chiark / gitweb /
disorder-playrtp --monitor option to keep track of how far off
[disorder] / clients / playrtp.c
CommitLineData
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1/*
2 * This file is part of DisOrder.
5aff007d 3 * Copyright (C) 2007, 2008 Richard Kettlewell
e83d0967 4 *
e7eb3a27 5 * This program is free software: you can redistribute it and/or modify
e83d0967 6 * it under the terms of the GNU General Public License as published by
e7eb3a27 7 * the Free Software Foundation, either version 3 of the License, or
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8 * (at your option) any later version.
9 *
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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 *
e83d0967 15 * You should have received a copy of the GNU General Public License
e7eb3a27 16 * along with this program. If not, see <http://www.gnu.org/licenses/>.
e83d0967 17 */
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18/** @file clients/playrtp.c
19 * @brief RTP player
20 *
b0fdc63d 21 * This player supports Linux (<a href="http://www.alsa-project.org/">ALSA</a>)
22 * and Apple Mac (<a
23 * href="http://developer.apple.com/audio/coreaudio.html">Core Audio</a>)
24 * systems. There is no support for Microsoft Windows yet, and that will in
25 * fact probably an entirely separate program.
26 *
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27 * The program runs (at least) three threads:
28 *
29 * listen_thread() is responsible for reading RTP packets off the wire and
30 * adding them to the linked list @ref received_packets, assuming they are
31 * basically sound.
32 *
33 * queue_thread() takes packets off this linked list and adds them to @ref
34 * packets (an operation which might be much slower due to contention for @ref
35 * lock).
36 *
37 * control_thread() accepts commands from Disobedience (or anything else).
38 *
39 * The main thread activates and deactivates audio playing via the @ref
40 * lib/uaudio.h API (which probably implies at least one further thread).
b0fdc63d 41 *
42 * Sometimes it happens that there is no audio available to play. This may
43 * because the server went away, or a packet was dropped, or the server
44 * deliberately did not send any sound because it encountered a silence.
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45 *
46 * Assumptions:
47 * - it is safe to read uint32_t values without a lock protecting them
28bacdc0 48 */
e83d0967 49
05b75f8d 50#include "common.h"
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51
52#include <getopt.h>
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53#include <sys/socket.h>
54#include <sys/types.h>
55#include <sys/socket.h>
56#include <netdb.h>
57#include <pthread.h>
0b75463f 58#include <locale.h>
2c7c9eae 59#include <sys/uio.h>
c593cf7c 60#include <errno.h>
e3426f7b 61#include <netinet/in.h>
2d2effe2 62#include <sys/time.h>
a99c4e9a 63#include <sys/un.h>
9fbe0996 64#include <unistd.h>
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65#include <sys/mman.h>
66#include <fcntl.h>
b0619501 67#include <math.h>
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68
69#include "log.h"
70#include "mem.h"
71#include "configuration.h"
72#include "addr.h"
73#include "syscalls.h"
74#include "rtp.h"
0b75463f 75#include "defs.h"
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76#include "vector.h"
77#include "heap.h"
189e9830 78#include "timeval.h"
a7e9570a 79#include "client.h"
8e3fe3d8 80#include "playrtp.h"
a99c4e9a 81#include "inputline.h"
3fbdc96d 82#include "version.h"
7a2c7068 83#include "uaudio.h"
e83d0967 84
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85/** @brief Obsolete synonym */
86#ifndef IPV6_JOIN_GROUP
87# define IPV6_JOIN_GROUP IPV6_ADD_MEMBERSHIP
88#endif
89
0b75463f 90/** @brief RTP socket */
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91static int rtpfd;
92
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93/** @brief Log output */
94static FILE *logfp;
95
0b75463f 96/** @brief Output device */
0b75463f 97
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98/** @brief Buffer low watermark in samples */
99unsigned minbuffer = 4 * (2 * 44100) / 10; /* 0.4 seconds */
0b75463f 100
ad535598 101/** @brief Maximum buffer size in samples
9086a105 102 *
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103 * We'll stop reading from the network if we have this many samples.
104 */
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105static unsigned maxbuffer;
106
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107/** @brief Received packets
108 * Protected by @ref receive_lock
109 *
110 * Received packets are added to this list, and queue_thread() picks them off
111 * it and adds them to @ref packets. Whenever a packet is added to it, @ref
112 * receive_cond is signalled.
113 */
8e3fe3d8 114struct packet *received_packets;
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115
116/** @brief Tail of @ref received_packets
117 * Protected by @ref receive_lock
118 */
8e3fe3d8 119struct packet **received_tail = &received_packets;
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120
121/** @brief Lock protecting @ref received_packets
122 *
123 * Only listen_thread() and queue_thread() ever hold this lock. It is vital
124 * that queue_thread() not hold it any longer than it strictly has to. */
8e3fe3d8 125pthread_mutex_t receive_lock = PTHREAD_MUTEX_INITIALIZER;
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126
127/** @brief Condition variable signalled when @ref received_packets is updated
128 *
129 * Used by listen_thread() to notify queue_thread() that it has added another
130 * packet to @ref received_packets. */
8e3fe3d8 131pthread_cond_t receive_cond = PTHREAD_COND_INITIALIZER;
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132
133/** @brief Length of @ref received_packets */
8e3fe3d8 134uint32_t nreceived;
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135
136/** @brief Binary heap of received packets */
8e3fe3d8 137struct pheap packets;
28bacdc0 138
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139/** @brief Total number of samples available
140 *
141 * We make this volatile because we inspect it without a protecting lock,
142 * so the usual pthread_* guarantees aren't available.
143 */
8e3fe3d8 144volatile uint32_t nsamples;
0b75463f 145
146/** @brief Timestamp of next packet to play.
147 *
148 * This is set to the timestamp of the last packet, plus the number of
09ee2f0d 149 * samples it contained. Only valid if @ref active is nonzero.
0b75463f 150 */
8e3fe3d8 151uint32_t next_timestamp;
e83d0967 152
09ee2f0d 153/** @brief True if actively playing
154 *
155 * This is true when playing and false when just buffering. */
8e3fe3d8 156int active;
09ee2f0d 157
189e9830 158/** @brief Lock protecting @ref packets */
8e3fe3d8 159pthread_mutex_t lock = PTHREAD_MUTEX_INITIALIZER;
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160
161/** @brief Condition variable signalled whenever @ref packets is changed */
8e3fe3d8 162pthread_cond_t cond = PTHREAD_COND_INITIALIZER;
2c7c9eae 163
c593cf7c 164/** @brief Backend to play with */
7a2c7068 165static const struct uaudio *backend;
c593cf7c 166
8e3fe3d8 167HEAP_DEFINE(pheap, struct packet *, lt_packet);
e83d0967 168
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169/** @brief Control socket or NULL */
170const char *control_socket;
171
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172/** @brief Buffer for debugging dump
173 *
174 * The debug dump is enabled by the @c --dump option. It records the last 20s
175 * of audio to the specified file (which will be about 3.5Mbytes). The file is
176 * written as as ring buffer, so the start point will progress through it.
177 *
178 * Use clients/dump2wav to convert this to a WAV file, which can then be loaded
179 * into (e.g.) Audacity for further inspection.
180 *
181 * All three backends (ALSA, OSS, Core Audio) now support this option.
182 *
183 * The idea is to allow the user a few seconds to react to an audible artefact.
184 */
e9b635a3 185int16_t *dump_buffer;
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186
187/** @brief Current index within debugging dump */
e9b635a3 188size_t dump_index;
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189
190/** @brief Size of debugging dump in samples */
191size_t dump_size = 44100/*Hz*/ * 2/*channels*/ * 20/*seconds*/;
e9b635a3 192
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193static const struct option options[] = {
194 { "help", no_argument, 0, 'h' },
195 { "version", no_argument, 0, 'V' },
196 { "debug", no_argument, 0, 'd' },
0b75463f 197 { "device", required_argument, 0, 'D' },
1153fd23 198 { "min", required_argument, 0, 'm' },
9086a105 199 { "max", required_argument, 0, 'x' },
1f10f780 200 { "rcvbuf", required_argument, 0, 'R' },
a9f0ad12 201#if HAVE_SYS_SOUNDCARD_H || EMPEG_HOST
c593cf7c 202 { "oss", no_argument, 0, 'o' },
203#endif
146e86fb 204#if HAVE_ALSA_ASOUNDLIB_H
c593cf7c 205 { "alsa", no_argument, 0, 'a' },
206#endif
207#if HAVE_COREAUDIO_AUDIOHARDWARE_H
208 { "core-audio", no_argument, 0, 'c' },
209#endif
e9b635a3 210 { "dump", required_argument, 0, 'r' },
e979b844 211 { "command", required_argument, 0, 'e' },
287ad384 212 { "pause-mode", required_argument, 0, 'P' },
a99c4e9a 213 { "socket", required_argument, 0, 's' },
a7e9570a 214 { "config", required_argument, 0, 'C' },
b0619501 215 { "monitor", no_argument, 0, 'M' },
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216 { 0, 0, 0, 0 }
217};
218
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219/** @brief Control thread
220 *
221 * This thread is responsible for accepting control commands from Disobedience
222 * (or other controllers) over an AF_UNIX stream socket with a path specified
223 * by the @c --socket option. The protocol uses simple string commands and
224 * replies:
225 *
226 * - @c stop will shut the player down
227 * - @c query will send back the reply @c running
228 * - anything else is ignored
229 *
230 * Commands and response strings terminated by shutting down the connection or
231 * by a newline. No attempt is made to multiplex multiple clients so it is
232 * important that the command be sent as soon as the connection is made - it is
233 * assumed that both parties to the protocol are entirely cooperating with one
234 * another.
235 */
236static void *control_thread(void attribute((unused)) *arg) {
237 struct sockaddr_un sa;
238 int sfd, cfd;
239 char *line;
240 socklen_t salen;
241 FILE *fp;
242
243 assert(control_socket);
244 unlink(control_socket);
245 memset(&sa, 0, sizeof sa);
246 sa.sun_family = AF_UNIX;
247 strcpy(sa.sun_path, control_socket);
248 sfd = xsocket(PF_UNIX, SOCK_STREAM, 0);
249 if(bind(sfd, (const struct sockaddr *)&sa, sizeof sa) < 0)
250 fatal(errno, "error binding to %s", control_socket);
251 if(listen(sfd, 128) < 0)
252 fatal(errno, "error calling listen on %s", control_socket);
253 info("listening on %s", control_socket);
254 for(;;) {
255 salen = sizeof sa;
256 cfd = accept(sfd, (struct sockaddr *)&sa, &salen);
257 if(cfd < 0) {
258 switch(errno) {
259 case EINTR:
260 case EAGAIN:
261 break;
262 default:
263 fatal(errno, "error calling accept on %s", control_socket);
264 }
265 }
266 if(!(fp = fdopen(cfd, "r+"))) {
267 error(errno, "error calling fdopen for %s connection", control_socket);
268 close(cfd);
269 continue;
270 }
271 if(!inputline(control_socket, fp, &line, '\n')) {
272 if(!strcmp(line, "stop")) {
273 info("stopped via %s", control_socket);
274 exit(0); /* terminate immediately */
275 }
276 if(!strcmp(line, "query"))
277 fprintf(fp, "running");
278 xfree(line);
279 }
280 if(fclose(fp) < 0)
281 error(errno, "error closing %s connection", control_socket);
282 }
283}
284
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285/** @brief Drop the first packet
286 *
287 * Assumes that @ref lock is held.
288 */
289static void drop_first_packet(void) {
290 if(pheap_count(&packets)) {
291 struct packet *const p = pheap_remove(&packets);
292 nsamples -= p->nsamples;
c593cf7c 293 playrtp_free_packet(p);
2c7c9eae 294 pthread_cond_broadcast(&cond);
2c7c9eae 295 }
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296}
297
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298/** @brief Background thread adding packets to heap
299 *
300 * This just transfers packets from @ref received_packets to @ref packets. It
301 * is important that it holds @ref receive_lock for as little time as possible,
302 * in order to minimize the interval between calls to read() in
303 * listen_thread().
304 */
305static void *queue_thread(void attribute((unused)) *arg) {
306 struct packet *p;
307
308 for(;;) {
309 /* Get the next packet */
310 pthread_mutex_lock(&receive_lock);
4dadf1a2 311 while(!received_packets) {
189e9830 312 pthread_cond_wait(&receive_cond, &receive_lock);
4dadf1a2 313 }
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314 p = received_packets;
315 received_packets = p->next;
316 if(!received_packets)
317 received_tail = &received_packets;
318 --nreceived;
319 pthread_mutex_unlock(&receive_lock);
320 /* Add it to the heap */
321 pthread_mutex_lock(&lock);
322 pheap_insert(&packets, p);
323 nsamples += p->nsamples;
324 pthread_cond_broadcast(&cond);
325 pthread_mutex_unlock(&lock);
326 }
327}
328
09ee2f0d 329/** @brief Background thread collecting samples
0b75463f 330 *
331 * This function collects samples, perhaps converts them to the target format,
b0fdc63d 332 * and adds them to the packet list.
333 *
334 * It is crucial that the gap between successive calls to read() is as small as
335 * possible: otherwise packets will be dropped.
336 *
337 * We use a binary heap to ensure that the unavoidable effort is at worst
338 * logarithmic in the total number of packets - in fact if packets are mostly
339 * received in order then we will largely do constant work per packet since the
340 * newest packet will always be last.
341 *
342 * Of more concern is that we must acquire the lock on the heap to add a packet
343 * to it. If this proves a problem in practice then the answer would be
344 * (probably doubly) linked list with new packets added the end and a second
345 * thread which reads packets off the list and adds them to the heap.
346 *
347 * We keep memory allocation (mostly) very fast by keeping pre-allocated
c593cf7c 348 * packets around; see @ref playrtp_new_packet().
b0fdc63d 349 */
0b75463f 350static void *listen_thread(void attribute((unused)) *arg) {
2c7c9eae 351 struct packet *p = 0;
0b75463f 352 int n;
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353 struct rtp_header header;
354 uint16_t seq;
355 uint32_t timestamp;
356 struct iovec iov[2];
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357
358 for(;;) {
189e9830 359 if(!p)
c593cf7c 360 p = playrtp_new_packet();
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361 iov[0].iov_base = &header;
362 iov[0].iov_len = sizeof header;
363 iov[1].iov_base = p->samples_raw;
b64efe7e 364 iov[1].iov_len = sizeof p->samples_raw / sizeof *p->samples_raw;
2c7c9eae 365 n = readv(rtpfd, iov, 2);
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366 if(n < 0) {
367 switch(errno) {
368 case EINTR:
369 continue;
370 default:
371 fatal(errno, "error reading from socket");
372 }
373 }
0b75463f 374 /* Ignore too-short packets */
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375 if((size_t)n <= sizeof (struct rtp_header)) {
376 info("ignored a short packet");
0b75463f 377 continue;
345ebe66 378 }
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379 timestamp = htonl(header.timestamp);
380 seq = htons(header.seq);
09ee2f0d 381 /* Ignore packets in the past */
2c7c9eae 382 if(active && lt(timestamp, next_timestamp)) {
c0e41690 383 info("dropping old packet, timestamp=%"PRIx32" < %"PRIx32,
2c7c9eae 384 timestamp, next_timestamp);
09ee2f0d 385 continue;
c0e41690 386 }
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387 /* Ignore packets with the extension bit set. */
388 if(header.vpxcc & 0x10)
389 continue;
189e9830 390 p->next = 0;
58b5a68f 391 p->flags = 0;
2c7c9eae 392 p->timestamp = timestamp;
e83d0967 393 /* Convert to target format */
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394 if(header.mpt & 0x80)
395 p->flags |= IDLE;
2c7c9eae 396 switch(header.mpt & 0x7F) {
4fd38868 397 case 10: /* L16 */
2c7c9eae 398 p->nsamples = (n - sizeof header) / sizeof(uint16_t);
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399 break;
400 /* TODO support other RFC3551 media types (when the speaker does) */
401 default:
0b75463f 402 fatal(0, "unsupported RTP payload type %d",
2c7c9eae 403 header.mpt & 0x7F);
e83d0967 404 }
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405 if(logfp)
406 fprintf(logfp, "sequence %u timestamp %"PRIx32" length %"PRIx32" end %"PRIx32"\n",
2c7c9eae 407 seq, timestamp, p->nsamples, timestamp + p->nsamples);
0b75463f 408 /* Stop reading if we've reached the maximum.
409 *
410 * This is rather unsatisfactory: it means that if packets get heavily
411 * out of order then we guarantee dropouts. But for now... */
345ebe66 412 if(nsamples >= maxbuffer) {
189e9830 413 pthread_mutex_lock(&lock);
4dadf1a2 414 while(nsamples >= maxbuffer) {
345ebe66 415 pthread_cond_wait(&cond, &lock);
4dadf1a2 416 }
189e9830 417 pthread_mutex_unlock(&lock);
345ebe66 418 }
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419 /* Add the packet to the receive queue */
420 pthread_mutex_lock(&receive_lock);
421 *received_tail = p;
422 received_tail = &p->next;
423 ++nreceived;
424 pthread_cond_signal(&receive_cond);
425 pthread_mutex_unlock(&receive_lock);
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426 /* We'll need a new packet */
427 p = 0;
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428 }
429}
430
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431/** @brief Wait until the buffer is adequately full
432 *
433 * Must be called with @ref lock held.
434 */
c593cf7c 435void playrtp_fill_buffer(void) {
0e72bf84 436 /* Discard current buffer contents */
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437 while(nsamples) {
438 //fprintf(stderr, "%8u/%u (%u) DROPPING\n", nsamples, maxbuffer, minbuffer);
bfd27c14 439 drop_first_packet();
ad535598 440 }
5626f6d2 441 info("Buffering...");
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442 /* Wait until there's at least minbuffer samples available */
443 while(nsamples < minbuffer) {
ad535598 444 //fprintf(stderr, "%8u/%u (%u) FILLING\n", nsamples, maxbuffer, minbuffer);
5626f6d2 445 pthread_cond_wait(&cond, &lock);
4dadf1a2 446 }
0e72bf84 447 /* Start from whatever is earliest */
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448 next_timestamp = pheap_first(&packets)->timestamp;
449 active = 1;
450}
451
452/** @brief Find next packet
453 * @return Packet to play or NULL if none found
454 *
455 * The return packet is merely guaranteed not to be in the past: it might be
456 * the first packet in the future rather than one that is actually suitable to
457 * play.
458 *
459 * Must be called with @ref lock held.
460 */
c593cf7c 461struct packet *playrtp_next_packet(void) {
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462 while(pheap_count(&packets)) {
463 struct packet *const p = pheap_first(&packets);
464 if(le(p->timestamp + p->nsamples, next_timestamp)) {
465 /* This packet is in the past. Drop it and try another one. */
466 drop_first_packet();
467 } else
468 /* This packet is NOT in the past. (It might be in the future
469 * however.) */
470 return p;
471 }
472 return 0;
473}
474
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475/* display usage message and terminate */
476static void help(void) {
477 xprintf("Usage:\n"
c897bb65 478 " disorder-playrtp [OPTIONS] [[ADDRESS] PORT]\n"
e83d0967 479 "Options:\n"
1153fd23 480 " --device, -D DEVICE Output device\n"
481 " --min, -m FRAMES Buffer low water mark\n"
9086a105 482 " --max, -x FRAMES Buffer maximum size\n"
1f10f780 483 " --rcvbuf, -R BYTES Socket receive buffer size\n"
a7e9570a 484 " --config, -C PATH Set configuration file\n"
146e86fb 485#if HAVE_ALSA_ASOUNDLIB_H
c593cf7c 486 " --alsa, -a Use ALSA to play audio\n"
487#endif
a9f0ad12 488#if HAVE_SYS_SOUNDCARD_H || EMPEG_HOST
c593cf7c 489 " --oss, -o Use OSS to play audio\n"
490#endif
491#if HAVE_COREAUDIO_AUDIOHARDWARE_H
492 " --core-audio, -c Use Core Audio to play audio\n"
493#endif
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494 " --command, -e COMMAND Pipe audio to command.\n"
495 " --pause-mode, -P silence For -e: pauses send silence (default)\n"
496 " --pause-mode, -P suspend For -e: pauses suspend writes\n"
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497 " --help, -h Display usage message\n"
498 " --version, -V Display version number\n"
499 );
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500 xfclose(stdout);
501 exit(0);
502}
503
4fd38868 504static size_t playrtp_callback(void *buffer,
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505 size_t max_samples,
506 void attribute((unused)) *userdata) {
507 size_t samples;
508
509 pthread_mutex_lock(&lock);
510 /* Get the next packet, junking any that are now in the past */
511 const struct packet *p = playrtp_next_packet();
512 if(p && contains(p, next_timestamp)) {
513 /* This packet is ready to play; the desired next timestamp points
514 * somewhere into it. */
515
516 /* Timestamp of end of packet */
517 const uint32_t packet_end = p->timestamp + p->nsamples;
518
519 /* Offset of desired next timestamp into current packet */
520 const uint32_t offset = next_timestamp - p->timestamp;
521
522 /* Pointer to audio data */
523 const uint16_t *ptr = (void *)(p->samples_raw + offset);
524
525 /* Compute number of samples left in packet, limited to output buffer
526 * size */
527 samples = packet_end - next_timestamp;
528 if(samples > max_samples)
529 samples = max_samples;
530
531 /* Copy into buffer, converting to native endianness */
532 size_t i = samples;
533 int16_t *bufptr = buffer;
534 while(i > 0) {
535 *bufptr++ = (int16_t)ntohs(*ptr++);
536 --i;
537 }
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538 } else {
539 /* There is no suitable packet. We introduce 0s up to the next packet, or
540 * to fill the buffer if there's no next packet or that's too many. The
541 * comparison with max_samples deals with the otherwise troubling overflow
542 * case. */
543 samples = p ? p->timestamp - next_timestamp : max_samples;
544 if(samples > max_samples)
545 samples = max_samples;
546 //info("infill by %zu", samples);
4fd38868 547 memset(buffer, 0, samples * uaudio_sample_size);
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548 }
549 /* Debug dump */
550 if(dump_buffer) {
551 for(size_t i = 0; i < samples; ++i) {
4fd38868 552 dump_buffer[dump_index++] = ((int16_t *)buffer)[i];
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553 dump_index %= dump_size;
554 }
555 }
556 /* Advance timestamp */
557 next_timestamp += samples;
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558 /* Junk obsolete packets */
559 playrtp_next_packet();
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560 pthread_mutex_unlock(&lock);
561 return samples;
562}
563
e83d0967 564int main(int argc, char **argv) {
a99c4e9a 565 int n, err;
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566 struct addrinfo *res;
567 struct stringlist sl;
0b75463f 568 char *sockname;
0e72bf84 569 int rcvbuf, target_rcvbuf = 0;
1f10f780 570 socklen_t len;
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571 struct ip_mreq mreq;
572 struct ipv6_mreq mreq6;
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573 disorder_client *c;
574 char *address, *port;
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575 int is_multicast;
576 union any_sockaddr {
577 struct sockaddr sa;
578 struct sockaddr_in in;
579 struct sockaddr_in6 in6;
580 };
581 union any_sockaddr mgroup;
e9b635a3 582 const char *dumpfile = 0;
7a2c7068 583 pthread_t ltid;
b0619501 584 int monitor = 0;
983c3357 585 static const int one = 1;
e83d0967 586
0b75463f 587 static const struct addrinfo prefs = {
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588 .ai_flags = AI_PASSIVE,
589 .ai_family = PF_INET,
590 .ai_socktype = SOCK_DGRAM,
591 .ai_protocol = IPPROTO_UDP
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592 };
593
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594 /* Timing information is often important to debugging playrtp, so we include
595 * timestamps in the logs */
596 logdate = 1;
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597 mem_init();
598 if(!setlocale(LC_CTYPE, "")) fatal(errno, "error calling setlocale");
902ccab0 599 backend = uaudio_apis[0];
b0619501 600 while((n = getopt_long(argc, argv, "hVdD:m:x:L:R:aocC:re:P:M", options, 0)) >= 0) {
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601 switch(n) {
602 case 'h': help();
3fbdc96d 603 case 'V': version("disorder-playrtp");
e83d0967 604 case 'd': debugging = 1; break;
e979b844 605 case 'D': uaudio_set("device", optarg); break;
1153fd23 606 case 'm': minbuffer = 2 * atol(optarg); break;
9086a105 607 case 'x': maxbuffer = 2 * atol(optarg); break;
345ebe66 608 case 'L': logfp = fopen(optarg, "w"); break;
1f10f780 609 case 'R': target_rcvbuf = atoi(optarg); break;
146e86fb 610#if HAVE_ALSA_ASOUNDLIB_H
7a2c7068 611 case 'a': backend = &uaudio_alsa; break;
c593cf7c 612#endif
a9f0ad12 613#if HAVE_SYS_SOUNDCARD_H || EMPEG_HOST
7a2c7068 614 case 'o': backend = &uaudio_oss; break;
c593cf7c 615#endif
616#if HAVE_COREAUDIO_AUDIOHARDWARE_H
7a2c7068 617 case 'c': backend = &uaudio_coreaudio; break;
c593cf7c 618#endif
a7e9570a 619 case 'C': configfile = optarg; break;
a99c4e9a 620 case 's': control_socket = optarg; break;
e9b635a3 621 case 'r': dumpfile = optarg; break;
e979b844 622 case 'e': backend = &uaudio_command; uaudio_set("command", optarg); break;
287ad384 623 case 'P': uaudio_set("pause-mode", optarg); break;
b0619501 624 case 'M': monitor = 1; break;
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625 default: fatal(0, "invalid option");
626 }
627 }
02ba7921 628 if(config_read(0, NULL)) fatal(0, "cannot read configuration");
9086a105 629 if(!maxbuffer)
0e72bf84 630 maxbuffer = 2 * minbuffer;
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631 argc -= optind;
632 argv += optind;
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633 switch(argc) {
634 case 0:
6fba990c 635 /* Get configuration from server */
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636 if(!(c = disorder_new(1))) exit(EXIT_FAILURE);
637 if(disorder_connect(c)) exit(EXIT_FAILURE);
638 if(disorder_rtp_address(c, &address, &port)) exit(EXIT_FAILURE);
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639 sl.n = 2;
640 sl.s = xcalloc(2, sizeof *sl.s);
641 sl.s[0] = address;
642 sl.s[1] = port;
a7e9570a 643 break;
6fba990c 644 case 1:
a7e9570a 645 case 2:
6fba990c 646 /* Use command-line ADDRESS+PORT or just PORT */
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647 sl.n = argc;
648 sl.s = argv;
649 break;
650 default:
6fba990c 651 fatal(0, "usage: disorder-playrtp [OPTIONS] [[ADDRESS] PORT]");
a7e9570a 652 }
6fba990c 653 /* Look up address and port */
0b75463f 654 if(!(res = get_address(&sl, &prefs, &sockname)))
e83d0967 655 exit(1);
6fba990c 656 /* Create the socket */
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657 if((rtpfd = socket(res->ai_family,
658 res->ai_socktype,
659 res->ai_protocol)) < 0)
660 fatal(errno, "error creating socket");
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661 /* Allow multiple listeners */
662 xsetsockopt(rtpfd, SOL_SOCKET, SO_REUSEADDR, &one, sizeof one);
663 is_multicast = multicast(res->ai_addr);
664 /* The multicast and unicast/broadcast cases are different enough that they
665 * are totally split. Trying to find commonality between them causes more
666 * trouble that it's worth. */
667 if(is_multicast) {
668 /* Stash the multicast group address */
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669 memcpy(&mgroup, res->ai_addr, res->ai_addrlen);
670 switch(res->ai_addr->sa_family) {
671 case AF_INET:
672 mgroup.in.sin_port = 0;
673 break;
674 case AF_INET6:
675 mgroup.in6.sin6_port = 0;
676 break;
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677 default:
678 fatal(0, "unsupported family %d", (int)res->ai_addr->sa_family);
6fba990c 679 }
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680 /* Bind to to the multicast group address */
681 if(bind(rtpfd, res->ai_addr, res->ai_addrlen) < 0)
682 fatal(errno, "error binding socket to %s", format_sockaddr(res->ai_addr));
683 /* Add multicast group membership */
6fba990c 684 switch(mgroup.sa.sa_family) {
23205f9c 685 case PF_INET:
6fba990c 686 mreq.imr_multiaddr = mgroup.in.sin_addr;
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687 mreq.imr_interface.s_addr = 0; /* use primary interface */
688 if(setsockopt(rtpfd, IPPROTO_IP, IP_ADD_MEMBERSHIP,
689 &mreq, sizeof mreq) < 0)
690 fatal(errno, "error calling setsockopt IP_ADD_MEMBERSHIP");
691 break;
692 case PF_INET6:
6fba990c 693 mreq6.ipv6mr_multiaddr = mgroup.in6.sin6_addr;
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694 memset(&mreq6.ipv6mr_interface, 0, sizeof mreq6.ipv6mr_interface);
695 if(setsockopt(rtpfd, IPPROTO_IPV6, IPV6_JOIN_GROUP,
696 &mreq6, sizeof mreq6) < 0)
697 fatal(errno, "error calling setsockopt IPV6_JOIN_GROUP");
698 break;
699 default:
700 fatal(0, "unsupported address family %d", res->ai_family);
701 }
983c3357 702 /* Report what we did */
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703 info("listening on %s multicast group %s",
704 format_sockaddr(res->ai_addr), format_sockaddr(&mgroup.sa));
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705 } else {
706 /* Bind to 0/port */
707 switch(res->ai_addr->sa_family) {
708 case AF_INET: {
709 struct sockaddr_in *in = (struct sockaddr_in *)res->ai_addr;
710
711 memset(&in->sin_addr, 0, sizeof (struct in_addr));
712 if(bind(rtpfd, res->ai_addr, res->ai_addrlen) < 0)
713 fatal(errno, "error binding socket to 0.0.0.0 port %d",
714 ntohs(in->sin_port));
715 break;
716 }
717 case AF_INET6: {
718 struct sockaddr_in6 *in6 = (struct sockaddr_in6 *)res->ai_addr;
719
720 memset(&in6->sin6_addr, 0, sizeof (struct in6_addr));
721 break;
722 }
723 default:
724 fatal(0, "unsupported family %d", (int)res->ai_addr->sa_family);
725 }
726 if(bind(rtpfd, res->ai_addr, res->ai_addrlen) < 0)
727 fatal(errno, "error binding socket to %s", format_sockaddr(res->ai_addr));
728 /* Report what we did */
6fba990c 729 info("listening on %s", format_sockaddr(res->ai_addr));
983c3357 730 }
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731 len = sizeof rcvbuf;
732 if(getsockopt(rtpfd, SOL_SOCKET, SO_RCVBUF, &rcvbuf, &len) < 0)
733 fatal(errno, "error calling getsockopt SO_RCVBUF");
f0bae611 734 if(target_rcvbuf > rcvbuf) {
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735 if(setsockopt(rtpfd, SOL_SOCKET, SO_RCVBUF,
736 &target_rcvbuf, sizeof target_rcvbuf) < 0)
737 error(errno, "error calling setsockopt SO_RCVBUF %d",
738 target_rcvbuf);
739 /* We try to carry on anyway */
740 else
741 info("changed socket receive buffer from %d to %d",
742 rcvbuf, target_rcvbuf);
743 } else
744 info("default socket receive buffer %d", rcvbuf);
ad535598 745 //info("minbuffer %u maxbuffer %u", minbuffer, maxbuffer);
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746 if(logfp)
747 info("WARNING: -L option can impact performance");
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748 if(control_socket) {
749 pthread_t tid;
750
751 if((err = pthread_create(&tid, 0, control_thread, 0)))
752 fatal(err, "pthread_create control_thread");
753 }
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754 if(dumpfile) {
755 int fd;
756 unsigned char buffer[65536];
757 size_t written;
758
759 if((fd = open(dumpfile, O_RDWR|O_TRUNC|O_CREAT, 0666)) < 0)
760 fatal(errno, "opening %s", dumpfile);
761 /* Fill with 0s to a suitable size */
762 memset(buffer, 0, sizeof buffer);
763 for(written = 0; written < dump_size * sizeof(int16_t);
764 written += sizeof buffer) {
765 if(write(fd, buffer, sizeof buffer) < 0)
766 fatal(errno, "clearing %s", dumpfile);
767 }
768 /* Map the buffer into memory for convenience */
769 dump_buffer = mmap(0, dump_size * sizeof(int16_t), PROT_READ|PROT_WRITE,
770 MAP_SHARED, fd, 0);
771 if(dump_buffer == (void *)-1)
772 fatal(errno, "mapping %s", dumpfile);
773 info("dumping to %s", dumpfile);
774 }
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775 /* Set up output. Currently we only support L16 so there's no harm setting
776 * the format before we know what it is! */
777 uaudio_set_format(44100/*Hz*/, 2/*channels*/,
778 16/*bits/channel*/, 1/*signed*/);
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779 backend->start(playrtp_callback, NULL);
780 /* We receive and convert audio data in a background thread */
781 if((err = pthread_create(&ltid, 0, listen_thread, 0)))
782 fatal(err, "pthread_create listen_thread");
783 /* We have a second thread to add received packets to the queue */
784 if((err = pthread_create(&ltid, 0, queue_thread, 0)))
785 fatal(err, "pthread_create queue_thread");
786 pthread_mutex_lock(&lock);
b0619501 787 time_t lastlog = 0;
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788 for(;;) {
789 /* Wait for the buffer to fill up a bit */
790 playrtp_fill_buffer();
791 /* Start playing now */
792 info("Playing...");
793 next_timestamp = pheap_first(&packets)->timestamp;
794 active = 1;
d4170ca7 795 pthread_mutex_unlock(&lock);
7a2c7068 796 backend->activate();
d4170ca7 797 pthread_mutex_lock(&lock);
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798 /* Wait until the buffer empties out
799 *
800 * If there's a packet that we can play right now then we definitely
801 * continue.
802 *
803 * Also if there's at least minbuffer samples we carry on regardless and
804 * insert silence. The assumption is there's been a pause but more data
805 * is now available.
806 */
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807 while(nsamples >= minbuffer
808 || (nsamples > 0
4fd38868 809 && contains(pheap_first(&packets), next_timestamp))) {
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810 if(monitor) {
811 time_t now = time(0);
812
813 if(now >= lastlog + 60) {
814 int offset = nsamples - minbuffer;
815 double offtime = (double)offset / (uaudio_rate * uaudio_channels);
816 info("%+d samples off (%d.%02ds, %d bytes)",
817 offset,
818 (int)fabs(offtime) * (offtime < 0 ? -1 : 1),
819 (int)(fabs(offtime) * 100) % 100,
820 offset * uaudio_bits / CHAR_BIT);
821 lastlog = now;
822 }
823 }
ad535598 824 //fprintf(stderr, "%8u/%u (%u) PLAYING\n", nsamples, maxbuffer, minbuffer);
7a2c7068 825 pthread_cond_wait(&cond, &lock);
4fd38868 826 }
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827#if 0
828 if(nsamples) {
829 struct packet *p = pheap_first(&packets);
830 fprintf(stderr, "nsamples=%u (%u) next_timestamp=%"PRIx32", first packet is [%"PRIx32",%"PRIx32")\n",
831 nsamples, minbuffer, next_timestamp,p->timestamp,p->timestamp+p->nsamples);
832 }
833#endif
7a2c7068 834 /* Stop playing for a bit until the buffer re-fills */
d4170ca7 835 pthread_mutex_unlock(&lock);
7a2c7068 836 backend->deactivate();
d4170ca7 837 pthread_mutex_lock(&lock);
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838 active = 0;
839 /* Go back round */
840 }
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841 return 0;
842}
843
844/*
845Local Variables:
846c-basic-offset:2
847comment-column:40
848fill-column:79
849indent-tabs-mode:nil
850End:
851*/