1 1.20 msaitoh /* $NetBSD: gcscaudio.c,v 1.20 2024/02/07 04:20:28 msaitoh Exp $ */ 2 1.1 jmcneill 3 1.1 jmcneill /*- 4 1.20 msaitoh * Copyright (c) 2008 SHIMIZU Ryo 5 1.1 jmcneill * All rights reserved. 6 1.1 jmcneill * 7 1.1 jmcneill * Redistribution and use in source and binary forms, with or without 8 1.1 jmcneill * modification, are permitted provided that the following conditions 9 1.1 jmcneill * are met: 10 1.1 jmcneill * 1. Redistributions of source code must retain the above copyright 11 1.1 jmcneill * notice, this list of conditions and the following disclaimer. 12 1.1 jmcneill * 2. Redistributions in binary form must reproduce the above copyright 13 1.1 jmcneill * notice, this list of conditions and the following disclaimer in the 14 1.1 jmcneill * documentation and/or other materials provided with the distribution. 15 1.1 jmcneill * 16 1.1 jmcneill * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 17 1.1 jmcneill * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 18 1.1 jmcneill * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 19 1.1 jmcneill * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 20 1.1 jmcneill * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 21 1.1 jmcneill * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 22 1.1 jmcneill * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 23 1.1 jmcneill * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 24 1.1 jmcneill * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 25 1.1 jmcneill * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 26 1.1 jmcneill * POSSIBILITY OF SUCH DAMAGE. 27 1.1 jmcneill */ 28 1.1 jmcneill 29 1.1 jmcneill #include <sys/cdefs.h> 30 1.20 msaitoh __KERNEL_RCSID(0, "$NetBSD: gcscaudio.c,v 1.20 2024/02/07 04:20:28 msaitoh Exp $"); 31 1.1 jmcneill 32 1.1 jmcneill #include <sys/param.h> 33 1.1 jmcneill #include <sys/systm.h> 34 1.8 jmcneill #include <sys/kmem.h> 35 1.1 jmcneill #include <sys/device.h> 36 1.1 jmcneill #include <sys/queue.h> 37 1.1 jmcneill 38 1.1 jmcneill #include <dev/pci/pcidevs.h> 39 1.1 jmcneill #include <dev/pci/pcivar.h> 40 1.1 jmcneill 41 1.1 jmcneill #include <sys/audioio.h> 42 1.17 isaki #include <dev/audio/audio_if.h> 43 1.17 isaki 44 1.1 jmcneill #include <dev/ic/ac97reg.h> 45 1.1 jmcneill #include <dev/ic/ac97var.h> 46 1.1 jmcneill 47 1.1 jmcneill #include <dev/pci/gcscaudioreg.h> 48 1.1 jmcneill 49 1.1 jmcneill 50 1.1 jmcneill #define GCSCAUDIO_NPRDTABLE 256 /* including a JMP-PRD for loop */ 51 1.1 jmcneill #define GCSCAUDIO_PRD_SIZE_MAX 65532 /* limited by CS5536 Controller */ 52 1.1 jmcneill #define GCSCAUDIO_BUFSIZE_MAX (GCSCAUDIO_PRD_SIZE_MAX * (GCSCAUDIO_NPRDTABLE - 1)) 53 1.1 jmcneill 54 1.1 jmcneill struct gcscaudio_prd { 55 1.1 jmcneill /* PRD table for play/rec */ 56 1.1 jmcneill struct gcscaudio_prdtables { 57 1.1 jmcneill #define PRD_TABLE_FRONT 0 58 1.1 jmcneill #define PRD_TABLE_SURR 1 59 1.1 jmcneill #define PRD_TABLE_CENTER 2 60 1.1 jmcneill #define PRD_TABLE_LFE 3 61 1.1 jmcneill #define PRD_TABLE_REC 4 62 1.1 jmcneill #define PRD_TABLE_MAX 5 63 1.1 jmcneill struct acc_prd prdtbl[PRD_TABLE_MAX][GCSCAUDIO_NPRDTABLE]; 64 1.1 jmcneill } *p_prdtables; 65 1.1 jmcneill bus_dmamap_t p_prdmap; 66 1.1 jmcneill bus_dma_segment_t p_prdsegs[1]; 67 1.1 jmcneill int p_prdnseg; 68 1.1 jmcneill }; 69 1.1 jmcneill 70 1.1 jmcneill struct gcscaudio_dma { 71 1.1 jmcneill LIST_ENTRY(gcscaudio_dma) list; 72 1.1 jmcneill bus_dmamap_t map; 73 1.1 jmcneill void *addr; 74 1.1 jmcneill size_t size; 75 1.1 jmcneill bus_dma_segment_t segs[1]; 76 1.1 jmcneill int nseg; 77 1.1 jmcneill }; 78 1.1 jmcneill 79 1.1 jmcneill struct gcscaudio_softc_ch { 80 1.1 jmcneill void (*ch_intr)(void *); 81 1.1 jmcneill void *ch_intr_arg; 82 1.1 jmcneill struct audio_params ch_params; 83 1.1 jmcneill }; 84 1.1 jmcneill 85 1.1 jmcneill struct gcscaudio_softc { 86 1.12 nonaka device_t sc_dev; 87 1.8 jmcneill kmutex_t sc_lock; 88 1.8 jmcneill kmutex_t sc_intr_lock; 89 1.1 jmcneill pci_chipset_tag_t sc_pc; 90 1.1 jmcneill pcitag_t sc_pt; 91 1.1 jmcneill void *sc_ih; 92 1.1 jmcneill bus_space_tag_t sc_iot; 93 1.1 jmcneill bus_space_handle_t sc_ioh; 94 1.1 jmcneill bus_size_t sc_ios; 95 1.1 jmcneill bus_dma_tag_t sc_dmat; 96 1.1 jmcneill 97 1.1 jmcneill /* allocated DMA buffer list */ 98 1.1 jmcneill LIST_HEAD(, gcscaudio_dma) sc_dmalist; 99 1.1 jmcneill 100 1.1 jmcneill #define GCSCAUDIO_MAXFORMATS 4 101 1.1 jmcneill struct audio_format sc_formats[GCSCAUDIO_MAXFORMATS]; 102 1.1 jmcneill int sc_nformats; 103 1.1 jmcneill 104 1.1 jmcneill /* AC97 codec */ 105 1.1 jmcneill struct ac97_host_if host_if; 106 1.1 jmcneill struct ac97_codec_if *codec_if; 107 1.1 jmcneill 108 1.1 jmcneill /* input, output channels */ 109 1.1 jmcneill struct gcscaudio_softc_ch sc_play; 110 1.1 jmcneill struct gcscaudio_softc_ch sc_rec; 111 1.1 jmcneill struct gcscaudio_prd sc_prd; 112 1.1 jmcneill 113 1.1 jmcneill /* multi channel splitter work; {4,6}ch stream to {2,4} DMA buffers */ 114 1.1 jmcneill void *sc_mch_split_buf; 115 1.1 jmcneill void *sc_mch_split_start; 116 1.1 jmcneill int sc_mch_split_off; 117 1.1 jmcneill int sc_mch_split_size; 118 1.1 jmcneill int sc_mch_split_blksize; 119 1.1 jmcneill void (*sc_mch_splitter)(void *, void *, int, int); 120 1.1 jmcneill bool sc_spdif; 121 1.1 jmcneill }; 122 1.1 jmcneill 123 1.1 jmcneill /* for cfattach */ 124 1.2 cegger static int gcscaudio_match(device_t, cfdata_t, void *); 125 1.1 jmcneill static void gcscaudio_attach(device_t, device_t, void *); 126 1.1 jmcneill 127 1.1 jmcneill /* for audio_hw_if */ 128 1.1 jmcneill static int gcscaudio_open(void *, int); 129 1.1 jmcneill static void gcscaudio_close(void *); 130 1.17 isaki static int gcscaudio_query_format(void *, audio_format_query_t *); 131 1.17 isaki static int gcscaudio_set_format(void *, int, 132 1.17 isaki const audio_params_t *, const audio_params_t *, 133 1.17 isaki audio_filter_reg_t *, audio_filter_reg_t *); 134 1.1 jmcneill static int gcscaudio_round_blocksize(void *, int, int, const audio_params_t *); 135 1.1 jmcneill static int gcscaudio_halt_output(void *); 136 1.1 jmcneill static int gcscaudio_halt_input(void *); 137 1.1 jmcneill static int gcscaudio_getdev(void *, struct audio_device *); 138 1.1 jmcneill static int gcscaudio_set_port(void *, mixer_ctrl_t *); 139 1.1 jmcneill static int gcscaudio_get_port(void *, mixer_ctrl_t *); 140 1.1 jmcneill static int gcscaudio_query_devinfo(void *, mixer_devinfo_t *); 141 1.8 jmcneill static void *gcscaudio_malloc(void *, int, size_t); 142 1.8 jmcneill static void gcscaudio_free(void *, void *, size_t); 143 1.1 jmcneill static size_t gcscaudio_round_buffersize(void *, int, size_t); 144 1.1 jmcneill static int gcscaudio_get_props(void *); 145 1.1 jmcneill static int gcscaudio_trigger_output(void *, void *, void *, int, 146 1.1 jmcneill void (*)(void *), void *, 147 1.1 jmcneill const audio_params_t *); 148 1.1 jmcneill static int gcscaudio_trigger_input(void *, void *, void *, int, 149 1.1 jmcneill void (*)(void *), void *, 150 1.1 jmcneill const audio_params_t *); 151 1.8 jmcneill static void gcscaudio_get_locks(void *, kmutex_t **, kmutex_t **); 152 1.5 dyoung static bool gcscaudio_resume(device_t, const pmf_qual_t *); 153 1.1 jmcneill static int gcscaudio_intr(void *); 154 1.1 jmcneill 155 1.1 jmcneill /* for codec_if */ 156 1.1 jmcneill static int gcscaudio_attach_codec(void *, struct ac97_codec_if *); 157 1.1 jmcneill static int gcscaudio_write_codec(void *, uint8_t, uint16_t); 158 1.1 jmcneill static int gcscaudio_read_codec(void *, uint8_t, uint16_t *); 159 1.1 jmcneill static int gcscaudio_reset_codec(void *); 160 1.1 jmcneill static void gcscaudio_spdif_event_codec(void *, bool); 161 1.1 jmcneill 162 1.1 jmcneill /* misc */ 163 1.1 jmcneill static int gcscaudio_append_formats(struct gcscaudio_softc *, 164 1.1 jmcneill const struct audio_format *); 165 1.1 jmcneill static int gcscaudio_wait_ready_codec(struct gcscaudio_softc *sc, const char *); 166 1.1 jmcneill static int gcscaudio_allocate_dma(struct gcscaudio_softc *, size_t, void **, 167 1.1 jmcneill bus_dma_segment_t *, int, int *, 168 1.8 jmcneill bus_dmamap_t *); 169 1.1 jmcneill 170 1.1 jmcneill 171 1.12 nonaka CFATTACH_DECL_NEW(gcscaudio, sizeof (struct gcscaudio_softc), 172 1.1 jmcneill gcscaudio_match, gcscaudio_attach, NULL, NULL); 173 1.1 jmcneill 174 1.1 jmcneill 175 1.1 jmcneill static struct audio_device gcscaudio_device = { 176 1.1 jmcneill "AMD Geode CS5536", 177 1.1 jmcneill "", 178 1.1 jmcneill "gcscaudio" 179 1.1 jmcneill }; 180 1.1 jmcneill 181 1.1 jmcneill static const struct audio_hw_if gcscaudio_hw_if = { 182 1.1 jmcneill .open = gcscaudio_open, 183 1.1 jmcneill .close = gcscaudio_close, 184 1.17 isaki .query_format = gcscaudio_query_format, 185 1.17 isaki .set_format = gcscaudio_set_format, 186 1.1 jmcneill .round_blocksize = gcscaudio_round_blocksize, 187 1.1 jmcneill .commit_settings = NULL, 188 1.1 jmcneill .init_output = NULL, 189 1.1 jmcneill .init_input = NULL, 190 1.1 jmcneill .start_output = NULL, 191 1.1 jmcneill .start_input = NULL, 192 1.1 jmcneill .halt_output = gcscaudio_halt_output, 193 1.1 jmcneill .halt_input = gcscaudio_halt_input, 194 1.1 jmcneill .speaker_ctl = NULL, 195 1.1 jmcneill .getdev = gcscaudio_getdev, 196 1.1 jmcneill .set_port = gcscaudio_set_port, 197 1.1 jmcneill .get_port = gcscaudio_get_port, 198 1.1 jmcneill .query_devinfo = gcscaudio_query_devinfo, 199 1.1 jmcneill .allocm = gcscaudio_malloc, 200 1.1 jmcneill .freem = gcscaudio_free, 201 1.1 jmcneill .round_buffersize = gcscaudio_round_buffersize, 202 1.1 jmcneill .get_props = gcscaudio_get_props, 203 1.1 jmcneill .trigger_output = gcscaudio_trigger_output, 204 1.1 jmcneill .trigger_input = gcscaudio_trigger_input, 205 1.1 jmcneill .dev_ioctl = NULL, 206 1.8 jmcneill .get_locks = gcscaudio_get_locks, 207 1.1 jmcneill }; 208 1.1 jmcneill 209 1.17 isaki #define GCSCAUDIO_FORMAT(aumode, ch, chmask) \ 210 1.17 isaki { \ 211 1.17 isaki .mode = (aumode), \ 212 1.17 isaki .encoding = AUDIO_ENCODING_SLINEAR_LE, \ 213 1.17 isaki .validbits = 16, \ 214 1.17 isaki .precision = 16, \ 215 1.17 isaki .channels = (ch), \ 216 1.17 isaki .channel_mask = (chmask), \ 217 1.17 isaki .frequency_type = 0, \ 218 1.17 isaki .frequency = { 8000, 48000 }, \ 219 1.17 isaki } 220 1.17 isaki static const struct audio_format gcscaudio_formats_2ch = 221 1.17 isaki GCSCAUDIO_FORMAT(AUMODE_PLAY | AUMODE_RECORD, 2, AUFMT_STEREO); 222 1.1 jmcneill 223 1.17 isaki static const struct audio_format gcscaudio_formats_4ch = 224 1.17 isaki GCSCAUDIO_FORMAT(AUMODE_PLAY , 4, AUFMT_SURROUND4); 225 1.1 jmcneill 226 1.17 isaki static const struct audio_format gcscaudio_formats_6ch = 227 1.17 isaki GCSCAUDIO_FORMAT(AUMODE_PLAY , 6, AUFMT_DOLBY_5_1); 228 1.1 jmcneill 229 1.1 jmcneill static int 230 1.2 cegger gcscaudio_match(device_t parent, cfdata_t match, void *aux) 231 1.1 jmcneill { 232 1.1 jmcneill struct pci_attach_args *pa; 233 1.1 jmcneill 234 1.1 jmcneill pa = (struct pci_attach_args *)aux; 235 1.1 jmcneill if ((PCI_VENDOR(pa->pa_id) == PCI_VENDOR_AMD) && 236 1.1 jmcneill (PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_AMD_CS5536_AUDIO)) 237 1.1 jmcneill return 1; 238 1.1 jmcneill 239 1.1 jmcneill return 0; 240 1.1 jmcneill } 241 1.1 jmcneill 242 1.1 jmcneill static int 243 1.1 jmcneill gcscaudio_append_formats(struct gcscaudio_softc *sc, 244 1.1 jmcneill const struct audio_format *format) 245 1.1 jmcneill { 246 1.1 jmcneill if (sc->sc_nformats >= GCSCAUDIO_MAXFORMATS) { 247 1.12 nonaka aprint_error_dev(sc->sc_dev, "too many formats\n"); 248 1.1 jmcneill return EINVAL; 249 1.1 jmcneill } 250 1.1 jmcneill sc->sc_formats[sc->sc_nformats++] = *format; 251 1.1 jmcneill return 0; 252 1.1 jmcneill } 253 1.1 jmcneill 254 1.1 jmcneill static void 255 1.1 jmcneill gcscaudio_attach(device_t parent, device_t self, void *aux) 256 1.1 jmcneill { 257 1.1 jmcneill struct gcscaudio_softc *sc; 258 1.1 jmcneill struct pci_attach_args *pa; 259 1.1 jmcneill const char *intrstr; 260 1.1 jmcneill pci_intr_handle_t ih; 261 1.1 jmcneill int rc, i; 262 1.14 christos char intrbuf[PCI_INTRSTR_LEN]; 263 1.1 jmcneill 264 1.1 jmcneill sc = device_private(self); 265 1.1 jmcneill 266 1.12 nonaka sc->sc_dev = self; 267 1.12 nonaka 268 1.1 jmcneill aprint_naive(": Audio controller\n"); 269 1.1 jmcneill 270 1.1 jmcneill pa = aux; 271 1.1 jmcneill sc->sc_pc = pa->pa_pc; 272 1.1 jmcneill sc->sc_pt = pa->pa_tag; 273 1.1 jmcneill sc->sc_dmat = pa->pa_dmat; 274 1.1 jmcneill LIST_INIT(&sc->sc_dmalist); 275 1.1 jmcneill sc->sc_mch_split_buf = NULL; 276 1.8 jmcneill mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_NONE); 277 1.9 mrg mutex_init(&sc->sc_intr_lock, MUTEX_DEFAULT, IPL_AUDIO); 278 1.1 jmcneill 279 1.1 jmcneill aprint_normal(": AMD Geode CS5536 Audio\n"); 280 1.1 jmcneill 281 1.1 jmcneill if (pci_mapreg_map(pa, PCI_MAPREG_START, PCI_MAPREG_TYPE_IO, 0, 282 1.1 jmcneill &sc->sc_iot, &sc->sc_ioh, NULL, &sc->sc_ios)) { 283 1.12 nonaka aprint_error_dev(sc->sc_dev, "can't map i/o space\n"); 284 1.1 jmcneill return; 285 1.1 jmcneill } 286 1.1 jmcneill 287 1.1 jmcneill if (pci_intr_map(pa, &ih)) { 288 1.12 nonaka aprint_error_dev(sc->sc_dev, "couldn't map interrupt\n"); 289 1.1 jmcneill goto attach_failure_unmap; 290 1.1 jmcneill } 291 1.14 christos intrstr = pci_intr_string(sc->sc_pc, ih, intrbuf, sizeof(intrbuf)); 292 1.1 jmcneill 293 1.16 jdolecek sc->sc_ih = pci_intr_establish_xname(sc->sc_pc, ih, IPL_AUDIO, 294 1.16 jdolecek gcscaudio_intr, sc, device_xname(self)); 295 1.1 jmcneill if (sc->sc_ih == NULL) { 296 1.12 nonaka aprint_error_dev(sc->sc_dev, "couldn't establish interrupt"); 297 1.1 jmcneill if (intrstr != NULL) 298 1.3 njoly aprint_error(" at %s", intrstr); 299 1.3 njoly aprint_error("\n"); 300 1.1 jmcneill goto attach_failure_unmap; 301 1.1 jmcneill } 302 1.1 jmcneill 303 1.12 nonaka aprint_normal_dev(sc->sc_dev, "interrupting at %s\n", intrstr); 304 1.1 jmcneill 305 1.1 jmcneill 306 1.1 jmcneill if (gcscaudio_allocate_dma(sc, sizeof(*sc->sc_prd.p_prdtables), 307 1.1 jmcneill (void **)&(sc->sc_prd.p_prdtables), sc->sc_prd.p_prdsegs, 1, 308 1.8 jmcneill &(sc->sc_prd.p_prdnseg), &(sc->sc_prd.p_prdmap)) != 0) 309 1.1 jmcneill goto attach_failure_intr; 310 1.1 jmcneill 311 1.1 jmcneill sc->host_if.arg = sc; 312 1.1 jmcneill sc->host_if.attach = gcscaudio_attach_codec; 313 1.1 jmcneill sc->host_if.read = gcscaudio_read_codec; 314 1.1 jmcneill sc->host_if.write = gcscaudio_write_codec; 315 1.1 jmcneill sc->host_if.reset = gcscaudio_reset_codec; 316 1.1 jmcneill sc->host_if.spdif_event = gcscaudio_spdif_event_codec; 317 1.1 jmcneill 318 1.8 jmcneill if ((rc = ac97_attach(&sc->host_if, self, &sc->sc_lock)) != 0) { 319 1.12 nonaka aprint_error_dev(sc->sc_dev, 320 1.1 jmcneill "can't attach codec (error=%d)\n", rc); 321 1.1 jmcneill goto attach_failure_intr; 322 1.1 jmcneill } 323 1.1 jmcneill 324 1.1 jmcneill if (!pmf_device_register(self, NULL, gcscaudio_resume)) 325 1.1 jmcneill aprint_error_dev(self, "couldn't establish power handler\n"); 326 1.1 jmcneill 327 1.1 jmcneill 328 1.1 jmcneill sc->sc_nformats = 0; 329 1.1 jmcneill gcscaudio_append_formats(sc, &gcscaudio_formats_2ch); 330 1.10 jmcneill 331 1.10 jmcneill mutex_enter(&sc->sc_lock); 332 1.1 jmcneill if (AC97_IS_4CH(sc->codec_if)) 333 1.1 jmcneill gcscaudio_append_formats(sc, &gcscaudio_formats_4ch); 334 1.1 jmcneill if (AC97_IS_6CH(sc->codec_if)) 335 1.1 jmcneill gcscaudio_append_formats(sc, &gcscaudio_formats_6ch); 336 1.1 jmcneill if (AC97_IS_FIXED_RATE(sc->codec_if)) { 337 1.1 jmcneill for (i = 0; i < sc->sc_nformats; i++) { 338 1.1 jmcneill sc->sc_formats[i].frequency_type = 1; 339 1.1 jmcneill sc->sc_formats[i].frequency[0] = 48000; 340 1.1 jmcneill } 341 1.1 jmcneill } 342 1.10 jmcneill mutex_exit(&sc->sc_lock); 343 1.1 jmcneill 344 1.12 nonaka audio_attach_mi(&gcscaudio_hw_if, sc, sc->sc_dev); 345 1.1 jmcneill return; 346 1.1 jmcneill 347 1.1 jmcneill attach_failure_intr: 348 1.1 jmcneill pci_intr_disestablish(sc->sc_pc, sc->sc_ih); 349 1.1 jmcneill attach_failure_unmap: 350 1.1 jmcneill bus_space_unmap(sc->sc_iot, sc->sc_ioh, sc->sc_ios); 351 1.1 jmcneill return; 352 1.1 jmcneill } 353 1.1 jmcneill 354 1.1 jmcneill static int 355 1.1 jmcneill gcscaudio_attach_codec(void *arg, struct ac97_codec_if *codec_if) 356 1.1 jmcneill { 357 1.1 jmcneill struct gcscaudio_softc *sc; 358 1.1 jmcneill 359 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 360 1.1 jmcneill sc->codec_if = codec_if; 361 1.1 jmcneill return 0; 362 1.1 jmcneill } 363 1.1 jmcneill 364 1.1 jmcneill static int 365 1.1 jmcneill gcscaudio_reset_codec(void *arg) 366 1.1 jmcneill { 367 1.1 jmcneill struct gcscaudio_softc *sc; 368 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 369 1.1 jmcneill 370 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_CODEC_CNTL, 371 1.1 jmcneill ACC_CODEC_CNTL_LNK_WRM_RST | 372 1.1 jmcneill ACC_CODEC_CNTL_CMD_NEW); 373 1.1 jmcneill 374 1.1 jmcneill if (gcscaudio_wait_ready_codec(sc, "reset timeout\n")) 375 1.1 jmcneill return 1; 376 1.1 jmcneill 377 1.1 jmcneill return 0; 378 1.1 jmcneill } 379 1.1 jmcneill 380 1.1 jmcneill static void 381 1.1 jmcneill gcscaudio_spdif_event_codec(void *arg, bool flag) 382 1.1 jmcneill { 383 1.1 jmcneill struct gcscaudio_softc *sc; 384 1.1 jmcneill 385 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 386 1.1 jmcneill sc->sc_spdif = flag; 387 1.1 jmcneill } 388 1.1 jmcneill 389 1.1 jmcneill static int 390 1.1 jmcneill gcscaudio_wait_ready_codec(struct gcscaudio_softc *sc, const char *timeout_msg) 391 1.1 jmcneill { 392 1.1 jmcneill int i; 393 1.1 jmcneill 394 1.1 jmcneill #define GCSCAUDIO_WAIT_READY_CODEC_TIMEOUT 500 395 1.1 jmcneill for (i = GCSCAUDIO_WAIT_READY_CODEC_TIMEOUT; (i >= 0) && 396 1.1 jmcneill (bus_space_read_4(sc->sc_iot, sc->sc_ioh, ACC_CODEC_CNTL) & 397 1.1 jmcneill ACC_CODEC_CNTL_CMD_NEW); i--) 398 1.1 jmcneill delay(1); 399 1.1 jmcneill 400 1.1 jmcneill if (i < 0) { 401 1.12 nonaka aprint_error_dev(sc->sc_dev, "%s", timeout_msg); 402 1.1 jmcneill return 1; 403 1.1 jmcneill } 404 1.1 jmcneill 405 1.1 jmcneill return 0; 406 1.1 jmcneill } 407 1.1 jmcneill 408 1.1 jmcneill static int 409 1.1 jmcneill gcscaudio_write_codec(void *arg, uint8_t reg, uint16_t val) 410 1.1 jmcneill { 411 1.1 jmcneill struct gcscaudio_softc *sc; 412 1.1 jmcneill 413 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 414 1.1 jmcneill 415 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_CODEC_CNTL, 416 1.1 jmcneill ACC_CODEC_CNTL_WRITE_CMD | 417 1.1 jmcneill ACC_CODEC_CNTL_CMD_NEW | 418 1.1 jmcneill ACC_CODEC_REG2ADDR(reg) | 419 1.1 jmcneill (val & ACC_CODEC_CNTL_CMD_DATA_MASK)); 420 1.1 jmcneill 421 1.1 jmcneill if (gcscaudio_wait_ready_codec(sc, "codec write timeout\n")) 422 1.1 jmcneill return 1; 423 1.1 jmcneill 424 1.1 jmcneill #ifdef GCSCAUDIO_CODEC_DEBUG 425 1.12 nonaka aprint_error_dev(sc->sc_dev, "codec write: reg=0x%02x, val=0x%04x\n", 426 1.1 jmcneill reg, val); 427 1.1 jmcneill #endif 428 1.1 jmcneill 429 1.1 jmcneill return 0; 430 1.1 jmcneill } 431 1.1 jmcneill 432 1.1 jmcneill static int 433 1.1 jmcneill gcscaudio_read_codec(void *arg, uint8_t reg, uint16_t *val) 434 1.1 jmcneill { 435 1.1 jmcneill struct gcscaudio_softc *sc; 436 1.1 jmcneill uint32_t v; 437 1.1 jmcneill int i; 438 1.1 jmcneill 439 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 440 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_CODEC_CNTL, 441 1.1 jmcneill ACC_CODEC_CNTL_READ_CMD | ACC_CODEC_CNTL_CMD_NEW | 442 1.1 jmcneill ACC_CODEC_REG2ADDR(reg)); 443 1.1 jmcneill 444 1.1 jmcneill if (gcscaudio_wait_ready_codec(sc, "codec write timeout for reading")) 445 1.1 jmcneill return 1; 446 1.1 jmcneill 447 1.1 jmcneill #define GCSCAUDIO_READ_CODEC_TIMEOUT 50 448 1.1 jmcneill for (i = GCSCAUDIO_READ_CODEC_TIMEOUT; i >= 0; i--) { 449 1.1 jmcneill v = bus_space_read_4(sc->sc_iot, sc->sc_ioh, ACC_CODEC_STATUS); 450 1.1 jmcneill if ((v & ACC_CODEC_STATUS_STS_NEW) && 451 1.1 jmcneill (ACC_CODEC_ADDR2REG(v) == reg)) 452 1.1 jmcneill break; 453 1.1 jmcneill 454 1.1 jmcneill delay(10); 455 1.1 jmcneill } 456 1.1 jmcneill 457 1.1 jmcneill if (i < 0) { 458 1.12 nonaka aprint_error_dev(sc->sc_dev, "codec read timeout\n"); 459 1.1 jmcneill return 1; 460 1.1 jmcneill } 461 1.1 jmcneill 462 1.1 jmcneill #ifdef GCSCAUDIO_CODEC_DEBUG 463 1.12 nonaka aprint_error_dev(sc->sc_dev, "codec read: reg=0x%02x, val=0x%04x\n", 464 1.1 jmcneill reg, v & ACC_CODEC_STATUS_STS_DATA_MASK); 465 1.1 jmcneill #endif 466 1.1 jmcneill 467 1.1 jmcneill *val = v; 468 1.1 jmcneill return 0; 469 1.1 jmcneill } 470 1.1 jmcneill 471 1.1 jmcneill static int 472 1.1 jmcneill gcscaudio_open(void *arg, int flags) 473 1.1 jmcneill { 474 1.1 jmcneill struct gcscaudio_softc *sc; 475 1.1 jmcneill 476 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 477 1.1 jmcneill sc->codec_if->vtbl->lock(sc->codec_if); 478 1.1 jmcneill return 0; 479 1.1 jmcneill } 480 1.1 jmcneill 481 1.1 jmcneill static void 482 1.1 jmcneill gcscaudio_close(void *arg) 483 1.1 jmcneill { 484 1.1 jmcneill struct gcscaudio_softc *sc; 485 1.1 jmcneill 486 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 487 1.1 jmcneill sc->codec_if->vtbl->unlock(sc->codec_if); 488 1.1 jmcneill } 489 1.1 jmcneill 490 1.1 jmcneill static int 491 1.17 isaki gcscaudio_query_format(void *arg, audio_format_query_t *afp) 492 1.1 jmcneill { 493 1.1 jmcneill struct gcscaudio_softc *sc; 494 1.1 jmcneill 495 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 496 1.17 isaki return audio_query_format(sc->sc_formats, sc->sc_nformats, afp); 497 1.1 jmcneill } 498 1.1 jmcneill 499 1.1 jmcneill static int 500 1.17 isaki gcscaudio_set_format(void *arg, int setmode, 501 1.17 isaki const audio_params_t *play, const audio_params_t *rec, 502 1.17 isaki audio_filter_reg_t *pfil, audio_filter_reg_t *rfil) 503 1.1 jmcneill { 504 1.17 isaki struct gcscaudio_softc *sc; 505 1.17 isaki int rate; 506 1.17 isaki int error; 507 1.1 jmcneill 508 1.17 isaki sc = (struct gcscaudio_softc *)arg; 509 1.1 jmcneill 510 1.17 isaki if (setmode & AUMODE_PLAY) { 511 1.1 jmcneill if (!AC97_IS_FIXED_RATE(sc->codec_if)) { 512 1.13 ryo /* setup rate of DAC */ 513 1.17 isaki rate = play->sample_rate; 514 1.1 jmcneill if ((error = sc->codec_if->vtbl->set_rate(sc->codec_if, 515 1.17 isaki AC97_REG_PCM_FRONT_DAC_RATE, &rate)) != 0) 516 1.1 jmcneill return error; 517 1.1 jmcneill 518 1.1 jmcneill /* additional rate of DAC for Surround */ 519 1.17 isaki rate = play->sample_rate; 520 1.17 isaki if ((play->channels >= 4) && 521 1.1 jmcneill (error = sc->codec_if->vtbl->set_rate(sc->codec_if, 522 1.17 isaki AC97_REG_PCM_SURR_DAC_RATE, &rate)) != 0) 523 1.1 jmcneill return error; 524 1.1 jmcneill 525 1.1 jmcneill /* additional rate of DAC for LowFrequencyEffect */ 526 1.17 isaki rate = play->sample_rate; 527 1.17 isaki if ((play->channels == 6) && 528 1.1 jmcneill (error = sc->codec_if->vtbl->set_rate(sc->codec_if, 529 1.17 isaki AC97_REG_PCM_LFE_DAC_RATE, &rate)) != 0) 530 1.1 jmcneill return error; 531 1.1 jmcneill } 532 1.17 isaki sc->sc_play.ch_params = *rec; 533 1.1 jmcneill } 534 1.17 isaki if (setmode & AUMODE_RECORD) { 535 1.1 jmcneill if (!AC97_IS_FIXED_RATE(sc->codec_if)) { 536 1.13 ryo /* setup rate of ADC */ 537 1.17 isaki rate = rec->sample_rate; 538 1.1 jmcneill if ((error = sc->codec_if->vtbl->set_rate(sc->codec_if, 539 1.17 isaki AC97_REG_PCM_LR_ADC_RATE, &rate)) != 0) 540 1.1 jmcneill return error; 541 1.1 jmcneill } 542 1.17 isaki sc->sc_rec.ch_params = *rec; 543 1.1 jmcneill } 544 1.1 jmcneill 545 1.1 jmcneill return 0; 546 1.1 jmcneill } 547 1.1 jmcneill 548 1.1 jmcneill static int 549 1.1 jmcneill gcscaudio_round_blocksize(void *arg, int blk, int mode, 550 1.1 jmcneill const audio_params_t *param) 551 1.1 jmcneill { 552 1.19 isaki 553 1.1 jmcneill if (blk > GCSCAUDIO_PRD_SIZE_MAX) 554 1.1 jmcneill blk = GCSCAUDIO_PRD_SIZE_MAX; 555 1.19 isaki blk = rounddown(blk, param->channels * param->precision / NBBY); 556 1.1 jmcneill 557 1.1 jmcneill return blk; 558 1.1 jmcneill } 559 1.1 jmcneill 560 1.1 jmcneill static int 561 1.1 jmcneill gcscaudio_halt_output(void *arg) 562 1.1 jmcneill { 563 1.1 jmcneill struct gcscaudio_softc *sc; 564 1.1 jmcneill 565 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 566 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM0_CMD, 567 1.1 jmcneill ACC_BMx_CMD_BM_CTL_DISABLE); 568 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM4_CMD, 569 1.1 jmcneill ACC_BMx_CMD_BM_CTL_DISABLE); 570 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM6_CMD, 571 1.1 jmcneill ACC_BMx_CMD_BM_CTL_DISABLE); 572 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM7_CMD, 573 1.1 jmcneill ACC_BMx_CMD_BM_CTL_DISABLE); 574 1.1 jmcneill sc->sc_play.ch_intr = NULL; 575 1.1 jmcneill 576 1.1 jmcneill /* channel splitter */ 577 1.1 jmcneill sc->sc_mch_splitter = NULL; 578 1.1 jmcneill if (sc->sc_mch_split_buf) 579 1.8 jmcneill gcscaudio_free(sc, sc->sc_mch_split_buf, sc->sc_mch_split_size); 580 1.1 jmcneill sc->sc_mch_split_buf = NULL; 581 1.1 jmcneill 582 1.1 jmcneill return 0; 583 1.1 jmcneill } 584 1.1 jmcneill 585 1.1 jmcneill static int 586 1.1 jmcneill gcscaudio_halt_input(void *arg) 587 1.1 jmcneill { 588 1.1 jmcneill struct gcscaudio_softc *sc; 589 1.1 jmcneill 590 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 591 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM1_CMD, 592 1.1 jmcneill ACC_BMx_CMD_BM_CTL_DISABLE); 593 1.1 jmcneill sc->sc_rec.ch_intr = NULL; 594 1.1 jmcneill return 0; 595 1.1 jmcneill } 596 1.1 jmcneill 597 1.1 jmcneill static int 598 1.1 jmcneill gcscaudio_getdev(void *addr, struct audio_device *retp) 599 1.1 jmcneill { 600 1.1 jmcneill *retp = gcscaudio_device; 601 1.1 jmcneill return 0; 602 1.1 jmcneill } 603 1.1 jmcneill 604 1.1 jmcneill static int 605 1.1 jmcneill gcscaudio_set_port(void *addr, mixer_ctrl_t *cp) 606 1.1 jmcneill { 607 1.1 jmcneill struct gcscaudio_softc *sc; 608 1.1 jmcneill 609 1.1 jmcneill sc = addr; 610 1.1 jmcneill return sc->codec_if->vtbl->mixer_set_port(sc->codec_if, cp); 611 1.1 jmcneill } 612 1.1 jmcneill 613 1.1 jmcneill static int 614 1.1 jmcneill gcscaudio_get_port(void *addr, mixer_ctrl_t *cp) 615 1.1 jmcneill { 616 1.1 jmcneill struct gcscaudio_softc *sc; 617 1.1 jmcneill 618 1.1 jmcneill sc = addr; 619 1.1 jmcneill return sc->codec_if->vtbl->mixer_get_port(sc->codec_if, cp); 620 1.1 jmcneill } 621 1.1 jmcneill 622 1.1 jmcneill static int 623 1.1 jmcneill gcscaudio_query_devinfo(void *addr, mixer_devinfo_t *dip) 624 1.1 jmcneill { 625 1.1 jmcneill struct gcscaudio_softc *sc; 626 1.1 jmcneill 627 1.1 jmcneill sc = addr; 628 1.1 jmcneill return sc->codec_if->vtbl->query_devinfo(sc->codec_if, dip); 629 1.1 jmcneill } 630 1.1 jmcneill 631 1.1 jmcneill static void * 632 1.8 jmcneill gcscaudio_malloc(void *arg, int direction, size_t size) 633 1.1 jmcneill { 634 1.1 jmcneill struct gcscaudio_softc *sc; 635 1.1 jmcneill struct gcscaudio_dma *p; 636 1.1 jmcneill int error; 637 1.1 jmcneill 638 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 639 1.1 jmcneill 640 1.8 jmcneill p = kmem_alloc(sizeof(*p), KM_SLEEP); 641 1.1 jmcneill p->size = size; 642 1.1 jmcneill 643 1.1 jmcneill error = gcscaudio_allocate_dma(sc, size, &p->addr, 644 1.8 jmcneill p->segs, sizeof(p->segs)/sizeof(p->segs[0]), &p->nseg, &p->map); 645 1.1 jmcneill if (error) { 646 1.8 jmcneill kmem_free(p, sizeof(*p)); 647 1.1 jmcneill return NULL; 648 1.1 jmcneill } 649 1.1 jmcneill 650 1.1 jmcneill LIST_INSERT_HEAD(&sc->sc_dmalist, p, list); 651 1.1 jmcneill return p->addr; 652 1.1 jmcneill } 653 1.1 jmcneill 654 1.1 jmcneill static void 655 1.8 jmcneill gcscaudio_free(void *arg, void *ptr, size_t size) 656 1.1 jmcneill { 657 1.1 jmcneill struct gcscaudio_softc *sc; 658 1.1 jmcneill struct gcscaudio_dma *p; 659 1.1 jmcneill 660 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 661 1.1 jmcneill 662 1.1 jmcneill LIST_FOREACH(p, &sc->sc_dmalist, list) { 663 1.1 jmcneill if (p->addr == ptr) { 664 1.1 jmcneill bus_dmamap_unload(sc->sc_dmat, p->map); 665 1.1 jmcneill bus_dmamap_destroy(sc->sc_dmat, p->map); 666 1.1 jmcneill bus_dmamem_unmap(sc->sc_dmat, p->addr, p->size); 667 1.1 jmcneill bus_dmamem_free(sc->sc_dmat, p->segs, p->nseg); 668 1.1 jmcneill 669 1.1 jmcneill LIST_REMOVE(p, list); 670 1.8 jmcneill kmem_free(p, sizeof(*p)); 671 1.1 jmcneill break; 672 1.1 jmcneill } 673 1.1 jmcneill } 674 1.1 jmcneill } 675 1.1 jmcneill 676 1.1 jmcneill static size_t 677 1.1 jmcneill gcscaudio_round_buffersize(void *addr, int direction, size_t size) 678 1.1 jmcneill { 679 1.1 jmcneill if (size > GCSCAUDIO_BUFSIZE_MAX) 680 1.1 jmcneill size = GCSCAUDIO_BUFSIZE_MAX; 681 1.1 jmcneill 682 1.1 jmcneill return size; 683 1.1 jmcneill } 684 1.1 jmcneill 685 1.1 jmcneill static int 686 1.1 jmcneill gcscaudio_get_props(void *addr) 687 1.1 jmcneill { 688 1.1 jmcneill 689 1.18 isaki return AUDIO_PROP_PLAYBACK | AUDIO_PROP_CAPTURE | 690 1.18 isaki AUDIO_PROP_INDEPENDENT | AUDIO_PROP_FULLDUPLEX; 691 1.1 jmcneill } 692 1.1 jmcneill 693 1.1 jmcneill static int 694 1.1 jmcneill build_prdtables(struct gcscaudio_softc *sc, int prdidx, 695 1.1 jmcneill void *addr, size_t size, int blksize, int blklen, int blkoff) 696 1.1 jmcneill { 697 1.1 jmcneill struct gcscaudio_dma *p; 698 1.1 jmcneill struct acc_prd *prdp; 699 1.1 jmcneill bus_addr_t paddr; 700 1.1 jmcneill int i; 701 1.1 jmcneill 702 1.1 jmcneill /* get physical address of start */ 703 1.1 jmcneill paddr = (bus_addr_t)0; 704 1.1 jmcneill LIST_FOREACH(p, &sc->sc_dmalist, list) { 705 1.1 jmcneill if (p->addr == addr) { 706 1.1 jmcneill paddr = p->map->dm_segs[0].ds_addr; 707 1.1 jmcneill break; 708 1.1 jmcneill } 709 1.1 jmcneill } 710 1.1 jmcneill if (!paddr) { 711 1.12 nonaka aprint_error_dev(sc->sc_dev, "bad addr %p\n", addr); 712 1.1 jmcneill return EINVAL; 713 1.1 jmcneill } 714 1.1 jmcneill 715 1.1 jmcneill #define PRDADDR(prdidx,idx) \ 716 1.1 jmcneill (sc->sc_prd.p_prdmap->dm_segs[0].ds_addr) + sizeof(struct acc_prd) * \ 717 1.1 jmcneill (((prdidx) * GCSCAUDIO_NPRDTABLE) + (idx)) 718 1.1 jmcneill 719 1.1 jmcneill /* 720 1.1 jmcneill * build PRD table 721 1.1 jmcneill * prdtbl[] = <PRD0>, <PRD1>, <PRD2>, ..., <PRDn>, <jmp to PRD0> 722 1.1 jmcneill */ 723 1.1 jmcneill prdp = sc->sc_prd.p_prdtables->prdtbl[prdidx]; 724 1.1 jmcneill for (i = 0; size > 0; size -= blksize, i++) { 725 1.1 jmcneill prdp[i].address = paddr + blksize * i + blkoff; 726 1.1 jmcneill prdp[i].ctrlsize = 727 1.1 jmcneill (size < blklen ? size : blklen) | ACC_BMx_PRD_CTRL_EOP; 728 1.1 jmcneill } 729 1.1 jmcneill prdp[i].address = PRDADDR(prdidx, 0); 730 1.1 jmcneill prdp[i].ctrlsize = ACC_BMx_PRD_CTRL_JMP; 731 1.1 jmcneill 732 1.1 jmcneill bus_dmamap_sync(sc->sc_dmat, sc->sc_prd.p_prdmap, 0, 733 1.1 jmcneill sizeof(struct acc_prd) * i, BUS_DMASYNC_PREWRITE); 734 1.1 jmcneill 735 1.1 jmcneill return 0; 736 1.1 jmcneill } 737 1.1 jmcneill 738 1.1 jmcneill static void 739 1.1 jmcneill split_buffer_4ch(void *dst, void *src, int size, int blksize) 740 1.1 jmcneill { 741 1.1 jmcneill int left, i; 742 1.1 jmcneill uint16_t *s, *d; 743 1.1 jmcneill 744 1.1 jmcneill /* 745 1.1 jmcneill * src[blk0]: L,R,SL,SR,L,R,SL,SR,L,R,SL,SR,.... 746 1.1 jmcneill * src[blk1]: L,R,SL,SR,L,R,SL,SR,L,R,SL,SR,.... 747 1.1 jmcneill * src[blk2]: L,R,SL,SR,L,R,SL,SR,L,R,SL,SR,.... 748 1.1 jmcneill * : 749 1.1 jmcneill * 750 1.1 jmcneill * rearrange to 751 1.1 jmcneill * 752 1.1 jmcneill * src[blk0]: L,R,L,R,L,R,L,R,.. 753 1.1 jmcneill * src[blk1]: L,R,L,R,L,R,L,R,.. 754 1.1 jmcneill * src[blk2]: L,R,L,R,L,R,L,R,.. 755 1.1 jmcneill * : 756 1.1 jmcneill * dst[blk0]: SL,SR,SL,SR,SL,SR,SL,SR,.. 757 1.1 jmcneill * dst[blk1]: SL,SR,SL,SR,SL,SR,SL,SR,.. 758 1.1 jmcneill * dst[blk2]: SL,SR,SL,SR,SL,SR,SL,SR,.. 759 1.1 jmcneill * : 760 1.1 jmcneill */ 761 1.1 jmcneill for (left = size; left > 0; left -= blksize) { 762 1.1 jmcneill s = (uint16_t *)src; 763 1.1 jmcneill d = (uint16_t *)dst; 764 1.1 jmcneill for (i = 0; i < blksize / sizeof(uint16_t) / 4; i++) { 765 1.1 jmcneill /* L,R,SL,SR -> SL,SR */ 766 1.1 jmcneill s++; 767 1.1 jmcneill s++; 768 1.1 jmcneill *d++ = *s++; 769 1.1 jmcneill *d++ = *s++; 770 1.1 jmcneill } 771 1.1 jmcneill 772 1.1 jmcneill s = (uint16_t *)src; 773 1.1 jmcneill d = (uint16_t *)src; 774 1.1 jmcneill for (i = 0; i < blksize / sizeof(uint16_t) / 2 / 2; i++) { 775 1.1 jmcneill /* L,R,SL,SR -> L,R */ 776 1.1 jmcneill *d++ = *s++; 777 1.1 jmcneill *d++ = *s++; 778 1.1 jmcneill s++; 779 1.1 jmcneill s++; 780 1.1 jmcneill } 781 1.1 jmcneill 782 1.1 jmcneill src = (char *)src + blksize; 783 1.1 jmcneill dst = (char *)dst + blksize; 784 1.1 jmcneill } 785 1.1 jmcneill } 786 1.1 jmcneill 787 1.1 jmcneill static void 788 1.1 jmcneill split_buffer_6ch(void *dst, void *src, int size, int blksize) 789 1.1 jmcneill { 790 1.1 jmcneill int left, i; 791 1.1 jmcneill uint16_t *s, *d, *dc, *dl; 792 1.1 jmcneill 793 1.1 jmcneill /* 794 1.1 jmcneill * by default, treat as WAV style 5.1ch order 795 1.1 jmcneill * 5.1ch(WAV): L R C LFE SL SR 796 1.1 jmcneill * 5.1ch(AAC): C L R SL SR LFE 797 1.1 jmcneill * : 798 1.1 jmcneill */ 799 1.1 jmcneill 800 1.1 jmcneill /* 801 1.1 jmcneill * src[blk0]: L,R,C,LFE,SL,SR,L,R,C,LFE,SL,SR,... 802 1.1 jmcneill * src[blk1]: L,R,C,LFE,SL,SR,L,R,C,LFE,SL,SR,... 803 1.1 jmcneill * src[blk2]: L,R,C,LFE,SL,SR,L,R,C,LFE,SL,SR,... 804 1.1 jmcneill * : 805 1.1 jmcneill * src[N-1] : L,R,C,LFE,SL,SR,L,R,C,LFE,SL,SR,... 806 1.1 jmcneill * 807 1.1 jmcneill * rearrange to 808 1.1 jmcneill * 809 1.1 jmcneill * src[blk0]: L,R,L,R,.. 810 1.1 jmcneill * src[blk1]: L,R,L,R,.. 811 1.1 jmcneill * src[blk2]: L,R,L,R,.. 812 1.1 jmcneill * : 813 1.1 jmcneill * 814 1.1 jmcneill * dst[blk0]: SL,SR,SL,SR,.. 815 1.1 jmcneill * dst[blk1]: SL,SR,SL,SR,.. 816 1.1 jmcneill * dst[blk2]: SL,SR,SL,SR,.. 817 1.1 jmcneill * : 818 1.1 jmcneill * 819 1.1 jmcneill * dst[N/2+0]: C,C,C,.. 820 1.1 jmcneill * dst[N/2+1]: C,C,C,.. 821 1.1 jmcneill * : 822 1.1 jmcneill * 823 1.1 jmcneill * dst[N/2+N/4+0]: LFE,LFE,LFE,.. 824 1.1 jmcneill * dst[N/2+N/4+1]: LFE,LFE,LFE,.. 825 1.1 jmcneill * : 826 1.1 jmcneill */ 827 1.1 jmcneill 828 1.1 jmcneill for (left = size; left > 0; left -= blksize) { 829 1.1 jmcneill s = (uint16_t *)src; 830 1.1 jmcneill d = (uint16_t *)dst; 831 1.1 jmcneill dc = (uint16_t *)((char *)dst + blksize / 2); 832 1.1 jmcneill dl = (uint16_t *)((char *)dst + blksize / 2 + blksize / 4); 833 1.1 jmcneill for (i = 0; i < blksize / sizeof(uint16_t) / 6; i++) { 834 1.1 jmcneill #ifdef GCSCAUDIO_5_1CH_AAC_ORDER 835 1.1 jmcneill /* 836 1.1 jmcneill * AAC: [C,L,R,SL,SR,LFE] 837 1.1 jmcneill * => [SL,SR] 838 1.1 jmcneill * => [C] 839 1.1 jmcneill * => [LFE] 840 1.1 jmcneill */ 841 1.1 jmcneill *dc++ = s[0]; /* C */ 842 1.1 jmcneill *dl++ = s[5]; /* LFE */ 843 1.1 jmcneill *d++ = s[3]; /* SL */ 844 1.1 jmcneill *d++ = s[4]; /* SR */ 845 1.1 jmcneill #else 846 1.1 jmcneill /* 847 1.1 jmcneill * WAV: [L,R,C,LFE,SL,SR] 848 1.1 jmcneill * => [SL,SR] 849 1.1 jmcneill * => [C] 850 1.1 jmcneill * => [LFE] 851 1.1 jmcneill */ 852 1.1 jmcneill *dc++ = s[2]; /* C */ 853 1.1 jmcneill *dl++ = s[3]; /* LFE */ 854 1.1 jmcneill *d++ = s[4]; /* SL */ 855 1.1 jmcneill *d++ = s[5]; /* SR */ 856 1.1 jmcneill #endif 857 1.1 jmcneill s += 6; 858 1.1 jmcneill } 859 1.1 jmcneill 860 1.1 jmcneill s = (uint16_t *)src; 861 1.1 jmcneill d = (uint16_t *)src; 862 1.1 jmcneill for (i = 0; i < blksize / sizeof(uint16_t) / 2 / 2; i++) { 863 1.1 jmcneill #ifdef GCSCAUDIO_5_1CH_AAC_ORDER 864 1.1 jmcneill /* AAC: [C,L,R,SL,SR,LFE] => [L,R] */ 865 1.1 jmcneill *d++ = s[1]; 866 1.1 jmcneill *d++ = s[2]; 867 1.1 jmcneill #else 868 1.1 jmcneill /* WAV: [L,R,C,LFE,SL,SR] => [L,R] */ 869 1.1 jmcneill *d++ = s[0]; 870 1.1 jmcneill *d++ = s[1]; 871 1.1 jmcneill #endif 872 1.1 jmcneill s += 6; 873 1.1 jmcneill } 874 1.1 jmcneill 875 1.1 jmcneill src = (char *)src + blksize; 876 1.1 jmcneill dst = (char *)dst + blksize; 877 1.1 jmcneill } 878 1.1 jmcneill } 879 1.1 jmcneill 880 1.1 jmcneill static void 881 1.1 jmcneill channel_splitter(struct gcscaudio_softc *sc) 882 1.1 jmcneill { 883 1.1 jmcneill int splitsize, left; 884 1.1 jmcneill void *src, *dst; 885 1.1 jmcneill 886 1.1 jmcneill if (sc->sc_mch_splitter == NULL) 887 1.1 jmcneill return; 888 1.1 jmcneill 889 1.1 jmcneill left = sc->sc_mch_split_size - sc->sc_mch_split_off; 890 1.1 jmcneill splitsize = sc->sc_mch_split_blksize; 891 1.1 jmcneill if (left < splitsize) 892 1.1 jmcneill splitsize = left; 893 1.1 jmcneill 894 1.1 jmcneill src = (char *)sc->sc_mch_split_start + sc->sc_mch_split_off; 895 1.1 jmcneill dst = (char *)sc->sc_mch_split_buf + sc->sc_mch_split_off; 896 1.1 jmcneill 897 1.1 jmcneill sc->sc_mch_splitter(dst, src, splitsize, sc->sc_mch_split_blksize); 898 1.1 jmcneill 899 1.1 jmcneill sc->sc_mch_split_off += sc->sc_mch_split_blksize; 900 1.1 jmcneill if (sc->sc_mch_split_off >= sc->sc_mch_split_size) 901 1.1 jmcneill sc->sc_mch_split_off = 0; 902 1.1 jmcneill } 903 1.1 jmcneill 904 1.1 jmcneill static int 905 1.1 jmcneill gcscaudio_trigger_output(void *addr, void *start, void *end, int blksize, 906 1.1 jmcneill void (*intr)(void *), void *arg, 907 1.1 jmcneill const audio_params_t *param) 908 1.1 jmcneill { 909 1.1 jmcneill struct gcscaudio_softc *sc; 910 1.1 jmcneill size_t size; 911 1.1 jmcneill 912 1.1 jmcneill sc = (struct gcscaudio_softc *)addr; 913 1.1 jmcneill sc->sc_play.ch_intr = intr; 914 1.1 jmcneill sc->sc_play.ch_intr_arg = arg; 915 1.1 jmcneill size = (char *)end - (char *)start; 916 1.1 jmcneill 917 1.1 jmcneill switch (sc->sc_play.ch_params.channels) { 918 1.1 jmcneill case 2: 919 1.1 jmcneill if (build_prdtables(sc, PRD_TABLE_FRONT, start, size, blksize, 920 1.1 jmcneill blksize, 0)) 921 1.1 jmcneill return EINVAL; 922 1.1 jmcneill 923 1.1 jmcneill if (!AC97_IS_4CH(sc->codec_if)) { 924 1.1 jmcneill /* 925 1.1 jmcneill * output 2ch PCM to FRONT.LR(BM0) 926 1.1 jmcneill * 927 1.1 jmcneill * 2ch: L,R,L,R,L,R,L,R,... => BM0: L,R,L,R,L,R,L,R,... 928 1.1 jmcneill * 929 1.1 jmcneill */ 930 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM0_PRD, 931 1.1 jmcneill PRDADDR(PRD_TABLE_FRONT, 0)); 932 1.1 jmcneill 933 1.1 jmcneill /* start DMA transfer */ 934 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM0_CMD, 935 1.1 jmcneill ACC_BMx_CMD_WRITE | 936 1.1 jmcneill ACC_BMx_CMD_BYTE_ORD_EL | 937 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 938 1.1 jmcneill } else { 939 1.1 jmcneill /* 940 1.1 jmcneill * output same PCM to FRONT.LR(BM0) and SURROUND.LR(BM6). 941 1.1 jmcneill * CENTER(BM4) and LFE(BM7) doesn't sound. 942 1.1 jmcneill * 943 1.1 jmcneill * 2ch: L,R,L,R,L,R,L,R,... => BM0: L,R,L,R,L,R,L,R,... 944 1.1 jmcneill * BM6: (same of BM0) 945 1.1 jmcneill * BM4: none 946 1.1 jmcneill * BM7: none 947 1.1 jmcneill */ 948 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM0_PRD, 949 1.1 jmcneill PRDADDR(PRD_TABLE_FRONT, 0)); 950 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM6_PRD, 951 1.1 jmcneill PRDADDR(PRD_TABLE_FRONT, 0)); 952 1.1 jmcneill 953 1.1 jmcneill /* start DMA transfer */ 954 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM0_CMD, 955 1.1 jmcneill ACC_BMx_CMD_WRITE | 956 1.1 jmcneill ACC_BMx_CMD_BYTE_ORD_EL | 957 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 958 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM6_CMD, 959 1.1 jmcneill ACC_BMx_CMD_WRITE | 960 1.1 jmcneill ACC_BMx_CMD_BYTE_ORD_EL | 961 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 962 1.1 jmcneill } 963 1.1 jmcneill break; 964 1.1 jmcneill case 4: 965 1.1 jmcneill /* 966 1.1 jmcneill * output 4ch PCM split to FRONT.LR(BM0) and SURROUND.LR(BM6). 967 1.1 jmcneill * CENTER(BM4) and LFE(BM7) doesn't sound. 968 1.1 jmcneill * 969 1.1 jmcneill * rearrange ordered channel to continuous per channel 970 1.1 jmcneill * 971 1.1 jmcneill * 4ch: L,R,SL,SR,L,R,SL,SR,... => BM0: L,R,L,R,... 972 1.1 jmcneill * BM6: SL,SR,SL,SR,... 973 1.1 jmcneill * BM4: none 974 1.1 jmcneill * BM7: none 975 1.1 jmcneill */ 976 1.1 jmcneill if (sc->sc_mch_split_buf) 977 1.8 jmcneill gcscaudio_free(sc, sc->sc_mch_split_buf, 978 1.8 jmcneill sc->sc_mch_split_size); 979 1.1 jmcneill 980 1.1 jmcneill if ((sc->sc_mch_split_buf = gcscaudio_malloc(sc, AUMODE_PLAY, 981 1.8 jmcneill size)) == NULL) 982 1.1 jmcneill return ENOMEM; 983 1.1 jmcneill 984 1.1 jmcneill /* 985 1.1 jmcneill * 1st and 2nd blocks are split immediately. 986 1.1 jmcneill * Other blocks will be split synchronous with intr. 987 1.1 jmcneill */ 988 1.1 jmcneill split_buffer_4ch(sc->sc_mch_split_buf, start, blksize * 2, 989 1.1 jmcneill blksize); 990 1.1 jmcneill 991 1.1 jmcneill sc->sc_mch_split_start = start; 992 1.1 jmcneill sc->sc_mch_split_size = size; 993 1.1 jmcneill sc->sc_mch_split_blksize = blksize; 994 1.1 jmcneill sc->sc_mch_split_off = (blksize * 2) % size; 995 1.1 jmcneill sc->sc_mch_splitter = split_buffer_4ch; /* split function */ 996 1.1 jmcneill 997 1.1 jmcneill if (build_prdtables(sc, PRD_TABLE_FRONT, start, size, blksize, 998 1.1 jmcneill blksize / 2, 0)) 999 1.1 jmcneill return EINVAL; 1000 1.1 jmcneill if (build_prdtables(sc, PRD_TABLE_SURR, sc->sc_mch_split_buf, 1001 1.1 jmcneill size, blksize, blksize / 2, 0)) 1002 1.1 jmcneill return EINVAL; 1003 1.1 jmcneill 1004 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM0_PRD, 1005 1.1 jmcneill PRDADDR(PRD_TABLE_FRONT, 0)); 1006 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM6_PRD, 1007 1.1 jmcneill PRDADDR(PRD_TABLE_SURR, 0)); 1008 1.1 jmcneill 1009 1.1 jmcneill /* start DMA transfer */ 1010 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM0_CMD, 1011 1.1 jmcneill ACC_BMx_CMD_WRITE | 1012 1.1 jmcneill ACC_BMx_CMD_BYTE_ORD_EL | 1013 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 1014 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM6_CMD, 1015 1.1 jmcneill ACC_BMx_CMD_WRITE | 1016 1.1 jmcneill ACC_BMx_CMD_BYTE_ORD_EL | 1017 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 1018 1.1 jmcneill break; 1019 1.1 jmcneill case 6: 1020 1.1 jmcneill /* 1021 1.1 jmcneill * output 6ch PCM split to 1022 1.1 jmcneill * FRONT.LR(BM0), SURROUND.LR(BM6), CENTER(BM4) and LFE(BM7) 1023 1.1 jmcneill * 1024 1.1 jmcneill * rearrange ordered channel to continuous per channel 1025 1.1 jmcneill * 1026 1.1 jmcneill * 5.1ch: L,R,C,LFE,SL,SR,... => BM0: L,R,... 1027 1.1 jmcneill * BM4: C,... 1028 1.1 jmcneill * BM6: SL,SR,... 1029 1.1 jmcneill * BM7: LFE,... 1030 1.1 jmcneill * 1031 1.1 jmcneill */ 1032 1.1 jmcneill if (sc->sc_mch_split_buf) 1033 1.8 jmcneill gcscaudio_free(sc, sc->sc_mch_split_buf, 1034 1.8 jmcneill sc->sc_mch_split_size); 1035 1.1 jmcneill 1036 1.1 jmcneill if ((sc->sc_mch_split_buf = gcscaudio_malloc(sc, AUMODE_PLAY, 1037 1.8 jmcneill size)) == NULL) 1038 1.1 jmcneill return ENOMEM; 1039 1.1 jmcneill 1040 1.1 jmcneill /* 1041 1.1 jmcneill * 1st and 2nd blocks are split immediately. 1042 1.1 jmcneill * Other block will be split synchronous with intr. 1043 1.1 jmcneill */ 1044 1.1 jmcneill split_buffer_6ch(sc->sc_mch_split_buf, start, blksize * 2, 1045 1.1 jmcneill blksize); 1046 1.1 jmcneill 1047 1.1 jmcneill sc->sc_mch_split_start = start; 1048 1.1 jmcneill sc->sc_mch_split_size = size; 1049 1.1 jmcneill sc->sc_mch_split_blksize = blksize; 1050 1.1 jmcneill sc->sc_mch_split_off = (blksize * 2) % size; 1051 1.1 jmcneill sc->sc_mch_splitter = split_buffer_6ch; /* split function */ 1052 1.1 jmcneill 1053 1.1 jmcneill if (build_prdtables(sc, PRD_TABLE_FRONT, start, size, blksize, 1054 1.1 jmcneill blksize / 3, 0)) 1055 1.1 jmcneill return EINVAL; 1056 1.1 jmcneill if (build_prdtables(sc, PRD_TABLE_CENTER, sc->sc_mch_split_buf, 1057 1.1 jmcneill size, blksize, blksize / 3, blksize / 2)) 1058 1.1 jmcneill return EINVAL; 1059 1.1 jmcneill if (build_prdtables(sc, PRD_TABLE_SURR, sc->sc_mch_split_buf, 1060 1.1 jmcneill size, blksize, blksize / 3, 0)) 1061 1.1 jmcneill return EINVAL; 1062 1.1 jmcneill if (build_prdtables(sc, PRD_TABLE_LFE, sc->sc_mch_split_buf, 1063 1.1 jmcneill size, blksize, blksize / 3, blksize / 2 + blksize / 4)) 1064 1.1 jmcneill return EINVAL; 1065 1.1 jmcneill 1066 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM0_PRD, 1067 1.1 jmcneill PRDADDR(PRD_TABLE_FRONT, 0)); 1068 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM4_PRD, 1069 1.1 jmcneill PRDADDR(PRD_TABLE_CENTER, 0)); 1070 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM6_PRD, 1071 1.1 jmcneill PRDADDR(PRD_TABLE_SURR, 0)); 1072 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM7_PRD, 1073 1.1 jmcneill PRDADDR(PRD_TABLE_LFE, 0)); 1074 1.1 jmcneill 1075 1.1 jmcneill /* start DMA transfer */ 1076 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM0_CMD, 1077 1.1 jmcneill ACC_BMx_CMD_WRITE | ACC_BMx_CMD_BYTE_ORD_EL | 1078 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 1079 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM4_CMD, 1080 1.1 jmcneill ACC_BMx_CMD_WRITE | ACC_BMx_CMD_BYTE_ORD_EL | 1081 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 1082 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM6_CMD, 1083 1.1 jmcneill ACC_BMx_CMD_WRITE | ACC_BMx_CMD_BYTE_ORD_EL | 1084 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 1085 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM7_CMD, 1086 1.1 jmcneill ACC_BMx_CMD_WRITE | ACC_BMx_CMD_BYTE_ORD_EL | 1087 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 1088 1.1 jmcneill break; 1089 1.1 jmcneill } 1090 1.1 jmcneill 1091 1.1 jmcneill return 0; 1092 1.1 jmcneill } 1093 1.1 jmcneill 1094 1.1 jmcneill static int 1095 1.1 jmcneill gcscaudio_trigger_input(void *addr, void *start, void *end, int blksize, 1096 1.1 jmcneill void (*intr)(void *), void *arg, 1097 1.1 jmcneill const audio_params_t *param) 1098 1.1 jmcneill { 1099 1.1 jmcneill struct gcscaudio_softc *sc; 1100 1.1 jmcneill size_t size; 1101 1.1 jmcneill 1102 1.1 jmcneill sc = (struct gcscaudio_softc *)addr; 1103 1.1 jmcneill sc->sc_rec.ch_intr = intr; 1104 1.1 jmcneill sc->sc_rec.ch_intr_arg = arg; 1105 1.1 jmcneill size = (char *)end - (char *)start; 1106 1.1 jmcneill 1107 1.1 jmcneill if (build_prdtables(sc, PRD_TABLE_REC, start, size, blksize, blksize, 0)) 1108 1.1 jmcneill return EINVAL; 1109 1.1 jmcneill 1110 1.1 jmcneill bus_space_write_4(sc->sc_iot, sc->sc_ioh, ACC_BM1_PRD, 1111 1.1 jmcneill PRDADDR(PRD_TABLE_REC, 0)); 1112 1.1 jmcneill 1113 1.1 jmcneill /* start transfer */ 1114 1.1 jmcneill bus_space_write_1(sc->sc_iot, sc->sc_ioh, ACC_BM1_CMD, 1115 1.1 jmcneill ACC_BMx_CMD_READ | 1116 1.1 jmcneill ACC_BMx_CMD_BYTE_ORD_EL | 1117 1.1 jmcneill ACC_BMx_CMD_BM_CTL_ENABLE); 1118 1.1 jmcneill 1119 1.1 jmcneill return 0; 1120 1.1 jmcneill } 1121 1.1 jmcneill 1122 1.8 jmcneill static void 1123 1.8 jmcneill gcscaudio_get_locks(void *arg, kmutex_t **intr, kmutex_t **thread) 1124 1.8 jmcneill { 1125 1.8 jmcneill struct gcscaudio_softc *sc; 1126 1.8 jmcneill 1127 1.8 jmcneill sc = (struct gcscaudio_softc *)arg; 1128 1.8 jmcneill 1129 1.8 jmcneill *intr = &sc->sc_intr_lock; 1130 1.8 jmcneill *thread = &sc->sc_lock; 1131 1.8 jmcneill } 1132 1.8 jmcneill 1133 1.1 jmcneill static int 1134 1.1 jmcneill gcscaudio_intr(void *arg) 1135 1.1 jmcneill { 1136 1.1 jmcneill struct gcscaudio_softc *sc; 1137 1.1 jmcneill uint16_t intr; 1138 1.1 jmcneill uint8_t bmstat; 1139 1.1 jmcneill int nintr; 1140 1.1 jmcneill 1141 1.1 jmcneill nintr = 0; 1142 1.1 jmcneill sc = (struct gcscaudio_softc *)arg; 1143 1.8 jmcneill 1144 1.8 jmcneill mutex_spin_enter(&sc->sc_intr_lock); 1145 1.8 jmcneill 1146 1.1 jmcneill intr = bus_space_read_2(sc->sc_iot, sc->sc_ioh, ACC_IRQ_STATUS); 1147 1.1 jmcneill if (intr == 0) 1148 1.8 jmcneill goto done; 1149 1.1 jmcneill 1150 1.1 jmcneill /* Front output */ 1151 1.1 jmcneill if (intr & ACC_IRQ_STATUS_BM0_IRQ_STS) { 1152 1.1 jmcneill bmstat = bus_space_read_1(sc->sc_iot, sc->sc_ioh, ACC_BM0_STATUS); 1153 1.1 jmcneill if (bmstat & ACC_BMx_STATUS_BM_EOP_ERR) 1154 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM0: Bus Master Error\n"); 1155 1.1 jmcneill if (!(bmstat & ACC_BMx_STATUS_EOP)) 1156 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM0: NO End of Page?\n"); 1157 1.1 jmcneill 1158 1.1 jmcneill if (sc->sc_play.ch_intr) { 1159 1.1 jmcneill sc->sc_play.ch_intr(sc->sc_play.ch_intr_arg); 1160 1.1 jmcneill channel_splitter(sc); 1161 1.1 jmcneill } 1162 1.1 jmcneill nintr++; 1163 1.1 jmcneill } 1164 1.1 jmcneill 1165 1.1 jmcneill /* Center output */ 1166 1.1 jmcneill if (intr & ACC_IRQ_STATUS_BM4_IRQ_STS) { 1167 1.1 jmcneill bmstat = bus_space_read_1(sc->sc_iot, sc->sc_ioh, ACC_BM4_STATUS); 1168 1.1 jmcneill if (bmstat & ACC_BMx_STATUS_BM_EOP_ERR) 1169 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM4: Bus Master Error\n"); 1170 1.1 jmcneill if (!(bmstat & ACC_BMx_STATUS_EOP)) 1171 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM4: NO End of Page?\n"); 1172 1.1 jmcneill 1173 1.1 jmcneill nintr++; 1174 1.1 jmcneill } 1175 1.1 jmcneill 1176 1.1 jmcneill /* Surround output */ 1177 1.1 jmcneill if (intr & ACC_IRQ_STATUS_BM6_IRQ_STS) { 1178 1.1 jmcneill bmstat = bus_space_read_1(sc->sc_iot, sc->sc_ioh, ACC_BM6_STATUS); 1179 1.1 jmcneill if (bmstat & ACC_BMx_STATUS_BM_EOP_ERR) 1180 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM6: Bus Master Error\n"); 1181 1.1 jmcneill if (!(bmstat & ACC_BMx_STATUS_EOP)) 1182 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM6: NO End of Page?\n"); 1183 1.1 jmcneill 1184 1.1 jmcneill nintr++; 1185 1.1 jmcneill } 1186 1.1 jmcneill 1187 1.1 jmcneill /* LowFrequencyEffect output */ 1188 1.1 jmcneill if (intr & ACC_IRQ_STATUS_BM7_IRQ_STS) { 1189 1.1 jmcneill bmstat = bus_space_read_1(sc->sc_iot, sc->sc_ioh, ACC_BM7_STATUS); 1190 1.1 jmcneill if (bmstat & ACC_BMx_STATUS_BM_EOP_ERR) 1191 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM7: Bus Master Error\n"); 1192 1.1 jmcneill if (!(bmstat & ACC_BMx_STATUS_EOP)) 1193 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM7: NO End of Page?\n"); 1194 1.1 jmcneill 1195 1.1 jmcneill nintr++; 1196 1.1 jmcneill } 1197 1.1 jmcneill 1198 1.1 jmcneill /* record */ 1199 1.1 jmcneill if (intr & ACC_IRQ_STATUS_BM1_IRQ_STS) { 1200 1.1 jmcneill bmstat = bus_space_read_1(sc->sc_iot, sc->sc_ioh, ACC_BM1_STATUS); 1201 1.1 jmcneill if (bmstat & ACC_BMx_STATUS_BM_EOP_ERR) 1202 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM1: Bus Master Error\n"); 1203 1.1 jmcneill if (!(bmstat & ACC_BMx_STATUS_EOP)) 1204 1.12 nonaka aprint_normal_dev(sc->sc_dev, "BM1: NO End of Page?\n"); 1205 1.1 jmcneill 1206 1.1 jmcneill if (sc->sc_rec.ch_intr) { 1207 1.1 jmcneill sc->sc_rec.ch_intr(sc->sc_rec.ch_intr_arg); 1208 1.1 jmcneill } 1209 1.1 jmcneill nintr++; 1210 1.1 jmcneill } 1211 1.1 jmcneill 1212 1.1 jmcneill #ifdef GCSCAUDIO_DEBUG 1213 1.1 jmcneill if (intr & ACC_IRQ_STATUS_IRQ_STS) 1214 1.12 nonaka aprint_normal_dev(sc->sc_dev, "Codec GPIO IRQ Status\n"); 1215 1.1 jmcneill if (intr & ACC_IRQ_STATUS_WU_IRQ_STS) 1216 1.12 nonaka aprint_normal_dev(sc->sc_dev, "Codec GPIO Wakeup IRQ Status\n"); 1217 1.1 jmcneill if (intr & ACC_IRQ_STATUS_BM2_IRQ_STS) 1218 1.12 nonaka aprint_normal_dev(sc->sc_dev, "Audio Bus Master 2 IRQ Status\n"); 1219 1.1 jmcneill if (intr & ACC_IRQ_STATUS_BM3_IRQ_STS) 1220 1.12 nonaka aprint_normal_dev(sc->sc_dev, "Audio Bus Master 3 IRQ Status\n"); 1221 1.1 jmcneill if (intr & ACC_IRQ_STATUS_BM5_IRQ_STS) 1222 1.12 nonaka aprint_normal_dev(sc->sc_dev, "Audio Bus Master 5 IRQ Status\n"); 1223 1.1 jmcneill #endif 1224 1.1 jmcneill 1225 1.8 jmcneill done: 1226 1.8 jmcneill mutex_spin_exit(&sc->sc_intr_lock); 1227 1.8 jmcneill 1228 1.1 jmcneill return nintr ? 1 : 0; 1229 1.1 jmcneill } 1230 1.1 jmcneill 1231 1.1 jmcneill static bool 1232 1.5 dyoung gcscaudio_resume(device_t dv, const pmf_qual_t *qual) 1233 1.1 jmcneill { 1234 1.1 jmcneill struct gcscaudio_softc *sc = device_private(dv); 1235 1.1 jmcneill 1236 1.1 jmcneill gcscaudio_reset_codec(sc); 1237 1.1 jmcneill DELAY(1000); 1238 1.1 jmcneill (sc->codec_if->vtbl->restore_ports)(sc->codec_if); 1239 1.1 jmcneill 1240 1.1 jmcneill return true; 1241 1.1 jmcneill } 1242 1.1 jmcneill 1243 1.1 jmcneill static int 1244 1.1 jmcneill gcscaudio_allocate_dma(struct gcscaudio_softc *sc, size_t size, void **addrp, 1245 1.1 jmcneill bus_dma_segment_t *seglist, int nseg, int *rsegp, 1246 1.8 jmcneill bus_dmamap_t *mapp) 1247 1.1 jmcneill { 1248 1.1 jmcneill int error; 1249 1.1 jmcneill 1250 1.1 jmcneill if ((error = bus_dmamem_alloc(sc->sc_dmat, size, PAGE_SIZE, 0, seglist, 1251 1.8 jmcneill nseg, rsegp, BUS_DMA_WAITOK)) != 0) { 1252 1.12 nonaka aprint_error_dev(sc->sc_dev, 1253 1.1 jmcneill "unable to allocate DMA buffer, error=%d\n", error); 1254 1.1 jmcneill goto fail_alloc; 1255 1.1 jmcneill } 1256 1.1 jmcneill 1257 1.1 jmcneill if ((error = bus_dmamem_map(sc->sc_dmat, seglist, nseg, size, addrp, 1258 1.8 jmcneill BUS_DMA_WAITOK | BUS_DMA_COHERENT)) != 0) { 1259 1.12 nonaka aprint_error_dev(sc->sc_dev, 1260 1.1 jmcneill "unable to map DMA buffer, error=%d\n", 1261 1.1 jmcneill error); 1262 1.1 jmcneill goto fail_map; 1263 1.1 jmcneill } 1264 1.1 jmcneill 1265 1.1 jmcneill if ((error = bus_dmamap_create(sc->sc_dmat, size, nseg, size, 0, 1266 1.8 jmcneill BUS_DMA_WAITOK, mapp)) != 0) { 1267 1.12 nonaka aprint_error_dev(sc->sc_dev, 1268 1.1 jmcneill "unable to create DMA map, error=%d\n", error); 1269 1.1 jmcneill goto fail_create; 1270 1.1 jmcneill } 1271 1.1 jmcneill 1272 1.1 jmcneill if ((error = bus_dmamap_load(sc->sc_dmat, *mapp, *addrp, size, NULL, 1273 1.8 jmcneill BUS_DMA_WAITOK)) != 0) { 1274 1.12 nonaka aprint_error_dev(sc->sc_dev, 1275 1.1 jmcneill "unable to load DMA map, error=%d\n", error); 1276 1.1 jmcneill goto fail_load; 1277 1.1 jmcneill } 1278 1.1 jmcneill 1279 1.1 jmcneill return 0; 1280 1.1 jmcneill 1281 1.1 jmcneill fail_load: 1282 1.1 jmcneill bus_dmamap_destroy(sc->sc_dmat, *mapp); 1283 1.1 jmcneill fail_create: 1284 1.1 jmcneill bus_dmamem_unmap(sc->sc_dmat, *addrp, size); 1285 1.1 jmcneill fail_map: 1286 1.1 jmcneill bus_dmamem_free(sc->sc_dmat, seglist, nseg); 1287 1.1 jmcneill fail_alloc: 1288 1.1 jmcneill return error; 1289 1.1 jmcneill } 1290