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1
/*
2
 * QEMU Soundblaster 16 emulation
3
 *
4
 * Copyright (c) 2003-2005 Vassili Karpov (malc)
5
 *
6
 * Permission is hereby granted, free of charge, to any person obtaining a copy
7
 * of this software and associated documentation files (the "Software"), to deal
8
 * in the Software without restriction, including without limitation the rights
9
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10
 * copies of the Software, and to permit persons to whom the Software is
11
 * furnished to do so, subject to the following conditions:
12
 *
13
 * The above copyright notice and this permission notice shall be included in
14
 * all copies or substantial portions of the Software.
15
 *
16
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22
 * THE SOFTWARE.
23
 */
24
#include "hw.h"
25
#include "audiodev.h"
26
#include "audio/audio.h"
27
#include "isa.h"
28
#include "qdev.h"
29
#include "qemu-timer.h"
30
#include "host-utils.h"
31

    
32
#define dolog(...) AUD_log ("sb16", __VA_ARGS__)
33

    
34
/* #define DEBUG */
35
/* #define DEBUG_SB16_MOST */
36

    
37
#ifdef DEBUG
38
#define ldebug(...) dolog (__VA_ARGS__)
39
#else
40
#define ldebug(...)
41
#endif
42

    
43
#define IO_READ_PROTO(name)                             \
44
    uint32_t name (void *opaque, uint32_t nport)
45
#define IO_WRITE_PROTO(name)                                    \
46
    void name (void *opaque, uint32_t nport, uint32_t val)
47

    
48
static const char e3[] = "COPYRIGHT (C) CREATIVE TECHNOLOGY LTD, 1992.";
49

    
50
typedef struct SB16State {
51
    ISADevice dev;
52
    QEMUSoundCard card;
53
    qemu_irq pic;
54
    uint32_t irq;
55
    uint32_t dma;
56
    uint32_t hdma;
57
    uint32_t port;
58
    uint32_t ver;
59

    
60
    int in_index;
61
    int out_data_len;
62
    int fmt_stereo;
63
    int fmt_signed;
64
    int fmt_bits;
65
    audfmt_e fmt;
66
    int dma_auto;
67
    int block_size;
68
    int fifo;
69
    int freq;
70
    int time_const;
71
    int speaker;
72
    int needed_bytes;
73
    int cmd;
74
    int use_hdma;
75
    int highspeed;
76
    int can_write;
77

    
78
    int v2x6;
79

    
80
    uint8_t csp_param;
81
    uint8_t csp_value;
82
    uint8_t csp_mode;
83
    uint8_t csp_regs[256];
84
    uint8_t csp_index;
85
    uint8_t csp_reg83[4];
86
    int csp_reg83r;
87
    int csp_reg83w;
88

    
89
    uint8_t in2_data[10];
90
    uint8_t out_data[50];
91
    uint8_t test_reg;
92
    uint8_t last_read_byte;
93
    int nzero;
94

    
95
    int left_till_irq;
96

    
97
    int dma_running;
98
    int bytes_per_second;
99
    int align;
100
    int audio_free;
101
    SWVoiceOut *voice;
102

    
103
    QEMUTimer *aux_ts;
104
    /* mixer state */
105
    int mixer_nreg;
106
    uint8_t mixer_regs[256];
107
} SB16State;
108

    
109
static void SB_audio_callback (void *opaque, int free);
110

    
111
static int magic_of_irq (int irq)
112
{
113
    switch (irq) {
114
    case 5:
115
        return 2;
116
    case 7:
117
        return 4;
118
    case 9:
119
        return 1;
120
    case 10:
121
        return 8;
122
    default:
123
        dolog ("bad irq %d\n", irq);
124
        return 2;
125
    }
126
}
127

    
128
static int irq_of_magic (int magic)
129
{
130
    switch (magic) {
131
    case 1:
132
        return 9;
133
    case 2:
134
        return 5;
135
    case 4:
136
        return 7;
137
    case 8:
138
        return 10;
139
    default:
140
        dolog ("bad irq magic %d\n", magic);
141
        return -1;
142
    }
143
}
144

    
145
#if 0
146
static void log_dsp (SB16State *dsp)
147
{
148
    ldebug ("%s:%s:%d:%s:dmasize=%d:freq=%d:const=%d:speaker=%d\n",
149
            dsp->fmt_stereo ? "Stereo" : "Mono",
150
            dsp->fmt_signed ? "Signed" : "Unsigned",
151
            dsp->fmt_bits,
152
            dsp->dma_auto ? "Auto" : "Single",
153
            dsp->block_size,
154
            dsp->freq,
155
            dsp->time_const,
156
            dsp->speaker);
157
}
158
#endif
159

    
160
static void speaker (SB16State *s, int on)
161
{
162
    s->speaker = on;
163
    /* AUD_enable (s->voice, on); */
164
}
165

    
166
static void control (SB16State *s, int hold)
167
{
168
    int dma = s->use_hdma ? s->hdma : s->dma;
169
    s->dma_running = hold;
170

    
171
    ldebug ("hold %d high %d dma %d\n", hold, s->use_hdma, dma);
172

    
173
    if (hold) {
174
        DMA_hold_DREQ (dma);
175
        AUD_set_active_out (s->voice, 1);
176
    }
177
    else {
178
        DMA_release_DREQ (dma);
179
        AUD_set_active_out (s->voice, 0);
180
    }
181
}
182

    
183
static void aux_timer (void *opaque)
184
{
185
    SB16State *s = opaque;
186
    s->can_write = 1;
187
    qemu_irq_raise (s->pic);
188
}
189

    
190
#define DMA8_AUTO 1
191
#define DMA8_HIGH 2
192

    
193
static void continue_dma8 (SB16State *s)
194
{
195
    if (s->freq > 0) {
196
        struct audsettings as;
197

    
198
        s->audio_free = 0;
199

    
200
        as.freq = s->freq;
201
        as.nchannels = 1 << s->fmt_stereo;
202
        as.fmt = s->fmt;
203
        as.endianness = 0;
204

    
205
        s->voice = AUD_open_out (
206
            &s->card,
207
            s->voice,
208
            "sb16",
209
            s,
210
            SB_audio_callback,
211
            &as
212
            );
213
    }
214

    
215
    control (s, 1);
216
}
217

    
218
static void dma_cmd8 (SB16State *s, int mask, int dma_len)
219
{
220
    s->fmt = AUD_FMT_U8;
221
    s->use_hdma = 0;
222
    s->fmt_bits = 8;
223
    s->fmt_signed = 0;
224
    s->fmt_stereo = (s->mixer_regs[0x0e] & 2) != 0;
225
    if (-1 == s->time_const) {
226
        if (s->freq <= 0)
227
            s->freq = 11025;
228
    }
229
    else {
230
        int tmp = (256 - s->time_const);
231
        s->freq = (1000000 + (tmp / 2)) / tmp;
232
    }
233

    
234
    if (dma_len != -1) {
235
        s->block_size = dma_len << s->fmt_stereo;
236
    }
237
    else {
238
        /* This is apparently the only way to make both Act1/PL
239
           and SecondReality/FC work
240

241
           Act1 sets block size via command 0x48 and it's an odd number
242
           SR does the same with even number
243
           Both use stereo, and Creatives own documentation states that
244
           0x48 sets block size in bytes less one.. go figure */
245
        s->block_size &= ~s->fmt_stereo;
246
    }
247

    
248
    s->freq >>= s->fmt_stereo;
249
    s->left_till_irq = s->block_size;
250
    s->bytes_per_second = (s->freq << s->fmt_stereo);
251
    /* s->highspeed = (mask & DMA8_HIGH) != 0; */
252
    s->dma_auto = (mask & DMA8_AUTO) != 0;
253
    s->align = (1 << s->fmt_stereo) - 1;
254

    
255
    if (s->block_size & s->align) {
256
        dolog ("warning: misaligned block size %d, alignment %d\n",
257
               s->block_size, s->align + 1);
258
    }
259

    
260
    ldebug ("freq %d, stereo %d, sign %d, bits %d, "
261
            "dma %d, auto %d, fifo %d, high %d\n",
262
            s->freq, s->fmt_stereo, s->fmt_signed, s->fmt_bits,
263
            s->block_size, s->dma_auto, s->fifo, s->highspeed);
264

    
265
    continue_dma8 (s);
266
    speaker (s, 1);
267
}
268

    
269
static void dma_cmd (SB16State *s, uint8_t cmd, uint8_t d0, int dma_len)
270
{
271
    s->use_hdma = cmd < 0xc0;
272
    s->fifo = (cmd >> 1) & 1;
273
    s->dma_auto = (cmd >> 2) & 1;
274
    s->fmt_signed = (d0 >> 4) & 1;
275
    s->fmt_stereo = (d0 >> 5) & 1;
276

    
277
    switch (cmd >> 4) {
278
    case 11:
279
        s->fmt_bits = 16;
280
        break;
281

    
282
    case 12:
283
        s->fmt_bits = 8;
284
        break;
285
    }
286

    
287
    if (-1 != s->time_const) {
288
#if 1
289
        int tmp = 256 - s->time_const;
290
        s->freq = (1000000 + (tmp / 2)) / tmp;
291
#else
292
        /* s->freq = 1000000 / ((255 - s->time_const) << s->fmt_stereo); */
293
        s->freq = 1000000 / ((255 - s->time_const));
294
#endif
295
        s->time_const = -1;
296
    }
297

    
298
    s->block_size = dma_len + 1;
299
    s->block_size <<= (s->fmt_bits == 16);
300
    if (!s->dma_auto) {
301
        /* It is clear that for DOOM and auto-init this value
302
           shouldn't take stereo into account, while Miles Sound Systems
303
           setsound.exe with single transfer mode wouldn't work without it
304
           wonders of SB16 yet again */
305
        s->block_size <<= s->fmt_stereo;
306
    }
307

    
308
    ldebug ("freq %d, stereo %d, sign %d, bits %d, "
309
            "dma %d, auto %d, fifo %d, high %d\n",
310
            s->freq, s->fmt_stereo, s->fmt_signed, s->fmt_bits,
311
            s->block_size, s->dma_auto, s->fifo, s->highspeed);
312

    
313
    if (16 == s->fmt_bits) {
314
        if (s->fmt_signed) {
315
            s->fmt = AUD_FMT_S16;
316
        }
317
        else {
318
            s->fmt = AUD_FMT_U16;
319
        }
320
    }
321
    else {
322
        if (s->fmt_signed) {
323
            s->fmt = AUD_FMT_S8;
324
        }
325
        else {
326
            s->fmt = AUD_FMT_U8;
327
        }
328
    }
329

    
330
    s->left_till_irq = s->block_size;
331

    
332
    s->bytes_per_second = (s->freq << s->fmt_stereo) << (s->fmt_bits == 16);
333
    s->highspeed = 0;
334
    s->align = (1 << (s->fmt_stereo + (s->fmt_bits == 16))) - 1;
335
    if (s->block_size & s->align) {
336
        dolog ("warning: misaligned block size %d, alignment %d\n",
337
               s->block_size, s->align + 1);
338
    }
339

    
340
    if (s->freq) {
341
        struct audsettings as;
342

    
343
        s->audio_free = 0;
344

    
345
        as.freq = s->freq;
346
        as.nchannels = 1 << s->fmt_stereo;
347
        as.fmt = s->fmt;
348
        as.endianness = 0;
349

    
350
        s->voice = AUD_open_out (
351
            &s->card,
352
            s->voice,
353
            "sb16",
354
            s,
355
            SB_audio_callback,
356
            &as
357
            );
358
    }
359

    
360
    control (s, 1);
361
    speaker (s, 1);
362
}
363

    
364
static inline void dsp_out_data (SB16State *s, uint8_t val)
365
{
366
    ldebug ("outdata %#x\n", val);
367
    if ((size_t) s->out_data_len < sizeof (s->out_data)) {
368
        s->out_data[s->out_data_len++] = val;
369
    }
370
}
371

    
372
static inline uint8_t dsp_get_data (SB16State *s)
373
{
374
    if (s->in_index) {
375
        return s->in2_data[--s->in_index];
376
    }
377
    else {
378
        dolog ("buffer underflow\n");
379
        return 0;
380
    }
381
}
382

    
383
static void command (SB16State *s, uint8_t cmd)
384
{
385
    ldebug ("command %#x\n", cmd);
386

    
387
    if (cmd > 0xaf && cmd < 0xd0) {
388
        if (cmd & 8) {
389
            dolog ("ADC not yet supported (command %#x)\n", cmd);
390
        }
391

    
392
        switch (cmd >> 4) {
393
        case 11:
394
        case 12:
395
            break;
396
        default:
397
            dolog ("%#x wrong bits\n", cmd);
398
        }
399
        s->needed_bytes = 3;
400
    }
401
    else {
402
        s->needed_bytes = 0;
403

    
404
        switch (cmd) {
405
        case 0x03:
406
            dsp_out_data (s, 0x10); /* s->csp_param); */
407
            goto warn;
408

    
409
        case 0x04:
410
            s->needed_bytes = 1;
411
            goto warn;
412

    
413
        case 0x05:
414
            s->needed_bytes = 2;
415
            goto warn;
416

    
417
        case 0x08:
418
            /* __asm__ ("int3"); */
419
            goto warn;
420

    
421
        case 0x0e:
422
            s->needed_bytes = 2;
423
            goto warn;
424

    
425
        case 0x09:
426
            dsp_out_data (s, 0xf8);
427
            goto warn;
428

    
429
        case 0x0f:
430
            s->needed_bytes = 1;
431
            goto warn;
432

    
433
        case 0x10:
434
            s->needed_bytes = 1;
435
            goto warn;
436

    
437
        case 0x14:
438
            s->needed_bytes = 2;
439
            s->block_size = 0;
440
            break;
441

    
442
        case 0x1c:              /* Auto-Initialize DMA DAC, 8-bit */
443
            dma_cmd8 (s, DMA8_AUTO, -1);
444
            break;
445

    
446
        case 0x20:              /* Direct ADC, Juice/PL */
447
            dsp_out_data (s, 0xff);
448
            goto warn;
449

    
450
        case 0x35:
451
            dolog ("0x35 - MIDI command not implemented\n");
452
            break;
453

    
454
        case 0x40:
455
            s->freq = -1;
456
            s->time_const = -1;
457
            s->needed_bytes = 1;
458
            break;
459

    
460
        case 0x41:
461
            s->freq = -1;
462
            s->time_const = -1;
463
            s->needed_bytes = 2;
464
            break;
465

    
466
        case 0x42:
467
            s->freq = -1;
468
            s->time_const = -1;
469
            s->needed_bytes = 2;
470
            goto warn;
471

    
472
        case 0x45:
473
            dsp_out_data (s, 0xaa);
474
            goto warn;
475

    
476
        case 0x47:                /* Continue Auto-Initialize DMA 16bit */
477
            break;
478

    
479
        case 0x48:
480
            s->needed_bytes = 2;
481
            break;
482

    
483
        case 0x74:
484
            s->needed_bytes = 2; /* DMA DAC, 4-bit ADPCM */
485
            dolog ("0x75 - DMA DAC, 4-bit ADPCM not implemented\n");
486
            break;
487

    
488
        case 0x75:              /* DMA DAC, 4-bit ADPCM Reference */
489
            s->needed_bytes = 2;
490
            dolog ("0x74 - DMA DAC, 4-bit ADPCM Reference not implemented\n");
491
            break;
492

    
493
        case 0x76:              /* DMA DAC, 2.6-bit ADPCM */
494
            s->needed_bytes = 2;
495
            dolog ("0x74 - DMA DAC, 2.6-bit ADPCM not implemented\n");
496
            break;
497

    
498
        case 0x77:              /* DMA DAC, 2.6-bit ADPCM Reference */
499
            s->needed_bytes = 2;
500
            dolog ("0x74 - DMA DAC, 2.6-bit ADPCM Reference not implemented\n");
501
            break;
502

    
503
        case 0x7d:
504
            dolog ("0x7d - Autio-Initialize DMA DAC, 4-bit ADPCM Reference\n");
505
            dolog ("not implemented\n");
506
            break;
507

    
508
        case 0x7f:
509
            dolog (
510
                "0x7d - Autio-Initialize DMA DAC, 2.6-bit ADPCM Reference\n"
511
                );
512
            dolog ("not implemented\n");
513
            break;
514

    
515
        case 0x80:
516
            s->needed_bytes = 2;
517
            break;
518

    
519
        case 0x90:
520
        case 0x91:
521
            dma_cmd8 (s, ((cmd & 1) == 0) | DMA8_HIGH, -1);
522
            break;
523

    
524
        case 0xd0:              /* halt DMA operation. 8bit */
525
            control (s, 0);
526
            break;
527

    
528
        case 0xd1:              /* speaker on */
529
            speaker (s, 1);
530
            break;
531

    
532
        case 0xd3:              /* speaker off */
533
            speaker (s, 0);
534
            break;
535

    
536
        case 0xd4:              /* continue DMA operation. 8bit */
537
            /* KQ6 (or maybe Sierras audblst.drv in general) resets
538
               the frequency between halt/continue */
539
            continue_dma8 (s);
540
            break;
541

    
542
        case 0xd5:              /* halt DMA operation. 16bit */
543
            control (s, 0);
544
            break;
545

    
546
        case 0xd6:              /* continue DMA operation. 16bit */
547
            control (s, 1);
548
            break;
549

    
550
        case 0xd9:              /* exit auto-init DMA after this block. 16bit */
551
            s->dma_auto = 0;
552
            break;
553

    
554
        case 0xda:              /* exit auto-init DMA after this block. 8bit */
555
            s->dma_auto = 0;
556
            break;
557

    
558
        case 0xe0:              /* DSP identification */
559
            s->needed_bytes = 1;
560
            break;
561

    
562
        case 0xe1:
563
            dsp_out_data (s, s->ver & 0xff);
564
            dsp_out_data (s, s->ver >> 8);
565
            break;
566

    
567
        case 0xe2:
568
            s->needed_bytes = 1;
569
            goto warn;
570

    
571
        case 0xe3:
572
            {
573
                int i;
574
                for (i = sizeof (e3) - 1; i >= 0; --i)
575
                    dsp_out_data (s, e3[i]);
576
            }
577
            break;
578

    
579
        case 0xe4:              /* write test reg */
580
            s->needed_bytes = 1;
581
            break;
582

    
583
        case 0xe7:
584
            dolog ("Attempt to probe for ESS (0xe7)?\n");
585
            break;
586

    
587
        case 0xe8:              /* read test reg */
588
            dsp_out_data (s, s->test_reg);
589
            break;
590

    
591
        case 0xf2:
592
        case 0xf3:
593
            dsp_out_data (s, 0xaa);
594
            s->mixer_regs[0x82] |= (cmd == 0xf2) ? 1 : 2;
595
            qemu_irq_raise (s->pic);
596
            break;
597

    
598
        case 0xf9:
599
            s->needed_bytes = 1;
600
            goto warn;
601

    
602
        case 0xfa:
603
            dsp_out_data (s, 0);
604
            goto warn;
605

    
606
        case 0xfc:              /* FIXME */
607
            dsp_out_data (s, 0);
608
            goto warn;
609

    
610
        default:
611
            dolog ("Unrecognized command %#x\n", cmd);
612
            break;
613
        }
614
    }
615

    
616
    if (!s->needed_bytes) {
617
        ldebug ("\n");
618
    }
619

    
620
 exit:
621
    if (!s->needed_bytes) {
622
        s->cmd = -1;
623
    }
624
    else {
625
        s->cmd = cmd;
626
    }
627
    return;
628

    
629
 warn:
630
    dolog ("warning: command %#x,%d is not truly understood yet\n",
631
           cmd, s->needed_bytes);
632
    goto exit;
633

    
634
}
635

    
636
static uint16_t dsp_get_lohi (SB16State *s)
637
{
638
    uint8_t hi = dsp_get_data (s);
639
    uint8_t lo = dsp_get_data (s);
640
    return (hi << 8) | lo;
641
}
642

    
643
static uint16_t dsp_get_hilo (SB16State *s)
644
{
645
    uint8_t lo = dsp_get_data (s);
646
    uint8_t hi = dsp_get_data (s);
647
    return (hi << 8) | lo;
648
}
649

    
650
static void complete (SB16State *s)
651
{
652
    int d0, d1, d2;
653
    ldebug ("complete command %#x, in_index %d, needed_bytes %d\n",
654
            s->cmd, s->in_index, s->needed_bytes);
655

    
656
    if (s->cmd > 0xaf && s->cmd < 0xd0) {
657
        d2 = dsp_get_data (s);
658
        d1 = dsp_get_data (s);
659
        d0 = dsp_get_data (s);
660

    
661
        if (s->cmd & 8) {
662
            dolog ("ADC params cmd = %#x d0 = %d, d1 = %d, d2 = %d\n",
663
                   s->cmd, d0, d1, d2);
664
        }
665
        else {
666
            ldebug ("cmd = %#x d0 = %d, d1 = %d, d2 = %d\n",
667
                    s->cmd, d0, d1, d2);
668
            dma_cmd (s, s->cmd, d0, d1 + (d2 << 8));
669
        }
670
    }
671
    else {
672
        switch (s->cmd) {
673
        case 0x04:
674
            s->csp_mode = dsp_get_data (s);
675
            s->csp_reg83r = 0;
676
            s->csp_reg83w = 0;
677
            ldebug ("CSP command 0x04: mode=%#x\n", s->csp_mode);
678
            break;
679

    
680
        case 0x05:
681
            s->csp_param = dsp_get_data (s);
682
            s->csp_value = dsp_get_data (s);
683
            ldebug ("CSP command 0x05: param=%#x value=%#x\n",
684
                    s->csp_param,
685
                    s->csp_value);
686
            break;
687

    
688
        case 0x0e:
689
            d0 = dsp_get_data (s);
690
            d1 = dsp_get_data (s);
691
            ldebug ("write CSP register %d <- %#x\n", d1, d0);
692
            if (d1 == 0x83) {
693
                ldebug ("0x83[%d] <- %#x\n", s->csp_reg83r, d0);
694
                s->csp_reg83[s->csp_reg83r % 4] = d0;
695
                s->csp_reg83r += 1;
696
            }
697
            else {
698
                s->csp_regs[d1] = d0;
699
            }
700
            break;
701

    
702
        case 0x0f:
703
            d0 = dsp_get_data (s);
704
            ldebug ("read CSP register %#x -> %#x, mode=%#x\n",
705
                    d0, s->csp_regs[d0], s->csp_mode);
706
            if (d0 == 0x83) {
707
                ldebug ("0x83[%d] -> %#x\n",
708
                        s->csp_reg83w,
709
                        s->csp_reg83[s->csp_reg83w % 4]);
710
                dsp_out_data (s, s->csp_reg83[s->csp_reg83w % 4]);
711
                s->csp_reg83w += 1;
712
            }
713
            else {
714
                dsp_out_data (s, s->csp_regs[d0]);
715
            }
716
            break;
717

    
718
        case 0x10:
719
            d0 = dsp_get_data (s);
720
            dolog ("cmd 0x10 d0=%#x\n", d0);
721
            break;
722

    
723
        case 0x14:
724
            dma_cmd8 (s, 0, dsp_get_lohi (s) + 1);
725
            break;
726

    
727
        case 0x40:
728
            s->time_const = dsp_get_data (s);
729
            ldebug ("set time const %d\n", s->time_const);
730
            break;
731

    
732
        case 0x42:              /* FT2 sets output freq with this, go figure */
733
#if 0
734
            dolog ("cmd 0x42 might not do what it think it should\n");
735
#endif
736
        case 0x41:
737
            s->freq = dsp_get_hilo (s);
738
            ldebug ("set freq %d\n", s->freq);
739
            break;
740

    
741
        case 0x48:
742
            s->block_size = dsp_get_lohi (s) + 1;
743
            ldebug ("set dma block len %d\n", s->block_size);
744
            break;
745

    
746
        case 0x74:
747
        case 0x75:
748
        case 0x76:
749
        case 0x77:
750
            /* ADPCM stuff, ignore */
751
            break;
752

    
753
        case 0x80:
754
            {
755
                int freq, samples, bytes;
756
                int64_t ticks;
757

    
758
                freq = s->freq > 0 ? s->freq : 11025;
759
                samples = dsp_get_lohi (s) + 1;
760
                bytes = samples << s->fmt_stereo << (s->fmt_bits == 16);
761
                ticks = muldiv64 (bytes, get_ticks_per_sec (), freq);
762
                if (ticks < get_ticks_per_sec () / 1024) {
763
                    qemu_irq_raise (s->pic);
764
                }
765
                else {
766
                    if (s->aux_ts) {
767
                        qemu_mod_timer (
768
                            s->aux_ts,
769
                            qemu_get_clock (vm_clock) + ticks
770
                            );
771
                    }
772
                }
773
                ldebug ("mix silence %d %d %" PRId64 "\n", samples, bytes, ticks);
774
            }
775
            break;
776

    
777
        case 0xe0:
778
            d0 = dsp_get_data (s);
779
            s->out_data_len = 0;
780
            ldebug ("E0 data = %#x\n", d0);
781
            dsp_out_data (s, ~d0);
782
            break;
783

    
784
        case 0xe2:
785
            d0 = dsp_get_data (s);
786
            ldebug ("E2 = %#x\n", d0);
787
            break;
788

    
789
        case 0xe4:
790
            s->test_reg = dsp_get_data (s);
791
            break;
792

    
793
        case 0xf9:
794
            d0 = dsp_get_data (s);
795
            ldebug ("command 0xf9 with %#x\n", d0);
796
            switch (d0) {
797
            case 0x0e:
798
                dsp_out_data (s, 0xff);
799
                break;
800

    
801
            case 0x0f:
802
                dsp_out_data (s, 0x07);
803
                break;
804

    
805
            case 0x37:
806
                dsp_out_data (s, 0x38);
807
                break;
808

    
809
            default:
810
                dsp_out_data (s, 0x00);
811
                break;
812
            }
813
            break;
814

    
815
        default:
816
            dolog ("complete: unrecognized command %#x\n", s->cmd);
817
            return;
818
        }
819
    }
820

    
821
    ldebug ("\n");
822
    s->cmd = -1;
823
    return;
824
}
825

    
826
static void legacy_reset (SB16State *s)
827
{
828
    struct audsettings as;
829

    
830
    s->freq = 11025;
831
    s->fmt_signed = 0;
832
    s->fmt_bits = 8;
833
    s->fmt_stereo = 0;
834

    
835
    as.freq = s->freq;
836
    as.nchannels = 1;
837
    as.fmt = AUD_FMT_U8;
838
    as.endianness = 0;
839

    
840
    s->voice = AUD_open_out (
841
        &s->card,
842
        s->voice,
843
        "sb16",
844
        s,
845
        SB_audio_callback,
846
        &as
847
        );
848

    
849
    /* Not sure about that... */
850
    /* AUD_set_active_out (s->voice, 1); */
851
}
852

    
853
static void reset (SB16State *s)
854
{
855
    qemu_irq_lower (s->pic);
856
    if (s->dma_auto) {
857
        qemu_irq_raise (s->pic);
858
        qemu_irq_lower (s->pic);
859
    }
860

    
861
    s->mixer_regs[0x82] = 0;
862
    s->dma_auto = 0;
863
    s->in_index = 0;
864
    s->out_data_len = 0;
865
    s->left_till_irq = 0;
866
    s->needed_bytes = 0;
867
    s->block_size = -1;
868
    s->nzero = 0;
869
    s->highspeed = 0;
870
    s->v2x6 = 0;
871
    s->cmd = -1;
872

    
873
    dsp_out_data (s, 0xaa);
874
    speaker (s, 0);
875
    control (s, 0);
876
    legacy_reset (s);
877
}
878

    
879
static IO_WRITE_PROTO (dsp_write)
880
{
881
    SB16State *s = opaque;
882
    int iport;
883

    
884
    iport = nport - s->port;
885

    
886
    ldebug ("write %#x <- %#x\n", nport, val);
887
    switch (iport) {
888
    case 0x06:
889
        switch (val) {
890
        case 0x00:
891
            if (s->v2x6 == 1) {
892
                reset (s);
893
            }
894
            s->v2x6 = 0;
895
            break;
896

    
897
        case 0x01:
898
        case 0x03:              /* FreeBSD kludge */
899
            s->v2x6 = 1;
900
            break;
901

    
902
        case 0xc6:
903
            s->v2x6 = 0;        /* Prince of Persia, csp.sys, diagnose.exe */
904
            break;
905

    
906
        case 0xb8:              /* Panic */
907
            reset (s);
908
            break;
909

    
910
        case 0x39:
911
            dsp_out_data (s, 0x38);
912
            reset (s);
913
            s->v2x6 = 0x39;
914
            break;
915

    
916
        default:
917
            s->v2x6 = val;
918
            break;
919
        }
920
        break;
921

    
922
    case 0x0c:                  /* write data or command | write status */
923
/*         if (s->highspeed) */
924
/*             break; */
925

    
926
        if (0 == s->needed_bytes) {
927
            command (s, val);
928
#if 0
929
            if (0 == s->needed_bytes) {
930
                log_dsp (s);
931
            }
932
#endif
933
        }
934
        else {
935
            if (s->in_index == sizeof (s->in2_data)) {
936
                dolog ("in data overrun\n");
937
            }
938
            else {
939
                s->in2_data[s->in_index++] = val;
940
                if (s->in_index == s->needed_bytes) {
941
                    s->needed_bytes = 0;
942
                    complete (s);
943
#if 0
944
                    log_dsp (s);
945
#endif
946
                }
947
            }
948
        }
949
        break;
950

    
951
    default:
952
        ldebug ("(nport=%#x, val=%#x)\n", nport, val);
953
        break;
954
    }
955
}
956

    
957
static IO_READ_PROTO (dsp_read)
958
{
959
    SB16State *s = opaque;
960
    int iport, retval, ack = 0;
961

    
962
    iport = nport - s->port;
963

    
964
    switch (iport) {
965
    case 0x06:                  /* reset */
966
        retval = 0xff;
967
        break;
968

    
969
    case 0x0a:                  /* read data */
970
        if (s->out_data_len) {
971
            retval = s->out_data[--s->out_data_len];
972
            s->last_read_byte = retval;
973
        }
974
        else {
975
            if (s->cmd != -1) {
976
                dolog ("empty output buffer for command %#x\n",
977
                       s->cmd);
978
            }
979
            retval = s->last_read_byte;
980
            /* goto error; */
981
        }
982
        break;
983

    
984
    case 0x0c:                  /* 0 can write */
985
        retval = s->can_write ? 0 : 0x80;
986
        break;
987

    
988
    case 0x0d:                  /* timer interrupt clear */
989
        /* dolog ("timer interrupt clear\n"); */
990
        retval = 0;
991
        break;
992

    
993
    case 0x0e:                  /* data available status | irq 8 ack */
994
        retval = (!s->out_data_len || s->highspeed) ? 0 : 0x80;
995
        if (s->mixer_regs[0x82] & 1) {
996
            ack = 1;
997
            s->mixer_regs[0x82] &= 1;
998
            qemu_irq_lower (s->pic);
999
        }
1000
        break;
1001

    
1002
    case 0x0f:                  /* irq 16 ack */
1003
        retval = 0xff;
1004
        if (s->mixer_regs[0x82] & 2) {
1005
            ack = 1;
1006
            s->mixer_regs[0x82] &= 2;
1007
            qemu_irq_lower (s->pic);
1008
        }
1009
        break;
1010

    
1011
    default:
1012
        goto error;
1013
    }
1014

    
1015
    if (!ack) {
1016
        ldebug ("read %#x -> %#x\n", nport, retval);
1017
    }
1018

    
1019
    return retval;
1020

    
1021
 error:
1022
    dolog ("warning: dsp_read %#x error\n", nport);
1023
    return 0xff;
1024
}
1025

    
1026
static void reset_mixer (SB16State *s)
1027
{
1028
    int i;
1029

    
1030
    memset (s->mixer_regs, 0xff, 0x7f);
1031
    memset (s->mixer_regs + 0x83, 0xff, sizeof (s->mixer_regs) - 0x83);
1032

    
1033
    s->mixer_regs[0x02] = 4;    /* master volume 3bits */
1034
    s->mixer_regs[0x06] = 4;    /* MIDI volume 3bits */
1035
    s->mixer_regs[0x08] = 0;    /* CD volume 3bits */
1036
    s->mixer_regs[0x0a] = 0;    /* voice volume 2bits */
1037

    
1038
    /* d5=input filt, d3=lowpass filt, d1,d2=input source */
1039
    s->mixer_regs[0x0c] = 0;
1040

    
1041
    /* d5=output filt, d1=stereo switch */
1042
    s->mixer_regs[0x0e] = 0;
1043

    
1044
    /* voice volume L d5,d7, R d1,d3 */
1045
    s->mixer_regs[0x04] = (4 << 5) | (4 << 1);
1046
    /* master ... */
1047
    s->mixer_regs[0x22] = (4 << 5) | (4 << 1);
1048
    /* MIDI ... */
1049
    s->mixer_regs[0x26] = (4 << 5) | (4 << 1);
1050

    
1051
    for (i = 0x30; i < 0x48; i++) {
1052
        s->mixer_regs[i] = 0x20;
1053
    }
1054
}
1055

    
1056
static IO_WRITE_PROTO (mixer_write_indexb)
1057
{
1058
    SB16State *s = opaque;
1059
    (void) nport;
1060
    s->mixer_nreg = val;
1061
}
1062

    
1063
static IO_WRITE_PROTO (mixer_write_datab)
1064
{
1065
    SB16State *s = opaque;
1066

    
1067
    (void) nport;
1068
    ldebug ("mixer_write [%#x] <- %#x\n", s->mixer_nreg, val);
1069

    
1070
    switch (s->mixer_nreg) {
1071
    case 0x00:
1072
        reset_mixer (s);
1073
        break;
1074

    
1075
    case 0x80:
1076
        {
1077
            int irq = irq_of_magic (val);
1078
            ldebug ("setting irq to %d (val=%#x)\n", irq, val);
1079
            if (irq > 0) {
1080
                s->irq = irq;
1081
            }
1082
        }
1083
        break;
1084

    
1085
    case 0x81:
1086
        {
1087
            int dma, hdma;
1088

    
1089
            dma = ctz32 (val & 0xf);
1090
            hdma = ctz32 (val & 0xf0);
1091
            if (dma != s->dma || hdma != s->hdma) {
1092
                dolog (
1093
                    "attempt to change DMA "
1094
                    "8bit %d(%d), 16bit %d(%d) (val=%#x)\n",
1095
                    dma, s->dma, hdma, s->hdma, val);
1096
            }
1097
#if 0
1098
            s->dma = dma;
1099
            s->hdma = hdma;
1100
#endif
1101
        }
1102
        break;
1103

    
1104
    case 0x82:
1105
        dolog ("attempt to write into IRQ status register (val=%#x)\n",
1106
               val);
1107
        return;
1108

    
1109
    default:
1110
        if (s->mixer_nreg >= 0x80) {
1111
            ldebug ("attempt to write mixer[%#x] <- %#x\n", s->mixer_nreg, val);
1112
        }
1113
        break;
1114
    }
1115

    
1116
    s->mixer_regs[s->mixer_nreg] = val;
1117
}
1118

    
1119
static IO_WRITE_PROTO (mixer_write_indexw)
1120
{
1121
    mixer_write_indexb (opaque, nport, val & 0xff);
1122
    mixer_write_datab (opaque, nport, (val >> 8) & 0xff);
1123
}
1124

    
1125
static IO_READ_PROTO (mixer_read)
1126
{
1127
    SB16State *s = opaque;
1128

    
1129
    (void) nport;
1130
#ifndef DEBUG_SB16_MOST
1131
    if (s->mixer_nreg != 0x82) {
1132
        ldebug ("mixer_read[%#x] -> %#x\n",
1133
                s->mixer_nreg, s->mixer_regs[s->mixer_nreg]);
1134
    }
1135
#else
1136
    ldebug ("mixer_read[%#x] -> %#x\n",
1137
            s->mixer_nreg, s->mixer_regs[s->mixer_nreg]);
1138
#endif
1139
    return s->mixer_regs[s->mixer_nreg];
1140
}
1141

    
1142
static int write_audio (SB16State *s, int nchan, int dma_pos,
1143
                        int dma_len, int len)
1144
{
1145
    int temp, net;
1146
    uint8_t tmpbuf[4096];
1147

    
1148
    temp = len;
1149
    net = 0;
1150

    
1151
    while (temp) {
1152
        int left = dma_len - dma_pos;
1153
        int copied;
1154
        size_t to_copy;
1155

    
1156
        to_copy = audio_MIN (temp, left);
1157
        if (to_copy > sizeof (tmpbuf)) {
1158
            to_copy = sizeof (tmpbuf);
1159
        }
1160

    
1161
        copied = DMA_read_memory (nchan, tmpbuf, dma_pos, to_copy);
1162
        copied = AUD_write (s->voice, tmpbuf, copied);
1163

    
1164
        temp -= copied;
1165
        dma_pos = (dma_pos + copied) % dma_len;
1166
        net += copied;
1167

    
1168
        if (!copied) {
1169
            break;
1170
        }
1171
    }
1172

    
1173
    return net;
1174
}
1175

    
1176
static int SB_read_DMA (void *opaque, int nchan, int dma_pos, int dma_len)
1177
{
1178
    SB16State *s = opaque;
1179
    int till, copy, written, free;
1180

    
1181
    if (s->block_size <= 0) {
1182
        dolog ("invalid block size=%d nchan=%d dma_pos=%d dma_len=%d\n",
1183
               s->block_size, nchan, dma_pos, dma_len);
1184
        return dma_pos;
1185
    }
1186

    
1187
    if (s->left_till_irq < 0) {
1188
        s->left_till_irq = s->block_size;
1189
    }
1190

    
1191
    if (s->voice) {
1192
        free = s->audio_free & ~s->align;
1193
        if ((free <= 0) || !dma_len) {
1194
            return dma_pos;
1195
        }
1196
    }
1197
    else {
1198
        free = dma_len;
1199
    }
1200

    
1201
    copy = free;
1202
    till = s->left_till_irq;
1203

    
1204
#ifdef DEBUG_SB16_MOST
1205
    dolog ("pos:%06d %d till:%d len:%d\n",
1206
           dma_pos, free, till, dma_len);
1207
#endif
1208

    
1209
    if (till <= copy) {
1210
        if (0 == s->dma_auto) {
1211
            copy = till;
1212
        }
1213
    }
1214

    
1215
    written = write_audio (s, nchan, dma_pos, dma_len, copy);
1216
    dma_pos = (dma_pos + written) % dma_len;
1217
    s->left_till_irq -= written;
1218

    
1219
    if (s->left_till_irq <= 0) {
1220
        s->mixer_regs[0x82] |= (nchan & 4) ? 2 : 1;
1221
        qemu_irq_raise (s->pic);
1222
        if (0 == s->dma_auto) {
1223
            control (s, 0);
1224
            speaker (s, 0);
1225
        }
1226
    }
1227

    
1228
#ifdef DEBUG_SB16_MOST
1229
    ldebug ("pos %5d free %5d size %5d till % 5d copy %5d written %5d size %5d\n",
1230
            dma_pos, free, dma_len, s->left_till_irq, copy, written,
1231
            s->block_size);
1232
#endif
1233

    
1234
    while (s->left_till_irq <= 0) {
1235
        s->left_till_irq = s->block_size + s->left_till_irq;
1236
    }
1237

    
1238
    return dma_pos;
1239
}
1240

    
1241
static void SB_audio_callback (void *opaque, int free)
1242
{
1243
    SB16State *s = opaque;
1244
    s->audio_free = free;
1245
}
1246

    
1247
static void SB_save (QEMUFile *f, void *opaque)
1248
{
1249
    SB16State *s = opaque;
1250

    
1251
    qemu_put_be32 (f, s->irq);
1252
    qemu_put_be32 (f, s->dma);
1253
    qemu_put_be32 (f, s->hdma);
1254
    qemu_put_be32 (f, s->port);
1255
    qemu_put_be32 (f, s->ver);
1256
    qemu_put_be32 (f, s->in_index);
1257
    qemu_put_be32 (f, s->out_data_len);
1258
    qemu_put_be32 (f, s->fmt_stereo);
1259
    qemu_put_be32 (f, s->fmt_signed);
1260
    qemu_put_be32 (f, s->fmt_bits);
1261
    qemu_put_be32s (f, &s->fmt);
1262
    qemu_put_be32 (f, s->dma_auto);
1263
    qemu_put_be32 (f, s->block_size);
1264
    qemu_put_be32 (f, s->fifo);
1265
    qemu_put_be32 (f, s->freq);
1266
    qemu_put_be32 (f, s->time_const);
1267
    qemu_put_be32 (f, s->speaker);
1268
    qemu_put_be32 (f, s->needed_bytes);
1269
    qemu_put_be32 (f, s->cmd);
1270
    qemu_put_be32 (f, s->use_hdma);
1271
    qemu_put_be32 (f, s->highspeed);
1272
    qemu_put_be32 (f, s->can_write);
1273
    qemu_put_be32 (f, s->v2x6);
1274

    
1275
    qemu_put_8s (f, &s->csp_param);
1276
    qemu_put_8s (f, &s->csp_value);
1277
    qemu_put_8s (f, &s->csp_mode);
1278
    qemu_put_8s (f, &s->csp_param);
1279
    qemu_put_buffer (f, s->csp_regs, 256);
1280
    qemu_put_8s (f, &s->csp_index);
1281
    qemu_put_buffer (f, s->csp_reg83, 4);
1282
    qemu_put_be32 (f, s->csp_reg83r);
1283
    qemu_put_be32 (f, s->csp_reg83w);
1284

    
1285
    qemu_put_buffer (f, s->in2_data, sizeof (s->in2_data));
1286
    qemu_put_buffer (f, s->out_data, sizeof (s->out_data));
1287
    qemu_put_8s (f, &s->test_reg);
1288
    qemu_put_8s (f, &s->last_read_byte);
1289

    
1290
    qemu_put_be32 (f, s->nzero);
1291
    qemu_put_be32 (f, s->left_till_irq);
1292
    qemu_put_be32 (f, s->dma_running);
1293
    qemu_put_be32 (f, s->bytes_per_second);
1294
    qemu_put_be32 (f, s->align);
1295

    
1296
    qemu_put_be32 (f, s->mixer_nreg);
1297
    qemu_put_buffer (f, s->mixer_regs, 256);
1298
}
1299

    
1300
static int SB_load (QEMUFile *f, void *opaque, int version_id)
1301
{
1302
    SB16State *s = opaque;
1303

    
1304
    if (version_id != 1) {
1305
        return -EINVAL;
1306
    }
1307

    
1308
    s->irq=qemu_get_be32 (f);
1309
    s->dma=qemu_get_be32 (f);
1310
    s->hdma=qemu_get_be32 (f);
1311
    s->port=qemu_get_be32 (f);
1312
    s->ver=qemu_get_be32 (f);
1313
    s->in_index=qemu_get_be32 (f);
1314
    s->out_data_len=qemu_get_be32 (f);
1315
    s->fmt_stereo=qemu_get_be32 (f);
1316
    s->fmt_signed=qemu_get_be32 (f);
1317
    s->fmt_bits=qemu_get_be32 (f);
1318
    qemu_get_be32s (f, &s->fmt);
1319
    s->dma_auto=qemu_get_be32 (f);
1320
    s->block_size=qemu_get_be32 (f);
1321
    s->fifo=qemu_get_be32 (f);
1322
    s->freq=qemu_get_be32 (f);
1323
    s->time_const=qemu_get_be32 (f);
1324
    s->speaker=qemu_get_be32 (f);
1325
    s->needed_bytes=qemu_get_be32 (f);
1326
    s->cmd=qemu_get_be32 (f);
1327
    s->use_hdma=qemu_get_be32 (f);
1328
    s->highspeed=qemu_get_be32 (f);
1329
    s->can_write=qemu_get_be32 (f);
1330
    s->v2x6=qemu_get_be32 (f);
1331

    
1332
    qemu_get_8s (f, &s->csp_param);
1333
    qemu_get_8s (f, &s->csp_value);
1334
    qemu_get_8s (f, &s->csp_mode);
1335
    qemu_get_8s (f, &s->csp_param);
1336
    qemu_get_buffer (f, s->csp_regs, 256);
1337
    qemu_get_8s (f, &s->csp_index);
1338
    qemu_get_buffer (f, s->csp_reg83, 4);
1339
    s->csp_reg83r=qemu_get_be32 (f);
1340
    s->csp_reg83w=qemu_get_be32 (f);
1341

    
1342
    qemu_get_buffer (f, s->in2_data, sizeof (s->in2_data));
1343
    qemu_get_buffer (f, s->out_data, sizeof (s->out_data));
1344
    qemu_get_8s (f, &s->test_reg);
1345
    qemu_get_8s (f, &s->last_read_byte);
1346

    
1347
    s->nzero=qemu_get_be32 (f);
1348
    s->left_till_irq=qemu_get_be32 (f);
1349
    s->dma_running=qemu_get_be32 (f);
1350
    s->bytes_per_second=qemu_get_be32 (f);
1351
    s->align=qemu_get_be32 (f);
1352

    
1353
    s->mixer_nreg=qemu_get_be32 (f);
1354
    qemu_get_buffer (f, s->mixer_regs, 256);
1355

    
1356
    if (s->voice) {
1357
        AUD_close_out (&s->card, s->voice);
1358
        s->voice = NULL;
1359
    }
1360

    
1361
    if (s->dma_running) {
1362
        if (s->freq) {
1363
            struct audsettings as;
1364

    
1365
            s->audio_free = 0;
1366

    
1367
            as.freq = s->freq;
1368
            as.nchannels = 1 << s->fmt_stereo;
1369
            as.fmt = s->fmt;
1370
            as.endianness = 0;
1371

    
1372
            s->voice = AUD_open_out (
1373
                &s->card,
1374
                s->voice,
1375
                "sb16",
1376
                s,
1377
                SB_audio_callback,
1378
                &as
1379
                );
1380
        }
1381

    
1382
        control (s, 1);
1383
        speaker (s, s->speaker);
1384
    }
1385
    return 0;
1386
}
1387

    
1388
static int sb16_initfn (ISADevice *dev)
1389
{
1390
    static const uint8_t dsp_write_ports[] = {0x6, 0xc};
1391
    static const uint8_t dsp_read_ports[] = {0x6, 0xa, 0xc, 0xd, 0xe, 0xf};
1392
    SB16State *s;
1393
    int i;
1394

    
1395
    s = DO_UPCAST (SB16State, dev, dev);
1396

    
1397
    s->cmd = -1;
1398
    isa_init_irq (dev, &s->pic, s->irq);
1399

    
1400
    s->mixer_regs[0x80] = magic_of_irq (s->irq);
1401
    s->mixer_regs[0x81] = (1 << s->dma) | (1 << s->hdma);
1402
    s->mixer_regs[0x82] = 2 << 5;
1403

    
1404
    s->csp_regs[5] = 1;
1405
    s->csp_regs[9] = 0xf8;
1406

    
1407
    reset_mixer (s);
1408
    s->aux_ts = qemu_new_timer (vm_clock, aux_timer, s);
1409
    if (!s->aux_ts) {
1410
        dolog ("warning: Could not create auxiliary timer\n");
1411
    }
1412

    
1413
    for (i = 0; i < ARRAY_SIZE (dsp_write_ports); i++) {
1414
        register_ioport_write (s->port + dsp_write_ports[i], 1, 1, dsp_write, s);
1415
    }
1416

    
1417
    for (i = 0; i < ARRAY_SIZE (dsp_read_ports); i++) {
1418
        register_ioport_read (s->port + dsp_read_ports[i], 1, 1, dsp_read, s);
1419
    }
1420

    
1421
    register_ioport_write (s->port + 0x4, 1, 1, mixer_write_indexb, s);
1422
    register_ioport_write (s->port + 0x4, 1, 2, mixer_write_indexw, s);
1423
    register_ioport_read (s->port + 0x5, 1, 1, mixer_read, s);
1424
    register_ioport_write (s->port + 0x5, 1, 1, mixer_write_datab, s);
1425

    
1426
    DMA_register_channel (s->hdma, SB_read_DMA, s);
1427
    DMA_register_channel (s->dma, SB_read_DMA, s);
1428
    s->can_write = 1;
1429

    
1430
    register_savevm ("sb16", 0, 1, SB_save, SB_load, s);
1431
    AUD_register_card ("sb16", &s->card);
1432
    return 0;
1433
}
1434

    
1435
int SB16_init (qemu_irq *pic)
1436
{
1437
    isa_create_simple ("sb16");
1438
    return 0;
1439
}
1440

    
1441
static ISADeviceInfo sb16_info = {
1442
    .qdev.name     = "sb16",
1443
    .qdev.desc     = "Creative Sound Blaster 16",
1444
    .qdev.size     = sizeof (SB16State),
1445
    .init          = sb16_initfn,
1446
    .qdev.props    = (Property[]) {
1447
        DEFINE_PROP_HEX32  ("version", SB16State, ver,  0x0405), /* 4.5 */
1448
        DEFINE_PROP_HEX32  ("iobase",  SB16State, port, 0x220),
1449
        DEFINE_PROP_UINT32 ("irq",     SB16State, irq,  5),
1450
        DEFINE_PROP_UINT32 ("dma",     SB16State, dma,  1),
1451
        DEFINE_PROP_UINT32 ("dma16",   SB16State, hdma, 5),
1452
        DEFINE_PROP_END_OF_LIST (),
1453
    },
1454
};
1455

    
1456
static void sb16_register (void)
1457
{
1458
    isa_qdev_register (&sb16_info);
1459
}
1460
device_init (sb16_register)