makes possible to deploy contracts gas relayed
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@ -12,9 +12,11 @@ import "../token/ERC20Token.sol";
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contract IdentityGasRelay is Identity, MessageSigned {
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bytes4 public constant CALL_PREFIX = bytes4(keccak256("callGasRelay(address,uint256,bytes32,uint256,uint256,address)"));
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bytes4 public constant DEPLOY_PREFIX = bytes4(keccak256("deployGasRelay(uint256,bytes32,uint256,uint256,address)"));
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bytes4 public constant APPROVEANDCALL_PREFIX = bytes4(keccak256("approveAndCallGasRelay(address,address,uint256,bytes32,uint256,uint256)"));
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event ExecutedGasRelayed(bytes32 signHash, bool success);
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event ContractDeployed(address deployedAddress);
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/**
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* @notice include ethereum signed callHash in return of gas proportional amount multiplied by `_gasPrice` of `_gasToken`
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@ -84,6 +86,72 @@ contract IdentityGasRelay is Identity, MessageSigned {
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}
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}
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/**
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* @notice deploys contract in return of gas proportional amount multiplied by `_gasPrice` of `_gasToken`
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* allows identity of being controlled without requiring ether in key balace
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* @param _value call value (ether) to be sent to newly created contract
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* @param _data contract code data
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* @param _nonce current identity nonce
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* @param _gasPrice price in SNT paid back to msg.sender for each gas unit used
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* @param _gasLimit minimal gasLimit required to execute this call
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* @param _gasToken token being used for paying `msg.sender`
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* @param _messageSignatures rsv concatenated ethereum signed message signatures required
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*/
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function deployGasRelayed(
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uint256 _value,
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bytes _data,
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uint _nonce,
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uint _gasPrice,
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uint _gasLimit,
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address _gasToken,
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bytes _messageSignatures
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)
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external
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returns(address deployedAddress)
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{
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uint startGas = gasleft();
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//verify transaction parameters
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require(startGas >= _gasLimit);
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require(_nonce == nonce);
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// calculates signHash
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bytes32 signHash = getSignHash(
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deployGasRelayHash(
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_value,
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keccak256(_data),
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_nonce,
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_gasPrice,
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_gasLimit,
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_gasToken
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)
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);
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//verify if signatures are valid and came from correct actors;
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verifySignatures(
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ACTION_KEY,
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signHash,
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_messageSignatures
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);
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//executes transaction
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nonce++;
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deployedAddress = doCreate(_value, _data);
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emit ContractDeployed(deployedAddress);
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//refund gas used using contract held ERC20 tokens or ETH
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if (_gasPrice > 0) {
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uint256 _amount = 21000 + (startGas - gasleft());
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_amount = _amount * _gasPrice;
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if (_gasToken == address(0)) {
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address(msg.sender).transfer(_amount);
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} else {
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ERC20Token(_gasToken).transfer(msg.sender, _amount);
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}
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}
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}
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/**
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* @notice include ethereum signed approve ERC20 and call hash
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* (`ERC20Token(baseToken).approve(_to, _value)` + `_to.call(_data)`).
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@ -231,6 +299,40 @@ contract IdentityGasRelay is Identity, MessageSigned {
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);
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}
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/**
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* @notice get callHash
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* @param _value call value (ether)
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* @param _dataHash call data hash
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* @param _nonce current identity nonce
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* @param _gasPrice price in SNT paid back to msg.sender for each gas unit used
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* @param _gasLimit minimal gasLimit required to execute this call
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* @param _gasToken token being used for paying `msg.sender`
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* @return callGasRelayHash the hash to be signed by wallet
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*/
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function deployGasRelayHash(
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uint256 _value,
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bytes32 _dataHash,
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uint256 _nonce,
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uint256 _gasPrice,
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uint256 _gasLimit,
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address _gasToken
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)
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public
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view
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returns (bytes32 _callGasRelayHash)
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{
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_callGasRelayHash = keccak256(
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address(this),
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DEPLOY_PREFIX,
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_value,
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_dataHash,
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_nonce,
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_gasPrice,
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_gasLimit,
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_gasToken
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);
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}
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/**
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* @notice get callHash
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@ -347,4 +449,24 @@ contract IdentityGasRelay is Identity, MessageSigned {
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}
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/**
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* @notice creates new contract based on input `_code` and transfer `_value` ETH to this instance
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* @param _value amount ether in wei to sent to deployed address at its initialization
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* @param _data contract code
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*/
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function doCreate(
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uint _value,
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bytes _code
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)
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internal
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returns (address createdContract)
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{
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bool failed;
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assembly {
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createdContract := create(_value, add(_code, 0x20), mload(_code))
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failed := iszero(extcodesize(createdContract))
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}
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require(!failed);
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}
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}
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