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Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +02001/*
2 * SPI flash interface
3 *
4 * Copyright (C) 2008 Atmel Corporation
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +02005 * Copyright (C) 2010 Reinhard Meyer, EMK Elektronik
6 *
Mike Frysinger4166ee52009-10-09 17:12:44 -04007 * Licensed under the GPL-2 or later.
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +02008 */
Mike Frysingerf773a1b2009-03-23 23:03:58 -04009
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020010#include <common.h>
Simon Glassbb8215f2013-03-11 06:08:08 +000011#include <fdtdec.h>
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020012#include <malloc.h>
13#include <spi.h>
14#include <spi_flash.h>
Patrick Sestierbd0d19c2011-04-15 14:25:25 +000015#include <watchdog.h>
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020016
17#include "spi_flash_internal.h"
18
Simon Glassbb8215f2013-03-11 06:08:08 +000019DECLARE_GLOBAL_DATA_PTR;
20
Mike Frysingere7b44ed2011-01-10 02:20:13 -050021static void spi_flash_addr(u32 addr, u8 *cmd)
22{
23 /* cmd[0] is actual command */
24 cmd[1] = addr >> 16;
25 cmd[2] = addr >> 8;
26 cmd[3] = addr >> 0;
27}
28
Mike Frysinger000044d2011-01-10 02:20:11 -050029static int spi_flash_read_write(struct spi_slave *spi,
30 const u8 *cmd, size_t cmd_len,
31 const u8 *data_out, u8 *data_in,
32 size_t data_len)
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020033{
34 unsigned long flags = SPI_XFER_BEGIN;
35 int ret;
36
Mike Frysinger000044d2011-01-10 02:20:11 -050037 if (data_len == 0)
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020038 flags |= SPI_XFER_END;
39
Mike Frysinger000044d2011-01-10 02:20:11 -050040 ret = spi_xfer(spi, cmd_len * 8, cmd, NULL, flags);
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020041 if (ret) {
Mike Frysinger000044d2011-01-10 02:20:11 -050042 debug("SF: Failed to send command (%zu bytes): %d\n",
43 cmd_len, ret);
44 } else if (data_len != 0) {
45 ret = spi_xfer(spi, data_len * 8, data_out, data_in, SPI_XFER_END);
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020046 if (ret)
Mike Frysinger000044d2011-01-10 02:20:11 -050047 debug("SF: Failed to transfer %zu bytes of data: %d\n",
48 data_len, ret);
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020049 }
50
51 return ret;
52}
53
Mike Frysinger000044d2011-01-10 02:20:11 -050054int spi_flash_cmd(struct spi_slave *spi, u8 cmd, void *response, size_t len)
55{
56 return spi_flash_cmd_read(spi, &cmd, 1, response, len);
57}
58
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020059int spi_flash_cmd_read(struct spi_slave *spi, const u8 *cmd,
60 size_t cmd_len, void *data, size_t data_len)
61{
Mike Frysinger000044d2011-01-10 02:20:11 -050062 return spi_flash_read_write(spi, cmd, cmd_len, NULL, data, data_len);
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020063}
64
65int spi_flash_cmd_write(struct spi_slave *spi, const u8 *cmd, size_t cmd_len,
66 const void *data, size_t data_len)
67{
Mike Frysinger000044d2011-01-10 02:20:11 -050068 return spi_flash_read_write(spi, cmd, cmd_len, data, NULL, data_len);
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +020069}
70
Mike Frysingerd4aa5002011-04-25 06:58:29 +000071int spi_flash_cmd_write_multi(struct spi_flash *flash, u32 offset,
72 size_t len, const void *buf)
73{
74 unsigned long page_addr, byte_addr, page_size;
75 size_t chunk_len, actual;
76 int ret;
77 u8 cmd[4];
78
79 page_size = flash->page_size;
80 page_addr = offset / page_size;
81 byte_addr = offset % page_size;
82
83 ret = spi_claim_bus(flash->spi);
84 if (ret) {
85 debug("SF: unable to claim SPI bus\n");
86 return ret;
87 }
88
89 cmd[0] = CMD_PAGE_PROGRAM;
90 for (actual = 0; actual < len; actual += chunk_len) {
91 chunk_len = min(len - actual, page_size - byte_addr);
92
Simon Glass1e566bc2013-03-11 06:08:06 +000093 if (flash->spi->max_write_size)
94 chunk_len = min(chunk_len, flash->spi->max_write_size);
95
Mike Frysingerd4aa5002011-04-25 06:58:29 +000096 cmd[1] = page_addr >> 8;
97 cmd[2] = page_addr;
98 cmd[3] = byte_addr;
99
100 debug("PP: 0x%p => cmd = { 0x%02x 0x%02x%02x%02x } chunk_len = %zu\n",
101 buf + actual, cmd[0], cmd[1], cmd[2], cmd[3], chunk_len);
102
103 ret = spi_flash_cmd_write_enable(flash);
104 if (ret < 0) {
105 debug("SF: enabling write failed\n");
106 break;
107 }
108
109 ret = spi_flash_cmd_write(flash->spi, cmd, 4,
110 buf + actual, chunk_len);
111 if (ret < 0) {
112 debug("SF: write failed\n");
113 break;
114 }
115
116 ret = spi_flash_cmd_wait_ready(flash, SPI_FLASH_PROG_TIMEOUT);
117 if (ret)
118 break;
119
Simon Glass1e566bc2013-03-11 06:08:06 +0000120 byte_addr += chunk_len;
121 if (byte_addr == page_size) {
122 page_addr++;
123 byte_addr = 0;
124 }
Mike Frysingerd4aa5002011-04-25 06:58:29 +0000125 }
126
127 debug("SF: program %s %zu bytes @ %#x\n",
128 ret ? "failure" : "success", len, offset);
129
130 spi_release_bus(flash->spi);
131 return ret;
132}
133
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200134int spi_flash_read_common(struct spi_flash *flash, const u8 *cmd,
135 size_t cmd_len, void *data, size_t data_len)
136{
137 struct spi_slave *spi = flash->spi;
138 int ret;
139
140 spi_claim_bus(spi);
141 ret = spi_flash_cmd_read(spi, cmd, cmd_len, data, data_len);
142 spi_release_bus(spi);
143
144 return ret;
145}
146
Mike Frysingera4c3b402011-01-10 02:20:14 -0500147int spi_flash_cmd_read_fast(struct spi_flash *flash, u32 offset,
148 size_t len, void *data)
149{
150 u8 cmd[5];
151
Simon Glassbb8215f2013-03-11 06:08:08 +0000152 /* Handle memory-mapped SPI */
153 if (flash->memory_map)
154 memcpy(data, flash->memory_map + offset, len);
155
Mike Frysingera4c3b402011-01-10 02:20:14 -0500156 cmd[0] = CMD_READ_ARRAY_FAST;
157 spi_flash_addr(offset, cmd);
158 cmd[4] = 0x00;
159
160 return spi_flash_read_common(flash, cmd, sizeof(cmd), data, len);
161}
162
Mike Frysinger61630452011-01-10 02:20:12 -0500163int spi_flash_cmd_poll_bit(struct spi_flash *flash, unsigned long timeout,
164 u8 cmd, u8 poll_bit)
165{
166 struct spi_slave *spi = flash->spi;
167 unsigned long timebase;
168 int ret;
169 u8 status;
170
171 ret = spi_xfer(spi, 8, &cmd, NULL, SPI_XFER_BEGIN);
172 if (ret) {
173 debug("SF: Failed to send command %02x: %d\n", cmd, ret);
174 return ret;
175 }
176
177 timebase = get_timer(0);
178 do {
Patrick Sestierbd0d19c2011-04-15 14:25:25 +0000179 WATCHDOG_RESET();
180
Mike Frysinger61630452011-01-10 02:20:12 -0500181 ret = spi_xfer(spi, 8, NULL, &status, 0);
182 if (ret)
183 return -1;
184
185 if ((status & poll_bit) == 0)
186 break;
187
188 } while (get_timer(timebase) < timeout);
189
190 spi_xfer(spi, 0, NULL, NULL, SPI_XFER_END);
191
192 if ((status & poll_bit) == 0)
193 return 0;
194
195 /* Timed out */
196 debug("SF: time out!\n");
197 return -1;
198}
199
200int spi_flash_cmd_wait_ready(struct spi_flash *flash, unsigned long timeout)
201{
202 return spi_flash_cmd_poll_bit(flash, timeout,
203 CMD_READ_STATUS, STATUS_WIP);
204}
205
Mike Frysingerc4e932c2012-03-04 22:35:50 -0500206int spi_flash_cmd_erase(struct spi_flash *flash, u32 offset, size_t len)
Mike Frysingere7b44ed2011-01-10 02:20:13 -0500207{
Richard Retanubun4e6a5152011-02-16 16:37:22 -0500208 u32 start, end, erase_size;
Mike Frysingere7b44ed2011-01-10 02:20:13 -0500209 int ret;
210 u8 cmd[4];
211
Richard Retanubun4e6a5152011-02-16 16:37:22 -0500212 erase_size = flash->sector_size;
Mike Frysingere7b44ed2011-01-10 02:20:13 -0500213 if (offset % erase_size || len % erase_size) {
214 debug("SF: Erase offset/length not multiple of erase size\n");
215 return -1;
216 }
217
218 ret = spi_claim_bus(flash->spi);
219 if (ret) {
220 debug("SF: Unable to claim SPI bus\n");
221 return ret;
222 }
223
Mike Frysingerc4e932c2012-03-04 22:35:50 -0500224 if (erase_size == 4096)
225 cmd[0] = CMD_ERASE_4K;
226 else
227 cmd[0] = CMD_ERASE_64K;
Mike Frysingere7b44ed2011-01-10 02:20:13 -0500228 start = offset;
229 end = start + len;
230
231 while (offset < end) {
232 spi_flash_addr(offset, cmd);
233 offset += erase_size;
234
235 debug("SF: erase %2x %2x %2x %2x (%x)\n", cmd[0], cmd[1],
236 cmd[2], cmd[3], offset);
237
Mike Frysinger2744a4e2011-04-23 23:05:55 +0000238 ret = spi_flash_cmd_write_enable(flash);
Mike Frysingere7b44ed2011-01-10 02:20:13 -0500239 if (ret)
240 goto out;
241
242 ret = spi_flash_cmd_write(flash->spi, cmd, sizeof(cmd), NULL, 0);
243 if (ret)
244 goto out;
245
246 ret = spi_flash_cmd_wait_ready(flash, SPI_FLASH_PAGE_ERASE_TIMEOUT);
247 if (ret)
248 goto out;
249 }
250
Vadim Bendebury1f6734c2011-10-12 11:28:38 +0000251 debug("SF: Successfully erased %zu bytes @ %#x\n", len, start);
Mike Frysingere7b44ed2011-01-10 02:20:13 -0500252
253 out:
254 spi_release_bus(flash->spi);
255 return ret;
256}
257
Mike Frysinger41e17132012-03-04 23:18:17 -0500258int spi_flash_cmd_write_status(struct spi_flash *flash, u8 sr)
259{
260 u8 cmd;
261 int ret;
262
263 ret = spi_flash_cmd_write_enable(flash);
264 if (ret < 0) {
265 debug("SF: enabling write failed\n");
266 return ret;
267 }
268
269 cmd = CMD_WRITE_STATUS;
270 ret = spi_flash_cmd_write(flash->spi, &cmd, 1, &sr, 1);
271 if (ret) {
272 debug("SF: fail to write status register\n");
273 return ret;
274 }
275
276 ret = spi_flash_cmd_wait_ready(flash, SPI_FLASH_PROG_TIMEOUT);
277 if (ret < 0) {
278 debug("SF: write status register timed out\n");
279 return ret;
280 }
281
282 return 0;
283}
284
Simon Glassbb8215f2013-03-11 06:08:08 +0000285#ifdef CONFIG_OF_CONTROL
286int spi_flash_decode_fdt(const void *blob, struct spi_flash *flash)
287{
288 fdt_addr_t addr;
289 fdt_size_t size;
290 int node;
291
292 /* If there is no node, do nothing */
293 node = fdtdec_next_compatible(blob, 0, COMPAT_GENERIC_SPI_FLASH);
294 if (node < 0)
295 return 0;
296
297 addr = fdtdec_get_addr_size(blob, node, "memory-map", &size);
298 if (addr == FDT_ADDR_T_NONE) {
299 debug("%s: Cannot decode address\n", __func__);
300 return 0;
301 }
302
303 if (flash->size != size) {
304 debug("%s: Memory map must cover entire device\n", __func__);
305 return -1;
306 }
307 flash->memory_map = (void *)addr;
308
309 return 0;
310}
311#endif /* CONFIG_OF_CONTROL */
312
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200313/*
314 * The following table holds all device probe functions
315 *
316 * shift: number of continuation bytes before the ID
317 * idcode: the expected IDCODE or 0xff for non JEDEC devices
318 * probe: the function to call
319 *
320 * Non JEDEC devices should be ordered in the table such that
321 * the probe functions with best detection algorithms come first.
322 *
323 * Several matching entries are permitted, they will be tried
324 * in sequence until a probe function returns non NULL.
325 *
326 * IDCODE_CONT_LEN may be redefined if a device needs to declare a
327 * larger "shift" value. IDCODE_PART_LEN generally shouldn't be
328 * changed. This is the max number of bytes probe functions may
329 * examine when looking up part-specific identification info.
330 *
331 * Probe functions will be given the idcode buffer starting at their
332 * manu id byte (the "idcode" in the table below). In other words,
333 * all of the continuation bytes will be skipped (the "shift" below).
334 */
335#define IDCODE_CONT_LEN 0
336#define IDCODE_PART_LEN 5
337static const struct {
338 const u8 shift;
339 const u8 idcode;
340 struct spi_flash *(*probe) (struct spi_slave *spi, u8 *idcode);
341} flashes[] = {
342 /* Keep it sorted by define name */
343#ifdef CONFIG_SPI_FLASH_ATMEL
344 { 0, 0x1f, spi_flash_probe_atmel, },
345#endif
Chong Huangd1d906562010-11-30 03:33:25 -0500346#ifdef CONFIG_SPI_FLASH_EON
347 { 0, 0x1c, spi_flash_probe_eon, },
348#endif
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200349#ifdef CONFIG_SPI_FLASH_MACRONIX
350 { 0, 0xc2, spi_flash_probe_macronix, },
351#endif
352#ifdef CONFIG_SPI_FLASH_SPANSION
353 { 0, 0x01, spi_flash_probe_spansion, },
354#endif
355#ifdef CONFIG_SPI_FLASH_SST
356 { 0, 0xbf, spi_flash_probe_sst, },
357#endif
358#ifdef CONFIG_SPI_FLASH_STMICRO
359 { 0, 0x20, spi_flash_probe_stmicro, },
360#endif
361#ifdef CONFIG_SPI_FLASH_WINBOND
362 { 0, 0xef, spi_flash_probe_winbond, },
363#endif
Reinhard Meyere0987e22010-10-05 16:56:40 +0200364#ifdef CONFIG_SPI_FRAM_RAMTRON
365 { 6, 0xc2, spi_fram_probe_ramtron, },
366# undef IDCODE_CONT_LEN
367# define IDCODE_CONT_LEN 6
368#endif
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200369 /* Keep it sorted by best detection */
370#ifdef CONFIG_SPI_FLASH_STMICRO
371 { 0, 0xff, spi_flash_probe_stmicro, },
372#endif
Reinhard Meyere0987e22010-10-05 16:56:40 +0200373#ifdef CONFIG_SPI_FRAM_RAMTRON_NON_JEDEC
374 { 0, 0xff, spi_fram_probe_ramtron, },
375#endif
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200376};
377#define IDCODE_LEN (IDCODE_CONT_LEN + IDCODE_PART_LEN)
378
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200379struct spi_flash *spi_flash_probe(unsigned int bus, unsigned int cs,
380 unsigned int max_hz, unsigned int spi_mode)
381{
382 struct spi_slave *spi;
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200383 struct spi_flash *flash = NULL;
384 int ret, i, shift;
385 u8 idcode[IDCODE_LEN], *idp;
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200386
387 spi = spi_setup_slave(bus, cs, max_hz, spi_mode);
388 if (!spi) {
Mike Frysingerb376bbb2010-04-29 00:35:12 -0400389 printf("SF: Failed to set up slave\n");
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200390 return NULL;
391 }
392
393 ret = spi_claim_bus(spi);
394 if (ret) {
395 debug("SF: Failed to claim SPI bus: %d\n", ret);
396 goto err_claim_bus;
397 }
398
399 /* Read the ID codes */
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200400 ret = spi_flash_cmd(spi, CMD_READ_ID, idcode, sizeof(idcode));
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200401 if (ret)
402 goto err_read_id;
403
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200404#ifdef DEBUG
405 printf("SF: Got idcodes\n");
406 print_buffer(0, idcode, 1, sizeof(idcode), 0);
407#endif
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200408
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200409 /* count the number of continuation bytes */
410 for (shift = 0, idp = idcode;
411 shift < IDCODE_CONT_LEN && *idp == 0x7f;
412 ++shift, ++idp)
413 continue;
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200414
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200415 /* search the table for matches in shift and id */
416 for (i = 0; i < ARRAY_SIZE(flashes); ++i)
417 if (flashes[i].shift == shift && flashes[i].idcode == *idp) {
418 /* we have a match, call probe */
419 flash = flashes[i].probe(spi, idp);
420 if (flash)
421 break;
422 }
423
424 if (!flash) {
425 printf("SF: Unsupported manufacturer %02x\n", *idp);
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200426 goto err_manufacturer_probe;
Reinhard Meyer0d3fe2b2010-10-05 16:56:39 +0200427 }
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200428
Simon Glassbb8215f2013-03-11 06:08:08 +0000429#ifdef CONFIG_OF_CONTROL
430 if (spi_flash_decode_fdt(gd->fdt_blob, flash)) {
431 debug("SF: FDT decode error\n");
432 goto err_manufacturer_probe;
433 }
434#endif
Mike Frysinger493c3602011-04-12 02:09:28 -0400435 printf("SF: Detected %s with page size ", flash->name);
436 print_size(flash->sector_size, ", total ");
Simon Glassbb8215f2013-03-11 06:08:08 +0000437 print_size(flash->size, "");
438 if (flash->memory_map)
439 printf(", mapped at %p", flash->memory_map);
440 puts("\n");
Richard Retanubun4e6a5152011-02-16 16:37:22 -0500441
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200442 spi_release_bus(spi);
443
444 return flash;
445
446err_manufacturer_probe:
447err_read_id:
448 spi_release_bus(spi);
449err_claim_bus:
450 spi_free_slave(spi);
451 return NULL;
452}
453
Simon Glassb5aec142013-03-11 06:08:02 +0000454void *spi_flash_do_alloc(int offset, int size, struct spi_slave *spi,
455 const char *name)
456{
457 struct spi_flash *flash;
458 void *ptr;
459
460 ptr = malloc(size);
461 if (!ptr) {
462 debug("SF: Failed to allocate memory\n");
463 return NULL;
464 }
465 memset(ptr, '\0', size);
466 flash = (struct spi_flash *)(ptr + offset);
467
468 /* Set up some basic fields - caller will sort out sizes */
469 flash->spi = spi;
470 flash->name = name;
471
472 flash->read = spi_flash_cmd_read_fast;
473 flash->write = spi_flash_cmd_write_multi;
474 flash->erase = spi_flash_cmd_erase;
475
476 return flash;
477}
478
Haavard Skinnemoend25ce7d2008-05-16 11:10:33 +0200479void spi_flash_free(struct spi_flash *flash)
480{
481 spi_free_slave(flash->spi);
482 free(flash);
483}