blob: 9611398885045af56dabdb5a477063f06a7bbadf [file] [log] [blame]
Tom Rinif739fcd2018-05-07 17:02:21 -04001// SPDX-License-Identifier: GPL-2.0+
Alexander Grafcb149c62016-03-04 01:09:58 +01002/*
3 * EFI image loader
4 *
5 * based partly on wine code
6 *
7 * Copyright (c) 2016 Alexander Graf
Alexander Grafcb149c62016-03-04 01:09:58 +01008 */
9
Heinrich Schuchardt24586052020-08-25 17:51:20 +000010#define LOG_CATEGORY LOGC_EFI
11
Alexander Grafcb149c62016-03-04 01:09:58 +010012#include <common.h>
Simon Glass1eb69ae2019-11-14 12:57:39 -070013#include <cpu_func.h>
Alexander Grafcb149c62016-03-04 01:09:58 +010014#include <efi_loader.h>
Heinrich Schuchardt24586052020-08-25 17:51:20 +000015#include <log.h>
AKASHI Takahiro4540dab2020-04-14 11:51:44 +090016#include <malloc.h>
Alexander Grafcb149c62016-03-04 01:09:58 +010017#include <pe.h>
AKASHI Takahiro4540dab2020-04-14 11:51:44 +090018#include <sort.h>
Heinrich Schuchardtd7ca3ce2020-05-07 17:57:43 +020019#include <crypto/pkcs7_parser.h>
Patrick Wildt6f146152020-05-07 02:17:14 +020020#include <linux/err.h>
Alexander Grafcb149c62016-03-04 01:09:58 +010021
Rob Clark9975fe92017-09-13 18:05:38 -040022const efi_guid_t efi_global_variable_guid = EFI_GLOBAL_VARIABLE_GUID;
Heinrich Schuchardtdec88e42019-04-20 07:39:11 +020023const efi_guid_t efi_guid_device_path = EFI_DEVICE_PATH_PROTOCOL_GUID;
24const efi_guid_t efi_guid_loaded_image = EFI_LOADED_IMAGE_PROTOCOL_GUID;
25const efi_guid_t efi_guid_loaded_image_device_path =
26 EFI_LOADED_IMAGE_DEVICE_PATH_PROTOCOL_GUID;
Rob Clark2a920802017-09-13 18:05:34 -040027const efi_guid_t efi_simple_file_system_protocol_guid =
28 EFI_SIMPLE_FILE_SYSTEM_PROTOCOL_GUID;
29const efi_guid_t efi_file_info_guid = EFI_FILE_INFO_GUID;
Alexander Grafcb149c62016-03-04 01:09:58 +010030
Ivan Gorinov61a5ced2018-04-05 18:32:06 -070031static int machines[] = {
Alexander Grafb59f6972018-06-18 17:22:57 +020032#if defined(__aarch64__)
Ivan Gorinov61a5ced2018-04-05 18:32:06 -070033 IMAGE_FILE_MACHINE_ARM64,
Alexander Grafb59f6972018-06-18 17:22:57 +020034#elif defined(__arm__)
Ivan Gorinov61a5ced2018-04-05 18:32:06 -070035 IMAGE_FILE_MACHINE_ARM,
36 IMAGE_FILE_MACHINE_THUMB,
37 IMAGE_FILE_MACHINE_ARMNT,
38#endif
39
Alexander Grafb59f6972018-06-18 17:22:57 +020040#if defined(__x86_64__)
Ivan Gorinov61a5ced2018-04-05 18:32:06 -070041 IMAGE_FILE_MACHINE_AMD64,
Alexander Grafb59f6972018-06-18 17:22:57 +020042#elif defined(__i386__)
Ivan Gorinov61a5ced2018-04-05 18:32:06 -070043 IMAGE_FILE_MACHINE_I386,
44#endif
45
Alexander Grafb59f6972018-06-18 17:22:57 +020046#if defined(__riscv) && (__riscv_xlen == 32)
Ivan Gorinov61a5ced2018-04-05 18:32:06 -070047 IMAGE_FILE_MACHINE_RISCV32,
48#endif
49
Alexander Grafb59f6972018-06-18 17:22:57 +020050#if defined(__riscv) && (__riscv_xlen == 64)
Ivan Gorinov61a5ced2018-04-05 18:32:06 -070051 IMAGE_FILE_MACHINE_RISCV64,
52#endif
53 0 };
54
Heinrich Schuchardt1db561e2019-02-16 15:22:13 +010055/**
56 * efi_print_image_info() - print information about a loaded image
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020057 *
58 * If the program counter is located within the image the offset to the base
59 * address is shown.
60 *
Heinrich Schuchardtc9828742018-09-23 17:21:51 +020061 * @obj: EFI object
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020062 * @image: loaded image
63 * @pc: program counter (use NULL to suppress offset output)
Heinrich Schuchardt1db561e2019-02-16 15:22:13 +010064 * Return: status code
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020065 */
Heinrich Schuchardtc9828742018-09-23 17:21:51 +020066static efi_status_t efi_print_image_info(struct efi_loaded_image_obj *obj,
67 struct efi_loaded_image *image,
68 void *pc)
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020069{
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020070 printf("UEFI image");
71 printf(" [0x%p:0x%p]",
AKASHI Takahiro8458bf62018-10-11 04:09:58 -070072 image->image_base, image->image_base + image->image_size - 1);
73 if (pc && pc >= image->image_base &&
74 pc < image->image_base + image->image_size)
75 printf(" pc=0x%zx", pc - image->image_base);
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020076 if (image->file_path)
77 printf(" '%pD'", image->file_path);
78 printf("\n");
79 return EFI_SUCCESS;
80}
81
Heinrich Schuchardt1db561e2019-02-16 15:22:13 +010082/**
83 * efi_print_image_infos() - print information about all loaded images
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020084 *
85 * @pc: program counter (use NULL to suppress offset output)
86 */
87void efi_print_image_infos(void *pc)
88{
89 struct efi_object *efiobj;
90 struct efi_handler *handler;
91
92 list_for_each_entry(efiobj, &efi_obj_list, link) {
93 list_for_each_entry(handler, &efiobj->protocols, link) {
Heinrich Schuchardt66028932022-03-09 19:56:23 +010094 if (!guidcmp(&handler->guid, &efi_guid_loaded_image)) {
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020095 efi_print_image_info(
Heinrich Schuchardtc9828742018-09-23 17:21:51 +020096 (struct efi_loaded_image_obj *)efiobj,
Heinrich Schuchardtc9a63f42018-04-05 11:56:21 +020097 handler->protocol_interface, pc);
98 }
99 }
100 }
101}
102
Heinrich Schuchardt1db561e2019-02-16 15:22:13 +0100103/**
104 * efi_loader_relocate() - relocate UEFI binary
105 *
106 * @rel: pointer to the relocation table
107 * @rel_size: size of the relocation table in bytes
108 * @efi_reloc: actual load address of the image
109 * @pref_address: preferred load address of the image
110 * Return: status code
111 */
xypron.glpk@gmx.deda684a62017-07-04 00:12:58 +0200112static efi_status_t efi_loader_relocate(const IMAGE_BASE_RELOCATION *rel,
Ivan Gorinove2dc4222018-05-02 16:36:02 -0700113 unsigned long rel_size, void *efi_reloc,
114 unsigned long pref_address)
Alexander Grafcb149c62016-03-04 01:09:58 +0100115{
Ivan Gorinove2dc4222018-05-02 16:36:02 -0700116 unsigned long delta = (unsigned long)efi_reloc - pref_address;
Alexander Grafcb149c62016-03-04 01:09:58 +0100117 const IMAGE_BASE_RELOCATION *end;
118 int i;
119
Ivan Gorinove2dc4222018-05-02 16:36:02 -0700120 if (delta == 0)
121 return EFI_SUCCESS;
122
Alexander Grafcb149c62016-03-04 01:09:58 +0100123 end = (const IMAGE_BASE_RELOCATION *)((const char *)rel + rel_size);
Heinrich Schuchardt997fc122019-02-16 15:36:33 +0100124 while (rel < end && rel->SizeOfBlock) {
Alexander Grafcb149c62016-03-04 01:09:58 +0100125 const uint16_t *relocs = (const uint16_t *)(rel + 1);
126 i = (rel->SizeOfBlock - sizeof(*rel)) / sizeof(uint16_t);
127 while (i--) {
Alexander Grafb1237c62016-08-18 23:45:18 +0200128 uint32_t offset = (uint32_t)(*relocs & 0xfff) +
Alexander Grafcb149c62016-03-04 01:09:58 +0100129 rel->VirtualAddress;
130 int type = *relocs >> EFI_PAGE_SHIFT;
Alexander Grafcb149c62016-03-04 01:09:58 +0100131 uint64_t *x64 = efi_reloc + offset;
132 uint32_t *x32 = efi_reloc + offset;
133 uint16_t *x16 = efi_reloc + offset;
134
135 switch (type) {
136 case IMAGE_REL_BASED_ABSOLUTE:
137 break;
138 case IMAGE_REL_BASED_HIGH:
139 *x16 += ((uint32_t)delta) >> 16;
140 break;
141 case IMAGE_REL_BASED_LOW:
142 *x16 += (uint16_t)delta;
143 break;
144 case IMAGE_REL_BASED_HIGHLOW:
145 *x32 += (uint32_t)delta;
146 break;
147 case IMAGE_REL_BASED_DIR64:
148 *x64 += (uint64_t)delta;
149 break;
Alexander Grafde452c02018-06-05 19:20:32 +0200150#ifdef __riscv
151 case IMAGE_REL_BASED_RISCV_HI20:
152 *x32 = ((*x32 & 0xfffff000) + (uint32_t)delta) |
153 (*x32 & 0x00000fff);
154 break;
155 case IMAGE_REL_BASED_RISCV_LOW12I:
156 case IMAGE_REL_BASED_RISCV_LOW12S:
157 /* We know that we're 4k aligned */
158 if (delta & 0xfff) {
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000159 log_err("Unsupported reloc offset\n");
Alexander Grafde452c02018-06-05 19:20:32 +0200160 return EFI_LOAD_ERROR;
161 }
162 break;
163#endif
Alexander Grafcb149c62016-03-04 01:09:58 +0100164 default:
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000165 log_err("Unknown Relocation off %x type %x\n",
166 offset, type);
xypron.glpk@gmx.deda684a62017-07-04 00:12:58 +0200167 return EFI_LOAD_ERROR;
Alexander Grafcb149c62016-03-04 01:09:58 +0100168 }
169 relocs++;
170 }
171 rel = (const IMAGE_BASE_RELOCATION *)relocs;
172 }
xypron.glpk@gmx.deda684a62017-07-04 00:12:58 +0200173 return EFI_SUCCESS;
Alexander Grafcb149c62016-03-04 01:09:58 +0100174}
175
176void __weak invalidate_icache_all(void)
177{
178 /* If the system doesn't support icache_all flush, cross our fingers */
179}
180
Heinrich Schuchardt1db561e2019-02-16 15:22:13 +0100181/**
182 * efi_set_code_and_data_type() - determine the memory types to be used for code
183 * and data.
Heinrich Schuchardt36b41a32018-01-19 20:24:41 +0100184 *
Heinrich Schuchardt1db561e2019-02-16 15:22:13 +0100185 * @loaded_image_info: image descriptor
186 * @image_type: field Subsystem of the optional header for
Heinrich Schuchardt36b41a32018-01-19 20:24:41 +0100187 * Windows specific field
188 */
189static void efi_set_code_and_data_type(
190 struct efi_loaded_image *loaded_image_info,
191 uint16_t image_type)
192{
193 switch (image_type) {
194 case IMAGE_SUBSYSTEM_EFI_APPLICATION:
195 loaded_image_info->image_code_type = EFI_LOADER_CODE;
196 loaded_image_info->image_data_type = EFI_LOADER_DATA;
197 break;
198 case IMAGE_SUBSYSTEM_EFI_BOOT_SERVICE_DRIVER:
199 loaded_image_info->image_code_type = EFI_BOOT_SERVICES_CODE;
200 loaded_image_info->image_data_type = EFI_BOOT_SERVICES_DATA;
201 break;
202 case IMAGE_SUBSYSTEM_EFI_RUNTIME_DRIVER:
Heinrich Schuchardt268ec6e2018-01-31 18:45:35 +0000203 case IMAGE_SUBSYSTEM_EFI_ROM:
Heinrich Schuchardt36b41a32018-01-19 20:24:41 +0100204 loaded_image_info->image_code_type = EFI_RUNTIME_SERVICES_CODE;
205 loaded_image_info->image_data_type = EFI_RUNTIME_SERVICES_DATA;
206 break;
207 default:
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000208 log_err("invalid image type: %u\n", image_type);
Heinrich Schuchardt36b41a32018-01-19 20:24:41 +0100209 /* Let's assume it is an application */
210 loaded_image_info->image_code_type = EFI_LOADER_CODE;
211 loaded_image_info->image_data_type = EFI_LOADER_DATA;
212 break;
213 }
214}
215
Masahisa Kojimaf6081a82021-05-14 09:53:36 +0900216/**
217 * efi_image_region_add() - add an entry of region
218 * @regs: Pointer to array of regions
219 * @start: Start address of region (included)
220 * @end: End address of region (excluded)
221 * @nocheck: flag against overlapped regions
222 *
Heinrich Schuchardtb95e5ed2021-06-09 00:21:24 +0200223 * Take one entry of region \[@start, @end\[ and insert it into the list.
Masahisa Kojimaf6081a82021-05-14 09:53:36 +0900224 *
225 * * If @nocheck is false, the list will be sorted ascending by address.
226 * Overlapping entries will not be allowed.
227 *
228 * * If @nocheck is true, the list will be sorted ascending by sequence
229 * of adding the entries. Overlapping is allowed.
230 *
231 * Return: status code
232 */
233efi_status_t efi_image_region_add(struct efi_image_regions *regs,
234 const void *start, const void *end,
235 int nocheck)
236{
237 struct image_region *reg;
238 int i, j;
239
240 if (regs->num >= regs->max) {
241 EFI_PRINT("%s: no more room for regions\n", __func__);
242 return EFI_OUT_OF_RESOURCES;
243 }
244
245 if (end < start)
246 return EFI_INVALID_PARAMETER;
247
248 for (i = 0; i < regs->num; i++) {
249 reg = &regs->reg[i];
250 if (nocheck)
251 continue;
252
253 /* new data after registered region */
254 if (start >= reg->data + reg->size)
255 continue;
256
257 /* new data preceding registered region */
258 if (end <= reg->data) {
259 for (j = regs->num - 1; j >= i; j--)
260 memcpy(&regs->reg[j + 1], &regs->reg[j],
261 sizeof(*reg));
262 break;
263 }
264
265 /* new data overlapping registered region */
266 EFI_PRINT("%s: new region already part of another\n", __func__);
267 return EFI_INVALID_PARAMETER;
268 }
269
270 reg = &regs->reg[i];
271 reg->data = start;
272 reg->size = end - start;
273 regs->num++;
274
275 return EFI_SUCCESS;
276}
277
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900278/**
Heinrich Schuchardt13f62d92020-05-30 06:44:48 +0200279 * cmp_pe_section() - compare virtual addresses of two PE image sections
280 * @arg1: pointer to pointer to first section header
281 * @arg2: pointer to pointer to second section header
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900282 *
Heinrich Schuchardt13f62d92020-05-30 06:44:48 +0200283 * Compare the virtual addresses of two sections of an portable executable.
284 * The arguments are defined as const void * to allow usage with qsort().
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900285 *
Heinrich Schuchardt13f62d92020-05-30 06:44:48 +0200286 * Return: -1 if the virtual address of arg1 is less than that of arg2,
287 * 0 if the virtual addresses are equal, 1 if the virtual address
288 * of arg1 is greater than that of arg2.
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900289 */
290static int cmp_pe_section(const void *arg1, const void *arg2)
291{
292 const IMAGE_SECTION_HEADER *section1, *section2;
293
294 section1 = *((const IMAGE_SECTION_HEADER **)arg1);
295 section2 = *((const IMAGE_SECTION_HEADER **)arg2);
296
297 if (section1->VirtualAddress < section2->VirtualAddress)
298 return -1;
299 else if (section1->VirtualAddress == section2->VirtualAddress)
300 return 0;
301 else
302 return 1;
303}
304
305/**
Masahisa Kojima163a0d72021-05-26 12:09:58 +0900306 * efi_prepare_aligned_image() - prepare 8-byte aligned image
307 * @efi: pointer to the EFI binary
308 * @efi_size: size of @efi binary
309 *
310 * If @efi is not 8-byte aligned, this function newly allocates
311 * the image buffer.
312 *
313 * Return: valid pointer to a image, return NULL if allocation fails.
314 */
315void *efi_prepare_aligned_image(void *efi, u64 *efi_size)
316{
317 size_t new_efi_size;
318 void *new_efi;
319
320 /*
321 * Size must be 8-byte aligned and the trailing bytes must be
322 * zero'ed. Otherwise hash value may be incorrect.
323 */
324 if (!IS_ALIGNED(*efi_size, 8)) {
325 new_efi_size = ALIGN(*efi_size, 8);
326 new_efi = calloc(new_efi_size, 1);
327 if (!new_efi)
328 return NULL;
329 memcpy(new_efi, efi, *efi_size);
330 *efi_size = new_efi_size;
331 return new_efi;
332 } else {
333 return efi;
334 }
335}
336
337/**
Heinrich Schuchardt4afceb42020-05-30 05:48:08 +0200338 * efi_image_parse() - parse a PE image
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900339 * @efi: Pointer to image
340 * @len: Size of @efi
341 * @regp: Pointer to a list of regions
342 * @auth: Pointer to a pointer to authentication data in PE
343 * @auth_len: Size of @auth
344 *
345 * Parse image binary in PE32(+) format, assuming that sanity of PE image
346 * has been checked by a caller.
347 * On success, an address of authentication data in @efi and its size will
348 * be returned in @auth and @auth_len, respectively.
349 *
350 * Return: true on success, false on error
351 */
352bool efi_image_parse(void *efi, size_t len, struct efi_image_regions **regp,
353 WIN_CERTIFICATE **auth, size_t *auth_len)
354{
355 struct efi_image_regions *regs;
356 IMAGE_DOS_HEADER *dos;
357 IMAGE_NT_HEADERS32 *nt;
358 IMAGE_SECTION_HEADER *sections, **sorted;
359 int num_regions, num_sections, i;
360 int ctidx = IMAGE_DIRECTORY_ENTRY_SECURITY;
361 u32 align, size, authsz, authoff;
362 size_t bytes_hashed;
363
364 dos = (void *)efi;
365 nt = (void *)(efi + dos->e_lfanew);
AKASHI Takahiroeb537fd2020-07-08 14:01:53 +0900366 authoff = 0;
367 authsz = 0;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900368
369 /*
370 * Count maximum number of regions to be digested.
371 * We don't have to have an exact number here.
372 * See efi_image_region_add()'s in parsing below.
373 */
374 num_regions = 3; /* for header */
375 num_regions += nt->FileHeader.NumberOfSections;
376 num_regions++; /* for extra */
377
378 regs = calloc(sizeof(*regs) + sizeof(struct image_region) * num_regions,
379 1);
380 if (!regs)
381 goto err;
382 regs->max = num_regions;
383
384 /*
385 * Collect data regions for hash calculation
386 * 1. File headers
387 */
388 if (nt->OptionalHeader.Magic == IMAGE_NT_OPTIONAL_HDR64_MAGIC) {
389 IMAGE_NT_HEADERS64 *nt64 = (void *)nt;
390 IMAGE_OPTIONAL_HEADER64 *opt = &nt64->OptionalHeader;
391
392 /* Skip CheckSum */
393 efi_image_region_add(regs, efi, &opt->CheckSum, 0);
394 if (nt64->OptionalHeader.NumberOfRvaAndSizes <= ctidx) {
395 efi_image_region_add(regs,
AKASHI Takahiro52d7bfe2020-05-08 14:51:59 +0900396 &opt->Subsystem,
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900397 efi + opt->SizeOfHeaders, 0);
398 } else {
399 /* Skip Certificates Table */
400 efi_image_region_add(regs,
AKASHI Takahiro52d7bfe2020-05-08 14:51:59 +0900401 &opt->Subsystem,
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900402 &opt->DataDirectory[ctidx], 0);
403 efi_image_region_add(regs,
404 &opt->DataDirectory[ctidx] + 1,
405 efi + opt->SizeOfHeaders, 0);
AKASHI Takahiroeb537fd2020-07-08 14:01:53 +0900406
407 authoff = opt->DataDirectory[ctidx].VirtualAddress;
408 authsz = opt->DataDirectory[ctidx].Size;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900409 }
410
411 bytes_hashed = opt->SizeOfHeaders;
412 align = opt->FileAlignment;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900413 } else if (nt->OptionalHeader.Magic == IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
414 IMAGE_OPTIONAL_HEADER32 *opt = &nt->OptionalHeader;
415
AKASHI Takahiroeb537fd2020-07-08 14:01:53 +0900416 /* Skip CheckSum */
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900417 efi_image_region_add(regs, efi, &opt->CheckSum, 0);
AKASHI Takahiroeb537fd2020-07-08 14:01:53 +0900418 if (nt->OptionalHeader.NumberOfRvaAndSizes <= ctidx) {
419 efi_image_region_add(regs,
420 &opt->Subsystem,
421 efi + opt->SizeOfHeaders, 0);
422 } else {
423 /* Skip Certificates Table */
424 efi_image_region_add(regs, &opt->Subsystem,
425 &opt->DataDirectory[ctidx], 0);
426 efi_image_region_add(regs,
427 &opt->DataDirectory[ctidx] + 1,
428 efi + opt->SizeOfHeaders, 0);
429
430 authoff = opt->DataDirectory[ctidx].VirtualAddress;
431 authsz = opt->DataDirectory[ctidx].Size;
432 }
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900433
434 bytes_hashed = opt->SizeOfHeaders;
435 align = opt->FileAlignment;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900436 } else {
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900437 EFI_PRINT("%s: Invalid optional header magic %x\n", __func__,
438 nt->OptionalHeader.Magic);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900439 goto err;
440 }
441
442 /* 2. Sections */
443 num_sections = nt->FileHeader.NumberOfSections;
444 sections = (void *)((uint8_t *)&nt->OptionalHeader +
445 nt->FileHeader.SizeOfOptionalHeader);
446 sorted = calloc(sizeof(IMAGE_SECTION_HEADER *), num_sections);
447 if (!sorted) {
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900448 EFI_PRINT("%s: Out of memory\n", __func__);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900449 goto err;
450 }
451
452 /*
453 * Make sure the section list is in ascending order.
454 */
455 for (i = 0; i < num_sections; i++)
456 sorted[i] = &sections[i];
457 qsort(sorted, num_sections, sizeof(sorted[0]), cmp_pe_section);
458
459 for (i = 0; i < num_sections; i++) {
460 if (!sorted[i]->SizeOfRawData)
461 continue;
462
463 size = (sorted[i]->SizeOfRawData + align - 1) & ~(align - 1);
464 efi_image_region_add(regs, efi + sorted[i]->PointerToRawData,
465 efi + sorted[i]->PointerToRawData + size,
466 0);
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900467 EFI_PRINT("section[%d](%s): raw: 0x%x-0x%x, virt: %x-%x\n",
468 i, sorted[i]->Name,
469 sorted[i]->PointerToRawData,
470 sorted[i]->PointerToRawData + size,
471 sorted[i]->VirtualAddress,
472 sorted[i]->VirtualAddress
473 + sorted[i]->Misc.VirtualSize);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900474
475 bytes_hashed += size;
476 }
477 free(sorted);
478
479 /* 3. Extra data excluding Certificates Table */
480 if (bytes_hashed + authsz < len) {
Heinrich Schuchardt39a75f52020-07-07 07:23:44 +0200481 EFI_PRINT("extra data for hash: %zu\n",
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900482 len - (bytes_hashed + authsz));
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900483 efi_image_region_add(regs, efi + bytes_hashed,
484 efi + len - authsz, 0);
485 }
486
487 /* Return Certificates Table */
488 if (authsz) {
489 if (len < authoff + authsz) {
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900490 EFI_PRINT("%s: Size for auth too large: %u >= %zu\n",
491 __func__, authsz, len - authoff);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900492 goto err;
493 }
494 if (authsz < sizeof(*auth)) {
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900495 EFI_PRINT("%s: Size for auth too small: %u < %zu\n",
496 __func__, authsz, sizeof(*auth));
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900497 goto err;
498 }
499 *auth = efi + authoff;
500 *auth_len = authsz;
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900501 EFI_PRINT("WIN_CERTIFICATE: 0x%x, size: 0x%x\n", authoff,
502 authsz);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900503 } else {
504 *auth = NULL;
505 *auth_len = 0;
506 }
507
508 *regp = regs;
509
510 return true;
511
512err:
513 free(regs);
514
515 return false;
516}
517
Masahisa Kojimaf6081a82021-05-14 09:53:36 +0900518#ifdef CONFIG_EFI_SECURE_BOOT
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900519/**
Heinrich Schuchardt4afceb42020-05-30 05:48:08 +0200520 * efi_image_authenticate() - verify a signature of signed image
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900521 * @efi: Pointer to image
522 * @efi_size: Size of @efi
523 *
524 * A signed image should have its signature stored in a table of its PE header.
525 * So if an image is signed and only if if its signature is verified using
526 * signature databases, an image is authenticated.
527 * If an image is not signed, its validity is checked by using
528 * efi_image_unsigned_authenticated().
529 * TODO:
530 * When AuditMode==0, if the image's signature is not found in
531 * the authorized database, or is found in the forbidden database,
532 * the image will not be started and instead, information about it
533 * will be placed in this table.
534 * When AuditMode==1, an EFI_IMAGE_EXECUTION_INFO element is created
535 * in the EFI_IMAGE_EXECUTION_INFO_TABLE for every certificate found
536 * in the certificate table of every image that is validated.
537 *
538 * Return: true if authenticated, false if not
539 */
540static bool efi_image_authenticate(void *efi, size_t efi_size)
541{
542 struct efi_image_regions *regs = NULL;
543 WIN_CERTIFICATE *wincerts = NULL, *wincert;
544 size_t wincerts_len;
545 struct pkcs7_message *msg = NULL;
546 struct efi_signature_store *db = NULL, *dbx = NULL;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900547 void *new_efi = NULL;
AKASHI Takahiro1a44b702020-07-08 14:01:52 +0900548 u8 *auth, *wincerts_end;
Masahisa Kojima163a0d72021-05-26 12:09:58 +0900549 size_t auth_size;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900550 bool ret = false;
551
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000552 EFI_PRINT("%s: Enter, %d\n", __func__, ret);
AKASHI Takahiro11bafb22020-07-08 14:01:56 +0900553
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900554 if (!efi_secure_boot_enabled())
555 return true;
556
Masahisa Kojima163a0d72021-05-26 12:09:58 +0900557 new_efi = efi_prepare_aligned_image(efi, (u64 *)&efi_size);
558 if (!new_efi)
559 return false;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900560
Masahisa Kojima163a0d72021-05-26 12:09:58 +0900561 if (!efi_image_parse(new_efi, efi_size, &regs, &wincerts,
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900562 &wincerts_len)) {
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900563 EFI_PRINT("Parsing PE executable image failed\n");
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200564 goto out;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900565 }
566
567 /*
568 * verify signature using db and dbx
569 */
Simon Glass156ccbc2022-01-23 12:55:12 -0700570 db = efi_sigstore_parse_sigdb(u"db");
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900571 if (!db) {
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900572 EFI_PRINT("Getting signature database(db) failed\n");
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200573 goto out;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900574 }
575
Simon Glass156ccbc2022-01-23 12:55:12 -0700576 dbx = efi_sigstore_parse_sigdb(u"dbx");
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900577 if (!dbx) {
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900578 EFI_PRINT("Getting signature database(dbx) failed\n");
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200579 goto out;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900580 }
581
Ilias Apalodimas4b634312022-01-29 00:20:31 +0200582 if (efi_signature_lookup_digest(regs, dbx, true)) {
AKASHI Takahiro52956e52020-08-14 14:39:23 +0900583 EFI_PRINT("Image's digest was found in \"dbx\"\n");
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200584 goto out;
AKASHI Takahiro52956e52020-08-14 14:39:23 +0900585 }
586
AKASHI Takahiro11bafb22020-07-08 14:01:56 +0900587 /*
588 * go through WIN_CERTIFICATE list
589 * NOTE:
590 * We may have multiple signatures either as WIN_CERTIFICATE's
591 * in PE header, or as pkcs7 SignerInfo's in SignedData.
592 * So the verification policy here is:
593 * - Success if, at least, one of signatures is verified
AKASHI Takahiro52956e52020-08-14 14:39:23 +0900594 * - unless signature is rejected explicitly with its digest.
AKASHI Takahiro11bafb22020-07-08 14:01:56 +0900595 */
AKASHI Takahiro52956e52020-08-14 14:39:23 +0900596
AKASHI Takahiro1a44b702020-07-08 14:01:52 +0900597 for (wincert = wincerts, wincerts_end = (u8 *)wincerts + wincerts_len;
598 (u8 *)wincert < wincerts_end;
599 wincert = (WIN_CERTIFICATE *)
600 ((u8 *)wincert + ALIGN(wincert->dwLength, 8))) {
601 if ((u8 *)wincert + sizeof(*wincert) >= wincerts_end)
602 break;
603
604 if (wincert->dwLength <= sizeof(*wincert)) {
605 EFI_PRINT("dwLength too small: %u < %zu\n",
606 wincert->dwLength, sizeof(*wincert));
607 continue;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900608 }
AKASHI Takahiro1a44b702020-07-08 14:01:52 +0900609
610 EFI_PRINT("WIN_CERTIFICATE_TYPE: 0x%x\n",
611 wincert->wCertificateType);
612
613 auth = (u8 *)wincert + sizeof(*wincert);
614 auth_size = wincert->dwLength - sizeof(*wincert);
615 if (wincert->wCertificateType == WIN_CERT_TYPE_EFI_GUID) {
616 if (auth + sizeof(efi_guid_t) >= wincerts_end)
617 break;
618
619 if (auth_size <= sizeof(efi_guid_t)) {
620 EFI_PRINT("dwLength too small: %u < %zu\n",
621 wincert->dwLength, sizeof(*wincert));
622 continue;
623 }
624 if (guidcmp(auth, &efi_guid_cert_type_pkcs7)) {
Heinrich Schuchardtce00a742022-01-16 14:15:31 +0100625 EFI_PRINT("Certificate type not supported: %pUs\n",
AKASHI Takahiro1a44b702020-07-08 14:01:52 +0900626 auth);
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200627 ret = false;
628 goto out;
AKASHI Takahiro1a44b702020-07-08 14:01:52 +0900629 }
630
631 auth += sizeof(efi_guid_t);
632 auth_size -= sizeof(efi_guid_t);
633 } else if (wincert->wCertificateType
634 != WIN_CERT_TYPE_PKCS_SIGNED_DATA) {
635 EFI_PRINT("Certificate type not supported\n");
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200636 ret = false;
637 goto out;
AKASHI Takahiro1a44b702020-07-08 14:01:52 +0900638 }
639
640 msg = pkcs7_parse_message(auth, auth_size);
Patrick Wildt6f146152020-05-07 02:17:14 +0200641 if (IS_ERR(msg)) {
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900642 EFI_PRINT("Parsing image's signature failed\n");
Patrick Wildt6f146152020-05-07 02:17:14 +0200643 msg = NULL;
AKASHI Takahiro1a44b702020-07-08 14:01:52 +0900644 continue;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900645 }
646
AKASHI Takahiro7926dfb2020-07-08 14:01:57 +0900647 /*
648 * NOTE:
649 * UEFI specification defines two signature types possible
650 * in signature database:
651 * a. x509 certificate, where a signature in image is
652 * a message digest encrypted by RSA public key
653 * (EFI_CERT_X509_GUID)
654 * b. bare hash value of message digest
655 * (EFI_CERT_SHAxxx_GUID)
656 *
657 * efi_signature_verify() handles case (a), while
658 * efi_signature_lookup_digest() handles case (b).
659 *
660 * There is a third type:
661 * c. message digest of a certificate
662 * (EFI_CERT_X509_SHAAxxx_GUID)
663 * This type of signature is used only in revocation list
664 * (dbx) and handled as part of efi_signatgure_verify().
665 */
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900666 /* try black-list first */
AKASHI Takahiro11bafb22020-07-08 14:01:56 +0900667 if (efi_signature_verify_one(regs, msg, dbx)) {
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200668 ret = false;
AKASHI Takahiro1b6c0852020-06-09 14:09:35 +0900669 EFI_PRINT("Signature was rejected by \"dbx\"\n");
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200670 goto out;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900671 }
672
AKASHI Takahiro11bafb22020-07-08 14:01:56 +0900673 if (!efi_signature_check_signers(msg, dbx)) {
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200674 ret = false;
AKASHI Takahiro11bafb22020-07-08 14:01:56 +0900675 EFI_PRINT("Signer(s) in \"dbx\"\n");
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200676 goto out;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900677 }
AKASHI Takahiro7926dfb2020-07-08 14:01:57 +0900678
679 /* try white-list */
AKASHI Takahiro52956e52020-08-14 14:39:23 +0900680 if (efi_signature_verify(regs, msg, db, dbx)) {
681 ret = true;
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200682 continue;
AKASHI Takahiro52956e52020-08-14 14:39:23 +0900683 }
AKASHI Takahiro7926dfb2020-07-08 14:01:57 +0900684
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000685 EFI_PRINT("Signature was not verified by \"db\"\n");
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900686 }
687
Ilias Apalodimas54cebe82022-02-11 09:37:49 +0200688
689 /* last resort try the image sha256 hash in db */
690 if (!ret && efi_signature_lookup_digest(regs, db, false))
691 ret = true;
692
693out:
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900694 efi_sigstore_free(db);
695 efi_sigstore_free(dbx);
696 pkcs7_free_message(msg);
697 free(regs);
Masahisa Kojima163a0d72021-05-26 12:09:58 +0900698 if (new_efi != efi)
699 free(new_efi);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900700
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000701 EFI_PRINT("%s: Exit, %d\n", __func__, ret);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900702 return ret;
703}
704#else
705static bool efi_image_authenticate(void *efi, size_t efi_size)
706{
707 return true;
708}
709#endif /* CONFIG_EFI_SECURE_BOOT */
710
Heinrich Schuchardt5dad05a2021-01-12 12:40:32 +0100711
712/**
713 * efi_check_pe() - check if a memory buffer contains a PE-COFF image
714 *
715 * @buffer: buffer to check
716 * @size: size of buffer
717 * @nt_header: on return pointer to NT header of PE-COFF image
718 * Return: EFI_SUCCESS if the buffer contains a PE-COFF image
719 */
720efi_status_t efi_check_pe(void *buffer, size_t size, void **nt_header)
721{
722 IMAGE_DOS_HEADER *dos = buffer;
723 IMAGE_NT_HEADERS32 *nt;
724
725 if (size < sizeof(*dos))
726 return EFI_INVALID_PARAMETER;
727
728 /* Check for DOS magix */
729 if (dos->e_magic != IMAGE_DOS_SIGNATURE)
730 return EFI_INVALID_PARAMETER;
731
732 /*
733 * Check if the image section header fits into the file. Knowing that at
734 * least one section header follows we only need to check for the length
735 * of the 64bit header which is longer than the 32bit header.
736 */
737 if (size < dos->e_lfanew + sizeof(IMAGE_NT_HEADERS32))
738 return EFI_INVALID_PARAMETER;
739 nt = (IMAGE_NT_HEADERS32 *)((u8 *)buffer + dos->e_lfanew);
740
741 /* Check for PE-COFF magic */
742 if (nt->Signature != IMAGE_NT_SIGNATURE)
743 return EFI_INVALID_PARAMETER;
744
745 if (nt_header)
746 *nt_header = nt;
747
748 return EFI_SUCCESS;
749}
750
Heinrich Schuchardt8f7e2b22018-12-26 12:49:09 +0100751/**
Heinrich Schuchardt1ea133a2021-08-29 11:52:44 +0200752 * section_size() - determine size of section
753 *
754 * The size of a section in memory if normally given by VirtualSize.
755 * If VirtualSize is not provided, use SizeOfRawData.
756 *
757 * @sec: section header
758 * Return: size of section in memory
759 */
760static u32 section_size(IMAGE_SECTION_HEADER *sec)
761{
762 if (sec->Misc.VirtualSize)
763 return sec->Misc.VirtualSize;
764 else
765 return sec->SizeOfRawData;
766}
767
768/**
Heinrich Schuchardt8f7e2b22018-12-26 12:49:09 +0100769 * efi_load_pe() - relocate EFI binary
770 *
Alexander Grafcb149c62016-03-04 01:09:58 +0100771 * This function loads all sections from a PE binary into a newly reserved
Heinrich Schuchardt8f7e2b22018-12-26 12:49:09 +0100772 * piece of memory. On success the entry point is returned as handle->entry.
773 *
774 * @handle: loaded image handle
775 * @efi: pointer to the EFI binary
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900776 * @efi_size: size of @efi binary
Heinrich Schuchardt8f7e2b22018-12-26 12:49:09 +0100777 * @loaded_image_info: loaded image protocol
778 * Return: status code
Alexander Grafcb149c62016-03-04 01:09:58 +0100779 */
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900780efi_status_t efi_load_pe(struct efi_loaded_image_obj *handle,
781 void *efi, size_t efi_size,
Heinrich Schuchardt8f7e2b22018-12-26 12:49:09 +0100782 struct efi_loaded_image *loaded_image_info)
Alexander Grafcb149c62016-03-04 01:09:58 +0100783{
784 IMAGE_NT_HEADERS32 *nt;
785 IMAGE_DOS_HEADER *dos;
786 IMAGE_SECTION_HEADER *sections;
787 int num_sections;
788 void *efi_reloc;
789 int i;
790 const IMAGE_BASE_RELOCATION *rel;
791 unsigned long rel_size;
792 int rel_idx = IMAGE_DIRECTORY_ENTRY_BASERELOC;
Ivan Gorinove2dc4222018-05-02 16:36:02 -0700793 uint64_t image_base;
Alexander Grafcb149c62016-03-04 01:09:58 +0100794 unsigned long virt_size = 0;
Ivan Gorinov61a5ced2018-04-05 18:32:06 -0700795 int supported = 0;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900796 efi_status_t ret;
797
Heinrich Schuchardt5dad05a2021-01-12 12:40:32 +0100798 ret = efi_check_pe(efi, efi_size, (void **)&nt);
799 if (ret != EFI_SUCCESS) {
800 log_err("Not a PE-COFF file\n");
801 return EFI_LOAD_ERROR;
Alexander Grafcb149c62016-03-04 01:09:58 +0100802 }
803
Ivan Gorinov61a5ced2018-04-05 18:32:06 -0700804 for (i = 0; machines[i]; i++)
805 if (machines[i] == nt->FileHeader.Machine) {
806 supported = 1;
807 break;
808 }
809
810 if (!supported) {
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000811 log_err("Machine type 0x%04x is not supported\n",
812 nt->FileHeader.Machine);
Heinrich Schuchardt5dad05a2021-01-12 12:40:32 +0100813 return EFI_LOAD_ERROR;
Ivan Gorinov61a5ced2018-04-05 18:32:06 -0700814 }
815
Alexander Grafcb149c62016-03-04 01:09:58 +0100816 num_sections = nt->FileHeader.NumberOfSections;
817 sections = (void *)&nt->OptionalHeader +
818 nt->FileHeader.SizeOfOptionalHeader;
819
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900820 if (efi_size < ((void *)sections + sizeof(sections[0]) * num_sections
821 - efi)) {
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000822 log_err("Invalid number of sections: %d\n", num_sections);
Heinrich Schuchardt5dad05a2021-01-12 12:40:32 +0100823 return EFI_LOAD_ERROR;
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900824 }
825
826 /* Authenticate an image */
Heinrich Schuchardt0f7878b2020-08-27 17:51:32 +0200827 if (efi_image_authenticate(efi, efi_size)) {
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900828 handle->auth_status = EFI_IMAGE_AUTH_PASSED;
Heinrich Schuchardt0f7878b2020-08-27 17:51:32 +0200829 } else {
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900830 handle->auth_status = EFI_IMAGE_AUTH_FAILED;
Heinrich Schuchardt0f7878b2020-08-27 17:51:32 +0200831 log_err("Image not authenticated\n");
832 }
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900833
834 /* Calculate upper virtual address boundary */
Alexander Grafcb149c62016-03-04 01:09:58 +0100835 for (i = num_sections - 1; i >= 0; i--) {
836 IMAGE_SECTION_HEADER *sec = &sections[i];
Heinrich Schuchardt1ea133a2021-08-29 11:52:44 +0200837
Alexander Grafcb149c62016-03-04 01:09:58 +0100838 virt_size = max_t(unsigned long, virt_size,
Heinrich Schuchardt1ea133a2021-08-29 11:52:44 +0200839 sec->VirtualAddress + section_size(sec));
Alexander Grafcb149c62016-03-04 01:09:58 +0100840 }
841
842 /* Read 32/64bit specific header bits */
Ivan Gorinov61a5ced2018-04-05 18:32:06 -0700843 if (nt->OptionalHeader.Magic == IMAGE_NT_OPTIONAL_HDR64_MAGIC) {
Alexander Grafcb149c62016-03-04 01:09:58 +0100844 IMAGE_NT_HEADERS64 *nt64 = (void *)nt;
845 IMAGE_OPTIONAL_HEADER64 *opt = &nt64->OptionalHeader;
Ivan Gorinove2dc4222018-05-02 16:36:02 -0700846 image_base = opt->ImageBase;
Heinrich Schuchardt36b41a32018-01-19 20:24:41 +0100847 efi_set_code_and_data_type(loaded_image_info, opt->Subsystem);
Heinrich Schuchardt126a43f2019-05-01 20:07:04 +0200848 handle->image_type = opt->Subsystem;
Ilias Apalodimasebdea882021-10-11 15:10:23 +0300849 efi_reloc = efi_alloc_aligned_pages(virt_size,
850 loaded_image_info->image_code_type,
851 opt->SectionAlignment);
Alexander Grafcb149c62016-03-04 01:09:58 +0100852 if (!efi_reloc) {
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000853 log_err("Out of memory\n");
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900854 ret = EFI_OUT_OF_RESOURCES;
855 goto err;
Alexander Grafcb149c62016-03-04 01:09:58 +0100856 }
Heinrich Schuchardt8f7e2b22018-12-26 12:49:09 +0100857 handle->entry = efi_reloc + opt->AddressOfEntryPoint;
Alexander Grafcb149c62016-03-04 01:09:58 +0100858 rel_size = opt->DataDirectory[rel_idx].Size;
859 rel = efi_reloc + opt->DataDirectory[rel_idx].VirtualAddress;
Ivan Gorinov61a5ced2018-04-05 18:32:06 -0700860 } else if (nt->OptionalHeader.Magic == IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
Alexander Grafcb149c62016-03-04 01:09:58 +0100861 IMAGE_OPTIONAL_HEADER32 *opt = &nt->OptionalHeader;
Ivan Gorinove2dc4222018-05-02 16:36:02 -0700862 image_base = opt->ImageBase;
Heinrich Schuchardt36b41a32018-01-19 20:24:41 +0100863 efi_set_code_and_data_type(loaded_image_info, opt->Subsystem);
Heinrich Schuchardt126a43f2019-05-01 20:07:04 +0200864 handle->image_type = opt->Subsystem;
Ilias Apalodimasebdea882021-10-11 15:10:23 +0300865 efi_reloc = efi_alloc_aligned_pages(virt_size,
866 loaded_image_info->image_code_type,
867 opt->SectionAlignment);
Alexander Grafcb149c62016-03-04 01:09:58 +0100868 if (!efi_reloc) {
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000869 log_err("Out of memory\n");
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900870 ret = EFI_OUT_OF_RESOURCES;
871 goto err;
Alexander Grafcb149c62016-03-04 01:09:58 +0100872 }
Heinrich Schuchardt8f7e2b22018-12-26 12:49:09 +0100873 handle->entry = efi_reloc + opt->AddressOfEntryPoint;
Alexander Grafcb149c62016-03-04 01:09:58 +0100874 rel_size = opt->DataDirectory[rel_idx].Size;
875 rel = efi_reloc + opt->DataDirectory[rel_idx].VirtualAddress;
876 } else {
Heinrich Schuchardt24586052020-08-25 17:51:20 +0000877 log_err("Invalid optional header magic %x\n",
878 nt->OptionalHeader.Magic);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900879 ret = EFI_LOAD_ERROR;
880 goto err;
Alexander Grafcb149c62016-03-04 01:09:58 +0100881 }
882
Masahisa Kojima163a0d72021-05-26 12:09:58 +0900883#if CONFIG_IS_ENABLED(EFI_TCG2_PROTOCOL)
884 /* Measure an PE/COFF image */
Masahisa Kojimaf9b51dc2021-12-07 14:15:33 +0900885 ret = tcg2_measure_pe_image(efi, efi_size, handle, loaded_image_info);
886 if (ret == EFI_SECURITY_VIOLATION) {
887 /*
888 * TCG2 Protocol is installed but no TPM device found,
889 * this is not expected.
890 */
891 log_err("PE image measurement failed, no tpm device found\n");
892 goto err;
893 }
894
Masahisa Kojima163a0d72021-05-26 12:09:58 +0900895#endif
896
AKASHI Takahiro8458bf62018-10-11 04:09:58 -0700897 /* Copy PE headers */
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900898 memcpy(efi_reloc, efi,
899 sizeof(*dos)
900 + sizeof(*nt)
901 + nt->FileHeader.SizeOfOptionalHeader
902 + num_sections * sizeof(IMAGE_SECTION_HEADER));
AKASHI Takahiro8458bf62018-10-11 04:09:58 -0700903
Alexander Grafcb149c62016-03-04 01:09:58 +0100904 /* Load sections into RAM */
905 for (i = num_sections - 1; i >= 0; i--) {
906 IMAGE_SECTION_HEADER *sec = &sections[i];
Heinrich Schuchardt1ea133a2021-08-29 11:52:44 +0200907 u32 copy_size = section_size(sec);
908
909 if (copy_size > sec->SizeOfRawData) {
910 copy_size = sec->SizeOfRawData;
911 memset(efi_reloc + sec->VirtualAddress, 0,
912 sec->Misc.VirtualSize);
913 }
Alexander Grafcb149c62016-03-04 01:09:58 +0100914 memcpy(efi_reloc + sec->VirtualAddress,
915 efi + sec->PointerToRawData,
Heinrich Schuchardt1ea133a2021-08-29 11:52:44 +0200916 copy_size);
Alexander Grafcb149c62016-03-04 01:09:58 +0100917 }
918
919 /* Run through relocations */
Ivan Gorinove2dc4222018-05-02 16:36:02 -0700920 if (efi_loader_relocate(rel, rel_size, efi_reloc,
921 (unsigned long)image_base) != EFI_SUCCESS) {
xypron.glpk@gmx.deda684a62017-07-04 00:12:58 +0200922 efi_free_pages((uintptr_t) efi_reloc,
923 (virt_size + EFI_PAGE_MASK) >> EFI_PAGE_SHIFT);
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900924 ret = EFI_LOAD_ERROR;
925 goto err;
xypron.glpk@gmx.deda684a62017-07-04 00:12:58 +0200926 }
Alexander Grafcb149c62016-03-04 01:09:58 +0100927
928 /* Flush cache */
Simon Glassd0d90992016-11-07 08:47:04 -0700929 flush_cache((ulong)efi_reloc,
Alexander Graf89aea432018-04-23 07:59:47 +0200930 ALIGN(virt_size, EFI_CACHELINE_SIZE));
Alexander Grafcb149c62016-03-04 01:09:58 +0100931 invalidate_icache_all();
932
933 /* Populate the loaded image interface bits */
AKASHI Takahiro8458bf62018-10-11 04:09:58 -0700934 loaded_image_info->image_base = efi_reloc;
935 loaded_image_info->image_size = virt_size;
Alexander Grafcb149c62016-03-04 01:09:58 +0100936
AKASHI Takahiro4540dab2020-04-14 11:51:44 +0900937 if (handle->auth_status == EFI_IMAGE_AUTH_PASSED)
938 return EFI_SUCCESS;
939 else
940 return EFI_SECURITY_VIOLATION;
941
942err:
943 return ret;
Alexander Grafcb149c62016-03-04 01:09:58 +0100944}