Found 25 packages
My package description.
Javascript Object Signing and Encryption (JOSE), JSON Web Token (JWT), JSON Web Encryption (JWE) and JSON Web Key (JWK) Implementation for .NET Ultimate Javascript Object Signing and Encryption (JOSE), JSON Web Token (JWT), JSON Web Encryption (JWE) and JSON Web Key (JWK) Implementation for .NET and .NET Core. Minimallistic. Zero-dependency. Full suite of signature and encryption algorithms. Supports generating, decoding, encryption and compression of JSON Web Tokens. Full-blown support for JSON Web Keys (RFC 7517) and two way bridging with .NET core cryptography. JSON parsing agnostic. Supports two-phase validation. FIPS compliant. Unencoded payload and detached content support (RFC 7797). JSON Web Encryption (JWE, RFC 7516) support. Cross compatible with all major operating systems - Windows, Linux, MacOS and FreeBSD. Supported algorithms Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - RSASSA-PSS signatures (probabilistic signature scheme with appendix) with PS256, PS384 and PS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 384 512 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128KW, A192KW, A256KW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128GCMKW, A192GCMKW, A256GCMKW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - ECDH-ES encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - ECDH-ES+A128KW, ECDH-ES+A192KW, ECDH-ES+A256KW encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM Compression: - DEFLATE compression RFC 7797: - Unencoded payload - Detached content RFC 7516: - JSON Web Encryption (JWE) support JSON Web Key (RFC 7517): - RSA, EC, oct keys - X509 Chains, SHA1 & SHA2 thumbprints
My package description.
Curve25519 is an elliptic curve, developed by Dan Bernstein, for fast Diffie-Hellman key agreement.
An implementation of the Diffie-Hellman key agreement based on PEM file format.
Javascript Object Signing and Encryption (JOSE) and JSON Web Token (JWT) Implementation for .NET Ultimate Javascript Object Signing and Encryption (JOSE) and JSON Web Token (JWT) Implementation for .NET. Minimallistic. Zero-dependency. Full suite of signature and encryption algorithms. Supports generating, decoding, encryption and compression of JSON Web Tokens. JSON parsing agnostic. Supports two-phase validation. FIPS compliant. CLR supported algorithms Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - RSASSA-PSS signatures (probabilistic signature scheme with appendix) with PS256, PS384 and PS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128KW, A192KW, A256KW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128GCMKW, A192GCMKW, A256GCMKW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - ECDH-ES encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - ECDH-ES+A128KW, ECDH-ES+A192KW, ECDH-ES+A256KW encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM Compression: - DEFLATE compression CORECLR supported algorithms Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM Compression: - DEFLATE compression
Xamarin Javascript Object Signing and Encryption (JOSE) and JSON Web Token (JWT) Implementation for .NET 4.0+ Ultimate Javascript Object Signing and Encryption (JOSE) and JSON Web Token (JWT) Implementation for .NET 4.0+ Minimallistic. Full suite of signature and encryption algorithms. Supports generating, decoding, encryption and compression of JSON Web Tokens. JSON parsing agnostic. Build for Xamarin Assemblies (http://developer.xamarin.com/guides/android/under_the_hood/assemblies/) Supported algorithms Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - RSASSA-PSS signatures (probabilistic signature scheme with appendix) with PS256, PS384 and PS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128KW, A192KW, A256KW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128GCMKW, A192GCMKW, A256GCMKW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - ECDH-ES encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - ECDH-ES+A128KW, ECDH-ES+A192KW, ECDH-ES+A256KW encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM Compression: - DEFLATE compression
Javascript Object Signing and Encryption (JOSE) and JSON Web Token (JWT) Implementation for .NET Ultimate Javascript Object Signing and Encryption (JOSE) and JSON Web Token (JWT) Implementation for .NET. Minimallistic. Zero-dependency. Full suite of signature and encryption algorithms. Supports generating, decoding, encryption and compression of JSON Web Tokens. JSON parsing agnostic. Supports two-phase validation. FIPS compliant. CLR supported algorithms Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - RSASSA-PSS signatures (probabilistic signature scheme with appendix) with PS256, PS384 and PS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128KW, A192KW, A256KW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128GCMKW, A192GCMKW, A256GCMKW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - ECDH-ES encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - ECDH-ES+A128KW, ECDH-ES+A192KW, ECDH-ES+A256KW encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM Compression: - DEFLATE compression CORECLR supported algorithms Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM Compression: - DEFLATE compression
OWIN middleware to support a Diffie-Hellman key exchange.
Lucinda is a comprehensive, production-ready end-to-end encryption (E2EE) library for .NET applications. Key Features: • Symmetric Encryption: AES-GCM (authenticated) and AES-CBC with HMAC, supporting 128/192/256-bit keys • Asymmetric Encryption: RSA with OAEP padding (2048/3072/4096-bit keys) • Hybrid Encryption: RSA + AES-GCM for efficient large data encryption • Key Exchange: ECDH (Elliptic Curve Diffie-Hellman) with P-256/P-384/P-521 curves • Digital Signatures: RSA (PSS/PKCS#1 v1.5) and ECDSA for message authentication • Key Derivation: PBKDF2 (password-based) and HKDF (HMAC-based) functions • Secure Key Storage: In-memory storage with automatic secure clearing AOT Compatible: Full Native AOT support for .NET 7.0+ Thread-Safe: All operations are designed for concurrent use Platform Support: .NET 6.0-10.0, .NET Standard 2.0/2.1, .NET Framework 4.8/4.8.1 Result Pattern: CryptoResult<T> for explicit error handling without exceptions
Class library implementing Elliptic Curve Cryptography algorithms. Algorithms supported: Elliptic Curve Diffie-Hellman (ECDH) Elliptic Curve Digital Signature Algorithm (ECDSA) Edwards-Curve Digital Signature Algorithm (EdDSA) Curves supported: NIST P-192 NIST P-224 NIST P-256 NIST P-384 NIST P-521 Curve25519 Curve448 Edwards25519 Edwards448 (Goldilocks) Brainpool P-160 Brainpool P-192 Brainpool P-224 Brainpool P-256 Brainpool P-320 Brainpool P-384 Brainpool P-512
Key Exchange Methods: diffie-hellman-group1-sha1, diffie-hellman-group14-sha1, diffie-hellman-group-exchange-sha1 Hostkey Types: ssh-rsa, ssh-dss Ciphers: aes256-cbc (rijndael-cbc@lysator.liu.se), aes192-cbc, aes128-cbc, 3des-cbc, blowfish-cbc, cast128-cbc, arcfour, none Compression Schemes: zlib, zlib@openssh.com, none MAC hashes: hmac-sha1, hmac-sha1-96, hmac-md5, hmac-md5-96, hmac-ripemd160 (hmac-ripemd160@openssh.com), none Authentication: none, password, public-key, hostbased, keyboard-interactive Channels: shell, exec (incl. SCP wrapper), direct-tcpip, subsystem Global Requests: tcpip-forward Channel Requests: x11, pty, exit-signal, keepalive@openssh.com Subsystems: sftp(version 3), publickey(version 2) SFTP: statvfs@openssh.com, fstatvfs@openssh.com Thread-safe: just don't share handles simultaneously Non-blocking: it can be used both blocking and non-blocking Your sockets: the app hands over the socket, calls select() etc. OpenSSL, Libgcrypt or WinCNG (native since Windows Vista): builds with either.
Javascript Object Signing and Encryption (JOSE), JSON Web Token (JWT) and JSON Web Encryption (JWE) Implementation for .NET Ultimate Javascript Object Signing and Encryption (JOSE), JSON Web Token (JWT) and JSON Web Encryption (JWE) Implementation for .NET. Minimallistic. Zero-dependency. Full suite of signature and encryption algorithms. Supports generating, decoding, encryption and compression of JSON Web Tokens. JSON parsing agnostic. Supports two-phase validation. FIPS compliant. Unencoded payload and detached content support (RFC 7797). JSON Web Encryption (JWE, RFC 7516) support. CLR (.net framework 4.0+) supported algorithms Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - RSASSA-PSS signatures (probabilistic signature scheme with appendix) with PS256, PS384 and PS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128KW, A192KW, A256KW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128GCMKW, A192GCMKW, A256GCMKW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - ECDH-ES encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - ECDH-ES+A128KW, ECDH-ES+A192KW, ECDH-ES+A256KW encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM Compression: - DEFLATE compression RFC 7797: - Unencoded payload - Detached content RFC 7516: - JSON Web Encryption (JWE) support CORECLR (.netstandard 1.4+) supported algorithms: Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - RSASSA-PSS signatures (probabilistic signature scheme with appendix) with PS256, PS384 and PS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128KW, A192KW, A256KW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128GCMKW, A192GCMKW, A256GCMKW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - ECDH-ES encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - ECDH-ES+A128KW, ECDH-ES+A192KW, ECDH-ES+A256KW encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM Compression: - DEFLATE compression RFC 7797: - Unencoded payload - Detached content RFC 7516: - JSON Web Encryption (JWE) support
BouncyCastle.Crypto is a cryptography API providing: -Generation and parsing of PKCS#12 files. -X.509: Generators and parsers for V1 and V3 certificates, V2 CRLs and attribute certificates. -PBE algorithms supported by PBEUtil: PBEwithMD2andDES-CBC, PBEwithMD2andRC2-CBC, PBEwithMD5andDES-CBC, PBEwithMD5andRC2-CBC, PBEwithSHA1andDES-CBC, PBEwithSHA1andRC2-CBC, PBEwithSHA-1and128bitRC4, PBEwithSHA-1and40bitRC4, PBEwithSHA-1and3-keyDESEDE-CBC, PBEwithSHA-1and2-keyDESEDE-CBC, PBEwithSHA-1and128bitRC2-CBC, PBEwithSHA-1and40bitRC2-CBC, PBEwithHmacSHA-1, PBEwithHmacSHA-224, PBEwithHmacSHA-256, PBEwithHmacRIPEMD128, PBEwithHmacRIPEMD160, and PBEwithHmacRIPEMD256. -Signature algorithms supported by SignerUtilities: MD2withRSA, MD4withRSA, MD5withRSA, RIPEMD128withRSA, RIPEMD160withRSA, RIPEMD256withRSA, SHA-1withRSA, SHA-224withRSA, SHA-256withRSAandMGF1, SHA-384withRSAandMGF1, SHA-512withRSAandMGF1, SHA-1withDSA, and SHA-1withECDSA. -Symmetric key algorithms: AES, Blowfish, Camellia, CAST5, CAST6, DESede, DES, GOST28147, HC-128, HC-256, IDEA, NaccacheStern, RC2, RC4, RC5-32, RC5-64, RC6, Rijndael, Serpent, Skipjack, TEA/XTEA, Twofish, and VMPC. -Symmetric key modes: CBC, CFB, CTS, GOFB, OFB, OpenPGPCFB, and SIC (or CTR). -Symmetric key paddings: ISO10126d2, ISO7816d4, PKCS#5/7, TBC, X.923, and Zero Byte. -Asymmetric key algorithms: RSA (with blinding), ElGamal, DSA, ECDSA. -Asymmetric key paddings/encodings: ISO9796d1, OAEP, and PKCS#1. -Digests: GOST3411, MD2, MD4, MD5, RIPEMD128, RIPEMD160, RIPEMD256, RIPEMD320, SHA-1, SHA-224, SHA-256, SHA-384, SHA-512, Tiger, and Whirlpool. -Signer mechanisms: DSA, ECDSA, ECGOST3410, GOST3410, ISO9796d2, PSS, RSA. -Key Agreement: Diffie-Hellman and EC-DH. -Macs: CBCBlockCipher, CFBBlockCipher, GOST28147, HMac, and ISO9797 Alg. 3. -PBE generators: PKCS#12, and PKCS#5 - schemes 1 and 2. -OpenPGP (RFC 2440) -Cryptographic Message Syntax (CMS, RFC 3852), including streaming API. -Online Certificate Status Protocol (OCSP, RFC 2560). -Time Stamp Protocol (TSP, RFC 3161). -TLS/SSL Client with support for client side authentication. Support for .NET 4, Windows Phone 8, Windows Phone App 8.1, Windows 8, Silverlight 5, MonoTouch, MonoAndroid
An elliptic curve offering 128 bits of security and designed for use with the elliptic curve Diffie–Hellman (ECDH) key agreement scheme. It is one of the fastest ECC curves and is not covered by any known patents.
A fast Diffie-Hellman key exchange algorithm
An elliptic curve offering 128 bits of security and designed for use with the elliptic curve Diffie–Hellman (ECDH) key agreement scheme.
Easily generate a shared secret key between two machines or processes using a Diffie-Hellman algorithm. Generate a single 16byte key using UnitNegotiator or multi-round key using CompoundNegotiator for a no-limit large shared key.
Post-quantum secure gRPC library with ML-KEM and Diffie-Hellman
This is a simple open source encryption and decryption tool that works with Diffie Hellman's asynchronous key exchange system.