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