sbdsp.c revision 1.23 1 1.23 mycroft /* $NetBSD: sbdsp.c,v 1.23 1996/03/01 04:08:38 mycroft Exp $ */
2 1.1 brezak
3 1.1 brezak /*
4 1.1 brezak * Copyright (c) 1991-1993 Regents of the University of California.
5 1.1 brezak * All rights reserved.
6 1.1 brezak *
7 1.1 brezak * Redistribution and use in source and binary forms, with or without
8 1.1 brezak * modification, are permitted provided that the following conditions
9 1.1 brezak * are met:
10 1.1 brezak * 1. Redistributions of source code must retain the above copyright
11 1.1 brezak * notice, this list of conditions and the following disclaimer.
12 1.1 brezak * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 brezak * notice, this list of conditions and the following disclaimer in the
14 1.1 brezak * documentation and/or other materials provided with the distribution.
15 1.1 brezak * 3. All advertising materials mentioning features or use of this software
16 1.1 brezak * must display the following acknowledgement:
17 1.1 brezak * This product includes software developed by the Computer Systems
18 1.1 brezak * Engineering Group at Lawrence Berkeley Laboratory.
19 1.1 brezak * 4. Neither the name of the University nor of the Laboratory may be used
20 1.1 brezak * to endorse or promote products derived from this software without
21 1.1 brezak * specific prior written permission.
22 1.1 brezak *
23 1.1 brezak * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 brezak * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 brezak * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 brezak * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 brezak * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 brezak * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 brezak * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 brezak * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 brezak * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 brezak * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 brezak * SUCH DAMAGE.
34 1.1 brezak *
35 1.1 brezak */
36 1.1 brezak /*
37 1.1 brezak * SoundBlaster Pro code provided by John Kohl, based on lots of
38 1.1 brezak * information he gleaned from Steve Haehnichen <steve (at) vigra.com>'s
39 1.1 brezak * SBlast driver for 386BSD and DOS driver code from Daniel Sachs
40 1.1 brezak * <sachs (at) meibm15.cen.uiuc.edu>.
41 1.1 brezak */
42 1.1 brezak
43 1.1 brezak #include <sys/param.h>
44 1.1 brezak #include <sys/systm.h>
45 1.1 brezak #include <sys/errno.h>
46 1.1 brezak #include <sys/ioctl.h>
47 1.1 brezak #include <sys/syslog.h>
48 1.1 brezak #include <sys/device.h>
49 1.1 brezak #include <sys/proc.h>
50 1.1 brezak #include <sys/buf.h>
51 1.1 brezak #include <vm/vm.h>
52 1.1 brezak
53 1.1 brezak #include <machine/cpu.h>
54 1.1 brezak #include <machine/pio.h>
55 1.1 brezak
56 1.1 brezak #include <sys/audioio.h>
57 1.1 brezak #include <dev/audio_if.h>
58 1.1 brezak
59 1.6 cgd #include <dev/isa/isavar.h>
60 1.6 cgd #include <dev/isa/isadmavar.h>
61 1.7 cgd #include <i386/isa/icu.h> /* XXX BROKEN; WHY? */
62 1.1 brezak
63 1.7 cgd #include <dev/isa/sbreg.h>
64 1.7 cgd #include <dev/isa/sbdspvar.h>
65 1.1 brezak
66 1.12 brezak #ifdef AUDIO_DEBUG
67 1.1 brezak extern void Dprintf __P((const char *, ...));
68 1.12 brezak #define DPRINTF(x) if (sbdspdebug) Dprintf x
69 1.1 brezak int sbdspdebug = 0;
70 1.1 brezak #else
71 1.1 brezak #define DPRINTF(x)
72 1.1 brezak #endif
73 1.1 brezak
74 1.1 brezak #ifndef SBDSP_NPOLL
75 1.1 brezak #define SBDSP_NPOLL 3000
76 1.1 brezak #endif
77 1.1 brezak
78 1.1 brezak struct {
79 1.1 brezak int wdsp;
80 1.1 brezak int rdsp;
81 1.1 brezak int wmidi;
82 1.1 brezak } sberr;
83 1.1 brezak
84 1.16 mycroft /*
85 1.16 mycroft * Time constant routines follow. See SBK, section 12.
86 1.16 mycroft * Although they don't come out and say it (in the docs),
87 1.16 mycroft * the card clearly uses a 1MHz countdown timer, as the
88 1.16 mycroft * low-speed formula (p. 12-4) is:
89 1.16 mycroft * tc = 256 - 10^6 / sr
90 1.16 mycroft * In high-speed mode, the constant is the upper byte of a 16-bit counter,
91 1.16 mycroft * and a 256MHz clock is used:
92 1.16 mycroft * tc = 65536 - 256 * 10^ 6 / sr
93 1.16 mycroft * Since we can only use the upper byte of the HS TC, the two formulae
94 1.16 mycroft * are equivalent. (Why didn't they say so?) E.g.,
95 1.16 mycroft * (65536 - 256 * 10 ^ 6 / x) >> 8 = 256 - 10^6 / x
96 1.16 mycroft *
97 1.16 mycroft * The crossover point (from low- to high-speed modes) is different
98 1.16 mycroft * for the SBPRO and SB20. The table on p. 12-5 gives the following data:
99 1.16 mycroft *
100 1.16 mycroft * SBPRO SB20
101 1.16 mycroft * ----- --------
102 1.16 mycroft * input ls min 4 KHz 4 KHz
103 1.16 mycroft * input ls max 23 KHz 13 KHz
104 1.16 mycroft * input hs max 44.1 KHz 15 KHz
105 1.16 mycroft * output ls min 4 KHz 4 KHz
106 1.16 mycroft * output ls max 23 KHz 23 KHz
107 1.16 mycroft * output hs max 44.1 KHz 44.1 KHz
108 1.16 mycroft */
109 1.16 mycroft #define SB_LS_MIN 0x06 /* 4000 Hz */
110 1.16 mycroft #define SB_8K 0x83 /* 8000 Hz */
111 1.16 mycroft #define SBPRO_ADC_LS_MAX 0xd4 /* 22727 Hz */
112 1.16 mycroft #define SBPRO_ADC_HS_MAX 0xea /* 45454 Hz */
113 1.16 mycroft #define SBCLA_ADC_LS_MAX 0xb3 /* 12987 Hz */
114 1.16 mycroft #define SBCLA_ADC_HS_MAX 0xbd /* 14925 Hz */
115 1.16 mycroft #define SB_DAC_LS_MAX 0xd4 /* 22727 Hz */
116 1.16 mycroft #define SB_DAC_HS_MAX 0xea /* 45454 Hz */
117 1.16 mycroft
118 1.12 brezak #ifdef AUDIO_DEBUG
119 1.1 brezak void
120 1.1 brezak sb_printsc(struct sbdsp_softc *sc)
121 1.1 brezak {
122 1.1 brezak int i;
123 1.1 brezak
124 1.16 mycroft printf("open %d dmachan %d iobase %x\n",
125 1.16 mycroft sc->sc_open, sc->sc_drq, sc->sc_iobase);
126 1.23 mycroft printf("irate %d itc %d imode %d orate %d otc %d omode %d encoding %x\n",
127 1.23 mycroft sc->sc_irate, sc->sc_itc, sc->sc_imode,
128 1.23 mycroft sc->sc_orate, sc->sc_otc, sc->sc_omode, sc->encoding);
129 1.1 brezak printf("outport %d inport %d spkron %d nintr %d\n",
130 1.16 mycroft sc->out_port, sc->in_port, sc->spkr_state, sc->sc_interrupts);
131 1.23 mycroft printf("precision %d channels %d intr %x arg %x\n",
132 1.23 mycroft sc->sc_precision, sc->sc_channels, sc->sc_intr, sc->sc_arg);
133 1.1 brezak printf("gain: ");
134 1.1 brezak for (i = 0; i < SB_NDEVS; i++)
135 1.16 mycroft printf("%d ", sc->gain[i]);
136 1.1 brezak printf("\n");
137 1.1 brezak }
138 1.1 brezak #endif
139 1.1 brezak
140 1.1 brezak /*
141 1.1 brezak * Probe / attach routines.
142 1.1 brezak */
143 1.1 brezak
144 1.1 brezak /*
145 1.1 brezak * Probe for the soundblaster hardware.
146 1.1 brezak */
147 1.1 brezak int
148 1.1 brezak sbdsp_probe(sc)
149 1.1 brezak struct sbdsp_softc *sc;
150 1.1 brezak {
151 1.14 mycroft register int iobase = sc->sc_iobase;
152 1.1 brezak
153 1.1 brezak if (sbdsp_reset(sc) < 0) {
154 1.1 brezak DPRINTF(("sbdsp: couldn't reset card\n"));
155 1.1 brezak return 0;
156 1.1 brezak }
157 1.1 brezak sc->sc_model = sbversion(sc);
158 1.1 brezak
159 1.1 brezak return 1;
160 1.1 brezak }
161 1.1 brezak
162 1.1 brezak /*
163 1.1 brezak * Attach hardware to driver, attach hardware driver to audio
164 1.1 brezak * pseudo-device driver .
165 1.1 brezak */
166 1.1 brezak void
167 1.1 brezak sbdsp_attach(sc)
168 1.1 brezak struct sbdsp_softc *sc;
169 1.1 brezak {
170 1.14 mycroft register int iobase = sc->sc_iobase;
171 1.1 brezak
172 1.1 brezak /* Set defaults */
173 1.23 mycroft if (ISSB16CLASS(sc))
174 1.23 mycroft sc->sc_irate = sc->sc_orate = 8000;
175 1.23 mycroft else if (ISSBPROCLASS(sc))
176 1.23 mycroft sc->sc_itc = sc->sc_otc = SB_8K;
177 1.1 brezak else
178 1.23 mycroft sc->sc_itc = sc->sc_otc = SB_8K;
179 1.23 mycroft sc->sc_precision = 8;
180 1.23 mycroft sc->sc_channels = 1;
181 1.23 mycroft sc->encoding = AUDIO_ENCODING_ULAW;
182 1.1 brezak
183 1.5 mycroft (void) sbdsp_set_in_port(sc, SB_MIC_PORT);
184 1.5 mycroft (void) sbdsp_set_out_port(sc, SB_SPEAKER);
185 1.1 brezak
186 1.1 brezak if (ISSBPROCLASS(sc)) {
187 1.1 brezak int i;
188 1.1 brezak
189 1.1 brezak /* set mixer to default levels, by sending a mixer
190 1.1 brezak reset command. */
191 1.1 brezak sbdsp_mix_write(sc, SBP_MIX_RESET, SBP_MIX_RESET);
192 1.1 brezak /* then some adjustments :) */
193 1.1 brezak sbdsp_mix_write(sc, SBP_CD_VOL,
194 1.1 brezak sbdsp_stereo_vol(SBP_MAXVOL, SBP_MAXVOL));
195 1.1 brezak sbdsp_mix_write(sc, SBP_DAC_VOL,
196 1.1 brezak sbdsp_stereo_vol(SBP_MAXVOL, SBP_MAXVOL));
197 1.1 brezak sbdsp_mix_write(sc, SBP_MASTER_VOL,
198 1.17 jtk sbdsp_stereo_vol(SBP_MAXVOL/2, SBP_MAXVOL/2));
199 1.1 brezak sbdsp_mix_write(sc, SBP_LINE_VOL,
200 1.1 brezak sbdsp_stereo_vol(SBP_MAXVOL, SBP_MAXVOL));
201 1.1 brezak for (i = 0; i < SB_NDEVS; i++)
202 1.16 mycroft sc->gain[i] = sbdsp_stereo_vol(SBP_MAXVOL, SBP_MAXVOL);
203 1.17 jtk sc->in_filter = 0; /* no filters turned on, please */
204 1.1 brezak }
205 1.16 mycroft
206 1.9 brezak printf(": dsp v%d.%02d\n",
207 1.1 brezak SBVER_MAJOR(sc->sc_model), SBVER_MINOR(sc->sc_model));
208 1.23 mycroft
209 1.23 mycroft #ifdef notyet
210 1.23 mycroft sbdsp_mix_write(sc, SBP_SET_IRQ, 0x04);
211 1.23 mycroft sbdsp_mix_write(sc, SBP_SET_DRQ, 0x22);
212 1.23 mycroft
213 1.23 mycroft printf("sbdsp_attach: irq=%02x, drq=%02x\n",
214 1.23 mycroft sbdsp_mix_read(sc, SBP_SET_IRQ),
215 1.23 mycroft sbdsp_mix_read(sc, SBP_SET_DRQ));
216 1.23 mycroft #else
217 1.23 mycroft if (ISSB16CLASS(sc))
218 1.23 mycroft sc->sc_model = 0x0300;
219 1.23 mycroft #endif
220 1.1 brezak }
221 1.1 brezak
222 1.1 brezak /*
223 1.1 brezak * Various routines to interface to higher level audio driver
224 1.1 brezak */
225 1.1 brezak
226 1.1 brezak void
227 1.1 brezak sbdsp_mix_write(sc, mixerport, val)
228 1.1 brezak struct sbdsp_softc *sc;
229 1.1 brezak int mixerport;
230 1.1 brezak int val;
231 1.1 brezak {
232 1.1 brezak int iobase = sc->sc_iobase;
233 1.1 brezak outb(iobase + SBP_MIXER_ADDR, mixerport);
234 1.1 brezak delay(10);
235 1.1 brezak outb(iobase + SBP_MIXER_DATA, val);
236 1.1 brezak delay(30);
237 1.1 brezak }
238 1.1 brezak
239 1.1 brezak int
240 1.1 brezak sbdsp_mix_read(sc, mixerport)
241 1.1 brezak struct sbdsp_softc *sc;
242 1.1 brezak int mixerport;
243 1.1 brezak {
244 1.1 brezak int iobase = sc->sc_iobase;
245 1.1 brezak outb(iobase + SBP_MIXER_ADDR, mixerport);
246 1.1 brezak delay(10);
247 1.1 brezak return inb(iobase + SBP_MIXER_DATA);
248 1.1 brezak }
249 1.1 brezak
250 1.1 brezak int
251 1.1 brezak sbdsp_set_in_sr(addr, sr)
252 1.5 mycroft void *addr;
253 1.1 brezak u_long sr;
254 1.1 brezak {
255 1.5 mycroft register struct sbdsp_softc *sc = addr;
256 1.1 brezak
257 1.23 mycroft if (ISSB16CLASS(sc))
258 1.23 mycroft return (sbdsp_setrate(sc, sr, SB_INPUT_RATE, &sc->sc_irate));
259 1.23 mycroft else
260 1.23 mycroft return (sbdsp_srtotc(sc, sr, SB_INPUT_RATE, &sc->sc_itc, &sc->sc_imode));
261 1.1 brezak }
262 1.1 brezak
263 1.1 brezak u_long
264 1.1 brezak sbdsp_get_in_sr(addr)
265 1.5 mycroft void *addr;
266 1.1 brezak {
267 1.5 mycroft register struct sbdsp_softc *sc = addr;
268 1.1 brezak
269 1.23 mycroft if (ISSB16CLASS(sc))
270 1.23 mycroft return (sc->sc_irate);
271 1.23 mycroft else
272 1.23 mycroft return (sbdsp_tctosr(sc, sc->sc_itc));
273 1.1 brezak }
274 1.1 brezak
275 1.1 brezak int
276 1.1 brezak sbdsp_set_out_sr(addr, sr)
277 1.5 mycroft void *addr;
278 1.1 brezak u_long sr;
279 1.1 brezak {
280 1.5 mycroft register struct sbdsp_softc *sc = addr;
281 1.1 brezak
282 1.23 mycroft if (ISSB16CLASS(sc))
283 1.23 mycroft return (sbdsp_setrate(sc, sr, SB_OUTPUT_RATE, &sc->sc_orate));
284 1.23 mycroft else
285 1.23 mycroft return (sbdsp_srtotc(sc, sr, SB_OUTPUT_RATE, &sc->sc_otc, &sc->sc_omode));
286 1.1 brezak }
287 1.1 brezak
288 1.1 brezak u_long
289 1.1 brezak sbdsp_get_out_sr(addr)
290 1.5 mycroft void *addr;
291 1.1 brezak {
292 1.5 mycroft register struct sbdsp_softc *sc = addr;
293 1.1 brezak
294 1.23 mycroft if (ISSB16CLASS(sc))
295 1.23 mycroft return (sc->sc_orate);
296 1.23 mycroft else
297 1.23 mycroft return (sbdsp_tctosr(sc, sc->sc_otc));
298 1.1 brezak }
299 1.1 brezak
300 1.1 brezak int
301 1.1 brezak sbdsp_query_encoding(addr, fp)
302 1.16 mycroft void *addr;
303 1.16 mycroft struct audio_encoding *fp;
304 1.1 brezak {
305 1.16 mycroft register struct sbdsp_softc *sc = addr;
306 1.1 brezak
307 1.16 mycroft switch (fp->index) {
308 1.16 mycroft case 0:
309 1.16 mycroft strcpy(fp->name, AudioEmulaw);
310 1.16 mycroft fp->format_id = AUDIO_ENCODING_ULAW;
311 1.16 mycroft break;
312 1.16 mycroft case 1:
313 1.16 mycroft strcpy(fp->name, AudioEpcm16);
314 1.16 mycroft fp->format_id = AUDIO_ENCODING_PCM16;
315 1.16 mycroft break;
316 1.16 mycroft default:
317 1.16 mycroft return (EINVAL);
318 1.16 mycroft }
319 1.16 mycroft return (0);
320 1.1 brezak }
321 1.1 brezak
322 1.1 brezak int
323 1.23 mycroft sbdsp_set_encoding(addr, encoding)
324 1.5 mycroft void *addr;
325 1.23 mycroft u_int encoding;
326 1.1 brezak {
327 1.5 mycroft register struct sbdsp_softc *sc = addr;
328 1.1 brezak
329 1.23 mycroft switch (encoding) {
330 1.1 brezak case AUDIO_ENCODING_ULAW:
331 1.1 brezak sc->encoding = AUDIO_ENCODING_ULAW;
332 1.1 brezak break;
333 1.1 brezak case AUDIO_ENCODING_LINEAR:
334 1.1 brezak sc->encoding = AUDIO_ENCODING_LINEAR;
335 1.1 brezak break;
336 1.1 brezak default:
337 1.1 brezak return (EINVAL);
338 1.1 brezak }
339 1.23 mycroft
340 1.1 brezak return (0);
341 1.1 brezak }
342 1.1 brezak
343 1.1 brezak int
344 1.1 brezak sbdsp_get_encoding(addr)
345 1.5 mycroft void *addr;
346 1.1 brezak {
347 1.5 mycroft register struct sbdsp_softc *sc = addr;
348 1.1 brezak
349 1.16 mycroft return (sc->encoding);
350 1.1 brezak }
351 1.1 brezak
352 1.1 brezak int
353 1.23 mycroft sbdsp_set_precision(addr, precision)
354 1.5 mycroft void *addr;
355 1.23 mycroft u_int precision;
356 1.1 brezak {
357 1.23 mycroft register struct sbdsp_softc *sc = addr;
358 1.23 mycroft
359 1.23 mycroft if (ISSB16CLASS(sc)) {
360 1.23 mycroft if (precision != 16 && precision != 8)
361 1.23 mycroft return (EINVAL);
362 1.23 mycroft sc->sc_precision = precision;
363 1.23 mycroft } else {
364 1.23 mycroft if (precision != 8)
365 1.23 mycroft return (EINVAL);
366 1.23 mycroft sc->sc_precision = precision;
367 1.23 mycroft }
368 1.1 brezak
369 1.16 mycroft return (0);
370 1.1 brezak }
371 1.1 brezak
372 1.1 brezak int
373 1.1 brezak sbdsp_get_precision(addr)
374 1.5 mycroft void *addr;
375 1.1 brezak {
376 1.23 mycroft register struct sbdsp_softc *sc = addr;
377 1.23 mycroft
378 1.23 mycroft return (sc->sc_precision);
379 1.1 brezak }
380 1.1 brezak
381 1.1 brezak int
382 1.23 mycroft sbdsp_set_channels(addr, channels)
383 1.5 mycroft void *addr;
384 1.23 mycroft int channels;
385 1.1 brezak {
386 1.5 mycroft register struct sbdsp_softc *sc = addr;
387 1.1 brezak
388 1.1 brezak if (ISSBPROCLASS(sc)) {
389 1.23 mycroft if (channels != 1 && channels != 2)
390 1.16 mycroft return (EINVAL);
391 1.23 mycroft sc->sc_channels = channels;
392 1.23 mycroft sc->sc_dmadir = SB_DMA_NONE;
393 1.23 mycroft /*
394 1.23 mycroft * XXXX
395 1.23 mycroft * With 2 channels, SBPro can't do more than 22kHz.
396 1.23 mycroft * No framework to check this.
397 1.23 mycroft */
398 1.16 mycroft } else {
399 1.23 mycroft if (channels != 1)
400 1.16 mycroft return (EINVAL);
401 1.23 mycroft sc->sc_channels = channels;
402 1.1 brezak }
403 1.1 brezak
404 1.16 mycroft return (0);
405 1.1 brezak }
406 1.1 brezak
407 1.1 brezak int
408 1.1 brezak sbdsp_get_channels(addr)
409 1.5 mycroft void *addr;
410 1.1 brezak {
411 1.5 mycroft register struct sbdsp_softc *sc = addr;
412 1.1 brezak
413 1.23 mycroft return (sc->sc_channels);
414 1.1 brezak }
415 1.1 brezak
416 1.1 brezak int
417 1.17 jtk sbdsp_set_ifilter(addr, which)
418 1.17 jtk void *addr;
419 1.17 jtk int which;
420 1.17 jtk {
421 1.17 jtk register struct sbdsp_softc *sc = addr;
422 1.17 jtk int rval, mixval;
423 1.17 jtk
424 1.17 jtk if (ISSBPROCLASS(sc)) {
425 1.17 jtk mixval = sbdsp_mix_read(sc, SBP_INFILTER) & ~SBP_IFILTER_MASK;
426 1.17 jtk switch (which) {
427 1.17 jtk case 0:
428 1.18 mycroft mixval |= SBP_FILTER_OFF;
429 1.18 mycroft break;
430 1.17 jtk case SBP_TREBLE_EQ:
431 1.18 mycroft mixval |= SBP_FILTER_ON | SBP_IFILTER_HIGH;
432 1.18 mycroft break;
433 1.17 jtk case SBP_BASS_EQ:
434 1.18 mycroft mixval |= SBP_FILTER_ON | SBP_IFILTER_LOW;
435 1.18 mycroft break;
436 1.18 mycroft default:
437 1.18 mycroft return (EINVAL);
438 1.17 jtk }
439 1.17 jtk sc->in_filter = mixval & SBP_IFILTER_MASK;
440 1.17 jtk sbdsp_mix_write(sc, SBP_INFILTER, mixval);
441 1.18 mycroft return (0);
442 1.18 mycroft } else
443 1.18 mycroft return (EINVAL);
444 1.17 jtk }
445 1.17 jtk
446 1.17 jtk int
447 1.17 jtk sbdsp_get_ifilter(addr)
448 1.17 jtk void *addr;
449 1.17 jtk {
450 1.17 jtk register struct sbdsp_softc *sc = addr;
451 1.17 jtk
452 1.17 jtk if (ISSBPROCLASS(sc)) {
453 1.18 mycroft sc->in_filter =
454 1.18 mycroft sbdsp_mix_read(sc, SBP_INFILTER) & SBP_IFILTER_MASK;
455 1.18 mycroft switch (sc->in_filter) {
456 1.18 mycroft case SBP_FILTER_ON|SBP_IFILTER_HIGH:
457 1.18 mycroft return (SBP_TREBLE_EQ);
458 1.18 mycroft case SBP_FILTER_ON|SBP_IFILTER_LOW:
459 1.18 mycroft return (SBP_BASS_EQ);
460 1.18 mycroft case SBP_FILTER_OFF:
461 1.18 mycroft default:
462 1.18 mycroft return (0);
463 1.18 mycroft }
464 1.17 jtk } else
465 1.18 mycroft return (0);
466 1.17 jtk }
467 1.17 jtk
468 1.17 jtk int
469 1.1 brezak sbdsp_set_out_port(addr, port)
470 1.5 mycroft void *addr;
471 1.1 brezak int port;
472 1.1 brezak {
473 1.5 mycroft register struct sbdsp_softc *sc = addr;
474 1.1 brezak
475 1.1 brezak sc->out_port = port; /* Just record it */
476 1.1 brezak
477 1.16 mycroft return (0);
478 1.1 brezak }
479 1.1 brezak
480 1.1 brezak int
481 1.1 brezak sbdsp_get_out_port(addr)
482 1.5 mycroft void *addr;
483 1.1 brezak {
484 1.5 mycroft register struct sbdsp_softc *sc = addr;
485 1.1 brezak
486 1.16 mycroft return (sc->out_port);
487 1.1 brezak }
488 1.1 brezak
489 1.1 brezak
490 1.1 brezak int
491 1.1 brezak sbdsp_set_in_port(addr, port)
492 1.5 mycroft void *addr;
493 1.1 brezak int port;
494 1.1 brezak {
495 1.5 mycroft register struct sbdsp_softc *sc = addr;
496 1.1 brezak int mixport, sbport;
497 1.1 brezak
498 1.1 brezak if (ISSBPROCLASS(sc)) {
499 1.16 mycroft switch (port) {
500 1.16 mycroft case SB_MIC_PORT:
501 1.16 mycroft sbport = SBP_FROM_MIC;
502 1.16 mycroft mixport = SBP_MIC_VOL;
503 1.16 mycroft break;
504 1.16 mycroft case SB_LINE_IN_PORT:
505 1.16 mycroft sbport = SBP_FROM_LINE;
506 1.16 mycroft mixport = SBP_LINE_VOL;
507 1.16 mycroft break;
508 1.16 mycroft case SB_CD_PORT:
509 1.16 mycroft sbport = SBP_FROM_CD;
510 1.16 mycroft mixport = SBP_CD_VOL;
511 1.16 mycroft break;
512 1.16 mycroft case SB_DAC_PORT:
513 1.16 mycroft case SB_FM_PORT:
514 1.16 mycroft default:
515 1.16 mycroft return (EINVAL);
516 1.16 mycroft }
517 1.16 mycroft } else {
518 1.16 mycroft switch (port) {
519 1.16 mycroft case SB_MIC_PORT:
520 1.16 mycroft sbport = SBP_FROM_MIC;
521 1.16 mycroft mixport = SBP_MIC_VOL;
522 1.16 mycroft break;
523 1.16 mycroft default:
524 1.16 mycroft return (EINVAL);
525 1.16 mycroft }
526 1.1 brezak }
527 1.1 brezak
528 1.1 brezak sc->in_port = port; /* Just record it */
529 1.1 brezak
530 1.1 brezak if (ISSBPROCLASS(sc)) {
531 1.1 brezak /* record from that port */
532 1.1 brezak sbdsp_mix_write(sc, SBP_RECORD_SOURCE,
533 1.18 mycroft SBP_RECORD_FROM(sbport, SBP_FILTER_OFF, SBP_IFILTER_HIGH));
534 1.1 brezak /* fetch gain from that port */
535 1.1 brezak sc->gain[port] = sbdsp_mix_read(sc, mixport);
536 1.1 brezak }
537 1.1 brezak
538 1.16 mycroft return (0);
539 1.1 brezak }
540 1.1 brezak
541 1.1 brezak int
542 1.1 brezak sbdsp_get_in_port(addr)
543 1.5 mycroft void *addr;
544 1.1 brezak {
545 1.5 mycroft register struct sbdsp_softc *sc = addr;
546 1.1 brezak
547 1.16 mycroft return (sc->in_port);
548 1.1 brezak }
549 1.1 brezak
550 1.1 brezak
551 1.1 brezak int
552 1.1 brezak sbdsp_speaker_ctl(addr, newstate)
553 1.5 mycroft void *addr;
554 1.1 brezak int newstate;
555 1.1 brezak {
556 1.5 mycroft register struct sbdsp_softc *sc = addr;
557 1.1 brezak
558 1.1 brezak if ((newstate == SPKR_ON) &&
559 1.1 brezak (sc->spkr_state == SPKR_OFF)) {
560 1.1 brezak sbdsp_spkron(sc);
561 1.1 brezak sc->spkr_state = SPKR_ON;
562 1.1 brezak }
563 1.1 brezak if ((newstate == SPKR_OFF) &&
564 1.1 brezak (sc->spkr_state == SPKR_ON)) {
565 1.1 brezak sbdsp_spkroff(sc);
566 1.1 brezak sc->spkr_state = SPKR_OFF;
567 1.1 brezak }
568 1.1 brezak return(0);
569 1.1 brezak }
570 1.1 brezak
571 1.1 brezak int
572 1.1 brezak sbdsp_round_blocksize(addr, blk)
573 1.5 mycroft void *addr;
574 1.1 brezak int blk;
575 1.1 brezak {
576 1.5 mycroft register struct sbdsp_softc *sc = addr;
577 1.1 brezak
578 1.15 mycroft sc->sc_last_hs_size = 0;
579 1.1 brezak
580 1.1 brezak /* Higher speeds need bigger blocks to avoid popping and silence gaps. */
581 1.23 mycroft if (blk < NBPG/4 || blk > NBPG/2) {
582 1.23 mycroft if (ISSB16CLASS(sc)) {
583 1.23 mycroft if (sc->sc_orate > 8000 || sc->sc_irate > 8000)
584 1.23 mycroft blk = NBPG/2;
585 1.23 mycroft } else {
586 1.23 mycroft if (sc->sc_otc > SB_8K || sc->sc_itc < SB_8K)
587 1.23 mycroft blk = NBPG/2;
588 1.23 mycroft }
589 1.23 mycroft }
590 1.1 brezak /* don't try to DMA too much at once, though. */
591 1.16 mycroft if (blk > NBPG)
592 1.16 mycroft blk = NBPG;
593 1.23 mycroft if (sc->sc_channels == 2)
594 1.1 brezak return (blk & ~1); /* must be even to preserve stereo separation */
595 1.1 brezak else
596 1.16 mycroft return (blk); /* Anything goes :-) */
597 1.1 brezak }
598 1.1 brezak
599 1.1 brezak int
600 1.1 brezak sbdsp_commit_settings(addr)
601 1.5 mycroft void *addr;
602 1.1 brezak {
603 1.16 mycroft register struct sbdsp_softc *sc = addr;
604 1.16 mycroft
605 1.1 brezak /* due to potentially unfortunate ordering in the above layers,
606 1.1 brezak re-do a few sets which may be important--input gains
607 1.1 brezak (adjust the proper channels), number of input channels (hit the
608 1.1 brezak record rate and set mode) */
609 1.1 brezak
610 1.16 mycroft /*
611 1.16 mycroft * XXX
612 1.16 mycroft * Should wait for chip to be idle.
613 1.16 mycroft */
614 1.16 mycroft sc->sc_dmadir = SB_DMA_NONE;
615 1.3 brezak
616 1.15 mycroft return 0;
617 1.1 brezak }
618 1.1 brezak
619 1.1 brezak
620 1.1 brezak int
621 1.1 brezak sbdsp_open(sc, dev, flags)
622 1.1 brezak register struct sbdsp_softc *sc;
623 1.1 brezak dev_t dev;
624 1.1 brezak int flags;
625 1.1 brezak {
626 1.1 brezak DPRINTF(("sbdsp_open: sc=0x%x\n", sc));
627 1.1 brezak
628 1.1 brezak if (sc->sc_open != 0 || sbdsp_reset(sc) != 0)
629 1.1 brezak return ENXIO;
630 1.1 brezak
631 1.1 brezak sc->sc_open = 1;
632 1.1 brezak sc->sc_mintr = 0;
633 1.1 brezak if (ISSBPROCLASS(sc) &&
634 1.1 brezak sbdsp_wdsp(sc->sc_iobase, SB_DSP_RECORD_MONO) < 0) {
635 1.1 brezak DPRINTF(("sbdsp_open: can't set mono mode\n"));
636 1.1 brezak /* we'll readjust when it's time for DMA. */
637 1.1 brezak }
638 1.1 brezak
639 1.1 brezak /*
640 1.1 brezak * Leave most things as they were; users must change things if
641 1.1 brezak * the previous process didn't leave it they way they wanted.
642 1.1 brezak * Looked at another way, it's easy to set up a configuration
643 1.1 brezak * in one program and leave it for another to inherit.
644 1.1 brezak */
645 1.1 brezak DPRINTF(("sbdsp_open: opened\n"));
646 1.1 brezak
647 1.1 brezak return 0;
648 1.1 brezak }
649 1.1 brezak
650 1.1 brezak void
651 1.1 brezak sbdsp_close(addr)
652 1.5 mycroft void *addr;
653 1.1 brezak {
654 1.5 mycroft struct sbdsp_softc *sc = addr;
655 1.1 brezak
656 1.1 brezak DPRINTF(("sbdsp_close: sc=0x%x\n", sc));
657 1.1 brezak
658 1.1 brezak sc->sc_open = 0;
659 1.1 brezak sbdsp_spkroff(sc);
660 1.1 brezak sc->spkr_state = SPKR_OFF;
661 1.1 brezak sc->sc_mintr = 0;
662 1.15 mycroft sbdsp_haltdma(sc);
663 1.1 brezak
664 1.1 brezak DPRINTF(("sbdsp_close: closed\n"));
665 1.1 brezak }
666 1.1 brezak
667 1.1 brezak /*
668 1.1 brezak * Lower-level routines
669 1.1 brezak */
670 1.1 brezak
671 1.1 brezak /*
672 1.1 brezak * Reset the card.
673 1.1 brezak * Return non-zero if the card isn't detected.
674 1.1 brezak */
675 1.1 brezak int
676 1.1 brezak sbdsp_reset(sc)
677 1.1 brezak register struct sbdsp_softc *sc;
678 1.1 brezak {
679 1.14 mycroft register int iobase = sc->sc_iobase;
680 1.1 brezak
681 1.15 mycroft sc->sc_intr = 0;
682 1.16 mycroft if (sc->sc_dmadir != SB_DMA_NONE) {
683 1.15 mycroft isa_dmaabort(sc->sc_drq);
684 1.16 mycroft sc->sc_dmadir = SB_DMA_NONE;
685 1.15 mycroft }
686 1.15 mycroft sc->sc_last_hs_size = 0;
687 1.15 mycroft
688 1.1 brezak /*
689 1.1 brezak * See SBK, section 11.3.
690 1.1 brezak * We pulse a reset signal into the card.
691 1.1 brezak * Gee, what a brilliant hardware design.
692 1.1 brezak */
693 1.1 brezak outb(iobase + SBP_DSP_RESET, 1);
694 1.15 mycroft delay(10);
695 1.1 brezak outb(iobase + SBP_DSP_RESET, 0);
696 1.15 mycroft delay(30);
697 1.1 brezak if (sbdsp_rdsp(iobase) != SB_MAGIC)
698 1.1 brezak return -1;
699 1.15 mycroft
700 1.1 brezak return 0;
701 1.1 brezak }
702 1.1 brezak
703 1.23 mycroft int
704 1.23 mycroft sbdsp16_wait(iobase)
705 1.23 mycroft int iobase;
706 1.23 mycroft {
707 1.23 mycroft register int i;
708 1.23 mycroft
709 1.23 mycroft for (i = SBDSP_NPOLL; --i >= 0; ) {
710 1.23 mycroft register u_char x;
711 1.23 mycroft x = inb(iobase + SBP_DSP_WSTAT);
712 1.23 mycroft delay(10);
713 1.23 mycroft if ((x & SB_DSP_BUSY) == 0)
714 1.23 mycroft continue;
715 1.23 mycroft return 0;
716 1.23 mycroft }
717 1.23 mycroft ++sberr.wdsp;
718 1.23 mycroft return -1;
719 1.23 mycroft }
720 1.23 mycroft
721 1.1 brezak /*
722 1.1 brezak * Write a byte to the dsp.
723 1.1 brezak * XXX We are at the mercy of the card as we use a
724 1.1 brezak * polling loop and wait until it can take the byte.
725 1.1 brezak */
726 1.1 brezak int
727 1.14 mycroft sbdsp_wdsp(int iobase, int v)
728 1.1 brezak {
729 1.1 brezak register int i;
730 1.1 brezak
731 1.1 brezak for (i = SBDSP_NPOLL; --i >= 0; ) {
732 1.15 mycroft register u_char x;
733 1.15 mycroft x = inb(iobase + SBP_DSP_WSTAT);
734 1.15 mycroft delay(10);
735 1.15 mycroft if ((x & SB_DSP_BUSY) != 0)
736 1.15 mycroft continue;
737 1.1 brezak outb(iobase + SBP_DSP_WRITE, v);
738 1.15 mycroft delay(10);
739 1.1 brezak return 0;
740 1.1 brezak }
741 1.1 brezak ++sberr.wdsp;
742 1.1 brezak return -1;
743 1.1 brezak }
744 1.1 brezak
745 1.1 brezak /*
746 1.1 brezak * Read a byte from the DSP, using polling.
747 1.1 brezak */
748 1.1 brezak int
749 1.14 mycroft sbdsp_rdsp(int iobase)
750 1.1 brezak {
751 1.1 brezak register int i;
752 1.1 brezak
753 1.1 brezak for (i = SBDSP_NPOLL; --i >= 0; ) {
754 1.15 mycroft register u_char x;
755 1.15 mycroft x = inb(iobase + SBP_DSP_RSTAT);
756 1.15 mycroft delay(10);
757 1.15 mycroft if ((x & SB_DSP_READY) == 0)
758 1.1 brezak continue;
759 1.15 mycroft x = inb(iobase + SBP_DSP_READ);
760 1.15 mycroft delay(10);
761 1.15 mycroft return x;
762 1.1 brezak }
763 1.1 brezak ++sberr.rdsp;
764 1.1 brezak return -1;
765 1.1 brezak }
766 1.1 brezak
767 1.1 brezak /*
768 1.1 brezak * Doing certain things (like toggling the speaker) make
769 1.1 brezak * the SB hardware go away for a while, so pause a little.
770 1.1 brezak */
771 1.1 brezak void
772 1.1 brezak sbdsp_to(arg)
773 1.1 brezak void *arg;
774 1.1 brezak {
775 1.1 brezak wakeup(arg);
776 1.1 brezak }
777 1.1 brezak
778 1.1 brezak void
779 1.1 brezak sbdsp_pause(sc)
780 1.1 brezak struct sbdsp_softc *sc;
781 1.1 brezak {
782 1.1 brezak extern int hz;
783 1.1 brezak
784 1.1 brezak timeout(sbdsp_to, sbdsp_to, hz/8);
785 1.5 mycroft (void)tsleep(sbdsp_to, PWAIT, "sbpause", 0);
786 1.1 brezak }
787 1.1 brezak
788 1.1 brezak /*
789 1.1 brezak * Turn on the speaker. The SBK documention says this operation
790 1.1 brezak * can take up to 1/10 of a second. Higher level layers should
791 1.1 brezak * probably let the task sleep for this amount of time after
792 1.1 brezak * calling here. Otherwise, things might not work (because
793 1.1 brezak * sbdsp_wdsp() and sbdsp_rdsp() will probably timeout.)
794 1.1 brezak *
795 1.1 brezak * These engineers had their heads up their ass when
796 1.1 brezak * they designed this card.
797 1.1 brezak */
798 1.1 brezak void
799 1.1 brezak sbdsp_spkron(sc)
800 1.1 brezak struct sbdsp_softc *sc;
801 1.1 brezak {
802 1.1 brezak (void)sbdsp_wdsp(sc->sc_iobase, SB_DSP_SPKR_ON);
803 1.1 brezak sbdsp_pause(sc);
804 1.1 brezak }
805 1.1 brezak
806 1.1 brezak /*
807 1.1 brezak * Turn off the speaker; see comment above.
808 1.1 brezak */
809 1.1 brezak void
810 1.1 brezak sbdsp_spkroff(sc)
811 1.1 brezak struct sbdsp_softc *sc;
812 1.1 brezak {
813 1.1 brezak (void)sbdsp_wdsp(sc->sc_iobase, SB_DSP_SPKR_OFF);
814 1.1 brezak sbdsp_pause(sc);
815 1.1 brezak }
816 1.1 brezak
817 1.1 brezak /*
818 1.1 brezak * Read the version number out of the card. Return major code
819 1.1 brezak * in high byte, and minor code in low byte.
820 1.1 brezak */
821 1.1 brezak short
822 1.1 brezak sbversion(sc)
823 1.1 brezak struct sbdsp_softc *sc;
824 1.1 brezak {
825 1.14 mycroft register int iobase = sc->sc_iobase;
826 1.1 brezak short v;
827 1.1 brezak
828 1.1 brezak if (sbdsp_wdsp(iobase, SB_DSP_VERSION) < 0)
829 1.1 brezak return 0;
830 1.1 brezak v = sbdsp_rdsp(iobase) << 8;
831 1.1 brezak v |= sbdsp_rdsp(iobase);
832 1.1 brezak return ((v >= 0) ? v : 0);
833 1.1 brezak }
834 1.1 brezak
835 1.1 brezak /*
836 1.1 brezak * Halt a DMA in progress. A low-speed transfer can be
837 1.1 brezak * resumed with sbdsp_contdma().
838 1.1 brezak */
839 1.1 brezak int
840 1.1 brezak sbdsp_haltdma(addr)
841 1.5 mycroft void *addr;
842 1.1 brezak {
843 1.5 mycroft register struct sbdsp_softc *sc = addr;
844 1.1 brezak
845 1.1 brezak DPRINTF(("sbdsp_haltdma: sc=0x%x\n", sc));
846 1.1 brezak
847 1.15 mycroft sbdsp_reset(sc);
848 1.15 mycroft return 0;
849 1.1 brezak }
850 1.1 brezak
851 1.1 brezak int
852 1.1 brezak sbdsp_contdma(addr)
853 1.5 mycroft void *addr;
854 1.1 brezak {
855 1.5 mycroft register struct sbdsp_softc *sc = addr;
856 1.1 brezak
857 1.1 brezak DPRINTF(("sbdsp_contdma: sc=0x%x\n", sc));
858 1.1 brezak
859 1.1 brezak /* XXX how do we reinitialize the DMA controller state? do we care? */
860 1.1 brezak (void)sbdsp_wdsp(sc->sc_iobase, SB_DSP_CONT);
861 1.1 brezak return(0);
862 1.1 brezak }
863 1.1 brezak
864 1.23 mycroft int
865 1.23 mycroft sbdsp_setrate(sc, sr, isdac, ratep)
866 1.23 mycroft register struct sbdsp_softc *sc;
867 1.23 mycroft int sr;
868 1.23 mycroft int isdac;
869 1.23 mycroft int *ratep;
870 1.23 mycroft {
871 1.23 mycroft
872 1.23 mycroft /*
873 1.23 mycroft * XXXX
874 1.23 mycroft * More checks here?
875 1.23 mycroft */
876 1.23 mycroft if (sr < 5000 || sr > 44100)
877 1.23 mycroft return (EINVAL);
878 1.23 mycroft *ratep = sr;
879 1.23 mycroft return (0);
880 1.23 mycroft }
881 1.23 mycroft
882 1.1 brezak /*
883 1.1 brezak * Convert a linear sampling rate into the DAC time constant.
884 1.1 brezak * Set *mode to indicate the high/low-speed DMA operation.
885 1.1 brezak * Because of limitations of the card, not all rates are possible.
886 1.1 brezak * We return the time constant of the closest possible rate.
887 1.1 brezak * The sampling rate limits are different for the DAC and ADC,
888 1.1 brezak * so isdac indicates output, and !isdac indicates input.
889 1.1 brezak */
890 1.1 brezak int
891 1.16 mycroft sbdsp_srtotc(sc, sr, isdac, tcp, modep)
892 1.1 brezak register struct sbdsp_softc *sc;
893 1.1 brezak int sr;
894 1.1 brezak int isdac;
895 1.16 mycroft int *tcp, *modep;
896 1.1 brezak {
897 1.16 mycroft int tc, mode;
898 1.1 brezak
899 1.1 brezak if (sr == 0) {
900 1.16 mycroft tc = SB_LS_MIN;
901 1.16 mycroft mode = SB_ADAC_LS;
902 1.16 mycroft goto out;
903 1.1 brezak }
904 1.16 mycroft
905 1.16 mycroft tc = 256 - (1000000 / sr);
906 1.1 brezak
907 1.1 brezak if (tc < SB_LS_MIN) {
908 1.1 brezak tc = SB_LS_MIN;
909 1.16 mycroft mode = SB_ADAC_LS;
910 1.16 mycroft goto out;
911 1.1 brezak } else if (isdac) {
912 1.1 brezak if (tc <= SB_DAC_LS_MAX)
913 1.16 mycroft mode = SB_ADAC_LS;
914 1.1 brezak else {
915 1.16 mycroft mode = SB_ADAC_HS;
916 1.1 brezak if (tc > SB_DAC_HS_MAX)
917 1.1 brezak tc = SB_DAC_HS_MAX;
918 1.1 brezak }
919 1.1 brezak } else {
920 1.16 mycroft int adc_ls_max, adc_hs_max;
921 1.16 mycroft
922 1.16 mycroft /* XXX use better rounding--compare distance to nearest tc on both
923 1.16 mycroft sides of requested speed */
924 1.16 mycroft if (ISSBPROCLASS(sc)) {
925 1.16 mycroft adc_ls_max = SBPRO_ADC_LS_MAX;
926 1.16 mycroft adc_hs_max = SBPRO_ADC_HS_MAX;
927 1.16 mycroft } else {
928 1.16 mycroft adc_ls_max = SBCLA_ADC_LS_MAX;
929 1.16 mycroft adc_hs_max = SBCLA_ADC_HS_MAX;
930 1.16 mycroft }
931 1.16 mycroft
932 1.1 brezak if (tc <= adc_ls_max)
933 1.16 mycroft mode = SB_ADAC_LS;
934 1.1 brezak else {
935 1.16 mycroft mode = SB_ADAC_HS;
936 1.1 brezak if (tc > adc_hs_max)
937 1.1 brezak tc = adc_hs_max;
938 1.1 brezak }
939 1.1 brezak }
940 1.16 mycroft
941 1.16 mycroft out:
942 1.16 mycroft *tcp = tc;
943 1.16 mycroft *modep = mode;
944 1.16 mycroft return (0);
945 1.1 brezak }
946 1.1 brezak
947 1.1 brezak /*
948 1.1 brezak * Convert a DAC time constant to a sampling rate.
949 1.1 brezak * See SBK, section 12.
950 1.1 brezak */
951 1.1 brezak int
952 1.1 brezak sbdsp_tctosr(sc, tc)
953 1.1 brezak register struct sbdsp_softc *sc;
954 1.1 brezak int tc;
955 1.1 brezak {
956 1.1 brezak int adc;
957 1.1 brezak
958 1.1 brezak if (ISSBPROCLASS(sc))
959 1.1 brezak adc = SBPRO_ADC_HS_MAX;
960 1.1 brezak else
961 1.1 brezak adc = SBCLA_ADC_HS_MAX;
962 1.1 brezak
963 1.1 brezak if (tc > adc)
964 1.1 brezak tc = adc;
965 1.1 brezak
966 1.1 brezak return (1000000 / (256 - tc));
967 1.1 brezak }
968 1.1 brezak
969 1.1 brezak int
970 1.23 mycroft sbdsp_set_timeconst(sc, tc)
971 1.1 brezak register struct sbdsp_softc *sc;
972 1.16 mycroft int tc;
973 1.1 brezak {
974 1.14 mycroft register int iobase;
975 1.1 brezak
976 1.1 brezak /*
977 1.1 brezak * A SBPro in stereo mode uses time constants at double the
978 1.1 brezak * actual rate.
979 1.1 brezak */
980 1.23 mycroft if (ISSBPRO(sc) && sc->sc_channels == 2)
981 1.16 mycroft tc = 256 - ((256 - tc) / 2);
982 1.1 brezak
983 1.23 mycroft DPRINTF(("sbdsp_set_timeconst: sc=%p tc=%d\n", sc, tc));
984 1.1 brezak
985 1.1 brezak iobase = sc->sc_iobase;
986 1.1 brezak if (sbdsp_wdsp(iobase, SB_DSP_TIMECONST) < 0 ||
987 1.1 brezak sbdsp_wdsp(iobase, tc) < 0)
988 1.16 mycroft return (EIO);
989 1.1 brezak
990 1.16 mycroft return (0);
991 1.1 brezak }
992 1.1 brezak
993 1.1 brezak int
994 1.1 brezak sbdsp_dma_input(addr, p, cc, intr, arg)
995 1.5 mycroft void *addr;
996 1.1 brezak void *p;
997 1.1 brezak int cc;
998 1.1 brezak void (*intr)();
999 1.1 brezak void *arg;
1000 1.1 brezak {
1001 1.5 mycroft register struct sbdsp_softc *sc = addr;
1002 1.14 mycroft register int iobase;
1003 1.1 brezak
1004 1.12 brezak #ifdef AUDIO_DEBUG
1005 1.1 brezak if (sbdspdebug > 1)
1006 1.1 brezak Dprintf("sbdsp_dma_input: cc=%d 0x%x (0x%x)\n", cc, intr, arg);
1007 1.1 brezak #endif
1008 1.23 mycroft if (sc->sc_channels == 2 && (cc & 1)) {
1009 1.1 brezak DPRINTF(("sbdsp_dma_input: stereo input, odd bytecnt\n"));
1010 1.1 brezak return EIO;
1011 1.1 brezak }
1012 1.15 mycroft
1013 1.1 brezak iobase = sc->sc_iobase;
1014 1.16 mycroft if (sc->sc_dmadir != SB_DMA_IN) {
1015 1.23 mycroft if (ISSBPRO(sc)) {
1016 1.23 mycroft if (sc->sc_channels == 2) {
1017 1.16 mycroft if (sbdsp_wdsp(iobase, SB_DSP_RECORD_STEREO) < 0)
1018 1.16 mycroft goto badmode;
1019 1.16 mycroft sbdsp_mix_write(sc, SBP_INFILTER,
1020 1.18 mycroft (sbdsp_mix_read(sc, SBP_INFILTER) &
1021 1.18 mycroft ~SBP_IFILTER_MASK) | SBP_FILTER_OFF);
1022 1.16 mycroft } else {
1023 1.16 mycroft if (sbdsp_wdsp(iobase, SB_DSP_RECORD_MONO) < 0)
1024 1.16 mycroft goto badmode;
1025 1.17 jtk sbdsp_mix_write(sc, SBP_INFILTER,
1026 1.18 mycroft (sbdsp_mix_read(sc, SBP_INFILTER) &
1027 1.18 mycroft ~SBP_IFILTER_MASK) | sc->in_filter);
1028 1.16 mycroft }
1029 1.1 brezak }
1030 1.16 mycroft
1031 1.23 mycroft if (ISSB16CLASS(sc)) {
1032 1.23 mycroft if (sbdsp_wdsp(iobase, SB_DSP16_INPUTRATE) < 0 ||
1033 1.23 mycroft sbdsp_wdsp(iobase, sc->sc_irate >> 8) < 0 ||
1034 1.23 mycroft sbdsp_wdsp(iobase, sc->sc_irate) < 0)
1035 1.23 mycroft goto giveup;
1036 1.23 mycroft } else
1037 1.23 mycroft sbdsp_set_timeconst(sc, sc->sc_itc);
1038 1.16 mycroft sc->sc_dmadir = SB_DMA_IN;
1039 1.1 brezak }
1040 1.1 brezak
1041 1.23 mycroft isa_dmastart(DMAMODE_READ, p, cc, sc->sc_drq);
1042 1.1 brezak sc->sc_intr = intr;
1043 1.1 brezak sc->sc_arg = arg;
1044 1.23 mycroft sc->dmaflags = DMAMODE_READ;
1045 1.1 brezak sc->dmaaddr = p;
1046 1.23 mycroft sc->dmacnt = cc; /* DMA controller is strange...? */
1047 1.15 mycroft
1048 1.23 mycroft if (sc->sc_precision == 16)
1049 1.23 mycroft cc >>= 1;
1050 1.23 mycroft --cc;
1051 1.23 mycroft if (ISSB16CLASS(sc)) {
1052 1.23 mycroft if (sbdsp_wdsp(iobase, sc->sc_precision == 16 ? SB_DSP16_RDMA_16 :
1053 1.23 mycroft SB_DSP16_RDMA_8) < 0 ||
1054 1.23 mycroft sbdsp_wdsp(iobase, (sc->sc_precision == 16 ? 0x10 : 0x00) |
1055 1.23 mycroft (sc->sc_channels == 2 ? 0x20 : 0x00)) < 0 ||
1056 1.23 mycroft sbdsp16_wait(iobase) ||
1057 1.23 mycroft sbdsp_wdsp(iobase, cc) < 0 ||
1058 1.23 mycroft sbdsp_wdsp(iobase, cc >> 8) < 0) {
1059 1.23 mycroft DPRINTF(("sbdsp_dma_input: SB16 DMA start failed\n"));
1060 1.23 mycroft goto giveup;
1061 1.23 mycroft }
1062 1.23 mycroft } else if (sc->sc_imode == SB_ADAC_LS) {
1063 1.1 brezak if (sbdsp_wdsp(iobase, SB_DSP_RDMA) < 0 ||
1064 1.1 brezak sbdsp_wdsp(iobase, cc) < 0 ||
1065 1.1 brezak sbdsp_wdsp(iobase, cc >> 8) < 0) {
1066 1.15 mycroft DPRINTF(("sbdsp_dma_input: LS DMA start failed\n"));
1067 1.1 brezak goto giveup;
1068 1.1 brezak }
1069 1.23 mycroft } else {
1070 1.15 mycroft if (cc != sc->sc_last_hs_size) {
1071 1.1 brezak if (sbdsp_wdsp(iobase, SB_DSP_BLOCKSIZE) < 0 ||
1072 1.1 brezak sbdsp_wdsp(iobase, cc) < 0 ||
1073 1.15 mycroft sbdsp_wdsp(iobase, cc >> 8) < 0) {
1074 1.15 mycroft DPRINTF(("sbdsp_dma_input: HS DMA start failed\n"));
1075 1.1 brezak goto giveup;
1076 1.15 mycroft }
1077 1.15 mycroft sc->sc_last_hs_size = cc;
1078 1.1 brezak }
1079 1.15 mycroft if (sbdsp_wdsp(iobase, SB_DSP_HS_INPUT) < 0) {
1080 1.15 mycroft DPRINTF(("sbdsp_dma_input: HS DMA restart failed\n"));
1081 1.1 brezak goto giveup;
1082 1.15 mycroft }
1083 1.1 brezak }
1084 1.1 brezak return 0;
1085 1.1 brezak
1086 1.1 brezak giveup:
1087 1.1 brezak sbdsp_reset(sc);
1088 1.1 brezak return EIO;
1089 1.15 mycroft
1090 1.1 brezak badmode:
1091 1.1 brezak DPRINTF(("sbdsp_dma_input: can't set %s mode\n",
1092 1.23 mycroft sc->sc_channels == 2 ? "stereo" : "mono"));
1093 1.1 brezak return EIO;
1094 1.1 brezak }
1095 1.1 brezak
1096 1.1 brezak int
1097 1.1 brezak sbdsp_dma_output(addr, p, cc, intr, arg)
1098 1.5 mycroft void *addr;
1099 1.1 brezak void *p;
1100 1.1 brezak int cc;
1101 1.1 brezak void (*intr)();
1102 1.1 brezak void *arg;
1103 1.1 brezak {
1104 1.5 mycroft register struct sbdsp_softc *sc = addr;
1105 1.14 mycroft register int iobase;
1106 1.1 brezak
1107 1.12 brezak #ifdef AUDIO_DEBUG
1108 1.1 brezak if (sbdspdebug > 1)
1109 1.1 brezak Dprintf("sbdsp_dma_output: cc=%d 0x%x (0x%x)\n", cc, intr, arg);
1110 1.1 brezak #endif
1111 1.23 mycroft if (sc->sc_channels == 2 && (cc & 1)) {
1112 1.1 brezak DPRINTF(("stereo playback odd bytes (%d)\n", cc));
1113 1.1 brezak return EIO;
1114 1.1 brezak }
1115 1.1 brezak
1116 1.15 mycroft iobase = sc->sc_iobase;
1117 1.16 mycroft if (sc->sc_dmadir != SB_DMA_OUT) {
1118 1.23 mycroft if (ISSBPRO(sc)) {
1119 1.16 mycroft /* make sure we re-set stereo mixer bit when we start
1120 1.16 mycroft output. */
1121 1.16 mycroft sbdsp_mix_write(sc, SBP_STEREO,
1122 1.16 mycroft (sbdsp_mix_read(sc, SBP_STEREO) & ~SBP_PLAYMODE_MASK) |
1123 1.23 mycroft (sc->sc_channels == 2 ? SBP_PLAYMODE_STEREO : SBP_PLAYMODE_MONO));
1124 1.16 mycroft }
1125 1.16 mycroft
1126 1.23 mycroft if (ISSB16CLASS(sc)) {
1127 1.23 mycroft if (sbdsp_wdsp(iobase, SB_DSP16_OUTPUTRATE) < 0 ||
1128 1.23 mycroft sbdsp_wdsp(iobase, sc->sc_orate >> 8) < 0 ||
1129 1.23 mycroft sbdsp_wdsp(iobase, sc->sc_orate) < 0)
1130 1.23 mycroft goto giveup;
1131 1.23 mycroft } else
1132 1.23 mycroft sbdsp_set_timeconst(sc, sc->sc_otc);
1133 1.16 mycroft sc->sc_dmadir = SB_DMA_OUT;
1134 1.1 brezak }
1135 1.15 mycroft
1136 1.23 mycroft isa_dmastart(DMAMODE_WRITE, p, cc, sc->sc_drq);
1137 1.1 brezak sc->sc_intr = intr;
1138 1.1 brezak sc->sc_arg = arg;
1139 1.23 mycroft sc->dmaflags = DMAMODE_WRITE;
1140 1.1 brezak sc->dmaaddr = p;
1141 1.23 mycroft sc->dmacnt = cc; /* a vagary of how DMA works, apparently. */
1142 1.1 brezak
1143 1.23 mycroft if (sc->sc_precision == 16)
1144 1.23 mycroft cc >>= 1;
1145 1.23 mycroft --cc;
1146 1.23 mycroft if (ISSB16CLASS(sc)) {
1147 1.23 mycroft if (sbdsp_wdsp(iobase, sc->sc_precision == 16 ? SB_DSP16_WDMA_16 :
1148 1.23 mycroft SB_DSP16_WDMA_8) < 0 ||
1149 1.23 mycroft sbdsp_wdsp(iobase, (sc->sc_precision == 16 ? 0x10 : 0x00) |
1150 1.23 mycroft (sc->sc_channels == 2 ? 0x20 : 0x00)) < 0 ||
1151 1.23 mycroft sbdsp16_wait(iobase) ||
1152 1.23 mycroft sbdsp_wdsp(iobase, cc) < 0 ||
1153 1.23 mycroft sbdsp_wdsp(iobase, cc >> 8) < 0) {
1154 1.23 mycroft DPRINTF(("sbdsp_dma_output: SB16 DMA start failed\n"));
1155 1.23 mycroft goto giveup;
1156 1.23 mycroft }
1157 1.23 mycroft } else if (sc->sc_omode == SB_ADAC_LS) {
1158 1.1 brezak if (sbdsp_wdsp(iobase, SB_DSP_WDMA) < 0 ||
1159 1.1 brezak sbdsp_wdsp(iobase, cc) < 0 ||
1160 1.1 brezak sbdsp_wdsp(iobase, cc >> 8) < 0) {
1161 1.1 brezak DPRINTF(("sbdsp_dma_output: LS DMA start failed\n"));
1162 1.1 brezak goto giveup;
1163 1.1 brezak }
1164 1.23 mycroft } else {
1165 1.15 mycroft if (cc != sc->sc_last_hs_size) {
1166 1.15 mycroft if (sbdsp_wdsp(iobase, SB_DSP_BLOCKSIZE) < 0 ||
1167 1.15 mycroft sbdsp_wdsp(iobase, cc) < 0 ||
1168 1.1 brezak sbdsp_wdsp(iobase, cc >> 8) < 0) {
1169 1.1 brezak DPRINTF(("sbdsp_dma_output: HS DMA start failed\n"));
1170 1.1 brezak goto giveup;
1171 1.1 brezak }
1172 1.15 mycroft sc->sc_last_hs_size = cc;
1173 1.1 brezak }
1174 1.1 brezak if (sbdsp_wdsp(iobase, SB_DSP_HS_OUTPUT) < 0) {
1175 1.15 mycroft DPRINTF(("sbdsp_dma_output: HS DMA restart failed\n"));
1176 1.15 mycroft goto giveup;
1177 1.1 brezak }
1178 1.1 brezak }
1179 1.1 brezak return 0;
1180 1.1 brezak
1181 1.15 mycroft giveup:
1182 1.1 brezak sbdsp_reset(sc);
1183 1.1 brezak return EIO;
1184 1.1 brezak }
1185 1.1 brezak
1186 1.1 brezak /*
1187 1.1 brezak * Only the DSP unit on the sound blaster generates interrupts.
1188 1.1 brezak * There are three cases of interrupt: reception of a midi byte
1189 1.1 brezak * (when mode is enabled), completion of dma transmission, or
1190 1.1 brezak * completion of a dma reception. The three modes are mutually
1191 1.1 brezak * exclusive so we know a priori which event has occurred.
1192 1.1 brezak */
1193 1.1 brezak int
1194 1.6 cgd sbdsp_intr(arg)
1195 1.6 cgd void *arg;
1196 1.1 brezak {
1197 1.6 cgd register struct sbdsp_softc *sc = arg;
1198 1.15 mycroft u_char x;
1199 1.1 brezak
1200 1.12 brezak #ifdef AUDIO_DEBUG
1201 1.1 brezak if (sbdspdebug > 1)
1202 1.1 brezak Dprintf("sbdsp_intr: intr=0x%x\n", sc->sc_intr);
1203 1.1 brezak #endif
1204 1.20 mycroft if (!isa_dmafinished(sc->sc_drq)) {
1205 1.20 mycroft printf("sbdsp_intr: not finished\n");
1206 1.20 mycroft return 0;
1207 1.20 mycroft }
1208 1.1 brezak sc->sc_interrupts++;
1209 1.1 brezak /* clear interrupt */
1210 1.23 mycroft #ifdef notyet
1211 1.23 mycroft x = sbdsp_mix_read(sc, 0x82);
1212 1.23 mycroft x = inb(sc->sc_iobase + 15);
1213 1.23 mycroft #endif
1214 1.15 mycroft x = inb(sc->sc_iobase + SBP_DSP_RSTAT);
1215 1.15 mycroft delay(10);
1216 1.1 brezak #if 0
1217 1.1 brezak if (sc->sc_mintr != 0) {
1218 1.15 mycroft x = sbdsp_rdsp(sc->sc_iobase);
1219 1.15 mycroft (*sc->sc_mintr)(sc->sc_arg, x);
1220 1.1 brezak } else
1221 1.1 brezak #endif
1222 1.1 brezak if (sc->sc_intr != 0) {
1223 1.18 mycroft isa_dmadone(sc->dmaflags, sc->dmaaddr, sc->dmacnt, sc->sc_drq);
1224 1.1 brezak (*sc->sc_intr)(sc->sc_arg);
1225 1.1 brezak }
1226 1.1 brezak else
1227 1.1 brezak return 0;
1228 1.1 brezak return 1;
1229 1.1 brezak }
1230 1.1 brezak
1231 1.1 brezak #if 0
1232 1.1 brezak /*
1233 1.1 brezak * Enter midi uart mode and arrange for read interrupts
1234 1.1 brezak * to vector to `intr'. This puts the card in a mode
1235 1.1 brezak * which allows only midi I/O; the card must be reset
1236 1.1 brezak * to leave this mode. Unfortunately, the card does not
1237 1.1 brezak * use transmit interrupts, so bytes must be output
1238 1.1 brezak * using polling. To keep the polling overhead to a
1239 1.1 brezak * minimum, output should be driven off a timer.
1240 1.1 brezak * This is a little tricky since only 320us separate
1241 1.1 brezak * consecutive midi bytes.
1242 1.1 brezak */
1243 1.1 brezak void
1244 1.1 brezak sbdsp_set_midi_mode(sc, intr, arg)
1245 1.1 brezak struct sbdsp_softc *sc;
1246 1.1 brezak void (*intr)();
1247 1.1 brezak void *arg;
1248 1.1 brezak {
1249 1.1 brezak
1250 1.1 brezak sbdsp_wdsp(sc->sc_iobase, SB_MIDI_UART_INTR);
1251 1.1 brezak sc->sc_mintr = intr;
1252 1.1 brezak sc->sc_intr = 0;
1253 1.1 brezak sc->sc_arg = arg;
1254 1.1 brezak }
1255 1.1 brezak
1256 1.1 brezak /*
1257 1.1 brezak * Write a byte to the midi port, when in midi uart mode.
1258 1.1 brezak */
1259 1.1 brezak void
1260 1.1 brezak sbdsp_midi_output(sc, v)
1261 1.1 brezak struct sbdsp_softc *sc;
1262 1.1 brezak int v;
1263 1.1 brezak {
1264 1.1 brezak
1265 1.1 brezak if (sbdsp_wdsp(sc->sc_iobase, v) < 0)
1266 1.1 brezak ++sberr.wmidi;
1267 1.1 brezak }
1268 1.1 brezak #endif
1269 1.1 brezak
1270 1.1 brezak u_int
1271 1.23 mycroft sbdsp_get_silence(encoding)
1272 1.23 mycroft int encoding;
1273 1.1 brezak {
1274 1.1 brezak #define ULAW_SILENCE 0x7f
1275 1.1 brezak #define LINEAR_SILENCE 0
1276 1.18 mycroft u_int auzero;
1277 1.1 brezak
1278 1.23 mycroft switch (encoding) {
1279 1.18 mycroft case AUDIO_ENCODING_ULAW:
1280 1.18 mycroft auzero = ULAW_SILENCE;
1281 1.18 mycroft break;
1282 1.18 mycroft case AUDIO_ENCODING_PCM16:
1283 1.18 mycroft default:
1284 1.18 mycroft auzero = LINEAR_SILENCE;
1285 1.18 mycroft break;
1286 1.18 mycroft }
1287 1.1 brezak
1288 1.18 mycroft return (auzero);
1289 1.1 brezak }
1290 1.1 brezak
1291 1.1 brezak int
1292 1.1 brezak sbdsp_setfd(addr, flag)
1293 1.5 mycroft void *addr;
1294 1.1 brezak int flag;
1295 1.1 brezak {
1296 1.1 brezak /* Can't do full-duplex */
1297 1.1 brezak return(ENOTTY);
1298 1.1 brezak }
1299 1.1 brezak
1300 1.1 brezak int
1301 1.1 brezak sbdsp_mixer_set_port(addr, cp)
1302 1.18 mycroft void *addr;
1303 1.18 mycroft mixer_ctrl_t *cp;
1304 1.1 brezak {
1305 1.18 mycroft register struct sbdsp_softc *sc = addr;
1306 1.18 mycroft int src, gain;
1307 1.1 brezak
1308 1.18 mycroft DPRINTF(("sbdsp_mixer_set_port: port=%d num_channels=%d\n", cp->dev,
1309 1.18 mycroft cp->un.value.num_channels));
1310 1.1 brezak
1311 1.22 mycroft if (!ISSBPROCLASS(sc))
1312 1.22 mycroft return EINVAL;
1313 1.22 mycroft
1314 1.1 brezak /*
1315 1.18 mycroft * Everything is a value except for SBPro BASS/TREBLE and
1316 1.18 mycroft * RECORD_SOURCE
1317 1.1 brezak */
1318 1.18 mycroft switch (cp->dev) {
1319 1.1 brezak case SB_SPEAKER:
1320 1.18 mycroft cp->dev = SB_MASTER_VOL;
1321 1.18 mycroft case SB_MIC_PORT:
1322 1.18 mycroft case SB_LINE_IN_PORT:
1323 1.18 mycroft case SB_DAC_PORT:
1324 1.18 mycroft case SB_FM_PORT:
1325 1.18 mycroft case SB_CD_PORT:
1326 1.18 mycroft case SB_MASTER_VOL:
1327 1.18 mycroft if (cp->type != AUDIO_MIXER_VALUE)
1328 1.18 mycroft return EINVAL;
1329 1.18 mycroft
1330 1.18 mycroft /*
1331 1.18 mycroft * All the mixer ports are stereo except for the microphone.
1332 1.18 mycroft * If we get a single-channel gain value passed in, then we
1333 1.18 mycroft * duplicate it to both left and right channels.
1334 1.18 mycroft */
1335 1.18 mycroft
1336 1.18 mycroft switch (cp->dev) {
1337 1.18 mycroft case SB_MIC_PORT:
1338 1.18 mycroft if (cp->un.value.num_channels != 1)
1339 1.18 mycroft return EINVAL;
1340 1.18 mycroft
1341 1.18 mycroft /* handle funny microphone gain */
1342 1.18 mycroft gain = SBP_AGAIN_TO_MICGAIN(cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]);
1343 1.18 mycroft break;
1344 1.18 mycroft case SB_LINE_IN_PORT:
1345 1.18 mycroft case SB_DAC_PORT:
1346 1.18 mycroft case SB_FM_PORT:
1347 1.18 mycroft case SB_CD_PORT:
1348 1.18 mycroft case SB_MASTER_VOL:
1349 1.18 mycroft switch (cp->un.value.num_channels) {
1350 1.18 mycroft case 1:
1351 1.21 mycroft gain = sbdsp_mono_vol(SBP_AGAIN_TO_SBGAIN(cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]));
1352 1.18 mycroft break;
1353 1.18 mycroft case 2:
1354 1.18 mycroft gain = sbdsp_stereo_vol(SBP_AGAIN_TO_SBGAIN(cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT]),
1355 1.18 mycroft SBP_AGAIN_TO_SBGAIN(cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT]));
1356 1.18 mycroft break;
1357 1.18 mycroft default:
1358 1.18 mycroft return EINVAL;
1359 1.18 mycroft }
1360 1.18 mycroft break;
1361 1.18 mycroft }
1362 1.18 mycroft
1363 1.18 mycroft switch (cp->dev) {
1364 1.18 mycroft case SB_MIC_PORT:
1365 1.18 mycroft src = SBP_MIC_VOL;
1366 1.18 mycroft break;
1367 1.18 mycroft case SB_MASTER_VOL:
1368 1.18 mycroft src = SBP_MASTER_VOL;
1369 1.18 mycroft break;
1370 1.18 mycroft case SB_LINE_IN_PORT:
1371 1.18 mycroft src = SBP_LINE_VOL;
1372 1.18 mycroft break;
1373 1.18 mycroft case SB_DAC_PORT:
1374 1.18 mycroft src = SBP_DAC_VOL;
1375 1.18 mycroft break;
1376 1.18 mycroft case SB_FM_PORT:
1377 1.18 mycroft src = SBP_FM_VOL;
1378 1.18 mycroft break;
1379 1.18 mycroft case SB_CD_PORT:
1380 1.18 mycroft src = SBP_CD_VOL;
1381 1.18 mycroft break;
1382 1.18 mycroft }
1383 1.18 mycroft
1384 1.18 mycroft sbdsp_mix_write(sc, src, gain);
1385 1.18 mycroft sc->gain[cp->dev] = gain;
1386 1.18 mycroft break;
1387 1.18 mycroft
1388 1.18 mycroft case SB_TREBLE:
1389 1.18 mycroft case SB_BASS:
1390 1.1 brezak case SB_RECORD_SOURCE:
1391 1.18 mycroft if (cp->type != AUDIO_MIXER_ENUM)
1392 1.18 mycroft return EINVAL;
1393 1.18 mycroft
1394 1.18 mycroft switch (cp->dev) {
1395 1.18 mycroft case SB_TREBLE:
1396 1.18 mycroft return sbdsp_set_ifilter(addr, cp->un.ord ? SBP_TREBLE_EQ : 0);
1397 1.18 mycroft case SB_BASS:
1398 1.18 mycroft return sbdsp_set_ifilter(addr, cp->un.ord ? SBP_BASS_EQ : 0);
1399 1.18 mycroft case SB_RECORD_SOURCE:
1400 1.18 mycroft return sbdsp_set_in_port(addr, cp->un.ord);
1401 1.18 mycroft }
1402 1.1 brezak
1403 1.18 mycroft break;
1404 1.22 mycroft
1405 1.22 mycroft default:
1406 1.22 mycroft return EINVAL;
1407 1.18 mycroft }
1408 1.1 brezak
1409 1.18 mycroft return (0);
1410 1.1 brezak }
1411 1.1 brezak
1412 1.1 brezak int
1413 1.1 brezak sbdsp_mixer_get_port(addr, cp)
1414 1.18 mycroft void *addr;
1415 1.18 mycroft mixer_ctrl_t *cp;
1416 1.1 brezak {
1417 1.18 mycroft register struct sbdsp_softc *sc = addr;
1418 1.19 mycroft int gain;
1419 1.1 brezak
1420 1.18 mycroft DPRINTF(("sbdsp_mixer_get_port: port=%d", cp->dev));
1421 1.1 brezak
1422 1.22 mycroft if (!ISSBPROCLASS(sc))
1423 1.22 mycroft return EINVAL;
1424 1.22 mycroft
1425 1.18 mycroft switch (cp->dev) {
1426 1.18 mycroft case SB_SPEAKER:
1427 1.18 mycroft cp->dev = SB_MASTER_VOL;
1428 1.17 jtk case SB_MIC_PORT:
1429 1.1 brezak case SB_LINE_IN_PORT:
1430 1.18 mycroft case SB_DAC_PORT:
1431 1.18 mycroft case SB_FM_PORT:
1432 1.18 mycroft case SB_CD_PORT:
1433 1.18 mycroft case SB_MASTER_VOL:
1434 1.18 mycroft gain = sc->gain[cp->dev];
1435 1.18 mycroft
1436 1.18 mycroft switch (cp->dev) {
1437 1.18 mycroft case SB_MIC_PORT:
1438 1.18 mycroft if (cp->un.value.num_channels != 1)
1439 1.18 mycroft return EINVAL;
1440 1.18 mycroft
1441 1.18 mycroft cp->un.value.level[AUDIO_MIXER_LEVEL_MONO] = SBP_MICGAIN_TO_AGAIN(gain);
1442 1.18 mycroft break;
1443 1.18 mycroft case SB_LINE_IN_PORT:
1444 1.18 mycroft case SB_DAC_PORT:
1445 1.18 mycroft case SB_FM_PORT:
1446 1.18 mycroft case SB_CD_PORT:
1447 1.18 mycroft case SB_MASTER_VOL:
1448 1.18 mycroft switch (cp->un.value.num_channels) {
1449 1.18 mycroft case 1:
1450 1.18 mycroft cp->un.value.level[AUDIO_MIXER_LEVEL_MONO] = SBP_SBGAIN_TO_AGAIN(gain);
1451 1.18 mycroft break;
1452 1.18 mycroft case 2:
1453 1.18 mycroft cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = SBP_LEFTGAIN(gain);
1454 1.18 mycroft cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = SBP_RIGHTGAIN(gain);
1455 1.18 mycroft break;
1456 1.18 mycroft default:
1457 1.18 mycroft return EINVAL;
1458 1.18 mycroft }
1459 1.18 mycroft break;
1460 1.18 mycroft }
1461 1.18 mycroft
1462 1.22 mycroft break;
1463 1.22 mycroft
1464 1.17 jtk case SB_TREBLE:
1465 1.17 jtk case SB_BASS:
1466 1.18 mycroft case SB_RECORD_SOURCE:
1467 1.18 mycroft switch (cp->dev) {
1468 1.18 mycroft case SB_TREBLE:
1469 1.18 mycroft cp->un.ord = sbdsp_get_ifilter(addr) == SBP_TREBLE_EQ;
1470 1.18 mycroft return 0;
1471 1.18 mycroft case SB_BASS:
1472 1.18 mycroft cp->un.ord = sbdsp_get_ifilter(addr) == SBP_BASS_EQ;
1473 1.18 mycroft return 0;
1474 1.18 mycroft case SB_RECORD_SOURCE:
1475 1.18 mycroft cp->un.ord = sbdsp_get_in_port(addr);
1476 1.18 mycroft return 0;
1477 1.18 mycroft }
1478 1.18 mycroft
1479 1.1 brezak break;
1480 1.22 mycroft
1481 1.22 mycroft default:
1482 1.22 mycroft return EINVAL;
1483 1.18 mycroft }
1484 1.18 mycroft
1485 1.18 mycroft return (0);
1486 1.1 brezak }
1487 1.1 brezak
1488 1.1 brezak int
1489 1.1 brezak sbdsp_mixer_query_devinfo(addr, dip)
1490 1.18 mycroft void *addr;
1491 1.18 mycroft register mixer_devinfo_t *dip;
1492 1.1 brezak {
1493 1.18 mycroft register struct sbdsp_softc *sc = addr;
1494 1.18 mycroft
1495 1.18 mycroft DPRINTF(("sbdsp_mixer_query_devinfo: index=%d\n", dip->index));
1496 1.18 mycroft
1497 1.18 mycroft switch (dip->index) {
1498 1.18 mycroft case SB_MIC_PORT:
1499 1.18 mycroft dip->type = AUDIO_MIXER_VALUE;
1500 1.18 mycroft dip->mixer_class = SB_INPUT_CLASS;
1501 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1502 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1503 1.18 mycroft strcpy(dip->label.name, AudioNmicrophone);
1504 1.18 mycroft dip->un.v.num_channels = 1;
1505 1.18 mycroft strcpy(dip->un.v.units.name, AudioNvolume);
1506 1.18 mycroft return 0;
1507 1.18 mycroft
1508 1.18 mycroft case SB_SPEAKER:
1509 1.18 mycroft dip->type = AUDIO_MIXER_VALUE;
1510 1.18 mycroft dip->mixer_class = SB_OUTPUT_CLASS;
1511 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1512 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1513 1.18 mycroft strcpy(dip->label.name, AudioNspeaker);
1514 1.18 mycroft dip->un.v.num_channels = 1;
1515 1.18 mycroft strcpy(dip->un.v.units.name, AudioNvolume);
1516 1.18 mycroft return 0;
1517 1.18 mycroft
1518 1.18 mycroft case SB_INPUT_CLASS:
1519 1.18 mycroft dip->type = AUDIO_MIXER_CLASS;
1520 1.18 mycroft dip->mixer_class = SB_INPUT_CLASS;
1521 1.18 mycroft dip->next = dip->prev = AUDIO_MIXER_LAST;
1522 1.18 mycroft strcpy(dip->label.name, AudioCInputs);
1523 1.18 mycroft return 0;
1524 1.1 brezak
1525 1.18 mycroft case SB_OUTPUT_CLASS:
1526 1.18 mycroft dip->type = AUDIO_MIXER_CLASS;
1527 1.18 mycroft dip->mixer_class = SB_OUTPUT_CLASS;
1528 1.18 mycroft dip->next = dip->prev = AUDIO_MIXER_LAST;
1529 1.18 mycroft strcpy(dip->label.name, AudioCOutputs);
1530 1.18 mycroft return 0;
1531 1.18 mycroft }
1532 1.18 mycroft
1533 1.18 mycroft if (ISSBPROCLASS(sc)) {
1534 1.18 mycroft switch (dip->index) {
1535 1.18 mycroft case SB_LINE_IN_PORT:
1536 1.18 mycroft dip->type = AUDIO_MIXER_VALUE;
1537 1.18 mycroft dip->mixer_class = SB_INPUT_CLASS;
1538 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1539 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1540 1.18 mycroft strcpy(dip->label.name, AudioNline);
1541 1.18 mycroft dip->un.v.num_channels = 2;
1542 1.18 mycroft strcpy(dip->un.v.units.name, AudioNvolume);
1543 1.18 mycroft return 0;
1544 1.1 brezak
1545 1.18 mycroft case SB_DAC_PORT:
1546 1.18 mycroft dip->type = AUDIO_MIXER_VALUE;
1547 1.18 mycroft dip->mixer_class = SB_INPUT_CLASS;
1548 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1549 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1550 1.18 mycroft strcpy(dip->label.name, AudioNdac);
1551 1.18 mycroft dip->un.v.num_channels = 2;
1552 1.18 mycroft strcpy(dip->un.v.units.name, AudioNvolume);
1553 1.18 mycroft return 0;
1554 1.17 jtk
1555 1.18 mycroft case SB_CD_PORT:
1556 1.18 mycroft dip->type = AUDIO_MIXER_VALUE;
1557 1.18 mycroft dip->mixer_class = SB_INPUT_CLASS;
1558 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1559 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1560 1.18 mycroft strcpy(dip->label.name, AudioNcd);
1561 1.18 mycroft dip->un.v.num_channels = 2;
1562 1.18 mycroft strcpy(dip->un.v.units.name, AudioNvolume);
1563 1.18 mycroft return 0;
1564 1.1 brezak
1565 1.18 mycroft case SB_FM_PORT:
1566 1.18 mycroft dip->type = AUDIO_MIXER_VALUE;
1567 1.18 mycroft dip->mixer_class = SB_INPUT_CLASS;
1568 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1569 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1570 1.18 mycroft strcpy(dip->label.name, AudioNfmsynth);
1571 1.18 mycroft dip->un.v.num_channels = 2;
1572 1.18 mycroft strcpy(dip->un.v.units.name, AudioNvolume);
1573 1.18 mycroft return 0;
1574 1.18 mycroft
1575 1.18 mycroft case SB_MASTER_VOL:
1576 1.18 mycroft dip->type = AUDIO_MIXER_VALUE;
1577 1.18 mycroft dip->mixer_class = SB_OUTPUT_CLASS;
1578 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1579 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1580 1.18 mycroft strcpy(dip->label.name, AudioNvolume);
1581 1.18 mycroft dip->un.v.num_channels = 2;
1582 1.18 mycroft strcpy(dip->un.v.units.name, AudioNvolume);
1583 1.18 mycroft return 0;
1584 1.18 mycroft
1585 1.18 mycroft case SB_RECORD_SOURCE:
1586 1.18 mycroft dip->mixer_class = SB_RECORD_CLASS;
1587 1.18 mycroft dip->type = AUDIO_MIXER_ENUM;
1588 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1589 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1590 1.18 mycroft strcpy(dip->label.name, AudioNsource);
1591 1.18 mycroft dip->un.e.num_mem = 3;
1592 1.18 mycroft strcpy(dip->un.e.member[0].label.name, AudioNmicrophone);
1593 1.18 mycroft dip->un.e.member[0].ord = SB_MIC_PORT;
1594 1.18 mycroft strcpy(dip->un.e.member[1].label.name, AudioNcd);
1595 1.18 mycroft dip->un.e.member[1].ord = SB_CD_PORT;
1596 1.18 mycroft strcpy(dip->un.e.member[2].label.name, AudioNline);
1597 1.18 mycroft dip->un.e.member[2].ord = SB_LINE_IN_PORT;
1598 1.18 mycroft return 0;
1599 1.18 mycroft
1600 1.18 mycroft case SB_BASS:
1601 1.18 mycroft dip->type = AUDIO_MIXER_ENUM;
1602 1.18 mycroft dip->mixer_class = SB_INPUT_CLASS;
1603 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1604 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1605 1.18 mycroft strcpy(dip->label.name, AudioNbass);
1606 1.18 mycroft dip->un.e.num_mem = 2;
1607 1.18 mycroft strcpy(dip->un.e.member[0].label.name, AudioNoff);
1608 1.18 mycroft dip->un.e.member[0].ord = 0;
1609 1.18 mycroft strcpy(dip->un.e.member[1].label.name, AudioNon);
1610 1.18 mycroft dip->un.e.member[1].ord = 1;
1611 1.18 mycroft return 0;
1612 1.18 mycroft
1613 1.18 mycroft case SB_TREBLE:
1614 1.18 mycroft dip->type = AUDIO_MIXER_ENUM;
1615 1.18 mycroft dip->mixer_class = SB_INPUT_CLASS;
1616 1.18 mycroft dip->prev = AUDIO_MIXER_LAST;
1617 1.18 mycroft dip->next = AUDIO_MIXER_LAST;
1618 1.18 mycroft strcpy(dip->label.name, AudioNtreble);
1619 1.18 mycroft dip->un.e.num_mem = 2;
1620 1.18 mycroft strcpy(dip->un.e.member[0].label.name, AudioNoff);
1621 1.18 mycroft dip->un.e.member[0].ord = 0;
1622 1.18 mycroft strcpy(dip->un.e.member[1].label.name, AudioNon);
1623 1.18 mycroft dip->un.e.member[1].ord = 1;
1624 1.18 mycroft return 0;
1625 1.18 mycroft
1626 1.18 mycroft case SB_RECORD_CLASS: /* record source class */
1627 1.18 mycroft dip->type = AUDIO_MIXER_CLASS;
1628 1.18 mycroft dip->mixer_class = SB_RECORD_CLASS;
1629 1.18 mycroft dip->next = dip->prev = AUDIO_MIXER_LAST;
1630 1.18 mycroft strcpy(dip->label.name, AudioCRecord);
1631 1.18 mycroft return 0;
1632 1.18 mycroft }
1633 1.18 mycroft }
1634 1.1 brezak
1635 1.18 mycroft return ENXIO;
1636 1.1 brezak }
1637