Merge pull request #1 from Rob-Otman/add-hardware-encode-ffmpeg
Add hardware encode ffmpeg
This commit is contained in:
commit
53d576d2d2
3 changed files with 356 additions and 17 deletions
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@ -86,7 +86,7 @@ If you get unable to open database file run `chown -R $USER:$USER path` on the p
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All are optional, JWT_SECRET is recommended to be set.
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| Name | Default | Description |
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| ---------------------------- | -------------------------------------------------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------- |
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| ---------------------------- | -------------------------------------------------- | -------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
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| JWT_SECRET | when unset it will use the value from randomUUID() | A long and secret string used to sign the JSON Web Token |
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| ACCOUNT_REGISTRATION | false | Allow users to register accounts |
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| HTTP_ALLOWED | false | Allow HTTP connections, only set this to true locally |
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@ -95,6 +95,7 @@ All are optional, JWT_SECRET is recommended to be set.
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| WEBROOT | | The address to the root path setting this to "/convert" will serve the website on "example.com/convert/" |
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| FFMPEG_ARGS | | Arguments to pass to the input file of ffmpeg, e.g. `-hwaccel vaapi`. See https://github.com/C4illin/ConvertX/issues/190 for more info about hw-acceleration. |
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| FFMPEG_OUTPUT_ARGS | | Arguments to pass to the output of ffmpeg, e.g. `-preset veryfast` |
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| FFMPEG_PREFER_HARDWARE | false | Use hardware encoders (NVENC, VAAPI, etc.) when available instead of software encoders for h264/h265 formats. Also enables CUDA hardware acceleration for video input decoding (not applied to image formats). |
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| HIDE_HISTORY | false | Hide the history page |
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| LANGUAGE | en | Language to format date strings in, specified as a [BCP 47 language tag](https://en.wikipedia.org/wiki/IETF_language_tag) |
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| UNAUTHENTICATED_USER_SHARING | false | Shares conversion history between all unauthenticated users |
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@ -687,6 +687,141 @@ export const properties = {
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},
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};
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// CUDA-supported codec names (as detected by ffprobe)
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const cudaSupportedCodecs = new Set(["h264", "hevc", "vp9", "vp8", "mpeg2video", "mpeg4", "av1"]);
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// Known image formats that should skip ffprobe (no video codec to detect)
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const imageFormats = new Set([
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"jpg",
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"jpeg",
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"png",
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"gif",
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"bmp",
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"webp",
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"ico",
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"tiff",
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"tif",
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"svg",
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"avif",
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"jxl",
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"heic",
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"heif",
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"raw",
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"cr2",
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"nef",
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"orf",
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"sr2",
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"arw",
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"dng",
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"psd",
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"xcf",
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"exr",
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"hdr",
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]);
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// Cache NVIDIA GPU availability to avoid repeated checks
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let nvidiaGpuAvailable: boolean | null = null;
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// Export for testing (allows resetting cache between tests)
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export const resetNvidiaGpuCache = () => {
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nvidiaGpuAvailable = null;
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};
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/**
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* Checks if an NVIDIA GPU is available using nvidia-smi.
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* Returns false if no GPU is available or nvidia-smi fails.
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*/
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async function checkNvidiaGpuAvailable(execFile: ExecFileFn = execFileOriginal): Promise<boolean> {
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// Cache the result to avoid repeated checks
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if (nvidiaGpuAvailable !== null) {
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return nvidiaGpuAvailable;
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}
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try {
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await new Promise<void>((resolve, reject) => {
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execFile(
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"nvidia-smi",
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["-L"], // List GPUs (simple check that succeeds if GPU is available)
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(error) => {
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if (error) {
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reject(error);
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return;
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}
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resolve();
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},
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);
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});
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// If nvidia-smi succeeds, GPU is available
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nvidiaGpuAvailable = true;
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console.log("NVIDIA GPU detected - hardware acceleration available");
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return true;
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} catch (error) {
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// nvidia-smi failed - no GPU available or not installed
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console.warn("NVIDIA GPU not available - using software encoding/decoding:", error);
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nvidiaGpuAvailable = false;
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return false;
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}
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}
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/**
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* Uses ffprobe to detect if the video codec in a file is supported by CUDA hardware acceleration.
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* Returns false for image formats without probing (performance optimization).
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* Falls back to false if probing fails (safe default).
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*/
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async function isCudaSupportedCodec(
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filePath: string,
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fileType: string,
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execFile: ExecFileFn = execFileOriginal,
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): Promise<boolean> {
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// Skip ffprobe for known image formats (no video codec to detect)
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if (imageFormats.has(fileType.toLowerCase())) {
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console.log(`Skipping CUDA detection for image format: ${fileType}`);
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return false;
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}
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try {
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// Wrap execFile callback in a Promise for async/await
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const stdout = await new Promise<string>((resolve, reject) => {
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execFile(
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"ffprobe",
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["-v", "quiet", "-print_format", "json", "-show_streams", filePath],
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(error, stdout) => {
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if (error) {
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reject(error);
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return;
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}
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resolve(stdout);
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},
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);
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});
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const probeData = JSON.parse(stdout);
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const videoStream = probeData.streams?.find(
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(s: { codec_type?: string }) => s.codec_type === "video",
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);
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if (!videoStream || !videoStream.codec_name) {
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return false;
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}
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const codecName = videoStream.codec_name.toLowerCase();
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const isSupported = cudaSupportedCodecs.has(codecName);
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if (isSupported) {
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console.log(`CUDA-supported codec detected: ${codecName} in ${filePath}`);
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} else {
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console.log(
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`Codec not CUDA-supported: ${codecName} in ${filePath} - using software decoding`,
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);
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}
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return isSupported;
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} catch (error) {
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// If probing fails, fall back to conservative approach (no CUDA)
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console.warn(`Failed to probe codec for ${filePath}:`, error);
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return false;
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}
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}
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export async function convert(
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filePath: string,
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fileType: string,
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@ -698,6 +833,21 @@ export async function convert(
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let extraArgs: string[] = [];
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let message = "Done";
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// Check if hardware encoding is preferred (NVENC, VAAPI, etc.)
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const preferHardware =
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process.env.FFMPEG_PREFER_HARDWARE === "true" || process.env.FFMPEG_PREFER_HARDWARE === "1";
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// Check GPU availability if hardware is preferred
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const gpuAvailable = preferHardware ? await checkNvidiaGpuAvailable(execFile) : false;
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if (preferHardware && gpuAvailable) {
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console.log("Hardware acceleration enabled for conversion");
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} else if (preferHardware && !gpuAvailable) {
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console.log("Hardware acceleration requested but GPU not available - using software");
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} else {
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console.log("Using software encoding/decoding (hardware not preferred)");
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}
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if (convertTo === "ico") {
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// Make sure image is 256x256 or smaller
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extraArgs = [
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@ -717,10 +867,18 @@ export async function convert(
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extraArgs.push("-c:v", "libaom-av1");
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break;
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case "h264":
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if (preferHardware && gpuAvailable) {
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extraArgs.push("-c:v", "h264_nvenc");
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} else {
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extraArgs.push("-c:v", "libx264");
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}
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break;
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case "h265":
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if (preferHardware && gpuAvailable) {
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extraArgs.push("-c:v", "hevc_nvenc");
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} else {
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extraArgs.push("-c:v", "libx265");
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}
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break;
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case "h266":
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extraArgs.push("-c:v", "libx266");
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@ -730,6 +888,21 @@ export async function convert(
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// Parse FFMPEG_ARGS environment variable into array
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const ffmpegArgs = process.env.FFMPEG_ARGS ? process.env.FFMPEG_ARGS.split(/\s+/) : [];
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// If hardware is preferred, check if the codec supports CUDA hardware acceleration
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// This only applies if FFMPEG_ARGS doesn't already specify a hardware accelerator
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const hasHardwareAccel = ffmpegArgs.includes("-hwaccel");
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if (preferHardware && gpuAvailable && !hasHardwareAccel) {
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const supportsCuda = await isCudaSupportedCodec(filePath, fileType, execFile);
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if (supportsCuda) {
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ffmpegArgs.push("-hwaccel", "cuda");
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console.log("Added CUDA hardware acceleration for input decoding");
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} else {
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console.log("CUDA not supported for input file - using software decoding");
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}
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}
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const ffmpegOutputArgs = process.env.FFMPEG_OUTPUT_ARGS
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? process.env.FFMPEG_OUTPUT_ARGS.split(/\s+/)
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: [];
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@ -1,5 +1,5 @@
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import { beforeEach, expect, test } from "bun:test";
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import { convert } from "../../src/converters/ffmpeg";
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import { convert, resetNvidiaGpuCache } from "../../src/converters/ffmpeg";
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let calls: string[][] = [];
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@ -11,6 +11,36 @@ function mockExecFile(
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calls.push(args);
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if (args.includes("fail.mov")) {
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callback(new Error("mock failure"), "", "Fake stderr: fail");
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} else if (_cmd === "nvidia-smi") {
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// Mock nvidia-smi - assume GPU is available for tests
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callback(null, "GPU 0: NVIDIA GeForce RTX 3080 (UUID: GPU-12345678-1234-1234-1234-123456789012)\n", "");
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} else if (_cmd === "ffprobe") {
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// Mock ffprobe responses for codec detection
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// Return H.264 codec for .mp4 files, no video stream for images
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if (args.includes("in.mp4") || args.includes("in.mkv") || args.includes("in.avi")) {
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callback(null, JSON.stringify({
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streams: [{
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codec_type: "video",
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codec_name: "h264",
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}],
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}), "");
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} else if (args.includes("in.jpg") || args.includes("in.png")) {
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// Image files have no video stream
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callback(null, JSON.stringify({
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streams: [{
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codec_type: "audio",
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codec_name: "pcm",
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}],
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}), "");
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} else {
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// Default: assume H.264 for video files
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callback(null, JSON.stringify({
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streams: [{
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codec_type: "video",
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codec_name: "h264",
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}],
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}), "");
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}
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} else {
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callback(null, "Fake stdout", "");
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}
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@ -19,6 +49,9 @@ function mockExecFile(
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beforeEach(() => {
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calls = [];
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delete process.env.FFMPEG_ARGS;
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delete process.env.FFMPEG_PREFER_HARDWARE;
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// Reset the GPU availability cache between tests
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resetNvidiaGpuCache();
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});
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test("converts a normal file", async () => {
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@ -121,6 +154,138 @@ test("uses libx266 for h266.mp4", async () => {
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expect(loggedMessage).toBe("stdout: Fake stdout");
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});
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test("uses h264_nvenc for h264.mp4 when hardware preferred", async () => {
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process.env.FFMPEG_PREFER_HARDWARE = "true";
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const originalConsoleLog = console.log;
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let loggedMessage = "";
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console.log = (msg) => {
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loggedMessage = msg;
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};
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await convert("in.mkv", "mkv", "h264.mp4", "out.mp4", undefined, mockExecFile);
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console.log = originalConsoleLog;
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// calls[0] is nvidia-smi, calls[1] is ffprobe, calls[2] is ffmpeg
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expect(calls[2]).toEqual(expect.arrayContaining(["-c:v", "h264_nvenc"]));
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expect(loggedMessage).toBe("stdout: Fake stdout");
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delete process.env.FFMPEG_PREFER_HARDWARE;
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});
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test("uses hevc_nvenc for h265.mp4 when hardware preferred", async () => {
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process.env.FFMPEG_PREFER_HARDWARE = "true";
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const originalConsoleLog = console.log;
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let loggedMessage = "";
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console.log = (msg) => {
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loggedMessage = msg;
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};
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await convert("in.mkv", "mkv", "h265.mp4", "out.mp4", undefined, mockExecFile);
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console.log = originalConsoleLog;
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// calls[0] is nvidia-smi, calls[1] is ffprobe, calls[2] is ffmpeg
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expect(calls[2]).toEqual(expect.arrayContaining(["-c:v", "hevc_nvenc"]));
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expect(loggedMessage).toBe("stdout: Fake stdout");
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delete process.env.FFMPEG_PREFER_HARDWARE;
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});
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test("uses libx264 for h264.mp4 when hardware not preferred", async () => {
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process.env.FFMPEG_PREFER_HARDWARE = "false";
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const originalConsoleLog = console.log;
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let loggedMessage = "";
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console.log = (msg) => {
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loggedMessage = msg;
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};
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await convert("in.mkv", "mkv", "h264.mp4", "out.mp4", undefined, mockExecFile);
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console.log = originalConsoleLog;
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expect(calls[0]).toEqual(expect.arrayContaining(["-c:v", "libx264"]));
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expect(loggedMessage).toBe("stdout: Fake stdout");
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delete process.env.FFMPEG_PREFER_HARDWARE;
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});
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test("adds CUDA hwaccel for video input when hardware preferred", async () => {
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process.env.FFMPEG_PREFER_HARDWARE = "true";
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delete process.env.FFMPEG_ARGS;
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const originalConsoleLog = console.log;
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let loggedMessage = "";
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console.log = (msg) => {
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loggedMessage = msg;
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};
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await convert("in.mp4", "mp4", "avi", "out.avi", undefined, mockExecFile);
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console.log = originalConsoleLog;
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// calls[0] is nvidia-smi, calls[1] is ffprobe, calls[2] is ffmpeg
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expect(calls[2]).toEqual(expect.arrayContaining(["-hwaccel", "cuda"]));
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expect(loggedMessage).toBe("stdout: Fake stdout");
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delete process.env.FFMPEG_PREFER_HARDWARE;
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});
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test("does not add CUDA hwaccel for image input when hardware preferred", async () => {
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process.env.FFMPEG_PREFER_HARDWARE = "true";
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delete process.env.FFMPEG_ARGS;
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const originalConsoleLog = console.log;
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let loggedMessage = "";
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console.log = (msg) => {
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loggedMessage = msg;
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};
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await convert("in.jpg", "jpg", "png", "out.png", undefined, mockExecFile);
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console.log = originalConsoleLog;
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// calls[0] is nvidia-smi, calls[1] is ffprobe, calls[2] is ffmpeg
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expect(calls[2]).not.toEqual(expect.arrayContaining(["-hwaccel", "cuda"]));
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expect(loggedMessage).toBe("stdout: Fake stdout");
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delete process.env.FFMPEG_PREFER_HARDWARE;
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});
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test("does not add CUDA hwaccel if FFMPEG_ARGS already specifies hwaccel", async () => {
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process.env.FFMPEG_PREFER_HARDWARE = "true";
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process.env.FFMPEG_ARGS = "-hwaccel vaapi";
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const originalConsoleLog = console.log;
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let loggedMessage = "";
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console.log = (msg) => {
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loggedMessage = msg;
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};
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await convert("in.mp4", "mp4", "avi", "out.avi", undefined, mockExecFile);
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console.log = originalConsoleLog;
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// When FFMPEG_ARGS already has hwaccel, no ffprobe call is made
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// calls[0] is nvidia-smi, calls[1] is ffmpeg
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// Should use vaapi from FFMPEG_ARGS, not add cuda
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expect(calls[1]).toEqual(expect.arrayContaining(["-hwaccel", "vaapi"]));
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expect(calls[0]).not.toEqual(expect.arrayContaining(["-hwaccel", "cuda"]));
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expect(loggedMessage).toBe("stdout: Fake stdout");
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delete process.env.FFMPEG_PREFER_HARDWARE;
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delete process.env.FFMPEG_ARGS;
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});
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test("respects FFMPEG_ARGS", async () => {
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process.env.FFMPEG_ARGS = "-hide_banner -y";
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