source: roaraudio/libroardsp/convert.c @ 2743:0a9f381f7519

Last change on this file since 2743:0a9f381f7519 was 2743:0a9f381f7519, checked in by phi, 15 years ago

corrected nummber of channels, corrected decrement

File size: 27.2 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 "libroardsp.h"
36//#define free(p) {ROAR_WARN("free(%p) = ?", (p)); free((p)); ROAR_WARN("free(%p): OK", (p));}
37
38int roar_conv_bits (void * out, void * in, int samples, int from, int to) {
39 int format;
40
41 if ( from == to ) {
42  if ( in == out )
43   return 0;
44
45  memcpy(out, in, samples * from / 8);
46  return 0;
47 }
48
49 format = ((from / 8) << 4) + (to / 8);
50
51 switch (format) {
52  case 0x12: return roar_conv_bits_8to16( out, in, samples);
53  case 0x14: return roar_conv_bits_8to32( out, in, samples);
54  case 0x21: return roar_conv_bits_16to8( out, in, samples);
55  case 0x24: return roar_conv_bits_16to32(out, in, samples);
56  case 0x34: return roar_conv_bits_24to32(out, in, samples);
57  case 0x41: return roar_conv_bits_32to8( out, in, samples);
58  case 0x42: return roar_conv_bits_32to16(out, in, samples);
59  default:
60   errno = ENOSYS;
61   return -1;
62 }
63
64 return -1;
65}
66
67int roar_conv_bits_8to16 (void * out, void * in, int samples) {
68 char    * ip = (char   *)in;
69 int16_t * op = (int16_t*)out;
70 int i;
71
72 for (i = samples - 1; i >= 0; i--)
73  op[i] = ip[i] << 8;
74
75 return 0;
76}
77
78int roar_conv_bits_8to32  (void * out, void * in, int samples) {
79 char    * ip = (char   *)in;
80 int32_t * op = (int32_t*)out;
81 int i;
82
83 for (i = samples - 1; i >= 0; i--)
84  op[i] = (int32_t) ip[i] << 24;
85
86 return 0;
87}
88
89int roar_conv_bits_16to8 (void * out, void * in, int samples) {
90 int16_t * ip = (int16_t*)in;
91 char    * op = (char   *)out;
92 int i;
93
94 ROAR_DBG("roar_conv_bits_16to8(out=%p, in=%p, samples=%i) = ?", out, in, samples);
95
96 for (i = 0; i < samples; i++)
97  op[i] = ip[i] >> 8;
98
99 return 0;
100}
101
102int roar_conv_bits_16to32 (void * out, void * in, int samples) {
103 int16_t * ip = (int16_t*)in;
104 int32_t * op = (int32_t*)out;
105 int i;
106
107 for (i = samples - 1; i >= 0; i--)
108  op[i] = (int32_t) ip[i] << 16;
109
110 return 0;
111}
112
113int roar_conv_bits_24to32 (void * out, void * in, int samples) {
114 uint8_t * ip = (uint8_t*)in;
115 int32_t * op = (int32_t*)out;
116 int i;
117 union {
118  int32_t i;
119  uint8_t c[4];
120 } t;
121
122 ROAR_DBG("roar_conv_bits_24to32(out=%p, in=%p, samples=%i) = ?", out, in, samples);
123
124#if (BYTE_ORDER == BIG_ENDIAN) || (BYTE_ORDER == LITTLE_ENDIAN)
125 t.i = 0;
126#else
127  ROAR_DBG("roar_conv_bits_24to32(out=%p, in=%p, samples=%i) = -1", out, in, samples);
128  return -1;
129#endif
130
131 samples--;
132 ip += 3 * samples;
133
134 for (i = samples; i >= 0; i--) {
135#if BYTE_ORDER == BIG_ENDIAN
136  t.c[0] = *(ip--);
137  t.c[1] = *(ip--);
138  t.c[2] = *(ip--);
139#elif BYTE_ORDER == LITTLE_ENDIAN
140  t.c[2] = *(ip--);
141  t.c[3] = *(ip--);
142  t.c[1] = *(ip--);
143#endif
144  ROAR_DBG("roar_conv_bits_24to32(*): i=%i, t.i=0x%.8X", i, t.i);
145  op[i] = t.i;
146 }
147
148 ROAR_DBG("roar_conv_bits_24to32(out=%p, in=%p, samples=%i) = 0", out, in, samples);
149 return 0;
150}
151
152int roar_conv_bits_32to8 (void * out, void * in, int samples) {
153 int32_t * ip = (int32_t*)in;
154 char    * op = (char   *)out;
155 int i;
156
157 for (i = 0; i < samples; i++)
158  op[i] = ip[i] >> 24;
159
160 return 0;
161}
162
163int roar_conv_bits_32to16 (void * out, void * in, int samples) {
164 int32_t * ip = (int32_t*)in;
165 int16_t * op = (int16_t*)out;
166 int i;
167
168 for (i = 0; i < samples; i++)
169  op[i] = ip[i] >> 16;
170
171 return 0;
172}
173
174int roar_conv_chans (void * out, void * in, int samples, int from, int to, int bits) {
175 if ( from == to ) {
176  if ( in == out )
177   return 0;
178
179  memcpy(out, in, samples * from * bits / 8);
180  return 0;
181 }
182
183 switch (bits) {
184  case 8:
185   switch (from) {
186    case 1:
187     switch (to) {
188      case  2: return roar_conv_chans_1to28(out, in, samples);
189      default: return roar_conv_chans_1ton8(out, in, samples, to);
190     }
191     break;
192    case 2:
193     switch (to) {
194      case  1: return roar_conv_chans_2to18(out, in, samples);
195      default: return -1;
196     }
197     break;
198    default:
199     switch (to) {
200      case  1: return roar_conv_chans_nto18(out, in, samples, from);
201      default: return -1;
202     }
203   }
204  break;
205  case 16:
206   switch (from) {
207    case 1:
208     switch (to) {
209      case  2: return roar_conv_chans_1to216(out, in, samples);
210      default: return roar_conv_chans_1ton16(out, in, samples, to);
211     }
212     break;
213    case 2:
214     switch (to) {
215      case  1: return roar_conv_chans_2to116(out, in, samples);
216      case  3: return roar_conv_chans_2to316(out, in, samples);
217      case  4: return roar_conv_chans_2to416(out, in, samples);
218      case  5: return roar_conv_chans_2to516(out, in, samples);
219      case  6: return roar_conv_chans_2to616(out, in, samples);
220      default: return -1;
221     }
222     break;
223    default:
224     switch (to) {
225      case  1: return roar_conv_chans_nto116(out, in, samples, from);
226      default: return -1;
227     }
228   }
229  break;
230  default: return -1;
231 }
232
233 return -1;
234}
235
236int roar_conv_chans_1ton8  (void * out, void * in, int samples, int to) {
237 char * ip = (char*) in, * op = (char*) out;
238 int i;
239 int c;
240
241 for (i = samples - 1; i >= 0; i--)
242  for (c = to - 1; c >= 0; c--)
243   op[i*to + c] = ip[i];
244
245 return 0;
246}
247
248int roar_conv_chans_1to28  (void * out, void * in, int samples) {
249 char * ip = (char*) in, * op = (char*) out;
250 int i, h;
251
252 samples--;
253
254 for (i = (h = samples) * 2; i >= 0; i -= 2, h--) {
255  op[i + 0] = ip[h];
256  op[i + 1] = ip[h];
257 }
258
259 return 0;
260}
261
262int roar_conv_chans_1ton16 (void * out, void * in, int samples, int to) {
263 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
264 int i;
265 int c;
266
267 for (i = samples - 1; i >= 0; i--)
268  for (c = to - 1; c >= 0; c--)
269   op[i*to + c] = ip[i];
270
271 return 0;
272}
273
274int roar_conv_chans_1to216 (void * out, void * in, int samples) {
275 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
276 int i, h;
277
278 samples--;
279
280 for (i = (h = samples) * 2; i >= 0; i -= 2, h--) {
281  op[i + 0] = ip[h];
282  op[i + 1] = ip[h];
283 }
284
285 return 0;
286}
287
288int roar_conv_chans_nto18  (void * out, void * in, int samples, int from) {
289 int8_t * ip = (int8_t*) in, * op = (int8_t*) out;
290 int i;
291 int c;
292 register int s;
293
294 samples /= from;
295
296 for (i = samples - 1; i >= 0; i--) {
297  s  = 0;
298
299  for (c = 0; c < from; c++)
300   s += ip[i*from + c];
301
302  s /= from;
303  op[i] = s;
304 }
305
306 return 0;
307}
308
309int roar_conv_chans_2to18  (void * out, void * in, int samples) {
310 int8_t * ip = (int8_t*) in, * op = (int8_t*) out;
311 int i, h;
312
313 samples -= 2;
314
315 for (h = (i = samples) / 2; i >= 0; i -= 2, h--)
316  op[h] = ((int)ip[i + 0] + (int)ip[i + 1]) / 2;
317
318 return 0;
319}
320
321int roar_conv_chans_nto116 (void * out, void * in, int samples, int from) {
322 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
323 int i;
324 int c;
325 register int s;
326
327 samples /= from;
328
329 for (i = samples - 1; i >= 0; i--) {
330  s  = 0;
331
332  for (c = 0; c < from; c++)
333   s += ip[i*from + c];
334
335  s /= from;
336  op[i] = s;
337 }
338
339 return 0;
340}
341
342int roar_conv_chans_2to116  (void * out, void * in, int samples) {
343 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
344 int i, h;
345
346 ROAR_DBG("roar_conv_chans_2to116(out=%p, in=%p, samples=%i) = ?", out, in, samples);
347
348 samples -= 2;
349
350 for (h = (i = samples) / 2; i >= 0; i -= 2, h--) {
351  ROAR_DBG("roar_conv_chans_2to116(out=%p, in=%p, samples=%i): op[%i] = (ip[%i] + ip[%i])/2", out, in, samples, h, i, i+1);
352  op[h] = ((int)ip[i + 0] + (int)ip[i + 1]) / 2;
353 }
354
355 return 0;
356}
357
358int roar_conv_chans_2to38  (void * out, void * in, int samples);
359int roar_conv_chans_2to316 (void * out, void * in, int samples) {
360 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
361 int i, h;
362
363 samples -= 2;
364
365 i  = samples;
366 h  = (samples / 2) * 3;
367
368 for (; i >= 0; i -= 2, h -= 3) {
369  op[h+0] = ip[i+0];
370  op[h+1] = ip[i+1];
371  op[h+2] = ((int)ip[i + 0] + (int)ip[i + 1]) / 2;
372 }
373
374 return 0;
375}
376
377int roar_conv_chans_2to48  (void * out, void * in, int samples);
378int roar_conv_chans_2to416 (void * out, void * in, int samples) {
379 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
380 int i, h;
381
382 samples -= 2;
383
384 i  = samples;
385 h  = (samples / 2) * 4;
386
387 for (; i >= 0; i -= 2, h -= 4) {
388  op[h+0] = ip[i+0];
389  op[h+1] = ip[i+1];
390  op[h+2] = ip[i+0];
391  op[h+3] = ip[i+1];
392 }
393
394 return 0;
395}
396
397int roar_conv_chans_2to58  (void * out, void * in, int samples);
398int roar_conv_chans_2to516 (void * out, void * in, int samples) {
399 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
400 int i, h;
401
402 samples -= 2;
403
404 i  = samples;
405 h  = (samples / 2) * 5;
406
407 for (; i >= 0; i -= 2, h -= 5) {
408  op[h+0] = ip[i+0];
409  op[h+1] = ip[i+1];
410  op[h+2] = ((int)ip[i + 0] + (int)ip[i + 1]) / 2;
411  op[h+3] = ip[i+0];
412  op[h+4] = ip[i+1];
413 }
414
415 return 0;
416}
417int roar_conv_chans_2to68  (void * out, void * in, int samples);
418int roar_conv_chans_2to616 (void * out, void * in, int samples) {
419 int16_t * ip = (int16_t*) in, * op = (int16_t*) out;
420 int i, h;
421
422 samples -= 2;
423
424 i  = samples;
425 h  = (samples / 2) * 6;
426
427 for (; i >= 0; i -= 2, h -= 6) {
428  op[h+0] = ip[i+0];
429  op[h+1] = ip[i+1];
430  op[h+2] = ((int)ip[i + 0] + (int)ip[i + 1]) / 2;
431  op[h+3] = op[h+2];
432  op[h+4] = ip[i+0];
433  op[h+5] = ip[i+1];
434 }
435
436 return 0;
437}
438
439
440int roar_conv_rate (void * out, void * in, int samples, int from, int to, int bits, int channels) {
441#ifdef ROAR_HAVE_LIBSAMPLERATE
442 return roar_conv_rate_SRC(out, in, samples, from, to, bits, channels);
443#else
444 if ( bits == 8  )
445  return roar_conv_rate_8(out, in, samples, from, to, channels);
446
447 if ( bits == 16 )
448  return roar_conv_rate_16(out, in, samples, from, to, channels);
449
450 return -1;
451#endif
452}
453
454int roar_conv_rate_8  (void * out, void * in, int samples, int from, int to, int channels) {
455 return -1;
456}
457
458int roar_conv_rate_16 (void * out, void * in, int samples, int from, int to, int channels) {
459 if ( from > to ) {
460  switch (channels) {
461   case 1:
462     return roar_conv_rate_161zoh(out, in, samples, from, to);
463   case 2:
464     return roar_conv_rate_162zoh(out, in, samples, from, to);
465   default:
466     return -1;
467  }
468 } else {
469  if ( channels == 1 ) {
470   printf("roar_conv_rate_16(): samples=%i -> %i, rate=%i -> %i\n", samples*from/to, samples, from, to);
471   return roar_conv_poly4_16s((int16_t*) out, (int16_t*) in, samples, samples*from/to, (float)from/to);
472 //  return roar_conv_poly4_16((int16_t*) out, (int16_t*) in, samples*to/from, samples);
473  }
474 }
475
476 return -1;
477}
478
479int roar_conv_rate_161zoh(void * out, void * in, int samples, int from, int to) {
480 int16_t * ip = in;
481 int16_t * op = out;
482 float t = 0;
483 float step = (float)to/from;
484 int i;
485
486 for (i= 0; i < samples; i++) {
487  op[(int)t] = ip[i];
488  t += step;
489 }
490
491 return 0;
492}
493
494int roar_conv_rate_162zoh(void * out, void * in, int samples, int from, int to) {
495 int16_t * ip = in;
496 int16_t * op = out;
497 float t = 0;
498 float step = (float)to/from;
499 int i;
500
501 ROAR_DBG("roar_conv_rate_162zoh(*): samples=%i", samples);
502 samples /= 2;
503// samples -= 1;
504 ROAR_DBG("roar_conv_rate_162zoh(*): samples=%i", samples);
505
506 for (i= 0; i < samples; i++) {
507  ROAR_DBG("roar_conv_rate_162zoh(*): t=%f, i=%i // op[%i] = ip[%i]", t, i, 2*(int)t, 2*i);
508  op[2*(int)t    ] = ip[2*i    ];
509  op[2*(int)t + 1] = ip[2*i + 1];
510  t += step;
511 }
512
513 return 0;
514}
515
516int roar_conv_rate_SRC   (void * out, void * in, int samples, int from, int to, int bits, int channels) {
517#ifdef ROAR_HAVE_LIBSAMPLERATE
518 double radio = (double) to / (double) from;
519 int outsamples = radio * samples;
520 float * inf  = malloc(samples*sizeof(float));
521 float * outf = malloc(outsamples*sizeof(float));
522 int i;
523 SRC_DATA srcdata;
524
525 ROAR_DBG("roar_conv_rate_SRC(*): radio=%lf, samples=%i, outsamples=%i", radio, samples, outsamples);
526
527 if ( inf == NULL ) {
528  if ( outf != NULL )
529   free(outf);
530
531  return -1;
532 }
533
534 if ( outf == NULL ) {
535  if ( inf != NULL )
536   free(inf);
537
538  return -1;
539 }
540
541 switch (bits) {
542  case  8:
543    for (i = 0; i < samples; i++)
544     inf[i] = *(((int8_t *)in)+i) / 128.0;
545   break;
546  case 16:
547    for (i = 0; i < samples; i++)
548     inf[i] = *(((int16_t*)in)+i) / 32768.0;
549   break;
550  case 32:
551    for (i = 0; i < samples; i++)
552     inf[i] = *(((int32_t*)in)+i) / 2147483648.0;
553   break;
554  default:
555    free(outf);
556    free(inf);
557    return -1;
558 }
559
560 srcdata.data_in       = inf;
561 srcdata.data_out      = outf;
562 srcdata.input_frames  = samples/channels;
563 srcdata.output_frames = outsamples/channels;
564 srcdata.src_ratio     = radio;
565
566 if ( src_simple(&srcdata, SRC_ZERO_ORDER_HOLD, channels) != 0 ) {
567  free(outf);
568  free(inf);
569  return -1;
570 }
571
572 switch (bits) {
573  case  8:
574    for (i = 0; i < outsamples; i++)
575     *(((int8_t *)out)+i) = outf[i] * 128.0;
576   break;
577  case 16:
578    for (i = 0; i < outsamples; i++)
579     *(((int16_t*)out)+i) = outf[i] * 32768.0;
580   break;
581  case 32:
582    for (i = 0; i < outsamples; i++)
583     *(((int32_t*)out)+i) = outf[i] * 2147483648.0;
584   break;
585   // no errors here, they are handled above
586 }
587
588 free(outf);
589 free(inf);
590
591 return 0;
592#else
593 return -1;
594#endif
595}
596
597int roar_conv_signedness  (void * out, void * in, int samples, int from, int to, int bits) {
598
599 if ( from != to ) {
600  if ( from && !to ) {
601   switch (bits) {
602    case  8: roar_conv_codec_s2u8( out, in, samples); break;
603    case 16: roar_conv_codec_s2u16(out, in, samples); break;
604    case 32: roar_conv_codec_s2u32(out, in, samples); break;
605    default:
606     errno = ENOSYS;
607     return -1;
608   }
609  } else if ( !from && to ) {
610   switch (bits) {
611    case  8: roar_conv_codec_u2s8( out, in, samples); break;
612    case 16: roar_conv_codec_u2s16(out, in, samples); break;
613    case 32: roar_conv_codec_u2s32(out, in, samples); break;
614    default:
615     errno = ENOSYS;
616     return -1;
617   }
618  } else {
619   return -1;
620  }
621 } else {
622  if ( out == in )
623   return 0;
624
625  memcpy(out, in, samples * bits / 8);
626  return 0;
627 }
628
629 return 0;
630}
631
632int roar_conv_codec (void * out, void * in, int samples, int from, int to, int bits) {
633 int inbo = ROAR_CODEC_BYTE_ORDER(from), outbo = ROAR_CODEC_BYTE_ORDER(to);
634 int ins  = ROAR_CODEC_IS_SIGNED(from),  outs  = ROAR_CODEC_IS_SIGNED(to);
635 void * nin = in;
636
637
638 ROAR_DBG("roar_conv_codec(out=%p, in=%p, samples=%i, from=%i(%s), to=%i(%s), bits=%i) = ?",
639              out, in, samples, from, roar_codec2str(from), to, roar_codec2str(to), bits);
640
641 roar_conv_endian(out, in, samples, inbo, outbo, bits);
642 nin = out;
643
644 return roar_conv_signedness(out, in, samples, ins, outs, bits);
645}
646
647int roar_conv_codec_s2u8 (void * out, void * in, int samples) {
648 char * ip = in;
649 unsigned char * op = out;
650 int i;
651
652 for(i = 0; i < samples; i++)
653  op[i] = ip[i] + 128;
654
655 return 0;
656}
657
658int roar_conv_codec_s2u16 (void * out, void * in, int samples) {
659 int16_t  * ip = in;
660 uint16_t * op = out;
661 int i;
662
663 for(i = 0; i < samples; i++)
664  op[i] = ip[i] + 32768;
665
666 return 0;
667}
668
669int roar_conv_codec_s2u32 (void * out, void * in, int samples) {
670 int32_t  * ip = in;
671 uint32_t * op = out;
672 int i;
673
674 for(i = 0; i < samples; i++)
675  op[i] = ip[i] + 2147483648U;
676
677 return 0;
678}
679
680int roar_conv_codec_u2s8 (void * out, void * in, int samples) {
681 unsigned char * ip = in;
682          char * op = out;
683 int i;
684
685 for(i = 0; i < samples; i++)
686  op[i] = ip[i] - 128;
687
688 return 0;
689}
690
691int roar_conv_codec_u2s16 (void * out, void * in, int samples) {
692 uint16_t  * ip = in;
693 int16_t   * op = out;
694 int i;
695
696 for(i = 0; i < samples; i++)
697  op[i] = ip[i] - 32768;
698
699 return 0;
700}
701
702int roar_conv_codec_u2s32 (void * out, void * in, int samples) {
703 uint32_t  * ip = in;
704 int32_t   * op = out;
705 int i;
706
707 for(i = 0; i < samples; i++)
708  op[i] = ip[i] - 2147483648U;
709
710 return 0;
711}
712
713
714int roar_conv_endian      (void * out, void * in, int samples, int from, int to, int bits) {
715
716 if ( bits == 8 ) {
717  from = to = ROAR_CODEC_NATIVE_ENDIAN;
718
719 } else if ( bits == 16 ) {
720  if ( from  == ROAR_CODEC_PDP )
721   from = ROAR_CODEC_LE;
722  if ( to    == ROAR_CODEC_PDP )
723   to   = ROAR_CODEC_LE;
724 }
725
726 ROAR_DBG("roar_conv_endian(out=%p, in=%p, samples=%i, from=%i, to=%i, bits=%i) = ?", out, in, samples, from, to, bits);
727
728 if ( from == to ) {
729  if ( in != out ) {
730   memcpy(out, in, samples * bits / 8);
731  }
732  return 0;
733 } else {
734  if ( bits == 16 ) {
735   // in this case we can only have LE vs. BE, so, only need to swap:
736   ROAR_DBG("roar_conv_endian(*): Doing 16 bit byteswap");
737   return roar_conv_endian_16(out, in, samples);
738  } else if ( bits == 24 ) {
739   if ( (from == ROAR_CODEC_LE || from == ROAR_CODEC_BE) && (to == ROAR_CODEC_LE || to == ROAR_CODEC_BE) ) {
740    return roar_conv_endian_24(out, in, samples);
741   } else { // what the hell is PDP eddines in 24 bit mode?
742    return -1;
743   }
744  } else if ( bits == 32 ) {
745   if ( (from == ROAR_CODEC_LE || from == ROAR_CODEC_BE) && (to == ROAR_CODEC_LE || to == ROAR_CODEC_BE) ) {
746    return roar_conv_endian_32(out, in, samples);
747   } else { // need to handle 32 PDP eddines here?
748    return -1;
749   }
750  } else {
751   return -1;
752  }
753 }
754
755 return -1;
756}
757
758
759int roar_conv_endian_16   (void * out, void * in, int samples) {
760 char          * ip = in;
761 char          * op = out;
762 register char   c;
763 int             i;
764
765 samples *= 2;
766
767 if ( out != in ) {
768//  printf("out != in\n");
769  for(i = 0; i < samples; i += 2) {
770//   printf("op[%i] = ip[%i]\nop[%i] = ip[%i]\n", i, i+1, i+1, i);
771   op[i  ] = ip[i+1];
772   op[i+1] = ip[i  ];
773  }
774 } else {
775//  printf("out == in\n");
776  for(i = 0; i < samples; i += 2) {
777   c       = ip[i+1];
778   op[i+1] = ip[i  ];
779   op[i  ] = c;
780  }
781 }
782
783 return 0;
784}
785
786int roar_conv_endian_24   (void * out, void * in, int samples) {
787 char          * ip = in;
788 char          * op = out;
789 register char   c;
790 int             i;
791
792 samples *= 3;
793
794 if ( out != in ) {
795//  printf("out != in\n");
796  for(i = 0; i < samples; i += 3) {
797//   printf("op[%i] = ip[%i]\nop[%i] = ip[%i]\n", i, i+1, i+1, i);
798   op[i  ] = ip[i+2];
799   op[i+2] = ip[i  ];
800  }
801 } else {
802//  printf("out == in\n");
803  for(i = 0; i < samples; i += 3) {
804   c       = ip[i+2];
805   op[i+2] = ip[i  ];
806   op[i  ] = c;
807  }
808 }
809
810 return 0;
811}
812
813int roar_conv_endian_32   (void * out, void * in, int samples) {
814 int32_t       * ip = in;
815 int32_t       * op = out;
816 union {
817  int32_t val;
818  char    data[4];
819 }               c, h;
820 int             i;
821
822 // may the holly optimizer save our souls!
823
824 ROAR_DBG("roar_conv_endian_32(out=%p, in=%p, samples=%i) = ?", out, in, samples);
825
826 for (i = 0; i < samples; i++) {
827  c.val     = ip[i];
828  h.data[0] = c.data[3];
829  h.data[1] = c.data[2];
830  h.data[2] = c.data[1];
831  h.data[3] = c.data[0];
832  op[i]     = h.val;
833 }
834
835 return 0;
836}
837
838int roar_conv       (void * out, void * in, int samples, struct roar_audio_info * from, struct roar_audio_info * to) {
839 void * ip = in;
840 void * real_out = NULL;
841 size_t from_size, to_size;
842
843 // TODO: decide how to work around both in and out beeing to small to hold all
844 //       data between the steps.
845 //       for the moment: guess out >= in
846
847 from_size = (from->bits * samples) / 8;
848 to_size   = (  to->bits * samples * to->rate * to->channels) / (8 * from->rate * from->channels);
849
850 ROAR_DBG("roar_conv(*): size: %i->%i", from_size, to_size);
851
852 if ( to_size < from_size ) {
853  real_out = out;
854
855  if ( (out = malloc(from_size)) == NULL )
856   return -1;
857
858  ROAR_DBG("roar_conv(*): malloc(%i)=%p", (int)from_size, out);
859 }
860
861 ROAR_DBG("roar_conv(*): bo conv: %i->%i(native)", ROAR_CODEC_BYTE_ORDER(from->codec), ROAR_CODEC_NATIVE_ENDIAN);
862
863 if ( ROAR_CODEC_BYTE_ORDER(from->codec) != ROAR_CODEC_NATIVE_ENDIAN ) {
864  ROAR_DBG("roar_conv(*): doing bo input conv");
865  if ( roar_conv_endian(out, ip, samples, ROAR_CODEC_BYTE_ORDER(from->codec), ROAR_CODEC_NATIVE_ENDIAN, from->bits) == -1 ) {
866   if ( to_size < from_size )
867    free(out);
868   return -1;
869  } else {
870   ip = out;
871  }
872 }
873
874 if ( from->bits != to->bits ) {
875  if ( roar_conv_bits(out, ip, samples, from->bits, to->bits) == -1 ) {
876   if ( to_size < from_size )
877    free(out);
878   return -1;
879  } else {
880   ip = out;
881  }
882 }
883
884 if ( ROAR_CODEC_IS_SIGNED(from->codec) != ROAR_CODEC_IS_SIGNED(to->codec) ) {
885  if ( roar_conv_signedness(out, ip, samples, ROAR_CODEC_IS_SIGNED(from->codec), ROAR_CODEC_IS_SIGNED(to->codec), to->bits) == -1 ) {
886   if ( to_size < from_size )
887    free(out);
888   return -1;
889  } else {
890   ip = out;
891  }
892 }
893
894/*
895 if ( from->codec != to->codec ) {
896  if ( roar_conv_codec (out, ip, samples, from->codec, to->codec, to->bits) == -1 )
897   return -1;
898  else
899   ip = out;
900 }
901*/
902
903 if ( from->rate != to->rate ) {
904  if ( roar_conv_rate(out, ip, samples, from->rate, to->rate, to->bits, from->channels) == -1 ) {
905   ROAR_DBG("roar_conv(*): failed to convert rate %i->%i (%ich%ibits)", from->rate, to->rate, to->bits, from->channels);
906   if ( to_size < from_size )
907    free(out);
908   return -1;
909  } else {
910   ip = out;
911   samples = (samples * to->rate) / from->rate;
912  }
913 }
914
915 if ( from->channels != to->channels ) {
916  if ( roar_conv_chans(out, ip, samples, from->channels, to->channels, to->bits) == -1 ) {
917   if ( to_size < from_size )
918    free(out);
919   return -1;
920  } else {
921   ip = out;
922  }
923 }
924
925 if ( ROAR_CODEC_BYTE_ORDER(to->codec) != ROAR_CODEC_NATIVE_ENDIAN ) {
926  if ( roar_conv_endian(out, ip, samples, ROAR_CODEC_NATIVE_ENDIAN, ROAR_CODEC_BYTE_ORDER(to->codec), to->bits) == -1 ) {
927   if ( to_size < from_size )
928    free(out);
929   return -1;
930  } else {
931   ip = out;
932  }
933 }
934
935 if ( to_size < from_size ) {
936  ROAR_DBG("roar_conv(*): memcpy(%p, %p, %i) = ?", real_out, out, (int)to_size);
937  memcpy(real_out, out, to_size);
938  free(out);
939  ROAR_DBG("roar_conv(*): free(%p): OK!", out);
940 }
941
942 return 0;
943}
944
945int roar_conv2(void * out, void * in,
946               size_t inlen,
947               struct roar_audio_info * from, struct roar_audio_info * to,
948               size_t bufsize) {
949 size_t samples;
950 size_t needed_buffer;
951 void   * cin = in;
952 struct roar_audio_info cinfo;
953 int    need_signed = 0;
954
955 memcpy(&cinfo, from, sizeof(cinfo));
956
957 ROAR_DBG("roar_conv2(out=%p, in=%p, inlen=%lu, from=%p{...}, to=%p{...}, bufsize=%lu", out, in, inlen, from, to, bufsize);
958
959/*
960 if ( in != out ) {
961  memset(out, 0xA0, bufsize);
962 } else {
963  ROAR_WARN("roar_conv2(*): in==out!");
964  memset(out+inlen, 0xA0, bufsize-inlen);
965 }
966*/
967
968 // calcumate number of input samples:
969 samples = (inlen * 8) / (from->bits);
970
971 ROAR_DBG("roar_conv2(*): input samples: %i", samples);
972
973 // calculate size per frame
974 needed_buffer  = ROAR_MAX(from->channels, to->channels) * ROAR_MAX(from->bits, to->bits) / 8;
975
976 needed_buffer *= samples;
977 needed_buffer /= from->channels;
978
979 if ( from->rate < to->rate )
980  needed_buffer *= (float)to->rate/(float)from->rate;
981
982 ROAR_DBG("roar_conv2(*): needed_buffer=%u, bufsize=%u", needed_buffer, bufsize);
983
984 // chjeck if we have enogth RAM to convert
985 if ( needed_buffer > bufsize )
986  return -1;
987
988 if ( from->rate != to->rate || from->channels != to->channels )
989  need_signed = 1;
990
991  ROAR_DBG("roar_conv2(*): need_signed=%i", need_signed);
992
993 if ( ROAR_CODEC_BYTE_ORDER(from->codec) != ROAR_CODEC_NATIVE_ENDIAN ) {
994  ROAR_DBG("roar_conv2(*): doing bo input conv");
995  if ( roar_conv_endian(out, cin, samples,
996       ROAR_CODEC_BYTE_ORDER(from->codec), ROAR_CODEC_NATIVE_ENDIAN, from->bits) == -1 ) {
997   return -1;
998  }
999  cin = out;
1000 }
1001
1002 if ( to->bits > from->bits ) {
1003  ROAR_DBG("roar_conv2(*): bits: %i->%i", from->bits, to->bits);
1004  if ( roar_conv_bits(out, cin, samples, from->bits, to->bits) == -1 )
1005   return -1;
1006
1007  cin        = out;
1008  cinfo.bits = to->bits;
1009 }
1010
1011 if ( need_signed && ! ROAR_CODEC_IS_SIGNED(from->codec) ) {
1012  ROAR_DBG("roar_conv2(*): sign: unsigned->signed");
1013  if ( roar_conv_signedness(out, cin, samples,
1014                            ROAR_CODEC_IS_SIGNED(from->codec), ROAR_CODEC_IS_SIGNED(to->codec),
1015                            cinfo.bits) == -1 )
1016   return -1;
1017
1018  cin            = out;
1019  cinfo.codec    = ROAR_CODEC_PCM_S_LE; // just a signed PCM, which is of no intrest
1020 }
1021
1022 if ( to->channels > from->channels ) {
1023  ROAR_DBG("roar_conv2(*): channels: %i->%i", from->channels, to->channels);
1024  if ( roar_conv_chans(out, cin, samples/from->channels, from->channels, to->channels, cinfo.bits) == -1 )
1025   return -1;
1026
1027  cin            = out;
1028  cinfo.channels = to->channels;
1029 }
1030
1031//--//
1032 if ( from->rate != to->rate ) {
1033  if ( roar_conv_rate(out, cin, samples, from->rate, to->rate, cinfo.bits, cinfo.channels) == -1 )
1034   return -1;
1035
1036  cin            = out;
1037  samples        = (float)samples * (float)to->rate / (float)from->rate;
1038  cinfo.rate     = to->rate;
1039 }
1040
1041 if ( cinfo.channels != to->channels ) {
1042  ROAR_DBG("roar_conv2(*): channels: %i->%i", cinfo.channels, to->channels);
1043  if ( roar_conv_chans(out, cin, samples, cinfo.channels, to->channels, cinfo.bits) == -1 )
1044   return -1;
1045
1046  cin            = out;
1047  cinfo.channels = to->channels;
1048 }
1049
1050 if ( ROAR_CODEC_IS_SIGNED(cinfo.codec) != ROAR_CODEC_IS_SIGNED(to->codec) ) {
1051  ROAR_DBG("roar_conv2(*): sign: ?(%i)->?(%i)", ROAR_CODEC_IS_SIGNED(cinfo.codec), ROAR_CODEC_IS_SIGNED(to->codec));
1052  if ( roar_conv_signedness(out, cin, samples,
1053                            ROAR_CODEC_IS_SIGNED(cinfo.codec), ROAR_CODEC_IS_SIGNED(to->codec),
1054                            cinfo.bits) == -1 )
1055   return -1;
1056
1057  cin            = out;
1058  cinfo.codec    = to->codec;
1059 }
1060
1061 if ( cinfo.bits != to->bits ) {
1062  ROAR_DBG("roar_conv2(*): bits: %i->%i", cinfo.bits, to->bits);
1063  if ( roar_conv_bits(out, cin, samples, cinfo.bits, to->bits) == -1 )
1064   return -1;
1065
1066  cin        = out;
1067  cinfo.bits = to->bits;
1068 }
1069
1070 if ( ROAR_CODEC_BYTE_ORDER(to->codec) != ROAR_CODEC_NATIVE_ENDIAN ) {
1071  ROAR_DBG("roar_conv2(*): doing bo output conv");
1072  if ( roar_conv_endian(out, cin, samples,
1073       ROAR_CODEC_NATIVE_ENDIAN, ROAR_CODEC_BYTE_ORDER(to->codec), to->bits) == -1 ) {
1074   return -1;
1075  }
1076  cin = out;
1077 }
1078
1079 ROAR_DBG("roar_conv2(*) = 0");
1080 return 0;
1081}
1082
1083int roar_conv_poly4_16 (int16_t * out, int16_t * in, size_t olen, size_t ilen) {
1084 return roar_conv_poly4_16s(out, in, olen, ilen, (float)ilen/olen);
1085}
1086
1087int roar_conv_poly4_16s (int16_t * out, int16_t * in, size_t olen, size_t ilen, float step) {
1088 float poly[4];
1089 float data[4];
1090 float t    = 0;
1091 int16_t * ci = in;
1092 int io, ii = 0;
1093 int i;
1094
1095 printf("step=%f\n", step);
1096
1097 // we can not make a poly4 with less than 4 points ;)
1098 if ( ilen < 4 )
1099  return -1;
1100
1101 for (i = 0; i < 4; i++)
1102  data[i] = ci[i];
1103 roar_math_mkpoly_4x4(poly, data);
1104/*
1105 printf("new poly: data[4] = {%f, %f, %f, %f}, poly[4] = {%f, %f, %f, %f}\n",
1106         data[0], data[1], data[2], data[3],
1107         poly[0], poly[1], poly[2], poly[3]
1108       );
1109*/
1110
1111 //0 1 2 3
1112
1113 for (io = 0; io < olen; io++) {
1114//  printf("t=%f\n", t);
1115  out[io] = roar_math_cvpoly_4x4(poly, t);
1116  t += step;
1117  if ( t > 2 ) { // we need a new ploynome
1118 //  printf("t > 2, need new data\n");
1119   if ( (ii + 4) < ilen ) { // else: end of block.
1120    t -= 1;
1121//    printf("new data: ii=%i\n", ii);
1122    ii++;
1123    ci++;
1124    for (i = 0; i < 4; i++)
1125     data[i] = ci[i];
1126    roar_math_mkpoly_4x4(poly, data);
1127/*
1128   printf("new poly: data[4] = {%f, %f, %f, %f}, poly[4] = {%f, %f, %f, %f}\n",
1129           data[0], data[1], data[2], data[3],
1130           poly[0], poly[1], poly[2], poly[3]
1131          );
1132*/
1133   }
1134  }
1135 }
1136
1137 printf("io=%i\n", io);
1138
1139 return 0;
1140}
1141
1142//ll
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