Change Goerli test contract to register new subdomains via it
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@ -5,6 +5,10 @@ pragma solidity ^0.8.19;
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interface IENSRegistry {
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function setSubnodeOwner(bytes32 node, bytes32 label, address owner) external returns (bytes32);
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function setSubnodeRecord(bytes32 node, bytes32 label, address owner, address resolver, uint64 ttl) external;
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function resolver(bytes32 node) external view returns (address);
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function setOwner(bytes32 node, address owner) external;
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function owner(bytes32 node) external view returns (address);
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39
test/ENSNamehash.sol
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39
test/ENSNamehash.sol
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@ -0,0 +1,39 @@
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// SPDX-License-Identifier: MIT
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pragma solidity ^0.8.19;
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/*
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* @dev Solidity implementation of the ENS namehash algorithm.
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*
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* Warning! Does not normalize or validate names before hashing.
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*/
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library ENSNamehash {
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function namehash(bytes memory domain) internal pure returns (bytes32) {
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return namehash(domain, 0);
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}
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function namehash(bytes memory domain, uint256 i) internal pure returns (bytes32) {
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if (domain.length <= i) {
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return 0x0000000000000000000000000000000000000000000000000000000000000000;
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}
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uint256 len = LabelLength(domain, i);
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return keccak256(abi.encodePacked(namehash(domain, i + len + 1), keccak(domain, i, len)));
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}
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function LabelLength(bytes memory domain, uint256 i) private pure returns (uint256) {
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uint256 len;
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while (i + len != domain.length && domain[i + len] != 0x2e) {
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len++;
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}
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return len;
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}
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function keccak(bytes memory data, uint256 offset, uint256 len) private pure returns (bytes32 ret) {
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require(offset + len <= data.length);
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assembly {
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ret := keccak256(add(add(data, 32), offset), len)
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}
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}
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}
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@ -4,25 +4,72 @@ pragma solidity ^0.8.19;
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import { IENSResolver } from "@interfaces/IENSResolver.sol";
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import { IENSRegistry } from "@interfaces/IENSRegistry.sol";
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import { ENSNamehash } from "./ENSNamehash.sol";
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import { Ownable } from "@openzeppelin/contracts/access/Ownable.sol";
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import { TornadoAddresses } from "@proprietary/TornadoAddresses.sol";
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contract GoerliTestProposal is Ownable, TornadoAddresses {
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address ensResolverAddress = 0xd7a4F6473f32aC2Af804B3686AE8F1932bC35750; // goerli ENS resolver
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address ensRegistryAddress = 0x00000000000C2E074eC69A0dFb2997BA6C7d2e1e;
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bytes32 testNode = 0xa8f2228d0331c20e8d36b0bf33b102b5b8d8d416db25502b04e5b854d7a5c556; // tornadotest.eth on Goerli
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string testDomain = "tornadotest.eth";
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bytes32 testNode = calculateDomainNode(testDomain);
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IENSResolver ensResolver = IENSResolver(ensResolverAddress);
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IENSRegistry ensRegistry = IENSRegistry(ensRegistryAddress);
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function changeNode(bytes32 newNode) public onlyOwner {
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function transferDomainOwnership(address to) public onlyOwner {
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_transferDomainOwnership(testNode, to);
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}
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function transferSubdomainOwnership(string memory domain, string memory subdomainLabel, address to) public onlyOwner {
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_transferSubdomainOwnership(domain, subdomainLabel, to);
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}
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function registerSubname(string memory domain, string memory subdomainLabel) public onlyOwner {
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bytes32 rootNode = calculateDomainNode(domain);
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address rootResolver = ensRegistry.resolver(rootNode);
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bytes32 subdomainLabelhash = calculateSubdomainLabelhash(subdomainLabel);
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ensRegistry.setSubnodeRecord(rootNode, subdomainLabelhash, address(this), rootResolver, 0);
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}
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function _transferDomainOwnership(bytes32 domainNode, address to) private {
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require(ensRegistry.owner(domainNode) == address(this), "This test contract must be an owner of domain");
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ensRegistry.setOwner(domainNode, to);
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}
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function _transferSubdomainOwnership(string memory domain, string memory subdomainLabel, address to) private {
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bytes32 rootNode = calculateDomainNode(domain);
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bytes32 subdomainLabelhash = calculateSubdomainLabelhash(subdomainLabel);
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bytes32 subdomainNode = keccak256(abi.encodePacked(rootNode, subdomainLabelhash));
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require(ensRegistry.recordExists(subdomainNode), "Subdomain not registered");
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require(ensRegistry.owner(rootNode) == address(this), "This test contract must be an owner of domain");
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ensRegistry.setSubnodeOwner(rootNode, subdomainLabelhash, to);
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}
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function setNewDomain(string memory newDomain) public onlyOwner {
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bytes32 newNode = ENSNamehash.namehash(bytes(newDomain));
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require(ensRegistry.recordExists(newNode), "Node doesn't exist");
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require(ensRegistry.owner(newNode) == address(this), "Contract is not an owner of new ENS name");
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transferDomainOwnership(owner());
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testDomain = newDomain;
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testNode = newNode;
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}
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function calculateDomainNode(string memory domain) internal pure returns (bytes32) {
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return ENSNamehash.namehash(bytes(domain));
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}
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function calculateSubdomainLabelhash(string memory subdomainLabel) internal pure returns (bytes32) {
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return keccak256(bytes(subdomainLabel));
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}
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function ownSubdomain(string memory domain, string memory subdomainLabel) public {
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_transferSubdomainOwnership(domain, subdomainLabel, address(this));
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}
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function setClassicUiIpfs() public {
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bytes memory classicUiIPFSContenthash = hex"e301017012208124caa06a8419371b1d2eab9180191727d1ce0c0832975362f77a679ce614b6";
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@ -47,11 +94,7 @@ contract GoerliTestProposal is Ownable, TornadoAddresses {
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ensResolver.setContenthash(testNode, docsIPFSContenthash);
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}
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function setStakingAddress() public {
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ensResolver.setAddr(testNode, stakingAddress);
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}
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function transferDomainOwnership(address to) public onlyOwner {
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ensRegistry.setOwner(testNode, to);
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function setStakingAddress(string memory domain) public {
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ensResolver.setAddr(calculateDomainNode(domain), stakingAddress);
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}
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}
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