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The test should bail immediately on an unrecoverable error. Review URL: http://codereview.chromium.org/647027
186 lines
6.0 KiB
C
186 lines
6.0 KiB
C
/* Copyright (c) 2010 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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* Tests for firmware image library.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include "file_keys.h"
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#include "firmware_image.h"
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#include "rsa_utility.h"
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#include "sha_utility.h"
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#include "utility.h"
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int TEST_EQ(int result, int expected_result, char* testname) {
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if (result == expected_result) {
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fprintf(stderr, "%s Test \e[1;32mSUCCEEDED\e[m\n", testname);
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return 1;
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}
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else {
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fprintf(stderr, "%s Test \e[0;31mFAILED\e[m\n", testname);
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return 0;
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}
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}
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FirmwareImage* GenerateTestFirmwareImage(int algorithm,
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uint8_t* sign_key,
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int key_version,
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int firmware_version,
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int firmware_len) {
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FirmwareImage* image = FirmwareImageNew();
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uint8_t* header_hash;
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DigestContext ctx;
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Memcpy(image->magic, FIRMWARE_MAGIC, FIRMWARE_MAGIC_SIZE);
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image->sign_algorithm = algorithm;
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image->sign_key = (uint8_t*) Malloc(
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RSAProcessedKeySize(image->sign_algorithm));
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Memcpy(image->sign_key, sign_key, RSAProcessedKeySize(image->sign_algorithm));
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image->key_version = key_version;
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/* Calculate SHA-512 digest on header and populate header_hash. */
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DigestInit(&ctx, ROOT_SIGNATURE_ALGORITHM);
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DigestUpdate(&ctx, (uint8_t*) &image->header_len,
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sizeof(image->header_len));
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DigestUpdate(&ctx, (uint8_t*) &image->sign_algorithm,
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sizeof(image->sign_algorithm));
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DigestUpdate(&ctx, image->sign_key,
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RSAProcessedKeySize(image->sign_algorithm));
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DigestUpdate(&ctx, (uint8_t*) &image->key_version,
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sizeof(image->key_version));
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header_hash = DigestFinal(&ctx);
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Memcpy(image->header_hash, header_hash, SHA512_DIGEST_SIZE);
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Free(header_hash);
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/* Update correct header length. */
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image->header_len = (sizeof(image->header_len) +
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sizeof(image->sign_algorithm) +
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RSAProcessedKeySize(image->sign_algorithm) +
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sizeof(image->key_version) +
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sizeof(image->header_hash));
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/* Populate firmware and preamble with dummy data. */
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image->firmware_version = firmware_version;
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image->firmware_len = firmware_len;
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image->preamble_signature = image->firmware_signature = NULL;
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Memset(image->preamble, 'P', FIRMWARE_PREAMBLE_SIZE);
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image->firmware_data = Malloc(image->firmware_len);
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Memset(image->firmware_data, 'F', image->firmware_len);
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return image;
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}
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#define DEV_MODE_ENABLED 1
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#define DEV_MODE_DISABLED 0
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/* Normal Firmware Verification Tests. */
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int VerifyFirmwareTest(FirmwareImage* image, RSAPublicKey* root_key) {
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int success = 1;
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if (!TEST_EQ(VerifyFirmware(root_key, image, DEV_MODE_ENABLED),
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VERIFY_SUCCESS,
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"Normal Verification (Dev Mode)"))
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success = 0;
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if (!TEST_EQ(VerifyFirmware(root_key, image, DEV_MODE_DISABLED),
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VERIFY_SUCCESS,
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"Normal Verification (Trusted)"))
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success = 0;
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return success;
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}
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/* Tampered Firmware Verification Tests. */
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int VerifyFirmwareTamperTest(FirmwareImage* image, RSAPublicKey* root_key) {
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int success = 1;
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fprintf(stderr, "Tampering with firmware preamble....\n");
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image->firmware_version = 0;
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if (!TEST_EQ(VerifyFirmware(root_key, image, DEV_MODE_ENABLED),
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VERIFY_PREAMBLE_SIGNATURE_FAILED,
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"Firmware Preamble Tamper Verification (Dev Mode)"))
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success = 0;
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if (!TEST_EQ(VerifyFirmware(root_key, image, DEV_MODE_DISABLED),
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VERIFY_PREAMBLE_SIGNATURE_FAILED,
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"Firmware Preamble Tamper Verification (Trusted)"))
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success = 0;
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image->firmware_version = 1;
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image->firmware_data[0] = 'T';
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if (!TEST_EQ(VerifyFirmware(root_key, image, DEV_MODE_ENABLED),
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VERIFY_FIRMWARE_SIGNATURE_FAILED,
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"Firmware Tamper Verification (Dev Mode)"))
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success = 0;
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if (!TEST_EQ(VerifyFirmware(root_key, image, DEV_MODE_DISABLED),
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VERIFY_FIRMWARE_SIGNATURE_FAILED,
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"Firmware Tamper Verification (Trusted)"))
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success = 0;
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image->firmware_data[0] = 'F';
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fprintf(stderr, "Tampering with root key signature...\n");
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image->key_signature[0] = 0xFF;
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image->key_signature[1] = 0x00;
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if (!TEST_EQ(VerifyFirmware(root_key, image, DEV_MODE_ENABLED),
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VERIFY_SUCCESS,
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"Root Signature Tamper Verification (Dev Mode)"))
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success = 0;
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if (!TEST_EQ(VerifyFirmware(root_key, image, DEV_MODE_DISABLED),
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VERIFY_ROOT_SIGNATURE_FAILED,
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"Root Signature Tamper Verification (Trusted)"))
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success = 0;
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return success;
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}
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int main(int argc, char* argv[]) {
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int len;
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uint8_t* sign_key_buf = NULL;
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FirmwareImage* image = NULL;
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RSAPublicKey* root_key = NULL;
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int error_code = 1;
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if(argc != 6) {
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fprintf(stderr, "Usage: %s <algorithm> <root key> <processed root pubkey>"
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" <signing key> <processed signing key>\n", argv[0]);
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return -1;
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}
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/* Read verification keys and create a test image. */
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root_key = RSAPublicKeyFromFile(argv[3]);
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sign_key_buf = BufferFromFile(argv[5], &len);
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image = GenerateTestFirmwareImage(atoi(argv[1]), sign_key_buf, 1,
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1, 1000);
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if (!root_key || !sign_key_buf || !image) {
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error_code = 1;
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goto failure;
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}
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/* Generate and populate signatures. */
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if (!AddKeySignature(image, argv[2])) {
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fprintf(stderr, "Couldn't create key signature.\n");
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error_code = 1;
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goto failure;
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}
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if (!AddFirmwareSignature(image, argv[4], image->sign_algorithm)) {
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fprintf(stderr, "Couldn't create firmware and preamble signature.\n");
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error_code = 1;
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goto failure;
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}
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if (!VerifyFirmwareTest(image, root_key))
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error_code = 255;
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if (!VerifyFirmwareTamperTest(image, root_key))
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error_code = 255;
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failure:
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Free(root_key);
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Free(sign_key_buf);
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Free(image);
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return error_code;
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}
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