1 /*- 2 * Copyright (c) 2006 Stephane E. Potvin <sepotvin@videotron.ca> 3 * Copyright (c) 2006 Ariff Abdullah <ariff@FreeBSD.org> 4 * Copyright (c) 2008-2012 Alexander Motin <mav@FreeBSD.org> 5 * All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 1. Redistributions of source code must retain the above copyright 11 * notice, this list of conditions and the following disclaimer. 12 * 2. Redistributions in binary form must reproduce the above copyright 13 * notice, this list of conditions and the following disclaimer in the 14 * documentation and/or other materials provided with the distribution. 15 * 16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 17 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 19 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 20 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 21 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 22 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 23 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 24 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 26 * SUCH DAMAGE. 27 */ 28 29 /* 30 * Intel High Definition Audio (Audio function) driver for FreeBSD. 31 */ 32 33 #ifdef HAVE_KERNEL_OPTION_HEADERS 34 #include "opt_snd.h" 35 #endif 36 37 #include <dev/sound/pcm/sound.h> 38 39 #include <sys/ctype.h> 40 #include <sys/taskqueue.h> 41 42 #include <dev/sound/pci/hda/hdac.h> 43 #include <dev/sound/pci/hda/hdaa.h> 44 #include <dev/sound/pci/hda/hda_reg.h> 45 46 #include "mixer_if.h" 47 48 SND_DECLARE_FILE("$FreeBSD$"); 49 50 #define hdaa_lock(devinfo) snd_mtxlock((devinfo)->lock) 51 #define hdaa_unlock(devinfo) snd_mtxunlock((devinfo)->lock) 52 #define hdaa_lockassert(devinfo) snd_mtxassert((devinfo)->lock) 53 #define hdaa_lockowned(devinfo) mtx_owned((devinfo)->lock) 54 55 static const struct { 56 char *key; 57 uint32_t value; 58 } hdaa_quirks_tab[] = { 59 { "softpcmvol", HDAA_QUIRK_SOFTPCMVOL }, 60 { "fixedrate", HDAA_QUIRK_FIXEDRATE }, 61 { "forcestereo", HDAA_QUIRK_FORCESTEREO }, 62 { "eapdinv", HDAA_QUIRK_EAPDINV }, 63 { "senseinv", HDAA_QUIRK_SENSEINV }, 64 { "ivref50", HDAA_QUIRK_IVREF50 }, 65 { "ivref80", HDAA_QUIRK_IVREF80 }, 66 { "ivref100", HDAA_QUIRK_IVREF100 }, 67 { "ovref50", HDAA_QUIRK_OVREF50 }, 68 { "ovref80", HDAA_QUIRK_OVREF80 }, 69 { "ovref100", HDAA_QUIRK_OVREF100 }, 70 { "ivref", HDAA_QUIRK_IVREF }, 71 { "ovref", HDAA_QUIRK_OVREF }, 72 { "vref", HDAA_QUIRK_VREF }, 73 }; 74 #define HDAA_QUIRKS_TAB_LEN \ 75 (sizeof(hdaa_quirks_tab) / sizeof(hdaa_quirks_tab[0])) 76 77 #define HDA_PARSE_MAXDEPTH 10 78 79 MALLOC_DEFINE(M_HDAA, "hdaa", "HDA Audio"); 80 81 const char *HDA_COLORS[16] = {"Unknown", "Black", "Grey", "Blue", "Green", "Red", 82 "Orange", "Yellow", "Purple", "Pink", "Res.A", "Res.B", "Res.C", "Res.D", 83 "White", "Other"}; 84 85 const char *HDA_DEVS[16] = {"Line-out", "Speaker", "Headphones", "CD", 86 "SPDIF-out", "Digital-out", "Modem-line", "Modem-handset", "Line-in", 87 "AUX", "Mic", "Telephony", "SPDIF-in", "Digital-in", "Res.E", "Other"}; 88 89 const char *HDA_CONNS[4] = {"Jack", "None", "Fixed", "Both"}; 90 91 const char *HDA_CONNECTORS[16] = { 92 "Unknown", "1/8", "1/4", "ATAPI", "RCA", "Optical", "Digital", "Analog", 93 "DIN", "XLR", "RJ-11", "Combo", "0xc", "0xd", "0xe", "Other" }; 94 95 const char *HDA_LOCS[64] = { 96 "0x00", "Rear", "Front", "Left", "Right", "Top", "Bottom", "Rear-panel", 97 "Drive-bay", "0x09", "0x0a", "0x0b", "0x0c", "0x0d", "0x0e", "0x0f", 98 "Internal", "0x11", "0x12", "0x13", "0x14", "0x15", "0x16", "Riser", 99 "0x18", "Onboard", "0x1a", "0x1b", "0x1c", "0x1d", "0x1e", "0x1f", 100 "External", "Ext-Rear", "Ext-Front", "Ext-Left", "Ext-Right", "Ext-Top", "Ext-Bottom", "0x07", 101 "0x28", "0x29", "0x2a", "0x2b", "0x2c", "0x2d", "0x2e", "0x2f", 102 "Other", "0x31", "0x32", "0x33", "0x34", "0x35", "Other-Bott", "Lid-In", 103 "Lid-Out", "0x39", "0x3a", "0x3b", "0x3c", "0x3d", "0x3e", "0x3f" }; 104 105 const char *HDA_GPIO_ACTIONS[8] = { 106 "keep", "set", "clear", "disable", "input", "0x05", "0x06", "0x07"}; 107 108 const char *HDA_HDMI_CODING_TYPES[18] = { 109 "undefined", "LPCM", "AC-3", "MPEG1", "MP3", "MPEG2", "AAC-LC", "DTS", 110 "ATRAC", "DSD", "E-AC-3", "DTS-HD", "MLP", "DST", "WMAPro", "HE-AAC", 111 "HE-AACv2", "MPEG-Surround" 112 }; 113 114 /* Default */ 115 static uint32_t hdaa_fmt[] = { 116 SND_FORMAT(AFMT_S16_LE, 2, 0), 117 0 118 }; 119 120 static struct pcmchan_caps hdaa_caps = {48000, 48000, hdaa_fmt, 0}; 121 122 static const struct { 123 uint32_t rate; 124 int valid; 125 uint16_t base; 126 uint16_t mul; 127 uint16_t div; 128 } hda_rate_tab[] = { 129 { 8000, 1, 0x0000, 0x0000, 0x0500 }, /* (48000 * 1) / 6 */ 130 { 9600, 0, 0x0000, 0x0000, 0x0400 }, /* (48000 * 1) / 5 */ 131 { 12000, 0, 0x0000, 0x0000, 0x0300 }, /* (48000 * 1) / 4 */ 132 { 16000, 1, 0x0000, 0x0000, 0x0200 }, /* (48000 * 1) / 3 */ 133 { 18000, 0, 0x0000, 0x1000, 0x0700 }, /* (48000 * 3) / 8 */ 134 { 19200, 0, 0x0000, 0x0800, 0x0400 }, /* (48000 * 2) / 5 */ 135 { 24000, 0, 0x0000, 0x0000, 0x0100 }, /* (48000 * 1) / 2 */ 136 { 28800, 0, 0x0000, 0x1000, 0x0400 }, /* (48000 * 3) / 5 */ 137 { 32000, 1, 0x0000, 0x0800, 0x0200 }, /* (48000 * 2) / 3 */ 138 { 36000, 0, 0x0000, 0x1000, 0x0300 }, /* (48000 * 3) / 4 */ 139 { 38400, 0, 0x0000, 0x1800, 0x0400 }, /* (48000 * 4) / 5 */ 140 { 48000, 1, 0x0000, 0x0000, 0x0000 }, /* (48000 * 1) / 1 */ 141 { 64000, 0, 0x0000, 0x1800, 0x0200 }, /* (48000 * 4) / 3 */ 142 { 72000, 0, 0x0000, 0x1000, 0x0100 }, /* (48000 * 3) / 2 */ 143 { 96000, 1, 0x0000, 0x0800, 0x0000 }, /* (48000 * 2) / 1 */ 144 { 144000, 0, 0x0000, 0x1000, 0x0000 }, /* (48000 * 3) / 1 */ 145 { 192000, 1, 0x0000, 0x1800, 0x0000 }, /* (48000 * 4) / 1 */ 146 { 8820, 0, 0x4000, 0x0000, 0x0400 }, /* (44100 * 1) / 5 */ 147 { 11025, 1, 0x4000, 0x0000, 0x0300 }, /* (44100 * 1) / 4 */ 148 { 12600, 0, 0x4000, 0x0800, 0x0600 }, /* (44100 * 2) / 7 */ 149 { 14700, 0, 0x4000, 0x0000, 0x0200 }, /* (44100 * 1) / 3 */ 150 { 17640, 0, 0x4000, 0x0800, 0x0400 }, /* (44100 * 2) / 5 */ 151 { 18900, 0, 0x4000, 0x1000, 0x0600 }, /* (44100 * 3) / 7 */ 152 { 22050, 1, 0x4000, 0x0000, 0x0100 }, /* (44100 * 1) / 2 */ 153 { 25200, 0, 0x4000, 0x1800, 0x0600 }, /* (44100 * 4) / 7 */ 154 { 26460, 0, 0x4000, 0x1000, 0x0400 }, /* (44100 * 3) / 5 */ 155 { 29400, 0, 0x4000, 0x0800, 0x0200 }, /* (44100 * 2) / 3 */ 156 { 33075, 0, 0x4000, 0x1000, 0x0300 }, /* (44100 * 3) / 4 */ 157 { 35280, 0, 0x4000, 0x1800, 0x0400 }, /* (44100 * 4) / 5 */ 158 { 44100, 1, 0x4000, 0x0000, 0x0000 }, /* (44100 * 1) / 1 */ 159 { 58800, 0, 0x4000, 0x1800, 0x0200 }, /* (44100 * 4) / 3 */ 160 { 66150, 0, 0x4000, 0x1000, 0x0100 }, /* (44100 * 3) / 2 */ 161 { 88200, 1, 0x4000, 0x0800, 0x0000 }, /* (44100 * 2) / 1 */ 162 { 132300, 0, 0x4000, 0x1000, 0x0000 }, /* (44100 * 3) / 1 */ 163 { 176400, 1, 0x4000, 0x1800, 0x0000 }, /* (44100 * 4) / 1 */ 164 }; 165 #define HDA_RATE_TAB_LEN (sizeof(hda_rate_tab) / sizeof(hda_rate_tab[0])) 166 167 const static char *ossnames[] = SOUND_DEVICE_NAMES; 168 169 /**************************************************************************** 170 * Function prototypes 171 ****************************************************************************/ 172 static int hdaa_pcmchannel_setup(struct hdaa_chan *); 173 174 static void hdaa_widget_connection_select(struct hdaa_widget *, uint8_t); 175 static void hdaa_audio_ctl_amp_set(struct hdaa_audio_ctl *, 176 uint32_t, int, int); 177 static struct hdaa_audio_ctl *hdaa_audio_ctl_amp_get(struct hdaa_devinfo *, 178 nid_t, int, int, int); 179 static void hdaa_audio_ctl_amp_set_internal(struct hdaa_devinfo *, 180 nid_t, int, int, int, int, int, int); 181 182 static void hdaa_dump_pin_config(struct hdaa_widget *w, uint32_t conf); 183 184 static char * 185 hdaa_audio_ctl_ossmixer_mask2allname(uint32_t mask, char *buf, size_t len) 186 { 187 int i, first = 1; 188 189 bzero(buf, len); 190 for (i = 0; i < SOUND_MIXER_NRDEVICES; i++) { 191 if (mask & (1 << i)) { 192 if (first == 0) 193 strlcat(buf, ", ", len); 194 strlcat(buf, ossnames[i], len); 195 first = 0; 196 } 197 } 198 return (buf); 199 } 200 201 static struct hdaa_audio_ctl * 202 hdaa_audio_ctl_each(struct hdaa_devinfo *devinfo, int *index) 203 { 204 if (devinfo == NULL || 205 index == NULL || devinfo->ctl == NULL || 206 devinfo->ctlcnt < 1 || 207 *index < 0 || *index >= devinfo->ctlcnt) 208 return (NULL); 209 return (&devinfo->ctl[(*index)++]); 210 } 211 212 static struct hdaa_audio_ctl * 213 hdaa_audio_ctl_amp_get(struct hdaa_devinfo *devinfo, nid_t nid, int dir, 214 int index, int cnt) 215 { 216 struct hdaa_audio_ctl *ctl; 217 int i, found = 0; 218 219 if (devinfo == NULL || devinfo->ctl == NULL) 220 return (NULL); 221 222 i = 0; 223 while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) { 224 if (ctl->enable == 0) 225 continue; 226 if (ctl->widget->nid != nid) 227 continue; 228 if (dir && ctl->ndir != dir) 229 continue; 230 if (index >= 0 && ctl->ndir == HDAA_CTL_IN && 231 ctl->dir == ctl->ndir && ctl->index != index) 232 continue; 233 found++; 234 if (found == cnt || cnt <= 0) 235 return (ctl); 236 } 237 238 return (NULL); 239 } 240 241 /* 242 * Headphones redirection change handler. 243 */ 244 static void 245 hdaa_hpredir_handler(struct hdaa_widget *w) 246 { 247 struct hdaa_devinfo *devinfo = w->devinfo; 248 struct hdaa_audio_as *as = &devinfo->as[w->bindas]; 249 struct hdaa_widget *w1; 250 struct hdaa_audio_ctl *ctl; 251 uint32_t val; 252 int j, connected = w->wclass.pin.connected; 253 254 HDA_BOOTVERBOSE( 255 device_printf((as->pdevinfo && as->pdevinfo->dev) ? 256 as->pdevinfo->dev : devinfo->dev, 257 "Redirect output to: %s\n", 258 connected ? "headphones": "main"); 259 ); 260 /* (Un)Mute headphone pin. */ 261 ctl = hdaa_audio_ctl_amp_get(devinfo, 262 w->nid, HDAA_CTL_IN, -1, 1); 263 if (ctl != NULL && ctl->mute) { 264 /* If pin has muter - use it. */ 265 val = connected ? 0 : 1; 266 if (val != ctl->forcemute) { 267 ctl->forcemute = val; 268 hdaa_audio_ctl_amp_set(ctl, 269 HDAA_AMP_MUTE_DEFAULT, 270 HDAA_AMP_VOL_DEFAULT, HDAA_AMP_VOL_DEFAULT); 271 } 272 } else { 273 /* If there is no muter - disable pin output. */ 274 if (connected) 275 val = w->wclass.pin.ctrl | 276 HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE; 277 else 278 val = w->wclass.pin.ctrl & 279 ~HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE; 280 if (val != w->wclass.pin.ctrl) { 281 w->wclass.pin.ctrl = val; 282 hda_command(devinfo->dev, 283 HDA_CMD_SET_PIN_WIDGET_CTRL(0, 284 w->nid, w->wclass.pin.ctrl)); 285 } 286 } 287 /* (Un)Mute other pins. */ 288 for (j = 0; j < 15; j++) { 289 if (as->pins[j] <= 0) 290 continue; 291 ctl = hdaa_audio_ctl_amp_get(devinfo, 292 as->pins[j], HDAA_CTL_IN, -1, 1); 293 if (ctl != NULL && ctl->mute) { 294 /* If pin has muter - use it. */ 295 val = connected ? 1 : 0; 296 if (val == ctl->forcemute) 297 continue; 298 ctl->forcemute = val; 299 hdaa_audio_ctl_amp_set(ctl, 300 HDAA_AMP_MUTE_DEFAULT, 301 HDAA_AMP_VOL_DEFAULT, HDAA_AMP_VOL_DEFAULT); 302 continue; 303 } 304 /* If there is no muter - disable pin output. */ 305 w1 = hdaa_widget_get(devinfo, as->pins[j]); 306 if (w1 != NULL) { 307 if (connected) 308 val = w1->wclass.pin.ctrl & 309 ~HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE; 310 else 311 val = w1->wclass.pin.ctrl | 312 HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE; 313 if (val != w1->wclass.pin.ctrl) { 314 w1->wclass.pin.ctrl = val; 315 hda_command(devinfo->dev, 316 HDA_CMD_SET_PIN_WIDGET_CTRL(0, 317 w1->nid, w1->wclass.pin.ctrl)); 318 } 319 } 320 } 321 } 322 323 /* 324 * Recording source change handler. 325 */ 326 static void 327 hdaa_autorecsrc_handler(struct hdaa_audio_as *as, struct hdaa_widget *w) 328 { 329 struct hdaa_pcm_devinfo *pdevinfo = as->pdevinfo; 330 struct hdaa_devinfo *devinfo; 331 struct hdaa_widget *w1; 332 int i, mask, fullmask, prio, bestprio; 333 char buf[128]; 334 335 if (!as->mixed || pdevinfo == NULL || pdevinfo->mixer == NULL) 336 return; 337 /* Don't touch anything if we asked not to. */ 338 if (pdevinfo->autorecsrc == 0 || 339 (pdevinfo->autorecsrc == 1 && w != NULL)) 340 return; 341 /* Don't touch anything if "mix" or "speaker" selected. */ 342 if (pdevinfo->recsrc & (SOUND_MASK_IMIX | SOUND_MASK_SPEAKER)) 343 return; 344 /* Don't touch anything if several selected. */ 345 if (ffs(pdevinfo->recsrc) != fls(pdevinfo->recsrc)) 346 return; 347 devinfo = pdevinfo->devinfo; 348 mask = fullmask = 0; 349 bestprio = 0; 350 for (i = 0; i < 16; i++) { 351 if (as->pins[i] <= 0) 352 continue; 353 w1 = hdaa_widget_get(devinfo, as->pins[i]); 354 if (w1 == NULL || w1->enable == 0) 355 continue; 356 if (w1->wclass.pin.connected == 0) 357 continue; 358 prio = (w1->wclass.pin.connected == 1) ? 2 : 1; 359 if (prio < bestprio) 360 continue; 361 if (prio > bestprio) { 362 mask = 0; 363 bestprio = prio; 364 } 365 mask |= (1 << w1->ossdev); 366 fullmask |= (1 << w1->ossdev); 367 } 368 if (mask == 0) 369 return; 370 /* Prefer newly connected input. */ 371 if (w != NULL && (mask & (1 << w->ossdev))) 372 mask = (1 << w->ossdev); 373 /* Prefer previously selected input */ 374 if (mask & pdevinfo->recsrc) 375 mask &= pdevinfo->recsrc; 376 /* Prefer mic. */ 377 if (mask & SOUND_MASK_MIC) 378 mask = SOUND_MASK_MIC; 379 /* Prefer monitor (2nd mic). */ 380 if (mask & SOUND_MASK_MONITOR) 381 mask = SOUND_MASK_MONITOR; 382 /* Just take first one. */ 383 mask = (1 << (ffs(mask) - 1)); 384 HDA_BOOTVERBOSE( 385 hdaa_audio_ctl_ossmixer_mask2allname(mask, buf, sizeof(buf)); 386 device_printf(pdevinfo->dev, 387 "Automatically set rec source to: %s\n", buf); 388 ); 389 hdaa_unlock(devinfo); 390 mix_setrecsrc(pdevinfo->mixer, mask); 391 hdaa_lock(devinfo); 392 } 393 394 /* 395 * Jack presence detection event handler. 396 */ 397 static void 398 hdaa_presence_handler(struct hdaa_widget *w) 399 { 400 struct hdaa_devinfo *devinfo = w->devinfo; 401 struct hdaa_audio_as *as; 402 uint32_t res; 403 int connected; 404 405 if (w->enable == 0 || w->type != 406 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 407 return; 408 409 if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(w->wclass.pin.cap) == 0 || 410 (HDA_CONFIG_DEFAULTCONF_MISC(w->wclass.pin.config) & 1) != 0) 411 return; 412 413 res = hda_command(devinfo->dev, HDA_CMD_GET_PIN_SENSE(0, w->nid)); 414 connected = (res & HDA_CMD_GET_PIN_SENSE_PRESENCE_DETECT) != 0; 415 if (devinfo->quirks & HDAA_QUIRK_SENSEINV) 416 connected = !connected; 417 if (connected == w->wclass.pin.connected) 418 return; 419 w->wclass.pin.connected = connected; 420 HDA_BOOTVERBOSE( 421 device_printf(devinfo->dev, 422 "Pin sense: nid=%d sence=0x%08x (%sconnected)\n", 423 w->nid, res, !w->wclass.pin.connected ? "dis" : ""); 424 ); 425 426 as = &devinfo->as[w->bindas]; 427 if (as->hpredir >= 0 && as->pins[15] == w->nid) 428 hdaa_hpredir_handler(w); 429 if (as->dir == HDAA_CTL_IN) 430 hdaa_autorecsrc_handler(as, w); 431 } 432 433 /* 434 * Callback for poll based presence detection. 435 */ 436 static void 437 hdaa_jack_poll_callback(void *arg) 438 { 439 struct hdaa_devinfo *devinfo = arg; 440 struct hdaa_widget *w; 441 int i; 442 443 hdaa_lock(devinfo); 444 if (devinfo->poll_ival == 0) { 445 hdaa_unlock(devinfo); 446 return; 447 } 448 for (i = 0; i < devinfo->ascnt; i++) { 449 if (devinfo->as[i].hpredir < 0) 450 continue; 451 w = hdaa_widget_get(devinfo, devinfo->as[i].pins[15]); 452 if (w == NULL || w->enable == 0 || w->type != 453 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 454 continue; 455 hdaa_presence_handler(w); 456 } 457 callout_reset(&devinfo->poll_jack, devinfo->poll_ival, 458 hdaa_jack_poll_callback, devinfo); 459 hdaa_unlock(devinfo); 460 } 461 462 static void 463 hdaa_eld_dump(struct hdaa_widget *w) 464 { 465 struct hdaa_devinfo *devinfo = w->devinfo; 466 device_t dev = devinfo->dev; 467 uint8_t *sad; 468 int len, mnl, i, sadc, fmt; 469 470 if (w->eld == NULL || w->eld_len < 4) 471 return; 472 device_printf(dev, 473 "ELD nid=%d: ELD_Ver=%u Baseline_ELD_Len=%u\n", 474 w->nid, w->eld[0] >> 3, w->eld[2]); 475 if ((w->eld[0] >> 3) != 0x02) 476 return; 477 len = min(w->eld_len, (u_int)w->eld[2] * 4); 478 mnl = w->eld[4] & 0x1f; 479 device_printf(dev, 480 "ELD nid=%d: CEA_EDID_Ver=%u MNL=%u\n", 481 w->nid, w->eld[4] >> 5, mnl); 482 sadc = w->eld[5] >> 4; 483 device_printf(dev, 484 "ELD nid=%d: SAD_Count=%u Conn_Type=%u S_AI=%u HDCP=%u\n", 485 w->nid, sadc, (w->eld[5] >> 2) & 0x3, 486 (w->eld[5] >> 1) & 0x1, w->eld[5] & 0x1); 487 device_printf(dev, 488 "ELD nid=%d: Aud_Synch_Delay=%ums\n", 489 w->nid, w->eld[6] * 2); 490 device_printf(dev, 491 "ELD nid=%d: Channels=0x%b\n", 492 w->nid, w->eld[7], 493 "\020\07RLRC\06FLRC\05RC\04RLR\03FC\02LFE\01FLR"); 494 device_printf(dev, 495 "ELD nid=%d: Port_ID=0x%02x%02x%02x%02x%02x%02x%02x%02x\n", 496 w->nid, w->eld[8], w->eld[9], w->eld[10], w->eld[11], 497 w->eld[12], w->eld[13], w->eld[14], w->eld[15]); 498 device_printf(dev, 499 "ELD nid=%d: Manufacturer_Name=0x%02x%02x\n", 500 w->nid, w->eld[16], w->eld[17]); 501 device_printf(dev, 502 "ELD nid=%d: Product_Code=0x%02x%02x\n", 503 w->nid, w->eld[18], w->eld[19]); 504 device_printf(dev, 505 "ELD nid=%d: Monitor_Name_String='%.*s'\n", 506 w->nid, mnl, &w->eld[20]); 507 for (i = 0; i < sadc; i++) { 508 sad = &w->eld[20 + mnl + i * 3]; 509 fmt = (sad[0] >> 3) & 0x0f; 510 if (fmt == HDA_HDMI_CODING_TYPE_REF_CTX) { 511 fmt = (sad[2] >> 3) & 0x1f; 512 if (fmt < 1 || fmt > 3) 513 fmt = 0; 514 else 515 fmt += 14; 516 } 517 device_printf(dev, 518 "ELD nid=%d: %s %dch freqs=0x%b", 519 w->nid, HDA_HDMI_CODING_TYPES[fmt], (sad[0] & 0x07) + 1, 520 sad[1], "\020\007192\006176\00596\00488\00348\00244\00132"); 521 switch (fmt) { 522 case HDA_HDMI_CODING_TYPE_LPCM: 523 printf(" sizes=0x%b", 524 sad[2] & 0x07, "\020\00324\00220\00116"); 525 break; 526 case HDA_HDMI_CODING_TYPE_AC3: 527 case HDA_HDMI_CODING_TYPE_MPEG1: 528 case HDA_HDMI_CODING_TYPE_MP3: 529 case HDA_HDMI_CODING_TYPE_MPEG2: 530 case HDA_HDMI_CODING_TYPE_AACLC: 531 case HDA_HDMI_CODING_TYPE_DTS: 532 case HDA_HDMI_CODING_TYPE_ATRAC: 533 printf(" max_bitrate=%d", sad[2] * 8000); 534 break; 535 case HDA_HDMI_CODING_TYPE_WMAPRO: 536 printf(" profile=%d", sad[2] & 0x07); 537 break; 538 } 539 printf("\n"); 540 } 541 } 542 543 static void 544 hdaa_eld_handler(struct hdaa_widget *w) 545 { 546 struct hdaa_devinfo *devinfo = w->devinfo; 547 uint32_t res; 548 int i; 549 550 if (w->enable == 0 || w->type != 551 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 552 return; 553 554 if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(w->wclass.pin.cap) == 0 || 555 (HDA_CONFIG_DEFAULTCONF_MISC(w->wclass.pin.config) & 1) != 0) 556 return; 557 558 res = hda_command(devinfo->dev, HDA_CMD_GET_PIN_SENSE(0, w->nid)); 559 if ((w->eld != 0) == ((res & HDA_CMD_GET_PIN_SENSE_ELD_VALID) != 0)) 560 return; 561 if (w->eld != NULL) { 562 w->eld_len = 0; 563 free(w->eld, M_HDAA); 564 w->eld = NULL; 565 } 566 HDA_BOOTVERBOSE( 567 device_printf(devinfo->dev, 568 "Pin sense: nid=%d sence=0x%08x " 569 "(%sconnected, ELD %svalid)\n", 570 w->nid, res, 571 (res & HDA_CMD_GET_PIN_SENSE_PRESENCE_DETECT) ? "" : "dis", 572 (res & HDA_CMD_GET_PIN_SENSE_ELD_VALID) ? "" : "in"); 573 ); 574 if ((res & HDA_CMD_GET_PIN_SENSE_ELD_VALID) == 0) 575 return; 576 577 res = hda_command(devinfo->dev, 578 HDA_CMD_GET_HDMI_DIP_SIZE(0, w->nid, 0x08)); 579 if (res == HDA_INVALID) 580 return; 581 w->eld_len = res & 0xff; 582 if (w->eld_len != 0) 583 w->eld = malloc(w->eld_len, M_HDAA, M_ZERO | M_NOWAIT); 584 if (w->eld == NULL) { 585 w->eld_len = 0; 586 return; 587 } 588 589 for (i = 0; i < w->eld_len; i++) { 590 res = hda_command(devinfo->dev, 591 HDA_CMD_GET_HDMI_ELDD(0, w->nid, i)); 592 if (res & 0x80000000) 593 w->eld[i] = res & 0xff; 594 } 595 HDA_BOOTVERBOSE( 596 hdaa_eld_dump(w); 597 ); 598 } 599 600 /* 601 * Pin sense initializer. 602 */ 603 static void 604 hdaa_sense_init(struct hdaa_devinfo *devinfo) 605 { 606 struct hdaa_audio_as *as; 607 struct hdaa_widget *w; 608 int i, poll = 0; 609 610 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 611 w = hdaa_widget_get(devinfo, i); 612 if (w == NULL || w->enable == 0 || w->type != 613 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 614 continue; 615 if (HDA_PARAM_AUDIO_WIDGET_CAP_UNSOL_CAP(w->param.widget_cap)) { 616 if (w->unsol < 0) 617 w->unsol = HDAC_UNSOL_ALLOC( 618 device_get_parent(devinfo->dev), 619 devinfo->dev, w->nid); 620 hda_command(devinfo->dev, 621 HDA_CMD_SET_UNSOLICITED_RESPONSE(0, w->nid, 622 HDA_CMD_SET_UNSOLICITED_RESPONSE_ENABLE | w->unsol)); 623 } 624 as = &devinfo->as[w->bindas]; 625 if (as->hpredir >= 0 && as->pins[15] == w->nid) { 626 if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(w->wclass.pin.cap) == 0 || 627 (HDA_CONFIG_DEFAULTCONF_MISC(w->wclass.pin.config) & 1) != 0) { 628 device_printf(devinfo->dev, 629 "No presence detection support at nid %d\n", 630 as[i].pins[15]); 631 } else { 632 if (w->unsol < 0) 633 poll = 1; 634 HDA_BOOTVERBOSE( 635 device_printf(devinfo->dev, 636 "Headphones redirection for " 637 "association %d nid=%d using %s.\n", 638 w->bindas, w->nid, 639 (poll != 0) ? "polling" : 640 "unsolicited responses"); 641 ); 642 }; 643 } 644 hdaa_presence_handler(w); 645 if (!HDA_PARAM_PIN_CAP_DP(w->wclass.pin.cap) && 646 !HDA_PARAM_PIN_CAP_HDMI(w->wclass.pin.cap)) 647 continue; 648 hdaa_eld_handler(w); 649 } 650 if (poll) { 651 callout_reset(&devinfo->poll_jack, 1, 652 hdaa_jack_poll_callback, devinfo); 653 } 654 } 655 656 static void 657 hdaa_sense_deinit(struct hdaa_devinfo *devinfo) 658 { 659 struct hdaa_widget *w; 660 int i; 661 662 callout_stop(&devinfo->poll_jack); 663 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 664 w = hdaa_widget_get(devinfo, i); 665 if (w == NULL || w->enable == 0 || w->type != 666 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 667 continue; 668 if (w->unsol < 0) 669 continue; 670 hda_command(devinfo->dev, 671 HDA_CMD_SET_UNSOLICITED_RESPONSE(0, w->nid, 0)); 672 HDAC_UNSOL_FREE( 673 device_get_parent(devinfo->dev), devinfo->dev, 674 w->unsol); 675 w->unsol = -1; 676 } 677 } 678 679 uint32_t 680 hdaa_widget_pin_patch(uint32_t config, const char *str) 681 { 682 char buf[256]; 683 char *key, *value, *rest, *bad; 684 int ival, i; 685 686 strlcpy(buf, str, sizeof(buf)); 687 rest = buf; 688 while ((key = strsep(&rest, "=")) != NULL) { 689 value = strsep(&rest, " \t"); 690 if (value == NULL) 691 break; 692 ival = strtol(value, &bad, 10); 693 if (strcmp(key, "seq") == 0) { 694 config &= ~HDA_CONFIG_DEFAULTCONF_SEQUENCE_MASK; 695 config |= ((ival << HDA_CONFIG_DEFAULTCONF_SEQUENCE_SHIFT) & 696 HDA_CONFIG_DEFAULTCONF_SEQUENCE_MASK); 697 } else if (strcmp(key, "as") == 0) { 698 config &= ~HDA_CONFIG_DEFAULTCONF_ASSOCIATION_MASK; 699 config |= ((ival << HDA_CONFIG_DEFAULTCONF_ASSOCIATION_SHIFT) & 700 HDA_CONFIG_DEFAULTCONF_ASSOCIATION_MASK); 701 } else if (strcmp(key, "misc") == 0) { 702 config &= ~HDA_CONFIG_DEFAULTCONF_MISC_MASK; 703 config |= ((ival << HDA_CONFIG_DEFAULTCONF_MISC_SHIFT) & 704 HDA_CONFIG_DEFAULTCONF_MISC_MASK); 705 } else if (strcmp(key, "color") == 0) { 706 config &= ~HDA_CONFIG_DEFAULTCONF_COLOR_MASK; 707 if (bad[0] == 0) { 708 config |= ((ival << HDA_CONFIG_DEFAULTCONF_COLOR_SHIFT) & 709 HDA_CONFIG_DEFAULTCONF_COLOR_MASK); 710 }; 711 for (i = 0; i < 16; i++) { 712 if (strcasecmp(HDA_COLORS[i], value) == 0) { 713 config |= (i << HDA_CONFIG_DEFAULTCONF_COLOR_SHIFT); 714 break; 715 } 716 } 717 } else if (strcmp(key, "ctype") == 0) { 718 config &= ~HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE_MASK; 719 if (bad[0] == 0) { 720 config |= ((ival << HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE_SHIFT) & 721 HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE_MASK); 722 } 723 for (i = 0; i < 16; i++) { 724 if (strcasecmp(HDA_CONNECTORS[i], value) == 0) { 725 config |= (i << HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE_SHIFT); 726 break; 727 } 728 } 729 } else if (strcmp(key, "device") == 0) { 730 config &= ~HDA_CONFIG_DEFAULTCONF_DEVICE_MASK; 731 if (bad[0] == 0) { 732 config |= ((ival << HDA_CONFIG_DEFAULTCONF_DEVICE_SHIFT) & 733 HDA_CONFIG_DEFAULTCONF_DEVICE_MASK); 734 continue; 735 }; 736 for (i = 0; i < 16; i++) { 737 if (strcasecmp(HDA_DEVS[i], value) == 0) { 738 config |= (i << HDA_CONFIG_DEFAULTCONF_DEVICE_SHIFT); 739 break; 740 } 741 } 742 } else if (strcmp(key, "loc") == 0) { 743 config &= ~HDA_CONFIG_DEFAULTCONF_LOCATION_MASK; 744 if (bad[0] == 0) { 745 config |= ((ival << HDA_CONFIG_DEFAULTCONF_LOCATION_SHIFT) & 746 HDA_CONFIG_DEFAULTCONF_LOCATION_MASK); 747 continue; 748 } 749 for (i = 0; i < 64; i++) { 750 if (strcasecmp(HDA_LOCS[i], value) == 0) { 751 config |= (i << HDA_CONFIG_DEFAULTCONF_LOCATION_SHIFT); 752 break; 753 } 754 } 755 } else if (strcmp(key, "conn") == 0) { 756 config &= ~HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK; 757 if (bad[0] == 0) { 758 config |= ((ival << HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_SHIFT) & 759 HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK); 760 continue; 761 }; 762 for (i = 0; i < 4; i++) { 763 if (strcasecmp(HDA_CONNS[i], value) == 0) { 764 config |= (i << HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_SHIFT); 765 break; 766 } 767 } 768 } 769 } 770 return (config); 771 } 772 773 uint32_t 774 hdaa_gpio_patch(uint32_t gpio, const char *str) 775 { 776 char buf[256]; 777 char *key, *value, *rest; 778 int ikey, i; 779 780 strlcpy(buf, str, sizeof(buf)); 781 rest = buf; 782 while ((key = strsep(&rest, "=")) != NULL) { 783 value = strsep(&rest, " \t"); 784 if (value == NULL) 785 break; 786 ikey = strtol(key, NULL, 10); 787 if (ikey < 0 || ikey > 7) 788 continue; 789 for (i = 0; i < 7; i++) { 790 if (strcasecmp(HDA_GPIO_ACTIONS[i], value) == 0) { 791 gpio &= ~HDAA_GPIO_MASK(ikey); 792 gpio |= i << HDAA_GPIO_SHIFT(ikey); 793 break; 794 } 795 } 796 } 797 return (gpio); 798 } 799 800 static void 801 hdaa_local_patch_pin(struct hdaa_widget *w) 802 { 803 device_t dev = w->devinfo->dev; 804 const char *res = NULL; 805 uint32_t config, orig; 806 char buf[32]; 807 808 config = orig = w->wclass.pin.config; 809 snprintf(buf, sizeof(buf), "cad%u.nid%u.config", 810 hda_get_codec_id(dev), w->nid); 811 if (resource_string_value(device_get_name( 812 device_get_parent(device_get_parent(dev))), 813 device_get_unit(device_get_parent(device_get_parent(dev))), 814 buf, &res) == 0) { 815 if (strncmp(res, "0x", 2) == 0) { 816 config = strtol(res + 2, NULL, 16); 817 } else { 818 config = hdaa_widget_pin_patch(config, res); 819 } 820 } 821 snprintf(buf, sizeof(buf), "nid%u.config", w->nid); 822 if (resource_string_value(device_get_name(dev), device_get_unit(dev), 823 buf, &res) == 0) { 824 if (strncmp(res, "0x", 2) == 0) { 825 config = strtol(res + 2, NULL, 16); 826 } else { 827 config = hdaa_widget_pin_patch(config, res); 828 } 829 } 830 HDA_BOOTVERBOSE( 831 if (config != orig) 832 device_printf(w->devinfo->dev, 833 "Patching pin config nid=%u 0x%08x -> 0x%08x\n", 834 w->nid, orig, config); 835 ); 836 w->wclass.pin.newconf = w->wclass.pin.config = config; 837 } 838 839 static int 840 hdaa_sysctl_config(SYSCTL_HANDLER_ARGS) 841 { 842 char buf[256]; 843 int error; 844 uint32_t conf; 845 846 conf = *(uint32_t *)oidp->oid_arg1; 847 snprintf(buf, sizeof(buf), "0x%08x as=%d seq=%d " 848 "device=%s conn=%s ctype=%s loc=%s color=%s misc=%d", 849 conf, 850 HDA_CONFIG_DEFAULTCONF_ASSOCIATION(conf), 851 HDA_CONFIG_DEFAULTCONF_SEQUENCE(conf), 852 HDA_DEVS[HDA_CONFIG_DEFAULTCONF_DEVICE(conf)], 853 HDA_CONNS[HDA_CONFIG_DEFAULTCONF_CONNECTIVITY(conf)], 854 HDA_CONNECTORS[HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE(conf)], 855 HDA_LOCS[HDA_CONFIG_DEFAULTCONF_LOCATION(conf)], 856 HDA_COLORS[HDA_CONFIG_DEFAULTCONF_COLOR(conf)], 857 HDA_CONFIG_DEFAULTCONF_MISC(conf)); 858 error = sysctl_handle_string(oidp, buf, sizeof(buf), req); 859 if (error != 0 || req->newptr == NULL) 860 return (error); 861 if (strncmp(buf, "0x", 2) == 0) 862 conf = strtol(buf + 2, NULL, 16); 863 else 864 conf = hdaa_widget_pin_patch(conf, buf); 865 *(uint32_t *)oidp->oid_arg1 = conf; 866 return (0); 867 } 868 869 static void 870 hdaa_config_fetch(const char *str, uint32_t *on, uint32_t *off) 871 { 872 int i = 0, j, k, len, inv; 873 874 for (;;) { 875 while (str[i] != '\0' && 876 (str[i] == ',' || isspace(str[i]) != 0)) 877 i++; 878 if (str[i] == '\0') 879 return; 880 j = i; 881 while (str[j] != '\0' && 882 !(str[j] == ',' || isspace(str[j]) != 0)) 883 j++; 884 len = j - i; 885 if (len > 2 && strncmp(str + i, "no", 2) == 0) 886 inv = 2; 887 else 888 inv = 0; 889 for (k = 0; len > inv && k < HDAA_QUIRKS_TAB_LEN; k++) { 890 if (strncmp(str + i + inv, 891 hdaa_quirks_tab[k].key, len - inv) != 0) 892 continue; 893 if (len - inv != strlen(hdaa_quirks_tab[k].key)) 894 continue; 895 if (inv == 0) { 896 *on |= hdaa_quirks_tab[k].value; 897 *off &= ~hdaa_quirks_tab[k].value; 898 } else { 899 *off |= hdaa_quirks_tab[k].value; 900 *on &= ~hdaa_quirks_tab[k].value; 901 } 902 break; 903 } 904 i = j; 905 } 906 } 907 908 static int 909 hdaa_sysctl_quirks(SYSCTL_HANDLER_ARGS) 910 { 911 char buf[256]; 912 int error, n = 0, i; 913 uint32_t quirks, quirks_off; 914 915 quirks = *(uint32_t *)oidp->oid_arg1; 916 buf[0] = 0; 917 for (i = 0; i < HDAA_QUIRKS_TAB_LEN; i++) { 918 if ((quirks & hdaa_quirks_tab[i].value) != 0) 919 n += snprintf(buf + n, sizeof(buf) - n, "%s%s", 920 n != 0 ? "," : "", hdaa_quirks_tab[i].key); 921 } 922 error = sysctl_handle_string(oidp, buf, sizeof(buf), req); 923 if (error != 0 || req->newptr == NULL) 924 return (error); 925 if (strncmp(buf, "0x", 2) == 0) 926 quirks = strtol(buf + 2, NULL, 16); 927 else { 928 quirks = 0; 929 hdaa_config_fetch(buf, &quirks, &quirks_off); 930 } 931 *(uint32_t *)oidp->oid_arg1 = quirks; 932 return (0); 933 } 934 935 static void 936 hdaa_local_patch(struct hdaa_devinfo *devinfo) 937 { 938 struct hdaa_widget *w; 939 const char *res = NULL; 940 uint32_t quirks_on = 0, quirks_off = 0, x; 941 int i; 942 943 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 944 w = hdaa_widget_get(devinfo, i); 945 if (w == NULL) 946 continue; 947 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 948 hdaa_local_patch_pin(w); 949 } 950 951 if (resource_string_value(device_get_name(devinfo->dev), 952 device_get_unit(devinfo->dev), "config", &res) == 0) { 953 if (res != NULL && strlen(res) > 0) 954 hdaa_config_fetch(res, &quirks_on, &quirks_off); 955 devinfo->quirks |= quirks_on; 956 devinfo->quirks &= ~quirks_off; 957 } 958 if (devinfo->newquirks == -1) 959 devinfo->newquirks = devinfo->quirks; 960 else 961 devinfo->quirks = devinfo->newquirks; 962 HDA_BOOTHVERBOSE( 963 device_printf(devinfo->dev, 964 "Config options: 0x%08x\n", devinfo->quirks); 965 ); 966 967 if (resource_string_value(device_get_name(devinfo->dev), 968 device_get_unit(devinfo->dev), "gpio_config", &res) == 0) { 969 if (strncmp(res, "0x", 2) == 0) { 970 devinfo->gpio = strtol(res + 2, NULL, 16); 971 } else { 972 devinfo->gpio = hdaa_gpio_patch(devinfo->gpio, res); 973 } 974 } 975 if (devinfo->newgpio == -1) 976 devinfo->newgpio = devinfo->gpio; 977 else 978 devinfo->gpio = devinfo->newgpio; 979 if (devinfo->newgpo == -1) 980 devinfo->newgpo = devinfo->gpo; 981 else 982 devinfo->gpo = devinfo->newgpo; 983 HDA_BOOTHVERBOSE( 984 device_printf(devinfo->dev, "GPIO config options:"); 985 for (i = 0; i < 7; i++) { 986 x = (devinfo->gpio & HDAA_GPIO_MASK(i)) >> HDAA_GPIO_SHIFT(i); 987 if (x != 0) 988 printf(" %d=%s", i, HDA_GPIO_ACTIONS[x]); 989 } 990 printf("\n"); 991 ); 992 } 993 994 static void 995 hdaa_widget_connection_parse(struct hdaa_widget *w) 996 { 997 uint32_t res; 998 int i, j, max, ents, entnum; 999 nid_t nid = w->nid; 1000 nid_t cnid, addcnid, prevcnid; 1001 1002 w->nconns = 0; 1003 1004 res = hda_command(w->devinfo->dev, 1005 HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_CONN_LIST_LENGTH)); 1006 1007 ents = HDA_PARAM_CONN_LIST_LENGTH_LIST_LENGTH(res); 1008 1009 if (ents < 1) 1010 return; 1011 1012 entnum = HDA_PARAM_CONN_LIST_LENGTH_LONG_FORM(res) ? 2 : 4; 1013 max = (sizeof(w->conns) / sizeof(w->conns[0])) - 1; 1014 prevcnid = 0; 1015 1016 #define CONN_RMASK(e) (1 << ((32 / (e)) - 1)) 1017 #define CONN_NMASK(e) (CONN_RMASK(e) - 1) 1018 #define CONN_RESVAL(r, e, n) ((r) >> ((32 / (e)) * (n))) 1019 #define CONN_RANGE(r, e, n) (CONN_RESVAL(r, e, n) & CONN_RMASK(e)) 1020 #define CONN_CNID(r, e, n) (CONN_RESVAL(r, e, n) & CONN_NMASK(e)) 1021 1022 for (i = 0; i < ents; i += entnum) { 1023 res = hda_command(w->devinfo->dev, 1024 HDA_CMD_GET_CONN_LIST_ENTRY(0, nid, i)); 1025 for (j = 0; j < entnum; j++) { 1026 cnid = CONN_CNID(res, entnum, j); 1027 if (cnid == 0) { 1028 if (w->nconns < ents) 1029 device_printf(w->devinfo->dev, 1030 "WARNING: nid=%d has zero cnid " 1031 "entnum=%d j=%d index=%d " 1032 "entries=%d found=%d res=0x%08x\n", 1033 nid, entnum, j, i, 1034 ents, w->nconns, res); 1035 else 1036 goto getconns_out; 1037 } 1038 if (cnid < w->devinfo->startnode || 1039 cnid >= w->devinfo->endnode) { 1040 HDA_BOOTVERBOSE( 1041 device_printf(w->devinfo->dev, 1042 "WARNING: nid=%d has cnid outside " 1043 "of the AFG range j=%d " 1044 "entnum=%d index=%d res=0x%08x\n", 1045 nid, j, entnum, i, res); 1046 ); 1047 } 1048 if (CONN_RANGE(res, entnum, j) == 0) 1049 addcnid = cnid; 1050 else if (prevcnid == 0 || prevcnid >= cnid) { 1051 device_printf(w->devinfo->dev, 1052 "WARNING: Invalid child range " 1053 "nid=%d index=%d j=%d entnum=%d " 1054 "prevcnid=%d cnid=%d res=0x%08x\n", 1055 nid, i, j, entnum, prevcnid, 1056 cnid, res); 1057 addcnid = cnid; 1058 } else 1059 addcnid = prevcnid + 1; 1060 while (addcnid <= cnid) { 1061 if (w->nconns > max) { 1062 device_printf(w->devinfo->dev, 1063 "Adding %d (nid=%d): " 1064 "Max connection reached! max=%d\n", 1065 addcnid, nid, max + 1); 1066 goto getconns_out; 1067 } 1068 w->connsenable[w->nconns] = 1; 1069 w->conns[w->nconns++] = addcnid++; 1070 } 1071 prevcnid = cnid; 1072 } 1073 } 1074 1075 getconns_out: 1076 return; 1077 } 1078 1079 static void 1080 hdaa_widget_parse(struct hdaa_widget *w) 1081 { 1082 device_t dev = w->devinfo->dev; 1083 uint32_t wcap, cap; 1084 nid_t nid = w->nid; 1085 char buf[64]; 1086 1087 w->param.widget_cap = wcap = hda_command(dev, 1088 HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_AUDIO_WIDGET_CAP)); 1089 w->type = HDA_PARAM_AUDIO_WIDGET_CAP_TYPE(wcap); 1090 1091 hdaa_widget_connection_parse(w); 1092 1093 if (HDA_PARAM_AUDIO_WIDGET_CAP_OUT_AMP(wcap)) { 1094 if (HDA_PARAM_AUDIO_WIDGET_CAP_AMP_OVR(wcap)) 1095 w->param.outamp_cap = 1096 hda_command(dev, 1097 HDA_CMD_GET_PARAMETER(0, nid, 1098 HDA_PARAM_OUTPUT_AMP_CAP)); 1099 else 1100 w->param.outamp_cap = 1101 w->devinfo->outamp_cap; 1102 } else 1103 w->param.outamp_cap = 0; 1104 1105 if (HDA_PARAM_AUDIO_WIDGET_CAP_IN_AMP(wcap)) { 1106 if (HDA_PARAM_AUDIO_WIDGET_CAP_AMP_OVR(wcap)) 1107 w->param.inamp_cap = 1108 hda_command(dev, 1109 HDA_CMD_GET_PARAMETER(0, nid, 1110 HDA_PARAM_INPUT_AMP_CAP)); 1111 else 1112 w->param.inamp_cap = 1113 w->devinfo->inamp_cap; 1114 } else 1115 w->param.inamp_cap = 0; 1116 1117 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT || 1118 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) { 1119 if (HDA_PARAM_AUDIO_WIDGET_CAP_FORMAT_OVR(wcap)) { 1120 cap = hda_command(dev, 1121 HDA_CMD_GET_PARAMETER(0, nid, 1122 HDA_PARAM_SUPP_STREAM_FORMATS)); 1123 w->param.supp_stream_formats = (cap != 0) ? cap : 1124 w->devinfo->supp_stream_formats; 1125 cap = hda_command(dev, 1126 HDA_CMD_GET_PARAMETER(0, nid, 1127 HDA_PARAM_SUPP_PCM_SIZE_RATE)); 1128 w->param.supp_pcm_size_rate = (cap != 0) ? cap : 1129 w->devinfo->supp_pcm_size_rate; 1130 } else { 1131 w->param.supp_stream_formats = 1132 w->devinfo->supp_stream_formats; 1133 w->param.supp_pcm_size_rate = 1134 w->devinfo->supp_pcm_size_rate; 1135 } 1136 if (HDA_PARAM_AUDIO_WIDGET_CAP_STRIPE(w->param.widget_cap)) { 1137 w->wclass.conv.stripecap = hda_command(dev, 1138 HDA_CMD_GET_STRIPE_CONTROL(0, w->nid)) >> 20; 1139 } else 1140 w->wclass.conv.stripecap = 1; 1141 } else { 1142 w->param.supp_stream_formats = 0; 1143 w->param.supp_pcm_size_rate = 0; 1144 } 1145 1146 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) { 1147 w->wclass.pin.original = w->wclass.pin.newconf = 1148 w->wclass.pin.config = hda_command(dev, 1149 HDA_CMD_GET_CONFIGURATION_DEFAULT(0, w->nid)); 1150 w->wclass.pin.cap = hda_command(dev, 1151 HDA_CMD_GET_PARAMETER(0, w->nid, HDA_PARAM_PIN_CAP));; 1152 w->wclass.pin.ctrl = hda_command(dev, 1153 HDA_CMD_GET_PIN_WIDGET_CTRL(0, nid)); 1154 if (HDA_PARAM_PIN_CAP_EAPD_CAP(w->wclass.pin.cap)) { 1155 w->param.eapdbtl = hda_command(dev, 1156 HDA_CMD_GET_EAPD_BTL_ENABLE(0, nid)); 1157 w->param.eapdbtl &= 0x7; 1158 w->param.eapdbtl |= HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD; 1159 } else 1160 w->param.eapdbtl = HDA_INVALID; 1161 1162 hdaa_unlock(w->devinfo); 1163 snprintf(buf, sizeof(buf), "nid%d_config", w->nid); 1164 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 1165 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 1166 buf, CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 1167 &w->wclass.pin.newconf, sizeof(&w->wclass.pin.newconf), 1168 hdaa_sysctl_config, "A", "Current pin configuration"); 1169 snprintf(buf, sizeof(buf), "nid%d_original", w->nid); 1170 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 1171 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 1172 buf, CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, 1173 &w->wclass.pin.original, sizeof(&w->wclass.pin.original), 1174 hdaa_sysctl_config, "A", "Original pin configuration"); 1175 hdaa_lock(w->devinfo); 1176 } 1177 w->unsol = -1; 1178 } 1179 1180 static void 1181 hdaa_widget_postprocess(struct hdaa_widget *w) 1182 { 1183 char *typestr; 1184 1185 w->type = HDA_PARAM_AUDIO_WIDGET_CAP_TYPE(w->param.widget_cap); 1186 switch (w->type) { 1187 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT: 1188 typestr = "audio output"; 1189 break; 1190 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT: 1191 typestr = "audio input"; 1192 break; 1193 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER: 1194 typestr = "audio mixer"; 1195 break; 1196 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR: 1197 typestr = "audio selector"; 1198 break; 1199 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX: 1200 typestr = "pin"; 1201 break; 1202 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_POWER_WIDGET: 1203 typestr = "power widget"; 1204 break; 1205 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_VOLUME_WIDGET: 1206 typestr = "volume widget"; 1207 break; 1208 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_BEEP_WIDGET: 1209 typestr = "beep widget"; 1210 break; 1211 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_VENDOR_WIDGET: 1212 typestr = "vendor widget"; 1213 break; 1214 default: 1215 typestr = "unknown type"; 1216 break; 1217 } 1218 strlcpy(w->name, typestr, sizeof(w->name)); 1219 1220 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) { 1221 uint32_t config; 1222 const char *devstr; 1223 int conn, color; 1224 1225 config = w->wclass.pin.config; 1226 devstr = HDA_DEVS[(config & HDA_CONFIG_DEFAULTCONF_DEVICE_MASK) >> 1227 HDA_CONFIG_DEFAULTCONF_DEVICE_SHIFT]; 1228 conn = (config & HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK) >> 1229 HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_SHIFT; 1230 color = (config & HDA_CONFIG_DEFAULTCONF_COLOR_MASK) >> 1231 HDA_CONFIG_DEFAULTCONF_COLOR_SHIFT; 1232 strlcat(w->name, ": ", sizeof(w->name)); 1233 strlcat(w->name, devstr, sizeof(w->name)); 1234 strlcat(w->name, " (", sizeof(w->name)); 1235 if (conn == 0 && color != 0 && color != 15) { 1236 strlcat(w->name, HDA_COLORS[color], sizeof(w->name)); 1237 strlcat(w->name, " ", sizeof(w->name)); 1238 } 1239 strlcat(w->name, HDA_CONNS[conn], sizeof(w->name)); 1240 strlcat(w->name, ")", sizeof(w->name)); 1241 1242 if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(w->wclass.pin.cap) == 0 || 1243 (HDA_CONFIG_DEFAULTCONF_MISC(w->wclass.pin.config) & 1) != 0) 1244 w->wclass.pin.connected = 2; 1245 } 1246 } 1247 1248 struct hdaa_widget * 1249 hdaa_widget_get(struct hdaa_devinfo *devinfo, nid_t nid) 1250 { 1251 if (devinfo == NULL || devinfo->widget == NULL || 1252 nid < devinfo->startnode || nid >= devinfo->endnode) 1253 return (NULL); 1254 return (&devinfo->widget[nid - devinfo->startnode]); 1255 } 1256 1257 static void 1258 hdaa_audio_ctl_amp_set_internal(struct hdaa_devinfo *devinfo, nid_t nid, 1259 int index, int lmute, int rmute, 1260 int left, int right, int dir) 1261 { 1262 uint16_t v = 0; 1263 1264 HDA_BOOTHVERBOSE( 1265 device_printf(devinfo->dev, 1266 "Setting amplifier nid=%d index=%d %s mute=%d/%d vol=%d/%d\n", 1267 nid,index,dir ? "in" : "out",lmute,rmute,left,right); 1268 ); 1269 if (left != right || lmute != rmute) { 1270 v = (1 << (15 - dir)) | (1 << 13) | (index << 8) | 1271 (lmute << 7) | left; 1272 hda_command(devinfo->dev, 1273 HDA_CMD_SET_AMP_GAIN_MUTE(0, nid, v)); 1274 v = (1 << (15 - dir)) | (1 << 12) | (index << 8) | 1275 (rmute << 7) | right; 1276 } else 1277 v = (1 << (15 - dir)) | (3 << 12) | (index << 8) | 1278 (lmute << 7) | left; 1279 1280 hda_command(devinfo->dev, 1281 HDA_CMD_SET_AMP_GAIN_MUTE(0, nid, v)); 1282 } 1283 1284 static void 1285 hdaa_audio_ctl_amp_set(struct hdaa_audio_ctl *ctl, uint32_t mute, 1286 int left, int right) 1287 { 1288 nid_t nid; 1289 int lmute, rmute; 1290 1291 nid = ctl->widget->nid; 1292 1293 /* Save new values if valid. */ 1294 if (mute != HDAA_AMP_MUTE_DEFAULT) 1295 ctl->muted = mute; 1296 if (left != HDAA_AMP_VOL_DEFAULT) 1297 ctl->left = left; 1298 if (right != HDAA_AMP_VOL_DEFAULT) 1299 ctl->right = right; 1300 /* Prepare effective values */ 1301 if (ctl->forcemute) { 1302 lmute = 1; 1303 rmute = 1; 1304 left = 0; 1305 right = 0; 1306 } else { 1307 lmute = HDAA_AMP_LEFT_MUTED(ctl->muted); 1308 rmute = HDAA_AMP_RIGHT_MUTED(ctl->muted); 1309 left = ctl->left; 1310 right = ctl->right; 1311 } 1312 /* Apply effective values */ 1313 if (ctl->dir & HDAA_CTL_OUT) 1314 hdaa_audio_ctl_amp_set_internal(ctl->widget->devinfo, nid, ctl->index, 1315 lmute, rmute, left, right, 0); 1316 if (ctl->dir & HDAA_CTL_IN) 1317 hdaa_audio_ctl_amp_set_internal(ctl->widget->devinfo, nid, ctl->index, 1318 lmute, rmute, left, right, 1); 1319 } 1320 1321 static void 1322 hdaa_widget_connection_select(struct hdaa_widget *w, uint8_t index) 1323 { 1324 if (w == NULL || w->nconns < 1 || index > (w->nconns - 1)) 1325 return; 1326 HDA_BOOTHVERBOSE( 1327 device_printf(w->devinfo->dev, 1328 "Setting selector nid=%d index=%d\n", w->nid, index); 1329 ); 1330 hda_command(w->devinfo->dev, 1331 HDA_CMD_SET_CONNECTION_SELECT_CONTROL(0, w->nid, index)); 1332 w->selconn = index; 1333 } 1334 1335 /**************************************************************************** 1336 * Device Methods 1337 ****************************************************************************/ 1338 1339 static void * 1340 hdaa_channel_init(kobj_t obj, void *data, struct snd_dbuf *b, 1341 struct pcm_channel *c, int dir) 1342 { 1343 struct hdaa_chan *ch = data; 1344 struct hdaa_pcm_devinfo *pdevinfo = ch->pdevinfo; 1345 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 1346 1347 hdaa_lock(devinfo); 1348 if (devinfo->quirks & HDAA_QUIRK_FIXEDRATE) { 1349 ch->caps.minspeed = ch->caps.maxspeed = 48000; 1350 ch->pcmrates[0] = 48000; 1351 ch->pcmrates[1] = 0; 1352 } 1353 ch->dir = dir; 1354 ch->b = b; 1355 ch->c = c; 1356 ch->blksz = pdevinfo->chan_size / pdevinfo->chan_blkcnt; 1357 ch->blkcnt = pdevinfo->chan_blkcnt; 1358 hdaa_unlock(devinfo); 1359 1360 if (sndbuf_alloc(ch->b, bus_get_dma_tag(devinfo->dev), 1361 hda_get_dma_nocache(devinfo->dev) ? BUS_DMA_NOCACHE : 0, 1362 pdevinfo->chan_size) != 0) 1363 return (NULL); 1364 1365 return (ch); 1366 } 1367 1368 static int 1369 hdaa_channel_setformat(kobj_t obj, void *data, uint32_t format) 1370 { 1371 struct hdaa_chan *ch = data; 1372 int i; 1373 1374 for (i = 0; ch->caps.fmtlist[i] != 0; i++) { 1375 if (format == ch->caps.fmtlist[i]) { 1376 ch->fmt = format; 1377 return (0); 1378 } 1379 } 1380 1381 return (EINVAL); 1382 } 1383 1384 static uint32_t 1385 hdaa_channel_setspeed(kobj_t obj, void *data, uint32_t speed) 1386 { 1387 struct hdaa_chan *ch = data; 1388 uint32_t spd = 0, threshold; 1389 int i; 1390 1391 /* First look for equal or multiple frequency. */ 1392 for (i = 0; ch->pcmrates[i] != 0; i++) { 1393 spd = ch->pcmrates[i]; 1394 if (speed != 0 && spd / speed * speed == spd) { 1395 ch->spd = spd; 1396 return (spd); 1397 } 1398 } 1399 /* If no match, just find nearest. */ 1400 for (i = 0; ch->pcmrates[i] != 0; i++) { 1401 spd = ch->pcmrates[i]; 1402 threshold = spd + ((ch->pcmrates[i + 1] != 0) ? 1403 ((ch->pcmrates[i + 1] - spd) >> 1) : 0); 1404 if (speed < threshold) 1405 break; 1406 } 1407 ch->spd = spd; 1408 return (spd); 1409 } 1410 1411 static uint16_t 1412 hdaa_stream_format(struct hdaa_chan *ch) 1413 { 1414 int i; 1415 uint16_t fmt; 1416 1417 fmt = 0; 1418 if (ch->fmt & AFMT_S16_LE) 1419 fmt |= ch->bit16 << 4; 1420 else if (ch->fmt & AFMT_S32_LE) 1421 fmt |= ch->bit32 << 4; 1422 else 1423 fmt |= 1 << 4; 1424 for (i = 0; i < HDA_RATE_TAB_LEN; i++) { 1425 if (hda_rate_tab[i].valid && ch->spd == hda_rate_tab[i].rate) { 1426 fmt |= hda_rate_tab[i].base; 1427 fmt |= hda_rate_tab[i].mul; 1428 fmt |= hda_rate_tab[i].div; 1429 break; 1430 } 1431 } 1432 fmt |= (AFMT_CHANNEL(ch->fmt) - 1); 1433 1434 return (fmt); 1435 } 1436 1437 static int 1438 hdaa_allowed_stripes(uint16_t fmt) 1439 { 1440 static const int bits[8] = { 8, 16, 20, 24, 32, 32, 32, 32 }; 1441 int size; 1442 1443 size = bits[(fmt >> 4) & 0x03]; 1444 size *= (fmt & 0x0f) + 1; 1445 size *= ((fmt >> 11) & 0x07) + 1; 1446 return (0xffffffffU >> (32 - fls(size / 8))); 1447 } 1448 1449 static void 1450 hdaa_audio_setup(struct hdaa_chan *ch) 1451 { 1452 struct hdaa_audio_as *as = &ch->devinfo->as[ch->as]; 1453 struct hdaa_widget *w, *wp; 1454 int i, j, k, chn, cchn, totalchn, totalextchn, c; 1455 uint16_t fmt, dfmt; 1456 /* Mapping channel pairs to codec pins/converters. */ 1457 const static uint16_t convmap[2][5] = 1458 {{ 0x0010, 0x0001, 0x0201, 0x0231, 0x0231 }, /* 5.1 */ 1459 { 0x0010, 0x0001, 0x2001, 0x2031, 0x2431 }};/* 7.1 */ 1460 /* Mapping formats to HDMI channel allocations. */ 1461 const static uint8_t hdmica[2][8] = 1462 {{ 0x02, 0x00, 0x04, 0x08, 0x0a, 0x0e, 0x12, 0x12 }, /* x.0 */ 1463 { 0x01, 0x03, 0x01, 0x03, 0x09, 0x0b, 0x0f, 0x13 }}; /* x.1 */ 1464 /* Mapping formats to HDMI channels order. */ 1465 const static uint32_t hdmich[2][8] = 1466 {{ 0xFFFF0F00, 0xFFFFFF10, 0xFFF2FF10, 0xFF32FF10, 1467 0xFF324F10, 0xF5324F10, 0x54326F10, 0x54326F10 }, /* x.0 */ 1468 { 0xFFFFF000, 0xFFFF0100, 0xFFFFF210, 0xFFFF2310, 1469 0xFF32F410, 0xFF324510, 0xF6324510, 0x76325410 }}; /* x.1 */ 1470 int convmapid = -1; 1471 nid_t nid; 1472 uint8_t csum; 1473 1474 totalchn = AFMT_CHANNEL(ch->fmt); 1475 totalextchn = AFMT_EXTCHANNEL(ch->fmt); 1476 HDA_BOOTHVERBOSE( 1477 device_printf(ch->pdevinfo->dev, 1478 "PCMDIR_%s: Stream setup fmt=%08x (%d.%d) speed=%d\n", 1479 (ch->dir == PCMDIR_PLAY) ? "PLAY" : "REC", 1480 ch->fmt, totalchn - totalextchn, totalextchn, ch->spd); 1481 ); 1482 fmt = hdaa_stream_format(ch); 1483 1484 /* Set channels to I/O converters mapping for known speaker setups. */ 1485 if ((as->pinset == 0x0007 || as->pinset == 0x0013)) /* Standard 5.1 */ 1486 convmapid = 0; 1487 else if (as->pinset == 0x0017) /* Standard 7.1 */ 1488 convmapid = 1; 1489 1490 dfmt = HDA_CMD_SET_DIGITAL_CONV_FMT1_DIGEN; 1491 if (ch->fmt & AFMT_AC3) 1492 dfmt |= HDA_CMD_SET_DIGITAL_CONV_FMT1_NAUDIO; 1493 1494 chn = 0; 1495 for (i = 0; ch->io[i] != -1; i++) { 1496 w = hdaa_widget_get(ch->devinfo, ch->io[i]); 1497 if (w == NULL) 1498 continue; 1499 1500 /* If HP redirection is enabled, but failed to use same 1501 DAC, make last DAC to duplicate first one. */ 1502 if (as->fakeredir && i == (as->pincnt - 1)) { 1503 c = (ch->sid << 4); 1504 } else { 1505 /* Map channels to I/O converters, if set. */ 1506 if (convmapid >= 0) 1507 chn = (((convmap[convmapid][totalchn / 2] 1508 >> i * 4) & 0xf) - 1) * 2; 1509 if (chn < 0 || chn >= totalchn) { 1510 c = 0; 1511 } else { 1512 c = (ch->sid << 4) | chn; 1513 } 1514 } 1515 hda_command(ch->devinfo->dev, 1516 HDA_CMD_SET_CONV_FMT(0, ch->io[i], fmt)); 1517 if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) { 1518 hda_command(ch->devinfo->dev, 1519 HDA_CMD_SET_DIGITAL_CONV_FMT1(0, ch->io[i], dfmt)); 1520 } 1521 hda_command(ch->devinfo->dev, 1522 HDA_CMD_SET_CONV_STREAM_CHAN(0, ch->io[i], c)); 1523 if (HDA_PARAM_AUDIO_WIDGET_CAP_STRIPE(w->param.widget_cap)) { 1524 hda_command(ch->devinfo->dev, 1525 HDA_CMD_SET_STRIPE_CONTROL(0, w->nid, ch->stripectl)); 1526 } 1527 cchn = HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap); 1528 if (cchn > 1 && chn < totalchn) { 1529 cchn = min(cchn, totalchn - chn - 1); 1530 hda_command(ch->devinfo->dev, 1531 HDA_CMD_SET_CONV_CHAN_COUNT(0, ch->io[i], cchn)); 1532 } 1533 HDA_BOOTHVERBOSE( 1534 device_printf(ch->pdevinfo->dev, 1535 "PCMDIR_%s: Stream setup nid=%d: " 1536 "fmt=0x%04x, dfmt=0x%04x, chan=0x%04x, " 1537 "chan_count=0x%02x, stripe=%d\n", 1538 (ch->dir == PCMDIR_PLAY) ? "PLAY" : "REC", 1539 ch->io[i], fmt, dfmt, c, cchn, ch->stripectl); 1540 ); 1541 for (j = 0; j < 16; j++) { 1542 if (as->dacs[ch->asindex][j] != ch->io[i]) 1543 continue; 1544 nid = as->pins[j]; 1545 wp = hdaa_widget_get(ch->devinfo, nid); 1546 if (wp == NULL) 1547 continue; 1548 if (!HDA_PARAM_PIN_CAP_DP(wp->wclass.pin.cap) && 1549 !HDA_PARAM_PIN_CAP_HDMI(wp->wclass.pin.cap)) 1550 continue; 1551 1552 /* Set channel mapping. */ 1553 for (k = 0; k < 8; k++) { 1554 hda_command(ch->devinfo->dev, 1555 HDA_CMD_SET_HDMI_CHAN_SLOT(0, nid, 1556 (((hdmich[totalextchn == 0 ? 0 : 1][totalchn - 1] 1557 >> (k * 4)) & 0xf) << 4) | k)); 1558 } 1559 1560 /* 1561 * Enable High Bit Rate (HBR) Encoded Packet Type 1562 * (EPT), if supported and needed (8ch data). 1563 */ 1564 if (HDA_PARAM_PIN_CAP_HDMI(wp->wclass.pin.cap) && 1565 HDA_PARAM_PIN_CAP_HBR(wp->wclass.pin.cap)) { 1566 wp->wclass.pin.ctrl &= 1567 ~HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK; 1568 if ((ch->fmt & AFMT_AC3) && (cchn == 7)) 1569 wp->wclass.pin.ctrl |= 0x03; 1570 hda_command(ch->devinfo->dev, 1571 HDA_CMD_SET_PIN_WIDGET_CTRL(0, nid, 1572 wp->wclass.pin.ctrl)); 1573 } 1574 1575 /* Stop audio infoframe transmission. */ 1576 hda_command(ch->devinfo->dev, 1577 HDA_CMD_SET_HDMI_DIP_INDEX(0, nid, 0x00)); 1578 hda_command(ch->devinfo->dev, 1579 HDA_CMD_SET_HDMI_DIP_XMIT(0, nid, 0x00)); 1580 1581 /* Clear audio infoframe buffer. */ 1582 hda_command(ch->devinfo->dev, 1583 HDA_CMD_SET_HDMI_DIP_INDEX(0, nid, 0x00)); 1584 for (k = 0; k < 32; k++) 1585 hda_command(ch->devinfo->dev, 1586 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x00)); 1587 1588 /* Write HDMI/DisplayPort audio infoframe. */ 1589 hda_command(ch->devinfo->dev, 1590 HDA_CMD_SET_HDMI_DIP_INDEX(0, nid, 0x00)); 1591 if (w->eld != NULL && w->eld_len >= 6 && 1592 ((w->eld[5] >> 2) & 0x3) == 1) { /* DisplayPort */ 1593 hda_command(ch->devinfo->dev, 1594 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x84)); 1595 hda_command(ch->devinfo->dev, 1596 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x1b)); 1597 hda_command(ch->devinfo->dev, 1598 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x44)); 1599 } else { /* HDMI */ 1600 hda_command(ch->devinfo->dev, 1601 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x84)); 1602 hda_command(ch->devinfo->dev, 1603 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x01)); 1604 hda_command(ch->devinfo->dev, 1605 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x0a)); 1606 csum = 0; 1607 csum -= 0x84 + 0x01 + 0x0a + (totalchn - 1) + 1608 hdmica[totalextchn == 0 ? 0 : 1][totalchn - 1]; 1609 hda_command(ch->devinfo->dev, 1610 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, csum)); 1611 } 1612 hda_command(ch->devinfo->dev, 1613 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, totalchn - 1)); 1614 hda_command(ch->devinfo->dev, 1615 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x00)); 1616 hda_command(ch->devinfo->dev, 1617 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x00)); 1618 hda_command(ch->devinfo->dev, 1619 HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 1620 hdmica[totalextchn == 0 ? 0 : 1][totalchn - 1])); 1621 1622 /* Start audio infoframe transmission. */ 1623 hda_command(ch->devinfo->dev, 1624 HDA_CMD_SET_HDMI_DIP_INDEX(0, nid, 0x00)); 1625 hda_command(ch->devinfo->dev, 1626 HDA_CMD_SET_HDMI_DIP_XMIT(0, nid, 0xc0)); 1627 } 1628 chn += cchn + 1; 1629 } 1630 } 1631 1632 /* 1633 * Greatest Common Divisor. 1634 */ 1635 static unsigned 1636 gcd(unsigned a, unsigned b) 1637 { 1638 u_int c; 1639 1640 while (b != 0) { 1641 c = a; 1642 a = b; 1643 b = (c % b); 1644 } 1645 return (a); 1646 } 1647 1648 /* 1649 * Least Common Multiple. 1650 */ 1651 static unsigned 1652 lcm(unsigned a, unsigned b) 1653 { 1654 1655 return ((a * b) / gcd(a, b)); 1656 } 1657 1658 static int 1659 hdaa_channel_setfragments(kobj_t obj, void *data, 1660 uint32_t blksz, uint32_t blkcnt) 1661 { 1662 struct hdaa_chan *ch = data; 1663 1664 blksz -= blksz % lcm(HDA_DMA_ALIGNMENT, sndbuf_getalign(ch->b)); 1665 1666 if (blksz > (sndbuf_getmaxsize(ch->b) / HDA_BDL_MIN)) 1667 blksz = sndbuf_getmaxsize(ch->b) / HDA_BDL_MIN; 1668 if (blksz < HDA_BLK_MIN) 1669 blksz = HDA_BLK_MIN; 1670 if (blkcnt > HDA_BDL_MAX) 1671 blkcnt = HDA_BDL_MAX; 1672 if (blkcnt < HDA_BDL_MIN) 1673 blkcnt = HDA_BDL_MIN; 1674 1675 while ((blksz * blkcnt) > sndbuf_getmaxsize(ch->b)) { 1676 if ((blkcnt >> 1) >= HDA_BDL_MIN) 1677 blkcnt >>= 1; 1678 else if ((blksz >> 1) >= HDA_BLK_MIN) 1679 blksz >>= 1; 1680 else 1681 break; 1682 } 1683 1684 if ((sndbuf_getblksz(ch->b) != blksz || 1685 sndbuf_getblkcnt(ch->b) != blkcnt) && 1686 sndbuf_resize(ch->b, blkcnt, blksz) != 0) 1687 device_printf(ch->devinfo->dev, "%s: failed blksz=%u blkcnt=%u\n", 1688 __func__, blksz, blkcnt); 1689 1690 ch->blksz = sndbuf_getblksz(ch->b); 1691 ch->blkcnt = sndbuf_getblkcnt(ch->b); 1692 1693 return (0); 1694 } 1695 1696 static uint32_t 1697 hdaa_channel_setblocksize(kobj_t obj, void *data, uint32_t blksz) 1698 { 1699 struct hdaa_chan *ch = data; 1700 1701 hdaa_channel_setfragments(obj, data, blksz, ch->pdevinfo->chan_blkcnt); 1702 1703 return (ch->blksz); 1704 } 1705 1706 static void 1707 hdaa_channel_stop(struct hdaa_chan *ch) 1708 { 1709 struct hdaa_devinfo *devinfo = ch->devinfo; 1710 struct hdaa_widget *w; 1711 int i; 1712 1713 if ((ch->flags & HDAA_CHN_RUNNING) == 0) 1714 return; 1715 ch->flags &= ~HDAA_CHN_RUNNING; 1716 HDAC_STREAM_STOP(device_get_parent(devinfo->dev), devinfo->dev, 1717 ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid); 1718 for (i = 0; ch->io[i] != -1; i++) { 1719 w = hdaa_widget_get(ch->devinfo, ch->io[i]); 1720 if (w == NULL) 1721 continue; 1722 if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) { 1723 hda_command(devinfo->dev, 1724 HDA_CMD_SET_DIGITAL_CONV_FMT1(0, ch->io[i], 0)); 1725 } 1726 hda_command(devinfo->dev, 1727 HDA_CMD_SET_CONV_STREAM_CHAN(0, ch->io[i], 1728 0)); 1729 } 1730 HDAC_STREAM_FREE(device_get_parent(devinfo->dev), devinfo->dev, 1731 ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid); 1732 } 1733 1734 static int 1735 hdaa_channel_start(struct hdaa_chan *ch) 1736 { 1737 struct hdaa_devinfo *devinfo = ch->devinfo; 1738 uint32_t fmt; 1739 1740 fmt = hdaa_stream_format(ch); 1741 ch->stripectl = fls(ch->stripecap & hdaa_allowed_stripes(fmt)) - 1; 1742 ch->sid = HDAC_STREAM_ALLOC(device_get_parent(devinfo->dev), devinfo->dev, 1743 ch->dir == PCMDIR_PLAY ? 1 : 0, fmt, ch->stripectl, &ch->dmapos); 1744 if (ch->sid <= 0) 1745 return (EBUSY); 1746 hdaa_audio_setup(ch); 1747 HDAC_STREAM_RESET(device_get_parent(devinfo->dev), devinfo->dev, 1748 ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid); 1749 HDAC_STREAM_START(device_get_parent(devinfo->dev), devinfo->dev, 1750 ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid, 1751 sndbuf_getbufaddr(ch->b), ch->blksz, ch->blkcnt); 1752 ch->flags |= HDAA_CHN_RUNNING; 1753 return (0); 1754 } 1755 1756 static int 1757 hdaa_channel_trigger(kobj_t obj, void *data, int go) 1758 { 1759 struct hdaa_chan *ch = data; 1760 int error = 0; 1761 1762 if (!PCMTRIG_COMMON(go)) 1763 return (0); 1764 1765 hdaa_lock(ch->devinfo); 1766 switch (go) { 1767 case PCMTRIG_START: 1768 error = hdaa_channel_start(ch); 1769 break; 1770 case PCMTRIG_STOP: 1771 case PCMTRIG_ABORT: 1772 hdaa_channel_stop(ch); 1773 break; 1774 default: 1775 break; 1776 } 1777 hdaa_unlock(ch->devinfo); 1778 1779 return (error); 1780 } 1781 1782 static uint32_t 1783 hdaa_channel_getptr(kobj_t obj, void *data) 1784 { 1785 struct hdaa_chan *ch = data; 1786 struct hdaa_devinfo *devinfo = ch->devinfo; 1787 uint32_t ptr; 1788 1789 hdaa_lock(devinfo); 1790 if (ch->dmapos != NULL) { 1791 ptr = *(ch->dmapos); 1792 } else { 1793 ptr = HDAC_STREAM_GETPTR( 1794 device_get_parent(devinfo->dev), devinfo->dev, 1795 ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid); 1796 } 1797 hdaa_unlock(devinfo); 1798 1799 /* 1800 * Round to available space and force 128 bytes aligment. 1801 */ 1802 ptr %= ch->blksz * ch->blkcnt; 1803 ptr &= HDA_BLK_ALIGN; 1804 1805 return (ptr); 1806 } 1807 1808 static struct pcmchan_caps * 1809 hdaa_channel_getcaps(kobj_t obj, void *data) 1810 { 1811 return (&((struct hdaa_chan *)data)->caps); 1812 } 1813 1814 static kobj_method_t hdaa_channel_methods[] = { 1815 KOBJMETHOD(channel_init, hdaa_channel_init), 1816 KOBJMETHOD(channel_setformat, hdaa_channel_setformat), 1817 KOBJMETHOD(channel_setspeed, hdaa_channel_setspeed), 1818 KOBJMETHOD(channel_setblocksize, hdaa_channel_setblocksize), 1819 KOBJMETHOD(channel_setfragments, hdaa_channel_setfragments), 1820 KOBJMETHOD(channel_trigger, hdaa_channel_trigger), 1821 KOBJMETHOD(channel_getptr, hdaa_channel_getptr), 1822 KOBJMETHOD(channel_getcaps, hdaa_channel_getcaps), 1823 KOBJMETHOD_END 1824 }; 1825 CHANNEL_DECLARE(hdaa_channel); 1826 1827 static int 1828 hdaa_audio_ctl_ossmixer_init(struct snd_mixer *m) 1829 { 1830 struct hdaa_pcm_devinfo *pdevinfo = mix_getdevinfo(m); 1831 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 1832 struct hdaa_widget *w, *cw; 1833 uint32_t mask, recmask; 1834 int i, j; 1835 1836 hdaa_lock(devinfo); 1837 pdevinfo->mixer = m; 1838 1839 /* Make sure that in case of soft volume it won't stay muted. */ 1840 for (i = 0; i < SOUND_MIXER_NRDEVICES; i++) { 1841 pdevinfo->left[i] = 100; 1842 pdevinfo->right[i] = 100; 1843 } 1844 1845 /* Declare volume controls assigned to this association. */ 1846 mask = pdevinfo->ossmask; 1847 if (pdevinfo->playas >= 0) { 1848 /* Declate EAPD as ogain control. */ 1849 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 1850 w = hdaa_widget_get(devinfo, i); 1851 if (w == NULL || w->enable == 0) 1852 continue; 1853 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX || 1854 w->param.eapdbtl == HDA_INVALID || 1855 w->bindas != pdevinfo->playas) 1856 continue; 1857 mask |= SOUND_MASK_OGAIN; 1858 break; 1859 } 1860 1861 /* Declare soft PCM volume if needed. */ 1862 if ((mask & SOUND_MASK_PCM) == 0 || 1863 (devinfo->quirks & HDAA_QUIRK_SOFTPCMVOL) || 1864 pdevinfo->minamp[SOUND_MIXER_PCM] == 1865 pdevinfo->maxamp[SOUND_MIXER_PCM]) { 1866 mask |= SOUND_MASK_PCM; 1867 pcm_setflags(pdevinfo->dev, pcm_getflags(pdevinfo->dev) | SD_F_SOFTPCMVOL); 1868 HDA_BOOTHVERBOSE( 1869 device_printf(pdevinfo->dev, 1870 "Forcing Soft PCM volume\n"); 1871 ); 1872 } 1873 1874 /* Declare master volume if needed. */ 1875 if ((mask & SOUND_MASK_VOLUME) == 0) { 1876 mask |= SOUND_MASK_VOLUME; 1877 mix_setparentchild(m, SOUND_MIXER_VOLUME, 1878 SOUND_MASK_PCM); 1879 mix_setrealdev(m, SOUND_MIXER_VOLUME, 1880 SOUND_MIXER_NONE); 1881 HDA_BOOTHVERBOSE( 1882 device_printf(pdevinfo->dev, 1883 "Forcing master volume with PCM\n"); 1884 ); 1885 } 1886 } 1887 1888 /* Declare record sources available to this association. */ 1889 recmask = 0; 1890 if (pdevinfo->recas >= 0) { 1891 for (i = 0; i < 16; i++) { 1892 if (devinfo->as[pdevinfo->recas].dacs[0][i] < 0) 1893 continue; 1894 w = hdaa_widget_get(devinfo, 1895 devinfo->as[pdevinfo->recas].dacs[0][i]); 1896 if (w == NULL || w->enable == 0) 1897 continue; 1898 for (j = 0; j < w->nconns; j++) { 1899 if (w->connsenable[j] == 0) 1900 continue; 1901 cw = hdaa_widget_get(devinfo, w->conns[j]); 1902 if (cw == NULL || cw->enable == 0) 1903 continue; 1904 if (cw->bindas != pdevinfo->recas && 1905 cw->bindas != -2) 1906 continue; 1907 recmask |= cw->ossmask; 1908 } 1909 } 1910 } 1911 1912 recmask &= (1 << SOUND_MIXER_NRDEVICES) - 1; 1913 mask &= (1 << SOUND_MIXER_NRDEVICES) - 1; 1914 pdevinfo->ossmask = mask; 1915 1916 mix_setrecdevs(m, recmask); 1917 mix_setdevs(m, mask); 1918 1919 hdaa_unlock(devinfo); 1920 1921 return (0); 1922 } 1923 1924 /* 1925 * Update amplification per pdevinfo per ossdev, calculate summary coefficient 1926 * and write it to codec, update *left and *right to reflect remaining error. 1927 */ 1928 static void 1929 hdaa_audio_ctl_dev_set(struct hdaa_audio_ctl *ctl, int ossdev, 1930 int mute, int *left, int *right) 1931 { 1932 int i, zleft, zright, sleft, sright, smute, lval, rval; 1933 1934 ctl->devleft[ossdev] = *left; 1935 ctl->devright[ossdev] = *right; 1936 ctl->devmute[ossdev] = mute; 1937 smute = sleft = sright = zleft = zright = 0; 1938 for (i = 0; i < SOUND_MIXER_NRDEVICES; i++) { 1939 sleft += ctl->devleft[i]; 1940 sright += ctl->devright[i]; 1941 smute |= ctl->devmute[i]; 1942 if (i == ossdev) 1943 continue; 1944 zleft += ctl->devleft[i]; 1945 zright += ctl->devright[i]; 1946 } 1947 lval = QDB2VAL(ctl, sleft); 1948 rval = QDB2VAL(ctl, sright); 1949 hdaa_audio_ctl_amp_set(ctl, smute, lval, rval); 1950 *left -= VAL2QDB(ctl, lval) - VAL2QDB(ctl, QDB2VAL(ctl, zleft)); 1951 *right -= VAL2QDB(ctl, rval) - VAL2QDB(ctl, QDB2VAL(ctl, zright)); 1952 } 1953 1954 /* 1955 * Trace signal from source, setting volumes on the way. 1956 */ 1957 static void 1958 hdaa_audio_ctl_source_volume(struct hdaa_pcm_devinfo *pdevinfo, 1959 int ossdev, nid_t nid, int index, int mute, int left, int right, int depth) 1960 { 1961 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 1962 struct hdaa_widget *w, *wc; 1963 struct hdaa_audio_ctl *ctl; 1964 int i, j, conns = 0; 1965 1966 if (depth > HDA_PARSE_MAXDEPTH) 1967 return; 1968 1969 w = hdaa_widget_get(devinfo, nid); 1970 if (w == NULL || w->enable == 0) 1971 return; 1972 1973 /* Count number of active inputs. */ 1974 if (depth > 0) { 1975 for (j = 0; j < w->nconns; j++) { 1976 if (!w->connsenable[j]) 1977 continue; 1978 conns++; 1979 } 1980 } 1981 1982 /* If this is not a first step - use input mixer. 1983 Pins have common input ctl so care must be taken. */ 1984 if (depth > 0 && (conns == 1 || 1985 w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)) { 1986 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, HDAA_CTL_IN, 1987 index, 1); 1988 if (ctl) 1989 hdaa_audio_ctl_dev_set(ctl, ossdev, mute, &left, &right); 1990 } 1991 1992 /* If widget has own ossdev - not traverse it. 1993 It will be traversed on it's own. */ 1994 if (w->ossdev >= 0 && depth > 0) 1995 return; 1996 1997 /* We must not traverse pin */ 1998 if ((w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT || 1999 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) && 2000 depth > 0) 2001 return; 2002 2003 /* 2004 * If signals mixed, we can't assign controls farther. 2005 * Ignore this on depth zero. Caller must knows why. 2006 */ 2007 if (conns > 1 && 2008 (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER || 2009 w->selconn != index)) 2010 return; 2011 2012 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, HDAA_CTL_OUT, -1, 1); 2013 if (ctl) 2014 hdaa_audio_ctl_dev_set(ctl, ossdev, mute, &left, &right); 2015 2016 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2017 wc = hdaa_widget_get(devinfo, i); 2018 if (wc == NULL || wc->enable == 0) 2019 continue; 2020 for (j = 0; j < wc->nconns; j++) { 2021 if (wc->connsenable[j] && wc->conns[j] == nid) { 2022 hdaa_audio_ctl_source_volume(pdevinfo, ossdev, 2023 wc->nid, j, mute, left, right, depth + 1); 2024 } 2025 } 2026 } 2027 return; 2028 } 2029 2030 /* 2031 * Trace signal from destination, setting volumes on the way. 2032 */ 2033 static void 2034 hdaa_audio_ctl_dest_volume(struct hdaa_pcm_devinfo *pdevinfo, 2035 int ossdev, nid_t nid, int index, int mute, int left, int right, int depth) 2036 { 2037 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 2038 struct hdaa_audio_as *as = devinfo->as; 2039 struct hdaa_widget *w, *wc; 2040 struct hdaa_audio_ctl *ctl; 2041 int i, j, consumers, cleft, cright; 2042 2043 if (depth > HDA_PARSE_MAXDEPTH) 2044 return; 2045 2046 w = hdaa_widget_get(devinfo, nid); 2047 if (w == NULL || w->enable == 0) 2048 return; 2049 2050 if (depth > 0) { 2051 /* If this node produce output for several consumers, 2052 we can't touch it. */ 2053 consumers = 0; 2054 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2055 wc = hdaa_widget_get(devinfo, i); 2056 if (wc == NULL || wc->enable == 0) 2057 continue; 2058 for (j = 0; j < wc->nconns; j++) { 2059 if (wc->connsenable[j] && wc->conns[j] == nid) 2060 consumers++; 2061 } 2062 } 2063 /* The only exception is if real HP redirection is configured 2064 and this is a duplication point. 2065 XXX: Actually exception is not completely correct. 2066 XXX: Duplication point check is not perfect. */ 2067 if ((consumers == 2 && (w->bindas < 0 || 2068 as[w->bindas].hpredir < 0 || as[w->bindas].fakeredir || 2069 (w->bindseqmask & (1 << 15)) == 0)) || 2070 consumers > 2) 2071 return; 2072 2073 /* Else use it's output mixer. */ 2074 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, 2075 HDAA_CTL_OUT, -1, 1); 2076 if (ctl) 2077 hdaa_audio_ctl_dev_set(ctl, ossdev, mute, &left, &right); 2078 } 2079 2080 /* We must not traverse pin */ 2081 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX && 2082 depth > 0) 2083 return; 2084 2085 for (i = 0; i < w->nconns; i++) { 2086 if (w->connsenable[i] == 0) 2087 continue; 2088 if (index >= 0 && i != index) 2089 continue; 2090 cleft = left; 2091 cright = right; 2092 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, 2093 HDAA_CTL_IN, i, 1); 2094 if (ctl) 2095 hdaa_audio_ctl_dev_set(ctl, ossdev, mute, &cleft, &cright); 2096 hdaa_audio_ctl_dest_volume(pdevinfo, ossdev, w->conns[i], -1, 2097 mute, cleft, cright, depth + 1); 2098 } 2099 } 2100 2101 /* 2102 * Set volumes for the specified pdevinfo and ossdev. 2103 */ 2104 static void 2105 hdaa_audio_ctl_dev_volume(struct hdaa_pcm_devinfo *pdevinfo, unsigned dev) 2106 { 2107 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 2108 struct hdaa_widget *w, *cw; 2109 uint32_t mute; 2110 int lvol, rvol; 2111 int i, j; 2112 2113 mute = 0; 2114 if (pdevinfo->left[dev] == 0) { 2115 mute |= HDAA_AMP_MUTE_LEFT; 2116 lvol = -4000; 2117 } else 2118 lvol = ((pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]) * 2119 pdevinfo->left[dev] + 50) / 100 + pdevinfo->minamp[dev]; 2120 if (pdevinfo->right[dev] == 0) { 2121 mute |= HDAA_AMP_MUTE_RIGHT; 2122 rvol = -4000; 2123 } else 2124 rvol = ((pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]) * 2125 pdevinfo->right[dev] + 50) / 100 + pdevinfo->minamp[dev]; 2126 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2127 w = hdaa_widget_get(devinfo, i); 2128 if (w == NULL || w->enable == 0) 2129 continue; 2130 if (w->bindas < 0 && pdevinfo->index != 0) 2131 continue; 2132 if (w->bindas != pdevinfo->playas && 2133 w->bindas != pdevinfo->recas) 2134 continue; 2135 if (dev == SOUND_MIXER_RECLEV && 2136 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) { 2137 hdaa_audio_ctl_dest_volume(pdevinfo, dev, 2138 w->nid, -1, mute, lvol, rvol, 0); 2139 continue; 2140 } 2141 if (dev == SOUND_MIXER_VOLUME && 2142 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX && 2143 devinfo->as[w->bindas].dir == HDAA_CTL_OUT) { 2144 hdaa_audio_ctl_dest_volume(pdevinfo, dev, 2145 w->nid, -1, mute, lvol, rvol, 0); 2146 continue; 2147 } 2148 if (dev == SOUND_MIXER_IGAIN && 2149 w->pflags & HDAA_ADC_MONITOR) { 2150 for (j = 0; j < w->nconns; j++) { 2151 if (!w->connsenable[j]) 2152 continue; 2153 cw = hdaa_widget_get(devinfo, w->conns[j]); 2154 if (cw == NULL || cw->enable == 0) 2155 continue; 2156 if (cw->bindas == -1) 2157 continue; 2158 if (cw->bindas >= 0 && 2159 devinfo->as[cw->bindas].dir != HDAA_CTL_IN) 2160 continue; 2161 hdaa_audio_ctl_dest_volume(pdevinfo, dev, 2162 w->nid, j, mute, lvol, rvol, 0); 2163 } 2164 continue; 2165 } 2166 if (w->ossdev != dev) 2167 continue; 2168 hdaa_audio_ctl_source_volume(pdevinfo, dev, 2169 w->nid, -1, mute, lvol, rvol, 0); 2170 if (dev == SOUND_MIXER_IMIX && (w->pflags & HDAA_IMIX_AS_DST)) 2171 hdaa_audio_ctl_dest_volume(pdevinfo, dev, 2172 w->nid, -1, mute, lvol, rvol, 0); 2173 } 2174 } 2175 2176 /* 2177 * OSS Mixer set method. 2178 */ 2179 static int 2180 hdaa_audio_ctl_ossmixer_set(struct snd_mixer *m, unsigned dev, 2181 unsigned left, unsigned right) 2182 { 2183 struct hdaa_pcm_devinfo *pdevinfo = mix_getdevinfo(m); 2184 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 2185 struct hdaa_widget *w; 2186 int i; 2187 2188 hdaa_lock(devinfo); 2189 2190 /* Save new values. */ 2191 pdevinfo->left[dev] = left; 2192 pdevinfo->right[dev] = right; 2193 2194 /* 'ogain' is the special case implemented with EAPD. */ 2195 if (dev == SOUND_MIXER_OGAIN) { 2196 uint32_t orig; 2197 w = NULL; 2198 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2199 w = hdaa_widget_get(devinfo, i); 2200 if (w == NULL || w->enable == 0) 2201 continue; 2202 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX || 2203 w->param.eapdbtl == HDA_INVALID) 2204 continue; 2205 break; 2206 } 2207 if (i >= devinfo->endnode) { 2208 hdaa_unlock(devinfo); 2209 return (-1); 2210 } 2211 orig = w->param.eapdbtl; 2212 if (left == 0) 2213 w->param.eapdbtl &= ~HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD; 2214 else 2215 w->param.eapdbtl |= HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD; 2216 if (orig != w->param.eapdbtl) { 2217 uint32_t val; 2218 2219 val = w->param.eapdbtl; 2220 if (devinfo->quirks & HDAA_QUIRK_EAPDINV) 2221 val ^= HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD; 2222 hda_command(devinfo->dev, 2223 HDA_CMD_SET_EAPD_BTL_ENABLE(0, w->nid, val)); 2224 } 2225 hdaa_unlock(devinfo); 2226 return (left | (left << 8)); 2227 } 2228 2229 /* Recalculate all controls related to this OSS device. */ 2230 hdaa_audio_ctl_dev_volume(pdevinfo, dev); 2231 2232 hdaa_unlock(devinfo); 2233 return (left | (right << 8)); 2234 } 2235 2236 /* 2237 * Set mixer settings to our own default values: 2238 * +20dB for mics, -10dB for analog vol, mute for igain, 0dB for others. 2239 */ 2240 static void 2241 hdaa_audio_ctl_set_defaults(struct hdaa_pcm_devinfo *pdevinfo) 2242 { 2243 int amp, vol, dev; 2244 2245 for (dev = 0; dev < SOUND_MIXER_NRDEVICES; dev++) { 2246 if ((pdevinfo->ossmask & (1 << dev)) == 0) 2247 continue; 2248 2249 /* If the value was overriden, leave it as is. */ 2250 if (resource_int_value(device_get_name(pdevinfo->dev), 2251 device_get_unit(pdevinfo->dev), ossnames[dev], &vol) == 0) 2252 continue; 2253 2254 vol = -1; 2255 if (dev == SOUND_MIXER_OGAIN) 2256 vol = 100; 2257 else if (dev == SOUND_MIXER_IGAIN) 2258 vol = 0; 2259 else if (dev == SOUND_MIXER_MIC || 2260 dev == SOUND_MIXER_MONITOR) 2261 amp = 20 * 4; /* +20dB */ 2262 else if (dev == SOUND_MIXER_VOLUME && !pdevinfo->digital) 2263 amp = -10 * 4; /* -10dB */ 2264 else 2265 amp = 0; 2266 if (vol < 0 && 2267 (pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]) <= 0) { 2268 vol = 100; 2269 } else if (vol < 0) { 2270 vol = ((amp - pdevinfo->minamp[dev]) * 100 + 2271 (pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]) / 2) / 2272 (pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]); 2273 vol = imin(imax(vol, 1), 100); 2274 } 2275 mix_set(pdevinfo->mixer, dev, vol, vol); 2276 } 2277 } 2278 2279 /* 2280 * Recursively commutate specified record source. 2281 */ 2282 static uint32_t 2283 hdaa_audio_ctl_recsel_comm(struct hdaa_pcm_devinfo *pdevinfo, uint32_t src, nid_t nid, int depth) 2284 { 2285 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 2286 struct hdaa_widget *w, *cw; 2287 struct hdaa_audio_ctl *ctl; 2288 char buf[64]; 2289 int i, muted; 2290 uint32_t res = 0; 2291 2292 if (depth > HDA_PARSE_MAXDEPTH) 2293 return (0); 2294 2295 w = hdaa_widget_get(devinfo, nid); 2296 if (w == NULL || w->enable == 0) 2297 return (0); 2298 2299 for (i = 0; i < w->nconns; i++) { 2300 if (w->connsenable[i] == 0) 2301 continue; 2302 cw = hdaa_widget_get(devinfo, w->conns[i]); 2303 if (cw == NULL || cw->enable == 0 || cw->bindas == -1) 2304 continue; 2305 /* Call recursively to trace signal to it's source if needed. */ 2306 if ((src & cw->ossmask) != 0) { 2307 if (cw->ossdev < 0) { 2308 res |= hdaa_audio_ctl_recsel_comm(pdevinfo, src, 2309 w->conns[i], depth + 1); 2310 } else { 2311 res |= cw->ossmask; 2312 } 2313 } 2314 /* We have two special cases: mixers and others (selectors). */ 2315 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) { 2316 ctl = hdaa_audio_ctl_amp_get(devinfo, 2317 w->nid, HDAA_CTL_IN, i, 1); 2318 if (ctl == NULL) 2319 continue; 2320 /* If we have input control on this node mute them 2321 * according to requested sources. */ 2322 muted = (src & cw->ossmask) ? 0 : 1; 2323 if (muted != ctl->forcemute) { 2324 ctl->forcemute = muted; 2325 hdaa_audio_ctl_amp_set(ctl, 2326 HDAA_AMP_MUTE_DEFAULT, 2327 HDAA_AMP_VOL_DEFAULT, HDAA_AMP_VOL_DEFAULT); 2328 } 2329 HDA_BOOTHVERBOSE( 2330 device_printf(pdevinfo->dev, 2331 "Recsel (%s): nid %d source %d %s\n", 2332 hdaa_audio_ctl_ossmixer_mask2allname( 2333 src, buf, sizeof(buf)), 2334 nid, i, muted?"mute":"unmute"); 2335 ); 2336 } else { 2337 if (w->nconns == 1) 2338 break; 2339 if ((src & cw->ossmask) == 0) 2340 continue; 2341 /* If we found requested source - select it and exit. */ 2342 hdaa_widget_connection_select(w, i); 2343 HDA_BOOTHVERBOSE( 2344 device_printf(pdevinfo->dev, 2345 "Recsel (%s): nid %d source %d select\n", 2346 hdaa_audio_ctl_ossmixer_mask2allname( 2347 src, buf, sizeof(buf)), 2348 nid, i); 2349 ); 2350 break; 2351 } 2352 } 2353 return (res); 2354 } 2355 2356 static uint32_t 2357 hdaa_audio_ctl_ossmixer_setrecsrc(struct snd_mixer *m, uint32_t src) 2358 { 2359 struct hdaa_pcm_devinfo *pdevinfo = mix_getdevinfo(m); 2360 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 2361 struct hdaa_widget *w; 2362 struct hdaa_audio_as *as; 2363 struct hdaa_audio_ctl *ctl; 2364 struct hdaa_chan *ch; 2365 int i, j; 2366 uint32_t ret = 0xffffffff; 2367 2368 hdaa_lock(devinfo); 2369 if (pdevinfo->recas < 0) { 2370 hdaa_unlock(devinfo); 2371 return (0); 2372 } 2373 as = &devinfo->as[pdevinfo->recas]; 2374 2375 /* For non-mixed associations we always recording everything. */ 2376 if (!as->mixed) { 2377 hdaa_unlock(devinfo); 2378 return (mix_getrecdevs(m)); 2379 } 2380 2381 /* Commutate requested recsrc for each ADC. */ 2382 for (j = 0; j < as->num_chans; j++) { 2383 ch = &devinfo->chans[as->chans[j]]; 2384 for (i = 0; ch->io[i] >= 0; i++) { 2385 w = hdaa_widget_get(devinfo, ch->io[i]); 2386 if (w == NULL || w->enable == 0) 2387 continue; 2388 ret &= hdaa_audio_ctl_recsel_comm(pdevinfo, src, 2389 ch->io[i], 0); 2390 } 2391 } 2392 if (ret == 0xffffffff) 2393 ret = 0; 2394 2395 /* 2396 * Some controls could be shared. Reset volumes for controls 2397 * related to previously chosen devices, as they may no longer 2398 * affect the signal. 2399 */ 2400 i = 0; 2401 while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) { 2402 if (ctl->enable == 0 || 2403 !(ctl->ossmask & pdevinfo->recsrc)) 2404 continue; 2405 if (!((pdevinfo->playas >= 0 && 2406 ctl->widget->bindas == pdevinfo->playas) || 2407 (pdevinfo->recas >= 0 && 2408 ctl->widget->bindas == pdevinfo->recas) || 2409 (pdevinfo->index == 0 && 2410 ctl->widget->bindas == -2))) 2411 continue; 2412 for (j = 0; j < SOUND_MIXER_NRDEVICES; j++) { 2413 if (pdevinfo->recsrc & (1 << j)) { 2414 ctl->devleft[j] = 0; 2415 ctl->devright[j] = 0; 2416 ctl->devmute[j] = 0; 2417 } 2418 } 2419 } 2420 2421 /* 2422 * Some controls could be shared. Set volumes for controls 2423 * related to devices selected both previously and now. 2424 */ 2425 for (j = 0; j < SOUND_MIXER_NRDEVICES; j++) { 2426 if ((ret | pdevinfo->recsrc) & (1 << j)) 2427 hdaa_audio_ctl_dev_volume(pdevinfo, j); 2428 } 2429 2430 pdevinfo->recsrc = ret; 2431 hdaa_unlock(devinfo); 2432 return (ret); 2433 } 2434 2435 static kobj_method_t hdaa_audio_ctl_ossmixer_methods[] = { 2436 KOBJMETHOD(mixer_init, hdaa_audio_ctl_ossmixer_init), 2437 KOBJMETHOD(mixer_set, hdaa_audio_ctl_ossmixer_set), 2438 KOBJMETHOD(mixer_setrecsrc, hdaa_audio_ctl_ossmixer_setrecsrc), 2439 KOBJMETHOD_END 2440 }; 2441 MIXER_DECLARE(hdaa_audio_ctl_ossmixer); 2442 2443 static void 2444 hdaa_dump_gpi(struct hdaa_devinfo *devinfo) 2445 { 2446 device_t dev = devinfo->dev; 2447 int i; 2448 uint32_t data, wake, unsol, sticky; 2449 2450 if (HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap) > 0) { 2451 data = hda_command(dev, 2452 HDA_CMD_GET_GPI_DATA(0, devinfo->nid)); 2453 wake = hda_command(dev, 2454 HDA_CMD_GET_GPI_WAKE_ENABLE_MASK(0, devinfo->nid)); 2455 unsol = hda_command(dev, 2456 HDA_CMD_GET_GPI_UNSOLICITED_ENABLE_MASK(0, devinfo->nid)); 2457 sticky = hda_command(dev, 2458 HDA_CMD_GET_GPI_STICKY_MASK(0, devinfo->nid)); 2459 for (i = 0; i < HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap); i++) { 2460 device_printf(dev, " GPI%d:%s%s%s state=%d", i, 2461 (sticky & (1 << i)) ? " sticky" : "", 2462 (unsol & (1 << i)) ? " unsol" : "", 2463 (wake & (1 << i)) ? " wake" : "", 2464 (data >> i) & 1); 2465 } 2466 } 2467 } 2468 2469 static void 2470 hdaa_dump_gpio(struct hdaa_devinfo *devinfo) 2471 { 2472 device_t dev = devinfo->dev; 2473 int i; 2474 uint32_t data, dir, enable, wake, unsol, sticky; 2475 2476 if (HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap) > 0) { 2477 data = hda_command(dev, 2478 HDA_CMD_GET_GPIO_DATA(0, devinfo->nid)); 2479 enable = hda_command(dev, 2480 HDA_CMD_GET_GPIO_ENABLE_MASK(0, devinfo->nid)); 2481 dir = hda_command(dev, 2482 HDA_CMD_GET_GPIO_DIRECTION(0, devinfo->nid)); 2483 wake = hda_command(dev, 2484 HDA_CMD_GET_GPIO_WAKE_ENABLE_MASK(0, devinfo->nid)); 2485 unsol = hda_command(dev, 2486 HDA_CMD_GET_GPIO_UNSOLICITED_ENABLE_MASK(0, devinfo->nid)); 2487 sticky = hda_command(dev, 2488 HDA_CMD_GET_GPIO_STICKY_MASK(0, devinfo->nid)); 2489 for (i = 0; i < HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap); i++) { 2490 device_printf(dev, " GPIO%d: ", i); 2491 if ((enable & (1 << i)) == 0) { 2492 printf("disabled\n"); 2493 continue; 2494 } 2495 if ((dir & (1 << i)) == 0) { 2496 printf("input%s%s%s", 2497 (sticky & (1 << i)) ? " sticky" : "", 2498 (unsol & (1 << i)) ? " unsol" : "", 2499 (wake & (1 << i)) ? " wake" : ""); 2500 } else 2501 printf("output"); 2502 printf(" state=%d\n", (data >> i) & 1); 2503 } 2504 } 2505 } 2506 2507 static void 2508 hdaa_dump_gpo(struct hdaa_devinfo *devinfo) 2509 { 2510 device_t dev = devinfo->dev; 2511 int i; 2512 uint32_t data; 2513 2514 if (HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap) > 0) { 2515 data = hda_command(dev, 2516 HDA_CMD_GET_GPO_DATA(0, devinfo->nid)); 2517 for (i = 0; i < HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap); i++) { 2518 device_printf(dev, " GPO%d: state=%d", i, 2519 (data >> i) & 1); 2520 } 2521 } 2522 } 2523 2524 static void 2525 hdaa_audio_parse(struct hdaa_devinfo *devinfo) 2526 { 2527 struct hdaa_widget *w; 2528 uint32_t res; 2529 int i; 2530 nid_t nid; 2531 2532 nid = devinfo->nid; 2533 2534 res = hda_command(devinfo->dev, 2535 HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_GPIO_COUNT)); 2536 devinfo->gpio_cap = res; 2537 2538 HDA_BOOTVERBOSE( 2539 device_printf(devinfo->dev, 2540 "NumGPIO=%d NumGPO=%d " 2541 "NumGPI=%d GPIWake=%d GPIUnsol=%d\n", 2542 HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap), 2543 HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap), 2544 HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap), 2545 HDA_PARAM_GPIO_COUNT_GPI_WAKE(devinfo->gpio_cap), 2546 HDA_PARAM_GPIO_COUNT_GPI_UNSOL(devinfo->gpio_cap)); 2547 hdaa_dump_gpi(devinfo); 2548 hdaa_dump_gpio(devinfo); 2549 hdaa_dump_gpo(devinfo); 2550 ); 2551 2552 res = hda_command(devinfo->dev, 2553 HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_SUPP_STREAM_FORMATS)); 2554 devinfo->supp_stream_formats = res; 2555 2556 res = hda_command(devinfo->dev, 2557 HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_SUPP_PCM_SIZE_RATE)); 2558 devinfo->supp_pcm_size_rate = res; 2559 2560 res = hda_command(devinfo->dev, 2561 HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_OUTPUT_AMP_CAP)); 2562 devinfo->outamp_cap = res; 2563 2564 res = hda_command(devinfo->dev, 2565 HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_INPUT_AMP_CAP)); 2566 devinfo->inamp_cap = res; 2567 2568 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2569 w = hdaa_widget_get(devinfo, i); 2570 if (w == NULL) 2571 device_printf(devinfo->dev, "Ghost widget! nid=%d!\n", i); 2572 else { 2573 w->devinfo = devinfo; 2574 w->nid = i; 2575 w->enable = 1; 2576 w->selconn = -1; 2577 w->pflags = 0; 2578 w->ossdev = -1; 2579 w->bindas = -1; 2580 w->param.eapdbtl = HDA_INVALID; 2581 hdaa_widget_parse(w); 2582 } 2583 } 2584 } 2585 2586 static void 2587 hdaa_audio_postprocess(struct hdaa_devinfo *devinfo) 2588 { 2589 struct hdaa_widget *w; 2590 int i; 2591 2592 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2593 w = hdaa_widget_get(devinfo, i); 2594 if (w == NULL) 2595 continue; 2596 hdaa_widget_postprocess(w); 2597 } 2598 } 2599 2600 static void 2601 hdaa_audio_ctl_parse(struct hdaa_devinfo *devinfo) 2602 { 2603 struct hdaa_audio_ctl *ctls; 2604 struct hdaa_widget *w, *cw; 2605 int i, j, cnt, max, ocap, icap; 2606 int mute, offset, step, size; 2607 2608 /* XXX This is redundant */ 2609 max = 0; 2610 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2611 w = hdaa_widget_get(devinfo, i); 2612 if (w == NULL || w->enable == 0) 2613 continue; 2614 if (w->param.outamp_cap != 0) 2615 max++; 2616 if (w->param.inamp_cap != 0) { 2617 switch (w->type) { 2618 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR: 2619 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER: 2620 for (j = 0; j < w->nconns; j++) { 2621 cw = hdaa_widget_get(devinfo, 2622 w->conns[j]); 2623 if (cw == NULL || cw->enable == 0) 2624 continue; 2625 max++; 2626 } 2627 break; 2628 default: 2629 max++; 2630 break; 2631 } 2632 } 2633 } 2634 devinfo->ctlcnt = max; 2635 2636 if (max < 1) 2637 return; 2638 2639 ctls = (struct hdaa_audio_ctl *)malloc( 2640 sizeof(*ctls) * max, M_HDAA, M_ZERO | M_NOWAIT); 2641 2642 if (ctls == NULL) { 2643 /* Blekh! */ 2644 device_printf(devinfo->dev, "unable to allocate ctls!\n"); 2645 devinfo->ctlcnt = 0; 2646 return; 2647 } 2648 2649 cnt = 0; 2650 for (i = devinfo->startnode; cnt < max && i < devinfo->endnode; i++) { 2651 if (cnt >= max) { 2652 device_printf(devinfo->dev, "%s: Ctl overflow!\n", 2653 __func__); 2654 break; 2655 } 2656 w = hdaa_widget_get(devinfo, i); 2657 if (w == NULL || w->enable == 0) 2658 continue; 2659 ocap = w->param.outamp_cap; 2660 icap = w->param.inamp_cap; 2661 if (ocap != 0) { 2662 mute = HDA_PARAM_OUTPUT_AMP_CAP_MUTE_CAP(ocap); 2663 step = HDA_PARAM_OUTPUT_AMP_CAP_NUMSTEPS(ocap); 2664 size = HDA_PARAM_OUTPUT_AMP_CAP_STEPSIZE(ocap); 2665 offset = HDA_PARAM_OUTPUT_AMP_CAP_OFFSET(ocap); 2666 /*if (offset > step) { 2667 HDA_BOOTVERBOSE( 2668 device_printf(devinfo->dev, 2669 "BUGGY outamp: nid=%d " 2670 "[offset=%d > step=%d]\n", 2671 w->nid, offset, step); 2672 ); 2673 offset = step; 2674 }*/ 2675 ctls[cnt].enable = 1; 2676 ctls[cnt].widget = w; 2677 ctls[cnt].mute = mute; 2678 ctls[cnt].step = step; 2679 ctls[cnt].size = size; 2680 ctls[cnt].offset = offset; 2681 ctls[cnt].left = offset; 2682 ctls[cnt].right = offset; 2683 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX || 2684 w->waspin) 2685 ctls[cnt].ndir = HDAA_CTL_IN; 2686 else 2687 ctls[cnt].ndir = HDAA_CTL_OUT; 2688 ctls[cnt++].dir = HDAA_CTL_OUT; 2689 } 2690 2691 if (icap != 0) { 2692 mute = HDA_PARAM_OUTPUT_AMP_CAP_MUTE_CAP(icap); 2693 step = HDA_PARAM_OUTPUT_AMP_CAP_NUMSTEPS(icap); 2694 size = HDA_PARAM_OUTPUT_AMP_CAP_STEPSIZE(icap); 2695 offset = HDA_PARAM_OUTPUT_AMP_CAP_OFFSET(icap); 2696 /*if (offset > step) { 2697 HDA_BOOTVERBOSE( 2698 device_printf(devinfo->dev, 2699 "BUGGY inamp: nid=%d " 2700 "[offset=%d > step=%d]\n", 2701 w->nid, offset, step); 2702 ); 2703 offset = step; 2704 }*/ 2705 switch (w->type) { 2706 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR: 2707 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER: 2708 for (j = 0; j < w->nconns; j++) { 2709 if (cnt >= max) { 2710 device_printf(devinfo->dev, 2711 "%s: Ctl overflow!\n", 2712 __func__); 2713 break; 2714 } 2715 cw = hdaa_widget_get(devinfo, 2716 w->conns[j]); 2717 if (cw == NULL || cw->enable == 0) 2718 continue; 2719 ctls[cnt].enable = 1; 2720 ctls[cnt].widget = w; 2721 ctls[cnt].childwidget = cw; 2722 ctls[cnt].index = j; 2723 ctls[cnt].mute = mute; 2724 ctls[cnt].step = step; 2725 ctls[cnt].size = size; 2726 ctls[cnt].offset = offset; 2727 ctls[cnt].left = offset; 2728 ctls[cnt].right = offset; 2729 ctls[cnt].ndir = HDAA_CTL_IN; 2730 ctls[cnt++].dir = HDAA_CTL_IN; 2731 } 2732 break; 2733 default: 2734 if (cnt >= max) { 2735 device_printf(devinfo->dev, 2736 "%s: Ctl overflow!\n", 2737 __func__); 2738 break; 2739 } 2740 ctls[cnt].enable = 1; 2741 ctls[cnt].widget = w; 2742 ctls[cnt].mute = mute; 2743 ctls[cnt].step = step; 2744 ctls[cnt].size = size; 2745 ctls[cnt].offset = offset; 2746 ctls[cnt].left = offset; 2747 ctls[cnt].right = offset; 2748 if (w->type == 2749 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 2750 ctls[cnt].ndir = HDAA_CTL_OUT; 2751 else 2752 ctls[cnt].ndir = HDAA_CTL_IN; 2753 ctls[cnt++].dir = HDAA_CTL_IN; 2754 break; 2755 } 2756 } 2757 } 2758 2759 devinfo->ctl = ctls; 2760 } 2761 2762 static void 2763 hdaa_audio_as_parse(struct hdaa_devinfo *devinfo) 2764 { 2765 struct hdaa_audio_as *as; 2766 struct hdaa_widget *w; 2767 int i, j, cnt, max, type, dir, assoc, seq, first, hpredir; 2768 2769 /* Count present associations */ 2770 max = 0; 2771 for (j = 1; j < 16; j++) { 2772 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2773 w = hdaa_widget_get(devinfo, i); 2774 if (w == NULL || w->enable == 0) 2775 continue; 2776 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 2777 continue; 2778 if (HDA_CONFIG_DEFAULTCONF_ASSOCIATION(w->wclass.pin.config) 2779 != j) 2780 continue; 2781 max++; 2782 if (j != 15) /* There could be many 1-pin assocs #15 */ 2783 break; 2784 } 2785 } 2786 2787 devinfo->ascnt = max; 2788 2789 if (max < 1) 2790 return; 2791 2792 as = (struct hdaa_audio_as *)malloc( 2793 sizeof(*as) * max, M_HDAA, M_ZERO | M_NOWAIT); 2794 2795 if (as == NULL) { 2796 /* Blekh! */ 2797 device_printf(devinfo->dev, "unable to allocate assocs!\n"); 2798 devinfo->ascnt = 0; 2799 return; 2800 } 2801 2802 for (i = 0; i < max; i++) { 2803 as[i].hpredir = -1; 2804 as[i].digital = 0; 2805 as[i].num_chans = 1; 2806 as[i].location = -1; 2807 } 2808 2809 /* Scan associations skipping as=0. */ 2810 cnt = 0; 2811 for (j = 1; j < 16; j++) { 2812 first = 16; 2813 hpredir = 0; 2814 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 2815 w = hdaa_widget_get(devinfo, i); 2816 if (w == NULL || w->enable == 0) 2817 continue; 2818 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 2819 continue; 2820 assoc = HDA_CONFIG_DEFAULTCONF_ASSOCIATION(w->wclass.pin.config); 2821 seq = HDA_CONFIG_DEFAULTCONF_SEQUENCE(w->wclass.pin.config); 2822 if (assoc != j) { 2823 continue; 2824 } 2825 KASSERT(cnt < max, 2826 ("%s: Associations owerflow (%d of %d)", 2827 __func__, cnt, max)); 2828 type = w->wclass.pin.config & 2829 HDA_CONFIG_DEFAULTCONF_DEVICE_MASK; 2830 /* Get pin direction. */ 2831 if (type == HDA_CONFIG_DEFAULTCONF_DEVICE_LINE_OUT || 2832 type == HDA_CONFIG_DEFAULTCONF_DEVICE_SPEAKER || 2833 type == HDA_CONFIG_DEFAULTCONF_DEVICE_HP_OUT || 2834 type == HDA_CONFIG_DEFAULTCONF_DEVICE_SPDIF_OUT || 2835 type == HDA_CONFIG_DEFAULTCONF_DEVICE_DIGITAL_OTHER_OUT) 2836 dir = HDAA_CTL_OUT; 2837 else 2838 dir = HDAA_CTL_IN; 2839 /* If this is a first pin - create new association. */ 2840 if (as[cnt].pincnt == 0) { 2841 as[cnt].enable = 1; 2842 as[cnt].index = j; 2843 as[cnt].dir = dir; 2844 } 2845 if (seq < first) 2846 first = seq; 2847 /* Check association correctness. */ 2848 if (as[cnt].pins[seq] != 0) { 2849 device_printf(devinfo->dev, "%s: Duplicate pin %d (%d) " 2850 "in association %d! Disabling association.\n", 2851 __func__, seq, w->nid, j); 2852 as[cnt].enable = 0; 2853 } 2854 if (dir != as[cnt].dir) { 2855 device_printf(devinfo->dev, "%s: Pin %d has wrong " 2856 "direction for association %d! Disabling " 2857 "association.\n", 2858 __func__, w->nid, j); 2859 as[cnt].enable = 0; 2860 } 2861 if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) { 2862 as[cnt].digital |= 0x1; 2863 if (HDA_PARAM_PIN_CAP_HDMI(w->wclass.pin.cap)) 2864 as[cnt].digital |= 0x2; 2865 if (HDA_PARAM_PIN_CAP_DP(w->wclass.pin.cap)) 2866 as[cnt].digital |= 0x4; 2867 } 2868 if (as[cnt].location == -1) { 2869 as[cnt].location = 2870 HDA_CONFIG_DEFAULTCONF_LOCATION(w->wclass.pin.config); 2871 } else if (as[cnt].location != 2872 HDA_CONFIG_DEFAULTCONF_LOCATION(w->wclass.pin.config)) { 2873 as[cnt].location = -2; 2874 } 2875 /* Headphones with seq=15 may mean redirection. */ 2876 if (type == HDA_CONFIG_DEFAULTCONF_DEVICE_HP_OUT && 2877 seq == 15) 2878 hpredir = 1; 2879 as[cnt].pins[seq] = w->nid; 2880 as[cnt].pincnt++; 2881 /* Association 15 is a multiple unassociated pins. */ 2882 if (j == 15) 2883 cnt++; 2884 } 2885 if (j != 15 && as[cnt].pincnt > 0) { 2886 if (hpredir && as[cnt].pincnt > 1) 2887 as[cnt].hpredir = first; 2888 cnt++; 2889 } 2890 } 2891 for (i = 0; i < max; i++) { 2892 if (as[i].dir == HDAA_CTL_IN && (as[i].pincnt == 1 || 2893 as[i].pins[14] > 0 || as[i].pins[15] > 0)) 2894 as[i].mixed = 1; 2895 } 2896 HDA_BOOTVERBOSE( 2897 device_printf(devinfo->dev, 2898 "%d associations found:\n", max); 2899 for (i = 0; i < max; i++) { 2900 device_printf(devinfo->dev, 2901 "Association %d (%d) %s%s:\n", 2902 i, as[i].index, (as[i].dir == HDAA_CTL_IN)?"in":"out", 2903 as[i].enable?"":" (disabled)"); 2904 for (j = 0; j < 16; j++) { 2905 if (as[i].pins[j] == 0) 2906 continue; 2907 device_printf(devinfo->dev, 2908 " Pin nid=%d seq=%d\n", 2909 as[i].pins[j], j); 2910 } 2911 } 2912 ); 2913 2914 devinfo->as = as; 2915 } 2916 2917 /* 2918 * Trace path from DAC to pin. 2919 */ 2920 static nid_t 2921 hdaa_audio_trace_dac(struct hdaa_devinfo *devinfo, int as, int seq, nid_t nid, 2922 int dupseq, int min, int only, int depth) 2923 { 2924 struct hdaa_widget *w; 2925 int i, im = -1; 2926 nid_t m = 0, ret; 2927 2928 if (depth > HDA_PARSE_MAXDEPTH) 2929 return (0); 2930 w = hdaa_widget_get(devinfo, nid); 2931 if (w == NULL || w->enable == 0) 2932 return (0); 2933 HDA_BOOTHVERBOSE( 2934 if (!only) { 2935 device_printf(devinfo->dev, 2936 " %*stracing via nid %d\n", 2937 depth + 1, "", w->nid); 2938 } 2939 ); 2940 /* Use only unused widgets */ 2941 if (w->bindas >= 0 && w->bindas != as) { 2942 HDA_BOOTHVERBOSE( 2943 if (!only) { 2944 device_printf(devinfo->dev, 2945 " %*snid %d busy by association %d\n", 2946 depth + 1, "", w->nid, w->bindas); 2947 } 2948 ); 2949 return (0); 2950 } 2951 if (dupseq < 0) { 2952 if (w->bindseqmask != 0) { 2953 HDA_BOOTHVERBOSE( 2954 if (!only) { 2955 device_printf(devinfo->dev, 2956 " %*snid %d busy by seqmask %x\n", 2957 depth + 1, "", w->nid, w->bindseqmask); 2958 } 2959 ); 2960 return (0); 2961 } 2962 } else { 2963 /* If this is headphones - allow duplicate first pin. */ 2964 if (w->bindseqmask != 0 && 2965 (w->bindseqmask & (1 << dupseq)) == 0) { 2966 HDA_BOOTHVERBOSE( 2967 device_printf(devinfo->dev, 2968 " %*snid %d busy by seqmask %x\n", 2969 depth + 1, "", w->nid, w->bindseqmask); 2970 ); 2971 return (0); 2972 } 2973 } 2974 2975 switch (w->type) { 2976 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT: 2977 /* Do not traverse input. AD1988 has digital monitor 2978 for which we are not ready. */ 2979 break; 2980 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT: 2981 /* If we are tracing HP take only dac of first pin. */ 2982 if ((only == 0 || only == w->nid) && 2983 (w->nid >= min) && (dupseq < 0 || w->nid == 2984 devinfo->as[as].dacs[0][dupseq])) 2985 m = w->nid; 2986 break; 2987 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX: 2988 if (depth > 0) 2989 break; 2990 /* Fall */ 2991 default: 2992 /* Find reachable DACs with smallest nid respecting constraints. */ 2993 for (i = 0; i < w->nconns; i++) { 2994 if (w->connsenable[i] == 0) 2995 continue; 2996 if (w->selconn != -1 && w->selconn != i) 2997 continue; 2998 if ((ret = hdaa_audio_trace_dac(devinfo, as, seq, 2999 w->conns[i], dupseq, min, only, depth + 1)) != 0) { 3000 if (m == 0 || ret < m) { 3001 m = ret; 3002 im = i; 3003 } 3004 if (only || dupseq >= 0) 3005 break; 3006 } 3007 } 3008 if (im >= 0 && only && ((w->nconns > 1 && 3009 w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) || 3010 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR)) 3011 w->selconn = im; 3012 break; 3013 } 3014 if (m && only) { 3015 w->bindas = as; 3016 w->bindseqmask |= (1 << seq); 3017 } 3018 HDA_BOOTHVERBOSE( 3019 if (!only) { 3020 device_printf(devinfo->dev, 3021 " %*snid %d returned %d\n", 3022 depth + 1, "", w->nid, m); 3023 } 3024 ); 3025 return (m); 3026 } 3027 3028 /* 3029 * Trace path from widget to ADC. 3030 */ 3031 static nid_t 3032 hdaa_audio_trace_adc(struct hdaa_devinfo *devinfo, int as, int seq, nid_t nid, 3033 int mixed, int min, int only, int depth, int *length, int onlylength) 3034 { 3035 struct hdaa_widget *w, *wc; 3036 int i, j, im, lm = HDA_PARSE_MAXDEPTH; 3037 nid_t m = 0, ret; 3038 3039 if (depth > HDA_PARSE_MAXDEPTH) 3040 return (0); 3041 w = hdaa_widget_get(devinfo, nid); 3042 if (w == NULL || w->enable == 0) 3043 return (0); 3044 HDA_BOOTHVERBOSE( 3045 device_printf(devinfo->dev, 3046 " %*stracing via nid %d\n", 3047 depth + 1, "", w->nid); 3048 ); 3049 /* Use only unused widgets */ 3050 if (w->bindas >= 0 && w->bindas != as) { 3051 HDA_BOOTHVERBOSE( 3052 device_printf(devinfo->dev, 3053 " %*snid %d busy by association %d\n", 3054 depth + 1, "", w->nid, w->bindas); 3055 ); 3056 return (0); 3057 } 3058 if (!mixed && w->bindseqmask != 0) { 3059 HDA_BOOTHVERBOSE( 3060 device_printf(devinfo->dev, 3061 " %*snid %d busy by seqmask %x\n", 3062 depth + 1, "", w->nid, w->bindseqmask); 3063 ); 3064 return (0); 3065 } 3066 switch (w->type) { 3067 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT: 3068 if ((only == 0 || only == w->nid) && (w->nid >= min) && 3069 (onlylength == 0 || onlylength == depth)) { 3070 m = w->nid; 3071 if (length != NULL) 3072 *length = depth; 3073 } 3074 break; 3075 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX: 3076 if (depth > 0) 3077 break; 3078 /* Fall */ 3079 default: 3080 /* Try to find reachable ADCs with specified nid. */ 3081 for (j = devinfo->startnode; j < devinfo->endnode; j++) { 3082 wc = hdaa_widget_get(devinfo, j); 3083 if (wc == NULL || wc->enable == 0) 3084 continue; 3085 im = -1; 3086 for (i = 0; i < wc->nconns; i++) { 3087 if (wc->connsenable[i] == 0) 3088 continue; 3089 if (wc->conns[i] != nid) 3090 continue; 3091 if ((ret = hdaa_audio_trace_adc(devinfo, as, seq, 3092 j, mixed, min, only, depth + 1, 3093 length, onlylength)) != 0) { 3094 if (m == 0 || ret < m || 3095 (ret == m && length != NULL && 3096 *length < lm)) { 3097 m = ret; 3098 im = i; 3099 lm = *length; 3100 } 3101 if (only) 3102 break; 3103 } 3104 } 3105 if (im >= 0 && only && ((wc->nconns > 1 && 3106 wc->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) || 3107 wc->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR)) 3108 wc->selconn = im; 3109 } 3110 break; 3111 } 3112 if (m && only) { 3113 w->bindas = as; 3114 w->bindseqmask |= (1 << seq); 3115 } 3116 HDA_BOOTHVERBOSE( 3117 device_printf(devinfo->dev, 3118 " %*snid %d returned %d\n", 3119 depth + 1, "", w->nid, m); 3120 ); 3121 return (m); 3122 } 3123 3124 /* 3125 * Erase trace path of the specified association. 3126 */ 3127 static void 3128 hdaa_audio_undo_trace(struct hdaa_devinfo *devinfo, int as, int seq) 3129 { 3130 struct hdaa_widget *w; 3131 int i; 3132 3133 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 3134 w = hdaa_widget_get(devinfo, i); 3135 if (w == NULL || w->enable == 0) 3136 continue; 3137 if (w->bindas == as) { 3138 if (seq >= 0) { 3139 w->bindseqmask &= ~(1 << seq); 3140 if (w->bindseqmask == 0) { 3141 w->bindas = -1; 3142 w->selconn = -1; 3143 } 3144 } else { 3145 w->bindas = -1; 3146 w->bindseqmask = 0; 3147 w->selconn = -1; 3148 } 3149 } 3150 } 3151 } 3152 3153 /* 3154 * Trace association path from DAC to output 3155 */ 3156 static int 3157 hdaa_audio_trace_as_out(struct hdaa_devinfo *devinfo, int as, int seq) 3158 { 3159 struct hdaa_audio_as *ases = devinfo->as; 3160 int i, hpredir; 3161 nid_t min, res; 3162 3163 /* Find next pin */ 3164 for (i = seq; i < 16 && ases[as].pins[i] == 0; i++) 3165 ; 3166 /* Check if there is no any left. If so - we succeeded. */ 3167 if (i == 16) 3168 return (1); 3169 3170 hpredir = (i == 15 && ases[as].fakeredir == 0)?ases[as].hpredir:-1; 3171 min = 0; 3172 do { 3173 HDA_BOOTHVERBOSE( 3174 device_printf(devinfo->dev, 3175 " Tracing pin %d with min nid %d", 3176 ases[as].pins[i], min); 3177 if (hpredir >= 0) 3178 printf(" and hpredir %d", hpredir); 3179 printf("\n"); 3180 ); 3181 /* Trace this pin taking min nid into account. */ 3182 res = hdaa_audio_trace_dac(devinfo, as, i, 3183 ases[as].pins[i], hpredir, min, 0, 0); 3184 if (res == 0) { 3185 /* If we failed - return to previous and redo it. */ 3186 HDA_BOOTVERBOSE( 3187 device_printf(devinfo->dev, 3188 " Unable to trace pin %d seq %d with min " 3189 "nid %d", 3190 ases[as].pins[i], i, min); 3191 if (hpredir >= 0) 3192 printf(" and hpredir %d", hpredir); 3193 printf("\n"); 3194 ); 3195 return (0); 3196 } 3197 HDA_BOOTVERBOSE( 3198 device_printf(devinfo->dev, 3199 " Pin %d traced to DAC %d", 3200 ases[as].pins[i], res); 3201 if (hpredir >= 0) 3202 printf(" and hpredir %d", hpredir); 3203 if (ases[as].fakeredir) 3204 printf(" with fake redirection"); 3205 printf("\n"); 3206 ); 3207 /* Trace again to mark the path */ 3208 hdaa_audio_trace_dac(devinfo, as, i, 3209 ases[as].pins[i], hpredir, min, res, 0); 3210 ases[as].dacs[0][i] = res; 3211 /* We succeeded, so call next. */ 3212 if (hdaa_audio_trace_as_out(devinfo, as, i + 1)) 3213 return (1); 3214 /* If next failed, we should retry with next min */ 3215 hdaa_audio_undo_trace(devinfo, as, i); 3216 ases[as].dacs[0][i] = 0; 3217 min = res + 1; 3218 } while (1); 3219 } 3220 3221 /* 3222 * Check equivalency of two DACs. 3223 */ 3224 static int 3225 hdaa_audio_dacs_equal(struct hdaa_widget *w1, struct hdaa_widget *w2) 3226 { 3227 struct hdaa_devinfo *devinfo = w1->devinfo; 3228 struct hdaa_widget *w3; 3229 int i, j, c1, c2; 3230 3231 if (memcmp(&w1->param, &w2->param, sizeof(w1->param))) 3232 return (0); 3233 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 3234 w3 = hdaa_widget_get(devinfo, i); 3235 if (w3 == NULL || w3->enable == 0) 3236 continue; 3237 if (w3->bindas != w1->bindas) 3238 continue; 3239 if (w3->nconns == 0) 3240 continue; 3241 c1 = c2 = -1; 3242 for (j = 0; j < w3->nconns; j++) { 3243 if (w3->connsenable[j] == 0) 3244 continue; 3245 if (w3->conns[j] == w1->nid) 3246 c1 = j; 3247 if (w3->conns[j] == w2->nid) 3248 c2 = j; 3249 } 3250 if (c1 < 0) 3251 continue; 3252 if (c2 < 0) 3253 return (0); 3254 if (w3->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) 3255 return (0); 3256 } 3257 return (1); 3258 } 3259 3260 /* 3261 * Check equivalency of two ADCs. 3262 */ 3263 static int 3264 hdaa_audio_adcs_equal(struct hdaa_widget *w1, struct hdaa_widget *w2) 3265 { 3266 struct hdaa_devinfo *devinfo = w1->devinfo; 3267 struct hdaa_widget *w3, *w4; 3268 int i; 3269 3270 if (memcmp(&w1->param, &w2->param, sizeof(w1->param))) 3271 return (0); 3272 if (w1->nconns != 1 || w2->nconns != 1) 3273 return (0); 3274 if (w1->conns[0] == w2->conns[0]) 3275 return (1); 3276 w3 = hdaa_widget_get(devinfo, w1->conns[0]); 3277 if (w3 == NULL || w3->enable == 0) 3278 return (0); 3279 w4 = hdaa_widget_get(devinfo, w2->conns[0]); 3280 if (w4 == NULL || w4->enable == 0) 3281 return (0); 3282 if (w3->bindas == w4->bindas && w3->bindseqmask == w4->bindseqmask) 3283 return (1); 3284 if (w4->bindas >= 0) 3285 return (0); 3286 if (w3->type != w4->type) 3287 return (0); 3288 if (memcmp(&w3->param, &w4->param, sizeof(w3->param))) 3289 return (0); 3290 if (w3->nconns != w4->nconns) 3291 return (0); 3292 for (i = 0; i < w3->nconns; i++) { 3293 if (w3->conns[i] != w4->conns[i]) 3294 return (0); 3295 } 3296 return (1); 3297 } 3298 3299 /* 3300 * Look for equivalent DAC/ADC to implement second channel. 3301 */ 3302 static void 3303 hdaa_audio_adddac(struct hdaa_devinfo *devinfo, int asid) 3304 { 3305 struct hdaa_audio_as *as = &devinfo->as[asid]; 3306 struct hdaa_widget *w1, *w2; 3307 int i, pos; 3308 nid_t nid1, nid2; 3309 3310 HDA_BOOTVERBOSE( 3311 device_printf(devinfo->dev, 3312 "Looking for additional %sC " 3313 "for association %d (%d)\n", 3314 (as->dir == HDAA_CTL_OUT) ? "DA" : "AD", 3315 asid, as->index); 3316 ); 3317 3318 /* Find the exisitng DAC position and return if found more the one. */ 3319 pos = -1; 3320 for (i = 0; i < 16; i++) { 3321 if (as->dacs[0][i] <= 0) 3322 continue; 3323 if (pos >= 0 && as->dacs[0][i] != as->dacs[0][pos]) 3324 return; 3325 pos = i; 3326 } 3327 3328 nid1 = as->dacs[0][pos]; 3329 w1 = hdaa_widget_get(devinfo, nid1); 3330 w2 = NULL; 3331 for (nid2 = devinfo->startnode; nid2 < devinfo->endnode; nid2++) { 3332 w2 = hdaa_widget_get(devinfo, nid2); 3333 if (w2 == NULL || w2->enable == 0) 3334 continue; 3335 if (w2->bindas >= 0) 3336 continue; 3337 if (w1->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT) { 3338 if (w2->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT) 3339 continue; 3340 if (hdaa_audio_dacs_equal(w1, w2)) 3341 break; 3342 } else { 3343 if (w2->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) 3344 continue; 3345 if (hdaa_audio_adcs_equal(w1, w2)) 3346 break; 3347 } 3348 } 3349 if (nid2 >= devinfo->endnode) 3350 return; 3351 w2->bindas = w1->bindas; 3352 w2->bindseqmask = w1->bindseqmask; 3353 if (w1->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) { 3354 HDA_BOOTVERBOSE( 3355 device_printf(devinfo->dev, 3356 " ADC %d considered equal to ADC %d\n", nid2, nid1); 3357 ); 3358 w1 = hdaa_widget_get(devinfo, w1->conns[0]); 3359 w2 = hdaa_widget_get(devinfo, w2->conns[0]); 3360 w2->bindas = w1->bindas; 3361 w2->bindseqmask = w1->bindseqmask; 3362 } else { 3363 HDA_BOOTVERBOSE( 3364 device_printf(devinfo->dev, 3365 " DAC %d considered equal to DAC %d\n", nid2, nid1); 3366 ); 3367 } 3368 for (i = 0; i < 16; i++) { 3369 if (as->dacs[0][i] <= 0) 3370 continue; 3371 as->dacs[as->num_chans][i] = nid2; 3372 } 3373 as->num_chans++; 3374 } 3375 3376 /* 3377 * Trace association path from input to ADC 3378 */ 3379 static int 3380 hdaa_audio_trace_as_in(struct hdaa_devinfo *devinfo, int as) 3381 { 3382 struct hdaa_audio_as *ases = devinfo->as; 3383 struct hdaa_widget *w; 3384 int i, j, k, length; 3385 3386 for (j = devinfo->startnode; j < devinfo->endnode; j++) { 3387 w = hdaa_widget_get(devinfo, j); 3388 if (w == NULL || w->enable == 0) 3389 continue; 3390 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) 3391 continue; 3392 if (w->bindas >= 0 && w->bindas != as) 3393 continue; 3394 3395 /* Find next pin */ 3396 for (i = 0; i < 16; i++) { 3397 if (ases[as].pins[i] == 0) 3398 continue; 3399 3400 HDA_BOOTHVERBOSE( 3401 device_printf(devinfo->dev, 3402 " Tracing pin %d to ADC %d\n", 3403 ases[as].pins[i], j); 3404 ); 3405 /* Trace this pin taking goal into account. */ 3406 if (hdaa_audio_trace_adc(devinfo, as, i, 3407 ases[as].pins[i], 1, 0, j, 0, &length, 0) == 0) { 3408 /* If we failed - return to previous and redo it. */ 3409 HDA_BOOTVERBOSE( 3410 device_printf(devinfo->dev, 3411 " Unable to trace pin %d to ADC %d, undo traces\n", 3412 ases[as].pins[i], j); 3413 ); 3414 hdaa_audio_undo_trace(devinfo, as, -1); 3415 for (k = 0; k < 16; k++) 3416 ases[as].dacs[0][k] = 0; 3417 break; 3418 } 3419 HDA_BOOTVERBOSE( 3420 device_printf(devinfo->dev, 3421 " Pin %d traced to ADC %d\n", 3422 ases[as].pins[i], j); 3423 ); 3424 ases[as].dacs[0][i] = j; 3425 } 3426 if (i == 16) 3427 return (1); 3428 } 3429 return (0); 3430 } 3431 3432 /* 3433 * Trace association path from input to multiple ADCs 3434 */ 3435 static int 3436 hdaa_audio_trace_as_in_mch(struct hdaa_devinfo *devinfo, int as, int seq) 3437 { 3438 struct hdaa_audio_as *ases = devinfo->as; 3439 int i, length; 3440 nid_t min, res; 3441 3442 /* Find next pin */ 3443 for (i = seq; i < 16 && ases[as].pins[i] == 0; i++) 3444 ; 3445 /* Check if there is no any left. If so - we succeeded. */ 3446 if (i == 16) 3447 return (1); 3448 3449 min = 0; 3450 do { 3451 HDA_BOOTHVERBOSE( 3452 device_printf(devinfo->dev, 3453 " Tracing pin %d with min nid %d", 3454 ases[as].pins[i], min); 3455 printf("\n"); 3456 ); 3457 /* Trace this pin taking min nid into account. */ 3458 res = hdaa_audio_trace_adc(devinfo, as, i, 3459 ases[as].pins[i], 0, min, 0, 0, &length, 0); 3460 if (res == 0) { 3461 /* If we failed - return to previous and redo it. */ 3462 HDA_BOOTVERBOSE( 3463 device_printf(devinfo->dev, 3464 " Unable to trace pin %d seq %d with min " 3465 "nid %d", 3466 ases[as].pins[i], i, min); 3467 printf("\n"); 3468 ); 3469 return (0); 3470 } 3471 HDA_BOOTVERBOSE( 3472 device_printf(devinfo->dev, 3473 " Pin %d traced to ADC %d\n", 3474 ases[as].pins[i], res); 3475 ); 3476 /* Trace again to mark the path */ 3477 hdaa_audio_trace_adc(devinfo, as, i, 3478 ases[as].pins[i], 0, min, res, 0, &length, length); 3479 ases[as].dacs[0][i] = res; 3480 /* We succeeded, so call next. */ 3481 if (hdaa_audio_trace_as_in_mch(devinfo, as, i + 1)) 3482 return (1); 3483 /* If next failed, we should retry with next min */ 3484 hdaa_audio_undo_trace(devinfo, as, i); 3485 ases[as].dacs[0][i] = 0; 3486 min = res + 1; 3487 } while (1); 3488 } 3489 3490 /* 3491 * Trace input monitor path from mixer to output association. 3492 */ 3493 static int 3494 hdaa_audio_trace_to_out(struct hdaa_devinfo *devinfo, nid_t nid, int depth) 3495 { 3496 struct hdaa_audio_as *ases = devinfo->as; 3497 struct hdaa_widget *w, *wc; 3498 int i, j; 3499 nid_t res = 0; 3500 3501 if (depth > HDA_PARSE_MAXDEPTH) 3502 return (0); 3503 w = hdaa_widget_get(devinfo, nid); 3504 if (w == NULL || w->enable == 0) 3505 return (0); 3506 HDA_BOOTHVERBOSE( 3507 device_printf(devinfo->dev, 3508 " %*stracing via nid %d\n", 3509 depth + 1, "", w->nid); 3510 ); 3511 /* Use only unused widgets */ 3512 if (depth > 0 && w->bindas != -1) { 3513 if (w->bindas < 0 || ases[w->bindas].dir == HDAA_CTL_OUT) { 3514 HDA_BOOTHVERBOSE( 3515 device_printf(devinfo->dev, 3516 " %*snid %d found output association %d\n", 3517 depth + 1, "", w->nid, w->bindas); 3518 ); 3519 if (w->bindas >= 0) 3520 w->pflags |= HDAA_ADC_MONITOR; 3521 return (1); 3522 } else { 3523 HDA_BOOTHVERBOSE( 3524 device_printf(devinfo->dev, 3525 " %*snid %d busy by input association %d\n", 3526 depth + 1, "", w->nid, w->bindas); 3527 ); 3528 return (0); 3529 } 3530 } 3531 3532 switch (w->type) { 3533 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT: 3534 /* Do not traverse input. AD1988 has digital monitor 3535 for which we are not ready. */ 3536 break; 3537 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX: 3538 if (depth > 0) 3539 break; 3540 /* Fall */ 3541 default: 3542 /* Try to find reachable ADCs with specified nid. */ 3543 for (j = devinfo->startnode; j < devinfo->endnode; j++) { 3544 wc = hdaa_widget_get(devinfo, j); 3545 if (wc == NULL || wc->enable == 0) 3546 continue; 3547 for (i = 0; i < wc->nconns; i++) { 3548 if (wc->connsenable[i] == 0) 3549 continue; 3550 if (wc->conns[i] != nid) 3551 continue; 3552 if (hdaa_audio_trace_to_out(devinfo, 3553 j, depth + 1) != 0) { 3554 res = 1; 3555 if (wc->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR && 3556 wc->selconn == -1) 3557 wc->selconn = i; 3558 } 3559 } 3560 } 3561 break; 3562 } 3563 if (res && w->bindas == -1) 3564 w->bindas = -2; 3565 3566 HDA_BOOTHVERBOSE( 3567 device_printf(devinfo->dev, 3568 " %*snid %d returned %d\n", 3569 depth + 1, "", w->nid, res); 3570 ); 3571 return (res); 3572 } 3573 3574 /* 3575 * Trace extra associations (beeper, monitor) 3576 */ 3577 static void 3578 hdaa_audio_trace_as_extra(struct hdaa_devinfo *devinfo) 3579 { 3580 struct hdaa_audio_as *as = devinfo->as; 3581 struct hdaa_widget *w; 3582 int j; 3583 3584 /* Input monitor */ 3585 /* Find mixer associated with input, but supplying signal 3586 for output associations. Hope it will be input monitor. */ 3587 HDA_BOOTVERBOSE( 3588 device_printf(devinfo->dev, 3589 "Tracing input monitor\n"); 3590 ); 3591 for (j = devinfo->startnode; j < devinfo->endnode; j++) { 3592 w = hdaa_widget_get(devinfo, j); 3593 if (w == NULL || w->enable == 0) 3594 continue; 3595 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) 3596 continue; 3597 if (w->bindas < 0 || as[w->bindas].dir != HDAA_CTL_IN) 3598 continue; 3599 HDA_BOOTVERBOSE( 3600 device_printf(devinfo->dev, 3601 " Tracing nid %d to out\n", 3602 j); 3603 ); 3604 if (hdaa_audio_trace_to_out(devinfo, w->nid, 0)) { 3605 HDA_BOOTVERBOSE( 3606 device_printf(devinfo->dev, 3607 " nid %d is input monitor\n", 3608 w->nid); 3609 ); 3610 w->ossdev = SOUND_MIXER_IMIX; 3611 } 3612 } 3613 3614 /* Other inputs monitor */ 3615 /* Find input pins supplying signal for output associations. 3616 Hope it will be input monitoring. */ 3617 HDA_BOOTVERBOSE( 3618 device_printf(devinfo->dev, 3619 "Tracing other input monitors\n"); 3620 ); 3621 for (j = devinfo->startnode; j < devinfo->endnode; j++) { 3622 w = hdaa_widget_get(devinfo, j); 3623 if (w == NULL || w->enable == 0) 3624 continue; 3625 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 3626 continue; 3627 if (w->bindas < 0 || as[w->bindas].dir != HDAA_CTL_IN) 3628 continue; 3629 HDA_BOOTVERBOSE( 3630 device_printf(devinfo->dev, 3631 " Tracing nid %d to out\n", 3632 j); 3633 ); 3634 if (hdaa_audio_trace_to_out(devinfo, w->nid, 0)) { 3635 HDA_BOOTVERBOSE( 3636 device_printf(devinfo->dev, 3637 " nid %d is input monitor\n", 3638 w->nid); 3639 ); 3640 } 3641 } 3642 3643 /* Beeper */ 3644 HDA_BOOTVERBOSE( 3645 device_printf(devinfo->dev, 3646 "Tracing beeper\n"); 3647 ); 3648 for (j = devinfo->startnode; j < devinfo->endnode; j++) { 3649 w = hdaa_widget_get(devinfo, j); 3650 if (w == NULL || w->enable == 0) 3651 continue; 3652 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_BEEP_WIDGET) 3653 continue; 3654 HDA_BOOTHVERBOSE( 3655 device_printf(devinfo->dev, 3656 " Tracing nid %d to out\n", 3657 j); 3658 ); 3659 if (hdaa_audio_trace_to_out(devinfo, w->nid, 0)) { 3660 HDA_BOOTVERBOSE( 3661 device_printf(devinfo->dev, 3662 " nid %d traced to out\n", 3663 j); 3664 ); 3665 } 3666 w->bindas = -2; 3667 } 3668 } 3669 3670 /* 3671 * Bind assotiations to PCM channels 3672 */ 3673 static void 3674 hdaa_audio_bind_as(struct hdaa_devinfo *devinfo) 3675 { 3676 struct hdaa_audio_as *as = devinfo->as; 3677 int i, j, cnt = 0, free; 3678 3679 for (j = 0; j < devinfo->ascnt; j++) { 3680 if (as[j].enable) 3681 cnt += as[j].num_chans; 3682 } 3683 if (devinfo->num_chans == 0) { 3684 devinfo->chans = (struct hdaa_chan *)malloc( 3685 sizeof(struct hdaa_chan) * cnt, 3686 M_HDAA, M_ZERO | M_NOWAIT); 3687 if (devinfo->chans == NULL) { 3688 device_printf(devinfo->dev, 3689 "Channels memory allocation failed!\n"); 3690 return; 3691 } 3692 } else { 3693 devinfo->chans = (struct hdaa_chan *)realloc(devinfo->chans, 3694 sizeof(struct hdaa_chan) * (devinfo->num_chans + cnt), 3695 M_HDAA, M_ZERO | M_NOWAIT); 3696 if (devinfo->chans == NULL) { 3697 devinfo->num_chans = 0; 3698 device_printf(devinfo->dev, 3699 "Channels memory allocation failed!\n"); 3700 return; 3701 } 3702 /* Fixup relative pointers after realloc */ 3703 for (j = 0; j < devinfo->num_chans; j++) 3704 devinfo->chans[j].caps.fmtlist = devinfo->chans[j].fmtlist; 3705 } 3706 free = devinfo->num_chans; 3707 devinfo->num_chans += cnt; 3708 3709 for (j = free; j < free + cnt; j++) { 3710 devinfo->chans[j].devinfo = devinfo; 3711 devinfo->chans[j].as = -1; 3712 } 3713 3714 /* Assign associations in order of their numbers, */ 3715 for (j = 0; j < devinfo->ascnt; j++) { 3716 if (as[j].enable == 0) 3717 continue; 3718 for (i = 0; i < as[j].num_chans; i++) { 3719 devinfo->chans[free].as = j; 3720 devinfo->chans[free].asindex = i; 3721 devinfo->chans[free].dir = 3722 (as[j].dir == HDAA_CTL_IN) ? PCMDIR_REC : PCMDIR_PLAY; 3723 hdaa_pcmchannel_setup(&devinfo->chans[free]); 3724 as[j].chans[i] = free; 3725 free++; 3726 } 3727 } 3728 } 3729 3730 static void 3731 hdaa_audio_disable_nonaudio(struct hdaa_devinfo *devinfo) 3732 { 3733 struct hdaa_widget *w; 3734 int i; 3735 3736 /* Disable power and volume widgets. */ 3737 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 3738 w = hdaa_widget_get(devinfo, i); 3739 if (w == NULL || w->enable == 0) 3740 continue; 3741 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_POWER_WIDGET || 3742 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_VOLUME_WIDGET) { 3743 w->enable = 0; 3744 HDA_BOOTHVERBOSE( 3745 device_printf(devinfo->dev, 3746 " Disabling nid %d due to it's" 3747 " non-audio type.\n", 3748 w->nid); 3749 ); 3750 } 3751 } 3752 } 3753 3754 static void 3755 hdaa_audio_disable_useless(struct hdaa_devinfo *devinfo) 3756 { 3757 struct hdaa_widget *w, *cw; 3758 struct hdaa_audio_ctl *ctl; 3759 int done, found, i, j, k; 3760 3761 /* Disable useless pins. */ 3762 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 3763 w = hdaa_widget_get(devinfo, i); 3764 if (w == NULL || w->enable == 0) 3765 continue; 3766 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) { 3767 if ((w->wclass.pin.config & 3768 HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK) == 3769 HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_NONE) { 3770 w->enable = 0; 3771 HDA_BOOTHVERBOSE( 3772 device_printf(devinfo->dev, 3773 " Disabling pin nid %d due" 3774 " to None connectivity.\n", 3775 w->nid); 3776 ); 3777 } else if ((w->wclass.pin.config & 3778 HDA_CONFIG_DEFAULTCONF_ASSOCIATION_MASK) == 0) { 3779 w->enable = 0; 3780 HDA_BOOTHVERBOSE( 3781 device_printf(devinfo->dev, 3782 " Disabling unassociated" 3783 " pin nid %d.\n", 3784 w->nid); 3785 ); 3786 } 3787 } 3788 } 3789 do { 3790 done = 1; 3791 /* Disable and mute controls for disabled widgets. */ 3792 i = 0; 3793 while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) { 3794 if (ctl->enable == 0) 3795 continue; 3796 if (ctl->widget->enable == 0 || 3797 (ctl->childwidget != NULL && 3798 ctl->childwidget->enable == 0)) { 3799 ctl->forcemute = 1; 3800 ctl->muted = HDAA_AMP_MUTE_ALL; 3801 ctl->left = 0; 3802 ctl->right = 0; 3803 ctl->enable = 0; 3804 if (ctl->ndir == HDAA_CTL_IN) 3805 ctl->widget->connsenable[ctl->index] = 0; 3806 done = 0; 3807 HDA_BOOTHVERBOSE( 3808 device_printf(devinfo->dev, 3809 " Disabling ctl %d nid %d cnid %d due" 3810 " to disabled widget.\n", i, 3811 ctl->widget->nid, 3812 (ctl->childwidget != NULL)? 3813 ctl->childwidget->nid:-1); 3814 ); 3815 } 3816 } 3817 /* Disable useless widgets. */ 3818 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 3819 w = hdaa_widget_get(devinfo, i); 3820 if (w == NULL || w->enable == 0) 3821 continue; 3822 /* Disable inputs with disabled child widgets. */ 3823 for (j = 0; j < w->nconns; j++) { 3824 if (w->connsenable[j]) { 3825 cw = hdaa_widget_get(devinfo, w->conns[j]); 3826 if (cw == NULL || cw->enable == 0) { 3827 w->connsenable[j] = 0; 3828 HDA_BOOTHVERBOSE( 3829 device_printf(devinfo->dev, 3830 " Disabling nid %d connection %d due" 3831 " to disabled child widget.\n", 3832 i, j); 3833 ); 3834 } 3835 } 3836 } 3837 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR && 3838 w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) 3839 continue; 3840 /* Disable mixers and selectors without inputs. */ 3841 found = 0; 3842 for (j = 0; j < w->nconns; j++) { 3843 if (w->connsenable[j]) { 3844 found = 1; 3845 break; 3846 } 3847 } 3848 if (found == 0) { 3849 w->enable = 0; 3850 done = 0; 3851 HDA_BOOTHVERBOSE( 3852 device_printf(devinfo->dev, 3853 " Disabling nid %d due to all it's" 3854 " inputs disabled.\n", w->nid); 3855 ); 3856 } 3857 /* Disable nodes without consumers. */ 3858 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR && 3859 w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) 3860 continue; 3861 found = 0; 3862 for (k = devinfo->startnode; k < devinfo->endnode; k++) { 3863 cw = hdaa_widget_get(devinfo, k); 3864 if (cw == NULL || cw->enable == 0) 3865 continue; 3866 for (j = 0; j < cw->nconns; j++) { 3867 if (cw->connsenable[j] && cw->conns[j] == i) { 3868 found = 1; 3869 break; 3870 } 3871 } 3872 } 3873 if (found == 0) { 3874 w->enable = 0; 3875 done = 0; 3876 HDA_BOOTHVERBOSE( 3877 device_printf(devinfo->dev, 3878 " Disabling nid %d due to all it's" 3879 " consumers disabled.\n", w->nid); 3880 ); 3881 } 3882 } 3883 } while (done == 0); 3884 3885 } 3886 3887 static void 3888 hdaa_audio_disable_unas(struct hdaa_devinfo *devinfo) 3889 { 3890 struct hdaa_audio_as *as = devinfo->as; 3891 struct hdaa_widget *w, *cw; 3892 struct hdaa_audio_ctl *ctl; 3893 int i, j, k; 3894 3895 /* Disable unassosiated widgets. */ 3896 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 3897 w = hdaa_widget_get(devinfo, i); 3898 if (w == NULL || w->enable == 0) 3899 continue; 3900 if (w->bindas == -1) { 3901 w->enable = 0; 3902 HDA_BOOTHVERBOSE( 3903 device_printf(devinfo->dev, 3904 " Disabling unassociated nid %d.\n", 3905 w->nid); 3906 ); 3907 } 3908 } 3909 /* Disable input connections on input pin and 3910 * output on output. */ 3911 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 3912 w = hdaa_widget_get(devinfo, i); 3913 if (w == NULL || w->enable == 0) 3914 continue; 3915 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 3916 continue; 3917 if (w->bindas < 0) 3918 continue; 3919 if (as[w->bindas].dir == HDAA_CTL_IN) { 3920 for (j = 0; j < w->nconns; j++) { 3921 if (w->connsenable[j] == 0) 3922 continue; 3923 w->connsenable[j] = 0; 3924 HDA_BOOTHVERBOSE( 3925 device_printf(devinfo->dev, 3926 " Disabling connection to input pin " 3927 "nid %d conn %d.\n", 3928 i, j); 3929 ); 3930 } 3931 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, 3932 HDAA_CTL_IN, -1, 1); 3933 if (ctl && ctl->enable) { 3934 ctl->forcemute = 1; 3935 ctl->muted = HDAA_AMP_MUTE_ALL; 3936 ctl->left = 0; 3937 ctl->right = 0; 3938 ctl->enable = 0; 3939 } 3940 } else { 3941 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, 3942 HDAA_CTL_OUT, -1, 1); 3943 if (ctl && ctl->enable) { 3944 ctl->forcemute = 1; 3945 ctl->muted = HDAA_AMP_MUTE_ALL; 3946 ctl->left = 0; 3947 ctl->right = 0; 3948 ctl->enable = 0; 3949 } 3950 for (k = devinfo->startnode; k < devinfo->endnode; k++) { 3951 cw = hdaa_widget_get(devinfo, k); 3952 if (cw == NULL || cw->enable == 0) 3953 continue; 3954 for (j = 0; j < cw->nconns; j++) { 3955 if (cw->connsenable[j] && cw->conns[j] == i) { 3956 cw->connsenable[j] = 0; 3957 HDA_BOOTHVERBOSE( 3958 device_printf(devinfo->dev, 3959 " Disabling connection from output pin " 3960 "nid %d conn %d cnid %d.\n", 3961 k, j, i); 3962 ); 3963 if (cw->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX && 3964 cw->nconns > 1) 3965 continue; 3966 ctl = hdaa_audio_ctl_amp_get(devinfo, k, 3967 HDAA_CTL_IN, j, 1); 3968 if (ctl && ctl->enable) { 3969 ctl->forcemute = 1; 3970 ctl->muted = HDAA_AMP_MUTE_ALL; 3971 ctl->left = 0; 3972 ctl->right = 0; 3973 ctl->enable = 0; 3974 } 3975 } 3976 } 3977 } 3978 } 3979 } 3980 } 3981 3982 static void 3983 hdaa_audio_disable_notselected(struct hdaa_devinfo *devinfo) 3984 { 3985 struct hdaa_audio_as *as = devinfo->as; 3986 struct hdaa_widget *w; 3987 int i, j; 3988 3989 /* On playback path we can safely disable all unseleted inputs. */ 3990 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 3991 w = hdaa_widget_get(devinfo, i); 3992 if (w == NULL || w->enable == 0) 3993 continue; 3994 if (w->nconns <= 1) 3995 continue; 3996 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) 3997 continue; 3998 if (w->bindas < 0 || as[w->bindas].dir == HDAA_CTL_IN) 3999 continue; 4000 for (j = 0; j < w->nconns; j++) { 4001 if (w->connsenable[j] == 0) 4002 continue; 4003 if (w->selconn < 0 || w->selconn == j) 4004 continue; 4005 w->connsenable[j] = 0; 4006 HDA_BOOTHVERBOSE( 4007 device_printf(devinfo->dev, 4008 " Disabling unselected connection " 4009 "nid %d conn %d.\n", 4010 i, j); 4011 ); 4012 } 4013 } 4014 } 4015 4016 static void 4017 hdaa_audio_disable_crossas(struct hdaa_devinfo *devinfo) 4018 { 4019 struct hdaa_audio_as *ases = devinfo->as; 4020 struct hdaa_widget *w, *cw; 4021 struct hdaa_audio_ctl *ctl; 4022 int i, j; 4023 4024 /* Disable crossassociatement and unwanted crosschannel connections. */ 4025 /* ... using selectors */ 4026 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 4027 w = hdaa_widget_get(devinfo, i); 4028 if (w == NULL || w->enable == 0) 4029 continue; 4030 if (w->nconns <= 1) 4031 continue; 4032 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) 4033 continue; 4034 /* Allow any -> mix */ 4035 if (w->bindas == -2) 4036 continue; 4037 for (j = 0; j < w->nconns; j++) { 4038 if (w->connsenable[j] == 0) 4039 continue; 4040 cw = hdaa_widget_get(devinfo, w->conns[j]); 4041 if (cw == NULL || w->enable == 0) 4042 continue; 4043 /* Allow mix -> out. */ 4044 if (cw->bindas == -2 && w->bindas >= 0 && 4045 ases[w->bindas].dir == HDAA_CTL_OUT) 4046 continue; 4047 /* Allow mix -> mixed-in. */ 4048 if (cw->bindas == -2 && w->bindas >= 0 && 4049 ases[w->bindas].mixed) 4050 continue; 4051 /* Allow in -> mix. */ 4052 if ((w->pflags & HDAA_ADC_MONITOR) && 4053 cw->bindas >= 0 && 4054 ases[cw->bindas].dir == HDAA_CTL_IN) 4055 continue; 4056 /* Allow if have common as/seqs. */ 4057 if (w->bindas == cw->bindas && 4058 (w->bindseqmask & cw->bindseqmask) != 0) 4059 continue; 4060 w->connsenable[j] = 0; 4061 HDA_BOOTHVERBOSE( 4062 device_printf(devinfo->dev, 4063 " Disabling crossassociatement connection " 4064 "nid %d conn %d cnid %d.\n", 4065 i, j, cw->nid); 4066 ); 4067 } 4068 } 4069 /* ... using controls */ 4070 i = 0; 4071 while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) { 4072 if (ctl->enable == 0 || ctl->childwidget == NULL) 4073 continue; 4074 /* Allow any -> mix */ 4075 if (ctl->widget->bindas == -2) 4076 continue; 4077 /* Allow mix -> out. */ 4078 if (ctl->childwidget->bindas == -2 && 4079 ctl->widget->bindas >= 0 && 4080 ases[ctl->widget->bindas].dir == HDAA_CTL_OUT) 4081 continue; 4082 /* Allow mix -> mixed-in. */ 4083 if (ctl->childwidget->bindas == -2 && 4084 ctl->widget->bindas >= 0 && 4085 ases[ctl->widget->bindas].mixed) 4086 continue; 4087 /* Allow in -> mix. */ 4088 if ((ctl->widget->pflags & HDAA_ADC_MONITOR) && 4089 ctl->childwidget->bindas >= 0 && 4090 ases[ctl->childwidget->bindas].dir == HDAA_CTL_IN) 4091 continue; 4092 /* Allow if have common as/seqs. */ 4093 if (ctl->widget->bindas == ctl->childwidget->bindas && 4094 (ctl->widget->bindseqmask & ctl->childwidget->bindseqmask) != 0) 4095 continue; 4096 ctl->forcemute = 1; 4097 ctl->muted = HDAA_AMP_MUTE_ALL; 4098 ctl->left = 0; 4099 ctl->right = 0; 4100 ctl->enable = 0; 4101 if (ctl->ndir == HDAA_CTL_IN) 4102 ctl->widget->connsenable[ctl->index] = 0; 4103 HDA_BOOTHVERBOSE( 4104 device_printf(devinfo->dev, 4105 " Disabling crossassociatement connection " 4106 "ctl %d nid %d cnid %d.\n", i, 4107 ctl->widget->nid, 4108 ctl->childwidget->nid); 4109 ); 4110 } 4111 4112 } 4113 4114 /* 4115 * Find controls to control amplification for source and calculate possible 4116 * amplification range. 4117 */ 4118 static int 4119 hdaa_audio_ctl_source_amp(struct hdaa_devinfo *devinfo, nid_t nid, int index, 4120 int ossdev, int ctlable, int depth, int *minamp, int *maxamp) 4121 { 4122 struct hdaa_widget *w, *wc; 4123 struct hdaa_audio_ctl *ctl; 4124 int i, j, conns = 0, tminamp, tmaxamp, cminamp, cmaxamp, found = 0; 4125 4126 if (depth > HDA_PARSE_MAXDEPTH) 4127 return (found); 4128 4129 w = hdaa_widget_get(devinfo, nid); 4130 if (w == NULL || w->enable == 0) 4131 return (found); 4132 4133 /* Count number of active inputs. */ 4134 if (depth > 0) { 4135 for (j = 0; j < w->nconns; j++) { 4136 if (!w->connsenable[j]) 4137 continue; 4138 conns++; 4139 } 4140 } 4141 4142 /* If this is not a first step - use input mixer. 4143 Pins have common input ctl so care must be taken. */ 4144 if (depth > 0 && ctlable && (conns == 1 || 4145 w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)) { 4146 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, HDAA_CTL_IN, 4147 index, 1); 4148 if (ctl) { 4149 ctl->ossmask |= (1 << ossdev); 4150 found++; 4151 if (*minamp == *maxamp) { 4152 *minamp += MINQDB(ctl); 4153 *maxamp += MAXQDB(ctl); 4154 } 4155 } 4156 } 4157 4158 /* If widget has own ossdev - not traverse it. 4159 It will be traversed on it's own. */ 4160 if (w->ossdev >= 0 && depth > 0) 4161 return (found); 4162 4163 /* We must not traverse pin */ 4164 if ((w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT || 4165 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) && 4166 depth > 0) 4167 return (found); 4168 4169 /* record that this widget exports such signal, */ 4170 w->ossmask |= (1 << ossdev); 4171 4172 /* 4173 * If signals mixed, we can't assign controls farther. 4174 * Ignore this on depth zero. Caller must knows why. 4175 */ 4176 if (conns > 1 && 4177 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) 4178 ctlable = 0; 4179 4180 if (ctlable) { 4181 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, HDAA_CTL_OUT, -1, 1); 4182 if (ctl) { 4183 ctl->ossmask |= (1 << ossdev); 4184 found++; 4185 if (*minamp == *maxamp) { 4186 *minamp += MINQDB(ctl); 4187 *maxamp += MAXQDB(ctl); 4188 } 4189 } 4190 } 4191 4192 cminamp = cmaxamp = 0; 4193 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 4194 wc = hdaa_widget_get(devinfo, i); 4195 if (wc == NULL || wc->enable == 0) 4196 continue; 4197 for (j = 0; j < wc->nconns; j++) { 4198 if (wc->connsenable[j] && wc->conns[j] == nid) { 4199 tminamp = tmaxamp = 0; 4200 found += hdaa_audio_ctl_source_amp(devinfo, 4201 wc->nid, j, ossdev, ctlable, depth + 1, 4202 &tminamp, &tmaxamp); 4203 if (cminamp == 0 && cmaxamp == 0) { 4204 cminamp = tminamp; 4205 cmaxamp = tmaxamp; 4206 } else if (tminamp != tmaxamp) { 4207 cminamp = imax(cminamp, tminamp); 4208 cmaxamp = imin(cmaxamp, tmaxamp); 4209 } 4210 } 4211 } 4212 } 4213 if (*minamp == *maxamp && cminamp < cmaxamp) { 4214 *minamp += cminamp; 4215 *maxamp += cmaxamp; 4216 } 4217 return (found); 4218 } 4219 4220 /* 4221 * Find controls to control amplification for destination and calculate 4222 * possible amplification range. 4223 */ 4224 static int 4225 hdaa_audio_ctl_dest_amp(struct hdaa_devinfo *devinfo, nid_t nid, int index, 4226 int ossdev, int depth, int *minamp, int *maxamp) 4227 { 4228 struct hdaa_audio_as *as = devinfo->as; 4229 struct hdaa_widget *w, *wc; 4230 struct hdaa_audio_ctl *ctl; 4231 int i, j, consumers, tminamp, tmaxamp, cminamp, cmaxamp, found = 0; 4232 4233 if (depth > HDA_PARSE_MAXDEPTH) 4234 return (found); 4235 4236 w = hdaa_widget_get(devinfo, nid); 4237 if (w == NULL || w->enable == 0) 4238 return (found); 4239 4240 if (depth > 0) { 4241 /* If this node produce output for several consumers, 4242 we can't touch it. */ 4243 consumers = 0; 4244 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 4245 wc = hdaa_widget_get(devinfo, i); 4246 if (wc == NULL || wc->enable == 0) 4247 continue; 4248 for (j = 0; j < wc->nconns; j++) { 4249 if (wc->connsenable[j] && wc->conns[j] == nid) 4250 consumers++; 4251 } 4252 } 4253 /* The only exception is if real HP redirection is configured 4254 and this is a duplication point. 4255 XXX: Actually exception is not completely correct. 4256 XXX: Duplication point check is not perfect. */ 4257 if ((consumers == 2 && (w->bindas < 0 || 4258 as[w->bindas].hpredir < 0 || as[w->bindas].fakeredir || 4259 (w->bindseqmask & (1 << 15)) == 0)) || 4260 consumers > 2) 4261 return (found); 4262 4263 /* Else use it's output mixer. */ 4264 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, 4265 HDAA_CTL_OUT, -1, 1); 4266 if (ctl) { 4267 ctl->ossmask |= (1 << ossdev); 4268 found++; 4269 if (*minamp == *maxamp) { 4270 *minamp += MINQDB(ctl); 4271 *maxamp += MAXQDB(ctl); 4272 } 4273 } 4274 } 4275 4276 /* We must not traverse pin */ 4277 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX && 4278 depth > 0) 4279 return (found); 4280 4281 cminamp = cmaxamp = 0; 4282 for (i = 0; i < w->nconns; i++) { 4283 if (w->connsenable[i] == 0) 4284 continue; 4285 if (index >= 0 && i != index) 4286 continue; 4287 tminamp = tmaxamp = 0; 4288 ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, 4289 HDAA_CTL_IN, i, 1); 4290 if (ctl) { 4291 ctl->ossmask |= (1 << ossdev); 4292 found++; 4293 if (*minamp == *maxamp) { 4294 tminamp += MINQDB(ctl); 4295 tmaxamp += MAXQDB(ctl); 4296 } 4297 } 4298 found += hdaa_audio_ctl_dest_amp(devinfo, w->conns[i], -1, ossdev, 4299 depth + 1, &tminamp, &tmaxamp); 4300 if (cminamp == 0 && cmaxamp == 0) { 4301 cminamp = tminamp; 4302 cmaxamp = tmaxamp; 4303 } else if (tminamp != tmaxamp) { 4304 cminamp = imax(cminamp, tminamp); 4305 cmaxamp = imin(cmaxamp, tmaxamp); 4306 } 4307 } 4308 if (*minamp == *maxamp && cminamp < cmaxamp) { 4309 *minamp += cminamp; 4310 *maxamp += cmaxamp; 4311 } 4312 return (found); 4313 } 4314 4315 /* 4316 * Assign OSS names to sound sources 4317 */ 4318 static void 4319 hdaa_audio_assign_names(struct hdaa_devinfo *devinfo) 4320 { 4321 struct hdaa_audio_as *as = devinfo->as; 4322 struct hdaa_widget *w; 4323 int i, j; 4324 int type = -1, use, used = 0; 4325 static const int types[7][13] = { 4326 { SOUND_MIXER_LINE, SOUND_MIXER_LINE1, SOUND_MIXER_LINE2, 4327 SOUND_MIXER_LINE3, -1 }, /* line */ 4328 { SOUND_MIXER_MONITOR, SOUND_MIXER_MIC, -1 }, /* int mic */ 4329 { SOUND_MIXER_MIC, SOUND_MIXER_MONITOR, -1 }, /* ext mic */ 4330 { SOUND_MIXER_CD, -1 }, /* cd */ 4331 { SOUND_MIXER_SPEAKER, -1 }, /* speaker */ 4332 { SOUND_MIXER_DIGITAL1, SOUND_MIXER_DIGITAL2, SOUND_MIXER_DIGITAL3, 4333 -1 }, /* digital */ 4334 { SOUND_MIXER_LINE, SOUND_MIXER_LINE1, SOUND_MIXER_LINE2, 4335 SOUND_MIXER_LINE3, SOUND_MIXER_PHONEIN, SOUND_MIXER_PHONEOUT, 4336 SOUND_MIXER_VIDEO, SOUND_MIXER_RADIO, SOUND_MIXER_DIGITAL1, 4337 SOUND_MIXER_DIGITAL2, SOUND_MIXER_DIGITAL3, SOUND_MIXER_MONITOR, 4338 -1 } /* others */ 4339 }; 4340 4341 /* Surely known names */ 4342 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 4343 w = hdaa_widget_get(devinfo, i); 4344 if (w == NULL || w->enable == 0) 4345 continue; 4346 if (w->bindas == -1) 4347 continue; 4348 use = -1; 4349 switch (w->type) { 4350 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX: 4351 if (as[w->bindas].dir == HDAA_CTL_OUT) 4352 break; 4353 type = -1; 4354 switch (w->wclass.pin.config & HDA_CONFIG_DEFAULTCONF_DEVICE_MASK) { 4355 case HDA_CONFIG_DEFAULTCONF_DEVICE_LINE_IN: 4356 type = 0; 4357 break; 4358 case HDA_CONFIG_DEFAULTCONF_DEVICE_MIC_IN: 4359 if ((w->wclass.pin.config & HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK) 4360 == HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_JACK) 4361 break; 4362 type = 1; 4363 break; 4364 case HDA_CONFIG_DEFAULTCONF_DEVICE_CD: 4365 type = 3; 4366 break; 4367 case HDA_CONFIG_DEFAULTCONF_DEVICE_SPEAKER: 4368 type = 4; 4369 break; 4370 case HDA_CONFIG_DEFAULTCONF_DEVICE_SPDIF_IN: 4371 case HDA_CONFIG_DEFAULTCONF_DEVICE_DIGITAL_OTHER_IN: 4372 type = 5; 4373 break; 4374 } 4375 if (type == -1) 4376 break; 4377 j = 0; 4378 while (types[type][j] >= 0 && 4379 (used & (1 << types[type][j])) != 0) { 4380 j++; 4381 } 4382 if (types[type][j] >= 0) 4383 use = types[type][j]; 4384 break; 4385 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT: 4386 use = SOUND_MIXER_PCM; 4387 break; 4388 case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_BEEP_WIDGET: 4389 use = SOUND_MIXER_SPEAKER; 4390 break; 4391 default: 4392 break; 4393 } 4394 if (use >= 0) { 4395 w->ossdev = use; 4396 used |= (1 << use); 4397 } 4398 } 4399 /* Semi-known names */ 4400 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 4401 w = hdaa_widget_get(devinfo, i); 4402 if (w == NULL || w->enable == 0) 4403 continue; 4404 if (w->ossdev >= 0) 4405 continue; 4406 if (w->bindas == -1) 4407 continue; 4408 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 4409 continue; 4410 if (as[w->bindas].dir == HDAA_CTL_OUT) 4411 continue; 4412 type = -1; 4413 switch (w->wclass.pin.config & HDA_CONFIG_DEFAULTCONF_DEVICE_MASK) { 4414 case HDA_CONFIG_DEFAULTCONF_DEVICE_LINE_OUT: 4415 case HDA_CONFIG_DEFAULTCONF_DEVICE_SPEAKER: 4416 case HDA_CONFIG_DEFAULTCONF_DEVICE_HP_OUT: 4417 case HDA_CONFIG_DEFAULTCONF_DEVICE_AUX: 4418 type = 0; 4419 break; 4420 case HDA_CONFIG_DEFAULTCONF_DEVICE_MIC_IN: 4421 type = 2; 4422 break; 4423 case HDA_CONFIG_DEFAULTCONF_DEVICE_SPDIF_OUT: 4424 case HDA_CONFIG_DEFAULTCONF_DEVICE_DIGITAL_OTHER_OUT: 4425 type = 5; 4426 break; 4427 } 4428 if (type == -1) 4429 break; 4430 j = 0; 4431 while (types[type][j] >= 0 && 4432 (used & (1 << types[type][j])) != 0) { 4433 j++; 4434 } 4435 if (types[type][j] >= 0) { 4436 w->ossdev = types[type][j]; 4437 used |= (1 << types[type][j]); 4438 } 4439 } 4440 /* Others */ 4441 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 4442 w = hdaa_widget_get(devinfo, i); 4443 if (w == NULL || w->enable == 0) 4444 continue; 4445 if (w->ossdev >= 0) 4446 continue; 4447 if (w->bindas == -1) 4448 continue; 4449 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 4450 continue; 4451 if (as[w->bindas].dir == HDAA_CTL_OUT) 4452 continue; 4453 j = 0; 4454 while (types[6][j] >= 0 && 4455 (used & (1 << types[6][j])) != 0) { 4456 j++; 4457 } 4458 if (types[6][j] >= 0) { 4459 w->ossdev = types[6][j]; 4460 used |= (1 << types[6][j]); 4461 } 4462 } 4463 } 4464 4465 static void 4466 hdaa_audio_build_tree(struct hdaa_devinfo *devinfo) 4467 { 4468 struct hdaa_audio_as *as = devinfo->as; 4469 int j, res; 4470 4471 /* Trace all associations in order of their numbers. */ 4472 for (j = 0; j < devinfo->ascnt; j++) { 4473 if (as[j].enable == 0) 4474 continue; 4475 HDA_BOOTVERBOSE( 4476 device_printf(devinfo->dev, 4477 "Tracing association %d (%d)\n", j, as[j].index); 4478 ); 4479 if (as[j].dir == HDAA_CTL_OUT) { 4480 retry: 4481 res = hdaa_audio_trace_as_out(devinfo, j, 0); 4482 if (res == 0 && as[j].hpredir >= 0 && 4483 as[j].fakeredir == 0) { 4484 /* If CODEC can't do analog HP redirection 4485 try to make it using one more DAC. */ 4486 as[j].fakeredir = 1; 4487 goto retry; 4488 } 4489 } else if (as[j].mixed) 4490 res = hdaa_audio_trace_as_in(devinfo, j); 4491 else 4492 res = hdaa_audio_trace_as_in_mch(devinfo, j, 0); 4493 if (res) { 4494 HDA_BOOTVERBOSE( 4495 device_printf(devinfo->dev, 4496 "Association %d (%d) trace succeeded\n", 4497 j, as[j].index); 4498 ); 4499 } else { 4500 HDA_BOOTVERBOSE( 4501 device_printf(devinfo->dev, 4502 "Association %d (%d) trace failed\n", 4503 j, as[j].index); 4504 ); 4505 as[j].enable = 0; 4506 } 4507 } 4508 4509 /* Look for additional DACs/ADCs. */ 4510 for (j = 0; j < devinfo->ascnt; j++) { 4511 if (as[j].enable == 0) 4512 continue; 4513 hdaa_audio_adddac(devinfo, j); 4514 } 4515 4516 /* Trace mixer and beeper pseudo associations. */ 4517 hdaa_audio_trace_as_extra(devinfo); 4518 } 4519 4520 /* 4521 * Store in pdevinfo new data about whether and how we can control signal 4522 * for OSS device to/from specified widget. 4523 */ 4524 static void 4525 hdaa_adjust_amp(struct hdaa_widget *w, int ossdev, 4526 int found, int minamp, int maxamp) 4527 { 4528 struct hdaa_devinfo *devinfo = w->devinfo; 4529 struct hdaa_pcm_devinfo *pdevinfo; 4530 4531 if (w->bindas >= 0) 4532 pdevinfo = devinfo->as[w->bindas].pdevinfo; 4533 else 4534 pdevinfo = &devinfo->devs[0]; 4535 if (found) 4536 pdevinfo->ossmask |= (1 << ossdev); 4537 if (minamp == 0 && maxamp == 0) 4538 return; 4539 if (pdevinfo->minamp[ossdev] == 0 && pdevinfo->maxamp[ossdev] == 0) { 4540 pdevinfo->minamp[ossdev] = minamp; 4541 pdevinfo->maxamp[ossdev] = maxamp; 4542 } else { 4543 pdevinfo->minamp[ossdev] = imax(pdevinfo->minamp[ossdev], minamp); 4544 pdevinfo->maxamp[ossdev] = imin(pdevinfo->maxamp[ossdev], maxamp); 4545 } 4546 } 4547 4548 /* 4549 * Trace signals from/to all possible sources/destionstions to find possible 4550 * recording sources, OSS device control ranges and to assign controls. 4551 */ 4552 static void 4553 hdaa_audio_assign_mixers(struct hdaa_devinfo *devinfo) 4554 { 4555 struct hdaa_audio_as *as = devinfo->as; 4556 struct hdaa_widget *w, *cw; 4557 int i, j, minamp, maxamp, found; 4558 4559 /* Assign mixers to the tree. */ 4560 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 4561 w = hdaa_widget_get(devinfo, i); 4562 if (w == NULL || w->enable == 0) 4563 continue; 4564 minamp = maxamp = 0; 4565 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT || 4566 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_BEEP_WIDGET || 4567 (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX && 4568 as[w->bindas].dir == HDAA_CTL_IN)) { 4569 if (w->ossdev < 0) 4570 continue; 4571 found = hdaa_audio_ctl_source_amp(devinfo, w->nid, -1, 4572 w->ossdev, 1, 0, &minamp, &maxamp); 4573 hdaa_adjust_amp(w, w->ossdev, found, minamp, maxamp); 4574 } else if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) { 4575 found = hdaa_audio_ctl_dest_amp(devinfo, w->nid, -1, 4576 SOUND_MIXER_RECLEV, 0, &minamp, &maxamp); 4577 hdaa_adjust_amp(w, SOUND_MIXER_RECLEV, found, minamp, maxamp); 4578 } else if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX && 4579 as[w->bindas].dir == HDAA_CTL_OUT) { 4580 found = hdaa_audio_ctl_dest_amp(devinfo, w->nid, -1, 4581 SOUND_MIXER_VOLUME, 0, &minamp, &maxamp); 4582 hdaa_adjust_amp(w, SOUND_MIXER_VOLUME, found, minamp, maxamp); 4583 } 4584 if (w->ossdev == SOUND_MIXER_IMIX) { 4585 minamp = maxamp = 0; 4586 found = hdaa_audio_ctl_source_amp(devinfo, w->nid, -1, 4587 w->ossdev, 1, 0, &minamp, &maxamp); 4588 if (minamp == maxamp) { 4589 /* If we are unable to control input monitor 4590 as source - try to control it as destination. */ 4591 found += hdaa_audio_ctl_dest_amp(devinfo, w->nid, -1, 4592 w->ossdev, 0, &minamp, &maxamp); 4593 w->pflags |= HDAA_IMIX_AS_DST; 4594 } 4595 hdaa_adjust_amp(w, w->ossdev, found, minamp, maxamp); 4596 } 4597 if (w->pflags & HDAA_ADC_MONITOR) { 4598 for (j = 0; j < w->nconns; j++) { 4599 if (!w->connsenable[j]) 4600 continue; 4601 cw = hdaa_widget_get(devinfo, w->conns[j]); 4602 if (cw == NULL || cw->enable == 0) 4603 continue; 4604 if (cw->bindas == -1) 4605 continue; 4606 if (cw->bindas >= 0 && 4607 as[cw->bindas].dir != HDAA_CTL_IN) 4608 continue; 4609 minamp = maxamp = 0; 4610 found = hdaa_audio_ctl_dest_amp(devinfo, 4611 w->nid, j, SOUND_MIXER_IGAIN, 0, 4612 &minamp, &maxamp); 4613 hdaa_adjust_amp(w, SOUND_MIXER_IGAIN, 4614 found, minamp, maxamp); 4615 } 4616 } 4617 } 4618 } 4619 4620 static void 4621 hdaa_audio_prepare_pin_ctrl(struct hdaa_devinfo *devinfo) 4622 { 4623 struct hdaa_audio_as *as = devinfo->as; 4624 struct hdaa_widget *w; 4625 uint32_t pincap; 4626 int i; 4627 4628 for (i = 0; i < devinfo->nodecnt; i++) { 4629 w = &devinfo->widget[i]; 4630 if (w == NULL) 4631 continue; 4632 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX && 4633 w->waspin == 0) 4634 continue; 4635 4636 pincap = w->wclass.pin.cap; 4637 4638 /* Disable everything. */ 4639 w->wclass.pin.ctrl &= ~( 4640 HDA_CMD_SET_PIN_WIDGET_CTRL_HPHN_ENABLE | 4641 HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE | 4642 HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE | 4643 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK); 4644 4645 if (w->enable == 0) { 4646 /* Pin is unused so left it disabled. */ 4647 continue; 4648 } else if (w->waspin) { 4649 /* Enable input for beeper input. */ 4650 w->wclass.pin.ctrl |= 4651 HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE; 4652 } else if (w->bindas < 0 || as[w->bindas].enable == 0) { 4653 /* Pin is unused so left it disabled. */ 4654 continue; 4655 } else if (as[w->bindas].dir == HDAA_CTL_IN) { 4656 /* Input pin, configure for input. */ 4657 if (HDA_PARAM_PIN_CAP_INPUT_CAP(pincap)) 4658 w->wclass.pin.ctrl |= 4659 HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE; 4660 4661 if ((devinfo->quirks & HDAA_QUIRK_IVREF100) && 4662 HDA_PARAM_PIN_CAP_VREF_CTRL_100(pincap)) 4663 w->wclass.pin.ctrl |= 4664 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE( 4665 HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_100); 4666 else if ((devinfo->quirks & HDAA_QUIRK_IVREF80) && 4667 HDA_PARAM_PIN_CAP_VREF_CTRL_80(pincap)) 4668 w->wclass.pin.ctrl |= 4669 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE( 4670 HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_80); 4671 else if ((devinfo->quirks & HDAA_QUIRK_IVREF50) && 4672 HDA_PARAM_PIN_CAP_VREF_CTRL_50(pincap)) 4673 w->wclass.pin.ctrl |= 4674 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE( 4675 HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_50); 4676 } else { 4677 /* Output pin, configure for output. */ 4678 if (HDA_PARAM_PIN_CAP_OUTPUT_CAP(pincap)) 4679 w->wclass.pin.ctrl |= 4680 HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE; 4681 4682 if (HDA_PARAM_PIN_CAP_HEADPHONE_CAP(pincap) && 4683 (w->wclass.pin.config & 4684 HDA_CONFIG_DEFAULTCONF_DEVICE_MASK) == 4685 HDA_CONFIG_DEFAULTCONF_DEVICE_HP_OUT) 4686 w->wclass.pin.ctrl |= 4687 HDA_CMD_SET_PIN_WIDGET_CTRL_HPHN_ENABLE; 4688 4689 if ((devinfo->quirks & HDAA_QUIRK_OVREF100) && 4690 HDA_PARAM_PIN_CAP_VREF_CTRL_100(pincap)) 4691 w->wclass.pin.ctrl |= 4692 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE( 4693 HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_100); 4694 else if ((devinfo->quirks & HDAA_QUIRK_OVREF80) && 4695 HDA_PARAM_PIN_CAP_VREF_CTRL_80(pincap)) 4696 w->wclass.pin.ctrl |= 4697 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE( 4698 HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_80); 4699 else if ((devinfo->quirks & HDAA_QUIRK_OVREF50) && 4700 HDA_PARAM_PIN_CAP_VREF_CTRL_50(pincap)) 4701 w->wclass.pin.ctrl |= 4702 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE( 4703 HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_50); 4704 } 4705 } 4706 } 4707 4708 static void 4709 hdaa_audio_ctl_commit(struct hdaa_devinfo *devinfo) 4710 { 4711 struct hdaa_audio_ctl *ctl; 4712 int i, z; 4713 4714 i = 0; 4715 while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) { 4716 if (ctl->enable == 0 || ctl->ossmask != 0) { 4717 /* Mute disabled and mixer controllable controls. 4718 * Last will be initialized by mixer_init(). 4719 * This expected to reduce click on startup. */ 4720 hdaa_audio_ctl_amp_set(ctl, HDAA_AMP_MUTE_ALL, 0, 0); 4721 continue; 4722 } 4723 /* Init fixed controls to 0dB amplification. */ 4724 z = ctl->offset; 4725 if (z > ctl->step) 4726 z = ctl->step; 4727 hdaa_audio_ctl_amp_set(ctl, HDAA_AMP_MUTE_NONE, z, z); 4728 } 4729 } 4730 4731 static void 4732 hdaa_gpio_commit(struct hdaa_devinfo *devinfo) 4733 { 4734 uint32_t gdata, gmask, gdir; 4735 int i, numgpio; 4736 4737 numgpio = HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap); 4738 if (devinfo->gpio != 0 && numgpio != 0) { 4739 gdata = hda_command(devinfo->dev, 4740 HDA_CMD_GET_GPIO_DATA(0, devinfo->nid)); 4741 gmask = hda_command(devinfo->dev, 4742 HDA_CMD_GET_GPIO_ENABLE_MASK(0, devinfo->nid)); 4743 gdir = hda_command(devinfo->dev, 4744 HDA_CMD_GET_GPIO_DIRECTION(0, devinfo->nid)); 4745 for (i = 0; i < numgpio; i++) { 4746 if ((devinfo->gpio & HDAA_GPIO_MASK(i)) == 4747 HDAA_GPIO_SET(i)) { 4748 gdata |= (1 << i); 4749 gmask |= (1 << i); 4750 gdir |= (1 << i); 4751 } else if ((devinfo->gpio & HDAA_GPIO_MASK(i)) == 4752 HDAA_GPIO_CLEAR(i)) { 4753 gdata &= ~(1 << i); 4754 gmask |= (1 << i); 4755 gdir |= (1 << i); 4756 } else if ((devinfo->gpio & HDAA_GPIO_MASK(i)) == 4757 HDAA_GPIO_DISABLE(i)) { 4758 gmask &= ~(1 << i); 4759 } else if ((devinfo->gpio & HDAA_GPIO_MASK(i)) == 4760 HDAA_GPIO_INPUT(i)) { 4761 gmask |= (1 << i); 4762 gdir &= ~(1 << i); 4763 } 4764 } 4765 HDA_BOOTVERBOSE( 4766 device_printf(devinfo->dev, "GPIO commit\n"); 4767 ); 4768 hda_command(devinfo->dev, 4769 HDA_CMD_SET_GPIO_ENABLE_MASK(0, devinfo->nid, gmask)); 4770 hda_command(devinfo->dev, 4771 HDA_CMD_SET_GPIO_DIRECTION(0, devinfo->nid, gdir)); 4772 hda_command(devinfo->dev, 4773 HDA_CMD_SET_GPIO_DATA(0, devinfo->nid, gdata)); 4774 HDA_BOOTVERBOSE( 4775 hdaa_dump_gpio(devinfo); 4776 ); 4777 } 4778 } 4779 4780 static void 4781 hdaa_gpo_commit(struct hdaa_devinfo *devinfo) 4782 { 4783 uint32_t gdata; 4784 int i, numgpo; 4785 4786 numgpo = HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap); 4787 if (devinfo->gpo != 0 && numgpo != 0) { 4788 gdata = hda_command(devinfo->dev, 4789 HDA_CMD_GET_GPO_DATA(0, devinfo->nid)); 4790 for (i = 0; i < numgpo; i++) { 4791 if ((devinfo->gpio & HDAA_GPIO_MASK(i)) == 4792 HDAA_GPIO_SET(i)) { 4793 gdata |= (1 << i); 4794 } else if ((devinfo->gpio & HDAA_GPIO_MASK(i)) == 4795 HDAA_GPIO_CLEAR(i)) { 4796 gdata &= ~(1 << i); 4797 } 4798 } 4799 HDA_BOOTVERBOSE( 4800 device_printf(devinfo->dev, "GPO commit\n"); 4801 ); 4802 hda_command(devinfo->dev, 4803 HDA_CMD_SET_GPO_DATA(0, devinfo->nid, gdata)); 4804 HDA_BOOTVERBOSE( 4805 hdaa_dump_gpo(devinfo); 4806 ); 4807 } 4808 } 4809 4810 static void 4811 hdaa_audio_commit(struct hdaa_devinfo *devinfo) 4812 { 4813 struct hdaa_widget *w; 4814 int i; 4815 4816 /* Commit controls. */ 4817 hdaa_audio_ctl_commit(devinfo); 4818 4819 /* Commit selectors, pins and EAPD. */ 4820 for (i = 0; i < devinfo->nodecnt; i++) { 4821 w = &devinfo->widget[i]; 4822 if (w == NULL) 4823 continue; 4824 if (w->selconn == -1) 4825 w->selconn = 0; 4826 if (w->nconns > 0) 4827 hdaa_widget_connection_select(w, w->selconn); 4828 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX || 4829 w->waspin) { 4830 hda_command(devinfo->dev, 4831 HDA_CMD_SET_PIN_WIDGET_CTRL(0, w->nid, 4832 w->wclass.pin.ctrl)); 4833 } 4834 if (w->param.eapdbtl != HDA_INVALID) { 4835 uint32_t val; 4836 4837 val = w->param.eapdbtl; 4838 if (devinfo->quirks & 4839 HDAA_QUIRK_EAPDINV) 4840 val ^= HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD; 4841 hda_command(devinfo->dev, 4842 HDA_CMD_SET_EAPD_BTL_ENABLE(0, w->nid, 4843 val)); 4844 } 4845 } 4846 4847 hdaa_gpio_commit(devinfo); 4848 hdaa_gpo_commit(devinfo); 4849 } 4850 4851 static void 4852 hdaa_powerup(struct hdaa_devinfo *devinfo) 4853 { 4854 int i; 4855 4856 hda_command(devinfo->dev, 4857 HDA_CMD_SET_POWER_STATE(0, 4858 devinfo->nid, HDA_CMD_POWER_STATE_D0)); 4859 DELAY(100); 4860 4861 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 4862 hda_command(devinfo->dev, 4863 HDA_CMD_SET_POWER_STATE(0, 4864 i, HDA_CMD_POWER_STATE_D0)); 4865 } 4866 DELAY(1000); 4867 } 4868 4869 static int 4870 hdaa_pcmchannel_setup(struct hdaa_chan *ch) 4871 { 4872 struct hdaa_devinfo *devinfo = ch->devinfo; 4873 struct hdaa_audio_as *as = devinfo->as; 4874 struct hdaa_widget *w; 4875 uint32_t cap, fmtcap, pcmcap; 4876 int i, j, ret, channels, onlystereo; 4877 uint16_t pinset; 4878 4879 ch->caps = hdaa_caps; 4880 ch->caps.fmtlist = ch->fmtlist; 4881 ch->bit16 = 1; 4882 ch->bit32 = 0; 4883 ch->pcmrates[0] = 48000; 4884 ch->pcmrates[1] = 0; 4885 ch->stripecap = 0xff; 4886 4887 ret = 0; 4888 channels = 0; 4889 onlystereo = 1; 4890 pinset = 0; 4891 fmtcap = devinfo->supp_stream_formats; 4892 pcmcap = devinfo->supp_pcm_size_rate; 4893 4894 for (i = 0; i < 16; i++) { 4895 /* Check as is correct */ 4896 if (ch->as < 0) 4897 break; 4898 /* Cound only present DACs */ 4899 if (as[ch->as].dacs[ch->asindex][i] <= 0) 4900 continue; 4901 /* Ignore duplicates */ 4902 for (j = 0; j < ret; j++) { 4903 if (ch->io[j] == as[ch->as].dacs[ch->asindex][i]) 4904 break; 4905 } 4906 if (j < ret) 4907 continue; 4908 4909 w = hdaa_widget_get(devinfo, as[ch->as].dacs[ch->asindex][i]); 4910 if (w == NULL || w->enable == 0) 4911 continue; 4912 cap = w->param.supp_stream_formats; 4913 if (!HDA_PARAM_SUPP_STREAM_FORMATS_PCM(cap) && 4914 !HDA_PARAM_SUPP_STREAM_FORMATS_AC3(cap)) 4915 continue; 4916 /* Many CODECs does not declare AC3 support on SPDIF. 4917 I don't beleave that they doesn't support it! */ 4918 if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) 4919 cap |= HDA_PARAM_SUPP_STREAM_FORMATS_AC3_MASK; 4920 if (ret == 0) { 4921 fmtcap = cap; 4922 pcmcap = w->param.supp_pcm_size_rate; 4923 } else { 4924 fmtcap &= cap; 4925 pcmcap &= w->param.supp_pcm_size_rate; 4926 } 4927 ch->io[ret++] = as[ch->as].dacs[ch->asindex][i]; 4928 ch->stripecap &= w->wclass.conv.stripecap; 4929 /* Do not count redirection pin/dac channels. */ 4930 if (i == 15 && as[ch->as].hpredir >= 0) 4931 continue; 4932 channels += HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap) + 1; 4933 if (HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap) != 1) 4934 onlystereo = 0; 4935 pinset |= (1 << i); 4936 } 4937 ch->io[ret] = -1; 4938 ch->channels = channels; 4939 4940 if (as[ch->as].fakeredir) 4941 ret--; 4942 /* Standard speaks only about stereo pins and playback, ... */ 4943 if ((!onlystereo) || as[ch->as].mixed) 4944 pinset = 0; 4945 /* ..., but there it gives us info about speakers layout. */ 4946 as[ch->as].pinset = pinset; 4947 4948 ch->supp_stream_formats = fmtcap; 4949 ch->supp_pcm_size_rate = pcmcap; 4950 4951 /* 4952 * 8bit = 0 4953 * 16bit = 1 4954 * 20bit = 2 4955 * 24bit = 3 4956 * 32bit = 4 4957 */ 4958 if (ret > 0) { 4959 i = 0; 4960 if (HDA_PARAM_SUPP_STREAM_FORMATS_PCM(fmtcap)) { 4961 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16BIT(pcmcap)) 4962 ch->bit16 = 1; 4963 else if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8BIT(pcmcap)) 4964 ch->bit16 = 0; 4965 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_24BIT(pcmcap)) 4966 ch->bit32 = 3; 4967 else if (HDA_PARAM_SUPP_PCM_SIZE_RATE_20BIT(pcmcap)) 4968 ch->bit32 = 2; 4969 else if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32BIT(pcmcap)) 4970 ch->bit32 = 4; 4971 if (!(devinfo->quirks & HDAA_QUIRK_FORCESTEREO)) { 4972 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 1, 0); 4973 if (ch->bit32) 4974 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 1, 0); 4975 } 4976 if (channels >= 2) { 4977 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 2, 0); 4978 if (ch->bit32) 4979 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 2, 0); 4980 } 4981 if (channels >= 3 && !onlystereo) { 4982 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 3, 0); 4983 if (ch->bit32) 4984 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 3, 0); 4985 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 3, 1); 4986 if (ch->bit32) 4987 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 3, 1); 4988 } 4989 if (channels >= 4) { 4990 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 4, 0); 4991 if (ch->bit32) 4992 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 4, 0); 4993 if (!onlystereo) { 4994 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 4, 1); 4995 if (ch->bit32) 4996 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 4, 1); 4997 } 4998 } 4999 if (channels >= 5 && !onlystereo) { 5000 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 5, 0); 5001 if (ch->bit32) 5002 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 5, 0); 5003 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 5, 1); 5004 if (ch->bit32) 5005 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 5, 1); 5006 } 5007 if (channels >= 6) { 5008 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 6, 1); 5009 if (ch->bit32) 5010 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 6, 1); 5011 if (!onlystereo) { 5012 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 6, 0); 5013 if (ch->bit32) 5014 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 6, 0); 5015 } 5016 } 5017 if (channels >= 7 && !onlystereo) { 5018 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 7, 0); 5019 if (ch->bit32) 5020 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 7, 0); 5021 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 7, 1); 5022 if (ch->bit32) 5023 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 7, 1); 5024 } 5025 if (channels >= 8) { 5026 ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 8, 1); 5027 if (ch->bit32) 5028 ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 8, 1); 5029 } 5030 } 5031 if (HDA_PARAM_SUPP_STREAM_FORMATS_AC3(fmtcap)) { 5032 ch->fmtlist[i++] = SND_FORMAT(AFMT_AC3, 2, 0); 5033 if (channels >= 8) { 5034 ch->fmtlist[i++] = SND_FORMAT(AFMT_AC3, 8, 0); 5035 ch->fmtlist[i++] = SND_FORMAT(AFMT_AC3, 8, 1); 5036 } 5037 } 5038 ch->fmtlist[i] = 0; 5039 i = 0; 5040 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8KHZ(pcmcap)) 5041 ch->pcmrates[i++] = 8000; 5042 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_11KHZ(pcmcap)) 5043 ch->pcmrates[i++] = 11025; 5044 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16KHZ(pcmcap)) 5045 ch->pcmrates[i++] = 16000; 5046 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_22KHZ(pcmcap)) 5047 ch->pcmrates[i++] = 22050; 5048 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32KHZ(pcmcap)) 5049 ch->pcmrates[i++] = 32000; 5050 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_44KHZ(pcmcap)) 5051 ch->pcmrates[i++] = 44100; 5052 /* if (HDA_PARAM_SUPP_PCM_SIZE_RATE_48KHZ(pcmcap)) */ 5053 ch->pcmrates[i++] = 48000; 5054 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_88KHZ(pcmcap)) 5055 ch->pcmrates[i++] = 88200; 5056 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_96KHZ(pcmcap)) 5057 ch->pcmrates[i++] = 96000; 5058 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_176KHZ(pcmcap)) 5059 ch->pcmrates[i++] = 176400; 5060 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_192KHZ(pcmcap)) 5061 ch->pcmrates[i++] = 192000; 5062 /* if (HDA_PARAM_SUPP_PCM_SIZE_RATE_384KHZ(pcmcap)) */ 5063 ch->pcmrates[i] = 0; 5064 if (i > 0) { 5065 ch->caps.minspeed = ch->pcmrates[0]; 5066 ch->caps.maxspeed = ch->pcmrates[i - 1]; 5067 } 5068 } 5069 5070 return (ret); 5071 } 5072 5073 static void 5074 hdaa_prepare_pcms(struct hdaa_devinfo *devinfo) 5075 { 5076 struct hdaa_audio_as *as = devinfo->as; 5077 int i, j, k, apdev = 0, ardev = 0, dpdev = 0, drdev = 0; 5078 5079 for (i = 0; i < devinfo->ascnt; i++) { 5080 if (as[i].enable == 0) 5081 continue; 5082 if (as[i].dir == HDAA_CTL_IN) { 5083 if (as[i].digital) 5084 drdev++; 5085 else 5086 ardev++; 5087 } else { 5088 if (as[i].digital) 5089 dpdev++; 5090 else 5091 apdev++; 5092 } 5093 } 5094 devinfo->num_devs = 5095 max(ardev, apdev) + max(drdev, dpdev); 5096 devinfo->devs = 5097 (struct hdaa_pcm_devinfo *)malloc( 5098 devinfo->num_devs * sizeof(struct hdaa_pcm_devinfo), 5099 M_HDAA, M_ZERO | M_NOWAIT); 5100 if (devinfo->devs == NULL) { 5101 device_printf(devinfo->dev, 5102 "Unable to allocate memory for devices\n"); 5103 return; 5104 } 5105 for (i = 0; i < devinfo->num_devs; i++) { 5106 devinfo->devs[i].index = i; 5107 devinfo->devs[i].devinfo = devinfo; 5108 devinfo->devs[i].playas = -1; 5109 devinfo->devs[i].recas = -1; 5110 devinfo->devs[i].digital = 255; 5111 } 5112 for (i = 0; i < devinfo->ascnt; i++) { 5113 if (as[i].enable == 0) 5114 continue; 5115 for (j = 0; j < devinfo->num_devs; j++) { 5116 if (devinfo->devs[j].digital != 255 && 5117 (!devinfo->devs[j].digital) != 5118 (!as[i].digital)) 5119 continue; 5120 if (as[i].dir == HDAA_CTL_IN) { 5121 if (devinfo->devs[j].recas >= 0) 5122 continue; 5123 devinfo->devs[j].recas = i; 5124 } else { 5125 if (devinfo->devs[j].playas >= 0) 5126 continue; 5127 devinfo->devs[j].playas = i; 5128 } 5129 as[i].pdevinfo = &devinfo->devs[j]; 5130 for (k = 0; k < as[i].num_chans; k++) { 5131 devinfo->chans[as[i].chans[k]].pdevinfo = 5132 &devinfo->devs[j]; 5133 } 5134 devinfo->devs[j].digital = as[i].digital; 5135 break; 5136 } 5137 } 5138 } 5139 5140 static void 5141 hdaa_create_pcms(struct hdaa_devinfo *devinfo) 5142 { 5143 int i; 5144 5145 for (i = 0; i < devinfo->num_devs; i++) { 5146 struct hdaa_pcm_devinfo *pdevinfo = &devinfo->devs[i]; 5147 5148 pdevinfo->dev = device_add_child(devinfo->dev, "pcm", -1); 5149 device_set_ivars(pdevinfo->dev, (void *)pdevinfo); 5150 } 5151 } 5152 5153 static void 5154 hdaa_dump_ctls(struct hdaa_pcm_devinfo *pdevinfo, const char *banner, uint32_t flag) 5155 { 5156 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 5157 struct hdaa_audio_ctl *ctl; 5158 char buf[64]; 5159 int i, j, printed; 5160 5161 if (flag == 0) { 5162 flag = ~(SOUND_MASK_VOLUME | SOUND_MASK_PCM | 5163 SOUND_MASK_CD | SOUND_MASK_LINE | SOUND_MASK_RECLEV | 5164 SOUND_MASK_MIC | SOUND_MASK_SPEAKER | SOUND_MASK_IGAIN | 5165 SOUND_MASK_OGAIN | SOUND_MASK_IMIX | SOUND_MASK_MONITOR); 5166 } 5167 5168 for (j = 0; j < SOUND_MIXER_NRDEVICES; j++) { 5169 if ((flag & (1 << j)) == 0) 5170 continue; 5171 i = 0; 5172 printed = 0; 5173 while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) { 5174 if (ctl->enable == 0 || 5175 ctl->widget->enable == 0) 5176 continue; 5177 if (!((pdevinfo->playas >= 0 && 5178 ctl->widget->bindas == pdevinfo->playas) || 5179 (pdevinfo->recas >= 0 && 5180 ctl->widget->bindas == pdevinfo->recas) || 5181 (ctl->widget->bindas == -2 && pdevinfo->index == 0))) 5182 continue; 5183 if ((ctl->ossmask & (1 << j)) == 0) 5184 continue; 5185 5186 if (printed == 0) { 5187 device_printf(pdevinfo->dev, "\n"); 5188 if (banner != NULL) { 5189 device_printf(pdevinfo->dev, "%s", banner); 5190 } else { 5191 device_printf(pdevinfo->dev, "Unknown Ctl"); 5192 } 5193 printf(" (OSS: %s)", 5194 hdaa_audio_ctl_ossmixer_mask2allname(1 << j, 5195 buf, sizeof(buf))); 5196 if (pdevinfo->ossmask & (1 << j)) { 5197 printf(": %+d/%+ddB\n", 5198 pdevinfo->minamp[j] / 4, 5199 pdevinfo->maxamp[j] / 4); 5200 } else 5201 printf("\n"); 5202 device_printf(pdevinfo->dev, " |\n"); 5203 printed = 1; 5204 } 5205 device_printf(pdevinfo->dev, " +- ctl %2d (nid %3d %s", i, 5206 ctl->widget->nid, 5207 (ctl->ndir == HDAA_CTL_IN)?"in ":"out"); 5208 if (ctl->ndir == HDAA_CTL_IN && ctl->ndir == ctl->dir) 5209 printf(" %2d): ", ctl->index); 5210 else 5211 printf("): "); 5212 if (ctl->step > 0) { 5213 printf("%+d/%+ddB (%d steps)%s\n", 5214 MINQDB(ctl) / 4, 5215 MAXQDB(ctl) / 4, 5216 ctl->step + 1, 5217 ctl->mute?" + mute":""); 5218 } else 5219 printf("%s\n", ctl->mute?"mute":""); 5220 } 5221 } 5222 } 5223 5224 static void 5225 hdaa_dump_audio_formats(device_t dev, uint32_t fcap, uint32_t pcmcap) 5226 { 5227 uint32_t cap; 5228 5229 cap = fcap; 5230 if (cap != 0) { 5231 device_printf(dev, " Stream cap: 0x%08x\n", cap); 5232 device_printf(dev, " "); 5233 if (HDA_PARAM_SUPP_STREAM_FORMATS_AC3(cap)) 5234 printf(" AC3"); 5235 if (HDA_PARAM_SUPP_STREAM_FORMATS_FLOAT32(cap)) 5236 printf(" FLOAT32"); 5237 if (HDA_PARAM_SUPP_STREAM_FORMATS_PCM(cap)) 5238 printf(" PCM"); 5239 printf("\n"); 5240 } 5241 cap = pcmcap; 5242 if (cap != 0) { 5243 device_printf(dev, " PCM cap: 0x%08x\n", cap); 5244 device_printf(dev, " "); 5245 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8BIT(cap)) 5246 printf(" 8"); 5247 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16BIT(cap)) 5248 printf(" 16"); 5249 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_20BIT(cap)) 5250 printf(" 20"); 5251 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_24BIT(cap)) 5252 printf(" 24"); 5253 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32BIT(cap)) 5254 printf(" 32"); 5255 printf(" bits,"); 5256 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8KHZ(cap)) 5257 printf(" 8"); 5258 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_11KHZ(cap)) 5259 printf(" 11"); 5260 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16KHZ(cap)) 5261 printf(" 16"); 5262 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_22KHZ(cap)) 5263 printf(" 22"); 5264 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32KHZ(cap)) 5265 printf(" 32"); 5266 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_44KHZ(cap)) 5267 printf(" 44"); 5268 printf(" 48"); 5269 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_88KHZ(cap)) 5270 printf(" 88"); 5271 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_96KHZ(cap)) 5272 printf(" 96"); 5273 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_176KHZ(cap)) 5274 printf(" 176"); 5275 if (HDA_PARAM_SUPP_PCM_SIZE_RATE_192KHZ(cap)) 5276 printf(" 192"); 5277 printf(" KHz\n"); 5278 } 5279 } 5280 5281 static void 5282 hdaa_dump_pin(struct hdaa_widget *w) 5283 { 5284 uint32_t pincap; 5285 5286 pincap = w->wclass.pin.cap; 5287 5288 device_printf(w->devinfo->dev, " Pin cap: 0x%08x\n", pincap); 5289 device_printf(w->devinfo->dev, " "); 5290 if (HDA_PARAM_PIN_CAP_IMP_SENSE_CAP(pincap)) 5291 printf(" ISC"); 5292 if (HDA_PARAM_PIN_CAP_TRIGGER_REQD(pincap)) 5293 printf(" TRQD"); 5294 if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(pincap)) 5295 printf(" PDC"); 5296 if (HDA_PARAM_PIN_CAP_HEADPHONE_CAP(pincap)) 5297 printf(" HP"); 5298 if (HDA_PARAM_PIN_CAP_OUTPUT_CAP(pincap)) 5299 printf(" OUT"); 5300 if (HDA_PARAM_PIN_CAP_INPUT_CAP(pincap)) 5301 printf(" IN"); 5302 if (HDA_PARAM_PIN_CAP_BALANCED_IO_PINS(pincap)) 5303 printf(" BAL"); 5304 if (HDA_PARAM_PIN_CAP_HDMI(pincap)) 5305 printf(" HDMI"); 5306 if (HDA_PARAM_PIN_CAP_VREF_CTRL(pincap)) { 5307 printf(" VREF["); 5308 if (HDA_PARAM_PIN_CAP_VREF_CTRL_50(pincap)) 5309 printf(" 50"); 5310 if (HDA_PARAM_PIN_CAP_VREF_CTRL_80(pincap)) 5311 printf(" 80"); 5312 if (HDA_PARAM_PIN_CAP_VREF_CTRL_100(pincap)) 5313 printf(" 100"); 5314 if (HDA_PARAM_PIN_CAP_VREF_CTRL_GROUND(pincap)) 5315 printf(" GROUND"); 5316 if (HDA_PARAM_PIN_CAP_VREF_CTRL_HIZ(pincap)) 5317 printf(" HIZ"); 5318 printf(" ]"); 5319 } 5320 if (HDA_PARAM_PIN_CAP_EAPD_CAP(pincap)) 5321 printf(" EAPD"); 5322 if (HDA_PARAM_PIN_CAP_DP(pincap)) 5323 printf(" DP"); 5324 if (HDA_PARAM_PIN_CAP_HBR(pincap)) 5325 printf(" HBR"); 5326 printf("\n"); 5327 device_printf(w->devinfo->dev, " Pin config: 0x%08x\n", 5328 w->wclass.pin.config); 5329 device_printf(w->devinfo->dev, " Pin control: 0x%08x", w->wclass.pin.ctrl); 5330 if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_HPHN_ENABLE) 5331 printf(" HP"); 5332 if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE) 5333 printf(" IN"); 5334 if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE) 5335 printf(" OUT"); 5336 if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) { 5337 if ((w->wclass.pin.ctrl & 5338 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) == 0x03) 5339 printf(" HBR"); 5340 else if ((w->wclass.pin.ctrl & 5341 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) != 0) 5342 printf(" EPTs"); 5343 } else { 5344 if ((w->wclass.pin.ctrl & 5345 HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) != 0) 5346 printf(" VREFs"); 5347 } 5348 printf("\n"); 5349 } 5350 5351 static void 5352 hdaa_dump_pin_config(struct hdaa_widget *w, uint32_t conf) 5353 { 5354 5355 device_printf(w->devinfo->dev, "%2d %08x %-2d %-2d " 5356 "%-13s %-5s %-7s %-10s %-7s %d%s\n", 5357 w->nid, conf, 5358 HDA_CONFIG_DEFAULTCONF_ASSOCIATION(conf), 5359 HDA_CONFIG_DEFAULTCONF_SEQUENCE(conf), 5360 HDA_DEVS[HDA_CONFIG_DEFAULTCONF_DEVICE(conf)], 5361 HDA_CONNS[HDA_CONFIG_DEFAULTCONF_CONNECTIVITY(conf)], 5362 HDA_CONNECTORS[HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE(conf)], 5363 HDA_LOCS[HDA_CONFIG_DEFAULTCONF_LOCATION(conf)], 5364 HDA_COLORS[HDA_CONFIG_DEFAULTCONF_COLOR(conf)], 5365 HDA_CONFIG_DEFAULTCONF_MISC(conf), 5366 (w->enable == 0)?" DISA":""); 5367 } 5368 5369 static void 5370 hdaa_dump_pin_configs(struct hdaa_devinfo *devinfo) 5371 { 5372 struct hdaa_widget *w; 5373 int i; 5374 5375 device_printf(devinfo->dev, "nid 0x as seq " 5376 "device conn jack loc color misc\n"); 5377 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 5378 w = hdaa_widget_get(devinfo, i); 5379 if (w == NULL) 5380 continue; 5381 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 5382 continue; 5383 hdaa_dump_pin_config(w, w->wclass.pin.config); 5384 } 5385 } 5386 5387 static void 5388 hdaa_dump_amp(device_t dev, uint32_t cap, char *banner) 5389 { 5390 device_printf(dev, " %s amp: 0x%08x\n", banner, cap); 5391 device_printf(dev, " " 5392 "mute=%d step=%d size=%d offset=%d\n", 5393 HDA_PARAM_OUTPUT_AMP_CAP_MUTE_CAP(cap), 5394 HDA_PARAM_OUTPUT_AMP_CAP_NUMSTEPS(cap), 5395 HDA_PARAM_OUTPUT_AMP_CAP_STEPSIZE(cap), 5396 HDA_PARAM_OUTPUT_AMP_CAP_OFFSET(cap)); 5397 } 5398 5399 static void 5400 hdaa_dump_nodes(struct hdaa_devinfo *devinfo) 5401 { 5402 struct hdaa_widget *w, *cw; 5403 char buf[64]; 5404 int i, j; 5405 5406 device_printf(devinfo->dev, "\n"); 5407 device_printf(devinfo->dev, "Default Parameter\n"); 5408 device_printf(devinfo->dev, "-----------------\n"); 5409 hdaa_dump_audio_formats(devinfo->dev, 5410 devinfo->supp_stream_formats, 5411 devinfo->supp_pcm_size_rate); 5412 device_printf(devinfo->dev, " IN amp: 0x%08x\n", 5413 devinfo->inamp_cap); 5414 device_printf(devinfo->dev, " OUT amp: 0x%08x\n", 5415 devinfo->outamp_cap); 5416 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 5417 w = hdaa_widget_get(devinfo, i); 5418 if (w == NULL) { 5419 device_printf(devinfo->dev, "Ghost widget nid=%d\n", i); 5420 continue; 5421 } 5422 device_printf(devinfo->dev, "\n"); 5423 device_printf(devinfo->dev, " nid: %d%s\n", w->nid, 5424 (w->enable == 0) ? " [DISABLED]" : ""); 5425 device_printf(devinfo->dev, " Name: %s\n", w->name); 5426 device_printf(devinfo->dev, " Widget cap: 0x%08x\n", 5427 w->param.widget_cap); 5428 if (w->param.widget_cap & 0x0ee1) { 5429 device_printf(devinfo->dev, " "); 5430 if (HDA_PARAM_AUDIO_WIDGET_CAP_LR_SWAP(w->param.widget_cap)) 5431 printf(" LRSWAP"); 5432 if (HDA_PARAM_AUDIO_WIDGET_CAP_POWER_CTRL(w->param.widget_cap)) 5433 printf(" PWR"); 5434 if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) 5435 printf(" DIGITAL"); 5436 if (HDA_PARAM_AUDIO_WIDGET_CAP_UNSOL_CAP(w->param.widget_cap)) 5437 printf(" UNSOL"); 5438 if (HDA_PARAM_AUDIO_WIDGET_CAP_PROC_WIDGET(w->param.widget_cap)) 5439 printf(" PROC"); 5440 if (HDA_PARAM_AUDIO_WIDGET_CAP_STRIPE(w->param.widget_cap)) 5441 printf(" STRIPE(x%d)", 5442 1 << (fls(w->wclass.conv.stripecap) - 1)); 5443 j = HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap); 5444 if (j == 1) 5445 printf(" STEREO"); 5446 else if (j > 1) 5447 printf(" %dCH", j + 1); 5448 printf("\n"); 5449 } 5450 if (w->bindas != -1) { 5451 device_printf(devinfo->dev, " Association: %d (0x%08x)\n", 5452 w->bindas, w->bindseqmask); 5453 } 5454 if (w->ossmask != 0 || w->ossdev >= 0) { 5455 device_printf(devinfo->dev, " OSS: %s", 5456 hdaa_audio_ctl_ossmixer_mask2allname(w->ossmask, buf, sizeof(buf))); 5457 if (w->ossdev >= 0) 5458 printf(" (%s)", ossnames[w->ossdev]); 5459 printf("\n"); 5460 } 5461 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT || 5462 w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) { 5463 hdaa_dump_audio_formats(devinfo->dev, 5464 w->param.supp_stream_formats, 5465 w->param.supp_pcm_size_rate); 5466 } else if (w->type == 5467 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX || w->waspin) 5468 hdaa_dump_pin(w); 5469 if (w->param.eapdbtl != HDA_INVALID) 5470 device_printf(devinfo->dev, " EAPD: 0x%08x\n", 5471 w->param.eapdbtl); 5472 if (HDA_PARAM_AUDIO_WIDGET_CAP_OUT_AMP(w->param.widget_cap) && 5473 w->param.outamp_cap != 0) 5474 hdaa_dump_amp(devinfo->dev, w->param.outamp_cap, "Output"); 5475 if (HDA_PARAM_AUDIO_WIDGET_CAP_IN_AMP(w->param.widget_cap) && 5476 w->param.inamp_cap != 0) 5477 hdaa_dump_amp(devinfo->dev, w->param.inamp_cap, " Input"); 5478 if (w->nconns > 0) { 5479 device_printf(devinfo->dev, " connections: %d\n", w->nconns); 5480 device_printf(devinfo->dev, " |\n"); 5481 } 5482 for (j = 0; j < w->nconns; j++) { 5483 cw = hdaa_widget_get(devinfo, w->conns[j]); 5484 device_printf(devinfo->dev, " + %s<- nid=%d [%s]", 5485 (w->connsenable[j] == 0)?"[DISABLED] ":"", 5486 w->conns[j], (cw == NULL) ? "GHOST!" : cw->name); 5487 if (cw == NULL) 5488 printf(" [UNKNOWN]"); 5489 else if (cw->enable == 0) 5490 printf(" [DISABLED]"); 5491 if (w->nconns > 1 && w->selconn == j && w->type != 5492 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) 5493 printf(" (selected)"); 5494 printf("\n"); 5495 } 5496 } 5497 5498 } 5499 5500 static void 5501 hdaa_dump_dst_nid(struct hdaa_pcm_devinfo *pdevinfo, nid_t nid, int depth) 5502 { 5503 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 5504 struct hdaa_widget *w, *cw; 5505 char buf[64]; 5506 int i, printed = 0; 5507 5508 if (depth > HDA_PARSE_MAXDEPTH) 5509 return; 5510 5511 w = hdaa_widget_get(devinfo, nid); 5512 if (w == NULL || w->enable == 0) 5513 return; 5514 5515 if (depth == 0) 5516 device_printf(pdevinfo->dev, "%*s", 4, ""); 5517 else 5518 device_printf(pdevinfo->dev, "%*s + <- ", 4 + (depth - 1) * 7, ""); 5519 printf("nid=%d [%s]", w->nid, w->name); 5520 5521 if (depth > 0) { 5522 if (w->ossmask == 0) { 5523 printf("\n"); 5524 return; 5525 } 5526 printf(" [src: %s]", 5527 hdaa_audio_ctl_ossmixer_mask2allname( 5528 w->ossmask, buf, sizeof(buf))); 5529 if (w->ossdev >= 0) { 5530 printf("\n"); 5531 return; 5532 } 5533 } 5534 printf("\n"); 5535 5536 for (i = 0; i < w->nconns; i++) { 5537 if (w->connsenable[i] == 0) 5538 continue; 5539 cw = hdaa_widget_get(devinfo, w->conns[i]); 5540 if (cw == NULL || cw->enable == 0 || cw->bindas == -1) 5541 continue; 5542 if (printed == 0) { 5543 device_printf(pdevinfo->dev, "%*s |\n", 4 + (depth) * 7, ""); 5544 printed = 1; 5545 } 5546 hdaa_dump_dst_nid(pdevinfo, w->conns[i], depth + 1); 5547 } 5548 5549 } 5550 5551 static void 5552 hdaa_dump_dac(struct hdaa_pcm_devinfo *pdevinfo) 5553 { 5554 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 5555 struct hdaa_audio_as *as; 5556 struct hdaa_widget *w; 5557 int i, printed = 0; 5558 5559 if (pdevinfo->playas < 0) 5560 return; 5561 5562 as = &devinfo->as[pdevinfo->playas]; 5563 for (i = 0; i < 16; i++) { 5564 if (as->pins[i] <= 0) 5565 continue; 5566 w = hdaa_widget_get(devinfo, as->pins[i]); 5567 if (w == NULL || w->enable == 0) 5568 continue; 5569 if (printed == 0) { 5570 printed = 1; 5571 device_printf(pdevinfo->dev, "\n"); 5572 device_printf(pdevinfo->dev, "Playback:\n"); 5573 } 5574 device_printf(pdevinfo->dev, "\n"); 5575 hdaa_dump_dst_nid(pdevinfo, as->pins[i], 0); 5576 } 5577 } 5578 5579 static void 5580 hdaa_dump_adc(struct hdaa_pcm_devinfo *pdevinfo) 5581 { 5582 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 5583 struct hdaa_widget *w; 5584 int i; 5585 int printed = 0; 5586 5587 if (pdevinfo->recas < 0) 5588 return; 5589 5590 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 5591 w = hdaa_widget_get(devinfo, i); 5592 if (w == NULL || w->enable == 0) 5593 continue; 5594 if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) 5595 continue; 5596 if (w->bindas != pdevinfo->recas) 5597 continue; 5598 if (printed == 0) { 5599 printed = 1; 5600 device_printf(pdevinfo->dev, "\n"); 5601 device_printf(pdevinfo->dev, "Record:\n"); 5602 } 5603 device_printf(pdevinfo->dev, "\n"); 5604 hdaa_dump_dst_nid(pdevinfo, i, 0); 5605 } 5606 } 5607 5608 static void 5609 hdaa_dump_mix(struct hdaa_pcm_devinfo *pdevinfo) 5610 { 5611 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 5612 struct hdaa_widget *w; 5613 int i; 5614 int printed = 0; 5615 5616 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 5617 w = hdaa_widget_get(devinfo, i); 5618 if (w == NULL || w->enable == 0) 5619 continue; 5620 if (w->ossdev != SOUND_MIXER_IMIX) 5621 continue; 5622 if (w->bindas != pdevinfo->recas) 5623 continue; 5624 if (printed == 0) { 5625 printed = 1; 5626 device_printf(pdevinfo->dev, "\n"); 5627 device_printf(pdevinfo->dev, "Input Mix:\n"); 5628 } 5629 device_printf(pdevinfo->dev, "\n"); 5630 hdaa_dump_dst_nid(pdevinfo, i, 0); 5631 } 5632 } 5633 5634 static void 5635 hdaa_dump_pcmchannels(struct hdaa_pcm_devinfo *pdevinfo) 5636 { 5637 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 5638 nid_t *nids; 5639 int chid, i; 5640 5641 if (pdevinfo->playas >= 0) { 5642 device_printf(pdevinfo->dev, "\n"); 5643 device_printf(pdevinfo->dev, "Playback:\n"); 5644 device_printf(pdevinfo->dev, "\n"); 5645 chid = devinfo->as[pdevinfo->playas].chans[0]; 5646 hdaa_dump_audio_formats(pdevinfo->dev, 5647 devinfo->chans[chid].supp_stream_formats, 5648 devinfo->chans[chid].supp_pcm_size_rate); 5649 for (i = 0; i < devinfo->as[pdevinfo->playas].num_chans; i++) { 5650 chid = devinfo->as[pdevinfo->playas].chans[i]; 5651 device_printf(pdevinfo->dev, " DAC:"); 5652 for (nids = devinfo->chans[chid].io; *nids != -1; nids++) 5653 printf(" %d", *nids); 5654 printf("\n"); 5655 } 5656 } 5657 if (pdevinfo->recas >= 0) { 5658 device_printf(pdevinfo->dev, "\n"); 5659 device_printf(pdevinfo->dev, "Record:\n"); 5660 device_printf(pdevinfo->dev, "\n"); 5661 chid = devinfo->as[pdevinfo->recas].chans[0]; 5662 hdaa_dump_audio_formats(pdevinfo->dev, 5663 devinfo->chans[chid].supp_stream_formats, 5664 devinfo->chans[chid].supp_pcm_size_rate); 5665 for (i = 0; i < devinfo->as[pdevinfo->recas].num_chans; i++) { 5666 chid = devinfo->as[pdevinfo->recas].chans[i]; 5667 device_printf(pdevinfo->dev, " DAC:"); 5668 for (nids = devinfo->chans[chid].io; *nids != -1; nids++) 5669 printf(" %d", *nids); 5670 printf("\n"); 5671 } 5672 } 5673 } 5674 5675 static void 5676 hdaa_pindump(device_t dev) 5677 { 5678 struct hdaa_devinfo *devinfo = device_get_softc(dev); 5679 struct hdaa_widget *w; 5680 uint32_t res, pincap, delay; 5681 int i; 5682 5683 device_printf(dev, "Dumping AFG pins:\n"); 5684 device_printf(dev, "nid 0x as seq " 5685 "device conn jack loc color misc\n"); 5686 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 5687 w = hdaa_widget_get(devinfo, i); 5688 if (w == NULL || w->type != 5689 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 5690 continue; 5691 hdaa_dump_pin_config(w, w->wclass.pin.config); 5692 pincap = w->wclass.pin.cap; 5693 device_printf(dev, " Caps: %2s %3s %2s %4s %4s", 5694 HDA_PARAM_PIN_CAP_INPUT_CAP(pincap)?"IN":"", 5695 HDA_PARAM_PIN_CAP_OUTPUT_CAP(pincap)?"OUT":"", 5696 HDA_PARAM_PIN_CAP_HEADPHONE_CAP(pincap)?"HP":"", 5697 HDA_PARAM_PIN_CAP_EAPD_CAP(pincap)?"EAPD":"", 5698 HDA_PARAM_PIN_CAP_VREF_CTRL(pincap)?"VREF":""); 5699 if (HDA_PARAM_PIN_CAP_IMP_SENSE_CAP(pincap) || 5700 HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(pincap)) { 5701 if (HDA_PARAM_PIN_CAP_TRIGGER_REQD(pincap)) { 5702 delay = 0; 5703 hda_command(dev, 5704 HDA_CMD_SET_PIN_SENSE(0, w->nid, 0)); 5705 do { 5706 res = hda_command(dev, 5707 HDA_CMD_GET_PIN_SENSE(0, w->nid)); 5708 if (res != 0x7fffffff && res != 0xffffffff) 5709 break; 5710 DELAY(10); 5711 } while (++delay < 10000); 5712 } else { 5713 delay = 0; 5714 res = hda_command(dev, HDA_CMD_GET_PIN_SENSE(0, 5715 w->nid)); 5716 } 5717 printf(" Sense: 0x%08x (%sconnected%s)", res, 5718 (res & HDA_CMD_GET_PIN_SENSE_PRESENCE_DETECT) ? 5719 "" : "dis", 5720 (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap) && 5721 (res & HDA_CMD_GET_PIN_SENSE_ELD_VALID)) ? 5722 ", ELD valid" : ""); 5723 if (delay > 0) 5724 printf(" delay %dus", delay * 10); 5725 } 5726 printf("\n"); 5727 } 5728 device_printf(dev, 5729 "NumGPIO=%d NumGPO=%d NumGPI=%d GPIWake=%d GPIUnsol=%d\n", 5730 HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap), 5731 HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap), 5732 HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap), 5733 HDA_PARAM_GPIO_COUNT_GPI_WAKE(devinfo->gpio_cap), 5734 HDA_PARAM_GPIO_COUNT_GPI_UNSOL(devinfo->gpio_cap)); 5735 hdaa_dump_gpi(devinfo); 5736 hdaa_dump_gpio(devinfo); 5737 hdaa_dump_gpo(devinfo); 5738 } 5739 5740 static void 5741 hdaa_configure(device_t dev) 5742 { 5743 struct hdaa_devinfo *devinfo = device_get_softc(dev); 5744 struct hdaa_audio_ctl *ctl; 5745 int i; 5746 5747 HDA_BOOTHVERBOSE( 5748 device_printf(dev, "Applying built-in patches...\n"); 5749 ); 5750 hdaa_patch(devinfo); 5751 HDA_BOOTHVERBOSE( 5752 device_printf(dev, "Applying local patches...\n"); 5753 ); 5754 hdaa_local_patch(devinfo); 5755 hdaa_audio_postprocess(devinfo); 5756 HDA_BOOTHVERBOSE( 5757 device_printf(dev, "Parsing Ctls...\n"); 5758 ); 5759 hdaa_audio_ctl_parse(devinfo); 5760 HDA_BOOTHVERBOSE( 5761 device_printf(dev, "Disabling nonaudio...\n"); 5762 ); 5763 hdaa_audio_disable_nonaudio(devinfo); 5764 HDA_BOOTHVERBOSE( 5765 device_printf(dev, "Disabling useless...\n"); 5766 ); 5767 hdaa_audio_disable_useless(devinfo); 5768 HDA_BOOTVERBOSE( 5769 device_printf(dev, "Patched pins configuration:\n"); 5770 hdaa_dump_pin_configs(devinfo); 5771 ); 5772 HDA_BOOTHVERBOSE( 5773 device_printf(dev, "Parsing pin associations...\n"); 5774 ); 5775 hdaa_audio_as_parse(devinfo); 5776 HDA_BOOTHVERBOSE( 5777 device_printf(dev, "Building AFG tree...\n"); 5778 ); 5779 hdaa_audio_build_tree(devinfo); 5780 HDA_BOOTHVERBOSE( 5781 device_printf(dev, "Disabling unassociated " 5782 "widgets...\n"); 5783 ); 5784 hdaa_audio_disable_unas(devinfo); 5785 HDA_BOOTHVERBOSE( 5786 device_printf(dev, "Disabling nonselected " 5787 "inputs...\n"); 5788 ); 5789 hdaa_audio_disable_notselected(devinfo); 5790 HDA_BOOTHVERBOSE( 5791 device_printf(dev, "Disabling useless...\n"); 5792 ); 5793 hdaa_audio_disable_useless(devinfo); 5794 HDA_BOOTHVERBOSE( 5795 device_printf(dev, "Disabling " 5796 "crossassociatement connections...\n"); 5797 ); 5798 hdaa_audio_disable_crossas(devinfo); 5799 HDA_BOOTHVERBOSE( 5800 device_printf(dev, "Disabling useless...\n"); 5801 ); 5802 hdaa_audio_disable_useless(devinfo); 5803 HDA_BOOTHVERBOSE( 5804 device_printf(dev, "Binding associations to channels...\n"); 5805 ); 5806 hdaa_audio_bind_as(devinfo); 5807 HDA_BOOTHVERBOSE( 5808 device_printf(dev, "Assigning names to signal sources...\n"); 5809 ); 5810 hdaa_audio_assign_names(devinfo); 5811 HDA_BOOTHVERBOSE( 5812 device_printf(dev, "Preparing PCM devices...\n"); 5813 ); 5814 hdaa_prepare_pcms(devinfo); 5815 HDA_BOOTHVERBOSE( 5816 device_printf(dev, "Assigning mixers to the tree...\n"); 5817 ); 5818 hdaa_audio_assign_mixers(devinfo); 5819 HDA_BOOTHVERBOSE( 5820 device_printf(dev, "Preparing pin controls...\n"); 5821 ); 5822 hdaa_audio_prepare_pin_ctrl(devinfo); 5823 HDA_BOOTHVERBOSE( 5824 device_printf(dev, "AFG commit...\n"); 5825 ); 5826 hdaa_audio_commit(devinfo); 5827 HDA_BOOTHVERBOSE( 5828 device_printf(dev, "Applying direct built-in patches...\n"); 5829 ); 5830 hdaa_patch_direct(devinfo); 5831 HDA_BOOTHVERBOSE( 5832 device_printf(dev, "Pin sense init...\n"); 5833 ); 5834 hdaa_sense_init(devinfo); 5835 HDA_BOOTHVERBOSE( 5836 device_printf(dev, "Creating PCM devices...\n"); 5837 ); 5838 hdaa_create_pcms(devinfo); 5839 5840 HDA_BOOTVERBOSE( 5841 if (devinfo->quirks != 0) { 5842 device_printf(dev, "FG config/quirks:"); 5843 for (i = 0; i < HDAA_QUIRKS_TAB_LEN; i++) { 5844 if ((devinfo->quirks & 5845 hdaa_quirks_tab[i].value) == 5846 hdaa_quirks_tab[i].value) 5847 printf(" %s", hdaa_quirks_tab[i].key); 5848 } 5849 printf("\n"); 5850 } 5851 5852 device_printf(dev, "\n"); 5853 device_printf(dev, "+-------------------+\n"); 5854 device_printf(dev, "| DUMPING HDA NODES |\n"); 5855 device_printf(dev, "+-------------------+\n"); 5856 hdaa_dump_nodes(devinfo); 5857 ); 5858 5859 HDA_BOOTHVERBOSE( 5860 device_printf(dev, "\n"); 5861 device_printf(dev, "+------------------------+\n"); 5862 device_printf(dev, "| DUMPING HDA AMPLIFIERS |\n"); 5863 device_printf(dev, "+------------------------+\n"); 5864 device_printf(dev, "\n"); 5865 i = 0; 5866 while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) { 5867 device_printf(dev, "%3d: nid %3d %s (%s) index %d", i, 5868 (ctl->widget != NULL) ? ctl->widget->nid : -1, 5869 (ctl->ndir == HDAA_CTL_IN)?"in ":"out", 5870 (ctl->dir == HDAA_CTL_IN)?"in ":"out", 5871 ctl->index); 5872 if (ctl->childwidget != NULL) 5873 printf(" cnid %3d", ctl->childwidget->nid); 5874 else 5875 printf(" "); 5876 printf(" ossmask=0x%08x\n", 5877 ctl->ossmask); 5878 device_printf(dev, 5879 " mute: %d step: %3d size: %3d off: %3d%s\n", 5880 ctl->mute, ctl->step, ctl->size, ctl->offset, 5881 (ctl->enable == 0) ? " [DISABLED]" : 5882 ((ctl->ossmask == 0) ? " [UNUSED]" : "")); 5883 } 5884 ); 5885 5886 HDA_BOOTVERBOSE( 5887 device_printf(dev, "\n"); 5888 ); 5889 } 5890 5891 static void 5892 hdaa_unconfigure(device_t dev) 5893 { 5894 struct hdaa_devinfo *devinfo = device_get_softc(dev); 5895 struct hdaa_widget *w; 5896 int i, j; 5897 5898 HDA_BOOTHVERBOSE( 5899 device_printf(dev, "Pin sense deinit...\n"); 5900 ); 5901 hdaa_sense_deinit(devinfo); 5902 free(devinfo->ctl, M_HDAA); 5903 devinfo->ctl = NULL; 5904 devinfo->ctlcnt = 0; 5905 free(devinfo->as, M_HDAA); 5906 devinfo->as = NULL; 5907 devinfo->ascnt = 0; 5908 free(devinfo->devs, M_HDAA); 5909 devinfo->devs = NULL; 5910 devinfo->num_devs = 0; 5911 free(devinfo->chans, M_HDAA); 5912 devinfo->chans = NULL; 5913 devinfo->num_chans = 0; 5914 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 5915 w = hdaa_widget_get(devinfo, i); 5916 if (w == NULL) 5917 continue; 5918 w->enable = 1; 5919 w->selconn = -1; 5920 w->pflags = 0; 5921 w->bindas = -1; 5922 w->bindseqmask = 0; 5923 w->ossdev = -1; 5924 w->ossmask = 0; 5925 for (j = 0; j < w->nconns; j++) 5926 w->connsenable[j] = 1; 5927 if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 5928 w->wclass.pin.config = w->wclass.pin.newconf; 5929 if (w->eld != NULL) { 5930 w->eld_len = 0; 5931 free(w->eld, M_HDAA); 5932 w->eld = NULL; 5933 } 5934 } 5935 } 5936 5937 static int 5938 hdaa_sysctl_gpi_state(SYSCTL_HANDLER_ARGS) 5939 { 5940 struct hdaa_devinfo *devinfo = oidp->oid_arg1; 5941 device_t dev = devinfo->dev; 5942 char buf[256]; 5943 int n = 0, i, numgpi; 5944 uint32_t data = 0; 5945 5946 buf[0] = 0; 5947 hdaa_lock(devinfo); 5948 numgpi = HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap); 5949 if (numgpi > 0) { 5950 data = hda_command(dev, 5951 HDA_CMD_GET_GPI_DATA(0, devinfo->nid)); 5952 } 5953 hdaa_unlock(devinfo); 5954 for (i = 0; i < numgpi; i++) { 5955 n += snprintf(buf + n, sizeof(buf) - n, "%s%d=%d", 5956 n != 0 ? " " : "", i, ((data >> i) & 1)); 5957 } 5958 return (sysctl_handle_string(oidp, buf, sizeof(buf), req)); 5959 } 5960 5961 static int 5962 hdaa_sysctl_gpio_state(SYSCTL_HANDLER_ARGS) 5963 { 5964 struct hdaa_devinfo *devinfo = oidp->oid_arg1; 5965 device_t dev = devinfo->dev; 5966 char buf[256]; 5967 int n = 0, i, numgpio; 5968 uint32_t data = 0, enable = 0, dir = 0; 5969 5970 buf[0] = 0; 5971 hdaa_lock(devinfo); 5972 numgpio = HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap); 5973 if (numgpio > 0) { 5974 data = hda_command(dev, 5975 HDA_CMD_GET_GPIO_DATA(0, devinfo->nid)); 5976 enable = hda_command(dev, 5977 HDA_CMD_GET_GPIO_ENABLE_MASK(0, devinfo->nid)); 5978 dir = hda_command(dev, 5979 HDA_CMD_GET_GPIO_DIRECTION(0, devinfo->nid)); 5980 } 5981 hdaa_unlock(devinfo); 5982 for (i = 0; i < numgpio; i++) { 5983 n += snprintf(buf + n, sizeof(buf) - n, "%s%d=", 5984 n != 0 ? " " : "", i); 5985 if ((enable & (1 << i)) == 0) { 5986 n += snprintf(buf + n, sizeof(buf) - n, "disabled"); 5987 continue; 5988 } 5989 n += snprintf(buf + n, sizeof(buf) - n, "%sput(%d)", 5990 ((dir >> i) & 1) ? "out" : "in", ((data >> i) & 1)); 5991 } 5992 return (sysctl_handle_string(oidp, buf, sizeof(buf), req)); 5993 } 5994 5995 static int 5996 hdaa_sysctl_gpio_config(SYSCTL_HANDLER_ARGS) 5997 { 5998 struct hdaa_devinfo *devinfo = oidp->oid_arg1; 5999 char buf[256]; 6000 int error, n = 0, i, numgpio; 6001 uint32_t gpio, x; 6002 6003 gpio = devinfo->newgpio; 6004 numgpio = HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap); 6005 buf[0] = 0; 6006 for (i = 0; i < numgpio; i++) { 6007 x = (gpio & HDAA_GPIO_MASK(i)) >> HDAA_GPIO_SHIFT(i); 6008 n += snprintf(buf + n, sizeof(buf) - n, "%s%d=%s", 6009 n != 0 ? " " : "", i, HDA_GPIO_ACTIONS[x]); 6010 } 6011 error = sysctl_handle_string(oidp, buf, sizeof(buf), req); 6012 if (error != 0 || req->newptr == NULL) 6013 return (error); 6014 if (strncmp(buf, "0x", 2) == 0) 6015 gpio = strtol(buf + 2, NULL, 16); 6016 else 6017 gpio = hdaa_gpio_patch(gpio, buf); 6018 hdaa_lock(devinfo); 6019 devinfo->newgpio = devinfo->gpio = gpio; 6020 hdaa_gpio_commit(devinfo); 6021 hdaa_unlock(devinfo); 6022 return (0); 6023 } 6024 6025 static int 6026 hdaa_sysctl_gpo_state(SYSCTL_HANDLER_ARGS) 6027 { 6028 struct hdaa_devinfo *devinfo = oidp->oid_arg1; 6029 device_t dev = devinfo->dev; 6030 char buf[256]; 6031 int n = 0, i, numgpo; 6032 uint32_t data = 0; 6033 6034 buf[0] = 0; 6035 hdaa_lock(devinfo); 6036 numgpo = HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap); 6037 if (numgpo > 0) { 6038 data = hda_command(dev, 6039 HDA_CMD_GET_GPO_DATA(0, devinfo->nid)); 6040 } 6041 hdaa_unlock(devinfo); 6042 for (i = 0; i < numgpo; i++) { 6043 n += snprintf(buf + n, sizeof(buf) - n, "%s%d=%d", 6044 n != 0 ? " " : "", i, ((data >> i) & 1)); 6045 } 6046 return (sysctl_handle_string(oidp, buf, sizeof(buf), req)); 6047 } 6048 6049 static int 6050 hdaa_sysctl_gpo_config(SYSCTL_HANDLER_ARGS) 6051 { 6052 struct hdaa_devinfo *devinfo = oidp->oid_arg1; 6053 char buf[256]; 6054 int error, n = 0, i, numgpo; 6055 uint32_t gpo, x; 6056 6057 gpo = devinfo->newgpo; 6058 numgpo = HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap); 6059 buf[0] = 0; 6060 for (i = 0; i < numgpo; i++) { 6061 x = (gpo & HDAA_GPIO_MASK(i)) >> HDAA_GPIO_SHIFT(i); 6062 n += snprintf(buf + n, sizeof(buf) - n, "%s%d=%s", 6063 n != 0 ? " " : "", i, HDA_GPIO_ACTIONS[x]); 6064 } 6065 error = sysctl_handle_string(oidp, buf, sizeof(buf), req); 6066 if (error != 0 || req->newptr == NULL) 6067 return (error); 6068 if (strncmp(buf, "0x", 2) == 0) 6069 gpo = strtol(buf + 2, NULL, 16); 6070 else 6071 gpo = hdaa_gpio_patch(gpo, buf); 6072 hdaa_lock(devinfo); 6073 devinfo->newgpo = devinfo->gpo = gpo; 6074 hdaa_gpo_commit(devinfo); 6075 hdaa_unlock(devinfo); 6076 return (0); 6077 } 6078 6079 static int 6080 hdaa_sysctl_reconfig(SYSCTL_HANDLER_ARGS) 6081 { 6082 device_t dev; 6083 struct hdaa_devinfo *devinfo; 6084 int error, val; 6085 6086 dev = oidp->oid_arg1; 6087 devinfo = device_get_softc(dev); 6088 if (devinfo == NULL) 6089 return (EINVAL); 6090 val = 0; 6091 error = sysctl_handle_int(oidp, &val, 0, req); 6092 if (error != 0 || req->newptr == NULL || val == 0) 6093 return (error); 6094 6095 HDA_BOOTHVERBOSE( 6096 device_printf(dev, "Reconfiguration...\n"); 6097 ); 6098 if ((error = device_delete_children(dev)) != 0) 6099 return (error); 6100 hdaa_lock(devinfo); 6101 hdaa_unconfigure(dev); 6102 hdaa_configure(dev); 6103 hdaa_unlock(devinfo); 6104 bus_generic_attach(dev); 6105 HDA_BOOTHVERBOSE( 6106 device_printf(dev, "Reconfiguration done\n"); 6107 ); 6108 return (0); 6109 } 6110 6111 static int 6112 hdaa_suspend(device_t dev) 6113 { 6114 struct hdaa_devinfo *devinfo = device_get_softc(dev); 6115 int i; 6116 6117 HDA_BOOTHVERBOSE( 6118 device_printf(dev, "Suspend...\n"); 6119 ); 6120 hdaa_lock(devinfo); 6121 HDA_BOOTHVERBOSE( 6122 device_printf(dev, "Stop streams...\n"); 6123 ); 6124 for (i = 0; i < devinfo->num_chans; i++) { 6125 if (devinfo->chans[i].flags & HDAA_CHN_RUNNING) { 6126 devinfo->chans[i].flags |= HDAA_CHN_SUSPEND; 6127 hdaa_channel_stop(&devinfo->chans[i]); 6128 } 6129 } 6130 HDA_BOOTHVERBOSE( 6131 device_printf(dev, "Power down FG" 6132 " nid=%d to the D3 state...\n", 6133 devinfo->nid); 6134 ); 6135 hda_command(devinfo->dev, 6136 HDA_CMD_SET_POWER_STATE(0, 6137 devinfo->nid, HDA_CMD_POWER_STATE_D3)); 6138 callout_stop(&devinfo->poll_jack); 6139 hdaa_unlock(devinfo); 6140 callout_drain(&devinfo->poll_jack); 6141 HDA_BOOTHVERBOSE( 6142 device_printf(dev, "Suspend done\n"); 6143 ); 6144 return (0); 6145 } 6146 6147 static int 6148 hdaa_resume(device_t dev) 6149 { 6150 struct hdaa_devinfo *devinfo = device_get_softc(dev); 6151 int i; 6152 6153 HDA_BOOTHVERBOSE( 6154 device_printf(dev, "Resume...\n"); 6155 ); 6156 hdaa_lock(devinfo); 6157 HDA_BOOTHVERBOSE( 6158 device_printf(dev, "Power up audio FG nid=%d...\n", 6159 devinfo->nid); 6160 ); 6161 hdaa_powerup(devinfo); 6162 HDA_BOOTHVERBOSE( 6163 device_printf(dev, "AFG commit...\n"); 6164 ); 6165 hdaa_audio_commit(devinfo); 6166 HDA_BOOTHVERBOSE( 6167 device_printf(dev, "Applying direct built-in patches...\n"); 6168 ); 6169 hdaa_patch_direct(devinfo); 6170 HDA_BOOTHVERBOSE( 6171 device_printf(dev, "Pin sense init...\n"); 6172 ); 6173 hdaa_sense_init(devinfo); 6174 6175 hdaa_unlock(devinfo); 6176 for (i = 0; i < devinfo->num_devs; i++) { 6177 struct hdaa_pcm_devinfo *pdevinfo = &devinfo->devs[i]; 6178 HDA_BOOTHVERBOSE( 6179 device_printf(pdevinfo->dev, 6180 "OSS mixer reinitialization...\n"); 6181 ); 6182 if (mixer_reinit(pdevinfo->dev) == -1) 6183 device_printf(pdevinfo->dev, 6184 "unable to reinitialize the mixer\n"); 6185 } 6186 hdaa_lock(devinfo); 6187 HDA_BOOTHVERBOSE( 6188 device_printf(dev, "Start streams...\n"); 6189 ); 6190 for (i = 0; i < devinfo->num_chans; i++) { 6191 if (devinfo->chans[i].flags & HDAA_CHN_SUSPEND) { 6192 devinfo->chans[i].flags &= ~HDAA_CHN_SUSPEND; 6193 hdaa_channel_start(&devinfo->chans[i]); 6194 } 6195 } 6196 hdaa_unlock(devinfo); 6197 HDA_BOOTHVERBOSE( 6198 device_printf(dev, "Resume done\n"); 6199 ); 6200 return (0); 6201 } 6202 6203 static int 6204 hdaa_probe(device_t dev) 6205 { 6206 char buf[128]; 6207 6208 if (hda_get_node_type(dev) != HDA_PARAM_FCT_GRP_TYPE_NODE_TYPE_AUDIO) 6209 return (ENXIO); 6210 snprintf(buf, sizeof(buf), "%s Audio Function Group", 6211 device_get_desc(device_get_parent(dev))); 6212 device_set_desc_copy(dev, buf); 6213 return (BUS_PROBE_DEFAULT); 6214 } 6215 6216 static int 6217 hdaa_attach(device_t dev) 6218 { 6219 struct hdaa_devinfo *devinfo = device_get_softc(dev); 6220 uint32_t res; 6221 nid_t nid = hda_get_node_id(dev); 6222 6223 devinfo->dev = dev; 6224 devinfo->lock = HDAC_GET_MTX(device_get_parent(dev), dev); 6225 devinfo->nid = nid; 6226 devinfo->newquirks = -1; 6227 devinfo->newgpio = -1; 6228 devinfo->newgpo = -1; 6229 callout_init(&devinfo->poll_jack, CALLOUT_MPSAFE); 6230 devinfo->poll_ival = hz; 6231 6232 hdaa_lock(devinfo); 6233 res = hda_command(dev, 6234 HDA_CMD_GET_PARAMETER(0 , nid, HDA_PARAM_SUB_NODE_COUNT)); 6235 hdaa_unlock(devinfo); 6236 6237 devinfo->nodecnt = HDA_PARAM_SUB_NODE_COUNT_TOTAL(res); 6238 devinfo->startnode = HDA_PARAM_SUB_NODE_COUNT_START(res); 6239 devinfo->endnode = devinfo->startnode + devinfo->nodecnt; 6240 6241 HDA_BOOTVERBOSE( 6242 device_printf(dev, 6243 "Audio Function Group at nid=%d: %d subnodes %d-%d\n", 6244 nid, devinfo->nodecnt, 6245 devinfo->startnode, devinfo->endnode - 1); 6246 ); 6247 6248 if (devinfo->nodecnt > 0) 6249 devinfo->widget = (struct hdaa_widget *)malloc( 6250 sizeof(*(devinfo->widget)) * devinfo->nodecnt, M_HDAA, 6251 M_WAITOK | M_ZERO); 6252 else 6253 devinfo->widget = NULL; 6254 6255 hdaa_lock(devinfo); 6256 HDA_BOOTHVERBOSE( 6257 device_printf(dev, "Powering up...\n"); 6258 ); 6259 hdaa_powerup(devinfo); 6260 HDA_BOOTHVERBOSE( 6261 device_printf(dev, "Parsing audio FG...\n"); 6262 ); 6263 hdaa_audio_parse(devinfo); 6264 HDA_BOOTVERBOSE( 6265 device_printf(dev, "Original pins configuration:\n"); 6266 hdaa_dump_pin_configs(devinfo); 6267 ); 6268 hdaa_configure(dev); 6269 hdaa_unlock(devinfo); 6270 6271 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 6272 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 6273 "config", CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 6274 &devinfo->newquirks, sizeof(&devinfo->newquirks), 6275 hdaa_sysctl_quirks, "A", "Configuration options"); 6276 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 6277 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 6278 "gpi_state", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, 6279 devinfo, sizeof(devinfo), 6280 hdaa_sysctl_gpi_state, "A", "GPI state"); 6281 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 6282 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 6283 "gpio_state", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, 6284 devinfo, sizeof(devinfo), 6285 hdaa_sysctl_gpio_state, "A", "GPIO state"); 6286 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 6287 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 6288 "gpio_config", CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 6289 devinfo, sizeof(devinfo), 6290 hdaa_sysctl_gpio_config, "A", "GPIO configuration"); 6291 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 6292 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 6293 "gpo_state", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, 6294 devinfo, sizeof(devinfo), 6295 hdaa_sysctl_gpo_state, "A", "GPO state"); 6296 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 6297 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 6298 "gpo_config", CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 6299 devinfo, sizeof(devinfo), 6300 hdaa_sysctl_gpo_config, "A", "GPO configuration"); 6301 SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev), 6302 SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO, 6303 "reconfig", CTLTYPE_INT | CTLFLAG_RW, 6304 dev, sizeof(dev), 6305 hdaa_sysctl_reconfig, "I", "Reprocess configuration"); 6306 bus_generic_attach(dev); 6307 return (0); 6308 } 6309 6310 static int 6311 hdaa_detach(device_t dev) 6312 { 6313 struct hdaa_devinfo *devinfo = device_get_softc(dev); 6314 int error; 6315 6316 if ((error = device_delete_children(dev)) != 0) 6317 return (error); 6318 6319 hdaa_lock(devinfo); 6320 hdaa_unconfigure(dev); 6321 devinfo->poll_ival = 0; 6322 callout_stop(&devinfo->poll_jack); 6323 hdaa_unlock(devinfo); 6324 callout_drain(&devinfo->poll_jack); 6325 6326 free(devinfo->widget, M_HDAA); 6327 return (0); 6328 } 6329 6330 static int 6331 hdaa_print_child(device_t dev, device_t child) 6332 { 6333 struct hdaa_devinfo *devinfo = device_get_softc(dev); 6334 struct hdaa_pcm_devinfo *pdevinfo = 6335 (struct hdaa_pcm_devinfo *)device_get_ivars(child); 6336 struct hdaa_audio_as *as; 6337 int retval, first = 1, i; 6338 6339 retval = bus_print_child_header(dev, child); 6340 retval += printf(" at nid "); 6341 if (pdevinfo->playas >= 0) { 6342 as = &devinfo->as[pdevinfo->playas]; 6343 for (i = 0; i < 16; i++) { 6344 if (as->pins[i] <= 0) 6345 continue; 6346 retval += printf("%s%d", first ? "" : ",", as->pins[i]); 6347 first = 0; 6348 } 6349 } 6350 if (pdevinfo->recas >= 0) { 6351 if (pdevinfo->playas >= 0) { 6352 retval += printf(" and "); 6353 first = 1; 6354 } 6355 as = &devinfo->as[pdevinfo->recas]; 6356 for (i = 0; i < 16; i++) { 6357 if (as->pins[i] <= 0) 6358 continue; 6359 retval += printf("%s%d", first ? "" : ",", as->pins[i]); 6360 first = 0; 6361 } 6362 } 6363 retval += bus_print_child_footer(dev, child); 6364 6365 return (retval); 6366 } 6367 6368 static int 6369 hdaa_child_location_str(device_t dev, device_t child, char *buf, 6370 size_t buflen) 6371 { 6372 struct hdaa_devinfo *devinfo = device_get_softc(dev); 6373 struct hdaa_pcm_devinfo *pdevinfo = 6374 (struct hdaa_pcm_devinfo *)device_get_ivars(child); 6375 struct hdaa_audio_as *as; 6376 int first = 1, i, len = 0; 6377 6378 len += snprintf(buf + len, buflen - len, "nid="); 6379 if (pdevinfo->playas >= 0) { 6380 as = &devinfo->as[pdevinfo->playas]; 6381 for (i = 0; i < 16; i++) { 6382 if (as->pins[i] <= 0) 6383 continue; 6384 len += snprintf(buf + len, buflen - len, 6385 "%s%d", first ? "" : ",", as->pins[i]); 6386 first = 0; 6387 } 6388 } 6389 if (pdevinfo->recas >= 0) { 6390 as = &devinfo->as[pdevinfo->recas]; 6391 for (i = 0; i < 16; i++) { 6392 if (as->pins[i] <= 0) 6393 continue; 6394 len += snprintf(buf + len, buflen - len, 6395 "%s%d", first ? "" : ",", as->pins[i]); 6396 first = 0; 6397 } 6398 } 6399 return (0); 6400 } 6401 6402 static void 6403 hdaa_stream_intr(device_t dev, int dir, int stream) 6404 { 6405 struct hdaa_devinfo *devinfo = device_get_softc(dev); 6406 struct hdaa_chan *ch; 6407 int i; 6408 6409 for (i = 0; i < devinfo->num_chans; i++) { 6410 ch = &devinfo->chans[i]; 6411 if (!(ch->flags & HDAA_CHN_RUNNING)) 6412 continue; 6413 if (ch->dir == ((dir == 1) ? PCMDIR_PLAY : PCMDIR_REC) && 6414 ch->sid == stream) { 6415 hdaa_unlock(devinfo); 6416 chn_intr(ch->c); 6417 hdaa_lock(devinfo); 6418 } 6419 } 6420 } 6421 6422 static void 6423 hdaa_unsol_intr(device_t dev, uint32_t resp) 6424 { 6425 struct hdaa_devinfo *devinfo = device_get_softc(dev); 6426 struct hdaa_widget *w; 6427 int i, tag, flags; 6428 6429 HDA_BOOTHVERBOSE( 6430 device_printf(dev, "Unsolicited response %08x\n", resp); 6431 ); 6432 tag = resp >> 26; 6433 for (i = devinfo->startnode; i < devinfo->endnode; i++) { 6434 w = hdaa_widget_get(devinfo, i); 6435 if (w == NULL || w->enable == 0 || w->type != 6436 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 6437 continue; 6438 if (w->unsol != tag) 6439 continue; 6440 if (HDA_PARAM_PIN_CAP_DP(w->wclass.pin.cap) || 6441 HDA_PARAM_PIN_CAP_HDMI(w->wclass.pin.cap)) 6442 flags = resp & 0x03; 6443 else 6444 flags = 0x01; 6445 if (flags & 0x01) 6446 hdaa_presence_handler(w); 6447 if (flags & 0x02) 6448 hdaa_eld_handler(w); 6449 } 6450 } 6451 6452 static device_method_t hdaa_methods[] = { 6453 /* device interface */ 6454 DEVMETHOD(device_probe, hdaa_probe), 6455 DEVMETHOD(device_attach, hdaa_attach), 6456 DEVMETHOD(device_detach, hdaa_detach), 6457 DEVMETHOD(device_suspend, hdaa_suspend), 6458 DEVMETHOD(device_resume, hdaa_resume), 6459 /* Bus interface */ 6460 DEVMETHOD(bus_print_child, hdaa_print_child), 6461 DEVMETHOD(bus_child_location_str, hdaa_child_location_str), 6462 DEVMETHOD(hdac_stream_intr, hdaa_stream_intr), 6463 DEVMETHOD(hdac_unsol_intr, hdaa_unsol_intr), 6464 DEVMETHOD(hdac_pindump, hdaa_pindump), 6465 { 0, 0 } 6466 }; 6467 6468 static driver_t hdaa_driver = { 6469 "hdaa", 6470 hdaa_methods, 6471 sizeof(struct hdaa_devinfo), 6472 }; 6473 6474 static devclass_t hdaa_devclass; 6475 6476 DRIVER_MODULE(snd_hda, hdacc, hdaa_driver, hdaa_devclass, 0, 0); 6477 6478 static void 6479 hdaa_chan_formula(struct hdaa_devinfo *devinfo, int asid, 6480 char *buf, int buflen) 6481 { 6482 struct hdaa_audio_as *as; 6483 int c; 6484 6485 as = &devinfo->as[asid]; 6486 c = devinfo->chans[as->chans[0]].channels; 6487 if (c == 1) 6488 snprintf(buf, buflen, "mono"); 6489 else if (c == 2) { 6490 if (as->hpredir < 0) 6491 buf[0] = 0; 6492 else 6493 snprintf(buf, buflen, "2.0"); 6494 } else if (as->pinset == 0x0003) 6495 snprintf(buf, buflen, "3.1"); 6496 else if (as->pinset == 0x0005 || as->pinset == 0x0011) 6497 snprintf(buf, buflen, "4.0"); 6498 else if (as->pinset == 0x0007 || as->pinset == 0x0013) 6499 snprintf(buf, buflen, "5.1"); 6500 else if (as->pinset == 0x0017) 6501 snprintf(buf, buflen, "7.1"); 6502 else 6503 snprintf(buf, buflen, "%dch", c); 6504 if (as->hpredir >= 0) 6505 strlcat(buf, "+HP", buflen); 6506 } 6507 6508 static int 6509 hdaa_chan_type(struct hdaa_devinfo *devinfo, int asid) 6510 { 6511 struct hdaa_audio_as *as; 6512 struct hdaa_widget *w; 6513 int i, t = -1, t1; 6514 6515 as = &devinfo->as[asid]; 6516 for (i = 0; i < 16; i++) { 6517 w = hdaa_widget_get(devinfo, as->pins[i]); 6518 if (w == NULL || w->enable == 0 || w->type != 6519 HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) 6520 continue; 6521 t1 = HDA_CONFIG_DEFAULTCONF_DEVICE(w->wclass.pin.config); 6522 if (t == -1) 6523 t = t1; 6524 else if (t != t1) { 6525 t = -2; 6526 break; 6527 } 6528 } 6529 return (t); 6530 } 6531 6532 static int 6533 hdaa_sysctl_32bit(SYSCTL_HANDLER_ARGS) 6534 { 6535 struct hdaa_audio_as *as = (struct hdaa_audio_as *)oidp->oid_arg1; 6536 struct hdaa_pcm_devinfo *pdevinfo = as->pdevinfo; 6537 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 6538 struct hdaa_chan *ch; 6539 int error, val, i; 6540 uint32_t pcmcap; 6541 6542 ch = &devinfo->chans[as->chans[0]]; 6543 val = (ch->bit32 == 4) ? 32 : ((ch->bit32 == 3) ? 24 : 6544 ((ch->bit32 == 2) ? 20 : 0)); 6545 error = sysctl_handle_int(oidp, &val, 0, req); 6546 if (error != 0 || req->newptr == NULL) 6547 return (error); 6548 pcmcap = ch->supp_pcm_size_rate; 6549 if (val == 32 && HDA_PARAM_SUPP_PCM_SIZE_RATE_32BIT(pcmcap)) 6550 ch->bit32 = 4; 6551 else if (val == 24 && HDA_PARAM_SUPP_PCM_SIZE_RATE_24BIT(pcmcap)) 6552 ch->bit32 = 3; 6553 else if (val == 20 && HDA_PARAM_SUPP_PCM_SIZE_RATE_20BIT(pcmcap)) 6554 ch->bit32 = 2; 6555 else 6556 return (EINVAL); 6557 for (i = 1; i < as->num_chans; i++) 6558 devinfo->chans[as->chans[i]].bit32 = ch->bit32; 6559 return (0); 6560 } 6561 6562 static int 6563 hdaa_pcm_probe(device_t dev) 6564 { 6565 struct hdaa_pcm_devinfo *pdevinfo = 6566 (struct hdaa_pcm_devinfo *)device_get_ivars(dev); 6567 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 6568 char chans1[8], chans2[8]; 6569 char buf[128]; 6570 int loc1, loc2, t1, t2; 6571 6572 if (pdevinfo->playas >= 0) 6573 loc1 = devinfo->as[pdevinfo->playas].location; 6574 else 6575 loc1 = devinfo->as[pdevinfo->recas].location; 6576 if (pdevinfo->recas >= 0) 6577 loc2 = devinfo->as[pdevinfo->recas].location; 6578 else 6579 loc2 = loc1; 6580 if (loc1 != loc2) 6581 loc1 = -2; 6582 if (loc1 >= 0 && HDA_LOCS[loc1][0] == '0') 6583 loc1 = -2; 6584 chans1[0] = 0; 6585 chans2[0] = 0; 6586 t1 = t2 = -1; 6587 if (pdevinfo->playas >= 0) { 6588 hdaa_chan_formula(devinfo, pdevinfo->playas, 6589 chans1, sizeof(chans1)); 6590 t1 = hdaa_chan_type(devinfo, pdevinfo->playas); 6591 } 6592 if (pdevinfo->recas >= 0) { 6593 hdaa_chan_formula(devinfo, pdevinfo->recas, 6594 chans2, sizeof(chans2)); 6595 t2 = hdaa_chan_type(devinfo, pdevinfo->recas); 6596 } 6597 if (chans1[0] != 0 || chans2[0] != 0) { 6598 if (chans1[0] == 0 && pdevinfo->playas >= 0) 6599 snprintf(chans1, sizeof(chans1), "2.0"); 6600 else if (chans2[0] == 0 && pdevinfo->recas >= 0) 6601 snprintf(chans2, sizeof(chans2), "2.0"); 6602 if (strcmp(chans1, chans2) == 0) 6603 chans2[0] = 0; 6604 } 6605 if (t1 == -1) 6606 t1 = t2; 6607 else if (t2 == -1) 6608 t2 = t1; 6609 if (t1 != t2) 6610 t1 = -2; 6611 if (pdevinfo->digital) 6612 t1 = -2; 6613 snprintf(buf, sizeof(buf), "%s PCM (%s%s%s%s%s%s%s%s%s)", 6614 device_get_desc(device_get_parent(device_get_parent(dev))), 6615 loc1 >= 0 ? HDA_LOCS[loc1] : "", loc1 >= 0 ? " " : "", 6616 (pdevinfo->digital == 0x7)?"HDMI/DP": 6617 ((pdevinfo->digital == 0x5)?"DisplayPort": 6618 ((pdevinfo->digital == 0x3)?"HDMI": 6619 ((pdevinfo->digital)?"Digital":"Analog"))), 6620 chans1[0] ? " " : "", chans1, 6621 chans2[0] ? "/" : "", chans2, 6622 t1 >= 0 ? " " : "", t1 >= 0 ? HDA_DEVS[t1] : ""); 6623 device_set_desc_copy(dev, buf); 6624 return (BUS_PROBE_SPECIFIC); 6625 } 6626 6627 static int 6628 hdaa_pcm_attach(device_t dev) 6629 { 6630 struct hdaa_pcm_devinfo *pdevinfo = 6631 (struct hdaa_pcm_devinfo *)device_get_ivars(dev); 6632 struct hdaa_devinfo *devinfo = pdevinfo->devinfo; 6633 struct hdaa_audio_as *as; 6634 struct snddev_info *d; 6635 char status[SND_STATUSLEN]; 6636 int i; 6637 6638 pdevinfo->chan_size = pcm_getbuffersize(dev, 6639 HDA_BUFSZ_MIN, HDA_BUFSZ_DEFAULT, HDA_BUFSZ_MAX); 6640 6641 HDA_BOOTVERBOSE( 6642 device_printf(dev, "+--------------------------------------+\n"); 6643 device_printf(dev, "| DUMPING PCM Playback/Record Channels |\n"); 6644 device_printf(dev, "+--------------------------------------+\n"); 6645 hdaa_dump_pcmchannels(pdevinfo); 6646 device_printf(dev, "\n"); 6647 device_printf(dev, "+-------------------------------+\n"); 6648 device_printf(dev, "| DUMPING Playback/Record Paths |\n"); 6649 device_printf(dev, "+-------------------------------+\n"); 6650 hdaa_dump_dac(pdevinfo); 6651 hdaa_dump_adc(pdevinfo); 6652 hdaa_dump_mix(pdevinfo); 6653 device_printf(dev, "\n"); 6654 device_printf(dev, "+-------------------------+\n"); 6655 device_printf(dev, "| DUMPING Volume Controls |\n"); 6656 device_printf(dev, "+-------------------------+\n"); 6657 hdaa_dump_ctls(pdevinfo, "Master Volume", SOUND_MASK_VOLUME); 6658 hdaa_dump_ctls(pdevinfo, "PCM Volume", SOUND_MASK_PCM); 6659 hdaa_dump_ctls(pdevinfo, "CD Volume", SOUND_MASK_CD); 6660 hdaa_dump_ctls(pdevinfo, "Microphone Volume", SOUND_MASK_MIC); 6661 hdaa_dump_ctls(pdevinfo, "Microphone2 Volume", SOUND_MASK_MONITOR); 6662 hdaa_dump_ctls(pdevinfo, "Line-in Volume", SOUND_MASK_LINE); 6663 hdaa_dump_ctls(pdevinfo, "Speaker/Beep Volume", SOUND_MASK_SPEAKER); 6664 hdaa_dump_ctls(pdevinfo, "Recording Level", SOUND_MASK_RECLEV); 6665 hdaa_dump_ctls(pdevinfo, "Input Mix Level", SOUND_MASK_IMIX); 6666 hdaa_dump_ctls(pdevinfo, "Input Monitoring Level", SOUND_MASK_IGAIN); 6667 hdaa_dump_ctls(pdevinfo, NULL, 0); 6668 device_printf(dev, "\n"); 6669 ); 6670 6671 if (resource_int_value(device_get_name(dev), 6672 device_get_unit(dev), "blocksize", &i) == 0 && i > 0) { 6673 i &= HDA_BLK_ALIGN; 6674 if (i < HDA_BLK_MIN) 6675 i = HDA_BLK_MIN; 6676 pdevinfo->chan_blkcnt = pdevinfo->chan_size / i; 6677 i = 0; 6678 while (pdevinfo->chan_blkcnt >> i) 6679 i++; 6680 pdevinfo->chan_blkcnt = 1 << (i - 1); 6681 if (pdevinfo->chan_blkcnt < HDA_BDL_MIN) 6682 pdevinfo->chan_blkcnt = HDA_BDL_MIN; 6683 else if (pdevinfo->chan_blkcnt > HDA_BDL_MAX) 6684 pdevinfo->chan_blkcnt = HDA_BDL_MAX; 6685 } else 6686 pdevinfo->chan_blkcnt = HDA_BDL_DEFAULT; 6687 6688 /* 6689 * We don't register interrupt handler with snd_setup_intr 6690 * in pcm device. Mark pcm device as MPSAFE manually. 6691 */ 6692 pcm_setflags(dev, pcm_getflags(dev) | SD_F_MPSAFE); 6693 6694 HDA_BOOTHVERBOSE( 6695 device_printf(dev, "OSS mixer initialization...\n"); 6696 ); 6697 if (mixer_init(dev, &hdaa_audio_ctl_ossmixer_class, pdevinfo) != 0) 6698 device_printf(dev, "Can't register mixer\n"); 6699 6700 HDA_BOOTHVERBOSE( 6701 device_printf(dev, "Registering PCM channels...\n"); 6702 ); 6703 if (pcm_register(dev, pdevinfo, (pdevinfo->playas >= 0)?1:0, 6704 (pdevinfo->recas >= 0)?1:0) != 0) 6705 device_printf(dev, "Can't register PCM\n"); 6706 6707 pdevinfo->registered++; 6708 6709 d = device_get_softc(dev); 6710 if (pdevinfo->playas >= 0) { 6711 as = &devinfo->as[pdevinfo->playas]; 6712 for (i = 0; i < as->num_chans; i++) 6713 pcm_addchan(dev, PCMDIR_PLAY, &hdaa_channel_class, 6714 &devinfo->chans[as->chans[i]]); 6715 SYSCTL_ADD_PROC(&d->play_sysctl_ctx, 6716 SYSCTL_CHILDREN(d->play_sysctl_tree), OID_AUTO, 6717 "32bit", CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE, 6718 as, sizeof(as), hdaa_sysctl_32bit, "I", 6719 "Resolution of 32bit samples (20/24/32bit)"); 6720 } 6721 if (pdevinfo->recas >= 0) { 6722 as = &devinfo->as[pdevinfo->recas]; 6723 for (i = 0; i < as->num_chans; i++) 6724 pcm_addchan(dev, PCMDIR_REC, &hdaa_channel_class, 6725 &devinfo->chans[as->chans[i]]); 6726 SYSCTL_ADD_PROC(&d->rec_sysctl_ctx, 6727 SYSCTL_CHILDREN(d->rec_sysctl_tree), OID_AUTO, 6728 "32bit", CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE, 6729 as, sizeof(as), hdaa_sysctl_32bit, "I", 6730 "Resolution of 32bit samples (20/24/32bit)"); 6731 pdevinfo->autorecsrc = 2; 6732 resource_int_value(device_get_name(dev), device_get_unit(dev), 6733 "rec.autosrc", &pdevinfo->autorecsrc); 6734 SYSCTL_ADD_INT(&d->rec_sysctl_ctx, 6735 SYSCTL_CHILDREN(d->rec_sysctl_tree), OID_AUTO, 6736 "autosrc", CTLTYPE_INT | CTLFLAG_RW, 6737 &pdevinfo->autorecsrc, 0, 6738 "Automatic recording source selection"); 6739 } 6740 6741 if (pdevinfo->mixer != NULL) { 6742 hdaa_audio_ctl_set_defaults(pdevinfo); 6743 if (pdevinfo->recas >= 0) { 6744 as = &devinfo->as[pdevinfo->recas]; 6745 hdaa_lock(devinfo); 6746 hdaa_autorecsrc_handler(as, NULL); 6747 hdaa_unlock(devinfo); 6748 } 6749 } 6750 6751 snprintf(status, SND_STATUSLEN, "on %s %s", 6752 device_get_nameunit(device_get_parent(dev)), 6753 PCM_KLDSTRING(snd_hda)); 6754 pcm_setstatus(dev, status); 6755 6756 return (0); 6757 } 6758 6759 static int 6760 hdaa_pcm_detach(device_t dev) 6761 { 6762 struct hdaa_pcm_devinfo *pdevinfo = 6763 (struct hdaa_pcm_devinfo *)device_get_ivars(dev); 6764 int err; 6765 6766 if (pdevinfo->registered > 0) { 6767 err = pcm_unregister(dev); 6768 if (err != 0) 6769 return (err); 6770 } 6771 6772 return (0); 6773 } 6774 6775 static device_method_t hdaa_pcm_methods[] = { 6776 /* device interface */ 6777 DEVMETHOD(device_probe, hdaa_pcm_probe), 6778 DEVMETHOD(device_attach, hdaa_pcm_attach), 6779 DEVMETHOD(device_detach, hdaa_pcm_detach), 6780 { 0, 0 } 6781 }; 6782 6783 static driver_t hdaa_pcm_driver = { 6784 "pcm", 6785 hdaa_pcm_methods, 6786 PCM_SOFTC_SIZE, 6787 }; 6788 6789 DRIVER_MODULE(snd_hda_pcm, hdaa, hdaa_pcm_driver, pcm_devclass, 0, 0); 6790 MODULE_DEPEND(snd_hda, sound, SOUND_MINVER, SOUND_PREFVER, SOUND_MAXVER); 6791 MODULE_VERSION(snd_hda, 1); 6792