frontend: update libpicofe, fix missed callbacks
[pcsx_rearmed.git] / plugins / dfsound / freeze.c
CommitLineData
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1/***************************************************************************\r
2 freeze.c - description\r
3 -------------------\r
4 begin : Wed May 15 2002\r
5 copyright : (C) 2002 by Pete Bernert\r
6 email : BlackDove@addcom.de\r
7 ***************************************************************************/\r
8/***************************************************************************\r
9 * *\r
10 * This program is free software; you can redistribute it and/or modify *\r
11 * it under the terms of the GNU General Public License as published by *\r
12 * the Free Software Foundation; either version 2 of the License, or *\r
13 * (at your option) any later version. See also the license.txt file for *\r
14 * additional informations. *\r
15 * *\r
16 ***************************************************************************/\r
17\r
0f5a4b3a 18#include <stddef.h>\r
38e4048f 19#include <assert.h>\r
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20#include "stdafx.h"\r
21\r
22#define _IN_FREEZE\r
23\r
24#include "externals.h"\r
25#include "registers.h"\r
26#include "spu.h"\r
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27\r
28////////////////////////////////////////////////////////////////////////\r
29// freeze structs\r
30////////////////////////////////////////////////////////////////////////\r
31\r
c668f248 32typedef struct\r
33{\r
34 int AttackModeExp;\r
35 int AttackTime;\r
36 int DecayTime;\r
37 int SustainLevel;\r
38 int SustainModeExp;\r
39 int SustainModeDec;\r
40 int SustainTime;\r
41 int ReleaseModeExp;\r
42 unsigned int ReleaseVal;\r
43 int ReleaseTime;\r
44 int ReleaseStartTime; \r
45 int ReleaseVol; \r
46 int lTime;\r
47 int lVolume;\r
48} ADSRInfo;\r
49\r
6d866bb7 50typedef struct\r
51{\r
52 int State;\r
53 int AttackModeExp;\r
54 int AttackRate;\r
55 int DecayRate;\r
56 int SustainLevel;\r
57 int SustainModeExp;\r
58 int SustainIncrease;\r
59 int SustainRate;\r
60 int ReleaseModeExp;\r
61 int ReleaseRate;\r
62 int EnvelopeVol;\r
c668f248 63 int lVolume;\r
64 int lDummy1;\r
65 int lDummy2;\r
6d866bb7 66} ADSRInfoEx_orig;\r
67\r
68typedef struct\r
69{\r
70 // no mutexes used anymore... don't need them to sync access\r
71 //HANDLE hMutex;\r
72\r
73 int bNew; // start flag\r
74\r
75 int iSBPos; // mixing stuff\r
76 int spos;\r
77 int sinc;\r
78 int SB[32+32]; // Pete added another 32 dwords in 1.6 ... prevents overflow issues with gaussian/cubic interpolation (thanx xodnizel!), and can be used for even better interpolations, eh? :)\r
79 int sval;\r
80\r
8e1040b6 81 int iStart; // start ptr into sound mem\r
82 int iCurr; // current pos in sound mem\r
83 int iLoop; // loop ptr in sound mem\r
6d866bb7 84\r
85 int bOn; // is channel active (sample playing?)\r
86 int bStop; // is channel stopped (sample _can_ still be playing, ADSR Release phase)\r
87 int bReverb; // can we do reverb on this channel? must have ctrl register bit, to get active\r
88 int iActFreq; // current psx pitch\r
89 int iUsedFreq; // current pc pitch\r
90 int iLeftVolume; // left volume\r
91 int iLeftVolRaw; // left psx volume value\r
92 int bIgnoreLoop; // ignore loop bit, if an external loop address is used\r
93 int iMute; // mute mode\r
94 int iRightVolume; // right volume\r
95 int iRightVolRaw; // right psx volume value\r
96 int iRawPitch; // raw pitch (0...3fff)\r
97 int iIrqDone; // debug irq done flag\r
98 int s_1; // last decoding infos\r
99 int s_2;\r
100 int bRVBActive; // reverb active flag\r
101 int iRVBOffset; // reverb offset\r
102 int iRVBRepeat; // reverb repeat\r
103 int bNoise; // noise active flag\r
104 int bFMod; // freq mod (0=off, 1=sound channel, 2=freq channel)\r
105 int iRVBNum; // another reverb helper\r
106 int iOldNoise; // old noise val for this channel \r
107 ADSRInfo ADSR; // active ADSR settings\r
108 ADSRInfoEx_orig ADSRX; // next ADSR settings (will be moved to active on sample start)\r
109} SPUCHAN_orig;\r
110\r
38b8a211 111typedef struct SPUFreeze\r
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112{\r
113 char szSPUName[8];\r
114 uint32_t ulFreezeVersion;\r
115 uint32_t ulFreezeSize;\r
116 unsigned char cSPUPort[0x200];\r
117 unsigned char cSPURam[0x80000];\r
118 xa_decode_t xaS; \r
119} SPUFreeze_t;\r
120\r
121typedef struct\r
122{\r
123 unsigned short spuIrq;\r
d9dcc8cb 124 unsigned short decode_pos;\r
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125 uint32_t pSpuIrq;\r
126 uint32_t spuAddr;\r
b34d6a80 127 uint32_t rvb_cur;\r
128 uint16_t xa_left;\r
129 uint16_t cdda_left;\r
130 uint32_t cycles_played;\r
ef79bbde 131\r
6d866bb7 132 SPUCHAN_orig s_chan[MAXCHAN]; \r
ef79bbde 133\r
20ed712f 134 uint32_t cycles_dma_end;\r
135 uint32_t decode_dirty_ch;\r
136 uint32_t dwNoiseVal;\r
137 uint32_t dwNoiseCount;\r
138 uint32_t XARepeat;\r
139 uint32_t XALastVal;\r
140 uint32_t last_keyon_cycles;\r
0f5a4b3a 141 uint32_t rvb_sb[2][4];\r
7f786168 142 int32_t interpolation; // which interpolation's data is in SPUCHAN_orig::SB\r
20ed712f 143\r
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144} SPUOSSFreeze_t;\r
145\r
146////////////////////////////////////////////////////////////////////////\r
147\r
b34d6a80 148static SPUOSSFreeze_t * LoadStateV5(SPUFreeze_t * pF, uint32_t cycles);\r
149static void LoadStateUnknown(SPUFreeze_t * pF, uint32_t cycles); // unknown format\r
ef79bbde 150\r
6d866bb7 151// we want to retain compatibility between versions,\r
152// so use original channel struct\r
381ea103 153static void save_channel(SPUCHAN_orig *d, const SPUCHAN *s, int ch)\r
6d866bb7 154{\r
155 memset(d, 0, sizeof(*d));\r
3154bfab 156 d->bNew = !!(spu.dwNewChannel & (1<<ch));\r
6d866bb7 157 d->iSBPos = s->iSBPos;\r
158 d->spos = s->spos;\r
159 d->sinc = s->sinc;\r
38e4048f 160 assert(sizeof(d->SB) >= sizeof(spu.sb[ch]));\r
161 memcpy(d->SB, &spu.sb[ch], sizeof(spu.sb[ch]));\r
5fdcf5cd 162 d->iStart = (regAreaGetCh(ch, 6) & ~1) << 3;\r
8e1040b6 163 d->iCurr = 0; // set by the caller\r
164 d->iLoop = 0; // set by the caller\r
5aa94fa0 165 d->bOn = !!(spu.dwChannelsAudible & (1<<ch));\r
9ad8abfa 166 d->bStop = s->ADSRX.State == ADSR_RELEASE;\r
6d866bb7 167 d->bReverb = s->bReverb;\r
7e44d49d 168 d->iActFreq = 1;\r
169 d->iUsedFreq = 2;\r
6d866bb7 170 d->iLeftVolume = s->iLeftVolume;\r
e4f075af 171 // this one is nasty but safe, save compat is important\r
172 d->bIgnoreLoop = (s->prevflags ^ 2) << 1;\r
6d866bb7 173 d->iRightVolume = s->iRightVolume;\r
174 d->iRawPitch = s->iRawPitch;\r
38e4048f 175 d->s_1 = spu.sb[ch].SB[27]; // yes it's reversed\r
176 d->s_2 = spu.sb[ch].SB[26];\r
6d866bb7 177 d->bRVBActive = s->bRVBActive;\r
6d866bb7 178 d->bNoise = s->bNoise;\r
179 d->bFMod = s->bFMod;\r
6d866bb7 180 d->ADSRX.State = s->ADSRX.State;\r
181 d->ADSRX.AttackModeExp = s->ADSRX.AttackModeExp;\r
182 d->ADSRX.AttackRate = s->ADSRX.AttackRate;\r
183 d->ADSRX.DecayRate = s->ADSRX.DecayRate;\r
184 d->ADSRX.SustainLevel = s->ADSRX.SustainLevel;\r
185 d->ADSRX.SustainModeExp = s->ADSRX.SustainModeExp;\r
186 d->ADSRX.SustainIncrease = s->ADSRX.SustainIncrease;\r
187 d->ADSRX.SustainRate = s->ADSRX.SustainRate;\r
188 d->ADSRX.ReleaseModeExp = s->ADSRX.ReleaseModeExp;\r
189 d->ADSRX.ReleaseRate = s->ADSRX.ReleaseRate;\r
190 d->ADSRX.EnvelopeVol = s->ADSRX.EnvelopeVol;\r
191 d->ADSRX.lVolume = d->bOn; // hmh\r
192}\r
193\r
381ea103 194static void load_channel(SPUCHAN *d, const SPUCHAN_orig *s, int ch)\r
6d866bb7 195{\r
196 memset(d, 0, sizeof(*d));\r
3154bfab 197 if (s->bNew) spu.dwNewChannel |= 1<<ch;\r
6d866bb7 198 d->iSBPos = s->iSBPos;\r
650adfd2 199 if ((uint32_t)d->iSBPos >= 28) d->iSBPos = 27;\r
6d866bb7 200 d->spos = s->spos;\r
201 d->sinc = s->sinc;\r
650adfd2 202 d->sinc_inv = 0;\r
38e4048f 203 memcpy(&spu.sb[ch], s->SB, sizeof(spu.sb[ch]));\r
77e1e479 204 d->pCurr = (void *)((uintptr_t)s->iCurr & 0x7fff0);\r
205 d->pLoop = (void *)((uintptr_t)s->iLoop & 0x7fff0);\r
6d866bb7 206 d->bReverb = s->bReverb;\r
6d866bb7 207 d->iLeftVolume = s->iLeftVolume;\r
6d866bb7 208 d->iRightVolume = s->iRightVolume;\r
209 d->iRawPitch = s->iRawPitch;\r
6d866bb7 210 d->bRVBActive = s->bRVBActive;\r
6d866bb7 211 d->bNoise = s->bNoise;\r
212 d->bFMod = s->bFMod;\r
e4f075af 213 d->prevflags = (s->bIgnoreLoop >> 1) ^ 2;\r
6d866bb7 214 d->ADSRX.State = s->ADSRX.State;\r
9ad8abfa 215 if (s->bStop) d->ADSRX.State = ADSR_RELEASE;\r
6d866bb7 216 d->ADSRX.AttackModeExp = s->ADSRX.AttackModeExp;\r
217 d->ADSRX.AttackRate = s->ADSRX.AttackRate;\r
218 d->ADSRX.DecayRate = s->ADSRX.DecayRate;\r
219 d->ADSRX.SustainLevel = s->ADSRX.SustainLevel;\r
220 d->ADSRX.SustainModeExp = s->ADSRX.SustainModeExp;\r
221 d->ADSRX.SustainIncrease = s->ADSRX.SustainIncrease;\r
222 d->ADSRX.SustainRate = s->ADSRX.SustainRate;\r
223 d->ADSRX.ReleaseModeExp = s->ADSRX.ReleaseModeExp;\r
224 d->ADSRX.ReleaseRate = s->ADSRX.ReleaseRate;\r
225 d->ADSRX.EnvelopeVol = s->ADSRX.EnvelopeVol;\r
5aa94fa0 226 if (s->bOn) spu.dwChannelsAudible |= 1<<ch;\r
6f6fe969 227 else d->ADSRX.EnvelopeVol = 0;\r
6d866bb7 228}\r
229\r
650adfd2 230// force load from regArea to variables\r
231static void load_register(unsigned long reg, unsigned int cycles)\r
232{\r
3154bfab 233 unsigned short *r = &spu.regArea[((reg & 0xfff) - 0xc00) >> 1];\r
650adfd2 234 *r ^= 1;\r
235 SPUwriteRegister(reg, *r ^ 1, cycles);\r
236}\r
237\r
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238////////////////////////////////////////////////////////////////////////\r
239// SPUFREEZE: called by main emu on savestate load/save\r
240////////////////////////////////////////////////////////////////////////\r
241\r
7f786168 242long DoFreeze(unsigned int ulFreezeMode, SPUFreeze_t * pF,\r
38b8a211 243 unsigned int cycles)\r
ef79bbde 244{\r
b34d6a80 245 SPUOSSFreeze_t * pFO = NULL;\r
ef0559d4 246 sample_buf *sb_rvb = &spu.sb[MAXCHAN];\r
0f5a4b3a 247 int i, j;\r
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248\r
249 if(!pF) return 0; // first check\r
250\r
ef0559d4 251#if P_HAVE_PTHREAD || defined(WANT_THREAD_CODE)\r
252 sb_rvb = &spu.sb_thread[MAXCHAN];\r
253#endif\r
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254 if(ulFreezeMode) // info or save?\r
255 {//--------------------------------------------------//\r
b34d6a80 256 int xa_left = 0, cdda_left = 0;\r
257 do_samples(cycles, 1);\r
258\r
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259 if(ulFreezeMode==1) \r
260 memset(pF,0,sizeof(SPUFreeze_t)+sizeof(SPUOSSFreeze_t));\r
261\r
262 strcpy(pF->szSPUName,"PBOSS");\r
263 pF->ulFreezeVersion=5;\r
264 pF->ulFreezeSize=sizeof(SPUFreeze_t)+sizeof(SPUOSSFreeze_t);\r
265\r
266 if(ulFreezeMode==2) return 1; // info mode? ok, bye\r
267 // save mode:\r
20ed712f 268 regAreaGet(H_SPUctrl) = spu.spuCtrl;\r
269 regAreaGet(H_SPUstat) = spu.spuStat;\r
3154bfab 270 memcpy(pF->cSPURam,spu.spuMem,0x80000); // copy common infos\r
271 memcpy(pF->cSPUPort,spu.regArea,0x200);\r
ef79bbde 272\r
3154bfab 273 if(spu.xapGlobal && spu.XAPlay!=spu.XAFeed) // some xa\r
ef79bbde 274 {\r
b34d6a80 275 xa_left = spu.XAFeed - spu.XAPlay;\r
276 if (xa_left < 0)\r
277 xa_left = spu.XAEnd - spu.XAPlay + spu.XAFeed - spu.XAStart;\r
278 pF->xaS = *spu.xapGlobal;\r
279 }\r
280 else if (spu.CDDAPlay != spu.CDDAFeed)\r
281 {\r
282 // abuse the xa struct to store leftover cdda samples\r
283 unsigned int *p = spu.CDDAPlay;\r
284 cdda_left = spu.CDDAFeed - spu.CDDAPlay;\r
285 if (cdda_left < 0)\r
286 cdda_left = spu.CDDAEnd - spu.CDDAPlay + spu.CDDAFeed - spu.CDDAStart;\r
287 if (cdda_left > sizeof(pF->xaS.pcm) / 4)\r
288 cdda_left = sizeof(pF->xaS.pcm) / 4;\r
289 if (p + cdda_left <= spu.CDDAEnd)\r
290 memcpy(pF->xaS.pcm, p, cdda_left * 4);\r
291 else {\r
292 memcpy(pF->xaS.pcm, p, (spu.CDDAEnd - p) * 4);\r
293 memcpy((char *)pF->xaS.pcm + (spu.CDDAEnd - p) * 4, spu.CDDAStart,\r
294 (cdda_left - (spu.CDDAEnd - p)) * 4);\r
295 }\r
296 pF->xaS.nsamples = 0;\r
ef79bbde 297 }\r
b34d6a80 298 else\r
299 memset(&pF->xaS,0,sizeof(xa_decode_t)); // or clean xa\r
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300\r
301 pFO=(SPUOSSFreeze_t *)(pF+1); // store special stuff\r
302\r
3154bfab 303 pFO->spuIrq = spu.regArea[(H_SPUirqAddr - 0x0c00) / 2];\r
77e1e479 304 if(spu.pSpuIrq) pFO->pSpuIrq = spu.pSpuIrq - spu.spuMemC;\r
ef79bbde 305\r
3154bfab 306 pFO->spuAddr=spu.spuAddr;\r
ef79bbde 307 if(pFO->spuAddr==0) pFO->spuAddr=0xbaadf00d;\r
d9dcc8cb 308 pFO->decode_pos = spu.decode_pos;\r
b34d6a80 309 pFO->rvb_cur = spu.rvb->CurrAddr;\r
310 pFO->xa_left = xa_left;\r
311 pFO->cdda_left = cdda_left;\r
312 pFO->cycles_played = spu.cycles_played;\r
95a3270f 313 pFO->cycles_dma_end = spu.cycles_dma_end;\r
314 pFO->decode_dirty_ch = spu.decode_dirty_ch;\r
315 pFO->dwNoiseVal = spu.dwNoiseVal;\r
316 pFO->dwNoiseCount = spu.dwNoiseCount;\r
317 pFO->XARepeat = spu.XARepeat;\r
318 pFO->XALastVal = spu.XALastVal;\r
319 pFO->last_keyon_cycles = spu.last_keyon_cycles;\r
0f5a4b3a 320 for (i = 0; i < 2; i++)\r
ef0559d4 321 memcpy(&pFO->rvb_sb[i], sb_rvb->SB_rvb[i], sizeof(pFO->rvb_sb[i]));\r
7f786168 322 pFO->interpolation = spu.interpolation;\r
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323\r
324 for(i=0;i<MAXCHAN;i++)\r
325 {\r
5514a050 326 save_channel(&pFO->s_chan[i],&spu.s_chan[i],i);\r
327 if(spu.s_chan[i].pCurr)\r
328 pFO->s_chan[i].iCurr=spu.s_chan[i].pCurr-spu.spuMemC;\r
329 if(spu.s_chan[i].pLoop)\r
330 pFO->s_chan[i].iLoop=spu.s_chan[i].pLoop-spu.spuMemC;\r
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331 }\r
332\r
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333 return 1;\r
334 //--------------------------------------------------//\r
335 }\r
336 \r
337 if(ulFreezeMode!=0) return 0; // bad mode? bye\r
338\r
3154bfab 339 memcpy(spu.spuMem,pF->cSPURam,0x80000); // get ram\r
340 memcpy(spu.regArea,pF->cSPUPort,0x200);\r
0c1151fe 341 spu.bMemDirty = 1;\r
20ed712f 342 spu.spuCtrl = regAreaGet(H_SPUctrl);\r
343 spu.spuStat = regAreaGet(H_SPUstat);\r
ef79bbde 344\r
b34d6a80 345 if (!strcmp(pF->szSPUName,"PBOSS") && pF->ulFreezeVersion==5)\r
346 pFO = LoadStateV5(pF, cycles);\r
650adfd2 347 else LoadStateUnknown(pF, cycles);\r
ef79bbde 348\r
b34d6a80 349 spu.XAPlay = spu.XAFeed = spu.XAStart;\r
350 spu.CDDAPlay = spu.CDDAFeed = spu.CDDAStart;\r
67c020ee 351 spu.cdClearSamples = 512;\r
b34d6a80 352 if (pFO && pFO->xa_left && pF->xaS.nsamples) { // start xa again\r
353 FeedXA(&pF->xaS);\r
354 spu.XAPlay = spu.XAFeed - pFO->xa_left;\r
355 if (spu.XAPlay < spu.XAStart)\r
356 spu.XAPlay = spu.XAStart;\r
357 }\r
358 else if (pFO && pFO->cdda_left) { // start cdda again\r
359 FeedCDDA((void *)pF->xaS.pcm, pFO->cdda_left * 4);\r
360 }\r
361\r
20ed712f 362 // not in old savestates\r
363 spu.cycles_dma_end = 0;\r
364 spu.decode_dirty_ch = spu.dwChannelsAudible & 0x0a;\r
365 spu.dwNoiseVal = 0;\r
366 spu.dwNoiseCount = 0;\r
367 spu.XARepeat = 0;\r
368 spu.XALastVal = 0;\r
369 spu.last_keyon_cycles = cycles - 16*786u;\r
7f786168 370 spu.interpolation = -1;\r
0f5a4b3a 371 if (pFO && pF->ulFreezeSize >= sizeof(*pF) + offsetof(SPUOSSFreeze_t, rvb_sb)) {\r
20ed712f 372 spu.cycles_dma_end = pFO->cycles_dma_end;\r
373 spu.decode_dirty_ch = pFO->decode_dirty_ch;\r
374 spu.dwNoiseVal = pFO->dwNoiseVal;\r
375 spu.dwNoiseCount = pFO->dwNoiseCount;\r
376 spu.XARepeat = pFO->XARepeat;\r
377 spu.XALastVal = pFO->XALastVal;\r
378 spu.last_keyon_cycles = pFO->last_keyon_cycles;\r
379 }\r
0f5a4b3a 380 if (pFO && pF->ulFreezeSize >= sizeof(*pF) + sizeof(*pFO)) {\r
381 for (i = 0; i < 2; i++)\r
382 for (j = 0; j < 2; j++)\r
ef0559d4 383 memcpy(&sb_rvb->SB_rvb[i][j*4], pFO->rvb_sb[i], 4 * sizeof(sb_rvb->SB_rvb[i][0]));\r
7f786168 384 spu.interpolation = pFO->interpolation;\r
0f5a4b3a 385 }\r
7d06f3e5 386 for (i = 0; i <= 2; i += 2)\r
387 if (!regAreaGet(H_SPUcmvolL+i) && regAreaGet(H_SPUmvolL+i) < 0x8000u)\r
388 regAreaRef(H_SPUcmvolL+i) = regAreaGet(H_SPUmvolL+i) << 1;\r
20ed712f 389\r
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390 // repair some globals\r
391 for(i=0;i<=62;i+=2)\r
650adfd2 392 load_register(H_Reverb+i, cycles);\r
393 load_register(H_SPUReverbAddr, cycles);\r
394 load_register(H_SPUrvolL, cycles);\r
395 load_register(H_SPUrvolR, cycles);\r
650adfd2 396 load_register(H_CDLeft, cycles);\r
397 load_register(H_CDRight, cycles);\r
ef79bbde 398\r
20ed712f 399 // reverb\r
400 spu.rvb->StartAddr = regAreaGet(H_SPUReverbAddr) << 2;\r
d0af6d75 401 if (spu.rvb->CurrAddr < spu.rvb->StartAddr)\r
402 spu.rvb->CurrAddr = spu.rvb->StartAddr;\r
ef79bbde 403\r
6d75977b 404 ClearWorkingState();\r
ef79bbde 405\r
c4c66b22 406 if (spu.spuCtrl & CTRL_IRQ)\r
407 schedule_next_irq();\r
408\r
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409 return 1;\r
410}\r
411\r
412////////////////////////////////////////////////////////////////////////\r
413\r
b34d6a80 414static SPUOSSFreeze_t * LoadStateV5(SPUFreeze_t * pF, uint32_t cycles)\r
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415{\r
416 int i;SPUOSSFreeze_t * pFO;\r
417\r
418 pFO=(SPUOSSFreeze_t *)(pF+1);\r
419\r
c4c66b22 420 spu.pSpuIrq = spu.spuMemC + ((spu.regArea[(H_SPUirqAddr - 0x0c00) / 2] << 3) & ~0xf);\r
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421\r
422 if(pFO->spuAddr)\r
423 {\r
5514a050 424 if (pFO->spuAddr == 0xbaadf00d) spu.spuAddr = 0;\r
425 else spu.spuAddr = pFO->spuAddr & 0x7fffe;\r
ef79bbde 426 }\r
d9dcc8cb 427 spu.decode_pos = pFO->decode_pos & 0x1ff;\r
b34d6a80 428 spu.rvb->CurrAddr = pFO->rvb_cur;\r
429 spu.cycles_played = pFO->cycles_played ? pFO->cycles_played : cycles;\r
ef79bbde 430\r
3154bfab 431 spu.dwNewChannel=0;\r
5aa94fa0 432 spu.dwChannelsAudible=0;\r
3154bfab 433 spu.dwChannelDead=0;\r
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434 for(i=0;i<MAXCHAN;i++)\r
435 {\r
5514a050 436 load_channel(&spu.s_chan[i],&pFO->s_chan[i],i);\r
ef79bbde 437\r
77e1e479 438 spu.s_chan[i].pCurr+=(uintptr_t)spu.spuMemC;\r
439 spu.s_chan[i].pLoop+=(uintptr_t)spu.spuMemC;\r
ef79bbde 440 }\r
20ed712f 441\r
b34d6a80 442 return pFO;\r
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443}\r
444\r
445////////////////////////////////////////////////////////////////////////\r
446\r
b34d6a80 447static void LoadStateUnknown(SPUFreeze_t * pF, uint32_t cycles)\r
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448{\r
449 int i;\r
450\r
451 for(i=0;i<MAXCHAN;i++)\r
452 {\r
5514a050 453 spu.s_chan[i].pLoop=spu.spuMemC;\r
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454 }\r
455\r
3154bfab 456 spu.dwNewChannel=0;\r
5aa94fa0 457 spu.dwChannelsAudible=0;\r
3154bfab 458 spu.dwChannelDead=0;\r
c4c66b22 459 spu.pSpuIrq=spu.spuMemC;\r
b34d6a80 460 spu.cycles_played = cycles;\r
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461\r
462 for(i=0;i<0xc0;i++)\r
463 {\r
650adfd2 464 load_register(0x1f801c00 + i*2, cycles);\r
ef79bbde
P
465 }\r
466}\r
467\r
468////////////////////////////////////////////////////////////////////////\r
b34d6a80 469// vim:shiftwidth=1:expandtab\r