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/*
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* Copyright (c) 2017-2021, ARM Limited and Contributors. All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#include <assert.h>
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#include <common/debug.h>
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#include <lib/optee_utils.h>
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/*
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* load_addr_hi and load_addr_lo: image load address.
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* image_id: 0 - pager, 1 - paged
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* size: image size in bytes.
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*/
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typedef struct optee_image {
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uint32_t load_addr_hi;
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uint32_t load_addr_lo;
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uint32_t image_id;
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uint32_t size;
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} optee_image_t;
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#define OPTEE_PAGER_IMAGE_ID 0
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#define OPTEE_PAGED_IMAGE_ID 1
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#define OPTEE_MAX_NUM_IMAGES 2u
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#define TEE_MAGIC_NUM_OPTEE 0x4554504f
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/*
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* magic: header magic number.
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* version: OPTEE header version:
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* 1 - not supported
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* 2 - supported
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* arch: OPTEE os architecture type: 0 - AARCH32, 1 - AARCH64.
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* flags: unused currently.
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* nb_images: number of images.
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*/
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typedef struct optee_header {
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uint32_t magic;
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uint8_t version;
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uint8_t arch;
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uint16_t flags;
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uint32_t nb_images;
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optee_image_t optee_image_list[];
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} optee_header_t;
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/*******************************************************************************
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* Check if it is a valid tee header
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* Return true if valid
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* Return false if invalid
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******************************************************************************/
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static bool tee_validate_header(optee_header_t *header)
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{
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if ((header->magic == TEE_MAGIC_NUM_OPTEE) &&
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(header->version == 2u) &&
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(header->nb_images > 0u) &&
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(header->nb_images <= OPTEE_MAX_NUM_IMAGES)) {
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return true;
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}
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return false;
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}
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bool optee_header_is_valid(uintptr_t header_base)
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{
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return tee_validate_header((optee_header_t *)header_base);
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}
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/*******************************************************************************
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* Parse the OPTEE image
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* Return 0 on success or a negative error code otherwise.
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******************************************************************************/
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static int parse_optee_image(image_info_t *image_info,
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optee_image_t *image)
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{
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uintptr_t init_load_addr, free_end, requested_end;
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size_t init_size;
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init_load_addr = ((uint64_t)image->load_addr_hi << 32) |
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image->load_addr_lo;
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init_size = image->size;
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/*
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* image->load_addr_hi & image->load_addr_lo set to UINT32_MAX indicate
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* loader decided address; take our pre-mapped area for current image
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* since arm-tf could not allocate memory dynamically
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*/
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if ((image->load_addr_hi == UINT32_MAX) &&
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(image->load_addr_lo == UINT32_MAX)) {
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init_load_addr = image_info->image_base;
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}
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/* Check that the default end address doesn't overflow */
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if (check_uptr_overflow(image_info->image_base,
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image_info->image_max_size - 1))
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return -1;
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free_end = image_info->image_base + (image_info->image_max_size - 1);
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/* Check that the image end address doesn't overflow */
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if (check_uptr_overflow(init_load_addr, init_size - 1))
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return -1;
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requested_end = init_load_addr + (init_size - 1);
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/*
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* Check that the requested RAM location is within reserved
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* space for OPTEE.
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*/
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if (!((init_load_addr >= image_info->image_base) &&
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(requested_end <= free_end))) {
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WARN("The load address in optee header %p - %p is not in reserved area: %p - %p.\n",
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(void *)init_load_addr,
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(void *)(init_load_addr + init_size),
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(void *)image_info->image_base,
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(void *)(image_info->image_base +
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image_info->image_max_size));
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return -1;
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}
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/*
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* Remove the skip attr from image_info, the image will be loaded.
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* The default attr in image_info is "IMAGE_ATTRIB_SKIP_LOADING", which
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* mean the image will not be loaded. Here, we parse the header image to
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* know that the extra image need to be loaded, so remove the skip attr.
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*/
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image_info->h.attr &= ~IMAGE_ATTRIB_SKIP_LOADING;
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/* Update image base and size of image_info */
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image_info->image_base = init_load_addr;
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image_info->image_size = init_size;
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return 0;
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}
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/*******************************************************************************
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* Parse the OPTEE header
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* Return 0 on success or a negative error code otherwise.
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******************************************************************************/
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int parse_optee_header(entry_point_info_t *header_ep,
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image_info_t *pager_image_info,
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image_info_t *paged_image_info)
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{
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optee_header_t *header;
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uint32_t num;
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int ret;
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assert(header_ep);
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header = (optee_header_t *)header_ep->pc;
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assert(header);
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/* Print the OPTEE header information */
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INFO("OPTEE ep=0x%x\n", (unsigned int)header_ep->pc);
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INFO("OPTEE header info:\n");
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INFO(" magic=0x%x\n", header->magic);
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INFO(" version=0x%x\n", header->version);
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INFO(" arch=0x%x\n", header->arch);
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INFO(" flags=0x%x\n", header->flags);
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INFO(" nb_images=0x%x\n", header->nb_images);
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/*
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* OPTEE image has 3 types:
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*
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* 1. Plain OPTEE bin without header.
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* Original bin without header, return directly,
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* BL32_EXTRA1_IMAGE_ID and BL32_EXTRA2_IMAGE_ID will be skipped.
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*
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* 2. OPTEE bin with header bin, but no paging.
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* Header available and nb_images = 1, remove skip attr for
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* BL32_EXTRA1_IMAGE_ID. BL32_EXTRA1_IMAGE_ID will be loaded,
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* and BL32_EXTRA2_IMAGE_ID be skipped.
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*
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* 3. OPTEE image with paging support.
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* Header available and nb_images = 2, there are 3 bins: header,
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* pager and pageable. Remove skip attr for BL32_EXTRA1_IMAGE_ID
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* and BL32_EXTRA2_IMAGE_ID to load pager and paged bin.
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*/
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if (!tee_validate_header(header)) {
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INFO("Invalid OPTEE header, set legacy mode.\n");
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#ifdef __aarch64__
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header_ep->args.arg0 = MODE_RW_64;
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#else
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header_ep->args.arg0 = MODE_RW_32;
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#endif
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return 0;
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}
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/* Parse OPTEE image */
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for (num = 0U; num < header->nb_images; num++) {
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if (header->optee_image_list[num].image_id ==
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OPTEE_PAGER_IMAGE_ID) {
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ret = parse_optee_image(pager_image_info,
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&header->optee_image_list[num]);
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} else if (header->optee_image_list[num].image_id ==
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OPTEE_PAGED_IMAGE_ID) {
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ret = parse_optee_image(paged_image_info,
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&header->optee_image_list[num]);
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} else {
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ERROR("Parse optee image failed.\n");
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return -1;
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}
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if (ret != 0)
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return -1;
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}
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/*
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* Update "pc" value which should comes from pager image. After the
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* header image is parsed, it will be unuseful, and the actual
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* execution image after BL31 is pager image.
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*/
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header_ep->pc = pager_image_info->image_base;
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/*
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* The paged load address and size are populated in
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* header image arguments so that can be read by the
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* BL32 SPD.
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*/
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header_ep->args.arg1 = paged_image_info->image_base;
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header_ep->args.arg2 = paged_image_info->image_size;
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/* Set OPTEE runtime arch - aarch32/aarch64 */
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if (header->arch == 0) {
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header_ep->args.arg0 = MODE_RW_32;
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} else {
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#ifdef __aarch64__
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header_ep->args.arg0 = MODE_RW_64;
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#else
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ERROR("Cannot boot an AArch64 OP-TEE\n");
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return -1;
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#endif
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}
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return 0;
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}
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