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offline inboxing payout contract
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contracts/status/MessageDeliveryPayout.sol
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79
contracts/status/MessageDeliveryPayout.sol
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pragma solidity ^0.4.17;
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import "../token/ERC20Token.sol";
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contract MessageDeliveryPayout {
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ERC20Token SNT;
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mapping(bytes32 => bool) delivered;
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event Delivered(address indexed sender, bytes32 message);
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function MessageDeliveryPayout(ERC20Token _snt) public {
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SNT = _snt;
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}
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/**
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* @notice confirms delivery of message and payouts to whoever delivered the message
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* @notice `_sender` needs to approve against this contract, check _sender `SNT` token approval before trying to confirm;
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* @param _sender the address of message sender
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* @param _receiver the address of message destination
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* @param _message the hash of the message
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* @param _deliveryFee the amount willing to pay to deliver the message
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* @param _senderSignature signature of contract address, message receiver, message hash, and delivery fee by `_sender`
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* @param _receiverSignature signature of contract adress, message hash
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*/
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function confirmDelivery(address _sender, address _receiver, bytes32 _message, uint256 _deliveryFee, bytes _senderSignature, bytes _receiverSignature) public {
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require(!delivered[_message]);
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var (v,r,s) = signatureSplit(_senderSignature);
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require(ecrecover(getSignedHash(keccak256(address(this), _receiver, _message, _deliveryFee)), v,r,s) == address(_sender));
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(v,r,s) = signatureSplit(_receiverSignature);
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require(ecrecover(getSignedHash(keccak256(address(this), _message)), v,r,s) == address(_receiver));
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SNT.transferFrom(_sender, msg.sender, _deliveryFee);
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delivered[_message] = true;
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Delivered(_sender, _message);
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}
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/**
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* @notice Hash a hash with `"\x19Ethereum Signed Message:\n32"`
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* @param _hash Sign to hash.
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* @return signHash Hash to be signed.
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*/
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function getSignedHash(
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bytes32 _hash
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)
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pure
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public
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returns(bytes32 signHash)
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{
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signHash = keccak256("\x19Ethereum Signed Message:\n32", _hash);
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}
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/**
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* @dev divides bytes signature into `uint8 v, bytes32 r, bytes32 s`
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*/
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function signatureSplit(bytes signature)
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pure
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private
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returns (uint8 v, bytes32 r, bytes32 s)
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{
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// The signature format is a compact form of:
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// {bytes32 r}{bytes32 s}{uint8 v}
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// Compact means, uint8 is not padded to 32 bytes.
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assembly {
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r := mload(add(signature, 32))
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s := mload(add(signature, 64))
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// Here we are loading the last 32 bytes, including 31 bytes
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// of 's'. There is no 'mload8' to do this.
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//
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// 'byte' is not working due to the Solidity parser, so lets
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// use the second best option, 'and'
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v := and(mload(add(signature, 65)), 0xff)
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}
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require(v == 27 || v == 28);
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}
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}
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