# Release signing OliveTin signs release binaries on two platforms: * **macOS** — Developer ID + notarization via [quill](https://github.com/anchore/quill) inside GoReleaser (optional only when `MACOS_SIGN_P12` is unset). * **Windows** — Authenticode via [SignPath Foundation](https://signpath.org/) in a separate GitHub Actions job (signed zip/MSI are uploaded after the release is published). ## macOS release signing Release builds can sign and notarize the `darwin` binaries using [quill](https://github.com/anchore/quill) via GoReleaser. This runs on the existing Linux CI runner; no macOS runner or Xcode is required. Signing is **optional** only when `MACOS_SIGN_P12` is unset — GoReleaser then skips macOS signing and publishes unsigned binaries. When `MACOS_SIGN_P12` is set, the companion macOS secrets below are required or the release fails. ### Prerequisites - An active [Apple Developer Program](https://developer.apple.com/programs/) membership. - A **Developer ID Application** certificate (not "Apple Development" or "Mac App Distribution"). - An [App Store Connect API key](https://appstoreconnect.apple.com/access/integrations/api) with at least **Developer** access. ### One-time setup #### 1. Create the signing certificate (OpenSSL, no Mac/Xcode) Work in a private directory. Keep the private key offline and never commit it. ```sh mkdir -p ~/apple-signing && cd ~/apple-signing chmod 700 . openssl genrsa -out developer_id_app.key 2048 openssl req -new -key developer_id_app.key -out developer_id_app.csr \ -subj "/emailAddress=you@example.com/CN=Your Name/C=GB" ``` 1. Open [Certificates, Identifiers & Profiles](https://developer.apple.com/account/resources/certificates/list). 2. Create a certificate of type **Developer ID Application**. Prefer **G2 Sub-CA** if the portal asks. 3. Upload `developer_id_app.csr` and download the resulting `.cer` (often named `developerID_application.cer`). Build a `.p12` that includes the **full** chain: leaf + Developer ID G2 intermediate + Apple Root CA. The Apple Root **must** be present. With only leaf + G2, quill embeds a designated requirement of the form `certificate root[field.1.2.840.113635.100.6.2.6]`. On macOS that resolves to Apple Root CA (which does not have that OID), so AMFI SIGKILLs the binary with `does not satisfy its designated Requirement` even though notarization still succeeds. A correct chain produces `certificate 1[...]` instead. ```sh curl -fsSLO https://www.apple.com/certificateauthority/DeveloperIDG2CA.cer curl -fsSLO https://www.apple.com/appleca/AppleIncRootCertificate.cer openssl x509 -inform DER -in developerID_application.cer -out developerID_application.pem openssl x509 -inform DER -in DeveloperIDG2CA.cer -out DeveloperIDG2CA.pem openssl x509 -inform DER -in AppleIncRootCertificate.cer -out AppleRootCA.pem # Chain file: intermediate then root (leaf is passed separately via -in). cat DeveloperIDG2CA.pem AppleRootCA.pem > chain.pem # Export password becomes MACOS_SIGN_PASSWORD. # On OpenSSL 3 (e.g. Fedora), -legacy improves compatibility with some tooling: openssl pkcs12 -export -legacy \ -inkey developer_id_app.key \ -in developerID_application.pem \ -certfile chain.pem \ -out Certificates.p12 ``` Confirm the `.p12` has three certificates before base64-encoding: ```sh openssl pkcs12 -in Certificates.p12 -nodes -passin pass:"$MACOS_SIGN_PASSWORD" 2>/dev/null \ | grep -c "BEGIN CERTIFICATE" # expect: 3 ``` If you already have a Mac with the certificate in Keychain Access, you can export a `.p12` from there instead — include the full chain when exporting. #### 2. Create the notarization API key 1. Open [App Store Connect → Users and Access → Integrations → App Store Connect API](https://appstoreconnect.apple.com/access/integrations/api). 2. Create a key with **Developer** role (or Admin). 3. Download the `.p8` file once (it cannot be downloaded again). Note the **Key ID** shown in the portal and the **Issuer ID** at the top of the API keys page. #### 3. Base64-encode the key files Run on a machine that has the files (Linux or macOS): ```sh base64 -w0 < ./Certificates.p12 # MACOS_SIGN_P12 base64 -w0 < ./AuthKey_XXXXXX.p8 # MACOS_NOTARY_KEY ``` On macOS without GNU coreutils, use `base64 -i file | tr -d '\n'`. #### 4. Add GitHub repository secrets In **Settings → Secrets and variables → Actions**, create: | Secret | Value | |--------|-------| | `MACOS_SIGN_P12` | Base64 contents of the `.p12` file | | `MACOS_SIGN_PASSWORD` | Password used when exporting the `.p12` | | `MACOS_NOTARY_KEY` | Base64 contents of the `.p8` file | | `MACOS_NOTARY_KEY_ID` | Key ID from App Store Connect (e.g. `ABC123DEF4`) | | `MACOS_NOTARY_ISSUER_ID` | Issuer UUID from App Store Connect | All five must be present for signing to run. GoReleaser enables the step when `MACOS_SIGN_P12` is set; missing companion secrets will fail that release. ### Renewal | Item | Typical lifetime | What to do | |------|------------------|------------| | Developer ID Application certificate | ~5 years | Create a new certificate in the Apple portal, export a new **full-chain** `.p12` (leaf + G2 intermediate + Apple Root CA), update `MACOS_SIGN_P12` and `MACOS_SIGN_PASSWORD`. | | App Store Connect API key | Does not expire, but can be revoked | Create a new key if compromised or lost; update `MACOS_NOTARY_KEY`, `MACOS_NOTARY_KEY_ID`, and optionally `MACOS_NOTARY_ISSUER_ID`. | | Apple Developer Program | Annual subscription | Renew membership before it lapses; existing certificates stop working if the account is inactive. | After updating secrets, the next release on `main` (via semantic-release) will use the new credentials automatically. ### Verifying a signed release From any platform (no Mac required), check that quill did **not** emit the broken `certificate root[...]` designated requirement: ```sh go install github.com/anchore/quill/cmd/quill@latest quill describe OliveTin-darwin-arm64/OliveTin ``` The requirements line must contain `certificate 1[field.1.2.840.113635.100.6.2.6]`. If it says `certificate root[field.1.2.840.113635.100.6.2.6]`, the `.p12` is missing Apple Root CA — rebuild it and update `MACOS_SIGN_P12`. On a Mac, also run: ```sh tar -xzf OliveTin-darwin-arm64.tar.gz codesign --verify --strict -vvvv OliveTin-darwin-arm64/OliveTin spctl -a -vv -t execute OliveTin-darwin-arm64/OliveTin ``` `codesign` should report both `valid on disk` and `satisfies its Designated Requirement`. `spctl` should report `accepted` with `source=Notarized Developer ID`. ### Configuration reference - GoReleaser: `notarize.macos` in link:https://github.com/OliveTin/OliveTin/blob/main/.goreleaser.yml[`.goreleaser.yml`] - CI secrets: link:https://github.com/OliveTin/OliveTin/blob/main/.github/workflows/build-and-release.yml[`.github/workflows/build-and-release.yml`] (`release` step) - CI preflight (3-cert P12): link:https://github.com/OliveTin/OliveTin/blob/main/var/macos/verify-macos-sign-p12.sh[`var/macos/verify-macos-sign-p12.sh`] - CI post-sign check (designated requirement): link:https://github.com/OliveTin/OliveTin/blob/main/var/macos/verify-signed-darwin.sh[`var/macos/verify-signed-darwin.sh`] - link:https://goreleaser.com/customization/notarize/[GoReleaser notarization docs] ## Windows release signing (SignPath) Windows Authenticode signing uses [SignPath Foundation](https://signpath.org/) (free for qualifying open-source projects). It does **not** use GoReleaser Pro. GoReleaser publishes a GitHub release **without** Windows zip/MSI assets. A separate `sign-windows` job submits the unsigned Windows files (as workflow artifacts) to SignPath, then uploads the signed zip/MSI and updates `checksums.txt` on the already-published release. Signed artifacts: * `OliveTin.exe` inside `OliveTin-windows-amd64.zip` * nested `OliveTin.exe` and the `OliveTin-windows-amd64.msi` installer (deep signing) If SignPath secrets/vars are missing or signing fails, the release still publishes; Windows assets are simply missing until a successful `sign-windows` run. Install URLs for the Windows zip may 404 until signing finishes. ### Prerequisites - Approval for the [SignPath Foundation open-source program](https://signpath.io/product/open-source). - The SignPath GitHub App installed on the OliveTin organization/repository. - A SignPath project linked to this repository, with a release signing policy. ### One-time setup #### 1. Apply for SignPath Foundation 1. Open https://signpath.io/product/open-source and apply with the OliveTin GitHub repository URL. 2. After approval, create (or confirm) the organization and project in the SignPath portal. #### 2. Install the SignPath GitHub App 1. Install the SignPath GitHub App and grant access to the OliveTin repository. 2. Link the Trusted Build System **GitHub.com** to the SignPath project (required so SignPath can verify the workflow artifact origin). #### 3. Create artifact configurations In the SignPath project, create two artifact configurations with these slugs (must match CI). Paste the XML from the reference copies in this repo (SignPath does **not** load them automatically): * slug `windows-zip` ← link:https://github.com/OliveTin/OliveTin/blob/main/docs/modules/dev/signpath/windows-zip.xml[`signpath/windows-zip.xml`] * slug `windows-msi` ← link:https://github.com/OliveTin/OliveTin/blob/main/docs/modules/dev/signpath/windows-msi.xml[`signpath/windows-msi.xml`] Use **Custom** XML in the SignPath UI and paste the file contents. Do **not** use **Upload an artifact sample** on these `.xml` files — SignPath will treat them as XML documents to sign (`xml-file`), which is unavailable on the Foundation/Open Source plan. See link:https://github.com/OliveTin/OliveTin/blob/main/docs/modules/dev/signpath/README.md[`signpath/README.md`]. #### 4. Add GitHub secrets and variables In **Settings → Secrets and variables → Actions**: | Kind | Name | Value | |------|------|-------| | Secret | `SIGNPATH_API_TOKEN` | CI submitter API token from SignPath | | Variable | `SIGNPATH_ORGANIZATION_ID` | SignPath organization ID | | Variable | `SIGNPATH_PROJECT_SLUG` | SignPath project slug (e.g. `olivetin`) | | Variable | `SIGNPATH_SIGNING_POLICY_SLUG` | Signing policy slug (e.g. `release-signing`) | #### 5. Pipeline behaviour On a new semantic-release from `main`: 1. GoReleaser publishes container images and a GitHub release **without** Windows zip/MSI assets (those are built locally for SignPath only). 2. The build job uploads the unsigned Windows files as GitHub Actions artifacts. 3. The `sign-windows` job submits each artifact to SignPath, waits for completion, then runs `var/windows/signpath-publish-signed.sh` to upload the signed files and refresh `checksums.txt`. All jobs in this chain use GitHub-hosted runners (required by SignPath for OSS projects). ### Verifying a signed release On Windows, download `OliveTin-windows-amd64.msi` or extract `OliveTin.exe` from the zip, then either: * Right-click → **Properties** → **Digital Signatures**, or * Run: ```bat signtool verify /pa OliveTin.exe signtool verify /pa OliveTin-windows-amd64.msi ``` ### Configuration reference - Release publish (no Windows assets initially): `release.draft: false` and `release.ids` in link:https://github.com/OliveTin/OliveTin/blob/main/.goreleaser.yml[`.goreleaser.yml`] - CI job: `sign-windows` in link:https://github.com/OliveTin/OliveTin/blob/main/.github/workflows/build-and-release.yml[`.github/workflows/build-and-release.yml`] - Publish helper: link:https://github.com/OliveTin/OliveTin/blob/main/var/windows/signpath-publish-signed.sh[`var/windows/signpath-publish-signed.sh`] - SignPath artifact configs (reference only): link:https://github.com/OliveTin/OliveTin/blob/main/docs/modules/dev/signpath/windows-zip.xml[`signpath/windows-zip.xml`], link:https://github.com/OliveTin/OliveTin/blob/main/docs/modules/dev/signpath/windows-msi.xml[`signpath/windows-msi.xml`] - link:https://docs.signpath.io/trusted-build-systems/github[SignPath GitHub Actions docs] - link:https://docs.signpath.io/artifact-configuration/examples[SignPath artifact configuration examples]