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feature/1114 implement account interface (#1167)
- **refactor: move session-related code to middleware package** - **refactor: update PKL build process and adjust related configurations** - **feat: integrate base.cosmos.v1 Genesis module** - **refactor: pass session context to modal rendering functions** - **refactor: move nebula package to app directory and update templ version** - **refactor: Move home section video view to dedicated directory** - **refactor: remove unused views file** - **refactor: move styles and UI components to global scope** - **refactor: Rename images.go to cdn.go** - **feat: Add Empty State Illustrations** - **refactor: Consolidate Vault Index Logic** - **fix: References to App.wasm and remove Vault Directory embedded CDN files** - **refactor: Move CDN types to Models** - **fix: Correct line numbers in templ error messages for arch_templ.go** - **refactor: use common types for peer roles** - **refactor: move common types and ORM to a shared package** - **fix: Config import dwn** - **refactor: move nebula directory to app** - **feat: Rebuild nebula** - **fix: correct file paths in panels templates** - **feat: Remove duplicate types** - **refactor: Move dwn to pkg/core** - **refactor: Binary Structure** - **feat: Introduce Crypto Pkg** - **fix: Broken Process Start** - **feat: Update pkg/* structure** - **feat: Refactor PKL Structure** - **build: update pkl build process** - **chore: Remove Empty Files** - **refactor: remove unused macaroon package** - **feat: Add WebAwesome Components** - **refactor: consolidate build and generation tasks into a single taskfile, remove redundant makefile targets** - **refactor: refactor server and move components to pkg/core/dwn** - **build: update go modules** - **refactor: move gateway logic into dedicated hway command** - **feat: Add KSS (Krawczyk-Song-Song) MPC cryptography module** - **feat: Implement MPC-based JWT signing and UCAN token generation** - **feat: add support for MPC-based JWT signing** - **feat: Implement MPC-based UCAN capabilities for smart accounts** - **feat: add address field to keyshareSource** - **feat: Add comprehensive MPC test suite for keyshares, UCAN tokens, and token attenuations** - **refactor: improve MPC keyshare management and signing process** - **feat: enhance MPC capability hierarchy documentation** - **refactor: rename GenerateKeyshares function to NewKeyshareSource for clarity** - **refactor: remove unused Ethereum address computation** - **feat: Add HasHandle and IsAuthenticated methods to HTTPContext** - **refactor: Add context.Context support to session HTTPContext** - **refactor: Resolve context interface conflicts in HTTPContext** - **feat: Add session ID context key and helper functions** - **feat: Update WebApp Page Rendering** - **refactor: Simplify context management by using single HTTPContext key** - **refactor: Simplify HTTPContext creation and context management in session middleware** - **refactor: refactor session middleware to use a single data structure** - **refactor: Simplify HTTPContext implementation and session data handling** - **refactor: Improve session context handling and prevent nil pointer errors** - **refactor: Improve session context handling with nil safety and type support** - **refactor: improve session data injection** - **feat: add full-screen modal component and update registration flow** - **chore: add .air.toml to .gitignore** - **feat: add Air to devbox and update dependencies**
This commit is contained in:
Executable
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//
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// Copyright Coinbase, Inc. All Rights Reserved.
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//
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// SPDX-License-Identifier: Apache-2.0
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//
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// This file implements the key refresh protocol of [DKLs18](https://eprint.iacr.org/2018/499.pdf).
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// The key refresh protocol is defined as follows:
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// 1. Key Share:
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// 1.1. alice generates k_A <-- F_q; writes it to merlin transcript. sends it to bob.
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// 1.2. bob receives k_A and writes it to merlin transcript. generates k_B <-- F_q and writes it to merlin transcript. reads k out of merlin transcript. overwrites sk_B *= k. sends k_B to Alice.
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// 1.3. alice writes k_B to merlin transcript. reads k from it. overwrites sk_A *= k^{-1}.
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// 2. OT: Redo OT (as it is done in the DKG)
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package refresh
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import (
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"crypto/rand"
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"github.com/gtank/merlin"
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"github.com/pkg/errors"
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"github.com/onsonr/sonr/pkg/crypto/core/curves"
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"github.com/onsonr/sonr/pkg/crypto/ot/base/simplest"
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"github.com/onsonr/sonr/pkg/crypto/ot/extension/kos"
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"github.com/onsonr/sonr/pkg/crypto/tecdsa/dklsv1/dkg"
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"github.com/onsonr/sonr/pkg/crypto/zkp/schnorr"
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)
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// Alice struct encoding Alice's state during one execution of the overall signing algorithm.
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// At the end of the joint computation, Alice will NOT obtain the signature.
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type Alice struct {
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// receiver is the base OT receiver.
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receiver *simplest.Receiver
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// secretKeyShare is Alice's secret key for the joint public key.
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secretKeyShare curves.Scalar
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// publicKey is the joint public key of Alice and Bob.
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publicKey curves.Point
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curve *curves.Curve
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transcript *merlin.Transcript
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}
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// Bob struct encoding Bob's state during one execution of the overall signing algorithm.
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// At the end of the joint computation, Bob will obtain the signature.
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type Bob struct {
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// sender is the base OT sender.
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sender *simplest.Sender
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// secretKeyShare is Bob's secret key for the joint public key.
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secretKeyShare curves.Scalar
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// publicKey is the joint public key of Alice and Bob.
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publicKey curves.Point
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curve *curves.Curve
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transcript *merlin.Transcript
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}
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type RefreshRound2Output struct {
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SeedOTRound1Output *schnorr.Proof
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BobMultiplier curves.Scalar
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}
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// NewAliceRefresh creates a party that can participate in 2-of-2 key refresh.
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func NewAlice(curve *curves.Curve, dkgOutput *dkg.AliceOutput) *Alice {
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return &Alice{
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curve: curve,
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secretKeyShare: dkgOutput.SecretKeyShare,
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publicKey: dkgOutput.PublicKey,
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transcript: merlin.NewTranscript("Coinbase_DKLs_Refresh"),
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}
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}
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// NewBobRefresh creates a party that can participate in 2-of-2 key refresh.
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func NewBob(curve *curves.Curve, dkgOutput *dkg.BobOutput) *Bob {
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return &Bob{
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curve: curve,
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secretKeyShare: dkgOutput.SecretKeyShare,
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publicKey: dkgOutput.PublicKey,
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transcript: merlin.NewTranscript("Coinbase_DKLs_Refresh"),
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}
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}
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func (alice *Alice) Round1RefreshGenerateSeed() curves.Scalar {
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refreshSeed := alice.curve.Scalar.Random(rand.Reader)
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alice.transcript.AppendMessage([]byte("alice refresh seed"), refreshSeed.Bytes())
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return refreshSeed
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}
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func (bob *Bob) Round2RefreshProduceSeedAndMultiplyAndStartOT(aliceSeed curves.Scalar) (*RefreshRound2Output, error) {
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bob.transcript.AppendMessage([]byte("alice refresh seed"), aliceSeed.Bytes())
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bobSeed := bob.curve.Scalar.Random(rand.Reader)
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bob.transcript.AppendMessage([]byte("bob refresh seed"), bobSeed.Bytes())
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k, err := bob.curve.NewScalar().SetBytes(
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bob.transcript.ExtractBytes([]byte("secret key share multiplier"), simplest.DigestSize),
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)
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if err != nil {
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return nil, errors.Wrap(err, "couldn't produce bob's secret key share multiplier")
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}
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bob.secretKeyShare = bob.secretKeyShare.Mul(k)
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uniqueSessionId := [simplest.DigestSize]byte{} // note: will use and re-use this below for sub-session IDs.
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copy(uniqueSessionId[:], bob.transcript.ExtractBytes([]byte("salt for simplest OT"), simplest.DigestSize))
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bob.sender, err = simplest.NewSender(bob.curve, kos.Kappa, uniqueSessionId)
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if err != nil {
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return nil, errors.Wrap(err, "bob constructing new OT sender in refresh round 2")
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}
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seedOTRound1Output, err := bob.sender.Round1ComputeAndZkpToPublicKey()
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if err != nil {
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return nil, errors.Wrap(err, "bob computing round 1 of seed OT within refresh round 2")
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}
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return &RefreshRound2Output{
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SeedOTRound1Output: seedOTRound1Output,
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BobMultiplier: bobSeed,
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}, nil
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}
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func (alice *Alice) Round3RefreshMultiplyRound2Ot(input *RefreshRound2Output) ([]simplest.ReceiversMaskedChoices, error) {
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alice.transcript.AppendMessage([]byte("bob refresh seed"), input.BobMultiplier.Bytes())
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k, err := alice.curve.NewScalar().SetBytes(
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alice.transcript.ExtractBytes([]byte("secret key share multiplier"), simplest.DigestSize),
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)
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if err != nil {
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return nil, errors.Wrap(err, "couldn't produce bob's secret key share multiplier")
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}
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kInverse, err := k.Invert()
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if err != nil {
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return nil, errors.Wrap(err, "couldn't produce k inverse (alice's secret key share)")
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}
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alice.secretKeyShare = alice.secretKeyShare.Mul(kInverse)
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uniqueSessionId := [simplest.DigestSize]byte{} // note: will use and re-use this below for sub-session IDs.
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copy(uniqueSessionId[:], alice.transcript.ExtractBytes([]byte("salt for simplest OT"), simplest.DigestSize))
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alice.receiver, err = simplest.NewReceiver(alice.curve, kos.Kappa, uniqueSessionId)
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if err != nil {
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return nil, errors.Wrap(err, "couldn't construct OT receiver")
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}
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return alice.receiver.Round2VerifySchnorrAndPadTransfer(input.SeedOTRound1Output)
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}
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func (bob *Bob) Round4RefreshRound3Ot(compressedReceiversMaskedChoice []simplest.ReceiversMaskedChoices) ([]simplest.OtChallenge, error) {
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return bob.sender.Round3PadTransfer(compressedReceiversMaskedChoice)
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}
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func (alice *Alice) Round5RefreshRound4Ot(challenge []simplest.OtChallenge) ([]simplest.OtChallengeResponse, error) {
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return alice.receiver.Round4RespondToChallenge(challenge)
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}
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func (bob *Bob) Round6RefreshRound5Ot(challengeResponses []simplest.OtChallengeResponse) ([]simplest.ChallengeOpening, error) {
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return bob.sender.Round5Verify(challengeResponses)
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}
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func (alice *Alice) Round7DkgRound6Ot(challengeOpenings []simplest.ChallengeOpening) error {
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return alice.receiver.Round6Verify(challengeOpenings)
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}
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func (alice *Alice) Output() *dkg.AliceOutput {
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return &dkg.AliceOutput{
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PublicKey: alice.publicKey,
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SecretKeyShare: alice.secretKeyShare,
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SeedOtResult: alice.receiver.Output,
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}
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}
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func (bob *Bob) Output() *dkg.BobOutput {
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return &dkg.BobOutput{
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PublicKey: bob.publicKey,
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SecretKeyShare: bob.secretKeyShare,
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SeedOtResult: bob.sender.Output,
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}
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}
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+186
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//
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// Copyright Coinbase, Inc. All Rights Reserved.
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//
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// SPDX-License-Identifier: Apache-2.0
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//
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package refresh_test
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import (
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"fmt"
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"testing"
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"github.com/stretchr/testify/require"
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"golang.org/x/crypto/sha3"
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"github.com/onsonr/sonr/pkg/crypto/core/curves"
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"github.com/onsonr/sonr/pkg/crypto/ot/extension/kos"
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"github.com/onsonr/sonr/pkg/crypto/tecdsa/dklsv1/dkg"
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"github.com/onsonr/sonr/pkg/crypto/tecdsa/dklsv1/refresh"
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"github.com/onsonr/sonr/pkg/crypto/tecdsa/dklsv1/sign"
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)
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func performDKG(t *testing.T, curve *curves.Curve) (*dkg.Alice, *dkg.Bob) {
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t.Helper()
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alice := dkg.NewAlice(curve)
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bob := dkg.NewBob(curve)
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seed, err := bob.Round1GenerateRandomSeed()
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require.NoError(t, err)
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round3Output, err := alice.Round2CommitToProof(seed)
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require.NoError(t, err)
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proof, err := bob.Round3SchnorrProve(round3Output)
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require.NoError(t, err)
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proof, err = alice.Round4VerifyAndReveal(proof)
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require.NoError(t, err)
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proof, err = bob.Round5DecommitmentAndStartOt(proof)
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require.NoError(t, err)
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compressedReceiversMaskedChoice, err := alice.Round6DkgRound2Ot(proof)
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require.NoError(t, err)
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challenge, err := bob.Round7DkgRound3Ot(compressedReceiversMaskedChoice)
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require.NoError(t, err)
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challengeResponse, err := alice.Round8DkgRound4Ot(challenge)
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require.NoError(t, err)
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challengeOpenings, err := bob.Round9DkgRound5Ot(challengeResponse)
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require.NoError(t, err)
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err = alice.Round10DkgRound6Ot(challengeOpenings)
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require.NoError(t, err)
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return alice, bob
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}
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func performRefresh(t *testing.T, curve *curves.Curve, aliceSecretKeyShare, bobSecretKeyShare curves.Scalar) (*refresh.Alice, *refresh.Bob) {
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t.Helper()
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alice := refresh.NewAlice(curve, &dkg.AliceOutput{SecretKeyShare: aliceSecretKeyShare})
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bob := refresh.NewBob(curve, &dkg.BobOutput{SecretKeyShare: bobSecretKeyShare})
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round1Output := alice.Round1RefreshGenerateSeed()
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require.False(t, round1Output.IsZero())
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round2Output, err := bob.Round2RefreshProduceSeedAndMultiplyAndStartOT(round1Output)
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require.NoError(t, err)
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round3Output, err := alice.Round3RefreshMultiplyRound2Ot(round2Output)
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require.NoError(t, err)
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round4Output, err := bob.Round4RefreshRound3Ot(round3Output)
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require.NoError(t, err)
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round5Output, err := alice.Round5RefreshRound4Ot(round4Output)
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require.NoError(t, err)
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round6Output, err := bob.Round6RefreshRound5Ot(round5Output)
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require.NoError(t, err)
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err = alice.Round7DkgRound6Ot(round6Output)
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require.NoError(t, err)
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return alice, bob
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}
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func Test_RefreshLeadsToTheSamePublicKeyButDifferentPrivateMaterial(t *testing.T) {
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t.Parallel()
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curveInstances := []*curves.Curve{
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curves.K256(),
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curves.P256(),
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}
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for _, curve := range curveInstances {
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boundCurve := curve
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t.Run(fmt.Sprintf("testing refresh for curve %s", boundCurve.Name), func(tt *testing.T) {
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tt.Parallel()
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alice, bob := performDKG(tt, boundCurve)
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publicKey := alice.Output().PublicKey
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require.True(tt, publicKey.Equal(bob.Output().PublicKey))
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aliceRefreshed, bobRefreshed := performRefresh(tt, boundCurve, alice.Output().SecretKeyShare, bob.Output().SecretKeyShare)
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require.NotEqual(tt, aliceRefreshed.Output().SecretKeyShare, alice.Output().SecretKeyShare)
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require.NotEqual(tt, bobRefreshed.Output().SeedOtResult, bob.Output().SecretKeyShare)
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require.NotEqualValues(
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tt,
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aliceRefreshed.Output().SeedOtResult.OneTimePadDecryptionKey,
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alice.Output().SeedOtResult.OneTimePadDecryptionKey,
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)
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require.NotEqualValues(
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tt,
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aliceRefreshed.Output().SeedOtResult.PackedRandomChoiceBits,
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alice.Output().SeedOtResult.PackedRandomChoiceBits,
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)
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require.NotEqualValues(
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tt,
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aliceRefreshed.Output().SeedOtResult.RandomChoiceBits,
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alice.Output().SeedOtResult.RandomChoiceBits,
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)
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require.NotEqualValues(
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tt,
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bobRefreshed.Output().SeedOtResult.OneTimePadEncryptionKeys,
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bob.Output().SeedOtResult.OneTimePadEncryptionKeys,
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)
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pkA := boundCurve.ScalarBaseMult(aliceRefreshed.Output().SecretKeyShare)
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computedPublicKeyA := pkA.Mul(bobRefreshed.Output().SecretKeyShare)
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require.True(tt, computedPublicKeyA.Equal(publicKey))
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pkB := boundCurve.ScalarBaseMult(bobRefreshed.Output().SecretKeyShare)
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computedPublicKeyB := pkB.Mul(aliceRefreshed.Output().SecretKeyShare)
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require.True(tt, computedPublicKeyB.Equal(publicKey))
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})
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}
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}
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func Test_RefreshOTIsCorrect(t *testing.T) {
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t.Parallel()
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curveInstances := []*curves.Curve{
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curves.K256(),
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curves.P256(),
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}
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for _, curve := range curveInstances {
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boundCurve := curve
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t.Run(fmt.Sprintf("testing OT correctness of key refresh for curve %s", boundCurve.Name), func(tt *testing.T) {
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tt.Parallel()
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alice, bob := performDKG(tt, boundCurve)
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aliceRefreshed, bobRefreshed := performRefresh(tt, boundCurve, alice.Output().SecretKeyShare, bob.Output().SecretKeyShare)
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for i := 0; i < kos.Kappa; i++ {
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if aliceRefreshed.Output().SeedOtResult.OneTimePadDecryptionKey[i] != bobRefreshed.Output().SeedOtResult.OneTimePadEncryptionKeys[i][aliceRefreshed.Output().SeedOtResult.RandomChoiceBits[i]] {
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tt.Errorf("oblivious transfer is incorrect at index i=%v", i)
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}
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}
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})
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}
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}
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func Test_CanSignAfterRefresh(t *testing.T) {
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t.Parallel()
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curveInstances := []*curves.Curve{
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curves.K256(),
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curves.P256(),
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}
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for _, curve := range curveInstances {
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boundCurve := curve
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t.Run(fmt.Sprintf("testing sign after refresh for curve %s", boundCurve.Name), func(tt *testing.T) {
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tt.Parallel()
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aliceDKG, bobDKG := performDKG(tt, boundCurve)
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publicKey := aliceDKG.Output().PublicKey
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require.True(tt, publicKey.Equal(bobDKG.Output().PublicKey))
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aliceRefreshed, bobRefreshed := performRefresh(tt, boundCurve, aliceDKG.Output().SecretKeyShare, bobDKG.Output().SecretKeyShare)
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alice := sign.NewAlice(boundCurve, sha3.New256(), &dkg.AliceOutput{
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SeedOtResult: aliceRefreshed.Output().SeedOtResult,
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SecretKeyShare: aliceRefreshed.Output().SecretKeyShare,
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PublicKey: publicKey,
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})
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bob := sign.NewBob(boundCurve, sha3.New256(), &dkg.BobOutput{
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SeedOtResult: bobRefreshed.Output().SeedOtResult,
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SecretKeyShare: bobRefreshed.Output().SecretKeyShare,
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PublicKey: publicKey,
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})
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message := []byte("A message.")
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seed, err := alice.Round1GenerateRandomSeed()
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require.NoError(tt, err)
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round3Output, err := bob.Round2Initialize(seed)
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require.NoError(tt, err)
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round4Output, err := alice.Round3Sign(message, round3Output)
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require.NoError(tt, err)
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err = bob.Round4Final(message, round4Output)
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require.NoError(tt, err, "curve: %s", boundCurve.Name)
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})
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}
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}
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Reference in New Issue
Block a user