sdhc_acpi.c revision 1.15 1 1.15 jmcneill /* $NetBSD: sdhc_acpi.c,v 1.15 2021/12/28 13:41:12 jmcneill Exp $ */
2 1.1 nonaka
3 1.1 nonaka /*
4 1.1 nonaka * Copyright (c) 2016 Kimihiro Nonaka <nonaka (at) NetBSD.org>
5 1.1 nonaka * All rights reserved.
6 1.1 nonaka *
7 1.1 nonaka * Redistribution and use in source and binary forms, with or without
8 1.1 nonaka * modification, are permitted provided that the following conditions
9 1.1 nonaka * are met:
10 1.1 nonaka * 1. Redistributions of source code must retain the above copyright
11 1.1 nonaka * notice, this list of conditions and the following disclaimer.
12 1.1 nonaka * 2. The name of the author may not be used to endorse or promote products
13 1.1 nonaka * derived from this software without specific prior written permission.
14 1.1 nonaka *
15 1.1 nonaka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16 1.1 nonaka * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17 1.1 nonaka * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18 1.1 nonaka * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19 1.1 nonaka * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
20 1.1 nonaka * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
21 1.1 nonaka * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
22 1.1 nonaka * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
23 1.1 nonaka * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 1.1 nonaka * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 1.1 nonaka * SUCH DAMAGE.
26 1.1 nonaka */
27 1.1 nonaka
28 1.1 nonaka #include <sys/cdefs.h>
29 1.15 jmcneill __KERNEL_RCSID(0, "$NetBSD: sdhc_acpi.c,v 1.15 2021/12/28 13:41:12 jmcneill Exp $");
30 1.1 nonaka
31 1.1 nonaka #include <sys/param.h>
32 1.1 nonaka #include <sys/device.h>
33 1.1 nonaka #include <sys/systm.h>
34 1.1 nonaka #include <sys/kmem.h>
35 1.1 nonaka
36 1.1 nonaka #include <dev/acpi/acpireg.h>
37 1.1 nonaka #include <dev/acpi/acpivar.h>
38 1.6 jmcneill #include <dev/acpi/acpi_intr.h>
39 1.1 nonaka
40 1.1 nonaka #include <dev/sdmmc/sdhcreg.h>
41 1.1 nonaka #include <dev/sdmmc/sdhcvar.h>
42 1.1 nonaka #include <dev/sdmmc/sdmmcvar.h>
43 1.1 nonaka
44 1.11 jmcneill /* Freescale ESDHC */
45 1.11 jmcneill #define SDHC_ESDHC_FLAGS \
46 1.11 jmcneill (SDHC_FLAG_HAVE_DVS|SDHC_FLAG_NO_PWR0|SDHC_FLAG_32BIT_ACCESS|SDHC_FLAG_ENHANCED)
47 1.11 jmcneill
48 1.1 nonaka #define _COMPONENT ACPI_RESOURCE_COMPONENT
49 1.1 nonaka ACPI_MODULE_NAME ("sdhc_acpi")
50 1.1 nonaka
51 1.1 nonaka static int sdhc_acpi_match(device_t, cfdata_t, void *);
52 1.1 nonaka static void sdhc_acpi_attach(device_t, device_t, void *);
53 1.1 nonaka static int sdhc_acpi_detach(device_t, int);
54 1.1 nonaka static bool sdhc_acpi_resume(device_t, const pmf_qual_t *);
55 1.1 nonaka
56 1.1 nonaka struct sdhc_acpi_softc {
57 1.1 nonaka struct sdhc_softc sc;
58 1.4 nonaka bus_space_tag_t sc_memt;
59 1.4 nonaka bus_space_handle_t sc_memh;
60 1.4 nonaka bus_size_t sc_memsize;
61 1.6 jmcneill void *sc_ih;
62 1.1 nonaka
63 1.1 nonaka ACPI_HANDLE sc_crs, sc_srs;
64 1.1 nonaka ACPI_BUFFER sc_crs_buffer;
65 1.1 nonaka };
66 1.1 nonaka
67 1.1 nonaka CFATTACH_DECL_NEW(sdhc_acpi, sizeof(struct sdhc_acpi_softc),
68 1.1 nonaka sdhc_acpi_match, sdhc_acpi_attach, sdhc_acpi_detach, NULL);
69 1.1 nonaka
70 1.4 nonaka static void sdhc_acpi_intel_emmc_hw_reset(struct sdhc_softc *,
71 1.4 nonaka struct sdhc_host *);
72 1.4 nonaka
73 1.4 nonaka static const struct sdhc_acpi_slot {
74 1.4 nonaka const char *hid;
75 1.4 nonaka const char *uid;
76 1.4 nonaka int type;
77 1.4 nonaka #define SLOT_TYPE_SD 0 /* SD or SDIO */
78 1.4 nonaka #define SLOT_TYPE_EMMC 1 /* eMMC */
79 1.11 jmcneill uint32_t flags;
80 1.4 nonaka } sdhc_acpi_slot_map[] = {
81 1.13 christos { .hid = "80865ACA", .type = SLOT_TYPE_SD },
82 1.13 christos { .hid = "80865ACC", .type = SLOT_TYPE_EMMC },
83 1.13 christos { .hid = "80865AD0", .type = SLOT_TYPE_SD },
84 1.13 christos { .hid = "80860F14", .uid = "1", .type = SLOT_TYPE_EMMC },
85 1.13 christos { .hid = "80860F14", .uid = "3", .type = SLOT_TYPE_SD },
86 1.13 christos { .hid = "80860F16", .type = SLOT_TYPE_SD },
87 1.13 christos { .hid = "INT33BB", .uid = "2", .type = SLOT_TYPE_SD },
88 1.13 christos { .hid = "INT33BB", .uid = "3", .type = SLOT_TYPE_SD },
89 1.13 christos { .hid = "INT33C6", .type = SLOT_TYPE_SD },
90 1.13 christos { .hid = "INT3436", .type = SLOT_TYPE_SD },
91 1.13 christos { .hid = "INT344D", .type = SLOT_TYPE_SD },
92 1.13 christos { .hid = "NXP0003", .uid = "0", .type = SLOT_TYPE_SD,
93 1.13 christos .flags = SDHC_ESDHC_FLAGS },
94 1.14 tnn { .hid = "NXP0003", .uid = "1", .type = SLOT_TYPE_EMMC,
95 1.13 christos .flags = SDHC_ESDHC_FLAGS },
96 1.13 christos
97 1.11 jmcneill /* Generic IDs last */
98 1.13 christos { .hid = "PNP0D40", .type = SLOT_TYPE_SD },
99 1.13 christos { .hid = "PNP0FFF", .uid = "3", .type = SLOT_TYPE_SD },
100 1.4 nonaka };
101 1.1 nonaka
102 1.4 nonaka static const struct sdhc_acpi_slot *
103 1.4 nonaka sdhc_acpi_find_slot(ACPI_DEVICE_INFO *ad)
104 1.4 nonaka {
105 1.4 nonaka const struct sdhc_acpi_slot *slot;
106 1.4 nonaka const char *hid, *uid;
107 1.4 nonaka size_t i;
108 1.4 nonaka
109 1.4 nonaka hid = ad->HardwareId.String;
110 1.4 nonaka uid = ad->UniqueId.String;
111 1.4 nonaka
112 1.4 nonaka if (!(ad->Valid & ACPI_VALID_HID) || hid == NULL)
113 1.4 nonaka return NULL;
114 1.4 nonaka
115 1.4 nonaka for (i = 0; i < __arraycount(sdhc_acpi_slot_map); i++) {
116 1.4 nonaka slot = &sdhc_acpi_slot_map[i];
117 1.10 jmcneill const char * const slot_id[] = { slot->hid, NULL };
118 1.10 jmcneill if (acpi_match_hid(ad, slot_id)) {
119 1.4 nonaka if (slot->uid == NULL ||
120 1.4 nonaka ((ad->Valid & ACPI_VALID_UID) != 0 &&
121 1.4 nonaka uid != NULL &&
122 1.4 nonaka strcmp(uid, slot->uid) == 0))
123 1.4 nonaka return slot;
124 1.4 nonaka }
125 1.4 nonaka }
126 1.4 nonaka return NULL;
127 1.4 nonaka }
128 1.1 nonaka
129 1.1 nonaka static int
130 1.1 nonaka sdhc_acpi_match(device_t parent, cfdata_t match, void *opaque)
131 1.1 nonaka {
132 1.1 nonaka struct acpi_attach_args *aa = opaque;
133 1.1 nonaka
134 1.1 nonaka if (aa->aa_node->ad_type != ACPI_TYPE_DEVICE)
135 1.1 nonaka return 0;
136 1.1 nonaka
137 1.4 nonaka return sdhc_acpi_find_slot(aa->aa_node->ad_devinfo) != NULL;
138 1.1 nonaka }
139 1.1 nonaka
140 1.1 nonaka static void
141 1.1 nonaka sdhc_acpi_attach(device_t parent, device_t self, void *opaque)
142 1.1 nonaka {
143 1.1 nonaka struct sdhc_acpi_softc *sc = device_private(self);
144 1.1 nonaka struct acpi_attach_args *aa = opaque;
145 1.4 nonaka const struct sdhc_acpi_slot *slot;
146 1.1 nonaka struct acpi_resources res;
147 1.1 nonaka struct acpi_mem *mem;
148 1.1 nonaka struct acpi_irq *irq;
149 1.1 nonaka ACPI_STATUS rv;
150 1.9 jmcneill ACPI_INTEGER clock_freq;
151 1.1 nonaka
152 1.1 nonaka sc->sc.sc_dev = self;
153 1.1 nonaka sc->sc.sc_dmat = aa->aa_dmat;
154 1.1 nonaka sc->sc.sc_host = NULL;
155 1.4 nonaka sc->sc_memt = aa->aa_memt;
156 1.1 nonaka
157 1.4 nonaka slot = sdhc_acpi_find_slot(aa->aa_node->ad_devinfo);
158 1.4 nonaka if (slot->type == SLOT_TYPE_EMMC)
159 1.4 nonaka sc->sc.sc_vendor_hw_reset = sdhc_acpi_intel_emmc_hw_reset;
160 1.4 nonaka
161 1.1 nonaka rv = acpi_resource_parse(self, aa->aa_node->ad_handle, "_CRS",
162 1.1 nonaka &res, &acpi_resource_parse_ops_default);
163 1.1 nonaka if (ACPI_FAILURE(rv))
164 1.1 nonaka return;
165 1.1 nonaka
166 1.1 nonaka AcpiGetHandle(aa->aa_node->ad_handle, "_CRS", &sc->sc_crs);
167 1.1 nonaka AcpiGetHandle(aa->aa_node->ad_handle, "_SRS", &sc->sc_srs);
168 1.1 nonaka if (sc->sc_crs && sc->sc_srs) {
169 1.1 nonaka /* XXX Why need this? */
170 1.1 nonaka sc->sc_crs_buffer.Pointer = NULL;
171 1.1 nonaka sc->sc_crs_buffer.Length = ACPI_ALLOCATE_LOCAL_BUFFER;
172 1.1 nonaka rv = AcpiGetCurrentResources(sc->sc_crs, &sc->sc_crs_buffer);
173 1.1 nonaka if (ACPI_FAILURE(rv))
174 1.1 nonaka sc->sc_crs = sc->sc_srs = NULL;
175 1.1 nonaka }
176 1.1 nonaka
177 1.1 nonaka mem = acpi_res_mem(&res, 0);
178 1.1 nonaka irq = acpi_res_irq(&res, 0);
179 1.1 nonaka if (mem == NULL || irq == NULL) {
180 1.1 nonaka aprint_error_dev(self, "incomplete resources\n");
181 1.1 nonaka goto cleanup;
182 1.1 nonaka }
183 1.5 mlelstv if (mem->ar_length == 0) {
184 1.5 mlelstv aprint_error_dev(self, "zero length memory resource\n");
185 1.5 mlelstv goto cleanup;
186 1.5 mlelstv }
187 1.4 nonaka sc->sc_memsize = mem->ar_length;
188 1.1 nonaka
189 1.4 nonaka if (bus_space_map(sc->sc_memt, mem->ar_base, sc->sc_memsize, 0,
190 1.4 nonaka &sc->sc_memh)) {
191 1.1 nonaka aprint_error_dev(self, "couldn't map registers\n");
192 1.1 nonaka goto cleanup;
193 1.1 nonaka }
194 1.1 nonaka
195 1.7 kre sc->sc_ih = acpi_intr_establish(self,
196 1.7 kre (uint64_t)(uintptr_t)aa->aa_node->ad_handle,
197 1.6 jmcneill IPL_BIO, false, sdhc_intr, &sc->sc, device_xname(self));
198 1.6 jmcneill if (sc->sc_ih == NULL) {
199 1.1 nonaka aprint_error_dev(self,
200 1.1 nonaka "couldn't establish interrupt handler\n");
201 1.4 nonaka goto unmap;
202 1.1 nonaka }
203 1.1 nonaka
204 1.8 chs sc->sc.sc_host = kmem_zalloc(sizeof(struct sdhc_host *), KM_SLEEP);
205 1.1 nonaka
206 1.11 jmcneill sc->sc.sc_flags |= slot->flags;
207 1.11 jmcneill
208 1.3 nonaka /* Enable DMA transfer */
209 1.3 nonaka sc->sc.sc_flags |= SDHC_FLAG_USE_DMA;
210 1.3 nonaka
211 1.9 jmcneill /* Read clock frequency from device properties */
212 1.9 jmcneill rv = acpi_dsd_integer(aa->aa_node->ad_handle, "clock-frequency",
213 1.9 jmcneill &clock_freq);
214 1.15 jmcneill if (ACPI_SUCCESS(rv)) {
215 1.9 jmcneill sc->sc.sc_clkbase = clock_freq / 1000;
216 1.15 jmcneill sc->sc.sc_flags |= SDHC_FLAG_NO_CLKBASE;
217 1.15 jmcneill }
218 1.9 jmcneill
219 1.4 nonaka if (sdhc_host_found(&sc->sc, sc->sc_memt, sc->sc_memh,
220 1.4 nonaka sc->sc_memsize) != 0) {
221 1.1 nonaka aprint_error_dev(self, "couldn't initialize host\n");
222 1.4 nonaka goto fail;
223 1.1 nonaka }
224 1.1 nonaka
225 1.1 nonaka if (!pmf_device_register1(self, sdhc_suspend, sdhc_acpi_resume,
226 1.1 nonaka sdhc_shutdown)) {
227 1.1 nonaka aprint_error_dev(self, "couldn't establish powerhook\n");
228 1.1 nonaka }
229 1.1 nonaka
230 1.1 nonaka acpi_resource_cleanup(&res);
231 1.1 nonaka return;
232 1.1 nonaka
233 1.4 nonaka fail:
234 1.4 nonaka if (sc->sc.sc_host != NULL)
235 1.4 nonaka kmem_free(sc->sc.sc_host, sizeof(struct sdhc_host *));
236 1.4 nonaka sc->sc.sc_host = NULL;
237 1.6 jmcneill if (sc->sc_ih != NULL)
238 1.6 jmcneill acpi_intr_disestablish(sc->sc_ih);
239 1.6 jmcneill sc->sc_ih = NULL;
240 1.4 nonaka unmap:
241 1.4 nonaka bus_space_unmap(sc->sc_memt, sc->sc_memh, sc->sc_memsize);
242 1.4 nonaka sc->sc_memsize = 0;
243 1.1 nonaka cleanup:
244 1.1 nonaka if (sc->sc_crs_buffer.Pointer)
245 1.1 nonaka ACPI_FREE(sc->sc_crs_buffer.Pointer);
246 1.4 nonaka sc->sc_crs_buffer.Pointer = NULL;
247 1.4 nonaka acpi_resource_cleanup(&res);
248 1.1 nonaka }
249 1.1 nonaka
250 1.1 nonaka static int
251 1.1 nonaka sdhc_acpi_detach(device_t self, int flags)
252 1.1 nonaka {
253 1.1 nonaka struct sdhc_acpi_softc *sc = device_private(self);
254 1.1 nonaka int rv;
255 1.1 nonaka
256 1.1 nonaka pmf_device_deregister(self);
257 1.1 nonaka
258 1.1 nonaka rv = sdhc_detach(&sc->sc, flags);
259 1.1 nonaka if (rv)
260 1.1 nonaka return rv;
261 1.1 nonaka
262 1.6 jmcneill if (sc->sc_ih != NULL)
263 1.6 jmcneill acpi_intr_disestablish(sc->sc_ih);
264 1.1 nonaka
265 1.1 nonaka if (sc->sc.sc_host != NULL)
266 1.1 nonaka kmem_free(sc->sc.sc_host, sizeof(struct sdhc_host *));
267 1.1 nonaka
268 1.4 nonaka if (sc->sc_memsize > 0)
269 1.4 nonaka bus_space_unmap(sc->sc_memt, sc->sc_memh, sc->sc_memsize);
270 1.4 nonaka
271 1.4 nonaka if (sc->sc_crs_buffer.Pointer)
272 1.4 nonaka ACPI_FREE(sc->sc_crs_buffer.Pointer);
273 1.4 nonaka
274 1.1 nonaka return 0;
275 1.1 nonaka }
276 1.1 nonaka
277 1.1 nonaka static bool
278 1.1 nonaka sdhc_acpi_resume(device_t self, const pmf_qual_t *qual)
279 1.1 nonaka {
280 1.1 nonaka struct sdhc_acpi_softc *sc = device_private(self);
281 1.1 nonaka ACPI_STATUS rv;
282 1.1 nonaka
283 1.1 nonaka if (sc->sc_crs && sc->sc_srs) {
284 1.1 nonaka rv = AcpiSetCurrentResources(sc->sc_srs, &sc->sc_crs_buffer);
285 1.1 nonaka if (ACPI_FAILURE(rv))
286 1.1 nonaka printf("%s: _SRS failed: %s\n",
287 1.1 nonaka device_xname(self), AcpiFormatException(rv));
288 1.1 nonaka }
289 1.1 nonaka
290 1.1 nonaka return sdhc_resume(self, qual);
291 1.1 nonaka }
292 1.1 nonaka
293 1.4 nonaka static void
294 1.4 nonaka sdhc_acpi_intel_emmc_hw_reset(struct sdhc_softc *sc, struct sdhc_host *hp)
295 1.4 nonaka {
296 1.4 nonaka kmutex_t *plock = sdhc_host_lock(hp);
297 1.4 nonaka uint8_t reg;
298 1.4 nonaka
299 1.4 nonaka mutex_enter(plock);
300 1.4 nonaka
301 1.4 nonaka reg = sdhc_host_read_1(hp, SDHC_POWER_CTL);
302 1.4 nonaka reg |= 0x10;
303 1.4 nonaka sdhc_host_write_1(hp, SDHC_POWER_CTL, reg);
304 1.4 nonaka
305 1.4 nonaka sdmmc_delay(10);
306 1.4 nonaka
307 1.4 nonaka reg &= ~0x10;
308 1.4 nonaka sdhc_host_write_1(hp, SDHC_POWER_CTL, reg);
309 1.4 nonaka
310 1.4 nonaka sdmmc_delay(1000);
311 1.4 nonaka
312 1.4 nonaka mutex_exit(plock);
313 1.4 nonaka }
314