xref: /openbmc/linux/sound/soc/sof/intel/hda.c (revision bcda5fd3)
1 // SPDX-License-Identifier: (GPL-2.0-only OR BSD-3-Clause)
2 //
3 // This file is provided under a dual BSD/GPLv2 license.  When using or
4 // redistributing this file, you may do so under either license.
5 //
6 // Copyright(c) 2018 Intel Corporation. All rights reserved.
7 //
8 // Authors: Liam Girdwood <liam.r.girdwood@linux.intel.com>
9 //	    Ranjani Sridharan <ranjani.sridharan@linux.intel.com>
10 //	    Rander Wang <rander.wang@intel.com>
11 //          Keyon Jie <yang.jie@linux.intel.com>
12 //
13 
14 /*
15  * Hardware interface for generic Intel audio DSP HDA IP
16  */
17 
18 #include <sound/hdaudio_ext.h>
19 #include <sound/hda_register.h>
20 
21 #include <linux/acpi.h>
22 #include <linux/module.h>
23 #include <linux/soundwire/sdw.h>
24 #include <linux/soundwire/sdw_intel.h>
25 #include <sound/intel-dsp-config.h>
26 #include <sound/intel-nhlt.h>
27 #include <sound/sof.h>
28 #include <sound/sof/xtensa.h>
29 #include "../sof-audio.h"
30 #include "../sof-pci-dev.h"
31 #include "../ops.h"
32 #include "hda.h"
33 
34 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA)
35 #include <sound/soc-acpi-intel-match.h>
36 #endif
37 
38 /* platform specific devices */
39 #include "shim.h"
40 
41 #define EXCEPT_MAX_HDR_SIZE	0x400
42 #define HDA_EXT_ROM_STATUS_SIZE 8
43 
44 #if IS_ENABLED(CONFIG_SND_SOC_SOF_INTEL_SOUNDWIRE)
45 
46 /*
47  * The default for SoundWire clock stop quirks is to power gate the IP
48  * and do a Bus Reset, this will need to be modified when the DSP
49  * needs to remain in D0i3 so that the Master does not lose context
50  * and enumeration is not required on clock restart
51  */
52 static int sdw_clock_stop_quirks = SDW_INTEL_CLK_STOP_BUS_RESET;
53 module_param(sdw_clock_stop_quirks, int, 0444);
54 MODULE_PARM_DESC(sdw_clock_stop_quirks, "SOF SoundWire clock stop quirks");
55 
56 static int sdw_params_stream(struct device *dev,
57 			     struct sdw_intel_stream_params_data *params_data)
58 {
59 	struct snd_sof_dev *sdev = dev_get_drvdata(dev);
60 	struct snd_soc_dai *d = params_data->dai;
61 	struct sof_ipc_dai_config config;
62 	struct sof_ipc_reply reply;
63 	int link_id = params_data->link_id;
64 	int alh_stream_id = params_data->alh_stream_id;
65 	int ret;
66 	u32 size = sizeof(config);
67 
68 	memset(&config, 0, size);
69 	config.hdr.size = size;
70 	config.hdr.cmd = SOF_IPC_GLB_DAI_MSG | SOF_IPC_DAI_CONFIG;
71 	config.type = SOF_DAI_INTEL_ALH;
72 	config.dai_index = (link_id << 8) | (d->id);
73 	config.alh.stream_id = alh_stream_id;
74 
75 	/* send message to DSP */
76 	ret = sof_ipc_tx_message(sdev->ipc,
77 				 config.hdr.cmd, &config, size, &reply,
78 				 sizeof(reply));
79 	if (ret < 0) {
80 		dev_err(sdev->dev,
81 			"error: failed to set DAI hw_params for link %d dai->id %d ALH %d\n",
82 			link_id, d->id, alh_stream_id);
83 	}
84 
85 	return ret;
86 }
87 
88 static int sdw_free_stream(struct device *dev,
89 			   struct sdw_intel_stream_free_data *free_data)
90 {
91 	struct snd_sof_dev *sdev = dev_get_drvdata(dev);
92 	struct snd_soc_dai *d = free_data->dai;
93 	struct sof_ipc_dai_config config;
94 	struct sof_ipc_reply reply;
95 	int link_id = free_data->link_id;
96 	int ret;
97 	u32 size = sizeof(config);
98 
99 	memset(&config, 0, size);
100 	config.hdr.size = size;
101 	config.hdr.cmd = SOF_IPC_GLB_DAI_MSG | SOF_IPC_DAI_CONFIG;
102 	config.type = SOF_DAI_INTEL_ALH;
103 	config.dai_index = (link_id << 8) | d->id;
104 	config.alh.stream_id = 0xFFFF; /* invalid value on purpose */
105 
106 	/* send message to DSP */
107 	ret = sof_ipc_tx_message(sdev->ipc,
108 				 config.hdr.cmd, &config, size, &reply,
109 				 sizeof(reply));
110 	if (ret < 0) {
111 		dev_err(sdev->dev,
112 			"error: failed to free stream for link %d dai->id %d\n",
113 			link_id, d->id);
114 	}
115 
116 	return ret;
117 }
118 
119 static const struct sdw_intel_ops sdw_callback = {
120 	.params_stream = sdw_params_stream,
121 	.free_stream = sdw_free_stream,
122 };
123 
124 void hda_sdw_int_enable(struct snd_sof_dev *sdev, bool enable)
125 {
126 	sdw_intel_enable_irq(sdev->bar[HDA_DSP_BAR], enable);
127 }
128 
129 static int hda_sdw_acpi_scan(struct snd_sof_dev *sdev)
130 {
131 	struct sof_intel_hda_dev *hdev;
132 	acpi_handle handle;
133 	int ret;
134 
135 	handle = ACPI_HANDLE(sdev->dev);
136 
137 	/* save ACPI info for the probe step */
138 	hdev = sdev->pdata->hw_pdata;
139 
140 	ret = sdw_intel_acpi_scan(handle, &hdev->info);
141 	if (ret < 0)
142 		return -EINVAL;
143 
144 	return 0;
145 }
146 
147 static int hda_sdw_probe(struct snd_sof_dev *sdev)
148 {
149 	struct sof_intel_hda_dev *hdev;
150 	struct sdw_intel_res res;
151 	void *sdw;
152 
153 	hdev = sdev->pdata->hw_pdata;
154 
155 	memset(&res, 0, sizeof(res));
156 
157 	res.mmio_base = sdev->bar[HDA_DSP_BAR];
158 	res.irq = sdev->ipc_irq;
159 	res.handle = hdev->info.handle;
160 	res.parent = sdev->dev;
161 	res.ops = &sdw_callback;
162 	res.dev = sdev->dev;
163 	res.clock_stop_quirks = sdw_clock_stop_quirks;
164 
165 	/*
166 	 * ops and arg fields are not populated for now,
167 	 * they will be needed when the DAI callbacks are
168 	 * provided
169 	 */
170 
171 	/* we could filter links here if needed, e.g for quirks */
172 	res.count = hdev->info.count;
173 	res.link_mask = hdev->info.link_mask;
174 
175 	sdw = sdw_intel_probe(&res);
176 	if (!sdw) {
177 		dev_err(sdev->dev, "error: SoundWire probe failed\n");
178 		return -EINVAL;
179 	}
180 
181 	/* save context */
182 	hdev->sdw = sdw;
183 
184 	return 0;
185 }
186 
187 int hda_sdw_startup(struct snd_sof_dev *sdev)
188 {
189 	struct sof_intel_hda_dev *hdev;
190 	struct snd_sof_pdata *pdata = sdev->pdata;
191 
192 	hdev = sdev->pdata->hw_pdata;
193 
194 	if (!hdev->sdw)
195 		return 0;
196 
197 	if (pdata->machine && !pdata->machine->mach_params.link_mask)
198 		return 0;
199 
200 	return sdw_intel_startup(hdev->sdw);
201 }
202 
203 static int hda_sdw_exit(struct snd_sof_dev *sdev)
204 {
205 	struct sof_intel_hda_dev *hdev;
206 
207 	hdev = sdev->pdata->hw_pdata;
208 
209 	hda_sdw_int_enable(sdev, false);
210 
211 	if (hdev->sdw)
212 		sdw_intel_exit(hdev->sdw);
213 	hdev->sdw = NULL;
214 
215 	return 0;
216 }
217 
218 static bool hda_dsp_check_sdw_irq(struct snd_sof_dev *sdev)
219 {
220 	struct sof_intel_hda_dev *hdev;
221 	bool ret = false;
222 	u32 irq_status;
223 
224 	hdev = sdev->pdata->hw_pdata;
225 
226 	if (!hdev->sdw)
227 		return ret;
228 
229 	/* store status */
230 	irq_status = snd_sof_dsp_read(sdev, HDA_DSP_BAR, HDA_DSP_REG_ADSPIS2);
231 
232 	/* invalid message ? */
233 	if (irq_status == 0xffffffff)
234 		goto out;
235 
236 	/* SDW message ? */
237 	if (irq_status & HDA_DSP_REG_ADSPIS2_SNDW)
238 		ret = true;
239 
240 out:
241 	return ret;
242 }
243 
244 static irqreturn_t hda_dsp_sdw_thread(int irq, void *context)
245 {
246 	return sdw_intel_thread(irq, context);
247 }
248 
249 static bool hda_sdw_check_wakeen_irq(struct snd_sof_dev *sdev)
250 {
251 	struct sof_intel_hda_dev *hdev;
252 
253 	hdev = sdev->pdata->hw_pdata;
254 	if (hdev->sdw &&
255 	    snd_sof_dsp_read(sdev, HDA_DSP_BAR,
256 			     HDA_DSP_REG_SNDW_WAKE_STS))
257 		return true;
258 
259 	return false;
260 }
261 
262 void hda_sdw_process_wakeen(struct snd_sof_dev *sdev)
263 {
264 	struct sof_intel_hda_dev *hdev;
265 
266 	hdev = sdev->pdata->hw_pdata;
267 	if (!hdev->sdw)
268 		return;
269 
270 	sdw_intel_process_wakeen_event(hdev->sdw);
271 }
272 
273 #endif
274 
275 /*
276  * Debug
277  */
278 
279 struct hda_dsp_msg_code {
280 	u32 code;
281 	const char *msg;
282 };
283 
284 #if IS_ENABLED(CONFIG_SND_SOC_SOF_DEBUG)
285 static bool hda_use_msi = true;
286 module_param_named(use_msi, hda_use_msi, bool, 0444);
287 MODULE_PARM_DESC(use_msi, "SOF HDA use PCI MSI mode");
288 #else
289 #define hda_use_msi	(1)
290 #endif
291 
292 static char *hda_model;
293 module_param(hda_model, charp, 0444);
294 MODULE_PARM_DESC(hda_model, "Use the given HDA board model.");
295 
296 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA) || IS_ENABLED(CONFIG_SND_SOC_SOF_INTEL_SOUNDWIRE)
297 static int hda_dmic_num = -1;
298 module_param_named(dmic_num, hda_dmic_num, int, 0444);
299 MODULE_PARM_DESC(dmic_num, "SOF HDA DMIC number");
300 #endif
301 
302 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA)
303 static bool hda_codec_use_common_hdmi = IS_ENABLED(CONFIG_SND_HDA_CODEC_HDMI);
304 module_param_named(use_common_hdmi, hda_codec_use_common_hdmi, bool, 0444);
305 MODULE_PARM_DESC(use_common_hdmi, "SOF HDA use common HDMI codec driver");
306 #endif
307 
308 static const struct hda_dsp_msg_code hda_dsp_rom_msg[] = {
309 	{HDA_DSP_ROM_FW_MANIFEST_LOADED, "status: manifest loaded"},
310 	{HDA_DSP_ROM_FW_FW_LOADED, "status: fw loaded"},
311 	{HDA_DSP_ROM_FW_ENTERED, "status: fw entered"},
312 	{HDA_DSP_ROM_CSE_ERROR, "error: cse error"},
313 	{HDA_DSP_ROM_CSE_WRONG_RESPONSE, "error: cse wrong response"},
314 	{HDA_DSP_ROM_IMR_TO_SMALL, "error: IMR too small"},
315 	{HDA_DSP_ROM_BASE_FW_NOT_FOUND, "error: base fw not found"},
316 	{HDA_DSP_ROM_CSE_VALIDATION_FAILED, "error: signature verification failed"},
317 	{HDA_DSP_ROM_IPC_FATAL_ERROR, "error: ipc fatal error"},
318 	{HDA_DSP_ROM_L2_CACHE_ERROR, "error: L2 cache error"},
319 	{HDA_DSP_ROM_LOAD_OFFSET_TO_SMALL, "error: load offset too small"},
320 	{HDA_DSP_ROM_API_PTR_INVALID, "error: API ptr invalid"},
321 	{HDA_DSP_ROM_BASEFW_INCOMPAT, "error: base fw incompatible"},
322 	{HDA_DSP_ROM_UNHANDLED_INTERRUPT, "error: unhandled interrupt"},
323 	{HDA_DSP_ROM_MEMORY_HOLE_ECC, "error: ECC memory hole"},
324 	{HDA_DSP_ROM_KERNEL_EXCEPTION, "error: kernel exception"},
325 	{HDA_DSP_ROM_USER_EXCEPTION, "error: user exception"},
326 	{HDA_DSP_ROM_UNEXPECTED_RESET, "error: unexpected reset"},
327 	{HDA_DSP_ROM_NULL_FW_ENTRY,	"error: null FW entry point"},
328 };
329 
330 static void hda_dsp_get_status(struct snd_sof_dev *sdev)
331 {
332 	u32 status;
333 	int i;
334 
335 	status = snd_sof_dsp_read(sdev, HDA_DSP_BAR,
336 				  HDA_DSP_SRAM_REG_ROM_STATUS);
337 
338 	for (i = 0; i < ARRAY_SIZE(hda_dsp_rom_msg); i++) {
339 		if (status == hda_dsp_rom_msg[i].code) {
340 			dev_err(sdev->dev, "%s - code %8.8x\n",
341 				hda_dsp_rom_msg[i].msg, status);
342 			return;
343 		}
344 	}
345 
346 	/* not for us, must be generic sof message */
347 	dev_dbg(sdev->dev, "unknown ROM status value %8.8x\n", status);
348 }
349 
350 static void hda_dsp_get_registers(struct snd_sof_dev *sdev,
351 				  struct sof_ipc_dsp_oops_xtensa *xoops,
352 				  struct sof_ipc_panic_info *panic_info,
353 				  u32 *stack, size_t stack_words)
354 {
355 	u32 offset = sdev->dsp_oops_offset;
356 
357 	/* first read registers */
358 	sof_mailbox_read(sdev, offset, xoops, sizeof(*xoops));
359 
360 	/* note: variable AR register array is not read */
361 
362 	/* then get panic info */
363 	if (xoops->arch_hdr.totalsize > EXCEPT_MAX_HDR_SIZE) {
364 		dev_err(sdev->dev, "invalid header size 0x%x. FW oops is bogus\n",
365 			xoops->arch_hdr.totalsize);
366 		return;
367 	}
368 	offset += xoops->arch_hdr.totalsize;
369 	sof_block_read(sdev, sdev->mmio_bar, offset,
370 		       panic_info, sizeof(*panic_info));
371 
372 	/* then get the stack */
373 	offset += sizeof(*panic_info);
374 	sof_block_read(sdev, sdev->mmio_bar, offset, stack,
375 		       stack_words * sizeof(u32));
376 }
377 
378 /* dump the first 8 dwords representing the extended ROM status */
379 static void hda_dsp_dump_ext_rom_status(struct snd_sof_dev *sdev, u32 flags)
380 {
381 	char msg[128];
382 	int len = 0;
383 	u32 value;
384 	int i;
385 
386 	for (i = 0; i < HDA_EXT_ROM_STATUS_SIZE; i++) {
387 		value = snd_sof_dsp_read(sdev, HDA_DSP_BAR, HDA_DSP_SRAM_REG_ROM_STATUS + i * 0x4);
388 		len += snprintf(msg + len, sizeof(msg) - len, " 0x%x", value);
389 	}
390 
391 	sof_dev_dbg_or_err(sdev->dev, flags & SOF_DBG_DUMP_FORCE_ERR_LEVEL,
392 			   "extended rom status: %s", msg);
393 
394 }
395 
396 void hda_dsp_dump(struct snd_sof_dev *sdev, u32 flags)
397 {
398 	struct sof_ipc_dsp_oops_xtensa xoops;
399 	struct sof_ipc_panic_info panic_info;
400 	u32 stack[HDA_DSP_STACK_DUMP_SIZE];
401 
402 	/* print ROM/FW status */
403 	hda_dsp_get_status(sdev);
404 
405 	/* print panic info if FW boot is complete. Otherwise, print the extended ROM status */
406 	if (sdev->fw_state == SOF_FW_BOOT_COMPLETE) {
407 		u32 status = snd_sof_dsp_read(sdev, HDA_DSP_BAR, HDA_DSP_SRAM_REG_FW_STATUS);
408 		u32 panic = snd_sof_dsp_read(sdev, HDA_DSP_BAR, HDA_DSP_SRAM_REG_FW_TRACEP);
409 
410 		hda_dsp_get_registers(sdev, &xoops, &panic_info, stack,
411 				      HDA_DSP_STACK_DUMP_SIZE);
412 		snd_sof_get_status(sdev, status, panic, &xoops, &panic_info,
413 				   stack, HDA_DSP_STACK_DUMP_SIZE);
414 	} else {
415 		hda_dsp_dump_ext_rom_status(sdev, flags);
416 	}
417 }
418 
419 void hda_ipc_irq_dump(struct snd_sof_dev *sdev)
420 {
421 	struct hdac_bus *bus = sof_to_bus(sdev);
422 	u32 adspis;
423 	u32 intsts;
424 	u32 intctl;
425 	u32 ppsts;
426 	u8 rirbsts;
427 
428 	/* read key IRQ stats and config registers */
429 	adspis = snd_sof_dsp_read(sdev, HDA_DSP_BAR, HDA_DSP_REG_ADSPIS);
430 	intsts = snd_sof_dsp_read(sdev, HDA_DSP_HDA_BAR, SOF_HDA_INTSTS);
431 	intctl = snd_sof_dsp_read(sdev, HDA_DSP_HDA_BAR, SOF_HDA_INTCTL);
432 	ppsts = snd_sof_dsp_read(sdev, HDA_DSP_PP_BAR, SOF_HDA_REG_PP_PPSTS);
433 	rirbsts = snd_hdac_chip_readb(bus, RIRBSTS);
434 
435 	dev_err(sdev->dev,
436 		"error: hda irq intsts 0x%8.8x intlctl 0x%8.8x rirb %2.2x\n",
437 		intsts, intctl, rirbsts);
438 	dev_err(sdev->dev,
439 		"error: dsp irq ppsts 0x%8.8x adspis 0x%8.8x\n",
440 		ppsts, adspis);
441 }
442 
443 void hda_ipc_dump(struct snd_sof_dev *sdev)
444 {
445 	u32 hipcie;
446 	u32 hipct;
447 	u32 hipcctl;
448 
449 	hda_ipc_irq_dump(sdev);
450 
451 	/* read IPC status */
452 	hipcie = snd_sof_dsp_read(sdev, HDA_DSP_BAR, HDA_DSP_REG_HIPCIE);
453 	hipct = snd_sof_dsp_read(sdev, HDA_DSP_BAR, HDA_DSP_REG_HIPCT);
454 	hipcctl = snd_sof_dsp_read(sdev, HDA_DSP_BAR, HDA_DSP_REG_HIPCCTL);
455 
456 	/* dump the IPC regs */
457 	/* TODO: parse the raw msg */
458 	dev_err(sdev->dev,
459 		"error: host status 0x%8.8x dsp status 0x%8.8x mask 0x%8.8x\n",
460 		hipcie, hipct, hipcctl);
461 }
462 
463 static int hda_init(struct snd_sof_dev *sdev)
464 {
465 	struct hda_bus *hbus;
466 	struct hdac_bus *bus;
467 	struct pci_dev *pci = to_pci_dev(sdev->dev);
468 	int ret;
469 
470 	hbus = sof_to_hbus(sdev);
471 	bus = sof_to_bus(sdev);
472 
473 	/* HDA bus init */
474 	sof_hda_bus_init(bus, &pci->dev);
475 
476 	bus->use_posbuf = 1;
477 	bus->bdl_pos_adj = 0;
478 	bus->sync_write = 1;
479 
480 	mutex_init(&hbus->prepare_mutex);
481 	hbus->pci = pci;
482 	hbus->mixer_assigned = -1;
483 	hbus->modelname = hda_model;
484 
485 	/* initialise hdac bus */
486 	bus->addr = pci_resource_start(pci, 0);
487 	bus->remap_addr = pci_ioremap_bar(pci, 0);
488 	if (!bus->remap_addr) {
489 		dev_err(bus->dev, "error: ioremap error\n");
490 		return -ENXIO;
491 	}
492 
493 	/* HDA base */
494 	sdev->bar[HDA_DSP_HDA_BAR] = bus->remap_addr;
495 
496 	/* init i915 and HDMI codecs */
497 	ret = hda_codec_i915_init(sdev);
498 	if (ret < 0)
499 		dev_warn(sdev->dev, "init of i915 and HDMI codec failed\n");
500 
501 	/* get controller capabilities */
502 	ret = hda_dsp_ctrl_get_caps(sdev);
503 	if (ret < 0)
504 		dev_err(sdev->dev, "error: get caps error\n");
505 
506 	return ret;
507 }
508 
509 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA) || IS_ENABLED(CONFIG_SND_SOC_SOF_INTEL_SOUNDWIRE)
510 
511 static int check_nhlt_dmic(struct snd_sof_dev *sdev)
512 {
513 	struct nhlt_acpi_table *nhlt;
514 	int dmic_num;
515 
516 	nhlt = intel_nhlt_init(sdev->dev);
517 	if (nhlt) {
518 		dmic_num = intel_nhlt_get_dmic_geo(sdev->dev, nhlt);
519 		intel_nhlt_free(nhlt);
520 		if (dmic_num >= 1 && dmic_num <= 4)
521 			return dmic_num;
522 	}
523 
524 	return 0;
525 }
526 
527 static const char *fixup_tplg_name(struct snd_sof_dev *sdev,
528 				   const char *sof_tplg_filename,
529 				   const char *idisp_str,
530 				   const char *dmic_str)
531 {
532 	const char *tplg_filename = NULL;
533 	char *filename, *tmp;
534 	const char *split_ext;
535 
536 	filename = kstrdup(sof_tplg_filename, GFP_KERNEL);
537 	if (!filename)
538 		return NULL;
539 
540 	/* this assumes a .tplg extension */
541 	tmp = filename;
542 	split_ext = strsep(&tmp, ".");
543 	if (split_ext)
544 		tplg_filename = devm_kasprintf(sdev->dev, GFP_KERNEL,
545 					       "%s%s%s.tplg",
546 					       split_ext, idisp_str, dmic_str);
547 	kfree(filename);
548 
549 	return tplg_filename;
550 }
551 
552 static int dmic_topology_fixup(struct snd_sof_dev *sdev,
553 			       const char **tplg_filename,
554 			       const char *idisp_str,
555 			       int *dmic_found)
556 {
557 	const char *default_tplg_filename = *tplg_filename;
558 	const char *fixed_tplg_filename;
559 	const char *dmic_str;
560 	int dmic_num;
561 
562 	/* first check NHLT for DMICs */
563 	dmic_num = check_nhlt_dmic(sdev);
564 
565 	/* allow for module parameter override */
566 	if (hda_dmic_num != -1) {
567 		dev_dbg(sdev->dev,
568 			"overriding DMICs detected in NHLT tables %d by kernel param %d\n",
569 			dmic_num, hda_dmic_num);
570 		dmic_num = hda_dmic_num;
571 	}
572 
573 	switch (dmic_num) {
574 	case 1:
575 		dmic_str = "-1ch";
576 		break;
577 	case 2:
578 		dmic_str = "-2ch";
579 		break;
580 	case 3:
581 		dmic_str = "-3ch";
582 		break;
583 	case 4:
584 		dmic_str = "-4ch";
585 		break;
586 	default:
587 		dmic_num = 0;
588 		dmic_str = "";
589 		break;
590 	}
591 
592 	fixed_tplg_filename = fixup_tplg_name(sdev, default_tplg_filename,
593 					      idisp_str, dmic_str);
594 	if (!fixed_tplg_filename)
595 		return -ENOMEM;
596 
597 	dev_info(sdev->dev, "DMICs detected in NHLT tables: %d\n", dmic_num);
598 	*dmic_found = dmic_num;
599 	*tplg_filename = fixed_tplg_filename;
600 
601 	return 0;
602 }
603 #endif
604 
605 static int hda_init_caps(struct snd_sof_dev *sdev)
606 {
607 	struct hdac_bus *bus = sof_to_bus(sdev);
608 	struct snd_sof_pdata *pdata = sdev->pdata;
609 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA)
610 	struct hdac_ext_link *hlink;
611 #endif
612 	struct sof_intel_hda_dev *hdev = pdata->hw_pdata;
613 	u32 link_mask;
614 	int ret = 0;
615 
616 	/* check if dsp is there */
617 	if (bus->ppcap)
618 		dev_dbg(sdev->dev, "PP capability, will probe DSP later.\n");
619 
620 	/* Init HDA controller after i915 init */
621 	ret = hda_dsp_ctrl_init_chip(sdev, true);
622 	if (ret < 0) {
623 		dev_err(bus->dev, "error: init chip failed with ret: %d\n",
624 			ret);
625 		return ret;
626 	}
627 
628 	/* scan SoundWire capabilities exposed by DSDT */
629 	ret = hda_sdw_acpi_scan(sdev);
630 	if (ret < 0) {
631 		dev_dbg(sdev->dev, "skipping SoundWire, not detected with ACPI scan\n");
632 		goto skip_soundwire;
633 	}
634 
635 	link_mask = hdev->info.link_mask;
636 	if (!link_mask) {
637 		dev_dbg(sdev->dev, "skipping SoundWire, no links enabled\n");
638 		goto skip_soundwire;
639 	}
640 
641 	/*
642 	 * probe/allocate SoundWire resources.
643 	 * The hardware configuration takes place in hda_sdw_startup
644 	 * after power rails are enabled.
645 	 * It's entirely possible to have a mix of I2S/DMIC/SoundWire
646 	 * devices, so we allocate the resources in all cases.
647 	 */
648 	ret = hda_sdw_probe(sdev);
649 	if (ret < 0) {
650 		dev_err(sdev->dev, "error: SoundWire probe error\n");
651 		return ret;
652 	}
653 
654 skip_soundwire:
655 
656 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA)
657 	if (bus->mlcap)
658 		snd_hdac_ext_bus_get_ml_capabilities(bus);
659 
660 	/* create codec instances */
661 	hda_codec_probe_bus(sdev, hda_codec_use_common_hdmi);
662 
663 	if (!HDA_IDISP_CODEC(bus->codec_mask))
664 		hda_codec_i915_display_power(sdev, false);
665 
666 	/*
667 	 * we are done probing so decrement link counts
668 	 */
669 	list_for_each_entry(hlink, &bus->hlink_list, list)
670 		snd_hdac_ext_bus_link_put(bus, hlink);
671 #endif
672 	return 0;
673 }
674 
675 static const struct sof_intel_dsp_desc
676 	*get_chip_info(struct snd_sof_pdata *pdata)
677 {
678 	const struct sof_dev_desc *desc = pdata->desc;
679 	const struct sof_intel_dsp_desc *chip_info;
680 
681 	chip_info = desc->chip_info;
682 
683 	return chip_info;
684 }
685 
686 static irqreturn_t hda_dsp_interrupt_handler(int irq, void *context)
687 {
688 	struct snd_sof_dev *sdev = context;
689 
690 	/*
691 	 * Get global interrupt status. It includes all hardware interrupt
692 	 * sources in the Intel HD Audio controller.
693 	 */
694 	if (snd_sof_dsp_read(sdev, HDA_DSP_HDA_BAR, SOF_HDA_INTSTS) &
695 	    SOF_HDA_INTSTS_GIS) {
696 
697 		/* disable GIE interrupt */
698 		snd_sof_dsp_update_bits(sdev, HDA_DSP_HDA_BAR,
699 					SOF_HDA_INTCTL,
700 					SOF_HDA_INT_GLOBAL_EN,
701 					0);
702 
703 		return IRQ_WAKE_THREAD;
704 	}
705 
706 	return IRQ_NONE;
707 }
708 
709 static irqreturn_t hda_dsp_interrupt_thread(int irq, void *context)
710 {
711 	struct snd_sof_dev *sdev = context;
712 	struct sof_intel_hda_dev *hdev = sdev->pdata->hw_pdata;
713 
714 	/* deal with streams and controller first */
715 	if (hda_dsp_check_stream_irq(sdev))
716 		hda_dsp_stream_threaded_handler(irq, sdev);
717 
718 	if (hda_dsp_check_ipc_irq(sdev))
719 		sof_ops(sdev)->irq_thread(irq, sdev);
720 
721 	if (hda_dsp_check_sdw_irq(sdev))
722 		hda_dsp_sdw_thread(irq, hdev->sdw);
723 
724 	if (hda_sdw_check_wakeen_irq(sdev))
725 		hda_sdw_process_wakeen(sdev);
726 
727 	/* enable GIE interrupt */
728 	snd_sof_dsp_update_bits(sdev, HDA_DSP_HDA_BAR,
729 				SOF_HDA_INTCTL,
730 				SOF_HDA_INT_GLOBAL_EN,
731 				SOF_HDA_INT_GLOBAL_EN);
732 
733 	return IRQ_HANDLED;
734 }
735 
736 int hda_dsp_probe(struct snd_sof_dev *sdev)
737 {
738 	struct pci_dev *pci = to_pci_dev(sdev->dev);
739 	struct sof_intel_hda_dev *hdev;
740 	struct hdac_bus *bus;
741 	const struct sof_intel_dsp_desc *chip;
742 	int ret = 0;
743 
744 	/*
745 	 * detect DSP by checking class/subclass/prog-id information
746 	 * class=04 subclass 03 prog-if 00: no DSP, legacy driver is required
747 	 * class=04 subclass 01 prog-if 00: DSP is present
748 	 *   (and may be required e.g. for DMIC or SSP support)
749 	 * class=04 subclass 03 prog-if 80: either of DSP or legacy mode works
750 	 */
751 	if (pci->class == 0x040300) {
752 		dev_err(sdev->dev, "error: the DSP is not enabled on this platform, aborting probe\n");
753 		return -ENODEV;
754 	} else if (pci->class != 0x040100 && pci->class != 0x040380) {
755 		dev_err(sdev->dev, "error: unknown PCI class/subclass/prog-if 0x%06x found, aborting probe\n", pci->class);
756 		return -ENODEV;
757 	}
758 	dev_info(sdev->dev, "DSP detected with PCI class/subclass/prog-if 0x%06x\n", pci->class);
759 
760 	chip = get_chip_info(sdev->pdata);
761 	if (!chip) {
762 		dev_err(sdev->dev, "error: no such device supported, chip id:%x\n",
763 			pci->device);
764 		ret = -EIO;
765 		goto err;
766 	}
767 
768 	hdev = devm_kzalloc(sdev->dev, sizeof(*hdev), GFP_KERNEL);
769 	if (!hdev)
770 		return -ENOMEM;
771 	sdev->pdata->hw_pdata = hdev;
772 	hdev->desc = chip;
773 
774 	hdev->dmic_dev = platform_device_register_data(sdev->dev, "dmic-codec",
775 						       PLATFORM_DEVID_NONE,
776 						       NULL, 0);
777 	if (IS_ERR(hdev->dmic_dev)) {
778 		dev_err(sdev->dev, "error: failed to create DMIC device\n");
779 		return PTR_ERR(hdev->dmic_dev);
780 	}
781 
782 	/*
783 	 * use position update IPC if either it is forced
784 	 * or we don't have other choice
785 	 */
786 #if IS_ENABLED(CONFIG_SND_SOC_SOF_DEBUG_FORCE_IPC_POSITION)
787 	hdev->no_ipc_position = 0;
788 #else
789 	hdev->no_ipc_position = sof_ops(sdev)->pcm_pointer ? 1 : 0;
790 #endif
791 
792 	/* set up HDA base */
793 	bus = sof_to_bus(sdev);
794 	ret = hda_init(sdev);
795 	if (ret < 0)
796 		goto hdac_bus_unmap;
797 
798 	/* DSP base */
799 	sdev->bar[HDA_DSP_BAR] = pci_ioremap_bar(pci, HDA_DSP_BAR);
800 	if (!sdev->bar[HDA_DSP_BAR]) {
801 		dev_err(sdev->dev, "error: ioremap error\n");
802 		ret = -ENXIO;
803 		goto hdac_bus_unmap;
804 	}
805 
806 	sdev->mmio_bar = HDA_DSP_BAR;
807 	sdev->mailbox_bar = HDA_DSP_BAR;
808 
809 	/* allow 64bit DMA address if supported by H/W */
810 	if (dma_set_mask_and_coherent(&pci->dev, DMA_BIT_MASK(64))) {
811 		dev_dbg(sdev->dev, "DMA mask is 32 bit\n");
812 		dma_set_mask_and_coherent(&pci->dev, DMA_BIT_MASK(32));
813 	}
814 
815 	/* init streams */
816 	ret = hda_dsp_stream_init(sdev);
817 	if (ret < 0) {
818 		dev_err(sdev->dev, "error: failed to init streams\n");
819 		/*
820 		 * not all errors are due to memory issues, but trying
821 		 * to free everything does not harm
822 		 */
823 		goto free_streams;
824 	}
825 
826 	/*
827 	 * register our IRQ
828 	 * let's try to enable msi firstly
829 	 * if it fails, use legacy interrupt mode
830 	 * TODO: support msi multiple vectors
831 	 */
832 	if (hda_use_msi && pci_alloc_irq_vectors(pci, 1, 1, PCI_IRQ_MSI) > 0) {
833 		dev_info(sdev->dev, "use msi interrupt mode\n");
834 		sdev->ipc_irq = pci_irq_vector(pci, 0);
835 		/* initialised to "false" by kzalloc() */
836 		sdev->msi_enabled = true;
837 	}
838 
839 	if (!sdev->msi_enabled) {
840 		dev_info(sdev->dev, "use legacy interrupt mode\n");
841 		/*
842 		 * in IO-APIC mode, hda->irq and ipc_irq are using the same
843 		 * irq number of pci->irq
844 		 */
845 		sdev->ipc_irq = pci->irq;
846 	}
847 
848 	dev_dbg(sdev->dev, "using IPC IRQ %d\n", sdev->ipc_irq);
849 	ret = request_threaded_irq(sdev->ipc_irq, hda_dsp_interrupt_handler,
850 				   hda_dsp_interrupt_thread,
851 				   IRQF_SHARED, "AudioDSP", sdev);
852 	if (ret < 0) {
853 		dev_err(sdev->dev, "error: failed to register IPC IRQ %d\n",
854 			sdev->ipc_irq);
855 		goto free_irq_vector;
856 	}
857 
858 	pci_set_master(pci);
859 	synchronize_irq(pci->irq);
860 
861 	/*
862 	 * clear TCSEL to clear playback on some HD Audio
863 	 * codecs. PCI TCSEL is defined in the Intel manuals.
864 	 */
865 	snd_sof_pci_update_bits(sdev, PCI_TCSEL, 0x07, 0);
866 
867 	/* init HDA capabilities */
868 	ret = hda_init_caps(sdev);
869 	if (ret < 0)
870 		goto free_ipc_irq;
871 
872 	/* enable ppcap interrupt */
873 	hda_dsp_ctrl_ppcap_enable(sdev, true);
874 	hda_dsp_ctrl_ppcap_int_enable(sdev, true);
875 
876 	/* set default mailbox offset for FW ready message */
877 	sdev->dsp_box.offset = HDA_DSP_MBOX_UPLINK_OFFSET;
878 
879 	INIT_DELAYED_WORK(&hdev->d0i3_work, hda_dsp_d0i3_work);
880 
881 	return 0;
882 
883 free_ipc_irq:
884 	free_irq(sdev->ipc_irq, sdev);
885 free_irq_vector:
886 	if (sdev->msi_enabled)
887 		pci_free_irq_vectors(pci);
888 free_streams:
889 	hda_dsp_stream_free(sdev);
890 /* dsp_unmap: not currently used */
891 	iounmap(sdev->bar[HDA_DSP_BAR]);
892 hdac_bus_unmap:
893 	platform_device_unregister(hdev->dmic_dev);
894 	iounmap(bus->remap_addr);
895 	hda_codec_i915_exit(sdev);
896 err:
897 	return ret;
898 }
899 
900 int hda_dsp_remove(struct snd_sof_dev *sdev)
901 {
902 	struct sof_intel_hda_dev *hda = sdev->pdata->hw_pdata;
903 	struct hdac_bus *bus = sof_to_bus(sdev);
904 	struct pci_dev *pci = to_pci_dev(sdev->dev);
905 	const struct sof_intel_dsp_desc *chip = hda->desc;
906 
907 	/* cancel any attempt for DSP D0I3 */
908 	cancel_delayed_work_sync(&hda->d0i3_work);
909 
910 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA)
911 	/* codec removal, invoke bus_device_remove */
912 	snd_hdac_ext_bus_device_remove(bus);
913 #endif
914 
915 	hda_sdw_exit(sdev);
916 
917 	if (!IS_ERR_OR_NULL(hda->dmic_dev))
918 		platform_device_unregister(hda->dmic_dev);
919 
920 	/* disable DSP IRQ */
921 	snd_sof_dsp_update_bits(sdev, HDA_DSP_PP_BAR, SOF_HDA_REG_PP_PPCTL,
922 				SOF_HDA_PPCTL_PIE, 0);
923 
924 	/* disable CIE and GIE interrupts */
925 	snd_sof_dsp_update_bits(sdev, HDA_DSP_HDA_BAR, SOF_HDA_INTCTL,
926 				SOF_HDA_INT_CTRL_EN | SOF_HDA_INT_GLOBAL_EN, 0);
927 
928 	/* disable cores */
929 	if (chip)
930 		snd_sof_dsp_core_power_down(sdev, chip->host_managed_cores_mask);
931 
932 	/* disable DSP */
933 	snd_sof_dsp_update_bits(sdev, HDA_DSP_PP_BAR, SOF_HDA_REG_PP_PPCTL,
934 				SOF_HDA_PPCTL_GPROCEN, 0);
935 
936 	free_irq(sdev->ipc_irq, sdev);
937 	if (sdev->msi_enabled)
938 		pci_free_irq_vectors(pci);
939 
940 	hda_dsp_stream_free(sdev);
941 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA)
942 	snd_hdac_link_free_all(bus);
943 #endif
944 
945 	iounmap(sdev->bar[HDA_DSP_BAR]);
946 	iounmap(bus->remap_addr);
947 
948 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA)
949 	snd_hdac_ext_bus_exit(bus);
950 #endif
951 	hda_codec_i915_exit(sdev);
952 
953 	return 0;
954 }
955 
956 #if IS_ENABLED(CONFIG_SND_SOC_SOF_HDA)
957 static int hda_generic_machine_select(struct snd_sof_dev *sdev)
958 {
959 	struct hdac_bus *bus = sof_to_bus(sdev);
960 	struct snd_soc_acpi_mach_params *mach_params;
961 	struct snd_soc_acpi_mach *hda_mach;
962 	struct snd_sof_pdata *pdata = sdev->pdata;
963 	const char *tplg_filename;
964 	const char *idisp_str;
965 	int dmic_num = 0;
966 	int codec_num = 0;
967 	int ret;
968 	int i;
969 
970 	/* codec detection */
971 	if (!bus->codec_mask) {
972 		dev_info(bus->dev, "no hda codecs found!\n");
973 	} else {
974 		dev_info(bus->dev, "hda codecs found, mask %lx\n",
975 			 bus->codec_mask);
976 
977 		for (i = 0; i < HDA_MAX_CODECS; i++) {
978 			if (bus->codec_mask & (1 << i))
979 				codec_num++;
980 		}
981 
982 		/*
983 		 * If no machine driver is found, then:
984 		 *
985 		 * generic hda machine driver can handle:
986 		 *  - one HDMI codec, and/or
987 		 *  - one external HDAudio codec
988 		 */
989 		if (!pdata->machine && codec_num <= 2) {
990 			hda_mach = snd_soc_acpi_intel_hda_machines;
991 
992 			dev_info(bus->dev, "using HDA machine driver %s now\n",
993 				 hda_mach->drv_name);
994 
995 			if (codec_num == 1 && HDA_IDISP_CODEC(bus->codec_mask))
996 				idisp_str = "-idisp";
997 			else
998 				idisp_str = "";
999 
1000 			/* topology: use the info from hda_machines */
1001 			tplg_filename = hda_mach->sof_tplg_filename;
1002 			ret = dmic_topology_fixup(sdev, &tplg_filename, idisp_str, &dmic_num);
1003 			if (ret < 0)
1004 				return ret;
1005 
1006 			hda_mach->mach_params.dmic_num = dmic_num;
1007 			pdata->machine = hda_mach;
1008 			pdata->tplg_filename = tplg_filename;
1009 
1010 			if (codec_num == 2) {
1011 				/*
1012 				 * Prevent SoundWire links from starting when an external
1013 				 * HDaudio codec is used
1014 				 */
1015 				hda_mach->mach_params.link_mask = 0;
1016 			}
1017 		}
1018 	}
1019 
1020 	/* used by hda machine driver to create dai links */
1021 	if (pdata->machine) {
1022 		mach_params = (struct snd_soc_acpi_mach_params *)
1023 			&pdata->machine->mach_params;
1024 		mach_params->codec_mask = bus->codec_mask;
1025 		mach_params->common_hdmi_codec_drv = hda_codec_use_common_hdmi;
1026 	}
1027 
1028 	return 0;
1029 }
1030 #else
1031 static int hda_generic_machine_select(struct snd_sof_dev *sdev)
1032 {
1033 	return 0;
1034 }
1035 #endif
1036 
1037 #if IS_ENABLED(CONFIG_SND_SOC_SOF_INTEL_SOUNDWIRE)
1038 /* Check if all Slaves defined on the link can be found */
1039 static bool link_slaves_found(struct snd_sof_dev *sdev,
1040 			      const struct snd_soc_acpi_link_adr *link,
1041 			      struct sdw_intel_ctx *sdw)
1042 {
1043 	struct hdac_bus *bus = sof_to_bus(sdev);
1044 	struct sdw_intel_slave_id *ids = sdw->ids;
1045 	int num_slaves = sdw->num_slaves;
1046 	unsigned int part_id, link_id, unique_id, mfg_id;
1047 	int i, j, k;
1048 
1049 	for (i = 0; i < link->num_adr; i++) {
1050 		u64 adr = link->adr_d[i].adr;
1051 		int reported_part_count = 0;
1052 
1053 		mfg_id = SDW_MFG_ID(adr);
1054 		part_id = SDW_PART_ID(adr);
1055 		link_id = SDW_DISCO_LINK_ID(adr);
1056 
1057 		for (j = 0; j < num_slaves; j++) {
1058 			/* find out how many identical parts were reported on that link */
1059 			if (ids[j].link_id == link_id &&
1060 			    ids[j].id.part_id == part_id &&
1061 			    ids[j].id.mfg_id == mfg_id)
1062 				reported_part_count++;
1063 		}
1064 
1065 		for (j = 0; j < num_slaves; j++) {
1066 			int expected_part_count = 0;
1067 
1068 			if (ids[j].link_id != link_id ||
1069 			    ids[j].id.part_id != part_id ||
1070 			    ids[j].id.mfg_id != mfg_id)
1071 				continue;
1072 
1073 			/* find out how many identical parts are expected */
1074 			for (k = 0; k < link->num_adr; k++) {
1075 				u64 adr2 = link->adr_d[k].adr;
1076 				unsigned int part_id2, link_id2, mfg_id2;
1077 
1078 				mfg_id2 = SDW_MFG_ID(adr2);
1079 				part_id2 = SDW_PART_ID(adr2);
1080 				link_id2 = SDW_DISCO_LINK_ID(adr2);
1081 
1082 				if (link_id2 == link_id &&
1083 				    part_id2 == part_id &&
1084 				    mfg_id2 == mfg_id)
1085 					expected_part_count++;
1086 			}
1087 
1088 			if (reported_part_count == expected_part_count) {
1089 				/*
1090 				 * we have to check unique id
1091 				 * if there is more than one
1092 				 * Slave on the link
1093 				 */
1094 				unique_id = SDW_UNIQUE_ID(adr);
1095 				if (reported_part_count == 1 ||
1096 				    ids[j].id.unique_id == unique_id) {
1097 					dev_dbg(bus->dev, "found %x at link %d\n",
1098 						part_id, link_id);
1099 					break;
1100 				}
1101 			} else {
1102 				dev_dbg(bus->dev, "part %x reported %d expected %d on link %d, skipping\n",
1103 					part_id, reported_part_count, expected_part_count, link_id);
1104 			}
1105 		}
1106 		if (j == num_slaves) {
1107 			dev_dbg(bus->dev,
1108 				"Slave %x not found\n",
1109 				part_id);
1110 			return false;
1111 		}
1112 	}
1113 	return true;
1114 }
1115 
1116 static int hda_sdw_machine_select(struct snd_sof_dev *sdev)
1117 {
1118 	struct snd_sof_pdata *pdata = sdev->pdata;
1119 	const struct snd_soc_acpi_link_adr *link;
1120 	struct snd_soc_acpi_mach *mach;
1121 	struct sof_intel_hda_dev *hdev;
1122 	u32 link_mask;
1123 	int i;
1124 
1125 	hdev = pdata->hw_pdata;
1126 	link_mask = hdev->info.link_mask;
1127 
1128 	/*
1129 	 * Select SoundWire machine driver if needed using the
1130 	 * alternate tables. This case deals with SoundWire-only
1131 	 * machines, for mixed cases with I2C/I2S the detection relies
1132 	 * on the HID list.
1133 	 */
1134 	if (link_mask && !pdata->machine) {
1135 		for (mach = pdata->desc->alt_machines;
1136 		     mach && mach->link_mask; mach++) {
1137 			/*
1138 			 * On some platforms such as Up Extreme all links
1139 			 * are enabled but only one link can be used by
1140 			 * external codec. Instead of exact match of two masks,
1141 			 * first check whether link_mask of mach is subset of
1142 			 * link_mask supported by hw and then go on searching
1143 			 * link_adr
1144 			 */
1145 			if (~link_mask & mach->link_mask)
1146 				continue;
1147 
1148 			/* No need to match adr if there is no links defined */
1149 			if (!mach->links)
1150 				break;
1151 
1152 			link = mach->links;
1153 			for (i = 0; i < hdev->info.count && link->num_adr;
1154 			     i++, link++) {
1155 				/*
1156 				 * Try next machine if any expected Slaves
1157 				 * are not found on this link.
1158 				 */
1159 				if (!link_slaves_found(sdev, link, hdev->sdw))
1160 					break;
1161 			}
1162 			/* Found if all Slaves are checked */
1163 			if (i == hdev->info.count || !link->num_adr)
1164 				break;
1165 		}
1166 		if (mach && mach->link_mask) {
1167 			int dmic_num = 0;
1168 
1169 			pdata->machine = mach;
1170 			mach->mach_params.links = mach->links;
1171 			mach->mach_params.link_mask = mach->link_mask;
1172 			mach->mach_params.platform = dev_name(sdev->dev);
1173 			if (mach->sof_fw_filename)
1174 				pdata->fw_filename = mach->sof_fw_filename;
1175 			else
1176 				pdata->fw_filename = pdata->desc->default_fw_filename;
1177 			pdata->tplg_filename = mach->sof_tplg_filename;
1178 
1179 			/*
1180 			 * DMICs use up to 4 pins and are typically pin-muxed with SoundWire
1181 			 * link 2 and 3, thus we only try to enable dmics if all conditions
1182 			 * are true:
1183 			 * a) link 2 and 3 are not used by SoundWire
1184 			 * b) the NHLT table reports the presence of microphones
1185 			 */
1186 			if (!(mach->link_mask & GENMASK(3, 2))) {
1187 				const char *tplg_filename = mach->sof_tplg_filename;
1188 				int ret;
1189 
1190 				ret = dmic_topology_fixup(sdev, &tplg_filename, "", &dmic_num);
1191 
1192 				if (ret < 0)
1193 					return ret;
1194 
1195 				pdata->tplg_filename = tplg_filename;
1196 			}
1197 			mach->mach_params.dmic_num = dmic_num;
1198 
1199 			dev_dbg(sdev->dev,
1200 				"SoundWire machine driver %s topology %s\n",
1201 				mach->drv_name,
1202 				pdata->tplg_filename);
1203 		} else {
1204 			dev_info(sdev->dev,
1205 				 "No SoundWire machine driver found\n");
1206 		}
1207 	}
1208 
1209 	return 0;
1210 }
1211 #else
1212 static int hda_sdw_machine_select(struct snd_sof_dev *sdev)
1213 {
1214 	return 0;
1215 }
1216 #endif
1217 
1218 void hda_set_mach_params(const struct snd_soc_acpi_mach *mach,
1219 			 struct snd_sof_dev *sdev)
1220 {
1221 	struct snd_sof_pdata *pdata = sdev->pdata;
1222 	const struct sof_dev_desc *desc = pdata->desc;
1223 	struct snd_soc_acpi_mach_params *mach_params;
1224 
1225 	mach_params = (struct snd_soc_acpi_mach_params *)&mach->mach_params;
1226 	mach_params->platform = dev_name(sdev->dev);
1227 	mach_params->num_dai_drivers = desc->ops->num_drv;
1228 	mach_params->dai_drivers = desc->ops->drv;
1229 }
1230 
1231 void hda_machine_select(struct snd_sof_dev *sdev)
1232 {
1233 	struct snd_sof_pdata *sof_pdata = sdev->pdata;
1234 	const struct sof_dev_desc *desc = sof_pdata->desc;
1235 	struct snd_soc_acpi_mach *mach;
1236 
1237 	mach = snd_soc_acpi_find_machine(desc->machines);
1238 	if (mach) {
1239 		/*
1240 		 * If tplg file name is overridden, use it instead of
1241 		 * the one set in mach table
1242 		 */
1243 		if (!sof_pdata->tplg_filename)
1244 			sof_pdata->tplg_filename = mach->sof_tplg_filename;
1245 
1246 		sof_pdata->machine = mach;
1247 
1248 		if (mach->link_mask) {
1249 			mach->mach_params.links = mach->links;
1250 			mach->mach_params.link_mask = mach->link_mask;
1251 		}
1252 	}
1253 
1254 	/*
1255 	 * If I2S fails, try SoundWire
1256 	 */
1257 	hda_sdw_machine_select(sdev);
1258 
1259 	/*
1260 	 * Choose HDA generic machine driver if mach is NULL.
1261 	 * Otherwise, set certain mach params.
1262 	 */
1263 	hda_generic_machine_select(sdev);
1264 
1265 	if (!sof_pdata->machine)
1266 		dev_warn(sdev->dev, "warning: No matching ASoC machine driver found\n");
1267 }
1268 
1269 int hda_pci_intel_probe(struct pci_dev *pci, const struct pci_device_id *pci_id)
1270 {
1271 	int ret;
1272 
1273 	ret = snd_intel_dsp_driver_probe(pci);
1274 	if (ret != SND_INTEL_DSP_DRIVER_ANY && ret != SND_INTEL_DSP_DRIVER_SOF) {
1275 		dev_dbg(&pci->dev, "SOF PCI driver not selected, aborting probe\n");
1276 		return -ENODEV;
1277 	}
1278 
1279 	return sof_pci_probe(pci, pci_id);
1280 }
1281 EXPORT_SYMBOL_NS(hda_pci_intel_probe, SND_SOC_SOF_INTEL_HDA_COMMON);
1282 
1283 MODULE_LICENSE("Dual BSD/GPL");
1284 MODULE_IMPORT_NS(SND_SOC_SOF_PCI_DEV);
1285 MODULE_IMPORT_NS(SND_SOC_SOF_HDA_AUDIO_CODEC);
1286 MODULE_IMPORT_NS(SND_SOC_SOF_HDA_AUDIO_CODEC_I915);
1287 MODULE_IMPORT_NS(SND_SOC_SOF_XTENSA);
1288 MODULE_IMPORT_NS(SND_INTEL_SOUNDWIRE_ACPI);
1289 MODULE_IMPORT_NS(SOUNDWIRE_INTEL_INIT);
1290