototype=Object.create(f.prototype);oF.prototype.constructor=oF;oF.prototype.lB=oF;oF.mB={};b.btDbvtBroadphase=oF;oF.prototype.__destroy__=function(){kq(this.kB)};function YD(){throw"cannot construct a btBroadphaseProxy, no constructor in IDL";}YD.prototype=Object.create(f.prototype);YD.prototype.constructor=YD;YD.prototype.lB=YD;YD.mB={};
b.btBroadphaseProxy=YD;YD.prototype.get_m_collisionFilterGroup=YD.prototype.nB=function(){return lq(this.kB)};YD.prototype.set_m_collisionFilterGroup=YD.prototype.pB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);mq(c,a)};Object.defineProperty(YD.prototype,"m_collisionFilterGroup",{get:YD.prototype.nB,set:YD.prototype.pB});YD.prototype.get_m_collisionFilterMask=YD.prototype.oB=function(){return nq(this.kB)};
YD.prototype.set_m_collisionFilterMask=YD.prototype.qB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);oq(c,a)};Object.defineProperty(YD.prototype,"m_collisionFilterMask",{get:YD.prototype.oB,set:YD.prototype.qB});YD.prototype.__destroy__=function(){pq(this.kB)};function J(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=void 0===e?qq(a,c,d):rq(a,c,d,e);h(J)[this.kB]=this}J.prototype=Object.create(f.prototype);
J.prototype.constructor=J;J.prototype.lB=J;J.mB={};b.btRigidBodyConstructionInfo=J;J.prototype.get_m_linearDamping=J.prototype.DD=function(){return sq(this.kB)};J.prototype.set_m_linearDamping=J.prototype.uG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);tq(c,a)};Object.defineProperty(J.prototype,"m_linearDamping",{get:J.prototype.DD,set:J.prototype.uG});J.prototype.get_m_angularDamping=J.prototype.HC=function(){return uq(this.kB)};
J.prototype.set_m_angularDamping=J.prototype.yF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vq(c,a)};Object.defineProperty(J.prototype,"m_angularDamping",{get:J.prototype.HC,set:J.prototype.yF});J.prototype.get_m_friction=J.prototype.kD=function(){return wq(this.kB)};J.prototype.set_m_friction=J.prototype.bG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xq(c,a)};Object.defineProperty(J.prototype,"m_friction",{get:J.prototype.kD,set:J.prototype.bG});
J.prototype.get_m_rollingFriction=J.prototype.dE=function(){return yq(this.kB)};J.prototype.set_m_rollingFriction=J.prototype.WG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zq(c,a)};Object.defineProperty(J.prototype,"m_rollingFriction",{get:J.prototype.dE,set:J.prototype.WG});J.prototype.get_m_restitution=J.prototype.bE=function(){return Aq(this.kB)};J.prototype.set_m_restitution=J.prototype.UG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Bq(c,a)};
Object.defineProperty(J.prototype,"m_restitution",{get:J.prototype.bE,set:J.prototype.UG});J.prototype.get_m_linearSleepingThreshold=J.prototype.ED=function(){return Cq(this.kB)};J.prototype.set_m_linearSleepingThreshold=J.prototype.vG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dq(c,a)};Object.defineProperty(J.prototype,"m_linearSleepingThreshold",{get:J.prototype.ED,set:J.prototype.vG});J.prototype.get_m_angularSleepingThreshold=J.prototype.IC=function(){return Eq(this.kB)};
J.prototype.set_m_angularSleepingThreshold=J.prototype.zF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Fq(c,a)};Object.defineProperty(J.prototype,"m_angularSleepingThreshold",{get:J.prototype.IC,set:J.prototype.zF});J.prototype.get_m_additionalDamping=J.prototype.CC=function(){return!!Gq(this.kB)};J.prototype.set_m_additionalDamping=J.prototype.tF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Hq(c,a)};
Object.defineProperty(J.prototype,"m_additionalDamping",{get:J.prototype.CC,set:J.prototype.tF});J.prototype.get_m_additionalDampingFactor=J.prototype.DC=function(){return Iq(this.kB)};J.prototype.set_m_additionalDampingFactor=J.prototype.uF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jq(c,a)};Object.defineProperty(J.prototype,"m_additionalDampingFactor",{get:J.prototype.DC,set:J.prototype.uF});J.prototype.get_m_additionalLinearDampingThresholdSqr=J.prototype.EC=function(){return Kq(this.kB)};
J.prototype.set_m_additionalLinearDampingThresholdSqr=J.prototype.vF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Lq(c,a)};Object.defineProperty(J.prototype,"m_additionalLinearDampingThresholdSqr",{get:J.prototype.EC,set:J.prototype.vF});J.prototype.get_m_additionalAngularDampingThresholdSqr=J.prototype.BC=function(){return Mq(this.kB)};J.prototype.set_m_additionalAngularDampingThresholdSqr=J.prototype.sF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Nq(c,a)};
Object.defineProperty(J.prototype,"m_additionalAngularDampingThresholdSqr",{get:J.prototype.BC,set:J.prototype.sF});J.prototype.get_m_additionalAngularDampingFactor=J.prototype.AC=function(){return Oq(this.kB)};J.prototype.set_m_additionalAngularDampingFactor=J.prototype.rF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Pq(c,a)};Object.defineProperty(J.prototype,"m_additionalAngularDampingFactor",{get:J.prototype.AC,set:J.prototype.rF});J.prototype.__destroy__=function(){Qq(this.kB)};
function K(a){a&&"object"===typeof a&&(a=a.kB);this.kB=Rq(a);h(K)[this.kB]=this}K.prototype=Object.create(q.prototype);K.prototype.constructor=K;K.prototype.lB=K;K.mB={};b.btRigidBody=K;K.prototype.getCenterOfMassTransform=function(){return k(Sq(this.kB),r)};K.prototype.setCenterOfMassTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Tq(c,a)};K.prototype.setSleepingThresholds=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Uq(d,a,c)};
K.prototype.getLinearDamping=function(){return Vq(this.kB)};K.prototype.getAngularDamping=function(){return Wq(this.kB)};K.prototype.setDamping=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Xq(d,a,c)};K.prototype.setMassProps=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Yq(d,a,c)};K.prototype.getLinearFactor=function(){return k(Zq(this.kB),m)};
K.prototype.setLinearFactor=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$q(c,a)};K.prototype.applyTorque=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ar(c,a)};K.prototype.applyLocalTorque=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);br(c,a)};K.prototype.applyForce=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);cr(d,a,c)};
K.prototype.applyCentralForce=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);dr(c,a)};K.prototype.applyCentralLocalForce=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);er(c,a)};K.prototype.applyTorqueImpulse=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fr(c,a)};K.prototype.applyImpulse=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);gr(d,a,c)};
K.prototype.applyCentralImpulse=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hr(c,a)};K.prototype.updateInertiaTensor=function(){ir(this.kB)};K.prototype.getLinearVelocity=function(){return k(jr(this.kB),m)};K.prototype.getAngularVelocity=function(){return k(kr(this.kB),m)};K.prototype.setLinearVelocity=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);lr(c,a)};K.prototype.setAngularVelocity=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);mr(c,a)};
K.prototype.getMotionState=function(){return k(nr(this.kB),dE)};K.prototype.setMotionState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);or(c,a)};K.prototype.getAngularFactor=function(){return k(pr(this.kB),m)};K.prototype.setAngularFactor=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);qr(c,a)};K.prototype.upcast=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(rr(c,a),K)};
K.prototype.getAabb=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);sr(d,a,c)};K.prototype.applyGravity=function(){tr(this.kB)};K.prototype.getGravity=function(){return k(ur(this.kB),m)};K.prototype.setGravity=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vr(c,a)};K.prototype.getBroadphaseProxy=function(){return k(wr(this.kB),YD)};K.prototype.clearForces=function(){xr(this.kB)};
K.prototype.setFlags=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yr(c,a)};K.prototype.getFlags=function(){return zr(this.kB)};K.prototype.setAnisotropicFriction=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Ar(d,a,c)};K.prototype.getCollisionShape=function(){return k(Br(this.kB),l)};K.prototype.setContactProcessingThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Cr(c,a)};
K.prototype.setActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dr(c,a)};K.prototype.forceActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Er(c,a)};K.prototype.activate=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);void 0===a?Fr(c):Gr(c,a)};K.prototype.isActive=function(){return!!Hr(this.kB)};K.prototype.isKinematicObject=function(){return!!Ir(this.kB)};K.prototype.isStaticObject=function(){return!!Jr(this.kB)};
K.prototype.isStaticOrKinematicObject=function(){return!!Kr(this.kB)};K.prototype.getRestitution=function(){return Lr(this.kB)};K.prototype.getFriction=function(){return Mr(this.kB)};K.prototype.getRollingFriction=function(){return Nr(this.kB)};K.prototype.setRestitution=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Or(c,a)};K.prototype.setFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Pr(c,a)};
K.prototype.setRollingFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Qr(c,a)};K.prototype.getWorldTransform=function(){return k(Rr(this.kB),r)};K.prototype.getCollisionFlags=function(){return Sr(this.kB)};K.prototype.setCollisionFlags=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Tr(c,a)};K.prototype.setWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ur(c,a)};
K.prototype.setCollisionShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vr(c,a)};K.prototype.setCcdMotionThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Wr(c,a)};K.prototype.setCcdSweptSphereRadius=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Xr(c,a)};K.prototype.getUserIndex=function(){return Yr(this.kB)};K.prototype.setUserIndex=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Zr(c,a)};
K.prototype.getUserPointer=function(){return k($r(this.kB),XD)};K.prototype.setUserPointer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);as(c,a)};K.prototype.getBroadphaseHandle=function(){return k(bs(this.kB),YD)};K.prototype.__destroy__=function(){cs(this.kB)};function L(){this.kB=ds();h(L)[this.kB]=this}L.prototype=Object.create(f.prototype);L.prototype.constructor=L;L.prototype.lB=L;L.mB={};b.btConstraintSetting=L;L.prototype.get_m_tau=L.prototype.sE=function(){return es(this.kB)};
L.prototype.set_m_tau=L.prototype.kH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);gs(c,a)};Object.defineProperty(L.prototype,"m_tau",{get:L.prototype.sE,set:L.prototype.kH});L.prototype.get_m_damping=L.prototype.aD=function(){return hs(this.kB)};L.prototype.set_m_damping=L.prototype.SF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);is(c,a)};Object.defineProperty(L.prototype,"m_damping",{get:L.prototype.aD,set:L.prototype.SF});
L.prototype.get_m_impulseClamp=L.prototype.wD=function(){return js(this.kB)};L.prototype.set_m_impulseClamp=L.prototype.nG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ks(c,a)};Object.defineProperty(L.prototype,"m_impulseClamp",{get:L.prototype.wD,set:L.prototype.nG});L.prototype.__destroy__=function(){ls(this.kB)};
function pF(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=void 0===d?ms(a,c):void 0===e?_emscripten_bind_btPoint2PointConstraint_btPoint2PointConstraint_3(a,c,d):ns(a,c,d,e);h(pF)[this.kB]=this}pF.prototype=Object.create(aE.prototype);pF.prototype.constructor=pF;pF.prototype.lB=pF;pF.mB={};b.btPoint2PointConstraint=pF;
pF.prototype.setPivotA=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ps(c,a)};pF.prototype.setPivotB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);qs(c,a)};pF.prototype.getPivotInA=function(){return k(rs(this.kB),m)};pF.prototype.getPivotInB=function(){return k(ss(this.kB),m)};pF.prototype.enableFeedback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ts(c,a)};pF.prototype.getBreakingImpulseThreshold=function(){return us(this.kB)};
pF.prototype.setBreakingImpulseThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vs(c,a)};pF.prototype.getParam=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return xs(d,a,c)};pF.prototype.setParam=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);ys(e,a,c,d)};pF.prototype.get_m_setting=pF.prototype.fE=function(){return k(zs(this.kB),L)};
pF.prototype.set_m_setting=pF.prototype.YG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);As(c,a)};Object.defineProperty(pF.prototype,"m_setting",{get:pF.prototype.fE,set:pF.prototype.YG});pF.prototype.__destroy__=function(){Bs(this.kB)};
function qF(a,c,d,e,g){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);this.kB=void 0===e?Cs(a,c,d):void 0===g?_emscripten_bind_btGeneric6DofSpringConstraint_btGeneric6DofSpringConstraint_4(a,c,d,e):Ds(a,c,d,e,g);h(qF)[this.kB]=this}qF.prototype=Object.create(pE.prototype);qF.prototype.constructor=qF;qF.prototype.lB=qF;qF.mB={};b.btGeneric6DofSpringConstraint=qF;
qF.prototype.enableSpring=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Es(d,a,c)};qF.prototype.setStiffness=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Fs(d,a,c)};qF.prototype.setDamping=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Gs(d,a,c)};
qF.prototype.setEquilibriumPoint=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);void 0===a?Hs(d):void 0===c?Is(d,a):Js(d,a,c)};qF.prototype.setLinearLowerLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ks(c,a)};qF.prototype.setLinearUpperLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ls(c,a)};qF.prototype.setAngularLowerLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ms(c,a)};
qF.prototype.setAngularUpperLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ns(c,a)};qF.prototype.getFrameOffsetA=function(){return k(Os(this.kB),r)};qF.prototype.enableFeedback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ps(c,a)};qF.prototype.getBreakingImpulseThreshold=function(){return Qs(this.kB)};qF.prototype.setBreakingImpulseThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Rs(c,a)};
qF.prototype.getParam=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return Ss(d,a,c)};qF.prototype.setParam=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Ts(e,a,c,d)};qF.prototype.__destroy__=function(){Us(this.kB)};function rF(){this.kB=Vs();h(rF)[this.kB]=this}rF.prototype=Object.create(f.prototype);rF.prototype.constructor=rF;rF.prototype.lB=rF;rF.mB={};
b.btSequentialImpulseConstraintSolver=rF;rF.prototype.__destroy__=function(){Ws(this.kB)};function sF(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=void 0===d?Xs(a,c):void 0===e?_emscripten_bind_btConeTwistConstraint_btConeTwistConstraint_3(a,c,d):Ys(a,c,d,e);h(sF)[this.kB]=this}sF.prototype=Object.create(aE.prototype);sF.prototype.constructor=sF;sF.prototype.lB=sF;sF.mB={};
b.btConeTwistConstraint=sF;sF.prototype.setLimit=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Zs(d,a,c)};sF.prototype.setAngularOnly=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$s(c,a)};sF.prototype.setDamping=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);at(c,a)};sF.prototype.enableMotor=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);bt(c,a)};
sF.prototype.setMaxMotorImpulse=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ct(c,a)};sF.prototype.setMaxMotorImpulseNormalized=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);dt(c,a)};sF.prototype.setMotorTarget=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);et(c,a)};sF.prototype.setMotorTargetInConstraintSpace=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ft(c,a)};
sF.prototype.enableFeedback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);gt(c,a)};sF.prototype.getBreakingImpulseThreshold=function(){return ht(this.kB)};sF.prototype.setBreakingImpulseThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);it(c,a)};sF.prototype.getParam=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return jt(d,a,c)};
sF.prototype.setParam=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);kt(e,a,c,d)};sF.prototype.__destroy__=function(){lt(this.kB)};
function tF(a,c,d,e,g,n,z){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);n&&"object"===typeof n&&(n=n.kB);z&&"object"===typeof z&&(z=z.kB);this.kB=void 0===d?mt(a,c):void 0===e?nt(a,c,d):void 0===g?ot(a,c,d,e):void 0===n?pt(a,c,d,e,g):void 0===z?qt(a,c,d,e,g,n):rt(a,c,d,e,g,n,z);h(tF)[this.kB]=this}tF.prototype=Object.create(aE.prototype);tF.prototype.constructor=tF;
tF.prototype.lB=tF;tF.mB={};b.btHingeConstraint=tF;tF.prototype.getHingeAngle=function(){return st(this.kB)};tF.prototype.setLimit=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);void 0===g?tt(n,a,c,d,e):ut(n,a,c,d,e,g)};
tF.prototype.enableAngularMotor=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);vt(e,a,c,d)};tF.prototype.setAngularOnly=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);wt(c,a)};tF.prototype.enableMotor=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xt(c,a)};tF.prototype.setMaxMotorImpulse=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yt(c,a)};
tF.prototype.setMotorTarget=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);zt(d,a,c)};tF.prototype.enableFeedback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);At(c,a)};tF.prototype.getBreakingImpulseThreshold=function(){return Bt(this.kB)};tF.prototype.setBreakingImpulseThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ct(c,a)};
tF.prototype.getParam=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return Dt(d,a,c)};tF.prototype.setParam=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Et(e,a,c,d)};tF.prototype.__destroy__=function(){Ft(this.kB)};
function uF(a,c,d,e,g){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);this.kB=void 0===e?Gt(a,c,d):void 0===g?_emscripten_bind_btSliderConstraint_btSliderConstraint_4(a,c,d,e):Ht(a,c,d,e,g);h(uF)[this.kB]=this}uF.prototype=Object.create(aE.prototype);uF.prototype.constructor=uF;uF.prototype.lB=uF;uF.mB={};b.btSliderConstraint=uF;uF.prototype.getLinearPos=function(){return It(this.kB)};
uF.prototype.getAngularPos=function(){return Jt(this.kB)};uF.prototype.setLowerLinLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Kt(c,a)};uF.prototype.setUpperLinLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Lt(c,a)};uF.prototype.setLowerAngLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Mt(c,a)};uF.prototype.setUpperAngLimit=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Nt(c,a)};
uF.prototype.setPoweredLinMotor=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ot(c,a)};uF.prototype.setMaxLinMotorForce=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Pt(c,a)};uF.prototype.setTargetLinMotorVelocity=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Qt(c,a)};uF.prototype.enableFeedback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Rt(c,a)};uF.prototype.getBreakingImpulseThreshold=function(){return St(this.kB)};
uF.prototype.setBreakingImpulseThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Tt(c,a)};uF.prototype.getParam=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return Ut(d,a,c)};uF.prototype.setParam=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);Vt(e,a,c,d)};uF.prototype.__destroy__=function(){Wt(this.kB)};
function vF(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=Xt(a,c,d,e);h(vF)[this.kB]=this}vF.prototype=Object.create(aE.prototype);vF.prototype.constructor=vF;vF.prototype.lB=vF;vF.mB={};b.btFixedConstraint=vF;vF.prototype.enableFeedback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Yt(c,a)};vF.prototype.getBreakingImpulseThreshold=function(){return Zt(this.kB)};
vF.prototype.setBreakingImpulseThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$t(c,a)};vF.prototype.getParam=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return au(d,a,c)};vF.prototype.setParam=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);bu(e,a,c,d)};vF.prototype.__destroy__=function(){cu(this.kB)};
function wF(){throw"cannot construct a btConstraintSolver, no constructor in IDL";}wF.prototype=Object.create(f.prototype);wF.prototype.constructor=wF;wF.prototype.lB=wF;wF.mB={};b.btConstraintSolver=wF;wF.prototype.__destroy__=function(){du(this.kB)};function p(){throw"cannot construct a btDispatcherInfo, no constructor in IDL";}p.prototype=Object.create(f.prototype);p.prototype.constructor=p;p.prototype.lB=p;p.mB={};b.btDispatcherInfo=p;p.prototype.get_m_timeStep=p.prototype.uE=function(){return eu(this.kB)};
p.prototype.set_m_timeStep=p.prototype.mH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fu(c,a)};Object.defineProperty(p.prototype,"m_timeStep",{get:p.prototype.uE,set:p.prototype.mH});p.prototype.get_m_stepCount=p.prototype.lE=function(){return gu(this.kB)};p.prototype.set_m_stepCount=p.prototype.dH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hu(c,a)};Object.defineProperty(p.prototype,"m_stepCount",{get:p.prototype.lE,set:p.prototype.dH});
p.prototype.get_m_dispatchFunc=p.prototype.cD=function(){return iu(this.kB)};p.prototype.set_m_dispatchFunc=p.prototype.UF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ju(c,a)};Object.defineProperty(p.prototype,"m_dispatchFunc",{get:p.prototype.cD,set:p.prototype.UF});p.prototype.get_m_timeOfImpact=p.prototype.tE=function(){return ku(this.kB)};p.prototype.set_m_timeOfImpact=p.prototype.lH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);lu(c,a)};
Object.defineProperty(p.prototype,"m_timeOfImpact",{get:p.prototype.tE,set:p.prototype.lH});p.prototype.get_m_useContinuous=p.prototype.wE=function(){return!!mu(this.kB)};p.prototype.set_m_useContinuous=p.prototype.oH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);nu(c,a)};Object.defineProperty(p.prototype,"m_useContinuous",{get:p.prototype.wE,set:p.prototype.oH});p.prototype.get_m_enableSatConvex=p.prototype.hD=function(){return!!ou(this.kB)};
p.prototype.set_m_enableSatConvex=p.prototype.ZF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pu(c,a)};Object.defineProperty(p.prototype,"m_enableSatConvex",{get:p.prototype.hD,set:p.prototype.ZF});p.prototype.get_m_enableSPU=p.prototype.gD=function(){return!!qu(this.kB)};p.prototype.set_m_enableSPU=p.prototype.YF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ru(c,a)};Object.defineProperty(p.prototype,"m_enableSPU",{get:p.prototype.gD,set:p.prototype.YF});
p.prototype.get_m_useEpa=p.prototype.yE=function(){return!!su(this.kB)};p.prototype.set_m_useEpa=p.prototype.qH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);tu(c,a)};Object.defineProperty(p.prototype,"m_useEpa",{get:p.prototype.yE,set:p.prototype.qH});p.prototype.get_m_allowedCcdPenetration=p.prototype.FC=function(){return uu(this.kB)};p.prototype.set_m_allowedCcdPenetration=p.prototype.wF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vu(c,a)};
Object.defineProperty(p.prototype,"m_allowedCcdPenetration",{get:p.prototype.FC,set:p.prototype.wF});p.prototype.get_m_useConvexConservativeDistanceUtil=p.prototype.xE=function(){return!!wu(this.kB)};p.prototype.set_m_useConvexConservativeDistanceUtil=p.prototype.pH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xu(c,a)};Object.defineProperty(p.prototype,"m_useConvexConservativeDistanceUtil",{get:p.prototype.xE,set:p.prototype.pH});
p.prototype.get_m_convexConservativeDistanceThreshold=p.prototype.YC=function(){return yu(this.kB)};p.prototype.set_m_convexConservativeDistanceThreshold=p.prototype.PF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zu(c,a)};Object.defineProperty(p.prototype,"m_convexConservativeDistanceThreshold",{get:p.prototype.YC,set:p.prototype.PF});p.prototype.__destroy__=function(){Au(this.kB)};function t(){throw"cannot construct a btContactSolverInfo, no constructor in IDL";}t.prototype=Object.create(f.prototype);
t.prototype.constructor=t;t.prototype.lB=t;t.mB={};b.btContactSolverInfo=t;t.prototype.get_m_splitImpulse=t.prototype.iE=function(){return!!Bu(this.kB)};t.prototype.set_m_splitImpulse=t.prototype.aH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Cu(c,a)};Object.defineProperty(t.prototype,"m_splitImpulse",{get:t.prototype.iE,set:t.prototype.aH});t.prototype.get_m_splitImpulsePenetrationThreshold=t.prototype.jE=function(){return Du(this.kB)};
t.prototype.set_m_splitImpulsePenetrationThreshold=t.prototype.bH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Eu(c,a)};Object.defineProperty(t.prototype,"m_splitImpulsePenetrationThreshold",{get:t.prototype.jE,set:t.prototype.bH});t.prototype.get_m_numIterations=t.prototype.TD=function(){return Fu(this.kB)};t.prototype.set_m_numIterations=t.prototype.KG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Gu(c,a)};
Object.defineProperty(t.prototype,"m_numIterations",{get:t.prototype.TD,set:t.prototype.KG});t.prototype.__destroy__=function(){Hu(this.kB)};function M(){this.kB=Iu();h(M)[this.kB]=this}M.prototype=Object.create(f.prototype);M.prototype.constructor=M;M.prototype.lB=M;M.mB={};b.btVehicleTuning=M;M.prototype.get_m_suspensionStiffness=M.prototype.BB=function(){return Ju(this.kB)};M.prototype.set_m_suspensionStiffness=M.prototype.IB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ku(c,a)};
Object.defineProperty(M.prototype,"m_suspensionStiffness",{get:M.prototype.BB,set:M.prototype.IB});M.prototype.get_m_suspensionCompression=M.prototype.mE=function(){return Lu(this.kB)};M.prototype.set_m_suspensionCompression=M.prototype.eH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Mu(c,a)};Object.defineProperty(M.prototype,"m_suspensionCompression",{get:M.prototype.mE,set:M.prototype.eH});M.prototype.get_m_suspensionDamping=M.prototype.nE=function(){return Nu(this.kB)};
M.prototype.set_m_suspensionDamping=M.prototype.fH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ou(c,a)};Object.defineProperty(M.prototype,"m_suspensionDamping",{get:M.prototype.nE,set:M.prototype.fH});M.prototype.get_m_maxSuspensionTravelCm=M.prototype.AB=function(){return Pu(this.kB)};M.prototype.set_m_maxSuspensionTravelCm=M.prototype.HB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Qu(c,a)};
Object.defineProperty(M.prototype,"m_maxSuspensionTravelCm",{get:M.prototype.AB,set:M.prototype.HB});M.prototype.get_m_frictionSlip=M.prototype.wB=function(){return Ru(this.kB)};M.prototype.set_m_frictionSlip=M.prototype.DB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Su(c,a)};Object.defineProperty(M.prototype,"m_frictionSlip",{get:M.prototype.wB,set:M.prototype.DB});M.prototype.get_m_maxSuspensionForce=M.prototype.zB=function(){return Tu(this.kB)};
M.prototype.set_m_maxSuspensionForce=M.prototype.GB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Uu(c,a)};Object.defineProperty(M.prototype,"m_maxSuspensionForce",{get:M.prototype.zB,set:M.prototype.GB});function xF(){throw"cannot construct a btVehicleRaycasterResult, no constructor in IDL";}xF.prototype=Object.create(f.prototype);xF.prototype.constructor=xF;xF.prototype.lB=xF;xF.mB={};b.btVehicleRaycasterResult=xF;
xF.prototype.get_m_hitPointInWorld=xF.prototype.tD=function(){return k(Vu(this.kB),m)};xF.prototype.set_m_hitPointInWorld=xF.prototype.kG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Wu(c,a)};Object.defineProperty(xF.prototype,"m_hitPointInWorld",{get:xF.prototype.tD,set:xF.prototype.kG});xF.prototype.get_m_hitNormalInWorld=xF.prototype.rD=function(){return k(Xu(this.kB),m)};
xF.prototype.set_m_hitNormalInWorld=xF.prototype.iG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Yu(c,a)};Object.defineProperty(xF.prototype,"m_hitNormalInWorld",{get:xF.prototype.rD,set:xF.prototype.iG});xF.prototype.get_m_distFraction=xF.prototype.fD=function(){return Zu(this.kB)};xF.prototype.set_m_distFraction=xF.prototype.XF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$u(c,a)};Object.defineProperty(xF.prototype,"m_distFraction",{get:xF.prototype.fD,set:xF.prototype.XF});
xF.prototype.__destroy__=function(){av(this.kB)};function yF(a){a&&"object"===typeof a&&(a=a.kB);this.kB=bv(a);h(yF)[this.kB]=this}yF.prototype=Object.create(qE.prototype);yF.prototype.constructor=yF;yF.prototype.lB=yF;yF.mB={};b.btDefaultVehicleRaycaster=yF;yF.prototype.castRay=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);cv(e,a,c,d)};yF.prototype.__destroy__=function(){dv(this.kB)};
function N(){throw"cannot construct a RaycastInfo, no constructor in IDL";}N.prototype=Object.create(f.prototype);N.prototype.constructor=N;N.prototype.lB=N;N.mB={};b.RaycastInfo=N;N.prototype.get_m_contactNormalWS=N.prototype.WC=function(){return k(ev(this.kB),m)};N.prototype.set_m_contactNormalWS=N.prototype.NF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fv(c,a)};Object.defineProperty(N.prototype,"m_contactNormalWS",{get:N.prototype.WC,set:N.prototype.NF});
N.prototype.get_m_contactPointWS=N.prototype.XC=function(){return k(gv(this.kB),m)};N.prototype.set_m_contactPointWS=N.prototype.OF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hv(c,a)};Object.defineProperty(N.prototype,"m_contactPointWS",{get:N.prototype.XC,set:N.prototype.OF});N.prototype.get_m_suspensionLength=N.prototype.oE=function(){return iv(this.kB)};N.prototype.set_m_suspensionLength=N.prototype.gH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jv(c,a)};
Object.defineProperty(N.prototype,"m_suspensionLength",{get:N.prototype.oE,set:N.prototype.gH});N.prototype.get_m_hardPointWS=N.prototype.oD=function(){return k(kv(this.kB),m)};N.prototype.set_m_hardPointWS=N.prototype.fG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);lv(c,a)};Object.defineProperty(N.prototype,"m_hardPointWS",{get:N.prototype.oD,set:N.prototype.fG});N.prototype.get_m_wheelDirectionWS=N.prototype.DE=function(){return k(mv(this.kB),m)};
N.prototype.set_m_wheelDirectionWS=N.prototype.vH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);nv(c,a)};Object.defineProperty(N.prototype,"m_wheelDirectionWS",{get:N.prototype.DE,set:N.prototype.vH});N.prototype.get_m_wheelAxleWS=N.prototype.CE=function(){return k(ov(this.kB),m)};N.prototype.set_m_wheelAxleWS=N.prototype.uH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pv(c,a)};Object.defineProperty(N.prototype,"m_wheelAxleWS",{get:N.prototype.CE,set:N.prototype.uH});
N.prototype.get_m_isInContact=N.prototype.zD=function(){return!!qv(this.kB)};N.prototype.set_m_isInContact=N.prototype.qG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);rv(c,a)};Object.defineProperty(N.prototype,"m_isInContact",{get:N.prototype.zD,set:N.prototype.qG});N.prototype.get_m_groundObject=N.prototype.nD=function(){return sv(this.kB)};N.prototype.set_m_groundObject=N.prototype.eG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);tv(c,a)};
Object.defineProperty(N.prototype,"m_groundObject",{get:N.prototype.nD,set:N.prototype.eG});N.prototype.__destroy__=function(){uv(this.kB)};function O(){throw"cannot construct a btWheelInfoConstructionInfo, no constructor in IDL";}O.prototype=Object.create(f.prototype);O.prototype.constructor=O;O.prototype.lB=O;O.mB={};b.btWheelInfoConstructionInfo=O;O.prototype.get_m_chassisConnectionCS=O.prototype.RC=function(){return k(vv(this.kB),m)};
O.prototype.set_m_chassisConnectionCS=O.prototype.IF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);wv(c,a)};Object.defineProperty(O.prototype,"m_chassisConnectionCS",{get:O.prototype.RC,set:O.prototype.IF});O.prototype.get_m_wheelDirectionCS=O.prototype.QB=function(){return k(xv(this.kB),m)};O.prototype.set_m_wheelDirectionCS=O.prototype.$B=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yv(c,a)};Object.defineProperty(O.prototype,"m_wheelDirectionCS",{get:O.prototype.QB,set:O.prototype.$B});
O.prototype.get_m_wheelAxleCS=O.prototype.PB=function(){return k(zv(this.kB),m)};O.prototype.set_m_wheelAxleCS=O.prototype.ZB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Av(c,a)};Object.defineProperty(O.prototype,"m_wheelAxleCS",{get:O.prototype.PB,set:O.prototype.ZB});O.prototype.get_m_suspensionRestLength=O.prototype.qE=function(){return Bv(this.kB)};O.prototype.set_m_suspensionRestLength=O.prototype.iH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Cv(c,a)};
Object.defineProperty(O.prototype,"m_suspensionRestLength",{get:O.prototype.qE,set:O.prototype.iH});O.prototype.get_m_maxSuspensionTravelCm=O.prototype.AB=function(){return Dv(this.kB)};O.prototype.set_m_maxSuspensionTravelCm=O.prototype.HB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ev(c,a)};Object.defineProperty(O.prototype,"m_maxSuspensionTravelCm",{get:O.prototype.AB,set:O.prototype.HB});O.prototype.get_m_wheelRadius=O.prototype.EE=function(){return Fv(this.kB)};
O.prototype.set_m_wheelRadius=O.prototype.wH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Gv(c,a)};Object.defineProperty(O.prototype,"m_wheelRadius",{get:O.prototype.EE,set:O.prototype.wH});O.prototype.get_m_suspensionStiffness=O.prototype.BB=function(){return Hv(this.kB)};O.prototype.set_m_suspensionStiffness=O.prototype.IB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Iv(c,a)};Object.defineProperty(O.prototype,"m_suspensionStiffness",{get:O.prototype.BB,set:O.prototype.IB});
O.prototype.get_m_wheelsDampingCompression=O.prototype.RB=function(){return Jv(this.kB)};O.prototype.set_m_wheelsDampingCompression=O.prototype.aC=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Kv(c,a)};Object.defineProperty(O.prototype,"m_wheelsDampingCompression",{get:O.prototype.RB,set:O.prototype.aC});O.prototype.get_m_wheelsDampingRelaxation=O.prototype.SB=function(){return Lv(this.kB)};
O.prototype.set_m_wheelsDampingRelaxation=O.prototype.bC=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Mv(c,a)};Object.defineProperty(O.prototype,"m_wheelsDampingRelaxation",{get:O.prototype.SB,set:O.prototype.bC});O.prototype.get_m_frictionSlip=O.prototype.wB=function(){return Nv(this.kB)};O.prototype.set_m_frictionSlip=O.prototype.DB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ov(c,a)};Object.defineProperty(O.prototype,"m_frictionSlip",{get:O.prototype.wB,set:O.prototype.DB});
O.prototype.get_m_maxSuspensionForce=O.prototype.zB=function(){return Pv(this.kB)};O.prototype.set_m_maxSuspensionForce=O.prototype.GB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Qv(c,a)};Object.defineProperty(O.prototype,"m_maxSuspensionForce",{get:O.prototype.zB,set:O.prototype.GB});O.prototype.get_m_bIsFrontWheel=O.prototype.JB=function(){return!!Rv(this.kB)};O.prototype.set_m_bIsFrontWheel=O.prototype.TB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Sv(c,a)};
Object.defineProperty(O.prototype,"m_bIsFrontWheel",{get:O.prototype.JB,set:O.prototype.TB});O.prototype.__destroy__=function(){Tv(this.kB)};function P(a){a&&"object"===typeof a&&(a=a.kB);this.kB=Uv(a);h(P)[this.kB]=this}P.prototype=Object.create(f.prototype);P.prototype.constructor=P;P.prototype.lB=P;P.mB={};b.btWheelInfo=P;P.prototype.getSuspensionRestLength=function(){return Vv(this.kB)};
P.prototype.updateWheel=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Wv(d,a,c)};P.prototype.get_m_suspensionStiffness=P.prototype.BB=function(){return Xv(this.kB)};P.prototype.set_m_suspensionStiffness=P.prototype.IB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Yv(c,a)};Object.defineProperty(P.prototype,"m_suspensionStiffness",{get:P.prototype.BB,set:P.prototype.IB});P.prototype.get_m_frictionSlip=P.prototype.wB=function(){return Zv(this.kB)};
P.prototype.set_m_frictionSlip=P.prototype.DB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$v(c,a)};Object.defineProperty(P.prototype,"m_frictionSlip",{get:P.prototype.wB,set:P.prototype.DB});P.prototype.get_m_engineForce=P.prototype.iD=function(){return aw(this.kB)};P.prototype.set_m_engineForce=P.prototype.$F=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);bw(c,a)};Object.defineProperty(P.prototype,"m_engineForce",{get:P.prototype.iD,set:P.prototype.$F});
P.prototype.get_m_rollInfluence=P.prototype.cE=function(){return cw(this.kB)};P.prototype.set_m_rollInfluence=P.prototype.VG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);dw(c,a)};Object.defineProperty(P.prototype,"m_rollInfluence",{get:P.prototype.cE,set:P.prototype.VG});P.prototype.get_m_suspensionRestLength1=P.prototype.rE=function(){return ew(this.kB)};P.prototype.set_m_suspensionRestLength1=P.prototype.jH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fw(c,a)};
Object.defineProperty(P.prototype,"m_suspensionRestLength1",{get:P.prototype.rE,set:P.prototype.jH});P.prototype.get_m_wheelsRadius=P.prototype.FE=function(){return gw(this.kB)};P.prototype.set_m_wheelsRadius=P.prototype.xH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hw(c,a)};Object.defineProperty(P.prototype,"m_wheelsRadius",{get:P.prototype.FE,set:P.prototype.xH});P.prototype.get_m_wheelsDampingCompression=P.prototype.RB=function(){return iw(this.kB)};
P.prototype.set_m_wheelsDampingCompression=P.prototype.aC=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jw(c,a)};Object.defineProperty(P.prototype,"m_wheelsDampingCompression",{get:P.prototype.RB,set:P.prototype.aC});P.prototype.get_m_wheelsDampingRelaxation=P.prototype.SB=function(){return kw(this.kB)};P.prototype.set_m_wheelsDampingRelaxation=P.prototype.bC=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);lw(c,a)};
Object.defineProperty(P.prototype,"m_wheelsDampingRelaxation",{get:P.prototype.SB,set:P.prototype.bC});P.prototype.get_m_steering=P.prototype.kE=function(){return mw(this.kB)};P.prototype.set_m_steering=P.prototype.cH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);nw(c,a)};Object.defineProperty(P.prototype,"m_steering",{get:P.prototype.kE,set:P.prototype.cH});P.prototype.get_m_maxSuspensionForce=P.prototype.zB=function(){return ow(this.kB)};
P.prototype.set_m_maxSuspensionForce=P.prototype.GB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pw(c,a)};Object.defineProperty(P.prototype,"m_maxSuspensionForce",{get:P.prototype.zB,set:P.prototype.GB});P.prototype.get_m_maxSuspensionTravelCm=P.prototype.AB=function(){return qw(this.kB)};P.prototype.set_m_maxSuspensionTravelCm=P.prototype.HB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);rw(c,a)};
Object.defineProperty(P.prototype,"m_maxSuspensionTravelCm",{get:P.prototype.AB,set:P.prototype.HB});P.prototype.get_m_wheelsSuspensionForce=P.prototype.GE=function(){return sw(this.kB)};P.prototype.set_m_wheelsSuspensionForce=P.prototype.yH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);tw(c,a)};Object.defineProperty(P.prototype,"m_wheelsSuspensionForce",{get:P.prototype.GE,set:P.prototype.yH});P.prototype.get_m_bIsFrontWheel=P.prototype.JB=function(){return!!uw(this.kB)};
P.prototype.set_m_bIsFrontWheel=P.prototype.TB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vw(c,a)};Object.defineProperty(P.prototype,"m_bIsFrontWheel",{get:P.prototype.JB,set:P.prototype.TB});P.prototype.get_m_raycastInfo=P.prototype.aE=function(){return k(ww(this.kB),N)};P.prototype.set_m_raycastInfo=P.prototype.TG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xw(c,a)};Object.defineProperty(P.prototype,"m_raycastInfo",{get:P.prototype.aE,set:P.prototype.TG});
P.prototype.get_m_chassisConnectionPointCS=P.prototype.SC=function(){return k(yw(this.kB),m)};P.prototype.set_m_chassisConnectionPointCS=P.prototype.JF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zw(c,a)};Object.defineProperty(P.prototype,"m_chassisConnectionPointCS",{get:P.prototype.SC,set:P.prototype.JF});P.prototype.get_m_worldTransform=P.prototype.HE=function(){return k(Aw(this.kB),r)};
P.prototype.set_m_worldTransform=P.prototype.zH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Bw(c,a)};Object.defineProperty(P.prototype,"m_worldTransform",{get:P.prototype.HE,set:P.prototype.zH});P.prototype.get_m_wheelDirectionCS=P.prototype.QB=function(){return k(Cw(this.kB),m)};P.prototype.set_m_wheelDirectionCS=P.prototype.$B=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dw(c,a)};Object.defineProperty(P.prototype,"m_wheelDirectionCS",{get:P.prototype.QB,set:P.prototype.$B});
P.prototype.get_m_wheelAxleCS=P.prototype.PB=function(){return k(Ew(this.kB),m)};P.prototype.set_m_wheelAxleCS=P.prototype.ZB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Fw(c,a)};Object.defineProperty(P.prototype,"m_wheelAxleCS",{get:P.prototype.PB,set:P.prototype.ZB});P.prototype.get_m_rotation=P.prototype.eE=function(){return Gw(this.kB)};P.prototype.set_m_rotation=P.prototype.XG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Hw(c,a)};
Object.defineProperty(P.prototype,"m_rotation",{get:P.prototype.eE,set:P.prototype.XG});P.prototype.get_m_deltaRotation=P.prototype.bD=function(){return Iw(this.kB)};P.prototype.set_m_deltaRotation=P.prototype.TF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jw(c,a)};Object.defineProperty(P.prototype,"m_deltaRotation",{get:P.prototype.bD,set:P.prototype.TF});P.prototype.get_m_brake=P.prototype.LC=function(){return Kw(this.kB)};
P.prototype.set_m_brake=P.prototype.CF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Lw(c,a)};Object.defineProperty(P.prototype,"m_brake",{get:P.prototype.LC,set:P.prototype.CF});P.prototype.get_m_clippedInvContactDotSuspension=P.prototype.TC=function(){return Mw(this.kB)};P.prototype.set_m_clippedInvContactDotSuspension=P.prototype.KF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Nw(c,a)};
Object.defineProperty(P.prototype,"m_clippedInvContactDotSuspension",{get:P.prototype.TC,set:P.prototype.KF});P.prototype.get_m_suspensionRelativeVelocity=P.prototype.pE=function(){return Ow(this.kB)};P.prototype.set_m_suspensionRelativeVelocity=P.prototype.hH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Pw(c,a)};Object.defineProperty(P.prototype,"m_suspensionRelativeVelocity",{get:P.prototype.pE,set:P.prototype.hH});P.prototype.get_m_skidInfo=P.prototype.hE=function(){return Qw(this.kB)};
P.prototype.set_m_skidInfo=P.prototype.$G=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Rw(c,a)};Object.defineProperty(P.prototype,"m_skidInfo",{get:P.prototype.hE,set:P.prototype.$G});P.prototype.__destroy__=function(){Sw(this.kB)};function zF(a,c,d,e){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);this.kB=void 0===e?Tw(a,c,d):Uw(a,c,d,e);h(zF)[this.kB]=this}zF.prototype=Object.create(rE.prototype);
zF.prototype.constructor=zF;zF.prototype.lB=zF;zF.mB={};b.btKinematicCharacterController=zF;zF.prototype.setUpAxis=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vw(c,a)};zF.prototype.setWalkDirection=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ww(c,a)};zF.prototype.setVelocityForTimeInterval=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Xw(d,a,c)};
zF.prototype.warp=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Yw(c,a)};zF.prototype.preStep=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Zw(c,a)};zF.prototype.playerStep=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);$w(d,a,c)};zF.prototype.setFallSpeed=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ax(c,a)};zF.prototype.setJumpSpeed=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);bx(c,a)};
zF.prototype.setMaxJumpHeight=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);cx(c,a)};zF.prototype.canJump=function(){return!!dx(this.kB)};zF.prototype.jump=function(){ex(this.kB)};zF.prototype.setGravity=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fx(c,a)};zF.prototype.getGravity=function(){return gx(this.kB)};zF.prototype.setMaxSlope=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hx(c,a)};zF.prototype.getMaxSlope=function(){return ix(this.kB)};
zF.prototype.getGhostObject=function(){return k(jx(this.kB),Q)};zF.prototype.setUseGhostSweepTest=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);kx(c,a)};zF.prototype.onGround=function(){return!!lx(this.kB)};zF.prototype.setUpInterpolate=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);mx(c,a)};zF.prototype.updateAction=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);nx(d,a,c)};zF.prototype.__destroy__=function(){ox(this.kB)};
function R(a,c,d){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);this.kB=px(a,c,d);h(R)[this.kB]=this}R.prototype=Object.create(rE.prototype);R.prototype.constructor=R;R.prototype.lB=R;R.mB={};b.btRaycastVehicle=R;R.prototype.applyEngineForce=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);qx(d,a,c)};
R.prototype.setSteeringValue=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);rx(d,a,c)};R.prototype.getWheelTransformWS=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(sx(c,a),r)};R.prototype.updateWheelTransform=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);tx(d,a,c)};
R.prototype.addWheel=function(a,c,d,e,g,n,z){var T=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);n&&"object"===typeof n&&(n=n.kB);z&&"object"===typeof z&&(z=z.kB);return k(ux(T,a,c,d,e,g,n,z),P)};R.prototype.getNumWheels=function(){return vx(this.kB)};R.prototype.getRigidBody=function(){return k(wx(this.kB),K)};
R.prototype.getWheelInfo=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(xx(c,a),P)};R.prototype.setBrake=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);yx(d,a,c)};R.prototype.setCoordinateSystem=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);zx(e,a,c,d)};R.prototype.getCurrentSpeedKmHour=function(){return Ax(this.kB)};
R.prototype.getChassisWorldTransform=function(){return k(Bx(this.kB),r)};R.prototype.rayCast=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return Cx(c,a)};R.prototype.updateVehicle=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dx(c,a)};R.prototype.resetSuspension=function(){Ex(this.kB)};R.prototype.getSteeringValue=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return Fx(c,a)};
R.prototype.updateWheelTransformsWS=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);void 0===c?Gx(d,a):Hx(d,a,c)};R.prototype.setPitchControl=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ix(c,a)};R.prototype.updateSuspension=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jx(c,a)};R.prototype.updateFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Kx(c,a)};R.prototype.getRightAxis=function(){return Lx(this.kB)};
R.prototype.getUpAxis=function(){return Mx(this.kB)};R.prototype.getForwardAxis=function(){return Nx(this.kB)};R.prototype.getForwardVector=function(){return k(Ox(this.kB),m)};R.prototype.getUserConstraintType=function(){return Px(this.kB)};R.prototype.setUserConstraintType=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Qx(c,a)};R.prototype.setUserConstraintId=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Rx(c,a)};R.prototype.getUserConstraintId=function(){return Sx(this.kB)};
R.prototype.updateAction=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Tx(d,a,c)};R.prototype.__destroy__=function(){Ux(this.kB)};function Q(){this.kB=Vx();h(Q)[this.kB]=this}Q.prototype=Object.create(y.prototype);Q.prototype.constructor=Q;Q.prototype.lB=Q;Q.mB={};b.btPairCachingGhostObject=Q;Q.prototype.setAnisotropicFriction=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Wx(d,a,c)};
Q.prototype.getCollisionShape=function(){return k(Xx(this.kB),l)};Q.prototype.setContactProcessingThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Yx(c,a)};Q.prototype.setActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Zx(c,a)};Q.prototype.forceActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$x(c,a)};Q.prototype.activate=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);void 0===a?ay(c):by(c,a)};
Q.prototype.isActive=function(){return!!cy(this.kB)};Q.prototype.isKinematicObject=function(){return!!dy(this.kB)};Q.prototype.isStaticObject=function(){return!!ey(this.kB)};Q.prototype.isStaticOrKinematicObject=function(){return!!fy(this.kB)};Q.prototype.getRestitution=function(){return gy(this.kB)};Q.prototype.getFriction=function(){return hy(this.kB)};Q.prototype.getRollingFriction=function(){return iy(this.kB)};
Q.prototype.setRestitution=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jy(c,a)};Q.prototype.setFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ky(c,a)};Q.prototype.setRollingFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ly(c,a)};Q.prototype.getWorldTransform=function(){return k(my(this.kB),r)};Q.prototype.getCollisionFlags=function(){return ny(this.kB)};
Q.prototype.setCollisionFlags=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);oy(c,a)};Q.prototype.setWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);py(c,a)};Q.prototype.setCollisionShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);qy(c,a)};Q.prototype.setCcdMotionThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ry(c,a)};Q.prototype.setCcdSweptSphereRadius=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);sy(c,a)};
Q.prototype.getUserIndex=function(){return ty(this.kB)};Q.prototype.setUserIndex=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);uy(c,a)};Q.prototype.getUserPointer=function(){return k(vy(this.kB),XD)};Q.prototype.setUserPointer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);wy(c,a)};Q.prototype.getBroadphaseHandle=function(){return k(xy(this.kB),YD)};Q.prototype.getNumOverlappingObjects=function(){return yy(this.kB)};
Q.prototype.getOverlappingObject=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(zy(c,a),q)};Q.prototype.__destroy__=function(){Ay(this.kB)};function AF(){this.kB=By();h(AF)[this.kB]=this}AF.prototype=Object.create(f.prototype);AF.prototype.constructor=AF;AF.prototype.lB=AF;AF.mB={};b.btGhostPairCallback=AF;AF.prototype.__destroy__=function(){Cy(this.kB)};function S(){this.kB=Dy();h(S)[this.kB]=this}S.prototype=Object.create(f.prototype);S.prototype.constructor=S;
S.prototype.lB=S;S.mB={};b.btSoftBodyWorldInfo=S;S.prototype.get_air_density=S.prototype.cC=function(){return Ey(this.kB)};S.prototype.set_air_density=S.prototype.UE=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Fy(c,a)};Object.defineProperty(S.prototype,"air_density",{get:S.prototype.cC,set:S.prototype.UE});S.prototype.get_water_density=S.prototype.RE=function(){return Gy(this.kB)};
S.prototype.set_water_density=S.prototype.JH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Hy(c,a)};Object.defineProperty(S.prototype,"water_density",{get:S.prototype.RE,set:S.prototype.JH});S.prototype.get_water_offset=S.prototype.TE=function(){return Iy(this.kB)};S.prototype.set_water_offset=S.prototype.LH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jy(c,a)};Object.defineProperty(S.prototype,"water_offset",{get:S.prototype.TE,set:S.prototype.LH});
S.prototype.get_m_maxDisplacement=S.prototype.ND=function(){return Ky(this.kB)};S.prototype.set_m_maxDisplacement=S.prototype.EG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ly(c,a)};Object.defineProperty(S.prototype,"m_maxDisplacement",{get:S.prototype.ND,set:S.prototype.EG});S.prototype.get_water_normal=S.prototype.SE=function(){return k(My(this.kB),m)};S.prototype.set_water_normal=S.prototype.KH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ny(c,a)};
Object.defineProperty(S.prototype,"water_normal",{get:S.prototype.SE,set:S.prototype.KH});S.prototype.get_m_broadphase=S.prototype.MC=function(){return k(Oy(this.kB),VD)};S.prototype.set_m_broadphase=S.prototype.DF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Py(c,a)};Object.defineProperty(S.prototype,"m_broadphase",{get:S.prototype.MC,set:S.prototype.DF});S.prototype.get_m_dispatcher=S.prototype.dD=function(){return k(Qy(this.kB),TD)};
S.prototype.set_m_dispatcher=S.prototype.VF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ry(c,a)};Object.defineProperty(S.prototype,"m_dispatcher",{get:S.prototype.dD,set:S.prototype.VF});S.prototype.get_m_gravity=S.prototype.mD=function(){return k(Sy(this.kB),m)};S.prototype.set_m_gravity=S.prototype.dG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Ty(c,a)};Object.defineProperty(S.prototype,"m_gravity",{get:S.prototype.mD,set:S.prototype.dG});S.prototype.__destroy__=function(){Uy(this.kB)};
function U(){throw"cannot construct a Face, no constructor in IDL";}U.prototype=Object.create(f.prototype);U.prototype.constructor=U;U.prototype.lB=U;U.mB={};b.Face=U;U.prototype.get_m_n=U.prototype.MB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Vy(c,a),Node)};U.prototype.set_m_n=U.prototype.WB=function(a,c){var d=this.kB;ND();a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);Wy(d,a,c)};Object.defineProperty(U.prototype,"m_n",{get:U.prototype.MB,set:U.prototype.WB});
U.prototype.get_m_normal=U.prototype.RD=function(){return k(Xy(this.kB),m)};U.prototype.set_m_normal=U.prototype.IG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Yy(c,a)};Object.defineProperty(U.prototype,"m_normal",{get:U.prototype.RD,set:U.prototype.IG});U.prototype.get_m_ra=U.prototype.$D=function(){return Zy(this.kB)};U.prototype.set_m_ra=U.prototype.SG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$y(c,a)};
Object.defineProperty(U.prototype,"m_ra",{get:U.prototype.$D,set:U.prototype.SG});U.prototype.__destroy__=function(){az(this.kB)};function BF(){throw"cannot construct a tFaceArray, no constructor in IDL";}BF.prototype=Object.create(f.prototype);BF.prototype.constructor=BF;BF.prototype.lB=BF;BF.mB={};b.tFaceArray=BF;BF.prototype.size=BF.prototype.size=function(){return bz(this.kB)};BF.prototype.at=BF.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(cz(c,a),U)};
BF.prototype.__destroy__=function(){dz(this.kB)};function Node(){throw"cannot construct a Node, no constructor in IDL";}Node.prototype=Object.create(f.prototype);Node.prototype.constructor=Node;Node.prototype.lB=Node;Node.mB={};b.Node=Node;Node.prototype.get_m_x=Node.prototype.IE=function(){return k(ez(this.kB),m)};Node.prototype.set_m_x=Node.prototype.AH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fz(c,a)};Object.defineProperty(Node.prototype,"m_x",{get:Node.prototype.IE,set:Node.prototype.AH});
Node.prototype.get_m_q=Node.prototype.ZD=function(){return k(gz(this.kB),m)};Node.prototype.set_m_q=Node.prototype.QG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hz(c,a)};Object.defineProperty(Node.prototype,"m_q",{get:Node.prototype.ZD,set:Node.prototype.QG});Node.prototype.get_m_v=Node.prototype.AE=function(){return k(iz(this.kB),m)};Node.prototype.set_m_v=Node.prototype.sH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jz(c,a)};
Object.defineProperty(Node.prototype,"m_v",{get:Node.prototype.AE,set:Node.prototype.sH});Node.prototype.get_m_f=Node.prototype.jD=function(){return k(kz(this.kB),m)};Node.prototype.set_m_f=Node.prototype.aG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);lz(c,a)};Object.defineProperty(Node.prototype,"m_f",{get:Node.prototype.jD,set:Node.prototype.aG});Node.prototype.get_m_n=Node.prototype.MB=function(){return k(mz(this.kB),m)};
Node.prototype.set_m_n=Node.prototype.WB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);nz(c,a)};Object.defineProperty(Node.prototype,"m_n",{get:Node.prototype.MB,set:Node.prototype.WB});Node.prototype.get_m_im=Node.prototype.vD=function(){return oz(this.kB)};Node.prototype.set_m_im=Node.prototype.mG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pz(c,a)};Object.defineProperty(Node.prototype,"m_im",{get:Node.prototype.vD,set:Node.prototype.mG});
Node.prototype.get_m_area=Node.prototype.JC=function(){return qz(this.kB)};Node.prototype.set_m_area=Node.prototype.AF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);rz(c,a)};Object.defineProperty(Node.prototype,"m_area",{get:Node.prototype.JC,set:Node.prototype.AF});Node.prototype.__destroy__=function(){sz(this.kB)};function CF(){throw"cannot construct a tNodeArray, no constructor in IDL";}CF.prototype=Object.create(f.prototype);CF.prototype.constructor=CF;CF.prototype.lB=CF;CF.mB={};
b.tNodeArray=CF;CF.prototype.size=CF.prototype.size=function(){return tz(this.kB)};CF.prototype.at=CF.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(uz(c,a),Node)};CF.prototype.__destroy__=function(){vz(this.kB)};function V(){throw"cannot construct a Material, no constructor in IDL";}V.prototype=Object.create(f.prototype);V.prototype.constructor=V;V.prototype.lB=V;V.mB={};b.Material=V;V.prototype.get_m_kLST=V.prototype.BD=function(){return wz(this.kB)};
V.prototype.set_m_kLST=V.prototype.sG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xz(c,a)};Object.defineProperty(V.prototype,"m_kLST",{get:V.prototype.BD,set:V.prototype.sG});V.prototype.get_m_kAST=V.prototype.AD=function(){return yz(this.kB)};V.prototype.set_m_kAST=V.prototype.rG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zz(c,a)};Object.defineProperty(V.prototype,"m_kAST",{get:V.prototype.AD,set:V.prototype.rG});V.prototype.get_m_kVST=V.prototype.CD=function(){return Az(this.kB)};
V.prototype.set_m_kVST=V.prototype.tG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Bz(c,a)};Object.defineProperty(V.prototype,"m_kVST",{get:V.prototype.CD,set:V.prototype.tG});V.prototype.get_m_flags=V.prototype.tB=function(){return Cz(this.kB)};V.prototype.set_m_flags=V.prototype.uB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Dz(c,a)};Object.defineProperty(V.prototype,"m_flags",{get:V.prototype.tB,set:V.prototype.uB});V.prototype.__destroy__=function(){Ez(this.kB)};
function DF(){throw"cannot construct a tMaterialArray, no constructor in IDL";}DF.prototype=Object.create(f.prototype);DF.prototype.constructor=DF;DF.prototype.lB=DF;DF.mB={};b.tMaterialArray=DF;DF.prototype.size=DF.prototype.size=function(){return Fz(this.kB)};DF.prototype.at=DF.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Gz(c,a),V)};DF.prototype.__destroy__=function(){Hz(this.kB)};function W(){throw"cannot construct a Anchor, no constructor in IDL";}
W.prototype=Object.create(f.prototype);W.prototype.constructor=W;W.prototype.lB=W;W.mB={};b.Anchor=W;W.prototype.get_m_node=W.prototype.PD=function(){return k(Iz(this.kB),Node)};W.prototype.set_m_node=W.prototype.GG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Jz(c,a)};Object.defineProperty(W.prototype,"m_node",{get:W.prototype.PD,set:W.prototype.GG});W.prototype.get_m_local=W.prototype.FD=function(){return k(Kz(this.kB),m)};
W.prototype.set_m_local=W.prototype.wG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Lz(c,a)};Object.defineProperty(W.prototype,"m_local",{get:W.prototype.FD,set:W.prototype.wG});W.prototype.get_m_body=W.prototype.KC=function(){return k(Mz(this.kB),K)};W.prototype.set_m_body=W.prototype.BF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Nz(c,a)};Object.defineProperty(W.prototype,"m_body",{get:W.prototype.KC,set:W.prototype.BF});W.prototype.get_m_influence=W.prototype.yD=function(){return Oz(this.kB)};
W.prototype.set_m_influence=W.prototype.pG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Pz(c,a)};Object.defineProperty(W.prototype,"m_influence",{get:W.prototype.yD,set:W.prototype.pG});W.prototype.get_m_c0=W.prototype.NC=function(){return k(Qz(this.kB),uE)};W.prototype.set_m_c0=W.prototype.EF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Rz(c,a)};Object.defineProperty(W.prototype,"m_c0",{get:W.prototype.NC,set:W.prototype.EF});
W.prototype.get_m_c1=W.prototype.OC=function(){return k(Sz(this.kB),m)};W.prototype.set_m_c1=W.prototype.FF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Tz(c,a)};Object.defineProperty(W.prototype,"m_c1",{get:W.prototype.OC,set:W.prototype.FF});W.prototype.get_m_c2=W.prototype.PC=function(){return Uz(this.kB)};W.prototype.set_m_c2=W.prototype.GF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);Vz(c,a)};Object.defineProperty(W.prototype,"m_c2",{get:W.prototype.PC,set:W.prototype.GF});
W.prototype.__destroy__=function(){Wz(this.kB)};function EF(){throw"cannot construct a tAnchorArray, no constructor in IDL";}EF.prototype=Object.create(f.prototype);EF.prototype.constructor=EF;EF.prototype.lB=EF;EF.mB={};b.tAnchorArray=EF;EF.prototype.size=EF.prototype.size=function(){return Xz(this.kB)};EF.prototype.at=EF.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(Yz(c,a),W)};EF.prototype.clear=EF.prototype.clear=function(){Zz(this.kB)};
EF.prototype.push_back=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$z(c,a)};EF.prototype.pop_back=function(){aA(this.kB)};EF.prototype.__destroy__=function(){bA(this.kB)};function X(){throw"cannot construct a Config, no constructor in IDL";}X.prototype=Object.create(f.prototype);X.prototype.constructor=X;X.prototype.lB=X;X.mB={};b.Config=X;X.prototype.get_kVCF=X.prototype.zC=function(){return cA(this.kB)};
X.prototype.set_kVCF=X.prototype.qF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);dA(c,a)};Object.defineProperty(X.prototype,"kVCF",{get:X.prototype.zC,set:X.prototype.qF});X.prototype.get_kDP=X.prototype.mC=function(){return eA(this.kB)};X.prototype.set_kDP=X.prototype.dF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);fA(c,a)};Object.defineProperty(X.prototype,"kDP",{get:X.prototype.mC,set:X.prototype.dF});X.prototype.get_kDG=X.prototype.lC=function(){return gA(this.kB)};
X.prototype.set_kDG=X.prototype.cF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);hA(c,a)};Object.defineProperty(X.prototype,"kDG",{get:X.prototype.lC,set:X.prototype.cF});X.prototype.get_kLF=X.prototype.oC=function(){return iA(this.kB)};X.prototype.set_kLF=X.prototype.fF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);jA(c,a)};Object.defineProperty(X.prototype,"kLF",{get:X.prototype.oC,set:X.prototype.fF});X.prototype.get_kPR=X.prototype.qC=function(){return kA(this.kB)};
X.prototype.set_kPR=X.prototype.hF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);lA(c,a)};Object.defineProperty(X.prototype,"kPR",{get:X.prototype.qC,set:X.prototype.hF});X.prototype.get_kVC=X.prototype.yC=function(){return mA(this.kB)};X.prototype.set_kVC=X.prototype.pF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);nA(c,a)};Object.defineProperty(X.prototype,"kVC",{get:X.prototype.yC,set:X.prototype.pF});X.prototype.get_kDF=X.prototype.kC=function(){return oA(this.kB)};
X.prototype.set_kDF=X.prototype.bF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pA(c,a)};Object.defineProperty(X.prototype,"kDF",{get:X.prototype.kC,set:X.prototype.bF});X.prototype.get_kMT=X.prototype.pC=function(){return qA(this.kB)};X.prototype.set_kMT=X.prototype.gF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);rA(c,a)};Object.defineProperty(X.prototype,"kMT",{get:X.prototype.pC,set:X.prototype.gF});X.prototype.get_kCHR=X.prototype.jC=function(){return sA(this.kB)};
X.prototype.set_kCHR=X.prototype.aF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);tA(c,a)};Object.defineProperty(X.prototype,"kCHR",{get:X.prototype.jC,set:X.prototype.aF});X.prototype.get_kKHR=X.prototype.nC=function(){return uA(this.kB)};X.prototype.set_kKHR=X.prototype.eF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);vA(c,a)};Object.defineProperty(X.prototype,"kKHR",{get:X.prototype.nC,set:X.prototype.eF});X.prototype.get_kSHR=X.prototype.rC=function(){return wA(this.kB)};
X.prototype.set_kSHR=X.prototype.iF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xA(c,a)};Object.defineProperty(X.prototype,"kSHR",{get:X.prototype.rC,set:X.prototype.iF});X.prototype.get_kAHR=X.prototype.iC=function(){return yA(this.kB)};X.prototype.set_kAHR=X.prototype.$E=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);zA(c,a)};Object.defineProperty(X.prototype,"kAHR",{get:X.prototype.iC,set:X.prototype.$E});X.prototype.get_kSRHR_CL=X.prototype.uC=function(){return AA(this.kB)};
X.prototype.set_kSRHR_CL=X.prototype.lF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);BA(c,a)};Object.defineProperty(X.prototype,"kSRHR_CL",{get:X.prototype.uC,set:X.prototype.lF});X.prototype.get_kSKHR_CL=X.prototype.sC=function(){return CA(this.kB)};X.prototype.set_kSKHR_CL=X.prototype.jF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);DA(c,a)};Object.defineProperty(X.prototype,"kSKHR_CL",{get:X.prototype.sC,set:X.prototype.jF});X.prototype.get_kSSHR_CL=X.prototype.wC=function(){return EA(this.kB)};
X.prototype.set_kSSHR_CL=X.prototype.nF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);FA(c,a)};Object.defineProperty(X.prototype,"kSSHR_CL",{get:X.prototype.wC,set:X.prototype.nF});X.prototype.get_kSR_SPLT_CL=X.prototype.vC=function(){return GA(this.kB)};X.prototype.set_kSR_SPLT_CL=X.prototype.mF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);HA(c,a)};Object.defineProperty(X.prototype,"kSR_SPLT_CL",{get:X.prototype.vC,set:X.prototype.mF});
X.prototype.get_kSK_SPLT_CL=X.prototype.tC=function(){return IA(this.kB)};X.prototype.set_kSK_SPLT_CL=X.prototype.kF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);JA(c,a)};Object.defineProperty(X.prototype,"kSK_SPLT_CL",{get:X.prototype.tC,set:X.prototype.kF});X.prototype.get_kSS_SPLT_CL=X.prototype.xC=function(){return KA(this.kB)};X.prototype.set_kSS_SPLT_CL=X.prototype.oF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);LA(c,a)};
Object.defineProperty(X.prototype,"kSS_SPLT_CL",{get:X.prototype.xC,set:X.prototype.oF});X.prototype.get_maxvolume=X.prototype.JE=function(){return MA(this.kB)};X.prototype.set_maxvolume=X.prototype.BH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);NA(c,a)};Object.defineProperty(X.prototype,"maxvolume",{get:X.prototype.JE,set:X.prototype.BH});X.prototype.get_timescale=X.prototype.OE=function(){return OA(this.kB)};
X.prototype.set_timescale=X.prototype.GH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);PA(c,a)};Object.defineProperty(X.prototype,"timescale",{get:X.prototype.OE,set:X.prototype.GH});X.prototype.get_viterations=X.prototype.QE=function(){return QA(this.kB)};X.prototype.set_viterations=X.prototype.IH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);RA(c,a)};Object.defineProperty(X.prototype,"viterations",{get:X.prototype.QE,set:X.prototype.IH});
X.prototype.get_piterations=X.prototype.ME=function(){return SA(this.kB)};X.prototype.set_piterations=X.prototype.EH=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);TA(c,a)};Object.defineProperty(X.prototype,"piterations",{get:X.prototype.ME,set:X.prototype.EH});X.prototype.get_diterations=X.prototype.fC=function(){return UA(this.kB)};X.prototype.set_diterations=X.prototype.XE=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);VA(c,a)};
Object.defineProperty(X.prototype,"diterations",{get:X.prototype.fC,set:X.prototype.XE});X.prototype.get_citerations=X.prototype.dC=function(){return WA(this.kB)};X.prototype.set_citerations=X.prototype.VE=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);XA(c,a)};Object.defineProperty(X.prototype,"citerations",{get:X.prototype.dC,set:X.prototype.VE});X.prototype.get_collisions=X.prototype.eC=function(){return YA(this.kB)};
X.prototype.set_collisions=X.prototype.WE=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);ZA(c,a)};Object.defineProperty(X.prototype,"collisions",{get:X.prototype.eC,set:X.prototype.WE});X.prototype.__destroy__=function(){$A(this.kB)};function Y(a,c,d,e){ND();a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);"object"==typeof e&&(e=RD(e));this.kB=aB(a,c,d,e);h(Y)[this.kB]=this}Y.prototype=Object.create(q.prototype);
Y.prototype.constructor=Y;Y.prototype.lB=Y;Y.mB={};b.btSoftBody=Y;Y.prototype.checkLink=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return!!bB(d,a,c)};Y.prototype.checkFace=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);return!!cB(e,a,c,d)};Y.prototype.appendMaterial=function(){return k(dB(this.kB),V)};
Y.prototype.appendNode=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);eB(d,a,c)};Y.prototype.appendLink=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);fB(g,a,c,d,e)};
Y.prototype.appendFace=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);gB(g,a,c,d,e)};Y.prototype.appendTetra=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);hB(n,a,c,d,e,g)};
Y.prototype.appendAnchor=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);iB(g,a,c,d,e)};Y.prototype.addForce=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);void 0===c?jB(d,a):kB(d,a,c)};Y.prototype.addAeroForceToNode=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);lB(d,a,c)};
Y.prototype.getTotalMass=function(){return mB(this.kB)};Y.prototype.setTotalMass=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);nB(d,a,c)};Y.prototype.setMass=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);oB(d,a,c)};Y.prototype.transform=Y.prototype.transform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);pB(c,a)};
Y.prototype.translate=Y.prototype.translate=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);qB(c,a)};Y.prototype.rotate=Y.prototype.rotate=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);rB(c,a)};Y.prototype.scale=Y.prototype.scale=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);sB(c,a)};Y.prototype.generateClusters=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return void 0===c?tB(d,a):uB(d,a,c)};
Y.prototype.generateBendingConstraints=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);return vB(d,a,c)};Y.prototype.upcast=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(wB(c,a),Y)};Y.prototype.getRestLengthScale=function(){return xB(this.kB)};Y.prototype.setRestLengthScale=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);yB(c,a)};
Y.prototype.setAnisotropicFriction=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);zB(d,a,c)};Y.prototype.getCollisionShape=function(){return k(AB(this.kB),l)};Y.prototype.setContactProcessingThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);BB(c,a)};Y.prototype.setActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);CB(c,a)};
Y.prototype.forceActivationState=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);DB(c,a)};Y.prototype.activate=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);void 0===a?EB(c):FB(c,a)};Y.prototype.isActive=function(){return!!GB(this.kB)};Y.prototype.isKinematicObject=function(){return!!HB(this.kB)};Y.prototype.isStaticObject=function(){return!!IB(this.kB)};Y.prototype.isStaticOrKinematicObject=function(){return!!JB(this.kB)};Y.prototype.getRestitution=function(){return KB(this.kB)};
Y.prototype.getFriction=function(){return LB(this.kB)};Y.prototype.getRollingFriction=function(){return MB(this.kB)};Y.prototype.setRestitution=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);NB(c,a)};Y.prototype.setFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);OB(c,a)};Y.prototype.setRollingFriction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);PB(c,a)};Y.prototype.getWorldTransform=function(){return k(QB(this.kB),r)};Y.prototype.getCollisionFlags=function(){return RB(this.kB)};
Y.prototype.setCollisionFlags=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);SB(c,a)};Y.prototype.setWorldTransform=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);TB(c,a)};Y.prototype.setCollisionShape=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);UB(c,a)};Y.prototype.setCcdMotionThreshold=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);VB(c,a)};Y.prototype.setCcdSweptSphereRadius=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);WB(c,a)};
Y.prototype.getUserIndex=function(){return XB(this.kB)};Y.prototype.setUserIndex=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);YB(c,a)};Y.prototype.getUserPointer=function(){return k(ZB(this.kB),XD)};Y.prototype.setUserPointer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);$B(c,a)};Y.prototype.getBroadphaseHandle=function(){return k(aC(this.kB),YD)};Y.prototype.get_m_cfg=Y.prototype.QC=function(){return k(bC(this.kB),X)};
Y.prototype.set_m_cfg=Y.prototype.HF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);cC(c,a)};Object.defineProperty(Y.prototype,"m_cfg",{get:Y.prototype.QC,set:Y.prototype.HF});Y.prototype.get_m_nodes=Y.prototype.QD=function(){return k(dC(this.kB),CF)};Y.prototype.set_m_nodes=Y.prototype.HG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);eC(c,a)};Object.defineProperty(Y.prototype,"m_nodes",{get:Y.prototype.QD,set:Y.prototype.HG});
Y.prototype.get_m_faces=Y.prototype.KB=function(){return k(fC(this.kB),BF)};Y.prototype.set_m_faces=Y.prototype.UB=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);gC(c,a)};Object.defineProperty(Y.prototype,"m_faces",{get:Y.prototype.KB,set:Y.prototype.UB});Y.prototype.get_m_materials=Y.prototype.MD=function(){return k(hC(this.kB),DF)};Y.prototype.set_m_materials=Y.prototype.DG=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);iC(c,a)};
Object.defineProperty(Y.prototype,"m_materials",{get:Y.prototype.MD,set:Y.prototype.DG});Y.prototype.get_m_anchors=Y.prototype.GC=function(){return k(jC(this.kB),EF)};Y.prototype.set_m_anchors=Y.prototype.xF=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);kC(c,a)};Object.defineProperty(Y.prototype,"m_anchors",{get:Y.prototype.GC,set:Y.prototype.xF});Y.prototype.__destroy__=function(){lC(this.kB)};
function FF(a){a&&"object"===typeof a&&(a=a.kB);this.kB=void 0===a?mC():nC(a);h(FF)[this.kB]=this}FF.prototype=Object.create(nE.prototype);FF.prototype.constructor=FF;FF.prototype.lB=FF;FF.mB={};b.btSoftBodyRigidBodyCollisionConfiguration=FF;FF.prototype.__destroy__=function(){oC(this.kB)};function GF(){this.kB=pC();h(GF)[this.kB]=this}GF.prototype=Object.create(sE.prototype);GF.prototype.constructor=GF;GF.prototype.lB=GF;GF.mB={};b.btDefaultSoftBodySolver=GF;GF.prototype.__destroy__=function(){qC(this.kB)};
function HF(){throw"cannot construct a btSoftBodyArray, no constructor in IDL";}HF.prototype=Object.create(f.prototype);HF.prototype.constructor=HF;HF.prototype.lB=HF;HF.mB={};b.btSoftBodyArray=HF;HF.prototype.size=HF.prototype.size=function(){return rC(this.kB)};HF.prototype.at=HF.prototype.at=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);return k(sC(c,a),Y)};HF.prototype.__destroy__=function(){tC(this.kB)};
function Z(a,c,d,e,g){a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);this.kB=uC(a,c,d,e,g);h(Z)[this.kB]=this}Z.prototype=Object.create(x.prototype);Z.prototype.constructor=Z;Z.prototype.lB=Z;Z.mB={};b.btSoftRigidDynamicsWorld=Z;
Z.prototype.addSoftBody=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);vC(e,a,c,d)};Z.prototype.removeSoftBody=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);wC(c,a)};Z.prototype.removeCollisionObject=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);xC(c,a)};Z.prototype.getWorldInfo=function(){return k(yC(this.kB),S)};Z.prototype.getSoftBodyArray=function(){return k(zC(this.kB),HF)};
Z.prototype.getDispatcher=function(){return k(AC(this.kB),TD)};Z.prototype.rayTest=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);BC(e,a,c,d)};Z.prototype.getPairCache=function(){return k(CC(this.kB),UD)};Z.prototype.getDispatchInfo=function(){return k(DC(this.kB),p)};
Z.prototype.addCollisionObject=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?EC(e,a):void 0===d?FC(e,a,c):GC(e,a,c,d)};Z.prototype.getBroadphase=function(){return k(HC(this.kB),VD)};
Z.prototype.convexSweepTest=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);IC(n,a,c,d,e,g)};Z.prototype.contactPairTest=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);JC(e,a,c,d)};
Z.prototype.contactTest=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);KC(d,a,c)};Z.prototype.updateSingleAabb=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);LC(c,a)};Z.prototype.setDebugDrawer=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);MC(c,a)};Z.prototype.getDebugDrawer=function(){return k(NC(this.kB),WD)};Z.prototype.debugDrawWorld=function(){OC(this.kB)};
Z.prototype.debugDrawObject=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);PC(e,a,c,d)};Z.prototype.setGravity=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);QC(c,a)};Z.prototype.getGravity=function(){return k(RC(this.kB),m)};
Z.prototype.addRigidBody=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?SC(e,a):void 0===d?_emscripten_bind_btSoftRigidDynamicsWorld_addRigidBody_2(e,a,c):TC(e,a,c,d)};Z.prototype.removeRigidBody=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);UC(c,a)};
Z.prototype.addConstraint=function(a,c){var d=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);void 0===c?VC(d,a):WC(d,a,c)};Z.prototype.removeConstraint=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);XC(c,a)};Z.prototype.stepSimulation=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);return void 0===c?YC(e,a):void 0===d?ZC(e,a,c):$C(e,a,c,d)};
Z.prototype.setContactAddedCallback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);aD(c,a)};Z.prototype.setContactProcessedCallback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);bD(c,a)};Z.prototype.setContactDestroyedCallback=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);cD(c,a)};Z.prototype.addAction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);dD(c,a)};Z.prototype.removeAction=function(a){var c=this.kB;a&&"object"===typeof a&&(a=a.kB);eD(c,a)};
Z.prototype.getSolverInfo=function(){return k(fD(this.kB),t)};Z.prototype.setInternalTickCallback=function(a,c,d){var e=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);void 0===c?gD(e,a):void 0===d?hD(e,a,c):iD(e,a,c,d)};Z.prototype.__destroy__=function(){jD(this.kB)};function IF(){this.kB=kD();h(IF)[this.kB]=this}IF.prototype=Object.create(f.prototype);IF.prototype.constructor=IF;IF.prototype.lB=IF;IF.mB={};b.btSoftBodyHelpers=IF;
IF.prototype.CreateRope=function(a,c,d,e,g){var n=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);return k(lD(n,a,c,d,e,g),Y)};
IF.prototype.CreatePatch=function(a,c,d,e,g,n,z,T,Da){var dc=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);n&&"object"===typeof n&&(n=n.kB);z&&"object"===typeof z&&(z=z.kB);T&&"object"===typeof T&&(T=T.kB);Da&&"object"===typeof Da&&(Da=Da.kB);return k(mD(dc,a,c,d,e,g,n,z,T,Da),Y)};
IF.prototype.CreatePatchUV=function(a,c,d,e,g,n,z,T,Da,dc){var JF=this.kB;ND();a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);n&&"object"===typeof n&&(n=n.kB);z&&"object"===typeof z&&(z=z.kB);T&&"object"===typeof T&&(T=T.kB);Da&&"object"===typeof Da&&(Da=Da.kB);"object"==typeof dc&&(dc=RD(dc));return k(nD(JF,a,c,d,e,g,n,z,T,Da,dc),Y)};
IF.prototype.CreateEllipsoid=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);return k(oD(g,a,c,d,e),Y)};
IF.prototype.CreateFromTriMesh=function(a,c,d,e,g){var n=this.kB;ND();a&&"object"===typeof a&&(a=a.kB);"object"==typeof c&&(c=RD(c));if("object"==typeof d&&"object"===typeof d){var z=OD(d,va);PD(d,va,z);d=z}e&&"object"===typeof e&&(e=e.kB);g&&"object"===typeof g&&(g=g.kB);return k(pD(n,a,c,d,e,g),Y)};
IF.prototype.CreateFromConvexHull=function(a,c,d,e){var g=this.kB;a&&"object"===typeof a&&(a=a.kB);c&&"object"===typeof c&&(c=c.kB);d&&"object"===typeof d&&(d=d.kB);e&&"object"===typeof e&&(e=e.kB);return k(qD(g,a,c,d,e),Y)};IF.prototype.__destroy__=function(){rD(this.kB)};
(function(){function a(){b.PHY_FLOAT=sD();b.PHY_DOUBLE=tD();b.PHY_INTEGER=uD();b.PHY_SHORT=vD();b.PHY_FIXEDPOINT88=wD();b.PHY_UCHAR=xD();b.CONST_GIMPACT_COMPOUND_SHAPE=yD();b.CONST_GIMPACT_TRIMESH_SHAPE_PART=zD();b.CONST_GIMPACT_TRIMESH_SHAPE=AD();b.BT_CONSTRAINT_ERP=BD();b.BT_CONSTRAINT_STOP_ERP=CD();b.BT_CONSTRAINT_CFM=DD();b.BT_CONSTRAINT_STOP_CFM=ED()}Ca?a():Aa.unshift(a)})();b.CONTACT_ADDED_CALLBACK_SIGNATURE="iiiiiiii";b.CONTACT_DESTROYED_CALLBACK_SIGNATURE="ii";
b.CONTACT_PROCESSED_CALLBACK_SIGNATURE="iiii";b.INTERNAL_TICK_CALLBACK_SIGNATURE="vif";this.Ammo=b;
return Ammo.ready
}
);
})();
if (typeof exports === 'object' && typeof module === 'object')
module.exports = Ammo;
else if (typeof define === 'function' && define['amd'])
define([], function() { return Ammo; });
else if (typeof exports === 'object')
exports["Ammo"] = Ammo;
@@ -0,0 +1,8 @@
# Draco glTF decoder 1.5.7
Vendored from Google's immutable versioned Draco decoder distribution for the
PlayCanvas `DracoDecoderModule`. Runtime loading remains local to Mission Core.
- `draco_wasm_wrapper_gltf.js`: `8bb2952d2ba7d67e1414f8df819410cb0434a666be53f671fff75f68843d76f6`
- `draco_decoder_gltf.wasm`: `712db3449ae2041d6e8a224c395bda6cedb49e51322fae38b7db9beb8b381889`
- Upstream base: `https://www.gstatic.com/draco/versioned/decoders/1.5.7/`
@@ -0,0 +1,116 @@
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typeof c&&(c=c.ptr);return B(Ic(d,b,c),C)};m.prototype.__destroy__=m.prototype.__destroy__=function(){Jc(this.ptr)};(function(){function b(){a.ATTRIBUTE_INVALID_TRANSFORM=Kc();a.ATTRIBUTE_NO_TRANSFORM=Lc();a.ATTRIBUTE_QUANTIZATION_TRANSFORM=Mc();a.ATTRIBUTE_OCTAHEDRON_TRANSFORM=Nc();a.INVALID=Oc();a.POSITION=Pc();a.NORMAL=Qc();a.COLOR=Rc();a.TEX_COORD=Sc();a.GENERIC=Tc();a.INVALID_GEOMETRY_TYPE=Uc();a.POINT_CLOUD=Vc();a.TRIANGULAR_MESH=Wc();a.DT_INVALID=Xc();a.DT_INT8=Yc();a.DT_UINT8=Zc();a.DT_INT16=
$c();a.DT_UINT16=ad();a.DT_INT32=bd();a.DT_UINT32=cd();a.DT_INT64=dd();a.DT_UINT64=ed();a.DT_FLOAT32=fd();a.DT_FLOAT64=gd();a.DT_BOOL=hd();a.DT_TYPES_COUNT=id();a.OK=jd();a.DRACO_ERROR=kd();a.IO_ERROR=ld();a.INVALID_PARAMETER=md();a.UNSUPPORTED_VERSION=nd();a.UNKNOWN_VERSION=od()}va?b():oa.unshift(b)})();if("function"===typeof a.onModuleParsed)a.onModuleParsed();a.Decoder.prototype.GetEncodedGeometryType=function(b){if(b.__class__&&b.__class__===a.DecoderBuffer)return a.Decoder.prototype.GetEncodedGeometryType_Deprecated(b);
if(8>b.byteLength)return a.INVALID_GEOMETRY_TYPE;switch(b[7]){case 0:return a.POINT_CLOUD;case 1:return a.TRIANGULAR_MESH;default:return a.INVALID_GEOMETRY_TYPE}};return n.ready}}();"object"===typeof exports&&"object"===typeof module?module.exports=DracoDecoderModule:"function"===typeof define&&define.amd?define([],function(){return DracoDecoderModule}):"object"===typeof exports&&(exports.DracoDecoderModule=DracoDecoderModule);
+16
View File
@@ -0,0 +1,16 @@
<!doctype html>
<html lang="ru">
<head>
<meta charset="UTF-8" />
<meta name="viewport" content="width=device-width, initial-scale=1.0" />
<title>Синхронизированная запись</title>
<style>
html, body, #viewer { width: 100%; height: 100%; margin: 0; overflow: hidden; }
canvas { display: block; }
</style>
</head>
<body>
<div id="viewer"></div>
<script type="module" src="/src/components/rerun/isolatedRerunEntry.ts"></script>
</body>
</html>
+235 -307
View File
@@ -1,3 +1,5 @@
import {SceneDisplayControls} from "../../../packages/spatial-ui/src/SceneDisplayControls";
import {SceneLayerControls} from "../../../packages/spatial-ui/src/SceneLayerControls";
import { useCallback, useEffect, useMemo, useRef, useState } from "react";
import {
AdminNavigationPanel,
@@ -5,28 +7,29 @@ import {
ApplicationPanel,
ApplicationShell,
Button,
Checker,
ColorField,
ControlRow,
HeaderAvatar,
HeaderNavigation,
HeaderProfile,
HeaderProfileButton,
HeaderWorkspace,
Icon,
Inspector,
RangeControl,
Select,
StatusBadge,
TextField,
UserProfileMenu,
Window,
WindowFooterActions,
useApplicationWorkspace,
type ApplicationPanelUtilityAction,
} from "@nodedc/ui-react";
import { LandingStage } from "./components/LandingStage";
import { EnvironmentSettingsWindow } from "./components/EnvironmentSettingsWindow";
import { ObservationSessionSelect } from "./components/ObservationSessionSelect";
import { SystemNavigationPanel } from "./components/system/SystemNavigationPanel";
import { SystemWorkspaceSelector } from "./components/system/SystemWorkspaceSelector";
import { useComputeContourSettings } from "./components/system/useComputeContourSettings";
import { useApplicationPanelActions } from "./components/useApplicationPanelActions";
import { useSessionOverviewMode } from "./core/observation/useSessionOverview";
import { SessionOverviewWorkspace } from "./workspaces/recordings/SessionOverviewWorkspace";
import { useEnvironmentSettings } from "./core/environment/useEnvironmentSettings";
import { useDevicePluginHost } from "./core/device-plugins/DevicePluginHost";
import { useMissionRuntime } from "./core/runtime/MissionRuntimeContext";
import type { ViewerSettings } from "./core/runtime/contracts";
@@ -46,6 +49,8 @@ import type {
} from "./core/observation/sessionArchive";
import { useRecordedSessionAdmission } from "./core/observation/useRecordedSessionAdmission";
import { useWorkspaceLayoutProfile } from "./core/observation/useWorkspaceLayoutProfile";
import { viewerSettingsTargetIdentity } from "./core/observation/viewerSettingsTarget";
import { resolvePolygonRunRoute } from "./core/polygon/runArchive";
import {
OBSERVATION_WORKSPACE_ID,
OBSERVATION_WORKSPACE_LAYOUT_VERSION,
@@ -58,36 +63,18 @@ import {
workspacesForRoot,
type RootId,
} from "./productModel";
import { backendLabel, phaseLabel, phaseTone } from "./presentation";
import { backendLabel, localConnectionPhaseLabel, phaseTone } from "./presentation";
import {
defaultSceneSettings,
type PointColorMode,
type PointPalette,
type SceneSettings,
} from "./sceneSettings";
import { DeviceWorkspace } from "./workspaces/DeviceWorkspace";
import { WorkspaceRenderer } from "./workspaces/Workspaces";
import { useLaboratoryAnnotationHeader } from "./components/laboratory/useLaboratoryAnnotationHeader";
import "./styles/scene-windows.css";
type SceneToolWindowId = "sources" | "display" | "layers";
const viewerSettingsQuietPeriodMs = 750;
const colorModeOptions: Array<{ value: PointColorMode; label: string; description: string }> = [
{ value: "intensity", label: "Интенсивность", description: "Значение отражённого сигнала" },
{ value: "height", label: "Высота Z", description: "Градиент по вертикальной координате" },
{ value: "distance", label: "Расстояние", description: "Дальность точки от сенсора" },
{ value: "rgb", label: "RGB", description: "Цвет, если он присутствует в данных" },
{ value: "class", label: "Класс", description: "Категория внешнего модуля восприятия" },
];
const paletteOptions: Array<{ value: PointPalette; label: string; description: string }> = [
{ value: "turbo", label: "Turbo", description: "Контрастный спектральный градиент" },
{ value: "viridis", label: "Viridis", description: "Равномерный перцептивный градиент" },
{ value: "plasma", label: "Plasma", description: "Тёплый контрастный градиент" },
{ value: "grayscale", label: "Серый", description: "Монохромное отображение" },
{ value: "custom", label: "Свой цвет", description: "Один назначенный цвет" },
];
interface LivePerceptionLayers {
detections2d: boolean;
segmentation: boolean;
@@ -148,14 +135,24 @@ function mergeViewerSettings(
export default function App() {
const runtime = useMissionRuntime();
const environment = useEnvironmentSettings();
const computeContourSettings = useComputeContourSettings();
const { selection } = useDevicePluginHost();
const polygonDatasetRoute = useMemo(
() => resolvePolygonRunRoute(typeof window === "undefined" ? "" : window.location.search),
[],
);
const workspace = useApplicationWorkspace<string>({
navigationOpen: false,
contentExpanded: true,
});
const [activeRoot, setActiveRoot] = useState<RootId | null>(null);
const [activeRoot, setActiveRoot] = useState<RootId | null>(
polygonDatasetRoute.active ? "data" : null,
);
const [environmentSettingsOpen, setEnvironmentSettingsOpen] = useState(false);
const [sourceUrl, setSourceUrl] = useState("");
const [workspaceHeaderToolsHost, setWorkspaceHeaderToolsHost] = useState<HTMLDivElement | null>(null);
const [recordedReplay, setRecordedReplay] = useState<ObservationSessionReplayLaunch | null>(null);
const [recordedReplayLabel, setRecordedReplayLabel] = useState<string | null>(null);
const [replayTransitioning, setReplayTransitioning] = useState(false);
@@ -165,6 +162,7 @@ export default function App() {
const [layerInspectorOpen, setLayerInspectorOpen] = useState(false);
const [sceneWindowOrder, setSceneWindowOrder] = useState<SceneToolWindowId[]>([]);
const [layoutSaveNotice, setLayoutSaveNotice] = useState<string | null>(null);
const laboratoryAnnotation = useLaboratoryAnnotationHeader();
const [sceneSettings, setSceneSettings] = useState<SceneSettings>(defaultSceneSettings);
const [displayDraft, setDisplayDraft] = useState<SceneSettings>(defaultSceneSettings);
const [livePerceptionLayers, setLivePerceptionLayers] = useState<LivePerceptionLayers>(
@@ -185,24 +183,53 @@ export default function App() {
const livePerceptionLayersRef = useRef<LivePerceptionLayers>(defaultLivePerceptionLayers);
const livePerceptionRevisionRef = useRef(0);
const replayActiveRef = useRef(false);
const selectedRecordedSessionIdRef = useRef<string | null>(null);
const sceneSettingsCommitterActiveRef = useRef(true);
const sceneSettingsCommitterRef = useRef<LatestAsyncCommitter<SceneSettings> | null>(null);
const polygonDatasetRouteOpenedRef = useRef(false);
const currentRoot = rootById(activeRoot);
const visibleRoots = roots;
const activeEnvironmentSurface = activeRoot ?? "home";
const landingPage = environment.settings.pages[activeEnvironmentSurface];
const landingQuickActions = [
landingPage.primaryWorkspaceId,
landingPage.secondaryWorkspaceId,
].flatMap((workspaceId) => {
const definition = workspaceById(workspaceId);
if (!definition) return [];
if (activeRoot !== null && definition.root !== activeRoot) return [];
return [definition];
});
const activeDefinition = workspaceById(workspace.activeView);
const spatialWorkspaceActive = Boolean(
workspace.contentOpen && activeDefinition?.kind === "spatial",
const sceneWorkspaceActive = Boolean(
workspace.contentOpen
&& activeDefinition
&& ["spatial", "recordings"].includes(activeDefinition.kind),
);
const archiveWorkspaceActive = Boolean(
activeDefinition
&& ["recordings", "lab-archive"].includes(activeDefinition.kind),
);
const rootWorkspaces = workspacesForRoot(activeRoot);
const activeSceneWindow = sceneWindowOrder[sceneWindowOrder.length - 1] ?? null;
const automaticSourceUrl = runtime.state?.spatialSource?.url.trim() ?? "";
const effectiveSourceUrl = replayTransitioning ? "" : sourceUrl || automaticSourceUrl;
const effectiveSourceUrl = archiveWorkspaceActive
? replayTransitioning ? "" : sourceUrl
: automaticSourceUrl;
const replayActive = Boolean(recordedReplay && sourceUrl === recordedReplay.sourceUrl);
const replayPresented = archiveWorkspaceActive && replayActive;
const recordedSessionAdmission = useRecordedSessionAdmission(
replayActive ? recordedReplay : null,
replayPresented ? recordedReplay : null,
);
runtimeUpdateViewerSettingsRef.current = runtime.updateViewerSettings;
replayActiveRef.current = replayActive;
replayActiveRef.current = replayPresented;
useEffect(() => {
if (!polygonDatasetRoute.active || polygonDatasetRouteOpenedRef.current) return;
polygonDatasetRouteOpenedRef.current = true;
workspace.openView("datasets");
}, [polygonDatasetRoute.active, workspace]);
if (!sceneSettingsCommitterRef.current) {
sceneSettingsCommitterRef.current = createLatestAsyncCommitter<SceneSettings>({
@@ -230,11 +257,11 @@ export default function App() {
() => recordedObservationSources(recordedReplay),
[recordedReplay],
);
const activeObservationSources = replayActive
const activeObservationSources = replayPresented
? replaySources
: runtime.state?.observationSources ?? [];
const activeRuntimeState = useMemo(() => {
if (!replayActive || !recordedReplay) return runtime.state;
if (!replayPresented || !recordedReplay) return runtime.state;
return {
...(runtime.state ?? { phase: "replaying" as const }),
phase: "replaying" as const,
@@ -257,18 +284,11 @@ export default function App() {
},
},
};
}, [recordedReplay, replayActive, replaySources, runtime.state]);
const viewerSettingsTargetIdentity = [
runtime.state?.activeDevice?.pluginId,
runtime.state?.activeDevice?.modelId,
runtime.state?.activeDevice?.instanceId,
runtime.state?.deviceSession?.sessionId,
runtime.state?.deviceSession?.deviceId,
runtime.state?.acquisition?.acquisitionId,
].filter(Boolean).join(":") || "local-runtime";
}, [recordedReplay, replayPresented, replaySources, runtime.state]);
const viewerSettingsTarget = viewerSettingsTargetIdentity(runtime.state);
const observationLayout = useObservationLayout(
activeObservationSources,
replayActive ? undefined : runtime.setObservationSourceActive,
replayPresented ? undefined : runtime.setObservationSourceActive,
);
const workspaceLayoutProfile = useWorkspaceLayoutProfile();
const focusedObservationSource = activeObservationSources.find(
@@ -277,6 +297,8 @@ export default function App() {
const observationFullscreenActive = Boolean(
activeDefinition?.kind === "spatial"
? observationLayout.maximizedFloatingSourceId || focusedObservationSource?.modality === "point-cloud"
: activeDefinition?.kind === "lab-archive"
? observationLayout.maximizedFloatingSourceId || focusedObservationSource?.modality === "point-cloud"
: activeDefinition?.kind === "cameras" && focusedObservationSource,
);
@@ -320,14 +342,14 @@ export default function App() {
}, [observationLayout.restore, workspaceLayoutProfile.profile]);
useEffect(() => {
if (spatialWorkspaceActive) return;
if (sceneWorkspaceActive) return;
// Scene tools are transient children of the spatial workspace. They must
// never survive a route/root/content close or appear over the landing page.
setSourceWindowOpen(false);
setDisplayWindowOpen(false);
setLayerInspectorOpen(false);
setSceneWindowOrder([]);
}, [spatialWorkspaceActive]);
}, [sceneWorkspaceActive]);
useEffect(() => {
sceneSettingsCommitterActiveRef.current = true;
@@ -343,7 +365,7 @@ export default function App() {
useEffect(() => {
const profile = workspaceLayoutProfile.profile;
const applicationKey = profile
? `${profile.revision}:${viewerSettingsTargetIdentity}`
? `${profile.revision}:${viewerSettingsTarget}`
: null;
if (
!profile ||
@@ -364,7 +386,7 @@ export default function App() {
}, [
runtime.backendStatus,
runtime.updateViewerSettings,
viewerSettingsTargetIdentity,
viewerSettingsTarget,
workspaceLayoutProfile.profile,
]);
@@ -383,7 +405,7 @@ export default function App() {
}, []);
useEffect(() => {
if (!spatialWorkspaceActive || !activeSceneWindow) return;
if (!sceneWorkspaceActive || !activeSceneWindow) return;
const closeActiveWindow = (event: KeyboardEvent) => {
if (event.key !== "Escape" || event.defaultPrevented) return;
@@ -395,12 +417,18 @@ export default function App() {
document.addEventListener("keydown", closeActiveWindow);
return () => document.removeEventListener("keydown", closeActiveWindow);
}, [activeSceneWindow, closeSceneWindow, spatialWorkspaceActive]);
}, [activeSceneWindow, closeSceneWindow, sceneWorkspaceActive]);
const selectRoot = (rootId: RootId) => {
setActiveRoot(rootId);
workspace.closeView();
workspace.openNavigation();
if (rootId === "system") {
workspace.openView(
activeDefinition?.root === "system" ? activeDefinition.id : "modules",
);
} else {
workspace.closeView();
}
};
const openView = (viewId: string) => {
@@ -411,7 +439,7 @@ export default function App() {
};
const openSource = () => {
if (!spatialWorkspaceActive) return;
if (!sceneWorkspaceActive) return;
setSourceDraft(sourceUrl);
setSourceWindowOpen(true);
activateSceneWindow("sources");
@@ -452,13 +480,13 @@ export default function App() {
}, [commitDisplaySettings]);
const openDisplay = () => {
if (!spatialWorkspaceActive) return;
if (!sceneWorkspaceActive) return;
setDisplayWindowOpen(true);
activateSceneWindow("display");
};
const openLayers = () => {
if (!spatialWorkspaceActive) return;
if (!sceneWorkspaceActive) return;
setLayerInspectorOpen(true);
activateSceneWindow("layers");
};
@@ -486,6 +514,7 @@ export default function App() {
// produced a validated launch descriptor. Keep the old scene mounted
// before this point; now perform one controlled receiver teardown before
// accepting the already-ready archive.
selectedRecordedSessionIdRef.current = null;
setReplayTransitioning(true);
setRecordedReplay(null);
setRecordedReplayLabel(null);
@@ -503,6 +532,7 @@ export default function App() {
if (sourceSwitchBlockedRef.current) {
throw new Error(SPATIAL_SOURCE_SWITCH_BLOCKED_REASON);
}
selectedRecordedSessionIdRef.current = session.id;
setRecordedReplay(launch);
setRecordedReplayLabel(session.label);
setSourceUrl(launch.sourceUrl);
@@ -514,25 +544,39 @@ export default function App() {
if (outcome !== "accepted") setReplayTransitioning(false);
}, []);
const releaseRecordedReplayForDelete = useCallback(async (sessionId: string) => {
if (selectedRecordedSessionIdRef.current !== sessionId) return;
// Deleting the selected archive is a source transition. Unmount Rerun and
// recorded media first so no admission request can outlive the evidence.
selectedRecordedSessionIdRef.current = null;
setReplayTransitioning(true);
setRecordedReplay(null);
setRecordedReplayLabel(null);
setSourceUrl("");
setSourceDraft("");
await new Promise<void>((resolve) => {
window.requestAnimationFrame(() => window.setTimeout(resolve, 0));
});
if (selectedRecordedSessionIdRef.current === null) setReplayTransitioning(false);
}, []);
const activateAutomaticSpatialSource = useCallback(() => {
// A plugin-owned live/file-replay start must release any host-selected
// archive or manual URL before the new acquisition becomes non-terminal.
// This transition is an internal start boundary, not an operator source
// switch, so it intentionally does not consult the acquisition guard.
selectedRecordedSessionIdRef.current = null;
setReplayTransitioning(false);
setRecordedReplay(null);
setRecordedReplayLabel(null);
setSourceUrl("");
setSourceDraft("");
}, []);
observationLayout.activateAutomaticDefaults();
}, [observationLayout.activateAutomaticDefaults]);
useEffect(() => {
// ObservationSessionSelect owns the cancellable request and unmounts when
// the operator leaves the spatial workspace. Its unmount cannot safely
// call back into this owner, so clear the transient blanking state here.
// Returning to Observation then starts from a deterministic idle source
// instead of an orphaned `replayTransitioning=true` state.
if (activeDefinition?.kind !== "spatial") setReplayTransitioning(false);
if (!["recordings", "lab-archive"].includes(activeDefinition?.kind ?? "")) {
setReplayTransitioning(false);
}
}, [activeDefinition?.kind]);
const applyScenePatch = (patch: Partial<SceneSettings>) => commitDisplayPatch(patch);
@@ -567,55 +611,58 @@ export default function App() {
return () => window.clearTimeout(timer);
}, [layoutSaveNotice]);
const contentActions = useMemo<ApplicationPanelUtilityAction[]>(() => {
const actions: ApplicationPanelUtilityAction[] = [];
if (activeDefinition?.kind === "device") {
actions.push({
label: "Обновить состояние локального контура",
icon: "refresh",
onClick: () => void runtime.refresh(),
});
}
if (activeDefinition?.kind === "spatial") {
actions.push(
{
label: workspaceLayoutProfile.state === "saving"
? "Сохраняем компоновку"
: "Сохранить компоновку",
icon: "save",
disabled: workspaceLayoutProfile.state === "saving",
onClick: () => void saveWorkspaceLayout(),
},
);
}
return actions;
}, [activeDefinition?.kind, runtime, saveWorkspaceLayout, workspaceLayoutProfile.state]);
const [fleetCreateRequest, setFleetCreateRequest] = useState(0);
const sessionOverview = useSessionOverviewMode(activeDefinition?.kind === "recordings");
const onAddVehicle = useCallback(() => setFleetCreateRequest(value => value + 1), []);
const contentActions = useApplicationPanelActions({
onAddVehicle,
definition: activeDefinition,
refreshRuntime: runtime.refresh,
resetConnectionScenario: runtime.resetConnectionScenario,
connectionScenarioResetting: runtime.pendingAction === "mode",
saveWorkspaceLayout,
workspaceLayoutSaving: workspaceLayoutProfile.state === "saving",
systemUtilityActions: computeContourSettings.utilityActions,
sessionOverview: { ...sessionOverview, available: Boolean(recordedReplay && replayPresented && !sourceSwitchBlocked) },
});
const header = (
<AppHeader
brand={<img src="/nodedc-logo.svg" alt="NODE.DC" />}
brandHref="/"
brandLabel="NODEDC MISSION CORE"
center={
<>
<HeaderWorkspace kind="mark" label="Mission Core" imageUrl="/nodedc-mark.svg" />
<HeaderNavigation
label="Архитектурные блоки пункта управления"
value={activeRoot ?? undefined}
items={roots.map((root) => ({ value: root.id, label: root.label }))}
items={visibleRoots.map((root) => ({
value: root.id,
label: environment.settings.pages[root.id].headerLabel,
}))}
onChange={selectRoot}
/>
</>
}
right={
<HeaderProfile>
<HeaderProfileButton onClick={() => void runtime.refresh()} title="Обновить локальный контур">
<span className="api-dot" data-status={runtime.backendStatus} aria-hidden="true" />
{backendLabel(runtime.backendStatus)}
</HeaderProfileButton>
<HeaderAvatar label="DC" />
<UserProfileMenu
displayName="DC"
subtitle="Mission Core"
triggerLabel={null}
actions={[
{
id: "refresh",
label: "Обновить контур",
icon: "refresh",
onSelect: () => void runtime.refresh(),
},
{
id: "settings",
label: "Настройки",
icon: "settings",
onSelect: () => setEnvironmentSettingsOpen(true),
},
]}
/>
</HeaderProfile>
}
/>
@@ -627,7 +674,9 @@ export default function App() {
data-nodedc-ui
className="control-station"
data-observation-fullscreen={observationFullscreenActive ? "true" : undefined}
navigationOpen={workspace.navigationOpen && activeRoot !== null}
navigationOpen={
workspace.navigationOpen && activeRoot !== null
}
contentOpen={workspace.contentOpen && activeDefinition !== null}
contentExpanded={workspace.contentExpanded}
header={header}
@@ -637,11 +686,18 @@ export default function App() {
backendStatus={runtime.backendStatus}
phase={runtime.state?.phase}
message={runtime.state?.message}
onOpenObservation={() => openView("spatial-scene")}
onOpenDevice={() => openView("local-device")}
page={landingPage}
quickActions={landingQuickActions}
onOpenWorkspace={openView}
/>
}
navigation={currentRoot ? (
navigation={currentRoot && activeRoot === "system" ? (
<SystemNavigationPanel
title={currentRoot.title}
onAdd={computeContourSettings.openCreate}
onClose={workspace.closeNavigation}
/>
) : currentRoot ? (
<AdminNavigationPanel
eyebrow="MISSION CORE"
title={currentRoot.title}
@@ -652,12 +708,11 @@ export default function App() {
{
id: "local-contour",
label: "Локальный контур",
description:
runtime.state?.activeDevice?.endpointLabel ||
selection?.model.displayName ||
"Модель не выбрана",
description: selection ? "Подключение" : "Модель не выбрана",
icon: <Icon name="network" />,
active: runtime.backendStatus !== "offline" && runtime.backendStatus !== "unconfigured",
active:
runtime.backendStatus !== "offline"
&& runtime.backendStatus !== "unconfigured",
},
]}
items={rootWorkspaces.map((item) => ({
@@ -672,7 +727,12 @@ export default function App() {
<span className="nodedc-admin-panel__nav-icon" aria-hidden="true">
<Icon name="activity" />
</span>
<span>{rootWorkspaces.length} рабочих поверхностей</span>
<span>
{rootWorkspaces.length}{" "}
{rootWorkspaces.length === 1
? "рабочая поверхность"
: "рабочих поверхностей"}
</span>
</>
}
/>
@@ -682,7 +742,9 @@ export default function App() {
key={activeDefinition.id}
eyebrow={activeDefinition.eyebrow}
title={
activeDefinition.kind === "spatial" && replayActive && recordedReplayLabel
activeDefinition.kind === "recordings"
&& replayPresented
&& recordedReplayLabel
? `${activeDefinition.title}: ${recordedReplayLabel}`
: activeDefinition.title
}
@@ -692,17 +754,13 @@ export default function App() {
headerTools={
activeDefinition.kind === "device" ? (
<StatusBadge tone={phaseTone(runtime.state?.phase)}>
{phaseLabel(runtime.state?.phase)}
{localConnectionPhaseLabel(runtime.state?.phase)}
</StatusBadge>
) : activeDefinition.kind === "spatial" ? (
<div className="observation-header-tools">
<ObservationSessionSelect
disabled={runtime.pendingAction !== null || sourceSwitchBlocked}
blockedReason={sourceSwitchBlockedReason}
onReplayBegin={beginRecordedReplaySwitch}
onReplayAccepted={acceptRecordedReplay}
onReplaySettled={(_session, outcome) => settleRecordedReplaySwitch(outcome)}
/>
<StatusBadge tone={["live", "replay"].includes(runtime.state?.sourceMode ?? "") ? "success" : "neutral"}>
{runtime.state?.sourceMode === "live" ? "Эфир" : runtime.state?.sourceMode === "replay" ? "Повтор записи" : "Ожидание эфира"}
</StatusBadge>
{layoutSaveNotice || workspaceLayoutProfile.error ? (
<span
className="workspace-layout-feedback"
@@ -718,6 +776,29 @@ export default function App() {
</span>
) : null}
</div>
) : activeDefinition.kind === "recordings" ? (
<ObservationSessionSelect
disabled={runtime.pendingAction !== null || sourceSwitchBlocked}
blockedReason={sourceSwitchBlockedReason}
onReplayBegin={beginRecordedReplaySwitch}
onReplayAccepted={acceptRecordedReplay}
onReplaySettled={(_session, outcome) =>
settleRecordedReplaySwitch(outcome)}
onDeleteBegin={releaseRecordedReplayForDelete}
/>
) : activeDefinition.kind === "missions" ? (
<div ref={setWorkspaceHeaderToolsHost} />
) : activeDefinition.kind === "vehicles" ? null : activeDefinition.kind === "datasets" ? (
<StatusBadge tone="neutral">Offline evaluation</StatusBadge>
) : activeDefinition.kind === "lab-archive" ? (
laboratoryAnnotation.control
) : activeDefinition.kind === "observatory" ? (
<StatusBadge tone="neutral">Только наблюдение</StatusBadge>
) : activeDefinition.root === "system" ? (
<SystemWorkspaceSelector
value={activeDefinition.id}
onChange={openView}
/>
) : (
<StatusBadge tone="warning">Интерфейс готов</StatusBadge>
)
@@ -730,13 +811,17 @@ export default function App() {
onOpenSpatialScene={() => openView("spatial-scene")}
onActivateAutomaticSpatialSource={activateAutomaticSpatialSource}
/>
) : activeDefinition.kind === "recordings" && sessionOverview.open && recordedReplay && replayPresented ? (
<SessionOverviewWorkspace key={recordedReplay.sessionId} sessionId={recordedReplay.sessionId} />
) : (
<WorkspaceRenderer
definition={activeDefinition}
fleetCreateRequest={fleetCreateRequest}
headerToolsHost={workspaceHeaderToolsHost}
state={activeRuntimeState}
backendStatus={runtime.backendStatus}
sourceUrl={effectiveSourceUrl}
recordedReplay={replayActive ? recordedReplay : null}
recordedReplay={replayPresented ? recordedReplay : null}
recordedSessionAdmission={recordedSessionAdmission}
sceneSettings={sceneSettings}
accumulationSeconds={displayDraft.accumulationSeconds}
@@ -746,12 +831,24 @@ export default function App() {
livePerceptionLayers={livePerceptionLayers}
onLivePerceptionLayersChange={changeLivePerceptionLayers}
observationLayout={observationLayout}
deviceLabel={selection?.model.displayName ?? null}
spatialControls={selection?.SpatialControlsView
? {
View: selection.SpatialControlsView,
model: selection.model,
}
: null}
sessionArchive={{
disabled: runtime.pendingAction !== null || sourceSwitchBlocked,
blockedReason: sourceSwitchBlockedReason,
onReplayBegin: beginRecordedReplaySwitch,
onReplayAccepted: acceptRecordedReplay,
onReplaySettled: (_session, outcome) =>
settleRecordedReplaySwitch(outcome),
onDeleteBegin: releaseRecordedReplayForDelete,
}}
onLaboratoryAnnotationActionChange={laboratoryAnnotation.setAction}
onLaboratoryViewActionChange={laboratoryAnnotation.setViewAction}
navigation={{
openView,
openSource,
@@ -765,8 +862,19 @@ export default function App() {
) : null}
/>
<EnvironmentSettingsWindow
open={environmentSettingsOpen}
settings={environment.settings}
state={environment.state}
error={environment.error}
onClose={() => setEnvironmentSettingsOpen(false)}
onSave={environment.save}
onUpload={environment.upload}
/>
{computeContourSettings.window}
<Window
open={spatialWorkspaceActive && sourceWindowOpen}
open={sceneWorkspaceActive && sourceWindowOpen}
title="Визуальный движок"
subtitle="Rerun gRPC и записи пространственной сцены"
placement="end"
@@ -788,6 +896,7 @@ export default function App() {
title={sourceSwitchBlockedReason ?? undefined}
onClick={() => {
if (sourceSwitchBlockedRef.current) return;
selectedRecordedSessionIdRef.current = null;
setSourceDraft("");
setSourceUrl("");
setRecordedReplay(null);
@@ -803,6 +912,7 @@ export default function App() {
title={sourceSwitchBlockedReason ?? undefined}
onClick={() => {
if (sourceSwitchBlockedRef.current) return;
selectedRecordedSessionIdRef.current = null;
setSourceUrl(sourceDraft.trim());
setRecordedReplay(null);
setRecordedReplayLabel(null);
@@ -894,7 +1004,7 @@ export default function App() {
</Window>
<Window
open={spatialWorkspaceActive && displayWindowOpen}
open={sceneWorkspaceActive && displayWindowOpen}
title="Отображение"
subtitle="Параметры пространственной сцены"
placement="end"
@@ -909,136 +1019,12 @@ export default function App() {
onPointerDown={() => activateSceneWindow("display")}
onClose={() => closeSceneWindow("display")}
>
<Inspector
defaultOpen={["points"]}
singleOpen
sections={[
{
id: "points",
label: "Облако точек",
description: "Размер и способ окрашивания",
content: (
<div className="inspector-control-stack">
<div
className="scene-settings-commit-field"
onPointerUp={flushDisplaySettings}
onKeyUp={flushDisplaySettings}
onBlur={flushDisplaySettings}
>
<RangeControl
label="Размер точки"
value={displayDraft.pointSize}
min={0.5}
max={12}
step={0.5}
formatValue={(value) => `${value.toFixed(1)} пкс`}
onChange={(pointSize) => stageDisplayPatch({ pointSize })}
/>
</div>
<div className="scene-settings-commit-field" onBlur={flushDisplaySettings}>
<ControlRow label="Атрибут цвета">
<Select
variant="split"
label="Атрибут цвета"
value={displayDraft.colorMode}
options={colorModeOptions}
onChange={(colorMode) => stageDisplayPatch({ colorMode })}
/>
</ControlRow>
</div>
<div className="scene-settings-commit-field" onBlur={flushDisplaySettings}>
<ControlRow label="Палитра">
<Select
variant="split"
label="Палитра"
value={displayDraft.palette}
options={paletteOptions}
onChange={(palette) => stageDisplayPatch({ palette })}
/>
</ControlRow>
</div>
{displayDraft.palette === "custom" || displayDraft.colorMode === "class" ? (
<div
className="scene-settings-commit-field"
onPointerUp={flushDisplaySettings}
onKeyUp={flushDisplaySettings}
onBlur={flushDisplaySettings}
>
<ControlRow label="Цвет точек">
<ColorField
label="Цвет точек"
value={displayDraft.customColor}
onChange={(customColor) => stageDisplayPatch({ customColor })}
/>
</ControlRow>
</div>
) : null}
{replayActive ? (
<p className="scene-window-note">
Первый новый режим читает индекс архивных точек. Следующие палитры
переключаются из подготовленного цветового кэша без переэкспорта геометрии.
</p>
) : null}
</div>
),
},
{
id: "history",
label: "Накопление и время",
description: "История облака и траектория",
content: (
<div className="inspector-control-stack">
<div
className="scene-settings-commit-field"
onPointerUp={flushDisplaySettings}
onKeyUp={flushDisplaySettings}
onBlur={flushDisplaySettings}
>
<RangeControl
label="Окно накопления"
value={displayDraft.accumulationSeconds}
min={0}
max={120}
step={1}
formatValue={(value) => (value === 0 ? "Только кадр" : `${value} с`)}
onChange={(accumulationSeconds) => stageDisplayPatch({ accumulationSeconds })}
/>
</div>
<div className="nodedc-field">
<span className="nodedc-field__description">Линия пути устройства в координатах сцены</span>
<Checker
checked={displayDraft.showTrajectory}
label="Показывать траекторию"
onChange={(showTrajectory) => commitDisplayPatch({ showTrajectory })}
/>
</div>
</div>
),
},
{
id: "scene",
label: "Окружение сцены",
description: "Сетка, подписи и камеры",
content: (
<div className="inspector-control-stack">
<Checker checked={displayDraft.showGrid} label="Сетка и оси" onChange={(showGrid) => commitDisplayPatch({ showGrid })} />
<div className="nodedc-field">
<span className="nodedc-field__description">Появятся после подключения семантических сущностей</span>
<Checker checked={false} disabled label="Подписи сущностей" onChange={() => undefined} />
</div>
<div className="nodedc-field">
<span className="nodedc-field__description">Камерный канал пока не подключён</span>
<Checker checked={false} disabled label="Области обзора камер" onChange={() => undefined} />
</div>
</div>
),
},
]}
/>
<SceneDisplayControls displayDraft={displayDraft} stageDisplayPatch={stageDisplayPatch}
commitDisplayPatch={commitDisplayPatch} flushDisplaySettings={flushDisplaySettings} replayPresented={replayPresented}/>
</Window>
<Window
open={spatialWorkspaceActive && layerInspectorOpen}
open={sceneWorkspaceActive && layerInspectorOpen}
title="Слои сцены"
subtitle="Сущности пространственной сцены"
placement="end"
@@ -1060,66 +1046,8 @@ export default function App() {
</span>
<p>Структура повторяет продуктовые сущности, а не внутренние панели визуального движка.</p>
</div>
<Inspector
defaultOpen={["geometry"]}
singleOpen
sections={[
{
id: "geometry",
label: "Геометрия",
description: "Облако точек и путь",
content: (
<div className="inspector-control-stack">
<div className="nodedc-field">
<span className="nodedc-field__description">Основной поток геометрии лидара</span>
<Checker disabled={runtime.pendingAction === "viewer"} checked={sceneSettings.showPoints} label="Облако точек" onChange={(showPoints) => void applyScenePatch({ showPoints })} />
</div>
<div className="nodedc-field">
<span className="nodedc-field__description">Положение и ориентация устройства во времени</span>
<Checker disabled={runtime.pendingAction === "viewer"} checked={sceneSettings.showTrajectory} label="Траектория" onChange={(showTrajectory) => void applyScenePatch({ showTrajectory })} />
</div>
</div>
),
},
{
id: "frames",
label: "Координаты и камеры",
description: "Преобразования и области обзора",
content: (
<div className="inspector-control-stack">
<Checker disabled={runtime.pendingAction === "viewer"} checked={sceneSettings.showGrid} label="Сетка и оси" onChange={(showGrid) => void applyScenePatch({ showGrid })} />
<div className="nodedc-field">
<span className="nodedc-field__description">Камерный канал пока не подключён</span>
<Checker checked={false} disabled label="Области обзора камер" onChange={() => undefined} />
</div>
</div>
),
},
{
id: "perception",
label: "Объекты и маски",
description: "Ожидают внешние обработчики",
content: (
<div className="inspector-control-stack">
<div className="nodedc-field">
<span className="nodedc-field__description">Внешний обработчик не подключён</span>
<Checker checked={false} disabled label="Рамки 2D и 3D" onChange={() => undefined} />
</div>
<div className="nodedc-field">
<span className="nodedc-field__description">Внешний обработчик не подключён</span>
<Checker checked={false} disabled label="Маски сегментации" onChange={() => undefined} />
</div>
<div className="nodedc-field">
<span className="nodedc-field__description">Внешний обработчик не подключён</span>
<Checker checked={false} disabled label="Ключевые точки и треки" onChange={() => undefined} />
</div>
</div>
),
},
]}
/>
<SceneLayerControls sceneSettings={sceneSettings} pending={runtime.pendingAction === "viewer"} applyScenePatch={applyScenePatch}/>
</Window>
</>
);
}
@@ -0,0 +1 @@
export { EnvironmentBackgroundMedia } from "@nodedc/ui-react";
@@ -0,0 +1 @@
export { EnvironmentMediaPlaylistEditor } from "@nodedc/ui-react";
@@ -0,0 +1,25 @@
import { EnvironmentSettingsWindow as SharedEnvironmentSettingsWindow } from "@nodedc/ui-react";
import { environmentSurfaceIds, type EnvironmentSettings, type EnvironmentSurfaceId, type UploadedEnvironmentMedia } from "../core/environment/environmentSettings";
import { roots, workspaces, workspacesForRoot } from "../productModel";
interface Props {
open: boolean;
settings: EnvironmentSettings;
state: "loading" | "ready" | "saving" | "error";
error: string | null;
onClose: () => void;
onSave: (settings: EnvironmentSettings) => Promise<EnvironmentSettings>;
onUpload: (surfaceId: EnvironmentSurfaceId, itemId: string, file: File) => Promise<UploadedEnvironmentMedia>;
}
const surfaces = environmentSurfaceIds.map(id => ({
id, home: id === "home", description: id === "home" ? "Главная страница продукта" : `Стартовая страница раздела «${roots.find(root => root.id === id)?.label}»`,
actions: id === "home" ? workspaces.filter(item => !item.internalOnly) : workspacesForRoot(id),
}));
export function EnvironmentSettingsWindow(props: Props) {
return <SharedEnvironmentSettingsWindow {...props} productName="Mission Core" surfaces={surfaces} initialSurfaceId="fleet"
onSave={draft => props.onSave({ ...draft, pages: Object.fromEntries(environmentSurfaceIds.map(id => [id, draft.pages[id]])) as EnvironmentSettings["pages"] })}
onUpload={(id, itemId, file) => {
if (!environmentSurfaceIds.includes(id as EnvironmentSurfaceId)) throw new Error("Страница окружения недоступна.");
return props.onUpload(id as EnvironmentSurfaceId, itemId, file);
}} />;
}
@@ -1,5 +1,6 @@
import { useLayoutEffect, useState, type RefObject } from "react";
import { WorkspaceWindow } from "@nodedc/ui-react";
import type {RefObject} from "react";
import {FloatingMediaWindow} from "../../../../packages/spatial-ui/src/FloatingMediaWindow";
export {initialObservationWindowRect,shouldCaptureWorkspacePointer} from "../../../../packages/spatial-ui/src/FloatingMediaWindow";
import type { ObservationWindowRect } from "../core/observation/useObservationLayout";
import type { ObservationSourceDescriptor } from "../core/runtime/contracts";
@@ -10,60 +11,6 @@ import type {
RecordedCameraAdmissionState,
} from "../core/observation/recordedSessionAdmission";
const WINDOW_WIDTH = 336;
const WINDOW_HEIGHT = 210;
const WINDOW_GAP = 16;
const WINDOW_INSET = 18;
const TIMELINE_CLEARANCE = 64;
type ClosestTarget = { closest: (selectors: string) => unknown };
export function shouldCaptureWorkspacePointer(
button: number,
target: ClosestTarget | null,
): boolean {
if (button !== 0 || !target) return false;
if (target.closest(".nodedc-workspace-window__resize")) return true;
if (!target.closest(".nodedc-workspace-window__head")) return false;
return !target.closest("button, input, select, textarea, a");
}
export function initialObservationWindowRect(
index: number,
count = 1,
bounds: { width: number; height: number } = { width: 1280, height: 720 },
): ObservationWindowRect {
const availableWidth = Math.max(0, bounds.width - WINDOW_INSET * 2);
const width = Math.max(1, Math.min(WINDOW_WIDTH, availableWidth || WINDOW_WIDTH));
const availableHeight = Math.max(0, bounds.height - WINDOW_INSET - TIMELINE_CLEARANCE);
const maxColumns = Math.max(
1,
Math.floor((availableWidth + WINDOW_GAP) / (width + WINDOW_GAP)),
);
const columns = Math.max(1, Math.min(Math.max(1, count), maxColumns));
const rows = Math.max(1, Math.ceil(Math.max(1, count) / columns));
const rowHeight = Math.max(
1,
(availableHeight - Math.max(0, rows - 1) * WINDOW_GAP) / rows,
);
const height = Math.max(1, Math.min(WINDOW_HEIGHT, rowHeight));
const row = Math.floor(index / columns);
const column = index % columns;
const rowItemCount = Math.min(columns, Math.max(1, count - row * columns));
const rowWidth = rowItemCount * width + Math.max(0, rowItemCount - 1) * WINDOW_GAP;
const rowStart = Math.max(0, bounds.width - WINDOW_INSET - rowWidth);
return {
x: rowStart + Math.min(column, rowItemCount - 1) * (width + WINDOW_GAP),
y: Math.max(
0,
bounds.height - TIMELINE_CLEARANCE - height - row * (height + WINDOW_GAP),
),
width,
height,
};
}
export function FloatingObservationWindow({
source,
index,
@@ -104,73 +51,12 @@ export function FloatingObservationWindow({
state: RecordedCameraAdmissionState,
) => void;
}) {
const [bounds, setBounds] = useState<{ width: number; height: number } | null>(null);
useLayoutEffect(() => {
const element = boundsRef.current;
if (!element) return;
const measure = () => {
const next = { width: element.clientWidth, height: element.clientHeight };
setBounds((current) => (
current?.width === next.width && current.height === next.height ? current : next
));
};
measure();
const observer = new ResizeObserver(measure);
observer.observe(element);
return () => observer.disconnect();
}, [boundsRef]);
const initialRect = bounds ? initialObservationWindowRect(index, count, bounds) : null;
const windowRect = rect ?? initialRect;
if (!windowRect) return null;
return (
<WorkspaceWindow
boundsRef={boundsRef}
rect={windowRect}
onRectChange={onRectChange}
maximized={maximized}
onMaximizedChange={onMaximizedChange}
onActivate={onActivate}
onClose={onClose}
title={source.label}
subtitle={source.description}
status={(
<span className="floating-observation-window__status">
<i data-availability={source.availability} aria-hidden="true" />
{observationSourceStatusLabel(source)}
</span>
)}
footer={(
<span className="floating-observation-window__footer">
<span>{source.endpointLabel || source.transport}</span>
<span>{source.capabilities.timelineMode === "live-only" ? "Эфир без буфера" : "Временная шкала"}</span>
</span>
)}
minWidth={Math.min(280, windowRect.width)}
minHeight={Math.min(190, windowRect.height)}
resizable={source.capabilities.resizable}
active={active}
zIndex={maximized ? 15 : active ? 9 : 7}
className={`floating-observation-window${hidden ? " floating-observation-window--hidden" : ""}`}
onPointerDownCapture={(event) => {
if (!shouldCaptureWorkspacePointer(event.button, event.target as HTMLElement)) return;
try {
event.currentTarget.setPointerCapture(event.pointerId);
} catch {
// Pointer capture can fail if the browser ended the pointer between
// dispatch and capture. The donor's window listeners remain fallback.
}
}}
closeLabel={`Закрыть ${source.label}`}
maximizeLabel={`Развернуть ${source.label}`}
restoreLabel={`Восстановить ${source.label}`}
moveLabel={`Переместить ${source.label}`}
resizeLabel={`Изменить размер ${source.label}`}
>
return <FloatingMediaWindow title={source.label} subtitle={source.description}
index={index} count={count} boundsRef={boundsRef} rect={rect} maximized={maximized}
active={active} hidden={hidden} onRectChange={onRectChange} onMaximizedChange={onMaximizedChange}
onActivate={onActivate} onClose={onClose} resizable={source.capabilities.resizable}
status={<span className="floating-observation-window__status"><i data-availability={source.availability} aria-hidden="true"/>{observationSourceStatusLabel(source)}</span>}
footer={<span className="floating-observation-window__footer"><span>{source.endpointLabel || source.transport}</span><span>{source.capabilities.timelineMode === "live-only" ? "Эфир без буфера" : "Временная шкала"}</span></span>}>
<ObservationMedia
source={source}
playback={playback}
@@ -179,6 +65,5 @@ export function FloatingObservationWindow({
recordedAdmissionKey={recordedAdmissionKey}
onRecordedAdmissionChange={onRecordedAdmissionChange}
/>
</WorkspaceWindow>
);
</FloatingMediaWindow>;
}
@@ -1,7 +1,8 @@
import { Button, Icon, StatusBadge } from "@nodedc/ui-react";
import { LandingStage as SharedLandingStage, StatusBadge } from "@nodedc/ui-react";
import type { BackendStatus, RuntimePhase } from "../core/runtime/contracts";
import type { RootDefinition } from "../productModel";
import type { EnvironmentPage } from "../core/environment/environmentSettings";
import type { RootDefinition, WorkspaceDefinition } from "../productModel";
import { backendLabel, backendTone, phaseLabel, phaseTone } from "../presentation";
export interface LandingStageProps {
@@ -9,8 +10,9 @@ export interface LandingStageProps {
backendStatus: BackendStatus;
phase?: RuntimePhase | null;
message?: string | null;
onOpenObservation: () => void;
onOpenDevice: () => void;
page: EnvironmentPage;
quickActions: readonly WorkspaceDefinition[];
onOpenWorkspace: (workspaceId: string) => void;
}
export function LandingStage({
@@ -18,30 +20,14 @@ export function LandingStage({
backendStatus,
phase,
message,
onOpenObservation,
onOpenDevice,
page,
quickActions,
onOpenWorkspace,
}: LandingStageProps) {
return (
<section className="landing-stage" data-root={root?.id ?? "home"}>
<div className="landing-stage__copy">
<span className="section-eyebrow">{root?.eyebrow ?? "NODEDC / MISSION CORE"}</span>
<h1>{root?.title ?? "Mission Core"}</h1>
<p>
{root?.statement ??
"Наблюдение, планирование и корректировка миссий в одной модульной рабочей области."}
</p>
<div className="landing-stage__actions">
<Button variant="primary" icon={<Icon name="globe" />} onClick={onOpenObservation}>
Пространственная сцена
</Button>
<Button variant="secondary" icon={<Icon name="network" />} onClick={onOpenDevice}>
Локальное устройство
</Button>
</div>
</div>
<div className="landing-stage__status">
<div>
return <SharedLandingStage page={page} pageId={root?.id ?? "home"}
actions={quickActions.map(workspace => ({ id: workspace.id, label: workspace.label, icon: workspace.icon, onSelect: () => onOpenWorkspace(workspace.id) }))}
status={<>
<div>
<span className="section-eyebrow">ЛОКАЛЬНЫЙ КОНТУР</span>
<StatusBadge tone={backendTone(backendStatus)}>{backendLabel(backendStatus)}</StatusBadge>
</div>
@@ -50,12 +36,9 @@ export function LandingStage({
<StatusBadge tone={phaseTone(phase)}>{phaseLabel(phase)}</StatusBadge>
</div>
<p>{message || "Выберите архитектурный блок в верхней навигации."}</p>
</div>
<footer className="landing-stage__footer">
<span>{root?.accent ?? "НАБЛЮДЕНИЕ · МИССИИ · ДАННЫЕ"}</span>
</>}
footer={<>
<span>{root?.accent ?? "НАБЛЮДЕНИЕ · МИССИИ · ДАННЫЕ"}</span>
<span>01 / ЛОКАЛЬНЫЙ СТЕНД</span>
</footer>
</section>
);
</>} />;
}
@@ -2,6 +2,21 @@ import { useEffect, useRef, useState } from "react";
import { Icon } from "@nodedc/ui-react";
import type { ObservationSourceDelivery } from "../core/runtime/contracts";
import {
cameraBrowserTransportIdentity,
cameraTransportCallbackIsCurrent,
initialCameraPlaybackRecoveryState,
reduceCameraPlaybackRecovery,
type CameraPlaybackRecoveryEvent,
} from "../core/observation/liveCameraRecovery";
import {
createLiveViewerDiagnosticLifecycle,
createLiveViewerInstanceId,
createLiveViewerLineage,
subscribeToLiveViewerBuildFence,
type LiveViewerDiagnosticLifecycle,
type LiveViewerFailureStage,
} from "../core/observation/liveViewerDiagnostics";
type PlayerStatus = "connecting" | "buffering" | "playing" | "error";
@@ -10,7 +25,95 @@ export interface CameraLeaseRetryBudget {
count: number;
}
const CAMERA_LEASE_RETRY_DELAYS = [400, 1_000, 2_000] as const;
const CAMERA_LEASE_RETRY_DELAYS = [400, 1_000, 2_000, 5_000] as const;
export const CAMERA_FIRST_MEDIA_TIMEOUT_MS = 8_000;
export const CAMERA_FIRST_PLAYABLE_FRAME_TIMEOUT_MS = 8_000;
export const CAMERA_BUFFERING_NOTICE_DELAY_MS = 1_000;
// The gateway may release an 8 MiB / 64-fragment slow-reader backlog after a
// main-thread stall. Keep one bounded append margin above that complete batch;
// crossing either limit replaces the MSE epoch instead of dropping fragments.
export const CAMERA_PENDING_QUEUE_MAX_BYTES = 12 * 1024 * 1024;
export const CAMERA_PENDING_QUEUE_MAX_SEGMENTS = 96;
export type CameraStartupWatchdogStage = "first-media" | "first-playable-frame";
export interface CameraStartupWatchdog {
armFirstMedia: () => void;
markMediaReceived: () => void;
markPlaying: () => void;
clear: () => void;
pendingStage: () => CameraStartupWatchdogStage | null;
}
/**
* Supervise only the disposable browser transport. One fixed first-media
* deadline covers both an MSE that never opens and an open-but-silent socket.
* The first non-empty fragment then starts a separate first-playable-frame
* deadline. Every subsequent fragment extends that deadline: a browser that is
* still receiving the authoritative stream must not destroy its partial MSE
* decode solely because the main thread or decoder needed longer to start.
*/
export function createCameraStartupWatchdog({
schedule,
cancel,
onTimeout,
firstMediaTimeoutMs = CAMERA_FIRST_MEDIA_TIMEOUT_MS,
firstPlayableFrameTimeoutMs = CAMERA_FIRST_PLAYABLE_FRAME_TIMEOUT_MS,
}: {
schedule: (callback: () => void, timeoutMs: number) => number;
cancel: (handle: number) => void;
onTimeout: (stage: CameraStartupWatchdogStage) => void;
firstMediaTimeoutMs?: number;
firstPlayableFrameTimeoutMs?: number;
}): CameraStartupWatchdog {
let timer: number | undefined;
let stage: CameraStartupWatchdogStage | null = null;
let mediaReceived = false;
let playing = false;
const clearTimer = () => {
if (timer !== undefined) cancel(timer);
timer = undefined;
stage = null;
};
const arm = (nextStage: CameraStartupWatchdogStage, timeoutMs: number) => {
clearTimer();
stage = nextStage;
timer = schedule(() => {
if (stage !== nextStage || playing) return;
timer = undefined;
stage = null;
onTimeout(nextStage);
}, timeoutMs);
};
return {
armFirstMedia() {
if (mediaReceived || playing || stage !== null) return;
arm("first-media", firstMediaTimeoutMs);
},
markMediaReceived() {
if (playing) return;
mediaReceived = true;
arm("first-playable-frame", firstPlayableFrameTimeoutMs);
},
markPlaying() {
if (playing) return;
playing = true;
clearTimer();
},
clear: clearTimer,
pendingStage: () => stage,
};
}
export function cameraStartupWatchdogRecoveryMessage(
stage: CameraStartupWatchdogStage,
): string {
return stage === "first-media"
? "Камера подключена, но не передаёт медиаданные; восстанавливаем browser-preview."
: "Медиаданные поступают, но первый кадр не воспроизводится; пересоздаём decoder.";
}
export function resetCameraLeaseRetryBudget(deliveryId: string): CameraLeaseRetryBudget {
return { deliveryId, count: 0 };
@@ -19,15 +122,69 @@ export function resetCameraLeaseRetryBudget(deliveryId: string): CameraLeaseRetr
export function consumeCameraLeaseRetry(
current: CameraLeaseRetryBudget,
deliveryId: string,
): { budget: CameraLeaseRetryBudget; delay: number | null } {
): { budget: CameraLeaseRetryBudget; delay: number } {
const count = current.deliveryId === deliveryId ? current.count : 0;
const delay = CAMERA_LEASE_RETRY_DELAYS[count] ?? null;
const delayIndex = Math.min(count, CAMERA_LEASE_RETRY_DELAYS.length - 1);
const delay = CAMERA_LEASE_RETRY_DELAYS[delayIndex];
return {
budget: { deliveryId, count: delay === null ? count : count + 1 },
budget: {
deliveryId,
count: Math.min(count + 1, CAMERA_LEASE_RETRY_DELAYS.length),
},
delay,
};
}
export function cameraTransportRecoveryIsCurrent(
activeAuthorityIdentity: string | null,
expectedAuthorityIdentity: string | null,
activeEpoch: number,
expectedEpoch: number,
disposed: boolean,
): boolean {
return Boolean(
expectedAuthorityIdentity
&& activeAuthorityIdentity === expectedAuthorityIdentity
&& cameraTransportCallbackIsCurrent(activeEpoch, expectedEpoch, disposed),
);
}
export function cameraTransportCanOpen(uiBuildStale: boolean): boolean {
return !uiBuildStale;
}
export function cameraPendingQueueCanAccept(
queuedBytes: number,
queuedSegments: number,
incomingBytes: number,
): boolean {
return incomingBytes > 0
&& queuedBytes + incomingBytes <= CAMERA_PENDING_QUEUE_MAX_BYTES
&& queuedSegments + 1 <= CAMERA_PENDING_QUEUE_MAX_SEGMENTS;
}
export function cameraTransportCloseRecoveryMessage(code: number): string {
if (code === 4_008) {
return "Browser-reader отстал от эфира; восстанавливаем текущую камеру.";
}
if (code === 1_008) {
return "Camera adapter освобождает прежний browser-reader; переподключаемся.";
}
if (code === 1_000) {
return "Browser-preview завершился; восстанавливаем текущую камеру.";
}
return "Browser-preview прерван; восстанавливаем текущую камеру.";
}
export function cameraPlaybackRecoveryFailureStage(
event: CameraPlaybackRecoveryEvent,
): LiveViewerFailureStage {
if (event.type === "heartbeat") return "camera-heartbeat-reopen";
if (event.type === "network-online") return "camera-network-online-reopen";
if (event.type === "page-restore") return "camera-page-restore-reopen";
return "camera-visibility-reopen";
}
function websocketUrl(path: string): string {
const url = new URL(path, window.location.href);
if (url.protocol === "http:") url.protocol = "ws:";
@@ -41,87 +198,288 @@ function websocketUrl(path: string): string {
export function MseFmp4WebSocketPlayer({
delivery,
label,
recoveryAuthorityIdentity,
}: {
delivery: ObservationSourceDelivery & { kind: "mse-fmp4-websocket" };
label: string;
recoveryAuthorityIdentity: string | null;
}) {
const videoRef = useRef<HTMLVideoElement>(null);
const leaseRetryRef = useRef(resetCameraLeaseRetryBudget(delivery.id));
const activeAuthorityRef = useRef(recoveryAuthorityIdentity);
const recoveryPendingAuthorityRef = useRef<string | null>(null);
const transportHealthyRef = useRef(false);
const transportEpochRef = useRef(0);
const transportAuthorityRef = useRef(recoveryAuthorityIdentity);
const activeTransportDisposeRef = useRef<(() => void) | null>(null);
const activeDiagnosticRef = useRef<LiveViewerDiagnosticLifecycle | null>(null);
const diagnosticInstanceIdRef = useRef<string | null>(null);
const diagnosticGenerationRef = useRef(0);
const uiBuildStaleRef = useRef(false);
const [attempt, setAttempt] = useState(0);
const [uiBuildStale, setUiBuildStale] = useState(false);
const [status, setStatus] = useState<PlayerStatus>("connecting");
const [message, setMessage] = useState("Подключение к локальному видеопотоку");
activeAuthorityRef.current = recoveryAuthorityIdentity;
const transportIdentity = cameraBrowserTransportIdentity(
delivery,
recoveryAuthorityIdentity,
);
useEffect(() => subscribeToLiveViewerBuildFence(() => {
// Setting this local fence tears down the effect-owned WebSocket and MSE
// buffer. It intentionally never invokes a plugin or device command.
uiBuildStaleRef.current = true;
activeTransportDisposeRef.current?.();
setUiBuildStale(true);
}), []);
useEffect(() => {
const video = videoRef.current;
if (!video) return;
if (uiBuildStale || !cameraTransportCanOpen(uiBuildStaleRef.current)) {
video.pause();
video.removeAttribute("src");
video.load();
return;
}
if (transportAuthorityRef.current !== recoveryAuthorityIdentity) {
transportAuthorityRef.current = recoveryAuthorityIdentity;
leaseRetryRef.current = resetCameraLeaseRetryBudget(delivery.id);
}
let disposed = false;
const transportEpoch = transportEpochRef.current + 1;
transportEpochRef.current = transportEpoch;
diagnosticInstanceIdRef.current ??= createLiveViewerInstanceId();
diagnosticGenerationRef.current += 1;
const diagnosticLifecycle = createLiveViewerDiagnosticLifecycle({
lineage: createLiveViewerLineage(
diagnosticInstanceIdRef.current,
diagnosticGenerationRef.current,
),
});
activeDiagnosticRef.current = diagnosticLifecycle;
diagnosticLifecycle.verifyBuild();
diagnosticLifecycle.post({
eventCode: "live_camera_player_effect_started",
streamId: delivery.id,
transportEpoch,
});
if (!recoveryAuthorityIdentity) {
diagnosticLifecycle.post({
eventCode: "live_camera_playback_authority_missing",
streamId: delivery.id,
transportEpoch,
});
}
const transportIsCurrent = () => cameraTransportCallbackIsCurrent(
transportEpochRef.current,
transportEpoch,
disposed || uiBuildStaleRef.current,
);
let socket: WebSocket | null = null;
let sourceBuffer: SourceBuffer | null = null;
let onBufferUpdateEnd: (() => void) | null = null;
let onBufferError: (() => void) | null = null;
let objectUrl = "";
let retryTimer: number | undefined;
let bufferingNoticeTimer: number | undefined;
let receivedMedia = false;
let failed = false;
let playingReported = false;
let startupWatchdog: CameraStartupWatchdog | null = null;
transportHealthyRef.current = false;
const recovering = Boolean(
activeAuthorityRef.current
&& recoveryPendingAuthorityRef.current === activeAuthorityRef.current,
);
const queue: ArrayBuffer[] = [];
let queuedBytes = 0;
const clearBufferingNotice = () => {
if (bufferingNoticeTimer !== undefined) window.clearTimeout(bufferingNoticeTimer);
bufferingNoticeTimer = undefined;
};
const fail = (copy: string) => {
if (disposed || failed) return;
if (!transportIsCurrent() || failed) return;
startupWatchdog?.clear();
clearBufferingNotice();
failed = true;
transportHealthyRef.current = false;
recoveryPendingAuthorityRef.current = null;
setStatus("error");
setMessage(copy);
try {
if (socket && socket.readyState < WebSocket.CLOSING) {
socket.close(1011, "Live video buffer reset");
socket.close(4_000, "Live video buffer reset");
}
} catch {
// The manual reconnect button will create a fresh transport and MSE buffer.
}
};
const retryLease = () => {
const retry = consumeCameraLeaseRetry(leaseRetryRef.current, delivery.id);
leaseRetryRef.current = retry.budget;
if (retry.delay === null) {
fail("Camera adapter ещё занят предыдущим окном. Подключитесь повторно.");
const retryTransport = (
copy: string,
failureStage: LiveViewerFailureStage,
websocketCloseCode?: number,
appendFailure?: {
cameraAppendErrorName: string;
cameraMediaSourceState: "closed" | "open" | "ended";
cameraVideoErrorCode: number | null;
},
) => {
if (!transportIsCurrent() || failed) return;
if (!cameraTransportRecoveryIsCurrent(
activeAuthorityRef.current,
recoveryAuthorityIdentity,
transportEpochRef.current,
transportEpoch,
disposed || uiBuildStaleRef.current,
)) {
fail(copy);
return;
}
startupWatchdog?.clear();
clearBufferingNotice();
failed = true;
transportHealthyRef.current = false;
const retry = consumeCameraLeaseRetry(leaseRetryRef.current, delivery.id);
leaseRetryRef.current = retry.budget;
diagnosticLifecycle.post({
eventCode: "live_camera_transport_restart_requested",
failureStage,
streamId: delivery.id,
cameraQueueBytes: queuedBytes,
cameraQueueSegments: queue.length,
cameraRetryCount: retry.budget.count,
websocketCloseCode,
transportEpoch,
...appendFailure,
});
queue.length = 0;
queuedBytes = 0;
recoveryPendingAuthorityRef.current = recoveryAuthorityIdentity;
setStatus("connecting");
setMessage("Освобождение предыдущего окна камеры");
setMessage(copy);
try {
if (socket && socket.readyState < WebSocket.CLOSING) {
socket.close(4_001, "Live video transport recovery");
}
} catch {
// The replacement effect still fences and releases this transport.
}
retryTimer = window.setTimeout(() => {
if (!disposed) setAttempt((value) => value + 1);
if (cameraTransportRecoveryIsCurrent(
activeAuthorityRef.current,
recoveryAuthorityIdentity,
transportEpochRef.current,
transportEpoch,
disposed || uiBuildStaleRef.current,
)) {
setAttempt((value) => value + 1);
}
}, retry.delay);
};
if (recoveryAuthorityIdentity) {
startupWatchdog = createCameraStartupWatchdog({
schedule: (callback, timeoutMs) => window.setTimeout(callback, timeoutMs),
cancel: (handle) => window.clearTimeout(handle),
onTimeout: (stage) => {
retryTransport(
cameraStartupWatchdogRecoveryMessage(stage),
stage === "first-media"
? "camera-first-media-timeout"
: "camera-first-playable-timeout",
);
},
});
}
const onPlaying = () => {
if (disposed) return;
if (!transportIsCurrent() || failed) return;
clearBufferingNotice();
startupWatchdog?.markPlaying();
transportHealthyRef.current = true;
leaseRetryRef.current = resetCameraLeaseRetryBudget(delivery.id);
recoveryPendingAuthorityRef.current = null;
setStatus("playing");
setMessage("");
if (!playingReported) {
playingReported = true;
diagnosticLifecycle.post({
eventCode: "live_camera_transport_playing",
streamId: delivery.id,
cameraQueueBytes: queuedBytes,
cameraQueueSegments: queue.length,
transportEpoch,
});
}
};
const onWaiting = () => {
if (!transportIsCurrent() || failed || !playingReported) return;
// A short receipt gap must not flicker or restart the acquisition-owned
// stream. A sustained decoder wait must not retain a playing presentation.
if (bufferingNoticeTimer !== undefined) return;
bufferingNoticeTimer = window.setTimeout(() => {
bufferingNoticeTimer = undefined;
if (!transportIsCurrent() || failed || video.readyState >= 3) return;
setStatus("buffering");
setMessage("Ожидание новых кадров.");
}, CAMERA_BUFFERING_NOTICE_DELAY_MS);
};
video.addEventListener("playing", onPlaying);
video.addEventListener("waiting", onWaiting);
video.addEventListener("stalled", onWaiting);
const appendNext = () => {
if (disposed || !sourceBuffer || sourceBuffer.updating || queue.length === 0) return;
if (
!transportIsCurrent()
|| failed
|| !sourceBuffer
|| sourceBuffer.updating
|| queue.length === 0
) return;
const chunk = queue.shift();
if (!chunk) return;
queuedBytes -= chunk.byteLength;
try {
sourceBuffer.appendBuffer(chunk);
} catch (error) {
fail(error instanceof DOMException && error.name === "QuotaExceededError"
? "Live-буфер переполнен и сброшен, чтобы не накапливать задержку."
: "Не удалось добавить видеосегмент. Повторите подключение.");
const quotaExceeded = error instanceof DOMException
&& error.name === "QuotaExceededError";
retryTransport(
quotaExceeded
? "Live-буфер переполнен; восстанавливаем канал без накопленной задержки."
: "Не удалось добавить видеосегмент; восстанавливаем browser-preview.",
quotaExceeded ? "camera-append-quota" : "camera-append-error",
undefined,
{
cameraAppendErrorName: error instanceof DOMException
? error.name
: error instanceof Error
? error.name
: "UnknownError",
cameraMediaSourceState: mediaSource.readyState,
cameraVideoErrorCode: video.error?.code ?? null,
},
);
}
};
const enqueue = (chunk: ArrayBuffer) => {
if (disposed || chunk.byteLength === 0) return;
if (!transportIsCurrent() || failed || chunk.byteLength === 0) return;
startupWatchdog?.markMediaReceived();
// Never drop arbitrary fMP4 fragments: the following samples may depend
// on them. A bounded reset is safer and keeps live latency deterministic.
if (queuedBytes + chunk.byteLength > 2 * 1024 * 1024) {
fail("Видеодекодер не успевает за эфиром. Live-буфер сброшен.");
if (!cameraPendingQueueCanAccept(queuedBytes, queue.length, chunk.byteLength)) {
retryTransport(
"Видеодекодер отстал от эфира; восстанавливаем live-буфер.",
"camera-queue-capacity",
);
return;
}
queue.push(chunk);
@@ -142,13 +500,19 @@ export function MseFmp4WebSocketPlayer({
}
setStatus("connecting");
setMessage("Подключение к локальному видеопотоку");
setMessage(recovering
? "Восстановление камеры после разрыва браузерного канала"
: "Подключение к локальному видеопотоку");
const mediaSource = new MediaSource();
objectUrl = URL.createObjectURL(mediaSource);
video.src = objectUrl;
const onSourceOpen = () => {
if (disposed) return;
if (!transportIsCurrent() || failed) return;
diagnosticLifecycle.post({
eventCode: "live_camera_media_source_open",
streamId: delivery.id,
transportEpoch,
});
try {
sourceBuffer = mediaSource.addSourceBuffer(mediaType);
} catch {
@@ -156,8 +520,8 @@ export function MseFmp4WebSocketPlayer({
return;
}
sourceBuffer.addEventListener("updateend", () => {
if (disposed || !sourceBuffer) return;
onBufferUpdateEnd = () => {
if (!transportIsCurrent() || failed || !sourceBuffer) return;
const buffered = sourceBuffer.buffered;
if (buffered.length > 0) {
const end = buffered.end(buffered.length - 1);
@@ -166,7 +530,9 @@ export function MseFmp4WebSocketPlayer({
if (!receivedMedia) {
receivedMedia = true;
setStatus("buffering");
setMessage("Запуск первого декодированного кадра");
setMessage(recovering
? "Запуск первого кадра восстановленной камеры"
: "Запуск первого декодированного кадра");
void video.play().catch(() => undefined);
}
const removeBefore = end - 3;
@@ -180,10 +546,15 @@ export function MseFmp4WebSocketPlayer({
}
}
appendNext();
});
sourceBuffer.addEventListener("error", () => {
fail("MSE сообщил об ошибке декодирования видеосегмента.");
});
};
onBufferError = () => {
retryTransport(
"MSE сбросил видеосегмент; восстанавливаем decoder.",
"camera-source-buffer-error",
);
};
sourceBuffer.addEventListener("updateend", onBufferUpdateEnd);
sourceBuffer.addEventListener("error", onBufferError);
try {
socket = new WebSocket(websocketUrl(delivery.url));
@@ -193,41 +564,73 @@ export function MseFmp4WebSocketPlayer({
}
socket.binaryType = "arraybuffer";
socket.addEventListener("open", () => {
if (disposed) return;
if (!transportIsCurrent() || failed) return;
diagnosticLifecycle.post({
eventCode: "live_camera_websocket_open",
streamId: delivery.id,
transportEpoch,
});
startupWatchdog?.armFirstMedia();
setStatus("buffering");
setMessage("Ожидание первого видеокадра");
setMessage(recovering
? "Ожидание первого кадра после восстановления"
: "Ожидание первого видеокадра");
});
socket.addEventListener("message", (event) => {
if (!transportIsCurrent() || failed) return;
if (event.data instanceof ArrayBuffer) {
enqueue(event.data);
} else if (event.data instanceof Blob) {
void event.data.arrayBuffer().then(enqueue).catch(() => {
fail("Получен повреждённый видеосегмент.");
retryTransport(
"Получен повреждённый видеосегмент; восстанавливаем канал.",
"camera-fragment-decode",
);
});
}
});
socket.addEventListener("error", () => {
fail("Соединение с локальным video adapter потеряно.");
retryTransport(
"Связь с локальным video adapter потеряна; переподключаемся.",
"camera-websocket-error",
);
});
socket.addEventListener("close", (event) => {
if (!disposed && !failed && event.code === 1008) {
retryLease();
} else if (!disposed) {
fail(event.code === 1000
? "Видеопоток завершён. Можно подключиться повторно."
: "Видеопоток прерван. Проверьте устройство и повторите подключение.");
}
if (!transportIsCurrent() || failed) return;
retryTransport(
cameraTransportCloseRecoveryMessage(event.code),
"camera-websocket-close",
event.code,
);
});
};
// Register before assigning the object URL. `video.src` is the action that
// lets the browser open this MediaSource; a fast sequential MSE lease must
// not fire `sourceopen` in the gap before its only listener exists.
mediaSource.addEventListener("sourceopen", onSourceOpen, { once: true });
startupWatchdog?.armFirstMedia();
video.src = objectUrl;
return () => {
const disposeTransport = () => {
if (disposed) return;
disposed = true;
transportHealthyRef.current = false;
startupWatchdog?.clear();
clearBufferingNotice();
if (retryTimer !== undefined) window.clearTimeout(retryTimer);
queue.length = 0;
socket?.close(1000, "Источник скрыт оператором");
socket?.close(1000, "Browser preview transport replaced or hidden");
video.removeEventListener("playing", onPlaying);
video.removeEventListener("waiting", onWaiting);
video.removeEventListener("stalled", onWaiting);
mediaSource.removeEventListener("sourceopen", onSourceOpen);
if (sourceBuffer && onBufferUpdateEnd) {
sourceBuffer.removeEventListener("updateend", onBufferUpdateEnd);
}
if (sourceBuffer && onBufferError) {
sourceBuffer.removeEventListener("error", onBufferError);
}
try {
if (sourceBuffer?.updating) sourceBuffer.abort();
} catch {
@@ -243,7 +646,80 @@ export function MseFmp4WebSocketPlayer({
video.load();
if (objectUrl) URL.revokeObjectURL(objectUrl);
};
}, [attempt, delivery.id, delivery.mediaType, delivery.url]);
activeTransportDisposeRef.current = disposeTransport;
return () => {
if (activeTransportDisposeRef.current === disposeTransport) {
activeTransportDisposeRef.current = null;
}
if (activeDiagnosticRef.current === diagnosticLifecycle) {
activeDiagnosticRef.current = null;
}
diagnosticLifecycle.dispose();
disposeTransport();
};
}, [attempt, recoveryAuthorityIdentity, transportIdentity, uiBuildStale]);
useEffect(() => {
if (
!recoveryAuthorityIdentity
|| uiBuildStale
|| !cameraTransportCanOpen(uiBuildStaleRef.current)
) return;
let recovery = initialCameraPlaybackRecoveryState(
recoveryAuthorityIdentity,
Date.now(),
);
const dispatchRecovery = (event: CameraPlaybackRecoveryEvent) => {
if (uiBuildStaleRef.current) return;
const decision = reduceCameraPlaybackRecovery(recovery, event, {
activeAuthorityIdentity: activeAuthorityRef.current,
now: Date.now(),
documentVisible: document.visibilityState === "visible",
networkOnline: navigator.onLine !== false,
transportHealthy: transportHealthyRef.current,
});
recovery = decision.state;
if (!decision.reopen) return;
activeDiagnosticRef.current?.post({
eventCode: "live_camera_transport_restart_requested",
failureStage: cameraPlaybackRecoveryFailureStage(event),
streamId: delivery.id,
transportEpoch: transportEpochRef.current,
});
leaseRetryRef.current = resetCameraLeaseRetryBudget(delivery.id);
recoveryPendingAuthorityRef.current = recoveryAuthorityIdentity;
setStatus("connecting");
setMessage("Восстановление камеры после разрыва браузерного канала");
// The transport effect cleans up the old WebSocket and MSE object before
// opening their replacement. No plugin action or device command occurs.
setAttempt((value) => value + 1);
};
const onVisibilityChange = () => {
dispatchRecovery({
type: document.visibilityState === "hidden"
? "document-hidden"
: "document-visible",
});
};
const onOnline = () => dispatchRecovery({ type: "network-online" });
const onPageShow = (event: PageTransitionEvent) => {
dispatchRecovery({ type: "page-restore", persisted: event.persisted });
};
const heartbeat = window.setInterval(() => {
dispatchRecovery({ type: "heartbeat" });
}, 1_000);
document.addEventListener("visibilitychange", onVisibilityChange);
window.addEventListener("online", onOnline);
window.addEventListener("pageshow", onPageShow);
return () => {
window.clearInterval(heartbeat);
document.removeEventListener("visibilitychange", onVisibilityChange);
window.removeEventListener("online", onOnline);
window.removeEventListener("pageshow", onPageShow);
};
}, [delivery.id, recoveryAuthorityIdentity, uiBuildStale]);
return (
<div className="mse-fmp4-player" data-status={status}>
@@ -258,13 +734,14 @@ export function MseFmp4WebSocketPlayer({
{status !== "playing" ? (
<div className="mse-fmp4-player__status" role="status" aria-live="polite">
<Icon name={status === "error" ? "alert" : "video"} size={20} />
<strong>{status === "error" ? "Канал прерван" : "Подготовка камеры"}</strong>
<strong>{status === "error" ? "Канал прерван" : status === "buffering" ? "Ожидание изображения" : "Подготовка камеры"}</strong>
<span>{message}</span>
{status === "error" ? (
<button
type="button"
onClick={() => {
leaseRetryRef.current = resetCameraLeaseRetryBudget(delivery.id);
recoveryPendingAuthorityRef.current = null;
setAttempt((value) => value + 1);
}}
>
@@ -92,17 +92,7 @@ function sessionDescription(session: ObservationSessionSummary): string {
return `${formatStartedAt(session.startedAtUtc)} · ${formatDuration(session.durationSeconds)} · ${modalities}`;
}
export function ObservationSessionSelect({
limit = 100,
disabled = false,
blockedReason = null,
onReplayBegin,
onReplayAccepted,
onReplaySettled,
}: {
limit?: number;
disabled?: boolean;
blockedReason?: string | null;
export interface ObservationSessionReplayCallbacks {
onReplayBegin?: (
session: ObservationSessionSummary,
launch: ObservationSessionReplayLaunch,
@@ -115,14 +105,31 @@ export function ObservationSessionSelect({
session: ObservationSessionSummary,
outcome: ObservationReplayOutcome,
) => void | Promise<void>;
onDeleteBegin?: (sessionId: string) => void | Promise<void>;
}
export function ObservationSessionSelect({
limit = 100,
disabled = false,
blockedReason = null,
onReplayBegin,
onReplayAccepted,
onReplaySettled,
onDeleteBegin,
}: ObservationSessionReplayCallbacks & {
limit?: number;
disabled?: boolean;
blockedReason?: string | null;
}) {
const [deleteTarget, setDeleteTarget] = useState<ObservationSessionSummary | null>(null);
const sessions = useObservationSessions({
limit,
scope: "source",
replayEnabled: blockedReason === null,
onReplayBegin,
onReplayAccepted,
onReplaySettled,
onDeleteBegin,
});
const triggerCopy = sessions.replayProgress
? progressCopy(sessions.replayProgress.phase)
@@ -300,3 +307,178 @@ export function ObservationSessionSelect({
/>
</>;
}
export function ObservationSessionArchive({
limit = 100,
labsOnly = false,
disabled = false,
blockedReason = null,
onReplayBegin,
onReplayAccepted,
onReplaySettled,
onDeleteBegin,
}: ObservationSessionReplayCallbacks & {
limit?: number;
labsOnly?: boolean;
disabled?: boolean;
blockedReason?: string | null;
}) {
const [deleteTarget, setDeleteTarget] = useState<ObservationSessionSummary | null>(null);
const sessions = useObservationSessions({
limit,
scope: labsOnly ? "laboratory" : "source",
replayEnabled: blockedReason === null,
onReplayBegin,
onReplayAccepted,
onReplaySettled,
onDeleteBegin,
});
const items = sessions.items;
return <>
<section
className="observation-session-archive"
aria-label={labsOnly ? "Лабораторные записи" : "Сохранённые сессии"}
>
<header className="observation-session-archive__head">
<div>
<span className="section-eyebrow">
{labsOnly ? "ВОСПРОИЗВОДИМЫЕ ЛАБОРАТОРНЫЕ ЗАПИСИ" : "АРХИВ НАБЛЮДЕНИЯ"}
</span>
<h2>{labsOnly ? "Записанные лабораторные работы" : "Сохранённые сессии"}</h2>
<p>
{labsOnly
? "Каждая запись связана с LAB-конфигурацией и открывается как самостоятельный визуальный результат."
: "Выберите запись: сцена и синхронные каналы откроются ниже, не меняя эфир наблюдения."}
</p>
</div>
<button
type="button"
className="observation-session-archive__refresh"
aria-label="Обновить каталог сессий"
disabled={sessions.state === "loading"}
onClick={() => void sessions.refresh()}
>
<Icon name="refresh" size={14} />
<span>Обновить</span>
</button>
</header>
{items.length > 0 ? (
<div className="observation-session-archive__list">
{items.map((session) => {
const pending = sessions.replayingSessionId === session.id;
const deleting = sessions.deletingSessionId === session.id;
const failed = sessions.failedSessionId === session.id;
const visualState = observationSessionVisualState(session, { pending, failed });
return (
<article
key={session.id}
className="observation-session-archive__item"
data-deleting={deleting ? "true" : undefined}
>
<button
type="button"
className="observation-session-archive__open"
disabled={disabled || pending || deleting || !session.replayable}
title={blockedReason ?? undefined}
onClick={() => void sessions.replay(session.id)}
>
<i data-session-visual-state={visualState} aria-hidden="true" />
<span>
<strong>
{session.lab &&
!session.label.startsWith(`${session.lab.labId} ·`) ? (
<small>{session.lab.labId}</small>
) : null}
{session.label}
</strong>
<small>{sessionDescription(session)}</small>
</span>
<em>
{pending && sessions.replayProgress
? progressCopy(sessions.replayProgress.phase)
: observationSessionVisualLabel(visualState)}
</em>
</button>
<button
type="button"
className="observation-session-archive__delete"
aria-label={`Удалить сохранённую сессию ${session.label}`}
disabled={pending || deleting}
onClick={() => setDeleteTarget(session)}
>
<Icon name="trash" size={15} />
</button>
</article>
);
})}
</div>
) : sessions.state === "loading" ? (
<div className="observation-session-archive__empty" role="status">
<span className="busy-indicator" aria-hidden="true" />
<strong>Читаем каталог</strong>
</div>
) : (
<div className="observation-session-archive__empty">
<Icon name={sessions.error ? "alert" : "database"} size={18} />
<strong>
{sessions.error
? "Каталог недоступен"
: labsOnly
? "LAB-записей пока нет"
: "Сессий пока нет"}
</strong>
<span>
{sessions.error
?? (labsOnly
? "Зафиксированные лабораторные записи появятся здесь автоматически."
: "Завершённые записи появятся здесь автоматически.")}
</span>
</div>
)}
{sessions.error && items.length > 0 ? (
<footer className="observation-session-menu__error" role="alert">
<Icon name="alert" size={13} />
<span>{sessions.error}</span>
{sessions.failedSessionId ? (
<button type="button" onClick={() => void sessions.retry()}>
Повторить
</button>
) : null}
</footer>
) : null}
</section>
<ConfirmationModal
open={deleteTarget !== null}
title="Удалить сохранённую сессию?"
description={deleteTarget ? <>
<strong>{deleteTarget.label}</strong>
{deleteTarget.lab ? (
<p>
Будут удалены только LAB-запись из каталога и её подготовленный кэш.
Исходная запись {deleteTarget.lab.sourceSessionId} и зафиксированный
лабораторный результат останутся неизменными.
</p>
) : (
<p>
Сессия, исходные данные наблюдения, подготовленная Rerun-запись и
видеоматериалы будут удалены с этого сервера без возможности восстановления.
</p>
)}
</> : null}
confirmLabel="Удалить сессию"
pendingLabel="Удаление…"
danger
onClose={() => {
if (sessions.deletingSessionId === null) setDeleteTarget(null);
}}
onConfirm={async () => {
if (!deleteTarget) return;
if (await sessions.remove(deleteTarget.id)) setDeleteTarget(null);
}}
/>
</>;
}
@@ -1,9 +1,9 @@
import { Dropdown, Icon, type IconName } from "@nodedc/ui-react";
import {sourceIcon,observationSourceStatusLabel} from "../../../../packages/spatial-ui/src/ObservationSourcePicker";
export {ObservationSourcePicker,observationSourceStatusLabel} from "../../../../packages/spatial-ui/src/ObservationSourcePicker";
import { Icon } from "@nodedc/ui-react";
import type {
ObservationSourceAvailability,
ObservationSourceDescriptor,
ObservationSourceModality,
} from "../core/runtime/contracts";
import { MseFmp4WebSocketPlayer } from "./MseFmp4WebSocketPlayer";
import {
@@ -14,28 +14,7 @@ import type {
RecordedAdmissionPhase,
RecordedCameraAdmissionState,
} from "../core/observation/recordedSessionAdmission";
const sourceIcon: Record<ObservationSourceModality, IconName> = {
"point-cloud": "globe",
video: "video",
image: "image",
depth: "image",
};
const availabilityCopy: Record<ObservationSourceAvailability, string> = {
unverified: "Не подтверждён",
declared: "Канал объявлен",
available: "Доступен",
connecting: "Подключение",
streaming: "Эфир",
degraded: "Нестабильно",
unavailable: "Недоступен",
error: "Ошибка",
};
export function observationSourceStatusLabel(source: ObservationSourceDescriptor): string {
return availabilityCopy[source.availability];
}
import { liveCameraPlaybackAuthorityIdentity } from "../core/observation/liveCameraRecovery";
export function ObservationMedia({
source,
@@ -63,7 +42,13 @@ export function ObservationMedia({
source.delivery?.kind === "mse-fmp4-websocket" &&
source.modality === "video"
) {
return <MseFmp4WebSocketPlayer delivery={source.delivery} label={source.label} />;
return (
<MseFmp4WebSocketPlayer
delivery={source.delivery}
label={source.label}
recoveryAuthorityIdentity={liveCameraPlaybackAuthorityIdentity(source)}
/>
);
}
if (
@@ -152,105 +137,3 @@ export function ObservationMedia({
</div>
);
}
export function ObservationSourcePicker({
sources,
visibleSourceIds,
pendingSourceIds,
onToggle,
}: {
sources: readonly ObservationSourceDescriptor[];
visibleSourceIds: ReadonlySet<string>;
pendingSourceIds?: ReadonlySet<string>;
onToggle: (sourceId: string) => void | Promise<boolean>;
}) {
const visibleCount = sources.filter((source) => visibleSourceIds.has(source.id)).length;
return (
<Dropdown
className="scene-source-picker"
placement="bottom-start"
width={340}
offset={10}
surfaceRole="dialog"
surfaceClassName="observation-source-menu"
trigger={({ open, toggle, setAnchorRef, setTriggerRef, surfaceId }) => (
<button
ref={(node) => {
setAnchorRef(node);
setTriggerRef(node);
}}
type="button"
className="scene-source-picker__trigger"
data-active={open || visibleCount > 0 ? "true" : undefined}
aria-label="Источники данных сцены"
aria-haspopup="dialog"
aria-expanded={open}
aria-controls={surfaceId}
onClick={toggle}
>
<Icon name="database" size={17} />
{sources.length > 0 ? <span>{visibleCount}</span> : null}
</button>
)}
>
<header className="observation-source-menu__head">
<div>
<span className="section-eyebrow">НАБЛЮДЕНИЕ</span>
<strong>Источники данных</strong>
</div>
<small>{sources.length ? `${visibleCount} из ${sources.length}` : "нет источников"}</small>
</header>
{sources.length ? (
<div className="observation-source-menu__list">
{sources.map((source) => {
const selected = visibleSourceIds.has(source.id);
const pending = pendingSourceIds?.has(source.id) ?? false;
const canOpen = Boolean(
selected ||
source.modality === "point-cloud" ||
source.previewUrl ||
source.delivery ||
source.activation?.controllable,
);
return (
<button
key={source.id}
type="button"
className="nodedc-dropdown-option observation-source-option"
data-selected={selected ? "true" : undefined}
aria-pressed={selected}
disabled={pending || !canOpen}
onClick={() => void onToggle(source.id)}
>
<span className="nodedc-dropdown-option__icon">
<Icon name={sourceIcon[source.modality]} size={16} />
</span>
<span className="nodedc-dropdown-option__body">
<span className="nodedc-dropdown-option__label">{source.label}</span>
<span className="nodedc-dropdown-option__description">
<i data-availability={source.availability} aria-hidden="true" />
{pending ? "Переключение" : observationSourceStatusLabel(source)} · {source.endpointLabel || source.transport}
</span>
</span>
<span className="nodedc-dropdown-option__check">
{selected ? <Icon name="check" size={15} /> : null}
</span>
</button>
);
})}
</div>
) : (
<div className="observation-source-menu__empty">
<Icon name="database" size={18} />
<strong>Каталог пока пуст</strong>
<span>Выберите профиль устройства — его плагин опубликует доступные каналы.</span>
</div>
)}
<footer className="observation-source-menu__foot">
Каналы приходят из активного контура или выбранной сохранённой сессии; сцена не знает
модель оборудования.
</footer>
</Dropdown>
);
}
@@ -1,174 +1 @@
import { Button, Icon } from "@nodedc/ui-react";
import type { ObservationTimelineMode } from "../core/runtime/contracts";
export function ObservationTimeline({
active,
sourceCount,
mode = "live-only",
seekable = false,
synchronization = "host-arrival-best-effort",
rangeNs = null,
currentNs = null,
playing = false,
onSeek,
onPlayingChange,
onJumpToEnd,
accumulationSeconds,
onAccumulationChange,
onAccumulationCommit,
className = "",
}: {
active: boolean;
sourceCount: number;
mode?: ObservationTimelineMode;
seekable?: boolean;
synchronization?: "host-arrival-best-effort" | "shared-clock" | "frame-accurate";
rangeNs?: { min: number; max: number } | null;
currentNs?: number | null;
playing?: boolean;
onSeek?: (timeNs: number) => void;
onPlayingChange?: (playing: boolean) => void;
onJumpToEnd?: () => void;
accumulationSeconds?: number;
onAccumulationChange?: (value: number) => void;
onAccumulationCommit?: () => void;
className?: string;
}) {
const playbackRange = normalizeTimelineRange(rangeNs);
const buffered = Boolean(
seekable &&
(mode === "buffered" || mode === "recorded") &&
playbackRange,
);
const elapsedSeconds = playbackRange
? timelineOffsetSeconds(playbackRange, currentNs ?? playbackRange.min)
: 0;
const durationSeconds = playbackRange
? Math.max(0, (playbackRange.max - playbackRange.min) / 1_000_000_000)
: 0;
const synchronizationLabel = {
"host-arrival-best-effort": "Синхронизация по приходу",
"shared-clock": "Общие часы",
"frame-accurate": "Покадровая синхронизация",
}[synchronization];
const accumulationValue = accumulationSeconds === undefined
? null
: normalizeAccumulationSeconds(accumulationSeconds);
return (
<div
className={`observation-timeline ${className}`.trim()}
data-active={active ? "true" : undefined}
data-mode={mode}
data-accumulation={accumulationValue !== null ? "true" : undefined}
>
{accumulationValue !== null ? (
<div className="observation-timeline__accumulation">
<span>Накопление</span>
<input
className="observation-timeline__track"
type="range"
min={0}
max={120}
step={1}
value={accumulationValue}
aria-label="Окно накопления облака точек"
aria-valuetext={formatAccumulationDuration(accumulationValue)}
onChange={(event) =>
onAccumulationChange?.(normalizeAccumulationSeconds(Number(event.target.value)))}
onPointerUp={onAccumulationCommit}
onTouchEnd={onAccumulationCommit}
onKeyUp={onAccumulationCommit}
onBlur={onAccumulationCommit}
/>
<code>{formatAccumulationDuration(accumulationValue)}</code>
</div>
) : null}
<div className="observation-timeline__playback">
<Button
size="compact"
variant="ghost"
disabled={!buffered || !onSeek}
aria-label="Перейти к началу"
onClick={() => playbackRange && onSeek?.(playbackRange.min)}
>
<Icon name="chevron-left" />
</Button>
<Button
size="compact"
variant="secondary"
disabled={!buffered || !onPlayingChange}
onClick={() => onPlayingChange?.(!playing)}
>
{buffered ? (playing ? "Пауза" : "Воспроизвести") : "Только эфир"}
</Button>
<input
className="observation-timeline__track"
type="range"
min={0}
max={Math.max(durationSeconds, 0.001)}
step={0.01}
value={Math.min(elapsedSeconds, durationSeconds)}
disabled={!buffered || !onSeek}
aria-label="Позиция воспроизведения"
onChange={(event) => {
if (!playbackRange) return;
onSeek?.(playbackRange.min + Number(event.target.value) * 1_000_000_000);
}}
/>
<div className="observation-timeline__meta">
<code>
{buffered
? `${formatTimelineDuration(elapsedSeconds)} / ${formatTimelineDuration(durationSeconds)}`
: active ? "LIVE" : "—:—:—.———"}
</code>
<small>
{buffered ? `${sourceCount} каналов` : `${synchronizationLabel} · буфер не включён`}
</small>
</div>
<button
type="button"
className="observation-timeline__follow"
data-active={!buffered && active ? "true" : undefined}
disabled={buffered ? !onJumpToEnd : true}
onClick={onJumpToEnd}
>
{buffered ? "К КОНЦУ" : "ЭФИР"}
</button>
</div>
</div>
);
}
export function normalizeAccumulationSeconds(value: number): number {
if (!Number.isFinite(value)) return 0;
return Math.min(120, Math.max(0, Math.round(value)));
}
export function formatAccumulationDuration(value: number): string {
const seconds = normalizeAccumulationSeconds(value);
return seconds === 0 ? "Кадр" : `${seconds} с`;
}
export function normalizeTimelineRange(
range: { min: number; max: number } | null | undefined,
): { min: number; max: number } | null {
if (!range || !Number.isFinite(range.min) || !Number.isFinite(range.max)) return null;
if (range.max <= range.min) return null;
return range;
}
export function timelineOffsetSeconds(
range: { min: number; max: number },
currentNs: number,
): number {
const clamped = Math.min(Math.max(currentNs, range.min), range.max);
return Math.max(0, (clamped - range.min) / 1_000_000_000);
}
export function formatTimelineDuration(seconds: number): string {
if (!Number.isFinite(seconds) || seconds < 0) return "00:00.000";
const wholeMinutes = Math.floor(seconds / 60);
const remaining = seconds - wholeMinutes * 60;
return `${String(wholeMinutes).padStart(2, "0")}:${remaining.toFixed(3).padStart(6, "0")}`;
}
export * from "../../../../packages/spatial-ui/src/ObservationTimeline";
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,33 @@
import { CanonicalResultRerunReplay } from "./CanonicalResultRerunReplay";
import { resolveAICompositionReplay } from "../../core/laboratory/canonicalLabReplay";
import type { ObservationSessionReplayLaunch } from "../../core/observation/sessionArchive";
import type { AICompositionRun } from "../../core/observatory/aiComposition";
function resolveComposition(
runId: string,
launch: ObservationSessionReplayLaunch,
options: { signal: AbortSignal },
) {
return resolveAICompositionReplay(runId, launch, options);
}
export function AICompositionReplay({ run }: { run: AICompositionRun }) {
const semantics = run.moduleIds.includes("ddrnet") || run.moduleIds.includes("eomt");
const detections = run.moduleIds.includes("rf-detr")
|| run.moduleIds.includes("object-distance");
const costmap = run.moduleIds.includes("tgs");
return (
<CanonicalResultRerunReplay
key={run.runId}
resultId={run.runId}
sessionId={run.sourceSessionId}
resolveReplay={resolveComposition}
semantics={semantics}
detections={detections}
costmap={costmap}
moduleIds={run.moduleIds}
viewerLayers={run.presentation.viewerLayers}
label={run.configurationLabel}
/>
);
}
@@ -0,0 +1,265 @@
import { useCallback, useEffect, useState, type ReactNode } from "react";
import { SegmentedControl, SplitPane, type SplitPaneOrientation } from "@nodedc/ui-react";
import { LaboratoryEvidenceViewer } from "./LaboratoryEvidenceViewer";
export const CANONICAL_RECORDED_LAB_REPLAY_CONTRACT =
"missioncore.canonical-recorded-lab-replay/v1";
export interface CanonicalRecordedLabMode<T extends string> {
value: T;
label: string;
disabled?: boolean;
}
/**
* The interaction contract from the accepted recorded-LAB instrument.
*
* Keeping pane selection, collapse semantics, responsive split orientation,
* expansion and splitter state here prevents individual experiments from
* quietly growing their own replay behaviour. Experiments provide evidence
* layers; they do not reimplement the laboratory shell.
*/
export function useCanonicalRecordedLabReplayState<
TMedia extends string,
TSpatial extends string,
>({
initialMediaMode,
initialSpatialMode,
}: {
initialMediaMode: TMedia;
initialSpatialMode: TSpatial | null;
}) {
const [mediaMode, setMediaMode] = useState<TMedia | null>(initialMediaMode);
const [spatialMode, setSpatialMode] = useState<TSpatial | null>(initialSpatialMode);
const [splitPrimarySize, setSplitPrimarySize] = useState(50);
const [splitOrientation, setSplitOrientation] = useState<SplitPaneOrientation>(() => (
typeof window !== "undefined" && window.matchMedia("(max-width: 900px)").matches
? "horizontal"
: "vertical"
));
const [expanded, setExpanded] = useState(false);
useEffect(() => {
const query = window.matchMedia("(max-width: 900px)");
const update = () => setSplitOrientation(query.matches ? "horizontal" : "vertical");
update();
query.addEventListener("change", update);
return () => query.removeEventListener("change", update);
}, []);
const onMediaModeChange = useCallback((next: TMedia | "none") => {
if (next === "none") return;
setMediaMode((current) => current === next ? null : next);
}, []);
const onSpatialModeChange = useCallback((next: TSpatial | "none") => {
if (next === "none") return;
setSpatialMode((current) => current === next ? null : next);
}, []);
return {
mediaMode,
spatialMode,
splitView: mediaMode !== null && spatialMode !== null,
splitPrimarySize,
splitOrientation,
expanded,
onMediaModeChange,
onSpatialModeChange,
onSplitPrimarySizeChange: setSplitPrimarySize,
onExpandedChange: setExpanded,
};
}
export function CanonicalRecordedLabReplay<
TMedia extends string,
TSpatial extends string,
>({
label,
mediaMode,
mediaModes,
spatialMode,
spatialModes,
expanded,
splitPrimarySize,
splitOrientation,
mediaAriaLabel,
spatialAriaLabel,
mediaLayerControls,
spatialLayerControls,
spatialLeadingControl,
spatialTrailingControl,
mediaModeControlsVisible = true,
paneToolbarsAlwaysVisible = false,
mediaMultiLayer = false,
mediaContent,
spatialContent,
unifiedContent,
emptyMessage,
deckOverlays,
actions,
overlay,
transport,
trailingActions,
onMediaModeChange,
onSpatialModeChange,
onExpandedChange,
onSplitPrimarySizeChange,
}: {
label: string;
mediaMode: TMedia;
mediaModes: readonly CanonicalRecordedLabMode<TMedia>[];
spatialMode: TSpatial;
spatialModes: readonly CanonicalRecordedLabMode<TSpatial>[];
expanded: boolean;
splitPrimarySize: number;
splitOrientation: SplitPaneOrientation;
mediaAriaLabel: string;
spatialAriaLabel: string;
mediaLayerControls?: ReactNode;
spatialLayerControls?: ReactNode;
spatialLeadingControl?: ReactNode;
spatialTrailingControl?: ReactNode;
mediaModeControlsVisible?: boolean;
/** Keeps renderer-local controls inside their viewport when only one pane is present. */
paneToolbarsAlwaysVisible?: boolean;
mediaMultiLayer?: boolean;
mediaContent?: ReactNode;
spatialContent?: ReactNode;
/** One upstream Rerun viewer owns both panes; this controlled split owns their shared geometry. */
unifiedContent?: ReactNode;
emptyMessage: string;
deckOverlays?: ReactNode;
actions?: ReactNode;
overlay?: ReactNode;
transport?: ReactNode;
trailingActions?: ReactNode;
onMediaModeChange: (mode: TMedia) => void;
onSpatialModeChange: (mode: TSpatial) => void;
onExpandedChange: (expanded: boolean) => void;
onSplitPrimarySizeChange: (size: number) => void;
}) {
const splitView = mediaMode !== "none" && spatialMode !== "none";
const mediaModeControls = (
<div className="m4-replay-threat-visual__pane-mode-controls" data-pane-mode="media">
<SegmentedControl
value={mediaMode}
items={[...mediaModes]}
label="Видео и камера"
size="dense"
onChange={onMediaModeChange}
/>
</div>
);
const spatialModeControls = (
<div className="m4-replay-threat-visual__pane-mode-controls" data-pane-mode="spatial">
<SegmentedControl
value={spatialMode}
items={[...spatialModes]}
label="3D и план"
size="dense"
onChange={onSpatialModeChange}
/>
</div>
);
const mediaPane = (
<section
className="m4-replay-threat-visual__pane"
data-pane="media"
aria-label={mediaAriaLabel}
hidden={mediaMode === "none"}
>
{splitView || paneToolbarsAlwaysVisible ? (
<div
className="m4-replay-threat-visual__pane-toolbar"
data-pane-toolbar="media"
data-multi-semantic={mediaMultiLayer ? "true" : undefined}
>
{mediaLayerControls}
{mediaModeControlsVisible ? mediaModeControls : null}
</div>
) : null}
{mediaContent}
</section>
);
const spatialPane = spatialMode !== "none" ? (
<section
className="m4-replay-threat-visual__pane"
data-pane="spatial"
aria-label={spatialAriaLabel}
>
{splitView || paneToolbarsAlwaysVisible ? (
<div
className="m4-replay-threat-visual__pane-toolbar"
data-pane-toolbar="spatial"
>
{spatialLeadingControl}
<div className="m4-replay-threat-visual__spatial-toolbar-end">
{spatialLayerControls}
{spatialModeControls}
{spatialTrailingControl}
</div>
</div>
) : null}
{spatialContent}
</section>
) : null;
return (
<div
className="l3-visual-audit m4-replay-threat-visual"
data-contract={CANONICAL_RECORDED_LAB_REPLAY_CONTRACT}
>
<LaboratoryEvidenceViewer
label={label}
className="m4-replay-threat-evidence-viewer"
mode={mediaMode}
modes={[...mediaModes]}
secondaryMode={{
value: spatialMode,
modes: [...spatialModes],
label: "3D и план",
onChange: onSpatialModeChange,
}}
expanded={expanded}
onModeChange={onMediaModeChange}
onExpandedChange={onExpandedChange}
modeControlsVisible={!splitView && !paneToolbarsAlwaysVisible}
actions={actions}
overlay={overlay}
transport={transport}
trailingActions={trailingActions}
>
<div
className="m4-replay-threat-visual__deck"
data-split={splitView ? "true" : undefined}
data-empty={mediaMode === "none" && spatialMode === "none" ? "true" : undefined}
data-native-rerun={unifiedContent ? "true" : undefined}
>
{unifiedContent ? (
<div className="m4-replay-threat-visual__unified-content">
{unifiedContent}
</div>
) : null}
<SplitPane
primary={mediaPane}
secondary={spatialPane ?? <div />}
primarySize={splitView ? splitPrimarySize : mediaMode !== "none" ? 100 : 0}
onPrimarySizeChange={onSplitPrimarySizeChange}
orientation={splitOrientation}
minPrimarySize={splitView ? 24 : 0}
minSecondarySize={splitView ? 24 : 0}
resizable={splitView}
separatorLabel="Изменить размер видео/камеры и 3D/плана"
/>
{mediaMode === "none" && spatialMode === "none" ? (
<div className="l3-visual-audit__state" role="status">
{emptyMessage}
</div>
) : null}
{deckOverlays}
</div>
</LaboratoryEvidenceViewer>
</div>
);
}
@@ -0,0 +1,525 @@
import {
useCallback,
useEffect,
useMemo,
useRef,
useState,
} from "react";
import {
ActivityIndicator,
Button,
Checker,
ControlRow,
Icon,
IconButton,
Inspector,
InspectorSelectField,
RangeControl,
ToastStack,
Window,
type ToastItem,
} from "@nodedc/ui-react";
import { ObservationTimeline } from "../ObservationTimeline";
import {
RerunViewport,
isRecordedPlaybackPresentationReady,
type RerunPlaybackController,
type RerunPlaybackState,
type RerunViewportStatus,
} from "../RerunViewport";
import {
CanonicalRecordedLabReplay,
useCanonicalRecordedLabReplayState,
} from "../laboratory/CanonicalRecordedLabReplay";
import type { CanonicalLabReplayDescriptor } from "../../core/laboratory/canonicalLabReplay";
import type { ObservationSessionReplayLaunch } from "../../core/observation/sessionArchive";
import { laboratoryResultRerunProfile } from "../../core/observation/viewerProfile";
import { resolveObservationSessionReplay } from "../../core/observation/useObservationSessions";
import type { AIViewerLayer } from "../../core/observatory/aiComposition";
import {
fetchLabViewProfile,
saveLabViewProfile,
} from "../../core/observatory/labViewProfile";
import {
defaultSceneSettings,
type PointColorMode,
type PointPalette,
type SceneSettings,
} from "../../sceneSettings";
type MediaMode = "camera";
type SpatialMode = "3d" | "plan";
interface CanonicalReplayLaunch {
base: ObservationSessionReplayLaunch;
replay: CanonicalLabReplayDescriptor;
}
const RERUN_UNIFIED_CAMERA_SHARE_PERCENT = 46;
const LAB_SCENE_SETTINGS_STORAGE_PREFIX = "missioncore.observatory.lab-scene-settings.v1:";
const LAB_VIEW_PROFILE_ERROR_TOAST = "observatory-lab-view-profile-error";
const COLOR_OPTIONS: readonly { value: PointColorMode; label: string }[] = [
{ value: "intensity", label: "Интенсивность" },
{ value: "height", label: "Высота Z" },
{ value: "distance", label: "Дистанция" },
{ value: "rgb", label: "RGB" },
{ value: "class", label: "Класс" },
];
const PALETTE_OPTIONS: readonly { value: PointPalette; label: string }[] = [
{ value: "turbo", label: "Turbo" },
{ value: "viridis", label: "Viridis" },
{ value: "plasma", label: "Plasma" },
{ value: "grayscale", label: "Серый" },
];
const LAB_SCENE_DEFAULTS: SceneSettings = {
...defaultSceneSettings,
pointSize: 3.8,
accumulationSeconds: 5,
};
export function normalizeLabSceneSettings(settings: SceneSettings): SceneSettings {
const pointSize = Number.isFinite(settings.pointSize) ? settings.pointSize : LAB_SCENE_DEFAULTS.pointSize;
const accumulationSeconds = Number.isFinite(settings.accumulationSeconds)
? settings.accumulationSeconds : LAB_SCENE_DEFAULTS.accumulationSeconds;
return {
...settings,
pointSize: Math.round(Math.max(0.1, pointSize) * 10) / 10,
accumulationSeconds: Math.round(Math.max(0, accumulationSeconds)),
};
}
function loadLabSceneSettings(resultId: string): SceneSettings {
if (typeof window === "undefined") return LAB_SCENE_DEFAULTS;
try {
const raw = window.localStorage.getItem(`${LAB_SCENE_SETTINGS_STORAGE_PREFIX}${resultId}`);
if (raw === null) return LAB_SCENE_DEFAULTS;
const value: unknown = JSON.parse(raw);
if (typeof value !== "object" || value === null || Array.isArray(value)) return LAB_SCENE_DEFAULTS;
const row = value as Record<string, unknown>;
const pointSize = row.pointSize;
const accumulationSeconds = row.accumulationSeconds;
const colorMode = row.colorMode;
const palette = row.palette;
const showGrid = row.showGrid;
const showLabels = row.showLabels;
const showCameraFrustums = row.showCameraFrustums;
if (
typeof pointSize !== "number" || !Number.isFinite(pointSize) || pointSize < 0.1
|| typeof accumulationSeconds !== "number" || !Number.isFinite(accumulationSeconds)
|| accumulationSeconds < 0
|| !COLOR_OPTIONS.some((option) => option.value === colorMode)
|| !PALETTE_OPTIONS.some((option) => option.value === palette)
|| typeof showGrid !== "boolean"
|| typeof showLabels !== "boolean"
|| typeof showCameraFrustums !== "boolean"
) return LAB_SCENE_DEFAULTS;
return {
...LAB_SCENE_DEFAULTS,
pointSize,
accumulationSeconds,
colorMode: colorMode as PointColorMode,
palette: palette as PointPalette,
showGrid,
showLabels,
showCameraFrustums,
};
} catch {
return LAB_SCENE_DEFAULTS;
}
}
export function CanonicalResultRerunReplay({
resultId,
sessionId,
initialPlaybackStartSeconds,
resolveReplay,
semantics = false,
detections = false,
costmap = false,
moduleIds = [],
viewerLayers = [],
label = "Сохранённый результат",
}: {
resultId: string;
sessionId: string;
initialPlaybackStartSeconds?: number;
resolveReplay: (resultId: string, launch: ObservationSessionReplayLaunch, options: { signal: AbortSignal }) => Promise<CanonicalLabReplayDescriptor>;
semantics?: boolean;
detections?: boolean;
costmap?: boolean;
portable?: boolean;
moduleIds?: readonly string[];
viewerLayers?: readonly AIViewerLayer[];
label?: string;
}) {
const {
mediaMode,
spatialMode,
splitPrimarySize,
splitOrientation,
expanded,
onMediaModeChange,
onSpatialModeChange,
onSplitPrimarySizeChange,
onExpandedChange,
} = useCanonicalRecordedLabReplayState<MediaMode, SpatialMode>({
initialMediaMode: "camera",
initialSpatialMode: "3d",
});
const layerIds = useMemo(
() => new Set(viewerLayers.map((layer) => layer.layerId)),
[viewerLayers],
);
const hasProjectedLayers = viewerLayers.length > 0;
const hasDDRNet = layerIds.has("camera.ddrnet")
|| (!hasProjectedLayers && semantics && moduleIds.includes("ddrnet"));
const hasEoMT = layerIds.has("camera.eomt")
|| (!hasProjectedLayers && semantics && moduleIds.includes("eomt"));
const hasFallbackSemantics = semantics && !hasDDRNet && !hasEoMT;
const hasDetections = layerIds.has("camera.detections") || (!hasProjectedLayers && detections);
const hasTgs = layerIds.has("spatial.tgs") || (!hasProjectedLayers && costmap);
const legacyUnclassified = !hasProjectedLayers
&& moduleIds.length === 0
&& !semantics
&& !detections
&& !costmap;
const hasCameraPane = layerIds.has("camera.source")
|| (!hasProjectedLayers && (legacyUnclassified || semantics || detections));
const hasSourcePoints = layerIds.has("spatial.source-points")
|| (!hasProjectedLayers && (legacyUnclassified || costmap || moduleIds.includes("object-distance")));
const hasLocalSlam = layerIds.has("spatial.local-slam")
|| (!hasProjectedLayers && (legacyUnclassified || costmap || moduleIds.includes("object-distance")));
const hasSpatialPane = hasSourcePoints || hasLocalSlam || hasTgs;
const splitView = hasCameraPane && hasSpatialPane;
const [showCamera, setShowCamera] = useState(true);
const [showDDRNet, setShowDDRNet] = useState(hasDDRNet || hasFallbackSemantics);
const [showEoMT, setShowEoMT] = useState(hasEoMT);
const [showDetections, setShowDetections] = useState(hasDetections);
const [showSourcePoints, setShowSourcePoints] = useState(hasSourcePoints);
const [showLocalSlam, setShowLocalSlam] = useState(hasLocalSlam);
const [showTgs, setShowTgs] = useState(hasTgs);
const [followTarget, setFollowTarget] = useState(false);
const [settingsOpen, setSettingsOpen] = useState(false);
const [sceneDraft, setSceneDraft] = useState<SceneSettings>(() => loadLabSceneSettings(resultId));
const [blueprintSplitPrimarySize, setBlueprintSplitPrimarySize] = useState(
RERUN_UNIFIED_CAMERA_SHARE_PERCENT,
);
const [toasts, setToasts] = useState<ToastItem[]>([]);
const [viewResetGeneration, setViewResetGeneration] = useState<0 | 1>(hasTgs ? 1 : 0);
const [playback, setPlayback] = useState<RerunPlaybackState | null>(null);
const [playbackController, setPlaybackController] = useState<RerunPlaybackController | null>(null);
const [viewerStatus, setViewerStatus] = useState<RerunViewportStatus>("idle");
const [launch, setLaunch] = useState<CanonicalReplayLaunch | null>(null);
const [launchError, setLaunchError] = useState<string | null>(null);
const sceneDraftRef = useRef(sceneDraft);
const previousSplitViewRef = useRef(splitView);
const trackedLaunchSha256Ref = useRef<string | null>(null);
useEffect(() => {
const launchSha256 = launch?.replay.sha256 ?? null;
if (trackedLaunchSha256Ref.current !== launchSha256 || (splitView && !previousSplitViewRef.current)) {
onSplitPrimarySizeChange(RERUN_UNIFIED_CAMERA_SHARE_PERCENT);
setBlueprintSplitPrimarySize(RERUN_UNIFIED_CAMERA_SHARE_PERCENT);
}
trackedLaunchSha256Ref.current = launchSha256;
previousSplitViewRef.current = splitView;
}, [launch?.replay.sha256, onSplitPrimarySizeChange, splitView]);
useEffect(() => {
if (!splitView) return;
const timer = window.setTimeout(() => setBlueprintSplitPrimarySize(splitPrimarySize), 75);
return () => window.clearTimeout(timer);
}, [splitPrimarySize, splitView]);
useEffect(() => {
try {
window.localStorage.setItem(
`${LAB_SCENE_SETTINGS_STORAGE_PREFIX}${resultId}`,
JSON.stringify({
pointSize: sceneDraft.pointSize,
accumulationSeconds: sceneDraft.accumulationSeconds,
colorMode: sceneDraft.colorMode,
palette: sceneDraft.palette,
showGrid: sceneDraft.showGrid,
showLabels: sceneDraft.showLabels,
showCameraFrustums: sceneDraft.showCameraFrustums,
}),
);
} catch {
// The visual remains usable when the browser refuses local persistence.
}
}, [resultId, sceneDraft]);
useEffect(() => {
const controller = new AbortController();
void fetchLabViewProfile(resultId, controller.signal).then((settings) => {
if (!controller.signal.aborted && settings) {
sceneDraftRef.current = settings;
setSceneDraft(settings);
}
}).catch(() => {
// The per-browser copy remains a usable fallback while the local service recovers.
});
return () => controller.abort();
}, [resultId]);
useEffect(() => {
const controller = new AbortController();
setLaunch(null);
setLaunchError(null);
setPlayback(null);
setPlaybackController(null);
setViewerStatus("idle");
void resolveObservationSessionReplay(sessionId, {
signal: controller.signal,
maximumWaitMs: 30 * 60 * 1000,
onUpdate: () => undefined,
}).then(async (value) => ({
base: value,
replay: await resolveReplay(resultId, value, { signal: controller.signal }),
})).then((value) => {
if (!controller.signal.aborted) setLaunch(value);
}).catch((caught: unknown) => {
if (!controller.signal.aborted) {
setLaunchError(caught instanceof Error ? caught.message : "Сохранённая запись недоступна.");
}
});
return () => controller.abort();
}, [resultId, sessionId, resolveReplay]);
const presentationReady = playbackController !== null
&& isRecordedPlaybackPresentationReady(viewerStatus, playback);
const presentationState = launchError || viewerStatus === "error"
? "error"
: presentationReady ? "ready" : "loading";
const sceneSettings = useMemo<SceneSettings>(() => ({
...sceneDraft,
projection: spatialMode === "plan" ? "2d" : "3d",
showPoints: spatialMode !== null && (showSourcePoints || showLocalSlam),
showTrajectory: spatialMode !== null && showLocalSlam,
accumulationSeconds: showLocalSlam ? sceneDraft.accumulationSeconds : 0,
}), [sceneDraft, showLocalSlam, showSourcePoints, spatialMode]);
const semanticVisible = showDDRNet || showEoMT;
const profile = launch ? laboratoryResultRerunProfile({
resultId,
sourceUrl: launch.replay.sourceUrl,
artifact: {
sourceUrl: launch.replay.sourceUrl,
viewerSourceUrl: launch.replay.viewerSourceUrl,
byteLength: launch.replay.byteLength,
sha256: launch.replay.sha256,
},
blueprintSourceUrl: launch.replay.blueprintSourceUrl,
autoplayWhenReady: false,
presentationGate: "ready",
expectedTimelineStartSeconds: launch.base.timelineStartSeconds,
expectedTimelineEndSeconds: launch.base.timelineEndSeconds,
initialPlaybackStartSeconds: initialPlaybackStartSeconds
?? ((launch.base.mediaSources[0]?.timelineStartSeconds ?? launch.base.timelineStartSeconds)
+ (hasTgs ? 0.000001 : 0)),
view: hasCameraPane && !hasSpatialPane ? "perception" : "spatial",
viewResetGeneration,
followTrajectory: followTarget,
semanticLayer: showEoMT ? "city" : "vegetation",
unifiedPerception: splitView,
unifiedCameraShare: blueprintSplitPrimarySize / 100,
planView: spatialMode === "plan",
perceptionLayers: {
enabled: true,
cameraImage: showCamera,
detections2d: hasDetections && showDetections,
segmentation: semantics && semanticVisible,
cuboids3d: false,
costmap: hasTgs && showTgs,
},
perceptionRetryGeneration: 0,
lockPerceptionCameraInteraction: false,
}) : null;
const toggle = (caption: string, active: boolean, onClick: () => void) => (
<Button key={caption} size="dense" shape="pill" variant={active ? "primary" : "secondary"}
aria-pressed={active} onClick={onClick}>
{caption}
</Button>
);
const openSlamSettings = useCallback(() => {
if (expanded) onExpandedChange(false);
setSettingsOpen(true);
}, [expanded, onExpandedChange]);
const patchSceneDraft = useCallback((patch: Partial<SceneSettings>) => {
const next = { ...sceneDraftRef.current, ...patch };
sceneDraftRef.current = next;
setSceneDraft(next);
}, []);
const closeSlamSettings = useCallback(() => {
const next = normalizeLabSceneSettings(sceneDraftRef.current);
sceneDraftRef.current = next;
setSceneDraft(next);
setSettingsOpen(false);
void saveLabViewProfile(resultId, next).then((settings) => {
sceneDraftRef.current = settings;
setSceneDraft(settings);
setToasts((current) => current.filter(({ id }) => id !== LAB_VIEW_PROFILE_ERROR_TOAST));
}).catch(() => {
setToasts((current) => [
...current.filter(({ id }) => id !== LAB_VIEW_PROFILE_ERROR_TOAST),
{
id: LAB_VIEW_PROFILE_ERROR_TOAST,
tone: "error",
title: "Настройки LAB не сохранились",
description: "Изменения остались в текущем просмотре. Откройте настройки и повторите.",
},
]);
});
}, [resultId]);
const mediaLayerControls = (
<div className="m4-replay-threat-visual__pane-layer-controls" role="group" aria-label="Слои камеры">
{toggle("КАМЕРА", showCamera, () => setShowCamera((value) => !value))}
{hasEoMT ? toggle("EOMT", showEoMT, () => setShowEoMT((value) => !value)) : null}
{hasDDRNet || hasFallbackSemantics
? toggle("DDRNET", showDDRNet, () => setShowDDRNet((value) => !value)) : null}
{hasDetections
? toggle("РАМКИ", showDetections, () => setShowDetections((value) => !value)) : null}
</div>
);
const spatialLayerControls = (
<div className="m4-replay-threat-visual__pane-layer-controls" role="group" aria-label="Слои облака точек">
{hasSourcePoints
? toggle("ИСХ. ТОЧКИ", showSourcePoints, () => setShowSourcePoints((value) => !value)) : null}
{hasLocalSlam ? (
<div className="m4-replay-threat-visual__layer-with-settings">
{toggle("ЛОК. SLAM", showLocalSlam, () => setShowLocalSlam((value) => !value))}
<IconButton label="Настройки облака SLAM" onClick={openSlamSettings}>
<Icon name="settings" size={14} />
</IconButton>
</div>
) : null}
{hasTgs ? toggle("TGS", showTgs, () => setShowTgs((value) => !value)) : null}
</div>
);
const followTargetControl = toggle(
"СЛЕДОВАТЬ",
followTarget,
() => setFollowTarget((value) => !value),
);
const resetSpatialView = (
<IconButton label="Сбросить положение видов"
onClick={() => setViewResetGeneration((value) => value === 0 ? 1 : 0)}>
<Icon name="refresh" size={16} />
</IconButton>
);
const transport = presentationReady && playback && playbackController ? (
<ObservationTimeline
className="m4-replay-threat-visual__timeline canonical-vegetation-rerun-replay__timeline"
active
sourceCount={3}
mode="recorded"
seekable
synchronization="shared-clock"
rangeNs={playback.rangeNs}
currentNs={playback.currentNs}
playing={playback.playing}
onSeek={playbackController.seek}
onPlayingChange={playbackController.setPlaying}
showJumpToEnd={false}
/>
) : undefined;
return (
<div className="canonical-vegetation-rerun-replay" data-presentation-state={presentationState}
aria-busy={presentationState === "loading"}>
<CanonicalRecordedLabReplay
label={label}
mediaMode={hasCameraPane ? mediaMode ?? "camera" : "none"}
mediaModes={[{ value: "camera", label: "КАМЕРА" }]}
spatialMode={hasSpatialPane ? spatialMode ?? "3d" : "none"}
spatialModes={[{ value: "3d", label: "3D" }, { value: "plan", label: "ПЛАН" }]}
expanded={expanded}
splitPrimarySize={splitPrimarySize}
splitOrientation={splitView ? "vertical" : splitOrientation}
mediaAriaLabel="Камера и рассчитанные слои"
spatialAriaLabel={spatialMode === "plan" ? "Вид сверху" : "Трёхмерная сцена"}
mediaLayerControls={mediaLayerControls}
spatialLayerControls={spatialLayerControls}
spatialTrailingControl={followTargetControl}
mediaModeControlsVisible={false}
paneToolbarsAlwaysVisible
mediaMultiLayer
actions={resetSpatialView}
unifiedContent={profile ? (
<div className="canonical-vegetation-rerun-replay__viewport-lock"
data-split-view={splitView ? "true" : undefined}>
<RerunViewport profile={profile} sceneSettings={sceneSettings}
onStatusChange={setViewerStatus} onPlaybackChange={setPlayback}
onPlaybackControllerChange={setPlaybackController} />
</div>
) : launchError ? (
<div className="l3-visual-audit__state" role="alert">{launchError}</div>
) : <div aria-hidden="true" />}
emptyMessage="Слои результата недоступны."
deckOverlays={presentationState === "loading" ? (
<div className="canonical-vegetation-rerun-replay__loading">
<ActivityIndicator label="Загружаем синхронизированную запись" />
</div>
) : undefined}
transport={transport}
onMediaModeChange={onMediaModeChange}
onSpatialModeChange={onSpatialModeChange}
onExpandedChange={onExpandedChange}
onSplitPrimarySizeChange={onSplitPrimarySizeChange}
/>
<Window open={settingsOpen} title="Отображение" subtitle="Параметры облака SLAM"
placement="end" size="sm" onClose={closeSlamSettings}>
<Inspector defaultOpen={["points"]} sections={[
{
id: "points",
label: "Облако точек",
description: "Размер и способ окрашивания",
content: <>
<RangeControl label="Размер точки" min={0.1} max={10} step={0.1}
exactValueBounds={{ min: 0.1 }}
value={sceneDraft.pointSize} formatValue={(value) => `${value.toFixed(1)} пкс`}
onChange={(pointSize) => patchSceneDraft({ pointSize })} />
<InspectorSelectField label="Атрибут цвета" value={sceneDraft.colorMode}
options={[...COLOR_OPTIONS]}
onChange={(colorMode) => patchSceneDraft({ colorMode })} />
<InspectorSelectField label="Палитра" value={sceneDraft.palette}
options={[...PALETTE_OPTIONS]}
onChange={(palette) => patchSceneDraft({ palette })} />
</>,
},
{
id: "history",
label: "Накопление и время",
description: "История облака и траектория",
content: <RangeControl label="Накопление" min={0} max={500} step={1}
exactValueBounds={{ min: 0 }}
value={sceneDraft.accumulationSeconds} formatValue={(value) => `${value} с`}
onChange={(accumulationSeconds) => patchSceneDraft({ accumulationSeconds })} />,
},
{
id: "environment",
label: "Окружение сцены",
description: "Сетка, подписи и камеры",
content: <>
<ControlRow label="Сетка"><Checker checked={sceneDraft.showGrid} label="Показывать"
onChange={(showGrid) => patchSceneDraft({ showGrid })} /></ControlRow>
<ControlRow label="Подписи"><Checker checked={sceneDraft.showLabels} label="Показывать"
onChange={(showLabels) => patchSceneDraft({ showLabels })} /></ControlRow>
<ControlRow label="Камеры"><Checker checked={sceneDraft.showCameraFrustums} label="Показывать"
onChange={(showCameraFrustums) => patchSceneDraft({ showCameraFrustums })} /></ControlRow>
</>,
},
]} />
</Window>
<ToastStack items={toasts}
onDismiss={(id) => setToasts((current) => current.filter((item) => item.id !== id))} />
</div>
);
}
@@ -0,0 +1,12 @@
import { CanonicalResultRerunReplay } from "./CanonicalResultRerunReplay";
import { resolveCanonicalLabReplay } from "../../core/laboratory/canonicalLabReplay";
import type { VegetationFullRouteReview } from "../../core/laboratory/vegetationShadow";
export function CanonicalVegetationRerunReplay({ resultId, review }: {
resultId: string;
review: VegetationFullRouteReview;
}) {
return <CanonicalResultRerunReplay resultId={resultId} sessionId={review.sessionId}
initialPlaybackStartSeconds={review.timelineStartSeconds} semantics
resolveReplay={resolveCanonicalLabReplay} label="RAVNOVES004TREE · канонический повтор Rerun" />;
}
@@ -0,0 +1,55 @@
import { StatusBadge } from "@nodedc/ui-react";
import type { E30EngineeringGeneration } from "../../core/laboratory/e30Engineering";
export function E30EngineeringGenerationSummary({
generation,
}: {
generation: E30EngineeringGeneration;
}) {
const summary = generation.summary;
const confirmed = summary.verdictDistribution.confirmed ?? 0;
const corrected = summary.verdictDistribution.corrected ?? 0;
return (
<section
className="e30-engineering-generation"
aria-label="Результат A3 engineering generation"
>
<header>
<div>
<span className="section-eyebrow">A3 · IMMUTABLE ENGINEERING GENERATION</span>
</div>
<StatusBadge
tone={summary.humanExceptionCount ? "warning" : "accent"}
>
{summary.reviewedItemCount} / {summary.itemCount}
</StatusBadge>
</header>
<dl>
<div>
<dt>Подтверждено</dt>
<dd>{confirmed.toLocaleString("ru-RU")}</dd>
</div>
<div>
<dt>Исправлено</dt>
<dd>{corrected.toLocaleString("ru-RU")}</dd>
</div>
<div>
<dt>Исключения</dt>
<dd>{summary.humanExceptionCount.toLocaleString("ru-RU")}</dd>
</div>
<div>
<dt>Средняя уверенность</dt>
<dd>
{(summary.meanConfidence * 100).toLocaleString("ru-RU", {
maximumFractionDigits: 1,
})}
%
</dd>
</div>
</dl>
</section>
);
}
@@ -0,0 +1,74 @@
import type { E30ReviewItemDetail } from "../../core/laboratory/e30Review";
function formatNumber(value: number): string {
return value.toLocaleString("ru-RU", { maximumFractionDigits: 3 });
}
function evidenceRange(item: E30ReviewItemDetail): string {
const value = item.snapshot.rangeM ?? item.snapshot.nearestRangeM;
return value === null ? "недоступна" : `${formatNumber(value)} м`;
}
export function E30EvidenceTelemetry({
detail,
mode,
}: {
detail: E30ReviewItemDetail;
mode: "camera" | "3d";
}) {
return (
<aside
className="e30-evidence-telemetry"
aria-label="Параметры доказательства"
>
<span>
{mode === "camera"
? "Точный camera frame · LiDAR projection"
: "Map frame · Z вверх"}
</span>
<dl>
<div>
<dt>Кадр / время</dt>
<dd>
{formatNumber(detail.sourceFrameIndex)}
{" · "}
{formatNumber(detail.sessionSeconds)} с
</dd>
</div>
<div>
<dt>LiDAR</dt>
<dd>{formatNumber(detail.materialization.projectedPointCount)}</dd>
</div>
<div>
<dt>Кандидаты</dt>
<dd>{formatNumber(detail.materialization.candidatePointCount)}</dd>
</div>
<div>
<dt>Выбрано / отклонено</dt>
<dd>
{formatNumber(detail.materialization.selectedPointCount)}
{" / "}
{formatNumber(detail.materialization.rejectedCandidatePointCount)}
</dd>
</div>
<div>
<dt>Класс E29</dt>
<dd>{detail.snapshot.geometryStatus}</dd>
</div>
<div>
<dt>Дальность</dt>
<dd>{evidenceRange(detail)}</dd>
</div>
</dl>
<div>
<span>Точные индексы LiDAR</span>
<code>
{detail.selected.sourceIndices.length
? detail.selected.sourceIndices.slice(0, 18).join(", ")
: "нет выбранных точек"}
{detail.selected.sourceIndices.length > 18 ? " …" : ""}
</code>
</div>
</aside>
);
}
@@ -0,0 +1,163 @@
import {
useEffect,
useLayoutEffect,
useRef,
type ReactNode,
} from "react";
import {
Icon,
IconButton,
SegmentedControl,
} from "@nodedc/ui-react";
export interface LaboratoryEvidenceViewerMode<T extends string> {
value: T;
label: string;
}
export function LaboratoryEvidenceViewer<
T extends string,
U extends string = string,
>({
label,
className,
mode,
modes,
expanded,
onModeChange,
onExpandedChange,
actions,
secondaryMode,
overlay,
transport,
trailingActions,
modeControlsVisible = true,
chromeLayout = "overlay",
children,
}: {
label: string;
className?: string;
mode: T;
modes: readonly LaboratoryEvidenceViewerMode<T>[];
expanded: boolean;
onModeChange: (mode: T) => void;
onExpandedChange: (expanded: boolean) => void;
actions?: ReactNode;
secondaryMode?: {
value: U;
modes: readonly LaboratoryEvidenceViewerMode<U>[];
label: string;
onChange: (mode: U) => void;
};
overlay?: ReactNode;
transport?: ReactNode;
trailingActions?: ReactNode;
modeControlsVisible?: boolean;
chromeLayout?: "overlay" | "stacked";
children: ReactNode;
}) {
const expandButtonRef = useRef<HTMLButtonElement | null>(null);
const viewerRef = useRef<HTMLDialogElement | null>(null);
useLayoutEffect(() => {
const viewer = viewerRef.current;
if (!viewer) return;
if (viewer.open) viewer.close();
if (expanded) {
viewer.showModal();
} else {
viewer.show();
}
}, [expanded]);
useEffect(() => {
if (!expanded) return;
const onKeyDown = (event: KeyboardEvent) => {
if (event.key !== "Escape") return;
event.preventDefault();
onExpandedChange(false);
window.requestAnimationFrame(() => expandButtonRef.current?.focus());
};
window.addEventListener("keydown", onKeyDown);
return () => window.removeEventListener("keydown", onKeyDown);
}, [expanded, onExpandedChange]);
const controls = (
<div className="laboratory-evidence-viewer__controls">
{actions}
{modeControlsVisible && secondaryMode ? (
<SegmentedControl
value={secondaryMode.value}
items={[...secondaryMode.modes]}
label={secondaryMode.label}
onChange={secondaryMode.onChange}
/>
) : null}
{modeControlsVisible ? (
<SegmentedControl
value={mode}
items={[...modes]}
label={`${label}: режим представления`}
onChange={onModeChange}
/>
) : null}
{trailingActions}
<IconButton
ref={expandButtonRef}
label={expanded ? `Свернуть ${label}` : `Развернуть ${label}`}
onClick={() => onExpandedChange(!expanded)}
>
<Icon name={expanded ? "minimize" : "expand"} size={16} />
</IconButton>
</div>
);
const viewer = (
<dialog
ref={viewerRef}
role="region"
className={[
"laboratory-evidence-viewer",
className,
].filter(Boolean).join(" ")}
data-expanded={expanded ? "true" : undefined}
data-mode-controls={modeControlsVisible ? undefined : "content"}
data-chrome-layout={chromeLayout}
aria-label={label}
>
{chromeLayout === "stacked" ? (
<>
<div className="laboratory-evidence-viewer__header">
<div className="laboratory-evidence-viewer__header-context">
{overlay}
</div>
{controls}
</div>
<div className="laboratory-evidence-viewer__stage">
{children}
</div>
{transport ? (
<div className="laboratory-evidence-viewer__transport">
{transport}
</div>
) : null}
</>
) : (
<>
<div className="laboratory-evidence-viewer__stage">
{children}
</div>
{overlay}
{transport ? (
<div className="laboratory-evidence-viewer__transport">
{transport}
</div>
) : null}
{controls}
</>
)}
</dialog>
);
return viewer;
}
@@ -0,0 +1,943 @@
import {
forwardRef,
type CSSProperties,
useCallback,
useEffect,
useImperativeHandle,
useRef,
useState,
} from "react";
import * as THREE from "three";
import { OrbitControls } from "three/addons/controls/OrbitControls.js";
import {
recordedEvidenceSemanticCssColor,
resolveRecordedEvidenceSemanticRgb,
type RecordedEvidenceSemanticClass,
type RecordedEvidenceSemanticPaletteEntry,
} from "./RecordedEvidenceSemanticMaskOverlay";
export type LaboratoryMetricPoint3 = readonly [number, number, number];
export type LaboratoryMetricDecision = "threat" | "not-threat" | "unknown";
export type LaboratoryMetricSceneMode = "3d" | "plan";
export interface LaboratoryMetricObstacleVisual {
id: string;
decision: LaboratoryMetricDecision;
state: "current" | "retained" | "held" | "expired";
centroidBodyXyzM: LaboratoryMetricPoint3;
cellCentersBodyXyzM: readonly LaboratoryMetricPoint3[];
occupancySource?: "baseline" | "mixed" | "additive-low-step";
}
export interface LaboratoryMetricRigVisual {
lengthM: number;
widthM: number;
nominalSensorHeightM: number;
}
export interface LaboratoryMetricCorridorVisual {
forwardLengthM: number;
rearMarginM: number;
halfWidthM: number;
}
export type LaboratoryMetricCellState =
| "unobserved"
| "ground-support"
| "nonground-occupied"
| "unknown-rejected";
export interface LaboratoryMetricCellEvidence {
centerBodyXyM: readonly [number, number];
zBoundsM: readonly [number | null, number | null];
state: LaboratoryMetricCellState;
}
export interface LaboratoryMetricPackedCellEvidence {
centersBodyXyM: Float32Array;
zBoundsM: Float32Array;
stateCodes: Uint8Array;
}
export interface LaboratoryMetricLegendEntry {
id: LaboratoryMetricDecision
| LaboratoryMetricCellState
| "context"
| "local-surface"
| "rolling"
| "low-step";
label: string;
}
interface LaboratoryMetricRenderStats {
frameMs: number;
drawCalls: number;
triangles: number;
pixelRatio: number;
}
export function laboratoryMetricLegendEntries({
pointCloudCount,
localSurfaceCount,
obstacles,
showCurrentIncrement,
showLocalSurface,
showRollingMap,
showLowStep = true,
}: {
pointCloudCount: number;
localSurfaceCount: number;
obstacles: readonly LaboratoryMetricObstacleVisual[];
showCurrentIncrement: boolean;
showLocalSurface: boolean;
showRollingMap: boolean;
showLowStep?: boolean;
}): readonly LaboratoryMetricLegendEntry[] {
const visibleObstacles = obstacles.filter((obstacle) => (
(showLowStep || obstacle.occupancySource === undefined || obstacle.occupancySource === "baseline")
&& (obstacle.state === "current"
? showCurrentIncrement
: obstacle.state === "retained"
? showRollingMap
: false)
));
const decisions = new Set(visibleObstacles.map(({ decision }) => decision));
const entries: LaboratoryMetricLegendEntry[] = [];
if (decisions.has("threat")) entries.push({ id: "threat", label: "Угроза" });
if (decisions.has("not-threat")) entries.push({ id: "not-threat", label: "Вне коридора" });
if (decisions.has("unknown")) entries.push({ id: "unknown", label: "Неизвестно" });
if (
showLowStep
&& visibleObstacles.some((obstacle) => (
obstacle.occupancySource !== undefined && obstacle.occupancySource !== "baseline"
))
) {
entries.push({ id: "low-step", label: "LOW-STEP · добавлено системой" });
}
if (showCurrentIncrement && pointCloudCount > 0) {
entries.push({ id: "context", label: "Текущий кадр" });
}
if (showLocalSurface && localSurfaceCount > 0) {
entries.push({ id: "local-surface", label: "Локальная SLAM-поверхность" });
}
if (
showRollingMap
&& visibleObstacles.some((obstacle) => (
obstacle.state === "retained" && obstacle.cellCentersBodyXyzM.length > 0
))
) {
entries.push({ id: "rolling", label: "Занято на накопленной карте" });
}
return entries;
}
function tokenColor(
host: HTMLElement,
token: string,
fallback: readonly [number, number, number],
): THREE.Color {
const value = getComputedStyle(host).getPropertyValue(token).trim();
if (value.startsWith("#")) return new THREE.Color(value);
const channels = value.match(/[\d.]+/g)?.slice(0, 3).map(Number);
const [red, green, blue] = channels?.length === 3 ? channels : fallback;
return new THREE.Color(red / 255, green / 255, blue / 255);
}
function disposeRenderable(object: THREE.Object3D): void {
const renderable = object as THREE.Object3D & {
geometry?: THREE.BufferGeometry;
material?: THREE.Material | THREE.Material[];
};
renderable.geometry?.dispose();
const materials = Array.isArray(renderable.material)
? renderable.material
: renderable.material
? [renderable.material]
: [];
materials.forEach((material) => material.dispose());
}
function clearGroup(group: THREE.Group): void {
while (group.children.length) {
const child = group.children[0];
if (!child) break;
group.remove(child);
child.traverse(disposeRenderable);
}
}
function scenePoint(point: LaboratoryMetricPoint3): LaboratoryMetricPoint3 {
return [point[0], point[2], -point[1]];
}
function positions(points: readonly LaboratoryMetricPoint3[]): Float32Array {
const result = new Float32Array(points.length * 3);
points.forEach((point, index) => {
const [x, y, z] = scenePoint(point);
const offset = index * 3;
result[offset] = x;
result[offset + 1] = y;
result[offset + 2] = z;
});
return result;
}
function updatePointPositions(
geometry: THREE.BufferGeometry,
points: readonly LaboratoryMetricPoint3[],
): void {
const requiredValues = points.length * 3;
let attribute = geometry.getAttribute("position") as THREE.BufferAttribute | undefined;
if (!attribute || attribute.array.length < requiredValues) {
let capacity = 3;
while (capacity < requiredValues) capacity *= 2;
attribute = new THREE.BufferAttribute(new Float32Array(capacity), 3);
attribute.setUsage(THREE.DynamicDrawUsage);
geometry.setAttribute("position", attribute);
}
const values = attribute.array as Float32Array;
points.forEach((point, index) => {
const [x, y, z] = scenePoint(point);
const offset = index * 3;
values[offset] = x;
values[offset + 1] = y;
values[offset + 2] = z;
});
attribute.needsUpdate = true;
geometry.setDrawRange(0, points.length);
}
function ensurePointColors(
geometry: THREE.BufferGeometry,
pointCount: number,
): THREE.BufferAttribute {
const requiredValues = pointCount * 3;
let attribute = geometry.getAttribute("color") as THREE.BufferAttribute | undefined;
if (!attribute || attribute.array.length < requiredValues) {
let capacity = 3;
while (capacity < requiredValues) capacity *= 2;
attribute = new THREE.BufferAttribute(new Float32Array(capacity), 3);
attribute.setUsage(THREE.DynamicDrawUsage);
geometry.setAttribute("color", attribute);
}
return attribute;
}
function decisionColor(
host: HTMLElement,
decision: LaboratoryMetricDecision,
): THREE.Color {
if (decision === "threat") {
return tokenColor(host, "--nodedc-danger-rgb", [255, 104, 112]);
}
if (decision === "not-threat") {
return tokenColor(host, "--nodedc-success-rgb", [181, 255, 90]);
}
return tokenColor(host, "--nodedc-warning-rgb", [255, 197, 92]);
}
function obstacleColor(
host: HTMLElement,
obstacle: LaboratoryMetricObstacleVisual,
): THREE.Color {
if (obstacle.occupancySource !== "baseline") {
return tokenColor(host, "--nodedc-accent-rgb", [232, 56, 126]);
}
return decisionColor(host, obstacle.decision);
}
export interface LaboratoryMetricEvidenceSceneHandle {
resetView: () => void;
}
export const LaboratoryMetricEvidenceScene = forwardRef<
LaboratoryMetricEvidenceSceneHandle,
{
pointCloudBodyXyzM: readonly LaboratoryMetricPoint3[];
localSurfaceBodyXyzM: readonly LaboratoryMetricPoint3[];
obstacles: readonly LaboratoryMetricObstacleVisual[];
rig: LaboratoryMetricRigVisual;
corridor: LaboratoryMetricCorridorVisual;
occupiedVoxelSizeM: number;
mode: LaboratoryMetricSceneMode;
label: string;
showCurrentIncrement: boolean;
showLocalSurface: boolean;
showRollingMap: boolean;
showLowStep?: boolean;
pointSemanticClassIds?: readonly (number | null)[];
semanticClasses?: readonly RecordedEvidenceSemanticClass[];
semanticPalette?: readonly RecordedEvidenceSemanticPaletteEntry[];
classifiedCells?: readonly LaboratoryMetricCellEvidence[];
classifiedPackedCells?: LaboratoryMetricPackedCellEvidence;
classifiedCellSizeM?: number;
showClassifiedCells?: boolean;
}
>(function LaboratoryMetricEvidenceScene({
pointCloudBodyXyzM,
localSurfaceBodyXyzM,
obstacles,
rig,
corridor,
occupiedVoxelSizeM,
mode,
label,
showCurrentIncrement,
showLocalSurface,
showRollingMap,
showLowStep = true,
pointSemanticClassIds,
semanticClasses,
semanticPalette,
classifiedCells = [],
classifiedPackedCells,
classifiedCellSizeM = 0.45,
showClassifiedCells = true,
}, ref) {
const hostRef = useRef<HTMLDivElement | null>(null);
const sceneRef = useRef<THREE.Scene | null>(null);
const cameraRef = useRef<THREE.PerspectiveCamera | null>(null);
const controlsRef = useRef<OrbitControls | null>(null);
const staticContentRef = useRef<THREE.Group | null>(null);
const dynamicContentRef = useRef<THREE.Group | null>(null);
const classifiedContentRef = useRef<THREE.Group | null>(null);
const localSurfacePointsRef = useRef<THREE.Points | null>(null);
const currentIncrementPointsRef = useRef<THREE.Points | null>(null);
const requestRenderRef = useRef<() => void>(() => undefined);
const corridorForwardLengthRef = useRef(corridor.forwardLengthM);
const modeRef = useRef(mode);
const classifiedMeshesRef = useRef<ReadonlyMap<LaboratoryMetricCellState, THREE.InstancedMesh>>(
new Map(),
);
const [renderError, setRenderError] = useState<string | null>(null);
const [renderStats, setRenderStats] = useState<LaboratoryMetricRenderStats | null>(null);
corridorForwardLengthRef.current = corridor.forwardLengthM;
modeRef.current = mode;
useEffect(() => {
const host = hostRef.current;
if (!host) return;
let renderer: THREE.WebGLRenderer;
try {
renderer = new THREE.WebGLRenderer({
antialias: true,
alpha: false,
powerPreference: "high-performance",
});
} catch {
setRenderError("Браузер не смог создать метрическую 3D-сцену.");
return;
}
renderer.setPixelRatio(Math.min(window.devicePixelRatio, 2));
renderer.outputColorSpace = THREE.SRGBColorSpace;
renderer.setClearColor(tokenColor(host, "--nodedc-canvas", [5, 5, 6]), 1);
renderer.domElement.setAttribute("role", "img");
host.prepend(renderer.domElement);
const scene = new THREE.Scene();
const camera = new THREE.PerspectiveCamera(48, 1, 0.01, 300);
const controls = new OrbitControls(camera, renderer.domElement);
controls.enableDamping = true;
controls.dampingFactor = 0.08;
controls.enablePan = true;
controls.enableZoom = true;
controls.screenSpacePanning = true;
controls.minDistance = 0.4;
controls.maxDistance = 80;
const staticContent = new THREE.Group();
const dynamicContent = new THREE.Group();
const classifiedContent = new THREE.Group();
const localSurfacePoints = new THREE.Points(
new THREE.BufferGeometry(),
new THREE.PointsMaterial({
color: tokenColor(host, "--nodedc-accent-rgb", [247, 248, 244]),
size: 1.3,
sizeAttenuation: false,
transparent: true,
opacity: 0.42,
depthWrite: false,
}),
);
const currentIncrementPoints = new THREE.Points(
new THREE.BufferGeometry(),
new THREE.PointsMaterial({
color: tokenColor(host, "--nodedc-text-muted", [147, 151, 159]),
size: 1.55,
sizeAttenuation: false,
transparent: true,
opacity: 0.58,
depthWrite: false,
}),
);
localSurfacePoints.visible = false;
localSurfacePoints.frustumCulled = false;
currentIncrementPoints.visible = false;
currentIncrementPoints.frustumCulled = false;
scene.add(
staticContent,
localSurfacePoints,
currentIncrementPoints,
dynamicContent,
classifiedContent,
);
sceneRef.current = scene;
cameraRef.current = camera;
controlsRef.current = controls;
staticContentRef.current = staticContent;
dynamicContentRef.current = dynamicContent;
classifiedContentRef.current = classifiedContent;
localSurfacePointsRef.current = localSurfacePoints;
currentIncrementPointsRef.current = currentIncrementPoints;
let animationFrame: number | null = null;
let lastStatsAt = Number.NEGATIVE_INFINITY;
const render = () => {
animationFrame = null;
// OrbitControls emits another change while damping is still settling, so
// this remains smooth during interaction without rendering forever while
// the evidence scene is idle.
controls.update();
const startedAt = performance.now();
renderer.render(scene, camera);
const completedAt = performance.now();
if (completedAt - lastStatsAt >= 1_000) {
lastStatsAt = completedAt;
setRenderStats({
frameMs: completedAt - startedAt,
drawCalls: renderer.info.render.calls,
triangles: renderer.info.render.triangles,
pixelRatio: renderer.getPixelRatio(),
});
}
};
const requestRender = () => {
if (animationFrame !== null) return;
animationFrame = window.requestAnimationFrame(render);
};
requestRenderRef.current = requestRender;
controls.addEventListener("change", requestRender);
const resize = () => {
const width = Math.max(host.clientWidth, 1);
const height = Math.max(host.clientHeight, 1);
camera.aspect = width / height;
camera.updateProjectionMatrix();
renderer.setSize(width, height, false);
requestRender();
};
const observer = new ResizeObserver(resize);
observer.observe(host);
resize();
requestRender();
return () => {
if (animationFrame !== null) window.cancelAnimationFrame(animationFrame);
observer.disconnect();
controls.removeEventListener("change", requestRender);
controls.dispose();
scene.traverse(disposeRenderable);
renderer.dispose();
renderer.domElement.remove();
sceneRef.current = null;
cameraRef.current = null;
controlsRef.current = null;
staticContentRef.current = null;
dynamicContentRef.current = null;
classifiedContentRef.current = null;
localSurfacePointsRef.current = null;
currentIncrementPointsRef.current = null;
requestRenderRef.current = () => undefined;
classifiedMeshesRef.current = new Map();
};
}, []);
useEffect(() => {
const canvas = hostRef.current?.querySelector("canvas");
if (canvas) canvas.setAttribute("aria-label", label);
}, [label]);
useEffect(() => {
const points = localSurfacePointsRef.current;
if (!points) return;
points.visible = showLocalSurface && localSurfaceBodyXyzM.length > 0;
if (points.visible) updatePointPositions(points.geometry, localSurfaceBodyXyzM);
requestRenderRef.current();
}, [localSurfaceBodyXyzM, showLocalSurface]);
useEffect(() => {
const host = hostRef.current;
const points = currentIncrementPointsRef.current;
if (!host || !points) return;
points.visible = showCurrentIncrement && pointCloudBodyXyzM.length > 0;
if (!points.visible) {
requestRenderRef.current();
return;
}
updatePointPositions(points.geometry, pointCloudBodyXyzM);
const material = points.material as THREE.PointsMaterial;
const hasAlignedSemanticClasses =
pointSemanticClassIds !== undefined
&& pointSemanticClassIds.length === pointCloudBodyXyzM.length
&& semanticClasses !== undefined
&& semanticPalette !== undefined;
if (!hasAlignedSemanticClasses) {
if (material.vertexColors) {
material.vertexColors = false;
material.needsUpdate = true;
}
material.color.copy(tokenColor(host, "--nodedc-text-muted", [147, 151, 159]));
requestRenderRef.current();
return;
}
const declaredIds = new Set(semanticClasses.map((item) => item.id));
const colorsByClassId = new Map<number, readonly [number, number, number]>();
for (const entry of semanticPalette) {
if (!declaredIds.has(entry.classId)) continue;
const rgb = resolveRecordedEvidenceSemanticRgb(host, entry.color);
if (rgb) colorsByClassId.set(entry.classId, rgb);
}
const context = tokenColor(host, "--nodedc-text-muted", [147, 151, 159]);
const colorAttribute = ensurePointColors(points.geometry, pointCloudBodyXyzM.length);
const pointColors = colorAttribute.array as Float32Array;
pointSemanticClassIds.forEach((classId, index) => {
const rgb = classId === null ? undefined : colorsByClassId.get(classId);
const offset = index * 3;
pointColors[offset] = rgb ? rgb[0] / 255 : context.r;
pointColors[offset + 1] = rgb ? rgb[1] / 255 : context.g;
pointColors[offset + 2] = rgb ? rgb[2] / 255 : context.b;
});
colorAttribute.needsUpdate = true;
if (!material.vertexColors) {
material.vertexColors = true;
material.needsUpdate = true;
}
material.color.setRGB(1, 1, 1);
requestRenderRef.current();
}, [
pointCloudBodyXyzM,
pointSemanticClassIds,
semanticClasses,
semanticPalette,
showCurrentIncrement,
]);
useEffect(() => {
const host = hostRef.current;
const content = dynamicContentRef.current;
if (!host || !content) return;
clearGroup(content);
for (const obstacle of obstacles) {
if (
(
!showLowStep
&& obstacle.occupancySource !== undefined
&& obstacle.occupancySource !== "baseline"
)
||
(obstacle.state === "current" && !showCurrentIncrement)
|| (obstacle.state === "retained" && !showRollingMap)
|| obstacle.state === "held"
|| obstacle.state === "expired"
) {
continue;
}
const color = obstacleColor(host, obstacle);
if (obstacle.state === "retained") {
const geometry = new THREE.BoxGeometry(
occupiedVoxelSizeM * 0.82,
occupiedVoxelSizeM * 0.82,
occupiedVoxelSizeM * 0.82,
);
const material = new THREE.MeshBasicMaterial({
color,
wireframe: true,
transparent: true,
opacity: 0.34,
depthWrite: false,
});
const voxels = new THREE.InstancedMesh(
geometry,
material,
obstacle.cellCentersBodyXyzM.length,
);
const matrix = new THREE.Matrix4();
obstacle.cellCentersBodyXyzM.forEach((point, index) => {
matrix.makeTranslation(...scenePoint(point));
voxels.setMatrixAt(index, matrix);
});
voxels.instanceMatrix.needsUpdate = true;
voxels.userData.evidenceId = obstacle.id;
content.add(voxels);
} else {
const cellsGeometry = new THREE.BufferGeometry();
cellsGeometry.setAttribute(
"position",
new THREE.BufferAttribute(positions(obstacle.cellCentersBodyXyzM), 3),
);
content.add(new THREE.Points(
cellsGeometry,
new THREE.PointsMaterial({
color,
size: 4.4,
sizeAttenuation: false,
transparent: true,
opacity: 0.96,
depthWrite: false,
}),
));
const centroid = new THREE.Mesh(
new THREE.SphereGeometry(0.065, 12, 8),
new THREE.MeshBasicMaterial({ color }),
);
centroid.position.fromArray(scenePoint(obstacle.centroidBodyXyzM));
centroid.userData.evidenceId = obstacle.id;
content.add(centroid);
}
}
requestRenderRef.current();
}, [
obstacles,
occupiedVoxelSizeM,
showCurrentIncrement,
showRollingMap,
showLowStep,
]);
useEffect(() => {
const host = hostRef.current;
const content = classifiedContentRef.current;
if (!host || !content) return;
const packedCellCount = classifiedPackedCells?.stateCodes.length ?? 0;
const packedCellsValid = !classifiedPackedCells || (
classifiedPackedCells.centersBodyXyM.length === packedCellCount * 2
&& classifiedPackedCells.zBoundsM.length === packedCellCount * 2
);
const cellCount = packedCellsValid && classifiedPackedCells
? packedCellCount
: classifiedCells.length;
content.visible = showClassifiedCells && cellCount > 0;
if (!content.visible) {
requestRenderRef.current();
return;
}
const requiredCapacity = cellCount;
const currentMeshes = classifiedMeshesRef.current;
const firstMesh = currentMeshes.values().next().value as THREE.InstancedMesh | undefined;
const needsAllocation = !firstMesh
|| Number(firstMesh.userData.capacity ?? 0) < requiredCapacity
|| Number(firstMesh.userData.cellSizeM ?? 0) !== classifiedCellSizeM;
if (needsAllocation) {
clearGroup(content);
const meshes = new Map<LaboratoryMetricCellState, THREE.InstancedMesh>();
const states: readonly LaboratoryMetricCellState[] = [
"unobserved",
"ground-support",
"nonground-occupied",
"unknown-rejected",
];
for (const state of states) {
const color = state === "ground-support"
? tokenColor(host, "--nodedc-success-rgb", [181, 255, 90])
: state === "nonground-occupied"
? tokenColor(host, "--nodedc-danger-rgb", [255, 104, 112])
: state === "unknown-rejected"
? tokenColor(host, "--nodedc-warning-rgb", [255, 197, 92])
: tokenColor(host, "--nodedc-text-muted", [96, 99, 106]);
const mesh = new THREE.InstancedMesh(
new THREE.BoxGeometry(classifiedCellSizeM * 0.92, 1, classifiedCellSizeM * 0.92),
new THREE.MeshBasicMaterial({
color,
transparent: true,
opacity: state === "unobserved" ? 0.035 : state === "ground-support" ? 0.12 : 0.24,
depthWrite: false,
}),
requiredCapacity,
);
mesh.count = 0;
mesh.instanceMatrix.setUsage(THREE.DynamicDrawUsage);
mesh.frustumCulled = false;
mesh.userData.capacity = requiredCapacity;
mesh.userData.cellSizeM = classifiedCellSizeM;
meshes.set(state, mesh);
content.add(mesh);
}
classifiedMeshesRef.current = meshes;
}
const meshes = classifiedMeshesRef.current;
const counts = new Map<LaboratoryMetricCellState, number>();
const matrix = new THREE.Matrix4();
const position = new THREE.Vector3();
const scale = new THREE.Vector3(1, 1, 1);
const rotation = new THREE.Quaternion();
const setCell = (
state: LaboratoryMetricCellState,
centerX: number,
centerY: number,
minimum: number | null,
maximum: number | null,
) => {
const mesh = meshes.get(state);
if (!mesh) return;
const index = counts.get(state) ?? 0;
const height = minimum === null || maximum === null
? 0.018
: Math.max(0.018, maximum - minimum);
const centerZ = minimum === null || maximum === null
? -0.012
: (minimum + maximum) / 2;
const [sceneX, sceneY, sceneZ] = scenePoint([
centerX,
centerY,
centerZ,
]);
position.set(sceneX, sceneY, sceneZ);
scale.set(1, height, 1);
matrix.compose(position, rotation, scale);
mesh.setMatrixAt(index, matrix);
counts.set(state, index + 1);
};
if (packedCellsValid && classifiedPackedCells) {
for (let cellIndex = 0; cellIndex < packedCellCount; cellIndex += 1) {
const code = classifiedPackedCells.stateCodes[cellIndex];
const state: LaboratoryMetricCellState = code === 1
? "ground-support"
: code === 2
? "nonground-occupied"
: code === 3
? "unknown-rejected"
: code === 0
? "unobserved"
: "unknown-rejected";
const minimum = classifiedPackedCells.zBoundsM[cellIndex * 2]!;
const maximum = classifiedPackedCells.zBoundsM[cellIndex * 2 + 1]!;
setCell(
state,
classifiedPackedCells.centersBodyXyM[cellIndex * 2]!,
classifiedPackedCells.centersBodyXyM[cellIndex * 2 + 1]!,
Number.isFinite(minimum) ? minimum : null,
Number.isFinite(maximum) ? maximum : null,
);
}
} else {
for (const cell of classifiedCells) {
setCell(
cell.state,
cell.centerBodyXyM[0],
cell.centerBodyXyM[1],
cell.zBoundsM[0],
cell.zBoundsM[1],
);
}
}
for (const [state, mesh] of meshes) {
mesh.count = counts.get(state) ?? 0;
mesh.instanceMatrix.needsUpdate = true;
}
requestRenderRef.current();
}, [classifiedCellSizeM, classifiedCells, classifiedPackedCells, showClassifiedCells]);
useEffect(() => {
const host = hostRef.current;
const content = staticContentRef.current;
if (!host || !content) return;
clearGroup(content);
const corridorLength = rig.lengthM / 2 + corridor.forwardLengthM + corridor.rearMarginM;
const corridorCenterX = (rig.lengthM / 2 + corridor.forwardLengthM - corridor.rearMarginM) / 2;
const corridorMesh = new THREE.Mesh(
new THREE.PlaneGeometry(corridorLength, corridor.halfWidthM * 2),
new THREE.MeshBasicMaterial({
color: tokenColor(host, "--nodedc-accent-rgb", [232, 56, 126]),
transparent: true,
opacity: 0.11,
side: THREE.DoubleSide,
depthWrite: false,
}),
);
corridorMesh.rotation.x = -Math.PI / 2;
corridorMesh.position.set(corridorCenterX, 0.01, 0);
content.add(corridorMesh);
const corridorOutline = new THREE.LineSegments(
new THREE.EdgesGeometry(new THREE.BoxGeometry(corridorLength, 0.01, corridor.halfWidthM * 2)),
new THREE.LineBasicMaterial({
color: tokenColor(host, "--nodedc-accent-rgb", [232, 56, 126]),
transparent: true,
opacity: 0.7,
}),
);
corridorOutline.position.set(corridorCenterX, 0.015, 0);
content.add(corridorOutline);
const body = new THREE.LineSegments(
new THREE.EdgesGeometry(new THREE.BoxGeometry(rig.lengthM, 0.34, rig.widthM)),
new THREE.LineBasicMaterial({
color: tokenColor(host, "--nodedc-foreground-rgb", [245, 245, 245]),
transparent: true,
opacity: 0.86,
}),
);
body.position.y = 0.17;
content.add(body);
const lidar = new THREE.Mesh(
new THREE.CylinderGeometry(0.08, 0.08, 0.08, 20),
new THREE.MeshBasicMaterial({
color: tokenColor(host, "--nodedc-foreground-rgb", [245, 245, 245]),
}),
);
lidar.position.y = rig.nominalSensorHeightM;
content.add(lidar);
const grid = new THREE.GridHelper(
Math.max(20, corridor.forwardLengthM * 2.5),
40,
tokenColor(host, "--nodedc-text-muted", [96, 99, 106]),
tokenColor(host, "--nodedc-glass-outline", [48, 50, 56]),
);
const gridMaterials = Array.isArray(grid.material) ? grid.material : [grid.material];
gridMaterials.forEach((material) => {
material.transparent = true;
material.opacity = 0.15;
material.depthWrite = false;
});
content.add(grid);
requestRenderRef.current();
}, [
corridor.forwardLengthM,
corridor.halfWidthM,
corridor.rearMarginM,
rig.lengthM,
rig.nominalSensorHeightM,
rig.widthM,
]);
const resetView = useCallback(() => {
const camera = cameraRef.current;
const controls = controlsRef.current;
if (!camera || !controls) return;
const forwardLengthM = corridorForwardLengthRef.current;
controls.target.set(forwardLengthM * 0.35, 0.6, 0);
if (modeRef.current === "plan") {
camera.position.set(forwardLengthM * 0.35, 15, 0.001);
camera.up.set(0, 0, -1);
} else {
camera.position.set(-4.5, 4.8, 8.5);
camera.up.set(0, 1, 0);
}
camera.updateProjectionMatrix();
controls.update();
requestRenderRef.current();
}, []);
// Playback data and rig object identities must never reset an operator's
// orbit. Only a deliberate 3D/PLAN mode transition chooses a default view.
useEffect(() => resetView(), [mode, resetView]);
useImperativeHandle(ref, () => ({ resetView }), [resetView]);
const semanticLegendEntries = (() => {
if (
!showCurrentIncrement
|| !pointSemanticClassIds
|| pointSemanticClassIds.length !== pointCloudBodyXyzM.length
|| !semanticClasses
|| !semanticPalette
) return [];
const presentIds = new Set(pointSemanticClassIds.filter((item): item is number => item !== null));
const classesById = new Map(semanticClasses.map((item) => [item.id, item]));
return semanticPalette.flatMap((entry) => {
const semanticClass = classesById.get(entry.classId);
if (!semanticClass || !presentIds.has(entry.classId) || entry.color.kind === "transparent") return [];
return [{
id: entry.classId,
label: semanticClass.label,
cssColor: recordedEvidenceSemanticCssColor(entry.color),
}];
});
})();
const metricLegendEntries = laboratoryMetricLegendEntries({
pointCloudCount: pointSemanticClassIds?.every((item) => item !== null)
? 0
: pointCloudBodyXyzM.length,
localSurfaceCount: localSurfaceBodyXyzM.length,
obstacles,
showCurrentIncrement,
showLocalSurface,
showRollingMap,
showLowStep,
});
const classifiedLegendEntries = (() => {
const states = new Set<LaboratoryMetricCellState>();
if (classifiedPackedCells) {
for (const code of classifiedPackedCells.stateCodes) {
states.add(code === 1
? "ground-support"
: code === 2
? "nonground-occupied"
: code === 3
? "unknown-rejected"
: code === 0
? "unobserved"
: "unknown-rejected");
}
} else {
classifiedCells.forEach((cell) => states.add(cell.state));
}
if (!showClassifiedCells || !states.size) return [];
return [
states.has("ground-support")
? { id: "ground-support" as const, label: "Ground support" }
: null,
states.has("nonground-occupied")
? { id: "nonground-occupied" as const, label: "Non-ground occupied" }
: null,
states.has("unknown-rejected")
? { id: "unknown-rejected" as const, label: "Unknown / rejected" }
: null,
states.has("unobserved")
? { id: "unobserved" as const, label: "Unobserved" }
: null,
]
.filter((entry): entry is NonNullable<typeof entry> => entry !== null)
.filter((entry) => !semanticLegendEntries.some(
(semanticEntry) => semanticEntry.label === entry.label,
));
})();
return (
<div className="laboratory-metric-evidence-scene">
<div ref={hostRef} className="laboratory-metric-evidence-scene__viewport">
{renderError ? <p>{renderError}</p> : null}
</div>
<div className="laboratory-metric-evidence-scene__legend">
{renderStats ? (
<span
data-decision="performance"
title="CPU-время отправки последнего WebGL render pass; это не GPU timer. В покое сцена не перерисовывается."
>
3D {renderStats.frameMs.toFixed(1)} ms · {renderStats.drawCalls} draw · {renderStats.triangles.toLocaleString("ru-RU")} tri · {(
classifiedPackedCells?.stateCodes.length ?? classifiedCells.length
).toLocaleString("ru-RU")} cells · {renderStats.pixelRatio.toFixed(1)}×
</span>
) : null}
{metricLegendEntries.map((entry) => (
<span key={entry.id} data-decision={entry.id}>{entry.label}</span>
))}
{classifiedLegendEntries.map((entry) => (
<span key={entry.id} data-decision={entry.id}>{entry.label}</span>
))}
{semanticLegendEntries.map((entry) => (
<span
key={entry.id}
data-decision="semantic"
style={{ "--laboratory-metric-legend-color": entry.cssColor } as CSSProperties}
>
{entry.label}
</span>
))}
</div>
</div>
);
});
@@ -0,0 +1,366 @@
import { useId, useState, type ReactNode } from "react";
import { Icon, IconButton, Select, StatusBadge } from "@nodedc/ui-react";
export interface LaboratoryOption<T extends string> {
id: T;
label: string;
status?: "progress" | "retained" | "failed" | "unreviewed";
}
export type LaboratoryExecutionClass =
| "deterministic"
| "ai-inference"
| "hybrid";
export type LaboratoryMethodCompleteness = "complete" | "legacy-partial";
export type LaboratoryEvidenceKind = "recorded-replay" | "diagnostic-model";
export interface LaboratoryMethodComponent {
kind: "source" | "tool" | "model" | "algorithm" | "runtime";
name: string;
version: string;
role: string;
identitySha256: string | null;
}
export interface LaboratoryMethod {
completeness: LaboratoryMethodCompleteness;
executionClass: LaboratoryExecutionClass;
pipelineId: string;
components: readonly LaboratoryMethodComponent[];
}
export interface LaboratoryBrief {
question: string;
approach: string;
principalResult: string;
limitation: string;
}
export interface LaboratoryResultMetric {
label: string;
value: string;
hint: string;
}
export interface LaboratoryResultConclusion {
proved: string;
notProved: string;
decision: string;
}
export const LABORATORY_REPORT_TEMPLATE_VERSION =
"missioncore.laboratory-report/v1";
const EXECUTION_LABELS: Record<LaboratoryExecutionClass, string> = {
deterministic: "Детерминированный",
"ai-inference": "AI Inference",
hybrid: "Гибридный",
};
const COMPONENT_LABELS: Record<LaboratoryMethodComponent["kind"], string> = {
source: "Источник",
tool: "Инструмент",
model: "Модель",
algorithm: "Алгоритм",
runtime: "Runtime",
};
export function LaboratorySelector<T extends string>({
eyebrow,
title,
description,
label,
value,
options,
disabled = false,
searchable = false,
onChange,
}: {
eyebrow: string;
title: string;
description: string;
label: string;
value: T;
options: readonly LaboratoryOption<T>[];
disabled?: boolean;
searchable?: boolean;
onChange: (value: T) => void;
}) {
return (
<section className="laboratory-selector">
<div>
<span className="section-eyebrow">{eyebrow}</span>
<h2>{title}</h2>
<p>{description}</p>
</div>
<div className="laboratory-selector__control">
<span>{label}</span>
<Select
label={`Выбрать: ${label}`}
value={value}
options={options.map((option) => ({
value: option.id,
label: option.label,
icon: option.status ? (
<span
className="laboratory-status-dot"
data-status={option.status}
aria-label={option.status === "progress"
? "Есть подтверждённый прогресс"
: option.status === "retained"
? "Сохранено для сравнения"
: option.status === "failed"
? "Gate не пройден"
: "Требует классификации"}
>
</span>
) : undefined,
}))}
variant="split"
menuWidth="anchor"
disabled={disabled}
searchable={searchable}
searchPlaceholder={`Найти: ${label.toLocaleLowerCase("ru-RU")}`}
onChange={(next) => onChange(next)}
/>
</div>
</section>
);
}
export function LaboratorySummary({
title,
description,
status,
statusTone = "neutral",
facts,
brief,
method,
}: {
title: string;
description: string;
status: string;
statusTone?: "neutral" | "success" | "warning" | "danger" | "accent";
facts: readonly { label: string; value: string }[];
brief: LaboratoryBrief;
method?: LaboratoryMethod | null;
}) {
const methodComplete = method?.completeness === "complete";
const [expanded, setExpanded] = useState(false);
const detailsId = useId();
return (
<section className="laboratory-summary" data-expanded={expanded ? "true" : undefined}>
<header>
<div className="laboratory-summary__heading">
<span className="section-eyebrow">ЛАБОРАТОРНАЯ РАБОТА</span>
<h2>{title}</h2>
</div>
<div className="laboratory-summary__actions">
<StatusBadge tone={statusTone}>{status}</StatusBadge>
<IconButton
label={expanded ? "Свернуть подробности лабораторной работы" : "Раскрыть подробности лабораторной работы"}
aria-expanded={expanded}
aria-controls={detailsId}
onClick={() => setExpanded((current) => !current)}
>
<span className="laboratory-summary__toggle-glyph" aria-hidden="true">
<Icon name="chevron-down" />
</span>
</IconButton>
</div>
</header>
<div id={detailsId} className="laboratory-summary__details" hidden={!expanded}>
<p className="laboratory-summary__description">{description}</p>
<dl className="laboratory-summary__facts">
{facts.map((fact) => (
<div key={fact.label}>
<dt>{fact.label}</dt>
<dd>{fact.value}</dd>
</div>
))}
</dl>
<dl className="laboratory-summary__brief">
<div>
<dt>Задача</dt>
<dd>{brief.question}</dd>
</div>
<div>
<dt>Как проверяли</dt>
<dd>{brief.approach}</dd>
</div>
<div>
<dt>Главный результат</dt>
<dd>{brief.principalResult}</dd>
</div>
<div>
<dt>Ограничение</dt>
<dd>{brief.limitation}</dd>
</div>
</dl>
{method ? (
<div className="laboratory-summary__method">
<header>
<div>
<span className="section-eyebrow">МЕТОД</span>
<strong>{method.pipelineId}</strong>
</div>
<small>
{EXECUTION_LABELS[method.executionClass]}
{" · "}
{methodComplete ? "полная идентичность" : "legacy · частично"}
</small>
</header>
<dl className="laboratory-summary__components">
{method.components.map((component, index) => (
<div key={`${component.kind}:${component.name}:${index}`}>
<dt>{COMPONENT_LABELS[component.kind]}</dt>
<dd>
<strong>{component.name}</strong>
<small>
{component.role}
{" · "}
{component.version}
{component.identitySha256
? ` · ${component.identitySha256.slice(0, 12)}`
: ""}
</small>
</dd>
</div>
))}
</dl>
</div>
) : null}
</div>
</section>
);
}
export function LaboratoryEvidence({
eyebrow,
title,
kind,
resizable = false,
children,
}: {
eyebrow: string;
title: string;
kind: LaboratoryEvidenceKind;
resizable?: boolean;
children: ReactNode;
}) {
return (
<section
className="lab-result-surface"
data-evidence-kind={kind}
data-resizable={resizable ? "true" : undefined}
>
<header>
<span className="section-eyebrow">{eyebrow}</span>
<strong>{title}</strong>
</header>
<div className="laboratory-evidence-frame">
{children}
</div>
</section>
);
}
export function LaboratoryConclusion({
proved,
notProved,
decision,
}: {
proved: string;
notProved: string;
decision: string;
}) {
return (
<dl className="laboratory-result-conclusion">
<div>
<dt>Доказано</dt>
<dd>{proved}</dd>
</div>
<div>
<dt>Не доказано</dt>
<dd>{notProved}</dd>
</div>
<div>
<dt>Решение</dt>
<dd>{decision}</dd>
</div>
</dl>
);
}
export function LaboratoryMetricGrid({
metrics,
}: {
metrics: readonly LaboratoryResultMetric[];
}) {
return (
<div className="laboratory-result-metrics">
{metrics.map((metric) => (
<div key={metric.label}>
<span>{metric.label}</span>
<strong>{metric.value}</strong>
<small>{metric.hint}</small>
</div>
))}
</div>
);
}
export function LaboratoryResultSummary({
title,
status,
statusTone = "neutral",
metrics,
conclusion,
}: {
title: string;
status: string;
statusTone?: "neutral" | "success" | "warning" | "danger" | "accent";
metrics: readonly LaboratoryResultMetric[];
conclusion: LaboratoryResultConclusion;
}) {
return (
<section className="laboratory-result-summary">
<header>
<div>
<span className="section-eyebrow">РЕЗУЛЬТАТ И ВЫВОД</span>
<h2>{title}</h2>
</div>
<StatusBadge tone={statusTone}>{status}</StatusBadge>
</header>
<LaboratoryMetricGrid metrics={metrics} />
<LaboratoryConclusion {...conclusion} />
</section>
);
}
export function LaboratoryWorkTemplate({
summary,
evidence,
result = null,
details = null,
}: {
summary: ReactNode;
evidence: ReactNode;
result?: ReactNode;
details?: ReactNode;
}) {
return (
<div
className="laboratory-work-template"
data-template-contract={LABORATORY_REPORT_TEMPLATE_VERSION}
>
{summary}
{evidence}
{result}
{details}
</div>
);
}
@@ -0,0 +1,241 @@
import {
useCallback,
useEffect,
useMemo,
useRef,
useState,
type ReactNode,
type RefObject,
} from "react";
import { SplitPane } from "@nodedc/ui-react";
import {
RecordedFmp4Player,
type RecordedObservationPlayback,
} from "../RecordedFmp4Player";
import { ObservationTimeline } from "../ObservationTimeline";
import type { ObservationSourceDescriptor } from "../../core/runtime/contracts";
export const LABORATORY_RECORDED_CLIP_VIEWER_CONTRACT =
"missioncore.laboratory-recorded-clip-viewer/v1" as const;
export interface LaboratoryRecordedClipFrame {
sequence: number;
sourceTimeNs: number;
}
export function nearestLaboratoryRecordedClipFrame(
frames: readonly LaboratoryRecordedClipFrame[],
sourceTimeNs: number,
): LaboratoryRecordedClipFrame | null {
if (!frames.length || !Number.isFinite(sourceTimeNs)) return null;
let left = 0;
let right = frames.length - 1;
while (left < right) {
const middle = Math.floor((left + right) / 2);
if (frames[middle]!.sourceTimeNs < sourceTimeNs) left = middle + 1;
else right = middle;
}
const next = frames[left]!;
const previous = frames[Math.max(0, left - 1)]!;
return Math.abs(previous.sourceTimeNs - sourceTimeNs)
<= Math.abs(next.sourceTimeNs - sourceTimeNs)
? previous
: next;
}
export function laboratoryRecordedClipEndExclusiveNs(
frames: readonly LaboratoryRecordedClipFrame[],
): number | null {
const last = frames.at(-1);
if (!last) return null;
const deltas = frames.slice(1).flatMap((frame, index) => {
const delta = frame.sourceTimeNs - frames[index]!.sourceTimeNs;
return Number.isSafeInteger(delta) && delta > 0 ? [delta] : [];
}).sort((left, right) => left - right);
const typicalDelta = deltas.length
? deltas[Math.floor(deltas.length / 2)]!
: 100_000_000;
return last.sourceTimeNs + typicalDelta;
}
export function laboratoryRecordedClipClockGate(
pendingSequence: number | null,
observedSequence: number,
): { accept: boolean; pendingSequence: number | null } {
if (pendingSequence !== null && pendingSequence !== observedSequence) {
return { accept: false, pendingSequence };
}
return { accept: true, pendingSequence: null };
}
export function LaboratoryRecordedClipPlayer({
source,
segmentCount,
frames,
sequence,
playing,
playbackRate,
cameraPresentation,
continuousPlayback,
sourceCount,
cameraRef,
cameraOverlay,
alternativeScene,
onSequenceChange,
onPlayingChange,
onPlaybackRateChange,
}: {
source: ObservationSourceDescriptor;
segmentCount: number;
frames: readonly LaboratoryRecordedClipFrame[];
sequence: number;
playing: boolean;
playbackRate: number;
cameraPresentation: "primary" | "companion" | "hidden";
continuousPlayback: boolean;
sourceCount: number;
cameraRef?: RefObject<HTMLDivElement | null>;
cameraOverlay?: ReactNode;
alternativeScene?: ReactNode;
onSequenceChange: (sequence: number) => void;
onPlayingChange: (playing: boolean) => void;
onPlaybackRateChange: (rate: number) => void;
}) {
const [companionSpatialSize, setCompanionSpatialSize] = useState(69);
const lastEmittedSequenceRef = useRef(sequence);
const lastObservedSequenceRef = useRef<number | null>(sequence);
const pendingSequenceRef = useRef<number | null>(null);
const frame = useMemo(
() => frames.find((candidate) => candidate.sequence === sequence) ?? frames[0] ?? null,
[frames, sequence],
);
const endExclusiveNs = useMemo(
() => laboratoryRecordedClipEndExclusiveNs(frames),
[frames],
);
const playback = useMemo<RecordedObservationPlayback | null>(() => frame ? ({
currentSeconds: frame.sourceTimeNs / 1_000_000_000,
playing: continuousPlayback && playing,
rate: playbackRate,
}) : null, [continuousPlayback, frame, playbackRate, playing]);
useEffect(() => {
if (!continuousPlayback && playing) onPlayingChange(false);
}, [continuousPlayback, onPlayingChange, playing]);
useEffect(() => {
if (lastObservedSequenceRef.current !== sequence) {
pendingSequenceRef.current = sequence;
}
lastEmittedSequenceRef.current = sequence;
}, [sequence]);
const emitSequence = useCallback((nextSequence: number) => {
if (lastEmittedSequenceRef.current === nextSequence) return;
lastEmittedSequenceRef.current = nextSequence;
onSequenceChange(nextSequence);
}, [onSequenceChange]);
const requestSequence = useCallback((nextSequence: number) => {
pendingSequenceRef.current = nextSequence;
emitSequence(nextSequence);
}, [emitSequence]);
const handlePlaybackChange = useCallback((next: RecordedObservationPlayback) => {
const sourceTimeNs = Math.round(next.currentSeconds * 1_000_000_000);
const first = frames[0];
if (!first || endExclusiveNs === null) return;
if (sourceTimeNs >= endExclusiveNs) {
requestSequence(first.sequence);
return;
}
const nearest = nearestLaboratoryRecordedClipFrame(frames, sourceTimeNs);
if (!nearest) return;
lastObservedSequenceRef.current = nearest.sequence;
const gate = laboratoryRecordedClipClockGate(
pendingSequenceRef.current,
nearest.sequence,
);
pendingSequenceRef.current = gate.pendingSequence;
if (gate.accept) emitSequence(nearest.sequence);
}, [emitSequence, endExclusiveNs, frames, requestSequence]);
const timelineStart = frames[0]?.sourceTimeNs ?? 0;
const timelineEnd = frames.at(-1)?.sourceTimeNs ?? timelineStart + 1;
const companionVisible = cameraPresentation === "companion";
const spatialSize = companionVisible
? companionSpatialSize
: cameraPresentation === "primary" ? 0 : 100;
const spatialPane = (
<div
className="laboratory-recorded-clip-player__spatial"
aria-hidden={cameraPresentation === "primary"}
>
{alternativeScene}
</div>
);
const cameraPane = (
<div
ref={cameraRef}
className="laboratory-recorded-clip-player__camera"
aria-hidden={cameraPresentation === "hidden"}
>
{playback ? (
<RecordedFmp4Player
source={source}
playback={playback}
interactive={false}
prepare
segmentSequence={frame?.sequence}
segmentCount={segmentCount}
admissionKey={`${source.id}:${source.delivery?.id ?? "recorded"}`}
onPlaybackChange={handlePlaybackChange}
onPlayingRejected={() => onPlayingChange(false)}
/>
) : null}
{cameraPresentation !== "hidden" ? cameraOverlay : null}
</div>
);
return (
<div
className="laboratory-recorded-clip-player"
data-contract={LABORATORY_RECORDED_CLIP_VIEWER_CONTRACT}
data-camera-presentation={cameraPresentation}
>
<div className="laboratory-recorded-clip-player__stage">
<SplitPane
className="laboratory-recorded-clip-player__split"
primary={spatialPane}
secondary={cameraPane}
primarySize={spatialSize}
onPrimarySizeChange={setCompanionSpatialSize}
orientation="vertical"
minPrimarySize={companionVisible ? 24 : 0}
minSecondarySize={companionVisible ? 24 : 0}
resizable={companionVisible}
separatorLabel="Изменить размер 3D/ПЛАН и правой камеры"
/>
</div>
<ObservationTimeline
className="laboratory-recorded-clip-player__timeline"
active
sourceCount={sourceCount}
mode="recorded"
seekable
synchronization="frame-accurate"
rangeNs={{ min: timelineStart, max: Math.max(timelineEnd, timelineStart + 1) }}
currentNs={frame?.sourceTimeNs ?? timelineStart}
playing={continuousPlayback && playing}
playbackRate={continuousPlayback ? playbackRate : undefined}
onPlaybackRateChange={continuousPlayback ? onPlaybackRateChange : undefined}
onPlayingChange={continuousPlayback ? onPlayingChange : undefined}
onSeek={(timeNs) => {
const nearest = nearestLaboratoryRecordedClipFrame(frames, timeNs);
if (nearest) requestSequence(nearest.sequence);
}}
showJumpToEnd={false}
/>
</div>
);
}
@@ -0,0 +1,111 @@
import {
useEffect,
useRef,
type KeyboardEvent as ReactKeyboardEvent,
type ReactNode,
} from "react";
import { createPortal } from "react-dom";
const FOCUSABLE = [
"a[href]",
"button:not([disabled])",
"input:not([disabled])",
"select:not([disabled])",
"textarea:not([disabled])",
"[tabindex]:not([tabindex='-1'])",
].join(",");
function keepFocusInside(
event: ReactKeyboardEvent<HTMLElement>,
frame: HTMLElement,
): void {
if (event.key !== "Tab") return;
const focusable = Array.from(frame.querySelectorAll<HTMLElement>(FOCUSABLE));
if (!focusable.length) {
event.preventDefault();
frame.focus();
return;
}
const first = focusable[0];
const last = focusable[focusable.length - 1];
if (event.shiftKey && document.activeElement === first) {
event.preventDefault();
last.focus();
} else if (!event.shiftKey && document.activeElement === last) {
event.preventDefault();
first.focus();
}
}
export function LaboratoryReviewWorkspaceFrame({
ariaLabel,
toolbar,
stage,
inspector,
overlays,
interactionEnabled = true,
returnFocusTarget,
onClose,
}: {
ariaLabel: string;
toolbar: ReactNode;
stage: ReactNode;
inspector?: ReactNode;
overlays?: ReactNode;
interactionEnabled?: boolean;
returnFocusTarget?: HTMLElement | null;
onClose: () => void;
}) {
const frameRef = useRef<HTMLElement>(null);
const onCloseRef = useRef(onClose);
onCloseRef.current = onClose;
useEffect(() => {
if (typeof document === "undefined") return;
const previousFocus = document.activeElement instanceof HTMLElement
? document.activeElement
: null;
const previousOverflow = document.body.style.overflow;
document.body.style.overflow = "hidden";
const animationFrame = window.requestAnimationFrame(() => {
const firstFocusable = frameRef.current?.querySelector<HTMLElement>(FOCUSABLE);
(firstFocusable ?? frameRef.current)?.focus();
});
return () => {
window.cancelAnimationFrame(animationFrame);
document.body.style.overflow = previousOverflow;
const target = returnFocusTarget?.isConnected ? returnFocusTarget : previousFocus;
window.requestAnimationFrame(() => target?.focus());
};
}, [returnFocusTarget]);
if (typeof document === "undefined") return null;
return createPortal(
<section
ref={frameRef}
className="laboratory-review-workspace"
role="dialog"
aria-modal="true"
aria-label={ariaLabel}
data-has-inspector={inspector ? "true" : undefined}
tabIndex={-1}
onKeyDown={(event) => {
if (!interactionEnabled) return;
if (event.key === "Escape") {
event.preventDefault();
event.stopPropagation();
onCloseRef.current();
return;
}
keepFocusInside(event, event.currentTarget);
}}
>
<header className="laboratory-review-workspace__toolbar">{toolbar}</header>
<div className="laboratory-review-workspace__stage">{stage}</div>
{inspector ? <footer className="laboratory-review-workspace__inspector">{inspector}</footer> : null}
{overlays}
</section>,
document.body,
);
}
@@ -0,0 +1,51 @@
import { GlassSurface } from "@nodedc/ui-react";
import { CanonicalResultRerunReplay } from "./CanonicalResultRerunReplay";
import { resolveCanonicalLabReplay } from "../../core/laboratory/canonicalLabReplay";
import type { ObservatoryPortableResultReview } from "../../core/observatory/recordedRun";
import type { ObservationSessionReplayLaunch } from "../../core/observation/sessionArchive";
function resolvePortableTgsReplay(resultId: string, launch: ObservationSessionReplayLaunch,
options: { signal: AbortSignal }) {
return resolveCanonicalLabReplay(resultId, launch, { ...options, sourceKind: "portable-tgs" });
}
function resolvePortableSemanticReplay(resultId: string, launch: ObservationSessionReplayLaunch,
options: { signal: AbortSignal }) {
return resolveCanonicalLabReplay(resultId, launch, { ...options, sourceKind: "portable-semantic" });
}
function resolvePortableObjectReplay(resultId: string, launch: ObservationSessionReplayLaunch,
options: { signal: AbortSignal }) {
return resolveCanonicalLabReplay(resultId, launch, { ...options, sourceKind: "portable-objects" });
}
export function PortableResultReplay({
review,
label,
}: {
review: ObservatoryPortableResultReview;
label?: string;
}) {
const schema = review.resultDocument.schema_version;
const tgs = schema === "missioncore.recorded-tgs-costmap-review/v2";
const module = review.resultDocument.module;
const moduleId = module && typeof module === "object" && "module_id" in module
? module.module_id : undefined;
const semantics = schema === "missioncore.recorded-eomt-ddrnet-review/v2"
|| (schema === "missioncore.recorded-ai-layer-review/v1"
&& (moduleId === "ddrnet" || moduleId === "eomt"));
const objects = schema === "missioncore.recorded-ai-layer-review/v1"
&& (moduleId === "rf-detr" || moduleId === "object-distance");
if (!tgs && !semantics && !objects) return (
<GlassSurface className="observatory-replay-state" padding="lg">
<p role="alert">Сохранённый результат этого профиля пока не поддерживает визуальный разбор.</p>
</GlassSurface>
);
return <CanonicalResultRerunReplay key={review.resultId} resultId={review.resultId}
sessionId={review.sourceSessionId} portable costmap={tgs} semantics={semantics}
detections={objects}
moduleIds={typeof moduleId === "string" ? [moduleId] : []}
label={label}
resolveReplay={tgs ? resolvePortableTgsReplay
: objects ? resolvePortableObjectReplay : resolvePortableSemanticReplay} />;
}
@@ -0,0 +1,110 @@
import { useEffect, useRef } from "react";
export type RecordedEvidenceBoxTone =
| "accent"
| "danger"
| "success"
| "warning"
| "neutral";
export interface RecordedEvidenceBox {
boxXyxy: readonly [number, number, number, number];
label: string;
tone: RecordedEvidenceBoxTone;
dashed?: boolean;
}
function rgba(
host: HTMLElement,
token: string,
fallback: readonly [number, number, number],
alpha = 1,
): string {
const channels = getComputedStyle(host)
.getPropertyValue(token)
.trim()
.match(/[\d.]+/g)
?.slice(0, 3)
.map(Number);
const [red, green, blue] = channels?.length === 3 ? channels : fallback;
return `rgba(${red}, ${green}, ${blue}, ${alpha})`;
}
function toneColor(host: HTMLElement, tone: RecordedEvidenceBoxTone): string {
if (tone === "danger") return rgba(host, "--nodedc-danger-rgb", [255, 104, 112]);
if (tone === "success") return rgba(host, "--nodedc-success-rgb", [181, 255, 90]);
if (tone === "warning") return rgba(host, "--nodedc-warning-rgb", [255, 197, 92]);
if (tone === "neutral") return rgba(host, "--nodedc-foreground-rgb", [245, 245, 245], 0.7);
return rgba(host, "--nodedc-accent-rgb", [232, 56, 126]);
}
export function RecordedEvidenceBoxOverlay({
imageWidth,
imageHeight,
boxes,
ariaLabel,
}: {
imageWidth: number;
imageHeight: number;
boxes: readonly RecordedEvidenceBox[];
ariaLabel: string;
}) {
const canvasRef = useRef<HTMLCanvasElement | null>(null);
useEffect(() => {
const canvas = canvasRef.current;
const host = canvas?.parentElement;
if (!host || !canvas) return;
const context = canvas.getContext("2d");
if (!context) return;
const render = () => {
const width = Math.max(host.clientWidth, 1);
const height = Math.max(host.clientHeight, 1);
const pixelRatio = Math.min(window.devicePixelRatio, 1.5);
canvas.width = Math.round(width * pixelRatio);
canvas.height = Math.round(height * pixelRatio);
canvas.style.width = `${width}px`;
canvas.style.height = `${height}px`;
context.setTransform(pixelRatio, 0, 0, pixelRatio, 0, 0);
context.clearRect(0, 0, width, height);
const scale = Math.min(width / imageWidth, height / imageHeight);
const drawWidth = imageWidth * scale;
const drawHeight = imageHeight * scale;
const offsetX = (width - drawWidth) / 2;
const offsetY = (height - drawHeight) / 2;
for (const item of boxes) {
const [left, top, right, bottom] = item.boxXyxy;
const x = offsetX + left * scale;
const y = offsetY + top * scale;
const boxWidth = (right - left) * scale;
const boxHeight = (bottom - top) * scale;
const stroke = toneColor(host, item.tone);
context.strokeStyle = stroke;
context.lineWidth = Math.max(1.5, 2 * scale);
context.setLineDash(item.dashed ? [5, 4] : []);
context.strokeRect(x, y, boxWidth, boxHeight);
context.setLineDash([]);
const fontSize = Math.max(9, 10 * scale);
context.font = `650 ${fontSize}px Inter, system-ui, sans-serif`;
const labelWidth = Math.min(drawWidth, context.measureText(item.label).width + 8);
const labelHeight = fontSize + 6;
const labelX = Math.min(offsetX + drawWidth - labelWidth, Math.max(offsetX, x));
const labelY = Math.max(offsetY, y - labelHeight);
context.fillStyle = rgba(host, "--nodedc-canvas-rgb", [5, 5, 6], 0.9);
context.fillRect(labelX, labelY, labelWidth, labelHeight);
context.fillStyle = stroke;
context.fillText(item.label, labelX + 4, labelY + fontSize + 1, labelWidth - 8);
}
};
const observer = new ResizeObserver(render);
observer.observe(host);
render();
return () => observer.disconnect();
}, [boxes, imageHeight, imageWidth]);
return <canvas ref={canvasRef} role="img" aria-label={ariaLabel} />;
}
@@ -0,0 +1,86 @@
import { useEffect, useState } from "react";
import { Icon } from "@nodedc/ui-react";
import {
RecordedEvidenceBoxOverlay,
type RecordedEvidenceBox,
} from "./RecordedEvidenceBoxOverlay";
import {
RecordedEvidenceSemanticMaskOverlay,
type RecordedEvidenceSemanticOverlay,
} from "./RecordedEvidenceSemanticMaskOverlay";
import {
RecordedEvidencePointCloudOverlay,
type RecordedEvidencePointCloudOverlayData,
} from "./RecordedEvidencePointCloudOverlay";
export function RecordedEvidenceImageScene({
src,
imageWidth,
imageHeight,
boxes,
semanticOverlay,
pointCloudOverlay,
ariaLabel,
}: {
src: string;
imageWidth: number;
imageHeight: number;
boxes: readonly RecordedEvidenceBox[];
semanticOverlay?: RecordedEvidenceSemanticOverlay;
pointCloudOverlay?: RecordedEvidencePointCloudOverlayData;
ariaLabel: string;
}) {
const [state, setState] = useState<"loading" | "ready" | "error">("loading");
useEffect(() => setState("loading"), [src]);
return (
<div className="recorded-evidence-image-scene">
<img
src={src}
alt=""
draggable={false}
onLoad={() => setState("ready")}
onError={() => setState("error")}
/>
{state === "ready" ? (
<>
{semanticOverlay ? (
<RecordedEvidenceSemanticMaskOverlay
{...semanticOverlay}
imageWidth={imageWidth}
imageHeight={imageHeight}
/>
) : null}
{pointCloudOverlay ? (
<RecordedEvidencePointCloudOverlay
imageWidth={imageWidth}
imageHeight={imageHeight}
overlay={pointCloudOverlay}
/>
) : null}
<RecordedEvidenceBoxOverlay
imageWidth={imageWidth}
imageHeight={imageHeight}
boxes={boxes}
ariaLabel={ariaLabel}
/>
</>
) : (
<div className="l3-visual-audit__state" role="status">
{state === "loading" ? (
<span className="busy-indicator" aria-hidden="true" />
) : (
<Icon name="alert" size={18} />
)}
<span>
{state === "loading"
? "Декодируем один точный CAMERA-кадр"
: "Точный CAMERA-кадр недоступен."}
</span>
</div>
)}
</div>
);
}
@@ -0,0 +1,91 @@
import { useEffect, useRef } from "react";
export type RecordedEvidenceProjectedPoint = readonly [number, number, number];
export interface RecordedEvidencePointCloudOverlayData {
pointsXyd: readonly RecordedEvidenceProjectedPoint[];
sourcePointCount: number;
projectedPointCount: number;
projection:
| "factory-kb4-exact"
| "factory-kb4-causal-registered-accumulation";
ariaLabel: string;
}
const DEPTH_BUCKETS = 64;
function depthBucket(depthM: number): number {
const normalized = Math.max(0, Math.min(1, (depthM - 0.5) / 24));
return Math.round(normalized * (DEPTH_BUCKETS - 1));
}
function depthColor(bucket: number): string {
const hue = 18 + bucket / (DEPTH_BUCKETS - 1) * 190;
return `hsla(${hue}, 96%, 62%, 0.86)`;
}
export function RecordedEvidencePointCloudOverlay({
imageWidth,
imageHeight,
overlay,
}: {
imageWidth: number;
imageHeight: number;
overlay: RecordedEvidencePointCloudOverlayData;
}) {
const canvasRef = useRef<HTMLCanvasElement | null>(null);
useEffect(() => {
const canvas = canvasRef.current;
const host = canvas?.parentElement;
if (!canvas || !host) return;
const context = canvas.getContext("2d");
if (!context) return;
const render = () => {
const width = Math.max(host.clientWidth, 1);
const height = Math.max(host.clientHeight, 1);
const pixelRatio = Math.min(window.devicePixelRatio, 1.5);
canvas.width = Math.round(width * pixelRatio);
canvas.height = Math.round(height * pixelRatio);
canvas.style.width = `${width}px`;
canvas.style.height = `${height}px`;
context.setTransform(pixelRatio, 0, 0, pixelRatio, 0, 0);
context.clearRect(0, 0, width, height);
const scale = Math.min(width / imageWidth, height / imageHeight);
const offsetX = (width - imageWidth * scale) / 2;
const offsetY = (height - imageHeight * scale) / 2;
const radius = Math.max(0.8, Math.min(2.2, scale * 1.45));
const buckets = Array.from(
{ length: DEPTH_BUCKETS },
(): [number, number][] => [],
);
for (const [imageX, imageY, depthM] of overlay.pointsXyd) {
const bucket = depthBucket(depthM);
buckets[bucket]!.push([
offsetX + imageX * scale,
offsetY + imageY * scale,
]);
}
for (let bucket = 0; bucket < buckets.length; bucket += 1) {
const points = buckets[bucket];
if (!points?.length) continue;
context.beginPath();
for (const [x, y] of points) {
context.moveTo(x + radius, y);
context.arc(x, y, radius, 0, Math.PI * 2);
}
context.fillStyle = depthColor(bucket);
context.fill();
}
};
const observer = new ResizeObserver(render);
observer.observe(host);
render();
return () => observer.disconnect();
}, [imageHeight, imageWidth, overlay]);
return <canvas ref={canvasRef} role="img" aria-label={overlay.ariaLabel} />;
}
@@ -0,0 +1,647 @@
import { useEffect, useRef, useState } from "react";
export interface RecordedEvidenceSemanticClass {
id: number;
label: string;
}
export type RecordedEvidenceSemanticToken =
| "--nodedc-accent-rgb"
| "--nodedc-danger-rgb"
| "--nodedc-foreground-rgb"
| "--nodedc-success-rgb"
| "--nodedc-text-muted"
| "--nodedc-warning-rgb";
export type RecordedEvidenceSemanticColor =
| {
kind: "token";
token: RecordedEvidenceSemanticToken;
}
| {
kind: "diagnostic";
rgb: readonly [number, number, number];
}
| {
kind: "transparent";
};
export interface RecordedEvidenceSemanticPaletteEntry {
classId: number;
color: RecordedEvidenceSemanticColor;
opacity?: number;
}
export interface RecordedEvidenceSemanticOverlay {
src: string;
prefetchSrcs?: readonly string[];
classes: readonly RecordedEvidenceSemanticClass[];
palette: readonly RecordedEvidenceSemanticPaletteEntry[];
opacity?: number;
ariaLabel: string;
}
interface DecodedSemanticMask {
key: string;
width: number;
height: number;
source: ImageBitmap | HTMLImageElement;
release: () => void;
}
interface PendingSemanticMask {
controller: AbortController;
subscribers: number;
promise: Promise<DecodedSemanticMask>;
}
const MASK_CACHE_LIMIT = 20;
const MASK_PREFETCH_LIMIT = 12;
const decodedMaskCache = new Map<string, DecodedSemanticMask>();
const pendingMaskCache = new Map<string, PendingSemanticMask>();
const TOKEN_FALLBACKS: Record<RecordedEvidenceSemanticToken, readonly [number, number, number]> = {
"--nodedc-accent-rgb": [232, 56, 126],
"--nodedc-danger-rgb": [255, 104, 112],
"--nodedc-foreground-rgb": [245, 245, 245],
"--nodedc-success-rgb": [181, 255, 90],
"--nodedc-text-muted": [147, 151, 159],
"--nodedc-warning-rgb": [255, 197, 92],
};
function clampChannel(value: number): number {
return Math.max(0, Math.min(255, Math.round(value)));
}
function clampOpacity(value: number | undefined, fallback: number): number {
return Math.max(0, Math.min(1, Number.isFinite(value) ? Number(value) : fallback));
}
function semanticMaskKey(src: string, width: number, height: number): string {
return `${width}x${height}:${src}`;
}
function rememberMask(mask: DecodedSemanticMask): void {
const previous = decodedMaskCache.get(mask.key);
if (previous && previous !== mask) previous.release();
decodedMaskCache.delete(mask.key);
decodedMaskCache.set(mask.key, mask);
while (decodedMaskCache.size > MASK_CACHE_LIMIT) {
const oldest = decodedMaskCache.keys().next().value;
if (typeof oldest !== "string") break;
const evicted = decodedMaskCache.get(oldest);
decodedMaskCache.delete(oldest);
evicted?.release();
}
}
async function imageSourceFromBlob(
blob: Blob,
signal: AbortSignal,
): Promise<{ source: ImageBitmap | HTMLImageElement; width: number; height: number; release: () => void }> {
if (typeof createImageBitmap === "function") {
const bitmap = await createImageBitmap(blob, {
colorSpaceConversion: "none",
premultiplyAlpha: "none",
});
if (signal.aborted) {
bitmap.close();
throw new DOMException("Aborted", "AbortError");
}
return {
source: bitmap,
width: bitmap.width,
height: bitmap.height,
release: () => bitmap.close(),
};
}
const objectUrl = URL.createObjectURL(blob);
const image = new Image();
image.decoding = "async";
try {
await new Promise<void>((resolve, reject) => {
const cleanup = () => {
image.removeEventListener("load", onLoad);
image.removeEventListener("error", onError);
signal.removeEventListener("abort", onAbort);
};
const onLoad = () => {
cleanup();
resolve();
};
const onError = () => {
cleanup();
reject(new Error("Semantic mask image decode failed"));
};
const onAbort = () => {
cleanup();
reject(new DOMException("Aborted", "AbortError"));
};
image.addEventListener("load", onLoad, { once: true });
image.addEventListener("error", onError, { once: true });
signal.addEventListener("abort", onAbort, { once: true });
image.src = objectUrl;
});
return {
source: image,
width: image.naturalWidth,
height: image.naturalHeight,
release: () => URL.revokeObjectURL(objectUrl),
};
} catch (error) {
URL.revokeObjectURL(objectUrl);
throw error;
}
}
async function decodeSemanticMask(
key: string,
src: string,
expectedWidth: number,
expectedHeight: number,
signal: AbortSignal,
): Promise<DecodedSemanticMask> {
const response = await fetch(src, { cache: "force-cache", signal });
if (!response.ok) throw new Error(`Semantic mask request failed: ${response.status}`);
const blob = await response.blob();
if (signal.aborted) throw new DOMException("Aborted", "AbortError");
const decoded = await imageSourceFromBlob(blob, signal);
if (decoded.width !== expectedWidth || decoded.height !== expectedHeight) {
decoded.release();
throw new Error(
`Semantic mask dimensions ${decoded.width}x${decoded.height} do not match ${expectedWidth}x${expectedHeight}`,
);
}
return {
key,
width: decoded.width,
height: decoded.height,
source: decoded.source,
release: decoded.release,
};
}
function subscribeToSemanticMask(
src: string,
width: number,
height: number,
): { promise: Promise<DecodedSemanticMask>; release: () => void } {
const key = semanticMaskKey(src, width, height);
const cached = decodedMaskCache.get(key);
if (cached) {
decodedMaskCache.delete(key);
decodedMaskCache.set(key, cached);
return { promise: Promise.resolve(cached), release: () => undefined };
}
let pending = pendingMaskCache.get(key);
if (!pending) {
const controller = new AbortController();
let next: PendingSemanticMask;
const promise = decodeSemanticMask(key, src, width, height, controller.signal)
.then((mask) => {
rememberMask(mask);
return mask;
})
.finally(() => {
if (pendingMaskCache.get(key) === next) pendingMaskCache.delete(key);
});
next = { controller, subscribers: 0, promise };
pendingMaskCache.set(key, next);
pending = next;
}
pending.subscribers += 1;
let released = false;
return {
promise: pending.promise,
release: () => {
if (released) return;
released = true;
pending!.subscribers -= 1;
if (pending!.subscribers > 0 || decodedMaskCache.has(key)) return;
pending!.controller.abort();
if (pendingMaskCache.get(key) === pending) pendingMaskCache.delete(key);
},
};
}
export function recordedEvidenceSemanticCssColor(
color: RecordedEvidenceSemanticColor,
): string {
if (color.kind === "transparent") return "transparent";
if (color.kind === "token") return `rgb(var(${color.token}))`;
const [red, green, blue] = color.rgb.map(clampChannel);
return `rgb(${red} ${green} ${blue})`;
}
export function resolveRecordedEvidenceSemanticRgb(
host: HTMLElement,
color: RecordedEvidenceSemanticColor,
): readonly [number, number, number] | null {
if (color.kind === "transparent") return null;
if (color.kind === "diagnostic") return color.rgb.map(clampChannel) as [number, number, number];
const channels = getComputedStyle(host)
.getPropertyValue(color.token)
.trim()
.match(/[\d.]+/g)
?.slice(0, 3)
.map(Number);
return channels?.length === 3
? channels.map(clampChannel) as [number, number, number]
: TOKEN_FALLBACKS[color.token];
}
interface SemanticMaskRenderer {
clear: (width: number, height: number, pixelRatio: number) => void;
render: (
mask: DecodedSemanticMask,
palette: Uint8Array,
width: number,
height: number,
pixelRatio: number,
) => void;
dispose: () => void;
}
function compileSemanticShader(
gl: WebGLRenderingContext,
type: number,
source: string,
): WebGLShader | null {
const shader = gl.createShader(type);
if (!shader) return null;
gl.shaderSource(shader, source);
gl.compileShader(shader);
if (gl.getShaderParameter(shader, gl.COMPILE_STATUS)) return shader;
gl.deleteShader(shader);
return null;
}
function createSemanticMaskRenderer(canvas: HTMLCanvasElement): SemanticMaskRenderer | null {
const gl = canvas.getContext("webgl", {
alpha: true,
antialias: false,
depth: false,
premultipliedAlpha: false,
preserveDrawingBuffer: true,
});
if (!gl) return null;
const vertexShader = compileSemanticShader(gl, gl.VERTEX_SHADER, `
attribute vec2 a_position;
attribute vec2 a_uv;
varying vec2 v_uv;
void main() {
gl_Position = vec4(a_position, 0.0, 1.0);
v_uv = a_uv;
}
`);
const fragmentShader = compileSemanticShader(gl, gl.FRAGMENT_SHADER, `
precision mediump float;
uniform sampler2D u_mask;
uniform sampler2D u_palette;
varying vec2 v_uv;
void main() {
// DOM image sources use a top-left origin while WebGL texture coordinates
// use a bottom-left origin. UNPACK_FLIP_Y_WEBGL is ignored for
// ImageBitmap uploads, so keep upload semantics stable and flip V here.
vec2 mask_uv = vec2(v_uv.x, 1.0 - v_uv.y);
float class_id = floor(texture2D(u_mask, mask_uv).r * 255.0 + 0.5);
gl_FragColor = texture2D(u_palette, vec2((class_id + 0.5) / 256.0, 0.5));
}
`);
if (!vertexShader || !fragmentShader) {
if (vertexShader) gl.deleteShader(vertexShader);
if (fragmentShader) gl.deleteShader(fragmentShader);
return null;
}
const program = gl.createProgram();
if (!program) {
gl.deleteShader(vertexShader);
gl.deleteShader(fragmentShader);
return null;
}
gl.attachShader(program, vertexShader);
gl.attachShader(program, fragmentShader);
gl.linkProgram(program);
gl.deleteShader(vertexShader);
gl.deleteShader(fragmentShader);
if (!gl.getProgramParameter(program, gl.LINK_STATUS)) {
gl.deleteProgram(program);
return null;
}
const buffer = gl.createBuffer();
const maskTexture = gl.createTexture();
const paletteTexture = gl.createTexture();
if (!buffer || !maskTexture || !paletteTexture) {
if (buffer) gl.deleteBuffer(buffer);
if (maskTexture) gl.deleteTexture(maskTexture);
if (paletteTexture) gl.deleteTexture(paletteTexture);
gl.deleteProgram(program);
return null;
}
const positionLocation = gl.getAttribLocation(program, "a_position");
const uvLocation = gl.getAttribLocation(program, "a_uv");
const maskLocation = gl.getUniformLocation(program, "u_mask");
const paletteLocation = gl.getUniformLocation(program, "u_palette");
gl.bindBuffer(gl.ARRAY_BUFFER, buffer);
gl.bufferData(gl.ARRAY_BUFFER, new Float32Array([
-1, -1, 0, 0,
1, -1, 1, 0,
-1, 1, 0, 1,
1, 1, 1, 1,
]), gl.STATIC_DRAW);
const resize = (width: number, height: number, pixelRatio: number) => {
const pixelWidth = Math.max(1, Math.round(width * pixelRatio));
const pixelHeight = Math.max(1, Math.round(height * pixelRatio));
if (canvas.width !== pixelWidth) canvas.width = pixelWidth;
if (canvas.height !== pixelHeight) canvas.height = pixelHeight;
canvas.style.width = `${width}px`;
canvas.style.height = `${height}px`;
};
const clear = (width: number, height: number, pixelRatio: number) => {
resize(width, height, pixelRatio);
gl.viewport(0, 0, canvas.width, canvas.height);
gl.clearColor(0, 0, 0, 0);
gl.clear(gl.COLOR_BUFFER_BIT);
};
return {
clear,
render: (mask, palette, width, height, pixelRatio) => {
if (gl.isContextLost()) throw new Error("Semantic WebGL context lost");
clear(width, height, pixelRatio);
gl.useProgram(program);
gl.bindBuffer(gl.ARRAY_BUFFER, buffer);
gl.enableVertexAttribArray(positionLocation);
gl.vertexAttribPointer(positionLocation, 2, gl.FLOAT, false, 16, 0);
gl.enableVertexAttribArray(uvLocation);
gl.vertexAttribPointer(uvLocation, 2, gl.FLOAT, false, 16, 8);
gl.activeTexture(gl.TEXTURE0);
gl.bindTexture(gl.TEXTURE_2D, maskTexture);
gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, 0);
gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MIN_FILTER, gl.NEAREST);
gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MAG_FILTER, gl.NEAREST);
gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
gl.texImage2D(gl.TEXTURE_2D, 0, gl.RGBA, gl.RGBA, gl.UNSIGNED_BYTE, mask.source);
gl.uniform1i(maskLocation, 0);
gl.activeTexture(gl.TEXTURE1);
gl.bindTexture(gl.TEXTURE_2D, paletteTexture);
gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, 0);
gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MIN_FILTER, gl.NEAREST);
gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MAG_FILTER, gl.NEAREST);
gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
gl.texImage2D(gl.TEXTURE_2D, 0, gl.RGBA, 256, 1, 0, gl.RGBA, gl.UNSIGNED_BYTE, palette);
gl.uniform1i(paletteLocation, 1);
const scale = Math.min(width / mask.width, height / mask.height);
const drawWidth = mask.width * scale;
const drawHeight = mask.height * scale;
const offsetX = (width - drawWidth) / 2;
const offsetY = (height - drawHeight) / 2;
gl.viewport(
Math.round(offsetX * pixelRatio),
Math.round(offsetY * pixelRatio),
Math.max(1, Math.round(drawWidth * pixelRatio)),
Math.max(1, Math.round(drawHeight * pixelRatio)),
);
gl.enable(gl.BLEND);
gl.blendFunc(gl.SRC_ALPHA, gl.ONE_MINUS_SRC_ALPHA);
gl.drawArrays(gl.TRIANGLE_STRIP, 0, 4);
},
dispose: () => {
gl.deleteTexture(maskTexture);
gl.deleteTexture(paletteTexture);
gl.deleteBuffer(buffer);
gl.deleteProgram(program);
},
};
}
function semanticPalettePixels(
host: HTMLElement,
classes: readonly RecordedEvidenceSemanticClass[],
palette: readonly RecordedEvidenceSemanticPaletteEntry[],
opacity: number,
): Uint8Array {
const pixels = new Uint8Array(256 * 4);
const declaredClassIds = new Set(
classes
.map((item) => item.id)
.filter((classId) => Number.isInteger(classId) && classId >= 0 && classId <= 255),
);
for (const entry of palette) {
if (!declaredClassIds.has(entry.classId)) continue;
const rgb = resolveRecordedEvidenceSemanticRgb(host, entry.color);
if (!rgb) continue;
const offset = entry.classId * 4;
pixels[offset] = rgb[0];
pixels[offset + 1] = rgb[1];
pixels[offset + 2] = rgb[2];
pixels[offset + 3] = Math.round(
clampOpacity(entry.opacity, 1) * clampOpacity(opacity, 0.46) * 255,
);
}
return pixels;
}
function renderSemanticMask2d(
canvas: HTMLCanvasElement,
mask: DecodedSemanticMask,
palette: Uint8Array,
width: number,
height: number,
pixelRatio: number,
) {
canvas.width = Math.max(1, Math.round(width * pixelRatio));
canvas.height = Math.max(1, Math.round(height * pixelRatio));
canvas.style.width = `${width}px`;
canvas.style.height = `${height}px`;
const context = canvas.getContext("2d");
if (!context) return;
context.setTransform(pixelRatio, 0, 0, pixelRatio, 0, 0);
context.clearRect(0, 0, width, height);
const colorCanvas = document.createElement("canvas");
colorCanvas.width = mask.width;
colorCanvas.height = mask.height;
const colorContext = colorCanvas.getContext("2d", { willReadFrequently: true });
if (!colorContext) return;
colorContext.drawImage(mask.source, 0, 0);
const imageData = colorContext.getImageData(0, 0, mask.width, mask.height);
for (let offset = 0; offset < imageData.data.length; offset += 4) {
const paletteOffset = (imageData.data[offset] ?? 0) * 4;
imageData.data[offset] = palette[paletteOffset] ?? 0;
imageData.data[offset + 1] = palette[paletteOffset + 1] ?? 0;
imageData.data[offset + 2] = palette[paletteOffset + 2] ?? 0;
imageData.data[offset + 3] = palette[paletteOffset + 3] ?? 0;
}
colorContext.putImageData(imageData, 0, 0);
const scale = Math.min(width / mask.width, height / mask.height);
const drawWidth = mask.width * scale;
const drawHeight = mask.height * scale;
context.imageSmoothingEnabled = false;
context.drawImage(
colorCanvas,
(width - drawWidth) / 2,
(height - drawHeight) / 2,
drawWidth,
drawHeight,
);
}
export function RecordedEvidenceSemanticMaskOverlay({
src,
prefetchSrcs = [],
imageWidth,
imageHeight,
classes,
palette,
opacity = 0.46,
ariaLabel,
}: RecordedEvidenceSemanticOverlay & {
imageWidth: number;
imageHeight: number;
}) {
const canvasRef = useRef<HTMLCanvasElement | null>(null);
const rendererRef = useRef<SemanticMaskRenderer | null | undefined>(undefined);
const lastReadyMaskRef = useRef<{ series: string; mask: DecodedSemanticMask } | null>(null);
const [rendererMode, setRendererMode] = useState<"webgl" | "2d">("webgl");
const [mask, setMask] = useState<DecodedSemanticMask | null>(null);
const [failure, setFailure] = useState<string | null>(null);
const expectedKey = semanticMaskKey(src, imageWidth, imageHeight);
const prefetchSignature = prefetchSrcs.join("\n");
const series = src.slice(0, Math.max(src.lastIndexOf("/"), 0));
if (lastReadyMaskRef.current?.series !== series) lastReadyMaskRef.current = null;
const exactMask = failure
? null
: mask?.key === expectedKey
? mask
: decodedMaskCache.get(expectedKey) ?? null;
if (exactMask) lastReadyMaskRef.current = { series, mask: exactMask };
const renderMask = exactMask ?? lastReadyMaskRef.current?.mask ?? null;
useEffect(() => {
setFailure(null);
const subscription = subscribeToSemanticMask(src, imageWidth, imageHeight);
let current = true;
void subscription.promise.then((decoded) => {
if (!current || decoded.key !== expectedKey) return;
setMask(decoded);
}).catch((error: unknown) => {
if (!current || (error instanceof DOMException && error.name === "AbortError")) return;
setFailure("Semantic mask не прошла проверку или декодирование.");
});
return () => {
current = false;
subscription.release();
};
}, [expectedKey, imageHeight, imageWidth, src]);
useEffect(() => {
const subscriptions = prefetchSignature
.split("\n")
.filter((candidate) => candidate && candidate !== src)
.slice(0, MASK_PREFETCH_LIMIT)
.map((candidate) => subscribeToSemanticMask(candidate, imageWidth, imageHeight));
for (const subscription of subscriptions) {
void subscription.promise
.catch(() => undefined)
.finally(subscription.release);
}
}, [imageHeight, imageWidth, prefetchSignature, src]);
useEffect(() => () => {
rendererRef.current?.dispose();
rendererRef.current = undefined;
}, [rendererMode]);
useEffect(() => {
const canvas = canvasRef.current;
if (!canvas || rendererMode !== "webgl") return;
const onContextLost = (event: Event) => {
event.preventDefault();
setRendererMode("2d");
};
canvas.addEventListener("webglcontextlost", onContextLost);
return () => canvas.removeEventListener("webglcontextlost", onContextLost);
}, [rendererMode]);
useEffect(() => {
const canvas = canvasRef.current;
const host = canvas?.parentElement;
if (!canvas || !host) return;
const render = () => {
const width = Math.max(host.clientWidth, 1);
const height = Math.max(host.clientHeight, 1);
const pixelRatio = Math.min(window.devicePixelRatio, 1.5);
if (rendererMode === "webgl" && rendererRef.current === undefined) {
rendererRef.current = createSemanticMaskRenderer(canvas);
if (!rendererRef.current) {
setRendererMode("2d");
return;
}
}
const renderer = rendererMode === "webgl" ? rendererRef.current : null;
if (!renderMask) {
if (renderer) {
renderer.clear(width, height, pixelRatio);
} else {
canvas.width = Math.max(1, Math.round(width * pixelRatio));
canvas.height = Math.max(1, Math.round(height * pixelRatio));
canvas.style.width = `${width}px`;
canvas.style.height = `${height}px`;
}
return;
}
const resolvedPalette = semanticPalettePixels(host, classes, palette, opacity);
if (renderer) {
try {
renderer.render(renderMask, resolvedPalette, width, height, pixelRatio);
} catch {
setRendererMode("2d");
}
} else {
renderSemanticMask2d(
canvas,
renderMask,
resolvedPalette,
width,
height,
pixelRatio,
);
}
};
const observer = new ResizeObserver(render);
observer.observe(host);
render();
return () => observer.disconnect();
}, [classes, expectedKey, imageHeight, imageWidth, opacity, palette, rendererMode, renderMask]);
return (
<>
<canvas
key={rendererMode}
ref={canvasRef}
className="recorded-evidence-semantic-mask-overlay"
role="img"
aria-label={ariaLabel}
aria-busy={!failure && !exactMask}
data-state={failure ? "error" : exactMask ? "ready" : renderMask ? "stale" : "loading"}
data-renderer={rendererMode}
style={{ zIndex: 1 }}
/>
{failure ? (
<div className="recorded-evidence-semantic-mask-overlay__error" role="alert">
{failure}
</div>
) : null}
</>
);
}
@@ -0,0 +1,134 @@
import { useEffect, useState } from "react";
import {
RecordedFmp4Player,
type RecordedObservationPlayback,
} from "../RecordedFmp4Player";
import type { ObservationSourceDescriptor } from "../../core/runtime/contracts";
import type { RecordedCameraAdmissionState } from "../../core/observation/recordedSessionAdmission";
import {
RecordedEvidenceBoxOverlay,
type RecordedEvidenceBox,
type RecordedEvidenceBoxTone,
} from "./RecordedEvidenceBoxOverlay";
import {
RecordedEvidenceSemanticMaskOverlay,
type RecordedEvidenceSemanticOverlay,
} from "./RecordedEvidenceSemanticMaskOverlay";
import {
RecordedEvidencePointCloudOverlay,
type RecordedEvidencePointCloudOverlayData,
} from "./RecordedEvidencePointCloudOverlay";
export type { RecordedEvidenceBox, RecordedEvidenceBoxTone };
export function RecordedEvidenceVideoScene({
source,
playback,
imageWidth,
imageHeight,
boxes,
overlaySeconds,
semanticOverlay,
pointCloudOverlay,
ariaLabel,
interactive = true,
segmentSequence,
segmentCount,
onPlaybackChange,
onPlayingRejected,
onAdmissionChange,
playbackAuthority = "media",
playbackTransport = "segmented",
recoverTimestampStalls = false,
}: {
source: ObservationSourceDescriptor;
playback: RecordedObservationPlayback;
imageWidth: number;
imageHeight: number;
boxes: readonly RecordedEvidenceBox[];
overlaySeconds?: number;
semanticOverlay?: RecordedEvidenceSemanticOverlay;
pointCloudOverlay?: RecordedEvidencePointCloudOverlayData;
ariaLabel: string;
interactive?: boolean;
segmentSequence?: number;
segmentCount?: number;
onPlaybackChange?: (playback: RecordedObservationPlayback) => void;
onPlayingRejected?: () => void;
onAdmissionChange?: (state: RecordedCameraAdmissionState) => void;
playbackAuthority?: "media" | "host";
playbackTransport?: "segmented" | "epoch-stream";
recoverTimestampStalls?: boolean;
}) {
const generation = source.delivery?.kind === "recorded-fmp4-manifest"
? source.delivery.manifestGenerationSha256
: "invalid";
const [admissionPhase, setAdmissionPhase] = useState<RecordedCameraAdmissionState["phase"]>(
"loading",
);
const [presentedSeconds, setPresentedSeconds] = useState<number | null>(null);
useEffect(() => {
setAdmissionPhase("loading");
setPresentedSeconds(null);
}, [generation, source.id]);
const handleAdmissionChange = (next: RecordedCameraAdmissionState) => {
setAdmissionPhase(next.phase);
onAdmissionChange?.(next);
};
const sourceReady = admissionPhase === "ready";
const overlaysPresented = sourceReady
&& presentedSeconds !== null
&& Math.abs(presentedSeconds - playback.currentSeconds) <= 0.25
&& (overlaySeconds === undefined || Math.abs(presentedSeconds - overlaySeconds) <= 0.25);
const handlePlaybackChange = (next: RecordedObservationPlayback) => {
setPresentedSeconds(next.currentSeconds);
// During a paused operator seek the existing media element can emit its old
// timestamp while the requested MSE window is being rebuilt. That stale
// callback must not undo the host target before the decoder reaches it.
if (!playback.playing && Math.abs(next.currentSeconds - playback.currentSeconds) > 0.35) {
return;
}
onPlaybackChange?.(next);
};
return (
<div className="recorded-evidence-video-scene">
<RecordedFmp4Player
source={source}
playback={playback}
interactive={interactive}
prepare
segmentSequence={segmentSequence}
segmentCount={segmentCount}
onPlaybackChange={handlePlaybackChange}
onPlayingRejected={onPlayingRejected}
onAdmissionChange={handleAdmissionChange}
playbackAuthority={playbackAuthority}
playbackTransport={playbackTransport}
recoverTimestampStalls={recoverTimestampStalls}
/>
{overlaysPresented && semanticOverlay ? (
<RecordedEvidenceSemanticMaskOverlay
{...semanticOverlay}
imageWidth={imageWidth}
imageHeight={imageHeight}
/>
) : null}
{overlaysPresented && pointCloudOverlay ? (
<RecordedEvidencePointCloudOverlay
imageWidth={imageWidth}
imageHeight={imageHeight}
overlay={pointCloudOverlay}
/>
) : null}
{overlaysPresented ? (
<RecordedEvidenceBoxOverlay
imageWidth={imageWidth}
imageHeight={imageHeight}
boxes={boxes}
ariaLabel={ariaLabel}
/>
) : null}
</div>
);
}
@@ -0,0 +1,116 @@
import { useEffect, useRef, useState } from "react";
import {
fetchCanonicalRecordedLabSpatialFrame,
type CanonicalRecordedLabSpatialFrame,
} from "../../core/laboratory/canonicalRecordedLabSpatial";
const FRAME_CACHE_LIMIT = 12;
/**
* Shared latest-request-wins scheduler for recorded LAB spatial evidence.
*
* A feature supplies only the sealed session identity and host-clock time.
* Cache ownership, identity fencing and stale-response suppression remain in
* the canonical instrument instead of being reimplemented per experiment.
*/
export function useCanonicalRecordedLabSpatialFrame({
sessionId,
generationSha256,
targetTimeNs,
}: {
sessionId: string;
generationSha256: string | null;
targetTimeNs: number;
}) {
const [frame, setFrame] = useState<CanonicalRecordedLabSpatialFrame | null>(null);
const [error, setError] = useState<string | null>(null);
const desiredRef = useRef<number | null>(null);
const runningRef = useRef(false);
const mountedRef = useRef(true);
const identityRef = useRef("");
const cacheRef = useRef(new Map<number, CanonicalRecordedLabSpatialFrame>());
const pumpRef = useRef<() => void>(() => undefined);
const identity = `${sessionId}:${generationSha256 ?? "unavailable"}`;
identityRef.current = identity;
pumpRef.current = () => {
if (runningRef.current || desiredRef.current === null || !generationSha256) return;
runningRef.current = true;
const requestIdentity = identity;
let settledTimeNs: number | null = null;
void (async () => {
while (
mountedRef.current
&& identityRef.current === requestIdentity
&& desiredRef.current !== null
) {
const requestedTimeNs = desiredRef.current;
const cached = cacheRef.current.get(requestedTimeNs);
try {
const next = cached ?? await fetchCanonicalRecordedLabSpatialFrame(
sessionId,
generationSha256,
requestedTimeNs,
);
if (!mountedRef.current || identityRef.current !== requestIdentity) break;
if (!cached) {
cacheRef.current.set(requestedTimeNs, next);
while (cacheRef.current.size > FRAME_CACHE_LIMIT) {
const oldest = cacheRef.current.keys().next().value as number | undefined;
if (oldest === undefined) break;
cacheRef.current.delete(oldest);
}
}
setFrame(next);
setError(null);
} catch (caught: unknown) {
if (!mountedRef.current || identityRef.current !== requestIdentity) break;
setError(caught instanceof Error
? caught.message
: "Spatial-слои записанной LAB недоступны.");
}
settledTimeNs = requestedTimeNs;
if (desiredRef.current === requestedTimeNs) break;
}
})().finally(() => {
runningRef.current = false;
if (
mountedRef.current
&& desiredRef.current !== null
&& (identityRef.current !== requestIdentity || desiredRef.current !== settledTimeNs)
) {
pumpRef.current();
}
});
};
useEffect(() => {
mountedRef.current = true;
return () => {
mountedRef.current = false;
desiredRef.current = null;
};
}, []);
useEffect(() => {
cacheRef.current.clear();
desiredRef.current = null;
setFrame(null);
setError(null);
}, [identity]);
useEffect(() => {
if (!generationSha256) return;
desiredRef.current = targetTimeNs;
const cached = cacheRef.current.get(targetTimeNs);
if (cached) {
setFrame(cached);
setError(null);
return;
}
pumpRef.current();
}, [generationSha256, identity, targetTimeNs]);
return { frame, error, loading: Boolean(generationSha256) && !frame && !error };
}
@@ -0,0 +1,41 @@
import { useState, type ReactNode } from "react";
import { Button, Icon } from "@nodedc/ui-react";
import type {
LaboratoryAnnotationAction,
LaboratoryViewAction,
} from "../../workspaces/contracts";
export function useLaboratoryAnnotationHeader(): {
control: ReactNode;
setAction: (action: LaboratoryAnnotationAction | null) => void;
setViewAction: (action: LaboratoryViewAction | null) => void;
} {
const [action, setAction] = useState<LaboratoryAnnotationAction | null>(null);
const [viewAction, setViewAction] = useState<LaboratoryViewAction | null>(null);
return {
setAction,
setViewAction,
control: action || viewAction ? (
<div className="laboratory-header-tools">
{viewAction ? (
<Button shape="pill" variant="secondary" onClick={viewAction.onClick}>
{viewAction.label}
</Button>
) : null}
{action ? (
<Button
size="compact"
shape="pill"
variant="accent"
icon={<Icon name="edit" size={16} />}
disabled={action.disabled}
onClick={action.onClick}
>
{action.label}
</Button>
) : null}
</div>
) : null,
};
}
@@ -0,0 +1,147 @@
import { useCallback, useEffect, useMemo, useState } from "react";
import type { RecordedObservationPlayback } from "../RecordedFmp4Player";
export interface RecordedEvidencePlaybackRange {
startSeconds: number;
endSeconds: number;
}
function validRange(
range: RecordedEvidencePlaybackRange | null,
): range is RecordedEvidencePlaybackRange {
return Boolean(
range
&& Number.isFinite(range.startSeconds)
&& Number.isFinite(range.endSeconds)
&& range.endSeconds > range.startSeconds,
);
}
export function clampRecordedEvidenceSeconds(
seconds: number,
range: RecordedEvidencePlaybackRange,
): number {
return Math.min(range.endSeconds, Math.max(range.startSeconds, seconds));
}
export function advanceRecordedEvidencePlayback(
playback: RecordedObservationPlayback,
elapsedSeconds: number,
range: RecordedEvidencePlaybackRange,
): RecordedObservationPlayback {
if (!playback.playing || !Number.isFinite(elapsedSeconds) || elapsedSeconds <= 0) {
return playback;
}
const next = playback.currentSeconds + elapsedSeconds * (playback.rate ?? 1);
if (next >= range.endSeconds) {
return { ...playback, currentSeconds: range.endSeconds, playing: false };
}
return { ...playback, currentSeconds: clampRecordedEvidenceSeconds(next, range) };
}
export function synchronizeRecordedEvidencePlayback(
current: RecordedObservationPlayback,
observed: RecordedObservationPlayback,
range: RecordedEvidencePlaybackRange,
): RecordedObservationPlayback {
if (!current.playing) {
// A paused transport also covers every explicit operator seek. Native
// callbacks from the previously displayed frame remain stale until the
// controlled video effect has applied that target, so they cannot move the
// shared LAB clock at all while the operator state is paused.
return current;
}
const currentSeconds = clampRecordedEvidenceSeconds(observed.currentSeconds, range);
return {
...current,
currentSeconds,
// The transport button owns play/pause intent. A native frame callback may
// still report the previous media state immediately after an operator
// command, so it must not restart playback. The sealed end is the only
// media-clock transition allowed to stop the shared LAB clock.
playing: currentSeconds >= range.endSeconds ? false : current.playing,
};
}
export function useRecordedEvidencePlayback(
range: RecordedEvidencePlaybackRange | null,
{ clock = "animation" }: { clock?: "animation" | "external" } = {},
) {
const [playback, setPlayback] = useState<RecordedObservationPlayback>({
currentSeconds: 0,
playing: false,
rate: 1,
});
useEffect(() => {
if (!validRange(range)) return;
setPlayback((current) => ({
...current,
currentSeconds: current.currentSeconds === 0
? range.startSeconds
: clampRecordedEvidenceSeconds(current.currentSeconds, range),
}));
}, [range]);
useEffect(() => {
if (!validRange(range) || !playback.playing || clock === "external") return;
let animationFrame = 0;
let previous = performance.now();
const tick = (now: number) => {
const elapsed = Math.max(0, now - previous);
if (elapsed >= 32) {
previous = now;
setPlayback((current) => {
if (!current.playing) return current;
return advanceRecordedEvidencePlayback(current, elapsed / 1_000, range);
});
}
animationFrame = window.requestAnimationFrame(tick);
};
animationFrame = window.requestAnimationFrame(tick);
return () => window.cancelAnimationFrame(animationFrame);
}, [clock, playback.playing, range]);
const seek = useCallback((seconds: number, pause = true) => {
if (!validRange(range)) return;
setPlayback((current) => ({
...current,
currentSeconds: clampRecordedEvidenceSeconds(seconds, range),
playing: pause ? false : current.playing,
}));
}, [range]);
const setPlaying = useCallback((playing: boolean) => {
if (!validRange(range)) return;
setPlayback((current) => ({
...current,
currentSeconds: playing && current.currentSeconds >= range.endSeconds
? range.startSeconds
: current.currentSeconds,
playing,
}));
}, [range]);
const setRate = useCallback((rate: number) => {
if (![0.5, 1, 2].includes(rate)) return;
setPlayback((current) => ({ ...current, rate }));
}, []);
const synchronize = useCallback((next: RecordedObservationPlayback) => {
if (!validRange(range) || !Number.isFinite(next.currentSeconds)) return;
// Animation-clock mode is retained only for non-media diagnostics. A
// recorded LAB with video uses the external media clock so spatial and
// overlays never advance past the frame the decoder actually presented.
if (clock === "animation") return;
setPlayback((current) => synchronizeRecordedEvidencePlayback(current, next, range));
}, [clock, range]);
return useMemo(() => ({
playback,
seek,
setPlaying,
setRate,
synchronize,
}), [playback, seek, setPlaying, setRate, synchronize]);
}
@@ -0,0 +1,381 @@
import {
Button,
Checker,
ColorField,
ControlRow,
InspectorSelectField,
RangeControl,
StatusBadge,
} from "@nodedc/ui-react";
import type {
MapGhostPinLabelMode,
MapViewDocument,
} from "../../core/map/mapView";
export function GhostPinSettingsPanel({
draft,
updateDraft,
onGenerate,
onClear,
}: {
draft: MapViewDocument;
updateDraft: (
update: (current: MapViewDocument) => MapViewDocument,
) => void;
onGenerate: () => void;
onClear: () => void;
}) {
const configuration = draft.view.ghostPins;
const profile = configuration.presentation;
return (
<div className="mission-map__inspector-controls">
<ControlRow label="Контур">
<StatusBadge tone="warning">Временная симуляция</StatusBadge>
</ControlRow>
<RangeControl
label="Количество пинов"
value={configuration.count}
min={1}
max={100}
step={1}
formatValue={(value) => `${value}`}
onChange={(count) => updateDraft((current) => {
current.view.ghostPins.count = count;
return current;
})}
/>
<RangeControl
label="Радиус от центра view"
value={configuration.radiusMeters}
min={100}
max={100_000}
step={100}
formatValue={(value) => value >= 1_000
? `${(value / 1_000).toFixed(value % 1_000 === 0 ? 0 : 1)} км`
: `${value} м`}
onChange={(radiusMeters) => updateDraft((current) => {
current.view.ghostPins.radiusMeters = radiusMeters;
return current;
})}
/>
<RangeControl
label="Максимальная скорость"
value={configuration.maximumSpeedMetersPerSecond}
min={1}
max={100}
step={1}
formatValue={(value) => `${value} м/с`}
onChange={(maximumSpeedMetersPerSecond) => updateDraft((current) => {
current.view.ghostPins.maximumSpeedMetersPerSecond =
maximumSpeedMetersPerSecond;
current.view.ghostPins.positions =
current.view.ghostPins.positions.map((pin) => ({
...pin,
speedMetersPerSecond: Math.min(
pin.speedMetersPerSecond,
maximumSpeedMetersPerSecond,
),
}));
return current;
})}
/>
<Checker
label="Симуляция движения"
checked={configuration.simulationEnabled}
onChange={(simulationEnabled) => updateDraft((current) => {
current.view.ghostPins.simulationEnabled = simulationEnabled;
return current;
})}
/>
<ControlRow label="Позиции">
<StatusBadge tone={configuration.positions.length ? "success" : "neutral"}>
{configuration.positions.length
? `${configuration.positions.length} на карте`
: "Не созданы"}
</StatusBadge>
</ControlRow>
<Button variant="secondary" size="compact" onClick={onGenerate}>
Разместить в текущем view
</Button>
<Button
variant="ghost"
size="compact"
disabled={configuration.positions.length === 0}
onClick={onClear}
>
Очистить позиции на карте
</Button>
<Checker
label="Показывать Ghost Pin"
checked={draft.view.layerVisibility.targets}
onChange={(checked) => updateDraft((current) => {
current.view.layerVisibility.targets = checked;
return current;
})}
/>
<ControlRow label="Цвет пина">
<ColorField
label="Цвет Ghost Pin"
value={profile.color}
onChange={(color) => updateDraft((current) => {
current.view.ghostPins.presentation.color = color;
return current;
})}
/>
</ControlRow>
<RangeControl
label="Прозрачность пина"
value={Math.round(profile.opacity * 100)}
min={0}
max={100}
step={1}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.ghostPins.presentation.opacity = value / 100;
return current;
})}
/>
<RangeControl
label="Высота таргета"
value={profile.stemHeightMeters}
min={100}
max={10_000}
step={50}
formatValue={(value) => `${value} м`}
onChange={(stemHeightMeters) => updateDraft((current) => {
current.view.ghostPins.presentation.stemHeightMeters = stemHeightMeters;
return current;
})}
/>
<RangeControl
label="Размер головки"
value={profile.headSizePx}
min={1}
max={32}
step={1}
formatValue={(value) => `${value} px`}
onChange={(headSizePx) => updateDraft((current) => {
current.view.ghostPins.presentation.headSizePx = headSizePx;
return current;
})}
/>
<RangeControl
label="Толщина стержня"
value={profile.stemWidthPx}
min={0.25}
max={12}
step={0.25}
formatValue={(value) => `${value} px`}
onChange={(stemWidthPx) => updateDraft((current) => {
current.view.ghostPins.presentation.stemWidthPx = stemWidthPx;
return current;
})}
/>
<ControlRow label="Цвет обводки">
<ColorField
label="Цвет обводки головки"
value={profile.outlineColor}
onChange={(outlineColor) => updateDraft((current) => {
current.view.ghostPins.presentation.outlineColor = outlineColor;
return current;
})}
/>
</ControlRow>
<RangeControl
label="Прозрачность обводки"
value={Math.round(profile.outlineOpacity * 100)}
min={0}
max={100}
step={1}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.ghostPins.presentation.outlineOpacity = value / 100;
return current;
})}
/>
<RangeControl
label="Толщина обводки"
value={profile.outlineWidthPx}
min={0}
max={8}
step={0.5}
formatValue={(value) => `${value} px`}
onChange={(outlineWidthPx) => updateDraft((current) => {
current.view.ghostPins.presentation.outlineWidthPx = outlineWidthPx;
return current;
})}
/>
<InspectorSelectField<MapGhostPinLabelMode>
label="Подпись"
value={profile.labelMode}
options={[
{
value: "attributes",
label: "Имя",
description: "Случайное числовое имя Ghost Pin",
},
{
value: "subject_id",
label: "ID",
description: "Стабильный синтетический идентификатор",
},
{
value: "none",
label: "Нет",
description: "Не показывать плашку",
},
]}
onChange={(labelMode) => updateDraft((current) => {
current.view.ghostPins.presentation.labelMode = labelMode;
return current;
})}
/>
<RangeControl
label="Насыщенность шрифта"
value={profile.labelFontWeight}
min={400}
max={700}
step={100}
formatValue={(value) => `${value}`}
onChange={(labelFontWeight) => updateDraft((current) => {
current.view.ghostPins.presentation.labelFontWeight = labelFontWeight;
return current;
})}
/>
<RangeControl
label="Размер подписи"
value={profile.labelSizePx}
min={8}
max={32}
step={1}
formatValue={(value) => `${value} px`}
onChange={(labelSizePx) => updateDraft((current) => {
current.view.ghostPins.presentation.labelSizePx = labelSizePx;
return current;
})}
/>
<ControlRow label="Цвет подписи">
<ColorField
label="Цвет текста подписи"
value={profile.labelColor}
onChange={(labelColor) => updateDraft((current) => {
current.view.ghostPins.presentation.labelColor = labelColor;
return current;
})}
/>
</ControlRow>
<ControlRow label="Фон плашки">
<ColorField
label="Цвет фона подписи"
value={profile.labelBackgroundColor}
onChange={(labelBackgroundColor) => updateDraft((current) => {
current.view.ghostPins.presentation.labelBackgroundColor =
labelBackgroundColor;
return current;
})}
/>
</ControlRow>
<RangeControl
label="Прозрачность плашки"
value={Math.round(profile.labelBackgroundOpacity * 100)}
min={0}
max={100}
step={1}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.ghostPins.presentation.labelBackgroundOpacity =
value / 100;
return current;
})}
/>
<RangeControl
label="Отступ плашки X"
value={profile.labelPaddingX}
min={0}
max={32}
step={1}
formatValue={(value) => `${value} px`}
onChange={(labelPaddingX) => updateDraft((current) => {
current.view.ghostPins.presentation.labelPaddingX = labelPaddingX;
return current;
})}
/>
<RangeControl
label="Отступ плашки Y"
value={profile.labelPaddingY}
min={0}
max={32}
step={1}
formatValue={(value) => `${value} px`}
onChange={(labelPaddingY) => updateDraft((current) => {
current.view.ghostPins.presentation.labelPaddingY = labelPaddingY;
return current;
})}
/>
<RangeControl
label="Смещение подписи X"
value={profile.labelOffsetX}
min={-100}
max={100}
step={1}
formatValue={(value) => `${value} px`}
onChange={(labelOffsetX) => updateDraft((current) => {
current.view.ghostPins.presentation.labelOffsetX = labelOffsetX;
return current;
})}
/>
<RangeControl
label="Смещение подписи Y"
value={profile.labelOffsetY}
min={-100}
max={100}
step={1}
formatValue={(value) => `${value} px`}
onChange={(labelOffsetY) => updateDraft((current) => {
current.view.ghostPins.presentation.labelOffsetY = labelOffsetY;
return current;
})}
/>
<RangeControl
label="Максимальная длина подписи"
value={profile.labelMaxLength}
min={1}
max={64}
step={1}
formatValue={(value) => `${value}`}
onChange={(labelMaxLength) => updateDraft((current) => {
current.view.ghostPins.presentation.labelMaxLength = labelMaxLength;
return current;
})}
/>
<RangeControl
label="Скрывать подпись выше"
value={profile.labelHideCameraHeightMeters}
min={1_000}
max={500_000}
step={1_000}
formatValue={(value) => `${Math.round(value / 1_000)} км`}
onChange={(labelHideCameraHeightMeters) => updateDraft((current) => {
current.view.ghostPins.presentation.labelHideCameraHeightMeters =
labelHideCameraHeightMeters;
return current;
})}
/>
<RangeControl
label="Скрывать таргет выше"
value={profile.targetHideCameraHeightMeters}
min={1_000}
max={500_000}
step={1_000}
formatValue={(value) => `${Math.round(value / 1_000)} км`}
onChange={(targetHideCameraHeightMeters) => updateDraft((current) => {
current.view.ghostPins.presentation.targetHideCameraHeightMeters =
targetHideCameraHeightMeters;
return current;
})}
/>
</div>
);
}
@@ -0,0 +1,708 @@
import {
Checker,
ColorField,
ControlRow,
Inspector,
RangeControl,
StatusBadge,
} from "@nodedc/ui-react";
import type {
MapInspectorSection,
MapViewDocument,
} from "../../core/map/mapView";
import type { useMapGatewayHealth } from "../../core/map/useMapGatewayHealth";
import { GhostPinSettingsPanel } from "./GhostPinSettingsPanel";
export const editableMapInspectorSections = new Set<MapInspectorSection>([
"base-terrain",
"atmosphere-light",
"buildings",
"ghost-pins",
"grid-lod",
"camera",
"tile-cache",
]);
export function MapSettingsInspector({
draft,
updateDraft,
gatewayHealth,
onGenerateGhostPins,
onClearGhostPins,
}: {
draft: MapViewDocument;
updateDraft: (
update: (current: MapViewDocument) => MapViewDocument,
) => void;
gatewayHealth: ReturnType<typeof useMapGatewayHealth>;
onGenerateGhostPins: () => void;
onClearGhostPins: () => void;
}) {
return (
<Inspector
singleOpen
sections={createInspectorSections(
draft,
updateDraft,
gatewayHealth,
onGenerateGhostPins,
onClearGhostPins,
)}
openSections={draft.view.inspectorOpenSections.filter(
(section) => editableMapInspectorSections.has(section),
)}
activeId={draft.view.inspectorOpenSections[0]}
onOpenSectionsChange={(sections) => {
updateDraft((current) => {
current.view.inspectorOpenSections = sections.filter(
(section): section is MapInspectorSection =>
editableMapInspectorSections.has(section as MapInspectorSection),
).slice(0, 1);
return current;
});
}}
/>
);
}
function createInspectorSections(
draft: MapViewDocument,
updateDraft: (
update: (current: MapViewDocument) => MapViewDocument,
) => void,
gatewayHealth: ReturnType<typeof useMapGatewayHealth>,
onGenerateGhostPins: () => void,
onClearGhostPins: () => void,
) {
const view = draft.view;
const settings = view.visualSettings;
return [
{
id: "base-terrain",
label: "Подложка и terrain",
description: "provider-neutral surface",
content: (
<div className="mission-map__inspector-controls">
<ControlRow label="Подложка">
<strong>Cesium World Imagery</strong>
</ControlRow>
<Checker
label="Спутниковая подложка"
checked={view.layerVisibility.imagery}
onChange={(checked) => updateDraft((current) => {
current.view.layerVisibility.imagery = checked;
return current;
})}
/>
<Checker
label="Terrain"
checked={view.layerVisibility.terrain}
onChange={(checked) => updateDraft((current) => {
current.view.layerVisibility.terrain = checked;
return current;
})}
/>
<RangeControl
label="Вертикальное преувеличение рельефа"
value={settings.terrainExaggeration * 100}
min={25}
max={300}
step={1}
formatValue={(value) => `${(value / 100).toFixed(2)}×`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.terrainExaggeration = value / 100;
return current;
})}
/>
<Checker
label="Монохромная поверхность"
checked={settings.monochromeEnabled}
onChange={(checked) => updateDraft((current) => {
current.view.visualSettings.monochromeEnabled = checked;
return current;
})}
/>
<ControlRow label="Цвет монохрома">
<ColorField
label="Цвет монохромной поверхности"
value={settings.monochromeColor}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.monochromeColor = value;
return current;
})}
/>
</ControlRow>
<RangeControl
label="Яркость"
value={settings.imageryBrightness}
min={0}
max={200}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.imageryBrightness = value;
return current;
})}
/>
<RangeControl
label="Контраст"
value={settings.imageryContrast}
min={0}
max={200}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.imageryContrast = value;
return current;
})}
/>
<RangeControl
label="Насыщенность"
value={settings.imagerySaturation}
min={0}
max={200}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.imagerySaturation = value;
return current;
})}
/>
<RangeControl
label="Гамма"
value={settings.imageryGamma}
min={0}
max={300}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.imageryGamma = value;
return current;
})}
/>
<RangeControl
label="Оттенок"
value={settings.imageryHue}
min={-180}
max={180}
formatValue={(value) => `${value}°`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.imageryHue = value;
return current;
})}
/>
<RangeControl
label="Прозрачность imagery"
value={settings.imageryAlpha}
min={0}
max={100}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.imageryAlpha = value;
return current;
})}
/>
<ControlRow label="Цвет планеты">
<ColorField
label="Цвет terrain без imagery"
value={settings.globeColor}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.globeColor = value;
return current;
})}
/>
</ControlRow>
<ControlRow label="Фон сцены">
<ColorField
label="Цвет фона сцены"
value={settings.backgroundColor}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.backgroundColor = value;
return current;
})}
/>
</ControlRow>
<RangeControl
label="Высота карты"
value={view.mapHeight}
min={420}
max={1080}
step={1}
formatValue={(value) => `${value} px`}
onChange={(value) => updateDraft((current) => {
current.view.mapHeight = value;
return current;
})}
/>
</div>
),
},
{
id: "atmosphere-light",
label: "Атмосфера и освещение",
description: "scene / color correction",
content: (
<div className="mission-map__inspector-controls">
<Checker
label="Показывать атмосферу"
checked={settings.atmosphereEnabled}
onChange={(checked) => updateDraft((current) => {
current.view.visualSettings.atmosphereEnabled = checked;
return current;
})}
/>
<RangeControl
label="Атмосфера: оттенок"
value={settings.atmosphereHue}
min={-100}
max={100}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.atmosphereHue = value;
return current;
})}
/>
<RangeControl
label="Атмосфера: насыщенность"
value={settings.atmosphereSaturation}
min={-100}
max={100}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.atmosphereSaturation = value;
return current;
})}
/>
<RangeControl
label="Атмосфера: яркость"
value={settings.atmosphereBrightness}
min={-100}
max={100}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.atmosphereBrightness = value;
return current;
})}
/>
<Checker
label="Туман"
checked={settings.fogEnabled}
onChange={(checked) => updateDraft((current) => {
current.view.visualSettings.fogEnabled = checked;
return current;
})}
/>
<RangeControl
label="Плотность тумана"
value={settings.fogDensity}
min={0}
max={100}
formatValue={(value) => `${(value / 10_000).toFixed(4)}`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.fogDensity = value;
return current;
})}
/>
<Checker
label="Солнечное освещение"
checked={settings.sunEnabled}
onChange={(checked) => updateDraft((current) => {
current.view.visualSettings.sunEnabled = checked;
return current;
})}
/>
<RangeControl
label="Час солнца"
value={settings.sunHour}
min={0}
max={24}
formatValue={(value) => `${value}:00 UTC`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.sunHour = value;
return current;
})}
/>
<RangeControl
label="Интенсивность света"
value={settings.sunIntensity}
min={0}
max={200}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.sunIntensity = value;
return current;
})}
/>
<Checker
label="Тени"
checked={settings.shadowsEnabled}
onChange={(checked) => updateDraft((current) => {
current.view.visualSettings.shadowsEnabled = checked;
return current;
})}
/>
</div>
),
},
{
id: "buildings",
label: "3D здания",
description: "3D Tiles / detail",
content: (
<div className="mission-map__inspector-controls">
<Checker
label="Показывать 3D здания"
checked={view.layerVisibility.buildings}
onChange={(checked) => updateDraft((current) => {
current.view.layerVisibility.buildings = checked;
return current;
})}
/>
<ControlRow label="Цвет">
<ColorField
label="Цвет зданий"
value={settings.buildingsColor}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.buildingsColor = value;
return current;
})}
/>
</ControlRow>
<RangeControl
label="Прозрачность"
value={Math.round(settings.buildingsOpacity * 100)}
min={0}
max={100}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.buildingsOpacity = value / 100;
return current;
})}
/>
<RangeControl
label="Детализация"
value={settings.buildingsMaximumScreenSpaceError}
min={4}
max={32}
formatValue={(value) => `SSE ${value}`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.buildingsMaximumScreenSpaceError = value;
return current;
})}
/>
</div>
),
},
{
id: "ghost-pins",
label: "Гост-пин",
description: "временная симуляция",
content: (
<GhostPinSettingsPanel
draft={draft}
updateDraft={updateDraft}
onGenerate={onGenerateGhostPins}
onClear={onClearGhostPins}
/>
),
},
{
id: "grid-lod",
label: "Сетка и LOD",
description: "first adapter control",
content: (
<div className="mission-map__inspector-controls">
<Checker
label="3D-сетка"
checked={view.layerVisibility.grid}
onChange={(checked) => updateDraft((current) => {
current.view.layerVisibility.grid = checked;
return current;
})}
/>
<Checker
label="LOD по высоте камеры"
checked={settings.gridLodEnabled}
onChange={(checked) => updateDraft((current) => {
current.view.visualSettings.gridLodEnabled = checked;
return current;
})}
/>
<RangeControl
label="Высота над поверхностью"
value={settings.gridHeightMeters}
min={0}
max={1000}
formatValue={(value) => `${value} м`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridHeightMeters = value;
return current;
})}
/>
<RangeControl
label="LOD 1: до высоты"
value={settings.gridLod1MaxHeightKm}
min={1}
max={50}
formatValue={(value) => `${value} км`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridLod1MaxHeightKm = value;
return current;
})}
/>
<RangeControl
label="LOD 1: шаг"
value={settings.gridLod1StepKm}
min={1}
max={10}
formatValue={(value) => `${value} км`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridLod1StepKm = value;
return current;
})}
/>
<RangeControl
label="LOD 2: до высоты"
value={settings.gridLod2MaxHeightKm}
min={10}
max={200}
formatValue={(value) => `${value} км`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridLod2MaxHeightKm = value;
return current;
})}
/>
<RangeControl
label="LOD 2: шаг"
value={settings.gridLod2StepKm}
min={1}
max={25}
formatValue={(value) => `${value} км`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridLod2StepKm = value;
return current;
})}
/>
<RangeControl
label="LOD 3: шаг"
value={settings.gridLod3StepKm}
min={5}
max={100}
formatValue={(value) => `${value} км`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridLod3StepKm = value;
return current;
})}
/>
<RangeControl
label="Радиус сетки"
value={settings.gridRadiusKm}
min={5}
max={150}
formatValue={(value) => `${value} км`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridRadiusKm = value;
return current;
})}
/>
<ControlRow label="Цвет линий">
<ColorField
label="Цвет линий сетки"
value={settings.gridColor}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridColor = value;
return current;
})}
/>
</ControlRow>
<RangeControl
label="Толщина линий"
value={settings.gridLineWidth}
min={1}
max={8}
formatValue={(value) => `${value} px`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridLineWidth = value;
return current;
})}
/>
<RangeControl
label="Прозрачность сетки"
value={settings.gridOpacity}
min={0}
max={100}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridOpacity = value;
return current;
})}
/>
<Checker
label="Точки в пересечениях"
checked={settings.gridDotsEnabled}
onChange={(checked) => updateDraft((current) => {
current.view.visualSettings.gridDotsEnabled = checked;
return current;
})}
/>
<RangeControl
label="Размер точки"
value={settings.gridDotsSize}
min={2}
max={28}
formatValue={(value) => `${value} px`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridDotsSize = value;
return current;
})}
/>
<ControlRow label="Цвет точек">
<ColorField
label="Цвет точек сетки"
value={settings.gridDotsColor}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridDotsColor = value;
return current;
})}
/>
</ControlRow>
<RangeControl
label="Прозрачность точек"
value={settings.gridDotsOpacity}
min={0}
max={100}
formatValue={(value) => `${value}%`}
onChange={(value) => updateDraft((current) => {
current.view.visualSettings.gridDotsOpacity = value;
return current;
})}
/>
</div>
),
},
{
id: "camera",
label: "Анимация камеры",
description: "geodesic spiral survey",
content: (
<div className="mission-map__inspector-controls">
<Checker
label="Разрешить анимацию камеры"
checked={settings.cameraAnimationEnabled}
onChange={(checked) => updateDraft((current) => {
current.view.visualSettings.cameraAnimationEnabled = checked;
return current;
})}
/>
<ControlRow label="Сохранённая позиция">
<StatusBadge tone={view.camera ? "success" : "neutral"}>
{view.camera ? "Есть" : "Не задана"}
</StatusBadge>
</ControlRow>
</div>
),
},
{
id: "tile-cache",
label: "TileCache",
description: "Platform Map Gateway",
content: (
<div
className="mission-map__inspector-controls"
data-health-code={gatewayHealth.code ?? undefined}
>
<Checker
label="Использовать общий TileCache"
checked={view.cacheIntent.enabled}
onChange={(checked) => updateDraft((current) => {
current.view.cacheIntent.enabled = checked;
return current;
})}
/>
<Checker
label="Не перезаписывать существующие тайлы"
checked={view.cacheIntent.noOverwrite}
disabled={!view.cacheIntent.enabled}
onChange={(checked) => updateDraft((current) => {
current.view.cacheIntent.noOverwrite = checked;
return current;
})}
/>
<CacheHealth health={gatewayHealth} />
</div>
),
},
];
}
function CacheHealth({
health,
}: {
health: ReturnType<typeof useMapGatewayHealth>;
}) {
if (health.state === "loading" || health.state === "idle") {
return (
<ControlRow label="Состояние">
<StatusBadge tone="neutral">Проверяем</StatusBadge>
</ControlRow>
);
}
if (!health.snapshot) {
return (
<ControlRow label="Состояние">
<StatusBadge tone="danger">Недоступен</StatusBadge>
</ControlRow>
);
}
const { cache } = health.snapshot;
return (
<dl className="mission-map__cache-health">
<div>
<dt>Хранилище</dt>
<dd>
<StatusBadge tone={cache.persistent ? "success" : "warning"}>
{cache.persistent ? "Постоянное" : "Временное"}
</StatusBadge>
</dd>
</div>
<div>
<dt>Объекты</dt>
<dd>{cache.entries.toLocaleString("ru-RU")}</dd>
</div>
<div>
<dt>Объём</dt>
<dd>
{formatBytes(cache.bytes)}
{cache.maxBytes === null ? "" : ` / ${formatBytes(cache.maxBytes)}`}
</dd>
</div>
<div>
<dt>Заполнение</dt>
<dd>
<StatusBadge
tone={
cache.atCapacity || health.state === "stale"
? "warning"
: "success"
}
>
{cache.atCapacity
? "Лимит"
: health.state === "stale"
? "Устарело"
: "Норма"}
</StatusBadge>
</dd>
</div>
</dl>
);
}
function formatBytes(value: number): string {
if (value < 1024) return `${value} Б`;
const units = ["КБ", "МБ", "ГБ", "ТБ"];
let amount = value / 1024;
let unit = units[0];
for (let index = 1; index < units.length && amount >= 1024; index += 1) {
amount /= 1024;
unit = units[index];
}
return `${amount.toFixed(amount >= 10 ? 1 : 2)} ${unit}`;
}
@@ -0,0 +1,59 @@
import type {MapVisualSettings} from '../../core/map/mapView';
import type {CesiumMapRendererProps} from '@nodedc/map-cesium-react';
export function mapPresentation(settings:MapVisualSettings):CesiumMapRendererProps['settings'] {
return {
atmosphere_enabled: settings.atmosphereEnabled,
atmosphere_hue: settings.atmosphereHue,
atmosphere_saturation:
settings.atmosphereSaturation,
atmosphere_brightness:
settings.atmosphereBrightness,
fog_enabled: settings.fogEnabled,
fog_density: settings.fogDensity,
sun_enabled: settings.sunEnabled,
sun_hour: settings.sunHour,
sun_intensity: settings.sunIntensity,
shadows_enabled: settings.shadowsEnabled,
monochrome_enabled: settings.monochromeEnabled,
monochrome_color: settings.monochromeColor,
imagery_brightness: settings.imageryBrightness,
imagery_contrast: settings.imageryContrast,
imagery_saturation: settings.imagerySaturation,
imagery_gamma: settings.imageryGamma,
imagery_hue: settings.imageryHue,
imagery_alpha: settings.imageryAlpha,
globe_color: settings.globeColor,
background_color: settings.backgroundColor,
terrain_exaggeration:
settings.terrainExaggeration,
buildings_color: settings.buildingsColor,
buildings_opacity: settings.buildingsOpacity,
buildings_maximum_screen_space_error:
settings.buildingsMaximumScreenSpaceError,
grid_lod_enabled: settings.gridLodEnabled,
grid_height_meters: settings.gridHeightMeters,
grid_lod_1_max_height_km:
settings.gridLod1MaxHeightKm,
grid_lod_1_step_km:
settings.gridLod1StepKm,
grid_lod_2_max_height_km:
settings.gridLod2MaxHeightKm,
grid_lod_2_step_km:
settings.gridLod2StepKm,
grid_lod_3_step_km:
settings.gridLod3StepKm,
grid_radius_km: settings.gridRadiusKm,
grid_line_width: settings.gridLineWidth,
grid_color: settings.gridColor,
grid_opacity: settings.gridOpacity,
grid_dots_enabled:
settings.gridDotsEnabled,
grid_dots_size: settings.gridDotsSize,
grid_dots_color: settings.gridDotsColor,
grid_dots_opacity:
settings.gridDotsOpacity,
camera_animation_enabled:
settings.cameraAnimationEnabled,
};
}
@@ -0,0 +1,21 @@
import { Button, LoadingRegion, Window } from "@nodedc/ui-react";
import type { RouteCheck } from "../../core/missions/planner";
export function MissionCheckWindow({ open, onClose, busy, error, report, run }: {
open: boolean; onClose: () => void; busy: boolean; error: string | null; report: RouteCheck | null; run: () => void;
}) {
return <Window open={open} title="Проверка маршрута" size="md" onClose={onClose}><div className="mission-planner__check">
<p>Проверка сохранённой записи и выбранного участка. Новый проход со сканером для этой проверки не требуется.</p>
<LoadingRegion loading={busy} label="Проверка исходных данных">
{error && <p role="alert">{error}</p>}
{report && <><dl>
<div><dt>Исходная запись</dt><dd>{report.source_verified ? "Контрольные суммы совпадают" : "Недоступна"}</dd></div>
<div><dt>Версия черновика</dt><dd>{report.revision}</dd></div>
<div><dt>Длина маршрута</dt><dd>{report.length_m.toFixed(2)} м</dd></div>
<div><dt>Положения сканера</dt><dd>{report.pose_count.toLocaleString("ru-RU")}</dd></div>
<div><dt>Максимальный шаг</dt><dd>{report.max_step_m.toFixed(2)} м</dd></div></dl>
{report.warnings.map(w => <p key={w}>{w}</p>)}
<p>Совмещение с повторным проходом не выполнялось. Записанная траектория описывает движение сканера; проходимость для аппарата по ней не проверена.</p></>}
<Button disabled={busy} onClick={run}>{report ? "Повторить проверку" : "Начать проверку"}</Button>
</LoadingRegion>
</div></Window>;
}
@@ -0,0 +1,29 @@
import { useEffect, useMemo, useState } from "react";
import { RangeControl } from "@nodedc/ui-react";
import { routeLength, type PlanningPose, type PlanningSource } from "../../core/missions/planner";
/** Equal-axis plan projection; the moving marker is an archive pose, not localization. */
export function MissionRoutePreview({ source, poses }: { source: PlanningSource; poses: PlanningPose[] }) {
const [cursor, setCursor] = useState(0);
useEffect(() => setCursor(0), [poses]);
const projection = useMemo(() => {
let xmin = Infinity, xmax = -Infinity, ymin = Infinity, ymax = -Infinity;
for (const p of (poses.length ? poses : source.poses)) { xmin = Math.min(xmin, p.position[0]); xmax = Math.max(xmax, p.position[0]); ymin = Math.min(ymin, p.position[1]); ymax = Math.max(ymax, p.position[1]); }
const scale = Math.min(720 / Math.max(1, xmax - xmin), 400 / Math.max(1, ymax - ymin));
const project = (p: PlanningPose) => [400 + (p.position[0] - (xmin + xmax) / 2) * scale, 240 - (p.position[1] - (ymin + ymax) / 2) * scale];
const line = (items: PlanningPose[]) => items.filter((_, i) => i % Math.max(1, Math.ceil(items.length / 5000)) === 0 || i === items.length - 1).map(p => project(p).join(",")).join(" ");
return { project, reference: line(source.poses), selected: line(poses), scale };
}, [source, poses]);
const point = poses[Math.min(cursor, poses.length - 1)];
if (!point) return <div className="session-overview__empty">Выберите участок траектории.</div>;
const [x, y] = projection.project(point);
return <div className="mission-route-preview"><h2>Выбранный маршрут · вид сверху</h2>
<svg viewBox="0 0 800 480" role="img" aria-label="Траектория записи и выбранный маршрут">
<polyline points={projection.reference} className="mission-route-preview__reference" fill="none" />
<polyline points={projection.selected} className="mission-route-preview__selected" fill="none" />
<circle cx={x} cy={y} r="6" className="mission-route-preview__cursor" />
<path d="M40 450h100" className="mission-route-preview__selected" /><text x="40" y="438">{(100 / projection.scale).toFixed(1)} м</text>
</svg><p>Путь: {routeLength(poses).toFixed(2)} м · {poses.length.toLocaleString("ru-RU")} положений · X/Y, масштаб осей одинаковый</p>
<RangeControl label="Положение на маршруте" value={Math.min(cursor, poses.length - 1) + 1} min={1} max={poses.length} step={1} formatValue={n => `${n} / ${poses.length}`} onChange={n => setCursor(n - 1)} />
<p>Кадр {point.index + 1} · X {point.position[0].toFixed(2)} · Y {point.position[1].toFixed(2)} · Z {point.position[2].toFixed(2)} м</p>
</div>;
}
@@ -0,0 +1,12 @@
import type {ReactNode} from "react";
import { Button, LoadingRegion } from "@nodedc/ui-react";
import { useSessionOverview } from "../../core/observation/useSessionOverview";
import { SessionOverviewScene } from "../observation/SessionOverviewScene";
export function MissionZonePreview({ sessionId, toolbar }: { sessionId: string; toolbar?:ReactNode }) {
const { data, error, retry } = useSessionOverview(sessionId);
const pending = !error && (!data || data.state === "queued" || data.state === "preparing");
const failure = error || (data?.state === "error" ? data.message : null);
if (pending) return <LoadingRegion loading label="Подготовка облака зоны" className="mission-planner__zone-loading" />;
if (failure || !data?.scene_url) return <div className="session-overview__empty"><span>{failure || "Облако записи недоступно."}</span><Button onClick={retry}>Повторить</Button></div>;
return <SessionOverviewScene sourceUrl={data.scene_url} toolbar={toolbar} hideTitle />;
}
@@ -0,0 +1,32 @@
import {useEffect,useState,type ReactNode} from 'react';
import {Button,LoadingRegion,StatusBadge,Window} from '@nodedc/ui-react';
import {useDevicePluginHost} from '../../core/device-plugins/DevicePluginHost';
import {planningTestTerminal,usePlanningTest} from '../../core/missions/PlanningTestContext';
/** Wrap the existing plugin connection flow, retaining its acquisition authority. */
export function PlanningConnectionWindow({children}:{children:ReactNode}){
const p=usePlanningTest(); const [open,setOpen]=useState(true);
const {selection,registry,selectModel,selectionTransitionPending}=useDevicePluginHost();
useEffect(()=>{
if(!p.selected||!p.test||selection||selectionTransitionPending)return;
const models=registry.models.filter(m=>m.plugin.manifest.metadata.id===p.test!.plugin_id);
if(models.length===1)void selectModel(models[0].model.id);
},[p.selected,p.test?.plugin_id,selection,registry,selectModel,selectionTransitionPending]);
if(!p.selected||!p.test)return <>{children}</>;
const t=p.test, terminal=planningTestTerminal(t);
const details=<><StatusBadge tone="neutral">Профиль · Планирование</StatusBadge>
<p>{t.draft.name} · эталон {t.draft.zone.label} · {t.draft.route.length_m.toFixed(1)} м</p>
<p>Укажите новое имя проекта сканера. Неподвижная калибровка просматривает весь выбранный маршрут; после калибровки сканера оставайтесь на месте до статуса «Сопровождение». Если совпадение не найдено или неоднозначно, сцена сообщит причину и не начнёт сопровождение.</p></>;
return <div className="mission-planner__check">
{details}<p>{t.message}</p>{p.error&&<p role="alert">{p.error}</p>}
<div className="mission-planner__actions"><Button onClick={()=>setOpen(true)}>Подключение сканера</Button>
{t.state==='running'&&t.planning_phase==='lost'&&!t.tracking_established&&<Button loading={p.busy} onClick={()=>void p.retryInitialization()}>Переинициализировать</Button>}
{!terminal&&<Button loading={p.busy} onClick={()=>void p.finish()}>Завершить исследование</Button>}</div>
<Window open={open} title="Подключение сканера · Планирование" size="lg" className="planning-connection" onClose={()=>setOpen(false)}>
<div className="mission-planner__check">{details}
{t.state==='preparing'?<LoadingRegion loading label="Подготовка эталонного участка" />
: terminal?<p>{t.message}</p>:children}
</div>
</Window>
</div>;
}
@@ -0,0 +1,105 @@
import {useEffect,useRef,useState} from 'react';
import {Button,LoadingRegion,RangeControl} from '@nodedc/ui-react';
import {createIsolatedRerunHost} from '../rerun/isolatedRerunHost';
import {plannerBase} from '../../core/missions/planner';
import {startPlanningSceneStream} from '../../core/missions/planningSceneStream';
import {createPlanningPresentationReporter} from '../../core/missions/planningPresentationTelemetry';
function nextAnimationFrame(limitMs=500):Promise<number|null>{
return new Promise(resolve=>{
let frame:number|undefined,settled=false;
const finish=(value:number|null)=>{
if(settled)return;
settled=true;
if(frame!==undefined&&value===null)cancelAnimationFrame(frame);
clearTimeout(timeout);resolve(value);
};
const timeout=setTimeout(()=>finish(null),limitMs);
frame=requestAnimationFrame(()=>finish(performance.now()));
});
}
/** One persistent viewer/channel. Updates replace entities without resetting the camera. */
type HeightBounds={min:number;max:number};
const CLIP_CEILING_M=80;
export function PlanningLiveScene({runId,options={},active=false,revision=0,heightBounds=null}:{runId:string;options?:Record<string,string|number|boolean>;active?:boolean;revision?:number;heightBounds?:HeightBounds|null}){
const optionsRef=useRef(options);optionsRef.current=options;
const stateRef=useRef({active,revision});stateRef.current={active,revision};
const ceilingRef=useRef<number|null>(null);
const boundsRef=useRef<{min:number;max:number}|null>(null);
const host=useRef<HTMLDivElement>(null);
const [state,setState]=useState('loading'),[retry,setRetry]=useState(0);
const [bounds,setBounds]=useState<{min:number;max:number}|null>(null);
const [ceiling,setCeiling]=useState<number|null>(null);
useEffect(()=>{
ceilingRef.current=null;
const next=heightBounds&&Number.isFinite(heightBounds.min)&&Number.isFinite(heightBounds.max)&&heightBounds.max>heightBounds.min?heightBounds:null;
boundsRef.current=next;
setBounds(next);setCeiling(null);
},[runId,heightBounds?.min,heightBounds?.max]);
useEffect(()=>{
if(!host.current)return;
let disposed=false,sceneAvailable=false,stopStream:(()=>void)|undefined;
const reporter=createPlanningPresentationReporter({
url:`${plannerBase}/live-tests/${runId}/presentation-observations`,
});
const runtime=createIsolatedRerunHost(host.current);setState('loading');
const timeout=setTimeout(()=>{if(!disposed){setState('error');stopStream?.();runtime.dispose();}},60000);
void runtime.ready.then(async({viewer,mount})=>{
if(disposed)return;
await viewer.start(null,mount,{width:'100%',height:'100%',hide_welcome_screen:true,enable_history:false,allow_fullscreen:false});
if(disposed)return;
const channel=viewer.open_channel('planning-'+runId);
viewer.on('recording_open',()=>{if(!disposed&&sceneAvailable){clearTimeout(timeout);setState('ready');}});
stopStream=startPlanningSceneStream({
url:`${plannerBase}/live-tests/${runId}/scene-delta.rrd`,
snapshot:()=>({...stateRef.current,options:{...optionsRef.current,
...(ceilingRef.current===null?{}:{ceiling_m:ceilingRef.current})}}),
apply:async(bytes,delivery)=>{
if(disposed)return;
if(delivery.heightMinM!==null&&delivery.heightMaxM!==null&&delivery.heightMaxM>delivery.heightMinM){
const next={min:delivery.heightMinM,max:delivery.heightMaxM};
const previous=boundsRef.current;
if(!previous||previous.min!==next.min||previous.max!==next.max){
boundsRef.current=next;setBounds(next);
if(ceilingRef.current!==null&&(ceilingRef.current<next.min||ceilingRef.current>next.max)){
ceilingRef.current=null;setCeiling(null);
}
}
}
sceneAvailable=true;
const admissionStarted=performance.now();
channel.send_rrd(bytes);
const admissionEnded=performance.now();
for(const panel of ['top','blueprint','selection','time'] as const)viewer.override_panel_state(panel,'hidden');
if(viewer.get_active_recording_id()){clearTimeout(timeout);setState('ready');}
// Rerun exposes no canvas-paint receipt. Two bounded browser frame
// opportunities are retained as an explicit proxy, never as a GPU claim.
const first=await nextAnimationFrame();
const second=first===null?null:await nextAnimationFrame();
if(!disposed)reporter.record(delivery,{
rerunAdmissionMs:admissionEnded-admissionStarted,
firstAnimationFrameMs:first===null?null:first-admissionEnded,
secondAnimationFrameMs:second===null?null:second-admissionEnded,
});
},
error:()=>{sceneAvailable=false;if(!disposed)setState('error');},
});
}).catch(()=>{if(!disposed){clearTimeout(timeout);setState('error');}});
return()=>{disposed=true;stopStream?.();reporter.dispose();clearTimeout(timeout);runtime.dispose();};
},[runId,retry]);
const sourceBounds=bounds??heightBounds;
const rangeBounds=sourceBounds?{min:Math.min(sourceBounds.min,0),max:CLIP_CEILING_M}:null;
return <LoadingRegion loading={state==='loading'} label="Загрузка эталона и нового прохода" className="planning-live__scene">
<div ref={host} className="session-overview__runtime rerun-single-view-content" style={{visibility:state==='ready'?'visible':'hidden'}} />
{rangeBounds&&state==='ready'&&<div className="session-overview__height">
<RangeControl orientation="vertical" limitSide="left" label="Срез" value={ceiling??rangeBounds.max} min={rangeBounds.min} max={rangeBounds.max} step="any"
formatValue={value=>`${value.toFixed(1).replace('.',',')} м`} formatLimit={value=>value.toFixed(1).replace('.',',')}
onChange={value=>{
const next=value>=rangeBounds.max-Math.max(1,rangeBounds.max-rangeBounds.min)*1e-9?null:value;
ceilingRef.current=next;setCeiling(next);
}}/>
</div>}
{state==='error'&&<div className="session-overview__empty"><span>Обновление сцены недоступно.</span><Button onClick={()=>setRetry(v=>v+1)}>Повторить подключение сцены</Button></div>}
</LoadingRegion>;
}
@@ -0,0 +1,25 @@
import { Inspector, Icon, StatusBadge } from '@nodedc/ui-react';
import { planningProjectStatus, type PlanningProjectDetail } from '../../core/missions/planningProjects';
export function PlanningProjectResult({project:p}:{project:PlanningProjectDetail}) {
const r=p.result;
return <Inspector variant="panel" defaultOpen={['sources','result']} sections={[
{id:'sources',label:'Проект',icon:<Icon name="file"/>,content:<div className="inspector-control-stack">
<p>{p.name}</p><small>{new Date(p.created_at_utc).toLocaleString('ru-RU')}</small>
<dl><div><dt>Эталон</dt><dd>{p.reference_label}</dd></div><div><dt>Повторный проход</dt><dd>{p.query_label??'—'}</dd></div>
<div><dt>Участок эталона</dt><dd>{p.draft.route.length_m.toFixed(2)} м</dd></div></dl>
</div>},
{id:'result',label:'Результат',icon:<Icon name="activity"/>,content:<div className="inspector-control-stack">
<StatusBadge tone={r?.status==='rejected'?'warning':'neutral'}>{planningProjectStatus(p)}</StatusBadge>
{r?<><dl><div><dt>Точки в пределах 0,5 м</dt><dd>{(r.overlap*100).toFixed(1)}%</dd></div>
<div><dt>Расхождение поверхностей</dt><dd>{r.inlier_rmse_m==null?'—':`${r.inlier_rmse_m.toFixed(3)} м`}</dd></div>
{r.correction_m!=null&&<div><dt>Уточнение привязки</dt><dd>{r.correction_m.toFixed(2)} м · {r.correction_deg.toFixed(1)}°</dd></div>}
{r.registration_seconds!=null&&<div><dt>Расчёт</dt><dd>{r.registration_seconds.toFixed(2)} с</dd></div>}
</dl><small>Совпадение поверхностей не является измеренной точностью положения.</small></>:<p>{p.message?`Сохранённое сообщение: ${p.message}`:'Расчёт совмещения ещё не выполнен.'}</p>}
{p.evidence_relation==='same_recording'&&<small>Оба участка из одной записи: внутренняя проверка общей карты.</small>}
{p.scene_note&&p.scene_url&&<small>{p.scene_note}</small>}
{r?.reasons.map(reason=><small key={reason}>{reason}</small>)}
{!p.scene_url&&r&&<small>Сохранённое совмещённое облако недоступно.</small>}
</div>},
]}/>;
}
@@ -0,0 +1,47 @@
import { useState } from 'react';
import { ConfirmationModal, Icon, Select, ToastStack } from '@nodedc/ui-react';
import { planningProjectDeletable, planningProjectStatus, type PlanningProject } from '../../core/missions/planningProjects';
export function PlanningProjectSelect({items, value, disabled, onChange, onRemove}: {
items: PlanningProject[];
value: string;
disabled?: boolean;
onChange: (key: string) => void;
onRemove: (project: PlanningProject) => Promise<void>;
}) {
const [target, setTarget] = useState<PlanningProject | null>(null);
const [error, setError] = useState<string | null>(null);
const [busy, setBusy] = useState(false);
return <>
<Select label="Совмещённые маршруты" value={value} disabled={disabled || busy} searchable
options={[{value: '', label: 'Совмещённые маршруты'}, ...items.map(item => ({
value: item.key, label: item.name,
description: `${new Date(item.created_at_utc).toLocaleString('ru-RU')} · ${planningProjectStatus(item)}${item.query_label ? ` · ${item.query_label}` : ''}`,
action: {
label: `Удалить совмещённый маршрут ${item.name} · ${new Date(item.created_at_utc).toLocaleString('ru-RU')}`,
icon: <Icon name="trash" />,
tone: 'danger' as const,
disabled: !planningProjectDeletable(item),
onAction: () => { setError(null); setTarget(item); },
},
}))]}
onChange={key => { if (key) onChange(key); }} />
<ConfirmationModal open={target !== null} title="Удалить совмещённый маршрут?"
description={target ? <>
<strong>{target.name}</strong>
<p>{new Date(target.created_at_utc).toLocaleString('ru-RU')} · {planningProjectStatus(target)}</p>
<p>Проект будет удалён из списка совмещённых маршрутов. Эталон, запись прохода и сохранённые отчёты останутся на диске. Другие проекты не изменятся.</p>
</> : null}
confirmLabel="Удалить маршрут" pendingLabel="Удаление…" danger
onClose={() => { if (!busy) setTarget(null); }}
onConfirm={async () => {
if (!target || busy) return;
setBusy(true); setError(null);
try { await onRemove(target); setTarget(null); }
catch (e) { setError(e instanceof Error ? e.message : 'Не удалось удалить проект. Повторите попытку.'); }
finally { setBusy(false); }
}} />
<ToastStack items={error ? [{id: 'planning-project-delete-error', tone: 'error', title: 'Маршрут не удалён', description: error}] : []}
onDismiss={() => setError(null)} />
</>;
}
@@ -0,0 +1,53 @@
import { Button, Icon, Inspector, InspectorSelectField, LoadingRegion, RangeControl, SegmentedControl, TextField } from '@nodedc/ui-react';
import { endAtDistance, indexAtDistance, routeLength, canSelectSession, canStartPlanningRoute } from '../../core/missions/planner';
import type { useMissionPlanner } from '../../core/missions/useMissionPlanner';
import type { useRegistrationTest } from '../../core/missions/useRegistrationTest';
export function PlanningProjectSettings({p,t,mode,setMode,onStart,starting}:{
p:ReturnType<typeof useMissionPlanner>; t:ReturnType<typeof useRegistrationTest>;
mode:'scanner'|'recording';setMode:(mode:'scanner'|'recording')=>void;onStart:()=>void;starting:boolean;
}) {
const disabled=p.busy||starting;
const length=routeLength(p.poses);
return <Inspector variant="panel" defaultOpen={['project','zone','route','query']} sections={[
{id:'project',label:'Проект',icon:<Icon name="file"/>,content:<div className="inspector-control-stack">
<TextField label="Название проекта" placeholder="Название совмещения" value={p.name} maxLength={120} disabled={disabled} onChange={e=>p.setName(e.target.value)}/>
</div>},
{id:'zone',label:'Эталон',icon:<Icon name="globe"/>,content:<div className="inspector-control-stack">
<InspectorSelectField label="Сохранённая запись" searchable value={p.sessionId} options={p.options} disabled={disabled||p.catalogBusy} onChange={p.chooseSource}/>
{p.cursor&&<Button disabled={p.catalogBusy} onClick={()=>void p.loadMore()}>Ещё записи</Button>}
{p.source&&<small>{p.source.poses.length.toLocaleString('ru-RU')} положений · {p.source.path_m.toFixed(2)} м</small>}
</div>},
{id:'route',label:'Участок эталона',icon:<Icon name="plan"/>,content:<div className="inspector-control-stack">
{p.source&&!p.sourceChanged?<>
<RangeControl label="Начало участка" value={p.source.poses[p.start]?.distance_m??0} min={0} max={p.source.poses[p.source.poses.length-2].distance_m} step="any" disabled={disabled}
formatValue={n=>`${n.toFixed(1)} м`} onChange={distance=>{const n=indexAtDistance(p.source!,distance,0,p.source!.poses.length-2);p.setStart(n);if(n>=p.end)p.setEnd(n+1);}}/>
<RangeControl label="Конец участка" value={p.source.poses[p.end]?.distance_m??0} min={p.source.poses[p.start+1]?.distance_m??0} max={p.source.path_m} step="any" disabled={disabled}
formatValue={n=>`${n.toFixed(1)} м`} onChange={distance=>p.setEnd(indexAtDistance(p.source!,distance,p.start+1,p.source!.poses.length-1,true))}/>
<Button disabled={disabled} onClick={()=>p.setEnd(endAtDistance(p.source!,p.start,30))}>30 м от начала участка</Button>
<Button disabled={disabled} onClick={()=>{p.setStart(0);p.setEnd(p.source!.poses.length-1);}}>Вся траектория</Button>
<InspectorSelectField label="Направление" value={p.direction} onChange={p.setDirection} disabled={disabled} options={[{value:'forward',label:'По записи'},{value:'reverse',label:'В обратную сторону'}]}/>
<small>{length.toFixed(2)} м · {p.poses.length.toLocaleString('ru-RU')} положений</small>
</>:<p>Выберите сохранённую запись эталона.</p>}
</div>},
{id:'query',label:'Повторный проход',icon:<Icon name="activity"/>,content:<div className="inspector-control-stack">
<SegmentedControl label="Источник повторного прохода" value={mode} onChange={setMode} items={[{value:'scanner',label:'Новый проход',disabled},{value:'recording',label:'Из записи',disabled}]}/>
{mode==='scanner'?<p>После запуска откроется подключение сканера. Новый проход записывается отдельным проектом.</p>:<>
<InspectorSelectField label="Повторная запись" value={t.sessionId} disabled={disabled} searchable onChange={t.setSessionId}
options={[{value:'',label:'Выберите повторный проход'},...p.sessions.filter(canSelectSession).map(s=>({value:s.id,label:s.label,description:s.id===p.sessionId?'Та же запись · внутренняя проверка':'Сохранённые облако и траектория'}))]}/>
<LoadingRegion loading={t.loading} label="Подготовка повторного прохода">
{t.source&&<div className="inspector-control-stack">
<RangeControl label="Начало повторного участка" min={0} max={t.source.poses[t.source.poses.length-2].distance_m} step="any" value={t.source.poses[t.start].distance_m} disabled={disabled} formatValue={n=>`${n.toFixed(1)} м`}
onChange={n=>{const start=indexAtDistance(t.source!,n,0,t.source!.poses.length-2);t.setStart(start);t.setEnd(endAtDistance(t.source!,start,20));}}/>
<RangeControl label="Конец повторного участка" min={t.source.poses[t.start+1].distance_m} max={t.source.path_m} step="any" value={t.source.poses[t.end].distance_m} disabled={disabled} formatValue={n=>`${n.toFixed(1)} м`} onChange={n=>t.setEnd(indexAtDistance(t.source!,n,t.start+1))}/>
</div>}
</LoadingRegion>
</>}
<small>{mode==='scanner'
?'Длина выбранного участка задаёт предел прохода. Ограничения по времени нет; запись сканера не останавливается автоматически. Неподвижная калибровка просматривает весь выбранный маршрут. После калибровки оставайтесь на месте до статуса «Сопровождение»; при отсутствии или неоднозначности совпадения сцена прямо сообщит причину и не начнёт сопровождение.'
:'Участки от 3 до 40 м. Начальная привязка — выбранное место старта и одинаковое направление.'}</small>
<Button variant="primary" loading={starting} disabled={disabled||!p.ready||!canStartPlanningRoute(length,mode)||(mode==='recording'&&(!t.source||t.loading||!canStartPlanningRoute(t.length,'recording')))} onClick={onStart}><Icon name="play"/>{mode==='scanner'?'Начать новый проход':'Запустить совмещение'}</Button>
{(p.error||t.error)&&<p role="alert">{p.error||t.error}</p>}
</div>},
]}/>;
}
@@ -0,0 +1,19 @@
import {useState,type ReactNode,type RefObject} from 'react';
import {WorkspaceWindow,type WorkspaceWindowRect} from '@nodedc/ui-react';
/** A scene-bounded tool: never a portal, backdrop or renderer owner. */
export function PlanningSceneToolWindow({boundsRef,title,children,onClose}:{
boundsRef:RefObject<HTMLDivElement|null>;title:string;children:ReactNode;onClose:()=>void;
}){
const [rect,setRect]=useState<WorkspaceWindowRect>({x:16,y:120,width:390,height:260});
const [maximized,setMaximized]=useState(false);
return <WorkspaceWindow boundsRef={boundsRef} rect={rect} onRectChange={setRect}
title={title} maximized={maximized} onMaximizedChange={setMaximized}
minWidth={280} minHeight={200} active zIndex={100} onClose={onClose}
closeLabel="Закрыть инструмент" moveLabel="Переместить инструмент"
resizeLabel="Изменить размер инструмента" maximizeLabel="Развернуть инструмент" restoreLabel="Восстановить инструмент" onKeyDown={event=>{
if(event.key==='Escape'&&!event.defaultPrevented){event.preventDefault();event.stopPropagation();onClose();}
}}>
<div className="mission-planner__check">{children}</div>
</WorkspaceWindow>;
}
@@ -0,0 +1,30 @@
import { useEffect, useRef, useState } from "react";
import { Button, LoadingRegion } from "@nodedc/ui-react";
import { createIsolatedRerunHost } from "../rerun/isolatedRerunHost";
/** One isolated, read-only Rerun realm; disposal releases its WASM memory. */
export function RegistrationScene({ sourceUrl }: { sourceUrl: string }) {
const host = useRef<HTMLDivElement>(null);
const [state, setState] = useState("loading"), [retry, setRetry] = useState(0);
useEffect(() => {
if (!host.current) return;
let disposed = false; setState("loading");
const runtime = createIsolatedRerunHost(host.current);
const timer = window.setTimeout(() => { if (!disposed) { setState("error"); runtime.dispose(); } }, 60_000);
void runtime.ready.then(async ({ viewer, mount }) => {
if (disposed) return;
viewer.on("recording_open", () => { if (!disposed) { clearTimeout(timer); setState("ready"); } });
await viewer.start(new URL(sourceUrl, window.location.origin).href, mount, {
width: "100%", height: "100%", hide_welcome_screen: true, enable_history: false, allow_fullscreen: false,
});
if (disposed) return;
if (viewer.get_active_recording_id()) { clearTimeout(timer); setState("ready"); }
for (const panel of ["top", "blueprint", "selection", "time"] as const) viewer.override_panel_state(panel, "hidden");
}).catch(() => { if (!disposed) { clearTimeout(timer); setState("error"); runtime.dispose(); } });
return () => { disposed = true; clearTimeout(timer); runtime.dispose(); };
}, [sourceUrl, retry]);
return <LoadingRegion loading={state === "loading"} label="Загрузка совмещённых облаков" className="mission-registration__scene">
<div ref={host} className="session-overview__runtime rerun-single-view-content" style={{ visibility: state === "ready" ? "visible" : "hidden" }} />
{state === "error" && <div className="session-overview__empty"><span>Облако недоступно.</span><Button onClick={() => setRetry(n => n+1)}>Повторить</Button></div>}
</LoadingRegion>;
}
@@ -0,0 +1,34 @@
import { useEffect, useRef, useState } from "react";
import { overviewChartPoints } from "../../core/observation/sessionOverview";
export function SessionIntervalChart({ chart, bucketSeconds }: { chart: [number, number][]; bucketSeconds: number }) {
const svg = useRef<SVGSVGElement>(null);
const [size, setSize] = useState({ width: 900, height: 160 });
useEffect(() => {
if (!svg.current) return;
const observer = new ResizeObserver(([entry]) => {
if (entry.contentRect.width > 0 && entry.contentRect.height > 0) {
setSize({ width: entry.contentRect.width, height: entry.contentRect.height });
}
});
observer.observe(svg.current);
return () => observer.disconnect();
}, [chart.length > 0]);
const width = Math.max(1, size.width - 106);
const height = Math.max(1, size.height - 38);
const { points, xmax, ymax } = overviewChartPoints(chart, width, height);
if (!chart.length) return <div className="session-overview__empty">Временные метки кадров отсутствуют.</div>;
return <div className="session-overview__chart">
<svg ref={svg} viewBox={`0 0 ${size.width} ${size.height}`} role="img" aria-label="Интервалы поступления кадров облака">
<g transform="translate(64,10)">
{(height >= 70 ? [0, .5, 1] : height >= 32 ? [0, 1] : [1]).map(f => <g key={f}>
<line x1="0" x2={width} y1={height * (1 - f)} y2={height * (1 - f)} className="session-overview__grid" />
<text x="-12" y={height * (1 - f) + 4} textAnchor="end">{(f * ymax).toFixed(2)} с</text>
</g>)}
<polyline points={points} fill="none" className="session-overview__series" vectorEffect="non-scaling-stroke" />
{[0, .25, .5, .75, 1].map(f => <text key={f} x={f * width} y={height + 24} textAnchor="middle">{(f * xmax / 60).toFixed(1)} мин</text>)}
</g>
</svg>
<span className="session-overview__note">Максимальный интервал за каждые {bucketSeconds} с · время от первого кадра</span>
</div>;
}
@@ -0,0 +1,80 @@
import { type ReactNode, useEffect, useRef, useState } from "react";
import { Button, LoadingRegion, RangeControl, SegmentedControl } from "@nodedc/ui-react";
import { createIsolatedRerunHost } from "../rerun/isolatedRerunHost";
import type { RecordedRerunViewer } from "../rerun/recordedRerunFacade";
import { fetchOverviewSpatial, updateOverviewSpatial, type OverviewSpatialMetadata, type OverviewViewMode } from "../../core/observation/sessionOverviewSpatial";
/** A separate, bounded static recording; teardown releases the whole WASM realm. */
export function SessionOverviewScene({ sourceUrl, toolbar, hideTitle=false }: { sourceUrl: string; toolbar?:ReactNode; hideTitle?:boolean }) {
const host = useRef<HTMLDivElement>(null);
const [state, setState] = useState<"loading" | "ready" | "error">("loading");
const [retry, setRetry] = useState(0);
const [metadata, setMetadata] = useState<OverviewSpatialMetadata | null>(null);
const [ceiling, setCeiling] = useState<number | null>(null);
const [mode, setMode] = useState<OverviewViewMode>("3d");
const [viewError, setViewError] = useState<string | null>(null);
const [visiblePoints, setVisiblePoints] = useState<number | null>(null);
const appliedMode = useRef<OverviewViewMode | null>(null);
const controller = useRef<{ viewer: RecordedRerunViewer; channel: ReturnType<RecordedRerunViewer["open_channel"]> } | null>(null);
useEffect(() => {
if (!host.current) return;
let disposed = false;
const abort = new AbortController();
appliedMode.current = null;
setState("loading");
setMetadata(null); setCeiling(null); setMode("3d"); setVisiblePoints(null); setViewError(null);
void fetchOverviewSpatial(sourceUrl, abort.signal).then(setMetadata).catch(() => { if (!disposed) setViewError("Параметры среза недоступны."); });
const runtime = createIsolatedRerunHost(host.current);
const timer = window.setTimeout(() => { if (!disposed) { setState("error"); runtime.dispose(); } }, 60_000);
void runtime.ready.then(async ({ viewer, mount }) => {
if (disposed) return;
viewer.on("recording_open", () => { if (!disposed) { clearTimeout(timer); setState("ready"); } });
await viewer.start(new URL(sourceUrl, window.location.origin).href, mount, {
width: "100%", height: "100%", hide_welcome_screen: true,
enable_history: false, allow_fullscreen: false,
});
if (disposed) return;
controller.current = { viewer, channel: viewer.open_channel("session-overview-controls") };
if (viewer.get_active_recording_id()) { clearTimeout(timer); setState("ready"); }
for (const panel of ["top", "blueprint", "selection", "time"] as const) viewer.override_panel_state(panel, "hidden");
}).catch(() => { if (!disposed) { clearTimeout(timer); setState("error"); runtime.dispose(); } });
return () => { disposed = true; abort.abort(); controller.current = null; clearTimeout(timer); runtime.dispose(); };
}, [sourceUrl, retry]);
useEffect(() => {
if (state !== "ready" || !metadata || !controller.current) return;
const abort = new AbortController();
const timer = setTimeout(() => {
const aspect = Math.max(.1, Math.min(20, (host.current?.clientWidth ?? 1) / Math.max(1, (host.current?.clientHeight ?? 1) - 28)));
void updateOverviewSpatial(sourceUrl, ceiling, appliedMode.current === mode ? null : mode, aspect, abort.signal).then(result => {
if (abort.signal.aborted || !controller.current) return;
controller.current.channel.send_rrd(result.bytes);
if (result.eye) controller.current.viewer.configure_camera_journal(result.eye, 0);
appliedMode.current = mode;
setVisiblePoints(result.visiblePoints); setViewError(null);
}).catch(() => { if (!abort.signal.aborted) setViewError("Не удалось обновить вид облака."); });
}, 180);
return () => { abort.abort(); clearTimeout(timer); };
}, [state, metadata, sourceUrl, ceiling, mode, retry]);
const low = metadata?.height_min_m;
const high = metadata?.height_max_m;
return <>
<div className={`session-overview__scene-head ${hideTitle?"session-overview__scene-head--end":""}`}>{!hideTitle&&<h2>Облако и траектория</h2>}
<SegmentedControl label="Вид облака" value={mode} onChange={setMode}
items={[{ value: "top", label: "Сверху", disabled: state !== "ready" }, { value: "3d", label: "3D", disabled: state !== "ready" }]} />
{toolbar}
</div>
<LoadingRegion loading={state === "loading"} label="Загрузка облака" className="session-overview__scene">
<div ref={host} className={`session-overview__runtime ${hideTitle?"rerun-single-view-content":""}`} style={{ visibility: state === "ready" ? "visible" : "hidden" }} />
{low != null && high != null && high > low && state === "ready" && <div className="session-overview__height">
<RangeControl orientation="vertical" limitSide="left" label="Срез" value={ceiling ?? high} min={low} max={high} step="any"
formatValue={value => `${value.toFixed(1).replace('.', ',')} м`} formatLimit={value => value.toFixed(1).replace('.', ',')}
onChange={value => setCeiling(value >= high - Math.max(1, high - low) * 1e-9 ? null : value)} />
</div>}
{state === "error" && <div className="session-overview__empty"><span>Не удалось открыть облако.</span><Button onClick={() => setRetry(n => n + 1)}>Повторить</Button></div>}
</LoadingRegion>
{viewError ? <div className="session-overview__note" role="alert">{viewError}<Button onClick={() => setRetry(n => n + 1)}>Повторить</Button></div>
: <span className="session-overview__note">{ceiling == null ? "Без среза" : `Высота ≤ ${ceiling.toFixed(1)} м`} · {visiblePoints?.toLocaleString("ru-RU") ?? "—"} точек</span>}
</>;
}
@@ -0,0 +1,261 @@
import { useEffect, useMemo, useState } from "react";
import {
ActivityIndicator,
Button,
FieldFrame,
Select,
StatusBadge,
Window,
WindowFooterActions,
} from "@nodedc/ui-react";
import {
aiModuleIdForSetup,
fetchAIModuleCatalog,
fetchAICompositionRuns,
fetchAICompositionJobs,
saveAIComposition,
type AICompositionReceipt,
type AICompositionRun,
type AIGroupId,
type AIModuleCatalog,
} from "../../core/observatory/aiComposition";
import type { ObservatoryRecordedJob } from "../../core/observatory/recordedJobs";
const groups: readonly { id: AIGroupId; label: string; description: string }[] = [
{ id: "segmentation", label: "Сегментация", description: "Пиксельные маски сцены" },
{ id: "detection", label: "Объекты", description: "Рамки и классы объектов" },
{ id: "geometry", label: "Облако точек / TGS", description: "Опорная поверхность и карта проходимости" },
{ id: "range", label: "Дистанция", description: "Расстояния до объектов" },
{ id: "motion", label: "Движение", description: "Треки и динамика объектов" },
{ id: "policy", label: "Политика", description: "Теневые правила интерпретации" },
];
export function AIConfigurationWindow({
open, sourceSessionId, sourceLabel, onClose, onCalculated,
}: {
readonly open: boolean;
readonly sourceSessionId: string;
readonly sourceLabel: string;
readonly onClose: () => void;
readonly onCalculated: (receipt: AICompositionReceipt) => void;
}) {
const [catalog, setCatalog] = useState<AIModuleCatalog | null>(null);
const [existingJobs, setExistingJobs] = useState<readonly ObservatoryRecordedJob[]>([]);
const [existingRuns, setExistingRuns] = useState<readonly AICompositionRun[]>([]);
const [selected, setSelected] = useState<Partial<Record<AIGroupId, string>>>({});
const [state, setState] = useState<"idle" | "loading" | "ready" | "saving" | "error">("idle");
const [message, setMessage] = useState<string | null>(null);
useEffect(() => {
if (!open) return;
const request = new AbortController();
setState("loading");
setMessage(null);
void Promise.all([
fetchAIModuleCatalog(request.signal),
fetchAICompositionJobs(sourceSessionId, request.signal),
fetchAICompositionRuns(sourceSessionId, request.signal),
]).then(([value, jobs, runs]) => {
if (request.signal.aborted) return;
setCatalog(value);
setExistingJobs(jobs);
setExistingRuns(runs);
setSelected({});
setState("ready");
}).catch((error: unknown) => {
if (request.signal.aborted) return;
setMessage(error instanceof Error ? error.message : "Каталог AI-модулей недоступен.");
setState("error");
});
return () => request.abort();
}, [open, sourceSessionId]);
const existingByModule = useMemo(() => {
const result = new Map<string, ObservatoryRecordedJob>();
for (const job of existingJobs) {
if (job.state === "failed" || job.publication.state === "failed") continue;
const moduleId = aiModuleIdForSetup(job.setupId);
if (moduleId && !result.has(moduleId)) result.set(moduleId, job);
}
return result;
}, [existingJobs]);
const selections = useMemo(() => groups.flatMap(({ id }) => {
const moduleId = selected[id];
const module = catalog?.groups.find((item) => item.group === id)?.modules.find(
(item) => item.moduleId === moduleId,
);
return module ? [{ group: id, module }] : [];
}), [catalog, selected]);
const selectedModuleIds = useMemo(
() => selections.map(({ module }) => module.moduleId).sort(),
[selections],
);
const matchingRun = useMemo(() => existingRuns.find((run) => (
run.state !== "failed"
&& [...run.moduleIds].sort().join("\0") === selectedModuleIds.join("\0")
)), [existingRuns, selectedModuleIds]);
const configurationAlreadyExists = selections.length > 0 && matchingRun !== undefined;
const configurationIsRunning = matchingRun?.state === "running";
function selectModule(group: AIGroupId, moduleId: string): void {
if (!catalog) return;
setSelected((current) => {
const next = { ...current, [group]: moduleId === "none" ? undefined : moduleId };
const modules = catalog.groups.flatMap((item) => item.modules);
const selectedIds = new Set(Object.values(next).filter((value): value is string => Boolean(value)));
if (moduleId !== "none") {
const module = modules.find((item) => item.moduleId === moduleId);
for (const requirement of module?.requires ?? []) {
if (requirement.startsWith("source.")) continue;
if (modules.some((item) => selectedIds.has(item.moduleId) && item.provides.includes(requirement))) {
continue;
}
const providers = modules.filter((item) => item.provides.includes(requirement));
if (providers.length === 1) {
const providerGroup = catalog.groups.find((item) => item.modules.some(
(candidate) => candidate.moduleId === providers[0]?.moduleId,
))?.group;
if (providerGroup) {
next[providerGroup] = providers[0]?.moduleId;
selectedIds.add(providers[0]?.moduleId ?? "");
}
}
}
} else {
let changed = true;
while (changed) {
changed = false;
const capabilities = new Set(modules.filter((item) => Object.values(next).includes(item.moduleId))
.flatMap((item) => item.provides));
for (const item of modules.filter((candidate) => Object.values(next).includes(candidate.moduleId))) {
if (item.requires.some((requirement) => !requirement.startsWith("source.") && !capabilities.has(requirement))) {
const dependentGroup = catalog.groups.find((candidate) => candidate.modules.some(
(module) => module.moduleId === item.moduleId,
))?.group;
if (dependentGroup) {
next[dependentGroup] = undefined;
changed = true;
}
}
}
}
}
return next;
});
setMessage(null);
if (state === "error") setState("ready");
}
async function calculate(): Promise<void> {
if (selections.length === 0 || state === "saving") return;
if (configurationAlreadyExists) {
setMessage("Эта конфигурация уже рассчитана. Выберите другую конфигурацию.");
return;
}
setState("saving");
setMessage(null);
try {
const receipt = await saveAIComposition(sourceSessionId, selections);
onCalculated(receipt);
onClose();
} catch (error) {
setMessage(error instanceof Error ? error.message : "Не удалось запустить расчёт.");
setState("error");
}
}
return <Window
open={open}
className="observatory-ai-config-window"
title="Сконфигурировать AI-слой"
subtitle={sourceLabel}
size="lg"
closeOnBackdrop={state !== "saving"}
closeOnEscape={state !== "saving"}
onClose={onClose}
footer={<WindowFooterActions>
{configurationAlreadyExists ? (
<span className="observatory-ai-config__duplicate" role="status">
{configurationIsRunning
? "Текущая конфигурация уже рассчитывается."
: "Текущая конфигурация уже рассчитана."}
</span>
) : null}
<Button
variant="primary"
className={state === "saving" ? "observatory-ai-config__calculate--saving" : undefined}
disabled={state !== "ready" || selections.length === 0 || configurationAlreadyExists}
aria-busy={state === "saving"}
onClick={() => void calculate()}
>
{state === "saving" ? "Отправляем на Worker…" : "Рассчитать"}
</Button>
</WindowFooterActions>}
>
<div className="observatory-ai-config" aria-busy={state === "loading" || state === "saving"}>
<p className="observatory-ai-config__lead">
Выберите модуль в каждом нужном слое. Зависимые блоки подключаются явно в этой конфигурации.
</p>
{state === "loading" ? <ActivityIndicator label="Загружаем AI-модули" /> : null}
{catalog ? groups.map(({ id, label, description }) => {
const modules = catalog.groups.find((item) => item.group === id)?.modules ?? [];
const selectedModule = modules.find((item) => item.moduleId === selected[id]);
const selectedExisting = selectedModule
? existingByModule.get(selectedModule.moduleId)
: undefined;
const allCalculated = modules.length > 0 && modules.every(
(module) => existingByModule.has(module.moduleId),
);
return <section className="observatory-ai-module-group" key={id}>
<header>
<div>
<strong>{label}</strong>
<span>{description}</span>
</div>
<StatusBadge tone={selectedModule ? "accent" : "neutral"}>
{selectedExisting
? selectedExisting.state === "succeeded" ? "Уже рассчитано" : "В расчёте"
: selectedModule?.label ?? (allCalculated
? "Результат доступен"
: modules.length ? "Не используется" : "Не установлен")}
</StatusBadge>
</header>
<div className="observatory-ai-module-group__body">
<FieldFrame
label={`Модуль: ${label}`}
description={modules.length
? allCalculated
? "Готовый результат можно включить в новую конфигурацию без повторного расчёта."
: id === "segmentation"
? "DDRNet и EoMT — независимые альтернативы; выберите одну модель."
: id === "range"
? "Дистанция использует рамки детектора и синхронное облако точек."
: id === "geometry"
? "TGS обрабатывает LiDAR независимо от сегментации и детектора."
: "Связи с другими блоками определяются входами выбранного модуля."
: "Для этого слоя на Worker 006 пока нет установленного модуля."}
>
<Select
label={`Выбрать модуль: ${label}`}
value={selected[id] ?? "none"}
options={[{ value: "none", label: "Не использовать" }, ...modules.map((module) => ({
value: module.moduleId,
label: module.label,
description: existingByModule.has(module.moduleId)
? "Готовый результат будет использован без повторного расчёта"
: module.dockerName,
}))]}
disabled={modules.length === 0 || state === "saving"}
onChange={(value) => selectModule(id, value)}
/>
</FieldFrame>
</div>
</section>;
}) : null}
{message ? <p className="observatory-ai-config__error" role="alert">{message}</p> : null}
</div>
</Window>;
}
@@ -0,0 +1,10 @@
import { WebViewer } from "@rerun-io/web-viewer";
import type { RerunFrameWindow } from "./recordedRerunProtocol";
import { createRecordedRerunOwner } from "./recordedRerunOwner";
// This entry is loaded only in the owned iframe. Upstream code is unmodified;
// destroying the frame also ends its timers, WASM, video and WebGPU lifetime.
const mount = document.getElementById("viewer");
if (!mount) throw new Error("Recorded viewer mount is missing");
(window as RerunFrameWindow).missionCoreRerun = createRecordedRerunOwner(() => new WebViewer(), mount);
@@ -0,0 +1,77 @@
import { createRecordedRerunFacade, type RecordedRerunViewer } from "./recordedRerunFacade";
import type { RerunFrameWindow } from "./recordedRerunProtocol";
import { relayIsolatedRerunInput } from "./isolatedRerunInput";
/** Own the complete recorded-viewer realm, not just its canvas or SDK handle. */
export function createIsolatedRerunHost(host: HTMLElement) {
let frame: HTMLIFrameElement | null = host.ownerDocument.createElement("iframe");
frame.title = "Синхронизированная запись";
frame.className = "rerun-viewport__runtime";
frame.src = "/rerun-runtime.html";
let disposed = false;
let releaseFacade: (() => void) | null = null;
let releaseInput: (() => void) | null = null;
let frameWindow: RerunFrameWindow | null = null;
let rejectReady: ((reason: Error) => void) | null = null;
let timer: ReturnType<typeof setTimeout> | undefined;
const dispose = () => {
if (disposed) return;
disposed = true;
clearTimeout(timer);
frame!.onload = null;
frame!.onerror = null;
releaseInput?.();
releaseInput = null;
try {
releaseFacade?.();
} catch {
// Realm teardown is required even if a partial native start failed.
} finally {
releaseFacade = null;
frameWindow = null;
frame!.remove();
frame = null;
rejectReady?.(new Error("Recorded viewer was disposed"));
rejectReady = null;
}
};
const ready = new Promise<{ viewer: RecordedRerunViewer; mount: HTMLElement }>((resolve, reject) => {
rejectReady = reject;
frame!.onload = () => {
if (disposed) return;
try {
frameWindow = frame!.contentWindow as RerunFrameWindow | null;
const api = frameWindow?.missionCoreRerun;
if (!api || api.version !== 2) throw new Error("Recorded viewer host is unavailable");
const owner = createRecordedRerunFacade((request, bytes) => {
const current = frameWindow?.missionCoreRerun;
if (!current) throw new Error("Recorded viewer was disposed");
return current.invoke(request, bytes);
});
releaseFacade = owner.dispose;
api.connect(owner.notify);
releaseInput = relayIsolatedRerunInput(host, frameWindow, frame);
clearTimeout(timer);
rejectReady = null;
frame!.onload = null;
frame!.onerror = null;
resolve({ viewer: owner.facade, mount: host });
} catch (error) {
reject(new Error(String(error)));
dispose();
}
};
frame!.onerror = () => {
reject(new Error("Recorded viewer host failed to load"));
dispose();
};
timer = setTimeout(() => {
reject(new Error("Recorded viewer host timed out"));
dispose();
}, 30_000);
});
host.append(frame);
return { ready, dispose };
}
@@ -0,0 +1,17 @@
/** Relay Escape from the isolated viewer realm to the owning application. */
export function relayIsolatedRerunInput(
host: HTMLElement,
frameWindow: Window | null,
_frame: HTMLIFrameElement | null,
) {
const parent = host.ownerDocument.defaultView;
const escape = (event: KeyboardEvent) => {
if (event.key !== "Escape" || event.defaultPrevented || !parent) return;
host.dispatchEvent(new parent.KeyboardEvent("keydown", { key: "Escape", bubbles: true }));
};
frameWindow?.addEventListener("keydown", escape);
return () => {
frameWindow?.removeEventListener("keydown", escape);
frameWindow = null;
};
}
@@ -0,0 +1,244 @@
export type RecordedRerunCameraEye = {
readonly position: readonly [number, number, number];
readonly lookTarget: readonly [number, number, number];
readonly eyeUp: readonly [number, number, number];
};
type Vector3 = [number, number, number];
type DragMode = "rotate" | "pan" | "roll";
const ROTATION_RADIANS_PER_POINT = 0.004;
const RERUN_WEB_LINE_SCROLL_POINTS = 8;
const RERUN_ORBITAL_SCROLL_DIVISOR = 200;
const RERUN_WEB_PINCH_SCROLL_DIVISOR = 100;
const RERUN_MIN_ORBIT_DISTANCE = 0.02;
const DOM_WHEEL_DELTA_LINE = 1;
const DOM_WHEEL_DELTA_PAGE = 2;
export const RECORDED_RERUN_ORBITAL_EYE: RecordedRerunCameraEye = {
position: [16, -16, 18],
lookTarget: [0, 0, 0],
eyeUp: [0, 0, 1],
};
export const RECORDED_RERUN_PLAN_EYE: RecordedRerunCameraEye = {
position: [0, 0, 30],
lookTarget: [0, 0, 0],
eyeUp: [0, 1, 0],
};
const vector = (value: readonly [number, number, number]): Vector3 => [...value];
const add = (a: Vector3, b: Vector3): Vector3 => [a[0] + b[0], a[1] + b[1], a[2] + b[2]];
const subtract = (a: Vector3, b: Vector3): Vector3 => [a[0] - b[0], a[1] - b[1], a[2] - b[2]];
const scale = (value: Vector3, factor: number): Vector3 => [value[0] * factor, value[1] * factor, value[2] * factor];
const dot = (a: Vector3, b: Vector3) => a[0] * b[0] + a[1] * b[1] + a[2] * b[2];
const cross = (a: Vector3, b: Vector3): Vector3 => [
a[1] * b[2] - a[2] * b[1],
a[2] * b[0] - a[0] * b[2],
a[0] * b[1] - a[1] * b[0],
];
const length = (value: Vector3) => Math.hypot(...value);
const normalize = (value: Vector3, fallback: Vector3): Vector3 => {
const magnitude = length(value);
return magnitude > Number.EPSILON ? scale(value, 1 / magnitude) : fallback;
};
const clamp = (value: number, minimum: number, maximum: number) => Math.max(minimum, Math.min(maximum, value));
const rotateAroundAxis = (value: Vector3, rawAxis: Vector3, angle: number): Vector3 => {
const axis = normalize(rawAxis, [0, 0, 1]);
const cosine = Math.cos(angle);
const sine = Math.sin(angle);
return add(
add(scale(value, cosine), scale(cross(axis, value), sine)),
scale(axis, dot(axis, value) * (1 - cosine)),
);
};
function cloneEye(value: RecordedRerunCameraEye): {
position: Vector3;
lookTarget: Vector3;
eyeUp: Vector3;
} {
return {
position: vector(value.position),
lookTarget: vector(value.lookTarget),
eyeUp: vector(value.eyeUp),
};
}
/**
* Mirrors Rerun 0.36.3's orbital eye math while the native viewer remains the
* renderer. Rerun writes operator navigation into its active blueprint clone;
* the WebViewer API cannot read that clone. Keeping the same three eye vectors
* here lets a later layer blueprint activate with the exact operator pose.
*/
export function createRecordedRerunCameraJournal(
canvas: HTMLCanvasElement,
scope: Window & typeof globalThis,
) {
let eye = cloneEye(RECORDED_RERUN_ORBITAL_EYE);
let spatialViewportStart = 0;
let pointerId: number | null = null;
let dragMode: DragMode | null = null;
let previousPointer: readonly [number, number] | null = null;
let latestPointer: readonly [number, number] | null = null;
let maxOrbitalRadius = 1.0e17;
const isSpatialPoint = (event: MouseEvent) => {
const rect = canvas.getBoundingClientRect();
return rect.width > 0 && (event.clientX - rect.left) / rect.width >= spatialViewportStart;
};
const forward = () => normalize(subtract(eye.lookTarget, eye.position), [0, 1, 0]);
const usableUp = () => {
const fwd = forward();
const fallbackRight: Vector3 = Math.abs(dot(fwd, [0, 0, 1])) > 0.9999
? [1, 0, 0]
: cross(fwd, [0, 0, 1]);
const fallback = normalize(cross(fwd, fallbackRight), [0, 0, 1]);
const candidate = normalize(eye.eyeUp, fallback);
return Math.abs(dot(candidate, fwd)) > 0.9999 ? fallback : candidate;
};
const orbitRadius = () => length(subtract(eye.position, eye.lookTarget));
const rotate = (deltaX: number, deltaY: number) => {
const radius = orbitRadius();
const up = usableUp();
let fwd = forward();
const oldPitch = Math.asin(clamp(dot(fwd, up), -1, 1));
fwd = normalize(
rotateAroundAxis(fwd, up, -ROTATION_RADIANS_PER_POINT * deltaX),
fwd,
);
const right = normalize(cross(fwd, up), [1, 0, 0]);
const maxPitch = 0.99 * Math.PI / 2;
const nextPitch = clamp(
oldPitch - ROTATION_RADIANS_PER_POINT * deltaY,
-maxPitch,
maxPitch,
);
fwd = normalize(rotateAroundAxis(fwd, right, nextPitch - oldPitch), fwd);
eye.position = subtract(eye.lookTarget, scale(fwd, radius));
};
const pan = (deltaX: number, deltaY: number) => {
const fwd = forward();
const right = normalize(cross(fwd, usableUp()), [1, 0, 0]);
const screenUp = normalize(cross(right, fwd), [0, 0, 1]);
const speed = 0.001 * orbitRadius();
const translation = add(scale(right, -deltaX * speed), scale(screenUp, deltaY * speed));
eye.position = add(eye.position, translation);
eye.lookTarget = add(eye.lookTarget, translation);
};
const roll = (event: PointerEvent, deltaX: number, deltaY: number) => {
const rect = canvas.getBoundingClientRect();
const left = rect.left + rect.width * spatialViewportStart;
const centerX = left + (rect.right - left) / 2;
const centerY = rect.top + rect.height / 2;
const relativeX = event.clientX - centerX;
const relativeY = event.clientY - centerY;
const divisor = relativeX * relativeX + relativeY * relativeY;
if (divisor <= Number.EPSILON) return;
const angle = (-deltaY * relativeX + deltaX * relativeY) / divisor;
eye.eyeUp = normalize(rotateAroundAxis(eye.eyeUp, scale(forward(), -1), angle), eye.eyeUp);
};
const pointerDown = (event: PointerEvent) => {
latestPointer = [event.clientX, event.clientY];
if (!isSpatialPoint(event)) return;
pointerId = event.pointerId;
previousPointer = [event.clientX, event.clientY];
dragMode = event.button === 2 ? "pan" : event.button === 1 || event.altKey ? "roll" : "rotate";
};
const pointerMove = (event: PointerEvent) => {
latestPointer = [event.clientX, event.clientY];
if (event.pointerId !== pointerId || !previousPointer || !dragMode) return;
const deltaX = event.clientX - previousPointer[0];
const deltaY = event.clientY - previousPointer[1];
previousPointer = [event.clientX, event.clientY];
if (dragMode === "rotate") rotate(deltaX, deltaY);
else if (dragMode === "pan") pan(deltaX, deltaY);
else roll(event, deltaX, deltaY);
};
const pointerEnd = (event: PointerEvent) => {
if (event.pointerId !== pointerId) return;
pointerMove(event);
pointerId = null;
previousPointer = null;
dragMode = null;
};
const wheel = (event: WheelEvent) => {
const rect = canvas.getBoundingClientRect();
const wheelX = event.clientX >= rect.left && event.clientX <= rect.right
? event.clientX
: latestPointer?.[0];
if (wheelX === undefined || rect.width <= 0) return;
if ((wheelX - rect.left) / rect.width < spatialViewportStart) return;
const unitMultiplier = event.deltaMode === DOM_WHEEL_DELTA_LINE
? RERUN_WEB_LINE_SCROLL_POINTS
: event.deltaMode === DOM_WHEEL_DELTA_PAGE
? rect.height
: 1;
const scrollPoints = (event.deltaX + event.deltaY) * unitMultiplier;
// eframe negates the DOM delta before Rerun applies
// radius / exp(smooth_scroll_delta / 200). Over a smoothed gesture the
// exponent products collapse to the raw accumulated DOM delta below.
const divisor = event.ctrlKey
? RERUN_WEB_PINCH_SCROLL_DIVISOR
: RERUN_ORBITAL_SCROLL_DIVISOR;
const radiusFactor = Math.exp(scrollPoints / divisor);
const offset = subtract(eye.position, eye.lookTarget);
const radius = length(offset);
// Keep the same orbital bounds as Rerun 0.36.3. An eye already outside
// the scene-derived cap is allowed to stay there and is never snapped in.
const nextRadius = clamp(
radius * radiusFactor,
RERUN_MIN_ORBIT_DISTANCE,
Math.max(radius, maxOrbitalRadius),
);
eye.position = add(
eye.lookTarget,
scale(offset, nextRadius / Math.max(radius, Number.EPSILON)),
);
};
canvas.addEventListener("pointerdown", pointerDown, true);
scope.addEventListener("pointermove", pointerMove, true);
scope.addEventListener("pointerup", pointerEnd, true);
scope.addEventListener("pointercancel", pointerEnd, true);
scope.addEventListener("wheel", wheel, { capture: true, passive: true });
return {
current(): RecordedRerunCameraEye {
return {
position: [...eye.position],
lookTarget: [...eye.lookTarget],
eyeUp: [...eye.eyeUp],
};
},
configure(nextEye: RecordedRerunCameraEye, nextSpatialViewportStart: number) {
eye = cloneEye(nextEye);
spatialViewportStart = clamp(nextSpatialViewportStart, 0, 0.9);
pointerId = null;
dragMode = null;
previousPointer = null;
},
setSpatialViewportStart(nextSpatialViewportStart: number) {
spatialViewportStart = clamp(nextSpatialViewportStart, 0, 0.9);
},
setMaxOrbitalRadius(nextMaxOrbitalRadius: number) {
if (
Number.isFinite(nextMaxOrbitalRadius) &&
nextMaxOrbitalRadius >= RERUN_MIN_ORBIT_DISTANCE
) {
maxOrbitalRadius = nextMaxOrbitalRadius;
}
},
dispose() {
canvas.removeEventListener("pointerdown", pointerDown, true);
scope.removeEventListener("pointermove", pointerMove, true);
scope.removeEventListener("pointerup", pointerEnd, true);
scope.removeEventListener("pointercancel", pointerEnd, true);
scope.removeEventListener("wheel", wheel, true);
},
};
}
@@ -0,0 +1,105 @@
import type { WebViewer } from "@rerun-io/web-viewer";
import type { RerunInvoke } from "./recordedRerunProtocol";
import type { RecordedRerunCameraEye } from "./recordedRerunCameraJournal";
type NativeChannel = ReturnType<WebViewer["open_channel"]>;
type Channel = Pick<NativeChannel, "ready" | "send_rrd" | "close">;
export type RecordedRerunViewer = Pick<WebViewer,
"start" | "stop" | "ready" | "on" | "open" | "close" | "override_panel_state" |
"get_active_recording_id" | "get_active_timeline" | "get_current_time" |
"get_playing" | "get_time_range" | "set_active_timeline" |
"set_current_time" | "set_playing"
> & {
open_channel: (name?: string) => Channel;
configure_camera_journal: (eye: RecordedRerunCameraEye, spatialViewportStart: number) => void;
get_camera_eye: () => RecordedRerunCameraEye;
set_camera_viewport_start: (spatialViewportStart: number) => void;
set_camera_max_orbital_radius: (maxOrbitalRadius: number) => void;
};
/** Parent-owned values only. No SDK Promise or foreign prototype escapes. */
export function createRecordedRerunFacade(invoke: RerunInvoke | null) {
let nextId = 0;
const callbacks = new Map<number, (...args: unknown[]) => void>();
const starts = new Map<number, { resolve: () => void; reject: (error: Error) => void }>();
const command = (method: string, args: unknown[] = [], id?: number, bytes?: Uint8Array) => {
if (!invoke) throw new Error("Recorded viewer was disposed");
const response = JSON.parse(invoke(JSON.stringify({ method, args, id }), bytes));
if (response.error) throw new Error(response.error);
return response.result;
};
const dispose = () => {
callbacks.clear();
for (const pending of starts.values()) pending.reject(new Error("Recorded viewer was disposed"));
starts.clear();
try { if (invoke) command("stop"); } finally { invoke = null; }
};
const notify = (message: string) => {
if (!invoke) return;
const event = JSON.parse(message);
if (event.type === "event") callbacks.get(event.id)?.(...event.values);
else {
const pending = starts.get(event.id);
starts.delete(event.id);
if (event.type === "started") pending?.resolve();
else pending?.reject(new Error(event.message));
}
};
const facade: RecordedRerunViewer = {
get ready() { return invoke ? command("ready") : false; },
start(source, _parent, options) {
return new Promise<void>((resolve, reject) => {
const id = ++nextId;
starts.set(id, { resolve, reject });
try { command("start", [source, options], id); }
catch (error) { starts.delete(id); reject(error); }
});
},
stop: dispose,
on: ((event: string, callback: (...args: unknown[]) => void) => {
const id = ++nextId;
callbacks.set(id, callback);
try { command("on", [event], id); }
catch (error) { callbacks.delete(id); throw error; }
return () => {
if (callbacks.delete(id) && invoke) command("off", [], id);
};
}) as WebViewer["on"],
open_channel(name) {
const id = ++nextId;
command("channel-open", name === undefined ? [] : [name], id);
let closed = false;
return {
get ready() { return !closed && invoke ? command("channel-ready", [], id) : false; },
send_rrd(bytes) { if (!closed && invoke) command("channel-send", [], id, bytes); },
close() {
if (closed) return;
closed = true;
if (invoke) command("channel-close", [], id);
},
};
},
open: (...args) => command("open", args),
close: (...args) => { if (invoke) command("close", args); },
override_panel_state: (...args) => command("override_panel_state", args),
get_active_recording_id: () => command("get_active_recording_id"),
get_active_timeline: (...args) => command("get_active_timeline", args),
get_current_time: (...args) => command("get_current_time", args),
get_playing: (...args) => command("get_playing", args),
get_time_range: (...args) => command("get_time_range", args),
set_active_timeline: (...args) => command("set_active_timeline", args),
set_current_time: (...args) => command("set_current_time", args),
set_playing: (...args) => command("set_playing", args),
configure_camera_journal: (eye, spatialViewportStart) => command(
"configure-camera-journal", [eye, spatialViewportStart],
),
get_camera_eye: () => command("get-camera-eye"),
set_camera_viewport_start: (spatialViewportStart) => command(
"set-camera-viewport-start", [spatialViewportStart],
),
set_camera_max_orbital_radius: (maxOrbitalRadius) => command(
"set-camera-max-orbital-radius", [maxOrbitalRadius],
),
};
return { facade, dispose, notify };
}
@@ -0,0 +1,115 @@
import type { WebViewer } from "@rerun-io/web-viewer";
import type { RerunFrameApi, RerunNotify } from "./recordedRerunProtocol";
import { createRecordedRerunCameraJournal } from "./recordedRerunCameraJournal";
/** Lives entirely inside the disposable iframe, including pending SDK starts. */
export function createRecordedRerunOwner(create: () => WebViewer, mount: HTMLElement): RerunFrameApi {
let native: WebViewer | null = null;
let notify: RerunNotify | null = null;
const subscriptions = new Map<number, () => void>();
const channels = new Map<number, ReturnType<WebViewer["open_channel"]>>();
let cameraJournal: ReturnType<typeof createRecordedRerunCameraJournal> | null = null;
const send = (message: object) => notify?.(JSON.stringify(message));
const stop = () => {
notify = null;
for (const unsubscribe of subscriptions.values()) {
try { unsubscribe(); } catch { /* Continue partial-start cleanup. */ }
}
subscriptions.clear();
for (const channel of channels.values()) {
try { channel.close(); } catch { /* Other channels must still close. */ }
}
channels.clear();
cameraJournal?.dispose();
cameraJournal = null;
const current = native;
native = null;
try { current?.stop(); } catch { /* Realm teardown remains authoritative. */ }
};
const required = () => {
if (!native) throw new Error("Recorded viewer was disposed");
return native;
};
const start = async (id: number, args: [string | string[] | null, Parameters<WebViewer["start"]>[2]]) => {
const starting = required();
try {
await starting.start(args[0], mount, args[1]);
if (native === starting && starting.canvas) {
cameraJournal?.dispose();
cameraJournal = createRecordedRerunCameraJournal(
starting.canvas,
window as Window & typeof globalThis,
);
}
if (native === starting) send({ type: "started", id });
} catch (error) {
if (native === starting) send({ type: "start-failed", id, message: String(error) });
} finally {
if (native !== starting) {
try { starting.stop(); } catch { /* Late completion after disposal. */ }
}
}
};
return {
version: 2,
connect(callback) {
if (native) throw new Error("Recorded viewer already has an owner");
native = create();
notify = callback;
},
invoke(request, bytes) {
try {
const { method, args = [], id } = JSON.parse(request);
let result: unknown;
switch (method) {
case "stop": stop(); break;
case "start": required(); void start(id, args); break;
case "ready": result = native?.ready ?? false; break;
case "on": {
const subscribe = required().on as (event: string, callback: (...values: unknown[]) => void) => () => void;
subscriptions.set(id, subscribe.call(required(), args[0], (...values) => send({ type: "event", id, values })));
break;
}
case "off":
try { subscriptions.get(id)?.(); } finally { subscriptions.delete(id); }
break;
case "channel-open": {
const name = args[0] as string | undefined;
channels.set(id, required().open_channel(name));
break;
}
case "channel-ready": result = channels.get(id)?.ready ?? false; break;
case "channel-send": if (bytes) {
channels.get(id)?.send_rrd(bytes);
} break;
case "channel-close":
try { channels.get(id)?.close(); } finally {
channels.delete(id);
}
break;
case "configure-camera-journal": cameraJournal?.configure(args[0], args[1]); break;
case "get-camera-eye": result = cameraJournal?.current(); break;
case "set-camera-viewport-start": cameraJournal?.setSpatialViewportStart(args[0]); break;
case "set-camera-max-orbital-radius": cameraJournal?.setMaxOrbitalRadius(args[0]); break;
case "open": required().open(args[0]); break;
case "close": required().close(args[0]); break;
case "override_panel_state": required().override_panel_state(args[0], args[1]); break;
case "get_active_recording_id": result = required().get_active_recording_id(); break;
case "get_active_timeline": result = required().get_active_timeline(args[0]); break;
case "get_current_time": result = required().get_current_time(args[0], args[1]); break;
case "get_playing": result = required().get_playing(args[0]); break;
case "get_time_range": result = required().get_time_range(args[0], args[1]); break;
case "set_active_timeline": required().set_active_timeline(args[0], args[1]); break;
case "set_current_time": required().set_current_time(args[0], args[1], args[2]); break;
case "set_playing": required().set_playing(args[0], args[1]); break;
default: throw new Error("Unsupported recorded viewer command");
}
return JSON.stringify({ result });
} catch (error) {
// A native Error also has a foreign prototype. Return text, never throw
// that object into a parent Promise/callback retained after disposal.
return JSON.stringify({ error: String(error) });
}
},
};
}
@@ -0,0 +1,12 @@
/** Only parent-owned inputs and primitive strings cross the recorded realm.
* An SDK instance, Promise, DOM node or native callback never becomes a value
* retained by React. This is not a second playback clock.
*/
export type RerunInvoke = (request: string, bytes?: Uint8Array) => string;
export type RerunNotify = (message: string) => void;
export interface RerunFrameApi {
version: 2;
connect: (notify: RerunNotify) => void;
invoke: RerunInvoke;
}
export type RerunFrameWindow = Window & { missionCoreRerun?: RerunFrameApi };
@@ -0,0 +1,630 @@
import {
Application,
Asset,
BLEND_NONE,
BLEND_NORMAL,
Color,
CULLFACE_NONE,
Entity,
FILLMODE_NONE,
Mat4,
Quat,
RESOLUTION_AUTO,
StandardMaterial,
Vec2,
Vec3,
WasmModule,
type ContainerResource,
type ModelComponent,
type ScriptType,
} from "playcanvas";
import { CameraControls } from "playcanvas/scripts/esm/camera-controls.mjs";
import {
prepareSimulationPhysics,
SimulationUgvController,
type AmmoApi,
} from "./SimulationUgvController";
import type {
SimulationEulerRotation,
SimulationUgvPreset,
SimulationViewerQuality,
SimulationWorldManifest,
} from "../../core/simulation/projects";
export type SimulationViewMode = "visual" | "collision" | "combined";
export type SimulationQuality = SimulationViewerQuality;
export type SimulationLayer = "visual" | "collision";
export type SimulationCameraAxis = "horizontal" | "vertical";
export type SimulationControlMode = "free" | "ugv";
export function playCanvasEulerTransform(rotation: SimulationEulerRotation): number[] {
return Array.from(new Mat4().setFromEulerAngles(rotation.x, rotation.y, rotation.z).data);
}
export interface SimulationRuntime {
mount(canvas: HTMLCanvasElement): Promise<void>;
loadWorld(manifest: SimulationWorldManifest): Promise<void>;
setViewMode(mode: SimulationViewMode): Promise<void>;
setControlMode(mode: SimulationControlMode): Promise<void>;
setUgvPreset(preset: SimulationUgvPreset): void;
setQuality(quality: SimulationQuality): void;
setLayerWorldTransform(layer: SimulationLayer, transform: number[]): void;
setCameraInversion(axis: SimulationCameraAxis, inverted: boolean): void;
home(): void;
focusBounds(): void;
dispose(): void;
}
type DesktopCameraInput = {
read(): { mouse: number[] } & Record<string, number[]>;
};
type CameraController = ScriptType & Pick<CameraControls, "reset" | "focus"> & {
_desktopInput?: DesktopCameraInput;
_state?: {
axis: Vec3;
shift: number;
ctrl: number;
mouse: number[];
touches: number;
};
};
const HOME_POSITION = new Vec3(0, 1, 0);
const HOME_FOCUS = new Vec3(1, 1, 0);
const DRACO_DECODER_ROOT = "/vendor/playcanvas/draco/1.5.7";
const QUALITY_PROFILES: Record<SimulationQuality, {
lodBaseDistance: number;
lodMultiplier: number;
lodRangeMin: number;
lodRangeMax: number;
pixelRatio: number;
splatBudget: number;
targetFps: number;
}> = {
low: { lodBaseDistance: 5, lodMultiplier: 2, lodRangeMin: 3, lodRangeMax: 5, pixelRatio: 0.75, splatBudget: 350_000, targetFps: 30 },
medium: { lodBaseDistance: 5, lodMultiplier: 2, lodRangeMin: 2, lodRangeMax: 5, pixelRatio: 1, splatBudget: 700_000, targetFps: 45 },
high: { lodBaseDistance: 5, lodMultiplier: 3, lodRangeMin: 1, lodRangeMax: 5, pixelRatio: 1.25, splatBudget: 1_200_000, targetFps: 60 },
ultra: { lodBaseDistance: 7, lodMultiplier: 3, lodRangeMin: 0, lodRangeMax: 5, pixelRatio: 1.5, splatBudget: 2_500_000, targetFps: 60 },
maximum: { lodBaseDistance: 7, lodMultiplier: 3, lodRangeMin: 0, lodRangeMax: 5, pixelRatio: 2, splatBudget: 4_000_000, targetFps: 60 },
};
export class PlayCanvasRuntime implements SimulationRuntime {
private app: Application | null = null;
private canvas: HTMLCanvasElement | null = null;
private camera: Entity | null = null;
private cameraController: CameraController | null = null;
private visualEntity: Entity | null = null;
private visualAsset: Asset | null = null;
private collisionEntity: Entity | null = null;
private collisionVisuals: ModelComponent[] = [];
private collisionAsset: Asset | null = null;
private collisionMaterial: StandardMaterial | null = null;
private collisionSource: { meshUrl: string; projectId: string; worldTransform: number[] } | null = null;
private collisionLoadPromise: Promise<void> | null = null;
private resizeObserver: ResizeObserver | null = null;
private viewMode: SimulationViewMode = "visual";
private quality: SimulationQuality = "high";
private cameraInversion = { horizontal: true, vertical: false };
private controlMode: SimulationControlMode = "free";
private controlRequestVersion = 0;
private ugvController: SimulationUgvController | null = null;
private readonly lastCameraPosition = new Vec3();
private readonly lastCameraRotation = new Quat();
private cameraSnapshotReady = false;
private renderIntervalMs = 1000 / 60;
private renderAccumulatorMs = 0;
private disposed = false;
private requestGsplatFrame = (): void => {
this.requestRender();
};
private updateFrame = (deltaSeconds: number): void => {
if (!this.app || !this.camera || this.disposed) return;
this.ugvController?.update(deltaSeconds);
const position = this.camera.getPosition();
const rotation = this.camera.getRotation();
const cameraChanged = !this.cameraSnapshotReady
|| !position.equals(this.lastCameraPosition)
|| !rotation.equals(this.lastCameraRotation);
if (!cameraChanged && this.controlMode === "free") return;
this.lastCameraPosition.copy(position);
this.lastCameraRotation.copy(rotation);
this.cameraSnapshotReady = true;
this.renderAccumulatorMs += deltaSeconds * 1000;
if (this.renderAccumulatorMs < this.renderIntervalMs) return;
this.renderAccumulatorMs %= this.renderIntervalMs;
this.app.renderNextFrame = true;
};
async mount(canvas: HTMLCanvasElement): Promise<void> {
if (this.app) throw new Error("Runtime сцены уже запущен.");
this.disposed = false;
this.renderAccumulatorMs = 0;
this.canvas = canvas;
configureDracoDecoder();
const ammo: AmmoApi = await prepareSimulationPhysics();
if (this.disposed) return;
canvas.tabIndex = 0;
canvas.addEventListener("contextmenu", preventContextMenu);
canvas.addEventListener("pointerdown", focusCanvas, true);
const app = new Application(canvas, {
graphicsDeviceOptions: {
antialias: true,
alpha: false,
preserveDrawingBuffer: false,
powerPreference: "high-performance",
},
});
this.app = app;
app.autoRender = false;
app.on("update", this.updateFrame);
app.systems.gsplat?.on("frame:request", this.requestGsplatFrame);
app.setCanvasFillMode(FILLMODE_NONE, 1, 1);
app.setCanvasResolution(RESOLUTION_AUTO);
app.scene.ambientLight = new Color(0.35, 0.37, 0.42);
const camera = new Entity("SimulationCamera");
camera.addComponent("camera", {
clearColor: new Color(0.025, 0.03, 0.04),
nearClip: 0.02,
farClip: 20_000,
fov: 58,
});
camera.setPosition(HOME_POSITION);
camera.lookAt(HOME_FOCUS);
camera.addComponent("script");
const controller = camera.script?.create(CameraControls, {
properties: {
enableOrbit: true,
enableFly: true,
focusPoint: new Vec3(0, 0, 0),
zoomRange: new Vec2(0.05, 20_000),
},
}) as CameraController | null;
if (controller) configureCameraDrag(controller, () => this.cameraInversion);
app.root.addChild(camera);
this.camera = camera;
this.cameraController = controller;
this.ugvController = new SimulationUgvController(app, canvas, camera, ammo);
const light = new Entity("SimulationSun");
light.addComponent("light", {
type: "directional",
color: new Color(1, 0.97, 0.9),
intensity: 1.1,
castShadows: false,
});
light.setEulerAngles(42, 28, 0);
app.root.addChild(light);
this.resizeObserver = new ResizeObserver(() => this.resize());
this.resizeObserver.observe(canvas.parentElement ?? canvas);
this.resize();
app.start();
await Promise.resolve();
}
async loadWorld(manifest: SimulationWorldManifest): Promise<void> {
const app = this.requiredApp();
this.unloadWorld();
const sourceUrl = manifest.visual.streamedSogUrl ?? manifest.visual.previewSogUrl;
if (!sourceUrl) throw new Error("Манифест локации не содержит визуальный слой.");
const asset = new Asset(`SimulationWorld:${manifest.projectId}`, "gsplat", { url: sourceUrl });
app.assets.add(asset);
this.visualAsset = asset;
await new Promise<void>((resolve, reject) => {
const ready = (loaded: Asset) => {
if (this.disposed || !this.app) {
loaded.unload();
resolve();
return;
}
const visual = new Entity("GaussianWorld");
visual.enabled = false;
applyWorldTransform(visual, manifest.transforms.worldFromVisual);
app.root.addChild(visual);
visual.addComponent("gsplat", {
asset: loaded,
unified: true,
});
visual.enabled = true;
this.visualEntity = visual;
this.applyQuality();
this.applyViewMode();
this.requestRender();
resolve();
};
const failed = (_error: unknown) => {
reject(new Error("Визуальный слой не загрузился."));
};
asset.ready(ready);
asset.once("error", failed);
app.assets.load(asset);
});
if (manifest.collision.available && manifest.collision.meshUrl) {
this.collisionSource = {
meshUrl: manifest.collision.meshUrl,
projectId: manifest.projectId,
worldTransform: manifest.transforms.worldFromCollision,
};
}
this.applyViewMode();
this.home();
}
async setViewMode(mode: SimulationViewMode): Promise<void> {
this.viewMode = mode;
this.applyViewMode();
try {
if (mode !== "visual" && !this.collisionEntity) {
await this.ensureCollision();
this.applyViewMode();
}
} finally {
this.requestRender();
this.canvas?.focus({ preventScroll: true });
}
}
async setControlMode(mode: SimulationControlMode): Promise<void> {
const requestVersion = ++this.controlRequestVersion;
const controller = this.ugvController;
if (!controller) throw new Error("Управление UGV ещё не готово.");
if (mode === "free") {
controller.disable();
this.controlMode = "free";
if (this.cameraController) this.cameraController.enabled = true;
this.home();
return;
}
if (this.controlMode === "ugv" && controller.enabled) return;
try {
await this.ensureCollision();
if (requestVersion !== this.controlRequestVersion || this.disposed) return;
const collisionWorld = this.collisionEntity;
if (!collisionWorld) throw new Error("Физический слой UGV отсутствует.");
if (this.cameraController) this.cameraController.enabled = false;
await controller.enable(collisionWorld);
if (requestVersion !== this.controlRequestVersion || this.disposed) {
controller.disable();
if (this.cameraController) this.cameraController.enabled = true;
return;
}
this.controlMode = "ugv";
this.cameraSnapshotReady = false;
this.requestRender();
} catch (error) {
controller.disable();
this.controlMode = "free";
if (this.cameraController) this.cameraController.enabled = true;
throw error;
}
}
setQuality(quality: SimulationQuality): void {
this.quality = quality;
this.applyQuality();
this.requestRender();
}
setUgvPreset(preset: SimulationUgvPreset): void {
this.ugvController?.configure(preset);
this.cameraSnapshotReady = false;
this.requestRender();
}
setLayerWorldTransform(layer: SimulationLayer, transform: number[]): void {
if (transform.length !== 16) {
throw new Error("World transform должен содержать матрицу 4×4.");
}
if (layer === "visual") {
if (this.visualEntity) applyWorldTransform(this.visualEntity, transform);
this.requestRender();
return;
}
if (this.collisionSource) this.collisionSource.worldTransform = [...transform];
if (this.collisionEntity) applyWorldTransform(this.collisionEntity, transform);
this.ugvController?.syncCollisionBodies();
this.requestRender();
}
setCameraInversion(axis: SimulationCameraAxis, inverted: boolean): void {
this.cameraInversion[axis] = inverted;
}
home(): void {
if (this.controlMode === "ugv" && this.ugvController?.enabled) {
this.ugvController.reset();
this.cameraSnapshotReady = false;
this.requestRender();
return;
}
this.resetCameraInteraction();
if (this.cameraController) {
this.cameraController.reset(HOME_FOCUS, HOME_POSITION);
} else if (this.camera) {
this.camera.setPosition(HOME_POSITION);
this.camera.lookAt(HOME_FOCUS);
}
this.requestRender();
this.canvas?.focus({ preventScroll: true });
}
focusBounds(): void {
this.resetCameraInteraction();
const bounds = this.visualEntity?.gsplat?.customAabb;
const focus = bounds?.center.clone() ?? new Vec3(0, 0, 0);
const radius = bounds?.halfExtents.length() ?? 3;
const distance = Math.max(1, radius * 2.4);
const position = new Vec3(1, 0.55, 1).normalize().mulScalar(distance).add(focus);
if (this.cameraController) {
this.cameraController.reset(focus, position);
} else if (this.camera) {
this.camera.setPosition(position);
this.camera.lookAt(focus);
}
this.requestRender();
}
dispose(): void {
if (this.disposed) return;
this.disposed = true;
this.resizeObserver?.disconnect();
this.resizeObserver = null;
const webgl = this.canvas?.getContext("webgl2") ?? this.canvas?.getContext("webgl");
this.unloadWorld();
this.ugvController?.dispose();
this.ugvController = null;
if (this.app) {
this.app.autoRender = false;
this.app.renderNextFrame = false;
this.app.systems.gsplat?.off("frame:request", this.requestGsplatFrame);
this.app.off("update", this.updateFrame);
this.app.destroy();
}
webgl?.getExtension("WEBGL_lose_context")?.loseContext();
if (this.canvas) {
this.canvas.width = 1;
this.canvas.height = 1;
}
if (this.canvas) {
this.canvas.removeEventListener("contextmenu", preventContextMenu);
this.canvas.removeEventListener("pointerdown", focusCanvas, true);
}
this.app = null;
this.canvas = null;
this.camera = null;
this.cameraController = null;
this.controlMode = "free";
this.cameraSnapshotReady = false;
}
private requiredApp(): Application {
if (!this.app) throw new Error("Runtime сцены не запущен.");
return this.app;
}
private requestRender(): void {
if (this.app && !this.disposed) this.app.renderNextFrame = true;
}
private resize(): void {
if (!this.app || !this.canvas) return;
const bounds = this.canvas.parentElement?.getBoundingClientRect();
const width = Math.max(1, Math.round(bounds?.width ?? this.canvas.clientWidth));
const height = Math.max(1, Math.round(bounds?.height ?? this.canvas.clientHeight));
this.app.resizeCanvas(width, height);
this.requestRender();
}
private applyViewMode(): void {
if (this.visualEntity) {
this.visualEntity.enabled = this.viewMode !== "collision" || !this.collisionEntity;
}
if (this.collisionEntity) {
// Physics bodies must stay active while their green debug geometry is hidden.
this.collisionEntity.enabled = true;
const visible = this.viewMode !== "visual";
for (const model of this.collisionVisuals) model.enabled = visible;
}
if (this.collisionMaterial) {
const combined = this.viewMode === "combined";
this.collisionMaterial.opacity = combined ? 0.34 : 1;
this.collisionMaterial.blendType = combined ? BLEND_NORMAL : BLEND_NONE;
this.collisionMaterial.depthWrite = !combined;
this.collisionMaterial.update();
}
this.requestRender();
}
private resetCameraInteraction(): void {
const controller = this.cameraController;
if (!controller) return;
// CameraControls owns pointer capture and its input-source lifecycle. Mutating
// those private fields here left the source unable to claim the next drag
// after a layer switch. The documented state event drains pending deltas.
controller.fire("state");
const state = controller._state;
if (state) {
state.axis.set(0, 0, 0);
state.shift = 0;
state.ctrl = 0;
state.mouse.fill(0);
state.touches = 0;
}
}
private applyQuality(): void {
const gsplat = this.visualEntity?.gsplat;
const profile = QUALITY_PROFILES[this.quality];
if (gsplat) {
gsplat.lodBaseDistance = profile.lodBaseDistance;
gsplat.lodMultiplier = profile.lodMultiplier;
gsplat.lodRangeMin = profile.lodRangeMin;
gsplat.lodRangeMax = profile.lodRangeMax;
}
if (this.app) {
this.app.scene.gsplat.splatBudget = profile.splatBudget;
this.renderIntervalMs = 1000 / profile.targetFps;
const devicePixelRatio = window.devicePixelRatio || 1;
this.app.graphicsDevice.maxPixelRatio = Math.min(devicePixelRatio, profile.pixelRatio);
this.resize();
}
}
private async loadCollision(meshUrl: string, projectId: string, worldTransform: number[]): Promise<void> {
const app = this.requiredApp();
const asset = new Asset(
`SimulationCollision:${projectId}`,
"container",
{ url: meshUrl, filename: "scene.collision.glb" },
);
app.assets.add(asset);
this.collisionAsset = asset;
await new Promise<void>((resolve, reject) => {
asset.ready((loaded) => {
try {
if (this.disposed || !this.app) {
loaded.unload();
resolve();
return;
}
const resource = loaded.resource as ContainerResource | null;
if (!resource) throw new Error("Контейнер GLB не содержит ресурса.");
const entity = resource.instantiateModelEntity({
castShadows: false,
receiveShadows: false,
});
entity.name = "CollisionWorld";
entity.enabled = false;
applyWorldTransform(entity, worldTransform);
app.root.addChild(entity);
const material = new StandardMaterial();
material.name = "SimulationCollisionMaterial";
material.diffuse = new Color(0.2, 0.95, 0.42);
material.emissive = new Color(0.08, 0.36, 0.14);
material.opacity = 0.34;
material.blendType = BLEND_NORMAL;
material.depthWrite = false;
material.cull = CULLFACE_NONE;
material.update();
const models = entity.findComponents("model") as ModelComponent[];
for (const model of models) {
for (const meshInstance of model.meshInstances ?? []) {
meshInstance.material = material;
}
}
this.collisionEntity = entity;
this.collisionVisuals = models;
this.collisionMaterial = material;
this.applyViewMode();
this.requestRender();
resolve();
} catch (error) {
reject(new Error(
`Слой коллизий не открылся: ${error instanceof Error ? error.message : String(error)}`,
));
}
});
asset.once("error", (error: unknown) => {
reject(new Error(`Слой коллизий не загрузился: ${String(error)}`));
});
app.assets.load(asset);
});
}
private async ensureCollision(): Promise<void> {
if (this.collisionEntity) return;
if (!this.collisionSource) {
throw new Error("Слой коллизий отсутствует в манифесте локации.");
}
if (!this.collisionLoadPromise) {
this.collisionLoadPromise = this.loadCollision(
this.collisionSource.meshUrl,
this.collisionSource.projectId,
this.collisionSource.worldTransform,
).finally(() => {
this.collisionLoadPromise = null;
});
}
await this.collisionLoadPromise;
}
private unloadWorld(): void {
this.controlRequestVersion += 1;
this.ugvController?.disable();
this.controlMode = "free";
if (this.cameraController) this.cameraController.enabled = true;
if (this.visualEntity) {
this.visualEntity.destroy();
this.visualEntity = null;
}
if (this.visualAsset && this.app) {
this.app.assets.remove(this.visualAsset);
this.visualAsset.unload();
this.visualAsset = null;
}
if (this.collisionEntity) {
this.collisionEntity.destroy();
this.collisionEntity = null;
}
this.collisionVisuals = [];
if (this.collisionAsset && this.app) {
this.app.assets.remove(this.collisionAsset);
this.collisionAsset.unload();
this.collisionAsset = null;
}
this.collisionMaterial?.destroy();
this.collisionMaterial = null;
this.collisionSource = null;
this.collisionLoadPromise = null;
}
}
function preventContextMenu(event: Event): void {
event.preventDefault();
}
function configureDracoDecoder(): void {
if (WasmModule.getConfig("DracoDecoderModule")) return;
WasmModule.setConfig("DracoDecoderModule", {
glueUrl: `${DRACO_DECODER_ROOT}/draco_wasm_wrapper_gltf.js`,
wasmUrl: `${DRACO_DECODER_ROOT}/draco_decoder_gltf.wasm`,
numWorkers: 2,
});
}
function focusCanvas(event: Event): void {
(event.currentTarget as HTMLCanvasElement | null)?.focus({ preventScroll: true });
}
function configureCameraDrag(
controller: CameraController,
inversion: () => { horizontal: boolean; vertical: boolean },
): void {
// CameraControls 2.21.4 deliberately exposes one pinned input source here.
// Keep its pointer-capture and fly/orbit behavior; only the user-selected axes change sign.
const input = controller._desktopInput;
if (!input) return;
const read = input.read.bind(input);
input.read = () => {
const frame = read();
const selected = inversion();
if (selected.horizontal && frame.mouse.length > 0) frame.mouse[0] *= -1;
if (selected.vertical && frame.mouse.length > 1) frame.mouse[1] *= -1;
return frame;
};
}
function applyWorldTransform(entity: Entity, values: number[]): void {
const transform = new Mat4().set(values);
entity.setLocalPosition(transform.getTranslation());
entity.setLocalEulerAngles(transform.getEulerAngles());
entity.setLocalScale(transform.getScale());
}
@@ -0,0 +1,333 @@
import {
ActivityIndicator,
Button,
Icon,
IconButton,
StatusBadge,
} from "@nodedc/ui-react";
import type {
SimulationProject,
SimulationProjectStatus,
SimulationUploadProgress,
} from "../../core/simulation/projects";
import { estimateSimulationProcessing } from "../../core/simulation/projects";
const ACTIVE_STATUSES = new Set<SimulationProjectStatus>([
"uploading",
"queued",
"processing",
"importing",
]);
export function SimulationCatalog({
projects,
uploadProgress,
loading,
loadError,
queueError,
dropping,
onCreate,
onRetryLoad,
onSelect,
onEdit,
onDelete,
}: {
projects: SimulationProject[];
uploadProgress: ReadonlyMap<string, SimulationUploadProgress>;
loading: boolean;
loadError: string | null;
queueError: string | null;
dropping: boolean;
onCreate: () => void;
onRetryLoad: () => void;
onSelect: (project: SimulationProject) => void;
onEdit: (project: SimulationProject) => void;
onDelete: (project: SimulationProject) => void;
}) {
const sourceBytes = projects.reduce(
(sum, project) => sum + project.source.totalByteLength,
0,
);
return (
<section
className="simulation-catalog"
data-dropping={dropping ? "true" : undefined}
aria-label="Проекты симуляции"
>
<header className="simulation-catalog__summary">
<div><span>Проектов</span><strong>{projects.length.toLocaleString("ru-RU")}</strong></div>
<div><span>Визуал готов</span><strong>{countStatus(projects, "ready")}</strong></div>
<div><span>В работе</span><strong>{projects.filter((project) => ACTIVE_STATUSES.has(project.status)).length}</strong></div>
<div><span>Исходники</span><strong>{formatBytes(sourceBytes)}</strong></div>
</header>
{queueError ? (
<div className="simulation-catalog__notice" role="alert">
<Icon name="alert" size={18} />
<span>{queueError}</span>
</div>
) : null}
{loading && projects.length === 0 ? (
<div className="simulation-catalog__state" role="status">
<ActivityIndicator label="Загрузка каталога" />
<span>Читаем каталог сцен</span>
</div>
) : loadError && projects.length === 0 ? (
<div className="simulation-catalog__state" role="alert">
<Icon name="alert" size={20} />
<div><strong>Каталог недоступен</strong><span>{loadError}</span></div>
<Button size="compact" onClick={onRetryLoad}>Повторить</Button>
</div>
) : projects.length === 0 ? (
<div className="simulation-catalog__empty">
<span><Icon name="globe" size={20} /></span>
<strong>Перетащите архивы в это окно</strong>
<p>Каждый ZIP, RAR или 7z сразу станет отдельным проектом и встанет в очередь.</p>
<Button variant="primary" icon={<Icon name="plus" size={16} />} onClick={onCreate}>
Новый проект
</Button>
</div>
) : (
<div className="simulation-catalog__table-wrap">
<table className="simulation-catalog__table">
<thead>
<tr>
<th>Проект</th>
<th>Источник</th>
<th>Размер</th>
<th>Сплаты</th>
<th>Статус</th>
<th>Обновлён</th>
<th aria-label="Действия" />
</tr>
</thead>
<tbody>
{projects.map((project) => (
<SimulationCatalogRow
key={project.projectId}
project={project}
uploadProgress={uploadProgress.get(project.projectId)}
onSelect={() => onSelect(project)}
onEdit={() => onEdit(project)}
onDelete={() => onDelete(project)}
/>
))}
</tbody>
</table>
</div>
)}
{dropping ? (
<div className="simulation-catalog__drop-overlay" role="status">
<span className="simulation-catalog__drop-mark"><Icon name="plus" size={28} /></span>
<strong>Отпустите архивы</strong>
<span>ZIP · RAR · 7z · до 16 ГБ на проект</span>
<small>Внутри — сцена LCC или LCC2 и связанные файлы</small>
</div>
) : null}
</section>
);
}
function SimulationCatalogRow({
project,
uploadProgress,
onSelect,
onEdit,
onDelete,
}: {
project: SimulationProject;
uploadProgress?: SimulationUploadProgress;
onSelect: () => void;
onEdit: () => void;
onDelete: () => void;
}) {
const status = statusPresentation(project.status);
const active = ACTIVE_STATUSES.has(project.status);
return (
<tr data-status={project.status}>
<td>
<button type="button" onClick={onSelect}>
<span className="simulation-catalog__project-icon"><Icon name="globe" size={18} /></span>
<span>
<strong>{project.name}</strong>
<small>{sourceFileLabel(project)}</small>
</span>
</button>
</td>
{active ? (
<td colSpan={3}>
<ProjectProgress project={project} localProgress={uploadProgress} />
</td>
) : (
<>
<td>
{project.source.kind === "archive" ? "Архив" : "Папка"}
<small>{project.source.files.length} файл(ов)</small>
</td>
<td>{formatBytes(project.source.totalByteLength)}</td>
<td>—</td>
</>
)}
<td><StatusBadge tone={status.tone}>{status.label}</StatusBadge></td>
<td>{formatDate(project.updatedAtUtc)}</td>
<td>
<div className="simulation-catalog__actions">
<IconButton label={`Удалить ${project.name}`} onClick={onDelete}>
<Icon name="trash" size={16} />
</IconButton>
<IconButton label={`Редактировать ${project.name}`} onClick={onEdit}>
<Icon name="edit" size={16} />
</IconButton>
</div>
</td>
</tr>
);
}
function ProjectProgress({
project,
localProgress,
}: {
project: SimulationProject;
localProgress?: SimulationUploadProgress;
}) {
const progress = progressPresentation(project, localProgress);
return (
<div
className="simulation-catalog__progress"
data-indeterminate={progress.indeterminate ? "true" : undefined}
role="progressbar"
aria-label={progress.label}
aria-valuemin={0}
aria-valuemax={100}
aria-valuenow={progress.indeterminate ? undefined : progress.percent}
>
{progress.meta ? <small className="simulation-catalog__progress-meta">{progress.meta}</small> : null}
<span className="simulation-catalog__progress-track">
<i style={{ width: `${progress.percent}%` }} />
</span>
<small className="simulation-catalog__progress-stage">{progress.label}</small>
</div>
);
}
function progressPresentation(
project: SimulationProject,
local?: SimulationUploadProgress,
): { percent: number; label: string; meta: string | null; indeterminate: boolean } {
if (project.status === "uploading") {
const uploaded = local?.uploadedBytes ?? project.source.uploadedByteLength;
const total = local?.totalBytes ?? project.source.totalByteLength;
const percent = total ? Math.min(100, uploaded / total * 100) : 0;
return {
percent,
label: `${formatBytes(uploaded)} / ${formatBytes(total)}`,
meta: progressMeta(percent, local?.estimatedSecondsRemaining),
indeterminate: false,
};
}
if (project.status === "queued") {
return { percent: 0, label: "Ожидает обработки", meta: null, indeterminate: true };
}
const estimate = estimateSimulationProcessing(project);
if (estimate) {
return {
percent: estimate.percent,
label: processingLabel(project),
meta: progressMeta(estimate.percent, estimate.estimatedSecondsRemaining),
indeterminate: false,
};
}
const completed = project.provider.progress?.completed_steps;
const total = project.provider.progress?.total_steps;
if (typeof completed === "number" && typeof total === "number" && total > 0) {
const percent = Math.min(100, completed / total * 100);
return {
percent,
label: processingLabel(project),
meta: progressMeta(percent, null),
indeterminate: false,
};
}
return {
percent: project.status === "importing" ? 96 : 0,
label: processingLabel(project),
meta: project.status === "importing" ? progressMeta(96, null) : null,
indeterminate: project.status !== "importing",
};
}
function progressMeta(percent: number, seconds: number | null | undefined): string {
const roundedPercent = Math.min(100, Math.max(0, Math.floor(percent)));
return `Прогресс ${roundedPercent}% | ${remainingTimeLabel(seconds)}`;
}
function remainingTimeLabel(seconds: number | null | undefined): string {
if (seconds === null || seconds === undefined) return "Время уточняется";
if (seconds <= 60) return "Осталось меньше минуты";
const minutes = Math.ceil(seconds / 60);
if (minutes < 60) return `Осталось примерно ${minutes} мин`;
const hours = Math.floor(minutes / 60);
const remainder = minutes % 60;
return `Осталось примерно ${hours} ч${remainder ? ` ${remainder} мин` : ""}`;
}
function processingLabel(project: SimulationProject): string {
if (project.status === "importing") return "Подготавливаем сцену";
const stage = project.provider.state;
if (stage === "verifying_source") return "Проверяем исходник";
if (stage === "inspecting") return "Анализируем локацию";
if (stage === "building_preview") return "Подготавливаем локацию";
if (stage === "building_streamed_sog") return "Собираем уровни детализации";
if (stage === "building_collision") return "Собираем коллизии";
return "Обрабатываем локацию";
}
function statusPresentation(status: SimulationProjectStatus): {
label: string;
tone: "success" | "accent" | "warning" | "neutral";
} {
if (status === "ready") return { label: "Визуал готов", tone: "success" };
if (status === "failed") return { label: "Ошибка", tone: "warning" };
if (status === "uploading") return { label: "Загрузка", tone: "neutral" };
if (status === "queued") return { label: "В очереди", tone: "neutral" };
if (status === "importing") return { label: "Подготовка", tone: "accent" };
return { label: "Обработка", tone: "accent" };
}
function sourceFileLabel(project: SimulationProject): string {
const first = project.source.files[0]?.logicalPath;
if (project.source.kind === "archive" && first) return first;
return `${sceneTypeLabel(project.sceneType)} · ${project.source.files.length} файл(ов)`;
}
function sceneTypeLabel(value: SimulationProject["sceneType"]): string {
if (value === "interior") return "Интерьер";
if (value === "object") return "Объект";
return "Улица";
}
function countStatus(projects: SimulationProject[], status: SimulationProjectStatus): number {
return projects.filter((project) => project.status === status).length;
}
function formatDate(value: string): string {
const date = new Date(value);
return Number.isNaN(date.valueOf()) ? "—" : date.toLocaleString("ru-RU", {
day: "2-digit",
month: "short",
hour: "2-digit",
minute: "2-digit",
});
}
function formatBytes(value: number): string {
if (value < 1024) return `${value} Б`;
if (value < 1024 ** 2) return `${(value / 1024).toLocaleString("ru-RU", { maximumFractionDigits: 1 })} КБ`;
if (value < 1024 ** 3) return `${(value / 1024 ** 2).toLocaleString("ru-RU", { maximumFractionDigits: 1 })} МБ`;
return `${(value / 1024 ** 3).toLocaleString("ru-RU", { maximumFractionDigits: 2 })} ГБ`;
}
@@ -0,0 +1,263 @@
import { useEffect, useMemo, useRef, useState, type DragEvent } from "react";
import {
ActivityIndicator,
Button,
FieldFrame,
Icon,
Select,
TextField,
Window,
WindowFooterActions,
} from "@nodedc/ui-react";
import {
createAndUploadSimulationProject,
updateSimulationProject,
type SimulationProject,
type SimulationSceneType,
type SimulationUploadCandidate,
type SimulationUploadProgress,
} from "../../core/simulation/projects";
import {
candidatesFromDrop,
validateSimulationCandidates,
} from "../../core/simulation/sourceFiles";
export function SimulationProjectWindow({
open,
project,
onClose,
onSaved,
}: {
open: boolean;
project: SimulationProject | null;
onClose: () => void;
onSaved: (project: SimulationProject) => void;
}) {
const archiveInput = useRef<HTMLInputElement>(null);
const folderInput = useRef<HTMLInputElement>(null);
const [name, setName] = useState("");
const [sceneType, setSceneType] = useState<SimulationSceneType>("outdoor");
const [candidates, setCandidates] = useState<SimulationUploadCandidate[]>([]);
const [dragging, setDragging] = useState(false);
const [pending, setPending] = useState(false);
const [progress, setProgress] = useState<SimulationUploadProgress | null>(null);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
if (!open) return;
setName(project?.name ?? "");
setSceneType(project?.sceneType ?? "outdoor");
setCandidates([]);
setProgress(null);
setPending(false);
setError(null);
}, [open, project]);
const sourceSummary = useMemo(() => summarizeCandidates(candidates), [candidates]);
const canSubmit = name.trim().length > 0 && (project !== null || candidates.length > 0) && !pending;
const acceptCandidates = (next: SimulationUploadCandidate[]) => {
try {
validateSimulationCandidates(next);
setCandidates(next);
setError(null);
if (!name.trim() && next.length) {
const named = next.find((candidate) => /\.lcc2?$/i.test(candidate.logicalPath)) ?? next[0];
const first = named?.logicalPath.split("/").filter(Boolean).at(-1) ?? "Новая сцена";
setName(first.replace(/\.(lcc2?|zip|rar|7z)$/i, ""));
}
} catch (caught) {
setCandidates([]);
setError(caught instanceof Error ? caught.message : "Источник не принят.");
}
};
const submit = async () => {
if (!canSubmit) return;
setPending(true);
setError(null);
try {
const saved = project
? await updateSimulationProject(project.projectId, name, sceneType)
: await createAndUploadSimulationProject(
name,
sceneType,
candidates,
setProgress,
);
onSaved(saved);
} catch (caught) {
setError(caught instanceof Error ? caught.message : "Не удалось сохранить проект.");
setPending(false);
}
};
const handleDrop = async (event: DragEvent<HTMLDivElement>) => {
event.preventDefault();
setDragging(false);
try {
acceptCandidates(await candidatesFromDrop(event.dataTransfer));
} catch (caught) {
setError(caught instanceof Error ? caught.message : "Не удалось прочитать источник.");
}
};
return (
<Window
open={open}
title={project ? "Редактировать проект" : "Новый проект симуляции"}
subtitle={project ? "Метаданные сцены" : "LCC/LCC2 folder или ZIP/RAR/7z"}
size="md"
closeOnBackdrop={!pending}
closeOnEscape={!pending}
onClose={onClose}
footer={(
<>
<span className="simulation-project-window__footer-state">
{pending && project ? <><ActivityIndicator /><span>Сохраняем</span></> : null}
</span>
<WindowFooterActions>
<Button disabled={pending} onClick={onClose}>Отмена</Button>
<Button variant="primary" disabled={!canSubmit} onClick={() => void submit()}>
{project ? "Сохранить" : "Создать и запустить"}
</Button>
</WindowFooterActions>
</>
)}
>
<div className="simulation-project-window">
<TextField
label="Название"
value={name}
maxLength={120}
disabled={pending}
autoComplete="off"
onChange={(event) => setName(event.currentTarget.value)}
/>
<FieldFrame label="Тип сцены" description="Сохраняется как профиль будущей физики и навигации.">
<Select
label="Тип сцены"
value={sceneType}
disabled={pending}
onChange={(value) => setSceneType(value)}
options={[
{ value: "outdoor", label: "Улица" },
{ value: "interior", label: "Интерьер" },
{ value: "object", label: "Отдельный объект" },
]}
/>
</FieldFrame>
{!project ? (
<FieldFrame
label="Исходник"
description="Имя родительской папки не фиксировано. Внутри должна быть ровно одна сцена LCC или LCC2."
>
<div
className="simulation-source-drop"
data-dragging={dragging ? "true" : undefined}
onDragEnter={(event) => { event.preventDefault(); setDragging(true); }}
onDragOver={(event) => event.preventDefault()}
onDragLeave={(event) => {
if (!event.currentTarget.contains(event.relatedTarget as Node | null)) setDragging(false);
}}
onDrop={(event) => void handleDrop(event)}
>
<Icon name={candidates.length ? "check" : "upload"} size={20} />
<strong>{sourceSummary.title}</strong>
<span>{sourceSummary.detail}</span>
<div>
<Button
size="compact"
icon={<Icon name="file" size={16} />}
disabled={pending}
onClick={() => archiveInput.current?.click()}
>
Выбрать архив
</Button>
<Button
size="compact"
icon={<Icon name="folder" size={16} />}
disabled={pending}
onClick={() => folderInput.current?.click()}
>
Выбрать папку
</Button>
</div>
<input
ref={archiveInput}
type="file"
accept=".zip,.rar,.7z"
hidden
onChange={(event) => {
const file = event.currentTarget.files?.[0];
if (file) acceptCandidates([{ file, logicalPath: file.name }]);
event.currentTarget.value = "";
}}
/>
<input
ref={folderInput}
type="file"
hidden
multiple
{...({ webkitdirectory: "" } as Record<string, string>)}
onChange={(event) => {
const next = Array.from(event.currentTarget.files ?? []).map((file) => ({
file,
logicalPath: file.webkitRelativePath || file.name,
}));
if (next.length) acceptCandidates(next);
event.currentTarget.value = "";
}}
/>
</div>
</FieldFrame>
) : null}
{progress ? (
<div className="simulation-upload-progress" role="status">
<span><i style={{ width: `${Math.min(100, progress.totalBytes ? progress.uploadedBytes / progress.totalBytes * 100 : 0)}%` }} /></span>
<div>
<strong>
{formatBytes(progress.uploadedBytes)} / {formatBytes(progress.totalBytes)}
{" · "}{formatUploadEta(progress.estimatedSecondsRemaining)}
</strong>
<small>{progress.currentPath}</small>
</div>
</div>
) : null}
{error ? <p className="simulation-project-window__error" role="alert">{error}</p> : null}
</div>
</Window>
);
}
function formatUploadEta(seconds: number | null): string {
if (seconds === 0) return "загружено";
if (seconds === null) return "считаем время";
if (seconds < 60) return `осталось ≈ ${Math.max(1, seconds)} сек`;
const minutes = Math.ceil(seconds / 60);
if (minutes < 60) return `осталось ≈ ${minutes} мин`;
const hours = Math.floor(minutes / 60);
const remainder = minutes % 60;
return `осталось ≈ ${hours} ч${remainder ? ` ${remainder} мин` : ""}`;
}
function summarizeCandidates(candidates: SimulationUploadCandidate[]): { title: string; detail: string } {
if (!candidates.length) return {
title: "Перетащите архив или папку сюда",
detail: "ZIP, RAR, 7z либо parent folder с LCC/LCC2",
};
const total = candidates.reduce((sum, candidate) => sum + candidate.file.size, 0);
const archive = candidates.length === 1 && /\.(zip|rar|7z)$/i.test(candidates[0]?.logicalPath ?? "");
return {
title: archive ? candidates[0]?.logicalPath ?? "Архив" : "Папка принята",
detail: `${candidates.length.toLocaleString("ru-RU")} файл(ов) · ${formatBytes(total)}`,
};
}
function formatBytes(value: number): string {
if (value < 1024) return `${value} Б`;
if (value < 1024 ** 2) return `${(value / 1024).toLocaleString("ru-RU", { maximumFractionDigits: 1 })} КБ`;
if (value < 1024 ** 3) return `${(value / 1024 ** 2).toLocaleString("ru-RU", { maximumFractionDigits: 1 })} МБ`;
return `${(value / 1024 ** 3).toLocaleString("ru-RU", { maximumFractionDigits: 2 })} ГБ`;
}
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@@ -0,0 +1,191 @@
import {
Button,
Icon,
RangeControl,
Switch,
TextField,
} from "@nodedc/ui-react";
import {
SIMULATION_UGV_EXACT_VALUE_LIMITS,
type SimulationUgvPreset,
} from "../../core/simulation/projects";
export type SimulationUgvPresetSaveState = "idle" | "saving" | "saved" | "failed";
export function SimulationUgvSettingsPanel({
value,
disabled,
saveState,
onChange,
onSave,
}: {
value: SimulationUgvPreset;
disabled: boolean;
saveState: SimulationUgvPresetSaveState;
onChange: (preset: SimulationUgvPreset) => void;
onSave: () => void;
}) {
const dimensions = value.dimensionsMeters;
const updateDimensions = (
patch: Partial<SimulationUgvPreset["dimensionsMeters"]>,
) => {
const next = { ...dimensions, ...patch };
next.groundClearance = Math.max(
SIMULATION_UGV_EXACT_VALUE_LIMITS.groundClearance.min,
Math.min(next.groundClearance, roundToHundredth(next.height - 0.05)),
);
onChange({ ...value, dimensionsMeters: next });
};
return (
<section className="simulation-viewport__settings-group simulation-ugv-settings">
<div className="simulation-viewport__settings-group-head">
<strong>Физика UGV</strong>
<span>Дифференциальный привод</span>
</div>
<p>
A/D без W/S разворачивают UGV вокруг собственного центра. Скорость и
динамика применяются сразу. Мышь вращает камеру вокруг машины, колесо
меняет дистанцию; после паузы камера плавно возвращается назад. Ползунок
работает в штатном диапазоне, точное значение можно ввести вручную.
</p>
<TextField
label="Название пресета"
value={value.presetName}
maxLength={80}
disabled={disabled}
spellCheck={false}
onChange={(event) => onChange({ ...value, presetName: event.currentTarget.value })}
/>
<RangeControl
label="Масса конструкции"
value={value.massKg}
min={10}
max={500}
exactValueBounds={SIMULATION_UGV_EXACT_VALUE_LIMITS.massKg}
step={5}
disabled={disabled}
formatValue={(mass) => `${Math.round(mass)} кг`}
onChange={(massKg) => onChange({ ...value, massKg })}
/>
<div className="simulation-ugv-settings__subhead">
<strong>Габариты</strong>
<span>В метрах</span>
</div>
<RangeControl
label="Длина"
value={dimensions.length}
min={0.4}
max={3}
exactValueBounds={SIMULATION_UGV_EXACT_VALUE_LIMITS.length}
step={0.05}
disabled={disabled}
formatValue={formatMeters}
onChange={(length) => updateDimensions({ length })}
/>
<RangeControl
label="Ширина"
value={dimensions.width}
min={0.3}
max={2}
exactValueBounds={SIMULATION_UGV_EXACT_VALUE_LIMITS.width}
step={0.05}
disabled={disabled}
formatValue={formatMeters}
onChange={(width) => updateDimensions({ width })}
/>
<RangeControl
label="Общая высота"
value={dimensions.height}
min={0.2}
max={2}
exactValueBounds={SIMULATION_UGV_EXACT_VALUE_LIMITS.height}
step={0.05}
disabled={disabled}
formatValue={formatMeters}
onChange={(height) => updateDimensions({ height })}
/>
<RangeControl
label="Клиренс"
value={dimensions.groundClearance}
min={0.03}
max={Math.max(0.03, Math.min(0.6, dimensions.height - 0.05))}
exactValueBounds={{
min: SIMULATION_UGV_EXACT_VALUE_LIMITS.groundClearance.min,
max: Math.min(
SIMULATION_UGV_EXACT_VALUE_LIMITS.groundClearance.max,
dimensions.height - 0.05,
),
}}
step={0.01}
disabled={disabled}
formatValue={formatMeters}
onChange={(groundClearance) => updateDimensions({ groundClearance })}
/>
<div className="simulation-ugv-settings__subhead">
<strong>Динамика</strong>
<span>Ограничители движения</span>
</div>
<RangeControl
label="Скорость движения"
value={value.maxSpeedMetersPerSecond}
min={0.1}
max={8}
exactValueBounds={SIMULATION_UGV_EXACT_VALUE_LIMITS.maxSpeedMetersPerSecond}
step={0.1}
disabled={disabled}
formatValue={(speed) => `${formatDecimal(speed, 1)} м/с`}
onChange={(maxSpeedMetersPerSecond) => onChange({
...value,
maxSpeedMetersPerSecond,
})}
/>
<RangeControl
label="Скорость разворота"
value={value.maxTurnRateDegrees}
min={5}
max={180}
exactValueBounds={SIMULATION_UGV_EXACT_VALUE_LIMITS.maxTurnRateDegrees}
step={5}
disabled={disabled}
formatValue={(rate) => `${Math.round(rate)}°/с`}
onChange={(maxTurnRateDegrees) => onChange({ ...value, maxTurnRateDegrees })}
/>
<Switch
checked={value.invertSteering}
disabled={disabled}
label="Инверсия управления A/D"
onChange={(invertSteering) => onChange({ ...value, invertSteering })}
/>
<Button
className="simulation-ugv-settings__save"
size="compact"
variant="secondary"
icon={<Icon name="save" size={16} />}
disabled={disabled || saveState === "saving" || value.presetName.trim() === ""}
onClick={onSave}
>
{saveState === "saving"
? "Сохраняем…"
: saveState === "saved"
? "Пресет сохранён"
: saveState === "failed"
? "Повторить сохранение"
: "Сохранить пресет"}
</Button>
</section>
);
}
function formatMeters(value: number): string {
return `${formatDecimal(value, 2)} м`;
}
function formatDecimal(value: number, digits: number): string {
return value.toFixed(digits).replace(".", ",");
}
function roundToHundredth(value: number): number {
return Math.round(value * 100) / 100;
}
@@ -0,0 +1,591 @@
import { useEffect, useId, useRef, useState } from "react";
import {
ActivityIndicator,
Button,
GlassMaterialSurface,
Icon,
IconButton,
SegmentedControl,
Select,
StatusBadge,
Switch,
TextField,
} from "@nodedc/ui-react";
import {
saveSimulationViewerSettings,
type SimulationEulerRotation,
type SimulationProject,
type SimulationUgvPreset,
type SimulationViewerSettings,
} from "../../core/simulation/projects";
import {
createLatestAsyncCommitter,
type LatestAsyncCommitter,
} from "../../core/runtime/latestAsyncCommitter";
import {
PlayCanvasRuntime,
playCanvasEulerTransform,
type SimulationControlMode,
type SimulationQuality,
type SimulationViewMode,
} from "./PlayCanvasRuntime";
import {
SimulationUgvSettingsPanel,
type SimulationUgvPresetSaveState,
} from "./SimulationUgvSettingsPanel";
const ROTATION_AXES = ["x", "y", "z"] as const;
export function SimulationViewport({
project,
onProjectChange,
}: {
project: SimulationProject;
onProjectChange?: (project: SimulationProject) => void;
}) {
const canvasRef = useRef<HTMLCanvasElement>(null);
const runtimeRef = useRef<PlayCanvasRuntime | null>(null);
const viewerSettingsRef = useRef(project.viewerSettings);
const settingsCommitterRef = useRef<LatestAsyncCommitter<SimulationViewerSettings> | null>(null);
const settingsCommitSucceededRef = useRef(true);
const ugvSaveRequestRef = useRef(0);
const controlRequestRef = useRef(0);
const settingsId = useId();
const [state, setState] = useState<"mounting" | "loading" | "ready" | "failed">("mounting");
const [error, setError] = useState<string | null>(null);
const [viewMode, setViewMode] = useState<SimulationViewMode>("visual");
const [controlMode, setControlMode] = useState<SimulationControlMode>("free");
const [controlState, setControlState] = useState<"idle" | "loading" | "ready" | "failed">("idle");
const [quality, setQuality] = useState<SimulationQuality>(project.viewerSettings.quality);
const [collisionState, setCollisionState] = useState<"idle" | "loading" | "ready" | "failed">("idle");
const [settingsOpen, setSettingsOpen] = useState(false);
const [visualRotation, setVisualRotation] = useState({
...project.viewerSettings.visual.rotationDegrees,
});
const [collisionRotation, setCollisionRotation] = useState({
...project.viewerSettings.collision.rotationDegrees,
});
const [horizontalInverted, setHorizontalInverted] = useState(
project.viewerSettings.camera.invertHorizontal,
);
const [verticalInverted, setVerticalInverted] = useState(
project.viewerSettings.camera.invertVertical,
);
const [ugvDraft, setUgvDraft] = useState<SimulationUgvPreset>(() =>
cloneUgvPreset(project.viewerSettings.ugv),
);
const [ugvSaveState, setUgvSaveState] = useState<SimulationUgvPresetSaveState>("idle");
const [settingsError, setSettingsError] = useState<string | null>(null);
const worldManifestRevision = JSON.stringify(project.worldManifest);
useEffect(() => {
const settings = project.viewerSettings;
viewerSettingsRef.current = settings;
setQuality(settings.quality);
setVisualRotation({ ...settings.visual.rotationDegrees });
setCollisionRotation({ ...settings.collision.rotationDegrees });
setHorizontalInverted(settings.camera.invertHorizontal);
setVerticalInverted(settings.camera.invertVertical);
setUgvDraft(cloneUgvPreset(settings.ugv));
setUgvSaveState("idle");
ugvSaveRequestRef.current += 1;
setSettingsError(null);
setSettingsOpen(false);
controlRequestRef.current += 1;
setControlMode("free");
setControlState("idle");
}, [project.projectId]);
useEffect(() => {
let active = true;
const committer = createLatestAsyncCommitter<SimulationViewerSettings>({
async commit(settings) {
try {
const saved = await saveSimulationViewerSettings(project.projectId, settings);
settingsCommitSucceededRef.current = true;
if (active) onProjectChange?.(saved);
return true;
} catch (caught) {
settingsCommitSucceededRef.current = false;
if (active) {
setSettingsError(
caught instanceof Error ? caught.message : "Не удалось сохранить настройки сцены.",
);
}
return false;
}
},
onSettled({ applied, superseded }) {
if (active && applied && !superseded) setSettingsError(null);
},
});
settingsCommitterRef.current = committer;
return () => {
active = false;
committer.dispose();
if (settingsCommitterRef.current === committer) settingsCommitterRef.current = null;
};
}, [onProjectChange, project.projectId]);
useEffect(() => {
const canvas = canvasRef.current;
const manifest = project.worldManifest;
if (!canvas || !manifest) return;
const runtime = new PlayCanvasRuntime();
runtimeRef.current = runtime;
let cancelled = false;
setState("mounting");
setError(null);
void runtime.mount(canvas).then(async () => {
if (cancelled) return;
const settings = viewerSettingsRef.current;
runtime.setQuality(settings.quality);
runtime.setCameraInversion("horizontal", settings.camera.invertHorizontal);
runtime.setCameraInversion("vertical", settings.camera.invertVertical);
runtime.setUgvPreset(settings.ugv);
setState("loading");
await runtime.loadWorld(manifest);
runtime.setLayerWorldTransform(
"visual",
playCanvasEulerTransform(settings.visual.rotationDegrees),
);
runtime.setLayerWorldTransform(
"collision",
playCanvasEulerTransform(settings.collision.rotationDegrees),
);
if (!cancelled) setState("ready");
}).catch((caught: unknown) => {
if (cancelled) return;
setState("failed");
setError(caught instanceof Error ? caught.message : "Не удалось открыть сцену.");
});
return () => {
cancelled = true;
controlRequestRef.current += 1;
runtime.dispose();
runtimeRef.current = null;
};
// Saving viewer preferences returns a fresh project object. Restart the GPU
// runtime only when the manifest content changes, not when its object identity
// changes after an otherwise unrelated settings PUT.
}, [project.projectId, worldManifestRevision]);
const collisionAvailable = project.worldManifest?.collision.available ?? false;
const commitViewerSettings = (settings: SimulationViewerSettings) => {
viewerSettingsRef.current = settings;
settingsCommitSucceededRef.current = false;
settingsCommitterRef.current?.enqueue(settings);
};
const changeUgvDraft = (next: SimulationUgvPreset) => {
setUgvDraft(cloneUgvPreset(next));
setUgvSaveState("idle");
ugvSaveRequestRef.current += 1;
runtimeRef.current?.setUgvPreset(next);
};
const saveUgvPreset = () => {
const committer = settingsCommitterRef.current;
if (!committer) {
setUgvSaveState("failed");
return;
}
const request = ++ugvSaveRequestRef.current;
const normalized = cloneUgvPreset({
...ugvDraft,
presetName: ugvDraft.presetName.trim(),
});
setUgvDraft(normalized);
setUgvSaveState("saving");
setSettingsError(null);
settingsCommitSucceededRef.current = false;
const settings = { ...viewerSettingsRef.current, ugv: normalized };
viewerSettingsRef.current = settings;
committer.enqueue(settings);
void committer.waitForIdle().then(() => {
if (request !== ugvSaveRequestRef.current) return;
setUgvSaveState(settingsCommitSucceededRef.current ? "saved" : "failed");
});
};
const changeControlMode = (next: SimulationControlMode) => {
const runtime = runtimeRef.current;
if (!runtime) return;
const request = ++controlRequestRef.current;
setControlMode(next);
setControlState(next === "ugv" ? "loading" : "idle");
if (next === "ugv" && collisionState !== "ready") setCollisionState("loading");
void runtime.setControlMode(next).then(() => {
if (request !== controlRequestRef.current) return;
if (next === "ugv") {
setControlState("ready");
setCollisionState("ready");
}
}).catch((caught: unknown) => {
if (request !== controlRequestRef.current) return;
setControlMode("free");
setControlState("failed");
setCollisionState("failed");
setError(caught instanceof Error ? caught.message : "Не удалось запустить UGV.");
});
};
return (
<section
className="simulation-viewport"
data-control-mode={controlMode}
aria-label={`Сцена ${project.name}`}
>
<header className="simulation-viewport__toolbar">
<div>
<StatusBadge tone={state === "failed" || collisionState === "failed" ? "warning" : state === "ready" && collisionState !== "loading" ? "success" : "accent"}>
{controlState === "loading"
? "Подготовка UGV"
: controlState === "ready"
? "UGV готов"
: controlState === "failed"
? "Ошибка UGV"
: collisionState === "loading"
? "Загрузка коллизий"
: collisionState === "failed"
? "Ошибка коллизий"
: state === "ready"
? "Runtime готов"
: state === "failed"
? "Ошибка runtime"
: "Загрузка локации"}
</StatusBadge>
<span>Engine 2.21.4</span>
</div>
<div className="simulation-viewport__controls">
<Select
label="Качество Gaussian-сцены"
value={quality}
onChange={(next) => {
setQuality(next);
runtimeRef.current?.setQuality(next);
commitViewerSettings({ ...viewerSettingsRef.current, quality: next });
}}
options={[
{ value: "maximum", label: "Максимум", description: "До 4 млн сплатов · Retina до 2× · 60 FPS" },
{ value: "ultra", label: "Ультра", description: "До 2,5 млн · Retina до 1,5× · 60 FPS" },
{ value: "high", label: "Высокое", description: "До 1,2 млн · Retina до 1,25× · 60 FPS" },
{ value: "medium", label: "Среднее", description: "До 700 тыс. · 1× · 45 FPS" },
{ value: "low", label: "Низкое", description: "До 350 тыс. · 0,75× · 30 FPS" },
]}
minMenuWidth={230}
menuWidth={230}
/>
<Select
label="Режим управления"
value={controlMode}
disabled={state !== "ready" || controlState === "loading"}
onChange={changeControlMode}
options={[
{
value: "free",
label: "Свободно",
description: "Свободная камера и навигация",
},
{
value: "ugv",
label: "UGV",
description: "WASD/стрелки · пробел — тормоз · R — домой",
disabled: !collisionAvailable,
},
]}
minMenuWidth={250}
menuWidth={250}
/>
<SegmentedControl
label="Слой сцены"
value={viewMode}
onChange={(next) => {
setViewMode(next);
const runtime = runtimeRef.current;
if (!runtime) return;
if (next !== "visual" && collisionAvailable && collisionState !== "ready") {
setCollisionState("loading");
}
void runtime.setViewMode(next).then(() => {
if (next !== "visual") setCollisionState("ready");
}).catch((caught: unknown) => {
setCollisionState("failed");
setError(caught instanceof Error ? caught.message : "Не удалось открыть слой коллизий.");
});
}}
items={[
{ value: "visual", label: "Визуал" },
{ value: "collision", label: "Коллизии", disabled: !collisionAvailable },
{ value: "combined", label: "Вместе", disabled: !collisionAvailable },
]}
/>
<Button size="compact" variant="secondary" onClick={() => runtimeRef.current?.home()}>
Домой
</Button>
<div className="simulation-viewport__settings-anchor">
<IconButton
label="Настройки сцены"
aria-controls={settingsId}
aria-expanded={settingsOpen}
aria-pressed={settingsOpen}
onClick={() => setSettingsOpen((open) => !open)}
>
<Icon name="settings" size={18} />
</IconButton>
{settingsOpen ? (
<GlassMaterialSurface
id={settingsId}
className="simulation-viewport__settings"
role="dialog"
aria-label="Настройки сцены"
>
<div className="simulation-viewport__settings-head">
<div>
<strong>Настройки сцены</strong>
<span>Локация, камера и UGV</span>
</div>
<IconButton label="Закрыть настройки" onClick={() => setSettingsOpen(false)}>
<Icon name="close" size={16} />
</IconButton>
</div>
<div className="simulation-viewport__settings-scroll">
<section className="simulation-viewport__settings-group">
<div className="simulation-viewport__settings-group-head">
<strong>Система координат</strong>
<span>Мир сцены · Y вверх</span>
</div>
<p>
Коррекция слоёв не меняет координаты камеры, навигации и будущей физики.
</p>
<div className="simulation-viewport__settings-rotations">
<LayerRotationFields
label="Гауссовый слой"
value={visualRotation}
disabled={state !== "ready"}
onChange={(next) => {
setVisualRotation(next);
runtimeRef.current?.setLayerWorldTransform(
"visual",
playCanvasEulerTransform(next),
);
commitViewerSettings({
...viewerSettingsRef.current,
visual: { rotationDegrees: next },
});
}}
/>
<LayerRotationFields
label="Слой коллизий"
value={collisionRotation}
disabled={state !== "ready"}
onChange={(next) => {
setCollisionRotation(next);
runtimeRef.current?.setLayerWorldTransform(
"collision",
playCanvasEulerTransform(next),
);
commitViewerSettings({
...viewerSettingsRef.current,
collision: { rotationDegrees: next },
});
}}
/>
</div>
</section>
<section className="simulation-viewport__settings-group">
<div className="simulation-viewport__settings-group-head">
<strong>Управление камерой</strong>
<span>Мышь и тачпад</span>
</div>
<div className="simulation-viewport__settings-switches">
<Switch
checked={horizontalInverted}
disabled={state !== "ready"}
label="Инверсия управления по горизонтали"
onChange={(checked) => {
setHorizontalInverted(checked);
runtimeRef.current?.setCameraInversion("horizontal", checked);
commitViewerSettings({
...viewerSettingsRef.current,
camera: { ...viewerSettingsRef.current.camera, invertHorizontal: checked },
});
}}
/>
<Switch
checked={verticalInverted}
disabled={state !== "ready"}
label="Инверсия управления по вертикали"
onChange={(checked) => {
setVerticalInverted(checked);
runtimeRef.current?.setCameraInversion("vertical", checked);
commitViewerSettings({
...viewerSettingsRef.current,
camera: { ...viewerSettingsRef.current.camera, invertVertical: checked },
});
}}
/>
</div>
</section>
<SimulationUgvSettingsPanel
value={ugvDraft}
disabled={state !== "ready"}
saveState={ugvSaveState}
onChange={changeUgvDraft}
onSave={saveUgvPreset}
/>
{settingsError ? (
<p className="simulation-viewport__settings-error" role="alert">
Настройки не сохранены: {settingsError}
</p>
) : null}
</div>
</GlassMaterialSurface>
) : null}
</div>
</div>
<span className="simulation-viewport__toolbar-balance" aria-hidden="true" />
</header>
<div className="simulation-viewport__stage">
<canvas ref={canvasRef} aria-label={`Сцена ${project.name}`} />
{state !== "ready" ? (
<div className="simulation-viewport__state" role={state === "failed" ? "alert" : "status"}>
{state === "failed" ? null : <ActivityIndicator label="Загрузка локации" />}
<strong>{state === "failed" ? "Локация не открылась" : "Загружаем локацию"}</strong>
<p>{error ?? "LOD-уровни загружаются по мере готовности runtime."}</p>
</div>
) : null}
</div>
{!collisionAvailable ? (
<footer className="simulation-viewport__notice">
<StatusBadge tone="warning">Коллизии недоступны</StatusBadge>
<span>Для этой сборки слой коллизий не создавался; визуальный слой остаётся доступен.</span>
</footer>
) : collisionState === "failed" ? (
<footer className="simulation-viewport__notice" role="alert">
<StatusBadge tone="warning">Коллизии не открылись</StatusBadge>
<span>{error ?? "Слой коллизий не загрузился."}</span>
</footer>
) : null}
</section>
);
}
function cloneUgvPreset(preset: SimulationUgvPreset): SimulationUgvPreset {
return {
...preset,
dimensionsMeters: { ...preset.dimensionsMeters },
};
}
function LayerRotationFields({
label,
value,
disabled,
onChange,
}: {
label: string;
value: SimulationEulerRotation;
disabled: boolean;
onChange: (rotation: SimulationEulerRotation) => void;
}) {
return (
<div className="simulation-viewport__rotation-row">
<strong>{label}</strong>
<div className="simulation-viewport__rotation-fields">
{ROTATION_AXES.map((axis) => (
<RotationField
key={axis}
label={axis.toUpperCase()}
ariaLabel={`${label}: вращение ${axis.toUpperCase()}`}
value={value[axis]}
disabled={disabled}
onChange={(angle) => onChange({ ...value, [axis]: angle })}
/>
))}
</div>
</div>
);
}
function RotationField({
label,
ariaLabel,
value,
disabled,
onChange,
}: {
label: string;
ariaLabel: string;
value: number;
disabled: boolean;
onChange: (angle: number) => void;
}) {
const [draft, setDraft] = useState(() => String(value));
const editingRef = useRef(false);
const cancelNextBlurRef = useRef(false);
useEffect(() => {
if (!editingRef.current) setDraft(String(value));
}, [value]);
const parsedDraft = () => Number(draft.trim().replace(",", "."));
const finishEditing = (commit: boolean) => {
const parsed = parsedDraft();
if (commit && draft.trim() !== "" && Number.isFinite(parsed)) {
const normalized = Math.max(-360, Math.min(360, parsed));
onChange(normalized);
setDraft(String(normalized));
} else {
setDraft(String(value));
}
editingRef.current = false;
};
return (
<TextField
label={label}
aria-label={ariaLabel}
fieldClassName="simulation-viewport__rotation-field"
className="simulation-viewport__rotation-input"
type="text"
inputMode="decimal"
value={draft}
disabled={disabled}
spellCheck={false}
onFocus={() => {
editingRef.current = true;
}}
onChange={(event) => {
// Treat the first input event as the start of editing as well. Programmatic
// focus (and some browser/trackpad paths) may not deliver React's focus
// event before the controlled value changes.
editingRef.current = true;
const nextDraft = event.currentTarget.value;
setDraft(nextDraft);
const parsed = Number(nextDraft.trim().replace(",", "."));
if (nextDraft.trim() !== "" && Number.isFinite(parsed) && parsed >= -360 && parsed <= 360) {
onChange(parsed);
}
}}
onKeyDown={(event) => {
event.stopPropagation();
if (event.key === "Enter") event.currentTarget.blur();
if (event.key === "Escape") {
event.preventDefault();
cancelNextBlurRef.current = true;
finishEditing(false);
event.currentTarget.blur();
}
}}
onBlur={() => {
if (cancelNextBlurRef.current) {
cancelNextBlurRef.current = false;
return;
}
finishEditing(true);
}}
/>
);
}
@@ -0,0 +1,579 @@
import { useEffect, useMemo, useState } from "react";
import {
Button,
FeatureSettingsWindow,
FieldFrame,
Icon,
Select,
SettingsCard,
StatusBadge,
TextField,
WindowFooterActions,
} from "@nodedc/ui-react";
import {
applyComputeContourNetwork,
fetchComputeContourAgentInstall,
fetchComputeContourNetwork,
type ComputeContour,
type ComputeContourAgentInstall,
type ComputeContourDraft,
type ComputeContourNetworkStatus,
type ComputeContourPlatform,
} from "../../core/system/computeContours";
import {
DEFAULT_TELEMETRY_POLL_INTERVAL_SECONDS,
parseTelemetryPollIntervalDraft,
resolveTelemetryPollIntervalDraft,
} from "../../core/system/telemetryPollInterval";
interface ComputeContourSettingsWindowProps {
open: boolean;
contour: ComputeContour | null;
mode: "create" | "edit";
onClose: () => void;
onCreate: (draft: ComputeContourDraft) => Promise<ComputeContour>;
onUpdate: (
contour: ComputeContour,
draft: ComputeContourDraft,
) => Promise<ComputeContour>;
}
const platformOptions = [
{ value: "windows", label: "Windows", description: "Worker с Windows service" },
{ value: "linux", label: "Linux", description: "Worker с systemd service" },
{ value: "unknown", label: "Не определено", description: "Платформа будет уточнена" },
] satisfies Array<{
value: ComputeContourPlatform;
label: string;
description: string;
}>;
function emptyDraft(): ComputeContourDraft {
return {
display_name: "",
expected_node_id: "",
platform: "unknown",
telemetry_mode: "agent-mqtt",
address: "",
ssh_port: 22,
mqtt_host: "127.0.0.1",
mqtt_port: 1883,
mqtt_bind_address: "127.0.0.1",
telemetry_poll_interval_seconds: DEFAULT_TELEMETRY_POLL_INTERVAL_SECONDS,
mqtt_publish_interval_seconds: 2,
};
}
function draftFromContour(contour: ComputeContour | null): ComputeContourDraft {
if (!contour) return emptyDraft();
return {
display_name: contour.display_name,
expected_node_id: contour.expected_node_id,
platform: contour.platform,
telemetry_mode: contour.telemetry_mode,
address: contour.address,
ssh_port: contour.ssh_port,
mqtt_host: contour.mqtt_host,
mqtt_port: contour.mqtt_port,
mqtt_bind_address: contour.mqtt_bind_address,
telemetry_poll_interval_seconds: contour.telemetry_poll_interval_seconds,
mqtt_publish_interval_seconds: contour.mqtt_publish_interval_seconds,
};
}
export function ComputeContourSettingsWindow({
open,
contour,
mode,
onClose,
onCreate,
onUpdate,
}: ComputeContourSettingsWindowProps) {
const [draft, setDraft] = useState<ComputeContourDraft>(() => draftFromContour(contour));
const [telemetryPollIntervalDraft, setTelemetryPollIntervalDraft] = useState(
() => String(draftFromContour(contour).telemetry_poll_interval_seconds),
);
const [mqttPublishIntervalDraft, setMqttPublishIntervalDraft] = useState(
() => String(draftFromContour(contour).mqtt_publish_interval_seconds),
);
const [activeSection, setActiveSection] = useState<"connection" | "agent">("connection");
const [install, setInstall] = useState<ComputeContourAgentInstall | null>(null);
const [network, setNetwork] = useState<ComputeContourNetworkStatus | null>(null);
const [networkAction, setNetworkAction] = useState<
"refresh" | "broker" | "worker" | null
>(null);
const [busy, setBusy] = useState(false);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
if (!open) return;
const nextDraft = draftFromContour(mode === "edit" ? contour : null);
setDraft(nextDraft);
setTelemetryPollIntervalDraft(String(nextDraft.telemetry_poll_interval_seconds));
setMqttPublishIntervalDraft(String(nextDraft.mqtt_publish_interval_seconds));
setActiveSection("connection");
setInstall(null);
setNetwork(null);
setNetworkAction(null);
setError(null);
}, [contour, mode, open]);
useEffect(() => {
if (!open || mode !== "edit" || !contour) return;
const controller = new AbortController();
setNetworkAction("refresh");
void fetchComputeContourNetwork(contour.contour_id, controller.signal)
.then((document) => {
if (!controller.signal.aborted) setNetwork(document);
})
.catch((reason: unknown) => {
if (!controller.signal.aborted) {
setError(reason instanceof Error ? reason.message : "Сетевая проверка недоступна.");
}
})
.finally(() => {
if (!controller.signal.aborted) setNetworkAction(null);
});
return () => controller.abort();
}, [contour, mode, open]);
useEffect(() => {
if (!open || mode !== "edit" || !contour) return;
const controller = new AbortController();
void fetchComputeContourAgentInstall(contour.contour_id, controller.signal)
.then((document) => {
if (!controller.signal.aborted) setInstall(document);
})
.catch((reason: unknown) => {
if (!controller.signal.aborted) {
setError(reason instanceof Error ? reason.message : "Инструкция агента недоступна.");
}
});
return () => controller.abort();
}, [contour, mode, open]);
const telemetryPollIntervalSeconds = useMemo(
() => parseTelemetryPollIntervalDraft(telemetryPollIntervalDraft),
[telemetryPollIntervalDraft],
);
const mqttPublishIntervalSeconds = useMemo(
() => parseTelemetryPollIntervalDraft(mqttPublishIntervalDraft),
[mqttPublishIntervalDraft],
);
const valid = useMemo(() => (
Boolean(draft.display_name.trim())
&& Boolean(draft.expected_node_id.trim())
&& Boolean(draft.mqtt_host.trim())
&& Boolean(draft.mqtt_bind_address.trim())
&& Number.isInteger(draft.ssh_port)
&& draft.ssh_port > 0
&& Number.isInteger(draft.mqtt_port)
&& draft.mqtt_port > 0
&& telemetryPollIntervalSeconds !== null
&& mqttPublishIntervalSeconds !== null
), [draft, mqttPublishIntervalSeconds, telemetryPollIntervalSeconds]);
const networkProfileDirty = Boolean(
contour
&& (
draft.mqtt_host !== contour.mqtt_host
|| draft.mqtt_port !== contour.mqtt_port
|| draft.mqtt_bind_address !== contour.mqtt_bind_address
|| draft.mqtt_publish_interval_seconds !== contour.mqtt_publish_interval_seconds
),
);
const commitTelemetryPollInterval = () => {
const resolution = resolveTelemetryPollIntervalDraft(
telemetryPollIntervalDraft,
draft.telemetry_poll_interval_seconds,
);
setTelemetryPollIntervalDraft(resolution.draft);
if (!resolution.accepted) return;
setDraft((current) => (
current.telemetry_poll_interval_seconds === resolution.seconds
? current
: {
...current,
telemetry_poll_interval_seconds: resolution.seconds,
}
));
};
const commitMqttPublishInterval = () => {
const resolution = resolveTelemetryPollIntervalDraft(
mqttPublishIntervalDraft,
draft.mqtt_publish_interval_seconds,
);
setMqttPublishIntervalDraft(resolution.draft);
if (!resolution.accepted) return;
setDraft((current) => (
current.mqtt_publish_interval_seconds === resolution.seconds
? current
: {
...current,
mqtt_publish_interval_seconds: resolution.seconds,
}
));
};
const save = async () => {
if (
!valid
|| busy
|| telemetryPollIntervalSeconds === null
|| mqttPublishIntervalSeconds === null
) return;
const committedDraft = {
...draft,
telemetry_poll_interval_seconds: telemetryPollIntervalSeconds,
mqtt_publish_interval_seconds: mqttPublishIntervalSeconds,
};
setBusy(true);
setError(null);
try {
if (mode === "edit" && contour) {
await onUpdate(contour, committedDraft);
} else {
await onCreate(committedDraft);
}
onClose();
} catch (reason) {
setError(reason instanceof Error ? reason.message : "Контур не сохранён.");
} finally {
setBusy(false);
}
};
const refreshNetwork = async () => {
if (!contour || networkAction) return;
setNetworkAction("refresh");
setError(null);
try {
setNetwork(await fetchComputeContourNetwork(contour.contour_id));
} catch (reason) {
setError(reason instanceof Error ? reason.message : "Сетевая проверка недоступна.");
} finally {
setNetworkAction(null);
}
};
const applyNetwork = async (target: "broker" | "worker") => {
if (!contour || networkAction || networkProfileDirty) return;
setNetworkAction(target);
setError(null);
try {
await applyComputeContourNetwork(contour.contour_id, target);
setNetwork(await fetchComputeContourNetwork(contour.contour_id));
} catch (reason) {
setError(
reason instanceof Error ? reason.message : "Сетевой профиль не применён.",
);
} finally {
setNetworkAction(null);
}
};
return (
<FeatureSettingsWindow
open={open}
title={mode === "create" ? "Добавить вычислительный контур" : "Настройки контура"}
subtitle="Локальная переносимая конфигурация"
identity={{
title: contour?.display_name ?? "Новый контур",
subtitle: contour?.expected_node_id ?? "Node ID не назначен",
avatarLabel: contour?.display_name.slice(0, 2).toUpperCase() ?? "WC",
}}
sections={[
{
id: "connection",
label: "Подключение",
group: "ВЫЧИСЛИТЕЛЬНЫЙ КОНТУР",
icon: "network",
},
{
id: "agent",
label: "Агент",
group: "ТЕЛЕМЕТРИЯ",
icon: "activity",
disabled: mode === "create",
},
]}
activeSection={activeSection}
onSectionChange={setActiveSection}
onClose={onClose}
footer={(
<WindowFooterActions>
<Button variant="secondary" onClick={onClose}>Отмена</Button>
<Button variant="primary" disabled={!valid || busy} onClick={() => void save()}>
{busy ? "Сохраняем…" : mode === "create" ? "Добавить контур" : "Сохранить"}
</Button>
</WindowFooterActions>
)}
>
<div className="compute-contour-settings">
{activeSection === "connection" ? (
<>
<SettingsCard
eyebrow="КОНТУР"
title="Идентичность и локальная сеть"
description="Node ID проверяется независимо от IP-адреса. Адрес можно менять при переносе комплекта в другую локальную сеть."
>
<div className="compute-contour-settings__form">
<TextField
label="Название"
value={draft.display_name}
placeholder="Worker 006"
onChange={(event) => setDraft((current) => ({
...current,
display_name: event.currentTarget.value,
}))}
/>
<TextField
label="Ожидаемый Node ID"
value={draft.expected_node_id}
placeholder="DESKTOP-OPJ8J04"
onChange={(event) => setDraft((current) => ({
...current,
expected_node_id: event.currentTarget.value,
}))}
/>
<FieldFrame label="Операционная система">
<Select
label="Операционная система"
value={draft.platform}
options={platformOptions}
variant="split"
menuWidth="anchor"
onChange={(platform) => setDraft((current) => ({ ...current, platform }))}
/>
</FieldFrame>
<TextField
label="Адрес узла"
hint="IP или hostname в текущей LAN"
value={draft.address}
onChange={(event) => setDraft((current) => ({
...current,
address: event.currentTarget.value,
}))}
/>
<TextField
label="MQTT broker"
hint="Стабильный hostname рекомендуется вместо выдаваемого DHCP IP"
value={draft.mqtt_host}
onChange={(event) => setDraft((current) => ({
...current,
mqtt_host: event.currentTarget.value,
}))}
/>
<TextField
label="MQTT port"
type="number"
min={1}
max={65535}
value={String(draft.mqtt_port)}
onChange={(event) => setDraft((current) => ({
...current,
mqtt_port: Number(event.currentTarget.value),
}))}
/>
<TextField
label="Публикация broker"
hint="IP текущего Mac в разрешённой LAN · 0.0.0.0 запрещён"
value={draft.mqtt_bind_address}
onChange={(event) => setDraft((current) => ({
...current,
mqtt_bind_address: event.currentTarget.value,
}))}
/>
<TextField
label="Обновление интерфейса"
hint="1–60 с"
type="text"
inputMode="numeric"
autoComplete="off"
aria-invalid={telemetryPollIntervalSeconds === null}
value={telemetryPollIntervalDraft}
onChange={(event) => setTelemetryPollIntervalDraft(event.currentTarget.value)}
onBlur={commitTelemetryPollInterval}
onKeyDown={(event) => {
if (event.key === "Enter") {
event.preventDefault();
event.stopPropagation();
commitTelemetryPollInterval();
} else if (event.key === "Escape") {
event.preventDefault();
event.stopPropagation();
setTelemetryPollIntervalDraft(
String(draft.telemetry_poll_interval_seconds),
);
}
}}
/>
<TextField
label="Интервал MQTT агента"
hint="1–60 с · применяется конфигурацией агента"
type="text"
inputMode="numeric"
autoComplete="off"
aria-invalid={mqttPublishIntervalSeconds === null}
value={mqttPublishIntervalDraft}
onChange={(event) => setMqttPublishIntervalDraft(event.currentTarget.value)}
onBlur={commitMqttPublishInterval}
onKeyDown={(event) => {
if (event.key === "Enter") {
event.preventDefault();
event.stopPropagation();
commitMqttPublishInterval();
} else if (event.key === "Escape") {
event.preventDefault();
event.stopPropagation();
setMqttPublishIntervalDraft(
String(draft.mqtt_publish_interval_seconds),
);
}
}}
/>
{draft.telemetry_mode === "legacy-ssh" ? (
<TextField
label="SSH port"
type="number"
min={1}
max={65535}
value={String(draft.ssh_port)}
onChange={(event) => setDraft((current) => ({
...current,
ssh_port: Number(event.currentTarget.value),
}))}
/>
) : null}
</div>
</SettingsCard>
<SettingsCard
eyebrow="СЕТЕВОЙ ПРОФИЛЬ"
title="MQTT · Mac ↔ Worker"
description="Mesh-точки одной LAN не закрепляются по отдельности. Профиль хранит стабильное имя Mac и адрес публикации broker в текущей сети."
actions={(
<StatusBadge tone={network?.broker.ready ? "success" : "warning"}>
{network?.broker.ready ? "Broker доступен" : "Нужна проверка"}
</StatusBadge>
)}
>
<div className="compute-contour-settings__network">
<dl>
<div>
<dt>Endpoint Worker</dt>
<dd>{network
? `${network.broker.configured_host}:${network.broker.configured_port}`
: "—"}</dd>
</div>
<div>
<dt>Текущий IP</dt>
<dd>{network?.broker.resolved_addresses.join(", ") || "—"}</dd>
</div>
<div>
<dt>Публикация Mac</dt>
<dd>{network?.broker.bind_address ?? "—"}</dd>
</div>
<div>
<dt>{contour?.display_name ?? "Worker"}</dt>
<dd>{network?.worker.reachable
? `${network.worker.mqtt_host ?? "—"}:${network.worker.mqtt_port ?? "—"}`
: "Недоступен"}</dd>
</div>
</dl>
<div className="compute-contour-settings__network-statuses">
<StatusBadge tone={network?.broker.bind_reachable ? "success" : "danger"}>
{network?.broker.bind_reachable
? "Listener Mac доступен"
: "Listener Mac недоступен"}
</StatusBadge>
<StatusBadge tone={network?.worker.broker_reachable ? "success" : "danger"}>
{network?.worker.broker_reachable
? "Worker видит broker"
: "Worker не видит broker"}
</StatusBadge>
<StatusBadge tone={network?.worker.matches_profile ? "success" : "warning"}>
{network?.worker.matches_profile
? "Профиль синхронизирован"
: "Профиль отличается"}
</StatusBadge>
</div>
<div className="compute-contour-settings__network-actions">
<Button
size="compact"
variant="secondary"
disabled={Boolean(networkAction)}
icon={<Icon name="refresh" size={14} />}
onClick={() => void refreshNetwork()}
>
{networkAction === "refresh" ? "Проверяем…" : "Проверить"}
</Button>
<Button
size="compact"
variant="secondary"
disabled={Boolean(networkAction) || networkProfileDirty}
onClick={() => void applyNetwork("broker")}
>
{networkAction === "broker" ? "Применяем…" : "Применить на Mac"}
</Button>
<Button
size="compact"
variant="secondary"
disabled={Boolean(networkAction) || networkProfileDirty}
onClick={() => void applyNetwork("worker")}
>
{networkAction === "worker" ? "Применяем…" : "Применить на Worker"}
</Button>
</div>
{networkProfileDirty ? (
<p>Сначала сохраните изменённый сетевой профиль, затем примените его.</p>
) : null}
{error ? <StatusBadge tone="danger">{error}</StatusBadge> : null}
</div>
</SettingsCard>
</>
) : null}
{activeSection === "agent" ? (
<SettingsCard
eyebrow="АГЕНТ"
title="Telegraf · универсальный сборщик"
description="Hardware и runtime собирает готовый агент. Mission Core нормализует только контур, LAB/run и стадии обработки."
actions={(
<StatusBadge tone={install?.ready ? "success" : "warning"}>
{install?.ready ? "Готов к установке" : "Нужен scoped MQTT credential"}
</StatusBadge>
)}
>
{install ? (
<div className="compute-contour-settings__install">
<dl>
<div><dt>Шаблон</dt><dd>{install.agent.configuration_template}</dd></div>
<div><dt>Секрет</dt><dd>интерактивный ввод · не хранится в UI</dd></div>
</dl>
<code>{install.command}</code>
<Button
size="compact"
variant="secondary"
icon={<Icon name="copy" size={14} />}
onClick={() => void navigator.clipboard.writeText(install.command)}
>
Копировать команду
</Button>
{install.blocked_reason ? <p>{install.blocked_reason}</p> : null}
</div>
) : (
<p className="compute-contour-settings__empty">
Сохраните контур, чтобы получить платформенную инструкцию установки.
</p>
)}
{error ? <StatusBadge tone="danger">{error}</StatusBadge> : null}
</SettingsCard>
) : null}
</div>
</FeatureSettingsWindow>
);
}
@@ -0,0 +1,57 @@
import {
AdminNavigationPanel,
Icon,
IconButton,
} from "@nodedc/ui-react";
import { useComputeContours } from "../../core/system/ComputeContourContext";
interface SystemNavigationPanelProps {
title: string;
onAdd: () => void;
onClose: () => void;
}
export function SystemNavigationPanel({
title,
onAdd,
onClose,
}: SystemNavigationPanelProps) {
const { contours, selectedContour, selectContour } = useComputeContours();
const contourCountLabel = contours.length === 1
? "1 конфигурация"
: `${contours.length} конфигураций`;
return (
<AdminNavigationPanel
eyebrow="MISSION CORE"
title={title}
closeLabel={`Закрыть раздел «${title}»`}
navigationLabel="Вычислительные контуры"
onClose={onClose}
headerActions={(
<IconButton label="Добавить вычислительный контур" onClick={onAdd}>
<Icon name="plus" size={16} strokeWidth={1.6} />
</IconButton>
)}
contexts={contours.map((contour) => ({
id: contour.contour_id,
label: contour.display_name,
description: contour.expected_node_id,
icon: <Icon name="apps" />,
active: selectedContour?.contour_id === contour.contour_id,
onSelect: () => selectContour(contour.contour_id),
}))}
items={[]}
onItemChange={() => undefined}
footer={(
<>
<span className="nodedc-admin-panel__nav-icon" aria-hidden="true">
<Icon name="activity" />
</span>
<span>{contourCountLabel}</span>
</>
)}
/>
);
}
@@ -0,0 +1,33 @@
import { SegmentedControl } from "@nodedc/ui-react";
import { workspacesForRoot } from "../../productModel";
const systemWorkspaces = workspacesForRoot("system");
const compactLabels: Record<string, string> = {
modules: "Модули",
integrations: "Интеграции",
network: "Сеть",
audit: "Аудит",
};
interface SystemWorkspaceSelectorProps {
value: string;
onChange: (workspaceId: string) => void;
}
export function SystemWorkspaceSelector({
value,
onChange,
}: SystemWorkspaceSelectorProps) {
return (
<SegmentedControl
value={value}
items={systemWorkspaces.map((definition) => ({
value: definition.id,
label: compactLabels[definition.id] ?? definition.label,
}))}
label="Рабочая поверхность вычислительного контура"
onChange={onChange}
/>
);
}
@@ -0,0 +1,51 @@
interface TelemetrySeriesProps {
label: string;
values: Array<number | null>;
value: string;
resource?: string | null;
ceiling?: number;
}
export function lineSegments(values: Array<number | null>, ceiling?: number): string[] {
const finite = values.filter((value): value is number => value !== null && Number.isFinite(value));
if (!finite.length) return [];
const maximum = Math.max(ceiling ?? 0, ...finite, 1), denominator = Math.max(1, values.length - 1);
const minimum = Math.min(0, ...finite), span = maximum - minimum;
const segments:string[]=[];let segment:string[]=[];
values.forEach((value,index)=>{
if(value===null||!Number.isFinite(value)){if(segment.length)segments.push(segment.join(' '));segment=[];return;}
segment.push(`${(index/denominator*100).toFixed(2)},${(36-(Math.min(maximum,value)-minimum)/span*34).toFixed(2)}`);
});
if(segment.length)segments.push(segment.join(' '));
return segments;
}
export function TelemetrySeries({
label,
values,
value,
resource,
ceiling,
}: TelemetrySeriesProps) {
const segments = lineSegments(values, ceiling);
return (
<div className="system-telemetry-series">
<div>
<span className="system-telemetry-series__label">
<span>{label}</span>
{resource ? <small>{resource}</small> : null}
</span>
<strong>{value}</strong>
</div>
<svg
viewBox="0 0 100 38"
preserveAspectRatio="none"
role="img"
aria-label={`${label}: ${value}`}
>
<path d="M0 37 H100" />
{segments.map((points,index)=><polyline key={index} points={points} />)}
</svg>
</div>
);
}
@@ -0,0 +1,72 @@
import type { CSSProperties } from "react";
import type { WorkerPipelineStage } from "../../core/system/workerTelemetry";
interface WorkerPipelineStagesProps {
stages: WorkerPipelineStage[];
}
function stateLabel(state: WorkerPipelineStage["state"]): string {
if (state === "active") return "выполняется";
if (state === "waiting") return "ожидает";
if (state === "ready") return "готов";
return "нет live-состояния";
}
function stageDuration(value: number | null): string {
if (typeof value !== "number" || !Number.isFinite(value)) return "—";
if (value < 1) return `${Math.round(value * 1000)} мс`;
return `${new Intl.NumberFormat("ru-RU", {
maximumFractionDigits: value < 10 ? 2 : 1,
}).format(value)} с`;
}
function stageDetail(stage: WorkerPipelineStage): string {
if (
typeof stage.activations !== "number"
|| typeof stage.share_percent !== "number"
|| !Number.isFinite(stage.share_percent)
) {
return "Измерений ещё нет";
}
const share = new Intl.NumberFormat("ru-RU", {
maximumFractionDigits: 1,
}).format(stage.share_percent);
return `${stage.activations} проходов · ${share}% измеренного времени`;
}
export function WorkerPipelineStages({ stages }: WorkerPipelineStagesProps) {
return (
<ol className="worker-stage-list" aria-label="Стадии текущей задачи">
{stages.map((stage, index) => {
const share = typeof stage.share_percent === "number"
? Math.max(0, Math.min(100, stage.share_percent))
: 0;
const style = {
"--worker-stage-share": `${share}%`,
} as CSSProperties;
return (
<li
key={stage.id}
data-state={stage.state}
style={style}
aria-label={`${stage.label}: ${stageDetail(stage)}`}
>
<span className="worker-stage-list__fill" aria-hidden="true" />
<span className="worker-stage-list__index">
{String(index + 1).padStart(2, "0")}
</span>
<div>
<strong>{stage.label}</strong>
<small>{stageDetail(stage)}</small>
</div>
<div className="worker-stage-list__value">
<strong>{stageDuration(stage.elapsed_seconds)}</strong>
<small>{stateLabel(stage.state)}</small>
</div>
</li>
);
})}
</ol>
);
}
@@ -0,0 +1,50 @@
import { GlassSurface, StatusBadge } from "@nodedc/ui-react";
import type { WorkerRuntime } from "../../core/system/workerTelemetry";
import {
formatOptionalPercent,
runtimeStateLabel,
runtimeTone,
} from "./systemFormat";
export function WorkerRuntimeCard({ runtime }: { runtime: WorkerRuntime }) {
return (
<GlassSurface
className="worker-runtime-card"
padding="md"
tone={runtime.external ? "soft" : "default"}
data-external={runtime.external ? "true" : undefined}
>
<header>
<div>
<span className="section-eyebrow">
{runtime.external ? "ВНЕШНЯЯ НАГРУЗКА" : "MISSION CORE RUNTIME"}
</span>
<h3>{runtime.role}</h3>
<code>{runtime.name}</code>
</div>
<StatusBadge tone={runtimeTone(runtime)}>
{runtimeStateLabel(runtime)}
</StatusBadge>
</header>
<dl>
<div>
<dt>CPU</dt>
<dd>{formatOptionalPercent(runtime.cpu_percent)}</dd>
</div>
<div>
<dt>Память</dt>
<dd>{runtime.memory_usage ?? "—"}</dd>
</div>
<div>
<dt>Сеть I/O</dt>
<dd>{runtime.network_io ?? "—"}</dd>
</div>
<div>
<dt>Процессы</dt>
<dd>{runtime.pids ?? "—"}</dd>
</div>
</dl>
</GlassSurface>
);
}
@@ -0,0 +1,67 @@
import type { StatusTone } from "@nodedc/ui-react";
import type { WorkerRuntime } from "../../core/system/workerTelemetry";
export function formatOptionalPercent(value: number | null | undefined): string {
return typeof value === "number" && Number.isFinite(value)
? `${new Intl.NumberFormat("ru-RU", { maximumFractionDigits: 1 }).format(value)}%`
: "—";
}
export function formatBytes(value: number | null | undefined): string {
if (typeof value !== "number" || !Number.isFinite(value)) return "—";
const units = ["Б", "КиБ", "МиБ", "ГиБ", "ТиБ"];
let current = Math.max(0, value);
let unit = 0;
while (current >= 1024 && unit < units.length - 1) {
current /= 1024;
unit += 1;
}
return `${new Intl.NumberFormat("ru-RU", {
maximumFractionDigits: current >= 100 ? 0 : 1,
}).format(current)} ${units[unit]}`;
}
export function formatRate(value: number | null | undefined): string {
const formatted = formatBytes(value);
return formatted === "—" ? formatted : `${formatted}/с`;
}
export function formatBitRate(value: number | null | undefined): string {
if (typeof value !== "number" || !Number.isFinite(value)) return "—";
const units = ["бит/с", "Кбит/с", "Мбит/с", "Гбит/с"];
let current = Math.max(0, value);
let unit = 0;
while (current >= 1000 && unit < units.length - 1) {
current /= 1000;
unit += 1;
}
return `${new Intl.NumberFormat("ru-RU", {
maximumFractionDigits: current >= 100 ? 0 : 1,
}).format(current)} ${units[unit]}`;
}
export function formatDuration(value: number | null | undefined): string {
if (typeof value !== "number" || !Number.isFinite(value)) return "—";
const hours = Math.floor(value / 3600);
if (hours < 24) return `${hours} ч`;
return `${Math.floor(hours / 24)} д ${hours % 24} ч`;
}
export function formatLatency(value: number | null | undefined): string {
if (typeof value !== "number" || !Number.isFinite(value)) return "—";
return `${Math.round(value)} мс`;
}
export function runtimeTone(runtime: WorkerRuntime): StatusTone {
if (runtime.state !== "running") return "danger";
if (runtime.health && runtime.health !== "healthy") return "warning";
return runtime.external ? "neutral" : "success";
}
export function runtimeStateLabel(runtime: WorkerRuntime): string {
if (runtime.state !== "running") return "Недоступен";
if (runtime.health === "healthy") return "Работает";
if (runtime.health) return runtime.health;
return "Запущен";
}
@@ -0,0 +1,62 @@
import { useCallback, useMemo, useState, type ReactNode } from "react";
import type { ApplicationPanelUtilityAction } from "@nodedc/ui-react";
import { useComputeContours } from "../../core/system/ComputeContourContext";
import { ComputeContourSettingsWindow } from "./ComputeContourSettingsWindow";
interface ComputeContourSettingsController {
canEdit: boolean;
openCreate: () => void;
openEdit: () => void;
utilityActions: readonly ApplicationPanelUtilityAction[];
window: ReactNode;
}
export function useComputeContourSettings(): ComputeContourSettingsController {
const contours = useComputeContours();
const [open, setOpen] = useState(false);
const [mode, setMode] = useState<"create" | "edit">("edit");
const openCreate = useCallback(() => {
setMode("create");
setOpen(true);
}, []);
const openEdit = useCallback(() => {
setMode("edit");
setOpen(true);
}, []);
const utilityActions = useMemo<readonly ApplicationPanelUtilityAction[]>(() => [
{
label: "Обновить телеметрию выбранного контура",
icon: "refresh",
disabled: contours.selectedContour === null,
onClick: contours.refreshTelemetry,
},
{
label: "Настроить выбранный вычислительный контур",
icon: "settings",
disabled: contours.selectedContour === null,
onClick: openEdit,
},
], [
contours.refreshTelemetry,
contours.selectedContour,
openEdit,
]);
return {
canEdit: contours.selectedContour !== null,
openCreate,
openEdit,
utilityActions,
window: (
<ComputeContourSettingsWindow
open={open}
mode={mode}
contour={contours.selectedContour}
onClose={() => setOpen(false)}
onCreate={contours.createContour}
onUpdate={contours.updateContour}
/>
),
};
}
@@ -0,0 +1,93 @@
import { useMemo } from "react";
import type { ApplicationPanelUtilityAction } from "@nodedc/ui-react";
import type { WorkspaceDefinition } from "../productModel";
interface ApplicationPanelActionsOptions {
definition: WorkspaceDefinition | null;
onAddVehicle?: () => void;
refreshRuntime: () => void;
resetConnectionScenario?: () => Promise<boolean>;
connectionScenarioResetting: boolean;
saveWorkspaceLayout: () => Promise<void>;
workspaceLayoutSaving: boolean;
systemUtilityActions: readonly ApplicationPanelUtilityAction[];
sessionOverview?: { open: boolean; toggle: () => void; available: boolean };
}
export function deviceRuntimeUtilityAction({
refreshRuntime,
resetConnectionScenario,
connectionScenarioResetting,
}: Pick<
ApplicationPanelActionsOptions,
"refreshRuntime" | "resetConnectionScenario" | "connectionScenarioResetting"
>): ApplicationPanelUtilityAction {
return {
label: resetConnectionScenario
? connectionScenarioResetting
? "Сбрасываем подключение"
: "Сбросить подключение"
: "Обновить состояние локального контура",
icon: resetConnectionScenario && connectionScenarioResetting
? "activity"
: "refresh",
disabled: resetConnectionScenario && connectionScenarioResetting
? true
: undefined,
onClick: resetConnectionScenario
? connectionScenarioResetting
? () => undefined
: () => void resetConnectionScenario()
: refreshRuntime,
};
}
export function useApplicationPanelActions({
definition,
onAddVehicle,
refreshRuntime,
resetConnectionScenario,
connectionScenarioResetting,
saveWorkspaceLayout,
workspaceLayoutSaving,
systemUtilityActions,
sessionOverview,
}: ApplicationPanelActionsOptions): ApplicationPanelUtilityAction[] {
return useMemo(() => {
const actions: ApplicationPanelUtilityAction[] = [];
if (definition?.kind === "vehicles" && onAddVehicle) actions.push({ label: "Добавить аппарат", icon: "plus", onClick: onAddVehicle });
if (definition?.kind === "device") {
actions.push(deviceRuntimeUtilityAction({
refreshRuntime,
resetConnectionScenario,
connectionScenarioResetting,
}));
}
if (definition && ["spatial", "recordings"].includes(definition.kind)) {
actions.push({
label: workspaceLayoutSaving ? "Сохраняем компоновку" : "Сохранить компоновку",
icon: "save",
disabled: workspaceLayoutSaving,
onClick: () => void saveWorkspaceLayout(),
});
}
if (definition?.root === "system") actions.push(...systemUtilityActions);
if (definition?.kind === "recordings" && sessionOverview) actions.push({
label: sessionOverview.open ? "Закрыть информацию о записи" : "Информация о записи",
icon: "info", pressed: sessionOverview.open, disabled: !sessionOverview.available,
onClick: sessionOverview.toggle,
});
return actions;
}, [
definition,
onAddVehicle,
refreshRuntime,
resetConnectionScenario,
connectionScenarioResetting,
saveWorkspaceLayout,
systemUtilityActions,
workspaceLayoutSaving,
sessionOverview,
]);
}
@@ -1,8 +1,13 @@
import type { DeviceUiPlugin } from "../core/device-plugins/contracts";
import { xgridsK1Plugin } from "@xgrids-k1/frontend/plugin";
import {insta360X4SensorUi} from '../../../../plugins/insta360-x4/frontend/src/plugin';
// Composition root: this is the only place where Mission Core chooses which
// statically reviewed device plugins are shipped in the current build.
export const installedDevicePlugins: readonly DeviceUiPlugin[] = Object.freeze([
xgridsK1Plugin,
]);
// Node-executed camera controls use the existing sensor contribution contract;
// they do not register a desktop capture/AI runtime or a new product workspace.
export const installedNodeSensorContributions = Object.freeze([insta360X4SensorUi]);
@@ -0,0 +1,91 @@
export interface ArtifactScope {
scope_id: string;
file_count: number;
logical_bytes: number;
modified_at_utc: string | null;
}
export interface ArtifactHealth {
schema_version: "missioncore.artifact-health/v1";
generated_at_utc: string;
overall_state: "live" | "attention" | "unavailable";
inventory: {
state: "live" | "degraded" | "unavailable";
scanned_at_utc: string;
scan_duration_ms: number;
file_count: number;
logical_bytes: number;
unreadable_entries: number;
files_delta_since_previous: number | null;
bytes_delta_since_previous: number | null;
scopes: ArtifactScope[];
};
exact_audit: {
state: "exact-current" | "exact-stale" | "unavailable";
result_id: string | null;
audited_at_utc: string | null;
root_count: number;
file_count: number;
logical_bytes: number;
unique_content_bytes: number;
duplicate_bytes: number;
duplicate_fraction: number;
amplification_ratio: number;
duplicate_content_groups: number;
changed_roots: string[];
limitations: string[];
};
content_references: {
state: "not-indexed" | "indexed";
storage_model:
| "materialized-copies"
| "materialized-copies-with-reference-index";
result_id: string | null;
indexed_at_utc: string | null;
logical_reference_count: number;
canonical_content_count: number;
duplicate_reference_count: number;
exact_duplicate_bytes: number;
physical_reclamation_applied: false;
storage_migration_authorized: false;
next_gate: string;
};
}
function isRecord(value: unknown): value is Record<string, unknown> {
return Boolean(value) && typeof value === "object" && !Array.isArray(value);
}
export async function fetchArtifactHealth(
signal?: AbortSignal,
): Promise<ArtifactHealth> {
const response = await fetch("/api/v1/data/artifact-health", {
method: "GET",
headers: { Accept: "application/json" },
signal,
});
if (!response.ok) {
throw new Error(`API здоровья данных вернул HTTP ${response.status}.`);
}
const document: unknown = await response.json();
if (
!isRecord(document)
|| document.schema_version !== "missioncore.artifact-health/v1"
|| !isRecord(document.inventory)
|| !Array.isArray(document.inventory.scopes)
|| !isRecord(document.exact_audit)
|| !isRecord(document.content_references)
|| !["not-indexed", "indexed"].includes(
String(document.content_references.state),
)
|| ![
"materialized-copies",
"materialized-copies-with-reference-index",
].includes(String(document.content_references.storage_model))
|| document.content_references.physical_reclamation_applied !== false
|| document.content_references.storage_migration_authorized !== false
) {
throw new Error("Ответ здоровья данных не соответствует контракту.");
}
return document as unknown as ArtifactHealth;
}
@@ -11,6 +11,8 @@ import {
import { IdleMissionRuntimeProvider } from "../runtime/MissionRuntimeContext";
import type { DeviceUiPlugin, RegisteredDeviceModel } from "./contracts";
import { createDevicePluginRegistry, type DevicePluginRegistry } from "./registry";
import type {SensorUiContribution} from '../../../../../packages/sensor-ui/src/extensions';
const NO_NODE_SENSORS: readonly SensorUiContribution[] = Object.freeze([]);
interface DevicePluginHostValue {
registry: DevicePluginRegistry;
@@ -23,15 +25,78 @@ interface DevicePluginHostValue {
const DevicePluginHostContext = createContext<DevicePluginHostValue | null>(null);
export const DEVICE_PLUGIN_SELECTED_MODEL_STORAGE_KEY =
"nodedc.mission-core.device-model-selection.v1";
export interface DeviceModelSelectionStorage {
getItem: (key: string) => string | null;
setItem: (key: string, value: string) => void;
removeItem: (key: string) => void;
}
function browserDeviceModelSelectionStorage(): DeviceModelSelectionStorage | null {
if (typeof window === "undefined") return null;
try {
return window.localStorage;
} catch {
return null;
}
}
/**
* Restore only a model that is present in the current reviewed registry.
* Removed/renamed models and malformed browser values fail closed to the
* picker and are cleared so a later remount cannot keep retrying stale state.
*/
export function restorePersistedDeviceModelId(
registry: DevicePluginRegistry,
storage: DeviceModelSelectionStorage | null,
): string | null {
if (!storage) return null;
try {
const stored = storage.getItem(DEVICE_PLUGIN_SELECTED_MODEL_STORAGE_KEY);
const modelId = stored?.trim() || null;
if (modelId && registry.resolveModel(modelId)) return modelId;
if (stored !== null) {
storage.removeItem(DEVICE_PLUGIN_SELECTED_MODEL_STORAGE_KEY);
}
return null;
} catch {
return null;
}
}
/** Persist only an already-admitted host transition; browser storage is never authority. */
export function commitPersistedDeviceModelId(
modelId: string | null,
storage: DeviceModelSelectionStorage | null,
): void {
if (!storage) return;
try {
if (modelId === null) {
storage.removeItem(DEVICE_PLUGIN_SELECTED_MODEL_STORAGE_KEY);
return;
}
storage.setItem(DEVICE_PLUGIN_SELECTED_MODEL_STORAGE_KEY, modelId);
} catch {
// A denied/full localStorage must not block the in-memory host transition.
}
}
export function DevicePluginHostProvider({
plugins,
nodeSensorContributions = NO_NODE_SENSORS,
children,
}: {
plugins: readonly DeviceUiPlugin[];
nodeSensorContributions?: readonly SensorUiContribution[];
children: ReactNode;
}) {
const registry = useMemo(() => createDevicePluginRegistry(plugins), [plugins]);
const [selectedModelId, setSelectedModelId] = useState<string | null>(null);
const registry = useMemo(() => createDevicePluginRegistry(plugins, nodeSensorContributions), [plugins, nodeSensorContributions]);
const selectionStorage = useMemo(browserDeviceModelSelectionStorage, []);
const [selectedModelId, setSelectedModelId] = useState<string | null>(() =>
restorePersistedDeviceModelId(registry, selectionStorage)
);
const [selectionTransitionPending, setSelectionTransitionPending] = useState(false);
const [selectionTransitionError, setSelectionTransitionError] = useState<string | null>(null);
const transitionInFlight = useRef(false);
@@ -56,7 +121,12 @@ export function DevicePluginHostProvider({
if (nextModelId !== null && !registry.resolveModel(nextModelId)) {
throw new Error(`Модель устройства не зарегистрирована: ${nextModelId}.`);
}
if (nextModelId === selectedModelId) return true;
if (nextModelId === selectedModelId) {
// `clearSelection()` must clear a stale persisted value even when the
// current in-memory selection is already empty.
commitPersistedDeviceModelId(nextModelId, selectionStorage);
return true;
}
transitionInFlight.current = true;
setSelectionTransitionPending(true);
@@ -88,13 +158,14 @@ export function DevicePluginHostProvider({
}
}
setSelectedModelId(nextModelId);
commitPersistedDeviceModelId(nextModelId, selectionStorage);
return true;
} finally {
transitionInFlight.current = false;
setSelectionTransitionPending(false);
}
},
[registry, selectedModelId],
[registry, selectedModelId, selectionStorage],
);
const deactivationRegistrars = useMemo(
@@ -97,12 +97,24 @@ export interface DevicePluginHostActions {
activateAutomaticSpatialSource: () => void;
}
/** Session-bound, presentation-only extension of an active spatial workflow. */
export interface SpatialActivityPresentation {
sessionId: string;
label: string;
detail: string;
busy: boolean;
}
export interface DevicePluginConnectionProps {
model: DeviceModelDefinition;
host: DevicePluginHostActions;
spatialActivity?: SpatialActivityPresentation;
}
export interface DeviceUiPlugin {
sensorUi?: {
contributions: readonly import('../../../../../packages/sensor-ui/src/extensions').SensorUiContribution[];
};
manifest: DevicePluginManifest;
RuntimeProvider: ComponentType<{
activeModel: DeviceModelDefinition | null;
@@ -6,8 +6,10 @@ import {
type DeviceUiPlugin,
type RegisteredDeviceModel,
} from "./contracts";
import type {SensorUiContribution} from '../../../../../packages/sensor-ui/src/extensions';
export interface DevicePluginRegistry {
readonly sensorContributions: readonly SensorUiContribution[];
readonly plugins: readonly DeviceUiPlugin[];
readonly models: readonly RegisteredDeviceModel[];
resolveModel: (modelId: string) => RegisteredDeviceModel | null;
@@ -15,6 +17,7 @@ export interface DevicePluginRegistry {
export function createDevicePluginRegistry(
installedPlugins: readonly DeviceUiPlugin[],
nodeSensorContributions: readonly SensorUiContribution[] = [],
): DevicePluginRegistry {
const pluginIds = new Set<string>();
const modelIds = new Set<string>();
@@ -133,7 +136,15 @@ export function createDevicePluginRegistry(
}
const modelById = new Map(models.map((registered) => [registered.model.id, registered]));
const sensorContributions = [
...installedPlugins.flatMap(plugin => plugin.sensorUi?.contributions ?? []),
...nodeSensorContributions,
];
if (new Set(sensorContributions.map(value => value.kind)).size !== sensorContributions.length) {
throw new Error('Плагины повторяют модель устройства БК.');
}
return {
sensorContributions: Object.freeze(sensorContributions),
plugins: Object.freeze([...installedPlugins]),
models: Object.freeze(models),
resolveModel: (modelId) => modelById.get(modelId) ?? null,
@@ -0,0 +1,272 @@
import { roots, type RootId } from "../../productModel";
export type EnvironmentSurfaceId = "home" | RootId;
import { defaultEnvironmentImageDurationSeconds, maxEnvironmentMediaItems, type EnvironmentBackground, type EnvironmentMediaItem, type EnvironmentMediaKind, type EnvironmentMediaSource, type EnvironmentPage } from "@nodedc/ui-core";
export { createEnvironmentMediaItem, appendEnvironmentMediaItem, removeEnvironmentMediaItem, inferEnvironmentMediaKind, defaultEnvironmentImageDurationSeconds, maxEnvironmentMediaItems } from "@nodedc/ui-core";
export type { EnvironmentBackground, EnvironmentMediaItem, EnvironmentMediaKind, EnvironmentMediaSource, EnvironmentPage } from "@nodedc/ui-core";
export interface EnvironmentSettings {
revision: number;
pages: Record<EnvironmentSurfaceId, EnvironmentPage>;
}
export interface UploadedEnvironmentMedia {
surfaceId: EnvironmentSurfaceId;
itemId: string;
url: string;
fileName: string;
mediaKind: EnvironmentMediaKind;
mediaType: string;
byteLength: number;
sha256: string;
}
const surfaceIds: readonly EnvironmentSurfaceId[] = [
"home",
"fleet",
"observation",
"missions",
"data",
"system",
"polygon",
];
function emptyBackground(): EnvironmentBackground { return { enabled: false, imageDurationSeconds: defaultEnvironmentImageDurationSeconds, items: [] }; }
const defaultQuickActions: Record<
EnvironmentSurfaceId,
readonly [string | null, string | null]
> = {
home: ["spatial-scene", "vehicles"],
fleet: ["vehicles", "contour-health"],
observation: ["cameras", "world-map"],
missions: ["routes", null],
data: ["recordings", "datasets"],
system: ["modules", "integrations"],
polygon: ["lab-archive", "local-device"],
};
export function defaultEnvironmentSettings(): EnvironmentSettings {
const rootById = new Map(roots.map((root) => [root.id, root]));
return {
revision: 0,
pages: Object.fromEntries(surfaceIds.map((surfaceId) => {
const root = surfaceId === "home" ? null : rootById.get(surfaceId) ?? null;
const [primaryWorkspaceId, secondaryWorkspaceId] = defaultQuickActions[surfaceId];
return [surfaceId, {
headerLabel: root?.label ?? "Mission Core",
eyebrow: root?.eyebrow ?? "NODEDC / MISSION CORE",
title: root?.title ?? "Mission Core",
description: root?.statement
?? "Наблюдение, планирование и корректировка миссий в одной модульной рабочей области.",
primaryWorkspaceId,
secondaryWorkspaceId,
background: emptyBackground(),
}];
})) as Record<EnvironmentSurfaceId, EnvironmentPage>,
};
}
function requireRecord(value: unknown, path: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new Error(`${path} должен быть объектом.`);
}
return value as Record<string, unknown>;
}
function requireString(
value: unknown,
path: string,
nullable = false,
): string | null {
if (nullable && value === null) return null;
if (typeof value !== "string" || !value.trim()) {
throw new Error(`${path} должен быть непустой строкой.`);
}
return value;
}
function decodeMediaItem(value: unknown, path: string): EnvironmentMediaItem {
const record = requireRecord(value, path);
if (
typeof record.id !== "string"
|| !/^media-[a-z0-9-]{1,58}$/.test(record.id)
) {
throw new Error(`${path}.id не поддерживается.`);
}
if (!["file", "url"].includes(String(record.source))) {
throw new Error(`${path}.source не поддерживается.`);
}
if (!["image", "video"].includes(String(record.media_kind))) {
throw new Error(`${path}.media_kind не поддерживается.`);
}
return {
id: record.id,
source: record.source as EnvironmentMediaSource,
url: requireString(record.url, `${path}.url`),
mediaKind: record.media_kind as EnvironmentMediaKind,
fileName: requireString(record.file_name, `${path}.file_name`, true),
};
}
function decodeBackground(value: unknown, path: string): EnvironmentBackground {
const record = requireRecord(value, path);
if (typeof record.enabled !== "boolean") {
throw new Error(`${path}.enabled должен быть boolean.`);
}
if (
typeof record.image_duration_seconds !== "number"
|| !Number.isSafeInteger(record.image_duration_seconds)
|| record.image_duration_seconds < 1
|| record.image_duration_seconds > 300
) {
throw new Error(`${path}.image_duration_seconds некорректен.`);
}
if (
!Array.isArray(record.items)
|| record.items.length > maxEnvironmentMediaItems
) {
throw new Error(`${path}.items некорректен.`);
}
const items = record.items.map((item, index) =>
decodeMediaItem(item, `${path}.items[${index}]`));
if (new Set(items.map((item) => item.id)).size !== items.length) {
throw new Error(`${path}.items содержит повторяющиеся id.`);
}
return {
enabled: record.enabled,
imageDurationSeconds: record.image_duration_seconds,
items,
};
}
function decodePage(value: unknown, path: string): EnvironmentPage {
const record = requireRecord(value, path);
return {
headerLabel: requireString(record.header_label, `${path}.header_label`)!,
eyebrow: requireString(record.eyebrow, `${path}.eyebrow`)!,
title: requireString(record.title, `${path}.title`)!,
description: requireString(record.description, `${path}.description`)!,
primaryWorkspaceId: requireString(
record.primary_workspace_id,
`${path}.primary_workspace_id`,
true,
),
secondaryWorkspaceId: requireString(
record.secondary_workspace_id,
`${path}.secondary_workspace_id`,
true,
),
background: decodeBackground(record.background, `${path}.background`),
};
}
export function decodeEnvironmentSettings(value: unknown): EnvironmentSettings {
const record = requireRecord(value, "environment");
if (record.schema_version !== "missioncore.operator-environment/v3") {
throw new Error("Версия настроек окружения не поддерживается.");
}
if (
typeof record.revision !== "number"
|| !Number.isSafeInteger(record.revision)
|| record.revision < 0
) {
throw new Error("Ревизия настроек окружения некорректна.");
}
const pages = requireRecord(record.pages, "environment.pages");
return {
revision: record.revision,
pages: Object.fromEntries(surfaceIds.map((surfaceId) => [
surfaceId,
decodePage(pages[surfaceId], `environment.pages.${surfaceId}`),
])) as Record<EnvironmentSurfaceId, EnvironmentPage>,
};
}
export function encodeEnvironmentSettings(settings: EnvironmentSettings): unknown {
return {
revision: settings.revision,
pages: Object.fromEntries(surfaceIds.map((surfaceId) => {
const page = settings.pages[surfaceId];
return [surfaceId, {
header_label: page.headerLabel,
eyebrow: page.eyebrow,
title: page.title,
description: page.description,
primary_workspace_id: page.primaryWorkspaceId,
secondary_workspace_id: page.secondaryWorkspaceId,
background: {
enabled: page.background.enabled,
image_duration_seconds: page.background.imageDurationSeconds,
items: page.background.items.map((item) => ({
id: item.id,
source: item.source,
url: item.url,
media_kind: item.mediaKind,
file_name: item.fileName,
})),
},
}];
})),
};
}
export function decodeUploadedEnvironmentMedia(
value: unknown,
): UploadedEnvironmentMedia {
const record = requireRecord(value, "environment media");
if (record.schema_version !== "missioncore.operator-environment-media/v2") {
throw new Error("Версия загруженного media не поддерживается.");
}
if (!surfaceIds.includes(record.surface_id as EnvironmentSurfaceId)) {
throw new Error("Экран загруженного media не поддерживается.");
}
if (
typeof record.item_id !== "string"
|| !/^media-[a-z0-9-]{1,58}$/.test(record.item_id)
) {
throw new Error("Идентификатор загруженного media не поддерживается.");
}
if (!["image", "video"].includes(String(record.media_kind))) {
throw new Error("Тип загруженного media не поддерживается.");
}
if (
typeof record.byte_length !== "number"
|| !Number.isSafeInteger(record.byte_length)
|| record.byte_length <= 0
) {
throw new Error("Размер загруженного media некорректен.");
}
return {
surfaceId: record.surface_id as EnvironmentSurfaceId,
itemId: record.item_id,
url: requireString(record.url, "environment media.url")!,
fileName: requireString(record.file_name, "environment media.file_name")!,
mediaKind: record.media_kind as EnvironmentMediaKind,
mediaType: requireString(record.media_type, "environment media.media_type")!,
byteLength: record.byte_length,
sha256: requireString(record.sha256, "environment media.sha256")!,
};
}
export function cloneEnvironmentSettings(
settings: EnvironmentSettings,
): EnvironmentSettings {
return {
revision: settings.revision,
pages: Object.fromEntries(surfaceIds.map((surfaceId) => [
surfaceId,
{
...settings.pages[surfaceId],
background: {
...settings.pages[surfaceId].background,
items: settings.pages[surfaceId].background.items.map((item) => ({
...item,
})),
},
},
])) as Record<EnvironmentSurfaceId, EnvironmentPage>,
};
}
export const environmentSurfaceIds = surfaceIds;
@@ -0,0 +1,130 @@
import { useCallback, useEffect, useState } from "react";
import {
decodeEnvironmentSettings,
decodeUploadedEnvironmentMedia,
defaultEnvironmentSettings,
encodeEnvironmentSettings,
type EnvironmentSettings,
type EnvironmentSurfaceId,
type UploadedEnvironmentMedia,
} from "./environmentSettings";
interface EnvironmentSettingsController {
settings: EnvironmentSettings;
state: "loading" | "ready" | "saving" | "error";
error: string | null;
save: (draft: EnvironmentSettings) => Promise<EnvironmentSettings>;
upload: (
surfaceId: EnvironmentSurfaceId,
itemId: string,
file: File,
) => Promise<UploadedEnvironmentMedia>;
}
async function responseError(response: Response, fallback: string): Promise<string> {
try {
const body = await response.json() as { detail?: unknown };
if (typeof body.detail === "string" && body.detail.trim()) return body.detail;
} catch {
// A non-JSON reverse-proxy response still gets a stable product message.
}
return fallback;
}
export function useEnvironmentSettings(): EnvironmentSettingsController {
const [settings, setSettings] = useState<EnvironmentSettings>(
defaultEnvironmentSettings,
);
const [state, setState] = useState<EnvironmentSettingsController["state"]>(
"loading",
);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
const controller = new AbortController();
void fetch("/api/v1/environment/settings", {
signal: controller.signal,
headers: { Accept: "application/json" },
}).then(async (response) => {
if (!response.ok) {
throw new Error(await responseError(
response,
"Не удалось загрузить настройки окружения.",
));
}
return decodeEnvironmentSettings(await response.json());
}).then((document) => {
setSettings(document);
setState("ready");
setError(null);
}).catch((reason: unknown) => {
if (controller.signal.aborted) return;
setState("error");
setError(reason instanceof Error
? reason.message
: "Не удалось загрузить настройки окружения.");
});
return () => controller.abort();
}, []);
const save = useCallback(async (draft: EnvironmentSettings) => {
setState("saving");
setError(null);
try {
const response = await fetch("/api/v1/environment/settings", {
method: "PUT",
headers: {
Accept: "application/json",
"Content-Type": "application/json",
},
body: JSON.stringify(encodeEnvironmentSettings(draft)),
});
if (!response.ok) {
throw new Error(await responseError(
response,
"Не удалось сохранить настройки окружения.",
));
}
const document = decodeEnvironmentSettings(await response.json());
setSettings(document);
setState("ready");
return document;
} catch (reason) {
const message = reason instanceof Error
? reason.message
: "Не удалось сохранить настройки окружения.";
setState("error");
setError(message);
throw new Error(message);
}
}, []);
const upload = useCallback(async (
surfaceId: EnvironmentSurfaceId,
itemId: string,
file: File,
) => {
const response = await fetch(
`/api/v1/environment/media/${surfaceId}/${itemId}`,
{
method: "PUT",
headers: {
Accept: "application/json",
"Content-Type": file.type || "application/octet-stream",
"X-NODEDC-File-Name": encodeURIComponent(file.name),
},
body: file,
},
);
if (!response.ok) {
throw new Error(await responseError(
response,
"Не удалось загрузить фон окружения.",
));
}
return decodeUploadedEnvironmentMedia(await response.json());
}, []);
return { settings, state, error, save, upload };
}
@@ -0,0 +1,49 @@
import {useEffect,useState} from 'react';
export interface MetricDefinition {label:string;group:string;resource:string;unit:string;reason:string|null}
export interface BoardMonitor {
available:boolean;fresh:boolean;storage:string;source_id:string;
latest:{seq:number;at:number;boot_id:string;values:Record<string,number|null>}|null;
definitions:Record<string,MetricDefinition>;received_at:number;backlog:number;
database_bytes:number|null;database_budget_bytes:number;archive_since:number|null;
start:number;end:number;bucket_seconds:number;
series:{at:number;min:number|null;max:number|null;mean:number|null;count:number}[];
events:{at:number;code:string;kind:string;locations:string[]}[];
}
export function useBoardMonitor(vehicle:string,metric:string,window:number,end:number|null){
const [value,setValue]=useState<BoardMonitor|null>(null),[error,setError]=useState('');
useEffect(()=>{
let active=true;let pending:AbortController|undefined;let timer:ReturnType<typeof setTimeout>|undefined;
setValue(null);setError('');
const read=async()=>{
const controller=new AbortController();pending=controller;
const deadline=setTimeout(()=>controller.abort(),12000);
try {
const query=new URLSearchParams({metric,window:String(window),...(end===null?{}:{end:String(end)})});
const response=await fetch(`/api/v1/fleet/${encodeURIComponent(vehicle)}/monitor?${query}`,{credentials:'same-origin',cache:'no-store',signal:controller.signal});
if(!response.ok)throw new Error('Мониторинг БК недоступен.');
const next=await response.json() as BoardMonitor;
if(active){setValue(next);setError('');}
}catch {if(active)setError('Не удалось обновить мониторинг БК.');}
finally {clearTimeout(deadline);if(active)timer=setTimeout(()=>void read(),5000);}
};
void read();return()=>{active=false;pending?.abort();clearTimeout(timer);};
},[vehicle,metric,window,end]);
return {value,error,dismissError:()=>setError('')};
}
export function monitorSeries(value:BoardMonitor,mode:'min'|'max'|'mean') {
const count=Math.ceil((value.end-value.start)/value.bucket_seconds)+1;
const values:Array<number|null>=Array(Math.min(count,302)).fill(null);
const first=Math.floor(value.start/value.bucket_seconds)*value.bucket_seconds;
for(const point of value.series){const index=Math.round((point.at-first)/value.bucket_seconds);if(index>=0&&index<values.length)values[index]=point[mode];}
return values;
}
export function monitorValue(value:number|null|undefined,unit=''){
if(value==null||!Number.isFinite(value))return 'Нет измерения';
if(unit==='bytes'||unit==='bytes/s'){
const labels=unit==='bytes'?['Б','КиБ','МиБ','ГиБ']:['Б/с','КиБ/с','МиБ/с','ГиБ/с'];let index=0;
while(value>=1024&&index<3){value/=1024;index++;}
return `${value.toLocaleString('ru-RU',{maximumFractionDigits:1})} ${labels[index]}`;
}
return `${value.toLocaleString('ru-RU',{maximumFractionDigits:1})}${unit?' '+unit:''}`;
}
@@ -0,0 +1,23 @@
export interface ObservationLayout {
version:1; order:string[]; hidden:string[]; layers:Record<string,string>;
splits:Record<string,number>; arrangement:'auto'|'columns'|'rows';
}
export const emptyObservationLayout=():ObservationLayout=>({version:1,order:[],hidden:[],layers:{},splits:{},arrangement:'auto'});
const record=(value:unknown):Record<string,unknown>=>value!==null&&typeof value==='object'&&!Array.isArray(value)?value as Record<string,unknown>:{};
export function decodeObservationLayout(value:unknown):ObservationLayout {
const source=record(value),result=emptyObservationLayout();if(source.version!==1)return result;
const ids=(value:unknown)=>Array.isArray(value)?[...new Set(value.filter((v):v is string=>typeof v==='string'&&v.length<512))].slice(0,128):[];
result.order=ids(source.order);result.hidden=ids(source.hidden);
result.layers=Object.fromEntries(Object.entries(record(source.layers)).filter(([k,v])=>k.length<512&&typeof v==='string'&&v.length<128).slice(0,128)) as Record<string,string>;
result.splits=Object.fromEntries(Object.entries(record(source.splits)).filter(([k,v])=>k.length<4096&&typeof v==='number'&&Number.isFinite(v)).slice(0,256).map(([k,v])=>[k,Math.min(80,Math.max(20,v as number))]));
if(source.arrangement==='rows'||source.arrangement==='columns')result.arrangement=source.arrangement;
return result;
}
export function orderedObservationIDs(layout:ObservationLayout,available:string[]):string[]{
const present=new Set(available);return [...layout.order.filter(id=>present.has(id)),...available.filter(id=>!layout.order.includes(id))];
}
export function moveObservation(layout:ObservationLayout,available:string[],from:string,to:string):ObservationLayout {
const order=orderedObservationIDs(layout,available);const source=order.indexOf(from),target=order.indexOf(to);
if(source<0||target<0||source===target)return layout;
order.splice(source,1);order.splice(target,0,from);return {...layout,order};
}
@@ -0,0 +1,18 @@
import type {SensorInventory, SensorTransport} from '../../../../../packages/sensor-ui/src/contracts';
import {fleetRequest} from './useFleet';
export function createFleetSensorTransport(vehicleID:string):SensorTransport {
const path=`/${encodeURIComponent(vehicleID)}/devices`;
const inventory=(fleet:{items:{id:string;connectivity:string;enrollment:string;sensor_state:SensorInventory}[]})=>{
const value=fleet.items.find(v=>v.id===vehicleID);
if(!value)throw new Error('Аппарат не найден.');
return {...value.sensor_state,fresh:value.connectivity==='online'&&value.enrollment==='paired'};
};
return {
enrollment:{state:()=>fleetRequest(`${path}/enrollment`),submit:value=>fleetRequest(`${path}/enrollment/operations`,'POST',value),operation:id=>fleetRequest(`${path}/enrollment/operations/${encodeURIComponent(id)}`)},
inventory:async()=>inventory(await fleetRequest()),
subscribe:(receive,unavailable)=>{const events=new EventSource('/api/v1/fleet/events');events.onmessage=e=>{try{receive(inventory(JSON.parse(e.data)));}catch{unavailable();}};events.onerror=unavailable;return()=>events.close();},
submit:value=>fleetRequest(`${path}/operations`,'POST',value),
operation:id=>fleetRequest(`${path}/operations/${encodeURIComponent(id)}`),
};
}
@@ -0,0 +1,61 @@
import { useCallback, useEffect, useState } from "react";
export interface BoardHost {
hostname: string; os: string; architecture: string; cpus: number;
memory_kib: number | null; collected_at: string;
networks: { name: string; up: boolean; addresses: string[] }[];
usb: { port: string; product: string }[];
}
export interface Vehicle {
id: string; node_id: string; name: string; platform: string;
enrollment: "pending" | "paired" | "revoked" | "failed";
connectivity: "online" | "offline"; last_seen: number | null;
host: BoardHost | null; notice: string; revision: number;
}
export interface FleetPreview {
preview_id: string; node_id: string; name: string; host: BoardHost;
endpoint: string; expires_at: number;
}
export async function fleetRequest<T>(path = "", method = "GET", body?: unknown): Promise<T> {
const response = await fetch(`/api/v1/fleet${path}`, {
method, credentials: "same-origin", cache: "no-store",
headers: body === undefined ? {} : { "Content-Type": "application/json" },
body: body === undefined ? undefined : JSON.stringify(body), signal: AbortSignal.timeout(12000),
});
if (!response.ok) {
const data = await response.json().catch(() => ({}));
throw new Error(typeof data.detail === "string" ? data.detail : "Не удалось выполнить действие с аппаратом.");
}
return response.json();
}
export function useFleet() {
const [items, setItems] = useState<Vehicle[] | null>(null);
const [error, setError] = useState("");
const refresh = useCallback(async () => {
const value = await fleetRequest<{ items: Vehicle[] }>();
setItems(value.items); setError(""); return value.items;
}, []);
useEffect(() => {
let active = true;
let fallback: ReturnType<typeof setInterval> | undefined;
const read = async () => {
try { const value = await fleetRequest<{ items: Vehicle[] }>(); if (active) { setItems(value.items); setError(""); } }
catch { if (active) setError("Реестр недоступен. Показаны последние полученные сведения; связь сейчас не подтверждена."); }
};
void read();
const events = new EventSource("/api/v1/fleet/events");
events.onmessage = event => {
if (!active) return;
try { const value = JSON.parse(event.data); setItems(value.items); setError(""); if (fallback) { clearInterval(fallback); fallback = undefined; } }
catch { unavailable(); }
};
const unavailable = () => {
if (!active) return;
setError("Связь обновляется. Показаны последние полученные сведения.");
if (!fallback) fallback = setInterval(() => void read(), 5000);
};
events.onerror = unavailable;
return () => { active = false; events.close(); if (fallback) clearInterval(fallback); };
}, []);
return { items, error, refresh };
}
@@ -0,0 +1,546 @@
import {
AdvancedLaboratoryContractError,
fetchOne,
parseE31,
parseE32,
parseE33,
parseE37,
parseE38,
parseE39,
type AdvancedLaboratoryResults,
type LaboratoryFetch,
} from "./advancedResults";
import { fetchE34TemporalLayerResult } from "./e34TemporalLayer";
import { fetchE35DegradationRecoveryResult } from "./e35DegradationRecovery";
import { fetchE40ProductGateResult } from "./e40ProductGate";
import { fetchL3PointPillarsVisualAudit } from "./l3PointPillarsVisualAudit";
import { fetchL31PointPillarsRavnoves } from "./l31PointPillarsRavnoves";
import { fetchL32PointPillarsCameraReview } from "./l32PointPillarsCameraReview";
import { fetchL33CameraFirstDetectorReview } from "./l33CameraFirstDetectorReview";
import { fetchL34RightYoloxTruthIsland } from "./l34RightYoloxTruthIsland";
import { fetchL34AAssistedYoloxErrorAudit } from "./l34aAssistedYoloxErrorAudit";
import { fetchL34BNestedBoxConsolidation } from "./l34bNestedBoxConsolidation";
import { fetchL34CTileSeamStitch } from "./l34cTileSeamStitch";
import { fetchL34DCumulativePostprocessing } from "./l34dCumulativePostprocessing";
import { fetchL34ESelfReviewDiagnostic } from "./l34eSelfReviewDiagnostic";
import { fetchL34FFrozenResult } from "./l34fAdjudication";
import { fetchE46BlindReviewResult } from "./e46BlindReview";
import { fetchE46AAiEngineeringPreannotation } from "./e46aAiEngineeringPreannotation";
import { fetchE46BTemporalMotion } from "./e46bTemporalMotion";
import { fetchE46CFullReplayWorldTracks } from "./e46cFullReplayWorldTracks";
import { fetchE46DTemporalFailureAudit } from "./e46dTemporalFailureAudit";
import { fetchE46EReadyStack } from "./e46eReadyStack";
import { fetchE46FDashCamBakeoff } from "./e46fDashCamBakeoff";
import { fetchE46GRectifiedDetectorBakeoff } from "./e46gRectifiedDetectorBakeoff";
import { fetchE46HFullRectifiedFrontReplay } from "./e46hFullRectifiedFrontReplay";
import { fetchE46IGroundingDinoFullReplay } from "./e46iGroundingDinoFullReplay";
import { fetchE46JRawFisheyeRealtime } from "./e46jRawFisheyeRealtime";
import { fetchE47SemanticSlamResult } from "./e47SemanticSlam";
import { fetchM4ThreatReplayResult } from "./m4ReplayThreat";
import { fetchM47ReferenceGraphLab } from "./m47ReferenceGraph";
import {
fetchM48LifecycleResult,
} from "./m48ObjectCentricQuality";
import { fetchM48SmallStaticRegression } from "./m48SmallStaticRegression";
import { fetchM48StaticOccupancyQualification } from "./m48StaticOccupancyQualification";
import { fetchM48R3StaticOccupancyShadow } from "./m48r3StaticOccupancyShadow";
import { fetchM48SFixedClassDetectorResult } from "./m48sFixedClassDetector";
import { fetchM48TRiskQualityResult } from "./m48tRiskQuality";
import { fetchM49TgsFailClosedResult } from "./m49TgsFailClosed";
import { fetchM49TgsFullShadowResult } from "./m49TgsFullShadow";
import {
fetchVegetationBenchmarkResult,
fetchVegetationShadowResult,
} from "./vegetationShadow";
export type AdvancedLaboratoryWorkId =
| "lab-v1-vegetation-benchmark"
| "lab-v1-vegetation-shadow"
| "m48-object-centric-quality"
| "m48-small-static-passage-regression"
| "m48-static-occupancy-qualification"
| "m48r3-static-occupancy-shadow"
| "m48s-fixed-class-detector"
| "m48t-risk-quality-temporal"
| "m49-tgs-fail-closed-evidence"
| "m49-tgs-full-shadow"
| "m47-reference-graph-shadow"
| "m4-replay-threat"
| "l3-pointpillars-visual-audit"
| "l31-pointpillars-ravnoves"
| "l32-pointpillars-camera-review"
| "l33-camera-first-detector-review"
| "e31-source-binding"
| "e32-track-geometry"
| "e33-worker-shadow"
| "e34-temporal-layer"
| "e35-degradation-recovery"
| "e37-ravnoves-acceptance"
| "e38-perception-baseline"
| "e39-perception-refinement"
| "e40-perception-product-gate"
| "e46-detector-truth-island"
| "e46a-ai-engineering-preannotation"
| "e46b-temporal-motion"
| "e46c-full-replay-world-tracks"
| "e46d-temporal-failure-audit"
| "e46e-ready-stack"
| "e46f-dashcam-bakeoff"
| "e46g-rectified-detector-bakeoff"
| "e46h-full-rectified-front-replay"
| "e46i-grounding-dino-full-replay"
| "e46j-raw-fisheye-realtime"
| "e47-semantic-slam-shadow"
| "l34-right-yolox-truth-island-freeze"
| "l34a-assisted-yolox-error-audit"
| "l34b-nested-box-consolidation-shadow"
| "l34c-tile-seam-stitch-shadow"
| "l34d-cumulative-postprocessing-candidate"
| "l34e-self-review-diagnostic"
| "l34f-adjudicated-reference";
export interface AdvancedLaboratoryIndexItem {
workId: AdvancedLaboratoryWorkId;
resultId: string;
createdAtUtc: string;
}
const WORK_IDS: readonly AdvancedLaboratoryWorkId[] = [
"lab-v1-vegetation-benchmark",
"lab-v1-vegetation-shadow",
"m48-object-centric-quality",
"m48-small-static-passage-regression",
"m48-static-occupancy-qualification",
"m48r3-static-occupancy-shadow",
"m48s-fixed-class-detector",
"m48t-risk-quality-temporal",
"m49-tgs-fail-closed-evidence",
"m49-tgs-full-shadow",
"m47-reference-graph-shadow",
"m4-replay-threat",
"l3-pointpillars-visual-audit",
"l31-pointpillars-ravnoves",
"l32-pointpillars-camera-review",
"l33-camera-first-detector-review",
"e31-source-binding",
"e32-track-geometry",
"e33-worker-shadow",
"e34-temporal-layer",
"e35-degradation-recovery",
"e37-ravnoves-acceptance",
"e38-perception-baseline",
"e39-perception-refinement",
"e40-perception-product-gate",
"e46-detector-truth-island",
"e46a-ai-engineering-preannotation",
"e46b-temporal-motion",
"e46c-full-replay-world-tracks",
"e46d-temporal-failure-audit",
"e46e-ready-stack",
"e46f-dashcam-bakeoff",
"e46g-rectified-detector-bakeoff",
"e46h-full-rectified-front-replay",
"e46i-grounding-dino-full-replay",
"e46j-raw-fisheye-realtime",
"e47-semantic-slam-shadow",
"l34-right-yolox-truth-island-freeze",
"l34a-assisted-yolox-error-audit",
"l34b-nested-box-consolidation-shadow",
"l34c-tile-seam-stitch-shadow",
"l34d-cumulative-postprocessing-candidate",
"l34e-self-review-diagnostic",
"l34f-adjudicated-reference",
];
const RESULT_PREFIX: Readonly<Record<AdvancedLaboratoryWorkId, string>> = {
"lab-v1-vegetation-benchmark": "lab-v1-vegetation-benchmark",
"lab-v1-vegetation-shadow": "lab-v1-vegetation-shadow",
"m48-object-centric-quality": "m48-object-quality-(?:pack|result)",
"m48-small-static-passage-regression": "m48-small-static-passage-regression",
"m48-static-occupancy-qualification": "m48-static-occupancy-qualification",
"m48r3-static-occupancy-shadow": "m48r3-static-occupancy-shadow",
"m48s-fixed-class-detector": "m48s-fixed-class-detector-lab",
"m48t-risk-quality-temporal": "(?:m48t-risk-quality-temporal-lab|m48q-native-risk-quality-lab)",
"m49-tgs-fail-closed-evidence": "m49-tgs-fail-closed",
"m49-tgs-full-shadow": "m49-tgs-full-shadow",
"m47-reference-graph-shadow": "m47-reference-graph-lab",
"m4-replay-threat": "m4-threat-replay",
"l3-pointpillars-visual-audit": "l3-pointpillars-visual-audit",
"l31-pointpillars-ravnoves": "l31-pointpillars-ravnoves",
"l32-pointpillars-camera-review": "l32-pointpillars-camera-review",
"l33-camera-first-detector-review": "l33-camera-first-detector-review",
"e31-source-binding": "e31-source-qualification",
"e32-track-geometry": "e32-track-geometry",
"e33-worker-shadow": "e33-worker-shadow",
"e34-temporal-layer": "e34-temporal-occupied",
"e35-degradation-recovery": "e35-degradation-recovery",
"e37-ravnoves-acceptance": "e37-ravnoves-acceptance",
"e38-perception-baseline": "e38-perception-baseline",
"e39-perception-refinement": "e39-perception-refinement",
"e40-perception-product-gate": "e40-perception-product-gate",
"e46-detector-truth-island": "e46-detector-truth-island",
"e46a-ai-engineering-preannotation": "e46a-ai-engineering-preannotation",
"e46b-temporal-motion": "e46b-temporal-motion",
"e46c-full-replay-world-tracks": "e46c-full-replay-world-tracks",
"e46d-temporal-failure-audit": "e46d-temporal-failure-audit",
"e46e-ready-stack": "e46e-ready-stack",
"e46f-dashcam-bakeoff": "e46f-dashcam-bakeoff",
"e46g-rectified-detector-bakeoff": "e46g-rectified-detector-bakeoff",
"e46h-full-rectified-front-replay": "e46h-full-rectified-front-replay",
"e46i-grounding-dino-full-replay": "e46i-grounding-dino-full-replay",
"e46j-raw-fisheye-realtime": "e46j-raw-fisheye-realtime",
"e47-semantic-slam-shadow": "e47-semantic-slam",
"l34-right-yolox-truth-island-freeze": "l34-right-yolox-truth-island-freeze",
"l34a-assisted-yolox-error-audit": "l34a-assisted-yolox-error-audit",
"l34b-nested-box-consolidation-shadow": "l34b-nested-box-consolidation-shadow",
"l34c-tile-seam-stitch-shadow": "l34c-tile-seam-stitch-shadow",
"l34d-cumulative-postprocessing-candidate": "l34d-cumulative-postprocessing-candidate",
"l34e-self-review-diagnostic": "l34e-self-review-diagnostic",
"l34f-adjudicated-reference": "l34f-adjudicated-reference",
};
export function isAdvancedLaboratoryWorkId(
value: string,
): value is AdvancedLaboratoryWorkId {
return WORK_IDS.includes(value as AdvancedLaboratoryWorkId);
}
export function emptyAdvancedLaboratoryResults(): AdvancedLaboratoryResults {
return {
vegetationBenchmark: null,
vegetationShadow: null,
m47Graph: null,
m48: null,
m48SmallStatic: null,
m48StaticOccupancy: null,
m48r3StaticOccupancy: null,
m48s: null,
m48t: null,
m49Tgs: null,
m49TgsFull: null,
m4Threat: null,
l3: null,
l31: null,
l32: null,
l33: null,
e31: null,
e32: null,
e33: null,
e34: null,
e35: null,
e37: null,
e38: null,
e39: null,
e40: null,
e46: null,
e46a: null,
e46b: null,
e46c: null,
e46d: null,
e46e: null,
e46f: null,
e46g: null,
e46h: null,
e46i: null,
e46j: null,
e47: null,
l34: null,
l34a: null,
l34b: null,
l34c: null,
l34d: null,
l34e: null,
l34f: null,
};
}
function objectValue(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new AdvancedLaboratoryContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function exactString(value: unknown, expected: string, label: string): string {
if (value !== expected) {
throw new AdvancedLaboratoryContractError(`${label}: нарушен контракт.`);
}
return expected;
}
function parseIndexItem(value: unknown): AdvancedLaboratoryIndexItem {
const item = objectValue(value, "Индекс LAB.item");
if (
typeof item.work_id !== "string"
|| !isAdvancedLaboratoryWorkId(item.work_id)
) {
throw new AdvancedLaboratoryContractError(
"Индекс LAB.work_id: неизвестная лабораторная работа.",
);
}
const prefix = RESULT_PREFIX[item.work_id];
if (
typeof item.result_id !== "string"
|| !new RegExp(`^${prefix}-[a-f0-9]{64}$`).test(item.result_id)
) {
throw new AdvancedLaboratoryContractError(
"Индекс LAB.result_id: нарушена идентичность результата.",
);
}
if (typeof item.created_at_utc !== "string" || !item.created_at_utc.trim()) {
throw new AdvancedLaboratoryContractError(
"Индекс LAB.created_at_utc: ожидалась строка.",
);
}
exactString(item.access, "read-only", "Индекс LAB.item.access");
return {
workId: item.work_id,
resultId: item.result_id,
createdAtUtc: item.created_at_utc,
};
}
export async function fetchAdvancedLaboratoryIndex({
fetcher = fetch,
signal,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
} = {}): Promise<readonly AdvancedLaboratoryIndexItem[]> {
const response = await fetcher("/api/v1/laboratory/advanced-index", {
method: "GET",
headers: { Accept: "application/json" },
signal,
});
if (!response.ok) {
throw new AdvancedLaboratoryContractError(
`Индекс LAB недоступен: HTTP ${response.status}.`,
);
}
const payload = objectValue(await response.json(), "Индекс LAB");
exactString(
payload.schema_version,
"missioncore.laboratory-advanced-index/v1",
"Индекс LAB.schema_version",
);
exactString(payload.access, "read-only", "Индекс LAB.access");
if (!Array.isArray(payload.items) || payload.items.length > WORK_IDS.length) {
throw new AdvancedLaboratoryContractError(
"Индекс LAB.items: нарушен размер каталога.",
);
}
const items = payload.items.map(parseIndexItem);
if (new Set(items.map((item) => item.workId)).size !== items.length) {
throw new AdvancedLaboratoryContractError(
"Индекс LAB.items: лабораторная работа продублирована.",
);
}
return items;
}
export function advancedLaboratoryResultAvailable(
workId: AdvancedLaboratoryWorkId,
results: AdvancedLaboratoryResults,
): boolean {
return workId === "lab-v1-vegetation-benchmark" ? results.vegetationBenchmark !== null
: workId === "lab-v1-vegetation-shadow" ? results.vegetationShadow !== null
: workId === "m48-object-centric-quality" ? results.m48 !== null
: workId === "m48-small-static-passage-regression" ? results.m48SmallStatic !== null
: workId === "m48-static-occupancy-qualification" ? results.m48StaticOccupancy !== null
: workId === "m48r3-static-occupancy-shadow" ? results.m48r3StaticOccupancy !== null
: workId === "m48s-fixed-class-detector" ? results.m48s !== null
: workId === "m48t-risk-quality-temporal" ? results.m48t !== null
: workId === "m49-tgs-fail-closed-evidence" ? results.m49Tgs !== null
: workId === "m49-tgs-full-shadow" ? results.m49TgsFull !== null
: workId === "m47-reference-graph-shadow" ? results.m47Graph !== null
: workId === "m4-replay-threat" ? results.m4Threat !== null
: workId === "l3-pointpillars-visual-audit" ? results.l3 !== null
: workId === "l31-pointpillars-ravnoves" ? results.l31 !== null
: workId === "l32-pointpillars-camera-review" ? results.l32 !== null
: workId === "l33-camera-first-detector-review" ? results.l33 !== null
: workId === "e31-source-binding" ? results.e31 !== null
: workId === "e32-track-geometry" ? results.e32 !== null
: workId === "e33-worker-shadow" ? results.e33 !== null
: workId === "e34-temporal-layer" ? results.e34 !== null
: workId === "e35-degradation-recovery" ? results.e35 !== null
: workId === "e37-ravnoves-acceptance" ? results.e37 !== null
: workId === "e38-perception-baseline" ? results.e38 !== null
: workId === "e39-perception-refinement" ? results.e39 !== null
: workId === "e40-perception-product-gate" ? results.e40 !== null
: workId === "e46-detector-truth-island" ? results.e46 !== null
: workId === "e46a-ai-engineering-preannotation" ? results.e46a !== null
: workId === "e46b-temporal-motion" ? results.e46b !== null
: workId === "e46c-full-replay-world-tracks" ? results.e46c !== null
: workId === "e46d-temporal-failure-audit" ? results.e46d !== null
: workId === "e46e-ready-stack" ? results.e46e !== null
: workId === "e46f-dashcam-bakeoff" ? results.e46f !== null
: workId === "e46g-rectified-detector-bakeoff" ? results.e46g !== null
: workId === "e46h-full-rectified-front-replay" ? results.e46h !== null
: workId === "e46i-grounding-dino-full-replay" ? results.e46i !== null
: workId === "e46j-raw-fisheye-realtime" ? results.e46j !== null
: workId === "e47-semantic-slam-shadow" ? results.e47 !== null
: workId === "l34-right-yolox-truth-island-freeze" ? results.l34 !== null
: workId === "l34a-assisted-yolox-error-audit" ? results.l34a !== null
: workId === "l34b-nested-box-consolidation-shadow" ? results.l34b !== null
: workId === "l34c-tile-seam-stitch-shadow" ? results.l34c !== null
: workId === "l34d-cumulative-postprocessing-candidate" ? results.l34d !== null
: workId === "l34e-self-review-diagnostic" ? results.l34e !== null
: results.l34f !== null;
}
export async function fetchAdvancedLaboratoryResult(
workId: AdvancedLaboratoryWorkId,
{
fetcher = fetch,
signal,
resultId,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
resultId?: string;
} = {},
): Promise<AdvancedLaboratoryResults> {
const results = emptyAdvancedLaboratoryResults();
if (workId === "lab-v1-vegetation-benchmark") {
if (!resultId) throw new AdvancedLaboratoryContractError("Vegetation benchmark identity не выбрана.");
results.vegetationBenchmark = await fetchVegetationBenchmarkResult(resultId, { fetcher, signal });
} else if (workId === "lab-v1-vegetation-shadow") {
if (!resultId) throw new AdvancedLaboratoryContractError("Vegetation LAB identity не выбрана.");
results.vegetationShadow = await fetchVegetationShadowResult(resultId, { fetcher, signal });
} else if (workId === "m48-object-centric-quality") {
if (!resultId) throw new AdvancedLaboratoryContractError("M4.8 lifecycle evidence identity не выбрана.");
results.m48 = await fetchM48LifecycleResult(resultId, { fetcher, signal });
} else if (workId === "m48-small-static-passage-regression") {
if (!resultId) throw new AdvancedLaboratoryContractError("M4.8R1 regression identity не выбрана.");
results.m48SmallStatic = await fetchM48SmallStaticRegression(resultId, { fetcher, signal });
} else if (workId === "m48-static-occupancy-qualification") {
if (!resultId) throw new AdvancedLaboratoryContractError("M4.8R2 qualification identity не выбрана.");
results.m48StaticOccupancy = await fetchM48StaticOccupancyQualification(resultId, { fetcher, signal });
} else if (workId === "m48r3-static-occupancy-shadow") {
if (!resultId) throw new AdvancedLaboratoryContractError("M4.8R3 Worker shadow identity не выбрана.");
results.m48r3StaticOccupancy = await fetchM48R3StaticOccupancyShadow(resultId, { fetcher, signal });
} else if (workId === "m48s-fixed-class-detector") {
if (!resultId) throw new AdvancedLaboratoryContractError("M4.8S LAB identity не выбрана.");
results.m48s = await fetchM48SFixedClassDetectorResult(resultId, { fetcher, signal });
} else if (workId === "m48t-risk-quality-temporal") {
if (!resultId) throw new AdvancedLaboratoryContractError("M4.8T LAB identity не выбрана.");
results.m48t = await fetchM48TRiskQualityResult(resultId, { fetcher, signal });
} else if (workId === "m49-tgs-fail-closed-evidence") {
if (!resultId) throw new AdvancedLaboratoryContractError("M4.9 TGS LAB identity не выбрана.");
results.m49Tgs = await fetchM49TgsFailClosedResult(resultId, { fetcher, signal });
} else if (workId === "m49-tgs-full-shadow") {
if (!resultId) throw new AdvancedLaboratoryContractError("M4.9 full TGS shadow identity не выбрана.");
results.m49TgsFull = await fetchM49TgsFullShadowResult(resultId, { fetcher, signal });
} else if (workId === "m47-reference-graph-shadow") {
if (!resultId) {
throw new AdvancedLaboratoryContractError("M4.7 LAB identity не выбрана.");
}
results.m47Graph = await fetchM47ReferenceGraphLab({
resultId,
fetcher,
signal,
});
} else if (workId === "m4-replay-threat") {
results.m4Threat = await fetchM4ThreatReplayResult({ fetcher, signal });
} else if (workId === "l3-pointpillars-visual-audit") {
results.l3 = await fetchL3PointPillarsVisualAudit({ fetcher, signal });
} else if (workId === "l31-pointpillars-ravnoves") {
results.l31 = await fetchL31PointPillarsRavnoves({ fetcher, signal });
} else if (workId === "l32-pointpillars-camera-review") {
results.l32 = await fetchL32PointPillarsCameraReview({ fetcher, signal });
} else if (workId === "l33-camera-first-detector-review") {
results.l33 = await fetchL33CameraFirstDetectorReview({ fetcher, signal });
} else if (workId === "e31-source-binding") {
results.e31 = await fetchOne(
"/api/v1/laboratory/e31/results?limit=1",
parseE31,
fetcher,
signal,
);
} else if (workId === "e32-track-geometry") {
results.e32 = await fetchOne(
"/api/v1/laboratory/e32/results?limit=1",
parseE32,
fetcher,
signal,
);
} else if (workId === "e33-worker-shadow") {
results.e33 = await fetchOne(
"/api/v1/laboratory/e33/results?limit=1",
parseE33,
fetcher,
signal,
);
} else if (workId === "e34-temporal-layer") {
results.e34 = await fetchE34TemporalLayerResult({ fetcher, signal });
} else if (workId === "e35-degradation-recovery") {
results.e35 = await fetchE35DegradationRecoveryResult({ fetcher, signal });
} else if (workId === "e37-ravnoves-acceptance") {
results.e37 = await fetchOne(
"/api/v1/laboratory/e37/results?limit=1",
parseE37,
fetcher,
signal,
);
} else if (workId === "e38-perception-baseline") {
results.e38 = await fetchOne(
"/api/v1/laboratory/e38/results?limit=1",
parseE38,
fetcher,
signal,
);
} else if (workId === "e39-perception-refinement") {
results.e39 = await fetchOne(
"/api/v1/laboratory/e39/results?limit=1",
parseE39,
fetcher,
signal,
);
} else if (workId === "e40-perception-product-gate") {
results.e40 = await fetchE40ProductGateResult({ fetcher, signal });
} else if (workId === "e46-detector-truth-island") {
results.e46 = await fetchE46BlindReviewResult({ fetcher, signal });
} else if (workId === "e46a-ai-engineering-preannotation") {
results.e46a = await fetchE46AAiEngineeringPreannotation({ fetcher, signal });
} else if (workId === "e46b-temporal-motion") {
results.e46b = await fetchE46BTemporalMotion({ fetcher, signal });
} else if (workId === "e46c-full-replay-world-tracks") {
results.e46c = await fetchE46CFullReplayWorldTracks({ fetcher, signal });
} else if (workId === "e46d-temporal-failure-audit") {
results.e46d = await fetchE46DTemporalFailureAudit({ fetcher, signal });
} else if (workId === "e46e-ready-stack") {
results.e46e = await fetchE46EReadyStack({ fetcher, signal });
} else if (workId === "e46f-dashcam-bakeoff") {
results.e46f = await fetchE46FDashCamBakeoff({ fetcher, signal });
} else if (workId === "e46g-rectified-detector-bakeoff") {
results.e46g = await fetchE46GRectifiedDetectorBakeoff({ fetcher, signal });
} else if (workId === "e46h-full-rectified-front-replay") {
results.e46h = await fetchE46HFullRectifiedFrontReplay({ fetcher, signal });
} else if (workId === "e46i-grounding-dino-full-replay") {
results.e46i = await fetchE46IGroundingDinoFullReplay({ fetcher, signal });
} else if (workId === "e46j-raw-fisheye-realtime") {
results.e46j = await fetchE46JRawFisheyeRealtime({ fetcher, signal });
} else if (workId === "e47-semantic-slam-shadow") {
results.e47 = await fetchE47SemanticSlamResult({ fetcher, signal });
} else if (workId === "l34-right-yolox-truth-island-freeze") {
results.l34 = await fetchL34RightYoloxTruthIsland({ fetcher, signal });
} else if (workId === "l34a-assisted-yolox-error-audit") {
results.l34a = await fetchL34AAssistedYoloxErrorAudit({ fetcher, signal });
} else if (workId === "l34b-nested-box-consolidation-shadow") {
results.l34b = await fetchL34BNestedBoxConsolidation({ fetcher, signal });
} else if (workId === "l34c-tile-seam-stitch-shadow") {
results.l34c = await fetchL34CTileSeamStitch({ fetcher, signal });
} else if (workId === "l34d-cumulative-postprocessing-candidate") {
results.l34d = await fetchL34DCumulativePostprocessing({ fetcher, signal });
} else if (workId === "l34e-self-review-diagnostic") {
results.l34e = await fetchL34ESelfReviewDiagnostic({ fetcher, signal });
} else {
results.l34f = await fetchL34FFrozenResult({ fetcher, signal });
}
if (!advancedLaboratoryResultAvailable(workId, results)) {
throw new AdvancedLaboratoryContractError(
"Выбранная лабораторная работа не прошла серверную проверку.",
);
}
return results;
}
@@ -0,0 +1,92 @@
import type {
E31LaboratoryResult,
E32LaboratoryResult,
E33LaboratoryResult,
E37AcceptanceContractResult,
E38PerceptionBaselineResult,
E39PerceptionRefinementResult,
} from "./advancedResults";
import type { E34TemporalLayerResult } from "./e34TemporalLayer";
import type { E35DegradationRecoveryResult } from "./e35DegradationRecovery";
import type { E40PerceptionProductGateResult } from "./e40ProductGate";
import type { L3PointPillarsVisualAuditResult } from "./l3PointPillarsVisualAudit";
import type { L31PointPillarsRavnovesResult } from "./l31PointPillarsRavnoves";
import type { L32PointPillarsCameraReviewResult } from "./l32PointPillarsCameraReview";
import type { L33CameraFirstDetectorReviewResult } from "./l33CameraFirstDetectorReview";
import type { L34RightYoloxTruthIslandResult } from "./l34RightYoloxTruthIsland";
import type { L34AAssistedYoloxErrorAuditResult } from "./l34aAssistedYoloxErrorAudit";
import type { L34BResult } from "./l34bNestedBoxConsolidation";
import type { L34CResult } from "./l34cTileSeamStitch";
import type { L34DResult } from "./l34dCumulativePostprocessing";
import type { L34EResult } from "./l34eSelfReviewDiagnostic";
import type { L34FFrozenResult } from "./l34fAdjudication";
import type { E46BlindReviewResult } from "./e46BlindReview";
import type { E46AAiEngineeringPreannotationResult } from "./e46aAiEngineeringPreannotation";
import type { E46BTemporalMotionResult } from "./e46bTemporalMotion";
import type { E46CFullReplayWorldTracksResult } from "./e46cFullReplayWorldTracks";
import type { E46DTemporalFailureAuditResult } from "./e46dTemporalFailureAudit";
import type { E46EReadyStackResult } from "./e46eReadyStack";
import type { E46FDashCamBakeoffResult } from "./e46fDashCamBakeoff";
import type { E46GRectifiedDetectorBakeoffResult } from "./e46gRectifiedDetectorBakeoff";
import type { E46HFullRectifiedFrontReplayResult } from "./e46hFullRectifiedFrontReplay";
import type { E46IGroundingDinoFullReplayResult } from "./e46iGroundingDinoFullReplay";
import type { E46JRawFisheyeRealtimeResult } from "./e46jRawFisheyeRealtime";
import type { E47SemanticSlamResult } from "./e47SemanticSlam";
import type { M4ThreatReplayResult } from "./m4ReplayThreat";
import type { M47ReferenceGraphLabResult } from "./m47ReferenceGraph";
import type { M48AdvancedResult } from "./m48ObjectCentricQuality";
import type { M48SmallStaticRegressionResult } from "./m48SmallStaticRegression";
import type { M48StaticOccupancyQualificationResult } from "./m48StaticOccupancyQualification";
import type { M48R3StaticOccupancyShadowResult } from "./m48r3StaticOccupancyShadow";
import type { M48SFixedClassDetectorResult } from "./m48sFixedClassDetector";
import type { M48TRiskQualityResult } from "./m48tRiskQuality";
import type { M49TgsFailClosedResult } from "./m49TgsFailClosed";
import type { M49TgsFullShadowResult } from "./m49TgsFullShadow";
import type { VegetationShadowResult } from "./vegetationShadow";
export interface AdvancedLaboratoryResults {
vegetationBenchmark: VegetationShadowResult | null;
vegetationShadow: VegetationShadowResult | null;
m47Graph: M47ReferenceGraphLabResult | null;
m48: M48AdvancedResult | null;
m48SmallStatic: M48SmallStaticRegressionResult | null;
m48StaticOccupancy: M48StaticOccupancyQualificationResult | null;
m48r3StaticOccupancy: M48R3StaticOccupancyShadowResult | null;
m48s: M48SFixedClassDetectorResult | null;
m48t: M48TRiskQualityResult | null;
m49Tgs: M49TgsFailClosedResult | null;
m49TgsFull: M49TgsFullShadowResult | null;
m4Threat: M4ThreatReplayResult | null;
l3: L3PointPillarsVisualAuditResult | null;
l31: L31PointPillarsRavnovesResult | null;
l32: L32PointPillarsCameraReviewResult | null;
l33: L33CameraFirstDetectorReviewResult | null;
e31: E31LaboratoryResult | null;
e32: E32LaboratoryResult | null;
e33: E33LaboratoryResult | null;
e34: E34TemporalLayerResult | null;
e35: E35DegradationRecoveryResult | null;
e37: E37AcceptanceContractResult | null;
e38: E38PerceptionBaselineResult | null;
e39: E39PerceptionRefinementResult | null;
e40: E40PerceptionProductGateResult | null;
e46: E46BlindReviewResult | null;
e46a: E46AAiEngineeringPreannotationResult | null;
e46b: E46BTemporalMotionResult | null;
e46c: E46CFullReplayWorldTracksResult | null;
e46d: E46DTemporalFailureAuditResult | null;
e46e: E46EReadyStackResult | null;
e46f: E46FDashCamBakeoffResult | null;
e46g: E46GRectifiedDetectorBakeoffResult | null;
e46h: E46HFullRectifiedFrontReplayResult | null;
e46i: E46IGroundingDinoFullReplayResult | null;
e46j: E46JRawFisheyeRealtimeResult | null;
e47: E47SemanticSlamResult | null;
l34: L34RightYoloxTruthIslandResult | null;
l34a: L34AAssistedYoloxErrorAuditResult | null;
l34b: L34BResult | null;
l34c: L34CResult | null;
l34d: L34DResult | null;
l34e: L34EResult | null;
l34f: L34FFrozenResult | null;
}
@@ -0,0 +1,999 @@
import { fetchE34TemporalLayerResult } from "./e34TemporalLayer";
import { fetchE35DegradationRecoveryResult } from "./e35DegradationRecovery";
import { fetchE40ProductGateResult } from "./e40ProductGate";
import { settledCatalogValue } from "./catalogTransport";
import type { AdvancedLaboratoryResults } from "./advancedLaboratoryResults";
export type { AdvancedLaboratoryResults } from "./advancedLaboratoryResults";
export interface E31LaboratoryResult {
resultId: string;
createdAtUtc: string | null;
sourceSessionId: string;
status: "accepted-diagnostic-source-profile";
eligibleForE32: true;
profileId: string;
producerSha256: string;
metrics: {
frameCount: number;
availableBindingCount: number;
availableFraction: number;
lidarCameraP95Ms: number;
posePointP95Ms: number;
selectedOffsetMs: number;
correspondenceCount: number;
supportedFraction: number;
semanticSelfSampleCount: number;
semanticSelfCollateralCount: number;
exactGeometryCorrectionCount: number;
geometryPointMaskStatus: string;
};
limitations: readonly string[];
access: "read-only";
}
export interface E32LaboratoryResult {
resultId: string;
createdAtUtc: string | null;
sourceSessionId: string;
status: "accepted-diagnostic-track-geometry-replay";
profileId: string;
producerSha256: string;
e31ResultId: string;
metrics: {
framesTotal: number;
framesSourceAvailable: number;
semanticPublished: number;
semanticMasked: number;
geometryPublished: number;
observationsArbitrated: number;
overlappingClaimsRemoved: number;
qualifiedPointsPublished: number;
qualifiedPointsWithheld: number;
frameProcessingP95Ms: number;
buildElapsedMs: number;
};
access: "read-only";
}
export interface E33LaboratoryResult {
resultId: string;
createdAtUtc: string | null;
sourceSessionId: string;
status: "accepted-recorded-source-paced-shadow";
e32ResultId: string;
pipelineId: string;
mode: string;
worker: {
node: string;
containerImage: string;
python: string;
numpy: string;
};
metrics: {
sourceFrames: number;
sourceAvailableFrames: number;
sourceUnavailableFrames: number;
deliveredFrames: number;
inputSuperseded: number;
resultSuperseded: number;
effectiveDeliveryFps: number;
sourceSpanSeconds: number;
deadlineMissFraction: number;
processingP95Ms: number;
releaseLagP95Ms: number;
resultAgeP95Ms: number;
resultAgeMaxMs: number;
resultDeadlineMs: number;
processRssP95Mib: number;
processRssMaxMib: number;
processRssLimitMib: number;
gpuUtilizationP95Percent: number;
gpuVisible: boolean;
workQueueCapacity: number;
resultQueueCapacity: number;
wallToIdealRatio: number;
};
access: "read-only";
}
export interface E37AcceptanceContractResult {
resultId: string;
createdAtUtc: string | null;
sourceSessionId: string;
sourceDisplayName: string;
status: "accepted-r0-source-scoped-contract";
profileId: string;
workerNode: string;
metrics: {
reviewedItems: number;
developmentItems: number;
validationItems: number;
engineeringItems: number;
humanExceptionItems: number;
terminalOutcomes: number;
accountingFraction: number;
falseFreeClaims: number;
};
dimensionDistributions: {
presence: Readonly<Record<string, number>>;
geometryAssociation: Readonly<Record<string, number>>;
freshness: Readonly<Record<string, number>>;
};
severityDistribution: Readonly<Record<string, number>>;
labelProvenance: {
engineeringItems: number;
humanExceptionItems: number;
independentGroundTruth: false;
};
split: {
strategy: string;
validationFraction: number;
};
targets: {
presenceTarget: number;
geometryAssociationTarget: number;
freshnessTarget: number;
};
qualityTargetEvaluated: false;
limitations: readonly string[];
access: "read-only";
}
export interface E38DimensionMetric {
correct: number;
incorrect: number;
total: number;
accuracy: number;
target: number;
passed: boolean;
byStratum: Readonly<Record<string, {
correct: number;
incorrect: number;
total: number;
accuracy: number;
}>>;
confusion: readonly {
reference: string;
prediction: string;
count: number;
}[];
}
export interface E38PerceptionBaselineResult {
resultId: string;
createdAtUtc: string | null;
sourceSessionId: string;
sourceDisplayName: string;
status: "measured-r1-source-scoped-baseline";
profileId: string;
workerNode: string;
qualityGatePassed: boolean;
metrics: {
developmentItems: number;
validationItems: number;
terminalOutcomes: number;
accountingFraction: number;
falseFreeClaims: number;
highSeverityFailures: number;
dimensions: {
presence: E38DimensionMetric;
geometryAssociation: E38DimensionMetric;
freshness: E38DimensionMetric;
};
};
blockingChecks: readonly string[];
limitations: readonly string[];
access: "read-only";
}
export interface DevelopmentDimensionMetric {
correct: number;
incorrect: number;
total: number;
accuracy: number;
target: number;
passed: boolean;
}
export type E39DevelopmentDimensionMetric = DevelopmentDimensionMetric;
export interface E39PerceptionRefinementResult {
resultId: string;
createdAtUtc: string | null;
sourceSessionId: string;
sourceDisplayName: string;
status: "measured-r1-source-scoped-refinement";
profileId: string;
workerNode: string;
qualityGatePassed: boolean;
developmentCrossValidation: {
strategy: string;
seed: string;
folds: number;
items: number;
validationLabelsUsed: false;
passed: boolean;
dimensions: {
presence: DevelopmentDimensionMetric;
geometryAssociation: DevelopmentDimensionMetric;
freshness: DevelopmentDimensionMetric;
};
};
metrics: E38PerceptionBaselineResult["metrics"];
blockingChecks: readonly string[];
method: {
summary: string;
selection: string;
dimensionProjection: string;
};
limitations: readonly string[];
access: "read-only";
}
export class AdvancedLaboratoryContractError extends Error {
constructor(message: string) {
super(message);
this.name = "AdvancedLaboratoryContractError";
}
}
export type LaboratoryFetch = (
input: RequestInfo | URL,
init?: RequestInit,
) => Promise<Response>;
function record(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new AdvancedLaboratoryContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function stringValue(value: unknown, label: string): string {
if (typeof value !== "string" || !value.trim()) {
throw new AdvancedLaboratoryContractError(`${label}: ожидалась строка.`);
}
return value;
}
function optionalString(value: unknown, label: string): string | null {
return value === null ? null : stringValue(value, label);
}
function numberValue(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value) || value < 0) {
throw new AdvancedLaboratoryContractError(`${label}: ожидалось число.`);
}
return value;
}
function integerValue(value: unknown, label: string): number {
const parsed = numberValue(value, label);
if (!Number.isSafeInteger(parsed)) {
throw new AdvancedLaboratoryContractError(`${label}: ожидалось целое число.`);
}
return parsed;
}
function booleanValue(value: unknown, label: string): boolean {
if (typeof value !== "boolean") {
throw new AdvancedLaboratoryContractError(`${label}: ожидался boolean.`);
}
return value;
}
function trueValue(value: unknown, label: string): true {
if (value !== true) {
throw new AdvancedLaboratoryContractError(`${label}: ожидалось true.`);
}
return true;
}
function falseValue(value: unknown, label: string): false {
if (value !== false) {
throw new AdvancedLaboratoryContractError(`${label}: ожидалось false.`);
}
return false;
}
function finiteNumber(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value)) {
throw new AdvancedLaboratoryContractError(`${label}: ожидалось число.`);
}
return value;
}
function exactString<T extends string>(
value: unknown,
expected: T,
label: string,
): T {
if (value !== expected) {
throw new AdvancedLaboratoryContractError(`${label}: неверное значение.`);
}
return expected;
}
function strings(value: unknown, label: string): readonly string[] {
if (!Array.isArray(value)) {
throw new AdvancedLaboratoryContractError(`${label}: ожидался массив.`);
}
return value.map((item, index) => stringValue(item, `${label}[${index}]`));
}
function numberRecord(
value: unknown,
label: string,
): Readonly<Record<string, number>> {
const source = record(value, label);
return Object.fromEntries(
Object.entries(source).map(([key, item]) => [
key,
integerValue(item, `${label}.${key}`),
]),
);
}
function contentId(value: unknown, prefix: string, label: string): string {
const parsed = stringValue(value, label);
if (!new RegExp(`^${prefix}-[a-f0-9]{64}$`).test(parsed)) {
throw new AdvancedLaboratoryContractError(`${label}: неверный content id.`);
}
return parsed;
}
function sha256(value: unknown, label: string): string {
const parsed = stringValue(value, label);
if (!/^[a-f0-9]{64}$/.test(parsed)) {
throw new AdvancedLaboratoryContractError(`${label}: неверный SHA-256.`);
}
return parsed;
}
function diagnosticAuthority(value: unknown, label: string): void {
const authority = record(value, label);
if (
authority.commands_enabled !== false
|| authority.navigation_or_safety_accepted !== false
) {
throw new AdvancedLaboratoryContractError(`${label}: запрещённые полномочия.`);
}
}
function parseCatalog<T>(
payload: unknown,
parseItem: (value: unknown) => T,
): T | null {
const value = record(payload, "Каталог LAB");
exactString(
value.schema_version,
"missioncore.laboratory-advanced-catalog/v1",
"Каталог LAB.schema_version",
);
booleanValue(value.configured, "Каталог LAB.configured");
integerValue(value.candidate_total, "Каталог LAB.candidate_total");
integerValue(value.invalid_total, "Каталог LAB.invalid_total");
exactString(value.access, "read-only", "Каталог LAB.access");
if (!Array.isArray(value.items)) {
throw new AdvancedLaboratoryContractError("Каталог LAB.items: ожидался массив.");
}
if (value.items.length > 1) {
throw new AdvancedLaboratoryContractError("Каталог LAB.items: нарушен limit=1.");
}
return value.items.length ? parseItem(value.items[0]) : null;
}
export function parseE31(value: unknown): E31LaboratoryResult {
const item = record(value, "E31");
const metrics = record(item.metrics, "E31.metrics");
diagnosticAuthority(item.authority, "E31.authority");
return {
resultId: contentId(item.result_id, "e31-source-qualification", "E31.result_id"),
createdAtUtc: optionalString(item.created_at_utc, "E31.created_at_utc"),
sourceSessionId: stringValue(item.source_session_id, "E31.source_session_id"),
status: exactString(
item.status,
"accepted-diagnostic-source-profile",
"E31.status",
),
eligibleForE32: trueValue(item.eligible_for_e32, "E31.eligible_for_e32"),
profileId: stringValue(item.profile_id, "E31.profile_id"),
producerSha256: sha256(item.producer_sha256, "E31.producer_sha256"),
metrics: {
frameCount: integerValue(metrics.frame_count, "E31.metrics.frame_count"),
availableBindingCount: integerValue(metrics.available_binding_count, "E31.metrics.available_binding_count"),
availableFraction: numberValue(metrics.available_fraction, "E31.metrics.available_fraction"),
lidarCameraP95Ms: numberValue(metrics.lidar_camera_p95_ms, "E31.metrics.lidar_camera_p95_ms"),
posePointP95Ms: numberValue(metrics.pose_point_p95_ms, "E31.metrics.pose_point_p95_ms"),
selectedOffsetMs: finiteNumber(metrics.selected_offset_ms, "E31.metrics.selected_offset_ms"),
correspondenceCount: integerValue(metrics.correspondence_count, "E31.metrics.correspondence_count"),
supportedFraction: numberValue(metrics.supported_fraction, "E31.metrics.supported_fraction"),
semanticSelfSampleCount: integerValue(metrics.semantic_self_sample_count, "E31.metrics.semantic_self_sample_count"),
semanticSelfCollateralCount: integerValue(metrics.semantic_self_collateral_count, "E31.metrics.semantic_self_collateral_count"),
exactGeometryCorrectionCount: integerValue(metrics.exact_geometry_correction_count, "E31.metrics.exact_geometry_correction_count"),
geometryPointMaskStatus: stringValue(metrics.geometry_point_mask_status, "E31.metrics.geometry_point_mask_status"),
},
limitations: strings(item.limitations, "E31.limitations"),
access: exactString(item.access, "read-only", "E31.access"),
};
}
export function parseE32(value: unknown): E32LaboratoryResult {
const item = record(value, "E32");
const metrics = record(item.metrics, "E32.metrics");
diagnosticAuthority(item.authority, "E32.authority");
return {
resultId: contentId(item.result_id, "e32-track-geometry", "E32.result_id"),
createdAtUtc: optionalString(item.created_at_utc, "E32.created_at_utc"),
sourceSessionId: stringValue(item.source_session_id, "E32.source_session_id"),
status: exactString(
item.status,
"accepted-diagnostic-track-geometry-replay",
"E32.status",
),
profileId: stringValue(item.profile_id, "E32.profile_id"),
producerSha256: sha256(item.producer_sha256, "E32.producer_sha256"),
e31ResultId: contentId(item.e31_result_id, "e31-source-qualification", "E32.e31_result_id"),
metrics: {
framesTotal: integerValue(metrics.frames_total, "E32.metrics.frames_total"),
framesSourceAvailable: integerValue(metrics.frames_source_available, "E32.metrics.frames_source_available"),
semanticPublished: integerValue(metrics.semantic_published, "E32.metrics.semantic_published"),
semanticMasked: integerValue(metrics.semantic_masked, "E32.metrics.semantic_masked"),
geometryPublished: integerValue(metrics.geometry_published, "E32.metrics.geometry_published"),
observationsArbitrated: integerValue(metrics.observations_arbitrated, "E32.metrics.observations_arbitrated"),
overlappingClaimsRemoved: integerValue(metrics.overlapping_claims_removed, "E32.metrics.overlapping_claims_removed"),
qualifiedPointsPublished: integerValue(metrics.qualified_points_published, "E32.metrics.qualified_points_published"),
qualifiedPointsWithheld: integerValue(metrics.qualified_points_withheld, "E32.metrics.qualified_points_withheld"),
frameProcessingP95Ms: numberValue(metrics.frame_processing_p95_ms, "E32.metrics.frame_processing_p95_ms"),
buildElapsedMs: numberValue(metrics.build_elapsed_ms, "E32.metrics.build_elapsed_ms"),
},
access: exactString(item.access, "read-only", "E32.access"),
};
}
export function parseE33(value: unknown): E33LaboratoryResult {
const item = record(value, "E33");
const worker = record(item.worker, "E33.worker");
const metrics = record(item.metrics, "E33.metrics");
diagnosticAuthority(item.authority, "E33.authority");
return {
resultId: contentId(item.result_id, "e33-worker-shadow", "E33.result_id"),
createdAtUtc: optionalString(item.created_at_utc, "E33.created_at_utc"),
sourceSessionId: stringValue(item.source_session_id, "E33.source_session_id"),
status: exactString(
item.status,
"accepted-recorded-source-paced-shadow",
"E33.status",
),
e32ResultId: contentId(item.e32_result_id, "e32-track-geometry", "E33.e32_result_id"),
pipelineId: stringValue(item.pipeline_id, "E33.pipeline_id"),
mode: stringValue(item.mode, "E33.mode"),
worker: {
node: stringValue(worker.node, "E33.worker.node"),
containerImage: stringValue(worker.container_image, "E33.worker.container_image"),
python: stringValue(worker.python, "E33.worker.python"),
numpy: stringValue(worker.numpy, "E33.worker.numpy"),
},
metrics: {
sourceFrames: integerValue(metrics.source_frames, "E33.metrics.source_frames"),
sourceAvailableFrames: integerValue(metrics.source_available_frames, "E33.metrics.source_available_frames"),
sourceUnavailableFrames: integerValue(metrics.source_unavailable_frames, "E33.metrics.source_unavailable_frames"),
deliveredFrames: integerValue(metrics.delivered_frames, "E33.metrics.delivered_frames"),
inputSuperseded: integerValue(metrics.input_superseded, "E33.metrics.input_superseded"),
resultSuperseded: integerValue(metrics.result_superseded, "E33.metrics.result_superseded"),
effectiveDeliveryFps: numberValue(metrics.effective_delivery_fps, "E33.metrics.effective_delivery_fps"),
sourceSpanSeconds: numberValue(metrics.source_span_seconds, "E33.metrics.source_span_seconds"),
deadlineMissFraction: numberValue(metrics.deadline_miss_fraction, "E33.metrics.deadline_miss_fraction"),
processingP95Ms: numberValue(metrics.processing_p95_ms, "E33.metrics.processing_p95_ms"),
releaseLagP95Ms: numberValue(metrics.release_lag_p95_ms, "E33.metrics.release_lag_p95_ms"),
resultAgeP95Ms: numberValue(metrics.result_age_p95_ms, "E33.metrics.result_age_p95_ms"),
resultAgeMaxMs: numberValue(metrics.result_age_max_ms, "E33.metrics.result_age_max_ms"),
resultDeadlineMs: numberValue(metrics.result_deadline_ms, "E33.metrics.result_deadline_ms"),
processRssP95Mib: numberValue(metrics.process_rss_p95_mib, "E33.metrics.process_rss_p95_mib"),
processRssMaxMib: numberValue(metrics.process_rss_max_mib, "E33.metrics.process_rss_max_mib"),
processRssLimitMib: numberValue(metrics.process_rss_limit_mib, "E33.metrics.process_rss_limit_mib"),
gpuUtilizationP95Percent: numberValue(metrics.gpu_utilization_p95_percent, "E33.metrics.gpu_utilization_p95_percent"),
gpuVisible: booleanValue(metrics.gpu_visible, "E33.metrics.gpu_visible"),
workQueueCapacity: integerValue(metrics.work_queue_capacity, "E33.metrics.work_queue_capacity"),
resultQueueCapacity: integerValue(metrics.result_queue_capacity, "E33.metrics.result_queue_capacity"),
wallToIdealRatio: numberValue(metrics.wall_to_ideal_ratio, "E33.metrics.wall_to_ideal_ratio"),
},
access: exactString(item.access, "read-only", "E33.access"),
};
}
export function parseE37(value: unknown): E37AcceptanceContractResult {
const item = record(value, "E37");
const metrics = record(item.metrics, "E37.metrics");
const distributions = record(
item.dimension_distributions,
"E37.dimension_distributions",
);
const provenance = record(item.label_provenance, "E37.label_provenance");
const split = record(item.split, "E37.split");
const targets = record(item.targets, "E37.targets");
diagnosticAuthority(item.authority, "E37.authority");
if (item.quality_target_evaluated !== false) {
throw new AdvancedLaboratoryContractError(
"E37.quality_target_evaluated: R0 не должен объявлять метрику проверенной.",
);
}
if (provenance.independent_ground_truth !== false) {
throw new AdvancedLaboratoryContractError(
"E37.label_provenance: R0 не является независимой разметкой.",
);
}
return {
resultId: contentId(
item.result_id,
"e37-ravnoves-acceptance",
"E37.result_id",
),
createdAtUtc: optionalString(item.created_at_utc, "E37.created_at_utc"),
sourceSessionId: stringValue(
item.source_session_id,
"E37.source_session_id",
),
sourceDisplayName: stringValue(
item.source_display_name,
"E37.source_display_name",
),
status: exactString(
item.status,
"accepted-r0-source-scoped-contract",
"E37.status",
),
profileId: stringValue(item.profile_id, "E37.profile_id"),
workerNode: stringValue(item.worker_node, "E37.worker_node"),
metrics: {
reviewedItems: integerValue(
metrics.reviewed_items,
"E37.metrics.reviewed_items",
),
developmentItems: integerValue(
metrics.development_items,
"E37.metrics.development_items",
),
validationItems: integerValue(
metrics.validation_items,
"E37.metrics.validation_items",
),
engineeringItems: integerValue(
metrics.engineering_items,
"E37.metrics.engineering_items",
),
humanExceptionItems: integerValue(
metrics.human_exception_items,
"E37.metrics.human_exception_items",
),
terminalOutcomes: integerValue(
metrics.terminal_outcomes,
"E37.metrics.terminal_outcomes",
),
accountingFraction: numberValue(
metrics.accounting_fraction,
"E37.metrics.accounting_fraction",
),
falseFreeClaims: integerValue(
metrics.false_free_claims,
"E37.metrics.false_free_claims",
),
},
dimensionDistributions: {
presence: numberRecord(
distributions.presence,
"E37.dimension_distributions.presence",
),
geometryAssociation: numberRecord(
distributions.geometry_association,
"E37.dimension_distributions.geometry_association",
),
freshness: numberRecord(
distributions.freshness,
"E37.dimension_distributions.freshness",
),
},
severityDistribution: numberRecord(
item.severity_distribution,
"E37.severity_distribution",
),
labelProvenance: {
engineeringItems: integerValue(
provenance.engineering_items,
"E37.label_provenance.engineering_items",
),
humanExceptionItems: integerValue(
provenance.human_exception_items,
"E37.label_provenance.human_exception_items",
),
independentGroundTruth: false,
},
split: {
strategy: stringValue(split.strategy, "E37.split.strategy"),
validationFraction: numberValue(
split.validation_fraction,
"E37.split.validation_fraction",
),
},
targets: {
presenceTarget: numberValue(
targets.presence_target,
"E37.targets.presence_target",
),
geometryAssociationTarget: numberValue(
targets.geometry_association_target,
"E37.targets.geometry_association_target",
),
freshnessTarget: numberValue(
targets.freshness_target,
"E37.targets.freshness_target",
),
},
qualityTargetEvaluated: false,
limitations: strings(item.limitations, "E37.limitations"),
access: exactString(item.access, "read-only", "E37.access"),
};
}
function parseE38Dimension(
value: unknown,
label: string,
): E38DimensionMetric {
const source = record(value, label);
const byStratumSource = record(source.by_stratum, `${label}.by_stratum`);
if (!Array.isArray(source.confusion)) {
throw new AdvancedLaboratoryContractError(
`${label}.confusion: ожидался массив.`,
);
}
return {
correct: integerValue(source.correct, `${label}.correct`),
incorrect: integerValue(source.incorrect, `${label}.incorrect`),
total: integerValue(source.total, `${label}.total`),
accuracy: numberValue(source.accuracy, `${label}.accuracy`),
target: numberValue(source.target, `${label}.target`),
passed: booleanValue(source.passed, `${label}.passed`),
byStratum: Object.fromEntries(
Object.entries(byStratumSource).map(([stratum, value]) => {
const metric = record(value, `${label}.by_stratum.${stratum}`);
return [
stratum,
{
correct: integerValue(
metric.correct,
`${label}.by_stratum.${stratum}.correct`,
),
incorrect: integerValue(
metric.incorrect,
`${label}.by_stratum.${stratum}.incorrect`,
),
total: integerValue(
metric.total,
`${label}.by_stratum.${stratum}.total`,
),
accuracy: numberValue(
metric.accuracy,
`${label}.by_stratum.${stratum}.accuracy`,
),
},
];
}),
),
confusion: source.confusion.map((value, index) => {
const row = record(value, `${label}.confusion[${index}]`);
return {
reference: stringValue(
row.reference,
`${label}.confusion[${index}].reference`,
),
prediction: stringValue(
row.prediction,
`${label}.confusion[${index}].prediction`,
),
count: integerValue(
row.count,
`${label}.confusion[${index}].count`,
),
};
}),
};
}
export function parseE38(value: unknown): E38PerceptionBaselineResult {
const item = record(value, "E38");
const metrics = record(item.metrics, "E38.metrics");
const dimensions = record(metrics.dimensions, "E38.metrics.dimensions");
diagnosticAuthority(item.authority, "E38.authority");
return {
resultId: contentId(
item.result_id,
"e38-perception-baseline",
"E38.result_id",
),
createdAtUtc: optionalString(item.created_at_utc, "E38.created_at_utc"),
sourceSessionId: stringValue(
item.source_session_id,
"E38.source_session_id",
),
sourceDisplayName: stringValue(
item.source_display_name,
"E38.source_display_name",
),
status: exactString(
item.status,
"measured-r1-source-scoped-baseline",
"E38.status",
),
profileId: stringValue(item.profile_id, "E38.profile_id"),
workerNode: stringValue(item.worker_node, "E38.worker_node"),
qualityGatePassed: booleanValue(
item.quality_gate_passed,
"E38.quality_gate_passed",
),
metrics: {
developmentItems: integerValue(
metrics.development_items,
"E38.metrics.development_items",
),
validationItems: integerValue(
metrics.validation_items,
"E38.metrics.validation_items",
),
terminalOutcomes: integerValue(
metrics.terminal_outcomes,
"E38.metrics.terminal_outcomes",
),
accountingFraction: numberValue(
metrics.accounting_fraction,
"E38.metrics.accounting_fraction",
),
falseFreeClaims: integerValue(
metrics.false_free_claims,
"E38.metrics.false_free_claims",
),
highSeverityFailures: integerValue(
metrics.high_severity_failures,
"E38.metrics.high_severity_failures",
),
dimensions: {
presence: parseE38Dimension(
dimensions.presence,
"E38.metrics.dimensions.presence",
),
geometryAssociation: parseE38Dimension(
dimensions.geometry_association,
"E38.metrics.dimensions.geometry_association",
),
freshness: parseE38Dimension(
dimensions.freshness,
"E38.metrics.dimensions.freshness",
),
},
},
blockingChecks: strings(item.blocking_checks, "E38.blocking_checks"),
limitations: strings(item.limitations, "E38.limitations"),
access: exactString(item.access, "read-only", "E38.access"),
};
}
function parseDevelopmentDimension(
value: unknown,
label: string,
): DevelopmentDimensionMetric {
const source = record(value, label);
return {
correct: integerValue(source.correct, `${label}.correct`),
incorrect: integerValue(source.incorrect, `${label}.incorrect`),
total: integerValue(source.total, `${label}.total`),
accuracy: numberValue(source.accuracy, `${label}.accuracy`),
target: numberValue(source.target, `${label}.target`),
passed: booleanValue(source.passed, `${label}.passed`),
};
}
export function parseE39(value: unknown): E39PerceptionRefinementResult {
const item = record(value, "E39");
const metrics = record(item.metrics, "E39.metrics");
const dimensions = record(metrics.dimensions, "E39.metrics.dimensions");
const developmentCrossValidation = record(
item.development_cross_validation,
"E39.development_cross_validation",
);
const developmentDimensions = record(
developmentCrossValidation.dimensions,
"E39.development_cross_validation.dimensions",
);
const method = record(item.method, "E39.method");
diagnosticAuthority(item.authority, "E39.authority");
return {
resultId: contentId(
item.result_id,
"e39-perception-refinement",
"E39.result_id",
),
createdAtUtc: optionalString(item.created_at_utc, "E39.created_at_utc"),
sourceSessionId: stringValue(
item.source_session_id,
"E39.source_session_id",
),
sourceDisplayName: stringValue(
item.source_display_name,
"E39.source_display_name",
),
status: exactString(
item.status,
"measured-r1-source-scoped-refinement",
"E39.status",
),
profileId: stringValue(item.profile_id, "E39.profile_id"),
workerNode: stringValue(item.worker_node, "E39.worker_node"),
qualityGatePassed: booleanValue(
item.quality_gate_passed,
"E39.quality_gate_passed",
),
developmentCrossValidation: {
strategy: stringValue(
developmentCrossValidation.strategy,
"E39.development_cross_validation.strategy",
),
seed: stringValue(
developmentCrossValidation.seed,
"E39.development_cross_validation.seed",
),
folds: integerValue(
developmentCrossValidation.folds,
"E39.development_cross_validation.folds",
),
items: integerValue(
developmentCrossValidation.items,
"E39.development_cross_validation.items",
),
validationLabelsUsed: falseValue(
developmentCrossValidation.validation_labels_used,
"E39.development_cross_validation.validation_labels_used",
),
passed: booleanValue(
developmentCrossValidation.passed,
"E39.development_cross_validation.passed",
),
dimensions: {
presence: parseDevelopmentDimension(
developmentDimensions.presence,
"E39.development_cross_validation.dimensions.presence",
),
geometryAssociation: parseDevelopmentDimension(
developmentDimensions.geometry_association,
"E39.development_cross_validation.dimensions.geometry_association",
),
freshness: parseDevelopmentDimension(
developmentDimensions.freshness,
"E39.development_cross_validation.dimensions.freshness",
),
},
},
metrics: {
developmentItems: integerValue(
metrics.development_items,
"E39.metrics.development_items",
),
validationItems: integerValue(
metrics.validation_items,
"E39.metrics.validation_items",
),
terminalOutcomes: integerValue(
metrics.terminal_outcomes,
"E39.metrics.terminal_outcomes",
),
accountingFraction: numberValue(
metrics.accounting_fraction,
"E39.metrics.accounting_fraction",
),
falseFreeClaims: integerValue(
metrics.false_free_claims,
"E39.metrics.false_free_claims",
),
highSeverityFailures: integerValue(
metrics.high_severity_failures,
"E39.metrics.high_severity_failures",
),
dimensions: {
presence: parseE38Dimension(
dimensions.presence,
"E39.metrics.dimensions.presence",
),
geometryAssociation: parseE38Dimension(
dimensions.geometry_association,
"E39.metrics.dimensions.geometry_association",
),
freshness: parseE38Dimension(
dimensions.freshness,
"E39.metrics.dimensions.freshness",
),
},
},
blockingChecks: strings(item.blocking_checks, "E39.blocking_checks"),
method: {
summary: stringValue(method.summary, "E39.method.summary"),
selection: stringValue(method.selection, "E39.method.selection"),
dimensionProjection: stringValue(
method.dimension_projection,
"E39.method.dimension_projection",
),
},
limitations: strings(item.limitations, "E39.limitations"),
access: exactString(item.access, "read-only", "E39.access"),
};
}
export async function fetchOne<T>(
path: string,
parser: (value: unknown) => T,
fetcher: LaboratoryFetch,
signal?: AbortSignal,
): Promise<T | null> {
const response = await fetcher(path, {
method: "GET",
headers: { Accept: "application/json" },
signal,
});
if (!response.ok) {
throw new AdvancedLaboratoryContractError(`Каталог LAB недоступен: HTTP ${response.status}.`);
}
return parseCatalog(await response.json(), parser);
}
export async function fetchAdvancedLaboratoryResults({
fetcher = fetch,
signal,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
} = {}): Promise<AdvancedLaboratoryResults> {
const settled = await Promise.allSettled([
fetchOne("/api/v1/laboratory/e31/results?limit=1", parseE31, fetcher, signal),
fetchOne("/api/v1/laboratory/e32/results?limit=1", parseE32, fetcher, signal),
fetchOne("/api/v1/laboratory/e33/results?limit=1", parseE33, fetcher, signal),
fetchE34TemporalLayerResult({ fetcher, signal }),
fetchE35DegradationRecoveryResult({ fetcher, signal }),
fetchOne("/api/v1/laboratory/e37/results?limit=1", parseE37, fetcher, signal),
fetchOne("/api/v1/laboratory/e38/results?limit=1", parseE38, fetcher, signal),
fetchOne("/api/v1/laboratory/e39/results?limit=1", parseE39, fetcher, signal),
fetchE40ProductGateResult({ fetcher, signal }),
]);
const e31 = settledCatalogValue(settled[0]);
const e32 = settledCatalogValue(settled[1]);
const e33 = settledCatalogValue(settled[2]);
const e34 = settledCatalogValue(settled[3]);
const e35 = settledCatalogValue(settled[4]);
const e37 = settledCatalogValue(settled[5]);
const e38 = settledCatalogValue(settled[6]);
const e39 = settledCatalogValue(settled[7]);
const e40 = settledCatalogValue(settled[8]);
return {
vegetationBenchmark: null,
vegetationShadow: null,
m47Graph: null, m48: null, m48SmallStatic: null, m48StaticOccupancy: null,
m48r3StaticOccupancy: null,
m48s: null, m48t: null, m49Tgs: null, m49TgsFull: null, m4Threat: null,
l3: null, l31: null, l32: null, l33: null,
e31,
e32,
e33,
e34,
e35,
e37,
e38,
e39,
e40,
e46: null,
e46a: null,
e46b: null,
e46c: null,
e46d: null,
e46e: null, e46f: null,
e46g: null, e46h: null, e46i: null, e46j: null,
e47: null,
l34: null,
l34a: null,
l34b: null,
l34c: null,
l34d: null,
l34e: null,
l34f: null,
};
}
@@ -0,0 +1,134 @@
import type { ObservationSessionReplayLaunch } from "../observation/sessionArchive";
import type { RecordedRrdArtifactDescriptor } from "../observation/viewerProfile";
const SAFE_RESULT_ID = /^lab-v1-vegetation-shadow-[a-f0-9]{64}$/;
const SAFE_SESSION_SOURCE = /^\/api\/v1\/observation-sessions\/[A-Za-z0-9][A-Za-z0-9._:-]{0,127}\/recording\.rrd$/;
const MAX_CANONICAL_REPLAY_BYTES = 1024 * 1024 * 1024;
export interface CanonicalLabReplayDescriptor extends RecordedRrdArtifactDescriptor {
blueprintSourceUrl: string;
}
/**
* Resolve the one immutable RRD used by the canonical recorded LAB.
*
* The server caches the merge of the sealed spatial recording and the LAB AI
* evidence. Rerun therefore opens one source and cannot present the base store
* before a second receiver has finished decoding the semantic layer.
*/
export async function resolveCanonicalLabReplay(
resultId: string,
launch: ObservationSessionReplayLaunch,
{
origin = window.location.origin,
signal,
fetcher = globalThis.fetch,
sourceKind = "legacy-vegetation",
}: {
origin?: string;
signal?: AbortSignal;
fetcher?: typeof globalThis.fetch;
sourceKind?: "legacy-vegetation" | "portable-tgs" | "portable-semantic" | "portable-objects";
} = {},
): Promise<CanonicalLabReplayDescriptor> {
const base = new URL(origin);
if (
!(sourceKind === "portable-tgs"
? /^m49-tgs-portable-review-[a-f0-9]{64}$/.test(resultId)
: sourceKind === "portable-semantic"
? /^(?:lab-v1-eomt-ddrnet|ai-layer-(?:ddrnet|eomt))-[a-f0-9]{64}$/.test(resultId)
: sourceKind === "portable-objects"
? /^ai-layer-(?:rf-detr|object-distance)-[a-f0-9]{64}$/.test(resultId)
: SAFE_RESULT_ID.test(resultId))
|| !SAFE_SESSION_SOURCE.test(launch.sourceUrl)
|| launch.viewerSourceUrl !== `${launch.sourceUrl}?generation=${launch.sha256}`
|| !/^[a-f0-9]{64}$/.test(launch.sha256)
) {
throw new Error("Канонический replay LAB имеет небезопасный descriptor.");
}
const sourceUrl = sourceKind !== "legacy-vegetation"
? `/api/v1/observatory/portable-results/${resultId}/replays/${launch.sha256}/recording.rrd`
: `/api/v1/laboratory/vegetation-shadow/${encodeURIComponent(resultId)}/canonical-replay.rrd`;
const descriptorUrl = new URL(sourceUrl, `${base.origin}/`);
if (sourceKind === "legacy-vegetation") descriptorUrl.searchParams.set("base_generation", launch.sha256);
if (descriptorUrl.origin !== base.origin) {
throw new Error("Канонический replay LAB должен быть same-origin.");
}
const response = await fetcher(descriptorUrl.href, {
method: "HEAD",
credentials: "same-origin",
headers: { Accept: "application/vnd.rerun.rrd" },
signal,
});
const contentType = response.headers.get("Content-Type")?.split(";", 1)[0].trim();
const byteLength = Number(response.headers.get("Content-Length"));
const sha256 = response.headers.get("ETag")?.match(/^"([a-f0-9]{64})"$/)?.[1];
if (
response.status !== 200
|| contentType !== "application/vnd.rerun.rrd"
|| response.headers.get("X-Rerun-Format") !== "RRF2"
|| !sha256
|| !Number.isSafeInteger(byteLength)
|| byteLength < 4
|| byteLength > MAX_CANONICAL_REPLAY_BYTES
) {
throw new Error("Единый replay LAB не прошёл проверку.");
}
return {
sourceUrl,
viewerSourceUrl: `${sourceUrl}?generation=${sha256}`,
byteLength,
sha256,
blueprintSourceUrl: launch.sourceUrl.replace(/\/recording\.rrd$/, "/blueprint.rrd"),
};
}
export async function resolveAICompositionReplay(
runId: string,
launch: ObservationSessionReplayLaunch,
{
origin = window.location.origin,
signal,
fetcher = globalThis.fetch,
}: {
origin?: string;
signal?: AbortSignal;
fetcher?: typeof globalThis.fetch;
} = {},
): Promise<CanonicalLabReplayDescriptor> {
const base = new URL(origin);
if (
!/^ai-composition-[a-f0-9]{64}$/.test(runId)
|| !SAFE_SESSION_SOURCE.test(launch.sourceUrl)
|| launch.viewerSourceUrl !== `${launch.sourceUrl}?generation=${launch.sha256}`
|| !/^[a-f0-9]{64}$/.test(launch.sha256)
) {
throw new Error("Составной replay LAB имеет небезопасный descriptor.");
}
const sourceUrl = `/api/v1/observatory/ai-composition-runs/${runId}/replays/${launch.sha256}/recording.rrd`;
const descriptorUrl = new URL(sourceUrl, `${base.origin}/`);
const response = await fetcher(descriptorUrl.href, {
method: "HEAD",
credentials: "same-origin",
headers: { Accept: "application/vnd.rerun.rrd" },
signal,
});
const contentType = response.headers.get("Content-Type")?.split(";", 1)[0].trim();
const byteLength = Number(response.headers.get("Content-Length"));
const sha256 = response.headers.get("ETag")?.match(/^"([a-f0-9]{64})"$/)?.[1];
if (
response.status !== 200 || contentType !== "application/vnd.rerun.rrd"
|| response.headers.get("X-Rerun-Format") !== "RRF2" || !sha256
|| !Number.isSafeInteger(byteLength) || byteLength < 4
|| byteLength > MAX_CANONICAL_REPLAY_BYTES
) {
throw new Error("Составной replay LAB не прошёл проверку.");
}
return {
sourceUrl,
viewerSourceUrl: `${sourceUrl}?generation=${sha256}`,
byteLength,
sha256,
blueprintSourceUrl: launch.sourceUrl.replace(/\/recording\.rrd$/, "/blueprint.rrd"),
};
}
@@ -0,0 +1,99 @@
export const CANONICAL_RECORDED_LAB_TGS_HISTORY_SECONDS = 1;
export const CANONICAL_RECORDED_LAB_SPATIAL_PROFILE = "source-paced-ground-v3";
export interface CanonicalRecordedLabPackedCellEvidence {
centersBodyXyM: Float32Array;
zBoundsM: Float32Array;
stateCodes: Uint8Array;
}
export interface CanonicalRecordedLabBodyGroundFrame {
originMapXyzM: readonly [number, number, number];
sensorOriginMapXyzM: readonly [number, number, number];
basisMapFromBody: readonly [
readonly [number, number, number],
readonly [number, number, number],
readonly [number, number, number],
];
}
export interface CanonicalRecordedLabTgsCostmap {
centersXyM: readonly (readonly [number, number])[];
stateCodes: readonly number[];
zBoundsM: readonly (readonly [number | null, number | null])[];
}
export function canonicalRecordedLabTgsIsCurrent(
currentTimeNs: number,
anchorTimeNs: number,
historySeconds = CANONICAL_RECORDED_LAB_TGS_HISTORY_SECONDS,
): boolean {
if (
!Number.isSafeInteger(currentTimeNs)
|| !Number.isSafeInteger(anchorTimeNs)
|| !Number.isFinite(historySeconds)
|| historySeconds <= 0
) return false;
const ageNs = currentTimeNs - anchorTimeNs;
return ageNs >= 0 && ageNs <= Math.round(historySeconds * 1_000_000_000);
}
export function canonicalMapGravityLocalPointToBodyGround(
point: readonly [number, number, number],
anchor: CanonicalRecordedLabBodyGroundFrame,
current: CanonicalRecordedLabBodyGroundFrame,
): readonly [number, number, number] {
// TGS is translation-only map-gravity-local: its axes are map axes and its
// origin is the LiDAR at the source frame. It is not an anchor body frame.
const map: readonly [number, number, number] = [
anchor.sensorOriginMapXyzM[0] + point[0],
anchor.sensorOriginMapXyzM[1] + point[1],
anchor.sensorOriginMapXyzM[2] + point[2],
];
const delta: readonly [number, number, number] = [
map[0] - current.originMapXyzM[0],
map[1] - current.originMapXyzM[1],
map[2] - current.originMapXyzM[2],
];
return [
current.basisMapFromBody[0][0] * delta[0]
+ current.basisMapFromBody[1][0] * delta[1]
+ current.basisMapFromBody[2][0] * delta[2],
current.basisMapFromBody[0][1] * delta[0]
+ current.basisMapFromBody[1][1] * delta[1]
+ current.basisMapFromBody[2][1] * delta[2],
current.basisMapFromBody[0][2] * delta[0]
+ current.basisMapFromBody[1][2] * delta[1]
+ current.basisMapFromBody[2][2] * delta[2],
];
}
export function canonicalRecordedLabPackedTgsCells(
costmap: CanonicalRecordedLabTgsCostmap,
anchor: CanonicalRecordedLabBodyGroundFrame,
current: CanonicalRecordedLabBodyGroundFrame,
): CanonicalRecordedLabPackedCellEvidence {
if (
costmap.centersXyM.length !== costmap.stateCodes.length
|| costmap.centersXyM.length !== costmap.zBoundsM.length
) throw new Error("Canonical recorded LAB TGS accounting changed");
const centers: number[] = [];
const zBounds: number[] = [];
costmap.centersXyM.forEach(([x, y], index) => {
const bounds = costmap.zBoundsM[index] ?? [null, null];
const center = canonicalMapGravityLocalPointToBodyGround([x, y, 0], anchor, current);
centers.push(center[0], center[1]);
if (bounds[0] === null || bounds[1] === null) {
zBounds.push(Number.NaN, Number.NaN);
return;
}
const bottom = canonicalMapGravityLocalPointToBodyGround([x, y, bounds[0]], anchor, current);
const top = canonicalMapGravityLocalPointToBodyGround([x, y, bounds[1]], anchor, current);
zBounds.push(Math.min(bottom[2], top[2]), Math.max(bottom[2], top[2]));
});
return {
centersBodyXyM: Float32Array.from(centers),
zBoundsM: Float32Array.from(zBounds),
stateCodes: Uint8Array.from(costmap.stateCodes),
};
}

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