mx25l.c revision 218747
1/*-
2 * Copyright (c) 2006 M. Warner Losh.  All rights reserved.
3 * Copyright (c) 2009 Oleksandr Tymoshenko.  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
26#include <sys/cdefs.h>
27__FBSDID("$FreeBSD: head/sys/dev/flash/mx25l.c 218747 2011-02-16 20:07:44Z adrian $");
28
29#include <sys/param.h>
30#include <sys/systm.h>
31#include <sys/bio.h>
32#include <sys/bus.h>
33#include <sys/conf.h>
34#include <sys/kernel.h>
35#include <sys/kthread.h>
36#include <sys/lock.h>
37#include <sys/mbuf.h>
38#include <sys/malloc.h>
39#include <sys/module.h>
40#include <sys/mutex.h>
41#include <geom/geom_disk.h>
42
43#include <dev/spibus/spi.h>
44#include "spibus_if.h"
45
46#include <dev/flash/mx25lreg.h>
47
48#define	FL_NONE			0x00
49#define	FL_ERASE_4K		0x01
50#define	FL_ERASE_32K		0x02
51
52/*
53 * Define the sectorsize to be a smaller size rather than the flash
54 * sector size. Trying to run FFS off of a 64k flash sector size
55 * results in a completely un-usable system.
56 */
57#define	MX25L_SECTORSIZE	512
58
59struct mx25l_flash_ident
60{
61	const char	*name;
62	uint8_t		manufacturer_id;
63	uint16_t	device_id;
64	unsigned int	sectorsize;
65	unsigned int	sectorcount;
66	unsigned int	flags;
67};
68
69struct mx25l_softc
70{
71	device_t	sc_dev;
72	uint8_t		sc_manufacturer_id;
73	uint16_t	sc_device_id;
74	unsigned int	sc_sectorsize;
75	struct mtx	sc_mtx;
76	struct disk	*sc_disk;
77	struct proc	*sc_p;
78	struct bio_queue_head sc_bio_queue;
79	unsigned int	sc_flags;
80};
81
82#define M25PXX_LOCK(_sc)		mtx_lock(&(_sc)->sc_mtx)
83#define	M25PXX_UNLOCK(_sc)		mtx_unlock(&(_sc)->sc_mtx)
84#define M25PXX_LOCK_INIT(_sc) \
85	mtx_init(&_sc->sc_mtx, device_get_nameunit(_sc->sc_dev), \
86	    "mx25l", MTX_DEF)
87#define M25PXX_LOCK_DESTROY(_sc)	mtx_destroy(&_sc->sc_mtx);
88#define M25PXX_ASSERT_LOCKED(_sc)	mtx_assert(&_sc->sc_mtx, MA_OWNED);
89#define M25PXX_ASSERT_UNLOCKED(_sc) mtx_assert(&_sc->sc_mtx, MA_NOTOWNED);
90
91/* disk routines */
92static int mx25l_open(struct disk *dp);
93static int mx25l_close(struct disk *dp);
94static int mx25l_ioctl(struct disk *, u_long, void *, int, struct thread *);
95static void mx25l_strategy(struct bio *bp);
96static void mx25l_task(void *arg);
97
98struct mx25l_flash_ident flash_devices[] = {
99	{ "mx25ll32",  0xc2, 0x2016, 64 * 1024,  64, FL_NONE },
100	{ "m25p64",    0x20, 0x2017, 64 * 1024, 128, FL_NONE },
101	{ "mx25ll64",  0xc2, 0x2017, 64 * 1024, 128, FL_NONE },
102	{ "mx25ll128", 0xc2, 0x2018, 64 * 1024, 256, FL_ERASE_4K | FL_ERASE_32K },
103	{ "s25fl128",  0x01, 0x2018, 64 * 1024, 256, FL_NONE },
104	{ "s25sl064a", 0x01, 0x0216, 64 * 1024, 128, FL_NONE },
105};
106
107static uint8_t
108mx25l_get_status(device_t dev)
109{
110	uint8_t txBuf[2], rxBuf[2];
111	struct spi_command cmd;
112	int err;
113
114	memset(&cmd, 0, sizeof(cmd));
115	memset(txBuf, 0, sizeof(txBuf));
116	memset(rxBuf, 0, sizeof(rxBuf));
117
118	txBuf[0] = CMD_READ_STATUS;
119	cmd.tx_cmd = txBuf;
120	cmd.rx_cmd = rxBuf;
121	cmd.rx_cmd_sz = 2;
122	cmd.tx_cmd_sz = 2;
123	err = SPIBUS_TRANSFER(device_get_parent(dev), dev, &cmd);
124	return (rxBuf[1]);
125}
126
127static void
128mx25l_wait_for_device_ready(device_t dev)
129{
130	while ((mx25l_get_status(dev) & STATUS_WIP))
131		continue;
132}
133
134static struct mx25l_flash_ident*
135mx25l_get_device_ident(struct mx25l_softc *sc)
136{
137	device_t dev = sc->sc_dev;
138	uint8_t txBuf[8], rxBuf[8];
139	struct spi_command cmd;
140	uint8_t manufacturer_id;
141	uint16_t dev_id;
142	int err, i;
143
144	memset(&cmd, 0, sizeof(cmd));
145	memset(txBuf, 0, sizeof(txBuf));
146	memset(rxBuf, 0, sizeof(rxBuf));
147
148	txBuf[0] = CMD_READ_IDENT;
149	cmd.tx_cmd = &txBuf;
150	cmd.rx_cmd = &rxBuf;
151	/*
152	 * Some compatible devices has extended two-bytes ID
153	 * We'll use only manufacturer/deviceid atm
154	 */
155	cmd.tx_cmd_sz = 4;
156	cmd.rx_cmd_sz = 4;
157	err = SPIBUS_TRANSFER(device_get_parent(dev), dev, &cmd);
158	if (err)
159		return (NULL);
160
161	manufacturer_id = rxBuf[1];
162	dev_id = (rxBuf[2] << 8) | (rxBuf[3]);
163
164	for (i = 0;
165	    i < sizeof(flash_devices)/sizeof(struct mx25l_flash_ident); i++) {
166		if ((flash_devices[i].manufacturer_id == manufacturer_id) &&
167		    (flash_devices[i].device_id == dev_id))
168			return &flash_devices[i];
169	}
170
171	printf("Unknown SPI flash device. Vendor: %02x, device id: %04x\n",
172	    manufacturer_id, dev_id);
173	return (NULL);
174}
175
176static void
177mx25l_set_writable(device_t dev, int writable)
178{
179	uint8_t txBuf[1], rxBuf[1];
180	struct spi_command cmd;
181	int err;
182
183	memset(&cmd, 0, sizeof(cmd));
184	memset(txBuf, 0, sizeof(txBuf));
185	memset(rxBuf, 0, sizeof(rxBuf));
186
187	txBuf[0] = writable ? CMD_WRITE_ENABLE : CMD_WRITE_DISABLE;
188	cmd.tx_cmd = txBuf;
189	cmd.rx_cmd = rxBuf;
190	cmd.rx_cmd_sz = 1;
191	cmd.tx_cmd_sz = 1;
192	err = SPIBUS_TRANSFER(device_get_parent(dev), dev, &cmd);
193}
194
195static void
196mx25l_erase_cmd(device_t dev, off_t sector, uint8_t ecmd)
197{
198	uint8_t txBuf[4], rxBuf[4];
199	struct spi_command cmd;
200	int err;
201
202	mx25l_wait_for_device_ready(dev);
203	mx25l_set_writable(dev, 1);
204
205	memset(&cmd, 0, sizeof(cmd));
206	memset(txBuf, 0, sizeof(txBuf));
207	memset(rxBuf, 0, sizeof(rxBuf));
208
209	txBuf[0] = ecmd;
210	cmd.tx_cmd = txBuf;
211	cmd.rx_cmd = rxBuf;
212	cmd.rx_cmd_sz = 4;
213	cmd.tx_cmd_sz = 4;
214	txBuf[1] = ((sector >> 16) & 0xff);
215	txBuf[2] = ((sector >> 8) & 0xff);
216	txBuf[3] = (sector & 0xff);
217	err = SPIBUS_TRANSFER(device_get_parent(dev), dev, &cmd);
218}
219
220static int
221mx25l_write(device_t dev, off_t offset, caddr_t data, off_t count)
222{
223	struct mx25l_softc *sc;
224	uint8_t txBuf[8], rxBuf[8];
225	struct spi_command cmd;
226	off_t write_offset;
227	long bytes_to_write, bytes_writen;
228	device_t pdev;
229	int err = 0;
230
231	pdev = device_get_parent(dev);
232	sc = device_get_softc(dev);
233
234	cmd.tx_cmd_sz = 4;
235	cmd.rx_cmd_sz = 4;
236
237	bytes_writen = 0;
238	write_offset = offset;
239
240	/*
241	 * Use the erase sectorsize here since blocks are fully erased
242	 * first before they're written to.
243	 */
244	if (count % sc->sc_sectorsize != 0 || offset % sc->sc_sectorsize != 0)
245		return (EIO);
246
247	/*
248	 * Assume here that we write per-sector only
249	 * and sector size should be 256 bytes aligned
250	 */
251	KASSERT(write_offset % FLASH_PAGE_SIZE == 0,
252	    ("offset for BIO_WRITE is not page size (%d bytes) aligned",
253		FLASH_PAGE_SIZE));
254
255	/*
256	 * Maximum write size for CMD_PAGE_PROGRAM is
257	 * FLASH_PAGE_SIZE, so split data to chunks
258	 * FLASH_PAGE_SIZE bytes eash and write them
259	 * one by one
260	 */
261	while (bytes_writen < count) {
262		/*
263		 * If we crossed sector boundary - erase next sector
264		 */
265		if (((offset + bytes_writen) % sc->sc_sectorsize) == 0)
266			mx25l_erase_cmd(dev, offset + bytes_writen, CMD_SECTOR_ERASE);
267
268		txBuf[0] = CMD_PAGE_PROGRAM;
269		txBuf[1] = ((write_offset >> 16) & 0xff);
270		txBuf[2] = ((write_offset >> 8) & 0xff);
271		txBuf[3] = (write_offset & 0xff);
272
273		bytes_to_write = MIN(FLASH_PAGE_SIZE,
274		    count - bytes_writen);
275		cmd.tx_cmd = txBuf;
276		cmd.rx_cmd = rxBuf;
277		cmd.tx_data = data + bytes_writen;
278		cmd.tx_data_sz = bytes_to_write;
279		cmd.rx_data = data + bytes_writen;
280		cmd.rx_data_sz = bytes_to_write;
281
282		/*
283		 * Eash completed write operation resets WEL
284		 * (write enable latch) to disabled state,
285		 * so we re-enable it here
286		 */
287		mx25l_wait_for_device_ready(dev);
288		mx25l_set_writable(dev, 1);
289
290		err = SPIBUS_TRANSFER(pdev, dev, &cmd);
291		if (err)
292			break;
293
294		bytes_writen += bytes_to_write;
295		write_offset += bytes_to_write;
296	}
297
298	return (err);
299}
300
301static int
302mx25l_read(device_t dev, off_t offset, caddr_t data, off_t count)
303{
304	struct mx25l_softc *sc;
305	uint8_t txBuf[8], rxBuf[8];
306	struct spi_command cmd;
307	device_t pdev;
308	int err = 0;
309
310	pdev = device_get_parent(dev);
311	sc = device_get_softc(dev);
312
313	/*
314	 * Enforce the disk read sectorsize not the erase sectorsize.
315	 * In this way, smaller read IO is possible,dramatically
316	 * speeding up filesystem/geom_compress access.
317	 */
318	if (count % sc->sc_disk->d_sectorsize != 0
319	    || offset % sc->sc_disk->d_sectorsize != 0)
320		return (EIO);
321
322	txBuf[0] = CMD_FAST_READ;
323	cmd.tx_cmd_sz = 5;
324	cmd.rx_cmd_sz = 5;
325
326	txBuf[1] = ((offset >> 16) & 0xff);
327	txBuf[2] = ((offset >> 8) & 0xff);
328	txBuf[3] = (offset & 0xff);
329	/* Dummy byte */
330	txBuf[4] = 0;
331
332	cmd.tx_cmd = txBuf;
333	cmd.rx_cmd = rxBuf;
334	cmd.tx_data = data;
335	cmd.tx_data_sz = count;
336	cmd.rx_data = data;
337	cmd.rx_data_sz = count;
338
339	err = SPIBUS_TRANSFER(pdev, dev, &cmd);
340
341	return (err);
342}
343
344static int
345mx25l_probe(device_t dev)
346{
347	device_set_desc(dev, "M25Pxx Flash Family");
348	return (0);
349}
350
351static int
352mx25l_attach(device_t dev)
353{
354	struct mx25l_softc *sc;
355	struct mx25l_flash_ident *ident;
356
357	sc = device_get_softc(dev);
358	sc->sc_dev = dev;
359	M25PXX_LOCK_INIT(sc);
360
361	ident = mx25l_get_device_ident(sc);
362	if (ident == NULL)
363		return (ENXIO);
364
365	mx25l_wait_for_device_ready(sc->sc_dev);
366
367	sc->sc_disk = disk_alloc();
368	sc->sc_disk->d_open = mx25l_open;
369	sc->sc_disk->d_close = mx25l_close;
370	sc->sc_disk->d_strategy = mx25l_strategy;
371	sc->sc_disk->d_ioctl = mx25l_ioctl;
372	sc->sc_disk->d_name = "flash/spi";
373	sc->sc_disk->d_drv1 = sc;
374	sc->sc_disk->d_maxsize = DFLTPHYS;
375	sc->sc_disk->d_sectorsize = MX25L_SECTORSIZE;
376	sc->sc_disk->d_mediasize = ident->sectorsize * ident->sectorcount;
377	sc->sc_disk->d_unit = device_get_unit(sc->sc_dev);
378	sc->sc_disk->d_dump = NULL;		/* NB: no dumps */
379	/* Sectorsize for erase operations */
380	sc->sc_sectorsize =  ident->sectorsize;
381	sc->sc_flags = ident->flags;
382
383        /* NB: use stripesize to hold the erase/region size for RedBoot */
384	sc->sc_disk->d_stripesize = ident->sectorsize;
385
386	disk_create(sc->sc_disk, DISK_VERSION);
387	bioq_init(&sc->sc_bio_queue);
388
389	kproc_create(&mx25l_task, sc, &sc->sc_p, 0, 0, "task: mx25l flash");
390	device_printf(sc->sc_dev, "%s, sector %d bytes, %d sectors\n",
391	    ident->name, ident->sectorsize, ident->sectorcount);
392
393	return (0);
394}
395
396static int
397mx25l_detach(device_t dev)
398{
399
400	return (EIO);
401}
402
403static int
404mx25l_open(struct disk *dp)
405{
406	return (0);
407}
408
409static int
410mx25l_close(struct disk *dp)
411{
412
413	return (0);
414}
415
416static int
417mx25l_ioctl(struct disk *dp, u_long cmd, void *data, int fflag,
418	struct thread *td)
419{
420
421	return (EINVAL);
422}
423
424static void
425mx25l_strategy(struct bio *bp)
426{
427	struct mx25l_softc *sc;
428
429	sc = (struct mx25l_softc *)bp->bio_disk->d_drv1;
430	M25PXX_LOCK(sc);
431	bioq_disksort(&sc->sc_bio_queue, bp);
432	wakeup(sc);
433	M25PXX_UNLOCK(sc);
434}
435
436static void
437mx25l_task(void *arg)
438{
439	struct mx25l_softc *sc = (struct mx25l_softc*)arg;
440	struct bio *bp;
441	device_t dev;
442
443	for (;;) {
444		dev = sc->sc_dev;
445		M25PXX_LOCK(sc);
446		do {
447			bp = bioq_first(&sc->sc_bio_queue);
448			if (bp == NULL)
449				msleep(sc, &sc->sc_mtx, PRIBIO, "jobqueue", 0);
450		} while (bp == NULL);
451		bioq_remove(&sc->sc_bio_queue, bp);
452		M25PXX_UNLOCK(sc);
453
454		switch (bp->bio_cmd) {
455		case BIO_READ:
456			bp->bio_error = mx25l_read(dev, bp->bio_offset,
457			    bp->bio_data, bp->bio_bcount);
458			break;
459		case BIO_WRITE:
460			bp->bio_error = mx25l_write(dev, bp->bio_offset,
461			    bp->bio_data, bp->bio_bcount);
462			break;
463		default:
464			bp->bio_error = EINVAL;
465		}
466
467
468		biodone(bp);
469	}
470}
471
472static devclass_t mx25l_devclass;
473
474static device_method_t mx25l_methods[] = {
475	/* Device interface */
476	DEVMETHOD(device_probe,		mx25l_probe),
477	DEVMETHOD(device_attach,	mx25l_attach),
478	DEVMETHOD(device_detach,	mx25l_detach),
479
480	{ 0, 0 }
481};
482
483static driver_t mx25l_driver = {
484	"mx25l",
485	mx25l_methods,
486	sizeof(struct mx25l_softc),
487};
488
489DRIVER_MODULE(mx25l, spibus, mx25l_driver, mx25l_devclass, 0, 0);
490