Wideband autonomous SDR analysis engine forked from sdr-visual-suite
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  1. const qs = (id) => document.getElementById(id);
  2. const navCanvas = qs('navCanvas');
  3. const spectrumCanvas = qs('spectrum');
  4. const waterfallCanvas = qs('waterfall');
  5. const occupancyCanvas = qs('occupancy');
  6. const timelineCanvas = qs('timeline');
  7. const detailSpectrogram = qs('detailSpectrogram');
  8. const signalPopover = qs('signalPopover');
  9. const wsBadge = qs('wsBadge');
  10. const metaLine = qs('metaLine');
  11. const heroSubtitle = qs('heroSubtitle');
  12. const configStatusEl = qs('configStatus');
  13. const timelineRangeEl = qs('timelineRange');
  14. const metricCenter = qs('metricCenter');
  15. const metricSpan = qs('metricSpan');
  16. const metricRes = qs('metricRes');
  17. const metricSignals = qs('metricSignals');
  18. const metricGpu = qs('metricGpu');
  19. const metricSource = qs('metricSource');
  20. const centerInput = qs('centerInput');
  21. const spanInput = qs('spanInput');
  22. const sampleRateSelect = qs('sampleRateSelect');
  23. const bwSelect = qs('bwSelect');
  24. const fftSelect = qs('fftSelect');
  25. const gainRange = qs('gainRange');
  26. const gainInput = qs('gainInput');
  27. const thresholdRange = qs('thresholdRange');
  28. const thresholdInput = qs('thresholdInput');
  29. const cfarModeSelect = qs('cfarModeSelect');
  30. const cfarWrapToggle = qs('cfarWrapToggle');
  31. const cfarGuardHzInput = qs('cfarGuardHzInput');
  32. const cfarTrainHzInput = qs('cfarTrainHzInput');
  33. const cfarRankInput = qs('cfarRankInput');
  34. const classifierModeSelect = qs('classifierModeSelect');
  35. const edgeMarginInput = qs('edgeMarginInput');
  36. const mergeGapInput = qs('mergeGapInput');
  37. const classHistoryInput = qs('classHistoryInput');
  38. const classSwitchInput = qs('classSwitchInput');
  39. const cfarScaleInput = qs('cfarScaleInput');
  40. const minDurationInput = qs('minDurationInput');
  41. const holdInput = qs('holdInput');
  42. const emaAlphaInput = qs('emaAlphaInput');
  43. const hysteresisInput = qs('hysteresisInput');
  44. const stableFramesInput = qs('stableFramesInput');
  45. const gapToleranceInput = qs('gapToleranceInput');
  46. const agcToggle = qs('agcToggle');
  47. const dcToggle = qs('dcToggle');
  48. const iqToggle = qs('iqToggle');
  49. const avgSelect = qs('avgSelect');
  50. const maxHoldToggle = qs('maxHoldToggle');
  51. const gpuToggle = qs('gpuToggle');
  52. const recEnableToggle = qs('recEnableToggle');
  53. const recIQToggle = qs('recIQToggle');
  54. const recAudioToggle = qs('recAudioToggle');
  55. const recDemodToggle = qs('recDemodToggle');
  56. const recDecodeToggle = qs('recDecodeToggle');
  57. const recMinSNR = qs('recMinSNR');
  58. const recMaxDisk = qs('recMaxDisk');
  59. const recClassFilter = qs('recClassFilter');
  60. const refineAutoSpan = qs('refineAutoSpan');
  61. const refineMinSpan = qs('refineMinSpan');
  62. const refineMaxSpan = qs('refineMaxSpan');
  63. const resMaxRefine = qs('resMaxRefine');
  64. const resMaxRecord = qs('resMaxRecord');
  65. const resMaxDecode = qs('resMaxDecode');
  66. const signalList = qs('signalList');
  67. const signalDecisionSummary = qs('signalDecisionSummary');
  68. const eventList = qs('eventList');
  69. const recordingList = qs('recordingList');
  70. const signalCountBadge = qs('signalCountBadge');
  71. const eventCountBadge = qs('eventCountBadge');
  72. const recordingCountBadge = qs('recordingCountBadge');
  73. const healthBuffer = qs('healthBuffer');
  74. const healthDropped = qs('healthDropped');
  75. const healthResets = qs('healthResets');
  76. const healthAge = qs('healthAge');
  77. const healthGpu = qs('healthGpu');
  78. const healthFps = qs('healthFps');
  79. const healthRefinePlan = qs('healthRefinePlan');
  80. const healthRefineWindows = qs('healthRefineWindows');
  81. const drawerEl = qs('eventDrawer');
  82. const drawerCloseBtn = qs('drawerClose');
  83. const detailSubtitle = qs('detailSubtitle');
  84. const detailCenterEl = qs('detailCenter');
  85. const detailBwEl = qs('detailBw');
  86. const detailStartEl = qs('detailStart');
  87. const detailEndEl = qs('detailEnd');
  88. const detailSnrEl = qs('detailSnr');
  89. const detailDurEl = qs('detailDur');
  90. const detailClassEl = qs('detailClass');
  91. const jumpToEventBtn = qs('jumpToEventBtn');
  92. const exportEventBtn = qs('exportEventBtn');
  93. const liveListenEventBtn = qs('liveListenEventBtn');
  94. const decodeEventBtn = qs('decodeEventBtn');
  95. const decodeModeSelect = qs('decodeMode');
  96. const recordingMetaEl = qs('recordingMeta');
  97. const decodeResultEl = qs('decodeResult');
  98. const classifierScoresEl = qs('classifierScores');
  99. const classifierScoreBarsEl = qs('classifierScoreBars');
  100. const recordingMetaLink = qs('recordingMetaLink');
  101. const recordingIQLink = qs('recordingIQLink');
  102. const recordingAudioLink = qs('recordingAudioLink');
  103. const followBtn = qs('followBtn');
  104. const fitBtn = qs('fitBtn');
  105. const resetMaxBtn = qs('resetMaxBtn');
  106. const debugOverlayToggle = qs('debugOverlayToggle');
  107. const timelineFollowBtn = qs('timelineFollowBtn');
  108. const timelineFreezeBtn = qs('timelineFreezeBtn');
  109. const modeButtons = Array.from(document.querySelectorAll('.mode-btn'));
  110. const railTabs = Array.from(document.querySelectorAll('.rail-tab'));
  111. const tabPanels = Array.from(document.querySelectorAll('.tab-panel'));
  112. const presetButtons = Array.from(document.querySelectorAll('.preset-btn'));
  113. const liveListenBtn = qs('liveListenBtn');
  114. const listenSecondsInput = qs('listenSeconds');
  115. const listenModeSelect = qs('listenMode');
  116. const listenMetaDemod = qs('listenMetaDemod');
  117. const listenMetaPlayback = qs('listenMetaPlayback');
  118. const listenMetaStereo = qs('listenMetaStereo');
  119. const listenMetaStatus = qs('listenMetaStatus');
  120. const listenMetaAudio = qs('listenMetaAudio');
  121. let latest = null;
  122. let currentConfig = null;
  123. let liveAudio = null;
  124. let liveListenWS = null; // WebSocket-based live listen
  125. let liveListenTarget = null; // { freq, bw, mode }
  126. let liveListenInfo = null;
  127. let stats = { buffer_samples: 0, dropped: 0, resets: 0, last_sample_ago_ms: -1 };
  128. let refinementInfo = {};
  129. let decisionIndex = new Map();
  130. // ---------------------------------------------------------------------------
  131. // LiveListenWS — WebSocket-based gapless audio streaming via /ws/audio
  132. // ---------------------------------------------------------------------------
  133. class LiveListenWS {
  134. constructor(freq, bw, mode) {
  135. this.freq = freq;
  136. this.bw = bw;
  137. this.mode = mode;
  138. this.ws = null;
  139. this.audioCtx = null;
  140. this.sampleRate = 48000;
  141. this.channels = 1;
  142. this.playing = false;
  143. this.queue = []; // buffered PCM chunks
  144. this.nextTime = 0; // next scheduled playback time
  145. this.started = false;
  146. this._onStop = null;
  147. }
  148. start() {
  149. const proto = location.protocol === 'https:' ? 'wss:' : 'ws:';
  150. const url = `${proto}//${location.host}/ws/audio?freq=${this.freq}&bw=${this.bw}&mode=${this.mode || ''}`;
  151. this.ws = new WebSocket(url);
  152. this.ws.binaryType = 'arraybuffer';
  153. this.playing = true;
  154. this.ws.onmessage = (ev) => {
  155. if (typeof ev.data === 'string') {
  156. // audio_info JSON message (initial or updated when session attached)
  157. try {
  158. const info = JSON.parse(ev.data);
  159. handleLiveListenAudioInfo(info);
  160. const hasRate = Number.isFinite(info.sample_rate) && info.sample_rate > 0;
  161. const hasCh = Number.isFinite(info.channels) && info.channels > 0;
  162. if (hasRate || hasCh) {
  163. const newRate = hasRate ? info.sample_rate : this.sampleRate;
  164. const newCh = hasCh ? info.channels : this.channels;
  165. // If channels or rate changed, reinit AudioContext
  166. if (newRate !== this.sampleRate || newCh !== this.channels) {
  167. this.sampleRate = newRate;
  168. this.channels = newCh;
  169. if (this.audioCtx) {
  170. this.audioCtx.close().catch(() => {});
  171. this.audioCtx = null;
  172. }
  173. this.started = false;
  174. this.nextTime = 0;
  175. }
  176. this._initAudio();
  177. }
  178. } catch (e) { /* ignore */ }
  179. return;
  180. }
  181. // Binary PCM data (s16le)
  182. if (!this.audioCtx || !this.playing) return;
  183. this._playChunk(ev.data);
  184. };
  185. this.ws.onclose = () => {
  186. this.playing = false;
  187. if (this._onStop) this._onStop();
  188. };
  189. this.ws.onerror = () => {
  190. this.playing = false;
  191. if (this._onStop) this._onStop();
  192. };
  193. // If no audio_info arrives within 500ms, init with defaults
  194. setTimeout(() => {
  195. if (!this.audioCtx && this.playing) this._initAudio();
  196. }, 500);
  197. }
  198. stop() {
  199. this.playing = false;
  200. if (this.ws) {
  201. this.ws.close();
  202. this.ws = null;
  203. }
  204. if (this.audioCtx) {
  205. this.audioCtx.close().catch(() => {});
  206. this.audioCtx = null;
  207. }
  208. this.queue = [];
  209. this.nextTime = 0;
  210. this.started = false;
  211. }
  212. onStop(fn) { this._onStop = fn; }
  213. _initAudio() {
  214. if (this.audioCtx) return;
  215. this.audioCtx = new (window.AudioContext || window.webkitAudioContext)({
  216. sampleRate: this.sampleRate
  217. });
  218. this.audioCtx.resume().catch(() => {});
  219. this.nextTime = 0;
  220. this.started = false;
  221. }
  222. _playChunk(buf) {
  223. const ctx = this.audioCtx;
  224. if (!ctx) return;
  225. if (ctx.state === 'suspended') {
  226. ctx.resume().catch(() => {});
  227. }
  228. const samples = new Int16Array(buf);
  229. const nFrames = Math.floor(samples.length / this.channels);
  230. if (nFrames === 0) return;
  231. const audioBuffer = ctx.createBuffer(this.channels, nFrames, this.sampleRate);
  232. for (let ch = 0; ch < this.channels; ch++) {
  233. const channelData = audioBuffer.getChannelData(ch);
  234. for (let i = 0; i < nFrames; i++) {
  235. channelData[i] = samples[i * this.channels + ch] / 32768;
  236. }
  237. }
  238. const source = ctx.createBufferSource();
  239. source.buffer = audioBuffer;
  240. source.connect(ctx.destination);
  241. // Schedule gapless playback with drift correction.
  242. // We target a small jitter buffer (~100ms ahead of real time).
  243. // If nextTime falls behind currentTime, we resync with a small
  244. // buffer to avoid audible gaps.
  245. const now = ctx.currentTime;
  246. const targetLatency = 0.1; // 100ms jitter buffer
  247. if (!this.started || this.nextTime < now) {
  248. // First chunk or buffer underrun — resync
  249. this.nextTime = now + targetLatency;
  250. this.started = true;
  251. }
  252. // If we've drifted too far ahead (>500ms of buffered audio),
  253. // drop this chunk to reduce latency. This prevents the buffer
  254. // from growing unbounded when the server sends faster than realtime.
  255. if (this.nextTime > now + 0.5) {
  256. return; // drop — too much buffered
  257. }
  258. source.start(this.nextTime);
  259. this.nextTime += audioBuffer.duration;
  260. }
  261. }
  262. const liveListenDefaults = {
  263. status: 'Idle',
  264. demod: '-',
  265. playback_mode: '-',
  266. stereo_state: '-',
  267. sample_rate: null,
  268. channels: null
  269. };
  270. function formatListenMetaValue(value, fallback = '-') {
  271. if (value === undefined || value === null || value === '') return fallback;
  272. return String(value);
  273. }
  274. function isListeningSignal(signal) {
  275. return !!(signal && liveListenTarget && matchesListenTarget(signal));
  276. }
  277. function getSignalPrimaryMode(signal) {
  278. if (isListeningSignal(signal) && liveListenInfo?.playback_mode && liveListenInfo.playback_mode !== '-') {
  279. return liveListenInfo.playback_mode;
  280. }
  281. if (signal?.class?.mod_type) return signal.class.mod_type;
  282. return 'carrier';
  283. }
  284. function getSignalRuntimeSummary(signal) {
  285. if (!isListeningSignal(signal)) return '';
  286. const bits = [];
  287. if (liveListenInfo?.status && !['Idle', '-'].includes(liveListenInfo.status)) bits.push(liveListenInfo.status);
  288. if (liveListenInfo?.stereo_state && liveListenInfo.stereo_state !== '-') bits.push(liveListenInfo.stereo_state);
  289. return bits.join(' · ');
  290. }
  291. function getSignalAudioSummary(signal) {
  292. if (!isListeningSignal(signal)) return '';
  293. const rate = Number.isFinite(liveListenInfo?.sample_rate) && liveListenInfo.sample_rate > 0 ? fmtHz(liveListenInfo.sample_rate) : '';
  294. const ch = Number.isFinite(liveListenInfo?.channels) && liveListenInfo.channels > 0 ? `${liveListenInfo.channels} ch` : '';
  295. return [rate, ch].filter(Boolean).join(' · ');
  296. }
  297. function renderLiveListenMeta(info) {
  298. if (!listenMetaDemod) return;
  299. const status = formatListenMetaValue(info?.status, 'Idle');
  300. const demod = formatListenMetaValue(info?.demod);
  301. const playback = formatListenMetaValue(info?.playback_mode);
  302. const stereo = formatListenMetaValue(info?.stereo_state);
  303. const sampleRate = Number.isFinite(info?.sample_rate) && info.sample_rate > 0
  304. ? fmtHz(info.sample_rate)
  305. : '-';
  306. const channels = Number.isFinite(info?.channels) && info.channels > 0
  307. ? `${info.channels} ch`
  308. : '-';
  309. if (listenMetaStatus) listenMetaStatus.textContent = status;
  310. listenMetaPlayback.textContent = playback;
  311. listenMetaStereo.textContent = stereo;
  312. listenMetaDemod.textContent = `Demod ${demod}`;
  313. if (listenMetaAudio) listenMetaAudio.textContent = `Audio ${sampleRate}${channels !== '-' ? ` · ${channels}` : ''}`;
  314. }
  315. function resetLiveListenMeta() {
  316. liveListenInfo = { ...liveListenDefaults };
  317. renderLiveListenMeta(liveListenInfo);
  318. }
  319. function updateLiveListenMeta(partial) {
  320. liveListenInfo = { ...(liveListenInfo || liveListenDefaults), ...partial };
  321. renderLiveListenMeta(liveListenInfo);
  322. }
  323. function handleLiveListenAudioInfo(info) {
  324. if (!info || typeof info !== 'object') return;
  325. const partial = { status: 'Live' };
  326. if (info.demod) partial.demod = info.demod;
  327. if (info.playback_mode) partial.playback_mode = info.playback_mode;
  328. if (info.stereo_state) partial.stereo_state = info.stereo_state;
  329. if (Number.isFinite(info.sample_rate)) partial.sample_rate = info.sample_rate;
  330. if (Number.isFinite(info.channels)) partial.channels = info.channels;
  331. if (Object.keys(partial).length > 0) {
  332. updateLiveListenMeta(partial);
  333. }
  334. }
  335. function resolveListenMode(detectedMode) {
  336. const manual = listenModeSelect?.value || '';
  337. if (manual) return manual;
  338. return detectedMode || 'NFM';
  339. }
  340. function syncListeningVisuals() {
  341. signalList?.querySelectorAll('.signal-item').forEach(el => {
  342. const center = parseFloat(el.dataset.center || '0');
  343. const bw = parseFloat(el.dataset.bw || '0');
  344. const fakeSignal = { center_hz: center, bw_hz: bw };
  345. el.classList.toggle('listening', matchesListenTarget(fakeSignal));
  346. });
  347. }
  348. function setLiveListenUI(active) {
  349. if (liveListenBtn) {
  350. liveListenBtn.textContent = active ? '■ Stop' : 'Live Listen';
  351. liveListenBtn.classList.toggle('active', active);
  352. }
  353. if (liveListenEventBtn) {
  354. liveListenEventBtn.textContent = active ? '■ Stop' : 'Listen';
  355. liveListenEventBtn.classList.toggle('active', active);
  356. }
  357. }
  358. function stopLiveListen() {
  359. if (liveListenWS) {
  360. liveListenWS.onStop(() => {});
  361. liveListenWS.stop();
  362. liveListenWS = null;
  363. }
  364. liveListenTarget = null;
  365. setLiveListenUI(false);
  366. resetLiveListenMeta();
  367. syncListeningVisuals();
  368. }
  369. function startLiveListen(freq, bw, detectedMode) {
  370. if (!Number.isFinite(freq)) return;
  371. const mode = resolveListenMode(detectedMode);
  372. const width = Number.isFinite(bw) && bw > 0 ? bw : 12000;
  373. // Stop any old HTTP audio
  374. if (liveAudio) { liveAudio.pause(); liveAudio = null; }
  375. // Switch on the fly if already listening
  376. if (liveListenWS) {
  377. liveListenWS.onStop(() => {});
  378. liveListenWS.stop();
  379. liveListenWS = null;
  380. }
  381. liveListenTarget = { freq, bw: width, mode };
  382. liveListenWS = new LiveListenWS(freq, width, mode);
  383. liveListenWS.onStop(() => {
  384. liveListenWS = null;
  385. liveListenTarget = null;
  386. setLiveListenUI(false);
  387. resetLiveListenMeta();
  388. });
  389. liveListenWS.start();
  390. setLiveListenUI(true);
  391. syncListeningVisuals();
  392. const startingInfo = {
  393. status: 'Connecting',
  394. demod: mode || '-',
  395. playback_mode: mode || '-',
  396. stereo_state: mode === 'WFM_STEREO' ? 'searching' : 'mono',
  397. sample_rate: 48000,
  398. channels: mode === 'WFM_STEREO' ? 2 : 1
  399. };
  400. updateLiveListenMeta(startingInfo);
  401. }
  402. function matchesListenTarget(signal) {
  403. if (!liveListenTarget || !signal) return false;
  404. const bw = signal.bw_hz || liveListenTarget.bw || 0;
  405. const tol = Math.max(500, bw * 0.5);
  406. return Math.abs((signal.center_hz || 0) - liveListenTarget.freq) <= tol;
  407. }
  408. let gpuInfo = { available: false, active: false, error: '' };
  409. let zoom = 1;
  410. let pan = 0;
  411. let followLive = true;
  412. let maxHold = false;
  413. let avgAlpha = 0;
  414. let avgSpectrum = null;
  415. let maxSpectrum = null;
  416. let lastFFTSize = null;
  417. let processedSpectrum = null;
  418. let processedSpectrumSource = null;
  419. let processingDirty = true;
  420. let pendingConfigUpdate = null;
  421. let pendingSettingsUpdate = null;
  422. let configTimer = null;
  423. let settingsTimer = null;
  424. let isSyncingConfig = false;
  425. let isDraggingSpectrum = false;
  426. let dragStartX = 0;
  427. let dragStartPan = 0;
  428. let navDrag = false;
  429. let timelineFrozen = false;
  430. let renderFrames = 0;
  431. let renderFps = 0;
  432. let lastFpsTs = performance.now();
  433. let wsReconnectTimer = null;
  434. let eventsFetchInFlight = false;
  435. const events = [];
  436. const eventsById = new Map();
  437. let lastEventEndMs = 0;
  438. let selectedEventId = null;
  439. let timelineRects = [];
  440. let liveSignalRects = [];
  441. let recordings = [];
  442. let recordingsFetchInFlight = false;
  443. let showDebugOverlay = localStorage.getItem('spectre.debugOverlay') !== '0';
  444. let hoveredSignal = null;
  445. let popoverHideTimer = null;
  446. const GAIN_MAX = 60;
  447. const timelineWindowMs = 5 * 60 * 1000;
  448. function setConfigStatus(text) {
  449. configStatusEl.textContent = text;
  450. }
  451. function setWsBadge(text, kind = 'neutral') {
  452. wsBadge.textContent = text;
  453. wsBadge.style.borderColor = kind === 'ok'
  454. ? 'rgba(124, 251, 131, 0.35)'
  455. : kind === 'bad'
  456. ? 'rgba(255, 107, 129, 0.35)'
  457. : 'rgba(112, 150, 207, 0.18)';
  458. }
  459. function toMHz(hz) { return hz / 1e6; }
  460. function fromMHz(mhz) { return mhz * 1e6; }
  461. function fmtMHz(hz, digits = 3) { return `${(hz / 1e6).toFixed(digits)} MHz`; }
  462. function fmtKHz(hz, digits = 2) { return `${(hz / 1e3).toFixed(digits)} kHz`; }
  463. function fmtHz(hz) {
  464. if (hz >= 1e6) return `${(hz / 1e6).toFixed(3)} MHz`;
  465. if (hz >= 1e3) return `${(hz / 1e3).toFixed(2)} kHz`;
  466. return `${hz.toFixed(0)} Hz`;
  467. }
  468. function fmtMs(ms) {
  469. if (ms < 1000) return `${Math.max(0, Math.round(ms))} ms`;
  470. return `${(ms / 1000).toFixed(2)} s`;
  471. }
  472. function scoreEntries(scores, limit = 6) {
  473. if (!scores || typeof scores !== 'object') return [];
  474. return Object.entries(scores)
  475. .filter(([, v]) => Number.isFinite(Number(v)))
  476. .sort((a, b) => Number(b[1]) - Number(a[1]))
  477. .slice(0, limit);
  478. }
  479. function renderScoreBars(scores) {
  480. if (!classifierScoreBarsEl) return;
  481. const entries = scoreEntries(scores);
  482. if (!entries.length) {
  483. classifierScoreBarsEl.innerHTML = '';
  484. return;
  485. }
  486. const maxVal = Math.max(...entries.map(([, v]) => Number(v)), 1e-6);
  487. classifierScoreBarsEl.innerHTML = entries.map(([label, value]) => {
  488. const width = Math.max(4, (Number(value) / maxVal) * 100);
  489. return `<div class="score-bar"><span class="score-bar-label">${label}</span><span class="score-bar-track"><span class="score-bar-fill" style="width:${width}%"></span></span><span class="score-bar-value">${Number(value).toFixed(2)}</span></div>`;
  490. }).join('');
  491. }
  492. function hideSignalPopover() {
  493. hoveredSignal = null;
  494. if (!signalPopover) return;
  495. signalPopover.classList.remove('open');
  496. signalPopover.setAttribute('aria-hidden', 'true');
  497. }
  498. function renderSignalPopover(rect, signal) {
  499. if (!signalPopover || !signal) return;
  500. const entries = scoreEntries(signal.class?.scores || signal.debug_scores || {}, 4);
  501. const maxVal = Math.max(...entries.map(([, v]) => Number(v)), 1e-6);
  502. const rows = entries.map(([label, value]) => {
  503. const width = Math.max(4, (Number(value) / maxVal) * 100);
  504. return `<div class="signal-popover__row"><span>${label}</span><span class="signal-popover__bar"><span class="signal-popover__fill" style="width:${width}%"></span></span><span>${Number(value).toFixed(2)}</span></div>`;
  505. }).join('');
  506. const primaryMode = getSignalPrimaryMode(signal);
  507. const runtimeInfo = getSignalRuntimeSummary(signal);
  508. signalPopover.innerHTML = `<div class="signal-popover__title">${primaryMode}${signal.class?.pll?.rds_station ? ' · ' + signal.class.pll.rds_station : ''}</div><div class="signal-popover__meta">${fmtMHz(signal.class?.pll?.exact_hz || signal.center_hz, 5)} · ${fmtKHz(signal.bw_hz || 0)} · ${(signal.snr_db || 0).toFixed(1)} dB SNR${runtimeInfo ? ` · ${runtimeInfo}` : ''}${signal.class?.pll?.locked ? ` · PLL ${signal.class.pll.method} LOCK` : ''}${signal.class?.pll?.stereo ? ' · STEREO' : ''}</div><div class="signal-popover__scores">${rows || '<div class="signal-popover__meta">No classifier scores</div>'}</div>`;
  509. const popW = 220;
  510. const top = rect.y + 8;
  511. const maxLeft = Math.max(8, spectrumCanvas.width - popW - 8);
  512. signalPopover.style.left = `${Math.max(8, Math.min(maxLeft, left))}px`;
  513. signalPopover.style.top = `${Math.max(8, top)}px`;
  514. signalPopover.classList.add('open');
  515. signalPopover.setAttribute('aria-hidden', 'false');
  516. }
  517. function colorMap(v) {
  518. const x = Math.max(0, Math.min(1, v));
  519. const r = Math.floor(255 * Math.pow(x, 0.55));
  520. const g = Math.floor(255 * Math.pow(x, 1.08));
  521. const b = Math.floor(220 * Math.pow(1 - x, 1.15));
  522. return [r, g, b];
  523. }
  524. function snrColor(snr) {
  525. const norm = Math.max(0, Math.min(1, (snr + 5) / 35));
  526. const [r, g, b] = colorMap(norm);
  527. return `rgb(${r}, ${g}, ${b})`;
  528. }
  529. // Modulation-type color map for signal boxes and badges
  530. function modColor(modType) {
  531. switch (modType) {
  532. case 'WFM': return { r: 72, g: 210, b: 120, label: '#48d278' }; // green
  533. case 'WFM_STEREO': return { r: 72, g: 230, b: 160, label: '#48e6a0' }; // bright green
  534. case 'NFM': return { r: 255, g: 170, b: 60, label: '#ffaa3c' }; // orange
  535. case 'AM': return { r: 90, g: 160, b: 255, label: '#5aa0ff' }; // blue
  536. case 'USB': case 'LSB':
  537. return { r: 160, g: 120, b: 255, label: '#a078ff' }; // purple
  538. case 'CW': return { r: 255, g: 100, b: 100, label: '#ff6464' }; // red
  539. case 'FT8': case 'WSPR': case 'FSK': case 'PSK':
  540. return { r: 255, g: 220, b: 80, label: '#ffdc50' }; // yellow
  541. default: return { r: 160, g: 190, b: 220, label: '#a0bedc' }; // grey-blue
  542. }
  543. }
  544. function modColorStr(modType, alpha) {
  545. const c = modColor(modType);
  546. return `rgba(${c.r}, ${c.g}, ${c.b}, ${alpha})`;
  547. }
  548. function binForFreq(freq, centerHz, sampleRate, n) {
  549. return Math.floor((freq - (centerHz - sampleRate / 2)) / (sampleRate / n));
  550. }
  551. function maxInBinRange(spectrum, b0, b1) {
  552. const n = spectrum.length;
  553. let start = Math.max(0, Math.min(n - 1, b0));
  554. let end = Math.max(0, Math.min(n - 1, b1));
  555. if (end < start) [start, end] = [end, start];
  556. let max = -1e9;
  557. for (let i = start; i <= end; i++) {
  558. if (spectrum[i] > max) max = spectrum[i];
  559. }
  560. return max;
  561. }
  562. function sampleOverlayAtX(overlay, x, width, centerHz, sampleRate) {
  563. if (!Array.isArray(overlay) || overlay.length === 0 || width <= 0) return null;
  564. const n = overlay.length;
  565. const span = sampleRate / zoom;
  566. const startHz = centerHz - span / 2 + pan * span;
  567. const endHz = centerHz + span / 2 + pan * span;
  568. const f1 = startHz + (x / width) * (endHz - startHz);
  569. const f2 = startHz + ((x + 1) / width) * (endHz - startHz);
  570. const b0 = binForFreq(f1, centerHz, sampleRate, n);
  571. const b1 = binForFreq(f2, centerHz, sampleRate, n);
  572. return maxInBinRange(overlay, b0, b1);
  573. }
  574. function drawThresholdOverlay(ctx, w, h, minDb, maxDb) {
  575. if (!showDebugOverlay) return;
  576. const thresholds = latest?.debug?.thresholds;
  577. if (!Array.isArray(thresholds) || thresholds.length === 0) return;
  578. ctx.save();
  579. ctx.strokeStyle = 'rgba(255, 196, 92, 0.9)';
  580. ctx.lineWidth = 1.25;
  581. if (ctx.setLineDash) ctx.setLineDash([6, 4]);
  582. ctx.beginPath();
  583. for (let x = 0; x < w; x++) {
  584. const v = sampleOverlayAtX(thresholds, x, w, latest.center_hz, latest.sample_rate);
  585. if (v == null || Number.isNaN(v)) continue;
  586. const y = h - ((v - minDb) / (maxDb - minDb)) * (h - 18) - 6;
  587. if (x === 0) ctx.moveTo(x, y);
  588. else ctx.lineTo(x, y);
  589. }
  590. ctx.stroke();
  591. if (ctx.setLineDash) ctx.setLineDash([]);
  592. ctx.fillStyle = 'rgba(255, 196, 92, 0.95)';
  593. ctx.font = '11px Inter, sans-serif';
  594. ctx.fillText('CFAR', 8, 14);
  595. ctx.restore();
  596. }
  597. function markSpectrumDirty() {
  598. processingDirty = true;
  599. }
  600. function processSpectrum(spectrum) {
  601. if (!spectrum) return spectrum;
  602. let base = spectrum;
  603. if (avgAlpha > 0) {
  604. if (!avgSpectrum || avgSpectrum.length !== spectrum.length) {
  605. avgSpectrum = spectrum.slice();
  606. } else {
  607. for (let i = 0; i < spectrum.length; i++) {
  608. avgSpectrum[i] = avgAlpha * spectrum[i] + (1 - avgAlpha) * avgSpectrum[i];
  609. }
  610. }
  611. base = avgSpectrum;
  612. }
  613. if (maxHold) {
  614. if (!maxSpectrum || maxSpectrum.length !== base.length) {
  615. maxSpectrum = base.slice();
  616. } else {
  617. for (let i = 0; i < base.length; i++) {
  618. if (base[i] > maxSpectrum[i]) maxSpectrum[i] = base[i];
  619. }
  620. }
  621. base = maxSpectrum;
  622. }
  623. return base;
  624. }
  625. function resetProcessingCaches() {
  626. avgSpectrum = null;
  627. maxSpectrum = null;
  628. processedSpectrum = null;
  629. processedSpectrumSource = null;
  630. processingDirty = true;
  631. }
  632. function getProcessedSpectrum() {
  633. if (!latest?.spectrum_db) return null;
  634. if (!processingDirty && processedSpectrumSource === latest.spectrum_db) return processedSpectrum;
  635. processedSpectrum = processSpectrum(latest.spectrum_db);
  636. processedSpectrumSource = latest.spectrum_db;
  637. processingDirty = false;
  638. return processedSpectrum;
  639. }
  640. function resizeCanvas(canvas) {
  641. if (!canvas) return;
  642. const rect = canvas.getBoundingClientRect();
  643. const dpr = window.devicePixelRatio || 1;
  644. const width = Math.max(1, Math.floor(rect.width * dpr));
  645. const height = Math.max(1, Math.floor(rect.height * dpr));
  646. if (canvas.width !== width || canvas.height !== height) {
  647. canvas.width = width;
  648. canvas.height = height;
  649. }
  650. }
  651. function resizeAll() {
  652. [navCanvas, spectrumCanvas, waterfallCanvas, occupancyCanvas, timelineCanvas, detailSpectrogram].forEach(resizeCanvas);
  653. }
  654. window.addEventListener('resize', resizeAll);
  655. resizeAll();
  656. function setSelectValueOrNearest(selectEl, numericValue) {
  657. if (!selectEl) return;
  658. const options = Array.from(selectEl.options || []);
  659. const exact = options.find(o => Number.parseFloat(o.value) === numericValue);
  660. if (exact) {
  661. selectEl.value = exact.value;
  662. return;
  663. }
  664. let best = options[0];
  665. let bestDist = Infinity;
  666. for (const opt of options) {
  667. const dist = Math.abs(Number.parseFloat(opt.value) - numericValue);
  668. if (dist < bestDist) {
  669. best = opt;
  670. bestDist = dist;
  671. }
  672. }
  673. if (best) selectEl.value = best.value;
  674. }
  675. function applyConfigToUI(cfg) {
  676. if (!cfg) return;
  677. isSyncingConfig = true;
  678. centerInput.value = toMHz(cfg.center_hz).toFixed(6);
  679. setSelectValueOrNearest(sampleRateSelect, cfg.sample_rate / 1e6);
  680. setSelectValueOrNearest(bwSelect, cfg.tuner_bw_khz || 1536);
  681. setSelectValueOrNearest(fftSelect, cfg.fft_size);
  682. if (lastFFTSize !== cfg.fft_size) {
  683. resetProcessingCaches();
  684. lastFFTSize = cfg.fft_size;
  685. }
  686. const uiGain = Math.max(0, Math.min(GAIN_MAX, GAIN_MAX - cfg.gain_db));
  687. gainRange.value = uiGain;
  688. gainInput.value = uiGain;
  689. thresholdRange.value = cfg.detector.threshold_db;
  690. thresholdInput.value = cfg.detector.threshold_db;
  691. if (cfarModeSelect) cfarModeSelect.value = cfg.detector.cfar_mode || 'OFF';
  692. if (cfarWrapToggle) cfarWrapToggle.checked = cfg.detector.cfar_wrap_around !== false;
  693. if (cfarGuardHzInput) cfarGuardHzInput.value = cfg.detector.cfar_guard_hz ?? 500;
  694. if (cfarTrainHzInput) cfarTrainHzInput.value = cfg.detector.cfar_train_hz ?? 5000;
  695. if (cfarRankInput) cfarRankInput.value = cfg.detector.cfar_rank ?? 24;
  696. if (cfarScaleInput) cfarScaleInput.value = cfg.detector.cfar_scale_db ?? 6;
  697. const rankRow = cfarRankInput?.closest('.field');
  698. if (rankRow) rankRow.style.display = (cfg.detector.cfar_mode === 'OS') ? '' : 'none';
  699. if (minDurationInput) minDurationInput.value = cfg.detector.min_duration_ms;
  700. if (holdInput) holdInput.value = cfg.detector.hold_ms;
  701. if (emaAlphaInput) emaAlphaInput.value = cfg.detector.ema_alpha ?? 0.2;
  702. if (hysteresisInput) hysteresisInput.value = cfg.detector.hysteresis_db ?? 3;
  703. if (stableFramesInput) stableFramesInput.value = cfg.detector.min_stable_frames ?? 3;
  704. if (gapToleranceInput) gapToleranceInput.value = cfg.detector.gap_tolerance_ms ?? cfg.detector.hold_ms;
  705. if (classifierModeSelect) classifierModeSelect.value = cfg.classifier_mode || 'combined';
  706. if (edgeMarginInput) edgeMarginInput.value = cfg.detector.edge_margin_db ?? 3.0;
  707. if (mergeGapInput) mergeGapInput.value = cfg.detector.merge_gap_hz ?? 5000;
  708. if (classHistoryInput) classHistoryInput.value = cfg.detector.class_history_size ?? 10;
  709. if (classSwitchInput) classSwitchInput.value = cfg.detector.class_switch_ratio ?? 0.6;
  710. agcToggle.checked = !!cfg.agc;
  711. dcToggle.checked = !!cfg.dc_block;
  712. iqToggle.checked = !!cfg.iq_balance;
  713. gpuToggle.checked = !!cfg.use_gpu_fft;
  714. maxHoldToggle.checked = maxHold;
  715. if (cfg.recorder) {
  716. if (recEnableToggle) recEnableToggle.checked = !!cfg.recorder.enabled;
  717. if (recIQToggle) recIQToggle.checked = !!cfg.recorder.record_iq;
  718. if (recAudioToggle) recAudioToggle.checked = !!cfg.recorder.record_audio;
  719. if (recDemodToggle) recDemodToggle.checked = !!cfg.recorder.auto_demod;
  720. if (recDecodeToggle) recDecodeToggle.checked = !!cfg.recorder.auto_decode;
  721. if (recMinSNR) recMinSNR.value = cfg.recorder.min_snr_db ?? 10;
  722. if (recMaxDisk) recMaxDisk.value = cfg.recorder.max_disk_mb ?? 0;
  723. if (recClassFilter) recClassFilter.value = (cfg.recorder.class_filter || []).join(', ');
  724. }
  725. if (refineAutoSpan) refineAutoSpan.value = String(cfg.refinement?.auto_span ?? true);
  726. if (refineMinSpan) refineMinSpan.value = cfg.refinement?.min_span_hz ?? 0;
  727. if (refineMaxSpan) refineMaxSpan.value = cfg.refinement?.max_span_hz ?? 0;
  728. if (resMaxRefine) resMaxRefine.value = cfg.resources?.max_refinement_jobs ?? 0;
  729. if (resMaxRecord) resMaxRecord.value = cfg.resources?.max_recording_streams ?? 0;
  730. if (resMaxDecode) resMaxDecode.value = cfg.resources?.max_decode_jobs ?? 0;
  731. spanInput.value = (cfg.sample_rate / zoom / 1e6).toFixed(3);
  732. isSyncingConfig = false;
  733. }
  734. async function loadConfig() {
  735. try {
  736. const res = await fetch('/api/config');
  737. if (!res.ok) throw new Error('config');
  738. currentConfig = await res.json();
  739. applyConfigToUI(currentConfig);
  740. setConfigStatus('Config synced');
  741. } catch {
  742. setConfigStatus('Config offline');
  743. }
  744. }
  745. async function loadSignals() {
  746. try {
  747. const res = await fetch('/api/signals');
  748. if (!res.ok) return;
  749. const sigs = await res.json();
  750. if (Array.isArray(sigs)) {
  751. latest = latest || {};
  752. latest.signals = sigs;
  753. renderLists();
  754. }
  755. } catch {}
  756. }
  757. async function loadDecoders() {
  758. if (!decodeModeSelect) return;
  759. try {
  760. const res = await fetch('/api/decoders');
  761. if (!res.ok) return;
  762. const list = await res.json();
  763. if (!Array.isArray(list)) return;
  764. const current = decodeModeSelect.value;
  765. decodeModeSelect.innerHTML = '';
  766. list.forEach((mode) => {
  767. const opt = document.createElement('option');
  768. opt.value = mode;
  769. opt.textContent = mode;
  770. decodeModeSelect.appendChild(opt);
  771. });
  772. if (current) decodeModeSelect.value = current;
  773. } catch {}
  774. }
  775. async function loadStats() {
  776. try {
  777. const res = await fetch('/api/stats');
  778. if (!res.ok) return;
  779. stats = await res.json();
  780. } catch {}
  781. }
  782. async function loadGPU() {
  783. try {
  784. const res = await fetch('/api/gpu');
  785. if (!res.ok) return;
  786. gpuInfo = await res.json();
  787. } catch {}
  788. }
  789. async function loadRefinement() {
  790. try {
  791. const res = await fetch('/api/refinement');
  792. if (!res.ok) return;
  793. refinementInfo = await res.json();
  794. decisionIndex = new Map();
  795. const items = Array.isArray(refinementInfo.arbitration?.decision_items) ? refinementInfo.arbitration.decision_items : [];
  796. items.forEach(item => {
  797. if (item && item.id != null) decisionIndex.set(String(item.id), item);
  798. });
  799. updateSignalDecisionSummary(window._selectedSignal?.id);
  800. updateSignalQueueSummary();
  801. } catch {}
  802. }
  803. function formatLevelSummary(level) {
  804. if (!level) return 'n/a';
  805. const name = level.name || 'level';
  806. const fft = level.fft_size ? `${level.fft_size} bins` : 'bins n/a';
  807. const span = level.span_hz ? fmtHz(level.span_hz) : 'span n/a';
  808. const binHz = level.bin_hz || ((level.sample_rate && level.fft_size) ? (level.sample_rate / level.fft_size) : 0);
  809. const binText = binHz ? `${binHz.toFixed(1)} Hz/bin` : 'bin n/a';
  810. const decim = level.decimation && level.decimation > 1 ? `decim ${level.decimation}` : '';
  811. const source = level.source ? `src ${level.source}` : '';
  812. return [name, fft, span, binText, decim, source].filter(Boolean).join(' · ');
  813. }
  814. function queueConfigUpdate(partial) {
  815. if (isSyncingConfig) return;
  816. pendingConfigUpdate = { ...(pendingConfigUpdate || {}), ...partial };
  817. setConfigStatus('Applying…');
  818. clearTimeout(configTimer);
  819. configTimer = setTimeout(sendConfigUpdate, 180);
  820. }
  821. function queueSettingsUpdate(partial) {
  822. if (isSyncingConfig) return;
  823. pendingSettingsUpdate = { ...(pendingSettingsUpdate || {}), ...partial };
  824. setConfigStatus('Applying…');
  825. clearTimeout(settingsTimer);
  826. settingsTimer = setTimeout(sendSettingsUpdate, 120);
  827. }
  828. async function sendConfigUpdate() {
  829. if (!pendingConfigUpdate) return;
  830. const payload = pendingConfigUpdate;
  831. pendingConfigUpdate = null;
  832. try {
  833. const res = await fetch('/api/config', {
  834. method: 'POST',
  835. headers: { 'Content-Type': 'application/json' },
  836. body: JSON.stringify(payload),
  837. });
  838. if (!res.ok) throw new Error('apply');
  839. currentConfig = await res.json();
  840. applyConfigToUI(currentConfig);
  841. setConfigStatus('Config applied');
  842. } catch {
  843. setConfigStatus('Config apply failed');
  844. }
  845. }
  846. async function sendSettingsUpdate() {
  847. if (!pendingSettingsUpdate) return;
  848. const payload = pendingSettingsUpdate;
  849. pendingSettingsUpdate = null;
  850. try {
  851. const res = await fetch('/api/sdr/settings', {
  852. method: 'POST',
  853. headers: { 'Content-Type': 'application/json' },
  854. body: JSON.stringify(payload),
  855. });
  856. if (!res.ok) throw new Error('apply');
  857. currentConfig = await res.json();
  858. applyConfigToUI(currentConfig);
  859. setConfigStatus('Settings applied');
  860. } catch {
  861. setConfigStatus('Settings apply failed');
  862. }
  863. }
  864. function updateHeroMetrics() {
  865. if (!latest) return;
  866. const span = latest.sample_rate / zoom;
  867. const binHz = latest.sample_rate / Math.max(1, latest.spectrum_db?.length || latest.fft_size || 1);
  868. metricCenter.textContent = fmtMHz(latest.center_hz, 6);
  869. metricSpan.textContent = fmtHz(span);
  870. metricRes.textContent = `${binHz.toFixed(1)} Hz/bin`;
  871. metricSignals.textContent = String(latest.signals?.length || 0);
  872. metricGpu.textContent = gpuInfo.active ? 'ON' : (gpuInfo.available ? 'OFF' : 'N/A');
  873. metricSource.textContent = stats.last_sample_ago_ms >= 0 ? `${stats.last_sample_ago_ms} ms` : 'n/a';
  874. const gpuText = gpuInfo.active ? 'GPU active' : (gpuInfo.available ? 'GPU ready' : 'GPU n/a');
  875. const debug = latest.debug || {};
  876. const thresholdInfo = Array.isArray(debug.thresholds) && debug.thresholds.length
  877. ? `CFAR ${showDebugOverlay ? 'on' : 'hidden'} · noise ${(Number.isFinite(debug.noise_floor) ? debug.noise_floor.toFixed(1) : 'n/a')} dB`
  878. : `CFAR off · noise ${(Number.isFinite(debug.noise_floor) ? debug.noise_floor.toFixed(1) : 'n/a')} dB`;
  879. const plan = debug.refinement_plan || null;
  880. const windowSummary = debug.window_summary || null;
  881. const windows = (windowSummary && windowSummary.refinement) || debug.refinement_windows || null;
  882. const refineInfo = plan && showDebugOverlay
  883. ? `refine ${plan.selected?.length || 0}/${plan.budget || 0} drop ${plan.dropped_by_snr || 0}/${plan.dropped_by_budget || 0}`
  884. : '';
  885. const windowInfo = windows && showDebugOverlay
  886. ? `win ${windows.count || 0} span ${fmtHz(windows.min_span_hz || 0)}–${fmtHz(windows.max_span_hz || 0)}`
  887. : '';
  888. const extras = [refineInfo, windowInfo].filter(Boolean).join(' · ');
  889. metaLine.textContent = `${fmtMHz(latest.center_hz, 3)} · ${fmtHz(span)} span · ${thresholdInfo}${extras ? ' · ' + extras : ''} · ${gpuText}`;
  890. heroSubtitle.textContent = `${latest.signals?.length || 0} live signals · ${events.length} recent events tracked`;
  891. healthBuffer.textContent = String(stats.buffer_samples ?? '-');
  892. healthDropped.textContent = String(stats.dropped ?? '-');
  893. healthResets.textContent = String(stats.resets ?? '-');
  894. healthAge.textContent = stats.last_sample_ago_ms >= 0 ? `${stats.last_sample_ago_ms} ms` : 'n/a';
  895. healthGpu.textContent = gpuInfo.error ? `${gpuInfo.active ? 'ON' : 'OFF'} · ${gpuInfo.error}` : (gpuInfo.active ? 'ON' : (gpuInfo.available ? 'Ready' : 'N/A'));
  896. healthFps.textContent = `${renderFps.toFixed(0)} fps`;
  897. if (healthRefinePlan) {
  898. const plan = refinementInfo.plan || {};
  899. const decisionSummary = refinementInfo.arbitration?.decision_summary || {};
  900. const recOn = decisionSummary.record_enabled ?? 0;
  901. const decOn = decisionSummary.decode_enabled ?? 0;
  902. const reasonCounts = decisionSummary.reasons || {};
  903. const topReason = Object.entries(reasonCounts).sort((a, b) => b[1] - a[1])[0];
  904. const reasonText = topReason ? `· ${topReason[0]}` : '';
  905. const queueStats = refinementInfo.arbitration?.queue || {};
  906. const queueText = (queueStats.record_queued || queueStats.decode_queued)
  907. ? `· q ${queueStats.record_queued || 0}/${queueStats.decode_queued || 0}`
  908. : '';
  909. healthRefinePlan.textContent = `${plan.selected?.length || 0}/${plan.budget || 0} · drop ${plan.dropped_by_snr || 0}/${plan.dropped_by_budget || 0} · rec ${recOn} dec ${decOn} ${queueText} ${reasonText}`;
  910. }
  911. if (healthRefineWindows) {
  912. const stats = refinementInfo.window_summary?.refinement || refinementInfo.window_stats || null;
  913. if (stats && stats.count) {
  914. const levelSet = refinementInfo.surveillance_level_set || {};
  915. const primary = levelSet.primary || refinementInfo.surveillance_level;
  916. const presentation = levelSet.presentation || refinementInfo.display_level || null;
  917. const primaryText = primary ? ` · primary ${formatLevelSummary(primary)}` : '';
  918. const presentationText = presentation ? ` · display ${formatLevelSummary(presentation)}` : '';
  919. healthRefineWindows.textContent = `${fmtHz(stats.min_span_hz || 0)}–${fmtHz(stats.max_span_hz || 0)}${primaryText}${presentationText}`;
  920. } else {
  921. const windows = refinementInfo.windows || [];
  922. if (!Array.isArray(windows) || windows.length === 0) {
  923. healthRefineWindows.textContent = 'n/a';
  924. } else {
  925. const spans = windows.map(w => w.span_hz || 0).filter(v => v > 0);
  926. const minSpan = spans.length ? Math.min(...spans) : 0;
  927. const maxSpan = spans.length ? Math.max(...spans) : 0;
  928. healthRefineWindows.textContent = spans.length ? `${fmtHz(minSpan)}–${fmtHz(maxSpan)}` : 'n/a';
  929. }
  930. }
  931. }
  932. }
  933. function renderBandNavigator() {
  934. if (!latest) return;
  935. const ctx = navCanvas.getContext('2d');
  936. const w = navCanvas.width;
  937. const h = navCanvas.height;
  938. ctx.clearRect(0, 0, w, h);
  939. const display = getProcessedSpectrum();
  940. if (!display) return;
  941. const minDb = -120;
  942. const maxDb = 0;
  943. ctx.fillStyle = '#071018';
  944. ctx.fillRect(0, 0, w, h);
  945. ctx.strokeStyle = 'rgba(102, 169, 255, 0.25)';
  946. ctx.lineWidth = 1;
  947. ctx.beginPath();
  948. for (let x = 0; x < w; x++) {
  949. const idx = Math.min(display.length - 1, Math.floor((x / w) * display.length));
  950. const v = display[idx];
  951. const y = h - ((v - minDb) / (maxDb - minDb)) * (h - 10) - 5;
  952. if (x === 0) ctx.moveTo(x, y);
  953. else ctx.lineTo(x, y);
  954. }
  955. ctx.stroke();
  956. const span = latest.sample_rate / zoom;
  957. const fullStart = latest.center_hz - latest.sample_rate / 2;
  958. const viewStart = latest.center_hz - span / 2 + pan * span;
  959. const viewEnd = latest.center_hz + span / 2 + pan * span;
  960. const x1 = ((viewStart - fullStart) / latest.sample_rate) * w;
  961. const x2 = ((viewEnd - fullStart) / latest.sample_rate) * w;
  962. ctx.fillStyle = 'rgba(102, 240, 209, 0.10)';
  963. ctx.strokeStyle = 'rgba(102, 240, 209, 0.85)';
  964. ctx.lineWidth = 2;
  965. ctx.fillRect(x1, 4, Math.max(2, x2 - x1), h - 8);
  966. ctx.strokeRect(x1, 4, Math.max(2, x2 - x1), h - 8);
  967. }
  968. function drawSpectrumGrid(ctx, w, h, startHz, endHz) {
  969. ctx.strokeStyle = 'rgba(86, 109, 148, 0.18)';
  970. ctx.lineWidth = 1;
  971. for (let i = 1; i < 6; i++) {
  972. const y = (h / 6) * i;
  973. ctx.beginPath();
  974. ctx.moveTo(0, y);
  975. ctx.lineTo(w, y);
  976. ctx.stroke();
  977. }
  978. for (let i = 1; i < 8; i++) {
  979. const x = (w / 8) * i;
  980. ctx.beginPath();
  981. ctx.moveTo(x, 0);
  982. ctx.lineTo(x, h);
  983. ctx.stroke();
  984. const hz = startHz + (i / 8) * (endHz - startHz);
  985. ctx.fillStyle = 'rgba(173, 192, 220, 0.72)';
  986. ctx.font = `${Math.max(11, Math.floor(h / 26))}px Inter, sans-serif`;
  987. ctx.fillText((hz / 1e6).toFixed(3), x + 4, h - 8);
  988. }
  989. }
  990. function drawCfarEdgeOverlay(ctx, w, h, startHz, endHz) {
  991. if (!latest) return;
  992. const mode = currentConfig?.detector?.cfar_mode || 'OFF';
  993. if (mode === 'OFF') return;
  994. if (currentConfig?.detector?.cfar_wrap_around) return;
  995. const guardHz = currentConfig.detector.cfar_guard_hz ?? 500;
  996. const trainHz = currentConfig.detector.cfar_train_hz ?? 5000;
  997. const fftSize = latest.fft_size || latest.spectrum_db?.length;
  998. if (!fftSize || fftSize <= 0) return;
  999. const binW = (latest.sample_rate || 2048000) / fftSize;
  1000. const bins = Math.ceil(guardHz / binW) + Math.ceil(trainHz / binW);
  1001. if (bins <= 0) return;
  1002. const binHz = latest.sample_rate / fftSize;
  1003. const edgeHz = bins * binHz;
  1004. const bandStart = latest.center_hz - latest.sample_rate / 2;
  1005. const bandEnd = latest.center_hz + latest.sample_rate / 2;
  1006. const leftEdgeEnd = bandStart + edgeHz;
  1007. const rightEdgeStart = bandEnd - edgeHz;
  1008. ctx.fillStyle = 'rgba(255, 204, 102, 0.08)';
  1009. ctx.strokeStyle = 'rgba(255, 204, 102, 0.18)';
  1010. ctx.lineWidth = 1;
  1011. const leftStart = Math.max(startHz, bandStart);
  1012. const leftEnd = Math.min(endHz, leftEdgeEnd);
  1013. if (leftEnd > leftStart) {
  1014. const x1 = ((leftStart - startHz) / (endHz - startHz)) * w;
  1015. const x2 = ((leftEnd - startHz) / (endHz - startHz)) * w;
  1016. ctx.fillRect(x1, 0, Math.max(2, x2 - x1), h);
  1017. ctx.strokeRect(x1, 0, Math.max(2, x2 - x1), h);
  1018. }
  1019. const rightStart = Math.max(startHz, rightEdgeStart);
  1020. const rightEnd = Math.min(endHz, bandEnd);
  1021. if (rightEnd > rightStart) {
  1022. const x1 = ((rightStart - startHz) / (endHz - startHz)) * w;
  1023. const x2 = ((rightEnd - startHz) / (endHz - startHz)) * w;
  1024. ctx.fillRect(x1, 0, Math.max(2, x2 - x1), h);
  1025. ctx.strokeRect(x1, 0, Math.max(2, x2 - x1), h);
  1026. }
  1027. }
  1028. function renderSpectrum() {
  1029. if (!latest) return;
  1030. const ctx = spectrumCanvas.getContext('2d');
  1031. const w = spectrumCanvas.width;
  1032. const h = spectrumCanvas.height;
  1033. ctx.clearRect(0, 0, w, h);
  1034. const display = getProcessedSpectrum();
  1035. if (!display) return;
  1036. const n = display.length;
  1037. const span = latest.sample_rate / zoom;
  1038. const startHz = latest.center_hz - span / 2 + pan * span;
  1039. const endHz = latest.center_hz + span / 2 + pan * span;
  1040. spanInput.value = (span / 1e6).toFixed(3);
  1041. drawSpectrumGrid(ctx, w, h, startHz, endHz);
  1042. drawCfarEdgeOverlay(ctx, w, h, startHz, endHz);
  1043. const minDb = -120;
  1044. const maxDb = 0;
  1045. const fill = ctx.createLinearGradient(0, 0, 0, h);
  1046. fill.addColorStop(0, 'rgba(102, 240, 209, 0.20)');
  1047. fill.addColorStop(1, 'rgba(102, 240, 209, 0.02)');
  1048. ctx.beginPath();
  1049. for (let x = 0; x < w; x++) {
  1050. const f1 = startHz + (x / w) * (endHz - startHz);
  1051. const f2 = startHz + ((x + 1) / w) * (endHz - startHz);
  1052. const b0 = binForFreq(f1, latest.center_hz, latest.sample_rate, n);
  1053. const b1 = binForFreq(f2, latest.center_hz, latest.sample_rate, n);
  1054. const v = maxInBinRange(display, b0, b1);
  1055. const y = h - ((v - minDb) / (maxDb - minDb)) * (h - 18) - 6;
  1056. if (x === 0) ctx.moveTo(x, y);
  1057. else ctx.lineTo(x, y);
  1058. }
  1059. ctx.lineTo(w, h);
  1060. ctx.lineTo(0, h);
  1061. ctx.closePath();
  1062. ctx.fillStyle = fill;
  1063. ctx.fill();
  1064. ctx.strokeStyle = '#66f0d1';
  1065. ctx.lineWidth = 2;
  1066. ctx.beginPath();
  1067. liveSignalRects = [];
  1068. for (let x = 0; x < w; x++) {
  1069. const f1 = startHz + (x / w) * (endHz - startHz);
  1070. const f2 = startHz + ((x + 1) / w) * (endHz - startHz);
  1071. const b0 = binForFreq(f1, latest.center_hz, latest.sample_rate, n);
  1072. const b1 = binForFreq(f2, latest.center_hz, latest.sample_rate, n);
  1073. const v = maxInBinRange(display, b0, b1);
  1074. const y = h - ((v - minDb) / (maxDb - minDb)) * (h - 18) - 6;
  1075. if (x === 0) ctx.moveTo(x, y);
  1076. else ctx.lineTo(x, y);
  1077. }
  1078. ctx.stroke();
  1079. drawThresholdOverlay(ctx, w, h, minDb, maxDb);
  1080. if (Array.isArray(latest.signals)) {
  1081. latest.signals.forEach((s, index) => {
  1082. const left = s.center_hz - s.bw_hz / 2;
  1083. const right = s.center_hz + s.bw_hz / 2;
  1084. if (right < startHz || left > endHz) return;
  1085. const x1 = ((left - startHz) / (endHz - startHz)) * w;
  1086. const x2 = ((right - startHz) / (endHz - startHz)) * w;
  1087. const boxW = Math.max(2, x2 - x1);
  1088. const mod = s.class?.mod_type || '';
  1089. const primaryMode = getSignalPrimaryMode(s);
  1090. const mc = modColor(primaryMode);
  1091. const rdsName = s.class?.pll?.rds_station || '';
  1092. const runtimeInfo = getSignalRuntimeSummary(s);
  1093. // Signal box with modulation-based color
  1094. ctx.fillStyle = modColorStr(primaryMode, 0.10);
  1095. ctx.strokeStyle = modColorStr(primaryMode, 0.75);
  1096. ctx.lineWidth = 1.5;
  1097. ctx.fillRect(x1, 10, boxW, h - 28);
  1098. ctx.strokeRect(x1, 10, boxW, h - 28);
  1099. if (matchesListenTarget(s)) {
  1100. ctx.strokeStyle = 'rgba(255, 92, 92, 0.95)';
  1101. ctx.lineWidth = 2.5;
  1102. ctx.strokeRect(x1 - 1, 9, boxW + 2, h - 26);
  1103. }
  1104. // Label badges with dark background for readability
  1105. const labelX = Math.max(4, x1 + 4);
  1106. const baseY = 14;
  1107. const freqStr = `${(s.center_hz / 1e6).toFixed(4)} MHz`;
  1108. // Badge background
  1109. const badgeH = rdsName ? 42 : ((primaryMode || runtimeInfo) ? 30 : 16);
  1110. const freqW = ctx.measureText ? 0 : 0; // will measure below
  1111. ctx.font = '11px Inter, sans-serif';
  1112. const line2 = runtimeInfo || primaryMode;
  1113. const textW = Math.max(ctx.measureText(freqStr).width, line2 ? ctx.measureText(line2).width : 0, rdsName ? ctx.measureText(rdsName).width : 0) + 8;
  1114. ctx.fillStyle = 'rgba(7, 16, 24, 0.82)';
  1115. ctx.fillRect(labelX - 3, baseY, textW, badgeH);
  1116. // Line 1: Frequency (teal)
  1117. ctx.fillStyle = 'rgba(102, 240, 209, 0.95)';
  1118. ctx.font = '11px Inter, sans-serif';
  1119. ctx.fillText(freqStr, labelX, baseY + 11);
  1120. // Line 2: runtime status or primary mode
  1121. if (runtimeInfo || primaryMode) {
  1122. ctx.fillStyle = mc.label;
  1123. ctx.font = 'bold 10px Inter, sans-serif';
  1124. ctx.fillText(runtimeInfo || primaryMode, labelX, baseY + 23);
  1125. }
  1126. // Line 3: RDS station name (white bold)
  1127. if (rdsName) {
  1128. ctx.fillStyle = 'rgba(255, 255, 255, 0.95)';
  1129. ctx.font = 'bold 12px Inter, sans-serif';
  1130. ctx.fillText(rdsName, labelX, baseY + 36);
  1131. }
  1132. const debugMatch = (latest?.debug?.scores || []).find((d) => Math.abs((d.center_hz || 0) - (s.center_hz || 0)) < Math.max(500, s.bw_hz || 0));
  1133. if (debugMatch?.scores && (!s.class || !s.class.scores)) {
  1134. s.debug_scores = debugMatch.scores;
  1135. }
  1136. liveSignalRects.push({
  1137. x: x1,
  1138. y: 10,
  1139. w: boxW,
  1140. h: h - 28,
  1141. signal: s,
  1142. });
  1143. });
  1144. }
  1145. }
  1146. function renderWaterfall() {
  1147. if (!latest) return;
  1148. const ctx = waterfallCanvas.getContext('2d');
  1149. const w = waterfallCanvas.width;
  1150. const h = waterfallCanvas.height;
  1151. const prev = ctx.getImageData(0, 0, w, h - 1);
  1152. ctx.putImageData(prev, 0, 1);
  1153. const display = getProcessedSpectrum();
  1154. if (!display) return;
  1155. const n = display.length;
  1156. const span = latest.sample_rate / zoom;
  1157. const startHz = latest.center_hz - span / 2 + pan * span;
  1158. const endHz = latest.center_hz + span / 2 + pan * span;
  1159. const minDb = -120;
  1160. const maxDb = 0;
  1161. const row = ctx.createImageData(w, 1);
  1162. for (let x = 0; x < w; x++) {
  1163. const f1 = startHz + (x / w) * (endHz - startHz);
  1164. const f2 = startHz + ((x + 1) / w) * (endHz - startHz);
  1165. const b0 = binForFreq(f1, latest.center_hz, latest.sample_rate, n);
  1166. const b1 = binForFreq(f2, latest.center_hz, latest.sample_rate, n);
  1167. const v = maxInBinRange(display, b0, b1);
  1168. const norm = Math.max(0, Math.min(1, (v - minDb) / (maxDb - minDb)));
  1169. const [r, g, b] = colorMap(norm);
  1170. row.data[x * 4] = r;
  1171. row.data[x * 4 + 1] = g;
  1172. row.data[x * 4 + 2] = b;
  1173. row.data[x * 4 + 3] = 255;
  1174. }
  1175. ctx.putImageData(row, 0, 0);
  1176. drawCfarEdgeOverlay(ctx, w, h, startHz, endHz);
  1177. // Waterfall signal markers: thin vertical lines at signal center frequencies
  1178. if (Array.isArray(latest.signals)) {
  1179. latest.signals.forEach(s => {
  1180. if (!s.center_hz) return;
  1181. const xc = ((s.center_hz - startHz) / (endHz - startHz)) * w;
  1182. if (xc < 0 || xc > w) return;
  1183. const mod = s.class?.mod_type || '';
  1184. ctx.strokeStyle = modColorStr(mod, 0.35);
  1185. ctx.lineWidth = 1;
  1186. ctx.setLineDash([2, 3]);
  1187. ctx.beginPath();
  1188. ctx.moveTo(xc, 0);
  1189. ctx.lineTo(xc, h);
  1190. ctx.stroke();
  1191. ctx.setLineDash([]);
  1192. });
  1193. }
  1194. }
  1195. function renderOccupancy() {
  1196. const ctx = occupancyCanvas.getContext('2d');
  1197. const w = occupancyCanvas.width;
  1198. const h = occupancyCanvas.height;
  1199. ctx.clearRect(0, 0, w, h);
  1200. ctx.fillStyle = '#071018';
  1201. ctx.fillRect(0, 0, w, h);
  1202. if (!latest || events.length === 0) return;
  1203. const bins = new Array(Math.max(32, Math.min(160, Math.floor(w / 8)))).fill(0);
  1204. const bandStart = latest.center_hz - latest.sample_rate / 2;
  1205. const bandEnd = latest.center_hz + latest.sample_rate / 2;
  1206. const now = Date.now();
  1207. const windowStart = now - timelineWindowMs;
  1208. for (const ev of events) {
  1209. if (ev.end_ms < windowStart || ev.start_ms > now) continue;
  1210. const left = ev.center_hz - ev.bandwidth_hz / 2;
  1211. const right = ev.center_hz + ev.bandwidth_hz / 2;
  1212. const normL = Math.max(0, Math.min(1, (left - bandStart) / (bandEnd - bandStart)));
  1213. const normR = Math.max(0, Math.min(1, (right - bandStart) / (bandEnd - bandStart)));
  1214. let b0 = Math.floor(normL * bins.length);
  1215. let b1 = Math.floor(normR * bins.length);
  1216. if (b1 < b0) [b0, b1] = [b1, b0];
  1217. for (let i = Math.max(0, b0); i <= Math.min(bins.length - 1, b1); i++) {
  1218. bins[i] += Math.max(0.3, (ev.snr_db || 0) / 12 + 1);
  1219. }
  1220. }
  1221. const maxBin = Math.max(1, ...bins);
  1222. bins.forEach((v, i) => {
  1223. const norm = v / maxBin;
  1224. const [r, g, b] = colorMap(norm);
  1225. ctx.fillStyle = `rgb(${r}, ${g}, ${b})`;
  1226. const x = (i / bins.length) * w;
  1227. const bw = Math.ceil(w / bins.length) + 1;
  1228. ctx.fillRect(x, 0, bw, h);
  1229. });
  1230. }
  1231. function renderTimeline() {
  1232. const ctx = timelineCanvas.getContext('2d');
  1233. const w = timelineCanvas.width;
  1234. const h = timelineCanvas.height;
  1235. ctx.clearRect(0, 0, w, h);
  1236. ctx.fillStyle = '#071018';
  1237. ctx.fillRect(0, 0, w, h);
  1238. if (events.length === 0) {
  1239. timelineRangeEl.textContent = 'No events yet';
  1240. return;
  1241. }
  1242. const endMs = Date.now();
  1243. const startMs = endMs - timelineWindowMs;
  1244. timelineRangeEl.textContent = `${new Date(startMs).toLocaleTimeString()} - ${new Date(endMs).toLocaleTimeString()}`;
  1245. let minHz = Infinity;
  1246. let maxHz = -Infinity;
  1247. if (latest) {
  1248. minHz = latest.center_hz - latest.sample_rate / 2;
  1249. maxHz = latest.center_hz + latest.sample_rate / 2;
  1250. } else {
  1251. for (const ev of events) {
  1252. minHz = Math.min(minHz, ev.center_hz - ev.bandwidth_hz / 2);
  1253. maxHz = Math.max(maxHz, ev.center_hz + ev.bandwidth_hz / 2);
  1254. }
  1255. }
  1256. if (!isFinite(minHz) || !isFinite(maxHz) || minHz === maxHz) {
  1257. minHz = 0;
  1258. maxHz = 1;
  1259. }
  1260. ctx.strokeStyle = 'rgba(86, 109, 148, 0.18)';
  1261. ctx.lineWidth = 1;
  1262. for (let i = 1; i < 6; i++) {
  1263. const y = (h / 6) * i;
  1264. ctx.beginPath();
  1265. ctx.moveTo(0, y);
  1266. ctx.lineTo(w, y);
  1267. ctx.stroke();
  1268. }
  1269. for (let i = 1; i < 8; i++) {
  1270. const x = (w / 8) * i;
  1271. ctx.beginPath();
  1272. ctx.moveTo(x, 0);
  1273. ctx.lineTo(x, h);
  1274. ctx.stroke();
  1275. }
  1276. timelineRects = [];
  1277. for (const ev of events) {
  1278. if (ev.end_ms < startMs || ev.start_ms > endMs) continue;
  1279. const x1 = ((Math.max(ev.start_ms, startMs) - startMs) / (endMs - startMs)) * w;
  1280. const x2 = ((Math.min(ev.end_ms, endMs) - startMs) / (endMs - startMs)) * w;
  1281. const topHz = ev.center_hz + ev.bandwidth_hz / 2;
  1282. const bottomHz = ev.center_hz - ev.bandwidth_hz / 2;
  1283. const y1 = ((maxHz - topHz) / (maxHz - minHz)) * h;
  1284. const y2 = ((maxHz - bottomHz) / (maxHz - minHz)) * h;
  1285. const rect = { x: x1, y: y1, w: Math.max(2, x2 - x1), h: Math.max(3, y2 - y1), id: ev.id };
  1286. timelineRects.push(rect);
  1287. ctx.fillStyle = snrColor(ev.snr_db || 0).replace('rgb', 'rgba').replace(')', ', 0.85)');
  1288. ctx.fillRect(rect.x, rect.y, rect.w, rect.h);
  1289. }
  1290. if (selectedEventId) {
  1291. const hit = timelineRects.find(r => r.id === selectedEventId);
  1292. if (hit) {
  1293. ctx.strokeStyle = '#ffffff';
  1294. ctx.lineWidth = 2;
  1295. ctx.strokeRect(hit.x - 1, hit.y - 1, hit.w + 2, hit.h + 2);
  1296. }
  1297. }
  1298. }
  1299. function renderDetailSpectrogram() {
  1300. const ev = eventsById.get(selectedEventId);
  1301. const ctx = detailSpectrogram.getContext('2d');
  1302. const w = detailSpectrogram.width;
  1303. const h = detailSpectrogram.height;
  1304. ctx.clearRect(0, 0, w, h);
  1305. ctx.fillStyle = '#071018';
  1306. ctx.fillRect(0, 0, w, h);
  1307. if (!latest || !ev) return;
  1308. const display = getProcessedSpectrum();
  1309. if (!display) return;
  1310. const n = display.length;
  1311. const localSpan = Math.min(latest.sample_rate, Math.max(ev.bandwidth_hz * 4, latest.sample_rate / 10));
  1312. const startHz = ev.center_hz - localSpan / 2;
  1313. const endHz = ev.center_hz + localSpan / 2;
  1314. const minDb = -120;
  1315. const maxDb = 0;
  1316. const row = ctx.createImageData(w, 1);
  1317. for (let x = 0; x < w; x++) {
  1318. const f1 = startHz + (x / w) * (endHz - startHz);
  1319. const f2 = startHz + ((x + 1) / w) * (endHz - startHz);
  1320. const b0 = binForFreq(f1, latest.center_hz, latest.sample_rate, n);
  1321. const b1 = binForFreq(f2, latest.center_hz, latest.sample_rate, n);
  1322. const v = maxInBinRange(display, b0, b1);
  1323. const norm = Math.max(0, Math.min(1, (v - minDb) / (maxDb - minDb)));
  1324. const [r, g, b] = colorMap(norm);
  1325. row.data[x * 4] = r;
  1326. row.data[x * 4 + 1] = g;
  1327. row.data[x * 4 + 2] = b;
  1328. row.data[x * 4 + 3] = 255;
  1329. }
  1330. for (let y = 0; y < h; y++) ctx.putImageData(row, 0, y);
  1331. const centerX = w / 2;
  1332. ctx.strokeStyle = 'rgba(255,255,255,0.65)';
  1333. ctx.lineWidth = 1;
  1334. ctx.beginPath();
  1335. ctx.moveTo(centerX, 0);
  1336. ctx.lineTo(centerX, h);
  1337. ctx.stroke();
  1338. }
  1339. let _lastEventListKey = '';
  1340. function updateSignalDecisionSummary(id) {
  1341. if (!signalDecisionSummary) return;
  1342. if (!id) {
  1343. signalDecisionSummary.textContent = 'Decision: -';
  1344. return;
  1345. }
  1346. const dec = decisionIndex.get(String(id));
  1347. if (!dec) {
  1348. signalDecisionSummary.textContent = 'Decision: -';
  1349. return;
  1350. }
  1351. const flags = `${dec.record ? 'REC' : ''}${dec.decode ? (dec.record ? '+DEC' : 'DEC') : ''}` || 'none';
  1352. const reason = dec.reason ? ` · ${dec.reason}` : '';
  1353. signalDecisionSummary.textContent = `Decision: ${flags}${reason}`;
  1354. }
  1355. function _createSignalItem(s) {
  1356. const btn = document.createElement('button');
  1357. btn.className = 'list-item signal-item';
  1358. btn.type = 'button';
  1359. btn.dataset.center = s.center_hz;
  1360. btn.dataset.bw = s.bw_hz || 0;
  1361. btn.dataset.class = s.class?.mod_type || '';
  1362. btn.dataset.id = s.id || 0;
  1363. const primaryMode = getSignalPrimaryMode(s);
  1364. const mc = modColor(primaryMode);
  1365. const dec = decisionIndex.get(String(s.id || 0));
  1366. const decText = dec?.reason ? `${dec.reason}` : '';
  1367. const decFlags = dec ? `${dec.record ? 'REC' : ''}${dec.decode ? (dec.record ? '+DEC' : 'DEC') : ''}` : '';
  1368. const metaBits = [];
  1369. if (decFlags) metaBits.push(decFlags);
  1370. if (decText) metaBits.push(decText);
  1371. if (s.class?.pll?.rds_station) metaBits.push(`RDS ${s.class.pll.rds_station}`);
  1372. btn.title = metaBits.join(' · ');
  1373. btn.innerHTML = `<div class="item-top"><span class="item-title" data-field="freq">${fmtMHz(s.center_hz, 6)}</span><span class="item-badge" data-field="snr" style="color:${snrColor(s.snr_db || 0)}">${(s.snr_db || 0).toFixed(1)} dB</span></div><div class="item-bottom"><span class="item-meta item-meta--runtime" data-field="mode" style="color:${mc.label}">${primaryMode}</span></div>`;
  1374. btn.style.borderLeftColor = mc.label;
  1375. btn.style.borderLeftWidth = '3px';
  1376. btn.style.borderLeftStyle = 'solid';
  1377. if (matchesListenTarget(s)) btn.classList.add('listening');
  1378. return btn;
  1379. }
  1380. function _patchSignalItem(el, s) {
  1381. const freqEl = el.querySelector('[data-field="freq"]');
  1382. const snrEl = el.querySelector('[data-field="snr"]');
  1383. const modeEl = el.querySelector('[data-field="mode"]');
  1384. const mod = s.class?.mod_type || '';
  1385. const primaryMode = getSignalPrimaryMode(s);
  1386. const mc = modColor(primaryMode);
  1387. const dec = decisionIndex.get(String(s.id || 0));
  1388. const decText = dec?.reason ? `${dec.reason}` : '';
  1389. const decFlags = dec ? `${dec.record ? 'REC' : ''}${dec.decode ? (dec.record ? '+DEC' : 'DEC') : ''}` : '';
  1390. const metaBits = [];
  1391. if (decFlags) metaBits.push(decFlags);
  1392. if (decText) metaBits.push(decText);
  1393. if (s.class?.pll?.rds_station) metaBits.push(`RDS ${s.class.pll.rds_station}`);
  1394. el.title = metaBits.join(' · ');
  1395. if (freqEl) freqEl.textContent = fmtMHz(s.center_hz, 6);
  1396. if (snrEl) { snrEl.textContent = `${(s.snr_db || 0).toFixed(1)} dB`; snrEl.style.color = snrColor(s.snr_db || 0); }
  1397. if (modeEl) { modeEl.textContent = primaryMode; modeEl.style.color = mc.label; }
  1398. el.dataset.center = s.center_hz;
  1399. el.dataset.bw = s.bw_hz || 0;
  1400. el.dataset.class = mod;
  1401. el.style.borderLeftColor = mc.label;
  1402. el.classList.toggle('listening', matchesListenTarget(s));
  1403. }
  1404. function renderLists() {
  1405. const signals = Array.isArray(latest?.signals) ? [...latest.signals] : [];
  1406. signals.sort((a, b) => (b.snr_db || 0) - (a.snr_db || 0));
  1407. signalCountBadge.textContent = `${signals.length} live`;
  1408. metricSignals.textContent = String(signals.length);
  1409. const displaySigs = signals.slice(0, 24);
  1410. const wantIds = new Set(displaySigs.map(s => String(s.id || 0)));
  1411. // Remove empty-state placeholder if signals exist
  1412. const emptyEl = signalList.querySelector('.empty-state');
  1413. if (emptyEl && displaySigs.length > 0) emptyEl.remove();
  1414. // Remove DOM items whose signal ID is no longer present
  1415. signalList.querySelectorAll('.signal-item').forEach(el => {
  1416. if (!wantIds.has(el.dataset.id)) el.remove();
  1417. });
  1418. if (displaySigs.length === 0) {
  1419. if (!signalList.querySelector('.empty-state')) {
  1420. signalList.innerHTML = '<div class="empty-state">No live signals yet.</div>';
  1421. }
  1422. } else {
  1423. // Build map of existing DOM items
  1424. const domById = new Map();
  1425. signalList.querySelectorAll('.signal-item').forEach(el => domById.set(el.dataset.id, el));
  1426. displaySigs.forEach(s => {
  1427. const id = String(s.id || 0);
  1428. const existing = domById.get(id);
  1429. if (existing) {
  1430. _patchSignalItem(existing, s);
  1431. } else {
  1432. const el = _createSignalItem(s);
  1433. // Auto-select if it matches the user's last selection
  1434. if (window._selectedSignal && Math.abs(s.center_hz - window._selectedSignal.freq) < 50000) {
  1435. el.classList.add('active');
  1436. }
  1437. signalList.appendChild(el);
  1438. }
  1439. });
  1440. }
  1441. const recent = [...events].sort((a, b) => b.end_ms - a.end_ms);
  1442. eventCountBadge.textContent = `${recent.length} stored`;
  1443. const evtKey = `${recent.length}:${selectedEventId}:${recent.slice(0, 5).map(e => e.id).join(',')}`;
  1444. if (evtKey !== _lastEventListKey) {
  1445. _lastEventListKey = evtKey;
  1446. if (recent.length === 0) {
  1447. eventList.innerHTML = '<div class="empty-state">No events yet.</div>';
  1448. } else {
  1449. eventList.innerHTML = recent.slice(0, 40).map((ev) => `
  1450. <button class="list-item event-item ${selectedEventId === ev.id ? 'active' : ''}" type="button" data-event-id="${ev.id}">
  1451. <div class="item-top">
  1452. <span class="item-title">${fmtMHz(ev.center_hz, 6)}</span>
  1453. <span class="item-badge" style="color:${snrColor(ev.snr_db || 0)}">${(ev.snr_db || 0).toFixed(1)} dB</span>
  1454. </div>
  1455. <div class="item-bottom">
  1456. <span class="item-meta">${fmtKHz(ev.bandwidth_hz || 0)} · ${fmtMs(ev.duration_ms || 0)}</span>
  1457. <span class="item-meta">${new Date(ev.end_ms).toLocaleTimeString()}</span>
  1458. </div>
  1459. </button>
  1460. `).join('');
  1461. }
  1462. }
  1463. if (recordingList && recordingCountBadge) {
  1464. recordingCountBadge.textContent = `${recordings.length}`;
  1465. if (recordings.length === 0) {
  1466. recordingList.innerHTML = '<div class="empty-state">No recordings yet.</div>';
  1467. } else {
  1468. recordingList.innerHTML = recordings.slice(0, 50).map((rec) => `
  1469. <button class="list-item recording-item" type="button" data-id="${rec.id}">
  1470. <div class="item-top">
  1471. <span class="item-title">${new Date(rec.start).toLocaleString()}</span>
  1472. <span class="item-badge">${fmtMHz(rec.center_hz || 0, 6)}</span>
  1473. </div>
  1474. <div class="item-bottom">
  1475. <span class="item-meta">${rec.id}</span>
  1476. <span class="item-meta">recording</span>
  1477. </div>
  1478. </button>
  1479. `).join('');
  1480. }
  1481. }
  1482. updateSignalDecisionSummary(window._selectedSignal?.id);
  1483. }
  1484. function normalizeEvent(ev) {
  1485. const startMs = new Date(ev.start).getTime();
  1486. const endMs = new Date(ev.end).getTime();
  1487. return {
  1488. ...ev,
  1489. start_ms: startMs,
  1490. end_ms: endMs,
  1491. duration_ms: Math.max(0, endMs - startMs),
  1492. };
  1493. }
  1494. function upsertEvents(list, replace = false) {
  1495. if (replace) {
  1496. events.length = 0;
  1497. eventsById.clear();
  1498. }
  1499. for (const raw of list) {
  1500. if (!raw || !raw.id || eventsById.has(raw.id)) continue;
  1501. const ev = normalizeEvent(raw);
  1502. eventsById.set(ev.id, ev);
  1503. events.push(ev);
  1504. }
  1505. events.sort((a, b) => a.end_ms - b.end_ms);
  1506. const maxEvents = 1500;
  1507. if (events.length > maxEvents) {
  1508. const drop = events.length - maxEvents;
  1509. for (let i = 0; i < drop; i++) eventsById.delete(events[i].id);
  1510. events.splice(0, drop);
  1511. }
  1512. if (events.length > 0) lastEventEndMs = events[events.length - 1].end_ms;
  1513. renderLists();
  1514. }
  1515. async function fetchEvents(initial) {
  1516. if (eventsFetchInFlight || timelineFrozen) return;
  1517. eventsFetchInFlight = true;
  1518. try {
  1519. let url = '/api/events?limit=1000';
  1520. if (!initial && lastEventEndMs > 0) url = `/api/events?since=${lastEventEndMs - 1}`;
  1521. const res = await fetch(url);
  1522. if (!res.ok) return;
  1523. const data = await res.json();
  1524. if (Array.isArray(data)) upsertEvents(data, initial);
  1525. } finally {
  1526. eventsFetchInFlight = false;
  1527. }
  1528. }
  1529. async function fetchRecordings() {
  1530. if (recordingsFetchInFlight || !recordingList) return;
  1531. recordingsFetchInFlight = true;
  1532. try {
  1533. const res = await fetch('/api/recordings');
  1534. if (!res.ok) return;
  1535. const data = await res.json();
  1536. if (Array.isArray(data)) {
  1537. recordings = data;
  1538. renderLists();
  1539. }
  1540. } finally {
  1541. recordingsFetchInFlight = false;
  1542. }
  1543. }
  1544. function openDrawer(ev) {
  1545. if (!ev) return;
  1546. selectedEventId = ev.id;
  1547. detailSubtitle.textContent = `Event ${ev.id}`;
  1548. detailCenterEl.textContent = fmtMHz(ev.center_hz, 6);
  1549. detailBwEl.textContent = fmtKHz(ev.bandwidth_hz || 0);
  1550. detailStartEl.textContent = new Date(ev.start_ms).toLocaleString();
  1551. detailEndEl.textContent = new Date(ev.end_ms).toLocaleString();
  1552. detailSnrEl.textContent = `${(ev.snr_db || 0).toFixed(1)} dB`;
  1553. detailDurEl.textContent = fmtMs(ev.duration_ms || 0);
  1554. detailClassEl.textContent = ev.class?.mod_type || '-';
  1555. if (classifierScoresEl) {
  1556. const scores = ev.class?.scores;
  1557. if (scores && typeof scores === 'object') {
  1558. const rows = Object.entries(scores)
  1559. .sort((a, b) => b[1] - a[1])
  1560. .slice(0, 6)
  1561. .map(([k, v]) => `${k}:${v.toFixed(2)}`)
  1562. .join(' · ');
  1563. classifierScoresEl.textContent = rows ? `Classifier scores: ${rows}` : 'Classifier scores: -';
  1564. renderScoreBars(scores);
  1565. } else {
  1566. const liveScores = (latest?.debug?.scores || []).find((s) => Math.abs((s.center_hz || 0) - (ev.center_hz || 0)) < Math.max(500, (ev.bandwidth_hz || 0)));
  1567. if (liveScores?.scores) {
  1568. const rows = Object.entries(liveScores.scores)
  1569. .sort((a, b) => b[1] - a[1])
  1570. .slice(0, 6)
  1571. .map(([k, v]) => `${k}:${Number(v).toFixed(2)}`)
  1572. .join(' · ');
  1573. classifierScoresEl.textContent = rows ? `Classifier scores: ${rows}` : 'Classifier scores: -';
  1574. renderScoreBars(liveScores.scores);
  1575. } else {
  1576. classifierScoresEl.textContent = 'Classifier scores: -';
  1577. renderScoreBars(null);
  1578. }
  1579. }
  1580. }
  1581. if (recordingMetaEl) {
  1582. recordingMetaEl.textContent = 'Recording: -';
  1583. }
  1584. if (recordingMetaLink) {
  1585. recordingMetaLink.href = '#';
  1586. recordingIQLink.href = '#';
  1587. recordingAudioLink.href = '#';
  1588. }
  1589. drawerEl.classList.add('open');
  1590. drawerEl.setAttribute('aria-hidden', 'false');
  1591. renderDetailSpectrogram();
  1592. renderLists();
  1593. }
  1594. function closeDrawer() {
  1595. drawerEl.classList.remove('open');
  1596. drawerEl.setAttribute('aria-hidden', 'true');
  1597. selectedEventId = null;
  1598. renderLists();
  1599. }
  1600. function fitView() {
  1601. zoom = 1;
  1602. pan = 0;
  1603. followLive = true;
  1604. }
  1605. function tuneToFrequency(centerHz) {
  1606. if (!Number.isFinite(centerHz)) return;
  1607. followLive = true;
  1608. centerInput.value = (centerHz / 1e6).toFixed(6);
  1609. queueConfigUpdate({ center_hz: centerHz });
  1610. }
  1611. function connect() {
  1612. clearTimeout(wsReconnectTimer);
  1613. const proto = location.protocol === 'https:' ? 'wss' : 'ws';
  1614. // Remote optimization: detect non-localhost and opt into binary + decimation
  1615. const hn = location.hostname;
  1616. const isLocal = ['localhost', '127.0.0.1', '::1'].includes(hn)
  1617. || hn.startsWith('192.168.')
  1618. || hn.startsWith('10.')
  1619. || /^172\.(1[6-9]|2\d|3[01])\./.test(hn)
  1620. || hn.endsWith('.local')
  1621. || hn.endsWith('.lan');
  1622. const params = new URLSearchParams(location.search);
  1623. const wantBinary = params.get('binary') === '1' || !isLocal;
  1624. const bins = parseInt(params.get('bins') || (isLocal ? '0' : '2048'), 10);
  1625. const fps = parseInt(params.get('fps') || (isLocal ? '0' : '10'), 10);
  1626. let wsUrl = `${proto}://${location.host}/ws`;
  1627. if (wantBinary || bins > 0 || fps > 0) {
  1628. const qp = [];
  1629. if (wantBinary) qp.push('binary=1');
  1630. if (bins > 0) qp.push(`bins=${bins}`);
  1631. if (fps > 0) qp.push(`fps=${fps}`);
  1632. wsUrl += '?' + qp.join('&');
  1633. }
  1634. const ws = new WebSocket(wsUrl);
  1635. ws.binaryType = 'arraybuffer';
  1636. setWsBadge('Connecting', 'neutral');
  1637. ws.onopen = () => setWsBadge('Live', 'ok');
  1638. ws.onmessage = (ev) => {
  1639. if (ev.data instanceof ArrayBuffer) {
  1640. try {
  1641. const decoded = decodeBinaryFrame(ev.data);
  1642. if (decoded) latest = decoded;
  1643. } catch (e) {
  1644. console.warn('binary frame decode error:', e);
  1645. return;
  1646. }
  1647. } else {
  1648. latest = JSON.parse(ev.data);
  1649. }
  1650. markSpectrumDirty();
  1651. if (followLive) pan = 0;
  1652. updateHeroMetrics();
  1653. renderLists();
  1654. };
  1655. ws.onclose = () => {
  1656. setWsBadge('Retrying', 'bad');
  1657. wsReconnectTimer = setTimeout(connect, 1000);
  1658. };
  1659. ws.onerror = () => ws.close();
  1660. }
  1661. // Decode binary spectrum frame v4 (hybrid: binary spectrum + JSON signals)
  1662. function decodeBinaryFrame(buf) {
  1663. const view = new DataView(buf);
  1664. if (buf.byteLength < 32) return null;
  1665. // Header: 32 bytes
  1666. const magic0 = view.getUint8(0);
  1667. const magic1 = view.getUint8(1);
  1668. if (magic0 !== 0x53 || magic1 !== 0x50) return null; // not "SP"
  1669. const version = view.getUint16(2, true);
  1670. const ts = Number(view.getBigInt64(4, true));
  1671. const centerHz = view.getFloat64(12, true);
  1672. const binCount = view.getUint32(20, true);
  1673. const sampleRateHz = view.getUint32(24, true);
  1674. const jsonOffset = view.getUint32(28, true);
  1675. if (buf.byteLength < 32 + binCount * 2) return null;
  1676. // Spectrum: binCount × int16 at offset 32
  1677. const spectrum = new Float64Array(binCount);
  1678. let off = 32;
  1679. for (let i = 0; i < binCount; i++) {
  1680. spectrum[i] = view.getInt16(off, true) / 100;
  1681. off += 2;
  1682. }
  1683. // JSON signals + debug after the spectrum data
  1684. let signals = [];
  1685. let debug = null;
  1686. if (jsonOffset > 0 && jsonOffset < buf.byteLength) {
  1687. try {
  1688. const jsonBytes = new Uint8Array(buf, jsonOffset);
  1689. const jsonStr = new TextDecoder().decode(jsonBytes);
  1690. const parsed = JSON.parse(jsonStr);
  1691. signals = parsed.signals || [];
  1692. debug = parsed.debug || null;
  1693. } catch (e) {
  1694. // JSON parse failed — continue with empty signals
  1695. }
  1696. }
  1697. return {
  1698. ts: ts,
  1699. center_hz: centerHz,
  1700. sample_rate: sampleRateHz,
  1701. fft_size: binCount,
  1702. spectrum_db: spectrum,
  1703. signals: signals,
  1704. debug: debug
  1705. };
  1706. }
  1707. function renderLoop() {
  1708. renderFrames += 1;
  1709. const now = performance.now();
  1710. if (now - lastFpsTs >= 1000) {
  1711. renderFps = (renderFrames * 1000) / (now - lastFpsTs);
  1712. renderFrames = 0;
  1713. lastFpsTs = now;
  1714. }
  1715. if (latest) {
  1716. renderBandNavigator();
  1717. renderSpectrum();
  1718. renderWaterfall();
  1719. renderOccupancy();
  1720. renderTimeline();
  1721. if (drawerEl.classList.contains('open')) renderDetailSpectrogram();
  1722. }
  1723. updateHeroMetrics();
  1724. requestAnimationFrame(renderLoop);
  1725. }
  1726. function handleSpectrumClick(ev) {
  1727. const rect = spectrumCanvas.getBoundingClientRect();
  1728. const x = (ev.clientX - rect.left) * (spectrumCanvas.width / rect.width);
  1729. const y = (ev.clientY - rect.top) * (spectrumCanvas.height / rect.height);
  1730. for (let i = liveSignalRects.length - 1; i >= 0; i--) {
  1731. const r = liveSignalRects[i];
  1732. if (x >= r.x && x <= r.x + r.w && y >= r.y && y <= r.y + r.h) {
  1733. const sig = r.signal;
  1734. const freq = sig.center_hz;
  1735. const bw = sig.bw_hz || 12000;
  1736. const mode = sig.class?.mod_type || '';
  1737. startLiveListen(freq, bw, mode);
  1738. window._selectedSignal = { freq, bw, mode };
  1739. // Update selected signal in list
  1740. signalList.querySelectorAll('.signal-item').forEach(el => {
  1741. const elFreq = parseFloat(el.dataset.center || '0');
  1742. el.classList.toggle('active', Math.abs(elFreq - freq) < Math.max(500, bw * 0.5));
  1743. });
  1744. return;
  1745. }
  1746. }
  1747. if (!latest) return;
  1748. const span = latest.sample_rate / zoom;
  1749. const startHz = latest.center_hz - span / 2 + pan * span;
  1750. const clickedHz = startHz + (x / spectrumCanvas.width) * span;
  1751. tuneToFrequency(clickedHz);
  1752. }
  1753. function handleNavPosition(ev) {
  1754. if (!latest) return;
  1755. const rect = navCanvas.getBoundingClientRect();
  1756. const x = Math.max(0, Math.min(rect.width, ev.clientX - rect.left));
  1757. const norm = x / rect.width;
  1758. const fullStart = latest.center_hz - latest.sample_rate / 2;
  1759. const newViewCenter = fullStart + norm * latest.sample_rate;
  1760. const span = latest.sample_rate / zoom;
  1761. const desiredPan = (newViewCenter - latest.center_hz) / span;
  1762. pan = Math.max(-0.5, Math.min(0.5, desiredPan));
  1763. followLive = false;
  1764. }
  1765. function exportSelectedEvent() {
  1766. const ev = eventsById.get(selectedEventId);
  1767. if (!ev) return;
  1768. const blob = new Blob([JSON.stringify(ev, null, 2)], { type: 'application/json' });
  1769. const a = document.createElement('a');
  1770. a.href = URL.createObjectURL(blob);
  1771. a.download = `event-${ev.id}.json`;
  1772. a.click();
  1773. URL.revokeObjectURL(a.href);
  1774. }
  1775. spectrumCanvas.addEventListener('wheel', (ev) => {
  1776. ev.preventDefault();
  1777. const direction = Math.sign(ev.deltaY);
  1778. zoom = Math.max(0.25, Math.min(24, zoom * (direction > 0 ? 1.12 : 0.89)));
  1779. followLive = false;
  1780. });
  1781. spectrumCanvas.addEventListener('mousedown', (ev) => {
  1782. isDraggingSpectrum = true;
  1783. dragStartX = ev.clientX;
  1784. dragStartPan = pan;
  1785. });
  1786. window.addEventListener('mouseup', () => {
  1787. isDraggingSpectrum = false;
  1788. navDrag = false;
  1789. });
  1790. spectrumCanvas.addEventListener('mouseleave', hideSignalPopover);
  1791. window.addEventListener('mousemove', (ev) => {
  1792. const rect = spectrumCanvas.getBoundingClientRect();
  1793. const x = (ev.clientX - rect.left) * (spectrumCanvas.width / rect.width);
  1794. const y = (ev.clientY - rect.top) * (spectrumCanvas.height / rect.height);
  1795. let hoverHit = null;
  1796. for (let i = liveSignalRects.length - 1; i >= 0; i--) {
  1797. const r = liveSignalRects[i];
  1798. if (x >= r.x && x <= r.x + r.w && y >= r.y && y <= r.y + r.h) {
  1799. hoverHit = r;
  1800. break;
  1801. }
  1802. }
  1803. if (hoverHit) {
  1804. hoveredSignal = hoverHit.signal;
  1805. renderSignalPopover(hoverHit, hoverHit.signal);
  1806. } else {
  1807. hideSignalPopover();
  1808. }
  1809. if (isDraggingSpectrum) {
  1810. const dx = ev.clientX - dragStartX;
  1811. pan = Math.max(-0.5, Math.min(0.5, dragStartPan - dx / spectrumCanvas.clientWidth));
  1812. followLive = false;
  1813. }
  1814. if (navDrag) handleNavPosition(ev);
  1815. });
  1816. spectrumCanvas.addEventListener('dblclick', fitView);
  1817. spectrumCanvas.addEventListener('click', handleSpectrumClick);
  1818. navCanvas.addEventListener('mousedown', (ev) => {
  1819. navDrag = true;
  1820. handleNavPosition(ev);
  1821. });
  1822. navCanvas.addEventListener('click', handleNavPosition);
  1823. centerInput.addEventListener('change', () => {
  1824. const mhz = parseFloat(centerInput.value);
  1825. if (Number.isFinite(mhz)) tuneToFrequency(fromMHz(mhz));
  1826. });
  1827. spanInput.addEventListener('change', () => {
  1828. const mhz = parseFloat(spanInput.value);
  1829. if (!Number.isFinite(mhz) || mhz <= 0) return;
  1830. const baseRate = currentConfig?.sample_rate || latest?.sample_rate;
  1831. if (!baseRate) return;
  1832. zoom = Math.max(0.25, Math.min(24, baseRate / fromMHz(mhz)));
  1833. followLive = false;
  1834. });
  1835. sampleRateSelect.addEventListener('change', () => {
  1836. const mhz = parseFloat(sampleRateSelect.value);
  1837. if (Number.isFinite(mhz)) queueConfigUpdate({ sample_rate: Math.round(fromMHz(mhz)) });
  1838. });
  1839. bwSelect.addEventListener('change', () => {
  1840. const bw = parseInt(bwSelect.value, 10);
  1841. if (Number.isFinite(bw)) queueConfigUpdate({ tuner_bw_khz: bw });
  1842. });
  1843. fftSelect.addEventListener('change', () => {
  1844. const size = parseInt(fftSelect.value, 10);
  1845. if (Number.isFinite(size)) queueConfigUpdate({ fft_size: size });
  1846. });
  1847. gainRange.addEventListener('input', () => {
  1848. gainInput.value = gainRange.value;
  1849. const uiVal = parseFloat(gainRange.value);
  1850. if (Number.isFinite(uiVal)) queueConfigUpdate({ gain_db: Math.max(0, Math.min(GAIN_MAX, GAIN_MAX - uiVal)) });
  1851. });
  1852. gainInput.addEventListener('change', () => {
  1853. const uiVal = parseFloat(gainInput.value);
  1854. if (Number.isFinite(uiVal)) {
  1855. gainRange.value = uiVal;
  1856. queueConfigUpdate({ gain_db: Math.max(0, Math.min(GAIN_MAX, GAIN_MAX - uiVal)) });
  1857. }
  1858. });
  1859. thresholdRange.addEventListener('input', () => {
  1860. thresholdInput.value = thresholdRange.value;
  1861. queueConfigUpdate({ detector: { threshold_db: parseFloat(thresholdRange.value) } });
  1862. });
  1863. thresholdInput.addEventListener('change', () => {
  1864. const v = parseFloat(thresholdInput.value);
  1865. if (Number.isFinite(v)) {
  1866. thresholdRange.value = v;
  1867. queueConfigUpdate({ detector: { threshold_db: v } });
  1868. }
  1869. });
  1870. if (cfarModeSelect) cfarModeSelect.addEventListener('change', () => {
  1871. queueConfigUpdate({ detector: { cfar_mode: cfarModeSelect.value } });
  1872. const rankRow = cfarRankInput?.closest('.field');
  1873. if (rankRow) rankRow.style.display = (cfarModeSelect.value === 'OS') ? '' : 'none';
  1874. });
  1875. if (cfarWrapToggle) cfarWrapToggle.addEventListener('change', () => {
  1876. queueConfigUpdate({ detector: { cfar_wrap_around: cfarWrapToggle.checked } });
  1877. });
  1878. if (cfarGuardHzInput) cfarGuardHzInput.addEventListener('change', () => {
  1879. const v = parseFloat(cfarGuardHzInput.value);
  1880. if (Number.isFinite(v) && v >= 0) queueConfigUpdate({ detector: { cfar_guard_hz: v } });
  1881. });
  1882. if (cfarTrainHzInput) cfarTrainHzInput.addEventListener('change', () => {
  1883. const v = parseFloat(cfarTrainHzInput.value);
  1884. if (Number.isFinite(v) && v > 0) queueConfigUpdate({ detector: { cfar_train_hz: v } });
  1885. });
  1886. if (cfarRankInput) cfarRankInput.addEventListener('change', () => {
  1887. const v = parseInt(cfarRankInput.value, 10);
  1888. if (Number.isFinite(v)) queueConfigUpdate({ detector: { cfar_rank: v } });
  1889. });
  1890. if (cfarScaleInput) cfarScaleInput.addEventListener('change', () => {
  1891. const v = parseFloat(cfarScaleInput.value);
  1892. if (Number.isFinite(v)) queueConfigUpdate({ detector: { cfar_scale_db: v } });
  1893. });
  1894. if (minDurationInput) minDurationInput.addEventListener('change', () => {
  1895. const v = parseInt(minDurationInput.value, 10);
  1896. if (Number.isFinite(v)) queueConfigUpdate({ detector: { min_duration_ms: v } });
  1897. });
  1898. if (holdInput) holdInput.addEventListener('change', () => {
  1899. const v = parseInt(holdInput.value, 10);
  1900. if (Number.isFinite(v)) queueConfigUpdate({ detector: { hold_ms: v } });
  1901. });
  1902. if (emaAlphaInput) emaAlphaInput.addEventListener('change', () => {
  1903. const v = parseFloat(emaAlphaInput.value);
  1904. if (Number.isFinite(v)) queueConfigUpdate({ detector: { ema_alpha: v } });
  1905. });
  1906. if (hysteresisInput) hysteresisInput.addEventListener('change', () => {
  1907. const v = parseFloat(hysteresisInput.value);
  1908. if (Number.isFinite(v)) queueConfigUpdate({ detector: { hysteresis_db: v } });
  1909. });
  1910. if (stableFramesInput) stableFramesInput.addEventListener('change', () => {
  1911. const v = parseInt(stableFramesInput.value, 10);
  1912. if (Number.isFinite(v)) queueConfigUpdate({ detector: { min_stable_frames: v } });
  1913. });
  1914. if (gapToleranceInput) gapToleranceInput.addEventListener('change', () => {
  1915. const v = parseInt(gapToleranceInput.value, 10);
  1916. if (Number.isFinite(v)) queueConfigUpdate({ detector: { gap_tolerance_ms: v } });
  1917. });
  1918. if (classifierModeSelect) classifierModeSelect.addEventListener('change', () => {
  1919. queueConfigUpdate({ classifier_mode: classifierModeSelect.value });
  1920. });
  1921. if (edgeMarginInput) edgeMarginInput.addEventListener('change', () => {
  1922. const v = parseFloat(edgeMarginInput.value);
  1923. if (Number.isFinite(v) && v >= 0) queueConfigUpdate({ detector: { edge_margin_db: v } });
  1924. });
  1925. if (mergeGapInput) mergeGapInput.addEventListener('change', () => {
  1926. const v = parseFloat(mergeGapInput.value);
  1927. if (Number.isFinite(v)) queueConfigUpdate({ detector: { merge_gap_hz: v } });
  1928. });
  1929. if (classHistoryInput) classHistoryInput.addEventListener('change', () => {
  1930. const v = parseInt(classHistoryInput.value, 10);
  1931. if (Number.isFinite(v) && v >= 1) queueConfigUpdate({ detector: { class_history_size: v } });
  1932. });
  1933. if (classSwitchInput) classSwitchInput.addEventListener('change', () => {
  1934. const v = parseFloat(classSwitchInput.value);
  1935. if (Number.isFinite(v) && v >= 0.1 && v <= 1.0) queueConfigUpdate({ detector: { class_switch_ratio: v } });
  1936. });
  1937. agcToggle.addEventListener('change', () => queueSettingsUpdate({ agc: agcToggle.checked }));
  1938. dcToggle.addEventListener('change', () => queueSettingsUpdate({ dc_block: dcToggle.checked }));
  1939. iqToggle.addEventListener('change', () => queueSettingsUpdate({ iq_balance: iqToggle.checked }));
  1940. gpuToggle.addEventListener('change', () => queueConfigUpdate({ use_gpu_fft: gpuToggle.checked }));
  1941. if (recEnableToggle) recEnableToggle.addEventListener('change', () => queueConfigUpdate({ recorder: { enabled: recEnableToggle.checked } }));
  1942. if (recIQToggle) recIQToggle.addEventListener('change', () => queueConfigUpdate({ recorder: { record_iq: recIQToggle.checked } }));
  1943. if (recAudioToggle) recAudioToggle.addEventListener('change', () => queueConfigUpdate({ recorder: { record_audio: recAudioToggle.checked } }));
  1944. if (recDemodToggle) recDemodToggle.addEventListener('change', () => queueConfigUpdate({ recorder: { auto_demod: recDemodToggle.checked } }));
  1945. if (recDecodeToggle) recDecodeToggle.addEventListener('change', () => queueConfigUpdate({ recorder: { auto_decode: recDecodeToggle.checked } }));
  1946. if (recMinSNR) recMinSNR.addEventListener('change', () => queueConfigUpdate({ recorder: { min_snr_db: parseFloat(recMinSNR.value) } }));
  1947. if (recMaxDisk) recMaxDisk.addEventListener('change', () => queueConfigUpdate({ recorder: { max_disk_mb: parseInt(recMaxDisk.value || '0', 10) } }));
  1948. if (recClassFilter) recClassFilter.addEventListener('change', () => {
  1949. const list = (recClassFilter.value || '')
  1950. .split(',')
  1951. .map(s => s.trim())
  1952. .filter(Boolean);
  1953. queueConfigUpdate({ recorder: { class_filter: list } });
  1954. });
  1955. if (refineAutoSpan) refineAutoSpan.addEventListener('change', () => {
  1956. queueConfigUpdate({ refinement: { auto_span: refineAutoSpan.value === 'true' } });
  1957. });
  1958. if (refineMinSpan) refineMinSpan.addEventListener('change', () => {
  1959. const v = parseFloat(refineMinSpan.value);
  1960. if (Number.isFinite(v)) queueConfigUpdate({ refinement: { min_span_hz: v } });
  1961. });
  1962. if (refineMaxSpan) refineMaxSpan.addEventListener('change', () => {
  1963. const v = parseFloat(refineMaxSpan.value);
  1964. if (Number.isFinite(v)) queueConfigUpdate({ refinement: { max_span_hz: v } });
  1965. });
  1966. if (resMaxRefine) resMaxRefine.addEventListener('change', () => {
  1967. const v = parseInt(resMaxRefine.value || '0', 10);
  1968. queueConfigUpdate({ resources: { max_refinement_jobs: v } });
  1969. });
  1970. if (resMaxRecord) resMaxRecord.addEventListener('change', () => {
  1971. const v = parseInt(resMaxRecord.value || '0', 10);
  1972. queueConfigUpdate({ resources: { max_recording_streams: v } });
  1973. });
  1974. if (resMaxDecode) resMaxDecode.addEventListener('change', () => {
  1975. const v = parseInt(resMaxDecode.value || '0', 10);
  1976. queueConfigUpdate({ resources: { max_decode_jobs: v } });
  1977. });
  1978. if (resDecisionHold) resDecisionHold.addEventListener('change', () => {
  1979. const v = parseInt(resDecisionHold.value || '0', 10);
  1980. queueConfigUpdate({ resources: { decision_hold_ms: v } });
  1981. });
  1982. avgSelect.addEventListener('change', () => {
  1983. avgAlpha = parseFloat(avgSelect.value) || 0;
  1984. resetProcessingCaches();
  1985. });
  1986. maxHoldToggle.addEventListener('change', () => {
  1987. maxHold = maxHoldToggle.checked;
  1988. maxSpectrum = null;
  1989. markSpectrumDirty();
  1990. });
  1991. if (debugOverlayToggle) debugOverlayToggle.addEventListener('change', () => {
  1992. showDebugOverlay = debugOverlayToggle.checked;
  1993. localStorage.setItem('spectre.debugOverlay', showDebugOverlay ? '1' : '0');
  1994. markSpectrumDirty();
  1995. updateHeroMetrics();
  1996. });
  1997. resetMaxBtn.addEventListener('click', () => {
  1998. maxSpectrum = null;
  1999. markSpectrumDirty();
  2000. });
  2001. followBtn.addEventListener('click', () => { followLive = true; pan = 0; });
  2002. fitBtn.addEventListener('click', fitView);
  2003. timelineFollowBtn.addEventListener('click', () => { timelineFrozen = false; });
  2004. timelineFreezeBtn.addEventListener('click', () => {
  2005. timelineFrozen = !timelineFrozen;
  2006. timelineFreezeBtn.textContent = timelineFrozen ? 'Frozen' : 'Freeze';
  2007. });
  2008. presetButtons.forEach((btn) => {
  2009. btn.addEventListener('click', () => {
  2010. const mhz = parseFloat(btn.dataset.center);
  2011. if (Number.isFinite(mhz)) tuneToFrequency(fromMHz(mhz));
  2012. });
  2013. });
  2014. railTabs.forEach((tab) => {
  2015. tab.addEventListener('click', () => {
  2016. railTabs.forEach(t => t.classList.toggle('active', t === tab));
  2017. tabPanels.forEach(panel => panel.classList.toggle('active', panel.dataset.panel === tab.dataset.tab));
  2018. });
  2019. });
  2020. drawerCloseBtn.addEventListener('click', closeDrawer);
  2021. exportEventBtn.addEventListener('click', exportSelectedEvent);
  2022. if (liveListenEventBtn) {
  2023. liveListenEventBtn.addEventListener('click', () => {
  2024. const ev = eventsById.get(selectedEventId);
  2025. if (!ev) return;
  2026. // Toggle off if already listening
  2027. if (liveListenWS && liveListenWS.playing) {
  2028. stopLiveListen();
  2029. return;
  2030. }
  2031. const freq = ev.center_hz;
  2032. const bw = ev.bandwidth_hz || 12000;
  2033. const mode = ev.class?.mod_type || 'NFM';
  2034. startLiveListen(freq, bw, mode);
  2035. });
  2036. }
  2037. if (decodeEventBtn) {
  2038. decodeEventBtn.addEventListener('click', async () => {
  2039. const ev = eventsById.get(selectedEventId);
  2040. if (!ev) return;
  2041. if (!recordingMetaEl) return;
  2042. const rec = recordings.find(r => r.event_id === ev.id) || recordings.find(r => r.center_hz === ev.center_hz);
  2043. if (!rec) {
  2044. decodeResultEl.textContent = 'Decode: no recording';
  2045. return;
  2046. }
  2047. const mode = decodeModeSelect?.value || ev.class?.mod_type || 'FT8';
  2048. const res = await fetch(`/api/recordings/${rec.id}/decode?mode=${mode}`);
  2049. if (!res.ok) {
  2050. decodeResultEl.textContent = 'Decode: failed';
  2051. return;
  2052. }
  2053. const data = await res.json();
  2054. decodeResultEl.textContent = `Decode: ${String(data.stdout || '').slice(0, 80)}`;
  2055. });
  2056. }
  2057. jumpToEventBtn.addEventListener('click', () => {
  2058. const ev = eventsById.get(selectedEventId);
  2059. if (!ev) return;
  2060. tuneToFrequency(ev.center_hz);
  2061. });
  2062. timelineCanvas.addEventListener('click', (ev) => {
  2063. const rect = timelineCanvas.getBoundingClientRect();
  2064. const x = (ev.clientX - rect.left) * (timelineCanvas.width / rect.width);
  2065. const y = (ev.clientY - rect.top) * (timelineCanvas.height / rect.height);
  2066. for (let i = timelineRects.length - 1; i >= 0; i--) {
  2067. const r = timelineRects[i];
  2068. if (x >= r.x && x <= r.x + r.w && y >= r.y && y <= r.y + r.h) {
  2069. openDrawer(eventsById.get(r.id));
  2070. return;
  2071. }
  2072. }
  2073. });
  2074. signalList.addEventListener('click', (ev) => {
  2075. const target = ev.target.closest('.signal-item');
  2076. if (!target) return;
  2077. // Select this signal for live listening — don't retune the SDR
  2078. const allItems = signalList.querySelectorAll('.signal-item');
  2079. allItems.forEach(el => el.classList.remove('active'));
  2080. target.classList.add('active');
  2081. // Store selected signal data for Live Listen button
  2082. window._selectedSignal = {
  2083. id: target.dataset.id || null,
  2084. freq: parseFloat(target.dataset.center),
  2085. bw: parseFloat(target.dataset.bw || '12000'),
  2086. mode: target.dataset.class || ''
  2087. };
  2088. updateSignalDecisionSummary(window._selectedSignal.id);
  2089. updateSignalQueueSummary();
  2090. });
  2091. if (liveListenBtn) {
  2092. liveListenBtn.addEventListener('click', async () => {
  2093. // Toggle: if already listening, stop
  2094. if (liveListenWS && liveListenWS.playing) {
  2095. stopLiveListen();
  2096. return;
  2097. }
  2098. // Use selected signal if available, otherwise first in list
  2099. let freq, bw, mode;
  2100. if (window._selectedSignal) {
  2101. freq = window._selectedSignal.freq;
  2102. bw = window._selectedSignal.bw;
  2103. mode = window._selectedSignal.mode;
  2104. } else {
  2105. const first = signalList.querySelector('.signal-item');
  2106. if (!first) return;
  2107. freq = parseFloat(first.dataset.center);
  2108. bw = parseFloat(first.dataset.bw || '12000');
  2109. mode = first.dataset.class || '';
  2110. }
  2111. if (!Number.isFinite(freq)) return;
  2112. startLiveListen(freq, bw, mode);
  2113. });
  2114. }
  2115. eventList.addEventListener('click', (ev) => {
  2116. const target = ev.target.closest('.event-item');
  2117. if (!target) return;
  2118. const id = target.dataset.eventId;
  2119. openDrawer(eventsById.get(id));
  2120. });
  2121. if (recordingList) {
  2122. recordingList.addEventListener('click', async (ev) => {
  2123. const target = ev.target.closest('.recording-item');
  2124. if (!target) return;
  2125. const id = target.dataset.id;
  2126. const audio = new Audio(`/api/recordings/${id}/audio`);
  2127. audio.play();
  2128. if (recordingMetaEl) recordingMetaEl.textContent = `Recording: ${id}`;
  2129. if (recordingMetaLink) {
  2130. recordingMetaLink.href = `/api/recordings/${id}`;
  2131. recordingIQLink.href = `/api/recordings/${id}/iq`;
  2132. recordingAudioLink.href = `/api/recordings/${id}/audio`;
  2133. }
  2134. try {
  2135. const res = await fetch(`/api/recordings/${id}`);
  2136. if (!res.ok) return;
  2137. const meta = await res.json();
  2138. if (decodeResultEl) {
  2139. const rds = meta.rds_ps ? `RDS: ${meta.rds_ps}` : '';
  2140. decodeResultEl.textContent = `Decode: ${rds}`;
  2141. }
  2142. if (classifierScoresEl) {
  2143. const scores = meta.classification?.scores;
  2144. if (scores && typeof scores === 'object') {
  2145. const rows = Object.entries(scores)
  2146. .sort((a, b) => b[1] - a[1])
  2147. .slice(0, 6)
  2148. .map(([k, v]) => `${k}:${v.toFixed(2)}`)
  2149. .join(' · ');
  2150. classifierScoresEl.textContent = rows ? `Classifier scores: ${rows}` : 'Classifier scores: -';
  2151. } else {
  2152. classifierScoresEl.textContent = 'Classifier scores: -';
  2153. }
  2154. }
  2155. } catch {}
  2156. });
  2157. }
  2158. if (debugOverlayToggle) debugOverlayToggle.checked = showDebugOverlay;
  2159. window.addEventListener('keydown', (ev) => {
  2160. if (ev.target && ['INPUT', 'SELECT', 'TEXTAREA'].includes(ev.target.tagName)) return;
  2161. if (ev.key === ' ') {
  2162. ev.preventDefault();
  2163. followLive = true;
  2164. pan = 0;
  2165. } else if (ev.key.toLowerCase() === 'f') {
  2166. fitView();
  2167. } else if (ev.key.toLowerCase() === 'm') {
  2168. maxHold = !maxHold;
  2169. maxHoldToggle.checked = maxHold;
  2170. if (!maxHold) maxSpectrum = null;
  2171. markSpectrumDirty();
  2172. } else if (ev.key.toLowerCase() === 'g') {
  2173. gpuToggle.checked = !gpuToggle.checked;
  2174. queueConfigUpdate({ use_gpu_fft: gpuToggle.checked });
  2175. } else if (ev.key === '[') {
  2176. zoom = Math.max(0.25, zoom * 0.88);
  2177. } else if (ev.key === ']') {
  2178. zoom = Math.min(24, zoom * 1.12);
  2179. } else if (ev.key === 'ArrowLeft') {
  2180. pan = Math.max(-0.5, pan - 0.04);
  2181. followLive = false;
  2182. } else if (ev.key === 'ArrowRight') {
  2183. pan = Math.min(0.5, pan + 0.04);
  2184. followLive = false;
  2185. }
  2186. });
  2187. loadConfig();
  2188. resetLiveListenMeta();
  2189. loadStats();
  2190. loadGPU();
  2191. loadRefinement();
  2192. fetchEvents(true);
  2193. fetchRecordings();
  2194. loadDecoders();
  2195. connect();
  2196. requestAnimationFrame(renderLoop);
  2197. setInterval(loadStats, 1000);
  2198. setInterval(loadGPU, 1000);
  2199. setInterval(loadRefinement, 1500);
  2200. setInterval(() => fetchEvents(false), 2000);
  2201. setInterval(fetchRecordings, 5000);
  2202. setInterval(loadSignals, 1500);
  2203. setInterval(loadDecoders, 10000);