cargo tree -p punktfunk-client-session finds no ffmpeg. The host still does, which is the whole point: pf-encode keeps libavcodec unconditionally and no host workflow, packaging script or licence file was touched. Deleted: crates/pf-ffvk, video_vulkan.rs, video_vaapi.rs, video_libav.rs, the libavcodec half of video_d3d11.rs, the av_log machinery, ffmpeg::codec::Id as the decoder's vocabulary (the quic CODEC_* wire constants now serve, which is why the evidence table was keyed on them), DecodedImage::VkFrame and ::Dmabuf, the presenter's AVVkFrame lane, and the ffmpeg-fallback feature with everything behind it. DrmFrameGuard collapses from an enum to a newtype, which removes an unsafe impl Send. Roughly 25,000 lines. Then the CI, packaging, licensing and docs work the plan's §6 lists: the Windows workflows lose FFMPEG_DIR, PF_FFVK_VULKAN_INCLUDE and their PATH prepend; the MSIX loses its DLL wildcard; the client .deb stops emitting libav sonames on its own because depends come from dpkg-shlibdeps; arch, flatpak and nix drop the dependency; and the README's "FFmpeg 7 or 8" contract narrows to the host. Three defects reached users' machines in the first cut, and none was in the deletion itself. All three desktop Settings UIs offer vulkan, vaapi and d3d11va as stored decoder values, so those strings sit in shipped settings files today. Refusing them by name — which is the correct rule for a stale pin — would have bricked every upgraded client whose owner ever touched that dropdown. They now migrate onto the native rung for the same hardware family, at decoder construction AND at each dialog's lookup, because a legacy value that matches no preset displays as "Automatic" and silently rewrites the user's preference on the next save. M9's evidence filter was deleted on the argument that with no libavcodec twin below, barring an unproven rung removes hardware decode rather than moving down one rung. That is true on Windows and false on Linux for Intel and every unknown vendor id, where prefer_vulkan_first is false and the order is native-vaapi → native-vk: a rung that has decoded nothing anywhere sitting above one that is 250/250 on three drivers. Every Intel Linux desktop would have moved from libavcodec VAAPI, shipping for years, onto pf-vaadec by default — and a rung that constructs and then produces wrong pixels leaves only by the error-streak demotion, which this codebase already documents as not tripping on the B580's strobing. The filter is restored as a narrow, pure, testable rule: an unproven rung yields to a proven one, and to nothing else. Windows deliberately passes no rung below, because that vendor family is the one with a measured wrong-pixel report against Vulkan decode, and trading no evidence for evidence of corruption is the wrong direction. And the notices still said FFmpeg was bundled. The root file is what both desktop clients include_str! and what the MSIX ships, three lines under the new card saying no FFmpeg is bundled; Apple's Acknowledgements said it too, on iOS, tvOS and macOS. The generator now emits four per-client files scoped by transitive closure — 0 FFmpeg mentions in each, verified — while the root file keeps it for the host. That also ends the standing false attribution of ffmpeg-next, GTK4, windows-rs and the NVENC SDK to an iPhone. Windows has no reachable box, so it was compiled instead: a cross clippy at -D warnings on x86_64 and aarch64-pc-windows-msvc with the C toolchain stubbed so build scripts run without linking. That gate immediately caught an include_str! path one directory too deep, which nothing else could have. Gates: container clippy -D warnings, 160 tests, workspace check, both Windows targets clean, client ffmpeg count 0 and host 2. The four decode crates are untouched, so the hardware rungs' 250/250 stands. ⚠ Owed and unrun: no GPU has executed any of this milestone. M8's on-glass software check, M7's D3D11 and VAAPI AV1 hardware legs, and M9's field bake all still want hardware, and the bake window and criteria remain the user's.
98 lines
5.2 KiB
PowerShell
98 lines
5.2 KiB
PowerShell
# Idempotent pre-flight for punktfunk's Windows CI dependencies: WDK + cargo-wdk (driver builds),
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# the x64 FFmpeg tree (host amf-qsv only), Inno Setup, and the aarch64-pc-windows-msvc rustup target. Run at the
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# start of every Windows CI job so ANY runner - freshly built from unom/infra's windows-runner/
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# template, rebuilt, or a new one added later - self-provisions on first real use, instead of
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# needing a human to remember to dispatch a separate provisioning workflow first (and instead of
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# racing which runner a manually-dispatched provisioning workflow happens to land on, when more
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# than one Windows runner shares the windows-amd64 label).
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#
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# Each underlying script already does its own existence checks (Test-Path/Get-Command) before
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# installing anything, so this is a fast no-op on a runner that's already fully provisioned - the
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# only cost is on a genuinely fresh box, where it's the first job's problem to pay once.
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$ErrorActionPreference = "Stop"
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trap {
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Write-Host "FATAL: $_"
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Write-Host $_.ScriptStackTrace
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exit 1
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}
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# --- reclaim disk before building -----------------------------------------------------------------
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# The windows-amd64 runner's system volume is intentionally small (100 GB) and a full Windows CI pass
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# writes ~50 GB of cargo target output into C:\t (x64) / C:\t-a64 (arm64). Left to accumulate across
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# runs that overflows the disk and the build dies with "no space on device" (os error 112) - exactly
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# what took the Windows host build down. The runner bakes in a reclaimer + a scheduled task that keeps
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# an idle box lean (unom/infra's setup-gitea-runner-base.ps1 ->
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# C:\Users\Public\act-runner\clean-runner-disk.ps1); call it here too so THIS job starts with headroom
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# regardless of when that task last ran. Threshold mode (no -Force): it only prunes when actually low,
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# so incremental-compile caches survive when there's room. Best-effort - a cleanup hiccup must never
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# fail the build.
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$reclaimer = 'C:\Users\Public\act-runner\clean-runner-disk.ps1'
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try {
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if (Test-Path $reclaimer) {
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& powershell.exe -NoProfile -ExecutionPolicy Bypass -File $reclaimer
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}
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else {
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# Fallback for a runner not yet re-baked with the infra reclaimer: prune the big target dirs when low.
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$freeGb = [math]::Round((Get-PSDrive C).Free / 1GB, 1)
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Write-Host "[ensure-toolchain] clean-runner-disk.ps1 absent; C: free ${freeGb} GB"
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if ($freeGb -lt 35) {
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foreach ($d in 'C:\t', 'C:\t-a64') {
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if (Test-Path $d) { Write-Host " reclaiming $d"; Remove-Item $d -Recurse -Force -ErrorAction SilentlyContinue }
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}
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}
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}
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}
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catch { Write-Warning "disk reclaim step failed (non-fatal): $_" }
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$ciDir = $PSScriptRoot
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& "$ciDir\provision-windows-wdk.ps1"
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& "$ciDir\provision-windows-punktfunk-extras.ps1"
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# --- sccache: shared compile cache (RustFS S3 over the LAN). The Windows workflows set
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# RUSTC_WRAPPER=sccache, so the binary must exist on any runner regardless of when the
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# template was last re-baked. GITHUB_PATH makes it visible to every later step.
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$sccacheDir = 'C:\Users\Public\sccache'
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$sccacheExe = Join-Path $sccacheDir 'sccache.exe'
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if (-not (Test-Path $sccacheExe)) {
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$v = '0.10.0'
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$tarball = Join-Path $env:TEMP "sccache-$v.tar.gz"
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Invoke-WebRequest -Uri "https://github.com/mozilla/sccache/releases/download/v$v/sccache-v$v-x86_64-pc-windows-msvc.tar.gz" -OutFile $tarball
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New-Item -ItemType Directory -Force -Path $sccacheDir | Out-Null
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tar -xzf $tarball -C $sccacheDir --strip-components=1
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Remove-Item $tarball -ErrorAction SilentlyContinue
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}
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& $sccacheExe --version
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if ($env:GITHUB_PATH) { Add-Content -Path $env:GITHUB_PATH -Value $sccacheDir }
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# --- zstd: what actions/cache compresses with. Without it the toolkit falls back to gzip,
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# and Git's GNU tar then shells out to a `gzip` that is NOT on the runner's PATH — every
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# cache SAVE died with "Child returned status 127" / "Cannot write: Broken pipe" / exit 2,
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# reported only as a ::warning:: so runs stayed green while nothing was ever cached
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# (measured 2026-07-30 on windows-host). Own directory on purpose: putting Git's usr\bin on
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# PATH would shadow Windows' find/sort/echo and break unrelated steps.
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$zstdDir = 'C:\Users\Public\zstd'
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$zstdExe = Join-Path $zstdDir 'zstd.exe'
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if (-not (Test-Path $zstdExe)) {
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try {
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$v = '1.5.6'
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$zip = Join-Path $env:TEMP "zstd-$v.zip"
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Invoke-WebRequest -Uri "https://github.com/facebook/zstd/releases/download/v$v/zstd-v$v-win64.zip" -OutFile $zip
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$tmp = Join-Path $env:TEMP 'zstd-extract'
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Remove-Item -Recurse -Force $tmp -ErrorAction SilentlyContinue
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Expand-Archive -Path $zip -DestinationPath $tmp -Force
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New-Item -ItemType Directory -Force -Path $zstdDir | Out-Null
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Get-ChildItem -Path $tmp -Recurse -Filter 'zstd.exe' | Select-Object -First 1 |
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ForEach-Object { Copy-Item $_.FullName $zstdExe -Force }
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$gitGzip = 'C:\Program Files\Git\usr\bin\gzip.exe'
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if ((Test-Path $gitGzip) -and -not (Test-Path (Join-Path $zstdDir 'gzip.exe'))) {
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Copy-Item $gitGzip (Join-Path $zstdDir 'gzip.exe') -Force
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}
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Remove-Item $zip, $tmp -Recurse -Force -ErrorAction SilentlyContinue
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}
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catch { Write-Warning "zstd install failed (cache saves will fall back to gzip): $_" }
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}
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if (Test-Path $zstdExe) {
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& $zstdExe --version
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if ($env:GITHUB_PATH) { Add-Content -Path $env:GITHUB_PATH -Value $zstdDir }
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}
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