jack2 codebase
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  1. /*
  2. Copyright (C) 2008-2011 Torben Horn
  3. This program is free software; you can redistribute it and/or modify
  4. it under the terms of the GNU General Public License as published by
  5. the Free Software Foundation; either version 2 of the License, or
  6. (at your option) any later version.
  7. This program is distributed in the hope that it will be useful,
  8. but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  10. GNU General Public License for more details.
  11. You should have received a copy of the GNU General Public License
  12. along with this program; if not, write to the Free Software
  13. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  14. */
  15. #ifdef WIN32
  16. #include <malloc.h>
  17. #endif
  18. #include "JackNetOneDriver.h"
  19. #include "JackEngineControl.h"
  20. #include "JackLockedEngine.h"
  21. #include "JackGraphManager.h"
  22. #include "JackWaitThreadedDriver.h"
  23. #include "JackTools.h"
  24. #include "driver_interface.h"
  25. #include "netjack.h"
  26. #include "netjack_packet.h"
  27. #if HAVE_SAMPLERATE
  28. #include <samplerate.h>
  29. #endif
  30. #if HAVE_CELT
  31. #include <celt/celt.h>
  32. #endif
  33. #if HAVE_OPUS
  34. #include <opus/opus.h>
  35. #include <opus/opus_custom.h>
  36. #endif
  37. #define MIN(x,y) ((x)<(y) ? (x) : (y))
  38. using namespace std;
  39. namespace Jack
  40. {
  41. JackNetOneDriver::JackNetOneDriver(const char* name, const char* alias, JackLockedEngine* engine, JackSynchro* table,
  42. int port, int mtu, int capture_ports, int playback_ports, int midi_input_ports, int midi_output_ports,
  43. int sample_rate, int period_size, int resample_factor,
  44. const char* net_name, uint transport_sync, int bitdepth, int use_autoconfig,
  45. int latency, int redundancy, int dont_htonl_floats, int always_deadline, int jitter_val)
  46. : JackWaiterDriver(name, alias, engine, table)
  47. {
  48. jack_log("JackNetOneDriver::JackNetOneDriver port %d", port);
  49. #ifdef WIN32
  50. WSADATA wsa;
  51. WSAStartup(MAKEWORD(2, 0), &wsa);
  52. #endif
  53. netjack_init(& (this->netj),
  54. NULL, // client
  55. name,
  56. capture_ports,
  57. playback_ports,
  58. midi_input_ports,
  59. midi_output_ports,
  60. sample_rate,
  61. period_size,
  62. port,
  63. transport_sync,
  64. resample_factor,
  65. 0,
  66. bitdepth,
  67. use_autoconfig,
  68. latency,
  69. redundancy,
  70. dont_htonl_floats,
  71. always_deadline,
  72. jitter_val);
  73. }
  74. JackNetOneDriver::~JackNetOneDriver()
  75. {
  76. // No destructor yet.
  77. }
  78. //open, close, attach and detach------------------------------------------------------
  79. int JackNetOneDriver::Close()
  80. {
  81. // Generic audio driver close
  82. int res = JackWaiterDriver::Close();
  83. FreePorts();
  84. netjack_release(&netj);
  85. return res;
  86. }
  87. int JackNetOneDriver::Attach()
  88. {
  89. return 0;
  90. }
  91. int JackNetOneDriver::Detach()
  92. {
  93. return 0;
  94. }
  95. int JackNetOneDriver::AllocPorts()
  96. {
  97. jack_port_id_t port_index;
  98. char buf[64];
  99. unsigned int chn;
  100. //if (netj.handle_transport_sync)
  101. // jack_set_sync_callback(netj.client, (JackSyncCallback) net_driver_sync_cb, NULL);
  102. for (chn = 0; chn < netj.capture_channels_audio; chn++) {
  103. snprintf (buf, sizeof(buf) - 1, "system:capture_%u", chn + 1);
  104. if (fEngine->PortRegister(fClientControl.fRefNum, buf, JACK_DEFAULT_AUDIO_TYPE,
  105. CaptureDriverFlags, fEngineControl->fBufferSize, &port_index) < 0) {
  106. jack_error("driver: cannot register port for %s", buf);
  107. return -1;
  108. }
  109. //port = fGraphManager->GetPort(port_index);
  110. netj.capture_ports = jack_slist_append (netj.capture_ports, (void *)(intptr_t)port_index);
  111. if (netj.bitdepth == CELT_MODE) {
  112. #if HAVE_CELT
  113. #if HAVE_CELT_API_0_11
  114. celt_int32 lookahead;
  115. CELTMode *celt_mode = celt_mode_create(netj.sample_rate, netj.period_size, NULL);
  116. netj.capture_srcs = jack_slist_append(netj.capture_srcs, celt_decoder_create_custom(celt_mode, 1, NULL));
  117. #elif HAVE_CELT_API_0_7 || HAVE_CELT_API_0_8
  118. celt_int32 lookahead;
  119. CELTMode *celt_mode = celt_mode_create(netj.sample_rate, netj.period_size, NULL);
  120. netj.capture_srcs = jack_slist_append(netj.capture_srcs, celt_decoder_create(celt_mode, 1, NULL));
  121. #else
  122. celt_int32_t lookahead;
  123. CELTMode *celt_mode = celt_mode_create(netj.sample_rate, 1, netj.period_size, NULL);
  124. netj.capture_srcs = jack_slist_append(netj.capture_srcs, celt_decoder_create(celt_mode));
  125. #endif
  126. celt_mode_info(celt_mode, CELT_GET_LOOKAHEAD, &lookahead);
  127. netj.codec_latency = 2 * lookahead;
  128. #endif
  129. } else if (netj.bitdepth == OPUS_MODE) {
  130. #if HAVE_OPUS
  131. OpusCustomMode *opus_mode = opus_custom_mode_create(netj.sample_rate, netj.period_size, NULL); // XXX free me in the end
  132. OpusCustomDecoder *decoder = opus_custom_decoder_create( opus_mode, 1, NULL );
  133. netj.capture_srcs = jack_slist_append(netj.capture_srcs, decoder);
  134. #endif
  135. } else {
  136. #if HAVE_SAMPLERATE
  137. netj.capture_srcs = jack_slist_append(netj.capture_srcs, (void *)src_new(SRC_LINEAR, 1, NULL));
  138. #endif
  139. }
  140. }
  141. for (chn = netj.capture_channels_audio; chn < netj.capture_channels; chn++) {
  142. snprintf (buf, sizeof(buf) - 1, "system:capture_%u", chn + 1);
  143. if (fEngine->PortRegister(fClientControl.fRefNum, buf, JACK_DEFAULT_MIDI_TYPE,
  144. CaptureDriverFlags, fEngineControl->fBufferSize, &port_index) < 0) {
  145. jack_error("driver: cannot register port for %s", buf);
  146. return -1;
  147. }
  148. //port = fGraphManager->GetPort(port_index);
  149. netj.capture_ports =
  150. jack_slist_append (netj.capture_ports, (void *)(intptr_t)port_index);
  151. }
  152. for (chn = 0; chn < netj.playback_channels_audio; chn++) {
  153. snprintf (buf, sizeof(buf) - 1, "system:playback_%u", chn + 1);
  154. if (fEngine->PortRegister(fClientControl.fRefNum, buf, JACK_DEFAULT_AUDIO_TYPE,
  155. PlaybackDriverFlags, fEngineControl->fBufferSize, &port_index) < 0) {
  156. jack_error("driver: cannot register port for %s", buf);
  157. return -1;
  158. }
  159. //port = fGraphManager->GetPort(port_index);
  160. netj.playback_ports = jack_slist_append (netj.playback_ports, (void *)(intptr_t)port_index);
  161. if (netj.bitdepth == CELT_MODE) {
  162. #if HAVE_CELT
  163. #if HAVE_CELT_API_0_11
  164. CELTMode *celt_mode = celt_mode_create(netj.sample_rate, netj.period_size, NULL);
  165. netj.playback_srcs = jack_slist_append(netj.playback_srcs, celt_encoder_create_custom(celt_mode, 1, NULL));
  166. #elif HAVE_CELT_API_0_7 || HAVE_CELT_API_0_8
  167. CELTMode *celt_mode = celt_mode_create(netj.sample_rate, netj.period_size, NULL);
  168. netj.playback_srcs = jack_slist_append(netj.playback_srcs, celt_encoder_create(celt_mode, 1, NULL));
  169. #else
  170. CELTMode *celt_mode = celt_mode_create(netj.sample_rate, 1, netj.period_size, NULL);
  171. netj.playback_srcs = jack_slist_append(netj.playback_srcs, celt_encoder_create(celt_mode));
  172. #endif
  173. #endif
  174. } else if (netj.bitdepth == OPUS_MODE) {
  175. #if HAVE_OPUS
  176. const int kbps = netj.resample_factor;
  177. jack_error("NEW ONE OPUS ENCODER 128 <> %d!!", kbps);
  178. int err;
  179. OpusCustomMode *opus_mode = opus_custom_mode_create( netj.sample_rate, netj.period_size, &err ); // XXX free me in the end
  180. if (err != OPUS_OK) { jack_error("opus mode failed"); }
  181. OpusCustomEncoder *oe = opus_custom_encoder_create( opus_mode, 1, &err );
  182. if (err != OPUS_OK) { jack_error("opus mode failed"); }
  183. opus_custom_encoder_ctl(oe, OPUS_SET_BITRATE(kbps*1024)); // bits per second
  184. opus_custom_encoder_ctl(oe, OPUS_SET_COMPLEXITY(10));
  185. opus_custom_encoder_ctl(oe, OPUS_SET_SIGNAL(OPUS_SIGNAL_MUSIC));
  186. opus_custom_encoder_ctl(oe, OPUS_SET_SIGNAL(OPUS_APPLICATION_RESTRICTED_LOWDELAY));
  187. netj.playback_srcs = jack_slist_append(netj.playback_srcs, oe);
  188. #endif
  189. } else {
  190. #if HAVE_SAMPLERATE
  191. netj.playback_srcs = jack_slist_append(netj.playback_srcs, (void *)src_new(SRC_LINEAR, 1, NULL));
  192. #endif
  193. }
  194. }
  195. for (chn = netj.playback_channels_audio; chn < netj.playback_channels; chn++) {
  196. snprintf (buf, sizeof(buf) - 1, "system:playback_%u", chn + 1);
  197. if (fEngine->PortRegister(fClientControl.fRefNum, buf, JACK_DEFAULT_MIDI_TYPE,
  198. PlaybackDriverFlags, fEngineControl->fBufferSize, &port_index) < 0) {
  199. jack_error("driver: cannot register port for %s", buf);
  200. return -1;
  201. }
  202. //port = fGraphManager->GetPort(port_index);
  203. netj.playback_ports =
  204. jack_slist_append (netj.playback_ports, (void *)(intptr_t)port_index);
  205. }
  206. return 0;
  207. }
  208. //init and restart--------------------------------------------------------------------
  209. bool JackNetOneDriver::Initialize()
  210. {
  211. jack_log("JackNetOneDriver::Init");
  212. FreePorts();
  213. netjack_release(&netj);
  214. //display some additional infos
  215. jack_info("NetOne driver started");
  216. if (netjack_startup(&netj)) {
  217. return false;
  218. }
  219. //register jack ports
  220. if (AllocPorts() != 0) {
  221. jack_error("Can't allocate ports.");
  222. return false;
  223. }
  224. //monitor
  225. //driver parametering
  226. JackTimedDriver::SetBufferSize(netj.period_size);
  227. JackTimedDriver::SetSampleRate(netj.sample_rate);
  228. JackDriver::NotifyBufferSize(netj.period_size);
  229. JackDriver::NotifySampleRate(netj.sample_rate);
  230. //transport engine parametering
  231. fEngineControl->fTransport.SetNetworkSync(true);
  232. return true;
  233. }
  234. //jack ports and buffers--------------------------------------------------------------
  235. //driver processes--------------------------------------------------------------------
  236. int JackNetOneDriver::Read()
  237. {
  238. int delay;
  239. delay = netjack_wait(&netj);
  240. if (delay) {
  241. NotifyXRun(fBeginDateUst, (float) delay);
  242. jack_error("netxruns... duration: %dms", delay / 1000);
  243. }
  244. if ((netj.num_lost_packets * netj.period_size / netj.sample_rate) > 2)
  245. JackTools::ThrowJackNetException();
  246. //netjack_read(&netj, netj.period_size);
  247. JackDriver::CycleTakeBeginTime();
  248. jack_position_t local_trans_pos;
  249. jack_transport_state_t local_trans_state;
  250. unsigned int *packet_buf, *packet_bufX;
  251. if (! netj.packet_data_valid) {
  252. jack_log("data not valid");
  253. render_payload_to_jack_ports (netj.bitdepth, NULL, netj.net_period_down, netj.capture_ports, netj.capture_srcs, netj.period_size, netj.dont_htonl_floats);
  254. return 0;
  255. }
  256. packet_buf = netj.rx_buf;
  257. jacknet_packet_header *pkthdr = (jacknet_packet_header *)packet_buf;
  258. packet_bufX = packet_buf + sizeof(jacknet_packet_header) / sizeof(jack_default_audio_sample_t);
  259. netj.reply_port = pkthdr->reply_port;
  260. netj.latency = pkthdr->latency;
  261. // Special handling for latency=0
  262. if (netj.latency == 0)
  263. netj.resync_threshold = 0;
  264. else
  265. netj.resync_threshold = MIN(15, pkthdr->latency - 1);
  266. // check whether, we should handle the transport sync stuff, or leave trnasports untouched.
  267. if (netj.handle_transport_sync) {
  268. #if 1
  269. unsigned int compensated_tranport_pos = (pkthdr->transport_frame + (pkthdr->latency * netj.period_size) + netj.codec_latency);
  270. // read local transport info....
  271. //local_trans_state = jack_transport_query(netj.client, &local_trans_pos);
  272. local_trans_state = fEngineControl->fTransport.Query(&local_trans_pos);
  273. // Now check if we have to start or stop local transport to sync to remote...
  274. switch (pkthdr->transport_state) {
  275. case JackTransportStarting:
  276. // the master transport is starting... so we set our reply to the sync_callback;
  277. if (local_trans_state == JackTransportStopped) {
  278. fEngineControl->fTransport.SetCommand(TransportCommandStart);
  279. //jack_transport_start(netj.client);
  280. //last_transport_state = JackTransportStopped;
  281. netj.sync_state = 0;
  282. jack_info("locally stopped... starting...");
  283. }
  284. if (local_trans_pos.frame != compensated_tranport_pos) {
  285. jack_position_t new_pos = local_trans_pos;
  286. new_pos.frame = compensated_tranport_pos + 2 * netj.period_size;
  287. new_pos.valid = (jack_position_bits_t) 0;
  288. fEngineControl->fTransport.RequestNewPos(&new_pos);
  289. //jack_transport_locate(netj.client, compensated_tranport_pos);
  290. //last_transport_state = JackTransportRolling;
  291. netj.sync_state = 0;
  292. jack_info("starting locate to %d", compensated_tranport_pos);
  293. }
  294. break;
  295. case JackTransportStopped:
  296. netj.sync_state = 1;
  297. if (local_trans_pos.frame != (pkthdr->transport_frame)) {
  298. jack_position_t new_pos = local_trans_pos;
  299. new_pos.frame = pkthdr->transport_frame;
  300. new_pos.valid = (jack_position_bits_t)0;
  301. fEngineControl->fTransport.RequestNewPos(&new_pos);
  302. //jack_transport_locate(netj.client, (pkthdr->transport_frame));
  303. jack_info("transport is stopped locate to %d", pkthdr->transport_frame);
  304. }
  305. if (local_trans_state != JackTransportStopped)
  306. //jack_transport_stop(netj.client);
  307. fEngineControl->fTransport.SetCommand(TransportCommandStop);
  308. break;
  309. case JackTransportRolling:
  310. netj.sync_state = 1;
  311. // if(local_trans_pos.frame != (pkthdr->transport_frame + (pkthdr->latency) * netj.period_size)) {
  312. // jack_transport_locate(netj.client, (pkthdr->transport_frame + (pkthdr->latency + 2) * netj.period_size));
  313. // jack_info("running locate to %d", pkthdr->transport_frame + (pkthdr->latency)*netj.period_size);
  314. // }
  315. if (local_trans_state != JackTransportRolling)
  316. fEngineControl->fTransport.SetState(JackTransportRolling);
  317. break;
  318. case JackTransportLooping:
  319. break;
  320. }
  321. #endif
  322. }
  323. render_payload_to_jack_ports (netj.bitdepth, packet_bufX, netj.net_period_down, netj.capture_ports, netj.capture_srcs, netj.period_size, netj.dont_htonl_floats);
  324. packet_cache_release_packet(netj.packcache, netj.expected_framecnt);
  325. return 0;
  326. }
  327. int JackNetOneDriver::Write()
  328. {
  329. int syncstate = netj.sync_state | ((fEngineControl->fTransport.GetState() == JackTransportNetStarting) ? 1 : 0);
  330. uint32_t *packet_buf, *packet_bufX;
  331. int packet_size = get_sample_size(netj.bitdepth) * netj.playback_channels * netj.net_period_up + sizeof(jacknet_packet_header);
  332. jacknet_packet_header *pkthdr;
  333. packet_buf = (uint32_t *) alloca(packet_size);
  334. pkthdr = (jacknet_packet_header *)packet_buf;
  335. if (netj.running_free) {
  336. return 0;
  337. }
  338. // offset packet_bufX by the packetheader.
  339. packet_bufX = packet_buf + sizeof(jacknet_packet_header) / sizeof(jack_default_audio_sample_t);
  340. pkthdr->sync_state = syncstate;;
  341. pkthdr->latency = netj.time_to_deadline;
  342. //printf("time to deadline = %d goodness=%d\n", (int)netj.time_to_deadline, netj.deadline_goodness);
  343. pkthdr->framecnt = netj.expected_framecnt;
  344. render_jack_ports_to_payload(netj.bitdepth, netj.playback_ports, netj.playback_srcs, netj.period_size, packet_bufX, netj.net_period_up, netj.dont_htonl_floats);
  345. packet_header_hton(pkthdr);
  346. if (netj.srcaddress_valid) {
  347. unsigned int r;
  348. static const int flag = 0;
  349. if (netj.reply_port)
  350. netj.syncsource_address.sin_port = htons(netj.reply_port);
  351. for (r = 0; r < netj.redundancy; r++)
  352. netjack_sendto(netj.sockfd, (char *)packet_buf, packet_size,
  353. flag, (struct sockaddr*) & (netj.syncsource_address), sizeof(struct sockaddr_in), netj.mtu);
  354. }
  355. return 0;
  356. }
  357. void
  358. JackNetOneDriver::FreePorts ()
  359. {
  360. JSList *node = netj.capture_ports;
  361. while (node != NULL) {
  362. JSList *this_node = node;
  363. jack_port_id_t port_index = (jack_port_id_t)(intptr_t) node->data;
  364. node = jack_slist_remove_link(node, this_node);
  365. jack_slist_free_1(this_node);
  366. fEngine->PortUnRegister(fClientControl.fRefNum, port_index);
  367. }
  368. netj.capture_ports = NULL;
  369. node = netj.playback_ports;
  370. while (node != NULL) {
  371. JSList *this_node = node;
  372. jack_port_id_t port_index = (jack_port_id_t)(intptr_t) node->data;
  373. node = jack_slist_remove_link(node, this_node);
  374. jack_slist_free_1(this_node);
  375. fEngine->PortUnRegister(fClientControl.fRefNum, port_index);
  376. }
  377. netj.playback_ports = NULL;
  378. if (netj.bitdepth == CELT_MODE) {
  379. #if HAVE_CELT
  380. node = netj.playback_srcs;
  381. while (node != NULL) {
  382. JSList *this_node = node;
  383. CELTEncoder *enc = (CELTEncoder *) node->data;
  384. node = jack_slist_remove_link(node, this_node);
  385. jack_slist_free_1(this_node);
  386. celt_encoder_destroy(enc);
  387. }
  388. netj.playback_srcs = NULL;
  389. node = netj.capture_srcs;
  390. while (node != NULL) {
  391. JSList *this_node = node;
  392. CELTDecoder *dec = (CELTDecoder *) node->data;
  393. node = jack_slist_remove_link(node, this_node);
  394. jack_slist_free_1(this_node);
  395. celt_decoder_destroy(dec);
  396. }
  397. netj.capture_srcs = NULL;
  398. #endif
  399. } else if (netj.bitdepth == OPUS_MODE) {
  400. #if HAVE_OPUS
  401. node = netj.playback_srcs;
  402. while (node != NULL) {
  403. JSList *this_node = node;
  404. OpusCustomEncoder *enc = (OpusCustomEncoder *) node->data;
  405. node = jack_slist_remove_link(node, this_node);
  406. jack_slist_free_1(this_node);
  407. opus_custom_encoder_destroy(enc);
  408. }
  409. netj.playback_srcs = NULL;
  410. node = netj.capture_srcs;
  411. while (node != NULL) {
  412. JSList *this_node = node;
  413. OpusCustomDecoder *dec = (OpusCustomDecoder *) node->data;
  414. node = jack_slist_remove_link(node, this_node);
  415. jack_slist_free_1(this_node);
  416. opus_custom_decoder_destroy(dec);
  417. }
  418. netj.capture_srcs = NULL;
  419. #endif
  420. } else {
  421. #if HAVE_SAMPLERATE
  422. node = netj.playback_srcs;
  423. while (node != NULL) {
  424. JSList *this_node = node;
  425. SRC_STATE *state = (SRC_STATE *) node->data;
  426. node = jack_slist_remove_link(node, this_node);
  427. jack_slist_free_1(this_node);
  428. src_delete(state);
  429. }
  430. netj.playback_srcs = NULL;
  431. node = netj.capture_srcs;
  432. while (node != NULL) {
  433. JSList *this_node = node;
  434. SRC_STATE *state = (SRC_STATE *) node->data;
  435. node = jack_slist_remove_link(node, this_node);
  436. jack_slist_free_1(this_node);
  437. src_delete(state);
  438. }
  439. netj.capture_srcs = NULL;
  440. #endif
  441. }
  442. }
  443. //Render functions--------------------------------------------------------------------
  444. // render functions for float
  445. void
  446. JackNetOneDriver::render_payload_to_jack_ports_float(void *packet_payload, jack_nframes_t net_period_down, JSList *capture_ports, JSList *capture_srcs, jack_nframes_t nframes, int dont_htonl_floats)
  447. {
  448. uint32_t chn = 0;
  449. JSList *node = capture_ports;
  450. #if HAVE_SAMPLERATE
  451. JSList *src_node = capture_srcs;
  452. #endif
  453. uint32_t *packet_bufX = (uint32_t *)packet_payload;
  454. if (!packet_payload)
  455. return;
  456. while (node != NULL) {
  457. unsigned int i;
  458. int_float_t val;
  459. #if HAVE_SAMPLERATE
  460. SRC_DATA src;
  461. #endif
  462. jack_port_id_t port_index = (jack_port_id_t)(intptr_t) node->data;
  463. JackPort *port = fGraphManager->GetPort(port_index);
  464. jack_default_audio_sample_t* buf =
  465. (jack_default_audio_sample_t*)fGraphManager->GetBuffer(port_index, fEngineControl->fBufferSize);
  466. const char *porttype = port->GetType();
  467. if (strncmp (porttype, JACK_DEFAULT_AUDIO_TYPE, jack_port_type_size()) == 0) {
  468. #if HAVE_SAMPLERATE
  469. // audio port, resample if necessary
  470. if (net_period_down != nframes) {
  471. SRC_STATE *src_state = (SRC_STATE *)src_node->data;
  472. for (i = 0; i < net_period_down; i++) {
  473. packet_bufX[i] = ntohl (packet_bufX[i]);
  474. }
  475. src.data_in = (float *) packet_bufX;
  476. src.input_frames = net_period_down;
  477. src.data_out = buf;
  478. src.output_frames = nframes;
  479. src.src_ratio = (float) nframes / (float) net_period_down;
  480. src.end_of_input = 0;
  481. src_set_ratio (src_state, src.src_ratio);
  482. src_process (src_state, &src);
  483. src_node = jack_slist_next (src_node);
  484. } else
  485. #endif
  486. {
  487. if (dont_htonl_floats) {
  488. memcpy(buf, packet_bufX, net_period_down * sizeof(jack_default_audio_sample_t));
  489. } else {
  490. for (i = 0; i < net_period_down; i++) {
  491. val.i = packet_bufX[i];
  492. val.i = ntohl (val.i);
  493. buf[i] = val.f;
  494. }
  495. }
  496. }
  497. } else if (strncmp (porttype, JACK_DEFAULT_MIDI_TYPE, jack_port_type_size()) == 0) {
  498. // midi port, decode midi events
  499. // convert the data buffer to a standard format (uint32_t based)
  500. unsigned int buffer_size_uint32 = net_period_down;
  501. uint32_t * buffer_uint32 = (uint32_t*)packet_bufX;
  502. decode_midi_buffer (buffer_uint32, buffer_size_uint32, buf);
  503. }
  504. packet_bufX = (packet_bufX + net_period_down);
  505. node = jack_slist_next (node);
  506. chn++;
  507. }
  508. }
  509. void
  510. JackNetOneDriver::render_jack_ports_to_payload_float (JSList *playback_ports, JSList *playback_srcs, jack_nframes_t nframes, void *packet_payload, jack_nframes_t net_period_up, int dont_htonl_floats)
  511. {
  512. uint32_t chn = 0;
  513. JSList *node = playback_ports;
  514. #if HAVE_SAMPLERATE
  515. JSList *src_node = playback_srcs;
  516. #endif
  517. uint32_t *packet_bufX = (uint32_t *) packet_payload;
  518. while (node != NULL) {
  519. #if HAVE_SAMPLERATE
  520. SRC_DATA src;
  521. #endif
  522. unsigned int i;
  523. int_float_t val;
  524. jack_port_id_t port_index = (jack_port_id_t)(intptr_t) node->data;
  525. JackPort *port = fGraphManager->GetPort(port_index);
  526. jack_default_audio_sample_t* buf =
  527. (jack_default_audio_sample_t*)fGraphManager->GetBuffer(port_index, fEngineControl->fBufferSize);
  528. const char *porttype = port->GetType();
  529. if (strncmp (porttype, JACK_DEFAULT_AUDIO_TYPE, jack_port_type_size()) == 0) {
  530. // audio port, resample if necessary
  531. #if HAVE_SAMPLERATE
  532. if (net_period_up != nframes) {
  533. SRC_STATE *src_state = (SRC_STATE *) src_node->data;
  534. src.data_in = buf;
  535. src.input_frames = nframes;
  536. src.data_out = (float *) packet_bufX;
  537. src.output_frames = net_period_up;
  538. src.src_ratio = (float) net_period_up / (float) nframes;
  539. src.end_of_input = 0;
  540. src_set_ratio (src_state, src.src_ratio);
  541. src_process (src_state, &src);
  542. for (i = 0; i < net_period_up; i++) {
  543. packet_bufX[i] = htonl (packet_bufX[i]);
  544. }
  545. src_node = jack_slist_next (src_node);
  546. } else
  547. #endif
  548. {
  549. if (dont_htonl_floats) {
  550. memcpy(packet_bufX, buf, net_period_up * sizeof(jack_default_audio_sample_t));
  551. } else {
  552. for (i = 0; i < net_period_up; i++) {
  553. val.f = buf[i];
  554. val.i = htonl (val.i);
  555. packet_bufX[i] = val.i;
  556. }
  557. }
  558. }
  559. } else if (strncmp(porttype, JACK_DEFAULT_MIDI_TYPE, jack_port_type_size()) == 0) {
  560. // encode midi events from port to packet
  561. // convert the data buffer to a standard format (uint32_t based)
  562. unsigned int buffer_size_uint32 = net_period_up;
  563. uint32_t * buffer_uint32 = (uint32_t*) packet_bufX;
  564. encode_midi_buffer (buffer_uint32, buffer_size_uint32, buf);
  565. }
  566. packet_bufX = (packet_bufX + net_period_up);
  567. node = jack_slist_next (node);
  568. chn++;
  569. }
  570. }
  571. #if HAVE_CELT
  572. // render functions for celt.
  573. void
  574. JackNetOneDriver::render_payload_to_jack_ports_celt (void *packet_payload, jack_nframes_t net_period_down, JSList *capture_ports, JSList *capture_srcs, jack_nframes_t nframes)
  575. {
  576. uint32_t chn = 0;
  577. JSList *node = capture_ports;
  578. JSList *src_node = capture_srcs;
  579. unsigned char *packet_bufX = (unsigned char *)packet_payload;
  580. while (node != NULL) {
  581. jack_port_id_t port_index = (jack_port_id_t) (intptr_t)node->data;
  582. JackPort *port = fGraphManager->GetPort(port_index);
  583. jack_default_audio_sample_t* buf =
  584. (jack_default_audio_sample_t*)fGraphManager->GetBuffer(port_index, fEngineControl->fBufferSize);
  585. const char *portname = port->GetType();
  586. if (strncmp(portname, JACK_DEFAULT_AUDIO_TYPE, jack_port_type_size()) == 0) {
  587. // audio port, decode celt data.
  588. CELTDecoder *decoder = (CELTDecoder *)src_node->data;
  589. #if HAVE_CELT_API_0_8 || HAVE_CELT_API_0_11
  590. if (!packet_payload)
  591. celt_decode_float(decoder, NULL, net_period_down, buf, nframes);
  592. else
  593. celt_decode_float(decoder, packet_bufX, net_period_down, buf, nframes);
  594. #else
  595. if (!packet_payload)
  596. celt_decode_float(decoder, NULL, net_period_down, buf);
  597. else
  598. celt_decode_float(decoder, packet_bufX, net_period_down, buf);
  599. #endif
  600. src_node = jack_slist_next (src_node);
  601. } else if (strncmp(portname, JACK_DEFAULT_MIDI_TYPE, jack_port_type_size()) == 0) {
  602. // midi port, decode midi events
  603. // convert the data buffer to a standard format (uint32_t based)
  604. unsigned int buffer_size_uint32 = net_period_down / 2;
  605. uint32_t * buffer_uint32 = (uint32_t*) packet_bufX;
  606. if (packet_payload)
  607. decode_midi_buffer (buffer_uint32, buffer_size_uint32, buf);
  608. }
  609. packet_bufX = (packet_bufX + net_period_down);
  610. node = jack_slist_next (node);
  611. chn++;
  612. }
  613. }
  614. void
  615. JackNetOneDriver::render_jack_ports_to_payload_celt (JSList *playback_ports, JSList *playback_srcs, jack_nframes_t nframes, void *packet_payload, jack_nframes_t net_period_up)
  616. {
  617. uint32_t chn = 0;
  618. JSList *node = playback_ports;
  619. JSList *src_node = playback_srcs;
  620. unsigned char *packet_bufX = (unsigned char *)packet_payload;
  621. while (node != NULL) {
  622. jack_port_id_t port_index = (jack_port_id_t) (intptr_t) node->data;
  623. JackPort *port = fGraphManager->GetPort(port_index);
  624. jack_default_audio_sample_t* buf =
  625. (jack_default_audio_sample_t*)fGraphManager->GetBuffer(port_index, fEngineControl->fBufferSize);
  626. const char *portname = port->GetType();
  627. if (strncmp (portname, JACK_DEFAULT_AUDIO_TYPE, jack_port_type_size()) == 0) {
  628. // audio port, encode celt data.
  629. int encoded_bytes;
  630. jack_default_audio_sample_t *floatbuf = (jack_default_audio_sample_t *)alloca (sizeof(jack_default_audio_sample_t) * nframes);
  631. memcpy(floatbuf, buf, nframes * sizeof(jack_default_audio_sample_t));
  632. CELTEncoder *encoder = (CELTEncoder *)src_node->data;
  633. #if HAVE_CELT_API_0_8 || HAVE_CELT_API_0_11
  634. encoded_bytes = celt_encode_float(encoder, floatbuf, nframes, packet_bufX, net_period_up);
  635. #else
  636. encoded_bytes = celt_encode_float(encoder, floatbuf, NULL, packet_bufX, net_period_up);
  637. #endif
  638. if (encoded_bytes != (int)net_period_up)
  639. jack_error("something in celt changed. netjack needs to be changed to handle this.");
  640. src_node = jack_slist_next(src_node);
  641. } else if (strncmp(portname, JACK_DEFAULT_MIDI_TYPE, jack_port_type_size()) == 0) {
  642. // encode midi events from port to packet
  643. // convert the data buffer to a standard format (uint32_t based)
  644. unsigned int buffer_size_uint32 = net_period_up / 2;
  645. uint32_t * buffer_uint32 = (uint32_t*) packet_bufX;
  646. encode_midi_buffer (buffer_uint32, buffer_size_uint32, buf);
  647. }
  648. packet_bufX = (packet_bufX + net_period_up);
  649. node = jack_slist_next (node);
  650. chn++;
  651. }
  652. }
  653. #endif
  654. #if HAVE_OPUS
  655. #define CDO (sizeof(short)) ///< compressed data offset (first 2 bytes are length)
  656. // render functions for Opus.
  657. void
  658. JackNetOneDriver::render_payload_to_jack_ports_opus (void *packet_payload, jack_nframes_t net_period_down, JSList *capture_ports, JSList *capture_srcs, jack_nframes_t nframes)
  659. {
  660. int chn = 0;
  661. JSList *node = capture_ports;
  662. JSList *src_node = capture_srcs;
  663. unsigned char *packet_bufX = (unsigned char *)packet_payload;
  664. while (node != NULL) {
  665. jack_port_id_t port_index = (jack_port_id_t) (intptr_t)node->data;
  666. JackPort *port = fGraphManager->GetPort(port_index);
  667. jack_default_audio_sample_t* buf =
  668. (jack_default_audio_sample_t*)fGraphManager->GetBuffer(port_index, fEngineControl->fBufferSize);
  669. const char *portname = port->GetType();
  670. if (strncmp(portname, JACK_DEFAULT_AUDIO_TYPE, jack_port_type_size()) == 0) {
  671. // audio port, decode opus data.
  672. OpusCustomDecoder *decoder = (OpusCustomDecoder*) src_node->data;
  673. if( !packet_payload )
  674. memset(buf, 0, nframes * sizeof(float));
  675. else {
  676. unsigned short len;
  677. memcpy(&len, packet_bufX, CDO);
  678. len = ntohs(len);
  679. opus_custom_decode_float( decoder, packet_bufX + CDO, len, buf, nframes );
  680. }
  681. src_node = jack_slist_next (src_node);
  682. } else if (strncmp(portname, JACK_DEFAULT_MIDI_TYPE, jack_port_type_size()) == 0) {
  683. // midi port, decode midi events
  684. // convert the data buffer to a standard format (uint32_t based)
  685. unsigned int buffer_size_uint32 = net_period_down / 2;
  686. uint32_t * buffer_uint32 = (uint32_t*) packet_bufX;
  687. if( packet_payload )
  688. decode_midi_buffer (buffer_uint32, buffer_size_uint32, buf);
  689. }
  690. packet_bufX = (packet_bufX + net_period_down);
  691. node = jack_slist_next (node);
  692. chn++;
  693. }
  694. }
  695. void
  696. JackNetOneDriver::render_jack_ports_to_payload_opus (JSList *playback_ports, JSList *playback_srcs, jack_nframes_t nframes, void *packet_payload, jack_nframes_t net_period_up)
  697. {
  698. int chn = 0;
  699. JSList *node = playback_ports;
  700. JSList *src_node = playback_srcs;
  701. unsigned char *packet_bufX = (unsigned char *)packet_payload;
  702. while (node != NULL) {
  703. jack_port_id_t port_index = (jack_port_id_t) (intptr_t) node->data;
  704. JackPort *port = fGraphManager->GetPort(port_index);
  705. jack_default_audio_sample_t* buf =
  706. (jack_default_audio_sample_t*)fGraphManager->GetBuffer(port_index, fEngineControl->fBufferSize);
  707. const char *portname = port->GetType();
  708. if (strncmp (portname, JACK_DEFAULT_AUDIO_TYPE, jack_port_type_size()) == 0) {
  709. // audio port, encode opus data.
  710. int encoded_bytes;
  711. jack_default_audio_sample_t *floatbuf = (jack_default_audio_sample_t *)alloca (sizeof(jack_default_audio_sample_t) * nframes);
  712. memcpy(floatbuf, buf, nframes * sizeof(jack_default_audio_sample_t));
  713. OpusCustomEncoder *encoder = (OpusCustomEncoder*) src_node->data;
  714. encoded_bytes = opus_custom_encode_float( encoder, floatbuf, nframes, packet_bufX + CDO, net_period_up - CDO );
  715. unsigned short len = htons(encoded_bytes);
  716. memcpy(packet_bufX, &len, CDO);
  717. src_node = jack_slist_next( src_node );
  718. } else if (strncmp(portname, JACK_DEFAULT_MIDI_TYPE, jack_port_type_size()) == 0) {
  719. // encode midi events from port to packet
  720. // convert the data buffer to a standard format (uint32_t based)
  721. unsigned int buffer_size_uint32 = net_period_up / 2;
  722. uint32_t * buffer_uint32 = (uint32_t*) packet_bufX;
  723. encode_midi_buffer (buffer_uint32, buffer_size_uint32, buf);
  724. }
  725. packet_bufX = (packet_bufX + net_period_up);
  726. node = jack_slist_next (node);
  727. chn++;
  728. }
  729. }
  730. #endif
  731. /* Wrapper functions with bitdepth argument... */
  732. void
  733. JackNetOneDriver::render_payload_to_jack_ports (int bitdepth, void *packet_payload, jack_nframes_t net_period_down, JSList *capture_ports, JSList *capture_srcs, jack_nframes_t nframes, int dont_htonl_floats)
  734. {
  735. #if HAVE_CELT
  736. if (bitdepth == CELT_MODE)
  737. render_payload_to_jack_ports_celt (packet_payload, net_period_down, capture_ports, capture_srcs, nframes);
  738. else
  739. #endif
  740. #if HAVE_OPUS
  741. if (bitdepth == OPUS_MODE)
  742. render_payload_to_jack_ports_opus (packet_payload, net_period_down, capture_ports, capture_srcs, nframes);
  743. else
  744. #endif
  745. render_payload_to_jack_ports_float (packet_payload, net_period_down, capture_ports, capture_srcs, nframes, dont_htonl_floats);
  746. }
  747. void
  748. JackNetOneDriver::render_jack_ports_to_payload (int bitdepth, JSList *playback_ports, JSList *playback_srcs, jack_nframes_t nframes, void *packet_payload, jack_nframes_t net_period_up, int dont_htonl_floats)
  749. {
  750. #if HAVE_CELT
  751. if (bitdepth == CELT_MODE)
  752. render_jack_ports_to_payload_celt (playback_ports, playback_srcs, nframes, packet_payload, net_period_up);
  753. else
  754. #endif
  755. #if HAVE_OPUS
  756. if (bitdepth == OPUS_MODE)
  757. render_jack_ports_to_payload_opus (playback_ports, playback_srcs, nframes, packet_payload, net_period_up);
  758. else
  759. #endif
  760. render_jack_ports_to_payload_float (playback_ports, playback_srcs, nframes, packet_payload, net_period_up, dont_htonl_floats);
  761. }
  762. //driver loader-----------------------------------------------------------------------
  763. #ifdef __cplusplus
  764. extern "C"
  765. {
  766. #endif
  767. SERVER_EXPORT jack_driver_desc_t* driver_get_descriptor ()
  768. {
  769. jack_driver_desc_t * desc;
  770. jack_driver_desc_filler_t filler;
  771. jack_driver_param_value_t value;
  772. desc = jack_driver_descriptor_construct("netone", JackDriverMaster, "netjack one slave backend component", &filler);
  773. value.ui = 2U;
  774. jack_driver_descriptor_add_parameter(desc, &filler, "audio-ins", 'i', JackDriverParamUInt, &value, NULL, "Number of capture channels (defaults to 2)", NULL);
  775. jack_driver_descriptor_add_parameter(desc, &filler, "audio-outs", 'o', JackDriverParamUInt, &value, NULL, "Number of playback channels (defaults to 2)", NULL);
  776. value.ui = 1U;
  777. jack_driver_descriptor_add_parameter(desc, &filler, "midi-ins", 'I', JackDriverParamUInt, &value, NULL, "Number of midi capture channels (defaults to 1)", NULL);
  778. jack_driver_descriptor_add_parameter(desc, &filler, "midi-outs", 'O', JackDriverParamUInt, &value, NULL, "Number of midi playback channels (defaults to 1)", NULL);
  779. value.ui = 48000U;
  780. jack_driver_descriptor_add_parameter(desc, &filler, "rate", 'r', JackDriverParamUInt, &value, NULL, "Sample rate", NULL);
  781. value.ui = 1024U;
  782. jack_driver_descriptor_add_parameter(desc, &filler, "period", 'p', JackDriverParamUInt, &value, NULL, "Frames per period", NULL);
  783. value.ui = 5U;
  784. jack_driver_descriptor_add_parameter(desc, &filler, "num-periods", 'n', JackDriverParamUInt, &value, NULL, "Network latency setting in no. of periods", NULL);
  785. value.ui = 3000U;
  786. jack_driver_descriptor_add_parameter(desc, &filler, "listen-port", 'l', JackDriverParamUInt, &value, NULL, "The socket port we are listening on for sync packets", NULL);
  787. value.ui = 1U;
  788. jack_driver_descriptor_add_parameter(desc, &filler, "factor", 'f', JackDriverParamUInt, &value, NULL, "Factor for sample rate reduction", NULL);
  789. value.ui = 0U;
  790. jack_driver_descriptor_add_parameter(desc, &filler, "upstream-factor", 'u', JackDriverParamUInt, &value, NULL, "Factor for sample rate reduction on the upstream", NULL);
  791. #if HAVE_CELT
  792. value.ui = 0U;
  793. jack_driver_descriptor_add_parameter(desc, &filler, "celt", 'c', JackDriverParamUInt, &value, NULL, "Set CELT encoding and number of kbits per channel", NULL);
  794. #endif
  795. #if HAVE_OPUS
  796. value.ui = 0U;
  797. jack_driver_descriptor_add_parameter(desc, &filler, "opus", 'P', JackDriverParamUInt, &value, NULL, "Set Opus encoding and number of kbits per channel", NULL);
  798. #endif
  799. value.ui = 0U;
  800. jack_driver_descriptor_add_parameter(desc, &filler, "bit-depth", 'b', JackDriverParamUInt, &value, NULL, "Sample bit-depth (0 for float, 8 for 8bit and 16 for 16bit)", NULL);
  801. value.i = true;
  802. jack_driver_descriptor_add_parameter(desc, &filler, "transport-sync", 't', JackDriverParamBool, &value, NULL, "Whether to slave the transport to the master transport", NULL);
  803. value.ui = true;
  804. jack_driver_descriptor_add_parameter(desc, &filler, "autoconf", 'a', JackDriverParamBool, &value, NULL, "Whether to use Autoconfig, or just start", NULL);
  805. value.ui = 1U;
  806. jack_driver_descriptor_add_parameter(desc, &filler, "redundancy", 'R', JackDriverParamUInt, &value, NULL, "Send packets N times", NULL);
  807. value.ui = false;
  808. jack_driver_descriptor_add_parameter(desc, &filler, "native-endian", 'e', JackDriverParamBool, &value, NULL, "Dont convert samples to network byte order", NULL);
  809. value.i = 0;
  810. jack_driver_descriptor_add_parameter(desc, &filler, "jitterval", 'J', JackDriverParamInt, &value, NULL, "Attempted jitterbuffer microseconds on master", NULL);
  811. value.i = false;
  812. jack_driver_descriptor_add_parameter(desc, &filler, "always-deadline", 'D', JackDriverParamBool, &value, NULL, "Always use deadline", NULL);
  813. return desc;
  814. }
  815. SERVER_EXPORT Jack::JackDriverClientInterface* driver_initialize(Jack::JackLockedEngine* engine, Jack::JackSynchro* table, const JSList* params)
  816. {
  817. jack_nframes_t sample_rate = 48000;
  818. jack_nframes_t resample_factor = 1;
  819. jack_nframes_t period_size = 1024;
  820. unsigned int capture_ports = 2;
  821. unsigned int playback_ports = 2;
  822. unsigned int capture_ports_midi = 1;
  823. unsigned int playback_ports_midi = 1;
  824. unsigned int listen_port = 3000;
  825. unsigned int bitdepth = 0;
  826. unsigned int handle_transport_sync = 1;
  827. unsigned int use_autoconfig = 1;
  828. unsigned int latency = 5;
  829. unsigned int redundancy = 1;
  830. unsigned int mtu = 1400;
  831. #if HAVE_SAMPLERATE
  832. unsigned int resample_factor_up = 1;
  833. #endif
  834. int dont_htonl_floats = 0;
  835. int always_deadline = 0;
  836. int jitter_val = 0;
  837. const JSList * node;
  838. const jack_driver_param_t * param;
  839. for (node = params; node; node = jack_slist_next(node)) {
  840. param = (const jack_driver_param_t*) node->data;
  841. switch (param->character) {
  842. case 'i':
  843. capture_ports = param->value.ui;
  844. break;
  845. case 'o':
  846. playback_ports = param->value.ui;
  847. break;
  848. case 'I':
  849. capture_ports_midi = param->value.ui;
  850. break;
  851. case 'O':
  852. playback_ports_midi = param->value.ui;
  853. break;
  854. case 'r':
  855. sample_rate = param->value.ui;
  856. break;
  857. case 'p':
  858. period_size = param->value.ui;
  859. break;
  860. case 'l':
  861. listen_port = param->value.ui;
  862. break;
  863. case 'f':
  864. #if HAVE_SAMPLERATE
  865. resample_factor = param->value.ui;
  866. #else
  867. jack_error("not built with libsamplerate support");
  868. return NULL;
  869. #endif
  870. break;
  871. case 'u':
  872. #if HAVE_SAMPLERATE
  873. resample_factor_up = param->value.ui;
  874. #else
  875. jack_error("not built with libsamplerate support");
  876. return NULL;
  877. #endif
  878. break;
  879. case 'b':
  880. bitdepth = param->value.ui;
  881. break;
  882. case 'c':
  883. #if HAVE_CELT
  884. bitdepth = CELT_MODE;
  885. resample_factor = param->value.ui;
  886. #else
  887. jack_error("not built with celt support");
  888. return NULL;
  889. #endif
  890. break;
  891. case 'P':
  892. #if HAVE_OPUS
  893. bitdepth = OPUS_MODE;
  894. resample_factor = param->value.ui;
  895. jack_error("OPUS: %d\n", resample_factor);
  896. #else
  897. jack_error("not built with Opus support");
  898. return NULL;
  899. #endif
  900. break;
  901. case 't':
  902. handle_transport_sync = param->value.ui;
  903. break;
  904. case 'a':
  905. use_autoconfig = param->value.ui;
  906. break;
  907. case 'n':
  908. latency = param->value.ui;
  909. break;
  910. case 'R':
  911. redundancy = param->value.ui;
  912. break;
  913. case 'H':
  914. dont_htonl_floats = param->value.ui;
  915. break;
  916. case 'J':
  917. jitter_val = param->value.i;
  918. break;
  919. case 'D':
  920. always_deadline = param->value.ui;
  921. break;
  922. }
  923. }
  924. try {
  925. Jack::JackDriverClientInterface* driver = new Jack::JackWaitThreadedDriver (
  926. new Jack::JackNetOneDriver("system", "net_pcm", engine, table, listen_port, mtu,
  927. capture_ports_midi, playback_ports_midi, capture_ports, playback_ports,
  928. sample_rate, period_size, resample_factor,
  929. "net_pcm", handle_transport_sync, bitdepth, use_autoconfig, latency, redundancy,
  930. dont_htonl_floats, always_deadline, jitter_val));
  931. if (driver->Open(period_size, sample_rate, 1, 1, capture_ports, playback_ports,
  932. 0, "from_master", "to_master", 0, 0) == 0) {
  933. return driver;
  934. } else {
  935. delete driver;
  936. return NULL;
  937. }
  938. } catch (...) {
  939. return NULL;
  940. }
  941. }
  942. #ifdef __cplusplus
  943. }
  944. #endif
  945. }