gfx_cd optimization wip, line glitch fixed
[picodrive.git] / platform / gp2x / 940ctl.c
CommitLineData
cc68a136 1#include <stdio.h>\r
2#include <stdlib.h>\r
3#include <string.h>\r
4#include <unistd.h>\r
5#include <sys/mman.h>\r
6#include <sys/ioctl.h>\r
7#include <fcntl.h>\r
8#include <errno.h>\r
9\r
42c7b147 10#include "code940/940shared.h"\r
cc68a136 11#include "gp2x.h"\r
12#include "emu.h"\r
13#include "menu.h"\r
14#include "asmutils.h"\r
abe0ea43 15#include "mp3.h"\r
cb0316e4 16#include "../../Pico/PicoInt.h"\r
4f265db7 17#include "../../Pico/sound/mix.h"\r
18\r
cc68a136 19/* we will need some gp2x internals here */\r
20extern volatile unsigned short *gp2x_memregs; /* from minimal library rlyeh */\r
21extern volatile unsigned long *gp2x_memregl;\r
22\r
23static unsigned char *shared_mem = 0;\r
24static _940_data_t *shared_data = 0;\r
abe0ea43 25_940_ctl_t *shared_ctl = 0;\r
26unsigned char *mp3_mem = 0;\r
cb0316e4 27\r
28#define MP3_SIZE_MAX (0x1000000 - 4*640*480)\r
cc68a136 29\r
30int crashed_940 = 0;\r
31\r
51a902ae 32static FILE *loaded_mp3 = 0;\r
cc68a136 33\r
34/***********************************************************/\r
35\r
36#define MAXOUT (+32767)\r
37#define MINOUT (-32768)\r
38\r
39/* limitter */\r
40#define Limit(val, max,min) { \\r
41 if ( val > max ) val = max; \\r
42 else if ( val < min ) val = min; \\r
43}\r
44\r
45/* these will be managed locally on our side */\r
46extern int *ym2612_dacen;\r
47extern INT32 *ym2612_dacout;\r
48extern void *ym2612_regs;\r
49\r
50static UINT8 *REGS = 0; /* we will also keep local copy of regs for savestates and such */\r
51static INT32 addr_A1; /* address line A1 */\r
52static int dacen;\r
53static INT32 dacout;\r
54static UINT8 ST_address; /* address register */\r
55static UINT8 ST_status; /* status flag */\r
56static UINT8 ST_mode; /* mode CSM / 3SLOT */\r
57static int ST_TA; /* timer a */\r
58static int ST_TAC; /* timer a maxval */\r
59static int ST_TAT; /* timer a ticker */\r
60static UINT8 ST_TB; /* timer b */\r
61static int ST_TBC; /* timer b maxval */\r
62static int ST_TBT; /* timer b ticker */\r
63\r
64static int writebuff_ptr = 0;\r
65\r
66\r
67/* OPN Mode Register Write */\r
68static void set_timers( int v )\r
69{\r
70 /* b7 = CSM MODE */\r
71 /* b6 = 3 slot mode */\r
72 /* b5 = reset b */\r
73 /* b4 = reset a */\r
74 /* b3 = timer enable b */\r
75 /* b2 = timer enable a */\r
76 /* b1 = load b */\r
77 /* b0 = load a */\r
78 ST_mode = v;\r
79\r
80 /* reset Timer b flag */\r
81 if( v & 0x20 )\r
82 ST_status &= ~2;\r
83\r
84 /* reset Timer a flag */\r
85 if( v & 0x10 )\r
86 ST_status &= ~1;\r
87}\r
88\r
89/* YM2612 write */\r
90/* a = address */\r
91/* v = value */\r
92/* returns 1 if sample affecting state changed */\r
93int YM2612Write_940(unsigned int a, unsigned int v)\r
94{\r
95 int addr; //, ret=1;\r
96\r
97 v &= 0xff; /* adjust to 8 bit bus */\r
98 a &= 3;\r
99\r
100 switch( a ) {\r
101 case 0: /* address port 0 */\r
4ff2d527 102 if (!addr_A1 && ST_address == v)\r
103 return 0; /* address already selected, don't send this command to 940 */\r
cc68a136 104 ST_address = v;\r
4ff2d527 105 /* don't send DAC or timer related address changes to 940 */\r
106 if (!addr_A1 && (v & 0xf0) == 0x20 &&\r
107 (v == 0x24 || v == 0x25 || v == 0x26 || v == 0x2a))\r
108 return 0;\r
cc68a136 109 addr_A1 = 0;\r
110 //ret=0;\r
111 break;\r
112\r
113 case 1: /* data port 0 */\r
114 if (addr_A1 != 0) {\r
115 return 0; /* verified on real YM2608 */\r
116 }\r
117\r
118 addr = ST_address;\r
119 REGS[addr] = v;\r
120\r
121 switch( addr & 0xf0 )\r
122 {\r
123 case 0x20: /* 0x20-0x2f Mode */\r
124 switch( addr )\r
125 {\r
126 case 0x24: { // timer A High 8\r
127 int TAnew = (ST_TA & 0x03)|(((int)v)<<2);\r
128 if(ST_TA != TAnew) {\r
129 // we should reset ticker only if new value is written. Outrun requires this.\r
130 ST_TA = TAnew;\r
131 ST_TAC = (1024-TAnew)*18;\r
132 ST_TAT = 0;\r
133 }\r
134 return 0;\r
135 }\r
136 case 0x25: { // timer A Low 2\r
137 int TAnew = (ST_TA & 0x3fc)|(v&3);\r
138 if(ST_TA != TAnew) {\r
139 ST_TA = TAnew;\r
140 ST_TAC = (1024-TAnew)*18;\r
141 ST_TAT = 0;\r
142 }\r
143 return 0;\r
144 }\r
145 case 0x26: // timer B\r
146 if(ST_TB != v) {\r
147 ST_TB = v;\r
148 ST_TBC = (256-v)<<4;\r
149 ST_TBC *= 18;\r
150 ST_TBT = 0;\r
151 }\r
152 return 0;\r
153 case 0x27: /* mode, timer control */\r
154 set_timers( v );\r
155 break; // other side needs ST.mode for 3slot mode\r
156 case 0x2a: /* DAC data (YM2612) */\r
157 dacout = ((int)v - 0x80) << 6; /* level unknown (notaz: 8 seems to be too much) */\r
158 return 0;\r
159 case 0x2b: /* DAC Sel (YM2612) */\r
160 /* b7 = dac enable */\r
161 dacen = v & 0x80;\r
162 break; // other side has to know this\r
163 default:\r
164 break;\r
165 }\r
166 break;\r
167 }\r
168 break;\r
169\r
170 case 2: /* address port 1 */\r
4ff2d527 171 if (addr_A1 && ST_address == v)\r
172 return 0;\r
cc68a136 173 ST_address = v;\r
174 addr_A1 = 1;\r
175 //ret=0;\r
176 break;\r
177\r
178 case 3: /* data port 1 */\r
179 if (addr_A1 != 1) {\r
180 return 0; /* verified on real YM2608 */\r
181 }\r
182\r
183 addr = ST_address | 0x100;\r
184 REGS[addr] = v;\r
185 break;\r
186 }\r
187\r
188 if(currentConfig.EmuOpt & 4) {\r
189 /* queue this write for 940 */\r
190 if (writebuff_ptr < 2047) {\r
191 if (shared_ctl->writebuffsel == 1) {\r
192 shared_ctl->writebuff0[writebuff_ptr++] = (a<<8)|v;\r
193 } else {\r
194 shared_ctl->writebuff1[writebuff_ptr++] = (a<<8)|v;\r
195 }\r
196 } else {\r
4ff2d527 197 printf("warning: writebuff_ptr > 2047 ([%i] %02x)\n", a, v);\r
cc68a136 198 }\r
199 }\r
200\r
201 return 0; // cause the engine to do updates once per frame only\r
202}\r
203\r
204UINT8 YM2612Read_940(void)\r
205{\r
206 return ST_status;\r
207}\r
208\r
209\r
210int YM2612PicoTick_940(int n)\r
211{\r
212 //int ret = 0;\r
213\r
214 // timer A\r
215 if(ST_mode & 0x01 && (ST_TAT+=64*n) >= ST_TAC) {\r
216 ST_TAT -= ST_TAC;\r
217 if(ST_mode & 0x04) ST_status |= 1;\r
218 // CSM mode total level latch and auto key on\r
219/* FIXME\r
220 if(ST_mode & 0x80) {\r
221 CSMKeyControll( &(ym2612_940->CH[2]) ); // Vectorman2, etc.\r
222 ret = 1;\r
223 }\r
224*/\r
225 }\r
226\r
227 // timer B\r
228 if(ST_mode & 0x02 && (ST_TBT+=64*n) >= ST_TBC) {\r
229 ST_TBT -= ST_TBC;\r
230 if(ST_mode & 0x08) ST_status |= 2;\r
231 }\r
232\r
233 return 0;\r
234}\r
235\r
236\r
abe0ea43 237#define CHECK_BUSY(job) \\r
238 (gp2x_memregs[0x3b46>>1] & (1<<(job-1)))\r
239\r
240static void wait_busy_940(int job)\r
cc68a136 241{\r
242 int i;\r
cc68a136 243\r
abe0ea43 244 job--;\r
245 for (i = 0; (gp2x_memregs[0x3b46>>1] & (1<<job)) && i < 0x10000; i++)\r
42c7b147 246 spend_cycles(8*1024); // tested to be best for mp3 dec\r
cc68a136 247 if (i < 0x10000) return;\r
248\r
249 /* 940 crashed */\r
42c7b147 250 printf("940 crashed (cnt: %i, ve: ", shared_ctl->loopc);\r
cc68a136 251 for (i = 0; i < 8; i++)\r
252 printf("%i ", shared_ctl->vstarts[i]);\r
253 printf(")\n");\r
abe0ea43 254 printf("irq pending flags: DUALCPU %04x, SRCPND %08lx (see 26), INTPND %08lx\n",\r
4f265db7 255 gp2x_memregs[0x3b46>>1], gp2x_memregl[0x4500>>2], gp2x_memregl[0x4510>>2]);\r
abe0ea43 256 printf("last lr: %08x, lastjob: %i\n", shared_ctl->last_lr, shared_ctl->lastjob);\r
4f265db7 257 printf("trying to interrupt..\n");\r
258 gp2x_memregs[0x3B3E>>1] = 0xffff;\r
abe0ea43 259 for (i = 0; gp2x_memregs[0x3b46>>1] && i < 0x10000; i++)\r
4f265db7 260 spend_cycles(8*1024);\r
261 printf("i = 0x%x\n", i);\r
abe0ea43 262 printf("irq pending flags: DUALCPU %04x, SRCPND %08lx (see 26), INTPND %08lx\n",\r
4f265db7 263 gp2x_memregs[0x3b46>>1], gp2x_memregl[0x4500>>2], gp2x_memregl[0x4510>>2]);\r
abe0ea43 264 printf("last lr: %08x, lastjob: %i\n", shared_ctl->last_lr, shared_ctl->lastjob);\r
4f265db7 265\r
cc68a136 266 strcpy(menuErrorMsg, "940 crashed.");\r
267 engineState = PGS_Menu;\r
268 crashed_940 = 1;\r
cc68a136 269}\r
270\r
271\r
abe0ea43 272static void add_job_940(int job)\r
cc68a136 273{\r
abe0ea43 274 if (job <= 0 || job > 16) {\r
275 printf("add_job_940: bad job: %i\n", job);\r
276 return;\r
4f265db7 277 }\r
abe0ea43 278\r
279 // generate interrupt for this job\r
280 job--;\r
281 gp2x_memregs[(0x3B20+job*2)>>1] = 1;\r
282\r
283// printf("added %i, pending %04x\n", job+1, gp2x_memregs[0x3b46>>1]);\r
cc68a136 284}\r
285\r
286\r
287void YM2612PicoStateLoad_940(void)\r
288{\r
289 int i, old_A1 = addr_A1;\r
290\r
cc68a136 291 // feed all the registers and update internal state\r
292 for(i = 0; i < 0x100; i++) {\r
293 YM2612Write_940(0, i);\r
294 YM2612Write_940(1, REGS[i]);\r
295 }\r
296 for(i = 0; i < 0x100; i++) {\r
297 YM2612Write_940(2, i);\r
298 YM2612Write_940(3, REGS[i|0x100]);\r
299 }\r
300\r
301 addr_A1 = old_A1;\r
302\r
abe0ea43 303 add_job_940(JOB940_PICOSTATELOAD);\r
cc68a136 304}\r
305\r
306\r
307static void internal_reset(void)\r
308{\r
309 writebuff_ptr = 0;\r
310 ST_mode = 0;\r
311 ST_status = 0; /* normal mode */\r
312 ST_TA = 0;\r
313 ST_TAC = 0;\r
314 ST_TB = 0;\r
315 ST_TBC = 0;\r
316 dacen = 0;\r
317}\r
318\r
319\r
f80d67e1 320/* this must be called after mmu hack, the allocated regions must not get cached */\r
321void sharedmem_init(void)\r
322{\r
323 if (shared_mem != NULL) return;\r
324\r
325 shared_mem = (unsigned char *) mmap(0, 0x210000, PROT_READ|PROT_WRITE, MAP_SHARED, memdev, 0x2000000);\r
326 if(shared_mem == MAP_FAILED)\r
327 {\r
328 printf("mmap(shared_data) failed with %i\n", errno);\r
329 exit(1);\r
330 }\r
331 shared_data = (_940_data_t *) (shared_mem+0x100000);\r
332 /* this area must not get buffered on either side */\r
333 shared_ctl = (_940_ctl_t *) (shared_mem+0x200000);\r
334 mp3_mem = (unsigned char *) mmap(0, MP3_SIZE_MAX, PROT_READ|PROT_WRITE, MAP_SHARED, memdev, 0x3000000);\r
335 if (mp3_mem == MAP_FAILED)\r
336 {\r
337 printf("mmap(mp3_mem) failed with %i\n", errno);\r
338 exit(1);\r
339 }\r
340 crashed_940 = 1;\r
341}\r
342\r
343\r
85f8e929 344void sharedmem_deinit(void)\r
345{\r
346 munmap(shared_mem, 0x210000);\r
347 munmap(mp3_mem, MP3_SIZE_MAX);\r
348 shared_mem = mp3_mem = NULL;\r
349 shared_data = NULL;\r
350 shared_ctl = NULL;\r
351}\r
352\r
353\r
cc68a136 354extern char **g_argv;\r
355\r
356/* none of the functions in this file should be called before this one */\r
357void YM2612Init_940(int baseclock, int rate)\r
358{\r
359 printf("YM2612Init_940()\n");\r
b837b69b 360 printf("Mem usage: shared_data: %i, shared_ctl: %i\n", sizeof(*shared_data), sizeof(*shared_ctl));\r
cc68a136 361\r
b837b69b 362 Reset940(1, 2);\r
cc68a136 363 Pause940(1);\r
364\r
4f265db7 365 gp2x_memregs[0x3B40>>1] = 0; // disable DUALCPU interrupts for 920\r
366 gp2x_memregs[0x3B42>>1] = 1; // enable DUALCPU interrupts for 940\r
cc68a136 367\r
abe0ea43 368 gp2x_memregl[0x4504>>2] = 0; // make sure no FIQs will be generated\r
369 gp2x_memregl[0x4508>>2] = ~(1<<26); // unmask DUALCPU ints in the undocumented 940's interrupt controller\r
370\r
371\r
cc68a136 372 if (crashed_940)\r
373 {\r
374 unsigned char ucData[1024];\r
375 int nRead, i, nLen = 0;\r
376 char binpath[1024];\r
377 FILE *fp;\r
378\r
379 strncpy(binpath, g_argv[0], 1023);\r
380 binpath[1023] = 0;\r
381 for (i = strlen(binpath); i > 0; i--)\r
382 if (binpath[i] == '/') { binpath[i] = 0; break; }\r
383 strcat(binpath, "/code940.bin");\r
384\r
385 fp = fopen(binpath, "rb");\r
386 if(!fp)\r
387 {\r
388 memset(gp2x_screen, 0, 320*240);\r
389 gp2x_text_out8(10, 100, "failed to open required file:");\r
390 gp2x_text_out8(10, 110, "code940.bin");\r
391 gp2x_video_flip();\r
392 printf("failed to open %s\n", binpath);\r
393 exit(1);\r
394 }\r
395\r
396 while(1)\r
397 {\r
398 nRead = fread(ucData, 1, 1024, fp);\r
399 if(nRead <= 0)\r
400 break;\r
401 memcpy(shared_mem + nLen, ucData, nRead);\r
402 nLen += nRead;\r
403 }\r
404 fclose(fp);\r
405 crashed_940 = 0;\r
406 }\r
407\r
408 memset(shared_data, 0, sizeof(*shared_data));\r
409 memset(shared_ctl, 0, sizeof(*shared_ctl));\r
410\r
411 REGS = YM2612GetRegs();\r
412\r
413 ym2612_dacen = &dacen;\r
414 ym2612_dacout = &dacout;\r
415\r
416 internal_reset();\r
417\r
51a902ae 418 loaded_mp3 = 0;\r
419\r
4f265db7 420 gp2x_memregs[0x3B46>>1] = 0xffff; // clear pending DUALCPU interrupts for 940\r
abe0ea43 421 gp2x_memregl[0x4500>>2] = 0xffffffff; // clear pending IRQs in SRCPND\r
422 gp2x_memregl[0x4510>>2] = 0xffffffff; // clear pending IRQs in INTPND\r
cc68a136 423\r
424 /* start the 940 */\r
b837b69b 425 Reset940(0, 2);\r
cc68a136 426 Pause940(0);\r
427\r
428 // YM2612ResetChip_940(); // will be done on JOB940_YM2612INIT\r
abe0ea43 429\r
430 /* now cause 940 to init it's ym2612 stuff */\r
431 shared_ctl->baseclock = baseclock;\r
432 shared_ctl->rate = rate;\r
433 add_job_940(JOB940_INITALL);\r
cc68a136 434}\r
435\r
436\r
437void YM2612ResetChip_940(void)\r
438{\r
439 printf("YM2612ResetChip_940()\n");\r
440 if (shared_data == NULL) {\r
441 printf("YM2612ResetChip_940: reset before init?\n");\r
442 return;\r
443 }\r
444\r
cc68a136 445 internal_reset();\r
446\r
abe0ea43 447 add_job_940(JOB940_YM2612RESETCHIP);\r
cc68a136 448}\r
449\r
450\r
abe0ea43 451int YM2612UpdateOne_940(int *buffer, int length, int stereo, int is_buf_empty)\r
cb0316e4 452{\r
abe0ea43 453 int *ym_buf = shared_data->ym_buffer;\r
85f8e929 454 int ym_active_chs;\r
4f265db7 455\r
abe0ea43 456 //printf("YM2612UpdateOne_940()\n");\r
457\r
458 if (CHECK_BUSY(JOB940_YM2612UPDATEONE)) wait_busy_940(JOB940_YM2612UPDATEONE);\r
459\r
85f8e929 460 ym_active_chs = shared_ctl->ym_active_chs;\r
abe0ea43 461\r
85f8e929 462 // mix in ym buffer. is_buf_empty means nobody mixed there anything yet and it may contain trash\r
463 if (is_buf_empty && ym_active_chs) memcpy32(buffer, ym_buf, length<<stereo);\r
464 else memset32(buffer, 0, length<<stereo);\r
abe0ea43 465\r
466 if (shared_ctl->writebuffsel == 1) {\r
467 shared_ctl->writebuff0[writebuff_ptr] = 0xffff;\r
4f265db7 468 } else {\r
abe0ea43 469 shared_ctl->writebuff1[writebuff_ptr] = 0xffff;\r
cb0316e4 470 }\r
abe0ea43 471 writebuff_ptr = 0;\r
472\r
473 /* predict sample counter for next frame */\r
474 if (PsndLen_exc_add) {\r
475 if (PsndLen_exc_cnt + PsndLen_exc_add >= 0x10000) length = PsndLen + 1;\r
476 else length = PsndLen;\r
477 }\r
478\r
479 /* give 940 ym job */\r
480 shared_ctl->writebuffsel ^= 1;\r
481 shared_ctl->length = length;\r
482 shared_ctl->stereo = stereo;\r
483\r
484 add_job_940(JOB940_YM2612UPDATEONE);\r
485\r
85f8e929 486 return ym_active_chs;\r
cb0316e4 487}\r
cb0316e4 488\r
cb0316e4 489\r
51a902ae 490static int mp3_samples_ready = 0, mp3_buffer_offs = 0;\r
abe0ea43 491static int mp3_play_bufsel = 0, mp3_job_started = 0;\r
cb0316e4 492\r
abe0ea43 493void mp3_update(int *buffer, int length, int stereo)\r
cc68a136 494{\r
abe0ea43 495 int length_mp3;\r
496 int cdda_on;\r
4f265db7 497\r
abe0ea43 498 // not data track, CDC is reading, playback was started, track not ended\r
499 cdda_on = !(Pico_mcd->s68k_regs[0x36] & 1) && (Pico_mcd->scd.Status_CDC & 1) &&\r
500 loaded_mp3 && shared_ctl->mp3_offs < shared_ctl->mp3_len;\r
cc68a136 501\r
abe0ea43 502 if (!cdda_on) return;\r
cc68a136 503\r
abe0ea43 504 if (!(PicoOpt&0x200)) {\r
505 mp3_update_local(buffer, length, stereo);\r
506 return;\r
507 }\r
cc68a136 508\r
abe0ea43 509 length_mp3 = length;\r
510 if (PsndRate == 22050) length_mp3 <<= 1; // mp3s are locked to 44100Hz stereo\r
511 else if (PsndRate == 11025) length_mp3 <<= 2; // so make length 44100ish\r
4f265db7 512\r
abe0ea43 513 /* do we have to wait? */\r
514 if (mp3_job_started && mp3_samples_ready < length_mp3) {\r
515 if (CHECK_BUSY(JOB940_MP3DECODE)) wait_busy_940(JOB940_MP3DECODE);\r
516 mp3_job_started = 0;\r
517 mp3_samples_ready += 1152;\r
518 }\r
cb0316e4 519\r
4f265db7 520 /* mix mp3 data, only stereo */\r
abe0ea43 521 if (mp3_samples_ready >= length_mp3)\r
cb0316e4 522 {\r
4f265db7 523 int shr = 0;\r
524 void (*mix_samples)(int *dest_buf, short *mp3_buf, int count) = mix_16h_to_32;\r
525 if (PsndRate == 22050) { mix_samples = mix_16h_to_32_s1; shr = 1; }\r
526 else if (PsndRate == 11025) { mix_samples = mix_16h_to_32_s2; shr = 2; }\r
cb0316e4 527\r
4f265db7 528 if (1152 - mp3_buffer_offs >= length_mp3) {\r
abe0ea43 529 mix_samples(buffer, shared_data->mp3_buffer[mp3_play_bufsel] + mp3_buffer_offs*2, length<<1);\r
4f265db7 530\r
531 mp3_buffer_offs += length_mp3;\r
cb0316e4 532 } else {\r
abe0ea43 533 // collect samples from both buffers..\r
cb0316e4 534 int left = 1152 - mp3_buffer_offs;\r
4f265db7 535 if (mp3_play_bufsel == 0)\r
536 {\r
abe0ea43 537 mix_samples(buffer, shared_data->mp3_buffer[0] + mp3_buffer_offs*2, length<<1);\r
4f265db7 538 mp3_buffer_offs = length_mp3 - left;\r
539 mp3_play_bufsel = 1;\r
540 } else {\r
541 mix_samples(buffer, shared_data->mp3_buffer[1] + mp3_buffer_offs*2, (left>>shr)<<1);\r
542 mp3_buffer_offs = length_mp3 - left;\r
543 mix_samples(buffer + ((left>>shr)<<1),\r
544 shared_data->mp3_buffer[0], (mp3_buffer_offs>>shr)<<1);\r
545 mp3_play_bufsel = 0;\r
546 }\r
cc68a136 547 }\r
4f265db7 548 mp3_samples_ready -= length_mp3;\r
cc68a136 549 }\r
550\r
abe0ea43 551 // ask to decode more if we already can\r
552 if (!mp3_job_started)\r
cb0316e4 553 {\r
abe0ea43 554 mp3_job_started = 1;\r
cb0316e4 555 shared_ctl->mp3_buffsel ^= 1;\r
abe0ea43 556 add_job_940(JOB940_MP3DECODE);\r
cb0316e4 557 }\r
cc68a136 558}\r
cb0316e4 559\r
560\r
561/***********************************************************/\r
562\r
563void mp3_start_play(FILE *f, int pos) // pos is 0-1023\r
564{\r
565 int byte_offs = 0;\r
566\r
1cd356a3 567 if (!(PicoOpt&0x800)) { // cdda disabled?\r
cb0316e4 568 return;\r
569 }\r
570\r
571 if (loaded_mp3 != f)\r
572 {\r
4f265db7 573 // printf("loading mp3... "); fflush(stdout);\r
66fdc0f0 574 if (PicoMessage != NULL)\r
575 {\r
576 fseek(f, 0, SEEK_END);\r
577 if (ftell(f) > 2*1024*1024)\r
578 PicoMessage("Loading MP3...");\r
579 }\r
cb0316e4 580 fseek(f, 0, SEEK_SET);\r
581 fread(mp3_mem, 1, MP3_SIZE_MAX, f);\r
4f265db7 582 // if (feof(f)) printf("done.\n");\r
583 // else printf("done. mp3 too large, not all data loaded.\n");\r
cb0316e4 584 shared_ctl->mp3_len = ftell(f);\r
585 loaded_mp3 = f;\r
abe0ea43 586\r
587 if (PicoOpt&0x200) {\r
588 // as we are going to change 940's cacheable area, we must invalidate it's cache..\r
589 if (CHECK_BUSY(JOB940_MP3DECODE)) wait_busy_940(JOB940_MP3DECODE);\r
590 add_job_940(JOB940_INVALIDATE_DCACHE);\r
591 }\r
cb0316e4 592 }\r
593\r
594 // seek..\r
595 if (pos) {\r
596 byte_offs = (shared_ctl->mp3_len << 6) >> 10;\r
597 byte_offs *= pos;\r
598 byte_offs >>= 6;\r
599 }\r
4f265db7 600 // printf("mp3 pos1024: %i, byte_offs %i/%i\n", pos, byte_offs, shared_ctl->mp3_len);\r
cb0316e4 601\r
602 shared_ctl->mp3_offs = byte_offs;\r
51a902ae 603\r
abe0ea43 604 // reset buffer pointers and stuff..\r
51a902ae 605 mp3_samples_ready = mp3_buffer_offs = mp3_play_bufsel = 0;\r
abe0ea43 606 mp3_job_started = 0;\r
51a902ae 607 shared_ctl->mp3_buffsel = 1; // will change to 0 on first decode\r
abe0ea43 608\r
609 if (!(PicoOpt&0x200)) mp3_start_local();\r
cb0316e4 610}\r
611\r
612\r
75736070 613int mp3_get_offset(void)\r
614{\r
615 int offs1024 = 0;\r
616 int cdda_on;\r
617\r
1cd356a3 618 cdda_on = (PicoMCD & 1) && (PicoOpt&0x800) && !(Pico_mcd->s68k_regs[0x36] & 1) &&\r
abe0ea43 619 (Pico_mcd->scd.Status_CDC & 1) && loaded_mp3;\r
75736070 620\r
621 if (cdda_on) {\r
622 offs1024 = shared_ctl->mp3_offs << 7;\r
623 offs1024 /= shared_ctl->mp3_len;\r
624 offs1024 <<= 3;\r
625 }\r
626 printf("offs1024=%i (%i/%i)\n", offs1024, shared_ctl->mp3_offs, shared_ctl->mp3_len);\r
627\r
628 return offs1024;\r
629}\r
630\r
631\r