mirror of
https://github.com/openai/codex.git
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301 lines
9.5 KiB
Python
Executable File
301 lines
9.5 KiB
Python
Executable File
#!/usr/bin/env python3
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"""Install Codex package archives and native helper binaries."""
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import argparse
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from contextlib import contextmanager
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import os
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import shutil
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import subprocess
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import tarfile
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import tempfile
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from dataclasses import dataclass
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from concurrent.futures import ThreadPoolExecutor, as_completed
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from pathlib import Path
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from typing import Sequence
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SCRIPT_DIR = Path(__file__).resolve().parent
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CODEX_CLI_ROOT = SCRIPT_DIR.parent
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DEFAULT_WORKFLOW_URL = "https://github.com/openai/codex/actions/runs/26201494185" # rust-v0.133.0-alpha.4
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VENDOR_DIR_NAME = "vendor"
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BINARY_TARGETS = (
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"x86_64-unknown-linux-musl",
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"aarch64-unknown-linux-musl",
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"x86_64-apple-darwin",
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"aarch64-apple-darwin",
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"x86_64-pc-windows-msvc",
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"aarch64-pc-windows-msvc",
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)
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CODEX_PACKAGE_COMPONENT = "codex-package"
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@dataclass(frozen=True)
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class BinaryComponent:
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artifact_prefix: str # matches the artifact filename prefix (e.g. codex-<target>.zst)
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dest_dir: str # directory under vendor/<target>/ where the binary is installed
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binary_basename: str # executable name inside dest_dir (before optional .exe)
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BINARY_COMPONENTS = {
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"codex-responses-api-proxy": BinaryComponent(
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artifact_prefix="codex-responses-api-proxy",
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dest_dir="codex-responses-api-proxy",
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binary_basename="codex-responses-api-proxy",
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),
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}
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def _gha_enabled() -> bool:
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# GitHub Actions supports "workflow commands" (e.g. ::group:: / ::error::) that make logs
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# much easier to scan: groups collapse noisy sections and error annotations surface the
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# failure in the UI without changing the actual exception/traceback output.
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return os.environ.get("GITHUB_ACTIONS") == "true"
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def _gha_escape(value: str) -> str:
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# Workflow commands require percent/newline escaping.
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return value.replace("%", "%25").replace("\r", "%0D").replace("\n", "%0A")
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def _gha_error(*, title: str, message: str) -> None:
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# Emit a GitHub Actions error annotation. This does not replace stdout/stderr logs; it just
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# adds a prominent summary line to the job UI so the root cause is easier to spot.
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if not _gha_enabled():
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return
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print(
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f"::error title={_gha_escape(title)}::{_gha_escape(message)}",
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flush=True,
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)
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@contextmanager
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def _gha_group(title: str):
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# Wrap a block in a collapsible log group on GitHub Actions. Outside of GHA this is a no-op
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# so local output remains unchanged.
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if _gha_enabled():
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print(f"::group::{_gha_escape(title)}", flush=True)
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try:
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yield
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finally:
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if _gha_enabled():
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print("::endgroup::", flush=True)
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def parse_args() -> argparse.Namespace:
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parser = argparse.ArgumentParser(description="Install native Codex binaries.")
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parser.add_argument(
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"--workflow-url",
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help=(
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"GitHub Actions workflow URL that produced the artifacts. Defaults to a "
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"known good run when omitted."
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),
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)
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parser.add_argument(
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"--component",
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dest="components",
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action="append",
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choices=tuple([CODEX_PACKAGE_COMPONENT, *BINARY_COMPONENTS]),
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help=(
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"Limit installation to the specified components."
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" May be repeated. Defaults to codex-package and codex-responses-api-proxy."
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),
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)
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parser.add_argument(
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"root",
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nargs="?",
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type=Path,
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help=(
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"Directory containing package.json for the staged package. If omitted, the "
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"repository checkout is used."
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),
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)
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return parser.parse_args()
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def main() -> int:
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args = parse_args()
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codex_cli_root = (args.root or CODEX_CLI_ROOT).resolve()
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vendor_dir = codex_cli_root / VENDOR_DIR_NAME
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vendor_dir.mkdir(parents=True, exist_ok=True)
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components = args.components or [CODEX_PACKAGE_COMPONENT, "codex-responses-api-proxy"]
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workflow_override = (args.workflow_url or "").strip()
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workflow_url = workflow_override or DEFAULT_WORKFLOW_URL
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workflow_id = workflow_url.rstrip("/").split("/")[-1]
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print(f"Downloading native artifacts from workflow {workflow_id}...")
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with _gha_group(f"Download native artifacts from workflow {workflow_id}"):
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with tempfile.TemporaryDirectory(prefix="codex-native-artifacts-") as artifacts_dir_str:
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artifacts_dir = Path(artifacts_dir_str)
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_download_artifacts(workflow_id, artifacts_dir)
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if CODEX_PACKAGE_COMPONENT in components:
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install_codex_package_archives(artifacts_dir, vendor_dir, BINARY_TARGETS)
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install_binary_components(
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artifacts_dir,
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vendor_dir,
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[BINARY_COMPONENTS[name] for name in components if name in BINARY_COMPONENTS],
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)
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print(f"Installed native dependencies into {vendor_dir}")
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return 0
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def install_codex_package_archives(
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artifacts_dir: Path,
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vendor_dir: Path,
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targets: Sequence[str],
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) -> None:
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targets = list(targets)
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if not targets:
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return
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print("Installing Codex package archives for targets: " + ", ".join(targets))
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max_workers = min(len(targets), max(1, (os.cpu_count() or 1)))
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with ThreadPoolExecutor(max_workers=max_workers) as executor:
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futures = {
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executor.submit(
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_install_single_codex_package_archive,
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artifacts_dir,
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vendor_dir,
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target,
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): target
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for target in targets
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}
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for future in as_completed(futures):
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installed_path = future.result()
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print(f" installed {installed_path}")
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def _install_single_codex_package_archive(
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artifacts_dir: Path,
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vendor_dir: Path,
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target: str,
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) -> Path:
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artifact_subdir = artifact_dir_for_target(artifacts_dir, target)
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archive_path = artifact_subdir / f"codex-package-{target}.tar.gz"
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if not archive_path.exists():
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raise FileNotFoundError(f"Expected package archive not found: {archive_path}")
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dest_dir = vendor_dir / target
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if dest_dir.exists():
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shutil.rmtree(dest_dir)
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dest_dir.mkdir(parents=True, exist_ok=True)
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with tarfile.open(archive_path, "r:gz") as archive:
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archive.extractall(dest_dir, filter="data")
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return dest_dir
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def _download_artifacts(workflow_id: str, dest_dir: Path) -> None:
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cmd = [
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"gh",
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"run",
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"download",
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"--dir",
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str(dest_dir),
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"--repo",
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"openai/codex",
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workflow_id,
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]
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subprocess.check_call(cmd)
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def install_binary_components(
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artifacts_dir: Path,
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vendor_dir: Path,
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selected_components: Sequence[BinaryComponent],
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) -> None:
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if not selected_components:
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return
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for component in selected_components:
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component_targets = list(BINARY_TARGETS)
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print(
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f"Installing {component.binary_basename} binaries for targets: "
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+ ", ".join(component_targets)
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)
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max_workers = min(len(component_targets), max(1, (os.cpu_count() or 1)))
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with ThreadPoolExecutor(max_workers=max_workers) as executor:
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futures = {
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executor.submit(
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_install_single_binary,
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artifacts_dir,
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vendor_dir,
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target,
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component,
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): target
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for target in component_targets
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}
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for future in as_completed(futures):
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installed_path = future.result()
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print(f" installed {installed_path}")
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def _install_single_binary(
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artifacts_dir: Path,
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vendor_dir: Path,
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target: str,
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component: BinaryComponent,
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) -> Path:
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artifact_subdir = artifact_dir_for_target(artifacts_dir, target)
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archive_path = binary_archive_path(artifact_subdir, component.artifact_prefix, target)
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dest_dir = vendor_dir / target / component.dest_dir
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dest_dir.mkdir(parents=True, exist_ok=True)
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binary_name = (
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f"{component.binary_basename}.exe" if "windows" in target else component.binary_basename
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)
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dest = dest_dir / binary_name
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dest.unlink(missing_ok=True)
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extract_zstd_archive(archive_path, dest)
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if "windows" not in target:
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dest.chmod(0o755)
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return dest
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def _archive_name_for_target(artifact_prefix: str, target: str) -> str:
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if "windows" in target:
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return f"{artifact_prefix}-{target}.exe.zst"
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return f"{artifact_prefix}-{target}.zst"
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def binary_archive_path(artifact_dir: Path, artifact_prefix: str, target: str) -> Path:
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archive_names = [_archive_name_for_target(artifact_prefix, target)]
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if artifact_dir.name == f"{target}-unsigned":
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archive_names.append(_archive_name_for_target(artifact_prefix, f"{target}-unsigned"))
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for archive_name in archive_names:
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archive_path = artifact_dir / archive_name
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if archive_path.exists():
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return archive_path
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raise FileNotFoundError(f"Expected artifact not found: {artifact_dir / archive_names[0]}")
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def artifact_dir_for_target(artifacts_dir: Path, target: str) -> Path:
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for artifact_name in [target, f"{target}-unsigned"]:
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artifact_dir = artifacts_dir / artifact_name
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if artifact_dir.is_dir():
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return artifact_dir
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return artifacts_dir / target
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def extract_zstd_archive(archive_path: Path, dest: Path) -> None:
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dest.parent.mkdir(parents=True, exist_ok=True)
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output_path = archive_path.parent / dest.name
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subprocess.check_call(["zstd", "-f", "-d", str(archive_path), "-o", str(output_path)])
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shutil.move(str(output_path), dest)
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if __name__ == "__main__":
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import sys
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sys.exit(main())
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