1 // SPDX-License-Identifier: GPL-2.0-only
2 //
3 // Copyright(c) 2021-2022 Intel Corporation. All rights reserved.
4 //
5 // Authors: Cezary Rojewski <cezary.rojewski@intel.com>
6 // Amadeusz Slawinski <amadeuszx.slawinski@linux.intel.com>
7 //
8
9 #include <linux/io-64-nonatomic-lo-hi.h>
10 #include <linux/slab.h>
11 #include <sound/hdaudio_ext.h>
12 #include "avs.h"
13 #include "messages.h"
14 #include "registers.h"
15 #include "trace.h"
16
17 #define AVS_IPC_TIMEOUT_MS 300
18 #define AVS_D0IX_DELAY_MS 300
19
20 static int
avs_dsp_set_d0ix(struct avs_dev * adev,bool enable)21 avs_dsp_set_d0ix(struct avs_dev *adev, bool enable)
22 {
23 struct avs_ipc *ipc = adev->ipc;
24 int ret;
25
26 /* Is transition required? */
27 if (ipc->in_d0ix == enable)
28 return 0;
29
30 ret = avs_dsp_op(adev, set_d0ix, enable);
31 if (ret) {
32 /* Prevent further d0ix attempts on conscious IPC failure. */
33 if (ret == -AVS_EIPC)
34 atomic_inc(&ipc->d0ix_disable_depth);
35
36 ipc->in_d0ix = false;
37 return ret;
38 }
39
40 ipc->in_d0ix = enable;
41 return 0;
42 }
43
avs_dsp_schedule_d0ix(struct avs_dev * adev,struct avs_ipc_msg * tx)44 static void avs_dsp_schedule_d0ix(struct avs_dev *adev, struct avs_ipc_msg *tx)
45 {
46 if (atomic_read(&adev->ipc->d0ix_disable_depth))
47 return;
48
49 mod_delayed_work(system_power_efficient_wq, &adev->ipc->d0ix_work,
50 msecs_to_jiffies(AVS_D0IX_DELAY_MS));
51 }
52
avs_dsp_d0ix_work(struct work_struct * work)53 static void avs_dsp_d0ix_work(struct work_struct *work)
54 {
55 struct avs_ipc *ipc = container_of(work, struct avs_ipc, d0ix_work.work);
56
57 avs_dsp_set_d0ix(to_avs_dev(ipc->dev), true);
58 }
59
avs_dsp_wake_d0i0(struct avs_dev * adev,struct avs_ipc_msg * tx)60 static int avs_dsp_wake_d0i0(struct avs_dev *adev, struct avs_ipc_msg *tx)
61 {
62 struct avs_ipc *ipc = adev->ipc;
63
64 if (!atomic_read(&ipc->d0ix_disable_depth)) {
65 cancel_delayed_work_sync(&ipc->d0ix_work);
66 return avs_dsp_set_d0ix(adev, false);
67 }
68
69 return 0;
70 }
71
avs_dsp_disable_d0ix(struct avs_dev * adev)72 int avs_dsp_disable_d0ix(struct avs_dev *adev)
73 {
74 struct avs_ipc *ipc = adev->ipc;
75
76 /* Prevent PG only on the first disable. */
77 if (atomic_inc_return(&ipc->d0ix_disable_depth) == 1) {
78 cancel_delayed_work_sync(&ipc->d0ix_work);
79 return avs_dsp_set_d0ix(adev, false);
80 }
81
82 return 0;
83 }
84
avs_dsp_enable_d0ix(struct avs_dev * adev)85 int avs_dsp_enable_d0ix(struct avs_dev *adev)
86 {
87 struct avs_ipc *ipc = adev->ipc;
88
89 if (atomic_dec_and_test(&ipc->d0ix_disable_depth))
90 queue_delayed_work(system_power_efficient_wq, &ipc->d0ix_work,
91 msecs_to_jiffies(AVS_D0IX_DELAY_MS));
92 return 0;
93 }
94
avs_dsp_recovery(struct avs_dev * adev)95 static void avs_dsp_recovery(struct avs_dev *adev)
96 {
97 struct avs_soc_component *acomp;
98 unsigned int core_mask;
99 int ret;
100
101 mutex_lock(&adev->comp_list_mutex);
102 /* disconnect all running streams */
103 list_for_each_entry(acomp, &adev->comp_list, node) {
104 struct snd_soc_pcm_runtime *rtd;
105 struct snd_soc_card *card;
106
107 card = acomp->base.card;
108 if (!card)
109 continue;
110
111 for_each_card_rtds(card, rtd) {
112 struct snd_pcm *pcm;
113 int dir;
114
115 pcm = rtd->pcm;
116 if (!pcm || rtd->dai_link->no_pcm)
117 continue;
118
119 for_each_pcm_streams(dir) {
120 struct snd_pcm_substream *substream;
121
122 substream = pcm->streams[dir].substream;
123 if (!substream || !substream->runtime)
124 continue;
125
126 /* No need for _irq() as we are in nonatomic context. */
127 snd_pcm_stream_lock(substream);
128 snd_pcm_stop(substream, SNDRV_PCM_STATE_DISCONNECTED);
129 snd_pcm_stream_unlock(substream);
130 }
131 }
132 }
133 mutex_unlock(&adev->comp_list_mutex);
134
135 /* forcibly shutdown all cores */
136 core_mask = GENMASK(adev->hw_cfg.dsp_cores - 1, 0);
137 avs_dsp_core_disable(adev, core_mask);
138
139 /* attempt dsp reboot */
140 ret = avs_dsp_boot_firmware(adev, true);
141 if (ret < 0)
142 dev_err(adev->dev, "dsp reboot failed: %d\n", ret);
143
144 pm_runtime_mark_last_busy(adev->dev);
145 pm_runtime_enable(adev->dev);
146 pm_request_autosuspend(adev->dev);
147
148 atomic_set(&adev->ipc->recovering, 0);
149 }
150
avs_dsp_recovery_work(struct work_struct * work)151 static void avs_dsp_recovery_work(struct work_struct *work)
152 {
153 struct avs_ipc *ipc = container_of(work, struct avs_ipc, recovery_work);
154
155 avs_dsp_recovery(to_avs_dev(ipc->dev));
156 }
157
avs_dsp_exception_caught(struct avs_dev * adev,union avs_notify_msg * msg)158 static void avs_dsp_exception_caught(struct avs_dev *adev, union avs_notify_msg *msg)
159 {
160 struct avs_ipc *ipc = adev->ipc;
161
162 /* Account for the double-exception case. */
163 ipc->ready = false;
164
165 if (!atomic_add_unless(&ipc->recovering, 1, 1)) {
166 dev_err(adev->dev, "dsp recovery is already in progress\n");
167 return;
168 }
169
170 dev_crit(adev->dev, "communication severed, rebooting dsp..\n");
171
172 cancel_delayed_work_sync(&ipc->d0ix_work);
173 ipc->in_d0ix = false;
174 /* Re-enabled on recovery completion. */
175 pm_runtime_disable(adev->dev);
176
177 /* Process received notification. */
178 avs_dsp_op(adev, coredump, msg);
179
180 schedule_work(&ipc->recovery_work);
181 }
182
avs_dsp_receive_rx(struct avs_dev * adev,u64 header)183 static void avs_dsp_receive_rx(struct avs_dev *adev, u64 header)
184 {
185 struct avs_ipc *ipc = adev->ipc;
186 union avs_reply_msg msg = AVS_MSG(header);
187 u64 reg;
188
189 reg = readq(avs_sram_addr(adev, AVS_FW_REGS_WINDOW));
190 trace_avs_ipc_reply_msg(header, reg);
191
192 ipc->rx.header = header;
193 /* Abort copying payload if request processing was unsuccessful. */
194 if (!msg.status) {
195 /* update size in case of LARGE_CONFIG_GET */
196 if (msg.msg_target == AVS_MOD_MSG &&
197 msg.global_msg_type == AVS_MOD_LARGE_CONFIG_GET)
198 ipc->rx.size = min_t(u32, AVS_MAILBOX_SIZE,
199 msg.ext.large_config.data_off_size);
200
201 memcpy_fromio(ipc->rx.data, avs_uplink_addr(adev), ipc->rx.size);
202 trace_avs_msg_payload(ipc->rx.data, ipc->rx.size);
203 }
204 }
205
avs_dsp_process_notification(struct avs_dev * adev,u64 header)206 static void avs_dsp_process_notification(struct avs_dev *adev, u64 header)
207 {
208 struct avs_notify_mod_data mod_data;
209 union avs_notify_msg msg = AVS_MSG(header);
210 size_t data_size = 0;
211 void *data = NULL;
212 u64 reg;
213
214 reg = readq(avs_sram_addr(adev, AVS_FW_REGS_WINDOW));
215 trace_avs_ipc_notify_msg(header, reg);
216
217 /* Ignore spurious notifications until handshake is established. */
218 if (!adev->ipc->ready && msg.notify_msg_type != AVS_NOTIFY_FW_READY) {
219 dev_dbg(adev->dev, "FW not ready, skip notification: 0x%08x\n", msg.primary);
220 return;
221 }
222
223 /* Calculate notification payload size. */
224 switch (msg.notify_msg_type) {
225 case AVS_NOTIFY_FW_READY:
226 break;
227
228 case AVS_NOTIFY_PHRASE_DETECTED:
229 data_size = sizeof(struct avs_notify_voice_data);
230 break;
231
232 case AVS_NOTIFY_RESOURCE_EVENT:
233 data_size = sizeof(struct avs_notify_res_data);
234 break;
235
236 case AVS_NOTIFY_LOG_BUFFER_STATUS:
237 case AVS_NOTIFY_EXCEPTION_CAUGHT:
238 break;
239
240 case AVS_NOTIFY_MODULE_EVENT:
241 /* To know the total payload size, header needs to be read first. */
242 memcpy_fromio(&mod_data, avs_uplink_addr(adev), sizeof(mod_data));
243 data_size = sizeof(mod_data) + mod_data.data_size;
244 break;
245
246 default:
247 dev_info(adev->dev, "unknown notification: 0x%08x\n", msg.primary);
248 break;
249 }
250
251 if (data_size) {
252 data = kmalloc(data_size, GFP_KERNEL);
253 if (!data)
254 return;
255
256 memcpy_fromio(data, avs_uplink_addr(adev), data_size);
257 trace_avs_msg_payload(data, data_size);
258 }
259
260 /* Perform notification-specific operations. */
261 switch (msg.notify_msg_type) {
262 case AVS_NOTIFY_FW_READY:
263 dev_dbg(adev->dev, "FW READY 0x%08x\n", msg.primary);
264 adev->ipc->ready = true;
265 complete(&adev->fw_ready);
266 break;
267
268 case AVS_NOTIFY_LOG_BUFFER_STATUS:
269 avs_log_buffer_status_locked(adev, &msg);
270 break;
271
272 case AVS_NOTIFY_EXCEPTION_CAUGHT:
273 avs_dsp_exception_caught(adev, &msg);
274 break;
275
276 default:
277 break;
278 }
279
280 kfree(data);
281 }
282
avs_dsp_process_response(struct avs_dev * adev,u64 header)283 void avs_dsp_process_response(struct avs_dev *adev, u64 header)
284 {
285 struct avs_ipc *ipc = adev->ipc;
286
287 /*
288 * Response may either be solicited - a reply for a request that has
289 * been sent beforehand - or unsolicited (notification).
290 */
291 if (avs_msg_is_reply(header)) {
292 /* Response processing is invoked from IRQ thread. */
293 spin_lock_irq(&ipc->rx_lock);
294 avs_dsp_receive_rx(adev, header);
295 ipc->rx_completed = true;
296 spin_unlock_irq(&ipc->rx_lock);
297 } else {
298 avs_dsp_process_notification(adev, header);
299 }
300
301 complete(&ipc->busy_completion);
302 }
303
avs_dsp_irq_handler(int irq,void * dev_id)304 irqreturn_t avs_dsp_irq_handler(int irq, void *dev_id)
305 {
306 struct avs_dev *adev = dev_id;
307 struct avs_ipc *ipc = adev->ipc;
308 const struct avs_spec *const spec = adev->spec;
309 u32 adspis, hipc_rsp, hipc_ack;
310 irqreturn_t ret = IRQ_NONE;
311
312 adspis = snd_hdac_adsp_readl(adev, AVS_ADSP_REG_ADSPIS);
313 if (adspis == UINT_MAX || !(adspis & AVS_ADSP_ADSPIS_IPC))
314 return ret;
315
316 hipc_ack = snd_hdac_adsp_readl(adev, spec->hipc->ack_offset);
317 hipc_rsp = snd_hdac_adsp_readl(adev, spec->hipc->rsp_offset);
318
319 /* DSP acked host's request */
320 if (hipc_ack & spec->hipc->ack_done_mask) {
321 /*
322 * As an extra precaution, mask done interrupt. Code executed
323 * due to complete() found below does not assume any masking.
324 */
325 snd_hdac_adsp_updatel(adev, spec->hipc->ctl_offset,
326 AVS_ADSP_HIPCCTL_DONE, 0);
327
328 complete(&ipc->done_completion);
329
330 /* tell DSP it has our attention */
331 snd_hdac_adsp_updatel(adev, spec->hipc->ack_offset,
332 spec->hipc->ack_done_mask,
333 spec->hipc->ack_done_mask);
334 /* unmask done interrupt */
335 snd_hdac_adsp_updatel(adev, spec->hipc->ctl_offset,
336 AVS_ADSP_HIPCCTL_DONE,
337 AVS_ADSP_HIPCCTL_DONE);
338 ret = IRQ_HANDLED;
339 }
340
341 /* DSP sent new response to process */
342 if (hipc_rsp & spec->hipc->rsp_busy_mask) {
343 /* mask busy interrupt */
344 snd_hdac_adsp_updatel(adev, spec->hipc->ctl_offset,
345 AVS_ADSP_HIPCCTL_BUSY, 0);
346
347 ret = IRQ_WAKE_THREAD;
348 }
349
350 return ret;
351 }
352
avs_dsp_irq_thread(int irq,void * dev_id)353 irqreturn_t avs_dsp_irq_thread(int irq, void *dev_id)
354 {
355 struct avs_dev *adev = dev_id;
356 union avs_reply_msg msg;
357 u32 hipct, hipcte;
358
359 hipct = snd_hdac_adsp_readl(adev, SKL_ADSP_REG_HIPCT);
360 hipcte = snd_hdac_adsp_readl(adev, SKL_ADSP_REG_HIPCTE);
361
362 /* ensure DSP sent new response to process */
363 if (!(hipct & SKL_ADSP_HIPCT_BUSY))
364 return IRQ_NONE;
365
366 msg.primary = hipct;
367 msg.ext.val = hipcte;
368 avs_dsp_process_response(adev, msg.val);
369
370 /* tell DSP we accepted its message */
371 snd_hdac_adsp_updatel(adev, SKL_ADSP_REG_HIPCT,
372 SKL_ADSP_HIPCT_BUSY, SKL_ADSP_HIPCT_BUSY);
373 /* unmask busy interrupt */
374 snd_hdac_adsp_updatel(adev, SKL_ADSP_REG_HIPCCTL,
375 AVS_ADSP_HIPCCTL_BUSY, AVS_ADSP_HIPCCTL_BUSY);
376
377 return IRQ_HANDLED;
378 }
379
avs_ipc_is_busy(struct avs_ipc * ipc)380 static bool avs_ipc_is_busy(struct avs_ipc *ipc)
381 {
382 struct avs_dev *adev = to_avs_dev(ipc->dev);
383 const struct avs_spec *const spec = adev->spec;
384 u32 hipc_rsp;
385
386 hipc_rsp = snd_hdac_adsp_readl(adev, spec->hipc->rsp_offset);
387 return hipc_rsp & spec->hipc->rsp_busy_mask;
388 }
389
avs_ipc_wait_busy_completion(struct avs_ipc * ipc,int timeout)390 static int avs_ipc_wait_busy_completion(struct avs_ipc *ipc, int timeout)
391 {
392 u32 repeats_left = 128; /* to avoid infinite looping */
393 int ret;
394
395 again:
396 ret = wait_for_completion_timeout(&ipc->busy_completion, msecs_to_jiffies(timeout));
397
398 /* DSP could be unresponsive at this point. */
399 if (!ipc->ready)
400 return -EPERM;
401
402 if (!ret) {
403 if (!avs_ipc_is_busy(ipc))
404 return -ETIMEDOUT;
405 /*
406 * Firmware did its job, either notification or reply
407 * has been received - now wait until it's processed.
408 */
409 wait_for_completion_killable(&ipc->busy_completion);
410 }
411
412 /* Ongoing notification's bottom-half may cause early wakeup */
413 spin_lock(&ipc->rx_lock);
414 if (!ipc->rx_completed) {
415 if (repeats_left) {
416 /* Reply delayed due to notification. */
417 repeats_left--;
418 reinit_completion(&ipc->busy_completion);
419 spin_unlock(&ipc->rx_lock);
420 goto again;
421 }
422
423 spin_unlock(&ipc->rx_lock);
424 return -ETIMEDOUT;
425 }
426
427 spin_unlock(&ipc->rx_lock);
428 return 0;
429 }
430
avs_ipc_msg_init(struct avs_ipc * ipc,struct avs_ipc_msg * reply)431 static void avs_ipc_msg_init(struct avs_ipc *ipc, struct avs_ipc_msg *reply)
432 {
433 lockdep_assert_held(&ipc->rx_lock);
434
435 ipc->rx.header = 0;
436 ipc->rx.size = reply ? reply->size : 0;
437 ipc->rx_completed = false;
438
439 reinit_completion(&ipc->done_completion);
440 reinit_completion(&ipc->busy_completion);
441 }
442
avs_dsp_send_tx(struct avs_dev * adev,struct avs_ipc_msg * tx,bool read_fwregs)443 static void avs_dsp_send_tx(struct avs_dev *adev, struct avs_ipc_msg *tx, bool read_fwregs)
444 {
445 const struct avs_spec *const spec = adev->spec;
446 u64 reg = ULONG_MAX;
447
448 tx->header |= spec->hipc->req_busy_mask;
449 if (read_fwregs)
450 reg = readq(avs_sram_addr(adev, AVS_FW_REGS_WINDOW));
451
452 trace_avs_request(tx, reg);
453
454 if (tx->size)
455 memcpy_toio(avs_downlink_addr(adev), tx->data, tx->size);
456 snd_hdac_adsp_writel(adev, spec->hipc->req_ext_offset, tx->header >> 32);
457 snd_hdac_adsp_writel(adev, spec->hipc->req_offset, tx->header & UINT_MAX);
458 }
459
avs_dsp_do_send_msg(struct avs_dev * adev,struct avs_ipc_msg * request,struct avs_ipc_msg * reply,int timeout)460 static int avs_dsp_do_send_msg(struct avs_dev *adev, struct avs_ipc_msg *request,
461 struct avs_ipc_msg *reply, int timeout)
462 {
463 struct avs_ipc *ipc = adev->ipc;
464 int ret;
465
466 if (!ipc->ready)
467 return -EPERM;
468
469 mutex_lock(&ipc->msg_mutex);
470
471 spin_lock(&ipc->rx_lock);
472 avs_ipc_msg_init(ipc, reply);
473 avs_dsp_send_tx(adev, request, true);
474 spin_unlock(&ipc->rx_lock);
475
476 ret = avs_ipc_wait_busy_completion(ipc, timeout);
477 if (ret) {
478 if (ret == -ETIMEDOUT) {
479 union avs_notify_msg msg = AVS_NOTIFICATION(EXCEPTION_CAUGHT);
480
481 /* Same treatment as on exception, just stack_dump=0. */
482 avs_dsp_exception_caught(adev, &msg);
483 }
484 goto exit;
485 }
486
487 ret = ipc->rx.rsp.status;
488 if (reply) {
489 reply->header = ipc->rx.header;
490 reply->size = ipc->rx.size;
491 if (reply->data && ipc->rx.size)
492 memcpy(reply->data, ipc->rx.data, reply->size);
493 }
494
495 exit:
496 mutex_unlock(&ipc->msg_mutex);
497 return ret;
498 }
499
avs_dsp_send_msg_sequence(struct avs_dev * adev,struct avs_ipc_msg * request,struct avs_ipc_msg * reply,int timeout,bool wake_d0i0,bool schedule_d0ix)500 static int avs_dsp_send_msg_sequence(struct avs_dev *adev, struct avs_ipc_msg *request,
501 struct avs_ipc_msg *reply, int timeout, bool wake_d0i0,
502 bool schedule_d0ix)
503 {
504 int ret;
505
506 trace_avs_d0ix("wake", wake_d0i0, request->header);
507 if (wake_d0i0) {
508 ret = avs_dsp_wake_d0i0(adev, request);
509 if (ret)
510 return ret;
511 }
512
513 ret = avs_dsp_do_send_msg(adev, request, reply, timeout);
514 if (ret)
515 return ret;
516
517 trace_avs_d0ix("schedule", schedule_d0ix, request->header);
518 if (schedule_d0ix)
519 avs_dsp_schedule_d0ix(adev, request);
520
521 return 0;
522 }
523
avs_dsp_send_msg_timeout(struct avs_dev * adev,struct avs_ipc_msg * request,struct avs_ipc_msg * reply,int timeout)524 int avs_dsp_send_msg_timeout(struct avs_dev *adev, struct avs_ipc_msg *request,
525 struct avs_ipc_msg *reply, int timeout)
526 {
527 bool wake_d0i0 = avs_dsp_op(adev, d0ix_toggle, request, true);
528 bool schedule_d0ix = avs_dsp_op(adev, d0ix_toggle, request, false);
529
530 return avs_dsp_send_msg_sequence(adev, request, reply, timeout, wake_d0i0, schedule_d0ix);
531 }
532
avs_dsp_send_msg(struct avs_dev * adev,struct avs_ipc_msg * request,struct avs_ipc_msg * reply)533 int avs_dsp_send_msg(struct avs_dev *adev, struct avs_ipc_msg *request,
534 struct avs_ipc_msg *reply)
535 {
536 return avs_dsp_send_msg_timeout(adev, request, reply, adev->ipc->default_timeout_ms);
537 }
538
avs_dsp_send_pm_msg_timeout(struct avs_dev * adev,struct avs_ipc_msg * request,struct avs_ipc_msg * reply,int timeout,bool wake_d0i0)539 int avs_dsp_send_pm_msg_timeout(struct avs_dev *adev, struct avs_ipc_msg *request,
540 struct avs_ipc_msg *reply, int timeout, bool wake_d0i0)
541 {
542 return avs_dsp_send_msg_sequence(adev, request, reply, timeout, wake_d0i0, false);
543 }
544
avs_dsp_send_pm_msg(struct avs_dev * adev,struct avs_ipc_msg * request,struct avs_ipc_msg * reply,bool wake_d0i0)545 int avs_dsp_send_pm_msg(struct avs_dev *adev, struct avs_ipc_msg *request,
546 struct avs_ipc_msg *reply, bool wake_d0i0)
547 {
548 return avs_dsp_send_pm_msg_timeout(adev, request, reply, adev->ipc->default_timeout_ms,
549 wake_d0i0);
550 }
551
avs_dsp_do_send_rom_msg(struct avs_dev * adev,struct avs_ipc_msg * request,int timeout)552 static int avs_dsp_do_send_rom_msg(struct avs_dev *adev, struct avs_ipc_msg *request, int timeout)
553 {
554 struct avs_ipc *ipc = adev->ipc;
555 int ret;
556
557 mutex_lock(&ipc->msg_mutex);
558
559 spin_lock(&ipc->rx_lock);
560 avs_ipc_msg_init(ipc, NULL);
561 /*
562 * with hw still stalled, memory windows may not be
563 * configured properly so avoid accessing SRAM
564 */
565 avs_dsp_send_tx(adev, request, false);
566 spin_unlock(&ipc->rx_lock);
567
568 /* ROM messages must be sent before main core is unstalled */
569 ret = avs_dsp_op(adev, stall, AVS_MAIN_CORE_MASK, false);
570 if (!ret) {
571 ret = wait_for_completion_timeout(&ipc->done_completion, msecs_to_jiffies(timeout));
572 ret = ret ? 0 : -ETIMEDOUT;
573 }
574
575 mutex_unlock(&ipc->msg_mutex);
576
577 return ret;
578 }
579
avs_dsp_send_rom_msg_timeout(struct avs_dev * adev,struct avs_ipc_msg * request,int timeout)580 int avs_dsp_send_rom_msg_timeout(struct avs_dev *adev, struct avs_ipc_msg *request, int timeout)
581 {
582 return avs_dsp_do_send_rom_msg(adev, request, timeout);
583 }
584
avs_dsp_send_rom_msg(struct avs_dev * adev,struct avs_ipc_msg * request)585 int avs_dsp_send_rom_msg(struct avs_dev *adev, struct avs_ipc_msg *request)
586 {
587 return avs_dsp_send_rom_msg_timeout(adev, request, adev->ipc->default_timeout_ms);
588 }
589
avs_dsp_interrupt_control(struct avs_dev * adev,bool enable)590 void avs_dsp_interrupt_control(struct avs_dev *adev, bool enable)
591 {
592 const struct avs_spec *const spec = adev->spec;
593 u32 value, mask;
594
595 /*
596 * No particular bit setting order. All of these are required
597 * to have a functional SW <-> FW communication.
598 */
599 value = enable ? AVS_ADSP_ADSPIC_IPC : 0;
600 snd_hdac_adsp_updatel(adev, AVS_ADSP_REG_ADSPIC, AVS_ADSP_ADSPIC_IPC, value);
601
602 mask = AVS_ADSP_HIPCCTL_DONE | AVS_ADSP_HIPCCTL_BUSY;
603 value = enable ? mask : 0;
604 snd_hdac_adsp_updatel(adev, spec->hipc->ctl_offset, mask, value);
605 }
606
avs_ipc_init(struct avs_ipc * ipc,struct device * dev)607 int avs_ipc_init(struct avs_ipc *ipc, struct device *dev)
608 {
609 ipc->rx.data = devm_kzalloc(dev, AVS_MAILBOX_SIZE, GFP_KERNEL);
610 if (!ipc->rx.data)
611 return -ENOMEM;
612
613 ipc->dev = dev;
614 ipc->ready = false;
615 ipc->default_timeout_ms = AVS_IPC_TIMEOUT_MS;
616 INIT_WORK(&ipc->recovery_work, avs_dsp_recovery_work);
617 INIT_DELAYED_WORK(&ipc->d0ix_work, avs_dsp_d0ix_work);
618 init_completion(&ipc->done_completion);
619 init_completion(&ipc->busy_completion);
620 spin_lock_init(&ipc->rx_lock);
621 mutex_init(&ipc->msg_mutex);
622
623 return 0;
624 }
625
avs_ipc_block(struct avs_ipc * ipc)626 void avs_ipc_block(struct avs_ipc *ipc)
627 {
628 ipc->ready = false;
629 cancel_work_sync(&ipc->recovery_work);
630 cancel_delayed_work_sync(&ipc->d0ix_work);
631 ipc->in_d0ix = false;
632 }
633