single-exe: closure manifest, build pipeline, and CI workflow
This commit is contained in:
@@ -0,0 +1,457 @@
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/**
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* Build the single-file SDK runtime executables
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* (docs/rfc/implemented/architecture/2026-07-10-single-file-executable-sdk-runtime-distribution.md).
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*
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* Every settled decision is hardcoded — the PoC judged @yao-pkg/pkg's
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* standard mode unusable for this architecture (its ESM→CJS transform breaks
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* every runtime `import()`), so the pipeline is fixed on `--sea` mode, plain
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* ESM entry, plain-source assets, and a hoisted (symlink-free) staged tree.
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*
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* Pipeline — every step fails loud with the command it ran:
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*
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* 1. `pnpm run build` — all packages emit `lib/` (skippable via --skip-build).
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* 2. `pnpm --filter dsh-jsonrpc-agent-pkg deploy` — materialize the
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* closure-manifest package (python/sdk-runtime/package.json — the single
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* source of truth for the exe's plugin set) into the staging dir
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* (cleared first; pnpm refuses a non-empty deploy target). Flags, all
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* verified against pnpm 11.7: `--legacy` because the workspace does not
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* set `inject-workspace-packages=true`; `node-linker=hoisted` for a plain
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* file tree with zero symlinks (the safe shape for pkg's VFS, and it
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* physically guarantees a single cordis copy); `auto-install-peers=false`
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* so transitive `^0.0.x` peers on unpublished packages never hit the
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* registry; `link-workspace-packages=true` so the closure resolves to
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* workspace/vendor sources.
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* 3. Inject the pkg config into the staged package.json: `bin` = the ESM
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* `node_modules/@deepseek-ai/dsh-jsonrpc-agent/lib/bin.js` (SEA mode
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* hands it to Node's default ESM loader — no CJS shim), plus whole-tree
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* asset globs. The cordis Loader resolves plugins
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* through runtime dynamic `import()` of bare package names, so pkg's
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* static analysis discovers none of them — the entire staged tree must be
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* globbed in explicitly.
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* 4. `pnpm dlx @yao-pkg/pkg@<pinned> <staging> --sea --targets <t> --output
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* <out>/dsh-jsonrpc-agent-pkg-<platform>-<arch>` — once per target (SEA mode
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* packs a single target per invocation), so each product gets its
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* canonical name directly.
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* 5. Sync into the Python runtime package
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* (python/sdk-runtime/src/deepseek_harness_runtime/runtime/,
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* created if missing): each product under its canonical filename (exe
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* mode), plus the whole staged closure into runtime/node/ (node mode —
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* `node runtime/node/node_modules/@deepseek-ai/dsh-jsonrpc-agent/lib/bin.js`
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* runs it directly; the injected pkg
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* fields are harmless to node). dist-exe/ keeps the originals for CI
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* artifact upload.
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*
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* `pnpm exec tsx scripts/build-exe-for-python-sdk.ts` → host-platform exe into dist-exe/
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* `pnpm exec tsx scripts/build-exe-for-python-sdk.ts --targets=node24-linux-x64,node24-linux-arm64,node24-macos-arm64`
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* `pnpm exec tsx scripts/build-exe-for-python-sdk.ts --dry-run` → print the plan without executing
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*/
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import { spawn } from 'node:child_process'
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import { existsSync, mkdirSync, statSync } from 'node:fs'
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import { copyFile, readFile, rm, writeFile } from 'node:fs/promises'
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import { basename, join, resolve, sep } from 'node:path'
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import { parseArgs } from 'node:util'
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const root = resolve(import.meta.dirname, '..')
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/**
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* The deploy root: the closure-manifest package (python/sdk-runtime) whose
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* dependencies define the exe's contents; the runnable entry inside the
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* closure is {@link ENTRY_BIN}.
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*/
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const DEPLOY_ROOT_PACKAGE = 'dsh-jsonrpc-agent-pkg'
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/** The bin entry inside the deployed closure (the dsh-jsonrpc-agent app bin). */
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const ENTRY_BIN = 'node_modules/@deepseek-ai/dsh-jsonrpc-agent/lib/bin.js'
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/** Basename of every product; the canonical name appends `-<platform>-<arch>`. */
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const OUTPUT_BASENAME = 'dsh-jsonrpc-agent-pkg'
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/** Default exe Node major; SEA mode requires >= node22, the repo tracks node24. */
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const DEFAULT_NODE_RANGE = 'node24'
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/** Pinned pkg version (the one the PoC and acceptance ran on) for reproducible builds. */
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const PKG_SPEC = '@yao-pkg/pkg@6.21.0'
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/** Staging dir for the deployed closure — cleared on every run (gitignored). */
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// (No external staging dir: the deploy target IS the Python runtime's
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// node-mode carrier — see PYTHON_RUNTIME_DIR/PYTHON_NODE_SUBDIR.)
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/** Product output dir (gitignored). */
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const OUT_DIR = 'dist-exe'
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/**
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* Python runtime package dir the products are synced into. A parallel change
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* owns the directory and its .gitignore; this script's only contract is the
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* destination path, so a missing dir is created, never an error.
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*/
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const PYTHON_RUNTIME_DIR = 'python/sdk-runtime/src/deepseek_harness_runtime/runtime'
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/** Subdir of {@link PYTHON_RUNTIME_DIR} carrying the staged closure for node-mode execution. */
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const PYTHON_NODE_SUBDIR = 'node'
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/**
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* Whole-tree asset globs. The cordis Loader dynamic-imports bare package names
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* at runtime, invisible to pkg's static analysis, so every runtime file in the
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* closure is listed; SEA mode ships them as plain source in the VFS. Every
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* package.json must ride along — bare-name resolution dies without them (the
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* json glob would already match, but the manifests are resolution-critical, so
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* they get their own explicit entry).
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*/
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const ASSET_GLOBS = [
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'package.json',
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'node_modules/**/*.js',
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'node_modules/**/*.cjs',
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'node_modules/**/*.mjs',
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'node_modules/**/package.json',
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'node_modules/**/*.json',
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'node_modules/**/*.node',
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'node_modules/**/*.wasm',
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]
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const PLATFORMS = ['linux', 'macos'] as const
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const ARCHES = ['x64', 'arm64'] as const
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type Platform = (typeof PLATFORMS)[number]
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type Arch = (typeof ARCHES)[number]
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/** True when `value` is a supported pkg platform tag. */
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function isPlatform(value: string): value is Platform {
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return (PLATFORMS as readonly string[]).includes(value)
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}
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/** True when `value` is a supported pkg CPU tag. */
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function isArch(value: string): value is Arch {
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return (ARCHES as readonly string[]).includes(value)
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}
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/**
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* One pkg target triple, e.g. `node24-linux-x64`, as an immutable value.
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* Construction goes through {@link Target.parse} (a `--targets` entry) or
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* {@link Target.host} (the default), which own all validation.
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*/
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class Target {
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private constructor(
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/** pkg Node range (`node<major>`); pins the official base binary pkg pulls. */
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readonly nodeRange: string,
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/**
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* pkg platform tag. Windows is a documented non-goal
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* (docs/rfc/implemented/architecture/2026-07-10-single-file-executable-sdk-runtime-distribution.md).
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*/
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readonly platform: Platform,
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/** pkg CPU tag. */
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readonly arch: Arch,
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) {}
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/** The pkg `--targets` spec string `<nodeRange>-<platform>-<arch>`. */
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get spec(): string {
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return `${this.nodeRange}-${this.platform}-${this.arch}`
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}
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/**
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* Parse and validate one target spec; throws on any malformed component.
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* @param spec - the raw triple, e.g. `node24-linux-x64`.
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* @returns the parsed target.
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*/
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static parse(spec: string): Target {
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const parts = spec.split('-')
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const [nodeRange, platform, arch] = parts
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if (parts.length !== 3 || nodeRange === undefined || platform === undefined || arch === undefined) {
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throw new Error(`build-exe-for-python-sdk: target ${JSON.stringify(spec)} must be <nodeRange>-<platform>-<arch>, e.g. node24-linux-x64.`)
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}
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if (!/^node\d+$/.test(nodeRange)) {
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throw new Error(`build-exe-for-python-sdk: target ${JSON.stringify(spec)}: node range must look like node24, got ${JSON.stringify(nodeRange)}.`)
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}
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if (!isPlatform(platform)) {
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throw new Error(`build-exe-for-python-sdk: target ${JSON.stringify(spec)}: platform must be one of ${PLATFORMS.join(', ')} (Windows is a docs/rfc/implemented/architecture/2026-07-10-single-file-executable-sdk-runtime-distribution.md non-goal), got ${JSON.stringify(platform)}.`)
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}
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if (!isArch(arch)) {
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throw new Error(`build-exe-for-python-sdk: target ${JSON.stringify(spec)}: arch must be one of ${ARCHES.join(', ')}, got ${JSON.stringify(arch)}.`)
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}
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return new Target(nodeRange, platform, arch)
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}
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/**
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* The default target when --targets is omitted: the host platform on node24.
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* @returns the host target; throws on an unsupported host platform or arch.
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*/
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static host(): Target {
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const platform = process.platform === 'darwin' ? 'macos' : process.platform === 'linux' ? 'linux' : undefined
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if (platform === undefined) {
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throw new Error(`build-exe-for-python-sdk: unsupported host platform ${process.platform}; pass --targets explicitly.`)
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}
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const arch = process.arch === 'x64' || process.arch === 'arm64' ? process.arch : undefined
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if (arch === undefined) {
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throw new Error(`build-exe-for-python-sdk: unsupported host arch ${process.arch}; pass --targets explicitly.`)
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}
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return new Target(DEFAULT_NODE_RANGE, platform, arch)
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}
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}
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/**
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* Parsed CLI configuration. {@link BuildCli.parse} is the only constructor
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* path — it owns flag parsing, target validation, and the --help / bad-flag
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* process exits, so an instance always holds a valid plan.
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*/
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class BuildCli {
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private constructor(
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/** Build targets; defaults to the host platform only. */
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readonly targets: readonly Target[],
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/** Skip step 1 (`pnpm run build`); lib/ artifacts must already exist. */
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readonly skipBuild: boolean,
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/** Print every command and config patch instead of executing. */
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readonly dryRun: boolean,
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) {}
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/**
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* Parse argv into a validated configuration. Exits the process for --help
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* (code 0, usage) and for unknown/malformed flags (code 1, usage on
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* stderr); throws on invalid or colliding targets.
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* @param argv - the raw arguments (`process.argv.slice(2)`).
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* @returns the parsed, validated configuration.
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*/
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static parse(argv: string[]): BuildCli {
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let values: ReturnType<typeof BuildCli.parseRaw>
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try {
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values = BuildCli.parseRaw(argv)
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} catch (error) {
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console.error(`build-exe-for-python-sdk: ${error instanceof Error ? error.message : String(error)}\n`)
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console.error(BuildCli.usage())
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process.exit(1)
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}
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if (values.help) {
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console.log(BuildCli.usage())
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process.exit(0)
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}
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const targets = values.targets === undefined
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? [Target.host()]
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: values.targets.split(',').map(part => part.trim()).filter(part => part !== '').map(spec => Target.parse(spec))
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if (targets.length === 0) throw new Error('build-exe-for-python-sdk: --targets is empty.')
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const seen = new Set<string>()
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for (const target of targets) {
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const key = `${target.platform}-${target.arch}`
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if (seen.has(key)) {
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throw new Error(`build-exe-for-python-sdk: duplicate platform-arch ${key} in --targets; canonical product names would collide.`)
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}
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seen.add(key)
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}
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return new BuildCli(targets, values['skip-build'], values['dry-run'])
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}
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/** The flag grammar in one place; parseArgs throws on any unknown flag. */
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private static parseRaw(argv: string[]) {
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return parseArgs({
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args: argv,
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options: {
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'targets': { type: 'string' },
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'skip-build': { type: 'boolean', default: false },
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'dry-run': { type: 'boolean', default: false },
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'help': { type: 'boolean', default: false },
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},
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}).values
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}
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/** The --help text; also printed under flag-parse errors. */
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private static usage(): string {
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return [
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'Usage: pnpm exec tsx scripts/build-exe-for-python-sdk.ts [flags]',
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'',
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' --targets=<t1,t2,...> pkg targets, e.g. node24-linux-x64,node24-linux-arm64,node24-macos-arm64.',
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' Default: the host platform only (on node24).',
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' --skip-build skip `pnpm run build` (lib/ artifacts must already exist).',
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' --dry-run print every command and config patch without executing.',
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' --help print this help.',
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'',
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'Settled decisions are hardcoded (docs/rfc/implemented/architecture/2026-07-10-single-file-executable-sdk-runtime-distribution.md): pkg runs in --sea mode',
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`(standard mode breaks runtime import()), pinned to ${PKG_SPEC}; the deploy tree is`,
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`hoisted/symlink-free; the closure deploys straight into ${PYTHON_RUNTIME_DIR}/${PYTHON_NODE_SUBDIR} and products land in ${OUT_DIR}/.`,
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].join('\n')
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}
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}
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/** The pnpm executable name for the host OS. */
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function pnpmBin(): string {
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return process.platform === 'win32' ? 'pnpm.cmd' : 'pnpm'
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}
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/**
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* Render a command line for logs and error messages, quoting arguments that
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* contain spaces.
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* @param command - the executable.
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* @param args - its arguments.
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* @returns the printable command line.
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*/
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function formatCommand(command: string, args: string[]): string {
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return [command, ...args].map(part => (part.includes(' ') ? JSON.stringify(part) : part)).join(' ')
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}
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/**
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* The four-step build pipeline over one parsed CLI. Steps are sequential
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* async methods; every subprocess inherits stdio and fails loud with the
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* exact command it ran. In --dry-run the command/filesystem layer prints
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* what it would do instead of executing.
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*/
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class SingleExeBuild {
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/**
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* Absolute staging dir — the Python runtime's node-mode carrier: step 2
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* deploys the closure DIRECTLY here (cleared first; it is a pure build
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* product, the checked-in default `cordis.yml` lives one level up), step 4
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* reads it as the pkg input, and node mode runs it in place.
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*/
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readonly staging = resolve(root, PYTHON_RUNTIME_DIR, PYTHON_NODE_SUBDIR)
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/** Absolute product output dir. */
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private readonly outDir = resolve(root, OUT_DIR)
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constructor(private readonly cli: BuildCli) {}
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/** Step 1: `pnpm run build` — all packages emit `lib/` (skipped via --skip-build). */
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async build(): Promise<void> {
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if (this.cli.skipBuild) {
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console.log('build-exe-for-python-sdk: skipping pnpm run build (--skip-build)')
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return
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}
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await this.run('build', pnpmBin(), ['run', 'build'])
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}
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/** Step 2: clear the staging dir and deploy the bridge closure into it. */
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async deployStaging(): Promise<void> {
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if (this.staging === root || root.startsWith(this.staging + sep)) {
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throw new Error(`build-exe-for-python-sdk: refusing to clear staging dir ${this.staging}: it contains the repo root.`)
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}
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if (this.cli.dryRun) console.log(`build-exe-for-python-sdk: [dry-run] rm -rf ${this.staging}`)
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else await rm(this.staging, { recursive: true, force: true })
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await this.run('deploy', pnpmBin(), [
|
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'--filter',
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DEPLOY_ROOT_PACKAGE,
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'deploy',
|
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'--legacy',
|
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'--prod',
|
||||
'--config.node-linker=hoisted',
|
||||
'--config.auto-install-peers=false',
|
||||
'--config.link-workspace-packages=true',
|
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this.staging,
|
||||
])
|
||||
}
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/** Step 3: patch the staged package.json with the bin entry + pkg asset globs. */
|
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async injectPkgConfig(): Promise<void> {
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const patch = { bin: ENTRY_BIN, pkg: { assets: ASSET_GLOBS } }
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const manifestPath = join(this.staging, 'package.json')
|
||||
if (this.cli.dryRun) {
|
||||
console.log(`build-exe-for-python-sdk: [dry-run] patch ${manifestPath} with ${JSON.stringify(patch)}`)
|
||||
return
|
||||
}
|
||||
if (!existsSync(manifestPath)) {
|
||||
throw new Error(`build-exe-for-python-sdk: ${manifestPath} missing — pnpm deploy did not produce a staged package.`)
|
||||
}
|
||||
if (!existsSync(join(this.staging, ENTRY_BIN))) {
|
||||
throw new Error(`build-exe-for-python-sdk: ${join(this.staging, ENTRY_BIN)} missing — run without --skip-build so lib/ artifacts exist.`)
|
||||
}
|
||||
const manifest = JSON.parse(await readFile(manifestPath, 'utf8')) as Record<string, unknown>
|
||||
await writeFile(manifestPath, `${JSON.stringify({ ...manifest, ...patch }, null, 2)}\n`)
|
||||
console.log(`build-exe-for-python-sdk: injected pkg config into ${manifestPath}`)
|
||||
}
|
||||
|
||||
/**
|
||||
* Step 4: run @yao-pkg/pkg over the staged tree for ONE target (SEA mode
|
||||
* packs a single target per invocation) and return the product path.
|
||||
* @param target - the pkg target triple to build.
|
||||
* @returns the canonical product path `<out>/dsh-jsonrpc-agent-pkg-<platform>-<arch>`.
|
||||
*/
|
||||
async pack(target: Target): Promise<string> {
|
||||
const product = join(this.outDir, `${OUTPUT_BASENAME}-${target.platform}-${target.arch}`)
|
||||
if (!this.cli.dryRun) mkdirSync(this.outDir, { recursive: true })
|
||||
await this.run(`pkg ${target.spec}`, pnpmBin(), [
|
||||
'dlx',
|
||||
PKG_SPEC,
|
||||
this.staging,
|
||||
'--sea',
|
||||
'--targets',
|
||||
target.spec,
|
||||
'--output',
|
||||
product,
|
||||
])
|
||||
if (!this.cli.dryRun && !existsSync(product)) {
|
||||
throw new Error(`build-exe-for-python-sdk: product ${product} is missing after the pkg run; inspect ${this.outDir}.`)
|
||||
}
|
||||
return product
|
||||
}
|
||||
|
||||
/**
|
||||
* Print each product path (and size, when it exists on disk).
|
||||
* @param products - the product paths returned by {@link pack}.
|
||||
*/
|
||||
printProducts(products: string[]): void {
|
||||
console.log(this.cli.dryRun ? 'build-exe-for-python-sdk: [dry-run] would produce:' : 'build-exe-for-python-sdk: products:')
|
||||
for (const product of products) {
|
||||
if (this.cli.dryRun) {
|
||||
console.log(` ${product}`)
|
||||
continue
|
||||
}
|
||||
const megabytes = statSync(product).size / (1024 * 1024)
|
||||
console.log(` ${product} (${megabytes.toFixed(1)} MB)`)
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Step 5: copy every product into the Python runtime package under its
|
||||
* canonical filename (exe mode). The node-mode carrier needs no sync — step
|
||||
* 2 deployed the closure into it directly. dist-exe/ keeps the originals
|
||||
* for CI artifact upload; the destination dir is created if missing.
|
||||
* @param products - the product paths returned by {@link pack}.
|
||||
*/
|
||||
async syncToPythonRuntime(products: string[]): Promise<void> {
|
||||
const destDir = resolve(root, PYTHON_RUNTIME_DIR)
|
||||
if (this.cli.dryRun) {
|
||||
for (const product of products) {
|
||||
console.log(`build-exe-for-python-sdk: [dry-run] cp ${product} ${join(destDir, basename(product))}`)
|
||||
}
|
||||
return
|
||||
}
|
||||
mkdirSync(destDir, { recursive: true })
|
||||
for (const product of products) {
|
||||
const destination = join(destDir, basename(product))
|
||||
await copyFile(product, destination)
|
||||
console.log(`build-exe-for-python-sdk: synced ${destination}`)
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Run one pipeline step as a subprocess with inherited stdio; reject —
|
||||
* carrying the printable command — on spawn failure and non-zero exit
|
||||
* alike. In --dry-run, print the command instead of executing.
|
||||
* @param label - the step name used in logs and error messages.
|
||||
* @param command - the executable.
|
||||
* @param args - its arguments.
|
||||
*/
|
||||
private async run(label: string, command: string, args: string[]): Promise<void> {
|
||||
const printable = formatCommand(command, args)
|
||||
if (this.cli.dryRun) {
|
||||
console.log(`build-exe-for-python-sdk: [dry-run] ${printable}`)
|
||||
return
|
||||
}
|
||||
console.log(`build-exe-for-python-sdk: ${label}: ${printable}`)
|
||||
await new Promise<void>((resolvePromise, reject) => {
|
||||
const child = spawn(command, args, { cwd: root, stdio: 'inherit' })
|
||||
child.once('error', (error) => {
|
||||
reject(new Error(`build-exe-for-python-sdk: ${label} failed to spawn: ${error.message} (${printable})`))
|
||||
})
|
||||
child.once('exit', (code, signal) => {
|
||||
if (code === 0) {
|
||||
resolvePromise()
|
||||
return
|
||||
}
|
||||
const cause = code === null ? `signal ${signal ?? 'unknown'}` : `exit code ${code}`
|
||||
reject(new Error(`build-exe-for-python-sdk: ${label} failed (${cause}): ${printable}`))
|
||||
})
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
/** Entry point: parse the CLI, then await each pipeline step in order. */
|
||||
async function main(): Promise<void> {
|
||||
const cli = BuildCli.parse(process.argv.slice(2))
|
||||
const pipeline = new SingleExeBuild(cli)
|
||||
console.log(`build-exe-for-python-sdk: targets: ${cli.targets.map(target => target.spec).join(', ')}`)
|
||||
console.log(`build-exe-for-python-sdk: staging: ${pipeline.staging}`)
|
||||
await pipeline.build()
|
||||
await pipeline.deployStaging()
|
||||
await pipeline.injectPkgConfig()
|
||||
const products: string[] = []
|
||||
for (const target of cli.targets) products.push(await pipeline.pack(target))
|
||||
pipeline.printProducts(products)
|
||||
await pipeline.syncToPythonRuntime(products)
|
||||
}
|
||||
|
||||
await main()
|
||||
Reference in New Issue
Block a user