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This repository was archived by the owner on Sep 21, 2026. It is now read-only.
For my own uses, I have experimented with a change which I'd like to know if you're interested in before I spend more time on it for a proper PR.
Long story short, whenever you want to add support for a specific elliptic curve and a specific hasher function, you are forced to implement a specific private signer & verifier, as well as a specific public signer & verifier functions (ie: signEcdsaP256Sha256, verifyEcdsaP256Sha256, WithSignEcdsaP256Sha256, WithVerifyEcdsaP256Sha256).
I implemented WithSignEcdsa(), WithVerifyEcdsa, signEcdsa & verifyEcdsa which take an additional crypto.Hash parameter and use key.Curve.Params().Name and crypto.Hash.String() to infer the algorithm. With this, I could easily switch between curves and hash functions to support combinations that are currently unsupported in your package.
hellow @jbowes,
For my own uses, I have experimented with a change which I'd like to know if you're interested in before I spend more time on it for a proper PR.
Long story short, whenever you want to add support for a specific elliptic curve and a specific hasher function, you are forced to implement a specific private signer & verifier, as well as a specific public signer & verifier functions (ie: signEcdsaP256Sha256, verifyEcdsaP256Sha256, WithSignEcdsaP256Sha256, WithVerifyEcdsaP256Sha256).
I implemented WithSignEcdsa(), WithVerifyEcdsa, signEcdsa & verifyEcdsa which take an additional crypto.Hash parameter and use key.Curve.Params().Name and crypto.Hash.String() to infer the algorithm. With this, I could easily switch between curves and hash functions to support combinations that are currently unsupported in your package.
Is this something you'd be interested in ?