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alBuffer.c 41 KB

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  1. /**
  2. * OpenAL cross platform audio library
  3. * Copyright (C) 1999-2007 by authors.
  4. * This library is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU Library General Public
  6. * License as published by the Free Software Foundation; either
  7. * version 2 of the License, or (at your option) any later version.
  8. *
  9. * This library is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * Library General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU Library General Public
  15. * License along with this library; if not, write to the
  16. * Free Software Foundation, Inc.,
  17. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  18. * Or go to http://www.gnu.org/copyleft/lgpl.html
  19. */
  20. #include "config.h"
  21. #include <stdlib.h>
  22. #include <stdio.h>
  23. #include <assert.h>
  24. #include <limits.h>
  25. #ifdef HAVE_MALLOC_H
  26. #include <malloc.h>
  27. #endif
  28. #include "alMain.h"
  29. #include "alu.h"
  30. #include "alError.h"
  31. #include "alBuffer.h"
  32. #include "alThunk.h"
  33. #include "sample_cvt.h"
  34. extern inline void LockBuffersRead(ALCdevice *device);
  35. extern inline void UnlockBuffersRead(ALCdevice *device);
  36. extern inline void LockBuffersWrite(ALCdevice *device);
  37. extern inline void UnlockBuffersWrite(ALCdevice *device);
  38. extern inline struct ALbuffer *LookupBuffer(ALCdevice *device, ALuint id);
  39. extern inline struct ALbuffer *RemoveBuffer(ALCdevice *device, ALuint id);
  40. extern inline ALsizei FrameSizeFromUserFmt(enum UserFmtChannels chans, enum UserFmtType type);
  41. extern inline ALsizei FrameSizeFromFmt(enum FmtChannels chans, enum FmtType type);
  42. static ALboolean IsValidType(ALenum type);
  43. static ALboolean IsValidChannels(ALenum channels);
  44. static ALboolean DecomposeUserFormat(ALenum format, enum UserFmtChannels *chans, enum UserFmtType *type);
  45. static ALboolean DecomposeFormat(ALenum format, enum FmtChannels *chans, enum FmtType *type);
  46. static ALboolean SanitizeAlignment(enum UserFmtType type, ALsizei *align);
  47. AL_API ALvoid AL_APIENTRY alGenBuffers(ALsizei n, ALuint *buffers)
  48. {
  49. ALCcontext *context;
  50. ALsizei cur = 0;
  51. context = GetContextRef();
  52. if(!context) return;
  53. if(!(n >= 0))
  54. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  55. for(cur = 0;cur < n;cur++)
  56. {
  57. ALbuffer *buffer = NewBuffer(context);
  58. if(!buffer)
  59. {
  60. alDeleteBuffers(cur, buffers);
  61. break;
  62. }
  63. buffers[cur] = buffer->id;
  64. }
  65. done:
  66. ALCcontext_DecRef(context);
  67. }
  68. AL_API ALvoid AL_APIENTRY alDeleteBuffers(ALsizei n, const ALuint *buffers)
  69. {
  70. ALCdevice *device;
  71. ALCcontext *context;
  72. ALbuffer *ALBuf;
  73. ALsizei i;
  74. context = GetContextRef();
  75. if(!context) return;
  76. device = context->Device;
  77. LockBuffersWrite(device);
  78. if(!(n >= 0))
  79. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  80. for(i = 0;i < n;i++)
  81. {
  82. if(!buffers[i])
  83. continue;
  84. /* Check for valid Buffer ID */
  85. if((ALBuf=LookupBuffer(device, buffers[i])) == NULL)
  86. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  87. if(ReadRef(&ALBuf->ref) != 0)
  88. SET_ERROR_AND_GOTO(context, AL_INVALID_OPERATION, done);
  89. }
  90. for(i = 0;i < n;i++)
  91. {
  92. if((ALBuf=LookupBuffer(device, buffers[i])) != NULL)
  93. DeleteBuffer(device, ALBuf);
  94. }
  95. done:
  96. UnlockBuffersWrite(device);
  97. ALCcontext_DecRef(context);
  98. }
  99. AL_API ALboolean AL_APIENTRY alIsBuffer(ALuint buffer)
  100. {
  101. ALCcontext *context;
  102. ALboolean ret;
  103. context = GetContextRef();
  104. if(!context) return AL_FALSE;
  105. LockBuffersRead(context->Device);
  106. ret = ((!buffer || LookupBuffer(context->Device, buffer)) ?
  107. AL_TRUE : AL_FALSE);
  108. UnlockBuffersRead(context->Device);
  109. ALCcontext_DecRef(context);
  110. return ret;
  111. }
  112. AL_API ALvoid AL_APIENTRY alBufferData(ALuint buffer, ALenum format, const ALvoid *data, ALsizei size, ALsizei freq)
  113. {
  114. enum UserFmtChannels srcchannels = UserFmtMono;
  115. enum UserFmtType srctype = UserFmtByte;
  116. ALCdevice *device;
  117. ALCcontext *context;
  118. ALbuffer *albuf;
  119. ALenum newformat = AL_NONE;
  120. ALsizei framesize;
  121. ALsizei align;
  122. ALenum err;
  123. context = GetContextRef();
  124. if(!context) return;
  125. device = context->Device;
  126. LockBuffersRead(device);
  127. if((albuf=LookupBuffer(device, buffer)) == NULL)
  128. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  129. if(!(size >= 0 && freq > 0))
  130. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  131. if(DecomposeUserFormat(format, &srcchannels, &srctype) == AL_FALSE)
  132. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  133. align = ATOMIC_LOAD_SEQ(&albuf->UnpackAlign);
  134. if(SanitizeAlignment(srctype, &align) == AL_FALSE)
  135. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  136. switch(srctype)
  137. {
  138. case UserFmtByte:
  139. case UserFmtUByte:
  140. case UserFmtShort:
  141. case UserFmtUShort:
  142. case UserFmtFloat:
  143. framesize = FrameSizeFromUserFmt(srcchannels, srctype) * align;
  144. if((size%framesize) != 0)
  145. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  146. err = LoadData(albuf, freq, format, size/framesize*align,
  147. srcchannels, srctype, data, align, AL_TRUE);
  148. if(err != AL_NO_ERROR)
  149. SET_ERROR_AND_GOTO(context, err, done);
  150. break;
  151. case UserFmtInt:
  152. case UserFmtUInt:
  153. case UserFmtDouble:
  154. framesize = FrameSizeFromUserFmt(srcchannels, srctype) * align;
  155. if((size%framesize) != 0)
  156. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  157. switch(srcchannels)
  158. {
  159. case UserFmtMono: newformat = AL_FORMAT_MONO_FLOAT32; break;
  160. case UserFmtStereo: newformat = AL_FORMAT_STEREO_FLOAT32; break;
  161. case UserFmtRear: newformat = AL_FORMAT_REAR32; break;
  162. case UserFmtQuad: newformat = AL_FORMAT_QUAD32; break;
  163. case UserFmtX51: newformat = AL_FORMAT_51CHN32; break;
  164. case UserFmtX61: newformat = AL_FORMAT_61CHN32; break;
  165. case UserFmtX71: newformat = AL_FORMAT_71CHN32; break;
  166. case UserFmtBFormat2D: newformat = AL_FORMAT_BFORMAT2D_FLOAT32; break;
  167. case UserFmtBFormat3D: newformat = AL_FORMAT_BFORMAT3D_FLOAT32; break;
  168. }
  169. err = LoadData(albuf, freq, newformat, size/framesize*align,
  170. srcchannels, srctype, data, align, AL_TRUE);
  171. if(err != AL_NO_ERROR)
  172. SET_ERROR_AND_GOTO(context, err, done);
  173. break;
  174. case UserFmtMulaw:
  175. case UserFmtAlaw:
  176. framesize = FrameSizeFromUserFmt(srcchannels, srctype) * align;
  177. if((size%framesize) != 0)
  178. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  179. switch(srcchannels)
  180. {
  181. case UserFmtMono: newformat = AL_FORMAT_MONO16; break;
  182. case UserFmtStereo: newformat = AL_FORMAT_STEREO16; break;
  183. case UserFmtRear: newformat = AL_FORMAT_REAR16; break;
  184. case UserFmtQuad: newformat = AL_FORMAT_QUAD16; break;
  185. case UserFmtX51: newformat = AL_FORMAT_51CHN16; break;
  186. case UserFmtX61: newformat = AL_FORMAT_61CHN16; break;
  187. case UserFmtX71: newformat = AL_FORMAT_71CHN16; break;
  188. case UserFmtBFormat2D: newformat = AL_FORMAT_BFORMAT2D_16; break;
  189. case UserFmtBFormat3D: newformat = AL_FORMAT_BFORMAT3D_16; break;
  190. }
  191. err = LoadData(albuf, freq, newformat, size/framesize*align,
  192. srcchannels, srctype, data, align, AL_TRUE);
  193. if(err != AL_NO_ERROR)
  194. SET_ERROR_AND_GOTO(context, err, done);
  195. break;
  196. case UserFmtIMA4:
  197. framesize = (align-1)/2 + 4;
  198. framesize *= ChannelsFromUserFmt(srcchannels);
  199. if((size%framesize) != 0)
  200. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  201. switch(srcchannels)
  202. {
  203. case UserFmtMono: newformat = AL_FORMAT_MONO16; break;
  204. case UserFmtStereo: newformat = AL_FORMAT_STEREO16; break;
  205. case UserFmtRear: newformat = AL_FORMAT_REAR16; break;
  206. case UserFmtQuad: newformat = AL_FORMAT_QUAD16; break;
  207. case UserFmtX51: newformat = AL_FORMAT_51CHN16; break;
  208. case UserFmtX61: newformat = AL_FORMAT_61CHN16; break;
  209. case UserFmtX71: newformat = AL_FORMAT_71CHN16; break;
  210. case UserFmtBFormat2D: newformat = AL_FORMAT_BFORMAT2D_16; break;
  211. case UserFmtBFormat3D: newformat = AL_FORMAT_BFORMAT3D_16; break;
  212. }
  213. err = LoadData(albuf, freq, newformat, size/framesize*align,
  214. srcchannels, srctype, data, align, AL_TRUE);
  215. if(err != AL_NO_ERROR)
  216. SET_ERROR_AND_GOTO(context, err, done);
  217. break;
  218. case UserFmtMSADPCM:
  219. framesize = (align-2)/2 + 7;
  220. framesize *= ChannelsFromUserFmt(srcchannels);
  221. if((size%framesize) != 0)
  222. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  223. switch(srcchannels)
  224. {
  225. case UserFmtMono: newformat = AL_FORMAT_MONO16; break;
  226. case UserFmtStereo: newformat = AL_FORMAT_STEREO16; break;
  227. case UserFmtRear: newformat = AL_FORMAT_REAR16; break;
  228. case UserFmtQuad: newformat = AL_FORMAT_QUAD16; break;
  229. case UserFmtX51: newformat = AL_FORMAT_51CHN16; break;
  230. case UserFmtX61: newformat = AL_FORMAT_61CHN16; break;
  231. case UserFmtX71: newformat = AL_FORMAT_71CHN16; break;
  232. case UserFmtBFormat2D: newformat = AL_FORMAT_BFORMAT2D_16; break;
  233. case UserFmtBFormat3D: newformat = AL_FORMAT_BFORMAT3D_16; break;
  234. }
  235. err = LoadData(albuf, freq, newformat, size/framesize*align,
  236. srcchannels, srctype, data, align, AL_TRUE);
  237. if(err != AL_NO_ERROR)
  238. SET_ERROR_AND_GOTO(context, err, done);
  239. break;
  240. }
  241. done:
  242. UnlockBuffersRead(device);
  243. ALCcontext_DecRef(context);
  244. }
  245. AL_API ALvoid AL_APIENTRY alBufferSubDataSOFT(ALuint buffer, ALenum format, const ALvoid *data, ALsizei offset, ALsizei length)
  246. {
  247. enum UserFmtChannels srcchannels = UserFmtMono;
  248. enum UserFmtType srctype = UserFmtByte;
  249. ALCdevice *device;
  250. ALCcontext *context;
  251. ALbuffer *albuf;
  252. ALsizei byte_align;
  253. ALsizei channels;
  254. ALsizei bytes;
  255. ALsizei align;
  256. context = GetContextRef();
  257. if(!context) return;
  258. device = context->Device;
  259. LockBuffersRead(device);
  260. if((albuf=LookupBuffer(device, buffer)) == NULL)
  261. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  262. if(!(length >= 0 && offset >= 0))
  263. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  264. if(DecomposeUserFormat(format, &srcchannels, &srctype) == AL_FALSE)
  265. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  266. WriteLock(&albuf->lock);
  267. align = ATOMIC_LOAD_SEQ(&albuf->UnpackAlign);
  268. if(SanitizeAlignment(srctype, &align) == AL_FALSE)
  269. {
  270. WriteUnlock(&albuf->lock);
  271. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  272. }
  273. if(srcchannels != albuf->OriginalChannels || srctype != albuf->OriginalType)
  274. {
  275. WriteUnlock(&albuf->lock);
  276. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  277. }
  278. if(align != albuf->OriginalAlign)
  279. {
  280. WriteUnlock(&albuf->lock);
  281. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  282. }
  283. if(albuf->OriginalType == UserFmtIMA4)
  284. {
  285. byte_align = (albuf->OriginalAlign-1)/2 + 4;
  286. byte_align *= ChannelsFromUserFmt(albuf->OriginalChannels);
  287. }
  288. else if(albuf->OriginalType == UserFmtMSADPCM)
  289. {
  290. byte_align = (albuf->OriginalAlign-2)/2 + 7;
  291. byte_align *= ChannelsFromUserFmt(albuf->OriginalChannels);
  292. }
  293. else
  294. {
  295. byte_align = albuf->OriginalAlign;
  296. byte_align *= FrameSizeFromUserFmt(albuf->OriginalChannels,
  297. albuf->OriginalType);
  298. }
  299. if(offset > albuf->OriginalSize || length > albuf->OriginalSize-offset ||
  300. (offset%byte_align) != 0 || (length%byte_align) != 0)
  301. {
  302. WriteUnlock(&albuf->lock);
  303. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  304. }
  305. channels = ChannelsFromFmt(albuf->FmtChannels);
  306. bytes = BytesFromFmt(albuf->FmtType);
  307. /* offset -> byte offset, length -> sample count */
  308. offset = offset/byte_align * channels*bytes;
  309. length = length/byte_align * albuf->OriginalAlign;
  310. ConvertData((char*)albuf->data+offset, (enum UserFmtType)albuf->FmtType,
  311. data, srctype, channels, length, align);
  312. WriteUnlock(&albuf->lock);
  313. done:
  314. UnlockBuffersRead(device);
  315. ALCcontext_DecRef(context);
  316. }
  317. AL_API void AL_APIENTRY alBufferSamplesSOFT(ALuint buffer,
  318. ALuint samplerate, ALenum internalformat, ALsizei samples,
  319. ALenum channels, ALenum type, const ALvoid *data)
  320. {
  321. ALCdevice *device;
  322. ALCcontext *context;
  323. ALbuffer *albuf;
  324. ALsizei align;
  325. ALenum err;
  326. context = GetContextRef();
  327. if(!context) return;
  328. device = context->Device;
  329. LockBuffersRead(device);
  330. if((albuf=LookupBuffer(device, buffer)) == NULL)
  331. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  332. if(!(samples >= 0 && samplerate != 0))
  333. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  334. if(IsValidType(type) == AL_FALSE || IsValidChannels(channels) == AL_FALSE)
  335. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  336. align = ATOMIC_LOAD_SEQ(&albuf->UnpackAlign);
  337. if(SanitizeAlignment(type, &align) == AL_FALSE)
  338. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  339. if((samples%align) != 0)
  340. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  341. err = LoadData(albuf, samplerate, internalformat, samples,
  342. channels, type, data, align, AL_FALSE);
  343. if(err != AL_NO_ERROR)
  344. SET_ERROR_AND_GOTO(context, err, done);
  345. done:
  346. UnlockBuffersRead(device);
  347. ALCcontext_DecRef(context);
  348. }
  349. AL_API void AL_APIENTRY alBufferSubSamplesSOFT(ALuint buffer,
  350. ALsizei offset, ALsizei samples,
  351. ALenum channels, ALenum type, const ALvoid *data)
  352. {
  353. ALCdevice *device;
  354. ALCcontext *context;
  355. ALbuffer *albuf;
  356. ALsizei align;
  357. context = GetContextRef();
  358. if(!context) return;
  359. device = context->Device;
  360. LockBuffersRead(device);
  361. if((albuf=LookupBuffer(device, buffer)) == NULL)
  362. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  363. if(!(samples >= 0 && offset >= 0))
  364. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  365. if(IsValidType(type) == AL_FALSE)
  366. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  367. WriteLock(&albuf->lock);
  368. align = ATOMIC_LOAD_SEQ(&albuf->UnpackAlign);
  369. if(SanitizeAlignment(type, &align) == AL_FALSE)
  370. {
  371. WriteUnlock(&albuf->lock);
  372. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  373. }
  374. if(channels != (ALenum)albuf->FmtChannels)
  375. {
  376. WriteUnlock(&albuf->lock);
  377. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  378. }
  379. if(offset > albuf->SampleLen || samples > albuf->SampleLen-offset)
  380. {
  381. WriteUnlock(&albuf->lock);
  382. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  383. }
  384. if((samples%align) != 0)
  385. {
  386. WriteUnlock(&albuf->lock);
  387. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  388. }
  389. /* offset -> byte offset */
  390. offset *= FrameSizeFromFmt(albuf->FmtChannels, albuf->FmtType);
  391. ConvertData((char*)albuf->data+offset, (enum UserFmtType)albuf->FmtType,
  392. data, type, ChannelsFromFmt(albuf->FmtChannels), samples, align);
  393. WriteUnlock(&albuf->lock);
  394. done:
  395. UnlockBuffersRead(device);
  396. ALCcontext_DecRef(context);
  397. }
  398. AL_API void AL_APIENTRY alGetBufferSamplesSOFT(ALuint buffer,
  399. ALsizei offset, ALsizei samples,
  400. ALenum channels, ALenum type, ALvoid *data)
  401. {
  402. ALCdevice *device;
  403. ALCcontext *context;
  404. ALbuffer *albuf;
  405. ALsizei align;
  406. context = GetContextRef();
  407. if(!context) return;
  408. device = context->Device;
  409. LockBuffersRead(device);
  410. if((albuf=LookupBuffer(device, buffer)) == NULL)
  411. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  412. if(!(samples >= 0 && offset >= 0))
  413. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  414. if(IsValidType(type) == AL_FALSE)
  415. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  416. ReadLock(&albuf->lock);
  417. align = ATOMIC_LOAD_SEQ(&albuf->PackAlign);
  418. if(SanitizeAlignment(type, &align) == AL_FALSE)
  419. {
  420. ReadUnlock(&albuf->lock);
  421. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  422. }
  423. if(channels != (ALenum)albuf->FmtChannels)
  424. {
  425. ReadUnlock(&albuf->lock);
  426. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  427. }
  428. if(offset > albuf->SampleLen || samples > albuf->SampleLen-offset)
  429. {
  430. ReadUnlock(&albuf->lock);
  431. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  432. }
  433. if((samples%align) != 0)
  434. {
  435. ReadUnlock(&albuf->lock);
  436. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  437. }
  438. /* offset -> byte offset */
  439. offset *= FrameSizeFromFmt(albuf->FmtChannels, albuf->FmtType);
  440. ConvertData(data, type, (char*)albuf->data+offset, (enum UserFmtType)albuf->FmtType,
  441. ChannelsFromFmt(albuf->FmtChannels), samples, align);
  442. ReadUnlock(&albuf->lock);
  443. done:
  444. UnlockBuffersRead(device);
  445. ALCcontext_DecRef(context);
  446. }
  447. AL_API ALboolean AL_APIENTRY alIsBufferFormatSupportedSOFT(ALenum format)
  448. {
  449. enum FmtChannels dstchannels;
  450. enum FmtType dsttype;
  451. ALCcontext *context;
  452. ALboolean ret;
  453. context = GetContextRef();
  454. if(!context) return AL_FALSE;
  455. ret = DecomposeFormat(format, &dstchannels, &dsttype);
  456. ALCcontext_DecRef(context);
  457. return ret;
  458. }
  459. AL_API void AL_APIENTRY alBufferf(ALuint buffer, ALenum param, ALfloat UNUSED(value))
  460. {
  461. ALCdevice *device;
  462. ALCcontext *context;
  463. context = GetContextRef();
  464. if(!context) return;
  465. device = context->Device;
  466. LockBuffersRead(device);
  467. if(LookupBuffer(device, buffer) == NULL)
  468. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  469. switch(param)
  470. {
  471. default:
  472. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  473. }
  474. done:
  475. UnlockBuffersRead(device);
  476. ALCcontext_DecRef(context);
  477. }
  478. AL_API void AL_APIENTRY alBuffer3f(ALuint buffer, ALenum param, ALfloat UNUSED(value1), ALfloat UNUSED(value2), ALfloat UNUSED(value3))
  479. {
  480. ALCdevice *device;
  481. ALCcontext *context;
  482. context = GetContextRef();
  483. if(!context) return;
  484. device = context->Device;
  485. LockBuffersRead(device);
  486. if(LookupBuffer(device, buffer) == NULL)
  487. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  488. switch(param)
  489. {
  490. default:
  491. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  492. }
  493. done:
  494. UnlockBuffersRead(device);
  495. ALCcontext_DecRef(context);
  496. }
  497. AL_API void AL_APIENTRY alBufferfv(ALuint buffer, ALenum param, const ALfloat *values)
  498. {
  499. ALCdevice *device;
  500. ALCcontext *context;
  501. context = GetContextRef();
  502. if(!context) return;
  503. device = context->Device;
  504. LockBuffersRead(device);
  505. if(LookupBuffer(device, buffer) == NULL)
  506. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  507. if(!(values))
  508. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  509. switch(param)
  510. {
  511. default:
  512. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  513. }
  514. done:
  515. UnlockBuffersRead(device);
  516. ALCcontext_DecRef(context);
  517. }
  518. AL_API void AL_APIENTRY alBufferi(ALuint buffer, ALenum param, ALint value)
  519. {
  520. ALCdevice *device;
  521. ALCcontext *context;
  522. ALbuffer *albuf;
  523. context = GetContextRef();
  524. if(!context) return;
  525. device = context->Device;
  526. LockBuffersRead(device);
  527. if((albuf=LookupBuffer(device, buffer)) == NULL)
  528. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  529. switch(param)
  530. {
  531. case AL_UNPACK_BLOCK_ALIGNMENT_SOFT:
  532. if(!(value >= 0))
  533. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  534. ATOMIC_STORE_SEQ(&albuf->UnpackAlign, value);
  535. break;
  536. case AL_PACK_BLOCK_ALIGNMENT_SOFT:
  537. if(!(value >= 0))
  538. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  539. ATOMIC_STORE_SEQ(&albuf->PackAlign, value);
  540. break;
  541. default:
  542. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  543. }
  544. done:
  545. UnlockBuffersRead(device);
  546. ALCcontext_DecRef(context);
  547. }
  548. AL_API void AL_APIENTRY alBuffer3i(ALuint buffer, ALenum param, ALint UNUSED(value1), ALint UNUSED(value2), ALint UNUSED(value3))
  549. {
  550. ALCdevice *device;
  551. ALCcontext *context;
  552. context = GetContextRef();
  553. if(!context) return;
  554. device = context->Device;
  555. if(LookupBuffer(device, buffer) == NULL)
  556. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  557. switch(param)
  558. {
  559. default:
  560. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  561. }
  562. done:
  563. ALCcontext_DecRef(context);
  564. }
  565. AL_API void AL_APIENTRY alBufferiv(ALuint buffer, ALenum param, const ALint *values)
  566. {
  567. ALCdevice *device;
  568. ALCcontext *context;
  569. ALbuffer *albuf;
  570. if(values)
  571. {
  572. switch(param)
  573. {
  574. case AL_UNPACK_BLOCK_ALIGNMENT_SOFT:
  575. case AL_PACK_BLOCK_ALIGNMENT_SOFT:
  576. alBufferi(buffer, param, values[0]);
  577. return;
  578. }
  579. }
  580. context = GetContextRef();
  581. if(!context) return;
  582. device = context->Device;
  583. LockBuffersRead(device);
  584. if((albuf=LookupBuffer(device, buffer)) == NULL)
  585. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  586. if(!(values))
  587. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  588. switch(param)
  589. {
  590. case AL_LOOP_POINTS_SOFT:
  591. WriteLock(&albuf->lock);
  592. if(ReadRef(&albuf->ref) != 0)
  593. {
  594. WriteUnlock(&albuf->lock);
  595. SET_ERROR_AND_GOTO(context, AL_INVALID_OPERATION, done);
  596. }
  597. if(values[0] >= values[1] || values[0] < 0 ||
  598. values[1] > albuf->SampleLen)
  599. {
  600. WriteUnlock(&albuf->lock);
  601. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  602. }
  603. albuf->LoopStart = values[0];
  604. albuf->LoopEnd = values[1];
  605. WriteUnlock(&albuf->lock);
  606. break;
  607. default:
  608. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  609. }
  610. done:
  611. UnlockBuffersRead(device);
  612. ALCcontext_DecRef(context);
  613. }
  614. AL_API ALvoid AL_APIENTRY alGetBufferf(ALuint buffer, ALenum param, ALfloat *value)
  615. {
  616. ALCdevice *device;
  617. ALCcontext *context;
  618. ALbuffer *albuf;
  619. context = GetContextRef();
  620. if(!context) return;
  621. device = context->Device;
  622. LockBuffersRead(device);
  623. if((albuf=LookupBuffer(device, buffer)) == NULL)
  624. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  625. if(!(value))
  626. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  627. switch(param)
  628. {
  629. case AL_SEC_LENGTH_SOFT:
  630. ReadLock(&albuf->lock);
  631. if(albuf->SampleLen != 0)
  632. *value = albuf->SampleLen / (ALfloat)albuf->Frequency;
  633. else
  634. *value = 0.0f;
  635. ReadUnlock(&albuf->lock);
  636. break;
  637. default:
  638. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  639. }
  640. done:
  641. UnlockBuffersRead(device);
  642. ALCcontext_DecRef(context);
  643. }
  644. AL_API void AL_APIENTRY alGetBuffer3f(ALuint buffer, ALenum param, ALfloat *value1, ALfloat *value2, ALfloat *value3)
  645. {
  646. ALCdevice *device;
  647. ALCcontext *context;
  648. context = GetContextRef();
  649. if(!context) return;
  650. device = context->Device;
  651. LockBuffersRead(device);
  652. if(LookupBuffer(device, buffer) == NULL)
  653. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  654. if(!(value1 && value2 && value3))
  655. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  656. switch(param)
  657. {
  658. default:
  659. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  660. }
  661. done:
  662. UnlockBuffersRead(device);
  663. ALCcontext_DecRef(context);
  664. }
  665. AL_API void AL_APIENTRY alGetBufferfv(ALuint buffer, ALenum param, ALfloat *values)
  666. {
  667. ALCdevice *device;
  668. ALCcontext *context;
  669. switch(param)
  670. {
  671. case AL_SEC_LENGTH_SOFT:
  672. alGetBufferf(buffer, param, values);
  673. return;
  674. }
  675. context = GetContextRef();
  676. if(!context) return;
  677. device = context->Device;
  678. LockBuffersRead(device);
  679. if(LookupBuffer(device, buffer) == NULL)
  680. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  681. if(!(values))
  682. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  683. switch(param)
  684. {
  685. default:
  686. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  687. }
  688. done:
  689. UnlockBuffersRead(device);
  690. ALCcontext_DecRef(context);
  691. }
  692. AL_API ALvoid AL_APIENTRY alGetBufferi(ALuint buffer, ALenum param, ALint *value)
  693. {
  694. ALCdevice *device;
  695. ALCcontext *context;
  696. ALbuffer *albuf;
  697. context = GetContextRef();
  698. if(!context) return;
  699. device = context->Device;
  700. LockBuffersRead(device);
  701. if((albuf=LookupBuffer(device, buffer)) == NULL)
  702. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  703. if(!(value))
  704. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  705. switch(param)
  706. {
  707. case AL_FREQUENCY:
  708. *value = albuf->Frequency;
  709. break;
  710. case AL_BITS:
  711. *value = BytesFromFmt(albuf->FmtType) * 8;
  712. break;
  713. case AL_CHANNELS:
  714. *value = ChannelsFromFmt(albuf->FmtChannels);
  715. break;
  716. case AL_SIZE:
  717. ReadLock(&albuf->lock);
  718. *value = albuf->SampleLen * FrameSizeFromFmt(albuf->FmtChannels,
  719. albuf->FmtType);
  720. ReadUnlock(&albuf->lock);
  721. break;
  722. case AL_INTERNAL_FORMAT_SOFT:
  723. *value = albuf->Format;
  724. break;
  725. case AL_BYTE_LENGTH_SOFT:
  726. *value = albuf->OriginalSize;
  727. break;
  728. case AL_SAMPLE_LENGTH_SOFT:
  729. *value = albuf->SampleLen;
  730. break;
  731. case AL_UNPACK_BLOCK_ALIGNMENT_SOFT:
  732. *value = ATOMIC_LOAD_SEQ(&albuf->UnpackAlign);
  733. break;
  734. case AL_PACK_BLOCK_ALIGNMENT_SOFT:
  735. *value = ATOMIC_LOAD_SEQ(&albuf->PackAlign);
  736. break;
  737. default:
  738. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  739. }
  740. done:
  741. UnlockBuffersRead(device);
  742. ALCcontext_DecRef(context);
  743. }
  744. AL_API void AL_APIENTRY alGetBuffer3i(ALuint buffer, ALenum param, ALint *value1, ALint *value2, ALint *value3)
  745. {
  746. ALCdevice *device;
  747. ALCcontext *context;
  748. context = GetContextRef();
  749. if(!context) return;
  750. device = context->Device;
  751. LockBuffersRead(device);
  752. if(LookupBuffer(device, buffer) == NULL)
  753. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  754. if(!(value1 && value2 && value3))
  755. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  756. switch(param)
  757. {
  758. default:
  759. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  760. }
  761. done:
  762. UnlockBuffersRead(device);
  763. ALCcontext_DecRef(context);
  764. }
  765. AL_API void AL_APIENTRY alGetBufferiv(ALuint buffer, ALenum param, ALint *values)
  766. {
  767. ALCdevice *device;
  768. ALCcontext *context;
  769. ALbuffer *albuf;
  770. switch(param)
  771. {
  772. case AL_FREQUENCY:
  773. case AL_BITS:
  774. case AL_CHANNELS:
  775. case AL_SIZE:
  776. case AL_INTERNAL_FORMAT_SOFT:
  777. case AL_BYTE_LENGTH_SOFT:
  778. case AL_SAMPLE_LENGTH_SOFT:
  779. case AL_UNPACK_BLOCK_ALIGNMENT_SOFT:
  780. case AL_PACK_BLOCK_ALIGNMENT_SOFT:
  781. alGetBufferi(buffer, param, values);
  782. return;
  783. }
  784. context = GetContextRef();
  785. if(!context) return;
  786. device = context->Device;
  787. LockBuffersRead(device);
  788. if((albuf=LookupBuffer(device, buffer)) == NULL)
  789. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  790. if(!(values))
  791. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  792. switch(param)
  793. {
  794. case AL_LOOP_POINTS_SOFT:
  795. ReadLock(&albuf->lock);
  796. values[0] = albuf->LoopStart;
  797. values[1] = albuf->LoopEnd;
  798. ReadUnlock(&albuf->lock);
  799. break;
  800. default:
  801. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  802. }
  803. done:
  804. UnlockBuffersRead(device);
  805. ALCcontext_DecRef(context);
  806. }
  807. /*
  808. * LoadData
  809. *
  810. * Loads the specified data into the buffer, using the specified formats.
  811. * Currently, the new format must have the same channel configuration as the
  812. * original format.
  813. */
  814. ALenum LoadData(ALbuffer *ALBuf, ALuint freq, ALenum NewFormat, ALsizei frames, enum UserFmtChannels SrcChannels, enum UserFmtType SrcType, const ALvoid *data, ALsizei align, ALboolean storesrc)
  815. {
  816. enum FmtChannels DstChannels = FmtMono;
  817. enum FmtType DstType = FmtByte;
  818. ALuint NewChannels, NewBytes;
  819. ALuint64 newsize;
  820. if(DecomposeFormat(NewFormat, &DstChannels, &DstType) == AL_FALSE)
  821. return AL_INVALID_ENUM;
  822. if((long)SrcChannels != (long)DstChannels)
  823. return AL_INVALID_ENUM;
  824. NewChannels = ChannelsFromFmt(DstChannels);
  825. NewBytes = BytesFromFmt(DstType);
  826. newsize = frames;
  827. newsize *= NewBytes;
  828. newsize *= NewChannels;
  829. if(newsize > INT_MAX)
  830. return AL_OUT_OF_MEMORY;
  831. WriteLock(&ALBuf->lock);
  832. if(ReadRef(&ALBuf->ref) != 0)
  833. {
  834. WriteUnlock(&ALBuf->lock);
  835. return AL_INVALID_OPERATION;
  836. }
  837. /* Round up to the next 16-byte multiple. This could reallocate only when
  838. * increasing or the new size is less than half the current, but then the
  839. * buffer's AL_SIZE would not be very reliable for accounting buffer memory
  840. * usage, and reporting the real size could cause problems for apps that
  841. * use AL_SIZE to try to get the buffer's play length.
  842. */
  843. newsize = (newsize+15) & ~0xf;
  844. if(newsize != ALBuf->BytesAlloc)
  845. {
  846. void *temp = al_calloc(16, (size_t)newsize);
  847. if(!temp && newsize)
  848. {
  849. WriteUnlock(&ALBuf->lock);
  850. return AL_OUT_OF_MEMORY;
  851. }
  852. al_free(ALBuf->data);
  853. ALBuf->data = temp;
  854. ALBuf->BytesAlloc = (ALuint)newsize;
  855. }
  856. if(data != NULL)
  857. ConvertData(ALBuf->data, (enum UserFmtType)DstType, data, SrcType, NewChannels, frames, align);
  858. if(storesrc)
  859. {
  860. ALBuf->OriginalChannels = SrcChannels;
  861. ALBuf->OriginalType = SrcType;
  862. if(SrcType == UserFmtIMA4)
  863. {
  864. ALsizei byte_align = ((align-1)/2 + 4) * ChannelsFromUserFmt(SrcChannels);
  865. ALBuf->OriginalSize = frames / align * byte_align;
  866. ALBuf->OriginalAlign = align;
  867. }
  868. else if(SrcType == UserFmtMSADPCM)
  869. {
  870. ALsizei byte_align = ((align-2)/2 + 7) * ChannelsFromUserFmt(SrcChannels);
  871. ALBuf->OriginalSize = frames / align * byte_align;
  872. ALBuf->OriginalAlign = align;
  873. }
  874. else
  875. {
  876. ALBuf->OriginalSize = frames * FrameSizeFromUserFmt(SrcChannels, SrcType);
  877. ALBuf->OriginalAlign = 1;
  878. }
  879. }
  880. else
  881. {
  882. ALBuf->OriginalChannels = (enum UserFmtChannels)DstChannels;
  883. ALBuf->OriginalType = (enum UserFmtType)DstType;
  884. ALBuf->OriginalSize = frames * NewBytes * NewChannels;
  885. ALBuf->OriginalAlign = 1;
  886. }
  887. ALBuf->Frequency = freq;
  888. ALBuf->FmtChannels = DstChannels;
  889. ALBuf->FmtType = DstType;
  890. ALBuf->Format = NewFormat;
  891. ALBuf->SampleLen = frames;
  892. ALBuf->LoopStart = 0;
  893. ALBuf->LoopEnd = ALBuf->SampleLen;
  894. WriteUnlock(&ALBuf->lock);
  895. return AL_NO_ERROR;
  896. }
  897. ALsizei BytesFromUserFmt(enum UserFmtType type)
  898. {
  899. switch(type)
  900. {
  901. case UserFmtByte: return sizeof(ALbyte);
  902. case UserFmtUByte: return sizeof(ALubyte);
  903. case UserFmtShort: return sizeof(ALshort);
  904. case UserFmtUShort: return sizeof(ALushort);
  905. case UserFmtInt: return sizeof(ALint);
  906. case UserFmtUInt: return sizeof(ALuint);
  907. case UserFmtFloat: return sizeof(ALfloat);
  908. case UserFmtDouble: return sizeof(ALdouble);
  909. case UserFmtMulaw: return sizeof(ALubyte);
  910. case UserFmtAlaw: return sizeof(ALubyte);
  911. case UserFmtIMA4: break; /* not handled here */
  912. case UserFmtMSADPCM: break; /* not handled here */
  913. }
  914. return 0;
  915. }
  916. ALsizei ChannelsFromUserFmt(enum UserFmtChannels chans)
  917. {
  918. switch(chans)
  919. {
  920. case UserFmtMono: return 1;
  921. case UserFmtStereo: return 2;
  922. case UserFmtRear: return 2;
  923. case UserFmtQuad: return 4;
  924. case UserFmtX51: return 6;
  925. case UserFmtX61: return 7;
  926. case UserFmtX71: return 8;
  927. case UserFmtBFormat2D: return 3;
  928. case UserFmtBFormat3D: return 4;
  929. }
  930. return 0;
  931. }
  932. static ALboolean DecomposeUserFormat(ALenum format, enum UserFmtChannels *chans,
  933. enum UserFmtType *type)
  934. {
  935. static const struct {
  936. ALenum format;
  937. enum UserFmtChannels channels;
  938. enum UserFmtType type;
  939. } list[] = {
  940. { AL_FORMAT_MONO8, UserFmtMono, UserFmtUByte },
  941. { AL_FORMAT_MONO16, UserFmtMono, UserFmtShort },
  942. { AL_FORMAT_MONO_FLOAT32, UserFmtMono, UserFmtFloat },
  943. { AL_FORMAT_MONO_DOUBLE_EXT, UserFmtMono, UserFmtDouble },
  944. { AL_FORMAT_MONO_IMA4, UserFmtMono, UserFmtIMA4 },
  945. { AL_FORMAT_MONO_MSADPCM_SOFT, UserFmtMono, UserFmtMSADPCM },
  946. { AL_FORMAT_MONO_MULAW, UserFmtMono, UserFmtMulaw },
  947. { AL_FORMAT_MONO_ALAW_EXT, UserFmtMono, UserFmtAlaw },
  948. { AL_FORMAT_STEREO8, UserFmtStereo, UserFmtUByte },
  949. { AL_FORMAT_STEREO16, UserFmtStereo, UserFmtShort },
  950. { AL_FORMAT_STEREO_FLOAT32, UserFmtStereo, UserFmtFloat },
  951. { AL_FORMAT_STEREO_DOUBLE_EXT, UserFmtStereo, UserFmtDouble },
  952. { AL_FORMAT_STEREO_IMA4, UserFmtStereo, UserFmtIMA4 },
  953. { AL_FORMAT_STEREO_MSADPCM_SOFT, UserFmtStereo, UserFmtMSADPCM },
  954. { AL_FORMAT_STEREO_MULAW, UserFmtStereo, UserFmtMulaw },
  955. { AL_FORMAT_STEREO_ALAW_EXT, UserFmtStereo, UserFmtAlaw },
  956. { AL_FORMAT_REAR8, UserFmtRear, UserFmtUByte },
  957. { AL_FORMAT_REAR16, UserFmtRear, UserFmtShort },
  958. { AL_FORMAT_REAR32, UserFmtRear, UserFmtFloat },
  959. { AL_FORMAT_REAR_MULAW, UserFmtRear, UserFmtMulaw },
  960. { AL_FORMAT_QUAD8_LOKI, UserFmtQuad, UserFmtUByte },
  961. { AL_FORMAT_QUAD16_LOKI, UserFmtQuad, UserFmtShort },
  962. { AL_FORMAT_QUAD8, UserFmtQuad, UserFmtUByte },
  963. { AL_FORMAT_QUAD16, UserFmtQuad, UserFmtShort },
  964. { AL_FORMAT_QUAD32, UserFmtQuad, UserFmtFloat },
  965. { AL_FORMAT_QUAD_MULAW, UserFmtQuad, UserFmtMulaw },
  966. { AL_FORMAT_51CHN8, UserFmtX51, UserFmtUByte },
  967. { AL_FORMAT_51CHN16, UserFmtX51, UserFmtShort },
  968. { AL_FORMAT_51CHN32, UserFmtX51, UserFmtFloat },
  969. { AL_FORMAT_51CHN_MULAW, UserFmtX51, UserFmtMulaw },
  970. { AL_FORMAT_61CHN8, UserFmtX61, UserFmtUByte },
  971. { AL_FORMAT_61CHN16, UserFmtX61, UserFmtShort },
  972. { AL_FORMAT_61CHN32, UserFmtX61, UserFmtFloat },
  973. { AL_FORMAT_61CHN_MULAW, UserFmtX61, UserFmtMulaw },
  974. { AL_FORMAT_71CHN8, UserFmtX71, UserFmtUByte },
  975. { AL_FORMAT_71CHN16, UserFmtX71, UserFmtShort },
  976. { AL_FORMAT_71CHN32, UserFmtX71, UserFmtFloat },
  977. { AL_FORMAT_71CHN_MULAW, UserFmtX71, UserFmtMulaw },
  978. { AL_FORMAT_BFORMAT2D_8, UserFmtBFormat2D, UserFmtUByte },
  979. { AL_FORMAT_BFORMAT2D_16, UserFmtBFormat2D, UserFmtShort },
  980. { AL_FORMAT_BFORMAT2D_FLOAT32, UserFmtBFormat2D, UserFmtFloat },
  981. { AL_FORMAT_BFORMAT2D_MULAW, UserFmtBFormat2D, UserFmtMulaw },
  982. { AL_FORMAT_BFORMAT3D_8, UserFmtBFormat3D, UserFmtUByte },
  983. { AL_FORMAT_BFORMAT3D_16, UserFmtBFormat3D, UserFmtShort },
  984. { AL_FORMAT_BFORMAT3D_FLOAT32, UserFmtBFormat3D, UserFmtFloat },
  985. { AL_FORMAT_BFORMAT3D_MULAW, UserFmtBFormat3D, UserFmtMulaw },
  986. };
  987. ALuint i;
  988. for(i = 0;i < COUNTOF(list);i++)
  989. {
  990. if(list[i].format == format)
  991. {
  992. *chans = list[i].channels;
  993. *type = list[i].type;
  994. return AL_TRUE;
  995. }
  996. }
  997. return AL_FALSE;
  998. }
  999. ALsizei BytesFromFmt(enum FmtType type)
  1000. {
  1001. switch(type)
  1002. {
  1003. case FmtByte: return sizeof(ALbyte);
  1004. case FmtShort: return sizeof(ALshort);
  1005. case FmtFloat: return sizeof(ALfloat);
  1006. }
  1007. return 0;
  1008. }
  1009. ALsizei ChannelsFromFmt(enum FmtChannels chans)
  1010. {
  1011. switch(chans)
  1012. {
  1013. case FmtMono: return 1;
  1014. case FmtStereo: return 2;
  1015. case FmtRear: return 2;
  1016. case FmtQuad: return 4;
  1017. case FmtX51: return 6;
  1018. case FmtX61: return 7;
  1019. case FmtX71: return 8;
  1020. case FmtBFormat2D: return 3;
  1021. case FmtBFormat3D: return 4;
  1022. }
  1023. return 0;
  1024. }
  1025. static ALboolean DecomposeFormat(ALenum format, enum FmtChannels *chans, enum FmtType *type)
  1026. {
  1027. static const struct {
  1028. ALenum format;
  1029. enum FmtChannels channels;
  1030. enum FmtType type;
  1031. } list[] = {
  1032. { AL_MONO8_SOFT, FmtMono, FmtByte },
  1033. { AL_MONO16_SOFT, FmtMono, FmtShort },
  1034. { AL_MONO32F_SOFT, FmtMono, FmtFloat },
  1035. { AL_STEREO8_SOFT, FmtStereo, FmtByte },
  1036. { AL_STEREO16_SOFT, FmtStereo, FmtShort },
  1037. { AL_STEREO32F_SOFT, FmtStereo, FmtFloat },
  1038. { AL_REAR8_SOFT, FmtRear, FmtByte },
  1039. { AL_REAR16_SOFT, FmtRear, FmtShort },
  1040. { AL_REAR32F_SOFT, FmtRear, FmtFloat },
  1041. { AL_FORMAT_QUAD8_LOKI, FmtQuad, FmtByte },
  1042. { AL_FORMAT_QUAD16_LOKI, FmtQuad, FmtShort },
  1043. { AL_QUAD8_SOFT, FmtQuad, FmtByte },
  1044. { AL_QUAD16_SOFT, FmtQuad, FmtShort },
  1045. { AL_QUAD32F_SOFT, FmtQuad, FmtFloat },
  1046. { AL_5POINT1_8_SOFT, FmtX51, FmtByte },
  1047. { AL_5POINT1_16_SOFT, FmtX51, FmtShort },
  1048. { AL_5POINT1_32F_SOFT, FmtX51, FmtFloat },
  1049. { AL_6POINT1_8_SOFT, FmtX61, FmtByte },
  1050. { AL_6POINT1_16_SOFT, FmtX61, FmtShort },
  1051. { AL_6POINT1_32F_SOFT, FmtX61, FmtFloat },
  1052. { AL_7POINT1_8_SOFT, FmtX71, FmtByte },
  1053. { AL_7POINT1_16_SOFT, FmtX71, FmtShort },
  1054. { AL_7POINT1_32F_SOFT, FmtX71, FmtFloat },
  1055. { AL_BFORMAT2D_8_SOFT, FmtBFormat2D, FmtByte },
  1056. { AL_BFORMAT2D_16_SOFT, FmtBFormat2D, FmtShort },
  1057. { AL_BFORMAT2D_32F_SOFT, FmtBFormat2D, FmtFloat },
  1058. { AL_BFORMAT3D_8_SOFT, FmtBFormat3D, FmtByte },
  1059. { AL_BFORMAT3D_16_SOFT, FmtBFormat3D, FmtShort },
  1060. { AL_BFORMAT3D_32F_SOFT, FmtBFormat3D, FmtFloat },
  1061. };
  1062. ALuint i;
  1063. for(i = 0;i < COUNTOF(list);i++)
  1064. {
  1065. if(list[i].format == format)
  1066. {
  1067. *chans = list[i].channels;
  1068. *type = list[i].type;
  1069. return AL_TRUE;
  1070. }
  1071. }
  1072. return AL_FALSE;
  1073. }
  1074. static ALboolean SanitizeAlignment(enum UserFmtType type, ALsizei *align)
  1075. {
  1076. if(*align < 0)
  1077. return AL_FALSE;
  1078. if(*align == 0)
  1079. {
  1080. if(type == UserFmtIMA4)
  1081. {
  1082. /* Here is where things vary:
  1083. * nVidia and Apple use 64+1 sample frames per block -> block_size=36 bytes per channel
  1084. * Most PC sound software uses 2040+1 sample frames per block -> block_size=1024 bytes per channel
  1085. */
  1086. *align = 65;
  1087. }
  1088. else if(type == UserFmtMSADPCM)
  1089. *align = 64;
  1090. else
  1091. *align = 1;
  1092. return AL_TRUE;
  1093. }
  1094. if(type == UserFmtIMA4)
  1095. {
  1096. /* IMA4 block alignment must be a multiple of 8, plus 1. */
  1097. return ((*align)&7) == 1;
  1098. }
  1099. if(type == UserFmtMSADPCM)
  1100. {
  1101. /* MSADPCM block alignment must be a multiple of 2. */
  1102. /* FIXME: Too strict? Might only require align*channels to be a
  1103. * multiple of 2. */
  1104. return ((*align)&1) == 0;
  1105. }
  1106. return AL_TRUE;
  1107. }
  1108. static ALboolean IsValidType(ALenum type)
  1109. {
  1110. switch(type)
  1111. {
  1112. case AL_BYTE_SOFT:
  1113. case AL_UNSIGNED_BYTE_SOFT:
  1114. case AL_SHORT_SOFT:
  1115. case AL_UNSIGNED_SHORT_SOFT:
  1116. case AL_INT_SOFT:
  1117. case AL_UNSIGNED_INT_SOFT:
  1118. case AL_FLOAT_SOFT:
  1119. case AL_DOUBLE_SOFT:
  1120. case AL_MULAW_SOFT:
  1121. return AL_TRUE;
  1122. }
  1123. return AL_FALSE;
  1124. }
  1125. static ALboolean IsValidChannels(ALenum channels)
  1126. {
  1127. switch(channels)
  1128. {
  1129. case AL_MONO_SOFT:
  1130. case AL_STEREO_SOFT:
  1131. case AL_REAR_SOFT:
  1132. case AL_QUAD_SOFT:
  1133. case AL_5POINT1_SOFT:
  1134. case AL_6POINT1_SOFT:
  1135. case AL_7POINT1_SOFT:
  1136. case AL_BFORMAT2D_SOFT:
  1137. case AL_BFORMAT3D_SOFT:
  1138. return AL_TRUE;
  1139. }
  1140. return AL_FALSE;
  1141. }
  1142. ALbuffer *NewBuffer(ALCcontext *context)
  1143. {
  1144. ALCdevice *device = context->Device;
  1145. ALbuffer *buffer;
  1146. ALenum err;
  1147. buffer = al_calloc(16, sizeof(ALbuffer));
  1148. if(!buffer)
  1149. SET_ERROR_AND_RETURN_VALUE(context, AL_OUT_OF_MEMORY, NULL);
  1150. RWLockInit(&buffer->lock);
  1151. err = NewThunkEntry(&buffer->id);
  1152. if(err == AL_NO_ERROR)
  1153. err = InsertUIntMapEntry(&device->BufferMap, buffer->id, buffer);
  1154. if(err != AL_NO_ERROR)
  1155. {
  1156. FreeThunkEntry(buffer->id);
  1157. memset(buffer, 0, sizeof(ALbuffer));
  1158. al_free(buffer);
  1159. SET_ERROR_AND_RETURN_VALUE(context, err, NULL);
  1160. }
  1161. return buffer;
  1162. }
  1163. void DeleteBuffer(ALCdevice *device, ALbuffer *buffer)
  1164. {
  1165. RemoveBuffer(device, buffer->id);
  1166. FreeThunkEntry(buffer->id);
  1167. al_free(buffer->data);
  1168. memset(buffer, 0, sizeof(*buffer));
  1169. al_free(buffer);
  1170. }
  1171. /*
  1172. * ReleaseALBuffers()
  1173. *
  1174. * INTERNAL: Called to destroy any buffers that still exist on the device
  1175. */
  1176. ALvoid ReleaseALBuffers(ALCdevice *device)
  1177. {
  1178. ALsizei i;
  1179. for(i = 0;i < device->BufferMap.size;i++)
  1180. {
  1181. ALbuffer *temp = device->BufferMap.values[i];
  1182. device->BufferMap.values[i] = NULL;
  1183. al_free(temp->data);
  1184. FreeThunkEntry(temp->id);
  1185. memset(temp, 0, sizeof(ALbuffer));
  1186. al_free(temp);
  1187. }
  1188. }