Author SHA1 Message Date
DCCONSTRUCTIONS 2e44e27967 feat(simulation): auto-build source mesh collision 2026-08-28 13:48:44 +03:00
DCCONSTRUCTIONS 2ccf172319 feat(simulation): add Gaussian UGV runtime pipeline 2026-08-28 11:51:48 +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
241 changed files with 48839 additions and 322 deletions
+7
View File
@@ -189,6 +189,13 @@ 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).
+21 -2
View File
@@ -16,6 +16,8 @@
"@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",
"meshoptimizer": "1.1.1",
"playcanvas": "2.21.4",
"react": "^19.1.0",
"react-dom": "^19.1.0",
"three": "0.185.1"
@@ -1375,7 +1377,6 @@
"version": "0.5.24",
"resolved": "https://registry.npmjs.org/@types/webxr/-/webxr-0.5.24.tgz",
"integrity": "sha512-h8fgEd/DpoS9CBrjEQXR+dIDraopAEfu4wYVNY2tEPwk60stPWhvZMf4Foo5FakuQ7HFZoa8WceaWFervK2Ovg==",
"dev": true,
"license": "MIT"
},
"node_modules/@vitejs/plugin-react": {
@@ -1399,6 +1400,12 @@
"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",
@@ -1655,7 +1662,6 @@
"version": "1.1.1",
"resolved": "https://registry.npmjs.org/meshoptimizer/-/meshoptimizer-1.1.1.tgz",
"integrity": "sha512-oRFNWJRDA/WTrVj7NWvqa5HqE1t9MYDj2VaWirQCzCCrAd2GHrqR/sQezCxiWATPNlKTcRaPRHPJwIRoPBAp5g==",
"dev": true,
"license": "MIT"
},
"node_modules/ms": {
@@ -1714,6 +1720,19 @@
"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",
+2
View File
@@ -19,6 +19,8 @@
"@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",
"meshoptimizer": "1.1.1",
"playcanvas": "2.21.4",
"react": "^19.1.0",
"react-dom": "^19.1.0",
"three": "0.185.1"
@@ -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 = {}) {
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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||
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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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O.prototype=Object.create(v.prototype);O.prototype.constructor=O;O.prototype.__class__=O;O.__cache__={};a.DracoUInt32Array=O;O.prototype.GetValue=O.prototype.GetValue=function(b){var c=this.ptr;b&&"object"===typeof b&&(b=b.ptr);return Yb(c,b)};O.prototype.size=O.prototype.size=function(){return Zb(this.ptr)};O.prototype.__destroy__=O.prototype.__destroy__=function(){$b(this.ptr)};z.prototype=Object.create(v.prototype);z.prototype.constructor=z;z.prototype.__class__=z;z.__cache__={};a.MetadataQuerier=
z;z.prototype.HasEntry=z.prototype.HasEntry=function(b,c){var d=this.ptr;r.prepare();b&&"object"===typeof b&&(b=b.ptr);c=c&&"object"===typeof c?c.ptr:R(c);return!!ac(d,b,c)};z.prototype.GetIntEntry=z.prototype.GetIntEntry=function(b,c){var d=this.ptr;r.prepare();b&&"object"===typeof b&&(b=b.ptr);c=c&&"object"===typeof c?c.ptr:R(c);return bc(d,b,c)};z.prototype.GetIntEntryArray=z.prototype.GetIntEntryArray=function(b,c,d){var g=this.ptr;r.prepare();b&&"object"===typeof b&&(b=b.ptr);c=c&&"object"===
typeof c?c.ptr:R(c);d&&"object"===typeof d&&(d=d.ptr);cc(g,b,c,d)};z.prototype.GetDoubleEntry=z.prototype.GetDoubleEntry=function(b,c){var d=this.ptr;r.prepare();b&&"object"===typeof b&&(b=b.ptr);c=c&&"object"===typeof c?c.ptr:R(c);return dc(d,b,c)};z.prototype.GetStringEntry=z.prototype.GetStringEntry=function(b,c){var d=this.ptr;r.prepare();b&&"object"===typeof b&&(b=b.ptr);c=c&&"object"===typeof c?c.ptr:R(c);return p(ec(d,b,c))};z.prototype.NumEntries=z.prototype.NumEntries=function(b){var c=this.ptr;
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b.ptr);c&&"object"===typeof c&&(c=c.ptr);d&&"object"===typeof d&&(d=d.ptr);return!!zc(g,b,c,d)};m.prototype.GetAttributeInt16ForAllPoints=m.prototype.GetAttributeInt16ForAllPoints=function(b,c,d){var g=this.ptr;b&&"object"===typeof b&&(b=b.ptr);c&&"object"===typeof c&&(c=c.ptr);d&&"object"===typeof d&&(d=d.ptr);return!!Ac(g,b,c,d)};m.prototype.GetAttributeUInt16ForAllPoints=m.prototype.GetAttributeUInt16ForAllPoints=function(b,c,d){var g=this.ptr;b&&"object"===typeof b&&(b=b.ptr);c&&"object"===typeof c&&
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@@ -352,6 +352,7 @@ interface RecordedSegmentStreamRuntime {
target: RecordedSegmentTarget | null;
fetchAbort: AbortController | null;
notifiedRevision: number;
hasPresentedFrame: boolean;
pumping: boolean;
disposed: boolean;
onTargetBuffered: ((target: RecordedSegmentTarget) => void) | null;
@@ -944,6 +945,7 @@ export function RecordedFmp4Player({
target: null,
fetchAbort: null,
notifiedRevision: 0,
hasPresentedFrame: false,
pumping: false,
disposed: false,
onTargetBuffered: null,
@@ -1090,8 +1092,13 @@ export function RecordedFmp4Player({
runtime.fetchAbort?.abort();
runtime.target = target;
const alreadyBuffered = recordedSegmentTargetBuffered(runtime, target);
const retainForwardFrame = Boolean(
runtime.hasPresentedFrame
&& previousTarget
&& candidateTarget.sequence >= previousTarget.sequence,
);
video.pause();
if (!alreadyBuffered) {
if (!alreadyBuffered && !retainForwardFrame) {
setReadyGeneration(null);
setState("loading");
}
@@ -1119,6 +1126,7 @@ export function RecordedFmp4Player({
|| runtime.target?.revision !== bufferedTarget.revision
) return;
setBufferRevision((revision) => revision + 1);
runtime.hasPresentedFrame = true;
setReadyGeneration(runtime.generation);
setState("ready");
reportAdmission({
@@ -1,6 +1,7 @@
import {
forwardRef,
type CSSProperties,
useCallback,
useEffect,
useImperativeHandle,
useRef,
@@ -26,6 +27,7 @@ export interface LaboratoryMetricObstacleVisual {
state: "current" | "retained" | "held" | "expired";
centroidBodyXyzM: LaboratoryMetricPoint3;
cellCentersBodyXyzM: readonly LaboratoryMetricPoint3[];
occupancySource?: "baseline" | "mixed" | "additive-low-step";
}
export interface LaboratoryMetricRigVisual {
@@ -40,11 +42,41 @@ export interface LaboratoryMetricCorridorVisual {
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 | "context" | "local-surface" | "rolling";
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,
@@ -52,6 +84,7 @@ export function laboratoryMetricLegendEntries({
showCurrentIncrement,
showLocalSurface,
showRollingMap,
showLowStep = true,
}: {
pointCloudCount: number;
localSurfaceCount: number;
@@ -59,19 +92,29 @@ export function laboratoryMetricLegendEntries({
showCurrentIncrement: boolean;
showLocalSurface: boolean;
showRollingMap: boolean;
showLowStep?: boolean;
}): readonly LaboratoryMetricLegendEntry[] {
const visibleObstacles = obstacles.filter((obstacle) => (
obstacle.state === "current"
(showLowStep || obstacle.occupancySource === undefined || obstacle.occupancySource === "baseline")
&& (obstacle.state === "current"
? showCurrentIncrement
: obstacle.state === "retained"
? showRollingMap
: false
: 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" });
}
@@ -140,6 +183,47 @@ function positions(points: readonly LaboratoryMetricPoint3[]): Float32Array {
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,
@@ -153,6 +237,16 @@ function decisionColor(
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;
}
@@ -171,9 +265,14 @@ LaboratoryMetricEvidenceSceneHandle,
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,
@@ -187,9 +286,14 @@ LaboratoryMetricEvidenceSceneHandle,
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);
@@ -197,7 +301,19 @@ LaboratoryMetricEvidenceSceneHandle,
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;
@@ -231,12 +347,76 @@ LaboratoryMetricEvidenceSceneHandle,
controls.maxDistance = 80;
const staticContent = new THREE.Group();
const dynamicContent = new THREE.Group();
scene.add(staticContent, dynamicContent);
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);
@@ -244,21 +424,17 @@ LaboratoryMetricEvidenceSceneHandle,
camera.aspect = width / height;
camera.updateProjectionMatrix();
renderer.setSize(width, height, false);
requestRender();
};
const observer = new ResizeObserver(resize);
observer.observe(host);
resize();
let animationFrame = 0;
const render = () => {
animationFrame = window.requestAnimationFrame(render);
controls.update();
renderer.render(scene, camera);
};
render();
requestRender();
return () => {
window.cancelAnimationFrame(animationFrame);
if (animationFrame !== null) window.cancelAnimationFrame(animationFrame);
observer.disconnect();
controls.removeEventListener("change", requestRender);
controls.dispose();
scene.traverse(disposeRenderable);
renderer.dispose();
@@ -268,6 +444,11 @@ LaboratoryMetricEvidenceSceneHandle,
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();
};
}, []);
@@ -276,43 +457,39 @@ LaboratoryMetricEvidenceSceneHandle,
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 content = dynamicContentRef.current;
if (!host || !content) return;
clearGroup(content);
if (showLocalSurface) {
const localSurfaceGeometry = new THREE.BufferGeometry();
localSurfaceGeometry.setAttribute(
"position",
new THREE.BufferAttribute(positions(localSurfaceBodyXyzM), 3),
);
content.add(new THREE.Points(
localSurfaceGeometry,
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 points = currentIncrementPointsRef.current;
if (!host || !points) return;
points.visible = showCurrentIncrement && pointCloudBodyXyzM.length > 0;
if (!points.visible) {
requestRenderRef.current();
return;
}
if (showCurrentIncrement) {
const contextGeometry = new THREE.BufferGeometry();
contextGeometry.setAttribute(
"position",
new THREE.BufferAttribute(positions(pointCloudBodyXyzM), 3),
);
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 (!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) {
@@ -321,7 +498,8 @@ LaboratoryMetricEvidenceSceneHandle,
if (rgb) colorsByClassId.set(entry.classId, rgb);
}
const context = tokenColor(host, "--nodedc-text-muted", [147, 151, 159]);
const pointColors = new Float32Array(pointCloudBodyXyzM.length * 3);
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;
@@ -329,29 +507,35 @@ LaboratoryMetricEvidenceSceneHandle,
pointColors[offset + 1] = rgb ? rgb[1] / 255 : context.g;
pointColors[offset + 2] = rgb ? rgb[2] / 255 : context.b;
});
contextGeometry.setAttribute(
"color",
new THREE.BufferAttribute(pointColors, 3),
);
}
content.add(new THREE.Points(
contextGeometry,
new THREE.PointsMaterial({
color: hasAlignedSemanticClasses
? new THREE.Color(1, 1, 1)
: tokenColor(host, "--nodedc-text-muted", [147, 151, 159]),
vertexColors: hasAlignedSemanticClasses,
size: 1.55,
sizeAttenuation: false,
transparent: true,
opacity: 0.58,
depthWrite: false,
}),
));
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"
@@ -359,7 +543,7 @@ LaboratoryMetricEvidenceSceneHandle,
) {
continue;
}
const color = decisionColor(host, obstacle.decision);
const color = obstacleColor(host, obstacle);
if (obstacle.state === "retained") {
const geometry = new THREE.BoxGeometry(
occupiedVoxelSizeM * 0.82,
@@ -412,20 +596,150 @@ LaboratoryMetricEvidenceSceneHandle,
content.add(centroid);
}
}
requestRenderRef.current();
}, [
obstacles,
occupiedVoxelSizeM,
localSurfaceBodyXyzM,
pointCloudBodyXyzM,
pointSemanticClassIds,
semanticClasses,
semanticPalette,
showCurrentIncrement,
showLocalSurface,
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;
@@ -490,15 +804,24 @@ LaboratoryMetricEvidenceSceneHandle,
material.depthWrite = false;
});
content.add(grid);
}, [corridor, rig]);
requestRenderRef.current();
}, [
corridor.forwardLengthM,
corridor.halfWidthM,
corridor.rearMarginM,
rig.lengthM,
rig.nominalSensorHeightM,
rig.widthM,
]);
const resetView = () => {
const resetView = useCallback(() => {
const camera = cameraRef.current;
const controls = controlsRef.current;
if (!camera || !controls) return;
controls.target.set(corridor.forwardLengthM * 0.35, 0.6, 0);
if (mode === "plan") {
camera.position.set(corridor.forwardLengthM * 0.35, 15, 0.001);
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);
@@ -506,10 +829,13 @@ LaboratoryMetricEvidenceSceneHandle,
}
camera.updateProjectionMatrix();
controls.update();
};
requestRenderRef.current();
}, []);
useEffect(resetView, [corridor.forwardLengthM, mode]);
useImperativeHandle(ref, () => ({ resetView }));
// 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 (
@@ -532,13 +858,53 @@ LaboratoryMetricEvidenceSceneHandle,
});
})();
const metricLegendEntries = laboratoryMetricLegendEntries({
pointCloudCount: pointCloudBodyXyzM.length,
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">
@@ -546,9 +912,22 @@ LaboratoryMetricEvidenceSceneHandle,
{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}
@@ -510,16 +510,21 @@ export function RecordedEvidenceSemanticMaskOverlay({
}) {
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 renderMask = failure
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);
@@ -627,8 +632,8 @@ export function RecordedEvidenceSemanticMaskOverlay({
className="recorded-evidence-semantic-mask-overlay"
role="img"
aria-label={ariaLabel}
aria-busy={!failure && !renderMask}
data-state={failure ? "error" : renderMask ? "ready" : "loading"}
aria-busy={!failure && !exactMask}
data-state={failure ? "error" : exactMask ? "ready" : renderMask ? "stale" : "loading"}
data-renderer={rendererMode}
style={{ zIndex: 1 }}
/>
@@ -0,0 +1,625 @@
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 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.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.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`;
}
@@ -0,0 +1,999 @@
import {
Application,
Color,
Entity,
Mat4,
Mesh,
PRIMITIVE_TRIANGLES,
Quat,
StandardMaterial,
Vec3,
WasmModule,
type ModelComponent,
} from "playcanvas";
import { MeshoptSimplifier } from "meshoptimizer/simplifier";
import type { SimulationUgvPreset } from "../../core/simulation/projects";
const AMMO_MODULE_ROOT = "/vendor/playcanvas/ammo/2026-08-25";
const UGV_SPAWN_POSITION = new Vec3(0, 1.15, 0);
const UGV_SPAWN_ROTATION = new Vec3(0, 0, 0);
const ZERO = new Vec3(0, 0, 0);
const DISABLE_DEACTIVATION = 4;
const PHYSICS_PROXY_RATIO = 0.04;
const PHYSICS_PROXY_ERROR = 0.0003;
const PHYSICS_PROXY_MAX_TRIANGLES = 240_000;
const SERVICE_BRAKE_DECELERATION_MPS2 = 1.8;
const COAST_DECELERATION_MPS2 = 0.18;
const BRAKE_ATTITUDE_DAMPING = 6;
const DEFAULT_ORBIT_PITCH = 0.48;
const CAMERA_RETURN_DELAY_SECONDS = 1.2;
const CAMERA_RETURN_DURATION_SECONDS = 2;
const UGV_SPAWN_OFFSETS: ReadonlyArray<readonly [number, number]> = [
[0, 0],
[1.5, 0],
[-1.5, 0],
[0, 1.5],
[0, -1.5],
[1.5, 1.5],
[-1.5, 1.5],
[1.5, -1.5],
[-1.5, -1.5],
[3, 0],
[-3, 0],
[0, 3],
[0, -3],
];
export const DEFAULT_SIMULATION_UGV_PRESET: SimulationUgvPreset = {
presetName: "UGV 100 кг",
massKg: 100,
dimensionsMeters: {
length: 1,
width: 0.8,
height: 0.4,
groundClearance: 0.15,
},
maxSpeedMetersPerSecond: 1.2,
maxTurnRateDegrees: 45,
invertSteering: false,
};
type NativeObject = object;
interface NativeVector3 extends NativeObject {
x(): number;
y(): number;
z(): number;
setValue(x: number, y: number, z: number): void;
}
interface NativeQuaternion extends NativeObject {
x(): number;
y(): number;
z(): number;
w(): number;
}
interface NativeTransform extends NativeObject {
getOrigin(): NativeVector3;
getRotation(): NativeQuaternion;
}
interface NativeWheelInfo extends NativeObject {
set_m_suspensionStiffness(value: number): void;
set_m_wheelsDampingRelaxation(value: number): void;
set_m_wheelsDampingCompression(value: number): void;
set_m_frictionSlip(value: number): void;
set_m_rollInfluence(value: number): void;
}
interface NativeRaycastVehicle extends NativeObject {
setCoordinateSystem(right: number, up: number, forward: number): void;
addWheel(
connectionPoint: NativeVector3,
direction: NativeVector3,
axle: NativeVector3,
suspensionRestLength: number,
radius: number,
tuning: NativeObject,
isFront: boolean,
): NativeWheelInfo;
applyEngineForce(force: number, wheel: number): void;
setBrake(force: number, wheel: number): void;
setSteeringValue(value: number, wheel: number): void;
getNumWheels(): number;
updateWheelTransform(wheel: number, interpolated: boolean): void;
getWheelTransformWS(wheel: number): NativeTransform;
getForwardVector(): NativeVector3;
getCurrentSpeedKmHour(): number;
resetSuspension(): void;
}
export interface AmmoApi {
btVehicleTuning: new () => NativeObject;
btDefaultVehicleRaycaster: new (world: NativeObject) => NativeObject;
btRaycastVehicle: new (
tuning: NativeObject,
body: NativeObject,
raycaster: NativeObject,
) => NativeRaycastVehicle;
btVector3: new (x: number, y: number, z: number) => NativeVector3;
destroy(object: NativeObject): void;
}
interface NativeDynamicsWorld extends NativeObject {
addAction(action: NativeObject): void;
removeAction(action: NativeObject): void;
}
interface PhysicsSystemAccess {
systems: {
rigidbody: {
dynamicsWorld: NativeDynamicsWorld | null;
raycastFirst(start: Vec3, end: Vec3): { point: Vec3; normal: Vec3 } | null;
};
};
}
interface NativeRigidBodyAccess {
rigidbody?: {
body: NativeObject | null;
linearVelocity: Vec3;
angularVelocity: Vec3;
teleport(position: Vec3, rotation?: Vec3 | Quat): void;
};
}
interface WheelDefinition {
connection: Vec3;
left: boolean;
front: boolean;
anchor: Entity;
}
let ammoInstancePromise: Promise<AmmoApi> | null = null;
export function prepareSimulationPhysics(): Promise<AmmoApi> {
if (ammoInstancePromise) return ammoInstancePromise;
ammoInstancePromise = new Promise<AmmoApi>((resolve, reject) => {
if (!WasmModule.getConfig("Ammo")) {
WasmModule.setConfig("Ammo", {
glueUrl: `${AMMO_MODULE_ROOT}/ammo.wasm.js`,
wasmUrl: `${AMMO_MODULE_ROOT}/ammo.wasm.wasm`,
errorHandler: (error) => {
ammoInstancePromise = null;
reject(new Error(`Физический модуль UGV не загрузился: ${String(error)}`));
},
});
}
WasmModule.getInstance("Ammo", (instance) => {
if (!instance) {
ammoInstancePromise = null;
reject(new Error("Физический модуль UGV вернул пустой экземпляр."));
return;
}
resolve(instance as AmmoApi);
});
});
return ammoInstancePromise;
}
export class SimulationUgvController {
private readonly pressed = new Set<string>();
private readonly collisionBodies: Entity[] = [];
private readonly collisionMeshes: Mesh[] = [];
private readonly wheelDefinitions: WheelDefinition[] = [];
private readonly cameraTarget = new Vec3();
private readonly cameraDesired = new Vec3();
private readonly cameraLookAt = new Vec3();
private readonly forward = new Vec3(0, 0, 1);
private readonly smoothedCamera = new Vec3();
private readonly limitedLinearVelocity = new Vec3();
private readonly limitedAngularVelocity = new Vec3();
private readonly spawnPosition = UGV_SPAWN_POSITION.clone();
private orbitPointerId: number | null = null;
private orbitPointerX = 0;
private orbitPointerY = 0;
private orbitYaw = 0;
private orbitPitch = DEFAULT_ORBIT_PITCH;
private orbitDistance = 3.8;
private orbitIdleSeconds = 0;
private cameraOrbitInitialized = false;
private active = false;
private vehicleEntity: Entity | null = null;
private vehicle: NativeRaycastVehicle | null = null;
private vehicleTuning: NativeObject | null = null;
private vehicleRaycaster: NativeObject | null = null;
private dynamicsWorld: NativeDynamicsWorld | null = null;
private chassisMaterial: StandardMaterial | null = null;
private wheelMaterial: StandardMaterial | null = null;
private cameraInitialized = false;
private settings: SimulationUgvPreset;
constructor(
private readonly app: Application,
private readonly canvas: HTMLCanvasElement,
private readonly camera: Entity,
private readonly ammo: AmmoApi,
initialSettings: SimulationUgvPreset = DEFAULT_SIMULATION_UGV_PRESET,
) {
this.settings = cloneUgvPreset(initialSettings);
}
get enabled(): boolean {
return this.active;
}
configure(settings: SimulationUgvPreset): void {
const next = cloneUgvPreset(settings);
const rebuildRequired = this.active && vehicleGeometryChanged(this.settings, next);
this.settings = next;
if (!rebuildRequired) return;
this.destroyVehicle();
this.spawnPosition.copy(this.findSafeSpawnPosition());
this.createVehicle();
this.reset(false, false);
}
async enable(collisionWorld: Entity): Promise<void> {
if (this.active) return;
await nextAnimationFrame();
try {
await this.createStaticCollisionBodies(collisionWorld);
await nextAnimationFrame();
this.spawnPosition.copy(this.findSafeSpawnPosition());
this.createVehicle();
this.attachInput();
this.active = true;
this.reset();
} catch (error) {
this.disable();
throw error;
}
}
disable(): void {
this.active = false;
this.detachInput();
this.pressed.clear();
this.destroyVehicle();
for (const entity of this.collisionBodies.splice(0)) {
runCleanup("destroy static physics proxy", () => entity.destroy());
}
for (const mesh of this.collisionMeshes.splice(0)) {
runCleanup("destroy static physics mesh", () => mesh.destroy());
}
this.cameraInitialized = false;
this.cameraOrbitInitialized = false;
this.orbitIdleSeconds = 0;
}
dispose(): void {
this.disable();
}
reset(focusCanvas = true, resetCameraOrbit = true): void {
const vehicleEntity = this.vehicleEntity as (Entity & NativeRigidBodyAccess) | null;
const rigidbody = vehicleEntity?.rigidbody;
if (!vehicleEntity || !rigidbody) return;
rigidbody.teleport(this.spawnPosition, UGV_SPAWN_ROTATION);
rigidbody.linearVelocity = ZERO;
rigidbody.angularVelocity = ZERO;
this.vehicle?.resetSuspension();
this.cameraInitialized = false;
if (resetCameraOrbit) {
this.cameraOrbitInitialized = false;
this.orbitIdleSeconds = 0;
}
this.updateCamera(1);
if (focusCanvas) this.canvas.focus({ preventScroll: true });
}
syncCollisionBodies(): void {
for (const entity of this.collisionBodies) {
const rigidbody = (entity as Entity & NativeRigidBodyAccess).rigidbody;
rigidbody?.teleport(entity.getPosition(), entity.getRotation());
}
}
update(deltaSeconds: number): void {
if (!this.active || !this.vehicle || !this.vehicleEntity) return;
const forwardInput = Number(this.isPressed("KeyW", "ArrowUp")) - Number(this.isPressed("KeyS", "ArrowDown"));
const requestedTurn = Number(this.isPressed("KeyA", "ArrowLeft")) - Number(this.isPressed("KeyD", "ArrowRight"));
const turnInput = this.settings.invertSteering ? -requestedTurn : requestedTurn;
const braking = this.pressed.has("Space");
const rigidbody = (this.vehicleEntity as Entity & NativeRigidBodyAccess).rigidbody;
const speedMetersPerSecond = this.vehicle.getCurrentSpeedKmHour() / 3.6;
const maxSpeed = this.settings.maxSpeedMetersPerSecond;
const maxTurnRate = this.settings.maxTurnRateDegrees * Math.PI / 180;
const pureTurn = !braking && forwardInput === 0 && turnInput !== 0;
const desiredSpeed = forwardInput * maxSpeed;
const speedError = desiredSpeed - speedMetersPerSecond;
const speedResponseRange = Math.max(0.35, maxSpeed * 0.2);
const throttle = forwardInput === 0
? 0
: clamp(Math.abs(speedError) / speedResponseRange, 0, 1);
const maximumAcceleration = clamp(1.4 + maxSpeed * 0.35, 1.8, 4.2);
const driveForcePerWheel = this.settings.massKg * maximumAcceleration * throttle / 4;
const pivotForcePerWheel = this.settings.massKg * 0.65;
const forwardCommand = braking ? 0 : forwardInput;
const turnCommand = braking ? 0 : turnInput;
const leftCommand = clamp(forwardCommand - turnCommand, -1, 1);
const rightCommand = clamp(forwardCommand + turnCommand, -1, 1);
const engineForce = pureTurn ? pivotForcePerWheel : driveForcePerWheel;
for (let index = 0; index < this.wheelDefinitions.length; index += 1) {
const definition = this.wheelDefinitions[index];
const command = definition.left ? leftCommand : rightCommand;
this.vehicle.setSteeringValue(0, index);
this.vehicle.applyEngineForce(command * engineForce, index);
this.vehicle.setBrake(0, index);
this.vehicle.updateWheelTransform(index, true);
const transform = this.vehicle.getWheelTransformWS(index);
const position = transform.getOrigin();
const rotation = transform.getRotation();
definition.anchor.setPosition(position.x(), position.y(), position.z());
definition.anchor.setRotation(rotation.x(), rotation.y(), rotation.z(), rotation.w());
}
if (rigidbody) {
const linearVelocity = rigidbody.linearVelocity;
let nextLinearX = linearVelocity.x;
let nextLinearZ = linearVelocity.z;
let horizontalSpeed = Math.hypot(nextLinearX, nextLinearZ);
const coasting = !braking && forwardInput === 0 && turnInput === 0;
if ((braking || coasting) && horizontalSpeed > 0.001) {
const deceleration = braking
? SERVICE_BRAKE_DECELERATION_MPS2
: COAST_DECELERATION_MPS2;
const nextSpeed = Math.max(0, horizontalSpeed - deceleration * Math.max(0, deltaSeconds));
const scale = nextSpeed / horizontalSpeed;
nextLinearX *= scale;
nextLinearZ *= scale;
horizontalSpeed = nextSpeed;
}
if (pureTurn && horizontalSpeed > 0.001) {
const pivotDamping = Math.exp(-Math.max(0, deltaSeconds) * 8);
nextLinearX *= pivotDamping;
nextLinearZ *= pivotDamping;
horizontalSpeed *= pivotDamping;
}
if (horizontalSpeed > maxSpeed * 1.05) {
const scale = maxSpeed / horizontalSpeed;
nextLinearX *= scale;
nextLinearZ *= scale;
}
if (nextLinearX !== linearVelocity.x || nextLinearZ !== linearVelocity.z) {
this.limitedLinearVelocity.set(nextLinearX, linearVelocity.y, nextLinearZ);
rigidbody.linearVelocity = this.limitedLinearVelocity;
}
const angularVelocity = rigidbody.angularVelocity;
const attitudeDamping = braking
? Math.exp(-Math.max(0, deltaSeconds) * BRAKE_ATTITUDE_DAMPING)
: 1;
let nextAngularY = angularVelocity.y;
if (pureTurn) {
const desiredYawRate = -turnInput * maxTurnRate;
const turnAcceleration = Math.max(2, maxTurnRate * 4);
nextAngularY = approach(
angularVelocity.y,
desiredYawRate,
turnAcceleration * Math.max(0, deltaSeconds),
);
} else if (Math.abs(angularVelocity.y) > maxTurnRate) {
nextAngularY = Math.sign(angularVelocity.y) * maxTurnRate;
}
if (attitudeDamping !== 1 || nextAngularY !== angularVelocity.y) {
this.limitedAngularVelocity.set(
angularVelocity.x * attitudeDamping,
nextAngularY,
angularVelocity.z * attitudeDamping,
);
rigidbody.angularVelocity = this.limitedAngularVelocity;
}
}
const body = (this.vehicleEntity as Entity & NativeRigidBodyAccess).rigidbody?.body as {
setActivationState?: (state: number) => void;
} | null;
body?.setActivationState?.(DISABLE_DEACTIVATION);
if (this.vehicleEntity.getPosition().y < -8) this.reset();
this.updateCamera(deltaSeconds);
}
private async createStaticCollisionBodies(collisionWorld: Entity): Promise<void> {
const models = collisionWorld.findComponents("model") as ModelComponent[];
if (models.length === 0) throw new Error("В слое коллизий нет геометрии для физики UGV.");
const meshInstances = models.flatMap((model) => Array.from(model.meshInstances ?? []));
const totalTriangles = meshInstances.reduce(
(total, meshInstance) => total + Math.floor((meshInstance.mesh.primitive[0]?.count ?? 0) / 3),
0,
);
if (totalTriangles === 0) throw new Error("В слое коллизий нет треугольников для физики UGV.");
const targetRatio = totalTriangles <= PHYSICS_PROXY_MAX_TRIANGLES
? 1
: Math.min(PHYSICS_PROXY_RATIO, PHYSICS_PROXY_MAX_TRIANGLES / totalTriangles);
await MeshoptSimplifier.ready;
await nextAnimationFrame();
const rootInverse = collisionWorld.getWorldTransform().clone().invert();
for (let index = 0; index < meshInstances.length; index += 1) {
const meshInstance = meshInstances[index];
const physicsMesh = createPhysicsProxyMesh(
this.app,
meshInstance.mesh,
new Mat4().mul2(rootInverse, meshInstance.node.getWorldTransform()),
targetRatio,
);
if (!physicsMesh) continue;
const entity = new Entity(`UGV physics proxy ${index + 1}`);
collisionWorld.addChild(entity);
entity.addComponent("collision", {
type: "mesh",
render: { meshes: [physicsMesh] },
checkVertexDuplicates: false,
});
entity.addComponent("rigidbody", {
type: "static",
friction: 0.95,
restitution: 0,
});
this.collisionBodies.push(entity);
this.collisionMeshes.push(physicsMesh);
if ((index + 1) % 4 === 0) await nextAnimationFrame();
}
if (this.collisionBodies.length === 0) {
throw new Error("Не удалось создать статический физический слой UGV.");
}
}
private createVehicle(): void {
const access = this.app as unknown as PhysicsSystemAccess;
const dynamicsWorld = access.systems.rigidbody.dynamicsWorld;
if (!dynamicsWorld) throw new Error("Физический мир PlayCanvas не готов.");
const vehicle = new Entity("SimulationUGV");
vehicle.addComponent("collision", { type: "compound" });
vehicle.addComponent("rigidbody", {
type: "dynamic",
mass: this.settings.massKg,
friction: 0.85,
linearDamping: 0.08,
angularDamping: 0.45,
});
this.chassisMaterial = createMaterial(readThemeAccent(), new Color(0.03, 0.04, 0.05));
this.wheelMaterial = createMaterial(new Color(0.055, 0.06, 0.07), new Color(0.008, 0.009, 0.01));
const dimensions = vehicleDimensions(this.settings);
const chassis = createBox(
"UGV chassis",
new Vec3(dimensions.bodyWidth, dimensions.mainHeight, dimensions.length),
this.chassisMaterial,
);
chassis.setLocalPosition(0, dimensions.mainCenterY, 0);
chassis.addComponent("collision", {
type: "box",
halfExtents: new Vec3(
dimensions.bodyWidth / 2,
dimensions.mainHeight / 2,
dimensions.length / 2,
),
});
vehicle.addChild(chassis);
const equipment = createBox(
"UGV equipment",
new Vec3(dimensions.bodyWidth * 0.68, dimensions.equipmentHeight, dimensions.length * 0.56),
this.chassisMaterial,
);
equipment.setLocalPosition(0, dimensions.equipmentCenterY, -dimensions.length * 0.04);
equipment.addComponent("collision", {
type: "box",
halfExtents: new Vec3(
dimensions.bodyWidth * 0.34,
dimensions.equipmentHeight / 2,
dimensions.length * 0.28,
),
});
vehicle.addChild(equipment);
const wheelConnections = [
{ connection: new Vec3(dimensions.wheelX, dimensions.wheelConnectionY, dimensions.wheelZ), left: false, front: true },
{ connection: new Vec3(-dimensions.wheelX, dimensions.wheelConnectionY, dimensions.wheelZ), left: true, front: true },
{ connection: new Vec3(dimensions.wheelX, dimensions.wheelConnectionY, -dimensions.wheelZ), left: false, front: false },
{ connection: new Vec3(-dimensions.wheelX, dimensions.wheelConnectionY, -dimensions.wheelZ), left: true, front: false },
];
for (const definition of wheelConnections) {
const anchor = new Entity(definition.left ? "UGV wheel left" : "UGV wheel right");
anchor.setLocalPosition(definition.connection);
const wheelMesh = new Entity("UGV wheel mesh");
wheelMesh.addComponent("render", { type: "cylinder", castShadows: false, receiveShadows: false });
wheelMesh.setLocalEulerAngles(0, 0, 90);
wheelMesh.setLocalScale(
dimensions.wheelRadius * 2,
dimensions.wheelThickness,
dimensions.wheelRadius * 2,
);
applyMaterial(wheelMesh, this.wheelMaterial);
anchor.addChild(wheelMesh);
vehicle.addChild(anchor);
this.wheelDefinitions.push({ ...definition, anchor });
}
vehicle.setLocalPosition(this.spawnPosition);
this.app.root.addChild(vehicle);
const body = (vehicle as Entity & NativeRigidBodyAccess).rigidbody?.body;
if (!body) {
vehicle.destroy();
throw new Error("Динамическое тело UGV не создалось.");
}
const tuning = new this.ammo.btVehicleTuning();
const raycaster = new this.ammo.btDefaultVehicleRaycaster(dynamicsWorld);
const nativeVehicle = new this.ammo.btRaycastVehicle(tuning, body, raycaster);
nativeVehicle.setCoordinateSystem(0, 1, 2);
const axle = new this.ammo.btVector3(-1, 0, 0);
const direction = new this.ammo.btVector3(0, -1, 0);
const connection = new this.ammo.btVector3(0, 0, 0);
for (const definition of this.wheelDefinitions) {
connection.setValue(definition.connection.x, definition.connection.y, definition.connection.z);
const wheel = nativeVehicle.addWheel(
connection,
direction,
axle,
dimensions.suspensionRestLength,
dimensions.wheelRadius,
tuning,
definition.front,
);
wheel.set_m_suspensionStiffness(24);
wheel.set_m_wheelsDampingRelaxation(3.2);
wheel.set_m_wheelsDampingCompression(4.8);
wheel.set_m_frictionSlip(5.5);
wheel.set_m_rollInfluence(0.08);
}
this.ammo.destroy(axle);
this.ammo.destroy(direction);
this.ammo.destroy(connection);
dynamicsWorld.addAction(nativeVehicle);
this.vehicleEntity = vehicle;
this.vehicleTuning = tuning;
this.vehicleRaycaster = raycaster;
this.vehicle = nativeVehicle;
this.dynamicsWorld = dynamicsWorld;
}
private updateCamera(deltaSeconds: number): void {
if (!this.vehicleEntity || !this.vehicle) return;
this.cameraTarget.copy(this.vehicleEntity.getPosition());
this.cameraLookAt.copy(this.cameraTarget);
this.cameraLookAt.y += Math.max(0.15, this.settings.dimensionsMeters.height * 0.35);
const nativeForward = this.vehicle.getForwardVector();
this.forward.set(nativeForward.x(), 0, nativeForward.z());
if (this.forward.lengthSq() < 0.001) this.forward.set(0, 0, 1);
this.forward.normalize();
const rearOrbitYaw = Math.atan2(-this.forward.x, -this.forward.z);
if (!this.cameraOrbitInitialized) {
this.orbitYaw = rearOrbitYaw;
this.orbitPitch = DEFAULT_ORBIT_PITCH;
this.orbitDistance = Math.max(3.2, this.settings.dimensionsMeters.length * 3.8);
this.cameraOrbitInitialized = true;
this.orbitIdleSeconds = 0;
} else if (this.orbitPointerId === null) {
this.orbitIdleSeconds += Math.max(0, deltaSeconds);
if (this.orbitIdleSeconds >= CAMERA_RETURN_DELAY_SECONDS) {
const returnDelta = Math.max(0, deltaSeconds) / CAMERA_RETURN_DURATION_SECONDS;
this.orbitYaw = approachAngle(this.orbitYaw, rearOrbitYaw, Math.PI * returnDelta);
this.orbitPitch = approach(
this.orbitPitch,
DEFAULT_ORBIT_PITCH,
Math.PI * 0.5 * returnDelta,
);
}
}
const horizontalDistance = Math.cos(this.orbitPitch) * this.orbitDistance;
this.cameraDesired.set(
this.cameraLookAt.x + Math.sin(this.orbitYaw) * horizontalDistance,
this.cameraLookAt.y + Math.sin(this.orbitPitch) * this.orbitDistance,
this.cameraLookAt.z + Math.cos(this.orbitYaw) * horizontalDistance,
);
if (!this.cameraInitialized) {
this.smoothedCamera.copy(this.cameraDesired);
this.cameraInitialized = true;
} else {
const blend = 1 - Math.exp(
-Math.max(0, deltaSeconds) * (this.orbitPointerId === null ? 8 : 18),
);
this.smoothedCamera.lerp(this.smoothedCamera, this.cameraDesired, blend);
}
this.camera.setPosition(this.smoothedCamera);
this.camera.lookAt(this.cameraLookAt);
}
private findSafeSpawnPosition(): Vec3 {
const dimensions = vehicleDimensions(this.settings);
const footprint: ReadonlyArray<readonly [number, number]> = [
[0, 0],
[dimensions.width * 0.42, dimensions.length * 0.42],
[-dimensions.width * 0.42, dimensions.length * 0.42],
[dimensions.width * 0.42, -dimensions.length * 0.42],
[-dimensions.width * 0.42, -dimensions.length * 0.42],
];
const clearanceDirections: ReadonlyArray<readonly [number, number]> = [
[dimensions.width * 0.62, 0],
[-dimensions.width * 0.62, 0],
[0, dimensions.length * 0.62],
[0, -dimensions.length * 0.62],
];
const from = new Vec3();
const to = new Vec3();
const physics = (this.app as unknown as PhysicsSystemAccess).systems.rigidbody;
for (const [offsetX, offsetZ] of UGV_SPAWN_OFFSETS) {
const heights: number[] = [];
let suitable = true;
for (const [sampleX, sampleZ] of footprint) {
const x = UGV_SPAWN_POSITION.x + offsetX + sampleX;
const z = UGV_SPAWN_POSITION.z + offsetZ + sampleZ;
from.set(x, 8, z);
to.set(x, -8, z);
const hit = physics.raycastFirst(from, to);
if (!hit || hit.normal.y < 0.72 || Math.abs(hit.point.y) > 2.5) {
suitable = false;
break;
}
heights.push(hit.point.y);
}
if (!suitable || heights.length !== footprint.length) continue;
const minimum = Math.min(...heights);
const maximum = Math.max(...heights);
if (maximum - minimum > 0.32) continue;
const x = UGV_SPAWN_POSITION.x + offsetX;
const z = UGV_SPAWN_POSITION.z + offsetZ;
const ground = heights.reduce((sum, height) => sum + height, 0) / heights.length;
const clearanceHeight = ground + dimensions.originHeight;
const origin = new Vec3(x, clearanceHeight, z);
const blocked = clearanceDirections.some(([directionX, directionZ]) => {
to.set(x + directionX, clearanceHeight, z + directionZ);
return physics.raycastFirst(origin, to) !== null;
});
if (!blocked) return new Vec3(x, ground + dimensions.originHeight, z);
}
return UGV_SPAWN_POSITION.clone();
}
private destroyVehicle(): void {
if (this.vehicle && this.dynamicsWorld) {
runCleanup("remove vehicle action", () => this.dynamicsWorld?.removeAction(this.vehicle as NativeObject));
}
if (this.vehicle) runCleanup("destroy vehicle", () => this.ammo.destroy(this.vehicle as NativeObject));
if (this.vehicleRaycaster) runCleanup("destroy vehicle raycaster", () => this.ammo.destroy(this.vehicleRaycaster as NativeObject));
if (this.vehicleTuning) runCleanup("destroy vehicle tuning", () => this.ammo.destroy(this.vehicleTuning as NativeObject));
this.vehicle = null;
this.vehicleRaycaster = null;
this.vehicleTuning = null;
this.dynamicsWorld = null;
if (this.vehicleEntity) runCleanup("destroy vehicle entity", () => this.vehicleEntity?.destroy());
this.vehicleEntity = null;
this.wheelDefinitions.length = 0;
if (this.chassisMaterial) runCleanup("destroy chassis material", () => this.chassisMaterial?.destroy());
if (this.wheelMaterial) runCleanup("destroy wheel material", () => this.wheelMaterial?.destroy());
this.chassisMaterial = null;
this.wheelMaterial = null;
this.cameraInitialized = false;
}
private isPressed(primary: string, alternative: string): boolean {
return this.pressed.has(primary) || this.pressed.has(alternative);
}
private attachInput(): void {
window.addEventListener("keydown", this.onKeyDown, true);
window.addEventListener("keyup", this.onKeyUp, true);
window.addEventListener("blur", this.onWindowBlur);
this.canvas.addEventListener("pointerdown", this.onOrbitPointerDown);
this.canvas.addEventListener("pointermove", this.onOrbitPointerMove);
this.canvas.addEventListener("pointerup", this.onOrbitPointerUp);
this.canvas.addEventListener("pointercancel", this.onOrbitPointerUp);
this.canvas.addEventListener("wheel", this.onOrbitWheel, { passive: false });
}
private detachInput(): void {
window.removeEventListener("keydown", this.onKeyDown, true);
window.removeEventListener("keyup", this.onKeyUp, true);
window.removeEventListener("blur", this.onWindowBlur);
this.canvas.removeEventListener("pointerdown", this.onOrbitPointerDown);
this.canvas.removeEventListener("pointermove", this.onOrbitPointerMove);
this.canvas.removeEventListener("pointerup", this.onOrbitPointerUp);
this.canvas.removeEventListener("pointercancel", this.onOrbitPointerUp);
this.canvas.removeEventListener("wheel", this.onOrbitWheel);
this.releaseOrbitPointer();
}
private onOrbitPointerDown = (event: PointerEvent): void => {
if (!this.active || event.button !== 0 || this.orbitPointerId !== null) return;
event.preventDefault();
this.orbitPointerId = event.pointerId;
this.orbitPointerX = event.clientX;
this.orbitPointerY = event.clientY;
this.orbitIdleSeconds = 0;
this.canvas.classList.add("is-orbiting");
try {
this.canvas.setPointerCapture(event.pointerId);
} catch {
// A browser may already have released the pointer during a window transition.
}
};
private onOrbitPointerMove = (event: PointerEvent): void => {
if (!this.active || event.pointerId !== this.orbitPointerId) return;
event.preventDefault();
const deltaX = event.clientX - this.orbitPointerX;
const deltaY = event.clientY - this.orbitPointerY;
this.orbitPointerX = event.clientX;
this.orbitPointerY = event.clientY;
this.orbitIdleSeconds = 0;
this.orbitYaw = (this.orbitYaw - deltaX * 0.006) % (Math.PI * 2);
this.orbitPitch = clamp(this.orbitPitch + deltaY * 0.0045, -0.12, 1.32);
};
private onOrbitPointerUp = (event: PointerEvent): void => {
if (event.pointerId !== this.orbitPointerId) return;
this.releaseOrbitPointer();
};
private onOrbitWheel = (event: WheelEvent): void => {
if (!this.active) return;
event.preventDefault();
this.orbitIdleSeconds = 0;
this.orbitDistance = clamp(
this.orbitDistance * Math.exp(event.deltaY * 0.0012),
1.6,
14,
);
};
private releaseOrbitPointer(): void {
const pointerId = this.orbitPointerId;
this.orbitPointerId = null;
this.canvas.classList.remove("is-orbiting");
if (pointerId === null || !this.canvas.hasPointerCapture(pointerId)) return;
try {
this.canvas.releasePointerCapture(pointerId);
} catch {
// Pointer capture is already gone; the local orbit state is still released.
}
}
private onKeyDown = (event: KeyboardEvent): void => {
if (!this.active || isTextEntry(event.target)) return;
if (!UGV_KEYS.has(event.code)) return;
event.preventDefault();
event.stopPropagation();
if (event.code === "KeyR") {
this.reset();
return;
}
this.pressed.add(event.code);
};
private onKeyUp = (event: KeyboardEvent): void => {
if (!this.active || !UGV_KEYS.has(event.code)) return;
event.preventDefault();
event.stopPropagation();
this.pressed.delete(event.code);
};
private onWindowBlur = (): void => {
this.pressed.clear();
this.releaseOrbitPointer();
};
}
const UGV_KEYS = new Set([
"KeyW",
"KeyA",
"KeyS",
"KeyD",
"ArrowUp",
"ArrowDown",
"ArrowLeft",
"ArrowRight",
"Space",
"KeyR",
]);
function createPhysicsProxyMesh(
app: Application,
source: Mesh,
localTransform: Mat4,
targetRatio: number,
): Mesh | null {
const primitive = source.primitive[0];
const sourceVertexCount = source.vertexBuffer?.numVertices ?? 0;
if (!primitive || sourceVertexCount === 0 || primitive.count < 3) return null;
const positions = new Float32Array(sourceVertexCount * 3);
const populatedVertices = source.getPositions(positions);
if (populatedVertices === 0) return null;
const transformed = new Float32Array(populatedVertices * 3);
const point = new Vec3();
for (let vertex = 0; vertex < populatedVertices; vertex += 1) {
const offset = vertex * 3;
point.set(positions[offset], positions[offset + 1], positions[offset + 2]);
localTransform.transformPoint(point, point);
transformed[offset] = point.x;
transformed[offset + 1] = point.y;
transformed[offset + 2] = point.z;
}
const requestedIndexCount = Math.max(3, primitive.count);
let indices = new Uint32Array(requestedIndexCount);
const populatedIndices = source.getIndices(indices);
if (populatedIndices === 0) {
const fallbackCount = Math.min(populatedVertices, requestedIndexCount);
indices = new Uint32Array(fallbackCount);
for (let index = 0; index < fallbackCount; index += 1) indices[index] = index;
} else if (populatedIndices !== indices.length) {
indices = indices.slice(0, populatedIndices);
}
const triangleIndexCount = Math.floor(indices.length / 3) * 3;
if (triangleIndexCount < 3) return null;
if (triangleIndexCount !== indices.length) indices = indices.slice(0, triangleIndexCount);
if (targetRatio < 1) {
const targetIndexCount = Math.max(3, Math.floor(indices.length * targetRatio / 3) * 3);
const [simplifiedIndices] = MeshoptSimplifier.simplify(
indices,
transformed,
3,
targetIndexCount,
PHYSICS_PROXY_ERROR,
);
indices = new Uint32Array(simplifiedIndices);
}
const compactedIndices = new Uint32Array(indices);
const [remap, compactedVertexCount] = MeshoptSimplifier.compactMesh(compactedIndices);
const compactedPositions = new Float32Array(compactedVertexCount * 3);
const missing = 0xffff_ffff;
for (let sourceVertex = 0; sourceVertex < remap.length; sourceVertex += 1) {
const compactedVertex = remap[sourceVertex];
if (compactedVertex === missing) continue;
const sourceOffset = sourceVertex * 3;
const compactedOffset = compactedVertex * 3;
compactedPositions[compactedOffset] = transformed[sourceOffset];
compactedPositions[compactedOffset + 1] = transformed[sourceOffset + 1];
compactedPositions[compactedOffset + 2] = transformed[sourceOffset + 2];
}
const physicsMesh = new Mesh(app.graphicsDevice);
physicsMesh.setPositions(compactedPositions);
physicsMesh.setIndices(compactedIndices);
physicsMesh.update(PRIMITIVE_TRIANGLES, true);
return physicsMesh;
}
function cloneUgvPreset(preset: SimulationUgvPreset): SimulationUgvPreset {
return {
...preset,
dimensionsMeters: { ...preset.dimensionsMeters },
};
}
function vehicleGeometryChanged(
current: SimulationUgvPreset,
next: SimulationUgvPreset,
): boolean {
return current.massKg !== next.massKg
|| current.dimensionsMeters.length !== next.dimensionsMeters.length
|| current.dimensionsMeters.width !== next.dimensionsMeters.width
|| current.dimensionsMeters.height !== next.dimensionsMeters.height
|| current.dimensionsMeters.groundClearance !== next.dimensionsMeters.groundClearance;
}
function vehicleDimensions(settings: SimulationUgvPreset) {
const { length, width, height, groundClearance } = settings.dimensionsMeters;
const bodyHeight = height - groundClearance;
const wheelRadius = clamp(
groundClearance * 0.8,
0.07,
Math.min(height * 0.4, length * 0.22),
);
const wheelThickness = clamp(width * 0.13, 0.08, 0.16);
const bodyWidth = Math.max(0.12, width - wheelThickness * 2);
const mainHeight = bodyHeight * 0.68;
const equipmentHeight = bodyHeight - mainHeight;
const suspensionRestLength = clamp(groundClearance * 0.4, 0.04, 0.16);
const originHeight = groundClearance + bodyHeight / 2;
return {
length,
width,
bodyWidth,
mainHeight,
equipmentHeight,
mainCenterY: -bodyHeight / 2 + mainHeight / 2,
equipmentCenterY: bodyHeight / 2 - equipmentHeight / 2,
wheelRadius,
wheelThickness,
wheelX: width / 2 - wheelThickness / 2,
wheelZ: Math.max(0, length / 2 - wheelRadius),
wheelConnectionY: suspensionRestLength + wheelRadius - originHeight,
suspensionRestLength,
originHeight,
};
}
function createBox(name: string, scale: Vec3, material: StandardMaterial): Entity {
const entity = new Entity(name);
entity.addComponent("render", { type: "box", castShadows: false, receiveShadows: false });
entity.setLocalScale(scale);
applyMaterial(entity, material);
return entity;
}
function applyMaterial(entity: Entity, material: StandardMaterial): void {
for (const meshInstance of entity.render?.meshInstances ?? []) meshInstance.material = material;
}
function createMaterial(diffuse: Color, emissive: Color): StandardMaterial {
const material = new StandardMaterial();
material.diffuse = diffuse;
material.emissive = emissive;
material.metalness = 0.15;
material.gloss = 0.32;
material.update();
return material;
}
function readThemeAccent(): Color {
const raw = getComputedStyle(document.documentElement).getPropertyValue("--nodedc-accent-rgb");
const channels = raw.trim().split(/[\s,]+/).map(Number);
if (channels.length < 3 || channels.some((value) => !Number.isFinite(value))) {
return new Color(0.22, 0.72, 0.38);
}
return new Color(channels[0] / 255, channels[1] / 255, channels[2] / 255);
}
function isTextEntry(target: EventTarget | null): boolean {
return target instanceof HTMLInputElement || target instanceof HTMLTextAreaElement
|| target instanceof HTMLSelectElement || target instanceof HTMLButtonElement
|| (target instanceof HTMLElement && target.isContentEditable);
}
function clamp(value: number, min: number, max: number): number { return Math.max(min, Math.min(max, value)); }
function approach(current: number, target: number, maximumDelta: number): number {
if (current < target) return Math.min(target, current + maximumDelta);
if (current > target) return Math.max(target, current - maximumDelta);
return target;
}
function approachAngle(current: number, target: number, maximumDelta: number): number {
const delta = ((target - current + Math.PI) % (Math.PI * 2) + Math.PI * 2) % (Math.PI * 2) - Math.PI;
return current + clamp(delta, -maximumDelta, maximumDelta);
}
function runCleanup(label: string, cleanup: () => void): void {
try {
cleanup();
} catch (error) {
console.warn(`[Simulation UGV] Cleanup failed: ${label}`, error);
}
}
function nextAnimationFrame(): Promise<void> { return new Promise((resolve) => requestAnimationFrame(() => resolve())); }
@@ -0,0 +1,191 @@
import {
Button,
Icon,
RangeControl,
Switch,
TextField,
} from "@nodedc/ui-react";
import {
SIMULATION_UGV_EXACT_VALUE_LIMITS,
type SimulationUgvPreset,
} from "../../core/simulation/projects";
export type SimulationUgvPresetSaveState = "idle" | "saving" | "saved" | "failed";
export function SimulationUgvSettingsPanel({
value,
disabled,
saveState,
onChange,
onSave,
}: {
value: SimulationUgvPreset;
disabled: boolean;
saveState: SimulationUgvPresetSaveState;
onChange: (preset: SimulationUgvPreset) => void;
onSave: () => void;
}) {
const dimensions = value.dimensionsMeters;
const updateDimensions = (
patch: Partial<SimulationUgvPreset["dimensionsMeters"]>,
) => {
const next = { ...dimensions, ...patch };
next.groundClearance = Math.max(
SIMULATION_UGV_EXACT_VALUE_LIMITS.groundClearance.min,
Math.min(next.groundClearance, roundToHundredth(next.height - 0.05)),
);
onChange({ ...value, dimensionsMeters: next });
};
return (
<section className="simulation-viewport__settings-group simulation-ugv-settings">
<div className="simulation-viewport__settings-group-head">
<strong>Физика UGV</strong>
<span>Дифференциальный привод</span>
</div>
<p>
A/D без W/S разворачивают UGV вокруг собственного центра. Скорость и
динамика применяются сразу. Мышь вращает камеру вокруг машины, колесо
меняет дистанцию; после паузы камера плавно возвращается назад. Ползунок
работает в штатном диапазоне, точное значение можно ввести вручную.
</p>
<TextField
label="Название пресета"
value={value.presetName}
maxLength={80}
disabled={disabled}
spellCheck={false}
onChange={(event) => onChange({ ...value, presetName: event.currentTarget.value })}
/>
<RangeControl
label="Масса конструкции"
value={value.massKg}
min={10}
max={500}
exactValueBounds={SIMULATION_UGV_EXACT_VALUE_LIMITS.massKg}
step={5}
disabled={disabled}
formatValue={(mass) => `${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);
}}
/>
);
}
@@ -42,12 +42,24 @@ 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 { fetchVegetationShadowResult } from "./vegetationShadow";
export type AdvancedLaboratoryWorkId =
| "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"
@@ -90,9 +102,15 @@ export interface AdvancedLaboratoryIndexItem {
}
const WORK_IDS: readonly AdvancedLaboratoryWorkId[] = [
"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",
@@ -130,9 +148,15 @@ const WORK_IDS: readonly AdvancedLaboratoryWorkId[] = [
];
const RESULT_PREFIX: Readonly<Record<AdvancedLaboratoryWorkId, string>> = {
"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",
@@ -177,10 +201,16 @@ export function isAdvancedLaboratoryWorkId(
export function emptyAdvancedLaboratoryResults(): AdvancedLaboratoryResults {
return {
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,
@@ -305,9 +335,15 @@ export function advancedLaboratoryResultAvailable(
workId: AdvancedLaboratoryWorkId,
results: AdvancedLaboratoryResults,
): boolean {
return workId === "m48-object-centric-quality" ? results.m48 !== null
return 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
@@ -357,15 +393,33 @@ export async function fetchAdvancedLaboratoryResult(
} = {},
): Promise<AdvancedLaboratoryResults> {
const results = emptyAdvancedLaboratoryResults();
if (workId === "m48-object-centric-quality") {
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.");
@@ -36,13 +36,25 @@ 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 {
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;
@@ -967,10 +967,11 @@ export async function fetchAdvancedLaboratoryResults({
const e39 = settledCatalogValue(settled[7]);
const e40 = settledCatalogValue(settled[8]);
return {
m47Graph: null, m48: null, m48SmallStatic: null, m48s: null, m4Threat: null,
l3: null, l31: null,
l32: null,
l33: 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,
@@ -0,0 +1,248 @@
import type { LaboratoryFetch } from "./advancedResults";
import type { M48Authority } from "./m48ObjectCentricQuality";
const RESULT_ID = /^m48-static-occupancy-qualification-[a-f0-9]{64}$/;
const M47_RESULT_ID = /^m47-reference-graph-lab-[a-f0-9]{64}$/;
const M48R1_RESULT_ID = /^m48-small-static-passage-regression-[a-f0-9]{64}$/;
const ANCHOR_ID = /^anchor-[a-f0-9]{24}$/;
export interface M48StaticOccupancyMetrics {
operatorStaticAnchorCount: number;
baselineQualifiedCount: number;
candidateQualifiedCount: number;
unresolvedUnknownCount: number;
criticalNearAnchorCount: number;
criticalNearBaselineRecall: number;
criticalNearCandidateRecall: number;
approachAnchorCount: number;
approachBaselineRecall: number;
approachCandidateRecall: number;
canonicalEngineeringAnchorCount: number;
canonicalEngineeringRecall: number;
falseFreeCount: number;
}
export interface M48StaticOccupancyQualificationResult {
resultId: string;
referenceGraphLabResultId: string;
smallStaticResultId: string;
createdAtUtc: string;
runLabel: "M4.8R2";
pipelineId: "m4-current-rolling-plus-step-static-occupancy/v1";
experimentId: "m48-static-occupancy-qualification/v1";
accepted: boolean;
metrics: M48StaticOccupancyMetrics;
gates: {
criticalNearCandidateRecall: boolean;
approachCandidateRecall: boolean;
canonicalEngineeringRecall: boolean;
zeroFalseFree: boolean;
independentTruthAvailable: false;
};
decision: {
state: "accepted-bounded-static-occupancy-qualification" | "partial-static-occupancy-qualification";
criticalNearCandidateReadyForShadow: boolean;
productionAccepted: false;
summary: string;
nextAction: string;
};
authority: M48Authority;
}
export interface M48StaticOccupancyCase {
anchorId: string;
clipId: string;
sequence: number;
extentXyxy: readonly [number, number, number, number];
distanceM: number;
distanceBand: "critical-near" | "approach" | "outside-qualified-bands";
baselineQualified: boolean;
candidateQualified: boolean;
outcome: "candidate-qualified" | "unresolved-unknown-never-free";
graphMatched: boolean;
}
export class M48StaticOccupancyContractError extends Error {}
function objectValue(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new M48StaticOccupancyContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function text(value: unknown, label: string): string {
if (typeof value !== "string" || !value.trim()) {
throw new M48StaticOccupancyContractError(`${label}: ожидалась строка.`);
}
return value;
}
function numberValue(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value)) {
throw new M48StaticOccupancyContractError(`${label}: ожидалось число.`);
}
return value;
}
function integer(value: unknown, label: string): number {
const parsed = numberValue(value, label);
if (!Number.isInteger(parsed) || parsed < 0) {
throw new M48StaticOccupancyContractError(`${label}: ожидалось целое число.`);
}
return parsed;
}
function bool(value: unknown, label: string): boolean {
if (typeof value !== "boolean") {
throw new M48StaticOccupancyContractError(`${label}: ожидался флаг.`);
}
return value;
}
function exact(value: unknown, expected: string | boolean, label: string): void {
if (value !== expected) throw new M48StaticOccupancyContractError(`${label}: нарушен контракт.`);
}
function member<T extends string>(value: unknown, allowed: readonly T[], label: string): T {
const parsed = text(value, label);
if (!allowed.includes(parsed as T)) {
throw new M48StaticOccupancyContractError(`${label}: недопустимое значение.`);
}
return parsed as T;
}
function extent(value: unknown): readonly [number, number, number, number] {
if (!Array.isArray(value) || value.length !== 4 || value.some((item) => typeof item !== "number" || !Number.isFinite(item))) {
throw new M48StaticOccupancyContractError("M4.8R2.case.extent: нарушен контракт.");
}
const result = value as number[];
if (result.some((item) => item < 0 || item > 1) || result[0]! >= result[2]! || result[1]! >= result[3]!) {
throw new M48StaticOccupancyContractError("M4.8R2.case.extent: нарушена геометрия.");
}
return result as unknown as readonly [number, number, number, number];
}
function authority(value: unknown): M48Authority {
const row = objectValue(value, "M4.8R2.authority");
exact(row.mode, "replay-simulated", "M4.8R2.authority.mode");
exact(row.physical_live, false, "M4.8R2.authority.physical_live");
exact(row.commands_enabled, false, "M4.8R2.authority.commands_enabled");
exact(row.actuation_allowed, false, "M4.8R2.authority.actuation_allowed");
exact(row.navigation_or_safety_accepted, false, "M4.8R2.authority.navigation_or_safety_accepted");
return { mode: "replay-simulated", physicalLive: false, commandsEnabled: false, actuationAllowed: false, navigationOrSafetyAccepted: false };
}
function metrics(value: unknown): M48StaticOccupancyMetrics {
const row = objectValue(value, "M4.8R2.metrics");
return {
operatorStaticAnchorCount: integer(row.operator_static_anchor_count, "operator_static_anchor_count"),
baselineQualifiedCount: integer(row.baseline_qualified_count, "baseline_qualified_count"),
candidateQualifiedCount: integer(row.candidate_qualified_count, "candidate_qualified_count"),
unresolvedUnknownCount: integer(row.unresolved_unknown_count, "unresolved_unknown_count"),
criticalNearAnchorCount: integer(row.critical_near_anchor_count, "critical_near_anchor_count"),
criticalNearBaselineRecall: numberValue(row.critical_near_baseline_recall, "critical_near_baseline_recall"),
criticalNearCandidateRecall: numberValue(row.critical_near_candidate_recall, "critical_near_candidate_recall"),
approachAnchorCount: integer(row.approach_anchor_count, "approach_anchor_count"),
approachBaselineRecall: numberValue(row.approach_baseline_recall, "approach_baseline_recall"),
approachCandidateRecall: numberValue(row.approach_candidate_recall, "approach_candidate_recall"),
canonicalEngineeringAnchorCount: integer(row.canonical_engineering_anchor_count, "canonical_engineering_anchor_count"),
canonicalEngineeringRecall: numberValue(row.canonical_engineering_recall, "canonical_engineering_recall"),
falseFreeCount: integer(row.false_free_count, "false_free_count"),
};
}
export async function fetchM48StaticOccupancyQualification(
resultId: string,
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<M48StaticOccupancyQualificationResult> {
if (!RESULT_ID.test(resultId)) throw new M48StaticOccupancyContractError("M4.8R2 identity недопустима.");
const response = await fetcher(`/api/v1/laboratory/m48/regressions/static-occupancy/${encodeURIComponent(resultId)}`, { method: "GET", headers: { Accept: "application/json" }, signal });
if (!response.ok) throw new M48StaticOccupancyContractError(`M4.8R2 недоступен: HTTP ${response.status}.`);
const payload = objectValue(await response.json(), "M4.8R2");
exact(payload.schema_version, "missioncore.m48-static-occupancy-qualification-result-view/v1", "M4.8R2.schema_version");
const m47 = text(payload.reference_graph_lab_result_id, "M4.8R2.reference_graph_lab_result_id");
const m48r1 = text(payload.small_static_result_id, "M4.8R2.small_static_result_id");
if (!M47_RESULT_ID.test(m47) || !M48R1_RESULT_ID.test(m48r1)) throw new M48StaticOccupancyContractError("M4.8R2 source identity нарушена.");
exact(payload.run_label, "M4.8R2", "M4.8R2.run_label");
exact(payload.pipeline_id, "m4-current-rolling-plus-step-static-occupancy/v1", "M4.8R2.pipeline_id");
exact(payload.experiment_id, "m48-static-occupancy-qualification/v1", "M4.8R2.experiment_id");
exact(payload.ground_truth, false, "M4.8R2.ground_truth");
exact(payload.independent_truth, false, "M4.8R2.independent_truth");
const gates = objectValue(payload.gates, "M4.8R2.gates");
const decision = objectValue(payload.decision, "M4.8R2.decision");
exact(decision.production_accepted, false, "M4.8R2.decision.production_accepted");
return {
resultId,
referenceGraphLabResultId: m47,
smallStaticResultId: m48r1,
createdAtUtc: text(payload.created_at_utc, "M4.8R2.created_at_utc"),
runLabel: "M4.8R2",
pipelineId: "m4-current-rolling-plus-step-static-occupancy/v1",
experimentId: "m48-static-occupancy-qualification/v1",
accepted: bool(payload.accepted, "M4.8R2.accepted"),
metrics: metrics(payload.metrics),
gates: {
criticalNearCandidateRecall: bool(gates.critical_near_candidate_recall, "critical_near_candidate_recall"),
approachCandidateRecall: bool(gates.approach_candidate_recall, "approach_candidate_recall"),
canonicalEngineeringRecall: bool(gates.canonical_engineering_recall, "canonical_engineering_recall"),
zeroFalseFree: bool(gates.zero_false_free, "zero_false_free"),
independentTruthAvailable: false,
},
decision: {
state: member(
decision.state,
[
"accepted-bounded-static-occupancy-qualification",
"partial-static-occupancy-qualification",
] as const,
"M4.8R2.decision.state",
),
criticalNearCandidateReadyForShadow: bool(decision.critical_near_candidate_ready_for_shadow, "critical_near_candidate_ready_for_shadow"),
productionAccepted: false,
summary: text(decision.summary, "M4.8R2.decision.summary"),
nextAction: text(decision.next_action, "M4.8R2.decision.next_action"),
},
authority: authority(payload.authority),
};
}
export async function fetchM48StaticOccupancyCases(
resultId: string,
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<readonly M48StaticOccupancyCase[]> {
if (!RESULT_ID.test(resultId)) throw new M48StaticOccupancyContractError("M4.8R2 identity недопустима.");
const response = await fetcher(`/api/v1/laboratory/m48/regressions/static-occupancy/${encodeURIComponent(resultId)}/cases`, { method: "GET", headers: { Accept: "application/json" }, signal });
if (!response.ok) throw new M48StaticOccupancyContractError(`M4.8R2 cases недоступны: HTTP ${response.status}.`);
const payload = objectValue(await response.json(), "M4.8R2 cases");
exact(payload.schema_version, "missioncore.m48-static-occupancy-case-catalog/v1", "M4.8R2 cases.schema_version");
if (!Array.isArray(payload.cases) || payload.cases.length !== integer(payload.case_count, "M4.8R2.case_count")) throw new M48StaticOccupancyContractError("M4.8R2 cases: размер изменился.");
return payload.cases.map((value, index) => {
const row = objectValue(value, `M4.8R2.case[${index}]`);
const anchorId = text(row.anchor_id, "anchor_id");
if (!ANCHOR_ID.test(anchorId)) throw new M48StaticOccupancyContractError("M4.8R2 anchor identity нарушена.");
const graph = objectValue(row.accepted_graph, "accepted_graph");
const band = member(
row.distance_band,
["critical-near", "approach", "outside-qualified-bands"] as const,
"distance_band",
);
const outcome = member(
row.outcome,
["candidate-qualified", "unresolved-unknown-never-free"] as const,
"outcome",
);
return {
anchorId,
clipId: text(row.clip_id, "clip_id"),
sequence: integer(row.sequence, "sequence"),
extentXyxy: extent(row.extent_xyxy),
distanceM: numberValue(row.distance_m, "distance_m"),
distanceBand: band,
baselineQualified: bool(row.baseline_qualified, "baseline_qualified"),
candidateQualified: bool(row.candidate_qualified, "candidate_qualified"),
outcome,
graphMatched: bool(graph.matched, "accepted_graph.matched"),
};
});
}
@@ -0,0 +1,343 @@
import type { LaboratoryFetch } from "./advancedResults";
import type { M48Authority } from "./m48ObjectCentricQuality";
const RESULT_ID = /^m48r3-static-occupancy-shadow-[a-f0-9]{64}$/;
interface M48R3WorkerPerformance {
admittedFrames: number;
deliveredFrames: number;
fps: number;
worldP95Ms: number;
worldP99Ms: number;
geometryP95Ms: number;
geometryP99Ms: number;
}
export interface M48R3StaticOccupancyShadowResult {
resultId: string;
createdAtUtc: string;
accepted: boolean;
profile: {
id: string;
sha256: string;
minimumPoints: number;
};
metrics: {
frames: { expected: number; baselineDelivered: number; candidateDelivered: number };
performance: {
baseline: M48R3WorkerPerformance;
candidate: M48R3WorkerPerformance;
fpsRegressionFraction: number;
worldStateP95DeltaMs: number;
};
occupancy: {
baselineCellTotal: number;
candidateCellTotal: number;
addedCellTotal: number;
lostCellTotal: number;
baselineComponentTotal: number;
candidateComponentTotal: number;
meanCellGrowthFraction: number;
meanComponentGrowthFraction: number;
maximumAddedCellsPerFrame: number;
maximumCandidateComponentsPerFrame: number;
};
provider: {
additiveObservationCount: number;
additiveVoxelCount: number;
framesWithAdditions: number;
additiveMeanMsPerFrame: number;
peakTemporalComponents: number;
peakRollingCells: number;
};
anchors: {
count: number;
criticalNearCount: number;
criticalNearRecall: number;
matchedCount: number;
canonicalEngineeringRecall: number;
separation: readonly {
displayFrame: number;
expectedMinimumComponents: number;
observedComponents: number;
passed: boolean;
interpretation: string;
}[];
};
capacityDropCount: number;
falseFreeCount: number;
};
gates: Readonly<Record<string, boolean>>;
decision: {
state: "accepted-bounded-worker-shadow" | "rejected-bounded-worker-shadow";
candidateAccepted: boolean;
productionAccepted: false;
nextAction: string;
};
limitations: readonly string[];
authority: M48Authority;
}
export interface M48R3StaticOccupancyCase {
anchorId: string;
displayFrame: number;
sourceSequence: number;
extentXyxy: readonly [number, number, number, number];
distanceBand: "critical-near" | "approach" | "outside-qualified-bands";
componentCount: number;
matched: boolean;
}
export class M48R3StaticOccupancyContractError extends Error {}
function objectValue(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new M48R3StaticOccupancyContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function text(value: unknown, label: string): string {
if (typeof value !== "string" || !value.trim()) {
throw new M48R3StaticOccupancyContractError(`${label}: ожидалась строка.`);
}
return value;
}
function numberValue(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value)) {
throw new M48R3StaticOccupancyContractError(`${label}: ожидалось число.`);
}
return value;
}
function integer(value: unknown, label: string): number {
const parsed = numberValue(value, label);
if (!Number.isSafeInteger(parsed) || parsed < 0) {
throw new M48R3StaticOccupancyContractError(`${label}: ожидалось целое число.`);
}
return parsed;
}
function bool(value: unknown, label: string): boolean {
if (typeof value !== "boolean") {
throw new M48R3StaticOccupancyContractError(`${label}: ожидался флаг.`);
}
return value;
}
function exact(value: unknown, expected: string | boolean, label: string): void {
if (value !== expected) {
throw new M48R3StaticOccupancyContractError(`${label}: нарушен контракт.`);
}
}
function sha256(value: unknown, label: string): string {
const parsed = text(value, label);
if (!/^[a-f0-9]{64}$/.test(parsed)) {
throw new M48R3StaticOccupancyContractError(`${label}: неверный SHA-256.`);
}
return parsed;
}
function extent(value: unknown): readonly [number, number, number, number] {
if (!Array.isArray(value) || value.length !== 4) {
throw new M48R3StaticOccupancyContractError("M4.8R3 extent: нарушен контракт.");
}
const parsed = value.map((item) => numberValue(item, "M4.8R3 extent"));
return [parsed[0]!, parsed[1]!, parsed[2]!, parsed[3]!];
}
function authority(value: unknown): M48Authority {
const row = objectValue(value, "M4.8R3 authority");
exact(row.mode, "replay-simulated", "M4.8R3 authority.mode");
exact(row.physical_live, false, "M4.8R3 authority.physical_live");
exact(row.commands_enabled, false, "M4.8R3 authority.commands_enabled");
exact(row.actuation_allowed, false, "M4.8R3 authority.actuation_allowed");
exact(
row.navigation_or_safety_accepted,
false,
"M4.8R3 authority.navigation_or_safety_accepted",
);
return {
mode: "replay-simulated",
physicalLive: false,
commandsEnabled: false,
actuationAllowed: false,
navigationOrSafetyAccepted: false,
};
}
function workerPerformance(value: unknown, label: string): M48R3WorkerPerformance {
const row = objectValue(value, label);
return {
admittedFrames: integer(row.admitted_frames, `${label}.admitted_frames`),
deliveredFrames: integer(row.delivered_frames, `${label}.delivered_frames`),
fps: numberValue(row.fps, `${label}.fps`),
worldP95Ms: numberValue(row.world_p95_ms, `${label}.world_p95_ms`),
worldP99Ms: numberValue(row.world_p99_ms, `${label}.world_p99_ms`),
geometryP95Ms: numberValue(row.geometry_p95_ms, `${label}.geometry_p95_ms`),
geometryP99Ms: numberValue(row.geometry_p99_ms, `${label}.geometry_p99_ms`),
};
}
export async function fetchM48R3StaticOccupancyShadow(
resultId: string,
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<M48R3StaticOccupancyShadowResult> {
if (!RESULT_ID.test(resultId)) {
throw new M48R3StaticOccupancyContractError("M4.8R3 identity недопустима.");
}
const response = await fetcher(
`/api/v1/laboratory/m48r3/static-occupancy/${encodeURIComponent(resultId)}`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) {
throw new M48R3StaticOccupancyContractError(`M4.8R3 недоступен: HTTP ${response.status}.`);
}
const payload = objectValue(await response.json(), "M4.8R3");
exact(
payload.schema_version,
"missioncore.m48r3-static-occupancy-shadow-view/v1",
"M4.8R3 schema",
);
exact(payload.result_id, resultId, "M4.8R3 result");
exact(payload.ground_truth, false, "M4.8R3 ground truth");
const profile = objectValue(payload.profile, "M4.8R3 profile");
const componentization = objectValue(profile.componentization, "M4.8R3 componentization");
const metrics = objectValue(payload.metrics, "M4.8R3 metrics");
const frames = objectValue(metrics.frames, "M4.8R3 frames");
const performance = objectValue(metrics.performance, "M4.8R3 performance");
const occupancy = objectValue(metrics.occupancy, "M4.8R3 occupancy");
const provider = objectValue(metrics.provider, "M4.8R3 provider");
const anchors = objectValue(metrics.assisted_anchors, "M4.8R3 anchors");
if (!Array.isArray(anchors.separation)) {
throw new M48R3StaticOccupancyContractError("M4.8R3 separation: ожидался массив.");
}
const gates = objectValue(payload.gates, "M4.8R3 gates");
const parsedGates = Object.fromEntries(
Object.entries(gates).map(([key, value]) => [key, bool(value, `M4.8R3 gate ${key}`)]),
);
const decision = objectValue(payload.decision, "M4.8R3 decision");
const state = text(decision.state, "M4.8R3 decision.state");
if (state !== "accepted-bounded-worker-shadow" && state !== "rejected-bounded-worker-shadow") {
throw new M48R3StaticOccupancyContractError("M4.8R3 decision.state: неизвестное состояние.");
}
exact(decision.production_accepted, false, "M4.8R3 production acceptance");
if (!Array.isArray(payload.limitations)) {
throw new M48R3StaticOccupancyContractError("M4.8R3 limitations: ожидался массив.");
}
return {
resultId,
createdAtUtc: text(payload.created_at_utc, "M4.8R3 created"),
accepted: bool(payload.accepted, "M4.8R3 accepted"),
profile: {
id: text(profile.id, "M4.8R3 profile id"),
sha256: sha256(profile.sha256, "M4.8R3 profile sha"),
minimumPoints: integer(componentization.minimum_points, "M4.8R3 minimum points"),
},
metrics: {
frames: {
expected: integer(frames.expected, "M4.8R3 expected frames"),
baselineDelivered: integer(frames.baseline_delivered, "M4.8R3 baseline frames"),
candidateDelivered: integer(frames.candidate_delivered, "M4.8R3 candidate frames"),
},
performance: {
baseline: workerPerformance(performance.baseline, "M4.8R3 baseline"),
candidate: workerPerformance(performance.candidate, "M4.8R3 candidate"),
fpsRegressionFraction: numberValue(performance.fps_regression_fraction, "M4.8R3 FPS regression"),
worldStateP95DeltaMs: numberValue(performance.world_state_p95_delta_ms, "M4.8R3 p95 delta"),
},
occupancy: {
baselineCellTotal: integer(occupancy.baseline_cell_total, "M4.8R3 baseline cells"),
candidateCellTotal: integer(occupancy.candidate_cell_total, "M4.8R3 candidate cells"),
addedCellTotal: integer(occupancy.added_cell_total, "M4.8R3 added cells"),
lostCellTotal: integer(occupancy.lost_cell_total, "M4.8R3 lost cells"),
baselineComponentTotal: integer(occupancy.baseline_component_total, "M4.8R3 baseline components"),
candidateComponentTotal: integer(occupancy.candidate_component_total, "M4.8R3 candidate components"),
meanCellGrowthFraction: numberValue(occupancy.mean_cell_growth_fraction, "M4.8R3 cell growth"),
meanComponentGrowthFraction: numberValue(occupancy.mean_component_growth_fraction, "M4.8R3 component growth"),
maximumAddedCellsPerFrame: integer(occupancy.maximum_added_cells_per_frame, "M4.8R3 maximum added cells"),
maximumCandidateComponentsPerFrame: integer(occupancy.maximum_candidate_components_per_frame, "M4.8R3 maximum components"),
},
provider: {
additiveObservationCount: integer(provider.additive_observation_count, "M4.8R3 observations"),
additiveVoxelCount: integer(provider.additive_voxel_count, "M4.8R3 voxels"),
framesWithAdditions: integer(provider.frames_with_additions, "M4.8R3 added frames"),
additiveMeanMsPerFrame: numberValue(provider.additive_mean_ms_per_frame, "M4.8R3 additive mean"),
peakTemporalComponents: integer(provider.peak_temporal_components, "M4.8R3 temporal peak"),
peakRollingCells: integer(provider.peak_rolling_cells, "M4.8R3 rolling peak"),
},
anchors: {
count: integer(anchors.count, "M4.8R3 anchor count"),
criticalNearCount: integer(anchors.critical_near_count, "M4.8R3 near anchors"),
criticalNearRecall: numberValue(anchors.critical_near_recall, "M4.8R3 near recall"),
matchedCount: integer(anchors.matched_count, "M4.8R3 matched anchors"),
canonicalEngineeringRecall: numberValue(anchors.canonical_engineering_recall, "M4.8R3 canonical recall"),
separation: anchors.separation.map((value, index) => {
const row = objectValue(value, `M4.8R3 separation ${index}`);
return {
displayFrame: integer(row.display_frame, "M4.8R3 separation frame"),
expectedMinimumComponents: integer(row.expected_minimum_components, "M4.8R3 expected components"),
observedComponents: integer(row.observed_components, "M4.8R3 observed components"),
passed: bool(row.passed, "M4.8R3 separation passed"),
interpretation: text(row.interpretation, "M4.8R3 separation interpretation"),
};
}),
},
capacityDropCount: integer(metrics.capacity_drop_count, "M4.8R3 capacity drops"),
falseFreeCount: integer(metrics.false_free_count, "M4.8R3 false free"),
},
gates: parsedGates,
decision: {
state,
candidateAccepted: bool(decision.candidate_accepted, "M4.8R3 candidate accepted"),
productionAccepted: false,
nextAction: text(decision.next_action, "M4.8R3 next action"),
},
limitations: payload.limitations.map((value, index) => text(value, `M4.8R3 limitation ${index}`)),
authority: authority(payload.authority),
};
}
export async function fetchM48R3StaticOccupancyCases(
resultId: string,
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<readonly M48R3StaticOccupancyCase[]> {
if (!RESULT_ID.test(resultId)) {
throw new M48R3StaticOccupancyContractError("M4.8R3 identity недопустима.");
}
const response = await fetcher(
`/api/v1/laboratory/m48r3/static-occupancy/${encodeURIComponent(resultId)}/cases`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) {
throw new M48R3StaticOccupancyContractError(`M4.8R3 cases недоступны: HTTP ${response.status}.`);
}
const payload = objectValue(await response.json(), "M4.8R3 cases");
exact(
payload.schema_version,
"missioncore.m48r3-static-occupancy-shadow-cases/v1",
"M4.8R3 cases schema",
);
exact(payload.result_id, resultId, "M4.8R3 cases result");
if (!Array.isArray(payload.cases) || payload.cases.length !== integer(payload.case_count, "M4.8R3 case count")) {
throw new M48R3StaticOccupancyContractError("M4.8R3 cases: нарушен размер.");
}
return payload.cases.map((value, index) => {
const row = objectValue(value, `M4.8R3 case ${index}`);
const distanceBand = text(row.distance_band, "M4.8R3 distance band");
if (distanceBand !== "critical-near" && distanceBand !== "approach" && distanceBand !== "outside-qualified-bands") {
throw new M48R3StaticOccupancyContractError("M4.8R3 distance band: неизвестное значение.");
}
return {
anchorId: text(row.anchor_id, "M4.8R3 anchor id"),
displayFrame: integer(row.display_frame, "M4.8R3 display frame"),
sourceSequence: integer(row.source_sequence, "M4.8R3 source sequence"),
extentXyxy: extent(row.extent_xyxy),
distanceBand,
componentCount: integer(row.component_count, "M4.8R3 component count"),
matched: bool(row.matched, "M4.8R3 matched"),
};
});
}
@@ -0,0 +1,618 @@
export interface M48TLaboratoryMethod {
completeness: "complete";
executionClass: "hybrid";
pipelineId: string;
components: readonly {
kind: "source" | "model" | "algorithm" | "runtime" | "tool";
name: string;
version: string;
role: string;
identitySha256: string;
}[];
}
export interface M48TReviewCase {
caseId: string;
imageId: number;
imageUrl: string;
byteLength: number;
sha256: string;
}
export interface M48TLegacyRiskQualityResult {
variant: "legacy-coco-quality";
resultId: string;
createdAtUtc: string;
source: {
quality: {
datasetId: "coco-2017-val";
riskImages: number;
truthInstances: number;
independentHumanAnnotations: true;
ravnovesGroundTruth: false;
};
temporal: {
sourceId: "RAVNOVES00";
frames: number;
publications: number;
independentSemanticTruthAvailable: false;
};
};
candidate: {
providerId: string;
modelId: "rf_detr_large:1";
minimumScore: 0.25;
};
execution: {
durationSeconds: number;
effectiveImagesPerSecond: number;
imageP95Ms: number;
inferenceP95Ms: number;
timingIsAdmissionEvidence: false;
};
quality: {
microPrecision: number;
microRecall: number;
mediumLargeRecall: number;
emptyRiskImageFraction: number;
families: Readonly<Record<"person" | "animal" | "light-road-user" | "vehicle", number>>;
};
counts: {
truth: number;
predictions: number;
truePositive: number;
falsePositive: number;
falseNegative: number;
};
failures: Readonly<Record<string, number>>;
temporal: {
rawClassSwitches: number;
stableClassSwitches: number;
rawFamilySwitches: number;
stableFamilySwitches: number;
suppressedClassSwitches: number;
suppressedFamilySwitches: number;
selectedPublications: number;
semanticObservations: number;
peakActiveComponents: number;
maximumActiveComponents: number;
};
acceptance: {
qualityPassed: false;
failedQualityGates: readonly [
"minimum-micro-precision",
"minimum-family-recall:vehicle",
];
temporalInvariantPassed: true;
};
review: {
truthColor: "green";
predictionColor: "yellow";
cases: readonly M48TReviewCase[];
};
method: M48TLaboratoryMethod;
limitations: readonly string[];
}
export type M48QRiskFamily = "person" | "animal" | "light-road-user" | "vehicle";
export interface M48QNativeProposal {
proposalId: string;
className: string;
riskFamily: M48QRiskFamily;
score: number;
boxXyxy: readonly [number, number, number, number];
}
export interface M48QNativeReviewCase {
caseId: string;
sequence: number;
frameId: string;
evidenceTimeNs: number;
imageUrl: string;
width: 800;
height: 600;
byteLength: number;
sha256: string;
selectionBuckets: readonly string[];
nativeDetectionCount: number;
legacyDetectionCount: number;
matchedDetectionCount: number;
proposals: readonly M48QNativeProposal[];
}
export interface M48QNativeRiskQualityResult {
variant: "native-risk-review";
resultId: string;
createdAtUtc: string;
source: {
sourceId: "RAVNOVES00";
frameCount: 4489;
width: 800;
height: 600;
geometricResampling: false;
};
candidate: {
providerId: string;
modelId: "rf_detr_large_native_kb4:1";
preprocessId: "raw-kb4-uint8-fused-mask-rgb-pad8-imagenet-trt/v0";
minimumScore: 0.25;
};
execution: {
effectiveWorldStateFps: number;
worldStateCompletionP95Ms: number;
detectorTotalP95Ms: number;
gpuUtilizationP95Percent: number;
gpuMemoryMaximumMib: number;
additionalInferencePasses: 0;
};
selection: {
caseCount: 24;
minimumSequenceSeparation: number;
bucketCoverage: Readonly<Record<string, number>>;
classCounts: Readonly<Record<string, number>>;
};
runtime: {
deliveryRatio: number;
integratedGatePassed: true;
operatingTargetGatePassed: true;
};
parity: {
precision: number;
recall: number;
meanIou: number;
};
acceptance: {
reviewReady: true;
independentQualityEvaluated: false;
semanticCandidateAccepted: false;
};
review: {
cases: readonly M48QNativeReviewCase[];
};
method: M48TLaboratoryMethod;
limitations: readonly string[];
}
export type M48TRiskQualityResult =
| M48TLegacyRiskQualityResult
| M48QNativeRiskQualityResult;
type LaboratoryFetch = (input: RequestInfo | URL, init?: RequestInit) => Promise<Response>;
export class M48TContractError extends Error {}
function object(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new M48TContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function array(value: unknown, label: string): readonly unknown[] {
if (!Array.isArray(value)) throw new M48TContractError(`${label}: ожидался массив.`);
return value;
}
function text(value: unknown, label: string): string {
if (typeof value !== "string" || !value.trim()) {
throw new M48TContractError(`${label}: ожидалась строка.`);
}
return value;
}
function number(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value) || value < 0) {
throw new M48TContractError(`${label}: ожидалось неотрицательное число.`);
}
return value;
}
function integer(value: unknown, label: string): number {
const parsed = number(value, label);
if (!Number.isSafeInteger(parsed)) {
throw new M48TContractError(`${label}: ожидалось целое число.`);
}
return parsed;
}
function exact<T extends string | number | boolean>(
value: unknown,
expected: T,
label: string,
): T {
if (value !== expected) throw new M48TContractError(`${label}: нарушен контракт.`);
return expected;
}
function sha(value: unknown, label: string): string {
const parsed = text(value, label);
if (!/^[a-f0-9]{64}$/.test(parsed)) {
throw new M48TContractError(`${label}: нарушена SHA-256 идентичность.`);
}
return parsed;
}
function method(value: unknown): M48TLaboratoryMethod {
const raw = object(value, "M4.8T method");
exact(raw.schema_version, "missioncore.laboratory-method/v1", "M4.8T method schema");
exact(raw.completeness, "complete", "M4.8T method completeness");
exact(raw.execution_class, "hybrid", "M4.8T method execution");
const allowedKinds = new Set(["source", "model", "algorithm", "runtime", "tool"]);
return {
completeness: "complete",
executionClass: "hybrid",
pipelineId: text(raw.pipeline_id, "M4.8T pipeline"),
components: array(raw.components, "M4.8T components").map((value) => {
const component = object(value, "M4.8T component");
const kind = text(component.kind, "M4.8T component kind");
if (!allowedKinds.has(kind)) throw new M48TContractError("M4.8T component kind: неизвестное значение.");
return {
kind: kind as "source" | "model" | "algorithm" | "runtime" | "tool",
name: text(component.name, "M4.8T component name"),
version: text(component.version, "M4.8T component version"),
role: text(component.role, "M4.8T component role"),
identitySha256: sha(component.identity_sha256, "M4.8T component identity"),
};
}),
};
}
function parseLegacyResult(value: unknown, expectedResultId: string): M48TLegacyRiskQualityResult {
const raw = object(value, "M4.8T result");
exact(raw.schema_version, "missioncore.m48t-risk-quality-temporal-view/v1", "M4.8T schema");
exact(raw.variant, "legacy-coco-quality", "M4.8T variant");
exact(raw.result_id, expectedResultId, "M4.8T identity");
exact(raw.status, "complete-quality-gate-failed-temporal-invariant-passed", "M4.8T status");
exact(raw.access, "read-only", "M4.8T access");
exact(raw.ground_truth, false, "M4.8T ground truth");
const source = object(raw.source, "M4.8T source");
const qualitySource = object(source.quality, "M4.8T quality source");
const temporalSource = object(source.temporal, "M4.8T temporal source");
const configuration = object(raw.configuration, "M4.8T configuration");
const candidate = object(configuration.candidate, "M4.8T candidate");
const execution = object(raw.execution, "M4.8T execution");
const imageTiming = object(execution.image_timing_ms, "M4.8T image timing");
const inferenceTiming = object(execution.triton_inference_ms, "M4.8T inference timing");
const metrics = object(raw.metrics, "M4.8T metrics");
const quality = object(metrics.quality, "M4.8T quality metrics");
const families = object(quality.families, "M4.8T family metrics");
const familyRecall = (name: "person" | "animal" | "light-road-user" | "vehicle") =>
number(object(families[name], `M4.8T ${name}`).family_recall, `M4.8T ${name} recall`);
const counts = object(metrics.counts, "M4.8T counts");
const failures = object(metrics.failure_buckets, "M4.8T failures");
const temporal = object(metrics.temporal, "M4.8T temporal metrics");
const snapshot = object(temporal.snapshot, "M4.8T temporal snapshot");
const acceptance = object(raw.acceptance, "M4.8T acceptance");
const qualityGate = object(acceptance.quality, "M4.8T quality gate");
const temporalGate = object(acceptance.temporal_invariant, "M4.8T temporal gate");
const failed = array(qualityGate.failed, "M4.8T failed gates").map((item) => text(item, "M4.8T failed gate"));
if (failed.length !== 2 || failed[0] !== "minimum-micro-precision" || failed[1] !== "minimum-family-recall:vehicle") {
throw new M48TContractError("M4.8T failed gates: изменён зафиксированный результат.");
}
exact(qualityGate.passed, false, "M4.8T quality gate");
exact(temporalGate.passed, true, "M4.8T temporal invariant");
exact(temporalGate.semantic_quality_accepted, false, "M4.8T temporal semantic acceptance");
const review = object(raw.review, "M4.8T review");
const legend = object(review.legend, "M4.8T review legend");
exact(legend.ground_truth, "green", "M4.8T truth legend");
exact(legend.rf_detr_prediction, "yellow", "M4.8T prediction legend");
const cases = array(review.cases, "M4.8T review cases").map((value) => {
const item = object(value, "M4.8T review case");
const caseId = text(item.case_id, "M4.8T case id");
if (!/^[0-9]{12}$/.test(caseId)) throw new M48TContractError("M4.8T case identity нарушена.");
exact(item.media_type, "image/jpeg", "M4.8T case media");
return {
caseId,
imageId: integer(item.image_id, "M4.8T image id"),
imageUrl: text(item.image_url, "M4.8T image URL"),
byteLength: integer(item.byte_length, "M4.8T image bytes"),
sha256: sha(item.sha256, "M4.8T image SHA"),
};
});
if (cases.length !== 16 || new Set(cases.map(({ caseId }) => caseId)).size !== 16) {
throw new M48TContractError("M4.8T review catalog: нарушен размер.");
}
const parsedFailures: Record<string, number> = {};
for (const [key, count] of Object.entries(failures)) parsedFailures[key] = integer(count, `M4.8T failure ${key}`);
const temporalConfiguration = object(configuration.temporal, "M4.8T temporal configuration");
return {
variant: "legacy-coco-quality",
resultId: expectedResultId,
createdAtUtc: text(raw.created_at_utc, "M4.8T created at"),
source: {
quality: {
datasetId: exact(qualitySource.dataset_id, "coco-2017-val", "M4.8T dataset"),
riskImages: integer(qualitySource.risk_images, "M4.8T risk images"),
truthInstances: integer(qualitySource.truth_instances, "M4.8T truth instances"),
independentHumanAnnotations: exact(qualitySource.independent_human_annotations, true, "M4.8T independent truth"),
ravnovesGroundTruth: exact(qualitySource.ravnoves_ground_truth, false, "M4.8T RAVNOVES truth"),
},
temporal: {
sourceId: exact(temporalSource.source_id, "RAVNOVES00", "M4.8T temporal source"),
frames: integer(temporalSource.frames, "M4.8T temporal frames"),
publications: integer(temporalSource.publications, "M4.8T temporal publications"),
independentSemanticTruthAvailable: exact(temporalSource.independent_semantic_truth_available, false, "M4.8T temporal truth"),
},
},
candidate: {
providerId: text(candidate.provider_id, "M4.8T provider"),
modelId: exact(candidate.model_id, "rf_detr_large:1", "M4.8T model"),
minimumScore: exact(candidate.minimum_score, 0.25, "M4.8T threshold"),
},
execution: {
durationSeconds: number(execution.duration_seconds, "M4.8T duration"),
effectiveImagesPerSecond: number(execution.effective_images_per_second, "M4.8T throughput"),
imageP95Ms: number(imageTiming.p95, "M4.8T image p95"),
inferenceP95Ms: number(inferenceTiming.p95, "M4.8T inference p95"),
timingIsAdmissionEvidence: exact(execution.timing_is_admission_evidence, false, "M4.8T timing authority"),
},
quality: {
microPrecision: number(quality.micro_precision, "M4.8T precision"),
microRecall: number(quality.micro_recall, "M4.8T recall"),
mediumLargeRecall: number(quality.medium_large_recall, "M4.8T medium-large recall"),
emptyRiskImageFraction: number(quality.empty_prediction_risk_image_fraction, "M4.8T empty fraction"),
families: {
person: familyRecall("person"),
animal: familyRecall("animal"),
"light-road-user": familyRecall("light-road-user"),
vehicle: familyRecall("vehicle"),
},
},
counts: {
truth: integer(qualitySource.truth_instances, "M4.8T truth count"),
predictions: integer(counts.predictions, "M4.8T predictions"),
truePositive: integer(counts.true_positive, "M4.8T TP"),
falsePositive: integer(counts.false_positive, "M4.8T FP"),
falseNegative: integer(counts.false_negative, "M4.8T FN"),
},
failures: parsedFailures,
temporal: {
rawClassSwitches: integer(temporal.raw_class_switches, "M4.8T raw class switches"),
stableClassSwitches: integer(temporal.stable_class_switches, "M4.8T stable class switches"),
rawFamilySwitches: integer(temporal.raw_family_switches, "M4.8T raw family switches"),
stableFamilySwitches: integer(temporal.stable_family_switches, "M4.8T stable family switches"),
suppressedClassSwitches: integer(temporal.suppressed_or_deferred_class_switches, "M4.8T suppressed class switches"),
suppressedFamilySwitches: integer(temporal.suppressed_or_deferred_family_switches, "M4.8T suppressed family switches"),
selectedPublications: integer(temporal.selected_publications, "M4.8T selected publications"),
semanticObservations: integer(temporal.semantic_current_observations, "M4.8T semantic observations"),
peakActiveComponents: integer(snapshot.peak_active_components, "M4.8T active peak"),
maximumActiveComponents: integer(temporalConfiguration.maximum_active_components, "M4.8T active bound"),
},
acceptance: {
qualityPassed: false,
failedQualityGates: ["minimum-micro-precision", "minimum-family-recall:vehicle"],
temporalInvariantPassed: true,
},
review: { truthColor: "green", predictionColor: "yellow", cases },
method: method(raw.method),
limitations: array(raw.limitations, "M4.8T limitations").map((item) => text(item, "M4.8T limitation")),
};
}
function numberRecord(value: unknown, label: string): Readonly<Record<string, number>> {
const raw = object(value, label);
const parsed: Record<string, number> = {};
for (const [key, item] of Object.entries(raw)) parsed[key] = integer(item, `${label}.${key}`);
return parsed;
}
function nativeRiskFamily(value: unknown): M48QRiskFamily {
const parsed = text(value, "M4.8Q risk family");
if (!["person", "animal", "light-road-user", "vehicle"].includes(parsed)) {
throw new M48TContractError("M4.8Q risk family: неизвестное значение.");
}
return parsed as M48QRiskFamily;
}
function nativeProposal(value: unknown): M48QNativeProposal {
const raw = object(value, "M4.8Q proposal");
const coordinates = array(raw.box_xyxy, "M4.8Q proposal box").map((item) =>
number(item, "M4.8Q proposal coordinate")
);
if (
coordinates.length !== 4
|| coordinates[0] >= coordinates[2]
|| coordinates[1] >= coordinates[3]
|| coordinates[2] > 800
|| coordinates[3] > 600
) {
throw new M48TContractError("M4.8Q proposal box: нарушена raw-raster геометрия.");
}
const score = number(raw.score, "M4.8Q proposal score");
if (score < 0.25 || score > 1) throw new M48TContractError("M4.8Q proposal score: нарушен threshold.");
return {
proposalId: text(raw.proposal_id, "M4.8Q proposal id"),
className: text(raw.class_name, "M4.8Q proposal class"),
riskFamily: nativeRiskFamily(raw.risk_family),
score,
boxXyxy: coordinates as [number, number, number, number],
};
}
function parseNativeResult(value: unknown, expectedResultId: string): M48QNativeRiskQualityResult {
const raw = object(value, "M4.8Q result");
exact(raw.schema_version, "missioncore.m48q-native-risk-quality-view/v1", "M4.8Q schema");
exact(raw.variant, "native-risk-review", "M4.8Q variant");
exact(raw.result_id, expectedResultId, "M4.8Q identity");
exact(raw.status, "complete-review-ready-quality-not-adjudicated", "M4.8Q status");
exact(raw.access, "read-only", "M4.8Q access");
exact(raw.ground_truth, false, "M4.8Q ground truth");
const source = object(raw.source, "M4.8Q source");
exact(source.source_id, "RAVNOVES00", "M4.8Q source id");
exact(source.frame_count, 4489, "M4.8Q source frames");
exact(source.raster_width, 800, "M4.8Q source width");
exact(source.raster_height, 600, "M4.8Q source height");
exact(source.geometric_resampling, false, "M4.8Q source resampling");
exact(source.rectification, false, "M4.8Q source rectification");
exact(source.warp, false, "M4.8Q source warp");
const configuration = object(raw.configuration, "M4.8Q configuration");
const candidate = object(configuration.candidate, "M4.8Q candidate");
const execution = object(raw.execution, "M4.8Q execution");
const metrics = object(raw.metrics, "M4.8Q metrics");
const selection = object(metrics.selection, "M4.8Q selection");
const runtime = object(metrics.runtime, "M4.8Q runtime");
const parity = object(metrics.native_tensor_parity, "M4.8Q parity");
const acceptance = object(raw.acceptance, "M4.8Q acceptance");
exact(acceptance.review_ready, true, "M4.8Q review readiness");
exact(acceptance.integrated_runtime_gate_passed, true, "M4.8Q runtime gate");
exact(acceptance.independent_quality_evaluated, false, "M4.8Q quality state");
exact(acceptance.semantic_candidate_accepted, false, "M4.8Q candidate state");
exact(selection.case_count, 24, "M4.8Q selected cases");
const review = object(raw.review, "M4.8Q review");
const raster = object(review.source_raster, "M4.8Q review raster");
exact(raster.width, 800, "M4.8Q review width");
exact(raster.height, 600, "M4.8Q review height");
const overlay = object(review.overlay, "M4.8Q overlay");
exact(overlay.client_rendered, true, "M4.8Q client overlay");
exact(overlay.toggleable, true, "M4.8Q overlay toggle");
const cases = array(review.cases, "M4.8Q review cases").map((value) => {
const item = object(value, "M4.8Q review case");
const caseId = text(item.case_id, "M4.8Q case id");
if (!/^[0-9]{6}$/.test(caseId)) throw new M48TContractError("M4.8Q case identity нарушена.");
const sequence = integer(item.sequence, "M4.8Q case sequence");
exact(caseId, sequence.toString().padStart(6, "0"), "M4.8Q case/sequence identity");
exact(item.frame_id, `frame-${caseId}`, "M4.8Q frame identity");
exact(item.media_type, "image/jpeg", "M4.8Q case media");
exact(item.width, 800, "M4.8Q case width");
exact(item.height, 600, "M4.8Q case height");
exact(item.geometric_resampling, false, "M4.8Q case resampling");
const comparison = object(item.comparison, "M4.8Q comparison");
const proposals = array(item.proposals, "M4.8Q proposals").map(nativeProposal);
if (!proposals.length) throw new M48TContractError("M4.8Q proposals: пустой review case.");
return {
caseId,
sequence,
frameId: `frame-${caseId}`,
evidenceTimeNs: integer(item.evidence_time_ns, "M4.8Q evidence time"),
imageUrl: text(item.image_url, "M4.8Q image URL"),
width: 800 as const,
height: 600 as const,
byteLength: integer(item.byte_length, "M4.8Q image bytes"),
sha256: sha(item.sha256, "M4.8Q image SHA"),
selectionBuckets: array(item.selection_buckets, "M4.8Q selection buckets").map((bucket) =>
text(bucket, "M4.8Q selection bucket")
),
nativeDetectionCount: integer(comparison.native_detection_count, "M4.8Q native count"),
legacyDetectionCount: integer(comparison.legacy_704_detection_count, "M4.8Q legacy count"),
matchedDetectionCount: integer(
comparison.matched_detection_count_iou_at_least_0_5,
"M4.8Q matched count",
),
proposals,
};
});
if (cases.length !== 24 || new Set(cases.map(({ caseId }) => caseId)).size !== 24) {
throw new M48TContractError("M4.8Q review catalog: нарушен размер.");
}
return {
variant: "native-risk-review",
resultId: expectedResultId,
createdAtUtc: text(raw.created_at_utc, "M4.8Q created at"),
source: {
sourceId: "RAVNOVES00",
frameCount: 4489,
width: 800,
height: 600,
geometricResampling: false,
},
candidate: {
providerId: text(candidate.provider_id, "M4.8Q provider"),
modelId: exact(candidate.model_id, "rf_detr_large_native_kb4:1", "M4.8Q model"),
preprocessId: exact(
candidate.preprocess_id,
"raw-kb4-uint8-fused-mask-rgb-pad8-imagenet-trt/v0",
"M4.8Q preprocess",
),
minimumScore: exact(candidate.minimum_score, 0.25, "M4.8Q threshold"),
},
execution: {
effectiveWorldStateFps: number(execution.effective_world_state_fps, "M4.8Q FPS"),
worldStateCompletionP95Ms: number(
execution.world_state_completion_p95_ms,
"M4.8Q world-state p95",
),
detectorTotalP95Ms: number(execution.detector_total_p95_ms, "M4.8Q detector p95"),
gpuUtilizationP95Percent: number(
execution.gpu_utilization_p95_percent,
"M4.8Q GPU p95",
),
gpuMemoryMaximumMib: number(
execution.gpu_memory_used_maximum_mib,
"M4.8Q VRAM maximum",
),
additionalInferencePasses: exact(
execution.additional_inference_passes,
0,
"M4.8Q inference passes",
),
},
selection: {
caseCount: 24,
minimumSequenceSeparation: integer(
selection.minimum_sequence_separation,
"M4.8Q case separation",
),
bucketCoverage: numberRecord(selection.selected_bucket_coverage, "M4.8Q bucket coverage"),
classCounts: numberRecord(selection.selected_class_counts, "M4.8Q class counts"),
},
runtime: {
deliveryRatio: number(runtime.delivery_ratio, "M4.8Q delivery ratio"),
integratedGatePassed: exact(
runtime.integrated_runtime_gate_passed,
true,
"M4.8Q integrated gate",
),
operatingTargetGatePassed: exact(
runtime.operating_target_gate_passed,
true,
"M4.8Q target gate",
),
},
parity: {
precision: number(parity.risk_detection_precision, "M4.8Q parity precision"),
recall: number(parity.risk_detection_recall, "M4.8Q parity recall"),
meanIou: number(parity.matched_mean_iou, "M4.8Q parity IoU"),
},
acceptance: {
reviewReady: true,
independentQualityEvaluated: false,
semanticCandidateAccepted: false,
},
review: { cases },
method: method(raw.method),
limitations: array(raw.limitations, "M4.8Q limitations").map((item) =>
text(item, "M4.8Q limitation")
),
};
}
export async function fetchM48TRiskQualityResult(
resultId: string,
{
fetcher = fetch,
signal,
}: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<M48TRiskQualityResult> {
if (!/^(?:m48t-risk-quality-temporal-lab|m48q-native-risk-quality-lab)-[a-f0-9]{64}$/.test(resultId)) {
throw new M48TContractError("M4.8T result identity недопустима.");
}
const response = await fetcher(`/api/v1/laboratory/m48t/risk-quality/results/${resultId}`, {
method: "GET",
headers: { Accept: "application/json" },
signal,
});
if (!response.ok) throw new M48TContractError(`M4.8T недоступен: HTTP ${response.status}.`);
const payload: unknown = await response.json();
const raw = object(payload, "M4.8T/M4.8Q result");
return raw.schema_version === "missioncore.m48q-native-risk-quality-view/v1"
? parseNativeResult(payload, resultId)
: parseLegacyResult(payload, resultId);
}
@@ -0,0 +1,671 @@
import type { LaboratoryFetch } from "./advancedResults";
const RESULT_ID = /^m49-physical-safety-playback-[a-f0-9]{64}$/;
const SOURCE_RESULT_ID = /^m49-tgs-full-shadow-[a-f0-9]{64}$/;
const SCHEMA = "missioncore.m49-physical-safety-playback/v1";
const CHUNK_MAGIC = "MCPSCH01";
const CHUNK_HEADER_BYTES = 28;
const ENDPOINT_ROOT = "/api/v1/laboratory/m49/physical-safety-playback";
export interface M49PhysicalSafetyPlaybackFrameMetadata {
sourceSequence: number;
sourceFrameIndex: number;
sessionSeconds: number;
sampleAvailable: boolean;
metrics: Readonly<Record<string, number>>;
}
interface ArtifactDescriptor {
url: string;
mediaType: string;
byteLength: number;
sha256: string;
}
interface ChunkDescriptor extends ArtifactDescriptor {
index: number;
start: number;
count: number;
headerBytes: 28;
format: "mcpsch01-states-u8-aligned-z-bounds-f32le";
}
export interface M49PhysicalSafetyPlaybackManifest {
resultId: string;
createdAtUtc: string;
sourceResultId: string;
frameCount: number;
cellCount: number;
cellSizeM: number;
radiusM: number;
sourcePaceHz: number;
stateCodes: Readonly<Record<string, number>>;
chunkFrameCount: 32;
startupPrebufferChunkCount: 2;
residentChunkCountMax: 3;
forwardPrefetchChunkCount: 1;
centers: ArtifactDescriptor;
frames: ArtifactDescriptor;
chunks: readonly ChunkDescriptor[];
}
interface ResidentChunk {
descriptor: ChunkDescriptor;
states: Uint8Array;
zBoundsM: Float32Array;
byteLength: number;
}
export interface M49PhysicalSafetyPlaybackFrame {
metadata: M49PhysicalSafetyPlaybackFrameMetadata;
centersXyM: Float32Array;
states: Uint8Array;
zBoundsM: Float32Array;
cellSizeM: number;
radiusM: number;
}
export interface M49PhysicalSafetyPlaybackProgress {
phase: "manifest" | "static" | "prebuffer" | "ready" | "seek";
residentChunkIndexes: readonly number[];
loadedBytes: number;
}
export class M49PhysicalSafetyPlaybackContractError extends Error {}
function objectValue(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new M49PhysicalSafetyPlaybackContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function text(value: unknown, label: string): string {
if (typeof value !== "string" || !value.trim()) {
throw new M49PhysicalSafetyPlaybackContractError(`${label}: ожидалась строка.`);
}
return value;
}
function finiteNumber(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value)) {
throw new M49PhysicalSafetyPlaybackContractError(`${label}: ожидалось число.`);
}
return value;
}
function integer(value: unknown, label: string): number {
const parsed = finiteNumber(value, label);
if (!Number.isSafeInteger(parsed) || parsed < 0) {
throw new M49PhysicalSafetyPlaybackContractError(`${label}: ожидалось целое число.`);
}
return parsed;
}
function booleanValue(value: unknown, label: string): boolean {
if (typeof value !== "boolean") {
throw new M49PhysicalSafetyPlaybackContractError(`${label}: ожидался boolean.`);
}
return value;
}
function exact<T extends string | number | boolean>(value: unknown, expected: T, label: string): T {
if (value !== expected) {
throw new M49PhysicalSafetyPlaybackContractError(`${label}: нарушен контракт.`);
}
return expected;
}
function sha256(value: unknown, label: string): string {
const parsed = text(value, label);
if (!/^[a-f0-9]{64}$/.test(parsed)) {
throw new M49PhysicalSafetyPlaybackContractError(`${label}: SHA-256 недопустим.`);
}
return parsed;
}
function localUrl(value: unknown, expected: string, label: string): string {
const parsed = text(value, label);
if (parsed !== expected || parsed.includes("worker")) {
throw new M49PhysicalSafetyPlaybackContractError(`${label}: разрешён только sealed local API.`);
}
return parsed;
}
function descriptor(
value: unknown,
expectedUrl: string,
label: string,
): ArtifactDescriptor {
const row = objectValue(value, label);
return {
url: localUrl(row.url, expectedUrl, `${label}.url`),
mediaType: text(row.media_type, `${label}.media_type`),
byteLength: integer(row.byte_length, `${label}.byte_length`),
sha256: sha256(row.sha256, `${label}.sha256`),
};
}
async function sha256Hex(buffer: ArrayBuffer): Promise<string> {
if (!globalThis.crypto?.subtle) {
throw new M49PhysicalSafetyPlaybackContractError(
"Браузер не поддерживает проверку playback SHA-256.",
);
}
const digest = await globalThis.crypto.subtle.digest("SHA-256", buffer);
return [...new Uint8Array(digest)]
.map((value) => value.toString(16).padStart(2, "0"))
.join("");
}
async function fetchVerified(
artifact: ArtifactDescriptor,
fetcher: LaboratoryFetch,
signal?: AbortSignal,
): Promise<ArrayBuffer> {
const response = await fetcher(artifact.url, {
method: "GET",
headers: { Accept: artifact.mediaType },
signal,
});
if (!response.ok) {
throw new M49PhysicalSafetyPlaybackContractError(
`Sealed local playback недоступен: HTTP ${response.status}.`,
);
}
const buffer = await response.arrayBuffer();
if (buffer.byteLength !== artifact.byteLength) {
throw new M49PhysicalSafetyPlaybackContractError(
"Sealed local playback: получен неверный размер.",
);
}
if (await sha256Hex(buffer) !== artifact.sha256) {
throw new M49PhysicalSafetyPlaybackContractError(
"Sealed local playback: SHA-256 не совпал.",
);
}
return buffer;
}
function parseStateCodes(value: unknown): Readonly<Record<string, number>> {
const row = objectValue(value, "M49 physical-safety state codes");
const parsed: Record<string, number> = {};
for (const [name, code] of Object.entries(row)) {
const stateCode = integer(code, `M49 physical-safety state code ${name}`);
if (stateCode > 255) {
throw new M49PhysicalSafetyPlaybackContractError("M49 state code превышает uint8.");
}
parsed[name] = stateCode;
}
if (parsed.UNOBSERVED !== 0 || !Object.keys(parsed).length) {
throw new M49PhysicalSafetyPlaybackContractError("M49 UNOBSERVED state изменился.");
}
return parsed;
}
async function fetchManifest(
resultId: string,
fetcher: LaboratoryFetch,
signal?: AbortSignal,
): Promise<M49PhysicalSafetyPlaybackManifest> {
if (!RESULT_ID.test(resultId)) {
throw new M49PhysicalSafetyPlaybackContractError("M49 physical-safety identity недопустима.");
}
const base = `${ENDPOINT_ROOT}/${encodeURIComponent(resultId)}`;
const response = await fetcher(`${base}/manifest`, {
method: "GET",
headers: { Accept: "application/json" },
signal,
});
if (!response.ok) {
throw new M49PhysicalSafetyPlaybackContractError(
`M49 physical-safety manifest недоступен: HTTP ${response.status}.`,
);
}
const payload = objectValue(await response.json(), "M49 physical-safety manifest");
exact(payload.schema_version, SCHEMA, "M49 physical-safety schema");
exact(payload.result_id, resultId, "M49 physical-safety result");
exact(payload.access, "read-only-sealed-local", "M49 physical-safety access");
const identity = objectValue(payload.identity, "M49 physical-safety identity");
const execution = objectValue(payload.execution, "M49 physical-safety execution");
exact(execution.execution_class, "local-sequential-offline", "M49 execution class");
exact(execution.worker_role, "realtime-only", "M49 worker role");
exact(execution.worker_runtime_dependency, false, "M49 worker dependency");
exact(execution.worker_requests_required, 0, "M49 worker requests");
const authority = objectValue(payload.authority, "M49 physical-safety authority");
exact(authority.commands_enabled, false, "M49 commands");
exact(authority.navigation_or_safety_accepted, false, "M49 safety authority");
exact(authority.actuation_accepted, false, "M49 actuation authority");
const playback = objectValue(payload.playback, "M49 physical-safety playback");
exact(playback.coordinate_frame, "map-gravity-local", "M49 coordinate frame");
const frameCount = integer(playback.frame_count, "M49 frame count");
const cellCount = integer(playback.cell_count, "M49 cell count");
if (!frameCount || !cellCount) {
throw new M49PhysicalSafetyPlaybackContractError("M49 playback не содержит evidence.");
}
const chunkFrameCount = exact(
integer(playback.chunk_frame_count, "M49 chunk frame count"),
32,
"M49 chunk frame count",
);
const startupPrebufferChunkCount = exact(
integer(playback.startup_prebuffer_chunk_count, "M49 startup prebuffer"),
2,
"M49 startup prebuffer",
);
const residentChunkCountMax = exact(
integer(playback.resident_chunk_count_max, "M49 resident chunks"),
3,
"M49 resident chunks",
);
const forwardPrefetchChunkCount = exact(
integer(playback.forward_prefetch_chunk_count, "M49 forward prefetch"),
1,
"M49 forward prefetch",
);
const centers = descriptor(playback.centers, `${base}/tracks/centers`, "M49 centers");
const centerRow = objectValue(playback.centers, "M49 centers");
exact(centerRow.dtype, "<f4", "M49 centers dtype");
if (!Array.isArray(centerRow.shape)
|| centerRow.shape.length !== 2
|| centerRow.shape[0] !== cellCount
|| centerRow.shape[1] !== 2
|| centers.byteLength !== cellCount * 2 * 4) {
throw new M49PhysicalSafetyPlaybackContractError("M49 centers shape изменилась.");
}
const frames = descriptor(playback.frames, `${base}/tracks/frames`, "M49 frames");
const frameRow = objectValue(playback.frames, "M49 frames");
exact(frameRow.dtype, "ndjson", "M49 frames dtype");
if (!Array.isArray(frameRow.shape)
|| frameRow.shape.length !== 1
|| frameRow.shape[0] !== frameCount) {
throw new M49PhysicalSafetyPlaybackContractError("M49 frames shape изменилась.");
}
if (!Array.isArray(playback.chunks)) {
throw new M49PhysicalSafetyPlaybackContractError("M49 chunk catalog отсутствует.");
}
const expectedChunkCount = Math.ceil(frameCount / chunkFrameCount);
if (playback.chunks.length !== expectedChunkCount) {
throw new M49PhysicalSafetyPlaybackContractError("M49 chunk accounting нарушен.");
}
const chunks = playback.chunks.map((value, index): ChunkDescriptor => {
const row = objectValue(value, `M49 chunk ${index}`);
const common = descriptor(value, `${base}/chunks/${index}`, `M49 chunk ${index}`);
const start = index * chunkFrameCount;
const count = Math.min(chunkFrameCount, frameCount - start);
exact(integer(row.index, `M49 chunk ${index}.index`), index, `M49 chunk ${index}.index`);
exact(integer(row.start, `M49 chunk ${index}.start`), start, `M49 chunk ${index}.start`);
exact(integer(row.count, `M49 chunk ${index}.count`), count, `M49 chunk ${index}.count`);
return {
...common,
index,
start,
count,
headerBytes: exact(
integer(row.header_bytes, `M49 chunk ${index}.header`),
CHUNK_HEADER_BYTES,
`M49 chunk ${index}.header`,
),
format: exact(
row.format,
"mcpsch01-states-u8-aligned-z-bounds-f32le",
`M49 chunk ${index}.format`,
),
};
});
return {
resultId,
createdAtUtc: text(payload.created_at_utc, "M49 physical-safety created"),
sourceResultId: text(identity.source_result_id, "M49 physical-safety source"),
frameCount,
cellCount,
cellSizeM: finiteNumber(playback.cell_size_m, "M49 cell size"),
radiusM: finiteNumber(playback.radius_m, "M49 radius"),
sourcePaceHz: finiteNumber(playback.source_pace_hz, "M49 source pace"),
stateCodes: parseStateCodes(playback.state_codes),
chunkFrameCount,
startupPrebufferChunkCount,
residentChunkCountMax,
forwardPrefetchChunkCount,
centers,
frames,
chunks,
};
}
export async function fetchM49PhysicalSafetyPlaybackIdForSource(
sourceResultId: string,
{
fetcher = fetch,
signal,
}: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<string | null> {
if (!SOURCE_RESULT_ID.test(sourceResultId)) {
throw new M49PhysicalSafetyPlaybackContractError("M49 source identity недопустима.");
}
const response = await fetcher(
`${ENDPOINT_ROOT}/results?limit=2&source_result_id=${encodeURIComponent(sourceResultId)}`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) {
throw new M49PhysicalSafetyPlaybackContractError(
`M49 physical-safety catalog недоступен: HTTP ${response.status}.`,
);
}
const payload = objectValue(await response.json(), "M49 physical-safety catalog");
exact(
payload.schema_version,
"missioncore.m49-physical-safety-playback-catalog/v1",
"M49 physical-safety catalog schema",
);
exact(payload.worker_runtime_dependency, false, "M49 physical-safety catalog worker");
exact(payload.access, "read-only-sealed-local", "M49 physical-safety catalog access");
if (!Array.isArray(payload.items)) {
throw new M49PhysicalSafetyPlaybackContractError("M49 physical-safety catalog изменился.");
}
if (!payload.items.length) return null;
if (payload.items.length !== 1) {
throw new M49PhysicalSafetyPlaybackContractError(
"M49 physical-safety source имеет несколько активных playback artifacts.",
);
}
const item = objectValue(payload.items[0], "M49 physical-safety catalog item");
exact(item.source_result_id, sourceResultId, "M49 physical-safety catalog source");
exact(item.worker_runtime_dependency, false, "M49 physical-safety item worker");
exact(item.navigation_or_safety_accepted, false, "M49 physical-safety item authority");
const resultId = text(item.result_id, "M49 physical-safety catalog result");
if (!RESULT_ID.test(resultId)) {
throw new M49PhysicalSafetyPlaybackContractError(
"M49 physical-safety catalog result недопустим.",
);
}
return resultId;
}
function parseFrames(
buffer: ArrayBuffer,
frameCount: number,
): readonly M49PhysicalSafetyPlaybackFrameMetadata[] {
const lines = new TextDecoder().decode(buffer).trim().split("\n");
if (lines.length !== frameCount) {
throw new M49PhysicalSafetyPlaybackContractError("M49 frame catalog изменил размер.");
}
return lines.map((line, sourceSequence) => {
const row = objectValue(JSON.parse(line), `M49 frame ${sourceSequence}`);
const metrics: Record<string, number> = {};
for (const [name, value] of Object.entries(row)) {
if (name.endsWith("_count") && typeof value === "number" && Number.isFinite(value)) {
metrics[name] = value;
}
}
return {
sourceSequence,
sourceFrameIndex: integer(row.source_frame_index, `M49 frame ${sourceSequence}.source`),
sessionSeconds: finiteNumber(row.session_seconds, `M49 frame ${sourceSequence}.time`),
sampleAvailable: booleanValue(
row.sample_available,
`M49 frame ${sourceSequence}.available`,
),
metrics,
};
});
}
function parseChunk(
buffer: ArrayBuffer,
descriptorValue: ChunkDescriptor,
cellCount: number,
frames: readonly M49PhysicalSafetyPlaybackFrameMetadata[],
admittedStateCodes: ReadonlySet<number>,
): ResidentChunk {
const bytes = new Uint8Array(buffer);
if (bytes.byteLength < CHUNK_HEADER_BYTES
|| new TextDecoder("latin1").decode(bytes.subarray(0, 8)) !== CHUNK_MAGIC) {
throw new M49PhysicalSafetyPlaybackContractError("M49 chunk signature изменилась.");
}
const view = new DataView(buffer);
const start = view.getUint32(8, true);
const count = view.getUint32(12, true);
const cells = view.getUint32(16, true);
const stateBytes = view.getUint32(20, true);
const zBytes = view.getUint32(24, true);
const expectedStateBytes = count * cellCount;
const expectedZBytes = count * cellCount * 2 * 4;
const zOffset = CHUNK_HEADER_BYTES + stateBytes
+ ((4 - ((CHUNK_HEADER_BYTES + stateBytes) % 4)) % 4);
if (start !== descriptorValue.start
|| count !== descriptorValue.count
|| cells !== cellCount
|| stateBytes !== expectedStateBytes
|| zBytes !== expectedZBytes
|| zOffset + zBytes !== bytes.byteLength) {
throw new M49PhysicalSafetyPlaybackContractError("M49 chunk layout изменился.");
}
const states = new Uint8Array(buffer, CHUNK_HEADER_BYTES, stateBytes);
const zBoundsM = new Float32Array(buffer, zOffset, count * cellCount * 2);
for (let localFrame = 0; localFrame < count; localFrame += 1) {
const stateStart = localFrame * cellCount;
const zStart = localFrame * cellCount * 2;
for (let cell = 0; cell < cellCount; cell += 1) {
const state = states[stateStart + cell];
if (!admittedStateCodes.has(state)) {
throw new M49PhysicalSafetyPlaybackContractError("M49 chunk содержит неизвестный state.");
}
if (!frames[start + localFrame].sampleAvailable
&& (state !== 0
|| Number.isFinite(zBoundsM[zStart + cell * 2])
|| Number.isFinite(zBoundsM[zStart + cell * 2 + 1]))) {
throw new M49PhysicalSafetyPlaybackContractError(
"M49 missing sample перестал быть fail-closed.",
);
}
}
}
return { descriptor: descriptorValue, states, zBoundsM, byteLength: buffer.byteLength };
}
export class M49PhysicalSafetyPlaybackBuffer {
readonly manifest: M49PhysicalSafetyPlaybackManifest;
readonly centersXyM: Float32Array;
readonly frames: readonly M49PhysicalSafetyPlaybackFrameMetadata[];
private readonly fetcher: LaboratoryFetch;
private readonly signal: AbortSignal | undefined;
private readonly onProgress: ((value: M49PhysicalSafetyPlaybackProgress) => void) | undefined;
private readonly chunks = new Map<number, ResidentChunk>();
private readonly pending = new Map<number, Promise<ResidentChunk>>();
private readonly admittedStateCodes: ReadonlySet<number>;
private staticBytes: number;
private preparedWindowKey: string | null = null;
private pendingPrepare: { key: string; promise: Promise<void> } | null = null;
private constructor(
manifest: M49PhysicalSafetyPlaybackManifest,
centersXyM: Float32Array,
frames: readonly M49PhysicalSafetyPlaybackFrameMetadata[],
fetcher: LaboratoryFetch,
signal: AbortSignal | undefined,
onProgress: ((value: M49PhysicalSafetyPlaybackProgress) => void) | undefined,
) {
this.manifest = manifest;
this.centersXyM = centersXyM;
this.frames = frames;
this.fetcher = fetcher;
this.signal = signal;
this.onProgress = onProgress;
this.admittedStateCodes = new Set(Object.values(manifest.stateCodes));
this.staticBytes = centersXyM.byteLength + manifest.frames.byteLength;
}
static async open(
resultId: string,
{
fetcher = fetch,
signal,
onProgress,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
onProgress?: (value: M49PhysicalSafetyPlaybackProgress) => void;
} = {},
): Promise<M49PhysicalSafetyPlaybackBuffer> {
onProgress?.({ phase: "manifest", residentChunkIndexes: [], loadedBytes: 0 });
const manifest = await fetchManifest(resultId, fetcher, signal);
const [centersBuffer, framesBuffer] = await Promise.all([
fetchVerified(manifest.centers, fetcher, signal),
fetchVerified(manifest.frames, fetcher, signal),
]);
onProgress?.({
phase: "static",
residentChunkIndexes: [],
loadedBytes: centersBuffer.byteLength + framesBuffer.byteLength,
});
const centersXyM = new Float32Array(centersBuffer);
const frames = parseFrames(framesBuffer, manifest.frameCount);
const playback = new M49PhysicalSafetyPlaybackBuffer(
manifest,
centersXyM,
frames,
fetcher,
signal,
onProgress,
);
const startupCount = Math.min(
manifest.startupPrebufferChunkCount,
manifest.chunks.length,
);
await Promise.all(Array.from(
{ length: startupCount },
(_, index) => playback.loadChunk(index, "prebuffer"),
));
playback.emit("ready");
return playback;
}
get residentChunkIndexes(): readonly number[] {
return [...this.chunks.keys()].sort((left, right) => left - right);
}
get residentByteLength(): number {
return this.staticBytes
+ [...this.chunks.values()].reduce((sum, chunk) => sum + chunk.byteLength, 0);
}
async prepare(sourceSequence: number): Promise<void> {
const chunkIndex = this.chunkIndex(sourceSequence);
const nextIndex = chunkIndex + this.manifest.forwardPrefetchChunkCount;
const indexes = [chunkIndex, nextIndex].filter(
(index) => index < this.manifest.chunks.length,
);
const key = indexes.join(":");
if (this.preparedWindowKey === key && indexes.every((index) => this.chunks.has(index))) {
return;
}
if (this.pendingPrepare?.key === key) return this.pendingPrepare.promise;
const promise = Promise.all(indexes.map((index) => this.loadChunk(index, "seek")))
.then(() => {
this.trim(new Set(indexes));
this.preparedWindowKey = key;
this.emit("seek");
})
.finally(() => {
if (this.pendingPrepare?.key === key) this.pendingPrepare = null;
});
this.pendingPrepare = { key, promise };
return promise;
}
async frame(sourceSequence: number): Promise<M49PhysicalSafetyPlaybackFrame> {
const chunkIndex = this.chunkIndex(sourceSequence);
const chunk = await this.loadChunk(chunkIndex, "seek");
const frame = this.frameFromChunk(sourceSequence, chunk);
const nextIndex = chunkIndex + this.manifest.forwardPrefetchChunkCount;
if (nextIndex < this.manifest.chunks.length && !this.chunks.has(nextIndex)) {
void this.loadChunk(nextIndex, "seek").catch(() => undefined);
}
return frame;
}
frameIfResident(sourceSequence: number): M49PhysicalSafetyPlaybackFrame | null {
const chunkIndex = this.chunkIndex(sourceSequence);
const chunk = this.chunks.get(chunkIndex);
return chunk ? this.frameFromChunk(sourceSequence, chunk) : null;
}
private frameFromChunk(
sourceSequence: number,
chunk: ResidentChunk,
): M49PhysicalSafetyPlaybackFrame {
const localFrame = sourceSequence - chunk.descriptor.start;
const stateOffset = localFrame * this.manifest.cellCount;
const zOffset = stateOffset * 2;
return {
metadata: this.frames[sourceSequence],
centersXyM: this.centersXyM,
states: chunk.states.subarray(stateOffset, stateOffset + this.manifest.cellCount),
zBoundsM: chunk.zBoundsM.subarray(zOffset, zOffset + this.manifest.cellCount * 2),
cellSizeM: this.manifest.cellSizeM,
radiusM: this.manifest.radiusM,
};
}
private chunkIndex(sourceSequence: number): number {
if (!Number.isSafeInteger(sourceSequence)
|| sourceSequence < 0
|| sourceSequence >= this.manifest.frameCount) {
throw new M49PhysicalSafetyPlaybackContractError("M49 source sequence недопустима.");
}
return Math.floor(sourceSequence / this.manifest.chunkFrameCount);
}
private async loadChunk(
index: number,
phase: "prebuffer" | "seek",
): Promise<ResidentChunk> {
const existing = this.chunks.get(index);
if (existing) {
this.chunks.delete(index);
this.chunks.set(index, existing);
return existing;
}
const inflight = this.pending.get(index);
if (inflight) return inflight;
const descriptorValue = this.manifest.chunks[index];
if (!descriptorValue) {
throw new M49PhysicalSafetyPlaybackContractError("M49 chunk отсутствует.");
}
const promise = fetchVerified(descriptorValue, this.fetcher, this.signal)
.then((buffer) => parseChunk(
buffer,
descriptorValue,
this.manifest.cellCount,
this.frames,
this.admittedStateCodes,
))
.then((chunk) => {
this.chunks.set(index, chunk);
this.trim(new Set([index]));
this.emit(phase);
return chunk;
})
.finally(() => this.pending.delete(index));
this.pending.set(index, promise);
return promise;
}
private trim(protectedIndexes: ReadonlySet<number>): void {
while (this.chunks.size > this.manifest.residentChunkCountMax) {
const removable = [...this.chunks.keys()].find((index) => !protectedIndexes.has(index));
if (removable === undefined) break;
this.chunks.delete(removable);
}
}
private emit(phase: M49PhysicalSafetyPlaybackProgress["phase"]): void {
this.onProgress?.({
phase,
residentChunkIndexes: this.residentChunkIndexes,
loadedBytes: this.residentByteLength,
});
}
}
@@ -0,0 +1,349 @@
import type { LaboratoryFetch } from "./advancedResults";
const RESULT_ID = /^m49-tgs-fail-closed-[a-f0-9]{64}$/;
export type M49TgsProfile = "current_increment" | "causal_rolling_1s";
export type M49TgsStateCode = 0 | 1 | 2 | 3;
export type M49TgsPointStateCode = 1 | 2 | 3;
export interface M49TgsAnchorSummary {
anchorFrameIndex: number;
slot: number;
pointCount: number;
groundPointCount: number;
nongroundPointCount: number;
rejectedPointCount: number;
groundCellCount: number;
nongroundCellCount: number;
rejectedCellCount: number;
unobservedCellCount: number;
allPointsAccounted: true;
}
export interface M49TgsFailClosedResult {
resultId: string;
createdAtUtc: string;
source: {
sourceId: "RAVNOVES00";
sourceSessionId: "20260720T065719Z_viewer_live";
sourcePackSha256: string;
linkedVisualResultId: string;
anchorFrameIndices: readonly number[];
};
configuration: {
profileId: string;
configSha256: string;
coordinateFrame: "map-gravity-local";
primaryProfile: "causal_rolling_1s";
cellSizeM: number;
radiusM: number;
};
execution: {
worker: "Worker 006";
device: "cpu";
gpuUsed: false;
wrapperElapsedSeconds: number;
};
metrics: {
anchorCount: number;
anchorProfileCount: number;
allEligiblePointsAccounted: true;
costmapCellCount: number;
processWallCurrentP50Ms: number;
processWallCurrentMaxMs: number;
processWallRollingP50Ms: number;
processWallRollingMaxMs: number;
processMaxRssKib: number;
primary: readonly M49TgsAnchorSummary[];
};
acceptance: {
representationComplete: true;
allPointsAccounted: true;
aosAbsent: true;
gpuAbsent: true;
visualQualityAccepted: false;
traversabilityAccepted: false;
};
decision: {
state: "visual-review-required";
candidateRetained: true;
nextAction: string;
};
limitations: readonly string[];
}
export interface M49TgsAnchorSpatial {
resultId: string;
anchorFrameIndex: number;
sourceSequence: number;
profile: M49TgsProfile;
coordinateFrame: "map-gravity-local";
pointsXyzM: readonly (readonly [number, number, number])[];
pointStates: readonly M49TgsPointStateCode[];
costmap: {
cellSizeM: number;
radiusM: number;
centersXyM: readonly (readonly [number, number])[];
states: readonly M49TgsStateCode[];
zBoundsM: readonly (readonly [number | null, number | null])[];
};
allPointsAccounted: true;
aosUsed: false;
}
export class M49TgsContractError extends Error {}
function objectValue(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new M49TgsContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function text(value: unknown, label: string): string {
if (typeof value !== "string" || !value.trim()) {
throw new M49TgsContractError(`${label}: ожидалась строка.`);
}
return value;
}
function exact<T extends string | boolean>(value: unknown, expected: T, label: string): T {
if (value !== expected) throw new M49TgsContractError(`${label}: нарушен контракт.`);
return expected;
}
function numberValue(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value)) {
throw new M49TgsContractError(`${label}: ожидалось число.`);
}
return value;
}
function integer(value: unknown, label: string): number {
const parsed = numberValue(value, label);
if (!Number.isSafeInteger(parsed) || parsed < 0) {
throw new M49TgsContractError(`${label}: ожидалось целое число.`);
}
return parsed;
}
function sha256(value: unknown, label: string): string {
const parsed = text(value, label);
if (!/^[a-f0-9]{64}$/.test(parsed)) {
throw new M49TgsContractError(`${label}: неверный SHA-256.`);
}
return parsed;
}
function resultId(value: unknown): string {
const parsed = text(value, "M49 result id");
if (!RESULT_ID.test(parsed)) throw new M49TgsContractError("M49 identity недопустима.");
return parsed;
}
function numbers(value: unknown, size: number, label: string): number[] {
if (!Array.isArray(value) || value.length !== size) {
throw new M49TgsContractError(`${label}: неверная размерность.`);
}
return value.map((item) => numberValue(item, label));
}
function anchor(value: unknown, label: string): M49TgsAnchorSummary {
const row = objectValue(value, label);
exact(row.profile_id, "causal_rolling_1s", `${label}.profile`);
exact(row.all_points_accounted, true, `${label}.accounting`);
const parsed: M49TgsAnchorSummary = {
anchorFrameIndex: integer(row.anchor_frame_index, `${label}.anchor`),
slot: integer(row.slot, `${label}.slot`),
pointCount: integer(row.point_count, `${label}.points`),
groundPointCount: integer(row.ground_point_count, `${label}.ground points`),
nongroundPointCount: integer(row.nonground_point_count, `${label}.nonground points`),
rejectedPointCount: integer(row.rejected_point_count, `${label}.rejected points`),
groundCellCount: integer(row.ground_cell_count, `${label}.ground cells`),
nongroundCellCount: integer(row.nonground_cell_count, `${label}.nonground cells`),
rejectedCellCount: integer(row.rejected_cell_count, `${label}.rejected cells`),
unobservedCellCount: integer(row.unobserved_cell_count, `${label}.unobserved cells`),
allPointsAccounted: true,
};
if (
parsed.groundPointCount + parsed.nongroundPointCount + parsed.rejectedPointCount
!== parsed.pointCount
|| parsed.groundCellCount + parsed.nongroundCellCount
+ parsed.rejectedCellCount + parsed.unobservedCellCount !== 2244
) {
throw new M49TgsContractError(`${label}: fail-closed accounting нарушен.`);
}
return parsed;
}
export async function fetchM49TgsFailClosedResult(
id: string,
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<M49TgsFailClosedResult> {
if (!RESULT_ID.test(id)) throw new M49TgsContractError("M49 identity недопустима.");
const response = await fetcher(
`/api/v1/laboratory/m49/tgs-fail-closed/${encodeURIComponent(id)}`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) throw new M49TgsContractError(`M49 TGS недоступен: HTTP ${response.status}.`);
const payload = objectValue(await response.json(), "M49 TGS");
exact(payload.schema_version, "missioncore.m49-tgs-fail-closed-view/v1", "M49 schema");
exact(payload.result_id, id, "M49 result");
exact(payload.ground_truth, false, "M49 ground truth");
exact(payload.access, "read-only", "M49 access");
const source = objectValue(payload.source, "M49 source");
const configuration = objectValue(payload.configuration, "M49 configuration");
const execution = objectValue(payload.execution, "M49 execution");
const metrics = objectValue(payload.metrics, "M49 metrics");
const acceptance = objectValue(payload.acceptance, "M49 acceptance");
const decision = objectValue(payload.decision, "M49 decision");
if (!Array.isArray(source.anchor_frame_indices) || !Array.isArray(metrics.primary)) {
throw new M49TgsContractError("M49 anchors: ожидался массив.");
}
if (!Array.isArray(payload.limitations)) {
throw new M49TgsContractError("M49 limitations: ожидался массив.");
}
const anchorFrameIndices = source.anchor_frame_indices.map(
(item, index) => integer(item, `M49 anchor ${index}`),
);
const primary = metrics.primary.map((item, index) => anchor(item, `M49 primary ${index}`));
if (
anchorFrameIndices.length !== 10
|| new Set(anchorFrameIndices).size !== 10
|| primary.length !== 10
|| integer(metrics.anchor_count, "M49 anchor count") !== 10
|| integer(metrics.anchor_profile_count, "M49 profile count") !== 20
|| integer(metrics.costmap_cell_count, "M49 costmap cells") !== 2244
|| primary.some((item, index) => item.anchorFrameIndex !== anchorFrameIndices[index])
) {
throw new M49TgsContractError("M49 anchor set или costmap contract нарушен.");
}
return {
resultId: resultId(payload.result_id),
createdAtUtc: text(payload.created_at_utc, "M49 created"),
source: {
sourceId: exact(source.source_id, "RAVNOVES00", "M49 source id"),
sourceSessionId: exact(
source.source_session_id,
"20260720T065719Z_viewer_live",
"M49 source session",
),
sourcePackSha256: sha256(source.source_pack_sha256, "M49 source pack"),
linkedVisualResultId: text(source.linked_visual_result_id, "M49 visual result"),
anchorFrameIndices,
},
configuration: {
profileId: text(configuration.profile_id, "M49 profile"),
configSha256: sha256(configuration.config_sha256, "M49 config"),
coordinateFrame: exact(configuration.coordinate_frame, "map-gravity-local", "M49 frame"),
primaryProfile: exact(configuration.primary_profile, "causal_rolling_1s", "M49 primary"),
cellSizeM: numberValue(configuration.cell_size_m, "M49 cell size"),
radiusM: numberValue(configuration.radius_m, "M49 radius"),
},
execution: {
worker: exact(execution.worker, "Worker 006", "M49 worker"),
device: exact(execution.device, "cpu", "M49 device"),
gpuUsed: exact(execution.gpu_used, false, "M49 GPU"),
wrapperElapsedSeconds: numberValue(execution.wrapper_elapsed_seconds, "M49 wall"),
},
metrics: {
anchorCount: 10,
anchorProfileCount: 20,
allEligiblePointsAccounted: exact(metrics.all_eligible_points_accounted, true, "M49 accounting"),
costmapCellCount: 2244,
processWallCurrentP50Ms: numberValue(metrics.process_wall_current_p50_ms, "M49 current p50"),
processWallCurrentMaxMs: numberValue(metrics.process_wall_current_max_ms, "M49 current max"),
processWallRollingP50Ms: numberValue(metrics.process_wall_rolling_p50_ms, "M49 rolling p50"),
processWallRollingMaxMs: numberValue(metrics.process_wall_rolling_max_ms, "M49 rolling max"),
processMaxRssKib: integer(metrics.process_max_rss_kib, "M49 RSS"),
primary,
},
acceptance: {
representationComplete: exact(acceptance.representation_complete, true, "M49 representation"),
allPointsAccounted: exact(acceptance.all_points_accounted, true, "M49 points"),
aosAbsent: exact(acceptance.aos_absent, true, "M49 AOS"),
gpuAbsent: exact(acceptance.gpu_absent, true, "M49 GPU absent"),
visualQualityAccepted: exact(acceptance.visual_quality_accepted, false, "M49 visual quality"),
traversabilityAccepted: exact(acceptance.traversability_accepted, false, "M49 traversability"),
},
decision: {
state: exact(decision.state, "visual-review-required", "M49 decision"),
candidateRetained: exact(decision.candidate_retained, true, "M49 retained"),
nextAction: text(decision.next_action, "M49 next action"),
},
limitations: payload.limitations.map((item, index) => text(item, `M49 limitation ${index}`)),
};
}
export async function fetchM49TgsAnchorSpatial(
id: string,
anchorFrameIndex: number,
profile: M49TgsProfile = "causal_rolling_1s",
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<M49TgsAnchorSpatial> {
if (!RESULT_ID.test(id) || !Number.isSafeInteger(anchorFrameIndex) || anchorFrameIndex < 0) {
throw new M49TgsContractError("M49 anchor identity недопустима.");
}
const response = await fetcher(
`/api/v1/laboratory/m49/tgs-fail-closed/${encodeURIComponent(id)}/anchors/${anchorFrameIndex}/spatial?profile=${encodeURIComponent(profile)}`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) throw new M49TgsContractError(`M49 anchor недоступен: HTTP ${response.status}.`);
const payload = objectValue(await response.json(), "M49 anchor");
exact(payload.schema_version, "missioncore.m49-tgs-anchor-spatial/v1", "M49 anchor schema");
exact(payload.result_id, id, "M49 anchor result");
exact(payload.coordinate_frame, "map-gravity-local", "M49 anchor frame");
exact(payload.all_points_accounted, true, "M49 anchor accounting");
exact(payload.aos_used, false, "M49 anchor AOS");
if (!Array.isArray(payload.points_xyz_m) || !Array.isArray(payload.point_states)) {
throw new M49TgsContractError("M49 points: ожидался массив.");
}
const costmap = objectValue(payload.costmap, "M49 costmap");
if (!Array.isArray(costmap.centers_xy_m) || !Array.isArray(costmap.states) || !Array.isArray(costmap.z_bounds_m)) {
throw new M49TgsContractError("M49 costmap arrays: нарушен контракт.");
}
const points = payload.points_xyz_m.map((item, index) => numbers(item, 3, `M49 point ${index}`) as [number, number, number]);
const pointStates = payload.point_states.map((item, index) => {
const state = integer(item, `M49 point state ${index}`);
if (state !== 1 && state !== 2 && state !== 3) throw new M49TgsContractError("M49 point state неизвестен.");
return state;
});
if (points.length !== pointStates.length) throw new M49TgsContractError("M49 point accounting нарушен.");
const centers = costmap.centers_xy_m.map((item, index) => numbers(item, 2, `M49 cell ${index}`) as [number, number]);
const states = costmap.states.map((item, index) => {
const state = integer(item, `M49 cell state ${index}`);
if (state !== 0 && state !== 1 && state !== 2 && state !== 3) throw new M49TgsContractError("M49 cell state неизвестен.");
return state;
});
const zBounds = costmap.z_bounds_m.map((item, index) => {
if (!Array.isArray(item) || item.length !== 2) throw new M49TgsContractError(`M49 z ${index}: размерность.`);
return item.map((value) => value === null ? null : numberValue(value, `M49 z ${index}`)) as [number | null, number | null];
});
if (
centers.length !== 2244
|| centers.length !== states.length
|| centers.length !== zBounds.length
|| integer(payload.anchor_frame_index, "M49 anchor frame") !== anchorFrameIndex
|| integer(payload.source_sequence, "M49 source sequence") !== anchorFrameIndex
) {
throw new M49TgsContractError("M49 costmap accounting нарушен.");
}
return {
resultId: id,
anchorFrameIndex,
sourceSequence: anchorFrameIndex,
profile: exact(payload.profile, profile, "M49 profile"),
coordinateFrame: "map-gravity-local",
pointsXyzM: points,
pointStates,
costmap: {
cellSizeM: numberValue(costmap.cell_size_m, "M49 cell size"),
radiusM: numberValue(costmap.radius_m, "M49 radius"),
centersXyM: centers,
states,
zBoundsM: zBounds,
},
allPointsAccounted: true,
aosUsed: false,
};
}
@@ -0,0 +1,658 @@
import type { LaboratoryFetch } from "./advancedResults";
const RESULT_ID = /^m49-tgs-full-shadow-[a-f0-9]{64}$/;
const SEMANTIC_RESULT_ID = /^e47-semantic-slam-[a-f0-9]{64}$/;
export type M49TgsFullShadowStateCode = 0 | 1 | 2 | 3;
export interface M49TgsFullShadowResult {
resultId: string;
createdAtUtc: string;
source: {
sourcePackSha256: string;
linkedVisualResultId: string;
linkedSemanticResultId: string;
};
configuration: {
configSha256: string;
cellSizeM: number;
radiusM: number;
historySeconds: number;
};
execution: {
wrapperElapsedSeconds: number;
};
timeline: {
frameCount: 4489;
availableLidarFrameCount: 3928;
missingLidarFrameCount: 561;
durationSeconds: number;
effectiveFps: number;
};
pointAccounting: {
eligible: number;
ground: number;
nonground: number;
rejected: number;
unaccounted: 0;
};
performance: {
candidateTgsMs: { p50: number; p95: number; p99: number; max: number };
completionAgeMs: { p50: number; p95: number; p99: number; max: number };
capacityDropCount: number;
};
acceptance: {
representationComplete: true;
visualQualityAccepted: false;
integratedGraphPerformanceAccepted: false;
allFramesAccounted: boolean;
allEligiblePointsAccounted: boolean;
};
decision: {
state: string;
candidateRetained: boolean;
nextAction: string;
};
}
export interface M49TgsFullShadowSpatial {
resultId: string;
sourceSequence: number;
sourceFrameIndex: number;
sessionSeconds: number;
sampleAvailable: boolean;
costmap: {
cellSizeM: number;
radiusM: number;
centersXyM: readonly (readonly [number, number])[];
states: readonly M49TgsFullShadowStateCode[];
zBoundsM: readonly (readonly [number | null, number | null])[];
};
metrics: {
eligiblePointCount: number;
groundPointCount: number;
nongroundPointCount: number;
rejectedPointCount: number;
occupiedCellCount: number;
};
}
export interface M49TgsFullShadowSpatialChunk {
resultId: string;
start: number;
count: number;
frames: readonly M49TgsFullShadowSpatial[];
}
export type M49TgsFullShadowPlaybackTrackId =
| "frames"
| "centers"
| "states"
| "z-bounds";
export interface M49TgsFullShadowPlaybackProgress {
phase: "manifest" | "download" | "verify" | "ready";
trackId: M49TgsFullShadowPlaybackTrackId | null;
loadedBytes: number;
totalBytes: number;
}
interface M49TgsFullShadowPlaybackTrack {
id: M49TgsFullShadowPlaybackTrackId;
url: string;
mediaType: string;
dtype: "ndjson" | "<f4" | "|u1";
shape: readonly number[];
byteLength: number;
sha256: string;
}
export interface M49TgsFullShadowPlaybackFrame {
sourceSequence: number;
sourceFrameIndex: number;
sessionSeconds: number;
sampleAvailable: boolean;
metrics: M49TgsFullShadowSpatial["metrics"];
}
export interface M49TgsFullShadowPlaybackPack {
resultId: string;
frameCount: 4489;
cellCount: 2244;
totalByteLength: number;
centersXyM: Float32Array;
states: Uint8Array;
zBoundsM: Float32Array;
frames: readonly M49TgsFullShadowPlaybackFrame[];
}
export class M49TgsFullShadowContractError extends Error {}
function objectValue(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new M49TgsFullShadowContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function text(value: unknown, label: string): string {
if (typeof value !== "string" || !value.trim()) {
throw new M49TgsFullShadowContractError(`${label}: ожидалась строка.`);
}
return value;
}
function numberValue(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value)) {
throw new M49TgsFullShadowContractError(`${label}: ожидалось число.`);
}
return value;
}
function integer(value: unknown, label: string): number {
const parsed = numberValue(value, label);
if (!Number.isSafeInteger(parsed) || parsed < 0) {
throw new M49TgsFullShadowContractError(`${label}: ожидалось целое число.`);
}
return parsed;
}
function booleanValue(value: unknown, label: string): boolean {
if (typeof value !== "boolean") {
throw new M49TgsFullShadowContractError(`${label}: ожидался boolean.`);
}
return value;
}
function exact<T extends string | boolean | number>(value: unknown, expected: T, label: string): T {
if (value !== expected) throw new M49TgsFullShadowContractError(`${label}: нарушен контракт.`);
return expected;
}
function timing(value: unknown, label: string) {
const row = objectValue(value, label);
return {
p50: numberValue(row.p50, `${label}.p50`),
p95: numberValue(row.p95, `${label}.p95`),
p99: numberValue(row.p99, `${label}.p99`),
max: numberValue(row.max, `${label}.max`),
};
}
export async function fetchM49TgsFullShadowResult(
id: string,
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<M49TgsFullShadowResult> {
if (!RESULT_ID.test(id)) throw new M49TgsFullShadowContractError("M49 full-shadow identity недопустима.");
const response = await fetcher(
`/api/v1/laboratory/m49/tgs-full-shadow/${encodeURIComponent(id)}`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) throw new M49TgsFullShadowContractError(`M49 full shadow недоступен: HTTP ${response.status}.`);
const payload = objectValue(await response.json(), "M49 full shadow");
exact(payload.schema_version, "missioncore.m49-tgs-full-shadow-view/v1", "M49 full schema");
exact(payload.result_id, id, "M49 full result");
exact(payload.ground_truth, false, "M49 full ground truth");
exact(payload.access, "read-only", "M49 full access");
const source = objectValue(payload.source, "M49 full source");
const configuration = objectValue(payload.configuration, "M49 full configuration");
const execution = objectValue(payload.execution, "M49 full execution");
const timeline = objectValue(payload.timeline, "M49 full timeline");
const accounting = objectValue(payload.point_accounting, "M49 full accounting");
const performance = objectValue(payload.performance, "M49 full performance");
const acceptance = objectValue(payload.acceptance, "M49 full acceptance");
const decision = objectValue(payload.decision, "M49 full decision");
const linkedSemanticResultId = text(
source.linked_semantic_result_id,
"M49 full semantic result",
);
if (!SEMANTIC_RESULT_ID.test(linkedSemanticResultId)) {
throw new M49TgsFullShadowContractError("M49 full semantic result: нарушена идентичность.");
}
return {
resultId: text(payload.result_id, "M49 full result"),
createdAtUtc: text(payload.created_at_utc, "M49 full created"),
source: {
sourcePackSha256: text(source.source_pack_sha256, "M49 full source pack"),
linkedVisualResultId: text(source.linked_visual_result_id, "M49 full visual result"),
linkedSemanticResultId,
},
configuration: {
configSha256: text(configuration.config_sha256, "M49 full config"),
cellSizeM: numberValue(configuration.cell_size_m, "M49 full cell size"),
radiusM: numberValue(configuration.radius_m, "M49 full radius"),
historySeconds: numberValue(configuration.history_seconds, "M49 full history"),
},
execution: { wrapperElapsedSeconds: numberValue(execution.wrapper_elapsed_seconds, "M49 full wall") },
timeline: {
frameCount: exact(integer(timeline.frame_count, "M49 full frames"), 4489, "M49 full frames"),
availableLidarFrameCount: exact(integer(timeline.available_lidar_frame_count, "M49 full available"), 3928, "M49 full available"),
missingLidarFrameCount: exact(integer(timeline.missing_lidar_frame_count, "M49 full missing"), 561, "M49 full missing"),
durationSeconds: numberValue(timeline.duration_seconds, "M49 full duration"),
effectiveFps: numberValue(timeline.effective_fps, "M49 full fps"),
},
pointAccounting: {
eligible: integer(accounting.eligible, "M49 full eligible"),
ground: integer(accounting.ground, "M49 full ground"),
nonground: integer(accounting.nonground, "M49 full nonground"),
rejected: integer(accounting.rejected, "M49 full rejected"),
unaccounted: exact(integer(accounting.unaccounted, "M49 full unaccounted"), 0, "M49 full unaccounted"),
},
performance: {
candidateTgsMs: timing(performance.candidate_tgs_ms, "M49 full TGS"),
completionAgeMs: timing(performance.completion_age_ms, "M49 full completion"),
capacityDropCount: integer(performance.capacity_drop_count, "M49 full drops"),
},
acceptance: {
representationComplete: exact(acceptance.representation_complete, true, "M49 full representation"),
visualQualityAccepted: exact(acceptance.visual_quality_accepted, false, "M49 full visual"),
integratedGraphPerformanceAccepted: exact(acceptance.integrated_graph_performance_accepted, false, "M49 full integrated"),
allFramesAccounted: booleanValue(acceptance.all_frames_accounted, "M49 full frame accounting"),
allEligiblePointsAccounted: booleanValue(acceptance.all_eligible_points_accounted, "M49 full point accounting"),
},
decision: {
state: text(decision.state, "M49 full decision"),
candidateRetained: booleanValue(decision.candidate_retained, "M49 full retained"),
nextAction: text(decision.next_action, "M49 full next action"),
},
};
}
function pair(value: unknown, label: string): readonly [number, number] {
if (!Array.isArray(value) || value.length !== 2) {
throw new M49TgsFullShadowContractError(`${label}: неверная размерность.`);
}
return [numberValue(value[0], label), numberValue(value[1], label)];
}
function parseSpatial(
id: string,
sourceSequence: number,
payload: Record<string, unknown>,
sharedCostmap?: Record<string, unknown>,
): M49TgsFullShadowSpatial {
exact(payload.source_sequence, sourceSequence, "M49 full spatial sequence");
const costmap = sharedCostmap ?? objectValue(payload.costmap, "M49 full costmap");
const metrics = objectValue(payload.metrics, "M49 full frame metrics");
const centers = costmap.centers_xy_m;
const statesRaw = sharedCostmap ? payload.states : costmap.states;
const zBoundsRaw = sharedCostmap ? payload.z_bounds_m : costmap.z_bounds_m;
if (!Array.isArray(centers) || !Array.isArray(statesRaw) || !Array.isArray(zBoundsRaw)
|| centers.length !== 2244 || statesRaw.length !== 2244 || zBoundsRaw.length !== 2244) {
throw new M49TgsFullShadowContractError("M49 full costmap: неверная размерность.");
}
const states = statesRaw.map((value, index) => {
const parsed = integer(value, `M49 full state ${index}`);
if (parsed > 3) throw new M49TgsFullShadowContractError("M49 full state недопустим.");
return parsed as M49TgsFullShadowStateCode;
});
const zBounds = zBoundsRaw.map((value, index) => {
if (!Array.isArray(value) || value.length !== 2) {
throw new M49TgsFullShadowContractError(`M49 full z ${index}: неверная размерность.`);
}
return value.map((item) => item === null
? null
: numberValue(item, `M49 full z ${index}`)) as [number | null, number | null];
});
const sampleAvailable = booleanValue(payload.sample_available, "M49 full sample available");
if (!sampleAvailable && states.some((state) => state !== 0)) {
throw new M49TgsFullShadowContractError("M49 missing LiDAR frame не остался UNOBSERVED.");
}
return {
resultId: id,
sourceSequence,
sourceFrameIndex: integer(payload.source_frame_index, "M49 full source frame"),
sessionSeconds: numberValue(payload.session_seconds, "M49 full session seconds"),
sampleAvailable,
costmap: {
cellSizeM: numberValue(costmap.cell_size_m, "M49 full cell size"),
radiusM: numberValue(costmap.radius_m, "M49 full radius"),
centersXyM: centers.map((value, index) => pair(value, `M49 full center ${index}`)),
states,
zBoundsM: zBounds,
},
metrics: {
eligiblePointCount: integer(metrics.eligible_point_count, "M49 full eligible"),
groundPointCount: integer(metrics.ground_point_count, "M49 full ground"),
nongroundPointCount: integer(metrics.nonground_point_count, "M49 full nonground"),
rejectedPointCount: integer(metrics.rejected_point_count, "M49 full rejected"),
occupiedCellCount: integer(metrics.occupied_cell_count, "M49 full occupied cells"),
},
};
}
export async function fetchM49TgsFullShadowSpatial(
id: string,
sourceSequence: number,
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<M49TgsFullShadowSpatial> {
if (!RESULT_ID.test(id) || !Number.isSafeInteger(sourceSequence) || sourceSequence < 0 || sourceSequence >= 4489) {
throw new M49TgsFullShadowContractError("M49 full-shadow frame identity недопустима.");
}
const response = await fetcher(
`/api/v1/laboratory/m49/tgs-full-shadow/${encodeURIComponent(id)}/frames/${sourceSequence}/spatial`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) throw new M49TgsFullShadowContractError(`M49 full-shadow frame недоступен: HTTP ${response.status}.`);
const payload = objectValue(await response.json(), "M49 full spatial");
exact(payload.schema_version, "missioncore.m49-tgs-full-shadow-spatial/v1", "M49 full spatial schema");
exact(payload.result_id, id, "M49 full spatial result");
return parseSpatial(id, sourceSequence, payload);
}
export async function fetchM49TgsFullShadowSpatialChunk(
id: string,
start: number,
count = 24,
{ fetcher = fetch, signal }: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<M49TgsFullShadowSpatialChunk> {
if (!RESULT_ID.test(id) || !Number.isSafeInteger(start) || start < 0 || start >= 4489
|| !Number.isSafeInteger(count) || count < 1 || count > 24) {
throw new M49TgsFullShadowContractError("M49 full-shadow chunk identity недопустима.");
}
const response = await fetcher(
`/api/v1/laboratory/m49/tgs-full-shadow/${encodeURIComponent(id)}/spatial/chunk?start=${start}&count=${count}`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) throw new M49TgsFullShadowContractError(`M49 full-shadow chunk недоступен: HTTP ${response.status}.`);
const payload = objectValue(await response.json(), "M49 full spatial chunk");
exact(payload.schema_version, "missioncore.m49-tgs-full-shadow-spatial-chunk/v1", "M49 full chunk schema");
exact(payload.result_id, id, "M49 full chunk result");
exact(payload.start, start, "M49 full chunk start");
const returnedCount = integer(payload.count, "M49 full chunk count");
if (!Array.isArray(payload.frames) || payload.frames.length !== returnedCount
|| returnedCount !== Math.min(count, 4489 - start)) {
throw new M49TgsFullShadowContractError("M49 full chunk: неверная размерность.");
}
const costmap = objectValue(payload.costmap, "M49 full chunk costmap");
return {
resultId: id,
start,
count: returnedCount,
frames: payload.frames.map((value, index) => parseSpatial(
id,
start + index,
objectValue(value, `M49 full chunk frame ${index}`),
costmap,
)),
};
}
function playbackTrackId(value: unknown, label: string): M49TgsFullShadowPlaybackTrackId {
const parsed = text(value, label);
if (parsed !== "frames" && parsed !== "centers" && parsed !== "states" && parsed !== "z-bounds") {
throw new M49TgsFullShadowContractError(`${label}: неизвестная playback-дорожка.`);
}
return parsed;
}
function playbackDtype(value: unknown, label: string): M49TgsFullShadowPlaybackTrack["dtype"] {
const parsed = text(value, label);
if (parsed !== "ndjson" && parsed !== "<f4" && parsed !== "|u1") {
throw new M49TgsFullShadowContractError(`${label}: неизвестный dtype.`);
}
return parsed;
}
function playbackShape(value: unknown, label: string): readonly number[] {
if (!Array.isArray(value) || !value.length) {
throw new M49TgsFullShadowContractError(`${label}: ожидалась размерность.`);
}
return value.map((item, index) => integer(item, `${label}.${index}`));
}
async function fetchPlaybackManifest(
id: string,
fetcher: LaboratoryFetch,
signal: AbortSignal | undefined,
): Promise<{
frameCount: 4489;
cellCount: 2244;
totalByteLength: number;
tracks: ReadonlyMap<M49TgsFullShadowPlaybackTrackId, M49TgsFullShadowPlaybackTrack>;
}> {
const response = await fetcher(
`/api/v1/laboratory/m49/tgs-full-shadow/${encodeURIComponent(id)}/playback/manifest`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) {
throw new M49TgsFullShadowContractError(`M49 playback manifest недоступен: HTTP ${response.status}.`);
}
const payload = objectValue(await response.json(), "M49 playback manifest");
exact(payload.schema_version, "missioncore.m49-tgs-full-shadow-playback/v1", "M49 playback schema");
exact(payload.result_id, id, "M49 playback result");
exact(payload.coordinate_frame, "map-gravity-local", "M49 playback frame");
exact(payload.access, "read-only", "M49 playback access");
const frameCount = exact(integer(payload.frame_count, "M49 playback frames"), 4489, "M49 playback frames");
const cellCount = exact(integer(payload.cell_count, "M49 playback cells"), 2244, "M49 playback cells");
const totalByteLength = integer(payload.total_byte_length, "M49 playback bytes");
if (!Array.isArray(payload.tracks) || payload.tracks.length !== 4) {
throw new M49TgsFullShadowContractError("M49 playback tracks: неверная размерность.");
}
const tracks = new Map<M49TgsFullShadowPlaybackTrackId, M49TgsFullShadowPlaybackTrack>();
for (const [index, value] of payload.tracks.entries()) {
const row = objectValue(value, `M49 playback track ${index}`);
const trackId = playbackTrackId(row.id, `M49 playback track ${index}.id`);
const sha256 = text(row.sha256, `M49 playback track ${trackId}.sha256`);
if (!/^[a-f0-9]{64}$/.test(sha256) || tracks.has(trackId)) {
throw new M49TgsFullShadowContractError(`M49 playback track ${trackId}: нарушена идентичность.`);
}
tracks.set(trackId, {
id: trackId,
url: text(row.url, `M49 playback track ${trackId}.url`),
mediaType: text(row.media_type, `M49 playback track ${trackId}.media_type`),
dtype: playbackDtype(row.dtype, `M49 playback track ${trackId}.dtype`),
shape: playbackShape(row.shape, `M49 playback track ${trackId}.shape`),
byteLength: integer(row.byte_length, `M49 playback track ${trackId}.byte_length`),
sha256,
});
}
if ([...tracks.values()].reduce((sum, track) => sum + track.byteLength, 0) !== totalByteLength) {
throw new M49TgsFullShadowContractError("M49 playback bytes: нарушен accounting.");
}
return { frameCount, cellCount, totalByteLength, tracks };
}
function sha256Hex(buffer: ArrayBuffer): Promise<string> {
if (!globalThis.crypto?.subtle) {
throw new M49TgsFullShadowContractError("Браузер не поддерживает проверку playback SHA-256.");
}
return globalThis.crypto.subtle.digest("SHA-256", buffer).then((digest) => (
[...new Uint8Array(digest)].map((value) => value.toString(16).padStart(2, "0")).join("")
));
}
async function fetchPlaybackTrack(
track: M49TgsFullShadowPlaybackTrack,
fetcher: LaboratoryFetch,
signal: AbortSignal | undefined,
completedBytes: number,
totalBytes: number,
onProgress: ((progress: M49TgsFullShadowPlaybackProgress) => void) | undefined,
): Promise<ArrayBuffer> {
const response = await fetcher(track.url, {
method: "GET",
headers: { Accept: track.mediaType },
signal,
});
if (!response.ok) {
throw new M49TgsFullShadowContractError(`M49 playback ${track.id} недоступен: HTTP ${response.status}.`);
}
const bytes = new Uint8Array(track.byteLength);
if (response.body) {
const reader = response.body.getReader();
let offset = 0;
while (true) {
const { done, value } = await reader.read();
if (done) break;
if (offset + value.byteLength > bytes.byteLength) {
throw new M49TgsFullShadowContractError(`M49 playback ${track.id}: превышен объявленный размер.`);
}
bytes.set(value, offset);
offset += value.byteLength;
onProgress?.({
phase: "download",
trackId: track.id,
loadedBytes: completedBytes + offset,
totalBytes,
});
}
if (offset !== bytes.byteLength) {
throw new M49TgsFullShadowContractError(`M49 playback ${track.id}: получен неполный файл.`);
}
} else {
const fallback = new Uint8Array(await response.arrayBuffer());
if (fallback.byteLength !== bytes.byteLength) {
throw new M49TgsFullShadowContractError(`M49 playback ${track.id}: получен неверный размер.`);
}
bytes.set(fallback);
}
onProgress?.({
phase: "verify",
trackId: track.id,
loadedBytes: completedBytes + bytes.byteLength,
totalBytes,
});
if (await sha256Hex(bytes.buffer) !== track.sha256) {
throw new M49TgsFullShadowContractError(`M49 playback ${track.id}: SHA-256 не совпал.`);
}
return bytes.buffer;
}
function equalShape(actual: readonly number[], expected: readonly number[]): boolean {
return actual.length === expected.length && actual.every((value, index) => value === expected[index]);
}
export function parseM49TgsNpyTrack(
buffer: ArrayBuffer,
expectedDtype: "<f4" | "|u1",
expectedShape: readonly number[],
): Float32Array | Uint8Array {
const bytes = new Uint8Array(buffer);
if (bytes.byteLength < 12
|| bytes[0] !== 0x93
|| String.fromCharCode(...bytes.subarray(1, 6)) !== "NUMPY") {
throw new M49TgsFullShadowContractError("M49 playback NPY: неверная сигнатура.");
}
const major = bytes[6];
const headerLength = major === 1
? new DataView(buffer).getUint16(8, true)
: major === 2 || major === 3
? new DataView(buffer).getUint32(8, true)
: -1;
const headerOffset = major === 1 ? 10 : 12;
if (headerLength < 0 || headerOffset + headerLength > bytes.byteLength) {
throw new M49TgsFullShadowContractError("M49 playback NPY: неверный заголовок.");
}
const header = new TextDecoder("latin1").decode(bytes.subarray(headerOffset, headerOffset + headerLength));
const dtype = header.match(/["']descr["']\s*:\s*["']([^"']+)["']/)?.[1];
const fortran = header.match(/["']fortran_order["']\s*:\s*(True|False)/)?.[1];
const rawShape = header.match(/["']shape["']\s*:\s*\(([^)]*)\)/)?.[1];
const shape = rawShape?.split(",").map((value) => value.trim()).filter(Boolean).map(Number) ?? [];
if (dtype !== expectedDtype || fortran !== "False" || !equalShape(shape, expectedShape)) {
throw new M49TgsFullShadowContractError("M49 playback NPY: dtype или shape изменились.");
}
const count = expectedShape.reduce((product, value) => product * value, 1);
const dataOffset = headerOffset + headerLength;
const bytesPerValue = expectedDtype === "<f4" ? 4 : 1;
if (dataOffset + count * bytesPerValue !== buffer.byteLength) {
throw new M49TgsFullShadowContractError("M49 playback NPY: длина payload изменилась.");
}
return expectedDtype === "<f4"
? new Float32Array(buffer, dataOffset, count)
: new Uint8Array(buffer, dataOffset, count);
}
function parsePlaybackFrames(buffer: ArrayBuffer): readonly M49TgsFullShadowPlaybackFrame[] {
const lines = new TextDecoder().decode(buffer).trim().split("\n");
if (lines.length !== 4489) {
throw new M49TgsFullShadowContractError("M49 playback frames: неверная размерность.");
}
return lines.map((line, sourceSequence) => {
const row = objectValue(JSON.parse(line), `M49 playback frame ${sourceSequence}`);
return {
sourceSequence,
sourceFrameIndex: integer(row.source_frame_index, `M49 playback frame ${sourceSequence}.source`),
sessionSeconds: numberValue(row.session_seconds, `M49 playback frame ${sourceSequence}.time`),
sampleAvailable: booleanValue(row.sample_available, `M49 playback frame ${sourceSequence}.available`),
metrics: {
eligiblePointCount: integer(row.eligible_point_count, `M49 playback frame ${sourceSequence}.eligible`),
groundPointCount: integer(row.ground_point_count, `M49 playback frame ${sourceSequence}.ground`),
nongroundPointCount: integer(row.nonground_point_count, `M49 playback frame ${sourceSequence}.nonground`),
rejectedPointCount: integer(row.rejected_point_count, `M49 playback frame ${sourceSequence}.rejected`),
occupiedCellCount: integer(row.occupied_cell_count, `M49 playback frame ${sourceSequence}.occupied`),
},
};
});
}
export async function fetchM49TgsFullShadowPlaybackPack(
id: string,
{
fetcher = fetch,
signal,
onProgress,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
onProgress?: (progress: M49TgsFullShadowPlaybackProgress) => void;
} = {},
): Promise<M49TgsFullShadowPlaybackPack> {
if (!RESULT_ID.test(id)) {
throw new M49TgsFullShadowContractError("M49 playback identity недопустима.");
}
onProgress?.({ phase: "manifest", trackId: null, loadedBytes: 0, totalBytes: 0 });
const manifest = await fetchPlaybackManifest(id, fetcher, signal);
const buffers = new Map<M49TgsFullShadowPlaybackTrackId, ArrayBuffer>();
let completedBytes = 0;
const order: readonly M49TgsFullShadowPlaybackTrackId[] = ["frames", "centers", "states", "z-bounds"];
for (const trackId of order) {
const track = manifest.tracks.get(trackId);
if (!track) throw new M49TgsFullShadowContractError(`M49 playback ${trackId}: дорожка отсутствует.`);
const buffer = await fetchPlaybackTrack(
track,
fetcher,
signal,
completedBytes,
manifest.totalByteLength,
onProgress,
);
buffers.set(trackId, buffer);
completedBytes += track.byteLength;
}
const centersTrack = manifest.tracks.get("centers")!;
const statesTrack = manifest.tracks.get("states")!;
const zBoundsTrack = manifest.tracks.get("z-bounds")!;
const centersRaw = parseM49TgsNpyTrack(
buffers.get("centers")!,
"<f4",
centersTrack.shape,
) as Float32Array;
const states = parseM49TgsNpyTrack(
buffers.get("states")!,
"|u1",
statesTrack.shape,
) as Uint8Array;
const zBoundsM = parseM49TgsNpyTrack(
buffers.get("z-bounds")!,
"<f4",
zBoundsTrack.shape,
) as Float32Array;
const frames = parsePlaybackFrames(buffers.get("frames")!);
onProgress?.({
phase: "ready",
trackId: null,
loadedBytes: manifest.totalByteLength,
totalBytes: manifest.totalByteLength,
});
return {
resultId: id,
frameCount: manifest.frameCount,
cellCount: manifest.cellCount,
totalByteLength: manifest.totalByteLength,
centersXyM: centersRaw,
states,
zBoundsM,
frames,
};
}
@@ -1,5 +1,6 @@
export type M4ThreatDecision = "threat" | "not-threat" | "unknown";
export type M4ThreatMotion = "moving" | "stationary" | "unknown";
export type M4OccupancySource = "baseline" | "mixed" | "additive-low-step";
export type M4Point3 = readonly [number, number, number];
export type M4Matrix3 = readonly [M4Point3, M4Point3, M4Point3];
@@ -69,6 +70,14 @@ export interface M4ThreatAssessment {
reasonCodes: readonly string[];
}
export interface M4ThreatCameraObstacleProjection {
bboxXyxy: readonly [number, number, number, number];
nearestDepthM: number;
projectedCellCount: number;
projection: "factory-kb4-occupied-voxel-bounds";
authority: "visual-derived";
}
export interface M4ThreatMetricVisual {
componentId: string;
state: "current" | "retained" | "held" | "expired";
@@ -76,6 +85,8 @@ export interface M4ThreatMetricVisual {
centroidBodyXyzM: M4Point3;
cellCentersBodyXyzM: readonly M4Point3[];
assessment: M4ThreatAssessment;
occupancySource: M4OccupancySource;
cameraProjection: M4ThreatCameraObstacleProjection | null;
}
export interface M4ThreatCameraProposal {
@@ -174,6 +185,8 @@ export interface M4ThreatTimeline {
cameraPointWindowSeconds: number;
cameraPointSampleLimit: number;
worldStateDelivery: "source-paced-latest-wins" | null;
occupancyProvenanceDelivery: "baseline-versus-additive-component-diff" | null;
cameraObstacleProjectionDelivery: "factory-kb4-actionable-added-corridor-bounds" | null;
worldStateFrameCount: number;
supersededFrameCount: number;
sourceRepresentationId: "registered-map-increment-v1";
@@ -213,6 +226,51 @@ export interface M4ThreatTimelineChunk {
frames: readonly M4ThreatTimelineFrame[];
}
export interface M4ThreatPlaybackProgress {
phase: "manifest" | "download" | "verify" | "ready";
loadedBytes: number;
totalBytes: number;
}
export interface M4ThreatPlaybackPointPack {
resultId: string;
frameCount: 4489;
pointCount: number;
pointOffsets: Uint32Array;
pointsMapXyzM: Float32Array;
pointStart?: number;
startSequence?: number;
sequenceCount?: number;
}
export interface M4ThreatPlaybackChunkDescriptor {
index: number;
start: number;
count: number;
pointStart: number;
pointCount: number;
url: string;
mediaType: "application/octet-stream";
byteLength: number;
sha256: string;
}
export interface M4ThreatPlaybackManifest {
resultId: string;
frameCount: 4489;
pointCount: number;
pointOffsets: Uint32Array;
chunkFrameCount: 24;
residentChunkCountMax: 4;
forwardPrefetchChunkCount: 1;
chunks: readonly M4ThreatPlaybackChunkDescriptor[];
track: {
url: string;
byteLength: number;
sha256: string;
};
}
type LaboratoryFetch = (input: RequestInfo | URL, init?: RequestInit) => Promise<Response>;
export const M4_THREAT_TIMELINE_ENDPOINT_ROOT = "/api/v1/laboratory/m4-threat/results";
class M4ThreatContractError extends Error {}
@@ -320,6 +378,32 @@ function parseCameraProposal(value: unknown): M4ThreatCameraProposal {
};
}
function parseCameraObstacleProjection(value: unknown): M4ThreatCameraObstacleProjection {
const item = object(value, "M4.8R3 camera obstacle projection");
const bbox = vector(item.bbox_xyxy, 4, "M4.8R3 camera obstacle bbox");
if (bbox[2]! < bbox[0]! || bbox[3]! < bbox[1]!) {
throw new M4ThreatContractError("M4.8R3 camera obstacle bbox: нарушена геометрия.");
}
return {
bboxXyxy: [bbox[0]!, bbox[1]!, bbox[2]!, bbox[3]!],
nearestDepthM: number(item.nearest_depth_m, "M4.8R3 camera obstacle depth"),
projectedCellCount: integer(
item.projected_cell_count,
"M4.8R3 camera obstacle cells",
),
projection: exact(
item.projection,
"factory-kb4-occupied-voxel-bounds",
"M4.8R3 camera obstacle projection",
),
authority: exact(
item.authority,
"visual-derived",
"M4.8R3 camera obstacle authority",
),
};
}
function parseMetricVisual(value: unknown): M4ThreatMetricVisual {
const item = object(value, "M4.6 metric visual");
const state = text(item.state, "M4.6 temporal state");
@@ -331,6 +415,9 @@ function parseMetricVisual(value: unknown): M4ThreatMetricVisual {
) {
throw new M4ThreatContractError("M4.6 temporal state: неизвестное состояние.");
}
const occupancySource = item.occupancy_source === undefined
? "baseline"
: memberOccupancySource(item.occupancy_source);
return {
componentId: text(item.component_id, "M4.6 visual component"),
state,
@@ -340,9 +427,20 @@ function parseMetricVisual(value: unknown): M4ThreatMetricVisual {
(point) => vector(point, 3, "M4.6 cell") as [number, number, number],
),
assessment: parseAssessment(item.assessment),
occupancySource,
cameraProjection: item.camera_projection === undefined
? null
: parseCameraObstacleProjection(item.camera_projection),
};
}
function memberOccupancySource(value: unknown): M4OccupancySource {
if (value !== "baseline" && value !== "mixed" && value !== "additive-low-step") {
throw new M4ThreatContractError("M4.8R3 occupancy source: неизвестное состояние.");
}
return value;
}
export async function fetchM4ThreatReplayResult({
resultId: requestedResultId,
fetcher = fetch,
@@ -683,6 +781,20 @@ export async function fetchM4ThreatTimeline(
"source-paced-latest-wins",
"M4.6 world-state delivery",
),
occupancyProvenanceDelivery: payload.occupancy_provenance_delivery == null
? null
: exact(
payload.occupancy_provenance_delivery,
"baseline-versus-additive-component-diff",
"M4.8R3 occupancy provenance",
),
cameraObstacleProjectionDelivery: payload.camera_obstacle_projection_delivery == null
? null
: exact(
payload.camera_obstacle_projection_delivery,
"factory-kb4-actionable-added-corridor-bounds",
"M4.8R3 camera obstacle projection delivery",
),
worldStateFrameCount: payload.world_state_frame_count === undefined
? frameCount
: integer(payload.world_state_frame_count, "M4.6 world-state frames"),
@@ -735,16 +847,24 @@ export async function fetchM4ThreatTimelineChunk(
fetcher = fetch,
signal,
endpointRoot = M4_THREAT_TIMELINE_ENDPOINT_ROOT,
cameraObstacleProjectionDelivery = null,
playbackPointPack,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
endpointRoot?: string;
cameraObstacleProjectionDelivery?: M4ThreatTimeline["cameraObstacleProjectionDelivery"];
playbackPointPack?: M4ThreatPlaybackPointPack;
} = {},
): Promise<M4ThreatTimelineChunk> {
const params = new URLSearchParams({
start: String(startSequence),
count: String(frameCount),
});
if (cameraObstacleProjectionDelivery !== null) {
params.set("obstacle_projection", cameraObstacleProjectionDelivery);
}
if (playbackPointPack) params.set("include_points", "false");
const response = await fetcher(
`${endpointRoot}/${result}/timeline/chunk?${params}`,
{ headers: { Accept: "application/json" }, signal },
@@ -762,8 +882,12 @@ export async function fetchM4ThreatTimelineChunk(
if (parsedStart !== startSequence) {
throw new M4ThreatContractError("M4.6 timeline chunk start: нарушен контракт.");
}
const frames = array(payload.frames, "M4.6 timeline frames").map((raw, offset) =>
parseTimelineFrame(raw, result, parsedStart + offset, endpointRoot));
const frames = array(payload.frames, "M4.6 timeline frames").map((raw, offset) => {
const parsed = parseTimelineFrame(raw, result, parsedStart + offset, endpointRoot);
return playbackPointPack
? hydrateM4ThreatTimelineFrame(parsed, playbackPointPack)
: parsed;
});
const parsedCount = integer(payload.frame_count, "M4.6 timeline chunk count");
if (parsedCount !== frames.length || parsedCount > frameCount) {
throw new M4ThreatContractError("M4.6 timeline chunk count: нарушен контракт.");
@@ -779,6 +903,305 @@ export async function fetchM4ThreatTimelineChunk(
};
}
function playbackSha256Hex(buffer: ArrayBuffer): Promise<string> {
if (!globalThis.crypto?.subtle) {
throw new M4ThreatContractError("Браузер не поддерживает проверку playback SHA-256.");
}
return globalThis.crypto.subtle.digest("SHA-256", buffer).then((digest) => (
[...new Uint8Array(digest)].map((value) => value.toString(16).padStart(2, "0")).join("")
));
}
function roundedBodyCoordinate(value: number): number {
return Math.round(value * 1_000_000) / 1_000_000;
}
export function hydrateM4ThreatTimelineFrame(
frame: M4ThreatTimelineFrame,
pack: M4ThreatPlaybackPointPack,
): M4ThreatTimelineFrame {
if (
frame.sequence >= pack.frameCount
|| pack.resultId === ""
|| (pack.startSequence !== undefined && (
frame.sequence < pack.startSequence
|| frame.sequence >= pack.startSequence + (pack.sequenceCount ?? 0)
))
) {
throw new M4ThreatContractError("M4.6 binary playback frame: нарушена идентичность.");
}
if (!frame.sourceAvailable || !frame.spatialAvailable || !frame.bodyFrame) {
if (frame.pointCloudSourceCount !== 0) {
throw new M4ThreatContractError("M4.6 binary playback unavailable frame содержит точки.");
}
return { ...frame, pointCloudBodyXyzM: [], pointCloudSampleCount: 0 };
}
const start = pack.pointOffsets[frame.sequence];
const stop = pack.pointOffsets[frame.sequence + 1];
const pointStart = pack.pointStart ?? 0;
const pointStop = pointStart + pack.pointCount;
if (
start === undefined
|| stop === undefined
|| stop < start
|| start < pointStart
|| stop > pointStop
) {
throw new M4ThreatContractError("M4.6 binary playback offsets: нарушена размерность.");
}
const count = stop - start;
if (frame.pointCloudSourceCount !== count || frame.pointCloudSampleCount !== count) {
throw new M4ThreatContractError("M4.6 binary playback point accounting: нарушен контракт.");
}
const origin = frame.bodyFrame.originMapXyzM;
const basis = frame.bodyFrame.basisMapFromBody;
const points = new Array<M4Point3>(count);
for (let index = 0; index < count; index += 1) {
const sourceOffset = (start - pointStart + index) * 3;
const dx = pack.pointsMapXyzM[sourceOffset]! - origin[0];
const dy = pack.pointsMapXyzM[sourceOffset + 1]! - origin[1];
const dz = pack.pointsMapXyzM[sourceOffset + 2]! - origin[2];
points[index] = [
roundedBodyCoordinate(dx * basis[0][0] + dy * basis[1][0] + dz * basis[2][0]),
roundedBodyCoordinate(dx * basis[0][1] + dy * basis[1][1] + dz * basis[2][1]),
roundedBodyCoordinate(dx * basis[0][2] + dy * basis[1][2] + dz * basis[2][2]),
];
}
return { ...frame, pointCloudBodyXyzM: points, pointCloudSampleCount: count };
}
export async function fetchM4ThreatPlaybackManifest(
result: string,
{
fetcher = fetch,
signal,
endpointRoot = M4_THREAT_TIMELINE_ENDPOINT_ROOT,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
endpointRoot?: string;
} = {},
): Promise<M4ThreatPlaybackManifest> {
resultId(result);
const manifestResponse = await fetcher(`${endpointRoot}/${result}/timeline/playback`, {
headers: { Accept: "application/json" },
signal,
});
if (!manifestResponse.ok) {
throw new M4ThreatContractError(`M4.6 playback manifest: HTTP ${manifestResponse.status}.`);
}
const manifest = object(await manifestResponse.json(), "M4.6 playback manifest");
exact(manifest.schema_version, "missioncore.recorded-spatial-playback/v1", "M4.6 playback schema");
exact(manifest.result_id, result, "M4.6 playback result");
exact(manifest.coordinate_frame, "map", "M4.6 playback coordinate frame");
exact(manifest.access, "read-only-sealed-binary-playback", "M4.6 playback access");
const frameCount = exact(integer(manifest.frame_count, "M4.6 playback frames"), 4489, "M4.6 playback frames");
const pointCount = integer(manifest.point_count, "M4.6 playback points");
const offsetsRaw = array(manifest.point_offsets, "M4.6 playback offsets");
if (offsetsRaw.length !== frameCount + 1) {
throw new M4ThreatContractError("M4.6 playback offsets: неверная размерность.");
}
const pointOffsets = Uint32Array.from(offsetsRaw, (value) => integer(value, "M4.6 playback offset"));
if (pointOffsets[0] !== 0 || pointOffsets[pointOffsets.length - 1] !== pointCount) {
throw new M4ThreatContractError("M4.6 playback offsets: нарушено замыкание.");
}
for (let index = 1; index < pointOffsets.length; index += 1) {
if (pointOffsets[index]! < pointOffsets[index - 1]!) {
throw new M4ThreatContractError("M4.6 playback offsets: нарушена монотонность.");
}
}
const track = object(manifest.track, "M4.6 playback track");
exact(track.id, "points-map-f32", "M4.6 playback track id");
exact(track.dtype, "<f4", "M4.6 playback dtype");
const shape = array(track.shape, "M4.6 playback shape").map((value) => integer(value, "M4.6 playback shape"));
if (shape.length !== 2 || shape[0] !== pointCount || shape[1] !== 3) {
throw new M4ThreatContractError("M4.6 playback shape: нарушена размерность.");
}
const byteLength = integer(track.bytes, "M4.6 playback bytes");
if (byteLength !== pointCount * 3 * Float32Array.BYTES_PER_ELEMENT) {
throw new M4ThreatContractError("M4.6 playback bytes: нарушен accounting.");
}
const sha256 = text(track.sha256, "M4.6 playback SHA-256");
if (!/^[a-f0-9]{64}$/.test(sha256)) {
throw new M4ThreatContractError("M4.6 playback SHA-256: нарушен контракт.");
}
const trackUrl = text(track.url, "M4.6 playback URL");
const chunkFrameCount = exact(
integer(manifest.chunk_frame_count, "M4.6 playback chunk frames"),
24,
"M4.6 playback chunk frames",
);
const residentChunkCountMax = exact(
integer(manifest.resident_chunk_count_max, "M4.6 playback resident chunks"),
4,
"M4.6 playback resident chunks",
);
const forwardPrefetchChunkCount = exact(
integer(manifest.forward_prefetch_chunk_count, "M4.6 playback prefetch chunks"),
1,
"M4.6 playback prefetch chunks",
);
const chunkRows = array(manifest.chunks, "M4.6 playback chunks");
const expectedChunkCount = Math.ceil(frameCount / chunkFrameCount);
if (chunkRows.length !== expectedChunkCount) {
throw new M4ThreatContractError("M4.6 playback chunk catalog: неверный размер.");
}
const chunks = chunkRows.map((value, index): M4ThreatPlaybackChunkDescriptor => {
const row = object(value, `M4.6 playback chunk ${index}`);
const start = index * chunkFrameCount;
const count = Math.min(chunkFrameCount, frameCount - start);
const pointStart = pointOffsets[start]!;
const pointStop = pointOffsets[start + count]!;
const pointChunkCount = pointStop - pointStart;
exact(integer(row.index, `M4.6 playback chunk ${index}.index`), index, `M4.6 playback chunk ${index}.index`);
exact(integer(row.start, `M4.6 playback chunk ${index}.start`), start, `M4.6 playback chunk ${index}.start`);
exact(integer(row.count, `M4.6 playback chunk ${index}.count`), count, `M4.6 playback chunk ${index}.count`);
exact(integer(row.point_start, `M4.6 playback chunk ${index}.point start`), pointStart, `M4.6 playback chunk ${index}.point start`);
exact(integer(row.point_count, `M4.6 playback chunk ${index}.point count`), pointChunkCount, `M4.6 playback chunk ${index}.point count`);
exact(row.media_type, "application/octet-stream", `M4.6 playback chunk ${index}.media type`);
exact(row.dtype, "<f4", `M4.6 playback chunk ${index}.dtype`);
const shapeValue = array(row.shape, `M4.6 playback chunk ${index}.shape`)
.map((item) => integer(item, `M4.6 playback chunk ${index}.shape`));
const chunkBytes = integer(row.bytes, `M4.6 playback chunk ${index}.bytes`);
if (
shapeValue.length !== 2
|| shapeValue[0] !== pointChunkCount
|| shapeValue[1] !== 3
|| chunkBytes !== pointChunkCount * 3 * Float32Array.BYTES_PER_ELEMENT
) {
throw new M4ThreatContractError(`M4.6 playback chunk ${index}: нарушена размерность.`);
}
const chunkSha256 = text(row.sha256, `M4.6 playback chunk ${index}.SHA-256`);
if (!/^[a-f0-9]{64}$/.test(chunkSha256)) {
throw new M4ThreatContractError(`M4.6 playback chunk ${index}: SHA-256 недопустим.`);
}
const expectedUrl = `${endpointRoot}/${result}/timeline/playback/chunks/${index}`;
const url = text(row.url, `M4.6 playback chunk ${index}.URL`);
if (url !== expectedUrl || url.includes("worker")) {
throw new M4ThreatContractError(`M4.6 playback chunk ${index}: разрешён только sealed local API.`);
}
return {
index,
start,
count,
pointStart,
pointCount: pointChunkCount,
url,
mediaType: "application/octet-stream",
byteLength: chunkBytes,
sha256: chunkSha256,
};
});
return {
resultId: result,
frameCount,
pointCount,
pointOffsets,
chunkFrameCount,
residentChunkCountMax,
forwardPrefetchChunkCount,
chunks,
track: { url: trackUrl, byteLength, sha256 },
};
}
export async function fetchM4ThreatPlaybackPointChunk(
manifest: M4ThreatPlaybackManifest,
chunkIndex: number,
{
fetcher = fetch,
signal,
onProgress,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
onProgress?: (progress: M4ThreatPlaybackProgress) => void;
} = {},
): Promise<M4ThreatPlaybackPointPack> {
const descriptor = manifest.chunks[chunkIndex];
if (!descriptor || descriptor.index !== chunkIndex) {
throw new M4ThreatContractError("M4.6 playback chunk отсутствует.");
}
onProgress?.({ phase: "download", loadedBytes: 0, totalBytes: descriptor.byteLength });
const response = await fetcher(descriptor.url, {
headers: { Accept: "application/octet-stream" },
signal,
});
if (!response.ok) {
throw new M4ThreatContractError(`M4.6 playback chunk: HTTP ${response.status}.`);
}
const buffer = await response.arrayBuffer();
if (buffer.byteLength !== descriptor.byteLength) {
throw new M4ThreatContractError("M4.6 playback chunk: неверный размер.");
}
onProgress?.({
phase: "verify",
loadedBytes: descriptor.byteLength,
totalBytes: descriptor.byteLength,
});
if (await playbackSha256Hex(buffer) !== descriptor.sha256) {
throw new M4ThreatContractError("M4.6 playback chunk: SHA-256 не совпал.");
}
onProgress?.({
phase: "ready",
loadedBytes: descriptor.byteLength,
totalBytes: descriptor.byteLength,
});
return {
resultId: manifest.resultId,
frameCount: manifest.frameCount,
pointCount: descriptor.pointCount,
pointOffsets: manifest.pointOffsets,
pointsMapXyzM: new Float32Array(buffer),
pointStart: descriptor.pointStart,
startSequence: descriptor.start,
sequenceCount: descriptor.count,
};
}
export async function fetchM4ThreatPlaybackPointPack(
result: string,
{
fetcher = fetch,
signal,
endpointRoot = M4_THREAT_TIMELINE_ENDPOINT_ROOT,
onProgress,
}: {
fetcher?: LaboratoryFetch;
signal?: AbortSignal;
endpointRoot?: string;
onProgress?: (progress: M4ThreatPlaybackProgress) => void;
} = {},
): Promise<M4ThreatPlaybackPointPack> {
onProgress?.({ phase: "manifest", loadedBytes: 0, totalBytes: 0 });
const manifest = await fetchM4ThreatPlaybackManifest(result, {
fetcher,
signal,
endpointRoot,
});
const response = await fetcher(manifest.track.url, {
headers: { Accept: "application/octet-stream" },
signal,
});
if (!response.ok) throw new M4ThreatContractError(`M4.6 playback points: HTTP ${response.status}.`);
const buffer = await response.arrayBuffer();
if (buffer.byteLength !== manifest.track.byteLength) {
throw new M4ThreatContractError("M4.6 playback points: неверный размер.");
}
onProgress?.({ phase: "verify", loadedBytes: buffer.byteLength, totalBytes: buffer.byteLength });
if (await playbackSha256Hex(buffer) !== manifest.track.sha256) {
throw new M4ThreatContractError("M4.6 playback points: SHA-256 не совпал.");
}
onProgress?.({ phase: "ready", loadedBytes: buffer.byteLength, totalBytes: buffer.byteLength });
return {
resultId: manifest.resultId,
frameCount: manifest.frameCount,
pointCount: manifest.pointCount,
pointOffsets: manifest.pointOffsets,
pointsMapXyzM: new Float32Array(buffer),
};
}
export async function fetchM4ThreatCameraPointOverlay(
result: string,
sequence: number,
@@ -0,0 +1,432 @@
import type { LaboratoryFetch } from "./advancedResults";
const RESULT_ID = /^lab-v1-vegetation-shadow-[a-f0-9]{64}$/;
const SHA256 = /^[a-f0-9]{64}$/;
const CANDIDATES = ["ddrnet", "ppliteseg"] as const;
const ROUTE_MODES = ["source", "ddrnet", "ppliteseg", "urban", "rural", "offroad"] as const;
const VALIDATION_ASSETS = [
"source",
"truth",
"ddrnet",
"ppliteseg",
"ddrnet_error",
"ppliteseg_error",
] as const;
export type VegetationCandidateKey = typeof CANDIDATES[number];
export type VegetationRouteMode = typeof ROUTE_MODES[number];
export interface VegetationVisualFocus {
className: string;
labelId: number;
truthPixels: number;
truthFraction: number;
stratumRank: number;
}
export interface VegetationCandidateMetrics {
candidate: VegetationCandidateKey;
loadedModelName: string;
checkpointSha256: string;
meanIouPercent: number;
publishedMeanIouPercent: number;
vegetationMeanIouPercent: number;
validationLatencyP95Ms: number;
validationThroughputFps: number;
shadowLatencyP95Ms: number;
shadowThroughputFps: number;
shadowPrewarmLatencyMs: number;
peakReservedVramBytes: number;
gpuName: string;
}
export interface VegetationVisualCase {
caseId: string;
sourceKind: "goose" | "ravnoves";
width: number;
height: number;
centerCropXyxy: readonly [number, number, number, number];
outsideCropState: "undefined" | "not-applicable";
focus: VegetationVisualFocus | null;
assets: Readonly<Record<string, string>>;
}
export interface VegetationVideoSemanticClass {
classId: number;
label: string;
colorRgb: readonly [number, number, number];
disposition: "prediction" | "undefined";
}
export interface VegetationRouteVideo {
workerResultId: string;
m47ReferenceGraphResultId: string;
baseM4ResultId: string;
frameCount: 4489;
width: 800;
height: 600;
centerCropXyxy: readonly [100, 0, 700, 600];
outsideCropState: "undefined";
taxonomy: readonly VegetationVideoSemanticClass[];
aggregatePredictionPixels: readonly number[];
}
export interface VegetationShadowResult {
resultId: string;
createdAtUtc: string;
status: "visual-shadow-ready-policy-not-authorized";
selectedCandidate: VegetationCandidateKey;
candidates: readonly VegetationCandidateMetrics[];
routeCases: readonly VegetationVisualCase[];
validationCases: readonly VegetationVisualCase[];
routeVideo: VegetationRouteVideo | null;
limitations: readonly string[];
visualShadowReady: true;
missionPolicyReadyForConfiguration: true;
authority: {
commandsEnabled: false;
navigationOrSafetyAccepted: false;
actuationAccepted: false;
cameraSemanticsCanClearRigidGeometry: false;
};
}
export class VegetationShadowContractError extends Error {}
function objectValue(value: unknown, label: string): Record<string, unknown> {
if (!value || typeof value !== "object" || Array.isArray(value)) {
throw new VegetationShadowContractError(`${label}: ожидался объект.`);
}
return value as Record<string, unknown>;
}
function arrayValue(value: unknown, label: string): readonly unknown[] {
if (!Array.isArray(value)) throw new VegetationShadowContractError(`${label}: ожидался массив.`);
return value;
}
function textValue(value: unknown, label: string): string {
if (typeof value !== "string" || !value.trim()) {
throw new VegetationShadowContractError(`${label}: ожидалась строка.`);
}
return value;
}
function numberValue(value: unknown, label: string): number {
if (typeof value !== "number" || !Number.isFinite(value)) {
throw new VegetationShadowContractError(`${label}: ожидалось число.`);
}
return value;
}
function integerValue(value: unknown, label: string): number {
const parsed = numberValue(value, label);
if (!Number.isInteger(parsed) || parsed < 0) {
throw new VegetationShadowContractError(`${label}: ожидалось неотрицательное целое.`);
}
return parsed;
}
function exact(value: unknown, expected: unknown, label: string): void {
if (value !== expected) {
throw new VegetationShadowContractError(`${label}: контракт изменён.`);
}
}
function candidateKey(value: unknown, label: string): VegetationCandidateKey {
if (value !== "ddrnet" && value !== "ppliteseg") {
throw new VegetationShadowContractError(`${label}: неизвестная модель.`);
}
return value;
}
function candidateMetricsValue(
value: unknown,
candidate: VegetationCandidateKey,
): VegetationCandidateMetrics {
const row = objectValue(value, `vegetation.metrics.${candidate}`);
const validation = objectValue(row.validation_metrics, `${candidate}.validation_metrics`);
const validationTiming = objectValue(row.validation_timing, `${candidate}.validation_timing`);
const shadowTiming = objectValue(row.shadow_timing, `${candidate}.shadow_timing`);
const resource = objectValue(row.resource, `${candidate}.resource`);
const checkpointSha256 = textValue(row.checkpoint_sha256, `${candidate}.checkpoint_sha256`);
if (!SHA256.test(checkpointSha256)) {
throw new VegetationShadowContractError(`${candidate}.checkpoint_sha256: digest invalid.`);
}
return {
candidate,
loadedModelName: textValue(row.loaded_model_name, `${candidate}.loaded_model_name`),
checkpointSha256,
meanIouPercent: numberValue(validation.mean_iou_percent, `${candidate}.mean_iou_percent`),
publishedMeanIouPercent: numberValue(
validation.published_mean_iou_percent,
`${candidate}.published_mean_iou_percent`,
),
vegetationMeanIouPercent: numberValue(validation.vegetation_mean_iou, `${candidate}.vegetation_mean_iou`) * 100,
validationLatencyP95Ms: numberValue(validationTiming.latency_ms_p95, `${candidate}.validation_latency_p95`),
validationThroughputFps: numberValue(
validationTiming.throughput_fps_from_mean_inference,
`${candidate}.validation_throughput`,
),
shadowLatencyP95Ms: numberValue(shadowTiming.latency_ms_p95, `${candidate}.shadow_latency_p95`),
shadowThroughputFps: numberValue(
shadowTiming.throughput_fps_from_mean_inference,
`${candidate}.shadow_throughput`,
),
shadowPrewarmLatencyMs: numberValue(
shadowTiming.prewarm_latency_ms,
`${candidate}.shadow_prewarm_latency`,
),
peakReservedVramBytes: integerValue(resource.peak_reserved_vram_bytes, `${candidate}.vram`),
gpuName: textValue(resource.gpu_name, `${candidate}.gpu_name`),
};
}
function visualCaseValue(
value: unknown,
resultId: string,
expectedKind: "goose" | "ravnoves",
): VegetationVisualCase {
const row = objectValue(value, `vegetation.${expectedKind}.case`);
exact(row.source_kind, expectedKind, "vegetation.case.source_kind");
const caseId = textValue(row.case_id, "vegetation.case.case_id");
const crop = arrayValue(row.center_crop_xyxy, "vegetation.case.center_crop_xyxy")
.map((item, index) => integerValue(item, `vegetation.case.crop[${index}]`));
if (crop.length !== 4) {
throw new VegetationShadowContractError("vegetation.case.center_crop_xyxy: размер изменён.");
}
const assets = objectValue(row.assets, "vegetation.case.assets");
const projected: Record<string, string> = {};
for (const [key, raw] of Object.entries(assets)) {
const descriptor = objectValue(raw, `vegetation.case.assets.${key}`);
const path = textValue(descriptor.path, `vegetation.case.assets.${key}.path`);
const sha256 = textValue(descriptor.sha256, `vegetation.case.assets.${key}.sha256`);
if (!SHA256.test(sha256) || !path.startsWith(`visual/${expectedKind}/${caseId}/`)) {
throw new VegetationShadowContractError(`vegetation.case.assets.${key}: proof invalid.`);
}
projected[key] = `/api/v1/laboratory/vegetation-shadow/${encodeURIComponent(resultId)}/assets/${path
.split("/")
.map(encodeURIComponent)
.join("/")}`;
}
const expectedAssets = expectedKind === "goose"
? VALIDATION_ASSETS
: ROUTE_MODES;
if (expectedAssets.some((key) => !projected[key])) {
throw new VegetationShadowContractError(`vegetation.case.assets: ${expectedKind} набор неполон.`);
}
const outsideCropState = row.outside_crop_state;
if (outsideCropState !== "undefined" && outsideCropState !== "not-applicable") {
throw new VegetationShadowContractError("vegetation.case.outside_crop_state: контракт изменён.");
}
let focus: VegetationVisualFocus | null = null;
if (expectedKind === "goose") {
const rawFocus = objectValue(row.focus, "vegetation.case.focus");
const truthFraction = numberValue(rawFocus.truth_fraction, "vegetation.case.focus.truth_fraction");
if (truthFraction <= 0 || truthFraction > 1) {
throw new VegetationShadowContractError("vegetation.case.focus.truth_fraction: диапазон изменён.");
}
focus = {
className: textValue(rawFocus.class_name, "vegetation.case.focus.class_name"),
labelId: integerValue(rawFocus.label_id, "vegetation.case.focus.label_id"),
truthPixels: integerValue(rawFocus.truth_pixels, "vegetation.case.focus.truth_pixels"),
truthFraction,
stratumRank: integerValue(rawFocus.stratum_rank, "vegetation.case.focus.stratum_rank"),
};
} else if (row.focus !== null) {
throw new VegetationShadowContractError("vegetation.case.focus: RAVNOVES focus отсутствует.");
}
return {
caseId,
sourceKind: expectedKind,
width: integerValue(row.width, "vegetation.case.width"),
height: integerValue(row.height, "vegetation.case.height"),
centerCropXyxy: crop as unknown as readonly [number, number, number, number],
outsideCropState,
focus,
assets: projected,
};
}
function routeVideoValue(value: unknown): VegetationRouteVideo | null {
if (value === null || value === undefined) return null;
const row = objectValue(value, "vegetation.route_video");
const workerResultId = textValue(row.worker_result_id, "vegetation.route_video.worker_result_id");
const m47ReferenceGraphResultId = textValue(
row.m47_reference_graph_result_id,
"vegetation.route_video.m47_reference_graph_result_id",
);
const baseM4ResultId = textValue(row.base_m4_result_id, "vegetation.route_video.base_m4_result_id");
if (
!/^lab-v1-ravnoves-video-ddrnet-[a-f0-9]{64}$/.test(workerResultId)
|| !/^m47-reference-graph-lab-[a-f0-9]{64}$/.test(m47ReferenceGraphResultId)
|| !/^m4-threat-replay-[a-f0-9]{64}$/.test(baseM4ResultId)
) {
throw new VegetationShadowContractError("vegetation.route_video: identity invalid.");
}
exact(row.frame_count, 4489, "vegetation.route_video.frame_count");
exact(row.width, 800, "vegetation.route_video.width");
exact(row.height, 600, "vegetation.route_video.height");
exact(row.outside_crop_state, "undefined", "vegetation.route_video.outside_crop_state");
exact(
row.sequence_binding,
"sequence-0-to-masks/frame-000001.png",
"vegetation.route_video.sequence_binding",
);
const crop = arrayValue(row.center_crop_xyxy, "vegetation.route_video.center_crop_xyxy")
.map((item, index) => integerValue(item, `vegetation.route_video.crop[${index}]`));
if (crop.join(",") !== "100,0,700,600") {
throw new VegetationShadowContractError("vegetation.route_video: crop contract changed.");
}
const taxonomy = objectValue(row.taxonomy, "vegetation.route_video.taxonomy");
exact(
taxonomy.schema_version,
"missioncore.lab-v1-vegetation-taxonomy/v1",
"vegetation.route_video.taxonomy.schema",
);
const classes = arrayValue(taxonomy.classes, "vegetation.route_video.taxonomy.classes")
.map((value, expectedId): VegetationVideoSemanticClass => {
const item = objectValue(value, `vegetation.route_video.taxonomy[${expectedId}]`);
const classId = integerValue(item.class_id, `vegetation.route_video.class_id[${expectedId}]`);
if (classId !== expectedId) {
throw new VegetationShadowContractError("vegetation.route_video: taxonomy order changed.");
}
const color = arrayValue(item.color_rgb, `vegetation.route_video.color[${expectedId}]`)
.map((channel, index) => integerValue(channel, `vegetation.route_video.color[${expectedId}][${index}]`));
if (color.length !== 3 || color.some((channel) => channel > 255)) {
throw new VegetationShadowContractError("vegetation.route_video: taxonomy color invalid.");
}
const disposition: VegetationVideoSemanticClass["disposition"] = expectedId === 0
? "undefined"
: "prediction";
if (item.disposition !== disposition) {
throw new VegetationShadowContractError("vegetation.route_video: taxonomy disposition changed.");
}
return {
classId,
label: textValue(item.label, `vegetation.route_video.label[${expectedId}]`),
colorRgb: color as unknown as readonly [number, number, number],
disposition,
};
});
if (classes.length !== 64) {
throw new VegetationShadowContractError("vegetation.route_video: taxonomy must contain 64 classes.");
}
const aggregatePredictionPixels = arrayValue(
row.aggregate_prediction_pixels,
"vegetation.route_video.aggregate_prediction_pixels",
).map((value, index) => integerValue(value, `vegetation.route_video.pixels[${index}]`));
if (aggregatePredictionPixels.length !== 64) {
throw new VegetationShadowContractError("vegetation.route_video: class accounting changed.");
}
const maskArchive = objectValue(row.mask_archive, "vegetation.route_video.mask_archive");
exact(maskArchive.path, "video/ddrnet-semantic-masks.zip", "vegetation.route_video.mask_archive.path");
const archiveSha256 = textValue(maskArchive.sha256, "vegetation.route_video.mask_archive.sha256");
if (!SHA256.test(archiveSha256)) {
throw new VegetationShadowContractError("vegetation.route_video: archive digest invalid.");
}
integerValue(maskArchive.byte_length, "vegetation.route_video.mask_archive.byte_length");
return {
workerResultId,
m47ReferenceGraphResultId,
baseM4ResultId,
frameCount: 4489,
width: 800,
height: 600,
centerCropXyxy: [100, 0, 700, 600],
outsideCropState: "undefined",
taxonomy: classes,
aggregatePredictionPixels,
};
}
function parseResult(value: unknown, resultId: string): VegetationShadowResult {
const payload = objectValue(value, "Vegetation LAB");
exact(payload.schema_version, "missioncore.lab-v1-vegetation-shadow/v1", "vegetation.schema");
exact(payload.result_id, resultId, "vegetation.result_id");
exact(payload.status, "visual-shadow-ready-policy-not-authorized", "vegetation.status");
exact(payload.ground_truth, false, "vegetation.ground_truth");
exact(payload.access, "read-only", "vegetation.access");
const identity = objectValue(payload.identity, "vegetation.identity");
const metrics = objectValue(payload.metrics, "vegetation.metrics");
const candidates = objectValue(metrics.candidates, "vegetation.metrics.candidates");
const decision = objectValue(payload.decision, "vegetation.decision");
const authority = objectValue(payload.authority, "vegetation.authority");
const catalogs = objectValue(payload.catalogs, "vegetation.catalogs");
const selectedCandidate = candidateKey(identity.selected_candidate, "vegetation.selected_candidate");
exact(decision.selected_candidate, selectedCandidate, "vegetation.decision.selected_candidate");
exact(decision.visual_shadow_ready, true, "vegetation.decision.visual_shadow_ready");
exact(
decision.mission_policy_ready_for_configuration,
true,
"vegetation.decision.mission_policy_ready_for_configuration",
);
exact(decision.navigation_accepted, false, "vegetation.decision.navigation_accepted");
exact(decision.production_accepted, false, "vegetation.decision.production_accepted");
exact(authority.commands_enabled, false, "vegetation.authority.commands_enabled");
exact(
authority.navigation_or_safety_accepted,
false,
"vegetation.authority.navigation_or_safety_accepted",
);
exact(authority.actuation_accepted, false, "vegetation.authority.actuation_accepted");
exact(
authority.camera_semantics_can_clear_rigid_geometry,
false,
"vegetation.authority.camera_semantics_can_clear_rigid_geometry",
);
const routeCases = arrayValue(catalogs.ravnoves, "vegetation.catalogs.ravnoves")
.map((item) => visualCaseValue(item, resultId, "ravnoves"));
const validationCases = arrayValue(catalogs.goose, "vegetation.catalogs.goose")
.map((item) => visualCaseValue(item, resultId, "goose"));
if (routeCases.length !== 0 || validationCases.length !== 12) {
throw new VegetationShadowContractError("vegetation.catalogs: ожидалось 12 truth-backed GOOSE случаев без route viewer.");
}
return {
resultId,
createdAtUtc: textValue(payload.created_at_utc, "vegetation.created_at_utc"),
status: "visual-shadow-ready-policy-not-authorized",
selectedCandidate,
candidates: CANDIDATES.map((candidate) => candidateMetricsValue(candidates[candidate], candidate)),
routeCases,
validationCases,
routeVideo: routeVideoValue(payload.route_video),
limitations: arrayValue(payload.limitations, "vegetation.limitations")
.map((item, index) => textValue(item, `vegetation.limitations[${index}]`)),
visualShadowReady: true,
missionPolicyReadyForConfiguration: true,
authority: {
commandsEnabled: false,
navigationOrSafetyAccepted: false,
actuationAccepted: false,
cameraSemanticsCanClearRigidGeometry: false,
},
};
}
export function vegetationVideoMaskUrl(resultId: string, sequence: number): string {
if (!RESULT_ID.test(resultId) || !Number.isInteger(sequence) || sequence < 0 || sequence >= 4489) {
throw new VegetationShadowContractError("Vegetation video mask identity недопустима.");
}
return `/api/v1/laboratory/vegetation-shadow/${encodeURIComponent(resultId)}/masks/${sequence}`;
}
export async function fetchVegetationShadowResult(
resultId: string,
{
fetcher = fetch,
signal,
}: { fetcher?: LaboratoryFetch; signal?: AbortSignal } = {},
): Promise<VegetationShadowResult> {
if (!RESULT_ID.test(resultId)) {
throw new VegetationShadowContractError("Vegetation LAB identity недопустима.");
}
const response = await fetcher(
`/api/v1/laboratory/vegetation-shadow/${encodeURIComponent(resultId)}`,
{ method: "GET", headers: { Accept: "application/json" }, signal },
);
if (!response.ok) {
throw new VegetationShadowContractError(`Vegetation LAB недоступна: HTTP ${response.status}.`);
}
return parseResult(await response.json(), resultId);
}
@@ -0,0 +1,724 @@
export type SimulationSceneType = "interior" | "outdoor" | "object";
export type SimulationViewerQuality = "low" | "medium" | "high" | "ultra" | "maximum";
export interface SimulationEulerRotation {
x: number;
y: number;
z: number;
}
export type SimulationProjectStatus =
| "uploading"
| "queued"
| "processing"
| "importing"
| "ready"
| "failed";
export interface SimulationSourceFile {
fileId: string;
logicalPath: string;
byteLength: number;
uploadedBytes: number;
sha256: string | null;
}
export interface SimulationWorldManifest {
schemaVersion: "missioncore.simulation-world-manifest/v1";
projectId: string;
visual: {
previewSogUrl: string | null;
streamedSogUrl: string | null;
};
collision: {
meshUrl: string | null;
available: boolean;
};
transforms: {
worldFromVisual: number[];
worldFromCollision: number[];
};
}
export interface SimulationViewerSettings {
schemaVersion: "missioncore.simulation-viewer-settings/v3";
quality: SimulationViewerQuality;
visual: { rotationDegrees: SimulationEulerRotation };
collision: { rotationDegrees: SimulationEulerRotation };
camera: { invertHorizontal: boolean; invertVertical: boolean };
ugv: SimulationUgvPreset;
}
export interface SimulationUgvPreset {
presetName: string;
massKg: number;
dimensionsMeters: {
length: number;
width: number;
height: number;
groundClearance: number;
};
maxSpeedMetersPerSecond: number;
maxTurnRateDegrees: number;
invertSteering: boolean;
}
export const SIMULATION_UGV_EXACT_VALUE_LIMITS = {
massKg: { min: 0.01, max: 1_000_000_000 },
length: { min: 0.01, max: 1_000_000_000 },
width: { min: 0.01, max: 1_000_000_000 },
height: { min: 0.07, max: 1_000_000_000 },
groundClearance: { min: 0.01, max: 1_000_000_000 },
maxSpeedMetersPerSecond: { min: 0, max: 1_000_000_000 },
maxTurnRateDegrees: { min: 0, max: 1_000_000_000 },
} as const;
export interface SimulationProject {
schemaVersion: "missioncore.simulation-project/v1";
projectId: string;
name: string;
sceneType: SimulationSceneType;
status: SimulationProjectStatus;
source: {
kind: "archive" | "folder";
totalByteLength: number;
uploadedByteLength: number;
files: SimulationSourceFile[];
bundleSha256: string | null;
};
provider: {
providerId: "gaussian-pipeline";
jobId: string | null;
jobCreatedAtUtc: string | null;
state: string | null;
stateStartedAtUtc: string | null;
progress: { completed_steps?: number; total_steps?: number; stage?: string } | null;
runtime: { source_revision?: string; image_digest?: string } | null;
};
artifacts: Array<{
role: string;
logicalPath: string;
mediaType: string;
sha256: string;
byteLength: number;
}>;
worldManifest: SimulationWorldManifest | null;
viewerSettings: SimulationViewerSettings;
error: string | null;
createdAtUtc: string;
updatedAtUtc: string;
}
export interface SimulationUploadCandidate {
file: File;
logicalPath: string;
}
export interface SimulationUploadProgress {
uploadedBytes: number;
totalBytes: number;
currentPath: string;
bytesPerSecond: number | null;
estimatedSecondsRemaining: number | null;
}
const API_ROOT = "/api/v1/simulation-worlds/projects";
const CHUNK_BYTES = 8 * 1024 * 1024;
const MAX_UPLOAD_ATTEMPTS = 3;
const REFERENCE_SOURCE_BYTES = 4_100_808_854;
const REFERENCE_PREPARATION_SECONDS = 187;
const REFERENCE_STREAM_SECONDS = 2_317;
export interface SimulationProcessingEstimate {
percent: number;
estimatedSecondsRemaining: number | null;
}
export function estimateSimulationProcessing(
project: SimulationProject,
nowMilliseconds = Date.now(),
): SimulationProcessingEstimate | null {
if (project.status !== "processing") return null;
const jobStarted = Date.parse(project.provider.jobCreatedAtUtc ?? "");
if (!Number.isFinite(jobStarted)) return null;
const elapsedSeconds = Math.max(0, (nowMilliseconds - jobStarted) / 1_000);
const sourceScale = clamp(
project.source.totalByteLength / REFERENCE_SOURCE_BYTES,
0.1,
4,
);
let expectedSeconds = (
REFERENCE_PREPARATION_SECONDS + REFERENCE_STREAM_SECONDS
) * sourceScale;
if (project.provider.state === "building_streamed_sog") {
const streamedStarted = Date.parse(project.provider.stateStartedAtUtc ?? "");
if (Number.isFinite(streamedStarted) && streamedStarted >= jobStarted) {
const preparationSeconds = Math.max(1, (streamedStarted - jobStarted) / 1_000);
const observedLoad = clamp(
preparationSeconds / (REFERENCE_PREPARATION_SECONDS * sourceScale),
0.5,
2,
);
expectedSeconds = preparationSeconds
+ REFERENCE_STREAM_SECONDS * sourceScale * observedLoad;
}
}
const rawPercent = expectedSeconds > 0 ? elapsedSeconds / expectedSeconds * 100 : 0;
if (rawPercent >= 100) {
return { percent: 99, estimatedSecondsRemaining: null };
}
return {
percent: Math.max(1, Math.floor(rawPercent)),
estimatedSecondsRemaining: Math.max(0, Math.ceil(expectedSeconds - elapsedSeconds)),
};
}
export async function fetchSimulationProjects(signal?: AbortSignal): Promise<SimulationProject[]> {
const response = await fetch(API_ROOT, { signal, cache: "no-store" });
const document = await jsonResponse(response);
const record = objectValue(document, "simulation project page");
exactKeys(record, ["schema_version", "projects"], "simulation project page");
if (record.schema_version !== "missioncore.simulation-project-page/v1" || !Array.isArray(record.projects)) {
throw new Error("Каталог симуляций вернул неподдерживаемый контракт.");
}
return record.projects.map(parseProject);
}
export async function createAndUploadSimulationProject(
name: string,
sceneType: SimulationSceneType,
candidates: SimulationUploadCandidate[],
onProgress: (progress: SimulationUploadProgress) => void,
): Promise<SimulationProject> {
const project = await createSimulationProject(name, sceneType, candidates);
return uploadSimulationProjectSource(project, candidates, onProgress);
}
export async function createSimulationProject(
name: string,
sceneType: SimulationSceneType,
candidates: SimulationUploadCandidate[],
): Promise<SimulationProject> {
const sourceKind = sourceKindFor(candidates);
const createdResponse = await fetch(API_ROOT, {
method: "POST",
headers: { "Content-Type": "application/json" },
body: JSON.stringify({
schema_version: "missioncore.simulation-project-create/v1",
name,
scene_type: sceneType,
source_kind: sourceKind,
files: candidates.map((candidate) => ({
logical_path: candidate.logicalPath,
byte_length: candidate.file.size,
})),
}),
});
return parseProject(await jsonResponse(createdResponse));
}
export async function uploadSimulationProjectSource(
project: SimulationProject,
candidates: SimulationUploadCandidate[],
onProgress: (progress: SimulationUploadProgress) => void,
signal?: AbortSignal,
): Promise<SimulationProject> {
const byPath = new Map(candidates.map((candidate) => [candidate.logicalPath, candidate.file]));
const totalBytes = candidates.reduce((total, candidate) => total + candidate.file.size, 0);
let confirmedBytes = 0;
let sampleBytes = 0;
let sampleAt = performance.now();
let smoothedBytesPerSecond: number | null = null;
const reportProgress = (currentPath: string) => {
const remainingBytes = Math.max(0, totalBytes - confirmedBytes);
onProgress({
uploadedBytes: confirmedBytes,
totalBytes,
currentPath,
bytesPerSecond: smoothedBytesPerSecond,
estimatedSecondsRemaining: smoothedBytesPerSecond && remainingBytes > 0
? Math.ceil(remainingBytes / smoothedBytesPerSecond)
: remainingBytes === 0 ? 0 : null,
});
};
for (const sourceFile of project.source.files) {
signal?.throwIfAborted();
const file = byPath.get(sourceFile.logicalPath);
if (!file) throw new Error(`Сервер изменил состав источника: ${sourceFile.logicalPath}`);
const uploadUrl = `${API_ROOT}/${encodeURIComponent(project.projectId)}/source/${encodeURIComponent(sourceFile.fileId)}`;
let offset = await readUploadOffset(uploadUrl, file.size, signal);
confirmedBytes += offset;
sampleBytes = confirmedBytes;
sampleAt = performance.now();
reportProgress(sourceFile.logicalPath);
while (offset < file.size) {
signal?.throwIfAborted();
const nextOffset = Math.min(file.size, offset + CHUNK_BYTES);
const confirmedOffset = await uploadChunk(uploadUrl, file, offset, nextOffset, signal);
confirmedBytes += confirmedOffset - offset;
offset = confirmedOffset;
const now = performance.now();
const elapsedSeconds = (now - sampleAt) / 1_000;
const transferredBytes = confirmedBytes - sampleBytes;
if (elapsedSeconds > 0 && transferredBytes > 0) {
const currentBytesPerSecond = transferredBytes / elapsedSeconds;
smoothedBytesPerSecond = smoothedBytesPerSecond === null
? currentBytesPerSecond
: smoothedBytesPerSecond * 0.7 + currentBytesPerSecond * 0.3;
}
sampleBytes = confirmedBytes;
sampleAt = now;
reportProgress(sourceFile.logicalPath);
}
}
return startSimulationProjectBuild(project.projectId, signal);
}
export async function startSimulationProjectBuild(
projectId: string,
signal?: AbortSignal,
): Promise<SimulationProject> {
const buildResponse = await fetch(`${API_ROOT}/${encodeURIComponent(projectId)}/build`, {
method: "POST",
headers: { "Content-Type": "application/json" },
body: "{}",
signal,
});
return parseProject(await jsonResponse(buildResponse));
}
async function readUploadOffset(
uploadUrl: string,
fileSize: number,
signal?: AbortSignal,
): Promise<number> {
const head = await fetch(uploadUrl, { method: "HEAD", cache: "no-store", signal });
if (!head.ok) await jsonResponse(head);
const value = head.headers.get("Upload-Offset");
if (!value || !/^\d+$/.test(value)) {
throw new Error("Сервер не вернул смещение resumable-загрузки.");
}
const offset = Number(value);
if (!Number.isSafeInteger(offset) || offset < 0 || offset > fileSize) {
throw new Error("Сервер вернул некорректное смещение загрузки.");
}
return offset;
}
async function uploadChunk(
uploadUrl: string,
file: File,
offset: number,
nextOffset: number,
signal?: AbortSignal,
): Promise<number> {
let lastFailure: unknown = null;
for (let attempt = 1; attempt <= MAX_UPLOAD_ATTEMPTS; attempt += 1) {
let response: Response | null = null;
try {
signal?.throwIfAborted();
response = await fetch(uploadUrl, {
method: "PATCH",
headers: {
"Content-Type": "application/offset+octet-stream",
"Upload-Offset": String(offset),
},
body: file.slice(offset, nextOffset),
signal,
});
} catch (caught) {
if (signal?.aborted) throw caught;
lastFailure = caught;
}
if (response?.ok) {
const confirmed = response.headers.get("Upload-Offset");
if (confirmed && Number(confirmed) === nextOffset) return nextOffset;
throw new Error("Сервер не подтвердил непрерывность загрузки.");
}
if (
response &&
((response.status < 500 && response.status !== 409) ||
(response.status >= 500 && attempt === MAX_UPLOAD_ATTEMPTS))
) {
await jsonResponse(response);
throw new Error("Mission Core отклонил блок загрузки.");
}
if (response) {
lastFailure = new Error(`Mission Core временно вернул HTTP ${response.status}.`);
}
try {
const confirmed = await readUploadOffset(uploadUrl, file.size, signal);
if (confirmed === nextOffset) return confirmed;
if (confirmed !== offset) {
throw new Error("Сервер подтвердил неожиданное смещение загрузки.");
}
} catch (caught) {
lastFailure = caught;
}
}
throw lastFailure instanceof Error
? lastFailure
: new Error("Не удалось продолжить resumable-загрузку.");
}
export async function updateSimulationProject(
projectId: string,
name: string,
sceneType: SimulationSceneType,
): Promise<SimulationProject> {
const response = await fetch(`${API_ROOT}/${encodeURIComponent(projectId)}`, {
method: "PATCH",
headers: { "Content-Type": "application/json" },
body: JSON.stringify({
schema_version: "missioncore.simulation-project-update/v1",
name,
scene_type: sceneType,
}),
});
return parseProject(await jsonResponse(response));
}
export async function saveSimulationViewerSettings(
projectId: string,
settings: SimulationViewerSettings,
): Promise<SimulationProject> {
const response = await fetch(
`${API_ROOT}/${encodeURIComponent(projectId)}/viewer-settings`,
{
method: "PUT",
headers: { "Content-Type": "application/json" },
body: JSON.stringify({
schema_version: settings.schemaVersion,
quality: settings.quality,
visual: { rotation_degrees: settings.visual.rotationDegrees },
collision: { rotation_degrees: settings.collision.rotationDegrees },
camera: {
invert_horizontal: settings.camera.invertHorizontal,
invert_vertical: settings.camera.invertVertical,
},
ugv: {
preset_name: settings.ugv.presetName,
mass_kg: settings.ugv.massKg,
dimensions_m: {
length: settings.ugv.dimensionsMeters.length,
width: settings.ugv.dimensionsMeters.width,
height: settings.ugv.dimensionsMeters.height,
ground_clearance: settings.ugv.dimensionsMeters.groundClearance,
},
max_speed_mps: settings.ugv.maxSpeedMetersPerSecond,
max_turn_rate_degrees: settings.ugv.maxTurnRateDegrees,
invert_steering: settings.ugv.invertSteering,
},
}),
},
);
return parseProject(await jsonResponse(response));
}
export const retrySimulationProject = startSimulationProjectBuild;
export async function deleteSimulationProject(projectId: string): Promise<void> {
const response = await fetch(`${API_ROOT}/${encodeURIComponent(projectId)}`, { method: "DELETE" });
if (!response.ok) await jsonResponse(response);
}
function sourceKindFor(candidates: SimulationUploadCandidate[]): "archive" | "folder" {
if (candidates.length === 1 && /\.(zip|rar|7z)$/i.test(candidates[0]?.logicalPath ?? "")) {
return "archive";
}
if (candidates.some((candidate) => /\.(zip|rar|7z)$/i.test(candidate.logicalPath))) {
throw new Error("Архив загружается отдельно; нельзя смешивать его с файлами папки.");
}
return "folder";
}
function parseProject(value: unknown): SimulationProject {
const record = objectValue(value, "simulation project");
exactKeys(record, [
"schema_version", "project_id", "name", "scene_type", "status", "source", "provider",
"artifacts", "world_manifest", "viewer_settings", "error", "created_at_utc", "updated_at_utc",
], "simulation project");
if (record.schema_version !== "missioncore.simulation-project/v1") {
throw new Error("Проект симуляции вернул неподдерживаемую версию.");
}
const source = objectValue(record.source, "simulation source");
const provider = objectValue(record.provider, "simulation provider");
if (!Array.isArray(source.files) || !Array.isArray(record.artifacts)) {
throw new Error("Проект симуляции вернул некорректный состав файлов.");
}
return {
schemaVersion: "missioncore.simulation-project/v1",
projectId: stringValue(record.project_id, "project id"),
name: stringValue(record.name, "project name"),
sceneType: sceneTypeValue(record.scene_type),
status: statusValue(record.status),
source: {
kind: source.kind === "archive" ? "archive" : source.kind === "folder" ? "folder" : invalid("source kind"),
totalByteLength: numberValue(source.total_byte_length, "source bytes"),
uploadedByteLength: numberValue(source.uploaded_byte_length, "uploaded bytes"),
files: source.files.map((item) => {
const file = objectValue(item, "source file");
return {
fileId: stringValue(file.file_id, "source file id"),
logicalPath: stringValue(file.logical_path, "source logical path"),
byteLength: numberValue(file.byte_length, "source file bytes"),
uploadedBytes: numberValue(file.uploaded_bytes, "source uploaded bytes"),
sha256: nullableString(file.sha256, "source sha256"),
};
}),
bundleSha256: nullableString(source.bundle_sha256, "bundle sha256"),
},
provider: {
providerId: provider.provider_id === "gaussian-pipeline" ? "gaussian-pipeline" : invalid("provider id"),
jobId: nullableString(provider.job_id, "provider job id"),
jobCreatedAtUtc: nullableString(provider.job_created_at_utc ?? null, "provider job creation"),
state: nullableString(provider.state, "provider state"),
stateStartedAtUtc: nullableString(provider.state_started_at_utc ?? null, "provider state start"),
progress: provider.progress === null ? null : objectValue(provider.progress, "provider progress"),
runtime: provider.runtime === null ? null : objectValue(provider.runtime, "provider runtime"),
},
artifacts: record.artifacts.map((item) => {
const artifact = objectValue(item, "simulation artifact");
return {
role: stringValue(artifact.role, "artifact role"),
logicalPath: stringValue(artifact.logical_path, "artifact path"),
mediaType: stringValue(artifact.media_type, "artifact media type"),
sha256: stringValue(artifact.sha256, "artifact sha256"),
byteLength: numberValue(artifact.byte_length, "artifact bytes"),
};
}),
worldManifest: record.world_manifest === null ? null : parseWorldManifest(record.world_manifest),
viewerSettings: parseViewerSettings(record.viewer_settings),
error: nullableString(record.error, "project error"),
createdAtUtc: stringValue(record.created_at_utc, "created at"),
updatedAtUtc: stringValue(record.updated_at_utc, "updated at"),
};
}
function parseViewerSettings(value: unknown): SimulationViewerSettings {
const record = objectValue(value, "viewer settings");
exactKeys(record, ["schema_version", "quality", "visual", "collision", "camera", "ugv"], "viewer settings");
if (record.schema_version !== "missioncore.simulation-viewer-settings/v3") {
throw new Error("Настройки сцены вернули неподдерживаемую версию.");
}
const visual = parseLayerViewerSettings(record.visual, "visual settings");
const collision = parseLayerViewerSettings(record.collision, "collision settings");
const camera = objectValue(record.camera, "camera settings");
exactKeys(camera, ["invert_horizontal", "invert_vertical"], "camera settings");
const ugv = parseUgvPreset(record.ugv);
return {
schemaVersion: "missioncore.simulation-viewer-settings/v3",
quality: qualityValue(record.quality),
visual,
collision,
camera: {
invertHorizontal: booleanValue(camera.invert_horizontal, "horizontal camera inversion"),
invertVertical: booleanValue(camera.invert_vertical, "vertical camera inversion"),
},
ugv,
};
}
function parseUgvPreset(value: unknown): SimulationUgvPreset {
const record = objectValue(value, "UGV settings");
exactKeys(
record,
["preset_name", "mass_kg", "dimensions_m", "max_speed_mps", "max_turn_rate_degrees", "invert_steering"],
"UGV settings",
);
const dimensions = objectValue(record.dimensions_m, "UGV dimensions");
exactKeys(dimensions, ["length", "width", "height", "ground_clearance"], "UGV dimensions");
const presetName = stringValue(record.preset_name, "UGV preset name");
if (presetName.length > 80) return invalid("UGV preset name");
const height = finiteNumberValue(
dimensions.height,
SIMULATION_UGV_EXACT_VALUE_LIMITS.height.min,
SIMULATION_UGV_EXACT_VALUE_LIMITS.height.max,
"UGV height",
);
const groundClearance = finiteNumberValue(
dimensions.ground_clearance,
SIMULATION_UGV_EXACT_VALUE_LIMITS.groundClearance.min,
SIMULATION_UGV_EXACT_VALUE_LIMITS.groundClearance.max,
"UGV ground clearance",
);
if (groundClearance >= height - 0.05) return invalid("UGV ground clearance");
return {
presetName,
massKg: finiteNumberValue(
record.mass_kg,
SIMULATION_UGV_EXACT_VALUE_LIMITS.massKg.min,
SIMULATION_UGV_EXACT_VALUE_LIMITS.massKg.max,
"UGV mass",
),
dimensionsMeters: {
length: finiteNumberValue(
dimensions.length,
SIMULATION_UGV_EXACT_VALUE_LIMITS.length.min,
SIMULATION_UGV_EXACT_VALUE_LIMITS.length.max,
"UGV length",
),
width: finiteNumberValue(
dimensions.width,
SIMULATION_UGV_EXACT_VALUE_LIMITS.width.min,
SIMULATION_UGV_EXACT_VALUE_LIMITS.width.max,
"UGV width",
),
height,
groundClearance,
},
maxSpeedMetersPerSecond: finiteNumberValue(
record.max_speed_mps,
SIMULATION_UGV_EXACT_VALUE_LIMITS.maxSpeedMetersPerSecond.min,
SIMULATION_UGV_EXACT_VALUE_LIMITS.maxSpeedMetersPerSecond.max,
"UGV maximum speed",
),
maxTurnRateDegrees: finiteNumberValue(
record.max_turn_rate_degrees,
SIMULATION_UGV_EXACT_VALUE_LIMITS.maxTurnRateDegrees.min,
SIMULATION_UGV_EXACT_VALUE_LIMITS.maxTurnRateDegrees.max,
"UGV maximum turn rate",
),
invertSteering: booleanValue(record.invert_steering, "UGV steering inversion"),
};
}
function parseLayerViewerSettings(
value: unknown,
label: string,
): { rotationDegrees: SimulationEulerRotation } {
const record = objectValue(value, label);
exactKeys(record, ["rotation_degrees"], label);
const rotation = objectValue(record.rotation_degrees, `${label} rotation`);
exactKeys(rotation, ["x", "y", "z"], `${label} rotation`);
return {
rotationDegrees: {
x: rotationValue(rotation.x, `${label} X rotation`),
y: rotationValue(rotation.y, `${label} Y rotation`),
z: rotationValue(rotation.z, `${label} Z rotation`),
},
};
}
function parseWorldManifest(value: unknown): SimulationWorldManifest {
const record = objectValue(value, "world manifest");
const visual = objectValue(record.visual, "visual manifest");
const collision = objectValue(record.collision, "collision manifest");
const transforms = objectValue(record.transforms, "world transforms");
if (record.schema_version !== "missioncore.simulation-world-manifest/v1") {
throw new Error("World manifest вернул неподдерживаемую версию.");
}
return {
schemaVersion: "missioncore.simulation-world-manifest/v1",
projectId: stringValue(record.project_id, "manifest project id"),
visual: {
previewSogUrl: nullableString(visual.preview_sog_url, "preview URL"),
streamedSogUrl: nullableString(visual.streamed_sog_url, "streamed URL"),
},
collision: {
meshUrl: nullableString(collision.mesh_url, "collision URL"),
available: booleanValue(collision.available, "collision availability"),
},
transforms: {
worldFromVisual: matrixValue(transforms.world_from_visual, "visual transform"),
worldFromCollision: matrixValue(transforms.world_from_collision, "collision transform"),
},
};
}
async function jsonResponse(response: Response): Promise<unknown> {
let value: unknown;
try {
value = await response.json();
} catch {
if (response.ok) return {};
throw new Error(`Mission Core вернул HTTP ${response.status}.`);
}
if (!response.ok) {
const detail = objectValue(value, "error response").detail;
throw new Error(typeof detail === "string" ? detail : `Mission Core вернул HTTP ${response.status}.`);
}
return value;
}
function objectValue(value: unknown, label: string): Record<string, any> {
if (typeof value !== "object" || value === null || Array.isArray(value)) {
throw new Error(`Некорректный ${label}.`);
}
return value as Record<string, any>;
}
function exactKeys(record: Record<string, any>, keys: string[], label: string): void {
const actual = Object.keys(record).sort();
const expected = [...keys].sort();
if (actual.length !== expected.length || actual.some((key, index) => key !== expected[index])) {
throw new Error(`Некорректные поля ${label}.`);
}
}
function stringValue(value: unknown, label: string): string {
if (typeof value !== "string" || !value) throw new Error(`Некорректный ${label}.`);
return value;
}
function nullableString(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.isSafeInteger(value) || value < 0) {
throw new Error(`Некорректный ${label}.`);
}
return value;
}
function booleanValue(value: unknown, label: string): boolean {
if (typeof value !== "boolean") throw new Error(`Некорректный ${label}.`);
return value;
}
function matrixValue(value: unknown, label: string): number[] {
if (!Array.isArray(value) || value.length !== 16 || value.some((item) => typeof item !== "number")) {
throw new Error(`Некорректный ${label}.`);
}
return [...value];
}
function sceneTypeValue(value: unknown): SimulationSceneType {
if (value === "interior" || value === "outdoor" || value === "object") return value;
return invalid("scene type");
}
function rotationValue(value: unknown, label: string): number {
if (typeof value === "number" && Number.isFinite(value) && value >= -360 && value <= 360) {
return value;
}
return invalid(label);
}
function finiteNumberValue(value: unknown, minimum: number, maximum: number, label: string): number {
if (typeof value === "number" && Number.isFinite(value) && value >= minimum && value <= maximum) {
return value;
}
return invalid(label);
}
function qualityValue(value: unknown): SimulationViewerQuality {
if (["low", "medium", "high", "ultra", "maximum"].includes(String(value))) {
return value as SimulationViewerQuality;
}
return invalid("viewer quality");
}
function statusValue(value: unknown): SimulationProjectStatus {
if (["uploading", "queued", "processing", "importing", "ready", "failed"].includes(String(value))) {
return value as SimulationProjectStatus;
}
return invalid("project status");
}
function invalid(label: string): never {
throw new Error(`Некорректный ${label}.`);
}
function clamp(value: number, minimum: number, maximum: number): number {
return Math.min(maximum, Math.max(minimum, value));
}
@@ -0,0 +1,146 @@
import type { SimulationUploadCandidate } from "./projects";
const ARCHIVE_PATTERN = /\.(zip|rar|7z)$/i;
export const MAX_SIMULATION_SOURCE_BYTES = 16 * 1024 ** 3;
interface LegacyFileEntry {
isFile: boolean;
isDirectory: boolean;
name: string;
fullPath: string;
file?: (callback: (file: File) => void, error?: (error: DOMException) => void) => void;
createReader?: () => LegacyDirectoryReader;
}
interface LegacyDirectoryReader {
readEntries: (
callback: (entries: LegacyFileEntry[]) => void,
error?: (error: DOMException) => void,
) => void;
}
export async function candidatesFromDrop(
transfer: DataTransfer,
): Promise<SimulationUploadCandidate[]> {
const candidates: SimulationUploadCandidate[] = [];
for (const item of Array.from(transfer.items)) {
const entry = (item as DataTransferItem & {
webkitGetAsEntry?: () => LegacyFileEntry | null;
}).webkitGetAsEntry?.();
if (entry?.isDirectory) {
await collectEntry(entry, candidates);
continue;
}
const file = item.getAsFile();
if (file) {
candidates.push({ file, logicalPath: file.name });
continue;
}
if (entry) await collectEntry(entry, candidates);
}
if (!candidates.length) {
for (const file of Array.from(transfer.files)) {
candidates.push({ file, logicalPath: file.name });
}
}
return candidates;
}
export async function archivesFromDrop(transfer: DataTransfer): Promise<File[]> {
const candidates = await candidatesFromDrop(transfer);
const invalid = candidates.filter((candidate) => !ARCHIVE_PATTERN.test(candidate.logicalPath));
if (invalid.length) {
throw new Error("В каталог можно перетащить только отдельные архивы ZIP, RAR или 7z.");
}
if (!candidates.length) {
throw new Error("В перетаскивании не найдено архивов ZIP, RAR или 7z.");
}
for (const candidate of candidates) {
if (candidate.logicalPath.includes("/")) {
throw new Error("Перетащите сами архивы, а не содержащую их папку.");
}
if (candidate.file.size <= 0) {
throw new Error(`Пустой архив: ${candidate.file.name}`);
}
if (candidate.file.size > MAX_SIMULATION_SOURCE_BYTES) {
throw new Error(`Архив ${candidate.file.name} превышает лимит 16 ГБ.`);
}
}
return candidates.map((candidate) => candidate.file);
}
export function validateSimulationCandidates(candidates: SimulationUploadCandidate[]): void {
if (!candidates.length) throw new Error("Выберите архив или папку с результатом LCC/LCC2.");
const archives = candidates.filter((candidate) => ARCHIVE_PATTERN.test(candidate.logicalPath));
if (archives.length) {
if (candidates.length !== 1) throw new Error("Архив нужно загружать одним файлом.");
if (archives[0]!.file.size <= 0) throw new Error(`Пустой файл: ${archives[0]!.logicalPath}`);
if (archives[0]!.file.size > MAX_SIMULATION_SOURCE_BYTES) {
throw new Error(`Архив ${archives[0]!.logicalPath} превышает лимит 16 ГБ.`);
}
return;
}
const descriptors = candidates.filter((candidate) => /\.lcc2?$/i.test(candidate.logicalPath));
if (descriptors.length !== 1) {
throw new Error("В папке должна быть ровно одна сцена .lcc или .lcc2.");
}
const paths = new Set<string>();
let totalBytes = 0;
for (const candidate of candidates) {
const parts = candidate.logicalPath.split("/");
if (
!candidate.logicalPath
|| candidate.logicalPath.startsWith("/")
|| candidate.logicalPath.includes("\\")
|| candidate.logicalPath.includes("\0")
|| parts.some((part) => part === "" || part === "." || part === "..")
) {
throw new Error("Папка содержит небезопасный путь.");
}
if (candidate.file.size <= 0) throw new Error(`Пустой файл: ${candidate.logicalPath}`);
totalBytes += candidate.file.size;
if (paths.has(candidate.logicalPath)) throw new Error(`Повторяющийся путь: ${candidate.logicalPath}`);
paths.add(candidate.logicalPath);
}
if (totalBytes > MAX_SIMULATION_SOURCE_BYTES) {
throw new Error("Папка с исходниками превышает лимит 16 ГБ.");
}
}
export function hasDroppedFiles(transfer: DataTransfer): boolean {
return transfer.files.length > 0
|| Array.from(transfer.items).some((item) => item.kind === "file")
|| Array.from(transfer.types).some((type) => type.toLowerCase() === "files");
}
export function archiveProjectName(fileName: string): string {
const name = fileName.replace(ARCHIVE_PATTERN, "").trim();
return name || "Новая сцена";
}
function collectEntry(
entry: LegacyFileEntry,
target: SimulationUploadCandidate[],
): Promise<void> {
if (entry.isFile && entry.file) {
return new Promise<File>((resolve, reject) => entry.file?.(resolve, reject))
.then((file) => {
target.push({ file, logicalPath: entry.fullPath.replace(/^\//, "") || file.name });
});
}
if (!entry.isDirectory || !entry.createReader) return Promise.resolve();
return collectDirectory(entry.createReader(), target);
}
async function collectDirectory(
reader: LegacyDirectoryReader,
target: SimulationUploadCandidate[],
): Promise<void> {
while (true) {
const batch = await new Promise<LegacyFileEntry[]>((resolve, reject) => {
reader.readEntries(resolve, reject);
});
if (!batch.length) return;
for (const child of batch) await collectEntry(child, target);
}
}
+13 -1
View File
@@ -22,7 +22,8 @@ export type WorkspaceKind =
| "network-monitor"
| "datasets"
| "artifact-health"
| "lab-archive";
| "lab-archive"
| "simulations";
export type CapabilityStatus = "active" | "ready" | "contract" | "later";
@@ -154,6 +155,17 @@ export const workspaces: WorkspaceDefinition[] = [
kind: "lab-archive",
groups: [],
},
{
id: "simulations",
root: "polygon",
label: "Симуляции",
title: "Симуляции",
eyebrow: "ТЕСТОВЫЙ КОНТУР / СИМУЛЯЦИИ",
description: "Каталог Gaussian-миров, переносимые сборки и интерактивные сцены.",
icon: "globe",
kind: "simulations",
groups: [],
},
{
id: "contour-health",
root: "fleet",
+1
View File
@@ -10,6 +10,7 @@
@import "./styles/l3-pointpillars-visual-audit.css";
@import "./styles/l34-annotation.css";
@import "./styles/laboratory-reporting.css";
@import "./styles/simulation.css";
@import "./styles/laboratory-evidence-report.css";
@import "./styles/e34-temporal-layer.css";
@import "./styles/m4-replay-threat.css";
@@ -81,10 +81,21 @@
justify-content: flex-end;
}
.m4-replay-threat-evidence-viewer[data-mode-controls="content"]:has(
.m4-replay-threat-visual__review-controls
) .m4-replay-threat-visual__pane-toolbar[data-pane-toolbar="media"] {
top: 3.8rem;
}
.m4-replay-threat-visual__pane-toolbar[data-pane-toolbar="spatial"] {
justify-content: space-between;
}
.m4-replay-threat-evidence-viewer[data-mode-controls="content"]
.m4-replay-threat-visual__pane-toolbar[data-pane-toolbar="spatial"] {
right: 3.8rem;
}
.m4-replay-threat-visual__pane-toolbar > *,
.m4-replay-threat-visual__spatial-toolbar-end > * {
pointer-events: auto;
@@ -225,9 +236,10 @@
box-sizing: border-box;
min-width: 0;
align-items: stretch;
width: max-content;
max-width: calc(var(--m4-replay-threat-overlay-pane-width, 100%) - 1.2rem);
grid-template-columns: minmax(0, max-content);
width: min(17.5rem, calc(var(--m4-replay-threat-overlay-pane-width, 100%) - 1.2rem));
max-width: none;
grid-auto-rows: 3.8rem;
grid-template-columns: minmax(0, 1fr);
gap: 0.3rem;
overflow: hidden;
background: transparent;
@@ -236,6 +248,9 @@
}
.m4-replay-threat-visual__overlay > div {
box-sizing: border-box;
height: 3.8rem;
grid-template-rows: auto auto minmax(1.32rem, 1fr);
border-radius: var(--nodedc-radius-control-compact);
background: color-mix(in srgb, var(--nodedc-floating-surface) 80%, transparent);
padding: 0.55rem 0.65rem;
@@ -243,15 +258,24 @@
}
.m4-replay-threat-visual__overlay span,
.m4-replay-threat-visual__overlay strong,
.m4-replay-threat-visual__overlay small {
.m4-replay-threat-visual__overlay strong {
overflow: hidden;
text-overflow: ellipsis;
white-space: nowrap;
}
.m4-replay-threat-visual__overlay small {
display: -webkit-box;
min-height: 1.32rem;
overflow: hidden;
-webkit-box-orient: vertical;
-webkit-line-clamp: 2;
white-space: normal;
}
@media (max-width: 900px) {
.m4-replay-threat-visual__overlay {
width: min(17.5rem, calc(100% - 1.2rem));
max-width: calc(100% - 1.2rem);
}
}
@@ -334,7 +358,40 @@
background: transparent;
}
.laboratory-metric-evidence-scene__legend span[data-decision="low-step"]::before {
box-sizing: border-box;
border: 1px solid rgb(var(--nodedc-foreground-rgb));
background: rgb(var(--nodedc-accent-rgb));
}
.laboratory-metric-evidence-scene__legend span[data-decision="local-surface"]::before {
background: rgb(var(--nodedc-accent-rgb));
opacity: 0.72;
}
.laboratory-metric-evidence-scene__legend span[data-decision="ground-support"]::before {
background: rgb(var(--nodedc-success-rgb));
}
.laboratory-metric-evidence-scene__legend span[data-decision="nonground-occupied"]::before {
background: rgb(var(--nodedc-danger-rgb));
}
.laboratory-metric-evidence-scene__legend span[data-decision="unknown-rejected"]::before {
background: rgb(var(--nodedc-warning-rgb));
}
.laboratory-metric-evidence-scene__legend span[data-decision="unobserved"]::before {
background: var(--nodedc-text-muted);
opacity: 0.42;
}
.laboratory-metric-evidence-scene__legend span[data-decision="performance"] {
font-variant-numeric: tabular-nums;
}
.laboratory-metric-evidence-scene__legend span[data-decision="performance"]::before {
box-sizing: border-box;
border: 1px solid rgb(var(--nodedc-accent-rgb));
background: transparent;
}
@@ -0,0 +1,809 @@
.simulation-workspace {
display: grid;
height: 100%;
min-width: 0;
grid-template-rows: auto minmax(0, 1fr);
gap: 0.9rem;
padding-bottom: 1rem;
}
.simulation-workspace--scene {
height: 100%;
min-height: 38rem;
grid-template-rows: auto minmax(0, 1fr);
}
.simulation-workspace__head,
.simulation-workspace__scene-head,
.simulation-viewport__toolbar,
.simulation-viewport__notice,
.simulation-catalog__summary,
.simulation-catalog__state,
.simulation-catalog__notice,
.simulation-catalog__actions,
.simulation-project-window__footer-state,
.simulation-source-drop > div,
.simulation-upload-progress {
display: flex;
align-items: center;
}
.simulation-workspace__head,
.simulation-workspace__scene-head {
justify-content: space-between;
gap: 1rem;
padding: 0.25rem 0.2rem;
}
.simulation-workspace__head h2,
.simulation-workspace__head p,
.simulation-workspace__scene-head h2 {
margin: 0;
}
.simulation-workspace__head h2,
.simulation-workspace__scene-head h2 {
margin-top: 0.3rem;
color: var(--nodedc-text-primary);
font-size: 1.18rem;
letter-spacing: -0.035em;
}
.simulation-workspace__head p {
max-width: 46rem;
margin-top: 0.38rem;
color: var(--nodedc-text-muted);
font-size: 0.66rem;
line-height: 1.5;
}
.simulation-workspace__scene-head {
display: grid;
grid-template-columns: minmax(8rem, auto) minmax(0, 1fr) auto;
}
.simulation-catalog {
position: relative;
display: grid;
min-height: 0;
align-content: start;
gap: 0.55rem;
min-width: 0;
}
.simulation-catalog__summary {
display: grid;
grid-template-columns: repeat(4, minmax(0, 1fr));
gap: 0.45rem;
}
.simulation-catalog__summary > div {
display: grid;
gap: 0.28rem;
border-radius: 0.85rem;
background: rgb(255 255 255 / 0.03);
padding: 0.85rem;
}
.simulation-catalog__summary span {
color: var(--nodedc-text-muted);
font-size: 0.58rem;
}
.simulation-catalog__table th {
color: var(--nodedc-text-muted);
font-size: 0.52rem;
font-weight: 680;
letter-spacing: 0.075em;
text-transform: uppercase;
}
.simulation-catalog__summary strong {
color: var(--nodedc-text-primary);
font-size: 1.15rem;
}
.simulation-catalog__table-wrap {
overflow: auto;
border-radius: 1rem;
background: transparent;
}
.simulation-catalog__table {
width: 100%;
min-width: 52rem;
border-collapse: separate;
border-spacing: 0 0.34rem;
}
.simulation-catalog__table th,
.simulation-catalog__table td {
padding: 0.72rem 0.8rem;
text-align: left;
vertical-align: middle;
}
.simulation-catalog__table th {
padding-top: 0.2rem;
padding-bottom: 0.18rem;
}
.simulation-catalog__table th:first-child,
.simulation-catalog__table td:first-child {
padding-left: 1rem;
}
.simulation-catalog__table th:last-child,
.simulation-catalog__table td:last-child {
width: 6.4rem;
min-width: 6.4rem;
padding-right: 1rem;
}
.simulation-catalog__table tbody tr {
transition: background var(--nodedc-duration-fast) var(--nodedc-ease-standard);
}
.simulation-catalog__table tbody td {
background: rgb(255 255 255 / 0.025);
transition: background var(--nodedc-duration-fast) var(--nodedc-ease-standard);
}
.simulation-catalog__table tbody tr:hover td {
background: rgb(255 255 255 / 0.045);
}
.simulation-catalog__table tbody td:first-child {
border-radius: 0.85rem 0 0 0.85rem;
}
.simulation-catalog__table tbody td:last-child {
border-radius: 0 0.85rem 0.85rem 0;
}
.simulation-catalog__table td {
color: var(--nodedc-text-secondary);
font-size: 0.64rem;
}
.simulation-catalog__table td > small,
.simulation-catalog__table td > button small {
display: block;
margin-top: 0.18rem;
color: var(--nodedc-text-muted);
font-size: 0.54rem;
}
.simulation-catalog__table td:first-child > button {
display: flex;
align-items: center;
gap: 0.65rem;
min-width: 11rem;
border: 0;
background: transparent;
color: inherit;
font: inherit;
text-align: left;
cursor: pointer;
}
.simulation-catalog__table td:first-child > button > span:last-child {
min-width: 0;
}
.simulation-catalog__table td:first-child > button strong {
display: block;
max-width: 20rem;
overflow: clip;
color: var(--nodedc-text-primary);
font-size: 0.7rem;
text-overflow: ellipsis;
white-space: nowrap;
}
.simulation-catalog__table td:first-child > button small {
overflow: hidden;
text-overflow: ellipsis;
white-space: nowrap;
}
.simulation-catalog__project-icon,
.simulation-catalog__empty > span {
display: grid;
width: 2rem;
height: 2rem;
flex: 0 0 auto;
place-items: center;
border-radius: 0.62rem;
background: rgb(var(--nodedc-accent-rgb) / 0.07);
color: var(--nodedc-text-secondary);
}
.simulation-catalog__actions {
display: flex;
justify-content: flex-end;
gap: 0.28rem;
}
.simulation-catalog__progress {
display: grid;
min-width: 0;
gap: 0.26rem;
}
.simulation-catalog__progress-meta,
.simulation-catalog__progress-stage {
overflow: hidden;
color: var(--nodedc-text-muted);
font-size: 0.54rem;
text-overflow: ellipsis;
white-space: nowrap;
}
.simulation-catalog__progress-track {
position: relative;
overflow: hidden;
width: 100%;
height: 0.3rem;
border-radius: 999px;
background: rgb(255 255 255 / 0.08);
}
.simulation-catalog__progress-track i {
position: absolute;
inset: 0 auto 0 0;
min-width: 0;
border-radius: inherit;
background: rgb(var(--nodedc-accent-rgb));
transition: width var(--nodedc-duration-fast) var(--nodedc-ease-standard);
}
.simulation-catalog__progress[data-indeterminate="true"] .simulation-catalog__progress-track i {
width: 28% !important;
animation: simulation-progress-pulse 1.6s ease-in-out infinite;
}
.simulation-catalog__progress-stage {
font-size: 0.52rem;
}
.simulation-catalog__state,
.simulation-catalog__empty {
min-height: 20rem;
justify-content: center;
gap: 0.75rem;
color: var(--nodedc-text-muted);
border-radius: 1rem;
background: rgb(255 255 255 / 0.025);
font-size: 0.65rem;
}
.simulation-catalog__notice {
justify-content: flex-start;
gap: 0.55rem;
border-radius: 0.85rem;
background: rgb(var(--nodedc-danger-rgb) / 0.08);
color: var(--nodedc-danger);
padding: 0.7rem 0.85rem;
font-size: 0.62rem;
}
.simulation-catalog__drop-overlay {
position: absolute;
z-index: 4;
inset: 0;
display: grid;
place-content: center;
justify-items: center;
gap: 0.55rem;
border-radius: 1rem;
background: var(--nodedc-canvas);
color: var(--nodedc-text-muted);
text-align: center;
}
.simulation-catalog__drop-mark {
display: grid;
width: 4rem;
height: 4rem;
margin-bottom: 0.25rem;
place-items: center;
border-radius: 50%;
background: var(--nodedc-glass-control-active);
color: var(--nodedc-glass-control-active-text);
}
.simulation-catalog__drop-overlay strong {
color: var(--nodedc-text-primary);
font-size: 0.86rem;
}
.simulation-catalog__drop-overlay span {
font-size: 0.64rem;
}
.simulation-catalog__drop-overlay small {
color: var(--nodedc-text-muted);
font-size: 0.56rem;
}
@keyframes simulation-progress-pulse {
from { transform: translateX(-105%); }
to { transform: translateX(360%); }
}
@media (prefers-reduced-motion: reduce) {
.simulation-catalog__progress[data-indeterminate="true"] .simulation-catalog__progress-track i {
animation: none;
transform: translateX(0);
}
}
.simulation-catalog__state > div {
display: grid;
gap: 0.2rem;
}
.simulation-catalog__state strong,
.simulation-catalog__empty strong {
color: var(--nodedc-text-primary);
}
.simulation-catalog__empty {
display: flex;
flex-direction: column;
text-align: center;
}
.simulation-catalog__empty p {
max-width: 30rem;
margin: 0;
line-height: 1.5;
}
.simulation-project-window {
display: grid;
gap: 0.9rem;
}
.simulation-project-window .nodedc-select-anchor,
.simulation-project-window .nodedc-select {
width: 100%;
}
.simulation-source-drop {
display: grid;
min-height: 12rem;
place-items: center;
align-content: center;
gap: 0.55rem;
border: 1px dashed var(--nodedc-glass-outline);
border-radius: 0.85rem;
background: rgb(255 255 255 / 0.018);
color: var(--nodedc-text-muted);
text-align: center;
transition: border-color var(--nodedc-duration-fast) var(--nodedc-ease-standard),
background var(--nodedc-duration-fast) var(--nodedc-ease-standard);
}
.simulation-source-drop[data-dragging="true"] {
border-color: rgb(var(--nodedc-accent-rgb) / 0.72);
background: rgb(var(--nodedc-accent-rgb) / 0.08);
}
.simulation-source-drop > strong {
color: var(--nodedc-text-primary);
font-size: 0.72rem;
}
.simulation-source-drop > span {
max-width: 30rem;
font-size: 0.58rem;
}
.simulation-source-drop > div {
gap: 0.45rem;
margin-top: 0.25rem;
}
.simulation-upload-progress {
gap: 0.7rem;
border-radius: 0.72rem;
background: rgb(255 255 255 / 0.025);
padding: 0.7rem;
}
.simulation-upload-progress > span {
position: relative;
overflow: hidden;
min-width: 12rem;
flex: 1 1 auto;
height: 0.28rem;
border-radius: 999px;
background: rgb(255 255 255 / 0.08);
}
.simulation-upload-progress > span i {
position: absolute;
inset: 0 auto 0 0;
border-radius: inherit;
background: rgb(var(--nodedc-accent-rgb));
}
.simulation-upload-progress > div {
display: grid;
min-width: 9rem;
max-width: 13rem;
flex: 0 1 13rem;
gap: 0.14rem;
}
.simulation-upload-progress strong {
color: var(--nodedc-text-primary);
font-size: 0.62rem;
}
.simulation-upload-progress small {
overflow: hidden;
color: var(--nodedc-text-muted);
font-size: 0.54rem;
text-overflow: ellipsis;
white-space: nowrap;
}
.simulation-project-window__footer-state {
gap: 0.4rem;
color: var(--nodedc-text-muted);
font-size: 0.58rem;
}
.simulation-project-window__error {
margin: 0;
border-radius: 0.65rem;
background: rgb(var(--nodedc-danger-rgb) / 0.08);
color: var(--nodedc-danger);
padding: 0.65rem 0.75rem;
font-size: 0.6rem;
line-height: 1.45;
}
.simulation-viewport {
container-type: inline-size;
display: grid;
min-height: 0;
grid-template-rows: auto minmax(0, 1fr) auto;
overflow: hidden;
border-radius: 1rem;
background: #07090d;
}
.simulation-viewport__toolbar {
position: sticky;
z-index: 10;
top: 0;
display: grid;
grid-template-columns: minmax(12rem, 1fr) auto minmax(12rem, 1fr);
align-items: center;
gap: 0.55rem;
border-bottom: 1px solid var(--station-hairline);
background: var(--nodedc-glass-panel-bg-soft);
padding: 0.55rem 0.65rem;
}
.simulation-viewport__toolbar > div:first-child {
display: flex;
min-width: 12rem;
flex: 1;
align-items: center;
gap: 0.45rem;
}
.simulation-viewport__controls {
display: flex;
min-width: 0;
align-items: center;
justify-content: center;
gap: 0.55rem;
}
.simulation-viewport__settings-anchor {
position: relative;
display: grid;
place-items: center;
}
.simulation-viewport__settings {
position: absolute;
z-index: 12;
top: calc(100% + 0.65rem);
right: 0;
display: grid;
grid-template-rows: auto minmax(0, 1fr);
width: min(21rem, calc(100cqw - 1.3rem));
max-height: min(44rem, calc(100vh - 7rem));
overflow: clip;
gap: 0;
padding: 0;
}
.simulation-viewport__settings-head {
position: relative;
z-index: 2;
display: flex;
align-items: center;
justify-content: space-between;
gap: 0.75rem;
background: var(--nodedc-glass-panel-bg-strong);
padding: 0.8rem;
box-shadow: 0 0.55rem 1rem rgb(0 0 0 / 0.18);
backdrop-filter: blur(18px);
}
.simulation-viewport__settings-scroll {
display: grid;
min-height: 0;
overflow-y: auto;
overscroll-behavior: contain;
gap: 0.75rem;
padding: 0.75rem 0.8rem 0.8rem;
}
.simulation-viewport__settings-head > div,
.simulation-viewport__settings-group,
.simulation-viewport__settings-switches {
display: grid;
gap: 0.32rem;
}
.simulation-viewport__settings-head strong {
color: var(--nodedc-text-primary);
font-size: 0.72rem;
}
.simulation-viewport__settings span,
.simulation-viewport__settings p {
color: var(--nodedc-text-muted);
font-size: 0.56rem;
line-height: 1.45;
}
.simulation-viewport__settings p {
margin: 0;
}
.simulation-viewport__settings-group {
gap: 0.55rem;
border-radius: 0.72rem;
background: rgb(255 255 255 / 0.035);
padding: 0.65rem;
}
.simulation-viewport__settings-group-head {
display: flex;
align-items: baseline;
justify-content: space-between;
gap: 0.75rem;
}
.simulation-viewport__settings-group-head strong {
color: var(--nodedc-text-secondary);
font-size: 0.62rem;
}
.simulation-viewport__settings-switches {
gap: 0.55rem;
}
.simulation-viewport__settings-rotations {
display: grid;
gap: 0.7rem;
}
.simulation-viewport__rotation-row {
display: grid;
gap: 0.4rem;
}
.simulation-viewport__rotation-row > strong {
color: var(--nodedc-text-secondary);
font-size: 0.6rem;
}
.simulation-viewport__rotation-fields {
display: grid;
grid-template-columns: repeat(3, minmax(0, 1fr));
gap: 0.45rem;
}
.simulation-viewport__rotation-field {
gap: 0.22rem;
}
.simulation-viewport__rotation-field .nodedc-field__label-row {
padding-inline: 0.15rem;
}
.simulation-viewport__rotation-field .nodedc-field__label {
font-size: 0.54rem;
}
.simulation-viewport__rotation-input {
min-height: 1.75rem;
padding: 0.2rem 0.55rem;
font-size: 0.64rem;
text-align: right;
}
.simulation-viewport__rotation-input:disabled {
cursor: not-allowed;
opacity: 0.45;
}
.simulation-viewport__settings-error {
border-radius: 0.65rem;
background: rgb(var(--nodedc-danger-rgb) / 0.08);
color: var(--nodedc-danger) !important;
padding: 0.55rem 0.65rem;
}
.simulation-ugv-settings {
gap: 0.7rem;
}
.simulation-ugv-settings__subhead {
display: flex;
align-items: baseline;
justify-content: space-between;
gap: 0.65rem;
margin-top: 0.1rem;
padding-top: 0.55rem;
border-top: 1px solid rgb(255 255 255 / 0.055);
}
.simulation-ugv-settings__subhead strong {
color: var(--nodedc-text-secondary);
font-size: 0.58rem;
}
.simulation-ugv-settings__save {
width: 100%;
margin-top: 0.15rem;
}
.simulation-viewport__toolbar-balance {
min-width: 0;
}
.simulation-viewport__toolbar > div:first-child > span:last-child,
.simulation-viewport__notice > span:last-child {
color: var(--nodedc-text-muted);
font-size: 0.55rem;
}
.simulation-viewport__stage {
position: relative;
min-width: 0;
min-height: 18rem;
overflow: hidden;
}
.simulation-viewport__stage canvas {
display: block;
max-width: 100%;
width: 100%;
height: 100%;
outline: none;
cursor: grab;
touch-action: none;
user-select: none;
}
.simulation-viewport__stage canvas:active {
cursor: grabbing;
}
.simulation-viewport[data-control-mode="ugv"] .simulation-viewport__stage canvas,
.simulation-viewport[data-control-mode="ugv"] .simulation-viewport__stage canvas:active {
cursor: grab;
}
.simulation-viewport[data-control-mode="ugv"] .simulation-viewport__stage canvas.is-orbiting,
.simulation-viewport[data-control-mode="ugv"] .simulation-viewport__stage canvas.is-orbiting:active {
cursor: grabbing;
}
.simulation-viewport__stage canvas:focus-visible {
box-shadow: inset 0 0 0 2px rgb(var(--nodedc-accent-rgb) / 0.7);
}
.simulation-viewport__state {
position: absolute;
inset: 0;
display: grid;
place-items: center;
align-content: center;
gap: 0.55rem;
background: rgb(7 9 13 / 0.84);
color: var(--nodedc-text-muted);
text-align: center;
}
.simulation-viewport__state strong {
color: var(--nodedc-text-primary);
font-size: 0.75rem;
}
.simulation-viewport__state p {
max-width: 34rem;
margin: 0;
font-size: 0.6rem;
}
.simulation-viewport__notice {
gap: 0.55rem;
border-top: 1px solid var(--station-hairline);
padding: 0.48rem 0.65rem;
}
@container (max-width: 68rem) {
.simulation-viewport__toolbar {
grid-template-columns: 1fr;
}
.simulation-viewport__controls {
flex-wrap: wrap;
justify-content: center;
}
.simulation-viewport__toolbar-balance {
display: none;
}
}
.simulation-workspace__processing {
display: flex;
min-height: 18rem;
align-items: center;
justify-content: center;
gap: 0.8rem;
}
.simulation-workspace__processing-copy {
display: grid;
max-width: 40rem;
gap: 0.25rem;
}
.simulation-workspace__processing-actions {
display: flex;
flex: 0 0 auto;
align-items: center;
gap: 0.55rem;
}
.simulation-workspace__processing strong {
color: var(--nodedc-text-primary);
font-size: 0.75rem;
}
.simulation-workspace__processing p {
margin: 0;
color: var(--nodedc-text-muted);
font-size: 0.62rem;
line-height: 1.5;
}
@media (max-width: 900px) {
.simulation-catalog__summary {
grid-template-columns: repeat(2, minmax(0, 1fr));
}
.simulation-workspace__scene-head {
grid-template-columns: 1fr auto;
}
.simulation-workspace__scene-head > .nodedc-button {
grid-column: 1 / -1;
justify-self: start;
}
}
+14
View File
@@ -0,0 +1,14 @@
declare module "playcanvas/scripts/esm/camera-controls.mjs" {
import { Script, Vec2, Vec3 } from "playcanvas";
export class CameraControls extends Script {
static scriptName: "cameraControls";
enableFly: boolean;
enableOrbit: boolean;
focusPoint: Vec3;
zoomRange: Vec2;
focus(focus: Vec3, resetZoom?: boolean): void;
look(focus: Vec3, resetZoom?: boolean): void;
reset(focus: Vec3, position: Vec3): void;
}
}
@@ -1,10 +1,5 @@
import { useCallback, useEffect, useMemo, useRef, useState } from "react";
import {
Button,
GlassSurface,
Icon,
StatusBadge,
} from "@nodedc/ui-react";
import { Button, GlassSurface, Icon, StatusBadge } from "@nodedc/ui-react";
import {
ObservationMedia,
ObservationSourcePicker,
@@ -41,6 +36,7 @@ import { DatasetGatewayWorkspace } from "./DatasetGatewayWorkspace";
import { ArtifactHealthWorkspace } from "./data/ArtifactHealthWorkspace";
import { ContourHealthWorkspace } from "./ContourHealthWorkspace";
import { LaboratoryArchiveWorkspace } from "./laboratory/LaboratoryArchiveWorkspace";
import { SimulationWorkspace } from "./simulation/SimulationWorkspace";
import { ComputeModulesWorkspace } from "./system/ComputeModulesWorkspace";
import { NetworkWorkspace } from "./system/NetworkWorkspace";
import { WorldMapWorkspace } from "./map/WorldMapWorkspace";
@@ -1193,6 +1189,8 @@ export function WorkspaceRenderer(props: WorkspaceRendererProps) {
SpatialView={SpatialWorkspace}
/>
);
case "simulations":
return <SimulationWorkspace />;
case "device":
return null;
}
@@ -44,7 +44,13 @@ import { M4ReplayThreatResultView } from "./M4ReplayThreatResult";
import { M47ReferenceGraphResultView } from "./M47ReferenceGraphResult";
import { M48ObjectCentricQualityResultView } from "./M48ObjectCentricQualityResult";
import { M48SmallStaticPassageRegressionResultView } from "./M48SmallStaticPassageRegressionResult";
import { M48StaticOccupancyQualificationResultView } from "./M48StaticOccupancyQualificationResult";
import { M48R3StaticOccupancyShadowResultView } from "./M48R3StaticOccupancyShadowResult";
import { M48SFixedClassDetectorResultView } from "./M48SFixedClassDetectorResult";
import { M48TRiskQualityResultView } from "./M48TRiskQualityResult";
import { M49TgsFailClosedResultView } from "./M49TgsFailClosedResult";
import { M49TgsFullShadowResultView } from "./M49TgsFullShadowResult";
import { VegetationShadowResultView } from "./VegetationShadowResult";
export { isAdvancedLaboratoryWorkId };
export type { AdvancedLaboratoryWorkId };
@@ -87,15 +93,33 @@ export function AdvancedLaboratoryResult({
failedSessionId: string | null;
replayError: string | null;
}) {
if (workId === "lab-v1-vegetation-shadow" && results.vegetationShadow) {
return <VegetationShadowResultView rigLabel={rigLabel} result={results.vegetationShadow} />;
}
if (workId === "m48-object-centric-quality" && results.m48) {
return <M48ObjectCentricQualityResultView rigLabel={rigLabel} result={results.m48} />;
}
if (workId === "m48-small-static-passage-regression" && results.m48SmallStatic) {
return <M48SmallStaticPassageRegressionResultView rigLabel={rigLabel} result={results.m48SmallStatic} />;
}
if (workId === "m48-static-occupancy-qualification" && results.m48StaticOccupancy) {
return <M48StaticOccupancyQualificationResultView rigLabel={rigLabel} result={results.m48StaticOccupancy} />;
}
if (workId === "m48r3-static-occupancy-shadow" && results.m48r3StaticOccupancy) {
return <M48R3StaticOccupancyShadowResultView rigLabel={rigLabel} result={results.m48r3StaticOccupancy} />;
}
if (workId === "m48s-fixed-class-detector" && results.m48s) {
return <M48SFixedClassDetectorResultView rigLabel={rigLabel} result={results.m48s} />;
}
if (workId === "m48t-risk-quality-temporal" && results.m48t) {
return <M48TRiskQualityResultView rigLabel={rigLabel} result={results.m48t} />;
}
if (workId === "m49-tgs-fail-closed-evidence" && results.m49Tgs) {
return <M49TgsFailClosedResultView rigLabel={rigLabel} result={results.m49Tgs} />;
}
if (workId === "m49-tgs-full-shadow" && results.m49TgsFull) {
return <M49TgsFullShadowResultView rigLabel={rigLabel} result={results.m49TgsFull} />;
}
if (workId === "m47-reference-graph-shadow" && results.m47Graph) {
return <M47ReferenceGraphResultView rigLabel={rigLabel} result={results.m47Graph} />;
}
@@ -28,6 +28,119 @@ const ATLAS_MODES = [
] as const;
type AtlasMode = typeof ATLAS_MODES[number]["value"];
const MASK_COMPARISON_MODES = [
{ value: "source", label: "SOURCE" },
{ value: "truth", label: "TRUTH" },
{ value: "prediction", label: "PREDICTION" },
{ value: "error", label: "ERROR" },
] as const;
const MASK_COMPARISON_CANDIDATES = [
{ value: "ddrnet", label: "DDRNET" },
{ value: "ppliteseg", label: "PPLITE" },
] as const;
type MaskComparisonMode = typeof MASK_COMPARISON_MODES[number]["value"];
type MaskComparisonCandidate = typeof MASK_COMPARISON_CANDIDATES[number]["value"];
export interface M48MaskComparisonCase {
caseId: string;
title: string;
context?: string;
sourceUrl: string;
truthUrl: string;
predictions: Readonly<Record<MaskComparisonCandidate, string>>;
errors: Readonly<Record<MaskComparisonCandidate, string>>;
}
function M48MaskComparisonScene({
item,
mode,
candidate,
}: {
item: M48MaskComparisonCase;
mode: MaskComparisonMode;
candidate: MaskComparisonCandidate;
}) {
const overlay = mode === "truth"
? item.truthUrl
: mode === "prediction"
? item.predictions[candidate]
: mode === "error"
? item.errors[candidate]
: null;
return (
<div className="recorded-evidence-image-scene">
<img src={item.sourceUrl} alt="" draggable={false} />
{overlay ? <img src={overlay} alt="" draggable={false} /> : null}
</div>
);
}
export function M48MaskComparisonVisual({
cases,
initialCandidate,
}: {
cases: readonly M48MaskComparisonCase[];
initialCandidate: MaskComparisonCandidate;
}) {
const [index, setIndex] = useState(0);
const [mode, setMode] = useState<MaskComparisonMode>("error");
const [candidate, setCandidate] = useState<MaskComparisonCandidate>(initialCandidate);
const [expanded, setExpanded] = useState(false);
const item = cases[index] ?? null;
return (
<LaboratoryEvidenceViewer
label="M4.8 vegetation truth comparison"
className="m48-atlas-visual"
mode={mode}
modes={MASK_COMPARISON_MODES}
secondaryMode={{
value: candidate,
modes: MASK_COMPARISON_CANDIDATES,
label: "Сравниваемая модель",
onChange: setCandidate,
}}
expanded={expanded}
onModeChange={setMode}
onExpandedChange={setExpanded}
chromeLayout="stacked"
actions={(
<>
<IconButton
label="Предыдущий vegetation hard case"
disabled={!cases.length}
onClick={() => setIndex((current) => (current - 1 + cases.length) % cases.length)}
>
<Icon name="chevron-left" size={16} />
</IconButton>
<IconButton
label="Следующий vegetation hard case"
disabled={!cases.length}
onClick={() => setIndex((current) => (current + 1) % cases.length)}
>
<Icon name="chevron-right" size={16} />
</IconButton>
</>
)}
overlay={item ? (
<div className="m48-atlas-visual__case">
<StatusBadge tone="accent">GOOSE TRUTH · {index + 1}/{cases.length}</StatusBadge>
<strong>{item.title}</strong>
{item.context ? <small>{item.context}</small> : null}
</div>
) : null}
>
{item ? (
<M48MaskComparisonScene item={item} mode={mode} candidate={candidate} />
) : (
<div className="m48-atlas-visual__state" role="alert">
<Icon name="alert" size={18} />
Vegetation hard-case каталог пуст.
</div>
)}
</LaboratoryEvidenceViewer>
);
}
function message(error: unknown): string {
return error instanceof Error && error.message.trim() ? error.message : "M4.8 evidence недоступно.";
}
@@ -0,0 +1,81 @@
import { useEffect, useMemo, useState } from "react";
import { Icon } from "@nodedc/ui-react";
import {
fetchM48R3StaticOccupancyCases,
type M48R3StaticOccupancyCase,
type M48R3StaticOccupancyShadowResult,
} from "../../core/laboratory/m48r3StaticOccupancyShadow";
import {
M4ReplayThreatVisual,
type M4ReplayThreatReviewAnchor,
} from "./M4ReplayThreatVisual";
function message(error: unknown): string {
return error instanceof Error && error.message.trim()
? error.message
: "M4.8R3 timeline недоступен.";
}
export function M48R3StaticOccupancyShadowEvidence({
result,
}: {
result: M48R3StaticOccupancyShadowResult;
}) {
const [cases, setCases] = useState<readonly M48R3StaticOccupancyCase[]>([]);
const [loading, setLoading] = useState(true);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
const controller = new AbortController();
setLoading(true);
setError(null);
void fetchM48R3StaticOccupancyCases(result.resultId, { signal: controller.signal })
.then((nextCases) => {
if (!controller.signal.aborted) setCases(nextCases);
})
.catch((caught: unknown) => {
if (!controller.signal.aborted) setError(message(caught));
})
.finally(() => {
if (!controller.signal.aborted) setLoading(false);
});
return () => controller.abort();
}, [result.resultId]);
const reviewAnchors = useMemo<readonly M4ReplayThreatReviewAnchor[]>(() => (
cases.map((item) => ({
id: item.anchorId,
sourceSequence: item.sourceSequence,
extentXyxyNormalized: item.extentXyxy,
matchedAtThreshold: item.matched,
}))
), [cases]);
if (loading) {
return (
<div className="l3-visual-audit__state" role="status">
<span className="busy-indicator" aria-hidden="true" />
<span>Открываем полный M4.8R3 Worker timeline</span>
</div>
);
}
if (error) {
return (
<div className="l3-visual-audit__state" role="alert">
<Icon name="alert" size={18} />
<span>{error}</span>
</div>
);
}
return (
<M4ReplayThreatVisual
resultId={result.resultId}
reviewAnchors={reviewAnchors}
showReviewAnchorBoxes={false}
reviewLabel="Контрольные кадры M4.8R3 · без ручных рамок"
timelineEndpointRoot="/api/v1/laboratory/m48r3/static-occupancy"
evidenceLabel="M4.8R3"
/>
);
}
@@ -0,0 +1,101 @@
import {
LaboratoryEvidence,
LaboratoryResultSummary,
LaboratorySummary,
LaboratoryWorkTemplate,
} from "../../components/laboratory/LaboratoryPresentation";
import type { M48R3StaticOccupancyShadowResult } from "../../core/laboratory/m48r3StaticOccupancyShadow";
import { M48R3StaticOccupancyShadowEvidence } from "./M48R3StaticOccupancyShadowEvidence";
function number(value: number, digits = 2): string {
return value.toLocaleString("ru-RU", { maximumFractionDigits: digits });
}
function percent(value: number): string {
return `${number(value * 100, 1)}%`;
}
export function M48R3StaticOccupancyShadowResultView({
rigLabel,
result,
}: {
rigLabel: string;
result: M48R3StaticOccupancyShadowResult;
}) {
const candidate = result.metrics.performance.candidate;
const occupancy = result.metrics.occupancy;
const separation = result.metrics.anchors.separation;
const separated = separation.every((item) => item.passed);
const status = result.accepted
? "Полный Worker shadow принят: realtime и раздельные препятствия сохранены"
: "Worker shadow не прошёл один или несколько предобъявленных gate";
const separatedLabel = separation.length
? separation.map((item) => `${item.observedComponents}/${item.expectedMinimumComponents}`).join(" · ")
: "—";
return (
<LaboratoryWorkTemplate
summary={(
<LaboratorySummary
title="M4.8R3 · full Worker static occupancy shadow"
description="Полный 4 489-кадровый прогон проверяет additive low-step occupied-only слой внутри штатного graph pipeline. Камера и RF-DETR не получают дополнительного inference; ручные прямоугольники используются только для перехода к контрольным кадрам и не рисуются как системный результат."
status={status}
statusTone={result.accepted ? "success" : "warning"}
facts={[
{ label: "Конфигурация", value: `${rigLabel} RIGHT · VIDEO/CAMERA/3D/PLAN · LOW-STEP provenance` },
{ label: "Профиль", value: `${result.profile.id} · minimum points ${result.profile.minimumPoints}` },
{ label: "Прогон", value: `${result.metrics.frames.candidateDelivered}/${result.metrics.frames.expected} · immutable ${result.resultId}` },
{ label: "Нагрузка", value: `12 Hz source-paced · ${number(candidate.fps, 3)} effective FPS · +0 inference` },
{ label: "Authority", value: "REPLAY-SIMULATED · production/navigation/actuation OFF" },
]}
brief={{
question: "Можно ли добавить геометрическое обнаружение низких статических препятствий, не разрушив realtime и не склеив отдельные столбики/шары в один объект?",
approach: `Кандидат сравнен покадрово с native baseline на всех ${result.metrics.frames.expected} кадрах. Проверены latency, FPS, рост occupancy, capacity drops, отсутствие потерянных baseline-ячеек и отдельные компоненты на кадре 1856.`,
principalResult: `${number(candidate.fps, 3)} FPS; world-state p95 ${number(candidate.worldP95Ms, 2)} мс; geometry p95/p99 ${number(candidate.geometryP95Ms, 2)}/${number(candidate.geometryP99Ms, 2)} мс; разделение ${separatedLabel}.`,
limitation: "Это воспроизводимый Worker shadow, а не доказательство физической проходимости. Просвет между компонентами сохраняется как геометрия, но допустимость проезда зависит от будущего габарита шасси и отдельного free-space контракта.",
}}
method={{
completeness: "complete",
executionClass: "deterministic",
pipelineId: "m48r3-native-plus-low-step-reference-graph/v1",
components: [
{ kind: "source", name: "native reference graph baseline", version: "M4.7/M4.8R2", role: "immutable occupied/unknown baseline", identitySha256: null },
{ kind: "algorithm", name: "additive low-step occupied-only", version: "v1", role: "CPU geometry; never clearing; no semantic class", identitySha256: result.profile.sha256 },
{ kind: "runtime", name: "full source-paced Worker shadow", version: "4 489 frames", role: "predeclared realtime, growth, separation and safety gates", identitySha256: result.resultId.split("-").at(-1) ?? null },
],
}}
/>
)}
evidence={(
<LaboratoryEvidence
eyebrow="M4.8R3 VISUAL EVIDENCE · SYSTEM COMPONENTS"
title="Полный timeline; LOW-STEP показывает добавленные системой компоненты, ручные рамки скрыты"
kind="recorded-replay"
resizable
>
<M48R3StaticOccupancyShadowEvidence result={result} />
</LaboratoryEvidence>
)}
result={(
<LaboratoryResultSummary
title="Что доказал прогон"
status={status}
statusTone={result.accepted ? "success" : "warning"}
metrics={[
{ label: "Realtime", value: `${number(candidate.fps, 3)} FPS`, hint: `p95 ${number(candidate.worldP95Ms, 2)} мс · gate ≥11,5 FPS / ≤60 мс` },
{ label: "Geometry", value: `${number(candidate.geometryP95Ms, 2)} / ${number(candidate.geometryP99Ms, 2)} мс`, hint: "p95 / p99 · gates 9 / 16 мс" },
{ label: "Occupancy delta", value: `+${occupancy.addedCellTotal.toLocaleString("ru-RU")}`, hint: `${percent(occupancy.meanCellGrowthFraction)} cells · ${percent(occupancy.meanComponentGrowthFraction)} components` },
{ label: "Кадр 1856", value: separated ? `раздельно · ${separatedLabel}` : `не принят · ${separatedLabel}`, hint: "два столбика и две полусферы проверяются отдельными component gates" },
{ label: "Потери / false free", value: `${occupancy.lostCellTotal} / ${result.metrics.falseFreeCount}`, hint: `capacity drops ${result.metrics.capacityDropCount}` },
]}
conclusion={{
proved: `Система сама добавила ${result.metrics.provider.additiveObservationCount.toLocaleString("ru-RU")} low-step observations на ${result.metrics.provider.framesWithAdditions.toLocaleString("ru-RU")} кадрах, сохранила baseline без потерь и выдержала полный realtime shadow.`,
notProved: "Не доказаны физический clearance, planner-authoritative free space, независимые precision/recall и безопасность движения на реальном шасси.",
decision: result.accepted
? "Worker-кандидат принят в ограниченном replay-shadow контуре. Следующий шаг — отдельное решение о cutover и регрессия на новых сценах; ручная разметка не становится runtime-зависимостью."
: "Cutover запрещён. Исправить провалившийся gate и повторить полный immutable shadow без ослабления порогов.",
}}
/>
)}
/>
);
}
@@ -0,0 +1,91 @@
import { useEffect, useMemo, useState } from "react";
import { Icon } from "@nodedc/ui-react";
import { fetchM47ReferenceGraphLab, type M47ReferenceGraphLabResult } from "../../core/laboratory/m47ReferenceGraph";
import {
fetchM48StaticOccupancyCases,
type M48StaticOccupancyCase,
type M48StaticOccupancyQualificationResult,
} from "../../core/laboratory/m48StaticOccupancyQualification";
import {
M4ReplayThreatVisual,
type M4ReplayThreatReviewAnchor,
} from "./M4ReplayThreatVisual";
function message(error: unknown): string {
return error instanceof Error && error.message.trim()
? error.message
: "Каноническое graph evidence M4.8R2 недоступно.";
}
export function M48StaticOccupancyQualificationEvidence({
result,
}: {
result: M48StaticOccupancyQualificationResult;
}) {
const [graph, setGraph] = useState<M47ReferenceGraphLabResult | null>(null);
const [cases, setCases] = useState<readonly M48StaticOccupancyCase[]>([]);
const [loading, setLoading] = useState(true);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
const controller = new AbortController();
setLoading(true);
setError(null);
void Promise.all([
fetchM47ReferenceGraphLab({
resultId: result.referenceGraphLabResultId,
signal: controller.signal,
}),
fetchM48StaticOccupancyCases(result.resultId, { signal: controller.signal }),
])
.then(([nextGraph, nextCases]) => {
if (controller.signal.aborted) return;
if (nextCases.some((item) => item.sequence < 1 || item.sequence > nextGraph.frames.expected)) {
throw new Error("M4.8R2 anchor вышел за immutable timeline Canonical Reference Graph.");
}
setGraph(nextGraph);
setCases(nextCases);
})
.catch((caught: unknown) => {
if (!controller.signal.aborted) setError(message(caught));
})
.finally(() => {
if (!controller.signal.aborted) setLoading(false);
});
return () => controller.abort();
}, [result.referenceGraphLabResultId, result.resultId]);
const reviewAnchors = useMemo<readonly M4ReplayThreatReviewAnchor[]>(() => (
cases.map((item) => ({
id: item.anchorId,
sourceSequence: item.sequence - 1,
extentXyxyNormalized: item.extentXyxy,
matchedAtThreshold: item.candidateQualified,
}))
), [cases]);
if (loading) {
return (
<div className="l3-visual-audit__state" role="status">
<span className="busy-indicator" aria-hidden="true" />
<span>Открываем M4.7 graph и M4.8R2 static anchors</span>
</div>
);
}
if (error || !graph) {
return (
<div className="l3-visual-audit__state" role="alert">
<Icon name="alert" size={18} />
<span>{error ?? "Canonical Reference Graph не связан с M4.8R2."}</span>
</div>
);
}
return (
<M4ReplayThreatVisual
resultId={graph.visual.resultId}
semantic={{ resultId: graph.semantic.resultId, taxonomy: graph.semantic.taxonomy }}
reviewAnchors={reviewAnchors}
/>
);
}
@@ -0,0 +1,85 @@
import {
LaboratoryEvidence,
LaboratoryResultSummary,
LaboratorySummary,
LaboratoryWorkTemplate,
} from "../../components/laboratory/LaboratoryPresentation";
import type { M48StaticOccupancyQualificationResult } from "../../core/laboratory/m48StaticOccupancyQualification";
import { M48StaticOccupancyQualificationEvidence } from "./M48StaticOccupancyQualificationEvidence";
function percent(value: number): string {
return `${(value * 100).toLocaleString("ru-RU", { maximumFractionDigits: 1 })}%`;
}
export function M48StaticOccupancyQualificationResultView({
rigLabel,
result,
}: {
rigLabel: string;
result: M48StaticOccupancyQualificationResult;
}) {
const nearReady = result.decision.criticalNearCandidateReadyForShadow;
const status = nearReady
? "0–8 м: кандидат закрыл все assisted-якоря; готов к Worker shadow"
: "0–8 м: статическая occupancy ещё не закрыта";
return (
<LaboratoryWorkTemplate
summary={(
<LaboratorySummary
title="M4.8R2 · консервативная static occupancy"
description="RF-DETR не изменяется. Отдельный детерминированный прогон проверяет, удерживает ли current/rolling LiDAR низкие полусферы, столбы и другие безымянные ограничения, и оценивает уже вычисляемый CPU-признак low-step как additive occupied-only слой."
status={status}
statusTone={nearReady ? "success" : "warning"}
facts={[
{ label: "Конфигурация", value: `${rigLabel} RIGHT · Canonical Reference Graph · VIDEO/CAMERA/3D/PLAN/SEMANTICS` },
{ label: "Пайплайн", value: result.pipelineId },
{ label: "Прогон", value: `${result.runLabel} · immutable ${result.resultId}` },
{ label: "Нагрузка", value: "CPU-only geometry · 0 дополнительных detector inference" },
{ label: "Authority", value: "REPLAY-SIMULATED · free-space/commands/actuation OFF" },
]}
brief={{
question: "Не превратятся ли близкие полусферы, столбы и другие статические ограничения в пропуск только потому, что камера не знает их название?",
approach: `На ${result.metrics.operatorStaticAnchorCount} существующих operator-assisted static anchors принятую current/rolling occupancy сравнили с additive low-step evidence. Отдельно сохранены четыре канонических hemisphere-якоря кадров 1880/2584.`,
principalResult: `Принятый граф покрывает ${result.metrics.baselineQualifiedCount}/${result.metrics.operatorStaticAnchorCount}; additive кандидат — ${result.metrics.candidateQualifiedCount}/${result.metrics.operatorStaticAnchorCount}. В критической зоне 0–8 м: ${percent(result.metrics.criticalNearCandidateRecall)}.`,
limitation: "Это assisted diagnostic, а не independent truth. Кандидат пока не включён в Worker и может увеличить ложную занятость; требуются полный shadow-прогон, FPS и occupancy-volume gate.",
}}
method={{
completeness: "complete",
executionClass: "deterministic",
pipelineId: result.pipelineId,
components: [
{ kind: "source", name: result.referenceGraphLabResultId, version: "accepted M4.7", role: "immutable current/rolling occupied/unknown + threat graph", identitySha256: result.referenceGraphLabResultId.split("-").at(-1) ?? null },
{ kind: "source", name: result.smallStaticResultId, version: "M4.8R1 assisted seed", role: "static avoidance anchors · not independent truth", identitySha256: result.smallStaticResultId.split("-").at(-1) ?? null },
{ kind: "algorithm", name: "low-step occupied-only candidate", version: "v1", role: "additive CPU geometry; never clearing", identitySha256: result.resultId.split("-").at(-1) ?? null },
],
}}
/>
)}
evidence={(
<LaboratoryEvidence eyebrow="M4.8R2 VISUAL EVIDENCE · CANONICAL REFERENCE GRAPH" title="Те же CAMERA/3D/PLAN, 11 static anchors и неизменённый M4.7 timeline" kind="recorded-replay" resizable>
<M48StaticOccupancyQualificationEvidence result={result} />
</LaboratoryEvidence>
)}
result={(
<LaboratoryResultSummary
title="Что дал прогон: локализован лёгкий геометрический слой для близких препятствий"
status={status}
statusTone={nearReady ? "success" : "warning"}
metrics={[
{ label: "Current graph", value: `${result.metrics.baselineQualifiedCount}/${result.metrics.operatorStaticAnchorCount}`, hint: `${percent(result.metrics.criticalNearBaselineRecall)} в 0–8 м` },
{ label: "+ low-step candidate", value: `${result.metrics.candidateQualifiedCount}/${result.metrics.operatorStaticAnchorCount}`, hint: `${percent(result.metrics.criticalNearCandidateRecall)} в 0–8 м` },
{ label: "8–12 м", value: percent(result.metrics.approachCandidateRecall), hint: `${result.metrics.approachAnchorCount} assisted anchors · ещё не gate` },
{ label: "False free", value: result.metrics.falseFreeCount.toLocaleString("ru-RU"), hint: `${result.metrics.canonicalEngineeringAnchorCount}/${result.metrics.canonicalEngineeringAnchorCount} canonical anchors retained` },
]}
conclusion={{
proved: `На замороженном assisted seed additive low-step evidence поднял покрытие близких static anchors до ${percent(result.metrics.criticalNearCandidateRecall)} без дополнительной нейросети и без единого free-space утверждения.`,
notProved: "Не доказаны independent precision/recall, приемлемый рост консервативной occupancy, realtime Worker FPS после интеграции, физический clearance и collision safety.",
decision: nearReady
? "Интегрировать low-step только как occupied/unknown Worker shadow. Затем прогнать все 4 489 кадров и принять по FPS, росту компонентов, отсутствию capacity drops и повторному static-anchor gate."
: "Не интегрировать в Worker до исправления близких пропусков.",
}}
/>
)}
/>
);
}
@@ -0,0 +1,162 @@
import {
LaboratoryEvidence,
LaboratoryResultSummary,
LaboratorySummary,
LaboratoryWorkTemplate,
} from "../../components/laboratory/LaboratoryPresentation";
import type {
M48QNativeRiskQualityResult,
M48TLegacyRiskQualityResult,
M48TRiskQualityResult,
} from "../../core/laboratory/m48tRiskQuality";
import { M48TRiskQualityVisual } from "./M48TRiskQualityVisual";
function percent(value: number, digits = 1): string {
return `${(value * 100).toLocaleString("ru-RU", { maximumFractionDigits: digits })}%`;
}
function decimal(value: number, digits = 1): string {
return value.toLocaleString("ru-RU", { maximumFractionDigits: digits });
}
export function M48TRiskQualityResultView({
rigLabel,
result,
}: {
rigLabel: string;
result: M48TRiskQualityResult;
}) {
if (result.variant === "native-risk-review") {
return <M48QNativeRiskQualityResultView rigLabel={rigLabel} result={result} />;
}
return <M48TLegacyRiskQualityResultView rigLabel={rigLabel} result={result} />;
}
function M48TLegacyRiskQualityResultView({
rigLabel,
result,
}: {
rigLabel: string;
result: M48TLegacyRiskQualityResult;
}) {
return (
<LaboratoryWorkTemplate
summary={(
<LaboratorySummary
title="M4.8T · semantic quality + temporal identity"
description="RF-DETR-L проверен на полном независимом COCO val2017 по заранее записанным risk-family гейтам. Отдельно тот же advisory-класс стабилизирован на geometry-owned ID полного RAVNOVES00 replay; семантика не участвует в association или occupancy."
status="Quality gate failed · temporal invariant passed"
statusTone="warning"
facts={[
{ label: "Quality truth", value: `COCO val2017 · ${result.source.quality.truthInstances.toLocaleString("ru-RU")} risk instances` },
{ label: "Candidate", value: `${result.candidate.modelId} · threshold ${decimal(result.candidate.minimumScore, 2)}` },
{ label: "Temporal source", value: `${rigLabel} · ${result.source.temporal.frames.toLocaleString("ru-RU")} world states` },
{ label: "Authority", value: "SHADOW ONLY · geometry-owned occupancy · production NO" },
]}
brief={{
question: "Достаточно ли качественна текущая risk-семантика RF-DETR и можно ли убрать кадровое мерцание класса без влияния на геометрию?",
approach: `Все ${result.source.quality.riskImages.toLocaleString("ru-RU")} COCO-изображений с risk-классами оценены при неизменном score ${decimal(result.candidate.minimumScore, 2)}. Затем bounded history 5 / confirm 2 / switch 3 применена только к advisory-классу уже существующих component ID.`,
principalResult: `Recall прошёл: ${percent(result.quality.microRecall)} overall и ${percent(result.quality.mediumLargeRecall)} medium+large. Precision ${percent(result.quality.microPrecision)} и vehicle recall ${percent(result.quality.families.vehicle)} не прошли гейты. Temporal shadow сократил class switches ${result.temporal.rawClassSwitches} → ${result.temporal.stableClassSwitches} и family switches ${result.temporal.rawFamilySwitches} → ${result.temporal.stableFamilySwitches}.`,
limitation: "COCO не является truth городского маршрута RAVNOVES00, а temporal replay не имеет независимой track/class truth. Batch timing не принимается как realtime-гейт.",
}}
method={result.method}
/>
)}
evidence={(
<LaboratoryEvidence
eyebrow="M4.8T VISUAL EVIDENCE · INDEPENDENT COCO TRUTH"
title="16 hash-bound review cases: human truth против RF-DETR"
kind="diagnostic-model"
resizable
>
<M48TRiskQualityVisual result={result} />
</LaboratoryEvidence>
)}
result={(
<LaboratoryResultSummary
title="Temporal anti-flicker принят как инвариант; detector quality не принят"
status="2/10 predeclared quality checks failed"
statusTone="warning"
metrics={[
{ label: "Precision / recall", value: `${percent(result.quality.microPrecision)} / ${percent(result.quality.microRecall)}`, hint: "gates ≥ 80% / ≥ 75%" },
{ label: "Vehicle family", value: percent(result.quality.families.vehicle), hint: "gate ≥ 85% · failed" },
{ label: "TP / FP / FN", value: `${result.counts.truePositive.toLocaleString("ru-RU")} / ${result.counts.falsePositive.toLocaleString("ru-RU")} / ${result.counts.falseNegative.toLocaleString("ru-RU")}`, hint: `${result.counts.predictions.toLocaleString("ru-RU")} predictions` },
{ label: "Class / family switches", value: `${result.temporal.rawClassSwitches}→${result.temporal.stableClassSwitches} / ${result.temporal.rawFamilySwitches}→${result.temporal.stableFamilySwitches}`, hint: `peak active ${result.temporal.peakActiveComponents}/${result.temporal.maximumActiveComponents}` },
{ label: "Batch throughput", value: `${decimal(result.execution.effectiveImagesPerSecond, 2)} image/s`, hint: `image p95 ${decimal(result.execution.imageP95Ms, 2)} ms · non-admission` },
]}
conclusion={{
proved: `На независимой COCO truth текущий RF-DETR сохраняет высокий recall: ${percent(result.quality.microRecall)} overall и ${percent(result.quality.mediumLargeRecall)} medium+large. Bounded temporal state подавил или отложил ${result.temporal.suppressedClassSwitches} class-switch и ${result.temporal.suppressedFamilySwitches} family-switch, сохранив association и occupancy class-independent; active state ${result.temporal.peakActiveComponents}/${result.temporal.maximumActiveComponents}, eviction 0.`,
notProved: `Semantic candidate не принят: precision ${percent(result.quality.microPrecision)} при gate 80%, vehicle recall ${percent(result.quality.families.vehicle)} при gate 85%. Не доказаны RAVNOVES class truth, physical track identity, child/adult, unknown moving hazards, risk policy и realtime admission этой batch-командой.`,
decision: "Не менять зафиксированные гейты и не добавлять второй detector. RF-DETR остаётся shadow-кандидатом; temporal stabilizer допустим только как advisory-слой поверх geometry-owned ID.",
}}
/>
)}
/>
);
}
function M48QNativeRiskQualityResultView({
rigLabel,
result,
}: {
rigLabel: string;
result: M48QNativeRiskQualityResult;
}) {
const classes = Object.entries(result.selection.classCounts)
.map(([name, count]) => `${name} ${count}`)
.join(" · ");
return (
<LaboratoryWorkTemplate
summary={(
<LaboratorySummary
title="M4.8Q · native raw-fisheye risk review"
description="Нативный RF-DETR прогнан внутри полного reference graph прямо на исходном KB4 raster 800×600: без rectification, warp, resize и обратного преобразования. Из immutable frame ledger детерминированно отобраны реальные risk-кейсы для операторской проверки в существующем M4.8 image-case instrument."
status="Runtime принят · 24 native cases готовы · quality ещё не adjudicated"
statusTone="success"
facts={[
{ label: "Source", value: `${rigLabel} · ${result.source.frameCount.toLocaleString("ru-RU")} raw frames · 800×600` },
{ label: "Candidate", value: `${result.candidate.modelId} · score ≥ ${decimal(result.candidate.minimumScore, 2)}` },
{ label: "Image path", value: "RAW KB4 → fused GPU graph · geometric resampling NO" },
{ label: "Authority", value: "SHADOW ONLY · independent quality NO · production NO" },
]}
brief={{
question: "Работает ли нативная risk-классификация на нашей исходной fisheye-картинке в realtime envelope, и какие реальные кадры надо проверить человеком?",
approach: `Полный ${result.source.frameCount.toLocaleString("ru-RU")}-кадровый native graph оставлен неизменным. Повторной инференс-сессии для лабы нет: 24 кадра выбраны из его hash-bound ledger по person, animal, light-road-user, vehicle, low-confidence, fisheye-edge и расхождениям с диагностической legacy 704 веткой.`,
principalResult: `${decimal(result.execution.effectiveWorldStateFps, 3)} FPS при detector p95 ${decimal(result.execution.detectorTotalP95Ms, 2)} ms и world-state p95 ${decimal(result.execution.worldStateCompletionP95Ms, 2)} ms. В review pack реально попали ${classes}.`,
limitation: "Это диагностическая выборка маршрута без независимой разметки. Наличие бокса и класса можно осмотреть, но precision/recall и корректность каждого класса этой фазой ещё не доказаны.",
}}
method={result.method}
/>
)}
evidence={(
<LaboratoryEvidence
eyebrow="M4.8Q VISUAL EVIDENCE · NATIVE RAW KB4"
title="24 исходных fisheye-кадра с отключаемым client-side overlay"
kind="diagnostic-model"
resizable
>
<M48TRiskQualityVisual result={result} />
</LaboratoryEvidence>
)}
result={(
<LaboratoryResultSummary
title="Native runtime закрыт; следующий честный шаг — adjudication этих кейсов"
status="Review-ready · quality-not-adjudicated"
statusTone="success"
metrics={[
{ label: "Full graph", value: `${decimal(result.execution.effectiveWorldStateFps, 3)} FPS`, hint: `delivery ${percent(result.runtime.deliveryRatio, 2)} · 4 489/4 489` },
{ label: "Detector / world-state p95", value: `${decimal(result.execution.detectorTotalP95Ms, 2)} / ${decimal(result.execution.worldStateCompletionP95Ms, 2)} ms`, hint: "один native pass · additional inference 0" },
{ label: "GPU / VRAM peak", value: `${decimal(result.execution.gpuUtilizationP95Percent, 1)}% / ${decimal(result.execution.gpuMemoryMaximumMib / 1024, 2)} GiB`, hint: "Worker 006 · RTX 4090 envelope" },
{ label: "Native parity", value: `${percent(result.parity.precision, 2)} / ${percent(result.parity.recall, 2)}`, hint: `precision / recall · mean IoU ${percent(result.parity.meanIou, 2)}` },
{ label: "Review pack", value: `${result.selection.caseCount}/24 cases`, hint: "8 diagnostic buckets · raw 800×600" },
]}
conclusion={{
proved: `Полный reference graph доставил все ${result.source.frameCount.toLocaleString("ru-RU")} world states на ${decimal(result.execution.effectiveWorldStateFps, 3)} FPS. Детектор использовал ровно один native 800×600 KB4 pass без геометрического resampling. Hash-bound review содержит person, dog, bicycle, skateboard, car и truck; боксы рисуются поверх чистого кадра и отключаются кнопкой.`,
notProved: "Не доказаны route-domain precision/recall, истинность 24 классов и боксов, child/adult, поведение объектов, физическая track identity и безопасность навигации. Legacy 704 count delta остаётся только диагностикой, потому что старая ветка растягивала 4:3 raster.",
decision: "Не добавлять второй detector и не менять realtime graph. Использовать эти 24 кейса как вход существующего M4.8 review/correction workflow; только после независимой adjudication считать route-domain semantic quality.",
}}
/>
)}
/>
);
}
@@ -0,0 +1,162 @@
import { useMemo, useState } from "react";
import { Icon, IconButton } from "@nodedc/ui-react";
import { LaboratoryEvidenceViewer } from "../../components/laboratory/LaboratoryEvidenceViewer";
import { RecordedEvidenceImageScene } from "../../components/laboratory/RecordedEvidenceImageScene";
import type {
RecordedEvidenceBox,
RecordedEvidenceBoxTone,
} from "../../components/laboratory/RecordedEvidenceBoxOverlay";
import type {
M48QNativeRiskQualityResult,
M48QRiskFamily,
M48TLegacyRiskQualityResult,
M48TRiskQualityResult,
} from "../../core/laboratory/m48tRiskQuality";
function navigateIndex(current: number, offset: -1 | 1, length: number): number {
return (current + offset + length) % length;
}
function familyTone(family: M48QRiskFamily): RecordedEvidenceBoxTone {
if (family === "person" || family === "animal") return "danger";
if (family === "light-road-user") return "warning";
return "accent";
}
function LegacyVisual({ result }: { result: M48TLegacyRiskQualityResult }) {
const [index, setIndex] = useState(0);
const [expanded, setExpanded] = useState(false);
const item = result.review.cases[index] ?? null;
const navigate = (offset: -1 | 1) =>
setIndex((current) => navigateIndex(current, offset, result.review.cases.length));
return (
<div className="l3-visual-audit">
<LaboratoryEvidenceViewer
label="M4.8T independent COCO quality review"
mode="quality"
modes={[{ value: "quality", label: "COCO TRUTH" }]}
expanded={expanded}
onModeChange={() => undefined}
onExpandedChange={setExpanded}
actions={(
<div className="l3-visual-audit__pagination">
<IconButton label="Предыдущий M4.8T review case" onClick={() => navigate(-1)}>
<Icon name="chevron-left" size={16} />
</IconButton>
<IconButton label="Следующий M4.8T review case" onClick={() => navigate(1)}>
<Icon name="chevron-right" size={16} />
</IconButton>
</div>
)}
overlay={item ? (
<div className="l3-visual-audit__overlay">
<div>
<span>COCO val2017 · independent human truth</span>
<strong>case {index + 1}/{result.review.cases.length} · image {item.imageId}</strong>
<small>Зелёный — truth · жёлтый — RF-DETR prediction · score ≥ 0,25</small>
</div>
</div>
) : null}
>
{item ? (
<div className="l32-camera-scene">
<img
src={item.imageUrl}
alt={`M4.8T COCO review image ${item.imageId}: truth and RF-DETR boxes`}
draggable={false}
/>
</div>
) : (
<div className="l3-visual-audit__state" role="alert">
<Icon name="alert" size={18} />
M4.8T visual evidence недоступно.
</div>
)}
</LaboratoryEvidenceViewer>
</div>
);
}
function NativeVisual({ result }: { result: M48QNativeRiskQualityResult }) {
const [index, setIndex] = useState(0);
const [expanded, setExpanded] = useState(false);
const [boxesVisible, setBoxesVisible] = useState(true);
const item = result.review.cases[index] ?? null;
const boxes = useMemo<readonly RecordedEvidenceBox[]>(() => {
if (!item || !boxesVisible) return [];
return item.proposals.map((proposal) => ({
boxXyxy: proposal.boxXyxy,
label: `${proposal.className} · ${proposal.score.toFixed(2)}`,
tone: familyTone(proposal.riskFamily),
}));
}, [boxesVisible, item]);
const navigate = (offset: -1 | 1) =>
setIndex((current) => navigateIndex(current, offset, result.review.cases.length));
return (
<div className="l3-visual-audit">
<LaboratoryEvidenceViewer
label="M4.8Q native raw-fisheye risk review"
mode="native"
modes={[{ value: "native", label: "NATIVE RF-DETR" }]}
expanded={expanded}
onModeChange={() => undefined}
onExpandedChange={setExpanded}
actions={(
<div className="l3-visual-audit__pagination">
<IconButton label="Предыдущий M4.8Q review case" onClick={() => navigate(-1)}>
<Icon name="chevron-left" size={16} />
</IconButton>
<IconButton label="Следующий M4.8Q review case" onClick={() => navigate(1)}>
<Icon name="chevron-right" size={16} />
</IconButton>
</div>
)}
trailingActions={(
<IconButton
label={boxesVisible ? "Скрыть native RF-DETR боксы" : "Показать native RF-DETR боксы"}
onClick={() => setBoxesVisible((visible) => !visible)}
>
<Icon name={boxesVisible ? "eye-off" : "eye"} size={16} />
</IconButton>
)}
overlay={item ? (
<div className="l3-visual-audit__overlay">
<div>
<span>RAVNOVES00 · raw KB4 800×600 · resampling NO</span>
<strong>
case {index + 1}/{result.review.cases.length} · frame {item.sequence} · {item.proposals.length} native boxes
</strong>
<small>
{item.selectionBuckets.join(" · ")} · native/legacy {item.nativeDetectionCount}/{item.legacyDetectionCount} (diagnostic only)
</small>
</div>
</div>
) : null}
>
{item ? (
<RecordedEvidenceImageScene
src={item.imageUrl}
imageWidth={item.width}
imageHeight={item.height}
boxes={boxes}
ariaLabel={`M4.8Q frame ${item.sequence}: ${boxes.length} visible native risk boxes`}
/>
) : (
<div className="l3-visual-audit__state" role="alert">
<Icon name="alert" size={18} />
M4.8Q native visual evidence недоступно.
</div>
)}
</LaboratoryEvidenceViewer>
</div>
);
}
export function M48TRiskQualityVisual({ result }: { result: M48TRiskQualityResult }) {
return result.variant === "native-risk-review"
? <NativeVisual result={result} />
: <LegacyVisual result={result} />;
}
@@ -0,0 +1,152 @@
import { useCallback, useEffect, useMemo, useRef, useState } from "react";
import type {
RecordedEvidenceSemanticClass,
RecordedEvidenceSemanticPaletteEntry,
} from "../../components/laboratory/RecordedEvidenceSemanticMaskOverlay";
import {
fetchM49TgsAnchorSpatial,
type M49TgsAnchorSpatial,
type M49TgsFailClosedResult,
type M49TgsStateCode,
} from "../../core/laboratory/m49TgsFailClosed";
import {
M4ReplayThreatVisual,
type M4ReplayClassifiedSpatialFrame,
type M4ReplayThreatReviewAnchor,
} from "./M4ReplayThreatVisual";
const CLASSES: readonly RecordedEvidenceSemanticClass[] = [
{ id: 1, label: "Ground support" },
{ id: 2, label: "Non-ground occupied" },
{ id: 3, label: "Unknown / rejected" },
];
const PALETTE: readonly RecordedEvidenceSemanticPaletteEntry[] = [
{ classId: 1, color: { kind: "token", token: "--nodedc-success-rgb" } },
{ classId: 2, color: { kind: "token", token: "--nodedc-danger-rgb" } },
{ classId: 3, color: { kind: "token", token: "--nodedc-warning-rgb" } },
];
function cellState(code: M49TgsStateCode): M4ReplayClassifiedSpatialFrame["cellsMapGravityLocal"][number]["state"] {
if (code === 1) return "ground-support";
if (code === 2) return "nonground-occupied";
if (code === 3) return "unknown-rejected";
return "unobserved";
}
function message(error: unknown): string {
return error instanceof Error && error.message.trim()
? error.message
: "M49 TGS spatial evidence недоступно.";
}
export function M49TgsFailClosedEvidence({
result,
}: {
result: M49TgsFailClosedResult;
}) {
const [activeSequence, setActiveSequence] = useState<number | null>(null);
const [spatial, setSpatial] = useState<M49TgsAnchorSpatial | null>(null);
const [loading, setLoading] = useState(false);
const [error, setError] = useState<string | null>(null);
const spatialCacheRef = useRef(new Map<string, M49TgsAnchorSpatial>());
const anchorSequences = useMemo(
() => new Set(result.metrics.primary.map((item) => item.anchorFrameIndex)),
[result.metrics.primary],
);
const expectedAtSequence = activeSequence !== null && anchorSequences.has(activeSequence);
useEffect(() => {
if (activeSequence === null || !anchorSequences.has(activeSequence)) {
setSpatial(null);
setLoading(false);
setError(null);
return;
}
const cacheKey = `${result.resultId}:${activeSequence}`;
const cached = spatialCacheRef.current.get(cacheKey);
if (cached) {
setSpatial(cached);
setLoading(false);
setError(null);
return;
}
const controller = new AbortController();
setSpatial(null);
setLoading(true);
setError(null);
void fetchM49TgsAnchorSpatial(
result.resultId,
activeSequence,
"causal_rolling_1s",
{ signal: controller.signal },
)
.then((next) => {
if (!controller.signal.aborted) {
spatialCacheRef.current.set(cacheKey, next);
setSpatial(next);
}
})
.catch((caught: unknown) => {
if (!controller.signal.aborted) setError(message(caught));
})
.finally(() => {
if (!controller.signal.aborted) setLoading(false);
});
return () => controller.abort();
}, [activeSequence, anchorSequences, result.resultId]);
const reviewAnchors = useMemo<readonly M4ReplayThreatReviewAnchor[]>(
() => result.metrics.primary.map((item) => ({
id: `m49-tgs-${item.anchorFrameIndex}`,
sourceSequence: item.anchorFrameIndex,
extentXyxyNormalized: [0, 0, 0, 0],
matchedAtThreshold: false,
statusLabel: "визуальная проверка",
})),
[result.metrics.primary],
);
const classifiedFrame = useMemo<M4ReplayClassifiedSpatialFrame | null>(() => {
if (!spatial) return null;
return {
sourceSequence: spatial.sourceSequence,
pointsMapGravityLocalXyzM: spatial.pointsXyzM,
pointClassIds: spatial.pointStates,
cellsMapGravityLocal: spatial.costmap.centersXyM.map((center, index) => ({
centerXyM: center,
zBoundsM: spatial.costmap.zBoundsM[index]!,
state: cellState(spatial.costmap.states[index]!),
})),
cellSizeM: spatial.costmap.cellSizeM,
classes: CLASSES,
palette: PALETTE,
};
}, [spatial]);
const handleSequenceChange = useCallback((sequence: number | null) => {
setActiveSequence(sequence);
}, []);
return (
<M4ReplayThreatVisual
resultId={result.source.linkedVisualResultId}
reviewAnchors={reviewAnchors}
showReviewAnchorBoxes={false}
reviewLabel="10 gravity-aligned TGS anchors"
evidenceLabel="M49 · TGS fail-closed"
initialSpatialMode="3d"
onActiveSequenceChange={handleSequenceChange}
classifiedSpatialLayer={{
label: "TGS fail-closed · causal rolling 1 s",
pointLayerLabel: "TGS POINTS",
cellLayerLabel: "COSTMAP",
expectedAtSequence,
frame: classifiedFrame,
loading,
error,
}}
/>
);
}
@@ -0,0 +1,92 @@
import {
LaboratoryEvidence,
LaboratoryResultSummary,
LaboratorySummary,
LaboratoryWorkTemplate,
} from "../../components/laboratory/LaboratoryPresentation";
import type { M49TgsFailClosedResult } from "../../core/laboratory/m49TgsFailClosed";
import { M49TgsFailClosedEvidence } from "./M49TgsFailClosedEvidence";
function number(value: number, digits = 1): string {
return value.toLocaleString("ru-RU", { maximumFractionDigits: digits });
}
export function M49TgsFailClosedResultView({
rigLabel,
result,
}: {
rigLabel: string;
result: M49TgsFailClosedResult;
}) {
const worst = [...result.metrics.primary].sort(
(left, right) => (
right.nongroundPointCount / Math.max(right.pointCount, 1)
- left.nongroundPointCount / Math.max(left.pointCount, 1)
),
)[0]!;
const status = "Representation complete; визуальное качество ещё не принято";
return (
<LaboratoryWorkTemplate
summary={(
<LaboratorySummary
title="M4.9T4 · TRAVEL TGS fail-closed evidence"
description="TRAVEL GroundSeg запущен без AOS на десяти immutable RAVNOVES00 anchors. Вход сохранён в gravity-aligned map frame; каждый eligible point получил состояние, а каждая costmap-ячейка остаётся ground, occupied, rejected или unobserved."
status={status}
statusTone="warning"
facts={[
{ label: "Конфигурация", value: `${rigLabel} RIGHT · Camera + gravity-aligned LiDAR · 10 anchors` },
{ label: "Метод", value: "TRAVEL TGS only · AOS OFF · causal rolling 1 s" },
{ label: "Evidence", value: `${result.metrics.anchorCount} anchors · ${result.metrics.costmapCellCount.toLocaleString("ru-RU")} cells/anchor · all points accounted` },
{ label: "Нагрузка", value: `Worker 006 CPU-only · GPU 0 · wrapper ${number(result.execution.wrapperElapsedSeconds, 2)} с` },
{ label: "Authority", value: "REPLAY-SIMULATED · visual/traversability/navigation/actuation OFF" },
]}
brief={{
question: "Отделяет ли готовый TRAVEL TGS опорную поверхность от неизвестной занятой геометрии достаточно чисто, чтобы заменить самодельный static-obstacle threshold pipeline?",
approach: "На десяти сложных кадрах проверяется полный gravity-aligned point set и fail-closed costmap. Зелёное — опора, красное — non-ground occupied, жёлтое — rejected/unknown, тёмное — unobserved; камера остаётся синхронным первичным контекстом.",
principalResult: `Контракт представления закрыт: ${result.metrics.anchorProfileCount}/20 профилей, ни одной потерянной eligible point, AOS и GPU отсутствуют. Process wall rolling p50/max: ${number(result.metrics.processWallRollingP50Ms, 0)}/${number(result.metrics.processWallRollingMaxMs, 0)} мс.`,
limitation: `Качество не принято: особенно проверить кадр ${worst.anchorFrameIndex + 1}, где ${number(worst.nongroundPointCount / Math.max(worst.pointCount, 1) * 100)}% rolling points помечены non-ground. Это может быть реальная боковая геометрия либо ложная блокировка поверхности.`,
}}
method={{
completeness: "complete",
executionClass: "deterministic",
pipelineId: "travel-tgs-gravity-aligned-fail-closed/v1",
components: [
{ kind: "source", name: "RAVNOVES00", version: "10 immutable anchors", role: "camera + registered map increments", identitySha256: result.source.sourcePackSha256 },
{ kind: "algorithm", name: "TRAVEL GroundSeg", version: "95dc2fbd66a343efd9060c45a5711b6307a950a4", role: "ground/nonground separation; AOS excluded", identitySha256: result.configuration.configSha256 },
{ kind: "algorithm", name: "fail-closed complement adapter", version: "v1", role: "explicit rejected points and unobserved cells", identitySha256: result.resultId.split("-").at(-1) ?? null },
],
}}
/>
)}
evidence={(
<LaboratoryEvidence
eyebrow="M4.9T4 VISUAL EVIDENCE · CAMERA + GRAVITY-ALIGNED TGS"
title="10 anchors: полный TGS point set и четырёхсостояний costmap на том же recorded timeline"
kind="recorded-replay"
resizable
>
<M49TgsFailClosedEvidence result={result} />
</LaboratoryEvidence>
)}
result={(
<LaboratoryResultSummary
title="Что уже доказано и что проверяем глазами"
status={status}
statusTone="warning"
metrics={[
{ label: "Point accounting", value: "100%", hint: "ground + non-ground + rejected = exact eligible input" },
{ label: "Anchors", value: `${result.metrics.anchorCount}/10`, hint: "current + causal rolling 1 s" },
{ label: "Costmap", value: `${result.metrics.costmapCellCount.toLocaleString("ru-RU")} cells`, hint: `${number(result.configuration.cellSizeM, 2)} м · radius ${number(result.configuration.radiusM, 0)} м` },
{ label: "Process wall rolling", value: `${number(result.metrics.processWallRollingP50Ms, 0)} / ${number(result.metrics.processWallRollingMaxMs, 0)} мс`, hint: "p50 / max · CPU process envelope, не realtime integration" },
{ label: "GPU / AOS", value: "0 / OFF", hint: "Worker 006; Frigate budget не затронут" },
]}
conclusion={{
proved: "Готовый TGS можно встроить fail-closed: исходные точки не теряются, unknown не становится free, AOS не нужен, а вычисление укладывается в лёгкий CPU-контур на этих anchors.",
notProved: "Не доказано, что красный non-ground слой не режет дорогу, траву или допустимые просветы. Нет независимой terrain truth, полного replay, realtime graph integration и модели корпуса.",
decision: "Открыть десять anchors по очереди. Если красное остаётся на реальных препятствиях и не перекрывает видимую опорную поверхность, TGS идёт в полный shadow; иначе кандидат отклоняется без ручной подгонки порогов под эти кадры.",
}}
/>
)}
/>
);
}
@@ -0,0 +1,227 @@
import { useCallback, useEffect, useMemo, useState } from "react";
import type {
RecordedEvidenceSemanticClass,
RecordedEvidenceSemanticPaletteEntry,
} from "../../components/laboratory/RecordedEvidenceSemanticMaskOverlay";
import {
fetchE47SemanticSlamResult,
type E47SemanticSlamResult,
} from "../../core/laboratory/e47SemanticSlam";
import {
fetchM49PhysicalSafetyPlaybackIdForSource,
M49PhysicalSafetyPlaybackBuffer,
type M49PhysicalSafetyPlaybackProgress,
} from "../../core/laboratory/m49PhysicalSafetyPlayback";
import {
fetchM49TgsFullShadowPlaybackPack,
type M49TgsFullShadowResult,
type M49TgsFullShadowPlaybackPack,
type M49TgsFullShadowPlaybackProgress,
} from "../../core/laboratory/m49TgsFullShadow";
import {
M4ReplayThreatVisual,
type M4ReplayClassifiedSpatialFrame,
} from "./M4ReplayThreatVisual";
const CLASSES: readonly RecordedEvidenceSemanticClass[] = [
{ id: 1, label: "Ground support" },
{ id: 2, label: "Non-ground occupied" },
{ id: 3, label: "Unknown / rejected" },
];
const PALETTE: readonly RecordedEvidenceSemanticPaletteEntry[] = [
{ classId: 1, color: { kind: "token", token: "--nodedc-success-rgb" } },
{ classId: 2, color: { kind: "token", token: "--nodedc-danger-rgb" } },
{ classId: 3, color: { kind: "token", token: "--nodedc-warning-rgb" } },
];
function message(error: unknown): string {
return error instanceof Error && error.message.trim()
? error.message
: "Полный TGS spatial frame недоступен.";
}
export function M49TgsFullShadowEvidence({ result }: { result: M49TgsFullShadowResult }) {
const [activeSequence, setActiveSequence] = useState<number | null>(null);
const [semantic, setSemantic] = useState<E47SemanticSlamResult | null>(null);
const [semanticError, setSemanticError] = useState<string | null>(null);
const [playbackPack, setPlaybackPack] = useState<M49TgsFullShadowPlaybackPack | null>(null);
const [physicalPlayback, setPhysicalPlayback] = useState<M49PhysicalSafetyPlaybackBuffer | null>(null);
const [physicalProgress, setPhysicalProgress] = useState<M49PhysicalSafetyPlaybackProgress | null>(null);
const [physicalRevision, setPhysicalRevision] = useState(0);
const [playbackProgress, setPlaybackProgress] = useState<M49TgsFullShadowPlaybackProgress>({
phase: "manifest",
trackId: null,
loadedBytes: 0,
totalBytes: 0,
});
const [error, setError] = useState<string | null>(null);
useEffect(() => {
const controller = new AbortController();
setSemantic(null);
setSemanticError(null);
void fetchE47SemanticSlamResult({
resultId: result.source.linkedSemanticResultId,
signal: controller.signal,
})
.then((next) => {
if (controller.signal.aborted) return;
if (!next || next.baseM4ResultId !== result.source.linkedVisualResultId) {
throw new Error("Semantic archive не совпал с исходным M4 timeline.");
}
setSemantic(next);
})
.catch((caught: unknown) => {
if (!controller.signal.aborted) setSemanticError(message(caught));
});
return () => controller.abort();
}, [result.source.linkedSemanticResultId, result.source.linkedVisualResultId]);
useEffect(() => {
const controller = new AbortController();
setPlaybackPack(null);
setPhysicalPlayback(null);
setPhysicalProgress(null);
setPhysicalRevision(0);
setPlaybackProgress({ phase: "manifest", trackId: null, loadedBytes: 0, totalBytes: 0 });
setError(null);
void fetchM49PhysicalSafetyPlaybackIdForSource(result.resultId, {
signal: controller.signal,
}).then(async (physicalResultId) => {
if (controller.signal.aborted) return;
if (physicalResultId) {
const playback = await M49PhysicalSafetyPlaybackBuffer.open(physicalResultId, {
signal: controller.signal,
onProgress: setPhysicalProgress,
});
if (!controller.signal.aborted) setPhysicalPlayback(playback);
return;
}
const pack = await fetchM49TgsFullShadowPlaybackPack(result.resultId, {
signal: controller.signal,
onProgress: setPlaybackProgress,
});
if (!controller.signal.aborted) setPlaybackPack(pack);
}).catch((caught: unknown) => {
if (!controller.signal.aborted) setError(message(caught));
});
return () => controller.abort();
}, [result.resultId]);
useEffect(() => {
if (activeSequence === null || !physicalPlayback) return;
let active = true;
const resident = physicalPlayback.frameIfResident(activeSequence);
void physicalPlayback.prepare(activeSequence).then(() => {
if (active && !resident) setPhysicalRevision((value) => value + 1);
}).catch((caught: unknown) => {
if (active) setError(message(caught));
});
return () => {
active = false;
};
}, [activeSequence, physicalPlayback]);
const classifiedFrame = useMemo<M4ReplayClassifiedSpatialFrame | null>(() => {
if (activeSequence === null) return null;
if (physicalPlayback) {
const frame = physicalPlayback.frameIfResident(activeSequence);
if (!frame) return null;
return {
sourceSequence: activeSequence,
sampleAvailable: frame.metadata.sampleAvailable,
sourcePointCount: frame.metadata.metrics.eligible_point_count ?? 0,
pointsMapGravityLocalXyzM: [],
pointClassIds: [],
cellsMapGravityLocal: [],
packedCellsMapGravityLocal: {
centersXyM: frame.centersXyM,
stateCodes: frame.states,
zBoundsM: frame.zBoundsM,
},
cellSizeM: frame.cellSizeM,
classes: CLASSES,
palette: PALETTE,
};
}
if (!playbackPack) return null;
const frame = playbackPack.frames[activeSequence];
if (!frame) return null;
const cellOffset = activeSequence * playbackPack.cellCount;
const zOffset = cellOffset * 2;
return {
sourceSequence: activeSequence,
sampleAvailable: frame.sampleAvailable,
sourcePointCount: frame.metrics.eligiblePointCount,
pointsMapGravityLocalXyzM: [],
pointClassIds: [],
cellsMapGravityLocal: [],
packedCellsMapGravityLocal: {
centersXyM: playbackPack.centersXyM,
stateCodes: playbackPack.states.subarray(
cellOffset,
cellOffset + playbackPack.cellCount,
),
zBoundsM: playbackPack.zBoundsM.subarray(
zOffset,
zOffset + playbackPack.cellCount * 2,
),
},
cellSizeM: result.configuration.cellSizeM,
classes: CLASSES,
palette: PALETTE,
};
}, [activeSequence, physicalPlayback, physicalRevision, playbackPack, result.configuration.cellSizeM]);
const loading = activeSequence !== null && !classifiedFrame && !error;
const progressPercent = playbackProgress.totalBytes > 0
? Math.min(100, Math.round((playbackProgress.loadedBytes / playbackProgress.totalBytes) * 100))
: 0;
const loadingLabel = physicalProgress
? physicalProgress.phase === "ready"
? "Sealed TGS playback готов"
: `Буферизуем sealed TGS · ${physicalProgress.residentChunkIndexes.length}/3 chunks · ${(physicalProgress.loadedBytes / 1_048_576).toFixed(1)} МБ`
: playbackProgress.phase === "manifest"
? "Проверяем playback manifest"
: playbackProgress.phase === "ready"
? "TGS playback готов"
: `Подготавливаем TGS playback · ${progressPercent}% · ${(playbackProgress.loadedBytes / 1_048_576).toFixed(1)}/${(playbackProgress.totalBytes / 1_048_576).toFixed(1)} МБ`;
const handleSequenceChange = useCallback((sequence: number | null) => {
setActiveSequence(sequence);
}, []);
return (
<>
<M4ReplayThreatVisual
resultId={result.source.linkedVisualResultId}
semantic={semantic ? {
resultId: semantic.resultId,
taxonomy: semantic.taxonomy,
} : undefined}
showReviewAnchorBoxes={false}
reviewLabel="4 489 source-paced TGS frames"
evidenceLabel="M49 · full TGS shadow"
initialSpatialMode="3d"
onActiveSequenceChange={handleSequenceChange}
classifiedSpatialLayer={{
label: "TGS full shadow · causal rolling 1 s",
pointLayerLabel: "SOURCE POINTS",
cellLayerLabel: "TGS COSTMAP",
expectedAtSequence: true,
frame: classifiedFrame,
loading,
loadingLabel,
error,
replacePointCloud: false,
}}
/>
{semanticError ? (
<div className="m4-replay-threat-visual__pane-status" role="alert">
Semantic overlay недоступен: {semanticError}
</div>
) : null}
</>
);
}
@@ -0,0 +1,90 @@
import {
LaboratoryEvidence,
LaboratoryResultSummary,
LaboratorySummary,
LaboratoryWorkTemplate,
} from "../../components/laboratory/LaboratoryPresentation";
import type { M49TgsFullShadowResult } from "../../core/laboratory/m49TgsFullShadow";
import { M49TgsFullShadowEvidence } from "./M49TgsFullShadowEvidence";
function number(value: number, digits = 1): string {
return value.toLocaleString("ru-RU", { maximumFractionDigits: digits });
}
export function M49TgsFullShadowResultView({
rigLabel,
result,
}: {
rigLabel: string;
result: M49TgsFullShadowResult;
}) {
const accepted = result.decision.candidateRetained;
const status = accepted
? "Source-paced CPU shadow принят; визуальное и integrated-graph качество ещё проверяются"
: "Source-paced CPU shadow не прошёл performance gate";
return (
<LaboratoryWorkTemplate
summary={(
<LaboratorySummary
title="M4.9T5 · полный source-paced TRAVEL TGS shadow"
description="Один CPU-only процесс прошёл весь recorded timeline RAVNOVES00 в исходном темпе. Камера остаётся владельцем времени; dense source cloud сохраняется, поверх него показывается четырёхсостояний TGS costmap."
status={status}
statusTone={accepted ? "success" : "danger"}
facts={[
{ label: "Конфигурация", value: `${rigLabel} RIGHT · gravity-aligned LiDAR · causal ${number(result.configuration.historySeconds)} с` },
{ label: "Timeline", value: `${result.timeline.frameCount.toLocaleString("ru-RU")} кадров · ${result.timeline.availableLidarFrameCount.toLocaleString("ru-RU")} LiDAR · ${result.timeline.missingLidarFrameCount} UNOBSERVED` },
{ label: "Нагрузка", value: `Worker 006 CPU-only · GPU 0 · ${number(result.timeline.effectiveFps, 3)} source FPS` },
{ label: "Authority", value: "REPLAY-SIMULATED · navigation/actuation OFF · integrated graph отдельно" },
]}
brief={{
question: "Удерживает ли готовый TRAVEL TGS полный десятигерцовый replay без очереди и потери кадров?",
approach: "Все 4 489 camera frames планируются по исходным timestamps. Для 3 928 доступных LiDAR frames выполняется causal rolling 1 s; 561 пропуск остаётся полностью UNOBSERVED.",
principalResult: `${result.timeline.frameCount}/4 489 frames и ${result.pointAccounting.eligible.toLocaleString("ru-RU")} eligible points учтены; TGS p95/p99 ${number(result.performance.candidateTgsMs.p95, 2)}/${number(result.performance.candidateTgsMs.p99, 2)} мс, completion age p99 ${number(result.performance.completionAgeMs.p99, 2)} мс, capacity drops ${result.performance.capacityDropCount}.`,
limitation: "Это isolated CPU shadow. Он ещё не доказывает качество красных occupied-ячеек, проходимость для конкретного корпуса или регрессию FPS полного world-state graph.",
}}
method={{
completeness: "complete",
executionClass: "deterministic",
pipelineId: "travel-tgs-full-source-paced-shadow/v1",
components: [
{ kind: "source", name: "RAVNOVES00", version: "4 489-frame recorded timeline", role: "camera-owned source clock + registered LiDAR", identitySha256: result.source.sourcePackSha256 },
{ kind: "algorithm", name: "TRAVEL GroundSeg", version: "95dc2fbd66a343efd9060c45a5711b6307a950a4", role: "gravity-aligned ground/non-ground separation; AOS OFF", identitySha256: result.configuration.configSha256 },
{ kind: "algorithm", name: "fail-closed costmap adapter", version: "v1", role: "occupied > rejected > ground > unobserved; no free inference", identitySha256: result.resultId.split("-").at(-1) ?? null },
],
}}
/>
)}
evidence={(
<LaboratoryEvidence
eyebrow="M4.9T5 VISUAL EVIDENCE · FULL CAMERA TIMELINE + SOURCE CLOUD + TGS COSTMAP"
title="Полный timeline: dense исходные точки сохранены, TGS-ячейки синхронны каждому кадру"
kind="recorded-replay"
resizable
>
<M49TgsFullShadowEvidence result={result} />
</LaboratoryEvidence>
)}
result={(
<LaboratoryResultSummary
title="Что доказал полный прогон"
status={status}
statusTone={accepted ? "success" : "danger"}
metrics={[
{ label: "Timeline", value: `${result.timeline.frameCount}/4 489`, hint: `${result.timeline.availableLidarFrameCount} LiDAR + ${result.timeline.missingLidarFrameCount} explicit UNOBSERVED` },
{ label: "TGS p95 / p99", value: `${number(result.performance.candidateTgsMs.p95, 2)} / ${number(result.performance.candidateTgsMs.p99, 2)} мс`, hint: "чистый candidate stage на CPU" },
{ label: "Completion age p99", value: `${number(result.performance.completionAgeMs.p99, 2)} мс`, hint: "от source timestamp до готового frame result" },
{ label: "Capacity drops", value: String(result.performance.capacityDropCount), hint: "кадры не отбрасывались ради темпа" },
{ label: "Point accounting", value: "100%", hint: `${result.pointAccounting.eligible.toLocaleString("ru-RU")} eligible points` },
]}
conclusion={{
proved: "Полный CPU-only TGS shadow воспроизводимо проходит recorded source clock, сохраняет fail-closed представление и не использует AOS/GPU.",
notProved: "Не приняты visual traversability, модель корпуса, камера-проекция TGS и нагрузка после встраивания в полный realtime world-state graph.",
decision: accepted
? "Кандидат остаётся. Просмотреть полный timeline, затем подключить shadow к realtime graph и измерить общий FPS/latency regression."
: "Кандидат не встраивать; сначала локализовать performance gate, который не прошёл полный replay.",
}}
/>
)}
/>
);
}
@@ -1,4 +1,4 @@
import { useEffect, useMemo, useRef, useState, type CSSProperties } from "react";
import { useCallback, useEffect, useMemo, useRef, useState, type CSSProperties } from "react";
import {
Button,
Icon,
@@ -12,7 +12,9 @@ import {
import { ObservationTimeline } from "../../components/ObservationTimeline";
import {
LaboratoryMetricEvidenceScene,
type LaboratoryMetricCellEvidence,
type LaboratoryMetricEvidenceSceneHandle,
type LaboratoryMetricPackedCellEvidence,
type LaboratoryMetricSceneMode,
} from "../../components/laboratory/LaboratoryMetricEvidenceScene";
import { LaboratoryEvidenceViewer } from "../../components/laboratory/LaboratoryEvidenceViewer";
@@ -47,6 +49,7 @@ import {
useM4ThreatTimelineMetadata,
} from "./useM4ThreatTimeline";
import { useE47SemanticTimelineFrame } from "./useE47SemanticTimeline";
import { buildM4StaticObstacleBoxes } from "./m4StaticObstacleBoxes";
type M4ThreatMediaMode = "video" | "camera";
type M4ThreatMediaSelection = M4ThreatMediaMode | "none";
@@ -94,7 +97,16 @@ function SpatialState({ message: text }: { message: string }) {
export interface M4ReplayThreatSemanticLayer {
resultId: string;
taxonomy: readonly E47SemanticClass[];
spatialResultId?: string | null;
maskUrl?: (sequence: number) => string;
label?: string;
maskAriaLabel?: string;
taxonomy: readonly {
classId: number;
label: string;
disposition: "labeled" | "ambiguous" | "prediction" | "undefined";
colorRgb: readonly [number, number, number];
}[];
}
export interface M4ReplayThreatReviewAnchor {
@@ -102,6 +114,40 @@ export interface M4ReplayThreatReviewAnchor {
sourceSequence: number;
extentXyxyNormalized: readonly [number, number, number, number];
matchedAtThreshold: boolean;
statusLabel?: string;
}
export interface M4ReplayClassifiedSpatialFrame {
sourceSequence: number;
sampleAvailable?: boolean;
sourcePointCount?: number;
pointsMapGravityLocalXyzM: readonly (readonly [number, number, number])[];
pointClassIds: readonly (number | null)[];
cellsMapGravityLocal: readonly {
centerXyM: readonly [number, number];
zBoundsM: readonly [number | null, number | null];
state: LaboratoryMetricCellEvidence["state"];
}[];
packedCellsMapGravityLocal?: {
centersXyM: Float32Array;
zBoundsM: Float32Array;
stateCodes: Uint8Array;
};
cellSizeM: number;
classes: readonly RecordedEvidenceSemanticClass[];
palette: readonly RecordedEvidenceSemanticPaletteEntry[];
}
export interface M4ReplayClassifiedSpatialLayer {
label: string;
pointLayerLabel: string;
cellLayerLabel: string;
expectedAtSequence: boolean;
frame: M4ReplayClassifiedSpatialFrame | null;
loading: boolean;
loadingLabel?: string;
error: string | null;
replacePointCloud?: boolean;
}
const EMPTY_REVIEW_ANCHORS: readonly M4ReplayThreatReviewAnchor[] = [];
@@ -110,23 +156,41 @@ export function M4ReplayThreatVisual({
resultId,
semantic,
reviewAnchors = EMPTY_REVIEW_ANCHORS,
showReviewAnchorBoxes = true,
reviewLabel = "Контрольные примеры M4.8R1",
timelineEndpointRoot,
evidenceLabel = "M4.6",
initialSpatialMode = null,
classifiedSpatialLayer,
showReferenceMediaLayers = true,
showSpatialOverlaySummary = true,
onActiveSequenceChange,
}: {
resultId: string;
semantic?: M4ReplayThreatSemanticLayer;
reviewAnchors?: readonly M4ReplayThreatReviewAnchor[];
showReviewAnchorBoxes?: boolean;
reviewLabel?: string;
timelineEndpointRoot?: string;
evidenceLabel?: string;
initialSpatialMode?: LaboratoryMetricSceneMode | null;
classifiedSpatialLayer?: M4ReplayClassifiedSpatialLayer;
showReferenceMediaLayers?: boolean;
showSpatialOverlaySummary?: boolean;
onActiveSequenceChange?: (sequence: number | null) => void;
}) {
const [mediaMode, setMediaMode] = useState<M4ThreatMediaMode | null>("video");
const [spatialMode, setSpatialMode] = useState<LaboratoryMetricSceneMode | null>(null);
const [spatialMode, setSpatialMode] = useState<LaboratoryMetricSceneMode | null>(
initialSpatialMode,
);
const [showCurrentIncrement, setShowCurrentIncrement] = useState(true);
const [showLocalSurface, setShowLocalSurface] = useState(true);
const [showRollingMap, setShowRollingMap] = useState(true);
const [showLowStep, setShowLowStep] = useState(true);
const [showMediaSemantic, setShowMediaSemantic] = useState(true);
const [showSpatialSemantic, setShowSpatialSemantic] = useState(true);
const [showMediaPoints, setShowMediaPoints] = useState(false);
const [showStaticObstacles, setShowStaticObstacles] = useState(true);
const [splitPrimarySize, setSplitPrimarySize] = useState(50);
const [splitOrientation, setSplitOrientation] = useState<SplitPaneOrientation>(() => (
typeof window !== "undefined" && window.matchMedia("(max-width: 900px)").matches
@@ -213,6 +277,9 @@ export function M4ReplayThreatVisual({
}, [resultId]);
if (timelineFrame.activeFrame) lastFrameRef.current = timelineFrame.activeFrame;
const frame = timelineFrame.activeFrame ?? lastFrameRef.current;
useEffect(() => {
onActiveSequenceChange?.(timelineFrame.activeSequence);
}, [onActiveSequenceChange, timelineFrame.activeSequence]);
const lastSpatialFrameRef = useRef<{
resultId: string;
frame: M4ThreatTimelineFrame;
@@ -226,16 +293,30 @@ export function M4ReplayThreatVisual({
? lastSpatialFrameRef.current.frame
: null;
const cameraPointOverlay = useM4ThreatCameraPointOverlay({
enabled: showMediaPoints,
enabled: showReferenceMediaLayers && showMediaPoints,
resultId,
sequence: frame?.sequence ?? null,
endpointRoot: timelineEndpointRoot,
});
const semanticSpatialResultId = semantic
? semantic.spatialResultId === undefined ? semantic.resultId : semantic.spatialResultId
: null;
const spatialSemanticTaxonomy = useMemo<readonly E47SemanticClass[]>(
() => semanticSpatialResultId && semantic
? semantic.taxonomy.map((item) => ({
classId: item.classId,
label: item.label,
disposition: item.disposition === "ambiguous" ? "ambiguous" : "labeled",
colorRgb: item.colorRgb,
}))
: [],
[semantic, semanticSpatialResultId],
);
const semanticTimeline = useE47SemanticTimelineFrame({
resultId: semantic?.resultId ?? null,
resultId: semanticSpatialResultId,
activeSequence: frame?.sequence ?? timelineFrame.activeSequence,
frameCount: metadata.timeline?.frameCount ?? 0,
taxonomy: semantic?.taxonomy ?? [],
taxonomy: spatialSemanticTaxonomy,
});
const displayingBufferedFrame = Boolean(
frame
@@ -262,7 +343,7 @@ export function M4ReplayThreatVisual({
}, [metadata.timeline, resultId, reviewAnchorIdentity, reviewAnchors, seekPlayback, setPlaybackPlaying]);
const reviewAnchorBoxes = useMemo<readonly RecordedEvidenceBox[]>(() => {
const timeline = metadata.timeline;
if (!frame || !timeline) return [];
if (!frame || !timeline || !showReviewAnchorBoxes) return [];
return reviewAnchors
.filter((anchor) => anchor.sourceSequence === frame.sequence)
.map((anchor) => {
@@ -281,10 +362,28 @@ export function M4ReplayThreatVisual({
dashed: true,
};
});
}, [frame, metadata.timeline, reviewAnchors]);
}, [frame, metadata.timeline, reviewAnchors, showReviewAnchorBoxes]);
const staticObstacleBoxes = useMemo<readonly RecordedEvidenceBox[]>(() => {
const timeline = metadata.timeline;
if (
!showReferenceMediaLayers
|| !frame
|| !timeline?.cameraObstacleProjectionDelivery
|| !showStaticObstacles
) return [];
return buildM4StaticObstacleBoxes(
frame.metricObstacles,
timeline.imageWidth,
timeline.imageHeight,
);
}, [frame, metadata.timeline, showReferenceMediaLayers, showStaticObstacles]);
const activeBoxes = useMemo(
() => [...boxes(frame?.cameraProposals ?? []), ...reviewAnchorBoxes],
[frame, reviewAnchorBoxes],
() => classifiedSpatialLayer || !showReferenceMediaLayers ? [] : [
...boxes(frame?.cameraProposals ?? []),
...staticObstacleBoxes,
...reviewAnchorBoxes,
],
[classifiedSpatialLayer, frame, reviewAnchorBoxes, showReferenceMediaLayers, staticObstacleBoxes],
);
const semanticClasses = useMemo<readonly RecordedEvidenceSemanticClass[]>(
() => semantic?.taxonomy.map((item) => ({
@@ -296,10 +395,14 @@ export function M4ReplayThreatVisual({
const semanticPalette = useMemo<readonly RecordedEvidenceSemanticPaletteEntry[]>(
() => semantic?.taxonomy.map((item) => ({
classId: item.classId,
color: item.disposition === "ambiguous"
color: item.disposition === "undefined"
? { kind: "transparent" as const }
: item.disposition === "ambiguous"
? { kind: "token" as const, token: "--nodedc-warning-rgb" as const }
: { kind: "diagnostic" as const, rgb: item.colorRgb },
opacity: item.disposition === "ambiguous" ? 0.52 : 0.92,
opacity: item.disposition === "undefined"
? 0
: item.disposition === "ambiguous" ? 0.52 : 0.92,
})) ?? [],
[semantic?.taxonomy],
);
@@ -339,12 +442,148 @@ export function M4ReplayThreatVisual({
return status === 2 || status === 3 ? classId : null;
});
}, [semantic, semanticIntegrityError, showSpatialSemantic, spatialFrame, spatialSemanticFrame]);
const activeSpatialFrame = spatialFrame?.sequence === timelineFrame.activeSequence
? spatialFrame
: null;
const classifiedSpatialFrame = classifiedSpatialLayer?.frame?.sourceSequence === timelineFrame.activeSequence
? classifiedSpatialLayer?.frame ?? null
: null;
const lastClassifiedSpatialFrameRef = useRef<{
resultId: string;
frame: M4ReplayClassifiedSpatialFrame;
} | null>(null);
const incomingClassifiedSpatialFrame = classifiedSpatialLayer?.frame ?? null;
if (incomingClassifiedSpatialFrame && incomingClassifiedSpatialFrame.sampleAvailable !== false) {
lastClassifiedSpatialFrameRef.current = { resultId, frame: incomingClassifiedSpatialFrame };
}
const lastAvailableClassifiedSpatialFrame = lastClassifiedSpatialFrameRef.current?.resultId === resultId
? lastClassifiedSpatialFrameRef.current.frame
: null;
// `undefined !== false` is true, so the optional-chain form here used to
// select `null` during every short chunk miss. That unmounted the WebGL
// scene, flashed the alert state and recreated OrbitControls at the default
// view on the next frame. Keep the last complete volume until the exact
// classified frame is resident again.
const displayedClassifiedSpatialFrame = classifiedSpatialFrame
&& classifiedSpatialFrame.sampleAvailable !== false
? classifiedSpatialFrame
: lastAvailableClassifiedSpatialFrame ?? classifiedSpatialFrame;
const displayedClassifiedFrameHeld = Boolean(
classifiedSpatialFrame
&& displayedClassifiedSpatialFrame
&& classifiedSpatialFrame.sourceSequence !== displayedClassifiedSpatialFrame.sourceSequence,
);
const classifiedContextSpatialFrame = displayedClassifiedSpatialFrame
? timelineFrame.availableFrames.find(
(candidate) => candidate.spatialAvailable
&& candidate.sequence === displayedClassifiedSpatialFrame.sourceSequence,
) ?? (spatialFrame?.sequence === displayedClassifiedSpatialFrame.sourceSequence
? spatialFrame
: null)
: null;
const replaceClassifiedPointCloud = classifiedSpatialLayer?.replacePointCloud ?? true;
const nominalSensorHeightM = metadata.timeline?.rig.nominalSensorHeightM ?? 0;
const mapGravityLocalSensorToBodyGround = useCallback((
point: readonly [number, number, number],
): readonly [number, number, number] => {
const basis = classifiedContextSpatialFrame?.bodyFrame?.basisMapFromBody;
const rotated: readonly [number, number, number] = basis ? [
basis[0][0] * point[0] + basis[1][0] * point[1] + basis[2][0] * point[2],
basis[0][1] * point[0] + basis[1][1] * point[1] + basis[2][1] * point[2],
basis[0][2] * point[0] + basis[1][2] * point[1] + basis[2][2] * point[2],
] : point;
// TGS evidence is translation-only map-gravity-local with the current LiDAR
// as its origin. The metric scene uses the body ground projection as z=0.
return [rotated[0], rotated[1], rotated[2] + nominalSensorHeightM];
}, [classifiedContextSpatialFrame?.bodyFrame?.basisMapFromBody, nominalSensorHeightM]);
const classifiedPointsBody = useMemo(
() => displayedClassifiedSpatialFrame?.pointsMapGravityLocalXyzM.map(
mapGravityLocalSensorToBodyGround,
) ?? [],
[displayedClassifiedSpatialFrame, mapGravityLocalSensorToBodyGround],
);
const classifiedCellsBody = useMemo<readonly LaboratoryMetricCellEvidence[]>(
() => displayedClassifiedSpatialFrame?.cellsMapGravityLocal.map((cell) => {
const body = mapGravityLocalSensorToBodyGround([
cell.centerXyM[0],
cell.centerXyM[1],
0,
]);
const [minimumSensorRelativeZ, maximumSensorRelativeZ] = cell.zBoundsM;
return {
centerBodyXyM: [body[0], body[1]],
zBoundsM: [
minimumSensorRelativeZ === null
? null
: minimumSensorRelativeZ + nominalSensorHeightM,
maximumSensorRelativeZ === null
? null
: maximumSensorRelativeZ + nominalSensorHeightM,
],
state: cell.state,
};
}) ?? [],
[displayedClassifiedSpatialFrame, mapGravityLocalSensorToBodyGround, nominalSensorHeightM],
);
const classifiedPackedCellsBody = useMemo<LaboratoryMetricPackedCellEvidence | undefined>(() => {
const packed = displayedClassifiedSpatialFrame?.packedCellsMapGravityLocal;
if (!packed) return undefined;
const cellCount = packed.stateCodes.length;
if (packed.centersXyM.length !== cellCount * 2 || packed.zBoundsM.length !== cellCount * 2) {
return undefined;
}
const centersBodyXyM = new Float32Array(cellCount * 2);
const zBoundsM = new Float32Array(cellCount * 2);
for (let index = 0; index < cellCount; index += 1) {
const body = mapGravityLocalSensorToBodyGround([
packed.centersXyM[index * 2]!,
packed.centersXyM[index * 2 + 1]!,
0,
]);
centersBodyXyM[index * 2] = body[0];
centersBodyXyM[index * 2 + 1] = body[1];
const minimum = packed.zBoundsM[index * 2]!;
const maximum = packed.zBoundsM[index * 2 + 1]!;
zBoundsM[index * 2] = Number.isFinite(minimum)
? minimum + nominalSensorHeightM
: Number.NaN;
zBoundsM[index * 2 + 1] = Number.isFinite(maximum)
? maximum + nominalSensorHeightM
: Number.NaN;
}
return { centersBodyXyM, zBoundsM, stateCodes: packed.stateCodes };
}, [displayedClassifiedSpatialFrame, mapGravityLocalSensorToBodyGround, nominalSensorHeightM]);
const classifiedCellCounts = useMemo(() => {
const counts = { ground: 0, occupied: 0, rejected: 0, unobserved: 0 };
const packed = classifiedSpatialFrame?.packedCellsMapGravityLocal;
if (packed) {
for (const code of packed.stateCodes) {
if (code === 1) counts.ground += 1;
else if (code === 2) counts.occupied += 1;
else if (code === 3) counts.rejected += 1;
else if (code === 0) counts.unobserved += 1;
else counts.rejected += 1;
}
return counts;
}
for (const cell of classifiedSpatialFrame?.cellsMapGravityLocal ?? []) {
if (cell.state === "ground-support") counts.ground += 1;
else if (cell.state === "nonground-occupied") counts.occupied += 1;
else if (cell.state === "unknown-rejected") counts.rejected += 1;
else counts.unobserved += 1;
}
return counts;
}, [classifiedSpatialFrame]);
const classifiedCellCount = classifiedSpatialFrame?.packedCellsMapGravityLocal?.stateCodes.length
?? classifiedSpatialFrame?.cellsMapGravityLocal.length
?? 0;
const sceneObstacles = useMemo(() => spatialFrame?.metricObstacles.map((obstacle) => ({
id: obstacle.componentId,
decision: obstacle.assessment.decision,
state: obstacle.state,
centroidBodyXyzM: obstacle.centroidBodyXyzM,
cellCentersBodyXyzM: obstacle.cellCentersBodyXyzM,
occupancySource: obstacle.occupancySource,
})) ?? [], [spatialFrame]);
const currentIncrementObstacles = spatialFrame?.metricObstacles.filter(
(item) => item.state === "current",
@@ -352,6 +591,10 @@ export function M4ReplayThreatVisual({
const rollingMapObstacles = spatialFrame?.metricObstacles.filter(
(item) => item.state === "retained",
) ?? [];
const lowStepObstacles = spatialFrame?.metricObstacles.filter(
(item) => item.occupancySource !== "baseline"
&& (item.state === "current" || item.state === "retained"),
) ?? [];
const nearest = spatialFrame?.metricObstacles
.map((item) => item.assessment.closestApproachM)
.filter((value): value is number => value !== null)
@@ -369,15 +612,17 @@ export function M4ReplayThreatVisual({
const semanticOverlay: RecordedEvidenceSemanticOverlay | undefined =
semantic && showMediaSemantic && frame
? {
src: e47SemanticMaskUrl(semantic.resultId, frame.sequence),
src: semantic.maskUrl?.(frame.sequence)
?? e47SemanticMaskUrl(semantic.resultId, frame.sequence),
prefetchSrcs: Array.from({ length: 12 }, (_, index) => index + 1)
.map((offset) => frame.sequence + offset)
.filter((sequence) => sequence < (metadata.timeline?.frameCount ?? 0))
.map((sequence) => e47SemanticMaskUrl(semantic.resultId, sequence)),
.map((sequence) => semantic.maskUrl?.(sequence)
?? e47SemanticMaskUrl(semantic.resultId, sequence)),
classes: semanticClasses,
palette: semanticPalette,
opacity: 0.9,
ariaLabel: `E47 semantic mask frame ${frame.sequence + 1}`,
ariaLabel: `${semantic.maskAriaLabel ?? "Semantic prediction"} frame ${frame.sequence + 1}`,
}
: undefined;
const accumulatedCameraPoints = cameraPointOverlay.overlay?.sequence === frame?.sequence
@@ -447,7 +692,9 @@ export function M4ReplayThreatVisual({
</div>
);
const mediaLayerControls = semantic || metadata.timeline?.cameraPointDelivery ? (
const mediaLayerControls = semantic
|| (showReferenceMediaLayers && metadata.timeline?.cameraPointDelivery)
|| (showReferenceMediaLayers && metadata.timeline?.cameraObstacleProjectionDelivery) ? (
<div
className="m4-replay-threat-visual__pane-layer-controls"
role="group"
@@ -464,7 +711,7 @@ export function M4ReplayThreatVisual({
SEMANTICS
</Button>
) : null}
{metadata.timeline?.cameraPointDelivery ? (
{showReferenceMediaLayers && metadata.timeline?.cameraPointDelivery ? (
<Button
size="compact"
shape="pill"
@@ -476,10 +723,68 @@ export function M4ReplayThreatVisual({
POINTS
</Button>
) : null}
{showReferenceMediaLayers && metadata.timeline?.cameraObstacleProjectionDelivery ? (
<Button
size="compact"
shape="pill"
variant={showStaticObstacles ? "primary" : "secondary"}
aria-pressed={showStaticObstacles}
title="Только LOW-STEP LiDAR-препятствия с решением threat · без ручной разметки"
onClick={() => setShowStaticObstacles((visible) => !visible)}
>
OBSTACLES
</Button>
) : null}
</div>
) : null;
const spatialLayerControls = (
const spatialLayerControls = classifiedSpatialLayer ? (
<div
className="m4-replay-threat-visual__pane-layer-controls"
role="group"
aria-label={`Слои ${classifiedSpatialLayer.label}`}
>
<Button
size="compact"
shape="pill"
variant={showCurrentIncrement ? "primary" : "secondary"}
aria-pressed={showCurrentIncrement}
onClick={() => setShowCurrentIncrement((visible) => !visible)}
>
{classifiedSpatialLayer.pointLayerLabel}
</Button>
<Button
size="compact"
shape="pill"
variant={showLocalSurface ? "primary" : "secondary"}
aria-pressed={showLocalSurface}
title="Bounded local SLAM surface · visual-derived"
onClick={() => setShowLocalSurface((visible) => !visible)}
>
LOCAL SLAM
</Button>
<Button
size="compact"
shape="pill"
variant={showRollingMap ? "primary" : "secondary"}
aria-pressed={showRollingMap}
onClick={() => setShowRollingMap((visible) => !visible)}
>
{classifiedSpatialLayer.cellLayerLabel}
</Button>
{semanticSpatialResultId ? (
<Button
size="compact"
shape="pill"
variant={showSpatialSemantic ? "primary" : "secondary"}
aria-pressed={showSpatialSemantic}
onClick={() => setShowSpatialSemantic((visible) => !visible)}
>
SEMANTICS
</Button>
) : null}
</div>
) : (
<div
className="m4-replay-threat-visual__pane-layer-controls"
role="group"
@@ -513,7 +818,19 @@ export function M4ReplayThreatVisual({
>
ROLLING
</Button>
{semantic ? (
{metadata.timeline?.occupancyProvenanceDelivery ? (
<Button
size="compact"
shape="pill"
variant={showLowStep ? "primary" : "secondary"}
aria-pressed={showLowStep}
title="Добавочные occupied-only компоненты low-step; без ручных рамок"
onClick={() => setShowLowStep((visible) => !visible)}
>
LOW-STEP
</Button>
) : null}
{semanticSpatialResultId ? (
<Button
size="compact"
shape="pill"
@@ -567,11 +884,11 @@ export function M4ReplayThreatVisual({
<Icon name="chevron-right" size={16} />
</IconButton>
<Select
label="Контрольные примеры M4.8R1"
label={reviewLabel}
value={String(selectedReviewAnchorIndex)}
options={reviewAnchors.map((anchor, index) => ({
value: String(index),
label: `${index + 1}/${reviewAnchors.length} · кадр ${anchor.sourceSequence + 1} · ${anchor.matchedAtThreshold ? "покрыт" : "пропуск"}`,
label: `${index + 1}/${reviewAnchors.length} · кадр ${anchor.sourceSequence + 1} · ${anchor.statusLabel ?? (anchor.matchedAtThreshold ? "покрыт" : "пропуск")}`,
}))}
variant="split"
menuWidth="anchor"
@@ -597,7 +914,11 @@ export function M4ReplayThreatVisual({
? splitPrimarySize
: 100;
const overlay = metadata.timeline && frame ? (
const overlaySequence = timelineFrame.activeSequence ?? frame?.sequence ?? null;
const overlaySessionSeconds = overlaySequence === null
? null
: (metadata.timeline?.frameTimesNs[overlaySequence] ?? 0) / 1_000_000_000;
const overlay = metadata.timeline && overlaySequence !== null ? (
<div
className="l3-visual-audit__overlay m4-replay-threat-visual__overlay"
style={{
@@ -606,47 +927,75 @@ export function M4ReplayThreatVisual({
>
<div>
<span>RAVNOVES00 · recorded realtime</span>
<strong>frame {frame.sequence + 1}/{metadata.timeline.frameCount}</strong>
<strong>frame {overlaySequence + 1}/{metadata.timeline.frameCount}</strong>
<small>
+{(frame.sessionSeconds - metadata.timeline.timelineStartSeconds).toFixed(3)} с
+{((overlaySessionSeconds ?? metadata.timeline.timelineStartSeconds) - metadata.timeline.timelineStartSeconds).toFixed(3)} с
· {displayingBufferedFrame
? "держим последний кадр, следующий в буфере"
: playbackController.playback.playing ? "воспроизведение" : "пауза / seek"}
</small>
</div>
{showSpatialOverlaySummary ? (
<>
<div>
<span>Spatial evidence</span>
<strong>
{currentIncrementObstacles.length} current · {rollingMapObstacles.length} rolling
</strong>
<small>
<strong>{classifiedSpatialLayer
? classifiedSpatialFrame
? replaceClassifiedPointCloud
? `${classifiedSpatialFrame.pointsMapGravityLocalXyzM.length.toLocaleString("ru-RU")} TGS points · ${classifiedCellCount.toLocaleString("ru-RU")} cells`
: `${(activeSpatialFrame?.pointCloudSourceCount ?? classifiedSpatialFrame.sourcePointCount ?? 0).toLocaleString("ru-RU")} source points · ${classifiedCellCount.toLocaleString("ru-RU")} TGS cells`
: "TGS spatial buffer"
: `${currentIncrementObstacles.length} current · ${rollingMapObstacles.length} rolling${metadata.timeline.occupancyProvenanceDelivery ? ` · ${lowStepObstacles.length} low-step` : ""}`}</strong>
<small>{classifiedSpatialLayer
? classifiedSpatialFrame
? classifiedSpatialFrame.sampleAvailable === false
? displayedClassifiedFrameHeld && displayedClassifiedSpatialFrame
? `LiDAR отсутствует · current UNOBSERVED · объёмный контекст удержан с frame ${displayedClassifiedSpatialFrame.sourceSequence + 1}`
: "LiDAR отсутствует · все ячейки принудительно UNOBSERVED · causal rolling 1 s"
: activeSpatialFrame
? "map-gravity-local · all eligible points accounted · causal rolling 1 s"
: "TGS рассчитан · linked source cloud недоступен для этого кадра"
: classifiedSpatialLayer.error
?? classifiedSpatialLayer.loadingLabel
?? `Открываем ${classifiedSpatialLayer.label}`
: (
<>
{spatialFrame
? `${spatialFrame.pointCloudSampleCount}/${spatialFrame.pointCloudSourceCount} exact · ${localSurface.pointsBodyXyzM.length} local SLAM / ${localSurface.sourceFrameCount} frames`
: "квалифицированный spatial frame ещё не получен"}
{frame.worldStateAvailable
{frame
? frame.worldStateAvailable
? " · world-state delivered"
: ` · world-state gap (${frame.terminalOutcome})`}
: ` · world-state gap (${frame.terminalOutcome})`
: " · world-state frame unavailable"}
{accumulatedCameraPoints
? ` · camera points ${accumulatedCameraPoints.sampleCount}/${accumulatedCameraPoints.projectedPointCount} · causal ${accumulatedCameraPoints.windowSeconds.toFixed(1)} с / ${accumulatedCameraPoints.sourceFrameCount} frames`
: pointCloudOverlay
: pointCloudOverlay && frame
? ` · camera points ${frame.cameraProjectedSampleCount}/${frame.cameraProjectedPointCount} exact-current · накопление загружается`
: showMediaPoints && cameraPointOverlay.error
? " · накопленное camera cloud недоступно"
: ""}
{semantic && spatialSemanticFrame
{semanticSpatialResultId && spatialSemanticFrame
? ` · semantic L ${spatialSemanticFrame.counts.labeled} · A ${spatialSemanticFrame.counts.ambiguous} · U ${spatialSemanticFrame.counts.unprojected} · Ø ${spatialSemanticFrame.counts.absent}`
: semantic ? " · semantic buffer" : ""}
</small>
: semanticSpatialResultId ? " · semantic buffer" : ""}
</>
)}</small>
</div>
<div>
<span>Virtual corridor</span>
<strong>
{spatialFrame?.decisionCounts.threat ?? 0} threat · nearest {nearest === null ? "—" : `${nearest.toFixed(2)} м`}
</strong>
<small>
{metadata.timeline.corridor.forwardLengthM} м · body {metadata.timeline.rig.lengthM}×{metadata.timeline.rig.widthM} м · REPLAY-SIMULATED
</small>
<span>{classifiedSpatialLayer ? "TGS fail-closed" : "Virtual corridor"}</span>
<strong>{classifiedSpatialLayer
? classifiedSpatialFrame
? `${classifiedCellCounts.occupied} occupied · ${classifiedCellCounts.rejected} rejected · ${classifiedCellCounts.unobserved} unobserved`
: classifiedSpatialLayer.loading || displayingBufferedFrame ? "loading" : "unavailable"
: `${spatialFrame?.decisionCounts.threat ?? 0} threat · nearest ${nearest === null ? "—" : `${nearest.toFixed(2)} м`}`}</strong>
<small>{classifiedSpatialLayer
? classifiedSpatialFrame
? `${classifiedCellCounts.ground} ground-support · visual review only · navigation authority OFF`
: "visual review only · navigation authority OFF"
: `${metadata.timeline.corridor.forwardLengthM} м · body ${metadata.timeline.rig.lengthM}×${metadata.timeline.rig.widthM} м · REPLAY-SIMULATED`}</small>
</div>
</>
) : null}
</div>
) : undefined;
@@ -744,26 +1093,61 @@ export function M4ReplayThreatVisual({
</div>
</div>
) : null}
{spatialFrame ? (
<LaboratoryMetricEvidenceScene
ref={metricSceneRef}
pointCloudBodyXyzM={spatialFrame.pointCloudBodyXyzM}
pointCloudBodyXyzM={displayedClassifiedSpatialFrame && replaceClassifiedPointCloud
? classifiedPointsBody
: classifiedContextSpatialFrame?.pointCloudBodyXyzM ?? []}
localSurfaceBodyXyzM={localSurface.pointsBodyXyzM}
obstacles={sceneObstacles}
obstacles={classifiedSpatialLayer ? [] : sceneObstacles}
rig={timeline.rig}
corridor={timeline.corridor}
occupiedVoxelSizeM={timeline.occupiedVoxelSizeM}
occupiedVoxelSizeM={displayedClassifiedSpatialFrame?.cellSizeM ?? timeline.occupiedVoxelSizeM}
mode={spatialMode}
label={`${evidenceLabel} exact current increment, bounded local SLAM surface and rolling occupancy`}
showCurrentIncrement={showCurrentIncrement}
showLocalSurface={showLocalSurface}
showRollingMap={showRollingMap}
pointSemanticClassIds={alignedSemanticPointIds}
semanticClasses={semanticClasses}
semanticPalette={semanticPalette}
showLowStep={classifiedSpatialLayer ? false : showLowStep}
pointSemanticClassIds={displayedClassifiedSpatialFrame && replaceClassifiedPointCloud
? displayedClassifiedSpatialFrame.pointClassIds
: alignedSemanticPointIds}
semanticClasses={displayedClassifiedSpatialFrame && replaceClassifiedPointCloud
? displayedClassifiedSpatialFrame.classes
: semanticClasses}
semanticPalette={displayedClassifiedSpatialFrame && replaceClassifiedPointCloud
? displayedClassifiedSpatialFrame.palette
: semanticPalette}
classifiedCells={classifiedCellsBody}
classifiedPackedCells={classifiedPackedCellsBody}
classifiedCellSizeM={displayedClassifiedSpatialFrame?.cellSizeM}
showClassifiedCells={showRollingMap}
/>
{classifiedSpatialLayer && !displayedClassifiedSpatialFrame ? (
<div className="l3-visual-audit__state" role={classifiedSpatialLayer.error ? "alert" : "status"}>
{classifiedSpatialLayer.loading || displayingBufferedFrame
? <span className="busy-indicator" aria-hidden="true" />
: <Icon name="alert" size={18} />}
<span>{classifiedSpatialLayer.error
?? (classifiedSpatialLayer.loading || displayingBufferedFrame
? classifiedSpatialLayer.loadingLabel ?? `Открываем ${classifiedSpatialLayer.label}`
: classifiedSpatialLayer.expectedAtSequence
? `Открываем ${classifiedSpatialLayer.label}`
: `${classifiedSpatialLayer.label} рассчитан только на 10 контрольных кадров.`)}</span>
</div>
) : null}
{frame && !frame.spatialAvailable ? (
{classifiedSpatialFrame?.sampleAvailable === false ? (
<div className="m4-replay-threat-visual__pane-status" role="status">
Кадр {classifiedSpatialFrame.sourceSequence + 1}: LiDAR отсутствует; current safety — все {classifiedCellCount.toLocaleString("ru-RU")} TGS-ячейки UNOBSERVED
{displayedClassifiedFrameHeld && displayedClassifiedSpatialFrame
? `; для ориентации удержан последний объёмный контекст кадра ${displayedClassifiedSpatialFrame.sourceSequence + 1}.`
: "."}
</div>
) : classifiedSpatialFrame && !activeSpatialFrame ? (
<div className="m4-replay-threat-visual__pane-status" role="status">
Кадр {classifiedSpatialFrame.sourceSequence + 1}: TGS costmap показан cell-only; linked source cloud для отрисовки отсутствует.
</div>
) : frame && !frame.spatialAvailable ? (
<div className="m4-replay-threat-visual__pane-status" role="status">
{spatialFrame
? `На кадре ${frame.sequence + 1} нет body frame; держим spatial evidence кадра ${spatialFrame.sequence + 1}.`
@@ -798,7 +1182,7 @@ export function M4ReplayThreatVisual({
{timelineFrame.loading || displayingBufferedFrame ? (
<div className="m4-replay-threat-visual__buffering" role="status">
<span className="busy-indicator" aria-hidden="true" />
<span>Догружаем следующий spatial-буфер без сброса сцены</span>
<span>{timelineFrame.loadingLabel ?? "Догружаем следующий spatial-буфер без сброса сцены"}</span>
</div>
) : null}
{timelineFrame.error ? (
@@ -807,13 +1191,13 @@ export function M4ReplayThreatVisual({
<span>{timelineFrame.error}</span>
</div>
) : null}
{semantic && semanticTimeline.loading ? (
{semanticSpatialResultId && semanticTimeline.loading ? (
<div className="m4-replay-threat-visual__buffering" role="status">
<span className="busy-indicator" aria-hidden="true" />
<span>Догружаем semantic-point evidence E47</span>
</div>
) : null}
{semanticTimeline.error ? (
{semanticSpatialResultId && semanticTimeline.error ? (
<div className="m4-replay-threat-visual__buffering" role="alert">
<Icon name="alert" size={16} />
<span>{semanticTimeline.error}</span>
@@ -855,7 +1239,7 @@ export function M4ReplayThreatVisual({
<div className="l3-visual-audit m4-replay-threat-visual">
<LaboratoryEvidenceViewer
label={semantic
? "E47 semantic + SLAM diagnostic replay"
? semantic.label ?? "Semantic diagnostic replay"
: `${evidenceLabel} recorded-realtime replay`}
className="m4-replay-threat-evidence-viewer"
mode={mediaMode ?? "none"}
@@ -0,0 +1,201 @@
import {
LaboratoryEvidence,
LaboratoryResultSummary,
LaboratorySummary,
LaboratoryWorkTemplate,
} from "../../components/laboratory/LaboratoryPresentation";
import {
vegetationVideoMaskUrl,
type VegetationShadowResult,
} from "../../core/laboratory/vegetationShadow";
import {
M48MaskComparisonVisual,
type M48MaskComparisonCase,
} from "./M48FailureAtlasVisual";
import { M4ReplayThreatVisual } from "./M4ReplayThreatVisual";
function decimal(value: number, digits = 1): string {
return value.toLocaleString("ru-RU", { maximumFractionDigits: digits });
}
const VEGETATION_LABELS: Readonly<Record<string, string>> = {
high_grass: "Высокая трава",
low_grass: "Низкая трава",
bush: "Куст",
tree_trunk: "Ствол дерева",
tree_crown: "Крона дерева",
hedge: "Живая изгородь",
forest: "Лесная растительность",
crops: "Посевы",
};
function comparisonCases(result: VegetationShadowResult): readonly M48MaskComparisonCase[] {
return result.validationCases.map((item) => {
const focus = item.focus!;
return {
caseId: item.caseId,
title: `${VEGETATION_LABELS[focus.className] ?? focus.className} · truth ${decimal(focus.truthFraction * 100, 1)}% кадра`,
sourceUrl: item.assets.source,
truthUrl: item.assets.truth,
predictions: {
ddrnet: item.assets.ddrnet,
ppliteseg: item.assets.ppliteseg,
},
errors: {
ddrnet: item.assets.ddrnet_error,
ppliteseg: item.assets.ppliteseg_error,
},
};
});
}
export function VegetationShadowResultView({
rigLabel,
result,
}: {
rigLabel: string;
result: VegetationShadowResult;
}) {
const selected = result.candidates.find(
(candidate) => candidate.candidate === result.selectedCandidate,
)!;
const alternative = result.candidates.find(
(candidate) => candidate.candidate !== result.selectedCandidate,
)!;
return (
<LaboratoryWorkTemplate
summary={(
<LaboratorySummary
title="LAB V1 · готовые модели растительности"
description={result.routeVideo
? "M4.8 сохраняет truth-backed сравнение моделей, а штатный M4.7 viewer показывает фактический DDRNet prediction на всей записи RAVNOVES00. Все 4489 масок запечатаны локально и открываются без Worker 006."
: "Штатный M4.8-инструмент сравнивает две готовые fine-64 модели на полном GOOSE validation split и на 12 truth-backed hard cases, выбранных только по наличию нужной растительности. Sealed evidence открывается локально без Worker 006."}
status={result.routeVideo
? "DDRNet full-video prediction ready · route truth отсутствует"
: "Truth-backed model comparison · route transfer не принят"}
statusTone="warning"
facts={[
{ label: "Источник", value: "GOOSE validation · 962 размеченных кадра · 12 vegetation hard cases" },
{ label: "Сравнение", value: "DDRNet-39 vs PPLiteSeg · official fine-64 weights" },
{ label: "Кейсы", value: "трава · куст · ствол · крона · изгородь · лес · посевы" },
...(result.routeVideo ? [{
label: "Видео",
value: "RAVNOVES00 · 4489/4489 DDRNet masks · exact recorded sequence",
}] : []),
{ label: "Authority", value: `${rigLabel} · MODEL QUALIFICATION ONLY · commands OFF` },
]}
brief={{
question: "Какие готовые веса лучше различают проезжаемую траву, кусты и стволы на размеченных off-road кадрах?",
approach: "Обе модели последовательно прогнаны в одном изолированном CUDA-runtime на 962 кадрах. 12 визуальных кейсов выбраны детерминированно по truth-поддержке восьми растительных классов; один M4.8 viewer показывает source, truth, prediction и material-error для выбранной модели.",
principalResult: `${selected.loadedModelName} лидирует по vegetation IoU: ${decimal(selected.vegetationMeanIouPercent, 2)}% против ${decimal(alternative.vegetationMeanIouPercent, 2)}%. ${result.routeVideo ? "Его фактическая temporal stability теперь видна на всех 4489 кадрах штатного recorded viewer." : "Ошибки по каждому типу проверяются в одном штатном инструменте."}`,
limitation: "GOOSE — внешний размеченный домен; RAVNOVES00 — наш fisheye, но без ручной truth-разметки. Full-video слой показывает prediction, а не доказывает правильность. Папоротник отдельным классом отсутствует.",
}}
method={{
completeness: "complete",
executionClass: "ai-inference",
pipelineId: "goose-fine64-ready-weights-to-ravnoves-policy-shadow/v1",
components: result.candidates.map((candidate) => ({
kind: "model" as const,
name: candidate.loadedModelName,
version: candidate.candidate,
role: candidate.candidate === result.selectedCandidate ? "selected policy provider" : "comparison candidate",
identitySha256: candidate.checkpointSha256,
})),
}}
/>
)}
evidence={(
<>
<LaboratoryEvidence
eyebrow="M4.8 · GOOSE VEGETATION HARD CASES"
title="ERROR: красный — пропуск · жёлтый — лишнее · фиолетовый — перепутан тип · зелёный — совпадение"
kind="diagnostic-model"
resizable
>
<M48MaskComparisonVisual
cases={comparisonCases(result)}
initialCandidate={result.selectedCandidate}
/>
</LaboratoryEvidence>
{result.routeVideo ? (
<LaboratoryEvidence
eyebrow="M4.7 · RAVNOVES00 FULL VIDEO"
title="DDRNet PREDICTION · 4489/4489 кадров · TRUTH для этой записи отсутствует"
kind="diagnostic-model"
resizable
>
<M4ReplayThreatVisual
resultId={result.routeVideo.baseM4ResultId}
evidenceLabel="LAB V1 · DDRNet"
showReferenceMediaLayers={false}
showSpatialOverlaySummary={false}
semantic={{
resultId: result.routeVideo.workerResultId,
spatialResultId: null,
taxonomy: result.routeVideo.taxonomy,
maskUrl: (sequence) => vegetationVideoMaskUrl(result.resultId, sequence),
label: "DDRNet vegetation prediction · recorded video",
maskAriaLabel: "DDRNet vegetation prediction",
}}
/>
</LaboratoryEvidence>
) : null}
</>
)}
result={(
<LaboratoryResultSummary
title="DDRNet — стартовые веса; перенос на ровер ещё не доказан"
status={`${selected.loadedModelName} выбран только как vegetation candidate`}
statusTone="warning"
metrics={[
{
label: "GOOSE mIoU",
value: `${decimal(selected.meanIouPercent, 2)}% / ${decimal(alternative.meanIouPercent, 2)}%`,
hint: `${selected.candidate} / ${alternative.candidate} · полный validation split`,
},
{
label: "Vegetation IoU",
value: `${decimal(selected.vegetationMeanIouPercent, 2)}% / ${decimal(alternative.vegetationMeanIouPercent, 2)}%`,
hint: "агрегация классов grass/vegetation/bush/tree и родственных fine-64 labels",
},
{
label: "Worker shadow p95",
value: `${decimal(selected.shadowLatencyP95Ms, 2)} / ${decimal(alternative.shadowLatencyP95Ms, 2)} ms`,
hint: "чистый inference · одна тяжёлая модель за раз",
},
{
label: "Cold prewarm",
value: `${decimal(selected.shadowPrewarmLatencyMs, 1)} / ${decimal(alternative.shadowPrewarmLatencyMs, 1)} ms`,
hint: "один явный inference до допуска кадров; исключён из steady-state p95",
},
{
label: "Worker throughput",
value: `${decimal(selected.shadowThroughputFps, 1)} / ${decimal(alternative.shadowThroughputFps, 1)} FPS`,
hint: "изолированный Worker 006 · не realtime graph целиком",
},
{
label: "Peak VRAM",
value: `${decimal(selected.peakReservedVramBytes / 1024 ** 3, 2)} / ${decimal(alternative.peakReservedVramBytes / 1024 ** 3, 2)} GiB`,
hint: `${selected.candidate} / ${alternative.candidate} · RTX 4090`,
},
{
label: "Hard-case evidence",
value: "12 truth-backed cases",
hint: "8 vegetation strata · Worker для открытия не требуется",
},
...(result.routeVideo ? [{
label: "Route video",
value: "4489/4489 masks",
hint: "DDRNet prediction · exact sequence · Worker-independent playback",
}] : []),
]}
conclusion={{
proved: "Обе официальные fine-64 модели воспроизводимо запускаются на Worker 006; DDRNet лучше по aggregate vegetation IoU. Truth-backed hard cases прямо показывают траву, кусты и стволы, а не случайные автомобили и здания.",
notProved: "Не доказаны accuracy на нашем fisheye-домене, папоротник как отдельный материал, collision safety и physical-live поведение ровера. Видео позволяет увидеть temporal stability, но без truth не превращает её в метрику качества.",
decision: "Смотреть полный prediction на видео и собирать конкретные temporal/domain failure cases. DDRNet остаётся diagnostic candidate; LiDAR/TGS fail-closed геометрию не ослаблять.",
}}
/>
)}
/>
);
}
@@ -63,6 +63,13 @@ interface KnownWorkDefinition {
const rig = (rigLabel: string): string => rigLabel.trim() || "Сенсорный риг";
const KNOWN_WORKS: Readonly<Record<Exclude<LaboratoryWorkId, `session:${string}`>, KnownWorkDefinition>> = {
"lab-v1-vegetation-shadow": {
profileId: "rig-ravnoves-perception-gate-v1",
profileName: (rigLabel) => `${rig(rigLabel)} · GOOSE vegetation qualification`,
experimentId: "lab-v1-vegetation-mission-policy",
experimentName: "DDRNet vs PPLiteSeg · truth-backed vegetation hard cases",
variantName: "LAB V1 · готовые vegetation weights · GOOSE truth",
},
"m48-object-centric-quality": {
profileId: "rig-dual-evidence-virtual-corridor-v1",
profileName: (rigLabel) => `${rig(rigLabel)} RIGHT · Camera + prediction-free spatial evidence`,
@@ -77,6 +84,20 @@ const KNOWN_WORKS: Readonly<Record<Exclude<LaboratoryWorkId, `session:${string}`
experimentName: "M4.8 · small static passage regression",
variantName: "M4.8R1 · Worker 006 small-static assisted baseline",
},
"m48-static-occupancy-qualification": {
profileId: "rig-dual-evidence-virtual-corridor-v1",
profileName: (rigLabel) => `${rig(rigLabel)} RIGHT · Canonical Reference Graph`,
experimentId: "m48-static-occupancy-qualification",
experimentName: "M4.8 · conservative static occupancy qualification",
variantName: "M4.8R2 · current/rolling + low-step occupied-only candidate",
},
"m48r3-static-occupancy-shadow": {
profileId: "rig-dual-evidence-virtual-corridor-v1",
profileName: (rigLabel) => `${rig(rigLabel)} RIGHT · Canonical Reference Graph`,
experimentId: "m48r3-static-occupancy-shadow",
experimentName: "M4.8R3 · full Worker static occupancy shadow",
variantName: "M4.8R3 · 4 489 frames · additive low-step occupied-only",
},
"m48s-fixed-class-detector": {
profileId: "rig-ravnoves-perception-gate-v1",
profileName: (rigLabel) => `${rig(rigLabel)} RIGHT · RAVNOVES00 perception gate`,
@@ -84,6 +105,27 @@ const KNOWN_WORKS: Readonly<Record<Exclude<LaboratoryWorkId, `session:${string}`
experimentName: "RAVNOVES00 fixed-class risk detector",
variantName: "M4.8S · RF-DETR-L TensorRT/Triton shadow",
},
"m48t-risk-quality-temporal": {
profileId: "rig-ravnoves-perception-gate-v1",
profileName: (rigLabel) => `${rig(rigLabel)} RIGHT · Native raw-fisheye perception gate`,
experimentId: "m48t-risk-quality-temporal",
experimentName: "RF-DETR native risk review and temporal identity",
variantName: "M4.8Q · native raw KB4 review · quality not adjudicated",
},
"m49-tgs-fail-closed-evidence": {
profileId: "rig-dual-evidence-virtual-corridor-v1",
profileName: (rigLabel) => `${rig(rigLabel)} RIGHT · Camera + gravity-aligned LiDAR`,
experimentId: "m49-tgs-fail-closed-evidence",
experimentName: "TRAVEL TGS fail-closed traversability evidence",
variantName: "M4.9T4 · 10 anchors · causal rolling 1 s · AOS OFF",
},
"m49-tgs-full-shadow": {
profileId: "rig-dual-evidence-virtual-corridor-v1",
profileName: (rigLabel) => `${rig(rigLabel)} RIGHT · Camera + gravity-aligned LiDAR`,
experimentId: "m49-tgs-full-shadow",
experimentName: "TRAVEL TGS complete source-paced shadow",
variantName: "M4.9T5 · 4 489 frames · causal rolling 1 s · CPU-only",
},
"m47-reference-graph-shadow": {
profileId: "rig-dual-evidence-virtual-corridor-v1",
profileName: (rigLabel) => `${rig(rigLabel)} RIGHT · Camera + LiDAR dual evidence`,
@@ -0,0 +1,119 @@
import type { RecordedEvidenceBox } from "../../components/laboratory/RecordedEvidenceVideoScene";
import type { M4ThreatMetricVisual } from "../../core/laboratory/m4ReplayThreat";
const MINIMUM_BOX_SIZE_PX = 12;
const RETAINED_CURRENT_OVERLAP_LIMIT = 0.5;
interface ObstacleBoxCandidate {
readonly box: RecordedEvidenceBox;
readonly state: M4ThreatMetricVisual["state"];
}
function shortComponentId(componentId: string): string {
const finalSegment = componentId.split(/[-_]/).pop();
return finalSegment && /^\d+$/.test(finalSegment)
? finalSegment
: componentId.slice(-6).toUpperCase();
}
function clamp(value: number, minimum: number, maximum: number): number {
return Math.min(maximum, Math.max(minimum, value));
}
function visibleBox(
box: readonly [number, number, number, number],
imageWidth: number,
imageHeight: number,
): readonly [number, number, number, number] | null {
const [sourceLeft, sourceTop, sourceRight, sourceBottom] = box;
if (
sourceRight < 0
|| sourceBottom < 0
|| sourceLeft >= imageWidth
|| sourceTop >= imageHeight
) return null;
const centerX = (sourceLeft + sourceRight) / 2;
const centerY = (sourceTop + sourceBottom) / 2;
const halfWidth = Math.max((sourceRight - sourceLeft) / 2, MINIMUM_BOX_SIZE_PX / 2);
const halfHeight = Math.max((sourceBottom - sourceTop) / 2, MINIMUM_BOX_SIZE_PX / 2);
const left = clamp(centerX - halfWidth, 0, imageWidth - 1);
const top = clamp(centerY - halfHeight, 0, imageHeight - 1);
const right = clamp(centerX + halfWidth, left + 1, imageWidth);
const bottom = clamp(centerY + halfHeight, top + 1, imageHeight);
return [left, top, right, bottom];
}
function overlapFractionOfSmaller(
left: readonly [number, number, number, number],
right: readonly [number, number, number, number],
): number {
const intersectionWidth = Math.max(
0,
Math.min(left[2], right[2]) - Math.max(left[0], right[0]),
);
const intersectionHeight = Math.max(
0,
Math.min(left[3], right[3]) - Math.max(left[1], right[1]),
);
const intersectionArea = intersectionWidth * intersectionHeight;
const leftArea = (left[2] - left[0]) * (left[3] - left[1]);
const rightArea = (right[2] - right[0]) * (right[3] - right[1]);
const smallerArea = Math.min(leftArea, rightArea);
return smallerArea > 0 ? intersectionArea / smallerArea : 0;
}
/**
* Build actionable camera evidence from the same world-state shown in 3D.
* Unknown and clear components remain in world-state, but do not compete with
* actual corridor threats for the operator's attention.
*/
export function buildM4StaticObstacleBoxes(
obstacles: readonly M4ThreatMetricVisual[],
imageWidth: number,
imageHeight: number,
): readonly RecordedEvidenceBox[] {
const candidates: ObstacleBoxCandidate[] = [];
for (const obstacle of obstacles) {
if (
obstacle.occupancySource === "baseline"
|| (obstacle.state !== "current" && obstacle.state !== "retained")
|| obstacle.assessment.decision !== "threat"
|| obstacle.assessment.corridorIntersection !== "intersects"
|| obstacle.cameraProjection === null
) continue;
const projection = obstacle.cameraProjection;
const boxXyxy = visibleBox(projection.bboxXyxy, imageWidth, imageHeight);
if (!boxXyxy) continue;
const depth = projection.nearestDepthM.toLocaleString("ru-RU", {
maximumFractionDigits: 1,
});
candidates.push({
state: obstacle.state,
box: {
boxXyxy,
label: `OBS #${shortComponentId(obstacle.componentId)} · ${depth} м`,
tone: "danger",
dashed: false,
},
});
}
const currentBoxes = candidates
.filter((candidate) => candidate.state === "current")
.map((candidate) => candidate.box.boxXyxy);
return candidates
.filter((candidate) => (
candidate.state !== "retained"
|| !currentBoxes.some((currentBox) => (
overlapFractionOfSmaller(candidate.box.boxXyxy, currentBox)
>= RETAINED_CURRENT_OVERLAP_LIMIT
))
))
.map((candidate) => candidate.box)
.sort((left, right) => {
const leftArea = (left.boxXyxy[2] - left.boxXyxy[0])
* (left.boxXyxy[3] - left.boxXyxy[1]);
const rightArea = (right.boxXyxy[2] - right.boxXyxy[0])
* (right.boxXyxy[3] - right.boxXyxy[1]);
return rightArea - leftArea;
});
}
@@ -18,10 +18,16 @@ function mergeResults(
next: AdvancedLaboratoryResults,
): AdvancedLaboratoryResults {
return {
vegetationShadow: next.vegetationShadow ?? current.vegetationShadow,
m47Graph: next.m47Graph ?? current.m47Graph,
m48: next.m48 ?? current.m48,
m48SmallStatic: next.m48SmallStatic ?? current.m48SmallStatic,
m48StaticOccupancy: next.m48StaticOccupancy ?? current.m48StaticOccupancy,
m48r3StaticOccupancy: next.m48r3StaticOccupancy ?? current.m48r3StaticOccupancy,
m48s: next.m48s ?? current.m48s,
m48t: next.m48t ?? current.m48t,
m49Tgs: next.m49Tgs ?? current.m49Tgs,
m49TgsFull: next.m49TgsFull ?? current.m49TgsFull,
m4Threat: next.m4Threat ?? current.m4Threat,
l3: next.l3 ?? current.l3,
l31: next.l31 ?? current.l31,
@@ -116,9 +122,14 @@ export function useAdvancedLaboratoryCatalog({
const indexedResultId = index.find((item) => item.workId === selectedWorkId)?.resultId;
if (
[
"lab-v1-vegetation-shadow",
"m47-reference-graph-shadow",
"m48-object-centric-quality",
"m48-small-static-passage-regression",
"m48-static-occupancy-qualification",
"m48r3-static-occupancy-shadow",
"m49-tgs-fail-closed-evidence",
"m49-tgs-full-shadow",
].includes(selectedWorkId)
&& !indexedResultId
) return;
@@ -2,10 +2,15 @@ import { useEffect, useMemo, useRef, useState } from "react";
import {
fetchM4ThreatCameraPointOverlay,
fetchM4ThreatPlaybackManifest,
fetchM4ThreatPlaybackPointChunk,
fetchM4ThreatTimeline,
fetchM4ThreatTimelineChunk,
M4_THREAT_TIMELINE_ENDPOINT_ROOT,
selectM4ThreatTimelineSequence,
type M4ThreatCameraPointOverlay,
type M4ThreatPlaybackManifest,
type M4ThreatPlaybackProgress,
type M4ThreatTimeline,
type M4ThreatTimelineChunk,
type M4ThreatTimelineFrame,
@@ -82,11 +87,48 @@ export function useM4ThreatTimelineFrame({
() => new Map(),
);
const [error, setError] = useState<string | null>(null);
const [playbackManifest, setPlaybackManifest] = useState<M4ThreatPlaybackManifest | null>(null);
const [playbackProgress, setPlaybackProgress] = useState<M4ThreatPlaybackProgress>({
phase: "manifest",
loadedBytes: 0,
totalBytes: 0,
});
const [playbackError, setPlaybackError] = useState<string | null>(null);
const binaryPlayback = endpointRoot === undefined
|| endpointRoot === M4_THREAT_TIMELINE_ENDPOINT_ROOT;
const inFlight = useRef(new Map<number, AbortController>());
const chunksRef = useRef(chunks);
const activeChunkStartRef = useRef<number | null>(null);
chunksRef.current = chunks;
useEffect(() => {
const controller = new AbortController();
setPlaybackManifest(null);
setPlaybackError(null);
setPlaybackProgress({ phase: "manifest", loadedBytes: 0, totalBytes: 0 });
if (!timeline) return () => controller.abort();
if (!binaryPlayback) {
setPlaybackProgress({ phase: "ready", loadedBytes: 0, totalBytes: 0 });
return () => controller.abort();
}
void fetchM4ThreatPlaybackManifest(resultId, {
signal: controller.signal,
endpointRoot,
})
.then((manifest) => {
if (!controller.signal.aborted) {
setPlaybackManifest(manifest);
setPlaybackProgress({ phase: "ready", loadedBytes: 0, totalBytes: 0 });
}
})
.catch((caught: unknown) => {
if (!controller.signal.aborted) {
setPlaybackError(errorMessage(caught, "Бинарный spatial playback M4.6 недоступен."));
}
});
return () => controller.abort();
}, [binaryPlayback, endpointRoot, resultId, timeline]);
useEffect(() => {
for (const controller of inFlight.current.values()) controller.abort();
inFlight.current.clear();
@@ -116,7 +158,7 @@ export function useM4ThreatTimelineFrame({
activeChunkStartRef.current = activeChunkStart;
useEffect(() => {
if (!timeline || activeChunkStart === null) return;
if (!timeline || activeChunkStart === null || (binaryPlayback && !playbackManifest)) return;
const starts = m4ThreatChunkWindowStarts(
activeChunkStart,
chunkSize,
@@ -127,10 +169,28 @@ export function useM4ThreatTimelineFrame({
if (chunksRef.current.has(start) || inFlight.current.has(start)) continue;
const controller = new AbortController();
inFlight.current.set(start, controller);
void fetchM4ThreatTimelineChunk(resultId, start, chunkSize, {
void (async () => {
const playbackPointPack = binaryPlayback && playbackManifest
? await fetchM4ThreatPlaybackPointChunk(
playbackManifest,
Math.floor(start / playbackManifest.chunkFrameCount),
{
signal: controller.signal,
onProgress: (progress) => {
if (!controller.signal.aborted && start === activeChunkStartRef.current) {
setPlaybackProgress(progress);
}
},
},
)
: undefined;
return fetchM4ThreatTimelineChunk(resultId, start, chunkSize, {
signal: controller.signal,
endpointRoot,
})
cameraObstacleProjectionDelivery: timeline.cameraObstacleProjectionDelivery,
playbackPointPack,
});
})()
.then((chunk) => {
if (controller.signal.aborted) return;
setChunks((current) => {
@@ -160,7 +220,7 @@ export function useM4ThreatTimelineFrame({
// loaded first, then the next chunk is prefetched on the following render.
break;
}
}, [activeChunkStart, chunkSize, chunks, endpointRoot, resultId, timeline]);
}, [activeChunkStart, binaryPlayback, chunkSize, chunks, endpointRoot, playbackManifest, resultId, timeline]);
const activeFrame: M4ThreatTimelineFrame | null = useMemo(() => {
if (activeSequence === null || activeChunkStart === null) return null;
@@ -180,8 +240,17 @@ export function useM4ThreatTimelineFrame({
activeSequence,
activeFrame,
availableFrames,
loading: error === null && Boolean(timeline) && !activeFrame,
error,
loading: error === null && playbackError === null && Boolean(timeline) && !activeFrame,
loadingLabel: !binaryPlayback
? "Догружаем следующий spatial-буфер без сброса сцены"
: playbackProgress.phase === "manifest"
? "Проверяем M4 playback manifest"
: playbackProgress.phase === "ready"
? "Подготавливаем текущий spatial-кадр"
: `${playbackProgress.phase === "verify" ? "Проверяем" : "Буферизуем"} текущий spatial chunk · ${playbackProgress.totalBytes > 0
? `${Math.min(100, Math.round(playbackProgress.loadedBytes / playbackProgress.totalBytes * 100))}% · ${(playbackProgress.loadedBytes / 1_048_576).toFixed(1)} МБ`
: "0%"}`,
error: playbackError ?? error,
};
}
@@ -0,0 +1,411 @@
import {
useCallback,
useEffect,
useMemo,
useRef,
useState,
type DragEvent,
} from "react";
import {
ActivityIndicator,
Button,
ConfirmationModal,
GlassSurface,
Icon,
StatusBadge,
} from "@nodedc/ui-react";
import { SimulationCatalog } from "../../components/simulation/SimulationCatalog";
import { SimulationProjectWindow } from "../../components/simulation/SimulationProjectWindow";
import { SimulationViewport } from "../../components/simulation/SimulationViewport";
import {
createSimulationProject,
deleteSimulationProject,
fetchSimulationProjects,
retrySimulationProject,
uploadSimulationProjectSource,
type SimulationProject,
type SimulationProjectStatus,
type SimulationUploadProgress,
} from "../../core/simulation/projects";
import {
archiveProjectName,
archivesFromDrop,
hasDroppedFiles,
} from "../../core/simulation/sourceFiles";
const BUILD_STATUSES = new Set<SimulationProjectStatus>(["queued", "processing", "importing"]);
interface BrowserUpload {
project: SimulationProject;
file: File;
}
export function SimulationWorkspace() {
const [projects, setProjects] = useState<SimulationProject[]>([]);
const [selectedId, setSelectedId] = useState<string | null>(null);
const [loading, setLoading] = useState(true);
const [error, setError] = useState<string | null>(null);
const [windowOpen, setWindowOpen] = useState(false);
const [editing, setEditing] = useState<SimulationProject | null>(null);
const [deleting, setDeleting] = useState<SimulationProject | null>(null);
const [retryingId, setRetryingId] = useState<string | null>(null);
const [pendingUploads, setPendingUploads] = useState<BrowserUpload[]>([]);
const [uploadProgress, setUploadProgress] = useState<Map<string, SimulationUploadProgress>>(
() => new Map(),
);
const [queueError, setQueueError] = useState<string | null>(null);
const [dropping, setDropping] = useState(false);
const activeUploadRef = useRef<{ projectId: string; controller: AbortController } | null>(null);
const intakeChainRef = useRef<Promise<void>>(Promise.resolve());
const dragDepthRef = useRef(0);
const load = useCallback(async (signal?: AbortSignal) => {
try {
const next = await fetchSimulationProjects(signal);
setProjects(next);
setError(null);
} catch (caught) {
if (signal?.aborted) return;
setError(caught instanceof Error ? caught.message : "Каталог симуляций недоступен.");
} finally {
if (!signal?.aborted) setLoading(false);
}
}, []);
useEffect(() => {
const controller = new AbortController();
void load(controller.signal);
return () => controller.abort();
}, [load]);
useEffect(() => {
if (!projects.some((project) => BUILD_STATUSES.has(project.status))) return;
const timer = window.setInterval(() => void load(), 2_000);
return () => window.clearInterval(timer);
}, [load, projects]);
useEffect(() => {
const next = pendingUploads[0];
if (!next || activeUploadRef.current) return;
const controller = new AbortController();
activeUploadRef.current = { projectId: next.project.projectId, controller };
void uploadSimulationProjectSource(
next.project,
[{ file: next.file, logicalPath: next.file.name }],
(progress) => {
setUploadProgress((current) => {
const updated = new Map(current);
updated.set(next.project.projectId, progress);
return updated;
});
setProjects((current) => current.map((project) => (
project.projectId === next.project.projectId
? {
...project,
source: { ...project.source, uploadedByteLength: progress.uploadedBytes },
}
: project
)));
},
controller.signal,
).then((queued) => {
setProjects((current) => current.map((project) => (
project.projectId === queued.projectId ? queued : project
)));
setQueueError(null);
}).catch((caught) => {
if (controller.signal.aborted) return;
setQueueError(caught instanceof Error
? `${next.file.name}: ${caught.message}`
: `${next.file.name}: загрузка остановлена.`);
}).finally(() => {
setPendingUploads((current) => current.filter(
(item) => item.project.projectId !== next.project.projectId,
));
setUploadProgress((current) => {
const updated = new Map(current);
updated.delete(next.project.projectId);
return updated;
});
activeUploadRef.current = null;
});
}, [pendingUploads]);
useEffect(() => () => activeUploadRef.current?.controller.abort(), []);
const selected = useMemo(
() => projects.find((project) => project.projectId === selectedId) ?? null,
[projects, selectedId],
);
const openCreate = () => {
setEditing(null);
setWindowOpen(true);
};
const openEdit = (project: SimulationProject) => {
setEditing(project);
setWindowOpen(true);
};
const acceptSaved = (project: SimulationProject) => {
const wasEditing = editing !== null;
setProjects((current) => [project, ...current.filter((item) => item.projectId !== project.projectId)]);
if (!wasEditing) setSelectedId(project.projectId);
setWindowOpen(false);
setEditing(null);
};
const acceptViewerProject = useCallback((project: SimulationProject) => {
setProjects((current) => current.map((item) => (
item.projectId === project.projectId ? project : item
)));
}, []);
const confirmDelete = async () => {
if (!deleting) return;
const pending = pendingUploads.find((item) => item.project.projectId === deleting.projectId);
if (activeUploadRef.current?.projectId === deleting.projectId) {
activeUploadRef.current.controller.abort();
}
setPendingUploads((current) => current.filter(
(item) => item.project.projectId !== deleting.projectId,
));
try {
await deleteSimulationProject(deleting.projectId);
setProjects((current) => current.filter((project) => project.projectId !== deleting.projectId));
setUploadProgress((current) => {
const updated = new Map(current);
updated.delete(deleting.projectId);
return updated;
});
if (selectedId === deleting.projectId) setSelectedId(null);
setDeleting(null);
} catch (caught) {
if (pending) setPendingUploads((current) => [pending, ...current]);
const message = caught instanceof Error ? caught.message : "Не удалось удалить проект.";
setQueueError(message);
throw caught;
}
};
const enqueueDroppedArchives = useCallback((files: File[]) => {
intakeChainRef.current = intakeChainRef.current.then(async () => {
for (const file of files) {
try {
const project = await createSimulationProject(
archiveProjectName(file.name),
"outdoor",
[{ file, logicalPath: file.name }],
);
setProjects((current) => [
project,
...current.filter((item) => item.projectId !== project.projectId),
]);
setPendingUploads((current) => [...current, { project, file }]);
} catch (caught) {
setQueueError(caught instanceof Error
? `${file.name}: ${caught.message}`
: `${file.name}: не удалось создать проект.`);
}
}
});
}, []);
const handleDrop = async (transfer: DataTransfer) => {
dragDepthRef.current = 0;
setDropping(false);
setQueueError(null);
try {
enqueueDroppedArchives(await archivesFromDrop(transfer));
} catch (caught) {
setQueueError(caught instanceof Error ? caught.message : "Архивы не приняты.");
}
};
const handleDragEnter = (event: DragEvent<HTMLDivElement>) => {
if (!hasDroppedFiles(event.dataTransfer)) return;
event.preventDefault();
dragDepthRef.current += 1;
setDropping(true);
};
const handleDragLeave = (event: DragEvent<HTMLDivElement>) => {
if (!hasDroppedFiles(event.dataTransfer)) return;
event.preventDefault();
dragDepthRef.current = Math.max(0, dragDepthRef.current - 1);
if (dragDepthRef.current === 0) setDropping(false);
};
const retry = async (project: SimulationProject) => {
setRetryingId(project.projectId);
setError(null);
try {
const queued = await retrySimulationProject(project.projectId);
setProjects((current) => current.map((item) => (
item.projectId === queued.projectId ? queued : item
)));
} catch (caught) {
setError(caught instanceof Error ? caught.message : "Не удалось повторить сборку.");
} finally {
setRetryingId(null);
}
};
if (selected) {
return (
<div className="simulation-workspace simulation-workspace--scene">
<header className="simulation-workspace__scene-head">
<Button
size="compact"
variant="ghost"
icon={<Icon name="chevron-left" size={16} />}
onClick={() => setSelectedId(null)}
>
Все проекты
</Button>
<div>
<span className="section-eyebrow">LAB / SIMULATION RUNTIME</span>
<h2>{selected.name}</h2>
</div>
<StatusBadge tone={statusPresentation(selected.status).tone}>
{statusPresentation(selected.status).label}
</StatusBadge>
</header>
{selected.status === "ready" && selected.worldManifest ? (
<SimulationViewport
project={selected}
onProjectChange={acceptViewerProject}
/>
) : (
<GlassSurface className="simulation-workspace__processing" padding="lg">
{selected.status === "failed" ? <Icon name="alert" size={20} /> : <ActivityIndicator label="Сборка мира" />}
<div className="simulation-workspace__processing-copy">
<strong>{selected.status === "failed" ? "Сборка остановлена" : "Worker 006 собирает мир"}</strong>
<p>{error ?? selected.error ?? processingMessage(selected)}</p>
</div>
<div className="simulation-workspace__processing-actions">
<StatusBadge tone={selected.status === "failed" ? "warning" : "accent"}>
{providerStateLabel(selected.provider.state, selected.status)}
</StatusBadge>
{selected.status === "failed" ? (
<Button
size="compact"
variant="secondary"
disabled={retryingId === selected.projectId}
icon={retryingId === selected.projectId
? <ActivityIndicator size="compact" />
: <Icon name="refresh" size={14} />}
onClick={() => void retry(selected)}
>
Повторить сборку
</Button>
) : null}
</div>
</GlassSurface>
)}
</div>
);
}
return (
<div
className="simulation-workspace"
onDragEnter={handleDragEnter}
onDragOver={(event) => {
if (!hasDroppedFiles(event.dataTransfer)) return;
event.preventDefault();
event.dataTransfer.dropEffect = "copy";
}}
onDragLeave={handleDragLeave}
onDrop={(event) => {
if (!hasDroppedFiles(event.dataTransfer)) return;
event.preventDefault();
void handleDrop(event.dataTransfer);
}}
>
<header className="simulation-workspace__head">
<div>
<span className="section-eyebrow">ТЕСТОВЫЙ КОНТУР / СИМУЛЯЦИИ</span>
<h2>Gaussian-миры</h2>
<p>Каталог исходников, сборок Worker 006 и полнофункциональных интерактивных сцен.</p>
</div>
<Button variant="primary" icon={<Icon name="plus" size={16} />} onClick={openCreate}>
Новый проект
</Button>
</header>
<SimulationCatalog
projects={projects}
uploadProgress={uploadProgress}
loading={loading}
loadError={error}
queueError={queueError}
dropping={dropping}
onCreate={openCreate}
onRetryLoad={() => void load()}
onSelect={(project) => setSelectedId(project.projectId)}
onEdit={openEdit}
onDelete={setDeleting}
/>
<SimulationProjectWindow
open={windowOpen}
project={editing}
onClose={() => { if (!windowOpen) return; setWindowOpen(false); setEditing(null); }}
onSaved={acceptSaved}
/>
<ConfirmationModal
open={deleting !== null}
title="Удалить проект симуляции?"
description={(
<p>
Проект <strong>{deleting?.name}</strong>, локальные производные артефакты и job на Worker 006 будут удалены.
</p>
)}
confirmLabel="Удалить проект"
pendingLabel="Удаляем…"
danger
onClose={() => setDeleting(null)}
onConfirm={confirmDelete}
/>
</div>
);
}
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 === "importing") return { label: "Импорт", tone: "accent" };
return { label: "Сборка", tone: "accent" };
}
function processingMessage(project: SimulationProject): string {
const progress = project.provider.progress;
const completed = progress?.completed_steps;
const total = progress?.total_steps;
if (typeof completed === "number" && typeof total === "number") {
return `Этап ${completed.toLocaleString("ru-RU")} из ${total.toLocaleString("ru-RU")}. Каталог обновляется автоматически.`;
}
return "Исходник подтверждён; локация и её LOD-уровни собираются в переносимом контейнере.";
}
function providerStateLabel(
state: string | null,
projectStatus: SimulationProjectStatus,
): string {
if (state === "queued") return "Ожидание";
if (state === "verifying_source") return "Проверка исходника";
if (state === "inspecting") return "Анализ локации";
if (state === "building_preview") return "Подготовка локации";
if (state === "building_streamed_sog") return "Сборка LOD";
if (state === "building_collision") return "Сборка коллизий";
if (state === "ready") return "Визуал готов";
if (state === "failed") return "Ошибка";
return statusPresentation(projectStatus).label;
}
@@ -7,6 +7,7 @@ let server;
let fetchAdvancedLaboratoryResults;
let fetchAdvancedLaboratoryIndex;
let fetchAdvancedLaboratoryResult;
let fetchM49TgsAnchorSpatial;
let AdvancedLaboratoryContractError;
let buildLaboratoryCatalog;
let buildLaboratoryProfiles;
@@ -836,6 +837,77 @@ function e40() {
};
}
function m49View() {
const anchors = [171, 306, 368, 402, 450, 509, 525, 744, 1122, 1856];
return {
schema_version: "missioncore.m49-tgs-fail-closed-view/v1",
result_id: `m49-tgs-fail-closed-${"2".repeat(64)}`,
created_at_utc: "2026-08-26T17:09:43Z",
source: {
source_id: "RAVNOVES00",
source_session_id: "20260720T065719Z_viewer_live",
source_pack_sha256: "3".repeat(64),
linked_visual_result_id: `m4-threat-replay-${"4".repeat(64)}`,
anchor_frame_indices: anchors,
},
configuration: {
profile_id: "m49-ravnoves00-tgs-fail-closed-evidence/v1",
config_sha256: "5".repeat(64),
coordinate_frame: "map-gravity-local",
primary_profile: "causal_rolling_1s",
cell_size_m: 0.45,
radius_m: 12,
},
execution: {
worker: "Worker 006",
device: "cpu",
gpu_used: false,
wrapper_elapsed_seconds: 12.1,
},
metrics: {
anchor_count: 10,
anchor_profile_count: 20,
all_eligible_points_accounted: true,
costmap_cell_count: 2244,
process_wall_current_p50_ms: 20,
process_wall_current_max_ms: 30,
process_wall_rolling_p50_ms: 30,
process_wall_rolling_max_ms: 40,
process_max_rss_kib: 9292,
primary: anchors.map((anchor, slot) => ({
anchor_frame_index: anchor,
slot,
profile_id: "causal_rolling_1s",
point_count: 3,
ground_point_count: 1,
nonground_point_count: 1,
rejected_point_count: 1,
ground_cell_count: 1,
nonground_cell_count: 1,
rejected_cell_count: 1,
unobserved_cell_count: 2241,
all_points_accounted: true,
})),
},
acceptance: {
representation_complete: true,
all_points_accounted: true,
aos_absent: true,
gpu_absent: true,
visual_quality_accepted: false,
traversability_accepted: false,
},
decision: {
state: "visual-review-required",
candidate_retained: true,
next_action: "Review the ten anchors.",
},
limitations: ["bounded diagnostic evidence"],
ground_truth: false,
access: "read-only",
};
}
before(async () => {
server = await createServer({
appType: "custom",
@@ -850,6 +922,9 @@ before(async () => {
fetchAdvancedLaboratoryIndex,
fetchAdvancedLaboratoryResult,
} = await server.ssrLoadModule("/src/core/laboratory/advancedIndex.ts"));
({ fetchM49TgsAnchorSpatial } = await server.ssrLoadModule(
"/src/core/laboratory/m49TgsFailClosed.ts",
));
({
buildLaboratoryCatalog,
buildLaboratoryProfiles,
@@ -1596,6 +1671,62 @@ test("selected advanced LAB fetches only its own strict catalog", async () => {
]);
});
test("selected M49 LAB preserves the sealed fail-closed contract", async () => {
const payload = m49View();
const requests = [];
const decoded = await fetchAdvancedLaboratoryResult(
"m49-tgs-fail-closed-evidence",
{
resultId: payload.result_id,
fetcher: async (input, init) => {
requests.push({ input: String(input), method: init?.method });
return new Response(JSON.stringify(payload), { status: 200 });
},
},
);
assert.equal(decoded.m49Tgs.metrics.anchorCount, 10);
assert.equal(decoded.m49Tgs.metrics.costmapCellCount, 2244);
assert.equal(decoded.m49Tgs.acceptance.visualQualityAccepted, false);
assert.deepEqual(requests, [{
input: `/api/v1/laboratory/m49/tgs-fail-closed/${payload.result_id}`,
method: "GET",
}]);
});
test("M49 anchor fetch keeps every point and all four costmap states", async () => {
const resultId = m49View().result_id;
const centers = Array.from({ length: 2244 }, (_, index) => [index * 0.45, 0]);
const states = Array.from({ length: 2244 }, (_, index) => index % 4);
const zBounds = states.map((state) => state === 0 ? [null, null] : [0, 0.2]);
const decoded = await fetchM49TgsAnchorSpatial(resultId, 171, "causal_rolling_1s", {
fetcher: async () => new Response(JSON.stringify({
schema_version: "missioncore.m49-tgs-anchor-spatial/v1",
result_id: resultId,
anchor_frame_index: 171,
source_sequence: 171,
profile: "causal_rolling_1s",
coordinate_frame: "map-gravity-local",
points_xyz_m: [[1, 2, 3], [4, 5, 6], [7, 8, 9]],
point_states: [1, 2, 3],
costmap: {
cell_size_m: 0.45,
radius_m: 12,
centers_xy_m: centers,
states,
z_bounds_m: zBounds,
},
all_points_accounted: true,
aos_used: false,
access: "read-only",
}), { status: 200 }),
});
assert.deepEqual(decoded.pointStates, [1, 2, 3]);
assert.equal(decoded.costmap.states.length, 2244);
assert.deepEqual(new Set(decoded.costmap.states), new Set([0, 1, 2, 3]));
});
test("keeps valid LAB catalogs available when one transport endpoint fails", async () => {
const decoded = await fetchAdvancedLaboratoryResults({
fetcher: async (input) => {
@@ -691,3 +691,18 @@ test("metric evidence keeps one WebGL renderer while frame labels advance", () =
/querySelector\("canvas"\)[\s\S]*?setAttribute\("aria-label", label\)[\s\S]*?\}, \[label\]\);/,
);
});
test("metric evidence renders on demand while preserving damped camera interaction", () => {
const source = readFileSync(
new URL("../src/components/laboratory/LaboratoryMetricEvidenceScene.tsx", import.meta.url),
"utf8",
);
assert.match(source, /const requestRenderRef = useRef/);
assert.match(source, /controls\.addEventListener\("change", requestRender\)/);
assert.match(source, /requestRenderRef\.current\(\)/);
assert.doesNotMatch(
source,
/const render = \(\) => \{\s*animationFrame = window\.requestAnimationFrame\(render\)/,
);
});
@@ -0,0 +1,172 @@
import assert from "node:assert/strict";
import { after, before, test } from "node:test";
import { readFile } from "node:fs/promises";
import { createServer } from "vite";
let server;
let fetchM48TRiskQualityResult;
const resultId = `m48q-native-risk-quality-lab-${"a".repeat(64)}`;
before(async () => {
server = await createServer({
appType: "custom",
logLevel: "silent",
server: { middlewareMode: true },
});
({ fetchM48TRiskQualityResult } = await server.ssrLoadModule(
"/src/core/laboratory/m48tRiskQuality.ts",
));
});
after(async () => server?.close());
function response(value) {
return { ok: true, status: 200, json: async () => value };
}
function payload() {
return {
schema_version: "missioncore.m48q-native-risk-quality-view/v1",
variant: "native-risk-review",
result_id: resultId,
created_at_utc: "2026-08-26T10:00:00Z",
status: "complete-review-ready-quality-not-adjudicated",
access: "read-only",
ground_truth: false,
source: {
source_id: "RAVNOVES00",
frame_count: 4489,
raster_width: 800,
raster_height: 600,
geometric_resampling: false,
rectification: false,
warp: false,
},
configuration: {
candidate: {
provider_id: "triton-rf-detr-large-coco-native-kb4-risk-fp16-shadow/v0",
model_id: "rf_detr_large_native_kb4:1",
preprocess_id: "raw-kb4-uint8-fused-mask-rgb-pad8-imagenet-trt/v0",
minimum_score: 0.25,
},
},
method: {
schema_version: "missioncore.laboratory-method/v1",
completeness: "complete",
execution_class: "hybrid",
pipeline_id: "m48q-native-raw-fisheye-risk-case-review/v1",
components: [{
kind: "model",
name: "RF-DETR-L native KB4 TensorRT",
version: "rf_detr_large_native_kb4:1",
role: "risk proposals",
identity_sha256: "b".repeat(64),
}],
},
execution: {
effective_world_state_fps: 11.84338,
world_state_completion_p95_ms: 47.940779,
detector_total_p95_ms: 21.19895,
gpu_utilization_p95_percent: 53,
gpu_memory_used_maximum_mib: 9718,
additional_inference_passes: 0,
},
metrics: {
selection: {
case_count: 24,
minimum_sequence_separation: 12,
selected_bucket_coverage: { person: 22, animal: 3 },
selected_class_counts: { person: 44, dog: 3 },
},
runtime: {
delivery_ratio: 1,
integrated_runtime_gate_passed: true,
operating_target_gate_passed: true,
},
native_tensor_parity: {
risk_detection_precision: 0.9887,
risk_detection_recall: 0.9831,
matched_mean_iou: 0.9882,
},
},
acceptance: {
review_ready: true,
integrated_runtime_gate_passed: true,
independent_quality_evaluated: false,
semantic_candidate_accepted: false,
},
review: {
source_raster: { width: 800, height: 600 },
overlay: { client_rendered: true, toggleable: true },
cases: Array.from({ length: 24 }, (_, index) => {
const caseId = String(index * 20 + 12).padStart(6, "0");
return {
case_id: caseId,
sequence: Number(caseId),
frame_id: `frame-${caseId}`,
evidence_time_ns: 35_000_000_000 + index * 1_000_000,
image_url: `/review/${caseId}.jpg`,
media_type: "image/jpeg",
width: 800,
height: 600,
byte_length: 1000 + index,
sha256: String(index.toString(16)).padStart(64, "0"),
geometric_resampling: false,
selection_buckets: [index % 2 ? "person" : "animal"],
comparison: {
native_detection_count: 1,
legacy_704_detection_count: 1,
matched_detection_count_iou_at_least_0_5: 1,
},
proposals: [{
proposal_id: `proposal-${index}-0`,
class_name: index % 2 ? "person" : "dog",
risk_family: index % 2 ? "person" : "animal",
score: 0.75,
box_xyxy: [10, 20, 100, 200],
}],
};
}),
},
limitations: ["No independent route truth."],
};
}
test("M4.8Q parser accepts only the native 800x600 no-resampling review contract", async () => {
const result = await fetchM48TRiskQualityResult(resultId, {
fetcher: async () => response(payload()),
});
assert.equal(result.variant, "native-risk-review");
assert.equal(result.review.cases.length, 24);
assert.equal(result.review.cases[0].width, 800);
assert.equal(result.review.cases[0].proposals[0].className, "dog");
assert.equal(result.execution.additionalInferencePasses, 0);
assert.equal(result.acceptance.independentQualityEvaluated, false);
});
test("M4.8Q parser fails closed if raw-fisheye geometry is resampled", async () => {
const invalid = payload();
invalid.source.geometric_resampling = true;
await assert.rejects(
fetchM48TRiskQualityResult(resultId, {
fetcher: async () => response(invalid),
}),
/source resampling/,
);
});
test("M4.8Q reuses the canonical image scene and viewer overlay toggle", async () => {
const source = await readFile(
new URL("../src/workspaces/laboratory/M48TRiskQualityVisual.tsx", import.meta.url),
"utf8",
);
assert.match(source, /<LaboratoryEvidenceViewer/);
assert.match(source, /<RecordedEvidenceImageScene/);
assert.match(source, /name=\{boxesVisible \? "eye-off" : "eye"\}/);
assert.match(source, /raw KB4 800×600 · resampling NO/);
assert.doesNotMatch(source, /<canvas/);
});
@@ -0,0 +1,234 @@
import assert from "node:assert/strict";
import { createHash } from "node:crypto";
import { after, before, test } from "node:test";
import { createServer } from "vite";
let server;
let M49PhysicalSafetyPlaybackBuffer;
let fetchM49PhysicalSafetyPlaybackIdForSource;
const resultId = `m49-physical-safety-playback-${"a".repeat(64)}`;
const endpoint = `/api/v1/laboratory/m49/physical-safety-playback/${resultId}`;
const frameCount = 160;
const cellCount = 4;
before(async () => {
server = await createServer({
appType: "custom",
logLevel: "silent",
server: { middlewareMode: true },
});
({
M49PhysicalSafetyPlaybackBuffer,
fetchM49PhysicalSafetyPlaybackIdForSource,
} = await server.ssrLoadModule(
"/src/core/laboratory/m49PhysicalSafetyPlayback.ts",
));
});
after(async () => {
await server?.close();
});
function sha256(buffer) {
return createHash("sha256").update(Buffer.from(buffer)).digest("hex");
}
function chunk(index) {
const start = index * 32;
const count = Math.min(32, frameCount - start);
const stateBytes = count * cellCount;
const zBytes = count * cellCount * 2 * 4;
const headerBytes = 28;
const padding = (4 - ((headerBytes + stateBytes) % 4)) % 4;
const buffer = new ArrayBuffer(headerBytes + stateBytes + padding + zBytes);
const bytes = new Uint8Array(buffer);
bytes.set(new TextEncoder().encode("MCPSCH01"));
const view = new DataView(buffer);
view.setUint32(8, start, true);
view.setUint32(12, count, true);
view.setUint32(16, cellCount, true);
view.setUint32(20, stateBytes, true);
view.setUint32(24, zBytes, true);
const states = new Uint8Array(buffer, headerBytes, stateBytes);
states.fill(1);
const z = new Float32Array(buffer, headerBytes + stateBytes + padding, count * cellCount * 2);
for (let local = 0; local < count; local += 1) {
const sequence = start + local;
for (let cell = 0; cell < cellCount; cell += 1) {
z[(local * cellCount + cell) * 2] = 0;
z[(local * cellCount + cell) * 2 + 1] = 0.12;
}
if (sequence === 17) {
states.fill(0, local * cellCount, (local + 1) * cellCount);
z.fill(Number.NaN, local * cellCount * 2, (local + 1) * cellCount * 2);
}
}
return buffer;
}
function fixture() {
const centers = new Float32Array([0, 0, 0.15, 0, 0.3, 0, 0.45, 0]).buffer;
const frames = new TextEncoder().encode(Array.from({ length: frameCount }, (_, sequence) => (
JSON.stringify({
source_frame_index: sequence,
session_seconds: sequence / 10,
sample_available: sequence !== 17,
eligible_point_count: sequence === 17 ? 0 : cellCount,
})
)).join("\n") + "\n").buffer;
const chunks = Array.from({ length: Math.ceil(frameCount / 32) }, (_, index) => chunk(index));
const manifest = {
schema_version: "missioncore.m49-physical-safety-playback/v1",
result_id: resultId,
created_at_utc: "2026-08-27T12:00:00Z",
access: "read-only-sealed-local",
identity: { source_result_id: `m49-tgs-full-shadow-${"b".repeat(64)}` },
execution: {
execution_class: "local-sequential-offline",
worker_role: "realtime-only",
worker_runtime_dependency: false,
worker_requests_required: 0,
},
authority: {
commands_enabled: false,
navigation_or_safety_accepted: false,
actuation_accepted: false,
},
playback: {
coordinate_frame: "map-gravity-local",
source_pace_hz: 10,
frame_count: frameCount,
cell_count: cellCount,
cell_size_m: 0.15,
radius_m: 12,
state_codes: {
UNOBSERVED: 0,
GROUND_SUPPORT: 1,
NONGROUND_OCCUPIED: 2,
UNKNOWN_REJECTED: 3,
},
chunk_frame_count: 32,
startup_prebuffer_chunk_count: 2,
resident_chunk_count_max: 3,
forward_prefetch_chunk_count: 1,
centers: {
url: `${endpoint}/tracks/centers`,
media_type: "application/octet-stream",
byte_length: centers.byteLength,
sha256: sha256(centers),
dtype: "<f4",
shape: [cellCount, 2],
},
frames: {
url: `${endpoint}/tracks/frames`,
media_type: "application/x-ndjson",
byte_length: frames.byteLength,
sha256: sha256(frames),
dtype: "ndjson",
shape: [frameCount],
},
chunks: chunks.map((buffer, index) => ({
index,
start: index * 32,
count: Math.min(32, frameCount - index * 32),
url: `${endpoint}/chunks/${index}`,
media_type: "application/octet-stream",
byte_length: buffer.byteLength,
sha256: sha256(buffer),
header_bytes: 28,
format: "mcpsch01-states-u8-aligned-z-bounds-f32le",
})),
},
};
const responses = new Map([
[`${endpoint}/tracks/centers`, centers],
[`${endpoint}/tracks/frames`, frames],
...chunks.map((buffer, index) => [`${endpoint}/chunks/${index}`, buffer]),
]);
return { manifest, responses };
}
test("physical-safety playback opens and seeks with bounded local chunks only", async () => {
const { manifest, responses } = fixture();
const requested = [];
const progress = [];
const fetcher = async (input) => {
const url = String(input);
requested.push(url);
if (url === `${endpoint.replace(`/${resultId}`, "")}/results?limit=2&source_result_id=${manifest.identity.source_result_id}`) {
return Response.json({
schema_version: "missioncore.m49-physical-safety-playback-catalog/v1",
worker_runtime_dependency: false,
access: "read-only-sealed-local",
items: [{
result_id: resultId,
source_result_id: manifest.identity.source_result_id,
worker_runtime_dependency: false,
navigation_or_safety_accepted: false,
}],
});
}
if (url === `${endpoint}/manifest`) {
return Response.json(manifest);
}
const payload = responses.get(url);
return payload
? new Response(payload, { headers: { "Content-Type": "application/octet-stream" } })
: new Response(null, { status: 404 });
};
const resolvedResultId = await fetchM49PhysicalSafetyPlaybackIdForSource(
manifest.identity.source_result_id,
{ fetcher },
);
assert.equal(resolvedResultId, resultId);
const playback = await M49PhysicalSafetyPlaybackBuffer.open(resolvedResultId, {
fetcher,
onProgress: (value) => progress.push(value),
});
assert.deepEqual(playback.residentChunkIndexes, [0, 1]);
assert.equal(progress.at(-1).phase, "ready");
assert.equal(requested.some((url) => url.includes("worker")), false);
const startupRequestCount = requested.length;
await playback.prepare(0);
await playback.prepare(0);
assert.equal(requested.length, startupRequestCount);
const missing = await playback.frame(17);
assert.equal(missing.metadata.sampleAvailable, false);
assert.deepEqual(new Set(missing.states), new Set([0]));
assert.equal([...missing.zBoundsM].every((value) => Number.isNaN(value)), true);
await playback.prepare(100);
assert.equal(playback.residentChunkIndexes.length <= 3, true);
assert.equal(playback.residentChunkIndexes.includes(3), true);
assert.equal(playback.residentChunkIndexes.includes(4), true);
const selected = await playback.frame(100);
assert.deepEqual([...selected.states], [1, 1, 1, 1]);
const maximumResidentBytes = manifest.playback.centers.byte_length
+ manifest.playback.frames.byte_length
+ 3 * Math.max(...manifest.playback.chunks.map((value) => value.byte_length));
assert.equal(playback.residentByteLength <= maximumResidentBytes, true);
await playback.prepare(0);
assert.equal(playback.residentChunkIndexes.length <= 3, true);
assert.equal(playback.residentChunkIndexes.includes(0), true);
assert.equal(playback.residentChunkIndexes.includes(1), true);
assert.equal(
requested.every((url) => url.startsWith("/api/v1/laboratory/m49/physical-safety-playback")),
true,
);
});
test("physical-safety playback rejects a manifest that points at Worker", async () => {
const { manifest } = fixture();
manifest.playback.centers.url = "http://worker-006/centers";
await assert.rejects(
M49PhysicalSafetyPlaybackBuffer.open(resultId, {
fetcher: async () => Response.json(manifest),
}),
/sealed local API/,
);
});
@@ -0,0 +1,150 @@
import assert from "node:assert/strict";
import { readFile } from "node:fs/promises";
import { after, before, test } from "node:test";
import { createServer } from "vite";
let server;
let fetchM49TgsFullShadowSpatialChunk;
let parseM49TgsNpyTrack;
const resultId = `m49-tgs-full-shadow-${"a".repeat(64)}`;
before(async () => {
server = await createServer({
appType: "custom",
logLevel: "silent",
server: { middlewareMode: true },
});
({ fetchM49TgsFullShadowSpatialChunk, parseM49TgsNpyTrack } = await server.ssrLoadModule(
"/src/core/laboratory/m49TgsFullShadow.ts",
));
});
after(async () => {
await server?.close();
});
test("M4.9T5 chunk keeps every missing-LiDAR cell explicitly UNOBSERVED", async () => {
let requestedUrl = "";
const centers = Array.from({ length: 2244 }, (_, index) => [index * 0.45, 0]);
const unobserved = Array.from({ length: 2244 }, () => 0);
const zBounds = Array.from({ length: 2244 }, () => [null, null]);
const metrics = {
eligible_point_count: 0,
ground_point_count: 0,
nonground_point_count: 0,
rejected_point_count: 0,
occupied_cell_count: 0,
};
const chunk = await fetchM49TgsFullShadowSpatialChunk(resultId, 7, 1, {
fetcher: async (url) => {
requestedUrl = String(url);
return new Response(JSON.stringify({
schema_version: "missioncore.m49-tgs-full-shadow-spatial-chunk/v1",
result_id: resultId,
start: 7,
count: 1,
coordinate_frame: "map-gravity-local",
costmap: {
cell_size_m: 0.45,
radius_m: 12,
centers_xy_m: centers,
},
frames: [{
source_sequence: 7,
source_frame_index: 7,
session_seconds: 36.119857292,
sample_available: false,
states: unobserved,
z_bounds_m: zBounds,
metrics,
}],
}), { status: 200, headers: { "Content-Type": "application/json" } });
},
});
assert.equal(
requestedUrl,
`/api/v1/laboratory/m49/tgs-full-shadow/${resultId}/spatial/chunk?start=7&count=1`,
);
assert.equal(chunk.count, 1);
assert.equal(chunk.frames[0].sampleAvailable, false);
assert.equal(chunk.frames[0].costmap.states.length, 2244);
assert.deepEqual(new Set(chunk.frames[0].costmap.states), new Set([0]));
});
test("M4.9T5 viewer prefers autonomous chunks and keeps a sealed legacy fallback", async () => {
const [source, visual, scene, contract] = await Promise.all([
readFile(
new URL("../src/workspaces/laboratory/M49TgsFullShadowEvidence.tsx", import.meta.url),
"utf8",
),
readFile(
new URL("../src/workspaces/laboratory/M4ReplayThreatVisual.tsx", import.meta.url),
"utf8",
),
readFile(
new URL("../src/components/laboratory/LaboratoryMetricEvidenceScene.tsx", import.meta.url),
"utf8",
),
readFile(
new URL("../src/core/laboratory/m49TgsFullShadow.ts", import.meta.url),
"utf8",
),
]);
assert.match(source, /fetchM49PhysicalSafetyPlaybackIdForSource/);
assert.match(source, /M49PhysicalSafetyPlaybackBuffer\.open/);
assert.match(source, /physicalPlayback\.frameIfResident/);
assert.match(source, /physicalPlayback\.prepare/);
assert.match(source, /fetchM49TgsFullShadowPlaybackPack/);
assert.match(source, /playbackProgress/);
assert.doesNotMatch(source, /fetchM49TgsFullShadowSpatialChunk/);
assert.match(source, /sampleAvailable: frame\.sampleAvailable/);
assert.match(source, /packedCellsMapGravityLocal/);
assert.match(source, /playbackPack\.states\.subarray/);
assert.match(source, /playbackPack\.zBoundsM\.subarray/);
assert.doesNotMatch(source, /Array\.from\(\s*playbackPack\.states/);
assert.doesNotMatch(source, /centersXyM\.map\(/);
assert.match(source, /fetchE47SemanticSlamResult/);
assert.match(source, /next\.baseM4ResultId !== result\.source\.linkedVisualResultId/);
assert.match(source, /semantic=\{semantic \? \{/);
assert.match(
visual,
/classifiedSpatialFrame\s*&&\s*classifiedSpatialFrame\.sampleAvailable !== false/,
);
assert.doesNotMatch(visual, /classifiedSpatialFrame\?\.sampleAvailable !== false/);
assert.match(visual, /timelineFrame\.availableFrames\.find/);
assert.match(visual, /<LaboratoryMetricEvidenceScene/);
assert.doesNotMatch(
visual,
/\{\(!classifiedSpatialLayer \? spatialFrame : displayedClassifiedSpatialFrame\) \? \(/,
);
assert.match(scene, /useEffect\(\(\) => resetView\(\), \[mode, resetView\]\)/);
assert.match(contract, /linked_semantic_result_id/);
assert.match(contract, /missioncore\.m49-tgs-full-shadow-playback\/v1/);
});
function npyFloat32(values, shape) {
const shapeText = shape.length === 1 ? `${shape[0]},` : shape.join(", ");
const prefixLength = 10;
let header = `{'descr': '<f4', 'fortran_order': False, 'shape': (${shapeText}), }`;
const padding = (16 - ((prefixLength + header.length + 1) % 16)) % 16;
header += " ".repeat(padding) + "\n";
const buffer = new ArrayBuffer(prefixLength + header.length + values.length * 4);
const bytes = new Uint8Array(buffer);
bytes.set([0x93, 0x4e, 0x55, 0x4d, 0x50, 0x59, 1, 0]);
new DataView(buffer).setUint16(8, header.length, true);
bytes.set(new TextEncoder().encode(header), prefixLength);
new Float32Array(buffer, prefixLength + header.length, values.length).set(values);
return buffer;
}
test("M4.9T5 parses sealed NPY tracks without JSON point arrays", () => {
const parsed = parseM49TgsNpyTrack(
npyFloat32([1.25, -2.5, 3.75, 4.5], [2, 2]),
"<f4",
[2, 2],
);
assert.deepEqual([...parsed], [1.25, -2.5, 3.75, 4.5]);
});
@@ -1,4 +1,5 @@
import assert from "node:assert/strict";
import { createHash } from "node:crypto";
import { readFile } from "node:fs/promises";
import { after, before, test } from "node:test";
@@ -9,7 +10,10 @@ let fetchM4ThreatReplayResult;
let fetchM4ThreatVisual;
let fetchM4ThreatTimeline;
let fetchM4ThreatTimelineChunk;
let fetchM4ThreatPlaybackManifest;
let fetchM4ThreatPlaybackPointChunk;
let fetchM4ThreatCameraPointOverlay;
let hydrateM4ThreatTimelineFrame;
let selectM4ThreatTimelineFrame;
let selectM4ThreatTimelineSequence;
let advanceRecordedEvidencePlayback;
@@ -17,6 +21,7 @@ let synchronizeRecordedEvidencePlayback;
let m4ThreatChunkWindowStarts;
let cancelM4ThreatChunkRequestsOutsideWindow;
let buildM4LocalSurface;
let buildM4StaticObstacleBoxes;
const resultId = `m4-threat-replay-${"a".repeat(64)}`;
@@ -31,7 +36,10 @@ before(async () => {
fetchM4ThreatVisual,
fetchM4ThreatTimeline,
fetchM4ThreatTimelineChunk,
fetchM4ThreatPlaybackManifest,
fetchM4ThreatPlaybackPointChunk,
fetchM4ThreatCameraPointOverlay,
hydrateM4ThreatTimelineFrame,
selectM4ThreatTimelineFrame,
selectM4ThreatTimelineSequence,
} = await server.ssrLoadModule("/src/core/laboratory/m4ReplayThreat.ts"));
@@ -50,6 +58,9 @@ before(async () => {
({ buildM4LocalSurface } = await server.ssrLoadModule(
"/src/core/laboratory/m4LocalSurface.ts",
));
({ buildM4StaticObstacleBoxes } = await server.ssrLoadModule(
"/src/workspaces/laboratory/m4StaticObstacleBoxes.ts",
));
});
after(async () => {
@@ -328,6 +339,115 @@ test("M4.6 timeline keeps only a compact index and decodes bounded spatial chunk
assert.equal(selectM4ThreatTimelineFrame(chunk.frames, 35.50).sequence, 1);
});
test("M4.6 hydrates a lightweight timeline frame from one retained binary point track", async () => {
const raw = timelineFrame(0, 35.421857292, {
body_frame: {
origin_map_xyz_m: [10, 20, 30],
basis_map_from_body: [[1, 0, 0], [0, 1, 0], [0, 0, 1]],
},
point_cloud_body_xyz_m: [],
point_cloud_source_count: 2,
point_cloud_sample_count: 2,
});
const parsed = await fetchM4ThreatTimelineChunk(resultId, 0, 1, {
playbackPointPack: {
resultId,
frameCount: 4489,
pointCount: 2,
pointOffsets: new Uint32Array([0, 2, ...Array(4488).fill(2)]),
pointsMapXyzM: new Float32Array([11, 20, 30.25, 12, 19.5, 30]),
},
fetcher: async (input) => {
assert.match(String(input), /include_points=false/);
return new Response(JSON.stringify({
schema_version: "missioncore.recorded-spatial-evidence-chunk/v1",
result_id: resultId,
start_sequence: 0,
frame_count: 1,
next_sequence: 1,
frames: [raw],
authority: "replay-simulated",
}), { status: 200 });
},
});
assert.deepEqual(parsed.frames[0].pointCloudBodyXyzM, [
[1, 0, 0.25],
[2, -0.5, 0],
]);
assert.equal(parsed.frames[0].pointCloudSampleCount, 2);
assert.equal(typeof hydrateM4ThreatTimelineFrame, "function");
});
test("M4.6 source cloud opens from one verified bounded chunk instead of the 105 MiB track", async () => {
const pointOffsets = [0, ...Array(4489).fill(2)];
const points = new Float32Array([11, 20, 30.25, 12, 19.5, 30]);
const pointBytes = points.buffer;
const pointSha256 = createHash("sha256").update(Buffer.from(pointBytes)).digest("hex");
const endpointRoot = "/api/v1/laboratory/m4-threat/results";
const chunks = Array.from({ length: 188 }, (_, index) => {
const start = index * 24;
const count = Math.min(24, 4489 - start);
const pointStart = pointOffsets[start];
const pointStop = pointOffsets[start + count];
const pointCount = pointStop - pointStart;
return {
index,
start,
count,
point_start: pointStart,
point_count: pointCount,
url: `${endpointRoot}/${resultId}/timeline/playback/chunks/${index}`,
media_type: "application/octet-stream",
dtype: "<f4",
shape: [pointCount, 3],
bytes: pointCount * 3 * 4,
sha256: index === 0 ? pointSha256 : "0".repeat(64),
};
});
const manifestPayload = {
schema_version: "missioncore.recorded-spatial-playback/v1",
result_id: resultId,
frame_count: 4489,
point_count: 2,
point_offsets: pointOffsets,
chunk_frame_count: 24,
resident_chunk_count_max: 4,
forward_prefetch_chunk_count: 1,
chunks,
track: {
id: "points-map-f32",
url: `${endpointRoot}/${resultId}/timeline/playback/tracks/points-map-f32`,
media_type: "application/octet-stream",
dtype: "<f4",
shape: [2, 3],
bytes: pointBytes.byteLength,
sha256: pointSha256,
},
coordinate_frame: "map",
access: "read-only-sealed-binary-playback",
};
const requested = [];
const fetcher = async (input) => {
const url = String(input);
requested.push(url);
if (url.endsWith("/timeline/playback")) return Response.json(manifestPayload);
if (url.endsWith("/timeline/playback/chunks/0")) return new Response(pointBytes.slice(0));
return new Response(null, { status: 404 });
};
const manifest = await fetchM4ThreatPlaybackManifest(resultId, { fetcher });
const chunk = await fetchM4ThreatPlaybackPointChunk(manifest, 0, { fetcher });
assert.deepEqual(requested, [
`${endpointRoot}/${resultId}/timeline/playback`,
`${endpointRoot}/${resultId}/timeline/playback/chunks/0`,
]);
assert.equal(chunk.pointCount, 2);
assert.equal(chunk.pointStart, 0);
assert.equal(chunk.sequenceCount, 24);
assert.equal(chunk.pointsMapXyzM.byteLength, 24);
assert.equal(requested.some((url) => url.endsWith("points-map-f32")), false);
});
test("M4.8S timeline binds factory-KB4 camera points through its exact endpoint", async () => {
const replayResultId = `m48s-fixed-class-detector-lab-${"b".repeat(64)}`;
const endpointRoot = "/api/v1/laboratory/m48s/fixed-class-detector";
@@ -365,6 +485,8 @@ test("M4.8S timeline binds factory-KB4 camera points through its exact endpoint"
camera_point_window_seconds: 2,
camera_point_sample_limit: 20000,
world_state_delivery: "source-paced-latest-wins",
occupancy_provenance_delivery: "baseline-versus-additive-component-diff",
camera_obstacle_projection_delivery: "factory-kb4-actionable-added-corridor-bounds",
world_state_frame_count: 4481,
superseded_frame_count: 8,
local_surface_visualization: {
@@ -392,9 +514,14 @@ test("M4.8S timeline binds factory-KB4 camera points through its exact endpoint"
assert.equal(timeline.cameraPointWindowSeconds, 2);
assert.equal(timeline.worldStateFrameCount, 4481);
assert.equal(timeline.supersededFrameCount, 8);
assert.equal(
timeline.cameraObstacleProjectionDelivery,
"factory-kb4-actionable-added-corridor-bounds",
);
const chunk = await fetchM4ThreatTimelineChunk(replayResultId, 1, 1, {
endpointRoot,
cameraObstacleProjectionDelivery: timeline.cameraObstacleProjectionDelivery,
fetcher: async (input) => {
requested = String(input);
return new Response(JSON.stringify({
@@ -411,6 +538,30 @@ test("M4.8S timeline binds factory-KB4 camera points through its exact endpoint"
camera_projected_point_count: 1,
camera_projected_sample_count: 1,
camera_projection: "factory-kb4-exact",
metric_obstacles: [{
component_id: "temporal-1855-7",
state: "current",
motion: "stationary",
centroid_body_xyz_m: [2.4, 0.1, 0.3],
cell_centers_body_xyz_m: [[2.4, 0.1, 0.3]],
occupancy_source: "additive-low-step",
camera_projection: {
bbox_xyxy: [390.5, 280.25, 408.75, 318.5],
nearest_depth_m: 2.3,
projected_cell_count: 1,
projection: "factory-kb4-occupied-voxel-bounds",
authority: "visual-derived",
},
assessment: {
component_id: "temporal-1855-7",
decision: "threat",
corridor_intersection: "intersects",
relative_speed_mps: null,
closest_approach_m: 0.2,
ttc_seconds: null,
reason_codes: ["current-corridor-intersection"],
},
}],
camera_url: `${endpointRoot}/${replayResultId}/timeline/frames/1/camera`,
})],
authority: "replay-simulated",
@@ -418,10 +569,18 @@ test("M4.8S timeline binds factory-KB4 camera points through its exact endpoint"
},
});
assert.match(requested, new RegExp(`^${endpointRoot}/${replayResultId}/timeline/chunk`));
assert.match(
requested,
/obstacle_projection=factory-kb4-actionable-added-corridor-bounds/,
);
assert.equal(chunk.frames[0].worldStateAvailable, false);
assert.equal(chunk.frames[0].terminalOutcome, "superseded");
assert.deepEqual(chunk.frames[0].cameraProjectedPointsXyd[0], [100.5, 200.25, 3.75]);
assert.equal(chunk.frames[0].cameraProjection, "factory-kb4-exact");
assert.deepEqual(
chunk.frames[0].metricObstacles[0].cameraProjection.bboxXyxy,
[390.5, 280.25, 408.75, 318.5],
);
const overlay = await fetchM4ThreatCameraPointOverlay(replayResultId, 1, {
endpointRoot,
@@ -453,6 +612,114 @@ test("M4.8S timeline binds factory-KB4 camera points through its exact endpoint"
assert.equal(overlay.projection, "factory-kb4-causal-registered-accumulation");
});
test("M4.8R3 turns active low-step components into native fisheye obstacle boxes", () => {
const obstacle = {
componentId: "temporal-1855-7",
state: "current",
motion: "stationary",
centroidBodyXyzM: [2.4, 0.1, 0.3],
cellCentersBodyXyzM: [[2.4, 0.1, 0.3]],
occupancySource: "additive-low-step",
cameraProjection: {
bboxXyxy: [398, 298, 402, 302],
nearestDepthM: 2.3,
projectedCellCount: 1,
projection: "factory-kb4-occupied-voxel-bounds",
authority: "visual-derived",
},
assessment: {
componentId: "temporal-1855-7",
decision: "threat",
corridorIntersection: "intersects",
relativeSpeedMps: null,
closestApproachM: 0.2,
ttcSeconds: null,
reasonCodes: ["current-corridor-intersection"],
},
};
const boxes = buildM4StaticObstacleBoxes([
obstacle,
{ ...obstacle, componentId: "baseline", occupancySource: "baseline" },
{ ...obstacle, componentId: "held", state: "held" },
{
...obstacle,
componentId: "unknown",
assessment: {
...obstacle.assessment,
decision: "unknown",
corridorIntersection: "unknown",
},
},
{
...obstacle,
componentId: "clear",
assessment: {
...obstacle.assessment,
decision: "not-threat",
corridorIntersection: "clear",
},
},
], 800, 600);
assert.equal(boxes.length, 1);
assert.deepEqual(boxes[0].boxXyxy, [394, 294, 406, 306]);
assert.equal(boxes[0].label, "OBS #7 · 2,3 м");
assert.equal(boxes[0].tone, "danger");
assert.equal(boxes[0].dashed, false);
});
test("M4.8R3 keeps separate CURRENT threats and suppresses their spanning ROLLING box", () => {
const current = {
componentId: "temporal-left-1",
state: "current",
motion: "stationary",
centroidBodyXyzM: [3, 0, 0.3],
cellCentersBodyXyzM: [[3, 0, 0.3]],
occupancySource: "additive-low-step",
cameraProjection: {
bboxXyxy: [350, 260, 410, 310],
nearestDepthM: 3,
projectedCellCount: 2,
projection: "factory-kb4-occupied-voxel-bounds",
authority: "visual-derived",
},
assessment: {
componentId: "temporal-left-1",
decision: "threat",
corridorIntersection: "intersects",
relativeSpeedMps: null,
closestApproachM: 2.5,
ttcSeconds: null,
reasonCodes: ["current-corridor-intersection"],
},
};
const boxes = buildM4StaticObstacleBoxes([
current,
{
...current,
componentId: "temporal-right-2",
cameraProjection: {
...current.cameraProjection,
bboxXyxy: [405, 265, 445, 320],
},
},
{
...current,
componentId: "rolling-spanning",
state: "retained",
cameraProjection: {
...current.cameraProjection,
bboxXyxy: [340, 255, 450, 325],
},
},
], 800, 600);
assert.equal(boxes.length, 2);
assert.deepEqual(boxes.map((box) => box.label).sort(), [
"OBS #1 · 3 м",
"OBS #2 · 3 м",
]);
});
test("M4.6 local SLAM surface reprojects registered increments into the active body frame", () => {
const frames = [
timelineFrame(0, 10, {
@@ -603,6 +870,9 @@ test("M4.6 viewer keeps media and spatial panes on one playback clock", async ()
assert.match(visual, /label: "3D"/);
assert.match(visual, /label: "PLAN"/);
assert.match(visual, />\s*POINTS\s*</);
assert.match(visual, />\s*OBSTACLES\s*</);
assert.match(visual, /useState\(true\);[\s\S]*setShowStaticObstacles/);
assert.match(visual, /buildM4StaticObstacleBoxes/);
assert.match(visual, /pointCloudOverlay=/);
assert.match(visual, /mediaMode/);
assert.match(visual, /spatialMode/);
@@ -623,13 +893,22 @@ test("M4.6 viewer keeps media and spatial panes on one playback clock", async ()
assert.match(visualCss, /m4-replay-threat-visual__deck > \.nodedc-split-pane/);
assert.match(visualCss, /m4-replay-threat-visual__pane-toolbar\[data-pane-toolbar="media"\]/);
assert.match(visualCss, /m4-replay-threat-visual__pane-toolbar\[data-pane-toolbar="spatial"\]/);
assert.match(
visualCss,
/data-mode-controls="content"\]:has\([\s\S]*m4-replay-threat-visual__review-controls[\s\S]*data-pane-toolbar="media"\][^{]*\{[^}]*top:\s*3\.8rem/s,
);
assert.match(visualCss, /width: 33\.333333%/);
assert.match(visualCss, /flex-flow: column nowrap/);
assert.match(visualCss, /m4-replay-threat-visual__overlay > div/);
assert.match(visualCss, /grid-template-columns: minmax\(0, max-content\)/);
assert.match(visualCss, /width: max-content/);
assert.match(visualCss, /grid-template-columns: minmax\(0, 1fr\)/);
assert.match(visualCss, /width: min\(17\.5rem/);
assert.match(visualCss, /grid-auto-rows: 3\.8rem/);
assert.match(visualCss, /--m4-replay-threat-overlay-pane-width/);
assert.match(visualCss, /white-space: nowrap/);
assert.match(visualCss, /-webkit-line-clamp: 2/);
assert.match(visual, /classifiedCellCount/);
assert.match(visual, /lastAvailableClassifiedSpatialFrame/);
assert.match(visual, /current UNOBSERVED/);
assert.match(visualCss, /laboratory-metric-evidence-scene__legend/);
assert.match(visualCss, /bottom: auto/);
assert.match(videoScene, /<RecordedFmp4Player/);
@@ -641,7 +920,29 @@ test("M4.6 viewer keeps media and spatial panes on one playback clock", async ()
assert.match(metricScene, /OrbitControls/);
assert.match(visual, /LOCAL SLAM/);
assert.match(visual, /showLocalSurface/);
assert.match(visual, /pointCloudBodyXyzM=\{spatialFrame\.pointCloudBodyXyzM\}/);
assert.match(
visual,
/pointCloudBodyXyzM=\{displayedClassifiedSpatialFrame && replaceClassifiedPointCloud[\s\S]*\? classifiedPointsBody[\s\S]*: classifiedContextSpatialFrame\?\.pointCloudBodyXyzM \?\? \[\]\}/,
);
assert.match(
visual,
/const classifiedSpatialFrame = classifiedSpatialLayer\?\.frame\?\.sourceSequence === timelineFrame\.activeSequence[\s\S]*lastClassifiedSpatialFrameRef[\s\S]*const displayedClassifiedSpatialFrame = classifiedSpatialFrame\s*&&\s*classifiedSpatialFrame\.sampleAvailable !== false/,
);
assert.doesNotMatch(visual, /classifiedSpatialFrame\?\.sampleAvailable !== false/);
assert.match(visual, /timelineFrame\.availableFrames\.find/);
assert.match(visual, /localSurfaceBodyXyzM=\{localSurface\.pointsBodyXyzM\}/);
assert.match(visual, /showLocalSurface=\{showLocalSurface\}/);
assert.match(visual, /\{semantic \? \([\s\S]*>\s*SEMANTICS\s*<\/Button>/);
assert.match(visual, /current safety — все \{classifiedCellCount\.toLocaleString\("ru-RU"\)\} TGS-ячейки UNOBSERVED/);
assert.match(
visual,
/mapGravityLocalSensorToBodyGround[\s\S]*rotated\[2\] \+ nominalSensorHeightM/,
);
assert.match(
visual,
/zBoundsM: \[[\s\S]*minimumSensorRelativeZ \+ nominalSensorHeightM[\s\S]*maximumSensorRelativeZ \+ nominalSensorHeightM/,
);
assert.match(visual, /classifiedCells=\{classifiedCellsBody\}/);
assert.match(metricScene, /Локальная SLAM-поверхность/);
assert.match(visual, /showJumpToEnd=\{false\}/);
assert.doesNotMatch(visual, /Назад на 5 секунд/);
@@ -324,7 +324,7 @@ test("Polygon exposes one dataset surface and keeps legacy links compatible", ()
assert.equal(workspaceById("datasets").kind, "datasets");
assert.deepEqual(
workspacesForRoot("polygon").map(({ id }) => id),
["lab-archive"],
["lab-archive", "simulations"],
);
assert.equal(
workspacesForRoot("system").some(({ id }) => id === "polygon-run"),
@@ -173,6 +173,9 @@ test("recorded player keeps full-archive range fallback and uses bounded generat
assert.match(source, /pumpRecordedSegmentWindow/);
assert.match(source, /waitForRecordedVideoTarget/);
assert.match(source, /removeRecordedMediaRange/);
assert.match(source, /hasPresentedFrame/);
assert.match(source, /retainForwardFrame/);
assert.match(source, /candidateTarget\.sequence >= previousTarget\.sequence/);
assert.equal(recordedMediaDecodeStartSequence([1, 1491, 1501], 1500), 1491);
assert.deepEqual(
@@ -28,6 +28,8 @@ test("semantic evidence mask is GPU-colored, bounded, cancelled and object-conta
assert.match(source, /Math\.min\(width \/ mask\.width, height \/ mask\.height\)/);
assert.match(source, /decoded\.key !== expectedKey/);
assert.match(source, /mask\?\.key === expectedKey/);
assert.match(source, /lastReadyMaskRef/);
assert.match(source, /data-state=\{failure \? "error" : exactMask \? "ready" : renderMask \? "stale" : "loading"\}/);
assert.match(source, /recorded-evidence-semantic-mask-overlay__error/);
assert.match(source, /role="alert"/);
});
@@ -53,6 +55,12 @@ test("metric evidence keeps missing semantic assignments as context and exposes
assert.match(source, /classId === null \? undefined : colorsByClassId\.get\(classId\)/);
assert.match(source, /data-decision="semantic"/);
assert.match(source, /recordedEvidenceSemanticCssColor/);
assert.match(source, /DynamicDrawUsage/);
assert.match(source, /classifiedMeshesRef/);
assert.match(source, /classifiedPackedCells/);
assert.match(source, /updatePointPositions/);
assert.match(source, /renderer\.info\.render\.calls/);
assert.match(source, /data-decision="performance"/);
});
test("semantic point alignment follows the last qualified spatial increment", async () => {
@@ -0,0 +1,217 @@
import assert from "node:assert/strict";
import { readFile } from "node:fs/promises";
import { test } from "node:test";
const sourceRoot = new URL("../src/", import.meta.url);
async function read(relativePath) {
return readFile(new URL(relativePath, sourceRoot), "utf8");
}
test("simulation is a dedicated Polygon workspace with a bounded feature slice", async () => {
const [productModel, workspaceHub, workspace, catalog, styles] = await Promise.all([
read("productModel.ts"),
read("workspaces/Workspaces.tsx"),
read("workspaces/simulation/SimulationWorkspace.tsx"),
read("components/simulation/SimulationCatalog.tsx"),
read("styles.css"),
]);
assert.match(productModel, /id: "simulations"[\s\S]*root: "polygon"[\s\S]*kind: "simulations"/);
assert.match(workspaceHub, /case "simulations":[\s\S]*<SimulationWorkspace \/>/);
assert.match(catalog, /simulation-catalog__table/);
assert.match(workspace, /archivesFromDrop/);
assert.match(workspace, /uploadSimulationProjectSource/);
assert.match(catalog, /colSpan=\{3\}/);
assert.match(catalog, /Ожидает обработки/);
assert.match(catalog, /Прогресс \$\{roundedPercent\}% \|/);
assert.match(catalog, /Осталось примерно \$\{minutes\} мин/);
assert.match(catalog, /simulation-catalog__progress-track/);
assert.doesNotMatch(catalog, /disabled=\{ACTIVE_STATUSES\.has/);
assert.match(workspace, /<SimulationViewport[\s\S]*project=\{selected\}/);
assert.match(workspace, /<ConfirmationModal/);
assert.match(workspace, /if \(state === "building_streamed_sog"\) return "Сборка LOD"/);
assert.doesNotMatch(workspace, /\{selected\.provider\.state \?\? selected\.status\}/);
assert.match(styles, /styles\/simulation\.css/);
});
test("browser upload remains same-origin, resumable and token-free", async () => {
const [core, window, sourceFiles] = await Promise.all([
read("core/simulation/projects.ts"),
read("components/simulation/SimulationProjectWindow.tsx"),
read("core/simulation/sourceFiles.ts"),
]);
assert.match(core, /const API_ROOT = "\/api\/v1\/simulation-worlds\/projects"/);
assert.match(core, /method: "HEAD"/);
assert.match(core, /method: "PATCH"/);
assert.match(core, /"Upload-Offset"/);
assert.match(core, /estimatedSecondsRemaining/);
assert.match(core, /smoothedBytesPerSecond \* 0\.7 \+ currentBytesPerSecond \* 0\.3/);
assert.match(core, /estimateSimulationProcessing/);
assert.match(core, /jobCreatedAtUtc/);
assert.match(core, /stateStartedAtUtc/);
assert.match(core, /REFERENCE_STREAM_SECONDS = 2_317/);
assert.doesNotMatch(core, /Authorization|Bearer|18090|Worker 006/);
assert.match(window, /accept="\.zip,\.rar,\.7z"/);
assert.match(window, /webkitdirectory/);
assert.match(sourceFiles, /webkitGetAsEntry/);
assert.match(sourceFiles, /entry\?\.isDirectory/);
assert.match(sourceFiles, /const file = item\.getAsFile\(\)/);
assert.match(sourceFiles, /MAX_SIMULATION_SOURCE_BYTES = 16 \* 1024 \*\* 3/);
assert.match(sourceFiles, /item\.kind === "file"/);
assert.match(sourceFiles, /ровно одна сцена \.lcc или \.lcc2/);
assert.match(sourceFiles, /отдельные архивы ZIP, RAR или 7z/);
assert.doesNotMatch(window, /Загружаем источник/);
assert.match(window, /считаем время/);
});
test("failed simulation can restart from its retained Mission Core source", async () => {
const [core, workspace] = await Promise.all([
read("core/simulation/projects.ts"),
read("workspaces/simulation/SimulationWorkspace.tsx"),
]);
assert.match(core, /retrySimulationProject/);
assert.match(core, /\$\{API_ROOT\}\/\$\{encodeURIComponent\(projectId\)\}\/build/);
assert.match(workspace, /Повторить сборку/);
});
test("PlayCanvas owns the realtime scene graph without an iframe or React entity tree", async () => {
const [runtime, ugv, viewport, ugvSettings, projects, styles, packageDocument] = await Promise.all([
read("components/simulation/PlayCanvasRuntime.ts"),
read("components/simulation/SimulationUgvController.ts"),
read("components/simulation/SimulationViewport.tsx"),
read("components/simulation/SimulationUgvSettingsPanel.tsx"),
read("core/simulation/projects.ts"),
read("styles/simulation.css"),
readFile(new URL("../package.json", import.meta.url), "utf8"),
]);
assert.match(packageDocument, /"playcanvas": "2\.21\.4"/);
assert.doesNotMatch(packageDocument, /@playcanvas\/react/);
assert.match(runtime, /new Application\(canvas/);
assert.match(runtime, /setCanvasFillMode\(FILLMODE_NONE/);
assert.match(runtime, /setCanvasResolution\(RESOLUTION_AUTO\)/);
assert.match(runtime, /new Asset\([^,]+, "gsplat"/);
assert.match(runtime, /camera\.script\?\.create\(CameraControls/);
assert.match(runtime, /const HOME_POSITION = new Vec3\(0, 1, 0\)/);
assert.match(runtime, /const HOME_FOCUS = new Vec3\(1, 1, 0\)/);
assert.match(runtime, /maximum: \{[^}]*lodRangeMin: 0, lodRangeMax: 5, pixelRatio: 2, splatBudget: 4_000_000, targetFps: 60/);
assert.match(runtime, /app\.scene\.gsplat\.splatBudget = profile\.splatBudget/);
assert.match(runtime, /app\.autoRender = false/);
assert.match(runtime, /app\.on\("update", this\.updateFrame\)/);
assert.match(runtime, /if \(!cameraChanged && this\.controlMode === "free"\) return/);
assert.doesNotMatch(runtime, /app\.on\("frameupdate"/);
assert.match(runtime, /WEBGL_lose_context/);
assert.match(runtime, /selected\.horizontal[^\n]+frame\.mouse\[0\] \*= -1/);
assert.match(runtime, /selected\.vertical[^\n]+frame\.mouse\[1\] \*= -1/);
assert.match(runtime, /setCameraInversion/);
assert.match(runtime, /async setViewMode\([\s\S]*this\.viewMode = mode/);
assert.doesNotMatch(runtime.match(/async setViewMode\([\s\S]*?\n }/)?.[0] ?? "", /resetCameraInteraction/);
assert.match(runtime, /controller\.fire\("state"\)/);
assert.match(runtime, /state\.mouse\.fill\(0\)/);
assert.match(runtime, /new Asset\([\s\S]*"container"/);
assert.match(runtime, /instantiateModelEntity/);
assert.match(runtime, /applyWorldTransform/);
assert.match(runtime, /setLayerWorldTransform/);
assert.match(runtime, /playCanvasEulerTransform/);
assert.match(runtime, /setFromEulerAngles/);
assert.match(runtime, /DracoDecoderModule/);
assert.match(runtime, /draco_decoder_gltf\.wasm/);
assert.match(runtime, /ensureCollision/);
assert.match(runtime, /setControlMode/);
assert.match(runtime, /setUgvPreset/);
assert.match(runtime, /SimulationUgvController/);
assert.match(runtime, /for \(const model of this\.collisionVisuals\) model\.enabled = visible/);
assert.match(runtime, /instantiateModelEntity/);
assert.match(runtime, /this\.ugvController\?\.disable\(\)/);
assert.match(runtime, /this\.collisionMaterial\.blendType = combined \? BLEND_NORMAL : BLEND_NONE/);
assert.match(runtime, /private requestRender\(\): void/);
assert.match(runtime, /app\.root\.addChild/);
assert.match(runtime, /dispose\(\)/);
assert.doesNotMatch(`${runtime}\n${viewport}`, /iframe|<GSplat/);
assert.match(viewport, /Коллизии недоступны/);
assert.match(viewport, /Для этой сборки слой коллизий не создавался/);
assert.match(viewport, /<Select[\s\S]*Качество Gaussian-сцены/);
assert.match(viewport, /label="Режим управления"/);
assert.match(viewport, /label: "Свободно"/);
assert.match(viewport, /label: "UGV"/);
assert.match(viewport, /WASD\/стрелки · пробел — тормоз · R — домой/);
assert.match(viewport, /data-control-mode=\{controlMode\}/);
assert.match(viewport, /useState<SimulationQuality>\(project\.viewerSettings\.quality\)/);
assert.match(viewport, /runtimeRef\.current\?\.home\(\)/);
assert.match(viewport, /Настройки сцены/);
assert.match(viewport, /Гауссовый слой/);
assert.match(viewport, /Слой коллизий/);
assert.match(viewport, /Инверсия управления по горизонтали/);
assert.match(viewport, /Инверсия управления по вертикали/);
assert.match(viewport, /ROTATION_AXES/);
assert.match(viewport, /<GlassMaterialSurface/);
assert.match(viewport, /<TextField/);
assert.match(viewport, /nextDraft\.trim\(\) !== ""/);
assert.match(viewport, /saveSimulationViewerSettings/);
assert.match(viewport, /SimulationUgvSettingsPanel/);
assert.match(viewport, /runtime\.setUgvPreset\(settings\.ugv\)/);
assert.match(viewport, /onProjectChange\?\.\(saved\)/);
assert.match(viewport, /const worldManifestRevision = JSON\.stringify\(project\.worldManifest\)/);
assert.match(viewport, /\[project\.projectId, worldManifestRevision\]/);
assert.doesNotMatch(viewport, /\[project\.projectId, project\.worldManifest\]/);
assert.doesNotMatch(viewport, />PlayCanvas|PlayCanvas загружает|Streamed SOG/);
assert.match(ugv, /AMMO_MODULE_ROOT = "\/vendor\/playcanvas\/ammo\/2026-08-25"/);
assert.match(ugv, /new this\.ammo\.btRaycastVehicle/);
assert.match(ugv, /type: "mesh"/);
assert.match(ugv, /MeshoptSimplifier\.simplify/);
assert.match(ugv, /PHYSICS_PROXY_MAX_TRIANGLES = 240_000/);
assert.match(ugv, /createPhysicsProxyMesh/);
assert.match(ugv, /findSafeSpawnPosition/);
assert.match(ugv, /physics\.raycastFirst/);
assert.match(ugv, /runCleanup\("destroy static physics mesh", \(\) => mesh\.destroy\(\)\)/);
assert.match(ugv, /type: "static"/);
assert.match(ugv, /mass: this\.settings\.massKg/);
assert.match(ugv, /suspensionRestLength/);
assert.match(ugv, /requestedTurn = Number\(this\.isPressed\("KeyA", "ArrowLeft"\)\) - Number\(this\.isPressed\("KeyD", "ArrowRight"\)\)/);
assert.match(ugv, /leftCommand = clamp\(forwardCommand - turnCommand/);
assert.match(ugv, /rightCommand = clamp\(forwardCommand \+ turnCommand/);
assert.match(ugv, /this\.settings\.invertSteering/);
assert.match(ugv, /this\.settings\.maxSpeedMetersPerSecond/);
assert.match(ugv, /this\.settings\.maxTurnRateDegrees/);
assert.match(ugv, /desiredSpeed = forwardInput \* maxSpeed/);
assert.match(ugv, /maximumAcceleration = clamp\(1\.4 \+ maxSpeed \* 0\.35, 1\.8, 4\.2\)/);
assert.match(ugv, /SERVICE_BRAKE_DECELERATION_MPS2 = 1\.8/);
assert.match(ugv, /horizontalSpeed - deceleration \* Math\.max\(0, deltaSeconds\)/);
assert.match(ugv, /this\.vehicle\.setBrake\(0, index\)/);
assert.doesNotMatch(ugv, /massKg \* 3/);
assert.match(ugv, /pureTurn = !braking && forwardInput === 0 && turnInput !== 0/);
assert.match(ugv, /desiredYawRate = -turnInput \* maxTurnRate/);
assert.match(ugv, /this\.orbitYaw = \(this\.orbitYaw - deltaX \* 0\.006\)/);
assert.match(ugv, /CAMERA_RETURN_DELAY_SECONDS = 1\.2/);
assert.match(ugv, /CAMERA_RETURN_DURATION_SECONDS = 2/);
assert.match(ugv, /approachAngle\(this\.orbitYaw, rearOrbitYaw/);
assert.match(ugv, /this\.canvas\.addEventListener\("pointerdown", this\.onOrbitPointerDown\)/);
assert.match(ugv, /this\.canvas\.addEventListener\("wheel", this\.onOrbitWheel/);
assert.match(ugv, /vehicleGeometryChanged/);
assert.match(ugv, /removeAction\(this\.vehicle as NativeObject\)/);
assert.match(ugv, /runCleanup\("destroy static physics proxy", \(\) => entity\.destroy\(\)\)/);
assert.match(ugv, /runCleanup\("destroy vehicle entity"/);
assert.match(ugvSettings, /Физика UGV/);
assert.match(ugvSettings, /Дифференциальный привод/);
assert.match(ugvSettings, /Масса конструкции/);
assert.match(ugvSettings, /Общая высота/);
assert.match(ugvSettings, /Клиренс/);
assert.match(ugvSettings, /Скорость движения/);
assert.match(ugvSettings, /Скорость разворота/);
assert.match(ugvSettings, /exactValueBounds=\{SIMULATION_UGV_EXACT_VALUE_LIMITS\.maxSpeedMetersPerSecond\}/);
assert.match(projects, /maxSpeedMetersPerSecond: \{ min: 0, max: 1_000_000_000 \}/);
assert.match(ugvSettings, /Инверсия управления A\/D/);
assert.match(ugvSettings, /Сохранить пресет/);
assert.match(ugvSettings, /<RangeControl/);
assert.match(ugvSettings, /<Switch/);
assert.match(ugvSettings, /<TextField/);
assert.match(projects, /missioncore\.simulation-viewer-settings\/v3/);
assert.match(projects, /ugv: SimulationUgvPreset/);
assert.match(styles, /\.simulation-viewport__settings \{[\s\S]*grid-template-rows: auto minmax\(0, 1fr\);[\s\S]*overflow: clip;/);
assert.match(styles, /\.simulation-viewport__settings-scroll \{[\s\S]*overflow-y: auto;/);
assert.match(styles, /\.simulation-viewport__toolbar \{[\s\S]*position: sticky;[\s\S]*top: 0;/);
assert.match(styles, /canvas\.is-orbiting[\s\S]*cursor: grabbing/);
});
@@ -0,0 +1,182 @@
import assert from "node:assert/strict";
import { access, readFile } from "node:fs/promises";
import { after, before, test } from "node:test";
import { createServer } from "vite";
let server;
let fetchVegetationShadowResult;
before(async () => {
server = await createServer({
appType: "custom",
logLevel: "silent",
server: { middlewareMode: true },
});
({ fetchVegetationShadowResult } = await server.ssrLoadModule(
"/src/core/laboratory/vegetationShadow.ts",
));
});
after(async () => {
await server?.close();
});
const resultId = `lab-v1-vegetation-shadow-${"a".repeat(64)}`;
function candidate(candidateKey, vegetationIou) {
return {
loaded_model_name: candidateKey === "ddrnet" ? "ddrnet_39" : "pp_lite_t_seg",
checkpoint_sha256: (candidateKey === "ddrnet" ? "b" : "c").repeat(64),
validation_metrics: {
mean_iou_percent: 44.2,
published_mean_iou_percent: 46.53,
vegetation_mean_iou: vegetationIou,
},
validation_timing: {
latency_ms_p95: 22.4,
throughput_fps_from_mean_inference: 48.1,
},
shadow_timing: {
prewarm_latency_ms: 612.4,
latency_ms_p95: 21.8,
throughput_fps_from_mean_inference: 49.2,
},
resource: {
peak_reserved_vram_bytes: 2_000_000_000,
gpu_name: "NVIDIA GeForce RTX 4090",
},
};
}
function visualCase(sourceKind, index) {
const caseId = `case-${index}`;
const keys = sourceKind === "goose"
? ["source", "truth", "ddrnet", "ppliteseg", "ddrnet_error", "ppliteseg_error"]
: ["source", "ddrnet", "ppliteseg", "urban", "rural", "offroad"];
return {
case_id: caseId,
source_kind: sourceKind,
width: sourceKind === "goose" ? 512 : 800,
height: sourceKind === "goose" ? 512 : 600,
center_crop_xyxy: sourceKind === "goose" ? [0, 0, 512, 512] : [100, 0, 700, 600],
outside_crop_state: sourceKind === "goose" ? "not-applicable" : "undefined",
focus: sourceKind === "goose" ? {
class_name: "high_grass",
label_id: 51,
truth_pixels: 16384,
truth_fraction: 0.0625,
stratum_rank: index + 1,
} : null,
assets: Object.fromEntries(keys.map((key) => [key, {
path: `visual/${sourceKind}/${caseId}/${key}.png`,
sha256: "d".repeat(64),
}])),
};
}
function routeVideo() {
return {
worker_result_id: `lab-v1-ravnoves-video-ddrnet-${"e".repeat(64)}`,
m47_reference_graph_result_id: `m47-reference-graph-lab-${"f".repeat(64)}`,
base_m4_result_id: `m4-threat-replay-${"1".repeat(64)}`,
frame_count: 4489,
width: 800,
height: 600,
center_crop_xyxy: [100, 0, 700, 600],
outside_crop_state: "undefined",
sequence_binding: "sequence-0-to-masks/frame-000001.png",
taxonomy: {
schema_version: "missioncore.lab-v1-vegetation-taxonomy/v1",
classes: Array.from({ length: 64 }, (_, classId) => ({
class_id: classId,
label: classId === 0 ? "undefined" : `class-${classId}`,
color_rgb: [classId, classId, classId],
disposition: classId === 0 ? "undefined" : "prediction",
})),
},
aggregate_prediction_pixels: Array(64).fill(0),
mask_archive: {
path: "video/ddrnet-semantic-masks.zip",
sha256: "9".repeat(64),
byte_length: 1024,
},
};
}
test("vegetation LAB keeps autonomous assets and fail-closed authority", async () => {
let requestedUrl = "";
const result = await fetchVegetationShadowResult(resultId, {
fetcher: async (url) => {
requestedUrl = String(url);
return new Response(JSON.stringify({
schema_version: "missioncore.lab-v1-vegetation-shadow/v1",
result_id: resultId,
created_at_utc: "2026-08-27T20:00:00Z",
status: "visual-shadow-ready-policy-not-authorized",
ground_truth: false,
identity: { selected_candidate: "ddrnet" },
metrics: {
candidates: {
ddrnet: candidate("ddrnet", 0.64),
ppliteseg: candidate("ppliteseg", 0.61),
},
},
decision: {
selected_candidate: "ddrnet",
visual_shadow_ready: true,
mission_policy_ready_for_configuration: true,
navigation_accepted: false,
production_accepted: false,
},
limitations: ["shadow only"],
authority: {
commands_enabled: false,
navigation_or_safety_accepted: false,
actuation_accepted: false,
camera_semantics_can_clear_rigid_geometry: false,
},
catalogs: {
goose: Array.from({ length: 12 }, (_, index) => visualCase("goose", index)),
ravnoves: [],
},
route_video: routeVideo(),
access: "read-only",
}), { status: 200, headers: { "Content-Type": "application/json" } });
},
});
assert.equal(
requestedUrl,
`/api/v1/laboratory/vegetation-shadow/${resultId}`,
);
assert.equal(result.selectedCandidate, "ddrnet");
assert.equal(result.candidates[0].vegetationMeanIouPercent, 64);
assert.equal(result.routeCases.length, 0);
assert.equal(result.validationCases.length, 12);
assert.equal(result.routeVideo.frameCount, 4489);
assert.equal(result.routeVideo.taxonomy[0].disposition, "undefined");
assert.equal(result.validationCases[0].focus.className, "high_grass");
assert.match(result.validationCases[0].assets.ddrnet_error, /\/assets\/visual\/goose\//);
assert.deepEqual(result.authority, {
commandsEnabled: false,
navigationOrSafetyAccepted: false,
actuationAccepted: false,
cameraSemanticsCanClearRigidGeometry: false,
});
});
test("vegetation LAB reuses the admitted M4.8 and M4.7 instruments", async () => {
const resultSource = await readFile(
new URL("../src/workspaces/laboratory/VegetationShadowResult.tsx", import.meta.url),
"utf8",
);
assert.match(resultSource, /M48MaskComparisonVisual/);
assert.match(resultSource, /M4ReplayThreatVisual/);
assert.equal(resultSource.match(/<LaboratoryEvidence\b/g)?.length, 2);
assert.match(resultSource, /showReferenceMediaLayers=\{false\}/);
assert.doesNotMatch(resultSource, /VegetationRouteVisual|urban\/rural\/off-road presets/);
await assert.rejects(
access(new URL("../src/workspaces/laboratory/VegetationShadowVisual.tsx", import.meta.url)),
{ code: "ENOENT" },
);
});
@@ -0,0 +1,10 @@
{
"schema_version": "missioncore.laboratory-evidence-definition/v1",
"work_id": "lab-v1-vegetation-shadow",
"evidence": {
"runtime_relative_root": "lab-v1-vegetation/results",
"result_id_prefix": "lab-v1-vegetation-shadow",
"document_name": "result.json",
"schema_version": "missioncore.lab-v1-vegetation-shadow/v1"
}
}
@@ -0,0 +1,10 @@
{
"schema_version": "missioncore.laboratory-evidence-definition/v1",
"work_id": "m48-static-occupancy-qualification",
"evidence": {
"runtime_relative_root": "m48/static-occupancy-qualification-results",
"result_id_prefix": "m48-static-occupancy-qualification",
"document_name": "manifest.json",
"schema_version": "missioncore.m48-static-occupancy-qualification-result/v1"
}
}
@@ -0,0 +1,10 @@
{
"schema_version": "missioncore.laboratory-evidence-definition/v1",
"work_id": "m48r3-static-occupancy-shadow",
"evidence": {
"runtime_relative_root": "m48/static-occupancy-shadow-results",
"result_id_prefix": "m48r3-static-occupancy-shadow",
"document_name": "manifest.json",
"schema_version": "missioncore.m48r3-static-occupancy-shadow-result/v1"
}
}
@@ -0,0 +1,20 @@
{
"schema_version": "missioncore.laboratory-evidence-definition/v2",
"work_id": "m48t-risk-quality-temporal",
"evidence_lifecycle": [
{
"phase": "legacy-quality",
"runtime_relative_root": "m48t-risk-quality/lab-results",
"result_id_prefix": "m48t-risk-quality-temporal-lab",
"document_name": "manifest.json",
"schema_version": "missioncore.m48t-risk-quality-temporal-lab/v1"
},
{
"phase": "result",
"runtime_relative_root": "m48t-risk-quality/native-lab-results",
"result_id_prefix": "m48q-native-risk-quality-lab",
"document_name": "manifest.json",
"schema_version": "missioncore.m48q-native-risk-quality-lab/v1"
}
]
}
@@ -0,0 +1,10 @@
{
"schema_version": "missioncore.laboratory-evidence-definition/v1",
"work_id": "m49-tgs-fail-closed-evidence",
"evidence": {
"runtime_relative_root": "m49/tgs-fail-closed-results",
"result_id_prefix": "m49-tgs-fail-closed",
"document_name": "manifest.json",
"schema_version": "missioncore.m49-tgs-fail-closed-result/v1"
}
}
@@ -0,0 +1,10 @@
{
"schema_version": "missioncore.laboratory-evidence-definition/v1",
"work_id": "m49-tgs-full-shadow",
"evidence": {
"runtime_relative_root": "m49/tgs-full-shadow-results",
"result_id_prefix": "m49-tgs-full-shadow",
"document_name": "manifest.json",
"schema_version": "missioncore.m49-tgs-full-shadow-lab/v1"
}
}
+82
View File
@@ -1,6 +1,26 @@
{
"schema_version": "missioncore.laboratory-execution-registry/v1",
"definitions": [
{
"work_id": "m48-static-occupancy-qualification",
"lifecycle": "canonical",
"isolation": "core-adapter",
"adapter_id": "canonical.m48-static-occupancy-qualification/v1",
"input_roles": [
"repository_root",
"profile_path",
"m47_lab_root",
"graph_result_root",
"small_static_result_root"
],
"contracts": {
"source": "missioncore.m48-static-occupancy-source-set/v1",
"provider": "missioncore.m48-additive-low-step-occupancy/v1",
"graph": "missioncore.m48-static-occupancy-case/v1",
"run": "missioncore.laboratory-run/v1",
"evidence": "missioncore.m48-static-occupancy-qualification-result/v1"
}
},
{
"work_id": "m48-small-static-passage-regression",
"lifecycle": "canonical",
@@ -128,9 +148,71 @@
"run": "missioncore.laboratory-run/v1",
"evidence": "missioncore.m48s-fixed-class-detector-lab/v1"
}
},
{
"work_id": "m48t-risk-quality-temporal",
"lifecycle": "experimental",
"isolation": "bounded-adapter",
"adapter_id": "experimental.m48t-risk-quality-temporal/v1",
"input_roles": ["repository_root"],
"contracts": {
"source": "missioncore.m48t-sealed-quality-temporal-source-set/v1",
"provider": "missioncore.rf-detr-risk-quality-provider/v1",
"graph": "missioncore.m48t-risk-quality-temporal-lab-graph/v1",
"run": "missioncore.laboratory-run/v1",
"evidence": "missioncore.m48t-risk-quality-temporal-lab/v1"
}
},
{
"work_id": "m49-tgs-fail-closed-evidence",
"lifecycle": "experimental",
"isolation": "bounded-adapter",
"adapter_id": "experimental.m49-tgs-fail-closed-evidence/v1",
"input_roles": ["repository_root"],
"contracts": {
"source": "missioncore.m49-tgs-worker-evidence/v1",
"provider": "missioncore.travel-tgs-ground-segmentation/v1",
"graph": "missioncore.m49-fail-closed-costmap-evidence/v1",
"run": "missioncore.laboratory-run/v1",
"evidence": "missioncore.m49-tgs-fail-closed-result/v1"
}
},
{
"work_id": "m49-tgs-full-shadow",
"lifecycle": "experimental",
"isolation": "bounded-adapter",
"adapter_id": "experimental.m49-tgs-full-shadow/v1",
"input_roles": ["repository_root"],
"contracts": {
"source": "missioncore.m49-tgs-full-shadow-result/v1",
"provider": "missioncore.travel-tgs-ground-segmentation/v1",
"graph": "missioncore.m49-tgs-full-source-paced-shadow/v1",
"run": "missioncore.laboratory-run/v1",
"evidence": "missioncore.m49-tgs-full-shadow-lab/v1"
}
},
{
"work_id": "lab-v1-vegetation-shadow",
"lifecycle": "experimental",
"isolation": "bounded-adapter",
"adapter_id": "experimental.lab-v1-vegetation-shadow/v1",
"input_roles": [
"ddrnet_goose_root",
"ppliteseg_goose_root",
"ddrnet_ravnoves_root",
"ppliteseg_ravnoves_root"
],
"contracts": {
"source": "missioncore.goose-ravnoves-vegetation-source-set/v1",
"provider": "missioncore.goose-fine64-ready-weight-provider/v1",
"graph": "missioncore.vegetation-mission-policy-shadow-graph/v1",
"run": "missioncore.laboratory-run/v1",
"evidence": "missioncore.lab-v1-vegetation-shadow/v1"
}
}
],
"legacy_work_ids": [
"m48r3-static-occupancy-shadow",
"m47-reference-graph-shadow",
"e31-source-binding",
"e32-track-geometry",
+36 -1
View File
@@ -1,6 +1,6 @@
{
"schema_version": "missioncore.laboratory-value-review-registry/v1",
"reviewed_at_utc": "2026-08-25T11:06:28Z",
"reviewed_at_utc": "2026-08-27T20:59:10Z",
"entries": [
{
"catalog_id": "e28-local-surface",
@@ -247,12 +247,47 @@
"lifecycle": "current",
"visual_evidence": "available"
},
{
"catalog_id": "m48-static-occupancy-qualification",
"evidence_id": "m48-static-occupancy-qualification-568024554cff011332ff19ca4739f70555a6232c0607dec2a71be6db408ea69a",
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@@ -0,0 +1,108 @@
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@@ -0,0 +1,84 @@
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@@ -0,0 +1,56 @@
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@@ -0,0 +1,95 @@
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@@ -0,0 +1,58 @@
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@@ -0,0 +1,80 @@
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@@ -0,0 +1,95 @@
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@@ -0,0 +1,75 @@
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@@ -0,0 +1,50 @@
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@@ -0,0 +1,59 @@
{
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@@ -0,0 +1,107 @@
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"far_field_cell_size_m": 0.45,
"paused_active_frame_full_resolution_available": true
},
"acceptance_budget": {
"main_thread_frame_prepare_p95_ms_max": 10.0,
"webgl_render_submit_p95_ms_target": 16.7,
"webgl_render_submit_p95_ms_max": 33.3,
"evidence_to_visible_p95_ms_max": 100.0,
"incremental_resident_memory_mib_max": 256.0,
"post_warmup_memory_growth_mib_max": 32.0,
"long_task_over_50ms_count_max": 0,
"webgl_context_loss_count_max": 0,
"worker_unavailable_open_failure_count_max": 0,
"worker_request_count_during_lab_open_max": 0,
"worker_request_count_during_lab_build_max": 0
}
},
"authority": {
"commands_enabled": false,
"navigation_accepted": false,
"safety_accepted": false,
"actuation_accepted": false,
"physical_test_accepted": false
}
}
@@ -0,0 +1,69 @@
{
"schema_version": "missioncore.m49-tgs-fail-closed-evidence-profile/v1",
"profile_id": "m49-ravnoves00-tgs-fail-closed-evidence/v1",
"source": {
"source_id": "RAVNOVES00",
"session_id": "20260720T065719Z_viewer_live",
"source_pack_id": "e10-lidar-pack-576c994a6c814e2592dd6240ace3902a5db94843312c759a73ba0c9166157d2b",
"source_pack_sha256": "0685d24219d8236caf8b7f1685e93f6d6b59e7fd015a768d88a92bbe8b154944",
"travel_revision": "95dc2fbd66a343efd9060c45a5711b6307a950a4",
"compatibility_decision_sha256": "ff0b27f469cccad258c53ae07cb04ad00e696d82b32021c4f1f38ba7fa39d66a",
"input_coordinate_frame": "map-gravity-local-translation-only"
},
"anchors": [171, 306, 368, 402, 450, 509, 525, 744, 1122, 1856],
"tgs": {
"max_range_m": 80.0,
"min_range_m": 1.0,
"resolution_m": 8.0,
"num_iterations": 3,
"num_lowest_representative_points": 5,
"minimum_points": 10,
"seed_threshold_m": 0.5,
"distance_threshold_m": 0.125,
"outlier_threshold_m": 0.3,
"normal_threshold": 0.94,
"weight_threshold": 200.0,
"lcc_normal_similarity": 0.03,
"lcc_planar_distance_m": 0.1,
"obstacle_height_m": 1.0,
"refine_mode": true
},
"profiles": {
"current_increment": {
"role": "diagnostic-current-evidence"
},
"causal_rolling_1s": {
"role": "primary-local-evidence",
"history_seconds": 1.0,
"local_radius_m": 12.0
}
},
"costmap": {
"coordinate_frame": "map-gravity-local",
"cell_size_m": 0.45,
"radius_m": 12.0,
"state_priority": [
"NONGROUND_OCCUPIED",
"UNKNOWN_REJECTED",
"GROUND_SUPPORT",
"UNOBSERVED"
]
},
"state_codes": {
"UNOBSERVED": 0,
"GROUND_SUPPORT": 1,
"NONGROUND_OCCUPIED": 2,
"UNKNOWN_REJECTED": 3
},
"invariants": {
"all_eligible_input_points_accounted": true,
"aos_allowed": false,
"lidar_orientation_applied_to_tgs_input": false,
"map_gravity_axis_preserved": true,
"missing_support_means_free": false,
"unobserved_cells_are_emitted": true,
"camera_projection_is_authoritative": false,
"gpu_allowed": false,
"navigation_or_actuation_allowed": false
}
}
@@ -0,0 +1,77 @@
{
"schema_version": "missioncore.m49-tgs-full-shadow-profile/v1",
"profile_id": "m49-ravnoves00-tgs-full-shadow/v1",
"source": {
"source_id": "RAVNOVES00",
"session_id": "20260720T065719Z_viewer_live",
"source_pack_id": "e10-lidar-pack-576c994a6c814e2592dd6240ace3902a5db94843312c759a73ba0c9166157d2b",
"source_pack_sha256": "0685d24219d8236caf8b7f1685e93f6d6b59e7fd015a768d88a92bbe8b154944",
"travel_revision": "95dc2fbd66a343efd9060c45a5711b6307a950a4",
"input_coordinate_frame": "map-gravity-local-translation-only",
"expected_timeline_frames": 4489,
"expected_available_lidar_frames": 3928
},
"tgs": {
"max_range_m": 80.0,
"min_range_m": 1.0,
"resolution_m": 8.0,
"num_iterations": 3,
"num_lowest_representative_points": 5,
"minimum_points": 10,
"seed_threshold_m": 0.5,
"distance_threshold_m": 0.125,
"outlier_threshold_m": 0.3,
"normal_threshold": 0.94,
"weight_threshold": 200.0,
"lcc_normal_similarity": 0.03,
"lcc_planar_distance_m": 0.1,
"obstacle_height_m": 1.0,
"refine_mode": true
},
"profile": {
"id": "causal_rolling_1s",
"history_seconds": 1.0,
"local_radius_m": 12.0,
"missing_lidar_policy": "all-cells-unobserved"
},
"costmap": {
"coordinate_frame": "map-gravity-local",
"cell_size_m": 0.45,
"radius_m": 12.0,
"state_priority": [
"NONGROUND_OCCUPIED",
"UNKNOWN_REJECTED",
"GROUND_SUPPORT",
"UNOBSERVED"
]
},
"state_codes": {
"UNOBSERVED": 0,
"GROUND_SUPPORT": 1,
"NONGROUND_OCCUPIED": 2,
"UNKNOWN_REJECTED": 3
},
"acceptance": {
"recorded_source_rate_hz": 10.0,
"minimum_effective_timeline_fps": 10.0,
"candidate_stage_p95_ms_max": 25.0,
"candidate_stage_p99_ms_max": 50.0,
"completion_age_p99_ms_max": 100.0,
"capacity_drop_count_max": 0,
"unaccounted_available_frame_count_max": 0,
"unaccounted_eligible_point_count_max": 0
},
"invariants": {
"all_eligible_input_points_accounted": true,
"aos_allowed": false,
"lidar_orientation_applied_to_tgs_input": false,
"map_gravity_axis_preserved": true,
"missing_support_means_free": false,
"missing_lidar_means_unobserved": true,
"unobserved_cells_are_emitted": true,
"future_frames_used": false,
"camera_projection_is_authoritative": false,
"gpu_allowed": false,
"navigation_or_actuation_allowed": false
}
}
@@ -0,0 +1,73 @@
{
"schema_version": "missioncore.m49-tgs-integrated-graph-shadow-profile/v1",
"profile_id": "m49-ravnoves00-tgs-native-risk-integrated-shadow/v1",
"source": {
"source_id": "RAVNOVES00",
"expected_timeline_frames": 4489,
"expected_available_lidar_frames": 3928,
"source_pack_sha256": "0685d24219d8236caf8b7f1685e93f6d6b59e7fd015a768d88a92bbe8b154944",
"requested_source_rate_hz": 12.0,
"shared_start_barrier": true
},
"stages": {
"reference_graph": {
"graph_config": "m48n-rf-detr-native-reference-graph-shadow-v0.json",
"graph_config_sha256": "1db6f6fa0561d819505a5e4f62fe256dab6fe4d9da6b4f1a9a5073bfcf772c90",
"detector_profile": "rf-detr-large-native-kb4-risk-shadow-v0.json",
"detector_profile_sha256": "dbf4da5dbad6c3c22b1280b46ffcad81719bd183c81c263a4859847d829019b6",
"detector_provider_id": "triton-rf-detr-large-coco-native-kb4-risk-fp16-shadow/v0",
"single_inference_pass": true
},
"tgs": {
"profile": "m49-tgs-full-shadow-v1.json",
"profile_sha256": "c2e07010aaee78259d36c057962d6bfb885349251ff7356d867e5813e632881c",
"candidate_id": "travel-tgs-only-gravity-aligned",
"linked_accepted_result_id": "m49-tgs-full-shadow-ef98de7db7596d48e8c8c0549ce68e6704ee03e87c8c4bcf1e3e748b7ccb032e",
"aos_allowed": false,
"gpu_allowed": false,
"states_remain_separate": true
}
},
"acceptance": {
"minimum_delivery_ratio": 1.0,
"reference_world_state_fps": 11.79902,
"maximum_world_state_fps_regression_fraction": 0.05,
"minimum_effective_world_state_fps": 11.209069,
"maximum_world_state_completion_p95_ms": 125.0,
"candidate_stage_p95_ms_max": 25.0,
"candidate_stage_p99_ms_max": 50.0,
"combined_output_age_p99_ms_max": 125.0,
"capacity_drop_count_max": 0,
"unaccounted_frame_count_max": 0
},
"telemetry": {
"sample_interval_seconds": 1.0,
"required_products": [
"graph_pipeline_timing",
"graph_queue_high_watermarks",
"tgs_stage_timing",
"host_container_cpu_memory",
"gpu_utilization_memory_power_temperature"
]
},
"invariants": {
"native_fisheye_raster_unchanged": true,
"camera_rectification_allowed": false,
"camera_resize_allowed": false,
"tgs_candidate_parameters_unchanged": true,
"tgs_modifies_reference_graph_state": false,
"missing_lidar_means_unobserved": true,
"future_frames_used": false,
"low_step_used": false,
"gauss_or_playcanvas_in_scope": false
},
"authority": {
"visual_quality_accepted": false,
"traversability_accepted": false,
"physical_free_space_accepted": false,
"commands_enabled": false,
"actuation_allowed": false,
"navigation_or_safety_accepted": false,
"production_accepted": false
}
}
@@ -0,0 +1,56 @@
{
"schema_version": "missioncore.m49-travel-ravnoves-compatibility/v1",
"profile_id": "m49-travel-ravnoves-compatibility/v1",
"candidate": {
"id": "travel",
"revision": "95dc2fbd66a343efd9060c45a5711b6307a950a4",
"worker_image_id": "sha256:7b412020f4d8392d1d1ed1b33beadc44140f0ea8f781e62dd69796042334300f",
"upstream_profile": "kitti-64x4500"
},
"source": {
"source_id": "RAVNOVES00",
"session_id": "20260720T065719Z_viewer_live",
"representation": "registered-map-increment-v1",
"source_pack_id": "e10-lidar-pack-576c994a6c814e2592dd6240ace3902a5db94843312c759a73ba0c9166157d2b",
"source_pack_sha256": "0685d24219d8236caf8b7f1685e93f6d6b59e7fd015a768d88a92bbe8b154944",
"intensity_available": false,
"ring_available": false,
"per_point_time_available": false,
"native_ray_model_available": false
},
"anchors": [171, 306, 368, 402, 450, 509, 525, 744, 1122, 1856],
"input_profiles": [
{
"id": "current_increment",
"description": "Exact current registered map increment transformed into the current lidar frame.",
"history_seconds": 0.0,
"local_radius_m": null,
"travel_min_range_m": 1.0,
"travel_max_range_m": 80.0
},
{
"id": "causal_rolling_1s",
"description": "Current and past registered increments from one second, bounded by the accepted local-map radius.",
"history_seconds": 1.0,
"local_radius_m": 12.0,
"travel_min_range_m": 1.0,
"travel_max_range_m": 80.0
}
],
"order_variants": ["source", "reversed"],
"compatibility_acceptance": {
"ground_and_nonground_account_for_all_in_range_input_points": true,
"minimum_partition_multiset_jaccard": 0.99,
"minimum_labeled_multiset_jaccard": 0.99,
"all_outputs_must_be_finite": true
},
"invariants": {
"future_frames_allowed": false,
"missing_support_means_free": false,
"rolling_support_can_clear_space": false,
"zero_filled_intensity_has_semantic_authority": false,
"camera_resize_or_rectification_allowed": false,
"gpu_allowed": false,
"navigation_or_actuation_allowed": false
}
}
@@ -0,0 +1,73 @@
{
"schema_version": "missioncore.traversability-candidate-manifest/v1",
"decision_document": "docs/23_TRAVERSABILITY_AND_STATIC_OBSTACLE_STACK_DECISION.md",
"frozen_utc": "2026-08-26T13:53:55Z",
"source_contract": {
"source_id": "RAVNOVES00",
"expected_timeline_frames": 4489,
"input_representation": "registered-vendor-map-increment-plus-causal-local-support/v1",
"future_frames_allowed": false,
"missing_support_means_free": false
},
"candidates": [
{
"sequence": 1,
"candidate_id": "gseg3d-ground-consistency",
"role": "primary",
"components": [
{
"repository": "https://github.com/dfki-ric/ground_segmentation.git",
"revision": "116f510485ea5b4707e2b476958d34a5a067f647",
"observed_ref": "refs/heads/master",
"license": "BSD-3-Clause"
},
{
"repository": "https://github.com/dfki-ric/ground_segmentation_ros2.git",
"revision": "5c5ba6f5ca0d682db2d59b2ad2f6a317ee938b95",
"observed_ref": "refs/heads/master",
"license": "BSD-3-Clause"
},
{
"repository": "https://github.com/dfki-ric/nav2_ground_consistency_costmap_plugin.git",
"revision": "41cec620efba6c370dccfc59a6ec1134775ff48a",
"observed_ref": "refs/heads/main",
"license": "BSD-3-Clause"
}
]
},
{
"sequence": 2,
"candidate_id": "travel",
"role": "class-free-challenger",
"components": [
{
"repository": "https://github.com/url-kaist/TRAVEL.git",
"revision": "95dc2fbd66a343efd9060c45a5711b6307a950a4",
"observed_ref": "refs/heads/main",
"license": "GPL-3.0"
}
]
},
{
"sequence": 3,
"candidate_id": "isaac-ros-nvblox",
"role": "separate-gpu-occupancy-esdf-probe",
"components": [
{
"repository": "https://github.com/NVIDIA-ISAAC-ROS/isaac_ros_nvblox.git",
"revision": "ef47346399c71a4342c03bdbec2136ec735da4b8",
"observed_ref": "refs/tags/v4.6-0",
"license": "Apache-2.0"
}
]
}
],
"execution_policy": {
"heavy_candidates_run_sequentially": true,
"allow_parallel_gauss_compute": false,
"allow_source_mutation": false,
"allow_navigation_or_actuation": false,
"allow_camera_resize_or_rectification": false,
"allow_new_semantic_model": false
}
}
@@ -0,0 +1,136 @@
{
"schema_version": "missioncore.rf-detr-native-risk-shadow-profile/v0",
"profile_id": "rf-detr-large-coco-native-kb4-uint8-trt11-fp16-risk-shadow/v0",
"provider_id": "triton-rf-detr-large-coco-native-kb4-risk-fp16-shadow/v0",
"model": {
"model_id": "rf_detr_large_native_kb4",
"model_version": 1,
"upstream_version": "1.9.4",
"upstream_revision": "9b009fa928d6218320439803d1da01869a85c072",
"checkpoint_sha256": "0f4e20e19a99c0f8a62b5685f57f6c8b5c371c59081feda6752a0561a79ccf38",
"native_core_onnx_sha256": "62e549748a1d17646b90ad06d3ac8a1b79595b7e9270cac4564418f023079176",
"strongly_typed_fp16_onnx_sha256": "00b29fa2ff3d5fca730ebf3b8c33b10e9d690cc97bbbbfa5563d6e0abf210999",
"fused_uint8_onnx_sha256": "acdd01623a00d100331473c0a99eab1e5adf33117cbab900c8ae078edd4aa346",
"worker_006_rtx4090_tensorrt_11_engine_sha256": "b8a40b3580edff001ec9680de68707242294ff590ab296000fae371f1083f695",
"input": {
"name": "raw_kb4_bgr",
"datatype": "UINT8",
"shape": [1, 600, 800, 3],
"bytes_per_frame": 1440000
},
"outputs": [
{"name": "dets", "datatype": "FP16", "shape": [1, 300, 4]},
{"name": "labels", "datatype": "FP16", "shape": [1, 300, 91]}
]
},
"preprocessing": {
"execution": "single-fused-tensorrt-gpu-graph",
"source_raster": [800, 600],
"source_color": "BGR",
"model_canvas": [800, 608],
"model_color": "RGB",
"valid_fov_mask_sha256": "a40cee06b7c6f69b6a09a11563dcfd237f3de833b1ccd31459e66692e528ba63",
"valid_fov_fill_value": 114,
"padding_tblr": [0, 8, 0, 0],
"normalization_mean": [0.485, 0.456, 0.406],
"normalization_std": [0.229, 0.224, 0.225],
"resize": false,
"crop": false,
"rectification": false,
"warp": false,
"geometric_resampling": false
},
"emission": {
"single_inference_per_source_frame": true,
"minimum_score": 0.25,
"maximum_topk_query_class_pairs": 300,
"behavior_relevant_classes": [
"person",
"bicycle",
"car",
"motorcycle",
"bus",
"truck",
"bird",
"cat",
"dog",
"horse",
"sheep",
"cow",
"elephant",
"bear",
"zebra",
"giraffe",
"skateboard"
],
"geometry_owns_static_occupancy": true,
"unlisted_semantic_classes_emitted": false,
"minimum_box_area_pixels": 64,
"maximum_box_area_fraction": 0.5,
"minimum_valid_fov_fraction": 0.5,
"require_center_inside_valid_fov": true
},
"qualification": {
"native_pytorch_tensorrt_parity": {
"report_identity_sha256": "215145fed04b43670a71594a7ea6d8f2a676f2ee781eb1d0bfc05bb3ecdbf17c",
"passed": true,
"risk_detection_precision": 0.988700565,
"risk_detection_recall": 0.983146067,
"matched_mean_iou": 0.988242066
},
"full_ravnoves00_native_vs_legacy_704": {
"report_identity_sha256": "729bf02b5b52b22d347b3c960f3ac01539ebc76569273bd85560fed8d7b7616b",
"frame_count": 4489,
"native_total_mean_ms": 12.334212,
"native_total_p95_ms": 19.730654,
"legacy_704_total_mean_ms": 33.995721,
"legacy_704_total_p95_ms": 47.432686,
"transport_bytes_reduction_fraction": 0.757877066,
"native_detection_count": 48583,
"legacy_704_detection_count": 51691,
"legacy_box_agreement_recall_iou_at_least_0_5": 0.766593798,
"legacy_box_agreement_gate_passed": false,
"interpretation": "diagnostic-only because legacy 704 geometrically stretches the raw 4:3 raster"
},
"full_ravnoves00_integrated_reference_graph": {
"result_file_sha256": "c5c3a831b1d1c3271161c91fa5c5c40533eb663ca288ed0220334a147aed6e15",
"frame_evidence_sha256": "b245af969600670d0975e89cae02b44206e3f1328eff48d5b4639b1b2ab57346",
"frame_count": 4489,
"requested_source_rate_hz": 12.0,
"effective_world_state_fps": 11.84338,
"delivery_ratio": 1.0,
"world_state_completion_mean_ms": 30.524773,
"world_state_completion_p95_ms": 47.940779,
"detector_preprocess_mean_ms": 0.015026,
"detector_total_mean_ms": 12.306091,
"detector_total_p95_ms": 21.19895,
"gpu_utilization_mean_percent": 46.005362,
"gpu_utilization_p95_percent": 53.0,
"gpu_memory_used_maximum_mib": 9718.0,
"zero_failed_stale_rejected_or_unavailable": true,
"integrated_runtime_gate_passed": true,
"operating_target_gate_passed": true,
"independent_quality_evaluated": false,
"worker_id": "worker-006",
"remote_result_path": "D:\\NDC_MISSIONCORE\\runtime\\results\\m48n-native-reference-graph-shadow\\ravnoves00-full-12fps-v0\\result.json"
}
},
"queue": {
"policy": "bounded-latest-wins",
"capacity": 2
},
"status": {
"native_tensor_parity_passed": true,
"full_ravnoves00_runtime_gate_passed": true,
"legacy_704_box_agreement_gate_passed": false,
"integrated_world_state_gate_passed": true,
"production_accepted": false
},
"authority": {
"ground_truth": false,
"candidate_accepted": false,
"commands_enabled": false,
"actuation_allowed": false,
"navigation_or_safety_accepted": false
}
}
@@ -912,6 +912,17 @@ authority.
Exit: local collision-space quality and deadline gates pass in replay and
shadow. This still does not authorize control.
M4.8R2 now supplies the bounded pre-shadow qualification for the first item.
On eleven operator-assisted static passage anchors, the accepted current/rolling
graph covers `6/11`, while the additive sealed low-step signal covers `10/11`;
the critical `0–8 m` subset is `9/9`, four canonical engineering anchors remain
matched and false-free count is zero. The item remains unchecked because this
is not independent truth and the candidate is not yet part of the Worker
pipeline. Its next gate is a full `4,489`-frame occupied-only Worker 006 shadow
with FPS, latency, occupancy growth, component-count and capacity-drop bounds.
Dynamic decay, Nav2 publication and planner-authoritative free space remain
separate later work.
### L6 — alternative odometry/mapping
This stage starts only when a source supplies unregistered sensor scans. Add
@@ -179,6 +179,13 @@ only on the annotated frame unless a separately evidenced and reviewable
tracking result exists; ordinary model proposals and graph layers continue on
their own full recorded timeline.
M4.8R2 is the canonical static-occupancy example of this rule. Its report and
eleven typed anchors bind to the accepted M4.7 LAB identity, use the same
`VIDEO/CAMERA/3D/PLAN/SEMANTICS` timeline and add no renderer or transport. A
qualified anchor means the additive occupied-only candidate has LiDAR support
inside that exact reviewed camera extent; it does not turn the extent into a 3D
collider or grant clearance, free-space, navigation or safety authority.
A third perception instrument is a product-surface change. It requires explicit
product-owner agreement before implementation and cannot be introduced by a LAB
adapter, result component or experiment configuration.
+124
View File
@@ -0,0 +1,124 @@
# Simulation Worlds — product-surface brief
Status: accepted for the first working vertical slice on 2026-08-26; visual/physical stage boundary
revised on 2026-08-27.
## Job story
When an operator has a computed XGRIDS export, they need to create a named simulation project from
one LCC/LCC2 folder or one ZIP/RAR/7z archive, observe the real Worker 006 build state, and open the
result as an interactive PlayCanvas scene. The scene is a future simulation runtime, not a terminal
Gaussian viewer: vehicles, scripts, sensors, physics and debug layers must be able to join the same
`pc.Application` later without replacing the product surface.
## Placement decision
The explicit product decision is `Тестировочный контур → Симуляции`, as a sibling of
`Лабораторные контуры`.
Alternatives considered:
1. Extend `Лабораторные контуры`. Rejected because that surface owns reproducible experiment
evidence and selectors, while a simulation world has its own project, upload, build and deletion
lifecycle.
2. Add a dedicated workspace under `Тестировочный контур`. Selected because it preserves the Lab
root while allowing table-first catalog and scene-first runtime compositions.
3. Place the feature under `Система`. Rejected because Worker/provider health is a system concern,
but creating and operating worlds is an operator task.
The workspace is a real `productModel` entry. It is not an internal route, iframe or generic
capability placeholder.
## Composition and component ownership
The catalog is table-first: project identity, source kind, byte size, splat count when actually
available, build status, updated time, edit and delete. A selected ready project switches to a
scene-first composition with the PlayCanvas canvas and bounded runtime controls.
Canonical Design Guideline entities are reused for buttons, icon buttons, status badges, fields,
selects, segmented controls, confirmation, window, activity and glass surfaces. The semantic
project table, upload-source target, progress row and PlayCanvas stage are feature-owned renderers;
they are not introduced as parallel generic UI primitives.
## State and ownership boundaries
```text
React workspace
├─ project catalog and modal state
├─ same-origin resumable upload
└─ selected immutable WorldManifest
└─ PlayCanvasRuntime
└─ pc.Application / realtime entity graph
Mission Core backend
├─ durable project metadata and source staging
├─ provider orchestration and artifact import
└─ same-origin immutable artifact delivery
DC Gaussian Pipeline
├─ TUS bundle or archive admission
├─ secure ZIP/RAR/7z normalization
├─ native Vulkan SplatTransform visual build on Worker 006
└─ optional Mesh_Files/*.ply source-collision path
├─ conservative small-hole repair and topology audit
└─ mandatory Draco, digest-bound publication
```
The browser never receives the Worker token. Mission Core does not embed archive-format behavior
in its product domain. The portable pipeline normalizes archives into the same immutable LCC/LCC2
bundle contract used by folder uploads.
## Runtime decision
Mission Core pins the direct `playcanvas` package. `PlayCanvasRuntime` owns one `pc.Application`,
camera controls, GSplat asset lifecycle and later physical/debug entities. React owns no per-frame
entity state. A new world is data and does not require a new frontend build.
Worker 006 runs the portable API in its own read-only Docker composition and delegates only the
SplatTransform GPU command through a confined filesystem spool to the pinned native Vulkan runtime
on the RTX 4090. It does not install into or share the Python, CUDA, Triton or computer-vision
environments on the host.
Project processing never generates collision geometry from Gaussian data by default. When the
normalized source contains exactly one PLY below `Mesh_Files`, the same queued build automatically
selects the provider's `source` collision profile. The original indexed mesh is retained; only
strictly admitted small internal boundary loops on approximately planar Z-up surfaces receive new
triangles. Vertices and existing faces are never moved, welded, smoothed, simplified or remeshed.
The derived GLB then passes the mandatory Draco publication gate and carries a separate repair
report. A source with no admitted PLY remains visual-only and still reaches `ready` normally.
The conservative repair rejects outer borders, branched boundaries, large or non-planar loops,
vertical openings, mixed orientation and failed/self-intersecting triangulations. Ambiguous holes
remain open and are counted in the report instead of being silently capped. Explicit mesh
generation from Gaussian data remains a later experiment, not a fallback in this ingestion path.
Visual and collision layers retain independent X/Y/Z correction settings, while PlayCanvas world,
camera, navigation and future physics stay in the canonical Y-up coordinate system. Quality, both
layer transforms and camera-axis inversion are persisted atomically in each project's metadata.
Primary implementation references:
- [PlayCanvas Engine](https://github.com/playcanvas/engine)
- [GSplatComponent API](https://api.playcanvas.com/engine/classes/GSplatComponent.html)
- [Streamed SOG runtime](https://developer.playcanvas.com/user-manual/gaussian-splatting/building/lod-streaming/)
- [SplatTransform](https://developer.playcanvas.com/user-manual/splat-transform/)
- [SplatTransform Docker](https://developer.playcanvas.com/user-manual/splat-transform/docker/)
- [SplatTransform collision](https://developer.playcanvas.com/user-manual/splat-transform/collision/)
## First-slice acceptance
- archive or folder selection does not depend on the parent folder name;
- folder input contains exactly one `.lcc` or `.lcc2` descriptor;
- ZIP, RAR and 7z are uploaded resumably and normalized only inside the pipeline container;
- encrypted, linked, traversing, duplicate and over-limit archive entries fail closed;
- project status is durable and reflects provider state without fabricated percentages;
- ready artifacts are imported digest-bound and served from Mission Core same-origin URLs;
- the build always requests preview and streamed Gaussian outputs;
- exactly one `Mesh_Files/*.ply` automatically selects repaired source-mesh collision plus Draco;
- archives without that mesh remain visual-only and reach ready without a collision artifact;
- generated Gaussian/voxel collision is never used as an implicit fallback;
- edit changes project metadata; delete removes both the Mission Core project and terminal provider
job;
- a ready project mounts direct PlayCanvas Engine and loads Streamed SOG with preview fallback;
- visual, collision and combined remain distinct runtime modes, and collision is loaded lazily;
- viewer quality, layer-axis correction and camera inversion survive navigation and reload.
@@ -572,6 +572,16 @@ Exit:
### M4.9 — recorded-realtime release candidate and cutover
The first complete integrated source-paced load gate passed on `2026-08-27`:
the frozen RF-DETR world-state graph and unchanged CPU TGS candidate accounted
for all `4,489` frames at `11.860865 FPS`, with joined output p95/p99 of
`46.825886/63.94485 ms` and zero capacity drops. The immutable identities and
resource envelope are recorded in
[`experiments/perception/M49_TGS_INTEGRATED_GRAPH_ACCEPTANCE_2026-08-27.md`](../experiments/perception/M49_TGS_INTEGRATED_GRAPH_ACCEPTANCE_2026-08-27.md).
This closes only the one-loop integrated load gate. Visual traversability,
uncapped parity, repeated-loop soak, restart/recovery, navigation, actuation
and production remain open.
Execute on Worker 006 with the frozen RAVNOVES00 source:
1. one full `1.0×` 448.723-second replay;
@@ -1445,6 +1455,106 @@ configuration, dataset release, metrics and ONNX identity; only then is a
candidate loaded through the existing Triton seam and measured by a new
append-only M4.8R run plus an independent validation gate.
### 2026-08-26 — M4.8Q native raw-fisheye risk review ready
The terminal phase of the existing `m48t-risk-quality-temporal` work is now the
content-addressed M4.8Q result
`m48q-native-risk-quality-lab-e8961d4db8ffb751503b9646bc8eeebec6c80c948ce2f5b4fa5b89c471e673c1`.
It replaces neither the historical M4.8T evidence nor either admitted M4 viewer.
The result projects `24` deterministic diagnostic cases into the existing M4.8
image-case review instrument, with source-pixel boxes rendered by the client and
an explicit clean-image toggle. The JPEG review derivatives retain the exact
`800×600` raster geometry; rectification, warp and geometric resampling are all
false. Boxes are not baked into the images.
Worker 006 selected the cases from the immutable full native reference-graph
ledger without another inference pass. The selection covers person, animal,
light-road-user, vehicle, low-confidence, fisheye-edge and both directions of
native-versus-legacy count divergence, with at least 12 source frames between
selected cases. The source graph delivered all `4,489/4,489` frames at
`11.84338 FPS`; detector p95 was `21.19895 ms`, world-state completion p95 was
`47.940779 ms`, GPU utilization p95 was `53%`, and maximum used GPU memory was
`9,718 MiB`. The isolated case-mining container was removed after execution and
the canonical Triton predecessor was verified healthy and unchanged.
This closes evidence preparation, not semantic quality. The cases are
diagnostic samples rather than independent route truth; native-versus-legacy
count differences are not a verdict because the legacy `704×704` path stretches
the raw 4:3 image. Accordingly `review_ready=true`, while ground truth,
candidate acceptance, production acceptance, navigation, safety, commands and
actuation authority remain false. The next action is operator adjudication in
the existing M4.8 review instrument.
### 2026-08-26 — M4.8R2 conservative static-occupancy qualification
M4.8R2 moves the small-static problem out of semantic detector tuning and into
the existing LiDAR occupancy boundary. RF-DETR, native fisheye input and its
risk taxonomy are unchanged. The deterministic qualification consumes the
accepted M4.7 current/rolling graph plus the frozen M4.8R1 operator-assisted
static anchors. It evaluates one already sealed local-surface signal,
`point_step_candidate`, only as additive occupied-or-unknown evidence. It never
clears a cell, claims free space, starts detector inference or uses the GPU.
Immutable result
`m48-static-occupancy-qualification-568024554cff011332ff19ca4739f70555a6232c0607dec2a71be6db408ea69a`
contains `11` static passage anchors. The accepted graph qualifies `6/11`; the
additive low-step candidate qualifies `10/11`. In the critical `0–8 m` band the
change is `6/9 → 9/9`; in the `8–12 m` approach band it is `0/2 → 1/2`. All
four existing canonical engineering anchors remain matched and the result
contains zero false-free claims. One approach anchor remains explicitly
`unresolved-unknown-never-free`.
This is candidate-visible development evidence, not independent truth or a
production cutover. The result accepts only a bounded next action: integrate
the low-step contribution as an occupied-only Worker shadow and replay all
`4,489` frames on Worker 006 while measuring effective FPS, stage latency,
occupancy/component growth, capacity drops and the same static anchors. The LAB
reuses the M4.7 `VIDEO/CAMERA/3D/PLAN/SEMANTICS` viewer and projects the eleven
anchors onto its immutable timeline; no third perception instrument exists.
Navigation, commands, actuation, physical clearance and collision-safety
authority remain false.
### 2026-08-26 — M4.8R3 bounded static-occupancy Worker shadow accepted
M4.8R3 closes the bounded Worker integration requested by M4.8R2. The sealed
result is
`m48r3-static-occupancy-shadow-d1577870b098bcd0b67cc51798234f224b348ad3954ead72f3ce6df414875a29`.
It composes the accepted camera/geometry graph with an occupied-only low-step
provider; RF-DETR, the native `800×600` fisheye raster and the semantic risk
policy remain unchanged. Weak two-to-four-point geometry is published only
when the exact `0.45 m` voxel is present in all six causal frames and its
current range is at most `8 m`. Strong five-point components remain immediate.
The provider never uses a semantic class, clears a cell, infers free space or
runs another neural-network pass.
The isolated Worker 006 replay delivered all `4,489/4,489` frames at
`11.79902 FPS`. World-state completion p95 was `56.74324 ms`; geometry p95/p99
were `8.420913/13.732692 ms`; GPU utilization p95/maximum were `54%/58%` and
maximum used GPU memory was `9,743 MiB`. The additive provider contributed a
mean `0.587893 ms` per frame. Relative to the frozen native baseline, FPS
regression was `0.3745552%` and world-state p95 increased by `8.802461 ms`,
both inside the predeclared envelope.
All `9/9` critical-near assisted anchors are occupied in the delivered graph.
At display frame `1856`, the two thin posts remain independent (`5` observed
components in their review extent) and the two concrete hemispheres remain
independent (`6` observed components); the system does not inherit the
operator's old paired boxes. The ledger adds `613,146` occupied cells, loses
zero baseline cells, makes zero false-free claims and records zero capacity
drops. The two `8–12 m` approach anchors intentionally remain unknown because
the sparse-persistence policy is bounded to the critical `0–8 m` band.
This accepts the reproducible bounded Worker shadow and its LAB evidence, not a
production navigation cutover. The result remains replay-simulated;
physical-live authority, commands, actuation, planner-authoritative free space
and collision-safety acceptance are false. The next milestone boundary is
M4.9 recorded-realtime release-candidate validation using this frozen graph.
Subsequent operator visual review rejected the LOW-STEP connected-component
camera boxes as a general static-obstacle product path. That decision does not
alter the immutable M4.8R3 runtime evidence; it redirects the next perception
evaluation to the terrain-relative sequence in
[`docs/23_TRAVERSABILITY_AND_STATIC_OBSTACLE_STACK_DECISION.md`](23_TRAVERSABILITY_AND_STATIC_OBSTACLE_STACK_DECISION.md).
## Implementation order
The implementation sequence is intentionally strict:
@@ -0,0 +1,398 @@
# Traversability and class-free static-obstacle stack decision
Date: 2026-08-26
Status: accepted for sequential recorded-replay evaluation; not accepted for
navigation or actuation
## Decision summary
Mission Core stops treating the M4.8R3 `LOW-STEP` connected-component and
camera-box projection as the product path for general static-obstacle
perception. M4.8R3 remains immutable evidence that a bounded occupied-only
heuristic can execute in the realtime envelope. Operator review of the complete
visual result rejected its obstacle quality and representation:
- isolated vegetation, curb edges and sparse returns become false obstacles;
- bins, carts, thin posts, railings and hemispheres are inconsistently lost;
- spatially unrelated points merge into large rectangular camera regions;
- one-frame components flicker without ground/obstacle evidence competition;
- 2D rectangles erase the free passage between separate 3D obstacles.
This is an abstraction failure, not a threshold-tuning failure. A navigation
system requires a terrain-relative occupancy and traversability product, not a
detector that attempts to name every static object and not a bounding box as
the safety primitive.
The sequential evaluation order is:
1. **GSeg3D + Nav2 Ground Consistency + Nav2 Costmap** — primary candidate.
2. **TRAVEL + the same costmap boundary** — class-free challenger if the
primary candidate misses compact or thin obstacles or merges passages.
3. **Isaac ROS nvblox** — separate GPU occupancy/ESDF candidate after the CPU
terrain contour is measured; it is not stacked into the first test.
RF-DETR remains the semantic risk provider for people, children, animals,
cars, trucks, motorcycles and bicycles. It does not decide the presence or
shape of an unknown static obstacle. The admitted camera semantic layer owns
surface/material hints such as low vegetation and woody vegetation. Native
`800x600` fisheye input remains unchanged.
There is no single globally primary sensor. The camera is primary for semantic
meaning; LiDAR is primary for metric geometry and positive support. Neither is
allowed to erase contradictory evidence from the other.
## Required product representation
```text
LiDAR + pose + optional IMU
|
v
terrain-relative ground / non-ground evidence
|
v
temporally stable local occupancy and UNKNOWN support state
|
v
robot-footprint collision cost + traversability
|
+----> planner / collision monitor (future authority gate)
|
+----> camera projection (diagnostic visualization only)
camera RF-DETR ----> dynamic semantic risk hints ----------------+
camera semantics --> material / vegetation hint -----------------+
```
The canonical safety output is a costmap/elevation/occupancy product. Camera
boxes may be derived for operator review, but a box must never be the source of
occupied cells, clearance, passage width or a control action.
## Camera/LiDAR arbitration and vegetation
Tall grass demonstrates why a binary obstacle mask is insufficient. LiDAR may
correctly report many non-ground returns while being unable to tell whether
they came from compressible grass, a rigid trunk hidden inside the grass, or a
drop-off with no positive support. Camera semantics can identify vegetation,
but a camera label cannot prove that the ground below is load-bearing or free
of a hidden rigid object.
Mission Core therefore preserves at least these distinct states:
| Evidence | Traversability state |
| --- | --- |
| Stable metric non-ground evidence without vegetation support | `RIGID_OR_UNKNOWN_OBSTACLE`; lethal or unknown according to support confidence |
| Camera vegetation plus diffuse LiDAR returns, but no positive ground support below | `VEGETATION_UNKNOWN`; never silently free |
| Camera low vegetation plus positive local ground support and no concentrated rigid return | `VEGETATION_POTENTIALLY_TRAVERSABLE`; high-cost terrain, not a wall |
| Camera vegetation plus concentrated persistent vertical geometry | `VEGETATION_WITH_RIGID_GEOMETRY`; lethal |
| Positive ground support without blocking geometry | `SUPPORTED_GROUND`; candidate traversable terrain |
`VEGETATION_POTENTIALLY_TRAVERSABLE` is a representation decision, not an
authorization to drive through it. The later robot profile must still declare
ground clearance, footprint, traction, admissible slope, vegetation height and
whether contact with vegetation is allowed. Until that profile exists, the
planner may prefer a supported hard path and retain vegetation as a higher-cost
or unknown alternative.
The executable evidence contract is
[`config/perception/m49-camera-lidar-traversability-v1.json`](../config/perception/m49-camera-lidar-traversability-v1.json).
## Candidate A — GSeg3D and Ground Consistency
### GSeg3D
[DFKI GSeg3D ROS 2](https://github.com/dfki-ric/ground_segmentation_ros2)
is a BSD-3-Clause ROS 2 component for CPU realtime processing of 3D LiDAR. It
publishes separate ground and obstacle point clouds and provides:
- optional IMU gravity alignment;
- two-phase coarse/fine ground segmentation;
- configurable slope, local height and inlier thresholds;
- ROS 2 Humble and Jazzy support;
- no task-specific dataset or neural-network inference.
Mission Core evaluates it as the first replacement for the current local
height connected-component heuristic.
The upstream GSeg3D documentation explicitly lists recall degradation in dense
vegetation as a remaining challenge and semantic-aware refinement as future
work. Candidate A can therefore qualify the metric ground/non-ground seam, but
cannot alone close the vegetation product gate.
### Nav2 Ground Consistency
[DFKI Ground Consistency](https://github.com/dfki-ric/nav2_ground_consistency_costmap_plugin)
is a BSD-3-Clause Nav2 costmap layer and is included in the current
[Nav2 outdoor 3D-LiDAR tutorial](https://ros-navigation.github.io/mkdocs.nav2.org/rolling/tutorials/general_tutorials/navigation2_with_ground_consistency_layer/navigation2_with_ground_consistency_layer/).
It consumes ground and non-ground point clouds and supplies the missing product
semantics:
- ground and obstacle evidence compete per costmap cell;
- evidence accumulates and decays instead of trusting one point in one frame;
- obstacle height is evaluated relative to local ground;
- robot height and minimum clearance are explicit configuration inputs;
- sparse cells can use bounded neighboring-ground interpolation;
- a cell without reliable support can fail closed instead of becoming free.
The first test keeps all free-space and actuation authority false. The layer is
evaluated only as a recorded-replay occupancy provider.
### Nav2 boundary
[Nav2 Costmap 2D](https://docs.nav2.org/configuration/packages/configuring-costmaps.html)
provides footprint-aware obstacle, voxel and inflation layers. A later physical
gate may add the independent
[Nav2 Collision Monitor](https://docs.nav2.org/rolling/configuration_and_development/configuration_guide/core_servers/collision_monitor/configuring_collision_monitor_node/),
but recorded replay does not publish commands.
## Candidate B — TRAVEL
[TRAVEL](https://github.com/url-kaist/TRAVEL) performs class-free traversable
ground detection and above-ground instance clustering. Its ROS 2 wrapper is
verified by the project on Humble and Jazzy. The published evaluation reports
roughly `20-30 Hz` and explicitly targets safe navigation in unseen urban and
wild environments without assigning names such as pole, vehicle or wall.
TRAVEL is valuable when individual compact obstacles and the gaps between them
must remain spatially distinct. Its GPL-3.0 license prevents silent admission
into a proprietary product runtime. It is initially a benchmark/challenger;
distribution consequences require a separate decision.
Primary reference:
[TRAVEL paper](https://arxiv.org/abs/2206.03190).
## Candidate C — Isaac ROS nvblox
[Isaac ROS nvblox](https://nvidia-isaac-ros.github.io/repositories_and_packages/isaac_ros_nvblox/index.html)
uses GPU-accelerated TSDF/ESDF reconstruction from depth and/or 3D LiDAR and
publishes a Nav2 costmap. Current NVIDIA documentation supports ROS 2 Jazzy on
x86_64 with an Ampere-or-newer NVIDIA GPU and at least 8 GiB VRAM; Worker 006's
RTX 4090 is inside that hardware class.
Nvblox is evaluated separately because it answers dense occupied-space and
clearance questions well, but it is not by itself a complete terrain-relative
traversability classifier. Its official kernel timings are not an end-to-end
Mission Core FPS guarantee.
## Candidates not admitted to the first sequence
| Candidate | Reason not first |
| --- | --- |
| Autoware Universe | Mature road-vehicle perception and occupancy, but a large automotive/lane-driving stack for this rover-sized contour. |
| Offroad-Nav 2026 | Relevant complete pipeline, but currently ROS 1 Noetic; ROS 2 port is in development and the real-robot branch is not published. |
| `elevation_mapping_cupy` | Strong GPU elevation-map implementation, but the maintained integration remains ROS 1/catkin. It is retained as an algorithmic reference. |
| CMU AEDE/FAR/TARE | Proven research navigation components, but not the shortest supported ROS 2 product baseline for this test. |
| Additional image segmentation model | Consumes GPU and still cannot establish metric support, clearance or unknown space. |
## Source representation boundary
`RAVNOVES00` does not contain a conventional complete raw LiDAR scan per video
frame. Its `lio_pcl` stream is a registered vendor-map increment in the SLAM
map frame. Missing republication is not free-space evidence.
Therefore every candidate run must preserve three distinct products:
1. exact current registered increment;
2. bounded causal rolling support/occupancy in the map frame;
3. candidate ground/non-ground/costmap output with source lineage.
For Candidate A, the evaluation adapter may present a bounded causal local
cloud in the current body frame. It may not use future frames, clear cells from
missing points, or relabel unobserved space as free. Dynamic-object semantics
remain outside this static replay adapter.
## Operator-reviewed regression set
The following RAVNOVES00 source frames are mandatory review anchors. They are
operator-reviewed engineering cases, not independent statistical ground truth.
| Frame | Required observation |
| ---: | --- |
| 171 | The grass/curb region must not become a large blocking object; the visible bin must remain obstacle evidence when supported by LiDAR. |
| 306 | The cart and right hemisphere must not be lost while curb corners become dominant. |
| 368 | The hemisphere extent must stay compact; the right railing must remain obstacle evidence. |
| 402 | The near hemisphere must not inflate into a camera-sized rectangular exclusion zone. |
| 450 | Curb/ramp terrain must be evaluated relative to local ground instead of becoming arbitrary boxes. |
| 509 | Isolated vegetation or sparse returns must not immediately become a stable blocking object. |
| 525 | Sparse local returns must not merge into one large occupied camera rectangle. |
| 744 | The grass/curb strip must not be promoted into a wall. |
| 1122 | The compact hemisphere and both thin posts must be represented when LiDAR support is present. |
| 1856 | Two posts remain separate, two hemispheres remain separate, and the passages between them remain explicit. |
## Acceptance contract
### Quality
- Static obstacle output is class-free and geometry-backed.
- All supported critical anchors above are occupied or conservatively unknown,
never false-free.
- Vegetation, curb edges and isolated returns do not create large persistent
lethal regions without sustained non-ground evidence.
- Separate posts and hemispheres remain separate at the costmap resolution.
- A camera rectangle cannot merge two distinct occupied regions or erase their
gap.
- Unobserved support, drop-offs and no-return regions remain `UNKNOWN/LETHAL`
until positive support is observed.
- No manual object-class annotation or detector training is permitted for this
gate.
### Realtime and resource envelope
- Process all `4,489` timeline frames with zero unaccounted loss.
- Isolated candidate output keeps up with at least the recorded `10 Hz` source
cadence.
- Integrated graph FPS regression is at most `5%` relative to the immutable
M4.8R3 `11.79902 FPS` reference.
- Candidate-stage p95 latency is at most `25 ms` and p99 at most `50 ms` in the
recorded replay contour.
- The primary CPU candidate does not add another neural model or consume the
RF-DETR GPU budget.
- CPU, RAM, GPU, VRAM, queue depth, supersession and output age are recorded;
no result is accepted only because it looks good in selected frames.
### Authority
Passing this document's tests accepts a recorded-replay perception provider.
It does not accept physical free space, navigation, commands, actuation,
collision safety or a robot body model.
## Sequential execution plan
### T0 — Worker and source preflight
- Inventory Worker 006 OS/WSL, ROS 2, Docker, compiler, CPU/RAM and RTX 4090.
- Confirm the immutable RAVNOVES00 source and accepted M4.8R3 result locally on
the worker without copying private source evidence back to the Mac.
- Record a content-addressed candidate manifest and exact upstream revisions.
The first T0 snapshot is recorded in
[`experiments/perception/M49_T0_TRAVERSABILITY_PREFLIGHT_2026-08-26.md`](../experiments/perception/M49_T0_TRAVERSABILITY_PREFLIGHT_2026-08-26.md).
Exact upstream revisions are frozen in
[`config/perception/m49-traversability-candidate-manifest-v1.json`](../config/perception/m49-traversability-candidate-manifest-v1.json).
T0 found the source and the accepted raw M4.8R3 run intact, but did not start a
build: the parallel GAUSS contour was active and free Worker memory had fallen
to approximately `669 MiB`. That is a resource-admission stop, not a candidate
failure.
### T1 — Candidate A isolated qualification
- Build GSeg3D and Ground Consistency in a new isolated `ndc-` worker contour.
- Run upstream sample/demo data first to prove the unmodified components.
- Measure component latency and memory before adding Mission Core adapters.
T1 completed on `2026-08-26` with an upstream candidate rejection. The pinned
sources build, but the Ground Consistency suite passes only `11/12` gtests;
`testBoundsReflectFootprint` fails because the test fixture has no configured
footprint. The sealed evidence and complete run ledger are recorded in
[`experiments/perception/M49_T1_GSEG3D_UPSTREAM_QUALIFICATION_2026-08-26.md`](../experiments/perception/M49_T1_GSEG3D_UPSTREAM_QUALIFICATION_2026-08-26.md).
Candidate A receives no replay or runtime authority in this revision set.
### T2 — Candidate A RAVNOVES00 replay
- Feed the bounded causal local cloud with exact pose lineage.
- Produce ground, non-ground, occupancy and unknown layers for all frames.
- Review the ten mandatory anchors and compute full-run stability/resource
metrics.
- Do not draw system camera boxes until the costmap result is sealed.
- Replay the existing camera semantic vegetation evidence as an independent
arbitration input; do not let it clear unsupported or concentrated geometry.
### T3 — Candidate B challenger
- Run TRAVEL against the identical source representation and anchors.
- Compare compact-obstacle recall, passage preservation, temporal stability and
CPU cost against Candidate A.
- Stop if Candidate A already passes and TRAVEL adds no measurable value that
justifies GPL runtime implications.
The upstream T3 qualification passed on `2026-08-26`: exact-source KITTI
regression was bit-identical to the committed gold result, the standalone
example produced all outputs and the ROS 2 Jazzy node was discoverable. See
[`experiments/perception/M49_T3_TRAVEL_UPSTREAM_QUALIFICATION_2026-08-26.md`](../experiments/perception/M49_T3_TRAVEL_UPSTREAM_QUALIFICATION_2026-08-26.md).
The direct RAVNOVES00 compatibility gate then rejected the combined TGS+AOS
profile. TGS ground/non-ground membership was invariant under point-order
reversal, but AOS failed all `20/20` order comparisons with labeled-point
Jaccard as low as `0.469`; its `64 × 4,500`, `-24.8°…+2.0°` KITTI scan model is
not the K1 registered-map-increment contract. The complete evidence is in
[`experiments/perception/M49_T3_TRAVEL_RAVNOVES_COMPATIBILITY_2026-08-26.md`](../experiments/perception/M49_T3_TRAVEL_RAVNOVES_COMPATIBILITY_2026-08-26.md).
Direct AOS admission is closed. TGS alone remains eligible for a bounded
ground/non-ground adapter that retains the exact unreturned complement as
unknown evidence. GPL runtime, visual quality and full-source realtime remain
open gates.
The gravity-aligned TGS-only adapter completed on the same ten anchors with all
eligible input points accounted as ground, non-ground or rejected and no AOS
invocation. It emits a deterministic `0.45 m`, `12 m` local evidence grid while
preserving unobserved cells. See
[`experiments/perception/M49_TGS_FAIL_CLOSED_EVIDENCE_2026-08-26.md`](../experiments/perception/M49_TGS_FAIL_CLOSED_EVIDENCE_2026-08-26.md).
Representation/accounting is accepted for the visual gate; obstacle and
traversability quality are not yet accepted. The sealed result is now published
in the canonical LAB as
`m49-tgs-fail-closed-9d5cb089bb5cc23f829acb47eda52eaa886db3b60f8fa7d57e02e27f642e837b`,
linked to the current M4 v3 recorded timeline. Publication adds no navigation
or actuation authority.
The subsequent complete source-paced TGS-only shadow passed on `2026-08-26`.
It accounted for all `4,489` timeline frames and all `63,646,163` eligible
points, emitted the `561` missing-LiDAR frames as explicit all-cell
`UNOBSERVED`, sustained `10.003945 FPS`, measured TGS `p95/p99` at
`1.694/2.08973 ms`, completion-age `p99` at `41.42845548 ms`, and recorded zero
capacity drops. The immutable result and canonical LAB acceptance are recorded
in
[`experiments/perception/M49_TGS_FULL_SHADOW_ACCEPTANCE_2026-08-26.md`](../experiments/perception/M49_TGS_FULL_SHADOW_ACCEPTANCE_2026-08-26.md).
This accepts the CPU source-paced shadow and retains the candidate. It does not
accept visual traversability quality, integrated graph performance, navigation
or actuation.
The product-integration load gate then passed on `2026-08-27`. The unchanged
TGS candidate ran concurrently with the frozen RF-DETR world-state graph for
all `4,489` frames at a requested `12 Hz`: every graph frame was delivered,
every TGS frame was accounted and capacity drops remained zero. The joined
output sustained `11.860865 FPS`, measured `46.825886/63.94485 ms` at p95/p99,
and the CPU-only TGS stage measured `1.735/2.14019 ms` at p95/p99 with a
`22.6 MiB` memory maximum. See
[`experiments/perception/M49_TGS_INTEGRATED_GRAPH_ACCEPTANCE_2026-08-27.md`](../experiments/perception/M49_TGS_INTEGRATED_GRAPH_ACCEPTANCE_2026-08-27.md).
Integrated runtime capacity is accepted; visual traversability, physical free
space, navigation, actuation and production remain unaccepted.
The canonical LAB playback data plane was then replaced on `2026-08-27` without
changing the sealed TGS or reference-graph results. Dense M4 points and complete
TGS numeric products are now loaded once as immutable digest-verified binary
tracks; bounded JSON windows retain metadata only, and the existing Three.js
scene updates persistent GPU buffers instead of remounting per frame. The exact
products, loopback delivery measurements, seek/play browser acceptance and
authority boundary are recorded in
[`experiments/perception/M49_LAB_PLAYBACK_DATA_PLANE_ACCEPTANCE_2026-08-27.md`](../experiments/perception/M49_LAB_PLAYBACK_DATA_PLANE_ACCEPTANCE_2026-08-27.md).
This is a playback and evidence-delivery acceptance, not a new perception or
navigation-quality gate.
### T4 — Candidate C occupancy/ESDF probe
- Run nvblox separately with RF-DETR disabled for the isolated probe.
- Measure GPU/VRAM and 3D occupied-space quality.
- Admit it only if it supplies a measured capability missing from the accepted
CPU terrain contour inside the one-RTX-4090 production ceiling.
### T5 — Product integration gate
- Select one terrain provider and at most one justified occupancy complement.
- Re-enable the frozen RF-DETR semantic-risk provider.
- Repeat complete recorded-source-paced load acceptance.
- Publish a LAB only after the costmap/elevation outputs and limitations are
sealed.
## Immediate next action
Keep the accepted integrated graph frozen and review the published full
gravity-aligned TGS timeline in camera, metric 3D and costmap space. Preserve
`GROUND_SUPPORT`, `NONGROUND_OCCUPIED`, `UNKNOWN_REJECTED` and `UNOBSERVED` as
separate products; do not use AOS or infer free cells from absent
republication. Integrated FPS, latency, resources and queue behavior are now
accepted for the one-loop source-paced gate. If occupied evidence carpets the
route, soft traversable vegetation or usable gaps, reject TGS without tuning it
against the review evidence. Close and induce-test the Worker inference-runtime
restart guard, then proceed to repeated-loop soak only if visual review also passes.
Candidate A T2 replay remains blocked by the failed unmodified T1 gate. No
LOW-STEP tuning, new object model, camera resize, fisheye
rectification, manual dataset or parallel heavy Worker job is authorized by
this decision.
@@ -0,0 +1,186 @@
# ADR 0043: Physical safety shadow and bounded operator visual
Date: 2026-08-27
Status: autonomous transport slice implemented; 0.15 m challenger and measured acceptance incomplete
## Context
Mission Core has accepted a source-paced RF-DETR-native plus TRAVEL TGS
recorded shadow on RAVNOVES00. The retained TGS result uses a `0.45 m` cell,
`12 m` radius and four explicit states. It is useful operator evidence but is
not a planner-authoritative terrain provider. The integrated acceptance joins
TGS and the reference graph as evidence; TGS does not modify graph state.
The intended physical rover is not a lightweight laboratory fixture. The
operator supplied the following planning facts, not yet independently measured:
- body `1.0 x 0.8 x 0.4 m`;
- ground clearance `0.15 m`;
- mass approximately `100 kg`;
- one nominal `500 W` motor per side;
- nominal speed `0.2778 m/s` (`1 km/h`);
- maximum operating speed `0.5556 m/s` (`2 km/h`).
Controller, remote dead-man, braking behavior, physical E-stop, body/sensor
extrinsics, center of gravity and negative-obstacle coverage are unavailable.
Commands therefore remain disabled.
The current full TGS playback pack is about `88 MiB`: approximately `9.6 MiB`
states, `77 MiB` z-bounds and `1.1 MiB` frame metadata. Holding the same
`12 m` disk for all `4,489` frames would scale to roughly `0.8 GiB` at `0.15 m`
and `1.8 GiB` at `0.10 m`, before richer terrain features, video, semantics and
renderer allocations. Full-session high-resolution browser preload is not an
admitted design for the current 18 GiB MacBook host.
## Decision
Recorded LAB and realtime perception are different runtime contours. Worker
006 is reserved for realtime perception. A new recorded LAB is built by a
bounded sequential offline builder on the MacBook, or admits an already sealed
immutable artifact. The offline build may take longer than source duration. It
must not become a hidden Worker job. An opened LAB never depends on Worker 006.
```text
recorded LAB publication, Worker 006 absent
recorded source -> local sequential offline build
-> seal immutable result + binary LOD tracks
|
v
local/CAS artifact store
|
Worker 006 remains absent
|
v
canonical local backend, read-only
|
v
MacBook LAB CAMERA + 3D + PLAN
separate future realtime contour
K1 -> Worker 006 -> live world-state/planner shadow
```
Opening, seeking, looping and visually inspecting a sealed LAB must perform
zero requests to Worker 006. If the worker, its host, Docker or the network path
to it is unavailable, a locally present sealed result opens unchanged. If a
manifest-declared local object is absent or corrupt, LAB fails with an explicit
artifact error; it does not start compute, scan worker results or silently
rebuild evidence. This preserves ADR 0033.
Publishing a new LAB also performs zero Worker requests. Slow local preparation
is acceptable, but it is explicit and bounded: build first, seal second, open
third. Historical LAB artifacts that were originally computed on Worker 006
remain valid after sealing because replay depends only on their immutable
artifacts; they do not justify a Worker dependency for new LABs.
Visual performance may never change a safety state, erase unknown space or
reduce the resolution used by the safety consumer. Conversely, the MacBook does
not need every cell of every high-resolution frame resident at once in order to
provide a complete operator explanation.
The retained `0.45 m` M49T5 profile and sealed result remain immutable. A new
physical-safety challenger may evaluate `0.15 m` and `0.10 m` cells without
rewriting that baseline. The first candidate resolution is `0.15 m`; `0.10 m`
is admitted only if LiDAR density improves the evidence. Worker compute
acceptance and autonomous LAB viewer acceptance are measured separately.
The operator transport uses binary typed arrays. It must not serialize one JSON
object per cell or expand binary frames into nested JavaScript objects before
updating GPU instances. Recorded high-resolution inspection reads only sealed
local binary chunks and active-frame detail, not a full-session high-resolution
preload.
The proposed spatial chunk is `32` source frames (`3.2 s` at `10 Hz`). Before
the spatial scene declares itself ready, it may preload the first two chunks,
or `6.4 s`, from the local artifact. The browser retains at most three chunks
(`9.6 s`), normally previous/current/next, and prefetches one forward chunk.
A backward seek loads the target and next chunk from the same sealed artifact.
This bounded startup delay is preferable to either Worker dependency or a
multi-gigabyte browser preload.
## Implemented autonomous transport slice
The first executable transport slice is now present without creating a new LAB
surface or transport clock:
- `m49_physical_safety_playback.py` is a local, sequential, filesystem-only
sealer. It accepts an already sealed source, verifies its declared hashes,
and writes immutable binary chunks atomically. It contains no Worker client,
job submission or network path.
- `m49_physical_safety_playback_api.py` exposes only the configured local
artifact root. Manifest, shared centers, frame catalog and every requested
chunk are hash-verified. Corruption returns an explicit artifact failure.
- `m49PhysicalSafetyPlayback.ts` rejects non-canonical URLs, verifies byte
length and SHA-256 in the browser, prebuffers two chunks, retains no more than
three and loads target plus next on seek.
- the existing M49 evidence composition resolves this transport by exact
`source_result_id`. If no chunked derivative has been published, it may still
read the old sealed local full pack; neither path uses Worker 006.
A real transport canary was generated from the accepted immutable `0.45 m`
M49T5 result without recomputing TGS or changing that source result. The canary
identity is
`m49-physical-safety-playback-0d0e41a995a902a4701935a79655d93f2f1898806f8fa82ebbd207129f111d69`.
It contains all `4,489` frames and `2,244` cells in `141` chunks. A normal
32-frame chunk is `646,300` bytes; two startup chunks are about `1.23 MiB` and
three spatial chunks are about `1.85 MiB`, plus the shared centers and frame
catalog. This is the transport canary only. It is not a `0.15 m` safety result
and no upsampled baseline is presented as new evidence.
The `0.15 m` shape, fail-closed missing-sample rule, bounded seek behavior and
zero-Worker URL policy are covered with synthetic contract fixtures. A real
`0.15 m` challenger still requires the local sequential terrain computation
and a separately sealed result.
The visual uses explicit LOD:
- `0-4 m`: `0.15 m` near-field cells;
- `4-8 m`: `0.30 m` explanatory cells;
- `8-12 m`: `0.45 m` context cells;
- pause/anchor inspection: full available active-frame resolution.
LOD changes only presentation. The sealed result retains the full candidate
evidence needed to reproduce its decisions; a future realtime worker separately
retains the full live safety grid across the configured safety radius.
The metric Three.js scene retains instanced meshes and all evidence layers. It
renders on evidence, camera interaction, resize or layer changes. It does not
run a permanent animation loop while idle. The scene exposes render-pass time,
draw calls, triangles, cell count and pixel ratio in the operator surface.
## Acceptance budget
Acceptance is measured on the named 14-inch 2023 MacBook Pro with 18 GiB RAM,
with recorded video, semantic overlay and TGS 3D/PLAN evidence available:
- source pace: `10 Hz` without evidence loss;
- main-thread frame preparation p95 at most `10 ms`;
- CPU-side WebGL render submission p95 target `16.7 ms`, hard maximum
`33.3 ms`; GPU completion requires a separate supported timer query;
- evidence-to-visible p95 at most `100 ms`;
- incremental visual resident memory at most `256 MiB`;
- post-warmup growth at most `32 MiB` over a ten-minute soak;
- zero browser long tasks above `50 ms` during source-paced playback;
- zero WebGL context losses;
- zero Worker 006 requests while opening, seeking or playing a LAB;
- zero Worker 006 requests while building a new recorded LAB;
- the sealed LAB opens with Worker 006 unavailable;
- idle metric scene performs no continuous render loop.
These are proposed thresholds until a canonical browser run emits a sealed
performance ledger. Passing them does not grant navigation, safety or actuation
authority.
## Consequences
- The operator keeps the full explanatory visual instead of receiving a
stripped-down safety UI.
- High-resolution terrain work does not turn the MacBook into a second
perception worker.
- Historical LAB remains usable during Worker maintenance, Docker failure or
loss of the Worker network path.
- Evidence identity and safety decisions remain independent of display LOD.
- The next implementation boundary is a packed, chunked terrain contract plus
footprint-aware states; no physical connection or command path is introduced.
- Physical authority remains blocked by controller/E-stop, measured braking,
vehicle geometry, sensor extrinsics and negative-obstacle coverage.

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