`FFmpegCommandBuilder` has emitted `-c:a libvorbis` since the day it was written, and libvorbis was not in the AAR this app ships: the configure line omitted `--enable-libvorbis`, and `strings` on both ABIs' `libavcodec.so` named every other external encoder and not that one. The arm was unreachable from both ends, so nobody ever hit it -- but the first user to pick Ogg Vorbis would have got `Unknown encoder 'libvorbis'`. That is #238's shape again: two individually-correct facts, a builder arm and a configure line, that no test put together, and that no coverage number can see. So the binary is rebuilt rather than the arm rewritten. FFmpeg's in-tree `vorbis` encoder was already in there and was tried first; it is experimental, stereo-only, and its quality knob spans 2x its floor against libvorbis's 6x. Shipping it would have meant `-strict experimental`, a forced `-ac 2` that silently upmixes every mono source, and a slider with nowhere to go. What ships instead is the arm as originally written, `-c:a libvorbis -q:a 5`, with `OGG_VORBIS` added to the presets, `VORBIS` added to `ENCODABLE_AUDIO`, and Ogg's per-codec extension fixed so a Vorbis file is not named `.opus`. The flag is `--enable-libvorbis`, read out of ffmpeg-kit's `get_library_name()` rather than guessed: the `--enable-lame` / `--enable-opus` rule predicts `--enable-vorbis`, and that is not it. An unrecognised `--enable-*` is ignored silently, so the artifact was checked before `bin/README.md` was touched -- `libvorbis` present in both ABIs, the configure line otherwise identical, FFmpeg still n8.1.2, 10 shared libraries per ABI, every LOAD still `0x4000`. Both mutations were run on API 34 rather than predicted. Pointing the arm at `libopus` reddens the e2e test with `expected:<[audio/vorbis]> but was:<[audio/opus]>` while its `OggS` assertion still passes, which is why the track MIME is asserted and the container magic is not enough. Adding `-ac 2` back reddens it with `expected:<[1]> but was:<[2]>`: this class's own fixture is mono, so mono staying mono is an assertion rather than a claim. The unit test's load-bearing assertion inverts with this change and is rewritten to say so. It used to assert that `libvorbis` was *absent*; it now asserts the encoder name plus the two flags that must not be there. Nothing on the JVM can tell a real encoder name from a fictional one -- which is exactly how this survived four coverage waves -- so the e2e test is the only thing that proves the positive. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
140 lines
6.7 KiB
Markdown
140 lines
6.7 KiB
Markdown
# FFmpeg build
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Builds [`ffmpeg-kit-next`](https://github.com/arthenica/ffmpeg-kit-next) into an Android
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AAR that the app consumes.
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## Why this exists
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`arthenica/ffmpeg-kit` — the library nearly every Android FFmpeg tutorial still points at
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— was **archived**, and its binaries were **deleted from Maven Central**. Every
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`com.arthenica:ffmpeg-kit-*` coordinate now returns 404, and all of its GitHub release
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tags have zero attached assets. Maven Central's search index still *lists* the old
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versions, which is misleading; the files behind those entries are gone.
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Its successor, `ffmpeg-kit-next`, is **source-only by design** and publishes no
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prebuilt packages. So building FFmpeg ourselves is not a preference, it is the only
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remaining option.
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Community forks publishing prebuilt 16 KB-aligned AARs do exist, but each fails on
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license, ABI coverage, or publisher credibility — and at least one redistributes a
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non-free FDK-AAC build, which FFmpeg states is *unredistributable*.
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## Why a container
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`ffmpeg-kit-next` is **Nix-only**. There is no plain `android.sh`; the repository ships
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`nix-android.sh` plus a flake, and the flake pins the entire toolchain including
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**Android NDK 27.3.13750724 (r27d)**.
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Rather than install Nix on a developer machine, the toolchain lives in a container
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image. That keeps the host clean and doubles as the reproducibility artifact F-Droid
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wants.
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Note the NDK version: **do not** "helpfully" upgrade to r28+. The flake pins r27d and
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`android/jni/Android.mk` applies `-Wl,-z,max-page-size=16384` manually for `arm64-v8a`
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and `x86_64` precisely because r27 predates automatic 16 KB alignment. The output is
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16 KB compliant as-is.
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## Usage
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```sh
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podman build -t ffmpeg-kit-builder:local -f Containerfile .
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mkdir -p out
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podman run --name ffmpeg-build -v "$PWD/out":/work/out:Z \
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localhost/ffmpeg-kit-builder:local full
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```
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Two modes:
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| Mode | Libraries | Purpose |
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|---|---|---|
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| `spike` | minimal | Validates the toolchain end to end without waiting on x264/x265/SVT-AV1 |
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| `full` | shipping set | The GPL configuration that ships |
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The run deliberately omits `--rm`: the container's writable layer retains the several
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gigabytes of Nix store contents (Android SDK and NDK), so subsequent builds skip the
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download. Reuse it with `podman start -a ffmpeg-build`.
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Only `arm64-v8a` and `x86_64` are built, matching the app's `abiFilters`. Dropping the
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32-bit ABIs roughly halves both build time and APK size, and Play does not require them.
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## Library selection
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Flag names come from `get_library_name()` in the upstream `scripts/function.sh`. Three
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that are easy to get wrong:
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- It is **`--enable-lame`**, not `--enable-libmp3lame`.
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- It is **`--enable-libsvtav1`** for SVT-AV1.
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- It *is* **`--enable-libvorbis`** — the rule above makes `--enable-vorbis` the natural
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guess and it is wrong. Read the function rather than extrapolating from the first two;
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library 9 is named `libvorbis` there. Enabling it also enables libogg, which ffmpeg-kit
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pulls in as its dependency without being asked.
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**An unrecognised `--enable-*` is ignored silently.** ffmpeg-kit does not error on one, so a
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build that quietly dropped a library looks exactly like one that worked, and forty minutes
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later there is an AAR that is wrong in a way nothing in the log says. #254 is where that
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was learned, from the other end: the builder carried `-c:a libvorbis` for months against a
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binary with no libvorbis in it — unreachable, so no user ever hit it, and no build log ever
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mentioned it. Check the artifact, not the log — `strings jni/*/libavcodec.so | grep -x <name>`.
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MP3 deserves a note: **Android has no MP3 encoder at any API level**. That is a platform
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gap, not a Media3 limitation, so `--enable-lame` is the only way the app can output MP3.
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`--enable-android-media-codec` gives FFmpeg the `h264_mediacodec` / `hevc_mediacodec`
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wrappers (added in FFmpeg 6.0). These act as a fallback-within-the-fallback: hardware
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encode from the FFmpeg side when a job was routed away from Media3 for container reasons
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but still wants hardware speed.
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## Licensing
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The `full` build passes `--enable-gpl` with **x264** and **x265**, which makes the
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distributed binary **GPL-3.0**. This is deliberate — see [`../../LICENSES/README.md`](../../LICENSES/README.md).
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Worth recording, because it is widely misunderstood: **libass is ISC licensed, not GPL**,
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so subtitle burn-in does not require the GPL flag. The only things GPL genuinely buys are
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x264/x265 software encode (and with them CRF and 2-pass rate control), vidstab, and the
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GPL filter set.
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Never build with `--enable-nonfree`. FFmpeg states it renders the binary
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*unredistributable*.
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## Verified build output (2026-08-19, ffmpeg-kit-next v8.1.1 / FFmpeg 8.1.2)
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The `full` build produced a 35 MB AAR with 10 shared libraries per ABI for `arm64-v8a`
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and `x86_64`. Confirmed against the artifact rather than assumed:
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- **16 KB page alignment**: every `.so` on both ABIs reports `LOAD align 0x4000`
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(`readelf -lW`). This is the hard Play gate.
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- **Separate shared libraries**, not a static monolith — which is what the LGPL/GPL
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relinking obligation requires.
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- **Embedded configure line** (from `strings libavutil.so`):
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`--enable-gpl --enable-version3 --enable-libx264 --enable-libx265 --enable-libsvtav1
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--enable-libvpx --enable-libmp3lame --enable-libopus --enable-libdav1d --enable-libass
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--enable-libfontconfig --enable-libfreetype --enable-libfribidi --enable-libharfbuzz
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--enable-mediacodec --enable-jni --enable-shared --enable-small --enable-lto`.
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**Since 2026-09-06 it also carries `--enable-libvorbis`** (#254), which is the only
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difference between that build and the one in `bin/` today — same tag, same FFmpeg
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version, same 10 shared libraries per ABI, all still `LOAD align 0x4000`.
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- Present and verified: `libx264` (with an x264 core banner, so genuinely linked),
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`libx265`, `libsvtav1`, `libmp3lame`, `h264_mediacodec`, `hevc_mediacodec`, `libopus`,
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`libdav1d`, `libvorbis` (from 2026-09-06), the GIF encoder and muxer, libass internals
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(`ass_shaper_new`), and the `subtitles`, `scale`, `palettegen`, `paletteuse` and
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`concat` filters.
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Note `--enable-version3`: combined with `--enable-gpl` this makes the binary **GPL-3.0**,
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which is what `LICENSES/README.md` states.
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A caution on verifying this yourself: the build uses `--enable-small` and `--enable-lto`,
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so internal symbols like `ff_libx264_encoder` do **not** appear in `strings` output.
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Their absence proves nothing. Check the configure line and the registered codec *names*
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instead.
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## Release checklist
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GPL-3.0 requires corresponding source alongside the binary. For each release, attach to
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the GitHub Release next to the APK:
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- the exact `ffmpeg-kit-next` tag and FFmpeg version used,
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- the full configure line (printed in this script's build log), and
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- any patches applied.
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