mirror of https://github.com/pulumi/pulumi.git
306 lines
13 KiB
TypeScript
306 lines
13 KiB
TypeScript
// Copyright 2016-2024, Pulumi Corporation.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// The tsnode import is used for type-checking only. Do not reference it in the emitted code.
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import * as tsnode from "ts-node";
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import * as fs from "fs";
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import * as util from "util";
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import * as minimist from "minimist";
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import * as path from "path";
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import * as tsutils from "../../tsutils";
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import { ResourceError, RunError } from "../../errors";
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import * as log from "../../log";
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import * as settings from "../../runtime/settings";
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import * as stack from "../../runtime/stack";
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// Keep track if we already logged the information about an unhandled error to the user.. If
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// so, we end with a different exit code. The language host recognizes this and will not print
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// any further messages to the user since we already took care of it.
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//
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// 32 was picked so as to be very unlikely to collide with any of the error codes documented by
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// nodejs here:
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// https://nodejs.org/api/process.html#process_exit_codes
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const nodeJSProcessExitedAfterLoggingUserActionableMessage = 32;
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/**
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* Attempts to provide a detailed error message for module load failure if the
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* module that failed to load is the top-level module.
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* @param program The name of the program given to `run`, i.e. the top level module
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* @param error The error that occured. Must be a module load error.
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*/
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function reportModuleLoadFailure(program: string, error: Error): never {
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throwOrPrintModuleLoadError(program, error);
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// Note: from this point on, we've printed something to the user telling them about the problem.
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// So we can let our langhost know it doesn't need to report any further issues.
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return process.exit(nodeJSProcessExitedAfterLoggingUserActionableMessage);
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}
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function throwOrPrintModuleLoadError(program: string, error: Error): void {
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// error is guaranteed to be a Node module load error. Node emits a very specific string in its
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// error message for module load errors, which includes the module it was trying to load.
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const errorRegex = /Cannot find module '(.*)'/;
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// If there's no match, who knows what this exception is; it's not something we can provide an
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// intelligent diagnostic for.
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const moduleNameMatches = errorRegex.exec(error.message);
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if (moduleNameMatches === null) {
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throw error;
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}
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// Is the module that failed to load exactly the one that this script considered to be the
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// top-level module for this program?
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//
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// We are only interested in producing good diagnostics for top-level module loads, since
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// anything else are probably user code issues.
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const moduleName = moduleNameMatches[1];
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if (moduleName !== program) {
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throw error;
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}
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// Note: from this point on, we've printed something to the user telling them about the problem.
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// So we can let our langhost know it doesn't need to report any further issues.
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console.error(`We failed to locate the entry point for your program: ${program}`);
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// From here on out, we're going to try to inspect the program we're being asked to run a little
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// to see what sort of details we can glean from it, in the hopes of producing a better error
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// message.
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//
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// The first step of this is trying to slurp up a package.json for this program, if one exists.
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const stat = fs.lstatSync(program);
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let projectRoot: string;
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if (stat.isDirectory()) {
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projectRoot = program;
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} else {
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projectRoot = path.dirname(program);
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}
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let packageObject: Record<string, any>;
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try {
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const packageJson = path.join(projectRoot, "package.json");
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packageObject = require(packageJson);
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} catch {
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// This is all best-effort so if we can't load the package.json file, that's
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// fine.
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return;
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}
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console.error("Here's what we think went wrong:");
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// The objective here is to emit the best diagnostic we can, starting from the
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// most specific to the least specific.
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const deps = packageObject["dependencies"] || {};
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const devDeps = packageObject["devDependencies"] || {};
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const scripts = packageObject["scripts"] || {};
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const mainProperty = packageObject["main"] || "index.js";
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// Is there a build script associated with this program? It's a little confusing that the Pulumi
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// CLI doesn't run build scripts before running the program so call that out explicitly.
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if ("build" in scripts) {
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const command = scripts["build"];
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console.error(` * Your program looks like it has a build script associated with it ('${command}').\n`);
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console.error(
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"Pulumi does not run build scripts before running your program. " +
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`Please run '${command}', 'yarn build', or 'npm run build' and try again.`,
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);
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return;
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}
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// Not all typescript programs have build scripts. If we think it's a typescript program, tell
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// the user to run tsc.
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if ("typescript" in deps || "typescript" in devDeps) {
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console.error(" * Your program looks like a TypeScript program. Have you run 'tsc'?");
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return;
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}
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// Not all projects are typescript. If there's a main property, check that the file exists.
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if (mainProperty !== undefined && typeof mainProperty === "string") {
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const mainFile = path.join(projectRoot, mainProperty);
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if (!fs.existsSync(mainFile)) {
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console.error(` * Your program's 'main' file (${mainFile}) does not exist.`);
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return;
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}
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}
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console.error(" * Pulumi encountered an unexpected error.");
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console.error(` Raw exception message: ${error.message}`);
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return;
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}
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/** @internal */
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export interface RunOpts {
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// The argv for the program to start
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argv: minimist.ParsedArgs;
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// A callback to indicate that the program has started running.
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programStarted: () => void;
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// A callback to report an error that was logged.
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reportLoggedError: (err: Error) => void;
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// Whether or not the program is a typescript program.
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typeScript: boolean;
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}
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/** @internal */
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export function run(opts: RunOpts): Promise<Record<string, any> | undefined> | Promise<void> {
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// If there is a --pwd directive, switch directories.
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const pwd: string | undefined = opts.argv["pwd"];
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if (pwd) {
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process.chdir(pwd);
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}
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// We provide reasonable defaults for many ts options, meaning you don't need to have a
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// tsconfig.json present if you want to use TypeScript with Pulumi. However, ts-node's default
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// behavior is to walk up from the cwd to find a tsconfig.json. For us, it's reasonable to say
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// that the "root" of the project is the cwd, if there's a tsconfig.json file here. Otherwise,
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// just tell ts-node to not load project options at all. This helps with cases like
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// pulumi/pulumi#1772.
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const tsConfigPath = "tsconfig.json";
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if (opts.typeScript) {
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const { tsnodeRequire, typescriptRequire } = tsutils.typeScriptRequireStrings();
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const skipProject = !fs.existsSync(tsConfigPath);
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const compilerOptions: object = tsutils.loadTypeScriptCompilerOptions(tsConfigPath);
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const tsn: typeof tsnode = require(tsnodeRequire);
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tsn.register({
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typeCheck: true,
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skipProject: skipProject,
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compiler: typescriptRequire,
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compilerOptions: {
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target: "es6",
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module: "commonjs",
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moduleResolution: "node",
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sourceMap: "true",
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...compilerOptions,
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},
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});
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}
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let program: string = opts.argv._[0];
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if (!path.isAbsolute(program)) {
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// If this isn't an absolute path, make it relative to the working directory.
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program = path.join(process.cwd(), program);
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}
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// Now fake out the process-wide argv, to make the program think it was run normally.
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const programArgs: string[] = opts.argv._.slice(1);
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process.argv = [process.argv[0], process.argv[1], ...programArgs];
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// Set up the process uncaught exception, unhandled rejection, and program exit handlers.
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const errorSet = new Set<Error>();
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const uncaughtHandler = (err: Error) => {
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// In node, if you throw an error in a chained promise, but the exception is not finally
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// handled, then you can end up getting an unhandledRejection for each exception/promise
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// pair. Because the exception is the same through all of these, we keep track of it and
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// only report it once so the user doesn't get N messages for the same thing.
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if (errorSet.has(err)) {
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return;
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}
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errorSet.add(err);
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// colorize stack trace if exists
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const stackMessage = err.stack && util.inspect(err, { colors: true });
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// Default message should be to include the full stack (which includes the message), or
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// fallback to just the message if we can't get the stack.
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//
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// If both the stack and message are empty, then just stringify the err object itself. This
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// is also necessary as users can throw arbitrary things in JS (including non-Errors).
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const defaultMessage = stackMessage || err.message || "" + err;
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// First, log the error.
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if (RunError.isInstance(err)) {
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// Always hide the stack for RunErrors.
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log.error(err.message);
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} else if (err.name === "TSError" || err.name === SyntaxError.name) {
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// Hide stack frames as TSError/SyntaxError have messages containing
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// where the error is located
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const errOut = err.stack?.toString() || "";
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let errMsg = err.message;
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const errParts = errOut.split(err.message);
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if (errParts.length === 2) {
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errMsg = errParts[0] + err.message;
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}
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log.error(
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`Running program '${program}' failed with an unhandled exception:
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${errMsg}`,
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);
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} else if (ResourceError.isInstance(err)) {
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// Hide the stack if requested to by the ResourceError creator.
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const message = err.hideStack ? err.message : defaultMessage;
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log.error(message, err.resource);
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} else {
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log.error(
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`Running program '${program}' failed with an unhandled exception:
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${defaultMessage}`,
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);
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}
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opts.reportLoggedError(err);
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};
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process.on("uncaughtException", uncaughtHandler);
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// @ts-ignore 'unhandledRejection' will almost always invoke uncaughtHandler with an Error. so
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// just suppress the TS strictness here.
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process.on("unhandledRejection", uncaughtHandler);
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process.on("exit", settings.disconnectSync);
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// Trigger callback to update a sentinel variable tracking
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// whether the program is running.
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opts.programStarted();
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// Construct a `Stack` resource to represent the outputs of the program.
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const runProgram = async () => {
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// We run the program inside this context so that it adopts all resources.
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//
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// IDEA: This will miss any resources created on other turns of the event loop. I think
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// that's a fundamental problem with the current Component design though - not sure what
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// else we could do here.
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//
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// Now go ahead and execute the code. The process will remain alive until the message
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// loop empties.
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log.debug(`Running program '${program}' in pwd '${process.cwd()}' w/ args: ${programArgs}`);
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try {
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// Execute the module and capture any module outputs it exported. If the exported value
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// was itself a Function, then just execute it. This allows for exported top level
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// async functions that pulumi programs can live in. Finally, await the value we get
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// back. That way, if it is async and throws an exception, we properly capture it here
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// and handle it.
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const reqResult = require(program);
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const invokeResult = reqResult instanceof Function ? reqResult() : reqResult;
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return await invokeResult;
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} catch (e) {
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// User JavaScript can throw anything, so if it's not an Error it's definitely
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// not something we want to catch up here.
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if (!(e instanceof Error)) {
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throw e;
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}
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// Give a better error message, if we can.
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const errorCode = (<any>e).code;
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if (errorCode === "MODULE_NOT_FOUND") {
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reportModuleLoadFailure(program, e);
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}
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throw e;
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}
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};
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return runProgram();
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}
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