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// 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;
}
}