* .NET Framework version of library is here jose-jwt
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##Credits
Supported JWA algorithms
Signing
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- HMAC signatures with HS256, HS384 and HS512.
- RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512.
- RSASSA-PSS signatures with PS256, PS384 and PS512*
- ECDSA signatures with ES256, ES384 and ES512.
Encryption
- Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM
- RSAES OAEP 256 (using SHA-256 and MGF1 with SHA-256) encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM
- RSAES OAEP (using SHA-1 and MGF1 with SHA-1) 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
- A128KW, A192KW, A256KW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM
- PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM
Notes:
* It appears that Microsoft implementation of AsymmetricAlgorithmNames.RsaSignPssSha256, AsymmetricAlgorithmNames.RsaSignPssSha384 and AsymmetricAlgorithmNames.RsaSignPssSha512is broken. At least produced signatures can't be validated on other platforms. jose-rt provides support for PS256, PS384 and PS512 but most likely produced tokens can't be decoded correctly with other JOSE implementations.
Installation
NuGet
Install-Package jose-rt
Manual
Grab source and compile yourself.
Usage
Creating Plaintext (unprotected) Tokens
Creating signed Tokens
HS256, HS384 and HS512 family
HS256, HS384, HS512 signatures require
byte[]
array key of corresponding lengthRS256, RS384, RS512 and PS256, PS384, PS512 families
RS256, RS384, RS512 signatures require
CryptographicKey
private key of corresponding length. JoseRT
provides convenient helpers to load RSA keys from commonlyused PEM encoded formats. See Obtaining keys section for details.ES256, ES384 and ES512 family
ES256, ES384, ES512 ECDSA signatures requires
CryptographicKey
private elliptic curve key of corresponding length.JoseRT
provides convenient helpers to use raw key material (x,y) and d. See Obtaining keys section for details.Creating encrypted Tokens
DIR direct pre-shared symmetric key family of algorithms
Direct key management with pre-shared symmetric keys requires
byte[]
array key of corresponding lengthRSA-* key management family of algorithms
RSA-OAEP-256, RSA-OAEP and RSA1_5 key management requires
CryptographicKey
public key of corresponding length. JoseRT
provides convenient helpers to load RSA keys from commonlyused PEM encoded formats. See Obtaining keys section for details.AES Key Wrap key management family of algorithms
AES128KW, AES192KW and AES256KW key management requires
byte[]
array key of corresponding lengthPBES2 using HMAC SHA with AES Key Wrap key management family of algorithms
Windows Security Token
PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW key management requires
string
passphrase from which key will be derivedVerifying and Decoding Tokens
Decoding json web tokens is fully symmetric to creating signed or encrypted tokens:
HS256, HS384, HS512 signatures, A128KW, A192KW, A256KW and DIR key management algorithms expecting
byte[]
array keyRS256, RS384, RS512 and PS256, PS384, PS512 signatures expecting
CryptographicKey
public key of corresponding length. JoseRT
provides convenient helpers to load RSA keys from commonlyused PEM encoded formats. See Obtaining keys section for details.ES256, ES384, ES512 signatures expecting
CryptographicKey
public elliptic curve key of corresponding length.JoseRT
provides convenient helpers to use raw key material (x,y). See Obtaining keys section for details.RSA-OAEP-256, RSA-OAEP and RSA1_5 key management expecting
CryptographicKey
private key of corresponding length. JoseRT
provides convenient helpers to load RSA keys from commonlyused PEM encoded formats. See Obtaining keys section for details.PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW key management algorithms expects
string
passpharase as a keyObtaining keys
Windows.Security.Cryptography
allows to import keys from bunch of different formats, but do not support commonly used PEM encoded formats out of box.To simplify integration and keys exchange between WinRT and other platforms, JoseRT
provides set of helpers to import PEM encoded keys or other formats.Windows 8.1 For Sale
RSA keys
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JoseRT.Rsa.PublicKey.Load(string)
imports CryptographicKey
from PEM encoded public key formatsPKCS#1 RSA Public Key
X509 Public Subject key info
Can be obtained from certificate via
openssl x509 -inform PEM -in certificate.cer -outform PEM -pubkey -noout > public.key
JoseRT.Rsa.PrivateKey.Load(string)
imports CryptographicKey
from PEM encoded private key formatsPKCS#1 RSA Private Key without password protection
Can be obtained from .p12 via
openssl pkcs12 -in keys.p12 -nocerts -out privateKey.pem
and then openssl.exe rsa -in privateKey.pem -out privateKey.pem
to removepassword protection.PKCS#8 Raw RSA Private Key
Can be converted from PKCS#1 private key via
openssl pkcs8 -topk8 -inform PEM -outform PEM -in privateKey.pem -out privateKey.key -nocrypt
Elliptic Curve keys
JoseRT
provides helpers to construct private or public ECC keys from raw key material: (X,Y) and D, represented as byte[]
arrays, elliptic curve will be automaticallydetermined by size of provided material. Supported are NIST P-256, P-384 and P-521 curves.Private Key
Can be constructed by calling
JoseRT.Ecc.PrivateKey.New(x, y, d)
Public Key
Can be constructed by calling
JoseRT.Ecc.PublicKey.New(x, y)
More examples
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Checkout
Win8TestsCompatibilityTestSuite.cs
for more samples.