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294 lines
12 KiB
294 lines
12 KiB
/*
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* Copyright 2015 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 <keymaster/km_openssl/ec_key_factory.h>
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#include <openssl/evp.h>
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#include <keymaster/keymaster_context.h>
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#include <keymaster/km_openssl/ec_key.h>
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#include <keymaster/km_openssl/ecdh_operation.h>
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#include <keymaster/km_openssl/ecdsa_operation.h>
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#include <keymaster/km_openssl/openssl_err.h>
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#include <keymaster/operation.h>
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namespace keymaster {
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static EcdsaSignOperationFactory sign_factory;
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static EcdsaVerifyOperationFactory verify_factory;
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static EcdhOperationFactory agree_key_factory;
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OperationFactory* EcKeyFactory::GetOperationFactory(keymaster_purpose_t purpose) const {
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switch (purpose) {
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case KM_PURPOSE_SIGN:
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return &sign_factory;
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case KM_PURPOSE_VERIFY:
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return &verify_factory;
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case KM_PURPOSE_AGREE_KEY:
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return &agree_key_factory;
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default:
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return nullptr;
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}
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}
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/* static */
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keymaster_error_t EcKeyFactory::GetCurveAndSize(const AuthorizationSet& key_description,
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keymaster_ec_curve_t* curve,
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uint32_t* key_size_bits) {
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if (!key_description.GetTagValue(TAG_EC_CURVE, curve)) {
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// Curve not specified. Fall back to deducing curve from key size.
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if (!key_description.GetTagValue(TAG_KEY_SIZE, key_size_bits)) {
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LOG_E("%s", "No curve or key size specified for EC key generation");
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return KM_ERROR_UNSUPPORTED_KEY_SIZE;
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}
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keymaster_error_t error = EcKeySizeToCurve(*key_size_bits, curve);
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if (error != KM_ERROR_OK) {
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return KM_ERROR_UNSUPPORTED_KEY_SIZE;
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}
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} else {
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keymaster_error_t error = EcCurveToKeySize(*curve, key_size_bits);
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if (error != KM_ERROR_OK) {
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return error;
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}
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uint32_t tag_key_size_bits;
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if (key_description.GetTagValue(TAG_KEY_SIZE, &tag_key_size_bits) &&
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*key_size_bits != tag_key_size_bits) {
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LOG_E("Curve key size %d and specified key size %d don't match", key_size_bits,
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tag_key_size_bits);
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return KM_ERROR_INVALID_ARGUMENT;
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}
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}
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return KM_ERROR_OK;
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}
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keymaster_error_t EcKeyFactory::GenerateKey(const AuthorizationSet& key_description,
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UniquePtr<Key> attest_key, //
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const KeymasterBlob& issuer_subject,
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KeymasterKeyBlob* key_blob,
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AuthorizationSet* hw_enforced,
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AuthorizationSet* sw_enforced,
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CertificateChain* cert_chain) const {
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if (!key_blob || !hw_enforced || !sw_enforced) return KM_ERROR_OUTPUT_PARAMETER_NULL;
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AuthorizationSet authorizations(key_description);
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keymaster_ec_curve_t ec_curve;
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uint32_t key_size;
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keymaster_error_t error = GetCurveAndSize(authorizations, &ec_curve, &key_size);
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if (error != KM_ERROR_OK) {
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return error;
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} else if (!authorizations.Contains(TAG_KEY_SIZE, key_size)) {
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authorizations.push_back(TAG_KEY_SIZE, key_size);
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} else if (!authorizations.Contains(TAG_EC_CURVE, ec_curve)) {
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authorizations.push_back(TAG_EC_CURVE, ec_curve);
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}
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UniquePtr<EC_KEY, EC_KEY_Delete> ec_key(EC_KEY_new());
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UniquePtr<EVP_PKEY, EVP_PKEY_Delete> pkey(EVP_PKEY_new());
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if (ec_key.get() == nullptr || pkey.get() == nullptr) return KM_ERROR_MEMORY_ALLOCATION_FAILED;
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UniquePtr<EC_GROUP, EC_GROUP_Delete> group(ChooseGroup(ec_curve));
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if (group.get() == nullptr) {
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LOG_E("Unable to get EC group for curve %d", ec_curve);
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return KM_ERROR_UNSUPPORTED_KEY_SIZE;
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}
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#if !defined(OPENSSL_IS_BORINGSSL)
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EC_GROUP_set_point_conversion_form(group.get(), POINT_CONVERSION_UNCOMPRESSED);
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EC_GROUP_set_asn1_flag(group.get(), OPENSSL_EC_NAMED_CURVE);
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#endif
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if (EC_KEY_set_group(ec_key.get(), group.get()) != 1 ||
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EC_KEY_generate_key(ec_key.get()) != 1 || EC_KEY_check_key(ec_key.get()) < 0) {
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return TranslateLastOpenSslError();
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}
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if (EVP_PKEY_set1_EC_KEY(pkey.get(), ec_key.get()) != 1) return TranslateLastOpenSslError();
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KeymasterKeyBlob key_material;
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error = EvpKeyToKeyMaterial(pkey.get(), &key_material);
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if (error != KM_ERROR_OK) return error;
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error = blob_maker_.CreateKeyBlob(authorizations, KM_ORIGIN_GENERATED, key_material, key_blob,
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hw_enforced, sw_enforced);
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if (error != KM_ERROR_OK) return error;
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if (context_.GetKmVersion() < KmVersion::KEYMINT_1) return KM_ERROR_OK;
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if (!cert_chain) return KM_ERROR_UNEXPECTED_NULL_POINTER;
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EcKey key(*hw_enforced, *sw_enforced, this, move(ec_key));
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if (key_description.Contains(TAG_ATTESTATION_CHALLENGE)) {
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*cert_chain = context_.GenerateAttestation(key, key_description, move(attest_key),
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issuer_subject, &error);
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} else if (attest_key.get() != nullptr) {
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return KM_ERROR_ATTESTATION_CHALLENGE_MISSING;
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} else {
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*cert_chain = context_.GenerateSelfSignedCertificate(
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key, key_description,
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!key_description.Contains(TAG_PURPOSE, KM_PURPOSE_SIGN) /* fake_signature */, &error);
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}
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return error;
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}
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keymaster_error_t EcKeyFactory::ImportKey(const AuthorizationSet& key_description, //
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keymaster_key_format_t input_key_material_format,
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const KeymasterKeyBlob& input_key_material,
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UniquePtr<Key> attest_key, //
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const KeymasterBlob& issuer_subject,
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KeymasterKeyBlob* output_key_blob,
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AuthorizationSet* hw_enforced,
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AuthorizationSet* sw_enforced,
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CertificateChain* cert_chain) const {
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if (!output_key_blob || !hw_enforced || !sw_enforced) return KM_ERROR_OUTPUT_PARAMETER_NULL;
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AuthorizationSet authorizations;
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uint32_t key_size;
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keymaster_error_t error = UpdateImportKeyDescription(
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key_description, input_key_material_format, input_key_material, &authorizations, &key_size);
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if (error != KM_ERROR_OK) return error;
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error = blob_maker_.CreateKeyBlob(authorizations, KM_ORIGIN_IMPORTED, input_key_material,
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output_key_blob, hw_enforced, sw_enforced);
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if (error != KM_ERROR_OK) return error;
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if (context_.GetKmVersion() < KmVersion::KEYMINT_1) return KM_ERROR_OK;
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if (!cert_chain) return KM_ERROR_UNEXPECTED_NULL_POINTER;
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EVP_PKEY_Ptr pkey;
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error = KeyMaterialToEvpKey(KM_KEY_FORMAT_PKCS8, input_key_material, KM_ALGORITHM_EC, &pkey);
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if (error != KM_ERROR_OK) return error;
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EC_KEY_Ptr ec_key(EVP_PKEY_get1_EC_KEY(pkey.get()));
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if (!ec_key.get()) return KM_ERROR_INVALID_ARGUMENT;
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EcKey key(*hw_enforced, *sw_enforced, this, move(ec_key));
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if (key_description.Contains(KM_TAG_ATTESTATION_CHALLENGE)) {
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*cert_chain = context_.GenerateAttestation(key, key_description, move(attest_key),
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issuer_subject, &error);
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} else if (attest_key.get() != nullptr) {
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return KM_ERROR_ATTESTATION_CHALLENGE_MISSING;
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} else {
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*cert_chain = context_.GenerateSelfSignedCertificate(
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key, key_description,
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!key_description.Contains(TAG_PURPOSE, KM_PURPOSE_SIGN) /* fake_signature */, &error);
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}
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return error;
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}
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keymaster_error_t EcKeyFactory::UpdateImportKeyDescription(const AuthorizationSet& key_description,
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keymaster_key_format_t key_format,
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const KeymasterKeyBlob& key_material,
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AuthorizationSet* updated_description,
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uint32_t* key_size_bits) const {
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if (!updated_description || !key_size_bits) return KM_ERROR_OUTPUT_PARAMETER_NULL;
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UniquePtr<EVP_PKEY, EVP_PKEY_Delete> pkey;
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keymaster_error_t error =
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KeyMaterialToEvpKey(key_format, key_material, keymaster_key_type(), &pkey);
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if (error != KM_ERROR_OK) return error;
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UniquePtr<EC_KEY, EC_KEY_Delete> ec_key(EVP_PKEY_get1_EC_KEY(pkey.get()));
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if (!ec_key.get()) return TranslateLastOpenSslError();
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updated_description->Reinitialize(key_description);
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size_t extracted_key_size_bits;
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error = ec_get_group_size(EC_KEY_get0_group(ec_key.get()), &extracted_key_size_bits);
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if (error != KM_ERROR_OK) return error;
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*key_size_bits = extracted_key_size_bits;
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if (!updated_description->GetTagValue(TAG_KEY_SIZE, key_size_bits)) {
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updated_description->push_back(TAG_KEY_SIZE, extracted_key_size_bits);
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} else if (*key_size_bits != extracted_key_size_bits) {
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return KM_ERROR_IMPORT_PARAMETER_MISMATCH;
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}
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keymaster_ec_curve_t curve_from_size;
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error = EcKeySizeToCurve(*key_size_bits, &curve_from_size);
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if (error != KM_ERROR_OK) return error;
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keymaster_ec_curve_t curve;
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if (!updated_description->GetTagValue(TAG_EC_CURVE, &curve)) {
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updated_description->push_back(TAG_EC_CURVE, curve_from_size);
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} else if (curve_from_size != curve) {
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return KM_ERROR_IMPORT_PARAMETER_MISMATCH;
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}
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keymaster_algorithm_t algorithm = KM_ALGORITHM_EC;
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if (!updated_description->GetTagValue(TAG_ALGORITHM, &algorithm)) {
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updated_description->push_back(TAG_ALGORITHM, KM_ALGORITHM_EC);
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} else if (algorithm != KM_ALGORITHM_EC) {
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return KM_ERROR_IMPORT_PARAMETER_MISMATCH;
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}
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return KM_ERROR_OK;
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}
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/* static */
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EC_GROUP* EcKeyFactory::ChooseGroup(size_t key_size_bits) {
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switch (key_size_bits) {
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case 224:
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return EC_GROUP_new_by_curve_name(NID_secp224r1);
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break;
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case 256:
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return EC_GROUP_new_by_curve_name(NID_X9_62_prime256v1);
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break;
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case 384:
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return EC_GROUP_new_by_curve_name(NID_secp384r1);
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break;
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case 521:
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return EC_GROUP_new_by_curve_name(NID_secp521r1);
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break;
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default:
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return nullptr;
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break;
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}
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}
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/* static */
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EC_GROUP* EcKeyFactory::ChooseGroup(keymaster_ec_curve_t ec_curve) {
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switch (ec_curve) {
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case KM_EC_CURVE_P_224:
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return EC_GROUP_new_by_curve_name(NID_secp224r1);
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break;
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case KM_EC_CURVE_P_256:
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return EC_GROUP_new_by_curve_name(NID_X9_62_prime256v1);
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break;
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case KM_EC_CURVE_P_384:
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return EC_GROUP_new_by_curve_name(NID_secp384r1);
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break;
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case KM_EC_CURVE_P_521:
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return EC_GROUP_new_by_curve_name(NID_secp521r1);
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break;
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default:
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return nullptr;
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break;
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}
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}
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keymaster_error_t EcKeyFactory::CreateEmptyKey(AuthorizationSet&& hw_enforced,
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AuthorizationSet&& sw_enforced,
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UniquePtr<AsymmetricKey>* key) const {
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key->reset(new (std::nothrow) EcKey(move(hw_enforced), move(sw_enforced), this));
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if (!(*key)) return KM_ERROR_MEMORY_ALLOCATION_FAILED;
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return KM_ERROR_OK;
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}
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} // namespace keymaster
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