Files
bsky-social-app/modules/expo-bluesky-video-compress/ios/VideoCompressor.swift
2026-06-16 11:03:23 +03:00

368 lines
11 KiB
Swift

import AVFoundation
class VideoCompressor {
private let url: URL
private let targetBitrate: Int
private let maxSize: Int
private let jobId: Int
private let onProgress: (Int, Double) -> Void
private var isCancelled = false
init(
url: URL,
targetBitrate: Int,
maxSize: Int,
jobId: Int,
onProgress: @escaping (Int, Double) -> Void
) {
self.url = url
self.targetBitrate = targetBitrate
self.maxSize = maxSize
self.jobId = jobId
self.onProgress = onProgress
}
func cancel() {
isCancelled = true
}
func compress() async throws -> [String: Any] {
let asset = AVURLAsset(url: url)
let duration = try await asset.load(.duration)
let totalSeconds = CMTimeGetSeconds(duration)
guard totalSeconds > 0 else {
throw NSError(
domain: "ExpoVideoCompress",
code: 2,
userInfo: [NSLocalizedDescriptionKey: "Invalid video duration"]
)
}
// Load video track
let videoTracks = try await asset.loadTracks(withMediaType: .video)
guard let videoTrack = videoTracks.first else {
throw NSError(
domain: "ExpoVideoCompress",
code: 1,
userInfo: [NSLocalizedDescriptionKey: "No video track found"]
)
}
let naturalSize = try await videoTrack.load(.naturalSize)
let preferredTransform = try await videoTrack.load(.preferredTransform)
// Calculate output dimensions
let outputSize = calculateOutputSize(
naturalSize: naturalSize,
transform: preferredTransform,
maxSize: maxSize
)
// Load audio tracks
let audioTracks = try await asset.loadTracks(withMediaType: .audio)
let hasAudio = !audioTracks.isEmpty
// Audio analysis for passthrough decision
var shouldPassthroughAudio = false
if hasAudio, let audioTrack = audioTracks.first {
shouldPassthroughAudio = try await canPassthroughAudio(audioTrack)
}
// Create output file
let outputURL = FileManager.default.temporaryDirectory
.appendingPathComponent(UUID().uuidString)
.appendingPathExtension("mp4")
// Set up reader
let reader = try AVAssetReader(asset: asset)
let writer = try AVAssetWriter(outputURL: outputURL, fileType: .mp4)
// Video reader output - request raw frames
let videoReaderSettings: [String: Any] = [
kCVPixelBufferPixelFormatTypeKey as String: kCVPixelFormatType_420YpCbCr8BiPlanarVideoRange
]
let videoReaderOutput = AVAssetReaderTrackOutput(
track: videoTrack,
outputSettings: videoReaderSettings
)
videoReaderOutput.alwaysCopiesSampleData = false
guard reader.canAdd(videoReaderOutput) else {
throw NSError(
domain: "ExpoVideoCompress",
code: 3,
userInfo: [NSLocalizedDescriptionKey: "Cannot read video track"]
)
}
reader.add(videoReaderOutput)
// Video writer input
let videoWriterSettings: [String: Any] = [
AVVideoCodecKey: AVVideoCodecType.h264,
AVVideoWidthKey: outputSize.width,
AVVideoHeightKey: outputSize.height,
AVVideoCompressionPropertiesKey: [
AVVideoAverageBitRateKey: targetBitrate,
AVVideoProfileLevelKey: AVVideoProfileLevelH264HighAutoLevel,
AVVideoMaxKeyFrameIntervalKey: 90, // ~3s at 30fps
AVVideoExpectedSourceFrameRateKey: 30
] as [String: Any]
]
let videoWriterInput = AVAssetWriterInput(
mediaType: .video,
outputSettings: videoWriterSettings
)
videoWriterInput.expectsMediaDataInRealTime = false
// Apply transform for rotation
videoWriterInput.transform = preferredTransform
guard writer.canAdd(videoWriterInput) else {
throw NSError(
domain: "ExpoVideoCompress",
code: 4,
userInfo: [NSLocalizedDescriptionKey: "Cannot write video track"]
)
}
writer.add(videoWriterInput)
// Audio setup
var audioReaderOutput: AVAssetReaderOutput?
var audioWriterInput: AVAssetWriterInput?
if hasAudio, let audioTrack = audioTracks.first {
if shouldPassthroughAudio {
// Passthrough - copy audio as-is
let audioOutput = AVAssetReaderTrackOutput(
track: audioTrack,
outputSettings: nil
)
audioOutput.alwaysCopiesSampleData = false
if reader.canAdd(audioOutput) {
reader.add(audioOutput)
audioReaderOutput = audioOutput
let audioInput = AVAssetWriterInput(
mediaType: .audio,
outputSettings: nil
)
audioInput.expectsMediaDataInRealTime = false
if writer.canAdd(audioInput) {
writer.add(audioInput)
audioWriterInput = audioInput
}
}
} else {
// Re-encode audio to AAC 128kbps
let audioDecoderSettings: [String: Any] = [
AVFormatIDKey: kAudioFormatLinearPCM,
AVSampleRateKey: 44100,
AVNumberOfChannelsKey: 2,
AVLinearPCMBitDepthKey: 16,
AVLinearPCMIsFloatKey: false,
AVLinearPCMIsBigEndianKey: false,
AVLinearPCMIsNonInterleaved: false
]
let audioOutput = AVAssetReaderTrackOutput(
track: audioTrack,
outputSettings: audioDecoderSettings
)
audioOutput.alwaysCopiesSampleData = false
if reader.canAdd(audioOutput) {
reader.add(audioOutput)
audioReaderOutput = audioOutput
let audioEncoderSettings: [String: Any] = [
AVFormatIDKey: kAudioFormatMPEG4AAC,
AVSampleRateKey: 44100,
AVNumberOfChannelsKey: 2,
AVEncoderBitRateKey: 128_000
]
let audioInput = AVAssetWriterInput(
mediaType: .audio,
outputSettings: audioEncoderSettings
)
audioInput.expectsMediaDataInRealTime = false
if writer.canAdd(audioInput) {
writer.add(audioInput)
audioWriterInput = audioInput
}
}
}
}
// Start reading/writing
reader.startReading()
writer.startWriting()
writer.startSession(atSourceTime: .zero)
// Process video and audio concurrently
try await withThrowingTaskGroup(of: Void.self) { group in
// Video processing
group.addTask {
try await self.processTrack(
readerOutput: videoReaderOutput,
writerInput: videoWriterInput,
totalDuration: totalSeconds
)
}
// Audio processing
if let audioOutput = audioReaderOutput, let audioInput = audioWriterInput {
group.addTask {
try await self.processTrack(
readerOutput: audioOutput,
writerInput: audioInput,
totalDuration: nil
)
}
}
try await group.waitForAll()
}
// Check for cancellation
if isCancelled {
writer.cancelWriting()
try? FileManager.default.removeItem(at: outputURL)
throw NSError(
domain: "ExpoVideoCompress",
code: 5,
userInfo: [NSLocalizedDescriptionKey: "Compression cancelled"]
)
}
// Check reader status
if reader.status == .failed {
let error = reader.error ?? NSError(
domain: "ExpoVideoCompress",
code: 6,
userInfo: [NSLocalizedDescriptionKey: "Reader failed"]
)
writer.cancelWriting()
try? FileManager.default.removeItem(at: outputURL)
throw error
}
// Finish writing
await writer.finishWriting()
if writer.status == .failed {
let error = writer.error ?? NSError(
domain: "ExpoVideoCompress",
code: 7,
userInfo: [NSLocalizedDescriptionKey: "Writer failed"]
)
try? FileManager.default.removeItem(at: outputURL)
throw error
}
// Get output file attributes
let attributes = try FileManager.default.attributesOfItem(atPath: outputURL.path)
let fileSize = attributes[.size] as? Int ?? 0
return [
"uri": outputURL.absoluteString,
"size": fileSize,
"mimeType": "video/mp4",
"width": outputSize.width,
"height": outputSize.height,
"duration": totalSeconds
]
}
private func processTrack(
readerOutput: AVAssetReaderOutput,
writerInput: AVAssetWriterInput,
totalDuration: Double?
) async throws {
var lastProgressTime: CFAbsoluteTime = 0
await withCheckedContinuation { (continuation: CheckedContinuation<Void, Never>) in
writerInput.requestMediaDataWhenReady(on: DispatchQueue(label: "com.bluesky.videocompress")) {
while writerInput.isReadyForMoreMediaData {
if self.isCancelled {
writerInput.markAsFinished()
continuation.resume()
return
}
guard let sampleBuffer = readerOutput.copyNextSampleBuffer() else {
writerInput.markAsFinished()
continuation.resume()
return
}
// Send progress events (throttled to ~10/sec) for video track only
if let totalDuration = totalDuration {
let now = CFAbsoluteTimeGetCurrent()
if now - lastProgressTime >= 0.1 {
lastProgressTime = now
let pts = CMSampleBufferGetPresentationTimeStamp(sampleBuffer)
let progress = min(CMTimeGetSeconds(pts) / totalDuration, 1.0)
self.onProgress(self.jobId, progress)
}
}
writerInput.append(sampleBuffer)
}
}
}
}
private func calculateOutputSize(
naturalSize: CGSize,
transform: CGAffineTransform,
maxSize: Int
) -> (width: Int, height: Int) {
// Use display dimensions (rotated) to determine the scale factor,
// but return storage dimensions (unrotated) for the encoder.
// The writer's transform handles rotation separately.
let isRotated = abs(transform.b) == 1.0 && abs(transform.c) == 1.0
let displayWidth = isRotated ? naturalSize.height : naturalSize.width
let displayHeight = isRotated ? naturalSize.width : naturalSize.height
let maxDimension = CGFloat(maxSize)
// If display dimensions within bounds, keep original storage size (rounded to even)
if displayWidth <= maxDimension && displayHeight <= maxDimension {
return (
width: roundToEven(Int(naturalSize.width)),
height: roundToEven(Int(naturalSize.height))
)
}
// Scale based on display dimensions
let scale: CGFloat
if displayWidth > displayHeight {
scale = maxDimension / displayWidth
} else {
scale = maxDimension / displayHeight
}
// Return storage dimensions (unrotated)
return (
width: roundToEven(Int(naturalSize.width * scale)),
height: roundToEven(Int(naturalSize.height * scale))
)
}
private func roundToEven(_ value: Int) -> Int {
return value % 2 == 0 ? value : value - 1
}
private func canPassthroughAudio(_ audioTrack: AVAssetTrack) async throws -> Bool {
let formatDescriptions = try await audioTrack.load(.formatDescriptions)
guard let formatDesc = formatDescriptions.first else {
return false
}
let mediaSubType = CMFormatDescriptionGetMediaSubType(formatDesc)
// Always passthrough AAC regardless of bitrate — the server re-encodes
// everything anyway, and the bitrate difference is negligible.
return mediaSubType == kAudioFormatMPEG4AAC
}
}