1 1.44 gutterid /* $NetBSD: sdmmc.c,v 1.44 2025/06/24 03:02:00 gutteridge Exp $ */ 2 1.1 nonaka /* $OpenBSD: sdmmc.c,v 1.18 2009/01/09 10:58:38 jsg Exp $ */ 3 1.1 nonaka 4 1.1 nonaka /* 5 1.1 nonaka * Copyright (c) 2006 Uwe Stuehler <uwe (at) openbsd.org> 6 1.1 nonaka * 7 1.1 nonaka * Permission to use, copy, modify, and distribute this software for any 8 1.1 nonaka * purpose with or without fee is hereby granted, provided that the above 9 1.1 nonaka * copyright notice and this permission notice appear in all copies. 10 1.1 nonaka * 11 1.1 nonaka * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES 12 1.1 nonaka * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF 13 1.1 nonaka * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR 14 1.1 nonaka * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES 15 1.1 nonaka * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN 16 1.1 nonaka * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF 17 1.1 nonaka * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 18 1.1 nonaka */ 19 1.1 nonaka 20 1.1 nonaka /*- 21 1.10 nonaka * Copyright (C) 2007, 2008, 2009 NONAKA Kimihiro <nonaka (at) netbsd.org> 22 1.1 nonaka * All rights reserved. 23 1.1 nonaka * 24 1.1 nonaka * Redistribution and use in source and binary forms, with or without 25 1.1 nonaka * modification, are permitted provided that the following conditions 26 1.1 nonaka * are met: 27 1.1 nonaka * 1. Redistributions of source code must retain the above copyright 28 1.1 nonaka * notice, this list of conditions and the following disclaimer. 29 1.1 nonaka * 2. Redistributions in binary form must reproduce the above copyright 30 1.1 nonaka * notice, this list of conditions and the following disclaimer in the 31 1.1 nonaka * documentation and/or other materials provided with the distribution. 32 1.1 nonaka * 33 1.10 nonaka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 34 1.10 nonaka * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 35 1.10 nonaka * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 36 1.10 nonaka * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 37 1.10 nonaka * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 38 1.10 nonaka * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 39 1.10 nonaka * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 40 1.10 nonaka * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 41 1.10 nonaka * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 42 1.10 nonaka * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 43 1.1 nonaka */ 44 1.1 nonaka 45 1.1 nonaka /* 46 1.1 nonaka * Host controller independent SD/MMC bus driver based on information 47 1.1 nonaka * from SanDisk SD Card Product Manual Revision 2.2 (SanDisk), SDIO 48 1.1 nonaka * Simple Specification Version 1.0 (SDIO) and the Linux "mmc" driver. 49 1.1 nonaka */ 50 1.1 nonaka 51 1.1 nonaka #include <sys/cdefs.h> 52 1.44 gutterid __KERNEL_RCSID(0, "$NetBSD: sdmmc.c,v 1.44 2025/06/24 03:02:00 gutteridge Exp $"); 53 1.12 matt 54 1.12 matt #ifdef _KERNEL_OPT 55 1.12 matt #include "opt_sdmmc.h" 56 1.12 matt #endif 57 1.1 nonaka 58 1.1 nonaka #include <sys/param.h> 59 1.1 nonaka #include <sys/device.h> 60 1.1 nonaka #include <sys/kernel.h> 61 1.1 nonaka #include <sys/kthread.h> 62 1.1 nonaka #include <sys/malloc.h> 63 1.1 nonaka #include <sys/proc.h> 64 1.1 nonaka #include <sys/systm.h> 65 1.2 nonaka #include <sys/callout.h> 66 1.1 nonaka 67 1.4 kiyohara #include <machine/vmparam.h> 68 1.4 kiyohara 69 1.1 nonaka #include <dev/sdmmc/sdmmc_ioreg.h> 70 1.1 nonaka #include <dev/sdmmc/sdmmcchip.h> 71 1.1 nonaka #include <dev/sdmmc/sdmmcreg.h> 72 1.1 nonaka #include <dev/sdmmc/sdmmcvar.h> 73 1.1 nonaka 74 1.1 nonaka #ifdef SDMMC_DEBUG 75 1.22 nonaka int sdmmcdebug = 0; 76 1.1 nonaka static void sdmmc_dump_command(struct sdmmc_softc *, struct sdmmc_command *); 77 1.1 nonaka #define DPRINTF(n,s) do { if ((n) <= sdmmcdebug) printf s; } while (0) 78 1.1 nonaka #else 79 1.1 nonaka #define DPRINTF(n,s) do {} while (0) 80 1.1 nonaka #endif 81 1.1 nonaka 82 1.1 nonaka #define DEVNAME(sc) SDMMCDEVNAME(sc) 83 1.1 nonaka 84 1.1 nonaka static int sdmmc_match(device_t, cfdata_t, void *); 85 1.1 nonaka static void sdmmc_attach(device_t, device_t, void *); 86 1.1 nonaka static int sdmmc_detach(device_t, int); 87 1.1 nonaka 88 1.1 nonaka CFATTACH_DECL_NEW(sdmmc, sizeof(struct sdmmc_softc), 89 1.1 nonaka sdmmc_match, sdmmc_attach, sdmmc_detach, NULL); 90 1.1 nonaka 91 1.1 nonaka static void sdmmc_doattach(device_t); 92 1.1 nonaka static void sdmmc_task_thread(void *); 93 1.1 nonaka static void sdmmc_discover_task(void *); 94 1.2 nonaka static void sdmmc_polling_card(void *); 95 1.1 nonaka static void sdmmc_card_attach(struct sdmmc_softc *); 96 1.1 nonaka static void sdmmc_card_detach(struct sdmmc_softc *, int); 97 1.1 nonaka static int sdmmc_print(void *, const char *); 98 1.1 nonaka static int sdmmc_enable(struct sdmmc_softc *); 99 1.1 nonaka static void sdmmc_disable(struct sdmmc_softc *); 100 1.1 nonaka static int sdmmc_scan(struct sdmmc_softc *); 101 1.1 nonaka static int sdmmc_init(struct sdmmc_softc *); 102 1.1 nonaka 103 1.1 nonaka static int 104 1.1 nonaka sdmmc_match(device_t parent, cfdata_t cf, void *aux) 105 1.1 nonaka { 106 1.1 nonaka struct sdmmcbus_attach_args *saa = (struct sdmmcbus_attach_args *)aux; 107 1.1 nonaka 108 1.1 nonaka if (strcmp(saa->saa_busname, cf->cf_name) == 0) 109 1.1 nonaka return 1; 110 1.1 nonaka return 0; 111 1.1 nonaka } 112 1.1 nonaka 113 1.1 nonaka static void 114 1.1 nonaka sdmmc_attach(device_t parent, device_t self, void *aux) 115 1.1 nonaka { 116 1.1 nonaka struct sdmmc_softc *sc = device_private(self); 117 1.1 nonaka struct sdmmcbus_attach_args *saa = (struct sdmmcbus_attach_args *)aux; 118 1.1 nonaka int error; 119 1.1 nonaka 120 1.1 nonaka aprint_normal("\n"); 121 1.1 nonaka aprint_naive("\n"); 122 1.1 nonaka 123 1.1 nonaka sc->sc_dev = self; 124 1.1 nonaka sc->sc_sct = saa->saa_sct; 125 1.2 nonaka sc->sc_spi_sct = saa->saa_spi_sct; 126 1.1 nonaka sc->sc_sch = saa->saa_sch; 127 1.1 nonaka sc->sc_dmat = saa->saa_dmat; 128 1.1 nonaka sc->sc_clkmin = saa->saa_clkmin; 129 1.1 nonaka sc->sc_clkmax = saa->saa_clkmax; 130 1.1 nonaka sc->sc_busclk = sc->sc_clkmax; 131 1.1 nonaka sc->sc_buswidth = 1; 132 1.1 nonaka sc->sc_caps = saa->saa_caps; 133 1.38 hkenken sc->sc_max_seg = saa->saa_max_seg ? saa->saa_max_seg : MAXPHYS; 134 1.1 nonaka 135 1.1 nonaka if (ISSET(sc->sc_caps, SMC_CAPS_DMA)) { 136 1.1 nonaka error = bus_dmamap_create(sc->sc_dmat, MAXPHYS, SDMMC_MAXNSEGS, 137 1.38 hkenken sc->sc_max_seg, 0, BUS_DMA_NOWAIT|BUS_DMA_ALLOCNOW, &sc->sc_dmap); 138 1.1 nonaka if (error) { 139 1.1 nonaka aprint_error_dev(sc->sc_dev, 140 1.1 nonaka "couldn't create dma map. (error=%d)\n", error); 141 1.1 nonaka return; 142 1.1 nonaka } 143 1.1 nonaka } 144 1.1 nonaka 145 1.1 nonaka SIMPLEQ_INIT(&sc->sf_head); 146 1.1 nonaka TAILQ_INIT(&sc->sc_tskq); 147 1.1 nonaka TAILQ_INIT(&sc->sc_intrq); 148 1.1 nonaka 149 1.1 nonaka sdmmc_init_task(&sc->sc_discover_task, sdmmc_discover_task, sc); 150 1.1 nonaka sdmmc_init_task(&sc->sc_intr_task, sdmmc_intr_task, sc); 151 1.1 nonaka 152 1.28 mlelstv mutex_init(&sc->sc_mtx, MUTEX_DEFAULT, IPL_NONE); 153 1.1 nonaka mutex_init(&sc->sc_tskq_mtx, MUTEX_DEFAULT, IPL_SDMMC); 154 1.1 nonaka mutex_init(&sc->sc_discover_task_mtx, MUTEX_DEFAULT, IPL_SDMMC); 155 1.1 nonaka cv_init(&sc->sc_tskq_cv, "mmctaskq"); 156 1.1 nonaka 157 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer, EVCNT_TYPE_MISC, NULL, 158 1.32 jmcneill device_xname(self), "xfer"); 159 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_aligned[0], EVCNT_TYPE_MISC, 160 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer 512"); 161 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_aligned[1], EVCNT_TYPE_MISC, 162 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer 1024"); 163 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_aligned[2], EVCNT_TYPE_MISC, 164 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer 2048"); 165 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_aligned[3], EVCNT_TYPE_MISC, 166 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer 4096"); 167 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_aligned[4], EVCNT_TYPE_MISC, 168 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer 8192"); 169 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_aligned[5], EVCNT_TYPE_MISC, 170 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer 16384"); 171 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_aligned[6], EVCNT_TYPE_MISC, 172 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer 32768"); 173 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_aligned[7], EVCNT_TYPE_MISC, 174 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer 65536"); 175 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_unaligned, EVCNT_TYPE_MISC, 176 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer unaligned"); 177 1.32 jmcneill evcnt_attach_dynamic(&sc->sc_ev_xfer_error, EVCNT_TYPE_MISC, 178 1.32 jmcneill &sc->sc_ev_xfer, device_xname(self), "xfer error"); 179 1.32 jmcneill 180 1.22 nonaka if (ISSET(sc->sc_caps, SMC_CAPS_POLL_CARD_DET)) { 181 1.22 nonaka callout_init(&sc->sc_card_detect_ch, 0); 182 1.22 nonaka callout_reset(&sc->sc_card_detect_ch, hz, 183 1.22 nonaka sdmmc_polling_card, sc); 184 1.22 nonaka } 185 1.22 nonaka 186 1.1 nonaka if (!pmf_device_register(self, NULL, NULL)) { 187 1.1 nonaka aprint_error_dev(self, "couldn't establish power handler\n"); 188 1.1 nonaka } 189 1.1 nonaka 190 1.1 nonaka SET(sc->sc_flags, SMF_INITED); 191 1.1 nonaka 192 1.1 nonaka /* 193 1.1 nonaka * Create the event thread that will attach and detach cards 194 1.1 nonaka * and perform other lengthy operations. 195 1.1 nonaka */ 196 1.21 christos config_pending_incr(self); 197 1.1 nonaka config_interrupts(self, sdmmc_doattach); 198 1.1 nonaka } 199 1.1 nonaka 200 1.1 nonaka static int 201 1.1 nonaka sdmmc_detach(device_t self, int flags) 202 1.1 nonaka { 203 1.1 nonaka struct sdmmc_softc *sc = device_private(self); 204 1.32 jmcneill int error, i; 205 1.1 nonaka 206 1.1 nonaka mutex_enter(&sc->sc_tskq_mtx); 207 1.1 nonaka sc->sc_dying = 1; 208 1.1 nonaka cv_signal(&sc->sc_tskq_cv); 209 1.1 nonaka while (sc->sc_tskq_lwp != NULL) 210 1.1 nonaka cv_wait(&sc->sc_tskq_cv, &sc->sc_tskq_mtx); 211 1.1 nonaka mutex_exit(&sc->sc_tskq_mtx); 212 1.1 nonaka 213 1.1 nonaka pmf_device_deregister(self); 214 1.1 nonaka 215 1.1 nonaka error = config_detach_children(self, flags); 216 1.1 nonaka if (error) 217 1.1 nonaka return error; 218 1.13 jakllsch 219 1.13 jakllsch if (ISSET(sc->sc_caps, SMC_CAPS_DMA)) { 220 1.13 jakllsch bus_dmamap_unload(sc->sc_dmat, sc->sc_dmap); 221 1.13 jakllsch bus_dmamap_destroy(sc->sc_dmat, sc->sc_dmap); 222 1.13 jakllsch } 223 1.13 jakllsch 224 1.22 nonaka if (ISSET(sc->sc_caps, SMC_CAPS_POLL_CARD_DET)) { 225 1.23 ozaki callout_halt(&sc->sc_card_detect_ch, NULL); 226 1.22 nonaka callout_destroy(&sc->sc_card_detect_ch); 227 1.22 nonaka } 228 1.22 nonaka 229 1.40 riastrad sdmmc_del_task(sc, &sc->sc_intr_task, NULL); 230 1.40 riastrad sdmmc_del_task(sc, &sc->sc_discover_task, NULL); 231 1.40 riastrad 232 1.22 nonaka cv_destroy(&sc->sc_tskq_cv); 233 1.22 nonaka mutex_destroy(&sc->sc_discover_task_mtx); 234 1.22 nonaka mutex_destroy(&sc->sc_tskq_mtx); 235 1.22 nonaka mutex_destroy(&sc->sc_mtx); 236 1.22 nonaka 237 1.32 jmcneill evcnt_detach(&sc->sc_ev_xfer_error); 238 1.32 jmcneill evcnt_detach(&sc->sc_ev_xfer_unaligned); 239 1.32 jmcneill for (i = 0; i < __arraycount(sc->sc_ev_xfer_aligned); i++) 240 1.32 jmcneill evcnt_detach(&sc->sc_ev_xfer_aligned[i]); 241 1.32 jmcneill evcnt_detach(&sc->sc_ev_xfer); 242 1.32 jmcneill 243 1.1 nonaka return 0; 244 1.1 nonaka } 245 1.1 nonaka 246 1.1 nonaka static void 247 1.1 nonaka sdmmc_doattach(device_t dev) 248 1.1 nonaka { 249 1.1 nonaka struct sdmmc_softc *sc = device_private(dev); 250 1.1 nonaka 251 1.36 jmcneill if (kthread_create(PRI_SOFTBIO, 0, NULL, 252 1.1 nonaka sdmmc_task_thread, sc, &sc->sc_tskq_lwp, "%s", device_xname(dev))) { 253 1.1 nonaka aprint_error_dev(dev, "couldn't create task thread\n"); 254 1.1 nonaka } 255 1.1 nonaka } 256 1.1 nonaka 257 1.1 nonaka void 258 1.1 nonaka sdmmc_add_task(struct sdmmc_softc *sc, struct sdmmc_task *task) 259 1.1 nonaka { 260 1.1 nonaka 261 1.1 nonaka mutex_enter(&sc->sc_tskq_mtx); 262 1.40 riastrad if (task->sc == sc) { 263 1.40 riastrad KASSERT(task->onqueue); 264 1.40 riastrad goto out; 265 1.40 riastrad } 266 1.40 riastrad KASSERT(task->sc == NULL); 267 1.40 riastrad KASSERT(!task->onqueue); 268 1.1 nonaka task->onqueue = 1; 269 1.1 nonaka task->sc = sc; 270 1.1 nonaka TAILQ_INSERT_TAIL(&sc->sc_tskq, task, next); 271 1.1 nonaka cv_broadcast(&sc->sc_tskq_cv); 272 1.40 riastrad out: mutex_exit(&sc->sc_tskq_mtx); 273 1.1 nonaka } 274 1.1 nonaka 275 1.1 nonaka static inline void 276 1.1 nonaka sdmmc_del_task1(struct sdmmc_softc *sc, struct sdmmc_task *task) 277 1.1 nonaka { 278 1.1 nonaka 279 1.40 riastrad KASSERT(mutex_owned(&sc->sc_tskq_mtx)); 280 1.40 riastrad 281 1.1 nonaka TAILQ_REMOVE(&sc->sc_tskq, task, next); 282 1.1 nonaka task->sc = NULL; 283 1.1 nonaka task->onqueue = 0; 284 1.1 nonaka } 285 1.1 nonaka 286 1.40 riastrad bool 287 1.40 riastrad sdmmc_del_task(struct sdmmc_softc *sc, struct sdmmc_task *task, 288 1.40 riastrad kmutex_t *interlock) 289 1.1 nonaka { 290 1.40 riastrad bool cancelled; 291 1.1 nonaka 292 1.40 riastrad KASSERT(interlock == NULL || mutex_owned(interlock)); 293 1.40 riastrad 294 1.40 riastrad mutex_enter(&sc->sc_tskq_mtx); 295 1.40 riastrad if (task->sc == sc) { 296 1.40 riastrad KASSERT(task->onqueue); 297 1.40 riastrad KASSERT(sc->sc_curtask != task); 298 1.1 nonaka sdmmc_del_task1(sc, task); 299 1.40 riastrad cancelled = true; 300 1.40 riastrad } else { 301 1.40 riastrad KASSERT(task->sc == NULL); 302 1.40 riastrad KASSERT(!task->onqueue); 303 1.42 mlelstv if (interlock != NULL) 304 1.42 mlelstv mutex_exit(interlock); 305 1.40 riastrad while (sc->sc_curtask == task) { 306 1.40 riastrad KASSERT(curlwp != sc->sc_tskq_lwp); 307 1.40 riastrad cv_wait(&sc->sc_tskq_cv, &sc->sc_tskq_mtx); 308 1.40 riastrad } 309 1.42 mlelstv if (interlock == NULL || !mutex_tryenter(interlock)) { 310 1.40 riastrad mutex_exit(&sc->sc_tskq_mtx); 311 1.42 mlelstv if (interlock != NULL) 312 1.42 mlelstv mutex_enter(interlock); 313 1.40 riastrad mutex_enter(&sc->sc_tskq_mtx); 314 1.40 riastrad } 315 1.40 riastrad cancelled = false; 316 1.1 nonaka } 317 1.40 riastrad mutex_exit(&sc->sc_tskq_mtx); 318 1.40 riastrad 319 1.40 riastrad KASSERT(interlock == NULL || mutex_owned(interlock)); 320 1.40 riastrad 321 1.40 riastrad return cancelled; 322 1.1 nonaka } 323 1.1 nonaka 324 1.1 nonaka static void 325 1.1 nonaka sdmmc_task_thread(void *arg) 326 1.1 nonaka { 327 1.1 nonaka struct sdmmc_softc *sc = (struct sdmmc_softc *)arg; 328 1.1 nonaka struct sdmmc_task *task; 329 1.1 nonaka 330 1.1 nonaka sdmmc_discover_task(sc); 331 1.21 christos config_pending_decr(sc->sc_dev); 332 1.1 nonaka 333 1.1 nonaka mutex_enter(&sc->sc_tskq_mtx); 334 1.1 nonaka for (;;) { 335 1.1 nonaka task = TAILQ_FIRST(&sc->sc_tskq); 336 1.1 nonaka if (task != NULL) { 337 1.1 nonaka sdmmc_del_task1(sc, task); 338 1.40 riastrad sc->sc_curtask = task; 339 1.1 nonaka mutex_exit(&sc->sc_tskq_mtx); 340 1.1 nonaka (*task->func)(task->arg); 341 1.1 nonaka mutex_enter(&sc->sc_tskq_mtx); 342 1.40 riastrad sc->sc_curtask = NULL; 343 1.40 riastrad cv_broadcast(&sc->sc_tskq_cv); 344 1.1 nonaka } else { 345 1.1 nonaka /* Check for the exit condition. */ 346 1.1 nonaka if (sc->sc_dying) 347 1.1 nonaka break; 348 1.1 nonaka cv_wait(&sc->sc_tskq_cv, &sc->sc_tskq_mtx); 349 1.1 nonaka } 350 1.1 nonaka } 351 1.1 nonaka /* time to die. */ 352 1.1 nonaka sc->sc_dying = 0; 353 1.20 jakllsch if (ISSET(sc->sc_flags, SMF_CARD_PRESENT)) { 354 1.20 jakllsch /* 355 1.20 jakllsch * sdmmc_card_detach() may issue commands, 356 1.20 jakllsch * so temporarily drop the interrupt-blocking lock. 357 1.20 jakllsch */ 358 1.20 jakllsch mutex_exit(&sc->sc_tskq_mtx); 359 1.1 nonaka sdmmc_card_detach(sc, DETACH_FORCE); 360 1.20 jakllsch mutex_enter(&sc->sc_tskq_mtx); 361 1.20 jakllsch } 362 1.1 nonaka sc->sc_tskq_lwp = NULL; 363 1.1 nonaka cv_broadcast(&sc->sc_tskq_cv); 364 1.1 nonaka mutex_exit(&sc->sc_tskq_mtx); 365 1.1 nonaka kthread_exit(0); 366 1.1 nonaka } 367 1.1 nonaka 368 1.1 nonaka void 369 1.1 nonaka sdmmc_needs_discover(device_t dev) 370 1.1 nonaka { 371 1.1 nonaka struct sdmmc_softc *sc = device_private(dev); 372 1.1 nonaka 373 1.1 nonaka if (!ISSET(sc->sc_flags, SMF_INITED)) 374 1.1 nonaka return; 375 1.1 nonaka 376 1.40 riastrad sdmmc_add_task(sc, &sc->sc_discover_task); 377 1.1 nonaka } 378 1.1 nonaka 379 1.1 nonaka static void 380 1.1 nonaka sdmmc_discover_task(void *arg) 381 1.1 nonaka { 382 1.1 nonaka struct sdmmc_softc *sc = (struct sdmmc_softc *)arg; 383 1.30 mlelstv int card_detect, card_present; 384 1.1 nonaka 385 1.30 mlelstv mutex_enter(&sc->sc_discover_task_mtx); 386 1.30 mlelstv card_detect = sdmmc_chip_card_detect(sc->sc_sct, sc->sc_sch); 387 1.30 mlelstv card_present = ISSET(sc->sc_flags, SMF_CARD_PRESENT); 388 1.30 mlelstv if (card_detect) 389 1.30 mlelstv SET(sc->sc_flags, SMF_CARD_PRESENT); 390 1.30 mlelstv else 391 1.30 mlelstv CLR(sc->sc_flags, SMF_CARD_PRESENT); 392 1.30 mlelstv mutex_exit(&sc->sc_discover_task_mtx); 393 1.30 mlelstv 394 1.30 mlelstv if (card_detect) { 395 1.30 mlelstv if (!card_present) { 396 1.1 nonaka sdmmc_card_attach(sc); 397 1.30 mlelstv mutex_enter(&sc->sc_discover_task_mtx); 398 1.3 kiyohara if (!ISSET(sc->sc_flags, SMF_CARD_ATTACHED)) 399 1.3 kiyohara CLR(sc->sc_flags, SMF_CARD_PRESENT); 400 1.30 mlelstv mutex_exit(&sc->sc_discover_task_mtx); 401 1.1 nonaka } 402 1.1 nonaka } else { 403 1.30 mlelstv if (card_present) 404 1.19 jakllsch sdmmc_card_detach(sc, DETACH_FORCE); 405 1.1 nonaka } 406 1.1 nonaka } 407 1.1 nonaka 408 1.2 nonaka static void 409 1.2 nonaka sdmmc_polling_card(void *arg) 410 1.2 nonaka { 411 1.2 nonaka struct sdmmc_softc *sc = (struct sdmmc_softc *)arg; 412 1.30 mlelstv int card_detect, card_present; 413 1.2 nonaka 414 1.30 mlelstv mutex_enter(&sc->sc_discover_task_mtx); 415 1.2 nonaka card_detect = sdmmc_chip_card_detect(sc->sc_sct, sc->sc_sch); 416 1.30 mlelstv card_present = ISSET(sc->sc_flags, SMF_CARD_PRESENT); 417 1.30 mlelstv mutex_exit(&sc->sc_discover_task_mtx); 418 1.30 mlelstv 419 1.30 mlelstv if (card_detect != card_present) 420 1.30 mlelstv sdmmc_needs_discover(sc->sc_dev); 421 1.2 nonaka 422 1.2 nonaka callout_schedule(&sc->sc_card_detect_ch, hz); 423 1.2 nonaka } 424 1.2 nonaka 425 1.1 nonaka /* 426 1.1 nonaka * Called from process context when a card is present. 427 1.1 nonaka */ 428 1.1 nonaka static void 429 1.1 nonaka sdmmc_card_attach(struct sdmmc_softc *sc) 430 1.1 nonaka { 431 1.1 nonaka struct sdmmc_function *sf; 432 1.1 nonaka struct sdmmc_attach_args saa; 433 1.1 nonaka int error; 434 1.1 nonaka 435 1.1 nonaka DPRINTF(1,("%s: attach card\n", DEVNAME(sc))); 436 1.1 nonaka 437 1.1 nonaka CLR(sc->sc_flags, SMF_CARD_ATTACHED); 438 1.1 nonaka 439 1.34 nonaka sdmmc_chip_hw_reset(sc->sc_sct, sc->sc_sch); 440 1.34 nonaka 441 1.1 nonaka /* 442 1.1 nonaka * Power up the card (or card stack). 443 1.1 nonaka */ 444 1.1 nonaka error = sdmmc_enable(sc); 445 1.1 nonaka if (error) { 446 1.9 nonaka if (!ISSET(sc->sc_caps, SMC_CAPS_POLL_CARD_DET)) { 447 1.11 matt aprint_error_dev(sc->sc_dev, "couldn't enable card: %d\n", error); 448 1.9 nonaka } 449 1.1 nonaka goto err; 450 1.1 nonaka } 451 1.1 nonaka 452 1.1 nonaka /* 453 1.1 nonaka * Scan for I/O functions and memory cards on the bus, 454 1.1 nonaka * allocating a sdmmc_function structure for each. 455 1.1 nonaka */ 456 1.1 nonaka error = sdmmc_scan(sc); 457 1.1 nonaka if (error) { 458 1.1 nonaka aprint_error_dev(sc->sc_dev, "no functions\n"); 459 1.1 nonaka goto err; 460 1.1 nonaka } 461 1.1 nonaka 462 1.1 nonaka /* 463 1.2 nonaka * Initialize the I/O functions and memory cards. 464 1.2 nonaka */ 465 1.2 nonaka error = sdmmc_init(sc); 466 1.2 nonaka if (error) { 467 1.2 nonaka aprint_error_dev(sc->sc_dev, "init failed\n"); 468 1.2 nonaka goto err; 469 1.2 nonaka } 470 1.2 nonaka 471 1.1 nonaka SIMPLEQ_FOREACH(sf, &sc->sf_head, sf_list) { 472 1.1 nonaka if (ISSET(sc->sc_flags, SMF_IO_MODE) && sf->number < 1) 473 1.1 nonaka continue; 474 1.1 nonaka 475 1.1 nonaka memset(&saa, 0, sizeof saa); 476 1.1 nonaka saa.manufacturer = sf->cis.manufacturer; 477 1.1 nonaka saa.product = sf->cis.product; 478 1.6 kiyohara saa.interface = sf->interface; 479 1.1 nonaka saa.sf = sf; 480 1.1 nonaka 481 1.1 nonaka sf->child = 482 1.43 thorpej config_found(sc->sc_dev, &saa, sdmmc_print, CFARGS_NONE); 483 1.1 nonaka } 484 1.1 nonaka 485 1.1 nonaka SET(sc->sc_flags, SMF_CARD_ATTACHED); 486 1.1 nonaka return; 487 1.1 nonaka 488 1.1 nonaka err: 489 1.19 jakllsch sdmmc_card_detach(sc, DETACH_FORCE); 490 1.1 nonaka } 491 1.1 nonaka 492 1.1 nonaka /* 493 1.1 nonaka * Called from process context with DETACH_* flags from <sys/device.h> 494 1.1 nonaka * when cards are gone. 495 1.1 nonaka */ 496 1.1 nonaka static void 497 1.1 nonaka sdmmc_card_detach(struct sdmmc_softc *sc, int flags) 498 1.1 nonaka { 499 1.1 nonaka struct sdmmc_function *sf, *sfnext; 500 1.1 nonaka 501 1.1 nonaka DPRINTF(1,("%s: detach card\n", DEVNAME(sc))); 502 1.1 nonaka 503 1.1 nonaka if (ISSET(sc->sc_flags, SMF_CARD_ATTACHED)) { 504 1.1 nonaka SIMPLEQ_FOREACH(sf, &sc->sf_head, sf_list) { 505 1.1 nonaka if (sf->child != NULL) { 506 1.19 jakllsch config_detach(sf->child, DETACH_FORCE); 507 1.1 nonaka sf->child = NULL; 508 1.1 nonaka } 509 1.1 nonaka } 510 1.1 nonaka 511 1.1 nonaka KASSERT(TAILQ_EMPTY(&sc->sc_intrq)); 512 1.1 nonaka 513 1.1 nonaka CLR(sc->sc_flags, SMF_CARD_ATTACHED); 514 1.1 nonaka } 515 1.1 nonaka 516 1.19 jakllsch /* Power down. */ 517 1.19 jakllsch sdmmc_disable(sc); 518 1.1 nonaka 519 1.1 nonaka /* Free all sdmmc_function structures. */ 520 1.1 nonaka for (sf = SIMPLEQ_FIRST(&sc->sf_head); sf != NULL; sf = sfnext) { 521 1.1 nonaka sfnext = SIMPLEQ_NEXT(sf, sf_list); 522 1.1 nonaka sdmmc_function_free(sf); 523 1.1 nonaka } 524 1.1 nonaka SIMPLEQ_INIT(&sc->sf_head); 525 1.1 nonaka sc->sc_function_count = 0; 526 1.1 nonaka sc->sc_fn0 = NULL; 527 1.1 nonaka } 528 1.1 nonaka 529 1.1 nonaka static int 530 1.1 nonaka sdmmc_print(void *aux, const char *pnp) 531 1.1 nonaka { 532 1.1 nonaka struct sdmmc_attach_args *sa = aux; 533 1.1 nonaka struct sdmmc_function *sf = sa->sf; 534 1.1 nonaka struct sdmmc_cis *cis = &sf->sc->sc_fn0->cis; 535 1.15 kiyohara int i, x; 536 1.1 nonaka 537 1.1 nonaka if (pnp) { 538 1.1 nonaka if (sf->number == 0) 539 1.1 nonaka return QUIET; 540 1.1 nonaka 541 1.1 nonaka for (i = 0; i < 4 && cis->cis1_info[i]; i++) 542 1.1 nonaka printf("%s%s", i ? ", " : "\"", cis->cis1_info[i]); 543 1.1 nonaka if (i != 0) 544 1.1 nonaka printf("\""); 545 1.1 nonaka 546 1.15 kiyohara if ((cis->manufacturer != SDMMC_VENDOR_INVALID && 547 1.15 kiyohara cis->product != SDMMC_PRODUCT_INVALID) || 548 1.15 kiyohara sa->interface != SD_IO_SFIC_NO_STANDARD) { 549 1.15 kiyohara x = !!(cis->manufacturer != SDMMC_VENDOR_INVALID); 550 1.15 kiyohara x += !!(cis->product != SDMMC_PRODUCT_INVALID); 551 1.15 kiyohara x += !!(sa->interface != SD_IO_SFIC_NO_STANDARD); 552 1.1 nonaka printf("%s(", i ? " " : ""); 553 1.1 nonaka if (cis->manufacturer != SDMMC_VENDOR_INVALID) 554 1.1 nonaka printf("manufacturer 0x%x%s", 555 1.15 kiyohara cis->manufacturer, (--x == 0) ? "" : ", "); 556 1.1 nonaka if (cis->product != SDMMC_PRODUCT_INVALID) 557 1.15 kiyohara printf("product 0x%x%s", 558 1.15 kiyohara cis->product, (--x == 0) ? "" : ", "); 559 1.15 kiyohara if (sa->interface != SD_IO_SFIC_NO_STANDARD) 560 1.15 kiyohara printf("standard function interface code 0x%x", 561 1.15 kiyohara sf->interface); 562 1.1 nonaka printf(")"); 563 1.35 mlelstv i = 1; 564 1.1 nonaka } 565 1.1 nonaka printf("%sat %s", i ? " " : "", pnp); 566 1.1 nonaka } 567 1.1 nonaka if (sf->number > 0) 568 1.1 nonaka printf(" function %d", sf->number); 569 1.1 nonaka 570 1.1 nonaka if (!pnp) { 571 1.1 nonaka for (i = 0; i < 3 && cis->cis1_info[i]; i++) 572 1.1 nonaka printf("%s%s", i ? ", " : " \"", cis->cis1_info[i]); 573 1.1 nonaka if (i != 0) 574 1.1 nonaka printf("\""); 575 1.1 nonaka } 576 1.1 nonaka return UNCONF; 577 1.1 nonaka } 578 1.1 nonaka 579 1.1 nonaka static int 580 1.1 nonaka sdmmc_enable(struct sdmmc_softc *sc) 581 1.1 nonaka { 582 1.1 nonaka int error; 583 1.1 nonaka 584 1.1 nonaka /* 585 1.1 nonaka * Calculate the equivalent of the card OCR from the host 586 1.1 nonaka * capabilities and select the maximum supported bus voltage. 587 1.1 nonaka */ 588 1.1 nonaka error = sdmmc_chip_bus_power(sc->sc_sct, sc->sc_sch, 589 1.1 nonaka sdmmc_chip_host_ocr(sc->sc_sct, sc->sc_sch)); 590 1.1 nonaka if (error) { 591 1.1 nonaka aprint_error_dev(sc->sc_dev, "couldn't supply bus power\n"); 592 1.1 nonaka goto out; 593 1.1 nonaka } 594 1.1 nonaka 595 1.1 nonaka /* 596 1.1 nonaka * Select the minimum clock frequency. 597 1.1 nonaka */ 598 1.29 jmcneill error = sdmmc_chip_bus_clock(sc->sc_sct, sc->sc_sch, SDMMC_SDCLK_400K, 599 1.29 jmcneill false); 600 1.1 nonaka if (error) { 601 1.1 nonaka aprint_error_dev(sc->sc_dev, "couldn't supply clock\n"); 602 1.1 nonaka goto out; 603 1.1 nonaka } 604 1.1 nonaka 605 1.1 nonaka /* XXX wait for card to power up */ 606 1.39 mlelstv sdmmc_pause(100000, NULL); 607 1.1 nonaka 608 1.2 nonaka if (!ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE)) { 609 1.2 nonaka /* Initialize SD I/O card function(s). */ 610 1.2 nonaka error = sdmmc_io_enable(sc); 611 1.16 jakllsch if (error) { 612 1.17 jakllsch DPRINTF(1, ("%s: sdmmc_io_enable failed %d\n", DEVNAME(sc), error)); 613 1.2 nonaka goto out; 614 1.16 jakllsch } 615 1.2 nonaka } 616 1.1 nonaka 617 1.14 skrll /* Initialize SD/MMC memory card(s). */ 618 1.2 nonaka if (ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE) || 619 1.16 jakllsch ISSET(sc->sc_flags, SMF_MEM_MODE)) { 620 1.1 nonaka error = sdmmc_mem_enable(sc); 621 1.16 jakllsch if (error) { 622 1.17 jakllsch DPRINTF(1, ("%s: sdmmc_mem_enable failed %d\n", DEVNAME(sc), error)); 623 1.16 jakllsch goto out; 624 1.16 jakllsch } 625 1.16 jakllsch } 626 1.1 nonaka 627 1.1 nonaka out: 628 1.1 nonaka if (error) 629 1.1 nonaka sdmmc_disable(sc); 630 1.1 nonaka return error; 631 1.1 nonaka } 632 1.1 nonaka 633 1.1 nonaka static void 634 1.1 nonaka sdmmc_disable(struct sdmmc_softc *sc) 635 1.1 nonaka { 636 1.1 nonaka /* XXX complete commands if card is still present. */ 637 1.1 nonaka 638 1.2 nonaka if (!ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE)) { 639 1.2 nonaka /* Make sure no card is still selected. */ 640 1.2 nonaka (void)sdmmc_select_card(sc, NULL); 641 1.2 nonaka } 642 1.1 nonaka 643 1.1 nonaka /* Turn off bus power and clock. */ 644 1.1 nonaka (void)sdmmc_chip_bus_width(sc->sc_sct, sc->sc_sch, 1); 645 1.29 jmcneill (void)sdmmc_chip_bus_clock(sc->sc_sct, sc->sc_sch, SDMMC_SDCLK_OFF, 646 1.29 jmcneill false); 647 1.1 nonaka (void)sdmmc_chip_bus_power(sc->sc_sct, sc->sc_sch, 0); 648 1.7 nonaka sc->sc_busclk = sc->sc_clkmax; 649 1.1 nonaka } 650 1.1 nonaka 651 1.1 nonaka /* 652 1.1 nonaka * Set the lowest bus voltage supported by the card and the host. 653 1.1 nonaka */ 654 1.1 nonaka int 655 1.1 nonaka sdmmc_set_bus_power(struct sdmmc_softc *sc, uint32_t host_ocr, 656 1.1 nonaka uint32_t card_ocr) 657 1.1 nonaka { 658 1.1 nonaka uint32_t bit; 659 1.1 nonaka 660 1.1 nonaka /* Mask off unsupported voltage levels and select the lowest. */ 661 1.1 nonaka DPRINTF(1,("%s: host_ocr=%x ", DEVNAME(sc), host_ocr)); 662 1.1 nonaka host_ocr &= card_ocr; 663 1.1 nonaka for (bit = 4; bit < 23; bit++) { 664 1.1 nonaka if (ISSET(host_ocr, (1 << bit))) { 665 1.1 nonaka host_ocr &= (3 << bit); 666 1.1 nonaka break; 667 1.1 nonaka } 668 1.1 nonaka } 669 1.1 nonaka DPRINTF(1,("card_ocr=%x new_ocr=%x\n", card_ocr, host_ocr)); 670 1.1 nonaka 671 1.1 nonaka if (host_ocr == 0 || 672 1.1 nonaka sdmmc_chip_bus_power(sc->sc_sct, sc->sc_sch, host_ocr) != 0) 673 1.1 nonaka return 1; 674 1.1 nonaka return 0; 675 1.1 nonaka } 676 1.1 nonaka 677 1.1 nonaka struct sdmmc_function * 678 1.1 nonaka sdmmc_function_alloc(struct sdmmc_softc *sc) 679 1.1 nonaka { 680 1.1 nonaka struct sdmmc_function *sf; 681 1.1 nonaka 682 1.1 nonaka sf = malloc(sizeof *sf, M_DEVBUF, M_WAITOK|M_ZERO); 683 1.1 nonaka if (sf == NULL) { 684 1.1 nonaka aprint_error_dev(sc->sc_dev, 685 1.1 nonaka "couldn't alloc memory (sdmmc function)\n"); 686 1.1 nonaka return NULL; 687 1.1 nonaka } 688 1.1 nonaka 689 1.1 nonaka sf->sc = sc; 690 1.1 nonaka sf->number = -1; 691 1.1 nonaka sf->cis.manufacturer = SDMMC_VENDOR_INVALID; 692 1.1 nonaka sf->cis.product = SDMMC_PRODUCT_INVALID; 693 1.1 nonaka sf->cis.function = SDMMC_FUNCTION_INVALID; 694 1.8 nonaka sf->width = 1; 695 1.37 mlelstv sf->blklen = sdmmc_chip_host_maxblklen(sc->sc_sct, sc->sc_sch); 696 1.1 nonaka 697 1.4 kiyohara if (ISSET(sc->sc_flags, SMF_MEM_MODE) && 698 1.4 kiyohara ISSET(sc->sc_caps, SMC_CAPS_DMA) && 699 1.4 kiyohara !ISSET(sc->sc_caps, SMC_CAPS_MULTI_SEG_DMA)) { 700 1.4 kiyohara bus_dma_segment_t ds; 701 1.4 kiyohara int rseg, error; 702 1.4 kiyohara 703 1.24 nonaka error = bus_dmamap_create(sc->sc_dmat, MAXPHYS, 1, 704 1.24 nonaka MAXPHYS, 0, BUS_DMA_WAITOK, &sf->bbuf_dmap); 705 1.4 kiyohara if (error) 706 1.4 kiyohara goto fail1; 707 1.24 nonaka error = bus_dmamem_alloc(sc->sc_dmat, MAXPHYS, 708 1.4 kiyohara PAGE_SIZE, 0, &ds, 1, &rseg, BUS_DMA_WAITOK); 709 1.4 kiyohara if (error) 710 1.4 kiyohara goto fail2; 711 1.24 nonaka error = bus_dmamem_map(sc->sc_dmat, &ds, 1, MAXPHYS, 712 1.4 kiyohara &sf->bbuf, BUS_DMA_WAITOK); 713 1.4 kiyohara if (error) 714 1.4 kiyohara goto fail3; 715 1.4 kiyohara error = bus_dmamap_load(sc->sc_dmat, sf->bbuf_dmap, 716 1.24 nonaka sf->bbuf, MAXPHYS, NULL, 717 1.4 kiyohara BUS_DMA_WAITOK|BUS_DMA_READ|BUS_DMA_WRITE); 718 1.24 nonaka if (error) 719 1.24 nonaka goto fail4; 720 1.24 nonaka error = bus_dmamap_create(sc->sc_dmat, MAXPHYS, 1, 721 1.24 nonaka MAXPHYS, 0, BUS_DMA_WAITOK, &sf->sseg_dmap); 722 1.4 kiyohara if (!error) 723 1.4 kiyohara goto out; 724 1.4 kiyohara 725 1.24 nonaka bus_dmamap_unload(sc->sc_dmat, sf->bbuf_dmap); 726 1.24 nonaka fail4: 727 1.24 nonaka bus_dmamem_unmap(sc->sc_dmat, sf->bbuf, MAXPHYS); 728 1.4 kiyohara fail3: 729 1.4 kiyohara bus_dmamem_free(sc->sc_dmat, &ds, 1); 730 1.4 kiyohara fail2: 731 1.4 kiyohara bus_dmamap_destroy(sc->sc_dmat, sf->bbuf_dmap); 732 1.4 kiyohara fail1: 733 1.4 kiyohara free(sf, M_DEVBUF); 734 1.4 kiyohara sf = NULL; 735 1.4 kiyohara } 736 1.4 kiyohara out: 737 1.4 kiyohara 738 1.1 nonaka return sf; 739 1.1 nonaka } 740 1.1 nonaka 741 1.1 nonaka void 742 1.1 nonaka sdmmc_function_free(struct sdmmc_function *sf) 743 1.1 nonaka { 744 1.4 kiyohara struct sdmmc_softc *sc = sf->sc; 745 1.4 kiyohara 746 1.4 kiyohara if (ISSET(sc->sc_flags, SMF_MEM_MODE) && 747 1.4 kiyohara ISSET(sc->sc_caps, SMC_CAPS_DMA) && 748 1.4 kiyohara !ISSET(sc->sc_caps, SMC_CAPS_MULTI_SEG_DMA)) { 749 1.24 nonaka bus_dmamap_destroy(sc->sc_dmat, sf->sseg_dmap); 750 1.4 kiyohara bus_dmamap_unload(sc->sc_dmat, sf->bbuf_dmap); 751 1.24 nonaka bus_dmamem_unmap(sc->sc_dmat, sf->bbuf, MAXPHYS); 752 1.4 kiyohara bus_dmamem_free(sc->sc_dmat, 753 1.4 kiyohara sf->bbuf_dmap->dm_segs, sf->bbuf_dmap->dm_nsegs); 754 1.4 kiyohara bus_dmamap_destroy(sc->sc_dmat, sf->bbuf_dmap); 755 1.4 kiyohara } 756 1.1 nonaka 757 1.1 nonaka free(sf, M_DEVBUF); 758 1.1 nonaka } 759 1.1 nonaka 760 1.1 nonaka /* 761 1.1 nonaka * Scan for I/O functions and memory cards on the bus, allocating a 762 1.1 nonaka * sdmmc_function structure for each. 763 1.1 nonaka */ 764 1.1 nonaka static int 765 1.1 nonaka sdmmc_scan(struct sdmmc_softc *sc) 766 1.1 nonaka { 767 1.1 nonaka 768 1.2 nonaka if (!ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE)) { 769 1.2 nonaka /* Scan for I/O functions. */ 770 1.2 nonaka if (ISSET(sc->sc_flags, SMF_IO_MODE)) 771 1.2 nonaka sdmmc_io_scan(sc); 772 1.2 nonaka } 773 1.1 nonaka 774 1.1 nonaka /* Scan for memory cards on the bus. */ 775 1.1 nonaka if (ISSET(sc->sc_flags, SMF_MEM_MODE)) 776 1.1 nonaka sdmmc_mem_scan(sc); 777 1.1 nonaka 778 1.1 nonaka /* There should be at least one function now. */ 779 1.1 nonaka if (SIMPLEQ_EMPTY(&sc->sf_head)) { 780 1.1 nonaka aprint_error_dev(sc->sc_dev, "couldn't identify card\n"); 781 1.1 nonaka return 1; 782 1.1 nonaka } 783 1.1 nonaka return 0; 784 1.1 nonaka } 785 1.1 nonaka 786 1.1 nonaka /* 787 1.1 nonaka * Initialize all the distinguished functions of the card, be it I/O 788 1.1 nonaka * or memory functions. 789 1.1 nonaka */ 790 1.1 nonaka static int 791 1.1 nonaka sdmmc_init(struct sdmmc_softc *sc) 792 1.1 nonaka { 793 1.1 nonaka struct sdmmc_function *sf; 794 1.1 nonaka 795 1.1 nonaka /* Initialize all identified card functions. */ 796 1.1 nonaka SIMPLEQ_FOREACH(sf, &sc->sf_head, sf_list) { 797 1.2 nonaka if (!ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE)) { 798 1.2 nonaka if (ISSET(sc->sc_flags, SMF_IO_MODE) && 799 1.2 nonaka sdmmc_io_init(sc, sf) != 0) { 800 1.2 nonaka aprint_error_dev(sc->sc_dev, 801 1.2 nonaka "i/o init failed\n"); 802 1.2 nonaka } 803 1.1 nonaka } 804 1.1 nonaka 805 1.1 nonaka if (ISSET(sc->sc_flags, SMF_MEM_MODE) && 806 1.1 nonaka sdmmc_mem_init(sc, sf) != 0) { 807 1.1 nonaka aprint_error_dev(sc->sc_dev, "mem init failed\n"); 808 1.1 nonaka } 809 1.1 nonaka } 810 1.1 nonaka 811 1.1 nonaka /* Any good functions left after initialization? */ 812 1.1 nonaka SIMPLEQ_FOREACH(sf, &sc->sf_head, sf_list) { 813 1.1 nonaka if (!ISSET(sf->flags, SFF_ERROR)) 814 1.1 nonaka return 0; 815 1.1 nonaka } 816 1.1 nonaka 817 1.1 nonaka /* No, we should probably power down the card. */ 818 1.1 nonaka return 1; 819 1.1 nonaka } 820 1.1 nonaka 821 1.1 nonaka void 822 1.1 nonaka sdmmc_delay(u_int usecs) 823 1.1 nonaka { 824 1.1 nonaka 825 1.1 nonaka delay(usecs); 826 1.1 nonaka } 827 1.1 nonaka 828 1.39 mlelstv void 829 1.39 mlelstv sdmmc_pause(u_int usecs, kmutex_t *lock) 830 1.39 mlelstv { 831 1.39 mlelstv unsigned ticks = mstohz(usecs/1000); 832 1.39 mlelstv 833 1.39 mlelstv if (cold || ticks < 1) 834 1.39 mlelstv delay(usecs); 835 1.39 mlelstv else 836 1.39 mlelstv kpause("sdmmcdelay", false, ticks, lock); 837 1.39 mlelstv } 838 1.39 mlelstv 839 1.1 nonaka int 840 1.2 nonaka sdmmc_app_command(struct sdmmc_softc *sc, struct sdmmc_function *sf, struct sdmmc_command *cmd) 841 1.1 nonaka { 842 1.1 nonaka struct sdmmc_command acmd; 843 1.1 nonaka int error; 844 1.1 nonaka 845 1.1 nonaka DPRINTF(1,("sdmmc_app_command: start\n")); 846 1.1 nonaka 847 1.1 nonaka /* Don't lock */ 848 1.1 nonaka 849 1.1 nonaka memset(&acmd, 0, sizeof(acmd)); 850 1.1 nonaka acmd.c_opcode = MMC_APP_CMD; 851 1.22 nonaka acmd.c_arg = (sf != NULL) ? (sf->rca << 16) : 0; 852 1.33 mlelstv acmd.c_flags = SCF_CMD_AC | SCF_RSP_R1 | SCF_RSP_SPI_R1 | (cmd->c_flags & SCF_TOUT_OK); 853 1.1 nonaka 854 1.1 nonaka error = sdmmc_mmc_command(sc, &acmd); 855 1.1 nonaka if (error == 0) { 856 1.2 nonaka if (!ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE) && 857 1.2 nonaka !ISSET(MMC_R1(acmd.c_resp), MMC_R1_APP_CMD)) { 858 1.1 nonaka /* Card does not support application commands. */ 859 1.1 nonaka error = ENODEV; 860 1.1 nonaka } else { 861 1.1 nonaka error = sdmmc_mmc_command(sc, cmd); 862 1.1 nonaka } 863 1.1 nonaka } 864 1.1 nonaka DPRINTF(1,("sdmmc_app_command: done (error=%d)\n", error)); 865 1.1 nonaka return error; 866 1.1 nonaka } 867 1.1 nonaka 868 1.1 nonaka /* 869 1.1 nonaka * Execute MMC command and data transfers. All interactions with the 870 1.1 nonaka * host controller to complete the command happen in the context of 871 1.1 nonaka * the current process. 872 1.1 nonaka */ 873 1.1 nonaka int 874 1.1 nonaka sdmmc_mmc_command(struct sdmmc_softc *sc, struct sdmmc_command *cmd) 875 1.1 nonaka { 876 1.1 nonaka int error; 877 1.1 nonaka 878 1.2 nonaka DPRINTF(1,("sdmmc_mmc_command: cmd=%d, arg=%#x, flags=%#x\n", 879 1.1 nonaka cmd->c_opcode, cmd->c_arg, cmd->c_flags)); 880 1.1 nonaka 881 1.1 nonaka /* Don't lock */ 882 1.1 nonaka 883 1.1 nonaka #if defined(DIAGNOSTIC) || defined(SDMMC_DEBUG) 884 1.2 nonaka if (cmd->c_data && !ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE)) { 885 1.1 nonaka if (sc->sc_card == NULL) 886 1.1 nonaka panic("%s: deselected card\n", DEVNAME(sc)); 887 1.1 nonaka } 888 1.1 nonaka #endif 889 1.1 nonaka 890 1.1 nonaka sdmmc_chip_exec_command(sc->sc_sct, sc->sc_sch, cmd); 891 1.1 nonaka 892 1.1 nonaka #ifdef SDMMC_DEBUG 893 1.1 nonaka sdmmc_dump_command(sc, cmd); 894 1.1 nonaka #endif 895 1.1 nonaka 896 1.1 nonaka error = cmd->c_error; 897 1.1 nonaka 898 1.1 nonaka DPRINTF(1,("sdmmc_mmc_command: error=%d\n", error)); 899 1.1 nonaka 900 1.31 mlelstv if (error && 901 1.31 mlelstv (cmd->c_opcode == MMC_READ_BLOCK_MULTIPLE || 902 1.31 mlelstv cmd->c_opcode == MMC_WRITE_BLOCK_MULTIPLE)) { 903 1.31 mlelstv sdmmc_stop_transmission(sc); 904 1.31 mlelstv } 905 1.31 mlelstv 906 1.1 nonaka return error; 907 1.1 nonaka } 908 1.1 nonaka 909 1.1 nonaka /* 910 1.31 mlelstv * Send the "STOP TRANSMISSION" command 911 1.31 mlelstv */ 912 1.31 mlelstv void 913 1.31 mlelstv sdmmc_stop_transmission(struct sdmmc_softc *sc) 914 1.31 mlelstv { 915 1.31 mlelstv struct sdmmc_command cmd; 916 1.31 mlelstv 917 1.31 mlelstv DPRINTF(1,("sdmmc_stop_transmission\n")); 918 1.31 mlelstv 919 1.31 mlelstv /* Don't lock */ 920 1.31 mlelstv 921 1.31 mlelstv memset(&cmd, 0, sizeof(cmd)); 922 1.31 mlelstv cmd.c_opcode = MMC_STOP_TRANSMISSION; 923 1.31 mlelstv cmd.c_flags = SCF_CMD_AC | SCF_RSP_R1B | SCF_RSP_SPI_R1B; 924 1.31 mlelstv 925 1.31 mlelstv (void)sdmmc_mmc_command(sc, &cmd); 926 1.31 mlelstv } 927 1.31 mlelstv 928 1.31 mlelstv /* 929 1.1 nonaka * Send the "GO IDLE STATE" command. 930 1.1 nonaka */ 931 1.1 nonaka void 932 1.1 nonaka sdmmc_go_idle_state(struct sdmmc_softc *sc) 933 1.1 nonaka { 934 1.1 nonaka struct sdmmc_command cmd; 935 1.1 nonaka 936 1.1 nonaka DPRINTF(1,("sdmmc_go_idle_state\n")); 937 1.1 nonaka 938 1.1 nonaka /* Don't lock */ 939 1.1 nonaka 940 1.1 nonaka memset(&cmd, 0, sizeof(cmd)); 941 1.1 nonaka cmd.c_opcode = MMC_GO_IDLE_STATE; 942 1.2 nonaka cmd.c_flags = SCF_CMD_BC | SCF_RSP_R0 | SCF_RSP_SPI_R1; 943 1.1 nonaka 944 1.1 nonaka (void)sdmmc_mmc_command(sc, &cmd); 945 1.1 nonaka } 946 1.1 nonaka 947 1.1 nonaka /* 948 1.1 nonaka * Retrieve (SD) or set (MMC) the relative card address (RCA). 949 1.1 nonaka */ 950 1.1 nonaka int 951 1.1 nonaka sdmmc_set_relative_addr(struct sdmmc_softc *sc, struct sdmmc_function *sf) 952 1.1 nonaka { 953 1.1 nonaka struct sdmmc_command cmd; 954 1.1 nonaka int error; 955 1.1 nonaka 956 1.1 nonaka /* Don't lock */ 957 1.1 nonaka 958 1.27 mlelstv if (ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE)) { 959 1.39 mlelstv device_printf(sc->sc_dev, 960 1.44 gutterid "sdmmc_set_relative_addr: SMC_CAPS_SPI_MODE set\n"); 961 1.2 nonaka return EIO; 962 1.27 mlelstv } 963 1.2 nonaka 964 1.1 nonaka memset(&cmd, 0, sizeof(cmd)); 965 1.1 nonaka if (ISSET(sc->sc_flags, SMF_SD_MODE)) { 966 1.1 nonaka cmd.c_opcode = SD_SEND_RELATIVE_ADDR; 967 1.1 nonaka cmd.c_flags = SCF_CMD_BCR | SCF_RSP_R6; 968 1.1 nonaka } else { 969 1.1 nonaka cmd.c_opcode = MMC_SET_RELATIVE_ADDR; 970 1.1 nonaka cmd.c_arg = MMC_ARG_RCA(sf->rca); 971 1.1 nonaka cmd.c_flags = SCF_CMD_AC | SCF_RSP_R1; 972 1.1 nonaka } 973 1.1 nonaka error = sdmmc_mmc_command(sc, &cmd); 974 1.1 nonaka if (error) 975 1.1 nonaka return error; 976 1.1 nonaka 977 1.1 nonaka if (ISSET(sc->sc_flags, SMF_SD_MODE)) 978 1.1 nonaka sf->rca = SD_R6_RCA(cmd.c_resp); 979 1.1 nonaka 980 1.1 nonaka return 0; 981 1.1 nonaka } 982 1.1 nonaka 983 1.1 nonaka int 984 1.1 nonaka sdmmc_select_card(struct sdmmc_softc *sc, struct sdmmc_function *sf) 985 1.1 nonaka { 986 1.1 nonaka struct sdmmc_command cmd; 987 1.1 nonaka int error; 988 1.1 nonaka 989 1.1 nonaka /* Don't lock */ 990 1.1 nonaka 991 1.27 mlelstv if (ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE)) { 992 1.39 mlelstv device_printf(sc->sc_dev, 993 1.44 gutterid "sdmmc_select_card: SMC_CAPS_SPI_MODE set\n"); 994 1.2 nonaka return EIO; 995 1.27 mlelstv } 996 1.2 nonaka 997 1.1 nonaka if (sc->sc_card == sf 998 1.1 nonaka || (sf && sc->sc_card && sc->sc_card->rca == sf->rca)) { 999 1.1 nonaka sc->sc_card = sf; 1000 1.1 nonaka return 0; 1001 1.1 nonaka } 1002 1.1 nonaka 1003 1.1 nonaka memset(&cmd, 0, sizeof(cmd)); 1004 1.1 nonaka cmd.c_opcode = MMC_SELECT_CARD; 1005 1.1 nonaka cmd.c_arg = (sf == NULL) ? 0 : MMC_ARG_RCA(sf->rca); 1006 1.1 nonaka cmd.c_flags = SCF_CMD_AC | ((sf == NULL) ? SCF_RSP_R0 : SCF_RSP_R1); 1007 1.1 nonaka error = sdmmc_mmc_command(sc, &cmd); 1008 1.1 nonaka if (error == 0 || sf == NULL) 1009 1.1 nonaka sc->sc_card = sf; 1010 1.1 nonaka 1011 1.39 mlelstv if (error) { 1012 1.39 mlelstv device_printf(sc->sc_dev, 1013 1.44 gutterid "sdmmc_select_card: error %d\n", error); 1014 1.39 mlelstv } 1015 1.39 mlelstv 1016 1.1 nonaka return error; 1017 1.1 nonaka } 1018 1.1 nonaka 1019 1.1 nonaka #ifdef SDMMC_DEBUG 1020 1.1 nonaka static void 1021 1.1 nonaka sdmmc_dump_command(struct sdmmc_softc *sc, struct sdmmc_command *cmd) 1022 1.1 nonaka { 1023 1.1 nonaka int i; 1024 1.1 nonaka 1025 1.2 nonaka DPRINTF(1,("%s: cmd %u arg=%#x data=%p dlen=%d flags=%#x (error %d)\n", 1026 1.1 nonaka DEVNAME(sc), cmd->c_opcode, cmd->c_arg, cmd->c_data, 1027 1.2 nonaka cmd->c_datalen, cmd->c_flags, cmd->c_error)); 1028 1.1 nonaka 1029 1.1 nonaka if (cmd->c_error || sdmmcdebug < 1) 1030 1.1 nonaka return; 1031 1.1 nonaka 1032 1.1 nonaka aprint_normal_dev(sc->sc_dev, "resp="); 1033 1.1 nonaka if (ISSET(cmd->c_flags, SCF_RSP_136)) 1034 1.1 nonaka for (i = 0; i < sizeof cmd->c_resp; i++) 1035 1.1 nonaka aprint_normal("%02x ", ((uint8_t *)cmd->c_resp)[i]); 1036 1.1 nonaka else if (ISSET(cmd->c_flags, SCF_RSP_PRESENT)) 1037 1.1 nonaka for (i = 0; i < 4; i++) 1038 1.1 nonaka aprint_normal("%02x ", ((uint8_t *)cmd->c_resp)[i]); 1039 1.2 nonaka else 1040 1.2 nonaka aprint_normal("none"); 1041 1.1 nonaka aprint_normal("\n"); 1042 1.1 nonaka } 1043 1.2 nonaka 1044 1.2 nonaka void 1045 1.2 nonaka sdmmc_dump_data(const char *title, void *ptr, size_t size) 1046 1.2 nonaka { 1047 1.2 nonaka char buf[16]; 1048 1.2 nonaka uint8_t *p = ptr; 1049 1.2 nonaka int i, j; 1050 1.2 nonaka 1051 1.2 nonaka printf("sdmmc_dump_data: %s\n", title ? title : ""); 1052 1.2 nonaka printf("--------+--------------------------------------------------+------------------+\n"); 1053 1.2 nonaka printf("offset | +0 +1 +2 +3 +4 +5 +6 +7 +8 +9 +a +b +c +d +e +f | data |\n"); 1054 1.2 nonaka printf("--------+--------------------------------------------------+------------------+\n"); 1055 1.2 nonaka for (i = 0; i < (int)size; i++) { 1056 1.2 nonaka if ((i % 16) == 0) { 1057 1.2 nonaka printf("%08x| ", i); 1058 1.2 nonaka } else if ((i % 16) == 8) { 1059 1.2 nonaka printf(" "); 1060 1.2 nonaka } 1061 1.2 nonaka 1062 1.2 nonaka printf("%02x ", p[i]); 1063 1.2 nonaka buf[i % 16] = p[i]; 1064 1.2 nonaka 1065 1.2 nonaka if ((i % 16) == 15) { 1066 1.2 nonaka printf("| "); 1067 1.2 nonaka for (j = 0; j < 16; j++) { 1068 1.2 nonaka if (buf[j] >= 0x20 && buf[j] <= 0x7e) { 1069 1.2 nonaka printf("%c", buf[j]); 1070 1.2 nonaka } else { 1071 1.2 nonaka printf("."); 1072 1.2 nonaka } 1073 1.2 nonaka } 1074 1.2 nonaka printf(" |\n"); 1075 1.2 nonaka } 1076 1.2 nonaka } 1077 1.2 nonaka if ((i % 16) != 0) { 1078 1.2 nonaka j = (i % 16); 1079 1.2 nonaka for (; j < 16; j++) { 1080 1.2 nonaka printf(" "); 1081 1.2 nonaka if ((j % 16) == 8) { 1082 1.2 nonaka printf(" "); 1083 1.2 nonaka } 1084 1.2 nonaka } 1085 1.2 nonaka 1086 1.2 nonaka printf("| "); 1087 1.2 nonaka for (j = 0; j < (i % 16); j++) { 1088 1.2 nonaka if (buf[j] >= 0x20 && buf[j] <= 0x7e) { 1089 1.2 nonaka printf("%c", buf[j]); 1090 1.2 nonaka } else { 1091 1.2 nonaka printf("."); 1092 1.2 nonaka } 1093 1.2 nonaka } 1094 1.2 nonaka for (; j < 16; j++) { 1095 1.2 nonaka printf(" "); 1096 1.2 nonaka } 1097 1.2 nonaka printf(" |\n"); 1098 1.2 nonaka } 1099 1.2 nonaka printf("--------+--------------------------------------------------+------------------+\n"); 1100 1.2 nonaka } 1101 1.1 nonaka #endif 1102