snapper.c revision 1.4 1 1.4 kent /* $NetBSD: snapper.c,v 1.4 2005/01/15 15:19:51 kent Exp $ */
2 1.1 grant /* Id: snapper.c,v 1.11 2002/10/31 17:42:13 tsubai Exp */
3 1.1 grant
4 1.1 grant /*-
5 1.1 grant * Copyright (c) 2002 Tsubai Masanari. All rights reserved.
6 1.1 grant *
7 1.1 grant * Redistribution and use in source and binary forms, with or without
8 1.1 grant * modification, are permitted provided that the following conditions
9 1.1 grant * are met:
10 1.1 grant * 1. Redistributions of source code must retain the above copyright
11 1.1 grant * notice, this list of conditions and the following disclaimer.
12 1.1 grant * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 grant * notice, this list of conditions and the following disclaimer in the
14 1.1 grant * documentation and/or other materials provided with the distribution.
15 1.1 grant * 3. The name of the author may not be used to endorse or promote products
16 1.1 grant * derived from this software without specific prior written permission.
17 1.1 grant *
18 1.1 grant * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 grant * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 grant * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 grant * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 grant * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 grant * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 grant * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 grant * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 grant * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
27 1.1 grant * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 grant */
29 1.1 grant
30 1.1 grant /*
31 1.1 grant * Datasheet is available from
32 1.1 grant * http://www.ti.com/sc/docs/products/analog/tas3004.html
33 1.1 grant */
34 1.1 grant
35 1.1 grant #include <sys/param.h>
36 1.1 grant #include <sys/audioio.h>
37 1.1 grant #include <sys/device.h>
38 1.1 grant #include <sys/systm.h>
39 1.1 grant
40 1.1 grant #include <dev/auconv.h>
41 1.1 grant #include <dev/audio_if.h>
42 1.1 grant #include <dev/mulaw.h>
43 1.1 grant #include <dev/ofw/openfirm.h>
44 1.1 grant #include <macppc/dev/dbdma.h>
45 1.1 grant
46 1.1 grant #include <uvm/uvm_extern.h>
47 1.1 grant
48 1.1 grant #include <machine/autoconf.h>
49 1.1 grant #include <machine/pio.h>
50 1.1 grant
51 1.1 grant #ifdef SNAPPER_DEBUG
52 1.1 grant # define DPRINTF printf
53 1.1 grant #else
54 1.1 grant # define DPRINTF while (0) printf
55 1.1 grant #endif
56 1.1 grant
57 1.1 grant struct snapper_softc {
58 1.1 grant struct device sc_dev;
59 1.1 grant int sc_flags;
60 1.1 grant int sc_node;
61 1.1 grant
62 1.1 grant void (*sc_ointr)(void *); /* dma completion intr handler */
63 1.1 grant void *sc_oarg; /* arg for sc_ointr() */
64 1.1 grant int sc_opages; /* # of output pages */
65 1.1 grant
66 1.1 grant void (*sc_iintr)(void *); /* dma completion intr handler */
67 1.1 grant void *sc_iarg; /* arg for sc_iintr() */
68 1.1 grant
69 1.1 grant u_int sc_record_source; /* recording source mask */
70 1.1 grant u_int sc_output_mask; /* output source mask */
71 1.1 grant
72 1.1 grant u_char *sc_reg;
73 1.1 grant struct device *sc_i2c;
74 1.1 grant
75 1.1 grant u_int sc_vol_l;
76 1.1 grant u_int sc_vol_r;
77 1.1 grant
78 1.1 grant dbdma_regmap_t *sc_odma;
79 1.1 grant dbdma_regmap_t *sc_idma;
80 1.1 grant struct dbdma_command sc_odmacmd[20];
81 1.1 grant struct dbdma_command sc_idmacmd[20];
82 1.1 grant };
83 1.1 grant
84 1.1 grant int snapper_match(struct device *, struct cfdata *, void *);
85 1.1 grant void snapper_attach(struct device *, struct device *, void *);
86 1.1 grant void snapper_defer(struct device *);
87 1.1 grant int snapper_intr(void *);
88 1.1 grant void snapper_close(void *);
89 1.1 grant int snapper_query_encoding(void *, struct audio_encoding *);
90 1.3 kent int snapper_set_params(void *, int, int, audio_params_t *,
91 1.3 kent audio_params_t *, stream_filter_list_t *, stream_filter_list_t *);
92 1.3 kent int snapper_round_blocksize(void *, int, int, const audio_params_t *);
93 1.1 grant int snapper_halt_output(void *);
94 1.1 grant int snapper_halt_input(void *);
95 1.1 grant int snapper_getdev(void *, struct audio_device *);
96 1.1 grant int snapper_set_port(void *, mixer_ctrl_t *);
97 1.1 grant int snapper_get_port(void *, mixer_ctrl_t *);
98 1.1 grant int snapper_query_devinfo(void *, mixer_devinfo_t *);
99 1.1 grant size_t snapper_round_buffersize(void *, int, size_t);
100 1.1 grant paddr_t snapper_mappage(void *, void *, off_t, int);
101 1.1 grant int snapper_get_props(void *);
102 1.1 grant int snapper_trigger_output(void *, void *, void *, int, void (*)(void *),
103 1.3 kent void *, const audio_params_t *);
104 1.1 grant int snapper_trigger_input(void *, void *, void *, int, void (*)(void *),
105 1.3 kent void *, const audio_params_t *);
106 1.1 grant void snapper_set_volume(struct snapper_softc *, int, int);
107 1.3 kent int snapper_set_rate(struct snapper_softc *, u_int);
108 1.1 grant
109 1.1 grant int tas3004_write(struct snapper_softc *, u_int, const void *);
110 1.1 grant static int gpio_read(char *);
111 1.1 grant static void gpio_write(char *, int);
112 1.1 grant void snapper_mute_speaker(struct snapper_softc *, int);
113 1.1 grant void snapper_mute_headphone(struct snapper_softc *, int);
114 1.1 grant int snapper_cint(void *);
115 1.1 grant int tas3004_init(struct snapper_softc *);
116 1.1 grant void snapper_init(struct snapper_softc *, int);
117 1.1 grant
118 1.1 grant /* XXX */
119 1.1 grant int ki2c_setmode(struct device *, int);
120 1.1 grant int ki2c_write(struct device *, int, int, const void *, int);
121 1.1 grant void ki2c_writereg(struct device *, int, u_int);
122 1.1 grant
123 1.1 grant
124 1.1 grant struct cfattach snapper_ca = {
125 1.1 grant "snapper", {}, sizeof(struct snapper_softc),
126 1.1 grant snapper_match, snapper_attach
127 1.1 grant };
128 1.1 grant
129 1.2 yamt const struct audio_hw_if snapper_hw_if = {
130 1.3 kent NULL, /* open */
131 1.1 grant snapper_close,
132 1.1 grant NULL,
133 1.1 grant snapper_query_encoding,
134 1.1 grant snapper_set_params,
135 1.1 grant snapper_round_blocksize,
136 1.1 grant NULL,
137 1.1 grant NULL,
138 1.1 grant NULL,
139 1.1 grant NULL,
140 1.1 grant NULL,
141 1.1 grant snapper_halt_output,
142 1.1 grant snapper_halt_input,
143 1.1 grant NULL,
144 1.1 grant snapper_getdev,
145 1.1 grant NULL,
146 1.1 grant snapper_set_port,
147 1.1 grant snapper_get_port,
148 1.1 grant snapper_query_devinfo,
149 1.1 grant NULL,
150 1.1 grant NULL,
151 1.1 grant snapper_round_buffersize,
152 1.1 grant snapper_mappage,
153 1.1 grant snapper_get_props,
154 1.1 grant snapper_trigger_output,
155 1.1 grant snapper_trigger_input,
156 1.1 grant NULL
157 1.1 grant };
158 1.1 grant
159 1.1 grant struct audio_device snapper_device = {
160 1.1 grant "SNAPPER",
161 1.1 grant "",
162 1.1 grant "snapper"
163 1.1 grant };
164 1.1 grant
165 1.3 kent #define SNAPPER_NFORMATS 1
166 1.3 kent static const struct audio_format snapper_formats[SNAPPER_NFORMATS] = {
167 1.3 kent {NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_BE, 16, 16,
168 1.3 kent 2, AUFMT_STEREO, 3, {8000, 44100, 48000}},
169 1.3 kent };
170 1.3 kent
171 1.1 grant static u_char *amp_mute;
172 1.1 grant static u_char *headphone_mute;
173 1.1 grant static u_char *audio_hw_reset;
174 1.1 grant static u_char *headphone_detect;
175 1.1 grant static int headphone_detect_active;
176 1.1 grant
177 1.1 grant
178 1.1 grant /* I2S registers */
179 1.1 grant #define I2S_INT 0x00
180 1.1 grant #define I2S_FORMAT 0x10
181 1.1 grant #define I2S_FRAMECOUNT 0x40
182 1.1 grant #define I2S_FRAMEMATCH 0x50
183 1.1 grant #define I2S_WORDSIZE 0x60
184 1.1 grant
185 1.1 grant /* TAS3004 registers */
186 1.1 grant #define DEQ_MCR1 0x01 /* Main control register 1 (1byte) */
187 1.1 grant #define DEQ_DRC 0x02 /* Dynamic range compression (6bytes?) */
188 1.1 grant #define DEQ_VOLUME 0x04 /* Volume (6bytes) */
189 1.1 grant #define DEQ_TREBLE 0x05 /* Treble control (1byte) */
190 1.1 grant #define DEQ_BASS 0x06 /* Bass control (1byte) */
191 1.1 grant #define DEQ_MIXER_L 0x07 /* Mixer left gain (9bytes) */
192 1.1 grant #define DEQ_MIXER_R 0x08 /* Mixer right gain (9bytes) */
193 1.1 grant #define DEQ_LB0 0x0a /* Left biquad 0 (15bytes) */
194 1.1 grant #define DEQ_LB1 0x0b /* Left biquad 1 (15bytes) */
195 1.1 grant #define DEQ_LB2 0x0c /* Left biquad 2 (15bytes) */
196 1.1 grant #define DEQ_LB3 0x0d /* Left biquad 3 (15bytes) */
197 1.1 grant #define DEQ_LB4 0x0e /* Left biquad 4 (15bytes) */
198 1.1 grant #define DEQ_LB5 0x0f /* Left biquad 5 (15bytes) */
199 1.1 grant #define DEQ_LB6 0x10 /* Left biquad 6 (15bytes) */
200 1.1 grant #define DEQ_RB0 0x13 /* Right biquad 0 (15bytes) */
201 1.1 grant #define DEQ_RB1 0x14 /* Right biquad 1 (15bytes) */
202 1.1 grant #define DEQ_RB2 0x15 /* Right biquad 2 (15bytes) */
203 1.1 grant #define DEQ_RB3 0x16 /* Right biquad 3 (15bytes) */
204 1.1 grant #define DEQ_RB4 0x17 /* Right biquad 4 (15bytes) */
205 1.1 grant #define DEQ_RB5 0x18 /* Right biquad 5 (15bytes) */
206 1.1 grant #define DEQ_RB6 0x19 /* Right biquad 6 (15bytes) */
207 1.1 grant #define DEQ_LLB 0x21 /* Left loudness biquad (15bytes) */
208 1.1 grant #define DEQ_RLB 0x22 /* Right loudness biquad (15bytes) */
209 1.1 grant #define DEQ_LLB_GAIN 0x23 /* Left loudness biquad gain (3bytes) */
210 1.1 grant #define DEQ_RLB_GAIN 0x24 /* Right loudness biquad gain (3bytes) */
211 1.1 grant #define DEQ_ACR 0x40 /* Analog control register (1byte) */
212 1.1 grant #define DEQ_MCR2 0x43 /* Main control register 2 (1byte) */
213 1.1 grant
214 1.1 grant #define DEQ_MCR1_FL 0x80 /* Fast load */
215 1.1 grant #define DEQ_MCR1_SC 0x40 /* SCLK frequency */
216 1.1 grant #define DEQ_MCR1_SC_32 0x00 /* 32fs */
217 1.1 grant #define DEQ_MCR1_SC_64 0x40 /* 64fs */
218 1.1 grant #define DEQ_MCR1_SM 0x30 /* Output serial port mode */
219 1.1 grant #define DEQ_MCR1_SM_L 0x00 /* Left justified */
220 1.1 grant #define DEQ_MCR1_SM_R 0x10 /* Right justified */
221 1.1 grant #define DEQ_MCR1_SM_I2S 0x20 /* I2S */
222 1.1 grant #define DEQ_MCR1_W 0x03 /* Serial port word length */
223 1.1 grant #define DEQ_MCR1_W_16 0x00 /* 16 bit */
224 1.1 grant #define DEQ_MCR1_W_18 0x01 /* 18 bit */
225 1.1 grant #define DEQ_MCR1_W_20 0x02 /* 20 bit */
226 1.1 grant
227 1.1 grant #define DEQ_MCR2_DL 0x80 /* Download */
228 1.1 grant #define DEQ_MCR2_AP 0x02 /* All pass mode */
229 1.1 grant
230 1.1 grant #define DEQ_ACR_ADM 0x80 /* ADC output mode */
231 1.1 grant #define DEQ_ACR_LRB 0x40 /* Select B input */
232 1.1 grant #define DEQ_ACR_DM 0x0c /* De-emphasis control */
233 1.1 grant #define DEQ_ACR_DM_OFF 0x00 /* off */
234 1.1 grant #define DEQ_ACR_DM_48 0x04 /* fs = 48kHz */
235 1.1 grant #define DEQ_ACR_DM_44 0x08 /* fs = 44.1kHz */
236 1.1 grant #define DEQ_ACR_INP 0x02 /* Analog input select */
237 1.1 grant #define DEQ_ACR_INP_A 0x00 /* A */
238 1.1 grant #define DEQ_ACR_INP_B 0x02 /* B */
239 1.1 grant #define DEQ_ACR_APD 0x01 /* Analog power down */
240 1.1 grant
241 1.1 grant struct tas3004_reg {
242 1.1 grant u_char MCR1[1];
243 1.1 grant u_char DRC[6];
244 1.1 grant u_char VOLUME[6];
245 1.1 grant u_char TREBLE[1];
246 1.1 grant u_char BASS[1];
247 1.1 grant u_char MIXER_L[9];
248 1.1 grant u_char MIXER_R[9];
249 1.1 grant u_char LB0[15];
250 1.1 grant u_char LB1[15];
251 1.1 grant u_char LB2[15];
252 1.1 grant u_char LB3[15];
253 1.1 grant u_char LB4[15];
254 1.1 grant u_char LB5[15];
255 1.1 grant u_char LB6[15];
256 1.1 grant u_char RB0[15];
257 1.1 grant u_char RB1[15];
258 1.1 grant u_char RB2[15];
259 1.1 grant u_char RB3[15];
260 1.1 grant u_char RB4[15];
261 1.1 grant u_char RB5[15];
262 1.1 grant u_char RB6[15];
263 1.1 grant u_char LLB[15];
264 1.1 grant u_char RLB[15];
265 1.1 grant u_char LLB_GAIN[3];
266 1.1 grant u_char RLB_GAIN[3];
267 1.1 grant u_char ACR[1];
268 1.1 grant u_char MCR2[1];
269 1.1 grant };
270 1.1 grant
271 1.1 grant #define GPIO_OUTSEL 0xf0 /* Output select */
272 1.1 grant /* 0x00 GPIO bit0 is output
273 1.1 grant 0x10 media-bay power
274 1.1 grant 0x20 reserved
275 1.1 grant 0x30 MPIC */
276 1.1 grant
277 1.1 grant #define GPIO_ALTOE 0x08 /* Alternate output enable */
278 1.1 grant /* 0x00 Use DDR
279 1.1 grant 0x08 Use output select */
280 1.1 grant
281 1.1 grant #define GPIO_DDR 0x04 /* Data direction */
282 1.1 grant #define GPIO_DDR_OUTPUT 0x04 /* Output */
283 1.1 grant #define GPIO_DDR_INPUT 0x00 /* Input */
284 1.1 grant
285 1.1 grant #define GPIO_LEVEL 0x02 /* Pin level (RO) */
286 1.1 grant
287 1.1 grant #define GPIO_DATA 0x01 /* Data */
288 1.1 grant
289 1.1 grant int
290 1.4 kent snapper_match(struct device *parent, struct cfdata *match, void *aux)
291 1.1 grant {
292 1.4 kent struct confargs *ca;
293 1.1 grant int soundbus, soundchip;
294 1.1 grant char compat[32];
295 1.1 grant
296 1.4 kent ca = aux;
297 1.1 grant if (strcmp(ca->ca_name, "i2s") != 0)
298 1.1 grant return 0;
299 1.1 grant
300 1.1 grant if ((soundbus = OF_child(ca->ca_node)) == 0 ||
301 1.1 grant (soundchip = OF_child(soundbus)) == 0)
302 1.1 grant return 0;
303 1.1 grant
304 1.1 grant bzero(compat, sizeof compat);
305 1.1 grant OF_getprop(soundchip, "compatible", compat, sizeof compat);
306 1.1 grant
307 1.1 grant if (strcmp(compat, "snapper") != 0)
308 1.1 grant return 0;
309 1.1 grant
310 1.1 grant return 1;
311 1.1 grant }
312 1.1 grant
313 1.1 grant void
314 1.4 kent snapper_attach(struct device *parent, struct device *self, void *aux)
315 1.1 grant {
316 1.4 kent struct snapper_softc *sc;
317 1.4 kent struct confargs *ca;
318 1.1 grant int cirq, oirq, iirq, cirq_type, oirq_type, iirq_type;
319 1.1 grant int soundbus, intr[6];
320 1.1 grant
321 1.4 kent sc = (struct snapper_softc *)self;
322 1.4 kent ca = aux;
323 1.1 grant #ifdef DIAGNOSTIC
324 1.1 grant if ((vaddr_t)sc->sc_odmacmd & 0x0f) {
325 1.1 grant printf(": bad dbdma alignment\n");
326 1.1 grant return;
327 1.1 grant }
328 1.1 grant #endif
329 1.1 grant
330 1.1 grant ca->ca_reg[0] += ca->ca_baseaddr;
331 1.1 grant ca->ca_reg[2] += ca->ca_baseaddr;
332 1.1 grant ca->ca_reg[4] += ca->ca_baseaddr;
333 1.1 grant
334 1.1 grant sc->sc_node = ca->ca_node;
335 1.1 grant sc->sc_reg = (void *)ca->ca_reg[0];
336 1.1 grant sc->sc_odma = (void *)ca->ca_reg[2];
337 1.1 grant sc->sc_idma = (void *)ca->ca_reg[4];
338 1.1 grant
339 1.1 grant soundbus = OF_child(ca->ca_node);
340 1.1 grant OF_getprop(soundbus, "interrupts", intr, sizeof intr);
341 1.1 grant cirq = intr[0];
342 1.1 grant oirq = intr[2];
343 1.1 grant iirq = intr[4];
344 1.1 grant cirq_type = intr[1] ? IST_LEVEL : IST_EDGE;
345 1.1 grant oirq_type = intr[3] ? IST_LEVEL : IST_EDGE;
346 1.1 grant iirq_type = intr[5] ? IST_LEVEL : IST_EDGE;
347 1.1 grant
348 1.1 grant /* intr_establish(cirq, cirq_type, IPL_AUDIO, snapper_intr, sc); */
349 1.1 grant intr_establish(oirq, oirq_type, IPL_AUDIO, snapper_intr, sc);
350 1.1 grant /* intr_establish(iirq, iirq_type, IPL_AUDIO, snapper_intr, sc); */
351 1.1 grant
352 1.1 grant printf("%s: irq %d,%d,%d\n", sc->sc_dev.dv_xname, cirq, oirq, iirq);
353 1.1 grant
354 1.1 grant config_interrupts(self, snapper_defer);
355 1.1 grant }
356 1.1 grant
357 1.1 grant void
358 1.1 grant snapper_defer(struct device *dev)
359 1.1 grant {
360 1.4 kent struct snapper_softc *sc;
361 1.1 grant struct device *dv;
362 1.1 grant
363 1.4 kent sc = (struct snapper_softc *)dev;
364 1.1 grant for (dv = alldevs.tqh_first; dv; dv=dv->dv_list.tqe_next)
365 1.1 grant if (strncmp(dv->dv_xname, "ki2c", 4) == 0 &&
366 1.1 grant strncmp(dv->dv_parent->dv_xname, "obio", 4) == 0)
367 1.1 grant sc->sc_i2c = dv;
368 1.1 grant if (sc->sc_i2c == NULL) {
369 1.1 grant printf("%s: unable to find i2c\n", sc->sc_dev.dv_xname);
370 1.1 grant return;
371 1.1 grant }
372 1.4 kent
373 1.1 grant /* XXX If i2c was failed to attach, what should we do? */
374 1.1 grant
375 1.1 grant audio_attach_mi(&snapper_hw_if, sc, &sc->sc_dev);
376 1.1 grant
377 1.1 grant /* ki2c_setmode(sc->sc_i2c, I2C_STDSUBMODE); */
378 1.1 grant snapper_init(sc, sc->sc_node);
379 1.1 grant }
380 1.1 grant
381 1.1 grant int
382 1.4 kent snapper_intr(void *v)
383 1.1 grant {
384 1.4 kent struct snapper_softc *sc;
385 1.4 kent struct dbdma_command *cmd;
386 1.4 kent int count;
387 1.1 grant int status;
388 1.1 grant
389 1.4 kent sc = v;
390 1.4 kent cmd = sc->sc_odmacmd;
391 1.4 kent count = sc->sc_opages;
392 1.1 grant /* Fill used buffer(s). */
393 1.1 grant while (count-- > 0) {
394 1.1 grant if ((dbdma_ld16(&cmd->d_command) & 0x30) == 0x30) {
395 1.1 grant status = dbdma_ld16(&cmd->d_status);
396 1.1 grant cmd->d_status = 0;
397 1.1 grant if (status) /* status == 0x8400 */
398 1.1 grant if (sc->sc_ointr)
399 1.1 grant (*sc->sc_ointr)(sc->sc_oarg);
400 1.1 grant }
401 1.1 grant cmd++;
402 1.1 grant }
403 1.1 grant
404 1.1 grant return 1;
405 1.1 grant }
406 1.1 grant
407 1.1 grant /*
408 1.1 grant * Close function is called at splaudio().
409 1.1 grant */
410 1.1 grant void
411 1.4 kent snapper_close(void *h)
412 1.1 grant {
413 1.4 kent struct snapper_softc *sc;
414 1.1 grant
415 1.4 kent sc = h;
416 1.1 grant snapper_halt_output(sc);
417 1.1 grant snapper_halt_input(sc);
418 1.1 grant
419 1.1 grant sc->sc_ointr = 0;
420 1.1 grant sc->sc_iintr = 0;
421 1.1 grant }
422 1.1 grant
423 1.1 grant int
424 1.4 kent snapper_query_encoding(void *h, struct audio_encoding *ae)
425 1.1 grant {
426 1.4 kent
427 1.1 grant ae->flags = AUDIO_ENCODINGFLAG_EMULATED;
428 1.1 grant switch (ae->index) {
429 1.1 grant case 0:
430 1.1 grant strcpy(ae->name, AudioEslinear);
431 1.1 grant ae->encoding = AUDIO_ENCODING_SLINEAR;
432 1.1 grant ae->precision = 16;
433 1.1 grant ae->flags = 0;
434 1.1 grant return 0;
435 1.1 grant case 1:
436 1.1 grant strcpy(ae->name, AudioEslinear_be);
437 1.1 grant ae->encoding = AUDIO_ENCODING_SLINEAR_BE;
438 1.1 grant ae->precision = 16;
439 1.1 grant ae->flags = 0;
440 1.1 grant return 0;
441 1.1 grant case 2:
442 1.1 grant strcpy(ae->name, AudioEslinear_le);
443 1.1 grant ae->encoding = AUDIO_ENCODING_SLINEAR_LE;
444 1.1 grant ae->precision = 16;
445 1.1 grant return 0;
446 1.1 grant case 3:
447 1.1 grant strcpy(ae->name, AudioEulinear_be);
448 1.1 grant ae->encoding = AUDIO_ENCODING_ULINEAR_BE;
449 1.1 grant ae->precision = 16;
450 1.1 grant return 0;
451 1.1 grant case 4:
452 1.1 grant strcpy(ae->name, AudioEulinear_le);
453 1.1 grant ae->encoding = AUDIO_ENCODING_ULINEAR_LE;
454 1.1 grant ae->precision = 16;
455 1.1 grant return 0;
456 1.1 grant case 5:
457 1.1 grant strcpy(ae->name, AudioEmulaw);
458 1.1 grant ae->encoding = AUDIO_ENCODING_ULAW;
459 1.1 grant ae->precision = 8;
460 1.1 grant return 0;
461 1.1 grant case 6:
462 1.1 grant strcpy(ae->name, AudioEalaw);
463 1.1 grant ae->encoding = AUDIO_ENCODING_ALAW;
464 1.1 grant ae->precision = 8;
465 1.1 grant return 0;
466 1.1 grant default:
467 1.1 grant return EINVAL;
468 1.1 grant }
469 1.1 grant }
470 1.1 grant
471 1.1 grant int
472 1.4 kent snapper_set_params(void *h, int setmode, int usemode,
473 1.4 kent audio_params_t *play, audio_params_t *rec,
474 1.4 kent stream_filter_list_t *pfil, stream_filter_list_t *rfil)
475 1.1 grant {
476 1.4 kent struct snapper_softc *sc;
477 1.3 kent audio_params_t *p;
478 1.3 kent stream_filter_list_t *fil;
479 1.3 kent int mode;
480 1.1 grant
481 1.4 kent sc = h;
482 1.1 grant p = NULL;
483 1.1 grant
484 1.1 grant /*
485 1.1 grant * This device only has one clock, so make the sample rates match.
486 1.1 grant */
487 1.1 grant if (play->sample_rate != rec->sample_rate &&
488 1.1 grant usemode == (AUMODE_PLAY | AUMODE_RECORD)) {
489 1.1 grant if (setmode == AUMODE_PLAY) {
490 1.1 grant rec->sample_rate = play->sample_rate;
491 1.1 grant setmode |= AUMODE_RECORD;
492 1.1 grant } else if (setmode == AUMODE_RECORD) {
493 1.1 grant play->sample_rate = rec->sample_rate;
494 1.1 grant setmode |= AUMODE_PLAY;
495 1.1 grant } else
496 1.1 grant return EINVAL;
497 1.1 grant }
498 1.1 grant
499 1.1 grant for (mode = AUMODE_RECORD; mode != -1;
500 1.1 grant mode = mode == AUMODE_RECORD ? AUMODE_PLAY : -1) {
501 1.1 grant if ((setmode & mode) == 0)
502 1.1 grant continue;
503 1.1 grant
504 1.1 grant p = mode == AUMODE_PLAY ? play : rec;
505 1.3 kent if (p->sample_rate < 4000 || p->sample_rate > 50000)
506 1.1 grant return EINVAL;
507 1.1 grant
508 1.3 kent fil = mode == AUMODE_PLAY ? pfil : rfil;
509 1.3 kent if (auconv_set_converter(snapper_formats, SNAPPER_NFORMATS,
510 1.3 kent mode, p, TRUE, fil) < 0)
511 1.1 grant return EINVAL;
512 1.3 kent if (fil->req_size > 0)
513 1.3 kent p = &fil->filters[0].param;
514 1.1 grant }
515 1.1 grant
516 1.3 kent /* Set the speed. p points HW encoding. */
517 1.3 kent if (snapper_set_rate(sc, p->sample_rate))
518 1.1 grant return EINVAL;
519 1.1 grant
520 1.1 grant return 0;
521 1.1 grant }
522 1.1 grant
523 1.1 grant int
524 1.4 kent snapper_round_blocksize(void *h, int size, int mode,
525 1.4 kent const audio_params_t *param)
526 1.1 grant {
527 1.4 kent
528 1.1 grant if (size < NBPG)
529 1.1 grant size = NBPG;
530 1.1 grant return size & ~PGOFSET;
531 1.1 grant }
532 1.1 grant
533 1.1 grant int
534 1.4 kent snapper_halt_output(void *h)
535 1.1 grant {
536 1.4 kent struct snapper_softc *sc;
537 1.1 grant
538 1.4 kent sc = h;
539 1.1 grant dbdma_stop(sc->sc_odma);
540 1.1 grant dbdma_reset(sc->sc_odma);
541 1.1 grant return 0;
542 1.1 grant }
543 1.1 grant
544 1.1 grant int
545 1.4 kent snapper_halt_input(void *h)
546 1.1 grant {
547 1.4 kent struct snapper_softc *sc;
548 1.1 grant
549 1.4 kent sc = h;
550 1.1 grant dbdma_stop(sc->sc_idma);
551 1.1 grant dbdma_reset(sc->sc_idma);
552 1.1 grant return 0;
553 1.1 grant }
554 1.1 grant
555 1.1 grant int
556 1.4 kent snapper_getdev(void *h, struct audio_device *retp)
557 1.1 grant {
558 1.4 kent
559 1.1 grant *retp = snapper_device;
560 1.1 grant return 0;
561 1.1 grant }
562 1.1 grant
563 1.1 grant enum {
564 1.1 grant SNAPPER_MONITOR_CLASS,
565 1.1 grant SNAPPER_OUTPUT_CLASS,
566 1.1 grant SNAPPER_RECORD_CLASS,
567 1.1 grant SNAPPER_OUTPUT_SELECT,
568 1.1 grant SNAPPER_VOL_OUTPUT,
569 1.1 grant SNAPPER_INPUT_SELECT,
570 1.1 grant SNAPPER_VOL_INPUT,
571 1.1 grant SNAPPER_ENUM_LAST
572 1.1 grant };
573 1.1 grant
574 1.1 grant int
575 1.4 kent snapper_set_port(void *h, mixer_ctrl_t *mc)
576 1.1 grant {
577 1.4 kent struct snapper_softc *sc;
578 1.1 grant int l, r;
579 1.1 grant
580 1.1 grant DPRINTF("snapper_set_port dev = %d, type = %d\n", mc->dev, mc->type);
581 1.4 kent sc = h;
582 1.1 grant l = mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT];
583 1.1 grant r = mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT];
584 1.1 grant
585 1.1 grant switch (mc->dev) {
586 1.1 grant case SNAPPER_OUTPUT_SELECT:
587 1.1 grant /* No change necessary? */
588 1.1 grant if (mc->un.mask == sc->sc_output_mask)
589 1.1 grant return 0;
590 1.1 grant
591 1.1 grant snapper_mute_speaker(sc, 1);
592 1.1 grant snapper_mute_headphone(sc, 1);
593 1.1 grant if (mc->un.mask & 1 << 0)
594 1.1 grant snapper_mute_speaker(sc, 0);
595 1.1 grant if (mc->un.mask & 1 << 1)
596 1.1 grant snapper_mute_headphone(sc, 0);
597 1.1 grant
598 1.1 grant sc->sc_output_mask = mc->un.mask;
599 1.1 grant return 0;
600 1.1 grant
601 1.1 grant case SNAPPER_VOL_OUTPUT:
602 1.1 grant snapper_set_volume(sc, l, r);
603 1.1 grant return 0;
604 1.1 grant
605 1.1 grant case SNAPPER_INPUT_SELECT:
606 1.1 grant /* no change necessary? */
607 1.1 grant if (mc->un.mask == sc->sc_record_source)
608 1.1 grant return 0;
609 1.1 grant switch (mc->un.mask) {
610 1.1 grant case 1 << 0: /* CD */
611 1.1 grant case 1 << 1: /* microphone */
612 1.1 grant case 1 << 2: /* line in */
613 1.1 grant /* XXX TO BE DONE */
614 1.1 grant break;
615 1.1 grant default: /* invalid argument */
616 1.1 grant return EINVAL;
617 1.1 grant }
618 1.1 grant sc->sc_record_source = mc->un.mask;
619 1.1 grant return 0;
620 1.1 grant
621 1.1 grant case SNAPPER_VOL_INPUT:
622 1.1 grant /* XXX TO BE DONE */
623 1.1 grant return 0;
624 1.1 grant }
625 1.1 grant
626 1.1 grant return ENXIO;
627 1.1 grant }
628 1.1 grant
629 1.1 grant int
630 1.4 kent snapper_get_port(void *h, mixer_ctrl_t *mc)
631 1.1 grant {
632 1.4 kent struct snapper_softc *sc;
633 1.1 grant
634 1.1 grant DPRINTF("snapper_get_port dev = %d, type = %d\n", mc->dev, mc->type);
635 1.4 kent sc = h;
636 1.1 grant switch (mc->dev) {
637 1.1 grant case SNAPPER_OUTPUT_SELECT:
638 1.1 grant mc->un.mask = sc->sc_output_mask;
639 1.1 grant return 0;
640 1.1 grant
641 1.1 grant case SNAPPER_VOL_OUTPUT:
642 1.1 grant mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = sc->sc_vol_l;
643 1.1 grant mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = sc->sc_vol_r;
644 1.1 grant return 0;
645 1.1 grant
646 1.1 grant case SNAPPER_INPUT_SELECT:
647 1.1 grant mc->un.mask = sc->sc_record_source;
648 1.1 grant return 0;
649 1.1 grant
650 1.1 grant case SNAPPER_VOL_INPUT:
651 1.1 grant /* XXX TO BE DONE */
652 1.1 grant mc->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = 0;
653 1.1 grant mc->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = 0;
654 1.1 grant return 0;
655 1.1 grant
656 1.1 grant default:
657 1.1 grant return ENXIO;
658 1.1 grant }
659 1.1 grant
660 1.1 grant return 0;
661 1.1 grant }
662 1.1 grant
663 1.1 grant int
664 1.4 kent snapper_query_devinfo(void *h, mixer_devinfo_t *dip)
665 1.1 grant {
666 1.1 grant switch (dip->index) {
667 1.1 grant
668 1.1 grant case SNAPPER_OUTPUT_SELECT:
669 1.1 grant dip->mixer_class = SNAPPER_MONITOR_CLASS;
670 1.1 grant strcpy(dip->label.name, AudioNoutput);
671 1.1 grant dip->type = AUDIO_MIXER_SET;
672 1.1 grant dip->prev = dip->next = AUDIO_MIXER_LAST;
673 1.1 grant dip->un.s.num_mem = 2;
674 1.1 grant strcpy(dip->un.s.member[0].label.name, AudioNspeaker);
675 1.1 grant dip->un.s.member[0].mask = 1 << 0;
676 1.1 grant strcpy(dip->un.s.member[1].label.name, AudioNheadphone);
677 1.1 grant dip->un.s.member[1].mask = 1 << 1;
678 1.1 grant return 0;
679 1.1 grant
680 1.1 grant case SNAPPER_VOL_OUTPUT:
681 1.1 grant dip->mixer_class = SNAPPER_MONITOR_CLASS;
682 1.1 grant strcpy(dip->label.name, AudioNmaster);
683 1.1 grant dip->type = AUDIO_MIXER_VALUE;
684 1.1 grant dip->prev = dip->next = AUDIO_MIXER_LAST;
685 1.1 grant dip->un.v.num_channels = 2;
686 1.1 grant strcpy(dip->un.v.units.name, AudioNvolume);
687 1.1 grant return 0;
688 1.1 grant
689 1.1 grant case SNAPPER_INPUT_SELECT:
690 1.1 grant dip->mixer_class = SNAPPER_RECORD_CLASS;
691 1.1 grant strcpy(dip->label.name, AudioNsource);
692 1.1 grant dip->type = AUDIO_MIXER_SET;
693 1.1 grant dip->prev = dip->next = AUDIO_MIXER_LAST;
694 1.1 grant dip->un.s.num_mem = 3;
695 1.1 grant strcpy(dip->un.s.member[0].label.name, AudioNcd);
696 1.1 grant dip->un.s.member[0].mask = 1 << 0;
697 1.1 grant strcpy(dip->un.s.member[1].label.name, AudioNmicrophone);
698 1.1 grant dip->un.s.member[1].mask = 1 << 1;
699 1.1 grant strcpy(dip->un.s.member[2].label.name, AudioNline);
700 1.1 grant dip->un.s.member[2].mask = 1 << 2;
701 1.1 grant return 0;
702 1.1 grant
703 1.1 grant case SNAPPER_VOL_INPUT:
704 1.1 grant dip->mixer_class = SNAPPER_RECORD_CLASS;
705 1.1 grant strcpy(dip->label.name, AudioNrecord);
706 1.1 grant dip->type = AUDIO_MIXER_VALUE;
707 1.1 grant dip->prev = dip->next = AUDIO_MIXER_LAST;
708 1.1 grant dip->un.v.num_channels = 2;
709 1.1 grant strcpy(dip->un.v.units.name, AudioNvolume);
710 1.1 grant return 0;
711 1.1 grant
712 1.1 grant case SNAPPER_MONITOR_CLASS:
713 1.1 grant dip->mixer_class = SNAPPER_MONITOR_CLASS;
714 1.1 grant strcpy(dip->label.name, AudioCmonitor);
715 1.1 grant dip->type = AUDIO_MIXER_CLASS;
716 1.1 grant dip->next = dip->prev = AUDIO_MIXER_LAST;
717 1.1 grant return 0;
718 1.1 grant
719 1.1 grant case SNAPPER_OUTPUT_CLASS:
720 1.1 grant dip->mixer_class = SNAPPER_OUTPUT_CLASS;
721 1.1 grant strcpy(dip->label.name, AudioCoutputs);
722 1.1 grant dip->type = AUDIO_MIXER_CLASS;
723 1.1 grant dip->next = dip->prev = AUDIO_MIXER_LAST;
724 1.1 grant return 0;
725 1.1 grant
726 1.1 grant case SNAPPER_RECORD_CLASS:
727 1.1 grant dip->mixer_class = SNAPPER_RECORD_CLASS;
728 1.1 grant strcpy(dip->label.name, AudioCrecord);
729 1.1 grant dip->type = AUDIO_MIXER_CLASS;
730 1.1 grant dip->next = dip->prev = AUDIO_MIXER_LAST;
731 1.1 grant return 0;
732 1.1 grant }
733 1.1 grant
734 1.1 grant return ENXIO;
735 1.1 grant }
736 1.1 grant
737 1.1 grant size_t
738 1.4 kent snapper_round_buffersize(void *h, int dir, size_t size)
739 1.1 grant {
740 1.4 kent
741 1.1 grant if (size > 65536)
742 1.1 grant size = 65536;
743 1.1 grant return size;
744 1.1 grant }
745 1.1 grant
746 1.1 grant paddr_t
747 1.4 kent snapper_mappage(void *h, void *mem, off_t off, int prot)
748 1.1 grant {
749 1.4 kent
750 1.1 grant if (off < 0)
751 1.1 grant return -1;
752 1.1 grant return -1; /* XXX */
753 1.1 grant }
754 1.1 grant
755 1.1 grant int
756 1.4 kent snapper_get_props(void *h)
757 1.1 grant {
758 1.1 grant return AUDIO_PROP_FULLDUPLEX /* | AUDIO_PROP_MMAP */;
759 1.1 grant }
760 1.1 grant
761 1.1 grant int
762 1.4 kent snapper_trigger_output(void *h, void *start, void *end, int bsize,
763 1.4 kent void (*intr)(void *), void *arg,
764 1.4 kent const audio_params_t *param)
765 1.1 grant {
766 1.4 kent struct snapper_softc *sc;
767 1.4 kent struct dbdma_command *cmd;
768 1.1 grant vaddr_t va;
769 1.1 grant int i, len, intmode;
770 1.1 grant
771 1.1 grant DPRINTF("trigger_output %p %p 0x%x\n", start, end, bsize);
772 1.4 kent sc = h;
773 1.4 kent cmd = sc->sc_odmacmd;
774 1.1 grant sc->sc_ointr = intr;
775 1.1 grant sc->sc_oarg = arg;
776 1.1 grant sc->sc_opages = ((char *)end - (char *)start) / NBPG;
777 1.1 grant
778 1.1 grant #ifdef DIAGNOSTIC
779 1.1 grant if (sc->sc_opages > 16)
780 1.1 grant panic("snapper_trigger_output");
781 1.1 grant #endif
782 1.1 grant
783 1.1 grant va = (vaddr_t)start;
784 1.1 grant len = 0;
785 1.1 grant for (i = sc->sc_opages; i > 0; i--) {
786 1.1 grant len += NBPG;
787 1.1 grant if (len < bsize)
788 1.1 grant intmode = 0;
789 1.1 grant else {
790 1.1 grant len = 0;
791 1.1 grant intmode = DBDMA_INT_ALWAYS;
792 1.1 grant }
793 1.1 grant
794 1.4 kent DBDMA_BUILD(cmd, DBDMA_CMD_OUT_MORE, 0, NBPG, vtophys(va),
795 1.4 kent intmode, DBDMA_WAIT_NEVER, DBDMA_BRANCH_NEVER);
796 1.1 grant cmd++;
797 1.1 grant va += NBPG;
798 1.1 grant }
799 1.1 grant
800 1.1 grant DBDMA_BUILD(cmd, DBDMA_CMD_NOP, 0, 0,
801 1.4 kent 0/*vtophys((vaddr_t)sc->sc_odmacmd)*/, 0, DBDMA_WAIT_NEVER,
802 1.4 kent DBDMA_BRANCH_ALWAYS);
803 1.1 grant
804 1.1 grant dbdma_st32(&cmd->d_cmddep, vtophys((vaddr_t)sc->sc_odmacmd));
805 1.1 grant
806 1.1 grant dbdma_start(sc->sc_odma, sc->sc_odmacmd);
807 1.1 grant
808 1.1 grant return 0;
809 1.1 grant }
810 1.1 grant
811 1.1 grant int
812 1.4 kent snapper_trigger_input(void *h, void *start, void *end, int bsize,
813 1.4 kent void (*intr)(void *), void *arg,
814 1.4 kent const audio_params_t *param)
815 1.1 grant {
816 1.4 kent
817 1.1 grant printf("snapper_trigger_input called\n");
818 1.1 grant return 1;
819 1.1 grant }
820 1.1 grant
821 1.1 grant void
822 1.4 kent snapper_set_volume(struct snapper_softc *sc, int left, int right)
823 1.1 grant {
824 1.1 grant u_char vol[6];
825 1.1 grant
826 1.1 grant sc->sc_vol_l = left;
827 1.1 grant sc->sc_vol_r = right;
828 1.1 grant
829 1.1 grant left <<= 8; /* XXX for now */
830 1.1 grant right <<= 8;
831 1.1 grant
832 1.1 grant vol[0] = left >> 16;
833 1.1 grant vol[1] = left >> 8;
834 1.1 grant vol[2] = left;
835 1.1 grant vol[3] = right >> 16;
836 1.1 grant vol[4] = right >> 8;
837 1.1 grant vol[5] = right;
838 1.1 grant
839 1.1 grant tas3004_write(sc, DEQ_VOLUME, vol);
840 1.1 grant }
841 1.1 grant
842 1.1 grant #define CLKSRC_49MHz 0x80000000 /* Use 49152000Hz Osc. */
843 1.1 grant #define CLKSRC_45MHz 0x40000000 /* Use 45158400Hz Osc. */
844 1.1 grant #define CLKSRC_18MHz 0x00000000 /* Use 18432000Hz Osc. */
845 1.1 grant #define MCLK_DIV 0x1f000000 /* MCLK = SRC / DIV */
846 1.1 grant #define MCLK_DIV1 0x14000000 /* MCLK = SRC */
847 1.1 grant #define MCLK_DIV3 0x13000000 /* MCLK = SRC / 3 */
848 1.1 grant #define MCLK_DIV5 0x12000000 /* MCLK = SRC / 5 */
849 1.1 grant #define SCLK_DIV 0x00f00000 /* SCLK = MCLK / DIV */
850 1.1 grant #define SCLK_DIV1 0x00800000
851 1.1 grant #define SCLK_DIV3 0x00900000
852 1.1 grant #define SCLK_MASTER 0x00080000 /* Master mode */
853 1.1 grant #define SCLK_SLAVE 0x00000000 /* Slave mode */
854 1.1 grant #define SERIAL_FORMAT 0x00070000
855 1.1 grant #define SERIAL_SONY 0x00000000
856 1.1 grant #define SERIAL_64x 0x00010000
857 1.1 grant #define SERIAL_32x 0x00020000
858 1.1 grant #define SERIAL_DAV 0x00040000
859 1.1 grant #define SERIAL_SILICON 0x00050000
860 1.1 grant
861 1.1 grant // rate = fs = LRCLK
862 1.1 grant // SCLK = 64*LRCLK (I2S)
863 1.1 grant // MCLK = 256fs (typ. -- changeable)
864 1.1 grant
865 1.1 grant // MCLK = clksrc / mdiv
866 1.1 grant // SCLK = MCLK / sdiv
867 1.1 grant // rate = SCLK / 64 ( = LRCLK = fs)
868 1.1 grant
869 1.1 grant int
870 1.4 kent snapper_set_rate(struct snapper_softc *sc, u_int rate)
871 1.1 grant {
872 1.4 kent u_int reg;
873 1.1 grant int MCLK;
874 1.1 grant int clksrc, mdiv, sdiv;
875 1.1 grant int mclk_fs;
876 1.1 grant
877 1.4 kent reg = 0;
878 1.1 grant switch (rate) {
879 1.1 grant case 8000:
880 1.1 grant clksrc = 18432000; /* 18MHz */
881 1.1 grant reg = CLKSRC_18MHz;
882 1.1 grant mclk_fs = 256;
883 1.1 grant break;
884 1.1 grant
885 1.1 grant case 44100:
886 1.1 grant clksrc = 45158400; /* 45MHz */
887 1.1 grant reg = CLKSRC_45MHz;
888 1.1 grant mclk_fs = 256;
889 1.1 grant break;
890 1.1 grant
891 1.1 grant case 48000:
892 1.1 grant clksrc = 49152000; /* 49MHz */
893 1.1 grant reg = CLKSRC_49MHz;
894 1.1 grant mclk_fs = 256;
895 1.1 grant break;
896 1.1 grant
897 1.1 grant default:
898 1.1 grant return EINVAL;
899 1.1 grant }
900 1.1 grant
901 1.1 grant MCLK = rate * mclk_fs;
902 1.1 grant mdiv = clksrc / MCLK; // 4
903 1.1 grant sdiv = mclk_fs / 64; // 4
904 1.1 grant
905 1.1 grant switch (mdiv) {
906 1.1 grant case 1:
907 1.1 grant reg |= MCLK_DIV1;
908 1.1 grant break;
909 1.1 grant case 3:
910 1.1 grant reg |= MCLK_DIV3;
911 1.1 grant break;
912 1.1 grant case 5:
913 1.1 grant reg |= MCLK_DIV5;
914 1.1 grant break;
915 1.1 grant default:
916 1.1 grant reg |= ((mdiv / 2 - 1) << 24) & 0x1f000000;
917 1.1 grant break;
918 1.1 grant }
919 1.1 grant
920 1.1 grant switch (sdiv) {
921 1.1 grant case 1:
922 1.1 grant reg |= SCLK_DIV1;
923 1.1 grant break;
924 1.1 grant case 3:
925 1.1 grant reg |= SCLK_DIV3;
926 1.1 grant break;
927 1.1 grant default:
928 1.1 grant reg |= ((sdiv / 2 - 1) << 20) & 0x00f00000;
929 1.1 grant break;
930 1.1 grant }
931 1.1 grant
932 1.1 grant reg |= SCLK_MASTER; /* XXX master mode */
933 1.1 grant
934 1.1 grant reg |= SERIAL_64x;
935 1.1 grant
936 1.1 grant /* stereo input and output */
937 1.1 grant DPRINTF("I2SSetDataWordSizeReg 0x%08x -> 0x%08x\n",
938 1.1 grant in32rb(sc->sc_reg + I2S_WORDSIZE), 0x02000200);
939 1.1 grant out32rb(sc->sc_reg + I2S_WORDSIZE, 0x02000200);
940 1.1 grant
941 1.1 grant DPRINTF("I2SSetSerialFormatReg 0x%x -> 0x%x\n",
942 1.1 grant in32rb(sc->sc_reg + I2S_FORMAT), reg);
943 1.1 grant out32rb(sc->sc_reg + I2S_FORMAT, reg);
944 1.1 grant
945 1.1 grant return 0;
946 1.1 grant }
947 1.1 grant
948 1.1 grant #define DEQaddr 0x6a
949 1.1 grant
950 1.1 grant const struct tas3004_reg tas3004_initdata = {
951 1.1 grant { DEQ_MCR1_SC_64 | DEQ_MCR1_SM_I2S | DEQ_MCR1_W_20 }, /* MCR1 */
952 1.1 grant { 1, 0, 0, 0, 0, 0 }, /* DRC */
953 1.1 grant { 0, 0, 0, 0, 0, 0 }, /* VOLUME */
954 1.1 grant { 0x72 }, /* TREBLE */
955 1.1 grant { 0x72 }, /* BASS */
956 1.1 grant { 0x10, 0x00, 0x00, 0, 0, 0, 0, 0, 0 }, /* MIXER_L */
957 1.1 grant { 0x10, 0x00, 0x00, 0, 0, 0, 0, 0, 0 }, /* MIXER_R */
958 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
959 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
960 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
961 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
962 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
963 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
964 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
965 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
966 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
967 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
968 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
969 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
970 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
971 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
972 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
973 1.1 grant { 0x10, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, /* BIQUAD */
974 1.1 grant { 0, 0, 0 }, /* LLB_GAIN */
975 1.1 grant { 0, 0, 0 }, /* RLB_GAIN */
976 1.1 grant { 0 }, /* ACR */
977 1.1 grant { 0 } /* MCR2 */
978 1.1 grant };
979 1.1 grant
980 1.1 grant const char tas3004_regsize[] = {
981 1.1 grant 0, /* 0x00 */
982 1.1 grant sizeof tas3004_initdata.MCR1, /* 0x01 */
983 1.1 grant sizeof tas3004_initdata.DRC, /* 0x02 */
984 1.1 grant 0, /* 0x03 */
985 1.1 grant sizeof tas3004_initdata.VOLUME, /* 0x04 */
986 1.1 grant sizeof tas3004_initdata.TREBLE, /* 0x05 */
987 1.1 grant sizeof tas3004_initdata.BASS, /* 0x06 */
988 1.1 grant sizeof tas3004_initdata.MIXER_L, /* 0x07 */
989 1.1 grant sizeof tas3004_initdata.MIXER_R, /* 0x08 */
990 1.1 grant 0, /* 0x09 */
991 1.1 grant sizeof tas3004_initdata.LB0, /* 0x0a */
992 1.1 grant sizeof tas3004_initdata.LB1, /* 0x0b */
993 1.1 grant sizeof tas3004_initdata.LB2, /* 0x0c */
994 1.1 grant sizeof tas3004_initdata.LB3, /* 0x0d */
995 1.1 grant sizeof tas3004_initdata.LB4, /* 0x0e */
996 1.1 grant sizeof tas3004_initdata.LB5, /* 0x0f */
997 1.1 grant sizeof tas3004_initdata.LB6, /* 0x10 */
998 1.1 grant 0, /* 0x11 */
999 1.1 grant 0, /* 0x12 */
1000 1.1 grant sizeof tas3004_initdata.RB0, /* 0x13 */
1001 1.1 grant sizeof tas3004_initdata.RB1, /* 0x14 */
1002 1.1 grant sizeof tas3004_initdata.RB2, /* 0x15 */
1003 1.1 grant sizeof tas3004_initdata.RB3, /* 0x16 */
1004 1.1 grant sizeof tas3004_initdata.RB4, /* 0x17 */
1005 1.1 grant sizeof tas3004_initdata.RB5, /* 0x18 */
1006 1.1 grant sizeof tas3004_initdata.RB6, /* 0x19 */
1007 1.1 grant 0,0,0,0, 0,0,
1008 1.1 grant 0, /* 0x20 */
1009 1.1 grant sizeof tas3004_initdata.LLB, /* 0x21 */
1010 1.1 grant sizeof tas3004_initdata.RLB, /* 0x22 */
1011 1.1 grant sizeof tas3004_initdata.LLB_GAIN, /* 0x23 */
1012 1.1 grant sizeof tas3004_initdata.RLB_GAIN, /* 0x24 */
1013 1.1 grant 0,0,0,0, 0,0,0,0, 0,0,0,
1014 1.1 grant 0,0,0,0, 0,0,0,0, 0,0,0,0, 0,0,0,0,
1015 1.1 grant sizeof tas3004_initdata.ACR, /* 0x40 */
1016 1.1 grant 0, /* 0x41 */
1017 1.1 grant 0, /* 0x42 */
1018 1.1 grant sizeof tas3004_initdata.MCR2 /* 0x43 */
1019 1.1 grant };
1020 1.1 grant
1021 1.1 grant int
1022 1.4 kent tas3004_write(struct snapper_softc *sc, u_int reg, const void *data)
1023 1.1 grant {
1024 1.1 grant int size;
1025 1.1 grant
1026 1.1 grant KASSERT(reg < sizeof tas3004_regsize);
1027 1.1 grant size = tas3004_regsize[reg];
1028 1.1 grant KASSERT(size > 0);
1029 1.1 grant
1030 1.1 grant if (ki2c_write(sc->sc_i2c, DEQaddr, reg, data, size))
1031 1.1 grant return -1;
1032 1.1 grant
1033 1.1 grant return 0;
1034 1.1 grant }
1035 1.1 grant
1036 1.1 grant int
1037 1.4 kent gpio_read(char *addr)
1038 1.1 grant {
1039 1.4 kent
1040 1.1 grant if (*addr & GPIO_DATA)
1041 1.1 grant return 1;
1042 1.1 grant return 0;
1043 1.1 grant }
1044 1.1 grant
1045 1.1 grant void
1046 1.4 kent gpio_write(char *addr, int val)
1047 1.1 grant {
1048 1.4 kent u_int data;
1049 1.1 grant
1050 1.4 kent data = GPIO_DDR_OUTPUT;
1051 1.1 grant if (val)
1052 1.1 grant data |= GPIO_DATA;
1053 1.1 grant *addr = data;
1054 1.1 grant asm volatile ("eieio");
1055 1.1 grant }
1056 1.1 grant
1057 1.1 grant #define headphone_active 0 /* XXX OF */
1058 1.1 grant #define amp_active 0 /* XXX OF */
1059 1.1 grant
1060 1.1 grant void
1061 1.4 kent snapper_mute_speaker(struct snapper_softc *sc, int mute)
1062 1.1 grant {
1063 1.1 grant u_int x;
1064 1.1 grant
1065 1.1 grant DPRINTF("ampmute %d --> ", gpio_read(amp_mute));
1066 1.1 grant
1067 1.1 grant if (mute)
1068 1.1 grant x = amp_active; /* mute */
1069 1.1 grant else
1070 1.1 grant x = !amp_active; /* unmute */
1071 1.1 grant if (x != gpio_read(amp_mute))
1072 1.1 grant gpio_write(amp_mute, x);
1073 1.1 grant
1074 1.1 grant DPRINTF("%d\n", gpio_read(amp_mute));
1075 1.1 grant }
1076 1.1 grant
1077 1.1 grant void
1078 1.4 kent snapper_mute_headphone(struct snapper_softc *sc, int mute)
1079 1.1 grant {
1080 1.1 grant u_int x;
1081 1.1 grant
1082 1.1 grant DPRINTF("headphonemute %d --> ", gpio_read(headphone_mute));
1083 1.1 grant
1084 1.1 grant if (mute)
1085 1.1 grant x = headphone_active; /* mute */
1086 1.1 grant else
1087 1.1 grant x = !headphone_active; /* unmute */
1088 1.1 grant if (x != gpio_read(headphone_mute))
1089 1.1 grant gpio_write(headphone_mute, x);
1090 1.1 grant
1091 1.1 grant DPRINTF("%d\n", gpio_read(headphone_mute));
1092 1.1 grant }
1093 1.1 grant
1094 1.1 grant int
1095 1.4 kent snapper_cint(void *v)
1096 1.1 grant {
1097 1.4 kent struct snapper_softc *sc;
1098 1.1 grant u_int sense;
1099 1.1 grant
1100 1.4 kent sc = v;
1101 1.1 grant sense = *headphone_detect;
1102 1.1 grant DPRINTF("headphone detect = 0x%x\n", sense);
1103 1.1 grant
1104 1.1 grant if (((sense & 0x02) >> 1) == headphone_detect_active) {
1105 1.1 grant DPRINTF("headphone is inserted\n");
1106 1.1 grant snapper_mute_speaker(sc, 1);
1107 1.1 grant snapper_mute_headphone(sc, 0);
1108 1.1 grant sc->sc_output_mask = 1 << 1;
1109 1.1 grant } else {
1110 1.1 grant DPRINTF("headphone is NOT inserted\n");
1111 1.1 grant snapper_mute_speaker(sc, 0);
1112 1.1 grant snapper_mute_headphone(sc, 1);
1113 1.1 grant sc->sc_output_mask = 1 << 0;
1114 1.1 grant }
1115 1.1 grant
1116 1.1 grant return 1;
1117 1.1 grant }
1118 1.1 grant
1119 1.1 grant #define reset_active 0 /* XXX OF */
1120 1.1 grant
1121 1.1 grant #define DEQ_WRITE(sc, reg, addr) \
1122 1.1 grant if (tas3004_write(sc, reg, addr)) goto err
1123 1.1 grant
1124 1.1 grant int
1125 1.4 kent tas3004_init(struct snapper_softc *sc)
1126 1.1 grant {
1127 1.1 grant
1128 1.1 grant /* No reset port. Nothing to do. */
1129 1.1 grant if (audio_hw_reset == NULL)
1130 1.1 grant goto noreset;
1131 1.1 grant
1132 1.1 grant /* Reset TAS3004. */
1133 1.1 grant gpio_write(audio_hw_reset, !reset_active); /* Negate RESET */
1134 1.1 grant delay(100000); /* XXX Really needed? */
1135 1.1 grant
1136 1.1 grant gpio_write(audio_hw_reset, reset_active); /* Assert RESET */
1137 1.1 grant delay(1);
1138 1.1 grant
1139 1.1 grant gpio_write(audio_hw_reset, !reset_active); /* Negate RESET */
1140 1.1 grant delay(10000);
1141 1.1 grant
1142 1.1 grant noreset:
1143 1.1 grant DEQ_WRITE(sc, DEQ_LB0, tas3004_initdata.LB0);
1144 1.1 grant DEQ_WRITE(sc, DEQ_LB1, tas3004_initdata.LB1);
1145 1.1 grant DEQ_WRITE(sc, DEQ_LB2, tas3004_initdata.LB2);
1146 1.1 grant DEQ_WRITE(sc, DEQ_LB3, tas3004_initdata.LB3);
1147 1.1 grant DEQ_WRITE(sc, DEQ_LB4, tas3004_initdata.LB4);
1148 1.1 grant DEQ_WRITE(sc, DEQ_LB5, tas3004_initdata.LB5);
1149 1.1 grant DEQ_WRITE(sc, DEQ_LB6, tas3004_initdata.LB6);
1150 1.1 grant DEQ_WRITE(sc, DEQ_RB0, tas3004_initdata.RB0);
1151 1.1 grant DEQ_WRITE(sc, DEQ_RB1, tas3004_initdata.RB1);
1152 1.1 grant DEQ_WRITE(sc, DEQ_RB1, tas3004_initdata.RB1);
1153 1.1 grant DEQ_WRITE(sc, DEQ_RB2, tas3004_initdata.RB2);
1154 1.1 grant DEQ_WRITE(sc, DEQ_RB3, tas3004_initdata.RB3);
1155 1.1 grant DEQ_WRITE(sc, DEQ_RB4, tas3004_initdata.RB4);
1156 1.1 grant DEQ_WRITE(sc, DEQ_RB5, tas3004_initdata.RB5);
1157 1.1 grant DEQ_WRITE(sc, DEQ_MCR1, tas3004_initdata.MCR1);
1158 1.1 grant DEQ_WRITE(sc, DEQ_MCR2, tas3004_initdata.MCR2);
1159 1.1 grant DEQ_WRITE(sc, DEQ_DRC, tas3004_initdata.DRC);
1160 1.1 grant DEQ_WRITE(sc, DEQ_VOLUME, tas3004_initdata.VOLUME);
1161 1.1 grant DEQ_WRITE(sc, DEQ_TREBLE, tas3004_initdata.TREBLE);
1162 1.1 grant DEQ_WRITE(sc, DEQ_BASS, tas3004_initdata.BASS);
1163 1.1 grant DEQ_WRITE(sc, DEQ_MIXER_L, tas3004_initdata.MIXER_L);
1164 1.1 grant DEQ_WRITE(sc, DEQ_MIXER_R, tas3004_initdata.MIXER_R);
1165 1.1 grant DEQ_WRITE(sc, DEQ_LLB, tas3004_initdata.LLB);
1166 1.1 grant DEQ_WRITE(sc, DEQ_RLB, tas3004_initdata.RLB);
1167 1.1 grant DEQ_WRITE(sc, DEQ_LLB_GAIN, tas3004_initdata.LLB_GAIN);
1168 1.1 grant DEQ_WRITE(sc, DEQ_RLB_GAIN, tas3004_initdata.RLB_GAIN);
1169 1.1 grant DEQ_WRITE(sc, DEQ_ACR, tas3004_initdata.ACR);
1170 1.1 grant
1171 1.1 grant return 0;
1172 1.1 grant err:
1173 1.1 grant printf("tas3004_init: error\n");
1174 1.1 grant return -1;
1175 1.1 grant }
1176 1.1 grant
1177 1.1 grant /* FCR(0x3c) bits */
1178 1.1 grant #define I2S0CLKEN 0x1000
1179 1.1 grant #define I2S0EN 0x2000
1180 1.1 grant #define I2S1CLKEN 0x080000
1181 1.1 grant #define I2S1EN 0x100000
1182 1.1 grant
1183 1.1 grant #define FCR3C_BITMASK "\020\25I2S1EN\24I2S1CLKEN\16I2S0EN\15I2S0CLKEN"
1184 1.1 grant
1185 1.1 grant void
1186 1.4 kent snapper_init(struct snapper_softc *sc, int node)
1187 1.1 grant {
1188 1.1 grant int gpio;
1189 1.4 kent int headphone_detect_intr, headphone_detect_intrtype;
1190 1.1 grant #ifdef SNAPPER_DEBUG
1191 1.1 grant char fcr[32];
1192 1.1 grant
1193 1.1 grant bitmask_snprintf(in32rb(0x8000003c), FCR3C_BITMASK, fcr, sizeof fcr);
1194 1.1 grant printf("FCR(0x3c) 0x%s\n", fcr);
1195 1.1 grant #endif
1196 1.4 kent headphone_detect_intr = -1;
1197 1.1 grant
1198 1.1 grant gpio = getnodebyname(OF_parent(node), "gpio");
1199 1.1 grant DPRINTF(" /gpio 0x%x\n", gpio);
1200 1.1 grant gpio = OF_child(gpio);
1201 1.1 grant while (gpio) {
1202 1.1 grant char name[64], audio_gpio[64];
1203 1.1 grant int intr[2];
1204 1.1 grant char *addr;
1205 1.1 grant
1206 1.1 grant bzero(name, sizeof name);
1207 1.1 grant bzero(audio_gpio, sizeof audio_gpio);
1208 1.1 grant addr = 0;
1209 1.1 grant OF_getprop(gpio, "name", name, sizeof name);
1210 1.1 grant OF_getprop(gpio, "audio-gpio", audio_gpio, sizeof audio_gpio);
1211 1.1 grant OF_getprop(gpio, "AAPL,address", &addr, sizeof addr);
1212 1.1 grant /* printf("0x%x %s %s\n", gpio, name, audio_gpio); */
1213 1.1 grant
1214 1.1 grant /* gpio5 */
1215 1.1 grant if (strcmp(audio_gpio, "headphone-mute") == 0)
1216 1.1 grant headphone_mute = addr;
1217 1.1 grant /* gpio6 */
1218 1.1 grant if (strcmp(audio_gpio, "amp-mute") == 0)
1219 1.1 grant amp_mute = addr;
1220 1.1 grant /* extint-gpio15 */
1221 1.1 grant if (strcmp(audio_gpio, "headphone-detect") == 0) {
1222 1.1 grant headphone_detect = addr;
1223 1.1 grant OF_getprop(gpio, "audio-gpio-active-state",
1224 1.1 grant &headphone_detect_active, 4);
1225 1.1 grant OF_getprop(gpio, "interrupts", intr, 8);
1226 1.1 grant headphone_detect_intr = intr[0];
1227 1.1 grant headphone_detect_intrtype = intr[1];
1228 1.1 grant }
1229 1.1 grant /* gpio11 (keywest-11) */
1230 1.1 grant if (strcmp(audio_gpio, "audio-hw-reset") == 0)
1231 1.1 grant audio_hw_reset = addr;
1232 1.1 grant gpio = OF_peer(gpio);
1233 1.1 grant }
1234 1.1 grant DPRINTF(" headphone-mute %p\n", headphone_mute);
1235 1.1 grant DPRINTF(" amp-mute %p\n", amp_mute);
1236 1.1 grant DPRINTF(" headphone-detect %p\n", headphone_detect);
1237 1.1 grant DPRINTF(" headphone-detect active %x\n", headphone_detect_active);
1238 1.1 grant DPRINTF(" headphone-detect intr %x\n", headphone_detect_intr);
1239 1.1 grant DPRINTF(" audio-hw-reset %p\n", audio_hw_reset);
1240 1.1 grant
1241 1.1 grant if (headphone_detect_intr != -1)
1242 1.1 grant intr_establish(headphone_detect_intr, IST_EDGE, IPL_AUDIO,
1243 1.1 grant snapper_cint, sc);
1244 1.1 grant
1245 1.1 grant /* "sample-rates" (44100, 48000) */
1246 1.1 grant snapper_set_rate(sc, 44100);
1247 1.1 grant
1248 1.1 grant /* Enable headphone interrupt? */
1249 1.1 grant *headphone_detect |= 0x80;
1250 1.1 grant asm volatile ("eieio");
1251 1.1 grant
1252 1.1 grant /* i2c_set_port(port); */
1253 1.1 grant
1254 1.1 grant #if 1
1255 1.1 grant /* Enable I2C interrupts. */
1256 1.1 grant #define IER 4
1257 1.1 grant #define I2C_INT_DATA 0x01
1258 1.1 grant #define I2C_INT_ADDR 0x02
1259 1.1 grant #define I2C_INT_STOP 0x04
1260 1.1 grant ki2c_writereg(sc->sc_i2c, IER,I2C_INT_DATA|I2C_INT_ADDR|I2C_INT_STOP);
1261 1.1 grant #endif
1262 1.1 grant
1263 1.1 grant if (tas3004_init(sc))
1264 1.1 grant return;
1265 1.1 grant
1266 1.1 grant /* Update headphone status. */
1267 1.1 grant snapper_cint(sc);
1268 1.1 grant
1269 1.1 grant snapper_set_volume(sc, 80, 80);
1270 1.1 grant }
1271