• Mark Tyneway's avatar
    contracts-bedrock: modularize deployer script (#9061) · 9367c429
    Mark Tyneway authored
    * contracts-bedrock: modularize deployer script
    
    Move logic for interacting with artifacts outside
    of the deployer contract into its own contract.
    
    This allows for other contracts to easily inherit the
    contract so that any contract can read in contract
    addresses.
    
    * ctb: handle devnet
    
    * contracts-bedrock: fixup
    
    * lint: fix
    9367c429
Deployer.sol 17.1 KB
// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;

import { Script } from "forge-std/Script.sol";
import { stdJson } from "forge-std/StdJson.sol";
import { console2 as console } from "forge-std/console2.sol";
import { Executables } from "scripts/Executables.sol";
import { EIP1967Helper } from "test/mocks/EIP1967Helper.sol";
import { IAddressManager } from "scripts/interfaces/IAddressManager.sol";
import { LibString } from "solady/utils/LibString.sol";
import { Artifacts, Deployment } from "scripts/Artifacts.s.sol";

/// @notice A `hardhat-deploy` style artifact
struct Artifact {
    string abi;
    address addr;
    string[] args;
    bytes bytecode;
    bytes deployedBytecode;
    string devdoc;
    string metadata;
    uint256 numDeployments;
    string receipt;
    bytes32 solcInputHash;
    string storageLayout;
    bytes32 transactionHash;
    string userdoc;
}

/// @notice Contains information about a storage slot. Mirrors the layout of the storage
///         slot object in Forge artifacts so that we can deserialize JSON into this struct.
struct StorageSlot {
    uint256 astId;
    string _contract;
    string label;
    uint256 offset;
    string slot;
    string _type;
}

/// @title Deployer
/// @author tynes
/// @notice A contract that can make deploying and interacting with deployments easy.
///         When a contract is deployed, call the `save` function to write its name and
///         contract address to disk. Then the `sync` function can be called to generate
///         hardhat deploy style artifacts. Forked from `forge-deploy`.
abstract contract Deployer is Script, Artifacts {
    /// @notice Path to the deploy artifact generated by foundry
    string internal deployPath;

    /// @notice The name of the deploy script that sends the transactions.
    ///         Can be modified with the env var DEPLOY_SCRIPT
    string internal deployScript;

    /// @notice Create the global variables and set up the filesystem.
    ///         Forge script will create a file where the prefix is the
    ///         name of the function that runs with the suffix `-latest.json`.
    ///         By default, `run()` is called. Allow the user to use the SIG
    ///         env var to specify what function signature was called so that
    ///         the `sync()` method can be used to create hardhat deploy style
    ///         artifacts.
    function setUp() public virtual override {
        Artifacts.setUp();

        deployScript = vm.envOr("DEPLOY_SCRIPT", name());

        string memory sig = vm.envOr("SIG", string("run"));
        string memory deployFile = vm.envOr("DEPLOY_FILE", string.concat(sig, "-latest.json"));
        uint256 chainId = vm.envOr("CHAIN_ID", block.chainid);
        deployPath = string.concat(
            vm.projectRoot(), "/broadcast/", deployScript, ".s.sol/", vm.toString(chainId), "/", deployFile
        );
    }

    /// @notice Call this function to sync the deployment artifacts such that
    ///         hardhat deploy style artifacts are created.
    function sync() public {
        Deployment[] memory deployments = _getTempDeployments();
        console.log("Syncing %s deployments", deployments.length);
        console.log("Using deployment artifact %s", deployPath);

        for (uint256 i; i < deployments.length; i++) {
            address addr = deployments[i].addr;
            string memory deploymentName = deployments[i].name;

            string memory deployTx = _getDeployTransactionByContractAddress(addr);
            if (bytes(deployTx).length == 0) {
                console.log("Deploy Tx not found for %s skipping deployment artifact generation", deploymentName);
                continue;
            }
            string memory contractName = _getContractNameFromDeployTransaction(deployTx);
            console.log("Syncing deployment %s: contract %s", deploymentName, contractName);

            string[] memory args = getDeployTransactionConstructorArguments(deployTx);
            bytes memory code = _getCode(contractName);
            bytes memory deployedCode = _getDeployedCode(contractName);
            string memory receipt = _getDeployReceiptByContractAddress(addr);

            string memory artifactPath = string.concat(deploymentsDir, "/", deploymentName, ".json");

            uint256 numDeployments = 0;
            try vm.readFile(artifactPath) returns (string memory res) {
                numDeployments = stdJson.readUint(string(res), "$.numDeployments");
                vm.removeFile(artifactPath);
            } catch { }
            numDeployments++;

            Artifact memory artifact = Artifact({
                abi: getAbi(contractName),
                addr: addr,
                args: args,
                bytecode: code,
                deployedBytecode: deployedCode,
                devdoc: getDevDoc(contractName),
                metadata: getMetadata(contractName),
                numDeployments: numDeployments,
                receipt: receipt,
                solcInputHash: bytes32(0),
                storageLayout: getStorageLayout(contractName),
                transactionHash: stdJson.readBytes32(deployTx, "$.hash"),
                userdoc: getUserDoc(contractName)
            });

            string memory json = _serializeArtifact(artifact);

            vm.writeJson({ json: json, path: artifactPath });
        }

        console.log("Synced temp deploy files, deleting %s", tempDeploymentsPath);
        vm.removeFile(tempDeploymentsPath);
    }

    /// @notice Returns the name of the deployment script. Children contracts
    ///         must implement this to ensure that the deploy artifacts can be found.
    ///         This should be the same as the name of the script and is used as the file
    ///         name inside of the `broadcast` directory when looking up deployment artifacts.
    function name() public pure virtual returns (string memory);

    /// @notice Returns the json of the deployment transaction given a contract address.
    function _getDeployTransactionByContractAddress(address _addr) internal returns (string memory) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(
            Executables.jq,
            " -r '.transactions[] | select(.contractAddress == ",
            '"',
            vm.toString(_addr),
            '"',
            ') | select(.transactionType == "CREATE"',
            ' or .transactionType == "CREATE2"',
            ")' < ",
            deployPath
        );
        bytes memory res = vm.ffi(cmd);
        return string(res);
    }

    /// @notice Returns the contract name from a deploy transaction.
    function _getContractNameFromDeployTransaction(string memory _deployTx) internal pure returns (string memory) {
        return stdJson.readString(_deployTx, ".contractName");
    }

    /// @notice Wrapper for vm.getCode that handles semver in the name.
    function _getCode(string memory _name) internal returns (bytes memory) {
        string memory fqn = _getFullyQualifiedName(_name);
        bytes memory code = vm.getCode(fqn);
        return code;
    }

    /// @notice Wrapper for vm.getDeployedCode that handles semver in the name.
    function _getDeployedCode(string memory _name) internal returns (bytes memory) {
        string memory fqn = _getFullyQualifiedName(_name);
        bytes memory code = vm.getDeployedCode(fqn);
        return code;
    }

    /// @notice Removes the semantic versioning from a contract name. The semver will exist if the contract is compiled
    /// more than once with different versions of the compiler.
    function _stripSemver(string memory _name) internal returns (string memory) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(
            Executables.echo, " ", _name, " | ", Executables.sed, " -E 's/[.][0-9]+\\.[0-9]+\\.[0-9]+//g'"
        );
        bytes memory res = vm.ffi(cmd);
        return string(res);
    }

    /// @notice Returns the constructor arguent of a deployment transaction given a transaction json.
    function getDeployTransactionConstructorArguments(string memory _transaction) internal returns (string[] memory) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(Executables.jq, " -r '.arguments' <<< '", _transaction, "'");
        bytes memory res = vm.ffi(cmd);

        string[] memory args = new string[](0);
        if (keccak256(bytes("null")) != keccak256(res)) {
            args = stdJson.readStringArray(string(res), "");
        }
        return args;
    }

    /// @notice Builds the fully qualified name of a contract. Assumes that the
    ///         file name is the same as the contract name but strips semver for the file name.
    function _getFullyQualifiedName(string memory _name) internal returns (string memory) {
        string memory sanitized = _stripSemver(_name);
        return string.concat(sanitized, ".sol:", _name);
    }

    function _getForgeArtifactDirectory(string memory _name) internal returns (string memory dir_) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(Executables.forge, " config --json | ", Executables.jq, " -r .out");
        bytes memory res = vm.ffi(cmd);
        string memory contractName = _stripSemver(_name);
        dir_ = string.concat(vm.projectRoot(), "/", string(res), "/", contractName, ".sol");
    }

    /// @notice Returns the filesystem path to the artifact path. If the contract was compiled
    ///         with multiple solidity versions then return the first one based on the result of `ls`.
    function _getForgeArtifactPath(string memory _name) internal returns (string memory) {
        string memory directory = _getForgeArtifactDirectory(_name);
        string memory path = string.concat(directory, "/", _name, ".json");
        if (vm.exists(path)) return path;

        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(
            Executables.ls,
            " -1 --color=never ",
            directory,
            " | ",
            Executables.jq,
            " -R -s -c 'split(\"\n\") | map(select(length > 0))'"
        );
        bytes memory res = vm.ffi(cmd);
        string[] memory files = stdJson.readStringArray(string(res), "");
        return string.concat(directory, "/", files[0]);
    }

    /// @notice Returns the forge artifact given a contract name.
    function _getForgeArtifact(string memory _name) internal returns (string memory) {
        string memory forgeArtifactPath = _getForgeArtifactPath(_name);
        return vm.readFile(forgeArtifactPath);
    }

    /// @notice Returns the receipt of a deployment transaction.
    function _getDeployReceiptByContractAddress(address _addr) internal returns (string memory receipt_) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(
            Executables.jq,
            " -r '.receipts[] | select(.contractAddress == ",
            '"',
            vm.toString(_addr),
            '"',
            ")' < ",
            deployPath
        );
        bytes memory res = vm.ffi(cmd);
        string memory receipt = string(res);
        receipt_ = receipt;
    }

    /// @notice Returns the devdoc for a deployed contract.
    function getDevDoc(string memory _name) internal returns (string memory doc_) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(Executables.jq, " -r '.devdoc' < ", _getForgeArtifactPath(_name));
        bytes memory res = vm.ffi(cmd);
        doc_ = string(res);
    }

    /// @notice Returns the storage layout for a deployed contract.
    function getStorageLayout(string memory _name) internal returns (string memory layout_) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(Executables.jq, " -r '.storageLayout' < ", _getForgeArtifactPath(_name));
        bytes memory res = vm.ffi(cmd);
        layout_ = string(res);
    }

    /// @notice Returns the abi for a deployed contract.
    function getAbi(string memory _name) public returns (string memory abi_) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(Executables.jq, " -r '.abi' < ", _getForgeArtifactPath(_name));
        bytes memory res = vm.ffi(cmd);
        abi_ = string(res);
    }

    /// @notice
    function getMethodIdentifiers(string memory _name) public returns (string[] memory ids_) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(Executables.jq, " '.methodIdentifiers | keys' < ", _getForgeArtifactPath(_name));
        bytes memory res = vm.ffi(cmd);
        ids_ = stdJson.readStringArray(string(res), "");
    }

    /// @notice Returns the userdoc for a deployed contract.
    function getUserDoc(string memory _name) internal returns (string memory doc_) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(Executables.jq, " -r '.userdoc' < ", _getForgeArtifactPath(_name));
        bytes memory res = vm.ffi(cmd);
        doc_ = string(res);
    }

    /// @notice
    function getMetadata(string memory _name) internal returns (string memory metadata_) {
        string[] memory cmd = new string[](3);
        cmd[0] = Executables.bash;
        cmd[1] = "-c";
        cmd[2] = string.concat(Executables.jq, " '.metadata | tostring' < ", _getForgeArtifactPath(_name));
        bytes memory res = vm.ffi(cmd);
        metadata_ = string(res);
    }

    /// @dev Pulls the `_initialized` storage slot information from the Forge artifacts for a given contract.
    function getInitializedSlot(string memory _contractName) internal returns (StorageSlot memory slot_) {
        string memory storageLayout = getStorageLayout(_contractName);

        string[] memory command = new string[](3);
        command[0] = Executables.bash;
        command[1] = "-c";
        command[2] = string.concat(
            Executables.echo,
            " '",
            storageLayout,
            "'",
            " | ",
            Executables.jq,
            " '.storage[] | select(.label == \"_initialized\" and .type == \"t_uint8\")'"
        );
        bytes memory rawSlot = vm.parseJson(string(vm.ffi(command)));
        slot_ = abi.decode(rawSlot, (StorageSlot));
    }

    /// @dev Returns the value of the internal `_initialized` storage slot for a given contract.
    function loadInitializedSlot(string memory _contractName) public returns (uint8 initialized_) {
        address contractAddress;
        // Check if the contract name ends with `Proxy` and, if so, get the implementation address
        if (LibString.endsWith(_contractName, "Proxy")) {
            contractAddress = EIP1967Helper.getImplementation(getAddress(_contractName));
            _contractName = LibString.slice(_contractName, 0, bytes(_contractName).length - 5);
            // If the EIP1967 implementation address is 0, we try to get the implementation address from legacy
            // AddressManager, which would work if the proxy is ResolvedDelegateProxy like L1CrossDomainMessengerProxy.
            if (contractAddress == address(0)) {
                contractAddress =
                    IAddressManager(mustGetAddress("AddressManager")).getAddress(string.concat("OVM_", _contractName));
            }
        } else {
            contractAddress = mustGetAddress(_contractName);
        }
        StorageSlot memory slot = getInitializedSlot(_contractName);
        bytes32 slotVal = vm.load(contractAddress, bytes32(vm.parseUint(slot.slot)));
        initialized_ = uint8((uint256(slotVal) >> (slot.offset * 8)) & 0xFF);
    }

    /// @notice Turns an Artifact into a json serialized string
    /// @param _artifact The artifact to serialize
    /// @return The json serialized string
    function _serializeArtifact(Artifact memory _artifact) internal returns (string memory) {
        string memory json = "";
        json = stdJson.serialize("", "address", _artifact.addr);
        json = stdJson.serialize("", "abi", _artifact.abi);
        json = stdJson.serialize("", "args", _artifact.args);
        json = stdJson.serialize("", "bytecode", _artifact.bytecode);
        json = stdJson.serialize("", "deployedBytecode", _artifact.deployedBytecode);
        json = stdJson.serialize("", "devdoc", _artifact.devdoc);
        json = stdJson.serialize("", "metadata", _artifact.metadata);
        json = stdJson.serialize("", "numDeployments", _artifact.numDeployments);
        json = stdJson.serialize("", "receipt", _artifact.receipt);
        json = stdJson.serialize("", "solcInputHash", _artifact.solcInputHash);
        json = stdJson.serialize("", "storageLayout", _artifact.storageLayout);
        json = stdJson.serialize("", "transactionHash", _artifact.transactionHash);
        json = stdJson.serialize("", "userdoc", _artifact.userdoc);
        return json;
    }
}