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83d290c5 1// SPDX-License-Identifier: GPL-2.0+
b6368467
HS
2/*
3 * Command for accessing SPI flash.
4 *
5 * Copyright (C) 2008 Atmel Corporation
6 */
4166ee58 7
b6368467 8#include <common.h>
09140113 9#include <command.h>
4e4bf944 10#include <display_options.h>
381c6e2c 11#include <div64.h>
fbb09918 12#include <dm.h>
f7ae49fc 13#include <log.h>
8d1af942 14#include <malloc.h>
0eb25b61 15#include <mapmem.h>
ff0960f9 16#include <spi.h>
b6368467 17#include <spi_flash.h>
90526e9f 18#include <asm/cache.h>
2ec1a405
HS
19#include <jffs2/jffs2.h>
20#include <linux/mtd/mtd.h>
b6368467
HS
21
22#include <asm/io.h>
fbb09918 23#include <dm/device-internal.h>
b6368467 24
eb446ef6
MR
25#include "legacy-mtd-utils.h"
26
b6368467
HS
27static struct spi_flash *flash;
28
334eb4b0
RR
29/*
30 * This function computes the length argument for the erase command.
31 * The length on which the command is to operate can be given in two forms:
32 * 1. <cmd> offset len - operate on <'offset', 'len')
33 * 2. <cmd> offset +len - operate on <'offset', 'round_up(len)')
34 * If the second form is used and the length doesn't fall on the
35 * sector boundary, than it will be adjusted to the next sector boundary.
36 * If it isn't in the flash, the function will fail (return -1).
37 * Input:
38 * arg: length specification (i.e. both command arguments)
39 * Output:
40 * len: computed length for operation
41 * Return:
42 * 1: success
43 * -1: failure (bad format, bad address).
44 */
45static int sf_parse_len_arg(char *arg, ulong *len)
46{
47 char *ep;
48 char round_up_len; /* indicates if the "+length" form used */
49 ulong len_arg;
50
51 round_up_len = 0;
52 if (*arg == '+') {
53 round_up_len = 1;
54 ++arg;
55 }
56
7e5f460e 57 len_arg = hextoul(arg, &ep);
334eb4b0
RR
58 if (ep == arg || *ep != '\0')
59 return -1;
60
61 if (round_up_len && flash->sector_size > 0)
155cfb5e 62 *len = ROUND(len_arg, flash->sector_size);
334eb4b0
RR
63 else
64 *len = len_arg;
65
66 return 1;
67}
68
a683c288
JM
69/**
70 * This function takes a byte length and a delta unit of time to compute the
71 * approximate bytes per second
72 *
73 * @param len amount of bytes currently processed
74 * @param start_ms start time of processing in ms
185f812c 75 * Return: bytes per second if OK, 0 on error
a683c288
JM
76 */
77static ulong bytes_per_second(unsigned int len, ulong start_ms)
78{
79 /* less accurate but avoids overflow */
80 if (len >= ((unsigned int) -1) / 1024)
b4141195 81 return len / (max(get_timer(start_ms) / 1024, 1UL));
a683c288 82 else
b4141195 83 return 1024 * len / max(get_timer(start_ms), 1UL);
a683c288
JM
84}
85
09140113 86static int do_spi_flash_probe(int argc, char *const argv[])
b6368467 87{
c1173bd0
EN
88 unsigned int bus = CONFIG_SF_DEFAULT_BUS;
89 unsigned int cs = CONFIG_SF_DEFAULT_CS;
b0cc1b84 90 /* In DM mode, defaults speed and mode will be taken from DT */
b6368467
HS
91 unsigned int speed = CONFIG_SF_DEFAULT_SPEED;
92 unsigned int mode = CONFIG_SF_DEFAULT_MODE;
93 char *endp;
3feea0ba 94 bool use_dt = true;
56c40460 95#if CONFIG_IS_ENABLED(DM_SPI_FLASH)
fbb09918
SG
96 struct udevice *new, *bus_dev;
97 int ret;
98#else
b6368467 99 struct spi_flash *new;
fbb09918 100#endif
b6368467 101
c1173bd0
EN
102 if (argc >= 2) {
103 cs = simple_strtoul(argv[1], &endp, 0);
104 if (*argv[1] == 0 || (*endp != 0 && *endp != ':'))
8a07de03 105 return -1;
c1173bd0
EN
106 if (*endp == ':') {
107 if (endp[1] == 0)
108 return -1;
109
110 bus = cs;
111 cs = simple_strtoul(endp + 1, &endp, 0);
112 if (*endp != 0)
113 return -1;
114 }
b6368467
HS
115 }
116
117 if (argc >= 3) {
118 speed = simple_strtoul(argv[2], &endp, 0);
119 if (*argv[2] == 0 || *endp != 0)
8a07de03 120 return -1;
3feea0ba 121 use_dt = false;
b6368467
HS
122 }
123 if (argc >= 4) {
7e5f460e 124 mode = hextoul(argv[3], &endp);
b6368467 125 if (*argv[3] == 0 || *endp != 0)
8a07de03 126 return -1;
3feea0ba 127 use_dt = false;
b6368467
HS
128 }
129
56c40460 130#if CONFIG_IS_ENABLED(DM_SPI_FLASH)
fbb09918
SG
131 /* Remove the old device, otherwise probe will just be a nop */
132 ret = spi_find_bus_and_cs(bus, cs, &bus_dev, &new);
133 if (!ret) {
706865af 134 device_remove(new, DM_REMOVE_NORMAL);
fbb09918
SG
135 }
136 flash = NULL;
3feea0ba
PC
137 if (use_dt) {
138 spi_flash_probe_bus_cs(bus, cs, &new);
139 flash = dev_get_uclass_priv(new);
140 } else {
141 flash = spi_flash_probe(bus, cs, speed, mode);
142 }
143
144 if (!flash) {
fbb09918
SG
145 printf("Failed to initialize SPI flash at %u:%u (error %d)\n",
146 bus, cs, ret);
147 return 1;
148 }
fbb09918 149#else
8ee81b7f
HS
150 if (flash)
151 spi_flash_free(flash);
152
b6368467 153 new = spi_flash_probe(bus, cs, speed, mode);
8ee81b7f 154 flash = new;
b6368467
HS
155 if (!new) {
156 printf("Failed to initialize SPI flash at %u:%u\n", bus, cs);
157 return 1;
158 }
fbb09918 159#endif
b6368467 160
b6368467 161 return 0;
b6368467
HS
162}
163
8d1af942
SG
164/**
165 * Write a block of data to SPI flash, first checking if it is different from
166 * what is already there.
167 *
168 * If the data being written is the same, then *skipped is incremented by len.
169 *
170 * @param flash flash context pointer
171 * @param offset flash offset to write
172 * @param len number of bytes to write
173 * @param buf buffer to write from
174 * @param cmp_buf read buffer to use to compare data
175 * @param skipped Count of skipped data (incremented by this function)
185f812c 176 * Return: NULL if OK, else a string containing the stage which failed
8d1af942
SG
177 */
178static const char *spi_flash_update_block(struct spi_flash *flash, u32 offset,
179 size_t len, const char *buf, char *cmp_buf, size_t *skipped)
180{
ed62756d 181 char *ptr = (char *)buf;
622b5d35
MV
182 u32 start_offset = offset % flash->sector_size;
183 u32 read_offset = offset - start_offset;
ed62756d 184
622b5d35
MV
185 debug("offset=%#x+%#x, sector_size=%#x, len=%#zx\n",
186 read_offset, start_offset, flash->sector_size, len);
b95f958d 187 /* Read the entire sector so to allow for rewriting */
622b5d35 188 if (spi_flash_read(flash, read_offset, flash->sector_size, cmp_buf))
8d1af942 189 return "read";
b95f958d 190 /* Compare only what is meaningful (len) */
622b5d35
MV
191 if (memcmp(cmp_buf + start_offset, buf, len) == 0) {
192 debug("Skip region %x+%x size %zx: no change\n",
193 start_offset, read_offset, len);
8d1af942
SG
194 *skipped += len;
195 return NULL;
196 }
34888506
GF
197 /* Erase the entire sector */
198 if (spi_flash_erase(flash, offset, flash->sector_size))
8d1af942 199 return "erase";
ed62756d 200 /* If it's a partial sector, copy the data into the temp-buffer */
b95f958d 201 if (len != flash->sector_size) {
622b5d35 202 memcpy(cmp_buf + start_offset, buf, len);
ed62756d 203 ptr = cmp_buf;
b95f958d 204 }
ed62756d
SR
205 /* Write one complete sector */
206 if (spi_flash_write(flash, offset, flash->sector_size, ptr))
207 return "write";
b95f958d 208
8d1af942
SG
209 return NULL;
210}
211
212/**
213 * Update an area of SPI flash by erasing and writing any blocks which need
214 * to change. Existing blocks with the correct data are left unchanged.
215 *
216 * @param flash flash context pointer
217 * @param offset flash offset to write
218 * @param len number of bytes to write
219 * @param buf buffer to write from
185f812c 220 * Return: 0 if ok, 1 on error
8d1af942
SG
221 */
222static int spi_flash_update(struct spi_flash *flash, u32 offset,
223 size_t len, const char *buf)
224{
225 const char *err_oper = NULL;
226 char *cmp_buf;
227 const char *end = buf + len;
228 size_t todo; /* number of bytes to do in this pass */
8e8a4bc2 229 size_t skipped = 0; /* statistics */
a683c288
JM
230 const ulong start_time = get_timer(0);
231 size_t scale = 1;
232 const char *start_buf = buf;
233 ulong delta;
8d1af942 234
a683c288
JM
235 if (end - buf >= 200)
236 scale = (end - buf) / 100;
156e96f0 237 cmp_buf = memalign(ARCH_DMA_MINALIGN, flash->sector_size);
8d1af942 238 if (cmp_buf) {
a683c288
JM
239 ulong last_update = get_timer(0);
240
8e8a4bc2 241 for (; buf < end && !err_oper; buf += todo, offset += todo) {
b4141195 242 todo = min_t(size_t, end - buf, flash->sector_size);
622b5d35
MV
243 todo = min_t(size_t, end - buf,
244 flash->sector_size - (offset % flash->sector_size));
a683c288
JM
245 if (get_timer(last_update) > 100) {
246 printf(" \rUpdating, %zu%% %lu B/s",
402ba1e3 247 100 - (end - buf) / scale,
a683c288
JM
248 bytes_per_second(buf - start_buf,
249 start_time));
250 last_update = get_timer(0);
251 }
8d1af942
SG
252 err_oper = spi_flash_update_block(flash, offset, todo,
253 buf, cmp_buf, &skipped);
254 }
255 } else {
256 err_oper = "malloc";
257 }
258 free(cmp_buf);
a683c288 259 putc('\r');
8d1af942
SG
260 if (err_oper) {
261 printf("SPI flash failed in %s step\n", err_oper);
262 return 1;
263 }
a683c288
JM
264
265 delta = get_timer(start_time);
266 printf("%zu bytes written, %zu bytes skipped", len - skipped,
402ba1e3 267 skipped);
a683c288 268 printf(" in %ld.%lds, speed %ld B/s\n",
402ba1e3 269 delta / 1000, delta % 1000, bytes_per_second(len, start_time));
8e8a4bc2 270
8d1af942
SG
271 return 0;
272}
273
09140113 274static int do_spi_flash_read_write(int argc, char *const argv[])
b6368467
HS
275{
276 unsigned long addr;
b6368467
HS
277 void *buf;
278 char *endp;
60b6614a 279 int ret = 1;
2ec1a405
HS
280 int dev = 0;
281 loff_t offset, len, maxsize;
b6368467 282
2ec1a405 283 if (argc < 3)
8a07de03 284 return -1;
b6368467 285
7e5f460e 286 addr = hextoul(argv[1], &endp);
b6368467 287 if (*argv[1] == 0 || *endp != 0)
8a07de03 288 return -1;
2ec1a405
HS
289
290 if (mtd_arg_off_size(argc - 2, &argv[2], &dev, &offset, &len,
291 &maxsize, MTD_DEV_TYPE_NOR, flash->size))
8a07de03 292 return -1;
b6368467 293
86493994
GF
294 /* Consistency checking */
295 if (offset + len > flash->size) {
296 printf("ERROR: attempting %s past flash size (%#x)\n",
402ba1e3 297 argv[0], flash->size);
86493994
GF
298 return 1;
299 }
300
f3a56dda
JK
301 if (strncmp(argv[0], "read", 4) != 0 && flash->flash_is_unlocked &&
302 !flash->flash_is_unlocked(flash, offset, len)) {
303 printf("ERROR: flash area is locked\n");
304 return 1;
305 }
306
b6368467 307 buf = map_physmem(addr, len, MAP_WRBACK);
10f087f7 308 if (!buf && addr) {
b6368467
HS
309 puts("Failed to map physical memory\n");
310 return 1;
311 }
312
402ba1e3 313 if (strcmp(argv[0], "update") == 0) {
8d1af942 314 ret = spi_flash_update(flash, offset, len, buf);
402ba1e3 315 } else if (strncmp(argv[0], "read", 4) == 0 ||
60b6614a
JT
316 strncmp(argv[0], "write", 5) == 0) {
317 int read;
318
319 read = strncmp(argv[0], "read", 4) == 0;
320 if (read)
321 ret = spi_flash_read(flash, offset, len, buf);
322 else
323 ret = spi_flash_write(flash, offset, len, buf);
324
a7d0711a
SG
325 printf("SF: %zu bytes @ %#x %s: ", (size_t)len, (u32)offset,
326 read ? "Read" : "Written");
327 if (ret)
328 printf("ERROR %d\n", ret);
329 else
330 printf("OK\n");
60b6614a 331 }
b6368467
HS
332
333 unmap_physmem(buf, len);
334
60b6614a 335 return ret == 0 ? 0 : 1;
b6368467
HS
336}
337
09140113 338static int do_spi_flash_erase(int argc, char *const argv[])
b6368467 339{
b6368467 340 int ret;
2ec1a405
HS
341 int dev = 0;
342 loff_t offset, len, maxsize;
343 ulong size;
b6368467
HS
344
345 if (argc < 3)
8a07de03 346 return -1;
b6368467 347
2ec1a405
HS
348 if (mtd_arg_off(argv[1], &dev, &offset, &len, &maxsize,
349 MTD_DEV_TYPE_NOR, flash->size))
8a07de03 350 return -1;
334eb4b0 351
2ec1a405 352 ret = sf_parse_len_arg(argv[2], &size);
334eb4b0 353 if (ret != 1)
8a07de03 354 return -1;
b6368467 355
86493994 356 /* Consistency checking */
2ec1a405 357 if (offset + size > flash->size) {
86493994 358 printf("ERROR: attempting %s past flash size (%#x)\n",
402ba1e3 359 argv[0], flash->size);
86493994
GF
360 return 1;
361 }
362
f3a56dda
JK
363 if (flash->flash_is_unlocked &&
364 !flash->flash_is_unlocked(flash, offset, len)) {
365 printf("ERROR: flash area is locked\n");
366 return 1;
367 }
368
2ec1a405 369 ret = spi_flash_erase(flash, offset, size);
1bb8ca3b
SA
370 printf("SF: %zu bytes @ %#x Erased: ", (size_t)size, (u32)offset);
371 if (ret)
372 printf("ERROR %d\n", ret);
373 else
374 printf("OK\n");
b6368467 375
96bbf556 376 return ret == 0 ? 0 : 1;
b6368467
HS
377}
378
09140113 379static int do_spi_protect(int argc, char *const argv[])
c3c016cf
FE
380{
381 int ret = 0;
382 loff_t start, len;
383 bool prot = false;
384
385 if (argc != 4)
386 return -1;
387
388 if (!str2off(argv[2], &start)) {
389 puts("start sector is not a valid number\n");
390 return 1;
391 }
392
393 if (!str2off(argv[3], &len)) {
394 puts("len is not a valid number\n");
395 return 1;
396 }
397
398 if (strcmp(argv[1], "lock") == 0)
399 prot = true;
400 else if (strcmp(argv[1], "unlock") == 0)
401 prot = false;
402 else
403 return -1; /* Unknown parameter */
404
405 ret = spi_flash_protect(flash, start, len, prot);
406
407 return ret == 0 ? 0 : 1;
408}
409
24007273
SG
410enum {
411 STAGE_ERASE,
412 STAGE_CHECK,
413 STAGE_WRITE,
414 STAGE_READ,
415
416 STAGE_COUNT,
417};
418
ad4e0100 419static const char *stage_name[STAGE_COUNT] = {
24007273
SG
420 "erase",
421 "check",
422 "write",
423 "read",
424};
425
426struct test_info {
427 int stage;
428 int bytes;
429 unsigned base_ms;
430 unsigned time_ms[STAGE_COUNT];
431};
432
433static void show_time(struct test_info *test, int stage)
434{
435 uint64_t speed; /* KiB/s */
436 int bps; /* Bits per second */
437
438 speed = (long long)test->bytes * 1000;
d1f22d4b
SG
439 if (test->time_ms[stage])
440 do_div(speed, test->time_ms[stage] * 1024);
24007273
SG
441 bps = speed * 8;
442
c6b2ea37 443 printf("%d %s: %u ticks, %d KiB/s %d.%03d Mbps\n", stage,
24007273
SG
444 stage_name[stage], test->time_ms[stage],
445 (int)speed, bps / 1000, bps % 1000);
446}
447
448static void spi_test_next_stage(struct test_info *test)
449{
450 test->time_ms[test->stage] = get_timer(test->base_ms);
451 show_time(test, test->stage);
452 test->base_ms = get_timer(0);
453 test->stage++;
454}
455
456/**
457 * Run a test on the SPI flash
458 *
459 * @param flash SPI flash to use
460 * @param buf Source buffer for data to write
461 * @param len Size of data to read/write
462 * @param offset Offset within flash to check
463 * @param vbuf Verification buffer
185f812c 464 * Return: 0 if ok, -1 on error
24007273 465 */
1e7133e9
SG
466static int spi_flash_test(struct spi_flash *flash, uint8_t *buf, ulong len,
467 ulong offset, uint8_t *vbuf)
24007273
SG
468{
469 struct test_info test;
9bc77281 470 int err, i;
24007273
SG
471
472 printf("SPI flash test:\n");
473 memset(&test, '\0', sizeof(test));
474 test.base_ms = get_timer(0);
475 test.bytes = len;
9bc77281
SA
476 err = spi_flash_erase(flash, offset, len);
477 if (err) {
478 printf("Erase failed (err = %d)\n", err);
24007273
SG
479 return -1;
480 }
481 spi_test_next_stage(&test);
482
9bc77281
SA
483 err = spi_flash_read(flash, offset, len, vbuf);
484 if (err) {
485 printf("Check read failed (err = %d)\n", err);
24007273
SG
486 return -1;
487 }
488 for (i = 0; i < len; i++) {
489 if (vbuf[i] != 0xff) {
490 printf("Check failed at %d\n", i);
b4141195
MY
491 print_buffer(i, vbuf + i, 1,
492 min_t(uint, len - i, 0x40), 0);
24007273
SG
493 return -1;
494 }
495 }
496 spi_test_next_stage(&test);
497
9bc77281
SA
498 err = spi_flash_write(flash, offset, len, buf);
499 if (err) {
500 printf("Write failed (err = %d)\n", err);
24007273
SG
501 return -1;
502 }
503 memset(vbuf, '\0', len);
504 spi_test_next_stage(&test);
505
9bc77281
SA
506 err = spi_flash_read(flash, offset, len, vbuf);
507 if (err) {
508 printf("Read failed (ret = %d)\n", err);
24007273
SG
509 return -1;
510 }
511 spi_test_next_stage(&test);
512
513 for (i = 0; i < len; i++) {
514 if (buf[i] != vbuf[i]) {
515 printf("Verify failed at %d, good data:\n", i);
b4141195
MY
516 print_buffer(i, buf + i, 1,
517 min_t(uint, len - i, 0x40), 0);
24007273 518 printf("Bad data:\n");
b4141195
MY
519 print_buffer(i, vbuf + i, 1,
520 min_t(uint, len - i, 0x40), 0);
24007273
SG
521 return -1;
522 }
523 }
524 printf("Test passed\n");
525 for (i = 0; i < STAGE_COUNT; i++)
526 show_time(&test, i);
527
528 return 0;
529}
530
09140113 531static int do_spi_flash_test(int argc, char *const argv[])
24007273
SG
532{
533 unsigned long offset;
534 unsigned long len;
d1f22d4b 535 uint8_t *buf, *from;
24007273 536 char *endp;
1e7133e9 537 uint8_t *vbuf;
24007273
SG
538 int ret;
539
d1f22d4b
SG
540 if (argc < 3)
541 return -1;
7e5f460e 542 offset = hextoul(argv[1], &endp);
24007273
SG
543 if (*argv[1] == 0 || *endp != 0)
544 return -1;
7e5f460e 545 len = hextoul(argv[2], &endp);
24007273
SG
546 if (*argv[2] == 0 || *endp != 0)
547 return -1;
548
156e96f0 549 vbuf = memalign(ARCH_DMA_MINALIGN, len);
24007273 550 if (!vbuf) {
d1f22d4b 551 printf("Cannot allocate memory (%lu bytes)\n", len);
24007273
SG
552 return 1;
553 }
156e96f0 554 buf = memalign(ARCH_DMA_MINALIGN, len);
24007273
SG
555 if (!buf) {
556 free(vbuf);
d1f22d4b 557 printf("Cannot allocate memory (%lu bytes)\n", len);
24007273
SG
558 return 1;
559 }
560
98463903 561 from = map_sysmem(CONFIG_TEXT_BASE, 0);
d1f22d4b 562 memcpy(buf, from, len);
24007273
SG
563 ret = spi_flash_test(flash, buf, len, offset, vbuf);
564 free(vbuf);
565 free(buf);
566 if (ret) {
567 printf("Test failed\n");
568 return 1;
569 }
570
571 return 0;
572}
24007273 573
09140113
SG
574static int do_spi_flash(struct cmd_tbl *cmdtp, int flag, int argc,
575 char *const argv[])
b6368467
HS
576{
577 const char *cmd;
8a07de03 578 int ret;
b6368467
HS
579
580 /* need at least two arguments */
581 if (argc < 2)
582 goto usage;
583
584 cmd = argv[1];
8a07de03
MF
585 --argc;
586 ++argv;
b6368467 587
8a07de03
MF
588 if (strcmp(cmd, "probe") == 0) {
589 ret = do_spi_flash_probe(argc, argv);
590 goto done;
591 }
b6368467
HS
592
593 /* The remaining commands require a selected device */
594 if (!flash) {
595 puts("No SPI flash selected. Please run `sf probe'\n");
596 return 1;
597 }
598
8d1af942
SG
599 if (strcmp(cmd, "read") == 0 || strcmp(cmd, "write") == 0 ||
600 strcmp(cmd, "update") == 0)
8a07de03
MF
601 ret = do_spi_flash_read_write(argc, argv);
602 else if (strcmp(cmd, "erase") == 0)
603 ret = do_spi_flash_erase(argc, argv);
c3c016cf
FE
604 else if (strcmp(cmd, "protect") == 0)
605 ret = do_spi_protect(argc, argv);
3512e157 606 else if (IS_ENABLED(CONFIG_CMD_SF_TEST) && !strcmp(cmd, "test"))
24007273 607 ret = do_spi_flash_test(argc, argv);
8a07de03
MF
608 else
609 ret = -1;
610
611done:
612 if (ret != -1)
613 return ret;
b6368467
HS
614
615usage:
4c12eeb8 616 return CMD_RET_USAGE;
b6368467
HS
617}
618
3512e157
SG
619#ifdef CONFIG_SYS_LONGHELP
620static const char long_help[] =
c1173bd0 621 "probe [[bus:]cs] [hz] [mode] - init flash device on given SPI bus\n"
b6368467 622 " and chip select\n"
2ec1a405
HS
623 "sf read addr offset|partition len - read `len' bytes starting at\n"
624 " `offset' or from start of mtd\n"
625 " `partition'to memory at `addr'\n"
626 "sf write addr offset|partition len - write `len' bytes from memory\n"
627 " at `addr' to flash at `offset'\n"
628 " or to start of mtd `partition'\n"
629 "sf erase offset|partition [+]len - erase `len' bytes from `offset'\n"
630 " or from start of mtd `partition'\n"
631 " `+len' round up `len' to block size\n"
632 "sf update addr offset|partition len - erase and write `len' bytes from memory\n"
633 " at `addr' to flash at `offset'\n"
634 " or to start of mtd `partition'\n"
c3c016cf 635 "sf protect lock/unlock sector len - protect/unprotect 'len' bytes starting\n"
3512e157
SG
636 " at address 'sector'"
637#ifdef CONFIG_CMD_SF_TEST
638 "\nsf test offset len - run a very basic destructive test"
639#endif
640#endif /* CONFIG_SYS_LONGHELP */
641 ;
642
643U_BOOT_CMD(
644 sf, 5, 1, do_spi_flash,
645 "SPI flash sub-system", long_help
a89c33db 646);