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disk: part_efi: move code to static functions
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CommitLineData
07f3d789 1/*
2 * Copyright (C) 2008 RuggedCom, Inc.
3 * Richard Retanubun <RichardRetanubun@RuggedCom.com>
4 *
1a459660 5 * SPDX-License-Identifier: GPL-2.0+
07f3d789 6 */
7
8/*
e04350d2
SR
9 * NOTE:
10 * when CONFIG_SYS_64BIT_LBA is not defined, lbaint_t is 32 bits; this
11 * limits the maximum size of addressable storage to < 2 Terra Bytes
07f3d789 12 */
8faefadb 13#include <asm/unaligned.h>
07f3d789 14#include <common.h>
15#include <command.h>
16#include <ide.h>
e48f3741 17#include <inttypes.h>
07f3d789 18#include <malloc.h>
fae2bf22 19#include <part_efi.h>
6eecc030 20#include <linux/ctype.h>
07f3d789 21
40684ddb
ŁM
22DECLARE_GLOBAL_DATA_PTR;
23
2c1af9dc 24#ifdef HAVE_BLOCK_DEVICE
07f3d789 25/**
26 * efi_crc32() - EFI version of crc32 function
27 * @buf: buffer to calculate crc32 of
28 * @len - length of buf
29 *
30 * Description: Returns EFI-style CRC32 value for @buf
31 */
fae2bf22 32static inline u32 efi_crc32(const void *buf, u32 len)
07f3d789 33{
34 return crc32(0, buf, len);
35}
36
37/*
38 * Private function prototypes
39 */
40
41static int pmbr_part_valid(struct partition *part);
42static int is_pmbr_valid(legacy_mbr * mbr);
e04350d2
SR
43static int is_gpt_valid(block_dev_desc_t *dev_desc, u64 lba,
44 gpt_header *pgpt_head, gpt_entry **pgpt_pte);
07f3d789 45static gpt_entry *alloc_read_gpt_entries(block_dev_desc_t * dev_desc,
46 gpt_header * pgpt_head);
07f3d789 47static int is_pte_valid(gpt_entry * pte);
48
6eecc030
LW
49static char *print_efiname(gpt_entry *pte)
50{
51 static char name[PARTNAME_SZ + 1];
52 int i;
53 for (i = 0; i < PARTNAME_SZ; i++) {
54 u8 c;
55 c = pte->partition_name[i] & 0xff;
56 c = (c && !isprint(c)) ? '.' : c;
57 name[i] = c;
58 }
59 name[PARTNAME_SZ] = 0;
60 return name;
61}
62
b4414f4a
SW
63static efi_guid_t system_guid = PARTITION_SYSTEM_GUID;
64
65static inline int is_bootable(gpt_entry *p)
66{
67 return p->attributes.fields.legacy_bios_bootable ||
68 !memcmp(&(p->partition_type_guid), &system_guid,
69 sizeof(efi_guid_t));
70}
71
e1f6b0a0
SR
72static int validate_gpt_header(gpt_header *gpt_h, lbaint_t lba,
73 lbaint_t lastlba)
74{
75 uint32_t crc32_backup = 0;
76 uint32_t calc_crc32;
77
78 /* Check the GPT header signature */
79 if (le64_to_cpu(gpt_h->signature) != GPT_HEADER_SIGNATURE) {
80 printf("%s signature is wrong: 0x%llX != 0x%llX\n",
81 "GUID Partition Table Header",
82 le64_to_cpu(gpt_h->signature),
83 GPT_HEADER_SIGNATURE);
84 return -1;
85 }
86
87 /* Check the GUID Partition Table CRC */
88 memcpy(&crc32_backup, &gpt_h->header_crc32, sizeof(crc32_backup));
89 memset(&gpt_h->header_crc32, 0, sizeof(gpt_h->header_crc32));
90
91 calc_crc32 = efi_crc32((const unsigned char *)gpt_h,
92 le32_to_cpu(gpt_h->header_size));
93
94 memcpy(&gpt_h->header_crc32, &crc32_backup, sizeof(crc32_backup));
95
96 if (calc_crc32 != le32_to_cpu(crc32_backup)) {
97 printf("%s CRC is wrong: 0x%x != 0x%x\n",
98 "GUID Partition Table Header",
99 le32_to_cpu(crc32_backup), calc_crc32);
100 return -1;
101 }
102
103 /*
104 * Check that the my_lba entry points to the LBA that contains the GPT
105 */
106 if (le64_to_cpu(gpt_h->my_lba) != lba) {
107 printf("GPT: my_lba incorrect: %llX != " LBAF "\n",
108 le64_to_cpu(gpt_h->my_lba),
109 lba);
110 return -1;
111 }
112
113 /*
114 * Check that the first_usable_lba and that the last_usable_lba are
115 * within the disk.
116 */
117 if (le64_to_cpu(gpt_h->first_usable_lba) > lastlba) {
118 printf("GPT: first_usable_lba incorrect: %llX > " LBAF "\n",
119 le64_to_cpu(gpt_h->first_usable_lba), lastlba);
120 return -1;
121 }
122 if (le64_to_cpu(gpt_h->last_usable_lba) > lastlba) {
123 printf("GPT: last_usable_lba incorrect: %llX > " LBAF "\n",
124 le64_to_cpu(gpt_h->last_usable_lba), lastlba);
125 return -1;
126 }
127
128 debug("GPT: first_usable_lba: %llX last_usable_lba: %llX last lba: "
129 LBAF "\n", le64_to_cpu(gpt_h->first_usable_lba),
130 le64_to_cpu(gpt_h->last_usable_lba), lastlba);
131
132 return 0;
133}
134
135static int validate_gpt_entries(gpt_header *gpt_h, gpt_entry *gpt_e)
136{
137 uint32_t calc_crc32;
138
139 /* Check the GUID Partition Table Entry Array CRC */
140 calc_crc32 = efi_crc32((const unsigned char *)gpt_e,
141 le32_to_cpu(gpt_h->num_partition_entries) *
142 le32_to_cpu(gpt_h->sizeof_partition_entry));
143
144 if (calc_crc32 != le32_to_cpu(gpt_h->partition_entry_array_crc32)) {
145 printf("%s: 0x%x != 0x%x\n",
146 "GUID Partition Table Entry Array CRC is wrong",
147 le32_to_cpu(gpt_h->partition_entry_array_crc32),
148 calc_crc32);
149 return -1;
150 }
151
152 return 0;
153}
154
155static void prepare_backup_gpt_header(gpt_header *gpt_h)
156{
157 uint32_t calc_crc32;
158 uint64_t val;
159
160 /* recalculate the values for the Backup GPT Header */
161 val = le64_to_cpu(gpt_h->my_lba);
162 gpt_h->my_lba = gpt_h->alternate_lba;
163 gpt_h->alternate_lba = cpu_to_le64(val);
164 gpt_h->header_crc32 = 0;
165
166 calc_crc32 = efi_crc32((const unsigned char *)gpt_h,
167 le32_to_cpu(gpt_h->header_size));
168 gpt_h->header_crc32 = cpu_to_le32(calc_crc32);
169}
170
40684ddb 171#ifdef CONFIG_EFI_PARTITION
07f3d789 172/*
173 * Public Functions (include/part.h)
174 */
175
176void print_part_efi(block_dev_desc_t * dev_desc)
177{
ae1768a7 178 ALLOC_CACHE_ALIGN_BUFFER_PAD(gpt_header, gpt_head, 1, dev_desc->blksz);
deb5ca80 179 gpt_entry *gpt_pte = NULL;
07f3d789 180 int i = 0;
f07cd2c4 181 char uuid[37];
a96a0e61 182 unsigned char *uuid_bin;
07f3d789 183
184 if (!dev_desc) {
df70b1c2 185 printf("%s: Invalid Argument(s)\n", __func__);
07f3d789 186 return;
187 }
188 /* This function validates AND fills in the GPT header and PTE */
189 if (is_gpt_valid(dev_desc, GPT_PRIMARY_PARTITION_TABLE_LBA,
4715a811 190 gpt_head, &gpt_pte) != 1) {
df70b1c2 191 printf("%s: *** ERROR: Invalid GPT ***\n", __func__);
ae95fad5
SR
192 if (is_gpt_valid(dev_desc, (dev_desc->lba - 1),
193 gpt_head, &gpt_pte) != 1) {
194 printf("%s: *** ERROR: Invalid Backup GPT ***\n",
195 __func__);
196 return;
197 } else {
198 printf("%s: *** Using Backup GPT ***\n",
199 __func__);
200 }
07f3d789 201 }
202
deb5ca80 203 debug("%s: gpt-entry at %p\n", __func__, gpt_pte);
07f3d789 204
788a8c1f 205 printf("Part\tStart LBA\tEnd LBA\t\tName\n");
13bf2f55 206 printf("\tAttributes\n");
d718ded0
PM
207 printf("\tType GUID\n");
208 printf("\tPartition GUID\n");
f07cd2c4 209
fae2bf22 210 for (i = 0; i < le32_to_cpu(gpt_head->num_partition_entries); i++) {
38a3021e
SW
211 /* Stop at the first non valid PTE */
212 if (!is_pte_valid(&gpt_pte[i]))
213 break;
214
788a8c1f 215 printf("%3d\t0x%08llx\t0x%08llx\t\"%s\"\n", (i + 1),
fae2bf22
CHP
216 le64_to_cpu(gpt_pte[i].starting_lba),
217 le64_to_cpu(gpt_pte[i].ending_lba),
788a8c1f 218 print_efiname(&gpt_pte[i]));
13bf2f55 219 printf("\tattrs:\t0x%016llx\n", gpt_pte[i].attributes.raw);
a96a0e61 220 uuid_bin = (unsigned char *)gpt_pte[i].partition_type_guid.b;
d718ded0 221 uuid_bin_to_str(uuid_bin, uuid, UUID_STR_FORMAT_GUID);
f07cd2c4 222 printf("\ttype:\t%s\n", uuid);
a96a0e61 223 uuid_bin = (unsigned char *)gpt_pte[i].unique_partition_guid.b;
d718ded0
PM
224 uuid_bin_to_str(uuid_bin, uuid, UUID_STR_FORMAT_GUID);
225 printf("\tguid:\t%s\n", uuid);
07f3d789 226 }
227
228 /* Remember to free pte */
deb5ca80 229 free(gpt_pte);
07f3d789 230 return;
231}
232
233int get_partition_info_efi(block_dev_desc_t * dev_desc, int part,
234 disk_partition_t * info)
235{
ae1768a7 236 ALLOC_CACHE_ALIGN_BUFFER_PAD(gpt_header, gpt_head, 1, dev_desc->blksz);
deb5ca80 237 gpt_entry *gpt_pte = NULL;
07f3d789 238
239 /* "part" argument must be at least 1 */
240 if (!dev_desc || !info || part < 1) {
df70b1c2 241 printf("%s: Invalid Argument(s)\n", __func__);
07f3d789 242 return -1;
243 }
244
245 /* This function validates AND fills in the GPT header and PTE */
246 if (is_gpt_valid(dev_desc, GPT_PRIMARY_PARTITION_TABLE_LBA,
4715a811 247 gpt_head, &gpt_pte) != 1) {
df70b1c2 248 printf("%s: *** ERROR: Invalid GPT ***\n", __func__);
ae95fad5
SR
249 if (is_gpt_valid(dev_desc, (dev_desc->lba - 1),
250 gpt_head, &gpt_pte) != 1) {
251 printf("%s: *** ERROR: Invalid Backup GPT ***\n",
252 __func__);
253 return -1;
254 } else {
255 printf("%s: *** Using Backup GPT ***\n",
256 __func__);
257 }
07f3d789 258 }
259
fae2bf22 260 if (part > le32_to_cpu(gpt_head->num_partition_entries) ||
c04d68c6 261 !is_pte_valid(&gpt_pte[part - 1])) {
6d2ee5a3 262 debug("%s: *** ERROR: Invalid partition number %d ***\n",
c04d68c6 263 __func__, part);
6d2ee5a3 264 free(gpt_pte);
c04d68c6
SW
265 return -1;
266 }
267
e04350d2
SR
268 /* The 'lbaint_t' casting may limit the maximum disk size to 2 TB */
269 info->start = (lbaint_t)le64_to_cpu(gpt_pte[part - 1].starting_lba);
50970839 270 /* The ending LBA is inclusive, to calculate size, add 1 to it */
e04350d2 271 info->size = (lbaint_t)le64_to_cpu(gpt_pte[part - 1].ending_lba) + 1
50970839 272 - info->start;
ae1768a7 273 info->blksz = dev_desc->blksz;
07f3d789 274
6eecc030 275 sprintf((char *)info->name, "%s",
deb5ca80 276 print_efiname(&gpt_pte[part - 1]));
07f3d789 277 sprintf((char *)info->type, "U-Boot");
b4414f4a 278 info->bootable = is_bootable(&gpt_pte[part - 1]);
894bfbbf 279#ifdef CONFIG_PARTITION_UUIDS
d718ded0
PM
280 uuid_bin_to_str(gpt_pte[part - 1].unique_partition_guid.b, info->uuid,
281 UUID_STR_FORMAT_GUID);
894bfbbf 282#endif
07f3d789 283
60bf9416 284 debug("%s: start 0x" LBAF ", size 0x" LBAF ", name %s\n", __func__,
04735e9c 285 info->start, info->size, info->name);
07f3d789 286
287 /* Remember to free pte */
deb5ca80 288 free(gpt_pte);
07f3d789 289 return 0;
290}
291
60bf9416
SR
292int get_partition_info_efi_by_name(block_dev_desc_t *dev_desc,
293 const char *name, disk_partition_t *info)
294{
295 int ret;
296 int i;
297 for (i = 1; i < GPT_ENTRY_NUMBERS; i++) {
298 ret = get_partition_info_efi(dev_desc, i, info);
299 if (ret != 0) {
300 /* no more entries in table */
301 return -1;
302 }
303 if (strcmp(name, (const char *)info->name) == 0) {
304 /* matched */
305 return 0;
306 }
307 }
308 return -2;
309}
310
07f3d789 311int test_part_efi(block_dev_desc_t * dev_desc)
312{
ae1768a7 313 ALLOC_CACHE_ALIGN_BUFFER_PAD(legacy_mbr, legacymbr, 1, dev_desc->blksz);
07f3d789 314
315 /* Read legacy MBR from block 0 and validate it */
f75dd584
A
316 if ((dev_desc->block_read(dev_desc->dev, 0, 1, (ulong *)legacymbr) != 1)
317 || (is_pmbr_valid(legacymbr) != 1)) {
07f3d789 318 return -1;
319 }
320 return 0;
321}
322
40684ddb
ŁM
323/**
324 * set_protective_mbr(): Set the EFI protective MBR
325 * @param dev_desc - block device descriptor
326 *
327 * @return - zero on success, otherwise error
328 */
329static int set_protective_mbr(block_dev_desc_t *dev_desc)
330{
40684ddb 331 /* Setup the Protective MBR */
61fcc7d2
HP
332 ALLOC_CACHE_ALIGN_BUFFER(legacy_mbr, p_mbr, 1);
333 memset(p_mbr, 0, sizeof(*p_mbr));
334
40684ddb
ŁM
335 if (p_mbr == NULL) {
336 printf("%s: calloc failed!\n", __func__);
337 return -1;
338 }
339 /* Append signature */
340 p_mbr->signature = MSDOS_MBR_SIGNATURE;
341 p_mbr->partition_record[0].sys_ind = EFI_PMBR_OSTYPE_EFI_GPT;
342 p_mbr->partition_record[0].start_sect = 1;
343 p_mbr->partition_record[0].nr_sects = (u32) dev_desc->lba;
344
345 /* Write MBR sector to the MMC device */
346 if (dev_desc->block_write(dev_desc->dev, 0, 1, p_mbr) != 1) {
347 printf("** Can't write to device %d **\n",
348 dev_desc->dev);
40684ddb
ŁM
349 return -1;
350 }
351
40684ddb
ŁM
352 return 0;
353}
354
40684ddb
ŁM
355int write_gpt_table(block_dev_desc_t *dev_desc,
356 gpt_header *gpt_h, gpt_entry *gpt_e)
357{
ae1768a7
EE
358 const int pte_blk_cnt = BLOCK_CNT((gpt_h->num_partition_entries
359 * sizeof(gpt_entry)), dev_desc);
40684ddb 360 u32 calc_crc32;
40684ddb
ŁM
361
362 debug("max lba: %x\n", (u32) dev_desc->lba);
363 /* Setup the Protective MBR */
364 if (set_protective_mbr(dev_desc) < 0)
365 goto err;
366
367 /* Generate CRC for the Primary GPT Header */
368 calc_crc32 = efi_crc32((const unsigned char *)gpt_e,
369 le32_to_cpu(gpt_h->num_partition_entries) *
370 le32_to_cpu(gpt_h->sizeof_partition_entry));
371 gpt_h->partition_entry_array_crc32 = cpu_to_le32(calc_crc32);
372
373 calc_crc32 = efi_crc32((const unsigned char *)gpt_h,
374 le32_to_cpu(gpt_h->header_size));
375 gpt_h->header_crc32 = cpu_to_le32(calc_crc32);
376
377 /* Write the First GPT to the block right after the Legacy MBR */
378 if (dev_desc->block_write(dev_desc->dev, 1, 1, gpt_h) != 1)
379 goto err;
380
ae1768a7
EE
381 if (dev_desc->block_write(dev_desc->dev, 2, pte_blk_cnt, gpt_e)
382 != pte_blk_cnt)
40684ddb
ŁM
383 goto err;
384
e1f6b0a0 385 prepare_backup_gpt_header(gpt_h);
40684ddb
ŁM
386
387 if (dev_desc->block_write(dev_desc->dev,
e04350d2
SR
388 (lbaint_t)le64_to_cpu(gpt_h->last_usable_lba)
389 + 1,
ae1768a7 390 pte_blk_cnt, gpt_e) != pte_blk_cnt)
40684ddb
ŁM
391 goto err;
392
393 if (dev_desc->block_write(dev_desc->dev,
e04350d2
SR
394 (lbaint_t)le64_to_cpu(gpt_h->my_lba), 1,
395 gpt_h) != 1)
40684ddb
ŁM
396 goto err;
397
398 debug("GPT successfully written to block device!\n");
399 return 0;
400
401 err:
402 printf("** Can't write to device %d **\n", dev_desc->dev);
403 return -1;
404}
405
406int gpt_fill_pte(gpt_header *gpt_h, gpt_entry *gpt_e,
407 disk_partition_t *partitions, int parts)
408{
e04350d2
SR
409 lbaint_t offset = (lbaint_t)le64_to_cpu(gpt_h->first_usable_lba);
410 lbaint_t start;
411 lbaint_t last_usable_lba = (lbaint_t)
412 le64_to_cpu(gpt_h->last_usable_lba);
40684ddb 413 int i, k;
67cd4a63 414 size_t efiname_len, dosname_len;
40684ddb
ŁM
415#ifdef CONFIG_PARTITION_UUIDS
416 char *str_uuid;
a96a0e61 417 unsigned char *bin_uuid;
40684ddb
ŁM
418#endif
419
420 for (i = 0; i < parts; i++) {
421 /* partition starting lba */
422 start = partitions[i].start;
423 if (start && (start < offset)) {
424 printf("Partition overlap\n");
425 return -1;
426 }
427 if (start) {
428 gpt_e[i].starting_lba = cpu_to_le64(start);
429 offset = start + partitions[i].size;
430 } else {
431 gpt_e[i].starting_lba = cpu_to_le64(offset);
432 offset += partitions[i].size;
433 }
dedf37bb 434 if (offset >= last_usable_lba) {
40684ddb
ŁM
435 printf("Partitions layout exceds disk size\n");
436 return -1;
437 }
438 /* partition ending lba */
439 if ((i == parts - 1) && (partitions[i].size == 0))
440 /* extend the last partition to maximuim */
441 gpt_e[i].ending_lba = gpt_h->last_usable_lba;
442 else
443 gpt_e[i].ending_lba = cpu_to_le64(offset - 1);
444
445 /* partition type GUID */
446 memcpy(gpt_e[i].partition_type_guid.b,
447 &PARTITION_BASIC_DATA_GUID, 16);
448
449#ifdef CONFIG_PARTITION_UUIDS
450 str_uuid = partitions[i].uuid;
a96a0e61
PM
451 bin_uuid = gpt_e[i].unique_partition_guid.b;
452
d718ded0 453 if (uuid_str_to_bin(str_uuid, bin_uuid, UUID_STR_FORMAT_STD)) {
40684ddb
ŁM
454 printf("Partition no. %d: invalid guid: %s\n",
455 i, str_uuid);
456 return -1;
457 }
458#endif
459
460 /* partition attributes */
461 memset(&gpt_e[i].attributes, 0,
462 sizeof(gpt_entry_attributes));
463
464 /* partition name */
67cd4a63 465 efiname_len = sizeof(gpt_e[i].partition_name)
40684ddb 466 / sizeof(efi_char16_t);
67cd4a63
MV
467 dosname_len = sizeof(partitions[i].name);
468
469 memset(gpt_e[i].partition_name, 0,
470 sizeof(gpt_e[i].partition_name));
471
472 for (k = 0; k < min(dosname_len, efiname_len); k++)
40684ddb
ŁM
473 gpt_e[i].partition_name[k] =
474 (efi_char16_t)(partitions[i].name[k]);
475
e04350d2
SR
476 debug("%s: name: %s offset[%d]: 0x" LBAF
477 " size[%d]: 0x" LBAF "\n",
40684ddb
ŁM
478 __func__, partitions[i].name, i,
479 offset, i, partitions[i].size);
480 }
481
482 return 0;
483}
484
485int gpt_fill_header(block_dev_desc_t *dev_desc, gpt_header *gpt_h,
486 char *str_guid, int parts_count)
487{
488 gpt_h->signature = cpu_to_le64(GPT_HEADER_SIGNATURE);
489 gpt_h->revision = cpu_to_le32(GPT_HEADER_REVISION_V1);
490 gpt_h->header_size = cpu_to_le32(sizeof(gpt_header));
491 gpt_h->my_lba = cpu_to_le64(1);
492 gpt_h->alternate_lba = cpu_to_le64(dev_desc->lba - 1);
493 gpt_h->first_usable_lba = cpu_to_le64(34);
494 gpt_h->last_usable_lba = cpu_to_le64(dev_desc->lba - 34);
495 gpt_h->partition_entry_lba = cpu_to_le64(2);
496 gpt_h->num_partition_entries = cpu_to_le32(GPT_ENTRY_NUMBERS);
497 gpt_h->sizeof_partition_entry = cpu_to_le32(sizeof(gpt_entry));
498 gpt_h->header_crc32 = 0;
499 gpt_h->partition_entry_array_crc32 = 0;
500
d718ded0 501 if (uuid_str_to_bin(str_guid, gpt_h->disk_guid.b, UUID_STR_FORMAT_GUID))
40684ddb
ŁM
502 return -1;
503
504 return 0;
505}
506
507int gpt_restore(block_dev_desc_t *dev_desc, char *str_disk_guid,
508 disk_partition_t *partitions, int parts_count)
509{
510 int ret;
511
ae1768a7
EE
512 gpt_header *gpt_h = calloc(1, PAD_TO_BLOCKSIZE(sizeof(gpt_header),
513 dev_desc));
514 gpt_entry *gpt_e;
515
40684ddb
ŁM
516 if (gpt_h == NULL) {
517 printf("%s: calloc failed!\n", __func__);
518 return -1;
519 }
520
ae1768a7
EE
521 gpt_e = calloc(1, PAD_TO_BLOCKSIZE(GPT_ENTRY_NUMBERS
522 * sizeof(gpt_entry),
523 dev_desc));
40684ddb
ŁM
524 if (gpt_e == NULL) {
525 printf("%s: calloc failed!\n", __func__);
526 free(gpt_h);
527 return -1;
528 }
529
530 /* Generate Primary GPT header (LBA1) */
531 ret = gpt_fill_header(dev_desc, gpt_h, str_disk_guid, parts_count);
532 if (ret)
533 goto err;
534
535 /* Generate partition entries */
536 ret = gpt_fill_pte(gpt_h, gpt_e, partitions, parts_count);
537 if (ret)
538 goto err;
539
540 /* Write GPT partition table */
541 ret = write_gpt_table(dev_desc, gpt_h, gpt_e);
542
543err:
544 free(gpt_e);
545 free(gpt_h);
546 return ret;
547}
548#endif
549
07f3d789 550/*
551 * Private functions
552 */
553/*
554 * pmbr_part_valid(): Check for EFI partition signature
555 *
556 * Returns: 1 if EFI GPT partition type is found.
557 */
558static int pmbr_part_valid(struct partition *part)
559{
560 if (part->sys_ind == EFI_PMBR_OSTYPE_EFI_GPT &&
8faefadb 561 get_unaligned_le32(&part->start_sect) == 1UL) {
07f3d789 562 return 1;
563 }
564
565 return 0;
566}
567
568/*
569 * is_pmbr_valid(): test Protective MBR for validity
570 *
571 * Returns: 1 if PMBR is valid, 0 otherwise.
572 * Validity depends on two things:
573 * 1) MSDOS signature is in the last two bytes of the MBR
574 * 2) One partition of type 0xEE is found, checked by pmbr_part_valid()
575 */
576static int is_pmbr_valid(legacy_mbr * mbr)
577{
578 int i = 0;
579
fae2bf22 580 if (!mbr || le16_to_cpu(mbr->signature) != MSDOS_MBR_SIGNATURE)
07f3d789 581 return 0;
07f3d789 582
583 for (i = 0; i < 4; i++) {
584 if (pmbr_part_valid(&mbr->partition_record[i])) {
585 return 1;
586 }
587 }
588 return 0;
589}
590
591/**
592 * is_gpt_valid() - tests one GPT header and PTEs for validity
593 *
594 * lba is the logical block address of the GPT header to test
595 * gpt is a GPT header ptr, filled on return.
596 * ptes is a PTEs ptr, filled on return.
597 *
598 * Description: returns 1 if valid, 0 on error.
599 * If valid, returns pointers to PTEs.
600 */
e04350d2
SR
601static int is_gpt_valid(block_dev_desc_t *dev_desc, u64 lba,
602 gpt_header *pgpt_head, gpt_entry **pgpt_pte)
07f3d789 603{
07f3d789 604 if (!dev_desc || !pgpt_head) {
df70b1c2 605 printf("%s: Invalid Argument(s)\n", __func__);
07f3d789 606 return 0;
607 }
608
609 /* Read GPT Header from device */
e04350d2
SR
610 if (dev_desc->block_read(dev_desc->dev, (lbaint_t)lba, 1, pgpt_head)
611 != 1) {
07f3d789 612 printf("*** ERROR: Can't read GPT header ***\n");
613 return 0;
614 }
615
e1f6b0a0 616 if (validate_gpt_header(pgpt_head, (lbaint_t)lba, dev_desc->lba))
07f3d789 617 return 0;
07f3d789 618
619 /* Read and allocate Partition Table Entries */
620 *pgpt_pte = alloc_read_gpt_entries(dev_desc, pgpt_head);
621 if (*pgpt_pte == NULL) {
622 printf("GPT: Failed to allocate memory for PTE\n");
623 return 0;
624 }
625
e1f6b0a0 626 if (validate_gpt_entries(pgpt_head, *pgpt_pte)) {
deb5ca80 627 free(*pgpt_pte);
07f3d789 628 return 0;
629 }
630
631 /* We're done, all's well */
632 return 1;
633}
634
635/**
636 * alloc_read_gpt_entries(): reads partition entries from disk
637 * @dev_desc
638 * @gpt - GPT header
639 *
640 * Description: Returns ptes on success, NULL on error.
641 * Allocates space for PTEs based on information found in @gpt.
642 * Notes: remember to free pte when you're done!
643 */
644static gpt_entry *alloc_read_gpt_entries(block_dev_desc_t * dev_desc,
645 gpt_header * pgpt_head)
646{
ae1768a7 647 size_t count = 0, blk_cnt;
07f3d789 648 gpt_entry *pte = NULL;
649
650 if (!dev_desc || !pgpt_head) {
df70b1c2 651 printf("%s: Invalid Argument(s)\n", __func__);
07f3d789 652 return NULL;
653 }
654
fae2bf22
CHP
655 count = le32_to_cpu(pgpt_head->num_partition_entries) *
656 le32_to_cpu(pgpt_head->sizeof_partition_entry);
07f3d789 657
fae2bf22
CHP
658 debug("%s: count = %u * %u = %zu\n", __func__,
659 (u32) le32_to_cpu(pgpt_head->num_partition_entries),
660 (u32) le32_to_cpu(pgpt_head->sizeof_partition_entry), count);
07f3d789 661
662 /* Allocate memory for PTE, remember to FREE */
663 if (count != 0) {
ae1768a7
EE
664 pte = memalign(ARCH_DMA_MINALIGN,
665 PAD_TO_BLOCKSIZE(count, dev_desc));
07f3d789 666 }
667
668 if (count == 0 || pte == NULL) {
9936be31
TH
669 printf("%s: ERROR: Can't allocate 0x%zX "
670 "bytes for GPT Entries\n",
df70b1c2 671 __func__, count);
07f3d789 672 return NULL;
673 }
674
675 /* Read GPT Entries from device */
ae1768a7 676 blk_cnt = BLOCK_CNT(count, dev_desc);
07f3d789 677 if (dev_desc->block_read (dev_desc->dev,
e04350d2 678 (lbaint_t)le64_to_cpu(pgpt_head->partition_entry_lba),
ae1768a7
EE
679 (lbaint_t) (blk_cnt), pte)
680 != blk_cnt) {
07f3d789 681
682 printf("*** ERROR: Can't read GPT Entries ***\n");
683 free(pte);
684 return NULL;
685 }
686 return pte;
687}
688
689/**
690 * is_pte_valid(): validates a single Partition Table Entry
691 * @gpt_entry - Pointer to a single Partition Table Entry
692 *
693 * Description: returns 1 if valid, 0 on error.
694 */
695static int is_pte_valid(gpt_entry * pte)
696{
697 efi_guid_t unused_guid;
698
699 if (!pte) {
df70b1c2 700 printf("%s: Invalid Argument(s)\n", __func__);
07f3d789 701 return 0;
702 }
703
704 /* Only one validation for now:
705 * The GUID Partition Type != Unused Entry (ALL-ZERO)
706 */
707 memset(unused_guid.b, 0, sizeof(unused_guid.b));
708
709 if (memcmp(pte->partition_type_guid.b, unused_guid.b,
710 sizeof(unused_guid.b)) == 0) {
711
df70b1c2 712 debug("%s: Found an unused PTE GUID at 0x%08X\n", __func__,
9936be31 713 (unsigned int)(uintptr_t)pte);
07f3d789 714
715 return 0;
716 } else {
717 return 1;
718 }
719}
720#endif