blob: 734878abaa236cd98c5cb7502fb6f4a7da650ed4 [file] [log] [blame]
Thomas Gleixner2874c5f2019-05-27 08:55:01 +02001// SPDX-License-Identifier: GPL-2.0-or-later
David Brownell1d6432f2006-01-08 13:34:22 -08002/*
3 * Atmel AT45xxx DataFlash MTD driver for lightweight SPI framework
4 *
5 * Largely derived from at91_dataflash.c:
6 * Copyright (C) 2003-2005 SAN People (Pty) Ltd
David Brownell1d6432f2006-01-08 13:34:22 -08007*/
David Brownell1d6432f2006-01-08 13:34:22 -08008#include <linux/module.h>
David Brownell1d6432f2006-01-08 13:34:22 -08009#include <linux/slab.h>
10#include <linux/delay.h>
11#include <linux/device.h>
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +010012#include <linux/mutex.h>
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -070013#include <linux/err.h>
Artem Bityutskiy5b7f3a52008-12-18 14:09:56 +020014#include <linux/math64.h>
Shawn Guob94e7572011-07-15 16:38:56 +080015#include <linux/of.h>
16#include <linux/of_device.h>
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -070017
David Brownell1d6432f2006-01-08 13:34:22 -080018#include <linux/spi/spi.h>
19#include <linux/spi/flash.h>
20
21#include <linux/mtd/mtd.h>
22#include <linux/mtd/partitions.h>
23
David Brownell1d6432f2006-01-08 13:34:22 -080024/*
25 * DataFlash is a kind of SPI flash. Most AT45 chips have two buffers in
26 * each chip, which may be used for double buffered I/O; but this driver
27 * doesn't (yet) use these for any kind of i/o overlap or prefetching.
28 *
29 * Sometimes DataFlash is packaged in MMC-format cards, although the
David Brownell8c640382008-08-06 21:55:14 -070030 * MMC stack can't (yet?) distinguish between MMC and DataFlash
David Brownell1d6432f2006-01-08 13:34:22 -080031 * protocols during enumeration.
32 */
33
David Brownell1d6432f2006-01-08 13:34:22 -080034/* reads can bypass the buffers */
35#define OP_READ_CONTINUOUS 0xE8
36#define OP_READ_PAGE 0xD2
37
38/* group B requests can run even while status reports "busy" */
39#define OP_READ_STATUS 0xD7 /* group B */
40
41/* move data between host and buffer */
42#define OP_READ_BUFFER1 0xD4 /* group B */
43#define OP_READ_BUFFER2 0xD6 /* group B */
44#define OP_WRITE_BUFFER1 0x84 /* group B */
45#define OP_WRITE_BUFFER2 0x87 /* group B */
46
47/* erasing flash */
48#define OP_ERASE_PAGE 0x81
49#define OP_ERASE_BLOCK 0x50
50
51/* move data between buffer and flash */
52#define OP_TRANSFER_BUF1 0x53
53#define OP_TRANSFER_BUF2 0x55
54#define OP_MREAD_BUFFER1 0xD4
55#define OP_MREAD_BUFFER2 0xD6
56#define OP_MWERASE_BUFFER1 0x83
57#define OP_MWERASE_BUFFER2 0x86
58#define OP_MWRITE_BUFFER1 0x88 /* sector must be pre-erased */
59#define OP_MWRITE_BUFFER2 0x89 /* sector must be pre-erased */
60
61/* write to buffer, then write-erase to flash */
62#define OP_PROGRAM_VIA_BUF1 0x82
63#define OP_PROGRAM_VIA_BUF2 0x85
64
65/* compare buffer to flash */
66#define OP_COMPARE_BUF1 0x60
67#define OP_COMPARE_BUF2 0x61
68
69/* read flash to buffer, then write-erase to flash */
70#define OP_REWRITE_VIA_BUF1 0x58
71#define OP_REWRITE_VIA_BUF2 0x59
72
73/* newer chips report JEDEC manufacturer and device IDs; chip
74 * serial number and OTP bits; and per-sector writeprotect.
75 */
76#define OP_READ_ID 0x9F
77#define OP_READ_SECURITY 0x77
David Brownell34a82442008-07-30 12:35:05 -070078#define OP_WRITE_SECURITY_REVC 0x9A
79#define OP_WRITE_SECURITY 0x9B /* revision D */
David Brownell1d6432f2006-01-08 13:34:22 -080080
Andrey Smirnov41c9c662017-04-21 09:30:22 -070081#define CFI_MFR_ATMEL 0x1F
David Brownell1d6432f2006-01-08 13:34:22 -080082
Andrey Smirnov1da88692017-04-21 09:30:25 -070083#define DATAFLASH_SHIFT_EXTID 24
84#define DATAFLASH_SHIFT_ID 40
85
David Brownell1d6432f2006-01-08 13:34:22 -080086struct dataflash {
Andrey Smirnovc41e43c2017-04-21 09:30:21 -070087 u8 command[4];
David Brownell1d6432f2006-01-08 13:34:22 -080088 char name[24];
89
David Brownell1d6432f2006-01-08 13:34:22 -080090 unsigned short page_offset; /* offset in flash address */
91 unsigned int page_size; /* of bytes per page */
92
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +010093 struct mutex lock;
David Brownell1d6432f2006-01-08 13:34:22 -080094 struct spi_device *spi;
95
96 struct mtd_info mtd;
97};
98
Jon Hunter27a030e2021-11-30 11:24:43 +000099static const struct spi_device_id dataflash_dev_ids[] = {
100 { "at45" },
101 { "dataflash" },
102 { },
103};
104MODULE_DEVICE_TABLE(spi, dataflash_dev_ids);
105
Shawn Guob94e7572011-07-15 16:38:56 +0800106#ifdef CONFIG_OF
107static const struct of_device_id dataflash_dt_ids[] = {
108 { .compatible = "atmel,at45", },
109 { .compatible = "atmel,dataflash", },
110 { /* sentinel */ }
111};
Javier Martinez Canillasd1d97b72015-08-20 09:07:16 +0200112MODULE_DEVICE_TABLE(of, dataflash_dt_ids);
Shawn Guob94e7572011-07-15 16:38:56 +0800113#endif
114
David Brownell1d6432f2006-01-08 13:34:22 -0800115/* ......................................................................... */
116
117/*
118 * Return the status of the DataFlash device.
119 */
120static inline int dataflash_status(struct spi_device *spi)
121{
122 /* NOTE: at45db321c over 25 MHz wants to write
123 * a dummy byte after the opcode...
124 */
125 return spi_w8r8(spi, OP_READ_STATUS);
126}
127
128/*
129 * Poll the DataFlash device until it is READY.
130 * This usually takes 5-20 msec or so; more for sector erase.
131 */
132static int dataflash_waitready(struct spi_device *spi)
133{
134 int status;
135
136 for (;;) {
137 status = dataflash_status(spi);
138 if (status < 0) {
Andrey Smirnov02f628642017-04-21 09:30:23 -0700139 dev_dbg(&spi->dev, "status %d?\n", status);
David Brownell1d6432f2006-01-08 13:34:22 -0800140 status = 0;
141 }
142
143 if (status & (1 << 7)) /* RDY/nBSY */
144 return status;
145
Luca Elleroc3c9a2c2018-04-18 11:26:26 +0200146 usleep_range(3000, 4000);
David Brownell1d6432f2006-01-08 13:34:22 -0800147 }
148}
149
150/* ......................................................................... */
151
152/*
153 * Erase pages of flash.
154 */
155static int dataflash_erase(struct mtd_info *mtd, struct erase_info *instr)
156{
Kulikov Vasiliy42845d22010-06-29 14:15:13 +0400157 struct dataflash *priv = mtd->priv;
David Brownell1d6432f2006-01-08 13:34:22 -0800158 struct spi_device *spi = priv->spi;
Mark Brown7a95db02014-10-29 12:27:32 +0000159 struct spi_transfer x = { };
David Brownell1d6432f2006-01-08 13:34:22 -0800160 struct spi_message msg;
161 unsigned blocksize = priv->page_size << 3;
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700162 u8 *command;
163 u32 rem;
David Brownell1d6432f2006-01-08 13:34:22 -0800164
Andrey Smirnov02f628642017-04-21 09:30:23 -0700165 dev_dbg(&spi->dev, "erase addr=0x%llx len 0x%llx\n",
166 (long long)instr->addr, (long long)instr->len);
David Brownell1d6432f2006-01-08 13:34:22 -0800167
Artem Bityutskiy5b7f3a52008-12-18 14:09:56 +0200168 div_u64_rem(instr->len, priv->page_size, &rem);
169 if (rem)
170 return -EINVAL;
171 div_u64_rem(instr->addr, priv->page_size, &rem);
172 if (rem)
David Brownell1d6432f2006-01-08 13:34:22 -0800173 return -EINVAL;
174
Vitaly Wool8275c642006-01-08 13:34:28 -0800175 spi_message_init(&msg);
176
177 x.tx_buf = command = priv->command;
178 x.len = 4;
179 spi_message_add_tail(&x, &msg);
David Brownell1d6432f2006-01-08 13:34:22 -0800180
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +0100181 mutex_lock(&priv->lock);
David Brownell1d6432f2006-01-08 13:34:22 -0800182 while (instr->len > 0) {
183 unsigned int pageaddr;
184 int status;
185 int do_block;
186
187 /* Calculate flash page address; use block erase (for speed) if
188 * we're at a block boundary and need to erase the whole block.
189 */
Peter Korsgaarddbf8c112009-05-18 11:13:54 +0100190 pageaddr = div_u64(instr->addr, priv->page_size);
David Brownell3cb4f092006-03-13 21:20:40 -0800191 do_block = (pageaddr & 0x7) == 0 && instr->len >= blocksize;
David Brownell1d6432f2006-01-08 13:34:22 -0800192 pageaddr = pageaddr << priv->page_offset;
193
194 command[0] = do_block ? OP_ERASE_BLOCK : OP_ERASE_PAGE;
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700195 command[1] = (u8)(pageaddr >> 16);
196 command[2] = (u8)(pageaddr >> 8);
David Brownell1d6432f2006-01-08 13:34:22 -0800197 command[3] = 0;
198
Andrey Smirnov02f628642017-04-21 09:30:23 -0700199 dev_dbg(&spi->dev, "ERASE %s: (%x) %x %x %x [%i]\n",
David Brownell1d6432f2006-01-08 13:34:22 -0800200 do_block ? "block" : "page",
201 command[0], command[1], command[2], command[3],
202 pageaddr);
203
204 status = spi_sync(spi, &msg);
205 (void) dataflash_waitready(spi);
206
207 if (status < 0) {
Andrey Smirnov02f628642017-04-21 09:30:23 -0700208 dev_err(&spi->dev, "erase %x, err %d\n",
209 pageaddr, status);
David Brownell1d6432f2006-01-08 13:34:22 -0800210 /* REVISIT: can retry instr->retries times; or
211 * giveup and instr->fail_addr = instr->addr;
212 */
213 continue;
214 }
215
216 if (do_block) {
217 instr->addr += blocksize;
218 instr->len -= blocksize;
219 } else {
220 instr->addr += priv->page_size;
221 instr->len -= priv->page_size;
222 }
223 }
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +0100224 mutex_unlock(&priv->lock);
David Brownell1d6432f2006-01-08 13:34:22 -0800225
David Brownell1d6432f2006-01-08 13:34:22 -0800226 return 0;
227}
228
229/*
230 * Read from the DataFlash device.
231 * from : Start offset in flash device
232 * len : Amount to read
233 * retlen : About of data actually read
234 * buf : Buffer containing the data
235 */
236static int dataflash_read(struct mtd_info *mtd, loff_t from, size_t len,
237 size_t *retlen, u_char *buf)
238{
Kulikov Vasiliy42845d22010-06-29 14:15:13 +0400239 struct dataflash *priv = mtd->priv;
Mark Brown7a95db02014-10-29 12:27:32 +0000240 struct spi_transfer x[2] = { };
David Brownell1d6432f2006-01-08 13:34:22 -0800241 struct spi_message msg;
242 unsigned int addr;
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700243 u8 *command;
David Brownell1d6432f2006-01-08 13:34:22 -0800244 int status;
245
Andrey Smirnov02f628642017-04-21 09:30:23 -0700246 dev_dbg(&priv->spi->dev, "read 0x%x..0x%x\n",
247 (unsigned int)from, (unsigned int)(from + len));
David Brownell1d6432f2006-01-08 13:34:22 -0800248
David Brownell1d6432f2006-01-08 13:34:22 -0800249 /* Calculate flash page/byte address */
250 addr = (((unsigned)from / priv->page_size) << priv->page_offset)
251 + ((unsigned)from % priv->page_size);
252
253 command = priv->command;
254
Andrey Smirnov02f628642017-04-21 09:30:23 -0700255 dev_dbg(&priv->spi->dev, "READ: (%x) %x %x %x\n",
David Brownell1d6432f2006-01-08 13:34:22 -0800256 command[0], command[1], command[2], command[3]);
257
Vitaly Wool8275c642006-01-08 13:34:28 -0800258 spi_message_init(&msg);
259
David Brownell1d6432f2006-01-08 13:34:22 -0800260 x[0].tx_buf = command;
261 x[0].len = 8;
Vitaly Wool8275c642006-01-08 13:34:28 -0800262 spi_message_add_tail(&x[0], &msg);
263
David Brownell1d6432f2006-01-08 13:34:22 -0800264 x[1].rx_buf = buf;
265 x[1].len = len;
Vitaly Wool8275c642006-01-08 13:34:28 -0800266 spi_message_add_tail(&x[1], &msg);
David Brownell1d6432f2006-01-08 13:34:22 -0800267
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +0100268 mutex_lock(&priv->lock);
David Brownell1d6432f2006-01-08 13:34:22 -0800269
270 /* Continuous read, max clock = f(car) which may be less than
271 * the peak rate available. Some chips support commands with
272 * fewer "don't care" bytes. Both buffers stay unchanged.
273 */
274 command[0] = OP_READ_CONTINUOUS;
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700275 command[1] = (u8)(addr >> 16);
276 command[2] = (u8)(addr >> 8);
277 command[3] = (u8)(addr >> 0);
David Brownell1d6432f2006-01-08 13:34:22 -0800278 /* plus 4 "don't care" bytes */
279
280 status = spi_sync(priv->spi, &msg);
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +0100281 mutex_unlock(&priv->lock);
David Brownell1d6432f2006-01-08 13:34:22 -0800282
283 if (status >= 0) {
284 *retlen = msg.actual_length - 8;
285 status = 0;
286 } else
Andrey Smirnov02f628642017-04-21 09:30:23 -0700287 dev_dbg(&priv->spi->dev, "read %x..%x --> %d\n",
David Brownell1d6432f2006-01-08 13:34:22 -0800288 (unsigned)from, (unsigned)(from + len),
289 status);
290 return status;
291}
292
293/*
294 * Write to the DataFlash device.
295 * to : Start offset in flash device
296 * len : Amount to write
297 * retlen : Amount of data actually written
298 * buf : Buffer containing the data
299 */
300static int dataflash_write(struct mtd_info *mtd, loff_t to, size_t len,
301 size_t * retlen, const u_char * buf)
302{
Kulikov Vasiliy42845d22010-06-29 14:15:13 +0400303 struct dataflash *priv = mtd->priv;
David Brownell1d6432f2006-01-08 13:34:22 -0800304 struct spi_device *spi = priv->spi;
Mark Brown7a95db02014-10-29 12:27:32 +0000305 struct spi_transfer x[2] = { };
David Brownell1d6432f2006-01-08 13:34:22 -0800306 struct spi_message msg;
307 unsigned int pageaddr, addr, offset, writelen;
308 size_t remaining = len;
309 u_char *writebuf = (u_char *) buf;
310 int status = -EINVAL;
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700311 u8 *command;
David Brownell1d6432f2006-01-08 13:34:22 -0800312
Andrey Smirnov02f628642017-04-21 09:30:23 -0700313 dev_dbg(&spi->dev, "write 0x%x..0x%x\n",
314 (unsigned int)to, (unsigned int)(to + len));
David Brownell1d6432f2006-01-08 13:34:22 -0800315
Vitaly Wool8275c642006-01-08 13:34:28 -0800316 spi_message_init(&msg);
317
David Brownell1d6432f2006-01-08 13:34:22 -0800318 x[0].tx_buf = command = priv->command;
319 x[0].len = 4;
Vitaly Wool8275c642006-01-08 13:34:28 -0800320 spi_message_add_tail(&x[0], &msg);
David Brownell1d6432f2006-01-08 13:34:22 -0800321
322 pageaddr = ((unsigned)to / priv->page_size);
323 offset = ((unsigned)to % priv->page_size);
324 if (offset + len > priv->page_size)
325 writelen = priv->page_size - offset;
326 else
327 writelen = len;
328
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +0100329 mutex_lock(&priv->lock);
David Brownell1d6432f2006-01-08 13:34:22 -0800330 while (remaining > 0) {
Andrey Smirnov02f628642017-04-21 09:30:23 -0700331 dev_dbg(&spi->dev, "write @ %i:%i len=%i\n",
David Brownell1d6432f2006-01-08 13:34:22 -0800332 pageaddr, offset, writelen);
333
334 /* REVISIT:
335 * (a) each page in a sector must be rewritten at least
336 * once every 10K sibling erase/program operations.
337 * (b) for pages that are already erased, we could
338 * use WRITE+MWRITE not PROGRAM for ~30% speedup.
339 * (c) WRITE to buffer could be done while waiting for
340 * a previous MWRITE/MWERASE to complete ...
341 * (d) error handling here seems to be mostly missing.
342 *
343 * Two persistent bits per page, plus a per-sector counter,
344 * could support (a) and (b) ... we might consider using
345 * the second half of sector zero, which is just one block,
346 * to track that state. (On AT91, that sector should also
347 * support boot-from-DataFlash.)
348 */
349
350 addr = pageaddr << priv->page_offset;
351
352 /* (1) Maybe transfer partial page to Buffer1 */
353 if (writelen != priv->page_size) {
354 command[0] = OP_TRANSFER_BUF1;
355 command[1] = (addr & 0x00FF0000) >> 16;
356 command[2] = (addr & 0x0000FF00) >> 8;
357 command[3] = 0;
358
Andrey Smirnov02f628642017-04-21 09:30:23 -0700359 dev_dbg(&spi->dev, "TRANSFER: (%x) %x %x %x\n",
David Brownell1d6432f2006-01-08 13:34:22 -0800360 command[0], command[1], command[2], command[3]);
361
David Brownell1d6432f2006-01-08 13:34:22 -0800362 status = spi_sync(spi, &msg);
363 if (status < 0)
Andrey Smirnov02f628642017-04-21 09:30:23 -0700364 dev_dbg(&spi->dev, "xfer %u -> %d\n",
365 addr, status);
David Brownell1d6432f2006-01-08 13:34:22 -0800366
367 (void) dataflash_waitready(priv->spi);
368 }
369
370 /* (2) Program full page via Buffer1 */
371 addr += offset;
372 command[0] = OP_PROGRAM_VIA_BUF1;
373 command[1] = (addr & 0x00FF0000) >> 16;
374 command[2] = (addr & 0x0000FF00) >> 8;
375 command[3] = (addr & 0x000000FF);
376
Andrey Smirnov02f628642017-04-21 09:30:23 -0700377 dev_dbg(&spi->dev, "PROGRAM: (%x) %x %x %x\n",
David Brownell1d6432f2006-01-08 13:34:22 -0800378 command[0], command[1], command[2], command[3]);
379
380 x[1].tx_buf = writebuf;
381 x[1].len = writelen;
Vitaly Wool8275c642006-01-08 13:34:28 -0800382 spi_message_add_tail(x + 1, &msg);
David Brownell1d6432f2006-01-08 13:34:22 -0800383 status = spi_sync(spi, &msg);
Vitaly Wool8275c642006-01-08 13:34:28 -0800384 spi_transfer_del(x + 1);
David Brownell1d6432f2006-01-08 13:34:22 -0800385 if (status < 0)
Andrey Smirnov02f628642017-04-21 09:30:23 -0700386 dev_dbg(&spi->dev, "pgm %u/%u -> %d\n",
387 addr, writelen, status);
David Brownell1d6432f2006-01-08 13:34:22 -0800388
389 (void) dataflash_waitready(priv->spi);
390
Vitaly Wool8275c642006-01-08 13:34:28 -0800391
Robert P. J. Day05dd1802009-07-19 21:19:08 -0400392#ifdef CONFIG_MTD_DATAFLASH_WRITE_VERIFY
David Brownell1d6432f2006-01-08 13:34:22 -0800393
394 /* (3) Compare to Buffer1 */
395 addr = pageaddr << priv->page_offset;
396 command[0] = OP_COMPARE_BUF1;
397 command[1] = (addr & 0x00FF0000) >> 16;
398 command[2] = (addr & 0x0000FF00) >> 8;
399 command[3] = 0;
400
Andrey Smirnov02f628642017-04-21 09:30:23 -0700401 dev_dbg(&spi->dev, "COMPARE: (%x) %x %x %x\n",
David Brownell1d6432f2006-01-08 13:34:22 -0800402 command[0], command[1], command[2], command[3]);
403
David Brownell1d6432f2006-01-08 13:34:22 -0800404 status = spi_sync(spi, &msg);
405 if (status < 0)
Andrey Smirnov02f628642017-04-21 09:30:23 -0700406 dev_dbg(&spi->dev, "compare %u -> %d\n",
407 addr, status);
David Brownell1d6432f2006-01-08 13:34:22 -0800408
409 status = dataflash_waitready(priv->spi);
410
411 /* Check result of the compare operation */
Andrew Victorcccb45d2007-11-19 15:37:23 +0200412 if (status & (1 << 6)) {
Andrey Smirnov02f628642017-04-21 09:30:23 -0700413 dev_err(&spi->dev, "compare page %u, err %d\n",
414 pageaddr, status);
David Brownell1d6432f2006-01-08 13:34:22 -0800415 remaining = 0;
416 status = -EIO;
417 break;
418 } else
419 status = 0;
420
Robert P. J. Day05dd1802009-07-19 21:19:08 -0400421#endif /* CONFIG_MTD_DATAFLASH_WRITE_VERIFY */
David Brownell1d6432f2006-01-08 13:34:22 -0800422
423 remaining = remaining - writelen;
424 pageaddr++;
425 offset = 0;
426 writebuf += writelen;
427 *retlen += writelen;
428
429 if (remaining > priv->page_size)
430 writelen = priv->page_size;
431 else
432 writelen = remaining;
433 }
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +0100434 mutex_unlock(&priv->lock);
David Brownell1d6432f2006-01-08 13:34:22 -0800435
436 return status;
437}
438
439/* ......................................................................... */
440
David Brownell34a82442008-07-30 12:35:05 -0700441#ifdef CONFIG_MTD_DATAFLASH_OTP
442
Christian Riesch4b78fc42f2014-01-28 09:29:44 +0100443static int dataflash_get_otp_info(struct mtd_info *mtd, size_t len,
444 size_t *retlen, struct otp_info *info)
David Brownell34a82442008-07-30 12:35:05 -0700445{
446 /* Report both blocks as identical: bytes 0..64, locked.
447 * Unless the user block changed from all-ones, we can't
448 * tell whether it's still writable; so we assume it isn't.
449 */
450 info->start = 0;
451 info->length = 64;
452 info->locked = 1;
Christian Riesch4b78fc42f2014-01-28 09:29:44 +0100453 *retlen = sizeof(*info);
454 return 0;
David Brownell34a82442008-07-30 12:35:05 -0700455}
456
457static ssize_t otp_read(struct spi_device *spi, unsigned base,
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700458 u8 *buf, loff_t off, size_t len)
David Brownell34a82442008-07-30 12:35:05 -0700459{
460 struct spi_message m;
461 size_t l;
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700462 u8 *scratch;
David Brownell34a82442008-07-30 12:35:05 -0700463 struct spi_transfer t;
464 int status;
465
466 if (off > 64)
467 return -EINVAL;
468
469 if ((off + len) > 64)
470 len = 64 - off;
David Brownell34a82442008-07-30 12:35:05 -0700471
472 spi_message_init(&m);
473
474 l = 4 + base + off + len;
475 scratch = kzalloc(l, GFP_KERNEL);
476 if (!scratch)
477 return -ENOMEM;
478
479 /* OUT: OP_READ_SECURITY, 3 don't-care bytes, zeroes
480 * IN: ignore 4 bytes, data bytes 0..N (max 127)
481 */
482 scratch[0] = OP_READ_SECURITY;
483
484 memset(&t, 0, sizeof t);
485 t.tx_buf = scratch;
486 t.rx_buf = scratch;
487 t.len = l;
488 spi_message_add_tail(&t, &m);
489
490 dataflash_waitready(spi);
491
492 status = spi_sync(spi, &m);
493 if (status >= 0) {
494 memcpy(buf, scratch + 4 + base + off, len);
495 status = len;
496 }
497
498 kfree(scratch);
499 return status;
500}
501
502static int dataflash_read_fact_otp(struct mtd_info *mtd,
503 loff_t from, size_t len, size_t *retlen, u_char *buf)
504{
Kulikov Vasiliy42845d22010-06-29 14:15:13 +0400505 struct dataflash *priv = mtd->priv;
David Brownell34a82442008-07-30 12:35:05 -0700506 int status;
507
508 /* 64 bytes, from 0..63 ... start at 64 on-chip */
509 mutex_lock(&priv->lock);
510 status = otp_read(priv->spi, 64, buf, from, len);
511 mutex_unlock(&priv->lock);
512
513 if (status < 0)
514 return status;
515 *retlen = status;
516 return 0;
517}
518
519static int dataflash_read_user_otp(struct mtd_info *mtd,
520 loff_t from, size_t len, size_t *retlen, u_char *buf)
521{
Kulikov Vasiliy42845d22010-06-29 14:15:13 +0400522 struct dataflash *priv = mtd->priv;
David Brownell34a82442008-07-30 12:35:05 -0700523 int status;
524
525 /* 64 bytes, from 0..63 ... start at 0 on-chip */
526 mutex_lock(&priv->lock);
527 status = otp_read(priv->spi, 0, buf, from, len);
528 mutex_unlock(&priv->lock);
529
530 if (status < 0)
531 return status;
532 *retlen = status;
533 return 0;
534}
535
536static int dataflash_write_user_otp(struct mtd_info *mtd,
Tudor Ambarus1df1fc82021-04-03 09:09:31 +0300537 loff_t from, size_t len, size_t *retlen, const u_char *buf)
David Brownell34a82442008-07-30 12:35:05 -0700538{
539 struct spi_message m;
540 const size_t l = 4 + 64;
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700541 u8 *scratch;
David Brownell34a82442008-07-30 12:35:05 -0700542 struct spi_transfer t;
Kulikov Vasiliy42845d22010-06-29 14:15:13 +0400543 struct dataflash *priv = mtd->priv;
David Brownell34a82442008-07-30 12:35:05 -0700544 int status;
545
Christian Riesch9a78bc82014-03-06 12:42:37 +0100546 if (from >= 64) {
547 /*
548 * Attempting to write beyond the end of OTP memory,
549 * no data can be written.
550 */
551 *retlen = 0;
552 return 0;
553 }
David Brownell34a82442008-07-30 12:35:05 -0700554
Christian Riesch9a78bc82014-03-06 12:42:37 +0100555 /* Truncate the write to fit into OTP memory. */
David Brownell34a82442008-07-30 12:35:05 -0700556 if ((from + len) > 64)
Christian Riesch9a78bc82014-03-06 12:42:37 +0100557 len = 64 - from;
David Brownell34a82442008-07-30 12:35:05 -0700558
559 /* OUT: OP_WRITE_SECURITY, 3 zeroes, 64 data-or-zero bytes
560 * IN: ignore all
561 */
562 scratch = kzalloc(l, GFP_KERNEL);
563 if (!scratch)
564 return -ENOMEM;
565 scratch[0] = OP_WRITE_SECURITY;
566 memcpy(scratch + 4 + from, buf, len);
567
568 spi_message_init(&m);
569
570 memset(&t, 0, sizeof t);
571 t.tx_buf = scratch;
572 t.len = l;
573 spi_message_add_tail(&t, &m);
574
575 /* Write the OTP bits, if they've not yet been written.
576 * This modifies SRAM buffer1.
577 */
578 mutex_lock(&priv->lock);
579 dataflash_waitready(priv->spi);
580 status = spi_sync(priv->spi, &m);
581 mutex_unlock(&priv->lock);
582
583 kfree(scratch);
584
585 if (status >= 0) {
586 status = 0;
587 *retlen = len;
588 }
589 return status;
590}
591
592static char *otp_setup(struct mtd_info *device, char revision)
593{
Artem Bityutskiy3c3c10b2012-01-30 14:58:32 +0200594 device->_get_fact_prot_info = dataflash_get_otp_info;
595 device->_read_fact_prot_reg = dataflash_read_fact_otp;
596 device->_get_user_prot_info = dataflash_get_otp_info;
597 device->_read_user_prot_reg = dataflash_read_user_otp;
David Brownell34a82442008-07-30 12:35:05 -0700598
599 /* rev c parts (at45db321c and at45db1281 only!) use a
600 * different write procedure; not (yet?) implemented.
601 */
602 if (revision > 'c')
Artem Bityutskiy3c3c10b2012-01-30 14:58:32 +0200603 device->_write_user_prot_reg = dataflash_write_user_otp;
David Brownell34a82442008-07-30 12:35:05 -0700604
605 return ", OTP";
606}
607
608#else
609
David Brownellcf93ae02008-08-06 13:12:04 -0700610static char *otp_setup(struct mtd_info *device, char revision)
David Brownell34a82442008-07-30 12:35:05 -0700611{
612 return " (OTP)";
613}
614
615#endif
616
617/* ......................................................................... */
618
David Brownell1d6432f2006-01-08 13:34:22 -0800619/*
620 * Register DataFlash device with MTD subsystem.
621 */
Greg Kroah-Hartmand8929942012-12-21 13:19:05 -0800622static int add_dataflash_otp(struct spi_device *spi, char *name, int nr_pages,
623 int pagesize, int pageoffset, char revision)
David Brownell1d6432f2006-01-08 13:34:22 -0800624{
625 struct dataflash *priv;
626 struct mtd_info *device;
Jingoo Han0278fd32013-07-30 17:17:44 +0900627 struct flash_platform_data *pdata = dev_get_platdata(&spi->dev);
David Brownell34a82442008-07-30 12:35:05 -0700628 char *otp_tag = "";
H Hartley Sweetend4702662009-10-07 17:08:08 -0400629 int err = 0;
David Brownell1d6432f2006-01-08 13:34:22 -0800630
Robert P. J. Day5cbded52006-12-13 00:35:56 -0800631 priv = kzalloc(sizeof *priv, GFP_KERNEL);
David Brownell1d6432f2006-01-08 13:34:22 -0800632 if (!priv)
633 return -ENOMEM;
634
Matthias Kaehlckeec9ce522007-06-28 22:58:42 +0100635 mutex_init(&priv->lock);
David Brownell1d6432f2006-01-08 13:34:22 -0800636 priv->spi = spi;
637 priv->page_size = pagesize;
638 priv->page_offset = pageoffset;
639
640 /* name must be usable with cmdlinepart */
641 sprintf(priv->name, "spi%d.%d-%s",
642 spi->master->bus_num, spi->chip_select,
643 name);
644
645 device = &priv->mtd;
646 device->name = (pdata && pdata->name) ? pdata->name : priv->name;
647 device->size = nr_pages * pagesize;
648 device->erasesize = pagesize;
Artem B. Bityutskiy17ffc7b2006-06-22 18:15:48 +0400649 device->writesize = pagesize;
David Brownell1d6432f2006-01-08 13:34:22 -0800650 device->type = MTD_DATAFLASH;
Haavard Skinnemoen6c33caf2006-11-29 14:26:07 +0100651 device->flags = MTD_WRITEABLE;
Artem Bityutskiy3c3c10b2012-01-30 14:58:32 +0200652 device->_erase = dataflash_erase;
653 device->_read = dataflash_read;
654 device->_write = dataflash_write;
David Brownell1d6432f2006-01-08 13:34:22 -0800655 device->priv = priv;
656
David Brownell87f39f02009-03-26 00:42:50 -0700657 device->dev.parent = &spi->dev;
Brian Norris004b5e62015-10-30 20:33:28 -0700658 mtd_set_of_node(device, spi->dev.of_node);
David Brownell87f39f02009-03-26 00:42:50 -0700659
David Brownell34a82442008-07-30 12:35:05 -0700660 if (revision >= 'c')
661 otp_tag = otp_setup(device, revision);
662
Artem Bityutskiy5b7f3a52008-12-18 14:09:56 +0200663 dev_info(&spi->dev, "%s (%lld KBytes) pagesize %d bytes%s\n",
664 name, (long long)((device->size + 1023) >> 10),
David Brownell34a82442008-07-30 12:35:05 -0700665 pagesize, otp_tag);
Jingoo Han5cacbfa2013-04-06 15:41:03 +0900666 spi_set_drvdata(spi, priv);
David Brownell1d6432f2006-01-08 13:34:22 -0800667
Brian Norris004b5e62015-10-30 20:33:28 -0700668 err = mtd_device_register(device,
Dmitry Eremin-Solenikov3a8fb122011-06-02 17:59:18 +0400669 pdata ? pdata->parts : NULL,
670 pdata ? pdata->nr_parts : 0);
David Brownell1d6432f2006-01-08 13:34:22 -0800671
H Hartley Sweetend4702662009-10-07 17:08:08 -0400672 if (!err)
673 return 0;
674
H Hartley Sweetend4702662009-10-07 17:08:08 -0400675 kfree(priv);
676 return err;
David Brownell1d6432f2006-01-08 13:34:22 -0800677}
678
Greg Kroah-Hartmand8929942012-12-21 13:19:05 -0800679static inline int add_dataflash(struct spi_device *spi, char *name,
680 int nr_pages, int pagesize, int pageoffset)
David Brownell34a82442008-07-30 12:35:05 -0700681{
682 return add_dataflash_otp(spi, name, nr_pages, pagesize,
683 pageoffset, 0);
684}
685
Michael Henneriche9d42222008-06-03 12:26:05 +0800686struct flash_info {
687 char *name;
688
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700689 /* JEDEC id has a high byte of zero plus three data bytes:
690 * the manufacturer id, then a two byte device id.
Michael Henneriche9d42222008-06-03 12:26:05 +0800691 */
Andrey Smirnov1da88692017-04-21 09:30:25 -0700692 u64 jedec_id;
Michael Henneriche9d42222008-06-03 12:26:05 +0800693
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700694 /* The size listed here is what works with OP_ERASE_PAGE. */
Michael Henneriche9d42222008-06-03 12:26:05 +0800695 unsigned nr_pages;
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700696 u16 pagesize;
697 u16 pageoffset;
Michael Henneriche9d42222008-06-03 12:26:05 +0800698
Andrey Smirnovc41e43c2017-04-21 09:30:21 -0700699 u16 flags;
Andrey Smirnov1da88692017-04-21 09:30:25 -0700700#define SUP_EXTID 0x0004 /* supports extended ID data */
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700701#define SUP_POW2PS 0x0002 /* supports 2^N byte pages */
702#define IS_POW2PS 0x0001 /* uses 2^N byte pages */
Michael Henneriche9d42222008-06-03 12:26:05 +0800703};
704
Artem Bityutskiy7bf350b72012-11-22 12:16:28 +0200705static struct flash_info dataflash_data[] = {
Michael Henneriche9d42222008-06-03 12:26:05 +0800706
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700707 /*
708 * NOTE: chips with SUP_POW2PS (rev D and up) need two entries,
709 * one with IS_POW2PS and the other without. The entry with the
710 * non-2^N byte page size can't name exact chip revisions without
711 * losing backwards compatibility for cmdlinepart.
712 *
713 * These newer chips also support 128-byte security registers (with
714 * 64 bytes one-time-programmable) and software write-protection.
715 */
716 { "AT45DB011B", 0x1f2200, 512, 264, 9, SUP_POW2PS},
Michael Henneriche9d42222008-06-03 12:26:05 +0800717 { "at45db011d", 0x1f2200, 512, 256, 8, SUP_POW2PS | IS_POW2PS},
718
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700719 { "AT45DB021B", 0x1f2300, 1024, 264, 9, SUP_POW2PS},
Michael Henneriche9d42222008-06-03 12:26:05 +0800720 { "at45db021d", 0x1f2300, 1024, 256, 8, SUP_POW2PS | IS_POW2PS},
721
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700722 { "AT45DB041x", 0x1f2400, 2048, 264, 9, SUP_POW2PS},
Michael Henneriche9d42222008-06-03 12:26:05 +0800723 { "at45db041d", 0x1f2400, 2048, 256, 8, SUP_POW2PS | IS_POW2PS},
724
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700725 { "AT45DB081B", 0x1f2500, 4096, 264, 9, SUP_POW2PS},
Michael Henneriche9d42222008-06-03 12:26:05 +0800726 { "at45db081d", 0x1f2500, 4096, 256, 8, SUP_POW2PS | IS_POW2PS},
727
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700728 { "AT45DB161x", 0x1f2600, 4096, 528, 10, SUP_POW2PS},
Michael Henneriche9d42222008-06-03 12:26:05 +0800729 { "at45db161d", 0x1f2600, 4096, 512, 9, SUP_POW2PS | IS_POW2PS},
730
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700731 { "AT45DB321x", 0x1f2700, 8192, 528, 10, 0}, /* rev C */
Michael Henneriche9d42222008-06-03 12:26:05 +0800732
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700733 { "AT45DB321x", 0x1f2701, 8192, 528, 10, SUP_POW2PS},
Michael Henneriche9d42222008-06-03 12:26:05 +0800734 { "at45db321d", 0x1f2701, 8192, 512, 9, SUP_POW2PS | IS_POW2PS},
735
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700736 { "AT45DB642x", 0x1f2800, 8192, 1056, 11, SUP_POW2PS},
737 { "at45db642d", 0x1f2800, 8192, 1024, 10, SUP_POW2PS | IS_POW2PS},
Andrey Smirnov67e41452017-04-21 09:30:26 -0700738
Geert Uytterhoevencbdceb92018-06-22 09:04:25 +0200739 { "AT45DB641E", 0x1f28000100ULL, 32768, 264, 9, SUP_EXTID | SUP_POW2PS},
740 { "at45db641e", 0x1f28000100ULL, 32768, 256, 8, SUP_EXTID | SUP_POW2PS | IS_POW2PS},
Michael Henneriche9d42222008-06-03 12:26:05 +0800741};
742
Andrey Smirnov1da88692017-04-21 09:30:25 -0700743static struct flash_info *jedec_lookup(struct spi_device *spi,
744 u64 jedec, bool use_extid)
Michael Henneriche9d42222008-06-03 12:26:05 +0800745{
Andrey Smirnov41c9c662017-04-21 09:30:22 -0700746 struct flash_info *info;
Michael Henneriche9d42222008-06-03 12:26:05 +0800747 int status;
748
Andrey Smirnova296a1b2017-04-21 09:30:24 -0700749 for (info = dataflash_data;
750 info < dataflash_data + ARRAY_SIZE(dataflash_data);
751 info++) {
Andrey Smirnov1da88692017-04-21 09:30:25 -0700752 if (use_extid && !(info->flags & SUP_EXTID))
753 continue;
754
Michael Henneriche9d42222008-06-03 12:26:05 +0800755 if (info->jedec_id == jedec) {
Andrey Smirnov02f628642017-04-21 09:30:23 -0700756 dev_dbg(&spi->dev, "OTP, sector protect%s\n",
757 (info->flags & SUP_POW2PS) ?
758 ", binary pagesize" : "");
Michael Henneriche9d42222008-06-03 12:26:05 +0800759 if (info->flags & SUP_POW2PS) {
760 status = dataflash_status(spi);
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700761 if (status < 0) {
Andrey Smirnov02f628642017-04-21 09:30:23 -0700762 dev_dbg(&spi->dev, "status error %d\n",
763 status);
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700764 return ERR_PTR(status);
765 }
766 if (status & 0x1) {
767 if (info->flags & IS_POW2PS)
768 return info;
769 } else {
770 if (!(info->flags & IS_POW2PS))
771 return info;
772 }
Will Newton229cc582009-03-10 12:55:53 -0700773 } else
774 return info;
Michael Henneriche9d42222008-06-03 12:26:05 +0800775 }
776 }
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700777
Andrey Smirnov1da88692017-04-21 09:30:25 -0700778 return ERR_PTR(-ENODEV);
779}
780
781static struct flash_info *jedec_probe(struct spi_device *spi)
782{
783 int ret;
784 u8 code = OP_READ_ID;
785 u64 jedec;
786 u8 id[sizeof(jedec)] = {0};
787 const unsigned int id_size = 5;
788 struct flash_info *info;
789
790 /*
791 * JEDEC also defines an optional "extended device information"
792 * string for after vendor-specific data, after the three bytes
793 * we use here. Supporting some chips might require using it.
794 *
795 * If the vendor ID isn't Atmel's (0x1f), assume this call failed.
796 * That's not an error; only rev C and newer chips handle it, and
797 * only Atmel sells these chips.
798 */
799 ret = spi_write_then_read(spi, &code, 1, id, id_size);
800 if (ret < 0) {
801 dev_dbg(&spi->dev, "error %d reading JEDEC ID\n", ret);
802 return ERR_PTR(ret);
803 }
804
805 if (id[0] != CFI_MFR_ATMEL)
806 return NULL;
807
808 jedec = be64_to_cpup((__be64 *)id);
809
810 /*
811 * First, try to match device using extended device
812 * information
813 */
814 info = jedec_lookup(spi, jedec >> DATAFLASH_SHIFT_EXTID, true);
815 if (!IS_ERR(info))
816 return info;
817 /*
818 * If that fails, make another pass using regular ID
819 * information
820 */
821 info = jedec_lookup(spi, jedec >> DATAFLASH_SHIFT_ID, false);
822 if (!IS_ERR(info))
823 return info;
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700824 /*
825 * Treat other chips as errors ... we won't know the right page
826 * size (it might be binary) even when we can tell which density
827 * class is involved (legacy chip id scheme).
828 */
Andrey Smirnov1da88692017-04-21 09:30:25 -0700829 dev_warn(&spi->dev, "JEDEC id %016llx not handled\n", jedec);
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700830 return ERR_PTR(-ENODEV);
Michael Henneriche9d42222008-06-03 12:26:05 +0800831}
832
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700833/*
834 * Detect and initialize DataFlash device, using JEDEC IDs on newer chips
835 * or else the ID code embedded in the status bits:
836 *
837 * Device Density ID code #Pages PageSize Offset
838 * AT45DB011B 1Mbit (128K) xx0011xx (0x0c) 512 264 9
839 * AT45DB021B 2Mbit (256K) xx0101xx (0x14) 1024 264 9
840 * AT45DB041B 4Mbit (512K) xx0111xx (0x1c) 2048 264 9
841 * AT45DB081B 8Mbit (1M) xx1001xx (0x24) 4096 264 9
842 * AT45DB0161B 16Mbit (2M) xx1011xx (0x2c) 4096 528 10
843 * AT45DB0321B 32Mbit (4M) xx1101xx (0x34) 8192 528 10
844 * AT45DB0642 64Mbit (8M) xx111xxx (0x3c) 8192 1056 11
845 * AT45DB1282 128Mbit (16M) xx0100xx (0x10) 16384 1056 11
846 */
Bill Pemberton06f25512012-11-19 13:23:07 -0500847static int dataflash_probe(struct spi_device *spi)
David Brownell1d6432f2006-01-08 13:34:22 -0800848{
849 int status;
Michael Henneriche9d42222008-06-03 12:26:05 +0800850 struct flash_info *info;
851
852 /*
853 * Try to detect dataflash by JEDEC ID.
854 * If it succeeds we know we have either a C or D part.
855 * D will support power of 2 pagesize option.
David Brownell34a82442008-07-30 12:35:05 -0700856 * Both support the security register, though with different
857 * write procedures.
Michael Henneriche9d42222008-06-03 12:26:05 +0800858 */
Michael Henneriche9d42222008-06-03 12:26:05 +0800859 info = jedec_probe(spi);
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700860 if (IS_ERR(info))
861 return PTR_ERR(info);
Michael Henneriche9d42222008-06-03 12:26:05 +0800862 if (info != NULL)
David Brownell34a82442008-07-30 12:35:05 -0700863 return add_dataflash_otp(spi, info->name, info->nr_pages,
864 info->pagesize, info->pageoffset,
865 (info->flags & SUP_POW2PS) ? 'd' : 'c');
Michael Henneriche9d42222008-06-03 12:26:05 +0800866
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700867 /*
868 * Older chips support only legacy commands, identifing
869 * capacity using bits in the status byte.
870 */
David Brownell1d6432f2006-01-08 13:34:22 -0800871 status = dataflash_status(spi);
872 if (status <= 0 || status == 0xff) {
Andrey Smirnov02f628642017-04-21 09:30:23 -0700873 dev_dbg(&spi->dev, "status error %d\n", status);
David Brownellde4fa99262006-12-29 16:48:47 -0800874 if (status == 0 || status == 0xff)
David Brownell1d6432f2006-01-08 13:34:22 -0800875 status = -ENODEV;
876 return status;
877 }
878
879 /* if there's a device there, assume it's dataflash.
880 * board setup should have set spi->max_speed_max to
881 * match f(car) for continuous reads, mode 0 or 3.
882 */
883 switch (status & 0x3c) {
884 case 0x0c: /* 0 0 1 1 x x */
885 status = add_dataflash(spi, "AT45DB011B", 512, 264, 9);
886 break;
887 case 0x14: /* 0 1 0 1 x x */
Michael Henneriche9d42222008-06-03 12:26:05 +0800888 status = add_dataflash(spi, "AT45DB021B", 1024, 264, 9);
David Brownell1d6432f2006-01-08 13:34:22 -0800889 break;
890 case 0x1c: /* 0 1 1 1 x x */
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700891 status = add_dataflash(spi, "AT45DB041x", 2048, 264, 9);
David Brownell1d6432f2006-01-08 13:34:22 -0800892 break;
893 case 0x24: /* 1 0 0 1 x x */
894 status = add_dataflash(spi, "AT45DB081B", 4096, 264, 9);
895 break;
896 case 0x2c: /* 1 0 1 1 x x */
akpm@linux-foundation.org771999b2008-07-29 22:22:40 -0700897 status = add_dataflash(spi, "AT45DB161x", 4096, 528, 10);
David Brownell1d6432f2006-01-08 13:34:22 -0800898 break;
899 case 0x34: /* 1 1 0 1 x x */
900 status = add_dataflash(spi, "AT45DB321x", 8192, 528, 10);
901 break;
902 case 0x38: /* 1 1 1 x x x */
903 case 0x3c:
904 status = add_dataflash(spi, "AT45DB642x", 8192, 1056, 11);
905 break;
906 /* obsolete AT45DB1282 not (yet?) supported */
907 default:
Mark Browncb85b7e2013-10-16 13:16:14 +0100908 dev_info(&spi->dev, "unsupported device (%x)\n",
Brian Norris0a32a102011-07-19 10:06:10 -0700909 status & 0x3c);
David Brownell1d6432f2006-01-08 13:34:22 -0800910 status = -ENODEV;
911 }
912
913 if (status < 0)
Andrey Smirnov02f628642017-04-21 09:30:23 -0700914 dev_dbg(&spi->dev, "add_dataflash --> %d\n", status);
David Brownell1d6432f2006-01-08 13:34:22 -0800915
916 return status;
917}
918
Bill Pemberton810b7e02012-11-19 13:26:04 -0500919static int dataflash_remove(struct spi_device *spi)
David Brownell1d6432f2006-01-08 13:34:22 -0800920{
Jingoo Han5cacbfa2013-04-06 15:41:03 +0900921 struct dataflash *flash = spi_get_drvdata(spi);
David Brownell1d6432f2006-01-08 13:34:22 -0800922
Andrey Smirnov02f628642017-04-21 09:30:23 -0700923 dev_dbg(&spi->dev, "remove\n");
David Brownell1d6432f2006-01-08 13:34:22 -0800924
Uwe Kleine-König4fea96a2021-11-08 10:31:49 +0100925 WARN_ON(mtd_device_unregister(&flash->mtd));
926
927 kfree(flash);
928
929 return 0;
David Brownell1d6432f2006-01-08 13:34:22 -0800930}
931
932static struct spi_driver dataflash_driver = {
933 .driver = {
934 .name = "mtd_dataflash",
Sachin Kamat19d69b82013-03-14 15:37:00 +0530935 .of_match_table = of_match_ptr(dataflash_dt_ids),
David Brownell1d6432f2006-01-08 13:34:22 -0800936 },
Jon Hunter27a030e2021-11-30 11:24:43 +0000937 .id_table = dataflash_dev_ids,
David Brownell1d6432f2006-01-08 13:34:22 -0800938
939 .probe = dataflash_probe,
Bill Pemberton5153b882012-11-19 13:21:24 -0500940 .remove = dataflash_remove,
David Brownell1d6432f2006-01-08 13:34:22 -0800941
942 /* FIXME: investigate suspend and resume... */
943};
944
Axel Linc9d1b752012-01-27 15:45:20 +0800945module_spi_driver(dataflash_driver);
David Brownell1d6432f2006-01-08 13:34:22 -0800946
947MODULE_LICENSE("GPL");
948MODULE_AUTHOR("Andrew Victor, David Brownell");
949MODULE_DESCRIPTION("MTD DataFlash driver");
Anton Vorontsove0626e32009-09-22 16:46:08 -0700950MODULE_ALIAS("spi:mtd_dataflash");