feat(perception): add lossless lidar replay v2
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@ -0,0 +1,311 @@
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export interface LidarDistribution {
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sampleCount: number;
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minimum: number | null;
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mean: number | null;
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p50: number | null;
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p95: number | null;
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maximum: number | null;
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}
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export interface LidarPackSummary {
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packId: string;
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sessionId: string;
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profileId: string;
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pointFrames: number;
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poseFrames: number;
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points: number;
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meanPointsPerFrame: number | null;
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p95FrameIntervalMs: number | null;
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poseCoverageFraction: number | null;
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equivalenceStatus: "passed";
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logicalContentSha256: string;
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createdAtUtc: string | null;
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}
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export interface LidarReplayCatalog {
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configured: boolean;
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validTotal: number;
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invalidTotal: number;
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duplicateTotal: number;
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items: LidarPackSummary[];
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}
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export interface LidarStageReadiness {
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stage: string;
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readiness: "ready" | "degraded" | "blocked";
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reasons: string[];
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}
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export interface LidarReplayDetail {
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pack: LidarPackSummary;
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quality: {
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fieldRetention: Record<string, boolean>;
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pointCountPerFrame: LidarDistribution;
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pointFrameIntervalMs: LidarDistribution;
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intensity: LidarDistribution;
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poseBinding: {
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thresholdMs: number;
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coveredPointFrames: number;
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coverageFraction: number;
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nearestDeltaMs: LidarDistribution;
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};
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limitations: string[];
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};
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equivalence: {
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status: "passed";
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arraysCompared: number;
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arrayMismatches: number;
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};
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stages: LidarStageReadiness[];
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}
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export class LidarReplayContractError extends Error {}
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export class LidarReplayApiError extends Error {
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constructor(message: string, readonly status: number | null = null) {
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super(message);
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}
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}
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type LidarFetch = (
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input: RequestInfo | URL,
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init?: RequestInit,
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) => Promise<Response>;
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const SAFE_PACK_ID = /^lidar-replay-pack-[a-f0-9]{64}$/;
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const SAFE_ID = /^[A-Za-z0-9][A-Za-z0-9._:/-]{0,159}$/;
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const SHA256 = /^[a-f0-9]{64}$/;
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function record(value: unknown, label: string): Record<string, unknown> {
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if (!value || typeof value !== "object" || Array.isArray(value)) {
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throw new LidarReplayContractError(`${label}: ожидался объект`);
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}
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return value as Record<string, unknown>;
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}
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function array(value: unknown, label: string): unknown[] {
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if (!Array.isArray(value)) {
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throw new LidarReplayContractError(`${label}: ожидался массив`);
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}
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return value;
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}
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function string(value: unknown, label: string, pattern?: RegExp): string {
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if (typeof value !== "string" || !value || (pattern && !pattern.test(value))) {
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throw new LidarReplayContractError(`${label}: некорректная строка`);
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}
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return value;
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}
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function number(value: unknown, label: string, nullable = false): number | null {
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if (nullable && value === null) return null;
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if (typeof value !== "number" || !Number.isFinite(value)) {
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throw new LidarReplayContractError(`${label}: некорректное число`);
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}
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return value;
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}
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function integer(value: unknown, label: string): number {
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const parsed = number(value, label);
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if (parsed === null || !Number.isInteger(parsed) || parsed < 0) {
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throw new LidarReplayContractError(`${label}: ожидалось неотрицательное целое`);
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}
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return parsed;
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}
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function boolean(value: unknown, label: string): boolean {
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if (typeof value !== "boolean") {
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throw new LidarReplayContractError(`${label}: ожидался boolean`);
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}
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return value;
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}
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function distribution(value: unknown, label: string): LidarDistribution {
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const source = record(value, label);
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return {
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sampleCount: integer(source.sample_count, `${label}.sample_count`),
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minimum: number(source.minimum, `${label}.minimum`, true),
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mean: number(source.mean, `${label}.mean`, true),
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p50: number(source.p50, `${label}.p50`, true),
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p95: number(source.p95, `${label}.p95`, true),
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maximum: number(source.maximum, `${label}.maximum`, true),
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};
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}
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function packSummary(value: unknown): LidarPackSummary {
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const source = record(value, "LiDAR pack");
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if (source.equivalence_status !== "passed") {
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throw new LidarReplayContractError("LiDAR pack не прошёл equivalence gate");
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}
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return {
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packId: string(source.pack_id, "pack_id", SAFE_PACK_ID),
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sessionId: string(source.session_id, "session_id", SAFE_ID),
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profileId: string(source.profile_id, "profile_id", SAFE_ID),
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pointFrames: integer(source.point_frames, "point_frames"),
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poseFrames: integer(source.pose_frames, "pose_frames"),
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points: integer(source.points, "points"),
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meanPointsPerFrame: number(source.mean_points_per_frame, "mean_points_per_frame", true),
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p95FrameIntervalMs: number(source.p95_frame_interval_ms, "p95_frame_interval_ms", true),
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poseCoverageFraction: number(
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source.pose_coverage_fraction,
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"pose_coverage_fraction",
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true,
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),
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equivalenceStatus: "passed",
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logicalContentSha256: string(
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source.logical_content_sha256,
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"logical_content_sha256",
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SHA256,
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),
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createdAtUtc:
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source.created_at_utc === null || source.created_at_utc === undefined
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? null
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: string(source.created_at_utc, "created_at_utc"),
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};
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}
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export function parseLidarReplayCatalog(value: unknown): LidarReplayCatalog {
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const source = record(value, "LiDAR catalog");
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if (source.schema_version !== "missioncore.lidar-replay-pack-catalog/v1") {
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throw new LidarReplayContractError("LiDAR catalog schema несовместима");
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}
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return {
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configured: boolean(source.configured, "configured"),
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validTotal: integer(source.valid_total, "valid_total"),
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invalidTotal: integer(source.invalid_total, "invalid_total"),
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duplicateTotal: integer(source.duplicate_total, "duplicate_total"),
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items: array(source.items, "items").map(packSummary),
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};
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}
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export function parseLidarReplayDetail(value: unknown): LidarReplayDetail {
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const source = record(value, "LiDAR detail");
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if (
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source.schema_version !== "missioncore.lidar-replay-pack-detail/v1"
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|| source.access !== "read-only"
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) {
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throw new LidarReplayContractError("LiDAR detail contract несовместим");
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}
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const quality = record(source.quality, "quality");
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const retention = record(quality.field_retention, "field_retention");
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const fieldRetention: Record<string, boolean> = {};
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for (const [key, retained] of Object.entries(retention)) {
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fieldRetention[key] = boolean(retained, `field_retention.${key}`);
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}
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const poseBinding = record(quality.pose_binding, "pose_binding");
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const equivalence = record(source.equivalence, "equivalence");
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if (equivalence.status !== "passed") {
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throw new LidarReplayContractError("LiDAR equivalence gate не пройден");
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}
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const readiness = record(source.readiness, "readiness");
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const stages = array(readiness.stages, "readiness.stages").map((value) => {
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const stage = record(value, "readiness stage");
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const readinessValue = stage.readiness;
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if (
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readinessValue !== "ready"
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&& readinessValue !== "degraded"
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&& readinessValue !== "blocked"
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) {
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throw new LidarReplayContractError("Неизвестный LiDAR readiness status");
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}
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const normalizedReadiness: LidarStageReadiness["readiness"] = readinessValue;
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return {
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stage: string(stage.stage, "stage", SAFE_ID),
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readiness: normalizedReadiness,
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reasons: array(stage.reasons, "stage.reasons").map((reason) =>
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string(reason, "stage reason", SAFE_ID)
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),
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};
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});
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return {
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pack: packSummary(source.pack),
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quality: {
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fieldRetention,
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pointCountPerFrame: distribution(quality.point_count_per_frame, "point_count"),
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pointFrameIntervalMs: distribution(
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quality.point_frame_interval_ms,
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"point_interval",
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),
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intensity: distribution(quality.intensity_0_255, "intensity"),
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poseBinding: {
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thresholdMs: number(poseBinding.threshold_ms, "pose threshold") ?? 0,
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coveredPointFrames: integer(
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poseBinding.covered_point_frames,
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"covered point frames",
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),
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coverageFraction: number(
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poseBinding.coverage_fraction,
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"pose coverage",
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) ?? 0,
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nearestDeltaMs: distribution(
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poseBinding.nearest_delta_ms,
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"nearest pose delta",
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),
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},
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limitations: array(quality.limitations, "limitations").map((item) =>
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string(item, "limitation")
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),
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},
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equivalence: {
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status: "passed",
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arraysCompared: integer(equivalence.arrays_compared, "arrays_compared"),
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arrayMismatches: integer(
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equivalence.array_mismatches,
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"array_mismatches",
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),
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},
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stages,
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};
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}
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async function responseJson(
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response: Response,
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fallback: string,
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): Promise<unknown> {
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let value: unknown;
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try {
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value = await response.json();
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} catch {
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throw new LidarReplayApiError(fallback, response.status);
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}
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if (!response.ok) {
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const detail = record(value, "API error").detail;
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throw new LidarReplayApiError(
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typeof detail === "string" && detail.trim() ? detail : fallback,
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response.status,
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);
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}
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return value;
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}
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export async function fetchLidarReplayCatalog(
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options: { signal?: AbortSignal; fetcher?: LidarFetch } = {},
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): Promise<LidarReplayCatalog> {
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const fetcher = options.fetcher ?? fetch;
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const response = await fetcher("/api/v1/lidar/replay-packs?limit=50", {
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method: "GET",
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headers: { Accept: "application/json" },
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signal: options.signal,
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});
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return parseLidarReplayCatalog(
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await responseJson(response, "Не удалось получить каталог LiDAR replay."),
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);
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}
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export async function fetchLidarReplayDetail(
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packId: string,
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options: { signal?: AbortSignal; fetcher?: LidarFetch } = {},
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): Promise<LidarReplayDetail> {
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if (!SAFE_PACK_ID.test(packId)) {
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throw new LidarReplayContractError("Некорректный LiDAR pack id");
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}
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const fetcher = options.fetcher ?? fetch;
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const response = await fetcher(`/api/v1/lidar/replay-packs/${packId}`, {
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method: "GET",
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headers: { Accept: "application/json" },
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signal: options.signal,
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});
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return parseLidarReplayDetail(
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await responseJson(response, "Не удалось получить LiDAR quality report."),
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);
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}
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@ -18,6 +18,7 @@ export type WorkspaceKind =
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| "timeline"
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| "missions"
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| "catalog"
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| "lidar-quality"
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| "polygon-run";
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export type CapabilityStatus = "active" | "ready" | "contract" | "later";
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@ -586,6 +587,18 @@ export const workspaces: WorkspaceDefinition[] = [
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},
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],
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},
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{
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id: "lidar-quality",
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root: "data",
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label: "Качество LiDAR",
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title: "Качество LiDAR",
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eyebrow: "ДАННЫЕ / LIDAR EVIDENCE",
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description:
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"Проверенные поля сканера, частота, плотность, intensity, pose coverage и допуск следующих алгоритмов.",
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icon: "activity",
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kind: "lidar-quality",
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groups: [],
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},
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{
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id: "entities",
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root: "data",
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@ -13,7 +13,8 @@
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.mission-layout,
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.polygon-live-layout,
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.polygon-run-layout,
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.polygon-run-evidence-grid {
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.polygon-run-evidence-grid,
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.lidar-quality-grid {
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grid-template-columns: 1fr;
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}
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@ -157,6 +158,10 @@
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grid-template-columns: 1fr;
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}
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.lidar-quality-facts {
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grid-template-columns: 1fr;
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}
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.polygon-run-identity dl {
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grid-template-columns: 1fr;
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}
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@ -803,6 +803,157 @@
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font-weight: 650;
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}
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.lidar-quality-workspace {
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gap: 1rem;
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}
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.lidar-quality-message {
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display: grid;
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min-height: 12rem;
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align-content: center;
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justify-items: start;
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gap: 0.7rem;
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}
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.lidar-quality-message h2,
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.lidar-quality-message p {
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margin: 0;
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}
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.lidar-quality-message p {
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max-width: 46rem;
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color: var(--nodedc-text-muted);
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font-size: 0.76rem;
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line-height: 1.55;
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}
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.lidar-quality-grid {
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display: grid;
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grid-template-columns: minmax(0, 0.9fr) minmax(0, 1.1fr);
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gap: 0.85rem;
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}
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.lidar-quality-panel {
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min-width: 0;
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}
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.lidar-quality-facts {
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display: grid;
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grid-template-columns: repeat(2, minmax(0, 1fr));
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gap: 0.65rem;
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margin-top: 1rem;
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}
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.lidar-quality-facts > div {
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display: grid;
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gap: 0.32rem;
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border: 1px solid var(--station-hairline);
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border-radius: 0.8rem;
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background: rgb(255 255 255 / 0.025);
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padding: 0.72rem;
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}
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.lidar-quality-facts span,
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.lidar-pack-catalog footer,
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.lidar-readiness-list small {
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color: var(--nodedc-text-muted);
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font-size: 0.62rem;
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line-height: 1.45;
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}
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.lidar-quality-facts strong {
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overflow: hidden;
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color: var(--nodedc-text-primary);
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font-size: 0.72rem;
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text-overflow: ellipsis;
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}
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.lidar-retention-list {
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display: flex;
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flex-wrap: wrap;
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gap: 0.42rem;
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margin-top: 0.8rem;
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}
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.lidar-retention-list span {
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display: inline-flex;
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align-items: center;
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gap: 0.35rem;
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border: 1px solid var(--station-hairline);
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border-radius: 999px;
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padding: 0.34rem 0.52rem;
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color: var(--nodedc-text-secondary);
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font-size: 0.58rem;
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}
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.lidar-retention-list i {
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width: 0.38rem;
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height: 0.38rem;
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border-radius: 50%;
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background: rgb(185 255 74 / 0.9);
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}
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.lidar-retention-list span[data-retained="false"] i {
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background: rgb(255 97 97 / 0.9);
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}
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.lidar-readiness-list,
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.lidar-pack-list {
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display: grid;
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gap: 0.48rem;
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margin-top: 1rem;
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}
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.lidar-readiness-list > div,
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.lidar-pack-list > button {
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display: flex;
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min-width: 0;
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align-items: center;
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justify-content: space-between;
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gap: 0.8rem;
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border: 1px solid var(--station-hairline);
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border-radius: 0.78rem;
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background: rgb(255 255 255 / 0.02);
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padding: 0.68rem 0.76rem;
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}
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.lidar-readiness-list > div > div,
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||||
.lidar-pack-list > button > div {
|
||||
display: grid;
|
||||
min-width: 0;
|
||||
gap: 0.24rem;
|
||||
}
|
||||
|
||||
.lidar-readiness-list strong,
|
||||
.lidar-pack-list strong {
|
||||
color: var(--nodedc-text-primary);
|
||||
font-size: 0.68rem;
|
||||
}
|
||||
|
||||
.lidar-pack-list > button {
|
||||
width: 100%;
|
||||
color: inherit;
|
||||
text-align: left;
|
||||
cursor: pointer;
|
||||
}
|
||||
|
||||
.lidar-pack-list > button:hover,
|
||||
.lidar-pack-list > button[data-selected="true"] {
|
||||
border-color: rgb(185 255 74 / 0.42);
|
||||
background: rgb(185 255 74 / 0.055);
|
||||
}
|
||||
|
||||
.lidar-pack-list small {
|
||||
color: var(--nodedc-text-muted);
|
||||
font-size: 0.6rem;
|
||||
}
|
||||
|
||||
.lidar-pack-catalog footer {
|
||||
display: grid;
|
||||
gap: 0.22rem;
|
||||
margin-top: 0.8rem;
|
||||
}
|
||||
|
||||
.overview-grid {
|
||||
display: grid;
|
||||
grid-template-columns: minmax(0, 1.55fr) minmax(19rem, 0.75fr);
|
||||
|
|
|
|||
|
|
@ -0,0 +1,269 @@
|
|||
import { useEffect, useState } from "react";
|
||||
import {
|
||||
Button,
|
||||
GlassSurface,
|
||||
StatusBadge,
|
||||
} from "@nodedc/ui-react";
|
||||
|
||||
import {
|
||||
fetchLidarReplayCatalog,
|
||||
fetchLidarReplayDetail,
|
||||
type LidarReplayCatalog,
|
||||
type LidarReplayDetail,
|
||||
type LidarStageReadiness,
|
||||
} from "../core/lidar/replayQuality";
|
||||
import { MetricCard } from "../components/MetricCard";
|
||||
import type { WorkspaceDefinition } from "../productModel";
|
||||
|
||||
function formatNumber(value: number | null, digits = 1): string {
|
||||
if (value === null) return "—";
|
||||
return value.toLocaleString("ru-RU", { maximumFractionDigits: digits });
|
||||
}
|
||||
|
||||
function formatFraction(value: number | null): string {
|
||||
return value === null ? "—" : `${(value * 100).toLocaleString("ru-RU", {
|
||||
maximumFractionDigits: 1,
|
||||
})}%`;
|
||||
}
|
||||
|
||||
function readinessTone(
|
||||
readiness: LidarStageReadiness["readiness"],
|
||||
): "success" | "warning" | "danger" {
|
||||
if (readiness === "ready") return "success";
|
||||
if (readiness === "degraded") return "warning";
|
||||
return "danger";
|
||||
}
|
||||
|
||||
function readinessLabel(readiness: LidarStageReadiness["readiness"]): string {
|
||||
if (readiness === "ready") return "Готов";
|
||||
if (readiness === "degraded") return "С ограничениями";
|
||||
return "Заблокирован";
|
||||
}
|
||||
|
||||
function errorMessage(error: unknown): string {
|
||||
return error instanceof Error && error.message.trim()
|
||||
? error.message
|
||||
: "Не удалось прочитать LiDAR evidence.";
|
||||
}
|
||||
|
||||
export function LidarQualityWorkspace({
|
||||
definition,
|
||||
}: {
|
||||
definition: WorkspaceDefinition;
|
||||
}) {
|
||||
const [catalog, setCatalog] = useState<LidarReplayCatalog | null>(null);
|
||||
const [detail, setDetail] = useState<LidarReplayDetail | null>(null);
|
||||
const [selectedPackId, setSelectedPackId] = useState<string | null>(null);
|
||||
const [loading, setLoading] = useState(true);
|
||||
const [error, setError] = useState<string | null>(null);
|
||||
const [reloadGeneration, setReloadGeneration] = useState(0);
|
||||
|
||||
useEffect(() => {
|
||||
const controller = new AbortController();
|
||||
setLoading(true);
|
||||
setError(null);
|
||||
void (async () => {
|
||||
try {
|
||||
const nextCatalog = await fetchLidarReplayCatalog({
|
||||
signal: controller.signal,
|
||||
});
|
||||
if (controller.signal.aborted) return;
|
||||
setCatalog(nextCatalog);
|
||||
const target = selectedPackId ?? nextCatalog.items[0]?.packId ?? null;
|
||||
if (!target) {
|
||||
setDetail(null);
|
||||
return;
|
||||
}
|
||||
const nextDetail = await fetchLidarReplayDetail(target, {
|
||||
signal: controller.signal,
|
||||
});
|
||||
if (controller.signal.aborted) return;
|
||||
setSelectedPackId(target);
|
||||
setDetail(nextDetail);
|
||||
} catch (loadError) {
|
||||
if (controller.signal.aborted) return;
|
||||
setDetail(null);
|
||||
setError(errorMessage(loadError));
|
||||
} finally {
|
||||
if (!controller.signal.aborted) setLoading(false);
|
||||
}
|
||||
})();
|
||||
return () => controller.abort();
|
||||
}, [reloadGeneration, selectedPackId]);
|
||||
|
||||
return (
|
||||
<div className="standard-workspace lidar-quality-workspace">
|
||||
<section className="workspace-lead workspace-lead--compact">
|
||||
<div>
|
||||
<span className="section-eyebrow">{definition.eyebrow}</span>
|
||||
<h2>{definition.title}</h2>
|
||||
<p>{definition.description}</p>
|
||||
</div>
|
||||
<span className="workspace-lead__note">Только проверенные replay-артефакты</span>
|
||||
</section>
|
||||
|
||||
{loading && !detail ? (
|
||||
<GlassSurface className="lidar-quality-message" padding="lg">
|
||||
<StatusBadge tone="accent">Проверка evidence</StatusBadge>
|
||||
<h2>Читаем LiDAR replay и quality report</h2>
|
||||
<p>Интерфейс покажет pack только после проверки manifest, hashes и equivalence gate.</p>
|
||||
</GlassSurface>
|
||||
) : error ? (
|
||||
<GlassSurface className="lidar-quality-message" padding="lg">
|
||||
<StatusBadge tone="danger">Данные недоступны</StatusBadge>
|
||||
<h2>LiDAR quality report не открыт</h2>
|
||||
<p>{error}</p>
|
||||
<Button
|
||||
size="compact"
|
||||
variant="secondary"
|
||||
onClick={() => setReloadGeneration((value) => value + 1)}
|
||||
>
|
||||
Повторить
|
||||
</Button>
|
||||
</GlassSurface>
|
||||
) : !detail ? (
|
||||
<GlassSurface className="lidar-quality-message" padding="lg">
|
||||
<StatusBadge tone={catalog?.configured ? "neutral" : "warning"}>
|
||||
{catalog?.configured ? "Каталог пуст" : "Storage не настроен"}
|
||||
</StatusBadge>
|
||||
<h2>Lossless LiDAR replay пока не опубликован</h2>
|
||||
<p>
|
||||
После подготовки первого v2 pack здесь появятся field retention, cadence,
|
||||
intensity, pose coverage и readiness следующих стадий.
|
||||
</p>
|
||||
</GlassSurface>
|
||||
) : (
|
||||
<>
|
||||
<section className="metrics-grid" aria-label="Качество LiDAR replay">
|
||||
<MetricCard
|
||||
featured
|
||||
eyebrow="ТОЧЕЧНЫХ КАДРОВ"
|
||||
value={detail.pack.pointFrames.toLocaleString("ru-RU")}
|
||||
detail={`${detail.pack.points.toLocaleString("ru-RU")} точек сохранено`}
|
||||
/>
|
||||
<MetricCard
|
||||
eyebrow="СРЕДНЕЕ ТОЧЕК"
|
||||
value={formatNumber(detail.pack.meanPointsPerFrame, 0)}
|
||||
detail="На один lio_pcl кадр"
|
||||
/>
|
||||
<MetricCard
|
||||
eyebrow="P95 ИНТЕРВАЛА"
|
||||
value={formatNumber(detail.pack.p95FrameIntervalMs)}
|
||||
unit="мс"
|
||||
detail="По exact host monotonic time"
|
||||
/>
|
||||
<MetricCard
|
||||
eyebrow="POSE COVERAGE"
|
||||
value={formatFraction(detail.pack.poseCoverageFraction)}
|
||||
detail={`Порог ${formatNumber(detail.quality.poseBinding.thresholdMs)} мс`}
|
||||
/>
|
||||
</section>
|
||||
|
||||
<div className="lidar-quality-grid">
|
||||
<GlassSurface className="lidar-quality-panel" padding="lg">
|
||||
<header className="panel-heading">
|
||||
<div>
|
||||
<span className="section-eyebrow">ЦЕЛОСТНОСТЬ</span>
|
||||
<h2>Lossless replay v2</h2>
|
||||
</div>
|
||||
<StatusBadge tone="success">Equivalence passed</StatusBadge>
|
||||
</header>
|
||||
<div className="lidar-quality-facts">
|
||||
<div>
|
||||
<span>Сессия</span>
|
||||
<strong>{detail.pack.sessionId}</strong>
|
||||
</div>
|
||||
<div>
|
||||
<span>Сверено массивов</span>
|
||||
<strong>{detail.equivalence.arraysCompared}</strong>
|
||||
</div>
|
||||
<div>
|
||||
<span>Несовпадений</span>
|
||||
<strong>{detail.equivalence.arrayMismatches}</strong>
|
||||
</div>
|
||||
<div>
|
||||
<span>Intensity p50 / p95</span>
|
||||
<strong>
|
||||
{formatNumber(detail.quality.intensity.p50)} /{" "}
|
||||
{formatNumber(detail.quality.intensity.p95)}
|
||||
</strong>
|
||||
</div>
|
||||
</div>
|
||||
<div className="lidar-retention-list">
|
||||
{Object.entries(detail.quality.fieldRetention).map(([field, retained]) => (
|
||||
<span key={field} data-retained={retained ? "true" : "false"}>
|
||||
<i aria-hidden="true" />
|
||||
{field.replaceAll("_", " ")}
|
||||
</span>
|
||||
))}
|
||||
</div>
|
||||
</GlassSurface>
|
||||
|
||||
<GlassSurface className="lidar-quality-panel" padding="lg">
|
||||
<header className="panel-heading">
|
||||
<div>
|
||||
<span className="section-eyebrow">ДОПУСК СТАДИЙ</span>
|
||||
<h2>Что можно запускать</h2>
|
||||
</div>
|
||||
</header>
|
||||
<div className="lidar-readiness-list">
|
||||
{detail.stages.map((stage) => (
|
||||
<div key={stage.stage}>
|
||||
<div>
|
||||
<strong>{stage.stage}</strong>
|
||||
<small>
|
||||
{stage.reasons.length
|
||||
? stage.reasons.join(" · ")
|
||||
: "Входной контракт выполнен"}
|
||||
</small>
|
||||
</div>
|
||||
<StatusBadge tone={readinessTone(stage.readiness)}>
|
||||
{readinessLabel(stage.readiness)}
|
||||
</StatusBadge>
|
||||
</div>
|
||||
))}
|
||||
</div>
|
||||
</GlassSurface>
|
||||
</div>
|
||||
|
||||
<GlassSurface className="lidar-pack-catalog" padding="lg">
|
||||
<header className="panel-heading">
|
||||
<div>
|
||||
<span className="section-eyebrow">REPLAY PACKS</span>
|
||||
<h2>Проверенные записи</h2>
|
||||
</div>
|
||||
<small>
|
||||
{catalog?.validTotal ?? 0} valid · {catalog?.duplicateTotal ?? 0} superseded ·{" "}
|
||||
{catalog?.invalidTotal ?? 0} rejected
|
||||
</small>
|
||||
</header>
|
||||
<div className="lidar-pack-list">
|
||||
{catalog?.items.map((pack) => (
|
||||
<button
|
||||
type="button"
|
||||
key={pack.packId}
|
||||
data-selected={pack.packId === detail.pack.packId ? "true" : undefined}
|
||||
onClick={() => setSelectedPackId(pack.packId)}
|
||||
>
|
||||
<div>
|
||||
<strong>{pack.sessionId}</strong>
|
||||
<small>
|
||||
{pack.pointFrames.toLocaleString("ru-RU")} кадров ·{" "}
|
||||
{pack.points.toLocaleString("ru-RU")} точек
|
||||
</small>
|
||||
</div>
|
||||
<StatusBadge tone="success">Passed</StatusBadge>
|
||||
</button>
|
||||
))}
|
||||
</div>
|
||||
<footer>
|
||||
{detail.quality.limitations.map((limitation) => (
|
||||
<span key={limitation}>{limitation}</span>
|
||||
))}
|
||||
</footer>
|
||||
</GlassSurface>
|
||||
</>
|
||||
)}
|
||||
</div>
|
||||
);
|
||||
}
|
||||
|
|
@ -57,6 +57,7 @@ import {
|
|||
import { finiteMetric, formatNumber, pipelineLatency, sourceModeLabel } from "../presentation";
|
||||
import type { SceneSettings } from "../sceneSettings";
|
||||
import { PolygonRunWorkspace } from "./PolygonRunWorkspace";
|
||||
import { LidarQualityWorkspace } from "./LidarQualityWorkspace";
|
||||
|
||||
function statusTone(status: CapabilityStatus): "success" | "accent" | "warning" | "neutral" {
|
||||
if (status === "active") return "success";
|
||||
|
|
@ -1306,6 +1307,8 @@ export function WorkspaceRenderer(props: WorkspaceRendererProps) {
|
|||
return <MissionWorkspace {...props} />;
|
||||
case "catalog":
|
||||
return <CatalogWorkspace {...props} />;
|
||||
case "lidar-quality":
|
||||
return <LidarQualityWorkspace definition={props.definition} />;
|
||||
case "polygon-run":
|
||||
return <PolygonRunWorkspace route={props.polygonRunRoute} />;
|
||||
case "device":
|
||||
|
|
|
|||
|
|
@ -0,0 +1,179 @@
|
|||
import assert from "node:assert/strict";
|
||||
import { after, before, test } from "node:test";
|
||||
|
||||
import { createServer } from "vite";
|
||||
|
||||
let server;
|
||||
let parseLidarReplayCatalog;
|
||||
let parseLidarReplayDetail;
|
||||
let fetchLidarReplayCatalog;
|
||||
let fetchLidarReplayDetail;
|
||||
let LidarReplayContractError;
|
||||
let workspaceById;
|
||||
|
||||
before(async () => {
|
||||
server = await createServer({
|
||||
appType: "custom",
|
||||
logLevel: "silent",
|
||||
server: { middlewareMode: true },
|
||||
});
|
||||
({
|
||||
parseLidarReplayCatalog,
|
||||
parseLidarReplayDetail,
|
||||
fetchLidarReplayCatalog,
|
||||
fetchLidarReplayDetail,
|
||||
LidarReplayContractError,
|
||||
} = await server.ssrLoadModule("/src/core/lidar/replayQuality.ts"));
|
||||
({ workspaceById } = await server.ssrLoadModule("/src/productModel.ts"));
|
||||
});
|
||||
|
||||
after(async () => {
|
||||
await server?.close();
|
||||
});
|
||||
|
||||
const packId = `lidar-replay-pack-${"a".repeat(64)}`;
|
||||
|
||||
function summary(overrides = {}) {
|
||||
return {
|
||||
pack_id: packId,
|
||||
session_id: "20260719T220917Z_viewer_live",
|
||||
profile_id: "xgrids-k1-lidar-replay-pack/v2",
|
||||
point_frames: 10,
|
||||
pose_frames: 12,
|
||||
points: 1234,
|
||||
mean_points_per_frame: 123.4,
|
||||
p95_frame_interval_ms: 98.7,
|
||||
pose_coverage_fraction: 0.9,
|
||||
equivalence_status: "passed",
|
||||
logical_content_sha256: "b".repeat(64),
|
||||
created_at_utc: "2026-07-25T00:00:00Z",
|
||||
authority: {
|
||||
commands_enabled: false,
|
||||
navigation_or_safety_accepted: false,
|
||||
},
|
||||
...overrides,
|
||||
};
|
||||
}
|
||||
|
||||
function distribution() {
|
||||
return {
|
||||
sample_count: 10,
|
||||
minimum: 1,
|
||||
mean: 2,
|
||||
p50: 2,
|
||||
p95: 3,
|
||||
maximum: 4,
|
||||
};
|
||||
}
|
||||
|
||||
function catalog(overrides = {}) {
|
||||
return {
|
||||
schema_version: "missioncore.lidar-replay-pack-catalog/v1",
|
||||
configured: true,
|
||||
items: [summary()],
|
||||
valid_total: 1,
|
||||
invalid_total: 0,
|
||||
duplicate_total: 0,
|
||||
access: "read-only",
|
||||
...overrides,
|
||||
};
|
||||
}
|
||||
|
||||
function detail() {
|
||||
return {
|
||||
schema_version: "missioncore.lidar-replay-pack-detail/v1",
|
||||
access: "read-only",
|
||||
pack: summary({ created_at_utc: undefined }),
|
||||
quality: {
|
||||
schema_version: "missioncore.lidar-quality-report/v1",
|
||||
field_retention: {
|
||||
xyz_map: true,
|
||||
raw_xyz: true,
|
||||
raw_rgbi: true,
|
||||
intensity_low_byte: true,
|
||||
source_sequence: true,
|
||||
header_seq_stamp_scaler: true,
|
||||
host_epoch_ns: true,
|
||||
host_monotonic_ns: true,
|
||||
},
|
||||
point_count_per_frame: distribution(),
|
||||
point_frame_interval_ms: distribution(),
|
||||
intensity_0_255: distribution(),
|
||||
pose_binding: {
|
||||
threshold_ms: 100,
|
||||
covered_point_frames: 9,
|
||||
coverage_fraction: 0.9,
|
||||
nearest_delta_ms: distribution(),
|
||||
},
|
||||
limitations: ["vendor-mapped increment"],
|
||||
},
|
||||
equivalence: {
|
||||
schema_version: "missioncore.lidar-live-replay-equivalence/v1",
|
||||
status: "passed",
|
||||
arrays_compared: 24,
|
||||
array_mismatches: 0,
|
||||
},
|
||||
readiness: {
|
||||
stages: [
|
||||
{
|
||||
stage: "lidar-3d-detection",
|
||||
readiness: "degraded",
|
||||
reasons: ["pretrained-domain-expects-sensor-scan"],
|
||||
},
|
||||
{
|
||||
stage: "lidar-inertial-slam",
|
||||
readiness: "blocked",
|
||||
reasons: ["lio-requires-unregistered-sensor-scans"],
|
||||
},
|
||||
],
|
||||
},
|
||||
};
|
||||
}
|
||||
|
||||
function jsonResponse(payload, status = 200) {
|
||||
return new Response(JSON.stringify(payload), {
|
||||
status,
|
||||
headers: { "content-type": "application/json" },
|
||||
});
|
||||
}
|
||||
|
||||
test("LiDAR catalog and detail decode only passed, path-free evidence", () => {
|
||||
const parsedCatalog = parseLidarReplayCatalog(catalog());
|
||||
const parsedDetail = parseLidarReplayDetail(detail());
|
||||
|
||||
assert.equal(parsedCatalog.items[0].packId, packId);
|
||||
assert.equal(parsedDetail.quality.fieldRetention.raw_rgbi, true);
|
||||
assert.equal(parsedDetail.equivalence.arrayMismatches, 0);
|
||||
assert.equal(parsedDetail.stages[0].readiness, "degraded");
|
||||
assert.equal("path" in parsedCatalog.items[0], false);
|
||||
});
|
||||
|
||||
test("LiDAR contract refuses replay that did not pass equivalence", () => {
|
||||
assert.throws(
|
||||
() => parseLidarReplayCatalog(catalog({
|
||||
items: [summary({ equivalence_status: "failed" })],
|
||||
})),
|
||||
LidarReplayContractError,
|
||||
);
|
||||
});
|
||||
|
||||
test("LiDAR fetchers use read-only endpoints and workspace is registered", async () => {
|
||||
const calls = [];
|
||||
const fetcher = async (input, init) => {
|
||||
calls.push({ input: String(input), method: init?.method });
|
||||
return String(input).includes(packId)
|
||||
? jsonResponse(detail())
|
||||
: jsonResponse(catalog());
|
||||
};
|
||||
const parsedCatalog = await fetchLidarReplayCatalog({ fetcher });
|
||||
const parsedDetail = await fetchLidarReplayDetail(packId, { fetcher });
|
||||
|
||||
assert.equal(parsedCatalog.validTotal, 1);
|
||||
assert.equal(parsedDetail.pack.packId, packId);
|
||||
assert.deepEqual(calls, [
|
||||
{ input: "/api/v1/lidar/replay-packs?limit=50", method: "GET" },
|
||||
{ input: `/api/v1/lidar/replay-packs/${packId}`, method: "GET" },
|
||||
]);
|
||||
assert.equal(workspaceById("lidar-quality").root, "data");
|
||||
assert.equal(workspaceById("lidar-quality").kind, "lidar-quality");
|
||||
});
|
||||
|
|
@ -7,6 +7,13 @@ successfully is not evidence that its LiDAR assumptions are satisfied. In
|
|||
particular, the accepted E10 replay pack v1 has no intensity, and the current K1
|
||||
stream is a vendor map increment rather than an unregistered sensor sweep.
|
||||
|
||||
`missioncore.lidar-replay-pack/v2` closes the field-retention gap without
|
||||
rewriting v1. Its manifest binds exact raw/metadata evidence, logical point/pose
|
||||
content, an immutable scanner-quality report and a source-vs-persisted
|
||||
equivalence report. The React surface reads those reports through the read-only
|
||||
`/api/v1/lidar/replay-packs` boundary; CUDA/TensorRT and ROS do not move into the
|
||||
browser.
|
||||
|
||||
## Boundary
|
||||
|
||||
```text
|
||||
|
|
|
|||
|
|
@ -1,7 +1,7 @@
|
|||
# LiDAR worker: product value, evidence boundary and implementation roadmap
|
||||
|
||||
Date: 2026-07-25
|
||||
Status: accepted architecture plan; L0 contract implemented
|
||||
Status: accepted architecture plan; L0 and L1 implemented
|
||||
Scope: real scanner records, replay and future live shadow processing
|
||||
Explicitly out of scope: Unreal U0/U1, Gaussian assets and simulator rendering
|
||||
|
||||
|
|
@ -63,6 +63,12 @@ The executable truth is
|
|||
`src/k1link/compute/lidar_contract.py`. It assesses each stage as `ready`,
|
||||
`degraded` or `blocked` and refuses to infer absent sensor fields.
|
||||
|
||||
`missioncore.lidar-replay-pack/v2` is now the admitted field-retaining replay
|
||||
input. It preserves raw integer XYZ, derived map XYZ, raw uint32 `rgbi`, its
|
||||
verified intensity low byte, source/payload identity, header seq/stamp/scaler,
|
||||
exact host epoch/monotonic receive times and the independent pose stream. Pack
|
||||
v1 remains immutable for E10–E26.
|
||||
|
||||
## 3. Current system result
|
||||
|
||||
The existing camera-heavy E10–E26 line is valuable and remains in place:
|
||||
|
|
@ -156,21 +162,36 @@ memory, zero-copy or batching optimizations are accepted.
|
|||
existing external worker report.
|
||||
- [x] Keep authority diagnostic-only.
|
||||
|
||||
### L1 — lossless replay v2 and scanner quality
|
||||
### L1 — lossless replay v2 and scanner quality — complete
|
||||
|
||||
- [ ] Create a new replay schema; do not rewrite pack v1.
|
||||
- [ ] Preserve XYZ, intensity, source sequence/header stamp/scaler and exact
|
||||
- [x] Create a new replay schema; do not rewrite pack v1.
|
||||
- [x] Preserve XYZ, intensity, source sequence/header stamp/scaler and exact
|
||||
host capture/receive times.
|
||||
- [ ] Record explicitly absent ring, per-point time and IMU fields.
|
||||
- [ ] Add bounded reports for frame gaps, arrival jitter, points/frame, range
|
||||
distribution, intensity distribution and pose coverage.
|
||||
- [ ] Compare live-vs-replay decoding byte-for-byte on a frozen slice.
|
||||
- [ ] Publish the report to the React observation view without bundling a
|
||||
- [x] Record explicitly absent ring, per-point time and IMU fields.
|
||||
- [x] Add immutable reports for sequence gaps, arrival jitter, points/frame,
|
||||
intensity distribution and pose coverage. Sensor-frame range remains
|
||||
explicitly unavailable because the source is a vendor map increment.
|
||||
- [x] Compare source native capture vs persisted replay fields byte-for-byte on
|
||||
a frozen real slice.
|
||||
- [x] Publish the report to the React observation view without bundling a
|
||||
desktop renderer.
|
||||
|
||||
Exit: a recording cannot be called detector-ready when required fields were
|
||||
dropped, and an operator can distinguish scanner dropout from model failure.
|
||||
|
||||
Accepted real slice:
|
||||
|
||||
- session `20260719T220917Z_viewer_live`;
|
||||
- 66 point frames, 226,963 points and 70 pose frames;
|
||||
- 24 arrays compared, zero mismatches, identical logical content SHA-256;
|
||||
- pose coverage 100% at a 100 ms host-arrival gate;
|
||||
- 3,439 mean points/frame;
|
||||
- point-frame interval p50 80.4 ms, p95 186.6 ms and maximum 1,153.4 ms;
|
||||
- intensity p50 248 and p95 255 on the verified `[0, 255]` low byte.
|
||||
|
||||
The long interval tail is evidence to investigate in the scanner/transport
|
||||
quality line. It is not repaired or hidden by replay.
|
||||
|
||||
### L2 — geometric baseline
|
||||
|
||||
- [ ] Run Patchwork++ over the frozen XYZI slice.
|
||||
|
|
|
|||
|
|
@ -45,7 +45,8 @@ be mistaken for geometric validity.
|
|||
- Nvblox is blocked until the LiDAR scan geometry and timing/pose contract are
|
||||
admitted.
|
||||
- LiDAR odometry and LiDAR-inertial SLAM are blocked for current K1 evidence.
|
||||
- L1 lossless replay and scanner-quality telemetry precede new model installs.
|
||||
- L1 lossless replay and scanner-quality telemetry are implemented and precede
|
||||
new model installs.
|
||||
- Future scanners, simulation providers and datasets can use the same
|
||||
readiness contract without being forced into K1-specific code.
|
||||
|
||||
|
|
|
|||
|
|
@ -0,0 +1,62 @@
|
|||
# ADR 0019: preserve LiDAR fields before detector evaluation
|
||||
|
||||
Date: 2026-07-25
|
||||
Status: accepted and implemented
|
||||
|
||||
## Context
|
||||
|
||||
The accepted E10 LiDAR replay pack v1 is bound to the E10–E26 result line. It
|
||||
stores camera-selected map XYZ and pose but drops the verified intensity byte,
|
||||
raw `rgbi`, raw integer coordinates, source header fields and exact host
|
||||
timestamps. Mutating that schema would invalidate historical evidence while
|
||||
still leaving detector and scanner-quality assumptions implicit.
|
||||
|
||||
Mission Core also needs one operator surface that can distinguish capture
|
||||
quality from later model quality. A successful worker process or a visually
|
||||
plausible point cloud is not that evidence.
|
||||
|
||||
## Decision
|
||||
|
||||
1. Add the separate immutable `missioncore.lidar-replay-pack/v2`; never rewrite
|
||||
E10 replay pack v1.
|
||||
2. Bind each v2 pack to the source raw capture and aligned metadata hashes.
|
||||
3. Preserve point capture sequence, payload size, exact host epoch and
|
||||
monotonic receive times, header seq/stamp/scaler, raw integer XYZ, derived
|
||||
map XYZ, raw uint32 `rgbi` and its verified uint8 intensity low byte.
|
||||
4. Preserve pose messages independently with their source/header/timing,
|
||||
position, quaternion, distance and accuracy fields.
|
||||
5. Hash the canonical logical arrays, not only the compressed NPZ bytes.
|
||||
6. Re-decode the immutable source and compare all persisted arrays before a
|
||||
pack is accepted. Any mismatch fails the pack.
|
||||
7. Publish a separate hashed scanner-quality report: cadence, density,
|
||||
intensity, sequence anomalies and nearest-pose coverage.
|
||||
8. Expose only path-free, read-only catalog/detail responses to React.
|
||||
9. Deduplicate superseded producers by logical content identity in the UI.
|
||||
10. Keep command, navigation and safety authority false.
|
||||
|
||||
## Consequences
|
||||
|
||||
- PointPillars now has retained XYZI evidence for replay, but remains degraded
|
||||
because K1 supplies vendor-mapped increments rather than admitted raw sweeps.
|
||||
- Scanner/transport timing tails become visible before model tuning.
|
||||
- Reprocessing can compare new worker/model generations against exactly the
|
||||
same point and pose evidence.
|
||||
- The browser displays qualification facts but never loads raw NPZ payloads or
|
||||
runs GPU perception.
|
||||
- Ring, per-point time, scan geometry and IMU remain explicitly absent.
|
||||
- Nvblox, LiDAR odometry and LIO/SLAM remain blocked.
|
||||
|
||||
## Accepted real evidence
|
||||
|
||||
The first accepted real pack was built from
|
||||
`20260719T220917Z_viewer_live`: 66 point frames, 226,963 points, 70 pose frames,
|
||||
24 exact array comparisons and zero mismatches. Pose coverage was 100% at the
|
||||
100 ms host-arrival threshold. Point-frame interval was p50 80.4 ms, p95
|
||||
186.6 ms and maximum 1,153.4 ms.
|
||||
|
||||
## References
|
||||
|
||||
- `src/k1link/compute/lidar_replay.py`
|
||||
- `src/k1link/web/lidar_api.py`
|
||||
- `apps/control-station/src/workspaces/LidarQualityWorkspace.tsx`
|
||||
- `docs/13_LIDAR_WORKER_PRODUCT_AND_ROADMAP.md`
|
||||
|
|
@ -0,0 +1,56 @@
|
|||
#!/usr/bin/env python3
|
||||
"""Build a field-retaining LiDAR replay pack from immutable K1 capture evidence."""
|
||||
|
||||
from __future__ import annotations
|
||||
|
||||
import argparse
|
||||
import json
|
||||
from pathlib import Path
|
||||
|
||||
from k1link.compute import LidarReplayPackV2, build_lidar_replay_pack_v2
|
||||
|
||||
|
||||
def arguments() -> argparse.Namespace:
|
||||
parser = argparse.ArgumentParser()
|
||||
parser.add_argument("--capture", type=Path, required=True)
|
||||
parser.add_argument("--output-root", type=Path, required=True)
|
||||
parser.add_argument("--session-id")
|
||||
parser.add_argument("--pose-coverage-threshold-ms", type=float, default=100.0)
|
||||
return parser.parse_args()
|
||||
|
||||
|
||||
def main() -> int:
|
||||
args = arguments()
|
||||
output = build_lidar_replay_pack_v2(
|
||||
args.capture,
|
||||
args.output_root,
|
||||
session_id=args.session_id,
|
||||
pose_coverage_threshold_ms=args.pose_coverage_threshold_ms,
|
||||
)
|
||||
pack = LidarReplayPackV2(output)
|
||||
try:
|
||||
print(
|
||||
json.dumps(
|
||||
{
|
||||
"pack_id": pack.pack_id,
|
||||
"output": str(output),
|
||||
"session_id": pack.identity["session_id"],
|
||||
"point_frames": pack.point_frame_count,
|
||||
"pose_frames": pack.pose_frame_count,
|
||||
"points": pack.point_count,
|
||||
"equivalence": pack.equivalence["status"],
|
||||
"pose_coverage_fraction": pack.quality["pose_binding"][
|
||||
"coverage_fraction"
|
||||
],
|
||||
},
|
||||
ensure_ascii=False,
|
||||
sort_keys=True,
|
||||
)
|
||||
)
|
||||
finally:
|
||||
pack.close()
|
||||
return 0
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
raise SystemExit(main())
|
||||
|
|
@ -50,6 +50,7 @@ from .lab_instances import (
|
|||
)
|
||||
from .lidar_contract import (
|
||||
K1_LAB_LIDAR_PACK_V1_PROFILE,
|
||||
K1_LIDAR_PACK_V2_PROFILE,
|
||||
K1_LIVE_LIDAR_PROFILE,
|
||||
LIDAR_EVIDENCE_PROFILE_SCHEMA,
|
||||
LIDAR_READINESS_SCHEMA,
|
||||
|
|
@ -68,6 +69,19 @@ from .lidar_contract import (
|
|||
lidar_readiness_document,
|
||||
sensor_frame_xyzi,
|
||||
)
|
||||
from .lidar_replay import (
|
||||
LIDAR_EQUIVALENCE_REPORT_SCHEMA,
|
||||
LIDAR_QUALITY_REPORT_SCHEMA,
|
||||
LIDAR_REPLAY_PACK_SCHEMA,
|
||||
LidarReplayError,
|
||||
LidarReplayPackV2,
|
||||
LidarReplayPointFrame,
|
||||
LidarReplayPoseFrame,
|
||||
build_lidar_replay_pack_v2,
|
||||
lidar_pack_catalog_item,
|
||||
lidar_pack_detail,
|
||||
verify_lidar_replay_equivalence,
|
||||
)
|
||||
from .live_perception import (
|
||||
LIVE_INGRESS_SCHEMA,
|
||||
LIVE_INGRESS_WIRE_SCHEMA,
|
||||
|
|
@ -139,7 +153,10 @@ __all__ = [
|
|||
"EvaluationPackFrame",
|
||||
"LatestWinsQueue",
|
||||
"LIDAR_EVIDENCE_PROFILE_SCHEMA",
|
||||
"LIDAR_EQUIVALENCE_REPORT_SCHEMA",
|
||||
"LIDAR_QUALITY_REPORT_SCHEMA",
|
||||
"LIDAR_READINESS_SCHEMA",
|
||||
"LIDAR_REPLAY_PACK_SCHEMA",
|
||||
"LIVE_INGRESS_SCHEMA",
|
||||
"LIVE_INGRESS_WIRE_SCHEMA",
|
||||
"LiveIngressEvent",
|
||||
|
|
@ -152,6 +169,10 @@ __all__ = [
|
|||
"LidarPoseStatus",
|
||||
"LidarQualityMonitor",
|
||||
"LidarReadiness",
|
||||
"LidarReplayError",
|
||||
"LidarReplayPackV2",
|
||||
"LidarReplayPointFrame",
|
||||
"LidarReplayPoseFrame",
|
||||
"LidarRepresentation",
|
||||
"LidarStageAssessment",
|
||||
"LidarTimeBasis",
|
||||
|
|
@ -167,6 +188,7 @@ __all__ = [
|
|||
"MultiratePerceptionQualificationResult",
|
||||
"QUALIFICATION_POLICY",
|
||||
"K1_LAB_LIDAR_PACK_V1_PROFILE",
|
||||
"K1_LIDAR_PACK_V2_PROFILE",
|
||||
"K1_LIVE_LIDAR_PROFILE",
|
||||
"QueueSnapshot",
|
||||
"RecordedCalibratedFusion",
|
||||
|
|
@ -201,6 +223,7 @@ __all__ = [
|
|||
"validate_multirate_perception_qualification_result",
|
||||
"prepare_recorded_qualification_slice",
|
||||
"assess_lidar_profile",
|
||||
"build_lidar_replay_pack_v2",
|
||||
"DetectionFrame",
|
||||
"ObjectDetection",
|
||||
"RecordedPerceptionOverlayError",
|
||||
|
|
@ -221,5 +244,8 @@ __all__ = [
|
|||
"validate_tracked_fusion_qualification_result",
|
||||
"validate_annotation_workspace",
|
||||
"lidar_readiness_document",
|
||||
"lidar_pack_catalog_item",
|
||||
"lidar_pack_detail",
|
||||
"sensor_frame_xyzi",
|
||||
"verify_lidar_replay_equivalence",
|
||||
]
|
||||
|
|
|
|||
|
|
@ -621,3 +621,17 @@ K1_LAB_LIDAR_PACK_V1_PROFILE: Final = LidarEvidenceProfile(
|
|||
lidar_imu_extrinsic_available=False,
|
||||
camera_extrinsic_available=True,
|
||||
)
|
||||
|
||||
K1_LIDAR_PACK_V2_PROFILE: Final = LidarEvidenceProfile(
|
||||
profile_id="xgrids-k1-lidar-replay-pack/v2",
|
||||
representation=LidarRepresentation.VENDOR_MAP_INCREMENT,
|
||||
coordinate_space=LidarCoordinateSpace.MAP,
|
||||
coordinate_frame="map",
|
||||
frame_time_basis=LidarTimeBasis.HOST_ARRIVAL,
|
||||
point_fields=(LidarPointField.XYZ, LidarPointField.INTENSITY),
|
||||
pose_status=LidarPoseStatus.BEST_EFFORT,
|
||||
scan_geometry_known=False,
|
||||
imu_samples_available=False,
|
||||
lidar_imu_extrinsic_available=False,
|
||||
camera_extrinsic_available=True,
|
||||
)
|
||||
|
|
|
|||
File diff suppressed because it is too large
Load Diff
|
|
@ -33,6 +33,7 @@ from k1link.sessions import (
|
|||
SessionStore,
|
||||
)
|
||||
from k1link.web.device_plugin_composition import load_installed_device_plugins
|
||||
from k1link.web.lidar_api import build_lidar_router
|
||||
from k1link.web.plugin_catalog import DevicePluginCatalog, PluginCatalogError
|
||||
from k1link.web.plugin_runtime import (
|
||||
STATE_READ_ACTION_ID,
|
||||
|
|
@ -398,6 +399,17 @@ app.include_router(
|
|||
)
|
||||
)
|
||||
app.include_router(build_polygon_router())
|
||||
app.include_router(
|
||||
build_lidar_router(
|
||||
root_provider=lambda: (
|
||||
REPOSITORY_ROOT
|
||||
/ ".runtime"
|
||||
/ "compute-experiments"
|
||||
/ "lidar-replay-v2"
|
||||
/ "packs"
|
||||
)
|
||||
)
|
||||
)
|
||||
|
||||
|
||||
frontend_dist = REPOSITORY_ROOT / "apps" / "control-station" / "dist"
|
||||
|
|
|
|||
|
|
@ -0,0 +1,110 @@
|
|||
from __future__ import annotations
|
||||
|
||||
import os
|
||||
import re
|
||||
from collections.abc import Callable
|
||||
from pathlib import Path
|
||||
from typing import Any, Final
|
||||
|
||||
from fastapi import APIRouter, HTTPException, Query
|
||||
|
||||
from k1link.compute import (
|
||||
LidarReplayError,
|
||||
LidarReplayPackV2,
|
||||
lidar_pack_catalog_item,
|
||||
lidar_pack_detail,
|
||||
)
|
||||
|
||||
LIDAR_CATALOG_SCHEMA: Final = "missioncore.lidar-replay-pack-catalog/v1"
|
||||
_PACK_ID = re.compile(r"^lidar-replay-pack-[a-f0-9]{64}$")
|
||||
RootProvider = Callable[[], Path | None]
|
||||
|
||||
|
||||
def configured_lidar_replay_root() -> Path | None:
|
||||
value = os.environ.get("MISSIONCORE_LIDAR_REPLAY_ROOT", "").strip()
|
||||
return Path(value).expanduser().absolute() if value else None
|
||||
|
||||
|
||||
def build_lidar_router(
|
||||
*,
|
||||
root_provider: RootProvider = configured_lidar_replay_root,
|
||||
) -> APIRouter:
|
||||
router = APIRouter(prefix="/api/v1/lidar", tags=["lidar"])
|
||||
|
||||
@router.get("/replay-packs")
|
||||
def list_lidar_replay_packs(
|
||||
limit: int = Query(default=20, ge=1, le=100),
|
||||
) -> dict[str, Any]:
|
||||
root = root_provider()
|
||||
if root is None or not root.is_dir():
|
||||
return {
|
||||
"schema_version": LIDAR_CATALOG_SCHEMA,
|
||||
"configured": root is not None,
|
||||
"items": [],
|
||||
"valid_total": 0,
|
||||
"invalid_total": 0,
|
||||
"duplicate_total": 0,
|
||||
"access": "read-only",
|
||||
}
|
||||
items: list[dict[str, object]] = []
|
||||
invalid_total = 0
|
||||
duplicate_total = 0
|
||||
seen_logical_content: set[str] = set()
|
||||
candidates = sorted(
|
||||
(
|
||||
candidate
|
||||
for candidate in root.iterdir()
|
||||
if candidate.is_dir() and _PACK_ID.fullmatch(candidate.name) is not None
|
||||
),
|
||||
key=lambda candidate: candidate.stat().st_mtime_ns,
|
||||
reverse=True,
|
||||
)
|
||||
for candidate in candidates:
|
||||
try:
|
||||
pack = LidarReplayPackV2(candidate)
|
||||
try:
|
||||
item = lidar_pack_catalog_item(pack)
|
||||
logical_content = str(item["logical_content_sha256"])
|
||||
if logical_content in seen_logical_content:
|
||||
duplicate_total += 1
|
||||
continue
|
||||
seen_logical_content.add(logical_content)
|
||||
item["created_at_utc"] = pack.manifest.get("created_at_utc")
|
||||
items.append(item)
|
||||
finally:
|
||||
pack.close()
|
||||
except (LidarReplayError, OSError):
|
||||
invalid_total += 1
|
||||
return {
|
||||
"schema_version": LIDAR_CATALOG_SCHEMA,
|
||||
"configured": True,
|
||||
"items": items[:limit],
|
||||
"valid_total": len(items),
|
||||
"invalid_total": invalid_total,
|
||||
"duplicate_total": duplicate_total,
|
||||
"access": "read-only",
|
||||
}
|
||||
|
||||
@router.get("/replay-packs/{pack_id}")
|
||||
def get_lidar_replay_pack(pack_id: str) -> dict[str, object]:
|
||||
if _PACK_ID.fullmatch(pack_id) is None:
|
||||
raise HTTPException(status_code=404, detail="LiDAR replay pack не найден")
|
||||
root = root_provider()
|
||||
if root is None or not root.is_dir():
|
||||
raise HTTPException(status_code=503, detail="LiDAR replay storage не настроен")
|
||||
candidate = root / pack_id
|
||||
if not candidate.is_dir():
|
||||
raise HTTPException(status_code=404, detail="LiDAR replay pack не найден")
|
||||
try:
|
||||
pack = LidarReplayPackV2(candidate)
|
||||
try:
|
||||
return lidar_pack_detail(pack)
|
||||
finally:
|
||||
pack.close()
|
||||
except (LidarReplayError, OSError) as exc:
|
||||
raise HTTPException(
|
||||
status_code=409,
|
||||
detail="LiDAR replay pack не прошёл проверку целостности",
|
||||
) from exc
|
||||
|
||||
return router
|
||||
|
|
@ -0,0 +1,264 @@
|
|||
from __future__ import annotations
|
||||
|
||||
import json
|
||||
import struct
|
||||
from pathlib import Path
|
||||
|
||||
import lz4.block
|
||||
import pytest
|
||||
from fastapi import APIRouter
|
||||
from fastapi.routing import APIRoute
|
||||
|
||||
from k1link.compute import (
|
||||
K1_LIDAR_PACK_V2_PROFILE,
|
||||
LidarPipelineStage,
|
||||
LidarReadiness,
|
||||
LidarReplayError,
|
||||
LidarReplayPackV2,
|
||||
assess_lidar_profile,
|
||||
build_lidar_replay_pack_v2,
|
||||
verify_lidar_replay_equivalence,
|
||||
)
|
||||
from k1link.device_plugins.xgrids_k1.mqtt.capture import FRAME_HEADER, RAW_MAGIC
|
||||
from k1link.web.lidar_api import build_lidar_router
|
||||
|
||||
|
||||
def _varint(value: int) -> bytes:
|
||||
encoded = bytearray()
|
||||
while value > 0x7F:
|
||||
encoded.append((value & 0x7F) | 0x80)
|
||||
value >>= 7
|
||||
encoded.append(value)
|
||||
return bytes(encoded)
|
||||
|
||||
|
||||
def _key(number: int, wire_type: int) -> bytes:
|
||||
return _varint((number << 3) | wire_type)
|
||||
|
||||
|
||||
def _uint(number: int, value: int) -> bytes:
|
||||
return _key(number, 0) + _varint(value)
|
||||
|
||||
|
||||
def _sint(number: int, value: int) -> bytes:
|
||||
zigzag = (value << 1) ^ (value >> 63)
|
||||
return _uint(number, zigzag & 0xFFFFFFFFFFFFFFFF)
|
||||
|
||||
|
||||
def _bytes(number: int, value: bytes) -> bytes:
|
||||
return _key(number, 2) + _varint(len(value)) + value
|
||||
|
||||
|
||||
def _fixed32(number: int, value: float) -> bytes:
|
||||
return _key(number, 5) + struct.pack("<f", value)
|
||||
|
||||
|
||||
def _fixed64(number: int, value: float) -> bytes:
|
||||
return _key(number, 1) + struct.pack("<d", value)
|
||||
|
||||
|
||||
def _header(sequence: int, stamp: int, scaler: int = 1000) -> bytes:
|
||||
return b"".join(
|
||||
(
|
||||
_uint(1, sequence),
|
||||
_sint(2, stamp),
|
||||
_sint(3, scaler),
|
||||
_bytes(4, b"device-redacted"),
|
||||
_bytes(5, b"session-redacted"),
|
||||
)
|
||||
)
|
||||
|
||||
|
||||
def _pcl_payload(sequence: int, stamp: int, first_rgbi: int) -> bytes:
|
||||
point_1 = (
|
||||
_sint(1, 1000 * sequence)
|
||||
+ _sint(2, -2000)
|
||||
+ _sint(3, 500)
|
||||
+ _uint(4, first_rgbi)
|
||||
)
|
||||
point_2 = (
|
||||
_sint(1, -250)
|
||||
+ _sint(2, sequence)
|
||||
+ _sint(3, 4000)
|
||||
+ _uint(4, 0xAABBCC09)
|
||||
)
|
||||
report = (
|
||||
_bytes(1, _header(sequence, stamp))
|
||||
+ _bytes(2, point_1)
|
||||
+ _bytes(2, point_2)
|
||||
)
|
||||
compressed = lz4.block.compress(report, store_size=False)
|
||||
return _uint(3, len(report)) + _bytes(4, compressed)
|
||||
|
||||
|
||||
def _pose_payload(sequence: int, stamp: int) -> bytes:
|
||||
position = (
|
||||
_fixed64(1, float(sequence))
|
||||
+ _fixed64(2, -2.5)
|
||||
+ _fixed64(3, 3.75)
|
||||
)
|
||||
orientation = (
|
||||
_fixed64(1, 0.0)
|
||||
+ _fixed64(2, 0.0)
|
||||
+ _fixed64(3, 0.0)
|
||||
+ _fixed64(4, 1.0)
|
||||
)
|
||||
pose = _bytes(1, position) + _bytes(2, orientation)
|
||||
stamped = _sint(1, stamp + 1) + _bytes(2, pose)
|
||||
return (
|
||||
_bytes(1, _header(sequence, stamp))
|
||||
+ _bytes(2, stamped)
|
||||
+ _fixed32(3, 12.5)
|
||||
+ _fixed32(4, 0.001)
|
||||
)
|
||||
|
||||
|
||||
def _capture(tmp_path: Path) -> Path:
|
||||
session = tmp_path / "session-001"
|
||||
root = session / "captures" / "mqtt_live"
|
||||
root.mkdir(parents=True)
|
||||
messages = [
|
||||
("lixel/application/report/lio_pcl", _pcl_payload(10, 1_000, 0x11223344)),
|
||||
("lixel/application/report/lio_pose", _pose_payload(20, 1_010)),
|
||||
("lixel/application/report/lio_pcl", _pcl_payload(11, 2_000, 0x55667788)),
|
||||
("lixel/application/report/lio_pose", _pose_payload(21, 2_010)),
|
||||
]
|
||||
raw = bytearray(RAW_MAGIC)
|
||||
metadata: list[str] = []
|
||||
for sequence, (topic, payload) in enumerate(messages, start=1):
|
||||
topic_bytes = topic.encode()
|
||||
raw.extend(FRAME_HEADER.pack(len(topic_bytes), len(payload)))
|
||||
raw.extend(topic_bytes)
|
||||
raw.extend(payload)
|
||||
metadata.append(
|
||||
json.dumps(
|
||||
{
|
||||
"schema_version": 1,
|
||||
"record_type": "message",
|
||||
"sequence": sequence,
|
||||
"received_at_epoch_ns": 1_000_000_000 + sequence * 10_000_000,
|
||||
"received_monotonic_ns": 5_000_000_000 + sequence * 10_000_000,
|
||||
},
|
||||
separators=(",", ":"),
|
||||
)
|
||||
)
|
||||
capture = root / "mqtt.raw.k1mqtt"
|
||||
capture.write_bytes(raw)
|
||||
(root / "mqtt.metadata.jsonl").write_text(
|
||||
"\n".join(metadata) + "\n",
|
||||
encoding="utf-8",
|
||||
)
|
||||
(root / "mqtt.timeline.origin.json").write_text(
|
||||
json.dumps(
|
||||
{
|
||||
"schema_version": 1,
|
||||
"started_at_epoch_ns": 1_000_000_000,
|
||||
"started_monotonic_ns": 5_000_000_000,
|
||||
}
|
||||
),
|
||||
encoding="utf-8",
|
||||
)
|
||||
return capture
|
||||
|
||||
|
||||
def _endpoint(router: APIRouter, path: str) -> object:
|
||||
for route in router.routes:
|
||||
if isinstance(route, APIRoute) and route.path == path and "GET" in route.methods:
|
||||
return route.endpoint
|
||||
raise AssertionError(f"GET {path} route is missing")
|
||||
|
||||
|
||||
def test_lidar_replay_v2_retains_fields_and_passes_equivalence(tmp_path: Path) -> None:
|
||||
capture = _capture(tmp_path)
|
||||
output = build_lidar_replay_pack_v2(capture, tmp_path / "packs")
|
||||
pack = LidarReplayPackV2(output)
|
||||
try:
|
||||
assert pack.identity["session_id"] == "session-001"
|
||||
assert pack.identity["lidar_evidence_profile"] == K1_LIDAR_PACK_V2_PROFILE.to_dict()
|
||||
assert pack.point_frame_count == 2
|
||||
assert pack.pose_frame_count == 2
|
||||
assert pack.point_count == 4
|
||||
|
||||
point = pack.point_frame(0)
|
||||
assert point.capture_sequence == 1
|
||||
assert point.received_at_epoch_ns == 1_010_000_000
|
||||
assert point.received_monotonic_ns == 5_010_000_000
|
||||
assert point.header_seq == 10
|
||||
assert point.header_stamp == 1_000
|
||||
assert point.scaler == 1_000
|
||||
assert point.raw_xyz.tolist() == [[10_000, -2_000, 500], [-250, 10, 4_000]]
|
||||
assert point.xyz_map.tolist() == [[10.0, -2.0, 0.5], [-0.25, 0.01, 4.0]]
|
||||
assert point.rgbi.tolist() == [0x11223344, 0xAABBCC09]
|
||||
assert point.intensity.tolist() == [0x44, 0x09]
|
||||
assert point.decoded_view().intensities == bytes((0x44, 0x09))
|
||||
|
||||
pose = pack.pose_frame(0)
|
||||
assert pose.capture_sequence == 2
|
||||
assert pose.header_seq == 20
|
||||
assert pose.pose_stamp == 1_011
|
||||
assert pose.position_map == (20.0, -2.5, 3.75)
|
||||
assert pose.decoded_view().frame_id == "map"
|
||||
|
||||
assert pack.quality["field_retention"]["raw_rgbi"] is True
|
||||
assert pack.quality["field_retention"]["host_monotonic_ns"] is True
|
||||
assert pack.quality["sensor_range_m"]["sample_count"] == 0
|
||||
assert pack.quality["sensor_range_status"].startswith("unavailable-")
|
||||
assert pack.quality["pose_binding"]["coverage_fraction"] == pytest.approx(1.0)
|
||||
assert pack.equivalence["status"] == "passed"
|
||||
assert pack.equivalence["array_mismatches"] == 0
|
||||
rerun = verify_lidar_replay_equivalence(capture, pack)
|
||||
assert rerun["status"] == "passed"
|
||||
finally:
|
||||
pack.close()
|
||||
|
||||
assert build_lidar_replay_pack_v2(capture, tmp_path / "packs") == output
|
||||
|
||||
|
||||
def test_lidar_replay_v2_unblocks_detector_input_but_not_mapping() -> None:
|
||||
assessments = {
|
||||
item.stage: item for item in assess_lidar_profile(K1_LIDAR_PACK_V2_PROFILE)
|
||||
}
|
||||
assert (
|
||||
assessments[LidarPipelineStage.LIDAR_3D_DETECTION].readiness
|
||||
is LidarReadiness.DEGRADED
|
||||
)
|
||||
assert (
|
||||
assessments[LidarPipelineStage.LIDAR_INERTIAL_SLAM].readiness
|
||||
is LidarReadiness.BLOCKED
|
||||
)
|
||||
assert (
|
||||
assessments[LidarPipelineStage.NVIDIA_NVBLOX].readiness
|
||||
is LidarReadiness.BLOCKED
|
||||
)
|
||||
|
||||
|
||||
def test_lidar_replay_v2_fails_closed_without_exact_host_timing(
|
||||
tmp_path: Path,
|
||||
) -> None:
|
||||
capture = _capture(tmp_path)
|
||||
capture.with_name("mqtt.metadata.jsonl").unlink()
|
||||
with pytest.raises(LidarReplayError, match="exact host timing"):
|
||||
build_lidar_replay_pack_v2(capture, tmp_path / "packs")
|
||||
|
||||
|
||||
def test_lidar_api_exposes_path_free_quality_and_equivalence(tmp_path: Path) -> None:
|
||||
capture = _capture(tmp_path)
|
||||
root = tmp_path / "packs"
|
||||
output = build_lidar_replay_pack_v2(capture, root)
|
||||
router = build_lidar_router(root_provider=lambda: root)
|
||||
|
||||
catalog_route = _endpoint(router, "/api/v1/lidar/replay-packs")
|
||||
detail_route = _endpoint(router, "/api/v1/lidar/replay-packs/{pack_id}")
|
||||
catalog = catalog_route(limit=20) # type: ignore[operator]
|
||||
detail = detail_route(pack_id=output.name) # type: ignore[operator]
|
||||
|
||||
assert catalog["schema_version"] == "missioncore.lidar-replay-pack-catalog/v1"
|
||||
assert catalog["valid_total"] == 1
|
||||
assert catalog["invalid_total"] == 0
|
||||
assert catalog["items"][0]["equivalence_status"] == "passed"
|
||||
assert detail["pack"]["pack_id"] == output.name
|
||||
assert detail["quality"]["field_retention"]["raw_rgbi"] is True
|
||||
assert detail["equivalence"]["status"] == "passed"
|
||||
assert detail["access"] == "read-only"
|
||||
serialized = repr({"catalog": catalog, "detail": detail})
|
||||
assert str(tmp_path) not in serialized
|
||||
Loading…
Reference in New Issue