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DutchOrderReactor.sol
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DutchOrderReactor.sol
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// SPDX-License-Identifier: GPL-2.0-or-later
pragma solidity ^0.8.0;
import {IPermit2} from "permit2/src/interfaces/IPermit2.sol";
import {BaseReactor} from "./BaseReactor.sol";
import {Permit2Lib} from "../lib/Permit2Lib.sol";
import {DutchDecayLib} from "../lib/DutchDecayLib.sol";
import {DutchOrderLib, DutchOrder, DutchOutput, DutchInput} from "../lib/DutchOrderLib.sol";
import {SignedOrder, ResolvedOrder} from "../base/ReactorStructs.sol";
/// @notice Reactor for dutch orders
contract DutchOrderReactor is BaseReactor {
using Permit2Lib for ResolvedOrder;
using DutchOrderLib for DutchOrder;
using DutchDecayLib for DutchOutput[];
using DutchDecayLib for DutchInput;
/// @notice thrown when an order's deadline is before its end time
error DeadlineBeforeEndTime();
/// @notice thrown when an order's inputs and outputs both decay
error InputAndOutputDecay();
constructor(IPermit2 _permit2, address _protocolFeeOwner) BaseReactor(_permit2, _protocolFeeOwner) {}
/// @inheritdoc BaseReactor
function _resolve(SignedOrder calldata signedOrder)
internal
view
virtual
override
returns (ResolvedOrder memory resolvedOrder)
{
DutchOrder memory order = abi.decode(signedOrder.order, (DutchOrder));
_validateOrder(order);
resolvedOrder = ResolvedOrder({
info: order.info,
input: order.input.decay(order.decayStartTime, order.decayEndTime),
outputs: order.outputs.decay(order.decayStartTime, order.decayEndTime),
sig: signedOrder.sig,
hash: order.hash()
});
}
/// @inheritdoc BaseReactor
function _transferInputTokens(ResolvedOrder memory order, address to) internal override {
permit2.permitWitnessTransferFrom(
order.toPermit(),
order.transferDetails(to),
order.info.swapper,
order.hash,
DutchOrderLib.PERMIT2_ORDER_TYPE,
order.sig
);
}
/// @notice validate the dutch order fields
/// - deadline must be greater than or equal than decayEndTime
/// - if there's input decay, outputs must not decay
/// @dev Throws if the order is invalid
function _validateOrder(DutchOrder memory order) internal pure {
if (order.info.deadline < order.decayEndTime) {
revert DeadlineBeforeEndTime();
}
if (order.input.startAmount != order.input.endAmount) {
for (uint256 i = 0; i < order.outputs.length; i++) {
if (order.outputs[i].startAmount != order.outputs[i].endAmount) {
revert InputAndOutputDecay();
}
}
}
}
}