some skin adjustments
[picodrive.git] / Pico / sound / sound.c
CommitLineData
cc68a136 1// This is part of Pico Library\r
2\r
3// (c) Copyright 2004 Dave, All rights reserved.\r
4// (c) Copyright 2006 notaz, All rights reserved.\r
5// Free for non-commercial use.\r
6\r
7// For commercial use, separate licencing terms must be obtained.\r
8\r
9\r
10#include <string.h>\r
11#include "sound.h"\r
12#include "ym2612.h"\r
13#include "sn76496.h"\r
14\r
15#ifndef __GNUC__\r
16#pragma warning (disable:4244)\r
17#endif\r
18\r
19#if defined(_USE_MZ80)\r
20#include "../../cpu/mz80/mz80.h"\r
21#elif defined(_USE_DRZ80)\r
22#include "../../cpu/DrZ80/drz80.h"\r
23#endif\r
24\r
25#include "../PicoInt.h"\r
4f265db7 26#include "../cd/pcm.h"\r
27#include "mix.h"\r
cc68a136 28\r
4f265db7 29// master int buffer to mix to\r
30static int PsndBuffer[2*44100/50];\r
cc68a136 31\r
32//int z80CycleAim = 0;\r
33\r
34// dac\r
35short *dac_out;\r
36unsigned short dac_info[312]; // pppppppp ppppllll, p - pos in buff, l - length to write for this sample\r
37\r
38// for Pico\r
39int PsndRate=0;\r
40int PsndLen=0; // number of mono samples, multiply by 2 for stereo\r
7a93adeb 41int PsndLen_exc_add=0; // this is for non-integer sample counts per line, eg. 22050/60\r
42int PsndLen_exc_cnt=0;\r
cc68a136 43short *PsndOut=NULL; // PCM data buffer\r
44\r
45// from ym2612.c\r
46extern int *ym2612_dacen;\r
47extern INT32 *ym2612_dacout;\r
48void YM2612TimerHandler(int c,int cnt);\r
49\r
50// sn76496\r
51extern int *sn76496_regs;\r
52\r
53\r
54static void dac_recalculate()\r
55{\r
56 int i, dac_cnt, pos, len, lines = Pico.m.pal ? 312 : 262, mid = Pico.m.pal ? 68 : 93;\r
57\r
58 if(PsndLen <= lines) {\r
59 // shrinking algo\r
7a93adeb 60 dac_cnt = -PsndLen;\r
cc68a136 61 len=1; pos=0;\r
62 dac_info[225] = 1;\r
63\r
64 for(i=226; i != 225; i++) {\r
65 if (i >= lines) i = 0;\r
66 len = 0;\r
67 if(dac_cnt < 0) {\r
68 len=1;\r
69 pos++;\r
70 dac_cnt += lines;\r
71 }\r
72 dac_cnt -= PsndLen;\r
73 dac_info[i] = (pos<<4)|len;\r
74 }\r
75 } else {\r
76 // stretching\r
7a93adeb 77 dac_cnt = PsndLen;\r
cc68a136 78 pos=0;\r
79 for(i = 225; i != 224; i++) {\r
80 if (i >= lines) i = 0;\r
81 len=0;\r
82 while(dac_cnt >= 0) {\r
83 dac_cnt -= lines;\r
84 len++;\r
85 }\r
4f265db7 86 if (i == mid) // midpoint\r
cc68a136 87 while(pos+len < PsndLen/2) {\r
88 dac_cnt -= lines;\r
89 len++;\r
90 }\r
91 dac_cnt += PsndLen;\r
92 dac_info[i] = (pos<<4)|len;\r
93 pos+=len;\r
94 }\r
95 // last sample\r
96 for(len = 0, i = pos; i < PsndLen; i++) len++;\r
7a93adeb 97 if (PsndLen_exc_add) len++;\r
cc68a136 98 dac_info[224] = (pos<<4)|len;\r
99 }\r
7a93adeb 100 //for(i=len=0; i < lines; i++) {\r
101 // printf("%03i : %03i : %i\n", i, dac_info[i]>>4, dac_info[i]&0xf);\r
102 // len+=dac_info[i]&0xf;\r
103 //}\r
104 //printf("rate is %i, len %f\n", PsndRate, (double)PsndRate/(Pico.m.pal ? 50.0 : 60.0));\r
105 //printf("len total: %i, last pos: %i\n", len, pos);\r
106 //exit(8);\r
cc68a136 107}\r
108\r
109\r
110void sound_reset()\r
111{\r
cc68a136 112 void *ym2612_regs;\r
113\r
cc68a136 114 // also clear the internal registers+addr line\r
115 ym2612_regs = YM2612GetRegs();\r
116 memset(ym2612_regs, 0, 0x200+4);\r
0af33fe0 117 // setting these to 0 might confuse timing code,\r
118 // so better set to something like this instead\r
119 z80startCycle = z80stopCycle = 0x01000000;\r
7a93adeb 120\r
121 sound_rerate(0);\r
cc68a136 122}\r
123\r
124\r
125// to be called after changing sound rate or chips\r
7a93adeb 126void sound_rerate(int preserve_state)\r
cc68a136 127{\r
128 unsigned int state[28];\r
7a93adeb 129 int target_fps = Pico.m.pal ? 50 : 60;\r
cc68a136 130\r
7a93adeb 131 // not all rates are supported in MCD mode due to mp3 decoder limitations\r
4f265db7 132 if (PicoMCD & 1) {\r
133 if (PsndRate != 11025 && PsndRate != 22050 && PsndRate != 44100) PsndRate = 22050;\r
7a93adeb 134 PicoOpt |= 8; // force stereo\r
4f265db7 135 }\r
136\r
7a93adeb 137 if (preserve_state) {\r
138 if ((PicoMCD & 1) && Pico_mcd->m.audio_track)\r
139 Pico_mcd->m.audio_offset = mp3_get_offset();\r
140 }\r
cc68a136 141 YM2612Init(Pico.m.pal ? OSC_PAL/7 : OSC_NTSC/7, PsndRate);\r
7a93adeb 142 if (preserve_state) {\r
143 // feed it back it's own registers, just like after loading state\r
144 YM2612PicoStateLoad();\r
145 if ((PicoMCD & 1) && Pico_mcd->m.audio_track)\r
146 mp3_start_play(Pico_mcd->TOC.Tracks[Pico_mcd->m.audio_track].F, Pico_mcd->m.audio_offset);\r
147 }\r
cc68a136 148\r
7a93adeb 149 if (preserve_state) memcpy(state, sn76496_regs, 28*4); // remember old state\r
cc68a136 150 SN76496_init(Pico.m.pal ? OSC_PAL/15 : OSC_NTSC/15, PsndRate);\r
7a93adeb 151 if (preserve_state) memcpy(sn76496_regs, state, 28*4); // restore old state\r
cc68a136 152\r
153 // calculate PsndLen\r
7a93adeb 154 PsndLen=PsndRate / target_fps;\r
155 PsndLen_exc_add=((PsndRate - PsndLen*target_fps)<<16) / target_fps;\r
156 PsndLen_exc_cnt=0;\r
cc68a136 157\r
158 // recalculate dac info\r
159 dac_recalculate();\r
4f265db7 160\r
161 if (PicoMCD & 1)\r
162 pcm_set_rate(PsndRate);\r
7a93adeb 163\r
164 // clear all buffers\r
165 memset32(PsndBuffer, 0, sizeof(PsndBuffer)/4);\r
166 if (PsndOut)\r
167 sound_clear();\r
cc68a136 168}\r
169\r
170\r
171// This is called once per raster (aka line), but not necessarily for every line\r
4f265db7 172void sound_timers_and_dac(int raster)\r
cc68a136 173{\r
4f265db7 174 int pos, len;\r
175 int do_dac = PsndOut && (PicoOpt&1) && *ym2612_dacen;\r
176// int do_pcm = PsndOut && (PicoMCD&1) && (PicoOpt&0x400);\r
177\r
178 // Our raster lasts 63.61323/64.102564 microseconds (NTSC/PAL)\r
179 YM2612PicoTick(1);\r
180\r
181 if (!do_dac /*&& !do_pcm*/) return;\r
182\r
183 pos=dac_info[raster], len=pos&0xf;\r
184 if (!len) return;\r
185\r
186 pos>>=4;\r
187\r
188 if (do_dac) {\r
189 short *d = PsndOut + pos*2;\r
190 int dout = *ym2612_dacout;\r
191 if(PicoOpt&8) {\r
192 // some manual loop unrolling here :)\r
193 d[0] = dout;\r
194 if (len > 1) {\r
195 d[2] = dout;\r
7a93adeb 196 if (len > 2)\r
4f265db7 197 d[4] = dout;\r
4f265db7 198 }\r
cc68a136 199 } else {\r
4f265db7 200 short *d = PsndOut + pos;\r
201 d[0] = dout;\r
202 if (len > 1) {\r
203 d[1] = dout;\r
7a93adeb 204 if (len > 2)\r
4f265db7 205 d[2] = dout;\r
4f265db7 206 }\r
cc68a136 207 }\r
208 }\r
209\r
4f265db7 210#if 0\r
211 if (do_pcm) {\r
212 int *d = PsndBuffer;\r
213 d += (PicoOpt&8) ? pos*2 : pos;\r
214 pcm_update(d, len, 1);\r
215 }\r
216#endif\r
217}\r
cc68a136 218\r
cc68a136 219\r
4f265db7 220void sound_clear(void)\r
221{\r
7a93adeb 222 int len = PsndLen;\r
223 if (PsndLen_exc_add) len++;\r
224 if (PicoOpt & 8) memset32((int *) PsndOut, 0, len); // clear both channels at once\r
225 else memset(PsndOut, 0, len<<1);\r
cc68a136 226}\r
227\r
228\r
229int sound_render(int offset, int length)\r
230{\r
85f8e929 231 int buf32_updated = 0;\r
4f265db7 232 int *buf32 = PsndBuffer+offset;\r
cc68a136 233 int stereo = (PicoOpt & 8) >> 3;\r
4f265db7 234 // emulating CD && PCM option enabled && PCM chip on && have enabled channels\r
235 int do_pcm = (PicoMCD&1) && (PicoOpt&0x400) && (Pico_mcd->pcm.control & 0x80) && Pico_mcd->pcm.enabled;\r
cc68a136 236 offset <<= stereo;\r
237\r
7a93adeb 238 if (offset == 0) { // should happen once per frame\r
239 // compensate for float part of PsndLen\r
240 PsndLen_exc_cnt += PsndLen_exc_add;\r
241 if (PsndLen_exc_cnt >= 0x10000) {\r
242 PsndLen_exc_cnt -= 0x10000;\r
243 length++;\r
244 }\r
245 }\r
246\r
cc68a136 247 // PSG\r
4f265db7 248 if (PicoOpt & 2)\r
cc68a136 249 SN76496Update(PsndOut+offset, length, stereo);\r
250\r
251 // Add in the stereo FM buffer\r
fa1e5e29 252 if (PicoOpt & 1) {\r
85f8e929 253 buf32_updated = YM2612UpdateOne(buf32, length, stereo, 1);\r
fa1e5e29 254 } else\r
255 memset32(buf32, 0, length<<stereo);\r
85f8e929 256\r
257//printf("active_chs: %02x\n", buf32_updated);\r
4f265db7 258\r
7a93adeb 259 // CD: PCM sound\r
85f8e929 260 if (do_pcm) {\r
4f265db7 261 pcm_update(buf32, length, stereo);\r
85f8e929 262 //buf32_updated = 1;\r
263 }\r
4f265db7 264\r
7a93adeb 265 // CD: CDDA audio\r
abe0ea43 266 if ((PicoMCD & 1) && (PicoOpt & 0x800))\r
267 mp3_update(buf32, length, stereo);\r
4f265db7 268\r
269 // convert + limit to normal 16bit output\r
270 if (stereo)\r
271 mix_32_to_16l_stereo(PsndOut+offset, buf32, length);\r
272 else mix_32_to_16_mono (PsndOut+offset, buf32, length);\r
cc68a136 273\r
7a93adeb 274 return length;\r
cc68a136 275}\r
276\r
277\r
278\r
279#if defined(_USE_MZ80)\r
280\r
281// memhandlers for mz80 core\r
282unsigned char mz80_read(UINT32 a, struct MemoryReadByte *w) { return z80_read(a); }\r
283void mz80_write(UINT32 a, UINT8 d, struct MemoryWriteByte *w) { z80_write(d, a); }\r
284\r
285// structures for mz80 core\r
286static struct MemoryReadByte mz80_mem_read[]=\r
287{\r
288 {0x0000,0xffff,mz80_read},\r
289 {(UINT32) -1,(UINT32) -1,NULL}\r
290};\r
291static struct MemoryWriteByte mz80_mem_write[]=\r
292{\r
293 {0x0000,0xffff,mz80_write},\r
294 {(UINT32) -1,(UINT32) -1,NULL}\r
295};\r
296static struct z80PortRead mz80_io_read[] ={\r
297 {(UINT16) -1,(UINT16) -1,NULL}\r
298};\r
299static struct z80PortWrite mz80_io_write[]={\r
300 {(UINT16) -1,(UINT16) -1,NULL}\r
301};\r
302\r
303#elif defined(_USE_DRZ80)\r
304\r
305static struct DrZ80 drZ80;\r
306\r
307static unsigned int DrZ80_rebasePC(unsigned short a)\r
308{\r
309 drZ80.Z80PC_BASE = (unsigned int) Pico.zram;\r
310 return drZ80.Z80PC_BASE + a;\r
311}\r
312\r
313static unsigned int DrZ80_rebaseSP(unsigned short a)\r
314{\r
315 drZ80.Z80SP_BASE = (unsigned int) Pico.zram;\r
316 return drZ80.Z80SP_BASE + a;\r
317}\r
318\r
319static unsigned char DrZ80_in(unsigned short p)\r
320{\r
321 return 0xff;\r
322}\r
323\r
324static void DrZ80_out(unsigned short p,unsigned char d)\r
325{\r
326}\r
327\r
328static void DrZ80_irq_callback()\r
329{\r
330 drZ80.Z80_IRQ = 0; // lower irq when accepted\r
331}\r
332\r
333#endif\r
334\r
335// z80 functionality wrappers\r
336void z80_init()\r
337{\r
338#if defined(_USE_MZ80)\r
339 struct mz80context z80;\r
340\r
341 // z80\r
342 mz80init();\r
343 // Modify the default context\r
344 mz80GetContext(&z80);\r
4f265db7 345\r
cc68a136 346 // point mz80 stuff\r
347 z80.z80Base=Pico.zram;\r
348 z80.z80MemRead=mz80_mem_read;\r
349 z80.z80MemWrite=mz80_mem_write;\r
350 z80.z80IoRead=mz80_io_read;\r
351 z80.z80IoWrite=mz80_io_write;\r
4f265db7 352\r
cc68a136 353 mz80SetContext(&z80);\r
354\r
355#elif defined(_USE_DRZ80)\r
356\r
357 memset(&drZ80, 0, sizeof(struct DrZ80));\r
358 drZ80.z80_rebasePC=DrZ80_rebasePC;\r
359 drZ80.z80_rebaseSP=DrZ80_rebaseSP;\r
360 drZ80.z80_read8 =z80_read;\r
361 drZ80.z80_read16 =z80_read16;\r
362 drZ80.z80_write8 =z80_write;\r
363 drZ80.z80_write16 =z80_write16;\r
364 drZ80.z80_in =DrZ80_in;\r
365 drZ80.z80_out =DrZ80_out;\r
366 drZ80.z80_irq_callback=DrZ80_irq_callback;\r
367#endif\r
368}\r
369\r
370void z80_reset()\r
371{\r
372#if defined(_USE_MZ80)\r
373 mz80reset();\r
374#elif defined(_USE_DRZ80)\r
375 memset(&drZ80, 0, 0x54);\r
376 drZ80.Z80F = (1<<2); // set ZFlag\r
377 drZ80.Z80F2 = (1<<2); // set ZFlag\r
378 drZ80.Z80IX = 0xFFFF << 16;\r
379 drZ80.Z80IY = 0xFFFF << 16;\r
380 drZ80.Z80IM = 0; // 1?\r
381 drZ80.Z80PC = drZ80.z80_rebasePC(0);\r
382 drZ80.Z80SP = drZ80.z80_rebaseSP(0x2000); // 0xf000 ?\r
383#endif\r
384 Pico.m.z80_fakeval = 0; // for faking when Z80 is disabled\r
385}\r
386\r
387void z80_resetCycles()\r
388{\r
389#if defined(_USE_MZ80)\r
390 mz80GetElapsedTicks(1);\r
391#endif\r
392}\r
393\r
394void z80_int()\r
395{\r
396#if defined(_USE_MZ80)\r
397 mz80int(0);\r
398#elif defined(_USE_DRZ80)\r
399 drZ80.z80irqvector = 0xFF; // default IRQ vector RST opcode\r
400 drZ80.Z80_IRQ = 1;\r
401#endif\r
402}\r
403\r
404// returns number of cycles actually executed\r
405int z80_run(int cycles)\r
406{\r
407#if defined(_USE_MZ80)\r
408 int ticks_pre = mz80GetElapsedTicks(0);\r
409 mz80exec(cycles);\r
410 return mz80GetElapsedTicks(0) - ticks_pre;\r
411#elif defined(_USE_DRZ80)\r
412 return cycles - DrZ80Run(&drZ80, cycles);\r
413#else\r
414 return cycles;\r
415#endif\r
416}\r
417\r
418void z80_pack(unsigned char *data)\r
419{\r
420#if defined(_USE_MZ80)\r
421 struct mz80context mz80;\r
422 *(int *)data = 0x00005A6D; // "mZ"\r
423 mz80GetContext(&mz80);\r
424 memcpy(data+4, &mz80.z80clockticks, sizeof(mz80)-5*4); // don't save base&memhandlers\r
425#elif defined(_USE_DRZ80)\r
426 *(int *)data = 0x015A7244; // "DrZ" v1\r
427 drZ80.Z80PC = drZ80.z80_rebasePC(drZ80.Z80PC-drZ80.Z80PC_BASE);\r
428 drZ80.Z80SP = drZ80.z80_rebaseSP(drZ80.Z80SP-drZ80.Z80SP_BASE);\r
429 memcpy(data+4, &drZ80, 0x54);\r
430#endif\r
431}\r
432\r
433void z80_unpack(unsigned char *data)\r
434{\r
435#if defined(_USE_MZ80)\r
436 if(*(int *)data == 0x00005A6D) { // "mZ" save?\r
437 struct mz80context mz80;\r
438 mz80GetContext(&mz80);\r
439 memcpy(&mz80.z80clockticks, data+4, sizeof(mz80)-5*4);\r
440 mz80SetContext(&mz80);\r
441 } else {\r
442 z80_reset();\r
443 z80_int();\r
444 }\r
445#elif defined(_USE_DRZ80)\r
446 if(*(int *)data == 0x015A7244) { // "DrZ" v1 save?\r
447 memcpy(&drZ80, data+4, 0x54);\r
448 // update bases\r
449 drZ80.Z80PC = drZ80.z80_rebasePC(drZ80.Z80PC-drZ80.Z80PC_BASE);\r
450 drZ80.Z80SP = drZ80.z80_rebaseSP(drZ80.Z80SP-drZ80.Z80SP_BASE);\r
451 } else {\r
452 z80_reset();\r
453 drZ80.Z80IM = 1;\r
454 z80_int(); // try to goto int handler, maybe we won't execute trash there?\r
455 }\r
456#endif\r
457}\r
458\r
459void z80_exit()\r
460{\r
461#if defined(_USE_MZ80)\r
462 mz80shutdown();\r
463#endif\r
464}\r
465\r
0af33fe0 466#if defined(__DEBUG_PRINT) || defined(__GP2X__)\r
cc68a136 467void z80_debug(char *dstr)\r
468{\r
469#if defined(_USE_DRZ80)\r
0af33fe0 470 sprintf(dstr, "Z80 state: PC: %04x SP: %04x\n", drZ80.Z80PC-drZ80.Z80PC_BASE, drZ80.Z80SP-drZ80.Z80SP_BASE);\r
cc68a136 471#endif\r
472}\r
473#endif\r