1 1.100 rin /* $NetBSD: ac97.c,v 1.100 2020/10/18 11:51:08 rin Exp $ */ 2 1.14 thorpej /* $OpenBSD: ac97.c,v 1.8 2000/07/19 09:01:35 csapuntz Exp $ */ 3 1.1 augustss 4 1.1 augustss /* 5 1.14 thorpej * Copyright (c) 1999, 2000 Constantine Sapuntzakis 6 1.1 augustss * 7 1.1 augustss * Author: Constantine Sapuntzakis <csapuntz (at) stanford.edu> 8 1.1 augustss * 9 1.1 augustss * Redistribution and use in source and binary forms, with or without 10 1.1 augustss * modification, are permitted provided that the following conditions 11 1.1 augustss * are met: 12 1.1 augustss * 1. Redistributions of source code must retain the above copyright 13 1.1 augustss * notice, this list of conditions and the following disclaimer. 14 1.1 augustss * 2. Redistributions in binary form must reproduce the above copyright 15 1.1 augustss * notice, this list of conditions and the following disclaimer in the 16 1.1 augustss * documentation and/or other materials provided with the distribution. 17 1.14 thorpej * 3. The name of the author may not be used to endorse or promote 18 1.14 thorpej * products derived from this software without specific prior written 19 1.14 thorpej * permission. 20 1.14 thorpej * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS 21 1.14 thorpej * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED 22 1.14 thorpej * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 23 1.14 thorpej * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE 24 1.14 thorpej * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 25 1.14 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT 26 1.14 thorpej * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR 27 1.14 thorpej * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF 28 1.14 thorpej * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 29 1.14 thorpej * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE 30 1.14 thorpej * USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH 31 1.14 thorpej * DAMAGE 32 1.1 augustss */ 33 1.1 augustss 34 1.1 augustss /* Partially inspired by FreeBSD's sys/dev/pcm/ac97.c. It came with 35 1.1 augustss the following copyright */ 36 1.1 augustss 37 1.1 augustss /* 38 1.1 augustss * Copyright (c) 1999 Cameron Grant <gandalf (at) vilnya.demon.co.uk> 39 1.1 augustss * All rights reserved. 40 1.1 augustss * 41 1.1 augustss * Redistribution and use in source and binary forms, with or without 42 1.1 augustss * modification, are permitted provided that the following conditions 43 1.1 augustss * are met: 44 1.1 augustss * 1. Redistributions of source code must retain the above copyright 45 1.1 augustss * notice, this list of conditions and the following disclaimer. 46 1.1 augustss * 2. Redistributions in binary form must reproduce the above copyright 47 1.1 augustss * notice, this list of conditions and the following disclaimer in the 48 1.1 augustss * documentation and/or other materials provided with the distribution. 49 1.1 augustss * 50 1.1 augustss * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 51 1.1 augustss * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 52 1.1 augustss * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 53 1.1 augustss * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 54 1.1 augustss * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 55 1.1 augustss * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 56 1.1 augustss * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 57 1.1 augustss * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 58 1.1 augustss * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 59 1.1 augustss * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 60 1.1 augustss * SUCH DAMAGE. 61 1.1 augustss * 62 1.1 augustss * $FreeBSD$ 63 1.1 augustss */ 64 1.21 lukem 65 1.21 lukem #include <sys/cdefs.h> 66 1.100 rin __KERNEL_RCSID(0, "$NetBSD: ac97.c,v 1.100 2020/10/18 11:51:08 rin Exp $"); 67 1.1 augustss 68 1.1 augustss #include <sys/param.h> 69 1.1 augustss #include <sys/systm.h> 70 1.1 augustss #include <sys/kernel.h> 71 1.1 augustss #include <sys/malloc.h> 72 1.1 augustss #include <sys/device.h> 73 1.68 jmcneill #include <sys/sysctl.h> 74 1.1 augustss 75 1.1 augustss #include <sys/audioio.h> 76 1.98 isaki #include <dev/audio/audio_if.h> 77 1.10 thorpej 78 1.10 thorpej #include <dev/ic/ac97reg.h> 79 1.9 thorpej #include <dev/ic/ac97var.h> 80 1.1 augustss 81 1.50 kent struct ac97_softc; 82 1.50 kent struct ac97_source_info; 83 1.60 thorpej static int ac97_mixer_get_port(struct ac97_codec_if *, mixer_ctrl_t *); 84 1.60 thorpej static int ac97_mixer_set_port(struct ac97_codec_if *, mixer_ctrl_t *); 85 1.65 kent static void ac97_detach(struct ac97_codec_if *); 86 1.82 kent static void ac97_lock(struct ac97_codec_if *); 87 1.82 kent static void ac97_unlock(struct ac97_codec_if *); 88 1.60 thorpej static int ac97_query_devinfo(struct ac97_codec_if *, mixer_devinfo_t *); 89 1.60 thorpej static int ac97_get_portnum_by_name(struct ac97_codec_if *, const char *, 90 1.60 thorpej const char *, const char *); 91 1.60 thorpej static void ac97_restore_shadow(struct ac97_codec_if *); 92 1.66 kent static int ac97_set_rate(struct ac97_codec_if *, int, u_int *); 93 1.60 thorpej static void ac97_set_clock(struct ac97_codec_if *, unsigned int); 94 1.66 kent static uint16_t ac97_get_extcaps(struct ac97_codec_if *); 95 1.60 thorpej static int ac97_add_port(struct ac97_softc *, 96 1.60 thorpej const struct ac97_source_info *); 97 1.60 thorpej static int ac97_str_equal(const char *, const char *); 98 1.60 thorpej static int ac97_check_capability(struct ac97_softc *, int); 99 1.60 thorpej static void ac97_setup_source_info(struct ac97_softc *); 100 1.66 kent static void ac97_read(struct ac97_softc *, uint8_t, uint16_t *); 101 1.60 thorpej static void ac97_setup_defaults(struct ac97_softc *); 102 1.66 kent static int ac97_write(struct ac97_softc *, uint8_t, uint16_t); 103 1.60 thorpej 104 1.60 thorpej static void ac97_ad198x_init(struct ac97_softc *); 105 1.60 thorpej static void ac97_alc650_init(struct ac97_softc *); 106 1.91 kiyohara static void ac97_ucb1400_init(struct ac97_softc *); 107 1.60 thorpej static void ac97_vt1616_init(struct ac97_softc *); 108 1.50 kent 109 1.68 jmcneill static int ac97_modem_offhook_set(struct ac97_softc *, int, int); 110 1.68 jmcneill static int ac97_sysctl_verify(SYSCTLFN_ARGS); 111 1.68 jmcneill 112 1.33 kent #define Ac97Nphone "phone" 113 1.72 jmcneill #define Ac97Nline1 "line1" 114 1.72 jmcneill #define Ac97Nline2 "line2" 115 1.72 jmcneill #define Ac97Nhandset "handset" 116 1.33 kent 117 1.50 kent static const struct audio_mixer_enum 118 1.84 christos ac97_on_off = { 2, { { { AudioNoff, 0 } , 0 }, 119 1.84 christos { { AudioNon, 0 } , 1 }, 120 1.88 gmcgarry { { "", 0 } , 0 }, 121 1.88 gmcgarry { { "", 0 } , 0 }, 122 1.88 gmcgarry { { "", 0 } , 0 }, 123 1.88 gmcgarry { { "", 0 } , 0 }, 124 1.88 gmcgarry { { "", 0 } , 0 }, 125 1.88 gmcgarry { { "", 0 } , 0 }, 126 1.88 gmcgarry { { "", 0 } , 0 }, 127 1.88 gmcgarry { { "", 0 } , 0 }, 128 1.88 gmcgarry { { "", 0 } , 0 }, 129 1.88 gmcgarry { { "", 0 } , 0 }, 130 1.88 gmcgarry { { "", 0 } , 0 }, 131 1.88 gmcgarry { { "", 0 } , 0 }, 132 1.88 gmcgarry { { "", 0 } , 0 }, 133 1.88 gmcgarry { { "", 0 } , 0 }, 134 1.88 gmcgarry { { "", 0 } , 0 }, 135 1.88 gmcgarry { { "", 0 } , 0 }, 136 1.88 gmcgarry { { "", 0 } , 0 }, 137 1.88 gmcgarry { { "", 0 } , 0 }, 138 1.88 gmcgarry { { "", 0 } , 0 }, 139 1.88 gmcgarry { { "", 0 } , 0 }, 140 1.88 gmcgarry { { "", 0 } , 0 }, 141 1.88 gmcgarry { { "", 0 } , 0 }, 142 1.88 gmcgarry { { "", 0 } , 0 }, 143 1.88 gmcgarry { { "", 0 } , 0 }, 144 1.88 gmcgarry { { "", 0 } , 0 }, 145 1.88 gmcgarry { { "", 0 } , 0 }, 146 1.88 gmcgarry { { "", 0 } , 0 }, 147 1.88 gmcgarry { { "", 0 } , 0 }, 148 1.88 gmcgarry { { "", 0 } , 0 }, 149 1.88 gmcgarry { { "", 0 } , 0 }, } }; 150 1.50 kent 151 1.50 kent static const struct audio_mixer_enum 152 1.84 christos ac97_mic_select = { 2, { { { AudioNmicrophone "0", 0 }, 0 }, 153 1.84 christos { { AudioNmicrophone "1", 0 }, 1 }, 154 1.88 gmcgarry { { "", 0 } , 0 }, 155 1.88 gmcgarry { { "", 0 } , 0 }, 156 1.88 gmcgarry { { "", 0 } , 0 }, 157 1.88 gmcgarry { { "", 0 } , 0 }, 158 1.88 gmcgarry { { "", 0 } , 0 }, 159 1.88 gmcgarry { { "", 0 } , 0 }, 160 1.88 gmcgarry { { "", 0 } , 0 }, 161 1.88 gmcgarry { { "", 0 } , 0 }, 162 1.88 gmcgarry { { "", 0 } , 0 }, 163 1.88 gmcgarry { { "", 0 } , 0 }, 164 1.88 gmcgarry { { "", 0 } , 0 }, 165 1.88 gmcgarry { { "", 0 } , 0 }, 166 1.88 gmcgarry { { "", 0 } , 0 }, 167 1.88 gmcgarry { { "", 0 } , 0 }, 168 1.88 gmcgarry { { "", 0 } , 0 }, 169 1.88 gmcgarry { { "", 0 } , 0 }, 170 1.88 gmcgarry { { "", 0 } , 0 }, 171 1.88 gmcgarry { { "", 0 } , 0 }, 172 1.88 gmcgarry { { "", 0 } , 0 }, 173 1.88 gmcgarry { { "", 0 } , 0 }, 174 1.88 gmcgarry { { "", 0 } , 0 }, 175 1.88 gmcgarry { { "", 0 } , 0 }, 176 1.88 gmcgarry { { "", 0 } , 0 }, 177 1.88 gmcgarry { { "", 0 } , 0 }, 178 1.88 gmcgarry { { "", 0 } , 0 }, 179 1.88 gmcgarry { { "", 0 } , 0 }, 180 1.88 gmcgarry { { "", 0 } , 0 }, 181 1.88 gmcgarry { { "", 0 } , 0 }, 182 1.88 gmcgarry { { "", 0 } , 0 }, 183 1.88 gmcgarry { { "", 0 } , 0 }, } }; 184 1.50 kent 185 1.50 kent static const struct audio_mixer_enum 186 1.84 christos ac97_mono_select = { 2, { { { AudioNmixerout, 0 }, 0 }, 187 1.84 christos { { AudioNmicrophone, 0 }, 1 }, 188 1.88 gmcgarry { { "", 0 } , 0 }, 189 1.88 gmcgarry { { "", 0 } , 0 }, 190 1.88 gmcgarry { { "", 0 } , 0 }, 191 1.88 gmcgarry { { "", 0 } , 0 }, 192 1.88 gmcgarry { { "", 0 } , 0 }, 193 1.88 gmcgarry { { "", 0 } , 0 }, 194 1.88 gmcgarry { { "", 0 } , 0 }, 195 1.88 gmcgarry { { "", 0 } , 0 }, 196 1.88 gmcgarry { { "", 0 } , 0 }, 197 1.88 gmcgarry { { "", 0 } , 0 }, 198 1.88 gmcgarry { { "", 0 } , 0 }, 199 1.88 gmcgarry { { "", 0 } , 0 }, 200 1.88 gmcgarry { { "", 0 } , 0 }, 201 1.88 gmcgarry { { "", 0 } , 0 }, 202 1.88 gmcgarry { { "", 0 } , 0 }, 203 1.88 gmcgarry { { "", 0 } , 0 }, 204 1.88 gmcgarry { { "", 0 } , 0 }, 205 1.88 gmcgarry { { "", 0 } , 0 }, 206 1.88 gmcgarry { { "", 0 } , 0 }, 207 1.88 gmcgarry { { "", 0 } , 0 }, 208 1.88 gmcgarry { { "", 0 } , 0 }, 209 1.88 gmcgarry { { "", 0 } , 0 }, 210 1.88 gmcgarry { { "", 0 } , 0 }, 211 1.88 gmcgarry { { "", 0 } , 0 }, 212 1.88 gmcgarry { { "", 0 } , 0 }, 213 1.88 gmcgarry { { "", 0 } , 0 }, 214 1.88 gmcgarry { { "", 0 } , 0 }, 215 1.88 gmcgarry { { "", 0 } , 0 }, 216 1.88 gmcgarry { { "", 0 } , 0 }, 217 1.88 gmcgarry { { "", 0 } , 0 }, } }; 218 1.50 kent 219 1.50 kent static const struct audio_mixer_enum 220 1.84 christos ac97_source = { 8, { { { AudioNmicrophone, 0 } , 0 }, 221 1.84 christos { { AudioNcd, 0 }, 1 }, 222 1.84 christos { { AudioNvideo, 0 }, 2 }, 223 1.84 christos { { AudioNaux, 0 }, 3 }, 224 1.84 christos { { AudioNline, 0 }, 4 }, 225 1.84 christos { { AudioNmixerout, 0 }, 5 }, 226 1.84 christos { { AudioNmixerout AudioNmono, 0 }, 6 }, 227 1.84 christos { { Ac97Nphone, 0 }, 7 }, 228 1.88 gmcgarry { { "", 0 } , 0 }, 229 1.88 gmcgarry { { "", 0 } , 0 }, 230 1.88 gmcgarry { { "", 0 } , 0 }, 231 1.88 gmcgarry { { "", 0 } , 0 }, 232 1.88 gmcgarry { { "", 0 } , 0 }, 233 1.88 gmcgarry { { "", 0 } , 0 }, 234 1.88 gmcgarry { { "", 0 } , 0 }, 235 1.88 gmcgarry { { "", 0 } , 0 }, 236 1.88 gmcgarry { { "", 0 } , 0 }, 237 1.88 gmcgarry { { "", 0 } , 0 }, 238 1.88 gmcgarry { { "", 0 } , 0 }, 239 1.88 gmcgarry { { "", 0 } , 0 }, 240 1.88 gmcgarry { { "", 0 } , 0 }, 241 1.88 gmcgarry { { "", 0 } , 0 }, 242 1.88 gmcgarry { { "", 0 } , 0 }, 243 1.88 gmcgarry { { "", 0 } , 0 }, 244 1.88 gmcgarry { { "", 0 } , 0 }, 245 1.88 gmcgarry { { "", 0 } , 0 }, 246 1.88 gmcgarry { { "", 0 } , 0 }, 247 1.88 gmcgarry { { "", 0 } , 0 }, 248 1.88 gmcgarry { { "", 0 } , 0 }, 249 1.88 gmcgarry { { "", 0 } , 0 }, 250 1.88 gmcgarry { { "", 0 } , 0 }, 251 1.88 gmcgarry { { "", 0 } , 0 }, } }; 252 1.1 augustss 253 1.19 erh /* 254 1.36 kent * Due to different values for each source that uses these structures, 255 1.19 erh * the ac97_query_devinfo function sets delta in mixer_devinfo_t using 256 1.19 erh * ac97_source_info.bits. 257 1.19 erh */ 258 1.50 kent static const struct audio_mixer_value 259 1.84 christos ac97_volume_stereo = { { AudioNvolume, 0 }, 2, 0 }; 260 1.1 augustss 261 1.50 kent static const struct audio_mixer_value 262 1.84 christos ac97_volume_mono = { { AudioNvolume, 0 }, 1, 0 }; 263 1.1 augustss 264 1.1 augustss #define WRAP(a) &a, sizeof(a) 265 1.1 augustss 266 1.69 jmcneill struct ac97_source_info { 267 1.18 jdolecek const char *class; 268 1.18 jdolecek const char *device; 269 1.18 jdolecek const char *qualifier; 270 1.33 kent 271 1.1 augustss int type; 272 1.18 jdolecek const void *info; 273 1.1 augustss int info_size; 274 1.1 augustss 275 1.66 kent uint8_t reg; 276 1.82 kent int32_t default_value; 277 1.83 kent unsigned bits:3; 278 1.83 kent unsigned ofs:4; 279 1.83 kent unsigned mute:1; 280 1.83 kent unsigned polarity:1; /* Does 0 == MAX or MIN */ 281 1.83 kent unsigned checkbits:1; 282 1.33 kent enum { 283 1.33 kent CHECK_NONE = 0, 284 1.33 kent CHECK_SURROUND, 285 1.33 kent CHECK_CENTER, 286 1.33 kent CHECK_LFE, 287 1.33 kent CHECK_HEADPHONES, 288 1.33 kent CHECK_TONE, 289 1.33 kent CHECK_MIC, 290 1.33 kent CHECK_LOUDNESS, 291 1.69 jmcneill CHECK_3D, 292 1.69 jmcneill CHECK_LINE1, 293 1.69 jmcneill CHECK_LINE2, 294 1.82 kent CHECK_HANDSET, 295 1.82 kent CHECK_SPDIF 296 1.33 kent } req_feature; 297 1.1 augustss 298 1.1 augustss int prev; 299 1.33 kent int next; 300 1.1 augustss int mixer_class; 301 1.69 jmcneill }; 302 1.69 jmcneill 303 1.69 jmcneill static const struct ac97_source_info audio_source_info[] = { 304 1.33 kent { AudioCinputs, NULL, NULL, 305 1.84 christos AUDIO_MIXER_CLASS, NULL, 0, 306 1.84 christos 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, }, 307 1.84 christos { AudioCoutputs, NULL, 0, 308 1.84 christos AUDIO_MIXER_CLASS, NULL, 0, 309 1.84 christos 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, }, 310 1.84 christos { AudioCrecord, NULL, 0, 311 1.84 christos AUDIO_MIXER_CLASS, NULL, 0, 312 1.84 christos 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, }, 313 1.1 augustss /* Stereo master volume*/ 314 1.84 christos { AudioCoutputs, AudioNmaster, 0, 315 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 316 1.84 christos AC97_REG_MASTER_VOLUME, 0x8000, 5, 0, 1, 0, 1, 0, 0, 0, 0, 317 1.1 augustss }, 318 1.1 augustss /* Mono volume */ 319 1.33 kent { AudioCoutputs, AudioNmono, NULL, 320 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 321 1.84 christos AC97_REG_MASTER_VOLUME_MONO, 0x8000, 6, 0, 1, 0, 1, 0, 0, 0, 0, 322 1.1 augustss }, 323 1.33 kent { AudioCoutputs, AudioNmono, AudioNsource, 324 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_mono_select), 325 1.84 christos AC97_REG_GP, 0x0000, 1, 9, 0, 0, 0, 0, 0, 0, 0, 326 1.1 augustss }, 327 1.1 augustss /* Headphone volume */ 328 1.33 kent { AudioCoutputs, AudioNheadphone, NULL, 329 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 330 1.84 christos AC97_REG_HEADPHONE_VOLUME, 0x8000, 5, 0, 1, 0, 1, CHECK_HEADPHONES, 0, 0, 0, 331 1.33 kent }, 332 1.33 kent /* Surround volume - logic hard coded for mute */ 333 1.33 kent { AudioCoutputs, AudioNsurround, NULL, 334 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 335 1.84 christos AC97_REG_SURR_MASTER, 0x8080, 5, 0, 1, 0, 1, CHECK_SURROUND, 0, 0, 0 336 1.33 kent }, 337 1.33 kent /* Center volume*/ 338 1.33 kent { AudioCoutputs, AudioNcenter, NULL, 339 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 340 1.84 christos AC97_REG_CENTER_LFE_MASTER, 0x8080, 5, 0, 0, 0, 1, CHECK_CENTER, 0, 0, 0 341 1.33 kent }, 342 1.33 kent { AudioCoutputs, AudioNcenter, AudioNmute, 343 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 344 1.84 christos AC97_REG_CENTER_LFE_MASTER, 0x8080, 1, 7, 0, 0, 0, CHECK_CENTER, 0, 0, 0 345 1.33 kent }, 346 1.33 kent /* LFE volume*/ 347 1.33 kent { AudioCoutputs, AudioNlfe, NULL, 348 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 349 1.84 christos AC97_REG_CENTER_LFE_MASTER, 0x8080, 5, 8, 0, 0, 1, CHECK_LFE, 0, 0, 0 350 1.33 kent }, 351 1.33 kent { AudioCoutputs, AudioNlfe, AudioNmute, 352 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 353 1.84 christos AC97_REG_CENTER_LFE_MASTER, 0x8080, 1, 15, 0, 0, 0, CHECK_LFE, 0, 0, 0 354 1.1 augustss }, 355 1.63 kent /* Tone - bass */ 356 1.63 kent { AudioCoutputs, AudioNbass, NULL, 357 1.63 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 358 1.84 christos AC97_REG_MASTER_TONE, 0x0f0f, 4, 8, 0, 0, 0, CHECK_TONE, 0, 0, 0 359 1.63 kent }, 360 1.63 kent /* Tone - treble */ 361 1.63 kent { AudioCoutputs, AudioNtreble, NULL, 362 1.63 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 363 1.84 christos AC97_REG_MASTER_TONE, 0x0f0f, 4, 0, 0, 0, 0, CHECK_TONE, 0, 0, 0 364 1.1 augustss }, 365 1.1 augustss /* PC Beep Volume */ 366 1.33 kent { AudioCinputs, AudioNspeaker, NULL, 367 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 368 1.84 christos AC97_REG_PCBEEP_VOLUME, 0x0000, 4, 1, 1, 0, 0, 0, 0, 0, 0, 369 1.1 augustss }, 370 1.33 kent 371 1.1 augustss /* Phone */ 372 1.33 kent { AudioCinputs, Ac97Nphone, NULL, 373 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 374 1.84 christos AC97_REG_PHONE_VOLUME, 0x8008, 5, 0, 1, 0, 0, 0, 0, 0, 0, 375 1.1 augustss }, 376 1.1 augustss /* Mic Volume */ 377 1.33 kent { AudioCinputs, AudioNmicrophone, NULL, 378 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 379 1.84 christos AC97_REG_MIC_VOLUME, 0x8008, 5, 0, 1, 0, 0, 0, 0, 0, 0, 380 1.1 augustss }, 381 1.33 kent { AudioCinputs, AudioNmicrophone, AudioNpreamp, 382 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 383 1.84 christos AC97_REG_MIC_VOLUME, 0x8008, 1, 6, 0, 0, 0, 0, 0, 0, 0, 384 1.1 augustss }, 385 1.33 kent { AudioCinputs, AudioNmicrophone, AudioNsource, 386 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_mic_select), 387 1.84 christos AC97_REG_GP, 0x0000, 1, 8, 0, 0, 0, 0, 0, 0, 0, 388 1.1 augustss }, 389 1.1 augustss /* Line in Volume */ 390 1.33 kent { AudioCinputs, AudioNline, NULL, 391 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 392 1.84 christos AC97_REG_LINEIN_VOLUME, 0x8808, 5, 0, 1, 0, 0, 0, 0, 0, 0, 393 1.1 augustss }, 394 1.1 augustss /* CD Volume */ 395 1.33 kent { AudioCinputs, AudioNcd, NULL, 396 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 397 1.84 christos AC97_REG_CD_VOLUME, 0x8808, 5, 0, 1, 0, 0, 0, 0, 0, 0, 398 1.1 augustss }, 399 1.1 augustss /* Video Volume */ 400 1.33 kent { AudioCinputs, AudioNvideo, NULL, 401 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 402 1.84 christos AC97_REG_VIDEO_VOLUME, 0x8808, 5, 0, 1, 0, 0, 0, 0, 0, 0, 403 1.1 augustss }, 404 1.1 augustss /* AUX volume */ 405 1.33 kent { AudioCinputs, AudioNaux, NULL, 406 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 407 1.84 christos AC97_REG_AUX_VOLUME, 0x8808, 5, 0, 1, 0, 0, 0, 0, 0, 0, 408 1.1 augustss }, 409 1.1 augustss /* PCM out volume */ 410 1.33 kent { AudioCinputs, AudioNdac, NULL, 411 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 412 1.84 christos AC97_REG_PCMOUT_VOLUME, 0x8808, 5, 0, 1, 0, 0, 0, 0, 0, 0, 413 1.1 augustss }, 414 1.1 augustss /* Record Source - some logic for this is hard coded - see below */ 415 1.33 kent { AudioCrecord, AudioNsource, NULL, 416 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_source), 417 1.84 christos AC97_REG_RECORD_SELECT, 0x0000, 3, 0, 0, 0, 0, 0, 0, 0, 0, 418 1.1 augustss }, 419 1.1 augustss /* Record Gain */ 420 1.33 kent { AudioCrecord, AudioNvolume, NULL, 421 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_stereo), 422 1.84 christos AC97_REG_RECORD_GAIN, 0x8000, 4, 0, 1, 1, 0, 0, 0, 0, 0, 423 1.1 augustss }, 424 1.1 augustss /* Record Gain mic */ 425 1.33 kent { AudioCrecord, AudioNmicrophone, NULL, 426 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 427 1.84 christos AC97_REG_RECORD_GAIN_MIC, 0x8000, 4, 0, 1, 1, 0, CHECK_MIC, 0, 0, 0 428 1.1 augustss }, 429 1.1 augustss /* */ 430 1.33 kent { AudioCoutputs, AudioNloudness, NULL, 431 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 432 1.84 christos AC97_REG_GP, 0x0000, 1, 12, 0, 0, 0, CHECK_LOUDNESS, 0, 0, 0 433 1.33 kent }, 434 1.33 kent { AudioCoutputs, AudioNspatial, NULL, 435 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 436 1.84 christos AC97_REG_GP, 0x0000, 1, 13, 0, 1, 0, CHECK_3D, 0, 0, 0 437 1.33 kent }, 438 1.33 kent { AudioCoutputs, AudioNspatial, "center", 439 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 440 1.84 christos AC97_REG_3D_CONTROL, 0x0000, 4, 8, 0, 1, 0, CHECK_3D, 0, 0, 0 441 1.33 kent }, 442 1.33 kent { AudioCoutputs, AudioNspatial, "depth", 443 1.33 kent AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 444 1.84 christos AC97_REG_3D_CONTROL, 0x0000, 4, 0, 0, 1, 0, CHECK_3D, 0, 0, 0 445 1.1 augustss }, 446 1.1 augustss 447 1.82 kent /* SPDIF */ 448 1.82 kent { "spdif", NULL, NULL, 449 1.82 kent AUDIO_MIXER_CLASS, NULL, 0, 450 1.84 christos 0, 0, 0, 0, 0, 0, 0, CHECK_SPDIF, 0, 0, 0 451 1.84 christos }, 452 1.82 kent { "spdif", "enable", NULL, 453 1.82 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 454 1.84 christos AC97_REG_EXT_AUDIO_CTRL, -1, 1, 2, 0, 0, 0, CHECK_SPDIF, 0, 0, 0 455 1.84 christos }, 456 1.82 kent 457 1.1 augustss /* Missing features: Simulated Stereo, POP, Loopback mode */ 458 1.60 thorpej }; 459 1.1 augustss 460 1.69 jmcneill static const struct ac97_source_info modem_source_info[] = { 461 1.69 jmcneill /* Classes */ 462 1.72 jmcneill { AudioCinputs, NULL, NULL, 463 1.84 christos AUDIO_MIXER_CLASS, NULL, 0, 464 1.84 christos 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, }, 465 1.72 jmcneill { AudioCoutputs, NULL, NULL, 466 1.84 christos AUDIO_MIXER_CLASS, NULL, 0, 467 1.84 christos 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, }, 468 1.82 kent { AudioCinputs, Ac97Nline1, NULL, 469 1.69 jmcneill AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 470 1.84 christos AC97_REG_LINE1_LEVEL, 0x8080, 4, 0, 0, 1, 0, CHECK_LINE1, 0, 0, 0 471 1.69 jmcneill }, 472 1.72 jmcneill { AudioCoutputs, Ac97Nline1, NULL, 473 1.69 jmcneill AUDIO_MIXER_VALUE, WRAP(ac97_volume_mono), 474 1.84 christos AC97_REG_LINE1_LEVEL, 0x8080, 4, 8, 0, 1, 0, CHECK_LINE1, 0, 0, 0 475 1.69 jmcneill }, 476 1.72 jmcneill { AudioCinputs, Ac97Nline1, AudioNmute, 477 1.69 jmcneill AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 478 1.84 christos AC97_REG_LINE1_LEVEL, 0x8080, 1, 7, 0, 0, 0, CHECK_LINE1, 0, 0, 0 479 1.69 jmcneill }, 480 1.72 jmcneill { AudioCoutputs, Ac97Nline1, AudioNmute, 481 1.69 jmcneill AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 482 1.84 christos AC97_REG_LINE1_LEVEL, 0x8080, 1, 15, 0, 0, 0, CHECK_LINE1, 0, 0, 0 483 1.69 jmcneill }, 484 1.69 jmcneill }; 485 1.69 jmcneill 486 1.69 jmcneill #define AUDIO_SOURCE_INFO_SIZE \ 487 1.69 jmcneill (sizeof(audio_source_info)/sizeof(audio_source_info[0])) 488 1.69 jmcneill #define MODEM_SOURCE_INFO_SIZE \ 489 1.69 jmcneill (sizeof(modem_source_info)/sizeof(modem_source_info[0])) 490 1.71 jmcneill #define SOURCE_INFO_SIZE(as) ((as)->type == AC97_CODEC_TYPE_MODEM ? \ 491 1.82 kent MODEM_SOURCE_INFO_SIZE : AUDIO_SOURCE_INFO_SIZE) 492 1.1 augustss 493 1.1 augustss /* 494 1.85 alc * Check out http://www.intel.com/support/motherboards/desktop/sb/cs-025406.htm for 495 1.85 alc * AC'97 Component Specification 496 1.1 augustss */ 497 1.1 augustss 498 1.1 augustss struct ac97_softc { 499 1.28 kent /* ac97_codec_if must be at the first of ac97_softc. */ 500 1.14 thorpej struct ac97_codec_if codec_if; 501 1.1 augustss 502 1.14 thorpej struct ac97_host_if *host_if; 503 1.1 augustss 504 1.92 jmcneill kmutex_t *lock; 505 1.92 jmcneill 506 1.69 jmcneill #define AUDIO_MAX_SOURCES (2 * AUDIO_SOURCE_INFO_SIZE) 507 1.69 jmcneill #define MODEM_MAX_SOURCES (2 * MODEM_SOURCE_INFO_SIZE) 508 1.69 jmcneill struct ac97_source_info audio_source_info[AUDIO_MAX_SOURCES]; 509 1.69 jmcneill struct ac97_source_info modem_source_info[MODEM_MAX_SOURCES]; 510 1.69 jmcneill struct ac97_source_info *source_info; 511 1.1 augustss int num_source_info; 512 1.14 thorpej 513 1.14 thorpej enum ac97_host_flags host_flags; 514 1.28 kent unsigned int ac97_clock; /* usually 48000 */ 515 1.28 kent #define AC97_STANDARD_CLOCK 48000U 516 1.74 scw uint16_t power_all; 517 1.80 jmcneill uint16_t power_reg; /* -> AC97_REG_POWER */ 518 1.66 kent uint16_t caps; /* -> AC97_REG_RESET */ 519 1.66 kent uint16_t ext_id; /* -> AC97_REG_EXT_AUDIO_ID */ 520 1.67 jmcneill uint16_t ext_mid; /* -> AC97_REG_EXT_MODEM_ID */ 521 1.66 kent uint16_t shadow_reg[128]; 522 1.68 jmcneill 523 1.82 kent int lock_counter; 524 1.69 jmcneill int type; 525 1.69 jmcneill 526 1.68 jmcneill /* sysctl */ 527 1.68 jmcneill struct sysctllog *log; 528 1.68 jmcneill int offhook_line1_mib; 529 1.68 jmcneill int offhook_line2_mib; 530 1.68 jmcneill int offhook_line1; 531 1.68 jmcneill int offhook_line2; 532 1.1 augustss }; 533 1.1 augustss 534 1.60 thorpej static struct ac97_codec_if_vtbl ac97civ = { 535 1.28 kent ac97_mixer_get_port, 536 1.1 augustss ac97_mixer_set_port, 537 1.1 augustss ac97_query_devinfo, 538 1.14 thorpej ac97_get_portnum_by_name, 539 1.14 thorpej ac97_restore_shadow, 540 1.28 kent ac97_get_extcaps, 541 1.28 kent ac97_set_rate, 542 1.28 kent ac97_set_clock, 543 1.65 kent ac97_detach, 544 1.82 kent ac97_lock, 545 1.82 kent ac97_unlock, 546 1.1 augustss }; 547 1.7 thorpej 548 1.7 thorpej static const struct ac97_codecid { 549 1.66 kent uint32_t id; 550 1.66 kent uint32_t mask; 551 1.7 thorpej const char *name; 552 1.33 kent void (*init)(struct ac97_softc *); 553 1.1 augustss } ac97codecid[] = { 554 1.36 kent /* 555 1.36 kent * Analog Devices SoundMAX 556 1.36 kent * http://www.soundmax.com/products/information/codecs.html 557 1.36 kent * http://www.analog.com/productSelection/pdf/AD1881A_0.pdf 558 1.36 kent * http://www.analog.com/productSelection/pdf/AD1885_0.pdf 559 1.44 kent * http://www.analog.com/UploadedFiles/Data_Sheets/206585810AD1980_0.pdf 560 1.36 kent * http://www.analog.com/productSelection/pdf/AD1981A_0.pdf 561 1.36 kent * http://www.analog.com/productSelection/pdf/AD1981B_0.pdf 562 1.48 kent * http://www.analog.com/UploadedFiles/Data_Sheets/180644528AD1985_0.pdf 563 1.36 kent */ 564 1.31 kent { AC97_CODEC_ID('A', 'D', 'S', 3), 565 1.84 christos 0xffffffff, "Analog Devices AD1819B", NULL, }, 566 1.34 kent { AC97_CODEC_ID('A', 'D', 'S', 0x40), 567 1.84 christos 0xffffffff, "Analog Devices AD1881", NULL, }, 568 1.34 kent { AC97_CODEC_ID('A', 'D', 'S', 0x48), 569 1.84 christos 0xffffffff, "Analog Devices AD1881A", NULL, }, 570 1.34 kent { AC97_CODEC_ID('A', 'D', 'S', 0x60), 571 1.84 christos 0xffffffff, "Analog Devices AD1885", NULL, }, 572 1.34 kent { AC97_CODEC_ID('A', 'D', 'S', 0x61), 573 1.84 christos 0xffffffff, "Analog Devices AD1886", NULL, }, 574 1.34 kent { AC97_CODEC_ID('A', 'D', 'S', 0x63), 575 1.84 christos 0xffffffff, "Analog Devices AD1886A", NULL, }, 576 1.55 kent { AC97_CODEC_ID('A', 'D', 'S', 0x68), 577 1.55 kent 0xffffffff, "Analog Devices AD1888", ac97_ad198x_init }, 578 1.38 matt { AC97_CODEC_ID('A', 'D', 'S', 0x70), 579 1.51 kent 0xffffffff, "Analog Devices AD1980", ac97_ad198x_init }, 580 1.34 kent { AC97_CODEC_ID('A', 'D', 'S', 0x72), 581 1.84 christos 0xffffffff, "Analog Devices AD1981A", NULL, }, 582 1.36 kent { AC97_CODEC_ID('A', 'D', 'S', 0x74), 583 1.84 christos 0xffffffff, "Analog Devices AD1981B", NULL, }, 584 1.48 kent { AC97_CODEC_ID('A', 'D', 'S', 0x75), 585 1.51 kent 0xffffffff, "Analog Devices AD1985", ac97_ad198x_init }, 586 1.33 kent { AC97_CODEC_ID('A', 'D', 'S', 0), 587 1.84 christos AC97_VENDOR_ID_MASK, "Analog Devices unknown", NULL, }, 588 1.31 kent 589 1.33 kent /* 590 1.33 kent * Datasheets: 591 1.81 uebayasi * http://www.asahi-kasei.co.jp/akm/japanese/product/ak4543/ek4543.pdf 592 1.81 uebayasi * http://www.asahi-kasei.co.jp/akm/japanese/product/ak4544a/ek4544a.pdf 593 1.81 uebayasi * http://www.asahi-kasei.co.jp/akm/japanese/product/ak4545/ak4545_f00e.pdf 594 1.33 kent */ 595 1.31 kent { AC97_CODEC_ID('A', 'K', 'M', 0), 596 1.84 christos 0xffffffff, "Asahi Kasei AK4540", NULL, }, 597 1.33 kent { AC97_CODEC_ID('A', 'K', 'M', 1), 598 1.84 christos 0xffffffff, "Asahi Kasei AK4542", NULL, }, 599 1.31 kent { AC97_CODEC_ID('A', 'K', 'M', 2), 600 1.84 christos 0xffffffff, "Asahi Kasei AK4541/AK4543", NULL, }, 601 1.33 kent { AC97_CODEC_ID('A', 'K', 'M', 5), 602 1.84 christos 0xffffffff, "Asahi Kasei AK4544", NULL, }, 603 1.33 kent { AC97_CODEC_ID('A', 'K', 'M', 6), 604 1.84 christos 0xffffffff, "Asahi Kasei AK4544A", NULL, }, 605 1.33 kent { AC97_CODEC_ID('A', 'K', 'M', 7), 606 1.84 christos 0xffffffff, "Asahi Kasei AK4545", NULL, }, 607 1.33 kent { AC97_CODEC_ID('A', 'K', 'M', 0), 608 1.84 christos AC97_VENDOR_ID_MASK, "Asahi Kasei unknown", NULL, }, 609 1.31 kent 610 1.33 kent /* 611 1.33 kent * Realtek & Avance Logic 612 1.33 kent * http://www.realtek.com.tw/downloads/downloads1-3.aspx?lineid=5&famid=All&series=All&Spec=True 613 1.54 kent * 614 1.54 kent * ALC650 and ALC658 support VRA, but it supports only 8000, 11025, 615 1.54 kent * 12000, 16000, 22050, 24000, 32000, 44100, and 48000 Hz. 616 1.33 kent */ 617 1.34 kent { AC97_CODEC_ID('A', 'L', 'C', 0x00), 618 1.84 christos 0xfffffff0, "Realtek RL5306", NULL, }, 619 1.34 kent { AC97_CODEC_ID('A', 'L', 'C', 0x10), 620 1.84 christos 0xfffffff0, "Realtek RL5382", NULL, }, 621 1.33 kent { AC97_CODEC_ID('A', 'L', 'C', 0x20), 622 1.84 christos 0xfffffff0, "Realtek RL5383/RL5522/ALC100", NULL, }, 623 1.31 kent { AC97_CODEC_ID('A', 'L', 'G', 0x10), 624 1.84 christos 0xffffffff, "Avance Logic ALC200/ALC201", NULL, }, 625 1.31 kent { AC97_CODEC_ID('A', 'L', 'G', 0x20), 626 1.54 kent 0xfffffff0, "Avance Logic ALC650", ac97_alc650_init }, 627 1.31 kent { AC97_CODEC_ID('A', 'L', 'G', 0x30), 628 1.84 christos 0xffffffff, "Avance Logic ALC101", NULL, }, 629 1.31 kent { AC97_CODEC_ID('A', 'L', 'G', 0x40), 630 1.84 christos 0xffffffff, "Avance Logic ALC202", NULL, }, 631 1.31 kent { AC97_CODEC_ID('A', 'L', 'G', 0x50), 632 1.84 christos 0xffffffff, "Avance Logic ALC250", NULL, }, 633 1.54 kent { AC97_CODEC_ID('A', 'L', 'G', 0x60), 634 1.84 christos 0xfffffff0, "Avance Logic ALC655", NULL, }, 635 1.93 mbalmer { AC97_CODEC_ID('A', 'L', 'G', 0x70), 636 1.93 mbalmer 0xffffffff, "Avance Logic ALC203", NULL, }, 637 1.54 kent { AC97_CODEC_ID('A', 'L', 'G', 0x80), 638 1.84 christos 0xfffffff0, "Avance Logic ALC658", NULL, }, 639 1.54 kent { AC97_CODEC_ID('A', 'L', 'G', 0x90), 640 1.84 christos 0xfffffff0, "Avance Logic ALC850", NULL, }, 641 1.33 kent { AC97_CODEC_ID('A', 'L', 'C', 0), 642 1.84 christos AC97_VENDOR_ID_MASK, "Realtek unknown", NULL, }, 643 1.33 kent { AC97_CODEC_ID('A', 'L', 'G', 0), 644 1.84 christos AC97_VENDOR_ID_MASK, "Avance Logic unknown", NULL, }, 645 1.31 kent 646 1.56 kent /** 647 1.56 kent * C-Media Electronics Inc. 648 1.56 kent * http://www.cmedia.com.tw/doc/CMI9739%206CH%20Audio%20Codec%20SPEC_Ver12.pdf 649 1.56 kent */ 650 1.56 kent { AC97_CODEC_ID('C', 'M', 'I', 0x61), 651 1.84 christos 0xffffffff, "C-Media CMI9739", NULL, }, 652 1.56 kent { AC97_CODEC_ID('C', 'M', 'I', 0), 653 1.84 christos AC97_VENDOR_ID_MASK, "C-Media unknown", NULL, }, 654 1.56 kent 655 1.31 kent /* Cirrus Logic, Crystal series: 656 1.31 kent * 'C' 'R' 'Y' 0x0[0-7] - CS4297 657 1.31 kent * 0x1[0-7] - CS4297A 658 1.31 kent * 0x2[0-7] - CS4298 659 1.31 kent * 0x2[8-f] - CS4294 660 1.31 kent * 0x3[0-7] - CS4299 661 1.31 kent * 0x4[8-f] - CS4201 662 1.31 kent * 0x5[8-f] - CS4205 663 1.31 kent * 0x6[0-7] - CS4291 664 1.31 kent * 0x7[0-7] - CS4202 665 1.31 kent * Datasheets: 666 1.31 kent * http://www.cirrus.com/pubs/cs4297A-5.pdf?DocumentID=593 667 1.31 kent * http://www.cirrus.com/pubs/cs4294.pdf?DocumentID=32 668 1.31 kent * http://www.cirrus.com/pubs/cs4299-5.pdf?DocumentID=594 669 1.31 kent * http://www.cirrus.com/pubs/cs4201-2.pdf?DocumentID=492 670 1.31 kent * http://www.cirrus.com/pubs/cs4205-2.pdf?DocumentID=492 671 1.31 kent * http://www.cirrus.com/pubs/cs4202-1.pdf?DocumentID=852 672 1.31 kent */ 673 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x00), 674 1.84 christos 0xfffffff8, "Crystal CS4297", NULL, }, 675 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x10), 676 1.84 christos 0xfffffff8, "Crystal CS4297A", NULL, }, 677 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x20), 678 1.84 christos 0xfffffff8, "Crystal CS4298", NULL, }, 679 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x28), 680 1.84 christos 0xfffffff8, "Crystal CS4294", NULL, }, 681 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x30), 682 1.84 christos 0xfffffff8, "Crystal CS4299", NULL, }, 683 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x48), 684 1.84 christos 0xfffffff8, "Crystal CS4201", NULL, }, 685 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x58), 686 1.84 christos 0xfffffff8, "Crystal CS4205", NULL, }, 687 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x60), 688 1.84 christos 0xfffffff8, "Crystal CS4291", NULL, }, 689 1.31 kent { AC97_CODEC_ID('C', 'R', 'Y', 0x70), 690 1.84 christos 0xfffffff8, "Crystal CS4202", NULL, }, 691 1.33 kent { AC97_CODEC_ID('C', 'R', 'Y', 0), 692 1.84 christos AC97_VENDOR_ID_MASK, "Cirrus Logic unknown", NULL, }, 693 1.33 kent 694 1.84 christos { 0x45838308, 0xffffffff, "ESS Technology ES1921", NULL, }, 695 1.84 christos { 0x45838300, AC97_VENDOR_ID_MASK, "ESS Technology unknown", NULL, }, 696 1.31 kent 697 1.34 kent { AC97_CODEC_ID('H', 'R', 'S', 0), 698 1.84 christos 0xffffffff, "Intersil HMP9701", NULL, }, 699 1.34 kent { AC97_CODEC_ID('H', 'R', 'S', 0), 700 1.84 christos AC97_VENDOR_ID_MASK, "Intersil unknown", NULL, }, 701 1.34 kent 702 1.35 kent /* 703 1.35 kent * IC Ensemble (VIA) 704 1.35 kent * http://www.viatech.com/en/datasheet/DS1616.pdf 705 1.35 kent */ 706 1.34 kent { AC97_CODEC_ID('I', 'C', 'E', 0x01), 707 1.84 christos 0xffffffff, "ICEnsemble ICE1230/VT1611", NULL, }, 708 1.34 kent { AC97_CODEC_ID('I', 'C', 'E', 0x11), 709 1.84 christos 0xffffffff, "ICEnsemble ICE1232/VT1611A", NULL, }, 710 1.35 kent { AC97_CODEC_ID('I', 'C', 'E', 0x14), 711 1.84 christos 0xffffffff, "ICEnsemble ICE1232A", NULL, }, 712 1.35 kent { AC97_CODEC_ID('I', 'C', 'E', 0x51), 713 1.35 kent 0xffffffff, "VIA Technologies VT1616", ac97_vt1616_init }, 714 1.58 kent { AC97_CODEC_ID('I', 'C', 'E', 0x52), 715 1.58 kent 0xffffffff, "VIA Technologies VT1616i", ac97_vt1616_init }, 716 1.34 kent { AC97_CODEC_ID('I', 'C', 'E', 0), 717 1.84 christos AC97_VENDOR_ID_MASK, "ICEnsemble/VIA unknown", NULL, }, 718 1.34 kent 719 1.34 kent { AC97_CODEC_ID('N', 'S', 'C', 0), 720 1.84 christos 0xffffffff, "National Semiconductor LM454[03568]", NULL, }, 721 1.31 kent { AC97_CODEC_ID('N', 'S', 'C', 49), 722 1.84 christos 0xffffffff, "National Semiconductor LM4549", NULL, }, 723 1.33 kent { AC97_CODEC_ID('N', 'S', 'C', 0), 724 1.84 christos AC97_VENDOR_ID_MASK, "National Semiconductor unknown", NULL, }, 725 1.41 bsh 726 1.41 bsh { AC97_CODEC_ID('P', 'S', 'C', 4), 727 1.91 kiyohara 0xffffffff, "Philips Semiconductor UCB1400", ac97_ucb1400_init, }, 728 1.41 bsh { AC97_CODEC_ID('P', 'S', 'C', 0), 729 1.84 christos AC97_VENDOR_ID_MASK, "Philips Semiconductor unknown", NULL, }, 730 1.33 kent 731 1.31 kent { AC97_CODEC_ID('S', 'I', 'L', 34), 732 1.84 christos 0xffffffff, "Silicon Laboratory Si3036", NULL, }, 733 1.31 kent { AC97_CODEC_ID('S', 'I', 'L', 35), 734 1.84 christos 0xffffffff, "Silicon Laboratory Si3038", NULL, }, 735 1.33 kent { AC97_CODEC_ID('S', 'I', 'L', 0), 736 1.84 christos AC97_VENDOR_ID_MASK, "Silicon Laboratory unknown", NULL, }, 737 1.33 kent 738 1.31 kent { AC97_CODEC_ID('T', 'R', 'A', 2), 739 1.84 christos 0xffffffff, "TriTech TR28022", NULL, }, 740 1.31 kent { AC97_CODEC_ID('T', 'R', 'A', 3), 741 1.84 christos 0xffffffff, "TriTech TR28023", NULL, }, 742 1.31 kent { AC97_CODEC_ID('T', 'R', 'A', 6), 743 1.84 christos 0xffffffff, "TriTech TR28026", NULL, }, 744 1.31 kent { AC97_CODEC_ID('T', 'R', 'A', 8), 745 1.84 christos 0xffffffff, "TriTech TR28028", NULL, }, 746 1.31 kent { AC97_CODEC_ID('T', 'R', 'A', 35), 747 1.84 christos 0xffffffff, "TriTech TR28602", NULL, }, 748 1.33 kent { AC97_CODEC_ID('T', 'R', 'A', 0), 749 1.84 christos AC97_VENDOR_ID_MASK, "TriTech unknown", NULL, }, 750 1.33 kent 751 1.34 kent { AC97_CODEC_ID('T', 'X', 'N', 0x20), 752 1.84 christos 0xffffffff, "Texas Instruments TLC320AD9xC", NULL, }, 753 1.34 kent { AC97_CODEC_ID('T', 'X', 'N', 0), 754 1.84 christos AC97_VENDOR_ID_MASK, "Texas Instruments unknown", NULL, }, 755 1.34 kent 756 1.34 kent /* 757 1.34 kent * VIA 758 1.34 kent * http://www.viatech.com/en/multimedia/audio.jsp 759 1.34 kent */ 760 1.34 kent { AC97_CODEC_ID('V', 'I', 'A', 0x61), 761 1.84 christos 0xffffffff, "VIA Technologies VT1612A", NULL, }, 762 1.34 kent { AC97_CODEC_ID('V', 'I', 'A', 0), 763 1.84 christos AC97_VENDOR_ID_MASK, "VIA Technologies unknown", NULL, }, 764 1.34 kent 765 1.34 kent { AC97_CODEC_ID('W', 'E', 'C', 1), 766 1.84 christos 0xffffffff, "Winbond W83971D", NULL, }, 767 1.34 kent { AC97_CODEC_ID('W', 'E', 'C', 0), 768 1.84 christos AC97_VENDOR_ID_MASK, "Winbond unknown", NULL, }, 769 1.34 kent 770 1.33 kent /* 771 1.33 kent * http://www.wolfsonmicro.com/product_list.asp?cid=64 772 1.34 kent * http://www.wolfsonmicro.com/download.asp/did.56/WM9701A.pdf - 00 773 1.34 kent * http://www.wolfsonmicro.com/download.asp/did.57/WM9703.pdf - 03 774 1.34 kent * http://www.wolfsonmicro.com/download.asp/did.58/WM9704M.pdf - 04 775 1.34 kent * http://www.wolfsonmicro.com/download.asp/did.59/WM9704Q.pdf - 04 776 1.34 kent * http://www.wolfsonmicro.com/download.asp/did.184/WM9705_Rev34.pdf - 05 777 1.34 kent * http://www.wolfsonmicro.com/download.asp/did.60/WM9707.pdf - 03 778 1.34 kent * http://www.wolfsonmicro.com/download.asp/did.136/WM9708.pdf - 03 779 1.34 kent * http://www.wolfsonmicro.com/download.asp/did.243/WM9710.pdf - 05 780 1.33 kent */ 781 1.31 kent { AC97_CODEC_ID('W', 'M', 'L', 0), 782 1.84 christos 0xffffffff, "Wolfson WM9701A", NULL, }, 783 1.34 kent { AC97_CODEC_ID('W', 'M', 'L', 3), 784 1.84 christos 0xffffffff, "Wolfson WM9703/WM9707/WM9708", NULL, }, 785 1.34 kent { AC97_CODEC_ID('W', 'M', 'L', 4), 786 1.84 christos 0xffffffff, "Wolfson WM9704", NULL, }, 787 1.34 kent { AC97_CODEC_ID('W', 'M', 'L', 5), 788 1.84 christos 0xffffffff, "Wolfson WM9705/WM9710", NULL, }, 789 1.33 kent { AC97_CODEC_ID('W', 'M', 'L', 0), 790 1.84 christos AC97_VENDOR_ID_MASK, "Wolfson unknown", NULL, }, 791 1.33 kent 792 1.33 kent /* 793 1.33 kent * http://www.yamaha.co.jp/english/product/lsi/us/products/pcaudio.html 794 1.33 kent * Datasheets: 795 1.33 kent * http://www.yamaha.co.jp/english/product/lsi/us/products/pdf/4MF743A20.pdf 796 1.33 kent * http://www.yamaha.co.jp/english/product/lsi/us/products/pdf/4MF753A20.pdf 797 1.33 kent */ 798 1.31 kent { AC97_CODEC_ID('Y', 'M', 'H', 0), 799 1.84 christos 0xffffffff, "Yamaha YMF743-S", NULL, }, 800 1.31 kent { AC97_CODEC_ID('Y', 'M', 'H', 3), 801 1.84 christos 0xffffffff, "Yamaha YMF753-S", NULL, }, 802 1.33 kent { AC97_CODEC_ID('Y', 'M', 'H', 0), 803 1.84 christos AC97_VENDOR_ID_MASK, "Yamaha unknown", NULL, }, 804 1.33 kent 805 1.33 kent /* 806 1.53 mrg * http://www.sigmatel.com/products/technical_docs.htm 807 1.53 mrg * and 808 1.53 mrg * http://www.sigmatel.com/documents/c-major-brochure-9-0.pdf 809 1.33 kent */ 810 1.84 christos { 0x83847600, 0xffffffff, "SigmaTel STAC9700", NULL, }, 811 1.84 christos { 0x83847604, 0xffffffff, "SigmaTel STAC9701/3/4/5", NULL, }, 812 1.84 christos { 0x83847605, 0xffffffff, "SigmaTel STAC9704", NULL, }, 813 1.84 christos { 0x83847608, 0xffffffff, "SigmaTel STAC9708", NULL, }, 814 1.84 christos { 0x83847609, 0xffffffff, "SigmaTel STAC9721/23", NULL, }, 815 1.84 christos { 0x83847644, 0xffffffff, "SigmaTel STAC9744/45", NULL, }, 816 1.84 christos { 0x83847650, 0xffffffff, "SigmaTel STAC9750/51", NULL, }, 817 1.84 christos { 0x83847652, 0xffffffff, "SigmaTel STAC9752/53", NULL, }, 818 1.84 christos { 0x83847656, 0xffffffff, "SigmaTel STAC9756/57", NULL, }, 819 1.84 christos { 0x83847658, 0xffffffff, "SigmaTel STAC9758/59", NULL, }, 820 1.84 christos { 0x83847666, 0xffffffff, "SigmaTel STAC9766/67", NULL, }, 821 1.84 christos { 0x83847684, 0xffffffff, "SigmaTel STAC9783/84", NULL, }, 822 1.84 christos { 0x83847600, AC97_VENDOR_ID_MASK, "SigmaTel unknown", NULL, }, 823 1.33 kent 824 1.69 jmcneill /* Conexant AC'97 modems -- good luck finding datasheets! */ 825 1.70 jmcneill { AC97_CODEC_ID('C', 'X', 'T', 33), 826 1.84 christos 0xffffffff, "Conexant HSD11246", NULL, }, 827 1.69 jmcneill { AC97_CODEC_ID('C', 'X', 'T', 34), 828 1.84 christos 0xffffffff, "Conexant D480 MDC V.92 Modem", NULL, }, 829 1.78 rpaulo { AC97_CODEC_ID('C', 'X', 'T', 48), 830 1.84 christos 0xffffffff, "Conexant CXT48", NULL, }, 831 1.69 jmcneill { AC97_CODEC_ID('C', 'X', 'T', 0), 832 1.84 christos AC97_VENDOR_ID_MASK, "Conexant unknown", NULL, }, 833 1.69 jmcneill 834 1.31 kent { 0, 835 1.84 christos 0, NULL, NULL, }, 836 1.1 augustss }; 837 1.1 augustss 838 1.18 jdolecek static const char * const ac97enhancement[] = { 839 1.2 soren "no 3D stereo", 840 1.1 augustss "Analog Devices Phat Stereo", 841 1.24 ichiro "Creative", 842 1.1 augustss "National Semi 3D", 843 1.1 augustss "Yamaha Ymersion", 844 1.1 augustss "BBE 3D", 845 1.24 ichiro "Crystal Semi 3D", 846 1.1 augustss "Qsound QXpander", 847 1.1 augustss "Spatializer 3D", 848 1.1 augustss "SRS 3D", 849 1.1 augustss "Platform Tech 3D", 850 1.1 augustss "AKM 3D", 851 1.1 augustss "Aureal", 852 1.1 augustss "AZTECH 3D", 853 1.1 augustss "Binaura 3D", 854 1.1 augustss "ESS Technology", 855 1.1 augustss "Harman International VMAx", 856 1.1 augustss "Nvidea 3D", 857 1.1 augustss "Philips Incredible Sound", 858 1.1 augustss "Texas Instruments' 3D", 859 1.1 augustss "VLSI Technology 3D", 860 1.1 augustss "TriTech 3D", 861 1.1 augustss "Realtek 3D", 862 1.1 augustss "Samsung 3D", 863 1.1 augustss "Wolfson Microelectronics 3D", 864 1.1 augustss "Delta Integration 3D", 865 1.1 augustss "SigmaTel 3D", 866 1.33 kent "KS Waves 3D", 867 1.1 augustss "Rockwell 3D", 868 1.1 augustss "Unknown 3D", 869 1.1 augustss "Unknown 3D", 870 1.1 augustss "Unknown 3D", 871 1.1 augustss }; 872 1.1 augustss 873 1.18 jdolecek static const char * const ac97feature[] = { 874 1.27 kent "dedicated mic channel", 875 1.1 augustss "reserved", 876 1.1 augustss "tone", 877 1.1 augustss "simulated stereo", 878 1.1 augustss "headphone", 879 1.1 augustss "bass boost", 880 1.1 augustss "18 bit DAC", 881 1.1 augustss "20 bit DAC", 882 1.1 augustss "18 bit ADC", 883 1.1 augustss "20 bit ADC" 884 1.1 augustss }; 885 1.1 augustss 886 1.1 augustss 887 1.1 augustss /* #define AC97_DEBUG 10 */ 888 1.61 kent /* #define AC97_IO_DEBUG */ 889 1.1 augustss 890 1.1 augustss #ifdef AUDIO_DEBUG 891 1.1 augustss #define DPRINTF(x) if (ac97debug) printf x 892 1.1 augustss #define DPRINTFN(n,x) if (ac97debug>(n)) printf x 893 1.1 augustss #ifdef AC97_DEBUG 894 1.1 augustss int ac97debug = AC97_DEBUG; 895 1.1 augustss #else 896 1.1 augustss int ac97debug = 0; 897 1.1 augustss #endif 898 1.1 augustss #else 899 1.1 augustss #define DPRINTF(x) 900 1.1 augustss #define DPRINTFN(n,x) 901 1.1 augustss #endif 902 1.1 augustss 903 1.61 kent #ifdef AC97_IO_DEBUG 904 1.61 kent static const char *ac97_register_names[0x80 / 2] = { 905 1.61 kent "RESET", "MASTER_VOLUME", "HEADPHONE_VOLUME", "MASTER_VOLUME_MONO", 906 1.61 kent "MASTER_TONE", "PCBEEP_VOLUME", "PHONE_VOLUME", "MIC_VOLUME", 907 1.61 kent "LINEIN_VOLUME", "CD_VOLUME", "VIDEO_VOLUME", "AUX_VOLUME", 908 1.61 kent "PCMOUT_VOLUME", "RECORD_SELECT", "RECORD_GATIN", "RECORD_GAIN_MIC", 909 1.61 kent "GP", "3D_CONTROL", "AUDIO_INT", "POWER", 910 1.61 kent "EXT_AUDIO_ID", "EXT_AUDIO_CTRL", "PCM_FRONT_DAC_RATE", "PCM_SURR_DAC_RATE", 911 1.61 kent "PCM_LFE_DAC_RATE", "PCM_LR_ADC_RATE", "PCM_MIC_ADC_RATE", "CENTER_LFE_MASTER", 912 1.61 kent "SURR_MASTER", "SPDIF_CTRL", "EXT_MODEM_ID", "EXT_MODEM_CTRL", 913 1.61 kent "LINE1_RATE", "LINE2_RATE", "HANDSET_RATE", "LINE1_LEVEL", 914 1.61 kent "LINE2_LEVEL", "HANDSET_LEVEL", "GPIO_PIN_CONFIG", "GPIO_PIN_POLARITY", 915 1.61 kent "GPIO_PIN_STICKY", "GPIO_PIN_WAKEUP", "GPIO_PIN_STATUS", "MISC_MODEM_CTRL", 916 1.61 kent "0x58", "VENDOR-5A", "VENDOR-5C", "VENDOR-5E", 917 1.61 kent "0x60", "0x62", "0x64", "0x66", 918 1.61 kent "0x68", "0x6a", "0x6c", "0x6e", 919 1.61 kent "VENDOR-70", "VENDOR-72", "VENDOR-74", "VENDOR-76", 920 1.61 kent "VENDOR-78", "VENDOR-7A", "VENDOR_ID1", "VENDOR_ID2" 921 1.61 kent }; 922 1.61 kent #endif 923 1.61 kent 924 1.80 jmcneill /* 925 1.80 jmcneill * XXX Some cards have an inverted AC97_POWER_EAMP bit. 926 1.80 jmcneill * These cards will produce no sound unless AC97_HOST_INVERTED_EAMP is set. 927 1.80 jmcneill */ 928 1.80 jmcneill 929 1.80 jmcneill #define POWER_EAMP_ON(as) ((as->host_flags & AC97_HOST_INVERTED_EAMP) \ 930 1.80 jmcneill ? AC97_POWER_EAMP : 0) 931 1.80 jmcneill #define POWER_EAMP_OFF(as) ((as->host_flags & AC97_HOST_INVERTED_EAMP) \ 932 1.80 jmcneill ? 0 : AC97_POWER_EAMP) 933 1.80 jmcneill 934 1.60 thorpej static void 935 1.66 kent ac97_read(struct ac97_softc *as, uint8_t reg, uint16_t *val) 936 1.14 thorpej { 937 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 938 1.92 jmcneill 939 1.14 thorpej if (as->host_flags & AC97_HOST_DONT_READ && 940 1.14 thorpej (reg != AC97_REG_VENDOR_ID1 && reg != AC97_REG_VENDOR_ID2 && 941 1.14 thorpej reg != AC97_REG_RESET)) { 942 1.14 thorpej *val = as->shadow_reg[reg >> 1]; 943 1.14 thorpej return; 944 1.14 thorpej } 945 1.14 thorpej 946 1.39 simonb if (as->host_if->read(as->host_if->arg, reg, val)) { 947 1.14 thorpej *val = as->shadow_reg[reg >> 1]; 948 1.14 thorpej } 949 1.14 thorpej } 950 1.14 thorpej 951 1.60 thorpej static int 952 1.66 kent ac97_write(struct ac97_softc *as, uint8_t reg, uint16_t val) 953 1.14 thorpej { 954 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 955 1.92 jmcneill 956 1.61 kent #ifndef AC97_IO_DEBUG 957 1.14 thorpej as->shadow_reg[reg >> 1] = val; 958 1.50 kent return as->host_if->write(as->host_if->arg, reg, val); 959 1.61 kent #else 960 1.61 kent int ret; 961 1.61 kent uint16_t actual; 962 1.61 kent 963 1.61 kent as->shadow_reg[reg >> 1] = val; 964 1.61 kent ret = as->host_if->write(as->host_if->arg, reg, val); 965 1.61 kent as->host_if->read(as->host_if->arg, reg, &actual); 966 1.61 kent if (val != actual && reg < 0x80) { 967 1.61 kent printf("ac97_write: reg=%s, written=0x%04x, read=0x%04x\n", 968 1.61 kent ac97_register_names[reg / 2], val, actual); 969 1.61 kent } 970 1.61 kent return ret; 971 1.61 kent #endif 972 1.14 thorpej } 973 1.14 thorpej 974 1.60 thorpej static void 975 1.50 kent ac97_setup_defaults(struct ac97_softc *as) 976 1.14 thorpej { 977 1.14 thorpej int idx; 978 1.18 jdolecek const struct ac97_source_info *si; 979 1.14 thorpej 980 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 981 1.92 jmcneill 982 1.14 thorpej memset(as->shadow_reg, 0, sizeof(as->shadow_reg)); 983 1.14 thorpej 984 1.69 jmcneill for (idx = 0; idx < AUDIO_SOURCE_INFO_SIZE; idx++) { 985 1.69 jmcneill si = &audio_source_info[idx]; 986 1.82 kent if (si->default_value >= 0) 987 1.82 kent ac97_write(as, si->reg, si->default_value); 988 1.69 jmcneill } 989 1.69 jmcneill for (idx = 0; idx < MODEM_SOURCE_INFO_SIZE; idx++) { 990 1.69 jmcneill si = &modem_source_info[idx]; 991 1.82 kent if (si->default_value >= 0) 992 1.82 kent ac97_write(as, si->reg, si->default_value); 993 1.14 thorpej } 994 1.14 thorpej } 995 1.14 thorpej 996 1.60 thorpej static void 997 1.95 chs ac97_restore_shadow(struct ac97_codec_if *codec_if) 998 1.14 thorpej { 999 1.50 kent struct ac97_softc *as; 1000 1.50 kent const struct ac97_source_info *si; 1001 1.14 thorpej int idx; 1002 1.59 kent uint16_t val; 1003 1.14 thorpej 1004 1.95 chs as = (struct ac97_softc *)codec_if; 1005 1.59 kent 1006 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 1007 1.92 jmcneill 1008 1.74 scw if (as->type == AC97_CODEC_TYPE_AUDIO) { 1009 1.80 jmcneill /* restore AC97_REG_POWER */ 1010 1.80 jmcneill ac97_write(as, AC97_REG_POWER, as->power_reg); 1011 1.74 scw /* make sure chip is fully operational */ 1012 1.74 scw for (idx = 50000; idx >= 0; idx--) { 1013 1.74 scw ac97_read(as, AC97_REG_POWER, &val); 1014 1.74 scw if ((val & as->power_all) == as->power_all) 1015 1.74 scw break; 1016 1.74 scw DELAY(10); 1017 1.74 scw } 1018 1.74 scw 1019 1.74 scw /* 1020 1.74 scw * actually try changing a value! 1021 1.74 scw * The default value of AC97_REG_MASTER_VOLUME is 0x8000. 1022 1.74 scw */ 1023 1.74 scw for (idx = 50000; idx >= 0; idx--) { 1024 1.74 scw ac97_write(as, AC97_REG_MASTER_VOLUME, 0x1010); 1025 1.74 scw ac97_read(as, AC97_REG_MASTER_VOLUME, &val); 1026 1.74 scw if (val == 0x1010) 1027 1.74 scw break; 1028 1.74 scw DELAY(10); 1029 1.74 scw } 1030 1.74 scw } 1031 1.64 kent 1032 1.69 jmcneill for (idx = 0; idx < SOURCE_INFO_SIZE(as); idx++) { 1033 1.71 jmcneill if (as->type == AC97_CODEC_TYPE_MODEM) 1034 1.69 jmcneill si = &modem_source_info[idx]; 1035 1.69 jmcneill else 1036 1.69 jmcneill si = &audio_source_info[idx]; 1037 1.59 kent /* don't "restore" to the reset reg! */ 1038 1.59 kent if (si->reg != AC97_REG_RESET) 1039 1.59 kent ac97_write(as, si->reg, as->shadow_reg[si->reg >> 1]); 1040 1.42 scw } 1041 1.42 scw 1042 1.42 scw if (as->ext_id & (AC97_EXT_AUDIO_VRA | AC97_EXT_AUDIO_DRA 1043 1.42 scw | AC97_EXT_AUDIO_SPDIF | AC97_EXT_AUDIO_VRM 1044 1.42 scw | AC97_EXT_AUDIO_CDAC | AC97_EXT_AUDIO_SDAC 1045 1.42 scw | AC97_EXT_AUDIO_LDAC)) { 1046 1.42 scw ac97_write(as, AC97_REG_EXT_AUDIO_CTRL, 1047 1.42 scw as->shadow_reg[AC97_REG_EXT_AUDIO_CTRL >> 1]); 1048 1.14 thorpej } 1049 1.69 jmcneill if (as->ext_mid & (AC97_EXT_MODEM_LINE1 | AC97_EXT_MODEM_LINE2 1050 1.69 jmcneill | AC97_EXT_MODEM_HANDSET | AC97_EXT_MODEM_CID1 1051 1.69 jmcneill | AC97_EXT_MODEM_CID2 | AC97_EXT_MODEM_ID0 1052 1.69 jmcneill | AC97_EXT_MODEM_ID1)) { 1053 1.69 jmcneill ac97_write(as, AC97_REG_EXT_MODEM_CTRL, 1054 1.69 jmcneill as->shadow_reg[AC97_REG_EXT_MODEM_CTRL >> 1]); 1055 1.69 jmcneill } 1056 1.14 thorpej } 1057 1.1 augustss 1058 1.60 thorpej static int 1059 1.50 kent ac97_str_equal(const char *a, const char *b) 1060 1.1 augustss { 1061 1.50 kent return (a == b) || (a && b && (!strcmp(a, b))); 1062 1.1 augustss } 1063 1.1 augustss 1064 1.60 thorpej static int 1065 1.33 kent ac97_check_capability(struct ac97_softc *as, int check) 1066 1.33 kent { 1067 1.33 kent switch (check) { 1068 1.33 kent case CHECK_NONE: 1069 1.33 kent return 1; 1070 1.33 kent case CHECK_SURROUND: 1071 1.33 kent return as->ext_id & AC97_EXT_AUDIO_SDAC; 1072 1.33 kent case CHECK_CENTER: 1073 1.33 kent return as->ext_id & AC97_EXT_AUDIO_CDAC; 1074 1.33 kent case CHECK_LFE: 1075 1.33 kent return as->ext_id & AC97_EXT_AUDIO_LDAC; 1076 1.82 kent case CHECK_SPDIF: 1077 1.82 kent return as->ext_id & AC97_EXT_AUDIO_SPDIF; 1078 1.33 kent case CHECK_HEADPHONES: 1079 1.33 kent return as->caps & AC97_CAPS_HEADPHONES; 1080 1.33 kent case CHECK_TONE: 1081 1.33 kent return as->caps & AC97_CAPS_TONECTRL; 1082 1.33 kent case CHECK_MIC: 1083 1.33 kent return as->caps & AC97_CAPS_MICIN; 1084 1.33 kent case CHECK_LOUDNESS: 1085 1.33 kent return as->caps & AC97_CAPS_LOUDNESS; 1086 1.33 kent case CHECK_3D: 1087 1.33 kent return AC97_CAPS_ENHANCEMENT(as->caps) != 0; 1088 1.69 jmcneill case CHECK_LINE1: 1089 1.69 jmcneill return as->ext_mid & AC97_EXT_MODEM_LINE1; 1090 1.69 jmcneill case CHECK_LINE2: 1091 1.69 jmcneill return as->ext_mid & AC97_EXT_MODEM_LINE2; 1092 1.69 jmcneill case CHECK_HANDSET: 1093 1.69 jmcneill return as->ext_mid & AC97_EXT_MODEM_HANDSET; 1094 1.33 kent default: 1095 1.33 kent printf("%s: internal error: feature=%d\n", __func__, check); 1096 1.33 kent return 0; 1097 1.33 kent } 1098 1.33 kent } 1099 1.33 kent 1100 1.60 thorpej static void 1101 1.50 kent ac97_setup_source_info(struct ac97_softc *as) 1102 1.1 augustss { 1103 1.1 augustss int idx, ouridx; 1104 1.33 kent struct ac97_source_info *si, *si2; 1105 1.83 kent uint16_t value1, value2, value3; 1106 1.1 augustss 1107 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 1108 1.92 jmcneill 1109 1.69 jmcneill for (idx = 0, ouridx = 0; idx < SOURCE_INFO_SIZE(as); idx++) { 1110 1.1 augustss si = &as->source_info[ouridx]; 1111 1.71 jmcneill if (as->type == AC97_CODEC_TYPE_MODEM) { 1112 1.69 jmcneill memcpy(si, &modem_source_info[idx], sizeof(*si)); 1113 1.69 jmcneill } else { 1114 1.69 jmcneill memcpy(si, &audio_source_info[idx], sizeof(*si)); 1115 1.69 jmcneill } 1116 1.83 kent if (!ac97_check_capability(as, si->req_feature)) 1117 1.83 kent continue; 1118 1.83 kent if (si->checkbits) { 1119 1.83 kent /* read the register value */ 1120 1.83 kent ac97_read(as, si->reg, &value1); 1121 1.83 kent /* write 0b100000 */ 1122 1.83 kent value2 = value1 & 0xffc0; 1123 1.83 kent value2 |= 0x20; 1124 1.83 kent ac97_write(as, si->reg, value2); 1125 1.83 kent /* verify */ 1126 1.83 kent ac97_read(as, si->reg, &value3); 1127 1.83 kent if (value2 == value3) { 1128 1.83 kent si->bits = 6; 1129 1.83 kent } else { 1130 1.83 kent si->bits = 5; 1131 1.83 kent } 1132 1.83 kent DPRINTF(("%s: register=%02x bits=%d\n", 1133 1.83 kent __func__, si->reg, si->bits)); 1134 1.83 kent ac97_write(as, si->reg, value1); 1135 1.83 kent } 1136 1.1 augustss 1137 1.1 augustss switch (si->type) { 1138 1.1 augustss case AUDIO_MIXER_CLASS: 1139 1.36 kent si->mixer_class = ouridx; 1140 1.1 augustss ouridx++; 1141 1.1 augustss break; 1142 1.1 augustss case AUDIO_MIXER_VALUE: 1143 1.1 augustss /* Todo - Test to see if it works */ 1144 1.1 augustss ouridx++; 1145 1.1 augustss 1146 1.1 augustss /* Add an entry for mute, if necessary */ 1147 1.1 augustss if (si->mute) { 1148 1.1 augustss si = &as->source_info[ouridx]; 1149 1.71 jmcneill if (as->type == AC97_CODEC_TYPE_MODEM) 1150 1.69 jmcneill memcpy(si, &modem_source_info[idx], 1151 1.69 jmcneill sizeof(*si)); 1152 1.69 jmcneill else 1153 1.69 jmcneill memcpy(si, &audio_source_info[idx], 1154 1.69 jmcneill sizeof(*si)); 1155 1.1 augustss si->qualifier = AudioNmute; 1156 1.1 augustss si->type = AUDIO_MIXER_ENUM; 1157 1.1 augustss si->info = &ac97_on_off; 1158 1.1 augustss si->info_size = sizeof(ac97_on_off); 1159 1.1 augustss si->bits = 1; 1160 1.1 augustss si->ofs = 15; 1161 1.1 augustss si->mute = 0; 1162 1.1 augustss si->polarity = 0; 1163 1.1 augustss ouridx++; 1164 1.1 augustss } 1165 1.1 augustss break; 1166 1.1 augustss case AUDIO_MIXER_ENUM: 1167 1.1 augustss /* Todo - Test to see if it works */ 1168 1.1 augustss ouridx++; 1169 1.1 augustss break; 1170 1.1 augustss default: 1171 1.40 thorpej aprint_error ("ac97: shouldn't get here\n"); 1172 1.1 augustss break; 1173 1.1 augustss } 1174 1.1 augustss } 1175 1.1 augustss 1176 1.1 augustss as->num_source_info = ouridx; 1177 1.1 augustss 1178 1.1 augustss for (idx = 0; idx < as->num_source_info; idx++) { 1179 1.1 augustss int idx2, previdx; 1180 1.1 augustss 1181 1.1 augustss si = &as->source_info[idx]; 1182 1.1 augustss 1183 1.1 augustss /* Find mixer class */ 1184 1.1 augustss for (idx2 = 0; idx2 < as->num_source_info; idx2++) { 1185 1.1 augustss si2 = &as->source_info[idx2]; 1186 1.1 augustss 1187 1.36 kent if (si2->type == AUDIO_MIXER_CLASS && 1188 1.1 augustss ac97_str_equal(si->class, 1189 1.1 augustss si2->class)) { 1190 1.1 augustss si->mixer_class = idx2; 1191 1.1 augustss } 1192 1.1 augustss } 1193 1.1 augustss 1194 1.1 augustss 1195 1.1 augustss /* Setup prev and next pointers */ 1196 1.1 augustss if (si->prev != 0) 1197 1.1 augustss continue; 1198 1.1 augustss 1199 1.1 augustss if (si->qualifier) 1200 1.1 augustss continue; 1201 1.1 augustss 1202 1.1 augustss si->prev = AUDIO_MIXER_LAST; 1203 1.1 augustss previdx = idx; 1204 1.1 augustss 1205 1.1 augustss for (idx2 = 0; idx2 < as->num_source_info; idx2++) { 1206 1.1 augustss if (idx2 == idx) 1207 1.1 augustss continue; 1208 1.1 augustss 1209 1.1 augustss si2 = &as->source_info[idx2]; 1210 1.1 augustss 1211 1.1 augustss if (!si2->prev && 1212 1.1 augustss ac97_str_equal(si->class, si2->class) && 1213 1.1 augustss ac97_str_equal(si->device, si2->device)) { 1214 1.1 augustss as->source_info[previdx].next = idx2; 1215 1.1 augustss as->source_info[idx2].prev = previdx; 1216 1.36 kent 1217 1.1 augustss previdx = idx2; 1218 1.1 augustss } 1219 1.1 augustss } 1220 1.1 augustss 1221 1.1 augustss as->source_info[previdx].next = AUDIO_MIXER_LAST; 1222 1.1 augustss } 1223 1.1 augustss } 1224 1.1 augustss 1225 1.80 jmcneill /* backward compatibility */ 1226 1.28 kent int 1227 1.92 jmcneill ac97_attach(struct ac97_host_if *host_if, device_t sc_dev, kmutex_t *lk) 1228 1.1 augustss { 1229 1.92 jmcneill return ac97_attach_type(host_if, sc_dev, AC97_CODEC_TYPE_AUDIO, lk); 1230 1.71 jmcneill } 1231 1.71 jmcneill 1232 1.71 jmcneill int 1233 1.92 jmcneill ac97_attach_type(struct ac97_host_if *host_if, device_t sc_dev, int type, kmutex_t *lk) 1234 1.71 jmcneill { 1235 1.1 augustss struct ac97_softc *as; 1236 1.1 augustss int error, i, j; 1237 1.59 kent uint32_t id; 1238 1.59 kent uint16_t id1, id2; 1239 1.59 kent uint16_t extstat, rate; 1240 1.59 kent uint16_t val; 1241 1.8 augustss mixer_ctrl_t ctl; 1242 1.33 kent void (*initfunc)(struct ac97_softc *); 1243 1.44 kent #define FLAGBUFLEN 140 1244 1.44 kent char flagbuf[FLAGBUFLEN]; 1245 1.28 kent 1246 1.33 kent initfunc = NULL; 1247 1.23 tsutsui as = malloc(sizeof(struct ac97_softc), M_DEVBUF, M_WAITOK|M_ZERO); 1248 1.1 augustss 1249 1.2 soren if (as == NULL) 1250 1.50 kent return ENOMEM; 1251 1.14 thorpej 1252 1.14 thorpej as->codec_if.vtbl = &ac97civ; 1253 1.14 thorpej as->host_if = host_if; 1254 1.71 jmcneill as->type = type; 1255 1.92 jmcneill as->lock = lk; 1256 1.1 augustss 1257 1.14 thorpej if ((error = host_if->attach(host_if->arg, &as->codec_if))) { 1258 1.33 kent free(as, M_DEVBUF); 1259 1.50 kent return error; 1260 1.1 augustss } 1261 1.1 augustss 1262 1.92 jmcneill mutex_enter(as->lock); 1263 1.92 jmcneill 1264 1.80 jmcneill if (host_if->reset != NULL) { 1265 1.80 jmcneill if ((error = host_if->reset(host_if->arg))) { 1266 1.92 jmcneill mutex_exit(as->lock); 1267 1.80 jmcneill free(as, M_DEVBUF); 1268 1.80 jmcneill return error; 1269 1.80 jmcneill } 1270 1.62 kent } 1271 1.1 augustss 1272 1.14 thorpej if (host_if->flags) 1273 1.14 thorpej as->host_flags = host_if->flags(host_if->arg); 1274 1.74 scw 1275 1.74 scw /* 1276 1.74 scw * Assume codec has all four power bits. 1277 1.74 scw * XXXSCW: what to do for modems? 1278 1.74 scw */ 1279 1.74 scw as->power_all = AC97_POWER_REF | AC97_POWER_ANL | AC97_POWER_DAC | 1280 1.74 scw AC97_POWER_ADC; 1281 1.72 jmcneill if (as->type == AC97_CODEC_TYPE_AUDIO) { 1282 1.72 jmcneill host_if->write(host_if->arg, AC97_REG_RESET, 0); 1283 1.74 scw 1284 1.74 scw /* 1285 1.74 scw * Power-up everything except the analogue mixer. 1286 1.74 scw * If this codec doesn't support analogue mixer power-down, 1287 1.74 scw * AC97_POWER_MIXER will read back as zero. 1288 1.74 scw */ 1289 1.74 scw host_if->write(host_if->arg, AC97_REG_POWER, AC97_POWER_MIXER); 1290 1.74 scw ac97_read(as, AC97_REG_POWER, &val); 1291 1.74 scw if ((val & AC97_POWER_MIXER) == 0) { 1292 1.74 scw /* Codec doesn't support analogue mixer power-down */ 1293 1.74 scw as->power_all &= ~AC97_POWER_ANL; 1294 1.74 scw } 1295 1.80 jmcneill host_if->write(host_if->arg, AC97_REG_POWER, POWER_EAMP_ON(as)); 1296 1.1 augustss 1297 1.72 jmcneill for (i = 500000; i >= 0; i--) { 1298 1.72 jmcneill ac97_read(as, AC97_REG_POWER, &val); 1299 1.74 scw if ((val & as->power_all) == as->power_all) 1300 1.72 jmcneill break; 1301 1.72 jmcneill DELAY(1); 1302 1.72 jmcneill } 1303 1.80 jmcneill 1304 1.80 jmcneill /* save AC97_REG_POWER so that we can restore it later */ 1305 1.80 jmcneill ac97_read(as, AC97_REG_POWER, &as->power_reg); 1306 1.72 jmcneill } else if (as->type == AC97_CODEC_TYPE_MODEM) { 1307 1.72 jmcneill host_if->write(host_if->arg, AC97_REG_EXT_MODEM_ID, 0); 1308 1.59 kent } 1309 1.59 kent 1310 1.14 thorpej ac97_setup_defaults(as); 1311 1.72 jmcneill if (as->type == AC97_CODEC_TYPE_AUDIO) 1312 1.72 jmcneill ac97_read(as, AC97_REG_RESET, &as->caps); 1313 1.15 thorpej ac97_read(as, AC97_REG_VENDOR_ID1, &id1); 1314 1.15 thorpej ac97_read(as, AC97_REG_VENDOR_ID2, &id2); 1315 1.1 augustss 1316 1.92 jmcneill mutex_exit(as->lock); 1317 1.92 jmcneill 1318 1.100 rin id = ((uint32_t)id1 << 16) | id2; 1319 1.87 cegger aprint_normal_dev(sc_dev, "ac97: "); 1320 1.2 soren 1321 1.2 soren for (i = 0; ; i++) { 1322 1.2 soren if (ac97codecid[i].id == 0) { 1323 1.4 augustss char pnp[4]; 1324 1.93 mbalmer 1325 1.7 thorpej AC97_GET_CODEC_ID(id, pnp); 1326 1.4 augustss #define ISASCII(c) ((c) >= ' ' && (c) < 0x7f) 1327 1.4 augustss if (ISASCII(pnp[0]) && ISASCII(pnp[1]) && 1328 1.4 augustss ISASCII(pnp[2])) 1329 1.40 thorpej aprint_normal("%c%c%c%d", 1330 1.40 thorpej pnp[0], pnp[1], pnp[2], pnp[3]); 1331 1.4 augustss else 1332 1.40 thorpej aprint_normal("unknown (0x%08x)", id); 1333 1.11 soren break; 1334 1.11 soren } 1335 1.31 kent if (ac97codecid[i].id == (id & ac97codecid[i].mask)) { 1336 1.40 thorpej aprint_normal("%s", ac97codecid[i].name); 1337 1.33 kent if (ac97codecid[i].mask == AC97_VENDOR_ID_MASK) { 1338 1.40 thorpej aprint_normal(" (0x%08x)", id); 1339 1.33 kent } 1340 1.33 kent initfunc = ac97codecid[i].init; 1341 1.2 soren break; 1342 1.2 soren } 1343 1.1 augustss } 1344 1.40 thorpej aprint_normal(" codec; "); 1345 1.1 augustss for (i = j = 0; i < 10; i++) { 1346 1.28 kent if (as->caps & (1 << i)) { 1347 1.50 kent aprint_normal("%s%s", j ? ", " : "", ac97feature[i]); 1348 1.1 augustss j++; 1349 1.1 augustss } 1350 1.1 augustss } 1351 1.40 thorpej aprint_normal("%s%s\n", j ? ", " : "", 1352 1.33 kent ac97enhancement[AC97_CAPS_ENHANCEMENT(as->caps)]); 1353 1.1 augustss 1354 1.28 kent as->ac97_clock = AC97_STANDARD_CLOCK; 1355 1.69 jmcneill 1356 1.92 jmcneill mutex_enter(as->lock); 1357 1.92 jmcneill 1358 1.72 jmcneill if (as->type == AC97_CODEC_TYPE_AUDIO) { 1359 1.72 jmcneill ac97_read(as, AC97_REG_EXT_AUDIO_ID, &as->ext_id); 1360 1.72 jmcneill if (as->ext_id != 0) { 1361 1.92 jmcneill mutex_exit(as->lock); 1362 1.92 jmcneill 1363 1.72 jmcneill /* Print capabilities */ 1364 1.89 christos snprintb(flagbuf, sizeof(flagbuf), 1365 1.89 christos "\20\20SECONDARY10\17SECONDARY01" 1366 1.89 christos "\14AC97_23\13AC97_22\12AMAP\11LDAC\10SDAC" 1367 1.89 christos "\7CDAC\4VRM\3SPDIF\2DRA\1VRA", as->ext_id); 1368 1.87 cegger aprint_normal_dev(sc_dev, "ac97: ext id %s\n", 1369 1.72 jmcneill flagbuf); 1370 1.44 kent 1371 1.72 jmcneill /* Print unusual settings */ 1372 1.72 jmcneill if (as->ext_id & AC97_EXT_AUDIO_DSA_MASK) { 1373 1.87 cegger aprint_normal_dev(sc_dev, "ac97: Slot assignment: "); 1374 1.72 jmcneill switch (as->ext_id & AC97_EXT_AUDIO_DSA_MASK) { 1375 1.72 jmcneill case AC97_EXT_AUDIO_DSA01: 1376 1.72 jmcneill aprint_normal("7&8, 6&9, 10&11.\n"); 1377 1.72 jmcneill break; 1378 1.72 jmcneill case AC97_EXT_AUDIO_DSA10: 1379 1.72 jmcneill aprint_normal("6&9, 10&11, 3&4.\n"); 1380 1.72 jmcneill break; 1381 1.72 jmcneill case AC97_EXT_AUDIO_DSA11: 1382 1.72 jmcneill aprint_normal("10&11, 3&4, 7&8.\n"); 1383 1.72 jmcneill break; 1384 1.72 jmcneill } 1385 1.44 kent } 1386 1.80 jmcneill if (as->host_flags & AC97_HOST_INVERTED_EAMP) { 1387 1.87 cegger aprint_normal_dev(sc_dev, "ac97: using inverted " 1388 1.87 cegger "AC97_POWER_EAMP bit\n"); 1389 1.80 jmcneill } 1390 1.27 kent 1391 1.92 jmcneill mutex_enter(as->lock); 1392 1.92 jmcneill 1393 1.72 jmcneill /* Enable and disable features */ 1394 1.72 jmcneill ac97_read(as, AC97_REG_EXT_AUDIO_CTRL, &extstat); 1395 1.72 jmcneill extstat &= ~AC97_EXT_AUDIO_DRA; 1396 1.72 jmcneill if (as->ext_id & AC97_EXT_AUDIO_LDAC) 1397 1.72 jmcneill extstat |= AC97_EXT_AUDIO_LDAC; 1398 1.72 jmcneill if (as->ext_id & AC97_EXT_AUDIO_SDAC) 1399 1.72 jmcneill extstat |= AC97_EXT_AUDIO_SDAC; 1400 1.72 jmcneill if (as->ext_id & AC97_EXT_AUDIO_CDAC) 1401 1.72 jmcneill extstat |= AC97_EXT_AUDIO_CDAC; 1402 1.72 jmcneill if (as->ext_id & AC97_EXT_AUDIO_VRM) 1403 1.72 jmcneill extstat |= AC97_EXT_AUDIO_VRM; 1404 1.72 jmcneill if (as->ext_id & AC97_EXT_AUDIO_SPDIF) { 1405 1.72 jmcneill /* Output the same data as DAC to SPDIF output */ 1406 1.72 jmcneill extstat &= ~AC97_EXT_AUDIO_SPSA_MASK; 1407 1.72 jmcneill extstat |= AC97_EXT_AUDIO_SPSA34; 1408 1.82 kent ac97_read(as, AC97_REG_SPDIF_CTRL, &val); 1409 1.82 kent val = (val & ~AC97_SPDIF_SPSR_MASK) 1410 1.82 kent | AC97_SPDIF_SPSR_48K; 1411 1.82 kent ac97_write(as, AC97_REG_SPDIF_CTRL, val); 1412 1.72 jmcneill } 1413 1.72 jmcneill if (as->ext_id & AC97_EXT_AUDIO_VRA) 1414 1.72 jmcneill extstat |= AC97_EXT_AUDIO_VRA; 1415 1.72 jmcneill ac97_write(as, AC97_REG_EXT_AUDIO_CTRL, extstat); 1416 1.72 jmcneill if (as->ext_id & AC97_EXT_AUDIO_VRA) { 1417 1.72 jmcneill /* VRA should be enabled. */ 1418 1.72 jmcneill /* so it claims to do variable rate, let's make sure */ 1419 1.72 jmcneill ac97_write(as, AC97_REG_PCM_FRONT_DAC_RATE, 1420 1.72 jmcneill 44100); 1421 1.72 jmcneill ac97_read(as, AC97_REG_PCM_FRONT_DAC_RATE, 1422 1.72 jmcneill &rate); 1423 1.72 jmcneill if (rate != 44100) { 1424 1.72 jmcneill /* We can't believe ext_id */ 1425 1.72 jmcneill as->ext_id = 0; 1426 1.93 mbalmer aprint_normal_dev(sc_dev, 1427 1.87 cegger "Ignore these capabilities.\n"); 1428 1.72 jmcneill } 1429 1.72 jmcneill /* restore the default value */ 1430 1.72 jmcneill ac97_write(as, AC97_REG_PCM_FRONT_DAC_RATE, 1431 1.72 jmcneill AC97_SINGLE_RATE); 1432 1.28 kent } 1433 1.28 kent } 1434 1.72 jmcneill } else if (as->type == AC97_CODEC_TYPE_MODEM) { 1435 1.76 atatat const struct sysctlnode *node; 1436 1.76 atatat const struct sysctlnode *node_line1; 1437 1.76 atatat const struct sysctlnode *node_line2; 1438 1.75 christos uint16_t xrate = 8000; 1439 1.75 christos uint16_t xval, reg; 1440 1.68 jmcneill int err; 1441 1.67 jmcneill 1442 1.72 jmcneill ac97_read(as, AC97_REG_EXT_MODEM_ID, &as->ext_mid); 1443 1.92 jmcneill mutex_exit(as->lock); 1444 1.92 jmcneill 1445 1.72 jmcneill if (as->ext_mid == 0 || as->ext_mid == 0xffff) { 1446 1.87 cegger aprint_normal_dev(sc_dev, "no modem codec found\n"); 1447 1.96 christos free(as, M_DEVBUF); 1448 1.72 jmcneill return ENXIO; 1449 1.72 jmcneill } 1450 1.71 jmcneill as->type = AC97_CODEC_TYPE_MODEM; 1451 1.69 jmcneill 1452 1.67 jmcneill /* Print capabilities */ 1453 1.89 christos snprintb(flagbuf, sizeof(flagbuf), 1454 1.89 christos "\20\5CID2\4CID1\3HANDSET\2LINE2\1LINE1", as->ext_mid); 1455 1.87 cegger aprint_normal_dev(sc_dev, "ac97: ext mid %s", 1456 1.67 jmcneill flagbuf); 1457 1.67 jmcneill aprint_normal(", %s codec\n", 1458 1.67 jmcneill (as->ext_mid & 0xc000) == 0 ? 1459 1.67 jmcneill "primary" : "secondary"); 1460 1.67 jmcneill 1461 1.68 jmcneill /* Setup modem and sysctls */ 1462 1.68 jmcneill err = sysctl_createv(&as->log, 0, NULL, NULL, 0, CTLTYPE_NODE, 1463 1.68 jmcneill "hw", NULL, NULL, 0, NULL, 0, CTL_HW, 1464 1.68 jmcneill CTL_EOL); 1465 1.68 jmcneill if (err != 0) 1466 1.72 jmcneill goto setup_modem; 1467 1.68 jmcneill err = sysctl_createv(&as->log, 0, NULL, &node, 0, 1468 1.87 cegger CTLTYPE_NODE, device_xname(sc_dev), NULL, 1469 1.68 jmcneill NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, 1470 1.68 jmcneill CTL_EOL); 1471 1.68 jmcneill if (err != 0) 1472 1.72 jmcneill goto setup_modem; 1473 1.72 jmcneill setup_modem: 1474 1.92 jmcneill mutex_enter(as->lock); 1475 1.92 jmcneill 1476 1.72 jmcneill /* reset */ 1477 1.72 jmcneill ac97_write(as, AC97_REG_EXT_MODEM_ID, 1); 1478 1.72 jmcneill 1479 1.72 jmcneill /* program rates */ 1480 1.75 christos xval = 0xff00 & ~AC97_EXT_MODEM_CTRL_PRA; 1481 1.67 jmcneill if (as->ext_mid & AC97_EXT_MODEM_LINE1) { 1482 1.75 christos ac97_write(as, AC97_REG_LINE1_RATE, xrate); 1483 1.75 christos xval &= ~(AC97_EXT_MODEM_CTRL_PRC | 1484 1.72 jmcneill AC97_EXT_MODEM_CTRL_PRD); 1485 1.67 jmcneill } 1486 1.67 jmcneill if (as->ext_mid & AC97_EXT_MODEM_LINE2) { 1487 1.75 christos ac97_write(as, AC97_REG_LINE2_RATE, xrate); 1488 1.75 christos xval &= ~(AC97_EXT_MODEM_CTRL_PRE | 1489 1.72 jmcneill AC97_EXT_MODEM_CTRL_PRF); 1490 1.67 jmcneill } 1491 1.67 jmcneill if (as->ext_mid & AC97_EXT_MODEM_HANDSET) { 1492 1.75 christos ac97_write(as, AC97_REG_HANDSET_RATE, xrate); 1493 1.75 christos xval &= ~(AC97_EXT_MODEM_CTRL_PRG | 1494 1.72 jmcneill AC97_EXT_MODEM_CTRL_PRH); 1495 1.67 jmcneill } 1496 1.72 jmcneill 1497 1.72 jmcneill /* power-up everything */ 1498 1.72 jmcneill ac97_write(as, AC97_REG_EXT_MODEM_CTRL, 0); 1499 1.73 jmcneill for (i = 5000; i >= 0; i--) { 1500 1.68 jmcneill ac97_read(as, AC97_REG_EXT_MODEM_CTRL, ®); 1501 1.72 jmcneill if ((reg & /*XXXval*/0xf) == /*XXXval*/0xf) 1502 1.72 jmcneill break; 1503 1.72 jmcneill DELAY(1); 1504 1.72 jmcneill } 1505 1.73 jmcneill if (i <= 0) { 1506 1.92 jmcneill mutex_exit(as->lock); 1507 1.73 jmcneill printf("%s: codec not responding, status=0x%x\n", 1508 1.87 cegger device_xname(sc_dev), reg); 1509 1.73 jmcneill return ENXIO; 1510 1.73 jmcneill } 1511 1.67 jmcneill 1512 1.68 jmcneill /* setup sysctls */ 1513 1.68 jmcneill if (as->ext_mid & AC97_EXT_MODEM_LINE1) { 1514 1.68 jmcneill ac97_read(as, AC97_REG_GPIO_CFG, ®); 1515 1.68 jmcneill reg &= ~AC97_GPIO_LINE1_OH; 1516 1.68 jmcneill ac97_write(as, AC97_REG_GPIO_CFG, reg); 1517 1.68 jmcneill ac97_read(as, AC97_REG_GPIO_POLARITY, ®); 1518 1.68 jmcneill reg &= ~AC97_GPIO_LINE1_OH; 1519 1.68 jmcneill ac97_write(as, AC97_REG_GPIO_POLARITY, reg); 1520 1.68 jmcneill 1521 1.92 jmcneill mutex_exit(as->lock); 1522 1.68 jmcneill err = sysctl_createv(&as->log, 0, NULL, &node_line1, 1523 1.68 jmcneill CTLFLAG_READWRITE, CTLTYPE_INT, 1524 1.68 jmcneill "line1", 1525 1.68 jmcneill SYSCTL_DESCR("off-hook line1"), 1526 1.94 dsl ac97_sysctl_verify, 0, (void *)as, 0, 1527 1.68 jmcneill CTL_HW, node->sysctl_num, 1528 1.68 jmcneill CTL_CREATE, CTL_EOL); 1529 1.92 jmcneill mutex_enter(as->lock); 1530 1.92 jmcneill 1531 1.68 jmcneill if (err != 0) 1532 1.68 jmcneill goto sysctl_err; 1533 1.68 jmcneill as->offhook_line1_mib = node_line1->sysctl_num; 1534 1.68 jmcneill } 1535 1.68 jmcneill if (as->ext_mid & AC97_EXT_MODEM_LINE2) { 1536 1.68 jmcneill ac97_read(as, AC97_REG_GPIO_CFG, ®); 1537 1.68 jmcneill reg &= ~AC97_GPIO_LINE2_OH; 1538 1.68 jmcneill ac97_write(as, AC97_REG_GPIO_CFG, reg); 1539 1.68 jmcneill ac97_read(as, AC97_REG_GPIO_POLARITY, ®); 1540 1.68 jmcneill reg &= ~AC97_GPIO_LINE2_OH; 1541 1.68 jmcneill ac97_write(as, AC97_REG_GPIO_POLARITY, reg); 1542 1.68 jmcneill 1543 1.92 jmcneill mutex_exit(as->lock); 1544 1.68 jmcneill err = sysctl_createv(&as->log, 0, NULL, &node_line2, 1545 1.68 jmcneill CTLFLAG_READWRITE, CTLTYPE_INT, 1546 1.68 jmcneill "line2", 1547 1.68 jmcneill SYSCTL_DESCR("off-hook line2"), 1548 1.94 dsl ac97_sysctl_verify, 0, (void *)as, 0, 1549 1.68 jmcneill CTL_HW, node->sysctl_num, 1550 1.68 jmcneill CTL_CREATE, CTL_EOL); 1551 1.92 jmcneill mutex_enter(as->lock); 1552 1.92 jmcneill 1553 1.68 jmcneill if (err != 0) 1554 1.68 jmcneill goto sysctl_err; 1555 1.68 jmcneill as->offhook_line2_mib = node_line2->sysctl_num; 1556 1.68 jmcneill } 1557 1.72 jmcneill sysctl_err: 1558 1.68 jmcneill 1559 1.67 jmcneill ac97_write(as, AC97_REG_GPIO_STICKY, 0xffff); 1560 1.67 jmcneill ac97_write(as, AC97_REG_GPIO_WAKEUP, 0x0); 1561 1.67 jmcneill ac97_write(as, AC97_REG_MISC_AFE, 0x0); 1562 1.67 jmcneill } 1563 1.67 jmcneill 1564 1.71 jmcneill as->source_info = (as->type == AC97_CODEC_TYPE_MODEM ? 1565 1.69 jmcneill as->modem_source_info : as->audio_source_info); 1566 1.1 augustss ac97_setup_source_info(as); 1567 1.8 augustss 1568 1.8 augustss memset(&ctl, 0, sizeof(ctl)); 1569 1.33 kent /* disable mutes */ 1570 1.33 kent for (i = 0; i < 11; i++) { 1571 1.33 kent static struct { 1572 1.75 christos const char *class, *device; 1573 1.33 kent } d[11] = { 1574 1.33 kent { AudioCoutputs, AudioNmaster}, 1575 1.33 kent { AudioCoutputs, AudioNheadphone}, 1576 1.33 kent { AudioCoutputs, AudioNsurround}, 1577 1.33 kent { AudioCoutputs, AudioNcenter}, 1578 1.33 kent { AudioCoutputs, AudioNlfe}, 1579 1.33 kent { AudioCinputs, AudioNdac}, 1580 1.33 kent { AudioCinputs, AudioNcd}, 1581 1.33 kent { AudioCinputs, AudioNline}, 1582 1.33 kent { AudioCinputs, AudioNaux}, 1583 1.33 kent { AudioCinputs, AudioNvideo}, 1584 1.33 kent { AudioCrecord, AudioNvolume}, 1585 1.33 kent }; 1586 1.33 kent 1587 1.33 kent ctl.type = AUDIO_MIXER_ENUM; 1588 1.33 kent ctl.un.ord = 0; 1589 1.33 kent 1590 1.33 kent ctl.dev = ac97_get_portnum_by_name(&as->codec_if, 1591 1.33 kent d[i].class, d[i].device, AudioNmute); 1592 1.33 kent ac97_mixer_set_port(&as->codec_if, &ctl); 1593 1.33 kent } 1594 1.8 augustss ctl.type = AUDIO_MIXER_ENUM; 1595 1.33 kent ctl.un.ord = 0; 1596 1.33 kent ctl.dev = ac97_get_portnum_by_name(&as->codec_if, AudioCrecord, 1597 1.33 kent AudioNsource, NULL); 1598 1.33 kent ac97_mixer_set_port(&as->codec_if, &ctl); 1599 1.33 kent 1600 1.33 kent /* set a reasonable default volume */ 1601 1.33 kent ctl.type = AUDIO_MIXER_VALUE; 1602 1.33 kent ctl.un.value.num_channels = 2; 1603 1.33 kent ctl.un.value.level[AUDIO_MIXER_LEVEL_LEFT] = \ 1604 1.33 kent ctl.un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = 127; 1605 1.14 thorpej ctl.dev = ac97_get_portnum_by_name(&as->codec_if, AudioCoutputs, 1606 1.33 kent AudioNmaster, NULL); 1607 1.14 thorpej ac97_mixer_set_port(&as->codec_if, &ctl); 1608 1.33 kent ctl.dev = ac97_get_portnum_by_name(&as->codec_if, AudioCoutputs, 1609 1.33 kent AudioNsurround, NULL); 1610 1.14 thorpej ac97_mixer_set_port(&as->codec_if, &ctl); 1611 1.33 kent ctl.un.value.num_channels = 1; 1612 1.33 kent ctl.dev = ac97_get_portnum_by_name(&as->codec_if, AudioCoutputs, 1613 1.33 kent AudioNcenter, NULL); 1614 1.14 thorpej ac97_mixer_set_port(&as->codec_if, &ctl); 1615 1.33 kent ctl.dev = ac97_get_portnum_by_name(&as->codec_if, AudioCoutputs, 1616 1.33 kent AudioNlfe, NULL); 1617 1.14 thorpej ac97_mixer_set_port(&as->codec_if, &ctl); 1618 1.1 augustss 1619 1.33 kent if (initfunc != NULL) 1620 1.33 kent initfunc(as); 1621 1.80 jmcneill 1622 1.80 jmcneill /* restore AC97_REG_POWER */ 1623 1.80 jmcneill if (as->type == AC97_CODEC_TYPE_AUDIO) 1624 1.80 jmcneill ac97_write(as, AC97_REG_POWER, as->power_reg); 1625 1.80 jmcneill 1626 1.92 jmcneill mutex_exit(as->lock); 1627 1.92 jmcneill 1628 1.50 kent return 0; 1629 1.1 augustss } 1630 1.1 augustss 1631 1.65 kent static void 1632 1.65 kent ac97_detach(struct ac97_codec_if *codec_if) 1633 1.65 kent { 1634 1.65 kent struct ac97_softc *as; 1635 1.65 kent 1636 1.65 kent as = (struct ac97_softc *)codec_if; 1637 1.92 jmcneill 1638 1.92 jmcneill mutex_enter(as->lock); 1639 1.65 kent ac97_write(as, AC97_REG_POWER, AC97_POWER_IN | AC97_POWER_OUT 1640 1.65 kent | AC97_POWER_MIXER | AC97_POWER_MIXER_VREF 1641 1.65 kent | AC97_POWER_ACLINK | AC97_POWER_CLK | AC97_POWER_AUX 1642 1.80 jmcneill | POWER_EAMP_OFF(as)); 1643 1.92 jmcneill mutex_exit(as->lock); 1644 1.92 jmcneill 1645 1.65 kent free(as, M_DEVBUF); 1646 1.65 kent } 1647 1.1 augustss 1648 1.82 kent static void 1649 1.82 kent ac97_lock(struct ac97_codec_if *codec_if) 1650 1.82 kent { 1651 1.82 kent struct ac97_softc *as; 1652 1.82 kent 1653 1.82 kent as = (struct ac97_softc *)codec_if; 1654 1.92 jmcneill 1655 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 1656 1.92 jmcneill 1657 1.82 kent as->lock_counter++; 1658 1.82 kent } 1659 1.82 kent 1660 1.82 kent static void 1661 1.82 kent ac97_unlock(struct ac97_codec_if *codec_if) 1662 1.82 kent { 1663 1.82 kent struct ac97_softc *as; 1664 1.82 kent 1665 1.82 kent as = (struct ac97_softc *)codec_if; 1666 1.92 jmcneill 1667 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 1668 1.92 jmcneill 1669 1.82 kent as->lock_counter--; 1670 1.82 kent } 1671 1.82 kent 1672 1.60 thorpej static int 1673 1.50 kent ac97_query_devinfo(struct ac97_codec_if *codec_if, mixer_devinfo_t *dip) 1674 1.1 augustss { 1675 1.50 kent struct ac97_softc *as; 1676 1.50 kent struct ac97_source_info *si; 1677 1.50 kent const char *name; 1678 1.1 augustss 1679 1.50 kent as = (struct ac97_softc *)codec_if; 1680 1.97 nat if (dip->index >= 0 && dip->index < as->num_source_info) { 1681 1.50 kent si = &as->source_info[dip->index]; 1682 1.1 augustss dip->type = si->type; 1683 1.1 augustss dip->mixer_class = si->mixer_class; 1684 1.1 augustss dip->prev = si->prev; 1685 1.1 augustss dip->next = si->next; 1686 1.36 kent 1687 1.1 augustss if (si->qualifier) 1688 1.1 augustss name = si->qualifier; 1689 1.1 augustss else if (si->device) 1690 1.1 augustss name = si->device; 1691 1.1 augustss else if (si->class) 1692 1.1 augustss name = si->class; 1693 1.6 augustss else 1694 1.99 isaki name = NULL; 1695 1.36 kent 1696 1.1 augustss if (name) 1697 1.1 augustss strcpy(dip->label.name, name); 1698 1.1 augustss 1699 1.100 rin if (si->info) 1700 1.100 rin memcpy(&dip->un, si->info, si->info_size); 1701 1.19 erh 1702 1.19 erh /* Set the delta for volume sources */ 1703 1.19 erh if (dip->type == AUDIO_MIXER_VALUE) 1704 1.19 erh dip->un.v.delta = 1 << (8 - si->bits); 1705 1.19 erh 1706 1.50 kent return 0; 1707 1.1 augustss } 1708 1.1 augustss 1709 1.50 kent return ENXIO; 1710 1.1 augustss } 1711 1.1 augustss 1712 1.60 thorpej static int 1713 1.50 kent ac97_mixer_set_port(struct ac97_codec_if *codec_if, mixer_ctrl_t *cp) 1714 1.1 augustss { 1715 1.50 kent struct ac97_softc *as; 1716 1.50 kent struct ac97_source_info *si; 1717 1.66 kent uint16_t mask; 1718 1.66 kent uint16_t val, newval; 1719 1.1 augustss int error; 1720 1.86 thorpej bool spdif; 1721 1.1 augustss 1722 1.50 kent as = (struct ac97_softc *)codec_if; 1723 1.92 jmcneill 1724 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 1725 1.92 jmcneill 1726 1.1 augustss if (cp->dev < 0 || cp->dev >= as->num_source_info) 1727 1.50 kent return EINVAL; 1728 1.82 kent si = &as->source_info[cp->dev]; 1729 1.1 augustss 1730 1.82 kent if (cp->type == AUDIO_MIXER_CLASS || cp->type != si->type) 1731 1.50 kent return EINVAL; 1732 1.82 kent spdif = si->req_feature == CHECK_SPDIF && si->reg == AC97_REG_EXT_AUDIO_CTRL; 1733 1.82 kent if (spdif && as->lock_counter >= 0) { 1734 1.82 kent /* When the value of lock_counter is the default 0, 1735 1.82 kent * it is not allowed to change the SPDIF mode. */ 1736 1.82 kent return EBUSY; 1737 1.82 kent } 1738 1.1 augustss 1739 1.15 thorpej ac97_read(as, si->reg, &val); 1740 1.1 augustss 1741 1.1 augustss DPRINTFN(5, ("read(%x) = %x\n", si->reg, val)); 1742 1.1 augustss 1743 1.1 augustss mask = (1 << si->bits) - 1; 1744 1.1 augustss 1745 1.1 augustss switch (cp->type) { 1746 1.1 augustss case AUDIO_MIXER_ENUM: 1747 1.1 augustss if (cp->un.ord > mask || cp->un.ord < 0) 1748 1.50 kent return EINVAL; 1749 1.1 augustss 1750 1.1 augustss newval = (cp->un.ord << si->ofs); 1751 1.1 augustss if (si->reg == AC97_REG_RECORD_SELECT) { 1752 1.1 augustss newval |= (newval << (8 + si->ofs)); 1753 1.1 augustss mask |= (mask << 8); 1754 1.33 kent mask = mask << si->ofs; 1755 1.33 kent } else if (si->reg == AC97_REG_SURR_MASTER) { 1756 1.33 kent newval = cp->un.ord ? 0x8080 : 0x0000; 1757 1.33 kent mask = 0x8080; 1758 1.33 kent } else 1759 1.33 kent mask = mask << si->ofs; 1760 1.1 augustss break; 1761 1.1 augustss case AUDIO_MIXER_VALUE: 1762 1.1 augustss { 1763 1.18 jdolecek const struct audio_mixer_value *value = si->info; 1764 1.66 kent uint16_t l, r, ol, or; 1765 1.49 cube int deltal, deltar; 1766 1.1 augustss 1767 1.1 augustss if ((cp->un.value.num_channels <= 0) || 1768 1.36 kent (cp->un.value.num_channels > value->num_channels)) 1769 1.50 kent return EINVAL; 1770 1.1 augustss 1771 1.1 augustss if (cp->un.value.num_channels == 1) { 1772 1.1 augustss l = r = cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]; 1773 1.1 augustss } else { 1774 1.17 rh if (!(as->host_flags & AC97_HOST_SWAPPED_CHANNELS)) { 1775 1.17 rh l = cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT]; 1776 1.17 rh r = cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT]; 1777 1.17 rh } else { /* left/right is reversed here */ 1778 1.17 rh r = cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT]; 1779 1.17 rh l = cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT]; 1780 1.17 rh } 1781 1.17 rh 1782 1.1 augustss } 1783 1.1 augustss 1784 1.1 augustss if (!si->polarity) { 1785 1.1 augustss l = 255 - l; 1786 1.1 augustss r = 255 - r; 1787 1.1 augustss } 1788 1.36 kent 1789 1.49 cube ol = (val >> (8+si->ofs)) & mask; 1790 1.49 cube or = (val >> si->ofs) & mask; 1791 1.49 cube 1792 1.49 cube deltal = (ol << (8 - si->bits)) - l; 1793 1.49 cube deltar = (or << (8 - si->bits)) - r; 1794 1.49 cube 1795 1.1 augustss l = l >> (8 - si->bits); 1796 1.1 augustss r = r >> (8 - si->bits); 1797 1.1 augustss 1798 1.49 cube if (deltal && ol == l) 1799 1.49 cube l += (deltal > 0) ? (l ? -1 : 0) : (l < mask ? 1 : 0); 1800 1.49 cube if (deltar && or == r) 1801 1.49 cube r += (deltar > 0) ? (r ? -1 : 0) : (r < mask ? 1 : 0); 1802 1.49 cube 1803 1.49 cube newval = ((r & mask) << si->ofs); 1804 1.1 augustss if (value->num_channels == 2) { 1805 1.49 cube newval = newval | ((l & mask) << (si->ofs+8)); 1806 1.1 augustss mask |= (mask << 8); 1807 1.1 augustss } 1808 1.33 kent mask = mask << si->ofs; 1809 1.1 augustss break; 1810 1.1 augustss } 1811 1.1 augustss default: 1812 1.50 kent return EINVAL; 1813 1.1 augustss } 1814 1.1 augustss 1815 1.15 thorpej error = ac97_write(as, si->reg, (val & ~mask) | newval); 1816 1.1 augustss if (error) 1817 1.50 kent return error; 1818 1.1 augustss 1819 1.82 kent if (spdif && as->host_if->spdif_event != NULL) { 1820 1.82 kent DPRINTF(("%s: call spdif_event(%d)\n", __func__, cp->un.ord)); 1821 1.82 kent as->host_if->spdif_event(as->host_if->arg, cp->un.ord); 1822 1.82 kent } 1823 1.50 kent return 0; 1824 1.1 augustss } 1825 1.1 augustss 1826 1.60 thorpej static int 1827 1.50 kent ac97_get_portnum_by_name(struct ac97_codec_if *codec_if, const char *class, 1828 1.50 kent const char *device, const char *qualifier) 1829 1.1 augustss { 1830 1.50 kent struct ac97_softc *as; 1831 1.1 augustss int idx; 1832 1.1 augustss 1833 1.50 kent as = (struct ac97_softc *)codec_if; 1834 1.92 jmcneill 1835 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 1836 1.92 jmcneill 1837 1.1 augustss for (idx = 0; idx < as->num_source_info; idx++) { 1838 1.1 augustss struct ac97_source_info *si = &as->source_info[idx]; 1839 1.1 augustss if (ac97_str_equal(class, si->class) && 1840 1.1 augustss ac97_str_equal(device, si->device) && 1841 1.1 augustss ac97_str_equal(qualifier, si->qualifier)) 1842 1.50 kent return idx; 1843 1.1 augustss } 1844 1.1 augustss 1845 1.50 kent return -1; 1846 1.1 augustss } 1847 1.1 augustss 1848 1.60 thorpej static int 1849 1.50 kent ac97_mixer_get_port(struct ac97_codec_if *codec_if, mixer_ctrl_t *cp) 1850 1.1 augustss { 1851 1.50 kent struct ac97_softc *as; 1852 1.50 kent struct ac97_source_info *si; 1853 1.66 kent uint16_t mask; 1854 1.66 kent uint16_t val; 1855 1.1 augustss 1856 1.50 kent as = (struct ac97_softc *)codec_if; 1857 1.92 jmcneill 1858 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 1859 1.92 jmcneill 1860 1.50 kent si = &as->source_info[cp->dev]; 1861 1.1 augustss if (cp->dev < 0 || cp->dev >= as->num_source_info) 1862 1.50 kent return EINVAL; 1863 1.1 augustss 1864 1.1 augustss if (cp->type != si->type) 1865 1.50 kent return EINVAL; 1866 1.1 augustss 1867 1.15 thorpej ac97_read(as, si->reg, &val); 1868 1.1 augustss 1869 1.1 augustss DPRINTFN(5, ("read(%x) = %x\n", si->reg, val)); 1870 1.1 augustss 1871 1.1 augustss mask = (1 << si->bits) - 1; 1872 1.1 augustss 1873 1.1 augustss switch (cp->type) { 1874 1.1 augustss case AUDIO_MIXER_ENUM: 1875 1.1 augustss cp->un.ord = (val >> si->ofs) & mask; 1876 1.36 kent DPRINTFN(4, ("AUDIO_MIXER_ENUM: %x %d %x %d\n", 1877 1.36 kent val, si->ofs, mask, cp->un.ord)); 1878 1.1 augustss break; 1879 1.1 augustss case AUDIO_MIXER_VALUE: 1880 1.1 augustss { 1881 1.18 jdolecek const struct audio_mixer_value *value = si->info; 1882 1.66 kent uint16_t l, r; 1883 1.1 augustss 1884 1.1 augustss if ((cp->un.value.num_channels <= 0) || 1885 1.36 kent (cp->un.value.num_channels > value->num_channels)) 1886 1.50 kent return EINVAL; 1887 1.1 augustss 1888 1.1 augustss if (value->num_channels == 1) { 1889 1.1 augustss l = r = (val >> si->ofs) & mask; 1890 1.1 augustss } else { 1891 1.17 rh if (!(as->host_flags & AC97_HOST_SWAPPED_CHANNELS)) { 1892 1.37 kent l = (val >> (si->ofs + 8)) & mask; 1893 1.37 kent r = (val >> si->ofs) & mask; 1894 1.37 kent } else { /* host has reversed channels */ 1895 1.37 kent r = (val >> (si->ofs + 8)) & mask; 1896 1.17 rh l = (val >> si->ofs) & mask; 1897 1.17 rh } 1898 1.1 augustss } 1899 1.1 augustss 1900 1.1 augustss l = (l << (8 - si->bits)); 1901 1.1 augustss r = (r << (8 - si->bits)); 1902 1.1 augustss if (!si->polarity) { 1903 1.1 augustss l = 255 - l; 1904 1.1 augustss r = 255 - r; 1905 1.1 augustss } 1906 1.1 augustss 1907 1.1 augustss /* The EAP driver averages l and r for stereo 1908 1.1 augustss channels that are requested in MONO mode. Does this 1909 1.1 augustss make sense? */ 1910 1.1 augustss if (cp->un.value.num_channels == 1) { 1911 1.1 augustss cp->un.value.level[AUDIO_MIXER_LEVEL_MONO] = l; 1912 1.1 augustss } else if (cp->un.value.num_channels == 2) { 1913 1.1 augustss cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = l; 1914 1.1 augustss cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = r; 1915 1.1 augustss } 1916 1.1 augustss 1917 1.1 augustss break; 1918 1.1 augustss } 1919 1.1 augustss default: 1920 1.50 kent return EINVAL; 1921 1.1 augustss } 1922 1.1 augustss 1923 1.50 kent return 0; 1924 1.1 augustss } 1925 1.1 augustss 1926 1.28 kent 1927 1.60 thorpej static int 1928 1.66 kent ac97_set_rate(struct ac97_codec_if *codec_if, int target, u_int *rate) 1929 1.28 kent { 1930 1.28 kent struct ac97_softc *as; 1931 1.66 kent u_int value; 1932 1.66 kent uint16_t ext_stat; 1933 1.66 kent uint16_t actual; 1934 1.66 kent uint16_t power; 1935 1.66 kent uint16_t power_bit; 1936 1.28 kent 1937 1.28 kent as = (struct ac97_softc *)codec_if; 1938 1.92 jmcneill 1939 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 1940 1.92 jmcneill 1941 1.29 kent if (target == AC97_REG_PCM_MIC_ADC_RATE) { 1942 1.29 kent if (!(as->ext_id & AC97_EXT_AUDIO_VRM)) { 1943 1.29 kent *rate = AC97_SINGLE_RATE; 1944 1.29 kent return 0; 1945 1.29 kent } 1946 1.29 kent } else { 1947 1.29 kent if (!(as->ext_id & AC97_EXT_AUDIO_VRA)) { 1948 1.29 kent *rate = AC97_SINGLE_RATE; 1949 1.29 kent return 0; 1950 1.29 kent } 1951 1.29 kent } 1952 1.28 kent value = *rate * AC97_STANDARD_CLOCK / as->ac97_clock; 1953 1.28 kent ext_stat = 0; 1954 1.28 kent /* 1955 1.28 kent * PCM_FRONT_DAC_RATE/PCM_SURR_DAC_RATE/PCM_LFE_DAC_RATE 1956 1.28 kent * Check VRA, DRA 1957 1.28 kent * PCM_LR_ADC_RATE 1958 1.28 kent * Check VRA 1959 1.28 kent * PCM_MIC_ADC_RATE 1960 1.28 kent * Check VRM 1961 1.28 kent */ 1962 1.28 kent switch (target) { 1963 1.28 kent case AC97_REG_PCM_FRONT_DAC_RATE: 1964 1.28 kent case AC97_REG_PCM_SURR_DAC_RATE: 1965 1.28 kent case AC97_REG_PCM_LFE_DAC_RATE: 1966 1.28 kent power_bit = AC97_POWER_OUT; 1967 1.28 kent if (!(as->ext_id & AC97_EXT_AUDIO_VRA)) { 1968 1.28 kent *rate = AC97_SINGLE_RATE; 1969 1.28 kent return 0; 1970 1.28 kent } 1971 1.28 kent if (as->ext_id & AC97_EXT_AUDIO_DRA) { 1972 1.28 kent ac97_read(as, AC97_REG_EXT_AUDIO_CTRL, &ext_stat); 1973 1.28 kent if (value > 0x1ffff) { 1974 1.28 kent return EINVAL; 1975 1.28 kent } else if (value > 0xffff) { 1976 1.28 kent /* Enable DRA */ 1977 1.28 kent ext_stat |= AC97_EXT_AUDIO_DRA; 1978 1.28 kent ac97_write(as, AC97_REG_EXT_AUDIO_CTRL, ext_stat); 1979 1.28 kent value /= 2; 1980 1.28 kent } else { 1981 1.28 kent /* Disable DRA */ 1982 1.28 kent ext_stat &= ~AC97_EXT_AUDIO_DRA; 1983 1.28 kent ac97_write(as, AC97_REG_EXT_AUDIO_CTRL, ext_stat); 1984 1.28 kent } 1985 1.28 kent } else { 1986 1.28 kent if (value > 0xffff) 1987 1.28 kent return EINVAL; 1988 1.28 kent } 1989 1.28 kent break; 1990 1.28 kent case AC97_REG_PCM_LR_ADC_RATE: 1991 1.28 kent power_bit = AC97_POWER_IN; 1992 1.28 kent if (!(as->ext_id & AC97_EXT_AUDIO_VRA)) { 1993 1.28 kent *rate = AC97_SINGLE_RATE; 1994 1.28 kent return 0; 1995 1.28 kent } 1996 1.28 kent if (value > 0xffff) 1997 1.28 kent return EINVAL; 1998 1.28 kent break; 1999 1.28 kent case AC97_REG_PCM_MIC_ADC_RATE: 2000 1.28 kent power_bit = AC97_POWER_IN; 2001 1.28 kent if (!(as->ext_id & AC97_EXT_AUDIO_VRM)) { 2002 1.28 kent *rate = AC97_SINGLE_RATE; 2003 1.28 kent return 0; 2004 1.28 kent } 2005 1.28 kent if (value > 0xffff) 2006 1.28 kent return EINVAL; 2007 1.28 kent break; 2008 1.28 kent default: 2009 1.28 kent printf("%s: Unknown register: 0x%x\n", __func__, target); 2010 1.28 kent return EINVAL; 2011 1.28 kent } 2012 1.28 kent 2013 1.28 kent ac97_read(as, AC97_REG_POWER, &power); 2014 1.28 kent ac97_write(as, AC97_REG_POWER, power | power_bit); 2015 1.28 kent 2016 1.66 kent ac97_write(as, target, (uint16_t)value); 2017 1.28 kent ac97_read(as, target, &actual); 2018 1.66 kent actual = (uint32_t)actual * as->ac97_clock / AC97_STANDARD_CLOCK; 2019 1.28 kent 2020 1.28 kent ac97_write(as, AC97_REG_POWER, power); 2021 1.28 kent if (ext_stat & AC97_EXT_AUDIO_DRA) { 2022 1.28 kent *rate = actual * 2; 2023 1.28 kent } else { 2024 1.28 kent *rate = actual; 2025 1.28 kent } 2026 1.28 kent return 0; 2027 1.28 kent } 2028 1.28 kent 2029 1.60 thorpej static void 2030 1.28 kent ac97_set_clock(struct ac97_codec_if *codec_if, unsigned int clock) 2031 1.28 kent { 2032 1.28 kent struct ac97_softc *as; 2033 1.28 kent 2034 1.28 kent as = (struct ac97_softc *)codec_if; 2035 1.92 jmcneill 2036 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 2037 1.92 jmcneill 2038 1.28 kent as->ac97_clock = clock; 2039 1.28 kent } 2040 1.28 kent 2041 1.66 kent static uint16_t 2042 1.28 kent ac97_get_extcaps(struct ac97_codec_if *codec_if) 2043 1.28 kent { 2044 1.28 kent struct ac97_softc *as; 2045 1.28 kent 2046 1.28 kent as = (struct ac97_softc *)codec_if; 2047 1.92 jmcneill 2048 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 2049 1.92 jmcneill 2050 1.28 kent return as->ext_id; 2051 1.33 kent } 2052 1.33 kent 2053 1.60 thorpej static int 2054 1.33 kent ac97_add_port(struct ac97_softc *as, const struct ac97_source_info *src) 2055 1.33 kent { 2056 1.33 kent struct ac97_source_info *si; 2057 1.33 kent int ouridx, idx; 2058 1.33 kent 2059 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 2060 1.92 jmcneill 2061 1.71 jmcneill if ((as->type == AC97_CODEC_TYPE_AUDIO && 2062 1.69 jmcneill as->num_source_info >= AUDIO_MAX_SOURCES) || 2063 1.71 jmcneill (as->type == AC97_CODEC_TYPE_MODEM && 2064 1.69 jmcneill as->num_source_info >= MODEM_MAX_SOURCES)) { 2065 1.33 kent printf("%s: internal error: increase MAX_SOURCES in %s\n", 2066 1.33 kent __func__, __FILE__); 2067 1.33 kent return -1; 2068 1.33 kent } 2069 1.33 kent if (!ac97_check_capability(as, src->req_feature)) 2070 1.33 kent return -1; 2071 1.33 kent ouridx = as->num_source_info; 2072 1.33 kent si = &as->source_info[ouridx]; 2073 1.33 kent memcpy(si, src, sizeof(*si)); 2074 1.33 kent 2075 1.33 kent switch (si->type) { 2076 1.33 kent case AUDIO_MIXER_CLASS: 2077 1.33 kent case AUDIO_MIXER_VALUE: 2078 1.33 kent printf("%s: adding class/value is not supported yet.\n", 2079 1.33 kent __func__); 2080 1.33 kent return -1; 2081 1.33 kent case AUDIO_MIXER_ENUM: 2082 1.33 kent break; 2083 1.33 kent default: 2084 1.33 kent printf("%s: unknown type: %d\n", __func__, si->type); 2085 1.33 kent return -1; 2086 1.33 kent } 2087 1.33 kent as->num_source_info++; 2088 1.33 kent 2089 1.33 kent si->mixer_class = ac97_get_portnum_by_name(&as->codec_if, si->class, 2090 1.33 kent NULL, NULL); 2091 1.33 kent /* Find the root of the device */ 2092 1.33 kent idx = ac97_get_portnum_by_name(&as->codec_if, si->class, 2093 1.33 kent si->device, NULL); 2094 1.33 kent /* Find the last item */ 2095 1.33 kent while (as->source_info[idx].next != AUDIO_MIXER_LAST) 2096 1.33 kent idx = as->source_info[idx].next; 2097 1.33 kent /* Append */ 2098 1.33 kent as->source_info[idx].next = ouridx; 2099 1.33 kent si->prev = idx; 2100 1.33 kent si->next = AUDIO_MIXER_LAST; 2101 1.33 kent 2102 1.33 kent return 0; 2103 1.43 kent } 2104 1.43 kent 2105 1.43 kent /** 2106 1.43 kent * Codec-dependent initialization 2107 1.43 kent */ 2108 1.43 kent 2109 1.46 kent #define AD1980_REG_MISC 0x76 2110 1.55 kent #define AD1980_MISC_MBG0 0x0001 /* 0 1888/1980/1981 /1985 */ 2111 1.55 kent #define AD1980_MISC_MBG1 0x0002 /* 1 1888/1980/1981 /1985 */ 2112 1.55 kent #define AD1980_MISC_VREFD 0x0004 /* 2 1888/1980/1981 /1985 */ 2113 1.55 kent #define AD1980_MISC_VREFH 0x0008 /* 3 1888/1980/1981 /1985 */ 2114 1.55 kent #define AD1980_MISC_SRU 0x0010 /* 4 1888/1980 /1985 */ 2115 1.55 kent #define AD1980_MISC_LOSEL 0x0020 /* 5 1888/1980/1981 /1985 */ 2116 1.55 kent #define AD1980_MISC_2CMIC 0x0040 /* 6 1980/1981B/1985 */ 2117 1.55 kent #define AD1980_MISC_SPRD 0x0080 /* 7 1888/1980 /1985 */ 2118 1.55 kent #define AD1980_MISC_DMIX0 0x0100 /* 8 1888/1980 /1985 */ 2119 1.55 kent #define AD1980_MISC_DMIX1 0x0200 /* 9 1888/1980 /1985 */ 2120 1.55 kent #define AD1980_MISC_HPSEL 0x0400 /*10 1888/1980 /1985 */ 2121 1.55 kent #define AD1980_MISC_CLDIS 0x0800 /*11 1888/1980 /1985 */ 2122 1.55 kent #define AD1980_MISC_LODIS 0x1000 /*12 1888/1980/1981 /1985 */ 2123 1.55 kent #define AD1980_MISC_MSPLT 0x2000 /*13 1888/1980/1981 /1985 */ 2124 1.55 kent #define AD1980_MISC_AC97NC 0x4000 /*14 1888/1980 /1985 */ 2125 1.55 kent #define AD1980_MISC_DACZ 0x8000 /*15 1888/1980/1981 /1985 */ 2126 1.46 kent #define AD1981_REG_MISC 0x76 2127 1.55 kent #define AD1981_MISC_MADST 0x0010 /* 4 */ 2128 1.55 kent #define AD1981A_MISC_MADPD 0x0040 /* 6 */ 2129 1.55 kent #define AD1981B_MISC_MADPD 0x0080 /* 7 */ 2130 1.55 kent #define AD1981_MISC_FMXE 0x0200 /* 9 */ 2131 1.55 kent #define AD1981_MISC_DAM 0x0800 /*11 */ 2132 1.43 kent static void 2133 1.51 kent ac97_ad198x_init(struct ac97_softc *as) 2134 1.43 kent { 2135 1.47 jmmv int i; 2136 1.55 kent uint16_t misc; 2137 1.43 kent 2138 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 2139 1.92 jmcneill 2140 1.46 kent ac97_read(as, AD1980_REG_MISC, &misc); 2141 1.46 kent ac97_write(as, AD1980_REG_MISC, 2142 1.46 kent misc | AD1980_MISC_LOSEL | AD1980_MISC_HPSEL); 2143 1.47 jmmv 2144 1.47 jmmv for (i = 0; i < as->num_source_info; i++) { 2145 1.47 jmmv if (as->source_info[i].type != AUDIO_MIXER_VALUE) 2146 1.47 jmmv continue; 2147 1.47 jmmv 2148 1.47 jmmv if (as->source_info[i].reg == AC97_REG_MASTER_VOLUME) 2149 1.47 jmmv as->source_info[i].reg = AC97_REG_SURR_MASTER; 2150 1.47 jmmv else if (as->source_info[i].reg == AC97_REG_SURR_MASTER) 2151 1.47 jmmv as->source_info[i].reg = AC97_REG_MASTER_VOLUME; 2152 1.47 jmmv } 2153 1.33 kent } 2154 1.33 kent 2155 1.33 kent #define ALC650_REG_MULTI_CHANNEL_CONTROL 0x6a 2156 1.33 kent #define ALC650_MCC_SLOT_MODIFY_MASK 0xc000 2157 1.35 kent #define ALC650_MCC_FRONTDAC_FROM_SPDIFIN 0x2000 /* 13 */ 2158 1.35 kent #define ALC650_MCC_SPDIFOUT_FROM_ADC 0x1000 /* 12 */ 2159 1.35 kent #define ALC650_MCC_PCM_FROM_SPDIFIN 0x0800 /* 11 */ 2160 1.35 kent #define ALC650_MCC_MIC_OR_CENTERLFE 0x0400 /* 10 */ 2161 1.35 kent #define ALC650_MCC_LINEIN_OR_SURROUND 0x0200 /* 9 */ 2162 1.35 kent #define ALC650_MCC_INDEPENDENT_MASTER_L 0x0080 /* 7 */ 2163 1.35 kent #define ALC650_MCC_INDEPENDENT_MASTER_R 0x0040 /* 6 */ 2164 1.35 kent #define ALC650_MCC_ANALOG_TO_CENTERLFE 0x0020 /* 5 */ 2165 1.35 kent #define ALC650_MCC_ANALOG_TO_SURROUND 0x0010 /* 4 */ 2166 1.35 kent #define ALC650_MCC_EXCHANGE_CENTERLFE 0x0008 /* 3 */ 2167 1.35 kent #define ALC650_MCC_CENTERLFE_DOWNMIX 0x0004 /* 2 */ 2168 1.35 kent #define ALC650_MCC_SURROUND_DOWNMIX 0x0002 /* 1 */ 2169 1.35 kent #define ALC650_MCC_LINEOUT_TO_SURROUND 0x0001 /* 0 */ 2170 1.33 kent static void 2171 1.33 kent ac97_alc650_init(struct ac97_softc *as) 2172 1.33 kent { 2173 1.35 kent static const struct ac97_source_info sources[6] = { 2174 1.33 kent { AudioCoutputs, AudioNsurround, "lineinjack", 2175 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2176 1.33 kent ALC650_REG_MULTI_CHANNEL_CONTROL, 2177 1.84 christos 0x0000, 1, 9, 0, 0, 0, CHECK_SURROUND, 0, 0, 0, }, 2178 1.35 kent { AudioCoutputs, AudioNsurround, "mixtofront", 2179 1.35 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2180 1.35 kent ALC650_REG_MULTI_CHANNEL_CONTROL, 2181 1.84 christos 0x0000, 1, 1, 0, 0, 0, CHECK_SURROUND, 0, 0, 0, }, 2182 1.33 kent { AudioCoutputs, AudioNcenter, "micjack", 2183 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2184 1.33 kent ALC650_REG_MULTI_CHANNEL_CONTROL, 2185 1.84 christos 0x0000, 1, 10, 0, 0, 0, CHECK_CENTER, 0, 0, 0, }, 2186 1.33 kent { AudioCoutputs, AudioNlfe, "micjack", 2187 1.33 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2188 1.33 kent ALC650_REG_MULTI_CHANNEL_CONTROL, 2189 1.84 christos 0x0000, 1, 10, 0, 0, 0, CHECK_LFE, 0, 0, 0, }, 2190 1.35 kent { AudioCoutputs, AudioNcenter, "mixtofront", 2191 1.35 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2192 1.35 kent ALC650_REG_MULTI_CHANNEL_CONTROL, 2193 1.84 christos 0x0000, 1, 2, 0, 0, 0, CHECK_CENTER, 0, 0, 0, }, 2194 1.35 kent { AudioCoutputs, AudioNlfe, "mixtofront", 2195 1.35 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2196 1.35 kent ALC650_REG_MULTI_CHANNEL_CONTROL, 2197 1.84 christos 0x0000, 1, 2, 0, 0, 0, CHECK_LFE, 0, 0, 0, }, 2198 1.35 kent }; 2199 1.35 kent 2200 1.35 kent ac97_add_port(as, &sources[0]); 2201 1.35 kent ac97_add_port(as, &sources[1]); 2202 1.35 kent ac97_add_port(as, &sources[2]); 2203 1.35 kent ac97_add_port(as, &sources[3]); 2204 1.35 kent ac97_add_port(as, &sources[4]); 2205 1.35 kent ac97_add_port(as, &sources[5]); 2206 1.35 kent } 2207 1.35 kent 2208 1.91 kiyohara #define UCB1400_REG_FEATURE_CSR1 0x6a 2209 1.91 kiyohara #define UCB1400_BB(bb) (((bb) & 0xf) << 11) 2210 1.91 kiyohara #define UCB1400_TR(tr) (((tr) & 0x3) << 9) 2211 1.91 kiyohara #define UCB1400_M_MAXIMUM (3 << 7) 2212 1.91 kiyohara #define UCB1400_M_MINIMUM (1 << 7) 2213 1.91 kiyohara #define UCB1400_M_FLAT (0 << 7) 2214 1.91 kiyohara #define UCB1400_HPEN (1 << 6) 2215 1.91 kiyohara #define UCB1400_DE (1 << 5) 2216 1.91 kiyohara #define UCB1400_DC (1 << 4) 2217 1.91 kiyohara #define UCB1400_HIPS (1 << 3) 2218 1.91 kiyohara #define UCB1400_GIEN (1 << 2) 2219 1.91 kiyohara #define UCB1400_OVFL (1 << 0) 2220 1.91 kiyohara #define UCB1400_REG_FEATURE_CSR2 0x6c 2221 1.91 kiyohara #define UCB1400_SMT (1 << 15) /* Must be 0 */ 2222 1.91 kiyohara #define UCB1400_SUEV1 (1 << 14) /* Must be 0 */ 2223 1.91 kiyohara #define UCB1400_SUEV0 (1 << 13) /* Must be 0 */ 2224 1.91 kiyohara #define UCB1400_AVE (1 << 12) 2225 1.91 kiyohara #define UCB1400_AVEN1 (1 << 11) /* Must be 0 */ 2226 1.91 kiyohara #define UCB1400_AVEN0 (1 << 10) /* Must be 0 */ 2227 1.91 kiyohara #define UCB1400_SLP_ON \ 2228 1.91 kiyohara (UCB1400_SLP_PLL | UCB1400_SLP_CODEC) 2229 1.91 kiyohara #define UCB1400_SLP_PLL (2 << 4) 2230 1.91 kiyohara #define UCB1400_SLP_CODEC (1 << 4) 2231 1.91 kiyohara #define UCB1400_SLP_NO (0 << 4) 2232 1.91 kiyohara #define UCB1400_EV2 (1 << 2) /* Must be 0 */ 2233 1.91 kiyohara #define UCB1400_EV1 (1 << 1) /* Must be 0 */ 2234 1.91 kiyohara #define UCB1400_EV0 (1 << 0) /* Must be 0 */ 2235 1.91 kiyohara static void 2236 1.91 kiyohara ac97_ucb1400_init(struct ac97_softc *as) 2237 1.91 kiyohara { 2238 1.91 kiyohara 2239 1.91 kiyohara ac97_write(as, UCB1400_REG_FEATURE_CSR1, 2240 1.91 kiyohara UCB1400_HPEN | UCB1400_DC | UCB1400_HIPS | UCB1400_OVFL); 2241 1.91 kiyohara ac97_write(as, UCB1400_REG_FEATURE_CSR2, UCB1400_AVE | UCB1400_SLP_ON); 2242 1.91 kiyohara } 2243 1.91 kiyohara 2244 1.35 kent #define VT1616_REG_IO_CONTROL 0x5a 2245 1.35 kent #define VT1616_IC_LVL (1 << 15) 2246 1.35 kent #define VT1616_IC_LFECENTER_TO_FRONT (1 << 12) 2247 1.35 kent #define VT1616_IC_SURROUND_TO_FRONT (1 << 11) 2248 1.35 kent #define VT1616_IC_BPDC (1 << 10) 2249 1.35 kent #define VT1616_IC_DC (1 << 9) 2250 1.35 kent #define VT1616_IC_IB_MASK 0x000c 2251 1.35 kent static void 2252 1.35 kent ac97_vt1616_init(struct ac97_softc *as) 2253 1.35 kent { 2254 1.35 kent static const struct ac97_source_info sources[3] = { 2255 1.35 kent { AudioCoutputs, AudioNsurround, "mixtofront", 2256 1.35 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2257 1.35 kent VT1616_REG_IO_CONTROL, 2258 1.84 christos 0x0000, 1, 11, 0, 0, 0, CHECK_SURROUND, 0, 0, 0, }, 2259 1.35 kent { AudioCoutputs, AudioNcenter, "mixtofront", 2260 1.35 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2261 1.35 kent VT1616_REG_IO_CONTROL, 2262 1.84 christos 0x0000, 1, 12, 0, 0, 0, CHECK_CENTER, 0, 0, 0, }, 2263 1.35 kent { AudioCoutputs, AudioNlfe, "mixtofront", 2264 1.35 kent AUDIO_MIXER_ENUM, WRAP(ac97_on_off), 2265 1.35 kent VT1616_REG_IO_CONTROL, 2266 1.84 christos 0x0000, 1, 12, 0, 0, 0, CHECK_LFE, 0, 0, 0, }, 2267 1.35 kent }; 2268 1.33 kent 2269 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 2270 1.92 jmcneill 2271 1.33 kent ac97_add_port(as, &sources[0]); 2272 1.33 kent ac97_add_port(as, &sources[1]); 2273 1.33 kent ac97_add_port(as, &sources[2]); 2274 1.28 kent } 2275 1.68 jmcneill 2276 1.68 jmcneill static int 2277 1.68 jmcneill ac97_modem_offhook_set(struct ac97_softc *as, int line, int newval) 2278 1.68 jmcneill { 2279 1.69 jmcneill uint16_t val; 2280 1.68 jmcneill 2281 1.92 jmcneill KASSERT(mutex_owned(as->lock)); 2282 1.92 jmcneill 2283 1.69 jmcneill val = as->shadow_reg[AC97_REG_GPIO_STATUS >> 1]; 2284 1.68 jmcneill switch (newval) { 2285 1.68 jmcneill case 0: 2286 1.68 jmcneill val &= ~line; 2287 1.68 jmcneill break; 2288 1.68 jmcneill case 1: 2289 1.68 jmcneill val |= line; 2290 1.68 jmcneill break; 2291 1.68 jmcneill } 2292 1.68 jmcneill ac97_write(as, AC97_REG_GPIO_STATUS, val); 2293 1.68 jmcneill 2294 1.68 jmcneill return 0; 2295 1.68 jmcneill } 2296 1.68 jmcneill 2297 1.68 jmcneill static int 2298 1.68 jmcneill ac97_sysctl_verify(SYSCTLFN_ARGS) 2299 1.68 jmcneill { 2300 1.68 jmcneill int error, tmp; 2301 1.68 jmcneill struct sysctlnode node; 2302 1.68 jmcneill struct ac97_softc *as; 2303 1.68 jmcneill 2304 1.68 jmcneill node = *rnode; 2305 1.68 jmcneill as = rnode->sysctl_data; 2306 1.68 jmcneill if (node.sysctl_num == as->offhook_line1_mib) { 2307 1.68 jmcneill tmp = as->offhook_line1; 2308 1.68 jmcneill node.sysctl_data = &tmp; 2309 1.68 jmcneill error = sysctl_lookup(SYSCTLFN_CALL(&node)); 2310 1.68 jmcneill if (error || newp == NULL) 2311 1.68 jmcneill return error; 2312 1.68 jmcneill 2313 1.68 jmcneill if (tmp < 0 || tmp > 1) 2314 1.68 jmcneill return EINVAL; 2315 1.68 jmcneill 2316 1.68 jmcneill as->offhook_line1 = tmp; 2317 1.92 jmcneill mutex_enter(as->lock); 2318 1.68 jmcneill ac97_modem_offhook_set(as, AC97_GPIO_LINE1_OH, tmp); 2319 1.92 jmcneill mutex_exit(as->lock); 2320 1.68 jmcneill } else if (node.sysctl_num == as->offhook_line2_mib) { 2321 1.68 jmcneill tmp = as->offhook_line2; 2322 1.68 jmcneill node.sysctl_data = &tmp; 2323 1.68 jmcneill error = sysctl_lookup(SYSCTLFN_CALL(&node)); 2324 1.68 jmcneill if (error || newp == NULL) 2325 1.68 jmcneill return error; 2326 1.68 jmcneill 2327 1.68 jmcneill if (tmp < 0 || tmp > 1) 2328 1.68 jmcneill return EINVAL; 2329 1.68 jmcneill 2330 1.68 jmcneill as->offhook_line2 = tmp; 2331 1.92 jmcneill mutex_enter(as->lock); 2332 1.68 jmcneill ac97_modem_offhook_set(as, AC97_GPIO_LINE2_OH, tmp); 2333 1.92 jmcneill mutex_exit(as->lock); 2334 1.68 jmcneill } 2335 1.68 jmcneill 2336 1.68 jmcneill return 0; 2337 1.68 jmcneill } 2338