Files
smom-dbis-138/test/emoney/unit/RailEscrowVaultTest.t.sol
defiQUG 1fb7266469 Add Oracle Aggregator and CCIP Integration
- Introduced Aggregator.sol for Chainlink-compatible oracle functionality, including round-based updates and access control.
- Added OracleWithCCIP.sol to extend Aggregator with CCIP cross-chain messaging capabilities.
- Created .gitmodules to include OpenZeppelin contracts as a submodule.
- Developed a comprehensive deployment guide in NEXT_STEPS_COMPLETE_GUIDE.md for Phase 2 and smart contract deployment.
- Implemented Vite configuration for the orchestration portal, supporting both Vue and React frameworks.
- Added server-side logic for the Multi-Cloud Orchestration Portal, including API endpoints for environment management and monitoring.
- Created scripts for resource import and usage validation across non-US regions.
- Added tests for CCIP error handling and integration to ensure robust functionality.
- Included various new files and directories for the orchestration portal and deployment scripts.
2025-12-12 14:57:48 -08:00

104 lines
3.2 KiB
Solidity

// SPDX-License-Identifier: MIT
pragma solidity ^0.8.20;
import "forge-std/Test.sol";
import "@emoney/RailEscrowVault.sol";
import "@emoney/interfaces/IRailEscrowVault.sol";
import "@emoney/libraries/RailTypes.sol";
import "@openzeppelin/contracts/token/ERC20/ERC20.sol";
contract MockERC20 is ERC20 {
constructor() ERC20("Mock Token", "MOCK") {
_mint(msg.sender, 1000000 * 10**18);
}
function mint(address to, uint256 amount) external {
_mint(to, amount);
}
}
contract RailEscrowVaultTest is Test {
RailEscrowVault public vault;
MockERC20 public token;
address public admin;
address public settlementOperator;
address public user;
function setUp() public {
admin = address(0x1);
settlementOperator = address(0x2);
user = address(0x10);
vault = new RailEscrowVault(admin);
token = new MockERC20();
vm.startPrank(admin);
vault.grantRole(vault.SETTLEMENT_OPERATOR_ROLE(), settlementOperator);
vm.stopPrank();
// Give user some tokens
token.mint(user, 10000 * 10**18);
}
function test_lock() public {
uint256 amount = 1000 * 10**18;
uint256 triggerId = 1;
vm.startPrank(user);
token.approve(address(vault), amount);
vm.stopPrank();
vm.expectEmit(true, true, false, true);
emit IRailEscrowVault.Locked(address(token), user, amount, triggerId, uint8(RailTypes.Rail.SWIFT));
vm.prank(settlementOperator);
vault.lock(address(token), user, amount, triggerId, RailTypes.Rail.SWIFT);
assertEq(vault.getEscrowAmount(address(token), triggerId), amount);
assertEq(vault.getTotalEscrow(address(token)), amount);
assertEq(token.balanceOf(address(vault)), amount);
}
function test_release() public {
uint256 amount = 1000 * 10**18;
uint256 triggerId = 1;
address recipient = address(0x20);
vm.startPrank(user);
token.approve(address(vault), amount);
vm.stopPrank();
vm.prank(settlementOperator);
vault.lock(address(token), user, amount, triggerId, RailTypes.Rail.SWIFT);
uint256 recipientBalanceBefore = token.balanceOf(recipient);
vm.expectEmit(true, true, false, true);
emit IRailEscrowVault.Released(address(token), recipient, amount, triggerId);
vm.prank(settlementOperator);
vault.release(address(token), recipient, amount, triggerId);
assertEq(vault.getEscrowAmount(address(token), triggerId), 0);
assertEq(vault.getTotalEscrow(address(token)), 0);
assertEq(token.balanceOf(recipient), recipientBalanceBefore + amount);
}
function test_release_insufficientEscrow() public {
uint256 amount = 1000 * 10**18;
uint256 triggerId = 1;
vm.startPrank(user);
token.approve(address(vault), amount);
vm.stopPrank();
vm.prank(settlementOperator);
vault.lock(address(token), user, amount, triggerId, RailTypes.Rail.SWIFT);
vm.prank(settlementOperator);
vm.expectRevert("RailEscrowVault: insufficient escrow");
vault.release(address(token), address(0x20), amount + 1, triggerId);
}
}