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okhttp-tls/src/main/kotlin/okhttp3/tls/internal/der/CertificateAdapters.kt
else -> null } } /** * ``` * AlgorithmIdentifier ::= SEQUENCE { * algorithm OBJECT IDENTIFIER, * parameters ANY DEFINED BY algorithm OPTIONAL * } * ``` */ internal val algorithmIdentifier: BasicDerAdapter<AlgorithmIdentifier> = Adapters.sequence( "AlgorithmIdentifier",
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okhttp-tls/src/test/java/okhttp3/tls/internal/der/DerCertificatesTest.kt
) } /** Converts public key bytes to SubjectPublicKeyInfo bytes. */ private fun encodeKey( algorithm: String, publicKeyBytes: ByteString, ): ByteString { val subjectPublicKeyInfo = SubjectPublicKeyInfo( algorithm = AlgorithmIdentifier(algorithm = algorithm, parameters = null), subjectPublicKey = BitString(publicKeyBytes, 0), )
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docs/distributed/DESIGN.md
- *If total drives has many common divisors the algorithm chooses the minimum amounts of erasure sets possible for a erasure set size of any N*. In the example with 1024 drives - 4, 8, 16 are GCD factors. With 16 drives we get a total of 64 possible sets, with 8 drives we get a total of 128 possible sets, with 4 drives we get a total of 256 possible sets. So algorithm automatically chooses 64 sets, which is *16* 64 = 1024* drives in total.
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okhttp-tls/src/main/kotlin/okhttp3/tls/internal/der/Certificate.kt
val extensions: List<Extension>, ) { /** * Returns the standard name of this certificate's signature algorithm as specified by * [Signature.getInstance]. Typical values are like "SHA256WithRSA". */ val signatureAlgorithmName: String get() { return when (signature.algorithm) { ObjectIdentifiers.SHA256_WITH_RSA_ENCRYPTION -> "SHA256WithRSA"
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docs/sts/tls.md
35:ac:60:46:ad:8d:de:18:dc:0b:f6:98:14:ee:89:e8 Signature Algorithm: ED25519 Issuer: CN = consoleAdmin Validity Not Before: Jul 19 15:08:44 2021 GMT Not After : Aug 18 15:08:44 2021 GMT Subject: CN = consoleAdmin Subject Public Key Info: Public Key Algorithm: ED25519 ED25519 Public-Key: pub:
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docs/en/docs/tutorial/security/oauth2-jwt.md
09d25e094faa6ca2556c818166b7a9563b93f7099f6f0f4caa6cf63b88e8d3e7 ``` </div> And copy the output to the variable `SECRET_KEY` (don't use the one in the example). Create a variable `ALGORITHM` with the algorithm used to sign the JWT token and set it to `"HS256"`. Create a variable for the expiration of the token. Define a Pydantic Model that will be used in the token endpoint for the response.
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docs/compression/README.md
MinIO uses [`klauspost/compress/s2`](https://github.com/klauspost/compress/tree/master/s2) streaming compression due to its stability and performance. This algorithm is specifically optimized for machine generated content. Write throughput is typically at least 500MB/s per CPU core, and scales with the number of available CPU cores. Decompression speed is typically at least 1GB/s.
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docs/works_with_okhttp.md
* [Ok2Curl](https://github.com/mrmike/Ok2Curl): Convert OkHttp requests into curl logs. * [OkHttp AWS Signer](https://github.com/babbel/okhttp-aws-signer): AWS V4 signing algorithm for OkHttp requests * [okhttp-digest](https://github.com/rburgst/okhttp-digest): A digest authenticator for OkHttp.
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okhttp-tls/src/main/kotlin/okhttp3/tls/HeldCertificate.kt
return when (signedByKeyPair.private) { is RSAPrivateKey -> AlgorithmIdentifier( algorithm = SHA256_WITH_RSA_ENCRYPTION, parameters = null, ) else -> AlgorithmIdentifier( algorithm = SHA256_WITH_ECDSA, parameters = ByteString.EMPTY, ) } }
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docs/lambda/README.md
} fmt.Println(presignedURL) } ``` Use the Presigned URL via `curl` to receive the transformed object. ``` curl -v $(go run presigned.go) ... ...
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