// SPDX-License-Identifier: MIT pragma solidity 0.8.15; import { Bridge_Initializer } from "./CommonTest.t.sol"; import { SequencerFeeVault } from "../L2/SequencerFeeVault.sol"; import { StandardBridge } from "../universal/StandardBridge.sol"; import { Predeploys } from "../libraries/Predeploys.sol"; contract SequencerFeeVault_Test is Bridge_Initializer { SequencerFeeVault vault = SequencerFeeVault(payable(Predeploys.SEQUENCER_FEE_WALLET)); address constant recipient = address(256); event Withdrawal(uint256 value, address to, address from); function setUp() public override { super.setUp(); vm.etch(Predeploys.SEQUENCER_FEE_WALLET, address(new SequencerFeeVault(recipient)).code); } function test_minWithdrawalAmount_succeeds() external { assertEq(vault.MIN_WITHDRAWAL_AMOUNT(), 10 ether); } function test_constructor_succeeds() external { assertEq(vault.l1FeeWallet(), recipient); } function test_receive_succeeds() external { assertEq(address(vault).balance, 0); vm.prank(alice); (bool success, ) = address(vault).call{ value: 100 }(hex""); assertEq(success, true); assertEq(address(vault).balance, 100); } function test_withdraw_notEnough_reverts() external { assert(address(vault).balance < vault.MIN_WITHDRAWAL_AMOUNT()); vm.expectRevert( "FeeVault: withdrawal amount must be greater than minimum withdrawal amount" ); vault.withdraw(); } function test_withdraw_succeeds() external { uint256 amount = vault.MIN_WITHDRAWAL_AMOUNT() + 1; vm.deal(address(vault), amount); // No ether has been withdrawn yet assertEq(vault.totalProcessed(), 0); vm.expectEmit(true, true, true, true); emit Withdrawal(address(vault).balance, vault.RECIPIENT(), address(this)); // The entire vault's balance is withdrawn vm.expectCall( Predeploys.L2_STANDARD_BRIDGE, address(vault).balance, abi.encodeWithSelector( StandardBridge.bridgeETHTo.selector, vault.l1FeeWallet(), 20000, bytes("") ) ); vault.withdraw(); // The withdrawal was successful assertEq(vault.totalProcessed(), amount); } }