206 lines
6.4 KiB
Solidity
206 lines
6.4 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.8.20;
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import {Test} from "forge-std/Test.sol";
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import {BridgeEscrowVault} from "../../../contracts/bridge/interop/BridgeEscrowVault.sol";
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import {ERC20} from "@openzeppelin/contracts/token/ERC20/ERC20.sol";
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contract MockERC20 is ERC20 {
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constructor() ERC20("Mock Token", "MOCK") {
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_mint(msg.sender, 1000000 * 10**18);
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}
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function mint(address to, uint256 amount) external {
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_mint(to, amount);
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}
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}
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contract BridgeEscrowVaultTest is Test {
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BridgeEscrowVault public vault;
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MockERC20 public token;
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address public admin = address(0x1);
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address public operator = address(0x2);
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address public refundOperator = address(0x3);
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address public hsmSigner = address(0x4);
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address public user = address(0x5);
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event Deposit(
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bytes32 indexed transferId,
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address indexed depositor,
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address indexed asset,
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uint256 amount,
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BridgeEscrowVault.DestinationType destinationType,
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bytes destinationData,
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uint256 timestamp
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);
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function setUp() public {
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vm.startPrank(admin);
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vault = new BridgeEscrowVault(admin);
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vault.grantRole(vault.OPERATOR_ROLE(), operator);
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vault.grantRole(vault.REFUND_ROLE(), refundOperator);
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token = new MockERC20();
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vm.stopPrank();
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vm.deal(user, 100 ether);
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token.mint(user, 1000 * 10**18);
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}
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function test_DepositNative() public {
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vm.startPrank(user);
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bytes32 nonce = keccak256("test-nonce");
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bytes memory destinationData = abi.encodePacked(address(0x100));
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vm.expectEmit(false, true, true, true); // skip transferId (unknown until deposit)
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emit Deposit(
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bytes32(0),
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user,
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address(0),
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1 ether,
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BridgeEscrowVault.DestinationType.EVM,
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destinationData,
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block.timestamp
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);
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bytes32 transferId = vault.depositNative{value: 1 ether}(
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BridgeEscrowVault.DestinationType.EVM,
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destinationData,
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3600, // 1 hour timeout
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nonce
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);
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assertNotEq(transferId, bytes32(0));
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assertEq(address(vault).balance, 1 ether);
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}
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function test_DepositERC20() public {
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vm.startPrank(user);
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token.approve(address(vault), 100 * 10**18);
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bytes32 nonce = keccak256("test-nonce-2");
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bytes memory destinationData = abi.encodePacked(address(0x200));
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bytes32 transferId = vault.depositERC20(
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address(token),
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100 * 10**18,
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BridgeEscrowVault.DestinationType.XRPL,
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destinationData,
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3600,
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nonce
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);
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assertNotEq(transferId, bytes32(0));
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assertEq(token.balanceOf(address(vault)), 100 * 10**18);
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assertEq(token.balanceOf(user), 900 * 10**18);
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}
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function test_UpdateTransferStatus() public {
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vm.startPrank(user);
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bytes32 transferId = vault.depositNative{value: 1 ether}(
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BridgeEscrowVault.DestinationType.EVM,
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abi.encodePacked(address(0x100)),
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3600,
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keccak256("test")
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);
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vm.stopPrank();
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vm.startPrank(operator);
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vault.updateTransferStatus(transferId, BridgeEscrowVault.TransferStatus.DEPOSIT_CONFIRMED);
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BridgeEscrowVault.Transfer memory transfer = vault.getTransfer(transferId);
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assertEq(uint8(transfer.status), uint8(BridgeEscrowVault.TransferStatus.DEPOSIT_CONFIRMED));
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}
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function test_RefundAfterTimeout() public {
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vm.startPrank(user);
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bytes32 transferId = vault.depositNative{value: 1 ether}(
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BridgeEscrowVault.DestinationType.EVM,
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abi.encodePacked(address(0x100)),
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3600, // 1 hour timeout
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keccak256("refund-test")
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);
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vm.stopPrank();
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// Fast forward time
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vm.warp(block.timestamp + 3601);
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// Use a known test account for HSM signing (vm.sign requires private key, not address)
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uint256 hsmPk = 4;
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address signer = vm.addr(hsmPk);
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// Create refund request with HSM signature (EIP-712)
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bytes32 structHash = keccak256(
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abi.encode(
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keccak256("RefundRequest(bytes32 transferId,uint256 deadline)"),
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transferId,
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block.timestamp + 3600
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)
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);
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bytes32 domainSeparator = keccak256(
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abi.encode(
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keccak256("EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)"),
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keccak256(bytes("BridgeEscrowVault")),
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keccak256(bytes("1")),
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block.chainid,
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address(vault)
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)
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);
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bytes32 hash = keccak256(abi.encodePacked("\x19\x01", domainSeparator, structHash));
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(uint8 v, bytes32 r, bytes32 s) = vm.sign(hsmPk, hash);
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bytes memory signature = abi.encodePacked(r, s, v);
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vm.startPrank(refundOperator);
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vault.initiateRefund(
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BridgeEscrowVault.RefundRequest({
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transferId: transferId,
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deadline: block.timestamp + 3600,
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hsmSignature: signature
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}),
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signer
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);
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vault.executeRefund(transferId);
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vm.stopPrank();
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assertEq(address(user).balance, 100 ether); // Refunded
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}
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function test_Revert_DoubleDeposit() public {
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vm.startPrank(user);
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bytes32 nonce = keccak256("same-nonce");
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bytes memory destinationData = abi.encodePacked(address(0x100));
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vault.depositNative{value: 1 ether}(
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BridgeEscrowVault.DestinationType.EVM,
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destinationData,
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3600,
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nonce
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);
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// Try to deposit again with same nonce (should fail due to replay protection)
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vm.expectRevert();
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vault.depositNative{value: 1 ether}(
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BridgeEscrowVault.DestinationType.EVM,
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destinationData,
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3600,
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nonce
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);
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}
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function test_Pause() public {
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vm.startPrank(admin);
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vault.pause();
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vm.stopPrank();
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vm.startPrank(user);
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vm.expectRevert();
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vault.depositNative{value: 1 ether}(
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BridgeEscrowVault.DestinationType.EVM,
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abi.encodePacked(address(0x100)),
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3600,
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keccak256("pause-test")
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);
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}
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}
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