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hyperlane-monorepo/solidity/optics-xapps/contracts/token-bridge/BridgeRouter.sol

139 lines
4.3 KiB

// SPDX-License-Identifier: MIT OR Apache-2.0
pragma solidity >=0.6.11;
import {BridgeMessage} from "./BridgeMessage.sol";
import {TokenRegistry} from "./TokenRegistry.sol";
import {BridgeToken} from "./BridgeToken.sol";
import {IBridgeToken} from "../../interfaces/token-bridge/IBridgeToken.sol";
import {Home} from "@celo-org/optics-sol/contracts/Home.sol";
import {
TypeCasts
} from "@celo-org/optics-sol/contracts/XAppConnectionManager.sol";
import {
IMessageRecipient
} from "@celo-org/optics-sol/interfaces/IMessageRecipient.sol";
import {IERC20} from "@openzeppelin/contracts/token/ERC20/IERC20.sol";
import {TypedMemView} from "@summa-tx/memview-sol/contracts/TypedMemView.sol";
import {SafeERC20} from "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
import {Router} from "../Router.sol";
contract BridgeRouter is Router, TokenRegistry {
using TypedMemView for bytes;
using TypedMemView for bytes29;
using BridgeMessage for bytes29;
using SafeERC20 for IERC20;
constructor(address _xAppConnectionManager)
TokenRegistry(_xAppConnectionManager)
{} // solhint-disable-line no-empty-blocks
function handle(
uint32 _origin,
bytes32 _sender,
bytes memory _message
)
external
override
onlyReplica
onlyRemoteRouter(_origin, _sender)
returns (bytes memory)
{
bytes29 _msg = _message.ref(0).mustBeMessage();
bytes29 _tokenId = _msg.tokenId();
bytes29 _action = _msg.action();
if (_action.isTransfer()) {
return _handleTransfer(_tokenId, _action);
}
if (_action.isDetails()) {
return _handleDetails(_tokenId, _action);
}
require(false, "!action");
return hex"";
}
function send(
address _token,
uint32 _destination,
bytes32 _recipient,
uint256 _amnt
) external {
bytes32 _remote = _mustHaveRemote(_destination);
IERC20 _bridgeToken = IERC20(_token);
if (_isNative(_bridgeToken)) {
_bridgeToken.safeTransferFrom(msg.sender, address(this), _amnt);
} else {
_downcast(_bridgeToken).burn(msg.sender, _amnt);
}
TokenId memory _tokId = _tokenIdFor(_token);
bytes29 _tokenId =
BridgeMessage.formatTokenId(_tokId.domain, _tokId.id);
bytes29 _action = BridgeMessage.formatTransfer(_recipient, _amnt);
Home(xAppConnectionManager.home()).enqueue(
_destination,
_remote,
BridgeMessage.formatMessage(_tokenId, _action)
);
}
function updateDetails(address _token, uint32 _destination) external {
bytes32 _remote = _mustHaveRemote(_destination);
IBridgeToken _bridgeToken = IBridgeToken(_token);
TokenId memory _tokId = _tokenIdFor(_token);
bytes29 _tokenId =
BridgeMessage.formatTokenId(_tokId.domain, _tokId.id);
bytes29 _action =
BridgeMessage.formatDetails(
TypeCasts.coerceBytes32(_bridgeToken.name()),
TypeCasts.coerceBytes32(_bridgeToken.symbol()),
_bridgeToken.decimals()
);
Home(xAppConnectionManager.home()).enqueue(
_destination,
_remote,
BridgeMessage.formatMessage(_tokenId, _action)
);
}
function _handleTransfer(bytes29 _tokenId, bytes29 _action)
internal
typeAssert(_tokenId, BridgeMessage.Types.TokenId)
typeAssert(_action, BridgeMessage.Types.Transfer)
returns (bytes memory)
{
IERC20 _token = _ensureToken(_tokenId);
if (_isNative(_token)) {
_token.safeTransfer(_action.evmRecipient(), _action.amnt());
} else {
_downcast(_token).mint(_action.evmRecipient(), _action.amnt());
}
return hex"";
}
function _handleDetails(bytes29 _tokenId, bytes29 _action)
internal
typeAssert(_tokenId, BridgeMessage.Types.TokenId)
typeAssert(_action, BridgeMessage.Types.Details)
returns (bytes memory)
{
IERC20 _token = _ensureToken(_tokenId);
require(!_isNative(_token), "!repr");
_downcast(_token).setDetails(
_action.name(),
_action.symbol(),
_action.decimals()
);
return hex"";
}
}