mirror of
https://github.com/Instadapp/dsa-periphery-contract.git
synced 2024-07-29 22:27:13 +00:00
106 lines
4.1 KiB
Solidity
106 lines
4.1 KiB
Solidity
// SPDX-License-Identifier: UNLICENSED
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pragma solidity ^0.8.13;
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import {ECDSA} from "@openzeppelin/contracts/utils/cryptography/ECDSA.sol";
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import {EIP712} from "@openzeppelin/contracts/utils/cryptography/EIP712.sol";
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import {IDSA} from "../contracts/interfaces/IDSA.sol";
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import {InstadappAdapter} from "../contracts/InstadappAdapter.sol";
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import {TestHelper} from "./utils/TestHelper.sol";
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import {InstadappTarget} from "../contracts/InstadappTarget.sol";
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import {TestERC20} from "./utils/TestERC20.sol";
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contract InstadappTargetTest is TestHelper, EIP712 {
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// ============ Storage ============
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InstadappTarget instadappTarget;
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// ============ Events ============
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event AuthCast(bytes32 transferId, address dsaAddress, address auth, bool success, bytes returnedData);
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// ============ Test set up ============
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function setUp() public override {
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super.setUp();
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instadappTarget = new InstadappTarget(MOCK_CONNEXT);
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}
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constructor() EIP712("InstaTargetAuth", "1") {}
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function test_InstadappTarget__xReceive_shouldRevertIfCallerNotConnext() public {
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bytes32 transferId = keccak256(abi.encode(0x123));
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uint256 amount = 1 ether;
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address asset = address(0x123123123);
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bytes memory callData = bytes("123");
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vm.prank(address(0x456));
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vm.expectRevert(bytes("Caller must be Connext"));
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instadappTarget.xReceive(transferId, amount, asset, address(0), 0, callData);
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}
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function test_InstadappTarget__xReceive_shouldRevertIfFallbackAddressInvalid() public {
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// Mock xReceive data
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bytes32 transferId = keccak256(abi.encode(0x123));
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uint256 amount = 1 ether;
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address asset = address(0x123123123);
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// Mock callData of `xReceive`
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address originSender = address(0xc1aAED5D41a3c3c33B1978EA55916f9A3EE1B397);
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string[] memory _targetNames = new string[](3);
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_targetNames[0] = "target111";
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_targetNames[1] = "target222";
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_targetNames[2] = "target333";
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bytes[] memory _datas = new bytes[](3);
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_datas[0] = bytes("0x111");
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_datas[1] = bytes("0x222");
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_datas[2] = bytes("0x333");
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address _origin = originSender;
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InstadappAdapter.CastData memory castData = InstadappAdapter.CastData(_targetNames, _datas, _origin);
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bytes
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memory signature = hex"d75642b5e0cfceac682011943f3586fefc3709594a89bf8087acc58d2009d85412aca8b1f9b63989de45da85f5ffcea52cc5077a61a2128fa7322a97523afe0e1b";
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address auth = originSender;
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bytes memory callData = abi.encode(address(0), auth, signature, castData);
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vm.prank(MOCK_CONNEXT);
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vm.expectRevert(bytes("!invalidFallback"));
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instadappTarget.xReceive(transferId, amount, asset, address(0), 0, callData);
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}
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function test_InstadappTarget__xReceive_shouldWork() public {
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// Mock xReceive data
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bytes32 transferId = keccak256(abi.encode(0x123));
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uint256 amount = 1 ether;
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TestERC20 asset = new TestERC20("Test", "TST");
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// Mock callData of `xReceive`
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address originSender = vm.addr(1);
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string[] memory _targetNames = new string[](3);
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_targetNames[0] = "target111";
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_targetNames[1] = "target222";
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_targetNames[2] = "target333";
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bytes[] memory _datas = new bytes[](3);
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_datas[0] = bytes("0x111");
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_datas[1] = bytes("0x222");
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_datas[2] = bytes("0x333");
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address _origin = originSender;
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address dsa = address(0x111222333);
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bytes32 salt = bytes32(0x1234567890abcdef1234567890abcdef1234567890abcdef1234567890abcdef);
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InstadappAdapter.CastData memory castData = InstadappAdapter.CastData(_targetNames, _datas, _origin);
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bytes32 digest = _hashTypedDataV4(
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keccak256(abi.encode(instadappTarget.SIG_TYPEHASH, instadappTarget.hash(castData), salt))
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);
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(uint8 v, bytes32 r, bytes32 s) = vm.sign(1, digest);
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bytes memory signature = abi.encodePacked(r, s, v);
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address auth = originSender;
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bytes memory callData = abi.encode(dsa, auth, signature, castData);
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bytes memory returnedData = hex"";
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vm.expectEmit(true, false, false, true);
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emit AuthCast(transferId, dsa, auth, false, returnedData);
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deal(address(asset), address(instadappTarget), amount);
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vm.prank(MOCK_CONNEXT);
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instadappTarget.xReceive(transferId, amount, address(asset), address(0), 0, callData);
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}
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}
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