@solarity/hardhat-migrate
Version:
The simplest way to deploy smart contracts
117 lines • 6.35 kB
JavaScript
var __esDecorate = (this && this.__esDecorate) || function (ctor, descriptorIn, decorators, contextIn, initializers, extraInitializers) {
function accept(f) { if (f !== void 0 && typeof f !== "function") throw new TypeError("Function expected"); return f; }
var kind = contextIn.kind, key = kind === "getter" ? "get" : kind === "setter" ? "set" : "value";
var target = !descriptorIn && ctor ? contextIn["static"] ? ctor : ctor.prototype : null;
var descriptor = descriptorIn || (target ? Object.getOwnPropertyDescriptor(target, contextIn.name) : {});
var _, done = false;
for (var i = decorators.length - 1; i >= 0; i--) {
var context = {};
for (var p in contextIn) context[p] = p === "access" ? {} : contextIn[p];
for (var p in contextIn.access) context.access[p] = contextIn.access[p];
context.addInitializer = function (f) { if (done) throw new TypeError("Cannot add initializers after decoration has completed"); extraInitializers.push(accept(f || null)); };
var result = (0, decorators[i])(kind === "accessor" ? { get: descriptor.get, set: descriptor.set } : descriptor[key], context);
if (kind === "accessor") {
if (result === void 0) continue;
if (result === null || typeof result !== "object") throw new TypeError("Object expected");
if (_ = accept(result.get)) descriptor.get = _;
if (_ = accept(result.set)) descriptor.set = _;
if (_ = accept(result.init)) initializers.unshift(_);
}
else if (_ = accept(result)) {
if (kind === "field") initializers.unshift(_);
else descriptor[key] = _;
}
}
if (target) Object.defineProperty(target, contextIn.name, descriptor);
done = true;
};
var __runInitializers = (this && this.__runInitializers) || function (thisArg, initializers, value) {
var useValue = arguments.length > 2;
for (var i = 0; i < initializers.length; i++) {
value = useValue ? initializers[i].call(thisArg, value) : initializers[i].call(thisArg);
}
return useValue ? value : void 0;
};
import { isFullyQualifiedName } from "hardhat/utils/contract-names";
import { ArtifactStorage } from "./MigrateStorage.js";
import { MigrateError } from "../../utils/index.js";
import { bytecodeHash, CatchClassError } from "../../utils/index.js";
import { removeHardhatNamespacePrefix } from "./utils.js";
let BaseArtifactProcessor = (() => {
let _classDecorators = [CatchClassError];
let _classDescriptor;
let _classExtraInitializers = [];
let _classThis;
var BaseArtifactProcessor = class {
static { _classThis = this; }
static {
const _metadata = typeof Symbol === "function" && Symbol.metadata ? Object.create(null) : void 0;
__esDecorate(null, _classDescriptor = { value: _classThis }, _classDecorators, { kind: "class", name: _classThis.name, metadata: _metadata }, null, _classExtraInitializers);
BaseArtifactProcessor = _classThis = _classDescriptor.value;
if (_metadata) Object.defineProperty(_classThis, Symbol.metadata, { enumerable: true, configurable: true, writable: true, value: _metadata });
__runInitializers(_classThis, _classExtraInitializers);
}
async parseArtifacts(_hre) {
ArtifactStorage.clear();
const names = await _hre.artifacts.getAllFullyQualifiedNames();
for (const name of names) {
const artifact = await _hre.artifacts.readArtifact(name);
const contract = { ...artifact, neededLibraries: this._parseLibrariesOfArtifact(artifact) };
if (this._isNotDeployableArtifact(artifact)) {
continue;
}
ArtifactStorage.set(name, contract);
// Forcing the overwriting of the existing bytecode value in the Artifacts storage is necessary to prevent
// failure in edge cases, such as with internal libraries or disabled bytecode metadata hash generation.
ArtifactStorage.set(bytecodeHash(artifact.bytecode), contract, true);
}
}
async saveArtifactIfNotExist(contractName, bytecode) {
if (!isFullyQualifiedName(contractName) || (bytecode ? true : ArtifactStorage.get(bytecodeHash(bytecode)))) {
return;
}
const hre = await import("hardhat");
const artifact = await hre.artifacts.readArtifact(contractName);
const contract = { ...artifact, neededLibraries: this._parseLibrariesOfArtifact(artifact) };
ArtifactStorage.set(bytecode ? bytecodeHash(bytecode) : bytecodeHash(artifact.bytecode), contract, true);
}
tryGetArtifactByName(contractName) {
const artifact = ArtifactStorage.get(removeHardhatNamespacePrefix(contractName));
if (!artifact) {
throw new MigrateError(`Artifact not found`);
}
return artifact;
}
tryGetArtifactByBytecode(bytecode) {
const artifact = ArtifactStorage.get(bytecodeHash(bytecode));
if (!artifact) {
throw new MigrateError(`Artifact not found`);
}
return artifact;
}
tryGetContractName(bytecode) {
const artifact = this.tryGetArtifactByBytecode(bytecode);
return `${artifact.sourceName}:${artifact.contractName}`;
}
_parseLibrariesOfArtifact(artifact) {
const libraries = artifact.linkReferences;
const neededLibraries = [];
for (const libraryFileName of Object.keys(libraries)) {
const library = libraries[libraryFileName];
for (const libraryName of Object.keys(library)) {
neededLibraries.push({
sourceName: libraryFileName,
libName: libraryName,
});
}
}
return neededLibraries;
}
_isNotDeployableArtifact(artifact) {
return artifact.deployedBytecode === "0x";
}
};
return BaseArtifactProcessor = _classThis;
})();
export const ArtifactProcessor = new BaseArtifactProcessor();
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