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nf_anon.circom
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nf_anon.circom
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// Copyright © 2024 Kaleido, Inc.
//
// SPDX-License-Identifier: Apache-2.0
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
pragma circom 2.1.4;
include "./lib/check-hashes-tokenid-uri.circom";
include "./lib/ecdh.circom";
include "./lib/encrypt.circom";
include "./node_modules/circomlib/circuits/babyjub.circom";
// This version of the circuit performs the following operations:
// - derive the sender's public key from the sender's private key
// - check the input and output commitments match the expected hashes
// - check the token id and URI remain constant across the input and output commitments
template Zeto(nInputs, nOutputs) {
signal input tokenIds[nInputs];
signal input tokenUris[nInputs];
signal input inputCommitments[nInputs];
signal input inputSalts[nInputs];
signal input outputCommitments[nOutputs];
signal input outputSalts[nOutputs];
signal input outputOwnerPublicKeys[nOutputs][2];
// must be properly hashed and trimmed to be compatible with the BabyJub curve.
// Reference: https://github.com/iden3/circomlib/blob/master/test/babyjub.js#L103
signal input inputOwnerPrivateKey;
// derive the sender's public key from the secret input
// for the sender's private key. This step demonstrates
// the sender really owns the private key for the input
// UTXOs
var senderPublicKey[2];
component pub = BabyPbk();
pub.in <== inputOwnerPrivateKey;
senderPublicKey[0] = pub.Ax;
senderPublicKey[1] = pub.Ay;
var inputOwnerPublicKeys[nInputs][2];
for (var i = 0; i < nInputs; i++) {
inputOwnerPublicKeys[i][0] = senderPublicKey[0];
inputOwnerPublicKeys[i][1] = senderPublicKey[1];
}
component checkInputHashes = CheckHashesForTokenIdAndUri(nInputs);
checkInputHashes.tokenIds <== tokenIds;
checkInputHashes.tokenUris <== tokenUris;
checkInputHashes.commitments <== inputCommitments;
checkInputHashes.salts <== inputSalts;
checkInputHashes.ownerPublicKeys <== inputOwnerPublicKeys;
component checkOutputHashes = CheckHashesForTokenIdAndUri(nOutputs);
checkOutputHashes.tokenIds <== tokenIds;
checkOutputHashes.tokenUris <== tokenUris;
checkOutputHashes.commitments <== outputCommitments;
checkOutputHashes.salts <== outputSalts;
checkOutputHashes.ownerPublicKeys <== outputOwnerPublicKeys;
}
component main { public [ inputCommitments, outputCommitments ] } = Zeto(1, 1);