source: mainline/uspace/lib/trackmod/trackmod.c@ 5bbb044c

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 5bbb044c was e8975278, checked in by Jiri Svoboda <jiri@…>, 7 years ago

A few more cstyle fixes.

  • Property mode set to 100644
File size: 23.3 KB
Line 
1/*
2 * Copyright (c) 2014 Jiri Svoboda
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup trackmod
30 * @{
31 */
32/**
33 * @file Tracker module handling library.
34 */
35
36#include <assert.h>
37#include <errno.h>
38#include <stdio.h>
39#include <stdlib.h>
40
41#include "macros.h"
42#include "protracker.h"
43#include "trackmod.h"
44#include "xm.h"
45
46/** Tunables */
47enum {
48 amp_factor = 16
49};
50
51/** Standard definitions set in stone */
52enum {
53 /** Base sample clock */
54 base_clock = 8363 * 428,
55 /** Maximum sample volume */
56 vol_max = 64,
57 /** Minimum period */
58 period_min = 113,
59 /** Maxium period */
60 period_max = 856
61};
62
63/** Table for finetune computation.
64 *
65 * Finetune is a number ft in [-8 .. 7]. The pitch should be adjusted by
66 * ft/8 semitones. To adjust pitch by 1/8 semitone down we can mutiply the
67 * period by 2^(1/12/8) =. 1.0072, one semitone up: 2^-(1/12/8) =. 0.9928,
68 * to adjust by ft/8 semitones, multiply by 2^(-ft/12/8).
69 *
70 * finetune_factor[ft] := 10000 * 2^(-ft/12/8)
71 * res_period = clip(period * fineture_factor[ft+8] / 10000)
72 */
73static unsigned finetune_factor[16] = {
74 10595, 10518, 10443, 10368, 10293, 10219, 10145, 10072,
75 10000, 9928, 9857, 9786, 9715, 9645, 9576, 9507
76};
77
78static unsigned period_table[12 * 8] = {
79 907, 900, 894, 887, 881, 875, 868, 862, 856, 850, 844, 838,
80 832, 826, 820, 814, 808, 802, 796, 791, 785, 779, 774, 768,
81 762, 757, 752, 746, 741, 736, 730, 725, 720, 715, 709, 704,
82 699, 694, 689, 684, 678, 675, 670, 665, 660, 655, 651, 646,
83 640, 636, 632, 628, 623, 619, 614, 610, 604, 601, 597, 592,
84 588, 584, 580, 575, 570, 567, 563, 559, 555, 551, 547, 543,
85 538, 535, 532, 528, 524, 520, 516, 513, 508, 505, 502, 498,
86 494, 491, 487, 484, 480, 477, 474, 470, 467, 463, 460, 457
87};
88
89static size_t trackmod_get_next_ord_idx(trackmod_modplay_t *);
90
91/** Destroy sample.
92 *
93 * @param sample Sample
94 */
95static void trackmod_sample_destroy(trackmod_sample_t *sample)
96{
97 free(sample->data);
98}
99
100/** Destroy instrument.
101 *
102 * @param instr Intrument
103 */
104static void trackmod_instr_destroy(trackmod_instr_t *instr)
105{
106 size_t i;
107
108 for (i = 0; i < instr->samples; i++)
109 trackmod_sample_destroy(&instr->sample[i]);
110}
111
112/** Destroy pattern.
113 *
114 * @param pattern Pattern
115 */
116static void trackmod_pattern_destroy(trackmod_pattern_t *pattern)
117{
118 free(pattern->data);
119}
120
121/** Create new empty module structure.
122 *
123 * @return New module
124 */
125trackmod_module_t *trackmod_module_new(void)
126{
127 return calloc(1, sizeof(trackmod_module_t));
128}
129
130/** Destroy module.
131 *
132 * @param module Module
133 */
134void trackmod_module_destroy(trackmod_module_t *module)
135{
136 size_t i;
137
138 /* Destroy samples */
139 if (module->instr != NULL) {
140 for (i = 0; i < module->instrs; i++)
141 trackmod_instr_destroy(&module->instr[i]);
142 free(module->instr);
143 }
144
145 /* Destroy patterns */
146 if (module->pattern != NULL) {
147 for (i = 0; i < module->patterns; i++)
148 trackmod_pattern_destroy(&module->pattern[i]);
149 free(module->pattern);
150 }
151
152 free(module->ord_list);
153 free(module);
154}
155
156errno_t trackmod_module_load(char *fname, trackmod_module_t **rmodule)
157{
158 errno_t rc;
159
160 rc = trackmod_xm_load(fname, rmodule);
161 if (rc == EOK)
162 return EOK;
163
164 rc = trackmod_protracker_load(fname, rmodule);
165 return rc;
166}
167
168
169/** Return current pattern.
170 *
171 * @param modplay Module playback
172 * @return Pattern
173 */
174static trackmod_pattern_t *trackmod_cur_pattern(trackmod_modplay_t *modplay)
175{
176 unsigned pat_idx;
177
178 pat_idx = modplay->module->ord_list[modplay->ord_idx];
179 return &modplay->module->pattern[pat_idx];
180}
181
182/** Decode pattern cell.
183 *
184 * @param pattern Pattern
185 * @param row Row number
186 * @param channel Channel number
187 * @param cell Place to store decoded cell
188 */
189static void trackmod_pattern_get_cell(trackmod_pattern_t *pattern,
190 size_t row, size_t channel, trackmod_cell_t *cell)
191{
192 *cell = pattern->data[row * pattern->channels + channel];
193}
194
195/** Compute floor(a / b), and the remainder.
196 *
197 * Unlike standard integer division this rounds towars negative infinity,
198 * not towards zero.
199 *
200 * @param a Dividend
201 * @param b Divisor
202 * @param quot Place to store 'quotient' (floor (a/b))
203 * @param rem Place to store 'remainder' (a - floor(a/b) * b)
204 */
205static void divmod_floor(int a, int b, int *quot, int *rem)
206{
207 if (b < 0) {
208 a = -a;
209 b = -b;
210 }
211
212 if (a >= 0) {
213 *quot = a / b;
214 *rem = a % b;
215 } else {
216 *quot = -(-a + (b - 1)) / b;
217 *rem = a - (*quot * b);
218 }
219}
220
221/** Process note (period)
222 *
223 * @param modplay Module playback
224 * @param i Channel number
225 * @param cell Cell
226 */
227static void trackmod_process_note(trackmod_modplay_t *modplay, size_t i,
228 trackmod_cell_t *cell)
229{
230 trackmod_chan_t *chan = &modplay->chan[i];
231 int period;
232 int pitch;
233 int octave;
234 int opitch;
235
236 if (chan->sample == NULL)
237 return;
238
239 if (cell->period == 0) {
240 pitch = 8 * (cell->note + chan->sample->rel_note) +
241 chan->sample->finetune;
242 divmod_floor(pitch, 8 * 12, &octave, &opitch);
243
244 if (octave >= 0)
245 period = period_table[opitch] * 8 / (1 << octave);
246 else
247 period = period_table[opitch] * 8 * (1 << (-octave));
248 } else {
249 period = cell->period;
250 period = period *
251 finetune_factor[chan->sample->finetune + 8] / 10000;
252 if (period > period_max)
253 period = period_max;
254 if (period < period_min)
255 period = period_min;
256 }
257
258 chan->period_new = period;
259}
260
261/** Process instrument number (this is what triggers the note playback)
262 *
263 * @param modplay Module playback
264 * @param i Channel number
265 * @param cell Cell
266 */
267static void trackmod_process_instr(trackmod_modplay_t *modplay, size_t i,
268 trackmod_cell_t *cell)
269{
270 trackmod_chan_t *chan = &modplay->chan[i];
271 trackmod_instr_t *instr;
272 size_t iidx;
273 size_t sidx;
274
275 if (cell->instr == 0)
276 return;
277
278 iidx = (cell->instr - 1) % modplay->module->instrs;
279 instr = &modplay->module->instr[iidx];
280 sidx = instr->key_smp[cell->note] % instr->samples;
281 chan->sample = &instr->sample[sidx];
282 chan->smp_pos = 0;
283 chan->lsmp = 0;
284
285 chan->volume = modplay->chan[i].sample->def_vol;
286}
287
288/** Process keyoff note
289 *
290 * @param modplay Module playback
291 * @param i Channel number
292 * @param cell Cell
293 */
294static void trackmod_process_keyoff_note(trackmod_modplay_t *modplay, size_t i)
295{
296 trackmod_chan_t *chan = &modplay->chan[i];
297
298 chan->sample = NULL;
299 chan->period = 0;
300 chan->smp_pos = 0;
301 chan->lsmp = 0;
302}
303
304/** Process Set volume effect.
305 *
306 * @param modplay Module playback
307 * @param chan Channel number
308 * @param param Effect parameter
309 */
310static void trackmod_effect_set_volume(trackmod_modplay_t *modplay, size_t chan,
311 uint8_t param)
312{
313 modplay->chan[chan].volume = param % (vol_max + 1);
314}
315
316/** Process Pattern break effect.
317 *
318 * @param modplay Module playback
319 * @param chan Channel number
320 * @param param Effect parameter
321 */
322static void trackmod_effect_pattern_break(trackmod_modplay_t *modplay,
323 size_t chan, uint8_t param)
324{
325 size_t next_idx;
326 trackmod_pattern_t *next_pat;
327 unsigned row;
328
329 /* Strangely the parameter is BCD */
330 row = (param >> 4) * 10 + (param & 0xf);
331
332 next_idx = trackmod_get_next_ord_idx(modplay);
333 next_pat = &modplay->module->pattern[next_idx];
334
335 modplay->pat_break = true;
336 modplay->pat_break_row = row % next_pat->rows;
337}
338
339/** Process Set speed effect.
340 *
341 * @param modplay Module playback
342 * @param chan Channel number
343 * @param param Effect parameter
344 */
345static void trackmod_effect_set_speed(trackmod_modplay_t *modplay, size_t chan,
346 uint8_t param)
347{
348 if (param > 0 && param < 32)
349 modplay->tpr = param;
350 else if (param > 0)
351 modplay->bpm = param;
352}
353
354/** Process Fine volume slide down effect.
355 *
356 * @param modplay Module playback
357 * @param chan Channel number
358 * @param param Effect parameter
359 */
360static void trackmod_effect_fine_vol_slide_down(trackmod_modplay_t *modplay,
361 size_t chan, uint8_t param)
362{
363 int nv;
364
365 nv = modplay->chan[chan].volume - param;
366 if (nv < 0)
367 nv = 0;
368 modplay->chan[chan].volume = nv;
369}
370
371/** Process Fine volume slide up effect.
372 *
373 * @param modplay Module playback
374 * @param chan Channel number
375 * @param param Effect parameter
376 */
377static void trackmod_effect_fine_vol_slide_up(trackmod_modplay_t *modplay,
378 size_t chan, uint8_t param)
379{
380 int nv;
381
382 nv = modplay->chan[chan].volume + param;
383 if (nv > vol_max)
384 nv = vol_max;
385 modplay->chan[chan].volume = nv;
386}
387
388/** Process Volume slide effect.
389 *
390 * @param modplay Module playback
391 * @param chan Channel number
392 * @param param Effect parameter
393 */
394static void trackmod_effect_vol_slide(trackmod_modplay_t *modplay,
395 size_t chan, uint8_t param)
396{
397 if ((param & 0xf0) != 0)
398 modplay->chan[chan].vol_slide = param >> 4;
399 else
400 modplay->chan[chan].vol_slide = -(int)(param & 0xf);
401}
402
403/** Process Volume slide down effect.
404 *
405 * @param modplay Module playback
406 * @param chan Channel number
407 * @param param Effect parameter
408 */
409static void trackmod_effect_vol_slide_down(trackmod_modplay_t *modplay,
410 size_t chan, uint8_t param4)
411{
412 modplay->chan[chan].vol_slide = -(int)param4;
413}
414
415/** Process Volume slide up effect.
416 *
417 * @param modplay Module playback
418 * @param chan Channel number
419 * @param param Effect parameter
420 */
421static void trackmod_effect_vol_slide_up(trackmod_modplay_t *modplay,
422 size_t chan, uint8_t param4)
423{
424 modplay->chan[chan].vol_slide = param4;
425}
426
427/** Process Fine portamento down effect.
428 *
429 * @param modplay Module playback
430 * @param chan Channel number
431 * @param param Effect parameter
432 */
433static void trackmod_effect_fine_porta_down(trackmod_modplay_t *modplay,
434 size_t chan, uint8_t param)
435{
436 int np;
437
438 np = modplay->chan[chan].period + param;
439 if (np > period_max)
440 np = period_max;
441 modplay->chan[chan].period = np;
442}
443
444/** Process Fine portamento up effect.
445 *
446 * @param modplay Module playback
447 * @param chan Channel number
448 * @param param Effect parameter
449 */
450static void trackmod_effect_fine_porta_up(trackmod_modplay_t *modplay,
451 size_t chan, uint8_t param)
452{
453 int np;
454
455 np = modplay->chan[chan].period - param;
456 if (np < period_min)
457 np = period_min;
458 modplay->chan[chan].period = np;
459}
460
461/** Process Portamento down effect.
462 *
463 * @param modplay Module playback
464 * @param chan Channel number
465 * @param param Effect parameter
466 */
467static void trackmod_effect_porta_down(trackmod_modplay_t *modplay,
468 size_t chan, uint8_t param)
469{
470 modplay->chan[chan].portamento = -(int)param;
471}
472
473/** Process Portamento up effect.
474 *
475 * @param modplay Module playback
476 * @param chan Channel number
477 * @param param Effect parameter
478 */
479static void trackmod_effect_porta_up(trackmod_modplay_t *modplay,
480 size_t chan, uint8_t param)
481{
482 modplay->chan[chan].portamento = param;
483}
484
485/** Process Tone portamento effect.
486 *
487 * @param modplay Module playback
488 * @param chan Channel number
489 * @param param Effect parameter
490 */
491static void trackmod_effect_tone_porta(trackmod_modplay_t *modplay,
492 size_t chan, uint8_t param)
493{
494 /* Set up tone portamento effect */
495 modplay->chan[chan].portamento = param;
496 if (modplay->chan[chan].period_new != 0)
497 modplay->chan[chan].period_tgt = modplay->chan[chan].period_new;
498
499 /* Prevent going directly to new period */
500 modplay->chan[chan].period_new = 0;
501}
502
503/** Process volume column.
504 *
505 * @param modplay Module playback
506 * @param chan Channel number
507 * @param cell Cell
508 */
509static void trackmod_process_volume(trackmod_modplay_t *modplay, size_t chan,
510 trackmod_cell_t *cell)
511{
512 uint8_t param4;
513
514 if (cell->volume >= 0x10 && cell->volume <= 0x10 + vol_max)
515 trackmod_effect_set_volume(modplay, chan, cell->volume - 0x10);
516
517 param4 = cell->volume & 0xf;
518
519 switch (cell->volume & 0xf0) {
520 case 0x60:
521 trackmod_effect_vol_slide_down(modplay, chan, param4);
522 break;
523 case 0x70:
524 trackmod_effect_vol_slide_up(modplay, chan, param4);
525 break;
526 case 0x80:
527 trackmod_effect_fine_vol_slide_down(modplay, chan, param4);
528 break;
529 case 0x90:
530 trackmod_effect_fine_vol_slide_up(modplay, chan, param4);
531 break;
532 case 0xf0:
533 trackmod_effect_tone_porta(modplay, chan, param4 << 4);
534 break;
535 default:
536 break;
537 }
538}
539
540/** Process effect.
541 *
542 * @param modplay Module playback
543 * @param chan Channel number
544 * @param cell Cell
545 */
546static void trackmod_process_effect(trackmod_modplay_t *modplay, size_t chan,
547 trackmod_cell_t *cell)
548{
549 uint8_t param8;
550 uint8_t param4;
551
552 param8 = cell->effect & 0xff;
553
554 switch (cell->effect & 0xf00) {
555 case 0x100:
556 trackmod_effect_porta_up(modplay, chan, param8);
557 break;
558 case 0x200:
559 trackmod_effect_porta_down(modplay, chan, param8);
560 break;
561 case 0x300:
562 trackmod_effect_tone_porta(modplay, chan, param8);
563 break;
564 case 0xa00:
565 trackmod_effect_vol_slide(modplay, chan, param8);
566 break;
567 case 0xc00:
568 trackmod_effect_set_volume(modplay, chan, param8);
569 break;
570 case 0xd00:
571 trackmod_effect_pattern_break(modplay, chan, param8);
572 break;
573 case 0xf00:
574 trackmod_effect_set_speed(modplay, chan, param8);
575 break;
576 default:
577 break;
578 }
579
580 param4 = cell->effect & 0xf;
581
582 switch (cell->effect & 0xff0) {
583 case 0xe10:
584 trackmod_effect_fine_porta_up(modplay, chan, param4);
585 break;
586 case 0xe20:
587 trackmod_effect_fine_porta_down(modplay, chan, param4);
588 break;
589 case 0xea0:
590 trackmod_effect_fine_vol_slide_up(modplay, chan, param4);
591 break;
592 case 0xeb0:
593 trackmod_effect_fine_vol_slide_down(modplay, chan, param4);
594 break;
595 }
596}
597
598/** Process pattern cell.
599 *
600 * @param modplay Module playback
601 * @param chan Channel number
602 * @param cell Cell
603 */
604static void trackmod_process_cell(trackmod_modplay_t *modplay, size_t chan,
605 trackmod_cell_t *cell)
606{
607 modplay->chan[chan].period_new = 0;
608
609 trackmod_process_instr(modplay, chan, cell);
610
611 if (cell->period != 0 || (cell->note != 0 && cell->note != keyoff_note)) {
612 trackmod_process_note(modplay, chan, cell);
613 } else if (cell->note == keyoff_note && cell->instr == 0) {
614 trackmod_process_keyoff_note(modplay, chan);
615 }
616
617 trackmod_process_volume(modplay, chan, cell);
618 trackmod_process_effect(modplay, chan, cell);
619
620 if (modplay->chan[chan].period_new != 0)
621 modplay->chan[chan].period = modplay->chan[chan].period_new;
622}
623
624/** Process pattern row.
625 *
626 * @param modplay Module playback
627 */
628static void trackmod_process_row(trackmod_modplay_t *modplay)
629{
630 trackmod_pattern_t *pattern;
631 trackmod_cell_t cell;
632 size_t i;
633
634 pattern = trackmod_cur_pattern(modplay);
635
636 if (modplay->debug)
637 printf("%02zx: ", modplay->row);
638
639 for (i = 0; i < modplay->module->channels; i++) {
640 trackmod_pattern_get_cell(pattern, modplay->row, i, &cell);
641
642 if (modplay->debug) {
643 printf("%4d %02x %02x %03x |", cell.period ?
644 cell.period : cell.note, cell.instr,
645 cell.volume, cell.effect);
646 }
647
648 trackmod_process_cell(modplay, i, &cell);
649 }
650
651 if (modplay->debug)
652 printf("\n");
653}
654
655/** Get next order list index.
656 *
657 * @param modplay Module playback
658 * @return Next order list index
659 */
660static size_t trackmod_get_next_ord_idx(trackmod_modplay_t *modplay)
661{
662 size_t ord_idx;
663
664 ord_idx = modplay->ord_idx + 1;
665 if (ord_idx >= modplay->module->ord_list_len)
666 ord_idx = modplay->module->restart_pos;
667
668 return ord_idx;
669}
670
671/** Advance to next pattern.
672 *
673 * @param modplay Module playback
674 */
675static void trackmod_next_pattern(trackmod_modplay_t *modplay)
676{
677 if (modplay->debug)
678 printf("Next pattern\n");
679
680 modplay->row = 0;
681 modplay->ord_idx = trackmod_get_next_ord_idx(modplay);
682
683 /* If we are doing a pattern break */
684 if (modplay->pat_break) {
685 modplay->row = modplay->pat_break_row;
686 modplay->pat_break = false;
687 }
688}
689
690/** Clear effects at end of row. */
691static void trackmod_clear_effects(trackmod_modplay_t *modplay)
692{
693 size_t i;
694
695 for (i = 0; i < modplay->module->channels; i++) {
696 modplay->chan[i].vol_slide = 0;
697 modplay->chan[i].portamento = 0;
698 }
699}
700
701/** Process effects at beginning of tick. */
702static void trackmod_process_tick(trackmod_modplay_t *modplay)
703{
704 trackmod_chan_t *chan;
705 size_t i;
706 int nv;
707 int np;
708
709 for (i = 0; i < modplay->module->channels; i++) {
710 chan = &modplay->chan[i];
711
712 /* Volume slides */
713 nv = (int)chan->volume + chan->vol_slide;
714 if (nv < 0)
715 nv = 0;
716 if (nv > vol_max)
717 nv = vol_max;
718
719 chan->volume = nv;
720
721 /* Portamentos */
722 if (chan->period_tgt == 0) {
723 /* Up or down portamento */
724 np = (int)chan->period - chan->portamento;
725 } else {
726 /* Tone portamento */
727 if (chan->period_tgt < chan->period)
728 np = max((int)chan->period_tgt, (int)chan->period - chan->portamento);
729 else
730 np = min((int)chan->period_tgt, (int)chan->period + chan->portamento);
731 }
732
733#if 0
734 /* XXX */
735 if (np < period_min)
736 np = period_min;
737 if (np > period_max)
738 np = period_max;
739#endif
740 modplay->chan[i].period = np;
741 }
742}
743
744/** Advance to next row.
745 *
746 * @param modplay Module playback
747 */
748static void trackmod_next_row(trackmod_modplay_t *modplay)
749{
750 trackmod_pattern_t *pattern;
751
752 /* Clear effect state at end of row */
753 trackmod_clear_effects(modplay);
754
755 pattern = trackmod_cur_pattern(modplay);
756
757 modplay->tick = 0;
758 ++modplay->row;
759 if (modplay->row >= pattern->rows || modplay->pat_break)
760 trackmod_next_pattern(modplay);
761
762 trackmod_process_tick(modplay);
763 trackmod_process_row(modplay);
764}
765
766/** Advance to next tick.
767 *
768 * @param modplay Module playback
769 */
770static void trackmod_next_tick(trackmod_modplay_t *modplay)
771{
772 modplay->smp = 0;
773 ++modplay->tick;
774 if (modplay->tick >= modplay->tpr)
775 trackmod_next_row(modplay);
776 else
777 trackmod_process_tick(modplay);
778}
779
780/** Create module playback object.
781 *
782 * @param module Module
783 * @param smp_freq Sampling frequency
784 * @param rmodplay Place to store pointer to module playback object
785 */
786errno_t trackmod_modplay_create(trackmod_module_t *module,
787 unsigned smp_freq, trackmod_modplay_t **rmodplay)
788{
789 trackmod_modplay_t *modplay = NULL;
790
791 modplay = calloc(1, sizeof(trackmod_modplay_t));
792 if (modplay == NULL)
793 goto error;
794
795 modplay->module = module;
796 modplay->smp_freq = smp_freq;
797 modplay->frame_size = sizeof(int16_t);
798 modplay->ord_idx = 0;
799 modplay->row = 0;
800 modplay->tick = 0;
801 modplay->smp = 0;
802
803 modplay->tpr = module->def_tpr;
804 modplay->bpm = module->def_bpm;
805
806 modplay->chan = calloc(module->channels,
807 sizeof(trackmod_chan_t));
808 if (modplay->chan == NULL)
809 goto error;
810
811 trackmod_process_tick(modplay);
812 trackmod_process_row(modplay);
813
814 *rmodplay = modplay;
815 return EOK;
816error:
817 if (modplay != NULL)
818 free(modplay->chan);
819 free(modplay);
820 return ENOMEM;
821}
822
823/** Destroy module playback object.
824 *
825 * @param modplay Module playback
826 */
827void trackmod_modplay_destroy(trackmod_modplay_t *modplay)
828{
829 free(modplay->chan);
830 free(modplay);
831}
832
833/** Get number of samples per tick.
834 *
835 * @param modplay Module playback
836 * @return Number of samples per tick
837 */
838static size_t samples_per_tick(trackmod_modplay_t *modplay)
839{
840 return modplay->smp_freq * 10 / 4 / modplay->bpm;
841}
842
843/** Get number of samples remaining in current tick.
844 *
845 * @param modplay Module playback
846 * @return Number of remaining samples in tick
847 */
848static size_t samples_remain_tick(trackmod_modplay_t *modplay)
849{
850 /* XXX Integer samples per tick is a simplification */
851 return samples_per_tick(modplay) - modplay->smp;
852}
853
854/** Get sample frame.
855 *
856 * Get frame at the specified sample position.
857 *
858 * @param sample Sample
859 * @param pos Position (frame index)
860 * @return Frame value
861 */
862int trackmod_sample_get_frame(trackmod_sample_t *sample, size_t pos)
863{
864 int8_t *i8p;
865 int16_t *i16p;
866
867 if (sample->bytes_smp == 1) {
868 i8p = (int8_t *)sample->data;
869 return i8p[pos];
870 } else {
871 /* chan->sample->bytes_smp == 2 */
872 i16p = (int16_t *)sample->data;
873 return i16p[pos] / 256; /* XXX Retain full precision */
874 }
875}
876
877/** Advance sample position to next frame.
878 *
879 * @param chan Channel playback
880 */
881static void chan_smp_next_frame(trackmod_chan_t *chan)
882{
883 chan->lsmp = trackmod_sample_get_frame(chan->sample, chan->smp_pos);
884 ++chan->smp_pos;
885
886 switch (chan->sample->loop_type) {
887 case tl_pingpong_loop:
888 /** XXX Pingpong loop */
889 case tl_no_loop:
890 /* No loop */
891 if (chan->smp_pos >= chan->sample->length) {
892 chan->sample = NULL;
893 chan->smp_pos = 0;
894 }
895 break;
896 case tl_forward_loop:
897 /** Forward loop */
898 if (chan->smp_pos >= chan->sample->loop_start +
899 chan->sample->loop_len) {
900 chan->smp_pos = chan->sample->loop_start;
901 }
902 }
903}
904
905/** Render next sample on channel.
906 *
907 * @param modplay Module playback
908 * @param cidx Channel number
909 * @return Sample value
910 */
911static int trackmod_chan_next_sample(trackmod_modplay_t *modplay,
912 size_t cidx)
913{
914 int sl, sn;
915 int period, clk;
916 int s;
917
918 trackmod_chan_t *chan = &modplay->chan[cidx];
919
920 if (chan->sample == NULL || chan->period == 0)
921 return 0;
922
923 /*
924 * Linear interpolation. Note this is slightly simplified:
925 * We ignore the half-sample offset and the boundary condition
926 * at the end of the sample (we should extend with zero).
927 */
928 sl = (int)chan->lsmp * amp_factor * chan->volume / vol_max;
929 sn = (int)trackmod_sample_get_frame(chan->sample, chan->smp_pos) *
930 amp_factor * chan->volume / vol_max;
931
932 period = (int)chan->period;
933 clk = (int)chan->smp_clk;
934
935 s = (sl * (period - clk) + sn * clk) / period;
936
937 chan->smp_clk += base_clock / modplay->smp_freq;
938 while (chan->sample != NULL && chan->smp_clk >= chan->period) {
939 chan->smp_clk -= chan->period;
940 chan_smp_next_frame(chan);
941 }
942
943 return s;
944}
945
946/** Render a segment of samples contained entirely within a tick.
947 *
948 * @param modplay Module playback
949 * @param buffer Buffer for storing audio data
950 * @param bufsize Size of @a buffer in bytes
951 */
952static void get_samples_within_tick(trackmod_modplay_t *modplay,
953 void *buffer, size_t bufsize)
954{
955 size_t nsamples;
956 size_t smpidx;
957 size_t chan;
958 int s;
959
960 nsamples = bufsize / modplay->frame_size;
961
962 for (smpidx = 0; smpidx < nsamples; smpidx++) {
963 s = 0;
964 for (chan = 0; chan < modplay->module->channels; chan++) {
965 s += trackmod_chan_next_sample(modplay, chan);
966 }
967
968 ((int16_t *)buffer)[smpidx] = s;
969 }
970
971 modplay->smp += nsamples;
972}
973
974/** Render a segment of samples.
975 *
976 * @param modplay Module playback
977 * @param buffer Buffer for storing audio data
978 * @param bufsize Size of @a buffer in bytes
979 */
980void trackmod_modplay_get_samples(trackmod_modplay_t *modplay,
981 void *buffer, size_t bufsize)
982{
983 size_t nsamples;
984 size_t rsmp;
985 size_t now;
986
987 nsamples = bufsize / modplay->frame_size;
988 while (nsamples > 0) {
989 rsmp = samples_remain_tick(modplay);
990 if (rsmp == 0)
991 trackmod_next_tick(modplay);
992
993 rsmp = samples_remain_tick(modplay);
994 now = min(rsmp, nsamples);
995
996 get_samples_within_tick(modplay, buffer,
997 now * modplay->frame_size);
998 nsamples -= now;
999 buffer += now * modplay->frame_size;
1000 }
1001}
1002
1003/** @}
1004 */
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