jack2 codebase
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  1. /*
  2. Copyright (C) 2001 Paul Davis
  3. Copyright (C) 2008 Romain Moret at Grame
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. */
  16. #include "JackNetInterface.h"
  17. #include "JackException.h"
  18. #include "JackPlatformPlug.h"
  19. #include <assert.h>
  20. using namespace std;
  21. #define PACKET_AVAILABLE_SIZE (fParams.fMtu - sizeof(packet_header_t))
  22. #define HEADER_SIZE (sizeof(packet_header_t))
  23. /*
  24. TODO : since midi buffers now uses up to BUFFER_SIZE_MAX frames,
  25. probably also use BUFFER_SIZE_MAX in everything related to MIDI events
  26. handling (see MidiBufferInit in JackMidiPort.cpp)
  27. */
  28. namespace Jack
  29. {
  30. // JackNetInterface*******************************************
  31. JackNetInterface::JackNetInterface() : fSocket()
  32. {
  33. Initialize();
  34. }
  35. JackNetInterface::JackNetInterface(const char* multicast_ip, int port) : fSocket(multicast_ip, port)
  36. {
  37. strcpy(fMulticastIP, multicast_ip);
  38. Initialize();
  39. }
  40. JackNetInterface::JackNetInterface(session_params_t& params, JackNetSocket& socket, const char* multicast_ip) : fSocket(socket)
  41. {
  42. fParams = params;
  43. strcpy(fMulticastIP, multicast_ip);
  44. Initialize();
  45. }
  46. void JackNetInterface::Initialize()
  47. {
  48. fTxBuffer = NULL;
  49. fRxBuffer = NULL;
  50. fNetAudioCaptureBuffer = NULL;
  51. fNetAudioPlaybackBuffer = NULL;
  52. fNetMidiCaptureBuffer = NULL;
  53. fNetMidiPlaybackBuffer = NULL;
  54. memset(&fSendTransportData, 0, sizeof(net_transport_data_t));
  55. memset(&fReturnTransportData, 0, sizeof(net_transport_data_t));
  56. }
  57. void JackNetInterface::FreeNetworkBuffers()
  58. {
  59. delete fNetMidiCaptureBuffer;
  60. delete fNetMidiPlaybackBuffer;
  61. delete fNetAudioCaptureBuffer;
  62. delete fNetAudioPlaybackBuffer;
  63. fNetMidiCaptureBuffer = NULL;
  64. fNetMidiPlaybackBuffer = NULL;
  65. fNetAudioCaptureBuffer = NULL;
  66. fNetAudioPlaybackBuffer = NULL;
  67. }
  68. JackNetInterface::~JackNetInterface()
  69. {
  70. jack_log("JackNetInterface::~JackNetInterface");
  71. fSocket.Close();
  72. delete[] fTxBuffer;
  73. delete[] fRxBuffer;
  74. delete fNetAudioCaptureBuffer;
  75. delete fNetAudioPlaybackBuffer;
  76. delete fNetMidiCaptureBuffer;
  77. delete fNetMidiPlaybackBuffer;
  78. }
  79. int JackNetInterface::SetNetBufferSize()
  80. {
  81. //audio
  82. float audio_size = (fNetAudioCaptureBuffer)
  83. ? fNetAudioCaptureBuffer->GetCycleSize()
  84. : (fNetAudioPlaybackBuffer) ? fNetAudioPlaybackBuffer->GetCycleSize() : 0;
  85. jack_log("audio_size %f", audio_size);
  86. //midi
  87. float midi_size = (fNetMidiCaptureBuffer)
  88. ? fNetMidiCaptureBuffer->GetCycleSize()
  89. : (fNetMidiPlaybackBuffer) ? fNetMidiPlaybackBuffer->GetCycleSize() : 0;
  90. jack_log("midi_size %f", midi_size);
  91. //bufsize = sync + audio + midi
  92. int bufsize = MAX_LATENCY * (fParams.fMtu + (int)audio_size + (int) midi_size);
  93. jack_log("SetNetBufferSize bufsize = %d", bufsize);
  94. //tx buffer
  95. if (fSocket.SetOption(SOL_SOCKET, SO_SNDBUF, &bufsize, sizeof(bufsize)) == SOCKET_ERROR)
  96. return SOCKET_ERROR;
  97. //rx buffer
  98. if (fSocket.SetOption(SOL_SOCKET, SO_RCVBUF, &bufsize, sizeof(bufsize)) == SOCKET_ERROR)
  99. return SOCKET_ERROR;
  100. return 0;
  101. }
  102. bool JackNetInterface::SetParams()
  103. {
  104. //TX header init
  105. strcpy(fTxHeader.fPacketType, "header");
  106. fTxHeader.fID = fParams.fID;
  107. fTxHeader.fCycle = 0;
  108. fTxHeader.fSubCycle = 0;
  109. fTxHeader.fIsLastPckt = 0;
  110. //RX header init
  111. strcpy(fRxHeader.fPacketType, "header");
  112. fRxHeader.fID = fParams.fID;
  113. fRxHeader.fCycle = 0;
  114. fRxHeader.fSubCycle = 0;
  115. fRxHeader.fIsLastPckt = 0;
  116. //network buffers
  117. fTxBuffer = new char[fParams.fMtu];
  118. fRxBuffer = new char[fParams.fMtu];
  119. assert(fTxBuffer);
  120. assert(fRxBuffer);
  121. //net audio/midi buffers'addresses
  122. fTxData = fTxBuffer + HEADER_SIZE;
  123. fRxData = fRxBuffer + HEADER_SIZE;
  124. return true;
  125. }
  126. // JackNetMasterInterface ************************************************************************************
  127. bool JackNetMasterInterface::Init()
  128. {
  129. jack_log("JackNetMasterInterface::Init, ID %u", fParams.fID);
  130. session_params_t host_params;
  131. uint attempt = 0;
  132. int rx_bytes = 0;
  133. //socket
  134. if (fSocket.NewSocket() == SOCKET_ERROR) {
  135. jack_error("Can't create socket : %s", StrError(NET_ERROR_CODE));
  136. return false;
  137. }
  138. //timeout on receive (for init)
  139. if (fSocket.SetTimeOut(MASTER_INIT_TIMEOUT) < 0)
  140. jack_error("Can't set timeout : %s", StrError(NET_ERROR_CODE));
  141. //connect
  142. if (fSocket.Connect() == SOCKET_ERROR) {
  143. jack_error("Can't connect : %s", StrError(NET_ERROR_CODE));
  144. return false;
  145. }
  146. //send 'SLAVE_SETUP' until 'START_MASTER' received
  147. jack_info("Sending parameters to %s...", fParams.fSlaveNetName);
  148. do
  149. {
  150. session_params_t net_params;
  151. memset(&net_params, 0, sizeof(session_params_t));
  152. SetPacketType(&fParams, SLAVE_SETUP);
  153. SessionParamsHToN(&fParams, &net_params);
  154. if (fSocket.Send(&net_params, sizeof(session_params_t), 0) == SOCKET_ERROR)
  155. jack_error("Error in send : %s", StrError(NET_ERROR_CODE));
  156. memset(&net_params, 0, sizeof(session_params_t));
  157. if (((rx_bytes = fSocket.Recv(&net_params, sizeof(session_params_t), 0)) == SOCKET_ERROR) && (fSocket.GetError() != NET_NO_DATA))
  158. {
  159. jack_error("Problem with network");
  160. return false;
  161. }
  162. SessionParamsNToH(&net_params, &host_params);
  163. }
  164. while ((GetPacketType(&host_params) != START_MASTER) && (++attempt < SLAVE_SETUP_RETRY));
  165. if (attempt == SLAVE_SETUP_RETRY) {
  166. jack_error("Slave doesn't respond, exiting");
  167. return false;
  168. }
  169. return true;
  170. }
  171. int JackNetMasterInterface::SetRxTimeout()
  172. {
  173. jack_log("JackNetMasterInterface::SetRxTimeout");
  174. float time = 0;
  175. //slow or normal mode, short timeout on recv (2 audio subcycles)
  176. if ((fParams.fNetworkMode == 's') || (fParams.fNetworkMode == 'n')) {
  177. time = 2000000.f * ((fNetAudioCaptureBuffer)
  178. ? fNetAudioCaptureBuffer->GetCycleDuration()
  179. : (fNetAudioPlaybackBuffer) ? fNetAudioPlaybackBuffer->GetCycleDuration() : 0);
  180. }
  181. //fast mode, wait for 75% of the entire cycle duration
  182. else if (fParams.fNetworkMode == 'f') {
  183. time = 750000.f * (static_cast<float>(fParams.fPeriodSize) / static_cast<float>(fParams.fSampleRate));
  184. }
  185. return fSocket.SetTimeOut(static_cast<int>(time));
  186. }
  187. bool JackNetMasterInterface::SetParams()
  188. {
  189. jack_log("JackNetMasterInterface::SetParams");
  190. JackNetInterface::SetParams();
  191. fTxHeader.fDataStream = 's';
  192. fRxHeader.fDataStream = 'r';
  193. //midi net buffers
  194. if (fParams.fSendMidiChannels)
  195. fNetMidiCaptureBuffer = new NetMidiBuffer(&fParams, fParams.fSendMidiChannels, fTxData);
  196. if (fParams.fReturnMidiChannels)
  197. fNetMidiPlaybackBuffer = new NetMidiBuffer(&fParams, fParams.fReturnMidiChannels, fRxData);
  198. try {
  199. //audio net buffers
  200. if (fParams.fSendAudioChannels) {
  201. switch (fParams.fSampleEncoder) {
  202. case JackFloatEncoder:
  203. fNetAudioCaptureBuffer = new NetFloatAudioBuffer(&fParams, fParams.fSendAudioChannels, fTxData);
  204. break;
  205. case JackIntEncoder:
  206. fNetAudioCaptureBuffer = new NetIntAudioBuffer(&fParams, fParams.fSendAudioChannels, fTxData);
  207. break;
  208. case JackCeltEncoder:
  209. #if HAVE_CELT
  210. fNetAudioCaptureBuffer = new NetCeltAudioBuffer(&fParams, fParams.fSendAudioChannels, fTxData, fParams.fKBps);
  211. #endif
  212. break;
  213. }
  214. assert(fNetAudioCaptureBuffer);
  215. }
  216. if (fParams.fReturnAudioChannels) {
  217. switch (fParams.fSampleEncoder) {
  218. case JackFloatEncoder:
  219. fNetAudioPlaybackBuffer = new NetFloatAudioBuffer(&fParams, fParams.fReturnAudioChannels, fRxData);
  220. break;
  221. case JackIntEncoder:
  222. fNetAudioPlaybackBuffer = new NetIntAudioBuffer(&fParams, fParams.fReturnAudioChannels, fRxData);
  223. break;
  224. case JackCeltEncoder:
  225. #if HAVE_CELT
  226. fNetAudioPlaybackBuffer = new NetCeltAudioBuffer(&fParams, fParams.fReturnAudioChannels, fRxData, fParams.fKBps);
  227. #endif
  228. break;
  229. }
  230. assert(fNetAudioPlaybackBuffer);
  231. }
  232. } catch (exception&) {
  233. jack_error("NetAudioBuffer allocation error...");
  234. return false;
  235. }
  236. //set the new timeout for the socket
  237. if (SetRxTimeout() == SOCKET_ERROR) {
  238. jack_error("Can't set rx timeout : %s", StrError(NET_ERROR_CODE));
  239. goto error;
  240. }
  241. //set the new rx buffer size
  242. if (SetNetBufferSize() == SOCKET_ERROR) {
  243. jack_error("Can't set net buffer sizes : %s", StrError(NET_ERROR_CODE));
  244. goto error;
  245. }
  246. return true;
  247. error:
  248. FreeNetworkBuffers();
  249. return false;
  250. }
  251. void JackNetMasterInterface::Exit()
  252. {
  253. jack_log("JackNetMasterInterface::Exit, ID %u", fParams.fID);
  254. //stop process
  255. fRunning = false;
  256. //send a 'multicast euthanasia request' - new socket is required on macosx
  257. jack_info("Exiting '%s'", fParams.fName);
  258. SetPacketType(&fParams, KILL_MASTER);
  259. JackNetSocket mcast_socket(fMulticastIP, fSocket.GetPort());
  260. session_params_t net_params;
  261. memset(&net_params, 0, sizeof(session_params_t));
  262. SessionParamsHToN(&fParams, &net_params);
  263. if (mcast_socket.NewSocket() == SOCKET_ERROR)
  264. jack_error("Can't create socket : %s", StrError(NET_ERROR_CODE));
  265. if (mcast_socket.SendTo(&net_params, sizeof(session_params_t), 0, fMulticastIP) == SOCKET_ERROR)
  266. jack_error("Can't send suicide request : %s", StrError(NET_ERROR_CODE));
  267. mcast_socket.Close();
  268. }
  269. int JackNetMasterInterface::Recv(size_t size, int flags)
  270. {
  271. int rx_bytes;
  272. if (((rx_bytes = fSocket.Recv(fRxBuffer, size, flags)) == SOCKET_ERROR) && fRunning) {
  273. net_error_t error = fSocket.GetError();
  274. //no data isn't really a network error, so just return 0 available read bytes
  275. if (error == NET_NO_DATA) {
  276. return 0;
  277. } else if (error == NET_CONN_ERROR) {
  278. //fatal connection issue, exit
  279. jack_error("'%s' : %s, exiting", fParams.fName, StrError(NET_ERROR_CODE));
  280. //ask to the manager to properly remove the master
  281. Exit();
  282. // UGLY temporary way to be sure the thread does not call code possibly causing a deadlock in JackEngine.
  283. ThreadExit();
  284. } else {
  285. jack_error("Error in master receive : %s", StrError(NET_ERROR_CODE));
  286. }
  287. }
  288. packet_header_t* header = reinterpret_cast<packet_header_t*>(fRxBuffer);
  289. PacketHeaderNToH(header, header);
  290. return rx_bytes;
  291. }
  292. int JackNetMasterInterface::Send(size_t size, int flags)
  293. {
  294. int tx_bytes;
  295. packet_header_t* header = reinterpret_cast<packet_header_t*>(fTxBuffer);
  296. PacketHeaderHToN(header, header);
  297. if (((tx_bytes = fSocket.Send(fTxBuffer, size, flags)) == SOCKET_ERROR) && fRunning) {
  298. net_error_t error = fSocket.GetError();
  299. if (error == NET_CONN_ERROR) {
  300. //fatal connection issue, exit
  301. jack_error("'%s' : %s, exiting", fParams.fName, StrError(NET_ERROR_CODE));
  302. Exit();
  303. // UGLY temporary way to be sure the thread does not call code possibly causing a deadlock in JackEngine.
  304. ThreadExit();
  305. } else {
  306. jack_error("Error in master send : %s", StrError(NET_ERROR_CODE));
  307. }
  308. }
  309. return tx_bytes;
  310. }
  311. bool JackNetMasterInterface::IsSynched()
  312. {
  313. if (fParams.fNetworkMode == 's') {
  314. return (fCycleOffset < (CYCLE_OFFSET_SLOW + 1));
  315. } else {
  316. return true;
  317. }
  318. }
  319. int JackNetMasterInterface::SyncSend()
  320. {
  321. fTxHeader.fCycle++;
  322. fTxHeader.fSubCycle = 0;
  323. fTxHeader.fDataType = 's';
  324. fTxHeader.fIsLastPckt = (fParams.fSendMidiChannels == 0 && fParams.fSendAudioChannels == 0) ? 1 : 0;
  325. fTxHeader.fPacketSize = HEADER_SIZE;
  326. memcpy(fTxBuffer, &fTxHeader, HEADER_SIZE);
  327. return Send(fTxHeader.fPacketSize, 0);
  328. }
  329. int JackNetMasterInterface::DataSend()
  330. {
  331. uint subproc;
  332. uint data_size;
  333. //midi
  334. if (fParams.fSendMidiChannels > 0)
  335. {
  336. //set global header fields and get the number of midi packets
  337. fTxHeader.fDataType = 'm';
  338. data_size = fNetMidiCaptureBuffer->RenderFromJackPorts();
  339. fTxHeader.fNumPacket = fNetMidiCaptureBuffer->GetNumPackets();
  340. for (subproc = 0; subproc < fTxHeader.fNumPacket; subproc++)
  341. {
  342. fTxHeader.fSubCycle = subproc;
  343. fTxHeader.fIsLastPckt = ((subproc == (fTxHeader.fNumPacket - 1)) && (fParams.fSendAudioChannels == 0)) ? 1 : 0;
  344. fTxHeader.fPacketSize = HEADER_SIZE + fNetMidiCaptureBuffer->RenderToNetwork(subproc, data_size);
  345. memcpy(fTxBuffer, &fTxHeader, HEADER_SIZE);
  346. if (Send(fTxHeader.fPacketSize, 0) == SOCKET_ERROR)
  347. return SOCKET_ERROR;
  348. }
  349. }
  350. //audio
  351. if (fParams.fSendAudioChannels > 0)
  352. {
  353. fTxHeader.fDataType = 'a';
  354. data_size = fNetAudioCaptureBuffer->RenderFromJackPorts();
  355. fTxHeader.fNumPacket = fNetAudioCaptureBuffer->GetNumPackets();
  356. for (subproc = 0; subproc < fTxHeader.fNumPacket; subproc++)
  357. {
  358. fTxHeader.fSubCycle = subproc;
  359. fTxHeader.fIsLastPckt = (subproc == (fTxHeader.fNumPacket - 1)) ? 1 : 0;
  360. fTxHeader.fPacketSize = HEADER_SIZE + fNetAudioCaptureBuffer->RenderToNetwork(subproc, data_size);
  361. memcpy(fTxBuffer, &fTxHeader, HEADER_SIZE);
  362. if (Send(fTxHeader.fPacketSize, 0) == SOCKET_ERROR)
  363. return SOCKET_ERROR;
  364. }
  365. }
  366. return 0;
  367. }
  368. int JackNetMasterInterface::SyncRecv()
  369. {
  370. packet_header_t* rx_head = reinterpret_cast<packet_header_t*>(fRxBuffer);
  371. int rx_bytes = Recv(HEADER_SIZE, MSG_PEEK);
  372. if ((rx_bytes == 0) || (rx_bytes == SOCKET_ERROR))
  373. return rx_bytes;
  374. fCycleOffset = fTxHeader.fCycle - rx_head->fCycle;
  375. switch (fParams.fNetworkMode)
  376. {
  377. case 's' :
  378. //slow mode : allow to use full bandwidth and heavy process on the slave
  379. // - extra latency is set to two cycles, one cycle for send/receive operations + one cycle for heavy process on the slave
  380. // - if the network is two fast, just wait the next cycle, this mode allows a shorter cycle duration for the master
  381. // - this mode will skip the two first cycles, thus it lets time for data to be processed and queued on the socket rx buffer
  382. //the slow mode is the safest mode because it wait twice the bandwidth relative time (send/return + process)
  383. /*
  384. if (fCycleOffset < CYCLE_OFFSET_SLOW) {
  385. return 0;
  386. } else {
  387. rx_bytes = Recv (rx_head->fPacketSize, 0);
  388. }
  389. */
  390. rx_bytes = Recv(rx_head->fPacketSize, 0);
  391. if (fCycleOffset != fLastfCycleOffset)
  392. jack_info("Warning : '%s' runs in slow network mode, but data received too late (%d cycle(s) offset)", fParams.fName, fCycleOffset);
  393. fLastfCycleOffset = fCycleOffset;
  394. break;
  395. case 'n' :
  396. //normal use of the network :
  397. // - extra latency is set to one cycle, what is the time needed to receive streams using full network bandwidth
  398. // - if the network is too fast, just wait the next cycle, the benefit here is the master's cycle is shorter
  399. // - indeed, data is supposed to be on the network rx buffer, so we don't have to wait for it
  400. if (fCycleOffset < CYCLE_OFFSET_NORMAL) {
  401. return 0;
  402. } else {
  403. rx_bytes = Recv(rx_head->fPacketSize, 0);
  404. }
  405. if (fCycleOffset > CYCLE_OFFSET_NORMAL) {
  406. jack_info("'%s' can't run in normal network mode, data received too late (%d cycle(s) offset)", fParams.fName, fCycleOffset);
  407. }
  408. break;
  409. case 'f' :
  410. //fast mode suppose the network bandwith is larger than required for the transmission (only a few channels for example)
  411. // - packets can be quickly received, quickly is here relative to the cycle duration
  412. // - here, receive data, we can't keep it queued on the rx buffer,
  413. // - but if there is a cycle offset, tell the user, that means we're not in fast mode anymore, network is too slow
  414. rx_bytes = Recv(rx_head->fPacketSize, 0);
  415. if (fCycleOffset > CYCLE_OFFSET_FAST) {
  416. jack_info("'%s' can't run in fast network mode, data received too late (%d cycle(s) offset)", fParams.fName, fCycleOffset);
  417. }
  418. break;
  419. break;
  420. }
  421. fRxHeader.fIsLastPckt = rx_head->fIsLastPckt;
  422. return rx_bytes;
  423. }
  424. int JackNetMasterInterface::DataRecv()
  425. {
  426. int rx_bytes = 0;
  427. uint recvd_midi_pckt = 0;
  428. packet_header_t* rx_head = reinterpret_cast<packet_header_t*>(fRxBuffer);
  429. while (!fRxHeader.fIsLastPckt)
  430. {
  431. //how much data is queued on the rx buffer ?
  432. rx_bytes = Recv(HEADER_SIZE, MSG_PEEK);
  433. //error here, problem with recv, just skip the cycle (return -1)
  434. if (rx_bytes == SOCKET_ERROR)
  435. return rx_bytes;
  436. if (rx_bytes && (rx_head->fDataStream == 'r') && (rx_head->fID == fParams.fID))
  437. {
  438. //read data
  439. switch (rx_head->fDataType)
  440. {
  441. case 'm': //midi
  442. rx_bytes = Recv(rx_head->fPacketSize, 0);
  443. fRxHeader.fCycle = rx_head->fCycle;
  444. fRxHeader.fIsLastPckt = rx_head->fIsLastPckt;
  445. fNetMidiPlaybackBuffer->RenderFromNetwork(rx_head->fSubCycle, rx_bytes - HEADER_SIZE);
  446. // Last midi packet is received, so finish rendering...
  447. if (++recvd_midi_pckt == rx_head->fNumPacket)
  448. fNetMidiPlaybackBuffer->RenderToJackPorts();
  449. break;
  450. case 'a': //audio
  451. rx_bytes = Recv(rx_head->fPacketSize, 0);
  452. fRxHeader.fCycle = rx_head->fCycle;
  453. fRxHeader.fSubCycle = rx_head->fSubCycle;
  454. fRxHeader.fIsLastPckt = rx_head->fIsLastPckt;
  455. fNetAudioPlaybackBuffer->RenderFromNetwork(rx_head->fCycle, rx_head->fSubCycle, rx_bytes - HEADER_SIZE);
  456. // Last audio packet is received, so finish rendering...
  457. if (fRxHeader.fIsLastPckt)
  458. fNetAudioPlaybackBuffer->RenderToJackPorts();
  459. break;
  460. case 's': //sync
  461. jack_info("NetMaster : overloaded, skipping receive from '%s'", fParams.fName);
  462. // TODO : finish midi and audio rendering ?
  463. fNetAudioPlaybackBuffer->RenderToJackPorts();
  464. return 0;
  465. }
  466. }
  467. }
  468. return rx_bytes;
  469. }
  470. void JackNetMasterInterface::EncodeSyncPacket()
  471. {
  472. //this method contains every step of sync packet informations coding
  473. //first of all, reset sync packet
  474. memset(fTxData, 0, PACKET_AVAILABLE_SIZE);
  475. //then, first step : transport
  476. if (fParams.fTransportSync) {
  477. // desactivated...
  478. //EncodeTransportData();
  479. TransportDataHToN(&fSendTransportData, &fSendTransportData);
  480. //copy to TxBuffer
  481. memcpy(fTxData, &fSendTransportData, sizeof(net_transport_data_t));
  482. }
  483. //then others (freewheel etc.)
  484. //...
  485. }
  486. void JackNetMasterInterface::DecodeSyncPacket()
  487. {
  488. //this method contains every step of sync packet informations decoding process
  489. //first : transport
  490. if (fParams.fTransportSync) {
  491. //copy received transport data to transport data structure
  492. memcpy(&fReturnTransportData, fRxData, sizeof(net_transport_data_t));
  493. TransportDataNToH(&fReturnTransportData, &fReturnTransportData);
  494. // desactivated...
  495. //DecodeTransportData();
  496. }
  497. //then others
  498. //...
  499. }
  500. // JackNetSlaveInterface ************************************************************************************************
  501. uint JackNetSlaveInterface::fSlaveCounter = 0;
  502. bool JackNetSlaveInterface::Init()
  503. {
  504. jack_log("JackNetSlaveInterface::Init()");
  505. //set the parameters to send
  506. strcpy(fParams.fPacketType, "params");
  507. fParams.fProtocolVersion = SLAVE_PROTOCOL;
  508. SetPacketType(&fParams, SLAVE_AVAILABLE);
  509. //init loop : get a master and start, do it until connection is ok
  510. net_status_t status;
  511. do
  512. {
  513. //first, get a master, do it until a valid connection is running
  514. do
  515. {
  516. status = SendAvailableToMaster();
  517. if (status == NET_SOCKET_ERROR)
  518. return false;
  519. }
  520. while (status != NET_CONNECTED);
  521. //then tell the master we are ready
  522. jack_info("Initializing connection with %s...", fParams.fMasterNetName);
  523. status = SendStartToMaster();
  524. if (status == NET_ERROR)
  525. return false;
  526. }
  527. while (status != NET_ROLLING);
  528. return true;
  529. }
  530. // Separate the connection protocol into two separated step
  531. bool JackNetSlaveInterface::InitConnection(int time_out)
  532. {
  533. jack_log("JackNetSlaveInterface::InitConnection()");
  534. unsigned int try_count = (time_out > 0) ? ((1000000 * time_out) / SLAVE_INIT_TIMEOUT) : LONG_MAX;
  535. //set the parameters to send
  536. strcpy(fParams.fPacketType, "params");
  537. fParams.fProtocolVersion = SLAVE_PROTOCOL;
  538. SetPacketType(&fParams, SLAVE_AVAILABLE);
  539. net_status_t status;
  540. do
  541. {
  542. //get a master
  543. status = SendAvailableToMaster(try_count);
  544. if (status == NET_SOCKET_ERROR)
  545. return false;
  546. }
  547. while (status != NET_CONNECTED && --try_count > 0);
  548. return (try_count != 0);
  549. }
  550. bool JackNetSlaveInterface::InitRendering()
  551. {
  552. jack_log("JackNetSlaveInterface::InitRendering()");
  553. net_status_t status;
  554. do
  555. {
  556. //then tell the master we are ready
  557. jack_info("Initializing connection with %s...", fParams.fMasterNetName);
  558. status = SendStartToMaster();
  559. if (status == NET_ERROR)
  560. return false;
  561. }
  562. while (status != NET_ROLLING);
  563. return true;
  564. }
  565. net_status_t JackNetSlaveInterface::SendAvailableToMaster(long try_count)
  566. {
  567. jack_log("JackNetSlaveInterface::SendAvailableToMaster()");
  568. //utility
  569. session_params_t host_params;
  570. int rx_bytes = 0;
  571. //socket
  572. if (fSocket.NewSocket() == SOCKET_ERROR) {
  573. jack_error("Fatal error : network unreachable - %s", StrError(NET_ERROR_CODE));
  574. return NET_SOCKET_ERROR;
  575. }
  576. //bind the socket
  577. if (fSocket.Bind() == SOCKET_ERROR) {
  578. jack_error("Can't bind the socket : %s", StrError(NET_ERROR_CODE));
  579. return NET_SOCKET_ERROR;
  580. }
  581. //timeout on receive
  582. if (fSocket.SetTimeOut(SLAVE_INIT_TIMEOUT) == SOCKET_ERROR)
  583. jack_error("Can't set timeout : %s", StrError(NET_ERROR_CODE));
  584. //disable local loop
  585. if (fSocket.SetLocalLoop() == SOCKET_ERROR)
  586. jack_error("Can't disable multicast loop : %s", StrError(NET_ERROR_CODE));
  587. //send 'AVAILABLE' until 'SLAVE_SETUP' received
  588. jack_info("Waiting for a master...");
  589. do
  590. {
  591. //send 'available'
  592. session_params_t net_params;
  593. memset(&net_params, 0, sizeof(session_params_t));
  594. SessionParamsHToN(&fParams, &net_params);
  595. if (fSocket.SendTo(&net_params, sizeof(session_params_t), 0, fMulticastIP) == SOCKET_ERROR)
  596. jack_error("Error in data send : %s", StrError(NET_ERROR_CODE));
  597. //filter incoming packets : don't exit while no error is detected
  598. memset(&net_params, 0, sizeof(session_params_t));
  599. rx_bytes = fSocket.CatchHost(&net_params, sizeof(session_params_t), 0);
  600. SessionParamsNToH(&net_params, &host_params);
  601. if ((rx_bytes == SOCKET_ERROR) && (fSocket.GetError() != NET_NO_DATA))
  602. {
  603. jack_error("Can't receive : %s", StrError(NET_ERROR_CODE));
  604. return NET_RECV_ERROR;
  605. }
  606. }
  607. while (strcmp(host_params.fPacketType, fParams.fPacketType) && (GetPacketType(&host_params) != SLAVE_SETUP) && (--try_count > 0));
  608. // Time out failure..
  609. if (try_count == 0) {
  610. jack_error("Time out error in connect");
  611. return NET_CONNECT_ERROR;
  612. }
  613. //everything is OK, copy parameters
  614. fParams = host_params;
  615. //connect the socket
  616. if (fSocket.Connect() == SOCKET_ERROR) {
  617. jack_error("Error in connect : %s", StrError(NET_ERROR_CODE));
  618. return NET_CONNECT_ERROR;
  619. }
  620. return NET_CONNECTED;
  621. }
  622. net_status_t JackNetSlaveInterface::SendStartToMaster()
  623. {
  624. jack_log("JackNetSlaveInterface::SendStartToMaster");
  625. //tell the master to start
  626. session_params_t net_params;
  627. memset(&net_params, 0, sizeof(session_params_t));
  628. SetPacketType(&fParams, START_MASTER);
  629. SessionParamsHToN(&fParams, &net_params);
  630. if (fSocket.Send(&net_params, sizeof(session_params_t), 0) == SOCKET_ERROR)
  631. {
  632. jack_error("Error in send : %s", StrError(NET_ERROR_CODE));
  633. return (fSocket.GetError() == NET_CONN_ERROR) ? NET_ERROR : NET_SEND_ERROR;
  634. }
  635. return NET_ROLLING;
  636. }
  637. bool JackNetSlaveInterface::SetParams()
  638. {
  639. jack_log("JackNetSlaveInterface::SetParams");
  640. JackNetInterface::SetParams();
  641. fTxHeader.fDataStream = 'r';
  642. fRxHeader.fDataStream = 's';
  643. //midi net buffers
  644. if (fParams.fSendMidiChannels)
  645. fNetMidiCaptureBuffer = new NetMidiBuffer(&fParams, fParams.fSendMidiChannels, fTxData);
  646. if (fParams.fReturnMidiChannels)
  647. fNetMidiPlaybackBuffer = new NetMidiBuffer(&fParams, fParams.fReturnMidiChannels, fRxData);
  648. try {
  649. //audio net buffers
  650. if (fParams.fSendAudioChannels) {
  651. switch (fParams.fSampleEncoder) {
  652. case JackFloatEncoder:
  653. fNetAudioCaptureBuffer = new NetFloatAudioBuffer(&fParams, fParams.fSendAudioChannels, fRxData);
  654. break;
  655. case JackIntEncoder:
  656. fNetAudioCaptureBuffer = new NetIntAudioBuffer(&fParams, fParams.fSendAudioChannels, fRxData);
  657. break;
  658. case JackCeltEncoder:
  659. #if HAVE_CELT
  660. fNetAudioCaptureBuffer = new NetCeltAudioBuffer(&fParams, fParams.fSendAudioChannels, fRxData, fParams.fKBps);
  661. #endif
  662. break;
  663. }
  664. assert(fNetAudioCaptureBuffer);
  665. }
  666. if (fParams.fReturnAudioChannels) {
  667. switch (fParams.fSampleEncoder) {
  668. case JackFloatEncoder:
  669. fNetAudioPlaybackBuffer = new NetFloatAudioBuffer(&fParams, fParams.fReturnAudioChannels, fTxData);
  670. break;
  671. case JackIntEncoder:
  672. fNetAudioPlaybackBuffer = new NetIntAudioBuffer(&fParams, fParams.fReturnAudioChannels, fTxData);
  673. break;
  674. case JackCeltEncoder:
  675. #if HAVE_CELT
  676. fNetAudioPlaybackBuffer = new NetCeltAudioBuffer(&fParams, fParams.fReturnAudioChannels, fTxData, fParams.fKBps);
  677. #endif
  678. break;
  679. }
  680. assert(fNetAudioPlaybackBuffer);
  681. }
  682. } catch (exception&) {
  683. jack_error("NetAudioBuffer allocation error...");
  684. return false;
  685. }
  686. //set the new buffer sizes
  687. if (SetNetBufferSize() == SOCKET_ERROR) {
  688. jack_error("Can't set net buffer sizes : %s", StrError(NET_ERROR_CODE));
  689. goto error;
  690. }
  691. return true;
  692. error:
  693. FreeNetworkBuffers();
  694. return false;
  695. }
  696. int JackNetSlaveInterface::Recv(size_t size, int flags)
  697. {
  698. int rx_bytes = fSocket.Recv(fRxBuffer, size, flags);
  699. //handle errors
  700. if (rx_bytes == SOCKET_ERROR)
  701. {
  702. net_error_t error = fSocket.GetError();
  703. //no data isn't really an error in realtime processing, so just return 0
  704. if (error == NET_NO_DATA) {
  705. jack_error("No data, is the master still running ?");
  706. //if a network error occurs, this exception will restart the driver
  707. } else if (error == NET_CONN_ERROR) {
  708. jack_error("Recv connection lost");
  709. throw JackNetException();
  710. } else {
  711. jack_error("Fatal error in slave receive : %s", StrError(NET_ERROR_CODE));
  712. }
  713. }
  714. packet_header_t* header = reinterpret_cast<packet_header_t*>(fRxBuffer);
  715. PacketHeaderNToH(header, header);
  716. return rx_bytes;
  717. }
  718. int JackNetSlaveInterface::Send(size_t size, int flags)
  719. {
  720. packet_header_t* header = reinterpret_cast<packet_header_t*>(fTxBuffer);
  721. PacketHeaderHToN(header, header);
  722. int tx_bytes = fSocket.Send(fTxBuffer, size, flags);
  723. //handle errors
  724. if (tx_bytes == SOCKET_ERROR)
  725. {
  726. net_error_t error = fSocket.GetError();
  727. //if a network error occurs, this exception will restart the driver
  728. if (error == NET_CONN_ERROR) {
  729. jack_error("Send connection lost");
  730. throw JackNetException();
  731. } else {
  732. jack_error("Fatal error in slave send : %s", StrError(NET_ERROR_CODE));
  733. }
  734. }
  735. return tx_bytes;
  736. }
  737. int JackNetSlaveInterface::SyncRecv()
  738. {
  739. int rx_bytes = 0;
  740. packet_header_t* rx_head = reinterpret_cast<packet_header_t*>(fRxBuffer);
  741. //receive sync (launch the cycle)
  742. do
  743. {
  744. rx_bytes = Recv(HEADER_SIZE, 0);
  745. //connection issue, send will detect it, so don't skip the cycle (return 0)
  746. if (rx_bytes == SOCKET_ERROR)
  747. return rx_bytes;
  748. }
  749. while ((strcmp(rx_head->fPacketType, "header") != 0) && (rx_head->fDataType != 's'));
  750. fRxHeader.fIsLastPckt = rx_head->fIsLastPckt;
  751. return rx_bytes;
  752. }
  753. int JackNetSlaveInterface::DataRecv()
  754. {
  755. int rx_bytes = 0;
  756. uint recvd_midi_pckt = 0;
  757. packet_header_t* rx_head = reinterpret_cast<packet_header_t*>(fRxBuffer);
  758. while (!fRxHeader.fIsLastPckt)
  759. {
  760. //how much data is queued on the rx buffer ?
  761. rx_bytes = Recv(HEADER_SIZE, MSG_PEEK);
  762. //error here, problem with recv, just skip the cycle (return -1)
  763. if (rx_bytes == SOCKET_ERROR)
  764. return rx_bytes;
  765. if (rx_bytes && (rx_head->fDataStream == 's') && (rx_head->fID == fParams.fID))
  766. {
  767. switch (rx_head->fDataType)
  768. {
  769. case 'm': //midi
  770. rx_bytes = Recv(rx_head->fPacketSize, 0);
  771. fRxHeader.fCycle = rx_head->fCycle;
  772. fRxHeader.fIsLastPckt = rx_head->fIsLastPckt;
  773. fNetMidiCaptureBuffer->RenderFromNetwork(rx_head->fSubCycle, rx_bytes - HEADER_SIZE);
  774. // Last midi packet is received, so finish rendering...
  775. if (++recvd_midi_pckt == rx_head->fNumPacket)
  776. fNetMidiCaptureBuffer->RenderToJackPorts();
  777. break;
  778. case 'a': //audio
  779. rx_bytes = Recv(rx_head->fPacketSize, 0);
  780. fRxHeader.fCycle = rx_head->fCycle;
  781. fRxHeader.fSubCycle = rx_head->fSubCycle;
  782. fRxHeader.fIsLastPckt = rx_head->fIsLastPckt;
  783. fNetAudioCaptureBuffer->RenderFromNetwork(rx_head->fCycle, rx_head->fSubCycle, rx_bytes - HEADER_SIZE);
  784. // Last audio packet is received, so finish rendering...
  785. if (fRxHeader.fIsLastPckt)
  786. fNetAudioCaptureBuffer->RenderToJackPorts();
  787. break;
  788. case 's': //sync
  789. jack_info("NetSlave : overloaded, skipping receive");
  790. // TODO : finish midi and audio rendering ?
  791. fNetAudioCaptureBuffer->RenderToJackPorts();
  792. return 0;
  793. }
  794. }
  795. }
  796. fRxHeader.fCycle = rx_head->fCycle;
  797. return 0;
  798. }
  799. int JackNetSlaveInterface::SyncSend()
  800. {
  801. //tx header
  802. if (fParams.fSlaveSyncMode) {
  803. fTxHeader.fCycle = fRxHeader.fCycle;
  804. } else {
  805. fTxHeader.fCycle++;
  806. }
  807. fTxHeader.fSubCycle = 0;
  808. fTxHeader.fDataType = 's';
  809. fTxHeader.fIsLastPckt = (fParams.fReturnMidiChannels == 0 && fParams.fReturnAudioChannels == 0) ? 1 : 0;
  810. fTxHeader.fPacketSize = HEADER_SIZE;
  811. memcpy(fTxBuffer, &fTxHeader, HEADER_SIZE);
  812. return Send(fTxHeader.fPacketSize, 0);
  813. }
  814. int JackNetSlaveInterface::DataSend()
  815. {
  816. uint subproc;
  817. uint data_size;
  818. //midi
  819. if (fParams.fReturnMidiChannels > 0)
  820. {
  821. //set global header fields and get the number of midi packets
  822. fTxHeader.fDataType = 'm';
  823. data_size = fNetMidiPlaybackBuffer->RenderFromJackPorts();
  824. fTxHeader.fNumPacket = fNetMidiPlaybackBuffer->GetNumPackets();
  825. for (subproc = 0; subproc < fTxHeader.fNumPacket; subproc++)
  826. {
  827. fTxHeader.fSubCycle = subproc;
  828. fTxHeader.fIsLastPckt = ((subproc == (fTxHeader.fNumPacket - 1)) && !fParams.fReturnAudioChannels) ? 1 : 0;
  829. fTxHeader.fPacketSize = HEADER_SIZE + fNetMidiPlaybackBuffer->RenderToNetwork(subproc, data_size);
  830. memcpy(fTxBuffer, &fTxHeader, HEADER_SIZE);
  831. if (Send(fTxHeader.fPacketSize, 0) == SOCKET_ERROR)
  832. return SOCKET_ERROR;
  833. }
  834. }
  835. //audio
  836. if (fParams.fReturnAudioChannels > 0)
  837. {
  838. fTxHeader.fDataType = 'a';
  839. data_size = fNetAudioPlaybackBuffer->RenderFromJackPorts();
  840. fTxHeader.fNumPacket = fNetAudioPlaybackBuffer->GetNumPackets();
  841. for (subproc = 0; subproc < fTxHeader.fNumPacket; subproc++)
  842. {
  843. fTxHeader.fSubCycle = subproc;
  844. fTxHeader.fIsLastPckt = (subproc == (fTxHeader.fNumPacket - 1)) ? 1 : 0;
  845. fTxHeader.fPacketSize = HEADER_SIZE + fNetAudioPlaybackBuffer->RenderToNetwork(subproc, data_size);
  846. memcpy(fTxBuffer, &fTxHeader, HEADER_SIZE);
  847. if (Send(fTxHeader.fPacketSize, 0) == SOCKET_ERROR)
  848. return SOCKET_ERROR;
  849. }
  850. }
  851. return 0;
  852. }
  853. //network sync------------------------------------------------------------------------
  854. void JackNetSlaveInterface::EncodeSyncPacket()
  855. {
  856. //this method contains every step of sync packet informations coding
  857. //first of all, reset sync packet
  858. memset(fTxData, 0, PACKET_AVAILABLE_SIZE);
  859. //then first step : transport
  860. if (fParams.fTransportSync) {
  861. // desactivated...
  862. //EncodeTransportData();
  863. TransportDataHToN(&fReturnTransportData, &fReturnTransportData);
  864. //copy to TxBuffer
  865. memcpy(fTxData, &fReturnTransportData, sizeof(net_transport_data_t));
  866. }
  867. //then others
  868. //...
  869. }
  870. void JackNetSlaveInterface::DecodeSyncPacket()
  871. {
  872. //this method contains every step of sync packet informations decoding process
  873. //first : transport
  874. if (fParams.fTransportSync) {
  875. //copy received transport data to transport data structure
  876. memcpy(&fSendTransportData, fRxData, sizeof(net_transport_data_t));
  877. TransportDataNToH(&fSendTransportData, &fSendTransportData);
  878. // desactivated...
  879. //DecodeTransportData();
  880. }
  881. //then others
  882. //...
  883. }
  884. }