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bootloader: Adds bootloader_sha256_flash_contents()
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@ -22,6 +22,7 @@
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#define FLASH_SECTOR_SIZE 0x1000
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#define FLASH_BLOCK_SIZE 0x10000
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#define MMAP_ALIGNED_MASK 0x0000FFFF
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/* Provide a Flash API for bootloader_support code,
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that can be used from bootloader or app code.
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@ -35,7 +36,7 @@
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*
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* @return Number of free pages
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*/
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uint32_t bootloader_mmap_get_free_pages();
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uint32_t bootloader_mmap_get_free_pages(void);
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/**
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* @brief Map a region of flash to data memory
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@ -26,7 +26,7 @@
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typedef void *bootloader_sha256_handle_t;
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bootloader_sha256_handle_t bootloader_sha256_start();
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bootloader_sha256_handle_t bootloader_sha256_start(void);
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void bootloader_sha256_data(bootloader_sha256_handle_t handle, const void *data, size_t data_len);
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@ -62,3 +62,17 @@ __attribute__((noreturn)) void bootloader_utility_load_boot_image(const bootload
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* It is not recommended to call this function from an app (if called, the app will abort).
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*/
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__attribute__((noreturn)) void bootloader_reset(void);
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/** @brief Generates the digest of the data between offset & offset+length.
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*
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* This function should be used when the size of the data is larger than 3.2MB.
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* The MMU capacity is 3.2MB (50 pages - 64KB each). This function generates the SHA-256
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* of the data in chunks of 3.2MB, considering the MMU capacity.
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*
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* @param[in] flash_offset Offset of the data in flash.
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* @param[in] len Length of data in bytes.
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* @param[out] digest Pointer to buffer where the digest is written, if ESP_OK is returned.
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*
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* @return ESP_OK if secure boot digest is generated successfully.
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*/
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esp_err_t bootloader_sha256_flash_contents(uint32_t flash_offset, uint32_t len, uint8_t *digest);
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@ -26,6 +26,7 @@
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#include "esp_flash_partitions.h"
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#include "bootloader_flash.h"
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#include "bootloader_common.h"
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#include "bootloader_config.h"
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#include "bootloader_utility.h"
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#include "soc/gpio_periph.h"
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#include "soc/efuse_reg.h"
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@ -21,7 +21,7 @@
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// App version is a wrapper around mbedTLS SHA API
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#include <mbedtls/sha256.h>
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bootloader_sha256_handle_t bootloader_sha256_start()
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bootloader_sha256_handle_t bootloader_sha256_start(void)
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{
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mbedtls_sha256_context *ctx = (mbedtls_sha256_context *)malloc(sizeof(mbedtls_sha256_context));
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if (!ctx) {
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@ -53,6 +53,7 @@ void bootloader_sha256_finish(bootloader_sha256_handle_t handle, uint8_t *digest
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}
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mbedtls_sha256_free(ctx);
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free(handle);
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handle = NULL;
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}
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#else // Bootloader version
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@ -70,7 +71,7 @@ static const size_t BLOCK_WORDS = (64/sizeof(uint32_t));
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// Words in final SHA256 digest
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static const size_t DIGEST_WORDS = (32/sizeof(uint32_t));
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bootloader_sha256_handle_t bootloader_sha256_start()
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bootloader_sha256_handle_t bootloader_sha256_start(void)
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{
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// Enable SHA hardware
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ets_sha_enable();
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@ -703,3 +703,39 @@ void bootloader_reset(void)
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abort(); /* This function should really not be called from application code */
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#endif
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}
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esp_err_t bootloader_sha256_flash_contents(uint32_t flash_offset, uint32_t len, uint8_t *digest)
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{
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if (digest == NULL) {
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return ESP_ERR_INVALID_ARG;
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}
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/* Handling firmware images larger than MMU capacity */
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uint32_t mmu_free_pages_count = bootloader_mmap_get_free_pages();
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bootloader_sha256_handle_t sha_handle = NULL;
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sha_handle = bootloader_sha256_start();
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if (sha_handle == NULL) {
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return ESP_ERR_NO_MEM;
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}
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while (len > 0) {
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uint32_t mmu_page_offset = ((flash_offset & MMAP_ALIGNED_MASK) != 0) ? 1 : 0; /* Skip 1st MMU Page if it is already populated */
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uint32_t partial_image_len = MIN(len, ((mmu_free_pages_count - mmu_page_offset) * SPI_FLASH_MMU_PAGE_SIZE)); /* Read the image that fits in the free MMU pages */
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const void * image = bootloader_mmap(flash_offset, partial_image_len);
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if (image == NULL) {
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bootloader_sha256_finish(sha_handle, NULL);
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return ESP_FAIL;
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}
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bootloader_sha256_data(sha_handle, image, partial_image_len);
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bootloader_munmap(image);
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flash_offset += partial_image_len;
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len -= partial_image_len;
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}
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bootloader_sha256_finish(sha_handle, digest);
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return ESP_OK;
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}
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@ -24,6 +24,7 @@
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#include <test_utils.h>
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#include <esp_partition.h>
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#include <esp_attr.h>
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#include "esp_log.h"
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TEST_CASE("Test erase partition", "[spi_flash]")
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{
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