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458 lines
13 KiB
458 lines
13 KiB
/*
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* Copyright (c) 2015-2022, 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 <stdint.h>
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#include <string.h>
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#include <platform_def.h>
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#include <common/debug.h>
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#include <common/tbbr/cot_def.h>
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#include <drivers/auth/auth_common.h>
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#include <drivers/auth/auth_mod.h>
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#include <drivers/auth/crypto_mod.h>
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#include <drivers/auth/img_parser_mod.h>
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#include <drivers/fwu/fwu.h>
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#include <lib/fconf/fconf_tbbr_getter.h>
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#include <plat/common/platform.h>
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/* ASN.1 tags */
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#define ASN1_INTEGER 0x02
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#define return_if_error(rc) \
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do { \
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if (rc != 0) { \
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return rc; \
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} \
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} while (0)
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#pragma weak plat_set_nv_ctr2
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#pragma weak plat_convert_pk
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static int cmp_auth_param_type_desc(const auth_param_type_desc_t *a,
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const auth_param_type_desc_t *b)
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{
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if ((a->type == b->type) && (a->cookie == b->cookie)) {
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return 0;
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}
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return 1;
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}
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/*
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* This function obtains the requested authentication parameter data from the
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* information extracted from the parent image after its authentication.
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*/
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static int auth_get_param(const auth_param_type_desc_t *param_type_desc,
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const auth_img_desc_t *img_desc,
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void **param, unsigned int *len)
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{
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int i;
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if (img_desc->authenticated_data == NULL)
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return 1;
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for (i = 0 ; i < COT_MAX_VERIFIED_PARAMS ; i++) {
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if (0 == cmp_auth_param_type_desc(param_type_desc,
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img_desc->authenticated_data[i].type_desc)) {
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*param = img_desc->authenticated_data[i].data.ptr;
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*len = img_desc->authenticated_data[i].data.len;
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return 0;
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}
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}
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return 1;
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}
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/*
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* Authenticate an image by matching the data hash
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*
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* This function implements 'AUTH_METHOD_HASH'. To authenticate an image using
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* this method, the image must contain:
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*
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* - The data to calculate the hash from
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*
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* The parent image must contain:
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*
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* - The hash to be matched with (including hash algorithm)
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*
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* For a successful authentication, both hashes must match. The function calls
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* the crypto-module to check this matching.
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*
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* Parameters:
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* param: parameters to perform the hash authentication
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* img_desc: pointer to image descriptor so we can know the image type
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* and parent image
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* img: pointer to image in memory
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* img_len: length of image (in bytes)
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*
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* Return:
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* 0 = success, Otherwise = error
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*/
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static int auth_hash(const auth_method_param_hash_t *param,
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const auth_img_desc_t *img_desc,
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void *img, unsigned int img_len)
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{
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void *data_ptr, *hash_der_ptr;
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unsigned int data_len, hash_der_len;
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int rc = 0;
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/* Get the hash from the parent image. This hash will be DER encoded
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* and contain the hash algorithm */
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rc = auth_get_param(param->hash, img_desc->parent,
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&hash_der_ptr, &hash_der_len);
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return_if_error(rc);
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/* Get the data to be hashed from the current image */
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rc = img_parser_get_auth_param(img_desc->img_type, param->data,
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img, img_len, &data_ptr, &data_len);
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return_if_error(rc);
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/* Ask the crypto module to verify this hash */
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rc = crypto_mod_verify_hash(data_ptr, data_len,
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hash_der_ptr, hash_der_len);
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return rc;
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}
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/*
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* Authenticate by digital signature
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*
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* This function implements 'AUTH_METHOD_SIG'. To authenticate an image using
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* this method, the image must contain:
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*
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* - Data to be signed
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* - Signature
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* - Signature algorithm
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*
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* We rely on the image parser module to extract this data from the image.
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* The parent image must contain:
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*
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* - Public key (or a hash of it)
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*
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* If the parent image contains only a hash of the key, we will try to obtain
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* the public key from the image itself (i.e. self-signed certificates). In that
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* case, the signature verification is considered just an integrity check and
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* the authentication is established by calculating the hash of the key and
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* comparing it with the hash obtained from the parent.
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*
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* If the image has no parent (NULL), it means it has to be authenticated using
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* the ROTPK stored in the platform. Again, this ROTPK could be the key itself
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* or a hash of it.
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*
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* Return: 0 = success, Otherwise = error
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*/
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static int auth_signature(const auth_method_param_sig_t *param,
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const auth_img_desc_t *img_desc,
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void *img, unsigned int img_len)
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{
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void *data_ptr, *pk_ptr, *pk_hash_ptr, *sig_ptr, *sig_alg_ptr;
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unsigned int data_len, pk_len, pk_hash_len, sig_len, sig_alg_len;
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unsigned int flags = 0;
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int rc = 0;
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/* Get the data to be signed from current image */
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rc = img_parser_get_auth_param(img_desc->img_type, param->data,
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img, img_len, &data_ptr, &data_len);
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return_if_error(rc);
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/* Get the signature from current image */
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rc = img_parser_get_auth_param(img_desc->img_type, param->sig,
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img, img_len, &sig_ptr, &sig_len);
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return_if_error(rc);
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/* Get the signature algorithm from current image */
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rc = img_parser_get_auth_param(img_desc->img_type, param->alg,
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img, img_len, &sig_alg_ptr, &sig_alg_len);
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return_if_error(rc);
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/* Get the public key from the parent. If there is no parent (NULL),
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* the certificate has been signed with the ROTPK, so we have to get
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* the PK from the platform */
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if (img_desc->parent) {
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rc = auth_get_param(param->pk, img_desc->parent,
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&pk_ptr, &pk_len);
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} else {
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rc = plat_get_rotpk_info(param->pk->cookie, &pk_ptr, &pk_len,
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&flags);
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}
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return_if_error(rc);
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if (flags & (ROTPK_IS_HASH | ROTPK_NOT_DEPLOYED)) {
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/* If the PK is a hash of the key or if the ROTPK is not
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deployed on the platform, retrieve the key from the image */
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pk_hash_ptr = pk_ptr;
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pk_hash_len = pk_len;
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rc = img_parser_get_auth_param(img_desc->img_type,
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param->pk, img, img_len,
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&pk_ptr, &pk_len);
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return_if_error(rc);
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/* Ask the crypto module to verify the signature */
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rc = crypto_mod_verify_signature(data_ptr, data_len,
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sig_ptr, sig_len,
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sig_alg_ptr, sig_alg_len,
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pk_ptr, pk_len);
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return_if_error(rc);
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if (flags & ROTPK_NOT_DEPLOYED) {
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NOTICE("ROTPK is not deployed on platform. "
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"Skipping ROTPK verification.\n");
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} else {
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/* platform may store the hash of a prefixed, suffixed or modified pk */
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rc = plat_convert_pk(pk_ptr, pk_len, &pk_ptr, &pk_len);
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return_if_error(rc);
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/* Ask the crypto-module to verify the key hash */
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rc = crypto_mod_verify_hash(pk_ptr, pk_len,
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pk_hash_ptr, pk_hash_len);
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}
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} else {
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/* Ask the crypto module to verify the signature */
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rc = crypto_mod_verify_signature(data_ptr, data_len,
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sig_ptr, sig_len,
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sig_alg_ptr, sig_alg_len,
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pk_ptr, pk_len);
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}
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return rc;
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}
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/*
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* Authenticate by Non-Volatile counter
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*
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* To protect the system against rollback, the platform includes a non-volatile
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* counter whose value can only be increased. All certificates include a counter
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* value that should not be lower than the value stored in the platform. If the
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* value is larger, the counter in the platform must be updated to the new value
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* (provided it has been authenticated).
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*
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* Return: 0 = success, Otherwise = error
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* Returns additionally,
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* cert_nv_ctr -> NV counter value present in the certificate
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* need_nv_ctr_upgrade = 0 -> platform NV counter upgrade is not needed
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* need_nv_ctr_upgrade = 1 -> platform NV counter upgrade is needed
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*/
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static int auth_nvctr(const auth_method_param_nv_ctr_t *param,
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const auth_img_desc_t *img_desc,
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void *img, unsigned int img_len,
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unsigned int *cert_nv_ctr,
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bool *need_nv_ctr_upgrade)
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{
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char *p;
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void *data_ptr = NULL;
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unsigned int data_len, len, i;
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unsigned int plat_nv_ctr;
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int rc = 0;
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bool is_trial_run = false;
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/* Get the counter value from current image. The AM expects the IPM
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* to return the counter value as a DER encoded integer */
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rc = img_parser_get_auth_param(img_desc->img_type, param->cert_nv_ctr,
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img, img_len, &data_ptr, &data_len);
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return_if_error(rc);
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/* Parse the DER encoded integer */
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assert(data_ptr);
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p = (char *)data_ptr;
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if (*p != ASN1_INTEGER) {
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/* Invalid ASN.1 integer */
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return 1;
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}
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p++;
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/* NV-counters are unsigned integers up to 32-bit */
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len = (unsigned int)(*p & 0x7f);
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if ((*p & 0x80) || (len > 4)) {
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return 1;
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}
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p++;
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/* Check the number is not negative */
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if (*p & 0x80) {
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return 1;
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}
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/* Convert to unsigned int. This code is for a little-endian CPU */
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*cert_nv_ctr = 0;
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for (i = 0; i < len; i++) {
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*cert_nv_ctr = (*cert_nv_ctr << 8) | *p++;
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}
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/* Get the counter from the platform */
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rc = plat_get_nv_ctr(param->plat_nv_ctr->cookie, &plat_nv_ctr);
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return_if_error(rc);
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if (*cert_nv_ctr < plat_nv_ctr) {
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/* Invalid NV-counter */
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return 1;
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} else if (*cert_nv_ctr > plat_nv_ctr) {
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#if PSA_FWU_SUPPORT && IMAGE_BL2
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is_trial_run = fwu_is_trial_run_state();
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#endif /* PSA_FWU_SUPPORT && IMAGE_BL2 */
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*need_nv_ctr_upgrade = !is_trial_run;
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}
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return 0;
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}
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int plat_set_nv_ctr2(void *cookie, const auth_img_desc_t *img_desc __unused,
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unsigned int nv_ctr)
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{
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return plat_set_nv_ctr(cookie, nv_ctr);
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}
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int plat_convert_pk(void *full_pk_ptr, unsigned int full_pk_len,
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void **hashed_pk_ptr, unsigned int *hashed_pk_len)
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{
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*hashed_pk_ptr = full_pk_ptr;
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*hashed_pk_len = full_pk_len;
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return 0;
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}
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/*
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* Return the parent id in the output parameter '*parent_id'
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*
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* Return value:
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* 0 = Image has parent, 1 = Image has no parent or parent is authenticated
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*/
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int auth_mod_get_parent_id(unsigned int img_id, unsigned int *parent_id)
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{
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const auth_img_desc_t *img_desc = NULL;
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assert(parent_id != NULL);
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/* Get the image descriptor */
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img_desc = FCONF_GET_PROPERTY(tbbr, cot, img_id);
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/* Check if the image has no parent (ROT) */
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if (img_desc->parent == NULL) {
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*parent_id = 0;
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return 1;
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}
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/* Check if the parent has already been authenticated */
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if (auth_img_flags[img_desc->parent->img_id] & IMG_FLAG_AUTHENTICATED) {
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*parent_id = 0;
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return 1;
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}
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*parent_id = img_desc->parent->img_id;
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return 0;
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}
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/*
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* Initialize the different modules in the authentication framework
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*/
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void auth_mod_init(void)
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{
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/* Check we have a valid CoT registered */
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assert(cot_desc_ptr != NULL);
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/* Image parser module */
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img_parser_init();
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}
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/*
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* Authenticate a certificate/image
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*
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* Return: 0 = success, Otherwise = error
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*/
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int auth_mod_verify_img(unsigned int img_id,
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void *img_ptr,
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unsigned int img_len)
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{
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const auth_img_desc_t *img_desc = NULL;
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const auth_method_desc_t *auth_method = NULL;
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void *param_ptr;
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unsigned int param_len;
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int rc, i;
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unsigned int cert_nv_ctr = 0;
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bool need_nv_ctr_upgrade = false;
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bool sig_auth_done = false;
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const auth_method_param_nv_ctr_t *nv_ctr_param = NULL;
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/* Get the image descriptor from the chain of trust */
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img_desc = FCONF_GET_PROPERTY(tbbr, cot, img_id);
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/* Ask the parser to check the image integrity */
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rc = img_parser_check_integrity(img_desc->img_type, img_ptr, img_len);
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return_if_error(rc);
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/* Authenticate the image using the methods indicated in the image
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* descriptor. */
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if (img_desc->img_auth_methods == NULL)
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return 1;
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for (i = 0 ; i < AUTH_METHOD_NUM ; i++) {
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auth_method = &img_desc->img_auth_methods[i];
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switch (auth_method->type) {
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case AUTH_METHOD_NONE:
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rc = 0;
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break;
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case AUTH_METHOD_HASH:
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rc = auth_hash(&auth_method->param.hash,
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img_desc, img_ptr, img_len);
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break;
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case AUTH_METHOD_SIG:
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rc = auth_signature(&auth_method->param.sig,
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img_desc, img_ptr, img_len);
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sig_auth_done = true;
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break;
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case AUTH_METHOD_NV_CTR:
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nv_ctr_param = &auth_method->param.nv_ctr;
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rc = auth_nvctr(nv_ctr_param,
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img_desc, img_ptr, img_len,
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&cert_nv_ctr, &need_nv_ctr_upgrade);
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break;
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default:
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/* Unknown authentication method */
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rc = 1;
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break;
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}
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return_if_error(rc);
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}
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/*
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* Do platform NV counter upgrade only if the certificate gets
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* authenticated, and platform NV-counter upgrade is needed.
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*/
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if (need_nv_ctr_upgrade && sig_auth_done) {
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rc = plat_set_nv_ctr2(nv_ctr_param->plat_nv_ctr->cookie,
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img_desc, cert_nv_ctr);
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return_if_error(rc);
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}
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/* Extract the parameters indicated in the image descriptor to
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* authenticate the children images. */
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if (img_desc->authenticated_data != NULL) {
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for (i = 0 ; i < COT_MAX_VERIFIED_PARAMS ; i++) {
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if (img_desc->authenticated_data[i].type_desc == NULL) {
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continue;
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}
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/* Get the parameter from the image parser module */
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rc = img_parser_get_auth_param(img_desc->img_type,
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img_desc->authenticated_data[i].type_desc,
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img_ptr, img_len, ¶m_ptr, ¶m_len);
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return_if_error(rc);
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/* Check parameter size */
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if (param_len > img_desc->authenticated_data[i].data.len) {
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return 1;
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}
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/* Copy the parameter for later use */
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memcpy((void *)img_desc->authenticated_data[i].data.ptr,
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(void *)param_ptr, param_len);
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}
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}
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/* Mark image as authenticated */
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auth_img_flags[img_desc->img_id] |= IMG_FLAG_AUTHENTICATED;
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return 0;
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}
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