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@ -4,17 +4,17 @@ pragma solidity ^0.6.0;
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pragma experimental ABIEncoderV2;
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import "torn-token/contracts/ENS.sol";
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import "./interfaces/ITornadoTrees.sol";
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import "./interfaces/ITornadoTreesV1.sol";
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import "./interfaces/IVerifier.sol";
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contract TornadoTrees is ITornadoTrees, EnsResolve {
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contract TornadoTrees is EnsResolve {
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address public immutable governance;
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bytes32 public depositRoot;
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bytes32 public previousDepositRoot;
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bytes32 public withdrawalRoot;
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bytes32 public previousWithdrawalRoot;
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address public tornadoProxy;
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IVerifier public immutable treeUpdateVerifier;
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IVerifier public treeUpdateVerifier;
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// make sure CHUNK_TREE_HEIGHT has the same value in BatchTreeUpdate.circom
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uint256 public constant CHUNK_TREE_HEIGHT = 2;
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@ -29,6 +29,8 @@ contract TornadoTrees is ITornadoTrees, EnsResolve {
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bytes32[] public withdrawals;
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uint256 public lastProcessedWithdrawalLeaf;
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bool public initialized;
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event DepositData(address instance, bytes32 indexed hash, uint256 block, uint256 index);
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event WithdrawalData(address instance, bytes32 indexed hash, uint256 block, uint256 index);
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@ -55,30 +57,100 @@ contract TornadoTrees is ITornadoTrees, EnsResolve {
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_;
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}
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constructor(
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bytes32 _governance,
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bytes32 _tornadoProxy,
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bytes32 _treeUpdateVerifier,
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bytes32 _depositRoot,
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bytes32 _withdrawalRoot
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) public {
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governance = resolve(_governance);
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tornadoProxy = resolve(_tornadoProxy);
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treeUpdateVerifier = IVerifier(resolve(_treeUpdateVerifier));
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depositRoot = _depositRoot;
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withdrawalRoot = _withdrawalRoot;
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modifier onlyInitialized() {
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require(initialized, "The contract is in the process of the migration");
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_;
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}
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function registerDeposit(address _instance, bytes32 _commitment) external override onlyTornadoProxy {
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constructor(
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address _governance,
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address _tornadoProxy,
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ITornadoTreesV1 _tornadoTreesV1,
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IVerifier _treeUpdateVerifier
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) public {
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governance = _governance;
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tornadoProxy = _tornadoProxy;
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treeUpdateVerifier = _treeUpdateVerifier;
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depositRoot = _tornadoTreesV1.depositRoot();
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withdrawalRoot = _tornadoTreesV1.withdrawalRoot();
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uint256 _lastProcessedDepositLeaf = _tornadoTreesV1.lastProcessedDepositLeaf();
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require(_lastProcessedDepositLeaf % CHUNK_SIZE == 0, "Incorrect TornadoTrees contract state");
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lastProcessedDepositLeaf = _lastProcessedDepositLeaf;
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uint256 _lastProcessedWithdrawalLeaf = _tornadoTreesV1.lastProcessedWithdrawalLeaf();
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require(_lastProcessedWithdrawalLeaf % CHUNK_SIZE == 0, "Incorrect TornadoTrees contract state");
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lastProcessedWithdrawalLeaf = _lastProcessedWithdrawalLeaf;
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uint256 i = _lastProcessedDepositLeaf + 1;
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// todo deposits.length = _tornadoTreesV1.deposits.length
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while (true) {
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bytes32 deposit = _tornadoTreesV1.deposits(i);
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if (deposit == bytes32(0)) {
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break;
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}
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i++;
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deposits.push(deposit);
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}
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i = _lastProcessedWithdrawalLeaf + 1;
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while (true) {
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bytes32 withdrawal = _tornadoTreesV1.withdrawals(i);
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if (withdrawal == bytes32(0)) {
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break;
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}
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i++;
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withdrawals.push(withdrawal);
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}
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}
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function registerDeposit(address _instance, bytes32 _commitment) external onlyTornadoProxy onlyInitialized {
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deposits.push(keccak256(abi.encode(_instance, _commitment, blockNumber())));
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emit DepositData(_instance, _commitment, blockNumber(), deposits.length - 1);
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}
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function registerWithdrawal(address _instance, bytes32 _nullifierHash) external override onlyTornadoProxy {
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function registerWithdrawal(address _instance, bytes32 _nullifierHash) external onlyTornadoProxy onlyInitialized {
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withdrawals.push(keccak256(abi.encode(_instance, _nullifierHash, blockNumber())));
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emit WithdrawalData(_instance, _nullifierHash, blockNumber(), withdrawals.length - 1);
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}
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function migrate(TreeLeaf[] calldata _depositEvents, TreeLeaf[] calldata _withdrawalEvents) external {
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require(!initialized, "Already migrated");
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uint256 _lastProcessedDepositLeaf = lastProcessedDepositLeaf;
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uint256 _depositLength = deposits.length;
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for (uint256 i = 0; i < _depositLength - _lastProcessedDepositLeaf; i++) {
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bytes32 leafHash = keccak256(abi.encode(_depositEvents[i].instance, _depositEvents[i].hash, _depositEvents[i].block));
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require(leafHash == deposits[_lastProcessedDepositLeaf + i], "Incorrect deposit");
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emit DepositData(
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_depositEvents[i].instance,
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_depositEvents[i].hash,
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_depositEvents[i].block,
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_lastProcessedDepositLeaf + i
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);
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}
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uint256 _withdrawalLength = withdrawals.length;
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uint256 _lastProcessedWithdrawalLeaf = lastProcessedWithdrawalLeaf;
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for (uint256 i = 0; i < _withdrawalLength - _lastProcessedWithdrawalLeaf; i++) {
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bytes32 leafHash = keccak256(
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abi.encode(_withdrawalEvents[i].instance, _withdrawalEvents[i].hash, _withdrawalEvents[i].block)
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);
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require(leafHash == withdrawals[_lastProcessedWithdrawalLeaf + i], "Incorrect deposit");
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emit DepositData(
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_withdrawalEvents[i].instance,
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_withdrawalEvents[i].hash,
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_withdrawalEvents[i].block,
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_lastProcessedWithdrawalLeaf + i
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);
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}
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initialized = true;
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}
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// если чтото загрузит руты на старый контракт во время миграции то пизда
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// todo !!! ensure that during migration the tree is filled evenly
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function updateDepositTree(
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bytes calldata _proof,
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@ -87,7 +159,7 @@ contract TornadoTrees is ITornadoTrees, EnsResolve {
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bytes32 _newRoot,
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uint32 _pathIndices,
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TreeLeaf[CHUNK_SIZE] calldata _events
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) public {
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) public onlyInitialized {
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uint256 offset = lastProcessedDepositLeaf;
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require(_newRoot != previousDepositRoot, "Outdated deposit root");
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require(_currentRoot == depositRoot, "Proposed deposit root is invalid");
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@ -127,7 +199,7 @@ contract TornadoTrees is ITornadoTrees, EnsResolve {
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bytes32 _newRoot,
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uint256 _pathIndices,
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TreeLeaf[CHUNK_SIZE] calldata _events
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) public {
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) public onlyInitialized {
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uint256 offset = lastProcessedWithdrawalLeaf;
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require(_newRoot != previousWithdrawalRoot, "Outdated withdrawal root");
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require(_currentRoot == withdrawalRoot, "Proposed withdrawal root is invalid");
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@ -187,6 +259,10 @@ contract TornadoTrees is ITornadoTrees, EnsResolve {
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tornadoProxy = _tornadoProxy;
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}
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function setVerifierContract(IVerifier _treeUpdateVerifier) external onlyGovernance {
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treeUpdateVerifier = _treeUpdateVerifier;
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}
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function blockNumber() public view virtual returns (uint256) {
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return block.number;
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}
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@ -1,9 +0,0 @@
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// SPDX-License-Identifier: MIT
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pragma solidity ^0.6.0;
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interface ITornadoTrees {
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function registerDeposit(address instance, bytes32 commitment) external;
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function registerWithdrawal(address instance, bytes32 nullifier) external;
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}
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contracts/interfaces/ITornadoTreesV1.sol
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21
contracts/interfaces/ITornadoTreesV1.sol
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@ -0,0 +1,21 @@
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// SPDX-License-Identifier: MIT
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pragma solidity ^0.6.0;
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interface ITornadoTreesV1 {
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function lastProcessedDepositLeaf() external view returns (uint256);
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function lastProcessedWithdrawalLeaf() external view returns (uint256);
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function depositRoot() external view returns (bytes32);
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function withdrawalRoot() external view returns (bytes32);
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function deposits(uint256 i) external view returns (bytes32);
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function withdrawals(uint256 i) external view returns (bytes32);
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function registerDeposit(address instance, bytes32 commitment) external;
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function registerWithdrawal(address instance, bytes32 nullifier) external;
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}
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@ -4,17 +4,18 @@ pragma solidity ^0.6.0;
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pragma experimental ABIEncoderV2;
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import "../TornadoTrees.sol";
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import "../interfaces/ITornadoTreesV1.sol";
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import "../interfaces/IVerifier.sol";
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contract TornadoTreesMock is TornadoTrees {
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uint256 public currentBlock;
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constructor(
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bytes32 _governance,
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bytes32 _tornadoProxy,
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bytes32 _treeUpdateVerifier,
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bytes32 _depositRoot,
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bytes32 _withdrawalRoot
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) public TornadoTrees(_governance, _tornadoProxy, _treeUpdateVerifier, _depositRoot, _withdrawalRoot) {}
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address _governance,
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address _tornadoProxy,
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ITornadoTreesV1 _tornadoTreesV1,
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IVerifier _treeUpdateVerifier
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) public TornadoTrees(_governance, _tornadoProxy, _tornadoTreesV1, _treeUpdateVerifier) {}
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function resolve(bytes32 _addr) public view override returns (address) {
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return address(uint160(uint256(_addr) >> (12 * 8)));
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