Go-based FM stereo transmitter with RDS, Windows-first and cross-platform
Nevar pievienot vairāk kā 25 tēmas Tēmai ir jāsākas ar burtu vai ciparu, tā var saturēt domu zīmes ('-') un var būt līdz 35 simboliem gara.

311 rindas
10.0KB

  1. package main
  2. import (
  3. "context"
  4. "flag"
  5. "fmt"
  6. "log"
  7. "os"
  8. "os/signal"
  9. "syscall"
  10. "time"
  11. apppkg "github.com/jan/fm-rds-tx/internal/app"
  12. "github.com/jan/fm-rds-tx/internal/audio"
  13. cfgpkg "github.com/jan/fm-rds-tx/internal/config"
  14. ctrlpkg "github.com/jan/fm-rds-tx/internal/control"
  15. drypkg "github.com/jan/fm-rds-tx/internal/dryrun"
  16. "github.com/jan/fm-rds-tx/internal/ingest"
  17. ingestfactory "github.com/jan/fm-rds-tx/internal/ingest/factory"
  18. "github.com/jan/fm-rds-tx/internal/platform"
  19. "github.com/jan/fm-rds-tx/internal/platform/plutosdr"
  20. "github.com/jan/fm-rds-tx/internal/platform/soapysdr"
  21. )
  22. func main() {
  23. configPath := flag.String("config", "", "path to JSON config")
  24. printConfig := flag.Bool("print-config", false, "print effective config and exit")
  25. dryRun := flag.Bool("dry-run", false, "run no-hardware dry-run output")
  26. dryOutput := flag.String("dry-output", "-", "dry-run output path or - for stdout")
  27. simulate := flag.Bool("simulate-tx", false, "run simulated Soapy/backend transmit path")
  28. simulateOutput := flag.String("simulate-output", "", "simulated transmit output file")
  29. simulateDuration := flag.Duration("simulate-duration", 500*time.Millisecond, "simulated transmit duration")
  30. txMode := flag.Bool("tx", false, "start real TX mode (requires hardware + build tags)")
  31. txAutoStart := flag.Bool("tx-auto-start", false, "auto-start TX on launch")
  32. listDevices := flag.Bool("list-devices", false, "enumerate SoapySDR devices and exit")
  33. audioStdin := flag.Bool("audio-stdin", false, "read S16LE stereo PCM audio from stdin")
  34. audioRate := flag.Int("audio-rate", 44100, "sample rate of stdin audio input (Hz)")
  35. audioHTTP := flag.Bool("audio-http", false, "enable HTTP audio ingest via /audio/stream")
  36. flag.Parse()
  37. if *listDevices {
  38. devices, err := soapysdr.Enumerate()
  39. if err != nil {
  40. log.Fatalf("enumerate: %v", err)
  41. }
  42. if len(devices) == 0 {
  43. fmt.Println("no SoapySDR devices found")
  44. return
  45. }
  46. for i, dev := range devices {
  47. fmt.Printf("device %d:\n", i)
  48. for k, v := range dev {
  49. fmt.Printf(" %s = %s\n", k, v)
  50. }
  51. }
  52. return
  53. }
  54. cfg, err := cfgpkg.Load(*configPath)
  55. if err != nil {
  56. log.Fatalf("load config: %v", err)
  57. }
  58. if *printConfig {
  59. preemph := "off"
  60. if cfg.FM.PreEmphasisTauUS > 0 {
  61. preemph = fmt.Sprintf("%.0fus", cfg.FM.PreEmphasisTauUS)
  62. }
  63. fmt.Printf("backend=%s freq=%.1fMHz stereo=%t rds=%t preemph=%s limiter=%t fmmod=%t deviation=+-%.0fHz compositeRate=%dHz deviceRate=%.0fHz listen=%s pluto=%t soapy=%t\n",
  64. cfg.Backend.Kind, cfg.FM.FrequencyMHz, cfg.FM.StereoEnabled, cfg.RDS.Enabled,
  65. preemph, cfg.FM.LimiterEnabled, cfg.FM.FMModulationEnabled, cfg.FM.MaxDeviationHz,
  66. cfg.FM.CompositeRateHz, cfg.EffectiveDeviceRate(), cfg.Control.ListenAddress,
  67. plutosdr.Available(), soapysdr.Available())
  68. return
  69. }
  70. if *dryRun {
  71. frame := drypkg.Generate(cfg)
  72. if err := drypkg.WriteJSON(*dryOutput, frame); err != nil {
  73. log.Fatalf("dry-run: %v", err)
  74. }
  75. if *dryOutput != "" && *dryOutput != "-" {
  76. fmt.Fprintf(os.Stderr, "dry run frame written to %s\n", *dryOutput)
  77. }
  78. return
  79. }
  80. if *simulate {
  81. summary, err := apppkg.RunSimulatedTransmit(cfg, *simulateOutput, *simulateDuration)
  82. if err != nil {
  83. log.Fatalf("simulate-tx: %v", err)
  84. }
  85. fmt.Println(summary)
  86. return
  87. }
  88. if *txMode {
  89. driver := selectDriver(cfg)
  90. if driver == nil {
  91. log.Fatal("no hardware driver available - build with -tags pluto (or -tags soapy)")
  92. }
  93. runTXMode(cfg, driver, *txAutoStart, *audioStdin, *audioRate, *audioHTTP)
  94. return
  95. }
  96. srv := ctrlpkg.NewServer(cfg)
  97. server := ctrlpkg.NewHTTPServer(cfg, srv.Handler())
  98. log.Printf("fm-rds-tx listening on %s (TX default: off, use --tx for hardware)", server.Addr)
  99. log.Fatal(server.ListenAndServe())
  100. }
  101. func selectDriver(cfg cfgpkg.Config) platform.SoapyDriver {
  102. kind := cfg.Backend.Kind
  103. if kind == "pluto" || kind == "plutosdr" {
  104. if plutosdr.Available() {
  105. return plutosdr.NewPlutoDriver()
  106. }
  107. log.Printf("warning: backend=%s but pluto driver not available (%s)", kind, plutosdr.AvailableError())
  108. }
  109. if kind == "soapy" || kind == "soapysdr" {
  110. if soapysdr.Available() {
  111. return soapysdr.NewNativeDriver()
  112. }
  113. log.Printf("warning: backend=%s but soapy driver not available", kind)
  114. }
  115. if plutosdr.Available() {
  116. log.Println("auto-selected: pluto-iio driver")
  117. return plutosdr.NewPlutoDriver()
  118. }
  119. if soapysdr.Available() {
  120. log.Println("auto-selected: soapy-native driver")
  121. return soapysdr.NewNativeDriver()
  122. }
  123. return nil
  124. }
  125. func runTXMode(cfg cfgpkg.Config, driver platform.SoapyDriver, autoStart bool, audioStdin bool, audioRate int, audioHTTP bool) {
  126. ctx, cancel := context.WithCancel(context.Background())
  127. defer cancel()
  128. soapyCfg := platform.SoapyConfig{
  129. Driver: cfg.Backend.Driver,
  130. Device: cfg.Backend.Device,
  131. CenterFreqHz: cfg.FM.FrequencyMHz * 1e6,
  132. GainDB: 0,
  133. DeviceArgs: map[string]string{},
  134. }
  135. if cfg.Backend.URI != "" {
  136. soapyCfg.DeviceArgs["uri"] = cfg.Backend.URI
  137. }
  138. for k, v := range cfg.Backend.DeviceArgs {
  139. soapyCfg.DeviceArgs[k] = v
  140. }
  141. soapyCfg.SampleRateHz = cfg.EffectiveDeviceRate()
  142. log.Printf("TX: configuring %s freq=%.3fMHz rate=%.0fHz gain=%.1fdB",
  143. driver.Name(), cfg.FM.FrequencyMHz, soapyCfg.SampleRateHz, soapyCfg.GainDB)
  144. if err := driver.Configure(ctx, soapyCfg); err != nil {
  145. log.Fatalf("configure: %v", err)
  146. }
  147. caps, err := driver.Capabilities(ctx)
  148. if err == nil {
  149. log.Printf("TX: device caps: gain=%.0f..%.0f dB, rate=%.0f..%.0f Hz",
  150. caps.GainMinDB, caps.GainMaxDB, caps.MinSampleRate, caps.MaxSampleRate)
  151. }
  152. engine := apppkg.NewEngine(cfg, driver)
  153. cfg = applyLegacyAudioFlags(cfg, audioStdin, audioRate, audioHTTP)
  154. var streamSrc *audio.StreamSource
  155. var ingestRuntime *ingest.Runtime
  156. var ingress ctrlpkg.AudioIngress
  157. if cfg.Ingest.Kind != "" && cfg.Ingest.Kind != "none" {
  158. rate := ingestfactory.SampleRateForKind(cfg)
  159. bufferFrames := rate * 2
  160. if bufferFrames <= 0 {
  161. bufferFrames = 1
  162. }
  163. streamSrc = audio.NewStreamSource(bufferFrames, rate)
  164. engine.SetStreamSource(streamSrc)
  165. source, sourceIngress, err := ingestfactory.BuildSource(cfg, ingestfactory.Deps{Stdin: os.Stdin})
  166. if err != nil {
  167. log.Fatalf("ingest source: %v", err)
  168. }
  169. ingestRuntime = ingest.NewRuntime(streamSrc, source)
  170. if err := ingestRuntime.Start(ctx); err != nil {
  171. log.Fatalf("ingest start: %v", err)
  172. }
  173. ingress = sourceIngress
  174. log.Printf("ingest: kind=%s rate=%dHz buffer=%d frames", cfg.Ingest.Kind, rate, streamSrc.Stats().Capacity)
  175. }
  176. srv := ctrlpkg.NewServer(cfg)
  177. srv.SetDriver(driver)
  178. srv.SetTXController(&txBridge{engine: engine})
  179. if streamSrc != nil {
  180. srv.SetStreamSource(streamSrc)
  181. }
  182. if ingress != nil {
  183. srv.SetAudioIngress(ingress)
  184. }
  185. if ingestRuntime != nil {
  186. srv.SetIngestRuntime(ingestRuntime)
  187. }
  188. if autoStart {
  189. log.Println("TX: auto-start enabled")
  190. if err := engine.Start(ctx); err != nil {
  191. log.Fatalf("engine start: %v", err)
  192. }
  193. log.Printf("TX ACTIVE: freq=%.3fMHz rate=%.0fHz", cfg.FM.FrequencyMHz, cfg.EffectiveDeviceRate())
  194. } else {
  195. log.Println("TX ready (idle) - POST /tx/start to begin")
  196. }
  197. ctrlServer := ctrlpkg.NewHTTPServer(cfg, srv.Handler())
  198. go func() {
  199. log.Printf("control plane on %s (read=%s write=%s idle=%s)", ctrlServer.Addr, ctrlServer.ReadTimeout, ctrlServer.WriteTimeout, ctrlServer.IdleTimeout)
  200. if err := ctrlServer.ListenAndServe(); err != nil {
  201. log.Printf("http: %v", err)
  202. }
  203. }()
  204. sigCh := make(chan os.Signal, 1)
  205. signal.Notify(sigCh, syscall.SIGINT, syscall.SIGTERM)
  206. sig := <-sigCh
  207. log.Printf("received %s, shutting down...", sig)
  208. _ = engine.Stop(ctx)
  209. if ingestRuntime != nil {
  210. _ = ingestRuntime.Stop()
  211. }
  212. _ = driver.Close(ctx)
  213. log.Println("shutdown complete")
  214. }
  215. func applyLegacyAudioFlags(cfg cfgpkg.Config, audioStdin bool, audioRate int, audioHTTP bool) cfgpkg.Config {
  216. if audioRate > 0 {
  217. cfg.Ingest.Stdin.SampleRateHz = audioRate
  218. cfg.Ingest.HTTPRaw.SampleRateHz = audioRate
  219. }
  220. if audioStdin && audioHTTP {
  221. log.Printf("audio: both --audio-stdin and --audio-http set; using ingest kind=stdin")
  222. }
  223. if audioStdin {
  224. cfg.Ingest.Kind = "stdin"
  225. }
  226. if audioHTTP && !audioStdin {
  227. cfg.Ingest.Kind = "http-raw"
  228. }
  229. return cfg
  230. }
  231. type txBridge struct{ engine *apppkg.Engine }
  232. func (b *txBridge) StartTX() error { return b.engine.Start(context.Background()) }
  233. func (b *txBridge) StopTX() error { return b.engine.Stop(context.Background()) }
  234. func (b *txBridge) TXStats() map[string]any {
  235. s := b.engine.Stats()
  236. return map[string]any{
  237. "runtimeStateDurationSeconds": s.RuntimeStateDurationSeconds,
  238. "state": s.State,
  239. "chunksProduced": s.ChunksProduced,
  240. "totalSamples": s.TotalSamples,
  241. "underruns": s.Underruns,
  242. "lateBuffers": s.LateBuffers,
  243. "lastError": s.LastError,
  244. "uptimeSeconds": s.UptimeSeconds,
  245. "maxCycleMs": s.MaxCycleMs,
  246. "maxGenerateMs": s.MaxGenerateMs,
  247. "maxUpsampleMs": s.MaxUpsampleMs,
  248. "maxWriteMs": s.MaxWriteMs,
  249. "queue": s.Queue,
  250. "runtimeIndicator": s.RuntimeIndicator,
  251. "runtimeAlert": s.RuntimeAlert,
  252. "appliedFrequencyMHz": s.AppliedFrequencyMHz,
  253. "degradedTransitions": s.DegradedTransitions,
  254. "mutedTransitions": s.MutedTransitions,
  255. "faultedTransitions": s.FaultedTransitions,
  256. "faultCount": s.FaultCount,
  257. "faultHistory": s.FaultHistory,
  258. "transitionHistory": s.TransitionHistory,
  259. "lastFault": s.LastFault,
  260. }
  261. }
  262. func (b *txBridge) UpdateConfig(lp ctrlpkg.LivePatch) error {
  263. return b.engine.UpdateConfig(apppkg.LiveConfigUpdate{
  264. FrequencyMHz: lp.FrequencyMHz,
  265. OutputDrive: lp.OutputDrive,
  266. StereoEnabled: lp.StereoEnabled,
  267. PilotLevel: lp.PilotLevel,
  268. RDSInjection: lp.RDSInjection,
  269. RDSEnabled: lp.RDSEnabled,
  270. LimiterEnabled: lp.LimiterEnabled,
  271. LimiterCeiling: lp.LimiterCeiling,
  272. PS: lp.PS,
  273. RadioText: lp.RadioText,
  274. })
  275. }
  276. func (b *txBridge) ResetFault() error {
  277. return b.engine.ResetFault()
  278. }