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feature/1220 origin handle exists method (#1241)
* feat: add docs and CI workflow for publishing to onsonr.dev * (refactor): Move hway,motr executables to their own repos * feat: simplify devnet and testnet configurations * refactor: update import path for didcrypto package * docs(networks): Add README with project overview, architecture, and community links * refactor: Move network configurations to deploy directory * build: update golang version to 1.23 * refactor: move logger interface to appropriate package * refactor: Move devnet configuration to networks/devnet * chore: improve release process with date variable * (chore): Move Crypto Library * refactor: improve code structure and readability in DID module * feat: integrate Trunk CI checks * ci: optimize CI workflow by removing redundant build jobs --------- Co-authored-by: Darp Alakun <i@prad.nu>
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@@ -0,0 +1,46 @@
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package keys
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import (
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"errors"
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"fmt"
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"math/big"
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"github.com/onsonr/sonr/crypto/core/curves"
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)
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// getEcdsaPoint builds an elliptic curve point from a compressed byte slice
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func getEcdsaPoint(pubKey []byte) (*curves.EcPoint, error) {
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crv := curves.K256()
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x := new(big.Int).SetBytes(pubKey[1:33])
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y := new(big.Int).SetBytes(pubKey[33:])
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ecCurve, err := crv.ToEllipticCurve()
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if err != nil {
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return nil, fmt.Errorf("error converting curve: %v", err)
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}
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return &curves.EcPoint{X: x, Y: y, Curve: ecCurve}, nil
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}
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// SerializeSecp256k1Signature serializes an ECDSA signature into a byte slice
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func serializeSignature(sig *curves.EcdsaSignature) ([]byte, error) {
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rBytes := sig.R.Bytes()
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sBytes := sig.S.Bytes()
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sigBytes := make([]byte, 66) // V (1 byte) + R (32 bytes) + S (32 bytes)
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sigBytes[0] = byte(sig.V)
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copy(sigBytes[33-len(rBytes):33], rBytes)
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copy(sigBytes[66-len(sBytes):66], sBytes)
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return sigBytes, nil
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}
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// DeserializeSecp256k1Signature deserializes an ECDSA signature from a byte slice
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func deserializeSignature(sigBytes []byte) (*curves.EcdsaSignature, error) {
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if len(sigBytes) != 66 {
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return nil, errors.New("malformed signature: not the correct size")
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}
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sig := &curves.EcdsaSignature{
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V: int(sigBytes[0]),
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R: new(big.Int).SetBytes(sigBytes[1:33]),
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S: new(big.Int).SetBytes(sigBytes[33:66]),
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}
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return sig, nil
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}
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