use ring::constant_time::verify_slices_are_equal; use ring::{hmac, signature}; use crate::algorithms::Algorithm; use crate::errors::{Result}; use crate::pem_decoder::PemEncodedKey; use crate::serialization::{encode, decode}; pub(crate) mod rsa; pub(crate) mod ecdsa; /// The actual HS signing + encoding pub(crate) fn sign_hmac(alg: hmac::Algorithm, key: &[u8], signing_input: &str) -> Result { let digest = hmac::sign(&hmac::Key::new(alg, key), signing_input.as_bytes()); Ok(encode(digest.as_ref())) } /// Take the payload of a JWT, sign it using the algorithm given and return /// the base64 url safe encoded of the result. /// /// Only use this function if you want to do something other than JWT. /// `key` is the secret for HMAC and a pem encoded string otherwise pub fn sign(signing_input: &str, key: &[u8], algorithm: Algorithm) -> Result { match algorithm { Algorithm::HS256 => sign_hmac(hmac::HMAC_SHA256, key, signing_input), Algorithm::HS384 => sign_hmac(hmac::HMAC_SHA384, key, signing_input), Algorithm::HS512 => sign_hmac(hmac::HMAC_SHA512, key, signing_input), Algorithm::ES256 => { ecdsa::sign(&signature::ECDSA_P256_SHA256_FIXED_SIGNING, key, signing_input) } Algorithm::ES384 => { ecdsa::sign(&signature::ECDSA_P384_SHA384_FIXED_SIGNING, key, signing_input) } Algorithm::RS256 => rsa::sign(&signature::RSA_PKCS1_SHA256, key, signing_input), Algorithm::RS384 => rsa::sign(&signature::RSA_PKCS1_SHA384, key, signing_input), Algorithm::RS512 => rsa::sign(&signature::RSA_PKCS1_SHA512, key, signing_input), Algorithm::PS256 => rsa::sign(&signature::RSA_PSS_SHA256, key, signing_input), Algorithm::PS384 => rsa::sign(&signature::RSA_PSS_SHA384, key, signing_input), Algorithm::PS512 => rsa::sign(&signature::RSA_PSS_SHA512, key, signing_input), } } /// Compares the signature given with a re-computed signature for HMAC or using the public key /// for RSA. /// /// Only use this function if you want to do something other than JWT. /// /// `signature` is the signature part of a jwt (text after the second '.') /// /// `signing_input` is base64(header) + "." + base64(claims) pub fn verify( signature: &str, signing_input: &str, key: &[u8], algorithm: Algorithm, ) -> Result { match algorithm { Algorithm::HS256 | Algorithm::HS384 | Algorithm::HS512 => { // we just re-sign the data with the key and compare if they are equal let signed = sign(signing_input, key, algorithm)?; Ok(verify_slices_are_equal(signature.as_ref(), signed.as_ref()).is_ok()) } Algorithm::ES256 => { verify_ring_es(&signature::ECDSA_P256_SHA256_FIXED, signature, signing_input, key) } Algorithm::ES384 => { verify_ring_es(&signature::ECDSA_P384_SHA384_FIXED, signature, signing_input, key) } Algorithm::RS256 => { verify_ring_rsa(&signature::RSA_PKCS1_2048_8192_SHA256, signature, signing_input, key) } Algorithm::RS384 => { verify_ring_rsa(&signature::RSA_PKCS1_2048_8192_SHA384, signature, signing_input, key) } Algorithm::RS512 => { verify_ring_rsa(&signature::RSA_PKCS1_2048_8192_SHA512, signature, signing_input, key) } Algorithm::PS256 => { verify_ring_rsa(&signature::RSA_PSS_2048_8192_SHA256, signature, signing_input, key) } Algorithm::PS384 => { verify_ring_rsa(&signature::RSA_PSS_2048_8192_SHA384, signature, signing_input, key) } Algorithm::PS512 => { verify_ring_rsa(&signature::RSA_PSS_2048_8192_SHA512, signature, signing_input, key) } } } // TODO: see if we can remove stuff? /// See Ring docs for more details fn verify_ring( alg: &'static dyn signature::VerificationAlgorithm, signature: &str, signing_input: &str, key: &[u8], ) -> Result { let signature_bytes = decode(signature)?; let public_key = signature::UnparsedPublicKey::new(alg, key); let res = public_key.verify(signing_input.as_bytes(), &signature_bytes); Ok(res.is_ok()) } fn verify_ring_es( alg: &'static dyn signature::VerificationAlgorithm, signature: &str, signing_input: &str, key: &[u8], ) -> Result { let pem_key = PemEncodedKey::new(key)?; verify_ring(alg, signature, signing_input, pem_key.as_ec_public_key()?) } fn verify_ring_rsa( alg: &'static signature::RsaParameters, signature: &str, signing_input: &str, key: &[u8], ) -> Result { let pem_key = PemEncodedKey::new(key)?; verify_ring(alg, signature, signing_input, pem_key.as_rsa_key()?) }