sonr/crypto/tecdsa/dklsv1/sign/sign_test.go
Prad Nukala 807b2e86ec
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>
2025-01-06 17:06:10 +00:00

82 lines
2.8 KiB
Go
Executable File

//
// Copyright Coinbase, Inc. All Rights Reserved.
//
// SPDX-License-Identifier: Apache-2.0
//
package sign
import (
"crypto/rand"
"testing"
"github.com/stretchr/testify/require"
"golang.org/x/crypto/sha3"
"github.com/onsonr/sonr/crypto/core/curves"
"github.com/onsonr/sonr/crypto/ot/base/simplest"
"github.com/onsonr/sonr/crypto/ot/extension/kos"
"github.com/onsonr/sonr/crypto/ot/ottest"
"github.com/onsonr/sonr/crypto/tecdsa/dklsv1/dkg"
)
func TestSign(t *testing.T) {
curveInstances := []*curves.Curve{
curves.K256(),
curves.P256(),
}
for _, curve := range curveInstances {
hashKeySeed := [simplest.DigestSize]byte{}
_, err := rand.Read(hashKeySeed[:])
require.NoError(t, err)
baseOtSenderOutput, baseOtReceiverOutput, err := ottest.RunSimplestOT(curve, kos.Kappa, hashKeySeed)
require.NoError(t, err)
secretKeyShareA := curve.Scalar.Random(rand.Reader)
secretKeyShareB := curve.Scalar.Random(rand.Reader)
require.NoError(t, err)
publicKey := curve.ScalarBaseMult(secretKeyShareA.Mul(secretKeyShareB))
alice := NewAlice(curve, sha3.New256(), &dkg.AliceOutput{SeedOtResult: baseOtReceiverOutput, SecretKeyShare: secretKeyShareA, PublicKey: publicKey})
bob := NewBob(curve, sha3.New256(), &dkg.BobOutput{SeedOtResult: baseOtSenderOutput, SecretKeyShare: secretKeyShareB, PublicKey: publicKey})
message := []byte("A message.")
seed, err := alice.Round1GenerateRandomSeed()
require.NoError(t, err)
round3Output, err := bob.Round2Initialize(seed)
require.NoError(t, err)
round4Output, err := alice.Round3Sign(message, round3Output)
require.NoError(t, err)
err = bob.Round4Final(message, round4Output)
require.NoError(t, err, "curve: %s", curve.Name)
}
}
func BenchmarkSign(b *testing.B) {
curve := curves.K256()
hashKeySeed := [simplest.DigestSize]byte{}
_, err := rand.Read(hashKeySeed[:])
require.NoError(b, err)
baseOtSenderOutput, baseOtReceiverOutput, err := ottest.RunSimplestOT(curve, kos.Kappa, hashKeySeed)
require.NoError(b, err)
secretKeyShareA := curve.Scalar.Random(rand.Reader)
secretKeyShareB := curve.Scalar.Random(rand.Reader)
publicKey := curve.ScalarBaseMult(secretKeyShareA.Mul(secretKeyShareB))
alice := NewAlice(curve, sha3.New256(), &dkg.AliceOutput{SeedOtResult: baseOtReceiverOutput, SecretKeyShare: secretKeyShareA, PublicKey: publicKey})
bob := NewBob(curve, sha3.New256(), &dkg.BobOutput{SeedOtResult: baseOtSenderOutput, SecretKeyShare: secretKeyShareB, PublicKey: publicKey})
message := []byte("A message.")
for n := 0; n < b.N; n++ {
seed, err := alice.Round1GenerateRandomSeed()
require.NoError(b, err)
round3Output, err := bob.Round2Initialize(seed)
require.NoError(b, err)
round4Output, err := alice.Round3Sign(message, round3Output)
require.NoError(b, err)
err = bob.Round4Final(message, round4Output)
require.NoError(b, err)
}
}