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671 lines
21 KiB
671 lines
21 KiB
// SPDX-License-Identifier: MIT OR Apache-2.0
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pragma solidity ^0.8.13;
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/*@@@@@@@ @@@@@@@@@
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@@@@@@@@@ @@@@@@@@@
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@@@@@@@@@ @@@@@@@@@
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@@@@@@@@@ @@@@@@@@@
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@@@@@@@@@@@@@@@@@@@@@@@@@
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@@@@@ HYPERLANE @@@@@@@
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@@@@@@@@@@@@@@@@@@@@@@@@@
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@@@@@@@@@ @@@@@@@@@
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@@@@@@@@@ @@@@@@@@@
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@@@@@@@@@ @@@@@@@@@
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@@@@@@@@@ @@@@@@@@*/
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import "forge-std/Test.sol";
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import {TransparentUpgradeableProxy} from "@openzeppelin/contracts/proxy/transparent/TransparentUpgradeableProxy.sol";
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import {Mailbox} from "../../contracts/Mailbox.sol";
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import {TypeCasts} from "../../contracts/libs/TypeCasts.sol";
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import {MockMailbox} from "../../contracts/mock/MockMailbox.sol";
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import {XERC20LockboxTest, XERC20Test, FiatTokenTest, ERC20Test} from "../../contracts/test/ERC20Test.sol";
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import {TestPostDispatchHook} from "../../contracts/test/TestPostDispatchHook.sol";
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import {TestInterchainGasPaymaster} from "../../contracts/test/TestInterchainGasPaymaster.sol";
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import {GasRouter} from "../../contracts/client/GasRouter.sol";
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import {IPostDispatchHook} from "../../contracts/interfaces/hooks/IPostDispatchHook.sol";
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import {Router} from "../../contracts/client/Router.sol";
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import {HypERC20} from "../../contracts/token/HypERC20.sol";
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import {HypERC20Collateral} from "../../contracts/token/HypERC20Collateral.sol";
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import {HypXERC20Lockbox} from "../../contracts/token/extensions/HypXERC20Lockbox.sol";
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import {IXERC20} from "../../contracts/token/interfaces/IXERC20.sol";
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import {IFiatToken} from "../../contracts/token/interfaces/IFiatToken.sol";
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import {HypXERC20} from "../../contracts/token/extensions/HypXERC20.sol";
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import {HypFiatToken} from "../../contracts/token/extensions/HypFiatToken.sol";
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import {HypNative} from "../../contracts/token/HypNative.sol";
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import {TokenRouter} from "../../contracts/token/libs/TokenRouter.sol";
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import {TokenMessage} from "../../contracts/token/libs/TokenMessage.sol";
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import {Message} from "../../contracts/libs/Message.sol";
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abstract contract HypTokenTest is Test {
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using TypeCasts for address;
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using TokenMessage for bytes;
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using Message for bytes;
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uint32 internal constant ORIGIN = 11;
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uint32 internal constant DESTINATION = 12;
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uint8 internal constant DECIMALS = 18;
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uint256 internal constant TOTAL_SUPPLY = 1_000_000e18;
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uint256 internal REQUIRED_VALUE; // initialized in setUp
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uint256 internal constant GAS_LIMIT = 10_000;
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uint256 internal constant TRANSFER_AMT = 100e18;
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string internal constant NAME = "HyperlaneInu";
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string internal constant SYMBOL = "HYP";
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address internal constant ALICE = address(0x1);
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address internal constant BOB = address(0x2);
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address internal constant CAROL = address(0x3);
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address internal constant DANIEL = address(0x4);
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address internal constant PROXY_ADMIN = address(0x37);
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ERC20Test internal primaryToken;
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TokenRouter internal localToken;
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HypERC20 internal remoteToken;
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MockMailbox internal localMailbox;
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MockMailbox internal remoteMailbox;
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TestPostDispatchHook internal noopHook;
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TestInterchainGasPaymaster internal igp;
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event SentTransferRemote(
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uint32 indexed destination,
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bytes32 indexed recipient,
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uint256 amount
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);
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event ReceivedTransferRemote(
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uint32 indexed origin,
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bytes32 indexed recipient,
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uint256 amount
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);
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function setUp() public virtual {
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localMailbox = new MockMailbox(ORIGIN);
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remoteMailbox = new MockMailbox(DESTINATION);
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localMailbox.addRemoteMailbox(DESTINATION, remoteMailbox);
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remoteMailbox.addRemoteMailbox(ORIGIN, localMailbox);
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primaryToken = new ERC20Test(NAME, SYMBOL, TOTAL_SUPPLY, DECIMALS);
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noopHook = new TestPostDispatchHook();
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localMailbox.setDefaultHook(address(noopHook));
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localMailbox.setRequiredHook(address(noopHook));
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remoteMailbox.setDefaultHook(address(noopHook));
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remoteMailbox.setRequiredHook(address(noopHook));
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REQUIRED_VALUE = noopHook.quoteDispatch("", "");
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HypERC20 implementation = new HypERC20(
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DECIMALS,
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address(remoteMailbox)
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);
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TransparentUpgradeableProxy proxy = new TransparentUpgradeableProxy(
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address(implementation),
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PROXY_ADMIN,
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abi.encodeWithSelector(
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HypERC20.initialize.selector,
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TOTAL_SUPPLY,
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NAME,
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SYMBOL,
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address(noopHook),
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address(igp),
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address(this)
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)
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);
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remoteToken = HypERC20(address(proxy));
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remoteToken.enrollRemoteRouter(
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ORIGIN,
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address(localToken).addressToBytes32()
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);
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igp = new TestInterchainGasPaymaster();
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vm.deal(ALICE, 125000);
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}
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function _enrollLocalTokenRouter() internal {
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localToken.enrollRemoteRouter(
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DESTINATION,
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address(remoteToken).addressToBytes32()
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);
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}
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function _enrollRemoteTokenRouter() internal {
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remoteToken.enrollRemoteRouter(
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ORIGIN,
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address(localToken).addressToBytes32()
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);
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}
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function _connectRouters(
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uint32[] memory _domains,
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bytes32[] memory _addresses
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) internal {
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uint256 n = _domains.length;
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for (uint256 i = 0; i < n; i++) {
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uint32[] memory complementDomains = new uint32[](n - 1);
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bytes32[] memory complementAddresses = new bytes32[](n - 1);
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uint256 j = 0;
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for (uint256 k = 0; k < n; k++) {
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if (k != i) {
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complementDomains[j] = _domains[k];
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complementAddresses[j] = _addresses[k];
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j++;
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}
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}
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// Enroll complement routers into the current router, Routers - router_i
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Router(TypeCasts.bytes32ToAddress(_addresses[i]))
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.enrollRemoteRouters(complementDomains, complementAddresses);
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}
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}
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function _expectRemoteBalance(
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address _user,
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uint256 _balance
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) internal view {
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assertEq(remoteToken.balanceOf(_user), _balance);
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}
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function _processTransfers(address _recipient, uint256 _amount) internal {
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vm.prank(address(remoteMailbox));
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remoteToken.handle(
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ORIGIN,
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address(localToken).addressToBytes32(),
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abi.encodePacked(_recipient.addressToBytes32(), _amount)
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);
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}
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function _handleLocalTransfer(uint256 _transferAmount) internal {
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vm.prank(address(localMailbox));
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localToken.handle(
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DESTINATION,
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address(remoteToken).addressToBytes32(),
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abi.encodePacked(ALICE.addressToBytes32(), _transferAmount)
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);
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}
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function _mintAndApprove(uint256 _amount, address _account) internal {
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primaryToken.mint(_amount);
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primaryToken.approve(_account, _amount);
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}
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function _setCustomGasConfig() internal {
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localToken.setHook(address(igp));
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TokenRouter.GasRouterConfig[]
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memory config = new TokenRouter.GasRouterConfig[](1);
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config[0] = GasRouter.GasRouterConfig({
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domain: DESTINATION,
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gas: GAS_LIMIT
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});
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localToken.setDestinationGas(config);
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}
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function _performRemoteTransfer(
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uint256 _msgValue,
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uint256 _amount
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) internal {
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vm.prank(ALICE);
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localToken.transferRemote{value: _msgValue}(
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DESTINATION,
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BOB.addressToBytes32(),
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_amount
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);
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vm.expectEmit(true, true, false, true);
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emit ReceivedTransferRemote(ORIGIN, BOB.addressToBytes32(), _amount);
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_processTransfers(BOB, _amount);
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assertEq(remoteToken.balanceOf(BOB), _amount);
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}
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function _performRemoteTransferAndGas(
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uint256 _msgValue,
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uint256 _amount,
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uint256 _gasOverhead
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) internal {
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uint256 ethBalance = ALICE.balance;
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_performRemoteTransfer(_msgValue + _gasOverhead, _amount);
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assertEq(ALICE.balance, ethBalance - REQUIRED_VALUE - _gasOverhead);
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}
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function _performRemoteTransferWithEmit(
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uint256 _msgValue,
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uint256 _amount,
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uint256 _gasOverhead
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) internal {
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vm.expectEmit(true, true, false, true);
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emit SentTransferRemote(DESTINATION, BOB.addressToBytes32(), _amount);
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_performRemoteTransferAndGas(_msgValue, _amount, _gasOverhead);
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}
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function _performRemoteTransferWithHook(
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uint256 _msgValue,
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uint256 _amount,
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address _hook,
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bytes memory _hookMetadata
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) internal returns (bytes32 messageId) {
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vm.prank(ALICE);
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messageId = localToken.transferRemote{value: _msgValue}(
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DESTINATION,
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BOB.addressToBytes32(),
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_amount,
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_hookMetadata,
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address(_hook)
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);
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_processTransfers(BOB, _amount);
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assertEq(remoteToken.balanceOf(BOB), _amount);
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}
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function testTransfer_withHookSpecified(
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uint256 fee,
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bytes calldata metadata
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) public virtual {
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TestPostDispatchHook hook = new TestPostDispatchHook();
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hook.setFee(fee);
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vm.prank(ALICE);
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primaryToken.approve(address(localToken), TRANSFER_AMT);
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bytes32 messageId = _performRemoteTransferWithHook(
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REQUIRED_VALUE,
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TRANSFER_AMT,
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address(hook),
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metadata
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);
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assertTrue(hook.messageDispatched(messageId));
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}
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function testBenchmark_overheadGasUsage() public virtual {
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vm.prank(address(localMailbox));
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uint256 gasBefore = gasleft();
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localToken.handle(
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DESTINATION,
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address(remoteToken).addressToBytes32(),
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abi.encodePacked(BOB.addressToBytes32(), TRANSFER_AMT)
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);
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uint256 gasAfter = gasleft();
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console.log("Overhead gas usage: %d", gasBefore - gasAfter);
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}
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}
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contract HypERC20Test is HypTokenTest {
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using TypeCasts for address;
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HypERC20 internal erc20Token;
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function setUp() public override {
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super.setUp();
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HypERC20 implementation = new HypERC20(DECIMALS, address(localMailbox));
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TransparentUpgradeableProxy proxy = new TransparentUpgradeableProxy(
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address(implementation),
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PROXY_ADMIN,
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abi.encodeWithSelector(
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HypERC20.initialize.selector,
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TOTAL_SUPPLY,
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NAME,
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SYMBOL,
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address(address(noopHook)),
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address(igp),
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address(this)
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)
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);
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localToken = HypERC20(address(proxy));
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erc20Token = HypERC20(address(proxy));
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erc20Token.enrollRemoteRouter(
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DESTINATION,
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address(remoteToken).addressToBytes32()
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);
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erc20Token.transfer(ALICE, 1000e18);
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_enrollRemoteTokenRouter();
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}
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function testInitialize_revert_ifAlreadyInitialized() public {
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vm.expectRevert("Initializable: contract is already initialized");
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erc20Token.initialize(
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TOTAL_SUPPLY,
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NAME,
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SYMBOL,
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address(address(noopHook)),
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address(igp),
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BOB
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);
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}
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function testTotalSupply() public view {
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assertEq(erc20Token.totalSupply(), TOTAL_SUPPLY);
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}
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function testDecimals() public view {
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assertEq(erc20Token.decimals(), DECIMALS);
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}
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function testLocalTransfers() public {
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assertEq(erc20Token.balanceOf(ALICE), 1000e18);
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assertEq(erc20Token.balanceOf(BOB), 0);
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vm.prank(ALICE);
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erc20Token.transfer(BOB, 100e18);
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assertEq(erc20Token.balanceOf(ALICE), 900e18);
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assertEq(erc20Token.balanceOf(BOB), 100e18);
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}
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function testRemoteTransfer() public {
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remoteToken.enrollRemoteRouter(
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ORIGIN,
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address(localToken).addressToBytes32()
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);
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uint256 balanceBefore = erc20Token.balanceOf(ALICE);
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_performRemoteTransferWithEmit(REQUIRED_VALUE, TRANSFER_AMT, 0);
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assertEq(erc20Token.balanceOf(ALICE), balanceBefore - TRANSFER_AMT);
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}
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function testRemoteTransfer_invalidAmount() public {
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vm.expectRevert("ERC20: burn amount exceeds balance");
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_performRemoteTransfer(REQUIRED_VALUE, TRANSFER_AMT * 11);
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assertEq(erc20Token.balanceOf(ALICE), 1000e18);
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}
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function testRemoteTransfer_withCustomGasConfig() public {
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_setCustomGasConfig();
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uint256 balanceBefore = erc20Token.balanceOf(ALICE);
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_performRemoteTransferAndGas(
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REQUIRED_VALUE,
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TRANSFER_AMT,
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GAS_LIMIT * igp.gasPrice()
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);
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assertEq(erc20Token.balanceOf(ALICE), balanceBefore - TRANSFER_AMT);
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}
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}
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contract HypERC20CollateralTest is HypTokenTest {
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using TypeCasts for address;
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HypERC20Collateral internal erc20Collateral;
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function setUp() public override {
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super.setUp();
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localToken = new HypERC20Collateral(
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address(primaryToken),
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address(localMailbox)
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);
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erc20Collateral = HypERC20Collateral(address(localToken));
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erc20Collateral.enrollRemoteRouter(
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DESTINATION,
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address(remoteToken).addressToBytes32()
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);
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primaryToken.transfer(address(localToken), 1000e18);
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primaryToken.transfer(ALICE, 1000e18);
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_enrollRemoteTokenRouter();
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}
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function testInitialize_revert_ifAlreadyInitialized() public {}
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function testRemoteTransfer() public {
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uint256 balanceBefore = localToken.balanceOf(ALICE);
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vm.prank(ALICE);
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primaryToken.approve(address(localToken), TRANSFER_AMT);
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_performRemoteTransferWithEmit(REQUIRED_VALUE, TRANSFER_AMT, 0);
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assertEq(localToken.balanceOf(ALICE), balanceBefore - TRANSFER_AMT);
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}
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function testRemoteTransfer_invalidAllowance() public {
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vm.expectRevert("ERC20: insufficient allowance");
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_performRemoteTransfer(REQUIRED_VALUE, TRANSFER_AMT);
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assertEq(localToken.balanceOf(ALICE), 1000e18);
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}
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function testRemoteTransfer_withCustomGasConfig() public {
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_setCustomGasConfig();
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uint256 balanceBefore = localToken.balanceOf(ALICE);
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vm.prank(ALICE);
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primaryToken.approve(address(localToken), TRANSFER_AMT);
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_performRemoteTransferAndGas(
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REQUIRED_VALUE,
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TRANSFER_AMT,
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GAS_LIMIT * igp.gasPrice()
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);
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assertEq(localToken.balanceOf(ALICE), balanceBefore - TRANSFER_AMT);
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}
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}
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contract HypXERC20Test is HypTokenTest {
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using TypeCasts for address;
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HypXERC20 internal xerc20Collateral;
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function setUp() public override {
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super.setUp();
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primaryToken = new XERC20Test(NAME, SYMBOL, TOTAL_SUPPLY, DECIMALS);
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localToken = new HypXERC20(
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address(primaryToken),
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address(localMailbox)
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);
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xerc20Collateral = HypXERC20(address(localToken));
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xerc20Collateral.enrollRemoteRouter(
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DESTINATION,
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address(remoteToken).addressToBytes32()
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);
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primaryToken.transfer(address(localToken), 1000e18);
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primaryToken.transfer(ALICE, 1000e18);
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_enrollRemoteTokenRouter();
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}
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function testRemoteTransfer() public {
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uint256 balanceBefore = localToken.balanceOf(ALICE);
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vm.prank(ALICE);
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primaryToken.approve(address(localToken), TRANSFER_AMT);
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vm.expectCall(
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address(primaryToken),
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abi.encodeCall(IXERC20.burn, (ALICE, TRANSFER_AMT))
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);
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_performRemoteTransferWithEmit(REQUIRED_VALUE, TRANSFER_AMT, 0);
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assertEq(localToken.balanceOf(ALICE), balanceBefore - TRANSFER_AMT);
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}
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function testHandle() public {
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vm.expectCall(
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address(primaryToken),
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abi.encodeCall(IXERC20.mint, (ALICE, TRANSFER_AMT))
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);
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_handleLocalTransfer(TRANSFER_AMT);
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}
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}
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contract HypXERC20LockboxTest is HypTokenTest {
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using TypeCasts for address;
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HypXERC20Lockbox internal xerc20Lockbox;
|
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function setUp() public override {
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super.setUp();
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XERC20LockboxTest lockbox = new XERC20LockboxTest(
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NAME,
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SYMBOL,
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TOTAL_SUPPLY,
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DECIMALS
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);
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primaryToken = ERC20Test(address(lockbox.ERC20()));
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localToken = new HypXERC20Lockbox(
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address(lockbox),
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address(localMailbox)
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);
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xerc20Lockbox = HypXERC20Lockbox(address(localToken));
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xerc20Lockbox.enrollRemoteRouter(
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DESTINATION,
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address(remoteToken).addressToBytes32()
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);
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primaryToken.transfer(ALICE, 1000e18);
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_enrollRemoteTokenRouter();
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}
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uint256 constant MAX_INT = 2 ** 256 - 1;
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function testApproval() public {
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assertEq(
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xerc20Lockbox.xERC20().allowance(
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address(localToken),
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address(xerc20Lockbox.lockbox())
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),
|
|
MAX_INT
|
|
);
|
|
assertEq(
|
|
xerc20Lockbox.wrappedToken().allowance(
|
|
address(localToken),
|
|
address(xerc20Lockbox.lockbox())
|
|
),
|
|
MAX_INT
|
|
);
|
|
}
|
|
|
|
function testRemoteTransfer() public {
|
|
uint256 balanceBefore = localToken.balanceOf(ALICE);
|
|
|
|
vm.prank(ALICE);
|
|
primaryToken.approve(address(localToken), TRANSFER_AMT);
|
|
vm.expectCall(
|
|
address(xerc20Lockbox.xERC20()),
|
|
abi.encodeCall(IXERC20.burn, (address(localToken), TRANSFER_AMT))
|
|
);
|
|
_performRemoteTransferWithEmit(REQUIRED_VALUE, TRANSFER_AMT, 0);
|
|
assertEq(localToken.balanceOf(ALICE), balanceBefore - TRANSFER_AMT);
|
|
}
|
|
|
|
function testHandle() public {
|
|
uint256 balanceBefore = localToken.balanceOf(ALICE);
|
|
vm.expectCall(
|
|
address(xerc20Lockbox.xERC20()),
|
|
abi.encodeCall(IXERC20.mint, (address(localToken), TRANSFER_AMT))
|
|
);
|
|
_handleLocalTransfer(TRANSFER_AMT);
|
|
assertEq(localToken.balanceOf(ALICE), balanceBefore + TRANSFER_AMT);
|
|
}
|
|
}
|
|
|
|
contract HypFiatTokenTest is HypTokenTest {
|
|
using TypeCasts for address;
|
|
|
|
HypFiatToken internal fiatToken;
|
|
|
|
function setUp() public override {
|
|
super.setUp();
|
|
|
|
primaryToken = new FiatTokenTest(NAME, SYMBOL, TOTAL_SUPPLY, DECIMALS);
|
|
|
|
localToken = new HypFiatToken(
|
|
address(primaryToken),
|
|
address(localMailbox)
|
|
);
|
|
fiatToken = HypFiatToken(address(localToken));
|
|
|
|
fiatToken.enrollRemoteRouter(
|
|
DESTINATION,
|
|
address(remoteToken).addressToBytes32()
|
|
);
|
|
|
|
primaryToken.transfer(address(localToken), 1000e18);
|
|
primaryToken.transfer(ALICE, 1000e18);
|
|
|
|
_enrollRemoteTokenRouter();
|
|
}
|
|
|
|
function testRemoteTransfer() public {
|
|
uint256 balanceBefore = localToken.balanceOf(ALICE);
|
|
|
|
vm.prank(ALICE);
|
|
primaryToken.approve(address(localToken), TRANSFER_AMT);
|
|
vm.expectCall(
|
|
address(primaryToken),
|
|
abi.encodeCall(IFiatToken.burn, (TRANSFER_AMT))
|
|
);
|
|
_performRemoteTransferWithEmit(REQUIRED_VALUE, TRANSFER_AMT, 0);
|
|
assertEq(localToken.balanceOf(ALICE), balanceBefore - TRANSFER_AMT);
|
|
}
|
|
|
|
function testHandle() public {
|
|
bytes memory data = abi.encodeCall(
|
|
IFiatToken.mint,
|
|
(ALICE, TRANSFER_AMT)
|
|
);
|
|
vm.mockCall(address(primaryToken), 0, data, abi.encode(false));
|
|
vm.expectRevert("FiatToken mint failed");
|
|
_handleLocalTransfer(TRANSFER_AMT);
|
|
vm.clearMockedCalls();
|
|
|
|
vm.expectCall(address(primaryToken), data);
|
|
_handleLocalTransfer(TRANSFER_AMT);
|
|
}
|
|
}
|
|
|
|
contract HypNativeTest is HypTokenTest {
|
|
using TypeCasts for address;
|
|
|
|
HypNative internal nativeToken;
|
|
|
|
function setUp() public override {
|
|
super.setUp();
|
|
|
|
localToken = new HypNative(address(localMailbox));
|
|
nativeToken = HypNative(payable(address(localToken)));
|
|
|
|
nativeToken.enrollRemoteRouter(
|
|
DESTINATION,
|
|
address(remoteToken).addressToBytes32()
|
|
);
|
|
|
|
vm.deal(address(localToken), 1000e18);
|
|
vm.deal(ALICE, 1000e18);
|
|
|
|
_enrollRemoteTokenRouter();
|
|
}
|
|
|
|
function testInitialize_revert_ifAlreadyInitialized() public {}
|
|
|
|
function testRemoteTransfer() public {
|
|
_performRemoteTransferWithEmit(
|
|
REQUIRED_VALUE,
|
|
TRANSFER_AMT,
|
|
TRANSFER_AMT
|
|
);
|
|
}
|
|
|
|
function testRemoteTransfer_invalidAmount() public {
|
|
vm.expectRevert("Native: amount exceeds msg.value");
|
|
_performRemoteTransfer(
|
|
REQUIRED_VALUE + TRANSFER_AMT,
|
|
TRANSFER_AMT * 10
|
|
);
|
|
assertEq(localToken.balanceOf(ALICE), 1000e18);
|
|
}
|
|
|
|
function testRemoteTransfer_withCustomGasConfig() public {
|
|
_setCustomGasConfig();
|
|
|
|
_performRemoteTransferAndGas(
|
|
REQUIRED_VALUE,
|
|
TRANSFER_AMT,
|
|
TRANSFER_AMT + GAS_LIMIT * igp.gasPrice()
|
|
);
|
|
}
|
|
}
|
|
|