Use pointer-compressed rusty_v8 archives and their bundled PartitionAlloc shim on Linux x86_64 GNU and macOS. Preserve the existing jemalloc or system allocator on unsupported targets, and remove the custom archive-mutation workaround.
3.6 KiB
Releasing Moli
The release workflow builds six native archives with stable asset names:
| System | Rust target | Archive |
|---|---|---|
| Linux x86_64 | x86_64-unknown-linux-gnu |
moli-x86_64-unknown-linux-gnu.tar.gz |
| Linux ARM64 | aarch64-unknown-linux-gnu |
moli-aarch64-unknown-linux-gnu.tar.gz |
| macOS Intel | x86_64-apple-darwin |
moli-x86_64-apple-darwin.tar.gz |
| macOS Apple Silicon | aarch64-apple-darwin |
moli-aarch64-apple-darwin.tar.gz |
| Windows x86_64 | x86_64-pc-windows-msvc |
moli-x86_64-pc-windows-msvc.zip |
| Windows ARM64 | aarch64-pc-windows-msvc |
moli-aarch64-pc-windows-msvc.zip |
Every archive contains the moli executable, project licenses, README,
version marker, and third-party license notices. The workflow also publishes
moli-installer.sh and moli-installer.ps1. Skills are maintained separately
in the repository and are not included in release assets.
Stable names are intentional: the latest non-prerelease asset is always
available at
https://github.com/lexmount/moli/releases/latest/download/<asset-name>.
The installers use those URLs, select the archive for the current platform,
and install the executable.
Each artifact is built on its native GitHub-hosted runner. The packager strips
only a staging copy, leaving the binary under target/release unchanged for
debugging. Because stripping invalidates a Mach-O signature, macOS staging
binaries are ad-hoc signed again and verified before packaging. They are not
Developer ID signed or notarized. Windows executables are not Authenticode
signed. Linux x86_64 and both macOS targets use the allocator shim bundled in
their official pointer-compressed V8 archives, routing native allocations to
PartitionAlloc. Targets without such an archive retain their existing
allocator: Linux ARM64 uses jemalloc and Windows uses the system allocator.
Release builds use one code-generation unit. The release workflow and the CI
release-regression binaries both invoke Cargo with --release, so they consume
the same production profile. Normal development and unit-test builds retain
their separate profiles and parallel code generation.
Prepare the release
-
Update
versioninmoli/Cargo.tomland refreshCargo.lock. -
Commit and push those changes to the ref that should be released.
-
Optionally build the package for your current operating system locally.
Linux or macOS:
python3 scripts/release.py --version 0.1.1Windows PowerShell:
python scripts/release.py --version 0.1.1Artifacts are written to
dist/. The packager rejects a version that does not matchmoli/Cargo.toml, checks the native Rust target, strips the staged executable, and verifies the packaged binary's reported version.
Trigger GitHub Release
- Open Actions in GitHub and choose the Release workflow.
- Select Run workflow and choose the Git ref containing the release.
- Enter the version (with or without a leading
v). - Choose whether the release should be a prerelease or a draft, then run it.
The workflow validates the selected commit, builds all six native artifacts
in parallel, verifies the expected archives, creates the corresponding
vX.Y.Z tag, generates release notes, and uploads eight assets: six archives
and two installers. It stops without creating a release if any platform fails,
if the requested version does not match the manifest, or if the tag already
exists. A published, non-prerelease release is explicitly marked as the latest
release so the stable installer URLs switch to it immediately.