mmc_cmds.c 30.5 KB
Newer Older
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
/*
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public
 * License v2 as published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * General Public License for more details.
 *
 * You should have received a copy of the GNU General Public
 * License along with this program; if not, write to the
 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
 * Boston, MA 021110-1307, USA.
 */

#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/ioctl.h>
#include <sys/types.h>
#include <dirent.h>
#include <sys/stat.h>
#include <unistd.h>
#include <fcntl.h>
#include <libgen.h>
#include <limits.h>
#include <ctype.h>

#include "mmc.h"
#include "mmc_cmds.h"

int read_extcsd(int fd, __u8 *ext_csd)
{
	int ret = 0;
	struct mmc_ioc_cmd idata;
	memset(&idata, 0, sizeof(idata));
	memset(ext_csd, 0, sizeof(__u8) * 512);
	idata.write_flag = 0;
	idata.opcode = MMC_SEND_EXT_CSD;
	idata.arg = 0;
	idata.flags = MMC_RSP_SPI_R1 | MMC_RSP_R1 | MMC_CMD_ADTC;
	idata.blksz = 512;
	idata.blocks = 1;
	mmc_ioc_cmd_set_data(idata, ext_csd);

	ret = ioctl(fd, MMC_IOC_CMD, &idata);
	if (ret)
		perror("ioctl");

	return ret;
}

int write_extcsd_value(int fd, __u8 index, __u8 value)
{
	int ret = 0;
	struct mmc_ioc_cmd idata;

	memset(&idata, 0, sizeof(idata));
	idata.write_flag = 1;
	idata.opcode = MMC_SWITCH;
	idata.arg = (MMC_SWITCH_MODE_WRITE_BYTE << 24) |
			(index << 16) |
			(value << 8) |
			EXT_CSD_CMD_SET_NORMAL;
	idata.flags = MMC_RSP_SPI_R1B | MMC_RSP_R1B | MMC_CMD_AC;

	ret = ioctl(fd, MMC_IOC_CMD, &idata);
	if (ret)
		perror("ioctl");

	return ret;
}

Ben Gardiner's avatar
Ben Gardiner committed
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
int send_status(int fd, __u32 *response)
{
	int ret = 0;
	struct mmc_ioc_cmd idata;

	memset(&idata, 0, sizeof(idata));
	idata.opcode = MMC_SEND_STATUS;
	idata.arg = (1 << 16);
	idata.flags = MMC_RSP_R1 | MMC_CMD_AC;

	ret = ioctl(fd, MMC_IOC_CMD, &idata);
	if (ret)
	perror("ioctl");

	*response = idata.response[0];

	return ret;
}

94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
void print_writeprotect_status(__u8 *ext_csd)
{
	__u8 reg;
	__u8 ext_csd_rev = ext_csd[192];

	/* A43: reserved [174:0] */
	if (ext_csd_rev >= 5) {
		printf("Boot write protection status registers"
			" [BOOT_WP_STATUS]: 0x%02x\n", ext_csd[174]);

		reg = ext_csd[EXT_CSD_BOOT_WP];
		printf("Boot Area Write protection [BOOT_WP]: 0x%02x\n", reg);
		printf(" Power ro locking: ");
		if (reg & EXT_CSD_BOOT_WP_B_PWR_WP_DIS)
			printf("not possible\n");
		else
			printf("possible\n");

		printf(" Permanent ro locking: ");
		if (reg & EXT_CSD_BOOT_WP_B_PERM_WP_DIS)
			printf("not possible\n");
		else
			printf("possible\n");

		printf(" ro lock status: ");
		if (reg & EXT_CSD_BOOT_WP_B_PWR_WP_EN)
			printf("locked until next power on\n");
		else if (reg & EXT_CSD_BOOT_WP_B_PERM_WP_EN)
			printf("locked permanently\n");
		else
			printf("not locked\n");
	}
}

int do_writeprotect_get(int nargs, char **argv)
{
	__u8 ext_csd[512];
	int fd, ret;
	char *device;

134
135
	CHECK(nargs != 2, "Usage: mmc writeprotect get </path/to/mmcblkX>\n",
			  exit(1));
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161

	device = argv[1];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

	print_writeprotect_status(ext_csd);

	return ret;
}

int do_writeprotect_set(int nargs, char **argv)
{
	__u8 ext_csd[512], value;
	int fd, ret;
	char *device;

162
163
	CHECK(nargs != 2, "Usage: mmc writeprotect set </path/to/mmcblkX>\n",
			  exit(1));
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191

	device = argv[1];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

	value = ext_csd[EXT_CSD_BOOT_WP] |
		EXT_CSD_BOOT_WP_B_PWR_WP_EN;
	ret = write_extcsd_value(fd, EXT_CSD_BOOT_WP, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n",
			value, EXT_CSD_BOOT_WP, device);
		exit(1);
	}

	return ret;
}

192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
int do_disable_512B_emulation(int nargs, char **argv)
{
	__u8 ext_csd[512], native_sector_size, data_sector_size, wr_rel_param;
	int fd, ret;
	char *device;

	CHECK(nargs != 2, "Usage: mmc disable 512B emulation </path/to/mmcblkX>\n", exit(1));
	device = argv[1];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

	wr_rel_param = ext_csd[EXT_CSD_WR_REL_PARAM];
	native_sector_size = ext_csd[EXT_CSD_NATIVE_SECTOR_SIZE];
	data_sector_size = ext_csd[EXT_CSD_DATA_SECTOR_SIZE];

	if (native_sector_size && !data_sector_size &&
	   (wr_rel_param & EN_REL_WR)) {
		ret = write_extcsd_value(fd, EXT_CSD_USE_NATIVE_SECTOR, 1);

		if (ret) {
			fprintf(stderr, "Could not write 0x%02x to EXT_CSD[%d] in %s\n",
					1, EXT_CSD_BOOT_WP, device);
			exit(1);
		}
		printf("MMC disable 512B emulation successful.  Now reset the device to switch to 4KB native sector mode.\n");
	} else if (native_sector_size && data_sector_size) {
		printf("MMC 512B emulation mode is already disabled; doing nothing.\n");
	} else {
		printf("MMC does not support disabling 512B emulation mode.\n");
	}

	return ret;
}

236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
int do_write_boot_en(int nargs, char **argv)
{
	__u8 ext_csd[512];
	__u8 value = 0;
	int fd, ret;
	char *device;
	int boot_area, send_ack;

	CHECK(nargs != 4, "Usage: mmc bootpart enable <partition_number> "
			  "<send_ack> </path/to/mmcblkX>\n", exit(1));

	/*
	 * If <send_ack> is 1, the device will send acknowledgment
	 * pattern "010" to the host when boot operation begins.
	 * If <send_ack> is 0, it won't.
	 */
	boot_area = strtol(argv[1], NULL, 10);
	send_ack = strtol(argv[2], NULL, 10);
	device = argv[3];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

	value = ext_csd[EXT_CSD_PART_CONFIG];

	switch (boot_area) {
	case EXT_CSD_PART_CONFIG_ACC_BOOT0:
		value |= (1 << 3);
		value &= ~(3 << 4);
		break;
	case EXT_CSD_PART_CONFIG_ACC_BOOT1:
		value |= (1 << 4);
		value &= ~(1 << 3);
		value &= ~(1 << 5);
		break;
	case EXT_CSD_PART_CONFIG_ACC_USER_AREA:
		value |= (boot_area << 3);
		break;
	default:
		fprintf(stderr, "Cannot enable the boot area\n");
		exit(1);
	}
	if (send_ack)
		value |= EXT_CSD_PART_CONFIG_ACC_ACK;
	else
		value &= ~EXT_CSD_PART_CONFIG_ACC_ACK;

	ret = write_extcsd_value(fd, EXT_CSD_PART_CONFIG, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n",
			value, EXT_CSD_PART_CONFIG, device);
		exit(1);
	}
	return ret;
}

302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
int do_hwreset(int value, int nargs, char **argv)
{
	__u8 ext_csd[512];
	int fd, ret;
	char *device;

	CHECK(nargs != 2, "Usage: mmc hwreset enable </path/to/mmcblkX>\n",
			  exit(1));

	device = argv[1];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

	if ((ext_csd[EXT_CSD_RST_N_FUNCTION] & EXT_CSD_RST_N_EN_MASK) ==
	    EXT_CSD_HW_RESET_EN) {
		fprintf(stderr,
			"H/W Reset is already permanently enabled on %s\n",
			device);
		exit(1);
	}
	if ((ext_csd[EXT_CSD_RST_N_FUNCTION] & EXT_CSD_RST_N_EN_MASK) ==
	    EXT_CSD_HW_RESET_DIS) {
		fprintf(stderr,
			"H/W Reset is already permanently disabled on %s\n",
			device);
		exit(1);
	}

	ret = write_extcsd_value(fd, EXT_CSD_RST_N_FUNCTION, value);
	if (ret) {
		fprintf(stderr,
			"Could not write 0x%02x to EXT_CSD[%d] in %s\n",
			value, EXT_CSD_RST_N_FUNCTION, device);
		exit(1);
	}

	return ret;
}

int do_hwreset_en(int nargs, char **argv)
{
	return do_hwreset(EXT_CSD_HW_RESET_EN, nargs, argv);
}

int do_hwreset_dis(int nargs, char **argv)
{
	return do_hwreset(EXT_CSD_HW_RESET_DIS, nargs, argv);
}

361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
int do_write_bkops_en(int nargs, char **argv)
{
	__u8 ext_csd[512], value = 0;
	int fd, ret;
	char *device;

	CHECK(nargs != 2, "Usage: mmc bkops enable </path/to/mmcblkX>\n",
			exit(1));

	device = argv[1];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

	if (!(ext_csd[EXT_CSD_BKOPS_SUPPORT] & 0x1)) {
		fprintf(stderr, "%s doesn't support BKOPS\n", device);
		exit(1);
	}

	ret = write_extcsd_value(fd, EXT_CSD_BKOPS_EN, BKOPS_ENABLE);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to EXT_CSD[%d] in %s\n",
			value, EXT_CSD_BKOPS_EN, device);
		exit(1);
	}

	return ret;
}

Ben Gardiner's avatar
Ben Gardiner committed
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
int do_status_get(int nargs, char **argv)
{
	__u32 response;
	int fd, ret;
	char *device;

	CHECK(nargs != 2, "Usage: mmc status get </path/to/mmcblkX>\n",
		exit(1));

	device = argv[1];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = send_status(fd, &response);
	if (ret) {
		fprintf(stderr, "Could not read response to SEND_STATUS from %s\n", device);
		exit(1);
	}

	printf("SEND_STATUS response: 0x%08x\n", response);

	return ret;
}

427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
unsigned int get_sector_count(__u8 *ext_csd)
{
	return (ext_csd[EXT_CSD_SEC_COUNT_3] << 24) |
	(ext_csd[EXT_CSD_SEC_COUNT_2] << 16) |
	(ext_csd[EXT_CSD_SEC_COUNT_1] << 8)  |
	ext_csd[EXT_CSD_SEC_COUNT_0];
}

int is_blockaddresed(__u8 *ext_csd)
{
	unsigned int sectors = get_sector_count(ext_csd);

	return (sectors > (2u * 1024 * 1024 * 1024) / 512);
}

Ben Gardiner's avatar
Ben Gardiner committed
442
443
444
445
446
447
448
449
450
451
unsigned int get_hc_wp_grp_size(__u8 *ext_csd)
{
	return ext_csd[221];
}

unsigned int get_hc_erase_grp_size(__u8 *ext_csd)
{
	return ext_csd[224];
}

452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
int set_partitioning_setting_completed(int dry_run, const char * const device,
		int fd)
{
	int ret;

	if (dry_run) {
		fprintf(stderr, "NOT setting PARTITION_SETTING_COMPLETED\n");
		fprintf(stderr, "These changes will not take effect neither "
			"now nor after a power cycle\n");
		return 1;
	}

	fprintf(stderr, "setting OTP PARTITION_SETTING_COMPLETED!\n");
	ret = write_extcsd_value(fd, EXT_CSD_PARTITION_SETTING_COMPLETED, 0x1);
	if (ret) {
		fprintf(stderr, "Could not write 0x1 to "
			"EXT_CSD[%d] in %s\n",
			EXT_CSD_PARTITION_SETTING_COMPLETED, device);
		return 1;
	}

	__u32 response;
	ret = send_status(fd, &response);
	if (ret) {
		fprintf(stderr, "Could not get response to SEND_STATUS "
			"from %s\n", device);
		return 1;
	}

	if (response & R1_SWITCH_ERROR) {
		fprintf(stderr, "Setting OTP PARTITION_SETTING_COMPLETED "
			"failed on %s\n", device);
		return 1;
	}

	fprintf(stderr, "Setting OTP PARTITION_SETTING_COMPLETED on "
		"%s SUCCESS\n", device);
	fprintf(stderr, "Device power cycle needed for settings to "
		"take effect.\n"
		"Confirm that PARTITION_SETTING_COMPLETED bit is set "
		"using 'extcsd read' after power cycle\n");

	return 0;
}

497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
int do_enh_area_set(int nargs, char **argv)
{
	__u8 value;
	__u8 ext_csd[512];
	int fd, ret;
	char *device;
	int dry_run = 1;
	unsigned int start_kib, length_kib, enh_start_addr, enh_size_mult;
	unsigned long align;

	CHECK(nargs != 5, "Usage: mmc enh_area set <-y|-n> <start KiB> <length KiB> "
			  "</path/to/mmcblkX>\n", exit(1));

	if (!strcmp("-y", argv[1]))
		dry_run = 0;

	start_kib = strtol(argv[2], NULL, 10);
	length_kib = strtol(argv[3], NULL, 10);
	device = argv[4];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

	/* assert ENH_ATTRIBUTE_EN */
	if (!(ext_csd[EXT_CSD_PARTITIONING_SUPPORT] & EXT_CSD_ENH_ATTRIBUTE_EN))
	{
		printf(" Device cannot have enhanced tech.\n");
		exit(1);
	}

	/* assert not PARTITION_SETTING_COMPLETED */
	if (ext_csd[EXT_CSD_PARTITION_SETTING_COMPLETED])
	{
		printf(" Device is already partitioned\n");
		exit(1);
	}

	align = 512l * get_hc_wp_grp_size(ext_csd) * get_hc_erase_grp_size(ext_csd);

	enh_size_mult = (length_kib + align/2l) / align;

	enh_start_addr = start_kib * 1024 / (is_blockaddresed(ext_csd) ? 512 : 1);
	enh_start_addr /= align;
	enh_start_addr *= align;

	/* set EXT_CSD_ERASE_GROUP_DEF bit 0 */
	ret = write_extcsd_value(fd, EXT_CSD_ERASE_GROUP_DEF, 0x1);
	if (ret) {
		fprintf(stderr, "Could not write 0x1 to "
			"EXT_CSD[%d] in %s\n",
			EXT_CSD_ERASE_GROUP_DEF, device);
		exit(1);
	}

	/* write to ENH_START_ADDR and ENH_SIZE_MULT and PARTITIONS_ATTRIBUTE's ENH_USR bit */
	value = (enh_start_addr >> 24) & 0xff;
	ret = write_extcsd_value(fd, EXT_CSD_ENH_START_ADDR_3, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n", value,
			EXT_CSD_ENH_START_ADDR_3, device);
		exit(1);
	}
	value = (enh_start_addr >> 16) & 0xff;
	ret = write_extcsd_value(fd, EXT_CSD_ENH_START_ADDR_2, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n", value,
			EXT_CSD_ENH_START_ADDR_2, device);
		exit(1);
	}
	value = (enh_start_addr >> 8) & 0xff;
	ret = write_extcsd_value(fd, EXT_CSD_ENH_START_ADDR_1, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n", value,
			EXT_CSD_ENH_START_ADDR_1, device);
		exit(1);
	}
	value = enh_start_addr & 0xff;
	ret = write_extcsd_value(fd, EXT_CSD_ENH_START_ADDR_0, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n", value,
			EXT_CSD_ENH_START_ADDR_0, device);
		exit(1);
	}

	value = (enh_size_mult >> 16) & 0xff;
	ret = write_extcsd_value(fd, EXT_CSD_ENH_SIZE_MULT_2, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n", value,
			EXT_CSD_ENH_SIZE_MULT_2, device);
		exit(1);
	}
	value = (enh_size_mult >> 8) & 0xff;
	ret = write_extcsd_value(fd, EXT_CSD_ENH_SIZE_MULT_1, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n", value,
			EXT_CSD_ENH_SIZE_MULT_1, device);
		exit(1);
	}
	value = enh_size_mult & 0xff;
	ret = write_extcsd_value(fd, EXT_CSD_ENH_SIZE_MULT_0, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to "
			"EXT_CSD[%d] in %s\n", value,
			EXT_CSD_ENH_SIZE_MULT_0, device);
		exit(1);
	}

	ret = write_extcsd_value(fd, EXT_CSD_PARTITIONS_ATTRIBUTE, EXT_CSD_ENH_USR);
	if (ret) {
		fprintf(stderr, "Could not write EXT_CSD_ENH_USR to "
			"EXT_CSD[%d] in %s\n",
			EXT_CSD_PARTITIONS_ATTRIBUTE, device);
		exit(1);
	}

627
	printf("Done setting ENH_USR area on %s\n", device);
628

629
	if (!set_partitioning_setting_completed(dry_run, device, fd))
630
631
632
633
634
		exit(1);

	return 0;
}

635
636
637
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
684
685
686
687
688
689
690
691
692
693
694
695
696
int do_write_reliability_set(int nargs, char **argv)
{
	__u8 value;
	__u8 ext_csd[512];
	int fd, ret;

	int dry_run = 1;
	int partition;
	char *device;

	CHECK(nargs != 4, "Usage: mmc write_reliability set <-y|-n> "
			"<partition> </path/to/mmcblkX>\n", exit(1));

	if (!strcmp("-y", argv[1]))
		dry_run = 0;

	partition = strtol(argv[2], NULL, 10);
	device = argv[3];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

	/* assert not PARTITION_SETTING_COMPLETED */
	if (ext_csd[EXT_CSD_PARTITION_SETTING_COMPLETED])
	{
		printf(" Device is already partitioned\n");
		exit(1);
	}

	/* assert HS_CTRL_REL */
	if (!(ext_csd[EXT_CSD_WR_REL_PARAM] & HS_CTRL_REL)) {
		printf("Cannot set write reliability parameters, WR_REL_SET is "
				"read-only\n");
		exit(1);
	}

	value = ext_csd[EXT_CSD_WR_REL_SET] | (1<<partition);
	ret = write_extcsd_value(fd, EXT_CSD_WR_REL_SET, value);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to EXT_CSD[%d] in %s\n",
				value, EXT_CSD_WR_REL_SET, device);
		exit(1);
	}

	printf("Done setting EXT_CSD_WR_REL_SET to 0x%02x on %s\n",
		value, device);

	if (!set_partitioning_setting_completed(dry_run, device, fd))
		exit(1);

	return 0;
}

697
698
int do_read_extcsd(int nargs, char **argv)
{
699
	__u8 ext_csd[512], ext_csd_rev, reg;
700
	__u32 regl;
701
702
	int fd, ret;
	char *device;
703
	const char *str;
704

705
706
	CHECK(nargs != 2, "Usage: mmc extcsd read </path/to/mmcblkX>\n",
			  exit(1));
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721

	device = argv[1];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = read_extcsd(fd, ext_csd);
	if (ret) {
		fprintf(stderr, "Could not read EXT_CSD from %s\n", device);
		exit(1);
	}

722
723
724
725
726
727
728
729
730
731
732
733
734
735
736
737
738
739
740
741
742
743
744
745
746
747
748
749
750
751
752
753
754
755
756
757
758
759
	ext_csd_rev = ext_csd[192];

	switch (ext_csd_rev) {
	case 6:
		str = "4.5";
		break;
	case 5:
		str = "4.41";
		break;
	case 3:
		str = "4.3";
		break;
	case 2:
		str = "4.2";
		break;
	case 1:
		str = "4.1";
		break;
	case 0:
		str = "4.0";
		break;
	default:
		goto out_free;
	}
	printf("=============================================\n");
	printf("  Extended CSD rev 1.%d (MMC %s)\n", ext_csd_rev, str);
	printf("=============================================\n\n");

	if (ext_csd_rev < 3)
		goto out_free; /* No ext_csd */

	/* Parse the Extended CSD registers.
	 * Reserved bit should be read as "0" in case of spec older
	 * than A441.
	 */
	reg = ext_csd[EXT_CSD_S_CMD_SET];
	printf("Card Supported Command sets [S_CMD_SET: 0x%02x]\n", reg);
	if (!reg)
760
		printf(" - Standard MMC command sets\n");
761
762
763
764
765

	reg = ext_csd[EXT_CSD_HPI_FEATURE];
	printf("HPI Features [HPI_FEATURE: 0x%02x]: ", reg);
	if (reg & EXT_CSD_HPI_SUPP) {
		if (reg & EXT_CSD_HPI_IMPL)
766
			printf("implementation based on CMD12\n");
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804
		else
			printf("implementation based on CMD13\n");
	}

	printf("Background operations support [BKOPS_SUPPORT: 0x%02x]\n",
		ext_csd[502]);

	if (ext_csd_rev >= 6) {
		printf("Max Packet Read Cmd [MAX_PACKED_READS: 0x%02x]\n",
			ext_csd[501]);
		printf("Max Packet Write Cmd [MAX_PACKED_WRITES: 0x%02x]\n",
			ext_csd[500]);
		printf("Data TAG support [DATA_TAG_SUPPORT: 0x%02x]\n",
			ext_csd[499]);

		printf("Data TAG Unit Size [TAG_UNIT_SIZE: 0x%02x]\n",
			ext_csd[498]);
		printf("Tag Resources Size [TAG_RES_SIZE: 0x%02x]\n",
			ext_csd[497]);
		printf("Context Management Capabilities"
			" [CONTEXT_CAPABILITIES: 0x%02x]\n", ext_csd[496]);
		printf("Large Unit Size [LARGE_UNIT_SIZE_M1: 0x%02x]\n",
			ext_csd[495]);
		printf("Extended partition attribute support"
			" [EXT_SUPPORT: 0x%02x]\n", ext_csd[494]);
		printf("Generic CMD6 Timer [GENERIC_CMD6_TIME: 0x%02x]\n",
			ext_csd[248]);
		printf("Power off notification [POWER_OFF_LONG_TIME: 0x%02x]\n",
			ext_csd[247]);
		printf("Cache Size [CACHE_SIZE] is %d KiB\n",
			ext_csd[249] << 0 | (ext_csd[250] << 8) |
			(ext_csd[251] << 16) | (ext_csd[252] << 24));
	}

	/* A441: Reserved [501:247]
	    A43: reserved [246:229] */
	if (ext_csd_rev >= 5) {
		printf("Background operations status"
805
			" [BKOPS_STATUS: 0x%02x]\n", ext_csd[246]);
806
807
808
809
810
811
812
813
814
815
816
817
818
819
820
821
822
823
824
825

		/* CORRECTLY_PRG_SECTORS_NUM [245:242] TODO */

		printf("1st Initialisation Time after programmed sector"
			" [INI_TIMEOUT_AP: 0x%02x]\n", ext_csd[241]);

		/* A441: reserved [240] */
		printf("Power class for 52MHz, DDR at 3.6V"
			" [PWR_CL_DDR_52_360: 0x%02x]\n", ext_csd[239]);
		printf("Power class for 52MHz, DDR at 1.95V"
			" [PWR_CL_DDR_52_195: 0x%02x]\n", ext_csd[238]);

		/* A441: reserved [237-236] */

		if (ext_csd_rev >= 6) {
			printf("Power class for 200MHz at 3.6V"
				" [PWR_CL_200_360: 0x%02x]\n", ext_csd[237]);
			printf("Power class for 200MHz, at 1.95V"
				" [PWR_CL_200_195: 0x%02x]\n", ext_csd[236]);
		}
826
		printf("Minimum Performance for 8bit at 52MHz in DDR mode:\n");
827
828
829
830
831
832
833
834
835
836
837
838
839
840
841
842
843
844
845
846
847
848
849
850
851
		printf(" [MIN_PERF_DDR_W_8_52: 0x%02x]\n", ext_csd[235]);
		printf(" [MIN_PERF_DDR_R_8_52: 0x%02x]\n", ext_csd[234]);
		/* A441: reserved [233] */
		printf("TRIM Multiplier [TRIM_MULT: 0x%02x]\n", ext_csd[232]);
		printf("Secure Feature support [SEC_FEATURE_SUPPORT: 0x%02x]\n",
			ext_csd[231]);
	}
	if (ext_csd_rev == 5) { /* Obsolete in 4.5 */
		printf("Secure Erase Multiplier [SEC_ERASE_MULT: 0x%02x]\n",
			ext_csd[230]);
		printf("Secure TRIM Multiplier [SEC_TRIM_MULT: 0x%02x]\n",
			ext_csd[229]);
	}
	reg = ext_csd[EXT_CSD_BOOT_INFO];
	printf("Boot Information [BOOT_INFO: 0x%02x]\n", reg);
	if (reg & EXT_CSD_BOOT_INFO_ALT)
		printf(" Device supports alternative boot method\n");
	if (reg & EXT_CSD_BOOT_INFO_DDR_DDR)
		printf(" Device supports dual data rate during boot\n");
	if (reg & EXT_CSD_BOOT_INFO_HS_MODE)
		printf(" Device supports high speed timing during boot\n");

	/* A441/A43: reserved [227] */
	printf("Boot partition size [BOOT_SIZE_MULTI: 0x%02x]\n", ext_csd[226]);
	printf("Access size [ACC_SIZE: 0x%02x]\n", ext_csd[225]);
Ben Gardiner's avatar
Ben Gardiner committed
852
853

	reg = get_hc_erase_grp_size(ext_csd);
854
	printf("High-capacity erase unit size [HC_ERASE_GRP_SIZE: 0x%02x]\n",
Ben Gardiner's avatar
Ben Gardiner committed
855
856
857
		reg);
	printf(" i.e. %u KiB\n", 512 * reg);

858
859
860
861
	printf("High-capacity erase timeout [ERASE_TIMEOUT_MULT: 0x%02x]\n",
		ext_csd[223]);
	printf("Reliable write sector count [REL_WR_SEC_C: 0x%02x]\n",
		ext_csd[222]);
Ben Gardiner's avatar
Ben Gardiner committed
862
863

	reg = get_hc_wp_grp_size(ext_csd);
864
	printf("High-capacity W protect group size [HC_WP_GRP_SIZE: 0x%02x]\n",
Ben Gardiner's avatar
Ben Gardiner committed
865
866
867
		reg);
	printf(" i.e. %lu KiB\n", 512l * get_hc_erase_grp_size(ext_csd) * reg);

868
869
870
871
872
	printf("Sleep current (VCC) [S_C_VCC: 0x%02x]\n", ext_csd[220]);
	printf("Sleep current (VCCQ) [S_C_VCCQ: 0x%02x]\n", ext_csd[219]);
	/* A441/A43: reserved [218] */
	printf("Sleep/awake timeout [S_A_TIMEOUT: 0x%02x]\n", ext_csd[217]);
	/* A441/A43: reserved [216] */
873
874
875
876
877
878
879
880

	unsigned int sectors =	get_sector_count(ext_csd);
	printf("Sector Count [SEC_COUNT: 0x%08x]\n", sectors);
	if (is_blockaddresed(ext_csd))
		printf(" Device is block-addressed\n");
	else
		printf(" Device is NOT block-addressed\n");

881
882
883
884
885
886
887
888
889
890
891
892
893
894
895
896
897
898
899
900
901
902
903
904
905
906
907
908
909
910
911
	/* A441/A43: reserved [211] */
	printf("Minimum Write Performance for 8bit:\n");
	printf(" [MIN_PERF_W_8_52: 0x%02x]\n", ext_csd[210]);
	printf(" [MIN_PERF_R_8_52: 0x%02x]\n", ext_csd[209]);
	printf(" [MIN_PERF_W_8_26_4_52: 0x%02x]\n", ext_csd[208]);
	printf(" [MIN_PERF_R_8_26_4_52: 0x%02x]\n", ext_csd[207]);
	printf("Minimum Write Performance for 4bit:\n");
	printf(" [MIN_PERF_W_4_26: 0x%02x]\n", ext_csd[206]);
	printf(" [MIN_PERF_R_4_26: 0x%02x]\n", ext_csd[205]);
	/* A441/A43: reserved [204] */
	printf("Power classes registers:\n");
	printf(" [PWR_CL_26_360: 0x%02x]\n", ext_csd[203]);
	printf(" [PWR_CL_52_360: 0x%02x]\n", ext_csd[202]);
	printf(" [PWR_CL_26_195: 0x%02x]\n", ext_csd[201]);
	printf(" [PWR_CL_52_195: 0x%02x]\n", ext_csd[200]);

	/* A43: reserved [199:198] */
	if (ext_csd_rev >= 5) {
		printf("Partition switching timing "
			"[PARTITION_SWITCH_TIME: 0x%02x]\n", ext_csd[199]);
		printf("Out-of-interrupt busy timing"
			" [OUT_OF_INTERRUPT_TIME: 0x%02x]\n", ext_csd[198]);
	}

	/* A441/A43: reserved	[197] [195] [193] [190] [188]
	 * [186] [184] [182] [180] [176] */

	if (ext_csd_rev >= 6)
		printf("I/O Driver Strength [DRIVER_STRENGTH: 0x%02x]\n",
			ext_csd[197]);

912
913
914
915
916
917
918
919
920
	/* DEVICE_TYPE in A45, CARD_TYPE in A441 */
	reg = ext_csd[196];
	printf("Card Type [CARD_TYPE: 0x%02x]\n", reg);
	if (reg & 0x20) printf(" HS200 Single Data Rate eMMC @200MHz 1.2VI/O\n");
	if (reg & 0x10) printf(" HS200 Single Data Rate eMMC @200MHz 1.8VI/O\n");
	if (reg & 0x08) printf(" HS Dual Data Rate eMMC @52MHz 1.2VI/O\n");
	if (reg & 0x04)	printf(" HS Dual Data Rate eMMC @52MHz 1.8V or 3VI/O\n");
	if (reg & 0x02)	printf(" HS eMMC @52MHz - at rated device voltage(s)\n");
	if (reg & 0x01) printf(" HS eMMC @26MHz - at rated device voltage(s)\n");
921
922
923
924
925
926
927
928
929
930
931
932
933

	printf("CSD structure version [CSD_STRUCTURE: 0x%02x]\n", ext_csd[194]);
	/* ext_csd_rev = ext_csd[192] (already done!!!) */
	printf("Command set [CMD_SET: 0x%02x]\n", ext_csd[191]);
	printf("Command set revision [CMD_SET_REV: 0x%02x]\n", ext_csd[189]);
	printf("Power class [POWER_CLASS: 0x%02x]\n", ext_csd[187]);
	printf("High-speed interface timing [HS_TIMING: 0x%02x]\n",
		ext_csd[185]);
	/* bus_width: ext_csd[183] not readable */
	printf("Erased memory content [ERASED_MEM_CONT: 0x%02x]\n",
		ext_csd[181]);
	reg = ext_csd[EXT_CSD_BOOT_CFG];
	printf("Boot configuration bytes [PARTITION_CONFIG: 0x%02x]\n", reg);
934
	switch ((reg & EXT_CSD_BOOT_CFG_EN)>>3) {
935
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
952
953
954
955
956
957
	case 0x0:
		printf(" Not boot enable\n");
		break;
	case 0x1:
		printf(" Boot Partition 1 enabled\n");
		break;
	case 0x2:
		printf(" Boot Partition 2 enabled\n");
		break;
	case 0x7:
		printf(" User Area Enabled for boot\n");
		break;
	}
	switch (reg & EXT_CSD_BOOT_CFG_ACC) {
	case 0x0:
		printf(" No access to boot partition\n");
		break;
	case 0x1:
		printf(" R/W Boot Partition 1\n");
		break;
	case 0x2:
		printf(" R/W Boot Partition 2\n");
		break;
958
959
960
	case 0x3:
		printf(" R/W Replay Protected Memory Block (RPMB)\n");
		break;
961
	default:
962
		printf(" Access to General Purpose partition %d\n",
963
964
965
966
967
968
969
970
971
			(reg & EXT_CSD_BOOT_CFG_ACC) - 3);
		break;
	}

	printf("Boot config protection [BOOT_CONFIG_PROT: 0x%02x]\n",
		ext_csd[178]);
	printf("Boot bus Conditions [BOOT_BUS_CONDITIONS: 0x%02x]\n",
		ext_csd[177]);
	printf("High-density erase group definition"
972
		" [ERASE_GROUP_DEF: 0x%02x]\n", ext_csd[EXT_CSD_ERASE_GROUP_DEF]);
973

974
	print_writeprotect_status(ext_csd);
975

976
	if (ext_csd_rev >= 5) {
977
978
979
980
981
982
		/* A441]: reserved [172] */
		printf("User area write protection register"
			" [USER_WP]: 0x%02x\n", ext_csd[171]);
		/* A441]: reserved [170] */
		printf("FW configuration [FW_CONFIG]: 0x%02x\n", ext_csd[169]);
		printf("RPMB Size [RPMB_SIZE_MULT]: 0x%02x\n", ext_csd[168]);
983
984
985
986
987
988
989

		reg = ext_csd[EXT_CSD_WR_REL_SET];
		const char * const fast = "existing data is at risk if a power "
				"failure occurs during a write operation";
		const char * const reliable = "the device protects existing "
				"data if a power failure occurs during a write "
				"operation";
990
		printf("Write reliability setting register"
991
992
993
994
995
996
997
998
999
1000
			" [WR_REL_SET]: 0x%02x\n", reg);

		printf(" user area: %s\n", reg & (1<<0) ? reliable : fast);
		int i;
		for (i = 1; i <= 4; i++) {
			printf(" partition %d: %s\n", i,
				reg & (1<<i) ? reliable : fast);
		}

		reg = ext_csd[EXT_CSD_WR_REL_PARAM];
1001
		printf("Write reliability parameter register"
1002
1003
1004
1005
1006
1007
1008
			" [WR_REL_PARAM]: 0x%02x\n", reg);
		if (reg & 0x01)
			printf(" Device supports writing EXT_CSD_WR_REL_SET\n");
		if (reg & 0x04)
			printf(" Device supports the enhanced def. of reliable "
				"write\n");

1009
1010
1011
1012
1013
1014
1015
		/* sanitize_start ext_csd[165]]: not readable
		 * bkops_start ext_csd[164]]: only writable */
		printf("Enable background operations handshake"
			" [BKOPS_EN]: 0x%02x\n", ext_csd[163]);
		printf("H/W reset function"
			" [RST_N_FUNCTION]: 0x%02x\n", ext_csd[162]);
		printf("HPI management [HPI_MGMT]: 0x%02x\n", ext_csd[161]);
1016
		reg = ext_csd[EXT_CSD_PARTITIONING_SUPPORT];
1017
1018
		printf("Partitioning Support [PARTITIONING_SUPPORT]: 0x%02x\n",
			reg);
1019
		if (reg & EXT_CSD_PARTITIONING_EN)
1020
1021
1022
			printf(" Device support partitioning feature\n");
		else
			printf(" Device NOT support partitioning feature\n");
1023
		if (reg & EXT_CSD_ENH_ATTRIBUTE_EN)
1024
1025
1026
1027
			printf(" Device can have enhanced tech.\n");
		else
			printf(" Device cannot have enhanced tech.\n");

1028
		regl = (ext_csd[EXT_CSD_MAX_ENH_SIZE_MULT_2] << 16) |
1029
1030
1031
			(ext_csd[EXT_CSD_MAX_ENH_SIZE_MULT_1] << 8) |
			ext_csd[EXT_CSD_MAX_ENH_SIZE_MULT_0];

1032
		printf("Max Enhanced Area Size [MAX_ENH_SIZE_MULT]: 0x%06x\n",
1033
			   regl);
Ben Gardiner's avatar
Ben Gardiner committed
1034
1035
		unsigned int wp_sz = get_hc_wp_grp_size(ext_csd);
		unsigned int erase_sz = get_hc_erase_grp_size(ext_csd);
1036
		printf(" i.e. %lu KiB\n", 512l * regl * wp_sz * erase_sz);
Ben Gardiner's avatar
Ben Gardiner committed
1037

1038
		printf("Partitions attribute [PARTITIONS_ATTRIBUTE]: 0x%02x\n",
1039
			ext_csd[EXT_CSD_PARTITIONS_ATTRIBUTE]);
1040
		reg = ext_csd[EXT_CSD_PARTITION_SETTING_COMPLETED];
1041
1042
		printf("Partitioning Setting"
			" [PARTITION_SETTING_COMPLETED]: 0x%02x\n",
1043
1044
1045
1046
1047
1048
			reg);
		if (reg)
			printf(" Device partition setting complete\n");
		else
			printf(" Device partition setting NOT complete\n");

1049
1050
1051
1052
1053
1054
1055
1056
1057
1058
		printf("General Purpose Partition Size\n"
			" [GP_SIZE_MULT_4]: 0x%06x\n", (ext_csd[154] << 16) |
			(ext_csd[153] << 8) | ext_csd[152]);
		printf(" [GP_SIZE_MULT_3]: 0x%06x\n", (ext_csd[151] << 16) |
			   (ext_csd[150] << 8) | ext_csd[149]);
		printf(" [GP_SIZE_MULT_2]: 0x%06x\n", (ext_csd[148] << 16) |
			   (ext_csd[147] << 8) | ext_csd[146]);
		printf(" [GP_SIZE_MULT_1]: 0x%06x\n", (ext_csd[145] << 16) |
			   (ext_csd[144] << 8) | ext_csd[143]);

1059
		regl =	(ext_csd[EXT_CSD_ENH_SIZE_MULT_2] << 16) |
Ben Gardiner's avatar
Ben Gardiner committed
1060
1061
			(ext_csd[EXT_CSD_ENH_SIZE_MULT_1] << 8) |
			ext_csd[EXT_CSD_ENH_SIZE_MULT_0];
1062
		printf("Enhanced User Data Area Size"
1063
1064
			" [ENH_SIZE_MULT]: 0x%06x\n", regl);
		printf(" i.e. %lu KiB\n", 512l * regl *
Ben Gardiner's avatar
Ben Gardiner committed
1065
1066
		       get_hc_erase_grp_size(ext_csd) *
		       get_hc_wp_grp_size(ext_csd));
Ben Gardiner's avatar
Ben Gardiner committed
1067

1068
		regl =	(ext_csd[EXT_CSD_ENH_START_ADDR_3] << 24) |
Ben Gardiner's avatar
Ben Gardiner committed
1069
1070
1071
			(ext_csd[EXT_CSD_ENH_START_ADDR_2] << 16) |
			(ext_csd[EXT_CSD_ENH_START_ADDR_1] << 8) |
			ext_csd[EXT_CSD_ENH_START_ADDR_0];
1072
		printf("Enhanced User Data Start Address"
1073
			" [ENH_START_ADDR]: 0x%06x\n", regl);
1074
		printf(" i.e. %lu bytes offset\n", (is_blockaddresed(ext_csd) ?
1075
				1l : 512l) * regl);
1076
1077
1078
1079
1080
1081
1082
1083
1084
1085
1086
1087
1088
1089
1090
1091
1092
1093
1094
1095
1096
1097
1098
1099
1100
1101
1102
1103
1104
1105
1106
1107
1108
1109
1110
1111
1112
1113
1114
1115
1116
1117
1118
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128

		/* A441]: reserved [135] */
		printf("Bad Block Management mode"
			" [SEC_BAD_BLK_MGMNT]: 0x%02x\n", ext_csd[134]);
		/* A441: reserved [133:0] */
	}
	/* B45 */
	if (ext_csd_rev >= 6) {
		int j;
		/* tcase_support ext_csd[132] not readable */
		printf("Periodic Wake-up [PERIODIC_WAKEUP]: 0x%02x\n",
			ext_csd[131]);
		printf("Program CID/CSD in DDR mode support"
			" [PROGRAM_CID_CSD_DDR_SUPPORT]: 0x%02x\n",
			   ext_csd[130]);

		for (j = 127; j >= 64; j--)
			printf("Vendor Specific Fields"
				" [VENDOR_SPECIFIC_FIELD[%d]]: 0x%02x\n",
				j, ext_csd[j]);

		printf("Native sector size [NATIVE_SECTOR_SIZE]: 0x%02x\n",
			ext_csd[63]);
		printf("Sector size emulation [USE_NATIVE_SECTOR]: 0x%02x\n",
			ext_csd[62]);
		printf("Sector size [DATA_SECTOR_SIZE]: 0x%02x\n", ext_csd[61]);
		printf("1st initialization after disabling sector"
			" size emulation [INI_TIMEOUT_EMU]: 0x%02x\n",
			ext_csd[60]);
		printf("Class 6 commands control [CLASS_6_CTRL]: 0x%02x\n",
			ext_csd[59]);
		printf("Number of addressed group to be Released"
			"[DYNCAP_NEEDED]: 0x%02x\n", ext_csd[58]);
		printf("Exception events control"
			" [EXCEPTION_EVENTS_CTRL]: 0x%04x\n",
			(ext_csd[57] << 8) | ext_csd[56]);
		printf("Exception events status"
			"[EXCEPTION_EVENTS_STATUS]: 0x%04x\n",
			(ext_csd[55] << 8) | ext_csd[54]);
		printf("Extended Partitions Attribute"
			" [EXT_PARTITIONS_ATTRIBUTE]: 0x%04x\n",
			(ext_csd[53] << 8) | ext_csd[52]);

		for (j = 51; j >= 37; j--)
			printf("Context configuration"
				" [CONTEXT_CONF[%d]]: 0x%02x\n", j, ext_csd[j]);

		printf("Packed command status"
			" [PACKED_COMMAND_STATUS]: 0x%02x\n", ext_csd[36]);
		printf("Packed command failure index"
			" [PACKED_FAILURE_INDEX]: 0x%02x\n", ext_csd[35]);
		printf("Power Off Notification"
			" [POWER_OFF_NOTIFICATION]: 0x%02x\n", ext_csd[34]);
1129
1130
		printf("Control to turn the Cache ON/OFF"
			" [CACHE_CTRL]: 0x%02x\n", ext_csd[33]);
1131
1132
1133
1134
1135
		/* flush_cache ext_csd[32] not readable */
		/*Reserved [31:0] */
	}

out_free:
1136
1137
	return ret;
}
1138
1139
1140
1141
1142
1143
1144
1145
1146
1147
1148
1149
1150
1151
1152
1153
1154
1155
1156
1157
1158
1159
1160
1161
1162
1163
1164
1165

int do_sanitize(int nargs, char **argv)
{
	int fd, ret;
	char *device;

	CHECK(nargs != 2, "Usage: mmc sanitize </path/to/mmcblkX>\n",
			exit(1));

	device = argv[1];

	fd = open(device, O_RDWR);
	if (fd < 0) {
		perror("open");
		exit(1);
	}

	ret = write_extcsd_value(fd, EXT_CSD_SANITIZE_START, 1);
	if (ret) {
		fprintf(stderr, "Could not write 0x%02x to EXT_CSD[%d] in %s\n",
			1, EXT_CSD_SANITIZE_START, device);
		exit(1);
	}

	return ret;

}