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83d290c5 | 1 | // SPDX-License-Identifier: GPL-2.0+ |
07f3d789 | 2 | /* |
3 | * Copyright (C) 2008 RuggedCom, Inc. | |
4 | * Richard Retanubun <[email protected]> | |
07f3d789 | 5 | */ |
6 | ||
7 | /* | |
e04350d2 SR |
8 | * NOTE: |
9 | * when CONFIG_SYS_64BIT_LBA is not defined, lbaint_t is 32 bits; this | |
10 | * limits the maximum size of addressable storage to < 2 Terra Bytes | |
07f3d789 | 11 | */ |
8faefadb | 12 | #include <asm/unaligned.h> |
07f3d789 | 13 | #include <common.h> |
14 | #include <command.h> | |
02e43537 | 15 | #include <fdtdec.h> |
07f3d789 | 16 | #include <ide.h> |
17 | #include <malloc.h> | |
cf92e05c | 18 | #include <memalign.h> |
fae2bf22 | 19 | #include <part_efi.h> |
02e43537 | 20 | #include <linux/compiler.h> |
6eecc030 | 21 | #include <linux/ctype.h> |
3db71108 | 22 | #include <u-boot/crc.h> |
07f3d789 | 23 | |
40684ddb ŁM |
24 | DECLARE_GLOBAL_DATA_PTR; |
25 | ||
44ab2d32 HS |
26 | /* |
27 | * GUID for basic data partions. | |
28 | */ | |
29 | static const efi_guid_t partition_basic_data_guid = PARTITION_BASIC_DATA_GUID; | |
30 | ||
1811a928 | 31 | #ifdef CONFIG_HAVE_BLOCK_DEVICE |
07f3d789 | 32 | /** |
33 | * efi_crc32() - EFI version of crc32 function | |
34 | * @buf: buffer to calculate crc32 of | |
35 | * @len - length of buf | |
36 | * | |
37 | * Description: Returns EFI-style CRC32 value for @buf | |
38 | */ | |
fae2bf22 | 39 | static inline u32 efi_crc32(const void *buf, u32 len) |
07f3d789 | 40 | { |
41 | return crc32(0, buf, len); | |
42 | } | |
43 | ||
44 | /* | |
45 | * Private function prototypes | |
46 | */ | |
47 | ||
48 | static int pmbr_part_valid(struct partition *part); | |
49 | static int is_pmbr_valid(legacy_mbr * mbr); | |
4101f687 | 50 | static int is_gpt_valid(struct blk_desc *dev_desc, u64 lba, |
e04350d2 | 51 | gpt_header *pgpt_head, gpt_entry **pgpt_pte); |
4101f687 SG |
52 | static gpt_entry *alloc_read_gpt_entries(struct blk_desc *dev_desc, |
53 | gpt_header *pgpt_head); | |
07f3d789 | 54 | static int is_pte_valid(gpt_entry * pte); |
20c568ca UR |
55 | static int find_valid_gpt(struct blk_desc *dev_desc, gpt_header *gpt_head, |
56 | gpt_entry **pgpt_pte); | |
07f3d789 | 57 | |
6eecc030 LW |
58 | static char *print_efiname(gpt_entry *pte) |
59 | { | |
60 | static char name[PARTNAME_SZ + 1]; | |
61 | int i; | |
62 | for (i = 0; i < PARTNAME_SZ; i++) { | |
63 | u8 c; | |
64 | c = pte->partition_name[i] & 0xff; | |
65 | c = (c && !isprint(c)) ? '.' : c; | |
66 | name[i] = c; | |
67 | } | |
68 | name[PARTNAME_SZ] = 0; | |
69 | return name; | |
70 | } | |
71 | ||
7de24b27 | 72 | static const efi_guid_t system_guid = PARTITION_SYSTEM_GUID; |
b4414f4a SW |
73 | |
74 | static inline int is_bootable(gpt_entry *p) | |
75 | { | |
76 | return p->attributes.fields.legacy_bios_bootable || | |
77 | !memcmp(&(p->partition_type_guid), &system_guid, | |
78 | sizeof(efi_guid_t)); | |
79 | } | |
80 | ||
e1f6b0a0 SR |
81 | static int validate_gpt_header(gpt_header *gpt_h, lbaint_t lba, |
82 | lbaint_t lastlba) | |
83 | { | |
84 | uint32_t crc32_backup = 0; | |
85 | uint32_t calc_crc32; | |
86 | ||
87 | /* Check the GPT header signature */ | |
67b90522 | 88 | if (le64_to_cpu(gpt_h->signature) != GPT_HEADER_SIGNATURE_UBOOT) { |
e1f6b0a0 SR |
89 | printf("%s signature is wrong: 0x%llX != 0x%llX\n", |
90 | "GUID Partition Table Header", | |
91 | le64_to_cpu(gpt_h->signature), | |
67b90522 | 92 | GPT_HEADER_SIGNATURE_UBOOT); |
e1f6b0a0 SR |
93 | return -1; |
94 | } | |
95 | ||
96 | /* Check the GUID Partition Table CRC */ | |
97 | memcpy(&crc32_backup, &gpt_h->header_crc32, sizeof(crc32_backup)); | |
98 | memset(&gpt_h->header_crc32, 0, sizeof(gpt_h->header_crc32)); | |
99 | ||
100 | calc_crc32 = efi_crc32((const unsigned char *)gpt_h, | |
101 | le32_to_cpu(gpt_h->header_size)); | |
102 | ||
103 | memcpy(&gpt_h->header_crc32, &crc32_backup, sizeof(crc32_backup)); | |
104 | ||
105 | if (calc_crc32 != le32_to_cpu(crc32_backup)) { | |
106 | printf("%s CRC is wrong: 0x%x != 0x%x\n", | |
107 | "GUID Partition Table Header", | |
108 | le32_to_cpu(crc32_backup), calc_crc32); | |
109 | return -1; | |
110 | } | |
111 | ||
112 | /* | |
113 | * Check that the my_lba entry points to the LBA that contains the GPT | |
114 | */ | |
115 | if (le64_to_cpu(gpt_h->my_lba) != lba) { | |
116 | printf("GPT: my_lba incorrect: %llX != " LBAF "\n", | |
117 | le64_to_cpu(gpt_h->my_lba), | |
118 | lba); | |
119 | return -1; | |
120 | } | |
121 | ||
122 | /* | |
123 | * Check that the first_usable_lba and that the last_usable_lba are | |
124 | * within the disk. | |
125 | */ | |
126 | if (le64_to_cpu(gpt_h->first_usable_lba) > lastlba) { | |
127 | printf("GPT: first_usable_lba incorrect: %llX > " LBAF "\n", | |
128 | le64_to_cpu(gpt_h->first_usable_lba), lastlba); | |
129 | return -1; | |
130 | } | |
131 | if (le64_to_cpu(gpt_h->last_usable_lba) > lastlba) { | |
132 | printf("GPT: last_usable_lba incorrect: %llX > " LBAF "\n", | |
133 | le64_to_cpu(gpt_h->last_usable_lba), lastlba); | |
134 | return -1; | |
135 | } | |
136 | ||
137 | debug("GPT: first_usable_lba: %llX last_usable_lba: %llX last lba: " | |
138 | LBAF "\n", le64_to_cpu(gpt_h->first_usable_lba), | |
139 | le64_to_cpu(gpt_h->last_usable_lba), lastlba); | |
140 | ||
141 | return 0; | |
142 | } | |
143 | ||
144 | static int validate_gpt_entries(gpt_header *gpt_h, gpt_entry *gpt_e) | |
145 | { | |
146 | uint32_t calc_crc32; | |
147 | ||
148 | /* Check the GUID Partition Table Entry Array CRC */ | |
149 | calc_crc32 = efi_crc32((const unsigned char *)gpt_e, | |
150 | le32_to_cpu(gpt_h->num_partition_entries) * | |
151 | le32_to_cpu(gpt_h->sizeof_partition_entry)); | |
152 | ||
153 | if (calc_crc32 != le32_to_cpu(gpt_h->partition_entry_array_crc32)) { | |
154 | printf("%s: 0x%x != 0x%x\n", | |
155 | "GUID Partition Table Entry Array CRC is wrong", | |
156 | le32_to_cpu(gpt_h->partition_entry_array_crc32), | |
157 | calc_crc32); | |
158 | return -1; | |
159 | } | |
160 | ||
161 | return 0; | |
162 | } | |
163 | ||
164 | static void prepare_backup_gpt_header(gpt_header *gpt_h) | |
165 | { | |
166 | uint32_t calc_crc32; | |
167 | uint64_t val; | |
168 | ||
169 | /* recalculate the values for the Backup GPT Header */ | |
170 | val = le64_to_cpu(gpt_h->my_lba); | |
171 | gpt_h->my_lba = gpt_h->alternate_lba; | |
172 | gpt_h->alternate_lba = cpu_to_le64(val); | |
0ff7e585 SR |
173 | gpt_h->partition_entry_lba = |
174 | cpu_to_le64(le64_to_cpu(gpt_h->last_usable_lba) + 1); | |
e1f6b0a0 SR |
175 | gpt_h->header_crc32 = 0; |
176 | ||
177 | calc_crc32 = efi_crc32((const unsigned char *)gpt_h, | |
178 | le32_to_cpu(gpt_h->header_size)); | |
179 | gpt_h->header_crc32 = cpu_to_le32(calc_crc32); | |
180 | } | |
181 | ||
bd42a942 | 182 | #if CONFIG_IS_ENABLED(EFI_PARTITION) |
07f3d789 | 183 | /* |
184 | * Public Functions (include/part.h) | |
185 | */ | |
186 | ||
73d6d18b AC |
187 | /* |
188 | * UUID is displayed as 32 hexadecimal digits, in 5 groups, | |
189 | * separated by hyphens, in the form 8-4-4-4-12 for a total of 36 characters | |
190 | */ | |
191 | int get_disk_guid(struct blk_desc * dev_desc, char *guid) | |
192 | { | |
193 | ALLOC_CACHE_ALIGN_BUFFER_PAD(gpt_header, gpt_head, 1, dev_desc->blksz); | |
194 | gpt_entry *gpt_pte = NULL; | |
195 | unsigned char *guid_bin; | |
196 | ||
197 | /* This function validates AND fills in the GPT header and PTE */ | |
20c568ca UR |
198 | if (find_valid_gpt(dev_desc, gpt_head, &gpt_pte) != 1) |
199 | return -EINVAL; | |
73d6d18b AC |
200 | |
201 | guid_bin = gpt_head->disk_guid.b; | |
202 | uuid_bin_to_str(guid_bin, guid, UUID_STR_FORMAT_GUID); | |
203 | ||
1cfe9694 ER |
204 | /* Remember to free pte */ |
205 | free(gpt_pte); | |
73d6d18b AC |
206 | return 0; |
207 | } | |
208 | ||
084bf4c2 | 209 | void part_print_efi(struct blk_desc *dev_desc) |
07f3d789 | 210 | { |
ae1768a7 | 211 | ALLOC_CACHE_ALIGN_BUFFER_PAD(gpt_header, gpt_head, 1, dev_desc->blksz); |
deb5ca80 | 212 | gpt_entry *gpt_pte = NULL; |
07f3d789 | 213 | int i = 0; |
db9b6200 | 214 | char uuid[UUID_STR_LEN + 1]; |
a96a0e61 | 215 | unsigned char *uuid_bin; |
07f3d789 | 216 | |
07f3d789 | 217 | /* This function validates AND fills in the GPT header and PTE */ |
20c568ca UR |
218 | if (find_valid_gpt(dev_desc, gpt_head, &gpt_pte) != 1) |
219 | return; | |
07f3d789 | 220 | |
deb5ca80 | 221 | debug("%s: gpt-entry at %p\n", __func__, gpt_pte); |
07f3d789 | 222 | |
788a8c1f | 223 | printf("Part\tStart LBA\tEnd LBA\t\tName\n"); |
13bf2f55 | 224 | printf("\tAttributes\n"); |
d718ded0 PM |
225 | printf("\tType GUID\n"); |
226 | printf("\tPartition GUID\n"); | |
f07cd2c4 | 227 | |
fae2bf22 | 228 | for (i = 0; i < le32_to_cpu(gpt_head->num_partition_entries); i++) { |
38a3021e SW |
229 | /* Stop at the first non valid PTE */ |
230 | if (!is_pte_valid(&gpt_pte[i])) | |
231 | break; | |
232 | ||
788a8c1f | 233 | printf("%3d\t0x%08llx\t0x%08llx\t\"%s\"\n", (i + 1), |
fae2bf22 CHP |
234 | le64_to_cpu(gpt_pte[i].starting_lba), |
235 | le64_to_cpu(gpt_pte[i].ending_lba), | |
788a8c1f | 236 | print_efiname(&gpt_pte[i])); |
13bf2f55 | 237 | printf("\tattrs:\t0x%016llx\n", gpt_pte[i].attributes.raw); |
a96a0e61 | 238 | uuid_bin = (unsigned char *)gpt_pte[i].partition_type_guid.b; |
d718ded0 | 239 | uuid_bin_to_str(uuid_bin, uuid, UUID_STR_FORMAT_GUID); |
f07cd2c4 | 240 | printf("\ttype:\t%s\n", uuid); |
bcb41dca PD |
241 | #ifdef CONFIG_PARTITION_TYPE_GUID |
242 | if (!uuid_guid_get_str(uuid_bin, uuid)) | |
243 | printf("\ttype:\t%s\n", uuid); | |
244 | #endif | |
a96a0e61 | 245 | uuid_bin = (unsigned char *)gpt_pte[i].unique_partition_guid.b; |
d718ded0 PM |
246 | uuid_bin_to_str(uuid_bin, uuid, UUID_STR_FORMAT_GUID); |
247 | printf("\tguid:\t%s\n", uuid); | |
07f3d789 | 248 | } |
249 | ||
250 | /* Remember to free pte */ | |
deb5ca80 | 251 | free(gpt_pte); |
07f3d789 | 252 | return; |
253 | } | |
254 | ||
3e8bd469 SG |
255 | int part_get_info_efi(struct blk_desc *dev_desc, int part, |
256 | disk_partition_t *info) | |
07f3d789 | 257 | { |
ae1768a7 | 258 | ALLOC_CACHE_ALIGN_BUFFER_PAD(gpt_header, gpt_head, 1, dev_desc->blksz); |
deb5ca80 | 259 | gpt_entry *gpt_pte = NULL; |
07f3d789 | 260 | |
261 | /* "part" argument must be at least 1 */ | |
4708a07c | 262 | if (part < 1) { |
df70b1c2 | 263 | printf("%s: Invalid Argument(s)\n", __func__); |
07f3d789 | 264 | return -1; |
265 | } | |
266 | ||
267 | /* This function validates AND fills in the GPT header and PTE */ | |
20c568ca UR |
268 | if (find_valid_gpt(dev_desc, gpt_head, &gpt_pte) != 1) |
269 | return -1; | |
07f3d789 | 270 | |
fae2bf22 | 271 | if (part > le32_to_cpu(gpt_head->num_partition_entries) || |
c04d68c6 | 272 | !is_pte_valid(&gpt_pte[part - 1])) { |
6d2ee5a3 | 273 | debug("%s: *** ERROR: Invalid partition number %d ***\n", |
c04d68c6 | 274 | __func__, part); |
6d2ee5a3 | 275 | free(gpt_pte); |
c04d68c6 SW |
276 | return -1; |
277 | } | |
278 | ||
e04350d2 SR |
279 | /* The 'lbaint_t' casting may limit the maximum disk size to 2 TB */ |
280 | info->start = (lbaint_t)le64_to_cpu(gpt_pte[part - 1].starting_lba); | |
50970839 | 281 | /* The ending LBA is inclusive, to calculate size, add 1 to it */ |
e04350d2 | 282 | info->size = (lbaint_t)le64_to_cpu(gpt_pte[part - 1].ending_lba) + 1 |
50970839 | 283 | - info->start; |
ae1768a7 | 284 | info->blksz = dev_desc->blksz; |
07f3d789 | 285 | |
5375ee50 HS |
286 | snprintf((char *)info->name, sizeof(info->name), "%s", |
287 | print_efiname(&gpt_pte[part - 1])); | |
192bc694 | 288 | strcpy((char *)info->type, "U-Boot"); |
b4414f4a | 289 | info->bootable = is_bootable(&gpt_pte[part - 1]); |
b331cd62 | 290 | #if CONFIG_IS_ENABLED(PARTITION_UUIDS) |
d718ded0 PM |
291 | uuid_bin_to_str(gpt_pte[part - 1].unique_partition_guid.b, info->uuid, |
292 | UUID_STR_FORMAT_GUID); | |
894bfbbf | 293 | #endif |
7561b258 PD |
294 | #ifdef CONFIG_PARTITION_TYPE_GUID |
295 | uuid_bin_to_str(gpt_pte[part - 1].partition_type_guid.b, | |
296 | info->type_guid, UUID_STR_FORMAT_GUID); | |
297 | #endif | |
07f3d789 | 298 | |
60bf9416 | 299 | debug("%s: start 0x" LBAF ", size 0x" LBAF ", name %s\n", __func__, |
04735e9c | 300 | info->start, info->size, info->name); |
07f3d789 | 301 | |
302 | /* Remember to free pte */ | |
deb5ca80 | 303 | free(gpt_pte); |
07f3d789 | 304 | return 0; |
305 | } | |
306 | ||
084bf4c2 | 307 | static int part_test_efi(struct blk_desc *dev_desc) |
07f3d789 | 308 | { |
ae1768a7 | 309 | ALLOC_CACHE_ALIGN_BUFFER_PAD(legacy_mbr, legacymbr, 1, dev_desc->blksz); |
07f3d789 | 310 | |
311 | /* Read legacy MBR from block 0 and validate it */ | |
2a981dc2 | 312 | if ((blk_dread(dev_desc, 0, 1, (ulong *)legacymbr) != 1) |
f75dd584 | 313 | || (is_pmbr_valid(legacymbr) != 1)) { |
07f3d789 | 314 | return -1; |
315 | } | |
316 | return 0; | |
317 | } | |
318 | ||
40684ddb ŁM |
319 | /** |
320 | * set_protective_mbr(): Set the EFI protective MBR | |
321 | * @param dev_desc - block device descriptor | |
322 | * | |
323 | * @return - zero on success, otherwise error | |
324 | */ | |
4101f687 | 325 | static int set_protective_mbr(struct blk_desc *dev_desc) |
40684ddb | 326 | { |
40684ddb | 327 | /* Setup the Protective MBR */ |
3cc56611 | 328 | ALLOC_CACHE_ALIGN_BUFFER_PAD(legacy_mbr, p_mbr, 1, dev_desc->blksz); |
40684ddb ŁM |
329 | if (p_mbr == NULL) { |
330 | printf("%s: calloc failed!\n", __func__); | |
331 | return -1; | |
332 | } | |
e163a931 VT |
333 | |
334 | /* Read MBR to backup boot code if it exists */ | |
335 | if (blk_dread(dev_desc, 0, 1, p_mbr) != 1) { | |
9b643e31 | 336 | pr_err("** Can't read from device %d **\n", dev_desc->devnum); |
e163a931 VT |
337 | return -1; |
338 | } | |
339 | ||
955575c8 SP |
340 | /* Clear all data in MBR except of backed up boot code */ |
341 | memset((char *)p_mbr + MSDOS_MBR_BOOT_CODE_SIZE, 0, sizeof(*p_mbr) - | |
342 | MSDOS_MBR_BOOT_CODE_SIZE); | |
343 | ||
40684ddb ŁM |
344 | /* Append signature */ |
345 | p_mbr->signature = MSDOS_MBR_SIGNATURE; | |
346 | p_mbr->partition_record[0].sys_ind = EFI_PMBR_OSTYPE_EFI_GPT; | |
347 | p_mbr->partition_record[0].start_sect = 1; | |
b349abbf | 348 | p_mbr->partition_record[0].nr_sects = (u32) dev_desc->lba - 1; |
40684ddb ŁM |
349 | |
350 | /* Write MBR sector to the MMC device */ | |
2a981dc2 | 351 | if (blk_dwrite(dev_desc, 0, 1, p_mbr) != 1) { |
40684ddb | 352 | printf("** Can't write to device %d **\n", |
bcce53d0 | 353 | dev_desc->devnum); |
40684ddb ŁM |
354 | return -1; |
355 | } | |
356 | ||
40684ddb ŁM |
357 | return 0; |
358 | } | |
359 | ||
4101f687 | 360 | int write_gpt_table(struct blk_desc *dev_desc, |
40684ddb ŁM |
361 | gpt_header *gpt_h, gpt_entry *gpt_e) |
362 | { | |
ae1768a7 EE |
363 | const int pte_blk_cnt = BLOCK_CNT((gpt_h->num_partition_entries |
364 | * sizeof(gpt_entry)), dev_desc); | |
40684ddb | 365 | u32 calc_crc32; |
40684ddb ŁM |
366 | |
367 | debug("max lba: %x\n", (u32) dev_desc->lba); | |
368 | /* Setup the Protective MBR */ | |
369 | if (set_protective_mbr(dev_desc) < 0) | |
370 | goto err; | |
371 | ||
372 | /* Generate CRC for the Primary GPT Header */ | |
373 | calc_crc32 = efi_crc32((const unsigned char *)gpt_e, | |
374 | le32_to_cpu(gpt_h->num_partition_entries) * | |
375 | le32_to_cpu(gpt_h->sizeof_partition_entry)); | |
376 | gpt_h->partition_entry_array_crc32 = cpu_to_le32(calc_crc32); | |
377 | ||
378 | calc_crc32 = efi_crc32((const unsigned char *)gpt_h, | |
379 | le32_to_cpu(gpt_h->header_size)); | |
380 | gpt_h->header_crc32 = cpu_to_le32(calc_crc32); | |
381 | ||
382 | /* Write the First GPT to the block right after the Legacy MBR */ | |
2a981dc2 | 383 | if (blk_dwrite(dev_desc, 1, 1, gpt_h) != 1) |
40684ddb ŁM |
384 | goto err; |
385 | ||
02e43537 PT |
386 | if (blk_dwrite(dev_desc, le64_to_cpu(gpt_h->partition_entry_lba), |
387 | pte_blk_cnt, gpt_e) != pte_blk_cnt) | |
40684ddb ŁM |
388 | goto err; |
389 | ||
e1f6b0a0 | 390 | prepare_backup_gpt_header(gpt_h); |
40684ddb | 391 | |
2a981dc2 SG |
392 | if (blk_dwrite(dev_desc, (lbaint_t)le64_to_cpu(gpt_h->last_usable_lba) |
393 | + 1, pte_blk_cnt, gpt_e) != pte_blk_cnt) | |
40684ddb ŁM |
394 | goto err; |
395 | ||
2a981dc2 SG |
396 | if (blk_dwrite(dev_desc, (lbaint_t)le64_to_cpu(gpt_h->my_lba), 1, |
397 | gpt_h) != 1) | |
40684ddb ŁM |
398 | goto err; |
399 | ||
400 | debug("GPT successfully written to block device!\n"); | |
401 | return 0; | |
402 | ||
403 | err: | |
bcce53d0 | 404 | printf("** Can't write to device %d **\n", dev_desc->devnum); |
40684ddb ŁM |
405 | return -1; |
406 | } | |
407 | ||
47d7ee47 MR |
408 | int gpt_fill_pte(struct blk_desc *dev_desc, |
409 | gpt_header *gpt_h, gpt_entry *gpt_e, | |
410 | disk_partition_t *partitions, int parts) | |
40684ddb | 411 | { |
e04350d2 | 412 | lbaint_t offset = (lbaint_t)le64_to_cpu(gpt_h->first_usable_lba); |
e04350d2 SR |
413 | lbaint_t last_usable_lba = (lbaint_t) |
414 | le64_to_cpu(gpt_h->last_usable_lba); | |
40684ddb | 415 | int i, k; |
67cd4a63 | 416 | size_t efiname_len, dosname_len; |
b331cd62 | 417 | #if CONFIG_IS_ENABLED(PARTITION_UUIDS) |
40684ddb | 418 | char *str_uuid; |
a96a0e61 | 419 | unsigned char *bin_uuid; |
40684ddb | 420 | #endif |
7561b258 PD |
421 | #ifdef CONFIG_PARTITION_TYPE_GUID |
422 | char *str_type_guid; | |
423 | unsigned char *bin_type_guid; | |
424 | #endif | |
79c5912e MR |
425 | size_t hdr_start = gpt_h->my_lba; |
426 | size_t hdr_end = hdr_start + 1; | |
427 | ||
428 | size_t pte_start = gpt_h->partition_entry_lba; | |
429 | size_t pte_end = pte_start + | |
430 | gpt_h->num_partition_entries * gpt_h->sizeof_partition_entry / | |
431 | dev_desc->blksz; | |
40684ddb ŁM |
432 | |
433 | for (i = 0; i < parts; i++) { | |
434 | /* partition starting lba */ | |
5276e8b6 MR |
435 | lbaint_t start = partitions[i].start; |
436 | lbaint_t size = partitions[i].size; | |
437 | ||
40684ddb | 438 | if (start) { |
5276e8b6 | 439 | offset = start + size; |
40684ddb | 440 | } else { |
79c5912e | 441 | start = offset; |
5276e8b6 | 442 | offset += size; |
40684ddb | 443 | } |
79c5912e MR |
444 | |
445 | /* | |
446 | * If our partition overlaps with either the GPT | |
447 | * header, or the partition entry, reject it. | |
448 | */ | |
ae0e0228 PD |
449 | if (((start < hdr_end && hdr_start < (start + size)) || |
450 | (start < pte_end && pte_start < (start + size)))) { | |
79c5912e MR |
451 | printf("Partition overlap\n"); |
452 | return -1; | |
453 | } | |
454 | ||
455 | gpt_e[i].starting_lba = cpu_to_le64(start); | |
456 | ||
a5653867 | 457 | if (offset > (last_usable_lba + 1)) { |
40684ddb ŁM |
458 | printf("Partitions layout exceds disk size\n"); |
459 | return -1; | |
460 | } | |
461 | /* partition ending lba */ | |
5276e8b6 | 462 | if ((i == parts - 1) && (size == 0)) |
40684ddb ŁM |
463 | /* extend the last partition to maximuim */ |
464 | gpt_e[i].ending_lba = gpt_h->last_usable_lba; | |
465 | else | |
466 | gpt_e[i].ending_lba = cpu_to_le64(offset - 1); | |
467 | ||
7561b258 PD |
468 | #ifdef CONFIG_PARTITION_TYPE_GUID |
469 | str_type_guid = partitions[i].type_guid; | |
470 | bin_type_guid = gpt_e[i].partition_type_guid.b; | |
471 | if (strlen(str_type_guid)) { | |
472 | if (uuid_str_to_bin(str_type_guid, bin_type_guid, | |
473 | UUID_STR_FORMAT_GUID)) { | |
474 | printf("Partition no. %d: invalid type guid: %s\n", | |
475 | i, str_type_guid); | |
476 | return -1; | |
477 | } | |
478 | } else { | |
479 | /* default partition type GUID */ | |
480 | memcpy(bin_type_guid, | |
44ab2d32 | 481 | &partition_basic_data_guid, 16); |
7561b258 PD |
482 | } |
483 | #else | |
40684ddb ŁM |
484 | /* partition type GUID */ |
485 | memcpy(gpt_e[i].partition_type_guid.b, | |
44ab2d32 | 486 | &partition_basic_data_guid, 16); |
7561b258 | 487 | #endif |
40684ddb | 488 | |
b331cd62 | 489 | #if CONFIG_IS_ENABLED(PARTITION_UUIDS) |
40684ddb | 490 | str_uuid = partitions[i].uuid; |
a96a0e61 PM |
491 | bin_uuid = gpt_e[i].unique_partition_guid.b; |
492 | ||
9da52f8f | 493 | if (uuid_str_to_bin(str_uuid, bin_uuid, UUID_STR_FORMAT_GUID)) { |
40684ddb ŁM |
494 | printf("Partition no. %d: invalid guid: %s\n", |
495 | i, str_uuid); | |
496 | return -1; | |
497 | } | |
498 | #endif | |
499 | ||
500 | /* partition attributes */ | |
501 | memset(&gpt_e[i].attributes, 0, | |
502 | sizeof(gpt_entry_attributes)); | |
503 | ||
cfdaf4ca PD |
504 | if (partitions[i].bootable) |
505 | gpt_e[i].attributes.fields.legacy_bios_bootable = 1; | |
506 | ||
40684ddb | 507 | /* partition name */ |
67cd4a63 | 508 | efiname_len = sizeof(gpt_e[i].partition_name) |
40684ddb | 509 | / sizeof(efi_char16_t); |
67cd4a63 MV |
510 | dosname_len = sizeof(partitions[i].name); |
511 | ||
512 | memset(gpt_e[i].partition_name, 0, | |
513 | sizeof(gpt_e[i].partition_name)); | |
514 | ||
515 | for (k = 0; k < min(dosname_len, efiname_len); k++) | |
40684ddb ŁM |
516 | gpt_e[i].partition_name[k] = |
517 | (efi_char16_t)(partitions[i].name[k]); | |
518 | ||
e04350d2 SR |
519 | debug("%s: name: %s offset[%d]: 0x" LBAF |
520 | " size[%d]: 0x" LBAF "\n", | |
40684ddb | 521 | __func__, partitions[i].name, i, |
5276e8b6 | 522 | offset, i, size); |
40684ddb ŁM |
523 | } |
524 | ||
525 | return 0; | |
526 | } | |
527 | ||
02e43537 PT |
528 | static uint32_t partition_entries_offset(struct blk_desc *dev_desc) |
529 | { | |
530 | uint32_t offset_blks = 2; | |
89d33a2c | 531 | uint32_t __maybe_unused offset_bytes; |
02e43537 PT |
532 | int __maybe_unused config_offset; |
533 | ||
534 | #if defined(CONFIG_EFI_PARTITION_ENTRIES_OFF) | |
535 | /* | |
536 | * Some architectures require their SPL loader at a fixed | |
537 | * address within the first 16KB of the disk. To avoid an | |
538 | * overlap with the partition entries of the EFI partition | |
539 | * table, the first safe offset (in bytes, from the start of | |
540 | * the disk) for the entries can be set in | |
541 | * CONFIG_EFI_PARTITION_ENTRIES_OFF. | |
542 | */ | |
89d33a2c | 543 | offset_bytes = |
02e43537 | 544 | PAD_TO_BLOCKSIZE(CONFIG_EFI_PARTITION_ENTRIES_OFF, dev_desc); |
89d33a2c | 545 | offset_blks = offset_bytes / dev_desc->blksz; |
02e43537 PT |
546 | #endif |
547 | ||
548 | #if defined(CONFIG_OF_CONTROL) | |
549 | /* | |
550 | * Allow the offset of the first partition entires (in bytes | |
551 | * from the start of the device) to be specified as a property | |
552 | * of the device tree '/config' node. | |
553 | */ | |
554 | config_offset = fdtdec_get_config_int(gd->fdt_blob, | |
555 | "u-boot,efi-partition-entries-offset", | |
556 | -EINVAL); | |
89d33a2c MR |
557 | if (config_offset != -EINVAL) { |
558 | offset_bytes = PAD_TO_BLOCKSIZE(config_offset, dev_desc); | |
559 | offset_blks = offset_bytes / dev_desc->blksz; | |
560 | } | |
02e43537 PT |
561 | #endif |
562 | ||
563 | debug("efi: partition entries offset (in blocks): %d\n", offset_blks); | |
564 | ||
565 | /* | |
566 | * The earliest LBA this can be at is LBA#2 (i.e. right behind | |
567 | * the (protective) MBR and the GPT header. | |
568 | */ | |
569 | if (offset_blks < 2) | |
570 | offset_blks = 2; | |
571 | ||
572 | return offset_blks; | |
573 | } | |
574 | ||
4101f687 | 575 | int gpt_fill_header(struct blk_desc *dev_desc, gpt_header *gpt_h, |
40684ddb ŁM |
576 | char *str_guid, int parts_count) |
577 | { | |
67b90522 | 578 | gpt_h->signature = cpu_to_le64(GPT_HEADER_SIGNATURE_UBOOT); |
40684ddb ŁM |
579 | gpt_h->revision = cpu_to_le32(GPT_HEADER_REVISION_V1); |
580 | gpt_h->header_size = cpu_to_le32(sizeof(gpt_header)); | |
581 | gpt_h->my_lba = cpu_to_le64(1); | |
582 | gpt_h->alternate_lba = cpu_to_le64(dev_desc->lba - 1); | |
40684ddb | 583 | gpt_h->last_usable_lba = cpu_to_le64(dev_desc->lba - 34); |
02e43537 PT |
584 | gpt_h->partition_entry_lba = |
585 | cpu_to_le64(partition_entries_offset(dev_desc)); | |
586 | gpt_h->first_usable_lba = | |
587 | cpu_to_le64(le64_to_cpu(gpt_h->partition_entry_lba) + 32); | |
40684ddb ŁM |
588 | gpt_h->num_partition_entries = cpu_to_le32(GPT_ENTRY_NUMBERS); |
589 | gpt_h->sizeof_partition_entry = cpu_to_le32(sizeof(gpt_entry)); | |
590 | gpt_h->header_crc32 = 0; | |
591 | gpt_h->partition_entry_array_crc32 = 0; | |
592 | ||
d718ded0 | 593 | if (uuid_str_to_bin(str_guid, gpt_h->disk_guid.b, UUID_STR_FORMAT_GUID)) |
40684ddb ŁM |
594 | return -1; |
595 | ||
596 | return 0; | |
597 | } | |
598 | ||
4101f687 | 599 | int gpt_restore(struct blk_desc *dev_desc, char *str_disk_guid, |
40684ddb ŁM |
600 | disk_partition_t *partitions, int parts_count) |
601 | { | |
bb021013 | 602 | gpt_header *gpt_h; |
ae1768a7 | 603 | gpt_entry *gpt_e; |
bb021013 | 604 | int ret, size; |
ae1768a7 | 605 | |
bb021013 LM |
606 | size = PAD_TO_BLOCKSIZE(sizeof(gpt_header), dev_desc); |
607 | gpt_h = malloc_cache_aligned(size); | |
40684ddb ŁM |
608 | if (gpt_h == NULL) { |
609 | printf("%s: calloc failed!\n", __func__); | |
610 | return -1; | |
611 | } | |
bb021013 | 612 | memset(gpt_h, 0, size); |
40684ddb | 613 | |
bb021013 LM |
614 | size = PAD_TO_BLOCKSIZE(GPT_ENTRY_NUMBERS * sizeof(gpt_entry), |
615 | dev_desc); | |
616 | gpt_e = malloc_cache_aligned(size); | |
40684ddb ŁM |
617 | if (gpt_e == NULL) { |
618 | printf("%s: calloc failed!\n", __func__); | |
619 | free(gpt_h); | |
620 | return -1; | |
621 | } | |
bb021013 | 622 | memset(gpt_e, 0, size); |
40684ddb ŁM |
623 | |
624 | /* Generate Primary GPT header (LBA1) */ | |
625 | ret = gpt_fill_header(dev_desc, gpt_h, str_disk_guid, parts_count); | |
626 | if (ret) | |
627 | goto err; | |
628 | ||
629 | /* Generate partition entries */ | |
47d7ee47 | 630 | ret = gpt_fill_pte(dev_desc, gpt_h, gpt_e, partitions, parts_count); |
40684ddb ŁM |
631 | if (ret) |
632 | goto err; | |
633 | ||
634 | /* Write GPT partition table */ | |
635 | ret = write_gpt_table(dev_desc, gpt_h, gpt_e); | |
636 | ||
637 | err: | |
638 | free(gpt_e); | |
639 | free(gpt_h); | |
640 | return ret; | |
641 | } | |
0ff7e585 | 642 | |
06e921b1 HS |
643 | /** |
644 | * gpt_convert_efi_name_to_char() - convert u16 string to char string | |
645 | * | |
646 | * TODO: this conversion only supports ANSI characters | |
647 | * | |
648 | * @s: target buffer | |
649 | * @es: u16 string to be converted | |
650 | * @n: size of target buffer | |
651 | */ | |
652 | static void gpt_convert_efi_name_to_char(char *s, void *es, int n) | |
cef68bf9 | 653 | { |
06e921b1 | 654 | char *ess = es; |
cef68bf9 LM |
655 | int i, j; |
656 | ||
657 | memset(s, '\0', n); | |
658 | ||
659 | for (i = 0, j = 0; j < n; i += 2, j++) { | |
660 | s[j] = ess[i]; | |
661 | if (!ess[i]) | |
662 | return; | |
663 | } | |
664 | } | |
665 | ||
4101f687 | 666 | int gpt_verify_headers(struct blk_desc *dev_desc, gpt_header *gpt_head, |
cef68bf9 LM |
667 | gpt_entry **gpt_pte) |
668 | { | |
669 | /* | |
670 | * This function validates AND | |
671 | * fills in the GPT header and PTE | |
672 | */ | |
673 | if (is_gpt_valid(dev_desc, | |
674 | GPT_PRIMARY_PARTITION_TABLE_LBA, | |
675 | gpt_head, gpt_pte) != 1) { | |
676 | printf("%s: *** ERROR: Invalid GPT ***\n", | |
677 | __func__); | |
678 | return -1; | |
679 | } | |
716f919d ER |
680 | |
681 | /* Free pte before allocating again */ | |
682 | free(*gpt_pte); | |
683 | ||
cef68bf9 LM |
684 | if (is_gpt_valid(dev_desc, (dev_desc->lba - 1), |
685 | gpt_head, gpt_pte) != 1) { | |
686 | printf("%s: *** ERROR: Invalid Backup GPT ***\n", | |
687 | __func__); | |
688 | return -1; | |
689 | } | |
690 | ||
691 | return 0; | |
692 | } | |
693 | ||
4101f687 | 694 | int gpt_verify_partitions(struct blk_desc *dev_desc, |
cef68bf9 LM |
695 | disk_partition_t *partitions, int parts, |
696 | gpt_header *gpt_head, gpt_entry **gpt_pte) | |
697 | { | |
698 | char efi_str[PARTNAME_SZ + 1]; | |
699 | u64 gpt_part_size; | |
700 | gpt_entry *gpt_e; | |
701 | int ret, i; | |
702 | ||
703 | ret = gpt_verify_headers(dev_desc, gpt_head, gpt_pte); | |
704 | if (ret) | |
705 | return ret; | |
706 | ||
707 | gpt_e = *gpt_pte; | |
708 | ||
709 | for (i = 0; i < parts; i++) { | |
710 | if (i == gpt_head->num_partition_entries) { | |
9b643e31 | 711 | pr_err("More partitions than allowed!\n"); |
cef68bf9 LM |
712 | return -1; |
713 | } | |
714 | ||
715 | /* Check if GPT and ENV partition names match */ | |
716 | gpt_convert_efi_name_to_char(efi_str, gpt_e[i].partition_name, | |
717 | PARTNAME_SZ + 1); | |
718 | ||
719 | debug("%s: part: %2d name - GPT: %16s, ENV: %16s ", | |
720 | __func__, i, efi_str, partitions[i].name); | |
721 | ||
722 | if (strncmp(efi_str, (char *)partitions[i].name, | |
723 | sizeof(partitions->name))) { | |
9b643e31 | 724 | pr_err("Partition name: %s does not match %s!\n", |
cef68bf9 LM |
725 | efi_str, (char *)partitions[i].name); |
726 | return -1; | |
727 | } | |
728 | ||
729 | /* Check if GPT and ENV sizes match */ | |
730 | gpt_part_size = le64_to_cpu(gpt_e[i].ending_lba) - | |
731 | le64_to_cpu(gpt_e[i].starting_lba) + 1; | |
732 | debug("size(LBA) - GPT: %8llu, ENV: %8llu ", | |
f8d6165d SG |
733 | (unsigned long long)gpt_part_size, |
734 | (unsigned long long)partitions[i].size); | |
cef68bf9 LM |
735 | |
736 | if (le64_to_cpu(gpt_part_size) != partitions[i].size) { | |
c2fdd345 KY |
737 | /* We do not check the extend partition size */ |
738 | if ((i == parts - 1) && (partitions[i].size == 0)) | |
739 | continue; | |
740 | ||
9b643e31 | 741 | pr_err("Partition %s size: %llu does not match %llu!\n", |
f8d6165d SG |
742 | efi_str, (unsigned long long)gpt_part_size, |
743 | (unsigned long long)partitions[i].size); | |
cef68bf9 LM |
744 | return -1; |
745 | } | |
746 | ||
747 | /* | |
748 | * Start address is optional - check only if provided | |
749 | * in '$partition' variable | |
750 | */ | |
751 | if (!partitions[i].start) { | |
752 | debug("\n"); | |
753 | continue; | |
754 | } | |
755 | ||
756 | /* Check if GPT and ENV start LBAs match */ | |
757 | debug("start LBA - GPT: %8llu, ENV: %8llu\n", | |
758 | le64_to_cpu(gpt_e[i].starting_lba), | |
f8d6165d | 759 | (unsigned long long)partitions[i].start); |
cef68bf9 LM |
760 | |
761 | if (le64_to_cpu(gpt_e[i].starting_lba) != partitions[i].start) { | |
9b643e31 | 762 | pr_err("Partition %s start: %llu does not match %llu!\n", |
cef68bf9 | 763 | efi_str, le64_to_cpu(gpt_e[i].starting_lba), |
f8d6165d | 764 | (unsigned long long)partitions[i].start); |
cef68bf9 LM |
765 | return -1; |
766 | } | |
767 | } | |
768 | ||
769 | return 0; | |
770 | } | |
771 | ||
4101f687 | 772 | int is_valid_gpt_buf(struct blk_desc *dev_desc, void *buf) |
0ff7e585 SR |
773 | { |
774 | gpt_header *gpt_h; | |
775 | gpt_entry *gpt_e; | |
776 | ||
777 | /* determine start of GPT Header in the buffer */ | |
778 | gpt_h = buf + (GPT_PRIMARY_PARTITION_TABLE_LBA * | |
779 | dev_desc->blksz); | |
780 | if (validate_gpt_header(gpt_h, GPT_PRIMARY_PARTITION_TABLE_LBA, | |
781 | dev_desc->lba)) | |
782 | return -1; | |
783 | ||
784 | /* determine start of GPT Entries in the buffer */ | |
785 | gpt_e = buf + (le64_to_cpu(gpt_h->partition_entry_lba) * | |
786 | dev_desc->blksz); | |
787 | if (validate_gpt_entries(gpt_h, gpt_e)) | |
788 | return -1; | |
789 | ||
790 | return 0; | |
791 | } | |
792 | ||
4101f687 | 793 | int write_mbr_and_gpt_partitions(struct blk_desc *dev_desc, void *buf) |
0ff7e585 SR |
794 | { |
795 | gpt_header *gpt_h; | |
796 | gpt_entry *gpt_e; | |
797 | int gpt_e_blk_cnt; | |
798 | lbaint_t lba; | |
799 | int cnt; | |
800 | ||
801 | if (is_valid_gpt_buf(dev_desc, buf)) | |
802 | return -1; | |
803 | ||
804 | /* determine start of GPT Header in the buffer */ | |
805 | gpt_h = buf + (GPT_PRIMARY_PARTITION_TABLE_LBA * | |
806 | dev_desc->blksz); | |
807 | ||
808 | /* determine start of GPT Entries in the buffer */ | |
809 | gpt_e = buf + (le64_to_cpu(gpt_h->partition_entry_lba) * | |
810 | dev_desc->blksz); | |
811 | gpt_e_blk_cnt = BLOCK_CNT((le32_to_cpu(gpt_h->num_partition_entries) * | |
812 | le32_to_cpu(gpt_h->sizeof_partition_entry)), | |
813 | dev_desc); | |
814 | ||
815 | /* write MBR */ | |
816 | lba = 0; /* MBR is always at 0 */ | |
817 | cnt = 1; /* MBR (1 block) */ | |
2a981dc2 | 818 | if (blk_dwrite(dev_desc, lba, cnt, buf) != cnt) { |
0ff7e585 SR |
819 | printf("%s: failed writing '%s' (%d blks at 0x" LBAF ")\n", |
820 | __func__, "MBR", cnt, lba); | |
821 | return 1; | |
822 | } | |
823 | ||
824 | /* write Primary GPT */ | |
825 | lba = GPT_PRIMARY_PARTITION_TABLE_LBA; | |
826 | cnt = 1; /* GPT Header (1 block) */ | |
2a981dc2 | 827 | if (blk_dwrite(dev_desc, lba, cnt, gpt_h) != cnt) { |
0ff7e585 SR |
828 | printf("%s: failed writing '%s' (%d blks at 0x" LBAF ")\n", |
829 | __func__, "Primary GPT Header", cnt, lba); | |
830 | return 1; | |
831 | } | |
832 | ||
833 | lba = le64_to_cpu(gpt_h->partition_entry_lba); | |
834 | cnt = gpt_e_blk_cnt; | |
2a981dc2 | 835 | if (blk_dwrite(dev_desc, lba, cnt, gpt_e) != cnt) { |
0ff7e585 SR |
836 | printf("%s: failed writing '%s' (%d blks at 0x" LBAF ")\n", |
837 | __func__, "Primary GPT Entries", cnt, lba); | |
838 | return 1; | |
839 | } | |
840 | ||
841 | prepare_backup_gpt_header(gpt_h); | |
842 | ||
843 | /* write Backup GPT */ | |
844 | lba = le64_to_cpu(gpt_h->partition_entry_lba); | |
845 | cnt = gpt_e_blk_cnt; | |
2a981dc2 | 846 | if (blk_dwrite(dev_desc, lba, cnt, gpt_e) != cnt) { |
0ff7e585 SR |
847 | printf("%s: failed writing '%s' (%d blks at 0x" LBAF ")\n", |
848 | __func__, "Backup GPT Entries", cnt, lba); | |
849 | return 1; | |
850 | } | |
851 | ||
852 | lba = le64_to_cpu(gpt_h->my_lba); | |
853 | cnt = 1; /* GPT Header (1 block) */ | |
2a981dc2 | 854 | if (blk_dwrite(dev_desc, lba, cnt, gpt_h) != cnt) { |
0ff7e585 SR |
855 | printf("%s: failed writing '%s' (%d blks at 0x" LBAF ")\n", |
856 | __func__, "Backup GPT Header", cnt, lba); | |
857 | return 1; | |
858 | } | |
859 | ||
860 | return 0; | |
861 | } | |
40684ddb ŁM |
862 | #endif |
863 | ||
07f3d789 | 864 | /* |
865 | * Private functions | |
866 | */ | |
867 | /* | |
868 | * pmbr_part_valid(): Check for EFI partition signature | |
869 | * | |
870 | * Returns: 1 if EFI GPT partition type is found. | |
871 | */ | |
872 | static int pmbr_part_valid(struct partition *part) | |
873 | { | |
874 | if (part->sys_ind == EFI_PMBR_OSTYPE_EFI_GPT && | |
8faefadb | 875 | get_unaligned_le32(&part->start_sect) == 1UL) { |
07f3d789 | 876 | return 1; |
877 | } | |
878 | ||
879 | return 0; | |
880 | } | |
881 | ||
882 | /* | |
883 | * is_pmbr_valid(): test Protective MBR for validity | |
884 | * | |
885 | * Returns: 1 if PMBR is valid, 0 otherwise. | |
886 | * Validity depends on two things: | |
887 | * 1) MSDOS signature is in the last two bytes of the MBR | |
888 | * 2) One partition of type 0xEE is found, checked by pmbr_part_valid() | |
889 | */ | |
890 | static int is_pmbr_valid(legacy_mbr * mbr) | |
891 | { | |
892 | int i = 0; | |
893 | ||
fae2bf22 | 894 | if (!mbr || le16_to_cpu(mbr->signature) != MSDOS_MBR_SIGNATURE) |
07f3d789 | 895 | return 0; |
07f3d789 | 896 | |
897 | for (i = 0; i < 4; i++) { | |
898 | if (pmbr_part_valid(&mbr->partition_record[i])) { | |
899 | return 1; | |
900 | } | |
901 | } | |
902 | return 0; | |
903 | } | |
904 | ||
905 | /** | |
906 | * is_gpt_valid() - tests one GPT header and PTEs for validity | |
907 | * | |
908 | * lba is the logical block address of the GPT header to test | |
909 | * gpt is a GPT header ptr, filled on return. | |
910 | * ptes is a PTEs ptr, filled on return. | |
911 | * | |
0557d46b | 912 | * Description: returns 1 if valid, 0 on error, 2 if ignored header |
07f3d789 | 913 | * If valid, returns pointers to PTEs. |
914 | */ | |
4101f687 | 915 | static int is_gpt_valid(struct blk_desc *dev_desc, u64 lba, |
e04350d2 | 916 | gpt_header *pgpt_head, gpt_entry **pgpt_pte) |
07f3d789 | 917 | { |
b351ccf1 | 918 | /* Confirm valid arguments prior to allocation. */ |
07f3d789 | 919 | if (!dev_desc || !pgpt_head) { |
df70b1c2 | 920 | printf("%s: Invalid Argument(s)\n", __func__); |
07f3d789 | 921 | return 0; |
922 | } | |
923 | ||
3cc56611 | 924 | ALLOC_CACHE_ALIGN_BUFFER_PAD(legacy_mbr, mbr, 1, dev_desc->blksz); |
b351ccf1 | 925 | |
ff98cb90 PJ |
926 | /* Read MBR Header from device */ |
927 | if (blk_dread(dev_desc, 0, 1, (ulong *)mbr) != 1) { | |
928 | printf("*** ERROR: Can't read MBR header ***\n"); | |
929 | return 0; | |
930 | } | |
931 | ||
07f3d789 | 932 | /* Read GPT Header from device */ |
2a981dc2 | 933 | if (blk_dread(dev_desc, (lbaint_t)lba, 1, pgpt_head) != 1) { |
07f3d789 | 934 | printf("*** ERROR: Can't read GPT header ***\n"); |
935 | return 0; | |
936 | } | |
937 | ||
0557d46b UR |
938 | /* Invalid but nothing to yell about. */ |
939 | if (le64_to_cpu(pgpt_head->signature) == GPT_HEADER_CHROMEOS_IGNORE) { | |
940 | debug("ChromeOS 'IGNOREME' GPT header found and ignored\n"); | |
941 | return 2; | |
942 | } | |
943 | ||
e1f6b0a0 | 944 | if (validate_gpt_header(pgpt_head, (lbaint_t)lba, dev_desc->lba)) |
07f3d789 | 945 | return 0; |
07f3d789 | 946 | |
ff98cb90 PJ |
947 | if (dev_desc->sig_type == SIG_TYPE_NONE) { |
948 | efi_guid_t empty = {}; | |
949 | if (memcmp(&pgpt_head->disk_guid, &empty, sizeof(empty))) { | |
950 | dev_desc->sig_type = SIG_TYPE_GUID; | |
951 | memcpy(&dev_desc->guid_sig, &pgpt_head->disk_guid, | |
952 | sizeof(empty)); | |
953 | } else if (mbr->unique_mbr_signature != 0) { | |
954 | dev_desc->sig_type = SIG_TYPE_MBR; | |
955 | dev_desc->mbr_sig = mbr->unique_mbr_signature; | |
956 | } | |
957 | } | |
958 | ||
07f3d789 | 959 | /* Read and allocate Partition Table Entries */ |
960 | *pgpt_pte = alloc_read_gpt_entries(dev_desc, pgpt_head); | |
961 | if (*pgpt_pte == NULL) { | |
962 | printf("GPT: Failed to allocate memory for PTE\n"); | |
963 | return 0; | |
964 | } | |
965 | ||
e1f6b0a0 | 966 | if (validate_gpt_entries(pgpt_head, *pgpt_pte)) { |
deb5ca80 | 967 | free(*pgpt_pte); |
07f3d789 | 968 | return 0; |
969 | } | |
970 | ||
971 | /* We're done, all's well */ | |
972 | return 1; | |
973 | } | |
974 | ||
20c568ca UR |
975 | /** |
976 | * find_valid_gpt() - finds a valid GPT header and PTEs | |
977 | * | |
978 | * gpt is a GPT header ptr, filled on return. | |
979 | * ptes is a PTEs ptr, filled on return. | |
980 | * | |
981 | * Description: returns 1 if found a valid gpt, 0 on error. | |
982 | * If valid, returns pointers to PTEs. | |
983 | */ | |
984 | static int find_valid_gpt(struct blk_desc *dev_desc, gpt_header *gpt_head, | |
985 | gpt_entry **pgpt_pte) | |
986 | { | |
0557d46b UR |
987 | int r; |
988 | ||
989 | r = is_gpt_valid(dev_desc, GPT_PRIMARY_PARTITION_TABLE_LBA, gpt_head, | |
990 | pgpt_pte); | |
991 | ||
992 | if (r != 1) { | |
993 | if (r != 2) | |
994 | printf("%s: *** ERROR: Invalid GPT ***\n", __func__); | |
995 | ||
996 | if (is_gpt_valid(dev_desc, (dev_desc->lba - 1), gpt_head, | |
997 | pgpt_pte) != 1) { | |
20c568ca UR |
998 | printf("%s: *** ERROR: Invalid Backup GPT ***\n", |
999 | __func__); | |
1000 | return 0; | |
1001 | } | |
0557d46b UR |
1002 | if (r != 2) |
1003 | printf("%s: *** Using Backup GPT ***\n", | |
1004 | __func__); | |
20c568ca UR |
1005 | } |
1006 | return 1; | |
1007 | } | |
1008 | ||
07f3d789 | 1009 | /** |
1010 | * alloc_read_gpt_entries(): reads partition entries from disk | |
1011 | * @dev_desc | |
1012 | * @gpt - GPT header | |
1013 | * | |
1014 | * Description: Returns ptes on success, NULL on error. | |
1015 | * Allocates space for PTEs based on information found in @gpt. | |
1016 | * Notes: remember to free pte when you're done! | |
1017 | */ | |
4101f687 SG |
1018 | static gpt_entry *alloc_read_gpt_entries(struct blk_desc *dev_desc, |
1019 | gpt_header *pgpt_head) | |
07f3d789 | 1020 | { |
ae1768a7 | 1021 | size_t count = 0, blk_cnt; |
7c4213f6 | 1022 | lbaint_t blk; |
07f3d789 | 1023 | gpt_entry *pte = NULL; |
1024 | ||
1025 | if (!dev_desc || !pgpt_head) { | |
df70b1c2 | 1026 | printf("%s: Invalid Argument(s)\n", __func__); |
07f3d789 | 1027 | return NULL; |
1028 | } | |
1029 | ||
fae2bf22 CHP |
1030 | count = le32_to_cpu(pgpt_head->num_partition_entries) * |
1031 | le32_to_cpu(pgpt_head->sizeof_partition_entry); | |
07f3d789 | 1032 | |
5afb8d15 | 1033 | debug("%s: count = %u * %u = %lu\n", __func__, |
fae2bf22 | 1034 | (u32) le32_to_cpu(pgpt_head->num_partition_entries), |
5afb8d15 SG |
1035 | (u32) le32_to_cpu(pgpt_head->sizeof_partition_entry), |
1036 | (ulong)count); | |
07f3d789 | 1037 | |
1038 | /* Allocate memory for PTE, remember to FREE */ | |
1039 | if (count != 0) { | |
ae1768a7 EE |
1040 | pte = memalign(ARCH_DMA_MINALIGN, |
1041 | PAD_TO_BLOCKSIZE(count, dev_desc)); | |
07f3d789 | 1042 | } |
1043 | ||
1044 | if (count == 0 || pte == NULL) { | |
5afb8d15 SG |
1045 | printf("%s: ERROR: Can't allocate %#lX bytes for GPT Entries\n", |
1046 | __func__, (ulong)count); | |
07f3d789 | 1047 | return NULL; |
1048 | } | |
1049 | ||
1050 | /* Read GPT Entries from device */ | |
7c4213f6 | 1051 | blk = le64_to_cpu(pgpt_head->partition_entry_lba); |
ae1768a7 | 1052 | blk_cnt = BLOCK_CNT(count, dev_desc); |
2a981dc2 | 1053 | if (blk_dread(dev_desc, blk, (lbaint_t)blk_cnt, pte) != blk_cnt) { |
07f3d789 | 1054 | printf("*** ERROR: Can't read GPT Entries ***\n"); |
1055 | free(pte); | |
1056 | return NULL; | |
1057 | } | |
1058 | return pte; | |
1059 | } | |
1060 | ||
1061 | /** | |
1062 | * is_pte_valid(): validates a single Partition Table Entry | |
1063 | * @gpt_entry - Pointer to a single Partition Table Entry | |
1064 | * | |
1065 | * Description: returns 1 if valid, 0 on error. | |
1066 | */ | |
1067 | static int is_pte_valid(gpt_entry * pte) | |
1068 | { | |
1069 | efi_guid_t unused_guid; | |
1070 | ||
1071 | if (!pte) { | |
df70b1c2 | 1072 | printf("%s: Invalid Argument(s)\n", __func__); |
07f3d789 | 1073 | return 0; |
1074 | } | |
1075 | ||
1076 | /* Only one validation for now: | |
1077 | * The GUID Partition Type != Unused Entry (ALL-ZERO) | |
1078 | */ | |
1079 | memset(unused_guid.b, 0, sizeof(unused_guid.b)); | |
1080 | ||
1081 | if (memcmp(pte->partition_type_guid.b, unused_guid.b, | |
1082 | sizeof(unused_guid.b)) == 0) { | |
1083 | ||
df70b1c2 | 1084 | debug("%s: Found an unused PTE GUID at 0x%08X\n", __func__, |
9936be31 | 1085 | (unsigned int)(uintptr_t)pte); |
07f3d789 | 1086 | |
1087 | return 0; | |
1088 | } else { | |
1089 | return 1; | |
1090 | } | |
1091 | } | |
96e5b03c SG |
1092 | |
1093 | /* | |
1094 | * Add an 'a_' prefix so it comes before 'dos' in the linker list. We need to | |
1095 | * check EFI first, since a DOS partition is often used as a 'protective MBR' | |
1096 | * with EFI. | |
1097 | */ | |
1098 | U_BOOT_PART_TYPE(a_efi) = { | |
1099 | .name = "EFI", | |
1100 | .part_type = PART_TYPE_EFI, | |
87b8530f | 1101 | .max_entries = GPT_ENTRY_NUMBERS, |
3e8bd469 | 1102 | .get_info = part_get_info_ptr(part_get_info_efi), |
084bf4c2 SG |
1103 | .print = part_print_ptr(part_print_efi), |
1104 | .test = part_test_efi, | |
96e5b03c | 1105 | }; |
07f3d789 | 1106 | #endif |