fix lookup and also enable lookup for new subdomains
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8102a13f58
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297128290a
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@ -34,13 +34,13 @@ contract FIFSRegistrar {
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* @param subnode The hash of the label to register.
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* @param owner The address of the new owner.
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*/
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function register(bytes32 subnode, address owner, address _account) public only_owner(subnode) {
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function register(bytes32 subnode, address owner, address nodeAddress) public only_owner(subnode) {
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bytes32 subdomainHash = sha3(rootNode, subnode);
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ens.setSubnodeOwner(rootNode, subnode, owner);
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ens.setResolver(subdomainHash, resolver); //default resolver
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bool resolveAccount = _account != address(0);
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bool resolveAccount = nodeAddress != address(0);
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if (resolveAccount) {
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resolver.setAddr(subdomainHash, _account);
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resolver.setAddr(subdomainHash, nodeAddress);
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}
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}
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}
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@ -1,42 +1,198 @@
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pragma solidity ^0.4.18;
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pragma solidity ^0.4.23;
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import './ENS.sol';
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import "./ENS.sol";
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/**
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* A simple resolver anyone can use; only allows the owner of a node to set its
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* address.
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*/
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contract Resolver {
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event AddrChanged(bytes32 indexed node, address a);
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event ContentChanged(bytes32 indexed node, bytes32 hash);
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event NameChanged(bytes32 indexed node, string name);
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event ABIChanged(bytes32 indexed node, uint256 indexed contentType);
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event PubkeyChanged(bytes32 indexed node, bytes32 x, bytes32 y);
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event TextChanged(bytes32 indexed node, string indexedKey, string key);
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struct PublicKey {
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bytes32 x;
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bytes32 y;
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}
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struct Record {
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address addr;
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bytes32 content;
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string name;
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PublicKey pubkey;
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mapping(string=>string) text;
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mapping(uint256=>bytes) abis;
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}
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ENS ens;
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mapping(bytes32 => address) addresses;
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mapping (bytes32 => Record) records;
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modifier only_owner(bytes32 node) {
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require(ens.owner(node) == msg.sender);
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_;
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}
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function Resolver(address ensAddr) {
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ens = ENS(ensAddr);
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/**
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* Constructor.
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* @param ensAddr The ENS registrar contract.
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*/
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constructor(ENS ensAddr) public {
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ens = ensAddr;
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}
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function addr(bytes32 node) constant returns (address ret) {
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ret = addresses[node];
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}
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// function setAddr(bytes32 node, address addr) only_owner(node) {
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// addresses[node] = addr;
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// AddrChanged(node, addr);
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/**
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* Sets the address associated with an ENS node.
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* May only be called by the owner of that node in the ENS registry.
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* @param node The node to update.
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* @param addr The address to set.
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*/
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// function setAddr(bytes32 node, address addr) public only_owner(node) {
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// records[node].addr = addr;
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// emit AddrChanged(node, addr);
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// }
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function setAddr(bytes32 node, address addr) {
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addresses[node] = addr;
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AddrChanged(node, addr);
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function setAddr(bytes32 node, address addr) public {
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records[node].addr = addr;
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emit AddrChanged(node, addr);
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}
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function supportsInterface(bytes4 interfaceID) constant returns (bool) {
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return interfaceID == 0x3b3b57de || interfaceID == 0x01ffc9a7;
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/**
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* Sets the content hash associated with an ENS node.
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* May only be called by the owner of that node in the ENS registry.
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* Note that this resource type is not standardized, and will likely change
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* in future to a resource type based on multihash.
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* @param node The node to update.
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* @param hash The content hash to set
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*/
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function setContent(bytes32 node, bytes32 hash) public only_owner(node) {
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records[node].content = hash;
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emit ContentChanged(node, hash);
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}
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function() {
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throw;
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/**
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* Sets the name associated with an ENS node, for reverse records.
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* May only be called by the owner of that node in the ENS registry.
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* @param node The node to update.
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* @param name The name to set.
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*/
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// function setName(bytes32 node, string name) public only_owner(node) {
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// records[node].name = name;
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// emit NameChanged(node, name);
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// }
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function setName(bytes32 node, string name) public {
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records[node].name = name;
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emit NameChanged(node, name);
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}
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/**
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* Sets the ABI associated with an ENS node.
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* Nodes may have one ABI of each content type. To remove an ABI, set it to
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* the empty string.
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* @param node The node to update.
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* @param contentType The content type of the ABI
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* @param data The ABI data.
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*/
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function setABI(bytes32 node, uint256 contentType, bytes data) public only_owner(node) {
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// Content types must be powers of 2
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require(((contentType - 1) & contentType) == 0);
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records[node].abis[contentType] = data;
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emit ABIChanged(node, contentType);
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}
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/**
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* Sets the SECP256k1 public key associated with an ENS node.
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* @param node The ENS node to query
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* @param x the X coordinate of the curve point for the public key.
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* @param y the Y coordinate of the curve point for the public key.
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*/
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function setPubkey(bytes32 node, bytes32 x, bytes32 y) public only_owner(node) {
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records[node].pubkey = PublicKey(x, y);
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emit PubkeyChanged(node, x, y);
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}
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/**
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* Sets the text data associated with an ENS node and key.
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* May only be called by the owner of that node in the ENS registry.
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* @param node The node to update.
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* @param key The key to set.
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* @param value The text data value to set.
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*/
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function setText(bytes32 node, string key, string value) public only_owner(node) {
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records[node].text[key] = value;
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emit TextChanged(node, key, key);
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}
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/**
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* Returns the text data associated with an ENS node and key.
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* @param node The ENS node to query.
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* @param key The text data key to query.
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* @return The associated text data.
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*/
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function text(bytes32 node, string key) public view returns (string) {
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return records[node].text[key];
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}
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/**
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* Returns the SECP256k1 public key associated with an ENS node.
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* Defined in EIP 619.
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* @param node The ENS node to query
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* @return x, y the X and Y coordinates of the curve point for the public key.
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*/
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function pubkey(bytes32 node) public view returns (bytes32 x, bytes32 y) {
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return (records[node].pubkey.x, records[node].pubkey.y);
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}
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/**
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* Returns the ABI associated with an ENS node.
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* Defined in EIP205.
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* @param node The ENS node to query
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* @param contentTypes A bitwise OR of the ABI formats accepted by the caller.
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* @return contentType The content type of the return value
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* @return data The ABI data
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*/
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function ABI(bytes32 node, uint256 contentTypes) public view returns (uint256 contentType, bytes data) {
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Record storage record = records[node];
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for (contentType = 1; contentType <= contentTypes; contentType <<= 1) {
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if ((contentType & contentTypes) != 0 && record.abis[contentType].length > 0) {
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data = record.abis[contentType];
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return;
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}
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}
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contentType = 0;
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}
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/**
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* Returns the name associated with an ENS node, for reverse records.
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* Defined in EIP181.
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* @param node The ENS node to query.
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* @return The associated name.
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*/
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function name(bytes32 node) public view returns (string) {
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return records[node].name;
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}
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/**
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* Returns the content hash associated with an ENS node.
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* Note that this resource type is not standardized, and will likely change
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* in future to a resource type based on multihash.
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* @param node The ENS node to query.
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* @return The associated content hash.
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*/
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function content(bytes32 node) public view returns (bytes32) {
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return records[node].content;
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}
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/**
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* Returns the address associated with an ENS node.
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* @param node The ENS node to query.
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* @return The associated address.
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*/
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function addr(bytes32 node) public view returns (address) {
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return records[node].addr;
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}
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}
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@ -29,14 +29,21 @@ class ENS {
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self.events.request('contracts:contract', "FIFSRegistrar", (contract) => {
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paraCb(null, contract);
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});
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},
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function getResolver(paraCb) {
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self.events.request('contracts:contract', "Resolver", (contract) => {
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paraCb(null, contract);
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});
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}
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], (err, results) => {
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// result[0] => ENSRegistry; result[1] => FIFSRegistrar
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// result[0] => ENSRegistry; result[1] => FIFSRegistrar; result[2] => FIFSRegistrar
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let config = {
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registryAbi: results[0].abiDefinition,
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registryAddress: results[0].deployedAddress,
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registrarAbi: results[1].abiDefinition,
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registrarAddress: results[1].deployedAddress
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registrarAddress: results[1].deployedAddress,
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resolverAbi: results[2].abiDefinition,
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resolverAddress: results[2].deployedAddress
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};
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self.addSetProvider(config);
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"onDeploy": [
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`ENSRegistry.methods.setOwner('${rootNode}', web3.eth.defaultAccount).send().then(() => {
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ENSRegistry.methods.setResolver('${rootNode}', "$Resolver").send();
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var reverseNode = web3.utils.sha3(web3.eth.defaultAccount.toLowerCase().substr(2) + '.addr.reverse');
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ENSRegistry.methods.setResolver(reverseNode, "$Resolver").send();
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Resolver.methods.setAddr('${rootNode}', web3.eth.defaultAccount).send();
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Resolver.methods.setName(reverseNode, '${this.registration.rootDomain}').send();
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})`
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]
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}
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