]> Git Repo - u-boot.git/blame - cmd/bootefi.c
efi_loader: Add guidcpy function
[u-boot.git] / cmd / bootefi.c
CommitLineData
f739fcd8 1// SPDX-License-Identifier: GPL-2.0+
b9939336
AG
2/*
3 * EFI application loader
4 *
5 * Copyright (c) 2016 Alexander Graf
b9939336
AG
6 */
7
8#include <common.h>
f6c6df7e 9#include <charset.h>
b9939336 10#include <command.h>
9d922450 11#include <dm.h>
b9939336 12#include <efi_loader.h>
d78e40d6 13#include <efi_selftest.h>
7b51b576 14#include <env.h>
b9939336 15#include <errno.h>
b08c8c48
MY
16#include <linux/libfdt.h>
17#include <linux/libfdt_env.h>
354264b3 18#include <mapmem.h>
ad0c1a3d 19#include <memalign.h>
e275458c
SG
20#include <asm-generic/sections.h>
21#include <linux/linkage.h>
0d9d501f
AG
22
23DECLARE_GLOBAL_DATA_PTR;
b9939336 24
95c5553e
RC
25static struct efi_device_path *bootefi_image_path;
26static struct efi_device_path *bootefi_device_path;
b9939336 27
810371a0 28/**
d78e40d6
HS
29 * Set the load options of an image from an environment variable.
30 *
defa7b8e
AT
31 * @handle: the image handle
32 * @env_var: name of the environment variable
33 * Return: status code
d78e40d6 34 */
defa7b8e 35static efi_status_t set_load_options(efi_handle_t handle, const char *env_var)
d78e40d6 36{
defa7b8e 37 struct efi_loaded_image *loaded_image_info;
d78e40d6
HS
38 size_t size;
39 const char *env = env_get(env_var);
7086a71a 40 u16 *pos;
defa7b8e
AT
41 efi_status_t ret;
42
43 ret = EFI_CALL(systab.boottime->open_protocol(
44 handle,
45 &efi_guid_loaded_image,
46 (void **)&loaded_image_info,
47 efi_root, NULL,
48 EFI_OPEN_PROTOCOL_BY_HANDLE_PROTOCOL));
49 if (ret != EFI_SUCCESS)
50 return EFI_INVALID_PARAMETER;
d78e40d6
HS
51
52 loaded_image_info->load_options = NULL;
53 loaded_image_info->load_options_size = 0;
54 if (!env)
defa7b8e
AT
55 goto out;
56
7086a71a 57 size = utf8_utf16_strlen(env) + 1;
d78e40d6
HS
58 loaded_image_info->load_options = calloc(size, sizeof(u16));
59 if (!loaded_image_info->load_options) {
60 printf("ERROR: Out of memory\n");
defa7b8e
AT
61 EFI_CALL(systab.boottime->close_protocol(handle,
62 &efi_guid_loaded_image,
63 efi_root, NULL));
64 return EFI_OUT_OF_RESOURCES;
d78e40d6 65 }
7086a71a
HS
66 pos = loaded_image_info->load_options;
67 utf8_utf16_strcpy(&pos, env);
d78e40d6 68 loaded_image_info->load_options_size = size * 2;
defa7b8e
AT
69
70out:
71 return EFI_CALL(systab.boottime->close_protocol(handle,
72 &efi_guid_loaded_image,
73 efi_root, NULL));
d78e40d6
HS
74}
75
6182495e
HS
76#if !CONFIG_IS_ENABLED(GENERATE_ACPI_TABLE)
77
9dff4900
SG
78/**
79 * copy_fdt() - Copy the device tree to a new location available to EFI
80 *
16b615d9 81 * The FDT is copied to a suitable location within the EFI memory map.
c3772ca1 82 * Additional 12 KiB are added to the space in case the device tree needs to be
9dff4900
SG
83 * expanded later with fdt_open_into().
84 *
16b615d9
HS
85 * @fdtp: On entry a pointer to the flattened device tree.
86 * On exit a pointer to the copy of the flattened device tree.
4574d1b3
HS
87 * FDT start
88 * Return: status code
9dff4900 89 */
16b615d9 90static efi_status_t copy_fdt(void **fdtp)
0d9d501f 91{
ad0c1a3d 92 unsigned long fdt_ram_start = -1L, fdt_pages;
9dff4900
SG
93 efi_status_t ret = 0;
94 void *fdt, *new_fdt;
ad0c1a3d 95 u64 new_fdt_addr;
9dff4900 96 uint fdt_size;
ad0c1a3d 97 int i;
0d9d501f 98
9dff4900
SG
99 for (i = 0; i < CONFIG_NR_DRAM_BANKS; i++) {
100 u64 ram_start = gd->bd->bi_dram[i].start;
101 u64 ram_size = gd->bd->bi_dram[i].size;
0d9d501f 102
ad0c1a3d
AG
103 if (!ram_size)
104 continue;
105
106 if (ram_start < fdt_ram_start)
107 fdt_ram_start = ram_start;
108 }
109
bc9a638a 110 /*
c3772ca1
HS
111 * Give us at least 12 KiB of breathing room in case the device tree
112 * needs to be expanded later.
bc9a638a 113 */
16b615d9 114 fdt = *fdtp;
c3772ca1
HS
115 fdt_pages = efi_size_in_pages(fdt_totalsize(fdt) + 0x3000);
116 fdt_size = fdt_pages << EFI_PAGE_SHIFT;
ad0c1a3d 117
16b615d9
HS
118 /*
119 * Safe fdt location is at 127 MiB.
120 * On the sandbox convert from the sandbox address space.
121 */
122 new_fdt_addr = (uintptr_t)map_sysmem(fdt_ram_start + 0x7f00000 +
123 fdt_size, 0);
9dff4900 124 ret = efi_allocate_pages(EFI_ALLOCATE_MAX_ADDRESS,
29361ec4 125 EFI_BOOT_SERVICES_DATA, fdt_pages,
9dff4900
SG
126 &new_fdt_addr);
127 if (ret != EFI_SUCCESS) {
ad0c1a3d 128 /* If we can't put it there, put it somewhere */
a44bffcc 129 new_fdt_addr = (ulong)memalign(EFI_PAGE_SIZE, fdt_size);
9dff4900 130 ret = efi_allocate_pages(EFI_ALLOCATE_MAX_ADDRESS,
29361ec4 131 EFI_BOOT_SERVICES_DATA, fdt_pages,
9dff4900
SG
132 &new_fdt_addr);
133 if (ret != EFI_SUCCESS) {
85a6e9b3 134 printf("ERROR: Failed to reserve space for FDT\n");
9dff4900 135 goto done;
85a6e9b3 136 }
ad0c1a3d 137 }
16b615d9 138 new_fdt = (void *)(uintptr_t)new_fdt_addr;
0d9d501f
AG
139 memcpy(new_fdt, fdt, fdt_totalsize(fdt));
140 fdt_set_totalsize(new_fdt, fdt_size);
141
16b615d9 142 *fdtp = (void *)(uintptr_t)new_fdt_addr;
9dff4900
SG
143done:
144 return ret;
0d9d501f
AG
145}
146
810371a0 147/**
416e07e2
SG
148 * efi_carve_out_dt_rsv() - Carve out DT reserved memory ranges
149 *
150 * The mem_rsv entries of the FDT are added to the memory map. Any failures are
151 * ignored because this is not critical and we would rather continue to try to
152 * boot.
153 *
154 * @fdt: Pointer to device tree
155 */
156static void efi_carve_out_dt_rsv(void *fdt)
806d2fa8
AG
157{
158 int nr_rsv, i;
159 uint64_t addr, size, pages;
160
161 nr_rsv = fdt_num_mem_rsv(fdt);
162
163 /* Look for an existing entry and add it to the efi mem map. */
164 for (i = 0; i < nr_rsv; i++) {
165 if (fdt_get_mem_rsv(fdt, i, &addr, &size) != 0)
166 continue;
167
16b615d9
HS
168 /* Convert from sandbox address space. */
169 addr = (uintptr_t)map_sysmem(addr, 0);
170
c3772ca1 171 pages = efi_size_in_pages(size + (addr & EFI_PAGE_MASK));
23fd84b3 172 addr &= ~EFI_PAGE_MASK;
b225c92f
BD
173 if (efi_add_memory_map(addr, pages, EFI_RESERVED_MEMORY_TYPE,
174 false) != EFI_SUCCESS)
416e07e2 175 printf("FDT memrsv map %d: Failed to add to map\n", i);
806d2fa8 176 }
806d2fa8
AG
177}
178
6182495e
HS
179/**
180 * get_config_table() - get configuration table
181 *
182 * @guid: GUID of the configuration table
183 * Return: pointer to configuration table or NULL
184 */
185static void *get_config_table(const efi_guid_t *guid)
186{
187 size_t i;
188
189 for (i = 0; i < systab.nr_tables; i++) {
190 if (!guidcmp(guid, &systab.tables[i].guid))
191 return systab.tables[i].table;
192 }
193 return NULL;
194}
195
196#endif /* !CONFIG_IS_ENABLED(GENERATE_ACPI_TABLE) */
197
e878e6a7 198/**
7a597259 199 * efi_install_fdt() - install device tree
e2d82f8b 200 *
7a597259 201 * If fdt_addr is available, the device tree located at that memory address will
e2d82f8b 202 * will be installed as configuration table, otherwise the device tree located
753aa18f
HS
203 * at the address indicated by environment variable fdt_addr or as fallback
204 * fdtcontroladdr will be used.
e2d82f8b 205 *
7a597259
HS
206 * On architectures using ACPI tables device trees shall not be installed as
207 * configuration table.
e2d82f8b 208 *
7a597259 209 * @fdt_addr: address of device tree or EFI_FDT_USE_INTERNAL to use the
753aa18f
HS
210 * the hardware device tree as indicated by environment variable
211 * fdt_addr or as fallback the internal device tree as indicated by
212 * the environment variable fdtcontroladdr
e878e6a7 213 * Return: status code
e878e6a7 214 */
f64f2232 215efi_status_t efi_install_fdt(void *fdt)
e878e6a7 216{
6182495e
HS
217 /*
218 * The EBBR spec requires that we have either an FDT or an ACPI table
219 * but not both.
220 */
221#if CONFIG_IS_ENABLED(GENERATE_ACPI_TABLE)
f64f2232 222 if (fdt) {
6182495e
HS
223 printf("ERROR: can't have ACPI table and device tree.\n");
224 return EFI_LOAD_ERROR;
225 }
226#else
3ffc52fd 227 bootm_headers_t img = { 0 };
e878e6a7
AT
228 efi_status_t ret;
229
f64f2232 230 if (fdt == EFI_FDT_USE_INTERNAL) {
7a597259 231 const char *fdt_opt;
f64f2232 232 uintptr_t fdt_addr;
7a597259 233
6182495e
HS
234 /* Look for device tree that is already installed */
235 if (get_config_table(&efi_guid_fdt))
236 return EFI_SUCCESS;
753aa18f
HS
237 /* Check if there is a hardware device tree */
238 fdt_opt = env_get("fdt_addr");
239 /* Use our own device tree as fallback */
6182495e 240 if (!fdt_opt) {
753aa18f
HS
241 fdt_opt = env_get("fdtcontroladdr");
242 if (!fdt_opt) {
243 printf("ERROR: need device tree\n");
244 return EFI_NOT_FOUND;
245 }
6182495e
HS
246 }
247 fdt_addr = simple_strtoul(fdt_opt, NULL, 16);
248 if (!fdt_addr) {
753aa18f 249 printf("ERROR: invalid $fdt_addr or $fdtcontroladdr\n");
6182495e 250 return EFI_LOAD_ERROR;
3ffc52fd 251 }
f64f2232 252 fdt = map_sysmem(fdt_addr, 0);
6182495e 253 }
3ffc52fd 254
6182495e 255 /* Install device tree */
6182495e
HS
256 if (fdt_check_header(fdt)) {
257 printf("ERROR: invalid device tree\n");
258 return EFI_LOAD_ERROR;
259 }
3ffc52fd 260
6182495e
HS
261 /* Create memory reservations as indicated by the device tree */
262 efi_carve_out_dt_rsv(fdt);
3ffc52fd 263
6182495e
HS
264 /* Prepare device tree for payload */
265 ret = copy_fdt(&fdt);
266 if (ret) {
267 printf("ERROR: out of memory\n");
268 return EFI_OUT_OF_RESOURCES;
269 }
3ffc52fd 270
6182495e
HS
271 if (image_setup_libfdt(&img, fdt, 0, NULL)) {
272 printf("ERROR: failed to process device tree\n");
273 return EFI_LOAD_ERROR;
274 }
275
276 /* Install device tree as UEFI table */
277 ret = efi_install_configuration_table(&efi_guid_fdt, fdt);
278 if (ret != EFI_SUCCESS) {
279 printf("ERROR: failed to install device tree\n");
280 return ret;
e878e6a7 281 }
6182495e 282#endif /* GENERATE_ACPI_TABLE */
e878e6a7
AT
283
284 return EFI_SUCCESS;
285}
286
c982874e
HS
287/**
288 * do_bootefi_exec() - execute EFI binary
289 *
6b95b38c 290 * @handle: handle of loaded image
c982874e
HS
291 * Return: status code
292 *
293 * Load the EFI binary into a newly assigned memory unwinding the relocation
294 * information, install the loaded image protocol, and call the binary.
b9939336 295 */
6b95b38c 296static efi_status_t do_bootefi_exec(efi_handle_t handle)
b9939336 297{
45204b10 298 efi_status_t ret;
556d8dc9
HS
299 efi_uintn_t exit_data_size = 0;
300 u16 *exit_data = NULL;
95c5553e 301
3fc2b163 302 /* Transfer environment variable as load options */
6b95b38c 303 ret = set_load_options(handle, "bootargs");
8f7e2b29 304 if (ret != EFI_SUCCESS)
6b95b38c 305 return ret;
bf19273e 306
b9939336 307 /* Call our payload! */
556d8dc9
HS
308 ret = EFI_CALL(efi_start_image(handle, &exit_data_size, &exit_data));
309 printf("## Application terminated, r = %lu\n", ret & ~EFI_ERROR_MASK);
310 if (ret && exit_data) {
311 printf("## %ls\n", exit_data);
312 efi_free_pool(exit_data);
313 }
95c5553e 314
3fc2b163 315 efi_restore_gd();
5e2f0391 316
6b95b38c
AT
317 /*
318 * FIXME: Who is responsible for
319 * free(loaded_image_info->load_options);
320 * Once efi_exit() is implemented correctly,
321 * handle itself doesn't exist here.
322 */
95c5553e
RC
323
324 return ret;
b9939336
AG
325}
326
d6b21894 327/**
7e92db81 328 * do_efibootmgr() - execute EFI boot manager
d6b21894 329 *
d6b21894 330 * Return: status code
d6b21894 331 */
7e92db81 332static int do_efibootmgr(void)
cc999d58 333{
6b95b38c 334 efi_handle_t handle;
d6b21894
AT
335 efi_status_t ret;
336
6b95b38c
AT
337 ret = efi_bootmgr_load(&handle);
338 if (ret != EFI_SUCCESS) {
339 printf("EFI boot manager: Cannot load any image\n");
340 return CMD_RET_FAILURE;
341 }
cc999d58 342
6b95b38c 343 ret = do_bootefi_exec(handle);
cc999d58 344
d6b21894 345 if (ret != EFI_SUCCESS)
6b95b38c 346 return CMD_RET_FAILURE;
cc999d58 347
6b95b38c 348 return CMD_RET_SUCCESS;
cc999d58
AT
349}
350
810371a0 351/**
7e92db81
HS
352 * do_bootefi_image() - execute EFI binary
353 *
354 * Set up memory image for the binary to be loaded, prepare device path, and
355 * then call do_bootefi_exec() to execute it.
e2e4098e
AT
356 *
357 * @image_opt: string of image start address
e2e4098e 358 * Return: status code
e2e4098e 359 */
7e92db81 360static int do_bootefi_image(const char *image_opt)
e2e4098e 361{
6b95b38c 362 void *image_buf;
6b95b38c
AT
363 unsigned long addr, size;
364 const char *size_str;
e2e4098e
AT
365 efi_status_t ret;
366
e2e4098e
AT
367#ifdef CONFIG_CMD_BOOTEFI_HELLO
368 if (!strcmp(image_opt, "hello")) {
369 char *saddr;
e2e4098e
AT
370
371 saddr = env_get("loadaddr");
6b95b38c
AT
372 size = __efi_helloworld_end - __efi_helloworld_begin;
373
e2e4098e
AT
374 if (saddr)
375 addr = simple_strtoul(saddr, NULL, 16);
376 else
377 addr = CONFIG_SYS_LOAD_ADDR;
6b95b38c
AT
378
379 image_buf = map_sysmem(addr, size);
380 memcpy(image_buf, __efi_helloworld_begin, size);
381
f9ceb6ac
HS
382 efi_free_pool(bootefi_device_path);
383 efi_free_pool(bootefi_image_path);
384 bootefi_device_path = NULL;
385 bootefi_image_path = NULL;
e2e4098e
AT
386 } else
387#endif
388 {
6b95b38c
AT
389 size_str = env_get("filesize");
390 if (size_str)
391 size = simple_strtoul(size_str, NULL, 16);
392 else
393 size = 0;
394
e2e4098e
AT
395 addr = simple_strtoul(image_opt, NULL, 16);
396 /* Check that a numeric value was passed */
397 if (!addr && *image_opt != '0')
398 return CMD_RET_USAGE;
6b95b38c
AT
399
400 image_buf = map_sysmem(addr, size);
e2e4098e 401 }
f9ceb6ac
HS
402 ret = efi_run_image(image_buf, size);
403
404 if (ret != EFI_SUCCESS)
405 return CMD_RET_FAILURE;
406
407 return CMD_RET_SUCCESS;
408}
409
410/**
411 * efi_run_image() - run loaded UEFI image
412 *
413 * @source_buffer: memory address of the UEFI image
414 * @source_size: size of the UEFI image
415 * Return: status code
416 */
417efi_status_t efi_run_image(void *source_buffer, efi_uintn_t source_size)
418{
419 efi_handle_t mem_handle = NULL, handle;
420 struct efi_device_path *file_path = NULL;
421 efi_status_t ret;
e2e4098e 422
f9ceb6ac 423 if (!bootefi_device_path || !bootefi_image_path) {
6b95b38c
AT
424 /*
425 * Special case for efi payload not loaded from disk,
426 * such as 'bootefi hello' or for example payload
427 * loaded directly into memory via JTAG, etc:
428 */
429 file_path = efi_dp_from_mem(EFI_RESERVED_MEMORY_TYPE,
f9ceb6ac
HS
430 (uintptr_t)source_buffer,
431 source_size);
6b95b38c
AT
432 /*
433 * Make sure that device for device_path exist
434 * in load_image(). Otherwise, shell and grub will fail.
435 */
436 ret = efi_create_handle(&mem_handle);
437 if (ret != EFI_SUCCESS)
438 goto out;
439
440 ret = efi_add_protocol(mem_handle, &efi_guid_device_path,
441 file_path);
442 if (ret != EFI_SUCCESS)
443 goto out;
444 } else {
f9ceb6ac
HS
445 file_path = efi_dp_append(bootefi_device_path,
446 bootefi_image_path);
6b95b38c
AT
447 }
448
f9ceb6ac
HS
449 ret = EFI_CALL(efi_load_image(false, efi_root, file_path, source_buffer,
450 source_size, &handle));
6b95b38c
AT
451 if (ret != EFI_SUCCESS)
452 goto out;
453
454 ret = do_bootefi_exec(handle);
6b95b38c
AT
455
456out:
457 if (mem_handle)
458 efi_delete_handle(mem_handle);
459 if (file_path)
460 efi_free_pool(file_path);
f9ceb6ac 461 return ret;
e2e4098e
AT
462}
463
d9717eae 464#ifdef CONFIG_CMD_BOOTEFI_SELFTEST
3fc2b163
AT
465static efi_status_t bootefi_run_prepare(const char *load_options_path,
466 struct efi_device_path *device_path,
467 struct efi_device_path *image_path,
468 struct efi_loaded_image_obj **image_objp,
469 struct efi_loaded_image **loaded_image_infop)
470{
471 efi_status_t ret;
472
473 ret = efi_setup_loaded_image(device_path, image_path, image_objp,
474 loaded_image_infop);
475 if (ret != EFI_SUCCESS)
476 return ret;
477
478 /* Transfer environment variable as load options */
479 return set_load_options((efi_handle_t)*image_objp, load_options_path);
480}
481
d9717eae
SG
482/**
483 * bootefi_test_prepare() - prepare to run an EFI test
484 *
1504bb0d 485 * Prepare to run a test as if it were provided by a loaded image.
d9717eae 486 *
1504bb0d
HS
487 * @image_objp: pointer to be set to the loaded image handle
488 * @loaded_image_infop: pointer to be set to the loaded image protocol
489 * @path: dummy file path used to construct the device path
490 * set in the loaded image protocol
491 * @load_options_path: name of a U-Boot environment variable. Its value is
492 * set as load options in the loaded image protocol.
493 * Return: status code
d9717eae
SG
494 */
495static efi_status_t bootefi_test_prepare
496 (struct efi_loaded_image_obj **image_objp,
1504bb0d
HS
497 struct efi_loaded_image **loaded_image_infop, const char *path,
498 const char *load_options_path)
d9717eae 499{
1504bb0d
HS
500 efi_status_t ret;
501
d9717eae 502 /* Construct a dummy device path */
1504bb0d 503 bootefi_device_path = efi_dp_from_mem(EFI_RESERVED_MEMORY_TYPE, 0, 0);
d9717eae
SG
504 if (!bootefi_device_path)
505 return EFI_OUT_OF_RESOURCES;
1504bb0d 506
d9717eae 507 bootefi_image_path = efi_dp_from_file(NULL, 0, path);
1504bb0d
HS
508 if (!bootefi_image_path) {
509 ret = EFI_OUT_OF_RESOURCES;
510 goto failure;
511 }
512
513 ret = bootefi_run_prepare(load_options_path, bootefi_device_path,
514 bootefi_image_path, image_objp,
515 loaded_image_infop);
516 if (ret == EFI_SUCCESS)
517 return ret;
d9717eae 518
1504bb0d
HS
519 efi_free_pool(bootefi_image_path);
520 bootefi_image_path = NULL;
521failure:
522 efi_free_pool(bootefi_device_path);
523 bootefi_device_path = NULL;
524 return ret;
d9717eae
SG
525}
526
3fc2b163
AT
527/**
528 * bootefi_run_finish() - finish up after running an EFI test
529 *
530 * @loaded_image_info: Pointer to a struct which holds the loaded image info
531 * @image_obj: Pointer to a struct which holds the loaded image object
532 */
533static void bootefi_run_finish(struct efi_loaded_image_obj *image_obj,
534 struct efi_loaded_image *loaded_image_info)
535{
536 efi_restore_gd();
537 free(loaded_image_info->load_options);
538 efi_delete_handle(&image_obj->header);
539}
540
541/**
7e92db81 542 * do_efi_selftest() - execute EFI selftest
3fc2b163 543 *
3fc2b163 544 * Return: status code
3fc2b163 545 */
7e92db81 546static int do_efi_selftest(void)
3fc2b163
AT
547{
548 struct efi_loaded_image_obj *image_obj;
549 struct efi_loaded_image *loaded_image_info;
550 efi_status_t ret;
551
3fc2b163
AT
552 ret = bootefi_test_prepare(&image_obj, &loaded_image_info,
553 "\\selftest", "efi_selftest");
554 if (ret != EFI_SUCCESS)
555 return CMD_RET_FAILURE;
556
557 /* Execute the test */
558 ret = EFI_CALL(efi_selftest(&image_obj->header, &systab));
559 bootefi_run_finish(image_obj, loaded_image_info);
560
561 return ret != EFI_SUCCESS;
562}
d9717eae
SG
563#endif /* CONFIG_CMD_BOOTEFI_SELFTEST */
564
7e92db81
HS
565/**
566 * do_bootefi() - execute `bootefi` command
567 *
568 * @cmdtp: table entry describing command
569 * @flag: bitmap indicating how the command was invoked
570 * @argc: number of arguments
571 * @argv: command line arguments
572 * Return: status code
573 */
b9939336
AG
574static int do_bootefi(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
575{
7e92db81 576 efi_status_t ret;
f64f2232 577 void *fdt;
7e92db81 578
3fc2b163
AT
579 if (argc < 2)
580 return CMD_RET_USAGE;
d6b21894 581
7e92db81
HS
582 /* Initialize EFI drivers */
583 ret = efi_init_obj_list();
584 if (ret != EFI_SUCCESS) {
585 printf("Error: Cannot initialize UEFI sub-system, r = %lu\n",
586 ret & ~EFI_ERROR_MASK);
587 return CMD_RET_FAILURE;
588 }
589
f64f2232
HS
590 if (argc > 2) {
591 uintptr_t fdt_addr;
592
7a597259 593 fdt_addr = simple_strtoul(argv[2], NULL, 16);
f64f2232
HS
594 fdt = map_sysmem(fdt_addr, 0);
595 } else {
596 fdt = EFI_FDT_USE_INTERNAL;
597 }
598 ret = efi_install_fdt(fdt);
7e92db81
HS
599 if (ret == EFI_INVALID_PARAMETER)
600 return CMD_RET_USAGE;
601 else if (ret != EFI_SUCCESS)
602 return CMD_RET_FAILURE;
603
d6b21894 604 if (!strcmp(argv[1], "bootmgr"))
7e92db81 605 return do_efibootmgr();
3fc2b163
AT
606#ifdef CONFIG_CMD_BOOTEFI_SELFTEST
607 else if (!strcmp(argv[1], "selftest"))
7e92db81 608 return do_efi_selftest();
3fc2b163
AT
609#endif
610
7e92db81 611 return do_bootefi_image(argv[1]);
b9939336
AG
612}
613
614#ifdef CONFIG_SYS_LONGHELP
615static char bootefi_help_text[] =
1c39809b
AG
616 "<image address> [fdt address]\n"
617 " - boot EFI payload stored at address <image address>.\n"
618 " If specified, the device tree located at <fdt address> gets\n"
c7ae3dfd
SG
619 " exposed as EFI configuration table.\n"
620#ifdef CONFIG_CMD_BOOTEFI_HELLO
623b3a57
HS
621 "bootefi hello\n"
622 " - boot a sample Hello World application stored within U-Boot\n"
623#endif
624#ifdef CONFIG_CMD_BOOTEFI_SELFTEST
bc4f9133 625 "bootefi selftest [fdt address]\n"
623b3a57 626 " - boot an EFI selftest application stored within U-Boot\n"
d78e40d6
HS
627 " Use environment variable efi_selftest to select a single test.\n"
628 " Use 'setenv efi_selftest list' to enumerate all tests.\n"
c7ae3dfd 629#endif
6b95b38c 630 "bootefi bootmgr [fdt address]\n"
9975fe96
RC
631 " - load and boot EFI payload based on BootOrder/BootXXXX variables.\n"
632 "\n"
633 " If specified, the device tree located at <fdt address> gets\n"
634 " exposed as EFI configuration table.\n";
b9939336
AG
635#endif
636
637U_BOOT_CMD(
1c39809b 638 bootefi, 3, 0, do_bootefi,
92dfd922 639 "Boots an EFI payload from memory",
b9939336
AG
640 bootefi_help_text
641);
0f4060eb 642
810371a0
HS
643/**
644 * efi_set_bootdev() - set boot device
645 *
646 * This function is called when a file is loaded, e.g. via the 'load' command.
647 * We use the path to this file to inform the UEFI binary about the boot device.
648 *
649 * @dev: device, e.g. "MMC"
650 * @devnr: number of the device, e.g. "1:2"
651 * @path: path to file loaded
652 */
95c5553e
RC
653void efi_set_bootdev(const char *dev, const char *devnr, const char *path)
654{
f1589ffb
AT
655 struct efi_device_path *device, *image;
656 efi_status_t ret;
f9d334bd 657
79276eb2
HS
658 /* efi_set_bootdev is typically called repeatedly, recover memory */
659 efi_free_pool(bootefi_device_path);
660 efi_free_pool(bootefi_image_path);
9975fe96 661
f1589ffb
AT
662 ret = efi_dp_from_name(dev, devnr, path, &device, &image);
663 if (ret == EFI_SUCCESS) {
664 bootefi_device_path = device;
6b95b38c
AT
665 if (image) {
666 /* FIXME: image should not contain device */
667 struct efi_device_path *image_tmp = image;
668
669 efi_dp_split_file_path(image, &device, &image);
670 efi_free_pool(image_tmp);
671 }
f1589ffb 672 bootefi_image_path = image;
49271666 673 } else {
f1589ffb
AT
674 bootefi_device_path = NULL;
675 bootefi_image_path = NULL;
49271666 676 }
0f4060eb 677}
This page took 0.254696 seconds and 4 git commands to generate.