mmc.c revision 254425
1/*-
2 * Copyright (c) 2006 Bernd Walter.  All rights reserved.
3 * Copyright (c) 2006 M. Warner Losh.  All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
15 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
16 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
17 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
18 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
19 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
20 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
21 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
22 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
23 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
24 *
25 * Portions of this software may have been developed with reference to
26 * the SD Simplified Specification.  The following disclaimer may apply:
27 *
28 * The following conditions apply to the release of the simplified
29 * specification ("Simplified Specification") by the SD Card Association and
30 * the SD Group. The Simplified Specification is a subset of the complete SD
31 * Specification which is owned by the SD Card Association and the SD
32 * Group. This Simplified Specification is provided on a non-confidential
33 * basis subject to the disclaimers below. Any implementation of the
34 * Simplified Specification may require a license from the SD Card
35 * Association, SD Group, SD-3C LLC or other third parties.
36 *
37 * Disclaimers:
38 *
39 * The information contained in the Simplified Specification is presented only
40 * as a standard specification for SD Cards and SD Host/Ancillary products and
41 * is provided "AS-IS" without any representations or warranties of any
42 * kind. No responsibility is assumed by the SD Group, SD-3C LLC or the SD
43 * Card Association for any damages, any infringements of patents or other
44 * right of the SD Group, SD-3C LLC, the SD Card Association or any third
45 * parties, which may result from its use. No license is granted by
46 * implication, estoppel or otherwise under any patent or other rights of the
47 * SD Group, SD-3C LLC, the SD Card Association or any third party. Nothing
48 * herein shall be construed as an obligation by the SD Group, the SD-3C LLC
49 * or the SD Card Association to disclose or distribute any technical
50 * information, know-how or other confidential information to any third party.
51 */
52
53#include <sys/cdefs.h>
54__FBSDID("$FreeBSD: head/sys/dev/mmc/mmc.c 254425 2013-08-16 20:22:57Z ian $");
55
56#include <sys/param.h>
57#include <sys/systm.h>
58#include <sys/kernel.h>
59#include <sys/malloc.h>
60#include <sys/lock.h>
61#include <sys/module.h>
62#include <sys/mutex.h>
63#include <sys/bus.h>
64#include <sys/endian.h>
65#include <sys/sysctl.h>
66
67#include <dev/mmc/mmcreg.h>
68#include <dev/mmc/mmcbrvar.h>
69#include <dev/mmc/mmcvar.h>
70#include "mmcbr_if.h"
71#include "mmcbus_if.h"
72
73struct mmc_softc {
74	device_t dev;
75	struct mtx sc_mtx;
76	struct intr_config_hook config_intrhook;
77	device_t owner;
78	uint32_t last_rca;
79};
80
81/*
82 * Per-card data
83 */
84struct mmc_ivars {
85	uint32_t raw_cid[4];	/* Raw bits of the CID */
86	uint32_t raw_csd[4];	/* Raw bits of the CSD */
87	uint32_t raw_scr[2];	/* Raw bits of the SCR */
88	uint8_t raw_ext_csd[512];	/* Raw bits of the EXT_CSD */
89	uint32_t raw_sd_status[16];	/* Raw bits of the SD_STATUS */
90	uint16_t rca;
91	enum mmc_card_mode mode;
92	struct mmc_cid cid;	/* cid decoded */
93	struct mmc_csd csd;	/* csd decoded */
94	struct mmc_scr scr;	/* scr decoded */
95	struct mmc_sd_status sd_status;	/* SD_STATUS decoded */
96	u_char read_only;	/* True when the device is read-only */
97	u_char bus_width;	/* Bus width to use */
98	u_char timing;		/* Bus timing support */
99	u_char high_cap;	/* High Capacity card (block addressed) */
100	uint32_t sec_count;	/* Card capacity in 512byte blocks */
101	uint32_t tran_speed;	/* Max speed in normal mode */
102	uint32_t hs_tran_speed;	/* Max speed in high speed mode */
103	uint32_t erase_sector;	/* Card native erase sector size */
104	char card_id_string[64];/* Formatted CID info (serial, MFG, etc) */
105};
106
107#define CMD_RETRIES	3
108
109static SYSCTL_NODE(_hw, OID_AUTO, mmc, CTLFLAG_RD, NULL, "mmc driver");
110
111static int mmc_debug;
112SYSCTL_INT(_hw_mmc, OID_AUTO, debug, CTLFLAG_RW, &mmc_debug, 0, "Debug level");
113
114/* bus entry points */
115static int mmc_acquire_bus(device_t busdev, device_t dev);
116static int mmc_attach(device_t dev);
117static int mmc_child_location_str(device_t dev, device_t child, char *buf,
118    size_t buflen);
119static int mmc_detach(device_t dev);
120static int mmc_probe(device_t dev);
121static int mmc_read_ivar(device_t bus, device_t child, int which,
122    uintptr_t *result);
123static int mmc_release_bus(device_t busdev, device_t dev);
124static int mmc_resume(device_t dev);
125static int mmc_suspend(device_t dev);
126static int mmc_wait_for_request(device_t brdev, device_t reqdev,
127    struct mmc_request *req);
128static int mmc_write_ivar(device_t bus, device_t child, int which,
129    uintptr_t value);
130
131#define MMC_LOCK(_sc)		mtx_lock(&(_sc)->sc_mtx)
132#define	MMC_UNLOCK(_sc)		mtx_unlock(&(_sc)->sc_mtx)
133#define MMC_LOCK_INIT(_sc)					\
134	mtx_init(&_sc->sc_mtx, device_get_nameunit(_sc->dev),	\
135	    "mmc", MTX_DEF)
136#define MMC_LOCK_DESTROY(_sc)	mtx_destroy(&_sc->sc_mtx);
137#define MMC_ASSERT_LOCKED(_sc)	mtx_assert(&_sc->sc_mtx, MA_OWNED);
138#define MMC_ASSERT_UNLOCKED(_sc) mtx_assert(&_sc->sc_mtx, MA_NOTOWNED);
139
140static int mmc_all_send_cid(struct mmc_softc *sc, uint32_t *rawcid);
141static void mmc_app_decode_scr(uint32_t *raw_scr, struct mmc_scr *scr);
142static void mmc_app_decode_sd_status(uint32_t *raw_sd_status,
143    struct mmc_sd_status *sd_status);
144static int mmc_app_sd_status(struct mmc_softc *sc, uint16_t rca,
145    uint32_t *rawsdstatus);
146static int mmc_app_send_scr(struct mmc_softc *sc, uint16_t rca,
147    uint32_t *rawscr);
148static int mmc_calculate_clock(struct mmc_softc *sc);
149static void mmc_decode_cid_mmc(uint32_t *raw_cid, struct mmc_cid *cid);
150static void mmc_decode_cid_sd(uint32_t *raw_cid, struct mmc_cid *cid);
151static void mmc_decode_csd_mmc(uint32_t *raw_csd, struct mmc_csd *csd);
152static void mmc_decode_csd_sd(uint32_t *raw_csd, struct mmc_csd *csd);
153static void mmc_delayed_attach(void *xsc);
154static int mmc_delete_cards(struct mmc_softc *sc);
155static void mmc_discover_cards(struct mmc_softc *sc);
156static void mmc_format_card_id_string(struct mmc_ivars *ivar);
157static void mmc_go_discovery(struct mmc_softc *sc);
158static uint32_t mmc_get_bits(uint32_t *bits, int bit_len, int start,
159    int size);
160static int mmc_highest_voltage(uint32_t ocr);
161static void mmc_idle_cards(struct mmc_softc *sc);
162static void mmc_ms_delay(int ms);
163static void mmc_log_card(device_t dev, struct mmc_ivars *ivar, int newcard);
164static void mmc_power_down(struct mmc_softc *sc);
165static void mmc_power_up(struct mmc_softc *sc);
166static void mmc_rescan_cards(struct mmc_softc *sc);
167static void mmc_scan(struct mmc_softc *sc);
168static int mmc_sd_switch(struct mmc_softc *sc, uint8_t mode, uint8_t grp,
169    uint8_t value, uint8_t *res);
170static int mmc_select_card(struct mmc_softc *sc, uint16_t rca);
171static uint32_t mmc_select_vdd(struct mmc_softc *sc, uint32_t ocr);
172static int mmc_send_app_op_cond(struct mmc_softc *sc, uint32_t ocr,
173    uint32_t *rocr);
174static int mmc_send_csd(struct mmc_softc *sc, uint16_t rca, uint32_t *rawcsd);
175static int mmc_send_ext_csd(struct mmc_softc *sc, uint8_t *rawextcsd);
176static int mmc_send_if_cond(struct mmc_softc *sc, uint8_t vhs);
177static int mmc_send_op_cond(struct mmc_softc *sc, uint32_t ocr,
178    uint32_t *rocr);
179static int mmc_send_relative_addr(struct mmc_softc *sc, uint32_t *resp);
180static int mmc_send_status(struct mmc_softc *sc, uint16_t rca,
181    uint32_t *status);
182static int mmc_set_blocklen(struct mmc_softc *sc, uint32_t len);
183static int mmc_set_card_bus_width(struct mmc_softc *sc, uint16_t rca,
184    int width);
185static int mmc_set_relative_addr(struct mmc_softc *sc, uint16_t resp);
186static int mmc_set_timing(struct mmc_softc *sc, int timing);
187static int mmc_switch(struct mmc_softc *sc, uint8_t set, uint8_t index,
188    uint8_t value);
189static int mmc_test_bus_width(struct mmc_softc *sc);
190static int mmc_wait_for_app_cmd(struct mmc_softc *sc, uint32_t rca,
191    struct mmc_command *cmd, int retries);
192static int mmc_wait_for_cmd(struct mmc_softc *sc, struct mmc_command *cmd,
193    int retries);
194static int mmc_wait_for_command(struct mmc_softc *sc, uint32_t opcode,
195    uint32_t arg, uint32_t flags, uint32_t *resp, int retries);
196static int mmc_wait_for_req(struct mmc_softc *sc, struct mmc_request *req);
197static void mmc_wakeup(struct mmc_request *req);
198
199static void
200mmc_ms_delay(int ms)
201{
202
203	DELAY(1000 * ms);	/* XXX BAD */
204}
205
206static int
207mmc_probe(device_t dev)
208{
209
210	device_set_desc(dev, "MMC/SD bus");
211	return (0);
212}
213
214static int
215mmc_attach(device_t dev)
216{
217	struct mmc_softc *sc;
218
219	sc = device_get_softc(dev);
220	sc->dev = dev;
221	MMC_LOCK_INIT(sc);
222
223	/* We'll probe and attach our children later, but before / mount */
224	sc->config_intrhook.ich_func = mmc_delayed_attach;
225	sc->config_intrhook.ich_arg = sc;
226	if (config_intrhook_establish(&sc->config_intrhook) != 0)
227		device_printf(dev, "config_intrhook_establish failed\n");
228	return (0);
229}
230
231static int
232mmc_detach(device_t dev)
233{
234	struct mmc_softc *sc = device_get_softc(dev);
235	int err;
236
237	if ((err = mmc_delete_cards(sc)) != 0)
238		return (err);
239	mmc_power_down(sc);
240	MMC_LOCK_DESTROY(sc);
241
242	return (0);
243}
244
245static int
246mmc_suspend(device_t dev)
247{
248	struct mmc_softc *sc = device_get_softc(dev);
249	int err;
250
251	err = bus_generic_suspend(dev);
252	if (err)
253	        return (err);
254	mmc_power_down(sc);
255	return (0);
256}
257
258static int
259mmc_resume(device_t dev)
260{
261	struct mmc_softc *sc = device_get_softc(dev);
262
263	mmc_scan(sc);
264	return (bus_generic_resume(dev));
265}
266
267static int
268mmc_acquire_bus(device_t busdev, device_t dev)
269{
270	struct mmc_softc *sc;
271	struct mmc_ivars *ivar;
272	int err;
273	int rca;
274
275	err = MMCBR_ACQUIRE_HOST(device_get_parent(busdev), busdev);
276	if (err)
277		return (err);
278	sc = device_get_softc(busdev);
279	MMC_LOCK(sc);
280	if (sc->owner)
281		panic("mmc: host bridge didn't serialize us.");
282	sc->owner = dev;
283	MMC_UNLOCK(sc);
284
285	if (busdev != dev) {
286		/*
287		 * Keep track of the last rca that we've selected.  If
288		 * we're asked to do it again, don't.  We never
289		 * unselect unless the bus code itself wants the mmc
290		 * bus, and constantly reselecting causes problems.
291		 */
292		rca = mmc_get_rca(dev);
293		if (sc->last_rca != rca) {
294			mmc_select_card(sc, rca);
295			sc->last_rca = rca;
296			/* Prepare bus width for the new card. */
297			ivar = device_get_ivars(dev);
298			if (bootverbose || mmc_debug) {
299				device_printf(busdev,
300				    "setting bus width to %d bits\n",
301				    (ivar->bus_width == bus_width_4) ? 4 :
302				    (ivar->bus_width == bus_width_8) ? 8 : 1);
303			}
304			mmc_set_card_bus_width(sc, rca, ivar->bus_width);
305			mmcbr_set_bus_width(busdev, ivar->bus_width);
306			mmcbr_update_ios(busdev);
307		}
308	} else {
309		/*
310		 * If there's a card selected, stand down.
311		 */
312		if (sc->last_rca != 0) {
313			mmc_select_card(sc, 0);
314			sc->last_rca = 0;
315		}
316	}
317
318	return (0);
319}
320
321static int
322mmc_release_bus(device_t busdev, device_t dev)
323{
324	struct mmc_softc *sc;
325	int err;
326
327	sc = device_get_softc(busdev);
328
329	MMC_LOCK(sc);
330	if (!sc->owner)
331		panic("mmc: releasing unowned bus.");
332	if (sc->owner != dev)
333		panic("mmc: you don't own the bus.  game over.");
334	MMC_UNLOCK(sc);
335	err = MMCBR_RELEASE_HOST(device_get_parent(busdev), busdev);
336	if (err)
337		return (err);
338	MMC_LOCK(sc);
339	sc->owner = NULL;
340	MMC_UNLOCK(sc);
341	return (0);
342}
343
344static uint32_t
345mmc_select_vdd(struct mmc_softc *sc, uint32_t ocr)
346{
347
348	return (ocr & MMC_OCR_VOLTAGE);
349}
350
351static int
352mmc_highest_voltage(uint32_t ocr)
353{
354	int i;
355
356	for (i = MMC_OCR_MAX_VOLTAGE_SHIFT;
357	    i >= MMC_OCR_MIN_VOLTAGE_SHIFT; i--)
358		if (ocr & (1 << i))
359			return (i);
360	return (-1);
361}
362
363static void
364mmc_wakeup(struct mmc_request *req)
365{
366	struct mmc_softc *sc;
367
368	sc = (struct mmc_softc *)req->done_data;
369	MMC_LOCK(sc);
370	req->flags |= MMC_REQ_DONE;
371	MMC_UNLOCK(sc);
372	wakeup(req);
373}
374
375static int
376mmc_wait_for_req(struct mmc_softc *sc, struct mmc_request *req)
377{
378
379	req->done = mmc_wakeup;
380	req->done_data = sc;
381	if (mmc_debug > 1) {
382		device_printf(sc->dev, "REQUEST: CMD%d arg %#x flags %#x",
383		    req->cmd->opcode, req->cmd->arg, req->cmd->flags);
384		if (req->cmd->data) {
385			printf(" data %d\n", (int)req->cmd->data->len);
386		} else
387			printf("\n");
388	}
389	MMCBR_REQUEST(device_get_parent(sc->dev), sc->dev, req);
390	MMC_LOCK(sc);
391	while ((req->flags & MMC_REQ_DONE) == 0)
392		msleep(req, &sc->sc_mtx, 0, "mmcreq", 0);
393	MMC_UNLOCK(sc);
394	if (mmc_debug > 2 || (mmc_debug > 1 && req->cmd->error))
395		device_printf(sc->dev, "RESULT: %d\n", req->cmd->error);
396	return (0);
397}
398
399static int
400mmc_wait_for_request(device_t brdev, device_t reqdev, struct mmc_request *req)
401{
402	struct mmc_softc *sc = device_get_softc(brdev);
403
404	return (mmc_wait_for_req(sc, req));
405}
406
407static int
408mmc_wait_for_cmd(struct mmc_softc *sc, struct mmc_command *cmd, int retries)
409{
410	struct mmc_request mreq;
411
412	memset(&mreq, 0, sizeof(mreq));
413	memset(cmd->resp, 0, sizeof(cmd->resp));
414	cmd->retries = retries;
415	cmd->mrq = &mreq;
416	mreq.cmd = cmd;
417	mmc_wait_for_req(sc, &mreq);
418	return (cmd->error);
419}
420
421static int
422mmc_wait_for_app_cmd(struct mmc_softc *sc, uint32_t rca,
423    struct mmc_command *cmd, int retries)
424{
425	struct mmc_command appcmd;
426	int err = MMC_ERR_NONE, i;
427
428	for (i = 0; i <= retries; i++) {
429		appcmd.opcode = MMC_APP_CMD;
430		appcmd.arg = rca << 16;
431		appcmd.flags = MMC_RSP_R1 | MMC_CMD_AC;
432		appcmd.data = NULL;
433		mmc_wait_for_cmd(sc, &appcmd, 0);
434		err = appcmd.error;
435		if (err != MMC_ERR_NONE)
436			continue;
437		if (!(appcmd.resp[0] & R1_APP_CMD))
438			return MMC_ERR_FAILED;
439		mmc_wait_for_cmd(sc, cmd, 0);
440		err = cmd->error;
441		if (err == MMC_ERR_NONE)
442			break;
443	}
444	return (err);
445}
446
447static int
448mmc_wait_for_command(struct mmc_softc *sc, uint32_t opcode,
449    uint32_t arg, uint32_t flags, uint32_t *resp, int retries)
450{
451	struct mmc_command cmd;
452	int err;
453
454	memset(&cmd, 0, sizeof(cmd));
455	cmd.opcode = opcode;
456	cmd.arg = arg;
457	cmd.flags = flags;
458	cmd.data = NULL;
459	err = mmc_wait_for_cmd(sc, &cmd, retries);
460	if (err)
461		return (err);
462	if (cmd.error)
463		return (cmd.error);
464	if (resp) {
465		if (flags & MMC_RSP_136)
466			memcpy(resp, cmd.resp, 4 * sizeof(uint32_t));
467		else
468			*resp = cmd.resp[0];
469	}
470	return (0);
471}
472
473static void
474mmc_idle_cards(struct mmc_softc *sc)
475{
476	device_t dev;
477	struct mmc_command cmd;
478
479	dev = sc->dev;
480	mmcbr_set_chip_select(dev, cs_high);
481	mmcbr_update_ios(dev);
482	mmc_ms_delay(1);
483
484	memset(&cmd, 0, sizeof(cmd));
485	cmd.opcode = MMC_GO_IDLE_STATE;
486	cmd.arg = 0;
487	cmd.flags = MMC_RSP_NONE | MMC_CMD_BC;
488	cmd.data = NULL;
489	mmc_wait_for_cmd(sc, &cmd, 0);
490	mmc_ms_delay(1);
491
492	mmcbr_set_chip_select(dev, cs_dontcare);
493	mmcbr_update_ios(dev);
494	mmc_ms_delay(1);
495}
496
497static int
498mmc_send_app_op_cond(struct mmc_softc *sc, uint32_t ocr, uint32_t *rocr)
499{
500	struct mmc_command cmd;
501	int err = MMC_ERR_NONE, i;
502
503	memset(&cmd, 0, sizeof(cmd));
504	cmd.opcode = ACMD_SD_SEND_OP_COND;
505	cmd.arg = ocr;
506	cmd.flags = MMC_RSP_R3 | MMC_CMD_BCR;
507	cmd.data = NULL;
508
509	for (i = 0; i < 1000; i++) {
510		err = mmc_wait_for_app_cmd(sc, 0, &cmd, CMD_RETRIES);
511		if (err != MMC_ERR_NONE)
512			break;
513		if ((cmd.resp[0] & MMC_OCR_CARD_BUSY) ||
514		    (ocr & MMC_OCR_VOLTAGE) == 0)
515			break;
516		err = MMC_ERR_TIMEOUT;
517		mmc_ms_delay(10);
518	}
519	if (rocr && err == MMC_ERR_NONE)
520		*rocr = cmd.resp[0];
521	return (err);
522}
523
524static int
525mmc_send_op_cond(struct mmc_softc *sc, uint32_t ocr, uint32_t *rocr)
526{
527	struct mmc_command cmd;
528	int err = MMC_ERR_NONE, i;
529
530	memset(&cmd, 0, sizeof(cmd));
531	cmd.opcode = MMC_SEND_OP_COND;
532	cmd.arg = ocr;
533	cmd.flags = MMC_RSP_R3 | MMC_CMD_BCR;
534	cmd.data = NULL;
535
536	for (i = 0; i < 1000; i++) {
537		err = mmc_wait_for_cmd(sc, &cmd, CMD_RETRIES);
538		if (err != MMC_ERR_NONE)
539			break;
540		if ((cmd.resp[0] & MMC_OCR_CARD_BUSY) ||
541		    (ocr & MMC_OCR_VOLTAGE) == 0)
542			break;
543		err = MMC_ERR_TIMEOUT;
544		mmc_ms_delay(10);
545	}
546	if (rocr && err == MMC_ERR_NONE)
547		*rocr = cmd.resp[0];
548	return (err);
549}
550
551static int
552mmc_send_if_cond(struct mmc_softc *sc, uint8_t vhs)
553{
554	struct mmc_command cmd;
555	int err;
556
557	memset(&cmd, 0, sizeof(cmd));
558	cmd.opcode = SD_SEND_IF_COND;
559	cmd.arg = (vhs << 8) + 0xAA;
560	cmd.flags = MMC_RSP_R7 | MMC_CMD_BCR;
561	cmd.data = NULL;
562
563	err = mmc_wait_for_cmd(sc, &cmd, CMD_RETRIES);
564	return (err);
565}
566
567static void
568mmc_power_up(struct mmc_softc *sc)
569{
570	device_t dev;
571
572	dev = sc->dev;
573	mmcbr_set_vdd(dev, mmc_highest_voltage(mmcbr_get_host_ocr(dev)));
574	mmcbr_set_bus_mode(dev, opendrain);
575	mmcbr_set_chip_select(dev, cs_dontcare);
576	mmcbr_set_bus_width(dev, bus_width_1);
577	mmcbr_set_power_mode(dev, power_up);
578	mmcbr_set_clock(dev, 0);
579	mmcbr_update_ios(dev);
580	mmc_ms_delay(1);
581
582	mmcbr_set_clock(dev, mmcbr_get_f_min(sc->dev));
583	mmcbr_set_timing(dev, bus_timing_normal);
584	mmcbr_set_power_mode(dev, power_on);
585	mmcbr_update_ios(dev);
586	mmc_ms_delay(2);
587}
588
589static void
590mmc_power_down(struct mmc_softc *sc)
591{
592	device_t dev = sc->dev;
593
594	mmcbr_set_bus_mode(dev, opendrain);
595	mmcbr_set_chip_select(dev, cs_dontcare);
596	mmcbr_set_bus_width(dev, bus_width_1);
597	mmcbr_set_power_mode(dev, power_off);
598	mmcbr_set_clock(dev, 0);
599	mmcbr_set_timing(dev, bus_timing_normal);
600	mmcbr_update_ios(dev);
601}
602
603static int
604mmc_select_card(struct mmc_softc *sc, uint16_t rca)
605{
606	int flags;
607
608	flags = (rca ? MMC_RSP_R1B : MMC_RSP_NONE) | MMC_CMD_AC;
609	return (mmc_wait_for_command(sc, MMC_SELECT_CARD, (uint32_t)rca << 16,
610	    flags, NULL, CMD_RETRIES));
611}
612
613static int
614mmc_switch(struct mmc_softc *sc, uint8_t set, uint8_t index, uint8_t value)
615{
616	struct mmc_command cmd;
617	int err;
618
619	cmd.opcode = MMC_SWITCH_FUNC;
620	cmd.arg = (MMC_SWITCH_FUNC_WR << 24) |
621	    (index << 16) |
622	    (value << 8) |
623	    set;
624	cmd.flags = MMC_RSP_R1B | MMC_CMD_AC;
625	cmd.data = NULL;
626	err = mmc_wait_for_cmd(sc, &cmd, 0);
627	return (err);
628}
629
630static int
631mmc_sd_switch(struct mmc_softc *sc, uint8_t mode, uint8_t grp, uint8_t value,
632    uint8_t *res)
633{
634	int err;
635	struct mmc_command cmd;
636	struct mmc_data data;
637
638	memset(&cmd, 0, sizeof(struct mmc_command));
639	memset(&data, 0, sizeof(struct mmc_data));
640	memset(res, 0, 64);
641
642	cmd.opcode = SD_SWITCH_FUNC;
643	cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
644	cmd.arg = mode << 31;			/* 0 - check, 1 - set */
645	cmd.arg |= 0x00FFFFFF;
646	cmd.arg &= ~(0xF << (grp * 4));
647	cmd.arg |= value << (grp * 4);
648	cmd.data = &data;
649
650	data.data = res;
651	data.len = 64;
652	data.flags = MMC_DATA_READ;
653
654	err = mmc_wait_for_cmd(sc, &cmd, CMD_RETRIES);
655	return (err);
656}
657
658static int
659mmc_set_card_bus_width(struct mmc_softc *sc, uint16_t rca, int width)
660{
661	struct mmc_command cmd;
662	int err;
663	uint8_t	value;
664
665	if (mmcbr_get_mode(sc->dev) == mode_sd) {
666		memset(&cmd, 0, sizeof(struct mmc_command));
667		cmd.opcode = ACMD_SET_CLR_CARD_DETECT;
668		cmd.flags = MMC_RSP_R1 | MMC_CMD_AC;
669		cmd.arg = SD_CLR_CARD_DETECT;
670		err = mmc_wait_for_app_cmd(sc, rca, &cmd, CMD_RETRIES);
671		if (err != 0)
672			return (err);
673		memset(&cmd, 0, sizeof(struct mmc_command));
674		cmd.opcode = ACMD_SET_BUS_WIDTH;
675		cmd.flags = MMC_RSP_R1 | MMC_CMD_AC;
676		switch (width) {
677		case bus_width_1:
678			cmd.arg = SD_BUS_WIDTH_1;
679			break;
680		case bus_width_4:
681			cmd.arg = SD_BUS_WIDTH_4;
682			break;
683		default:
684			return (MMC_ERR_INVALID);
685		}
686		err = mmc_wait_for_app_cmd(sc, rca, &cmd, CMD_RETRIES);
687	} else {
688		switch (width) {
689		case bus_width_1:
690			value = EXT_CSD_BUS_WIDTH_1;
691			break;
692		case bus_width_4:
693			value = EXT_CSD_BUS_WIDTH_4;
694			break;
695		case bus_width_8:
696			value = EXT_CSD_BUS_WIDTH_8;
697			break;
698		default:
699			return (MMC_ERR_INVALID);
700		}
701		err = mmc_switch(sc, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_BUS_WIDTH,
702		    value);
703	}
704	return (err);
705}
706
707static int
708mmc_set_timing(struct mmc_softc *sc, int timing)
709{
710	int err;
711	uint8_t	value;
712	u_char switch_res[64];
713
714	switch (timing) {
715	case bus_timing_normal:
716		value = 0;
717		break;
718	case bus_timing_hs:
719		value = 1;
720		break;
721	default:
722		return (MMC_ERR_INVALID);
723	}
724	if (mmcbr_get_mode(sc->dev) == mode_sd)
725		err = mmc_sd_switch(sc, SD_SWITCH_MODE_SET, SD_SWITCH_GROUP1,
726		    value, switch_res);
727	else
728		err = mmc_switch(sc, EXT_CSD_CMD_SET_NORMAL,
729		    EXT_CSD_HS_TIMING, value);
730	return (err);
731}
732
733static int
734mmc_test_bus_width(struct mmc_softc *sc)
735{
736	struct mmc_command cmd;
737	struct mmc_data data;
738	int err;
739	uint8_t buf[8];
740	uint8_t	p8[8] =   { 0x55, 0xAA, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
741	uint8_t	p8ok[8] = { 0xAA, 0x55, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
742	uint8_t	p4[4] =   { 0x5A, 0x00, 0x00, 0x00, };
743	uint8_t	p4ok[4] = { 0xA5, 0x00, 0x00, 0x00, };
744
745	if (mmcbr_get_caps(sc->dev) & MMC_CAP_8_BIT_DATA) {
746		mmcbr_set_bus_width(sc->dev, bus_width_8);
747		mmcbr_update_ios(sc->dev);
748
749		cmd.opcode = MMC_BUSTEST_W;
750		cmd.arg = 0;
751		cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
752		cmd.data = &data;
753
754		data.data = p8;
755		data.len = 8;
756		data.flags = MMC_DATA_WRITE;
757		mmc_wait_for_cmd(sc, &cmd, 0);
758
759		cmd.opcode = MMC_BUSTEST_R;
760		cmd.arg = 0;
761		cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
762		cmd.data = &data;
763
764		data.data = buf;
765		data.len = 8;
766		data.flags = MMC_DATA_READ;
767		err = mmc_wait_for_cmd(sc, &cmd, 0);
768
769		mmcbr_set_bus_width(sc->dev, bus_width_1);
770		mmcbr_update_ios(sc->dev);
771
772		if (err == MMC_ERR_NONE && memcmp(buf, p8ok, 8) == 0)
773			return (bus_width_8);
774	}
775
776	if (mmcbr_get_caps(sc->dev) & MMC_CAP_4_BIT_DATA) {
777		mmcbr_set_bus_width(sc->dev, bus_width_4);
778		mmcbr_update_ios(sc->dev);
779
780		cmd.opcode = MMC_BUSTEST_W;
781		cmd.arg = 0;
782		cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
783		cmd.data = &data;
784
785		data.data = p4;
786		data.len = 4;
787		data.flags = MMC_DATA_WRITE;
788		mmc_wait_for_cmd(sc, &cmd, 0);
789
790		cmd.opcode = MMC_BUSTEST_R;
791		cmd.arg = 0;
792		cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
793		cmd.data = &data;
794
795		data.data = buf;
796		data.len = 4;
797		data.flags = MMC_DATA_READ;
798		err = mmc_wait_for_cmd(sc, &cmd, 0);
799
800		mmcbr_set_bus_width(sc->dev, bus_width_1);
801		mmcbr_update_ios(sc->dev);
802
803		if (err == MMC_ERR_NONE && memcmp(buf, p4ok, 4) == 0)
804			return (bus_width_4);
805	}
806	return (bus_width_1);
807}
808
809static uint32_t
810mmc_get_bits(uint32_t *bits, int bit_len, int start, int size)
811{
812	const int i = (bit_len / 32) - (start / 32) - 1;
813	const int shift = start & 31;
814	uint32_t retval = bits[i] >> shift;
815	if (size + shift > 32)
816		retval |= bits[i - 1] << (32 - shift);
817	return (retval & ((1llu << size) - 1));
818}
819
820static void
821mmc_decode_cid_sd(uint32_t *raw_cid, struct mmc_cid *cid)
822{
823	int i;
824
825	/* There's no version info, so we take it on faith */
826	memset(cid, 0, sizeof(*cid));
827	cid->mid = mmc_get_bits(raw_cid, 128, 120, 8);
828	cid->oid = mmc_get_bits(raw_cid, 128, 104, 16);
829	for (i = 0; i < 5; i++)
830		cid->pnm[i] = mmc_get_bits(raw_cid, 128, 96 - i * 8, 8);
831	cid->pnm[5] = 0;
832	cid->prv = mmc_get_bits(raw_cid, 128, 56, 8);
833	cid->psn = mmc_get_bits(raw_cid, 128, 24, 32);
834	cid->mdt_year = mmc_get_bits(raw_cid, 128, 12, 8) + 2000;
835	cid->mdt_month = mmc_get_bits(raw_cid, 128, 8, 4);
836}
837
838static void
839mmc_decode_cid_mmc(uint32_t *raw_cid, struct mmc_cid *cid)
840{
841	int i;
842
843	/* There's no version info, so we take it on faith */
844	memset(cid, 0, sizeof(*cid));
845	cid->mid = mmc_get_bits(raw_cid, 128, 120, 8);
846	cid->oid = mmc_get_bits(raw_cid, 128, 104, 8);
847	for (i = 0; i < 6; i++)
848		cid->pnm[i] = mmc_get_bits(raw_cid, 128, 96 - i * 8, 8);
849	cid->pnm[6] = 0;
850	cid->prv = mmc_get_bits(raw_cid, 128, 48, 8);
851	cid->psn = mmc_get_bits(raw_cid, 128, 16, 32);
852	cid->mdt_month = mmc_get_bits(raw_cid, 128, 12, 4);
853	cid->mdt_year = mmc_get_bits(raw_cid, 128, 8, 4) + 1997;
854}
855
856static void
857mmc_format_card_id_string(struct mmc_ivars *ivar)
858{
859	char oidstr[8];
860	uint8_t c1;
861	uint8_t c2;
862
863	/*
864	 * Format a card ID string for use by the mmcsd driver, it's what
865	 * appears between the <> in the following:
866	 * mmcsd0: 968MB <SD SD01G 8.0 SN 2686905 Mfg 08/2008 by 3 TN> at mmc0
867	 * 22.5MHz/4bit/128-block
868	 *
869	 * The card_id_string in mmc_ivars is currently allocated as 64 bytes,
870	 * and our max formatted length is currently 55 bytes if every field
871	 * contains the largest value.
872	 *
873	 * Sometimes the oid is two printable ascii chars; when it's not,
874	 * format it as 0xnnnn instead.
875	 */
876	c1 = (ivar->cid.oid >> 8) & 0x0ff;
877	c2 = ivar->cid.oid & 0x0ff;
878	if (c1 > 0x1f && c1 < 0x7f && c2 > 0x1f && c2 < 0x7f)
879		snprintf(oidstr, sizeof(oidstr), "%c%c", c1, c2);
880	else
881		snprintf(oidstr, sizeof(oidstr), "0x%04x", ivar->cid.oid);
882	snprintf(ivar->card_id_string, sizeof(ivar->card_id_string),
883	    "%s%s %s %d.%d SN %u MFG %02d/%04d by %d %s",
884	    ivar->mode == mode_sd ? "SD" : "MMC", ivar->high_cap ? "HC" : "",
885	    ivar->cid.pnm, ivar->cid.prv >> 4, ivar->cid.prv & 0x0f,
886	    ivar->cid.psn, ivar->cid.mdt_month, ivar->cid.mdt_year,
887	    ivar->cid.mid, oidstr);
888}
889
890static const int exp[8] = {
891	1, 10, 100, 1000, 10000, 100000, 1000000, 10000000
892};
893
894static const int mant[16] = {
895	0, 10, 12, 13, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 70, 80
896};
897
898static const int cur_min[8] = {
899	500, 1000, 5000, 10000, 25000, 35000, 60000, 100000
900};
901
902static const int cur_max[8] = {
903	1000, 5000, 10000, 25000, 35000, 45000, 800000, 200000
904};
905
906static void
907mmc_decode_csd_sd(uint32_t *raw_csd, struct mmc_csd *csd)
908{
909	int v;
910	int m;
911	int e;
912
913	memset(csd, 0, sizeof(*csd));
914	csd->csd_structure = v = mmc_get_bits(raw_csd, 128, 126, 2);
915	if (v == 0) {
916		m = mmc_get_bits(raw_csd, 128, 115, 4);
917		e = mmc_get_bits(raw_csd, 128, 112, 3);
918		csd->tacc = (exp[e] * mant[m] + 9) / 10;
919		csd->nsac = mmc_get_bits(raw_csd, 128, 104, 8) * 100;
920		m = mmc_get_bits(raw_csd, 128, 99, 4);
921		e = mmc_get_bits(raw_csd, 128, 96, 3);
922		csd->tran_speed = exp[e] * 10000 * mant[m];
923		csd->ccc = mmc_get_bits(raw_csd, 128, 84, 12);
924		csd->read_bl_len = 1 << mmc_get_bits(raw_csd, 128, 80, 4);
925		csd->read_bl_partial = mmc_get_bits(raw_csd, 128, 79, 1);
926		csd->write_blk_misalign = mmc_get_bits(raw_csd, 128, 78, 1);
927		csd->read_blk_misalign = mmc_get_bits(raw_csd, 128, 77, 1);
928		csd->dsr_imp = mmc_get_bits(raw_csd, 128, 76, 1);
929		csd->vdd_r_curr_min = cur_min[mmc_get_bits(raw_csd, 128, 59, 3)];
930		csd->vdd_r_curr_max = cur_max[mmc_get_bits(raw_csd, 128, 56, 3)];
931		csd->vdd_w_curr_min = cur_min[mmc_get_bits(raw_csd, 128, 53, 3)];
932		csd->vdd_w_curr_max = cur_max[mmc_get_bits(raw_csd, 128, 50, 3)];
933		m = mmc_get_bits(raw_csd, 128, 62, 12);
934		e = mmc_get_bits(raw_csd, 128, 47, 3);
935		csd->capacity = ((1 + m) << (e + 2)) * csd->read_bl_len;
936		csd->erase_blk_en = mmc_get_bits(raw_csd, 128, 46, 1);
937		csd->erase_sector = mmc_get_bits(raw_csd, 128, 39, 7) + 1;
938		csd->wp_grp_size = mmc_get_bits(raw_csd, 128, 32, 7);
939		csd->wp_grp_enable = mmc_get_bits(raw_csd, 128, 31, 1);
940		csd->r2w_factor = 1 << mmc_get_bits(raw_csd, 128, 26, 3);
941		csd->write_bl_len = 1 << mmc_get_bits(raw_csd, 128, 22, 4);
942		csd->write_bl_partial = mmc_get_bits(raw_csd, 128, 21, 1);
943	} else if (v == 1) {
944		m = mmc_get_bits(raw_csd, 128, 115, 4);
945		e = mmc_get_bits(raw_csd, 128, 112, 3);
946		csd->tacc = (exp[e] * mant[m] + 9) / 10;
947		csd->nsac = mmc_get_bits(raw_csd, 128, 104, 8) * 100;
948		m = mmc_get_bits(raw_csd, 128, 99, 4);
949		e = mmc_get_bits(raw_csd, 128, 96, 3);
950		csd->tran_speed = exp[e] * 10000 * mant[m];
951		csd->ccc = mmc_get_bits(raw_csd, 128, 84, 12);
952		csd->read_bl_len = 1 << mmc_get_bits(raw_csd, 128, 80, 4);
953		csd->read_bl_partial = mmc_get_bits(raw_csd, 128, 79, 1);
954		csd->write_blk_misalign = mmc_get_bits(raw_csd, 128, 78, 1);
955		csd->read_blk_misalign = mmc_get_bits(raw_csd, 128, 77, 1);
956		csd->dsr_imp = mmc_get_bits(raw_csd, 128, 76, 1);
957		csd->capacity = ((uint64_t)mmc_get_bits(raw_csd, 128, 48, 22) + 1) *
958		    512 * 1024;
959		csd->erase_blk_en = mmc_get_bits(raw_csd, 128, 46, 1);
960		csd->erase_sector = mmc_get_bits(raw_csd, 128, 39, 7) + 1;
961		csd->wp_grp_size = mmc_get_bits(raw_csd, 128, 32, 7);
962		csd->wp_grp_enable = mmc_get_bits(raw_csd, 128, 31, 1);
963		csd->r2w_factor = 1 << mmc_get_bits(raw_csd, 128, 26, 3);
964		csd->write_bl_len = 1 << mmc_get_bits(raw_csd, 128, 22, 4);
965		csd->write_bl_partial = mmc_get_bits(raw_csd, 128, 21, 1);
966	} else
967		panic("unknown SD CSD version");
968}
969
970static void
971mmc_decode_csd_mmc(uint32_t *raw_csd, struct mmc_csd *csd)
972{
973	int m;
974	int e;
975
976	memset(csd, 0, sizeof(*csd));
977	csd->csd_structure = mmc_get_bits(raw_csd, 128, 126, 2);
978	csd->spec_vers = mmc_get_bits(raw_csd, 128, 122, 4);
979	m = mmc_get_bits(raw_csd, 128, 115, 4);
980	e = mmc_get_bits(raw_csd, 128, 112, 3);
981	csd->tacc = exp[e] * mant[m] + 9 / 10;
982	csd->nsac = mmc_get_bits(raw_csd, 128, 104, 8) * 100;
983	m = mmc_get_bits(raw_csd, 128, 99, 4);
984	e = mmc_get_bits(raw_csd, 128, 96, 3);
985	csd->tran_speed = exp[e] * 10000 * mant[m];
986	csd->ccc = mmc_get_bits(raw_csd, 128, 84, 12);
987	csd->read_bl_len = 1 << mmc_get_bits(raw_csd, 128, 80, 4);
988	csd->read_bl_partial = mmc_get_bits(raw_csd, 128, 79, 1);
989	csd->write_blk_misalign = mmc_get_bits(raw_csd, 128, 78, 1);
990	csd->read_blk_misalign = mmc_get_bits(raw_csd, 128, 77, 1);
991	csd->dsr_imp = mmc_get_bits(raw_csd, 128, 76, 1);
992	csd->vdd_r_curr_min = cur_min[mmc_get_bits(raw_csd, 128, 59, 3)];
993	csd->vdd_r_curr_max = cur_max[mmc_get_bits(raw_csd, 128, 56, 3)];
994	csd->vdd_w_curr_min = cur_min[mmc_get_bits(raw_csd, 128, 53, 3)];
995	csd->vdd_w_curr_max = cur_max[mmc_get_bits(raw_csd, 128, 50, 3)];
996	m = mmc_get_bits(raw_csd, 128, 62, 12);
997	e = mmc_get_bits(raw_csd, 128, 47, 3);
998	csd->capacity = ((1 + m) << (e + 2)) * csd->read_bl_len;
999	csd->erase_blk_en = 0;
1000	csd->erase_sector = (mmc_get_bits(raw_csd, 128, 42, 5) + 1) *
1001	    (mmc_get_bits(raw_csd, 128, 37, 5) + 1);
1002	csd->wp_grp_size = mmc_get_bits(raw_csd, 128, 32, 5);
1003	csd->wp_grp_enable = mmc_get_bits(raw_csd, 128, 31, 1);
1004	csd->r2w_factor = 1 << mmc_get_bits(raw_csd, 128, 26, 3);
1005	csd->write_bl_len = 1 << mmc_get_bits(raw_csd, 128, 22, 4);
1006	csd->write_bl_partial = mmc_get_bits(raw_csd, 128, 21, 1);
1007}
1008
1009static void
1010mmc_app_decode_scr(uint32_t *raw_scr, struct mmc_scr *scr)
1011{
1012	unsigned int scr_struct;
1013
1014	memset(scr, 0, sizeof(*scr));
1015
1016	scr_struct = mmc_get_bits(raw_scr, 64, 60, 4);
1017	if (scr_struct != 0) {
1018		printf("Unrecognised SCR structure version %d\n",
1019		    scr_struct);
1020		return;
1021	}
1022	scr->sda_vsn = mmc_get_bits(raw_scr, 64, 56, 4);
1023	scr->bus_widths = mmc_get_bits(raw_scr, 64, 48, 4);
1024}
1025
1026static void
1027mmc_app_decode_sd_status(uint32_t *raw_sd_status,
1028    struct mmc_sd_status *sd_status)
1029{
1030
1031	memset(sd_status, 0, sizeof(*sd_status));
1032
1033	sd_status->bus_width = mmc_get_bits(raw_sd_status, 512, 510, 2);
1034	sd_status->secured_mode = mmc_get_bits(raw_sd_status, 512, 509, 1);
1035	sd_status->card_type = mmc_get_bits(raw_sd_status, 512, 480, 16);
1036	sd_status->prot_area = mmc_get_bits(raw_sd_status, 512, 448, 12);
1037	sd_status->speed_class = mmc_get_bits(raw_sd_status, 512, 440, 8);
1038	sd_status->perf_move = mmc_get_bits(raw_sd_status, 512, 432, 8);
1039	sd_status->au_size = mmc_get_bits(raw_sd_status, 512, 428, 4);
1040	sd_status->erase_size = mmc_get_bits(raw_sd_status, 512, 408, 16);
1041	sd_status->erase_timeout = mmc_get_bits(raw_sd_status, 512, 402, 6);
1042	sd_status->erase_offset = mmc_get_bits(raw_sd_status, 512, 400, 2);
1043}
1044
1045static int
1046mmc_all_send_cid(struct mmc_softc *sc, uint32_t *rawcid)
1047{
1048	struct mmc_command cmd;
1049	int err;
1050
1051	cmd.opcode = MMC_ALL_SEND_CID;
1052	cmd.arg = 0;
1053	cmd.flags = MMC_RSP_R2 | MMC_CMD_BCR;
1054	cmd.data = NULL;
1055	err = mmc_wait_for_cmd(sc, &cmd, 0);
1056	memcpy(rawcid, cmd.resp, 4 * sizeof(uint32_t));
1057	return (err);
1058}
1059
1060static int
1061mmc_send_csd(struct mmc_softc *sc, uint16_t rca, uint32_t *rawcsd)
1062{
1063	struct mmc_command cmd;
1064	int err;
1065
1066	cmd.opcode = MMC_SEND_CSD;
1067	cmd.arg = rca << 16;
1068	cmd.flags = MMC_RSP_R2 | MMC_CMD_BCR;
1069	cmd.data = NULL;
1070	err = mmc_wait_for_cmd(sc, &cmd, 0);
1071	memcpy(rawcsd, cmd.resp, 4 * sizeof(uint32_t));
1072	return (err);
1073}
1074
1075static int
1076mmc_app_send_scr(struct mmc_softc *sc, uint16_t rca, uint32_t *rawscr)
1077{
1078	int err;
1079	struct mmc_command cmd;
1080	struct mmc_data data;
1081
1082	memset(&cmd, 0, sizeof(struct mmc_command));
1083	memset(&data, 0, sizeof(struct mmc_data));
1084
1085	memset(rawscr, 0, 8);
1086	cmd.opcode = ACMD_SEND_SCR;
1087	cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
1088	cmd.arg = 0;
1089	cmd.data = &data;
1090
1091	data.data = rawscr;
1092	data.len = 8;
1093	data.flags = MMC_DATA_READ;
1094
1095	err = mmc_wait_for_app_cmd(sc, rca, &cmd, CMD_RETRIES);
1096	rawscr[0] = be32toh(rawscr[0]);
1097	rawscr[1] = be32toh(rawscr[1]);
1098	return (err);
1099}
1100
1101static int
1102mmc_send_ext_csd(struct mmc_softc *sc, uint8_t *rawextcsd)
1103{
1104	int err;
1105	struct mmc_command cmd;
1106	struct mmc_data data;
1107
1108	memset(&cmd, 0, sizeof(struct mmc_command));
1109	memset(&data, 0, sizeof(struct mmc_data));
1110
1111	memset(rawextcsd, 0, 512);
1112	cmd.opcode = MMC_SEND_EXT_CSD;
1113	cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
1114	cmd.arg = 0;
1115	cmd.data = &data;
1116
1117	data.data = rawextcsd;
1118	data.len = 512;
1119	data.flags = MMC_DATA_READ;
1120
1121	err = mmc_wait_for_cmd(sc, &cmd, CMD_RETRIES);
1122	return (err);
1123}
1124
1125static int
1126mmc_app_sd_status(struct mmc_softc *sc, uint16_t rca, uint32_t *rawsdstatus)
1127{
1128	int err, i;
1129	struct mmc_command cmd;
1130	struct mmc_data data;
1131
1132	memset(&cmd, 0, sizeof(struct mmc_command));
1133	memset(&data, 0, sizeof(struct mmc_data));
1134
1135	memset(rawsdstatus, 0, 64);
1136	cmd.opcode = ACMD_SD_STATUS;
1137	cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
1138	cmd.arg = 0;
1139	cmd.data = &data;
1140
1141	data.data = rawsdstatus;
1142	data.len = 64;
1143	data.flags = MMC_DATA_READ;
1144
1145	err = mmc_wait_for_app_cmd(sc, rca, &cmd, CMD_RETRIES);
1146	for (i = 0; i < 16; i++)
1147	    rawsdstatus[i] = be32toh(rawsdstatus[i]);
1148	return (err);
1149}
1150
1151static int
1152mmc_set_relative_addr(struct mmc_softc *sc, uint16_t resp)
1153{
1154	struct mmc_command cmd;
1155	int err;
1156
1157	cmd.opcode = MMC_SET_RELATIVE_ADDR;
1158	cmd.arg = resp << 16;
1159	cmd.flags = MMC_RSP_R6 | MMC_CMD_BCR;
1160	cmd.data = NULL;
1161	err = mmc_wait_for_cmd(sc, &cmd, 0);
1162	return (err);
1163}
1164
1165static int
1166mmc_send_relative_addr(struct mmc_softc *sc, uint32_t *resp)
1167{
1168	struct mmc_command cmd;
1169	int err;
1170
1171	cmd.opcode = SD_SEND_RELATIVE_ADDR;
1172	cmd.arg = 0;
1173	cmd.flags = MMC_RSP_R6 | MMC_CMD_BCR;
1174	cmd.data = NULL;
1175	err = mmc_wait_for_cmd(sc, &cmd, 0);
1176	*resp = cmd.resp[0];
1177	return (err);
1178}
1179
1180static int
1181mmc_send_status(struct mmc_softc *sc, uint16_t rca, uint32_t *status)
1182{
1183	struct mmc_command cmd;
1184	int err;
1185
1186	cmd.opcode = MMC_SEND_STATUS;
1187	cmd.arg = rca << 16;
1188	cmd.flags = MMC_RSP_R1 | MMC_CMD_AC;
1189	cmd.data = NULL;
1190	err = mmc_wait_for_cmd(sc, &cmd, 0);
1191	*status = cmd.resp[0];
1192	return (err);
1193}
1194
1195static int
1196mmc_set_blocklen(struct mmc_softc *sc, uint32_t len)
1197{
1198	struct mmc_command cmd;
1199	int err;
1200
1201	cmd.opcode = MMC_SET_BLOCKLEN;
1202	cmd.arg = len;
1203	cmd.flags = MMC_RSP_R1 | MMC_CMD_AC;
1204	cmd.data = NULL;
1205	err = mmc_wait_for_cmd(sc, &cmd, 0);
1206	return (err);
1207}
1208
1209static void
1210mmc_log_card(device_t dev, struct mmc_ivars *ivar, int newcard)
1211{
1212	device_printf(dev, "Card at relative address 0x%04x%s:\n",
1213	    ivar->rca, newcard ? " added" : "");
1214	device_printf(dev, " card: %s\n", ivar->card_id_string);
1215	device_printf(dev, " bus: %ubit, %uMHz%s\n",
1216	    (ivar->bus_width == bus_width_1 ? 1 :
1217	    (ivar->bus_width == bus_width_4 ? 4 : 8)),
1218	    (ivar->timing == bus_timing_hs ?
1219		ivar->hs_tran_speed : ivar->tran_speed) / 1000000,
1220	    ivar->timing == bus_timing_hs ? ", high speed timing" : "");
1221	device_printf(dev, " memory: %u blocks, erase sector %u blocks%s\n",
1222	    ivar->sec_count, ivar->erase_sector,
1223	    ivar->read_only ? ", read-only" : "");
1224}
1225
1226static void
1227mmc_discover_cards(struct mmc_softc *sc)
1228{
1229	struct mmc_ivars *ivar = NULL;
1230	device_t *devlist;
1231	int err, i, devcount, newcard;
1232	uint32_t raw_cid[4], resp, sec_count, status;
1233	device_t child;
1234	uint16_t rca = 2;
1235	u_char switch_res[64];
1236
1237	if (bootverbose || mmc_debug)
1238		device_printf(sc->dev, "Probing cards\n");
1239	while (1) {
1240		err = mmc_all_send_cid(sc, raw_cid);
1241		if (err == MMC_ERR_TIMEOUT)
1242			break;
1243		if (err != MMC_ERR_NONE) {
1244			device_printf(sc->dev, "Error reading CID %d\n", err);
1245			break;
1246		}
1247		newcard = 1;
1248		if ((err = device_get_children(sc->dev, &devlist, &devcount)) != 0)
1249			return;
1250		for (i = 0; i < devcount; i++) {
1251			ivar = device_get_ivars(devlist[i]);
1252			if (memcmp(ivar->raw_cid, raw_cid, sizeof(raw_cid)) == 0) {
1253				newcard = 0;
1254				break;
1255			}
1256		}
1257		free(devlist, M_TEMP);
1258		if (bootverbose || mmc_debug) {
1259			device_printf(sc->dev, "%sard detected (CID %08x%08x%08x%08x)\n",
1260			    newcard ? "New c" : "C",
1261			    raw_cid[0], raw_cid[1], raw_cid[2], raw_cid[3]);
1262		}
1263		if (newcard) {
1264			ivar = malloc(sizeof(struct mmc_ivars), M_DEVBUF,
1265			    M_WAITOK | M_ZERO);
1266			memcpy(ivar->raw_cid, raw_cid, sizeof(raw_cid));
1267		}
1268		if (mmcbr_get_ro(sc->dev))
1269			ivar->read_only = 1;
1270		ivar->bus_width = bus_width_1;
1271		ivar->timing = bus_timing_normal;
1272		ivar->mode = mmcbr_get_mode(sc->dev);
1273		if (ivar->mode == mode_sd) {
1274			mmc_decode_cid_sd(ivar->raw_cid, &ivar->cid);
1275			mmc_send_relative_addr(sc, &resp);
1276			ivar->rca = resp >> 16;
1277			/* Get card CSD. */
1278			mmc_send_csd(sc, ivar->rca, ivar->raw_csd);
1279			if (bootverbose || mmc_debug)
1280				device_printf(sc->dev,
1281				    "%sard detected (CSD %08x%08x%08x%08x)\n",
1282				    newcard ? "New c" : "C", ivar->raw_csd[0],
1283				    ivar->raw_csd[1], ivar->raw_csd[2],
1284				    ivar->raw_csd[3]);
1285			mmc_decode_csd_sd(ivar->raw_csd, &ivar->csd);
1286			ivar->sec_count = ivar->csd.capacity / MMC_SECTOR_SIZE;
1287			if (ivar->csd.csd_structure > 0)
1288				ivar->high_cap = 1;
1289			ivar->tran_speed = ivar->csd.tran_speed;
1290			ivar->erase_sector = ivar->csd.erase_sector *
1291			    ivar->csd.write_bl_len / MMC_SECTOR_SIZE;
1292
1293			err = mmc_send_status(sc, ivar->rca, &status);
1294			if (err != MMC_ERR_NONE) {
1295				device_printf(sc->dev,
1296				    "Error reading card status %d\n", err);
1297				break;
1298			}
1299			if ((status & R1_CARD_IS_LOCKED) != 0) {
1300				device_printf(sc->dev,
1301				    "Card is password protected, skipping.\n");
1302				break;
1303			}
1304
1305			/* Get card SCR. Card must be selected to fetch it. */
1306			mmc_select_card(sc, ivar->rca);
1307			mmc_app_send_scr(sc, ivar->rca, ivar->raw_scr);
1308			mmc_app_decode_scr(ivar->raw_scr, &ivar->scr);
1309			/* Get card switch capabilities (command class 10). */
1310			if ((ivar->scr.sda_vsn >= 1) &&
1311			    (ivar->csd.ccc & (1<<10))) {
1312				mmc_sd_switch(sc, SD_SWITCH_MODE_CHECK,
1313				    SD_SWITCH_GROUP1, SD_SWITCH_NOCHANGE,
1314				    switch_res);
1315				if (switch_res[13] & 2) {
1316					ivar->timing = bus_timing_hs;
1317					ivar->hs_tran_speed = SD_MAX_HS;
1318				}
1319			}
1320			mmc_app_sd_status(sc, ivar->rca, ivar->raw_sd_status);
1321			mmc_app_decode_sd_status(ivar->raw_sd_status,
1322			    &ivar->sd_status);
1323			if (ivar->sd_status.au_size != 0) {
1324				ivar->erase_sector =
1325				    16 << ivar->sd_status.au_size;
1326			}
1327			mmc_select_card(sc, 0);
1328			/* Find max supported bus width. */
1329			if ((mmcbr_get_caps(sc->dev) & MMC_CAP_4_BIT_DATA) &&
1330			    (ivar->scr.bus_widths & SD_SCR_BUS_WIDTH_4))
1331				ivar->bus_width = bus_width_4;
1332
1333			/*
1334			 * Some cards that report maximum I/O block sizes
1335			 * greater than 512 require the block length to be
1336			 * set to 512, even though that is supposed to be
1337			 * the default.  Example:
1338			 *
1339			 * Transcend 2GB SDSC card, CID:
1340			 * mid=0x1b oid=0x534d pnm="00000" prv=1.0 mdt=00.2000
1341			 */
1342			if (ivar->csd.read_bl_len != MMC_SECTOR_SIZE ||
1343			    ivar->csd.write_bl_len != MMC_SECTOR_SIZE)
1344				mmc_set_blocklen(sc, MMC_SECTOR_SIZE);
1345
1346			mmc_format_card_id_string(ivar);
1347
1348			if (bootverbose || mmc_debug)
1349				mmc_log_card(sc->dev, ivar, newcard);
1350			if (newcard) {
1351				/* Add device. */
1352				child = device_add_child(sc->dev, NULL, -1);
1353				device_set_ivars(child, ivar);
1354			}
1355			return;
1356		}
1357		mmc_decode_cid_mmc(ivar->raw_cid, &ivar->cid);
1358		ivar->rca = rca++;
1359		mmc_set_relative_addr(sc, ivar->rca);
1360		/* Get card CSD. */
1361		mmc_send_csd(sc, ivar->rca, ivar->raw_csd);
1362		if (bootverbose || mmc_debug)
1363			device_printf(sc->dev,
1364			    "%sard detected (CSD %08x%08x%08x%08x)\n",
1365			    newcard ? "New c" : "C", ivar->raw_csd[0],
1366			    ivar->raw_csd[1], ivar->raw_csd[2],
1367			    ivar->raw_csd[3]);
1368
1369		mmc_decode_csd_mmc(ivar->raw_csd, &ivar->csd);
1370		ivar->sec_count = ivar->csd.capacity / MMC_SECTOR_SIZE;
1371		ivar->tran_speed = ivar->csd.tran_speed;
1372		ivar->erase_sector = ivar->csd.erase_sector *
1373		    ivar->csd.write_bl_len / MMC_SECTOR_SIZE;
1374
1375		err = mmc_send_status(sc, ivar->rca, &status);
1376		if (err != MMC_ERR_NONE) {
1377			device_printf(sc->dev,
1378			    "Error reading card status %d\n", err);
1379			break;
1380		}
1381		if ((status & R1_CARD_IS_LOCKED) != 0) {
1382			device_printf(sc->dev,
1383			    "Card is password protected, skipping.\n");
1384			break;
1385		}
1386
1387		/* Only MMC >= 4.x cards support EXT_CSD. */
1388		if (ivar->csd.spec_vers >= 4) {
1389			/* Card must be selected to fetch EXT_CSD. */
1390			mmc_select_card(sc, ivar->rca);
1391			mmc_send_ext_csd(sc, ivar->raw_ext_csd);
1392			/* Handle extended capacity from EXT_CSD */
1393			sec_count = ivar->raw_ext_csd[EXT_CSD_SEC_CNT] +
1394			    (ivar->raw_ext_csd[EXT_CSD_SEC_CNT + 1] << 8) +
1395			    (ivar->raw_ext_csd[EXT_CSD_SEC_CNT + 2] << 16) +
1396			    (ivar->raw_ext_csd[EXT_CSD_SEC_CNT + 3] << 24);
1397			if (sec_count != 0) {
1398				ivar->sec_count = sec_count;
1399				ivar->high_cap = 1;
1400			}
1401			/* Get card speed in high speed mode. */
1402			ivar->timing = bus_timing_hs;
1403			if (ivar->raw_ext_csd[EXT_CSD_CARD_TYPE]
1404			    & EXT_CSD_CARD_TYPE_52)
1405				ivar->hs_tran_speed = MMC_TYPE_52_MAX_HS;
1406			else if (ivar->raw_ext_csd[EXT_CSD_CARD_TYPE]
1407			    & EXT_CSD_CARD_TYPE_26)
1408				ivar->hs_tran_speed = MMC_TYPE_26_MAX_HS;
1409			else
1410				ivar->hs_tran_speed = ivar->tran_speed;
1411			/* Find max supported bus width. */
1412			ivar->bus_width = mmc_test_bus_width(sc);
1413			mmc_select_card(sc, 0);
1414			/* Handle HC erase sector size. */
1415			if (ivar->raw_ext_csd[EXT_CSD_ERASE_GRP_SIZE] != 0) {
1416				ivar->erase_sector = 1024 *
1417				    ivar->raw_ext_csd[EXT_CSD_ERASE_GRP_SIZE];
1418				mmc_switch(sc, EXT_CSD_CMD_SET_NORMAL,
1419				    EXT_CSD_ERASE_GRP_DEF, 1);
1420			}
1421		} else {
1422			ivar->bus_width = bus_width_1;
1423			ivar->timing = bus_timing_normal;
1424		}
1425
1426		/*
1427		 * Some cards that report maximum I/O block sizes greater
1428		 * than 512 require the block length to be set to 512, even
1429		 * though that is supposed to be the default.  Example:
1430		 *
1431		 * Transcend 2GB SDSC card, CID:
1432		 * mid=0x1b oid=0x534d pnm="00000" prv=1.0 mdt=00.2000
1433		 */
1434		if (ivar->csd.read_bl_len != MMC_SECTOR_SIZE ||
1435		    ivar->csd.write_bl_len != MMC_SECTOR_SIZE)
1436			mmc_set_blocklen(sc, MMC_SECTOR_SIZE);
1437
1438		mmc_format_card_id_string(ivar);
1439
1440		if (bootverbose || mmc_debug)
1441			mmc_log_card(sc->dev, ivar, newcard);
1442		if (newcard) {
1443			/* Add device. */
1444			child = device_add_child(sc->dev, NULL, -1);
1445			device_set_ivars(child, ivar);
1446		}
1447	}
1448}
1449
1450static void
1451mmc_rescan_cards(struct mmc_softc *sc)
1452{
1453	struct mmc_ivars *ivar = NULL;
1454	device_t *devlist;
1455	int err, i, devcount;
1456
1457	if ((err = device_get_children(sc->dev, &devlist, &devcount)) != 0)
1458		return;
1459	for (i = 0; i < devcount; i++) {
1460		ivar = device_get_ivars(devlist[i]);
1461		if (mmc_select_card(sc, ivar->rca)) {
1462			if (bootverbose || mmc_debug)
1463				device_printf(sc->dev, "Card at relative address %d lost.\n",
1464				    ivar->rca);
1465			device_delete_child(sc->dev, devlist[i]);
1466			free(ivar, M_DEVBUF);
1467		}
1468	}
1469	free(devlist, M_TEMP);
1470	mmc_select_card(sc, 0);
1471}
1472
1473static int
1474mmc_delete_cards(struct mmc_softc *sc)
1475{
1476	struct mmc_ivars *ivar;
1477	device_t *devlist;
1478	int err, i, devcount;
1479
1480	if ((err = device_get_children(sc->dev, &devlist, &devcount)) != 0)
1481		return (err);
1482	for (i = 0; i < devcount; i++) {
1483		ivar = device_get_ivars(devlist[i]);
1484		if (bootverbose || mmc_debug)
1485			device_printf(sc->dev, "Card at relative address %d deleted.\n",
1486			    ivar->rca);
1487		device_delete_child(sc->dev, devlist[i]);
1488		free(ivar, M_DEVBUF);
1489	}
1490	free(devlist, M_TEMP);
1491	return (0);
1492}
1493
1494static void
1495mmc_go_discovery(struct mmc_softc *sc)
1496{
1497	uint32_t ocr;
1498	device_t dev;
1499	int err;
1500
1501	dev = sc->dev;
1502	if (mmcbr_get_power_mode(dev) != power_on) {
1503		/*
1504		 * First, try SD modes
1505		 */
1506		mmcbr_set_mode(dev, mode_sd);
1507		mmc_power_up(sc);
1508		mmcbr_set_bus_mode(dev, pushpull);
1509		if (bootverbose || mmc_debug)
1510			device_printf(sc->dev, "Probing bus\n");
1511		mmc_idle_cards(sc);
1512		err = mmc_send_if_cond(sc, 1);
1513		if ((bootverbose || mmc_debug) && err == 0)
1514			device_printf(sc->dev, "SD 2.0 interface conditions: OK\n");
1515		if (mmc_send_app_op_cond(sc, 0, &ocr) != MMC_ERR_NONE) {
1516			if (bootverbose || mmc_debug)
1517				device_printf(sc->dev, "SD probe: failed\n");
1518			/*
1519			 * Failed, try MMC
1520			 */
1521			mmcbr_set_mode(dev, mode_mmc);
1522			if (mmc_send_op_cond(sc, 0, &ocr) != MMC_ERR_NONE) {
1523				if (bootverbose || mmc_debug)
1524					device_printf(sc->dev, "MMC probe: failed\n");
1525				ocr = 0; /* Failed both, powerdown. */
1526			} else if (bootverbose || mmc_debug)
1527				device_printf(sc->dev,
1528				    "MMC probe: OK (OCR: 0x%08x)\n", ocr);
1529		} else if (bootverbose || mmc_debug)
1530			device_printf(sc->dev, "SD probe: OK (OCR: 0x%08x)\n", ocr);
1531
1532		mmcbr_set_ocr(dev, mmc_select_vdd(sc, ocr));
1533		if (mmcbr_get_ocr(dev) != 0)
1534			mmc_idle_cards(sc);
1535	} else {
1536		mmcbr_set_bus_mode(dev, opendrain);
1537		mmcbr_set_clock(dev, mmcbr_get_f_min(dev));
1538		mmcbr_update_ios(dev);
1539		/* XXX recompute vdd based on new cards? */
1540	}
1541	/*
1542	 * Make sure that we have a mutually agreeable voltage to at least
1543	 * one card on the bus.
1544	 */
1545	if (bootverbose || mmc_debug)
1546		device_printf(sc->dev, "Current OCR: 0x%08x\n", mmcbr_get_ocr(dev));
1547	if (mmcbr_get_ocr(dev) == 0) {
1548		mmc_delete_cards(sc);
1549		mmc_power_down(sc);
1550		return;
1551	}
1552	/*
1553	 * Reselect the cards after we've idled them above.
1554	 */
1555	if (mmcbr_get_mode(dev) == mode_sd) {
1556		err = mmc_send_if_cond(sc, 1);
1557		mmc_send_app_op_cond(sc,
1558		    (err ? 0 : MMC_OCR_CCS) | mmcbr_get_ocr(dev), NULL);
1559	} else
1560		mmc_send_op_cond(sc, mmcbr_get_ocr(dev), NULL);
1561	mmc_discover_cards(sc);
1562	mmc_rescan_cards(sc);
1563
1564	mmcbr_set_bus_mode(dev, pushpull);
1565	mmcbr_update_ios(dev);
1566	mmc_calculate_clock(sc);
1567	bus_generic_attach(dev);
1568/*	mmc_update_children_sysctl(dev);*/
1569}
1570
1571static int
1572mmc_calculate_clock(struct mmc_softc *sc)
1573{
1574	int max_dtr, max_hs_dtr, max_timing;
1575	int nkid, i, f_min, f_max;
1576	device_t *kids;
1577	struct mmc_ivars *ivar;
1578
1579	f_min = mmcbr_get_f_min(sc->dev);
1580	f_max = mmcbr_get_f_max(sc->dev);
1581	max_dtr = max_hs_dtr = f_max;
1582	if ((mmcbr_get_caps(sc->dev) & MMC_CAP_HSPEED))
1583		max_timing = bus_timing_hs;
1584	else
1585		max_timing = bus_timing_normal;
1586	if (device_get_children(sc->dev, &kids, &nkid) != 0)
1587		panic("can't get children");
1588	for (i = 0; i < nkid; i++) {
1589		ivar = device_get_ivars(kids[i]);
1590		if (ivar->timing < max_timing)
1591			max_timing = ivar->timing;
1592		if (ivar->tran_speed < max_dtr)
1593			max_dtr = ivar->tran_speed;
1594		if (ivar->hs_tran_speed < max_hs_dtr)
1595			max_hs_dtr = ivar->hs_tran_speed;
1596	}
1597	for (i = 0; i < nkid; i++) {
1598		ivar = device_get_ivars(kids[i]);
1599		if (ivar->timing == bus_timing_normal)
1600			continue;
1601		mmc_select_card(sc, ivar->rca);
1602		mmc_set_timing(sc, max_timing);
1603	}
1604	mmc_select_card(sc, 0);
1605	free(kids, M_TEMP);
1606	if (max_timing == bus_timing_hs)
1607		max_dtr = max_hs_dtr;
1608	if (bootverbose || mmc_debug) {
1609		device_printf(sc->dev,
1610		    "setting transfer rate to %d.%03dMHz%s\n",
1611		    max_dtr / 1000000, (max_dtr / 1000) % 1000,
1612		    max_timing == bus_timing_hs ? " (high speed timing)" : "");
1613	}
1614	mmcbr_set_timing(sc->dev, max_timing);
1615	mmcbr_set_clock(sc->dev, max_dtr);
1616	mmcbr_update_ios(sc->dev);
1617	return max_dtr;
1618}
1619
1620static void
1621mmc_scan(struct mmc_softc *sc)
1622{
1623	device_t dev = sc->dev;
1624
1625	mmc_acquire_bus(dev, dev);
1626	mmc_go_discovery(sc);
1627	mmc_release_bus(dev, dev);
1628}
1629
1630static int
1631mmc_read_ivar(device_t bus, device_t child, int which, uintptr_t *result)
1632{
1633	struct mmc_ivars *ivar = device_get_ivars(child);
1634
1635	switch (which) {
1636	default:
1637		return (EINVAL);
1638	case MMC_IVAR_DSR_IMP:
1639		*result = ivar->csd.dsr_imp;
1640		break;
1641	case MMC_IVAR_MEDIA_SIZE:
1642		*result = ivar->sec_count;
1643		break;
1644	case MMC_IVAR_RCA:
1645		*result = ivar->rca;
1646		break;
1647	case MMC_IVAR_SECTOR_SIZE:
1648		*result = MMC_SECTOR_SIZE;
1649		break;
1650	case MMC_IVAR_TRAN_SPEED:
1651		*result = mmcbr_get_clock(bus);
1652		break;
1653	case MMC_IVAR_READ_ONLY:
1654		*result = ivar->read_only;
1655		break;
1656	case MMC_IVAR_HIGH_CAP:
1657		*result = ivar->high_cap;
1658		break;
1659	case MMC_IVAR_CARD_TYPE:
1660		*result = ivar->mode;
1661		break;
1662	case MMC_IVAR_BUS_WIDTH:
1663		*result = ivar->bus_width;
1664		break;
1665	case MMC_IVAR_ERASE_SECTOR:
1666		*result = ivar->erase_sector;
1667		break;
1668	case MMC_IVAR_MAX_DATA:
1669		*result = mmcbr_get_max_data(bus);
1670		break;
1671	case MMC_IVAR_CARD_ID_STRING:
1672		*(char **)result = ivar->card_id_string;
1673		break;
1674	}
1675	return (0);
1676}
1677
1678static int
1679mmc_write_ivar(device_t bus, device_t child, int which, uintptr_t value)
1680{
1681	/*
1682	 * None are writable ATM
1683	 */
1684	return (EINVAL);
1685}
1686
1687static void
1688mmc_delayed_attach(void *xsc)
1689{
1690	struct mmc_softc *sc = xsc;
1691
1692	mmc_scan(sc);
1693	config_intrhook_disestablish(&sc->config_intrhook);
1694}
1695
1696static int
1697mmc_child_location_str(device_t dev, device_t child, char *buf,
1698    size_t buflen)
1699{
1700
1701	snprintf(buf, buflen, "rca=0x%04x", mmc_get_rca(child));
1702	return (0);
1703}
1704
1705static device_method_t mmc_methods[] = {
1706	/* device_if */
1707	DEVMETHOD(device_probe, mmc_probe),
1708	DEVMETHOD(device_attach, mmc_attach),
1709	DEVMETHOD(device_detach, mmc_detach),
1710	DEVMETHOD(device_suspend, mmc_suspend),
1711	DEVMETHOD(device_resume, mmc_resume),
1712
1713	/* Bus interface */
1714	DEVMETHOD(bus_read_ivar, mmc_read_ivar),
1715	DEVMETHOD(bus_write_ivar, mmc_write_ivar),
1716	DEVMETHOD(bus_child_location_str, mmc_child_location_str),
1717
1718	/* MMC Bus interface */
1719	DEVMETHOD(mmcbus_wait_for_request, mmc_wait_for_request),
1720	DEVMETHOD(mmcbus_acquire_bus, mmc_acquire_bus),
1721	DEVMETHOD(mmcbus_release_bus, mmc_release_bus),
1722
1723	DEVMETHOD_END
1724};
1725
1726static driver_t mmc_driver = {
1727	"mmc",
1728	mmc_methods,
1729	sizeof(struct mmc_softc),
1730};
1731static devclass_t mmc_devclass;
1732
1733DRIVER_MODULE(mmc, ti_mmchs, mmc_driver, mmc_devclass, NULL, NULL);
1734DRIVER_MODULE(mmc, at91_mci, mmc_driver, mmc_devclass, NULL, NULL);
1735DRIVER_MODULE(mmc, sdhci_pci, mmc_driver, mmc_devclass, NULL, NULL);
1736DRIVER_MODULE(mmc, sdhci_bcm, mmc_driver, mmc_devclass, NULL, NULL);
1737DRIVER_MODULE(mmc, sdhci_fdt, mmc_driver, mmc_devclass, NULL, NULL);
1738