source: roaraudio/libroar/buffer.c @ 5603:0577a2d5a9a6

Last change on this file since 5603:0577a2d5a9a6 was 5603:0577a2d5a9a6, checked in by phi, 12 years ago

Added roar_buffer_moveintoqueue() (Closes: #283)

File size: 20.1 KB
Line 
1//buffer.c:
2
3/*
4 *      Copyright (C) Philipp 'ph3-der-loewe' Schafft - 2008-2012
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
38struct roar_buffer_ring {
39 size_t read_pos;
40 size_t write_pos;
41};
42
43struct roar_buffer {
44 size_t               refc;
45 size_t               len;
46 size_t               user_len;
47 int                  flags;
48 void               * data;
49 void               * user_data;
50 union {
51  void                    * vp;
52  int32_t                   i32;
53  struct roar_buffer_ring   ring;
54 }                    meta;
55 int                  type;
56 struct roar_buffer * next;
57};
58
59#define _ckbuf_free(m)  if ( buf == NULL || (m) ) { roar_err_set(ROAR_ERROR_FAULT); return -1; }
60#define _ckbuf(m)       if ( _ckmem_corruption(buf, (m)) == -1 ) return -1;
61
62// if we use the 'inline' keyword here the program segfaults. why?
63static int _ckmem_corruption(volatile struct roar_buffer * buf, int m) {
64 int flags;
65
66 ROAR_DBG("_ckmem_corruption(buf=%p) = ?", buf);
67
68 // we need to recheck here, why?
69 // gcc changes the order of the above macros. why?
70 // this is a strange world.
71 if ( buf == NULL || m ) {
72  ROAR_DBG("_ckmem_corruption(buf=%p) = -1 // FAULT", buf);
73  roar_err_set(ROAR_ERROR_FAULT);
74  return -1;
75 }
76
77 ROAR_DBG("_ckmem_corruption(buf=%p) = ?", buf);
78
79 flags = buf->flags & (ROAR_BUFFER_FLAG_USEABLE|ROAR_BUFFER_FLAG_FREED);
80
81 ROAR_DBG("_ckmem_corruption(buf=%p{.flags=0x%.4x, ...} = ?", buf, buf->flags);
82
83 if ( flags == ROAR_BUFFER_FLAG_USEABLE ) {
84  // seems ok, continue with next check.
85 } else if ( flags == ROAR_BUFFER_FLAG_FREED ) {
86  roar_panic(ROAR_FATAL_ERROR_MEMORY_USED_AFTER_FREE, NULL);
87  roar_err_set(ROAR_ERROR_FAULT);
88  return -1;
89 } else {
90  roar_panic(ROAR_FATAL_ERROR_MEMORY_CORRUPTION, NULL);
91  roar_err_set(ROAR_ERROR_BADCKSUM);
92  return -1;
93 }
94
95 if ( buf->refc == 0 ) {
96  roar_panic(ROAR_FATAL_ERROR_MEMORY_CORRUPTION, NULL);
97  roar_err_set(ROAR_ERROR_FAULT);
98  return -1;
99 }
100
101 return 0;
102}
103
104int roar_buffer_new_data (struct roar_buffer ** buf, size_t len, void ** data) {
105 void * bufdata;
106 int err;
107
108 if ((bufdata = roar_mm_malloc(len)) == NULL) {
109  return -1;
110 }
111
112 if ( roar_buffer_new_no_ma(buf, len, bufdata) == -1 ) {
113  err = roar_error;
114  roar_mm_free(bufdata);
115  roar_err_set(err);
116  return -1;
117 }
118
119 if ( roar_buffer_set_flag(*buf, ROAR_BUFFER_FLAG_NOFREE, ROAR_BUFFER_RESET) == -1 ) {
120  err = roar_error;
121  roar_buffer_free(*buf);
122  roar_mm_free(bufdata);
123  roar_err_set(err);
124  return -1;
125 }
126
127 if ( data != NULL )
128  *data = bufdata;
129
130 return 0;
131}
132
133int roar_buffer_new_no_ma(struct roar_buffer ** buf, size_t len, void * data) { // no internal malloc
134 struct roar_buffer * new;
135
136 ROAR_DBG("buffer_new(buf=%p, len=%i) = ?", buf, len);
137
138 _ckbuf_free(data == NULL)
139
140 if ((new = roar_mm_malloc(sizeof(struct roar_buffer))) == NULL) {
141  *buf = NULL;
142  return -1;
143 }
144
145 new->refc      =  1;
146
147 new->data      = data;
148
149 new->flags     = ROAR_BUFFER_FLAG_NONE|ROAR_BUFFER_FLAG_NOFREE|ROAR_BUFFER_FLAG_USEABLE;
150 new->type      = -1;
151
152 new->user_data = new->data;
153
154 new->next      = NULL;
155
156 new->len       = len;
157 new->user_len  = len;
158 *buf           = new;
159
160 ROAR_DBG("buffer_new(buf=%p, len=%i): New buffer at %p", buf, len, new);
161
162 return 0;
163}
164
165int roar_buffer_ref      (struct roar_buffer *  buf) {
166 _ckbuf(0)
167
168 buf->refc++;
169
170 return 0;
171}
172
173int roar_buffer_unref     (struct roar_buffer * buf) {
174 struct roar_buffer * next, * cur;
175 int flags;
176
177 ROAR_DBG("roar_buffer_unref(buf=%p) = ?", buf);
178
179 _ckbuf_free(0)
180
181 ROAR_DBG("roar_buffer_unref(buf=%p) = ?", buf);
182
183 cur = buf;
184 while (cur != NULL) {
185  flags = cur->flags & (ROAR_BUFFER_FLAG_USEABLE|ROAR_BUFFER_FLAG_FREED);
186  if ( flags == ROAR_BUFFER_FLAG_FREED ) {
187   roar_panic(ROAR_FATAL_ERROR_MEMORY_DOUBLE_FREE, NULL);
188  }
189
190  _ckmem_corruption(cur, 0);
191
192  if ( cur->refc == 0 ) {
193   ROAR_WARN("roar_buffer_unref(buf=%p): Ref counter for buffer at %p is wrong. assuming one.", cur);
194   cur->refc = 1;
195   roar_panic(ROAR_FATAL_ERROR_MEMORY_CORRUPTION, NULL);
196  } else if ( cur->refc > 1 ) {
197   cur->refc--;
198   return 0;
199  }
200
201  ROAR_DBG("roar_buffer_unref(buf=%p) = ?", buf);
202
203  if ( roar_buffer_get_flag(cur, ROAR_BUFFER_FLAG_NOFREE) != 1 )
204   roar_mm_free(cur->data);
205
206  cur->flags = ROAR_BUFFER_FLAG_FREED;
207  next = cur->next;
208  roar_mm_free(cur);
209  cur = next;
210 }
211
212 ROAR_DBG("roar_buffer_unref(buf=%p) = 0", buf);
213 return 0;
214}
215
216int roar_buffer_delete   (struct roar_buffer * buf, struct roar_buffer ** next) {
217 if ( buf == NULL ) {
218  if ( next != NULL )
219   *next = NULL;
220  roar_err_set(ROAR_ERROR_FAULT);
221  return -1;
222 }
223
224 ROAR_DBG("roar_buffer_delete(buf=%p, next=%p) = ?", buf, next);
225
226 if ( next != NULL ) {
227  *next = buf;
228  return roar_buffer_next(next);
229 } else {
230  return roar_buffer_unref(buf);
231 }
232}
233
234int roar_buffer_next     (struct roar_buffer ** buf) {
235 struct roar_buffer * ret;
236
237 if ( buf == NULL || *buf == NULL ) {
238  roar_err_set(ROAR_ERROR_FAULT);
239 }
240
241 ret = (*buf)->next;
242
243 if ( ret != NULL )
244  roar_buffer_ref(ret);
245
246 roar_buffer_unref(*buf);
247
248 *buf = ret;
249
250 return 0;
251}
252
253int roar_buffer_add      (struct roar_buffer * buf, struct roar_buffer *  next) {
254 if ( roar_buffer_ref(next) == -1 )
255  return -1;
256 return roar_buffer_moveinto(buf, &next);
257}
258
259int roar_buffer_moveinto (struct roar_buffer * buf, struct roar_buffer ** next) {
260 unsigned int deep = 0;
261
262 _ckbuf(next == NULL || _ckmem_corruption(*next, 0))
263
264 ROAR_DBG("buffer_add(buf=%p, next=%p) = ?", buf, next);
265 ROAR_DBG("buffer_add(buf=%p, next=%p): *next=%p", buf, next, *next);
266
267 if ( buf->flags & ROAR_BUFFER_FLAG_RING ) {
268  roar_err_set(ROAR_ERROR_INVAL);
269  return -1;
270 }
271
272 if ( buf == *next ) {
273  ROAR_ERR("buffer_add(*): both pointer are of the same destination, This is a error in the application");
274  roar_err_set(ROAR_ERROR_INVAL);
275  return -1;
276 }
277
278 while ( buf->next != NULL ) {
279  ROAR_DBG("buffer_add(*): buf=%p, next=%p (len=%i)", buf, buf->next, buf->user_len);
280//  ROAR_DBG("buffer_add(): buf=%p, buf->next=%p", buf, buf->next);
281  buf = buf->next;
282  deep++;
283
284  if ( buf == *next ) {
285   ROAR_ERR("buffer_add(*): Can not add buffer: loop detected at deep %u. This is a error in the application", deep);
286   // why don't we return here?
287  }
288 }
289
290 buf->next = *next;
291
292 ROAR_DBG("buffer_add(*): adding buffer at deep %u", deep);
293
294 *next = NULL;
295
296 return 0;
297}
298
299int roar_buffer_moveintoqueue(struct roar_buffer ** buf, struct roar_buffer ** next) {
300 if ( buf == NULL || next == NULL ) {
301  roar_err_set(ROAR_ERROR_FAULT);
302  return -1;
303 }
304
305 if ( *buf == NULL ) {
306  *buf = *next;
307  *next = NULL;
308  return 0;
309 } else {
310  return roar_buffer_moveinto(*buf, next);
311 }
312}
313
314int roar_buffer_get_next (struct roar_buffer *  buf, struct roar_buffer ** next) {
315 _ckbuf(0)
316
317 *next = buf->next;
318
319 return roar_buffer_ref(*next);
320}
321
322int roar_buffer_ring_new (struct roar_buffer ** buf, size_t len, int free_running) {
323 struct roar_buffer * n;
324
325 _ckbuf_free(0)
326
327 if ( len == 0 ) {
328  roar_err_set(ROAR_ERROR_RANGE);
329  return -1;
330 }
331
332 // just to be sure:
333 *buf = NULL;
334
335 if ( roar_buffer_new(&n, len) == -1 )
336  return -1;
337
338 n->flags |= ROAR_BUFFER_FLAG_RING;
339
340 if ( free_running )
341  n->flags |= ROAR_BUFFER_FLAG_FREE_RUNNING;
342
343 n->meta.ring.read_pos  = 0;
344 n->meta.ring.write_pos = 0;
345
346 memset(n->data, 0, n->len);
347
348 *buf = n;
349
350 return 0;
351}
352
353int roar_buffer_get_data (struct roar_buffer *  buf, void   ** data) {
354 _ckbuf(data == NULL)
355
356 *data = buf->user_data;
357
358 return 0;
359}
360
361int roar_buffer_get_datalen(struct roar_buffer * buf, void   ** data, size_t * len) {
362 _ckbuf(0)
363
364 if ( data != NULL )
365  *data = buf->user_data;
366 if ( len != NULL )
367 *len = buf->user_len;
368
369 return 0;
370}
371
372int roar_buffer_set_offset (struct roar_buffer *  buf, size_t off) {
373 _ckbuf(0)
374
375 if ( off > buf->user_len ) {
376  roar_err_set(ROAR_ERROR_RANGE);
377  return -1;
378 }
379
380 buf->user_len  -= off;
381 buf->user_data += off;
382
383 return 0;
384}
385
386int roar_buffer_shift_out (struct roar_buffer ** buf, void * data, size_t * len) {
387 size_t todo, cl;
388 struct roar_buffer * cur;
389 void * cd;
390
391 _ckbuf_free(len == NULL || data == NULL);
392
393 if ( *buf == NULL ) {
394  ROAR_DBG("roar_buffer_shift_out(buf=%p, data=%p, len={%lu}) = -1 // Invalid pointer to buffer ring", buf, data, (unsigned long)len);
395  roar_err_set(ROAR_ERROR_FAULT);
396  return -1;
397 }
398
399 todo = *len;
400 cur  = *buf;
401
402 *len = 0;
403
404 while (todo && cur != NULL) {
405  ROAR_DBG("roar_buffer_shift_out(*): todo=%u, cur=%p", (unsigned int) todo, cur);
406
407  _ckmem_corruption(cur, 0);
408
409  if ( roar_buffer_get_len(cur, &cl) == -1 )
410   return -1;
411
412  if ( cl > todo ) {
413   if ( roar_buffer_get_data(cur, &cd) == -1 )
414    return -1;
415
416   cl = todo;
417
418   memcpy(data, cd, cl);
419   todo -= cl;
420   data += cl;
421   *len += cl;
422
423   if ( roar_buffer_set_offset(cur, cl) == -1 )
424    return -1;
425  } else {
426   if ( roar_buffer_get_data(cur, &cd) == -1 )
427    return -1;
428
429   memcpy(data, cd, cl);
430   todo -= cl;
431   data += cl;
432   *len += cl;
433
434   if ( roar_buffer_next(&cur) == -1 )
435    return -1;
436  }
437
438/*
439  if ( cur == NULL )
440   break;
441*/
442 }
443
444 *buf = cur;
445
446 return 0;
447}
448
449int roar_buffer_set_meta (struct roar_buffer * buf, void *  meta) {
450 _ckbuf(0)
451
452 buf->meta.vp = meta;
453
454 return 0;
455}
456
457int roar_buffer_get_meta (struct roar_buffer * buf, void ** meta) {
458 _ckbuf(meta == NULL)
459
460 *meta = buf->meta.vp;
461
462 return 0;
463}
464
465int roar_buffer_set_meta_i32(struct roar_buffer *  buf, int32_t    meta) {
466 _ckbuf(0)
467
468 buf->meta.i32 = meta;
469
470 return 0;
471}
472
473int roar_buffer_get_meta_i32(struct roar_buffer *  buf, int32_t *  meta) {
474 _ckbuf(meta == NULL)
475
476 *meta = buf->meta.i32;
477
478 return 0;
479}
480
481int roar_buffer_set_type    (struct roar_buffer *  buf, int        type) {
482 _ckbuf(0)
483
484 switch (type) {
485  case ROAR_VIO_DFT_RAW:
486  case ROAR_VIO_DFT_PACKET:
487  case ROAR_VIO_DFT_UNFRAMED:
488  case ROAR_VIO_DFT_OGG_PACKET:
489  case ROAR_VIO_DFT_OGG_PAGE:
490   break;
491  default:
492    roar_err_set(ROAR_ERROR_NOTSUP);
493    return -1;
494 }
495
496 buf->type = type;
497
498 return 0;
499}
500
501int roar_buffer_get_type    (struct roar_buffer *  buf, int     *  type) {
502 _ckbuf(type == NULL)
503
504 *type = buf->type;
505
506 return 0;
507}
508
509int roar_buffer_set_len  (struct roar_buffer *  buf, size_t    len) {
510 size_t   totlen;
511 void   * newbuf;
512
513 _ckbuf(0)
514
515 // handle specal case where user length is zero:
516 if ( len && !buf->user_len ) {
517  buf->user_data = buf->data;
518  buf->user_len  = buf->len;
519 }
520
521 if ( len > buf->user_len ) {
522  // we can only enlage a buffer if it's one of our own memory segments
523  if ( buf->flags & ROAR_BUFFER_FLAG_NOFREE )  {
524   roar_err_set(ROAR_ERROR_NOTSUP);
525   return -1;
526  }
527
528  totlen = (buf->len - buf->user_len) + len;
529  newbuf = roar_mm_realloc(buf->data, totlen);
530  if ( newbuf == NULL )
531   return -1;
532
533  buf->user_data = newbuf + (buf->user_data - buf->data);
534  buf->user_len = len;
535  buf->data = newbuf;
536  buf->len  = totlen;
537 } else {
538  buf->user_len = len;
539 }
540
541 return 0;
542}
543
544int roar_buffer_get_len  (struct roar_buffer *  buf, size_t *  len) {
545 _ckbuf(0)
546
547 *len = buf->user_len;
548
549 return 0;
550}
551
552int roar_buffer_set_flag (struct roar_buffer *  buf, int flag, int reset) {
553 _ckbuf(0)
554
555 buf->flags |= flag;
556
557 if ( reset )
558  buf->flags -= flag;
559
560 return 0;
561}
562
563int roar_buffer_get_flag (struct roar_buffer *  buf, int flag) {
564 _ckbuf(0)
565
566 return buf->flags & flag;
567}
568
569int roar_buffer_duplicate (struct roar_buffer *  buf, struct roar_buffer ** copy) {
570 struct roar_buffer *  cur = buf;
571 struct roar_buffer *  new;
572 void * od, * nd;
573 int err;
574
575 _ckbuf(copy == NULL)
576
577 *copy = NULL;
578
579 // TODO:  This function does not handle ring buffers.
580 // FIXME: This function does not error out in case of wrong buffer type in buf.
581 // TODO:  This function does not handle buffer meta data.
582
583 while (cur != NULL) {
584  if ( roar_buffer_new(&new, cur->user_len) == -1 ) {
585   err = roar_error;
586   roar_buffer_free(*copy);
587   roar_err_set(err);
588   return -1;
589  }
590
591  if ( *copy == NULL )
592   *copy = new;
593
594  _LIBROAR_IGNORE_RET(roar_buffer_get_data(cur, &od));
595  _LIBROAR_IGNORE_RET(roar_buffer_get_data(new, &nd));
596  memcpy(nd, od, cur->user_len);
597
598  _LIBROAR_IGNORE_RET(roar_buffer_moveinto(*copy, &new));
599
600  cur = cur->next;
601 }
602
603 return 0;
604}
605
606int roar_buffer_ring_stats (struct roar_buffer *  buf, struct roar_buffer_stats * stats) {
607 ROAR_DBG("roar_buffer_ring_stats(buf=%p, stats=%p) = ?", buf, stats);
608
609 _ckbuf(0)
610
611 ROAR_DBG("roar_buffer_ring_stats(buf=%p, stats=%p) = ?", buf, stats);
612
613 stats->parts        = 0;
614 stats->bytes        = 0;
615 stats->memory_usage = 0;
616
617 while (buf != NULL ) {
618  stats->parts++;
619  stats->bytes        += buf->user_len;
620  stats->memory_usage += buf->len + sizeof(struct roar_buffer);
621  buf = buf->next;
622 }
623
624 return 0;
625}
626
627int roar_buffer_ring_read  (struct roar_buffer *  buf, void * data, size_t * len) {
628 struct roar_buffer_ring * ring;
629 size_t havelen;
630 size_t done;
631 size_t tmp;
632
633 _ckbuf(len == NULL)
634
635 if ( buf == NULL || len == NULL )
636  return -1;
637
638 if ( data == NULL && *len != 0 ) {
639  roar_err_set(ROAR_ERROR_FAULT);
640  return -1;
641 }
642
643 if ( !(buf->flags & ROAR_BUFFER_FLAG_RING) ) {
644  roar_err_set(ROAR_ERROR_TYPEMM);
645  return -1;
646 }
647
648 if ( *len == 0 )
649  return 0;
650
651 // we may handle this later:
652 if ( *len > buf->user_len ) {
653  roar_err_set(ROAR_ERROR_NOTSUP);
654  return -1;
655 }
656
657 if ( (buf->flags & ROAR_BUFFER_FLAG_FREE_RUNNING) ) {
658  if ( buf->meta.ring.read_pos >= buf->user_len )
659   buf->meta.ring.read_pos -= buf->user_len;
660
661  if ( (*len + buf->meta.ring.read_pos) > buf->user_len ) {
662   // wraped mode:
663   memcpy(data, buf->user_data+buf->meta.ring.read_pos, buf->user_len - buf->meta.ring.read_pos);
664   memcpy(data, buf->user_data, *len + buf->meta.ring.read_pos - buf->user_len);
665 
666   buf->meta.ring.read_pos += *len;
667   buf->meta.ring.read_pos -= buf->user_len;
668   return 0;
669  } else {
670   // unwarped mode:
671   memcpy(data, buf->user_data+buf->meta.ring.read_pos, *len);
672   buf->meta.ring.read_pos += *len;
673   return 0;
674  }
675 } else {
676  ring = &(buf->meta.ring);
677
678  if ( ring->read_pos == ring->write_pos ) {
679   *len = 0;
680   return 0;
681  } else if ( ring->read_pos < ring->write_pos ) {
682   havelen = ring->write_pos - ring->read_pos;
683
684   if ( havelen > *len )
685    havelen = *len;
686
687   memcpy(data, buf->user_data+ring->read_pos, havelen);
688   ring->read_pos += havelen;
689
690   *len = havelen;
691   return 0;
692  } else { // write_pos < read_pos
693   done = 0;
694
695   // first pass: use data up to end of buffer
696
697   havelen = buf->user_len - ring->read_pos;
698
699   if ( havelen > *len )
700    havelen = *len;
701
702   memcpy(data, buf->user_data+ring->read_pos, havelen);
703   ring->read_pos += havelen;
704
705   done += havelen;
706
707   if ( ring->read_pos == buf->user_len ) {
708    ring->read_pos = 0;
709   }
710
711   // second pass: use data from strat of buffer to write pointer
712
713   if ( *len > done ) {
714    tmp = *len - done;
715    if ( roar_buffer_ring_read(buf, data+done, &tmp) == 0 ) {
716     done += tmp;
717    }
718   }
719
720   *len = done;
721   return 0;
722  }
723 }
724
725 roar_err_set(ROAR_ERROR_UNKNOWN);
726 return -1;
727}
728
729int roar_buffer_ring_write (struct roar_buffer *  buf, void * data, size_t * len) {
730 struct roar_buffer_ring * ring;
731 size_t havelen;
732 size_t done;
733 size_t tmp;
734
735 ROAR_DBG("roar_buffer_ring_write(buf=%p, data=%p, len=%p) = ?", buf, data, len);
736
737 _ckbuf(len == NULL)
738
739 if ( data == NULL && *len != 0 ) {
740  roar_err_set(ROAR_ERROR_FAULT);
741  return -1;
742 }
743
744 if ( !(buf->flags & ROAR_BUFFER_FLAG_RING) ) {
745  roar_err_set(ROAR_ERROR_TYPEMM);
746  return -1;
747 }
748
749 if ( *len == 0 )
750  return 0;
751
752 // we may handle this later:
753 if ( *len > buf->user_len ) {
754  roar_err_set(ROAR_ERROR_NOTSUP);
755  return -1;
756 }
757
758 if ( (buf->flags & ROAR_BUFFER_FLAG_FREE_RUNNING) ) {
759  if ( buf->meta.ring.write_pos >= buf->user_len )
760   buf->meta.ring.write_pos -= buf->user_len;
761
762  if ( (*len + buf->meta.ring.write_pos) > buf->user_len ) {
763   // wraped mode:
764   memcpy(buf->user_data+buf->meta.ring.write_pos, data, buf->user_len - buf->meta.ring.write_pos);
765   memcpy(buf->user_data, data, *len + buf->meta.ring.write_pos - buf->user_len);
766
767   buf->meta.ring.write_pos += *len;
768   buf->meta.ring.write_pos -= buf->user_len;
769   return 0;
770  } else {
771   // unwarped mode:
772   memcpy(buf->user_data+buf->meta.ring.write_pos, data, *len);
773   buf->meta.ring.write_pos += *len;
774   return 0;
775  }
776 } else {
777  ring = &(buf->meta.ring);
778  done = 0;
779
780  ROAR_DBG("roar_buffer_ring_write(buf=%p, data=%p, len=%p): write_pos=%u, read_pos=%u, user_len=%u", buf, data, len, (unsigned int)ring->write_pos, (unsigned int)ring->read_pos, (unsigned int)buf->user_len);
781
782  if ( ring->write_pos >= ring->read_pos ) {
783   ROAR_DBG("roar_buffer_ring_write(buf=%p, data=%p, len=%p) = ?", buf, data, len);
784
785   havelen = buf->user_len - ring->write_pos;
786
787   if ( ring->read_pos == 0 )
788    havelen--;
789
790   if ( havelen > *len )
791    havelen = *len;
792
793   memcpy(buf->user_data+ring->write_pos, data, havelen);
794
795   done += havelen;
796   ring->write_pos += havelen;
797
798   if ( ring->write_pos == buf->user_len )
799    ring->write_pos = 0;
800
801   if ( *len > done && ring->read_pos != 0 ) {
802    tmp = *len - done;
803    if ( roar_buffer_ring_write(buf, data+done, &tmp) == 0 ) {
804     done += tmp;
805    }
806   }
807
808   *len = done;
809   ROAR_DBG("roar_buffer_ring_write(buf=%p, data=%p, len=%p) = 0", buf, data, len);
810   return 0;
811  } else {
812   ROAR_DBG("roar_buffer_ring_write(buf=%p, data=%p, len=%p) = ?", buf, data, len);
813
814   // test for buffer-is-full:
815   if ( (ring->write_pos + 1) == ring->read_pos ) {
816    *len = 0;
817    ROAR_DBG("roar_buffer_ring_write(buf=%p, data=%p, len=%p) = 0", buf, data, len);
818    return 0;
819   }
820
821   ROAR_DBG("roar_buffer_ring_write(buf=%p, data=%p, len=%p) = ?", buf, data, len);
822
823   havelen = ring->read_pos - ring->write_pos - 1;
824
825   if ( havelen > *len )
826    havelen = *len;
827
828   memcpy(buf->user_data+ring->write_pos, data, havelen);
829
830   ring->write_pos += havelen;
831   *len = havelen;
832
833   ROAR_DBG("roar_buffer_ring_write(buf=%p, data=%p, len=%p) = 0", buf, data, len);
834   return 0;
835  }
836 }
837
838 roar_err_set(ROAR_ERROR_UNKNOWN);
839 return -1;
840}
841
842int roar_buffer_ring_avail(struct roar_buffer *  buf, size_t * readlen, size_t * writelen) {
843 struct roar_buffer_ring * ring;
844 size_t have;
845
846 _ckbuf(0)
847
848 if ( !(buf->flags & ROAR_BUFFER_FLAG_RING) ) {
849  roar_err_set(ROAR_ERROR_TYPEMM);
850  return -1;
851 }
852
853 ring = &(buf->meta.ring);
854
855 ROAR_DBG("roar_buffer_ring_avail(buf=%p, readlen=%p, writelen=%p) = ?", buf, readlen, writelen);
856
857 if ( readlen != NULL ) {
858  have = 0;
859
860  if ( ring->write_pos >= ring->read_pos ) {
861   have  = ring->write_pos - ring->read_pos;
862  } else {
863   have  = buf->user_len - ring->read_pos;
864   have += ring->write_pos;
865   have -= 1;
866  }
867
868  *readlen = have;
869  ROAR_DBG("roar_buffer_ring_avail(buf=%p, readlen=%p, writelen=%p): readlen=%llu", buf, readlen, writelen, (unsigned long long int)have);
870 }
871
872 if ( writelen != NULL ) {
873  have = 0;
874
875  if ( ring->read_pos > ring->write_pos ) {
876   have  = ring->read_pos - ring->write_pos - 1;
877  } else {
878   have  = buf->user_len - ring->write_pos;
879   have += ring->read_pos;
880   have -= 1;
881  }
882
883  *writelen = have;
884  ROAR_DBG("roar_buffer_ring_avail(buf=%p, readlen=%p, writelen=%p): readlen=%llu", buf, readlen, writelen, (unsigned long long int)have);
885 }
886
887 ROAR_DBG("roar_buffer_ring_avail(buf=%p, readlen=%p, writelen=%p) = 0", buf, readlen, writelen);
888
889 return 0;
890}
891
892int roar_buffer_ring_reset(struct roar_buffer *  buf) {
893 _ckbuf(0)
894
895 if ( !(buf->flags & ROAR_BUFFER_FLAG_RING) ) {
896  roar_err_set(ROAR_ERROR_TYPEMM);
897  return -1;
898 }
899
900 buf->meta.ring.read_pos = buf->meta.ring.write_pos = 0;
901
902 return 0;
903}
904
905//ll
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