bootefi.c 15.4 KB
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// SPDX-License-Identifier: GPL-2.0+
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/*
 *  EFI application loader
 *
 *  Copyright (c) 2016 Alexander Graf
 */

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#include <charset.h>
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#include <common.h>
#include <command.h>
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#include <dm.h>
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#include <efi_loader.h>
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#include <efi_selftest.h>
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#include <errno.h>
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#include <linux/libfdt.h>
#include <linux/libfdt_env.h>
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#include <mapmem.h>
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#include <memalign.h>
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#include <asm/global_data.h>
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#include <asm-generic/sections.h>
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#include <asm-generic/unaligned.h>
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#include <linux/linkage.h>
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#ifdef CONFIG_ARMV7_NONSEC
#include <asm/armv7.h>
#include <asm/secure.h>
#endif

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DECLARE_GLOBAL_DATA_PTR;
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#define OBJ_LIST_NOT_INITIALIZED 1

static efi_status_t efi_obj_list_initialized = OBJ_LIST_NOT_INITIALIZED;
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static struct efi_device_path *bootefi_image_path;
static struct efi_device_path *bootefi_device_path;
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/* Initialize and populate EFI object list */
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efi_status_t efi_init_obj_list(void)
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{
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	efi_status_t ret = EFI_SUCCESS;

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	/* Initialize once only */
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	if (efi_obj_list_initialized != OBJ_LIST_NOT_INITIALIZED)
		return efi_obj_list_initialized;
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	/* Initialize EFI driver uclass */
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	ret = efi_driver_init();
	if (ret != EFI_SUCCESS)
		goto out;
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	ret = efi_console_register();
	if (ret != EFI_SUCCESS)
		goto out;
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#ifdef CONFIG_PARTITIONS
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	ret = efi_disk_register();
	if (ret != EFI_SUCCESS)
		goto out;
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#endif
#if defined(CONFIG_LCD) || defined(CONFIG_DM_VIDEO)
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	ret = efi_gop_register();
	if (ret != EFI_SUCCESS)
		goto out;
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#endif
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#ifdef CONFIG_NET
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	ret = efi_net_register();
	if (ret != EFI_SUCCESS)
		goto out;
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#endif
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#ifdef CONFIG_GENERATE_ACPI_TABLE
	ret = efi_acpi_register();
	if (ret != EFI_SUCCESS)
		goto out;
#endif
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#ifdef CONFIG_GENERATE_SMBIOS_TABLE
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	ret = efi_smbios_register();
	if (ret != EFI_SUCCESS)
		goto out;
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#endif
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	ret = efi_watchdog_register();
	if (ret != EFI_SUCCESS)
		goto out;
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	/* Initialize EFI runtime services */
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	ret = efi_reset_system_init();
	if (ret != EFI_SUCCESS)
		goto out;
	ret = efi_get_time_init();
	if (ret != EFI_SUCCESS)
		goto out;

out:
	efi_obj_list_initialized = ret;
	return ret;
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}

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/*
 * Allow unaligned memory access.
 *
 * This routine is overridden by architectures providing this feature.
 */
void __weak allow_unaligned(void)
{
}

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/*
 * Set the load options of an image from an environment variable.
 *
 * @loaded_image_info:	the image
 * @env_var:		name of the environment variable
 */
static void set_load_options(struct efi_loaded_image *loaded_image_info,
			     const char *env_var)
{
	size_t size;
	const char *env = env_get(env_var);

	loaded_image_info->load_options = NULL;
	loaded_image_info->load_options_size = 0;
	if (!env)
		return;
	size = strlen(env) + 1;
	loaded_image_info->load_options = calloc(size, sizeof(u16));
	if (!loaded_image_info->load_options) {
		printf("ERROR: Out of memory\n");
		return;
	}
	utf8_to_utf16(loaded_image_info->load_options, (u8 *)env, size);
	loaded_image_info->load_options_size = size * 2;
}

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static void *copy_fdt(void *fdt)
{
	u64 fdt_size = fdt_totalsize(fdt);
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	unsigned long fdt_ram_start = -1L, fdt_pages;
	u64 new_fdt_addr;
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	void *new_fdt;
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	int i;
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        for (i = 0; i < CONFIG_NR_DRAM_BANKS; i++) {
                u64 ram_start = gd->bd->bi_dram[i].start;
                u64 ram_size = gd->bd->bi_dram[i].size;
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		if (!ram_size)
			continue;

		if (ram_start < fdt_ram_start)
			fdt_ram_start = ram_start;
	}

	/* Give us at least 4kb breathing room */
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	fdt_size = ALIGN(fdt_size + 4096, EFI_PAGE_SIZE);
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	fdt_pages = fdt_size >> EFI_PAGE_SHIFT;

	/* Safe fdt location is at 128MB */
	new_fdt_addr = fdt_ram_start + (128 * 1024 * 1024) + fdt_size;
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	if (efi_allocate_pages(EFI_ALLOCATE_MAX_ADDRESS,
			       EFI_RUNTIME_SERVICES_DATA, fdt_pages,
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			       &new_fdt_addr) != EFI_SUCCESS) {
		/* If we can't put it there, put it somewhere */
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		new_fdt_addr = (ulong)memalign(EFI_PAGE_SIZE, fdt_size);
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		if (efi_allocate_pages(EFI_ALLOCATE_MAX_ADDRESS,
				       EFI_RUNTIME_SERVICES_DATA, fdt_pages,
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				       &new_fdt_addr) != EFI_SUCCESS) {
			printf("ERROR: Failed to reserve space for FDT\n");
			return NULL;
		}
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	}
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	new_fdt = (void*)(ulong)new_fdt_addr;
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	memcpy(new_fdt, fdt, fdt_totalsize(fdt));
	fdt_set_totalsize(new_fdt, fdt_size);

	return new_fdt;
}

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static efi_status_t efi_do_enter(
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			efi_handle_t image_handle, struct efi_system_table *st,
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			EFIAPI efi_status_t (*entry)(
				efi_handle_t image_handle,
				struct efi_system_table *st))
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{
	efi_status_t ret = EFI_LOAD_ERROR;

	if (entry)
		ret = entry(image_handle, st);
	st->boottime->exit(image_handle, ret, 0, NULL);
	return ret;
}

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#ifdef CONFIG_ARM64
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static efi_status_t efi_run_in_el2(EFIAPI efi_status_t (*entry)(
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			efi_handle_t image_handle, struct efi_system_table *st),
			efi_handle_t image_handle, struct efi_system_table *st)
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{
	/* Enable caches again */
	dcache_enable();

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	return efi_do_enter(image_handle, st, entry);
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}
#endif

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#ifdef CONFIG_ARMV7_NONSEC
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static bool is_nonsec;

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static efi_status_t efi_run_in_hyp(EFIAPI efi_status_t (*entry)(
			efi_handle_t image_handle, struct efi_system_table *st),
			efi_handle_t image_handle, struct efi_system_table *st)
{
	/* Enable caches again */
	dcache_enable();

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	is_nonsec = true;

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	return efi_do_enter(image_handle, st, entry);
}
#endif

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/* Carve out DT reserved memory ranges */
static efi_status_t efi_carve_out_dt_rsv(void *fdt)
{
	int nr_rsv, i;
	uint64_t addr, size, pages;

	nr_rsv = fdt_num_mem_rsv(fdt);

	/* Look for an existing entry and add it to the efi mem map. */
	for (i = 0; i < nr_rsv; i++) {
		if (fdt_get_mem_rsv(fdt, i, &addr, &size) != 0)
			continue;

		pages = ALIGN(size, EFI_PAGE_SIZE) >> EFI_PAGE_SHIFT;
		efi_add_memory_map(addr, pages, EFI_RESERVED_MEMORY_TYPE,
				   false);
	}

	return EFI_SUCCESS;
}

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static efi_status_t efi_install_fdt(void *fdt)
{
	bootm_headers_t img = { 0 };
	ulong fdt_pages, fdt_size, fdt_start, fdt_end;
	efi_status_t ret;

	if (fdt_check_header(fdt)) {
		printf("ERROR: invalid device tree\n");
		return EFI_INVALID_PARAMETER;
	}

	/* Prepare fdt for payload */
	fdt = copy_fdt(fdt);
	if (!fdt)
		return EFI_OUT_OF_RESOURCES;

	if (image_setup_libfdt(&img, fdt, 0, NULL)) {
		printf("ERROR: failed to process device tree\n");
		return EFI_LOAD_ERROR;
	}

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	if (efi_carve_out_dt_rsv(fdt) != EFI_SUCCESS) {
		printf("ERROR: failed to carve out memory\n");
		return EFI_LOAD_ERROR;
	}

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	/* Link to it in the efi tables */
	ret = efi_install_configuration_table(&efi_guid_fdt, fdt);
	if (ret != EFI_SUCCESS)
		return EFI_OUT_OF_RESOURCES;

	/* And reserve the space in the memory map */
	fdt_start = ((ulong)fdt) & ~EFI_PAGE_MASK;
	fdt_end = ((ulong)fdt) + fdt_totalsize(fdt);
	fdt_size = (fdt_end - fdt_start) + EFI_PAGE_MASK;
	fdt_pages = fdt_size >> EFI_PAGE_SHIFT;
	/* Give a bootloader the chance to modify the device tree */
	fdt_pages += 2;
	ret = efi_add_memory_map(fdt_start, fdt_pages,
				 EFI_BOOT_SERVICES_DATA, true);
	return ret;
}

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/*
 * Load an EFI payload into a newly allocated piece of memory, register all
 * EFI objects it would want to access and jump to it.
 */
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static efi_status_t do_bootefi_exec(void *efi,
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				    struct efi_device_path *device_path,
				    struct efi_device_path *image_path)
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{
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	struct efi_loaded_image loaded_image_info = {};
	struct efi_object loaded_image_info_obj = {};
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	struct efi_object mem_obj = {};
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	struct efi_device_path *memdp = NULL;
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	efi_status_t ret;
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	EFIAPI efi_status_t (*entry)(efi_handle_t image_handle,
				     struct efi_system_table *st);
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	/*
	 * Special case for efi payload not loaded from disk, such as
	 * 'bootefi hello' or for example payload loaded directly into
	 * memory via jtag/etc:
	 */
	if (!device_path && !image_path) {
		printf("WARNING: using memory device/image path, this may confuse some payloads!\n");
		/* actual addresses filled in after efi_load_pe() */
		memdp = efi_dp_from_mem(0, 0, 0);
		device_path = image_path = memdp;
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		efi_add_handle(&mem_obj);

		ret = efi_add_protocol(mem_obj.handle, &efi_guid_device_path,
				       device_path);
		if (ret != EFI_SUCCESS)
			goto exit;
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	} else {
		assert(device_path && image_path);
	}

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	efi_setup_loaded_image(&loaded_image_info, &loaded_image_info_obj,
			       device_path, image_path);

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	/*
	 * gd lives in a fixed register which may get clobbered while we execute
	 * the payload. So save it here and restore it on every callback entry
	 */
	efi_save_gd();

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	/* Transfer environment variable bootargs as load options */
	set_load_options(&loaded_image_info, "bootargs");
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	/* Load the EFI payload */
	entry = efi_load_pe(efi, &loaded_image_info);
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	if (!entry) {
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		ret = EFI_LOAD_ERROR;
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		goto exit;
	}
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	if (memdp) {
		struct efi_device_path_memory *mdp = (void *)memdp;
		mdp->memory_type = loaded_image_info.image_code_type;
		mdp->start_address = (uintptr_t)loaded_image_info.image_base;
		mdp->end_address = mdp->start_address +
				loaded_image_info.image_size;
	}

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	/* we don't support much: */
	env_set("efi_8be4df61-93ca-11d2-aa0d-00e098032b8c_OsIndicationsSupported",
		"{ro,boot}(blob)0000000000000000");

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	/* Call our payload! */
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	debug("%s:%d Jumping to 0x%lx\n", __func__, __LINE__, (long)entry);
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	if (setjmp(&loaded_image_info.exit_jmp)) {
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		ret = loaded_image_info.exit_status;
		goto exit;
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	}

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#ifdef CONFIG_ARM64
	/* On AArch64 we need to make sure we call our payload in < EL3 */
	if (current_el() == 3) {
		smp_kick_all_cpus();
		dcache_disable();	/* flush cache before switch to EL2 */
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		/* Move into EL2 and keep running there */
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		armv8_switch_to_el2((ulong)entry,
				    (ulong)&loaded_image_info_obj.handle,
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				    (ulong)&systab, 0, (ulong)efi_run_in_el2,
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				    ES_TO_AARCH64);

		/* Should never reach here, efi exits with longjmp */
		while (1) { }
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	}
#endif

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#ifdef CONFIG_ARMV7_NONSEC
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	if (armv7_boot_nonsec() && !is_nonsec) {
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		dcache_disable();	/* flush cache before switch to HYP */

		armv7_init_nonsec();
		secure_ram_addr(_do_nonsec_entry)(
					efi_run_in_hyp,
					(uintptr_t)entry,
					(uintptr_t)loaded_image_info_obj.handle,
					(uintptr_t)&systab);

		/* Should never reach here, efi exits with longjmp */
		while (1) { }
	}
#endif

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	ret = efi_do_enter(loaded_image_info_obj.handle, &systab, entry);
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exit:
	/* image has returned, loaded-image obj goes *poof*: */
	list_del(&loaded_image_info_obj.link);
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	if (mem_obj.handle)
		list_del(&mem_obj.link);
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	return ret;
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}

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static int do_bootefi_bootmgr_exec(void)
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{
	struct efi_device_path *device_path, *file_path;
	void *addr;
	efi_status_t r;

	/*
	 * gd lives in a fixed register which may get clobbered while we execute
	 * the payload. So save it here and restore it on every callback entry
	 */
	efi_save_gd();

	addr = efi_bootmgr_load(&device_path, &file_path);
	if (!addr)
		return 1;

	printf("## Starting EFI application at %p ...\n", addr);
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	r = do_bootefi_exec(addr, device_path, file_path);
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	printf("## Application terminated, r = %lu\n",
	       r & ~EFI_ERROR_MASK);

	if (r != EFI_SUCCESS)
		return 1;

	return 0;
}

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/* Interpreter command to boot an arbitrary EFI image from memory */
static int do_bootefi(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
{
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	unsigned long addr;
	char *saddr;
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	efi_status_t r;
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	unsigned long fdt_addr;
	void *fdt;
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	/* Allow unaligned memory access */
	allow_unaligned();

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	/* Initialize EFI drivers */
	r = efi_init_obj_list();
	if (r != EFI_SUCCESS) {
		printf("Error: Cannot set up EFI drivers, r = %lu\n",
		       r & ~EFI_ERROR_MASK);
		return CMD_RET_FAILURE;
	}

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	if (argc < 2)
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		return CMD_RET_USAGE;
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	if (argc > 2) {
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		fdt_addr = simple_strtoul(argv[2], NULL, 16);
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		if (!fdt_addr && *argv[2] != '0')
			return CMD_RET_USAGE;
		/* Install device tree */
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		fdt = map_sysmem(fdt_addr, 0);
		r = efi_install_fdt(fdt);
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		if (r != EFI_SUCCESS) {
			printf("ERROR: failed to install device tree\n");
			return CMD_RET_FAILURE;
		}
	} else {
		/* Remove device tree. EFI_NOT_FOUND can be ignored here */
		efi_install_configuration_table(&efi_guid_fdt, NULL);
		printf("WARNING: booting without device tree\n");
	}
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#ifdef CONFIG_CMD_BOOTEFI_HELLO
	if (!strcmp(argv[1], "hello")) {
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		ulong size = __efi_helloworld_end - __efi_helloworld_begin;
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		saddr = env_get("loadaddr");
		if (saddr)
			addr = simple_strtoul(saddr, NULL, 16);
		else
			addr = CONFIG_SYS_LOAD_ADDR;
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		memcpy(map_sysmem(addr, size), __efi_helloworld_begin, size);
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	} else
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#endif
#ifdef CONFIG_CMD_BOOTEFI_SELFTEST
	if (!strcmp(argv[1], "selftest")) {
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		struct efi_loaded_image loaded_image_info = {};
		struct efi_object loaded_image_info_obj = {};

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		/* Construct a dummy device path. */
		bootefi_device_path = efi_dp_from_mem(EFI_RESERVED_MEMORY_TYPE,
						      (uintptr_t)&efi_selftest,
						      (uintptr_t)&efi_selftest);
		bootefi_image_path = efi_dp_from_file(NULL, 0, "\\selftest");

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		efi_setup_loaded_image(&loaded_image_info,
				       &loaded_image_info_obj,
				       bootefi_device_path, bootefi_image_path);
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		/*
		 * gd lives in a fixed register which may get clobbered while we
		 * execute the payload. So save it here and restore it on every
		 * callback entry
		 */
		efi_save_gd();
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		/* Transfer environment variable efi_selftest as load options */
		set_load_options(&loaded_image_info, "efi_selftest");
		/* Execute the test */
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		r = efi_selftest(loaded_image_info_obj.handle, &systab);
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		efi_restore_gd();
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		free(loaded_image_info.load_options);
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		list_del(&loaded_image_info_obj.link);
		return r != EFI_SUCCESS;
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	} else
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#endif
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	if (!strcmp(argv[1], "bootmgr")) {
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		return do_bootefi_bootmgr_exec();
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	} else {
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		saddr = argv[1];
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		addr = simple_strtoul(saddr, NULL, 16);
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		/* Check that a numeric value was passed */
		if (!addr && *saddr != '0')
			return CMD_RET_USAGE;
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	}

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	printf("## Starting EFI application at %08lx ...\n", addr);
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	r = do_bootefi_exec(map_sysmem(addr, 0), bootefi_device_path,
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			    bootefi_image_path);
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	printf("## Application terminated, r = %lu\n",
	       r & ~EFI_ERROR_MASK);
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	if (r != EFI_SUCCESS)
		return 1;
	else
		return 0;
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}

#ifdef CONFIG_SYS_LONGHELP
static char bootefi_help_text[] =
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	"<image address> [fdt address]\n"
	"  - boot EFI payload stored at address <image address>.\n"
	"    If specified, the device tree located at <fdt address> gets\n"
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	"    exposed as EFI configuration table.\n"
#ifdef CONFIG_CMD_BOOTEFI_HELLO
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	"bootefi hello\n"
	"  - boot a sample Hello World application stored within U-Boot\n"
#endif
#ifdef CONFIG_CMD_BOOTEFI_SELFTEST
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	"bootefi selftest [fdt address]\n"
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	"  - boot an EFI selftest application stored within U-Boot\n"
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	"    Use environment variable efi_selftest to select a single test.\n"
	"    Use 'setenv efi_selftest list' to enumerate all tests.\n"
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#endif
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	"bootefi bootmgr [fdt addr]\n"
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	"  - load and boot EFI payload based on BootOrder/BootXXXX variables.\n"
	"\n"
	"    If specified, the device tree located at <fdt address> gets\n"
	"    exposed as EFI configuration table.\n";
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#endif

U_BOOT_CMD(
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	bootefi, 3, 0, do_bootefi,
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	"Boots an EFI payload from memory",
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	bootefi_help_text
);
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void efi_set_bootdev(const char *dev, const char *devnr, const char *path)
{
	char filename[32] = { 0 }; /* dp->str is u16[32] long */
	char *s;
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	if (strcmp(dev, "Net")) {
		struct blk_desc *desc;
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		disk_partition_t fs_partition;
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		int part;
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		part = blk_get_device_part_str(dev, devnr, &desc, &fs_partition,
					       1);
		if (part < 0)
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			return;
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		bootefi_device_path = efi_dp_from_part(desc, part);
	} else {
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#ifdef CONFIG_NET
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		bootefi_device_path = efi_dp_from_eth();
#endif
	}
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	if (!path)
		return;

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	if (strcmp(dev, "Net")) {
		/* Add leading / to fs paths, because they're absolute */
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		snprintf(filename, sizeof(filename), "/%s", path);
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	} else {
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		snprintf(filename, sizeof(filename), "%s", path);
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	}
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	/* DOS style file path: */
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	s = filename;
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	while ((s = strchr(s, '/')))
		*s++ = '\\';
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	bootefi_image_path = efi_dp_from_file(NULL, 0, filename);
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}