sv.c revision 1.28 1 1.28 perry /* $NetBSD: sv.c,v 1.28 2005/02/27 00:27:34 perry Exp $ */
2 1.1 augustss /* $OpenBSD: sv.c,v 1.2 1998/07/13 01:50:15 csapuntz Exp $ */
3 1.1 augustss
4 1.1 augustss /*
5 1.3 mycroft * Copyright (c) 1999 The NetBSD Foundation, Inc.
6 1.3 mycroft * All rights reserved.
7 1.3 mycroft *
8 1.3 mycroft * This code is derived from software contributed to The NetBSD Foundation
9 1.3 mycroft * by Charles M. Hannum.
10 1.3 mycroft *
11 1.3 mycroft * Redistribution and use in source and binary forms, with or without
12 1.3 mycroft * modification, are permitted provided that the following conditions
13 1.3 mycroft * are met:
14 1.3 mycroft * 1. Redistributions of source code must retain the above copyright
15 1.3 mycroft * notice, this list of conditions and the following disclaimer.
16 1.3 mycroft * 2. Redistributions in binary form must reproduce the above copyright
17 1.3 mycroft * notice, this list of conditions and the following disclaimer in the
18 1.3 mycroft * documentation and/or other materials provided with the distribution.
19 1.3 mycroft * 3. All advertising materials mentioning features or use of this software
20 1.3 mycroft * must display the following acknowledgement:
21 1.3 mycroft * This product includes software developed by the NetBSD
22 1.3 mycroft * Foundation, Inc. and its contributors.
23 1.3 mycroft * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.3 mycroft * contributors may be used to endorse or promote products derived
25 1.3 mycroft * from this software without specific prior written permission.
26 1.3 mycroft *
27 1.3 mycroft * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.3 mycroft * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.3 mycroft * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.3 mycroft * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.3 mycroft * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.3 mycroft * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.3 mycroft * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.3 mycroft * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.3 mycroft * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.3 mycroft * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.3 mycroft * POSSIBILITY OF SUCH DAMAGE.
38 1.3 mycroft */
39 1.3 mycroft
40 1.3 mycroft /*
41 1.1 augustss * Copyright (c) 1998 Constantine Paul Sapuntzakis
42 1.1 augustss * All rights reserved
43 1.1 augustss *
44 1.1 augustss * Author: Constantine Paul Sapuntzakis (csapuntz (at) cvs.openbsd.org)
45 1.1 augustss *
46 1.1 augustss * Redistribution and use in source and binary forms, with or without
47 1.1 augustss * modification, are permitted provided that the following conditions
48 1.1 augustss * are met:
49 1.1 augustss * 1. Redistributions of source code must retain the above copyright
50 1.1 augustss * notice, this list of conditions and the following disclaimer.
51 1.1 augustss * 2. Redistributions in binary form must reproduce the above copyright
52 1.1 augustss * notice, this list of conditions and the following disclaimer in the
53 1.1 augustss * documentation and/or other materials provided with the distribution.
54 1.1 augustss * 3. The author's name or those of the contributors may be used to
55 1.28 perry * endorse or promote products derived from this software without
56 1.1 augustss * specific prior written permission.
57 1.1 augustss *
58 1.1 augustss * THIS SOFTWARE IS PROVIDED BY THE AUTHOR(S) AND CONTRIBUTORS
59 1.1 augustss * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
60 1.1 augustss * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
61 1.1 augustss * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
62 1.1 augustss * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
63 1.1 augustss * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
64 1.1 augustss * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
65 1.1 augustss * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
66 1.1 augustss * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
67 1.1 augustss * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
68 1.1 augustss * POSSIBILITY OF SUCH DAMAGE.
69 1.1 augustss */
70 1.1 augustss
71 1.1 augustss /*
72 1.1 augustss * S3 SonicVibes driver
73 1.1 augustss * Heavily based on the eap driver by Lennart Augustsson
74 1.1 augustss */
75 1.15 lukem
76 1.15 lukem #include <sys/cdefs.h>
77 1.28 perry __KERNEL_RCSID(0, "$NetBSD: sv.c,v 1.28 2005/02/27 00:27:34 perry Exp $");
78 1.1 augustss
79 1.1 augustss #include <sys/param.h>
80 1.1 augustss #include <sys/systm.h>
81 1.1 augustss #include <sys/kernel.h>
82 1.1 augustss #include <sys/malloc.h>
83 1.1 augustss #include <sys/device.h>
84 1.1 augustss
85 1.1 augustss #include <dev/pci/pcireg.h>
86 1.1 augustss #include <dev/pci/pcivar.h>
87 1.1 augustss #include <dev/pci/pcidevs.h>
88 1.1 augustss
89 1.1 augustss #include <sys/audioio.h>
90 1.1 augustss #include <dev/audio_if.h>
91 1.1 augustss #include <dev/mulaw.h>
92 1.1 augustss #include <dev/auconv.h>
93 1.1 augustss
94 1.1 augustss #include <dev/ic/i8237reg.h>
95 1.1 augustss #include <dev/pci/svreg.h>
96 1.1 augustss #include <dev/pci/svvar.h>
97 1.1 augustss
98 1.1 augustss #include <machine/bus.h>
99 1.1 augustss
100 1.20 hannken /* XXX
101 1.20 hannken * The SonicVibes DMA is broken and only works on 24-bit addresses.
102 1.20 hannken * As long as bus_dmamem_alloc_range() is missing we use the ISA
103 1.22 wiz * DMA tag on i386.
104 1.20 hannken */
105 1.20 hannken #if defined(i386)
106 1.20 hannken #include "isa.h"
107 1.20 hannken #if NISA > 0
108 1.20 hannken #include <dev/isa/isavar.h>
109 1.20 hannken #endif
110 1.20 hannken #endif
111 1.20 hannken
112 1.1 augustss #ifdef AUDIO_DEBUG
113 1.1 augustss #define DPRINTF(x) if (svdebug) printf x
114 1.1 augustss #define DPRINTFN(n,x) if (svdebug>(n)) printf x
115 1.1 augustss int svdebug = 0;
116 1.1 augustss #else
117 1.1 augustss #define DPRINTF(x)
118 1.1 augustss #define DPRINTFN(n,x)
119 1.1 augustss #endif
120 1.1 augustss
121 1.27 kent int sv_match(struct device *, struct cfdata *, void *);
122 1.27 kent void sv_attach(struct device *, struct device *, void *);
123 1.27 kent int sv_intr(void *);
124 1.1 augustss
125 1.1 augustss struct sv_dma {
126 1.1 augustss bus_dmamap_t map;
127 1.4 mycroft caddr_t addr;
128 1.4 mycroft bus_dma_segment_t segs[1];
129 1.4 mycroft int nsegs;
130 1.4 mycroft size_t size;
131 1.4 mycroft struct sv_dma *next;
132 1.1 augustss };
133 1.5 mycroft #define DMAADDR(p) ((p)->map->dm_segs[0].ds_addr)
134 1.5 mycroft #define KERNADDR(p) ((void *)((p)->addr))
135 1.1 augustss
136 1.17 thorpej CFATTACH_DECL(sv, sizeof(struct sv_softc),
137 1.18 thorpej sv_match, sv_attach, NULL, NULL);
138 1.1 augustss
139 1.1 augustss struct audio_device sv_device = {
140 1.1 augustss "S3 SonicVibes",
141 1.1 augustss "",
142 1.1 augustss "sv"
143 1.1 augustss };
144 1.1 augustss
145 1.1 augustss #define ARRAY_SIZE(foo) ((sizeof(foo)) / sizeof(foo[0]))
146 1.1 augustss
147 1.27 kent int sv_allocmem(struct sv_softc *, size_t, size_t, int, struct sv_dma *);
148 1.27 kent int sv_freemem(struct sv_softc *, struct sv_dma *);
149 1.1 augustss
150 1.27 kent int sv_open(void *, int);
151 1.27 kent int sv_query_encoding(void *, struct audio_encoding *);
152 1.27 kent int sv_set_params(void *, int, int, audio_params_t *, audio_params_t *,
153 1.27 kent stream_filter_list_t *, stream_filter_list_t *);
154 1.27 kent int sv_round_blocksize(void *, int, int, const audio_params_t *);
155 1.27 kent int sv_trigger_output(void *, void *, void *, int, void (*)(void *),
156 1.27 kent void *, const audio_params_t *);
157 1.27 kent int sv_trigger_input(void *, void *, void *, int, void (*)(void *),
158 1.27 kent void *, const audio_params_t *);
159 1.27 kent int sv_halt_output(void *);
160 1.27 kent int sv_halt_input(void *);
161 1.27 kent int sv_getdev(void *, struct audio_device *);
162 1.27 kent int sv_mixer_set_port(void *, mixer_ctrl_t *);
163 1.27 kent int sv_mixer_get_port(void *, mixer_ctrl_t *);
164 1.27 kent int sv_query_devinfo(void *, mixer_devinfo_t *);
165 1.27 kent void *sv_malloc(void *, int, size_t, struct malloc_type *, int);
166 1.27 kent void sv_free(void *, void *, struct malloc_type *);
167 1.27 kent size_t sv_round_buffersize(void *, int, size_t);
168 1.27 kent paddr_t sv_mappage(void *, void *, off_t, int);
169 1.27 kent int sv_get_props(void *);
170 1.1 augustss
171 1.1 augustss #ifdef AUDIO_DEBUG
172 1.27 kent void sv_dumpregs(struct sv_softc *sc);
173 1.1 augustss #endif
174 1.1 augustss
175 1.25 yamt const struct audio_hw_if sv_hw_if = {
176 1.1 augustss sv_open,
177 1.26 kent NULL, /* close */
178 1.1 augustss NULL,
179 1.1 augustss sv_query_encoding,
180 1.1 augustss sv_set_params,
181 1.1 augustss sv_round_blocksize,
182 1.1 augustss NULL,
183 1.3 mycroft NULL,
184 1.3 mycroft NULL,
185 1.3 mycroft NULL,
186 1.3 mycroft NULL,
187 1.3 mycroft sv_halt_output,
188 1.3 mycroft sv_halt_input,
189 1.1 augustss NULL,
190 1.1 augustss sv_getdev,
191 1.1 augustss NULL,
192 1.1 augustss sv_mixer_set_port,
193 1.1 augustss sv_mixer_get_port,
194 1.1 augustss sv_query_devinfo,
195 1.1 augustss sv_malloc,
196 1.1 augustss sv_free,
197 1.2 mycroft sv_round_buffersize,
198 1.1 augustss sv_mappage,
199 1.1 augustss sv_get_props,
200 1.3 mycroft sv_trigger_output,
201 1.3 mycroft sv_trigger_input,
202 1.14 augustss NULL,
203 1.1 augustss };
204 1.1 augustss
205 1.26 kent #define SV_NFORMATS 4
206 1.26 kent static const struct audio_format sv_formats[SV_NFORMATS] = {
207 1.26 kent {NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_LE, 16, 16,
208 1.26 kent 2, AUFMT_STEREO, 0, {2000, 48000}},
209 1.26 kent {NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_SLINEAR_LE, 16, 16,
210 1.26 kent 1, AUFMT_MONAURAL, 0, {2000, 48000}},
211 1.26 kent {NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_ULINEAR_LE, 8, 8,
212 1.26 kent 2, AUFMT_STEREO, 0, {2000, 48000}},
213 1.26 kent {NULL, AUMODE_PLAY | AUMODE_RECORD, AUDIO_ENCODING_ULINEAR_LE, 8, 8,
214 1.26 kent 1, AUFMT_MONAURAL, 0, {2000, 48000}},
215 1.26 kent };
216 1.26 kent
217 1.1 augustss
218 1.27 kent static uint8_t sv_read(struct sv_softc *, uint8_t);
219 1.27 kent static uint8_t sv_read_indirect(struct sv_softc *, uint8_t);
220 1.27 kent static void sv_write(struct sv_softc *, uint8_t, uint8_t);
221 1.27 kent static void sv_write_indirect(struct sv_softc *, uint8_t, uint8_t);
222 1.27 kent static void sv_init_mixer(struct sv_softc *);
223 1.1 augustss
224 1.27 kent static void sv_defer(struct device *self);
225 1.1 augustss
226 1.1 augustss static void
227 1.27 kent sv_write(struct sv_softc *sc, uint8_t reg, uint8_t val)
228 1.1 augustss {
229 1.27 kent
230 1.1 augustss DPRINTFN(8,("sv_write(0x%x, 0x%x)\n", reg, val));
231 1.1 augustss bus_space_write_1(sc->sc_iot, sc->sc_ioh, reg, val);
232 1.1 augustss }
233 1.1 augustss
234 1.27 kent static uint8_t
235 1.27 kent sv_read(struct sv_softc *sc, uint8_t reg)
236 1.1 augustss {
237 1.27 kent uint8_t val;
238 1.1 augustss
239 1.1 augustss val = bus_space_read_1(sc->sc_iot, sc->sc_ioh, reg);
240 1.1 augustss DPRINTFN(8,("sv_read(0x%x) = 0x%x\n", reg, val));
241 1.1 augustss return val;
242 1.1 augustss }
243 1.1 augustss
244 1.27 kent static uint8_t
245 1.27 kent sv_read_indirect(struct sv_softc *sc, uint8_t reg)
246 1.1 augustss {
247 1.27 kent uint8_t val;
248 1.27 kent int s;
249 1.1 augustss
250 1.27 kent s = splaudio();
251 1.1 augustss sv_write(sc, SV_CODEC_IADDR, reg & SV_IADDR_MASK);
252 1.1 augustss val = sv_read(sc, SV_CODEC_IDATA);
253 1.1 augustss splx(s);
254 1.27 kent return val;
255 1.1 augustss }
256 1.1 augustss
257 1.1 augustss static void
258 1.27 kent sv_write_indirect(struct sv_softc *sc, uint8_t reg, uint8_t val)
259 1.1 augustss {
260 1.27 kent uint8_t iaddr;
261 1.27 kent int s;
262 1.1 augustss
263 1.27 kent iaddr = reg & SV_IADDR_MASK;
264 1.27 kent s = splaudio();
265 1.1 augustss if (reg == SV_DMA_DATA_FORMAT)
266 1.1 augustss iaddr |= SV_IADDR_MCE;
267 1.1 augustss
268 1.1 augustss sv_write(sc, SV_CODEC_IADDR, iaddr);
269 1.1 augustss sv_write(sc, SV_CODEC_IDATA, val);
270 1.1 augustss splx(s);
271 1.1 augustss }
272 1.1 augustss
273 1.1 augustss int
274 1.27 kent sv_match(struct device *parent, struct cfdata *match, void *aux)
275 1.1 augustss {
276 1.27 kent struct pci_attach_args *pa;
277 1.1 augustss
278 1.27 kent pa = aux;
279 1.1 augustss if (PCI_VENDOR(pa->pa_id) == PCI_VENDOR_S3 &&
280 1.1 augustss PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_S3_SONICVIBES)
281 1.27 kent return 1;
282 1.27 kent
283 1.27 kent return 0;
284 1.1 augustss }
285 1.1 augustss
286 1.27 kent int pci_alloc_io(pci_chipset_tag_t, pcitag_t, int,
287 1.27 kent bus_space_tag_t, bus_size_t,
288 1.27 kent bus_size_t, bus_size_t, int,
289 1.27 kent bus_space_handle_t *);
290 1.1 augustss
291 1.20 hannken static pcireg_t pci_io_alloc_low, pci_io_alloc_high;
292 1.20 hannken
293 1.1 augustss int
294 1.27 kent pci_alloc_io(pci_chipset_tag_t pc, pcitag_t pt, int pcioffs,
295 1.27 kent bus_space_tag_t iot, bus_size_t size, bus_size_t align,
296 1.27 kent bus_size_t bound, int flags, bus_space_handle_t *ioh)
297 1.1 augustss {
298 1.1 augustss bus_addr_t addr;
299 1.1 augustss int error;
300 1.1 augustss
301 1.20 hannken error = bus_space_alloc(iot, pci_io_alloc_low, pci_io_alloc_high,
302 1.1 augustss size, align, bound, flags, &addr, ioh);
303 1.1 augustss if (error)
304 1.27 kent return error;
305 1.1 augustss
306 1.1 augustss pci_conf_write(pc, pt, pcioffs, addr);
307 1.27 kent return 0;
308 1.1 augustss }
309 1.1 augustss
310 1.1 augustss /*
311 1.1 augustss * Allocate IO addresses when all other configuration is done.
312 1.1 augustss */
313 1.1 augustss void
314 1.27 kent sv_defer(struct device *self)
315 1.1 augustss {
316 1.27 kent struct sv_softc *sc;
317 1.27 kent pci_chipset_tag_t pc;
318 1.27 kent pcitag_t pt;
319 1.1 augustss pcireg_t dmaio;
320 1.1 augustss
321 1.27 kent sc = (struct sv_softc *)self;
322 1.27 kent pc = sc->sc_pa.pa_pc;
323 1.27 kent pt = sc->sc_pa.pa_tag;
324 1.1 augustss DPRINTF(("sv_defer: %p\n", sc));
325 1.20 hannken
326 1.20 hannken /* XXX
327 1.20 hannken * Get a reasonable default for the I/O range.
328 1.20 hannken * Assume the range around SB_PORTBASE is valid on this PCI bus.
329 1.20 hannken */
330 1.20 hannken pci_io_alloc_low = pci_conf_read(pc, pt, SV_SB_PORTBASE_SLOT);
331 1.20 hannken pci_io_alloc_high = pci_io_alloc_low + 0x1000;
332 1.20 hannken
333 1.27 kent if (pci_alloc_io(pc, pt, SV_DMAA_CONFIG_OFF,
334 1.1 augustss sc->sc_iot, SV_DMAA_SIZE, SV_DMAA_ALIGN, 0,
335 1.1 augustss 0, &sc->sc_dmaa_ioh)) {
336 1.1 augustss printf("sv_attach: cannot allocate DMA A range\n");
337 1.1 augustss return;
338 1.1 augustss }
339 1.1 augustss dmaio = pci_conf_read(pc, pt, SV_DMAA_CONFIG_OFF);
340 1.1 augustss DPRINTF(("sv_attach: addr a dmaio=0x%lx\n", (u_long)dmaio));
341 1.27 kent pci_conf_write(pc, pt, SV_DMAA_CONFIG_OFF,
342 1.1 augustss dmaio | SV_DMA_CHANNEL_ENABLE | SV_DMAA_EXTENDED_ADDR);
343 1.1 augustss
344 1.27 kent if (pci_alloc_io(pc, pt, SV_DMAC_CONFIG_OFF,
345 1.5 mycroft sc->sc_iot, SV_DMAC_SIZE, SV_DMAC_ALIGN, 0,
346 1.1 augustss 0, &sc->sc_dmac_ioh)) {
347 1.1 augustss printf("sv_attach: cannot allocate DMA C range\n");
348 1.1 augustss return;
349 1.1 augustss }
350 1.1 augustss dmaio = pci_conf_read(pc, pt, SV_DMAC_CONFIG_OFF);
351 1.1 augustss DPRINTF(("sv_attach: addr c dmaio=0x%lx\n", (u_long)dmaio));
352 1.27 kent pci_conf_write(pc, pt, SV_DMAC_CONFIG_OFF,
353 1.1 augustss dmaio | SV_DMA_CHANNEL_ENABLE);
354 1.1 augustss
355 1.1 augustss sc->sc_dmaset = 1;
356 1.1 augustss }
357 1.1 augustss
358 1.1 augustss void
359 1.27 kent sv_attach(struct device *parent, struct device *self, void *aux)
360 1.27 kent {
361 1.27 kent struct sv_softc *sc;
362 1.27 kent struct pci_attach_args *pa;
363 1.27 kent pci_chipset_tag_t pc;
364 1.27 kent pcitag_t pt;
365 1.1 augustss pci_intr_handle_t ih;
366 1.1 augustss pcireg_t csr;
367 1.1 augustss char const *intrstr;
368 1.27 kent uint8_t reg;
369 1.1 augustss struct audio_attach_args arg;
370 1.27 kent
371 1.27 kent sc = (struct sv_softc *)self;
372 1.27 kent pa = aux;
373 1.27 kent pc = pa->pa_pc;
374 1.27 kent pt = pa->pa_tag;
375 1.1 augustss printf ("\n");
376 1.27 kent
377 1.1 augustss /* Map I/O registers */
378 1.1 augustss if (pci_mapreg_map(pa, SV_ENHANCED_PORTBASE_SLOT,
379 1.1 augustss PCI_MAPREG_TYPE_IO, 0,
380 1.1 augustss &sc->sc_iot, &sc->sc_ioh, NULL, NULL)) {
381 1.27 kent printf("%s: can't map enhanced i/o space\n",
382 1.1 augustss sc->sc_dev.dv_xname);
383 1.1 augustss return;
384 1.1 augustss }
385 1.1 augustss if (pci_mapreg_map(pa, SV_FM_PORTBASE_SLOT,
386 1.1 augustss PCI_MAPREG_TYPE_IO, 0,
387 1.1 augustss &sc->sc_opliot, &sc->sc_oplioh, NULL, NULL)) {
388 1.1 augustss printf("%s: can't map FM i/o space\n", sc->sc_dev.dv_xname);
389 1.1 augustss return;
390 1.1 augustss }
391 1.1 augustss if (pci_mapreg_map(pa, SV_MIDI_PORTBASE_SLOT,
392 1.1 augustss PCI_MAPREG_TYPE_IO, 0,
393 1.1 augustss &sc->sc_midiiot, &sc->sc_midiioh, NULL, NULL)) {
394 1.1 augustss printf("%s: can't map MIDI i/o space\n", sc->sc_dev.dv_xname);
395 1.1 augustss return;
396 1.1 augustss }
397 1.1 augustss DPRINTF(("sv: IO ports: enhanced=0x%x, OPL=0x%x, MIDI=0x%x\n",
398 1.1 augustss (int)sc->sc_ioh, (int)sc->sc_oplioh, (int)sc->sc_midiioh));
399 1.1 augustss
400 1.20 hannken #if defined(alpha)
401 1.6 mycroft /* XXX Force allocation through the SGMAP. */
402 1.6 mycroft sc->sc_dmatag = alphabus_dma_get_tag(pa->pa_dmat, ALPHA_BUS_ISA);
403 1.20 hannken #elif defined(i386) && NISA > 0
404 1.20 hannken /* XXX
405 1.20 hannken * The SonicVibes DMA is broken and only works on 24-bit addresses.
406 1.20 hannken * As long as bus_dmamem_alloc_range() is missing we use the ISA
407 1.22 wiz * DMA tag on i386.
408 1.20 hannken */
409 1.20 hannken sc->sc_dmatag = &isa_bus_dma_tag;
410 1.6 mycroft #else
411 1.1 augustss sc->sc_dmatag = pa->pa_dmat;
412 1.6 mycroft #endif
413 1.1 augustss
414 1.5 mycroft pci_conf_write(pc, pt, SV_DMAA_CONFIG_OFF, SV_DMAA_EXTENDED_ADDR);
415 1.1 augustss pci_conf_write(pc, pt, SV_DMAC_CONFIG_OFF, 0);
416 1.1 augustss
417 1.1 augustss /* Enable the device. */
418 1.1 augustss csr = pci_conf_read(pc, pt, PCI_COMMAND_STATUS_REG);
419 1.1 augustss pci_conf_write(pc, pt, PCI_COMMAND_STATUS_REG,
420 1.1 augustss csr | PCI_COMMAND_MASTER_ENABLE);
421 1.1 augustss
422 1.1 augustss sv_write_indirect(sc, SV_ANALOG_POWER_DOWN_CONTROL, 0);
423 1.1 augustss sv_write_indirect(sc, SV_DIGITAL_POWER_DOWN_CONTROL, 0);
424 1.27 kent
425 1.1 augustss /* initialize codec registers */
426 1.1 augustss reg = sv_read(sc, SV_CODEC_CONTROL);
427 1.1 augustss reg |= SV_CTL_RESET;
428 1.1 augustss sv_write(sc, SV_CODEC_CONTROL, reg);
429 1.1 augustss delay(50);
430 1.1 augustss
431 1.1 augustss reg = sv_read(sc, SV_CODEC_CONTROL);
432 1.1 augustss reg &= ~SV_CTL_RESET;
433 1.1 augustss reg |= SV_CTL_INTA | SV_CTL_ENHANCED;
434 1.1 augustss
435 1.1 augustss /* This write clears the reset */
436 1.1 augustss sv_write(sc, SV_CODEC_CONTROL, reg);
437 1.1 augustss delay(50);
438 1.1 augustss
439 1.1 augustss /* This write actually shoves the new values in */
440 1.1 augustss sv_write(sc, SV_CODEC_CONTROL, reg);
441 1.1 augustss
442 1.1 augustss DPRINTF(("sv_attach: control=0x%x\n", sv_read(sc, SV_CODEC_CONTROL)));
443 1.1 augustss
444 1.1 augustss /* Enable DMA interrupts */
445 1.1 augustss reg = sv_read(sc, SV_CODEC_INTMASK);
446 1.1 augustss reg &= ~(SV_INTMASK_DMAA | SV_INTMASK_DMAC);
447 1.1 augustss reg |= SV_INTMASK_UD | SV_INTMASK_SINT | SV_INTMASK_MIDI;
448 1.1 augustss sv_write(sc, SV_CODEC_INTMASK, reg);
449 1.1 augustss
450 1.1 augustss sv_read(sc, SV_CODEC_STATUS);
451 1.27 kent
452 1.1 augustss /* Map and establish the interrupt. */
453 1.12 sommerfe if (pci_intr_map(pa, &ih)) {
454 1.1 augustss printf("%s: couldn't map interrupt\n", sc->sc_dev.dv_xname);
455 1.1 augustss return;
456 1.1 augustss }
457 1.1 augustss intrstr = pci_intr_string(pc, ih);
458 1.1 augustss sc->sc_ih = pci_intr_establish(pc, ih, IPL_AUDIO, sv_intr, sc);
459 1.1 augustss if (sc->sc_ih == NULL) {
460 1.1 augustss printf("%s: couldn't establish interrupt",
461 1.1 augustss sc->sc_dev.dv_xname);
462 1.1 augustss if (intrstr != NULL)
463 1.1 augustss printf(" at %s", intrstr);
464 1.1 augustss printf("\n");
465 1.1 augustss return;
466 1.1 augustss }
467 1.1 augustss printf("%s: interrupting at %s\n", sc->sc_dev.dv_xname, intrstr);
468 1.27 kent printf("%s: rev %d", sc->sc_dev.dv_xname,
469 1.1 augustss sv_read_indirect(sc, SV_REVISION_LEVEL));
470 1.1 augustss if (sv_read(sc, SV_CODEC_CONTROL) & SV_CTL_MD1)
471 1.1 augustss printf(", reverb SRAM present");
472 1.1 augustss if (!(sv_read_indirect(sc, SV_WAVETABLE_SOURCE_SELECT) & SV_WSS_WT0))
473 1.1 augustss printf(", wavetable ROM present");
474 1.1 augustss printf("\n");
475 1.27 kent
476 1.1 augustss sv_init_mixer(sc);
477 1.27 kent
478 1.1 augustss audio_attach_mi(&sv_hw_if, sc, &sc->sc_dev);
479 1.1 augustss
480 1.1 augustss arg.type = AUDIODEV_TYPE_OPL;
481 1.1 augustss arg.hwif = 0;
482 1.1 augustss arg.hdl = 0;
483 1.1 augustss (void)config_found(&sc->sc_dev, &arg, audioprint);
484 1.1 augustss
485 1.1 augustss sc->sc_pa = *pa; /* for deferred setup */
486 1.1 augustss config_defer(self, sv_defer);
487 1.1 augustss }
488 1.1 augustss
489 1.1 augustss #ifdef AUDIO_DEBUG
490 1.1 augustss void
491 1.27 kent sv_dumpregs(struct sv_softc *sc)
492 1.1 augustss {
493 1.1 augustss int idx;
494 1.1 augustss
495 1.1 augustss #if 0
496 1.1 augustss for (idx = 0; idx < 0x50; idx += 4)
497 1.27 kent printf ("%02x = %x\n", idx,
498 1.1 augustss pci_conf_read(pa->pa_pc, pa->pa_tag, idx));
499 1.1 augustss #endif
500 1.1 augustss
501 1.1 augustss for (idx = 0; idx < 6; idx++)
502 1.1 augustss printf ("REG %02x = %02x\n", idx, sv_read(sc, idx));
503 1.27 kent
504 1.1 augustss for (idx = 0; idx < 0x32; idx++)
505 1.1 augustss printf ("IREG %02x = %02x\n", idx, sv_read_indirect(sc, idx));
506 1.1 augustss
507 1.1 augustss for (idx = 0; idx < 0x10; idx++)
508 1.27 kent printf ("DMA %02x = %02x\n", idx,
509 1.1 augustss bus_space_read_1(sc->sc_iot, sc->sc_dmaa_ioh, idx));
510 1.1 augustss }
511 1.1 augustss #endif
512 1.1 augustss
513 1.1 augustss int
514 1.27 kent sv_intr(void *p)
515 1.1 augustss {
516 1.27 kent struct sv_softc *sc;
517 1.27 kent uint8_t intr;
518 1.1 augustss
519 1.27 kent sc = p;
520 1.1 augustss intr = sv_read(sc, SV_CODEC_STATUS);
521 1.1 augustss DPRINTFN(5,("sv_intr: intr=0x%x\n", intr));
522 1.1 augustss
523 1.27 kent if (!(intr & (SV_INTSTATUS_DMAA | SV_INTSTATUS_DMAC)))
524 1.27 kent return 0;
525 1.1 augustss
526 1.1 augustss if (intr & SV_INTSTATUS_DMAA) {
527 1.1 augustss if (sc->sc_pintr)
528 1.1 augustss sc->sc_pintr(sc->sc_parg);
529 1.1 augustss }
530 1.1 augustss
531 1.1 augustss if (intr & SV_INTSTATUS_DMAC) {
532 1.1 augustss if (sc->sc_rintr)
533 1.1 augustss sc->sc_rintr(sc->sc_rarg);
534 1.1 augustss }
535 1.27 kent
536 1.27 kent return 1;
537 1.1 augustss }
538 1.1 augustss
539 1.1 augustss int
540 1.27 kent sv_allocmem(struct sv_softc *sc, size_t size, size_t align,
541 1.27 kent int direction, struct sv_dma *p)
542 1.1 augustss {
543 1.1 augustss int error;
544 1.1 augustss
545 1.1 augustss p->size = size;
546 1.1 augustss error = bus_dmamem_alloc(sc->sc_dmatag, p->size, align, 0,
547 1.27 kent p->segs, ARRAY_SIZE(p->segs), &p->nsegs, BUS_DMA_NOWAIT);
548 1.1 augustss if (error)
549 1.27 kent return error;
550 1.1 augustss
551 1.27 kent error = bus_dmamem_map(sc->sc_dmatag, p->segs, p->nsegs, p->size,
552 1.27 kent &p->addr, BUS_DMA_NOWAIT|BUS_DMA_COHERENT);
553 1.1 augustss if (error)
554 1.1 augustss goto free;
555 1.1 augustss
556 1.1 augustss error = bus_dmamap_create(sc->sc_dmatag, p->size, 1, p->size,
557 1.27 kent 0, BUS_DMA_NOWAIT, &p->map);
558 1.1 augustss if (error)
559 1.1 augustss goto unmap;
560 1.1 augustss
561 1.27 kent error = bus_dmamap_load(sc->sc_dmatag, p->map, p->addr, p->size, NULL,
562 1.27 kent BUS_DMA_NOWAIT | (direction == AUMODE_RECORD) ? BUS_DMA_READ : BUS_DMA_WRITE);
563 1.1 augustss if (error)
564 1.1 augustss goto destroy;
565 1.5 mycroft DPRINTF(("sv_allocmem: pa=%lx va=%lx pba=%lx\n",
566 1.5 mycroft (long)p->segs[0].ds_addr, (long)KERNADDR(p), (long)DMAADDR(p)));
567 1.27 kent return 0;
568 1.1 augustss
569 1.1 augustss destroy:
570 1.1 augustss bus_dmamap_destroy(sc->sc_dmatag, p->map);
571 1.1 augustss unmap:
572 1.1 augustss bus_dmamem_unmap(sc->sc_dmatag, p->addr, p->size);
573 1.1 augustss free:
574 1.1 augustss bus_dmamem_free(sc->sc_dmatag, p->segs, p->nsegs);
575 1.27 kent return error;
576 1.1 augustss }
577 1.1 augustss
578 1.1 augustss int
579 1.27 kent sv_freemem(struct sv_softc *sc, struct sv_dma *p)
580 1.1 augustss {
581 1.27 kent
582 1.1 augustss bus_dmamap_unload(sc->sc_dmatag, p->map);
583 1.1 augustss bus_dmamap_destroy(sc->sc_dmatag, p->map);
584 1.1 augustss bus_dmamem_unmap(sc->sc_dmatag, p->addr, p->size);
585 1.1 augustss bus_dmamem_free(sc->sc_dmatag, p->segs, p->nsegs);
586 1.27 kent return 0;
587 1.1 augustss }
588 1.1 augustss
589 1.1 augustss int
590 1.27 kent sv_open(void *addr, int flags)
591 1.1 augustss {
592 1.27 kent struct sv_softc *sc;
593 1.1 augustss
594 1.27 kent sc = addr;
595 1.1 augustss DPRINTF(("sv_open\n"));
596 1.1 augustss if (!sc->sc_dmaset)
597 1.27 kent return ENXIO;
598 1.1 augustss
599 1.27 kent return 0;
600 1.1 augustss }
601 1.1 augustss
602 1.1 augustss int
603 1.27 kent sv_query_encoding(void *addr, struct audio_encoding *fp)
604 1.1 augustss {
605 1.27 kent
606 1.1 augustss switch (fp->index) {
607 1.1 augustss case 0:
608 1.1 augustss strcpy(fp->name, AudioEulinear);
609 1.1 augustss fp->encoding = AUDIO_ENCODING_ULINEAR;
610 1.1 augustss fp->precision = 8;
611 1.1 augustss fp->flags = 0;
612 1.27 kent return 0;
613 1.1 augustss case 1:
614 1.1 augustss strcpy(fp->name, AudioEmulaw);
615 1.1 augustss fp->encoding = AUDIO_ENCODING_ULAW;
616 1.1 augustss fp->precision = 8;
617 1.1 augustss fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
618 1.27 kent return 0;
619 1.1 augustss case 2:
620 1.1 augustss strcpy(fp->name, AudioEalaw);
621 1.1 augustss fp->encoding = AUDIO_ENCODING_ALAW;
622 1.1 augustss fp->precision = 8;
623 1.1 augustss fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
624 1.27 kent return 0;
625 1.1 augustss case 3:
626 1.1 augustss strcpy(fp->name, AudioEslinear);
627 1.1 augustss fp->encoding = AUDIO_ENCODING_SLINEAR;
628 1.1 augustss fp->precision = 8;
629 1.1 augustss fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
630 1.27 kent return 0;
631 1.4 mycroft case 4:
632 1.1 augustss strcpy(fp->name, AudioEslinear_le);
633 1.1 augustss fp->encoding = AUDIO_ENCODING_SLINEAR_LE;
634 1.1 augustss fp->precision = 16;
635 1.1 augustss fp->flags = 0;
636 1.27 kent return 0;
637 1.1 augustss case 5:
638 1.1 augustss strcpy(fp->name, AudioEulinear_le);
639 1.1 augustss fp->encoding = AUDIO_ENCODING_ULINEAR_LE;
640 1.1 augustss fp->precision = 16;
641 1.1 augustss fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
642 1.27 kent return 0;
643 1.1 augustss case 6:
644 1.1 augustss strcpy(fp->name, AudioEslinear_be);
645 1.1 augustss fp->encoding = AUDIO_ENCODING_SLINEAR_BE;
646 1.1 augustss fp->precision = 16;
647 1.1 augustss fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
648 1.27 kent return 0;
649 1.1 augustss case 7:
650 1.1 augustss strcpy(fp->name, AudioEulinear_be);
651 1.1 augustss fp->encoding = AUDIO_ENCODING_ULINEAR_BE;
652 1.1 augustss fp->precision = 16;
653 1.1 augustss fp->flags = AUDIO_ENCODINGFLAG_EMULATED;
654 1.27 kent return 0;
655 1.1 augustss default:
656 1.27 kent return EINVAL;
657 1.1 augustss }
658 1.1 augustss }
659 1.1 augustss
660 1.1 augustss int
661 1.27 kent sv_set_params(void *addr, int setmode, int usemode, audio_params_t *play,
662 1.27 kent audio_params_t *rec, stream_filter_list_t *pfil, stream_filter_list_t *rfil)
663 1.27 kent {
664 1.27 kent struct sv_softc *sc;
665 1.27 kent audio_params_t *p;
666 1.27 kent uint32_t val;
667 1.26 kent
668 1.27 kent sc = addr;
669 1.27 kent p = NULL;
670 1.3 mycroft /*
671 1.3 mycroft * This device only has one clock, so make the sample rates match.
672 1.3 mycroft */
673 1.3 mycroft if (play->sample_rate != rec->sample_rate &&
674 1.3 mycroft usemode == (AUMODE_PLAY | AUMODE_RECORD)) {
675 1.3 mycroft if (setmode == AUMODE_PLAY) {
676 1.3 mycroft rec->sample_rate = play->sample_rate;
677 1.3 mycroft setmode |= AUMODE_RECORD;
678 1.3 mycroft } else if (setmode == AUMODE_RECORD) {
679 1.3 mycroft play->sample_rate = rec->sample_rate;
680 1.3 mycroft setmode |= AUMODE_PLAY;
681 1.3 mycroft } else
682 1.27 kent return EINVAL;
683 1.3 mycroft }
684 1.1 augustss
685 1.26 kent if (setmode & AUMODE_RECORD) {
686 1.26 kent p = rec;
687 1.26 kent if (auconv_set_converter(sv_formats, SV_NFORMATS,
688 1.26 kent AUMODE_RECORD, rec, FALSE, rfil) < 0)
689 1.26 kent return EINVAL;
690 1.26 kent }
691 1.26 kent if (setmode & AUMODE_PLAY) {
692 1.26 kent p = play;
693 1.26 kent if (auconv_set_converter(sv_formats, SV_NFORMATS,
694 1.26 kent AUMODE_PLAY, play, FALSE, pfil) < 0)
695 1.26 kent return EINVAL;
696 1.26 kent }
697 1.1 augustss
698 1.1 augustss val = p->sample_rate * 65536 / 48000;
699 1.7 mycroft /*
700 1.7 mycroft * If the sample rate is exactly 48KHz, the fraction would overflow the
701 1.7 mycroft * register, so we have to bias it. This causes a little clock drift.
702 1.7 mycroft * The drift is below normal crystal tolerance (.0001%), so although
703 1.7 mycroft * this seems a little silly, we can pretty much ignore it.
704 1.7 mycroft * (I tested the output speed with values of 1-20, just to be sure this
705 1.7 mycroft * register isn't *supposed* to have a bias. It isn't.)
706 1.7 mycroft * - mycroft
707 1.7 mycroft */
708 1.7 mycroft if (val > 65535)
709 1.7 mycroft val = 65535;
710 1.1 augustss
711 1.3 mycroft sv_write_indirect(sc, SV_PCM_SAMPLE_RATE_0, val & 0xff);
712 1.3 mycroft sv_write_indirect(sc, SV_PCM_SAMPLE_RATE_1, val >> 8);
713 1.1 augustss
714 1.1 augustss #define F_REF 24576000
715 1.1 augustss
716 1.1 augustss #define ABS(x) (((x) < 0) ? (-x) : (x))
717 1.1 augustss
718 1.1 augustss if (setmode & AUMODE_RECORD) {
719 1.1 augustss /* The ADC reference frequency (f_out) is 512 * sample rate */
720 1.1 augustss
721 1.21 tsutsui /* f_out is dervied from the 24.576MHz crystal by three values:
722 1.1 augustss M & N & R. The equation is as follows:
723 1.1 augustss
724 1.1 augustss f_out = (m + 2) * f_ref / ((n + 2) * (2 ^ a))
725 1.1 augustss
726 1.1 augustss with the constraint that:
727 1.1 augustss
728 1.21 tsutsui 80 MHz < (m + 2) / (n + 2) * f_ref <= 150MHz
729 1.1 augustss and n, m >= 1
730 1.1 augustss */
731 1.1 augustss
732 1.27 kent int goal_f_out;
733 1.27 kent int a, n, m, best_n, best_m, best_error;
734 1.1 augustss int pll_sample;
735 1.1 augustss int error;
736 1.1 augustss
737 1.27 kent goal_f_out = 512 * rec->sample_rate;
738 1.27 kent best_n = 0;
739 1.27 kent best_m = 0;
740 1.27 kent best_error = 10000000;
741 1.1 augustss for (a = 0; a < 8; a++) {
742 1.1 augustss if ((goal_f_out * (1 << a)) >= 80000000)
743 1.1 augustss break;
744 1.1 augustss }
745 1.27 kent
746 1.1 augustss /* a != 8 because sample_rate >= 2000 */
747 1.1 augustss
748 1.1 augustss for (n = 33; n > 2; n--) {
749 1.1 augustss m = (goal_f_out * n * (1 << a)) / F_REF;
750 1.3 mycroft if ((m > 257) || (m < 3))
751 1.3 mycroft continue;
752 1.27 kent
753 1.1 augustss pll_sample = (m * F_REF) / (n * (1 << a));
754 1.1 augustss pll_sample /= 512;
755 1.1 augustss
756 1.1 augustss /* Threshold might be good here */
757 1.3 mycroft error = pll_sample - rec->sample_rate;
758 1.1 augustss error = ABS(error);
759 1.27 kent
760 1.1 augustss if (error < best_error) {
761 1.1 augustss best_error = error;
762 1.1 augustss best_n = n;
763 1.1 augustss best_m = m;
764 1.1 augustss if (error == 0) break;
765 1.1 augustss }
766 1.1 augustss }
767 1.1 augustss
768 1.1 augustss best_n -= 2;
769 1.1 augustss best_m -= 2;
770 1.27 kent
771 1.1 augustss sv_write_indirect(sc, SV_ADC_PLL_M, best_m);
772 1.27 kent sv_write_indirect(sc, SV_ADC_PLL_N,
773 1.1 augustss best_n | (a << SV_PLL_R_SHIFT));
774 1.1 augustss }
775 1.3 mycroft
776 1.27 kent return 0;
777 1.1 augustss }
778 1.1 augustss
779 1.1 augustss int
780 1.27 kent sv_round_blocksize(void *addr, int blk, int mode, const audio_params_t *param)
781 1.1 augustss {
782 1.27 kent
783 1.27 kent return blk & -32; /* keep good alignment */
784 1.1 augustss }
785 1.1 augustss
786 1.1 augustss int
787 1.27 kent sv_trigger_output(void *addr, void *start, void *end, int blksize,
788 1.27 kent void (*intr)(void *), void *arg, const audio_params_t *param)
789 1.1 augustss {
790 1.27 kent struct sv_softc *sc;
791 1.1 augustss struct sv_dma *p;
792 1.27 kent uint8_t mode;
793 1.1 augustss int dma_count;
794 1.1 augustss
795 1.27 kent DPRINTFN(1, ("sv_trigger_output: sc=%p start=%p end=%p blksize=%d "
796 1.27 kent "intr=%p(%p)\n", addr, start, end, blksize, intr, arg));
797 1.27 kent sc = addr;
798 1.3 mycroft sc->sc_pintr = intr;
799 1.3 mycroft sc->sc_parg = arg;
800 1.1 augustss
801 1.3 mycroft mode = sv_read_indirect(sc, SV_DMA_DATA_FORMAT);
802 1.3 mycroft mode &= ~(SV_DMAA_FORMAT16 | SV_DMAA_STEREO);
803 1.26 kent if (param->precision == 16)
804 1.3 mycroft mode |= SV_DMAA_FORMAT16;
805 1.3 mycroft if (param->channels == 2)
806 1.3 mycroft mode |= SV_DMAA_STEREO;
807 1.3 mycroft sv_write_indirect(sc, SV_DMA_DATA_FORMAT, mode);
808 1.1 augustss
809 1.4 mycroft for (p = sc->sc_dmas; p && KERNADDR(p) != start; p = p->next)
810 1.27 kent continue;
811 1.27 kent if (p == NULL) {
812 1.3 mycroft printf("sv_trigger_output: bad addr %p\n", start);
813 1.27 kent return EINVAL;
814 1.1 augustss }
815 1.1 augustss
816 1.3 mycroft dma_count = ((char *)end - (char *)start) - 1;
817 1.27 kent DPRINTF(("sv_trigger_output: DMA start loop input addr=%x cc=%d\n",
818 1.5 mycroft (int)DMAADDR(p), dma_count));
819 1.1 augustss
820 1.1 augustss bus_space_write_4(sc->sc_iot, sc->sc_dmaa_ioh, SV_DMA_ADDR0,
821 1.1 augustss DMAADDR(p));
822 1.1 augustss bus_space_write_4(sc->sc_iot, sc->sc_dmaa_ioh, SV_DMA_COUNT0,
823 1.1 augustss dma_count);
824 1.1 augustss bus_space_write_1(sc->sc_iot, sc->sc_dmaa_ioh, SV_DMA_MODE,
825 1.1 augustss DMA37MD_READ | DMA37MD_LOOP);
826 1.1 augustss
827 1.5 mycroft DPRINTF(("sv_trigger_output: current addr=%x\n",
828 1.5 mycroft bus_space_read_4(sc->sc_iot, sc->sc_dmaa_ioh, SV_DMA_ADDR0)));
829 1.5 mycroft
830 1.3 mycroft dma_count = blksize - 1;
831 1.3 mycroft
832 1.3 mycroft sv_write_indirect(sc, SV_DMAA_COUNT1, dma_count >> 8);
833 1.3 mycroft sv_write_indirect(sc, SV_DMAA_COUNT0, dma_count & 0xFF);
834 1.3 mycroft
835 1.3 mycroft mode = sv_read_indirect(sc, SV_PLAY_RECORD_ENABLE);
836 1.3 mycroft sv_write_indirect(sc, SV_PLAY_RECORD_ENABLE, mode | SV_PLAY_ENABLE);
837 1.3 mycroft
838 1.27 kent return 0;
839 1.1 augustss }
840 1.1 augustss
841 1.1 augustss int
842 1.27 kent sv_trigger_input(void *addr, void *start, void *end, int blksize,
843 1.27 kent void (*intr)(void *), void *arg, const audio_params_t *param)
844 1.1 augustss {
845 1.27 kent struct sv_softc *sc;
846 1.3 mycroft struct sv_dma *p;
847 1.27 kent uint8_t mode;
848 1.3 mycroft int dma_count;
849 1.1 augustss
850 1.27 kent DPRINTFN(1, ("sv_trigger_input: sc=%p start=%p end=%p blksize=%d "
851 1.27 kent "intr=%p(%p)\n", addr, start, end, blksize, intr, arg));
852 1.27 kent sc = addr;
853 1.3 mycroft sc->sc_rintr = intr;
854 1.3 mycroft sc->sc_rarg = arg;
855 1.1 augustss
856 1.3 mycroft mode = sv_read_indirect(sc, SV_DMA_DATA_FORMAT);
857 1.3 mycroft mode &= ~(SV_DMAC_FORMAT16 | SV_DMAC_STEREO);
858 1.26 kent if (param->precision == 16)
859 1.3 mycroft mode |= SV_DMAC_FORMAT16;
860 1.3 mycroft if (param->channels == 2)
861 1.3 mycroft mode |= SV_DMAC_STEREO;
862 1.3 mycroft sv_write_indirect(sc, SV_DMA_DATA_FORMAT, mode);
863 1.1 augustss
864 1.4 mycroft for (p = sc->sc_dmas; p && KERNADDR(p) != start; p = p->next)
865 1.27 kent continue;
866 1.3 mycroft if (!p) {
867 1.3 mycroft printf("sv_trigger_input: bad addr %p\n", start);
868 1.27 kent return EINVAL;
869 1.1 augustss }
870 1.1 augustss
871 1.3 mycroft dma_count = (((char *)end - (char *)start) >> 1) - 1;
872 1.27 kent DPRINTF(("sv_trigger_input: DMA start loop input addr=%x cc=%d\n",
873 1.5 mycroft (int)DMAADDR(p), dma_count));
874 1.3 mycroft
875 1.3 mycroft bus_space_write_4(sc->sc_iot, sc->sc_dmac_ioh, SV_DMA_ADDR0,
876 1.3 mycroft DMAADDR(p));
877 1.3 mycroft bus_space_write_4(sc->sc_iot, sc->sc_dmac_ioh, SV_DMA_COUNT0,
878 1.3 mycroft dma_count);
879 1.3 mycroft bus_space_write_1(sc->sc_iot, sc->sc_dmac_ioh, SV_DMA_MODE,
880 1.3 mycroft DMA37MD_WRITE | DMA37MD_LOOP);
881 1.5 mycroft
882 1.5 mycroft DPRINTF(("sv_trigger_input: current addr=%x\n",
883 1.5 mycroft bus_space_read_4(sc->sc_iot, sc->sc_dmac_ioh, SV_DMA_ADDR0)));
884 1.3 mycroft
885 1.3 mycroft dma_count = (blksize >> 1) - 1;
886 1.1 augustss
887 1.3 mycroft sv_write_indirect(sc, SV_DMAC_COUNT1, dma_count >> 8);
888 1.3 mycroft sv_write_indirect(sc, SV_DMAC_COUNT0, dma_count & 0xFF);
889 1.1 augustss
890 1.3 mycroft mode = sv_read_indirect(sc, SV_PLAY_RECORD_ENABLE);
891 1.3 mycroft sv_write_indirect(sc, SV_PLAY_RECORD_ENABLE, mode | SV_RECORD_ENABLE);
892 1.1 augustss
893 1.27 kent return 0;
894 1.1 augustss }
895 1.1 augustss
896 1.1 augustss int
897 1.27 kent sv_halt_output(void *addr)
898 1.1 augustss {
899 1.27 kent struct sv_softc *sc;
900 1.27 kent uint8_t mode;
901 1.27 kent
902 1.4 mycroft DPRINTF(("sv: sv_halt_output\n"));
903 1.27 kent sc = addr;
904 1.1 augustss mode = sv_read_indirect(sc, SV_PLAY_RECORD_ENABLE);
905 1.3 mycroft sv_write_indirect(sc, SV_PLAY_RECORD_ENABLE, mode & ~SV_PLAY_ENABLE);
906 1.24 mycroft sc->sc_pintr = 0;
907 1.1 augustss
908 1.27 kent return 0;
909 1.1 augustss }
910 1.1 augustss
911 1.1 augustss int
912 1.27 kent sv_halt_input(void *addr)
913 1.1 augustss {
914 1.27 kent struct sv_softc *sc;
915 1.27 kent uint8_t mode;
916 1.27 kent
917 1.4 mycroft DPRINTF(("sv: sv_halt_input\n"));
918 1.27 kent sc = addr;
919 1.1 augustss mode = sv_read_indirect(sc, SV_PLAY_RECORD_ENABLE);
920 1.3 mycroft sv_write_indirect(sc, SV_PLAY_RECORD_ENABLE, mode & ~SV_RECORD_ENABLE);
921 1.24 mycroft sc->sc_rintr = 0;
922 1.1 augustss
923 1.27 kent return 0;
924 1.1 augustss }
925 1.1 augustss
926 1.1 augustss int
927 1.27 kent sv_getdev(void *addr, struct audio_device *retp)
928 1.1 augustss {
929 1.27 kent
930 1.1 augustss *retp = sv_device;
931 1.27 kent return 0;
932 1.1 augustss }
933 1.1 augustss
934 1.1 augustss
935 1.1 augustss /*
936 1.1 augustss * Mixer related code is here
937 1.1 augustss *
938 1.1 augustss */
939 1.1 augustss
940 1.1 augustss #define SV_INPUT_CLASS 0
941 1.1 augustss #define SV_OUTPUT_CLASS 1
942 1.1 augustss #define SV_RECORD_CLASS 2
943 1.1 augustss
944 1.1 augustss #define SV_LAST_CLASS 2
945 1.1 augustss
946 1.27 kent static const char *mixer_classes[] =
947 1.1 augustss { AudioCinputs, AudioCoutputs, AudioCrecord };
948 1.1 augustss
949 1.1 augustss static const struct {
950 1.27 kent uint8_t l_port;
951 1.27 kent uint8_t r_port;
952 1.27 kent uint8_t mask;
953 1.27 kent uint8_t class;
954 1.1 augustss const char *audio;
955 1.1 augustss } ports[] = {
956 1.1 augustss { SV_LEFT_AUX1_INPUT_CONTROL, SV_RIGHT_AUX1_INPUT_CONTROL, SV_AUX1_MASK,
957 1.1 augustss SV_INPUT_CLASS, "aux1" },
958 1.27 kent { SV_LEFT_CD_INPUT_CONTROL, SV_RIGHT_CD_INPUT_CONTROL, SV_CD_MASK,
959 1.1 augustss SV_INPUT_CLASS, AudioNcd },
960 1.1 augustss { SV_LEFT_LINE_IN_INPUT_CONTROL, SV_RIGHT_LINE_IN_INPUT_CONTROL, SV_LINE_IN_MASK,
961 1.1 augustss SV_INPUT_CLASS, AudioNline },
962 1.1 augustss { SV_MIC_INPUT_CONTROL, 0, SV_MIC_MASK, SV_INPUT_CLASS, AudioNmicrophone },
963 1.27 kent { SV_LEFT_SYNTH_INPUT_CONTROL, SV_RIGHT_SYNTH_INPUT_CONTROL,
964 1.1 augustss SV_SYNTH_MASK, SV_INPUT_CLASS, AudioNfmsynth },
965 1.1 augustss { SV_LEFT_AUX2_INPUT_CONTROL, SV_RIGHT_AUX2_INPUT_CONTROL, SV_AUX2_MASK,
966 1.1 augustss SV_INPUT_CLASS, "aux2" },
967 1.1 augustss { SV_LEFT_PCM_INPUT_CONTROL, SV_RIGHT_PCM_INPUT_CONTROL, SV_PCM_MASK,
968 1.1 augustss SV_INPUT_CLASS, AudioNdac },
969 1.27 kent { SV_LEFT_MIXER_OUTPUT_CONTROL, SV_RIGHT_MIXER_OUTPUT_CONTROL,
970 1.1 augustss SV_MIXER_OUT_MASK, SV_OUTPUT_CLASS, AudioNmaster }
971 1.1 augustss };
972 1.1 augustss
973 1.1 augustss
974 1.1 augustss static const struct {
975 1.1 augustss int idx;
976 1.1 augustss const char *name;
977 1.1 augustss } record_sources[] = {
978 1.1 augustss { SV_REC_CD, AudioNcd },
979 1.1 augustss { SV_REC_DAC, AudioNdac },
980 1.1 augustss { SV_REC_AUX2, "aux2" },
981 1.1 augustss { SV_REC_LINE, AudioNline },
982 1.1 augustss { SV_REC_AUX1, "aux1" },
983 1.1 augustss { SV_REC_MIC, AudioNmicrophone },
984 1.1 augustss { SV_REC_MIXER, AudioNmixerout }
985 1.1 augustss };
986 1.1 augustss
987 1.1 augustss
988 1.1 augustss #define SV_DEVICES_PER_PORT 2
989 1.1 augustss #define SV_FIRST_MIXER (SV_LAST_CLASS + 1)
990 1.1 augustss #define SV_LAST_MIXER (SV_DEVICES_PER_PORT * (ARRAY_SIZE(ports)) + SV_LAST_CLASS)
991 1.1 augustss #define SV_RECORD_SOURCE (SV_LAST_MIXER + 1)
992 1.1 augustss #define SV_MIC_BOOST (SV_LAST_MIXER + 2)
993 1.1 augustss #define SV_RECORD_GAIN (SV_LAST_MIXER + 3)
994 1.1 augustss #define SV_SRS_MODE (SV_LAST_MIXER + 4)
995 1.1 augustss
996 1.27 kent int
997 1.27 kent sv_query_devinfo(void *addr, mixer_devinfo_t *dip)
998 1.1 augustss {
999 1.1 augustss int i;
1000 1.1 augustss
1001 1.1 augustss /* It's a class */
1002 1.1 augustss if (dip->index <= SV_LAST_CLASS) {
1003 1.1 augustss dip->type = AUDIO_MIXER_CLASS;
1004 1.1 augustss dip->mixer_class = dip->index;
1005 1.1 augustss dip->next = dip->prev = AUDIO_MIXER_LAST;
1006 1.27 kent strcpy(dip->label.name, mixer_classes[dip->index]);
1007 1.27 kent return 0;
1008 1.1 augustss }
1009 1.1 augustss
1010 1.1 augustss if (dip->index >= SV_FIRST_MIXER &&
1011 1.1 augustss dip->index <= SV_LAST_MIXER) {
1012 1.27 kent int off, mute ,idx;
1013 1.27 kent
1014 1.27 kent off = dip->index - SV_FIRST_MIXER;
1015 1.27 kent mute = (off % SV_DEVICES_PER_PORT);
1016 1.27 kent idx = off / SV_DEVICES_PER_PORT;
1017 1.1 augustss dip->mixer_class = ports[idx].class;
1018 1.1 augustss strcpy(dip->label.name, ports[idx].audio);
1019 1.27 kent
1020 1.1 augustss if (!mute) {
1021 1.1 augustss dip->type = AUDIO_MIXER_VALUE;
1022 1.1 augustss dip->prev = AUDIO_MIXER_LAST;
1023 1.1 augustss dip->next = dip->index + 1;
1024 1.1 augustss
1025 1.1 augustss if (ports[idx].r_port != 0)
1026 1.1 augustss dip->un.v.num_channels = 2;
1027 1.1 augustss else
1028 1.1 augustss dip->un.v.num_channels = 1;
1029 1.27 kent
1030 1.1 augustss strcpy(dip->un.v.units.name, AudioNvolume);
1031 1.1 augustss } else {
1032 1.1 augustss dip->type = AUDIO_MIXER_ENUM;
1033 1.1 augustss dip->prev = dip->index - 1;
1034 1.1 augustss dip->next = AUDIO_MIXER_LAST;
1035 1.27 kent
1036 1.1 augustss strcpy(dip->label.name, AudioNmute);
1037 1.1 augustss dip->un.e.num_mem = 2;
1038 1.1 augustss strcpy(dip->un.e.member[0].label.name, AudioNoff);
1039 1.1 augustss dip->un.e.member[0].ord = 0;
1040 1.1 augustss strcpy(dip->un.e.member[1].label.name, AudioNon);
1041 1.1 augustss dip->un.e.member[1].ord = 1;
1042 1.1 augustss }
1043 1.27 kent
1044 1.27 kent return 0;
1045 1.1 augustss }
1046 1.1 augustss
1047 1.1 augustss switch (dip->index) {
1048 1.1 augustss case SV_RECORD_SOURCE:
1049 1.1 augustss dip->mixer_class = SV_RECORD_CLASS;
1050 1.1 augustss dip->prev = AUDIO_MIXER_LAST;
1051 1.1 augustss dip->next = SV_RECORD_GAIN;
1052 1.1 augustss strcpy(dip->label.name, AudioNsource);
1053 1.1 augustss dip->type = AUDIO_MIXER_ENUM;
1054 1.27 kent
1055 1.1 augustss dip->un.e.num_mem = ARRAY_SIZE(record_sources);
1056 1.1 augustss for (i = 0; i < ARRAY_SIZE(record_sources); i++) {
1057 1.27 kent strcpy(dip->un.e.member[i].label.name,
1058 1.1 augustss record_sources[i].name);
1059 1.1 augustss dip->un.e.member[i].ord = record_sources[i].idx;
1060 1.1 augustss }
1061 1.27 kent return 0;
1062 1.1 augustss
1063 1.1 augustss case SV_RECORD_GAIN:
1064 1.1 augustss dip->mixer_class = SV_RECORD_CLASS;
1065 1.1 augustss dip->prev = SV_RECORD_SOURCE;
1066 1.1 augustss dip->next = AUDIO_MIXER_LAST;
1067 1.1 augustss strcpy(dip->label.name, "gain");
1068 1.1 augustss dip->type = AUDIO_MIXER_VALUE;
1069 1.1 augustss dip->un.v.num_channels = 1;
1070 1.1 augustss strcpy(dip->un.v.units.name, AudioNvolume);
1071 1.27 kent return 0;
1072 1.27 kent
1073 1.1 augustss case SV_MIC_BOOST:
1074 1.1 augustss dip->mixer_class = SV_RECORD_CLASS;
1075 1.1 augustss dip->prev = AUDIO_MIXER_LAST;
1076 1.1 augustss dip->next = AUDIO_MIXER_LAST;
1077 1.1 augustss strcpy(dip->label.name, "micboost");
1078 1.1 augustss goto on_off;
1079 1.27 kent
1080 1.1 augustss case SV_SRS_MODE:
1081 1.1 augustss dip->mixer_class = SV_OUTPUT_CLASS;
1082 1.1 augustss dip->prev = dip->next = AUDIO_MIXER_LAST;
1083 1.1 augustss strcpy(dip->label.name, AudioNspatial);
1084 1.27 kent
1085 1.1 augustss on_off:
1086 1.1 augustss dip->type = AUDIO_MIXER_ENUM;
1087 1.1 augustss dip->un.e.num_mem = 2;
1088 1.1 augustss strcpy(dip->un.e.member[0].label.name, AudioNoff);
1089 1.1 augustss dip->un.e.member[0].ord = 0;
1090 1.1 augustss strcpy(dip->un.e.member[1].label.name, AudioNon);
1091 1.1 augustss dip->un.e.member[1].ord = 1;
1092 1.27 kent return 0;
1093 1.1 augustss }
1094 1.27 kent
1095 1.27 kent return ENXIO;
1096 1.1 augustss }
1097 1.1 augustss
1098 1.1 augustss int
1099 1.27 kent sv_mixer_set_port(void *addr, mixer_ctrl_t *cp)
1100 1.1 augustss {
1101 1.27 kent struct sv_softc *sc;
1102 1.27 kent uint8_t reg;
1103 1.1 augustss int idx;
1104 1.1 augustss
1105 1.27 kent sc = addr;
1106 1.1 augustss if (cp->dev >= SV_FIRST_MIXER &&
1107 1.1 augustss cp->dev <= SV_LAST_MIXER) {
1108 1.27 kent int off, mute;
1109 1.27 kent
1110 1.27 kent off = cp->dev - SV_FIRST_MIXER;
1111 1.27 kent mute = (off % SV_DEVICES_PER_PORT);
1112 1.1 augustss idx = off / SV_DEVICES_PER_PORT;
1113 1.27 kent
1114 1.1 augustss if (mute) {
1115 1.27 kent if (cp->type != AUDIO_MIXER_ENUM)
1116 1.27 kent return EINVAL;
1117 1.1 augustss
1118 1.1 augustss reg = sv_read_indirect(sc, ports[idx].l_port);
1119 1.27 kent if (cp->un.ord)
1120 1.1 augustss reg |= SV_MUTE_BIT;
1121 1.1 augustss else
1122 1.1 augustss reg &= ~SV_MUTE_BIT;
1123 1.1 augustss sv_write_indirect(sc, ports[idx].l_port, reg);
1124 1.27 kent
1125 1.1 augustss if (ports[idx].r_port) {
1126 1.1 augustss reg = sv_read_indirect(sc, ports[idx].r_port);
1127 1.27 kent if (cp->un.ord)
1128 1.1 augustss reg |= SV_MUTE_BIT;
1129 1.1 augustss else
1130 1.1 augustss reg &= ~SV_MUTE_BIT;
1131 1.1 augustss sv_write_indirect(sc, ports[idx].r_port, reg);
1132 1.1 augustss }
1133 1.1 augustss } else {
1134 1.1 augustss int lval, rval;
1135 1.27 kent
1136 1.1 augustss if (cp->type != AUDIO_MIXER_VALUE)
1137 1.27 kent return EINVAL;
1138 1.27 kent
1139 1.1 augustss if (cp->un.value.num_channels != 1 &&
1140 1.1 augustss cp->un.value.num_channels != 2)
1141 1.1 augustss return (EINVAL);
1142 1.27 kent
1143 1.1 augustss if (ports[idx].r_port == 0) {
1144 1.1 augustss if (cp->un.value.num_channels != 1)
1145 1.1 augustss return (EINVAL);
1146 1.1 augustss lval = cp->un.value.level[AUDIO_MIXER_LEVEL_MONO];
1147 1.1 augustss rval = 0; /* shut up GCC */
1148 1.1 augustss } else {
1149 1.1 augustss if (cp->un.value.num_channels != 2)
1150 1.1 augustss return (EINVAL);
1151 1.27 kent
1152 1.1 augustss lval = cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT];
1153 1.1 augustss rval = cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT];
1154 1.27 kent }
1155 1.1 augustss
1156 1.1 augustss
1157 1.1 augustss reg = sv_read_indirect(sc, ports[idx].l_port);
1158 1.1 augustss reg &= ~(ports[idx].mask);
1159 1.27 kent lval = (AUDIO_MAX_GAIN - lval) * ports[idx].mask /
1160 1.1 augustss AUDIO_MAX_GAIN;
1161 1.1 augustss reg |= lval;
1162 1.1 augustss sv_write_indirect(sc, ports[idx].l_port, reg);
1163 1.1 augustss
1164 1.1 augustss if (ports[idx].r_port != 0) {
1165 1.1 augustss reg = sv_read_indirect(sc, ports[idx].r_port);
1166 1.1 augustss reg &= ~(ports[idx].mask);
1167 1.27 kent
1168 1.1 augustss rval = (AUDIO_MAX_GAIN - rval) * ports[idx].mask /
1169 1.1 augustss AUDIO_MAX_GAIN;
1170 1.1 augustss reg |= rval;
1171 1.1 augustss
1172 1.1 augustss sv_write_indirect(sc, ports[idx].r_port, reg);
1173 1.1 augustss }
1174 1.1 augustss
1175 1.1 augustss sv_read_indirect(sc, ports[idx].l_port);
1176 1.1 augustss }
1177 1.1 augustss
1178 1.27 kent return 0;
1179 1.1 augustss }
1180 1.1 augustss
1181 1.1 augustss
1182 1.1 augustss switch (cp->dev) {
1183 1.1 augustss case SV_RECORD_SOURCE:
1184 1.1 augustss if (cp->type != AUDIO_MIXER_ENUM)
1185 1.27 kent return EINVAL;
1186 1.27 kent
1187 1.1 augustss for (idx = 0; idx < ARRAY_SIZE(record_sources); idx++) {
1188 1.1 augustss if (record_sources[idx].idx == cp->un.ord)
1189 1.1 augustss goto found;
1190 1.1 augustss }
1191 1.27 kent
1192 1.27 kent return EINVAL;
1193 1.1 augustss
1194 1.1 augustss found:
1195 1.1 augustss reg = sv_read_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL);
1196 1.1 augustss reg &= ~SV_REC_SOURCE_MASK;
1197 1.1 augustss reg |= (((cp->un.ord) << SV_REC_SOURCE_SHIFT) & SV_REC_SOURCE_MASK);
1198 1.1 augustss sv_write_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL, reg);
1199 1.27 kent
1200 1.1 augustss reg = sv_read_indirect(sc, SV_RIGHT_ADC_INPUT_CONTROL);
1201 1.1 augustss reg &= ~SV_REC_SOURCE_MASK;
1202 1.1 augustss reg |= (((cp->un.ord) << SV_REC_SOURCE_SHIFT) & SV_REC_SOURCE_MASK);
1203 1.1 augustss sv_write_indirect(sc, SV_RIGHT_ADC_INPUT_CONTROL, reg);
1204 1.27 kent return 0;
1205 1.27 kent
1206 1.1 augustss case SV_RECORD_GAIN:
1207 1.1 augustss {
1208 1.1 augustss int val;
1209 1.27 kent
1210 1.1 augustss if (cp->type != AUDIO_MIXER_VALUE)
1211 1.27 kent return EINVAL;
1212 1.27 kent
1213 1.1 augustss if (cp->un.value.num_channels != 1)
1214 1.27 kent return EINVAL;
1215 1.27 kent
1216 1.27 kent val = (cp->un.value.level[AUDIO_MIXER_LEVEL_MONO]
1217 1.27 kent * SV_REC_GAIN_MASK) / AUDIO_MAX_GAIN;
1218 1.27 kent
1219 1.1 augustss reg = sv_read_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL);
1220 1.1 augustss reg &= ~SV_REC_GAIN_MASK;
1221 1.1 augustss reg |= val;
1222 1.1 augustss sv_write_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL, reg);
1223 1.27 kent
1224 1.1 augustss reg = sv_read_indirect(sc, SV_RIGHT_ADC_INPUT_CONTROL);
1225 1.1 augustss reg &= ~SV_REC_GAIN_MASK;
1226 1.1 augustss reg |= val;
1227 1.1 augustss sv_write_indirect(sc, SV_RIGHT_ADC_INPUT_CONTROL, reg);
1228 1.1 augustss }
1229 1.1 augustss return (0);
1230 1.1 augustss
1231 1.1 augustss case SV_MIC_BOOST:
1232 1.1 augustss if (cp->type != AUDIO_MIXER_ENUM)
1233 1.27 kent return EINVAL;
1234 1.27 kent
1235 1.1 augustss reg = sv_read_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL);
1236 1.1 augustss if (cp->un.ord) {
1237 1.1 augustss reg |= SV_MIC_BOOST_BIT;
1238 1.1 augustss } else {
1239 1.1 augustss reg &= ~SV_MIC_BOOST_BIT;
1240 1.1 augustss }
1241 1.27 kent
1242 1.1 augustss sv_write_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL, reg);
1243 1.27 kent return 0;
1244 1.27 kent
1245 1.1 augustss case SV_SRS_MODE:
1246 1.1 augustss if (cp->type != AUDIO_MIXER_ENUM)
1247 1.27 kent return EINVAL;
1248 1.27 kent
1249 1.1 augustss reg = sv_read_indirect(sc, SV_SRS_SPACE_CONTROL);
1250 1.1 augustss if (cp->un.ord) {
1251 1.1 augustss reg &= ~SV_SRS_SPACE_ONOFF;
1252 1.1 augustss } else {
1253 1.1 augustss reg |= SV_SRS_SPACE_ONOFF;
1254 1.1 augustss }
1255 1.27 kent
1256 1.1 augustss sv_write_indirect(sc, SV_SRS_SPACE_CONTROL, reg);
1257 1.27 kent return 0;
1258 1.1 augustss }
1259 1.27 kent
1260 1.27 kent return EINVAL;
1261 1.1 augustss }
1262 1.1 augustss
1263 1.1 augustss int
1264 1.27 kent sv_mixer_get_port(void *addr, mixer_ctrl_t *cp)
1265 1.1 augustss {
1266 1.27 kent struct sv_softc *sc;
1267 1.1 augustss int val;
1268 1.27 kent uint8_t reg;
1269 1.27 kent
1270 1.27 kent sc = addr;
1271 1.1 augustss if (cp->dev >= SV_FIRST_MIXER &&
1272 1.1 augustss cp->dev <= SV_LAST_MIXER) {
1273 1.1 augustss int off = cp->dev - SV_FIRST_MIXER;
1274 1.1 augustss int mute = (off % 2);
1275 1.1 augustss int idx = off / 2;
1276 1.27 kent
1277 1.27 kent off = cp->dev - SV_FIRST_MIXER;
1278 1.27 kent mute = (off % 2);
1279 1.27 kent idx = off / 2;
1280 1.1 augustss if (mute) {
1281 1.27 kent if (cp->type != AUDIO_MIXER_ENUM)
1282 1.27 kent return EINVAL;
1283 1.27 kent
1284 1.1 augustss reg = sv_read_indirect(sc, ports[idx].l_port);
1285 1.1 augustss cp->un.ord = ((reg & SV_MUTE_BIT) ? 1 : 0);
1286 1.1 augustss } else {
1287 1.1 augustss if (cp->type != AUDIO_MIXER_VALUE)
1288 1.27 kent return EINVAL;
1289 1.27 kent
1290 1.1 augustss if (cp->un.value.num_channels != 1 &&
1291 1.1 augustss cp->un.value.num_channels != 2)
1292 1.27 kent return EINVAL;
1293 1.27 kent
1294 1.1 augustss if ((ports[idx].r_port == 0 &&
1295 1.1 augustss cp->un.value.num_channels != 1) ||
1296 1.1 augustss (ports[idx].r_port != 0 &&
1297 1.1 augustss cp->un.value.num_channels != 2))
1298 1.27 kent return EINVAL;
1299 1.27 kent
1300 1.1 augustss reg = sv_read_indirect(sc, ports[idx].l_port);
1301 1.1 augustss reg &= ports[idx].mask;
1302 1.27 kent
1303 1.1 augustss val = AUDIO_MAX_GAIN - ((reg * AUDIO_MAX_GAIN) / ports[idx].mask);
1304 1.27 kent
1305 1.1 augustss if (ports[idx].r_port != 0) {
1306 1.1 augustss cp->un.value.level[AUDIO_MIXER_LEVEL_LEFT] = val;
1307 1.27 kent
1308 1.1 augustss reg = sv_read_indirect(sc, ports[idx].r_port);
1309 1.1 augustss reg &= ports[idx].mask;
1310 1.27 kent
1311 1.27 kent val = AUDIO_MAX_GAIN - ((reg * AUDIO_MAX_GAIN)
1312 1.27 kent / ports[idx].mask);
1313 1.1 augustss cp->un.value.level[AUDIO_MIXER_LEVEL_RIGHT] = val;
1314 1.27 kent } else
1315 1.1 augustss cp->un.value.level[AUDIO_MIXER_LEVEL_MONO] = val;
1316 1.1 augustss }
1317 1.1 augustss
1318 1.27 kent return 0;
1319 1.27 kent }
1320 1.1 augustss
1321 1.1 augustss switch (cp->dev) {
1322 1.1 augustss case SV_RECORD_SOURCE:
1323 1.1 augustss if (cp->type != AUDIO_MIXER_ENUM)
1324 1.27 kent return EINVAL;
1325 1.27 kent
1326 1.1 augustss reg = sv_read_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL);
1327 1.1 augustss cp->un.ord = ((reg & SV_REC_SOURCE_MASK) >> SV_REC_SOURCE_SHIFT);
1328 1.27 kent
1329 1.27 kent return 0;
1330 1.27 kent
1331 1.1 augustss case SV_RECORD_GAIN:
1332 1.1 augustss if (cp->type != AUDIO_MIXER_VALUE)
1333 1.27 kent return EINVAL;
1334 1.1 augustss if (cp->un.value.num_channels != 1)
1335 1.27 kent return EINVAL;
1336 1.27 kent
1337 1.1 augustss reg = sv_read_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL) & SV_REC_GAIN_MASK;
1338 1.27 kent cp->un.value.level[AUDIO_MIXER_LEVEL_MONO] =
1339 1.1 augustss (((unsigned int)reg) * AUDIO_MAX_GAIN) / SV_REC_GAIN_MASK;
1340 1.27 kent
1341 1.27 kent return 0;
1342 1.27 kent
1343 1.1 augustss case SV_MIC_BOOST:
1344 1.1 augustss if (cp->type != AUDIO_MIXER_ENUM)
1345 1.27 kent return EINVAL;
1346 1.1 augustss reg = sv_read_indirect(sc, SV_LEFT_ADC_INPUT_CONTROL);
1347 1.1 augustss cp->un.ord = ((reg & SV_MIC_BOOST_BIT) ? 1 : 0);
1348 1.27 kent return 0;
1349 1.27 kent
1350 1.1 augustss case SV_SRS_MODE:
1351 1.1 augustss if (cp->type != AUDIO_MIXER_ENUM)
1352 1.27 kent return EINVAL;
1353 1.1 augustss reg = sv_read_indirect(sc, SV_SRS_SPACE_CONTROL);
1354 1.1 augustss cp->un.ord = ((reg & SV_SRS_SPACE_ONOFF) ? 0 : 1);
1355 1.27 kent return 0;
1356 1.1 augustss }
1357 1.27 kent
1358 1.27 kent return EINVAL;
1359 1.1 augustss }
1360 1.1 augustss
1361 1.1 augustss static void
1362 1.27 kent sv_init_mixer(struct sv_softc *sc)
1363 1.1 augustss {
1364 1.1 augustss mixer_ctrl_t cp;
1365 1.1 augustss int i;
1366 1.27 kent
1367 1.1 augustss cp.type = AUDIO_MIXER_ENUM;
1368 1.1 augustss cp.dev = SV_SRS_MODE;
1369 1.1 augustss cp.un.ord = 0;
1370 1.1 augustss
1371 1.1 augustss sv_mixer_set_port(sc, &cp);
1372 1.1 augustss
1373 1.1 augustss for (i = 0; i < ARRAY_SIZE(ports); i++) {
1374 1.1 augustss if (ports[i].audio == AudioNdac) {
1375 1.1 augustss cp.type = AUDIO_MIXER_ENUM;
1376 1.1 augustss cp.dev = SV_FIRST_MIXER + i * SV_DEVICES_PER_PORT + 1;
1377 1.1 augustss cp.un.ord = 0;
1378 1.1 augustss sv_mixer_set_port(sc, &cp);
1379 1.1 augustss break;
1380 1.1 augustss }
1381 1.1 augustss }
1382 1.1 augustss }
1383 1.1 augustss
1384 1.1 augustss void *
1385 1.27 kent sv_malloc(void *addr, int direction, size_t size,
1386 1.27 kent struct malloc_type *pool, int flags)
1387 1.1 augustss {
1388 1.27 kent struct sv_softc *sc;
1389 1.4 mycroft struct sv_dma *p;
1390 1.4 mycroft int error;
1391 1.1 augustss
1392 1.27 kent sc = addr;
1393 1.4 mycroft p = malloc(sizeof(*p), pool, flags);
1394 1.27 kent if (p == NULL)
1395 1.27 kent return NULL;
1396 1.13 kleink error = sv_allocmem(sc, size, 16, direction, p);
1397 1.4 mycroft if (error) {
1398 1.4 mycroft free(p, pool);
1399 1.27 kent return 0;
1400 1.4 mycroft }
1401 1.4 mycroft p->next = sc->sc_dmas;
1402 1.4 mycroft sc->sc_dmas = p;
1403 1.27 kent return KERNADDR(p);
1404 1.1 augustss }
1405 1.1 augustss
1406 1.1 augustss void
1407 1.27 kent sv_free(void *addr, void *ptr, struct malloc_type *pool)
1408 1.1 augustss {
1409 1.27 kent struct sv_softc *sc;
1410 1.9 kleink struct sv_dma **pp, *p;
1411 1.1 augustss
1412 1.27 kent sc = addr;
1413 1.9 kleink for (pp = &sc->sc_dmas; (p = *pp) != NULL; pp = &p->next) {
1414 1.9 kleink if (KERNADDR(p) == ptr) {
1415 1.9 kleink sv_freemem(sc, p);
1416 1.9 kleink *pp = p->next;
1417 1.9 kleink free(p, pool);
1418 1.4 mycroft return;
1419 1.4 mycroft }
1420 1.4 mycroft }
1421 1.1 augustss }
1422 1.1 augustss
1423 1.2 mycroft size_t
1424 1.27 kent sv_round_buffersize(void *addr, int direction, size_t size)
1425 1.1 augustss {
1426 1.27 kent
1427 1.27 kent return size;
1428 1.1 augustss }
1429 1.1 augustss
1430 1.11 simonb paddr_t
1431 1.27 kent sv_mappage(void *addr, void *mem, off_t off, int prot)
1432 1.1 augustss {
1433 1.27 kent struct sv_softc *sc;
1434 1.4 mycroft struct sv_dma *p;
1435 1.1 augustss
1436 1.27 kent sc = addr;
1437 1.3 mycroft if (off < 0)
1438 1.27 kent return -1;
1439 1.4 mycroft for (p = sc->sc_dmas; p && KERNADDR(p) != mem; p = p->next)
1440 1.27 kent continue;
1441 1.27 kent if (p == NULL)
1442 1.27 kent return -1;
1443 1.27 kent return bus_dmamem_mmap(sc->sc_dmatag, p->segs, p->nsegs,
1444 1.27 kent off, prot, BUS_DMA_WAITOK);
1445 1.1 augustss }
1446 1.1 augustss
1447 1.1 augustss int
1448 1.27 kent sv_get_props(void *addr)
1449 1.1 augustss {
1450 1.27 kent return AUDIO_PROP_MMAP | AUDIO_PROP_INDEPENDENT | AUDIO_PROP_FULLDUPLEX;
1451 1.1 augustss }
1452