← Documents Documentation/sound/hd-audio/notes.rst GitHub 원문 ↗

Linux 6.18.37 · Sound

HD-Audio driver 추가 참고 사항

HD-Audio의 controller DMA/IRQ/probing, codec model과 capture/output, sysfs 재구성, parser hint, firmware patch, 절전, tracepoint 및 debugging tool을 종합적으로 설명합니다.

Source pathDocumentation/sound/hd-audio/notes.rst
Source versionLinux v6.18.37
TranslationDUJINLABS 전문 번역 + 해설

요약·해설과 원문, 전문 번역을 서로 분리했습니다. API 이름, symbol, source path는 원문 표기를 사용합니다.

1. 요약·해설

원문의 핵심 논리와 kernel programming 관점의 보충 설명입니다. 아래의 전문 번역과는 별도로 작성했습니다.

요약·해설

notes.rst:1-892

HD-Audio의 controller DMA/IRQ/probing, codec model과 capture/output, sysfs 재구성, parser hint, firmware patch, 절전, tracepoint 및 debugging tool을 종합적으로 설명합니다.

문제 해결의 핵심은 controller 문제와 codec 구성 문제를 분리하는 것입니다. 반복음과 timeout은 DMA 위치/codec slot/interrupt를 먼저 보고, 무음과 jack/mic 문제는 codec proc-file, mixer, pin default, model fixup을 확인합니다.

증상별 첫 확인
증상첫 확인
반복음/위치 이상position_fix, bdl_pos_adj
azx_get_response timeoutpolling/single_cmd 구분, probe_mask
Stuttering/lock-upenable_msi=0 비교
Speaker/headphone 무음Mixer, EAPD/GPIO, model fixup
Capture 무음Capture Source/Volume/Switch, Mic Boost
Jack/mic 자동 전환 실패Pin default, hints, model, hda-jack-retask

긴 문서에서 진단 출발점을 빠르게 찾는 표입니다.

HD-Audio 전체 debugging 흐름
alsa-info와 codec proc-file 수집Controller option과 codec model 비교Sysfs reconfig/hints로 임시 검증Tracepoint와 hda-verb/hda-analyzer 분석hda-emu 재현Driver fixup 또는 firmware patch 및 upstream report

비파괴 정보 수집에서 raw verb와 patch로 점진적으로 이동합니다.

2. 영어 원문 전체

번역 기준이 된 Linux v6.18.37 원문입니다. 줄 번호는 이 버전의 파일 좌표입니다.

원문 전체 펼치기
1 =============================
2 More Notes on HD-Audio Driver
3 =============================
4
5 Takashi Iwai <tiwai@suse.de>
6
7
8 General
9 =======
10
11 HD-audio is the new standard on-board audio component on modern PCs
12 after AC97. Although Linux has been supporting HD-audio since long
13 time ago, there are often problems with new machines. A part of the
14 problem is broken BIOS, and the rest is the driver implementation.
15 This document explains the brief trouble-shooting and debugging
16 methods for the HD-audio hardware.
17
18 The HD-audio component consists of two parts: the controller chip and
19 the codec chips on the HD-audio bus. Linux provides a single driver
20 for all controllers, snd-hda-intel. Although the driver name contains
21 a word of a well-known hardware vendor, it's not specific to it but for
22 all controller chips by other companies. Since the HD-audio
23 controllers are supposed to be compatible, the single snd-hda-driver
24 should work in most cases. But, not surprisingly, there are known
25 bugs and issues specific to each controller type. The snd-hda-intel
26 driver has a bunch of workarounds for these as described below.
27
28 A controller may have multiple codecs. Usually you have one audio
29 codec and optionally one modem codec. In theory, there might be
30 multiple audio codecs, e.g. for analog and digital outputs, and the
31 driver might not work properly because of conflict of mixer elements.
32 This should be fixed in future if such hardware really exists.
33
34 The snd-hda-intel driver has several different codec parsers depending
35 on the codec. It has a generic parser as a fallback, but this
36 functionality is fairly limited until now. Instead of the generic
37 parser, usually the codec-specific parser (coded in patch_*.c) is used
38 for the codec-specific implementations. The details about the
39 codec-specific problems are explained in the later sections.
40
41 If you are interested in the deep debugging of HD-audio, read the
42 HD-audio specification at first. The specification is found on
43 Intel's web page, for example:
44
45 * https://www.intel.com/content/www/us/en/standards/high-definition-audio-specification.html
46
47
48 HD-Audio Controller
49 ===================
50
51 DMA-Position Problem
52 --------------------
53 The most common problem of the controller is the inaccurate DMA
54 pointer reporting. The DMA pointer for playback and capture can be
55 read in two ways, either via a LPIB register or via a position-buffer
56 map. As default the driver tries to read from the io-mapped
57 position-buffer, and falls back to LPIB if the position-buffer appears
58 dead. However, this detection isn't perfect on some devices. In such
59 a case, you can change the default method via ``position_fix`` option.
60
61 ``position_fix=1`` means to use LPIB method explicitly.
62 ``position_fix=2`` means to use the position-buffer.
63 ``position_fix=3`` means to use a combination of both methods, needed
64 for some VIA controllers. The capture stream position is corrected
65 by comparing both LPIB and position-buffer values.
66 ``position_fix=4`` is another combination available for all controllers,
67 and uses LPIB for the playback and the position-buffer for the capture
68 streams.
69 ``position_fix=5`` is specific to Intel platforms, so far, for Skylake
70 and onward. It applies the delay calculation for the precise position
71 reporting.
72 ``position_fix=6`` is to correct the position with the fixed FIFO
73 size, mainly targeted for the recent AMD controllers.
74 0 is the default value for all other
75 controllers, the automatic check and fallback to LPIB as described in
76 the above. If you get a problem of repeated sounds, this option might
77 help.
78
79 In addition to that, every controller is known to be broken regarding
80 the wake-up timing. It wakes up a few samples before actually
81 processing the data on the buffer. This caused a lot of problems, for
82 example, with ALSA dmix or JACK. Since 2.6.27 kernel, the driver puts
83 an artificial delay to the wake up timing. This delay is controlled
84 via ``bdl_pos_adj`` option.
85
86 When ``bdl_pos_adj`` is a negative value (as default), it's assigned to
87 an appropriate value depending on the controller chip. For Intel
88 chips, it'd be 1 while it'd be 32 for others. Usually this works.
89 Only in case it doesn't work and you get warning messages, you should
90 change this parameter to other values.
91
92
93 Codec-Probing Problem
94 ---------------------
95 A less often but a more severe problem is the codec probing. When
96 BIOS reports the available codec slots wrongly, the driver gets
97 confused and tries to access the non-existing codec slot. This often
98 results in the total screw-up, and destructs the further communication
99 with the codec chips. The symptom appears usually as error messages
100 like:
101 ::
102
103 hda_intel: azx_get_response timeout, switching to polling mode:
104 last cmd=0x12345678
105 hda_intel: azx_get_response timeout, switching to single_cmd mode:
106 last cmd=0x12345678
107
108 The first line is a warning, and this is usually relatively harmless.
109 It means that the codec response isn't notified via an IRQ. The
110 driver uses explicit polling method to read the response. It gives
111 very slight CPU overhead, but you'd unlikely notice it.
112
113 The second line is, however, a fatal error. If this happens, usually
114 it means that something is really wrong. Most likely you are
115 accessing a non-existing codec slot.
116
117 Thus, if the second error message appears, try to narrow the probed
118 codec slots via ``probe_mask`` option. It's a bitmask, and each bit
119 corresponds to the codec slot. For example, to probe only the first
120 slot, pass ``probe_mask=1``. For the first and the third slots, pass
121 ``probe_mask=5`` (where 5 = 1 | 4), and so on.
122
123 Since 2.6.29 kernel, the driver has a more robust probing method, so
124 this error might happen rarely, though.
125
126 On a machine with a broken BIOS, sometimes you need to force the
127 driver to probe the codec slots the hardware doesn't report for use.
128 In such a case, turn the bit 8 (0x100) of ``probe_mask`` option on.
129 Then the rest 8 bits are passed as the codec slots to probe
130 unconditionally. For example, ``probe_mask=0x103`` will force to probe
131 the codec slots 0 and 1 no matter what the hardware reports.
132
133
134 Interrupt Handling
135 ------------------
136 HD-audio driver uses MSI as default (if available) since 2.6.33
137 kernel as MSI works better on some machines, and in general, it's
138 better for performance. However, Nvidia controllers showed bad
139 regressions with MSI (especially in a combination with AMD chipset),
140 thus we disabled MSI for them.
141
142 There seem also still other devices that don't work with MSI. If you
143 see a regression wrt the sound quality (stuttering, etc) or a lock-up
144 in the recent kernel, try to pass ``enable_msi=0`` option to disable
145 MSI. If it works, you can add the known bad device to the blacklist
146 defined in hda_intel.c. In such a case, please report and give the
147 patch back to the upstream developer.
148
149
150 HD-Audio Codec
151 ==============
152
153 Model Option
154 ------------
155 The most common problem regarding the HD-audio driver is the
156 unsupported codec features or the mismatched device configuration.
157 Most of codec-specific code has several preset models, either to
158 override the BIOS setup or to provide more comprehensive features.
159
160 The driver checks PCI SSID and looks through the static configuration
161 table until any matching entry is found. If you have a new machine,
162 you may see a message like below:
163 ::
164
165 hda_codec: ALC880: BIOS auto-probing.
166
167 Meanwhile, in the earlier versions, you would see a message like:
168 ::
169
170 hda_codec: Unknown model for ALC880, trying auto-probe from BIOS...
171
172 Even if you see such a message, DON'T PANIC. Take a deep breath and
173 keep your towel. First of all, it's an informational message, no
174 warning, no error. This means that the PCI SSID of your device isn't
175 listed in the known preset model (white-)list. But, this doesn't mean
176 that the driver is broken. Many codec-drivers provide the automatic
177 configuration mechanism based on the BIOS setup.
178
179 The HD-audio codec has usually "pin" widgets, and BIOS sets the default
180 configuration of each pin, which indicates the location, the
181 connection type, the jack color, etc. The HD-audio driver can guess
182 the right connection judging from these default configuration values.
183 However -- some codec-support codes, such as patch_analog.c, don't
184 support the automatic probing (yet as of 2.6.28). And, BIOS is often,
185 yes, pretty often broken. It sets up wrong values and screws up the
186 driver.
187
188 The preset model (or recently called as "fix-up") is provided
189 basically to overcome such a situation. When the matching preset
190 model is found in the white-list, the driver assumes the static
191 configuration of that preset with the correct pin setup, etc.
192 Thus, if you have a newer machine with a slightly different PCI SSID
193 (or codec SSID) from the existing one, you may have a good chance to
194 re-use the same model. You can pass the ``model`` option to specify the
195 preset model instead of PCI (and codec-) SSID look-up.
196
197 What ``model`` option values are available depends on the codec chip.
198 Check your codec chip from the codec proc file (see "Codec Proc-File"
199 section below). It will show the vendor/product name of your codec
200 chip. Then, see Documentation/sound/hd-audio/models.rst file,
201 the section of HD-audio driver. You can find a list of codecs
202 and ``model`` options belonging to each codec. For example, for Realtek
203 ALC262 codec chip, pass ``model=ultra`` for devices that are compatible
204 with Samsung Q1 Ultra.
205
206 Thus, the first thing you can do for any brand-new, unsupported and
207 non-working HD-audio hardware is to check HD-audio codec and several
208 different ``model`` option values. If you have any luck, some of them
209 might suit with your device well.
210
211 There are a few special model option values:
212
213 * when 'nofixup' is passed, the device-specific fixups in the codec
214 parser are skipped.
215 * when ``generic`` is passed, the codec-specific parser is skipped and
216 only the generic parser is used.
217
218 A new style for the model option that was introduced since 5.15 kernel
219 is to pass the PCI or codec SSID in the form of ``model=XXXX:YYYY``
220 where XXXX and YYYY are the sub-vendor and sub-device IDs in hex
221 numbers, respectively. This is a kind of aliasing to another device;
222 when this form is given, the driver will refer to that SSID as a
223 reference to the quirk table. It'd be useful especially when the
224 target quirk isn't listed in the model table. For example, passing
225 model=103c:8862 will apply the quirk for HP ProBook 445 G8 (which
226 isn't found in the model table as of writing) as long as the device is
227 handled equivalently by the same driver.
228
229
230 Speaker and Headphone Output
231 ----------------------------
232 One of the most frequent (and obvious) bugs with HD-audio is the
233 silent output from either or both of a built-in speaker and a
234 headphone jack. In general, you should try a headphone output at
235 first. A speaker output often requires more additional controls like
236 the external amplifier bits. Thus a headphone output has a slightly
237 better chance.
238
239 Before making a bug report, double-check whether the mixer is set up
240 correctly. The recent version of snd-hda-intel driver provides mostly
241 "Master" volume control as well as "Front" volume (where Front
242 indicates the front-channels). In addition, there can be individual
243 "Headphone" and "Speaker" controls.
244
245 Ditto for the speaker output. There can be "External Amplifier"
246 switch on some codecs. Turn on this if present.
247
248 Another related problem is the automatic mute of speaker output by
249 headphone plugging. This feature is implemented in most cases, but
250 not on every preset model or codec-support code.
251
252 In anyway, try a different model option if you have such a problem.
253 Some other models may match better and give you more matching
254 functionality. If none of the available models works, send a bug
255 report. See the bug report section for details.
256
257 If you are masochistic enough to debug the driver problem, note the
258 following:
259
260 * The speaker (and the headphone, too) output often requires the
261 external amplifier. This can be set usually via EAPD verb or a
262 certain GPIO. If the codec pin supports EAPD, you have a better
263 chance via SET_EAPD_BTL verb (0x70c). On others, GPIO pin (mostly
264 it's either GPIO0 or GPIO1) may turn on/off EAPD.
265 * Some Realtek codecs require special vendor-specific coefficients to
266 turn on the amplifier. See patch_realtek.c.
267 * IDT codecs may have extra power-enable/disable controls on each
268 analog pin. See patch_sigmatel.c.
269 * Very rare but some devices don't accept the pin-detection verb until
270 triggered. Issuing GET_PIN_SENSE verb (0xf09) may result in the
271 codec-communication stall. Some examples are found in
272 patch_realtek.c.
273
274
275 Capture Problems
276 ----------------
277 The capture problems are often because of missing setups of mixers.
278 Thus, before submitting a bug report, make sure that you set up the
279 mixer correctly. For example, both "Capture Volume" and "Capture
280 Switch" have to be set properly in addition to the right "Capture
281 Source" or "Input Source" selection. Some devices have "Mic Boost"
282 volume or switch.
283
284 When the PCM device is opened via "default" PCM (without pulse-audio
285 plugin), you'll likely have "Digital Capture Volume" control as well.
286 This is provided for the extra gain/attenuation of the signal in
287 software, especially for the inputs without the hardware volume
288 control such as digital microphones. Unless really needed, this
289 should be set to exactly 50%, corresponding to 0dB -- neither extra
290 gain nor attenuation. When you use "hw" PCM, i.e., a raw access PCM,
291 this control will have no influence, though.
292
293 It's known that some codecs / devices have fairly bad analog circuits,
294 and the recorded sound contains a certain DC-offset. This is no bug
295 of the driver.
296
297 Most of modern laptops have no analog CD-input connection. Thus, the
298 recording from CD input won't work in many cases although the driver
299 provides it as the capture source. Use CDDA instead.
300
301 The automatic switching of the built-in and external mic per plugging
302 is implemented on some codec models but not on every model. Partly
303 because of my laziness but mostly lack of testers. Feel free to
304 submit the improvement patch to the author.
305
306
307 Direct Debugging
308 ----------------
309 If no model option gives you a better result, and you are a tough guy
310 to fight against evil, try debugging via hitting the raw HD-audio
311 codec verbs to the device. Some tools are available: hda-emu and
312 hda-analyzer. The detailed description is found in the sections
313 below. You'd need to enable hwdep for using these tools. See "Kernel
314 Configuration" section.
315
316
317 Other Issues
318 ============
319
320 Kernel Configuration
321 --------------------
322 In general, I recommend you to enable the sound debug option,
323 ``CONFIG_SND_DEBUG=y``, no matter whether you are debugging or not.
324
325 Don't forget to turn on the appropriate ``CONFIG_SND_HDA_CODEC_*``
326 options. Note that each of them corresponds to the codec chip, not
327 the controller chip. Thus, even if lspci shows the Nvidia controller,
328 you may need to choose the option for other vendors. If you are
329 unsure, just select all yes.
330
331 ``CONFIG_SND_HDA_HWDEP`` is a useful option for debugging the driver.
332 When this is enabled, the driver creates hardware-dependent devices
333 (one per each codec), and you have a raw access to the device via
334 these device files. For example, ``hwC0D2`` will be created for the
335 codec slot #2 of the first card (#0). For debug-tools such as
336 hda-verb and hda-analyzer, the hwdep device has to be enabled.
337 Thus, it'd be better to turn this on always.
338
339 ``CONFIG_SND_HDA_RECONFIG`` is a new option, and this depends on the
340 hwdep option above. When enabled, you'll have some sysfs files under
341 the corresponding hwdep directory. See "HD-audio reconfiguration"
342 section below.
343
344 ``CONFIG_SND_HDA_POWER_SAVE`` option enables the power-saving feature.
345 See "Power-saving" section below.
346
347
348 Codec Proc-File
349 ---------------
350 The codec proc-file is a treasure-chest for debugging HD-audio.
351 It shows most of useful information of each codec widget.
352
353 The proc file is located in /proc/asound/card*/codec#*, one file per
354 each codec slot. You can know the codec vendor, product id and
355 names, the type of each widget, capabilities and so on.
356 This file, however, doesn't show the jack sensing state, so far. This
357 is because the jack-sensing might be depending on the trigger state.
358
359 This file will be picked up by the debug tools, and also it can be fed
360 to the emulator as the primary codec information. See the debug tools
361 section below.
362
363 This proc file can be also used to check whether the generic parser is
364 used. When the generic parser is used, the vendor/product ID name
365 will appear as "Realtek ID 0262", instead of "Realtek ALC262".
366
367
368 HD-Audio Reconfiguration
369 ------------------------
370 This is an experimental feature to allow you re-configure the HD-audio
371 codec dynamically without reloading the driver. The following sysfs
372 files are available under each codec-hwdep device directory (e.g.
373 /sys/class/sound/hwC0D0):
374
375 vendor_id
376 Shows the 32bit codec vendor-id hex number. You can change the
377 vendor-id value by writing to this file.
378 subsystem_id
379 Shows the 32bit codec subsystem-id hex number. You can change the
380 subsystem-id value by writing to this file.
381 revision_id
382 Shows the 32bit codec revision-id hex number. You can change the
383 revision-id value by writing to this file.
384 afg
385 Shows the AFG ID. This is read-only.
386 mfg
387 Shows the MFG ID. This is read-only.
388 name
389 Shows the codec name string. Can be changed by writing to this
390 file.
391 modelname
392 Shows the currently set ``model`` option. Can be changed by writing
393 to this file.
394 init_verbs
395 The extra verbs to execute at initialization. You can add a verb by
396 writing to this file. Pass three numbers: nid, verb and parameter
397 (separated with a space).
398 hints
399 Shows / stores hint strings for codec parsers for any use.
400 Its format is ``key = value``. For example, passing ``jack_detect = no``
401 will disable the jack detection of the machine completely.
402 init_pin_configs
403 Shows the initial pin default config values set by BIOS.
404 driver_pin_configs
405 Shows the pin default values set by the codec parser explicitly.
406 This doesn't show all pin values but only the changed values by
407 the parser. That is, if the parser doesn't change the pin default
408 config values by itself, this will contain nothing.
409 user_pin_configs
410 Shows the pin default config values to override the BIOS setup.
411 Writing this (with two numbers, NID and value) appends the new
412 value. The given will be used instead of the initial BIOS value at
413 the next reconfiguration time. Note that this config will override
414 even the driver pin configs, too.
415 reconfig
416 Triggers the codec re-configuration. When any value is written to
417 this file, the driver re-initialize and parses the codec tree
418 again. All the changes done by the sysfs entries above are taken
419 into account.
420 clear
421 Resets the codec, removes the mixer elements and PCM stuff of the
422 specified codec, and clear all init verbs and hints.
423
424 For example, when you want to change the pin default configuration
425 value of the pin widget 0x14 to 0x9993013f, and let the driver
426 re-configure based on that state, run like below:
427 ::
428
429 # echo 0x14 0x9993013f > /sys/class/sound/hwC0D0/user_pin_configs
430 # echo 1 > /sys/class/sound/hwC0D0/reconfig
431
432
433 Hint Strings
434 ------------
435 The codec parser have several switches and adjustment knobs for
436 matching better with the actual codec or device behavior. Many of
437 them can be adjusted dynamically via "hints" strings as mentioned in
438 the section above. For example, by passing ``jack_detect = no`` string
439 via sysfs or a patch file, you can disable the jack detection, thus
440 the codec parser will skip the features like auto-mute or mic
441 auto-switch. As a boolean value, either ``yes``, ``no``, ``true``, ``false``,
442 ``1`` or ``0`` can be passed.
443
444 The generic parser supports the following hints:
445
446 jack_detect (bool)
447 specify whether the jack detection is available at all on this
448 machine; default true
449 inv_jack_detect (bool)
450 indicates that the jack detection logic is inverted
451 trigger_sense (bool)
452 indicates that the jack detection needs the explicit call of
453 AC_VERB_SET_PIN_SENSE verb
454 inv_eapd (bool)
455 indicates that the EAPD is implemented in the inverted logic
456 pcm_format_first (bool)
457 sets the PCM format before the stream tag and channel ID
458 sticky_stream (bool)
459 keep the PCM format, stream tag and ID as long as possible;
460 default true
461 spdif_status_reset (bool)
462 reset the SPDIF status bits at each time the SPDIF stream is set
463 up
464 pin_amp_workaround (bool)
465 the output pin may have multiple amp values
466 single_adc_amp (bool)
467 ADCs can have only single input amps
468 auto_mute (bool)
469 enable/disable the headphone auto-mute feature; default true
470 auto_mic (bool)
471 enable/disable the mic auto-switch feature; default true
472 line_in_auto_switch (bool)
473 enable/disable the line-in auto-switch feature; default false
474 need_dac_fix (bool)
475 limits the DACs depending on the channel count
476 primary_hp (bool)
477 probe headphone jacks as the primary outputs; default true
478 multi_io (bool)
479 try probing multi-I/O config (e.g. shared line-in/surround,
480 mic/clfe jacks)
481 multi_cap_vol (bool)
482 provide multiple capture volumes
483 inv_dmic_split (bool)
484 provide split internal mic volume/switch for phase-inverted
485 digital mics
486 indep_hp (bool)
487 provide the independent headphone PCM stream and the corresponding
488 mixer control, if available
489 add_stereo_mix_input (bool)
490 add the stereo mix (analog-loopback mix) to the input mux if
491 available
492 add_jack_modes (bool)
493 add "xxx Jack Mode" enum controls to each I/O jack for allowing to
494 change the headphone amp and mic bias VREF capabilities
495 power_save_node (bool)
496 advanced power management for each widget, controlling the power
497 state (D0/D3) of each widget node depending on the actual pin and
498 stream states
499 power_down_unused (bool)
500 power down the unused widgets, a subset of power_save_node, and
501 will be dropped in future
502 add_hp_mic (bool)
503 add the headphone to capture source if possible
504 hp_mic_detect (bool)
505 enable/disable the hp/mic shared input for a single built-in mic
506 case; default true
507 vmaster (bool)
508 enable/disable the virtual Master control; default true
509 mixer_nid (int)
510 specifies the widget NID of the analog-loopback mixer
511
512
513 Early Patching
514 --------------
515 When ``CONFIG_SND_HDA_PATCH_LOADER=y`` is set, you can pass a "patch"
516 as a firmware file for modifying the HD-audio setup before
517 initializing the codec. This can work basically like the
518 reconfiguration via sysfs in the above, but it does it before the
519 first codec configuration.
520
521 A patch file is a plain text file which looks like below:
522
523 ::
524
525 [codec]
526 0x12345678 0xabcd1234 2
527
528 [model]
529 auto
530
531 [pincfg]
532 0x12 0x411111f0
533
534 [verb]
535 0x20 0x500 0x03
536 0x20 0x400 0xff
537
538 [hint]
539 jack_detect = no
540
541
542 The file needs to have a line ``[codec]``. The next line should contain
543 three numbers indicating the codec vendor-id (0x12345678 in the
544 example), the codec subsystem-id (0xabcd1234) and the address (2) of
545 the codec. The rest patch entries are applied to this specified codec
546 until another codec entry is given. Passing 0 or a negative number to
547 the first or the second value will make the check of the corresponding
548 field be skipped. It'll be useful for really broken devices that don't
549 initialize SSID properly.
550
551 The ``[model]`` line allows to change the model name of the each codec.
552 In the example above, it will be changed to model=auto.
553 Note that this overrides the module option.
554
555 After the ``[pincfg]`` line, the contents are parsed as the initial
556 default pin-configurations just like ``user_pin_configs`` sysfs above.
557 The values can be shown in user_pin_configs sysfs file, too.
558
559 Similarly, the lines after ``[verb]`` are parsed as ``init_verbs``
560 sysfs entries, and the lines after ``[hint]`` are parsed as ``hints``
561 sysfs entries, respectively.
562
563 Another example to override the codec vendor id from 0x12345678 to
564 0xdeadbeef is like below:
565 ::
566
567 [codec]
568 0x12345678 0xabcd1234 2
569
570 [vendor_id]
571 0xdeadbeef
572
573
574 In the similar way, you can override the codec subsystem_id via
575 ``[subsystem_id]``, the revision id via ``[revision_id]`` line.
576 Also, the codec chip name can be rewritten via ``[chip_name]`` line.
577 ::
578
579 [codec]
580 0x12345678 0xabcd1234 2
581
582 [subsystem_id]
583 0xffff1111
584
585 [revision_id]
586 0x10
587
588 [chip_name]
589 My-own NEWS-0002
590
591
592 The hd-audio driver reads the file via request_firmware(). Thus,
593 a patch file has to be located on the appropriate firmware path,
594 typically, /lib/firmware. For example, when you pass the option
595 ``patch=hda-init.fw``, the file /lib/firmware/hda-init.fw must be
596 present.
597
598 The patch module option is specific to each card instance, and you
599 need to give one file name for each instance, separated by commas.
600 For example, if you have two cards, one for an on-board analog and one
601 for an HDMI video board, you may pass patch option like below:
602 ::
603
604 options snd-hda-intel patch=on-board-patch,hdmi-patch
605
606
607 Power-Saving
608 ------------
609 The power-saving is a kind of auto-suspend of the device. When the
610 device is inactive for a certain time, the device is automatically
611 turned off to save the power. The time to go down is specified via
612 ``power_save`` module option, and this option can be changed dynamically
613 via sysfs.
614
615 The power-saving won't work when the analog loopback is enabled on
616 some codecs. Make sure that you mute all unneeded signal routes when
617 you want the power-saving.
618
619 The power-saving feature might cause audible click noises at each
620 power-down/up depending on the device. Some of them might be
621 solvable, but some are hard, I'm afraid. Some distros such as
622 openSUSE enables the power-saving feature automatically when the power
623 cable is unplugged. Thus, if you hear noises, suspect first the
624 power-saving. See /sys/module/snd_hda_intel/parameters/power_save to
625 check the current value. If it's non-zero, the feature is turned on.
626
627 The recent kernel supports the runtime PM for the HD-audio controller
628 chip, too. It means that the HD-audio controller is also powered up /
629 down dynamically. The feature is enabled only for certain controller
630 chips like Intel LynxPoint. You can enable/disable this feature
631 forcibly by setting ``power_save_controller`` option, which is also
632 available at /sys/module/snd_hda_intel/parameters directory.
633
634
635 Tracepoints
636 -----------
637 The hd-audio driver gives a few basic tracepoints.
638 ``hda:hda_send_cmd`` traces each CORB write while ``hda:hda_get_response``
639 traces the response from RIRB (only when read from the codec driver).
640 ``hda:hda_bus_reset`` traces the bus-reset due to fatal error, etc,
641 ``hda:hda_unsol_event`` traces the unsolicited events, and
642 ``hda:hda_power_down`` and ``hda:hda_power_up`` trace the power down/up
643 via power-saving behavior.
644
645 Enabling all tracepoints can be done like
646 ::
647
648 # echo 1 > /sys/kernel/tracing/events/hda/enable
649
650 then after some commands, you can traces from
651 /sys/kernel/tracing/trace file. For example, when you want to
652 trace what codec command is sent, enable the tracepoint like:
653 ::
654
655 # cat /sys/kernel/tracing/trace
656 # tracer: nop
657 #
658 # TASK-PID CPU# TIMESTAMP FUNCTION
659 # | | | | |
660 <...>-7807 [002] 105147.774889: hda_send_cmd: [0:0] val=e3a019
661 <...>-7807 [002] 105147.774893: hda_send_cmd: [0:0] val=e39019
662 <...>-7807 [002] 105147.999542: hda_send_cmd: [0:0] val=e3a01a
663 <...>-7807 [002] 105147.999543: hda_send_cmd: [0:0] val=e3901a
664 <...>-26764 [001] 349222.837143: hda_send_cmd: [0:0] val=e3a019
665 <...>-26764 [001] 349222.837148: hda_send_cmd: [0:0] val=e39019
666 <...>-26764 [001] 349223.058539: hda_send_cmd: [0:0] val=e3a01a
667 <...>-26764 [001] 349223.058541: hda_send_cmd: [0:0] val=e3901a
668
669 Here ``[0:0]`` indicates the card number and the codec address, and
670 ``val`` shows the value sent to the codec, respectively. The value is
671 a packed value, and you can decode it via hda-decode-verb program
672 included in hda-emu package below. For example, the value e3a019 is
673 to set the left output-amp value to 25.
674 ::
675
676 % hda-decode-verb 0xe3a019
677 raw value = 0x00e3a019
678 cid = 0, nid = 0x0e, verb = 0x3a0, parm = 0x19
679 raw value: verb = 0x3a0, parm = 0x19
680 verbname = set_amp_gain_mute
681 amp raw val = 0xa019
682 output, left, idx=0, mute=0, val=25
683
684
685 Development Tree
686 ----------------
687 The latest development codes for HD-audio are found on sound git tree:
688
689 * git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/sound.git
690
691 The master branch or for-next branches can be used as the main
692 development branches in general while the development for the current
693 and next kernels are found in for-linus and for-next branches,
694 respectively.
695
696
697 Sending a Bug Report
698 --------------------
699 If any model or module options don't work for your device, it's time
700 to send a bug report to the developers. Give the following in your
701 bug report:
702
703 * Hardware vendor, product and model names
704 * Kernel version (and ALSA-driver version if you built externally)
705 * ``alsa-info.sh`` output; run with ``--no-upload`` option. See the
706 section below about alsa-info
707
708 If it's a regression, at best, send alsa-info outputs of both working
709 and non-working kernels. This is really helpful because we can
710 compare the codec registers directly.
711
712 Send a bug report either the following:
713
714 kernel-bugzilla
715 https://bugzilla.kernel.org/
716 alsa-devel ML
717 alsa-devel@alsa-project.org
718
719
720 Debug Tools
721 ===========
722
723 This section describes some tools available for debugging HD-audio
724 problems.
725
726 alsa-info
727 ---------
728 The script ``alsa-info.sh`` is a very useful tool to gather the audio
729 device information. It's included in alsa-utils package. The latest
730 version can be found on git repository:
731
732 * git://git.alsa-project.org/alsa-utils.git
733
734 The script can be fetched directly from the following URL, too:
735
736 * https://www.alsa-project.org/alsa-info.sh
737
738 Run this script as root, and it will gather the important information
739 such as the module lists, module parameters, proc file contents
740 including the codec proc files, mixer outputs and the control
741 elements. As default, it will store the information onto a web server
742 on alsa-project.org. But, if you send a bug report, it'd be better to
743 run with ``--no-upload`` option, and attach the generated file.
744
745 There are some other useful options. See ``--help`` option output for
746 details.
747
748 When a probe error occurs or when the driver obviously assigns a
749 mismatched model, it'd be helpful to load the driver with
750 ``probe_only=1`` option (at best after the cold reboot) and run
751 alsa-info at this state. With this option, the driver won't configure
752 the mixer and PCM but just tries to probe the codec slot. After
753 probing, the proc file is available, so you can get the raw codec
754 information before modified by the driver. Of course, the driver
755 isn't usable with ``probe_only=1``. But you can continue the
756 configuration via hwdep sysfs file if hda-reconfig option is enabled.
757 Using ``probe_only`` mask 2 skips the reset of HDA codecs (use
758 ``probe_only=3`` as module option). The hwdep interface can be used
759 to determine the BIOS codec initialization.
760
761
762 hda-verb
763 --------
764 hda-verb is a tiny program that allows you to access the HD-audio
765 codec directly. You can execute a raw HD-audio codec verb with this.
766 This program accesses the hwdep device, thus you need to enable the
767 kernel config ``CONFIG_SND_HDA_HWDEP=y`` beforehand.
768
769 The hda-verb program takes four arguments: the hwdep device file, the
770 widget NID, the verb and the parameter. When you access to the codec
771 on the slot 2 of the card 0, pass /dev/snd/hwC0D2 to the first
772 argument, typically. (However, the real path name depends on the
773 system.)
774
775 The second parameter is the widget number-id to access. The third
776 parameter can be either a hex/digit number or a string corresponding
777 to a verb. Similarly, the last parameter is the value to write, or
778 can be a string for the parameter type.
779
780 ::
781
782 % hda-verb /dev/snd/hwC0D0 0x12 0x701 2
783 nid = 0x12, verb = 0x701, param = 0x2
784 value = 0x0
785
786 % hda-verb /dev/snd/hwC0D0 0x0 PARAMETERS VENDOR_ID
787 nid = 0x0, verb = 0xf00, param = 0x0
788 value = 0x10ec0262
789
790 % hda-verb /dev/snd/hwC0D0 2 set_a 0xb080
791 nid = 0x2, verb = 0x300, param = 0xb080
792 value = 0x0
793
794
795 Although you can issue any verbs with this program, the driver state
796 won't be always updated. For example, the volume values are usually
797 cached in the driver, and thus changing the widget amp value directly
798 via hda-verb won't change the mixer value.
799
800 The hda-verb program is included now in alsa-tools:
801
802 * git://git.alsa-project.org/alsa-tools.git
803
804 Also, the old stand-alone package is found in the ftp directory:
805
806 * ftp://ftp.suse.com/pub/people/tiwai/misc/
807
808 Also a git repository is available:
809
810 * git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/hda-verb.git
811
812 See README file in the tarball for more details about hda-verb
813 program.
814
815
816 hda-analyzer
817 ------------
818 hda-analyzer provides a graphical interface to access the raw HD-audio
819 control, based on pyGTK2 binding. It's a more powerful version of
820 hda-verb. The program gives you an easy-to-use GUI stuff for showing
821 the widget information and adjusting the amp values, as well as the
822 proc-compatible output.
823
824 The hda-analyzer:
825
826 * https://git.alsa-project.org/?p=alsa.git;a=tree;f=hda-analyzer
827
828 is a part of alsa.git repository in alsa-project.org:
829
830 * git://git.alsa-project.org/alsa.git
831
832 Codecgraph
833 ----------
834 Codecgraph is a utility program to generate a graph and visualizes the
835 codec-node connection of a codec chip. It's especially useful when
836 you analyze or debug a codec without a proper datasheet. The program
837 parses the given codec proc file and converts to SVG via graphiz
838 program.
839
840 The tarball and GIT trees are found in the web page at:
841
842 * http://helllabs.org/codecgraph/
843
844
845 hda-emu
846 -------
847 hda-emu is an HD-audio emulator. The main purpose of this program is
848 to debug an HD-audio codec without the real hardware. Thus, it
849 doesn't emulate the behavior with the real audio I/O, but it just
850 dumps the codec register changes and the ALSA-driver internal changes
851 at probing and operating the HD-audio driver.
852
853 The program requires a codec proc-file to simulate. Get a proc file
854 for the target codec beforehand, or pick up an example codec from the
855 codec proc collections in the tarball. Then, run the program with the
856 proc file, and the hda-emu program will start parsing the codec file
857 and simulates the HD-audio driver:
858
859 ::
860
861 % hda-emu codecs/stac9200-dell-d820-laptop
862 # Parsing..
863 hda_codec: Unknown model for STAC9200, using BIOS defaults
864 hda_codec: pin nid 08 bios pin config 40c003fa
865 ....
866
867
868 The program gives you only a very dumb command-line interface. You
869 can get a proc-file dump at the current state, get a list of control
870 (mixer) elements, set/get the control element value, simulate the PCM
871 operation, the jack plugging simulation, etc.
872
873 The program is found in the git repository below:
874
875 * git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/hda-emu.git
876
877 See README file in the repository for more details about hda-emu
878 program.
879
880
881 hda-jack-retask
882 ---------------
883 hda-jack-retask is a user-friendly GUI program to manipulate the
884 HD-audio pin control for jack retasking. If you have a problem about
885 the jack assignment, try this program and check whether you can get
886 useful results. Once when you figure out the proper pin assignment,
887 it can be fixed either in the driver code statically or via passing a
888 firmware patch file (see "Early Patching" section).
889
890 The program is included in alsa-tools now:
891
892 * git://git.alsa-project.org/alsa-tools.git
893

3. 한국어 전문 번역

영어 원문의 문단 순서와 의미를 유지한 전체 번역입니다. 코드, 함수명, symbol과 URL은 원문 표기를 유지합니다.

일반 구조와 문서 범위

1-47

이 문서는 Takashi Iwai가 작성한 HD-Audio hardware의 간단한 문제 해결 및 debugging 안내입니다. HD-Audio는 AC97 이후 현대 PC의 표준 onboard audio component가 되었지만, 새 시스템에서는 잘못된 BIOS와 driver 구현 문제 때문에 여전히 장애가 발생합니다.

HD-Audio component는 controller chip과 HD-Audio bus의 codec chip으로 구성됩니다. Linux의 `snd-hda-intel`은 이름과 달리 Intel 전용이 아니라 호환 가능한 여러 회사 controller를 위한 단일 driver입니다. Controller별 알려진 bug에는 driver workaround가 적용됩니다.

Controller 하나에 codec이 여러 개 있을 수 있습니다. 보통 audio codec 하나와 선택적인 modem codec 하나가 있지만, analog/digital 출력용 audio codec이 여러 개면 mixer element 충돌 때문에 driver가 제대로 동작하지 않을 수 있습니다. 원문은 실제 hardware가 존재하면 향후 수정해야 한다고 설명합니다.

`snd-hda-intel`은 codec에 따라 서로 다른 parser를 사용합니다. 제한적인 generic parser가 fallback으로 존재하지만, 보통 `patch_*.c`에 구현된 codec-specific parser를 사용합니다. 깊은 debugging 전에는 Intel의 High Definition Audio specification을 먼저 읽는 것이 권장됩니다.

HD-Audio 구성
계층역할
ControllerHD-Audio bus와 DMA를 제어하며 `snd-hda-intel`이 공통 처리
CodecAudio/modem 기능과 widget을 제공하며 codec-specific parser가 구성
Generic parser알려진 codec parser가 없을 때 사용하는 제한적 fallback
Codec-specific parser`patch_*.c`의 장치별 pin, mixer, fixup 구현

Controller와 codec parser의 역할을 구분합니다.

문제 분리
Controller DMA/IRQ/probing 확인Codec vendor/product와 widget 확인BIOS pin default 및 preset fixup 확인필요하면 specification과 raw verb로 추적

증상을 controller와 codec 문제로 먼저 분리합니다.

=============================
More Notes on HD-Audio Driver
=============================

Takashi Iwai <tiwai@suse.de>


General
=======

HD-audio is the new standard on-board audio component on modern PCs
after AC97.  Although Linux has been supporting HD-audio since long
time ago, there are often problems with new machines.  A part of the
problem is broken BIOS, and the rest is the driver implementation.
This document explains the brief trouble-shooting and debugging
methods for the        HD-audio hardware.

The HD-audio component consists of two parts: the controller chip and
the codec chips on the HD-audio bus.  Linux provides a single driver
for all controllers, snd-hda-intel.  Although the driver name contains
a word of a well-known hardware vendor, it's not specific to it but for
all controller chips by other companies.  Since the HD-audio
controllers are supposed to be compatible, the single snd-hda-driver
should work in most cases.  But, not surprisingly, there are known
bugs and issues specific to each controller type.  The snd-hda-intel
driver has a bunch of workarounds for these as described below.

A controller may have multiple codecs.  Usually you have one audio
codec and optionally one modem codec.  In theory, there might be
multiple audio codecs, e.g. for analog and digital outputs, and the
driver might not work properly because of conflict of mixer elements.
This should be fixed in future if such hardware really exists.

The snd-hda-intel driver has several different codec parsers depending
on the codec.  It has a generic parser as a fallback, but this
functionality is fairly limited until now.  Instead of the generic
parser, usually the codec-specific parser (coded in patch_*.c) is used
for the codec-specific implementations.  The details about the
codec-specific problems are explained in the later sections.

If you are interested in the deep debugging of HD-audio, read the
HD-audio specification at first.  The specification is found on
Intel's web page, for example:

* https://www.intel.com/content/www/us/en/standards/high-definition-audio-specification.html

DMA position 문제

48-92

Controller의 가장 흔한 문제는 부정확한 DMA pointer 보고입니다. Playback/capture 위치는 `LPIB` register 또는 position-buffer map에서 읽을 수 있습니다. Driver는 기본적으로 I/O-mapped position-buffer를 사용하고 죽은 것으로 보이면 LPIB로 fallback하지만, 일부 장치에서는 감지가 완전하지 않습니다.

`position_fix` option으로 위치 산정 방식을 명시할 수 있습니다. 반복 재생 같은 증상에서는 이 option이 도움이 될 수 있습니다.

position_fix 값
동작
0자동 검사 후 필요하면 LPIB로 fallback하는 기본값
1LPIB를 명시적으로 사용
2Position-buffer 사용
3VIA controller용으로 LPIB와 position-buffer를 비교해 capture 위치 보정
4Playback은 LPIB, capture는 position-buffer 사용
5Skylake 이후 Intel에서 정밀 위치 보고를 위한 delay 계산 적용
6고정 FIFO size로 위치 보정하며 주로 최신 AMD controller 대상

각 값이 선택하는 DMA 위치 보고 방식입니다.

모든 controller는 실제 buffer 처리보다 몇 sample 일찍 wake-up하는 timing 문제가 알려져 있습니다. ALSA `dmix`나 JACK에 문제를 일으켜 kernel 2.6.27부터 driver가 인위적 delay를 넣으며, `bdl_pos_adj` option으로 제어합니다.

`bdl_pos_adj`가 기본처럼 음수이면 controller에 맞는 값을 자동 할당합니다. Intel chip은 1, 그 밖의 chip은 32가 일반적입니다. 보통 그대로 동작하며 warning이 발생하는 경우에만 다른 값을 시험해야 합니다.

DMA 위치 진단
반복음/위치 warning 확인position_fix=1 또는 2로 source 분리VIA/Intel/AMD 전용 값 검토Wake-up warning이면 bdl_pos_adj 조정

자동 방식이 실패할 때 option을 단계적으로 좁힙니다.

HD-Audio Controller
===================

DMA-Position Problem
--------------------
The most common problem of the controller is the inaccurate DMA
pointer reporting.  The DMA pointer for playback and capture can be
read in two ways, either via a LPIB register or via a position-buffer
map.  As default the driver tries to read from the io-mapped
position-buffer, and falls back to LPIB if the position-buffer appears
dead.  However, this detection isn't perfect on some devices.  In such
a case, you can change the default method via ``position_fix`` option.

``position_fix=1`` means to use LPIB method explicitly.
``position_fix=2`` means to use the position-buffer.
``position_fix=3`` means to use a combination of both methods, needed
for some VIA controllers.  The capture stream position is corrected
by comparing both LPIB and position-buffer values.
``position_fix=4`` is another combination available for all controllers,
and uses LPIB for the playback and the position-buffer for the capture
streams.
``position_fix=5`` is specific to Intel platforms, so far, for Skylake
and onward.  It applies the delay calculation for the precise position
reporting.
``position_fix=6`` is to correct the position with the fixed FIFO
size, mainly targeted for the recent AMD controllers.
0 is the default value for all other
controllers, the automatic check and fallback to LPIB as described in
the above.  If you get a problem of repeated sounds, this option might
help.

In addition to that, every controller is known to be broken regarding
the wake-up timing.  It wakes up a few samples before actually
processing the data on the buffer.  This caused a lot of problems, for
example, with ALSA dmix or JACK.  Since 2.6.27 kernel, the driver puts
an artificial delay to the wake up timing.  This delay is controlled
via ``bdl_pos_adj`` option.

When ``bdl_pos_adj`` is a negative value (as default), it's assigned to
an appropriate value depending on the controller chip.  For Intel
chips, it'd be 1 while it'd be 32 for others.  Usually this works.
Only in case it doesn't work and you get warning messages, you should
change this parameter to other values.

Codec probing 문제

93-133

BIOS가 사용 가능한 codec slot을 잘못 보고하면 driver가 존재하지 않는 slot에 접근해 이후 codec 통신까지 망가질 수 있습니다. 대표 증상은 `azx_get_response timeout` 메시지입니다.

hda_intel: azx_get_response timeout, switching to polling mode:
      last cmd=0x12345678
hda_intel: azx_get_response timeout, switching to single_cmd mode:
      last cmd=0x12345678

첫 번째 polling mode 전환은 보통 비교적 무해합니다. IRQ로 codec response가 통지되지 않아 명시적 polling으로 읽는다는 뜻이며 CPU overhead는 매우 작습니다. 두 번째 single_cmd mode 전환은 fatal error로, 대개 존재하지 않는 codec slot 접근을 뜻합니다.

Fatal message가 나오면 `probe_mask` bitmask로 probing할 slot을 제한합니다. Bit마다 codec slot 하나가 대응하므로 slot 0만 검사할 때는 `probe_mask=1`, slot 0과 2는 `probe_mask=5`를 사용합니다.

Kernel 2.6.29부터 probing이 더 견고해졌습니다. 반대로 hardware가 사용 가능하다고 보고하지 않은 slot까지 강제로 검사해야 하는 잘못된 BIOS에서는 `probe_mask`의 bit 8(`0x100`)을 켭니다. 예를 들어 `probe_mask=0x103`은 hardware 보고와 무관하게 slot 0과 1을 강제 probing합니다.

probe_mask 예
대상
0x001Codec slot 0
0x005Codec slot 0과 2
0x100하위 mask에 지정한 slot을 강제로 probe하는 flag
0x103Slot 0과 1을 hardware 보고와 무관하게 강제 probe

하위 8 bit는 slot, bit 8은 강제 probing 의미입니다.

Codec-Probing Problem
---------------------
A less often but a more severe problem is the codec probing.  When
BIOS reports the available codec slots wrongly, the driver gets
confused and tries to access the non-existing codec slot.  This often
results in the total screw-up, and destructs the further communication
with the codec chips.  The symptom appears usually as error messages
like:
::

    hda_intel: azx_get_response timeout, switching to polling mode:
          last cmd=0x12345678
    hda_intel: azx_get_response timeout, switching to single_cmd mode:
          last cmd=0x12345678

The first line is a warning, and this is usually relatively harmless.
It means that the codec response isn't notified via an IRQ.  The
driver uses explicit polling method to read the response.  It gives
very slight CPU overhead, but you'd unlikely notice it.

The second line is, however, a fatal error.  If this happens, usually
it means that something is really wrong.  Most likely you are
accessing a non-existing codec slot.

Thus, if the second error message appears, try to narrow the probed
codec slots via ``probe_mask`` option.  It's a bitmask, and each bit
corresponds to the codec slot.  For example, to probe only the first
slot, pass ``probe_mask=1``.  For the first and the third slots, pass
``probe_mask=5`` (where 5 = 1 | 4), and so on.

Since 2.6.29 kernel, the driver has a more robust probing method, so
this error might happen rarely, though.

On a machine with a broken BIOS, sometimes you need to force the
driver to probe the codec slots the hardware doesn't report for use.
In such a case, turn the bit 8 (0x100) of ``probe_mask`` option on.
Then the rest 8 bits are passed as the codec slots to probe
unconditionally.  For example, ``probe_mask=0x103`` will force to probe
the codec slots 0 and 1 no matter what the hardware reports.

Interrupt handling

134-149

HD-Audio driver는 kernel 2.6.33부터 가능하면 MSI를 기본 사용합니다. 일부 시스템에서 더 안정적이고 일반적으로 성능에도 유리하기 때문입니다. 그러나 Nvidia controller는 특히 AMD chipset과 조합할 때 MSI regression을 보여 기본 비활성화됐습니다.

그 밖에도 MSI가 동작하지 않는 장치가 있습니다. 최신 kernel에서 stuttering 같은 음질 regression이나 lock-up이 생기면 `enable_msi=0`을 시험합니다. 효과가 있으면 `hda_intel.c` blacklist에 장치를 추가하고 upstream에 보고 및 patch를 제출해야 합니다.

MSI regression 확인
최신 kernel regression 확인enable_msi=0으로 재시험증상 해소 여부 비교재현 정보와 blacklist patch를 upstream에 보고

음질이나 lock-up 문제가 interrupt 방식 때문인지 확인합니다.

Interrupt Handling
------------------
HD-audio driver uses MSI as default (if available) since 2.6.33
kernel as MSI works better on some machines, and in general, it's
better for performance.  However, Nvidia controllers showed bad
regressions with MSI (especially in a combination with AMD chipset),
thus we disabled MSI for them.

There seem also still other devices that don't work with MSI.  If you
see a regression wrt the sound quality (stuttering, etc) or a lock-up
in the recent kernel, try to pass ``enable_msi=0`` option to disable
MSI.  If it works, you can add the known bad device to the blacklist
defined in hda_intel.c.  In such a case, please report and give the
patch back to the upstream developer.

Codec model option

150-229

HD-Audio driver의 가장 흔한 codec 문제는 지원하지 않는 기능 또는 장치 구성 불일치입니다. Codec-specific code는 BIOS 설정을 override하거나 더 포괄적인 기능을 제공하는 preset model을 여러 개 가집니다.

Driver는 PCI SSID를 static configuration table에서 찾습니다. 새 시스템에 일치 항목이 없으면 `BIOS auto-probing` 또는 구형 driver의 `Unknown model ... trying auto-probe from BIOS` 같은 정보 메시지가 나옵니다. 이는 warning이나 error가 아니라 SSID가 알려진 preset whitelist에 없다는 뜻입니다.

hda_codec: ALC880: BIOS auto-probing.
hda_codec: Unknown model for ALC880, trying auto-probe from BIOS...

Codec의 pin widget에는 BIOS가 위치, connection type, jack color 등의 default configuration을 설정합니다. Driver는 이를 바탕으로 연결을 추론하지만 일부 parser는 자동 probing을 지원하지 않고 BIOS 값도 자주 잘못됩니다.

Preset model, 최근 용어로 fix-up은 이런 상황을 보정합니다. PCI 또는 codec SSID가 기존 장치와 조금만 다르면 같은 model을 재사용할 수 있으며, `model` option을 주면 SSID lookup 대신 지정한 preset을 사용합니다.

사용 가능한 값은 codec chip마다 다릅니다. `/proc/asound/card*/codec#*`에서 vendor/product를 확인한 뒤 `Documentation/sound/hd-audio/models.rst`의 해당 codec 목록을 봅니다. 원문의 예는 Samsung Q1 Ultra 호환 ALC262에 `model=ultra`를 적용하는 것입니다.

특수 model 값
동작
nofixupCodec parser의 device-specific fixup 생략
genericCodec-specific parser를 건너뛰고 generic parser만 사용
XXXX:YYYY16진 sub-vendor:sub-device SSID를 quirk table 참조로 사용
103c:8862같은 driver가 동등하게 처리할 때 HP ProBook 445 G8 quirk 적용 예

Preset table lookup을 바꾸는 특수 값과 새 alias 형식입니다.

`model=XXXX:YYYY` 형식은 kernel 5.15부터 도입됐습니다. Target quirk가 model table에 이름으로 노출되지 않았을 때 다른 장치 SSID를 alias로 참조하는 데 유용합니다.

새 장치 model 선택
Codec proc file에서 chip 식별models.rst에서 같은 codec option 확인여러 model option을 제한적으로 시험필요하면 nofixup/generic/SSID alias 비교

자동 구성이 실패한 장치에서 model을 검토하는 순서입니다.

HD-Audio Codec
==============

Model Option
------------
The most common problem regarding the HD-audio driver is the
unsupported codec features or the mismatched device configuration.
Most of codec-specific code has several preset models, either to
override the BIOS setup or to provide more comprehensive features.

The driver checks PCI SSID and looks through the static configuration
table until any matching entry is found.  If you have a new machine,
you may see a message like below:
::

    hda_codec: ALC880: BIOS auto-probing.

Meanwhile, in the earlier versions, you would see a message like:
::

    hda_codec: Unknown model for ALC880, trying auto-probe from BIOS...

Even if you see such a message, DON'T PANIC.  Take a deep breath and
keep your towel.  First of all, it's an informational message, no
warning, no error.  This means that the PCI SSID of your device isn't
listed in the known preset model (white-)list.  But, this doesn't mean
that the driver is broken.  Many codec-drivers provide the automatic
configuration mechanism based on the BIOS setup.

The HD-audio codec has usually "pin" widgets, and BIOS sets the default
configuration of each pin, which indicates the location, the
connection type, the jack color, etc.  The HD-audio driver can guess
the right connection judging from these default configuration values.
However -- some codec-support codes, such as patch_analog.c, don't
support the automatic probing (yet as of 2.6.28).  And, BIOS is often,
yes, pretty often broken.  It sets up wrong values and screws up the
driver.

The preset model (or recently called as "fix-up") is provided
basically to overcome such a situation.  When the matching preset
model is found in the white-list, the driver assumes the static
configuration of that preset with the correct pin setup, etc.
Thus, if you have a newer machine with a slightly different PCI SSID
(or codec SSID) from the existing one, you may have a good chance to
re-use the same model.  You can pass the ``model`` option to specify the
preset model instead of PCI (and codec-) SSID look-up.

What ``model`` option values are available depends on the codec chip.
Check your codec chip from the codec proc file (see "Codec Proc-File"
section below).  It will show the vendor/product name of your codec
chip.  Then, see Documentation/sound/hd-audio/models.rst file,
the section of HD-audio driver.  You can find a list of codecs
and ``model`` options belonging to each codec.  For example, for Realtek
ALC262 codec chip, pass ``model=ultra`` for devices that are compatible
with Samsung Q1 Ultra.

Thus, the first thing you can do for any brand-new, unsupported and
non-working HD-audio hardware is to check HD-audio codec and several
different ``model`` option values.  If you have any luck, some of them
might suit with your device well.

There are a few special model option values:

* when 'nofixup' is passed, the device-specific fixups in the codec
  parser are skipped.
* when ``generic`` is passed, the codec-specific parser is skipped and
  only the generic parser is used.

A new style for the model option that was introduced since 5.15 kernel
is to pass the PCI or codec SSID in the form of ``model=XXXX:YYYY``
where XXXX and YYYY are the sub-vendor and sub-device IDs in hex
numbers, respectively.  This is a kind of aliasing to another device;
when this form is given, the driver will refer to that SSID as a
reference to the quirk table.  It'd be useful especially when the
target quirk isn't listed in the model table.  For example, passing
model=103c:8862 will apply the quirk for HP ProBook 445 G8 (which
isn't found in the model table as of writing) as long as the device is
handled equivalently by the same driver.

Speaker와 headphone 출력

230-274

내장 speaker나 headphone jack이 무음인 문제는 매우 흔합니다. 먼저 headphone 출력을 시험하는 편이 좋습니다. Speaker는 external amplifier bit 같은 추가 제어가 필요한 경우가 많아 headphone이 성공할 가능성이 조금 더 높습니다.

Bug report 전에 mixer 설정을 다시 확인합니다. 최신 `snd-hda-intel`은 대개 `Master`, front channel을 뜻하는 `Front`, 그리고 별도의 `Headphone`, `Speaker` control을 제공합니다. Codec에 `External Amplifier` switch가 있으면 켭니다.

Headphone 삽입 시 speaker를 자동 mute하는 기능은 대부분 구현돼 있지만 모든 preset이나 codec code에 있는 것은 아닙니다. 다른 model이 더 잘 맞을 수 있으며 어느 model도 동작하지 않으면 bug report를 제출합니다.

출력 debugging 포인트
대상확인 사항
External amplifierEAPD verb 또는 GPIO0/GPIO1로 on/off
EAPD-capable pinSET_EAPD_BTL verb(0x70c) 시험
Realtek codec`patch_realtek.c`의 vendor-specific coefficient
IDT codec`patch_sigmatel.c`의 analog pin별 power enable/disable
Pin detection stallGET_PIN_SENSE verb(0xf09)가 trigger 전 통신을 멈추는 장치 확인

Driver 내부를 직접 확인할 때의 주요 hardware 제어입니다.

Speaker and Headphone Output
----------------------------
One of the most frequent (and obvious) bugs with HD-audio is the
silent output from either or both of a built-in speaker and a
headphone jack.  In general, you should try a headphone output at
first.  A speaker output often requires more additional controls like
the external amplifier bits.  Thus a headphone output has a slightly
better chance.

Before making a bug report, double-check whether the mixer is set up
correctly.  The recent version of snd-hda-intel driver provides mostly
"Master" volume control as well as "Front" volume (where Front
indicates the front-channels).  In addition, there can be individual
"Headphone" and "Speaker" controls.

Ditto for the speaker output.  There can be "External Amplifier"
switch on some codecs.  Turn on this if present.

Another related problem is the automatic mute of speaker output by
headphone plugging.  This feature is implemented in most cases, but
not on every preset model or codec-support code.

In anyway, try a different model option if you have such a problem.
Some other models may match better and give you more matching
functionality.  If none of the available models works, send a bug
report.  See the bug report section for details.

If you are masochistic enough to debug the driver problem, note the
following:

* The speaker (and the headphone, too) output often requires the
  external amplifier.  This can be set usually via EAPD verb or a
  certain GPIO.  If the codec pin supports EAPD, you have a better
  chance via SET_EAPD_BTL verb (0x70c).  On others, GPIO pin (mostly
  it's either GPIO0 or GPIO1) may turn on/off EAPD.
* Some Realtek codecs require special vendor-specific coefficients to
  turn on the amplifier.  See patch_realtek.c.
* IDT codecs may have extra power-enable/disable controls on each
  analog pin.  See patch_sigmatel.c.
* Very rare but some devices don't accept the pin-detection verb until
  triggered.  Issuing GET_PIN_SENSE verb (0xf09) may result in the
  codec-communication stall.  Some examples are found in
  patch_realtek.c.

Capture 문제

275-306

Capture 문제는 mixer 설정 누락 때문인 경우가 많습니다. `Capture Source` 또는 `Input Source`를 올바르게 고르는 것 외에 `Capture Volume`, `Capture Switch`, 장치에 따라 `Mic Boost` volume/switch도 설정해야 합니다.

PulseAudio plugin 없는 `default` PCM으로 열면 `Digital Capture Volume`이 나타날 수 있습니다. Hardware volume이 없는 digital mic 등에 software gain/attenuation을 제공하며, 특별히 필요하지 않으면 0 dB에 해당하는 정확히 50%로 둡니다. Raw access인 `hw` PCM에는 이 control이 영향을 주지 않습니다.

일부 codec/장치는 analog circuit 품질 때문에 녹음에 DC offset이 섞이지만 driver bug는 아닙니다. 현대 laptop 대부분은 analog CD input이 없으므로 source가 보여도 CD 입력 녹음은 동작하지 않을 수 있으며 이 경우 CDDA를 사용합니다.

Plug 상태에 따른 내장/external mic 자동 전환은 일부 model에만 구현돼 있습니다. Tester 부족이 주요 이유이며 개선 patch 제출을 환영한다고 원문은 설명합니다.

Capture 점검
항목권장 확인
SourceCapture Source/Input Source 선택
GainCapture Volume/Switch 및 Mic Boost
Digital Capture Volume필요 없으면 50%=0 dB
CD inputAnalog 연결이 없으면 CDDA 사용
Mic auto-switch사용 model의 구현 여부 확인

무음 또는 왜곡 녹음에서 확인할 항목입니다.

Capture Problems
----------------
The capture problems are often because of missing setups of mixers.
Thus, before submitting a bug report, make sure that you set up the
mixer correctly.  For example, both "Capture Volume" and "Capture
Switch" have to be set properly in addition to the right "Capture
Source" or "Input Source" selection.  Some devices have "Mic Boost"
volume or switch.

When the PCM device is opened via "default" PCM (without pulse-audio
plugin), you'll likely have "Digital Capture Volume" control as well.
This is provided for the extra gain/attenuation of the signal in
software, especially for the inputs without the hardware volume
control such as digital microphones.  Unless really needed, this
should be set to exactly 50%, corresponding to 0dB -- neither extra
gain nor attenuation.  When you use "hw" PCM, i.e., a raw access PCM,
this control will have no influence, though.

It's known that some codecs / devices have fairly bad analog circuits,
and the recorded sound contains a certain DC-offset.  This is no bug
of the driver.

Most of modern laptops have no analog CD-input connection.  Thus, the
recording from CD input won't work in many cases although the driver
provides it as the capture source.  Use CDDA instead.

The automatic switching of the built-in and external mic per plugging
is implemented on some codec models but not on every model.  Partly
because of my laziness but mostly lack of testers.  Feel free to
submit the improvement patch to the author.

Raw verb 직접 debugging

307-319

어떤 model option도 개선하지 못하면 raw HD-Audio codec verb를 직접 보내 debugging할 수 있습니다. `hda-emu`와 `hda-analyzer` 같은 tool이 있으며 사용하려면 hwdep를 활성화해야 합니다.

이 절 뒤부터는 kernel configuration, proc/sysfs, patch loader, power, trace 및 debug tool을 다루는 기타 문제 영역입니다.

직접 debugging 진입
Model option 비교 실패CONFIG_SND_HDA_HWDEP 활성화Codec proc-file 확보hda-verb / hda-analyzer / hda-emu 사용

Preset 비교가 실패한 뒤 raw interface로 이동합니다.

Direct Debugging
----------------
If no model option gives you a better result, and you are a tough guy
to fight against evil, try debugging via hitting the raw HD-audio
codec verbs to the device.  Some tools are available: hda-emu and
hda-analyzer.  The detailed description is found in the sections
below.  You'd need to enable hwdep for using these tools.  See "Kernel
Configuration" section.


Other Issues
============

Kernel configuration

320-347

Debug 여부와 무관하게 `CONFIG_SND_DEBUG=y`를 활성화하는 것이 권장됩니다. `CONFIG_SND_HDA_CODEC_*`는 controller vendor가 아니라 codec chip에 대응하므로 `lspci`가 Nvidia controller를 보여도 다른 vendor codec option이 필요할 수 있습니다. 확실하지 않으면 모두 활성화합니다.

`CONFIG_SND_HDA_HWDEP`는 codec마다 hardware-dependent device를 만들어 raw access를 제공합니다. 예를 들어 첫 card의 codec slot 2에는 `hwC0D2`가 생깁니다. `hda-verb`, `hda-analyzer`에는 이 hwdep device가 필요합니다.

`CONFIG_SND_HDA_RECONFIG`는 hwdep에 의존하며 codec hwdep directory 아래에 동적 재구성용 sysfs file을 만듭니다. `CONFIG_SND_HDA_POWER_SAVE`는 power-saving 기능을 활성화합니다.

HD-Audio 관련 Kconfig
Option용도
CONFIG_SND_DEBUGSound debugging 정보 활성화
CONFIG_SND_HDA_CODEC_*실제 codec vendor별 parser 선택
CONFIG_SND_HDA_HWDEPCodec별 raw hwdep device
CONFIG_SND_HDA_RECONFIGSysfs 기반 동적 codec 재구성
CONFIG_SND_HDA_POWER_SAVECodec power-saving

문서가 권장하거나 뒤 절에서 사용하는 option입니다.

Kernel Configuration
--------------------
In general, I recommend you to enable the sound debug option,
``CONFIG_SND_DEBUG=y``, no matter whether you are debugging or not.

Don't forget to turn on the appropriate ``CONFIG_SND_HDA_CODEC_*``
options.  Note that each of them corresponds to the codec chip, not
the controller chip.  Thus, even if lspci shows the Nvidia controller,
you may need to choose the option for other vendors.  If you are
unsure, just select all yes.

``CONFIG_SND_HDA_HWDEP`` is a useful option for debugging the driver.
When this is enabled, the driver creates hardware-dependent devices
(one per each codec), and you have a raw access to the device via
these device files.  For example, ``hwC0D2`` will be created for the
codec slot #2 of the first card (#0).  For debug-tools such as
hda-verb and hda-analyzer, the hwdep device has to be enabled.
Thus, it'd be better to turn this on always.

``CONFIG_SND_HDA_RECONFIG`` is a new option, and this depends on the
hwdep option above.  When enabled, you'll have some sysfs files under
the corresponding hwdep directory.  See "HD-audio reconfiguration"
section below.

``CONFIG_SND_HDA_POWER_SAVE`` option enables the power-saving feature.
See "Power-saving" section below.

Codec proc-file

348-367

Codec proc-file은 HD-Audio debugging의 핵심 자료입니다. `/proc/asound/card*/codec#*`에 codec slot마다 하나씩 있으며 vendor, product ID/name, widget type, capability 등을 보여줍니다.

Jack sensing은 trigger state에 의존할 수 있어 현재 proc-file에는 표시되지 않습니다. Debug tool이 이 file을 읽고 emulator의 기본 codec 정보로도 사용할 수 있습니다.

Generic parser 사용 여부도 확인할 수 있습니다. Generic parser일 때 vendor/product 이름은 `Realtek ALC262` 대신 `Realtek ID 0262`처럼 나타납니다.

Codec proc-file 활용
정보용도
Vendor/product ID와 이름Codec 식별 및 parser 확인
Widget type/capabilityPin, mixer, converter topology 분석
Parser 이름 형태Generic parser 사용 여부 판별
전체 dumphda-emu 입력 및 bug report 비교

한 파일에서 얻는 주요 정보입니다.

Codec Proc-File
---------------
The codec proc-file is a treasure-chest for debugging HD-audio.
It shows most of useful information of each codec widget.

The proc file is located in /proc/asound/card*/codec#*, one file per
each codec slot.  You can know the codec vendor, product id and
names, the type of each widget, capabilities and so on.
This file, however, doesn't show the jack sensing state, so far.  This
is because the jack-sensing might be depending on the trigger state.

This file will be picked up by the debug tools, and also it can be fed
to the emulator as the primary codec information.  See the debug tools
section below.

This proc file can be also used to check whether the generic parser is
used.  When the generic parser is used, the vendor/product ID name
will appear as "Realtek ID 0262", instead of "Realtek ALC262".

HD-Audio 동적 재구성

368-432

Driver reload 없이 codec을 동적으로 다시 구성하는 experimental 기능입니다. 각 codec hwdep directory, 예를 들어 `/sys/class/sound/hwC0D0` 아래의 sysfs file을 사용합니다.

Codec hwdep sysfs
File의미
vendor_id32-bit codec vendor ID 표시 및 쓰기로 변경
subsystem_id32-bit codec subsystem ID 표시 및 쓰기로 변경
revision_id32-bit codec revision ID 표시 및 쓰기로 변경
afgAFG ID 표시, read-only
mfgMFG ID 표시, read-only
nameCodec 이름 표시 및 쓰기로 변경
modelname현재 `model` option 표시 및 쓰기로 변경
init_verbs초기화 때 실행할 `nid verb parameter` 추가
hints`key = value` 형식의 parser hint 저장
init_pin_configsBIOS가 설정한 초기 pin default
driver_pin_configsParser가 명시적으로 바꾼 pin default만 표시
user_pin_configsNID/value를 추가해 BIOS와 driver pin config까지 override
reconfig값을 쓰면 변경 사항을 반영해 codec tree 재초기화/재parse
clearCodec reset, mixer/PCM 제거, init verb와 hint 초기화

재구성 interface의 읽기/쓰기 의미를 원문 정의 목록대로 정리했습니다.

예를 들어 pin widget `0x14`의 default configuration을 `0x9993013f`로 바꾸고 재구성하려면 다음 명령을 사용합니다.

# echo 0x14 0x9993013f > /sys/class/sound/hwC0D0/user_pin_configs
# echo 1 > /sys/class/sound/hwC0D0/reconfig
Sysfs 재구성
필요하면 clear로 기존 구성 제거ID/model/init_verbs/hints/pin config 기록reconfig에 값 쓰기Driver가 codec을 재초기화하고 tree 재parse

Override를 기록하고 codec tree를 다시 parse합니다.

HD-Audio Reconfiguration
------------------------
This is an experimental feature to allow you re-configure the HD-audio
codec dynamically without reloading the driver.  The following sysfs
files are available under each codec-hwdep device directory (e.g.
/sys/class/sound/hwC0D0):

vendor_id
    Shows the 32bit codec vendor-id hex number.  You can change the
    vendor-id value by writing to this file.
subsystem_id
    Shows the 32bit codec subsystem-id hex number.  You can change the
    subsystem-id value by writing to this file.
revision_id
    Shows the 32bit codec revision-id hex number.  You can change the
    revision-id value by writing to this file.
afg
    Shows the AFG ID.  This is read-only.
mfg
    Shows the MFG ID.  This is read-only.
name
    Shows the codec name string.  Can be changed by writing to this
    file.
modelname
    Shows the currently set ``model`` option.  Can be changed by writing
    to this file.
init_verbs
    The extra verbs to execute at initialization.  You can add a verb by
    writing to this file.  Pass three numbers: nid, verb and parameter
    (separated with a space).
hints
    Shows / stores hint strings for codec parsers for any use.
    Its format is ``key = value``.  For example, passing ``jack_detect = no``
    will disable the jack detection of the machine completely.
init_pin_configs
    Shows the initial pin default config values set by BIOS.
driver_pin_configs
    Shows the pin default values set by the codec parser explicitly.
    This doesn't show all pin values but only the changed values by
    the parser.  That is, if the parser doesn't change the pin default
    config values by itself, this will contain nothing.
user_pin_configs
    Shows the pin default config values to override the BIOS setup.
    Writing this (with two numbers, NID and value) appends the new
    value.  The given will be used instead of the initial BIOS value at
    the next reconfiguration time.  Note that this config will override
    even the driver pin configs, too.
reconfig
    Triggers the codec re-configuration.  When any value is written to
    this file, the driver re-initialize and parses the codec tree
    again.  All the changes done by the sysfs entries above are taken
    into account.
clear
    Resets the codec, removes the mixer elements and PCM stuff of the
    specified codec, and clear all init verbs and hints.

For example, when you want to change the pin default configuration
value of the pin widget 0x14 to 0x9993013f, and let the driver
re-configure based on that state, run like below:
::

    # echo 0x14 0x9993013f > /sys/class/sound/hwC0D0/user_pin_configs
    # echo 1 > /sys/class/sound/hwC0D0/reconfig

Parser hint 문자열

433-512

Codec parser에는 실제 codec/장치 동작에 맞추기 위한 switch와 조정값이 있습니다. Sysfs 또는 patch file의 `hints`로 동적으로 바꿀 수 있습니다. 예를 들어 `jack_detect = no`는 jack detection을 끄고 auto-mute와 mic auto-switch를 건너뜁니다.

Boolean 값에는 `yes`, `no`, `true`, `false`, `1`, `0`을 사용할 수 있습니다.

Generic parser hint
Hint설명
jack_detect (bool)장치 전체의 jack detection 가용 여부, 기본 true
inv_jack_detect (bool)Jack detection logic이 반전됨
trigger_sense (bool)Jack detection에 AC_VERB_SET_PIN_SENSE 명시 호출 필요
inv_eapd (bool)EAPD가 반전 logic으로 구현됨
pcm_format_first (bool)Stream tag와 channel ID보다 PCM format을 먼저 설정
sticky_stream (bool)PCM format, stream tag, ID를 가능한 오래 유지, 기본 true
spdif_status_reset (bool)SPDIF stream 설정 때마다 status bit reset
pin_amp_workaround (bool)Output pin이 여러 amp 값을 가질 수 있음
single_adc_amp (bool)ADC가 input amp 하나만 가질 수 있음
auto_mute (bool)Headphone auto-mute 활성/비활성, 기본 true
auto_mic (bool)Mic auto-switch 활성/비활성, 기본 true
line_in_auto_switch (bool)Line-in auto-switch 활성/비활성, 기본 false
need_dac_fix (bool)Channel count에 따라 DAC 제한
primary_hp (bool)Headphone jack을 primary output으로 probe, 기본 true
multi_io (bool)공유 line-in/surround 또는 mic/clfe 같은 multi-I/O 구성 probe
multi_cap_vol (bool)여러 capture volume 제공
inv_dmic_split (bool)위상 반전 digital mic에 분리된 internal mic volume/switch 제공
indep_hp (bool)가능하면 독립 headphone PCM stream과 mixer control 제공
add_stereo_mix_input (bool)가능하면 stereo mix(analog-loopback mix)를 input mux에 추가
add_jack_modes (bool)I/O jack마다 headphone amp와 mic bias VREF를 바꾸는 Jack Mode enum 추가
power_save_node (bool)실제 pin/stream 상태에 따라 widget node의 D0/D3를 제어하는 고급 power management
power_down_unused (bool)사용하지 않는 widget을 끄는 power_save_node 부분집합, 향후 제거 예정
add_hp_mic (bool)가능하면 headphone을 capture source에 추가
hp_mic_detect (bool)내장 mic 하나인 경우 hp/mic 공유 input 활성/비활성, 기본 true
vmaster (bool)Virtual Master control 활성/비활성, 기본 true
mixer_nid (int)Analog-loopback mixer의 widget NID 지정

원문의 지원 hint와 동작을 모두 보존했습니다.

Hint Strings
------------
The codec parser have several switches and adjustment knobs for
matching better with the actual codec or device behavior.  Many of
them can be adjusted dynamically via "hints" strings as mentioned in
the section above.  For example, by passing ``jack_detect = no`` string
via sysfs or a patch file, you can disable the jack detection, thus
the codec parser will skip the features like auto-mute or mic
auto-switch.  As a boolean value, either ``yes``, ``no``, ``true``, ``false``,
``1`` or ``0`` can be passed.

The generic parser supports the following hints:

jack_detect (bool)
    specify whether the jack detection is available at all on this
    machine; default true
inv_jack_detect (bool)
    indicates that the jack detection logic is inverted
trigger_sense (bool)
    indicates that the jack detection needs the explicit call of
    AC_VERB_SET_PIN_SENSE verb
inv_eapd (bool)
    indicates that the EAPD is implemented in the inverted logic
pcm_format_first (bool)
    sets the PCM format before the stream tag and channel ID
sticky_stream (bool)
    keep the PCM format, stream tag and ID as long as possible;
    default true
spdif_status_reset (bool)
    reset the SPDIF status bits at each time the SPDIF stream is set
    up
pin_amp_workaround (bool)
    the output pin may have multiple amp values
single_adc_amp (bool)
    ADCs can have only single input amps
auto_mute (bool)
    enable/disable the headphone auto-mute feature; default true
auto_mic (bool)
    enable/disable the mic auto-switch feature; default true
line_in_auto_switch (bool)
    enable/disable the line-in auto-switch feature; default false
need_dac_fix (bool)
    limits the DACs depending on the channel count
primary_hp (bool)
    probe headphone jacks as the primary outputs; default true
multi_io (bool)
    try probing multi-I/O config (e.g. shared line-in/surround,
    mic/clfe jacks)
multi_cap_vol (bool)
    provide multiple capture volumes
inv_dmic_split (bool)
    provide split internal mic volume/switch for phase-inverted
    digital mics
indep_hp (bool)
    provide the independent headphone PCM stream and the corresponding
    mixer control, if available
add_stereo_mix_input (bool)
    add the stereo mix (analog-loopback mix) to the input mux if
    available
add_jack_modes (bool)
    add "xxx Jack Mode" enum controls to each I/O jack for allowing to
    change the headphone amp and mic bias VREF capabilities
power_save_node (bool)
    advanced power management for each widget, controlling the power
    state (D0/D3) of each widget node depending on the actual pin and
    stream states
power_down_unused (bool)
    power down the unused widgets, a subset of power_save_node, and
    will be dropped in future
add_hp_mic (bool)
    add the headphone to capture source if possible
hp_mic_detect (bool)
    enable/disable the hp/mic shared input for a single built-in mic
    case; default true
vmaster (bool)
    enable/disable the virtual Master control; default true
mixer_nid (int)
    specifies the widget NID of the analog-loopback mixer

초기 firmware patch

513-606

`CONFIG_SND_HDA_PATCH_LOADER=y`이면 codec 최초 초기화 전에 HD-Audio 설정을 수정하는 text firmware patch를 전달할 수 있습니다. 위 sysfs 재구성과 비슷하지만 첫 codec configuration보다 먼저 적용됩니다.

[codec]
0x12345678 0xabcd1234 2

[model]
auto

[pincfg]
0x12 0x411111f0

[verb]
0x20 0x500 0x03
0x20 0x400 0xff

[hint]
jack_detect = no

`[codec]` 다음 줄에는 vendor ID, subsystem ID, codec address 세 수를 씁니다. 다음 `[codec]` 전까지의 entry가 해당 codec에 적용됩니다. 첫째 또는 둘째 값에 0이나 음수를 주면 그 field 검사를 생략하므로 SSID 초기화가 망가진 장치에 유용합니다.

`[model]`은 codec model 이름을 바꾸며 module option보다 우선합니다. `[pincfg]` 뒤는 `user_pin_configs`, `[verb]` 뒤는 `init_verbs`, `[hint]` 뒤는 `hints` sysfs entry와 같은 형식으로 parse됩니다.

Patch section
Section내용
[codec]vendor-id, subsystem-id, codec address로 적용 대상 선택
[model]Codec model 이름 override
[pincfg]초기 pin default configuration
[verb]초기화 verb 목록
[hint]Parser hint 목록
[vendor_id]Codec vendor ID override
[subsystem_id]Codec subsystem ID override
[revision_id]Revision ID override
[chip_name]Codec chip 이름 override

Firmware patch의 section별 역할입니다.

Vendor ID를 `0x12345678`에서 `0xdeadbeef`로 바꾸거나 subsystem/revision/chip name을 바꾸는 예도 제공됩니다.

[codec]
0x12345678 0xabcd1234 2

[vendor_id]
0xdeadbeef

[codec]
0x12345678 0xabcd1234 2

[subsystem_id]
0xffff1111

[revision_id]
0x10

[chip_name]
My-own NEWS-0002

Driver는 `request_firmware()`로 file을 읽으므로 보통 `/lib/firmware`에 둡니다. `patch=hda-init.fw`이면 `/lib/firmware/hda-init.fw`가 있어야 합니다. `patch` option은 card instance별이며 여러 card는 comma로 file name을 구분합니다.

options snd-hda-intel patch=on-board-patch,hdmi-patch
Early Patching
--------------
When ``CONFIG_SND_HDA_PATCH_LOADER=y`` is set, you can pass a "patch"
as a firmware file for modifying the HD-audio setup before
initializing the codec.  This can work basically like the
reconfiguration via sysfs in the above, but it does it before the
first codec configuration.

A patch file is a plain text file which looks like below:

::

    [codec]
    0x12345678 0xabcd1234 2

    [model]
    auto

    [pincfg]
    0x12 0x411111f0

    [verb]
    0x20 0x500 0x03
    0x20 0x400 0xff

    [hint]
    jack_detect = no


The file needs to have a line ``[codec]``.  The next line should contain
three numbers indicating the codec vendor-id (0x12345678 in the
example), the codec subsystem-id (0xabcd1234) and the address (2) of
the codec.  The rest patch entries are applied to this specified codec
until another codec entry is given.  Passing 0 or a negative number to
the first or the second value will make the check of the corresponding
field be skipped.  It'll be useful for really broken devices that don't
initialize SSID properly.

The ``[model]`` line allows to change the model name of the each codec.
In the example above, it will be changed to model=auto.
Note that this overrides the module option.

After the ``[pincfg]`` line, the contents are parsed as the initial
default pin-configurations just like ``user_pin_configs`` sysfs above.
The values can be shown in user_pin_configs sysfs file, too.

Similarly, the lines after ``[verb]`` are parsed as ``init_verbs``
sysfs entries, and the lines after ``[hint]`` are parsed as ``hints``
sysfs entries, respectively.

Another example to override the codec vendor id from 0x12345678 to
0xdeadbeef is like below:
::

    [codec]
    0x12345678 0xabcd1234 2

    [vendor_id]
    0xdeadbeef


In the similar way, you can override the codec subsystem_id via
``[subsystem_id]``, the revision id via ``[revision_id]`` line.
Also, the codec chip name can be rewritten via ``[chip_name]`` line.
::

    [codec]
    0x12345678 0xabcd1234 2

    [subsystem_id]
    0xffff1111

    [revision_id]
    0x10

    [chip_name]
    My-own NEWS-0002


The hd-audio driver reads the file via request_firmware().  Thus,
a patch file has to be located on the appropriate firmware path,
typically, /lib/firmware.  For example, when you pass the option
``patch=hda-init.fw``, the file /lib/firmware/hda-init.fw must be
present.

The patch module option is specific to each card instance, and you
need to give one file name for each instance, separated by commas.
For example, if you have two cards, one for an on-board analog and one
for an HDMI video board, you may pass patch option like below:
::

    options snd-hda-intel patch=on-board-patch,hdmi-patch

Power-saving

607-634

Power-saving은 일정 시간 inactive인 device를 자동으로 끄는 auto-suspend입니다. Suspend까지의 시간은 `power_save` module option으로 지정하고 sysfs에서 동적으로 바꿀 수 있습니다.

일부 codec은 analog loopback이 활성화돼 있으면 power-saving이 동작하지 않으므로 필요 없는 signal route를 모두 mute해야 합니다.

장치에 따라 power-down/up 때 click noise가 날 수 있습니다. OpenSUSE 같은 distribution은 전원 cable을 뽑으면 자동으로 power-saving을 켜므로 noise가 들리면 먼저 `/sys/module/snd_hda_intel/parameters/power_save`를 확인합니다. 0이 아니면 기능이 켜진 상태입니다.

최신 kernel은 Intel LynxPoint 같은 일부 HD-Audio controller의 runtime PM도 지원합니다. `power_save_controller` option과 `/sys/module/snd_hda_intel/parameters`에서 강제로 활성화/비활성화할 수 있습니다.

Power option
Option범위
power_saveCodec inactive 후 power-down까지의 시간
power_save_controller지원 controller chip의 runtime PM 강제 제어

Codec와 controller의 절전 범위를 구분합니다.

Power-Saving
------------
The power-saving is a kind of auto-suspend of the device.  When the
device is inactive for a certain time, the device is automatically
turned off to save the power.  The time to go down is specified via
``power_save`` module option, and this option can be changed dynamically
via sysfs.

The power-saving won't work when the analog loopback is enabled on
some codecs.  Make sure that you mute all unneeded signal routes when
you want the power-saving.

The power-saving feature might cause audible click noises at each
power-down/up depending on the device.  Some of them might be
solvable, but some are hard, I'm afraid.  Some distros such as
openSUSE enables the power-saving feature automatically when the power
cable is unplugged.  Thus, if you hear noises, suspect first the
power-saving.  See /sys/module/snd_hda_intel/parameters/power_save to
check the current value.  If it's non-zero, the feature is turned on.

The recent kernel supports the runtime PM for the HD-audio controller
chip, too.  It means that the HD-audio controller is also powered up /
down dynamically.  The feature is enabled only for certain controller
chips like Intel LynxPoint.  You can enable/disable this feature
forcibly by setting ``power_save_controller`` option, which is also
available at /sys/module/snd_hda_intel/parameters directory.

Tracepoint와 verb decoding

635-684

HD-Audio driver는 CORB write, RIRB response, bus reset, unsolicited event, power transition을 위한 기본 tracepoint를 제공합니다.

HDA tracepoint
Tracepoint대상
hda:hda_send_cmd각 CORB write
hda:hda_get_responseCodec driver가 읽은 RIRB response
hda:hda_bus_resetFatal error 등에 의한 bus reset
hda:hda_unsol_eventUnsolicited event
hda:hda_power_downPower-saving에 의한 power down
hda:hda_power_upPower-saving에 의한 power up

각 event가 기록하는 동작입니다.

모든 HDA tracepoint는 다음 명령으로 켭니다. 이후 `/sys/kernel/tracing/trace`에서 기록을 읽습니다.

# echo 1 > /sys/kernel/tracing/events/hda/enable
# cat /sys/kernel/tracing/trace

Trace의 `[0:0]`은 card number와 codec address이고 `val`은 codec으로 보낸 packed value입니다. `hda-emu` package의 `hda-decode-verb`로 해석할 수 있습니다. 예제 `e3a019`는 left output amp 값을 25로 설정합니다.

% hda-decode-verb 0xe3a019
raw value = 0x00e3a019
cid = 0, nid = 0x0e, verb = 0x3a0, parm = 0x19
raw value: verb = 0x3a0, parm = 0x19
verbname = set_amp_gain_mute
amp raw val = 0xa019
output, left, idx=0, mute=0, val=25
Tracepoints
-----------
The hd-audio driver gives a few basic tracepoints.
``hda:hda_send_cmd`` traces each CORB write while ``hda:hda_get_response``
traces the response from RIRB (only when read from the codec driver).
``hda:hda_bus_reset`` traces the bus-reset due to fatal error, etc,
``hda:hda_unsol_event`` traces the unsolicited events, and
``hda:hda_power_down`` and ``hda:hda_power_up`` trace the power down/up
via power-saving behavior.

Enabling all tracepoints can be done like
::

    # echo 1 > /sys/kernel/tracing/events/hda/enable

then after some commands, you can traces from
/sys/kernel/tracing/trace file.  For example, when you want to
trace what codec command is sent, enable the tracepoint like:
::

    # cat /sys/kernel/tracing/trace
    # tracer: nop
    #
    #       TASK-PID    CPU#    TIMESTAMP  FUNCTION
    #          | |       |          |         |
           <...>-7807  [002] 105147.774889: hda_send_cmd: [0:0] val=e3a019
           <...>-7807  [002] 105147.774893: hda_send_cmd: [0:0] val=e39019
           <...>-7807  [002] 105147.999542: hda_send_cmd: [0:0] val=e3a01a
           <...>-7807  [002] 105147.999543: hda_send_cmd: [0:0] val=e3901a
           <...>-26764 [001] 349222.837143: hda_send_cmd: [0:0] val=e3a019
           <...>-26764 [001] 349222.837148: hda_send_cmd: [0:0] val=e39019
           <...>-26764 [001] 349223.058539: hda_send_cmd: [0:0] val=e3a01a
           <...>-26764 [001] 349223.058541: hda_send_cmd: [0:0] val=e3901a

Here ``[0:0]`` indicates the card number and the codec address, and
``val`` shows the value sent to the codec, respectively.  The value is
a packed value, and you can decode it via hda-decode-verb program
included in hda-emu package below.  For example, the value e3a019 is
to set the left output-amp value to 25.
::

    % hda-decode-verb 0xe3a019
    raw value = 0x00e3a019
    cid = 0, nid = 0x0e, verb = 0x3a0, parm = 0x19
    raw value: verb = 0x3a0, parm = 0x19
    verbname = set_amp_gain_mute
    amp raw val = 0xa019
    output, left, idx=0, mute=0, val=25

Development tree

685-696

최신 HD-Audio 개발 code는 `git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/sound.git`의 sound git tree에 있습니다.

일반적인 주 개발 branch로 `master` 또는 `for-next`를 사용할 수 있고, 현재 kernel과 다음 kernel을 위한 개발은 각각 `for-linus`와 `for-next`에서 찾을 수 있습니다.

Sound tree branch
Branch용도
master일반 주 개발 branch
for-linus현재 kernel용 변경
for-next다음 kernel용 변경 및 주 개발

원문이 설명하는 개발 branch 용도입니다.

Development Tree
----------------
The latest development codes for HD-audio are found on sound git tree:

* git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/sound.git

The master branch or for-next branches can be used as the main
development branches in general while the development for the current
and next kernels are found in for-linus and for-next branches,
respectively.

Bug report 제출

697-719

어떤 model이나 module option도 동작하지 않으면 developer에게 bug report를 제출합니다. Hardware vendor/product/model, kernel version, 외부 build라면 ALSA-driver version, `alsa-info.sh --no-upload` 출력을 포함해야 합니다.

Regression이면 동작하는 kernel과 실패하는 kernel 양쪽의 alsa-info 출력이 가장 유용합니다. Codec register를 직접 비교할 수 있기 때문입니다.

Bug report 대상
경로주소
kernel-bugzillahttps://bugzilla.kernel.org/
alsa-devel mailing listalsa-devel@alsa-project.org

원문에 제시된 두 제출 경로입니다.

Report 준비
Hardware 식별 정보 기록Kernel/ALSA version 기록alsa-info.sh --no-upload 실행Regression이면 양쪽 kernel 출력 첨부Bugzilla 또는 alsa-devel에 제출

재현 가능한 최소 정보와 비교 자료를 모읍니다.

Sending a Bug Report
--------------------
If any model or module options don't work for your device, it's time
to send a bug report to the developers.  Give the following in your
bug report:

* Hardware vendor, product and model names
* Kernel version (and ALSA-driver version if you built externally)
* ``alsa-info.sh`` output; run with ``--no-upload`` option.  See the
  section below about alsa-info

If it's a regression, at best, send alsa-info outputs of both working
and non-working kernels.  This is really helpful because we can
compare the codec registers directly.

Send a bug report either the following:

kernel-bugzilla
    https://bugzilla.kernel.org/
alsa-devel ML
    alsa-devel@alsa-project.org

Debug tool 개요와 alsa-info

720-761

`alsa-info.sh`는 audio device 정보를 수집하는 유용한 script이며 `alsa-utils` package에 포함됩니다. 최신 source는 `git://git.alsa-project.org/alsa-utils.git` 또는 `https://www.alsa-project.org/alsa-info.sh`에서 얻을 수 있습니다.

Root로 실행하면 module 목록/parameter, codec proc-file을 포함한 proc 내용, mixer 출력, control element를 수집합니다. 기본 동작은 alsa-project.org web server에 올리지만 bug report에는 `--no-upload`로 local file을 만들어 첨부하는 편이 좋습니다. 다른 option은 `--help`에서 확인합니다.

Probe error나 명백한 model mismatch에서는 가능하면 cold reboot 후 `probe_only=1`로 driver를 load하고 alsa-info를 실행합니다. Mixer/PCM은 구성하지 않고 codec slot만 probe하므로 driver가 바꾸기 전 raw codec 정보를 얻을 수 있지만 audio에는 사용할 수 없습니다. HDA reconfig가 켜져 있으면 hwdep sysfs로 구성을 계속할 수 있습니다.

`probe_only` mask 2는 HDA codec reset을 생략합니다. Module option으로 `probe_only=3`을 주면 probe-only와 reset 생략을 함께 적용하며, hwdep interface로 BIOS codec 초기화 상태를 조사할 수 있습니다.

probe_only 값
동작
1Mixer/PCM 구성 없이 codec slot만 probe
2HDA codec reset 생략 bit
3Probe-only와 reset 생략을 함께 적용

Debug용 probing 동작을 구분합니다.

Debug Tools
===========

This section describes some tools available for debugging HD-audio
problems.

alsa-info
---------
The script ``alsa-info.sh`` is a very useful tool to gather the audio
device information.  It's included in alsa-utils package.  The latest
version can be found on git repository:

* git://git.alsa-project.org/alsa-utils.git

The script can be fetched directly from the following URL, too:

* https://www.alsa-project.org/alsa-info.sh

Run this script as root, and it will gather the important information
such as the module lists, module parameters, proc file contents
including the codec proc files, mixer outputs and the control
elements.  As default, it will store the information onto a web server
on alsa-project.org.  But, if you send a bug report, it'd be better to
run with ``--no-upload`` option, and attach the generated file.

There are some other useful options.  See ``--help`` option output for
details.

When a probe error occurs or when the driver obviously assigns a
mismatched model, it'd be helpful to load the driver with
``probe_only=1`` option (at best after the cold reboot) and run
alsa-info at this state.  With this option, the driver won't configure
the mixer and PCM but just tries to probe the codec slot.  After
probing, the proc file is available, so you can get the raw codec
information before modified by the driver.  Of course, the driver
isn't usable with ``probe_only=1``.  But you can continue the
configuration via hwdep sysfs file if hda-reconfig option is enabled.
Using ``probe_only`` mask 2 skips the reset of HDA codecs (use
``probe_only=3`` as module option). The hwdep interface can be used
to determine the BIOS codec initialization.

hda-verb

762-815

`hda-verb`는 HD-Audio codec에 raw verb를 직접 실행하는 작은 program입니다. Hwdep device를 사용하므로 미리 `CONFIG_SND_HDA_HWDEP=y`가 필요합니다.

Argument는 hwdep device file, widget NID, verb, parameter 네 개입니다. Card 0의 codec slot 2는 보통 `/dev/snd/hwC0D2`이지만 실제 path는 시스템에 따라 다릅니다. Verb와 parameter는 hex/decimal number 또는 대응 string을 사용할 수 있습니다.

% hda-verb /dev/snd/hwC0D0 0x12 0x701 2
nid = 0x12, verb = 0x701, param = 0x2
value = 0x0

% hda-verb /dev/snd/hwC0D0 0x0 PARAMETERS VENDOR_ID
nid = 0x0, verb = 0xf00, param = 0x0
value = 0x10ec0262

% hda-verb /dev/snd/hwC0D0 2 set_a 0xb080
nid = 0x2, verb = 0x300, param = 0xb080
value = 0x0

어떤 verb든 보낼 수 있지만 driver state가 항상 갱신되는 것은 아닙니다. Volume은 driver가 cache하므로 `hda-verb`로 widget amp를 직접 바꿔도 mixer 값은 바뀌지 않습니다.

Program은 현재 `alsa-tools`에 포함됩니다. 구형 standalone package와 `git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/hda-verb.git` repository도 원문에 안내돼 있으며 자세한 내용은 tarball의 README를 봅니다.

hda-verb argument
순서
1Hwdep device file
2Widget NID
3Verb number 또는 name
4Parameter value 또는 type string

네 argument의 순서와 의미입니다.

hda-verb
--------
hda-verb is a tiny program that allows you to access the HD-audio
codec directly.  You can execute a raw HD-audio codec verb with this.
This program accesses the hwdep device, thus you need to enable the
kernel config ``CONFIG_SND_HDA_HWDEP=y`` beforehand.

The hda-verb program takes four arguments: the hwdep device file, the
widget NID, the verb and the parameter.  When you access to the codec
on the slot 2 of the card 0, pass /dev/snd/hwC0D2 to the first
argument, typically.  (However, the real path name depends on the
system.)

The second parameter is the widget number-id to access.  The third
parameter can be either a hex/digit number or a string corresponding
to a verb.  Similarly, the last parameter is the value to write, or
can be a string for the parameter type.

::

    % hda-verb /dev/snd/hwC0D0 0x12 0x701 2
    nid = 0x12, verb = 0x701, param = 0x2
    value = 0x0

    % hda-verb /dev/snd/hwC0D0 0x0 PARAMETERS VENDOR_ID
    nid = 0x0, verb = 0xf00, param = 0x0
    value = 0x10ec0262

    % hda-verb /dev/snd/hwC0D0 2 set_a 0xb080
    nid = 0x2, verb = 0x300, param = 0xb080
    value = 0x0


Although you can issue any verbs with this program, the driver state
won't be always updated.  For example, the volume values are usually
cached in the driver, and thus changing the widget amp value directly
via hda-verb won't change the mixer value.

The hda-verb program is included now in alsa-tools:

* git://git.alsa-project.org/alsa-tools.git

Also, the old stand-alone package is found in the ftp directory:

* ftp://ftp.suse.com/pub/people/tiwai/misc/

Also a git repository is available:

* git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/hda-verb.git

See README file in the tarball for more details about hda-verb
program.

hda-analyzer와 Codecgraph

816-844

`hda-analyzer`는 pyGTK2 binding 기반 GUI로 raw HD-Audio control에 접근합니다. `hda-verb`보다 강력하며 widget 정보 표시, amp 값 조정, proc-compatible 출력을 제공합니다. Alsa-project의 `alsa.git` 안 `hda-analyzer` directory에 있습니다.

Codecgraph는 codec chip의 node 연결을 graph로 시각화하는 utility입니다. Datasheet가 없는 codec 분석/debugging에 특히 유용하며 codec proc-file을 parse해 Graphviz program으로 SVG를 생성합니다.

GUI/graph tool
Tool입력결과
hda-analyzerLive hwdep codecWidget/amp GUI와 proc-compatible 출력
CodecgraphCodec proc-fileNode 연결 SVG graph

두 tool의 입력과 결과를 비교합니다.

hda-analyzer
------------
hda-analyzer provides a graphical interface to access the raw HD-audio
control, based on pyGTK2 binding.  It's a more powerful version of
hda-verb.  The program gives you an easy-to-use GUI stuff for showing
the widget information and adjusting the amp values, as well as the
proc-compatible output.

The hda-analyzer:

* https://git.alsa-project.org/?p=alsa.git;a=tree;f=hda-analyzer

is a part of alsa.git repository in alsa-project.org:

* git://git.alsa-project.org/alsa.git

Codecgraph
----------
Codecgraph is a utility program to generate a graph and visualizes the
codec-node connection of a codec chip.  It's especially useful when
you analyze or debug a codec without a proper datasheet.  The program
parses the given codec proc file and converts to SVG via graphiz
program.

The tarball and GIT trees are found in the web page at:

* http://helllabs.org/codecgraph/

hda-emu

845-880

`hda-emu`는 실제 hardware 없이 HD-Audio codec을 debug하는 emulator입니다. 실제 audio I/O 동작을 흉내 내지는 않고 driver probing/operation 과정의 codec register와 ALSA-driver 내부 변경을 dump합니다.

Simulation할 codec proc-file이 필요합니다. 대상 codec의 proc-file을 미리 얻거나 tarball의 collection에서 example을 고른 뒤 file path로 실행합니다.

% hda-emu codecs/stac9200-dell-d820-laptop
# Parsing..
hda_codec: Unknown model for STAC9200, using BIOS defaults
hda_codec: pin nid 08 bios pin config 40c003fa
....

Command-line interface는 단순하지만 현재 state의 proc dump, mixer control 목록, control 값 set/get, PCM operation, jack plugging simulation 등을 제공합니다. Source는 `git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/hda-emu.git`에 있으며 README에 자세한 사용법이 있습니다.

hda-emu 사용
대상 codec proc-file 확보hda-emu에 proc-file 전달Codec parse와 BIOS default 적용 관찰Control/PCM/jack operation simulationRegister와 driver 내부 변화 비교

실제 hardware 없이 parser와 fixup 동작을 재현합니다.

hda-emu
-------
hda-emu is an HD-audio emulator.  The main purpose of this program is
to debug an HD-audio codec without the real hardware.  Thus, it
doesn't emulate the behavior with the real audio I/O, but it just
dumps the codec register changes and the ALSA-driver internal changes
at probing and operating the HD-audio driver.

The program requires a codec proc-file to simulate.  Get a proc file
for the target codec beforehand, or pick up an example codec from the
codec proc collections in the tarball.  Then, run the program with the
proc file, and the hda-emu program will start parsing the codec file
and simulates the HD-audio driver:

::

    % hda-emu codecs/stac9200-dell-d820-laptop
    # Parsing..
    hda_codec: Unknown model for STAC9200, using BIOS defaults
    hda_codec: pin nid 08 bios pin config 40c003fa
    ....


The program gives you only a very dumb command-line interface.  You
can get a proc-file dump at the current state, get a list of control
(mixer) elements, set/get the control element value, simulate the PCM
operation, the jack plugging simulation, etc.

The program is found in the git repository below:

* git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/hda-emu.git

See README file in the repository for more details about hda-emu
program.

hda-jack-retask

881-892

`hda-jack-retask`는 jack retasking을 위해 HD-Audio pin control을 조작하는 사용자 친화적 GUI입니다. Jack assignment 문제가 있으면 이 program으로 유효한 pin 배치를 찾을 수 있습니다.

올바른 pin assignment를 확인한 뒤 driver code에 정적으로 반영하거나 `Early Patching` 절의 firmware patch file로 전달할 수 있습니다. Program은 현재 `alsa-tools`에 포함됩니다.

Jack retask 반영
hda-jack-retask에서 pin 기능 변경Input/output 동작 검증올바른 pin assignment 기록Driver fixup 또는 firmware patch로 영구 반영

임시 GUI 실험을 재현 가능한 fixup으로 옮깁니다.

hda-jack-retask
---------------
hda-jack-retask is a user-friendly GUI program to manipulate the
HD-audio pin control for jack retasking.  If you have a problem about
the jack assignment, try this program and check whether you can get
useful results.  Once when you figure out the proper pin assignment,
it can be fixed either in the driver code statically or via passing a
firmware patch file (see "Early Patching" section).

The program is included in alsa-tools now:

* git://git.alsa-project.org/alsa-tools.git