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/*
* QEMU Soundblaster 16 emulation
*
* Copyright (c) 2003 Vassili Karpov (malc)
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
* THE SOFTWARE.
*/
#include "vl.h"
#define MIN(a, b) ((a)>(b)?(b):(a))
#define LENOFA(a) ((int) (sizeof(a)/sizeof(a[0])))
#define DEREF(x) (void)x
#define log(...) fprintf (stderr, "sb16: " __VA_ARGS__)
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32
|
/* #define DEBUG_SB16 */
|
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33
34
35
36
37
38
39
40
41
42
43
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#ifdef DEBUG_SB16
#define lwarn(...) fprintf (stderr, "sb16: " __VA_ARGS__)
#define linfo(...) fprintf (stderr, "sb16: " __VA_ARGS__)
#define ldebug(...) fprintf (stderr, "sb16: " __VA_ARGS__)
#else
#define lwarn(...)
#define linfo(...)
#define ldebug(...)
#endif
#define IO_READ_PROTO(name) \
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44
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uint32_t name (void *opaque, uint32_t nport)
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45
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#define IO_WRITE_PROTO(name) \
|
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46
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void name (void *opaque, uint32_t nport, uint32_t val)
|
|
47
48
49
50
51
52
53
54
55
|
static struct {
int ver_lo;
int ver_hi;
int irq;
int dma;
int hdma;
int port;
int mix_block;
|
|
56
|
} sb = {5, 4, 5, 1, 5, 0x220, -1};
|
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57
58
59
|
static int mix_block, noirq;
|
|
60
|
typedef struct SB16State {
|
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61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
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80
81
82
83
|
int in_index;
int out_data_len;
int fmt_stereo;
int fmt_signed;
int fmt_bits;
int dma_auto;
int dma_buffer_size;
int fifo;
int freq;
int time_const;
int speaker;
int needed_bytes;
int cmd;
int dma_pos;
int use_hdma;
int v2x6;
uint8_t in_data[10];
uint8_t out_data[10];
int left_till_irq;
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84
85
86
87
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/* mixer state */
int mixer_nreg;
uint8_t mixer_regs[0x83];
} SB16State;
|
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88
|
|
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89
90
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/* XXX: suppress that and use a context */
static struct SB16State dsp;
|
|
91
|
|
|
92
93
|
static void log_dsp (SB16State *dsp)
{
|
|
94
|
linfo ("%c:%c:%d:%c:dmabuf=%d:pos=%d:freq=%d:timeconst=%d:speaker=%d\n",
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95
96
97
98
99
100
101
102
103
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dsp->fmt_stereo ? 'S' : 'M',
dsp->fmt_signed ? 'S' : 'U',
dsp->fmt_bits,
dsp->dma_auto ? 'a' : 's',
dsp->dma_buffer_size,
dsp->dma_pos,
dsp->freq,
dsp->time_const,
dsp->speaker);
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104
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107
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109
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111
112
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155
156
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161
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180
181
182
183
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194
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}
static void control (int hold)
{
linfo ("%d high %d\n", hold, dsp.use_hdma);
if (hold) {
if (dsp.use_hdma)
DMA_hold_DREQ (sb.hdma);
else
DMA_hold_DREQ (sb.dma);
}
else {
if (dsp.use_hdma)
DMA_release_DREQ (sb.hdma);
else
DMA_release_DREQ (sb.dma);
}
}
static void dma_cmd (uint8_t cmd, uint8_t d0, int dma_len)
{
int bps;
audfmt_e fmt;
dsp.use_hdma = cmd < 0xc0;
dsp.fifo = (cmd >> 1) & 1;
dsp.dma_auto = (cmd >> 2) & 1;
switch (cmd >> 4) {
case 11:
dsp.fmt_bits = 16;
break;
case 12:
dsp.fmt_bits = 8;
break;
}
dsp.fmt_signed = (d0 >> 4) & 1;
dsp.fmt_stereo = (d0 >> 5) & 1;
if (-1 != dsp.time_const) {
int tmp;
tmp = 256 - dsp.time_const;
dsp.freq = (1000000 + (tmp / 2)) / tmp;
}
bps = 1 << (16 == dsp.fmt_bits);
if (-1 != dma_len)
dsp.dma_buffer_size = (dma_len + 1) * bps;
linfo ("frequency %d, stereo %d, signed %d, bits %d, size %d, auto %d\n",
dsp.freq, dsp.fmt_stereo, dsp.fmt_signed, dsp.fmt_bits,
dsp.dma_buffer_size, dsp.dma_auto);
if (16 == dsp.fmt_bits) {
if (dsp.fmt_signed) {
fmt = AUD_FMT_S16;
}
else {
fmt = AUD_FMT_U16;
}
}
else {
if (dsp.fmt_signed) {
fmt = AUD_FMT_S8;
}
else {
fmt = AUD_FMT_U8;
}
}
dsp.dma_pos = 0;
dsp.left_till_irq = dsp.dma_buffer_size;
if (sb.mix_block) {
mix_block = sb.mix_block;
}
else {
int align;
align = bps << dsp.fmt_stereo;
mix_block = ((dsp.freq * align) / 100) & ~(align - 1);
}
AUD_reset (dsp.freq, 1 << dsp.fmt_stereo, fmt);
control (1);
dsp.speaker = 1;
}
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195
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static void command (SB16State *dsp, uint8_t cmd)
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196
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203
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207
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{
linfo ("%#x\n", cmd);
if (cmd > 0xaf && cmd < 0xd0) {
if (cmd & 8)
goto error;
switch (cmd >> 4) {
case 11:
case 12:
break;
default:
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208
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log("%#x wrong bits", cmd);
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209
210
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goto error;
}
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211
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dsp->needed_bytes = 3;
|
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212
213
214
|
}
else {
switch (cmd) {
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215
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220
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case 0x00:
case 0x03:
case 0xe7:
/* IMS uses those when probing for sound devices */
return;
|
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221
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case 0x10:
|
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222
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dsp->needed_bytes = 1;
|
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223
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225
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break;
case 0x14:
|
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226
227
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dsp->needed_bytes = 2;
dsp->dma_buffer_size = 0;
|
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228
229
230
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break;
case 0x20:
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231
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dsp->out_data[dsp->out_data_len++] = 0xff;
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232
233
234
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238
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break;
case 0x35:
lwarn ("MIDI commands not implemented\n");
break;
case 0x40:
|
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239
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241
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dsp->freq = -1;
dsp->time_const = -1;
dsp->needed_bytes = 1;
|
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242
243
244
245
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break;
case 0x41:
case 0x42:
|
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246
247
248
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dsp->freq = -1;
dsp->time_const = -1;
dsp->needed_bytes = 2;
|
|
249
250
251
252
253
254
|
break;
case 0x47: /* Continue Auto-Initialize DMA 16bit */
break;
case 0x48:
|
|
255
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dsp->needed_bytes = 2;
|
|
256
257
258
259
260
261
262
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break;
case 0x27: /* ????????? */
case 0x4e:
return;
case 0x80:
|
|
263
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cmd = -1;
|
|
264
265
266
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268
269
270
271
|
break;
case 0x90:
case 0x91:
{
uint8_t d0;
d0 = 4;
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272
273
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if (dsp->fmt_signed) d0 |= 16;
if (dsp->fmt_stereo) d0 |= 32;
|
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274
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dma_cmd (cmd == 0x90 ? 0xc4 : 0xc0, d0, -1);
|
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275
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cmd = -1;
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276
277
278
279
280
281
282
283
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break;
}
case 0xd0: /* XXX */
control (0);
return;
case 0xd1:
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284
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dsp->speaker = 1;
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287
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break;
case 0xd3:
|
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288
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dsp->speaker = 0;
|
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289
290
291
292
293
294
295
296
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299
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301
302
303
304
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return;
case 0xd4:
control (1);
break;
case 0xd5:
control (0);
break;
case 0xd6:
control (1);
break;
case 0xd9:
control (0);
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305
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dsp->dma_auto = 0;
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306
307
308
309
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return;
case 0xda:
control (0);
|
|
310
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dsp->dma_auto = 0;
|
|
311
312
313
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break;
case 0xe0:
|
|
314
|
dsp->needed_bytes = 1;
|
|
315
316
317
|
break;
case 0xe1:
|
|
318
319
|
dsp->out_data[dsp->out_data_len++] = sb.ver_lo;
dsp->out_data[dsp->out_data_len++] = sb.ver_hi;
|
|
320
321
322
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return;
case 0xf2:
|
|
323
324
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dsp->out_data[dsp->out_data_len++] = 0xaa;
dsp->mixer_regs[0x82] |= dsp->mixer_regs[0x80];
|
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325
326
327
328
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pic_set_irq (sb.irq, 1);
return;
default:
|
|
329
|
log("%#x is unknown", cmd);
|
|
330
331
332
|
goto error;
}
}
|
|
333
|
dsp->cmd = cmd;
|
|
334
335
336
337
338
339
|
return;
error:
return;
}
|
|
340
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static void complete (SB16State *dsp)
|
|
341
342
|
{
linfo ("complete command %#x, in_index %d, needed_bytes %d\n",
|
|
343
|
dsp->cmd, dsp->in_index, dsp->needed_bytes);
|
|
344
|
|
|
345
|
if (dsp->cmd > 0xaf && dsp->cmd < 0xd0) {
|
|
346
347
|
int d0, d1, d2;
|
|
348
349
350
|
d0 = dsp->in_data[0];
d1 = dsp->in_data[1];
d2 = dsp->in_data[2];
|
|
351
352
353
|
ldebug ("d0 = %d, d1 = %d, d2 = %d\n",
d0, d1, d2);
|
|
354
|
dma_cmd (dsp->cmd, d0, d1 + (d2 << 8));
|
|
355
356
|
}
else {
|
|
357
|
switch (dsp->cmd) {
|
|
358
359
360
361
362
363
364
365
366
367
|
case 0x10:
break;
case 0x14:
{
int d0, d1;
int save_left;
int save_pos;
|
|
368
369
|
d0 = dsp->in_data[0];
d1 = dsp->in_data[1];
|
|
370
|
|
|
371
372
|
save_left = dsp->left_till_irq;
save_pos = dsp->dma_pos;
|
|
373
|
dma_cmd (0xc0, 0, d0 + (d1 << 8));
|
|
374
375
|
dsp->left_till_irq = save_left;
dsp->dma_pos = save_pos;
|
|
376
377
|
linfo ("set buffer size data[%d, %d] %d pos %d\n",
|
|
378
|
d0, d1, dsp->dma_buffer_size, dsp->dma_pos);
|
|
379
380
381
382
|
break;
}
case 0x40:
|
|
383
384
|
dsp->time_const = dsp->in_data[0];
linfo ("set time const %d\n", dsp->time_const);
|
|
385
386
387
388
|
break;
case 0x41:
case 0x42:
|
|
389
|
dsp->freq = dsp->in_data[1] + (dsp->in_data[0] << 8);
|
|
390
|
linfo ("set freq %#x, %#x = %d\n",
|
|
391
|
dsp->in_data[1], dsp->in_data[0], dsp->freq);
|
|
392
393
394
|
break;
case 0x48:
|
|
395
|
dsp->dma_buffer_size = dsp->in_data[1] + (dsp->in_data[0] << 8);
|
|
396
|
linfo ("set dma len %#x, %#x = %d\n",
|
|
397
|
dsp->in_data[1], dsp->in_data[0], dsp->dma_buffer_size);
|
|
398
399
400
|
break;
case 0xe0:
|
|
401
402
403
|
dsp->out_data_len = 1;
linfo ("data = %#x\n", dsp->in_data[0]);
dsp->out_data[0] = dsp->in_data[0] ^ 0xff;
|
|
404
405
406
|
break;
default:
|
|
407
408
|
log ("unrecognized command %#x", dsp->cmd);
return;
|
|
409
410
411
|
}
}
|
|
412
|
dsp->cmd = -1;
|
|
413
414
415
416
417
|
return;
}
static IO_WRITE_PROTO (dsp_write)
{
|
|
418
|
SB16State *dsp = opaque;
|
|
419
420
421
422
423
424
425
|
int iport;
iport = nport - sb.port;
switch (iport) {
case 0x6:
if (0 == val)
|
|
426
427
428
429
|
dsp->v2x6 = 0;
else if ((1 == val) && (0 == dsp->v2x6)) {
dsp->v2x6 = 1;
dsp->out_data[dsp->out_data_len++] = 0xaa;
|
|
430
431
|
}
else
|
|
432
|
dsp->v2x6 = ~0;
|
|
433
434
435
|
break;
case 0xc: /* write data or command | write status */
|
|
436
437
438
439
|
if (0 == dsp->needed_bytes) {
command (dsp, val);
if (0 == dsp->needed_bytes) {
log_dsp (dsp);
|
|
440
441
442
|
}
}
else {
|
|
443
444
445
446
447
448
|
dsp->in_data[dsp->in_index++] = val;
if (dsp->in_index == dsp->needed_bytes) {
dsp->needed_bytes = 0;
dsp->in_index = 0;
complete (dsp);
log_dsp (dsp);
|
|
449
450
451
452
453
|
}
}
break;
default:
|
|
454
455
|
log ("(nport=%#x, val=%#x)", nport, val);
break;
|
|
456
457
458
459
460
|
}
}
static IO_READ_PROTO (dsp_read)
{
|
|
461
|
SB16State *dsp = opaque;
|
|
462
463
464
465
466
467
468
469
470
471
|
int iport, retval;
iport = nport - sb.port;
switch (iport) {
case 0x6: /* reset */
return 0;
case 0xa: /* read data */
|
|
472
473
474
475
|
if (dsp->out_data_len) {
retval = dsp->out_data[--dsp->out_data_len];
} else {
log("empty output buffer\n");
|
|
476
477
478
479
480
481
482
483
484
|
goto error;
}
break;
case 0xc: /* 0 can write */
retval = 0;
break;
case 0xd: /* timer interrupt clear */
|
|
485
|
log("timer interrupt clear\n");
|
|
486
487
488
|
goto error;
case 0xe: /* data available status | irq 8 ack */
|
|
489
490
|
/* XXX drop pic irq line here? */
ldebug ("8 ack\n");
|
|
491
492
|
retval = (0 == dsp->out_data_len) ? 0 : 0x80;
dsp->mixer_regs[0x82] &= ~dsp->mixer_regs[0x80];
|
|
493
|
pic_set_irq (sb.irq, 0);
|
|
494
495
496
|
break;
case 0xf: /* irq 16 ack */
|
|
497
|
/* XXX drop pic irq line here? */
|
|
498
|
ldebug ("16 ack\n");
|
|
499
|
retval = 0xff;
|
|
500
|
dsp->mixer_regs[0x82] &= ~dsp->mixer_regs[0x80];
|
|
501
|
pic_set_irq (sb.irq, 0);
|
|
502
503
504
505
506
507
508
|
break;
default:
goto error;
}
if ((0xc != iport) && (0xe != iport)) {
|
|
509
510
|
ldebug ("nport=%#x iport %#x = %#x\n",
nport, iport, retval);
|
|
511
512
513
514
515
|
}
return retval;
error:
|
|
516
|
return 0;
|
|
517
518
519
520
|
}
static IO_WRITE_PROTO(mixer_write_indexb)
{
|
|
521
522
|
SB16State *dsp = opaque;
dsp->mixer_nreg = val & 0xff;
|
|
523
524
525
526
|
}
static IO_WRITE_PROTO(mixer_write_datab)
{
|
|
527
528
|
SB16State *dsp = opaque;
dsp->mixer_regs[dsp->mixer_nreg] = val;
|
|
529
530
531
532
|
}
static IO_WRITE_PROTO(mixer_write_indexw)
{
|
|
533
534
|
mixer_write_indexb (opaque, nport, val & 0xff);
mixer_write_datab (opaque, nport, (val >> 8) & 0xff);
|
|
535
536
537
538
|
}
static IO_READ_PROTO(mixer_read)
{
|
|
539
540
|
SB16State *dsp = opaque;
return dsp->mixer_regs[dsp->mixer_nreg];
|
|
541
542
543
544
545
546
547
548
549
550
551
552
553
|
}
void SB16_run (void)
{
if (0 == dsp.speaker)
return;
AUD_run ();
}
static int write_audio (uint32_t addr, int len, int size)
{
int temp, net;
|
|
554
|
uint8_t tmpbuf[4096];
|
|
555
556
557
558
559
560
561
562
563
564
565
566
567
|
temp = size;
net = 0;
while (temp) {
int left_till_end;
int to_copy;
int copied;
left_till_end = len - dsp.dma_pos;
to_copy = MIN (temp, left_till_end);
|
|
568
569
570
571
|
if (to_copy > sizeof(tmpbuf))
to_copy = sizeof(tmpbuf);
cpu_physical_memory_read(addr + dsp.dma_pos, tmpbuf, to_copy);
copied = AUD_write (tmpbuf, to_copy);
|
|
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
|
temp -= copied;
dsp.dma_pos += copied;
if (dsp.dma_pos == len) {
dsp.dma_pos = 0;
}
net += copied;
if (copied != to_copy)
return net;
}
return net;
}
|
|
589
|
static int SB_read_DMA (void *opaque, target_ulong addr, int size)
|
|
590
|
{
|
|
591
|
SB16State *dsp = opaque;
|
|
592
593
|
int free, till, copy, written;
|
|
594
|
if (0 == dsp->speaker)
|
|
595
596
|
return 0;
|
|
597
598
599
|
if (dsp->left_till_irq < 0) {
dsp->left_till_irq += dsp->dma_buffer_size;
return dsp->dma_pos;
|
|
600
601
602
603
604
|
}
free = AUD_get_free ();
if ((free <= 0) || (0 == size)) {
|
|
605
|
return dsp->dma_pos;
|
|
606
607
608
609
610
611
612
613
614
|
}
if (mix_block > 0) {
copy = MIN (free, mix_block);
}
else {
copy = free;
}
|
|
615
|
till = dsp->left_till_irq;
|
|
616
617
618
619
|
ldebug ("addr:%#010x free:%d till:%d size:%d\n",
addr, free, till, size);
if (till <= copy) {
|
|
620
|
if (0 == dsp->dma_auto) {
|
|
621
622
623
624
625
|
copy = till;
}
}
written = write_audio (addr, size, copy);
|
|
626
|
dsp->left_till_irq -= written;
|
|
627
628
|
AUD_adjust_estimate (free - written);
|
|
629
630
|
if (dsp->left_till_irq <= 0) {
dsp->mixer_regs[0x82] |= dsp->mixer_regs[0x80];
|
|
631
632
|
if (0 == noirq) {
ldebug ("request irq\n");
|
|
633
|
pic_set_irq(sb.irq, 1);
|
|
634
|
}
|
|
635
|
|
|
636
|
if (0 == dsp->dma_auto) {
|
|
637
638
639
640
641
|
control (0);
}
}
ldebug ("pos %5d free %5d size %5d till % 5d copy %5d dma size %5d\n",
|
|
642
643
|
dsp->dma_pos, free, size, dsp->left_till_irq, copy,
dsp->dma_buffer_size);
|
|
644
|
|
|
645
646
|
if (dsp->left_till_irq <= 0) {
dsp->left_till_irq += dsp->dma_buffer_size;
|
|
647
648
|
}
|
|
649
|
return dsp->dma_pos;
|
|
650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
684
685
686
687
|
}
static int magic_of_irq (int irq)
{
switch (irq) {
case 2:
return 1;
case 5:
return 2;
case 7:
return 4;
case 10:
return 8;
default:
log ("bad irq %d\n", irq);
return 2;
}
}
static int irq_of_magic (int magic)
{
switch (magic) {
case 1:
return 2;
case 2:
return 5;
case 4:
return 7;
case 8:
return 10;
default:
log ("bad irq magic %d\n", magic);
return 2;
}
}
void SB16_init (void)
{
|
|
688
|
SB16State *s = &dsp;
|
|
689
690
691
692
|
int i;
static const uint8_t dsp_write_ports[] = {0x6, 0xc};
static const uint8_t dsp_read_ports[] = {0x6, 0xa, 0xc, 0xd, 0xe, 0xf};
|
|
693
694
695
|
s->mixer_regs[0x0e] = ~0;
s->mixer_regs[0x80] = magic_of_irq (sb.irq);
s->mixer_regs[0x81] = 0x20 | (sb.dma << 1);
|
|
696
697
698
699
|
DEREF (irq_of_magic);
for (i = 0x30; i < 0x48; i++) {
|
|
700
|
s->mixer_regs[i] = 0x20;
|
|
701
702
703
|
}
for (i = 0; i < LENOFA (dsp_write_ports); i++) {
|
|
704
|
register_ioport_write (sb.port + dsp_write_ports[i], 1, 1, dsp_write, s);
|
|
705
706
707
|
}
for (i = 0; i < LENOFA (dsp_read_ports); i++) {
|
|
708
|
register_ioport_read (sb.port + dsp_read_ports[i], 1, 1, dsp_read, s);
|
|
709
710
|
}
|
|
711
712
713
714
|
register_ioport_write (sb.port + 0x4, 1, 1, mixer_write_indexb, s);
register_ioport_write (sb.port + 0x4, 1, 2, mixer_write_indexw, s);
register_ioport_read (sb.port + 0x5, 1, 1, mixer_read, s);
register_ioport_write (sb.port + 0x5, 1, 1, mixer_write_datab, s);
|
|
715
|
|
|
716
717
|
DMA_register_channel (sb.hdma, SB_read_DMA, s);
DMA_register_channel (sb.dma, SB_read_DMA, s);
|
|
718
|
}
|