mirror of
https://github.com/Telecominfraproject/OpenCellular.git
synced 2025-12-30 10:31:02 +00:00
When EFS finds the active slot is invalid, it tries the other slot. This patch makes the other slot active so that the following boots will try the other slot first. This patch also replaces enum flash_rw_slot with system_image_copy_t. The new APIs are therefore renamed from *_slot to *_copy. Basically, this makes vboot see slots as a conceptual place instead of physical spaces bound to flash storage. BUG=b:65028930 BRANCH=none TEST=On Fizz, verify: 1. RW_B is old and updated by soft sync. RW_B is activated and executed after reboot. System continues to boot to OS. 2. RW_A is old and updated by soft sync. RW_A is activated and executed after reboot. System continues to boot to OS. Change-Id: Icf97da13e651e7a931b9d507052b9422566eb16c Signed-off-by: Daisuke Nojiri <dnojiri@chromium.org> Reviewed-on: https://chromium-review.googlesource.com/648449
470 lines
11 KiB
C
470 lines
11 KiB
C
/* Copyright (c) 2012 The Chromium OS Authors. All rights reserved.
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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/* Verified boot hash computing module for Chrome EC */
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#include "common.h"
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#include "console.h"
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#include "flash.h"
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#include "hooks.h"
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#include "host_command.h"
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#include "sha256.h"
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#include "shared_mem.h"
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#include "system.h"
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#include "task.h"
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#include "timer.h"
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#include "util.h"
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#include "watchdog.h"
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/* Console output macros */
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#define CPUTS(outstr) cputs(CC_VBOOT, outstr)
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#define CPRINTS(format, args...) cprints(CC_VBOOT, format, ## args)
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struct vboot_hash_tag {
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uint8_t hash[SHA256_DIGEST_SIZE];
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uint32_t offset;
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uint32_t size;
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};
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#define VBOOT_HASH_SYSJUMP_TAG 0x5648 /* "VH" */
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#define VBOOT_HASH_SYSJUMP_VERSION 1
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#define CHUNK_SIZE 1024 /* Bytes to hash per deferred call */
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#define WORK_INTERVAL_US 100 /* Delay between deferred calls */
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static uint32_t data_offset;
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static uint32_t data_size;
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static uint32_t curr_pos;
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static const uint8_t *hash; /* Hash, or NULL if not valid */
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static int want_abort;
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static int in_progress;
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static struct sha256_ctx ctx;
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int vboot_hash_in_progress(void)
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{
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return in_progress;
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}
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/**
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* Abort hash currently in progress, and invalidate any completed hash.
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*/
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void vboot_hash_abort(void)
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{
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if (in_progress) {
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want_abort = 1;
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} else {
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CPRINTS("hash abort");
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want_abort = 0;
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data_size = 0;
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hash = NULL;
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}
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}
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static void vboot_hash_next_chunk(void);
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DECLARE_DEFERRED(vboot_hash_next_chunk);
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#ifndef CONFIG_MAPPED_STORAGE
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static int read_and_hash_chunk(int offset, int size)
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{
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char *buf;
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int rv;
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if (size == 0)
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return EC_SUCCESS;
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rv = shared_mem_acquire(size, &buf);
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if (rv == EC_ERROR_BUSY) {
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/* Couldn't update hash right now; try again later */
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hook_call_deferred(&vboot_hash_next_chunk_data,
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WORK_INTERVAL_US);
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return rv;
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} else if (rv != EC_SUCCESS) {
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vboot_hash_abort();
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return rv;
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}
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rv = flash_read(offset, size, buf);
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if (rv == EC_SUCCESS)
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SHA256_update(&ctx, (const uint8_t *)buf, size);
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else
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vboot_hash_abort();
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shared_mem_release(buf);
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return rv;
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}
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#endif
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#ifdef CONFIG_CONSOLE_VERBOSE
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#define SHA256_PRINT_SIZE SHA256_DIGEST_SIZE
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#else
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#define SHA256_PRINT_SIZE 4
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#endif
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/**
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* Do next chunk of hashing work, if any.
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*/
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static void vboot_hash_next_chunk(void)
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{
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int size;
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/* Handle abort */
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if (want_abort) {
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in_progress = 0;
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vboot_hash_abort();
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return;
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}
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/* Compute the next chunk of hash */
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size = MIN(CHUNK_SIZE, data_size - curr_pos);
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#ifdef CONFIG_MAPPED_STORAGE
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flash_lock_mapped_storage(1);
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SHA256_update(&ctx, (const uint8_t *)(CONFIG_MAPPED_STORAGE_BASE +
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data_offset + curr_pos), size);
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flash_lock_mapped_storage(0);
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#else
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if (read_and_hash_chunk(data_offset + curr_pos, size) != EC_SUCCESS)
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return;
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#endif
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curr_pos += size;
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if (curr_pos >= data_size) {
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/* Store the final hash */
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hash = SHA256_final(&ctx);
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CPRINTS("hash done %.*h", SHA256_PRINT_SIZE, hash);
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in_progress = 0;
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/* Handle receiving abort during finalize */
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if (want_abort)
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vboot_hash_abort();
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return;
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}
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/* If we're still here, more work to do; come back later */
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hook_call_deferred(&vboot_hash_next_chunk_data, WORK_INTERVAL_US);
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}
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/**
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* Start computing a hash of <size> bytes of data at flash offset <offset>.
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*
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* If nonce_size is non-zero, prefixes the <nonce> onto the data to be hashed.
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* Returns non-zero if error.
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*/
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static int vboot_hash_start(uint32_t offset, uint32_t size,
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const uint8_t *nonce, int nonce_size)
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{
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/* Fail if hash computation is already in progress */
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if (in_progress)
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return EC_ERROR_BUSY;
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/*
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* Make sure request fits inside flash. That is, you can't use this
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* command to peek at other memory.
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*/
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if (offset > CONFIG_FLASH_SIZE || size > CONFIG_FLASH_SIZE ||
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offset + size > CONFIG_FLASH_SIZE || nonce_size < 0) {
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return EC_ERROR_INVAL;
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}
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/* Save new hash request */
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data_offset = offset;
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data_size = size;
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curr_pos = 0;
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hash = NULL;
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want_abort = 0;
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in_progress = 1;
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/* Restart the hash computation */
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CPRINTS("hash start 0x%08x 0x%08x", offset, size);
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SHA256_init(&ctx);
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if (nonce_size)
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SHA256_update(&ctx, nonce, nonce_size);
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hook_call_deferred(&vboot_hash_next_chunk_data, 0);
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return EC_SUCCESS;
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}
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int vboot_hash_invalidate(int offset, int size)
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{
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/* Don't invalidate if passed an invalid region */
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if (offset < 0 || size <= 0 || offset + size < 0)
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return 0;
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/* Don't invalidate if hash is already invalid */
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if (!hash)
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return 0;
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/*
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* Always invalidate zero-size hash. No overlap if passed region is off
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* either end of hashed region.
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*/
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if (data_size > 0 &&
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(offset + size <= data_offset || offset >= data_offset + data_size))
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return 0;
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/* Invalidate the hash */
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CPRINTS("hash invalidated 0x%08x 0x%08x", offset, size);
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vboot_hash_abort();
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return 1;
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}
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/*****************************************************************************/
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/* Hooks */
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/**
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* Returns the size of a RW copy to be hashed as expected by Softsync.
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*/
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static uint32_t get_rw_size(void)
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{
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#ifdef CONFIG_VBOOT_EFS
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return CONFIG_RW_SIZE;
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#else
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return system_get_image_used(SYSTEM_IMAGE_RW);
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#endif
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}
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static void vboot_hash_init(void)
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{
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#ifdef CONFIG_SAVE_VBOOT_HASH
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const struct vboot_hash_tag *tag;
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int version, size;
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tag = (const struct vboot_hash_tag *)system_get_jump_tag(
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VBOOT_HASH_SYSJUMP_TAG, &version, &size);
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if (tag && version == VBOOT_HASH_SYSJUMP_VERSION &&
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size == sizeof(*tag)) {
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/* Already computed a hash, so don't recompute */
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CPRINTS("hash precomputed");
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hash = tag->hash;
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data_offset = tag->offset;
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data_size = tag->size;
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} else
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#endif
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#ifdef CONFIG_HOSTCMD_EVENTS
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/*
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* Don't auto-start hash computation if we've asked the host to enter
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* recovery mode since we probably won't need the hash. Although
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* the host is capable of clearing this host event, the host is
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* likely not even up and running yet in the case of cold boot, due to
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* the power sequencing task not having run yet.
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*/
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if (!(host_get_events() &
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EC_HOST_EVENT_MASK(EC_HOST_EVENT_KEYBOARD_RECOVERY)))
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#endif
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{
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/* Start computing the hash of RW firmware */
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vboot_hash_start(flash_get_rw_offset(system_get_active_copy()),
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get_rw_size(), NULL, 0);
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}
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}
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DECLARE_HOOK(HOOK_INIT, vboot_hash_init, HOOK_PRIO_INIT_VBOOT_HASH);
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#ifdef CONFIG_SAVE_VBOOT_HASH
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static int vboot_hash_preserve_state(void)
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{
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struct vboot_hash_tag tag;
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/* If we haven't finished our hash, nothing to save */
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if (!hash)
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return EC_SUCCESS;
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memcpy(tag.hash, hash, sizeof(tag.hash));
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tag.offset = data_offset;
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tag.size = data_size;
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system_add_jump_tag(VBOOT_HASH_SYSJUMP_TAG,
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VBOOT_HASH_SYSJUMP_VERSION,
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sizeof(tag), &tag);
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return EC_SUCCESS;
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}
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DECLARE_HOOK(HOOK_SYSJUMP, vboot_hash_preserve_state, HOOK_PRIO_DEFAULT);
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#endif
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/**
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* Returns the offset of RO or RW image if the either region is specifically
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* requested otherwise return the current hash offset.
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*/
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static int get_offset(int offset)
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{
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if (offset == EC_VBOOT_HASH_OFFSET_RO)
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return CONFIG_EC_PROTECTED_STORAGE_OFF + CONFIG_RO_STORAGE_OFF;
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if (offset == EC_VBOOT_HASH_OFFSET_ACTIVE)
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return flash_get_rw_offset(system_get_active_copy());
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if (offset == EC_VBOOT_HASH_OFFSET_UPDATE)
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return flash_get_rw_offset(system_get_update_copy());
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return offset;
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}
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/****************************************************************************/
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/* Console commands */
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#ifdef CONFIG_CMD_HASH
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static int command_hash(int argc, char **argv)
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{
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uint32_t offset = CONFIG_EC_WRITABLE_STORAGE_OFF +
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CONFIG_RW_STORAGE_OFF;
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uint32_t size = CONFIG_RW_SIZE;
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char *e;
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if (argc == 1) {
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ccprintf("Offset: 0x%08x\n", data_offset);
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ccprintf("Size: 0x%08x (%d)\n", data_size, data_size);
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ccprintf("Digest: ");
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if (want_abort)
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ccprintf("(aborting)\n");
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else if (in_progress)
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ccprintf("(in progress)\n");
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else if (hash)
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ccprintf("%.*h\n", SHA256_DIGEST_SIZE, hash);
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else
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ccprintf("(invalid)\n");
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return EC_SUCCESS;
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}
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if (argc == 2) {
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if (!strcasecmp(argv[1], "abort")) {
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vboot_hash_abort();
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return EC_SUCCESS;
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} else if (!strcasecmp(argv[1], "rw")) {
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return vboot_hash_start(
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get_offset(EC_VBOOT_HASH_OFFSET_ACTIVE),
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get_rw_size(), NULL, 0);
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} else if (!strcasecmp(argv[1], "ro")) {
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return vboot_hash_start(
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CONFIG_EC_PROTECTED_STORAGE_OFF +
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CONFIG_RO_STORAGE_OFF,
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system_get_image_used(SYSTEM_IMAGE_RO),
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NULL, 0);
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}
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}
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if (argc >= 3) {
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offset = strtoi(argv[1], &e, 0);
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if (*e)
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return EC_ERROR_PARAM1;
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size = strtoi(argv[2], &e, 0);
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if (*e)
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return EC_ERROR_PARAM2;
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}
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if (argc == 4) {
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int nonce = strtoi(argv[3], &e, 0);
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if (*e)
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return EC_ERROR_PARAM3;
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return vboot_hash_start(offset, size,
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(const uint8_t *)&nonce,
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sizeof(nonce));
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} else
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return vboot_hash_start(offset, size, NULL, 0);
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}
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DECLARE_CONSOLE_COMMAND(hash, command_hash,
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"[abort | ro | rw] | [<offset> <size> [<nonce>]]",
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"Request hash recomputation");
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#endif /* CONFIG_CMD_HASH */
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/****************************************************************************/
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/* Host commands */
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/* Fill in the response with the current hash status */
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static void fill_response(struct ec_response_vboot_hash *r,
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int request_offset)
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{
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if (in_progress)
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r->status = EC_VBOOT_HASH_STATUS_BUSY;
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else if (get_offset(request_offset) == data_offset && hash &&
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!want_abort) {
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r->status = EC_VBOOT_HASH_STATUS_DONE;
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r->hash_type = EC_VBOOT_HASH_TYPE_SHA256;
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r->digest_size = SHA256_DIGEST_SIZE;
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r->reserved0 = 0;
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r->offset = data_offset;
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r->size = data_size;
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ASSERT(SHA256_DIGEST_SIZE < sizeof(r->hash_digest));
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memcpy(r->hash_digest, hash, SHA256_DIGEST_SIZE);
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} else
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r->status = EC_VBOOT_HASH_STATUS_NONE;
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}
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/**
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* Start computing a hash, with sanity checking on params.
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*
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* @return EC_RES_SUCCESS if success, or other result code on error.
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*/
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static int host_start_hash(const struct ec_params_vboot_hash *p)
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{
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int offset = p->offset;
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int size = p->size;
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int rv;
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/* Sanity-check input params */
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if (p->hash_type != EC_VBOOT_HASH_TYPE_SHA256)
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return EC_RES_INVALID_PARAM;
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if (p->nonce_size > sizeof(p->nonce_data))
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return EC_RES_INVALID_PARAM;
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/* Handle special offset values */
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if (offset == EC_VBOOT_HASH_OFFSET_RO)
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size = system_get_image_used(SYSTEM_IMAGE_RO);
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else if ((offset == EC_VBOOT_HASH_OFFSET_ACTIVE) ||
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(offset == EC_VBOOT_HASH_OFFSET_UPDATE))
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size = get_rw_size();
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offset = get_offset(offset);
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rv = vboot_hash_start(offset, size, p->nonce_data, p->nonce_size);
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if (rv == EC_SUCCESS)
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return EC_RES_SUCCESS;
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else if (rv == EC_ERROR_INVAL)
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return EC_RES_INVALID_PARAM;
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else
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return EC_RES_ERROR;
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}
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static int host_command_vboot_hash(struct host_cmd_handler_args *args)
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{
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const struct ec_params_vboot_hash *p = args->params;
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struct ec_response_vboot_hash *r = args->response;
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int rv;
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switch (p->cmd) {
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case EC_VBOOT_HASH_GET:
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fill_response(r, p->offset);
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args->response_size = sizeof(*r);
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return EC_RES_SUCCESS;
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case EC_VBOOT_HASH_ABORT:
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vboot_hash_abort();
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return EC_RES_SUCCESS;
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case EC_VBOOT_HASH_START:
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case EC_VBOOT_HASH_RECALC:
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rv = host_start_hash(p);
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if (rv != EC_RES_SUCCESS)
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return rv;
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/* Wait for hash to finish if command is RECALC */
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if (p->cmd == EC_VBOOT_HASH_RECALC)
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while (in_progress)
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usleep(1000);
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fill_response(r, p->offset);
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args->response_size = sizeof(*r);
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return EC_RES_SUCCESS;
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default:
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return EC_RES_INVALID_PARAM;
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}
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}
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DECLARE_HOST_COMMAND(EC_CMD_VBOOT_HASH,
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host_command_vboot_hash,
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EC_VER_MASK(0));
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