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Tink is a small cryptographic library that provides a safe, simple, agile and fast way to accomplish some common cryptographic tasks.
// Copyright 2024 Google LLC
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
////////////////////////////////////////////////////////////////////////////////
package com.google.crypto.tink.hybrid;
import com.google.crypto.tink.Configuration;
import com.google.crypto.tink.HybridDecrypt;
import com.google.crypto.tink.HybridEncrypt;
import com.google.crypto.tink.config.internal.TinkFipsUtil;
import com.google.crypto.tink.hybrid.internal.HpkeDecrypt;
import com.google.crypto.tink.hybrid.internal.HpkeEncrypt;
import com.google.crypto.tink.internal.InternalConfiguration;
import com.google.crypto.tink.internal.PrimitiveConstructor;
import com.google.crypto.tink.internal.PrimitiveRegistry;
import com.google.crypto.tink.subtle.EciesAeadHkdfHybridDecrypt;
import com.google.crypto.tink.subtle.EciesAeadHkdfHybridEncrypt;
import java.security.GeneralSecurityException;
/**
* HybridConfigurationV0 contains the following algorithms for HybridEncrypt/HybridDecrypt:
*
*
* - EciesAeadHkdf
*
- Hpke
*
*/
/* Placeholder for internally public; DO NOT CHANGE. */ class HybridConfigurationV0 {
private HybridConfigurationV0() {}
private static final InternalConfiguration INTERNAL_CONFIGURATION = create();
private static InternalConfiguration create() {
try {
PrimitiveRegistry.Builder builder = PrimitiveRegistry.builder();
// Register HybridEncrypt wrapper and concrete primitives.
HybridEncryptWrapper.registerToInternalPrimitiveRegistry(builder);
builder.registerPrimitiveConstructor(
PrimitiveConstructor.create(
EciesAeadHkdfHybridEncrypt::create, EciesPublicKey.class, HybridEncrypt.class));
builder.registerPrimitiveConstructor(
PrimitiveConstructor.create(
HpkeEncrypt::create, HpkePublicKey.class, HybridEncrypt.class));
// Register HybridDecrypt wrapper and concrete primitives.
HybridDecryptWrapper.registerToInternalPrimitiveRegistry(builder);
builder.registerPrimitiveConstructor(
PrimitiveConstructor.create(
EciesAeadHkdfHybridDecrypt::create, EciesPrivateKey.class, HybridDecrypt.class));
builder.registerPrimitiveConstructor(
PrimitiveConstructor.create(
HpkeDecrypt::create, HpkePrivateKey.class, HybridDecrypt.class));
return InternalConfiguration.createFromPrimitiveRegistry(builder.build());
} catch (GeneralSecurityException e) {
throw new IllegalStateException(e);
}
}
/**
* Returns an instance of the {@code HybridConfigurationV0}.
*/
public static Configuration get() throws GeneralSecurityException {
if (TinkFipsUtil.useOnlyFips()) {
throw new GeneralSecurityException(
"Cannot use non-FIPS-compliant HybridConfigurationV0 in FIPS mode");
}
return INTERNAL_CONFIGURATION;
}
}
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