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198 lines
6.9 KiB
198 lines
6.9 KiB
/*
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* Copyright 2014 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "hmac_operation.h"
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#include <openssl/evp.h>
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#include <openssl/hmac.h>
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#include <keymaster/km_openssl/hmac_key.h>
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#include <keymaster/km_openssl/openssl_err.h>
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#include <keymaster/km_openssl/openssl_utils.h>
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#if defined(OPENSSL_IS_BORINGSSL)
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#include <openssl/mem.h>
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typedef size_t openssl_size_t;
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#else
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typedef int openssl_size_t;
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#endif
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namespace keymaster {
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OperationPtr HmacOperationFactory::CreateOperation(Key&& key, const AuthorizationSet& begin_params,
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keymaster_error_t* error) {
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uint32_t min_mac_length_bits;
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if (!key.authorizations().GetTagValue(TAG_MIN_MAC_LENGTH, &min_mac_length_bits)) {
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LOG_E("HMAC key must have KM_TAG_MIN_MAC_LENGTH", 0);
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*error = KM_ERROR_INVALID_KEY_BLOB;
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return nullptr;
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}
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uint32_t mac_length_bits = UINT32_MAX;
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if (begin_params.GetTagValue(TAG_MAC_LENGTH, &mac_length_bits)) {
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if (purpose() == KM_PURPOSE_VERIFY) {
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LOG_E("MAC length may not be specified for verify", 0);
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*error = KM_ERROR_INVALID_ARGUMENT;
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return nullptr;
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}
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if ((mac_length_bits % 8) != 0) {
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LOG_E("MAC length must be a multiple of 8", mac_length_bits);
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*error = KM_ERROR_UNSUPPORTED_MAC_LENGTH;
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return nullptr;
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}
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} else {
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if (purpose() == KM_PURPOSE_SIGN) {
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*error = KM_ERROR_MISSING_MAC_LENGTH;
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return nullptr;
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}
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}
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keymaster_digest_t digest;
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if (!key.authorizations().GetTagValue(TAG_DIGEST, &digest)) {
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LOG_E("%d digests found in HMAC key authorizations; must be exactly 1",
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begin_params.GetTagCount(TAG_DIGEST));
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*error = KM_ERROR_INVALID_KEY_BLOB;
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return nullptr;
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}
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UniquePtr<HmacOperation> op(new (std::nothrow) HmacOperation(
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move(key), purpose(), digest, mac_length_bits / 8, min_mac_length_bits / 8));
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if (!op.get())
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*error = KM_ERROR_MEMORY_ALLOCATION_FAILED;
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else
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*error = op->error();
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if (*error != KM_ERROR_OK) return nullptr;
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return move(op);
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}
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static keymaster_digest_t supported_digests[] = {KM_DIGEST_SHA1, KM_DIGEST_SHA_2_224,
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KM_DIGEST_SHA_2_256, KM_DIGEST_SHA_2_384,
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KM_DIGEST_SHA_2_512};
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const keymaster_digest_t* HmacOperationFactory::SupportedDigests(size_t* digest_count) const {
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*digest_count = array_length(supported_digests);
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return supported_digests;
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}
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HmacOperation::HmacOperation(Key&& key, keymaster_purpose_t purpose, keymaster_digest_t digest,
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size_t mac_length, size_t min_mac_length)
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: Operation(purpose, key.hw_enforced_move(), key.sw_enforced_move()), error_(KM_ERROR_OK),
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mac_length_(mac_length), min_mac_length_(min_mac_length) {
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// Initialize CTX first, so dtor won't crash even if we error out later.
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HMAC_CTX_init(&ctx_);
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const EVP_MD* md = nullptr;
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switch (digest) {
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case KM_DIGEST_NONE:
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case KM_DIGEST_MD5:
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error_ = KM_ERROR_UNSUPPORTED_DIGEST;
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break;
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case KM_DIGEST_SHA1:
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md = EVP_sha1();
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break;
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case KM_DIGEST_SHA_2_224:
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md = EVP_sha224();
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break;
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case KM_DIGEST_SHA_2_256:
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md = EVP_sha256();
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break;
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case KM_DIGEST_SHA_2_384:
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md = EVP_sha384();
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break;
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case KM_DIGEST_SHA_2_512:
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md = EVP_sha512();
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break;
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}
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if (md == nullptr) {
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error_ = KM_ERROR_UNSUPPORTED_DIGEST;
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return;
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}
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if (purpose == KM_PURPOSE_SIGN) {
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if (mac_length > EVP_MD_size(md) || mac_length < kMinHmacLengthBits / 8) {
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error_ = KM_ERROR_UNSUPPORTED_MAC_LENGTH;
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return;
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}
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if (mac_length < min_mac_length) {
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error_ = KM_ERROR_INVALID_MAC_LENGTH;
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return;
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}
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}
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KeymasterKeyBlob blob = key.key_material_move();
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HMAC_Init_ex(&ctx_, blob.key_material, blob.key_material_size, md, nullptr /* engine */);
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}
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HmacOperation::~HmacOperation() {
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HMAC_CTX_cleanup(&ctx_);
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}
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keymaster_error_t HmacOperation::Begin(const AuthorizationSet& /* input_params */,
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AuthorizationSet* /* output_params */) {
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auto rc = GenerateRandom(reinterpret_cast<uint8_t*>(&operation_handle_),
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(size_t)sizeof(operation_handle_));
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if (rc != KM_ERROR_OK) return rc;
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return error_;
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}
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keymaster_error_t HmacOperation::Update(const AuthorizationSet& /* additional_params */,
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const Buffer& input, AuthorizationSet* /* output_params */,
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Buffer* /* output */, size_t* input_consumed) {
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if (!HMAC_Update(&ctx_, input.peek_read(), input.available_read()))
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return TranslateLastOpenSslError();
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*input_consumed = input.available_read();
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return KM_ERROR_OK;
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}
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keymaster_error_t HmacOperation::Abort() {
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return KM_ERROR_OK;
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}
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keymaster_error_t HmacOperation::Finish(const AuthorizationSet& additional_params,
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const Buffer& input, const Buffer& signature,
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AuthorizationSet* /* output_params */, Buffer* output) {
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keymaster_error_t error = UpdateForFinish(additional_params, input);
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if (error != KM_ERROR_OK) return error;
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uint8_t digest[EVP_MAX_MD_SIZE];
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unsigned int digest_len;
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if (!HMAC_Final(&ctx_, digest, &digest_len)) return TranslateLastOpenSslError();
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switch (purpose()) {
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case KM_PURPOSE_SIGN:
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if (mac_length_ > digest_len) return KM_ERROR_UNSUPPORTED_MAC_LENGTH;
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if (!output->reserve(mac_length_) || !output->write(digest, mac_length_))
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return KM_ERROR_MEMORY_ALLOCATION_FAILED;
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return KM_ERROR_OK;
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case KM_PURPOSE_VERIFY: {
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size_t siglen = signature.available_read();
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if (siglen > digest_len || siglen < kMinHmacLengthBits / 8)
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return KM_ERROR_UNSUPPORTED_MAC_LENGTH;
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if (siglen < min_mac_length_) return KM_ERROR_INVALID_MAC_LENGTH;
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if (CRYPTO_memcmp(signature.peek_read(), digest, siglen) != 0)
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return KM_ERROR_VERIFICATION_FAILED;
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return KM_ERROR_OK;
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}
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default:
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return KM_ERROR_UNSUPPORTED_PURPOSE;
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}
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}
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} // namespace keymaster
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