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Includes Monad↔Chain138 CCIP proof/deploy/verify tooling, relay service guards, bridge integration tweaks, and frontend ENS/network config follow-ups. Co-authored-by: Cursor <cursoragent@cursor.com>
47 lines
1.9 KiB
Solidity
47 lines
1.9 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.8.19;
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import "forge-std/Script.sol";
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import {IRouterClient} from "../contracts/ccip/IRouterClient.sol";
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import {IERC20} from "@openzeppelin/contracts/token/ERC20/IERC20.sol";
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/// @notice CCIP-send Chain 138 LINK to a destination-chain bridge contract (operator funding).
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/// Env: PRIVATE_KEY, CCIP_ROUTER_CHAIN138, LINK_TOKEN_CHAIN138, DEST_SELECTOR,
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/// RECIPIENT_ADDRESS (or DEST_BRIDGE), LINK_AMOUNT_WEI
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contract FundBridgeLinkViaCcip138 is Script {
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function run() external {
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uint256 deployerKey = vm.envUint("PRIVATE_KEY");
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address router = vm.envAddress("CCIP_ROUTER_CHAIN138");
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address link = vm.envAddress("LINK_TOKEN_CHAIN138");
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uint64 destSelector = uint64(vm.envUint("DEST_SELECTOR"));
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address recipient = vm.envOr("RECIPIENT_ADDRESS", vm.envAddress("DEST_BRIDGE"));
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uint256 amount = vm.envUint("LINK_AMOUNT_WEI");
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IRouterClient.TokenAmount[] memory tokenAmounts = new IRouterClient.TokenAmount[](1);
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tokenAmounts[0] = IRouterClient.TokenAmount({
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token: link,
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amount: amount,
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amountType: IRouterClient.TokenAmountType.Fiat
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});
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IRouterClient.EVM2AnyMessage memory message = IRouterClient.EVM2AnyMessage({
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receiver: abi.encode(recipient),
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data: abi.encode(recipient, amount),
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tokenAmounts: tokenAmounts,
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feeToken: link,
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extraArgs: ""
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});
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uint256 fee = IRouterClient(router).getFee(destSelector, message);
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console2.log("recipient", recipient);
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console2.log("amount", amount);
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console2.log("fee", fee);
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vm.startBroadcast(deployerKey);
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IERC20(link).approve(router, amount + fee);
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(bytes32 messageId,) = IRouterClient(router).ccipSend(destSelector, message);
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console2.logBytes32(messageId);
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vm.stopBroadcast();
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}
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}
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