tornado-core/contracts/ERC20Mixer.sol

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// https://tornado.cash
/*
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*/
pragma solidity ^0.5.8;
import "./Mixer.sol";
contract ERC20Mixer is Mixer {
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address public token;
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// ether value to cover network fee (for relayer) and to have some ETH on a brand new address
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uint256 public userEther;
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constructor(
address _verifier,
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uint256 _userEther,
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uint8 _merkleTreeHeight,
uint256 _emptyElement,
address payable _operator,
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address _token,
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uint256 _mixDenomination
) Mixer(_verifier, _mixDenomination, _merkleTreeHeight, _emptyElement, _operator) public {
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token = _token;
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userEther = _userEther;
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}
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function _processDeposit() internal {
require(msg.value == userEther, "Please send `userEther` ETH along with transaction");
safeErc20TransferFrom(msg.sender, address(this), mixDenomination);
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}
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function _processWithdraw(address payable _receiver, address payable _relayer, uint256 _fee) internal {
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_receiver.transfer(userEther);
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safeErc20Transfer(_receiver, mixDenomination - _fee);
if (_fee > 0) {
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safeErc20Transfer(_relayer, _fee);
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}
}
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function safeErc20TransferFrom(address from, address to, uint256 amount) internal {
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bool success;
bytes memory data;
bytes4 transferFromSelector = 0x23b872dd;
(success, data) = token.call(
abi.encodeWithSelector(
transferFromSelector,
from, to, amount
)
);
require(success, "not enough allowed tokens");
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// if contract returns some data let's make sure that is `true` according to standard
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if (data.length > 0) {
assembly {
success := mload(add(data, 0x20))
}
require(success, "not enough allowed tokens");
}
}
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function safeErc20Transfer(address to, uint256 amount) internal {
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bool success;
bytes memory data;
bytes4 transferSelector = 0xa9059cbb;
(success, data) = token.call(
abi.encodeWithSelector(
transferSelector,
to, amount
)
);
require(success, "not enough tokens");
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// if contract returns some data let's make sure that is `true` according to standard
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if (data.length > 0) {
assembly {
success := mload(add(data, 0x20))
}
require(success, "not enough tokens");
}
}
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}