Audio plugin host https://kx.studio/carla
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  1. /*
  2. * Carla Plugin Host
  3. * Copyright (C) 2011-2020 Filipe Coelho <falktx@falktx.com>
  4. *
  5. * This program is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU General Public License as
  7. * published by the Free Software Foundation; either version 2 of
  8. * the License, or any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * For a full copy of the GNU General Public License see the doc/GPL.txt file.
  16. */
  17. #include "CarlaEngineGraph.hpp"
  18. #include "CarlaEngineInit.hpp"
  19. #include "CarlaEngineInternal.hpp"
  20. #include "CarlaBackendUtils.hpp"
  21. #include "CarlaMathUtils.hpp"
  22. #include "CarlaStringList.hpp"
  23. #include "RtLinkedList.hpp"
  24. #include "jackbridge/JackBridge.hpp"
  25. #if defined(__clang__)
  26. # pragma clang diagnostic push
  27. # pragma clang diagnostic ignored "-Wconversion"
  28. # pragma clang diagnostic ignored "-Wdeprecated-copy"
  29. # pragma clang diagnostic ignored "-Weffc++"
  30. # pragma clang diagnostic ignored "-Wzero-as-null-pointer-constant"
  31. #elif defined(__GNUC__) && (__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 6))
  32. # pragma GCC diagnostic push
  33. # pragma GCC diagnostic ignored "-Wconversion"
  34. # pragma GCC diagnostic ignored "-Weffc++"
  35. # pragma GCC diagnostic ignored "-Wzero-as-null-pointer-constant"
  36. #endif
  37. #include "rtaudio/RtAudio.h"
  38. #include "rtmidi/RtMidi.h"
  39. #if defined(__clang__)
  40. # pragma clang diagnostic pop
  41. #elif defined(__GNUC__) && (__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 6))
  42. # pragma GCC diagnostic pop
  43. #endif
  44. CARLA_BACKEND_START_NAMESPACE
  45. // -------------------------------------------------------------------------------------------------------------------
  46. // Global static data
  47. static CharStringListPtr gDeviceNames;
  48. static std::vector<RtAudio::Api> gRtAudioApis;
  49. // -------------------------------------------------------------------------------------------------------------------
  50. static void initRtAudioAPIsIfNeeded()
  51. {
  52. static bool needsInit = true;
  53. if (! needsInit)
  54. return;
  55. needsInit = false;
  56. // get APIs in a local var, and pass wanted ones into gRtAudioApis
  57. std::vector<RtAudio::Api> apis;
  58. RtAudio::getCompiledApi(apis);
  59. for (std::vector<RtAudio::Api>::const_iterator it = apis.begin(), end=apis.end(); it != end; ++it)
  60. {
  61. const RtAudio::Api& api(*it);
  62. if (api == RtAudio::UNIX_JACK)
  63. {
  64. #if defined(CARLA_OS_LINUX) || defined(CARLA_OS_MAC) || defined(CARLA_OS_WIN)
  65. if ( ! jackbridge_is_ok())
  66. continue;
  67. #else
  68. /* NOTE
  69. * RtMidi doesn't have a native MIDI backend for these OSes,
  70. * Using RtAudio JACK funcitonality is only useful when we need to access the native MIDI APIs.
  71. * (JACK audio + ALSA MIDI, or JACK audio + CoreMidi, or JACK audio + Windows MIDI)
  72. * Because RtMidi has no native MIDI support outside of win/mac/linux, we skip these RtAudio APIs.
  73. * Those OSes can use Carla's JACK support directly, which is much better than RtAudio classes.
  74. */
  75. continue;
  76. #endif
  77. }
  78. gRtAudioApis.push_back(api);
  79. }
  80. }
  81. static const char* getRtAudioApiName(const RtAudio::Api api) noexcept
  82. {
  83. switch (api)
  84. {
  85. case RtAudio::UNSPECIFIED:
  86. return "Unspecified";
  87. case RtAudio::LINUX_ALSA:
  88. return "ALSA";
  89. case RtAudio::LINUX_OSS:
  90. return "OSS";
  91. case RtAudio::UNIX_PULSE:
  92. return "PulseAudio";
  93. case RtAudio::UNIX_JACK:
  94. #if defined(CARLA_OS_LINUX) && defined(__LINUX_ALSA__)
  95. return "JACK with ALSA-MIDI";
  96. #elif defined(CARLA_OS_MAC)
  97. return "JACK with CoreMidi";
  98. #elif defined(CARLA_OS_WIN)
  99. return "JACK with WinMM";
  100. #else
  101. return "JACK (RtAudio)";
  102. #endif
  103. case RtAudio::MACOSX_CORE:
  104. return "CoreAudio";
  105. case RtAudio::WINDOWS_ASIO:
  106. return "ASIO";
  107. case RtAudio::WINDOWS_DS:
  108. return "DirectSound";
  109. case RtAudio::WINDOWS_WASAPI:
  110. return "WASAPI";
  111. case RtAudio::RTAUDIO_DUMMY:
  112. return "Dummy";
  113. }
  114. carla_stderr("CarlaBackend::getRtAudioApiName(%i) - invalid API", api);
  115. return nullptr;
  116. }
  117. static RtMidi::Api getMatchedAudioMidiAPI(const RtAudio::Api rtApi) noexcept
  118. {
  119. switch (rtApi)
  120. {
  121. case RtAudio::UNSPECIFIED:
  122. return RtMidi::UNSPECIFIED;
  123. case RtAudio::LINUX_ALSA:
  124. case RtAudio::LINUX_OSS:
  125. return RtMidi::LINUX_ALSA;
  126. case RtAudio::UNIX_PULSE:
  127. case RtAudio::UNIX_JACK:
  128. #if defined(CARLA_OS_LINUX) && defined(__LINUX_ALSA__)
  129. return RtMidi::LINUX_ALSA;
  130. #elif defined(CARLA_OS_MAC)
  131. return RtMidi::MACOSX_CORE;
  132. #elif defined(CARLA_OS_WIN)
  133. return RtMidi::WINDOWS_MM;
  134. #else
  135. return RtMidi::RTMIDI_DUMMY;
  136. #endif
  137. case RtAudio::MACOSX_CORE:
  138. return RtMidi::MACOSX_CORE;
  139. case RtAudio::WINDOWS_ASIO:
  140. case RtAudio::WINDOWS_DS:
  141. case RtAudio::WINDOWS_WASAPI:
  142. return RtMidi::WINDOWS_MM;
  143. case RtAudio::RTAUDIO_DUMMY:
  144. return RtMidi::RTMIDI_DUMMY;
  145. }
  146. return RtMidi::UNSPECIFIED;
  147. }
  148. // -------------------------------------------------------------------------------------------------------------------
  149. // RtAudio Engine
  150. class CarlaEngineRtAudio : public CarlaEngine
  151. {
  152. public:
  153. CarlaEngineRtAudio(const RtAudio::Api api)
  154. : CarlaEngine(),
  155. fAudio(api),
  156. fAudioInterleaved(false),
  157. fAudioInCount(0),
  158. fAudioOutCount(0),
  159. fLastEventTime(0),
  160. fDeviceName(),
  161. fAudioIntBufIn(nullptr),
  162. fAudioIntBufOut(nullptr),
  163. fMidiIns(),
  164. fMidiInEvents(),
  165. fMidiOuts(),
  166. fMidiOutMutex(),
  167. fMidiOutVector(EngineMidiEvent::kDataSize)
  168. {
  169. carla_debug("CarlaEngineRtAudio::CarlaEngineRtAudio(%i)", api);
  170. // just to make sure
  171. pData->options.transportMode = ENGINE_TRANSPORT_MODE_INTERNAL;
  172. }
  173. ~CarlaEngineRtAudio() override
  174. {
  175. CARLA_SAFE_ASSERT(fAudioInCount == 0);
  176. CARLA_SAFE_ASSERT(fAudioOutCount == 0);
  177. CARLA_SAFE_ASSERT(fLastEventTime == 0);
  178. carla_debug("CarlaEngineRtAudio::~CarlaEngineRtAudio()");
  179. }
  180. // -------------------------------------
  181. bool init(const char* const clientName) override
  182. {
  183. CARLA_SAFE_ASSERT_RETURN(fAudioInCount == 0, false);
  184. CARLA_SAFE_ASSERT_RETURN(fAudioOutCount == 0, false);
  185. CARLA_SAFE_ASSERT_RETURN(fLastEventTime == 0, false);
  186. CARLA_SAFE_ASSERT_RETURN(clientName != nullptr && clientName[0] != '\0', false);
  187. carla_debug("CarlaEngineRtAudio::init(\"%s\")", clientName);
  188. if (pData->options.processMode != ENGINE_PROCESS_MODE_CONTINUOUS_RACK && pData->options.processMode != ENGINE_PROCESS_MODE_PATCHBAY)
  189. {
  190. setLastError("Invalid process mode");
  191. return false;
  192. }
  193. const bool isDummy(fAudio.getCurrentApi() == RtAudio::RtAudio::RTAUDIO_DUMMY);
  194. bool deviceSet = false;
  195. RtAudio::StreamParameters iParams, oParams;
  196. if (isDummy)
  197. {
  198. if (pData->options.processMode == ENGINE_PROCESS_MODE_CONTINUOUS_RACK)
  199. {
  200. setLastError("Cannot use dummy driver in Rack mode");
  201. return false;
  202. }
  203. fDeviceName = "Dummy";
  204. }
  205. else
  206. {
  207. const uint devCount(fAudio.getDeviceCount());
  208. if (devCount == 0)
  209. {
  210. setLastError("No audio devices available for this driver");
  211. return false;
  212. }
  213. if (pData->options.audioDevice != nullptr && pData->options.audioDevice[0] != '\0')
  214. {
  215. for (uint i=0; i < devCount; ++i)
  216. {
  217. RtAudio::DeviceInfo devInfo(fAudio.getDeviceInfo(i));
  218. if (devInfo.probed && devInfo.outputChannels > 0 && devInfo.name == pData->options.audioDevice)
  219. {
  220. deviceSet = true;
  221. fDeviceName = devInfo.name.c_str();
  222. iParams.deviceId = i;
  223. oParams.deviceId = i;
  224. iParams.nChannels = devInfo.inputChannels;
  225. oParams.nChannels = devInfo.outputChannels;
  226. break;
  227. }
  228. }
  229. }
  230. if (! deviceSet)
  231. {
  232. iParams.deviceId = fAudio.getDefaultInputDevice();
  233. oParams.deviceId = fAudio.getDefaultOutputDevice();
  234. iParams.nChannels = fAudio.getDeviceInfo(iParams.deviceId).inputChannels;
  235. oParams.nChannels = fAudio.getDeviceInfo(oParams.deviceId).outputChannels;
  236. carla_stdout("No device set, using %i inputs and %i outputs", iParams.nChannels, oParams.nChannels);
  237. }
  238. if (oParams.nChannels == 0 && pData->options.processMode == ENGINE_PROCESS_MODE_CONTINUOUS_RACK)
  239. {
  240. setLastError("Current audio setup has no outputs, cannot continue");
  241. return false;
  242. }
  243. iParams.nChannels = carla_fixedValue(0U, 128U, iParams.nChannels);
  244. oParams.nChannels = carla_fixedValue(0U, 128U, oParams.nChannels);
  245. fAudioInterleaved = fAudio.getCurrentApi() == RtAudio::UNIX_PULSE;
  246. }
  247. RtAudio::StreamOptions rtOptions;
  248. rtOptions.flags = RTAUDIO_MINIMIZE_LATENCY | RTAUDIO_SCHEDULE_REALTIME;
  249. rtOptions.numberOfBuffers = pData->options.audioTripleBuffer ? 3 : 2;
  250. rtOptions.streamName = clientName;
  251. rtOptions.priority = 85;
  252. if (fAudio.getCurrentApi() == RtAudio::LINUX_ALSA && ! deviceSet)
  253. rtOptions.flags |= RTAUDIO_ALSA_USE_DEFAULT;
  254. if (! fAudioInterleaved)
  255. rtOptions.flags |= RTAUDIO_NONINTERLEAVED;
  256. uint bufferFrames = pData->options.audioBufferSize;
  257. try {
  258. fAudio.openStream(oParams.nChannels > 0 ? &oParams : nullptr,
  259. iParams.nChannels > 0 ? &iParams : nullptr,
  260. RTAUDIO_FLOAT32, pData->options.audioSampleRate, &bufferFrames,
  261. carla_rtaudio_process_callback, this, &rtOptions,
  262. carla_rtaudio_buffer_size_callback);
  263. }
  264. catch (const RtAudioError& e) {
  265. setLastError(e.what());
  266. return false;
  267. }
  268. if (! pData->init(clientName))
  269. {
  270. close();
  271. setLastError("Failed to init internal data");
  272. return false;
  273. }
  274. pData->bufferSize = bufferFrames;
  275. pData->sampleRate = isDummy ? 44100.0 : fAudio.getStreamSampleRate();
  276. pData->initTime(pData->options.transportExtra);
  277. fAudioInCount = iParams.nChannels;
  278. fAudioOutCount = oParams.nChannels;
  279. fLastEventTime = 0;
  280. if (fAudioInCount > 0)
  281. fAudioIntBufIn = new float[fAudioInCount*bufferFrames];
  282. if (fAudioOutCount > 0)
  283. fAudioIntBufOut = new float[fAudioOutCount*bufferFrames];
  284. pData->graph.create(fAudioInCount, fAudioOutCount, 0, 0);
  285. try {
  286. fAudio.startStream();
  287. }
  288. catch (const RtAudioError& e)
  289. {
  290. close();
  291. setLastError(e.what());
  292. return false;
  293. }
  294. patchbayRefresh(true, false, false);
  295. if (pData->options.processMode == ENGINE_PROCESS_MODE_PATCHBAY)
  296. refreshExternalGraphPorts<PatchbayGraph>(pData->graph.getPatchbayGraph(), false, false);
  297. callback(true, true,
  298. ENGINE_CALLBACK_ENGINE_STARTED,
  299. 0,
  300. pData->options.processMode,
  301. pData->options.transportMode,
  302. static_cast<int>(pData->bufferSize),
  303. static_cast<float>(pData->sampleRate),
  304. getCurrentDriverName());
  305. return true;
  306. }
  307. bool close() override
  308. {
  309. carla_debug("CarlaEngineRtAudio::close()");
  310. bool hasError = false;
  311. // stop stream first
  312. if (fAudio.isStreamOpen() && fAudio.isStreamRunning())
  313. {
  314. try {
  315. fAudio.stopStream();
  316. }
  317. catch (const RtAudioError& e)
  318. {
  319. setLastError(e.what());
  320. hasError = true;
  321. }
  322. }
  323. // clear engine data
  324. CarlaEngine::close();
  325. pData->graph.destroy();
  326. for (LinkedList<MidiInPort>::Itenerator it = fMidiIns.begin2(); it.valid(); it.next())
  327. {
  328. static MidiInPort fallback = { nullptr, { '\0' } };
  329. MidiInPort& inPort(it.getValue(fallback));
  330. CARLA_SAFE_ASSERT_CONTINUE(inPort.port != nullptr);
  331. inPort.port->cancelCallback();
  332. inPort.port->closePort();
  333. delete inPort.port;
  334. }
  335. fMidiIns.clear();
  336. fMidiInEvents.clear();
  337. fMidiOutMutex.lock();
  338. for (LinkedList<MidiOutPort>::Itenerator it = fMidiOuts.begin2(); it.valid(); it.next())
  339. {
  340. static MidiOutPort fallback = { nullptr, { '\0' } };
  341. MidiOutPort& outPort(it.getValue(fallback));
  342. CARLA_SAFE_ASSERT_CONTINUE(outPort.port != nullptr);
  343. outPort.port->closePort();
  344. delete outPort.port;
  345. }
  346. fMidiOuts.clear();
  347. fMidiOutMutex.unlock();
  348. fAudioInCount = 0;
  349. fAudioOutCount = 0;
  350. fLastEventTime = 0;
  351. fDeviceName.clear();
  352. if (fAudioIntBufIn != nullptr)
  353. {
  354. delete[] fAudioIntBufIn;
  355. fAudioIntBufIn = nullptr;
  356. }
  357. if (fAudioIntBufOut != nullptr)
  358. {
  359. delete[] fAudioIntBufOut;
  360. fAudioIntBufOut = nullptr;
  361. }
  362. // close stream
  363. if (fAudio.isStreamOpen())
  364. fAudio.closeStream();
  365. return !hasError;
  366. }
  367. bool isRunning() const noexcept override
  368. {
  369. return fAudio.isStreamOpen();
  370. }
  371. bool isOffline() const noexcept override
  372. {
  373. return false;
  374. }
  375. EngineType getType() const noexcept override
  376. {
  377. return kEngineTypeRtAudio;
  378. }
  379. const char* getCurrentDriverName() const noexcept override
  380. {
  381. return CarlaBackend::getRtAudioApiName(fAudio.getCurrentApi());
  382. }
  383. // -------------------------------------------------------------------
  384. // Patchbay
  385. template<class Graph>
  386. bool refreshExternalGraphPorts(Graph* const graph, const bool sendHost, const bool sendOSC)
  387. {
  388. CARLA_SAFE_ASSERT_RETURN(graph != nullptr, false);
  389. char strBuf[STR_MAX+1U];
  390. strBuf[STR_MAX] = '\0';
  391. ExternalGraph& extGraph(graph->extGraph);
  392. // ---------------------------------------------------------------
  393. // clear last ports
  394. extGraph.clear();
  395. // ---------------------------------------------------------------
  396. // fill in new ones
  397. // Audio In
  398. for (uint i=0; i < fAudioInCount; ++i)
  399. {
  400. std::snprintf(strBuf, STR_MAX, "capture_%i", i+1);
  401. PortNameToId portNameToId;
  402. portNameToId.setData(kExternalGraphGroupAudioIn, i+1, strBuf, "");
  403. extGraph.audioPorts.ins.append(portNameToId);
  404. }
  405. // Audio Out
  406. for (uint i=0; i < fAudioOutCount; ++i)
  407. {
  408. std::snprintf(strBuf, STR_MAX, "playback_%i", i+1);
  409. PortNameToId portNameToId;
  410. portNameToId.setData(kExternalGraphGroupAudioOut, i+1, strBuf, "");
  411. extGraph.audioPorts.outs.append(portNameToId);
  412. }
  413. // MIDI In
  414. try
  415. {
  416. RtMidiIn midiIn(getMatchedAudioMidiAPI(fAudio.getCurrentApi()), "carla-discovery-in");
  417. for (uint i=0, count = midiIn.getPortCount(); i < count; ++i)
  418. {
  419. PortNameToId portNameToId;
  420. portNameToId.setData(kExternalGraphGroupMidiIn, i+1, midiIn.getPortName(i).c_str(), "");
  421. extGraph.midiPorts.ins.append(portNameToId);
  422. }
  423. } CARLA_SAFE_EXCEPTION("RtMidiIn discovery");
  424. // MIDI Out
  425. try
  426. {
  427. RtMidiOut midiOut(getMatchedAudioMidiAPI(fAudio.getCurrentApi()), "carla-discovery-out");
  428. for (uint i=0, count = midiOut.getPortCount(); i < count; ++i)
  429. {
  430. PortNameToId portNameToId;
  431. portNameToId.setData(kExternalGraphGroupMidiOut, i+1, midiOut.getPortName(i).c_str(), "");
  432. extGraph.midiPorts.outs.append(portNameToId);
  433. }
  434. } CARLA_SAFE_EXCEPTION("RtMidiOut discovery");
  435. // ---------------------------------------------------------------
  436. // now refresh
  437. if (sendHost || sendOSC)
  438. graph->refresh(sendHost, sendOSC, true, fDeviceName.buffer());
  439. // ---------------------------------------------------------------
  440. // add midi connections
  441. for (LinkedList<MidiInPort>::Itenerator it=fMidiIns.begin2(); it.valid(); it.next())
  442. {
  443. static const MidiInPort fallback = { nullptr, { '\0' } };
  444. const MidiInPort& inPort(it.getValue(fallback));
  445. CARLA_SAFE_ASSERT_CONTINUE(inPort.port != nullptr);
  446. const uint portId(extGraph.midiPorts.getPortId(true, inPort.name));
  447. CARLA_SAFE_ASSERT_CONTINUE(portId < extGraph.midiPorts.ins.count());
  448. ConnectionToId connectionToId;
  449. connectionToId.setData(++(extGraph.connections.lastId), kExternalGraphGroupMidiIn, portId, kExternalGraphGroupCarla, kExternalGraphCarlaPortMidiIn);
  450. std::snprintf(strBuf, STR_MAX, "%i:%i:%i:%i", connectionToId.groupA, connectionToId.portA, connectionToId.groupB, connectionToId.portB);
  451. extGraph.connections.list.append(connectionToId);
  452. callback(sendHost, sendOSC,
  453. ENGINE_CALLBACK_PATCHBAY_CONNECTION_ADDED,
  454. connectionToId.id,
  455. 0, 0, 0, 0.0f,
  456. strBuf);
  457. }
  458. fMidiOutMutex.lock();
  459. for (LinkedList<MidiOutPort>::Itenerator it=fMidiOuts.begin2(); it.valid(); it.next())
  460. {
  461. static const MidiOutPort fallback = { nullptr, { '\0' } };
  462. const MidiOutPort& outPort(it.getValue(fallback));
  463. CARLA_SAFE_ASSERT_CONTINUE(outPort.port != nullptr);
  464. const uint portId(extGraph.midiPorts.getPortId(false, outPort.name));
  465. CARLA_SAFE_ASSERT_CONTINUE(portId < extGraph.midiPorts.outs.count());
  466. ConnectionToId connectionToId;
  467. connectionToId.setData(++(extGraph.connections.lastId), kExternalGraphGroupCarla, kExternalGraphCarlaPortMidiOut, kExternalGraphGroupMidiOut, portId);
  468. std::snprintf(strBuf, STR_MAX, "%i:%i:%i:%i", connectionToId.groupA, connectionToId.portA, connectionToId.groupB, connectionToId.portB);
  469. extGraph.connections.list.append(connectionToId);
  470. callback(sendHost, sendOSC,
  471. ENGINE_CALLBACK_PATCHBAY_CONNECTION_ADDED,
  472. connectionToId.id,
  473. 0, 0, 0, 0.0f,
  474. strBuf);
  475. }
  476. fMidiOutMutex.unlock();
  477. return true;
  478. }
  479. bool patchbayRefresh(const bool sendHost, const bool sendOSC, const bool external) override
  480. {
  481. CARLA_SAFE_ASSERT_RETURN(pData->graph.isReady(), false);
  482. if (pData->options.processMode == ENGINE_PROCESS_MODE_CONTINUOUS_RACK)
  483. return refreshExternalGraphPorts<RackGraph>(pData->graph.getRackGraph(), sendHost, sendOSC);
  484. if (sendHost)
  485. pData->graph.setUsingExternalHost(external);
  486. if (sendOSC)
  487. pData->graph.setUsingExternalOSC(external);
  488. if (external)
  489. return refreshExternalGraphPorts<PatchbayGraph>(pData->graph.getPatchbayGraph(), sendHost, sendOSC);
  490. return CarlaEngine::patchbayRefresh(sendHost, sendOSC, false);
  491. }
  492. // -------------------------------------------------------------------
  493. protected:
  494. void handleAudioProcessCallback(void* outputBuffer, void* inputBuffer,
  495. uint nframes, double streamTime, RtAudioStreamStatus status)
  496. {
  497. const PendingRtEventsRunner prt(this, nframes, true);
  498. if (status & RTAUDIO_INPUT_OVERFLOW)
  499. ++pData->xruns;
  500. if (status & RTAUDIO_OUTPUT_UNDERFLOW)
  501. ++pData->xruns;
  502. // get buffers from RtAudio
  503. const float* const insPtr = (const float*)inputBuffer;
  504. /* */ float* const outsPtr = (float*)outputBuffer;
  505. // assert rtaudio buffers
  506. CARLA_SAFE_ASSERT_RETURN(outputBuffer != nullptr,);
  507. // set rtaudio buffers as non-interleaved
  508. const float* inBuf[fAudioInCount];
  509. /* */ float* outBuf[fAudioOutCount];
  510. if (fAudioInterleaved)
  511. {
  512. // FIXME - this looks completely wrong!
  513. float* inBuf2[fAudioInCount];
  514. for (uint i=0, count=fAudioInCount; i<count; ++i)
  515. {
  516. inBuf [i] = fAudioIntBufIn + (nframes*i);
  517. inBuf2[i] = fAudioIntBufIn + (nframes*i);
  518. }
  519. for (uint i=0, count=fAudioOutCount; i<count; ++i)
  520. outBuf[i] = fAudioIntBufOut + (nframes*i);
  521. // init input
  522. for (uint i=0; i<nframes; ++i)
  523. for (uint j=0; j<fAudioInCount; ++j)
  524. inBuf2[j][i] = insPtr[i*fAudioInCount+j];
  525. // clear output
  526. carla_zeroFloats(fAudioIntBufOut, fAudioOutCount*nframes);
  527. }
  528. else
  529. {
  530. for (uint i=0; i < fAudioInCount; ++i)
  531. inBuf[i] = insPtr+(nframes*i);
  532. for (uint i=0; i < fAudioOutCount; ++i)
  533. outBuf[i] = outsPtr+(nframes*i);
  534. // clear output
  535. carla_zeroFloats(outsPtr, nframes*fAudioOutCount);
  536. }
  537. // initialize events
  538. carla_zeroStructs(pData->events.in, kMaxEngineEventInternalCount);
  539. carla_zeroStructs(pData->events.out, kMaxEngineEventInternalCount);
  540. if (fMidiInEvents.mutex.tryLock())
  541. {
  542. uint32_t engineEventIndex = 0;
  543. fMidiInEvents.splice();
  544. for (LinkedList<RtMidiEvent>::Itenerator it = fMidiInEvents.data.begin2(); it.valid(); it.next())
  545. {
  546. static const RtMidiEvent fallback = { 0, 0, { 0 } };
  547. const RtMidiEvent& midiEvent(it.getValue(fallback));
  548. CARLA_SAFE_ASSERT_CONTINUE(midiEvent.size > 0);
  549. EngineEvent& engineEvent(pData->events.in[engineEventIndex++]);
  550. if (midiEvent.time < pData->timeInfo.frame)
  551. {
  552. engineEvent.time = 0;
  553. }
  554. else if (midiEvent.time >= pData->timeInfo.frame + nframes)
  555. {
  556. carla_stderr("MIDI Event in the future!, %i vs %i", engineEvent.time, pData->timeInfo.frame);
  557. engineEvent.time = static_cast<uint32_t>(pData->timeInfo.frame) + nframes - 1;
  558. }
  559. else
  560. engineEvent.time = static_cast<uint32_t>(midiEvent.time - pData->timeInfo.frame);
  561. engineEvent.fillFromMidiData(midiEvent.size, midiEvent.data, 0);
  562. if (engineEventIndex >= kMaxEngineEventInternalCount)
  563. break;
  564. }
  565. fMidiInEvents.data.clear();
  566. fMidiInEvents.mutex.unlock();
  567. }
  568. pData->graph.process(pData, inBuf, outBuf, nframes);
  569. fMidiOutMutex.lock();
  570. if (fMidiOuts.count() > 0)
  571. {
  572. uint8_t size = 0;
  573. uint8_t mdata[3] = { 0, 0, 0 };
  574. uint8_t mdataTmp[EngineMidiEvent::kDataSize];
  575. const uint8_t* mdataPtr;
  576. for (ushort i=0; i < kMaxEngineEventInternalCount; ++i)
  577. {
  578. const EngineEvent& engineEvent(pData->events.out[i]);
  579. /**/ if (engineEvent.type == kEngineEventTypeNull)
  580. {
  581. break;
  582. }
  583. else if (engineEvent.type == kEngineEventTypeControl)
  584. {
  585. const EngineControlEvent& ctrlEvent(engineEvent.ctrl);
  586. size = ctrlEvent.convertToMidiData(engineEvent.channel, mdata);
  587. mdataPtr = mdata;
  588. }
  589. else if (engineEvent.type == kEngineEventTypeMidi)
  590. {
  591. const EngineMidiEvent& midiEvent(engineEvent.midi);
  592. size = midiEvent.size;
  593. CARLA_SAFE_ASSERT_CONTINUE(size > 0);
  594. if (size > EngineMidiEvent::kDataSize)
  595. {
  596. CARLA_SAFE_ASSERT_CONTINUE(midiEvent.dataExt != nullptr);
  597. mdataPtr = midiEvent.dataExt;
  598. }
  599. else
  600. {
  601. // set first byte
  602. mdataTmp[0] = static_cast<uint8_t>(midiEvent.data[0] | (engineEvent.channel & MIDI_CHANNEL_BIT));
  603. // copy rest
  604. carla_copy<uint8_t>(mdataTmp+1, midiEvent.data+1, size-1U);
  605. // done
  606. mdataPtr = mdataTmp;
  607. }
  608. }
  609. else
  610. {
  611. continue;
  612. }
  613. if (size > 0)
  614. {
  615. fMidiOutVector.assign(mdataPtr, mdataPtr + size);
  616. for (LinkedList<MidiOutPort>::Itenerator it=fMidiOuts.begin2(); it.valid(); it.next())
  617. {
  618. static MidiOutPort fallback = { nullptr, { '\0' } };
  619. MidiOutPort& outPort(it.getValue(fallback));
  620. CARLA_SAFE_ASSERT_CONTINUE(outPort.port != nullptr);
  621. outPort.port->sendMessage(&fMidiOutVector);
  622. }
  623. }
  624. }
  625. }
  626. fMidiOutMutex.unlock();
  627. if (fAudioInterleaved)
  628. {
  629. for (uint i=0; i < nframes; ++i)
  630. for (uint j=0; j<fAudioOutCount; ++j)
  631. outsPtr[i*fAudioOutCount+j] = outBuf[j][i];
  632. }
  633. return; // unused
  634. (void)streamTime;
  635. }
  636. void handleBufferSizeCallback(const uint newBufferSize)
  637. {
  638. carla_stdout("bufferSize callback %u %u", pData->bufferSize, newBufferSize);
  639. if (pData->bufferSize == newBufferSize)
  640. return;
  641. if (fAudioInCount > 0)
  642. {
  643. delete[] fAudioIntBufIn;
  644. fAudioIntBufIn = new float[fAudioInCount*newBufferSize];
  645. }
  646. if (fAudioOutCount > 0)
  647. {
  648. delete[] fAudioIntBufOut;
  649. fAudioIntBufOut = new float[fAudioOutCount*newBufferSize];
  650. }
  651. pData->bufferSize = newBufferSize;
  652. bufferSizeChanged(newBufferSize);
  653. }
  654. void handleMidiCallback(double timeStamp, std::vector<uchar>* const message)
  655. {
  656. const size_t messageSize(message->size());
  657. if (messageSize == 0 || messageSize > EngineMidiEvent::kDataSize)
  658. return;
  659. timeStamp /= 2;
  660. if (timeStamp > 0.95)
  661. timeStamp = 0.95;
  662. else if (timeStamp < 0.0)
  663. timeStamp = 0.0;
  664. RtMidiEvent midiEvent;
  665. midiEvent.time = pData->timeInfo.frame + uint64_t(timeStamp * (double)pData->bufferSize);
  666. if (midiEvent.time < fLastEventTime)
  667. midiEvent.time = fLastEventTime;
  668. else
  669. fLastEventTime = midiEvent.time;
  670. midiEvent.size = static_cast<uint8_t>(messageSize);
  671. size_t i=0;
  672. for (; i < messageSize; ++i)
  673. midiEvent.data[i] = message->at(i);
  674. for (; i < EngineMidiEvent::kDataSize; ++i)
  675. midiEvent.data[i] = 0;
  676. fMidiInEvents.append(midiEvent);
  677. }
  678. // -------------------------------------------------------------------
  679. bool connectExternalGraphPort(const uint connectionType, const uint portId, const char* const portName) override
  680. {
  681. CARLA_SAFE_ASSERT_RETURN(connectionType != 0 || (portName != nullptr && portName[0] != '\0'), false);
  682. carla_debug("CarlaEngineRtAudio::connectExternalGraphPort(%u, %u, \"%s\")", connectionType, portId, portName);
  683. switch (connectionType)
  684. {
  685. case kExternalGraphConnectionAudioIn1:
  686. case kExternalGraphConnectionAudioIn2:
  687. case kExternalGraphConnectionAudioOut1:
  688. case kExternalGraphConnectionAudioOut2:
  689. return CarlaEngine::connectExternalGraphPort(connectionType, portId, portName);
  690. case kExternalGraphConnectionMidiInput: {
  691. CarlaString newRtMidiPortName;
  692. newRtMidiPortName += getName();
  693. newRtMidiPortName += ":";
  694. newRtMidiPortName += portName;
  695. RtMidiIn* rtMidiIn;
  696. try {
  697. rtMidiIn = new RtMidiIn(getMatchedAudioMidiAPI(fAudio.getCurrentApi()), newRtMidiPortName.buffer(), 512);
  698. } CARLA_SAFE_EXCEPTION_RETURN("new RtMidiIn", false);
  699. rtMidiIn->ignoreTypes();
  700. rtMidiIn->setCallback(carla_rtmidi_callback, this);
  701. bool found = false;
  702. uint rtMidiPortIndex;
  703. for (uint i=0, count=rtMidiIn->getPortCount(); i < count; ++i)
  704. {
  705. if (rtMidiIn->getPortName(i) == portName)
  706. {
  707. found = true;
  708. rtMidiPortIndex = i;
  709. break;
  710. }
  711. }
  712. if (! found)
  713. {
  714. delete rtMidiIn;
  715. return false;
  716. }
  717. try {
  718. rtMidiIn->openPort(rtMidiPortIndex, portName);
  719. }
  720. catch(...) {
  721. delete rtMidiIn;
  722. return false;
  723. };
  724. MidiInPort midiPort;
  725. midiPort.port = rtMidiIn;
  726. std::strncpy(midiPort.name, portName, STR_MAX);
  727. midiPort.name[STR_MAX] = '\0';
  728. fMidiIns.append(midiPort);
  729. return true;
  730. } break;
  731. case kExternalGraphConnectionMidiOutput: {
  732. CarlaString newRtMidiPortName;
  733. newRtMidiPortName += getName();
  734. newRtMidiPortName += ":";
  735. newRtMidiPortName += portName;
  736. RtMidiOut* rtMidiOut;
  737. try {
  738. rtMidiOut = new RtMidiOut(getMatchedAudioMidiAPI(fAudio.getCurrentApi()), newRtMidiPortName.buffer());
  739. } CARLA_SAFE_EXCEPTION_RETURN("new RtMidiOut", false);
  740. bool found = false;
  741. uint rtMidiPortIndex;
  742. for (uint i=0, count=rtMidiOut->getPortCount(); i < count; ++i)
  743. {
  744. if (rtMidiOut->getPortName(i) == portName)
  745. {
  746. found = true;
  747. rtMidiPortIndex = i;
  748. break;
  749. }
  750. }
  751. if (! found)
  752. {
  753. delete rtMidiOut;
  754. return false;
  755. }
  756. try {
  757. rtMidiOut->openPort(rtMidiPortIndex, portName);
  758. }
  759. catch(...) {
  760. delete rtMidiOut;
  761. return false;
  762. };
  763. MidiOutPort midiPort;
  764. midiPort.port = rtMidiOut;
  765. std::strncpy(midiPort.name, portName, STR_MAX);
  766. midiPort.name[STR_MAX] = '\0';
  767. const CarlaMutexLocker cml(fMidiOutMutex);
  768. fMidiOuts.append(midiPort);
  769. return true;
  770. } break;
  771. }
  772. return false;
  773. }
  774. bool disconnectExternalGraphPort(const uint connectionType, const uint portId, const char* const portName) override
  775. {
  776. CARLA_SAFE_ASSERT_RETURN(connectionType != 0 || (portName != nullptr && portName[0] != '\0'), false);
  777. carla_debug("CarlaEngineRtAudio::disconnectExternalGraphPort(%u, %u, \"%s\")", connectionType, portId, portName);
  778. switch (connectionType)
  779. {
  780. case kExternalGraphConnectionAudioIn1:
  781. case kExternalGraphConnectionAudioIn2:
  782. case kExternalGraphConnectionAudioOut1:
  783. case kExternalGraphConnectionAudioOut2:
  784. return CarlaEngine::disconnectExternalGraphPort(connectionType, portId, portName);
  785. case kExternalGraphConnectionMidiInput:
  786. for (LinkedList<MidiInPort>::Itenerator it=fMidiIns.begin2(); it.valid(); it.next())
  787. {
  788. static MidiInPort fallback = { nullptr, { '\0' } };
  789. MidiInPort& inPort(it.getValue(fallback));
  790. CARLA_SAFE_ASSERT_CONTINUE(inPort.port != nullptr);
  791. if (std::strncmp(inPort.name, portName, STR_MAX) != 0)
  792. continue;
  793. inPort.port->cancelCallback();
  794. inPort.port->closePort();
  795. delete inPort.port;
  796. fMidiIns.remove(it);
  797. return true;
  798. }
  799. break;
  800. case kExternalGraphConnectionMidiOutput: {
  801. const CarlaMutexLocker cml(fMidiOutMutex);
  802. for (LinkedList<MidiOutPort>::Itenerator it=fMidiOuts.begin2(); it.valid(); it.next())
  803. {
  804. static MidiOutPort fallback = { nullptr, { '\0' } };
  805. MidiOutPort& outPort(it.getValue(fallback));
  806. CARLA_SAFE_ASSERT_CONTINUE(outPort.port != nullptr);
  807. if (std::strncmp(outPort.name, portName, STR_MAX) != 0)
  808. continue;
  809. outPort.port->closePort();
  810. delete outPort.port;
  811. fMidiOuts.remove(it);
  812. return true;
  813. }
  814. } break;
  815. }
  816. return false;
  817. }
  818. // -------------------------------------------------------------------
  819. private:
  820. RtAudio fAudio;
  821. // useful info
  822. bool fAudioInterleaved;
  823. uint fAudioInCount;
  824. uint fAudioOutCount;
  825. uint64_t fLastEventTime;
  826. // current device name
  827. CarlaString fDeviceName;
  828. // temp buffer for interleaved audio
  829. float* fAudioIntBufIn;
  830. float* fAudioIntBufOut;
  831. struct MidiInPort {
  832. RtMidiIn* port;
  833. char name[STR_MAX+1];
  834. };
  835. struct MidiOutPort {
  836. RtMidiOut* port;
  837. char name[STR_MAX+1];
  838. };
  839. struct RtMidiEvent {
  840. uint64_t time; // needs to compare to internal time
  841. uint8_t size;
  842. uint8_t data[EngineMidiEvent::kDataSize];
  843. };
  844. struct RtMidiEvents {
  845. CarlaMutex mutex;
  846. RtLinkedList<RtMidiEvent>::Pool dataPool;
  847. RtLinkedList<RtMidiEvent> data;
  848. RtLinkedList<RtMidiEvent> dataPending;
  849. RtMidiEvents()
  850. : mutex(),
  851. dataPool(512, 512),
  852. data(dataPool),
  853. dataPending(dataPool) {}
  854. ~RtMidiEvents()
  855. {
  856. clear();
  857. }
  858. void append(const RtMidiEvent& event)
  859. {
  860. mutex.lock();
  861. dataPending.append(event);
  862. mutex.unlock();
  863. }
  864. void clear()
  865. {
  866. mutex.lock();
  867. data.clear();
  868. dataPending.clear();
  869. mutex.unlock();
  870. }
  871. void splice()
  872. {
  873. if (dataPending.count() > 0)
  874. dataPending.moveTo(data, true /* append */);
  875. }
  876. };
  877. LinkedList<MidiInPort> fMidiIns;
  878. RtMidiEvents fMidiInEvents;
  879. LinkedList<MidiOutPort> fMidiOuts;
  880. CarlaMutex fMidiOutMutex;
  881. std::vector<uint8_t> fMidiOutVector;
  882. #define handlePtr ((CarlaEngineRtAudio*)userData)
  883. static int carla_rtaudio_process_callback(void* outputBuffer, void* inputBuffer, uint nframes, double streamTime, RtAudioStreamStatus status, void* userData)
  884. {
  885. handlePtr->handleAudioProcessCallback(outputBuffer, inputBuffer, nframes, streamTime, status);
  886. return 0;
  887. }
  888. static bool carla_rtaudio_buffer_size_callback(unsigned int bufferSize, void* userData)
  889. {
  890. handlePtr->handleBufferSizeCallback(bufferSize);
  891. return true;
  892. }
  893. static void carla_rtmidi_callback(double timeStamp, std::vector<uchar>* message, void* userData)
  894. {
  895. handlePtr->handleMidiCallback(timeStamp, message);
  896. }
  897. #undef handlePtr
  898. CARLA_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR(CarlaEngineRtAudio)
  899. };
  900. // -----------------------------------------
  901. namespace EngineInit {
  902. CarlaEngine* newRtAudio(const AudioApi api)
  903. {
  904. initRtAudioAPIsIfNeeded();
  905. RtAudio::Api rtApi = RtAudio::UNSPECIFIED;
  906. switch (api)
  907. {
  908. case AUDIO_API_NULL:
  909. rtApi = RtAudio::RTAUDIO_DUMMY;
  910. break;
  911. case AUDIO_API_JACK:
  912. rtApi = RtAudio::UNIX_JACK;
  913. break;
  914. case AUDIO_API_OSS:
  915. rtApi = RtAudio::LINUX_OSS;
  916. break;
  917. case AUDIO_API_ALSA:
  918. rtApi = RtAudio::LINUX_ALSA;
  919. break;
  920. case AUDIO_API_PULSEAUDIO:
  921. rtApi = RtAudio::UNIX_PULSE;
  922. break;
  923. case AUDIO_API_COREAUDIO:
  924. rtApi = RtAudio::MACOSX_CORE;
  925. break;
  926. case AUDIO_API_ASIO:
  927. rtApi = RtAudio::WINDOWS_ASIO;
  928. break;
  929. case AUDIO_API_DIRECTSOUND:
  930. rtApi = RtAudio::WINDOWS_DS;
  931. break;
  932. case AUDIO_API_WASAPI:
  933. rtApi = RtAudio::WINDOWS_WASAPI;
  934. break;
  935. }
  936. return new CarlaEngineRtAudio(rtApi);
  937. }
  938. uint getRtAudioApiCount()
  939. {
  940. initRtAudioAPIsIfNeeded();
  941. return static_cast<uint>(gRtAudioApis.size());
  942. }
  943. const char* getRtAudioApiName(const uint index)
  944. {
  945. initRtAudioAPIsIfNeeded();
  946. CARLA_SAFE_ASSERT_RETURN(index < gRtAudioApis.size(), nullptr);
  947. return CarlaBackend::getRtAudioApiName(gRtAudioApis[index]);
  948. }
  949. const char* const* getRtAudioApiDeviceNames(const uint index)
  950. {
  951. initRtAudioAPIsIfNeeded();
  952. if (index >= gRtAudioApis.size())
  953. return nullptr;
  954. const RtAudio::Api& api(gRtAudioApis[index]);
  955. CarlaStringList devNames;
  956. try {
  957. RtAudio rtAudio(api);
  958. const uint devCount(rtAudio.getDeviceCount());
  959. if (devCount == 0)
  960. return nullptr;
  961. for (uint i=0; i < devCount; ++i)
  962. {
  963. RtAudio::DeviceInfo devInfo(rtAudio.getDeviceInfo(i));
  964. if (devInfo.probed && devInfo.outputChannels > 0 /*&& (devInfo.nativeFormats & RTAUDIO_FLOAT32) != 0*/)
  965. devNames.append(devInfo.name.c_str());
  966. }
  967. } CARLA_SAFE_EXCEPTION_RETURN("RtAudio device names", nullptr);
  968. gDeviceNames = devNames.toCharStringListPtr();
  969. return gDeviceNames;
  970. }
  971. const EngineDriverDeviceInfo* getRtAudioDeviceInfo(const uint index, const char* const deviceName)
  972. {
  973. initRtAudioAPIsIfNeeded();
  974. if (index >= gRtAudioApis.size())
  975. return nullptr;
  976. static EngineDriverDeviceInfo devInfo = { 0x0, nullptr, nullptr };
  977. static uint32_t dummyBufferSizes[] = { 16, 32, 64, 128, 256, 512, 1024, 2048, 4096, 8192, 0 };
  978. static double dummySampleRates[] = { 22050.0, 32000.0, 44100.0, 48000.0, 88200.0, 96000.0, 176400.0, 192000.0, 0.0 };
  979. // reset
  980. devInfo.hints = 0x0;
  981. // cleanup
  982. if (devInfo.bufferSizes != nullptr && devInfo.bufferSizes != dummyBufferSizes)
  983. {
  984. delete[] devInfo.bufferSizes;
  985. devInfo.bufferSizes = nullptr;
  986. }
  987. if (devInfo.sampleRates != nullptr && devInfo.sampleRates != dummySampleRates)
  988. {
  989. delete[] devInfo.sampleRates;
  990. devInfo.sampleRates = nullptr;
  991. }
  992. const RtAudio::Api& api(gRtAudioApis[index]);
  993. if (api == RtAudio::UNIX_JACK)
  994. {
  995. devInfo.bufferSizes = nullptr;
  996. devInfo.sampleRates = nullptr;
  997. return &devInfo;
  998. }
  999. RtAudio::DeviceInfo rtAudioDevInfo;
  1000. try {
  1001. RtAudio rtAudio(api);
  1002. const uint devCount(rtAudio.getDeviceCount());
  1003. if (devCount == 0)
  1004. return nullptr;
  1005. uint i;
  1006. for (i=0; i < devCount; ++i)
  1007. {
  1008. rtAudioDevInfo = rtAudio.getDeviceInfo(i);
  1009. if (rtAudioDevInfo.name == deviceName)
  1010. break;
  1011. }
  1012. if (i == devCount)
  1013. rtAudioDevInfo = rtAudio.getDeviceInfo(rtAudio.getDefaultOutputDevice());
  1014. } CARLA_SAFE_EXCEPTION_RETURN("RtAudio device discovery", nullptr);
  1015. // a few APIs can do triple buffer
  1016. switch (api)
  1017. {
  1018. case RtAudio::LINUX_ALSA:
  1019. case RtAudio::LINUX_OSS:
  1020. case RtAudio::WINDOWS_DS:
  1021. devInfo.hints |= ENGINE_DRIVER_DEVICE_CAN_TRIPLE_BUFFER;
  1022. break;
  1023. default:
  1024. break;
  1025. }
  1026. // always use default buffer sizes
  1027. devInfo.bufferSizes = dummyBufferSizes;
  1028. // valid sample rates
  1029. if (const size_t sampleRatesCount = rtAudioDevInfo.sampleRates.size())
  1030. {
  1031. double* const sampleRates(new double[sampleRatesCount+1]);
  1032. for (size_t i=0; i < sampleRatesCount; ++i)
  1033. sampleRates[i] = rtAudioDevInfo.sampleRates[i];
  1034. sampleRates[sampleRatesCount] = 0.0;
  1035. devInfo.sampleRates = sampleRates;
  1036. }
  1037. else
  1038. {
  1039. devInfo.sampleRates = dummySampleRates;
  1040. }
  1041. return &devInfo;
  1042. }
  1043. }
  1044. // -----------------------------------------
  1045. CARLA_BACKEND_END_NAMESPACE