aucc.c revision 1.9 1 1.9 is /* $NetBSD: aucc.c,v 1.9 1997/07/09 22:37:08 is Exp $ */
2 1.1 is #undef AUDIO_DEBUG
3 1.1 is /*
4 1.1 is * Copyright (c) 1997 Stephan Thesing
5 1.1 is * All rights reserved.
6 1.1 is *
7 1.1 is * Redistribution and use in source and binary forms, with or without
8 1.1 is * modification, are permitted provided that the following conditions
9 1.1 is * are met:
10 1.1 is * 1. Redistributions of source code must retain the above copyright
11 1.1 is * notice, this list of conditions and the following disclaimer.
12 1.1 is * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 is * notice, this list of conditions and the following disclaimer in the
14 1.1 is * documentation and/or other materials provided with the distribution.
15 1.1 is * 3. All advertising materials mentioning features or use of this software
16 1.1 is * must display the following acknowledgement:
17 1.1 is * This product includes software developed by Stephan Thesing.
18 1.1 is * 4. The name of the author may not be used to endorse or promote products
19 1.1 is * derived from this software without specific prior written permission
20 1.1 is *
21 1.1 is * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 is * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 is * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 is * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 is * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 is * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 is * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 is * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 is * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 is * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 is */
32 1.1 is
33 1.1 is #include "aucc.h"
34 1.1 is #if NAUCC > 0
35 1.5 is
36 1.1 is #include <sys/param.h>
37 1.1 is #include <sys/systm.h>
38 1.1 is #include <sys/errno.h>
39 1.1 is #include <sys/ioctl.h>
40 1.1 is #include <sys/device.h>
41 1.1 is #include <sys/proc.h>
42 1.1 is #include <machine/cpu.h>
43 1.1 is
44 1.1 is #include <sys/audioio.h>
45 1.1 is #include <dev/audio_if.h>
46 1.1 is #include <amiga/amiga/cc.h>
47 1.1 is #include <amiga/amiga/custom.h>
48 1.1 is #include <amiga/amiga/device.h>
49 1.1 is #include <amiga/dev/auccvar.h>
50 1.1 is
51 1.7 is
52 1.7 is #ifdef LEV6_DEFER
53 1.7 is #define AUCC_MAXINT 3
54 1.7 is #define AUCC_ALLINTF (INTF_AUD0|INTF_AUD1|INTF_AUD2)
55 1.7 is #else
56 1.7 is #define AUCC_MAXINT 4
57 1.7 is #define AUCC_ALLINTF (INTF_AUD0|INTF_AUD1|INTF_AUD2|INTF_AUD3)
58 1.7 is #endif
59 1.7 is /* this unconditionally; we may use AUD3 as slave channel with LEV6_DEFER */
60 1.7 is #define AUCC_ALLDMAF (DMAF_AUD0|DMAF_AUD1|DMAF_AUD2|DMAF_AUD3)
61 1.7 is
62 1.1 is #ifdef AUDIO_DEBUG
63 1.1 is /*extern printf __P((const char *,...));*/
64 1.1 is int auccdebug = 1;
65 1.1 is #define DPRINTF(x) if (auccdebug) printf x
66 1.1 is #else
67 1.1 is #define DPRINTF(x)
68 1.1 is #endif
69 1.1 is
70 1.1 is #ifdef splaudio
71 1.1 is #undef splaudio
72 1.1 is #endif
73 1.1 is
74 1.1 is #define splaudio() spl4();
75 1.1 is
76 1.1 is /* clock frequency.. */
77 1.1 is extern int eclockfreq;
78 1.1 is
79 1.1 is
80 1.1 is /* hw audio ch */
81 1.1 is extern struct audio_channel channel[4];
82 1.1 is
83 1.1 is
84 1.1 is /*
85 1.1 is * Software state.
86 1.1 is */
87 1.1 is struct aucc_softc {
88 1.1 is struct device sc_dev; /* base device */
89 1.1 is
90 1.1 is int sc_open; /* single use device */
91 1.1 is aucc_data_t sc_channel[4]; /* per channel freq, ... */
92 1.1 is u_int sc_encoding; /* encoding AUDIO_ENCODING_.*/
93 1.1 is int sc_channels; /* # of channels used */
94 1.1 is
95 1.1 is int sc_intrcnt; /* interrupt count */
96 1.1 is int sc_channelmask; /* which channels are used ? */
97 1.1 is };
98 1.1 is
99 1.1 is /* interrupt interfaces */
100 1.1 is void aucc_inthdl __P((int));
101 1.1 is
102 1.1 is /* forward declarations */
103 1.1 is static int init_aucc __P((struct aucc_softc *));
104 1.1 is static u_int freqtoper __P((u_int));
105 1.1 is static u_int pertofreq __P((u_int));
106 1.1 is
107 1.1 is /* autoconfiguration driver */
108 1.1 is void auccattach __P((struct device *, struct device *, void *));
109 1.1 is int auccmatch __P((struct device *, struct cfdata *, void *));
110 1.1 is
111 1.1 is struct cfattach aucc_ca = {
112 1.1 is sizeof(struct aucc_softc),
113 1.1 is auccmatch,
114 1.1 is auccattach
115 1.1 is };
116 1.1 is
117 1.1 is struct cfdriver aucc_cd = {
118 1.1 is NULL, "aucc", DV_DULL, NULL, 0
119 1.1 is };
120 1.1 is
121 1.1 is struct audio_device aucc_device = {
122 1.1 is "Amiga-audio",
123 1.1 is "x",
124 1.1 is "aucc"
125 1.1 is };
126 1.1 is
127 1.1 is
128 1.1 is struct aucc_softc *aucc=NULL;
129 1.1 is
130 1.1 is
131 1.1 is unsigned char ulaw_to_lin[] = {
132 1.2 is 0x82, 0x86, 0x8a, 0x8e, 0x92, 0x96, 0x9a, 0x9e,
133 1.2 is 0xa2, 0xa6, 0xaa, 0xae, 0xb2, 0xb6, 0xba, 0xbe,
134 1.2 is 0xc1, 0xc3, 0xc5, 0xc7, 0xc9, 0xcb, 0xcd, 0xcf,
135 1.2 is 0xd1, 0xd3, 0xd5, 0xd7, 0xd9, 0xdb, 0xdd, 0xdf,
136 1.2 is 0xe1, 0xe2, 0xe3, 0xe4, 0xe5, 0xe6, 0xe7, 0xe8,
137 1.2 is 0xe9, 0xea, 0xeb, 0xec, 0xed, 0xee, 0xef, 0xf0,
138 1.2 is 0xf0, 0xf1, 0xf1, 0xf2, 0xf2, 0xf3, 0xf3, 0xf4,
139 1.2 is 0xf4, 0xf5, 0xf5, 0xf6, 0xf6, 0xf7, 0xf7, 0xf8,
140 1.2 is 0xf8, 0xf8, 0xf9, 0xf9, 0xf9, 0xf9, 0xfa, 0xfa,
141 1.2 is 0xfa, 0xfa, 0xfb, 0xfb, 0xfb, 0xfb, 0xfc, 0xfc,
142 1.2 is 0xfc, 0xfc, 0xfc, 0xfc, 0xfd, 0xfd, 0xfd, 0xfd,
143 1.2 is 0xfd, 0xfd, 0xfd, 0xfd, 0xfe, 0xfe, 0xfe, 0xfe,
144 1.2 is 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe,
145 1.2 is 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
146 1.2 is 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
147 1.2 is 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x00,
148 1.2 is 0x7d, 0x79, 0x75, 0x71, 0x6d, 0x69, 0x65, 0x61,
149 1.2 is 0x5d, 0x59, 0x55, 0x51, 0x4d, 0x49, 0x45, 0x41,
150 1.2 is 0x3e, 0x3c, 0x3a, 0x38, 0x36, 0x34, 0x32, 0x30,
151 1.2 is 0x2e, 0x2c, 0x2a, 0x28, 0x26, 0x24, 0x22, 0x20,
152 1.2 is 0x1e, 0x1d, 0x1c, 0x1b, 0x1a, 0x19, 0x18, 0x17,
153 1.2 is 0x16, 0x15, 0x14, 0x13, 0x12, 0x11, 0x10, 0x0f,
154 1.2 is 0x0f, 0x0e, 0x0e, 0x0d, 0x0d, 0x0c, 0x0c, 0x0b,
155 1.2 is 0x0b, 0x0a, 0x0a, 0x09, 0x09, 0x08, 0x08, 0x07,
156 1.2 is 0x07, 0x07, 0x06, 0x06, 0x06, 0x06, 0x05, 0x05,
157 1.2 is 0x05, 0x05, 0x04, 0x04, 0x04, 0x04, 0x03, 0x03,
158 1.2 is 0x03, 0x03, 0x03, 0x03, 0x02, 0x02, 0x02, 0x02,
159 1.2 is 0x02, 0x02, 0x02, 0x02, 0x01, 0x01, 0x01, 0x01,
160 1.2 is 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01,
161 1.2 is 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
162 1.2 is 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
163 1.2 is 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
164 1.1 is };
165 1.1 is
166 1.1 is /*
167 1.1 is * Define our interface to the higher level audio driver.
168 1.1 is */
169 1.1 is int aucc_open __P((dev_t, int));
170 1.1 is void aucc_close __P((void *));
171 1.1 is int aucc_set_out_sr __P((void *, u_long));
172 1.1 is int aucc_query_encoding __P((void *, struct audio_encoding *));
173 1.1 is int aucc_get_encoding __P((void *));
174 1.1 is int aucc_get_precision __P((void *));
175 1.1 is int aucc_get_channels __P((void *));
176 1.1 is int aucc_round_blocksize __P((void *, int));
177 1.1 is int aucc_set_out_port __P((void *, int));
178 1.1 is int aucc_get_out_port __P((void *));
179 1.1 is int aucc_set_in_port __P((void *, int));
180 1.1 is int aucc_get_in_port __P((void *));
181 1.1 is int aucc_commit_settings __P((void *));
182 1.1 is int aucc_start_output __P((void *, void *, int, void (*)(void *),
183 1.1 is void *));
184 1.1 is int aucc_start_input __P((void *, void *, int, void (*)(void *),
185 1.1 is void *));
186 1.1 is int aucc_halt_output __P((void *));
187 1.1 is int aucc_halt_input __P((void *));
188 1.1 is int aucc_cont_output __P((void *));
189 1.1 is int aucc_cont_input __P((void *));
190 1.1 is int aucc_getdev __P((void *, struct audio_device *));
191 1.1 is int aucc_setfd __P((void *, int));
192 1.1 is int aucc_set_port __P((void *, mixer_ctrl_t *));
193 1.1 is int aucc_get_port __P((void *, mixer_ctrl_t *));
194 1.1 is int aucc_query_devinfo __P((void *, mixer_devinfo_t *));
195 1.8 is void aucc_encode __P((int, int, int, u_char *, u_short **));
196 1.1 is int aucc_set_params __P((void *, int, struct audio_params *,
197 1.1 is struct audio_params *));
198 1.1 is
199 1.1 is struct audio_hw_if sa_hw_if = {
200 1.1 is aucc_open,
201 1.1 is aucc_close,
202 1.1 is NULL,
203 1.1 is aucc_query_encoding,
204 1.1 is aucc_set_params,
205 1.1 is aucc_round_blocksize,
206 1.1 is aucc_set_out_port,
207 1.1 is aucc_get_out_port,
208 1.1 is aucc_set_in_port,
209 1.1 is aucc_get_in_port,
210 1.1 is aucc_commit_settings,
211 1.1 is aucc_start_output,
212 1.1 is aucc_start_input,
213 1.1 is aucc_halt_output,
214 1.1 is aucc_halt_input,
215 1.1 is aucc_cont_output,
216 1.1 is aucc_cont_input,
217 1.1 is NULL,
218 1.1 is aucc_getdev,
219 1.1 is aucc_setfd,
220 1.1 is aucc_set_port,
221 1.1 is aucc_get_port,
222 1.1 is aucc_query_devinfo,
223 1.1 is 0,
224 1.1 is 0
225 1.1 is };
226 1.1 is
227 1.1 is /* autoconfig routines */
228 1.1 is
229 1.1 is int
230 1.1 is auccmatch(pdp, cfp, aux)
231 1.1 is struct device *pdp;
232 1.1 is struct cfdata *cfp;
233 1.1 is void *aux;
234 1.1 is {
235 1.1 is if (matchname((char *)aux, "aucc") &&
236 1.1 is #ifdef DRACO
237 1.1 is !is_draco() &&
238 1.1 is #endif
239 1.1 is (cfp->cf_unit == 0))
240 1.1 is return 1;
241 1.1 is
242 1.1 is return 0;
243 1.1 is }
244 1.1 is
245 1.1 is /*
246 1.1 is * Audio chip found.
247 1.1 is */
248 1.1 is void
249 1.1 is auccattach(parent, self, args)
250 1.1 is struct device *parent, *self;
251 1.1 is void *args;
252 1.1 is {
253 1.1 is register struct aucc_softc *sc = (struct aucc_softc *)self;
254 1.1 is register int i;
255 1.1 is
256 1.1 is printf("\n");
257 1.1 is
258 1.1 is if((i=init_aucc(sc))) {
259 1.1 is printf("audio: no chipmem\n");
260 1.1 is return;
261 1.1 is }
262 1.1 is
263 1.1 is if (audio_hardware_attach(&sa_hw_if, sc) != 0)
264 1.1 is printf("audio: could not attach to audio pseudo-device driver\n");
265 1.1 is /* XXX: no way to return error, if init fails */
266 1.1 is }
267 1.1 is
268 1.1 is
269 1.1 is static int
270 1.1 is init_aucc(sc)
271 1.1 is struct aucc_softc *sc;
272 1.1 is {
273 1.1 is register int i, err=0;
274 1.1 is
275 1.1 is /* init values per channel */
276 1.1 is for (i=0;i<4;i++) {
277 1.1 is sc->sc_channel[i].nd_freq=8000;
278 1.1 is sc->sc_channel[i].nd_per=freqtoper(8000);
279 1.1 is sc->sc_channel[i].nd_busy=0;
280 1.1 is sc->sc_channel[i].nd_dma=alloc_chipmem(AUDIO_BUF_SIZE*2);
281 1.1 is if (sc->sc_channel[i].nd_dma==NULL)
282 1.1 is err=1;
283 1.1 is sc->sc_channel[i].nd_dmalength=0;
284 1.1 is sc->sc_channel[i].nd_volume=64;
285 1.1 is sc->sc_channel[i].nd_intr=NULL;
286 1.1 is sc->sc_channel[i].nd_intrdata=NULL;
287 1.8 is sc->sc_channel[i].nd_doublebuf=0;
288 1.1 is DPRINTF(("dma buffer for channel %d is %p\n", i,
289 1.1 is sc->sc_channel[i].nd_dma));
290 1.1 is
291 1.1 is }
292 1.1 is
293 1.1 is if (err) {
294 1.1 is for(i=0;i<4;i++)
295 1.1 is if (sc->sc_channel[i].nd_dma)
296 1.1 is free_chipmem(sc->sc_channel[i].nd_dma);
297 1.1 is }
298 1.1 is
299 1.8 is sc->sc_channels=1;
300 1.1 is sc->sc_channelmask=0xf;
301 1.1 is
302 1.2 is /* clear interrupts and dma: */
303 1.7 is custom.intena = AUCC_ALLINTF;
304 1.7 is custom.dmacon = AUCC_ALLDMAF;;
305 1.1 is
306 1.1 is sc->sc_encoding=AUDIO_ENCODING_ULAW;
307 1.1 is
308 1.1 is return err;
309 1.1 is
310 1.1 is }
311 1.1 is
312 1.1 is int
313 1.1 is aucc_open(dev, flags)
314 1.1 is dev_t dev;
315 1.1 is int flags;
316 1.1 is {
317 1.1 is register struct aucc_softc *sc;
318 1.1 is int unit = AUDIOUNIT(dev);
319 1.1 is register int i;
320 1.1 is
321 1.1 is DPRINTF(("sa_open: unit %d\n",unit));
322 1.1 is
323 1.1 is if (unit >= aucc_cd.cd_ndevs)
324 1.1 is return (ENODEV);
325 1.1 is if ((sc = aucc_cd.cd_devs[unit]) == NULL)
326 1.1 is return (ENXIO);
327 1.1 is if (sc->sc_open)
328 1.1 is return (EBUSY);
329 1.1 is sc->sc_open = 1;
330 1.7 is for (i=0;i<AUCC_MAXINT;i++) {
331 1.1 is sc->sc_channel[i].nd_intr=NULL;
332 1.1 is sc->sc_channel[i].nd_intrdata=NULL;
333 1.1 is }
334 1.1 is aucc=sc;
335 1.1 is sc->sc_channelmask=0xf;
336 1.1 is
337 1.1 is DPRINTF(("saopen: ok -> sc=0x%p\n",sc));
338 1.1 is
339 1.1 is return (0);
340 1.1 is }
341 1.1 is
342 1.1 is void
343 1.1 is aucc_close(addr)
344 1.1 is void *addr;
345 1.1 is {
346 1.1 is register struct aucc_softc *sc = addr;
347 1.1 is
348 1.1 is DPRINTF(("sa_close: sc=0x%p\n", sc));
349 1.1 is /*
350 1.1 is * halt i/o, clear open flag, and done.
351 1.1 is */
352 1.1 is aucc_halt_output(sc);
353 1.1 is sc->sc_open = 0;
354 1.1 is
355 1.1 is DPRINTF(("sa_close: closed.\n"));
356 1.1 is }
357 1.1 is
358 1.1 is int
359 1.1 is aucc_set_out_sr(addr, sr)
360 1.1 is void *addr;
361 1.1 is u_long sr;
362 1.1 is {
363 1.1 is struct aucc_softc *sc=addr;
364 1.1 is u_long per;
365 1.1 is register int i;
366 1.1 is
367 1.1 is per=freqtoper(sr);
368 1.1 is if (per>0xffff)
369 1.1 is return EINVAL;
370 1.1 is sr=pertofreq(per);
371 1.1 is
372 1.1 is for (i=0;i<4;i++) {
373 1.1 is sc->sc_channel[i].nd_freq=sr;
374 1.1 is sc->sc_channel[i].nd_per=per;
375 1.1 is }
376 1.1 is
377 1.1 is return(0);
378 1.1 is }
379 1.1 is
380 1.1 is int
381 1.1 is aucc_query_encoding(addr, fp)
382 1.1 is void *addr;
383 1.1 is struct audio_encoding *fp;
384 1.1 is {
385 1.1 is switch (fp->index) {
386 1.1 is case 0:
387 1.1 is strcpy(fp->name, AudioElinear);
388 1.1 is fp->encoding = AUDIO_ENCODING_LINEAR;
389 1.1 is fp->precision = 8;
390 1.1 is fp->flags = 0;
391 1.1 is break;
392 1.1 is case 1:
393 1.1 is strcpy(fp->name, AudioEmulaw);
394 1.1 is fp->encoding = AUDIO_ENCODING_ULAW;
395 1.1 is fp->precision = 8;
396 1.1 is fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
397 1.1 is break;
398 1.1 is
399 1.3 is case 2:
400 1.3 is strcpy(fp->name, AudioEulinear);
401 1.3 is fp->encoding = AUDIO_ENCODING_ULINEAR;
402 1.3 is fp->precision = 8;
403 1.3 is fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
404 1.3 is break;
405 1.3 is
406 1.1 is default:
407 1.1 is return(EINVAL);
408 1.1 is /*NOTREACHED*/
409 1.1 is }
410 1.1 is return(0);
411 1.1 is }
412 1.1 is
413 1.1 is int
414 1.1 is aucc_set_params(addr, mode, p, q)
415 1.1 is void *addr;
416 1.1 is int mode;
417 1.1 is struct audio_params *p, *q;
418 1.1 is {
419 1.8 is struct aucc_softc *sc;
420 1.8 is
421 1.8 is sc = addr;
422 1.8 is
423 1.8 is /* if (mode == AUMODE_RECORD)
424 1.8 is return 0 ENXIO*/;
425 1.8 is
426 1.9 is #ifdef AUCCDEBUG
427 1.8 is printf("aucc_set_params(mode %x, enc %d, bits %d, chn %d, sr %ld)\n",
428 1.8 is mode, p->encoding, p->precision, p->channels, p->sample_rate);
429 1.9 is #endif
430 1.4 is
431 1.1 is switch (p->encoding) {
432 1.1 is case AUDIO_ENCODING_ULAW:
433 1.1 is case AUDIO_ENCODING_LINEAR:
434 1.8 is case AUDIO_ENCODING_LINEAR_BE:
435 1.8 is case AUDIO_ENCODING_LINEAR_LE:
436 1.8 is case AUDIO_ENCODING_ULINEAR_BE:
437 1.8 is case AUDIO_ENCODING_ULINEAR_LE:
438 1.1 is break;
439 1.8 is
440 1.1 is default:
441 1.1 is return EINVAL;
442 1.1 is /* NOTREADCHED */
443 1.1 is }
444 1.1 is
445 1.1 is if (p->precision != 8)
446 1.1 is return EINVAL;
447 1.1 is
448 1.1 is if ((p->channels<1) || (p->channels>4))
449 1.1 is return(EINVAL);
450 1.1 is
451 1.8 is sc->sc_channels = p->channels;
452 1.8 is sc->sc_encoding = p->encoding;
453 1.8 is
454 1.1 is q->encoding = p->encoding;
455 1.1 is q->precision = p->precision;
456 1.1 is q->channels = p->channels;
457 1.8 is q->sample_rate = p->sample_rate;
458 1.1 is
459 1.8 is return aucc_set_out_sr(addr, p->sample_rate);
460 1.1 is }
461 1.1 is
462 1.1 is int
463 1.1 is aucc_get_encoding(addr)
464 1.1 is void *addr;
465 1.1 is {
466 1.1 is return ((struct aucc_softc *)addr)->sc_encoding;
467 1.1 is }
468 1.1 is
469 1.1 is int
470 1.1 is aucc_get_precision(addr)
471 1.1 is void *addr;
472 1.1 is {
473 1.1 is return(8);
474 1.1 is }
475 1.1 is
476 1.1 is int
477 1.1 is aucc_get_channels(addr)
478 1.1 is void *addr;
479 1.1 is {
480 1.1 is return ((struct aucc_softc *)addr)->sc_channels;
481 1.1 is }
482 1.1 is
483 1.1 is int
484 1.1 is aucc_round_blocksize(addr, blk)
485 1.1 is void *addr;
486 1.1 is int blk;
487 1.1 is {
488 1.1 is
489 1.1 is
490 1.1 is return blk>AUDIO_BUF_SIZE?AUDIO_BUF_SIZE:blk; /* round up to even size */
491 1.1 is }
492 1.1 is
493 1.1 is int
494 1.1 is aucc_set_out_port(addr, port) /* can set channels */
495 1.1 is void *addr;
496 1.1 is int port;
497 1.1 is {
498 1.1 is register struct aucc_softc *sc = addr;
499 1.1 is
500 1.1 is /* port is mask for channels 0..3 */
501 1.1 is if ((port<0)||(port>15))
502 1.1 is return EINVAL;
503 1.1 is
504 1.1 is sc->sc_channelmask=port;
505 1.1 is
506 1.1 is return(0);
507 1.1 is }
508 1.1 is
509 1.1 is int
510 1.1 is aucc_get_out_port(addr)
511 1.1 is void *addr;
512 1.1 is {
513 1.1 is register struct aucc_softc *sc = addr;
514 1.1 is
515 1.1 is return sc->sc_channelmask;
516 1.1 is }
517 1.1 is
518 1.1 is int
519 1.1 is aucc_set_in_port(addr, port)
520 1.1 is void *addr;
521 1.1 is int port;
522 1.1 is {
523 1.1 is return(EINVAL); /* no input possible */
524 1.1 is
525 1.1 is }
526 1.1 is
527 1.1 is int
528 1.1 is aucc_get_in_port(addr)
529 1.1 is void *addr;
530 1.1 is {
531 1.1 is return(0);
532 1.1 is }
533 1.1 is
534 1.1 is int
535 1.1 is aucc_commit_settings(addr)
536 1.1 is void *addr;
537 1.1 is {
538 1.1 is register struct aucc_softc *sc = addr;
539 1.1 is register int i;
540 1.1 is
541 1.1 is DPRINTF(("sa_commit.\n"));
542 1.1 is
543 1.1 is for (i=0;i<4;i++) {
544 1.1 is custom.aud[i].vol=sc->sc_channel[i].nd_volume;
545 1.1 is custom.aud[i].per=sc->sc_channel[i].nd_per;
546 1.1 is }
547 1.1 is
548 1.1 is DPRINTF(("commit done\n"));
549 1.1 is
550 1.1 is return(0);
551 1.1 is }
552 1.1 is
553 1.1 is static int masks[4] = {1,3,7,15}; /* masks for n first channels */
554 1.1 is static int masks2[4] = {1,2,4,8};
555 1.1 is
556 1.1 is int
557 1.1 is aucc_start_output(addr, p, cc, intr, arg)
558 1.1 is void *addr;
559 1.1 is void *p;
560 1.1 is int cc;
561 1.1 is void (*intr) __P((void *));
562 1.1 is void *arg;
563 1.1 is {
564 1.8 is struct aucc_softc *sc;
565 1.8 is int mask;
566 1.8 is int i,j,k;
567 1.8 is u_short *dmap[4];
568 1.8 is u_char *pp;
569 1.8 is
570 1.1 is
571 1.8 is sc = addr;
572 1.8 is mask = sc->sc_channelmask;
573 1.1 is
574 1.8 is dmap[0] = dmap[1] = dmap[2] = dmap[3] = NULL;
575 1.1 is
576 1.1 is DPRINTF(("sa_start_output: cc=%d %p (%p)\n", cc, intr, arg));
577 1.1 is
578 1.1 is mask &=masks[sc->sc_channels-1]; /* we use first sc_channels channels */
579 1.1 is if (mask==0) /* active and used channels are disjoint */
580 1.1 is return EINVAL;
581 1.1 is
582 1.1 is for (i=0;i<4;i++) { /* channels available ? */
583 1.1 is if ((masks2[i]&mask)&&(sc->sc_channel[i].nd_busy))
584 1.1 is return EBUSY; /* channel is busy */
585 1.1 is if (channel[i].isaudio==-1)
586 1.1 is return EBUSY; /* system uses them */
587 1.1 is }
588 1.1 is
589 1.1 is /* enable interrupt on 1st channel */
590 1.8 is for (i=j=0;i<AUCC_MAXINT;i++) {
591 1.1 is if (masks2[i]&mask) {
592 1.1 is DPRINTF(("first channel is %d\n",i));
593 1.1 is j=i;
594 1.1 is sc->sc_channel[i].nd_intr=intr;
595 1.1 is sc->sc_channel[i].nd_intrdata=arg;
596 1.1 is break;
597 1.1 is }
598 1.1 is }
599 1.1 is
600 1.8 is DPRINTF(("dmap is %p %p %p %p, mask=0x%x\n", dmap[0], dmap[1],
601 1.8 is dmap[2], dmap[3], mask));
602 1.8 is
603 1.8 is /* disable ints, dma for channels, until all parameters set */
604 1.8 is /* XXX dont disable DMA! custom.dmacon=mask;*/
605 1.8 is custom.intreq=mask<<INTB_AUD0;
606 1.8 is custom.intena=mask<<INTB_AUD0;
607 1.1 is
608 1.1 is /* copy data to dma buffer */
609 1.1 is
610 1.1 is
611 1.1 is pp=(u_char *)p;
612 1.1 is
613 1.8 is if (sc->sc_channels == 1) {
614 1.8 is dmap[0] =
615 1.8 is dmap[1] =
616 1.8 is dmap[2] =
617 1.8 is dmap[3] = sc->sc_channel[j].nd_dma;
618 1.8 is } else {
619 1.8 is for (k=0; k<4; k++) {
620 1.8 is if (masks2[k+j]&mask)
621 1.8 is dmap[k]=sc->sc_channel[k+j].nd_dma;
622 1.8 is }
623 1.8 is }
624 1.8 is
625 1.8 is sc->sc_channel[j].nd_doublebuf ^= 1;
626 1.8 is if (sc->sc_channel[j].nd_doublebuf) {
627 1.8 is dmap[0] += AUDIO_BUF_SIZE/sizeof(u_short);
628 1.8 is dmap[1] += AUDIO_BUF_SIZE/sizeof(u_short);
629 1.8 is dmap[2] += AUDIO_BUF_SIZE/sizeof(u_short);
630 1.8 is dmap[3] += AUDIO_BUF_SIZE/sizeof(u_short);
631 1.8 is }
632 1.1 is
633 1.8 is aucc_encode(sc->sc_encoding, sc->sc_channels, cc, pp, dmap);
634 1.1 is
635 1.1 is /* dma buffers: we use same buffer 4 all channels */
636 1.1 is /* write dma location and length */
637 1.8 is for (i=k=0; i<4; i++) {
638 1.8 is if (masks2[i] & mask) {
639 1.1 is DPRINTF(("turning channel %d on\n",i));
640 1.1 is /* sc->sc_channel[i].nd_busy=1;*/
641 1.1 is channel[i].isaudio=1;
642 1.1 is channel[i].play_count=1;
643 1.1 is channel[i].handler=NULL;
644 1.1 is custom.aud[i].per=sc->sc_channel[i].nd_per;
645 1.1 is custom.aud[i].vol=sc->sc_channel[i].nd_volume;
646 1.8 is custom.aud[i].lc = PREP_DMA_MEM(dmap[k++]);
647 1.9 is custom.aud[i].len=cc/(sc->sc_channels*2);
648 1.1 is sc->sc_channel[i].nd_mask=mask;
649 1.1 is DPRINTF(("per is %d, vol is %d, len is %d\n",\
650 1.8 is sc->sc_channel[i].nd_per,
651 1.8 is sc->sc_channel[i].nd_volume, cc>>1));
652 1.1 is
653 1.1 is }
654 1.1 is }
655 1.1 is
656 1.1 is channel[j].handler=aucc_inthdl;
657 1.1 is
658 1.1 is /* enable ints */
659 1.7 is custom.intena=INTF_SETCLR|INTF_INTEN| (masks2[j]<<INTB_AUD0);
660 1.1 is
661 1.7 is DPRINTF(("enabled ints: 0x%x\n",(masks2[j]<<INTB_AUD0)));
662 1.1 is
663 1.1 is /* enable dma */
664 1.1 is custom.dmacon=DMAF_SETCLR|DMAF_MASTER|mask;
665 1.1 is
666 1.1 is DPRINTF(("enabled dma, mask=0x%x\n",mask));
667 1.1 is
668 1.1 is return(0);
669 1.1 is }
670 1.1 is
671 1.1 is /* ARGSUSED */
672 1.1 is int
673 1.1 is aucc_start_input(addr, p, cc, intr, arg)
674 1.1 is void *addr;
675 1.1 is void *p;
676 1.1 is int cc;
677 1.1 is void (*intr) __P((void *));
678 1.1 is void *arg;
679 1.1 is {
680 1.1 is
681 1.1 is return ENXIO; /* no input */
682 1.1 is }
683 1.1 is
684 1.1 is int
685 1.1 is aucc_halt_output(addr)
686 1.1 is void *addr;
687 1.1 is {
688 1.1 is register struct aucc_softc *sc = addr;
689 1.1 is register int i;
690 1.1 is
691 1.1 is /* XXX only halt, if input is also halted ?? */
692 1.1 is /* stop dma, etc */
693 1.7 is custom.intena = AUCC_ALLINTF;
694 1.7 is custom.dmacon = AUCC_ALLDMAF;
695 1.1 is /* mark every busy unit idle */
696 1.1 is for (i=0;i<4;i++) {
697 1.1 is sc->sc_channel[i].nd_busy=sc->sc_channel[i].nd_mask=0;
698 1.1 is channel[i].isaudio=0;
699 1.1 is channel[i].play_count=0;
700 1.1 is }
701 1.1 is
702 1.1 is return(0);
703 1.1 is }
704 1.1 is
705 1.1 is int
706 1.1 is aucc_halt_input(addr)
707 1.1 is void *addr;
708 1.1 is {
709 1.1 is /* no input */
710 1.1 is
711 1.1 is return ENXIO;
712 1.1 is }
713 1.1 is
714 1.1 is int
715 1.1 is aucc_cont_output(addr)
716 1.1 is void *addr;
717 1.1 is {
718 1.1 is DPRINTF(("aucc_cont_output: never called, what should it do?!\n"));
719 1.1 is /* reenable DMA XXX */
720 1.1 is return ENXIO;
721 1.1 is }
722 1.1 is
723 1.1 is int
724 1.1 is aucc_cont_input(addr)
725 1.1 is void *addr;
726 1.1 is {
727 1.1 is DPRINTF(("aucc_cont_input: never called, what should it do?!\n"));
728 1.1 is return(0);
729 1.1 is }
730 1.1 is
731 1.1 is int
732 1.1 is aucc_getdev(addr, retp)
733 1.1 is void *addr;
734 1.1 is struct audio_device *retp;
735 1.1 is {
736 1.1 is *retp = aucc_device;
737 1.1 is return 0;
738 1.1 is }
739 1.1 is
740 1.1 is int
741 1.1 is aucc_setfd(addr, flag)
742 1.1 is void *addr;
743 1.1 is int flag;
744 1.1 is {
745 1.1 is return flag?EINVAL:0; /* Always half-duplex */
746 1.1 is }
747 1.1 is
748 1.1 is int
749 1.1 is aucc_set_port(addr, cp)
750 1.1 is void *addr;
751 1.1 is mixer_ctrl_t *cp;
752 1.1 is {
753 1.1 is register struct aucc_softc *sc = addr;
754 1.1 is register int i,j;
755 1.1 is
756 1.1 is DPRINTF(("aucc_set_port: port=%d", cp->dev));
757 1.1 is
758 1.1 is switch (cp->type) {
759 1.1 is case AUDIO_MIXER_SET:
760 1.1 is if (cp->dev!=AUCC_CHANNELS)
761 1.1 is return EINVAL;
762 1.1 is i=cp->un.mask;
763 1.1 is if ((i<1)||(i>15))
764 1.1 is return EINVAL;
765 1.1 is sc->sc_channelmask=i;
766 1.1 is break;
767 1.1 is
768 1.1 is case AUDIO_MIXER_VALUE:
769 1.1 is i=cp->un.value.num_channels;
770 1.1 is if ((i<1)||(i>4))
771 1.1 is return EINVAL;
772 1.1 is
773 1.1 is if (cp->dev!=AUCC_VOLUME)
774 1.1 is return EINVAL;
775 1.1 is
776 1.1 is /* set volume for channel 0..i-1 */
777 1.1 is for (j=0;j<i;j++)
778 1.1 is sc->sc_channel[j].nd_volume=cp->un.value.level[j]>>2;
779 1.1 is break;
780 1.1 is
781 1.1 is default:
782 1.1 is return EINVAL;
783 1.1 is break;
784 1.1 is }
785 1.1 is return 0;
786 1.1 is }
787 1.1 is
788 1.1 is
789 1.1 is int
790 1.1 is aucc_get_port(addr, cp)
791 1.1 is void *addr;
792 1.1 is mixer_ctrl_t *cp;
793 1.1 is {
794 1.1 is register struct aucc_softc *sc = addr;
795 1.1 is register int i,j;
796 1.1 is
797 1.1 is DPRINTF(("aucc_get_port: port=%d", cp->dev));
798 1.1 is
799 1.1 is switch (cp->type) {
800 1.1 is case AUDIO_MIXER_SET:
801 1.1 is if (cp->dev!=AUCC_CHANNELS)
802 1.1 is return EINVAL;
803 1.1 is cp->un.mask=sc->sc_channelmask;
804 1.1 is break;
805 1.1 is
806 1.1 is case AUDIO_MIXER_VALUE:
807 1.1 is i = cp->un.value.num_channels;
808 1.1 is if ((i<1)||(i>4))
809 1.1 is return EINVAL;
810 1.1 is
811 1.1 is for (j=0;j<i;j++)
812 1.1 is cp->un.value.level[j]=sc->sc_channel[j].nd_volume<<2;
813 1.1 is break;
814 1.1 is
815 1.1 is default:
816 1.1 is return EINVAL;
817 1.1 is }
818 1.1 is return 0;
819 1.1 is }
820 1.1 is
821 1.1 is
822 1.1 is int
823 1.1 is aucc_query_devinfo(addr, dip)
824 1.1 is void *addr;
825 1.1 is register mixer_devinfo_t *dip;
826 1.1 is {
827 1.1 is register int i;
828 1.1 is
829 1.1 is switch(dip->index) {
830 1.1 is case AUCC_CHANNELS:
831 1.1 is dip->type = AUDIO_MIXER_SET;
832 1.1 is dip->mixer_class = AUCC_OUTPUT_CLASS;
833 1.1 is dip->prev = dip->next = AUDIO_MIXER_LAST;
834 1.1 is strcpy(dip->label.name, AudioNspeaker);
835 1.1 is for (i=0;i<16;i++) {
836 1.1 is sprintf(dip->un.s.member[i].label.name,
837 1.1 is "channelmask%d", i);
838 1.1 is dip->un.s.member[i].mask = i;
839 1.1 is }
840 1.1 is dip->un.s.num_mem = 16;
841 1.1 is break;
842 1.1 is
843 1.1 is case AUCC_VOLUME:
844 1.1 is dip->type = AUDIO_MIXER_VALUE;
845 1.1 is dip->mixer_class = AUCC_OUTPUT_CLASS;
846 1.1 is dip->prev = dip->next = AUDIO_MIXER_LAST;
847 1.1 is strcpy(dip->label.name, AudioNspeaker);
848 1.1 is dip->un.v.num_channels = 4;
849 1.1 is strcpy(dip->un.v.units.name, AudioNvolume);
850 1.1 is break;
851 1.1 is
852 1.1 is case AUCC_OUTPUT_CLASS:
853 1.1 is dip->type = AUDIO_MIXER_CLASS;
854 1.1 is dip->mixer_class = AUCC_OUTPUT_CLASS;
855 1.1 is dip->next = dip->prev = AUDIO_MIXER_LAST;
856 1.1 is strcpy(dip->label.name, AudioCOutputs);
857 1.1 is break;
858 1.1 is default:
859 1.1 is return ENXIO;
860 1.1 is /*NOTREACHED*/
861 1.1 is }
862 1.1 is
863 1.1 is DPRINTF(("AUDIO_MIXER_DEVINFO: name=%s\n", dip->label.name));
864 1.1 is
865 1.1 is return(0);
866 1.1 is }
867 1.1 is
868 1.1 is
869 1.1 is /* audio int handler */
870 1.1 is void
871 1.1 is aucc_inthdl(int ch)
872 1.1 is {
873 1.1 is register int i;
874 1.1 is register int mask=aucc->sc_channel[ch].nd_mask;
875 1.1 is
876 1.1 is /* for all channels in this maskgroup:
877 1.1 is disable dma, int
878 1.1 is mark idle */
879 1.1 is DPRINTF(("inthandler called, channel %d, mask 0x%x\n",ch,mask));
880 1.1 is
881 1.7 is custom.intreq=mask<<INTB_AUD0; /* clear request */
882 1.1 is /* XXX: maybe we can leave ints and/or DMA on, if another sample has to be played?*/
883 1.7 is custom.intena=mask<<INTB_AUD0;
884 1.1 is /*
885 1.1 is * XXX custom.dmacon=mask; NO!!!
886 1.1 is */
887 1.1 is for (i=0;i<4;i++) {
888 1.1 is if (masks2[i]&&mask) {
889 1.1 is DPRINTF(("marking channel %d idle\n",i));
890 1.1 is aucc->sc_channel[i].nd_busy=0;
891 1.1 is aucc->sc_channel[i].nd_mask=0;
892 1.1 is channel[i].isaudio=channel[i].play_count=0;
893 1.1 is }
894 1.1 is }
895 1.1 is
896 1.1 is /* call handler */
897 1.1 is if (aucc->sc_channel[ch].nd_intr) {
898 1.1 is DPRINTF(("calling %p\n",aucc->sc_channel[ch].nd_intr));
899 1.1 is (*(aucc->sc_channel[ch].nd_intr))(aucc->sc_channel[ch].nd_intrdata);
900 1.1 is }
901 1.1 is else DPRINTF(("zero int handler\n"));
902 1.1 is DPRINTF(("ints done\n"));
903 1.1 is }
904 1.1 is
905 1.1 is
906 1.1 is
907 1.1 is
908 1.1 is /* transform frequency to period, adjust bounds */
909 1.1 is static u_int
910 1.1 is freqtoper(u_int freq)
911 1.1 is {
912 1.1 is u_int per=eclockfreq*5/freq;
913 1.1 is
914 1.1 is if (per<124)
915 1.1 is per=124; /* must have at least 124 ticks between samples */
916 1.1 is
917 1.1 is return per;
918 1.1 is }
919 1.1 is
920 1.1 is /* transform period to frequency */
921 1.1 is static u_int
922 1.1 is pertofreq(u_int per)
923 1.1 is {
924 1.1 is u_int freq=eclockfreq*5/per;
925 1.1 is
926 1.1 is
927 1.1 is return freq;
928 1.1 is }
929 1.1 is
930 1.1 is
931 1.1 is
932 1.1 is void
933 1.8 is aucc_encode(enc, channels, i, p, dmap)
934 1.8 is int enc, channels, i;
935 1.1 is u_char *p;
936 1.8 is u_short **dmap;
937 1.1 is {
938 1.8 is char *q, *r, *s, *t;
939 1.8 is int off;
940 1.8 is u_char *tab;
941 1.8 is
942 1.9 is #ifdef AUCCDEBUG
943 1.8 is static int debctl = 6;
944 1.9 is #endif
945 1.1 is
946 1.8 is off = 0;
947 1.8 is tab = NULL;
948 1.1 is
949 1.9 is #ifdef AUCCDEBUG
950 1.8 is if (--debctl >= 0)
951 1.8 is printf("Enc: enc %d, chan %d, dmap %p %p %p %p\n",
952 1.8 is enc, channels, dmap[0], dmap[1], dmap[2], dmap[3]);
953 1.9 is #endif
954 1.1 is
955 1.1 is switch (enc) {
956 1.1 is case AUDIO_ENCODING_ULAW:
957 1.1 is tab=ulaw_to_lin;
958 1.1 is break;
959 1.1 is case AUDIO_ENCODING_ULINEAR:
960 1.8 is case AUDIO_ENCODING_ULINEAR_BE:
961 1.8 is case AUDIO_ENCODING_ULINEAR_LE:
962 1.1 is off=-128;
963 1.8 is break;
964 1.1 is case AUDIO_ENCODING_LINEAR:
965 1.8 is case AUDIO_ENCODING_LINEAR_BE:
966 1.8 is case AUDIO_ENCODING_LINEAR_LE:
967 1.1 is break;
968 1.1 is default:
969 1.1 is return;
970 1.1 is }
971 1.1 is
972 1.8 is q = (char *)dmap[0];
973 1.8 is r = (char *)dmap[1];
974 1.8 is s = (char *)dmap[2];
975 1.8 is t = (char *)dmap[3];
976 1.8 is
977 1.1 is if (tab)
978 1.9 is while (i) {
979 1.8 is switch (channels) {
980 1.8 is case 4: *t++ = tab[*p++];
981 1.8 is case 3: *s++ = tab[*p++];
982 1.8 is case 2: *r++ = tab[*p++];
983 1.8 is case 1: *q++ = tab[*p++];
984 1.8 is }
985 1.9 is i -= channels;
986 1.8 is }
987 1.1 is else
988 1.9 is while (i) {
989 1.8 is switch (channels) {
990 1.8 is case 4: *t++ = *p++ + off;
991 1.8 is case 3: *s++ = *p++ + off;
992 1.8 is case 2: *r++ = *p++ + off;
993 1.8 is case 1: *q++ = *p++ + off;
994 1.8 is }
995 1.9 is i -= channels;
996 1.8 is }
997 1.1 is
998 1.1 is }
999 1.1 is
1000 1.1 is #endif /* NAUCC > 0 */
1001