source: roaraudio/libroardsp/convert.c @ 868:c29b4e7e4e01

Last change on this file since 868:c29b4e7e4e01 was 868:c29b4e7e4e01, checked in by phi, 16 years ago

use roar_conv_endian_24() as it is working...

File size: 13.6 KB
Line 
1//convert.c:
2
3/*
4 *      Copyright (C) Philipp 'ph3-der-loewe' Schafft - 2008
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, 675 Mass Ave, Cambridge, MA 02139, USA.
22 *
23 *  NOTE for everyone want's to change something and send patches:
24 *  read README and HACKING! There a addition information on
25 *  the license of this document you need to read before you send
26 *  any patches.
27 *
28 *  NOTE for uses of non-GPL (LGPL,...) software using libesd, libartsc
29 *  or libpulse*:
30 *  The libs libroaresd, libroararts and libroarpulse link this lib
31 *  and are therefore GPL. Because of this it may be illigal to use
32 *  them with any software that uses libesd, libartsc or libpulse*.
33 */
34
35#include "libroar.h"
36
37int roar_conv_bits (void * out, void * in, int samples, int from, int to) {
38 int format;
39
40 if ( from == to ) {
41  if ( in == out )
42   return 0;
43
44  memcpy(out, in, samples * from / 8);
45  return 0;
46 }
47
48 format = ((from / 8) << 4) + (to / 8);
49
50 switch (format) {
51  case 0x12: return roar_conv_bits_8to16( out, in, samples);
52  case 0x14: return roar_conv_bits_8to32( out, in, samples);
53  case 0x21: return roar_conv_bits_16to8( out, in, samples);
54  case 0x24: return roar_conv_bits_16to32(out, in, samples);
55  case 0x41: return roar_conv_bits_32to8( out, in, samples);
56  case 0x42: return roar_conv_bits_32to16(out, in, samples);
57  default:
58   errno = ENOSYS;
59   return -1;
60 }
61
62 return -1;
63}
64
65int roar_conv_bits_8to16 (void * out, void * in, int samples) {
66 char    * ip = (char   *)in;
67 int16_t * op = (int16_t*)out;
68 int i;
69
70 for (i = samples - 1; i >= 0; i--)
71  op[i] = ip[i] << 8;
72
73 return 0;
74}
75
76int roar_conv_bits_8to32  (void * out, void * in, int samples) {
77 char    * ip = (char   *)in;
78 int32_t * op = (int32_t*)out;
79 int i;
80
81 for (i = samples - 1; i >= 0; i--)
82  op[i] = ip[i] << 24;
83
84 return 0;
85}
86
87int roar_conv_bits_16to8 (void * out, void * in, int samples) {
88 int16_t * ip = (int16_t*)in;
89 char    * op = (char   *)out;
90 int i;
91
92 ROAR_DBG("roar_conv_bits_16to8(out=%p, in=%p, samples=%i) = ?", out, in, samples);
93
94 for (i = 0; i < samples; i++)
95  op[i] = ip[i] >> 8;
96
97 return 0;
98}
99
100int roar_conv_bits_16to32 (void * out, void * in, int samples) {
101 int16_t * ip = (int16_t*)in;
102 int32_t * op = (int32_t*)out;
103 int i;
104
105 for (i = samples - 1; i >= 0; i--)
106  op[i] = ip[i] << 16;
107
108 return 0;
109}
110
111int roar_conv_bits_32to8 (void * out, void * in, int samples) {
112 int32_t * ip = (int32_t*)in;
113 char    * op = (char   *)out;
114 int i;
115
116 for (i = 0; i < samples; i++)
117  op[i] = ip[i] >> 24;
118
119 return 0;
120}
121
122int roar_conv_bits_32to16 (void * out, void * in, int samples) {
123 int32_t * ip = (int32_t*)in;
124 int16_t * op = (int16_t*)out;
125 int i;
126
127 for (i = 0; i < samples; i++)
128  op[i] = ip[i] >> 16;
129
130 return 0;
131}
132
133int roar_conv_chans (void * out, void * in, int samples, int from, int to, int bits) {
134 if ( from == to ) {
135  if ( in == out )
136   return 0;
137
138  memcpy(out, in, samples * from * bits / 8);
139  return 0;
140 }
141
142 switch (bits) {
143  case 8:
144   switch (from) {
145    case 1:
146     switch (to) {
147      case  2: return roar_conv_chans_1to28(out, in, samples);
148      default: return roar_conv_chans_1ton8(out, in, samples, to);
149     }
150     break;
151    case 2:
152     switch (to) {
153      case  1: return roar_conv_chans_2to18(out, in, samples);
154      default: return -1;
155     }
156     break;
157    default:
158     switch (to) {
159      case  1: return roar_conv_chans_nto18(out, in, samples, from);
160      default: return -1;
161     }
162   }
163  break;
164  case 16:
165   switch (from) {
166    case 1:
167     switch (to) {
168      case  2: return roar_conv_chans_1to216(out, in, samples);
169      default: return roar_conv_chans_1ton16(out, in, samples, to);
170     }
171     break;
172    case 2:
173     switch (to) {
174      case  1: return roar_conv_chans_2to116(out, in, samples);
175      default: return -1;
176     }
177     break;
178    default:
179     switch (to) {
180      case  1: return roar_conv_chans_nto116(out, in, samples, from);
181      default: return -1;
182     }
183   }
184  break;
185  default: return -1;
186 }
187
188 return -1;
189}
190
191int roar_conv_chans_1ton8  (void * out, void * in, int samples, int to) {
192 char * ip = (char*) in, * op = (char*) out;
193 int i;
194 int c;
195
196 for (i = samples - 1; i >= 0; i--)
197  for (c = to - 1; c >= 0; c--)
198   op[i*to + c] = ip[i];
199
200 return 0;
201}
202
203int roar_conv_chans_1to28  (void * out, void * in, int samples) {
204 char * ip = (char*) in, * op = (char*) out;
205 int i, h;
206
207 samples--;
208
209 for (i = (h = samples) * 2; i >= 0; i -= 2, h--) {
210  op[i + 0] = ip[h];
211  op[i + 1] = ip[h];
212 }
213
214 return 0;
215}
216
217int roar_conv_chans_1ton16 (void * out, void * in, int samples, int to) {
218 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
219 int i;
220 int c;
221
222 for (i = samples - 1; i >= 0; i--)
223  for (c = to - 1; c >= 0; c--)
224   op[i*to + c] = ip[i];
225
226 return 0;
227}
228
229int roar_conv_chans_1to216 (void * out, void * in, int samples) {
230 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
231 int i, h;
232
233 samples--;
234
235 for (i = (h = samples) * 2; i >= 0; i -= 2, h--) {
236  op[i + 0] = ip[h];
237  op[i + 1] = ip[h];
238 }
239
240 return 0;
241}
242
243int roar_conv_chans_nto18  (void * out, void * in, int samples, int from) {
244 int8_t * ip = (int8_t*) in, * op = (int8_t*) out;
245 int i;
246 int c;
247 register int s;
248
249 samples /= from;
250
251 for (i = samples - 1; i >= 0; i--) {
252  s  = 0;
253
254  for (c = 0; c < from; c++)
255   s += ip[i*from + c];
256
257  s /= from;
258  op[i] = s;
259 }
260
261 return 0;
262}
263
264int roar_conv_chans_2to18  (void * out, void * in, int samples) {
265 int8_t * ip = (int8_t*) in, * op = (int8_t*) out;
266 int i, h;
267
268 samples -= 2;
269
270 for (h = (i = samples) / 2; i >= 0; i -= 2, h--)
271  op[h] = ((int)ip[i + 0] + (int)ip[i + 1]) / 2;
272
273 return 0;
274}
275
276int roar_conv_chans_nto116 (void * out, void * in, int samples, int from) {
277 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
278 int i;
279 int c;
280 register int s;
281
282 samples /= from;
283
284 for (i = samples - 1; i >= 0; i--) {
285  s  = 0;
286
287  for (c = 0; c < from; c++)
288   s += ip[i*from + c];
289
290  s /= from;
291  op[i] = s;
292 }
293
294 return 0;
295}
296
297int roar_conv_chans_2to116  (void * out, void * in, int samples) {
298 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
299 int i, h;
300
301 samples -= 2;
302
303 for (h = (i = samples) / 2; i >= 0; i -= 2, h--)
304  op[h] = ((int)ip[i + 0] + (int)ip[i + 1]) / 2;
305
306 return 0;
307}
308
309int roar_conv_rate (void * out, void * in, int samples, int from, int to, int bits, int channels) {
310 if ( bits == 8  )
311  return roar_conv_rate_8(out, in, samples, from, to, channels);
312
313 if ( bits == 16 )
314  return roar_conv_rate_16(out, in, samples, from, to, channels);
315
316 return -1;
317}
318
319int roar_conv_rate_8  (void * out, void * in, int samples, int from, int to, int channels) {
320 return -1;
321}
322
323int roar_conv_rate_16 (void * out, void * in, int samples, int from, int to, int channels) {
324 if ( channels == 1 ) {
325  printf("roar_conv_rate_16(): samples=%i -> %i, rate=%i -> %i\n", samples*from/to, samples, from, to);
326  return roar_conv_poly4_16s((int16_t*) out, (int16_t*) in, samples, samples*from/to, (float)from/to);
327//  return roar_conv_poly4_16((int16_t*) out, (int16_t*) in, samples*to/from, samples);
328 }
329
330 return -1;
331}
332
333int raor_conv_codec (void * out, void * in, int samples, int from, int to, int bits) {
334 int inbo = ROAR_CODEC_BYTE_ORDER(from), outbo = ROAR_CODEC_BYTE_ORDER(to);
335 int ins  = ROAR_CODEC_IS_SIGNED(from),  outs  = ROAR_CODEC_IS_SIGNED(to);
336 void * nin = in;
337
338 if ( bits == 8 || bits == 16 ) {
339  if ( inbo  == ROAR_CODEC_PDP )
340   inbo  = ROAR_CODEC_LE;
341  if ( outbo == ROAR_CODEC_PDP )
342   outbo = ROAR_CODEC_LE;
343 }
344
345 if ( inbo != outbo ) {
346  if ( bits != 8 ) { // there is no need to talk about eddines on 8 bit data streams
347   if ( bits == 16 ) {
348    // in this case we can only have LE vs. BE, so, only need to swap:
349    roar_conv_endian_16(out, nin, samples);
350    nin = out;
351   } else if ( bits == 24 ) {
352    if ( (inbo == ROAR_CODEC_LE || inbo == ROAR_CODEC_BE) && (outbo == ROAR_CODEC_LE || outbo == ROAR_CODEC_BE) ) {
353     roar_conv_endian_24(out, nin, samples);
354     nin = out;
355    } else { // what the hell is PDP eddines in 24 bit mode?
356     return -1;
357    }
358   } else {
359    return -1;
360   }
361  }
362 }
363
364 if ( ins != outs ) {
365  if ( ins && !outs ) {
366   switch (bits) {
367    case  8: roar_conv_codec_s2u8( out, nin, samples); break;
368    case 16: roar_conv_codec_s2u16(out, nin, samples); break;
369    case 32: roar_conv_codec_s2u32(out, nin, samples); break;
370    default:
371     errno = ENOSYS;
372     return -1;
373   }
374  } else if ( !ins && outs ) {
375   switch (bits) {
376    case  8: roar_conv_codec_u2s8( out, nin, samples); break;
377    case 16: roar_conv_codec_u2s16(out, nin, samples); break;
378    case 32: roar_conv_codec_u2s32(out, nin, samples); break;
379    default:
380     errno = ENOSYS;
381     return -1;
382   }
383  } else {
384   return -1;
385  }
386 }
387
388 return 0;
389}
390
391int roar_conv_codec_s2u8 (void * out, void * in, int samples) {
392 char * ip = in;
393 unsigned char * op = out;
394 int i;
395
396 for(i = 0; i < samples; i++)
397  op[i] = ip[i] + 128;
398
399 return 0;
400}
401
402int roar_conv_codec_s2u16 (void * out, void * in, int samples) {
403 int16_t  * ip = in;
404 uint16_t * op = out;
405 int i;
406
407 for(i = 0; i < samples; i++)
408  op[i] = ip[i] + 32768;
409
410 return 0;
411}
412
413int roar_conv_codec_s2u32 (void * out, void * in, int samples) {
414 int32_t  * ip = in;
415 uint32_t * op = out;
416 int i;
417
418 for(i = 0; i < samples; i++)
419  op[i] = ip[i] + 2147483648U;
420
421 return 0;
422}
423
424int roar_conv_codec_u2s8 (void * out, void * in, int samples) {
425 unsigned char * ip = in;
426          char * op = out;
427 int i;
428
429 for(i = 0; i < samples; i++)
430  op[i] = ip[i] - 128;
431
432 return 0;
433}
434
435int roar_conv_codec_u2s16 (void * out, void * in, int samples) {
436 uint16_t  * ip = in;
437 int16_t   * op = out;
438 int i;
439
440 for(i = 0; i < samples; i++)
441  op[i] = ip[i] - 32768;
442
443 return 0;
444}
445
446int roar_conv_codec_u2s32 (void * out, void * in, int samples) {
447 uint32_t  * ip = in;
448 int32_t   * op = out;
449 int i;
450
451 for(i = 0; i < samples; i++)
452  op[i] = ip[i] - 2147483648U;
453
454 return 0;
455}
456
457int roar_conv_endian_16   (void * out, void * in, int samples) {
458 char          * ip = in;
459 char          * op = out;
460 register char   c;
461 int             i;
462
463 samples *= 2;
464
465 if ( out != in ) {
466//  printf("out != in\n");
467  for(i = 0; i < samples; i += 2) {
468//   printf("op[%i] = ip[%i]\nop[%i] = ip[%i]\n", i, i+1, i+1, i);
469   op[i  ] = ip[i+1];
470   op[i+1] = ip[i  ];
471  }
472 } else {
473//  printf("out == in\n");
474  for(i = 0; i < samples; i += 2) {
475   c       = ip[i+1];
476   op[i+1] = ip[i  ];
477   op[i  ] = c;
478  }
479 }
480
481 return 0;
482}
483
484int roar_conv_endian_24   (void * out, void * in, int samples) {
485 char          * ip = in;
486 char          * op = out;
487 register char   c;
488 int             i;
489
490 samples *= 3;
491
492 if ( out != in ) {
493//  printf("out != in\n");
494  for(i = 0; i < samples; i += 3) {
495//   printf("op[%i] = ip[%i]\nop[%i] = ip[%i]\n", i, i+1, i+1, i);
496   op[i  ] = ip[i+2];
497   op[i+2] = ip[i  ];
498  }
499 } else {
500//  printf("out == in\n");
501  for(i = 0; i < samples; i += 3) {
502   c       = ip[i+2];
503   op[i+2] = ip[i  ];
504   op[i  ] = c;
505  }
506 }
507
508 return 0;
509}
510
511int roar_conv       (void * out, void * in, int samples, struct roar_audio_info * from, struct roar_audio_info * to) {
512 void * ip = in;
513
514 // TODO: decide how to work around both in and out beeing to small to hold all
515 //       data between the steps.
516 //       for the moment: guess out >= in
517
518 if ( from->bits != to->bits ) {
519  if ( roar_conv_bits(out, ip, samples, from->bits, to->bits) == -1 )
520   return -1;
521  else
522   ip = out;
523 }
524
525 if ( from->codec != to->codec ) {
526  if ( raor_conv_codec (out, ip, samples, from->codec, to->codec, to->bits) == -1 )
527   return -1;
528  else
529   ip = out;
530 }
531
532 if ( from->rate != to->rate ) {
533  if ( roar_conv_rate(out, ip, samples, from->rate, to->rate, to->bits, from->channels) == -1 )
534   return -1;
535  else
536   ip = out;
537 }
538
539 if ( from->channels != to->channels ) {
540  if ( roar_conv_chans(out, ip, samples, from->channels, to->channels, to->bits) == -1 )
541   return -1;
542  else
543   ip = out;
544 }
545
546 return 0;
547}
548
549
550
551int roar_conv_poly4_16 (int16_t * out, int16_t * in, size_t olen, size_t ilen) {
552 return roar_conv_poly4_16s(out, in, olen, ilen, (float)ilen/olen);
553}
554
555int roar_conv_poly4_16s (int16_t * out, int16_t * in, size_t olen, size_t ilen, float step) {
556 float poly[4];
557 float data[4];
558 float t    = 0;
559 int16_t * ci = in;
560 int io, ii = 0;
561 int i;
562
563 printf("step=%f\n", step);
564
565 // we can not make a poly4 with less than 4 points ;)
566 if ( ilen < 4 )
567  return -1;
568
569 for (i = 0; i < 4; i++)
570  data[i] = ci[i];
571 roar_math_mkpoly_4x4(poly, data);
572/*
573 printf("new poly: data[4] = {%f, %f, %f, %f}, poly[4] = {%f, %f, %f, %f}\n",
574         data[0], data[1], data[2], data[3],
575         poly[0], poly[1], poly[2], poly[3]
576       );
577*/
578
579 //0 1 2 3
580
581 for (io = 0; io < olen; io++) {
582//  printf("t=%f\n", t);
583  out[io] = roar_math_cvpoly_4x4(poly, t);
584  t += step;
585  if ( t > 2 ) { // we need a new ploynome
586 //  printf("t > 2, need new data\n");
587   if ( (ii + 4) < ilen ) { // else: end of block.
588    t -= 1;
589//    printf("new data: ii=%i\n", ii);
590    ii++;
591    ci++;
592    for (i = 0; i < 4; i++)
593     data[i] = ci[i];
594    roar_math_mkpoly_4x4(poly, data);
595/*
596   printf("new poly: data[4] = {%f, %f, %f, %f}, poly[4] = {%f, %f, %f, %f}\n",
597           data[0], data[1], data[2], data[3],
598           poly[0], poly[1], poly[2], poly[3]
599          );
600*/
601   }
602  }
603 }
604
605 printf("io=%i\n", io);
606
607 return 0;
608}
609
610//ll
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