Create correct subclass of RSAPrivateKey from PKCS#8 key specs. (#1021) Previous behaviour: Always create an instance of RSAPrivateKey, which assumes only modulus and private exponent are available and thus loses data when serialized using Java serialization. New behaviour: If the KeySpec is PKCS#8 then create an instance of RSAPrivateCRTKey as all CRT params should be present. This ensures Java serialisation works correctly. Aside from serialization, the change should have no impact. Conscrypt OpenSSLRSAPrivateCrtKey is a subclass of OpenSSLRSAPrivateKey and both delegate all actual crypto operations to BoringSSL. Adjusted tests to match: KeyFactoryTestRSACrt was not being run on OpenJDK which would have revealed this previously and after this change KeyFactoryTestRSA would be testing RSAPrivateCRTKey rather than RSAPrivateKey without changes.
Conscrypt is a Java Security Provider (JSP) that implements parts of the Java Cryptography Extension (JCE) and Java Secure Socket Extension (JSSE). It uses BoringSSL to provide cryptographic primitives and Transport Layer Security (TLS) for Java applications on Android and OpenJDK. See the capabilities documentation for detailed information on what is provided.
The core SSL engine has borrowed liberally from the Netty project and their work on netty-tcnative, giving Conscrypt similar performance.
Conscrypt supports Java 7 or later on OpenJDK and Gingerbread (API Level 9) or later on Android. The build artifacts are available on Maven Central.
You can download the JARs directly from the Maven repositories.
The OpenJDK artifacts are platform-dependent since each embeds a native library for a particular platform. We publish artifacts to Maven Central for the following platforms:
| Classifier | OS | Architecture |
|---|---|---|
| linux-x86_64 | Linux | x86_64 (64-bit) |
| osx-x86_64 | Mac | x86_64 (64-bit) |
| windows-x86 | Windows | x86 (32-bit) |
| windows-x86_64 | Windows | x86_64 (64-bit) |
Use the os-maven-plugin to add the dependency:
<build> <extensions> <extension> <groupId>kr.motd.maven</groupId> <artifactId>os-maven-plugin</artifactId> <version>1.4.1.Final</version> </extension> </extensions> </build> <dependency> <groupId>org.conscrypt</groupId> <artifactId>conscrypt-openjdk</artifactId> <version>2.5.2</version> <classifier>${os.detected.classifier}</classifier> </dependency>
Use the osdetector-gradle-plugin (which is a wrapper around the os-maven-plugin) to add the dependency:
buildscript { repositories { mavenCentral() } dependencies { classpath 'com.google.gradle:osdetector-gradle-plugin:1.4.0' } } // Use the osdetector-gradle-plugin apply plugin: "com.google.osdetector" dependencies { compile 'org.conscrypt:conscrypt-openjdk:2.5.2:' + osdetector.classifier }
For convenience, we also publish an Uber JAR to Maven Central that contains the shared libraries for all of the published platforms. While the overall size of the JAR is larger than depending on a platform-specific artifact, it greatly simplifies the task of dependency management for most platforms.
To depend on the uber jar, simply use the conscrypt-openjdk-uber artifacts.
<dependency> <groupId>org.conscrypt</groupId> <artifactId>conscrypt-openjdk-uber</artifactId> <version>2.5.2</version> </dependency>
dependencies { compile 'org.conscrypt:conscrypt-openjdk-uber:2.5.2' }
The Android AAR file contains native libraries for x86, x86_64, armeabi-v7a, and arm64-v8a.
dependencies { implementation 'org.conscrypt:conscrypt-android:2.5.2' }
If you are making changes to Conscrypt, see the building instructions.