1 // SPDX-License-Identifier: GPL-2.0
3 // rt700-sdw.c -- rt700 ALSA SoC audio driver
5 // Copyright(c) 2019 Realtek Semiconductor Corp.
9 #include <linux/delay.h>
10 #include <linux/device.h>
11 #include <linux/mod_devicetable.h>
12 #include <linux/soundwire/sdw.h>
13 #include <linux/soundwire/sdw_type.h>
14 #include <linux/soundwire/sdw_registers.h>
15 #include <linux/module.h>
16 #include <linux/regmap.h>
17 #include <sound/soc.h>
19 #include "rt700-sdw.h"
21 static bool rt700_readable_register(struct device *dev, unsigned int reg)
26 case 0x2000 ... 0x200e:
27 case 0x2012 ... 0x2016:
28 case 0x201a ... 0x2027:
29 case 0x2029 ... 0x202a:
30 case 0x202d ... 0x2034:
31 case 0x2200 ... 0x2204:
32 case 0x2206 ... 0x2212:
33 case 0x2220 ... 0x2223:
34 case 0x2230 ... 0x2231:
35 case 0x3000 ... 0x3fff:
36 case 0x7000 ... 0x7fff:
37 case 0x8300 ... 0x83ff:
38 case 0x9c00 ... 0x9cff:
39 case 0xb900 ... 0xb9ff:
54 static bool rt700_volatile_register(struct device *dev, unsigned int reg)
66 case 0x200b ... 0x200e: /* i2c read */
67 case 0x2012 ... 0x2015: /* HD-A read */
68 case 0x202d ... 0x202f: /* BRA */
69 case 0x2201 ... 0x2212: /* i2c debug */
70 case 0x2220 ... 0x2223: /* decoded HD-A */
71 case 0x9c00 ... 0x9cff:
72 case 0xb900 ... 0xb9ff:
84 static int rt700_sdw_read(void *context, unsigned int reg, unsigned int *val)
86 struct device *dev = context;
87 struct rt700_priv *rt700 = dev_get_drvdata(dev);
88 unsigned int sdw_data_3, sdw_data_2, sdw_data_1, sdw_data_0;
89 unsigned int reg2 = 0, reg3 = 0, reg4 = 0, mask, nid, val2;
90 unsigned int is_hda_reg = 1, is_index_reg = 0;
98 if (is_index_reg) { /* index registers */
102 ret = regmap_write(rt700->sdw_regmap, reg, 0);
107 ret = regmap_write(rt700->sdw_regmap, reg2, val2);
111 reg3 = RT700_PRIV_DATA_R_H | nid;
112 ret = regmap_write(rt700->sdw_regmap,
113 reg3, ((*val >> 8) & 0xff));
116 reg4 = reg3 + 0x1000;
118 ret = regmap_write(rt700->sdw_regmap, reg4, (*val & 0xff));
121 } else if (mask == 0x3000) {
123 ret = regmap_write(rt700->sdw_regmap, reg, *val);
126 } else if (mask == 0x7000) {
129 ret = regmap_write(rt700->sdw_regmap,
130 reg, ((*val >> 8) & 0xff));
135 ret = regmap_write(rt700->sdw_regmap, reg2, (*val & 0xff));
138 } else if ((reg & 0xff00) == 0x8300) { /* for R channel */
141 ret = regmap_write(rt700->sdw_regmap,
142 reg2, ((*val >> 8) & 0xff));
145 ret = regmap_write(rt700->sdw_regmap, reg, (*val & 0xff));
148 } else if (mask == 0x9000) {
149 ret = regmap_write(rt700->sdw_regmap,
150 reg, ((*val >> 8) & 0xff));
155 ret = regmap_write(rt700->sdw_regmap, reg2, (*val & 0xff));
158 } else if (mask == 0xb000) {
159 ret = regmap_write(rt700->sdw_regmap, reg, *val);
163 ret = regmap_read(rt700->sdw_regmap, reg, val);
169 if (is_hda_reg || is_index_reg) {
174 ret = regmap_read(rt700->sdw_regmap,
175 RT700_READ_HDA_3, &sdw_data_3);
178 ret = regmap_read(rt700->sdw_regmap,
179 RT700_READ_HDA_2, &sdw_data_2);
182 ret = regmap_read(rt700->sdw_regmap,
183 RT700_READ_HDA_1, &sdw_data_1);
186 ret = regmap_read(rt700->sdw_regmap,
187 RT700_READ_HDA_0, &sdw_data_0);
190 *val = ((sdw_data_3 & 0xff) << 24) |
191 ((sdw_data_2 & 0xff) << 16) |
192 ((sdw_data_1 & 0xff) << 8) | (sdw_data_0 & 0xff);
196 dev_dbg(dev, "[%s] %04x => %08x\n", __func__, reg, *val);
197 else if (is_index_reg)
198 dev_dbg(dev, "[%s] %04x %04x %04x %04x => %08x\n",
199 __func__, reg, reg2, reg3, reg4, *val);
201 dev_dbg(dev, "[%s] %04x %04x => %08x\n",
202 __func__, reg, reg2, *val);
207 static int rt700_sdw_write(void *context, unsigned int reg, unsigned int val)
209 struct device *dev = context;
210 struct rt700_priv *rt700 = dev_get_drvdata(dev);
211 unsigned int reg2 = 0, reg3, reg4, nid, mask, val2;
212 unsigned int is_index_reg = 0;
220 if (is_index_reg) { /* index registers */
224 ret = regmap_write(rt700->sdw_regmap, reg, 0);
229 ret = regmap_write(rt700->sdw_regmap, reg2, val2);
233 reg3 = RT700_PRIV_DATA_W_H | nid;
234 ret = regmap_write(rt700->sdw_regmap,
235 reg3, ((val >> 8) & 0xff));
238 reg4 = reg3 + 0x1000;
240 ret = regmap_write(rt700->sdw_regmap, reg4, (val & 0xff));
244 } else if (reg < 0x4fff) {
245 ret = regmap_write(rt700->sdw_regmap, reg, val);
248 } else if (reg == 0xff01) {
249 ret = regmap_write(rt700->sdw_regmap, reg, val);
252 } else if (mask == 0x7000) {
253 ret = regmap_write(rt700->sdw_regmap,
254 reg, ((val >> 8) & 0xff));
259 ret = regmap_write(rt700->sdw_regmap, reg2, (val & 0xff));
262 } else if ((reg & 0xff00) == 0x8300) { /* for R channel */
265 ret = regmap_write(rt700->sdw_regmap,
266 reg2, ((val >> 8) & 0xff));
269 ret = regmap_write(rt700->sdw_regmap, reg, (val & 0xff));
275 dev_dbg(dev, "[%s] %04x <= %04x\n", __func__, reg, val);
276 else if (is_index_reg)
277 dev_dbg(dev, "[%s] %04x %04x %04x %04x <= %04x %04x\n",
278 __func__, reg, reg2, reg3, reg4, val2, val);
280 dev_dbg(dev, "[%s] %04x %04x <= %04x\n",
281 __func__, reg, reg2, val);
286 static const struct regmap_config rt700_regmap = {
289 .readable_reg = rt700_readable_register,
290 .volatile_reg = rt700_volatile_register,
291 .max_register = 0x755800,
292 .reg_defaults = rt700_reg_defaults,
293 .num_reg_defaults = ARRAY_SIZE(rt700_reg_defaults),
294 .cache_type = REGCACHE_RBTREE,
295 .use_single_read = true,
296 .use_single_write = true,
297 .reg_read = rt700_sdw_read,
298 .reg_write = rt700_sdw_write,
301 static const struct regmap_config rt700_sdw_regmap = {
305 .readable_reg = rt700_readable_register,
306 .max_register = 0xff01,
307 .cache_type = REGCACHE_NONE,
308 .use_single_read = true,
309 .use_single_write = true,
312 static int rt700_update_status(struct sdw_slave *slave,
313 enum sdw_slave_status status)
315 struct rt700_priv *rt700 = dev_get_drvdata(&slave->dev);
317 /* Update the status */
318 rt700->status = status;
320 if (status == SDW_SLAVE_UNATTACHED)
321 rt700->hw_init = false;
324 * Perform initialization only if slave status is present and
325 * hw_init flag is false
327 if (rt700->hw_init || rt700->status != SDW_SLAVE_ATTACHED)
330 /* perform I/O transfers required for Slave initialization */
331 return rt700_io_init(&slave->dev, slave);
334 static int rt700_read_prop(struct sdw_slave *slave)
336 struct sdw_slave_prop *prop = &slave->prop;
340 struct sdw_dpn_prop *dpn;
342 prop->scp_int1_mask = SDW_SCP_INT1_IMPL_DEF | SDW_SCP_INT1_BUS_CLASH |
344 prop->quirks = SDW_SLAVE_QUIRKS_INVALID_INITIAL_PARITY;
346 prop->paging_support = false;
348 /* first we need to allocate memory for set bits in port lists */
349 prop->source_ports = 0x14; /* BITMAP: 00010100 */
350 prop->sink_ports = 0xA; /* BITMAP: 00001010 */
352 nval = hweight32(prop->source_ports);
353 prop->src_dpn_prop = devm_kcalloc(&slave->dev, nval,
354 sizeof(*prop->src_dpn_prop),
356 if (!prop->src_dpn_prop)
360 dpn = prop->src_dpn_prop;
361 addr = prop->source_ports;
362 for_each_set_bit(bit, &addr, 32) {
364 dpn[i].type = SDW_DPN_FULL;
365 dpn[i].simple_ch_prep_sm = true;
366 dpn[i].ch_prep_timeout = 10;
370 /* do this again for sink now */
371 nval = hweight32(prop->sink_ports);
372 prop->sink_dpn_prop = devm_kcalloc(&slave->dev, nval,
373 sizeof(*prop->sink_dpn_prop),
375 if (!prop->sink_dpn_prop)
379 dpn = prop->sink_dpn_prop;
380 addr = prop->sink_ports;
381 for_each_set_bit(bit, &addr, 32) {
383 dpn[i].type = SDW_DPN_FULL;
384 dpn[i].simple_ch_prep_sm = true;
385 dpn[i].ch_prep_timeout = 10;
389 /* set the timeout values */
390 prop->clk_stop_timeout = 20;
393 prop->wake_capable = 1;
398 static int rt700_bus_config(struct sdw_slave *slave,
399 struct sdw_bus_params *params)
401 struct rt700_priv *rt700 = dev_get_drvdata(&slave->dev);
404 memcpy(&rt700->params, params, sizeof(*params));
406 ret = rt700_clock_config(&slave->dev);
408 dev_err(&slave->dev, "Invalid clk config");
413 static int rt700_interrupt_callback(struct sdw_slave *slave,
414 struct sdw_slave_intr_status *status)
416 struct rt700_priv *rt700 = dev_get_drvdata(&slave->dev);
419 "%s control_port_stat=%x", __func__, status->control_port);
421 if (status->control_port & 0x4) {
422 mod_delayed_work(system_power_efficient_wq,
423 &rt700->jack_detect_work, msecs_to_jiffies(250));
430 * slave_ops: callbacks for get_clock_stop_mode, clock_stop and
431 * port_prep are not defined for now
433 static struct sdw_slave_ops rt700_slave_ops = {
434 .read_prop = rt700_read_prop,
435 .interrupt_callback = rt700_interrupt_callback,
436 .update_status = rt700_update_status,
437 .bus_config = rt700_bus_config,
440 static int rt700_sdw_probe(struct sdw_slave *slave,
441 const struct sdw_device_id *id)
443 struct regmap *sdw_regmap, *regmap;
445 /* Regmap Initialization */
446 sdw_regmap = devm_regmap_init_sdw(slave, &rt700_sdw_regmap);
447 if (IS_ERR(sdw_regmap))
448 return PTR_ERR(sdw_regmap);
450 regmap = devm_regmap_init(&slave->dev, NULL,
451 &slave->dev, &rt700_regmap);
453 return PTR_ERR(regmap);
455 rt700_init(&slave->dev, sdw_regmap, regmap, slave);
460 static int rt700_sdw_remove(struct sdw_slave *slave)
462 struct rt700_priv *rt700 = dev_get_drvdata(&slave->dev);
464 if (rt700 && rt700->hw_init) {
465 cancel_delayed_work(&rt700->jack_detect_work);
466 cancel_delayed_work(&rt700->jack_btn_check_work);
472 static const struct sdw_device_id rt700_id[] = {
473 SDW_SLAVE_ENTRY_EXT(0x025d, 0x700, 0x1, 0, 0),
476 MODULE_DEVICE_TABLE(sdw, rt700_id);
478 static int __maybe_unused rt700_dev_suspend(struct device *dev)
480 struct rt700_priv *rt700 = dev_get_drvdata(dev);
485 cancel_delayed_work_sync(&rt700->jack_detect_work);
486 cancel_delayed_work_sync(&rt700->jack_btn_check_work);
488 regcache_cache_only(rt700->regmap, true);
493 #define RT700_PROBE_TIMEOUT 2000
495 static int __maybe_unused rt700_dev_resume(struct device *dev)
497 struct sdw_slave *slave = dev_to_sdw_dev(dev);
498 struct rt700_priv *rt700 = dev_get_drvdata(dev);
504 if (!slave->unattach_request)
507 time = wait_for_completion_timeout(&slave->initialization_complete,
508 msecs_to_jiffies(RT700_PROBE_TIMEOUT));
510 dev_err(&slave->dev, "Initialization not complete, timed out\n");
515 slave->unattach_request = 0;
516 regcache_cache_only(rt700->regmap, false);
517 regcache_sync_region(rt700->regmap, 0x3000, 0x8fff);
518 regcache_sync_region(rt700->regmap, 0x752010, 0x75206b);
523 static const struct dev_pm_ops rt700_pm = {
524 SET_SYSTEM_SLEEP_PM_OPS(rt700_dev_suspend, rt700_dev_resume)
525 SET_RUNTIME_PM_OPS(rt700_dev_suspend, rt700_dev_resume, NULL)
528 static struct sdw_driver rt700_sdw_driver = {
531 .owner = THIS_MODULE,
534 .probe = rt700_sdw_probe,
535 .remove = rt700_sdw_remove,
536 .ops = &rt700_slave_ops,
537 .id_table = rt700_id,
539 module_sdw_driver(rt700_sdw_driver);
541 MODULE_DESCRIPTION("ASoC RT700 driver SDW");
543 MODULE_LICENSE("GPL v2");