1 1.119 isaki /* $NetBSD: gus.c,v 1.119 2021/02/06 07:16:18 isaki Exp $ */ 2 1.2 cgd 3 1.5 jtc /*- 4 1.107 jmcneill * Copyright (c) 1996, 1999, 2008 The NetBSD Foundation, Inc. 5 1.5 jtc * All rights reserved. 6 1.5 jtc * 7 1.5 jtc * This code is derived from software contributed to The NetBSD Foundation 8 1.5 jtc * by Ken Hornstein and John Kohl. 9 1.1 brezak * 10 1.1 brezak * Redistribution and use in source and binary forms, with or without 11 1.1 brezak * modification, are permitted provided that the following conditions 12 1.1 brezak * are met: 13 1.1 brezak * 1. Redistributions of source code must retain the above copyright 14 1.1 brezak * notice, this list of conditions and the following disclaimer. 15 1.1 brezak * 2. Redistributions in binary form must reproduce the above copyright 16 1.1 brezak * notice, this list of conditions and the following disclaimer in the 17 1.1 brezak * documentation and/or other materials provided with the distribution. 18 1.1 brezak * 19 1.6 jtc * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 20 1.6 jtc * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 21 1.6 jtc * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 22 1.45 jtc * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 23 1.45 jtc * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 24 1.6 jtc * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 25 1.6 jtc * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 26 1.6 jtc * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 27 1.6 jtc * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 28 1.6 jtc * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 29 1.6 jtc * POSSIBILITY OF SUCH DAMAGE. 30 1.1 brezak */ 31 1.2 cgd 32 1.1 brezak /* 33 1.2 cgd * 34 1.1 brezak * TODO: 35 1.1 brezak * . figure out why mixer activity while sound is playing causes problems 36 1.1 brezak * (phantom interrupts?) 37 1.87 kent * . figure out a better deinterleave strategy that avoids sucking up 38 1.1 brezak * CPU, memory and cache bandwidth. (Maybe a special encoding? 39 1.1 brezak * Maybe use the double-speed sampling/hardware deinterleave trick 40 1.1 brezak * from the GUS SDK?) A 486/33 isn't quite fast enough to keep 41 1.1 brezak * up with 44.1kHz 16-bit stereo output without some drop-outs. 42 1.79 wiz * . use CS4231 for 16-bit sampling, for A-law and mu-law playback. 43 1.1 brezak * . actually test full-duplex sampling(recording) and playback. 44 1.1 brezak */ 45 1.2 cgd 46 1.1 brezak /* 47 1.1 brezak * Gravis UltraSound driver 48 1.1 brezak * 49 1.1 brezak * For more detailed information, see the GUS developers' kit 50 1.1 brezak * available on the net at: 51 1.1 brezak * 52 1.53 augustss * http://www.gravis.com/Public/sdk/GUSDK222.ZIP 53 1.53 augustss * 54 1.1 brezak * See ultrawrd.doc inside--it's MS Word (ick), but it's the bible 55 1.1 brezak * 56 1.1 brezak */ 57 1.2 cgd 58 1.1 brezak /* 59 1.1 brezak * The GUS Max has a slightly strange set of connections between the CS4231 60 1.1 brezak * and the GF1 and the DMA interconnects. It's set up so that the CS4231 can 61 1.1 brezak * be playing while the GF1 is loading patches from the system. 62 1.1 brezak * 63 1.1 brezak * Here's a recreation of the DMA interconnect diagram: 64 1.1 brezak * 65 1.1 brezak * GF1 66 1.1 brezak * +---------+ digital 67 1.1 brezak * | | record ASIC 68 1.1 brezak * | |--------------+ 69 1.1 brezak * | | | +--------+ 70 1.1 brezak * | | play (dram) | +----+ | | 71 1.1 brezak * | |--------------(------|-\ | | +-+ | 72 1.80 wiz * +---------+ | | >-|----|---|C|--|------ DMA chan 1 73 1.87 kent * | +---|-/ | | +-+ | 74 1.1 brezak * | | +----+ | | | 75 1.1 brezak * | | +----+ | | | 76 1.1 brezak * +---------+ +-+ +--(---|-\ | | | | 77 1.80 wiz * | | play |8| | | >-|----|----+---|------ DMA chan 2 78 1.1 brezak * | ---C----|--------|/|------(---|-/ | | | 79 1.1 brezak * | ^ |record |1| | +----+ | | 80 1.87 kent * | | | /----|6|------+ +--------+ 81 1.1 brezak * | ---+----|--/ +-+ 82 1.1 brezak * +---------+ 83 1.87 kent * CS4231 8-to-16 bit bus conversion, if needed 84 1.1 brezak * 85 1.1 brezak * 86 1.1 brezak * "C" is an optional combiner. 87 1.1 brezak * 88 1.1 brezak */ 89 1.73 lukem 90 1.73 lukem #include <sys/cdefs.h> 91 1.119 isaki __KERNEL_RCSID(0, "$NetBSD: gus.c,v 1.119 2021/02/06 07:16:18 isaki Exp $"); 92 1.1 brezak 93 1.1 brezak #include <sys/param.h> 94 1.1 brezak #include <sys/systm.h> 95 1.69 thorpej #include <sys/callout.h> 96 1.1 brezak #include <sys/errno.h> 97 1.1 brezak #include <sys/ioctl.h> 98 1.1 brezak #include <sys/syslog.h> 99 1.1 brezak #include <sys/device.h> 100 1.1 brezak #include <sys/proc.h> 101 1.1 brezak #include <sys/buf.h> 102 1.1 brezak #include <sys/fcntl.h> 103 1.107 jmcneill #include <sys/kmem.h> 104 1.1 brezak #include <sys/kernel.h> 105 1.100 ad #include <sys/cpu.h> 106 1.100 ad #include <sys/intr.h> 107 1.100 ad #include <sys/bus.h> 108 1.107 jmcneill #include <sys/audioio.h> 109 1.99 ad 110 1.116 isaki #include <dev/audio/audio_if.h> 111 1.1 brezak 112 1.1 brezak #include <dev/ic/ics2101reg.h> 113 1.1 brezak #include <dev/ic/cs4231reg.h> 114 1.1 brezak #include <dev/ic/ad1848reg.h> 115 1.107 jmcneill 116 1.107 jmcneill #include <dev/isa/isavar.h> 117 1.107 jmcneill #include <dev/isa/isadmavar.h> 118 1.1 brezak #include <dev/isa/ics2101var.h> 119 1.1 brezak #include <dev/isa/ad1848var.h> 120 1.12 jtk #include <dev/isa/cs4231var.h> 121 1.107 jmcneill #include <dev/isa/gusreg.h> 122 1.1 brezak 123 1.8 jtk #ifdef AUDIO_DEBUG 124 1.8 jtk #define STATIC /* empty; for debugging symbols */ 125 1.8 jtk #else 126 1.8 jtk #define STATIC static 127 1.8 jtk #endif 128 1.8 jtk 129 1.107 jmcneill #define GUS_MAX_BLOCKSIZE 65536 130 1.107 jmcneill 131 1.1 brezak /* 132 1.1 brezak * Software state of a single "voice" on the GUS 133 1.1 brezak */ 134 1.1 brezak 135 1.1 brezak struct gus_voice { 136 1.1 brezak 137 1.1 brezak /* 138 1.1 brezak * Various control bits 139 1.1 brezak */ 140 1.1 brezak 141 1.1 brezak unsigned char voccntl; /* State of voice control register */ 142 1.1 brezak unsigned char volcntl; /* State of volume control register */ 143 1.1 brezak unsigned char pan_pos; /* Position of volume panning (4 bits) */ 144 1.1 brezak int rate; /* Sample rate of voice being played back */ 145 1.1 brezak 146 1.1 brezak /* 147 1.1 brezak * Address of the voice data into the GUS's DRAM. 20 bits each 148 1.1 brezak */ 149 1.1 brezak 150 1.1 brezak u_long start_addr; /* Starting address of voice data loop area */ 151 1.1 brezak u_long end_addr; /* Ending address of voice data loop */ 152 1.1 brezak u_long current_addr; /* Beginning address of voice data 153 1.1 brezak (start playing here) */ 154 1.1 brezak 155 1.1 brezak /* 156 1.1 brezak * linear volume values for the GUS's volume ramp. 0-511 (9 bits). 157 1.1 brezak * These values must be translated into the logarithmic values using 158 1.1 brezak * gus_log_volumes[] 159 1.1 brezak */ 160 1.1 brezak 161 1.1 brezak int start_volume; /* Starting position of volume ramp */ 162 1.1 brezak int current_volume; /* Current position of volume on volume ramp */ 163 1.1 brezak int end_volume; /* Ending position of volume on volume ramp */ 164 1.1 brezak }; 165 1.1 brezak 166 1.1 brezak /* 167 1.1 brezak * Software state of GUS 168 1.1 brezak */ 169 1.1 brezak 170 1.1 brezak struct gus_softc { 171 1.109 chs device_t sc_dev; /* base device */ 172 1.107 jmcneill kmutex_t sc_lock; 173 1.107 jmcneill kmutex_t sc_intr_lock; 174 1.1 brezak void *sc_ih; /* interrupt vector */ 175 1.22 augustss bus_space_tag_t sc_iot; /* tag */ 176 1.43 augustss bus_space_handle_t sc_ioh1; /* handle */ 177 1.43 augustss bus_space_handle_t sc_ioh2; /* handle */ 178 1.43 augustss bus_space_handle_t sc_ioh3; /* ICS2101 handle */ 179 1.43 augustss bus_space_handle_t sc_ioh4; /* MIDI handle */ 180 1.112 nat char padding[20]; 181 1.1 brezak 182 1.98 ad callout_t sc_dmaout_ch; 183 1.69 thorpej 184 1.112 nat isa_chipset_tag_t sc_ic; /* ISA chipset info */ 185 1.112 nat char padding1[4]; 186 1.3 mycroft int sc_irq; /* IRQ used */ 187 1.66 mycroft int sc_playdrq; /* DMA channel for play */ 188 1.68 thorpej bus_size_t sc_play_maxsize; /* DMA size for play */ 189 1.3 mycroft int sc_recdrq; /* DMA channel for recording */ 190 1.68 thorpej bus_size_t sc_req_maxsize; /* DMA size for recording */ 191 1.1 brezak 192 1.1 brezak int sc_flags; /* Various flags about the GUS */ 193 1.1 brezak #define GUS_MIXER_INSTALLED 0x01 /* An ICS mixer is installed */ 194 1.1 brezak #define GUS_LOCKED 0x02 /* GUS is busy doing multi-phase DMA */ 195 1.1 brezak #define GUS_CODEC_INSTALLED 0x04 /* CS4231 installed/MAX */ 196 1.1 brezak #define GUS_PLAYING 0x08 /* GUS is playing a voice */ 197 1.1 brezak #define GUS_DMAOUT_ACTIVE 0x10 /* GUS is busy doing audio DMA */ 198 1.1 brezak #define GUS_DMAIN_ACTIVE 0x20 /* GUS is busy sampling */ 199 1.1 brezak #define GUS_OPEN 0x100 /* GUS is open */ 200 1.1 brezak int sc_dsize; /* Size of GUS DRAM */ 201 1.1 brezak int sc_voices; /* Number of active voices */ 202 1.1 brezak u_char sc_revision; /* Board revision of GUS */ 203 1.1 brezak u_char sc_mixcontrol; /* Value of GUS_MIX_CONTROL register */ 204 1.1 brezak 205 1.1 brezak u_long sc_orate; /* Output sampling rate */ 206 1.1 brezak u_long sc_irate; /* Input sampling rate */ 207 1.1 brezak 208 1.1 brezak int sc_encoding; /* Current data encoding type */ 209 1.1 brezak int sc_precision; /* # of bits of precision */ 210 1.1 brezak int sc_channels; /* Number of active channels */ 211 1.1 brezak int sc_blocksize; /* Current blocksize */ 212 1.1 brezak int sc_chanblocksize; /* Current blocksize for each in-use 213 1.1 brezak channel */ 214 1.1 brezak short sc_nbufs; /* how many on-GUS bufs per-channel */ 215 1.1 brezak short sc_bufcnt; /* how many need to be played */ 216 1.1 brezak void *sc_deintr_buf; /* deinterleave buffer for stereo */ 217 1.1 brezak 218 1.1 brezak int sc_ogain; /* Output gain control */ 219 1.1 brezak u_char sc_out_port; /* Current out port (generic only) */ 220 1.1 brezak u_char sc_in_port; /* keep track of it when no codec */ 221 1.1 brezak 222 1.87 kent void (*sc_dmaoutintr)(void*); /* DMA completion intr handler */ 223 1.1 brezak void *sc_outarg; /* argument for sc_dmaoutintr() */ 224 1.1 brezak u_char *sc_dmaoutaddr; /* for isa_dmadone */ 225 1.1 brezak u_long sc_gusaddr; /* where did we just put it? */ 226 1.1 brezak int sc_dmaoutcnt; /* for isa_dmadone */ 227 1.1 brezak 228 1.87 kent void (*sc_dmainintr)(void*); /* DMA completion intr handler */ 229 1.1 brezak void *sc_inarg; /* argument for sc_dmaoutintr() */ 230 1.1 brezak u_char *sc_dmainaddr; /* for isa_dmadone */ 231 1.1 brezak int sc_dmaincnt; /* for isa_dmadone */ 232 1.1 brezak 233 1.1 brezak struct stereo_dma_intr { 234 1.87 kent void (*intr)(void *); 235 1.1 brezak void *arg; 236 1.1 brezak u_char *buffer; 237 1.1 brezak u_long dmabuf; 238 1.1 brezak int size; 239 1.1 brezak int flags; 240 1.1 brezak } sc_stereo; 241 1.1 brezak 242 1.1 brezak /* 243 1.1 brezak * State information for linear audio layer 244 1.1 brezak */ 245 1.1 brezak 246 1.1 brezak int sc_dmabuf; /* Which ring buffer we're DMA'ing to */ 247 1.1 brezak int sc_playbuf; /* Which ring buffer we're playing */ 248 1.1 brezak 249 1.1 brezak /* 250 1.1 brezak * Voice information array. All voice-specific information is stored 251 1.1 brezak * here 252 1.1 brezak */ 253 1.1 brezak 254 1.1 brezak struct gus_voice sc_voc[32]; /* Voice data for each voice */ 255 1.1 brezak union { 256 1.1 brezak struct ics2101_softc sc_mixer_u; 257 1.60 pk struct ad1848_isa_softc sc_codec_u; 258 1.1 brezak } u; 259 1.112 nat int sc_iobase; /* I/O base address */ 260 1.1 brezak #define sc_mixer u.sc_mixer_u 261 1.1 brezak #define sc_codec u.sc_codec_u 262 1.1 brezak }; 263 1.1 brezak 264 1.1 brezak struct ics2101_volume { 265 1.1 brezak u_char left; 266 1.1 brezak u_char right; 267 1.1 brezak }; 268 1.1 brezak 269 1.1 brezak #define HAS_CODEC(sc) ((sc)->sc_flags & GUS_CODEC_INSTALLED) 270 1.1 brezak #define HAS_MIXER(sc) ((sc)->sc_flags & GUS_MIXER_INSTALLED) 271 1.1 brezak 272 1.1 brezak /* 273 1.1 brezak * Mixer devices for ICS2101 274 1.1 brezak */ 275 1.1 brezak /* MIC IN mute, line in mute, line out mute are first since they can be done 276 1.1 brezak even if no ICS mixer. */ 277 1.1 brezak #define GUSICS_MIC_IN_MUTE 0 278 1.1 brezak #define GUSICS_LINE_IN_MUTE 1 279 1.1 brezak #define GUSICS_MASTER_MUTE 2 280 1.1 brezak #define GUSICS_CD_MUTE 3 281 1.1 brezak #define GUSICS_DAC_MUTE 4 282 1.1 brezak #define GUSICS_MIC_IN_LVL 5 283 1.1 brezak #define GUSICS_LINE_IN_LVL 6 284 1.1 brezak #define GUSICS_CD_LVL 7 285 1.1 brezak #define GUSICS_DAC_LVL 8 286 1.1 brezak #define GUSICS_MASTER_LVL 9 287 1.1 brezak 288 1.1 brezak #define GUSICS_RECORD_SOURCE 10 289 1.1 brezak 290 1.1 brezak /* Classes */ 291 1.1 brezak #define GUSICS_INPUT_CLASS 11 292 1.1 brezak #define GUSICS_OUTPUT_CLASS 12 293 1.1 brezak #define GUSICS_RECORD_CLASS 13 294 1.1 brezak 295 1.1 brezak /* 296 1.1 brezak * Mixer & MUX devices for CS4231 297 1.1 brezak */ 298 1.31 jtk #define GUSMAX_MONO_LVL 0 /* mic input to MUX; 299 1.1 brezak also mono mixer input */ 300 1.31 jtk #define GUSMAX_DAC_LVL 1 /* input to MUX; also mixer input */ 301 1.31 jtk #define GUSMAX_LINE_IN_LVL 2 /* input to MUX; also mixer input */ 302 1.31 jtk #define GUSMAX_CD_LVL 3 /* mixer input only */ 303 1.31 jtk #define GUSMAX_MONITOR_LVL 4 /* digital mix (?) */ 304 1.31 jtk #define GUSMAX_OUT_LVL 5 /* output level. (?) */ 305 1.31 jtk #define GUSMAX_SPEAKER_LVL 6 /* pseudo-device for mute */ 306 1.31 jtk #define GUSMAX_LINE_IN_MUTE 7 /* pre-mixer */ 307 1.31 jtk #define GUSMAX_DAC_MUTE 8 /* pre-mixer */ 308 1.31 jtk #define GUSMAX_CD_MUTE 9 /* pre-mixer */ 309 1.31 jtk #define GUSMAX_MONO_MUTE 10 /* pre-mixer--microphone/mono */ 310 1.31 jtk #define GUSMAX_MONITOR_MUTE 11 /* post-mixer level/mute */ 311 1.31 jtk #define GUSMAX_SPEAKER_MUTE 12 /* speaker mute */ 312 1.1 brezak 313 1.31 jtk #define GUSMAX_REC_LVL 13 /* post-MUX gain */ 314 1.1 brezak 315 1.31 jtk #define GUSMAX_RECORD_SOURCE 14 316 1.1 brezak 317 1.1 brezak /* Classes */ 318 1.31 jtk #define GUSMAX_INPUT_CLASS 15 319 1.31 jtk #define GUSMAX_RECORD_CLASS 16 320 1.31 jtk #define GUSMAX_MONITOR_CLASS 17 321 1.31 jtk #define GUSMAX_OUTPUT_CLASS 18 322 1.1 brezak 323 1.1 brezak #ifdef AUDIO_DEBUG 324 1.1 brezak #define GUSPLAYDEBUG /*XXX*/ 325 1.33 augustss #define DPRINTF(x) if (gusdebug) printf x 326 1.33 augustss #define DMAPRINTF(x) if (gusdmadebug) printf x 327 1.1 brezak int gusdebug = 0; 328 1.1 brezak int gusdmadebug = 0; 329 1.1 brezak #else 330 1.1 brezak #define DPRINTF(x) 331 1.1 brezak #define DMAPRINTF(x) 332 1.1 brezak #endif 333 1.1 brezak int gus_dostereo = 1; 334 1.1 brezak 335 1.1 brezak #define NDMARECS 2048 336 1.1 brezak #ifdef GUSPLAYDEBUG 337 1.1 brezak int gusstats = 0; 338 1.1 brezak struct dma_record { 339 1.87 kent struct timeval tv; 340 1.87 kent u_long gusaddr; 341 1.97 christos void *bsdaddr; 342 1.87 kent u_short count; 343 1.87 kent u_char channel; 344 1.87 kent u_char direction; 345 1.1 brezak } dmarecords[NDMARECS]; 346 1.1 brezak 347 1.1 brezak int dmarecord_index = 0; 348 1.1 brezak #endif 349 1.1 brezak 350 1.1 brezak /* 351 1.1 brezak * local routines 352 1.1 brezak */ 353 1.1 brezak 354 1.87 kent int gusopen(void *, int); 355 1.87 kent void gusclose(void *); 356 1.87 kent void gusmax_close(void *); 357 1.87 kent int gusintr(void *); 358 1.97 christos int gus_set_in_gain(void *, u_int, u_char); 359 1.97 christos int gus_get_in_gain(void *); 360 1.97 christos int gus_set_out_gain(void *, u_int, u_char); 361 1.97 christos int gus_get_out_gain(void *); 362 1.116 isaki int gus_set_format(void *, int, 363 1.116 isaki const audio_params_t *, const audio_params_t *, 364 1.116 isaki audio_filter_reg_t *, audio_filter_reg_t *); 365 1.116 isaki int gusmax_set_format(void *, int, 366 1.116 isaki const audio_params_t *, const audio_params_t *, 367 1.116 isaki audio_filter_reg_t *, audio_filter_reg_t *); 368 1.87 kent int gus_round_blocksize(void *, int, int, const audio_params_t *); 369 1.87 kent int gus_commit_settings(void *); 370 1.87 kent int gus_dma_output(void *, void *, int, void (*)(void *), void *); 371 1.87 kent int gus_dma_input(void *, void *, int, void (*)(void *), void *); 372 1.87 kent int gus_halt_out_dma(void *); 373 1.87 kent int gus_halt_in_dma(void *); 374 1.87 kent int gus_speaker_ctl(void *, int); 375 1.87 kent int gusmaxopen(void *, int); 376 1.87 kent int gusmax_round_blocksize(void *, int, int, const audio_params_t *); 377 1.87 kent int gusmax_commit_settings(void *); 378 1.87 kent int gusmax_dma_output(void *, void *, int, void (*)(void *), void *); 379 1.87 kent int gusmax_dma_input(void *, void *, int, void (*)(void *), void *); 380 1.87 kent int gusmax_halt_out_dma(void *); 381 1.87 kent int gusmax_halt_in_dma(void *); 382 1.87 kent int gusmax_speaker_ctl(void *, int); 383 1.87 kent int gus_getdev(void *, struct audio_device *); 384 1.87 kent 385 1.87 kent STATIC void gus_deinterleave(struct gus_softc *, void *, int); 386 1.87 kent 387 1.87 kent STATIC int gus_mic_ctl(void *, int); 388 1.87 kent STATIC int gus_linein_ctl(void *, int); 389 1.87 kent STATIC int gus_test_iobase(bus_space_tag_t, int); 390 1.87 kent STATIC void guspoke(bus_space_tag_t, bus_space_handle_t, long, u_char); 391 1.97 christos STATIC void gusdmaout(struct gus_softc *, int, u_long, void *, int); 392 1.87 kent STATIC int gus_init_cs4231(struct gus_softc *); 393 1.87 kent STATIC void gus_init_ics2101(struct gus_softc *); 394 1.87 kent 395 1.87 kent STATIC void gus_set_chan_addrs(struct gus_softc *); 396 1.87 kent STATIC void gusreset(struct gus_softc *, int); 397 1.87 kent STATIC void gus_set_voices(struct gus_softc *, int); 398 1.87 kent STATIC void gus_set_volume(struct gus_softc *, int, int); 399 1.87 kent STATIC void gus_set_samprate(struct gus_softc *, int, int); 400 1.87 kent STATIC void gus_set_recrate(struct gus_softc *, u_long); 401 1.87 kent STATIC void gus_start_voice(struct gus_softc *, int, int); 402 1.87 kent STATIC void gus_stop_voice(struct gus_softc *, int, int); 403 1.87 kent STATIC void gus_set_endaddr(struct gus_softc *, int, u_long); 404 1.15 jtk #ifdef GUSPLAYDEBUG 405 1.87 kent STATIC void gus_set_curaddr(struct gus_softc *, int, u_long); 406 1.87 kent STATIC u_long gus_get_curaddr(struct gus_softc *, int); 407 1.14 christos #endif 408 1.87 kent STATIC int gus_dmaout_intr(struct gus_softc *); 409 1.87 kent STATIC void gus_dmaout_dointr(struct gus_softc *); 410 1.87 kent STATIC void gus_dmaout_timeout(void *); 411 1.87 kent STATIC int gus_dmain_intr(struct gus_softc *); 412 1.87 kent STATIC int gus_voice_intr(struct gus_softc *); 413 1.87 kent STATIC void gus_start_playing(struct gus_softc *, int); 414 1.87 kent STATIC int gus_continue_playing(struct gus_softc *, int); 415 1.87 kent STATIC u_char guspeek(bus_space_tag_t, bus_space_handle_t, u_long); 416 1.87 kent STATIC u_long convert_to_16bit(u_long); 417 1.87 kent STATIC int gus_mixer_set_port(void *, mixer_ctrl_t *); 418 1.87 kent STATIC int gus_mixer_get_port(void *, mixer_ctrl_t *); 419 1.87 kent STATIC int gusmax_mixer_set_port(void *, mixer_ctrl_t *); 420 1.87 kent STATIC int gusmax_mixer_get_port(void *, mixer_ctrl_t *); 421 1.87 kent STATIC int gus_mixer_query_devinfo(void *, mixer_devinfo_t *); 422 1.87 kent STATIC int gusmax_mixer_query_devinfo(void *, mixer_devinfo_t *); 423 1.116 isaki STATIC int gus_query_format(void *, audio_format_query_t *); 424 1.87 kent STATIC int gus_get_props(void *); 425 1.87 kent STATIC int gusmax_get_props(void *); 426 1.87 kent 427 1.87 kent STATIC void gusics_master_mute(struct ics2101_softc *, int); 428 1.87 kent STATIC void gusics_dac_mute(struct ics2101_softc *, int); 429 1.87 kent STATIC void gusics_mic_mute(struct ics2101_softc *, int); 430 1.87 kent STATIC void gusics_linein_mute(struct ics2101_softc *, int); 431 1.87 kent STATIC void gusics_cd_mute(struct ics2101_softc *, int); 432 1.1 brezak 433 1.87 kent void stereo_dmaintr(void *); 434 1.14 christos 435 1.1 brezak /* 436 1.1 brezak * ISA bus driver routines 437 1.1 brezak */ 438 1.1 brezak 439 1.105 cegger int gusprobe(device_t, cfdata_t, void *); 440 1.105 cegger void gusattach(device_t, device_t, void *); 441 1.7 mycroft 442 1.109 chs CFATTACH_DECL_NEW(gus, sizeof(struct gus_softc), 443 1.77 thorpej gusprobe, gusattach, NULL, NULL); 444 1.1 brezak 445 1.1 brezak /* 446 1.1 brezak * A mapping from IRQ/DRQ values to the values used in the GUS's internal 447 1.1 brezak * registers. A zero means that the referenced IRQ/DRQ is invalid 448 1.1 brezak */ 449 1.1 brezak 450 1.70 jdolecek static const int gus_irq_map[] = { 451 1.84 drochner -1, -1, 1, 3, -1, 2, -1, 4, 452 1.84 drochner -1, 1, -1, 5, 6, -1, -1, 7 453 1.3 mycroft }; 454 1.70 jdolecek static const int gus_drq_map[] = { 455 1.84 drochner -1, 1, -1, 2, -1, 3, 4, 5 456 1.3 mycroft }; 457 1.1 brezak 458 1.1 brezak /* 459 1.1 brezak * A list of valid base addresses for the GUS 460 1.1 brezak */ 461 1.1 brezak 462 1.70 jdolecek static const int gus_base_addrs[] = { 463 1.3 mycroft 0x210, 0x220, 0x230, 0x240, 0x250, 0x260 464 1.3 mycroft }; 465 1.70 jdolecek static const int gus_addrs = sizeof(gus_base_addrs) / sizeof(gus_base_addrs[0]); 466 1.1 brezak 467 1.1 brezak /* 468 1.1 brezak * Maximum frequency values of the GUS based on the number of currently active 469 1.1 brezak * voices. Since the GUS samples a voice every 1.6 us, the maximum frequency 470 1.1 brezak * is dependent on the number of active voices. Yes, it is pretty weird. 471 1.1 brezak */ 472 1.1 brezak 473 1.70 jdolecek static const int gus_max_frequency[] = { 474 1.1 brezak 44100, /* 14 voices */ 475 1.1 brezak 41160, /* 15 voices */ 476 1.1 brezak 38587, /* 16 voices */ 477 1.1 brezak 36317, /* 17 voices */ 478 1.1 brezak 34300, /* 18 voices */ 479 1.1 brezak 32494, /* 19 voices */ 480 1.1 brezak 30870, /* 20 voices */ 481 1.1 brezak 29400, /* 21 voices */ 482 1.1 brezak 28063, /* 22 voices */ 483 1.1 brezak 26843, /* 23 voices */ 484 1.1 brezak 25725, /* 24 voices */ 485 1.1 brezak 24696, /* 25 voices */ 486 1.1 brezak 23746, /* 26 voices */ 487 1.1 brezak 22866, /* 27 voices */ 488 1.1 brezak 22050, /* 28 voices */ 489 1.1 brezak 21289, /* 29 voices */ 490 1.1 brezak 20580, /* 30 voices */ 491 1.1 brezak 19916, /* 31 voices */ 492 1.1 brezak 19293 /* 32 voices */ 493 1.1 brezak }; 494 1.1 brezak /* 495 1.1 brezak * A mapping of linear volume levels to the logarithmic volume values used 496 1.1 brezak * by the GF1 chip on the GUS. From GUS SDK vol1.c. 497 1.1 brezak */ 498 1.1 brezak 499 1.70 jdolecek static const unsigned short gus_log_volumes[512] = { 500 1.1 brezak 0x0000, 501 1.1 brezak 0x0700, 0x07ff, 0x0880, 0x08ff, 0x0940, 0x0980, 0x09c0, 0x09ff, 0x0a20, 502 1.1 brezak 0x0a40, 0x0a60, 0x0a80, 0x0aa0, 0x0ac0, 0x0ae0, 0x0aff, 0x0b10, 0x0b20, 503 1.1 brezak 0x0b30, 0x0b40, 0x0b50, 0x0b60, 0x0b70, 0x0b80, 0x0b90, 0x0ba0, 0x0bb0, 504 1.1 brezak 0x0bc0, 0x0bd0, 0x0be0, 0x0bf0, 0x0bff, 0x0c08, 0x0c10, 0x0c18, 0x0c20, 505 1.1 brezak 0x0c28, 0x0c30, 0x0c38, 0x0c40, 0x0c48, 0x0c50, 0x0c58, 0x0c60, 0x0c68, 506 1.1 brezak 0x0c70, 0x0c78, 0x0c80, 0x0c88, 0x0c90, 0x0c98, 0x0ca0, 0x0ca8, 0x0cb0, 507 1.1 brezak 0x0cb8, 0x0cc0, 0x0cc8, 0x0cd0, 0x0cd8, 0x0ce0, 0x0ce8, 0x0cf0, 0x0cf8, 508 1.1 brezak 0x0cff, 0x0d04, 0x0d08, 0x0d0c, 0x0d10, 0x0d14, 0x0d18, 0x0d1c, 0x0d20, 509 1.1 brezak 0x0d24, 0x0d28, 0x0d2c, 0x0d30, 0x0d34, 0x0d38, 0x0d3c, 0x0d40, 0x0d44, 510 1.1 brezak 0x0d48, 0x0d4c, 0x0d50, 0x0d54, 0x0d58, 0x0d5c, 0x0d60, 0x0d64, 0x0d68, 511 1.1 brezak 0x0d6c, 0x0d70, 0x0d74, 0x0d78, 0x0d7c, 0x0d80, 0x0d84, 0x0d88, 0x0d8c, 512 1.1 brezak 0x0d90, 0x0d94, 0x0d98, 0x0d9c, 0x0da0, 0x0da4, 0x0da8, 0x0dac, 0x0db0, 513 1.1 brezak 0x0db4, 0x0db8, 0x0dbc, 0x0dc0, 0x0dc4, 0x0dc8, 0x0dcc, 0x0dd0, 0x0dd4, 514 1.1 brezak 0x0dd8, 0x0ddc, 0x0de0, 0x0de4, 0x0de8, 0x0dec, 0x0df0, 0x0df4, 0x0df8, 515 1.1 brezak 0x0dfc, 0x0dff, 0x0e02, 0x0e04, 0x0e06, 0x0e08, 0x0e0a, 0x0e0c, 0x0e0e, 516 1.1 brezak 0x0e10, 0x0e12, 0x0e14, 0x0e16, 0x0e18, 0x0e1a, 0x0e1c, 0x0e1e, 0x0e20, 517 1.1 brezak 0x0e22, 0x0e24, 0x0e26, 0x0e28, 0x0e2a, 0x0e2c, 0x0e2e, 0x0e30, 0x0e32, 518 1.1 brezak 0x0e34, 0x0e36, 0x0e38, 0x0e3a, 0x0e3c, 0x0e3e, 0x0e40, 0x0e42, 0x0e44, 519 1.1 brezak 0x0e46, 0x0e48, 0x0e4a, 0x0e4c, 0x0e4e, 0x0e50, 0x0e52, 0x0e54, 0x0e56, 520 1.1 brezak 0x0e58, 0x0e5a, 0x0e5c, 0x0e5e, 0x0e60, 0x0e62, 0x0e64, 0x0e66, 0x0e68, 521 1.1 brezak 0x0e6a, 0x0e6c, 0x0e6e, 0x0e70, 0x0e72, 0x0e74, 0x0e76, 0x0e78, 0x0e7a, 522 1.1 brezak 0x0e7c, 0x0e7e, 0x0e80, 0x0e82, 0x0e84, 0x0e86, 0x0e88, 0x0e8a, 0x0e8c, 523 1.1 brezak 0x0e8e, 0x0e90, 0x0e92, 0x0e94, 0x0e96, 0x0e98, 0x0e9a, 0x0e9c, 0x0e9e, 524 1.1 brezak 0x0ea0, 0x0ea2, 0x0ea4, 0x0ea6, 0x0ea8, 0x0eaa, 0x0eac, 0x0eae, 0x0eb0, 525 1.1 brezak 0x0eb2, 0x0eb4, 0x0eb6, 0x0eb8, 0x0eba, 0x0ebc, 0x0ebe, 0x0ec0, 0x0ec2, 526 1.1 brezak 0x0ec4, 0x0ec6, 0x0ec8, 0x0eca, 0x0ecc, 0x0ece, 0x0ed0, 0x0ed2, 0x0ed4, 527 1.1 brezak 0x0ed6, 0x0ed8, 0x0eda, 0x0edc, 0x0ede, 0x0ee0, 0x0ee2, 0x0ee4, 0x0ee6, 528 1.1 brezak 0x0ee8, 0x0eea, 0x0eec, 0x0eee, 0x0ef0, 0x0ef2, 0x0ef4, 0x0ef6, 0x0ef8, 529 1.1 brezak 0x0efa, 0x0efc, 0x0efe, 0x0eff, 0x0f01, 0x0f02, 0x0f03, 0x0f04, 0x0f05, 530 1.1 brezak 0x0f06, 0x0f07, 0x0f08, 0x0f09, 0x0f0a, 0x0f0b, 0x0f0c, 0x0f0d, 0x0f0e, 531 1.1 brezak 0x0f0f, 0x0f10, 0x0f11, 0x0f12, 0x0f13, 0x0f14, 0x0f15, 0x0f16, 0x0f17, 532 1.1 brezak 0x0f18, 0x0f19, 0x0f1a, 0x0f1b, 0x0f1c, 0x0f1d, 0x0f1e, 0x0f1f, 0x0f20, 533 1.1 brezak 0x0f21, 0x0f22, 0x0f23, 0x0f24, 0x0f25, 0x0f26, 0x0f27, 0x0f28, 0x0f29, 534 1.1 brezak 0x0f2a, 0x0f2b, 0x0f2c, 0x0f2d, 0x0f2e, 0x0f2f, 0x0f30, 0x0f31, 0x0f32, 535 1.1 brezak 0x0f33, 0x0f34, 0x0f35, 0x0f36, 0x0f37, 0x0f38, 0x0f39, 0x0f3a, 0x0f3b, 536 1.1 brezak 0x0f3c, 0x0f3d, 0x0f3e, 0x0f3f, 0x0f40, 0x0f41, 0x0f42, 0x0f43, 0x0f44, 537 1.1 brezak 0x0f45, 0x0f46, 0x0f47, 0x0f48, 0x0f49, 0x0f4a, 0x0f4b, 0x0f4c, 0x0f4d, 538 1.1 brezak 0x0f4e, 0x0f4f, 0x0f50, 0x0f51, 0x0f52, 0x0f53, 0x0f54, 0x0f55, 0x0f56, 539 1.1 brezak 0x0f57, 0x0f58, 0x0f59, 0x0f5a, 0x0f5b, 0x0f5c, 0x0f5d, 0x0f5e, 0x0f5f, 540 1.1 brezak 0x0f60, 0x0f61, 0x0f62, 0x0f63, 0x0f64, 0x0f65, 0x0f66, 0x0f67, 0x0f68, 541 1.1 brezak 0x0f69, 0x0f6a, 0x0f6b, 0x0f6c, 0x0f6d, 0x0f6e, 0x0f6f, 0x0f70, 0x0f71, 542 1.1 brezak 0x0f72, 0x0f73, 0x0f74, 0x0f75, 0x0f76, 0x0f77, 0x0f78, 0x0f79, 0x0f7a, 543 1.1 brezak 0x0f7b, 0x0f7c, 0x0f7d, 0x0f7e, 0x0f7f, 0x0f80, 0x0f81, 0x0f82, 0x0f83, 544 1.1 brezak 0x0f84, 0x0f85, 0x0f86, 0x0f87, 0x0f88, 0x0f89, 0x0f8a, 0x0f8b, 0x0f8c, 545 1.1 brezak 0x0f8d, 0x0f8e, 0x0f8f, 0x0f90, 0x0f91, 0x0f92, 0x0f93, 0x0f94, 0x0f95, 546 1.1 brezak 0x0f96, 0x0f97, 0x0f98, 0x0f99, 0x0f9a, 0x0f9b, 0x0f9c, 0x0f9d, 0x0f9e, 547 1.1 brezak 0x0f9f, 0x0fa0, 0x0fa1, 0x0fa2, 0x0fa3, 0x0fa4, 0x0fa5, 0x0fa6, 0x0fa7, 548 1.1 brezak 0x0fa8, 0x0fa9, 0x0faa, 0x0fab, 0x0fac, 0x0fad, 0x0fae, 0x0faf, 0x0fb0, 549 1.1 brezak 0x0fb1, 0x0fb2, 0x0fb3, 0x0fb4, 0x0fb5, 0x0fb6, 0x0fb7, 0x0fb8, 0x0fb9, 550 1.1 brezak 0x0fba, 0x0fbb, 0x0fbc, 0x0fbd, 0x0fbe, 0x0fbf, 0x0fc0, 0x0fc1, 0x0fc2, 551 1.1 brezak 0x0fc3, 0x0fc4, 0x0fc5, 0x0fc6, 0x0fc7, 0x0fc8, 0x0fc9, 0x0fca, 0x0fcb, 552 1.1 brezak 0x0fcc, 0x0fcd, 0x0fce, 0x0fcf, 0x0fd0, 0x0fd1, 0x0fd2, 0x0fd3, 0x0fd4, 553 1.1 brezak 0x0fd5, 0x0fd6, 0x0fd7, 0x0fd8, 0x0fd9, 0x0fda, 0x0fdb, 0x0fdc, 0x0fdd, 554 1.1 brezak 0x0fde, 0x0fdf, 0x0fe0, 0x0fe1, 0x0fe2, 0x0fe3, 0x0fe4, 0x0fe5, 0x0fe6, 555 1.1 brezak 0x0fe7, 0x0fe8, 0x0fe9, 0x0fea, 0x0feb, 0x0fec, 0x0fed, 0x0fee, 0x0fef, 556 1.1 brezak 0x0ff0, 0x0ff1, 0x0ff2, 0x0ff3, 0x0ff4, 0x0ff5, 0x0ff6, 0x0ff7, 0x0ff8, 557 1.1 brezak 0x0ff9, 0x0ffa, 0x0ffb, 0x0ffc, 0x0ffd, 0x0ffe, 0x0fff}; 558 1.1 brezak 559 1.43 augustss #define SELECT_GUS_REG(iot,ioh1,x) bus_space_write_1(iot,ioh1,GUS_REG_SELECT,x) 560 1.1 brezak #define ADDR_HIGH(x) (unsigned int) ((x >> 7L) & 0x1fffL) 561 1.1 brezak #define ADDR_LOW(x) (unsigned int) ((x & 0x7fL) << 9L) 562 1.1 brezak 563 1.1 brezak #define GUS_MIN_VOICES 14 /* Minimum possible number of voices */ 564 1.1 brezak #define GUS_MAX_VOICES 32 /* Maximum possible number of voices */ 565 1.1 brezak #define GUS_VOICE_LEFT 0 /* Voice used for left (and mono) playback */ 566 1.1 brezak #define GUS_VOICE_RIGHT 1 /* Voice used for right playback */ 567 1.1 brezak #define GUS_MEM_OFFSET 32 /* Offset into GUS memory to begin of buffer */ 568 1.1 brezak #define GUS_BUFFER_MULTIPLE 1024 /* Audio buffers are multiples of this */ 569 1.1 brezak #define GUS_MEM_FOR_BUFFERS 131072 /* use this many bytes on-GUS */ 570 1.1 brezak #define GUS_LEFT_RIGHT_OFFSET (sc->sc_nbufs * sc->sc_chanblocksize + GUS_MEM_OFFSET) 571 1.1 brezak 572 1.1 brezak #define GUS_PREC_BYTES (sc->sc_precision >> 3) /* precision to bytes */ 573 1.1 brezak 574 1.1 brezak /* 575 1.1 brezak * Interface to higher level audio driver 576 1.1 brezak */ 577 1.1 brezak 578 1.85 yamt const struct audio_hw_if gus_hw_if = { 579 1.115 isaki .open = gusopen, 580 1.115 isaki .close = gusclose, 581 1.116 isaki .query_format = gus_query_format, 582 1.116 isaki .set_format = gus_set_format, 583 1.115 isaki .round_blocksize = gus_round_blocksize, 584 1.115 isaki .commit_settings = gus_commit_settings, 585 1.115 isaki .start_output = gus_dma_output, 586 1.115 isaki .start_input = gus_dma_input, 587 1.115 isaki .halt_output = gus_halt_out_dma, 588 1.115 isaki .halt_input = gus_halt_in_dma, 589 1.115 isaki .speaker_ctl = gus_speaker_ctl, 590 1.115 isaki .getdev = gus_getdev, 591 1.115 isaki .set_port = gus_mixer_set_port, 592 1.115 isaki .get_port = gus_mixer_get_port, 593 1.115 isaki .query_devinfo = gus_mixer_query_devinfo, 594 1.115 isaki .allocm = ad1848_isa_malloc, 595 1.115 isaki .freem = ad1848_isa_free, 596 1.115 isaki .round_buffersize = ad1848_isa_round_buffersize, 597 1.115 isaki .get_props = gus_get_props, 598 1.115 isaki .get_locks = ad1848_get_locks, 599 1.1 brezak }; 600 1.1 brezak 601 1.85 yamt static const struct audio_hw_if gusmax_hw_if = { 602 1.115 isaki .open = gusmaxopen, 603 1.115 isaki .close = gusmax_close, 604 1.116 isaki .query_format = gus_query_format, 605 1.116 isaki .set_format = gusmax_set_format, 606 1.115 isaki .round_blocksize = gusmax_round_blocksize, 607 1.115 isaki .commit_settings = gusmax_commit_settings, 608 1.115 isaki .start_output = gusmax_dma_output, 609 1.115 isaki .start_input = gusmax_dma_input, 610 1.115 isaki .halt_output = gusmax_halt_out_dma, 611 1.115 isaki .halt_input = gusmax_halt_in_dma, 612 1.115 isaki .speaker_ctl = gusmax_speaker_ctl, 613 1.115 isaki .getdev = gus_getdev, 614 1.115 isaki .set_port = gusmax_mixer_set_port, 615 1.115 isaki .get_port = gusmax_mixer_get_port, 616 1.115 isaki .query_devinfo = gusmax_mixer_query_devinfo, 617 1.115 isaki .allocm = ad1848_isa_malloc, 618 1.115 isaki .freem = ad1848_isa_free, 619 1.115 isaki .round_buffersize = ad1848_isa_round_buffersize, 620 1.115 isaki .get_props = gusmax_get_props, 621 1.115 isaki .get_locks = ad1848_get_locks, 622 1.43 augustss }; 623 1.1 brezak 624 1.1 brezak /* 625 1.1 brezak * Some info about the current audio device 626 1.1 brezak */ 627 1.1 brezak 628 1.1 brezak struct audio_device gus_device = { 629 1.1 brezak "UltraSound", 630 1.1 brezak "", 631 1.1 brezak "gus", 632 1.1 brezak }; 633 1.1 brezak 634 1.116 isaki /* The HW supports more formats but only SLINEAR_LE/16/2ch is enough. */ 635 1.116 isaki STATIC const struct audio_format gus_formats[] = { 636 1.116 isaki { 637 1.116 isaki .mode = AUMODE_PLAY | AUMODE_RECORD, 638 1.116 isaki .encoding = AUDIO_ENCODING_SLINEAR_LE, 639 1.116 isaki .validbits = 16, 640 1.116 isaki .precision = 16, 641 1.116 isaki .channels = 2, 642 1.116 isaki .channel_mask = AUFMT_STEREO, 643 1.116 isaki .frequency_type = 1, 644 1.116 isaki .frequency = { 44100 }, 645 1.116 isaki } 646 1.116 isaki }; 647 1.116 isaki #define GUS_NFORMATS __arraycount(gus_formats) 648 1.116 isaki 649 1.1 brezak #define FLIP_REV 5 /* This rev has flipped mixer chans */ 650 1.1 brezak 651 1.1 brezak 652 1.1 brezak int 653 1.105 cegger gusprobe(device_t parent, cfdata_t match, void *aux) 654 1.1 brezak { 655 1.87 kent struct isa_attach_args *ia; 656 1.74 thorpej int iobase, recdrq; 657 1.74 thorpej 658 1.87 kent ia = aux; 659 1.74 thorpej if (ia->ia_nio < 1) 660 1.87 kent return 0; 661 1.74 thorpej if (ia->ia_nirq < 1) 662 1.87 kent return 0; 663 1.74 thorpej if (ia->ia_ndrq < 1) 664 1.87 kent return 0; 665 1.74 thorpej 666 1.74 thorpej if (ISA_DIRECT_CONFIG(ia)) 667 1.87 kent return 0; 668 1.74 thorpej 669 1.74 thorpej iobase = ia->ia_io[0].ir_addr; 670 1.74 thorpej if (ia->ia_ndrq > 1) 671 1.74 thorpej recdrq = ia->ia_drq[1].ir_drq; 672 1.74 thorpej else 673 1.84 drochner recdrq = ISA_UNKNOWN_DRQ; 674 1.1 brezak 675 1.1 brezak /* 676 1.1 brezak * Before we do anything else, make sure requested IRQ and DRQ are 677 1.1 brezak * valid for this card. 678 1.1 brezak */ 679 1.1 brezak 680 1.43 augustss /* XXX range check before indexing!! */ 681 1.84 drochner if (ia->ia_irq[0].ir_irq == ISA_UNKNOWN_IRQ || 682 1.84 drochner gus_irq_map[ia->ia_irq[0].ir_irq] == -1) { 683 1.74 thorpej printf("gus: invalid irq %d, card not probed\n", 684 1.74 thorpej ia->ia_irq[0].ir_irq); 685 1.43 augustss return 0; 686 1.1 brezak } 687 1.1 brezak 688 1.84 drochner if (ia->ia_drq[0].ir_drq == ISA_UNKNOWN_DRQ || 689 1.84 drochner gus_drq_map[ia->ia_drq[0].ir_drq] == -1) { 690 1.74 thorpej printf("gus: invalid drq %d, card not probed\n", 691 1.74 thorpej ia->ia_drq[0].ir_drq); 692 1.43 augustss return 0; 693 1.1 brezak } 694 1.1 brezak 695 1.84 drochner if (recdrq != ISA_UNKNOWN_DRQ) { 696 1.84 drochner if (recdrq > 7 || gus_drq_map[recdrq] == -1) { 697 1.110 msaitoh printf("gus: invalid second DMA channel (%d), card " 698 1.110 msaitoh "not probed\n", recdrq); 699 1.87 kent return 0; 700 1.87 kent } 701 1.1 brezak } else 702 1.74 thorpej recdrq = ia->ia_drq[0].ir_drq; 703 1.1 brezak 704 1.84 drochner if (iobase == ISA_UNKNOWN_PORT) { 705 1.1 brezak int i; 706 1.87 kent for (i = 0; i < gus_addrs; i++) 707 1.50 drochner if (gus_test_iobase(ia->ia_iot, gus_base_addrs[i])) { 708 1.1 brezak iobase = gus_base_addrs[i]; 709 1.1 brezak goto done; 710 1.1 brezak } 711 1.1 brezak return 0; 712 1.50 drochner } else if (!gus_test_iobase(ia->ia_iot, iobase)) 713 1.1 brezak return 0; 714 1.1 brezak 715 1.1 brezak done: 716 1.74 thorpej if (!isa_drq_isfree(ia->ia_ic, ia->ia_drq[0].ir_drq) || 717 1.74 thorpej (recdrq != ia->ia_drq[0].ir_drq && 718 1.74 thorpej !isa_drq_isfree(ia->ia_ic, recdrq))) 719 1.44 augustss return 0; 720 1.44 augustss 721 1.74 thorpej ia->ia_nio = 1; 722 1.74 thorpej ia->ia_io[0].ir_addr = iobase; 723 1.74 thorpej ia->ia_io[0].ir_size = GUS_NPORT1; 724 1.74 thorpej 725 1.74 thorpej ia->ia_nirq = 1; 726 1.74 thorpej ia->ia_ndrq = (recdrq != ia->ia_drq[0].ir_drq) ? 2 : 1; 727 1.74 thorpej 728 1.74 thorpej ia->ia_niomem = 0; 729 1.74 thorpej 730 1.43 augustss return 1; 731 1.1 brezak } 732 1.1 brezak 733 1.1 brezak /* 734 1.1 brezak * Test to see if a particular I/O base is valid for the GUS. Return true 735 1.1 brezak * if it is. 736 1.1 brezak */ 737 1.1 brezak 738 1.8 jtk STATIC int 739 1.87 kent gus_test_iobase (bus_space_tag_t iot, int iobase) 740 1.1 brezak { 741 1.43 augustss bus_space_handle_t ioh1, ioh2, ioh3, ioh4; 742 1.1 brezak u_char s1, s2; 743 1.107 jmcneill int rv; 744 1.43 augustss 745 1.87 kent rv = 0; 746 1.43 augustss /* Map i/o space */ 747 1.43 augustss if (bus_space_map(iot, iobase, GUS_NPORT1, 0, &ioh1)) 748 1.43 augustss return 0; 749 1.43 augustss if (bus_space_map(iot, iobase+GUS_IOH2_OFFSET, GUS_NPORT2, 0, &ioh2)) 750 1.43 augustss goto bad1; 751 1.43 augustss 752 1.43 augustss /* XXX Maybe we shouldn't fail on mapping this, but just assume 753 1.43 augustss * the card is of revision 0? */ 754 1.43 augustss if (bus_space_map(iot, iobase+GUS_IOH3_OFFSET, GUS_NPORT3, 0, &ioh3)) 755 1.43 augustss goto bad2; 756 1.43 augustss 757 1.43 augustss if (bus_space_map(iot, iobase+GUS_IOH4_OFFSET, GUS_NPORT4, 0, &ioh4)) 758 1.43 augustss goto bad3; 759 1.1 brezak 760 1.1 brezak /* 761 1.1 brezak * Reset GUS to an initial state before we do anything. 762 1.1 brezak */ 763 1.1 brezak 764 1.1 brezak delay(500); 765 1.1 brezak 766 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_RESET); 767 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 768 1.1 brezak 769 1.87 kent delay(500); 770 1.1 brezak 771 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_RESET); 772 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, GUSMASK_MASTER_RESET); 773 1.1 brezak 774 1.87 kent delay(500); 775 1.1 brezak 776 1.1 brezak /* 777 1.1 brezak * See if we can write to the board's memory 778 1.1 brezak */ 779 1.1 brezak 780 1.87 kent s1 = guspeek(iot, ioh2, 0L); 781 1.87 kent s2 = guspeek(iot, ioh2, 1L); 782 1.1 brezak 783 1.87 kent guspoke(iot, ioh2, 0L, 0xaa); 784 1.87 kent guspoke(iot, ioh2, 1L, 0x55); 785 1.1 brezak 786 1.87 kent if (guspeek(iot, ioh2, 0L) != 0xaa) 787 1.43 augustss goto bad; 788 1.1 brezak 789 1.43 augustss guspoke(iot, ioh2, 0L, s1); 790 1.43 augustss guspoke(iot, ioh2, 1L, s2); 791 1.1 brezak 792 1.50 drochner rv = 1; 793 1.43 augustss 794 1.43 augustss bad: 795 1.50 drochner bus_space_unmap(iot, ioh4, GUS_NPORT4); 796 1.43 augustss bad3: 797 1.50 drochner bus_space_unmap(iot, ioh3, GUS_NPORT3); 798 1.43 augustss bad2: 799 1.50 drochner bus_space_unmap(iot, ioh2, GUS_NPORT2); 800 1.43 augustss bad1: 801 1.50 drochner bus_space_unmap(iot, ioh1, GUS_NPORT1); 802 1.50 drochner return rv; 803 1.1 brezak } 804 1.1 brezak 805 1.1 brezak /* 806 1.1 brezak * Setup the GUS for use; called shortly after probe 807 1.1 brezak */ 808 1.1 brezak 809 1.1 brezak void 810 1.105 cegger gusattach(device_t parent, device_t self, void *aux) 811 1.1 brezak { 812 1.87 kent struct gus_softc *sc; 813 1.87 kent struct isa_attach_args *ia; 814 1.50 drochner bus_space_tag_t iot; 815 1.50 drochner bus_space_handle_t ioh1, ioh2, ioh3, ioh4; 816 1.87 kent int iobase, i; 817 1.93 christos unsigned char c, m; 818 1.107 jmcneill int d = -1; 819 1.85 yamt const struct audio_hw_if *hwif; 820 1.50 drochner 821 1.109 chs sc = device_private(self); 822 1.112 nat sc->sc_dev = self; 823 1.87 kent ia = aux; 824 1.107 jmcneill callout_init(&sc->sc_dmaout_ch, CALLOUT_MPSAFE); 825 1.108 mrg ad1848_init_locks(&sc->sc_codec.sc_ad1848, IPL_AUDIO); 826 1.112 nat sc->sc_lock = sc->sc_codec.sc_ad1848.sc_lock; 827 1.112 nat sc->sc_intr_lock = sc->sc_codec.sc_ad1848.sc_intr_lock; 828 1.69 thorpej 829 1.50 drochner sc->sc_iot = iot = ia->ia_iot; 830 1.55 thorpej sc->sc_ic = ia->ia_ic; 831 1.74 thorpej iobase = ia->ia_io[0].ir_addr; 832 1.50 drochner 833 1.50 drochner /* Map i/o space */ 834 1.50 drochner if (bus_space_map(iot, iobase, GUS_NPORT1, 0, &ioh1)) 835 1.101 cegger panic("%s: can't map io port range 1", device_xname(self)); 836 1.50 drochner sc->sc_ioh1 = ioh1; 837 1.50 drochner if (bus_space_map(iot, iobase+GUS_IOH2_OFFSET, GUS_NPORT2, 0, &ioh2)) 838 1.101 cegger panic("%s: can't map io port range 2", device_xname(self)); 839 1.50 drochner sc->sc_ioh2 = ioh2; 840 1.50 drochner 841 1.50 drochner /* XXX Maybe we shouldn't fail on mapping this, but just assume 842 1.50 drochner * the card is of revision 0? */ 843 1.50 drochner if (bus_space_map(iot, iobase+GUS_IOH3_OFFSET, GUS_NPORT3, 0, &ioh3)) 844 1.101 cegger panic("%s: can't map io port range 3", device_xname(self)); 845 1.50 drochner sc->sc_ioh3 = ioh3; 846 1.50 drochner 847 1.50 drochner if (bus_space_map(iot, iobase+GUS_IOH4_OFFSET, GUS_NPORT4, 0, &ioh4)) 848 1.101 cegger panic("%s: can't map io port range 4", device_xname(self)); 849 1.50 drochner sc->sc_ioh4 = ioh4; 850 1.50 drochner 851 1.50 drochner sc->sc_iobase = iobase; 852 1.74 thorpej sc->sc_irq = ia->ia_irq[0].ir_irq; 853 1.74 thorpej sc->sc_playdrq = ia->ia_drq[0].ir_drq; 854 1.74 thorpej sc->sc_recdrq = (ia->ia_ndrq == 2) ? 855 1.74 thorpej ia->ia_drq[1].ir_drq : ia->ia_drq[0].ir_drq; 856 1.1 brezak 857 1.1 brezak /* 858 1.1 brezak * Figure out our board rev, and see if we need to initialize the 859 1.1 brezak * mixer 860 1.1 brezak */ 861 1.1 brezak 862 1.55 thorpej sc->sc_ic = ia->ia_ic; 863 1.44 augustss 864 1.87 kent delay(500); 865 1.1 brezak 866 1.112 nat mutex_spin_enter(&sc->sc_codec.sc_ad1848.sc_intr_lock); 867 1.107 jmcneill 868 1.87 kent c = bus_space_read_1(iot, ioh3, GUS_BOARD_REV); 869 1.1 brezak if (c != 0xff) 870 1.1 brezak sc->sc_revision = c; 871 1.1 brezak else 872 1.1 brezak sc->sc_revision = 0; 873 1.1 brezak 874 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_RESET); 875 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 876 1.1 brezak 877 1.1 brezak gusreset(sc, GUS_MAX_VOICES); /* initialize all voices */ 878 1.1 brezak gusreset(sc, GUS_MIN_VOICES); /* then set to just the ones we use */ 879 1.112 nat mutex_spin_exit(&sc->sc_codec.sc_ad1848.sc_intr_lock); 880 1.1 brezak 881 1.1 brezak /* 882 1.1 brezak * Setup the IRQ and DRQ lines in software, using values from 883 1.1 brezak * config file 884 1.1 brezak */ 885 1.1 brezak 886 1.1 brezak m = GUSMASK_LINE_IN|GUSMASK_LINE_OUT; /* disable all */ 887 1.1 brezak 888 1.74 thorpej c = ((unsigned char) gus_irq_map[ia->ia_irq[0].ir_irq]) | 889 1.74 thorpej GUSMASK_BOTH_RQ; 890 1.1 brezak 891 1.93 christos if (sc->sc_playdrq != -1) { 892 1.93 christos if (sc->sc_recdrq == sc->sc_playdrq) 893 1.93 christos d = (unsigned char) (gus_drq_map[sc->sc_playdrq] | 894 1.93 christos GUSMASK_BOTH_RQ); 895 1.93 christos else if (sc->sc_recdrq != -1) 896 1.93 christos d = (unsigned char) (gus_drq_map[sc->sc_playdrq] | 897 1.93 christos gus_drq_map[sc->sc_recdrq] << 3); 898 1.93 christos } 899 1.93 christos if (d == -1) 900 1.93 christos printf("%s: WARNING: Cannot initialize drq\n", 901 1.109 chs device_xname(sc->sc_dev)); 902 1.1 brezak 903 1.1 brezak /* 904 1.1 brezak * Program the IRQ and DMA channels on the GUS. Note that we hardwire 905 1.1 brezak * the GUS to only use one IRQ channel, but we give the user the 906 1.53 augustss * option of using two DMA channels (the other one given by the drq2 907 1.1 brezak * option in the config file). Two DMA channels are needed for full- 908 1.1 brezak * duplex operation. 909 1.1 brezak * 910 1.1 brezak * The order of these operations is very magical. 911 1.1 brezak */ 912 1.1 brezak 913 1.43 augustss bus_space_write_1(iot, ioh1, GUS_REG_CONTROL, GUS_REG_IRQCTL); 914 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, m); 915 1.43 augustss bus_space_write_1(iot, ioh1, GUS_IRQCTL_CONTROL, 0x00); 916 1.43 augustss bus_space_write_1(iot, ioh1, 0x0f, 0x00); 917 1.1 brezak 918 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, m); 919 1.43 augustss bus_space_write_1(iot, ioh1, GUS_DMA_CONTROL, d | 0x80); /* magic reset? */ 920 1.1 brezak 921 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, m | GUSMASK_CONTROL_SEL); 922 1.43 augustss bus_space_write_1(iot, ioh1, GUS_IRQ_CONTROL, c); 923 1.1 brezak 924 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, m); 925 1.43 augustss bus_space_write_1(iot, ioh1, GUS_DMA_CONTROL, d); 926 1.1 brezak 927 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, m | GUSMASK_CONTROL_SEL); 928 1.43 augustss bus_space_write_1(iot, ioh1, GUS_IRQ_CONTROL, c); 929 1.1 brezak 930 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, 0x00); 931 1.1 brezak 932 1.1 brezak /* enable line in, line out. leave mic disabled. */ 933 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, 934 1.1 brezak (m | GUSMASK_LATCHES) & ~(GUSMASK_LINE_OUT|GUSMASK_LINE_IN)); 935 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, 0x00); 936 1.1 brezak 937 1.1 brezak sc->sc_mixcontrol = 938 1.1 brezak (m | GUSMASK_LATCHES) & ~(GUSMASK_LINE_OUT|GUSMASK_LINE_IN); 939 1.1 brezak 940 1.67 mycroft if (sc->sc_playdrq != -1) { 941 1.68 thorpej sc->sc_play_maxsize = isa_dmamaxsize(sc->sc_ic, 942 1.68 thorpej sc->sc_playdrq); 943 1.81 fvdl if (isa_drq_alloc(sc->sc_ic, sc->sc_playdrq) != 0) { 944 1.109 chs aprint_error_dev(sc->sc_dev, "can't reserve drq %d\n", 945 1.101 cegger sc->sc_playdrq); 946 1.107 jmcneill ad1848_destroy_locks(&sc->sc_codec.sc_ad1848); 947 1.81 fvdl return; 948 1.81 fvdl } 949 1.67 mycroft if (isa_dmamap_create(sc->sc_ic, sc->sc_playdrq, 950 1.107 jmcneill sc->sc_play_maxsize, BUS_DMA_WAITOK|BUS_DMA_ALLOCNOW)) { 951 1.110 msaitoh aprint_error_dev(sc->sc_dev, 952 1.110 msaitoh "can't create map for drq %d\n", sc->sc_playdrq); 953 1.107 jmcneill ad1848_destroy_locks(&sc->sc_codec.sc_ad1848); 954 1.67 mycroft return; 955 1.44 augustss } 956 1.67 mycroft } 957 1.67 mycroft if (sc->sc_recdrq != -1 && sc->sc_recdrq != sc->sc_playdrq) { 958 1.68 thorpej sc->sc_req_maxsize = isa_dmamaxsize(sc->sc_ic, 959 1.68 thorpej sc->sc_recdrq); 960 1.81 fvdl if (isa_drq_alloc(sc->sc_ic, sc->sc_recdrq) != 0) { 961 1.109 chs aprint_error_dev(sc->sc_dev, "can't reserve drq %d\n", 962 1.101 cegger sc->sc_recdrq); 963 1.107 jmcneill ad1848_destroy_locks(&sc->sc_codec.sc_ad1848); 964 1.81 fvdl return; 965 1.81 fvdl } 966 1.67 mycroft if (isa_dmamap_create(sc->sc_ic, sc->sc_recdrq, 967 1.107 jmcneill sc->sc_req_maxsize, BUS_DMA_WAITOK|BUS_DMA_ALLOCNOW)) { 968 1.110 msaitoh aprint_error_dev(sc->sc_dev, 969 1.110 msaitoh "can't create map for drq %d\n", sc->sc_recdrq); 970 1.107 jmcneill ad1848_destroy_locks(&sc->sc_codec.sc_ad1848); 971 1.67 mycroft return; 972 1.44 augustss } 973 1.1 brezak } 974 1.1 brezak 975 1.68 thorpej /* XXX WILL THIS ALWAYS WORK THE WAY THEY'RE OVERLAYED?! */ 976 1.68 thorpej sc->sc_codec.sc_ic = sc->sc_ic; 977 1.68 thorpej 978 1.87 kent if (sc->sc_revision >= 5 && sc->sc_revision <= 9) { 979 1.87 kent sc->sc_flags |= GUS_MIXER_INSTALLED; 980 1.87 kent gus_init_ics2101(sc); 981 1.68 thorpej } 982 1.85 yamt hwif = &gus_hw_if; 983 1.68 thorpej if (sc->sc_revision >= 10) 984 1.85 yamt if (gus_init_cs4231(sc)) 985 1.85 yamt hwif = &gusmax_hw_if; 986 1.68 thorpej 987 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_RESET); 988 1.87 kent /* 989 1.87 kent * Check to see how much memory we have on this card; see if any 990 1.87 kent * "mirroring" occurs. We're assuming at least 256K already exists 991 1.87 kent * on the card; otherwise the initial probe would have failed 992 1.87 kent */ 993 1.1 brezak 994 1.43 augustss guspoke(iot, ioh2, 0L, 0x00); 995 1.87 kent for (i = 1; i < 1024; i++) { 996 1.14 christos u_long loc; 997 1.1 brezak 998 1.1 brezak /* 999 1.1 brezak * See if we've run into mirroring yet 1000 1.1 brezak */ 1001 1.1 brezak 1002 1.43 augustss if (guspeek(iot, ioh2, 0L) != 0) 1003 1.1 brezak break; 1004 1.1 brezak 1005 1.1 brezak loc = i << 10; 1006 1.1 brezak 1007 1.43 augustss guspoke(iot, ioh2, loc, 0xaa); 1008 1.43 augustss if (guspeek(iot, ioh2, loc) != 0xaa) 1009 1.1 brezak break; 1010 1.1 brezak } 1011 1.1 brezak 1012 1.1 brezak sc->sc_dsize = i; 1013 1.1 brezak 1014 1.53 augustss /* The "official" (3.x) version number cannot easily be obtained. 1015 1.53 augustss * The revision register does not correspond to the minor number 1016 1.53 augustss * of the board version. Simply use the revision register as 1017 1.53 augustss * identification. 1018 1.53 augustss */ 1019 1.83 itojun snprintf(gus_device.version, sizeof(gus_device.version), "%d", 1020 1.83 itojun sc->sc_revision); 1021 1.53 augustss 1022 1.109 chs printf("\n%s: Gravis UltraSound", device_xname(sc->sc_dev)); 1023 1.53 augustss if (sc->sc_revision >= 10) 1024 1.53 augustss printf(" MAX"); 1025 1.53 augustss else { 1026 1.53 augustss if (HAS_MIXER(sc)) 1027 1.53 augustss printf(", mixer"); 1028 1.53 augustss if (HAS_CODEC(sc)) 1029 1.53 augustss printf(" with CODEC module"); 1030 1.53 augustss } 1031 1.53 augustss printf(", %dKB memory\n", sc->sc_dsize); 1032 1.53 augustss 1033 1.53 augustss /* A GUS MAX should always have a CODEC installed */ 1034 1.111 jakllsch if ((sc->sc_revision >= 10) && !(HAS_CODEC(sc))) 1035 1.87 kent printf("%s: WARNING: did not attach CODEC on MAX\n", 1036 1.109 chs device_xname(sc->sc_dev)); 1037 1.1 brezak 1038 1.1 brezak /* 1039 1.1 brezak * Setup a default interrupt handler 1040 1.1 brezak */ 1041 1.1 brezak 1042 1.74 thorpej sc->sc_ih = isa_intr_establish(ia->ia_ic, ia->ia_irq[0].ir_irq, 1043 1.108 mrg IST_EDGE, IPL_AUDIO, gusintr, sc /* sc->sc_gusdsp */); 1044 1.1 brezak 1045 1.1 brezak /* 1046 1.1 brezak * Set some default values 1047 1.79 wiz * XXX others start with 8kHz mono mu-law 1048 1.1 brezak */ 1049 1.1 brezak 1050 1.1 brezak sc->sc_irate = sc->sc_orate = 44100; 1051 1.32 augustss sc->sc_encoding = AUDIO_ENCODING_SLINEAR_LE; 1052 1.1 brezak sc->sc_precision = 16; 1053 1.1 brezak sc->sc_voc[GUS_VOICE_LEFT].voccntl |= GUSMASK_DATA_SIZE16; 1054 1.1 brezak sc->sc_voc[GUS_VOICE_RIGHT].voccntl |= GUSMASK_DATA_SIZE16; 1055 1.1 brezak sc->sc_channels = 1; 1056 1.1 brezak sc->sc_ogain = 340; 1057 1.1 brezak gus_commit_settings(sc); 1058 1.1 brezak 1059 1.1 brezak /* 1060 1.1 brezak * We always put the left channel full left & right channel 1061 1.1 brezak * full right. 1062 1.1 brezak * For mono playback, we set up both voices playing the same buffer. 1063 1.1 brezak */ 1064 1.110 msaitoh bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, 1065 1.110 msaitoh (unsigned char)GUS_VOICE_LEFT); 1066 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_PAN_POS); 1067 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, GUS_PAN_FULL_LEFT); 1068 1.43 augustss 1069 1.110 msaitoh bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, 1070 1.110 msaitoh (unsigned char)GUS_VOICE_RIGHT); 1071 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_PAN_POS); 1072 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, GUS_PAN_FULL_RIGHT); 1073 1.1 brezak 1074 1.107 jmcneill /* set up buffer to hold the deinterleave, if necessary 1075 1.107 jmcneill for stereo output */ 1076 1.107 jmcneill sc->sc_deintr_buf = kmem_alloc(GUS_MAX_BLOCKSIZE>>1, KM_SLEEP); 1077 1.107 jmcneill 1078 1.1 brezak /* 1079 1.1 brezak * Attach to the generic audio layer 1080 1.1 brezak */ 1081 1.1 brezak 1082 1.85 yamt audio_attach_mi(hwif, 1083 1.109 chs HAS_CODEC(sc) ? (void *)&sc->sc_codec : (void *)sc, sc->sc_dev); 1084 1.1 brezak } 1085 1.1 brezak 1086 1.1 brezak int 1087 1.87 kent gusopen(void *addr, int flags) 1088 1.1 brezak { 1089 1.87 kent struct gus_softc *sc; 1090 1.1 brezak 1091 1.87 kent sc = addr; 1092 1.1 brezak DPRINTF(("gusopen() called\n")); 1093 1.1 brezak 1094 1.1 brezak if (sc->sc_flags & GUS_OPEN) 1095 1.1 brezak return EBUSY; 1096 1.1 brezak 1097 1.1 brezak /* 1098 1.1 brezak * Some initialization 1099 1.1 brezak */ 1100 1.1 brezak 1101 1.1 brezak sc->sc_flags |= GUS_OPEN; 1102 1.1 brezak sc->sc_dmabuf = 0; 1103 1.1 brezak sc->sc_playbuf = -1; 1104 1.1 brezak sc->sc_bufcnt = 0; 1105 1.1 brezak sc->sc_voc[GUS_VOICE_LEFT].start_addr = GUS_MEM_OFFSET - 1; 1106 1.1 brezak sc->sc_voc[GUS_VOICE_LEFT].current_addr = GUS_MEM_OFFSET; 1107 1.1 brezak 1108 1.1 brezak if (HAS_CODEC(sc)) { 1109 1.62 jtk ad1848_open(&sc->sc_codec.sc_ad1848, flags); 1110 1.60 pk sc->sc_codec.sc_ad1848.mute[AD1848_AUX1_CHANNEL] = 0; 1111 1.60 pk 1112 1.60 pk /* turn on DAC output */ 1113 1.60 pk ad1848_mute_channel(&sc->sc_codec.sc_ad1848, 1114 1.60 pk AD1848_AUX1_CHANNEL, 0); 1115 1.1 brezak if (flags & FREAD) { 1116 1.60 pk sc->sc_codec.sc_ad1848.mute[AD1848_MONO_CHANNEL] = 0; 1117 1.60 pk ad1848_mute_channel(&sc->sc_codec.sc_ad1848, 1118 1.60 pk AD1848_MONO_CHANNEL, 0); 1119 1.1 brezak } 1120 1.1 brezak } else if (flags & FREAD) { 1121 1.1 brezak /* enable/unmute the microphone */ 1122 1.1 brezak if (HAS_MIXER(sc)) { 1123 1.1 brezak gusics_mic_mute(&sc->sc_mixer, 0); 1124 1.1 brezak } else 1125 1.1 brezak gus_mic_ctl(sc, SPKR_ON); 1126 1.1 brezak } 1127 1.1 brezak if (sc->sc_nbufs == 0) 1128 1.86 kent gus_round_blocksize(sc, GUS_BUFFER_MULTIPLE, /* default blksiz */ 1129 1.86 kent 0, NULL); /* XXX */ 1130 1.1 brezak return 0; 1131 1.1 brezak } 1132 1.1 brezak 1133 1.36 augustss int 1134 1.87 kent gusmaxopen(void *addr, int flags) 1135 1.36 augustss { 1136 1.87 kent struct ad1848_isa_softc *ac; 1137 1.87 kent 1138 1.87 kent ac = addr; 1139 1.62 jtk return gusopen(ac->sc_ad1848.parent, flags); 1140 1.36 augustss } 1141 1.36 augustss 1142 1.8 jtk STATIC void 1143 1.89 christos gus_deinterleave(struct gus_softc *sc, void *tbuf, int size) 1144 1.1 brezak { 1145 1.1 brezak /* deinterleave the stereo data. We can use sc->sc_deintr_buf 1146 1.1 brezak for scratch space. */ 1147 1.38 augustss int i; 1148 1.1 brezak 1149 1.28 augustss if (size > sc->sc_blocksize) { 1150 1.28 augustss printf("gus: deinterleave %d > %d\n", size, sc->sc_blocksize); 1151 1.28 augustss return; 1152 1.28 augustss } else if (size < sc->sc_blocksize) { 1153 1.110 msaitoh DPRINTF(("gus: deinterleave %d < %d\n", size, 1154 1.110 msaitoh sc->sc_blocksize)); 1155 1.28 augustss } 1156 1.28 augustss 1157 1.1 brezak /* 1158 1.1 brezak * size is in bytes. 1159 1.1 brezak */ 1160 1.1 brezak if (sc->sc_precision == 16) { 1161 1.38 augustss u_short *dei = sc->sc_deintr_buf; 1162 1.89 christos u_short *sbuf = tbuf; 1163 1.1 brezak size >>= 1; /* bytecnt to shortcnt */ 1164 1.1 brezak /* copy 2nd of each pair of samples to the staging area, while 1165 1.1 brezak compacting the 1st of each pair into the original area. */ 1166 1.1 brezak for (i = 0; i < size/2-1; i++) { 1167 1.1 brezak dei[i] = sbuf[i*2+1]; 1168 1.1 brezak sbuf[i+1] = sbuf[i*2+2]; 1169 1.1 brezak } 1170 1.1 brezak /* 1171 1.1 brezak * this has copied one less sample than half of the 1172 1.1 brezak * buffer. The first sample of the 1st stream was 1173 1.1 brezak * already in place and didn't need copying. 1174 1.1 brezak * Therefore, we've moved all of the 1st stream's 1175 1.1 brezak * samples into place. We have one sample from 2nd 1176 1.1 brezak * stream in the last slot of original area, not 1177 1.1 brezak * copied to the staging area (But we don't need to!). 1178 1.1 brezak * Copy the remainder of the original stream into place. 1179 1.1 brezak */ 1180 1.71 thorpej memcpy(&sbuf[size/2], dei, i * sizeof(short)); 1181 1.1 brezak } else { 1182 1.38 augustss u_char *dei = sc->sc_deintr_buf; 1183 1.89 christos u_char *sbuf = tbuf; 1184 1.1 brezak for (i = 0; i < size/2-1; i++) { 1185 1.1 brezak dei[i] = sbuf[i*2+1]; 1186 1.1 brezak sbuf[i+1] = sbuf[i*2+2]; 1187 1.1 brezak } 1188 1.71 thorpej memcpy(&sbuf[size/2], dei, i); 1189 1.1 brezak } 1190 1.1 brezak } 1191 1.1 brezak 1192 1.1 brezak /* 1193 1.1 brezak * Actually output a buffer to the DSP chip 1194 1.1 brezak */ 1195 1.1 brezak 1196 1.1 brezak int 1197 1.89 christos gusmax_dma_output(void *addr, void *tbuf, int size, 1198 1.87 kent void (*intr)(void *), void *arg) 1199 1.1 brezak { 1200 1.87 kent struct ad1848_isa_softc *ac; 1201 1.87 kent 1202 1.87 kent ac = addr; 1203 1.89 christos return gus_dma_output(ac->sc_ad1848.parent, tbuf, size, intr, arg); 1204 1.1 brezak } 1205 1.1 brezak 1206 1.1 brezak /* 1207 1.107 jmcneill * called from interrupt handler. 1208 1.1 brezak */ 1209 1.1 brezak void 1210 1.87 kent stereo_dmaintr(void *arg) 1211 1.1 brezak { 1212 1.87 kent struct gus_softc *sc; 1213 1.87 kent struct stereo_dma_intr *sa; 1214 1.1 brezak 1215 1.87 kent DMAPRINTF(("stereo_dmaintr")); 1216 1.87 kent sc = arg; 1217 1.87 kent sa = &sc->sc_stereo; 1218 1.1 brezak 1219 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 1220 1.107 jmcneill 1221 1.87 kent /* 1222 1.87 kent * Put other half in its place, then call the real interrupt routine :) 1223 1.87 kent */ 1224 1.1 brezak 1225 1.87 kent sc->sc_dmaoutintr = sa->intr; 1226 1.87 kent sc->sc_outarg = sa->arg; 1227 1.1 brezak 1228 1.1 brezak #ifdef GUSPLAYDEBUG 1229 1.87 kent if (gusstats) { 1230 1.87 kent microtime(&dmarecords[dmarecord_index].tv); 1231 1.87 kent dmarecords[dmarecord_index].gusaddr = sa->dmabuf; 1232 1.87 kent dmarecords[dmarecord_index].bsdaddr = sa->buffer; 1233 1.87 kent dmarecords[dmarecord_index].count = sa->size; 1234 1.87 kent dmarecords[dmarecord_index].channel = 1; 1235 1.87 kent dmarecords[dmarecord_index].direction = 1; 1236 1.87 kent dmarecord_index = (dmarecord_index + 1) % NDMARECS; 1237 1.87 kent } 1238 1.1 brezak #endif 1239 1.1 brezak 1240 1.97 christos gusdmaout(sc, sa->flags, sa->dmabuf, (void *) sa->buffer, sa->size); 1241 1.1 brezak 1242 1.87 kent sa->flags = 0; 1243 1.87 kent sa->dmabuf = 0; 1244 1.87 kent sa->buffer = 0; 1245 1.87 kent sa->size = 0; 1246 1.87 kent sa->intr = 0; 1247 1.87 kent sa->arg = 0; 1248 1.1 brezak } 1249 1.1 brezak 1250 1.1 brezak /* 1251 1.1 brezak * Start up DMA output to the card. 1252 1.1 brezak */ 1253 1.1 brezak int 1254 1.89 christos gus_dma_output(void *addr, void *tbuf, int size, 1255 1.87 kent void (*intr)(void *), void *arg) 1256 1.1 brezak { 1257 1.87 kent struct gus_softc *sc; 1258 1.87 kent u_char *buffer; 1259 1.1 brezak u_long boarddma; 1260 1.14 christos int flags; 1261 1.1 brezak 1262 1.89 christos DMAPRINTF(("gus_dma_output %d @ %p\n", size, tbuf)); 1263 1.87 kent sc = addr; 1264 1.89 christos buffer = tbuf; 1265 1.1 brezak 1266 1.1 brezak if (size != sc->sc_blocksize) { 1267 1.87 kent DPRINTF(("gus_dma_output reqsize %d not sc_blocksize %d\n", 1268 1.1 brezak size, sc->sc_blocksize)); 1269 1.87 kent return EINVAL; 1270 1.1 brezak } 1271 1.1 brezak 1272 1.1 brezak flags = GUSMASK_DMA_WRITE; 1273 1.1 brezak if (sc->sc_precision == 16) 1274 1.87 kent flags |= GUSMASK_DMA_DATA_SIZE; 1275 1.1 brezak if (sc->sc_encoding == AUDIO_ENCODING_ULAW || 1276 1.39 augustss sc->sc_encoding == AUDIO_ENCODING_ALAW || 1277 1.29 jtk sc->sc_encoding == AUDIO_ENCODING_ULINEAR_BE || 1278 1.24 augustss sc->sc_encoding == AUDIO_ENCODING_ULINEAR_LE) 1279 1.87 kent flags |= GUSMASK_DMA_INVBIT; 1280 1.1 brezak 1281 1.1 brezak if (sc->sc_channels == 2) { 1282 1.1 brezak if (sc->sc_precision == 16) { 1283 1.1 brezak if (size & 3) { 1284 1.1 brezak DPRINTF(("gus_dma_output: unpaired 16bit samples")); 1285 1.1 brezak size &= 3; 1286 1.1 brezak } 1287 1.1 brezak } else if (size & 1) { 1288 1.1 brezak DPRINTF(("gus_dma_output: unpaired samples")); 1289 1.1 brezak size &= 1; 1290 1.1 brezak } 1291 1.1 brezak if (size == 0) 1292 1.1 brezak return 0; 1293 1.28 augustss 1294 1.28 augustss gus_deinterleave(sc, (void *)buffer, size); 1295 1.28 augustss 1296 1.1 brezak size >>= 1; 1297 1.1 brezak 1298 1.87 kent boarddma = size * sc->sc_dmabuf + GUS_MEM_OFFSET; 1299 1.1 brezak 1300 1.1 brezak sc->sc_stereo.intr = intr; 1301 1.1 brezak sc->sc_stereo.arg = arg; 1302 1.1 brezak sc->sc_stereo.size = size; 1303 1.1 brezak sc->sc_stereo.dmabuf = boarddma + GUS_LEFT_RIGHT_OFFSET; 1304 1.1 brezak sc->sc_stereo.buffer = buffer + size; 1305 1.1 brezak sc->sc_stereo.flags = flags; 1306 1.1 brezak if (gus_dostereo) { 1307 1.87 kent intr = stereo_dmaintr; 1308 1.87 kent arg = sc; 1309 1.1 brezak } 1310 1.1 brezak } else 1311 1.1 brezak boarddma = size * sc->sc_dmabuf + GUS_MEM_OFFSET; 1312 1.1 brezak 1313 1.1 brezak 1314 1.1 brezak sc->sc_flags |= GUS_LOCKED; 1315 1.1 brezak sc->sc_dmaoutintr = intr; 1316 1.1 brezak sc->sc_outarg = arg; 1317 1.1 brezak 1318 1.1 brezak #ifdef GUSPLAYDEBUG 1319 1.1 brezak if (gusstats) { 1320 1.87 kent microtime(&dmarecords[dmarecord_index].tv); 1321 1.87 kent dmarecords[dmarecord_index].gusaddr = boarddma; 1322 1.87 kent dmarecords[dmarecord_index].bsdaddr = buffer; 1323 1.87 kent dmarecords[dmarecord_index].count = size; 1324 1.87 kent dmarecords[dmarecord_index].channel = 0; 1325 1.87 kent dmarecords[dmarecord_index].direction = 1; 1326 1.87 kent dmarecord_index = (dmarecord_index + 1) % NDMARECS; 1327 1.1 brezak } 1328 1.1 brezak #endif 1329 1.1 brezak 1330 1.97 christos gusdmaout(sc, flags, boarddma, (void *) buffer, size); 1331 1.1 brezak 1332 1.1 brezak return 0; 1333 1.1 brezak } 1334 1.1 brezak 1335 1.1 brezak void 1336 1.87 kent gusmax_close(void *addr) 1337 1.1 brezak { 1338 1.87 kent struct ad1848_isa_softc *ac; 1339 1.87 kent struct gus_softc *sc; 1340 1.87 kent 1341 1.87 kent ac = addr; 1342 1.87 kent sc = ac->sc_ad1848.parent; 1343 1.14 christos #if 0 1344 1.54 augustss ac->mute[AD1848_AUX1_CHANNEL] = MUTE_ALL; 1345 1.54 augustss ad1848_mute_channel(ac, MUTE_ALL); /* turn off DAC output */ 1346 1.14 christos #endif 1347 1.62 jtk ad1848_close(&ac->sc_ad1848); 1348 1.1 brezak gusclose(sc); 1349 1.1 brezak } 1350 1.1 brezak 1351 1.1 brezak /* 1352 1.107 jmcneill * Close out device stuff. 1353 1.1 brezak */ 1354 1.1 brezak void 1355 1.87 kent gusclose(void *addr) 1356 1.1 brezak { 1357 1.87 kent struct gus_softc *sc; 1358 1.1 brezak 1359 1.87 kent sc = addr; 1360 1.87 kent DPRINTF(("gus_close: sc=%p\n", sc)); 1361 1.1 brezak 1362 1.119 isaki KASSERT((sc->sc_flags & (GUS_DMAOUT_ACTIVE | GUS_LOCKED)) == 0); 1363 1.119 isaki KASSERT((sc->sc_flags & GUS_DMAIN_ACTIVE) == 0); 1364 1.1 brezak 1365 1.119 isaki sc->sc_flags &= ~GUS_OPEN; 1366 1.1 brezak 1367 1.1 brezak /* turn off speaker, etc. */ 1368 1.1 brezak 1369 1.1 brezak /* make sure the voices shut up: */ 1370 1.1 brezak gus_stop_voice(sc, GUS_VOICE_LEFT, 1); 1371 1.1 brezak gus_stop_voice(sc, GUS_VOICE_RIGHT, 0); 1372 1.1 brezak } 1373 1.1 brezak 1374 1.1 brezak /* 1375 1.1 brezak * Service interrupts. Farm them off to helper routines if we are using the 1376 1.1 brezak * GUS for simple playback/record 1377 1.1 brezak */ 1378 1.1 brezak 1379 1.1 brezak #ifdef DIAGNOSTIC 1380 1.1 brezak int gusintrcnt; 1381 1.1 brezak int gusdmaintrcnt; 1382 1.1 brezak int gusvocintrcnt; 1383 1.1 brezak #endif 1384 1.1 brezak 1385 1.1 brezak int 1386 1.87 kent gusintr(void *arg) 1387 1.1 brezak { 1388 1.87 kent struct gus_softc *sc; 1389 1.87 kent bus_space_tag_t iot; 1390 1.87 kent bus_space_handle_t ioh1; 1391 1.87 kent bus_space_handle_t ioh2; 1392 1.1 brezak unsigned char intr; 1393 1.87 kent int retval; 1394 1.1 brezak 1395 1.1 brezak DPRINTF(("gusintr\n")); 1396 1.87 kent sc = arg; 1397 1.87 kent iot = sc->sc_iot; 1398 1.87 kent ioh1 = sc->sc_ioh1; 1399 1.87 kent ioh2 = sc->sc_ioh2; 1400 1.87 kent retval = 0; 1401 1.1 brezak #ifdef DIAGNOSTIC 1402 1.1 brezak gusintrcnt++; 1403 1.1 brezak #endif 1404 1.107 jmcneill 1405 1.107 jmcneill mutex_spin_enter(&sc->sc_codec.sc_ad1848.sc_intr_lock); 1406 1.107 jmcneill 1407 1.1 brezak if (HAS_CODEC(sc)) 1408 1.60 pk retval = ad1848_isa_intr(&sc->sc_codec); 1409 1.110 msaitoh if ((intr = bus_space_read_1(iot, ioh1, GUS_IRQ_STATUS)) 1410 1.110 msaitoh & GUSMASK_IRQ_DMATC) { 1411 1.80 wiz DMAPRINTF(("gusintr DMA flags=%x\n", sc->sc_flags)); 1412 1.1 brezak #ifdef DIAGNOSTIC 1413 1.1 brezak gusdmaintrcnt++; 1414 1.1 brezak #endif 1415 1.1 brezak retval += gus_dmaout_intr(sc); 1416 1.1 brezak if (sc->sc_flags & GUS_DMAIN_ACTIVE) { 1417 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_SAMPLE_CONTROL); 1418 1.87 kent intr = bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 1419 1.87 kent if (intr & GUSMASK_SAMPLE_DMATC) { 1420 1.87 kent retval += gus_dmain_intr(sc); 1421 1.87 kent } 1422 1.1 brezak } 1423 1.1 brezak } 1424 1.1 brezak if (intr & (GUSMASK_IRQ_VOICE | GUSMASK_IRQ_VOLUME)) { 1425 1.1 brezak DMAPRINTF(("gusintr voice flags=%x\n", sc->sc_flags)); 1426 1.1 brezak #ifdef DIAGNOSTIC 1427 1.1 brezak gusvocintrcnt++; 1428 1.1 brezak #endif 1429 1.1 brezak retval += gus_voice_intr(sc); 1430 1.1 brezak } 1431 1.107 jmcneill 1432 1.107 jmcneill mutex_spin_exit(&sc->sc_codec.sc_ad1848.sc_intr_lock); 1433 1.107 jmcneill 1434 1.1 brezak return retval; 1435 1.1 brezak } 1436 1.1 brezak 1437 1.1 brezak int gus_bufcnt[GUS_MEM_FOR_BUFFERS / GUS_BUFFER_MULTIPLE]; 1438 1.1 brezak int gus_restart; /* how many restarts? */ 1439 1.1 brezak int gus_stops; /* how many times did voice stop? */ 1440 1.1 brezak int gus_falsestops; /* stopped but not done? */ 1441 1.1 brezak int gus_continues; 1442 1.1 brezak 1443 1.1 brezak struct playcont { 1444 1.1 brezak struct timeval tv; 1445 1.1 brezak u_int playbuf; 1446 1.1 brezak u_int dmabuf; 1447 1.1 brezak u_char bufcnt; 1448 1.1 brezak u_char vaction; 1449 1.1 brezak u_char voccntl; 1450 1.1 brezak u_char volcntl; 1451 1.1 brezak u_long curaddr; 1452 1.1 brezak u_long endaddr; 1453 1.1 brezak } playstats[NDMARECS]; 1454 1.1 brezak 1455 1.1 brezak int playcntr; 1456 1.1 brezak 1457 1.8 jtk STATIC void 1458 1.87 kent gus_dmaout_timeout(void *arg) 1459 1.1 brezak { 1460 1.87 kent struct gus_softc *sc; 1461 1.87 kent bus_space_tag_t iot; 1462 1.87 kent bus_space_handle_t ioh2; 1463 1.87 kent 1464 1.87 kent sc = arg; 1465 1.87 kent iot = sc->sc_iot; 1466 1.87 kent ioh2 = sc->sc_ioh2; 1467 1.109 chs printf("%s: dmaout timeout\n", device_xname(sc->sc_dev)); 1468 1.107 jmcneill 1469 1.87 kent /* 1470 1.87 kent * Stop any DMA. 1471 1.87 kent */ 1472 1.107 jmcneill mutex_spin_enter(&sc->sc_codec.sc_ad1848.sc_intr_lock); 1473 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_CONTROL); 1474 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0); 1475 1.14 christos #if 0 1476 1.87 kent /* XXX we will dmadone below? */ 1477 1.109 chs isa_dmaabort(device_parent(sc->sc_dev), sc->sc_playdrq); 1478 1.14 christos #endif 1479 1.87 kent 1480 1.87 kent gus_dmaout_dointr(sc); 1481 1.107 jmcneill mutex_spin_exit(&sc->sc_codec.sc_ad1848.sc_intr_lock); 1482 1.1 brezak } 1483 1.1 brezak 1484 1.1 brezak 1485 1.1 brezak /* 1486 1.1 brezak * Service DMA interrupts. This routine will only get called if we're doing 1487 1.1 brezak * a DMA transfer for playback/record requests from the audio layer. 1488 1.1 brezak */ 1489 1.1 brezak 1490 1.8 jtk STATIC int 1491 1.87 kent gus_dmaout_intr(struct gus_softc *sc) 1492 1.1 brezak { 1493 1.87 kent bus_space_tag_t iot; 1494 1.87 kent bus_space_handle_t ioh2; 1495 1.1 brezak 1496 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 1497 1.107 jmcneill 1498 1.87 kent iot = sc->sc_iot; 1499 1.87 kent ioh2 = sc->sc_ioh2; 1500 1.1 brezak /* 1501 1.1 brezak * If we got a DMA transfer complete from the GUS DRAM, then deal 1502 1.1 brezak * with it. 1503 1.1 brezak */ 1504 1.1 brezak 1505 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_CONTROL); 1506 1.87 kent if (bus_space_read_1(iot, ioh2, GUS_DATA_HIGH) & GUSMASK_DMA_IRQPEND) { 1507 1.87 kent callout_stop(&sc->sc_dmaout_ch); 1508 1.87 kent gus_dmaout_dointr(sc); 1509 1.87 kent return 1; 1510 1.1 brezak } 1511 1.1 brezak return 0; 1512 1.1 brezak } 1513 1.1 brezak 1514 1.8 jtk STATIC void 1515 1.87 kent gus_dmaout_dointr(struct gus_softc *sc) 1516 1.1 brezak { 1517 1.87 kent bus_space_tag_t iot; 1518 1.87 kent bus_space_handle_t ioh2; 1519 1.1 brezak 1520 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 1521 1.107 jmcneill 1522 1.87 kent iot = sc->sc_iot; 1523 1.87 kent ioh2 = sc->sc_ioh2; 1524 1.1 brezak /* sc->sc_dmaoutcnt - 1 because DMA controller counts from zero?. */ 1525 1.87 kent isa_dmadone(sc->sc_ic, sc->sc_playdrq); 1526 1.1 brezak sc->sc_flags &= ~GUS_DMAOUT_ACTIVE; /* pending DMA is done */ 1527 1.87 kent DMAPRINTF(("gus_dmaout_dointr %d @ %p\n", sc->sc_dmaoutcnt, 1528 1.1 brezak sc->sc_dmaoutaddr)); 1529 1.1 brezak 1530 1.1 brezak /* 1531 1.1 brezak * to prevent clicking, we need to copy last sample 1532 1.1 brezak * from last buffer to scratch area just before beginning of 1533 1.1 brezak * buffer. However, if we're doing formats that are converted by 1534 1.1 brezak * the card during the DMA process, we need to pick up the converted 1535 1.1 brezak * byte rather than the one we have in memory. 1536 1.1 brezak */ 1537 1.1 brezak if (sc->sc_dmabuf == sc->sc_nbufs - 1) { 1538 1.87 kent int i; 1539 1.87 kent switch (sc->sc_encoding) { 1540 1.87 kent case AUDIO_ENCODING_SLINEAR_LE: 1541 1.87 kent case AUDIO_ENCODING_SLINEAR_BE: 1542 1.87 kent if (sc->sc_precision == 8) 1543 1.87 kent goto byte; 1544 1.87 kent /* we have the native format */ 1545 1.87 kent for (i = 1; i <= 2; i++) 1546 1.87 kent guspoke(iot, ioh2, sc->sc_gusaddr - 1547 1.87 kent (sc->sc_nbufs - 1) * sc->sc_chanblocksize - i, 1548 1.87 kent sc->sc_dmaoutaddr[sc->sc_dmaoutcnt-i]); 1549 1.87 kent break; 1550 1.87 kent case AUDIO_ENCODING_ULINEAR_LE: 1551 1.87 kent case AUDIO_ENCODING_ULINEAR_BE: 1552 1.87 kent guspoke(iot, ioh2, sc->sc_gusaddr - 1553 1.87 kent (sc->sc_nbufs - 1) * sc->sc_chanblocksize - 2, 1554 1.87 kent guspeek(iot, ioh2, 1555 1.87 kent sc->sc_gusaddr + sc->sc_chanblocksize - 2)); 1556 1.114 mrg /* FALLTHROUGH */ 1557 1.87 kent case AUDIO_ENCODING_ALAW: 1558 1.87 kent case AUDIO_ENCODING_ULAW: 1559 1.87 kent byte: 1560 1.87 kent /* we need to fetch the translated byte, then stuff it. */ 1561 1.87 kent guspoke(iot, ioh2, sc->sc_gusaddr - 1562 1.87 kent (sc->sc_nbufs - 1) * sc->sc_chanblocksize - 1, 1563 1.87 kent guspeek(iot, ioh2, 1564 1.87 kent sc->sc_gusaddr + sc->sc_chanblocksize - 1)); 1565 1.87 kent break; 1566 1.87 kent } 1567 1.1 brezak } 1568 1.1 brezak /* 1569 1.1 brezak * If this is the first half of stereo, "ignore" this one 1570 1.1 brezak * and copy out the second half. 1571 1.1 brezak */ 1572 1.1 brezak if (sc->sc_dmaoutintr == stereo_dmaintr) { 1573 1.87 kent (*sc->sc_dmaoutintr)(sc->sc_outarg); 1574 1.87 kent return; 1575 1.1 brezak } 1576 1.1 brezak /* 1577 1.1 brezak * If the voice is stopped, then start it. Reset the loop 1578 1.1 brezak * and roll bits. Call the audio layer routine, since if 1579 1.1 brezak * we're starting a stopped voice, that means that the next 1580 1.1 brezak * buffer can be filled 1581 1.1 brezak */ 1582 1.1 brezak 1583 1.1 brezak sc->sc_flags &= ~GUS_LOCKED; 1584 1.1 brezak if (sc->sc_voc[GUS_VOICE_LEFT].voccntl & 1585 1.1 brezak GUSMASK_VOICE_STOPPED) { 1586 1.87 kent if (sc->sc_flags & GUS_PLAYING) { 1587 1.109 chs printf("%s: playing yet stopped?\n", device_xname(sc->sc_dev)); 1588 1.87 kent } 1589 1.87 kent sc->sc_bufcnt++; /* another yet to be played */ 1590 1.87 kent gus_start_playing(sc, sc->sc_dmabuf); 1591 1.87 kent gus_restart++; 1592 1.1 brezak } else { 1593 1.1 brezak /* 1594 1.87 kent * set the sound action based on which buffer we 1595 1.87 kent * just transferred. If we just transferred buffer 0 1596 1.87 kent * we want the sound to loop when it gets to the nth 1597 1.87 kent * buffer; if we just transferred 1598 1.87 kent * any other buffer, we want the sound to roll over 1599 1.87 kent * at least one more time. The voice interrupt 1600 1.87 kent * handlers will take care of accounting & 1601 1.87 kent * setting control bits if it's not caught up to us 1602 1.87 kent * yet. 1603 1.1 brezak */ 1604 1.87 kent if (++sc->sc_bufcnt == 2) { 1605 1.87 kent /* 1606 1.88 perry * XXX 1607 1.87 kent * If we're too slow in reaction here, 1608 1.87 kent * the voice could be just approaching the 1609 1.87 kent * end of its run. It should be set to stop, 1610 1.87 kent * so these adjustments might not DTRT. 1611 1.87 kent */ 1612 1.87 kent if (sc->sc_dmabuf == 0 && 1613 1.87 kent sc->sc_playbuf == sc->sc_nbufs - 1) { 1614 1.89 christos /* player is just at the last tbuf, we're at the 1615 1.87 kent first. Turn on looping, turn off rolling. */ 1616 1.87 kent sc->sc_voc[GUS_VOICE_LEFT].voccntl |= GUSMASK_LOOP_ENABLE; 1617 1.87 kent sc->sc_voc[GUS_VOICE_LEFT].volcntl &= ~GUSMASK_VOICE_ROLL; 1618 1.87 kent playstats[playcntr].vaction = 3; 1619 1.87 kent } else { 1620 1.89 christos /* player is at previous tbuf: 1621 1.87 kent turn on rolling, turn off looping */ 1622 1.87 kent sc->sc_voc[GUS_VOICE_LEFT].voccntl &= ~GUSMASK_LOOP_ENABLE; 1623 1.87 kent sc->sc_voc[GUS_VOICE_LEFT].volcntl |= GUSMASK_VOICE_ROLL; 1624 1.87 kent playstats[playcntr].vaction = 4; 1625 1.87 kent } 1626 1.1 brezak #ifdef GUSPLAYDEBUG 1627 1.87 kent if (gusstats) { 1628 1.87 kent microtime(&playstats[playcntr].tv); 1629 1.87 kent playstats[playcntr].endaddr 1630 1.87 kent = sc->sc_voc[GUS_VOICE_LEFT].end_addr; 1631 1.87 kent playstats[playcntr].voccntl 1632 1.87 kent = sc->sc_voc[GUS_VOICE_LEFT].voccntl; 1633 1.87 kent playstats[playcntr].volcntl 1634 1.87 kent = sc->sc_voc[GUS_VOICE_LEFT].volcntl; 1635 1.87 kent playstats[playcntr].playbuf = sc->sc_playbuf; 1636 1.87 kent playstats[playcntr].dmabuf = sc->sc_dmabuf; 1637 1.87 kent playstats[playcntr].bufcnt = sc->sc_bufcnt; 1638 1.87 kent playstats[playcntr].curaddr 1639 1.87 kent = gus_get_curaddr(sc, GUS_VOICE_LEFT); 1640 1.87 kent playcntr = (playcntr + 1) % NDMARECS; 1641 1.87 kent } 1642 1.87 kent #endif 1643 1.87 kent bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, GUS_VOICE_LEFT); 1644 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 1645 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 1646 1.87 kent sc->sc_voc[GUS_VOICE_LEFT].voccntl); 1647 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_CONTROL); 1648 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 1649 1.87 kent sc->sc_voc[GUS_VOICE_LEFT].volcntl); 1650 1.1 brezak } 1651 1.1 brezak } 1652 1.1 brezak gus_bufcnt[sc->sc_bufcnt-1]++; 1653 1.1 brezak /* 1654 1.1 brezak * flip to the next DMA buffer 1655 1.1 brezak */ 1656 1.1 brezak 1657 1.106 mrg sc->sc_dmabuf = (sc->sc_dmabuf + 1) % sc->sc_nbufs; 1658 1.1 brezak /* 1659 1.1 brezak * See comments below about DMA admission control strategy. 1660 1.1 brezak * We can call the upper level here if we have an 1661 1.1 brezak * idle buffer (not currently playing) to DMA into. 1662 1.1 brezak */ 1663 1.1 brezak if (sc->sc_dmaoutintr && sc->sc_bufcnt < sc->sc_nbufs) { 1664 1.87 kent /* clean out to prevent double calls */ 1665 1.87 kent void (*pfunc)(void *); 1666 1.87 kent void *arg; 1667 1.87 kent 1668 1.87 kent pfunc = sc->sc_dmaoutintr; 1669 1.87 kent arg = sc->sc_outarg; 1670 1.87 kent sc->sc_outarg = 0; 1671 1.87 kent sc->sc_dmaoutintr = 0; 1672 1.87 kent (*pfunc)(arg); 1673 1.1 brezak } 1674 1.1 brezak } 1675 1.1 brezak 1676 1.1 brezak /* 1677 1.1 brezak * Service voice interrupts 1678 1.1 brezak */ 1679 1.1 brezak 1680 1.8 jtk STATIC int 1681 1.87 kent gus_voice_intr(struct gus_softc *sc) 1682 1.1 brezak { 1683 1.87 kent bus_space_tag_t iot; 1684 1.87 kent bus_space_handle_t ioh2; 1685 1.87 kent int ignore, voice, rval; 1686 1.1 brezak unsigned char intr, status; 1687 1.1 brezak 1688 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 1689 1.107 jmcneill 1690 1.87 kent iot = sc->sc_iot; 1691 1.87 kent ioh2 = sc->sc_ioh2; 1692 1.87 kent ignore = 0; 1693 1.87 kent rval = 0; 1694 1.1 brezak /* 1695 1.1 brezak * The point of this may not be obvious at first. A voice can 1696 1.1 brezak * interrupt more than once; according to the GUS SDK we are supposed 1697 1.1 brezak * to ignore multiple interrupts for the same voice. 1698 1.1 brezak */ 1699 1.1 brezak 1700 1.87 kent while (1) { 1701 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_IRQ_STATUS); 1702 1.43 augustss intr = bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 1703 1.1 brezak 1704 1.1 brezak if ((intr & (GUSMASK_WIRQ_VOLUME | GUSMASK_WIRQ_VOICE)) 1705 1.1 brezak == (GUSMASK_WIRQ_VOLUME | GUSMASK_WIRQ_VOICE)) 1706 1.1 brezak /* 1707 1.1 brezak * No more interrupts, time to return 1708 1.1 brezak */ 1709 1.87 kent return rval; 1710 1.1 brezak 1711 1.1 brezak if ((intr & GUSMASK_WIRQ_VOICE) == 0) { 1712 1.1 brezak 1713 1.87 kent /* 1714 1.87 kent * We've got a voice interrupt. Ignore previous 1715 1.87 kent * interrupts by the same voice. 1716 1.87 kent */ 1717 1.1 brezak 1718 1.87 kent rval = 1; 1719 1.87 kent voice = intr & GUSMASK_WIRQ_VOICEMASK; 1720 1.1 brezak 1721 1.87 kent if ((1 << voice) & ignore) 1722 1.87 kent break; 1723 1.1 brezak 1724 1.87 kent ignore |= 1 << voice; 1725 1.1 brezak 1726 1.1 brezak /* 1727 1.87 kent * If the voice is stopped, then force it to stop 1728 1.87 kent * (this stops it from continuously generating IRQs) 1729 1.1 brezak */ 1730 1.87 kent 1731 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL+0x80); 1732 1.87 kent status = bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 1733 1.87 kent if (status & GUSMASK_VOICE_STOPPED) { 1734 1.87 kent if (voice != GUS_VOICE_LEFT) { 1735 1.110 msaitoh DMAPRINTF(("%s: spurious voice %d " 1736 1.110 msaitoh "stop?\n", 1737 1.110 msaitoh device_xname(sc->sc_dev), voice)); 1738 1.87 kent gus_stop_voice(sc, voice, 0); 1739 1.87 kent continue; 1740 1.87 kent } 1741 1.87 kent gus_stop_voice(sc, voice, 1); 1742 1.87 kent /* also kill right voice */ 1743 1.87 kent gus_stop_voice(sc, GUS_VOICE_RIGHT, 0); 1744 1.87 kent sc->sc_bufcnt--; /* it finished a buffer */ 1745 1.87 kent if (sc->sc_bufcnt > 0) { 1746 1.87 kent /* 1747 1.87 kent * probably a race to get here: the 1748 1.87 kent * voice stopped while the DMA code was 1749 1.87 kent * just trying to get the next buffer 1750 1.87 kent * in place. Start the voice again. 1751 1.87 kent */ 1752 1.110 msaitoh printf("%s: stopped voice not drained?" 1753 1.110 msaitoh " (%x)\n", 1754 1.110 msaitoh device_xname(sc->sc_dev), 1755 1.110 msaitoh sc->sc_bufcnt); 1756 1.87 kent gus_falsestops++; 1757 1.87 kent 1758 1.110 msaitoh sc->sc_playbuf = (sc->sc_playbuf + 1) 1759 1.110 msaitoh % sc->sc_nbufs; 1760 1.87 kent gus_start_playing(sc, sc->sc_playbuf); 1761 1.87 kent } else if (sc->sc_bufcnt < 0) { 1762 1.110 msaitoh panic("%s: negative bufcnt in stopped " 1763 1.110 msaitoh "voice", device_xname(sc->sc_dev)); 1764 1.87 kent } else { 1765 1.87 kent sc->sc_playbuf = -1; /* none are active */ 1766 1.87 kent gus_stops++; 1767 1.87 kent } 1768 1.87 kent /* fall through to callback and admit another 1769 1.87 kent buffer.... */ 1770 1.87 kent } else if (sc->sc_bufcnt != 0) { 1771 1.8 jtk /* 1772 1.87 kent * This should always be taken if the voice 1773 1.87 kent * is not stopped. 1774 1.8 jtk */ 1775 1.87 kent gus_continues++; 1776 1.87 kent if (gus_continue_playing(sc, voice)) { 1777 1.87 kent /* 1778 1.87 kent * we shouldn't have continued--active 1779 1.87 kent * DMA is in the way in the ring, for 1780 1.87 kent * some as-yet undebugged reason. 1781 1.87 kent */ 1782 1.87 kent gus_stop_voice(sc, GUS_VOICE_LEFT, 1); 1783 1.87 kent /* also kill right voice */ 1784 1.87 kent gus_stop_voice(sc, GUS_VOICE_RIGHT, 0); 1785 1.87 kent sc->sc_playbuf = -1; 1786 1.87 kent gus_stops++; 1787 1.87 kent } 1788 1.8 jtk } 1789 1.87 kent /* 1790 1.87 kent * call the upper level to send on down another 1791 1.87 kent * block. We do admission rate control as follows: 1792 1.87 kent * 1793 1.87 kent * When starting up output (in the first N 1794 1.87 kent * blocks), call the upper layer after the DMA is 1795 1.87 kent * complete (see above in gus_dmaout_intr()). 1796 1.87 kent * 1797 1.87 kent * When output is already in progress and we have 1798 1.87 kent * no more GUS buffers to use for DMA, the DMA 1799 1.87 kent * output routines do not call the upper layer. 1800 1.87 kent * Instead, we call the DMA completion routine 1801 1.87 kent * here, after the voice interrupts indicating 1802 1.87 kent * that it's finished with a buffer. 1803 1.87 kent * 1804 1.87 kent * However, don't call anything here if the DMA 1805 1.87 kent * output flag is set, (which shouldn't happen) 1806 1.87 kent * because we'll squish somebody else's DMA if 1807 1.87 kent * that's the case. When DMA is done, it will 1808 1.87 kent * call back if there is a spare buffer. 1809 1.87 kent */ 1810 1.87 kent if (sc->sc_dmaoutintr && !(sc->sc_flags & GUS_LOCKED)) { 1811 1.87 kent if (sc->sc_dmaoutintr == stereo_dmaintr) 1812 1.87 kent printf("gusdmaout botch?\n"); 1813 1.87 kent else { 1814 1.87 kent /* clean out to avoid double calls */ 1815 1.87 kent void (*pfunc)(void *); 1816 1.87 kent void *arg; 1817 1.87 kent 1818 1.87 kent pfunc = sc->sc_dmaoutintr; 1819 1.87 kent arg = sc->sc_outarg; 1820 1.87 kent sc->sc_outarg = 0; 1821 1.87 kent sc->sc_dmaoutintr = 0; 1822 1.87 kent (*pfunc)(arg); 1823 1.87 kent } 1824 1.1 brezak } 1825 1.1 brezak } 1826 1.1 brezak 1827 1.1 brezak /* 1828 1.1 brezak * Ignore other interrupts for now 1829 1.1 brezak */ 1830 1.1 brezak } 1831 1.14 christos return 0; 1832 1.1 brezak } 1833 1.1 brezak 1834 1.87 kent /* 1835 1.87 kent * Start the voices playing, with buffer BUFNO. 1836 1.87 kent */ 1837 1.8 jtk STATIC void 1838 1.87 kent gus_start_playing(struct gus_softc *sc, int bufno) 1839 1.1 brezak { 1840 1.87 kent bus_space_tag_t iot; 1841 1.87 kent bus_space_handle_t ioh2; 1842 1.1 brezak 1843 1.87 kent iot = sc->sc_iot; 1844 1.87 kent ioh2 = sc->sc_ioh2; 1845 1.43 augustss /* 1846 1.43 augustss * Loop or roll if we have buffers ready. 1847 1.43 augustss */ 1848 1.1 brezak 1849 1.43 augustss if (sc->sc_bufcnt == 1) { 1850 1.43 augustss sc->sc_voc[GUS_VOICE_LEFT].voccntl &= ~(GUSMASK_LOOP_ENABLE); 1851 1.43 augustss sc->sc_voc[GUS_VOICE_LEFT].volcntl &= ~(GUSMASK_VOICE_ROLL); 1852 1.1 brezak } else { 1853 1.43 augustss if (bufno == sc->sc_nbufs - 1) { 1854 1.43 augustss sc->sc_voc[GUS_VOICE_LEFT].voccntl |= GUSMASK_LOOP_ENABLE; 1855 1.43 augustss sc->sc_voc[GUS_VOICE_LEFT].volcntl &= ~(GUSMASK_VOICE_ROLL); 1856 1.43 augustss } else { 1857 1.43 augustss sc->sc_voc[GUS_VOICE_LEFT].voccntl &= ~GUSMASK_LOOP_ENABLE; 1858 1.43 augustss sc->sc_voc[GUS_VOICE_LEFT].volcntl |= GUSMASK_VOICE_ROLL; 1859 1.43 augustss } 1860 1.1 brezak } 1861 1.1 brezak 1862 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, GUS_VOICE_LEFT); 1863 1.1 brezak 1864 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 1865 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[GUS_VOICE_LEFT].voccntl); 1866 1.1 brezak 1867 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_CONTROL); 1868 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[GUS_VOICE_LEFT].volcntl); 1869 1.1 brezak 1870 1.43 augustss sc->sc_voc[GUS_VOICE_LEFT].current_addr = 1871 1.87 kent GUS_MEM_OFFSET + sc->sc_chanblocksize * bufno; 1872 1.43 augustss sc->sc_voc[GUS_VOICE_LEFT].end_addr = 1873 1.87 kent sc->sc_voc[GUS_VOICE_LEFT].current_addr + sc->sc_chanblocksize - 1; 1874 1.43 augustss sc->sc_voc[GUS_VOICE_RIGHT].current_addr = 1875 1.87 kent sc->sc_voc[GUS_VOICE_LEFT].current_addr + 1876 1.87 kent (gus_dostereo && sc->sc_channels == 2 ? GUS_LEFT_RIGHT_OFFSET : 0); 1877 1.43 augustss /* 1878 1.43 augustss * set up right channel to just loop forever, no interrupts, 1879 1.43 augustss * starting at the buffer we just filled. We'll feed it data 1880 1.43 augustss * at the same time as left channel. 1881 1.43 augustss */ 1882 1.43 augustss sc->sc_voc[GUS_VOICE_RIGHT].voccntl |= GUSMASK_LOOP_ENABLE; 1883 1.43 augustss sc->sc_voc[GUS_VOICE_RIGHT].volcntl &= ~(GUSMASK_VOICE_ROLL); 1884 1.1 brezak 1885 1.1 brezak #ifdef GUSPLAYDEBUG 1886 1.43 augustss if (gusstats) { 1887 1.43 augustss microtime(&playstats[playcntr].tv); 1888 1.43 augustss playstats[playcntr].curaddr = sc->sc_voc[GUS_VOICE_LEFT].current_addr; 1889 1.1 brezak 1890 1.43 augustss playstats[playcntr].voccntl = sc->sc_voc[GUS_VOICE_LEFT].voccntl; 1891 1.43 augustss playstats[playcntr].volcntl = sc->sc_voc[GUS_VOICE_LEFT].volcntl; 1892 1.43 augustss playstats[playcntr].endaddr = sc->sc_voc[GUS_VOICE_LEFT].end_addr; 1893 1.43 augustss playstats[playcntr].playbuf = bufno; 1894 1.43 augustss playstats[playcntr].dmabuf = sc->sc_dmabuf; 1895 1.43 augustss playstats[playcntr].bufcnt = sc->sc_bufcnt; 1896 1.43 augustss playstats[playcntr].vaction = 5; 1897 1.82 gson playcntr = (playcntr + 1) % NDMARECS; 1898 1.43 augustss } 1899 1.1 brezak #endif 1900 1.1 brezak 1901 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, GUS_VOICE_RIGHT); 1902 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 1903 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[GUS_VOICE_RIGHT].voccntl); 1904 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_CONTROL); 1905 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[GUS_VOICE_RIGHT].volcntl); 1906 1.43 augustss 1907 1.43 augustss gus_start_voice(sc, GUS_VOICE_RIGHT, 0); 1908 1.43 augustss gus_start_voice(sc, GUS_VOICE_LEFT, 1); 1909 1.43 augustss if (sc->sc_playbuf == -1) 1910 1.43 augustss /* mark start of playing */ 1911 1.43 augustss sc->sc_playbuf = bufno; 1912 1.1 brezak } 1913 1.1 brezak 1914 1.8 jtk STATIC int 1915 1.87 kent gus_continue_playing(struct gus_softc *sc, int voice) 1916 1.1 brezak { 1917 1.87 kent bus_space_tag_t iot; 1918 1.87 kent bus_space_handle_t ioh2; 1919 1.1 brezak 1920 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 1921 1.107 jmcneill 1922 1.43 augustss /* 1923 1.43 augustss * stop this voice from interrupting while we work. 1924 1.43 augustss */ 1925 1.87 kent iot = sc->sc_iot; 1926 1.87 kent ioh2 = sc->sc_ioh2; 1927 1.1 brezak 1928 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 1929 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 1930 1.87 kent sc->sc_voc[voice].voccntl & ~(GUSMASK_VOICE_IRQ)); 1931 1.1 brezak 1932 1.87 kent /* 1933 1.43 augustss * update playbuf to point to the buffer the hardware just started 1934 1.43 augustss * playing 1935 1.43 augustss */ 1936 1.106 mrg sc->sc_playbuf = (sc->sc_playbuf + 1) % sc->sc_nbufs; 1937 1.87 kent 1938 1.43 augustss /* 1939 1.43 augustss * account for buffer just finished 1940 1.43 augustss */ 1941 1.43 augustss if (--sc->sc_bufcnt == 0) { 1942 1.43 augustss DPRINTF(("gus: bufcnt 0 on continuing voice?\n")); 1943 1.43 augustss } 1944 1.43 augustss if (sc->sc_playbuf == sc->sc_dmabuf && (sc->sc_flags & GUS_LOCKED)) { 1945 1.109 chs aprint_error_dev(sc->sc_dev, "continue into active dmabuf?\n"); 1946 1.43 augustss return 1; 1947 1.43 augustss } 1948 1.1 brezak 1949 1.43 augustss /* 1950 1.43 augustss * Select the end of the buffer based on the currently active 1951 1.43 augustss * buffer, [plus extra contiguous buffers (if ready)]. 1952 1.43 augustss */ 1953 1.1 brezak 1954 1.87 kent /* 1955 1.43 augustss * set endpoint at end of buffer we just started playing. 1956 1.43 augustss * 1957 1.43 augustss * The total gets -1 because end addrs are one less than you might 1958 1.43 augustss * think (the end_addr is the address of the last sample to play) 1959 1.43 augustss */ 1960 1.43 augustss gus_set_endaddr(sc, voice, GUS_MEM_OFFSET + 1961 1.43 augustss sc->sc_chanblocksize * (sc->sc_playbuf + 1) - 1); 1962 1.1 brezak 1963 1.43 augustss if (sc->sc_bufcnt < 2) { 1964 1.43 augustss /* 1965 1.43 augustss * Clear out the loop and roll flags, and rotate the currently 1966 1.43 augustss * playing buffer. That way, if we don't manage to get more 1967 1.43 augustss * data before this buffer finishes, we'll just stop. 1968 1.43 augustss */ 1969 1.43 augustss sc->sc_voc[voice].voccntl &= ~GUSMASK_LOOP_ENABLE; 1970 1.43 augustss sc->sc_voc[voice].volcntl &= ~GUSMASK_VOICE_ROLL; 1971 1.43 augustss playstats[playcntr].vaction = 0; 1972 1.1 brezak } else { 1973 1.43 augustss /* 1974 1.43 augustss * We have some buffers to play. set LOOP if we're on the 1975 1.43 augustss * last buffer in the ring, otherwise set ROLL. 1976 1.43 augustss */ 1977 1.43 augustss if (sc->sc_playbuf == sc->sc_nbufs - 1) { 1978 1.43 augustss sc->sc_voc[voice].voccntl |= GUSMASK_LOOP_ENABLE; 1979 1.43 augustss sc->sc_voc[voice].volcntl &= ~GUSMASK_VOICE_ROLL; 1980 1.43 augustss playstats[playcntr].vaction = 1; 1981 1.43 augustss } else { 1982 1.43 augustss sc->sc_voc[voice].voccntl &= ~GUSMASK_LOOP_ENABLE; 1983 1.43 augustss sc->sc_voc[voice].volcntl |= GUSMASK_VOICE_ROLL; 1984 1.43 augustss playstats[playcntr].vaction = 2; 1985 1.43 augustss } 1986 1.1 brezak } 1987 1.1 brezak #ifdef GUSPLAYDEBUG 1988 1.43 augustss if (gusstats) { 1989 1.43 augustss microtime(&playstats[playcntr].tv); 1990 1.43 augustss playstats[playcntr].curaddr = gus_get_curaddr(sc, voice); 1991 1.1 brezak 1992 1.43 augustss playstats[playcntr].voccntl = sc->sc_voc[voice].voccntl; 1993 1.43 augustss playstats[playcntr].volcntl = sc->sc_voc[voice].volcntl; 1994 1.43 augustss playstats[playcntr].endaddr = sc->sc_voc[voice].end_addr; 1995 1.43 augustss playstats[playcntr].playbuf = sc->sc_playbuf; 1996 1.43 augustss playstats[playcntr].dmabuf = sc->sc_dmabuf; 1997 1.43 augustss playstats[playcntr].bufcnt = sc->sc_bufcnt; 1998 1.82 gson playcntr = (playcntr + 1) % NDMARECS; 1999 1.43 augustss } 2000 1.1 brezak #endif 2001 1.1 brezak 2002 1.43 augustss /* 2003 1.43 augustss * (re-)set voice parameters. This will reenable interrupts from this 2004 1.43 augustss * voice. 2005 1.43 augustss */ 2006 1.1 brezak 2007 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 2008 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[voice].voccntl); 2009 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_CONTROL); 2010 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[voice].volcntl); 2011 1.43 augustss return 0; 2012 1.1 brezak } 2013 1.1 brezak 2014 1.1 brezak /* 2015 1.107 jmcneill * Send/receive data into GUS's DRAM using DMA. 2016 1.1 brezak */ 2017 1.8 jtk STATIC void 2018 1.87 kent gusdmaout(struct gus_softc *sc, int flags, 2019 1.97 christos u_long gusaddr, void *buffaddr, int length) 2020 1.1 brezak { 2021 1.87 kent unsigned char c; 2022 1.87 kent bus_space_tag_t iot; 2023 1.87 kent bus_space_handle_t ioh2; 2024 1.1 brezak 2025 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2026 1.107 jmcneill 2027 1.1 brezak DMAPRINTF(("gusdmaout flags=%x scflags=%x\n", flags, sc->sc_flags)); 2028 1.87 kent c = (unsigned char) flags; 2029 1.87 kent iot = sc->sc_iot; 2030 1.87 kent ioh2 = sc->sc_ioh2; 2031 1.1 brezak 2032 1.1 brezak sc->sc_gusaddr = gusaddr; 2033 1.1 brezak 2034 1.1 brezak /* 2035 1.1 brezak * If we're using a 16 bit DMA channel, we have to jump through some 2036 1.1 brezak * extra hoops; this includes translating the DRAM address a bit 2037 1.1 brezak */ 2038 1.1 brezak 2039 1.66 mycroft if (sc->sc_playdrq >= 4) { 2040 1.1 brezak c |= GUSMASK_DMA_WIDTH; 2041 1.1 brezak gusaddr = convert_to_16bit(gusaddr); 2042 1.1 brezak } 2043 1.1 brezak 2044 1.1 brezak /* 2045 1.1 brezak * Add flag bits that we always set - fast DMA, enable IRQ 2046 1.1 brezak */ 2047 1.1 brezak 2048 1.1 brezak c |= GUSMASK_DMA_ENABLE | GUSMASK_DMA_R0 | GUSMASK_DMA_IRQ; 2049 1.1 brezak 2050 1.1 brezak /* 2051 1.1 brezak * Make sure the GUS _isn't_ setup for DMA 2052 1.1 brezak */ 2053 1.1 brezak 2054 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_CONTROL); 2055 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0); 2056 1.1 brezak 2057 1.1 brezak /* 2058 1.1 brezak * Tell the PC DMA controller to start doing DMA 2059 1.1 brezak */ 2060 1.1 brezak 2061 1.1 brezak sc->sc_dmaoutaddr = (u_char *) buffaddr; 2062 1.1 brezak sc->sc_dmaoutcnt = length; 2063 1.87 kent isa_dmastart(sc->sc_ic, sc->sc_playdrq, buffaddr, length, 2064 1.87 kent NULL, DMAMODE_WRITE, BUS_DMA_NOWAIT); 2065 1.1 brezak 2066 1.1 brezak /* 2067 1.1 brezak * Set up DMA address - use the upper 16 bits ONLY 2068 1.1 brezak */ 2069 1.1 brezak 2070 1.1 brezak sc->sc_flags |= GUS_DMAOUT_ACTIVE; 2071 1.1 brezak 2072 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_START); 2073 1.87 kent bus_space_write_2(iot, ioh2, GUS_DATA_LOW, (int) (gusaddr >> 4)); 2074 1.1 brezak 2075 1.87 kent /* 2076 1.87 kent * Tell the GUS to start doing DMA 2077 1.87 kent */ 2078 1.1 brezak 2079 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_CONTROL); 2080 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, c); 2081 1.1 brezak 2082 1.1 brezak /* 2083 1.1 brezak * XXX If we don't finish in one second, give up... 2084 1.1 brezak */ 2085 1.69 thorpej callout_reset(&sc->sc_dmaout_ch, hz, gus_dmaout_timeout, sc); 2086 1.1 brezak } 2087 1.1 brezak 2088 1.1 brezak /* 2089 1.107 jmcneill * Start a voice playing on the GUS. 2090 1.1 brezak */ 2091 1.1 brezak 2092 1.8 jtk STATIC void 2093 1.87 kent gus_start_voice(struct gus_softc *sc, int voice, int intrs) 2094 1.1 brezak { 2095 1.87 kent bus_space_tag_t iot; 2096 1.87 kent bus_space_handle_t ioh2; 2097 1.14 christos u_long start; 2098 1.14 christos u_long current; 2099 1.14 christos u_long end; 2100 1.1 brezak 2101 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2102 1.107 jmcneill 2103 1.87 kent iot = sc->sc_iot; 2104 1.87 kent ioh2 = sc->sc_ioh2; 2105 1.1 brezak /* 2106 1.1 brezak * Pick all the values for the voice out of the gus_voice struct 2107 1.1 brezak * and use those to program the voice 2108 1.1 brezak */ 2109 1.1 brezak 2110 1.87 kent start = sc->sc_voc[voice].start_addr; 2111 1.87 kent current = sc->sc_voc[voice].current_addr; 2112 1.87 kent end = sc->sc_voc[voice].end_addr; 2113 1.1 brezak 2114 1.87 kent /* 2115 1.1 brezak * If we're using 16 bit data, mangle the addresses a bit 2116 1.1 brezak */ 2117 1.1 brezak 2118 1.1 brezak if (sc->sc_voc[voice].voccntl & GUSMASK_DATA_SIZE16) { 2119 1.87 kent /* -1 on start so that we get onto sample boundary--other 2120 1.87 kent * code always sets it for 1-byte rollover protection */ 2121 1.1 brezak start = convert_to_16bit(start-1); 2122 1.1 brezak current = convert_to_16bit(current); 2123 1.1 brezak end = convert_to_16bit(end); 2124 1.1 brezak } 2125 1.1 brezak 2126 1.1 brezak /* 2127 1.1 brezak * Select the voice we want to use, and program the data addresses 2128 1.1 brezak */ 2129 1.1 brezak 2130 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, (unsigned char) voice); 2131 1.1 brezak 2132 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_START_ADDR_HIGH); 2133 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_HIGH(start)); 2134 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_START_ADDR_LOW); 2135 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_LOW(start)); 2136 1.43 augustss 2137 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_HIGH); 2138 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_HIGH(current)); 2139 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_LOW); 2140 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_LOW(current)); 2141 1.43 augustss 2142 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_ADDR_HIGH); 2143 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_HIGH(end)); 2144 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_ADDR_LOW); 2145 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_LOW(end)); 2146 1.1 brezak 2147 1.1 brezak /* 2148 1.1 brezak * (maybe) enable interrupts, disable voice stopping 2149 1.1 brezak */ 2150 1.1 brezak 2151 1.1 brezak if (intrs) { 2152 1.1 brezak sc->sc_flags |= GUS_PLAYING; /* playing is about to start */ 2153 1.1 brezak sc->sc_voc[voice].voccntl |= GUSMASK_VOICE_IRQ; 2154 1.1 brezak DMAPRINTF(("gus voice playing=%x\n", sc->sc_flags)); 2155 1.1 brezak } else 2156 1.1 brezak sc->sc_voc[voice].voccntl &= ~GUSMASK_VOICE_IRQ; 2157 1.1 brezak sc->sc_voc[voice].voccntl &= ~(GUSMASK_VOICE_STOPPED | 2158 1.87 kent GUSMASK_STOP_VOICE); 2159 1.1 brezak 2160 1.1 brezak /* 2161 1.1 brezak * Tell the GUS about it. Note that we're doing volume ramping here 2162 1.1 brezak * from 0 up to the set volume to help reduce clicks. 2163 1.1 brezak */ 2164 1.1 brezak 2165 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_START_VOLUME); 2166 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 2167 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_VOLUME); 2168 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 2169 1.87 kent sc->sc_voc[voice].current_volume >> 4); 2170 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_VOLUME); 2171 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x00); 2172 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_RATE); 2173 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 63); 2174 1.43 augustss 2175 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 2176 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[voice].voccntl); 2177 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_CONTROL); 2178 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 2179 1.1 brezak delay(50); 2180 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 2181 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[voice].voccntl); 2182 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_CONTROL); 2183 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 2184 1.1 brezak 2185 1.1 brezak } 2186 1.1 brezak 2187 1.1 brezak /* 2188 1.107 jmcneill * Stop a given voice. 2189 1.1 brezak */ 2190 1.8 jtk STATIC void 2191 1.87 kent gus_stop_voice(struct gus_softc *sc, int voice, int intrs_too) 2192 1.1 brezak { 2193 1.87 kent bus_space_tag_t iot; 2194 1.87 kent bus_space_handle_t ioh2; 2195 1.1 brezak 2196 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2197 1.107 jmcneill 2198 1.87 kent iot = sc->sc_iot; 2199 1.87 kent ioh2 = sc->sc_ioh2; 2200 1.1 brezak sc->sc_voc[voice].voccntl |= GUSMASK_VOICE_STOPPED | 2201 1.87 kent GUSMASK_STOP_VOICE; 2202 1.1 brezak if (intrs_too) { 2203 1.87 kent sc->sc_voc[voice].voccntl &= ~(GUSMASK_VOICE_IRQ); 2204 1.87 kent /* no more DMA to do */ 2205 1.87 kent sc->sc_flags &= ~GUS_PLAYING; 2206 1.1 brezak } 2207 1.1 brezak DMAPRINTF(("gusintr voice notplaying=%x\n", sc->sc_flags)); 2208 1.1 brezak 2209 1.43 augustss guspoke(iot, ioh2, 0L, 0); 2210 1.1 brezak 2211 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, (unsigned char) voice); 2212 1.1 brezak 2213 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_VOLUME); 2214 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2215 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 2216 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[voice].voccntl); 2217 1.1 brezak delay(100); 2218 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_VOLUME); 2219 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2220 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 2221 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[voice].voccntl); 2222 1.43 augustss 2223 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_HIGH); 2224 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2225 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_LOW); 2226 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2227 1.1 brezak 2228 1.1 brezak } 2229 1.1 brezak 2230 1.1 brezak 2231 1.1 brezak /* 2232 1.107 jmcneill * Set the volume of a given voice. 2233 1.1 brezak */ 2234 1.8 jtk STATIC void 2235 1.87 kent gus_set_volume(struct gus_softc *sc, int voice, int volume) 2236 1.1 brezak { 2237 1.87 kent bus_space_tag_t iot; 2238 1.87 kent bus_space_handle_t ioh2; 2239 1.1 brezak unsigned int gusvol; 2240 1.1 brezak 2241 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2242 1.107 jmcneill 2243 1.87 kent iot = sc->sc_iot; 2244 1.87 kent ioh2 = sc->sc_ioh2; 2245 1.1 brezak gusvol = gus_log_volumes[volume < 512 ? volume : 511]; 2246 1.1 brezak 2247 1.1 brezak sc->sc_voc[voice].current_volume = gusvol; 2248 1.1 brezak 2249 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, (unsigned char) voice); 2250 1.1 brezak 2251 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_START_VOLUME); 2252 1.110 msaitoh bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 2253 1.110 msaitoh (unsigned char)(gusvol >> 4)); 2254 1.1 brezak 2255 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_VOLUME); 2256 1.110 msaitoh bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 2257 1.110 msaitoh (unsigned char)(gusvol >> 4)); 2258 1.1 brezak 2259 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_VOLUME); 2260 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, gusvol << 4); 2261 1.1 brezak delay(500); 2262 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, gusvol << 4); 2263 1.1 brezak 2264 1.1 brezak } 2265 1.1 brezak 2266 1.1 brezak /* 2267 1.23 augustss * Interface to the audio layer. 2268 1.1 brezak */ 2269 1.1 brezak 2270 1.1 brezak int 2271 1.116 isaki gusmax_set_format(void *addr, int setmode, 2272 1.116 isaki const audio_params_t *p, const audio_params_t *r, 2273 1.116 isaki audio_filter_reg_t *pfil, audio_filter_reg_t *rfil) 2274 1.23 augustss { 2275 1.87 kent struct ad1848_isa_softc *ac; 2276 1.87 kent struct gus_softc *sc; 2277 1.23 augustss int error; 2278 1.23 augustss 2279 1.87 kent ac = addr; 2280 1.87 kent sc = ac->sc_ad1848.parent; 2281 1.116 isaki error = ad1848_set_format(ac, setmode, p, r, pfil, rfil); 2282 1.23 augustss if (error) 2283 1.23 augustss return error; 2284 1.116 isaki 2285 1.116 isaki error = gus_set_format(sc, setmode, p, r, pfil, rfil); 2286 1.25 augustss return error; 2287 1.23 augustss } 2288 1.23 augustss 2289 1.23 augustss int 2290 1.116 isaki gus_set_format(void *addr, int setmode, 2291 1.116 isaki const audio_params_t *p, const audio_params_t *r, 2292 1.116 isaki audio_filter_reg_t *pfil, audio_filter_reg_t *rfil) 2293 1.23 augustss { 2294 1.87 kent struct gus_softc *sc; 2295 1.1 brezak 2296 1.87 kent sc = addr; 2297 1.1 brezak 2298 1.112 nat mutex_spin_enter(&sc->sc_codec.sc_ad1848.sc_intr_lock); 2299 1.1 brezak 2300 1.116 isaki sc->sc_voc[GUS_VOICE_LEFT].voccntl |= GUSMASK_DATA_SIZE16; 2301 1.116 isaki sc->sc_voc[GUS_VOICE_RIGHT].voccntl |= GUSMASK_DATA_SIZE16; 2302 1.21 mycroft 2303 1.23 augustss sc->sc_encoding = p->encoding; 2304 1.23 augustss sc->sc_precision = p->precision; 2305 1.27 jtk sc->sc_channels = p->channels; 2306 1.21 mycroft 2307 1.41 augustss if (setmode & AUMODE_RECORD) 2308 1.28 augustss sc->sc_irate = p->sample_rate; 2309 1.41 augustss if (setmode & AUMODE_PLAY) 2310 1.28 augustss sc->sc_orate = p->sample_rate; 2311 1.28 augustss 2312 1.112 nat mutex_spin_exit(&sc->sc_codec.sc_ad1848.sc_intr_lock); 2313 1.107 jmcneill 2314 1.1 brezak return 0; 2315 1.1 brezak } 2316 1.28 augustss 2317 1.1 brezak /* 2318 1.1 brezak * Interface to the audio layer - set the blocksize to the correct number 2319 1.1 brezak * of units 2320 1.1 brezak */ 2321 1.1 brezak 2322 1.1 brezak int 2323 1.97 christos gusmax_round_blocksize(void *addr, int blocksize, 2324 1.87 kent int mode, const audio_params_t *param) 2325 1.1 brezak { 2326 1.87 kent struct ad1848_isa_softc *ac; 2327 1.87 kent struct gus_softc *sc; 2328 1.1 brezak 2329 1.87 kent ac = addr; 2330 1.87 kent sc = ac->sc_ad1848.parent; 2331 1.86 kent return gus_round_blocksize(sc, blocksize, mode, param); 2332 1.1 brezak } 2333 1.1 brezak 2334 1.1 brezak int 2335 1.97 christos gus_round_blocksize(void *addr, int blocksize, 2336 1.96 christos int mode, const audio_params_t *param) 2337 1.1 brezak { 2338 1.87 kent struct gus_softc *sc; 2339 1.1 brezak 2340 1.1 brezak DPRINTF(("gus_round_blocksize called\n")); 2341 1.87 kent sc = addr; 2342 1.1 brezak 2343 1.39 augustss if ((sc->sc_encoding == AUDIO_ENCODING_ULAW || 2344 1.39 augustss sc->sc_encoding == AUDIO_ENCODING_ALAW) && blocksize > 32768) 2345 1.1 brezak blocksize = 32768; 2346 1.1 brezak else if (blocksize > 65536) 2347 1.1 brezak blocksize = 65536; 2348 1.1 brezak 2349 1.1 brezak if ((blocksize % GUS_BUFFER_MULTIPLE) != 0) 2350 1.1 brezak blocksize = (blocksize / GUS_BUFFER_MULTIPLE + 1) * 2351 1.1 brezak GUS_BUFFER_MULTIPLE; 2352 1.1 brezak 2353 1.1 brezak sc->sc_blocksize = blocksize; 2354 1.1 brezak /* multi-buffering not quite working yet. */ 2355 1.1 brezak sc->sc_nbufs = /*GUS_MEM_FOR_BUFFERS / blocksize*/ 2; 2356 1.1 brezak 2357 1.1 brezak gus_set_chan_addrs(sc); 2358 1.1 brezak 2359 1.1 brezak return blocksize; 2360 1.1 brezak } 2361 1.1 brezak 2362 1.1 brezak int 2363 1.97 christos gus_get_out_gain(void *addr) 2364 1.1 brezak { 2365 1.87 kent struct gus_softc *sc; 2366 1.1 brezak 2367 1.1 brezak DPRINTF(("gus_get_out_gain called\n")); 2368 1.87 kent sc = (struct gus_softc *) addr; 2369 1.1 brezak return sc->sc_ogain / 2; 2370 1.1 brezak } 2371 1.1 brezak 2372 1.87 kent STATIC inline void 2373 1.87 kent gus_set_voices(struct gus_softc *sc, int voices) 2374 1.1 brezak { 2375 1.87 kent bus_space_tag_t iot; 2376 1.87 kent bus_space_handle_t ioh2; 2377 1.87 kent 2378 1.87 kent iot = sc->sc_iot; 2379 1.87 kent ioh2 = sc->sc_ioh2; 2380 1.1 brezak /* 2381 1.1 brezak * Select the active number of voices 2382 1.1 brezak */ 2383 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_ACTIVE_VOICES); 2384 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, (voices-1) | 0xc0); 2385 1.1 brezak 2386 1.1 brezak sc->sc_voices = voices; 2387 1.1 brezak } 2388 1.1 brezak 2389 1.1 brezak /* 2390 1.1 brezak * Actually set the settings of various values on the card 2391 1.1 brezak */ 2392 1.1 brezak int 2393 1.97 christos gusmax_commit_settings(void *addr) 2394 1.1 brezak { 2395 1.87 kent struct ad1848_isa_softc *ac; 2396 1.87 kent struct gus_softc *sc; 2397 1.41 augustss int error; 2398 1.1 brezak 2399 1.87 kent ac = addr; 2400 1.87 kent sc = ac->sc_ad1848.parent; 2401 1.41 augustss error = ad1848_commit_settings(ac); 2402 1.41 augustss if (error) 2403 1.41 augustss return error; 2404 1.1 brezak return gus_commit_settings(sc); 2405 1.1 brezak } 2406 1.1 brezak 2407 1.1 brezak /* 2408 1.107 jmcneill * Commit the settings. 2409 1.1 brezak */ 2410 1.1 brezak int 2411 1.87 kent gus_commit_settings(void *addr) 2412 1.1 brezak { 2413 1.87 kent struct gus_softc *sc; 2414 1.1 brezak 2415 1.87 kent sc = addr; 2416 1.1 brezak DPRINTF(("gus_commit_settings called (gain = %d)\n",sc->sc_ogain)); 2417 1.1 brezak 2418 1.107 jmcneill mutex_spin_enter(&sc->sc_codec.sc_ad1848.sc_intr_lock); 2419 1.1 brezak gus_set_recrate(sc, sc->sc_irate); 2420 1.1 brezak gus_set_volume(sc, GUS_VOICE_LEFT, sc->sc_ogain); 2421 1.1 brezak gus_set_volume(sc, GUS_VOICE_RIGHT, sc->sc_ogain); 2422 1.1 brezak gus_set_samprate(sc, GUS_VOICE_LEFT, sc->sc_orate); 2423 1.1 brezak gus_set_samprate(sc, GUS_VOICE_RIGHT, sc->sc_orate); 2424 1.107 jmcneill mutex_spin_exit(&sc->sc_codec.sc_ad1848.sc_intr_lock); 2425 1.107 jmcneill 2426 1.1 brezak gus_set_chan_addrs(sc); 2427 1.1 brezak 2428 1.1 brezak return 0; 2429 1.1 brezak } 2430 1.1 brezak 2431 1.8 jtk STATIC void 2432 1.87 kent gus_set_chan_addrs(struct gus_softc *sc) 2433 1.1 brezak { 2434 1.87 kent 2435 1.1 brezak /* 2436 1.1 brezak * We use sc_nbufs * blocksize bytes of storage in the on-board GUS 2437 1.88 perry * ram. 2438 1.1 brezak * For mono, each of the sc_nbufs buffers is DMA'd to in one chunk, 2439 1.1 brezak * and both left & right channels play the same buffer. 2440 1.1 brezak * 2441 1.1 brezak * For stereo, each channel gets a contiguous half of the memory, 2442 1.1 brezak * and each has sc_nbufs buffers of size blocksize/2. 2443 1.1 brezak * Stereo data are deinterleaved in main memory before the DMA out 2444 1.1 brezak * routines are called to queue the output. 2445 1.1 brezak * 2446 1.1 brezak * The blocksize per channel is kept in sc_chanblocksize. 2447 1.1 brezak */ 2448 1.1 brezak if (sc->sc_channels == 2) 2449 1.1 brezak sc->sc_chanblocksize = sc->sc_blocksize/2; 2450 1.1 brezak else 2451 1.1 brezak sc->sc_chanblocksize = sc->sc_blocksize; 2452 1.1 brezak 2453 1.1 brezak sc->sc_voc[GUS_VOICE_LEFT].start_addr = GUS_MEM_OFFSET - 1; 2454 1.1 brezak sc->sc_voc[GUS_VOICE_RIGHT].start_addr = 2455 1.1 brezak (gus_dostereo && sc->sc_channels == 2 ? GUS_LEFT_RIGHT_OFFSET : 0) 2456 1.1 brezak + GUS_MEM_OFFSET - 1; 2457 1.1 brezak sc->sc_voc[GUS_VOICE_RIGHT].current_addr = 2458 1.1 brezak sc->sc_voc[GUS_VOICE_RIGHT].start_addr + 1; 2459 1.1 brezak sc->sc_voc[GUS_VOICE_RIGHT].end_addr = 2460 1.1 brezak sc->sc_voc[GUS_VOICE_RIGHT].start_addr + 2461 1.1 brezak sc->sc_nbufs * sc->sc_chanblocksize; 2462 1.1 brezak 2463 1.1 brezak } 2464 1.1 brezak 2465 1.1 brezak /* 2466 1.107 jmcneill * Set the sample rate of the given voice. 2467 1.1 brezak */ 2468 1.8 jtk STATIC void 2469 1.87 kent gus_set_samprate(struct gus_softc *sc, int voice, int freq) 2470 1.1 brezak { 2471 1.87 kent bus_space_tag_t iot; 2472 1.87 kent bus_space_handle_t ioh2; 2473 1.1 brezak unsigned int fc; 2474 1.87 kent u_long temp, f; 2475 1.1 brezak 2476 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2477 1.107 jmcneill 2478 1.87 kent iot = sc->sc_iot; 2479 1.87 kent ioh2 = sc->sc_ioh2; 2480 1.87 kent f = (u_long) freq; 2481 1.1 brezak /* 2482 1.1 brezak * calculate fc based on the number of active voices; 2483 1.1 brezak * we need to use longs to preserve enough bits 2484 1.1 brezak */ 2485 1.1 brezak 2486 1.14 christos temp = (u_long) gus_max_frequency[sc->sc_voices-GUS_MIN_VOICES]; 2487 1.1 brezak 2488 1.87 kent fc = (unsigned int)(((f << 9L) + (temp >> 1L)) / temp); 2489 1.87 kent fc <<= 1; 2490 1.1 brezak 2491 1.1 brezak /* 2492 1.1 brezak * Program the voice frequency, and set it in the voice data record 2493 1.1 brezak */ 2494 1.1 brezak 2495 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, (unsigned char) voice); 2496 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_FREQ_CONTROL); 2497 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, fc); 2498 1.1 brezak 2499 1.1 brezak sc->sc_voc[voice].rate = freq; 2500 1.1 brezak 2501 1.1 brezak } 2502 1.1 brezak 2503 1.1 brezak /* 2504 1.1 brezak * Set the sample rate of the recording frequency. Formula is from the GUS 2505 1.107 jmcneill * SDK. 2506 1.1 brezak */ 2507 1.8 jtk STATIC void 2508 1.87 kent gus_set_recrate(struct gus_softc *sc, u_long rate) 2509 1.1 brezak { 2510 1.87 kent bus_space_tag_t iot; 2511 1.87 kent bus_space_handle_t ioh2; 2512 1.1 brezak u_char realrate; 2513 1.87 kent 2514 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2515 1.107 jmcneill 2516 1.1 brezak DPRINTF(("gus_set_recrate %lu\n", rate)); 2517 1.87 kent iot = sc->sc_iot; 2518 1.87 kent ioh2 = sc->sc_ioh2; 2519 1.1 brezak 2520 1.14 christos #if 0 2521 1.14 christos realrate = 9878400/(16*(rate+2)); /* formula from GUS docs */ 2522 1.14 christos #endif 2523 1.1 brezak realrate = (9878400 >> 4)/rate - 2; /* formula from code, sigh. */ 2524 1.1 brezak 2525 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_SAMPLE_FREQ); 2526 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, realrate); 2527 1.1 brezak } 2528 1.1 brezak 2529 1.1 brezak /* 2530 1.1 brezak * Interface to the audio layer - turn the output on or off. Note that some 2531 1.1 brezak * of these bits are flipped in the register 2532 1.1 brezak */ 2533 1.1 brezak 2534 1.1 brezak int 2535 1.87 kent gusmax_speaker_ctl(void *addr, int newstate) 2536 1.1 brezak { 2537 1.87 kent struct ad1848_isa_softc *sc; 2538 1.87 kent 2539 1.87 kent sc = addr; 2540 1.62 jtk return gus_speaker_ctl(sc->sc_ad1848.parent, newstate); 2541 1.1 brezak } 2542 1.1 brezak 2543 1.1 brezak int 2544 1.87 kent gus_speaker_ctl(void *addr, int newstate) 2545 1.87 kent { 2546 1.87 kent struct gus_softc *sc; 2547 1.87 kent bus_space_tag_t iot; 2548 1.87 kent bus_space_handle_t ioh1; 2549 1.1 brezak 2550 1.87 kent sc = (struct gus_softc *) addr; 2551 1.87 kent iot = sc->sc_iot; 2552 1.87 kent ioh1 = sc->sc_ioh1; 2553 1.1 brezak /* Line out bit is flipped: 0 enables, 1 disables */ 2554 1.1 brezak if ((newstate == SPKR_ON) && 2555 1.1 brezak (sc->sc_mixcontrol & GUSMASK_LINE_OUT)) { 2556 1.1 brezak sc->sc_mixcontrol &= ~GUSMASK_LINE_OUT; 2557 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, sc->sc_mixcontrol); 2558 1.1 brezak } 2559 1.1 brezak if ((newstate == SPKR_OFF) && 2560 1.1 brezak (sc->sc_mixcontrol & GUSMASK_LINE_OUT) == 0) { 2561 1.1 brezak sc->sc_mixcontrol |= GUSMASK_LINE_OUT; 2562 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, sc->sc_mixcontrol); 2563 1.1 brezak } 2564 1.1 brezak 2565 1.1 brezak return 0; 2566 1.1 brezak } 2567 1.1 brezak 2568 1.8 jtk STATIC int 2569 1.87 kent gus_linein_ctl(void *addr, int newstate) 2570 1.87 kent { 2571 1.87 kent struct gus_softc *sc; 2572 1.87 kent bus_space_tag_t iot; 2573 1.87 kent bus_space_handle_t ioh1; 2574 1.1 brezak 2575 1.87 kent sc = (struct gus_softc *) addr; 2576 1.87 kent iot = sc->sc_iot; 2577 1.87 kent ioh1 = sc->sc_ioh1; 2578 1.1 brezak /* Line in bit is flipped: 0 enables, 1 disables */ 2579 1.1 brezak if ((newstate == SPKR_ON) && 2580 1.1 brezak (sc->sc_mixcontrol & GUSMASK_LINE_IN)) { 2581 1.1 brezak sc->sc_mixcontrol &= ~GUSMASK_LINE_IN; 2582 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, sc->sc_mixcontrol); 2583 1.1 brezak } 2584 1.1 brezak if ((newstate == SPKR_OFF) && 2585 1.1 brezak (sc->sc_mixcontrol & GUSMASK_LINE_IN) == 0) { 2586 1.1 brezak sc->sc_mixcontrol |= GUSMASK_LINE_IN; 2587 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, sc->sc_mixcontrol); 2588 1.1 brezak } 2589 1.1 brezak 2590 1.1 brezak return 0; 2591 1.1 brezak } 2592 1.1 brezak 2593 1.8 jtk STATIC int 2594 1.87 kent gus_mic_ctl(void *addr, int newstate) 2595 1.87 kent { 2596 1.87 kent struct gus_softc *sc; 2597 1.87 kent bus_space_tag_t iot; 2598 1.87 kent bus_space_handle_t ioh1; 2599 1.1 brezak 2600 1.87 kent sc = (struct gus_softc *) addr; 2601 1.87 kent iot = sc->sc_iot; 2602 1.87 kent ioh1 = sc->sc_ioh1; 2603 1.1 brezak /* Mic bit is normal: 1 enables, 0 disables */ 2604 1.1 brezak if ((newstate == SPKR_ON) && 2605 1.1 brezak (sc->sc_mixcontrol & GUSMASK_MIC_IN) == 0) { 2606 1.1 brezak sc->sc_mixcontrol |= GUSMASK_MIC_IN; 2607 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, sc->sc_mixcontrol); 2608 1.1 brezak } 2609 1.1 brezak if ((newstate == SPKR_OFF) && 2610 1.1 brezak (sc->sc_mixcontrol & GUSMASK_MIC_IN)) { 2611 1.1 brezak sc->sc_mixcontrol &= ~GUSMASK_MIC_IN; 2612 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, sc->sc_mixcontrol); 2613 1.1 brezak } 2614 1.1 brezak 2615 1.1 brezak return 0; 2616 1.1 brezak } 2617 1.1 brezak 2618 1.1 brezak /* 2619 1.107 jmcneill * Set the end address of a give voice. 2620 1.1 brezak */ 2621 1.8 jtk STATIC void 2622 1.87 kent gus_set_endaddr(struct gus_softc *sc, int voice, u_long addr) 2623 1.1 brezak { 2624 1.87 kent bus_space_tag_t iot; 2625 1.87 kent bus_space_handle_t ioh2; 2626 1.1 brezak 2627 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2628 1.107 jmcneill 2629 1.87 kent iot = sc->sc_iot; 2630 1.87 kent ioh2 = sc->sc_ioh2; 2631 1.1 brezak sc->sc_voc[voice].end_addr = addr; 2632 1.1 brezak 2633 1.1 brezak if (sc->sc_voc[voice].voccntl & GUSMASK_DATA_SIZE16) 2634 1.1 brezak addr = convert_to_16bit(addr); 2635 1.1 brezak 2636 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_ADDR_HIGH); 2637 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_HIGH(addr)); 2638 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_ADDR_LOW); 2639 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_LOW(addr)); 2640 1.1 brezak 2641 1.1 brezak } 2642 1.1 brezak 2643 1.15 jtk #ifdef GUSPLAYDEBUG 2644 1.1 brezak /* 2645 1.107 jmcneill * Set current address. 2646 1.1 brezak */ 2647 1.8 jtk STATIC void 2648 1.87 kent gus_set_curaddr(struct gus_softc *sc, int voice, u_long addr) 2649 1.1 brezak { 2650 1.87 kent bus_space_tag_t iot; 2651 1.87 kent bus_space_handle_t ioh2; 2652 1.1 brezak 2653 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2654 1.107 jmcneill 2655 1.87 kent iot = sc->sc_iot; 2656 1.87 kent ioh2 = sc->sc_ioh2; 2657 1.1 brezak sc->sc_voc[voice].current_addr = addr; 2658 1.1 brezak 2659 1.1 brezak if (sc->sc_voc[voice].voccntl & GUSMASK_DATA_SIZE16) 2660 1.1 brezak addr = convert_to_16bit(addr); 2661 1.1 brezak 2662 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, (unsigned char) voice); 2663 1.1 brezak 2664 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_HIGH); 2665 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_HIGH(addr)); 2666 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_LOW); 2667 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, ADDR_LOW(addr)); 2668 1.1 brezak 2669 1.1 brezak } 2670 1.1 brezak 2671 1.1 brezak /* 2672 1.107 jmcneill * Get current GUS playback address. 2673 1.1 brezak */ 2674 1.14 christos STATIC u_long 2675 1.87 kent gus_get_curaddr(struct gus_softc *sc, int voice) 2676 1.1 brezak { 2677 1.87 kent bus_space_tag_t iot; 2678 1.87 kent bus_space_handle_t ioh2; 2679 1.14 christos u_long addr; 2680 1.1 brezak 2681 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2682 1.107 jmcneill 2683 1.87 kent iot = sc->sc_iot; 2684 1.87 kent ioh2 = sc->sc_ioh2; 2685 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, (unsigned char) voice); 2686 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_HIGH|GUSREG_READ); 2687 1.43 augustss addr = (bus_space_read_2(iot, ioh2, GUS_DATA_LOW) & 0x1fff) << 7; 2688 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_LOW|GUSREG_READ); 2689 1.43 augustss addr |= (bus_space_read_2(iot, ioh2, GUS_DATA_LOW) >> 9L) & 0x7f; 2690 1.1 brezak 2691 1.1 brezak if (sc->sc_voc[voice].voccntl & GUSMASK_DATA_SIZE16) 2692 1.1 brezak addr = (addr & 0xc0000) | ((addr & 0x1ffff) << 1); /* undo 16-bit change */ 2693 1.33 augustss DPRINTF(("gus voice %d curaddr %ld end_addr %ld\n", 2694 1.1 brezak voice, addr, sc->sc_voc[voice].end_addr)); 2695 1.1 brezak /* XXX sanity check the address? */ 2696 1.1 brezak 2697 1.87 kent return addr; 2698 1.1 brezak } 2699 1.14 christos #endif 2700 1.1 brezak 2701 1.1 brezak /* 2702 1.1 brezak * Convert an address value to a "16 bit" value - why this is necessary I 2703 1.1 brezak * have NO idea 2704 1.1 brezak */ 2705 1.1 brezak 2706 1.14 christos STATIC u_long 2707 1.87 kent convert_to_16bit(u_long address) 2708 1.1 brezak { 2709 1.14 christos u_long old_address; 2710 1.1 brezak 2711 1.1 brezak old_address = address; 2712 1.1 brezak address >>= 1; 2713 1.1 brezak address &= 0x0001ffffL; 2714 1.1 brezak address |= (old_address & 0x000c0000L); 2715 1.1 brezak 2716 1.87 kent return address; 2717 1.1 brezak } 2718 1.1 brezak 2719 1.1 brezak /* 2720 1.1 brezak * Write a value into the GUS's DRAM 2721 1.1 brezak */ 2722 1.8 jtk STATIC void 2723 1.87 kent guspoke(bus_space_tag_t iot, bus_space_handle_t ioh2, 2724 1.87 kent long address, unsigned char value) 2725 1.1 brezak { 2726 1.1 brezak 2727 1.1 brezak /* 2728 1.1 brezak * Select the DRAM address 2729 1.1 brezak */ 2730 1.1 brezak 2731 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DRAM_ADDR_LOW); 2732 1.110 msaitoh bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 2733 1.110 msaitoh (unsigned int)(address & 0xffff)); 2734 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DRAM_ADDR_HIGH); 2735 1.110 msaitoh bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 2736 1.110 msaitoh (unsigned char)((address >> 16) & 0xff)); 2737 1.1 brezak 2738 1.1 brezak /* 2739 1.1 brezak * Actually write the data 2740 1.1 brezak */ 2741 1.1 brezak 2742 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DRAM_DATA, value); 2743 1.1 brezak } 2744 1.1 brezak 2745 1.1 brezak /* 2746 1.1 brezak * Read a value from the GUS's DRAM 2747 1.1 brezak */ 2748 1.8 jtk STATIC unsigned char 2749 1.87 kent guspeek(bus_space_tag_t iot, bus_space_handle_t ioh2, u_long address) 2750 1.1 brezak { 2751 1.1 brezak 2752 1.1 brezak /* 2753 1.1 brezak * Select the DRAM address 2754 1.1 brezak */ 2755 1.1 brezak 2756 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DRAM_ADDR_LOW); 2757 1.110 msaitoh bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 2758 1.110 msaitoh (unsigned int)(address & 0xffff)); 2759 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DRAM_ADDR_HIGH); 2760 1.110 msaitoh bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 2761 1.110 msaitoh (unsigned char)((address >> 16) & 0xff)); 2762 1.1 brezak 2763 1.1 brezak /* 2764 1.1 brezak * Read in the data from the board 2765 1.1 brezak */ 2766 1.1 brezak 2767 1.43 augustss return (unsigned char) bus_space_read_1(iot, ioh2, GUS_DRAM_DATA); 2768 1.1 brezak } 2769 1.1 brezak 2770 1.1 brezak /* 2771 1.1 brezak * Reset the Gravis UltraSound card, completely 2772 1.1 brezak */ 2773 1.8 jtk STATIC void 2774 1.87 kent gusreset(struct gus_softc *sc, int voices) 2775 1.1 brezak { 2776 1.87 kent bus_space_tag_t iot; 2777 1.87 kent bus_space_handle_t ioh1; 2778 1.87 kent bus_space_handle_t ioh2; 2779 1.87 kent bus_space_handle_t ioh4; 2780 1.107 jmcneill int i; 2781 1.107 jmcneill 2782 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 2783 1.1 brezak 2784 1.87 kent iot = sc->sc_iot; 2785 1.87 kent ioh1 = sc->sc_ioh1; 2786 1.87 kent ioh2 = sc->sc_ioh2; 2787 1.87 kent ioh4 = sc->sc_ioh4; 2788 1.1 brezak 2789 1.1 brezak /* 2790 1.1 brezak * Reset the GF1 chip 2791 1.1 brezak */ 2792 1.1 brezak 2793 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_RESET); 2794 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 2795 1.1 brezak 2796 1.1 brezak delay(500); 2797 1.1 brezak 2798 1.1 brezak /* 2799 1.1 brezak * Release reset 2800 1.1 brezak */ 2801 1.1 brezak 2802 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_RESET); 2803 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, GUSMASK_MASTER_RESET); 2804 1.1 brezak 2805 1.1 brezak delay(500); 2806 1.1 brezak 2807 1.1 brezak /* 2808 1.1 brezak * Reset MIDI port as well 2809 1.1 brezak */ 2810 1.1 brezak 2811 1.43 augustss bus_space_write_1(iot, ioh4, GUS_MIDI_CONTROL, MIDI_RESET); 2812 1.1 brezak 2813 1.1 brezak delay(500); 2814 1.1 brezak 2815 1.43 augustss bus_space_write_1(iot, ioh4, GUS_MIDI_CONTROL, 0x00); 2816 1.1 brezak 2817 1.1 brezak /* 2818 1.1 brezak * Clear interrupts 2819 1.1 brezak */ 2820 1.1 brezak 2821 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_CONTROL); 2822 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 2823 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_TIMER_CONTROL); 2824 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 2825 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_SAMPLE_CONTROL); 2826 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x00); 2827 1.1 brezak 2828 1.1 brezak gus_set_voices(sc, voices); 2829 1.1 brezak 2830 1.43 augustss bus_space_read_1(iot, ioh1, GUS_IRQ_STATUS); 2831 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_CONTROL); 2832 1.43 augustss bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 2833 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_SAMPLE_CONTROL); 2834 1.43 augustss bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 2835 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_IRQ_STATUS); 2836 1.43 augustss bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 2837 1.1 brezak 2838 1.1 brezak /* 2839 1.1 brezak * Reset voice specific information 2840 1.1 brezak */ 2841 1.1 brezak 2842 1.1 brezak for(i = 0; i < voices; i++) { 2843 1.43 augustss bus_space_write_1(iot, ioh2, GUS_VOICE_SELECT, (unsigned char) i); 2844 1.1 brezak 2845 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOICE_CNTL); 2846 1.1 brezak 2847 1.1 brezak sc->sc_voc[i].voccntl = GUSMASK_VOICE_STOPPED | 2848 1.1 brezak GUSMASK_STOP_VOICE; 2849 1.1 brezak 2850 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[i].voccntl); 2851 1.1 brezak 2852 1.1 brezak sc->sc_voc[i].volcntl = GUSMASK_VOLUME_STOPPED | 2853 1.1 brezak GUSMASK_STOP_VOLUME; 2854 1.1 brezak 2855 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_CONTROL); 2856 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, sc->sc_voc[i].volcntl); 2857 1.1 brezak 2858 1.1 brezak delay(100); 2859 1.1 brezak 2860 1.1 brezak gus_set_samprate(sc, i, 8000); 2861 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_START_ADDR_HIGH); 2862 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2863 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_START_ADDR_LOW); 2864 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2865 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_ADDR_HIGH); 2866 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2867 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_ADDR_LOW); 2868 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2869 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_VOLUME_RATE); 2870 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x01); 2871 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_START_VOLUME); 2872 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x10); 2873 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_END_VOLUME); 2874 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0xe0); 2875 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_VOLUME); 2876 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2877 1.43 augustss 2878 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_HIGH); 2879 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2880 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_CUR_ADDR_LOW); 2881 1.43 augustss bus_space_write_2(iot, ioh2, GUS_DATA_LOW, 0x0000); 2882 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_PAN_POS); 2883 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0x07); 2884 1.1 brezak } 2885 1.1 brezak 2886 1.1 brezak /* 2887 1.1 brezak * Clear out any pending IRQs 2888 1.1 brezak */ 2889 1.1 brezak 2890 1.43 augustss bus_space_read_1(iot, ioh1, GUS_IRQ_STATUS); 2891 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_CONTROL); 2892 1.43 augustss bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 2893 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_SAMPLE_CONTROL); 2894 1.43 augustss bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 2895 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_IRQ_STATUS); 2896 1.43 augustss bus_space_read_1(iot, ioh2, GUS_DATA_HIGH); 2897 1.1 brezak 2898 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_RESET); 2899 1.110 msaitoh bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 2900 1.110 msaitoh GUSMASK_MASTER_RESET | GUSMASK_DAC_ENABLE | GUSMASK_IRQ_ENABLE); 2901 1.1 brezak } 2902 1.1 brezak 2903 1.1 brezak 2904 1.51 mycroft STATIC int 2905 1.87 kent gus_init_cs4231(struct gus_softc *sc) 2906 1.1 brezak { 2907 1.87 kent bus_space_tag_t iot; 2908 1.87 kent bus_space_handle_t ioh1; 2909 1.87 kent int port; 2910 1.1 brezak u_char ctrl; 2911 1.1 brezak 2912 1.87 kent iot = sc->sc_iot; 2913 1.87 kent ioh1 = sc->sc_ioh1; 2914 1.87 kent port = sc->sc_iobase; 2915 1.1 brezak ctrl = (port & 0xf0) >> 4; /* set port address middle nibble */ 2916 1.1 brezak /* 2917 1.80 wiz * The codec is a bit weird--swapped DMA channels. 2918 1.1 brezak */ 2919 1.1 brezak ctrl |= GUS_MAX_CODEC_ENABLE; 2920 1.66 mycroft if (sc->sc_playdrq >= 4) 2921 1.1 brezak ctrl |= GUS_MAX_RECCHAN16; 2922 1.1 brezak if (sc->sc_recdrq >= 4) 2923 1.1 brezak ctrl |= GUS_MAX_PLAYCHAN16; 2924 1.1 brezak 2925 1.43 augustss bus_space_write_1(iot, ioh1, GUS_MAX_CTRL, ctrl); 2926 1.1 brezak 2927 1.60 pk sc->sc_codec.sc_ad1848.sc_iot = sc->sc_iot; 2928 1.1 brezak sc->sc_codec.sc_iobase = port+GUS_MAX_CODEC_BASE; 2929 1.1 brezak 2930 1.60 pk if (ad1848_isa_mapprobe(&sc->sc_codec, sc->sc_codec.sc_iobase) == 0) { 2931 1.1 brezak sc->sc_flags &= ~GUS_CODEC_INSTALLED; 2932 1.87 kent return 0; 2933 1.1 brezak } else { 2934 1.1 brezak struct ad1848_volume vol = {AUDIO_MAX_GAIN, AUDIO_MAX_GAIN}; 2935 1.1 brezak sc->sc_flags |= GUS_CODEC_INSTALLED; 2936 1.60 pk sc->sc_codec.sc_ad1848.parent = sc; 2937 1.66 mycroft sc->sc_codec.sc_playdrq = sc->sc_recdrq; 2938 1.68 thorpej sc->sc_codec.sc_play_maxsize = sc->sc_req_maxsize; 2939 1.66 mycroft sc->sc_codec.sc_recdrq = sc->sc_playdrq; 2940 1.68 thorpej sc->sc_codec.sc_rec_maxsize = sc->sc_play_maxsize; 2941 1.1 brezak /* enable line in and mic in the GUS mixer; the codec chip 2942 1.1 brezak will do the real mixing for them. */ 2943 1.1 brezak sc->sc_mixcontrol &= ~GUSMASK_LINE_IN; /* 0 enables. */ 2944 1.1 brezak sc->sc_mixcontrol |= GUSMASK_MIC_IN; /* 1 enables. */ 2945 1.110 msaitoh bus_space_write_1(iot, ioh1, GUS_MIX_CONTROL, 2946 1.110 msaitoh sc->sc_mixcontrol); 2947 1.87 kent 2948 1.61 jtk ad1848_isa_attach(&sc->sc_codec); 2949 1.1 brezak /* turn on pre-MUX microphone gain. */ 2950 1.60 pk ad1848_set_mic_gain(&sc->sc_codec.sc_ad1848, &vol); 2951 1.51 mycroft 2952 1.87 kent return 1; 2953 1.1 brezak } 2954 1.1 brezak } 2955 1.1 brezak 2956 1.1 brezak 2957 1.1 brezak /* 2958 1.1 brezak * Return info about the audio device, for the AUDIO_GETINFO ioctl 2959 1.1 brezak */ 2960 1.1 brezak int 2961 1.96 christos gus_getdev(void *addr, struct audio_device *dev) 2962 1.1 brezak { 2963 1.87 kent 2964 1.1 brezak *dev = gus_device; 2965 1.1 brezak return 0; 2966 1.1 brezak } 2967 1.1 brezak 2968 1.1 brezak /* 2969 1.1 brezak * stubs (XXX) 2970 1.1 brezak */ 2971 1.1 brezak 2972 1.1 brezak int 2973 1.97 christos gus_set_in_gain(void *addr, u_int gain, 2974 1.96 christos u_char balance) 2975 1.1 brezak { 2976 1.87 kent 2977 1.1 brezak DPRINTF(("gus_set_in_gain called\n")); 2978 1.1 brezak return 0; 2979 1.1 brezak } 2980 1.1 brezak 2981 1.1 brezak int 2982 1.97 christos gus_get_in_gain(void *addr) 2983 1.1 brezak { 2984 1.87 kent 2985 1.1 brezak DPRINTF(("gus_get_in_gain called\n")); 2986 1.1 brezak return 0; 2987 1.1 brezak } 2988 1.1 brezak 2989 1.1 brezak int 2990 1.89 christos gusmax_dma_input(void *addr, void *tbuf, int size, 2991 1.87 kent void (*callback)(void *), void *arg) 2992 1.1 brezak { 2993 1.87 kent struct ad1848_isa_softc *sc; 2994 1.87 kent 2995 1.87 kent sc = addr; 2996 1.89 christos return gus_dma_input(sc->sc_ad1848.parent, tbuf, size, callback, arg); 2997 1.1 brezak } 2998 1.1 brezak 2999 1.1 brezak /* 3000 1.1 brezak * Start sampling the input source into the requested DMA buffer. 3001 1.107 jmcneill * Called from top-half or from interrupt handler. 3002 1.1 brezak */ 3003 1.1 brezak int 3004 1.89 christos gus_dma_input(void *addr, void *tbuf, int size, 3005 1.87 kent void (*callback)(void *), void *arg) 3006 1.1 brezak { 3007 1.87 kent struct gus_softc *sc; 3008 1.87 kent bus_space_tag_t iot; 3009 1.87 kent bus_space_handle_t ioh2; 3010 1.38 augustss u_char dmac; 3011 1.87 kent 3012 1.1 brezak DMAPRINTF(("gus_dma_input called\n")); 3013 1.87 kent sc = addr; 3014 1.87 kent iot = sc->sc_iot; 3015 1.87 kent ioh2 = sc->sc_ioh2; 3016 1.87 kent 3017 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 3018 1.107 jmcneill 3019 1.1 brezak /* 3020 1.1 brezak * Sample SIZE bytes of data from the card, into buffer at BUF. 3021 1.1 brezak */ 3022 1.1 brezak 3023 1.1 brezak if (sc->sc_precision == 16) 3024 1.87 kent return EINVAL; /* XXX */ 3025 1.1 brezak 3026 1.1 brezak /* set DMA modes */ 3027 1.1 brezak dmac = GUSMASK_SAMPLE_IRQ|GUSMASK_SAMPLE_START; 3028 1.1 brezak if (sc->sc_recdrq >= 4) 3029 1.1 brezak dmac |= GUSMASK_SAMPLE_DATA16; 3030 1.1 brezak if (sc->sc_encoding == AUDIO_ENCODING_ULAW || 3031 1.87 kent sc->sc_encoding == AUDIO_ENCODING_ALAW || 3032 1.87 kent sc->sc_encoding == AUDIO_ENCODING_ULINEAR_LE || 3033 1.87 kent sc->sc_encoding == AUDIO_ENCODING_ULINEAR_BE) 3034 1.87 kent dmac |= GUSMASK_SAMPLE_INVBIT; 3035 1.1 brezak if (sc->sc_channels == 2) 3036 1.87 kent dmac |= GUSMASK_SAMPLE_STEREO; 3037 1.89 christos isa_dmastart(sc->sc_ic, sc->sc_recdrq, tbuf, size, 3038 1.87 kent NULL, DMAMODE_READ, BUS_DMA_NOWAIT); 3039 1.1 brezak 3040 1.1 brezak DMAPRINTF(("gus_dma_input isa_dmastarted\n")); 3041 1.1 brezak sc->sc_flags |= GUS_DMAIN_ACTIVE; 3042 1.1 brezak sc->sc_dmainintr = callback; 3043 1.1 brezak sc->sc_inarg = arg; 3044 1.1 brezak sc->sc_dmaincnt = size; 3045 1.89 christos sc->sc_dmainaddr = tbuf; 3046 1.1 brezak 3047 1.43 augustss SELECT_GUS_REG(iot, ioh2, GUSREG_SAMPLE_CONTROL); 3048 1.43 augustss bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, dmac); /* Go! */ 3049 1.1 brezak 3050 1.1 brezak 3051 1.1 brezak DMAPRINTF(("gus_dma_input returning\n")); 3052 1.1 brezak 3053 1.1 brezak return 0; 3054 1.1 brezak } 3055 1.1 brezak 3056 1.8 jtk STATIC int 3057 1.87 kent gus_dmain_intr(struct gus_softc *sc) 3058 1.1 brezak { 3059 1.87 kent void (*callback)(void *); 3060 1.1 brezak void *arg; 3061 1.1 brezak 3062 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 3063 1.107 jmcneill 3064 1.1 brezak DMAPRINTF(("gus_dmain_intr called\n")); 3065 1.1 brezak if (sc->sc_dmainintr) { 3066 1.87 kent isa_dmadone(sc->sc_ic, sc->sc_recdrq); 3067 1.87 kent callback = sc->sc_dmainintr; 3068 1.87 kent arg = sc->sc_inarg; 3069 1.87 kent 3070 1.87 kent sc->sc_dmainaddr = 0; 3071 1.87 kent sc->sc_dmaincnt = 0; 3072 1.87 kent sc->sc_dmainintr = 0; 3073 1.87 kent sc->sc_inarg = 0; 3074 1.87 kent 3075 1.87 kent sc->sc_flags &= ~GUS_DMAIN_ACTIVE; 3076 1.110 msaitoh DMAPRINTF(("calling dmain_intr callback %p(%p)\n", callback, 3077 1.110 msaitoh arg)); 3078 1.87 kent (*callback)(arg); 3079 1.87 kent return 1; 3080 1.1 brezak } else { 3081 1.87 kent DMAPRINTF(("gus_dmain_intr false?\n")); 3082 1.87 kent return 0; /* XXX ??? */ 3083 1.1 brezak } 3084 1.1 brezak } 3085 1.1 brezak 3086 1.1 brezak int 3087 1.87 kent gusmax_halt_out_dma(void *addr) 3088 1.1 brezak { 3089 1.87 kent struct ad1848_isa_softc *sc; 3090 1.87 kent 3091 1.87 kent sc = addr; 3092 1.62 jtk return gus_halt_out_dma(sc->sc_ad1848.parent); 3093 1.1 brezak } 3094 1.1 brezak 3095 1.1 brezak 3096 1.1 brezak int 3097 1.87 kent gusmax_halt_in_dma(void *addr) 3098 1.1 brezak { 3099 1.87 kent struct ad1848_isa_softc *sc; 3100 1.87 kent 3101 1.87 kent sc = addr; 3102 1.62 jtk return gus_halt_in_dma(sc->sc_ad1848.parent); 3103 1.1 brezak } 3104 1.1 brezak 3105 1.1 brezak /* 3106 1.107 jmcneill * Stop any DMA output. 3107 1.1 brezak */ 3108 1.1 brezak int 3109 1.87 kent gus_halt_out_dma(void *addr) 3110 1.1 brezak { 3111 1.87 kent struct gus_softc *sc; 3112 1.87 kent bus_space_tag_t iot; 3113 1.87 kent bus_space_handle_t ioh2; 3114 1.1 brezak 3115 1.1 brezak DMAPRINTF(("gus_halt_out_dma called\n")); 3116 1.87 kent sc = addr; 3117 1.87 kent iot = sc->sc_iot; 3118 1.87 kent ioh2 = sc->sc_ioh2; 3119 1.107 jmcneill 3120 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 3121 1.107 jmcneill 3122 1.1 brezak /* 3123 1.1 brezak * Make sure the GUS _isn't_ setup for DMA 3124 1.1 brezak */ 3125 1.1 brezak 3126 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_DMA_CONTROL); 3127 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 0); 3128 1.1 brezak 3129 1.69 thorpej callout_stop(&sc->sc_dmaout_ch); 3130 1.87 kent isa_dmaabort(sc->sc_ic, sc->sc_playdrq); 3131 1.1 brezak sc->sc_flags &= ~(GUS_DMAOUT_ACTIVE|GUS_LOCKED); 3132 1.1 brezak sc->sc_dmaoutintr = 0; 3133 1.1 brezak sc->sc_outarg = 0; 3134 1.1 brezak sc->sc_dmaoutaddr = 0; 3135 1.1 brezak sc->sc_dmaoutcnt = 0; 3136 1.1 brezak sc->sc_dmabuf = 0; 3137 1.1 brezak sc->sc_bufcnt = 0; 3138 1.1 brezak sc->sc_playbuf = -1; 3139 1.1 brezak /* also stop playing */ 3140 1.1 brezak gus_stop_voice(sc, GUS_VOICE_LEFT, 1); 3141 1.1 brezak gus_stop_voice(sc, GUS_VOICE_RIGHT, 0); 3142 1.1 brezak 3143 1.1 brezak return 0; 3144 1.1 brezak } 3145 1.1 brezak 3146 1.1 brezak /* 3147 1.107 jmcneill * Stop any DMA output. 3148 1.1 brezak */ 3149 1.1 brezak int 3150 1.87 kent gus_halt_in_dma(void *addr) 3151 1.1 brezak { 3152 1.87 kent struct gus_softc *sc; 3153 1.87 kent bus_space_tag_t iot; 3154 1.87 kent bus_space_handle_t ioh2; 3155 1.87 kent 3156 1.1 brezak DMAPRINTF(("gus_halt_in_dma called\n")); 3157 1.87 kent sc = addr; 3158 1.87 kent iot = sc->sc_iot; 3159 1.87 kent ioh2 = sc->sc_ioh2; 3160 1.1 brezak 3161 1.107 jmcneill KASSERT(mutex_owned(&sc->sc_codec.sc_ad1848.sc_intr_lock)); 3162 1.107 jmcneill 3163 1.1 brezak /* 3164 1.1 brezak * Make sure the GUS _isn't_ setup for DMA 3165 1.1 brezak */ 3166 1.1 brezak 3167 1.87 kent SELECT_GUS_REG(iot, ioh2, GUSREG_SAMPLE_CONTROL); 3168 1.87 kent bus_space_write_1(iot, ioh2, GUS_DATA_HIGH, 3169 1.87 kent bus_space_read_1(iot, ioh2, GUS_DATA_HIGH) 3170 1.87 kent & ~(GUSMASK_SAMPLE_START|GUSMASK_SAMPLE_IRQ)); 3171 1.87 kent 3172 1.87 kent isa_dmaabort(sc->sc_ic, sc->sc_recdrq); 3173 1.1 brezak sc->sc_flags &= ~GUS_DMAIN_ACTIVE; 3174 1.1 brezak sc->sc_dmainintr = 0; 3175 1.1 brezak sc->sc_inarg = 0; 3176 1.1 brezak sc->sc_dmainaddr = 0; 3177 1.1 brezak sc->sc_dmaincnt = 0; 3178 1.1 brezak 3179 1.1 brezak return 0; 3180 1.1 brezak } 3181 1.1 brezak 3182 1.1 brezak 3183 1.113 maxv static const ad1848_devmap_t gusmapping[] = { 3184 1.58 mycroft { GUSMAX_DAC_LVL, AD1848_KIND_LVL, AD1848_AUX1_CHANNEL }, 3185 1.58 mycroft { GUSMAX_LINE_IN_LVL, AD1848_KIND_LVL, AD1848_LINE_CHANNEL }, 3186 1.58 mycroft { GUSMAX_MONO_LVL, AD1848_KIND_LVL, AD1848_MONO_CHANNEL }, 3187 1.58 mycroft { GUSMAX_CD_LVL, AD1848_KIND_LVL, AD1848_AUX2_CHANNEL }, 3188 1.58 mycroft { GUSMAX_MONITOR_LVL, AD1848_KIND_LVL, AD1848_MONITOR_CHANNEL }, 3189 1.58 mycroft { GUSMAX_OUT_LVL, AD1848_KIND_LVL, AD1848_DAC_CHANNEL }, 3190 1.58 mycroft { GUSMAX_DAC_MUTE, AD1848_KIND_MUTE, AD1848_AUX1_CHANNEL }, 3191 1.58 mycroft { GUSMAX_LINE_IN_MUTE, AD1848_KIND_MUTE, AD1848_LINE_CHANNEL }, 3192 1.58 mycroft { GUSMAX_MONO_MUTE, AD1848_KIND_MUTE, AD1848_MONO_CHANNEL }, 3193 1.58 mycroft { GUSMAX_CD_MUTE, AD1848_KIND_MUTE, AD1848_AUX2_CHANNEL }, 3194 1.58 mycroft { GUSMAX_MONITOR_MUTE, AD1848_KIND_MUTE, AD1848_MONITOR_CHANNEL }, 3195 1.58 mycroft { GUSMAX_REC_LVL, AD1848_KIND_RECORDGAIN, -1 }, 3196 1.58 mycroft { GUSMAX_RECORD_SOURCE, AD1848_KIND_RECORDSOURCE, -1 } 3197 1.54 augustss }; 3198 1.54 augustss 3199 1.113 maxv static const int nummap = sizeof(gusmapping) / sizeof(gusmapping[0]); 3200 1.1 brezak 3201 1.8 jtk STATIC int 3202 1.87 kent gusmax_mixer_get_port(void *addr, mixer_ctrl_t *cp) 3203 1.1 brezak { 3204 1.87 kent struct ad1848_isa_softc *ac; 3205 1.87 kent struct gus_softc *sc; 3206 1.1 brezak struct ad1848_volume vol; 3207 1.87 kent int error; 3208 1.87 kent 3209 1.87 kent ac = addr; 3210 1.87 kent sc = ac->sc_ad1848.parent; 3211 1.87 kent error = ad1848_mixer_get_port(&ac->sc_ad1848, gusmapping, nummap, cp); 3212 1.54 augustss if (error != ENXIO) 3213 1.87 kent return error; 3214 1.54 augustss 3215 1.54 augustss error = EINVAL; 3216 1.1 brezak 3217 1.1 brezak switch (cp->dev) { 3218 1.1 brezak case GUSMAX_SPEAKER_LVL: /* fake speaker for mute naming */ 3219 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3220 1.1 brezak if (sc->sc_mixcontrol & GUSMASK_LINE_OUT) 3221 1.1 brezak vol.left = vol.right = AUDIO_MAX_GAIN; 3222 1.1 brezak else 3223 1.1 brezak vol.left = vol.right = AUDIO_MIN_GAIN; 3224 1.1 brezak error = 0; 3225 1.54 augustss ad1848_from_vol(cp, &vol); 3226 1.1 brezak } 3227 1.1 brezak break; 3228 1.1 brezak 3229 1.1 brezak case GUSMAX_SPEAKER_MUTE: 3230 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3231 1.1 brezak cp->un.ord = sc->sc_mixcontrol & GUSMASK_LINE_OUT ? 1 : 0; 3232 1.1 brezak error = 0; 3233 1.1 brezak } 3234 1.1 brezak break; 3235 1.1 brezak default: 3236 1.1 brezak error = ENXIO; 3237 1.1 brezak break; 3238 1.1 brezak } 3239 1.1 brezak 3240 1.87 kent return error; 3241 1.1 brezak } 3242 1.1 brezak 3243 1.8 jtk STATIC int 3244 1.87 kent gus_mixer_get_port(void *addr, mixer_ctrl_t *cp) 3245 1.1 brezak { 3246 1.87 kent struct gus_softc *sc; 3247 1.87 kent struct ics2101_softc *ic; 3248 1.1 brezak struct ad1848_volume vol; 3249 1.87 kent int error; 3250 1.1 brezak 3251 1.1 brezak DPRINTF(("gus_mixer_get_port: dev=%d type=%d\n", cp->dev, cp->type)); 3252 1.87 kent sc = addr; 3253 1.87 kent ic = &sc->sc_mixer; 3254 1.87 kent error = EINVAL; 3255 1.1 brezak 3256 1.1 brezak if (!HAS_MIXER(sc) && cp->dev > GUSICS_MASTER_MUTE) 3257 1.1 brezak return ENXIO; 3258 1.87 kent 3259 1.1 brezak switch (cp->dev) { 3260 1.1 brezak 3261 1.1 brezak case GUSICS_MIC_IN_MUTE: /* Microphone */ 3262 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3263 1.1 brezak if (HAS_MIXER(sc)) 3264 1.1 brezak cp->un.ord = ic->sc_mute[GUSMIX_CHAN_MIC][ICSMIX_LEFT]; 3265 1.1 brezak else 3266 1.1 brezak cp->un.ord = 3267 1.1 brezak sc->sc_mixcontrol & GUSMASK_MIC_IN ? 0 : 1; 3268 1.1 brezak error = 0; 3269 1.1 brezak } 3270 1.1 brezak break; 3271 1.1 brezak 3272 1.1 brezak case GUSICS_LINE_IN_MUTE: 3273 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3274 1.1 brezak if (HAS_MIXER(sc)) 3275 1.1 brezak cp->un.ord = ic->sc_mute[GUSMIX_CHAN_LINE][ICSMIX_LEFT]; 3276 1.1 brezak else 3277 1.1 brezak cp->un.ord = 3278 1.1 brezak sc->sc_mixcontrol & GUSMASK_LINE_IN ? 1 : 0; 3279 1.1 brezak error = 0; 3280 1.1 brezak } 3281 1.1 brezak break; 3282 1.1 brezak 3283 1.1 brezak case GUSICS_MASTER_MUTE: 3284 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3285 1.1 brezak if (HAS_MIXER(sc)) 3286 1.1 brezak cp->un.ord = ic->sc_mute[GUSMIX_CHAN_MASTER][ICSMIX_LEFT]; 3287 1.1 brezak else 3288 1.1 brezak cp->un.ord = 3289 1.1 brezak sc->sc_mixcontrol & GUSMASK_LINE_OUT ? 1 : 0; 3290 1.1 brezak error = 0; 3291 1.1 brezak } 3292 1.1 brezak break; 3293 1.1 brezak 3294 1.1 brezak case GUSICS_DAC_MUTE: 3295 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3296 1.1 brezak cp->un.ord = ic->sc_mute[GUSMIX_CHAN_DAC][ICSMIX_LEFT]; 3297 1.1 brezak error = 0; 3298 1.1 brezak } 3299 1.1 brezak break; 3300 1.1 brezak 3301 1.1 brezak case GUSICS_CD_MUTE: 3302 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3303 1.1 brezak cp->un.ord = ic->sc_mute[GUSMIX_CHAN_CD][ICSMIX_LEFT]; 3304 1.1 brezak error = 0; 3305 1.1 brezak } 3306 1.1 brezak break; 3307 1.1 brezak 3308 1.1 brezak case GUSICS_MASTER_LVL: 3309 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3310 1.1 brezak vol.left = ic->sc_setting[GUSMIX_CHAN_MASTER][ICSMIX_LEFT]; 3311 1.1 brezak vol.right = ic->sc_setting[GUSMIX_CHAN_MASTER][ICSMIX_RIGHT]; 3312 1.54 augustss if (ad1848_from_vol(cp, &vol)) 3313 1.1 brezak error = 0; 3314 1.1 brezak } 3315 1.1 brezak break; 3316 1.1 brezak 3317 1.1 brezak case GUSICS_MIC_IN_LVL: /* Microphone */ 3318 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3319 1.1 brezak vol.left = ic->sc_setting[GUSMIX_CHAN_MIC][ICSMIX_LEFT]; 3320 1.1 brezak vol.right = ic->sc_setting[GUSMIX_CHAN_MIC][ICSMIX_RIGHT]; 3321 1.54 augustss if (ad1848_from_vol(cp, &vol)) 3322 1.1 brezak error = 0; 3323 1.1 brezak } 3324 1.1 brezak break; 3325 1.87 kent 3326 1.1 brezak case GUSICS_LINE_IN_LVL: /* line in */ 3327 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3328 1.1 brezak vol.left = ic->sc_setting[GUSMIX_CHAN_LINE][ICSMIX_LEFT]; 3329 1.1 brezak vol.right = ic->sc_setting[GUSMIX_CHAN_LINE][ICSMIX_RIGHT]; 3330 1.54 augustss if (ad1848_from_vol(cp, &vol)) 3331 1.1 brezak error = 0; 3332 1.1 brezak } 3333 1.1 brezak break; 3334 1.1 brezak 3335 1.1 brezak 3336 1.1 brezak case GUSICS_CD_LVL: 3337 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3338 1.1 brezak vol.left = ic->sc_setting[GUSMIX_CHAN_CD][ICSMIX_LEFT]; 3339 1.1 brezak vol.right = ic->sc_setting[GUSMIX_CHAN_CD][ICSMIX_RIGHT]; 3340 1.54 augustss if (ad1848_from_vol(cp, &vol)) 3341 1.1 brezak error = 0; 3342 1.1 brezak } 3343 1.1 brezak break; 3344 1.1 brezak 3345 1.1 brezak case GUSICS_DAC_LVL: /* dac out */ 3346 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3347 1.1 brezak vol.left = ic->sc_setting[GUSMIX_CHAN_DAC][ICSMIX_LEFT]; 3348 1.1 brezak vol.right = ic->sc_setting[GUSMIX_CHAN_DAC][ICSMIX_RIGHT]; 3349 1.54 augustss if (ad1848_from_vol(cp, &vol)) 3350 1.1 brezak error = 0; 3351 1.1 brezak } 3352 1.1 brezak break; 3353 1.1 brezak 3354 1.1 brezak 3355 1.1 brezak case GUSICS_RECORD_SOURCE: 3356 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3357 1.1 brezak /* Can't set anything else useful, sigh. */ 3358 1.1 brezak cp->un.ord = 0; 3359 1.1 brezak } 3360 1.1 brezak break; 3361 1.1 brezak 3362 1.1 brezak default: 3363 1.1 brezak return ENXIO; 3364 1.87 kent /*NOTREACHED*/ 3365 1.1 brezak } 3366 1.1 brezak return error; 3367 1.1 brezak } 3368 1.1 brezak 3369 1.8 jtk STATIC void 3370 1.87 kent gusics_master_mute(struct ics2101_softc *ic, int mute) 3371 1.1 brezak { 3372 1.87 kent 3373 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_MASTER, ICSMIX_LEFT, mute); 3374 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_MASTER, ICSMIX_RIGHT, mute); 3375 1.1 brezak } 3376 1.1 brezak 3377 1.8 jtk STATIC void 3378 1.87 kent gusics_mic_mute(struct ics2101_softc *ic, int mute) 3379 1.1 brezak { 3380 1.87 kent 3381 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_MIC, ICSMIX_LEFT, mute); 3382 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_MIC, ICSMIX_RIGHT, mute); 3383 1.1 brezak } 3384 1.1 brezak 3385 1.8 jtk STATIC void 3386 1.87 kent gusics_linein_mute(struct ics2101_softc *ic, int mute) 3387 1.1 brezak { 3388 1.87 kent 3389 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_LINE, ICSMIX_LEFT, mute); 3390 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_LINE, ICSMIX_RIGHT, mute); 3391 1.1 brezak } 3392 1.1 brezak 3393 1.8 jtk STATIC void 3394 1.87 kent gusics_cd_mute(struct ics2101_softc *ic, int mute) 3395 1.1 brezak { 3396 1.87 kent 3397 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_CD, ICSMIX_LEFT, mute); 3398 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_CD, ICSMIX_RIGHT, mute); 3399 1.1 brezak } 3400 1.1 brezak 3401 1.8 jtk STATIC void 3402 1.87 kent gusics_dac_mute(struct ics2101_softc *ic, int mute) 3403 1.1 brezak { 3404 1.87 kent 3405 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_DAC, ICSMIX_LEFT, mute); 3406 1.1 brezak ics2101_mix_mute(ic, GUSMIX_CHAN_DAC, ICSMIX_RIGHT, mute); 3407 1.1 brezak } 3408 1.1 brezak 3409 1.8 jtk STATIC int 3410 1.87 kent gusmax_mixer_set_port(void *addr, mixer_ctrl_t *cp) 3411 1.1 brezak { 3412 1.87 kent struct ad1848_isa_softc *ac; 3413 1.87 kent struct gus_softc *sc; 3414 1.1 brezak struct ad1848_volume vol; 3415 1.87 kent int error; 3416 1.87 kent 3417 1.87 kent ac = addr; 3418 1.87 kent sc = ac->sc_ad1848.parent; 3419 1.87 kent error = ad1848_mixer_set_port(&ac->sc_ad1848, gusmapping, nummap, cp); 3420 1.54 augustss if (error != ENXIO) 3421 1.87 kent return error; 3422 1.54 augustss 3423 1.1 brezak DPRINTF(("gusmax_mixer_set_port: dev=%d type=%d\n", cp->dev, cp->type)); 3424 1.1 brezak 3425 1.1 brezak switch (cp->dev) { 3426 1.1 brezak case GUSMAX_SPEAKER_LVL: 3427 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE && 3428 1.1 brezak cp->un.value.num_channels == 1) { 3429 1.54 augustss if (ad1848_to_vol(cp, &vol)) { 3430 1.1 brezak gus_speaker_ctl(sc, vol.left > AUDIO_MIN_GAIN ? 3431 1.1 brezak SPKR_ON : SPKR_OFF); 3432 1.1 brezak error = 0; 3433 1.1 brezak } 3434 1.1 brezak } 3435 1.1 brezak break; 3436 1.1 brezak 3437 1.1 brezak case GUSMAX_SPEAKER_MUTE: 3438 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3439 1.1 brezak gus_speaker_ctl(sc, cp->un.ord ? SPKR_OFF : SPKR_ON); 3440 1.1 brezak error = 0; 3441 1.1 brezak } 3442 1.1 brezak break; 3443 1.1 brezak 3444 1.1 brezak default: 3445 1.1 brezak return ENXIO; 3446 1.87 kent /*NOTREACHED*/ 3447 1.87 kent } 3448 1.87 kent return error; 3449 1.1 brezak } 3450 1.1 brezak 3451 1.8 jtk STATIC int 3452 1.87 kent gus_mixer_set_port(void *addr, mixer_ctrl_t *cp) 3453 1.1 brezak { 3454 1.87 kent struct gus_softc *sc; 3455 1.87 kent struct ics2101_softc *ic; 3456 1.1 brezak struct ad1848_volume vol; 3457 1.87 kent int error; 3458 1.1 brezak 3459 1.1 brezak DPRINTF(("gus_mixer_set_port: dev=%d type=%d\n", cp->dev, cp->type)); 3460 1.87 kent sc = addr; 3461 1.87 kent ic = &sc->sc_mixer; 3462 1.87 kent error = EINVAL; 3463 1.1 brezak 3464 1.1 brezak if (!HAS_MIXER(sc) && cp->dev > GUSICS_MASTER_MUTE) 3465 1.1 brezak return ENXIO; 3466 1.87 kent 3467 1.1 brezak switch (cp->dev) { 3468 1.1 brezak 3469 1.1 brezak case GUSICS_MIC_IN_MUTE: /* Microphone */ 3470 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3471 1.1 brezak DPRINTF(("mic mute %d\n", cp->un.ord)); 3472 1.1 brezak if (HAS_MIXER(sc)) { 3473 1.1 brezak gusics_mic_mute(ic, cp->un.ord); 3474 1.1 brezak } 3475 1.1 brezak gus_mic_ctl(sc, cp->un.ord ? SPKR_OFF : SPKR_ON); 3476 1.1 brezak error = 0; 3477 1.1 brezak } 3478 1.1 brezak break; 3479 1.1 brezak 3480 1.1 brezak case GUSICS_LINE_IN_MUTE: 3481 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3482 1.1 brezak DPRINTF(("linein mute %d\n", cp->un.ord)); 3483 1.1 brezak if (HAS_MIXER(sc)) { 3484 1.1 brezak gusics_linein_mute(ic, cp->un.ord); 3485 1.1 brezak } 3486 1.1 brezak gus_linein_ctl(sc, cp->un.ord ? SPKR_OFF : SPKR_ON); 3487 1.1 brezak error = 0; 3488 1.1 brezak } 3489 1.1 brezak break; 3490 1.1 brezak 3491 1.1 brezak case GUSICS_MASTER_MUTE: 3492 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3493 1.1 brezak DPRINTF(("master mute %d\n", cp->un.ord)); 3494 1.1 brezak if (HAS_MIXER(sc)) { 3495 1.1 brezak gusics_master_mute(ic, cp->un.ord); 3496 1.1 brezak } 3497 1.1 brezak gus_speaker_ctl(sc, cp->un.ord ? SPKR_OFF : SPKR_ON); 3498 1.1 brezak error = 0; 3499 1.1 brezak } 3500 1.1 brezak break; 3501 1.1 brezak 3502 1.1 brezak case GUSICS_DAC_MUTE: 3503 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3504 1.1 brezak gusics_dac_mute(ic, cp->un.ord); 3505 1.1 brezak error = 0; 3506 1.1 brezak } 3507 1.1 brezak break; 3508 1.1 brezak 3509 1.1 brezak case GUSICS_CD_MUTE: 3510 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM) { 3511 1.1 brezak gusics_cd_mute(ic, cp->un.ord); 3512 1.1 brezak error = 0; 3513 1.1 brezak } 3514 1.1 brezak break; 3515 1.1 brezak 3516 1.1 brezak case GUSICS_MASTER_LVL: 3517 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3518 1.54 augustss if (ad1848_to_vol(cp, &vol)) { 3519 1.1 brezak ics2101_mix_attenuate(ic, 3520 1.1 brezak GUSMIX_CHAN_MASTER, 3521 1.1 brezak ICSMIX_LEFT, 3522 1.1 brezak vol.left); 3523 1.1 brezak ics2101_mix_attenuate(ic, 3524 1.1 brezak GUSMIX_CHAN_MASTER, 3525 1.1 brezak ICSMIX_RIGHT, 3526 1.1 brezak vol.right); 3527 1.1 brezak error = 0; 3528 1.1 brezak } 3529 1.1 brezak } 3530 1.1 brezak break; 3531 1.1 brezak 3532 1.1 brezak case GUSICS_MIC_IN_LVL: /* Microphone */ 3533 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3534 1.54 augustss if (ad1848_to_vol(cp, &vol)) { 3535 1.1 brezak ics2101_mix_attenuate(ic, 3536 1.1 brezak GUSMIX_CHAN_MIC, 3537 1.1 brezak ICSMIX_LEFT, 3538 1.1 brezak vol.left); 3539 1.1 brezak ics2101_mix_attenuate(ic, 3540 1.1 brezak GUSMIX_CHAN_MIC, 3541 1.1 brezak ICSMIX_RIGHT, 3542 1.1 brezak vol.right); 3543 1.1 brezak error = 0; 3544 1.1 brezak } 3545 1.1 brezak } 3546 1.1 brezak break; 3547 1.87 kent 3548 1.1 brezak case GUSICS_LINE_IN_LVL: /* line in */ 3549 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3550 1.54 augustss if (ad1848_to_vol(cp, &vol)) { 3551 1.1 brezak ics2101_mix_attenuate(ic, 3552 1.1 brezak GUSMIX_CHAN_LINE, 3553 1.1 brezak ICSMIX_LEFT, 3554 1.1 brezak vol.left); 3555 1.1 brezak ics2101_mix_attenuate(ic, 3556 1.1 brezak GUSMIX_CHAN_LINE, 3557 1.1 brezak ICSMIX_RIGHT, 3558 1.1 brezak vol.right); 3559 1.1 brezak error = 0; 3560 1.1 brezak } 3561 1.1 brezak } 3562 1.1 brezak break; 3563 1.1 brezak 3564 1.1 brezak 3565 1.1 brezak case GUSICS_CD_LVL: 3566 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3567 1.54 augustss if (ad1848_to_vol(cp, &vol)) { 3568 1.1 brezak ics2101_mix_attenuate(ic, 3569 1.1 brezak GUSMIX_CHAN_CD, 3570 1.1 brezak ICSMIX_LEFT, 3571 1.1 brezak vol.left); 3572 1.1 brezak ics2101_mix_attenuate(ic, 3573 1.1 brezak GUSMIX_CHAN_CD, 3574 1.1 brezak ICSMIX_RIGHT, 3575 1.1 brezak vol.right); 3576 1.1 brezak error = 0; 3577 1.1 brezak } 3578 1.1 brezak } 3579 1.1 brezak break; 3580 1.1 brezak 3581 1.1 brezak case GUSICS_DAC_LVL: /* dac out */ 3582 1.1 brezak if (cp->type == AUDIO_MIXER_VALUE) { 3583 1.54 augustss if (ad1848_to_vol(cp, &vol)) { 3584 1.1 brezak ics2101_mix_attenuate(ic, 3585 1.1 brezak GUSMIX_CHAN_DAC, 3586 1.1 brezak ICSMIX_LEFT, 3587 1.1 brezak vol.left); 3588 1.1 brezak ics2101_mix_attenuate(ic, 3589 1.1 brezak GUSMIX_CHAN_DAC, 3590 1.1 brezak ICSMIX_RIGHT, 3591 1.1 brezak vol.right); 3592 1.1 brezak error = 0; 3593 1.1 brezak } 3594 1.1 brezak } 3595 1.1 brezak break; 3596 1.1 brezak 3597 1.1 brezak 3598 1.1 brezak case GUSICS_RECORD_SOURCE: 3599 1.1 brezak if (cp->type == AUDIO_MIXER_ENUM && cp->un.ord == 0) { 3600 1.1 brezak /* Can't set anything else useful, sigh. */ 3601 1.1 brezak error = 0; 3602 1.1 brezak } 3603 1.1 brezak break; 3604 1.1 brezak 3605 1.1 brezak default: 3606 1.1 brezak return ENXIO; 3607 1.87 kent /*NOTREACHED*/ 3608 1.1 brezak } 3609 1.1 brezak return error; 3610 1.36 augustss } 3611 1.36 augustss 3612 1.36 augustss STATIC int 3613 1.87 kent gus_get_props(void *addr) 3614 1.36 augustss { 3615 1.87 kent struct gus_softc *sc; 3616 1.87 kent 3617 1.87 kent sc = addr; 3618 1.117 isaki return AUDIO_PROP_PLAYBACK | AUDIO_PROP_CAPTURE | 3619 1.87 kent (sc->sc_recdrq == sc->sc_playdrq ? 0 : AUDIO_PROP_FULLDUPLEX); 3620 1.36 augustss } 3621 1.36 augustss 3622 1.36 augustss STATIC int 3623 1.87 kent gusmax_get_props(void *addr) 3624 1.36 augustss { 3625 1.87 kent struct ad1848_isa_softc *ac; 3626 1.87 kent 3627 1.87 kent ac = addr; 3628 1.62 jtk return gus_get_props(ac->sc_ad1848.parent); 3629 1.1 brezak } 3630 1.1 brezak 3631 1.8 jtk STATIC int 3632 1.96 christos gusmax_mixer_query_devinfo(void *addr, mixer_devinfo_t *dip) 3633 1.1 brezak { 3634 1.87 kent 3635 1.1 brezak DPRINTF(("gusmax_query_devinfo: index=%d\n", dip->index)); 3636 1.1 brezak 3637 1.1 brezak switch(dip->index) { 3638 1.1 brezak #if 0 3639 1.87 kent case GUSMAX_MIC_IN_LVL: /* Microphone */ 3640 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3641 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3642 1.87 kent dip->prev = AUDIO_MIXER_LAST; 3643 1.87 kent dip->next = GUSMAX_MIC_IN_MUTE; 3644 1.87 kent strcpy(dip->label.name, AudioNmicrophone); 3645 1.87 kent dip->un.v.num_channels = 2; 3646 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3647 1.87 kent break; 3648 1.1 brezak #endif 3649 1.1 brezak 3650 1.87 kent case GUSMAX_MONO_LVL: /* mono/microphone mixer */ 3651 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3652 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3653 1.87 kent dip->prev = AUDIO_MIXER_LAST; 3654 1.87 kent dip->next = GUSMAX_MONO_MUTE; 3655 1.87 kent strcpy(dip->label.name, AudioNmicrophone); 3656 1.87 kent dip->un.v.num_channels = 1; 3657 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3658 1.87 kent break; 3659 1.87 kent 3660 1.87 kent case GUSMAX_DAC_LVL: /* dacout */ 3661 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3662 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3663 1.87 kent dip->prev = AUDIO_MIXER_LAST; 3664 1.87 kent dip->next = GUSMAX_DAC_MUTE; 3665 1.87 kent strcpy(dip->label.name, AudioNdac); 3666 1.87 kent dip->un.v.num_channels = 2; 3667 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3668 1.87 kent break; 3669 1.87 kent 3670 1.87 kent case GUSMAX_LINE_IN_LVL: /* line */ 3671 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3672 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3673 1.87 kent dip->prev = AUDIO_MIXER_LAST; 3674 1.87 kent dip->next = GUSMAX_LINE_IN_MUTE; 3675 1.87 kent strcpy(dip->label.name, AudioNline); 3676 1.87 kent dip->un.v.num_channels = 2; 3677 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3678 1.87 kent break; 3679 1.87 kent 3680 1.87 kent case GUSMAX_CD_LVL: /* cd */ 3681 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3682 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3683 1.87 kent dip->prev = AUDIO_MIXER_LAST; 3684 1.87 kent dip->next = GUSMAX_CD_MUTE; 3685 1.87 kent strcpy(dip->label.name, AudioNcd); 3686 1.87 kent dip->un.v.num_channels = 2; 3687 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3688 1.87 kent break; 3689 1.87 kent 3690 1.87 kent 3691 1.87 kent case GUSMAX_MONITOR_LVL: /* monitor level */ 3692 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3693 1.87 kent dip->mixer_class = GUSMAX_MONITOR_CLASS; 3694 1.87 kent dip->next = GUSMAX_MONITOR_MUTE; 3695 1.87 kent dip->prev = AUDIO_MIXER_LAST; 3696 1.87 kent strcpy(dip->label.name, AudioNmonitor); 3697 1.87 kent dip->un.v.num_channels = 1; 3698 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3699 1.87 kent break; 3700 1.87 kent 3701 1.87 kent case GUSMAX_OUT_LVL: /* cs4231 output volume: not useful? */ 3702 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3703 1.87 kent dip->mixer_class = GUSMAX_MONITOR_CLASS; 3704 1.87 kent dip->prev = dip->next = AUDIO_MIXER_LAST; 3705 1.87 kent strcpy(dip->label.name, AudioNoutput); 3706 1.87 kent dip->un.v.num_channels = 2; 3707 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3708 1.87 kent break; 3709 1.87 kent 3710 1.87 kent case GUSMAX_SPEAKER_LVL: /* fake speaker volume */ 3711 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3712 1.87 kent dip->mixer_class = GUSMAX_MONITOR_CLASS; 3713 1.87 kent dip->prev = AUDIO_MIXER_LAST; 3714 1.87 kent dip->next = GUSMAX_SPEAKER_MUTE; 3715 1.87 kent strcpy(dip->label.name, AudioNmaster); 3716 1.87 kent dip->un.v.num_channels = 2; 3717 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3718 1.87 kent break; 3719 1.87 kent 3720 1.87 kent case GUSMAX_LINE_IN_MUTE: 3721 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3722 1.87 kent dip->type = AUDIO_MIXER_ENUM; 3723 1.87 kent dip->prev = GUSMAX_LINE_IN_LVL; 3724 1.87 kent dip->next = AUDIO_MIXER_LAST; 3725 1.87 kent goto mute; 3726 1.87 kent 3727 1.87 kent case GUSMAX_DAC_MUTE: 3728 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3729 1.87 kent dip->type = AUDIO_MIXER_ENUM; 3730 1.87 kent dip->prev = GUSMAX_DAC_LVL; 3731 1.87 kent dip->next = AUDIO_MIXER_LAST; 3732 1.87 kent goto mute; 3733 1.87 kent 3734 1.87 kent case GUSMAX_CD_MUTE: 3735 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3736 1.87 kent dip->type = AUDIO_MIXER_ENUM; 3737 1.87 kent dip->prev = GUSMAX_CD_LVL; 3738 1.87 kent dip->next = AUDIO_MIXER_LAST; 3739 1.87 kent goto mute; 3740 1.87 kent 3741 1.87 kent case GUSMAX_MONO_MUTE: 3742 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3743 1.87 kent dip->type = AUDIO_MIXER_ENUM; 3744 1.87 kent dip->prev = GUSMAX_MONO_LVL; 3745 1.87 kent dip->next = AUDIO_MIXER_LAST; 3746 1.87 kent goto mute; 3747 1.87 kent 3748 1.87 kent case GUSMAX_MONITOR_MUTE: 3749 1.87 kent dip->mixer_class = GUSMAX_OUTPUT_CLASS; 3750 1.87 kent dip->type = AUDIO_MIXER_ENUM; 3751 1.87 kent dip->prev = GUSMAX_MONITOR_LVL; 3752 1.87 kent dip->next = AUDIO_MIXER_LAST; 3753 1.87 kent goto mute; 3754 1.87 kent 3755 1.87 kent case GUSMAX_SPEAKER_MUTE: 3756 1.87 kent dip->mixer_class = GUSMAX_OUTPUT_CLASS; 3757 1.87 kent dip->type = AUDIO_MIXER_ENUM; 3758 1.87 kent dip->prev = GUSMAX_SPEAKER_LVL; 3759 1.87 kent dip->next = AUDIO_MIXER_LAST; 3760 1.87 kent mute: 3761 1.87 kent strcpy(dip->label.name, AudioNmute); 3762 1.87 kent dip->un.e.num_mem = 2; 3763 1.87 kent strcpy(dip->un.e.member[0].label.name, AudioNoff); 3764 1.87 kent dip->un.e.member[0].ord = 0; 3765 1.87 kent strcpy(dip->un.e.member[1].label.name, AudioNon); 3766 1.87 kent dip->un.e.member[1].ord = 1; 3767 1.87 kent break; 3768 1.87 kent 3769 1.87 kent case GUSMAX_REC_LVL: /* record level */ 3770 1.87 kent dip->type = AUDIO_MIXER_VALUE; 3771 1.87 kent dip->mixer_class = GUSMAX_RECORD_CLASS; 3772 1.87 kent dip->prev = AUDIO_MIXER_LAST; 3773 1.87 kent dip->next = GUSMAX_RECORD_SOURCE; 3774 1.87 kent strcpy(dip->label.name, AudioNrecord); 3775 1.87 kent dip->un.v.num_channels = 2; 3776 1.87 kent strcpy(dip->un.v.units.name, AudioNvolume); 3777 1.87 kent break; 3778 1.87 kent 3779 1.87 kent case GUSMAX_RECORD_SOURCE: 3780 1.87 kent dip->mixer_class = GUSMAX_RECORD_CLASS; 3781 1.87 kent dip->type = AUDIO_MIXER_ENUM; 3782 1.87 kent dip->prev = GUSMAX_REC_LVL; 3783 1.87 kent dip->next = AUDIO_MIXER_LAST; 3784 1.87 kent strcpy(dip->label.name, AudioNsource); 3785 1.87 kent dip->un.e.num_mem = 4; 3786 1.87 kent strcpy(dip->un.e.member[0].label.name, AudioNoutput); 3787 1.87 kent dip->un.e.member[0].ord = DAC_IN_PORT; 3788 1.87 kent strcpy(dip->un.e.member[1].label.name, AudioNmicrophone); 3789 1.87 kent dip->un.e.member[1].ord = MIC_IN_PORT; 3790 1.87 kent strcpy(dip->un.e.member[2].label.name, AudioNdac); 3791 1.87 kent dip->un.e.member[2].ord = AUX1_IN_PORT; 3792 1.87 kent strcpy(dip->un.e.member[3].label.name, AudioNline); 3793 1.87 kent dip->un.e.member[3].ord = LINE_IN_PORT; 3794 1.87 kent break; 3795 1.87 kent 3796 1.87 kent case GUSMAX_INPUT_CLASS: /* input class descriptor */ 3797 1.87 kent dip->type = AUDIO_MIXER_CLASS; 3798 1.87 kent dip->mixer_class = GUSMAX_INPUT_CLASS; 3799 1.87 kent dip->next = dip->prev = AUDIO_MIXER_LAST; 3800 1.87 kent strcpy(dip->label.name, AudioCinputs); 3801 1.87 kent break; 3802 1.87 kent 3803 1.87 kent case GUSMAX_OUTPUT_CLASS: /* output class descriptor */ 3804 1.87 kent dip->type = AUDIO_MIXER_CLASS; 3805 1.87 kent dip->mixer_class = GUSMAX_OUTPUT_CLASS; 3806 1.87 kent dip->next = dip->prev = AUDIO_MIXER_LAST; 3807 1.87 kent strcpy(dip->label.name, AudioCoutputs); 3808 1.87 kent break; 3809 1.87 kent 3810 1.87 kent case GUSMAX_MONITOR_CLASS: /* monitor class descriptor */ 3811 1.87 kent dip->type = AUDIO_MIXER_CLASS; 3812 1.87 kent dip->mixer_class = GUSMAX_MONITOR_CLASS; 3813 1.87 kent dip->next = dip->prev = AUDIO_MIXER_LAST; 3814 1.87 kent strcpy(dip->label.name, AudioCmonitor); 3815 1.87 kent break; 3816 1.87 kent 3817 1.87 kent case GUSMAX_RECORD_CLASS: /* record source class */ 3818 1.87 kent dip->type = AUDIO_MIXER_CLASS; 3819 1.87 kent dip->mixer_class = GUSMAX_RECORD_CLASS; 3820 1.87 kent dip->next = dip->prev = AUDIO_MIXER_LAST; 3821 1.87 kent strcpy(dip->label.name, AudioCrecord); 3822 1.87 kent break; 3823 1.87 kent 3824 1.87 kent default: 3825 1.87 kent return ENXIO; 3826 1.87 kent /*NOTREACHED*/ 3827 1.87 kent } 3828 1.87 kent DPRINTF(("AUDIO_MIXER_DEVINFO: name=%s\n", dip->label.name)); 3829 1.1 brezak return 0; 3830 1.1 brezak } 3831 1.1 brezak 3832 1.8 jtk STATIC int 3833 1.87 kent gus_mixer_query_devinfo(void *addr, mixer_devinfo_t *dip) 3834 1.1 brezak { 3835 1.87 kent struct gus_softc *sc; 3836 1.1 brezak 3837 1.1 brezak DPRINTF(("gusmax_query_devinfo: index=%d\n", dip->index)); 3838 1.87 kent sc = addr; 3839 1.1 brezak if (!HAS_MIXER(sc) && dip->index > GUSICS_MASTER_MUTE) 3840 1.1 brezak return ENXIO; 3841 1.1 brezak 3842 1.1 brezak switch(dip->index) { 3843 1.1 brezak 3844 1.1 brezak case GUSICS_MIC_IN_LVL: /* Microphone */ 3845 1.1 brezak dip->type = AUDIO_MIXER_VALUE; 3846 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3847 1.1 brezak dip->prev = AUDIO_MIXER_LAST; 3848 1.1 brezak dip->next = GUSICS_MIC_IN_MUTE; 3849 1.1 brezak strcpy(dip->label.name, AudioNmicrophone); 3850 1.1 brezak dip->un.v.num_channels = 2; 3851 1.1 brezak strcpy(dip->un.v.units.name, AudioNvolume); 3852 1.1 brezak break; 3853 1.1 brezak 3854 1.1 brezak case GUSICS_LINE_IN_LVL: /* line */ 3855 1.1 brezak dip->type = AUDIO_MIXER_VALUE; 3856 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3857 1.1 brezak dip->prev = AUDIO_MIXER_LAST; 3858 1.1 brezak dip->next = GUSICS_LINE_IN_MUTE; 3859 1.1 brezak strcpy(dip->label.name, AudioNline); 3860 1.1 brezak dip->un.v.num_channels = 2; 3861 1.1 brezak strcpy(dip->un.v.units.name, AudioNvolume); 3862 1.1 brezak break; 3863 1.1 brezak 3864 1.1 brezak case GUSICS_CD_LVL: /* cd */ 3865 1.1 brezak dip->type = AUDIO_MIXER_VALUE; 3866 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3867 1.1 brezak dip->prev = AUDIO_MIXER_LAST; 3868 1.1 brezak dip->next = GUSICS_CD_MUTE; 3869 1.1 brezak strcpy(dip->label.name, AudioNcd); 3870 1.1 brezak dip->un.v.num_channels = 2; 3871 1.1 brezak strcpy(dip->un.v.units.name, AudioNvolume); 3872 1.1 brezak break; 3873 1.1 brezak 3874 1.1 brezak case GUSICS_DAC_LVL: /* dacout */ 3875 1.1 brezak dip->type = AUDIO_MIXER_VALUE; 3876 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3877 1.1 brezak dip->prev = AUDIO_MIXER_LAST; 3878 1.1 brezak dip->next = GUSICS_DAC_MUTE; 3879 1.1 brezak strcpy(dip->label.name, AudioNdac); 3880 1.1 brezak dip->un.v.num_channels = 2; 3881 1.1 brezak strcpy(dip->un.v.units.name, AudioNvolume); 3882 1.1 brezak break; 3883 1.1 brezak 3884 1.1 brezak case GUSICS_MASTER_LVL: /* master output */ 3885 1.1 brezak dip->type = AUDIO_MIXER_VALUE; 3886 1.1 brezak dip->mixer_class = GUSICS_OUTPUT_CLASS; 3887 1.1 brezak dip->prev = AUDIO_MIXER_LAST; 3888 1.1 brezak dip->next = GUSICS_MASTER_MUTE; 3889 1.48 augustss strcpy(dip->label.name, AudioNmaster); 3890 1.1 brezak dip->un.v.num_channels = 2; 3891 1.1 brezak strcpy(dip->un.v.units.name, AudioNvolume); 3892 1.1 brezak break; 3893 1.1 brezak 3894 1.1 brezak 3895 1.1 brezak case GUSICS_LINE_IN_MUTE: 3896 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3897 1.1 brezak dip->type = AUDIO_MIXER_ENUM; 3898 1.1 brezak dip->prev = GUSICS_LINE_IN_LVL; 3899 1.1 brezak dip->next = AUDIO_MIXER_LAST; 3900 1.1 brezak goto mute; 3901 1.87 kent 3902 1.1 brezak case GUSICS_DAC_MUTE: 3903 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3904 1.1 brezak dip->type = AUDIO_MIXER_ENUM; 3905 1.1 brezak dip->prev = GUSICS_DAC_LVL; 3906 1.1 brezak dip->next = AUDIO_MIXER_LAST; 3907 1.1 brezak goto mute; 3908 1.1 brezak 3909 1.1 brezak case GUSICS_CD_MUTE: 3910 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3911 1.1 brezak dip->type = AUDIO_MIXER_ENUM; 3912 1.1 brezak dip->prev = GUSICS_CD_LVL; 3913 1.1 brezak dip->next = AUDIO_MIXER_LAST; 3914 1.1 brezak goto mute; 3915 1.87 kent 3916 1.1 brezak case GUSICS_MIC_IN_MUTE: 3917 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3918 1.1 brezak dip->type = AUDIO_MIXER_ENUM; 3919 1.1 brezak dip->prev = GUSICS_MIC_IN_LVL; 3920 1.1 brezak dip->next = AUDIO_MIXER_LAST; 3921 1.1 brezak goto mute; 3922 1.1 brezak 3923 1.1 brezak case GUSICS_MASTER_MUTE: 3924 1.1 brezak dip->mixer_class = GUSICS_OUTPUT_CLASS; 3925 1.1 brezak dip->type = AUDIO_MIXER_ENUM; 3926 1.1 brezak dip->prev = GUSICS_MASTER_LVL; 3927 1.1 brezak dip->next = AUDIO_MIXER_LAST; 3928 1.1 brezak mute: 3929 1.1 brezak strcpy(dip->label.name, AudioNmute); 3930 1.1 brezak dip->un.e.num_mem = 2; 3931 1.1 brezak strcpy(dip->un.e.member[0].label.name, AudioNoff); 3932 1.1 brezak dip->un.e.member[0].ord = 0; 3933 1.1 brezak strcpy(dip->un.e.member[1].label.name, AudioNon); 3934 1.1 brezak dip->un.e.member[1].ord = 1; 3935 1.1 brezak break; 3936 1.87 kent 3937 1.1 brezak case GUSICS_RECORD_SOURCE: 3938 1.1 brezak dip->mixer_class = GUSICS_RECORD_CLASS; 3939 1.1 brezak dip->type = AUDIO_MIXER_ENUM; 3940 1.1 brezak dip->prev = dip->next = AUDIO_MIXER_LAST; 3941 1.1 brezak strcpy(dip->label.name, AudioNsource); 3942 1.1 brezak dip->un.e.num_mem = 1; 3943 1.1 brezak strcpy(dip->un.e.member[0].label.name, AudioNoutput); 3944 1.1 brezak dip->un.e.member[0].ord = GUSICS_MASTER_LVL; 3945 1.1 brezak break; 3946 1.1 brezak 3947 1.1 brezak case GUSICS_INPUT_CLASS: 3948 1.1 brezak dip->type = AUDIO_MIXER_CLASS; 3949 1.1 brezak dip->mixer_class = GUSICS_INPUT_CLASS; 3950 1.1 brezak dip->next = dip->prev = AUDIO_MIXER_LAST; 3951 1.46 mycroft strcpy(dip->label.name, AudioCinputs); 3952 1.1 brezak break; 3953 1.1 brezak 3954 1.1 brezak case GUSICS_OUTPUT_CLASS: 3955 1.1 brezak dip->type = AUDIO_MIXER_CLASS; 3956 1.1 brezak dip->mixer_class = GUSICS_OUTPUT_CLASS; 3957 1.1 brezak dip->next = dip->prev = AUDIO_MIXER_LAST; 3958 1.46 mycroft strcpy(dip->label.name, AudioCoutputs); 3959 1.1 brezak break; 3960 1.1 brezak 3961 1.1 brezak case GUSICS_RECORD_CLASS: 3962 1.1 brezak dip->type = AUDIO_MIXER_CLASS; 3963 1.1 brezak dip->mixer_class = GUSICS_RECORD_CLASS; 3964 1.1 brezak dip->next = dip->prev = AUDIO_MIXER_LAST; 3965 1.46 mycroft strcpy(dip->label.name, AudioCrecord); 3966 1.1 brezak break; 3967 1.1 brezak 3968 1.1 brezak default: 3969 1.1 brezak return ENXIO; 3970 1.87 kent /*NOTREACHED*/ 3971 1.1 brezak } 3972 1.1 brezak DPRINTF(("AUDIO_MIXER_DEVINFO: name=%s\n", dip->label.name)); 3973 1.1 brezak return 0; 3974 1.1 brezak } 3975 1.1 brezak 3976 1.8 jtk STATIC int 3977 1.116 isaki gus_query_format(void *addr, audio_format_query_t *afp) 3978 1.1 brezak { 3979 1.87 kent 3980 1.116 isaki return audio_query_format(gus_formats, GUS_NFORMATS, afp); 3981 1.1 brezak } 3982 1.1 brezak 3983 1.1 brezak /* 3984 1.1 brezak * Setup the ICS mixer in "transparent" mode: reset everything to a sensible 3985 1.1 brezak * level. Levels as suggested by GUS SDK code. 3986 1.1 brezak */ 3987 1.8 jtk STATIC void 3988 1.87 kent gus_init_ics2101(struct gus_softc *sc) 3989 1.1 brezak { 3990 1.87 kent struct ics2101_softc *ic; 3991 1.87 kent 3992 1.87 kent ic = &sc->sc_mixer; 3993 1.43 augustss sc->sc_mixer.sc_iot = sc->sc_iot; 3994 1.43 augustss sc->sc_mixer.sc_selio = GUS_MIXER_SELECT; 3995 1.43 augustss sc->sc_mixer.sc_selio_ioh = sc->sc_ioh3; 3996 1.43 augustss sc->sc_mixer.sc_dataio = GUS_MIXER_DATA; 3997 1.43 augustss sc->sc_mixer.sc_dataio_ioh = sc->sc_ioh2; 3998 1.1 brezak sc->sc_mixer.sc_flags = (sc->sc_revision == 5) ? ICS_FLIP : 0; 3999 1.1 brezak 4000 1.1 brezak ics2101_mix_attenuate(ic, 4001 1.1 brezak GUSMIX_CHAN_MIC, 4002 1.1 brezak ICSMIX_LEFT, 4003 1.1 brezak ICSMIX_MIN_ATTN); 4004 1.1 brezak ics2101_mix_attenuate(ic, 4005 1.1 brezak GUSMIX_CHAN_MIC, 4006 1.1 brezak ICSMIX_RIGHT, 4007 1.1 brezak ICSMIX_MIN_ATTN); 4008 1.1 brezak /* 4009 1.1 brezak * Start with microphone muted by the mixer... 4010 1.1 brezak */ 4011 1.1 brezak gusics_mic_mute(ic, 1); 4012 1.1 brezak 4013 1.1 brezak /* ... and enabled by the GUS master mix control */ 4014 1.1 brezak gus_mic_ctl(sc, SPKR_ON); 4015 1.1 brezak 4016 1.1 brezak ics2101_mix_attenuate(ic, 4017 1.1 brezak GUSMIX_CHAN_LINE, 4018 1.1 brezak ICSMIX_LEFT, 4019 1.1 brezak ICSMIX_MIN_ATTN); 4020 1.1 brezak ics2101_mix_attenuate(ic, 4021 1.1 brezak GUSMIX_CHAN_LINE, 4022 1.1 brezak ICSMIX_RIGHT, 4023 1.1 brezak ICSMIX_MIN_ATTN); 4024 1.1 brezak 4025 1.1 brezak ics2101_mix_attenuate(ic, 4026 1.1 brezak GUSMIX_CHAN_CD, 4027 1.1 brezak ICSMIX_LEFT, 4028 1.1 brezak ICSMIX_MIN_ATTN); 4029 1.1 brezak ics2101_mix_attenuate(ic, 4030 1.1 brezak GUSMIX_CHAN_CD, 4031 1.1 brezak ICSMIX_RIGHT, 4032 1.1 brezak ICSMIX_MIN_ATTN); 4033 1.1 brezak 4034 1.1 brezak ics2101_mix_attenuate(ic, 4035 1.1 brezak GUSMIX_CHAN_DAC, 4036 1.1 brezak ICSMIX_LEFT, 4037 1.1 brezak ICSMIX_MIN_ATTN); 4038 1.1 brezak ics2101_mix_attenuate(ic, 4039 1.1 brezak GUSMIX_CHAN_DAC, 4040 1.1 brezak ICSMIX_RIGHT, 4041 1.1 brezak ICSMIX_MIN_ATTN); 4042 1.1 brezak 4043 1.1 brezak ics2101_mix_attenuate(ic, 4044 1.1 brezak ICSMIX_CHAN_4, 4045 1.1 brezak ICSMIX_LEFT, 4046 1.1 brezak ICSMIX_MAX_ATTN); 4047 1.1 brezak ics2101_mix_attenuate(ic, 4048 1.1 brezak ICSMIX_CHAN_4, 4049 1.1 brezak ICSMIX_RIGHT, 4050 1.1 brezak ICSMIX_MAX_ATTN); 4051 1.1 brezak 4052 1.1 brezak ics2101_mix_attenuate(ic, 4053 1.1 brezak GUSMIX_CHAN_MASTER, 4054 1.1 brezak ICSMIX_LEFT, 4055 1.1 brezak ICSMIX_MIN_ATTN); 4056 1.1 brezak ics2101_mix_attenuate(ic, 4057 1.1 brezak GUSMIX_CHAN_MASTER, 4058 1.1 brezak ICSMIX_RIGHT, 4059 1.1 brezak ICSMIX_MIN_ATTN); 4060 1.1 brezak /* unmute other stuff: */ 4061 1.1 brezak gusics_cd_mute(ic, 0); 4062 1.1 brezak gusics_dac_mute(ic, 0); 4063 1.1 brezak gusics_linein_mute(ic, 0); 4064 1.1 brezak return; 4065 1.1 brezak } 4066