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Ship AddressActivityRegistry V1/V2, ISO20022IntakeGateway, Chain138ParticipantSurface, checkpoint hub contracts, checkpoint-core package, aggregator/indexer/sdk services, relay profile guards, M00 diamond bridge facet, and OMNL compliance contracts. Co-authored-by: Cursor <cursoragent@cursor.com>
91 lines
3.5 KiB
Solidity
91 lines
3.5 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.8.20;
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import {Test} from "forge-std/Test.sol";
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import {ERC1967Proxy} from "@openzeppelin/contracts/proxy/ERC1967/ERC1967Proxy.sol";
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import {Chain138MainnetCheckpoint} from "../../contracts/mainnet-checkpoint/Chain138MainnetCheckpoint.sol";
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import {CheckpointStorage} from "../../contracts/mainnet-checkpoint/storage/CheckpointStorage.sol";
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import {CheckpointLeaf} from "../../contracts/mainnet-checkpoint/libraries/CheckpointLeaf.sol";
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import {CheckpointFlags} from "../../contracts/mainnet-checkpoint/libraries/CheckpointFlags.sol";
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import {CheckpointErrors} from "../../contracts/mainnet-checkpoint/libraries/CheckpointErrors.sol";
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contract Chain138MainnetCheckpointTest is Test {
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Chain138MainnetCheckpoint checkpoint;
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address admin = address(0xA11CE);
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address submitter = address(0xB0B);
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function setUp() public {
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Chain138MainnetCheckpoint impl = new Chain138MainnetCheckpoint();
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bytes memory initData = abi.encodeCall(
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Chain138MainnetCheckpoint.initialize,
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(admin, address(0xC0C0C0C0), uint64(1380001), address(0))
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);
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checkpoint = Chain138MainnetCheckpoint(address(new ERC1967Proxy(address(impl), initData)));
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vm.startPrank(admin);
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checkpoint.grantRole(checkpoint.SUBMITTER_ROLE(), submitter);
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vm.stopPrank();
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}
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function _leaf(bytes32 txHash) internal pure returns (CheckpointLeaf.PaymentLeafV1 memory) {
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return CheckpointLeaf.PaymentLeafV1({
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txHash: txHash,
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from: address(1),
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to: address(2),
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value: 1 ether,
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blockNumber: 100,
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blockTimestamp: 1,
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gasUsed: 21000,
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success: true
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});
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}
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function _buildRoot(CheckpointLeaf.PaymentLeafV1[] memory leaves) internal pure returns (bytes32) {
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require(leaves.length == 1, "single leaf test");
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return CheckpointLeaf.paymentLeafV1(138, leaves[0]);
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}
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function testSubmitCheckpointUpdatesLatest() public {
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CheckpointLeaf.PaymentLeafV1[] memory leaves = new CheckpointLeaf.PaymentLeafV1[](1);
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leaves[0] = _leaf(keccak256("tx1"));
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bytes32 root = _buildRoot(leaves);
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CheckpointStorage.CheckpointHeader memory header = CheckpointStorage.CheckpointHeader({
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batchId: 1,
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previousBatchId: 0,
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chainId: 138,
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checkpointBlock: 100,
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startBlock: 99,
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endBlock: 100,
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blockHash: keccak256("bh"),
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stateRoot: keccak256("sr"),
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paymentsRoot: root,
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receiptsRoot: bytes32(0),
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txCount: 1,
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flags: CheckpointFlags.PARTIAL_BATCH,
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submittedAt: 0,
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submitter: address(0),
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contentURI: bytes32(0)
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});
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bytes32[] memory hashes = new bytes32[](1);
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hashes[0] = leaves[0].txHash;
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vm.prank(submitter);
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checkpoint.submitCheckpoint(header, hex"01", hashes, abi.encode(leaves));
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assertEq(checkpoint.getLatestBatchId(), 1);
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assertEq(checkpoint.getLatestCheckpoint().paymentsRoot, root);
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(bool inc,) = checkpoint.isTxIncluded(leaves[0].txHash);
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assertTrue(inc);
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}
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function testPauseBlocksSubmit() public {
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vm.prank(admin);
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checkpoint.pause();
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CheckpointStorage.CheckpointHeader memory header;
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vm.prank(submitter);
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vm.expectRevert(CheckpointErrors.Paused.selector);
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checkpoint.submitCheckpoint(header, hex"01", new bytes32[](0), "");
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}
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}
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