source: roaraudio/libroar/vs.c @ 4772:09bf371cfb03

Last change on this file since 4772:09bf371cfb03 was 4772:09bf371cfb03, checked in by phi, 13 years ago

removed unused var

File size: 30.8 KB
Line 
1//vs.c:
2
3/*
4 *      Copyright (C) Philipp 'ph3-der-loewe' Schafft - 2010-2011
5 *
6 *  This file is part of libroar a part of RoarAudio,
7 *  a cross-platform sound system for both, home and professional use.
8 *  See README for details.
9 *
10 *  This file is free software; you can redistribute it and/or modify
11 *  it under the terms of the GNU General Public License version 3
12 *  as published by the Free Software Foundation.
13 *
14 *  libroar is distributed in the hope that it will be useful,
15 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
16 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17 *  GNU General Public License for more details.
18 *
19 *  You should have received a copy of the GNU General Public License
20 *  along with this software; see the file COPYING.  If not, write to
21 *  the Free Software Foundation, 51 Franklin Street, Fifth Floor,
22 *  Boston, MA 02110-1301, USA.
23 *
24 *  NOTE for everyone want's to change something and send patches:
25 *  read README and HACKING! There a addition information on
26 *  the license of this document you need to read before you send
27 *  any patches.
28 *
29 *  NOTE for uses of non-GPL (LGPL,...) software using libesd, libartsc
30 *  or libpulse*:
31 *  The libs libroaresd, libroararts and libroarpulse link this lib
32 *  and are therefore GPL. Because of this it may be illigal to use
33 *  them with any software that uses libesd, libartsc or libpulse*.
34 */
35
36#include "libroar.h"
37
38#if defined(ROAR_HAVE_GETSOCKOPT) && defined(ROAR_HAVE_SETSOCKOPT)
39#define _HAVE_SOCKOPT
40#endif
41
42#define FLAG_NONE      0x0000
43#define FLAG_STREAM    0x0001
44#define FLAG_NONBLOCK  0x0002
45#define FLAG_BUFFERED  0x0004
46#define FLAG_CLOSEFILE 0x0008
47#define FLAG_DIR_IN    0x1000
48#define FLAG_DIR_OUT   0x2000
49
50#define _initerr()  do { errno = 0; roar_err_clear(); } while(0)
51#define _seterr(x)  do { if ( error != NULL ) *error = (x); ROAR_DBG("roar_vs_*(*): *error=%s(%i)", roar_vs_strerr((x)), (x)); } while(0)
52#define _seterrre() do { _seterr(roar_errno); } while(0)
53#define _seterrse() do { roar_err_from_errno(); _seterr(roar_errno); } while(0)
54#define _ckvss(ret) do { if ( vss == NULL ) { _seterr(ROAR_ERROR_INVAL); return (ret); } } while(0)
55
56struct roar_vs {
57 int flags;
58 struct roar_connection con_store;
59 struct roar_connection * con;
60 struct roar_stream       stream;
61 struct roar_vio_calls    vio;
62 struct roar_audio_info   info;
63 size_t                   readc, writec;
64 int                      mixerid;
65 int                      first_primid;
66 struct roar_buffer     * readbuffer, * writebuffer;
67 struct roar_vio_calls    file_store;
68 struct roar_vio_calls  * file;
69 struct roar_buffer     * readring, * writering;
70#ifdef _HAVE_SOCKOPT
71 struct {
72  float target;
73  float window;
74  float minlag;
75  float p;
76 } latc;
77#endif
78};
79
80static int _roar_vs_find_first_prim(roar_vs_t * vss);
81
82const char * roar_vs_strerr(int error) {
83 const struct {
84  int err;
85  const char * msg;
86 } msgs[] = {
87  {ROAR_ERROR_NONE,        "No error"},
88  {ROAR_ERROR_PERM,        "Operation not permitted"},
89  {ROAR_ERROR_NOENT,       "No such object, file or directory"},
90  {ROAR_ERROR_BADMSG,      "Bad message"},
91  {ROAR_ERROR_BUSY,        "Device or resource busy"},
92  {ROAR_ERROR_CONNREFUSED, "Connection refused"},
93  {ROAR_ERROR_NOSYS,       "Function not implemented"},
94  {ROAR_ERROR_NOTSUP,      "Operation not supported"},
95  {ROAR_ERROR_PIPE,        "Broken pipe"},
96  {ROAR_ERROR_PROTO,       "Protocol error"},
97  {ROAR_ERROR_RANGE,       "Result too large or parameter out of range"},
98  {ROAR_ERROR_MSGSIZE,     "Message too long"},
99  {ROAR_ERROR_NOMEM,       "Not enough space"},
100  {ROAR_ERROR_INVAL,       "Invalid argument"},
101  {-1, NULL}
102 };
103 int i;
104
105 for (i = 0; msgs[i].msg != NULL; i++)
106  if ( msgs[i].err == error )
107   return msgs[i].msg;
108
109 return "(unknown)";
110}
111
112static roar_vs_t * roar_vs_init(int * error) {
113 roar_vs_t * vss = roar_mm_malloc(sizeof(roar_vs_t));
114
115 if ( vss == NULL ) {
116  _seterrse();
117  return NULL;
118 }
119
120 memset(vss, 0, sizeof(roar_vs_t));
121
122 vss->mixerid      = -1;
123 vss->first_primid = -1;
124
125#ifdef _HAVE_SOCKOPT
126 vss->latc.target = -2.; // must be less than latc.minlag!
127 vss->latc.window = -1.;
128 vss->latc.minlag = -1.;
129 vss->latc.p      =  0.005;
130#endif
131
132 return vss;
133}
134
135roar_vs_t * roar_vs_new_from_con(struct roar_connection * con, int * error) {
136 roar_vs_t * vss = roar_vs_init(error);
137
138 if ( vss == NULL )
139  return NULL;
140
141 vss->con = con;
142
143 return vss;
144}
145
146roar_vs_t * roar_vs_new(const char * server, const char * name, int * error) {
147 roar_vs_t * vss = roar_vs_init(error);
148 int ret;
149
150 if ( vss == NULL )
151  return NULL;
152
153 vss->con = &(vss->con_store);
154
155 _initerr();
156
157 ret = roar_simple_connect(vss->con, (char*)server, (char*)name);
158
159 if ( ret == -1 ) {
160  roar_vs_close(vss, ROAR_VS_TRUE, NULL);
161  _seterrre();
162  return NULL;
163 }
164
165 return vss;
166}
167
168int roar_vs_stream(roar_vs_t * vss, const struct roar_audio_info * info, int dir, int * error) {
169 struct roar_stream_info sinfo;
170 int ret;
171
172 _ckvss(-1);
173
174 if ( vss->flags & FLAG_STREAM ) {
175  _seterr(ROAR_ERROR_INVAL);
176  return -1;
177 }
178
179 _initerr();
180
181 if ( info != &(vss->info) )
182  memcpy(&(vss->info), info, sizeof(struct roar_audio_info));
183
184 ret = roar_vio_simple_new_stream_obj(&(vss->vio), vss->con, &(vss->stream),
185                                      info->rate, info->channels, info->bits, info->codec,
186                                      dir
187                                     );
188
189 if ( ret == -1 ) {
190  _seterrre();
191  return -1;
192 }
193
194 if ( roar_stream_get_info(vss->con, &(vss->stream), &sinfo) != -1 ) {
195  // TODO: fix this:
196  // as we currently do not support to select mixer we just check if we hit the
197  // right one.
198  if ( vss->mixerid != -1 && vss->mixerid != sinfo.mixer ) {
199   _seterr(ROAR_ERROR_INVAL); // TODO: should we maybe use a diffrent value?
200   roar_vio_close(&(vss->vio));
201   return -1;
202  }
203
204  vss->mixerid = sinfo.mixer;
205  _roar_vs_find_first_prim(vss);
206 }
207
208 vss->flags |= FLAG_STREAM;
209
210 switch (dir) {
211  case ROAR_DIR_PLAY: vss->flags |= FLAG_DIR_OUT; break;
212 }
213
214 return 0;
215}
216
217roar_vs_t * roar_vs_new_simple(const char * server, const char * name, int rate, int channels, int codec, int bits, int dir, int * error) {
218 roar_vs_t * vss = roar_vs_new(server, name, error);
219 int ret;
220
221 if (vss == NULL)
222  return NULL;
223
224 memset(&(vss->info), 0, sizeof(vss->info));
225
226 vss->info.rate     = rate;
227 vss->info.channels = channels;
228 vss->info.codec    = codec;
229 vss->info.bits     = bits;
230
231 ret = roar_vs_stream(vss, &(vss->info), dir, error);
232
233 if (ret == -1) {
234  roar_vs_close(vss, ROAR_VS_TRUE, NULL);
235  return NULL;
236 }
237
238 return vss;
239}
240
241int roar_vs_file(roar_vs_t * vss, struct roar_vio_calls * vio, int closefile, int * error) {
242 _ckvss(-1);
243
244 if ( vio == NULL || (closefile != ROAR_VS_TRUE && closefile != ROAR_VS_FALSE)) {
245  _seterr(ROAR_ERROR_INVAL);
246  return -1;
247 }
248
249 if ( vss->file != NULL ) {
250  _seterr(ROAR_ERROR_INVAL);
251  return -1;
252 }
253
254 vss->file = vio;
255 if ( closefile == ROAR_VS_TRUE )
256  vss->flags |= FLAG_CLOSEFILE;
257
258 return 0;
259}
260
261int roar_vs_file_simple(roar_vs_t * vss, char * filename, int * error) {
262 struct roar_vio_defaults def;
263 struct roar_vio_calls * file;
264 char buf[64];
265 ssize_t ret;
266 int dir = O_RDONLY;
267 int codec = -1;
268 const char * content_type;
269
270 _ckvss(-1);
271
272 if ( vss->file != NULL ) {
273  _seterr(ROAR_ERROR_INVAL);
274  return -1;
275 }
276
277 if ( vss->flags & FLAG_STREAM ) {
278  switch (vss->flags & (FLAG_DIR_IN|FLAG_DIR_OUT)) {
279   case FLAG_DIR_IN:  dir = O_WRONLY; break;
280   case FLAG_DIR_OUT: dir = O_RDONLY; break;
281   case FLAG_DIR_IN|FLAG_DIR_OUT: dir = O_RDWR; break;
282   default:
283     _seterr(ROAR_ERROR_INVAL);
284     return -1;
285  }
286 }
287
288 file = &(vss->file_store);
289
290 _initerr();
291
292 if ( roar_vio_dstr_init_defaults(&def, ROAR_VIO_DEF_TYPE_NONE, dir, 0644) == -1 ) {
293  _seterrre();
294  return -1;
295 }
296
297 if ( roar_vio_open_dstr(file, filename, &def, 1) == -1 ) {
298  _seterrre();
299  return -1;
300 }
301
302 if ( !(vss->flags & FLAG_STREAM) ) {
303  if ( roar_vio_ctl(file, ROAR_VIO_CTL_GET_MIMETYPE, &content_type) != -1 ) {
304   codec = roar_mime2codec(content_type);
305  }
306
307  if ( codec == -1 ) {
308   ret = roar_vio_read(file, buf, sizeof(buf));
309
310   codec = roar_file_codecdetect(buf, ret);
311
312   if ( codec == -1 ) {
313    roar_vio_close(file);
314    _seterr(ROAR_ERROR_INVAL); // Other value?
315    return -1;
316   }
317
318   if ( roar_vio_lseek(file, 0, SEEK_SET) != 0 ) {
319    roar_vio_close(file);
320   _seterrre();
321    return -1;
322   }
323  }
324
325  memset(&(vss->info), 0, sizeof(vss->info));
326
327  vss->info.rate     = ROAR_RATE_DEFAULT;
328  vss->info.channels = ROAR_CHANNELS_DEFAULT;
329  vss->info.codec    = codec;
330  vss->info.bits     = ROAR_BITS_DEFAULT;
331
332  ret = roar_vs_stream(vss, &(vss->info), ROAR_DIR_PLAY, error);
333
334  if ( ret == -1 ) {
335   roar_vio_close(file);
336   return -1;
337  }
338 }
339
340 if ( roar_vs_file(vss, file, ROAR_VS_TRUE, error) == -1 ) {
341  roar_vio_close(file);
342  return -1;
343 }
344
345 return 0;
346}
347
348roar_vs_t * roar_vs_new_from_file(const char * server, const char * name, char * filename, int * error) {
349 roar_vs_t * vss = roar_vs_new(server, name, error);
350
351 if ( vss == NULL )
352  return NULL;
353
354 if ( roar_vs_file_simple(vss, filename, error) != 0 ) {
355  roar_vs_close(vss, ROAR_VS_TRUE, NULL);
356  return NULL;
357 }
358
359 return vss;
360}
361
362int roar_vs_buffer(roar_vs_t * vss, size_t buffer, int * error) {
363 _ckvss(-1);
364
365 if ( vss->flags & FLAG_BUFFERED )
366  return -1;
367
368 if ( roar_buffer_ring_new(&(vss->readring), buffer, 0) == -1 ) {
369  _seterrre();
370  return -1;
371 }
372
373 if ( roar_buffer_ring_new(&(vss->writering), buffer, 0) == -1 ) {
374  _seterrre();
375  roar_buffer_free(vss->readring);
376  vss->readring = NULL;
377  return -1;
378 }
379
380 vss->flags |= FLAG_BUFFERED;
381
382 return 0;
383}
384
385int roar_vs_close(roar_vs_t * vss, int killit, int * error) {
386 if ( killit != ROAR_VS_TRUE && killit != ROAR_VS_FALSE ) {
387  _seterr(ROAR_ERROR_INVAL);
388  return -1;
389 }
390
391 _ckvss(-1);
392
393 if ( vss->readbuffer != NULL )
394  roar_buffer_free(vss->readbuffer);
395 if ( vss->writebuffer != NULL )
396  roar_buffer_free(vss->writebuffer);
397
398 if ( vss->readring != NULL )
399  roar_buffer_free(vss->readring);
400 if ( vss->writering != NULL )
401  roar_buffer_free(vss->writering);
402
403 if ( vss->file != NULL && vss->flags & FLAG_CLOSEFILE )
404  roar_vio_close(vss->file);
405
406 if ( vss->flags & FLAG_STREAM ) {
407  if ( killit == ROAR_VS_TRUE ) {
408   roar_kick(vss->con, ROAR_OT_STREAM, roar_stream_get_id(&(vss->stream)));
409  }
410
411  roar_vio_close(&(vss->vio));
412 }
413
414 if ( vss->con == &(vss->con_store) ) {
415  roar_disconnect(vss->con);
416 }
417
418 roar_mm_free(vss);
419 return 0;
420}
421
422static ssize_t roar_vs_write_direct(roar_vs_t * vss, const void * buf, size_t len, int * error) {
423 ssize_t ret = roar_vio_write(&(vss->vio), (void*)buf, len);
424
425 if ( ret == -1 ) {
426#ifdef EAGAIN
427  if ( errno == EAGAIN )
428   return 0;
429#endif
430
431#ifdef EWOULDBLOCK
432  if ( errno == EWOULDBLOCK )
433   return 0;
434#endif
435
436  _seterrre();
437 } else {
438  if ( !(vss->flags & FLAG_BUFFERED) ) {
439   //printf("A: vss->writec=%zu, ret=%zi\n", vss->writec, ret);
440   vss->writec += ret;
441  }
442 }
443
444 //printf("B: vss->writec=%zu, ret=%zi\n", vss->writec, ret);
445 return ret;
446}
447
448ssize_t roar_vs_write(roar_vs_t * vss, const void * buf, size_t len, int * error) {
449 ssize_t ret;
450 size_t writelen;
451
452 _ckvss(-1);
453
454 if ( !(vss->flags & FLAG_STREAM) ) {
455  _seterr(ROAR_ERROR_INVAL);
456  return -1;
457 }
458
459 _initerr();
460
461 if ( vss->flags & FLAG_BUFFERED ) {
462  writelen = len;
463
464  if ( roar_buffer_ring_write(vss->writering, (void*)buf, &writelen) == -1 ) {
465   _seterrre();
466   return -1;
467  }
468
469  ret = writelen;
470  vss->writec += ret;
471 } else {
472  ret = roar_vs_write_direct(vss, buf, len, error);
473 }
474
475 return ret;
476}
477
478ssize_t roar_vs_read (roar_vs_t * vss,       void * buf, size_t len, int * error) {
479 ssize_t ret;
480
481 _ckvss(-1);
482
483 if ( !(vss->flags & FLAG_STREAM) ) {
484  _seterr(ROAR_ERROR_INVAL);
485  return -1;
486 }
487
488 _initerr();
489
490 ret = roar_vio_read(&(vss->vio), buf, len);
491
492 if ( ret == -1 ) {
493  _seterrre();
494 } else {
495  vss->readc += ret;
496 }
497
498 return ret;
499}
500
501int     roar_vs_sync (roar_vs_t * vss, int wait, int * error) {
502 struct roar_event waits, triggered;
503
504 _ckvss(-1);
505
506 if ( !(vss->flags & FLAG_STREAM) ) {
507  _seterr(ROAR_ERROR_INVAL);
508  return -1;
509 }
510
511 if ( wait != ROAR_VS_NOWAIT && wait != ROAR_VS_WAIT ) {
512  _seterr(ROAR_ERROR_INVAL);
513  return -1;
514 }
515
516 _initerr();
517
518 if ( roar_vio_sync(&(vss->vio)) == -1 ) {
519  _seterrre();
520  return -1;
521 }
522
523 if ( wait == ROAR_VS_WAIT ) {
524  memset(&waits, 0, sizeof(waits));
525  waits.event       = ROAR_OE_STREAM_XRUN;
526  waits.emitter     = -1;
527  waits.target      = roar_stream_get_id(&(vss->stream));
528  waits.target_type = ROAR_OT_STREAM;
529
530  if ( roar_wait(vss->con, &triggered, &waits, 1) == -1 ) {
531   _seterrre();
532   return -1;
533  }
534 }
535
536 return 0;
537}
538
539int     roar_vs_blocking (roar_vs_t * vss, int val, int * error) {
540 int old = -1;
541
542 _ckvss(-1);
543
544  if ( !(vss->flags & FLAG_STREAM) ) {
545  _seterr(ROAR_ERROR_INVAL);
546  return -1;
547 }
548
549 old = vss->flags & FLAG_NONBLOCK ? ROAR_VS_FALSE : ROAR_VS_TRUE;
550
551 _initerr();
552
553 switch (val) {
554  case ROAR_VS_TRUE:
555    if ( roar_vio_nonblock(&(vss->vio), ROAR_SOCKET_BLOCK) == -1 ) {
556     _seterrre();
557     return -1;
558    }
559    vss->flags |= FLAG_NONBLOCK;
560    vss->flags -= FLAG_NONBLOCK;
561    return old;
562   break;
563  case ROAR_VS_FALSE:
564    if ( roar_vio_nonblock(&(vss->vio), ROAR_SOCKET_NONBLOCK) == -1 ) {
565     _seterrre();
566     return -1;
567    }
568    vss->flags |= FLAG_NONBLOCK;
569    return old;
570   break;
571  case ROAR_VS_TOGGLE:
572    if ( old == ROAR_VS_TRUE ) {
573     return roar_vs_blocking(vss, ROAR_VS_FALSE, error);
574    } else {
575     return roar_vs_blocking(vss, ROAR_VS_TRUE, error);
576    }
577   break;
578  case ROAR_VS_ASK:
579    return old;
580   break;
581 }
582
583 _seterr(ROAR_ERROR_INVAL);
584 return -1;
585}
586
587static int _roar_vs_find_first_prim(roar_vs_t * vss) {
588 struct roar_stream stream;
589 struct roar_stream_info info;
590 int id[ROAR_STREAMS_MAX];
591 int num;
592 int i;
593
594 if ( vss->first_primid != -1 )
595  return vss->first_primid;
596
597 if ( vss->mixerid == -1 )
598  return -1;
599
600 if ( (num = roar_list_streams(vss->con, id, ROAR_STREAMS_MAX)) == -1 ) {
601  return -1;
602 }
603
604 for (i = 0; i < num; i++) {
605  if ( roar_get_stream(vss->con, &stream, id[i]) == -1 )
606   continue;
607
608  if ( stream.dir != ROAR_DIR_OUTPUT )
609   continue;
610
611  if ( roar_stream_get_info(vss->con, &stream, &info) == -1 )
612   continue;
613
614  if ( info.mixer == vss->mixerid ) {
615   vss->first_primid = id[i];
616   return id[i];
617  }
618 }
619
620 return -1;
621}
622
623ssize_t roar_vs_position(roar_vs_t * vss, int backend, int * error) {
624 struct roar_stream stream;
625 struct roar_stream      out_stream;
626 struct roar_stream_info out_info;
627 size_t offset = 0;
628
629 _ckvss(-1);
630
631 if ( !(vss->flags & FLAG_STREAM) ) {
632  _seterr(ROAR_ERROR_INVAL);
633  return -1;
634 }
635
636 _initerr();
637
638 if ( roar_get_stream(vss->con, &stream, roar_stream_get_id(&(vss->stream))) == -1 ) {
639  _seterrre();
640  return -1;
641 }
642
643 if ( backend == ROAR_VS_BACKEND_DEFAULT ) {
644  backend = ROAR_VS_BACKEND_FIRST;
645 }
646
647 switch (backend) {
648  case ROAR_VS_BACKEND_NONE:
649    return stream.pos;
650   break;
651  case ROAR_VS_BACKEND_FIRST:
652    if ( vss->first_primid == -1 ) {
653     _seterr(ROAR_ERROR_UNKNOWN);
654     return -1;
655    }
656
657    backend = vss->first_primid;
658   break;
659  default:
660    if ( backend < 0 ) {
661     _seterr(ROAR_ERROR_INVAL);
662     return -1;
663    }
664   break;
665 }
666
667
668 if ( backend >= 0 ) {
669  roar_stream_new_by_id(&out_stream, backend);
670
671  if ( roar_stream_get_info(vss->con, &out_stream, &out_info) == -1 ) {
672   _seterrre();
673   return -1;
674  }
675
676  offset  = out_info.delay * vss->info.rate;
677  offset /= 1000000;
678 }
679
680 return stream.pos + offset;
681}
682
683#ifdef _HAVE_SOCKOPT
684static void roar_vs_latency_managed(roar_vs_t * vss, roar_mus_t lat) {
685 struct roar_vio_sysio_sockopt sockopt;
686 float tmp = ((float)lat/1000.0) - vss->latc.target;
687 int val;
688
689 tmp *= vss->latc.p;
690
691 sockopt.level   = SOL_SOCKET;
692 sockopt.optname = SO_SNDBUF;
693 sockopt.optval  = &val;
694 sockopt.optlen  = sizeof(val);
695
696 roar_vio_ctl(&(vss->vio), ROAR_VIO_CTL_GET_SYSIO_SOCKOPT, &sockopt);
697
698 val /= 2;
699
700 tmp = 1.0 - tmp;
701
702 val = (float)val*tmp;
703
704 sockopt.optlen  = sizeof(val);
705
706 roar_vio_ctl(&(vss->vio), ROAR_VIO_CTL_SET_SYSIO_SOCKOPT, &sockopt);
707}
708#endif
709
710roar_mus_t roar_vs_latency(roar_vs_t * vss, int backend, int * error) {
711 ssize_t pos  = roar_vs_position(vss, backend, error);
712 ssize_t bps;  // byte per sample
713 size_t  lioc; // local IO (byte) counter
714 size_t  lpos; // local possition
715 signed long long int lag;
716
717// printf("pos=%zi\n", pos);
718
719 _initerr();
720
721 _ckvss(-1);
722
723 if (pos == -1) {
724  _seterrre();
725  return 0;
726 }
727
728 if ( !(vss->flags & FLAG_STREAM) ) {
729  _seterr(ROAR_ERROR_INVAL);
730  return 0;
731 }
732
733 if ( vss->writec == 0 ) {
734  lioc = vss->readc;
735 } else {
736  //printf("writec=%zu\n", vss->writec);
737  lioc = vss->writec;
738 }
739
740 bps = roar_info2samplesize(&(vss->info));
741
742 if ( bps == -1 ) {
743  _seterrre();
744  return 0;
745 }
746
747 lpos = (lioc*8) / bps;
748
749 //printf("pos=%zi, lpos=%zi, bps=%zi, diff[lpos-pos]=%zi\n", pos, lpos, bps, (lpos - pos));
750
751 lag = (signed long long int)lpos - (signed long long int)pos;
752 lag /= vss->info.channels;
753
754 // we now have the lag in frames
755 // return value are mus
756 // so we need to multiply with 1s/mus and
757 // multiply by 1/rate
758
759 lag *= 1000000; // 1s/mus
760 lag /= vss->info.rate;
761
762 if ( lag == 0 ) {
763  _seterr(ROAR_ERROR_NONE);
764 }
765
766#ifdef _HAVE_SOCKOPT
767 if (vss->latc.target > vss->latc.minlag) {
768  roar_vs_latency_managed(vss, lag);
769 }
770#endif
771
772 return lag;
773}
774
775static int roar_vs_flag(roar_vs_t * vss, int flag, int val, int * error) {
776 struct roar_stream_info info;
777 int old = -1;
778
779 _ckvss(-1);
780
781 if ( !(vss->flags & FLAG_STREAM) ) {
782  _seterr(ROAR_ERROR_INVAL);
783  return -1;
784 }
785
786 if ( val != ROAR_VS_ASK )
787  old = roar_vs_flag(vss, flag, ROAR_VS_ASK, error);
788
789 _initerr();
790
791 switch (val) {
792  case ROAR_VS_TRUE:
793  case ROAR_VS_FALSE:
794    if ( roar_stream_set_flags(vss->con, &(vss->stream), flag,
795                               val == ROAR_VS_TRUE ? ROAR_SET_FLAG : ROAR_RESET_FLAG) == -1 ) {
796     _seterrre();
797     return -1;
798    }
799    return old;
800   break;
801  case ROAR_VS_TOGGLE:
802    return roar_vs_flag(vss, flag, old == ROAR_VS_TRUE ? ROAR_VS_FALSE : ROAR_VS_TRUE, error);
803   break;
804  case ROAR_VS_ASK:
805    if ( roar_stream_get_info(vss->con, &(vss->stream), &info) == -1 ) {
806     _seterrre();
807     return -1;
808    }
809    return info.flags & flag ? ROAR_VS_TRUE : ROAR_VS_FALSE;
810   break;
811 }
812
813 _seterr(ROAR_ERROR_INVAL);
814 return -1;
815}
816
817int     roar_vs_pause(roar_vs_t * vss, int val, int * error) {
818 return roar_vs_flag(vss, ROAR_FLAG_PAUSE, val, error);
819}
820
821int     roar_vs_mute (roar_vs_t * vss, int val, int * error) {
822 return roar_vs_flag(vss, ROAR_FLAG_MUTE, val, error);
823}
824
825static int roar_vs_volume (roar_vs_t * vss, float * c, size_t channels, int * error) {
826 struct roar_mixer_settings mixer;
827 size_t i;
828 register float s;
829 int oldchannels;
830 int mode = ROAR_SET_VOL_ALL;
831
832 _ckvss(-1);
833
834 if ( !(vss->flags & FLAG_STREAM) ) {
835  _seterr(ROAR_ERROR_INVAL);
836  return -1;
837 }
838
839 if ( channels > ROAR_MAX_CHANNELS ) {
840  _seterr(ROAR_ERROR_INVAL);
841  return -1;
842 }
843
844 _initerr();
845
846 if ( roar_get_vol(vss->con, roar_stream_get_id(&(vss->stream)), &mixer, &oldchannels) == -1 ) {
847  _seterrre();
848  return -1;
849 }
850
851 for (i = 0; i < channels; i++) {
852  s = c[i] * 65535.0;
853  if ( s > 66190.0 || s < -655.0 ) {
854   _seterr(ROAR_ERROR_RANGE);
855   return -1;
856  } else if ( s > 65535.0 ) {
857   s = 65535.0;
858  } else if ( s <     0.0 ) {
859   s = 0.0;
860  }
861  mixer.mixer[i] = s;
862 }
863
864 mixer.scale = 65535;
865
866 if ( channels != oldchannels )
867  mode = ROAR_SET_VOL_UNMAPPED;
868
869 if ( roar_set_vol2(vss->con, roar_stream_get_id(&(vss->stream)), &mixer, channels, mode) == 0 )
870  return 0;
871
872 if ( mode == ROAR_SET_VOL_ALL ) {
873  _seterrre();
874  return -1;
875 }
876
877 if ( roar_conv_volume(&mixer, &mixer, oldchannels, channels) == -1 ) {
878  _seterrre();
879  return -1;
880 }
881
882 channels = oldchannels;
883 mode     = ROAR_SET_VOL_ALL;
884
885 if ( roar_set_vol2(vss->con, roar_stream_get_id(&(vss->stream)), &mixer, channels, mode) == -1 ) {
886  _seterrre();
887  return -1;
888 }
889
890 return 0;
891}
892
893int     roar_vs_volume_mono   (roar_vs_t * vss, float c, int * error) {
894 return roar_vs_volume(vss, &c, 1, error);
895}
896
897int     roar_vs_volume_stereo (roar_vs_t * vss, float l, float r, int * error) {
898 float c[2] = {l, r};
899 return roar_vs_volume(vss, c, 2, error);
900}
901
902int     roar_vs_volume_get    (roar_vs_t * vss, float * l, float * r, int * error) {
903 struct roar_mixer_settings mixer;
904 int channels;
905
906 if ( vss == NULL || l == NULL || r == NULL ) {
907  _seterr(ROAR_ERROR_INVAL);
908  return -1;
909 }
910
911 if ( !(vss->flags & FLAG_STREAM) ) {
912  _seterr(ROAR_ERROR_INVAL);
913  return -1;
914 }
915
916 _initerr();
917
918 if ( roar_get_vol(vss->con, roar_stream_get_id(&(vss->stream)), &mixer, &channels) == -1 ) {
919  _seterrre();
920  return -1;
921 }
922
923 if ( channels == 1 )
924  mixer.mixer[1] = mixer.mixer[0];
925
926 *l = mixer.mixer[0] / (float)mixer.scale;
927 *r = mixer.mixer[1] / (float)mixer.scale;
928
929 return 0;
930}
931
932int     roar_vs_meta          (roar_vs_t * vss, struct roar_keyval * kv, size_t len, int * error) {
933 struct roar_meta meta;
934 size_t i;
935 int type;
936 int ret = 0;
937
938 _ckvss(-1);
939
940 if ( !(vss->flags & FLAG_STREAM) ) {
941  _seterr(ROAR_ERROR_INVAL);
942  return -1;
943 }
944
945 meta.type   = ROAR_META_TYPE_NONE;
946 meta.key[0] = 0;
947 meta.value  = NULL;
948
949 _initerr();
950
951 if ( roar_stream_meta_set(vss->con, &(vss->stream), ROAR_META_MODE_CLEAR, &meta) == -1 ) {
952  _seterrre();
953  ret = -1;
954 }
955
956 for (i = 0; i < len; i++) {
957  type = roar_meta_inttype(kv[i].key);
958  meta.type  = type;
959  meta.value = kv[i].value;
960
961  if ( roar_stream_meta_set(vss->con, &(vss->stream), ROAR_META_MODE_ADD, &meta) == -1 ) {
962   _seterrre();
963   ret = -1;
964  }
965 }
966
967 meta.type   = ROAR_META_TYPE_NONE;
968 meta.key[0] = 0;
969 meta.value  = NULL;
970 if ( roar_stream_meta_set(vss->con, &(vss->stream), ROAR_META_MODE_FINALIZE, &meta) == -1 ) {
971  _seterrre();
972  ret = -1;
973 }
974
975 return ret;
976}
977
978int     roar_vs_role          (roar_vs_t * vss, int role, int * error) {
979 _ckvss(-1);
980
981 if ( !(vss->flags & FLAG_STREAM) ) {
982  _seterr(ROAR_ERROR_INVAL);
983  return -1;
984 }
985
986 _initerr();
987
988 if ( roar_stream_set_role(vss->con, &(vss->stream), role) == -1 ) {
989  _seterrre();
990  return -1;
991 }
992
993 return 0;
994}
995
996
997int     roar_vs_iterate       (roar_vs_t * vss, int wait, int * error) {
998 struct roar_vio_select vios[3];
999 struct roar_vio_selecttv rtv = {.sec = 0, .nsec = 1};
1000 size_t len = 0;
1001 ssize_t i;
1002 ssize_t ret;
1003 int can_read = 0, can_write = 0;
1004 int can_flush_stream = 0, can_flush_file = 0;
1005 int is_eof = 0;
1006 void * data;
1007 size_t tmp;
1008
1009 // TODO: fix error handling below.
1010
1011 _ckvss(-1);
1012
1013 if ( wait != ROAR_VS_WAIT && wait != ROAR_VS_NOWAIT ) {
1014  _seterr(ROAR_ERROR_INVAL);
1015  return -1;
1016 }
1017
1018 ROAR_VIO_SELECT_SETVIO(&(vios[len]), &(vss->vio), ((vss->flags & FLAG_DIR_IN  ? ROAR_VIO_SELECT_READ  : 0) |
1019                                                    (vss->flags & FLAG_DIR_OUT ? ROAR_VIO_SELECT_WRITE : 0)));
1020 vios[len].ud.vp = &(vss->vio);
1021 len++;
1022
1023 ROAR_VIO_SELECT_SETVIO(&(vios[len]), roar_get_connection_vio2(vss->con), ROAR_VIO_SELECT_READ);
1024 vios[len].ud.vp = vss->con;
1025 len++;
1026
1027
1028// TODO: FIXME: need to do two select()s so we can sleep more efficently and test for both directions.
1029// for the moment we disable file direction and hope it will not block anyway...
1030/*
1031 if ( vss->file != NULL ) {
1032  ROAR_VIO_SELECT_SETVIO(&(vios[len]), vss->file, ((vss->flags & FLAG_DIR_IN  ? ROAR_VIO_SELECT_WRITE : 0) |
1033                                                   (vss->flags & FLAG_DIR_OUT ? ROAR_VIO_SELECT_READ  : 0)));
1034  vios[len].ud.vp = vss->file;
1035  len++;
1036 }
1037*/
1038
1039 ret = roar_vio_select(vios, len, (wait == ROAR_VS_NOWAIT ? &rtv : NULL), NULL);
1040
1041// part 2 of above hack:
1042// emulate read handle.
1043  if ( vss->file != NULL ) {
1044   vios[len].ud.vp   = vss->file;
1045   vios[len].eventsa = ROAR_VIO_SELECT_WRITE|ROAR_VIO_SELECT_READ;
1046   len++;
1047  }
1048
1049 // no error here nor EOF.
1050 if ( ret == 0 )
1051  return 1;
1052
1053 for (i = 0; i < len; i++) {
1054  if ( !vios[i].eventsa )
1055   continue;
1056
1057  if ( vios[i].ud.vp == &(vss->vio) ) {
1058   if ( vios[i].eventsa & ROAR_VIO_SELECT_READ )
1059    can_read++;
1060
1061   if ( vios[i].eventsa & ROAR_VIO_SELECT_WRITE ) {
1062    can_write++;
1063    can_flush_stream = 1;
1064   }
1065  } else if ( vios[i].ud.vp == vss->con ) {
1066   roar_sync(vss->con);
1067  } else if ( vss->file != NULL && vios[i].ud.vp == vss->file ) {
1068   if ( vios[i].eventsa & ROAR_VIO_SELECT_READ )
1069    can_write++;
1070
1071   if ( vios[i].eventsa & ROAR_VIO_SELECT_WRITE ) {
1072    can_read++;
1073    can_flush_file = 1;
1074   }
1075  }
1076 }
1077
1078 if ( vss->flags & FLAG_BUFFERED ) {
1079  if ( roar_buffer_ring_avail(vss->readring, NULL, &tmp) != -1 )
1080   if ( tmp > 0 )
1081    can_read++;
1082
1083// no check here to just let the read return zero and we do EOF handling.
1084/*
1085  if ( roar_buffer_ring_avail(vss->writering, &tmp, NULL) != -1 )
1086   if ( tmp > 0 )
1087*/
1088    can_write++;
1089 }
1090
1091 ROAR_DBG("roar_vs_iterate(vss=%p, wait=%i, error=%p): can_read=%i, can_write=%i", vss, wait, error, can_read, can_write);
1092
1093 // TODO: FIXME: Need to correct error handling here!
1094
1095 if ( can_flush_stream && vss->writebuffer != NULL ) {
1096  if ( roar_buffer_get_data(vss->writebuffer, &data) == -1 )
1097   return -1;
1098
1099  if ( roar_buffer_get_len(vss->writebuffer, &len) == -1 )
1100   return -1;
1101
1102  ret = roar_vs_write_direct(vss, data, len, error);
1103
1104  if ( ret == -1 ) {
1105   return -1;
1106  } else if ( ret == len ) {
1107   roar_buffer_free(vss->writebuffer);
1108   vss->writebuffer = NULL;
1109  } else {
1110   if ( roar_buffer_set_offset(vss->writebuffer, ret) == -1 )
1111    return -1;
1112  }
1113 }
1114
1115 if ( can_flush_file && vss->readbuffer != NULL ) {
1116  if ( roar_buffer_get_data(vss->readbuffer, &data) == -1 )
1117   return -1;
1118
1119  if ( roar_buffer_get_len(vss->readbuffer, &len) == -1 )
1120   return -1;
1121
1122  ret = roar_vio_write(vss->file, data, len);
1123
1124  if ( ret == -1 ) {
1125   return -1;
1126  } else if ( ret == len ) {
1127   roar_buffer_free(vss->readbuffer);
1128   vss->readbuffer = NULL;
1129  } else {
1130   if ( roar_buffer_set_offset(vss->readbuffer, ret) == -1 )
1131    return -1;
1132  }
1133 }
1134
1135#define _READ_SIZE 1024
1136
1137 if ( can_read == 2 && vss->readbuffer == NULL ) {
1138  if ( roar_buffer_new_data(&(vss->readbuffer), (len = _READ_SIZE), &data) == -1 )
1139   return -1;
1140
1141  ret = roar_vs_read(vss, data, len, error);
1142
1143  if ( ret == -1 ) {
1144   roar_buffer_free(vss->readbuffer);
1145   vss->readbuffer = NULL;
1146   return -1;
1147  } else if ( ret == 0 ) {
1148   is_eof = 1;
1149   roar_buffer_free(vss->readbuffer);
1150   vss->readbuffer = NULL;
1151  } else {
1152   len = ret;
1153   if ( roar_buffer_set_len(vss->readbuffer, len) == -1 )
1154    return -1;
1155
1156   if ( vss->flags & FLAG_BUFFERED ) {
1157    tmp = len;
1158    if ( roar_buffer_ring_write(vss->readring, data, &tmp) == -1 ) {
1159     ret = -1;
1160    } else {
1161     ret = tmp;
1162    }
1163   } else {
1164    ret = roar_vio_write(vss->file, data, len);
1165   }
1166
1167   if ( ret == -1 ) {
1168    return -1;
1169   } else if ( ret == len ) {
1170    roar_buffer_free(vss->readbuffer);
1171    vss->readbuffer = NULL;
1172   } else {
1173    if ( roar_buffer_set_offset(vss->readbuffer, ret) == -1 )
1174     return -1;
1175   }
1176  }
1177 }
1178
1179 if ( can_write == 2 && vss->writebuffer == NULL ) {
1180  if ( roar_buffer_new_data(&(vss->writebuffer), (len = _READ_SIZE), &data) == -1 )
1181   return -1;
1182
1183  if ( vss->flags & FLAG_BUFFERED ) {
1184   tmp = len;
1185   if ( roar_buffer_ring_read(vss->writering, data, &tmp) == -1 ) {
1186    ret = -1;
1187   } else {
1188    ret = tmp;
1189   }
1190  } else {
1191   ret = roar_vio_read(vss->file, data, len);
1192  }
1193
1194  ROAR_DBG("roar_vs_iterate(vss=%p, wait=%i, error=%p): ret=%lli", vss, wait, error, (long long int)ret);
1195
1196  if ( ret == -1 ) {
1197   ROAR_DBG("roar_vs_iterate(vss=%p, wait=%i, error=%p) = ?", vss, wait, error);
1198
1199   roar_buffer_free(vss->writebuffer);
1200   vss->writebuffer = NULL;
1201   return -1;
1202  } else if ( ret == 0 ) {
1203   ROAR_DBG("roar_vs_iterate(vss=%p, wait=%i, error=%p) = ?", vss, wait, error);
1204
1205   is_eof = 1;
1206   roar_buffer_free(vss->writebuffer);
1207   vss->writebuffer = NULL;
1208  } else {
1209   ROAR_DBG("roar_vs_iterate(vss=%p, wait=%i, error=%p) = ?", vss, wait, error);
1210
1211   if ( len != ret ) {
1212    len = ret;
1213    if ( roar_buffer_set_len(vss->writebuffer, len) == -1 )
1214     return -1;
1215   }
1216
1217   ROAR_DBG("roar_vs_iterate(vss=%p, wait=%i, error=%p) = ?", vss, wait, error);
1218
1219   ret = roar_vs_write_direct(vss, data, len, error);
1220
1221   if ( ret == -1 ) {
1222    return -1;
1223   } else if ( ret == len ) {
1224    roar_buffer_free(vss->writebuffer);
1225    vss->writebuffer = NULL;
1226   } else {
1227    if ( roar_buffer_set_offset(vss->writebuffer, ret) == -1 )
1228     return -1;
1229   }
1230  }
1231 }
1232
1233 return is_eof ? 0 : 2;
1234}
1235
1236int     roar_vs_run           (roar_vs_t * vss, int * error) {
1237 int ret;
1238
1239 _ckvss(-1);
1240
1241 while ((ret = roar_vs_iterate(vss, ROAR_VS_WAIT, error)) > 0);
1242
1243 ROAR_DBG("roar_vs_run(vss=%p, error=%p): ret=%i", vss, error, ret);
1244
1245 if ( ret == 0 ) {
1246  // flush buffers:
1247  roar_vs_iterate(vss, ROAR_VS_WAIT, error);
1248 }
1249
1250 if ( roar_vs_sync(vss, ROAR_VS_WAIT, error) == -1 )
1251  return -1;
1252
1253 return ret;
1254}
1255
1256ssize_t roar_vs_get_avail_read(roar_vs_t * vss, int * error) {
1257 size_t len;
1258
1259 _ckvss(-1);
1260
1261 if ( !(vss->flags & FLAG_BUFFERED) ) {
1262  _seterr(ROAR_ERROR_INVAL);
1263  return -1;
1264 }
1265
1266 if ( roar_buffer_ring_avail(vss->readring, &len, NULL) == -1 ) {
1267  _seterrre();
1268  return -1;
1269 }
1270
1271 return len;
1272}
1273
1274ssize_t roar_vs_get_avail_write(roar_vs_t * vss, int * error) {
1275 size_t len;
1276
1277 _ckvss(-1);
1278
1279 if ( !(vss->flags & FLAG_BUFFERED) ) {
1280  _seterr(ROAR_ERROR_INVAL);
1281  return -1;
1282 }
1283
1284 if ( roar_buffer_ring_avail(vss->writering, NULL, &len) == -1 ) {
1285  _seterrre();
1286  return -1;
1287 }
1288
1289 return len;
1290}
1291
1292int     roar_vs_reset_buffer(roar_vs_t * vss, int writering, int readring, int * error) {
1293 _ckvss(-1);
1294
1295 if ( !(vss->flags & FLAG_BUFFERED) ) {
1296  _seterr(ROAR_ERROR_INVAL);
1297  return -1;
1298 }
1299
1300 if ( writering != ROAR_VS_TRUE || writering != ROAR_VS_FALSE ||
1301      readring  != ROAR_VS_TRUE || readring  != ROAR_VS_FALSE ) {
1302  _seterr(ROAR_ERROR_INVAL);
1303  return -1;
1304 }
1305
1306 if ( writering ) {
1307  if ( roar_buffer_ring_reset(vss->writering) == -1 ) {
1308   _seterrre();
1309   return -1;
1310  }
1311 }
1312
1313 if ( readring ) {
1314  if ( roar_buffer_ring_reset(vss->readring) == -1 ) {
1315   _seterrre();
1316   return -1;
1317  }
1318 }
1319
1320 return 0;
1321}
1322
1323int     roar_vs_ctl           (roar_vs_t * vss, roar_vs_ctlcmd cmd, void * argp, int * error) {
1324 _ckvss(-1);
1325
1326 switch (cmd) {
1327  case ROAR_VS_CMD_NOOP:
1328   break;
1329  case ROAR_VS_CMD_SET_MIXER:
1330    vss->mixerid = *(int*)argp;
1331   break;
1332  case ROAR_VS_CMD_GET_MIXER:
1333    *(int*)argp = vss->mixerid;
1334   break;
1335  case ROAR_VS_CMD_SET_FIRST_PRIM:
1336    vss->first_primid = *(int*)argp;
1337   break;
1338  case ROAR_VS_CMD_GET_FIRST_PRIM:
1339    *(int*)argp = vss->first_primid;
1340   break;
1341#ifdef _HAVE_SOCKOPT
1342  case ROAR_VS_CMD_SET_LATC_P:
1343    vss->latc.p = *(float*)argp;
1344   break;
1345  case ROAR_VS_CMD_GET_LATC_P:
1346    *(float*)argp = vss->latc.p;
1347   break;
1348  case ROAR_VS_CMD_SET_LATC_TARGET:
1349    vss->latc.target = *(float*)argp;
1350   break;
1351  case ROAR_VS_CMD_GET_LATC_TARGET:
1352    *(float*)argp = vss->latc.target;
1353   break;
1354  case ROAR_VS_CMD_SET_LATC_WINDOW:
1355    vss->latc.window = *(float*)argp;
1356   break;
1357  case ROAR_VS_CMD_GET_LATC_WINDOW:
1358    *(float*)argp = vss->latc.window;
1359   break;
1360  case ROAR_VS_CMD_SET_LATC_MINLAG:
1361    vss->latc.minlag = *(float*)argp;
1362   break;
1363  case ROAR_VS_CMD_GET_LATC_MINLAG:
1364    *(float*)argp = vss->latc.minlag;
1365   break;
1366#endif
1367// use ifndef here so warnings of unhandled enum values will be shown in DEBUG mode.
1368#ifndef DEBUG
1369  default:
1370    return -1;
1371   break;
1372#endif
1373 }
1374
1375 return 0;
1376}
1377
1378struct roar_connection * roar_vs_connection_obj(roar_vs_t * vss, int * error) {
1379 _ckvss(NULL);
1380
1381 return vss->con;
1382}
1383
1384struct roar_stream     * roar_vs_stream_obj    (roar_vs_t * vss, int * error) {
1385 _ckvss(NULL);
1386
1387 if ( !(vss->flags & FLAG_STREAM) ) {
1388  _seterr(ROAR_ERROR_INVAL);
1389  return NULL;
1390 }
1391
1392 return &(vss->stream);
1393}
1394
1395struct roar_vio_calls  * roar_vs_vio_obj       (roar_vs_t * vss, int * error) {
1396 _ckvss(NULL);
1397
1398 if ( !(vss->flags & FLAG_STREAM) ) {
1399  _seterr(ROAR_ERROR_INVAL);
1400  return NULL;
1401 }
1402
1403 return &(vss->vio);
1404}
1405
1406//ll
Note: See TracBrowser for help on using the repository browser.