]> code.delx.au - pulseaudio/blob - src/pulsecore/protocol-esound.c
core: make sure we always return a valid memblock in sink_input_pop() callbacks
[pulseaudio] / src / pulsecore / protocol-esound.c
1 /***
2 This file is part of PulseAudio.
3
4 Copyright 2004-2006 Lennart Poettering
5 Copyright 2006 Pierre Ossman <ossman@cendio.se> for Cendio AB
6
7 PulseAudio is free software; you can redistribute it and/or modify
8 it under the terms of the GNU Lesser General Public License as published
9 by the Free Software Foundation; either version 2.1 of the License,
10 or (at your option) any later version.
11
12 PulseAudio is distributed in the hope that it will be useful, but
13 WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 General Public License for more details.
16
17 You should have received a copy of the GNU Lesser General Public License
18 along with PulseAudio; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
20 USA.
21 ***/
22
23 #ifdef HAVE_CONFIG_H
24 #include <config.h>
25 #endif
26
27 #include <errno.h>
28 #include <string.h>
29 #include <stdio.h>
30 #include <stdlib.h>
31 #include <limits.h>
32
33 #include <pulse/rtclock.h>
34 #include <pulse/sample.h>
35 #include <pulse/timeval.h>
36 #include <pulse/utf8.h>
37 #include <pulse/xmalloc.h>
38 #include <pulse/proplist.h>
39
40 #include <pulsecore/esound.h>
41 #include <pulsecore/memblock.h>
42 #include <pulsecore/client.h>
43 #include <pulsecore/sink-input.h>
44 #include <pulsecore/sink.h>
45 #include <pulsecore/source-output.h>
46 #include <pulsecore/source.h>
47 #include <pulsecore/core-scache.h>
48 #include <pulsecore/sample-util.h>
49 #include <pulsecore/authkey.h>
50 #include <pulsecore/namereg.h>
51 #include <pulsecore/log.h>
52 #include <pulsecore/core-util.h>
53 #include <pulsecore/core-error.h>
54 #include <pulsecore/ipacl.h>
55 #include <pulsecore/macro.h>
56 #include <pulsecore/thread-mq.h>
57 #include <pulsecore/shared.h>
58
59 #include "endianmacros.h"
60
61 #include "protocol-esound.h"
62
63 /* Don't accept more connection than this */
64 #define MAX_CONNECTIONS 64
65
66 /* Kick a client if it doesn't authenticate within this time */
67 #define AUTH_TIMEOUT (5*PA_USEC_PER_SEC)
68
69 #define DEFAULT_COOKIE_FILE ".esd_auth"
70
71 #define PLAYBACK_BUFFER_SECONDS (.25)
72 #define PLAYBACK_BUFFER_FRAGMENTS (10)
73 #define RECORD_BUFFER_SECONDS (5)
74
75 #define MAX_CACHE_SAMPLE_SIZE (2048000)
76
77 #define DEFAULT_SINK_LATENCY (150*PA_USEC_PER_MSEC)
78 #define DEFAULT_SOURCE_LATENCY (150*PA_USEC_PER_MSEC)
79
80 #define SCACHE_PREFIX "esound."
81
82 /* This is heavily based on esound's code */
83
84 typedef struct connection {
85 pa_msgobject parent;
86
87 uint32_t index;
88 pa_bool_t dead;
89 pa_esound_protocol *protocol;
90 pa_esound_options *options;
91 pa_iochannel *io;
92 pa_client *client;
93 pa_bool_t authorized, swap_byte_order;
94 void *write_data;
95 size_t write_data_alloc, write_data_index, write_data_length;
96 void *read_data;
97 size_t read_data_alloc, read_data_length;
98 esd_proto_t request;
99 esd_client_state_t state;
100 pa_sink_input *sink_input;
101 pa_source_output *source_output;
102 pa_memblockq *input_memblockq, *output_memblockq;
103 pa_defer_event *defer_event;
104
105 char *original_name;
106
107 struct {
108 pa_memblock *current_memblock;
109 size_t memblock_index;
110 pa_atomic_t missing;
111 pa_bool_t underrun;
112 } playback;
113
114 struct {
115 pa_memchunk memchunk;
116 char *name;
117 pa_sample_spec sample_spec;
118 } scache;
119
120 pa_time_event *auth_timeout_event;
121 } connection;
122
123 PA_DEFINE_PRIVATE_CLASS(connection, pa_msgobject);
124 #define CONNECTION(o) (connection_cast(o))
125
126 struct pa_esound_protocol {
127 PA_REFCNT_DECLARE;
128
129 pa_core *core;
130 pa_idxset *connections;
131 unsigned n_player;
132 };
133
134 enum {
135 SINK_INPUT_MESSAGE_POST_DATA = PA_SINK_INPUT_MESSAGE_MAX, /* data from main loop to sink input */
136 SINK_INPUT_MESSAGE_DISABLE_PREBUF
137 };
138
139 enum {
140 CONNECTION_MESSAGE_REQUEST_DATA,
141 CONNECTION_MESSAGE_POST_DATA,
142 CONNECTION_MESSAGE_UNLINK_CONNECTION
143 };
144
145 typedef struct proto_handler {
146 size_t data_length;
147 int (*proc)(connection *c, esd_proto_t request, const void *data, size_t length);
148 const char *description;
149 } esd_proto_handler_info_t;
150
151 static int sink_input_pop_cb(pa_sink_input *i, size_t length, pa_memchunk *chunk);
152 static void sink_input_process_rewind_cb(pa_sink_input *i, size_t nbytes);
153 static void sink_input_update_max_rewind_cb(pa_sink_input *i, size_t nbytes);
154 static void sink_input_kill_cb(pa_sink_input *i);
155 static int sink_input_process_msg(pa_msgobject *o, int code, void *userdata, int64_t offset, pa_memchunk *chunk);
156 static pa_usec_t source_output_get_latency_cb(pa_source_output *o);
157
158 static void source_output_push_cb(pa_source_output *o, const pa_memchunk *chunk);
159 static void source_output_kill_cb(pa_source_output *o);
160
161 static int esd_proto_connect(connection *c, esd_proto_t request, const void *data, size_t length);
162 static int esd_proto_stream_play(connection *c, esd_proto_t request, const void *data, size_t length);
163 static int esd_proto_stream_record(connection *c, esd_proto_t request, const void *data, size_t length);
164 static int esd_proto_get_latency(connection *c, esd_proto_t request, const void *data, size_t length);
165 static int esd_proto_server_info(connection *c, esd_proto_t request, const void *data, size_t length);
166 static int esd_proto_all_info(connection *c, esd_proto_t request, const void *data, size_t length);
167 static int esd_proto_stream_pan(connection *c, esd_proto_t request, const void *data, size_t length);
168 static int esd_proto_sample_pan(connection *c, esd_proto_t request, const void *data, size_t length);
169 static int esd_proto_sample_cache(connection *c, esd_proto_t request, const void *data, size_t length);
170 static int esd_proto_sample_free_or_play(connection *c, esd_proto_t request, const void *data, size_t length);
171 static int esd_proto_sample_get_id(connection *c, esd_proto_t request, const void *data, size_t length);
172 static int esd_proto_standby_or_resume(connection *c, esd_proto_t request, const void *data, size_t length);
173 static int esd_proto_standby_mode(connection *c, esd_proto_t request, const void *data, size_t length);
174
175 /* the big map of protocol handler info */
176 static struct proto_handler proto_map[ESD_PROTO_MAX] = {
177 { ESD_KEY_LEN + sizeof(int), esd_proto_connect, "connect" },
178 { ESD_KEY_LEN + sizeof(int), NULL, "lock" },
179 { ESD_KEY_LEN + sizeof(int), NULL, "unlock" },
180
181 { ESD_NAME_MAX + 2 * sizeof(int), esd_proto_stream_play, "stream play" },
182 { ESD_NAME_MAX + 2 * sizeof(int), esd_proto_stream_record, "stream rec" },
183 { ESD_NAME_MAX + 2 * sizeof(int), esd_proto_stream_record, "stream mon" },
184
185 { ESD_NAME_MAX + 3 * sizeof(int), esd_proto_sample_cache, "sample cache" }, /* 6 */
186 { sizeof(int), esd_proto_sample_free_or_play, "sample free" },
187 { sizeof(int), esd_proto_sample_free_or_play, "sample play" }, /* 8 */
188 { sizeof(int), NULL, "sample loop" },
189 { sizeof(int), NULL, "sample stop" },
190 { (size_t) -1, NULL, "TODO: sample kill" },
191
192 { ESD_KEY_LEN + sizeof(int), esd_proto_standby_or_resume, "standby" },
193 { ESD_KEY_LEN + sizeof(int), esd_proto_standby_or_resume, "resume" }, /* 13 */
194
195 { ESD_NAME_MAX, esd_proto_sample_get_id, "sample getid" }, /* 14 */
196 { ESD_NAME_MAX + 2 * sizeof(int), NULL, "stream filter" },
197
198 { sizeof(int), esd_proto_server_info, "server info" },
199 { sizeof(int), esd_proto_all_info, "all info" },
200 { (size_t) -1, NULL, "TODO: subscribe" },
201 { (size_t) -1, NULL, "TODO: unsubscribe" },
202
203 { 3 * sizeof(int), esd_proto_stream_pan, "stream pan"},
204 { 3 * sizeof(int), esd_proto_sample_pan, "sample pan" },
205
206 { sizeof(int), esd_proto_standby_mode, "standby mode" },
207 { 0, esd_proto_get_latency, "get latency" }
208 };
209
210 static void connection_unlink(connection *c) {
211 pa_assert(c);
212
213 if (!c->protocol)
214 return;
215
216 if (c->options) {
217 pa_esound_options_unref(c->options);
218 c->options = NULL;
219 }
220
221 if (c->sink_input) {
222 pa_sink_input_unlink(c->sink_input);
223 pa_sink_input_unref(c->sink_input);
224 c->sink_input = NULL;
225 }
226
227 if (c->source_output) {
228 pa_source_output_unlink(c->source_output);
229 pa_source_output_unref(c->source_output);
230 c->source_output = NULL;
231 }
232
233 if (c->client) {
234 pa_client_free(c->client);
235 c->client = NULL;
236 }
237
238 if (c->state == ESD_STREAMING_DATA)
239 c->protocol->n_player--;
240
241 if (c->io) {
242 pa_iochannel_free(c->io);
243 c->io = NULL;
244 }
245
246 if (c->defer_event) {
247 c->protocol->core->mainloop->defer_free(c->defer_event);
248 c->defer_event = NULL;
249 }
250
251 if (c->auth_timeout_event) {
252 c->protocol->core->mainloop->time_free(c->auth_timeout_event);
253 c->auth_timeout_event = NULL;
254 }
255
256 pa_assert_se(pa_idxset_remove_by_data(c->protocol->connections, c, NULL) == c);
257 c->protocol = NULL;
258 connection_unref(c);
259 }
260
261 static void connection_free(pa_object *obj) {
262 connection *c = CONNECTION(obj);
263 pa_assert(c);
264
265 if (c->input_memblockq)
266 pa_memblockq_free(c->input_memblockq);
267 if (c->output_memblockq)
268 pa_memblockq_free(c->output_memblockq);
269
270 if (c->playback.current_memblock)
271 pa_memblock_unref(c->playback.current_memblock);
272
273 pa_xfree(c->read_data);
274 pa_xfree(c->write_data);
275
276 if (c->scache.memchunk.memblock)
277 pa_memblock_unref(c->scache.memchunk.memblock);
278 pa_xfree(c->scache.name);
279
280 pa_xfree(c->original_name);
281 pa_xfree(c);
282 }
283
284 static void connection_write_prepare(connection *c, size_t length) {
285 size_t t;
286 pa_assert(c);
287
288 t = c->write_data_length+length;
289
290 if (c->write_data_alloc < t)
291 c->write_data = pa_xrealloc(c->write_data, c->write_data_alloc = t);
292
293 pa_assert(c->write_data);
294 }
295
296 static void connection_write(connection *c, const void *data, size_t length) {
297 size_t i;
298 pa_assert(c);
299
300 c->protocol->core->mainloop->defer_enable(c->defer_event, 1);
301
302 connection_write_prepare(c, length);
303
304 pa_assert(c->write_data);
305
306 i = c->write_data_length;
307 c->write_data_length += length;
308
309 memcpy((uint8_t*) c->write_data + i, data, length);
310 }
311
312 static void format_esd2native(int format, pa_bool_t swap_bytes, pa_sample_spec *ss) {
313 pa_assert(ss);
314
315 ss->channels = (uint8_t) (((format & ESD_MASK_CHAN) == ESD_STEREO) ? 2 : 1);
316 if ((format & ESD_MASK_BITS) == ESD_BITS16)
317 ss->format = swap_bytes ? PA_SAMPLE_S16RE : PA_SAMPLE_S16NE;
318 else
319 ss->format = PA_SAMPLE_U8;
320 }
321
322 static int format_native2esd(pa_sample_spec *ss) {
323 int format = 0;
324
325 format = (ss->format == PA_SAMPLE_U8) ? ESD_BITS8 : ESD_BITS16;
326 format |= (ss->channels >= 2) ? ESD_STEREO : ESD_MONO;
327
328 return format;
329 }
330
331 #define CHECK_VALIDITY(expression, ...) do { \
332 if (!(expression)) { \
333 pa_log_warn(__FILE__ ": " __VA_ARGS__); \
334 return -1; \
335 } \
336 } while(0);
337
338 /*** esound commands ***/
339
340 static int esd_proto_connect(connection *c, esd_proto_t request, const void *data, size_t length) {
341 uint32_t ekey;
342 int ok;
343
344 connection_assert_ref(c);
345 pa_assert(data);
346 pa_assert(length == (ESD_KEY_LEN + sizeof(uint32_t)));
347
348 if (!c->authorized && c->options->auth_cookie) {
349 const uint8_t*key;
350
351 if ((key = pa_auth_cookie_read(c->options->auth_cookie, ESD_KEY_LEN)))
352 if (memcmp(data, key, ESD_KEY_LEN) == 0)
353 c->authorized = TRUE;
354 }
355
356 if (!c->authorized) {
357 pa_log("Kicked client with invalid authorization key.");
358 return -1;
359 }
360
361 if (c->auth_timeout_event) {
362 c->protocol->core->mainloop->time_free(c->auth_timeout_event);
363 c->auth_timeout_event = NULL;
364 }
365
366 data = (const char*)data + ESD_KEY_LEN;
367
368 memcpy(&ekey, data, sizeof(uint32_t));
369 if (ekey == ESD_ENDIAN_KEY)
370 c->swap_byte_order = FALSE;
371 else if (ekey == ESD_SWAP_ENDIAN_KEY)
372 c->swap_byte_order = TRUE;
373 else {
374 pa_log_warn("Client sent invalid endian key");
375 return -1;
376 }
377
378 pa_proplist_sets(c->client->proplist, "esound.byte_order", c->swap_byte_order ? "reverse" : "native");
379
380 ok = 1;
381 connection_write(c, &ok, sizeof(int));
382 return 0;
383 }
384
385 static int esd_proto_stream_play(connection *c, esd_proto_t request, const void *data, size_t length) {
386 char name[ESD_NAME_MAX], *utf8_name;
387 int32_t format, rate;
388 pa_sample_spec ss;
389 size_t l;
390 pa_sink *sink = NULL;
391 pa_sink_input_new_data sdata;
392 pa_memchunk silence;
393
394 connection_assert_ref(c);
395 pa_assert(data);
396 pa_assert(length == (sizeof(int32_t)*2+ESD_NAME_MAX));
397
398 memcpy(&format, data, sizeof(int32_t));
399 format = PA_MAYBE_INT32_SWAP(c->swap_byte_order, format);
400 data = (const char*) data + sizeof(int32_t);
401
402 memcpy(&rate, data, sizeof(int32_t));
403 rate = PA_MAYBE_INT32_SWAP(c->swap_byte_order, rate);
404 data = (const char*) data + sizeof(int32_t);
405
406 ss.rate = (uint32_t) rate;
407 format_esd2native(format, c->swap_byte_order, &ss);
408
409 CHECK_VALIDITY(pa_sample_spec_valid(&ss), "Invalid sample specification");
410
411 if (c->options->default_sink) {
412 sink = pa_namereg_get(c->protocol->core, c->options->default_sink, PA_NAMEREG_SINK);
413 CHECK_VALIDITY(sink, "No such sink: %s", pa_strnull(c->options->default_sink));
414 }
415
416 pa_strlcpy(name, data, sizeof(name));
417
418 utf8_name = pa_utf8_filter(name);
419 pa_client_set_name(c->client, utf8_name);
420 pa_xfree(utf8_name);
421
422 c->original_name = pa_xstrdup(name);
423
424 pa_assert(!c->sink_input && !c->input_memblockq);
425
426 pa_sink_input_new_data_init(&sdata);
427 sdata.driver = __FILE__;
428 sdata.module = c->options->module;
429 sdata.client = c->client;
430 sdata.sink = sink;
431 pa_sink_input_new_data_set_sample_spec(&sdata, &ss);
432
433 pa_sink_input_new(&c->sink_input, c->protocol->core, &sdata);
434 pa_sink_input_new_data_done(&sdata);
435
436 CHECK_VALIDITY(c->sink_input, "Failed to create sink input.");
437
438 l = (size_t) ((double) pa_bytes_per_second(&ss)*PLAYBACK_BUFFER_SECONDS);
439 pa_sink_input_get_silence(c->sink_input, &silence);
440 c->input_memblockq = pa_memblockq_new(
441 0,
442 l,
443 l,
444 pa_frame_size(&ss),
445 (size_t) -1,
446 l/PLAYBACK_BUFFER_FRAGMENTS,
447 0,
448 &silence);
449 pa_memblock_unref(silence.memblock);
450 pa_iochannel_socket_set_rcvbuf(c->io, l);
451
452 c->sink_input->parent.process_msg = sink_input_process_msg;
453 c->sink_input->pop = sink_input_pop_cb;
454 c->sink_input->process_rewind = sink_input_process_rewind_cb;
455 c->sink_input->update_max_rewind = sink_input_update_max_rewind_cb;
456 c->sink_input->kill = sink_input_kill_cb;
457 c->sink_input->userdata = c;
458
459 pa_sink_input_set_requested_latency(c->sink_input, DEFAULT_SINK_LATENCY);
460
461 c->state = ESD_STREAMING_DATA;
462
463 c->protocol->n_player++;
464
465 pa_atomic_store(&c->playback.missing, (int) pa_memblockq_missing(c->input_memblockq));
466
467 pa_sink_input_put(c->sink_input);
468
469 return 0;
470 }
471
472 static int esd_proto_stream_record(connection *c, esd_proto_t request, const void *data, size_t length) {
473 char name[ESD_NAME_MAX], *utf8_name;
474 int32_t format, rate;
475 pa_source *source = NULL;
476 pa_sample_spec ss;
477 size_t l;
478 pa_source_output_new_data sdata;
479
480 connection_assert_ref(c);
481 pa_assert(data);
482 pa_assert(length == (sizeof(int32_t)*2+ESD_NAME_MAX));
483
484 memcpy(&format, data, sizeof(int32_t));
485 format = PA_MAYBE_INT32_SWAP(c->swap_byte_order, format);
486 data = (const char*) data + sizeof(int32_t);
487
488 memcpy(&rate, data, sizeof(int32_t));
489 rate = PA_MAYBE_INT32_SWAP(c->swap_byte_order, rate);
490 data = (const char*) data + sizeof(int32_t);
491
492 ss.rate = (uint32_t) rate;
493 format_esd2native(format, c->swap_byte_order, &ss);
494
495 CHECK_VALIDITY(pa_sample_spec_valid(&ss), "Invalid sample specification.");
496
497 if (request == ESD_PROTO_STREAM_MON) {
498 pa_sink* sink;
499
500 sink = pa_namereg_get(c->protocol->core, c->options->default_sink, PA_NAMEREG_SINK);
501 CHECK_VALIDITY(sink, "No such sink: %s", pa_strnull(c->options->default_sink));
502
503 source = sink->monitor_source;
504 CHECK_VALIDITY(source, "No such source.");
505 } else {
506 pa_assert(request == ESD_PROTO_STREAM_REC);
507
508 if (c->options->default_source) {
509 source = pa_namereg_get(c->protocol->core, c->options->default_source, PA_NAMEREG_SOURCE);
510 CHECK_VALIDITY(source, "No such source: %s", pa_strnull(c->options->default_source));
511 }
512 }
513
514 pa_strlcpy(name, data, sizeof(name));
515
516 utf8_name = pa_utf8_filter(name);
517 pa_client_set_name(c->client, utf8_name);
518 pa_xfree(utf8_name);
519
520 c->original_name = pa_xstrdup(name);
521
522 pa_assert(!c->output_memblockq && !c->source_output);
523
524 pa_source_output_new_data_init(&sdata);
525 sdata.driver = __FILE__;
526 sdata.module = c->options->module;
527 sdata.client = c->client;
528 sdata.source = source;
529 pa_source_output_new_data_set_sample_spec(&sdata, &ss);
530
531 pa_source_output_new(&c->source_output, c->protocol->core, &sdata);
532 pa_source_output_new_data_done(&sdata);
533
534 CHECK_VALIDITY(c->source_output, "Failed to create source output.");
535
536 l = (size_t) (pa_bytes_per_second(&ss)*RECORD_BUFFER_SECONDS);
537 c->output_memblockq = pa_memblockq_new(
538 0,
539 l,
540 l,
541 pa_frame_size(&ss),
542 1,
543 0,
544 0,
545 NULL);
546 pa_iochannel_socket_set_sndbuf(c->io, l);
547
548 c->source_output->push = source_output_push_cb;
549 c->source_output->kill = source_output_kill_cb;
550 c->source_output->get_latency = source_output_get_latency_cb;
551 c->source_output->userdata = c;
552
553 pa_source_output_set_requested_latency(c->source_output, DEFAULT_SOURCE_LATENCY);
554
555 c->state = ESD_STREAMING_DATA;
556
557 c->protocol->n_player++;
558
559 pa_source_output_put(c->source_output);
560
561 return 0;
562 }
563
564 static int esd_proto_get_latency(connection *c, esd_proto_t request, const void *data, size_t length) {
565 pa_sink *sink;
566 int32_t latency;
567
568 connection_assert_ref(c);
569 pa_assert(!data);
570 pa_assert(length == 0);
571
572 if (!(sink = pa_namereg_get(c->protocol->core, c->options->default_sink, PA_NAMEREG_SINK)))
573 latency = 0;
574 else {
575 double usec = (double) pa_sink_get_requested_latency(sink);
576 latency = (int) ((usec*44100)/1000000);
577 }
578
579 latency = PA_MAYBE_INT32_SWAP(c->swap_byte_order, latency);
580 connection_write(c, &latency, sizeof(int32_t));
581
582 return 0;
583 }
584
585 static int esd_proto_server_info(connection *c, esd_proto_t request, const void *data, size_t length) {
586 int32_t rate = 44100, format = ESD_STEREO|ESD_BITS16;
587 int32_t response;
588 pa_sink *sink;
589
590 connection_assert_ref(c);
591 pa_assert(data);
592 pa_assert(length == sizeof(int32_t));
593
594 if ((sink = pa_namereg_get(c->protocol->core, c->options->default_sink, PA_NAMEREG_SINK))) {
595 rate = (int32_t) sink->sample_spec.rate;
596 format = format_native2esd(&sink->sample_spec);
597 }
598
599 connection_write_prepare(c, sizeof(int32_t) * 3);
600
601 response = 0;
602 connection_write(c, &response, sizeof(int32_t));
603 rate = PA_MAYBE_INT32_SWAP(c->swap_byte_order, rate);
604 connection_write(c, &rate, sizeof(int32_t));
605 format = PA_MAYBE_INT32_SWAP(c->swap_byte_order, format);
606 connection_write(c, &format, sizeof(int32_t));
607
608 return 0;
609 }
610
611 static int esd_proto_all_info(connection *c, esd_proto_t request, const void *data, size_t length) {
612 size_t t, k, s;
613 connection *conn;
614 uint32_t idx = PA_IDXSET_INVALID;
615 unsigned nsamples;
616 char terminator[sizeof(int32_t)*6+ESD_NAME_MAX];
617
618 connection_assert_ref(c);
619 pa_assert(data);
620 pa_assert(length == sizeof(int32_t));
621
622 if (esd_proto_server_info(c, request, data, length) < 0)
623 return -1;
624
625 k = sizeof(int32_t)*5+ESD_NAME_MAX;
626 s = sizeof(int32_t)*6+ESD_NAME_MAX;
627 nsamples = pa_idxset_size(c->protocol->core->scache);
628 t = s*(nsamples+1) + k*(c->protocol->n_player+1);
629
630 connection_write_prepare(c, t);
631
632 memset(terminator, 0, sizeof(terminator));
633
634 for (conn = pa_idxset_first(c->protocol->connections, &idx); conn; conn = pa_idxset_next(c->protocol->connections, &idx)) {
635 int32_t id, format = ESD_BITS16 | ESD_STEREO, rate = 44100, lvolume = ESD_VOLUME_BASE, rvolume = ESD_VOLUME_BASE;
636 char name[ESD_NAME_MAX];
637
638 if (conn->state != ESD_STREAMING_DATA)
639 continue;
640
641 pa_assert(t >= k*2+s);
642
643 if (conn->sink_input) {
644 pa_cvolume volume;
645 pa_sink_input_get_volume(conn->sink_input, &volume, TRUE);
646 rate = (int32_t) conn->sink_input->sample_spec.rate;
647 lvolume = (int32_t) ((volume.values[0]*ESD_VOLUME_BASE)/PA_VOLUME_NORM);
648 rvolume = (int32_t) ((volume.values[volume.channels == 2 ? 1 : 0]*ESD_VOLUME_BASE)/PA_VOLUME_NORM);
649 format = format_native2esd(&conn->sink_input->sample_spec);
650 }
651
652 /* id */
653 id = PA_MAYBE_INT32_SWAP(c->swap_byte_order, (int32_t) (conn->index+1));
654 connection_write(c, &id, sizeof(int32_t));
655
656 /* name */
657 memset(name, 0, ESD_NAME_MAX); /* don't leak old data */
658 if (conn->original_name)
659 strncpy(name, conn->original_name, ESD_NAME_MAX);
660 else if (conn->client && pa_proplist_gets(conn->client->proplist, PA_PROP_APPLICATION_NAME))
661 strncpy(name, pa_proplist_gets(conn->client->proplist, PA_PROP_APPLICATION_NAME), ESD_NAME_MAX);
662 connection_write(c, name, ESD_NAME_MAX);
663
664 /* rate */
665 rate = PA_MAYBE_INT32_SWAP(c->swap_byte_order, rate);
666 connection_write(c, &rate, sizeof(int32_t));
667
668 /* left */
669 lvolume = PA_MAYBE_INT32_SWAP(c->swap_byte_order, lvolume);
670 connection_write(c, &lvolume, sizeof(int32_t));
671
672 /*right*/
673 rvolume = PA_MAYBE_INT32_SWAP(c->swap_byte_order, rvolume);
674 connection_write(c, &rvolume, sizeof(int32_t));
675
676 /*format*/
677 format = PA_MAYBE_INT32_SWAP(c->swap_byte_order, format);
678 connection_write(c, &format, sizeof(int32_t));
679
680 t -= k;
681 }
682
683 pa_assert(t == s*(nsamples+1)+k);
684 t -= k;
685
686 connection_write(c, terminator, k);
687
688 if (nsamples) {
689 pa_scache_entry *ce;
690
691 idx = PA_IDXSET_INVALID;
692 for (ce = pa_idxset_first(c->protocol->core->scache, &idx); ce; ce = pa_idxset_next(c->protocol->core->scache, &idx)) {
693 int32_t id, rate, lvolume, rvolume, format, len;
694 char name[ESD_NAME_MAX];
695 pa_channel_map stereo = { .channels = 2, .map = { PA_CHANNEL_POSITION_LEFT, PA_CHANNEL_POSITION_RIGHT } };
696 pa_cvolume volume;
697 pa_sample_spec ss;
698
699 pa_assert(t >= s*2);
700
701 if (ce->volume_is_set) {
702 volume = ce->volume;
703 pa_cvolume_remap(&volume, &ce->channel_map, &stereo);
704 } else
705 pa_cvolume_reset(&volume, 2);
706
707 if (ce->memchunk.memblock)
708 ss = ce->sample_spec;
709 else {
710 ss.format = PA_SAMPLE_S16NE;
711 ss.rate = 44100;
712 ss.channels = 2;
713 }
714
715 /* id */
716 id = PA_MAYBE_INT32_SWAP(c->swap_byte_order, (int) (ce->index+1));
717 connection_write(c, &id, sizeof(int32_t));
718
719 /* name */
720 memset(name, 0, ESD_NAME_MAX); /* don't leak old data */
721 if (strncmp(ce->name, SCACHE_PREFIX, sizeof(SCACHE_PREFIX)-1) == 0)
722 strncpy(name, ce->name+sizeof(SCACHE_PREFIX)-1, ESD_NAME_MAX);
723 else
724 pa_snprintf(name, ESD_NAME_MAX, "native.%s", ce->name);
725 connection_write(c, name, ESD_NAME_MAX);
726
727 /* rate */
728 rate = PA_MAYBE_INT32_SWAP(c->swap_byte_order, (int32_t) ss.rate);
729 connection_write(c, &rate, sizeof(int32_t));
730
731 /* left */
732 lvolume = PA_MAYBE_INT32_SWAP(c->swap_byte_order, (int32_t) ((volume.values[0]*ESD_VOLUME_BASE)/PA_VOLUME_NORM));
733 connection_write(c, &lvolume, sizeof(int32_t));
734
735 /*right*/
736 rvolume = PA_MAYBE_INT32_SWAP(c->swap_byte_order, (int32_t) ((volume.values[1]*ESD_VOLUME_BASE)/PA_VOLUME_NORM));
737 connection_write(c, &rvolume, sizeof(int32_t));
738
739 /*format*/
740 format = PA_MAYBE_INT32_SWAP(c->swap_byte_order, format_native2esd(&ss));
741 connection_write(c, &format, sizeof(int32_t));
742
743 /*length*/
744 len = PA_MAYBE_INT32_SWAP(c->swap_byte_order, (int) ce->memchunk.length);
745 connection_write(c, &len, sizeof(int32_t));
746
747 t -= s;
748 }
749 }
750
751 pa_assert(t == s);
752
753 connection_write(c, terminator, s);
754
755 return 0;
756 }
757
758 static int esd_proto_stream_pan(connection *c, esd_proto_t request, const void *data, size_t length) {
759 int32_t ok;
760 uint32_t idx, lvolume, rvolume;
761 connection *conn;
762
763 connection_assert_ref(c);
764 pa_assert(data);
765 pa_assert(length == sizeof(int32_t)*3);
766
767 memcpy(&idx, data, sizeof(uint32_t));
768 idx = PA_MAYBE_UINT32_SWAP(c->swap_byte_order, idx) - 1;
769 data = (const char*)data + sizeof(uint32_t);
770
771 memcpy(&lvolume, data, sizeof(uint32_t));
772 lvolume = PA_MAYBE_UINT32_SWAP(c->swap_byte_order, lvolume);
773 data = (const char*)data + sizeof(uint32_t);
774
775 memcpy(&rvolume, data, sizeof(uint32_t));
776 rvolume = PA_MAYBE_UINT32_SWAP(c->swap_byte_order, rvolume);
777
778 if ((conn = pa_idxset_get_by_index(c->protocol->connections, idx)) && conn->sink_input) {
779 pa_cvolume volume;
780 volume.values[0] = (lvolume*PA_VOLUME_NORM)/ESD_VOLUME_BASE;
781 volume.values[1] = (rvolume*PA_VOLUME_NORM)/ESD_VOLUME_BASE;
782 volume.channels = conn->sink_input->sample_spec.channels;
783
784 pa_sink_input_set_volume(conn->sink_input, &volume, TRUE, TRUE);
785 ok = 1;
786 } else
787 ok = 0;
788
789 connection_write(c, &ok, sizeof(int32_t));
790
791 return 0;
792 }
793
794 static int esd_proto_sample_pan(connection *c, esd_proto_t request, const void *data, size_t length) {
795 int32_t ok = 0;
796 uint32_t idx, lvolume, rvolume;
797 pa_cvolume volume;
798 pa_scache_entry *ce;
799
800 connection_assert_ref(c);
801 pa_assert(data);
802 pa_assert(length == sizeof(int32_t)*3);
803
804 memcpy(&idx, data, sizeof(uint32_t));
805 idx = PA_MAYBE_UINT32_SWAP(c->swap_byte_order, idx) - 1;
806 data = (const char*)data + sizeof(uint32_t);
807
808 memcpy(&lvolume, data, sizeof(uint32_t));
809 lvolume = PA_MAYBE_UINT32_SWAP(c->swap_byte_order, lvolume);
810 data = (const char*)data + sizeof(uint32_t);
811
812 memcpy(&rvolume, data, sizeof(uint32_t));
813 rvolume = PA_MAYBE_UINT32_SWAP(c->swap_byte_order, rvolume);
814
815 volume.values[0] = (lvolume*PA_VOLUME_NORM)/ESD_VOLUME_BASE;
816 volume.values[1] = (rvolume*PA_VOLUME_NORM)/ESD_VOLUME_BASE;
817 volume.channels = 2;
818
819 if ((ce = pa_idxset_get_by_index(c->protocol->core->scache, idx))) {
820 pa_channel_map stereo = { .channels = 2, .map = { PA_CHANNEL_POSITION_LEFT, PA_CHANNEL_POSITION_RIGHT } };
821
822 pa_cvolume_remap(&volume, &stereo, &ce->channel_map);
823 ce->volume = volume;
824 ce->volume_is_set = TRUE;
825 ok = 1;
826 }
827
828 connection_write(c, &ok, sizeof(int32_t));
829
830 return 0;
831 }
832
833 static int esd_proto_sample_cache(connection *c, esd_proto_t request, const void *data, size_t length) {
834 pa_sample_spec ss;
835 int32_t format, rate, sc_length;
836 uint32_t idx;
837 char name[ESD_NAME_MAX+sizeof(SCACHE_PREFIX)-1];
838
839 connection_assert_ref(c);
840 pa_assert(data);
841 pa_assert(length == (ESD_NAME_MAX+3*sizeof(int32_t)));
842
843 memcpy(&format, data, sizeof(int32_t));
844 format = PA_MAYBE_INT32_SWAP(c->swap_byte_order, format);
845 data = (const char*)data + sizeof(int32_t);
846
847 memcpy(&rate, data, sizeof(int32_t));
848 rate = PA_MAYBE_INT32_SWAP(c->swap_byte_order, rate);
849 data = (const char*)data + sizeof(int32_t);
850
851 ss.rate = (uint32_t) rate;
852 format_esd2native(format, c->swap_byte_order, &ss);
853
854 CHECK_VALIDITY(pa_sample_spec_valid(&ss), "Invalid sample specification.");
855
856 memcpy(&sc_length, data, sizeof(int32_t));
857 sc_length = PA_MAYBE_INT32_SWAP(c->swap_byte_order, sc_length);
858 data = (const char*)data + sizeof(int32_t);
859
860 CHECK_VALIDITY(sc_length <= MAX_CACHE_SAMPLE_SIZE, "Sample too large (%d bytes).", (int)sc_length);
861
862 strcpy(name, SCACHE_PREFIX);
863 pa_strlcpy(name+sizeof(SCACHE_PREFIX)-1, data, ESD_NAME_MAX);
864
865 CHECK_VALIDITY(pa_utf8_valid(name), "Invalid UTF8 in sample name.");
866
867 pa_assert(!c->scache.memchunk.memblock);
868 c->scache.memchunk.memblock = pa_memblock_new(c->protocol->core->mempool, (size_t) sc_length);
869 c->scache.memchunk.index = 0;
870 c->scache.memchunk.length = (size_t) sc_length;
871 c->scache.sample_spec = ss;
872 pa_assert(!c->scache.name);
873 c->scache.name = pa_xstrdup(name);
874
875 c->state = ESD_CACHING_SAMPLE;
876
877 pa_scache_add_item(c->protocol->core, c->scache.name, NULL, NULL, NULL, c->client->proplist, &idx);
878
879 idx += 1;
880 connection_write(c, &idx, sizeof(uint32_t));
881
882 return 0;
883 }
884
885 static int esd_proto_sample_get_id(connection *c, esd_proto_t request, const void *data, size_t length) {
886 int32_t ok;
887 uint32_t idx;
888 char name[ESD_NAME_MAX+sizeof(SCACHE_PREFIX)-1];
889
890 connection_assert_ref(c);
891 pa_assert(data);
892 pa_assert(length == ESD_NAME_MAX);
893
894 strcpy(name, SCACHE_PREFIX);
895 pa_strlcpy(name+sizeof(SCACHE_PREFIX)-1, data, ESD_NAME_MAX);
896
897 CHECK_VALIDITY(pa_utf8_valid(name), "Invalid UTF8 in sample name.");
898
899 ok = -1;
900 if ((idx = pa_scache_get_id_by_name(c->protocol->core, name)) != PA_IDXSET_INVALID)
901 ok = (int32_t) idx + 1;
902
903 connection_write(c, &ok, sizeof(int32_t));
904
905 return 0;
906 }
907
908 static int esd_proto_sample_free_or_play(connection *c, esd_proto_t request, const void *data, size_t length) {
909 int32_t ok;
910 const char *name;
911 uint32_t idx;
912
913 connection_assert_ref(c);
914 pa_assert(data);
915 pa_assert(length == sizeof(int32_t));
916
917 memcpy(&idx, data, sizeof(uint32_t));
918 idx = PA_MAYBE_UINT32_SWAP(c->swap_byte_order, idx) - 1;
919
920 ok = 0;
921
922 if ((name = pa_scache_get_name_by_id(c->protocol->core, idx))) {
923 if (request == ESD_PROTO_SAMPLE_PLAY) {
924 pa_sink *sink;
925
926 if ((sink = pa_namereg_get(c->protocol->core, c->options->default_sink, PA_NAMEREG_SINK)))
927 if (pa_scache_play_item(c->protocol->core, name, sink, PA_VOLUME_NORM, c->client->proplist, NULL) >= 0)
928 ok = (int32_t) idx + 1;
929 } else {
930 pa_assert(request == ESD_PROTO_SAMPLE_FREE);
931
932 if (pa_scache_remove_item(c->protocol->core, name) >= 0)
933 ok = (int32_t) idx + 1;
934 }
935 }
936
937 connection_write(c, &ok, sizeof(int32_t));
938
939 return 0;
940 }
941
942 static int esd_proto_standby_or_resume(connection *c, esd_proto_t request, const void *data, size_t length) {
943 int32_t ok = 1;
944
945 connection_assert_ref(c);
946
947 connection_write_prepare(c, sizeof(int32_t) * 2);
948 connection_write(c, &ok, sizeof(int32_t));
949
950 if (request == ESD_PROTO_STANDBY)
951 ok = pa_sink_suspend_all(c->protocol->core, TRUE, PA_SUSPEND_USER) >= 0;
952 else {
953 pa_assert(request == ESD_PROTO_RESUME);
954 ok = pa_sink_suspend_all(c->protocol->core, FALSE, PA_SUSPEND_USER) >= 0;
955 }
956
957 connection_write(c, &ok, sizeof(int32_t));
958
959 return 0;
960 }
961
962 static int esd_proto_standby_mode(connection *c, esd_proto_t request, const void *data, size_t length) {
963 int32_t mode;
964 pa_sink *sink, *source;
965
966 connection_assert_ref(c);
967
968 mode = ESM_RUNNING;
969
970 if ((sink = pa_namereg_get(c->protocol->core, c->options->default_sink, PA_NAMEREG_SINK)))
971 if (pa_sink_get_state(sink) == PA_SINK_SUSPENDED)
972 mode = ESM_ON_STANDBY;
973
974 if ((source = pa_namereg_get(c->protocol->core, c->options->default_source, PA_NAMEREG_SOURCE)))
975 if (pa_source_get_state(source) == PA_SOURCE_SUSPENDED)
976 mode = ESM_ON_STANDBY;
977
978 mode = PA_MAYBE_INT32_SWAP(c->swap_byte_order, mode);
979
980 connection_write(c, &mode, sizeof(mode));
981 return 0;
982 }
983
984 /*** client callbacks ***/
985
986 static void client_kill_cb(pa_client *c) {
987 pa_assert(c);
988
989 connection_unlink(CONNECTION(c->userdata));
990 }
991
992 /*** pa_iochannel callbacks ***/
993
994 static int do_read(connection *c) {
995 connection_assert_ref(c);
996
997 /* pa_log("READ"); */
998
999 if (c->state == ESD_NEXT_REQUEST) {
1000 ssize_t r;
1001 pa_assert(c->read_data_length < sizeof(c->request));
1002
1003 if ((r = pa_iochannel_read(c->io,
1004 ((uint8_t*) &c->request) + c->read_data_length,
1005 sizeof(c->request) - c->read_data_length)) <= 0) {
1006
1007 if (r < 0 && (errno == EINTR || errno == EAGAIN))
1008 return 0;
1009
1010 pa_log_debug("read(): %s", r < 0 ? pa_cstrerror(errno) : "EOF");
1011 return -1;
1012 }
1013
1014 c->read_data_length += (size_t) r;
1015
1016 if (c->read_data_length >= sizeof(c->request)) {
1017 struct proto_handler *handler;
1018
1019 c->request = PA_MAYBE_INT32_SWAP(c->swap_byte_order, c->request);
1020
1021 if (c->request < ESD_PROTO_CONNECT || c->request >= ESD_PROTO_MAX) {
1022 pa_log("recieved invalid request.");
1023 return -1;
1024 }
1025
1026 handler = proto_map+c->request;
1027
1028 /* pa_log("executing request #%u", c->request); */
1029
1030 if (!handler->proc) {
1031 pa_log("recieved unimplemented request #%u.", c->request);
1032 return -1;
1033 }
1034
1035 if (handler->data_length == 0) {
1036 c->read_data_length = 0;
1037
1038 if (handler->proc(c, c->request, NULL, 0) < 0)
1039 return -1;
1040
1041 } else {
1042 if (c->read_data_alloc < handler->data_length)
1043 c->read_data = pa_xrealloc(c->read_data, c->read_data_alloc = handler->data_length);
1044 pa_assert(c->read_data);
1045
1046 c->state = ESD_NEEDS_REQDATA;
1047 c->read_data_length = 0;
1048 }
1049 }
1050
1051 } else if (c->state == ESD_NEEDS_REQDATA) {
1052 ssize_t r;
1053 struct proto_handler *handler = proto_map+c->request;
1054
1055 pa_assert(handler->proc);
1056
1057 pa_assert(c->read_data && c->read_data_length < handler->data_length);
1058
1059 if ((r = pa_iochannel_read(c->io,
1060 (uint8_t*) c->read_data + c->read_data_length,
1061 handler->data_length - c->read_data_length)) <= 0) {
1062
1063 if (r < 0 && (errno == EINTR || errno == EAGAIN))
1064 return 0;
1065
1066 pa_log_debug("read(): %s", r < 0 ? pa_cstrerror(errno) : "EOF");
1067 return -1;
1068 }
1069
1070 c->read_data_length += (size_t) r;
1071 if (c->read_data_length >= handler->data_length) {
1072 size_t l = c->read_data_length;
1073 pa_assert(handler->proc);
1074
1075 c->state = ESD_NEXT_REQUEST;
1076 c->read_data_length = 0;
1077
1078 if (handler->proc(c, c->request, c->read_data, l) < 0)
1079 return -1;
1080 }
1081 } else if (c->state == ESD_CACHING_SAMPLE) {
1082 ssize_t r;
1083 void *p;
1084
1085 pa_assert(c->scache.memchunk.memblock);
1086 pa_assert(c->scache.name);
1087 pa_assert(c->scache.memchunk.index < c->scache.memchunk.length);
1088
1089 p = pa_memblock_acquire(c->scache.memchunk.memblock);
1090 r = pa_iochannel_read(c->io, (uint8_t*) p+c->scache.memchunk.index, c->scache.memchunk.length-c->scache.memchunk.index);
1091 pa_memblock_release(c->scache.memchunk.memblock);
1092
1093 if (r <= 0) {
1094 if (r < 0 && (errno == EINTR || errno == EAGAIN))
1095 return 0;
1096
1097 pa_log_debug("read(): %s", r < 0 ? pa_cstrerror(errno) : "EOF");
1098 return -1;
1099 }
1100
1101 c->scache.memchunk.index += (size_t) r;
1102 pa_assert(c->scache.memchunk.index <= c->scache.memchunk.length);
1103
1104 if (c->scache.memchunk.index == c->scache.memchunk.length) {
1105 uint32_t idx;
1106
1107 c->scache.memchunk.index = 0;
1108 pa_scache_add_item(c->protocol->core, c->scache.name, &c->scache.sample_spec, NULL, &c->scache.memchunk, c->client->proplist, &idx);
1109
1110 pa_memblock_unref(c->scache.memchunk.memblock);
1111 pa_memchunk_reset(&c->scache.memchunk);
1112
1113 pa_xfree(c->scache.name);
1114 c->scache.name = NULL;
1115
1116 c->state = ESD_NEXT_REQUEST;
1117
1118 idx += 1;
1119 connection_write(c, &idx, sizeof(uint32_t));
1120 }
1121
1122 } else if (c->state == ESD_STREAMING_DATA && c->sink_input) {
1123 pa_memchunk chunk;
1124 ssize_t r;
1125 size_t l;
1126 void *p;
1127 size_t space = 0;
1128
1129 pa_assert(c->input_memblockq);
1130
1131 /* pa_log("STREAMING_DATA"); */
1132
1133 if (!(l = (size_t) pa_atomic_load(&c->playback.missing)))
1134 return 0;
1135
1136 if (c->playback.current_memblock) {
1137
1138 space = pa_memblock_get_length(c->playback.current_memblock) - c->playback.memblock_index;
1139
1140 if (space <= 0) {
1141 pa_memblock_unref(c->playback.current_memblock);
1142 c->playback.current_memblock = NULL;
1143 }
1144 }
1145
1146 if (!c->playback.current_memblock) {
1147 pa_assert_se(c->playback.current_memblock = pa_memblock_new(c->protocol->core->mempool, (size_t) -1));
1148 c->playback.memblock_index = 0;
1149
1150 space = pa_memblock_get_length(c->playback.current_memblock);
1151 }
1152
1153 if (l > space)
1154 l = space;
1155
1156 p = pa_memblock_acquire(c->playback.current_memblock);
1157 r = pa_iochannel_read(c->io, (uint8_t*) p+c->playback.memblock_index, l);
1158 pa_memblock_release(c->playback.current_memblock);
1159
1160 if (r <= 0) {
1161
1162 if (r < 0 && (errno == EINTR || errno == EAGAIN))
1163 return 0;
1164
1165 pa_log_debug("read(): %s", r < 0 ? pa_cstrerror(errno) : "EOF");
1166 return -1;
1167 }
1168
1169 chunk.memblock = c->playback.current_memblock;
1170 chunk.index = c->playback.memblock_index;
1171 chunk.length = (size_t) r;
1172
1173 c->playback.memblock_index += (size_t) r;
1174
1175 pa_asyncmsgq_post(c->sink_input->sink->asyncmsgq, PA_MSGOBJECT(c->sink_input), SINK_INPUT_MESSAGE_POST_DATA, NULL, 0, &chunk, NULL);
1176 pa_atomic_sub(&c->playback.missing, (int) r);
1177 }
1178
1179 return 0;
1180 }
1181
1182 static int do_write(connection *c) {
1183 connection_assert_ref(c);
1184
1185 /* pa_log("WRITE"); */
1186
1187 if (c->write_data_length) {
1188 ssize_t r;
1189
1190 pa_assert(c->write_data_index < c->write_data_length);
1191 if ((r = pa_iochannel_write(c->io, (uint8_t*) c->write_data+c->write_data_index, c->write_data_length-c->write_data_index)) < 0) {
1192
1193 if (r < 0 && (errno == EINTR || errno == EAGAIN))
1194 return 0;
1195
1196 pa_log("write(): %s", pa_cstrerror(errno));
1197 return -1;
1198 }
1199
1200 c->write_data_index += (size_t) r;
1201 if (c->write_data_index >= c->write_data_length)
1202 c->write_data_length = c->write_data_index = 0;
1203
1204 } else if (c->state == ESD_STREAMING_DATA && c->source_output) {
1205 pa_memchunk chunk;
1206 ssize_t r;
1207 void *p;
1208
1209 if (pa_memblockq_peek(c->output_memblockq, &chunk) < 0)
1210 return 0;
1211
1212 pa_assert(chunk.memblock);
1213 pa_assert(chunk.length);
1214
1215 p = pa_memblock_acquire(chunk.memblock);
1216 r = pa_iochannel_write(c->io, (uint8_t*) p+chunk.index, chunk.length);
1217 pa_memblock_release(chunk.memblock);
1218
1219 pa_memblock_unref(chunk.memblock);
1220
1221 if (r < 0) {
1222
1223 if (r < 0 && (errno == EINTR || errno == EAGAIN))
1224 return 0;
1225
1226 pa_log("write(): %s", pa_cstrerror(errno));
1227 return -1;
1228 }
1229
1230 pa_memblockq_drop(c->output_memblockq, (size_t) r);
1231 }
1232
1233 return 0;
1234 }
1235
1236 static void do_work(connection *c) {
1237 connection_assert_ref(c);
1238
1239 c->protocol->core->mainloop->defer_enable(c->defer_event, 0);
1240
1241 if (c->dead)
1242 return;
1243
1244 if (pa_iochannel_is_readable(c->io))
1245 if (do_read(c) < 0)
1246 goto fail;
1247
1248 if (c->state == ESD_STREAMING_DATA && !c->sink_input && pa_iochannel_is_hungup(c->io))
1249 /* In case we are in capture mode we will never call read()
1250 * on the socket, hence we need to detect the hangup manually
1251 * here, instead of simply waiting for read() to return 0. */
1252 goto fail;
1253
1254 if (pa_iochannel_is_writable(c->io))
1255 if (do_write(c) < 0)
1256 goto fail;
1257
1258 return;
1259
1260 fail:
1261
1262 if (c->state == ESD_STREAMING_DATA && c->sink_input) {
1263 c->dead = TRUE;
1264
1265 pa_iochannel_free(c->io);
1266 c->io = NULL;
1267
1268 pa_asyncmsgq_post(c->sink_input->sink->asyncmsgq, PA_MSGOBJECT(c->sink_input), SINK_INPUT_MESSAGE_DISABLE_PREBUF, NULL, 0, NULL, NULL);
1269 } else
1270 connection_unlink(c);
1271 }
1272
1273 static void io_callback(pa_iochannel*io, void *userdata) {
1274 connection *c = CONNECTION(userdata);
1275
1276 connection_assert_ref(c);
1277 pa_assert(io);
1278
1279 do_work(c);
1280 }
1281
1282 static void defer_callback(pa_mainloop_api*a, pa_defer_event *e, void *userdata) {
1283 connection *c = CONNECTION(userdata);
1284
1285 connection_assert_ref(c);
1286 pa_assert(e);
1287
1288 do_work(c);
1289 }
1290
1291 static int connection_process_msg(pa_msgobject *o, int code, void*userdata, int64_t offset, pa_memchunk *chunk) {
1292 connection *c = CONNECTION(o);
1293 connection_assert_ref(c);
1294
1295 if (!c->protocol)
1296 return -1;
1297
1298 switch (code) {
1299 case CONNECTION_MESSAGE_REQUEST_DATA:
1300 do_work(c);
1301 break;
1302
1303 case CONNECTION_MESSAGE_POST_DATA:
1304 /* pa_log("got data %u", chunk->length); */
1305 pa_memblockq_push_align(c->output_memblockq, chunk);
1306 do_work(c);
1307 break;
1308
1309 case CONNECTION_MESSAGE_UNLINK_CONNECTION:
1310 connection_unlink(c);
1311 break;
1312 }
1313
1314 return 0;
1315 }
1316
1317 /*** sink_input callbacks ***/
1318
1319 /* Called from thread context */
1320 static int sink_input_process_msg(pa_msgobject *o, int code, void *userdata, int64_t offset, pa_memchunk *chunk) {
1321 pa_sink_input *i = PA_SINK_INPUT(o);
1322 connection*c;
1323
1324 pa_sink_input_assert_ref(i);
1325 c = CONNECTION(i->userdata);
1326 connection_assert_ref(c);
1327
1328 switch (code) {
1329
1330 case SINK_INPUT_MESSAGE_POST_DATA: {
1331 pa_assert(chunk);
1332
1333 /* New data from the main loop */
1334 pa_memblockq_push_align(c->input_memblockq, chunk);
1335
1336 if (pa_memblockq_is_readable(c->input_memblockq) && c->playback.underrun) {
1337 pa_log_debug("Requesting rewind due to end of underrun.");
1338 pa_sink_input_request_rewind(c->sink_input, 0, FALSE, TRUE, FALSE);
1339 }
1340
1341 /* pa_log("got data, %u", pa_memblockq_get_length(c->input_memblockq)); */
1342
1343 return 0;
1344 }
1345
1346 case SINK_INPUT_MESSAGE_DISABLE_PREBUF:
1347 pa_memblockq_prebuf_disable(c->input_memblockq);
1348 return 0;
1349
1350 case PA_SINK_INPUT_MESSAGE_GET_LATENCY: {
1351 pa_usec_t *r = userdata;
1352
1353 *r = pa_bytes_to_usec(pa_memblockq_get_length(c->input_memblockq), &c->sink_input->sample_spec);
1354
1355 /* Fall through, the default handler will add in the extra
1356 * latency added by the resampler */
1357 }
1358
1359 default:
1360 return pa_sink_input_process_msg(o, code, userdata, offset, chunk);
1361 }
1362 }
1363
1364 /* Called from thread context */
1365 static int sink_input_pop_cb(pa_sink_input *i, size_t length, pa_memchunk *chunk) {
1366 connection*c;
1367
1368 pa_sink_input_assert_ref(i);
1369 c = CONNECTION(i->userdata);
1370 connection_assert_ref(c);
1371 pa_assert(chunk);
1372
1373 if (pa_memblockq_peek(c->input_memblockq, chunk) < 0) {
1374
1375 c->playback.underrun = TRUE;
1376
1377 if (c->dead && pa_sink_input_safe_to_remove(i))
1378 pa_asyncmsgq_post(pa_thread_mq_get()->outq, PA_MSGOBJECT(c), CONNECTION_MESSAGE_UNLINK_CONNECTION, NULL, 0, NULL, NULL);
1379
1380 return -1;
1381 } else {
1382 size_t m;
1383
1384 chunk->length = PA_MIN(length, chunk->length);
1385
1386 c->playback.underrun = FALSE;
1387
1388 pa_memblockq_drop(c->input_memblockq, chunk->length);
1389 m = pa_memblockq_pop_missing(c->input_memblockq);
1390
1391 if (m > 0)
1392 if (pa_atomic_add(&c->playback.missing, (int) m) <= 0)
1393 pa_asyncmsgq_post(pa_thread_mq_get()->outq, PA_MSGOBJECT(c), CONNECTION_MESSAGE_REQUEST_DATA, NULL, 0, NULL, NULL);
1394
1395 return 0;
1396 }
1397 }
1398
1399 /* Called from thread context */
1400 static void sink_input_process_rewind_cb(pa_sink_input *i, size_t nbytes) {
1401 connection *c;
1402
1403 pa_sink_input_assert_ref(i);
1404 c = CONNECTION(i->userdata);
1405 connection_assert_ref(c);
1406
1407 /* If we are in an underrun, then we don't rewind */
1408 if (i->thread_info.underrun_for > 0)
1409 return;
1410
1411 pa_memblockq_rewind(c->input_memblockq, nbytes);
1412 }
1413
1414 /* Called from thread context */
1415 static void sink_input_update_max_rewind_cb(pa_sink_input *i, size_t nbytes) {
1416 connection *c;
1417
1418 pa_sink_input_assert_ref(i);
1419 c = CONNECTION(i->userdata);
1420 connection_assert_ref(c);
1421
1422 pa_memblockq_set_maxrewind(c->input_memblockq, nbytes);
1423 }
1424
1425 static void sink_input_kill_cb(pa_sink_input *i) {
1426 pa_sink_input_assert_ref(i);
1427
1428 connection_unlink(CONNECTION(i->userdata));
1429 }
1430
1431 /*** source_output callbacks ***/
1432
1433 /* Called from thread context */
1434 static void source_output_push_cb(pa_source_output *o, const pa_memchunk *chunk) {
1435 connection *c;
1436
1437 pa_source_output_assert_ref(o);
1438 c = CONNECTION(o->userdata);
1439 pa_assert(c);
1440 pa_assert(chunk);
1441
1442 pa_asyncmsgq_post(pa_thread_mq_get()->outq, PA_MSGOBJECT(c), CONNECTION_MESSAGE_POST_DATA, NULL, 0, chunk, NULL);
1443 }
1444
1445 static void source_output_kill_cb(pa_source_output *o) {
1446 pa_source_output_assert_ref(o);
1447
1448 connection_unlink(CONNECTION(o->userdata));
1449 }
1450
1451 static pa_usec_t source_output_get_latency_cb(pa_source_output *o) {
1452 connection*c;
1453
1454 pa_source_output_assert_ref(o);
1455 c = CONNECTION(o->userdata);
1456 pa_assert(c);
1457
1458 return pa_bytes_to_usec(pa_memblockq_get_length(c->output_memblockq), &c->source_output->sample_spec);
1459 }
1460
1461 /*** entry points ***/
1462
1463 static void auth_timeout(pa_mainloop_api *m, pa_time_event *e, const struct timeval *t, void *userdata) {
1464 connection *c = CONNECTION(userdata);
1465
1466 pa_assert(m);
1467 connection_assert_ref(c);
1468 pa_assert(c->auth_timeout_event == e);
1469
1470 if (!c->authorized)
1471 connection_unlink(c);
1472 }
1473
1474 void pa_esound_protocol_connect(pa_esound_protocol *p, pa_iochannel *io, pa_esound_options *o) {
1475 connection *c;
1476 char pname[128];
1477 pa_client_new_data data;
1478 pa_client *client;
1479
1480 pa_assert(p);
1481 pa_assert(io);
1482 pa_assert(o);
1483
1484 if (pa_idxset_size(p->connections)+1 > MAX_CONNECTIONS) {
1485 pa_log("Warning! Too many connections (%u), dropping incoming connection.", MAX_CONNECTIONS);
1486 pa_iochannel_free(io);
1487 return;
1488 }
1489
1490 pa_client_new_data_init(&data);
1491 data.module = o->module;
1492 data.driver = __FILE__;
1493 pa_iochannel_socket_peer_to_string(io, pname, sizeof(pname));
1494 pa_proplist_setf(data.proplist, PA_PROP_APPLICATION_NAME, "EsounD client (%s)", pname);
1495 pa_proplist_sets(data.proplist, "esound-protocol.peer", pname);
1496 client = pa_client_new(p->core, &data);
1497 pa_client_new_data_done(&data);
1498
1499 if (!client)
1500 return;
1501
1502 c = pa_msgobject_new(connection);
1503 c->parent.parent.free = connection_free;
1504 c->parent.process_msg = connection_process_msg;
1505 c->protocol = p;
1506 c->io = io;
1507 pa_iochannel_set_callback(c->io, io_callback, c);
1508
1509 c->client = client;
1510 c->client->kill = client_kill_cb;
1511 c->client->userdata = c;
1512
1513 c->options = pa_esound_options_ref(o);
1514 c->authorized = FALSE;
1515 c->swap_byte_order = FALSE;
1516 c->dead = FALSE;
1517
1518 c->read_data_length = 0;
1519 c->read_data = pa_xmalloc(c->read_data_alloc = proto_map[ESD_PROTO_CONNECT].data_length);
1520
1521 c->write_data_length = c->write_data_index = c->write_data_alloc = 0;
1522 c->write_data = NULL;
1523
1524 c->state = ESD_NEEDS_REQDATA;
1525 c->request = ESD_PROTO_CONNECT;
1526
1527 c->sink_input = NULL;
1528 c->input_memblockq = NULL;
1529
1530 c->source_output = NULL;
1531 c->output_memblockq = NULL;
1532
1533 c->playback.current_memblock = NULL;
1534 c->playback.memblock_index = 0;
1535 c->playback.underrun = TRUE;
1536 pa_atomic_store(&c->playback.missing, 0);
1537
1538 pa_memchunk_reset(&c->scache.memchunk);
1539 c->scache.name = NULL;
1540
1541 c->original_name = NULL;
1542
1543 if (o->auth_anonymous) {
1544 pa_log_info("Client authenticated anonymously.");
1545 c->authorized = TRUE;
1546 }
1547
1548 if (!c->authorized &&
1549 o->auth_ip_acl &&
1550 pa_ip_acl_check(o->auth_ip_acl, pa_iochannel_get_recv_fd(io)) > 0) {
1551
1552 pa_log_info("Client authenticated by IP ACL.");
1553 c->authorized = TRUE;
1554 }
1555
1556 if (!c->authorized)
1557 c->auth_timeout_event = pa_core_rttime_new(p->core, pa_rtclock_now() + AUTH_TIMEOUT, auth_timeout, c);
1558 else
1559 c->auth_timeout_event = NULL;
1560
1561 c->defer_event = p->core->mainloop->defer_new(p->core->mainloop, defer_callback, c);
1562 p->core->mainloop->defer_enable(c->defer_event, 0);
1563
1564 pa_idxset_put(p->connections, c, &c->index);
1565 }
1566
1567 void pa_esound_protocol_disconnect(pa_esound_protocol *p, pa_module *m) {
1568 connection *c;
1569 void *state = NULL;
1570
1571 pa_assert(p);
1572 pa_assert(m);
1573
1574 while ((c = pa_idxset_iterate(p->connections, &state, NULL)))
1575 if (c->options->module == m)
1576 connection_unlink(c);
1577 }
1578
1579 static pa_esound_protocol* esound_protocol_new(pa_core *c) {
1580 pa_esound_protocol *p;
1581
1582 pa_assert(c);
1583
1584 p = pa_xnew(pa_esound_protocol, 1);
1585 PA_REFCNT_INIT(p);
1586 p->core = c;
1587 p->connections = pa_idxset_new(NULL, NULL);
1588 p->n_player = 0;
1589
1590 pa_assert_se(pa_shared_set(c, "esound-protocol", p) >= 0);
1591
1592 return p;
1593 }
1594
1595 pa_esound_protocol* pa_esound_protocol_get(pa_core *c) {
1596 pa_esound_protocol *p;
1597
1598 if ((p = pa_shared_get(c, "esound-protocol")))
1599 return pa_esound_protocol_ref(p);
1600
1601 return esound_protocol_new(c);
1602 }
1603
1604 pa_esound_protocol* pa_esound_protocol_ref(pa_esound_protocol *p) {
1605 pa_assert(p);
1606 pa_assert(PA_REFCNT_VALUE(p) >= 1);
1607
1608 PA_REFCNT_INC(p);
1609
1610 return p;
1611 }
1612
1613 void pa_esound_protocol_unref(pa_esound_protocol *p) {
1614 connection *c;
1615 pa_assert(p);
1616 pa_assert(PA_REFCNT_VALUE(p) >= 1);
1617
1618 if (PA_REFCNT_DEC(p) > 0)
1619 return;
1620
1621 while ((c = pa_idxset_first(p->connections, NULL)))
1622 connection_unlink(c);
1623
1624 pa_idxset_free(p->connections, NULL, NULL);
1625
1626 pa_assert_se(pa_shared_remove(p->core, "esound-protocol") >= 0);
1627
1628 pa_xfree(p);
1629 }
1630
1631 pa_esound_options* pa_esound_options_new(void) {
1632 pa_esound_options *o;
1633
1634 o = pa_xnew0(pa_esound_options, 1);
1635 PA_REFCNT_INIT(o);
1636
1637 return o;
1638 }
1639
1640 pa_esound_options* pa_esound_options_ref(pa_esound_options *o) {
1641 pa_assert(o);
1642 pa_assert(PA_REFCNT_VALUE(o) >= 1);
1643
1644 PA_REFCNT_INC(o);
1645
1646 return o;
1647 }
1648
1649 void pa_esound_options_unref(pa_esound_options *o) {
1650 pa_assert(o);
1651 pa_assert(PA_REFCNT_VALUE(o) >= 1);
1652
1653 if (PA_REFCNT_DEC(o) > 0)
1654 return;
1655
1656 if (o->auth_ip_acl)
1657 pa_ip_acl_free(o->auth_ip_acl);
1658
1659 if (o->auth_cookie)
1660 pa_auth_cookie_unref(o->auth_cookie);
1661
1662 pa_xfree(o->default_sink);
1663 pa_xfree(o->default_source);
1664
1665 pa_xfree(o);
1666 }
1667
1668 int pa_esound_options_parse(pa_esound_options *o, pa_core *c, pa_modargs *ma) {
1669 pa_bool_t enabled;
1670 const char *acl;
1671
1672 pa_assert(o);
1673 pa_assert(PA_REFCNT_VALUE(o) >= 1);
1674 pa_assert(ma);
1675
1676 if (pa_modargs_get_value_boolean(ma, "auth-anonymous", &o->auth_anonymous) < 0) {
1677 pa_log("auth-anonymous= expects a boolean argument.");
1678 return -1;
1679 }
1680
1681 if ((acl = pa_modargs_get_value(ma, "auth-ip-acl", NULL))) {
1682 pa_ip_acl *ipa;
1683
1684 if (!(ipa = pa_ip_acl_new(acl))) {
1685 pa_log("Failed to parse IP ACL '%s'", acl);
1686 return -1;
1687 }
1688
1689 if (o->auth_ip_acl)
1690 pa_ip_acl_free(o->auth_ip_acl);
1691
1692 o->auth_ip_acl = ipa;
1693 }
1694
1695 enabled = TRUE;
1696 if (pa_modargs_get_value_boolean(ma, "auth-cookie-enabled", &enabled) < 0) {
1697 pa_log("auth-cookie-enabled= expects a boolean argument.");
1698 return -1;
1699 }
1700
1701 if (o->auth_cookie)
1702 pa_auth_cookie_unref(o->auth_cookie);
1703
1704 if (enabled) {
1705 const char *cn;
1706
1707 /* The new name for this is 'auth-cookie', for compat reasons
1708 * we check the old name too */
1709 if (!(cn = pa_modargs_get_value(ma, "auth-cookie", NULL)))
1710 if (!(cn = pa_modargs_get_value(ma, "cookie", NULL)))
1711 cn = DEFAULT_COOKIE_FILE;
1712
1713 if (!(o->auth_cookie = pa_auth_cookie_get(c, cn, ESD_KEY_LEN)))
1714 return -1;
1715
1716 } else
1717 o->auth_cookie = NULL;
1718
1719 pa_xfree(o->default_sink);
1720 o->default_sink = pa_xstrdup(pa_modargs_get_value(ma, "sink", NULL));
1721
1722 pa_xfree(o->default_source);
1723 o->default_source = pa_xstrdup(pa_modargs_get_value(ma, "source", NULL));
1724
1725 return 0;
1726 }