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@@ -1,5 +1,6 @@
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require('@openzeppelin/test-helpers');
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require('@openzeppelin/test-helpers');
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+const { expectRevert } = require('@openzeppelin/test-helpers');
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const { MerkleTree } = require('merkletreejs');
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const { MerkleTree } = require('merkletreejs');
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const keccak256 = require('keccak256');
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const keccak256 = require('keccak256');
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@@ -62,4 +63,69 @@ contract('MerkleProof', function (accounts) {
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expect(await this.merkleProof.verify(badProof, root, leaf)).to.equal(false);
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expect(await this.merkleProof.verify(badProof, root, leaf)).to.equal(false);
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});
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});
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});
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});
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+
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+ describe('multiProofVerify', function () {
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+ it('returns true for a valid Merkle multi proof', async function () {
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+ const leaves = ['a', 'b', 'c', 'd', 'e', 'f'].map(keccak256).sort(Buffer.compare);
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+ const merkleTree = new MerkleTree(leaves, keccak256, { sort: true });
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+
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+ const root = merkleTree.getRoot();
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+ const proofLeaves = ['b', 'f', 'd'].map(keccak256).sort(Buffer.compare);
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+ const proof = merkleTree.getMultiProof(proofLeaves);
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+ const proofFlags = merkleTree.getProofFlags(proofLeaves, proof);
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+
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+ expect(await this.merkleProof.multiProofVerify(root, proofLeaves, proof, proofFlags)).to.equal(true);
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+ });
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+
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+ it('returns false for an invalid Merkle multi proof', async function () {
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+ const leaves = ['a', 'b', 'c', 'd', 'e', 'f'].map(keccak256).sort(Buffer.compare);
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+ const merkleTree = new MerkleTree(leaves, keccak256, { sort: true });
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+
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+ const root = merkleTree.getRoot();
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+ const badProofLeaves = ['g', 'h', 'i'].map(keccak256).sort(Buffer.compare);
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+ const badMerkleTree = new MerkleTree(badProofLeaves);
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+ const badProof = badMerkleTree.getMultiProof(badProofLeaves);
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+ const badProofFlags = badMerkleTree.getProofFlags(badProofLeaves, badProof);
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+
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+ expect(await this.merkleProof.multiProofVerify(root, badProofLeaves, badProof, badProofFlags)).to.equal(false);
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+ });
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+
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+ it('revert with invalid multi proof #1', async function () {
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+ const fill = Buffer.alloc(32); // This could be anything, we are reconstructing a fake branch
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+ const leaves = ['a', 'b', 'c', 'd'].map(keccak256).sort(Buffer.compare);
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+ const badLeave = keccak256('e');
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+ const merkleTree = new MerkleTree(leaves, keccak256, { sort: true });
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+
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+ const root = merkleTree.getRoot();
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+
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+ await expectRevert(
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+ this.merkleProof.multiProofVerify(
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+ root,
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+ [ leaves[0], badLeave ], // A, E
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+ [ leaves[1], fill, merkleTree.layers[1][1] ],
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+ [ false, false, false ],
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+ ),
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+ 'MerkleProof: invalid multiproof',
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+ );
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+ });
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+
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+ it('revert with invalid multi proof #2', async function () {
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+ const fill = Buffer.alloc(32); // This could be anything, we are reconstructing a fake branch
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+ const leaves = ['a', 'b', 'c', 'd'].map(keccak256).sort(Buffer.compare);
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+ const badLeave = keccak256('e');
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+ const merkleTree = new MerkleTree(leaves, keccak256, { sort: true });
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+
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+ const root = merkleTree.getRoot();
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+
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+ await expectRevert(
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+ this.merkleProof.multiProofVerify(
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+ root,
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+ [ badLeave, leaves[0] ], // A, E
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+ [ leaves[1], fill, merkleTree.layers[1][1] ],
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+ [ false, false, false, false ],
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+ ),
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+ 'reverted with panic code 0x32',
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+ );
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+ });
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+ });
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});
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});
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