1 // SPDX-License-Identifier: GPL-2.0
2 // Copyright (C) 2025 Cirrus Logic, Inc. and
3 // Cirrus Logic International Semiconductor Ltd.
4
5 /*
6 * The MIPI SDCA specification is available for public downloads at
7 * https://www.mipi.org/mipi-sdca-v1-0-download
8 */
9
10 #include <linux/auxiliary_bus.h>
11 #include <linux/cleanup.h>
12 #include <linux/minmax.h>
13 #include <linux/module.h>
14 #include <linux/pm.h>
15 #include <linux/pm_runtime.h>
16 #include <linux/soundwire/sdw.h>
17 #include <linux/soundwire/sdw_registers.h>
18 #include <sound/pcm.h>
19 #include <sound/sdca_asoc.h>
20 #include <sound/sdca_fdl.h>
21 #include <sound/sdca_function.h>
22 #include <sound/sdca_interrupts.h>
23 #include <sound/sdca_jack.h>
24 #include <sound/sdca_regmap.h>
25 #include <sound/sdw.h>
26 #include <sound/soc-component.h>
27 #include <sound/soc-dai.h>
28 #include <sound/soc.h>
29 #include "sdca_class.h"
30
31 struct class_function_drv {
32 struct device *dev;
33 struct regmap *regmap;
34 struct sdca_class_drv *core;
35
36 struct sdca_function_data *function;
37 bool suspended;
38 };
39
class_function_regmap_lock(void * data)40 static void class_function_regmap_lock(void *data)
41 {
42 struct mutex *lock = data;
43
44 mutex_lock(lock);
45 }
46
class_function_regmap_unlock(void * data)47 static void class_function_regmap_unlock(void *data)
48 {
49 struct mutex *lock = data;
50
51 mutex_unlock(lock);
52 }
53
class_function_regmap_writeable(struct device * dev,unsigned int reg)54 static bool class_function_regmap_writeable(struct device *dev, unsigned int reg)
55 {
56 struct auxiliary_device *auxdev = to_auxiliary_dev(dev);
57 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
58
59 return sdca_regmap_writeable(drv->function, reg);
60 }
61
class_function_regmap_readable(struct device * dev,unsigned int reg)62 static bool class_function_regmap_readable(struct device *dev, unsigned int reg)
63 {
64 struct auxiliary_device *auxdev = to_auxiliary_dev(dev);
65 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
66
67 return sdca_regmap_readable(drv->function, reg);
68 }
69
class_function_regmap_volatile(struct device * dev,unsigned int reg)70 static bool class_function_regmap_volatile(struct device *dev, unsigned int reg)
71 {
72 struct auxiliary_device *auxdev = to_auxiliary_dev(dev);
73 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
74
75 return sdca_regmap_volatile(drv->function, reg);
76 }
77
78 static const struct regmap_config class_function_regmap_config = {
79 .name = "sdca",
80 .reg_bits = 32,
81 .val_bits = 32,
82 .reg_format_endian = REGMAP_ENDIAN_LITTLE,
83 .val_format_endian = REGMAP_ENDIAN_LITTLE,
84
85 .max_register = SDW_SDCA_MAX_REGISTER,
86 .readable_reg = class_function_regmap_readable,
87 .writeable_reg = class_function_regmap_writeable,
88 .volatile_reg = class_function_regmap_volatile,
89
90 .cache_type = REGCACHE_MAPLE,
91
92 .lock = class_function_regmap_lock,
93 .unlock = class_function_regmap_unlock,
94 };
95
class_function_regmap_mbq_size(struct device * dev,unsigned int reg)96 static int class_function_regmap_mbq_size(struct device *dev, unsigned int reg)
97 {
98 struct auxiliary_device *auxdev = to_auxiliary_dev(dev);
99 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
100
101 return sdca_regmap_mbq_size(drv->function, reg);
102 }
103
class_function_regmap_deferrable(struct device * dev,unsigned int reg)104 static bool class_function_regmap_deferrable(struct device *dev, unsigned int reg)
105 {
106 struct auxiliary_device *auxdev = to_auxiliary_dev(dev);
107 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
108
109 return sdca_regmap_deferrable(drv->function, reg);
110 }
111
112 static const struct regmap_sdw_mbq_cfg class_function_mbq_config = {
113 .mbq_size = class_function_regmap_mbq_size,
114 .deferrable = class_function_regmap_deferrable,
115 .retry_us = 1000,
116 .timeout_us = 10000,
117 };
118
class_function_startup(struct snd_pcm_substream * substream,struct snd_soc_dai * dai)119 static int class_function_startup(struct snd_pcm_substream *substream,
120 struct snd_soc_dai *dai)
121 {
122 struct class_function_drv *drv = snd_soc_component_get_drvdata(dai->component);
123
124 return sdca_asoc_set_constraints(drv->dev, drv->regmap, drv->function,
125 substream, dai);
126 }
127
class_function_sdw_add_peripheral(struct snd_pcm_substream * substream,struct snd_pcm_hw_params * params,struct snd_soc_dai * dai)128 static int class_function_sdw_add_peripheral(struct snd_pcm_substream *substream,
129 struct snd_pcm_hw_params *params,
130 struct snd_soc_dai *dai)
131 {
132 struct class_function_drv *drv = snd_soc_component_get_drvdata(dai->component);
133 struct sdw_stream_runtime *sdw_stream = snd_soc_dai_get_dma_data(dai, substream);
134 struct sdw_slave *sdw = dev_to_sdw_dev(drv->dev->parent);
135 struct sdw_stream_config sconfig = {0};
136 struct sdw_port_config pconfig = {0};
137 int ret;
138
139 if (!sdw_stream)
140 return -EINVAL;
141
142 snd_sdw_params_to_config(substream, params, &sconfig, &pconfig);
143
144 /*
145 * FIXME: As also noted in sdca_asoc_get_port(), currently only
146 * a single unshared port is supported for each DAI.
147 */
148 ret = sdca_asoc_get_port(drv->dev, drv->regmap, drv->function, dai);
149 if (ret < 0)
150 return ret;
151
152 pconfig.num = ret;
153
154 ret = sdw_stream_add_slave(sdw, &sconfig, &pconfig, 1, sdw_stream);
155 if (ret) {
156 dev_err(drv->dev, "failed to add sdw stream: %d\n", ret);
157 return ret;
158 }
159
160 return sdca_asoc_hw_params(drv->dev, drv->regmap, drv->function,
161 substream, params, dai);
162 }
163
class_function_sdw_remove_peripheral(struct snd_pcm_substream * substream,struct snd_soc_dai * dai)164 static int class_function_sdw_remove_peripheral(struct snd_pcm_substream *substream,
165 struct snd_soc_dai *dai)
166 {
167 struct class_function_drv *drv = snd_soc_component_get_drvdata(dai->component);
168 struct sdw_stream_runtime *sdw_stream = snd_soc_dai_get_dma_data(dai, substream);
169 struct sdw_slave *sdw = dev_to_sdw_dev(drv->dev->parent);
170
171 if (!sdw_stream)
172 return -EINVAL;
173
174 return sdw_stream_remove_slave(sdw, sdw_stream);
175 }
176
class_function_sdw_set_stream(struct snd_soc_dai * dai,void * sdw_stream,int direction)177 static int class_function_sdw_set_stream(struct snd_soc_dai *dai, void *sdw_stream,
178 int direction)
179 {
180 snd_soc_dai_dma_data_set(dai, direction, sdw_stream);
181
182 return 0;
183 }
184
185 static const struct snd_soc_dai_ops class_function_sdw_ops = {
186 .startup = class_function_startup,
187 .shutdown = sdca_asoc_free_constraints,
188 .set_stream = class_function_sdw_set_stream,
189 .hw_params = class_function_sdw_add_peripheral,
190 .hw_free = class_function_sdw_remove_peripheral,
191 };
192
class_function_component_probe(struct snd_soc_component * component)193 static int class_function_component_probe(struct snd_soc_component *component)
194 {
195 struct class_function_drv *drv = snd_soc_component_get_drvdata(component);
196 struct sdca_class_drv *core = drv->core;
197
198 return sdca_irq_populate(drv->function, component, core->irq_info);
199 }
200
class_function_component_remove(struct snd_soc_component * component)201 static void class_function_component_remove(struct snd_soc_component *component)
202 {
203 struct class_function_drv *drv = snd_soc_component_get_drvdata(component);
204 struct sdca_class_drv *core = drv->core;
205
206 sdca_irq_cleanup(component->dev, drv->function, core->irq_info);
207 }
208
class_function_set_jack(struct snd_soc_component * component,struct snd_soc_jack * jack,void * d)209 static int class_function_set_jack(struct snd_soc_component *component,
210 struct snd_soc_jack *jack, void *d)
211 {
212 struct class_function_drv *drv = snd_soc_component_get_drvdata(component);
213 struct sdca_class_drv *core = drv->core;
214
215 return sdca_jack_set_jack(core->irq_info, jack);
216 }
217
218 static const struct snd_soc_component_driver class_function_component_drv = {
219 .probe = class_function_component_probe,
220 .remove = class_function_component_remove,
221 .endianness = 1,
222 };
223
class_function_init_device(struct class_function_drv * drv,unsigned int status)224 static int class_function_init_device(struct class_function_drv *drv,
225 unsigned int status)
226 {
227 int ret;
228
229 if (!(status & SDCA_CTL_ENTITY_0_FUNCTION_HAS_BEEN_RESET)) {
230 dev_dbg(drv->dev, "reset function device\n");
231
232 ret = sdca_reset_function(drv->dev, drv->function, drv->regmap);
233 if (ret)
234 return ret;
235 }
236
237 if (status & SDCA_CTL_ENTITY_0_FUNCTION_NEEDS_INITIALIZATION) {
238 dev_dbg(drv->dev, "write initialisation\n");
239
240 ret = sdca_regmap_write_init(drv->dev, drv->core->dev_regmap,
241 drv->function);
242 if (ret)
243 return ret;
244 }
245
246 return 0;
247 }
248
class_function_boot(struct class_function_drv * drv)249 static int class_function_boot(struct class_function_drv *drv)
250 {
251 unsigned int reg = SDW_SDCA_CTL(drv->function->desc->adr,
252 SDCA_ENTITY_TYPE_ENTITY_0,
253 SDCA_CTL_ENTITY_0_FUNCTION_STATUS, 0);
254 unsigned int val;
255 int ret;
256
257 guard(mutex)(&drv->core->init_lock);
258
259 ret = regmap_read(drv->regmap, reg, &val);
260 if (ret < 0) {
261 dev_err(drv->dev, "failed to read function status: %d\n", ret);
262 return ret;
263 }
264
265 ret = class_function_init_device(drv, val);
266 if (ret)
267 return ret;
268
269 /* Start FDL process */
270 ret = sdca_irq_populate_early(drv->dev, drv->regmap, drv->function,
271 drv->core->irq_info);
272 if (ret)
273 return ret;
274
275 ret = sdca_fdl_sync(drv->dev, drv->function, drv->core->irq_info);
276 if (ret)
277 return ret;
278
279 ret = sdca_regmap_write_defaults(drv->dev, drv->regmap, drv->function);
280 if (ret)
281 return ret;
282
283 ret = regmap_write(drv->regmap, reg, 0xFF);
284 if (ret < 0) {
285 dev_err(drv->dev, "failed to clear function status: %d\n", ret);
286 return ret;
287 }
288
289 return 0;
290 }
291
class_function_probe(struct auxiliary_device * auxdev,const struct auxiliary_device_id * aux_dev_id)292 static int class_function_probe(struct auxiliary_device *auxdev,
293 const struct auxiliary_device_id *aux_dev_id)
294 {
295 struct device *dev = &auxdev->dev;
296 struct sdca_class_drv *core = dev_get_drvdata(dev->parent);
297 struct sdca_device_data *data = &core->sdw->sdca_data;
298 struct sdca_function_desc *desc;
299 struct snd_soc_component_driver *cmp_drv;
300 struct snd_soc_dai_driver *dais;
301 struct class_function_drv *drv;
302 struct regmap_sdw_mbq_cfg *mbq_config;
303 struct regmap_config *config;
304 struct reg_default *defaults;
305 int ndefaults;
306 int num_dais;
307 int ret;
308 int i;
309
310 drv = devm_kzalloc(dev, sizeof(*drv), GFP_KERNEL);
311 if (!drv)
312 return -ENOMEM;
313
314 cmp_drv = devm_kmemdup(dev, &class_function_component_drv, sizeof(*cmp_drv),
315 GFP_KERNEL);
316 if (!cmp_drv)
317 return -ENOMEM;
318
319 config = devm_kmemdup(dev, &class_function_regmap_config, sizeof(*config),
320 GFP_KERNEL);
321 if (!config)
322 return -ENOMEM;
323
324 mbq_config = devm_kmemdup(dev, &class_function_mbq_config, sizeof(*mbq_config),
325 GFP_KERNEL);
326 if (!mbq_config)
327 return -ENOMEM;
328
329 drv->dev = dev;
330 drv->core = core;
331
332 for (i = 0; i < data->num_functions; i++) {
333 desc = &data->function[i];
334
335 if (desc->type == aux_dev_id->driver_data)
336 break;
337 }
338 if (i == core->sdw->sdca_data.num_functions) {
339 dev_err(dev, "failed to locate function\n");
340 return -EINVAL;
341 }
342
343 drv->function = &core->functions[i];
344
345 ret = sdca_parse_function(dev, core->sdw, desc, drv->function);
346 if (ret)
347 return ret;
348
349 ndefaults = sdca_regmap_count_constants(dev, drv->function);
350 if (ndefaults < 0)
351 return ndefaults;
352
353 defaults = devm_kcalloc(dev, ndefaults, sizeof(*defaults), GFP_KERNEL);
354 if (!defaults)
355 return -ENOMEM;
356
357 ret = sdca_regmap_populate_constants(dev, drv->function, defaults);
358 if (ret < 0)
359 return ret;
360
361 regcache_sort_defaults(defaults, ndefaults);
362
363 auxiliary_set_drvdata(auxdev, drv);
364
365 config->reg_defaults = defaults;
366 config->num_reg_defaults = ndefaults;
367 config->lock_arg = &core->regmap_lock;
368
369 if (drv->function->busy_max_delay) {
370 mbq_config->timeout_us = drv->function->busy_max_delay;
371 mbq_config->retry_us = umax(drv->function->busy_max_delay / 10,
372 mbq_config->retry_us);
373 }
374
375 drv->regmap = devm_regmap_init_sdw_mbq_cfg(dev, core->sdw, config, mbq_config);
376 if (IS_ERR(drv->regmap))
377 return dev_err_probe(dev, PTR_ERR(drv->regmap),
378 "failed to create regmap");
379
380 if (desc->type == SDCA_FUNCTION_TYPE_UAJ)
381 cmp_drv->set_jack = class_function_set_jack;
382
383 ret = sdca_asoc_populate_component(dev, drv->function, cmp_drv,
384 &dais, &num_dais,
385 &class_function_sdw_ops);
386 if (ret)
387 return ret;
388
389 dev_pm_set_driver_flags(dev, DPM_FLAG_NO_DIRECT_COMPLETE);
390
391 pm_runtime_set_autosuspend_delay(dev, 200);
392 pm_runtime_use_autosuspend(dev);
393 pm_runtime_set_active(dev);
394 pm_runtime_get_noresume(dev);
395
396 ret = devm_pm_runtime_enable(dev);
397 if (ret)
398 return ret;
399
400 ret = class_function_boot(drv);
401 if (ret)
402 return ret;
403
404 ret = devm_snd_soc_register_component(dev, cmp_drv, dais, num_dais);
405 if (ret)
406 return dev_err_probe(dev, ret, "failed to register component\n");
407
408 pm_runtime_mark_last_busy(dev);
409 pm_runtime_put_autosuspend(dev);
410
411 return 0;
412 }
413
class_function_remove(struct auxiliary_device * auxdev)414 static void class_function_remove(struct auxiliary_device *auxdev)
415 {
416 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
417
418 sdca_irq_cleanup(drv->dev, drv->function, drv->core->irq_info);
419 }
420
class_function_runtime_suspend(struct device * dev)421 static int class_function_runtime_suspend(struct device *dev)
422 {
423 struct auxiliary_device *auxdev = to_auxiliary_dev(dev);
424 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
425
426 /*
427 * Whilst the driver doesn't power the chip down here, going into
428 * runtime suspend means the driver can't be sure the bus won't
429 * power down which would prevent communication with the device.
430 */
431 regcache_cache_only(drv->regmap, true);
432
433 return 0;
434 }
435
class_function_runtime_resume(struct device * dev)436 static int class_function_runtime_resume(struct device *dev)
437 {
438 struct auxiliary_device *auxdev = to_auxiliary_dev(dev);
439 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
440 int ret;
441
442 guard(mutex)(&drv->core->init_lock);
443
444 regcache_mark_dirty(drv->regmap);
445 regcache_cache_only(drv->regmap, false);
446
447 if (drv->suspended) {
448 unsigned int reg = SDW_SDCA_CTL(drv->function->desc->adr,
449 SDCA_ENTITY_TYPE_ENTITY_0,
450 SDCA_CTL_ENTITY_0_FUNCTION_STATUS, 0);
451 unsigned int val;
452
453 ret = regmap_read(drv->regmap, reg, &val);
454 if (ret < 0) {
455 dev_err(drv->dev, "failed to read function status: %d\n", ret);
456 goto err;
457 }
458
459 ret = class_function_init_device(drv, val);
460 if (ret)
461 goto err;
462
463 sdca_irq_enable_early(drv->function, drv->core->irq_info);
464
465 ret = sdca_fdl_sync(drv->dev, drv->function, drv->core->irq_info);
466 if (ret)
467 goto err;
468
469 sdca_irq_enable(drv->function, drv->core->irq_info);
470
471 ret = regmap_write(drv->regmap, reg, 0xFF);
472 if (ret < 0) {
473 dev_err(drv->dev, "failed to clear function status: %d\n", ret);
474 goto err;
475 }
476
477 drv->suspended = false;
478 }
479
480 ret = regcache_sync(drv->regmap);
481 if (ret) {
482 dev_err(drv->dev, "failed to restore register cache: %d\n", ret);
483 goto err;
484 }
485
486 return 0;
487
488 err:
489 regcache_cache_only(drv->regmap, true);
490
491 return ret;
492 }
493
class_function_suspend(struct device * dev)494 static int class_function_suspend(struct device *dev)
495 {
496 struct auxiliary_device *auxdev = to_auxiliary_dev(dev);
497 struct class_function_drv *drv = auxiliary_get_drvdata(auxdev);
498 int ret;
499
500 drv->suspended = true;
501
502 /* Ensure runtime resume runs on resume */
503 ret = pm_runtime_resume_and_get(dev);
504 if (ret) {
505 dev_err(dev, "failed to resume for suspend: %d\n", ret);
506 return ret;
507 }
508
509 sdca_irq_disable(drv->function, drv->core->irq_info);
510
511 ret = pm_runtime_force_suspend(dev);
512 if (ret) {
513 dev_err(dev, "failed to force suspend: %d\n", ret);
514 return ret;
515 }
516
517 pm_runtime_put_noidle(dev);
518
519 return 0;
520 }
521
class_function_resume(struct device * dev)522 static int class_function_resume(struct device *dev)
523 {
524 int ret;
525
526 ret = pm_runtime_force_resume(dev);
527 if (ret) {
528 dev_err(dev, "failed to force resume: %d\n", ret);
529 return ret;
530 }
531
532 return 0;
533 }
534
535 static const struct dev_pm_ops class_function_pm_ops = {
536 SYSTEM_SLEEP_PM_OPS(class_function_suspend, class_function_resume)
537 RUNTIME_PM_OPS(class_function_runtime_suspend,
538 class_function_runtime_resume, NULL)
539 };
540
541 static const struct auxiliary_device_id class_function_id_table[] = {
542 {
543 .name = "snd_soc_sdca." SDCA_FUNCTION_TYPE_SMART_AMP_NAME,
544 .driver_data = SDCA_FUNCTION_TYPE_SMART_AMP,
545 },
546 {
547 .name = "snd_soc_sdca." SDCA_FUNCTION_TYPE_SMART_MIC_NAME,
548 .driver_data = SDCA_FUNCTION_TYPE_SMART_MIC,
549 },
550 {
551 .name = "snd_soc_sdca." SDCA_FUNCTION_TYPE_UAJ_NAME,
552 .driver_data = SDCA_FUNCTION_TYPE_UAJ,
553 },
554 {
555 .name = "snd_soc_sdca." SDCA_FUNCTION_TYPE_HID_NAME,
556 .driver_data = SDCA_FUNCTION_TYPE_HID,
557 },
558 {},
559 };
560 MODULE_DEVICE_TABLE(auxiliary, class_function_id_table);
561
562 static struct auxiliary_driver class_function_drv = {
563 .driver = {
564 .name = "sdca_function",
565 .pm = pm_ptr(&class_function_pm_ops),
566 },
567
568 .probe = class_function_probe,
569 .remove = class_function_remove,
570 .id_table = class_function_id_table
571 };
572 module_auxiliary_driver(class_function_drv);
573
574 MODULE_LICENSE("GPL");
575 MODULE_DESCRIPTION("SDCA Class Function Driver");
576 MODULE_IMPORT_NS("SND_SOC_SDCA");
577