mirror of
https://source.quilibrium.com/quilibrium/ceremonyclient.git
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161 lines
5.1 KiB
Go
161 lines
5.1 KiB
Go
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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 main
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import (
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"bufio"
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"encoding/hex"
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"fmt"
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"os"
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"source.quilibrium.com/quilibrium/monorepo/nekryptology/pkg/accumulator"
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"source.quilibrium.com/quilibrium/monorepo/nekryptology/pkg/core/curves"
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)
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func main() {
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curve := curves.BLS12381(&curves.PointBls12381G1{})
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sk, _ := new(accumulator.SecretKey).New(curve, []byte("1234567890"))
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pk, _ := sk.GetPublicKey(curve)
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skBytes, _ := sk.MarshalBinary()
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pkBytes, _ := pk.MarshalBinary()
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fmt.Println("Coinbase generates secret key and public key pair...")
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fmt.Printf("Coinbase publishes public key %v\n", hex.EncodeToString(pkBytes))
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fmt.Printf("Coinbase retains secret key %v\n", hex.EncodeToString(skBytes))
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// Enter initial elements
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fmt.Println("Coinbase starts initiating an accumulator")
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var userInput []string
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scanner := bufio.NewScanner(os.Stdin)
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fmt.Println("Coinbase enters the elements accumulated in the initial accumulator, press enter to start")
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for scanner.Scan() {
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fmt.Println("Enter a string or stop")
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line := scanner.Text()
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if line == "stop" {
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break
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}
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userInput = append(userInput, line+"\n")
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}
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elements := make([]accumulator.Element, len(userInput))
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for i := 0; i < len(elements); i++ {
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elements[i] = curve.Scalar.Hash([]byte(userInput[i]))
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}
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// Coinbase initiates a new accumulator with elements
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acc, err := new(accumulator.Accumulator).WithElements(curve, sk, elements)
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if err != nil || acc == nil {
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panic(err)
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}
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accBytes, _ := acc.MarshalBinary()
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fmt.Printf("Accumulator Initiated! Value is %v\n", hex.EncodeToString(accBytes))
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// Initiate a new membership witness
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fmt.Println("Coinbase issues a membership witness to a user")
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fmt.Println("Coinbase enters the element that a membership witness is associated with")
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reader := bufio.NewReader(os.Stdin)
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witnessInput, _ := reader.ReadString('\n')
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witElement := curve.Scalar.Hash([]byte(witnessInput))
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wit, err := new(accumulator.MembershipWitness).New(witElement, acc, sk)
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if err != nil {
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panic(err)
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}
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fmt.Printf("Coinbase issued membership witness associated to element %v\n", witnessInput)
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// User uses the witness to verify the membership
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fmt.Println("The user can use the witness to verify the associated element is accumulated")
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fmt.Println("verifying...")
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err = wit.Verify(pk, acc)
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if err != nil {
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panic(err)
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}
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fmt.Println("membership verification succeeds!")
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// Batch Update accumulator and membership witness
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fmt.Println("Coinbase could batch update the accumulator")
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fmt.Println("That is, Coinbase can add/delete multiple elements together")
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var addInput []string
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fmt.Println("Enter elements that you want to batch add, press enter the start")
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for scanner.Scan() {
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fmt.Println("Enter a string or stop")
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line := scanner.Text()
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if line == "stop" {
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break
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}
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addInput = append(addInput, line+"\n")
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}
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additions := make([]accumulator.Element, len(addInput))
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for i := 0; i < len(additions); i++ {
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additions[i] = curve.Scalar.Hash([]byte(addInput[i]))
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}
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var deleteInput []string
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fmt.Println("Enter elements that you want to batch delete, press enter to start")
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for scanner.Scan() {
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fmt.Println("Enter a string or stop")
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line := scanner.Text()
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if line == "stop" {
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break
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}
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deleteInput = append(deleteInput, line+"\n")
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}
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deletions := make([]accumulator.Element, len(deleteInput))
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for i := 0; i < len(deletions); i++ {
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deletions[i] = curve.Scalar.Hash([]byte(deleteInput[i]))
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}
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// Batch update accumulator
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_, coefficients, err := acc.Update(sk, additions, deletions)
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if err != nil {
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panic(err)
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}
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accBytes, _ = acc.MarshalBinary()
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fmt.Println("Accumulator batch-update succeeds!")
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fmt.Printf("The new accumulator value is %v\n", hex.EncodeToString(accBytes))
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// Batch update witness accordingly
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fmt.Println("User should batch-update his/her witness accordingly. This can be done by a trusted third party")
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fmt.Println("so that the witness is still usable to verify the associated element is accumulated")
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_, err = wit.BatchUpdate(additions, deletions, coefficients)
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if err != nil {
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panic(err)
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}
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err = wit.Verify(pk, acc)
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if err != nil {
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panic(err)
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}
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fmt.Println("Verification succeeds after batch-update")
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// Proof ownership of witness
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fmt.Println("The user can also generate a zero-knowledge proof proving the ownership of witness")
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params, err := new(accumulator.ProofParams).New(curve, pk, []byte("entropy"))
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if err != nil {
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panic(err)
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}
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mpc, err := new(accumulator.MembershipProofCommitting).New(wit, acc, params, pk)
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if err != nil {
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panic(err)
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}
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challenge := curve.Scalar.Hash(mpc.GetChallengeBytes())
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proof := mpc.GenProof(challenge)
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finalProof, err := proof.Finalize(acc, params, pk, challenge)
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if err != nil {
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panic(err)
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}
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proofBytes, err := proof.MarshalBinary()
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if err != nil {
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panic(err)
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}
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fmt.Println("ZK proof successfully generated!")
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fmt.Printf("ZK proof value is %v\n", hex.EncodeToString(proofBytes))
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fmt.Println("Verifying....")
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challenge2 := finalProof.GetChallenge(curve)
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if challenge.Cmp(challenge2) == 0 {
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fmt.Println("proof verification succeeds!")
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} else {
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fmt.Println("proof verification fails!")
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}
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}
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