xref: /dflybsd-src/sys/dev/disk/mmcsd/mmcsd.c (revision 92aa89bfeb5938020126f7978c1bdbe60cf386db)
1d6644679SSascha Wildner /*-
2d6644679SSascha Wildner  * Copyright (c) 2006 Bernd Walter.  All rights reserved.
3d6644679SSascha Wildner  * Copyright (c) 2006 M. Warner Losh.  All rights reserved.
4d6644679SSascha Wildner  *
5d6644679SSascha Wildner  * Redistribution and use in source and binary forms, with or without
6d6644679SSascha Wildner  * modification, are permitted provided that the following conditions
7d6644679SSascha Wildner  * are met:
8d6644679SSascha Wildner  * 1. Redistributions of source code must retain the above copyright
9d6644679SSascha Wildner  *    notice, this list of conditions and the following disclaimer.
10d6644679SSascha Wildner  * 2. Redistributions in binary form must reproduce the above copyright
11d6644679SSascha Wildner  *    notice, this list of conditions and the following disclaimer in the
12d6644679SSascha Wildner  *    documentation and/or other materials provided with the distribution.
13d6644679SSascha Wildner  *
14d6644679SSascha Wildner  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
15d6644679SSascha Wildner  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
16d6644679SSascha Wildner  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
17d6644679SSascha Wildner  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
18d6644679SSascha Wildner  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
19d6644679SSascha Wildner  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
20d6644679SSascha Wildner  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
21d6644679SSascha Wildner  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
22d6644679SSascha Wildner  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
23d6644679SSascha Wildner  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
24d6644679SSascha Wildner  *
25d6644679SSascha Wildner  * Portions of this software may have been developed with reference to
26d6644679SSascha Wildner  * the SD Simplified Specification.  The following disclaimer may apply:
27d6644679SSascha Wildner  *
28d6644679SSascha Wildner  * The following conditions apply to the release of the simplified
29d6644679SSascha Wildner  * specification ("Simplified Specification") by the SD Card Association and
30d6644679SSascha Wildner  * the SD Group. The Simplified Specification is a subset of the complete SD
31d6644679SSascha Wildner  * Specification which is owned by the SD Card Association and the SD
32d6644679SSascha Wildner  * Group. This Simplified Specification is provided on a non-confidential
33d6644679SSascha Wildner  * basis subject to the disclaimers below. Any implementation of the
34d6644679SSascha Wildner  * Simplified Specification may require a license from the SD Card
35d6644679SSascha Wildner  * Association, SD Group, SD-3C LLC or other third parties.
36d6644679SSascha Wildner  *
37d6644679SSascha Wildner  * Disclaimers:
38d6644679SSascha Wildner  *
39d6644679SSascha Wildner  * The information contained in the Simplified Specification is presented only
40d6644679SSascha Wildner  * as a standard specification for SD Cards and SD Host/Ancillary products and
41d6644679SSascha Wildner  * is provided "AS-IS" without any representations or warranties of any
42d6644679SSascha Wildner  * kind. No responsibility is assumed by the SD Group, SD-3C LLC or the SD
43d6644679SSascha Wildner  * Card Association for any damages, any infringements of patents or other
44d6644679SSascha Wildner  * right of the SD Group, SD-3C LLC, the SD Card Association or any third
45d6644679SSascha Wildner  * parties, which may result from its use. No license is granted by
46d6644679SSascha Wildner  * implication, estoppel or otherwise under any patent or other rights of the
47d6644679SSascha Wildner  * SD Group, SD-3C LLC, the SD Card Association or any third party. Nothing
48d6644679SSascha Wildner  * herein shall be construed as an obligation by the SD Group, the SD-3C LLC
49d6644679SSascha Wildner  * or the SD Card Association to disclose or distribute any technical
50d6644679SSascha Wildner  * information, know-how or other confidential information to any third party.
51d6644679SSascha Wildner  *
52d6644679SSascha Wildner  * $FreeBSD: src/sys/dev/mmc/mmcsd.c,v 1.20 2009/02/17 19:17:25 mav Exp $
53d6644679SSascha Wildner  */
54d6644679SSascha Wildner 
55d6644679SSascha Wildner #include <sys/param.h>
56d6644679SSascha Wildner #include <sys/systm.h>
57d6644679SSascha Wildner #include <sys/buf.h>
58d6644679SSascha Wildner #include <sys/bus.h>
59d6644679SSascha Wildner #include <sys/conf.h>
60d6644679SSascha Wildner #include <sys/disk.h>
61d6644679SSascha Wildner #include <sys/device.h>
62deee3ff2SSascha Wildner #include <sys/devicestat.h>
63d6644679SSascha Wildner #include <sys/kernel.h>
64d6644679SSascha Wildner #include <sys/kthread.h>
65d6644679SSascha Wildner #include <sys/lock.h>
66d6644679SSascha Wildner #include <sys/malloc.h>
67d6644679SSascha Wildner #include <sys/module.h>
68d6644679SSascha Wildner #include <sys/spinlock.h>
69d6644679SSascha Wildner 
70cd8ab232SMatthew Dillon #include <sys/buf2.h>
71cd8ab232SMatthew Dillon 
72d6644679SSascha Wildner #include <bus/mmc/mmcvar.h>
73d6644679SSascha Wildner #include <bus/mmc/mmcreg.h>
74d6644679SSascha Wildner 
75d6644679SSascha Wildner #include "mmcbus_if.h"
76d6644679SSascha Wildner 
77d6644679SSascha Wildner struct mmcsd_softc {
78d6644679SSascha Wildner 	device_t dev;
79d6644679SSascha Wildner 	cdev_t dev_t;
80d6644679SSascha Wildner 	struct lock sc_lock;
81d6644679SSascha Wildner 	struct disk disk;
82deee3ff2SSascha Wildner 	struct devstat device_stats;
83d6644679SSascha Wildner 	struct thread *td;
84d6644679SSascha Wildner 	struct bio_queue_head bio_queue;
85d6644679SSascha Wildner 	daddr_t eblock, eend;	/* Range remaining after the last erase. */
86d6644679SSascha Wildner 	int running;
87d6644679SSascha Wildner 	int suspend;
88d6644679SSascha Wildner };
89d6644679SSascha Wildner 
90d6644679SSascha Wildner /* bus entry points */
91d6644679SSascha Wildner static int mmcsd_probe(device_t dev);
92d6644679SSascha Wildner static int mmcsd_attach(device_t dev);
93d6644679SSascha Wildner static int mmcsd_detach(device_t dev);
94d6644679SSascha Wildner 
95d6644679SSascha Wildner /* disk routines */
96d6644679SSascha Wildner static d_open_t mmcsd_open;
97d6644679SSascha Wildner static d_close_t mmcsd_close;
98d6644679SSascha Wildner static d_strategy_t mmcsd_strategy;
99d6644679SSascha Wildner static d_dump_t mmcsd_dump;
100d6644679SSascha Wildner 
101d6644679SSascha Wildner static void mmcsd_task(void *arg);
102d6644679SSascha Wildner 
103d6644679SSascha Wildner static const char *mmcsd_card_name(device_t dev);
104d6644679SSascha Wildner static int mmcsd_bus_bit_width(device_t dev);
105d6644679SSascha Wildner 
106d6644679SSascha Wildner #define MMCSD_LOCK(_sc)		lockmgr(&(_sc)->sc_lock, LK_EXCLUSIVE)
107d6644679SSascha Wildner #define	MMCSD_UNLOCK(_sc)	lockmgr(&(_sc)->sc_lock, LK_RELEASE)
108d6644679SSascha Wildner #define MMCSD_LOCK_INIT(_sc)	lockinit(&(_sc)->sc_lock, "mmcsd", 0, LK_CANRECURSE)
109d6644679SSascha Wildner #define MMCSD_LOCK_DESTROY(_sc)	lockuninit(&(_sc)->sc_lock);
110d6644679SSascha Wildner #define MMCSD_ASSERT_LOCKED(_sc) KKASSERT(lockstatus(&(_sc)->sc_lock, curthread) != 0);
111d6644679SSascha Wildner #define MMCSD_ASSERT_UNLOCKED(_sc) KKASSERT(lockstatus(&(_sc)->sc_lock, curthread) == 0);
112d6644679SSascha Wildner 
113d6644679SSascha Wildner static struct dev_ops mmcsd_ops = {
114*92aa89bfSImre Vadász 	{ "mmcsd", 0, D_DISK | D_MPSAFE },
115d6644679SSascha Wildner 	.d_open = mmcsd_open,
116d6644679SSascha Wildner 	.d_close = mmcsd_close,
117d6644679SSascha Wildner 	.d_strategy = mmcsd_strategy,
118d6644679SSascha Wildner 	.d_dump = mmcsd_dump,
119d6644679SSascha Wildner };
120d6644679SSascha Wildner 
121d6644679SSascha Wildner static int
122d6644679SSascha Wildner mmcsd_probe(device_t dev)
123d6644679SSascha Wildner {
124d6644679SSascha Wildner 
125d6644679SSascha Wildner 	device_quiet(dev);
126d6644679SSascha Wildner 	device_set_desc(dev, "MMC/SD Memory Card");
127d6644679SSascha Wildner 	return (0);
128d6644679SSascha Wildner }
129d6644679SSascha Wildner 
130d6644679SSascha Wildner static int
131d6644679SSascha Wildner mmcsd_attach(device_t dev)
132d6644679SSascha Wildner {
133d6644679SSascha Wildner 	struct mmcsd_softc *sc;
134d6644679SSascha Wildner 	struct disk_info info;
135d6644679SSascha Wildner 	cdev_t dsk;
136d6644679SSascha Wildner 	intmax_t mb;
137d6644679SSascha Wildner 	char unit;
138deee3ff2SSascha Wildner 	int sector_size;
139d6644679SSascha Wildner 
140d6644679SSascha Wildner 	sc = device_get_softc(dev);
141d6644679SSascha Wildner 	sc->dev = dev;
142d6644679SSascha Wildner 	MMCSD_LOCK_INIT(sc);
143d6644679SSascha Wildner 
144deee3ff2SSascha Wildner 	sector_size = mmc_get_sector_size(dev);
145deee3ff2SSascha Wildner 	devstat_add_entry(&sc->device_stats, "mmcsd", device_get_unit(dev),
146deee3ff2SSascha Wildner 	    sector_size, DEVSTAT_NO_ORDERED_TAGS,
147deee3ff2SSascha Wildner 	    DEVSTAT_TYPE_DIRECT | DEVSTAT_TYPE_IF_OTHER,
148deee3ff2SSascha Wildner 	    DEVSTAT_PRIORITY_DISK);
149deee3ff2SSascha Wildner 
1506e3e8b7cSImre Vadász 	dsk = disk_create(device_get_unit(dev), &sc->disk, &mmcsd_ops);
151d6644679SSascha Wildner 	dsk->si_drv1 = sc;
152d6644679SSascha Wildner 	sc->dev_t = dsk;
153d6644679SSascha Wildner 
154d6644679SSascha Wildner 	dsk->si_iosize_max = 4*1024*1024;	/* Maximum defined SD card AU size. */
155d6644679SSascha Wildner 
156d6644679SSascha Wildner 	bzero(&info, sizeof(info));
157deee3ff2SSascha Wildner 	info.d_media_blksize = sector_size;
158d6644679SSascha Wildner 	info.d_media_blocks = mmc_get_media_size(dev);
159d6644679SSascha Wildner 	disk_setdiskinfo(&sc->disk, &info);
160d6644679SSascha Wildner 
161d6644679SSascha Wildner 	/*
162d6644679SSascha Wildner 	 * Display in most natural units.  There's no cards < 1MB.
163d6644679SSascha Wildner 	 * The SD standard goes to 2GiB, but the data format supports
164d6644679SSascha Wildner 	 * up to 4GiB and some card makers push it up to this limit.
165d6644679SSascha Wildner 	 * The SDHC standard only goes to 32GiB (the data format in
166d6644679SSascha Wildner 	 * SDHC is good to 2TiB however, which isn't too ugly at
167d6644679SSascha Wildner 	 * 2048GiBm, so we note it in passing here and don't add the
168d6644679SSascha Wildner 	 * code to print TiB).
169d6644679SSascha Wildner 	 */
170d6644679SSascha Wildner 	mb = (info.d_media_blksize * info.d_media_blocks) >> 20;	/* 1MiB == 1 << 20 */
171d6644679SSascha Wildner 	unit = 'M';
172d6644679SSascha Wildner 	if (mb >= 10240) {		/* 1GiB = 1024 MiB */
173d6644679SSascha Wildner 		unit = 'G';
174d6644679SSascha Wildner 		mb /= 1024;
175d6644679SSascha Wildner 	}
176d6644679SSascha Wildner 	device_printf(dev, "%ju%cB <%s Memory Card>%s at %s %dMHz/%dbit\n",
177d6644679SSascha Wildner 	    mb, unit, mmcsd_card_name(dev),
178d6644679SSascha Wildner 	    mmc_get_read_only(dev) ? " (read-only)" : "",
179d6644679SSascha Wildner 	    device_get_nameunit(device_get_parent(dev)),
180d6644679SSascha Wildner 	    mmc_get_tran_speed(dev) / 1000000, mmcsd_bus_bit_width(dev));
181d6644679SSascha Wildner 
182d6644679SSascha Wildner 	bioq_init(&sc->bio_queue);
183d6644679SSascha Wildner 
184d6644679SSascha Wildner 	sc->running = 1;
185d6644679SSascha Wildner 	sc->suspend = 0;
186d6644679SSascha Wildner 	sc->eblock = sc->eend = 0;
187cd8ab232SMatthew Dillon 	kthread_create(mmcsd_task, sc, &sc->td, "mmc/sd card task");
188d6644679SSascha Wildner 
189d6644679SSascha Wildner 	return (0);
190d6644679SSascha Wildner }
191d6644679SSascha Wildner 
192d6644679SSascha Wildner static int
193d6644679SSascha Wildner mmcsd_detach(device_t dev)
194d6644679SSascha Wildner {
195d6644679SSascha Wildner 	struct mmcsd_softc *sc = device_get_softc(dev);
196d6644679SSascha Wildner 	struct buf *q_bp;
197d6644679SSascha Wildner 	struct bio *q_bio;
198d6644679SSascha Wildner 
199d6644679SSascha Wildner 	MMCSD_LOCK(sc);
200d6644679SSascha Wildner 	sc->suspend = 0;
201d6644679SSascha Wildner 	if (sc->running > 0) {
202d6644679SSascha Wildner 		/* kill thread */
203d6644679SSascha Wildner 		sc->running = 0;
204d6644679SSascha Wildner 		wakeup(sc);
205d6644679SSascha Wildner 		/* wait for thread to finish. */
206d6644679SSascha Wildner 		while (sc->running != -1)
207d6644679SSascha Wildner 			lksleep(sc, &sc->sc_lock, 0, "detach", 0);
208d6644679SSascha Wildner 	}
209d6644679SSascha Wildner 	MMCSD_UNLOCK(sc);
210d6644679SSascha Wildner 
2111019f171SMatthew Dillon 	/*
2121019f171SMatthew Dillon 	 * Flush the request queue.
213d6644679SSascha Wildner 	 *
214d6644679SSascha Wildner 	 * XXX: Return all queued I/O with ENXIO. Is this correct?
215d6644679SSascha Wildner 	 */
2164c69c8bcSSascha Wildner 	while ((q_bio = bioq_takefirst(&sc->bio_queue)) != NULL) {
217d6644679SSascha Wildner 		q_bp = q_bio->bio_buf;
218d6644679SSascha Wildner 		q_bp->b_resid = q_bp->b_bcount;
219d6644679SSascha Wildner 		q_bp->b_error = ENXIO;
220d6644679SSascha Wildner 		q_bp->b_flags |= B_ERROR;
221d6644679SSascha Wildner 		biodone(q_bio);
222d6644679SSascha Wildner 	}
223d6644679SSascha Wildner 
224d6644679SSascha Wildner 	/* kill disk */
225d6644679SSascha Wildner 	disk_destroy(&sc->disk);
226deee3ff2SSascha Wildner 	devstat_remove_entry(&sc->device_stats);
227d6644679SSascha Wildner 
228d6644679SSascha Wildner 	MMCSD_LOCK_DESTROY(sc);
229d6644679SSascha Wildner 
230d6644679SSascha Wildner 	return (0);
231d6644679SSascha Wildner }
232d6644679SSascha Wildner 
233d6644679SSascha Wildner static int
234d6644679SSascha Wildner mmcsd_suspend(device_t dev)
235d6644679SSascha Wildner {
236d6644679SSascha Wildner 	struct mmcsd_softc *sc = device_get_softc(dev);
237d6644679SSascha Wildner 
238d6644679SSascha Wildner 	MMCSD_LOCK(sc);
239d6644679SSascha Wildner 	sc->suspend = 1;
240d6644679SSascha Wildner 	if (sc->running > 0) {
241d6644679SSascha Wildner 		/* kill thread */
242d6644679SSascha Wildner 		sc->running = 0;
243d6644679SSascha Wildner 		wakeup(sc);
244d6644679SSascha Wildner 		/* wait for thread to finish. */
245d6644679SSascha Wildner 		while (sc->running != -1)
246d6644679SSascha Wildner 			lksleep(sc, &sc->sc_lock, 0, "detach", 0);
247d6644679SSascha Wildner 	}
248d6644679SSascha Wildner 	MMCSD_UNLOCK(sc);
249d6644679SSascha Wildner 	return (0);
250d6644679SSascha Wildner }
251d6644679SSascha Wildner 
252d6644679SSascha Wildner static int
253d6644679SSascha Wildner mmcsd_resume(device_t dev)
254d6644679SSascha Wildner {
255d6644679SSascha Wildner 	struct mmcsd_softc *sc = device_get_softc(dev);
256d6644679SSascha Wildner 
257d6644679SSascha Wildner 	MMCSD_LOCK(sc);
258d6644679SSascha Wildner 	sc->suspend = 0;
259d6644679SSascha Wildner 	if (sc->running <= 0) {
260d6644679SSascha Wildner 		sc->running = 1;
261d6644679SSascha Wildner 		MMCSD_UNLOCK(sc);
262cd8ab232SMatthew Dillon 		kthread_create(mmcsd_task, sc, &sc->td, "mmc/sd card task");
263d6644679SSascha Wildner 	} else
264d6644679SSascha Wildner 		MMCSD_UNLOCK(sc);
265d6644679SSascha Wildner 	return (0);
266d6644679SSascha Wildner }
267d6644679SSascha Wildner 
268d6644679SSascha Wildner static int
269d6644679SSascha Wildner mmcsd_open(struct dev_open_args *ap)
270d6644679SSascha Wildner {
271d6644679SSascha Wildner 	return (0);
272d6644679SSascha Wildner }
273d6644679SSascha Wildner 
274d6644679SSascha Wildner static int
275d6644679SSascha Wildner mmcsd_close(struct dev_close_args *ap)
276d6644679SSascha Wildner {
277d6644679SSascha Wildner 	return (0);
278d6644679SSascha Wildner }
279d6644679SSascha Wildner 
280d6644679SSascha Wildner static int
281d6644679SSascha Wildner mmcsd_strategy(struct dev_strategy_args *ap)
282d6644679SSascha Wildner {
283d6644679SSascha Wildner 	struct mmcsd_softc *sc;
284d6644679SSascha Wildner 	struct bio *bio = ap->a_bio;
285c60da766SSascha Wildner 	struct buf *bp = bio->bio_buf;
286d6644679SSascha Wildner 
287d6644679SSascha Wildner 	sc = (struct mmcsd_softc *)ap->a_head.a_dev->si_drv1;
288d6644679SSascha Wildner 	MMCSD_LOCK(sc);
289d6644679SSascha Wildner 	if (sc->running > 0 || sc->suspend > 0) {
290d6644679SSascha Wildner 		bioqdisksort(&sc->bio_queue, bio);
291d6644679SSascha Wildner 		MMCSD_UNLOCK(sc);
292d6644679SSascha Wildner 		wakeup(sc);
293d6644679SSascha Wildner 	} else {
294d6644679SSascha Wildner 		MMCSD_UNLOCK(sc);
295c60da766SSascha Wildner 		bp->b_error = ENXIO;
296c60da766SSascha Wildner 		bp->b_flags |= B_ERROR;
297c60da766SSascha Wildner 		bp->b_resid = bp->b_bcount;
298d6644679SSascha Wildner 		biodone(bio);
299d6644679SSascha Wildner 	}
300d6644679SSascha Wildner 	return (0);
301d6644679SSascha Wildner }
302d6644679SSascha Wildner 
303d6644679SSascha Wildner static daddr_t
304d6644679SSascha Wildner mmcsd_rw(struct mmcsd_softc *sc, struct bio *bio)
305d6644679SSascha Wildner {
306d6644679SSascha Wildner 	daddr_t block, end;
307d6644679SSascha Wildner 	struct mmc_command cmd;
308d6644679SSascha Wildner 	struct mmc_command stop;
309d6644679SSascha Wildner 	struct mmc_request req;
310d6644679SSascha Wildner 	struct mmc_data data;
311d6644679SSascha Wildner 	device_t dev = sc->dev;
312d6644679SSascha Wildner 	int sz = sc->disk.d_info.d_media_blksize;
313d6644679SSascha Wildner 	struct buf *bp = bio->bio_buf;
314d6644679SSascha Wildner 
315d6644679SSascha Wildner 	block = bio->bio_offset / sz;
316d6644679SSascha Wildner 	end = block + (bp->b_bcount / sz);
317d6644679SSascha Wildner 	while (block < end) {
318d6644679SSascha Wildner 		char *vaddr = bp->b_data +
319d6644679SSascha Wildner 		    (block - (bio->bio_offset / sz)) * sz;
320d6644679SSascha Wildner 		int numblocks = min(end - block, mmc_get_max_data(dev));
321d6644679SSascha Wildner 		memset(&req, 0, sizeof(req));
322d6644679SSascha Wildner 		memset(&cmd, 0, sizeof(cmd));
323d6644679SSascha Wildner 		memset(&stop, 0, sizeof(stop));
324d6644679SSascha Wildner 		req.cmd = &cmd;
325d6644679SSascha Wildner 		cmd.data = &data;
326d6644679SSascha Wildner 		if (bp->b_cmd == BUF_CMD_READ) {
327d6644679SSascha Wildner 			if (numblocks > 1)
328d6644679SSascha Wildner 				cmd.opcode = MMC_READ_MULTIPLE_BLOCK;
329d6644679SSascha Wildner 			else
330d6644679SSascha Wildner 				cmd.opcode = MMC_READ_SINGLE_BLOCK;
331d6644679SSascha Wildner 		} else {
332d6644679SSascha Wildner 			if (numblocks > 1)
333d6644679SSascha Wildner 				cmd.opcode = MMC_WRITE_MULTIPLE_BLOCK;
334d6644679SSascha Wildner 			else
335d6644679SSascha Wildner 				cmd.opcode = MMC_WRITE_BLOCK;
336d6644679SSascha Wildner 		}
337d6644679SSascha Wildner 		cmd.arg = block;
338d6644679SSascha Wildner 		if (!mmc_get_high_cap(dev))
339d6644679SSascha Wildner 			cmd.arg <<= 9;
340d6644679SSascha Wildner 		cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
341d6644679SSascha Wildner 		data.data = vaddr;
342d6644679SSascha Wildner 		data.mrq = &req;
343d6644679SSascha Wildner 		if (bp->b_cmd == BUF_CMD_READ)
344d6644679SSascha Wildner 			data.flags = MMC_DATA_READ;
345d6644679SSascha Wildner 		else
346d6644679SSascha Wildner 			data.flags = MMC_DATA_WRITE;
347d6644679SSascha Wildner 		data.len = numblocks * sz;
348d6644679SSascha Wildner 		if (numblocks > 1) {
349d6644679SSascha Wildner 			data.flags |= MMC_DATA_MULTI;
350d6644679SSascha Wildner 			stop.opcode = MMC_STOP_TRANSMISSION;
351d6644679SSascha Wildner 			stop.arg = 0;
352d6644679SSascha Wildner 			stop.flags = MMC_RSP_R1B | MMC_CMD_AC;
353d6644679SSascha Wildner 			req.stop = &stop;
354d6644679SSascha Wildner 		}
355d6644679SSascha Wildner //		kprintf("Len %d  %lld-%lld flags %#x sz %d\n",
356d6644679SSascha Wildner //		    (int)data.len, (long long)block, (long long)end, data.flags, sz);
3571019f171SMatthew Dillon 		MMCBUS_WAIT_FOR_REQUEST(device_get_parent(dev), dev, &req);
358d6644679SSascha Wildner 		if (req.cmd->error != MMC_ERR_NONE)
359d6644679SSascha Wildner 			break;
360d6644679SSascha Wildner 		block += numblocks;
361d6644679SSascha Wildner 	}
362d6644679SSascha Wildner 	return (block);
363d6644679SSascha Wildner }
364d6644679SSascha Wildner 
365d6644679SSascha Wildner static daddr_t
366d6644679SSascha Wildner mmcsd_delete(struct mmcsd_softc *sc, struct bio *bio)
367d6644679SSascha Wildner {
368d6644679SSascha Wildner 	daddr_t block, end, start, stop;
369d6644679SSascha Wildner 	struct mmc_command cmd;
370d6644679SSascha Wildner 	struct mmc_request req;
371d6644679SSascha Wildner 	device_t dev = sc->dev;
372d6644679SSascha Wildner 	int sz = sc->disk.d_info.d_media_blksize;
373d6644679SSascha Wildner 	int erase_sector;
374d6644679SSascha Wildner 	struct buf *bp = bio->bio_buf;
375d6644679SSascha Wildner 
376d6644679SSascha Wildner 	block = bio->bio_offset / sz;
377d6644679SSascha Wildner 	end = block + (bp->b_bcount / sz);
378d6644679SSascha Wildner 	/* Coalesce with part remaining from previous request. */
379d6644679SSascha Wildner 	if (block > sc->eblock && block <= sc->eend)
380d6644679SSascha Wildner 		block = sc->eblock;
381d6644679SSascha Wildner 	if (end >= sc->eblock && end < sc->eend)
382d6644679SSascha Wildner 		end = sc->eend;
383d6644679SSascha Wildner 	/* Safe round to the erase sector boundaries. */
384d6644679SSascha Wildner 	erase_sector = mmc_get_erase_sector(dev);
385d6644679SSascha Wildner 	start = block + erase_sector - 1;	 /* Round up. */
386d6644679SSascha Wildner 	start -= start % erase_sector;
387d6644679SSascha Wildner 	stop = end;				/* Round down. */
388d6644679SSascha Wildner 	stop -= end % erase_sector;
389d6644679SSascha Wildner 	/* We can't erase area smaller then sector, store it for later. */
390d6644679SSascha Wildner 	if (start >= stop) {
391d6644679SSascha Wildner 		sc->eblock = block;
392d6644679SSascha Wildner 		sc->eend = end;
393d6644679SSascha Wildner 		return (end);
394d6644679SSascha Wildner 	}
395d6644679SSascha Wildner 
396d6644679SSascha Wildner 	/* Set erase start position. */
397d6644679SSascha Wildner 	memset(&req, 0, sizeof(req));
398d6644679SSascha Wildner 	memset(&cmd, 0, sizeof(cmd));
399d6644679SSascha Wildner 	req.cmd = &cmd;
400d6644679SSascha Wildner 	if (mmc_get_card_type(dev) == mode_sd)
401d6644679SSascha Wildner 		cmd.opcode = SD_ERASE_WR_BLK_START;
402d6644679SSascha Wildner 	else
403d6644679SSascha Wildner 		cmd.opcode = MMC_ERASE_GROUP_START;
404d6644679SSascha Wildner 	cmd.arg = start;
405d6644679SSascha Wildner 	if (!mmc_get_high_cap(dev))
406d6644679SSascha Wildner 		cmd.arg <<= 9;
407d6644679SSascha Wildner 	cmd.flags = MMC_RSP_R1 | MMC_CMD_AC;
4081019f171SMatthew Dillon 	MMCBUS_WAIT_FOR_REQUEST(device_get_parent(dev), dev, &req);
409d6644679SSascha Wildner 	if (req.cmd->error != MMC_ERR_NONE) {
410d6644679SSascha Wildner 	    kprintf("erase err1: %d\n", req.cmd->error);
411d6644679SSascha Wildner 	    return (block);
412d6644679SSascha Wildner 	}
413d6644679SSascha Wildner 	/* Set erase stop position. */
414d6644679SSascha Wildner 	memset(&req, 0, sizeof(req));
415d6644679SSascha Wildner 	memset(&cmd, 0, sizeof(cmd));
416d6644679SSascha Wildner 	req.cmd = &cmd;
417d6644679SSascha Wildner 	if (mmc_get_card_type(dev) == mode_sd)
418d6644679SSascha Wildner 		cmd.opcode = SD_ERASE_WR_BLK_END;
419d6644679SSascha Wildner 	else
420d6644679SSascha Wildner 		cmd.opcode = MMC_ERASE_GROUP_END;
421d6644679SSascha Wildner 	cmd.arg = stop;
422d6644679SSascha Wildner 	if (!mmc_get_high_cap(dev))
423d6644679SSascha Wildner 		cmd.arg <<= 9;
424d6644679SSascha Wildner 	cmd.arg--;
425d6644679SSascha Wildner 	cmd.flags = MMC_RSP_R1 | MMC_CMD_AC;
4261019f171SMatthew Dillon 	MMCBUS_WAIT_FOR_REQUEST(device_get_parent(dev), dev, &req);
427d6644679SSascha Wildner 	if (req.cmd->error != MMC_ERR_NONE) {
428d6644679SSascha Wildner 	    kprintf("erase err2: %d\n", req.cmd->error);
429d6644679SSascha Wildner 	    return (block);
430d6644679SSascha Wildner 	}
431d6644679SSascha Wildner 	/* Erase range. */
432d6644679SSascha Wildner 	memset(&req, 0, sizeof(req));
433d6644679SSascha Wildner 	memset(&cmd, 0, sizeof(cmd));
434d6644679SSascha Wildner 	req.cmd = &cmd;
435d6644679SSascha Wildner 	cmd.opcode = MMC_ERASE;
436d6644679SSascha Wildner 	cmd.arg = 0;
437d6644679SSascha Wildner 	cmd.flags = MMC_RSP_R1B | MMC_CMD_AC;
4381019f171SMatthew Dillon 	MMCBUS_WAIT_FOR_REQUEST(device_get_parent(dev), dev, &req);
439d6644679SSascha Wildner 	if (req.cmd->error != MMC_ERR_NONE) {
440d6644679SSascha Wildner 	    kprintf("erase err3 %d\n", req.cmd->error);
441d6644679SSascha Wildner 	    return (block);
442d6644679SSascha Wildner 	}
443d6644679SSascha Wildner 	/* Store one of remaining parts for the next call. */
444d6644679SSascha Wildner 	if ((bio->bio_offset / sz) >= sc->eblock || block == start) {
445d6644679SSascha Wildner 		sc->eblock = stop;	/* Predict next forward. */
446d6644679SSascha Wildner 		sc->eend = end;
447d6644679SSascha Wildner 	} else {
448d6644679SSascha Wildner 		sc->eblock = block;	/* Predict next backward. */
449d6644679SSascha Wildner 		sc->eend = start;
450d6644679SSascha Wildner 	}
451d6644679SSascha Wildner 	return (end);
452d6644679SSascha Wildner }
453d6644679SSascha Wildner 
454d6644679SSascha Wildner static int
455d6644679SSascha Wildner mmcsd_dump(struct dev_dump_args *ap)
456d6644679SSascha Wildner {
457d6644679SSascha Wildner #if 0
458d6644679SSascha Wildner 	cdev_t cdev = ap->a_head.a_dev;
459d6644679SSascha Wildner 	struct mmcsd_softc *sc = (struct mmcsd_softc *)cdev->si_drv1;
460d6644679SSascha Wildner 	device_t dev = sc->dev;
461d6644679SSascha Wildner 	struct bio bp;
462d6644679SSascha Wildner 	daddr_t block, end;
463d6644679SSascha Wildner 	int length = ap->a_length;
464d6644679SSascha Wildner 
465d6644679SSascha Wildner 	/* length zero is special and really means flush buffers to media */
466d6644679SSascha Wildner 	if (!length)
467d6644679SSascha Wildner 		return (0);
468d6644679SSascha Wildner 
469d6644679SSascha Wildner 	bzero(&bp, sizeof(struct bio));
470d6644679SSascha Wildner 	bp.bio_driver_info = cdev;
471d6644679SSascha Wildner 	bp.bio_pblkno = offset / sc->disk->d_sectorsize;
472d6644679SSascha Wildner 	bp.bio_bcount = length;
473d6644679SSascha Wildner 	bp.bio_data = virtual;
474d6644679SSascha Wildner 	bp.bio_cmd = BIO_WRITE;
475d6644679SSascha Wildner 	end = bp.bio_pblkno + bp.bio_bcount / sc->disk.d_info.d_media_blksize;
476d6644679SSascha Wildner 	MMCBUS_ACQUIRE_BUS(device_get_parent(dev), dev);
477d6644679SSascha Wildner 	block = mmcsd_rw(sc, &bp);
478d6644679SSascha Wildner 	MMCBUS_RELEASE_BUS(device_get_parent(dev), dev);
479d6644679SSascha Wildner 	return ((end < block) ? EIO : 0);
480d6644679SSascha Wildner #endif
481d6644679SSascha Wildner 	return EIO;
482d6644679SSascha Wildner }
483d6644679SSascha Wildner 
484d6644679SSascha Wildner static void
485d6644679SSascha Wildner mmcsd_task(void *arg)
486d6644679SSascha Wildner {
487d6644679SSascha Wildner 	struct mmcsd_softc *sc = (struct mmcsd_softc*)arg;
488c60da766SSascha Wildner 	struct bio *bio;
489c60da766SSascha Wildner 	struct buf *bp;
490d6644679SSascha Wildner 	int sz;
491d6644679SSascha Wildner 	daddr_t block, end;
492d6644679SSascha Wildner 	device_t dev;
493d6644679SSascha Wildner 
494d6644679SSascha Wildner 	dev = sc->dev;
495cd8ab232SMatthew Dillon 
496d6644679SSascha Wildner 	while (1) {
497d6644679SSascha Wildner 		MMCSD_LOCK(sc);
498d6644679SSascha Wildner 		do {
499d6644679SSascha Wildner 			if (sc->running == 0)
500d6644679SSascha Wildner 				goto out;
501c60da766SSascha Wildner 			bio = bioq_takefirst(&sc->bio_queue);
502c60da766SSascha Wildner 			if (bio == NULL)
503d6644679SSascha Wildner 				lksleep(sc, &sc->sc_lock, 0, "jobqueue", 0);
504c60da766SSascha Wildner 		} while (bio == NULL);
505d6644679SSascha Wildner 		MMCSD_UNLOCK(sc);
506*92aa89bfSImre Vadász 		bp = bio->bio_buf;
507*92aa89bfSImre Vadász 		devstat_start_transaction(&sc->device_stats);
508c60da766SSascha Wildner 		if (bp->b_cmd != BUF_CMD_READ && mmc_get_read_only(dev)) {
509c60da766SSascha Wildner 			bp->b_error = EROFS;
510c60da766SSascha Wildner 			bp->b_resid = bp->b_bcount;
511c60da766SSascha Wildner 			bp->b_flags |= B_ERROR;
512c60da766SSascha Wildner 			devstat_end_transaction_buf(&sc->device_stats, bp);
513c60da766SSascha Wildner 			biodone(bio);
514d6644679SSascha Wildner 			continue;
515d6644679SSascha Wildner 		}
516d6644679SSascha Wildner 		MMCBUS_ACQUIRE_BUS(device_get_parent(dev), dev);
517d6644679SSascha Wildner 		sz = sc->disk.d_info.d_media_blksize;
518c60da766SSascha Wildner 		block = bio->bio_offset / sz;
519c60da766SSascha Wildner 		end = block + (bp->b_bcount / sz);
520c60da766SSascha Wildner 		if (bp->b_cmd == BUF_CMD_READ ||
521c60da766SSascha Wildner 		    bp->b_cmd == BUF_CMD_WRITE) {
522d6644679SSascha Wildner 			/* Access to the remaining erase block obsoletes it. */
523d6644679SSascha Wildner 			if (block < sc->eend && end > sc->eblock)
524d6644679SSascha Wildner 				sc->eblock = sc->eend = 0;
525c60da766SSascha Wildner 			block = mmcsd_rw(sc, bio);
526c60da766SSascha Wildner 		} else if (bp->b_cmd == BUF_CMD_FREEBLKS) {
527c60da766SSascha Wildner 			block = mmcsd_delete(sc, bio);
528d6644679SSascha Wildner 		}
529d6644679SSascha Wildner 		MMCBUS_RELEASE_BUS(device_get_parent(dev), dev);
530d6644679SSascha Wildner 		if (block < end) {
531c60da766SSascha Wildner 			bp->b_error = EIO;
532c60da766SSascha Wildner 			bp->b_resid = (end - block) * sz;
533c60da766SSascha Wildner 			bp->b_flags |= B_ERROR;
534fd4b9758SMatthew Dillon 		} else {
535fd4b9758SMatthew Dillon 			bp->b_resid = 0;
536d6644679SSascha Wildner 		}
537c60da766SSascha Wildner 		devstat_end_transaction_buf(&sc->device_stats, bp);
538c60da766SSascha Wildner 		biodone(bio);
539d6644679SSascha Wildner 	}
540d6644679SSascha Wildner out:
541d6644679SSascha Wildner 	/* tell parent we're done */
542d6644679SSascha Wildner 	sc->running = -1;
543d6644679SSascha Wildner 	MMCSD_UNLOCK(sc);
544d6644679SSascha Wildner 	wakeup(sc);
545d6644679SSascha Wildner }
546d6644679SSascha Wildner 
547d6644679SSascha Wildner static const char *
548d6644679SSascha Wildner mmcsd_card_name(device_t dev)
549d6644679SSascha Wildner {
550d6644679SSascha Wildner 	if (mmc_get_card_type(dev) == mode_mmc)
551d6644679SSascha Wildner 		return ("MMC");
552d6644679SSascha Wildner 	if (mmc_get_high_cap(dev))
553d6644679SSascha Wildner 		return ("SDHC");
554d6644679SSascha Wildner 	return ("SD");
555d6644679SSascha Wildner }
556d6644679SSascha Wildner 
557d6644679SSascha Wildner static int
558d6644679SSascha Wildner mmcsd_bus_bit_width(device_t dev)
559d6644679SSascha Wildner {
560d6644679SSascha Wildner 	if (mmc_get_bus_width(dev) == bus_width_1)
561d6644679SSascha Wildner 		return (1);
562d6644679SSascha Wildner 	if (mmc_get_bus_width(dev) == bus_width_4)
563d6644679SSascha Wildner 		return (4);
564d6644679SSascha Wildner 	return (8);
565d6644679SSascha Wildner }
566d6644679SSascha Wildner 
567d6644679SSascha Wildner static device_method_t mmcsd_methods[] = {
568d6644679SSascha Wildner 	DEVMETHOD(device_probe, mmcsd_probe),
569d6644679SSascha Wildner 	DEVMETHOD(device_attach, mmcsd_attach),
570d6644679SSascha Wildner 	DEVMETHOD(device_detach, mmcsd_detach),
571d6644679SSascha Wildner 	DEVMETHOD(device_suspend, mmcsd_suspend),
572d6644679SSascha Wildner 	DEVMETHOD(device_resume, mmcsd_resume),
573d3c9c58eSSascha Wildner 	DEVMETHOD_END
574d6644679SSascha Wildner };
575d6644679SSascha Wildner 
576d6644679SSascha Wildner static driver_t mmcsd_driver = {
577d6644679SSascha Wildner 	"mmcsd",
578d6644679SSascha Wildner 	mmcsd_methods,
579d6644679SSascha Wildner 	sizeof(struct mmcsd_softc),
580d6644679SSascha Wildner };
581d6644679SSascha Wildner static devclass_t mmcsd_devclass;
582d6644679SSascha Wildner 
583aa2b9d05SSascha Wildner DRIVER_MODULE(mmcsd, mmc, mmcsd_driver, mmcsd_devclass, NULL, NULL);
584