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ef07b491
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1/*
2 * Marvell 88w8618 audio emulation extracted from
3 * Marvell MV88w8618 / Freecom MusicPal emulation.
4 *
5 * Copyright (c) 2008 Jan Kiszka
6 *
8e31bf38 7 * This code is licensed under the GNU GPL v2.
6b620ca3
PB
8 *
9 * Contributions after 2012-01-13 are licensed under the terms of the
10 * GNU GPL, version 2 or (at your option) any later version.
ef07b491 11 */
0b8fa32f 12
6086a565 13#include "qemu/osdep.h"
83c9f4ca 14#include "hw/sysbus.h"
d6454270 15#include "migration/vmstate.h"
64552b6b 16#include "hw/irq.h"
7ab14c5a 17#include "hw/audio/wm8750.h"
ef07b491 18#include "audio/audio.h"
a8299ec1 19#include "qapi/error.h"
0b8fa32f 20#include "qemu/module.h"
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21
22#define MP_AUDIO_SIZE 0x00001000
23
24/* Audio register offsets */
25#define MP_AUDIO_PLAYBACK_MODE 0x00
26#define MP_AUDIO_CLOCK_DIV 0x18
27#define MP_AUDIO_IRQ_STATUS 0x20
28#define MP_AUDIO_IRQ_ENABLE 0x24
29#define MP_AUDIO_TX_START_LO 0x28
30#define MP_AUDIO_TX_THRESHOLD 0x2C
31#define MP_AUDIO_TX_STATUS 0x38
32#define MP_AUDIO_TX_START_HI 0x40
33
34/* Status register and IRQ enable bits */
35#define MP_AUDIO_TX_HALF (1 << 6)
36#define MP_AUDIO_TX_FULL (1 << 7)
37
38/* Playback mode bits */
39#define MP_AUDIO_16BIT_SAMPLE (1 << 0)
40#define MP_AUDIO_PLAYBACK_EN (1 << 7)
41#define MP_AUDIO_CLOCK_24MHZ (1 << 9)
42#define MP_AUDIO_MONO (1 << 14)
43
9e3f8599
AF
44#define MV88W8618_AUDIO(obj) \
45 OBJECT_CHECK(mv88w8618_audio_state, (obj), TYPE_MV88W8618_AUDIO)
46
ef07b491 47typedef struct mv88w8618_audio_state {
9e3f8599
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48 SysBusDevice parent_obj;
49
e2ba99e9 50 MemoryRegion iomem;
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51 qemu_irq irq;
52 uint32_t playback_mode;
53 uint32_t status;
54 uint32_t irq_enable;
d5b61ddd 55 uint32_t phys_buf;
ef07b491 56 uint32_t target_buffer;
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57 uint32_t threshold;
58 uint32_t play_pos;
59 uint32_t last_free;
ef07b491 60 uint32_t clock_div;
e855761c 61 void *wm;
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62} mv88w8618_audio_state;
63
64static void mv88w8618_audio_callback(void *opaque, int free_out, int free_in)
65{
66 mv88w8618_audio_state *s = opaque;
67 int16_t *codec_buffer;
68 int8_t buf[4096];
69 int8_t *mem_buffer;
70 int pos, block_size;
71
49fedd0d 72 if (!(s->playback_mode & MP_AUDIO_PLAYBACK_EN)) {
ef07b491 73 return;
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74 }
75 if (s->playback_mode & MP_AUDIO_16BIT_SAMPLE) {
ef07b491 76 free_out <<= 1;
49fedd0d
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77 }
78 if (!(s->playback_mode & MP_AUDIO_MONO)) {
ef07b491 79 free_out <<= 1;
49fedd0d 80 }
ef07b491 81 block_size = s->threshold / 2;
49fedd0d 82 if (free_out - s->last_free < block_size) {
ef07b491 83 return;
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84 }
85 if (block_size > 4096) {
ef07b491 86 return;
49fedd0d 87 }
e1fe50dc 88 cpu_physical_memory_read(s->target_buffer + s->play_pos, buf, block_size);
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89 mem_buffer = buf;
90 if (s->playback_mode & MP_AUDIO_16BIT_SAMPLE) {
91 if (s->playback_mode & MP_AUDIO_MONO) {
92 codec_buffer = wm8750_dac_buffer(s->wm, block_size >> 1);
93 for (pos = 0; pos < block_size; pos += 2) {
94 *codec_buffer++ = *(int16_t *)mem_buffer;
95 *codec_buffer++ = *(int16_t *)mem_buffer;
96 mem_buffer += 2;
97 }
49fedd0d 98 } else {
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99 memcpy(wm8750_dac_buffer(s->wm, block_size >> 2),
100 (uint32_t *)mem_buffer, block_size);
49fedd0d 101 }
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102 } else {
103 if (s->playback_mode & MP_AUDIO_MONO) {
104 codec_buffer = wm8750_dac_buffer(s->wm, block_size);
105 for (pos = 0; pos < block_size; pos++) {
106 *codec_buffer++ = cpu_to_le16(256 * *mem_buffer);
107 *codec_buffer++ = cpu_to_le16(256 * *mem_buffer++);
108 }
109 } else {
110 codec_buffer = wm8750_dac_buffer(s->wm, block_size >> 1);
111 for (pos = 0; pos < block_size; pos += 2) {
112 *codec_buffer++ = cpu_to_le16(256 * *mem_buffer++);
113 *codec_buffer++ = cpu_to_le16(256 * *mem_buffer++);
114 }
115 }
116 }
117 wm8750_dac_commit(s->wm);
118
119 s->last_free = free_out - block_size;
120
121 if (s->play_pos == 0) {
122 s->status |= MP_AUDIO_TX_HALF;
123 s->play_pos = block_size;
124 } else {
125 s->status |= MP_AUDIO_TX_FULL;
126 s->play_pos = 0;
127 }
128
49fedd0d 129 if (s->status & s->irq_enable) {
ef07b491 130 qemu_irq_raise(s->irq);
49fedd0d 131 }
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132}
133
134static void mv88w8618_audio_clock_update(mv88w8618_audio_state *s)
135{
136 int rate;
137
49fedd0d 138 if (s->playback_mode & MP_AUDIO_CLOCK_24MHZ) {
ef07b491 139 rate = 24576000 / 64; /* 24.576MHz */
49fedd0d 140 } else {
ef07b491 141 rate = 11289600 / 64; /* 11.2896MHz */
49fedd0d 142 }
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143 rate /= ((s->clock_div >> 8) & 0xff) + 1;
144
145 wm8750_set_bclk_in(s->wm, rate);
146}
147
a8170e5e 148static uint64_t mv88w8618_audio_read(void *opaque, hwaddr offset,
e2ba99e9 149 unsigned size)
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150{
151 mv88w8618_audio_state *s = opaque;
152
153 switch (offset) {
154 case MP_AUDIO_PLAYBACK_MODE:
155 return s->playback_mode;
156
157 case MP_AUDIO_CLOCK_DIV:
158 return s->clock_div;
159
160 case MP_AUDIO_IRQ_STATUS:
161 return s->status;
162
163 case MP_AUDIO_IRQ_ENABLE:
164 return s->irq_enable;
165
166 case MP_AUDIO_TX_STATUS:
167 return s->play_pos >> 2;
168
169 default:
170 return 0;
171 }
172}
173
a8170e5e 174static void mv88w8618_audio_write(void *opaque, hwaddr offset,
e2ba99e9 175 uint64_t value, unsigned size)
ef07b491
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176{
177 mv88w8618_audio_state *s = opaque;
178
179 switch (offset) {
180 case MP_AUDIO_PLAYBACK_MODE:
181 if (value & MP_AUDIO_PLAYBACK_EN &&
182 !(s->playback_mode & MP_AUDIO_PLAYBACK_EN)) {
183 s->status = 0;
184 s->last_free = 0;
185 s->play_pos = 0;
186 }
187 s->playback_mode = value;
188 mv88w8618_audio_clock_update(s);
189 break;
190
191 case MP_AUDIO_CLOCK_DIV:
192 s->clock_div = value;
193 s->last_free = 0;
194 s->play_pos = 0;
195 mv88w8618_audio_clock_update(s);
196 break;
197
198 case MP_AUDIO_IRQ_STATUS:
199 s->status &= ~value;
200 break;
201
202 case MP_AUDIO_IRQ_ENABLE:
203 s->irq_enable = value;
49fedd0d 204 if (s->status & s->irq_enable) {
ef07b491 205 qemu_irq_raise(s->irq);
49fedd0d 206 }
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207 break;
208
209 case MP_AUDIO_TX_START_LO:
210 s->phys_buf = (s->phys_buf & 0xFFFF0000) | (value & 0xFFFF);
211 s->target_buffer = s->phys_buf;
212 s->play_pos = 0;
213 s->last_free = 0;
214 break;
215
216 case MP_AUDIO_TX_THRESHOLD:
217 s->threshold = (value + 1) * 4;
218 break;
219
220 case MP_AUDIO_TX_START_HI:
221 s->phys_buf = (s->phys_buf & 0xFFFF) | (value << 16);
222 s->target_buffer = s->phys_buf;
223 s->play_pos = 0;
224 s->last_free = 0;
225 break;
226 }
227}
228
d5b61ddd 229static void mv88w8618_audio_reset(DeviceState *d)
ef07b491 230{
9e3f8599 231 mv88w8618_audio_state *s = MV88W8618_AUDIO(d);
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232
233 s->playback_mode = 0;
234 s->status = 0;
235 s->irq_enable = 0;
267c4840
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236 s->clock_div = 0;
237 s->threshold = 0;
238 s->phys_buf = 0;
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239}
240
e2ba99e9
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241static const MemoryRegionOps mv88w8618_audio_ops = {
242 .read = mv88w8618_audio_read,
243 .write = mv88w8618_audio_write,
244 .endianness = DEVICE_NATIVE_ENDIAN,
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245};
246
c025d0ab 247static void mv88w8618_audio_init(Object *obj)
ef07b491 248{
c025d0ab 249 SysBusDevice *dev = SYS_BUS_DEVICE(obj);
9e3f8599 250 mv88w8618_audio_state *s = MV88W8618_AUDIO(dev);
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251
252 sysbus_init_irq(dev, &s->irq);
253
c025d0ab 254 memory_region_init_io(&s->iomem, obj, &mv88w8618_audio_ops, s,
e2ba99e9 255 "audio", MP_AUDIO_SIZE);
750ecd44 256 sysbus_init_mmio(dev, &s->iomem);
a8299ec1
MZ
257
258 object_property_add_link(OBJECT(dev), "wm8750", TYPE_WM8750,
259 (Object **) &s->wm,
260 qdev_prop_allow_set_link_before_realize,
261 0, &error_abort);
c025d0ab 262}
ef07b491 263
c025d0ab
XZ
264static void mv88w8618_audio_realize(DeviceState *dev, Error **errp)
265{
266 mv88w8618_audio_state *s = MV88W8618_AUDIO(dev);
267
268 wm8750_data_req_set(s->wm, mv88w8618_audio_callback, s);
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269}
270
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271static const VMStateDescription mv88w8618_audio_vmsd = {
272 .name = "mv88w8618_audio",
273 .version_id = 1,
274 .minimum_version_id = 1,
d5b61ddd
JK
275 .fields = (VMStateField[]) {
276 VMSTATE_UINT32(playback_mode, mv88w8618_audio_state),
277 VMSTATE_UINT32(status, mv88w8618_audio_state),
278 VMSTATE_UINT32(irq_enable, mv88w8618_audio_state),
279 VMSTATE_UINT32(phys_buf, mv88w8618_audio_state),
280 VMSTATE_UINT32(target_buffer, mv88w8618_audio_state),
281 VMSTATE_UINT32(threshold, mv88w8618_audio_state),
282 VMSTATE_UINT32(play_pos, mv88w8618_audio_state),
283 VMSTATE_UINT32(last_free, mv88w8618_audio_state),
284 VMSTATE_UINT32(clock_div, mv88w8618_audio_state),
285 VMSTATE_END_OF_LIST()
286 }
287};
288
999e12bb
AL
289static void mv88w8618_audio_class_init(ObjectClass *klass, void *data)
290{
39bffca2 291 DeviceClass *dc = DEVICE_CLASS(klass);
999e12bb 292
c025d0ab 293 dc->realize = mv88w8618_audio_realize;
39bffca2
AL
294 dc->reset = mv88w8618_audio_reset;
295 dc->vmsd = &mv88w8618_audio_vmsd;
e90f2a8c 296 dc->user_creatable = false;
999e12bb
AL
297}
298
8c43a6f0 299static const TypeInfo mv88w8618_audio_info = {
9e3f8599 300 .name = TYPE_MV88W8618_AUDIO,
39bffca2
AL
301 .parent = TYPE_SYS_BUS_DEVICE,
302 .instance_size = sizeof(mv88w8618_audio_state),
c025d0ab 303 .instance_init = mv88w8618_audio_init,
39bffca2 304 .class_init = mv88w8618_audio_class_init,
ef07b491 305};
ef07b491 306
83f7d43a 307static void mv88w8618_register_types(void)
ef07b491 308{
39bffca2 309 type_register_static(&mv88w8618_audio_info);
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AZ
310}
311
83f7d43a 312type_init(mv88w8618_register_types)
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