Wideband autonomous SDR analysis engine forked from sdr-visual-suite
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  1. package main
  2. import (
  3. "context"
  4. "encoding/json"
  5. "log"
  6. "os"
  7. "runtime/debug"
  8. "strings"
  9. "sync"
  10. "time"
  11. "sdr-wideband-suite/internal/config"
  12. "sdr-wideband-suite/internal/detector"
  13. "sdr-wideband-suite/internal/dsp"
  14. "sdr-wideband-suite/internal/logging"
  15. "sdr-wideband-suite/internal/pipeline"
  16. "sdr-wideband-suite/internal/recorder"
  17. )
  18. func runDSP(ctx context.Context, srcMgr *sourceManager, cfg config.Config, det *detector.Detector, window []float64, h *hub, eventFile *os.File, eventMu *sync.RWMutex, updates <-chan dspUpdate, gpuState *gpuStatus, rec *recorder.Manager, sigSnap *signalSnapshot, extractMgr *extractionManager, phaseSnap *phaseSnapshot) {
  19. defer func() {
  20. if r := recover(); r != nil {
  21. log.Printf("FATAL: runDSP goroutine panic: %v\n%s", r, debug.Stack())
  22. }
  23. }()
  24. rt := newDSPRuntime(cfg, det, window, gpuState)
  25. ticker := time.NewTicker(cfg.FrameInterval())
  26. defer ticker.Stop()
  27. logTicker := time.NewTicker(5 * time.Second)
  28. defer logTicker.Stop()
  29. enc := json.NewEncoder(eventFile)
  30. dcBlocker := dsp.NewDCBlocker(0.995)
  31. state := &phaseState{}
  32. for {
  33. select {
  34. case <-ctx.Done():
  35. return
  36. case <-logTicker.C:
  37. st := srcMgr.Stats()
  38. log.Printf("stats: buf=%d drop=%d reset=%d last=%dms", st.BufferSamples, st.Dropped, st.Resets, st.LastSampleAgoMs)
  39. case upd := <-updates:
  40. rt.applyUpdate(upd, srcMgr, rec, gpuState)
  41. dcBlocker.Reset()
  42. ticker.Reset(rt.cfg.FrameInterval())
  43. case <-ticker.C:
  44. art, err := rt.captureSpectrum(srcMgr, rec, dcBlocker, gpuState)
  45. if err != nil {
  46. log.Printf("read IQ: %v", err)
  47. if strings.Contains(err.Error(), "timeout") {
  48. if err := srcMgr.Restart(rt.cfg); err != nil {
  49. log.Printf("restart failed: %v", err)
  50. }
  51. }
  52. continue
  53. }
  54. if !rt.gotSamples {
  55. log.Printf("received IQ samples")
  56. rt.gotSamples = true
  57. }
  58. state.surveillance = rt.buildSurveillanceResult(art)
  59. state.refinement = rt.runRefinement(art, state.surveillance, extractMgr, rec)
  60. finished := state.surveillance.Finished
  61. thresholds := state.surveillance.Thresholds
  62. noiseFloor := state.surveillance.NoiseFloor
  63. var displaySignals []detector.Signal
  64. if len(art.detailIQ) > 0 {
  65. displaySignals = state.refinement.Result.Signals
  66. stableSignals := rt.det.StableSignals()
  67. streamSignals := displaySignals
  68. if len(stableSignals) > 0 {
  69. streamSignals = stableSignals
  70. }
  71. if rec != nil && len(art.allIQ) > 0 {
  72. if rt.cfg.Recorder.DebugLiveAudio {
  73. log.Printf("LIVEAUDIO DSP: detailIQ=%d displaySignals=%d streamSignals=%d stableSignals=%d allIQ=%d", len(art.detailIQ), len(displaySignals), len(streamSignals), len(stableSignals), len(art.allIQ))
  74. }
  75. aqCfg := extractionConfig{firTaps: rt.cfg.Recorder.ExtractionTaps, bwMult: rt.cfg.Recorder.ExtractionBwMult}
  76. streamSnips, streamRates := extractForStreaming(extractMgr, art.allIQ, rt.cfg.SampleRate, rt.cfg.CenterHz, streamSignals, rt.streamPhaseState, rt.streamOverlap, aqCfg)
  77. items := make([]recorder.StreamFeedItem, 0, len(streamSignals))
  78. for j, ds := range streamSignals {
  79. className := "<nil>"
  80. if ds.Class != nil {
  81. className = string(ds.Class.ModType)
  82. }
  83. snipLen := 0
  84. if j < len(streamSnips) {
  85. snipLen = len(streamSnips[j])
  86. }
  87. if rt.cfg.Recorder.DebugLiveAudio {
  88. log.Printf("LIVEAUDIO DSP: streamSignal idx=%d id=%d center=%.3fMHz bw=%.0f class=%s snip=%d", j, ds.ID, ds.CenterHz/1e6, ds.BWHz, className, snipLen)
  89. }
  90. if ds.ID == 0 || ds.Class == nil {
  91. continue
  92. }
  93. if j >= len(streamSnips) || len(streamSnips[j]) == 0 {
  94. logging.Warn("gap", "snippet_empty", "signal", ds.ID)
  95. continue
  96. }
  97. snipRate := rt.cfg.SampleRate
  98. if j < len(streamRates) && streamRates[j] > 0 {
  99. snipRate = streamRates[j]
  100. }
  101. items = append(items, recorder.StreamFeedItem{Signal: ds, Snippet: streamSnips[j], SnipRate: snipRate})
  102. }
  103. if rt.cfg.Recorder.DebugLiveAudio {
  104. log.Printf("LIVEAUDIO DSP: feedItems=%d", len(items))
  105. }
  106. if len(items) > 0 {
  107. rec.FeedSnippets(items)
  108. } else {
  109. logging.Warn("gap", "feed_empty", "signals", len(streamSignals))
  110. }
  111. }
  112. rt.maintenance(displaySignals, rec)
  113. } else {
  114. displaySignals = rt.det.StableSignals()
  115. }
  116. if rec != nil && len(displaySignals) > 0 {
  117. runtimeInfo := rec.RuntimeInfoBySignalID()
  118. for i := range displaySignals {
  119. if info, ok := runtimeInfo[displaySignals[i].ID]; ok {
  120. displaySignals[i].DemodName = info.DemodName
  121. displaySignals[i].PlaybackMode = info.PlaybackMode
  122. displaySignals[i].StereoState = info.StereoState
  123. }
  124. }
  125. }
  126. state.arbitration = rt.arbitration
  127. state.presentation = state.surveillance.DisplayLevel
  128. if phaseSnap != nil {
  129. phaseSnap.Set(*state)
  130. }
  131. if sigSnap != nil {
  132. sigSnap.set(displaySignals)
  133. }
  134. eventMu.Lock()
  135. for _, ev := range finished {
  136. _ = enc.Encode(ev)
  137. }
  138. eventMu.Unlock()
  139. if rec != nil && len(finished) > 0 {
  140. evCopy := make([]detector.Event, len(finished))
  141. copy(evCopy, finished)
  142. rec.OnEvents(evCopy)
  143. }
  144. var debugInfo *SpectrumDebug
  145. plan := state.refinement.Input.Plan
  146. windowSummary := buildWindowSummary(plan, state.refinement.Input.Windows, state.surveillance.Candidates, state.refinement.Input.WorkItems, state.refinement.Result.Decisions)
  147. var windowStats *RefinementWindowStats
  148. var monitorSummary []pipeline.MonitorWindowStats
  149. if windowSummary != nil {
  150. windowStats = windowSummary.Refinement
  151. monitorSummary = windowSummary.MonitorWindows
  152. }
  153. hasPlan := plan.TotalCandidates > 0 || plan.Budget > 0 || plan.DroppedBySNR > 0 || plan.DroppedByBudget > 0
  154. hasWindows := windowStats != nil && windowStats.Count > 0
  155. if len(thresholds) > 0 || len(displaySignals) > 0 || noiseFloor != 0 || hasPlan || hasWindows {
  156. scoreDebug := make([]map[string]any, 0, len(displaySignals))
  157. for _, s := range displaySignals {
  158. if s.Class == nil || len(s.Class.Scores) == 0 {
  159. scoreDebug = append(scoreDebug, map[string]any{"center_hz": s.CenterHz, "class": nil})
  160. continue
  161. }
  162. scores := make(map[string]float64, len(s.Class.Scores))
  163. for k, v := range s.Class.Scores {
  164. scores[string(k)] = v
  165. }
  166. scoreDebug = append(scoreDebug, map[string]any{
  167. "center_hz": s.CenterHz,
  168. "mod_type": s.Class.ModType,
  169. "confidence": s.Class.Confidence,
  170. "second_best": s.Class.SecondBest,
  171. "scores": scores,
  172. })
  173. }
  174. debugInfo = &SpectrumDebug{Thresholds: thresholds, NoiseFloor: noiseFloor, Scores: scoreDebug}
  175. candidateSources := buildCandidateSourceSummary(state.surveillance.Candidates)
  176. candidateEvidence := buildCandidateEvidenceSummary(state.surveillance.Candidates)
  177. candidateEvidenceStates := buildCandidateEvidenceStateSummary(state.surveillance.Candidates)
  178. candidateWindows := buildCandidateWindowSummary(state.surveillance.Candidates, plan.MonitorWindows)
  179. if len(candidateSources) > 0 {
  180. debugInfo.CandidateSources = candidateSources
  181. }
  182. if len(candidateEvidence) > 0 {
  183. debugInfo.CandidateEvidence = candidateEvidence
  184. }
  185. if candidateEvidenceStates != nil {
  186. debugInfo.CandidateEvidenceStates = candidateEvidenceStates
  187. }
  188. if len(candidateWindows) > 0 {
  189. debugInfo.CandidateWindows = candidateWindows
  190. }
  191. if len(monitorSummary) > 0 {
  192. debugInfo.MonitorWindowStats = monitorSummary
  193. }
  194. if windowSummary != nil {
  195. debugInfo.WindowSummary = windowSummary
  196. }
  197. if hasPlan {
  198. debugInfo.RefinementPlan = &plan
  199. }
  200. if hasWindows {
  201. debugInfo.Windows = windowStats
  202. }
  203. refinementDebug := &RefinementDebug{}
  204. if hasPlan {
  205. refinementDebug.Plan = &plan
  206. refinementDebug.Request = &state.refinement.Input.Request
  207. refinementDebug.WorkItems = state.refinement.Input.WorkItems
  208. }
  209. if hasWindows {
  210. refinementDebug.Windows = windowStats
  211. }
  212. if len(monitorSummary) > 0 {
  213. refinementDebug.MonitorWindowStats = monitorSummary
  214. }
  215. if windowSummary != nil {
  216. refinementDebug.WindowSummary = windowSummary
  217. }
  218. refinementDebug.Arbitration = buildArbitrationSnapshot(state.refinement, state.arbitration)
  219. debugInfo.Refinement = refinementDebug
  220. }
  221. h.broadcast(SpectrumFrame{Timestamp: art.now.UnixMilli(), CenterHz: rt.cfg.CenterHz, SampleHz: rt.cfg.SampleRate, FFTSize: rt.cfg.FFTSize, Spectrum: art.surveillanceSpectrum, Signals: displaySignals, Debug: debugInfo})
  222. }
  223. }
  224. }