Merge run recording updates into drone branch
This commit is contained in:
@@ -1,10 +1,10 @@
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package com.dronex.rec
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object AppConstants {
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const val PACKAGE_NAME = "com.dronex.rec"
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const val PLATFORM_INFO_CHANNEL = "$PACKAGE_NAME/platform_info"
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const val RECORDING_METHOD_CHANNEL = "$PACKAGE_NAME/recording"
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const val RECORDING_EVENT_CHANNEL = "$PACKAGE_NAME/recording_events"
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const val RECORDING_ACTION_START = "$PACKAGE_NAME.recording.START"
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const val RECORDING_ACTION_STOP = "$PACKAGE_NAME.recording.STOP"
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private const val CHANNEL_NAMESPACE = "app.record_tool"
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const val PLATFORM_INFO_CHANNEL = "$CHANNEL_NAMESPACE/platform_info"
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const val RECORDING_METHOD_CHANNEL = "$CHANNEL_NAMESPACE/recording"
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const val RECORDING_EVENT_CHANNEL = "$CHANNEL_NAMESPACE/recording_events"
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const val RECORDING_ACTION_START = "$CHANNEL_NAMESPACE.recording.START"
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const val RECORDING_ACTION_STOP = "$CHANNEL_NAMESPACE.recording.STOP"
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}
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+602
-62
@@ -3,9 +3,15 @@ package com.dronex.rec.recording
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import android.content.Context
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import android.hardware.camera2.CameraCharacteristics
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import android.hardware.camera2.CameraManager
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import android.hardware.camera2.CaptureRequest
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import android.os.Build
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import android.util.Log
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import androidx.camera.camera2.interop.Camera2CameraControl
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import androidx.camera.camera2.interop.Camera2CameraInfo
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import androidx.camera.camera2.interop.CaptureRequestOptions
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import androidx.camera.camera2.interop.ExperimentalCamera2Interop
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import androidx.camera.core.Camera
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import androidx.camera.core.CameraControl
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import androidx.camera.core.CameraSelector
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import androidx.camera.core.Preview
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import androidx.camera.lifecycle.ProcessCameraProvider
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@@ -18,13 +24,18 @@ import androidx.camera.video.VideoRecordEvent
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import androidx.camera.view.PreviewView
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import androidx.core.content.ContextCompat
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import androidx.lifecycle.LifecycleOwner
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import kotlin.math.atan
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import java.io.File
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import java.util.concurrent.Executor
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import java.util.concurrent.ExecutionException
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import java.util.concurrent.Executors
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import kotlin.math.atan
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import kotlin.math.round
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class RecordingCameraController(
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private val appContext: Context,
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) {
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private val mainExecutor: Executor = ContextCompat.getMainExecutor(appContext)
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private val ioExecutor = Executors.newSingleThreadExecutor()
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private var cameraProvider: ProcessCameraProvider? = null
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private var preview: Preview? = null
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@@ -37,6 +48,12 @@ class RecordingCameraController(
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private var activeRecording: Recording? = null
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private var boundLifecycleOwner: LifecycleOwner? = null
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private var currentZoomRatio: Float = 1f
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private var activeWithAudio: Boolean = true
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private var activeDisplayName: String? = null
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private var currentSegmentFile: File? = null
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private val segmentFiles = mutableListOf<File>()
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private var nextSegmentIndex: Int = 1
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private var isSwitchingLens: Boolean = false
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var status: RecordingStatus = RecordingStatus(RecordingState.IDLE)
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private set
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@@ -45,7 +62,9 @@ class RecordingCameraController(
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private var recordingStartedAt: Long = 0L
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private var latestOutputPath: String? = null
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private var latestSegmentOutputPaths: List<String> = emptyList()
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private var pendingStopCallback: ((String?) -> Unit)? = null
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private var pendingSegmentSwitch: PendingSegmentSwitch? = null
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fun bindPreview(
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lifecycleOwner: LifecycleOwner,
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@@ -134,21 +153,55 @@ class RecordingCameraController(
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return
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}
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if (activeRecording != null || isSwitchingLens) {
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onStarted(false, "Already recording")
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return
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}
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activeWithAudio = withAudio
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activeDisplayName = displayName
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segmentFiles.clear()
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nextSegmentIndex = 1
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latestOutputPath = null
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latestSegmentOutputPaths = emptyList()
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recordingStartedAt = System.currentTimeMillis()
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updateStatus(
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RecordingStatus(
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RecordingState.RECORDING,
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outputPath = latestOutputPath,
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),
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)
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startNewSegment(updateStatusOnStart = false, onStarted = onStarted)
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}
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private fun startNewSegment(
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updateStatusOnStart: Boolean,
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onStarted: (Boolean, String?) -> Unit,
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) {
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val capture = videoCapture
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if (capture == null || boundLifecycleOwner == null) {
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onStarted(false, "Camera not ready")
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return
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}
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if (activeRecording != null) {
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onStarted(false, "Already recording")
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return
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}
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val outputOptions =
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RecordingOutputFactory.buildMediaStoreOutputOptions(
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val segmentFile =
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RecordingOutputFactory.createSegmentFile(
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appContext,
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displayName,
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activeDisplayName,
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nextSegmentIndex++,
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)
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latestOutputPath = null
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currentSegmentFile = segmentFile
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val outputOptions = RecordingOutputFactory.buildSegmentOutputOptions(segmentFile)
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val pending =
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capture.output.prepareRecording(appContext, outputOptions).apply {
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if (withAudio) {
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if (activeWithAudio) {
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val granted =
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ContextCompat.checkSelfPermission(
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appContext,
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@@ -160,48 +213,25 @@ class RecordingCameraController(
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}
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}
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recordingStartedAt = System.currentTimeMillis()
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updateStatus(
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RecordingStatus(
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RecordingState.RECORDING,
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outputPath = latestOutputPath,
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),
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)
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if (updateStatusOnStart) {
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updateStatus(
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RecordingStatus(
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RecordingState.RECORDING,
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outputPath = latestOutputPath,
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elapsedMillis = elapsedMillis(),
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),
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)
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}
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activeRecording =
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pending.start(mainExecutor) { event ->
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when (event) {
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is VideoRecordEvent.Start -> Unit
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is VideoRecordEvent.Finalize -> {
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activeRecording = null
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if (event.hasError()) {
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updateStatus(
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RecordingStatus(
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RecordingState.ERROR,
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message = event.cause?.message
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?: "Recording failed",
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),
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)
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} else {
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latestOutputPath = event.outputResults.outputUri.toString()
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updateStatus(
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RecordingStatus(
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RecordingState.PREVIEWING,
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outputPath = latestOutputPath,
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elapsedMillis =
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System.currentTimeMillis() -
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recordingStartedAt,
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),
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)
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}
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val stopCallback = pendingStopCallback
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pendingStopCallback = null
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stopCallback?.invoke(latestOutputPath)
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}
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is VideoRecordEvent.Finalize -> handleFinalize(event, segmentFile)
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}
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}
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onStarted(true, latestOutputPath ?: "recording")
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onStarted(true, segmentFile.absolutePath)
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}
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fun stopRecording(onStopped: (String?) -> Unit) {
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@@ -210,12 +240,18 @@ class RecordingCameraController(
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onStopped(latestOutputPath)
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return
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}
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if (isSwitchingLens) {
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onStopped(null)
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return
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}
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pendingStopCallback = onStopped
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val elapsed = elapsedMillis()
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updateStatus(
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RecordingStatus(
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RecordingState.STOPPING,
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outputPath = latestOutputPath,
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elapsedMillis = elapsed,
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),
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)
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@@ -223,27 +259,144 @@ class RecordingCameraController(
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activeRecording = null
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}
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private fun handleFinalize(
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event: VideoRecordEvent.Finalize,
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segmentFile: File,
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) {
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activeRecording = null
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if (!event.hasError() && segmentFile.exists() && segmentFile.length() > 0L) {
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segmentFiles.add(segmentFile)
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}
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val segmentSwitch = pendingSegmentSwitch
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if (segmentSwitch != null) {
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pendingSegmentSwitch = null
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if (event.hasError()) {
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isSwitchingLens = false
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val message = event.cause?.message ?: "Recording segment failed"
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updateStatus(RecordingStatus(RecordingState.ERROR, message = message))
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segmentSwitch.onComplete(false, zoomCapabilitiesMap(), message)
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return
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}
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continueSegmentSwitch(segmentSwitch)
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return
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}
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val stopCallback = pendingStopCallback
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pendingStopCallback = null
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if (stopCallback == null) {
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return
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}
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if (event.hasError()) {
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val message = event.cause?.message ?: "Recording failed"
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updateStatus(RecordingStatus(RecordingState.ERROR, message = message))
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stopCallback.invoke(null)
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return
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}
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finalizeRecordingOutput(stopCallback)
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}
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private fun finalizeRecordingOutput(stopCallback: (String?) -> Unit) {
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val segments = segmentFiles.toList()
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val displayName = activeDisplayName
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ioExecutor.execute {
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try {
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val mergedFile = RecordingOutputFactory.createMergeFile(appContext, displayName)
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RecordingSegmentMuxer.mergeOrCopy(segments, mergedFile)
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val outputUri =
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RecordingOutputFactory.publishToMediaStore(
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appContext,
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displayName,
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mergedFile,
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)
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latestOutputPath = outputUri
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latestSegmentOutputPaths = emptyList()
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cleanupSegmentFiles(segments + mergedFile)
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mainExecutor.execute {
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val elapsed = System.currentTimeMillis() - recordingStartedAt
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updateStatus(
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RecordingStatus(
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RecordingState.PREVIEWING,
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outputPath = latestOutputPath,
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elapsedMillis = elapsed,
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),
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)
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stopCallback.invoke(latestOutputPath)
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}
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} catch (error: Exception) {
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Log.e(TAG, "finalizeRecordingOutput failed", error)
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val publishedParts = publishSegmentsAfterMergeFailure(segments, displayName)
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latestOutputPath = publishedParts.firstOrNull()
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latestSegmentOutputPaths = publishedParts
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mainExecutor.execute {
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updateStatus(
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RecordingStatus(
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RecordingState.ERROR,
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outputPath = latestOutputPath,
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message = error.message ?: "保存到文件夹失败",
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),
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)
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stopCallback.invoke(latestOutputPath)
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}
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}
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}
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}
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private fun publishSegmentsAfterMergeFailure(
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segments: List<File>,
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displayName: String?,
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): List<String> {
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return segments.mapIndexedNotNull { index, segment ->
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try {
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RecordingOutputFactory.publishPartToMediaStore(
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appContext,
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displayName,
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segment,
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index + 1,
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)
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} catch (error: Exception) {
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Log.e(TAG, "publish segment after merge failure failed", error)
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null
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}
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}
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}
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private fun cleanupSegmentFiles(files: List<File>) {
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files.forEach { file ->
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try {
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file.delete()
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} catch (_: Exception) {
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}
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}
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}
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fun zoomCapabilitiesMap(): Map<String, Any> {
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val zoomState = camera?.cameraInfo?.zoomState?.value
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val logicalMin = zoomState?.minZoomRatio ?: 1f
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// 兜底两路超广角来源:独立超广角镜头(0.6) 与 逻辑相机原生 <1.0 变焦范围,取更小者。
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val cameraXMin = zoomState?.minZoomRatio ?: 1f
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val cameraXMax = zoomState?.maxZoomRatio ?: 3f
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val camera2Range = mainCameraZoomRatioRange()
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val logicalMin = camera2Range?.lower?.let { minOf(cameraXMin, it) } ?: cameraXMin
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val logicalMax = camera2Range?.upper?.let { maxOf(cameraXMax, it) } ?: cameraXMax
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val minZoom =
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if (hasUltraWideCamera()) {
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minOf(ultraWideZoomRatio, logicalMin)
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} else {
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logicalMin
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}
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val maxZoom = zoomState?.maxZoomRatio ?: 3f
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val maxZoom = logicalMax
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val zoom =
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if (currentLensMode == LensMode.ULTRA_WIDE) {
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ultraWideZoomRatio
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} else {
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(zoomState?.zoomRatio ?: currentZoomRatio).coerceIn(minZoom, maxZoom)
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currentZoomRatio.coerceIn(minZoom, maxZoom)
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}
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currentZoomRatio = zoom
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Log.d(
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TAG,
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"zoomCapabilities hasUltraWide=${hasUltraWideCamera()} logicalMin=$logicalMin " +
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"zoomCapabilities hasUltraWide=${hasUltraWideCamera()} cameraXMin=$cameraXMin " +
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"cameraXMax=$cameraXMax camera2Range=${camera2Range?.description()} " +
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"ultraWideZoomRatio=$ultraWideZoomRatio minZoom=$minZoom maxZoom=$maxZoom zoom=$zoom",
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)
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return mapOf(
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@@ -259,6 +412,10 @@ class RecordingCameraController(
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) {
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val boundCamera = camera
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if (boundCamera == null) {
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if (isSwitchingLens) {
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onComplete(false, zoomCapabilitiesMap(), "Camera lens switch is already in progress")
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return
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}
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val clamped =
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if (ratio < 1.0 && hasUltraWideCamera()) {
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ultraWideZoomRatio
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@@ -271,8 +428,11 @@ class RecordingCameraController(
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}
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if (ratio < 1.0 && hasUltraWideCamera()) {
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switchToUltraWide(onComplete)
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return
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val logicalRange = mainCameraZoomRatioRange()
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if (logicalRange == null || !logicalRange.contains(ratio.toFloat())) {
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switchToUltraWide(onComplete)
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return
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}
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}
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if (currentLensMode == LensMode.ULTRA_WIDE) {
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@@ -281,18 +441,36 @@ class RecordingCameraController(
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}
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val zoomState = boundCamera.cameraInfo.zoomState.value
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val minZoom = zoomState?.minZoomRatio ?: 1f
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val maxZoom = zoomState?.maxZoomRatio ?: clampedMaxZoom()
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val camera2Range = mainCameraZoomRatioRange()
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val minZoom = camera2Range?.lower ?: zoomState?.minZoomRatio ?: 1f
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val maxZoom = camera2Range?.upper ?: zoomState?.maxZoomRatio ?: clampedMaxZoom()
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val nextZoom = ratio.toFloat().coerceIn(minZoom, maxZoom)
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currentZoomRatio = nextZoom
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val future = boundCamera.cameraControl.setZoomRatio(nextZoom)
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val future =
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if (
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Build.VERSION.SDK_INT >= Build.VERSION_CODES.R &&
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camera2Range?.contains(nextZoom) == true
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) {
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applyCamera2ZoomRatio(boundCamera, nextZoom)
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} else {
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boundCamera.cameraControl.setZoomRatio(nextZoom)
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}
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future.addListener(
|
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{
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try {
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future.get()
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onComplete(true, zoomCapabilitiesMap(), null)
|
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val capabilities = zoomCapabilitiesMap()
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logSetZoomResult(ratio, nextZoom, capabilities)
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onComplete(true, capabilities, null)
|
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} catch (error: Exception) {
|
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if (isSupersededCamera2ZoomRequest(error)) {
|
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Log.d(TAG, "setZoomRatio superseded by newer Camera2 options")
|
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val capabilities = zoomCapabilitiesMap()
|
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logSetZoomResult(ratio, nextZoom, capabilities)
|
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onComplete(true, capabilities, null)
|
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return@addListener
|
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}
|
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Log.e(TAG, "setZoomRatio failed", error)
|
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onComplete(false, zoomCapabilitiesMap(), error.message)
|
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}
|
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@@ -304,12 +482,20 @@ class RecordingCameraController(
|
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fun unbind() {
|
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activeRecording?.stop()
|
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activeRecording = null
|
||||
pendingSegmentSwitch = null
|
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pendingStopCallback = null
|
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isSwitchingLens = false
|
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cameraProvider?.unbindAll()
|
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cameraProvider = null
|
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preview = null
|
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videoCapture = null
|
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camera = null
|
||||
boundLifecycleOwner = null
|
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currentSegmentFile = null
|
||||
cleanupSegmentFiles(segmentFiles)
|
||||
segmentFiles.clear()
|
||||
nextSegmentIndex = 1
|
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activeDisplayName = null
|
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currentLensMode = LensMode.MAIN
|
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currentZoomRatio = 1f
|
||||
ultraWideZoomRatio = DEFAULT_ULTRA_WIDE_ZOOM_RATIO
|
||||
@@ -321,6 +507,8 @@ class RecordingCameraController(
|
||||
return System.currentTimeMillis() - recordingStartedAt
|
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}
|
||||
|
||||
fun segmentOutputPaths(): List<String> = latestSegmentOutputPaths
|
||||
|
||||
private fun updateStatus(next: RecordingStatus) {
|
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status = next
|
||||
statusListener?.invoke(next)
|
||||
@@ -334,10 +522,18 @@ class RecordingCameraController(
|
||||
return
|
||||
}
|
||||
val zoomState = boundCamera.cameraInfo.zoomState.value
|
||||
val minZoom = zoomState?.minZoomRatio ?: 1f
|
||||
val maxZoom = zoomState?.maxZoomRatio ?: clampedMaxZoom()
|
||||
val camera2Range = mainCameraZoomRatioRange()
|
||||
val minZoom = camera2Range?.lower ?: zoomState?.minZoomRatio ?: 1f
|
||||
val maxZoom = camera2Range?.upper ?: zoomState?.maxZoomRatio ?: clampedMaxZoom()
|
||||
currentZoomRatio = currentZoomRatio.coerceIn(minZoom, maxZoom)
|
||||
boundCamera.cameraControl.setZoomRatio(currentZoomRatio)
|
||||
if (
|
||||
Build.VERSION.SDK_INT >= Build.VERSION_CODES.R &&
|
||||
camera2Range?.contains(currentZoomRatio) == true
|
||||
) {
|
||||
applyCamera2ZoomRatio(boundCamera, currentZoomRatio)
|
||||
} else {
|
||||
boundCamera.cameraControl.setZoomRatio(currentZoomRatio)
|
||||
}
|
||||
}
|
||||
|
||||
private fun clampedMaxZoom(): Float {
|
||||
@@ -345,9 +541,11 @@ class RecordingCameraController(
|
||||
}
|
||||
|
||||
private fun discoverBackCameras(provider: ProcessCameraProvider) {
|
||||
val manager = appContext.getSystemService(Context.CAMERA_SERVICE) as CameraManager
|
||||
if (mainCameraId == null) {
|
||||
mainCameraId = cameraIdForSelector(provider, CameraSelector.DEFAULT_BACK_CAMERA)
|
||||
}
|
||||
logPublicCameraDiagnostics(provider, manager, mainCameraId)
|
||||
val ultraWideCamera = findUltraWideCamera(provider, mainCameraId)
|
||||
ultraWideCameraId = ultraWideCamera?.cameraId
|
||||
ultraWideZoomRatio = ultraWideCamera?.zoomRatio ?: DEFAULT_ULTRA_WIDE_ZOOM_RATIO
|
||||
@@ -383,6 +581,13 @@ class RecordingCameraController(
|
||||
val candidates =
|
||||
manager.cameraIdList
|
||||
.mapNotNull { cameraId -> backCameraProfile(manager, cameraId) }
|
||||
.onEach { profile ->
|
||||
Log.d(
|
||||
TAG,
|
||||
"backCamera ${profile.description()} " +
|
||||
"bindable=${provider.hasCameraSafely(selectorForCameraId(profile.cameraId))}",
|
||||
)
|
||||
}
|
||||
.filter { it.cameraId != excludedCameraId }
|
||||
.filter { provider.hasCameraSafely(selectorForCameraId(it.cameraId)) }
|
||||
.sortedWith(
|
||||
@@ -391,11 +596,16 @@ class RecordingCameraController(
|
||||
)
|
||||
|
||||
val mainProfile = excludedCameraId?.let { backCameraProfile(manager, it) }
|
||||
val widest = candidates.firstOrNull() ?: return null
|
||||
val widest =
|
||||
candidates.firstOrNull()
|
||||
?: run {
|
||||
logPhysicalOnlyUltraWideDiagnostics(manager, mainProfile, excludedCameraId)
|
||||
return null
|
||||
}
|
||||
val candidatesDesc =
|
||||
candidates.joinToString { "id=${it.cameraId} fov=${it.horizontalFov} focal=${it.minFocalLength}" }
|
||||
candidates.joinToString { it.description() }
|
||||
val mainDesc =
|
||||
mainProfile?.let { "id=${it.cameraId} fov=${it.horizontalFov} focal=${it.minFocalLength}" }
|
||||
mainProfile?.description()
|
||||
Log.d(TAG, "ultraWide candidates=[$candidatesDesc] main=$mainDesc")
|
||||
if (mainProfile == null) {
|
||||
return UltraWideCamera(widest.cameraId, DEFAULT_ULTRA_WIDE_ZOOM_RATIO)
|
||||
@@ -410,10 +620,98 @@ class RecordingCameraController(
|
||||
"(fovFactor=$ULTRA_WIDE_FOV_FACTOR focalFactor=$ULTRA_WIDE_FOCAL_FACTOR)",
|
||||
)
|
||||
if (!meaningfullyWider) {
|
||||
logPhysicalOnlyUltraWideDiagnostics(manager, mainProfile, excludedCameraId)
|
||||
return null
|
||||
}
|
||||
|
||||
return UltraWideCamera(widest.cameraId, DEFAULT_ULTRA_WIDE_ZOOM_RATIO)
|
||||
return UltraWideCamera(widest.cameraId, estimateUltraWideZoomRatio(widest, mainProfile))
|
||||
}
|
||||
|
||||
private fun logPublicCameraDiagnostics(
|
||||
provider: ProcessCameraProvider,
|
||||
manager: CameraManager,
|
||||
mainCameraId: String?,
|
||||
) {
|
||||
Log.d(TAG, "publicCameraIds=[${manager.cameraIdList.joinToString()}] mainCameraId=$mainCameraId")
|
||||
manager.cameraIdList.forEach { cameraId ->
|
||||
try {
|
||||
val characteristics = manager.getCameraCharacteristics(cameraId)
|
||||
val bindable = provider.hasCameraSafely(selectorForCameraId(cameraId))
|
||||
val physicalIds = physicalCameraIds(characteristics)
|
||||
Log.d(
|
||||
TAG,
|
||||
"publicCamera id=$cameraId facing=${lensFacingDescription(characteristics)} " +
|
||||
"physicalIds=[${physicalIds.joinToString()}] " +
|
||||
"capabilities=[${capabilitiesDescription(characteristics)}] " +
|
||||
"zoomRange=${zoomRatioRangeFromCharacteristics(characteristics)?.description()} " +
|
||||
"focals=${focalLengthsDescription(characteristics)} " +
|
||||
"sensor=${sensorSizeDescription(characteristics)} bindable=$bindable",
|
||||
)
|
||||
if (cameraId == mainCameraId) {
|
||||
logMainPhysicalCameraDiagnostics(manager, cameraId, physicalIds)
|
||||
}
|
||||
} catch (error: Exception) {
|
||||
Log.w(TAG, "publicCamera diagnostics failed for cameraId=$cameraId", error)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
private fun logMainPhysicalCameraDiagnostics(
|
||||
manager: CameraManager,
|
||||
mainCameraId: String,
|
||||
physicalIds: Set<String>,
|
||||
) {
|
||||
Log.d(TAG, "mainCamera id=$mainCameraId physicalIds=[${physicalIds.joinToString()}]")
|
||||
physicalIds.forEach { physicalId ->
|
||||
try {
|
||||
val characteristics = manager.getCameraCharacteristics(physicalId)
|
||||
Log.d(
|
||||
TAG,
|
||||
"mainPhysicalCamera id=$physicalId facing=${lensFacingDescription(characteristics)} " +
|
||||
"zoomRange=${zoomRatioRangeFromCharacteristics(characteristics)?.description()} " +
|
||||
"focals=${focalLengthsDescription(characteristics)} " +
|
||||
"sensor=${sensorSizeDescription(characteristics)}",
|
||||
)
|
||||
} catch (error: Exception) {
|
||||
Log.w(TAG, "mainPhysicalCamera diagnostics failed for physicalId=$physicalId", error)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
private fun logPhysicalOnlyUltraWideDiagnostics(
|
||||
manager: CameraManager,
|
||||
mainProfile: CameraProfile?,
|
||||
mainCameraId: String?,
|
||||
) {
|
||||
if (mainProfile == null || mainCameraId == null) {
|
||||
return
|
||||
}
|
||||
val characteristics =
|
||||
try {
|
||||
manager.getCameraCharacteristics(mainCameraId)
|
||||
} catch (error: Exception) {
|
||||
Log.w(TAG, "physicalOnlyUltraWide diagnostics failed for mainCameraId=$mainCameraId", error)
|
||||
return
|
||||
}
|
||||
val physicalProfiles =
|
||||
physicalCameraIds(characteristics)
|
||||
.mapNotNull { physicalId -> backCameraProfile(manager, physicalId) }
|
||||
.filter { it.cameraId != mainCameraId }
|
||||
.sortedBy { it.minFocalLength }
|
||||
val widestPhysical = physicalProfiles.firstOrNull()
|
||||
if (widestPhysical == null) {
|
||||
Log.d(TAG, "physicalOnlyUltraWide none main=${mainProfile.description()}")
|
||||
return
|
||||
}
|
||||
val meaningfullyWider =
|
||||
widestPhysical.horizontalFov > mainProfile.horizontalFov * ULTRA_WIDE_FOV_FACTOR ||
|
||||
widestPhysical.minFocalLength < mainProfile.minFocalLength * ULTRA_WIDE_FOCAL_FACTOR
|
||||
Log.d(
|
||||
TAG,
|
||||
"physicalOnlyUltraWide widest=${widestPhysical.description()} " +
|
||||
"main=${mainProfile.description()} meaningfullyWider=$meaningfullyWider " +
|
||||
"exposedAsBindableCamera=false action=diagnostic_only",
|
||||
)
|
||||
}
|
||||
|
||||
private fun backCameraProfile(
|
||||
@@ -435,13 +733,168 @@ class RecordingCameraController(
|
||||
val minFocalLength = focalLengths.minOrNull() ?: return null
|
||||
val horizontalFov =
|
||||
2.0 * atan((physicalSize.width / (2.0f * minFocalLength)).toDouble())
|
||||
CameraProfile(cameraId, minFocalLength, horizontalFov)
|
||||
CameraProfile(
|
||||
cameraId,
|
||||
minFocalLength,
|
||||
horizontalFov,
|
||||
zoomRatioRangeFromCharacteristics(characteristics),
|
||||
)
|
||||
} catch (error: Exception) {
|
||||
Log.w(TAG, "backCameraProfile failed for cameraId=$cameraId", error)
|
||||
null
|
||||
}
|
||||
}
|
||||
|
||||
private fun mainCameraZoomRatioRange(): ZoomRatioRange? {
|
||||
val cameraId = mainCameraId ?: activeCameraId()
|
||||
return zoomRatioRangeForCamera(cameraId)
|
||||
}
|
||||
|
||||
private fun activeCameraId(): String? {
|
||||
val boundCamera = camera ?: return null
|
||||
return try {
|
||||
Camera2CameraInfo.from(boundCamera.cameraInfo).cameraId
|
||||
} catch (error: Exception) {
|
||||
null
|
||||
}
|
||||
}
|
||||
|
||||
private fun zoomRatioRangeForCamera(cameraId: String?): ZoomRatioRange? {
|
||||
if (cameraId == null) return null
|
||||
return try {
|
||||
val manager = appContext.getSystemService(Context.CAMERA_SERVICE) as CameraManager
|
||||
zoomRatioRangeFromCharacteristics(manager.getCameraCharacteristics(cameraId))
|
||||
} catch (error: Exception) {
|
||||
Log.w(TAG, "zoomRatioRangeForCamera failed for cameraId=$cameraId", error)
|
||||
null
|
||||
}
|
||||
}
|
||||
|
||||
private fun zoomRatioRangeFromCharacteristics(
|
||||
characteristics: CameraCharacteristics,
|
||||
): ZoomRatioRange? {
|
||||
if (Build.VERSION.SDK_INT < Build.VERSION_CODES.R) {
|
||||
return null
|
||||
}
|
||||
val range = characteristics.get(CameraCharacteristics.CONTROL_ZOOM_RATIO_RANGE)
|
||||
?: return null
|
||||
return ZoomRatioRange(range.lower, range.upper)
|
||||
}
|
||||
|
||||
private fun physicalCameraIds(characteristics: CameraCharacteristics): Set<String> {
|
||||
if (Build.VERSION.SDK_INT < Build.VERSION_CODES.P) {
|
||||
return emptySet()
|
||||
}
|
||||
return characteristics.physicalCameraIds
|
||||
}
|
||||
|
||||
private fun lensFacingDescription(characteristics: CameraCharacteristics): String {
|
||||
return when (val facing = characteristics.get(CameraCharacteristics.LENS_FACING)) {
|
||||
CameraCharacteristics.LENS_FACING_BACK -> "BACK"
|
||||
CameraCharacteristics.LENS_FACING_FRONT -> "FRONT"
|
||||
CameraCharacteristics.LENS_FACING_EXTERNAL -> "EXTERNAL"
|
||||
null -> "null"
|
||||
else -> "UNKNOWN($facing)"
|
||||
}
|
||||
}
|
||||
|
||||
private fun capabilitiesDescription(characteristics: CameraCharacteristics): String {
|
||||
val capabilities =
|
||||
characteristics.get(CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES)
|
||||
?: return "null"
|
||||
return capabilities.joinToString { capabilityDescription(it) }
|
||||
}
|
||||
|
||||
private fun capabilityDescription(capability: Int): String {
|
||||
return when (capability) {
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_BACKWARD_COMPATIBLE ->
|
||||
"BACKWARD_COMPATIBLE"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_MANUAL_SENSOR -> "MANUAL_SENSOR"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_MANUAL_POST_PROCESSING ->
|
||||
"MANUAL_POST_PROCESSING"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_RAW -> "RAW"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_PRIVATE_REPROCESSING ->
|
||||
"PRIVATE_REPROCESSING"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_READ_SENSOR_SETTINGS ->
|
||||
"READ_SENSOR_SETTINGS"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_BURST_CAPTURE -> "BURST_CAPTURE"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_YUV_REPROCESSING ->
|
||||
"YUV_REPROCESSING"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_DEPTH_OUTPUT -> "DEPTH_OUTPUT"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_CONSTRAINED_HIGH_SPEED_VIDEO ->
|
||||
"CONSTRAINED_HIGH_SPEED_VIDEO"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_MOTION_TRACKING -> "MOTION_TRACKING"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_LOGICAL_MULTI_CAMERA ->
|
||||
"LOGICAL_MULTI_CAMERA"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_MONOCHROME -> "MONOCHROME"
|
||||
CameraCharacteristics.REQUEST_AVAILABLE_CAPABILITIES_SECURE_IMAGE_DATA -> "SECURE_IMAGE_DATA"
|
||||
else -> "UNKNOWN($capability)"
|
||||
}
|
||||
}
|
||||
|
||||
private fun focalLengthsDescription(characteristics: CameraCharacteristics): String {
|
||||
val focalLengths =
|
||||
characteristics.get(CameraCharacteristics.LENS_INFO_AVAILABLE_FOCAL_LENGTHS)
|
||||
?: return "null"
|
||||
return focalLengths.joinToString(prefix = "[", postfix = "]")
|
||||
}
|
||||
|
||||
private fun sensorSizeDescription(characteristics: CameraCharacteristics): String {
|
||||
val size = characteristics.get(CameraCharacteristics.SENSOR_INFO_PHYSICAL_SIZE)
|
||||
?: return "null"
|
||||
return "${size.width}x${size.height}"
|
||||
}
|
||||
|
||||
private fun estimateUltraWideZoomRatio(
|
||||
ultraWide: CameraProfile,
|
||||
main: CameraProfile,
|
||||
): Float {
|
||||
if (main.minFocalLength <= 0f) {
|
||||
return DEFAULT_ULTRA_WIDE_ZOOM_RATIO
|
||||
}
|
||||
val rawRatio = ultraWide.minFocalLength / main.minFocalLength
|
||||
val roundedRatio = round(rawRatio * 10f) / 10f
|
||||
return roundedRatio.coerceIn(MIN_ULTRA_WIDE_ZOOM_RATIO, MAX_ULTRA_WIDE_ZOOM_RATIO)
|
||||
}
|
||||
|
||||
@androidx.annotation.OptIn(ExperimentalCamera2Interop::class)
|
||||
private fun applyCamera2ZoomRatio(
|
||||
boundCamera: Camera,
|
||||
zoomRatio: Float,
|
||||
) =
|
||||
Camera2CameraControl.from(boundCamera.cameraControl)
|
||||
.setCaptureRequestOptions(
|
||||
CaptureRequestOptions.Builder()
|
||||
.setCaptureRequestOption(
|
||||
CaptureRequest.CONTROL_ZOOM_RATIO,
|
||||
zoomRatio,
|
||||
)
|
||||
.build(),
|
||||
)
|
||||
|
||||
private fun isSupersededCamera2ZoomRequest(error: Exception): Boolean {
|
||||
val cause =
|
||||
if (error is ExecutionException) {
|
||||
error.cause
|
||||
} else {
|
||||
error
|
||||
}
|
||||
return cause is CameraControl.OperationCanceledException &&
|
||||
cause.message?.contains("updated with new options") == true
|
||||
}
|
||||
|
||||
private fun logSetZoomResult(
|
||||
requestedRatio: Double,
|
||||
nextZoom: Float,
|
||||
capabilities: Map<String, Any>,
|
||||
) {
|
||||
Log.d(
|
||||
TAG,
|
||||
"setZoomRatio result requestedRatio=$requestedRatio nextZoom=$nextZoom " +
|
||||
"currentZoomRatio=$currentZoomRatio returnedZoom=${capabilities["zoomRatio"]}",
|
||||
)
|
||||
}
|
||||
|
||||
private fun selectorForCurrentLensMode(): CameraSelector {
|
||||
val cameraId =
|
||||
if (currentLensMode == LensMode.ULTRA_WIDE) {
|
||||
@@ -496,7 +949,11 @@ class RecordingCameraController(
|
||||
return
|
||||
}
|
||||
if (activeRecording != null) {
|
||||
onComplete(false, zoomCapabilitiesMap(), "Cannot switch physical camera while recording")
|
||||
switchRecordingSegmentToLens(
|
||||
LensMode.ULTRA_WIDE,
|
||||
ultraWideZoomRatio.toDouble(),
|
||||
onComplete,
|
||||
)
|
||||
return
|
||||
}
|
||||
val provider = cameraProvider
|
||||
@@ -530,7 +987,7 @@ class RecordingCameraController(
|
||||
onComplete: (Boolean, Map<String, Any>, String?) -> Unit,
|
||||
) {
|
||||
if (activeRecording != null) {
|
||||
onComplete(false, zoomCapabilitiesMap(), "Cannot switch physical camera while recording")
|
||||
switchRecordingSegmentToLens(LensMode.MAIN, ratio, onComplete)
|
||||
return
|
||||
}
|
||||
val provider = cameraProvider
|
||||
@@ -554,6 +1011,62 @@ class RecordingCameraController(
|
||||
return ultraWideCameraId != null
|
||||
}
|
||||
|
||||
private fun switchRecordingSegmentToLens(
|
||||
targetLensMode: LensMode,
|
||||
targetRatio: Double,
|
||||
onComplete: (Boolean, Map<String, Any>, String?) -> Unit,
|
||||
) {
|
||||
val recording = activeRecording
|
||||
if (recording == null) {
|
||||
onComplete(false, zoomCapabilitiesMap(), "Recording is not active")
|
||||
return
|
||||
}
|
||||
if (isSwitchingLens || pendingSegmentSwitch != null) {
|
||||
onComplete(false, zoomCapabilitiesMap(), "Camera lens switch is already in progress")
|
||||
return
|
||||
}
|
||||
pendingSegmentSwitch = PendingSegmentSwitch(targetLensMode, targetRatio, onComplete)
|
||||
isSwitchingLens = true
|
||||
recording.stop()
|
||||
activeRecording = null
|
||||
}
|
||||
|
||||
private fun continueSegmentSwitch(request: PendingSegmentSwitch) {
|
||||
val provider = cameraProvider
|
||||
val lifecycleOwner = boundLifecycleOwner
|
||||
if (provider == null || lifecycleOwner == null) {
|
||||
isSwitchingLens = false
|
||||
request.onComplete(false, zoomCapabilitiesMap(), "Camera is not ready")
|
||||
return
|
||||
}
|
||||
|
||||
try {
|
||||
currentLensMode = request.targetLensMode
|
||||
currentZoomRatio =
|
||||
if (request.targetLensMode == LensMode.ULTRA_WIDE) {
|
||||
ultraWideZoomRatio
|
||||
} else {
|
||||
request.targetRatio.toFloat().coerceAtLeast(1f)
|
||||
}
|
||||
bindUseCases(provider, lifecycleOwner, selectorForCurrentLensMode())
|
||||
applyCurrentZoom()
|
||||
startNewSegment(updateStatusOnStart = true) { started, message ->
|
||||
isSwitchingLens = false
|
||||
if (started) {
|
||||
request.onComplete(true, zoomCapabilitiesMap(), null)
|
||||
} else {
|
||||
updateStatus(RecordingStatus(RecordingState.ERROR, message = message))
|
||||
request.onComplete(false, zoomCapabilitiesMap(), message)
|
||||
}
|
||||
}
|
||||
} catch (error: Exception) {
|
||||
Log.e(TAG, "continueSegmentSwitch failed", error)
|
||||
isSwitchingLens = false
|
||||
updateStatus(RecordingStatus(RecordingState.ERROR, message = error.message))
|
||||
request.onComplete(false, zoomCapabilitiesMap(), error.message)
|
||||
}
|
||||
}
|
||||
|
||||
private fun ProcessCameraProvider.hasCameraSafely(selector: CameraSelector): Boolean {
|
||||
return try {
|
||||
hasCamera(selector)
|
||||
@@ -571,16 +1084,43 @@ class RecordingCameraController(
|
||||
val cameraId: String,
|
||||
val minFocalLength: Float,
|
||||
val horizontalFov: Double,
|
||||
)
|
||||
val zoomRatioRange: ZoomRatioRange?,
|
||||
) {
|
||||
fun description(): String {
|
||||
return "id=$cameraId fov=$horizontalFov focal=$minFocalLength " +
|
||||
"zoomRange=${zoomRatioRange?.description()}"
|
||||
}
|
||||
}
|
||||
|
||||
private data class ZoomRatioRange(
|
||||
val lower: Float,
|
||||
val upper: Float,
|
||||
) {
|
||||
fun contains(ratio: Float): Boolean {
|
||||
return ratio >= lower && ratio <= upper
|
||||
}
|
||||
|
||||
fun description(): String {
|
||||
return "$lower..$upper"
|
||||
}
|
||||
}
|
||||
|
||||
private data class UltraWideCamera(
|
||||
val cameraId: String,
|
||||
val zoomRatio: Float,
|
||||
)
|
||||
|
||||
private data class PendingSegmentSwitch(
|
||||
val targetLensMode: LensMode,
|
||||
val targetRatio: Double,
|
||||
val onComplete: (Boolean, Map<String, Any>, String?) -> Unit,
|
||||
)
|
||||
|
||||
companion object {
|
||||
private const val TAG = "RecordingCamera"
|
||||
private const val DEFAULT_ULTRA_WIDE_ZOOM_RATIO = 0.6f
|
||||
private const val MIN_ULTRA_WIDE_ZOOM_RATIO = 0.3f
|
||||
private const val MAX_ULTRA_WIDE_ZOOM_RATIO = 0.99f
|
||||
// 适度放宽判定宽容度,覆盖更多机型(更小的 FOV/焦距差异也视为超广角)。
|
||||
private const val ULTRA_WIDE_FOV_FACTOR = 1.04
|
||||
private const val ULTRA_WIDE_FOCAL_FACTOR = 0.96
|
||||
|
||||
@@ -4,7 +4,9 @@ import android.content.ContentValues
|
||||
import android.content.Context
|
||||
import android.os.Build
|
||||
import android.provider.MediaStore
|
||||
import androidx.camera.video.MediaStoreOutputOptions
|
||||
import androidx.camera.video.FileOutputOptions
|
||||
import java.io.File
|
||||
import java.io.FileInputStream
|
||||
import java.text.SimpleDateFormat
|
||||
import java.util.Date
|
||||
import java.util.Locale
|
||||
@@ -13,10 +15,37 @@ object RecordingOutputFactory {
|
||||
private const val RELATIVE_PATH = "Movies/飞行极控录像工作台"
|
||||
private const val MIME_TYPE = "video/mp4"
|
||||
|
||||
fun buildMediaStoreOutputOptions(
|
||||
fun buildSegmentOutputOptions(segmentFile: File): FileOutputOptions {
|
||||
return FileOutputOptions.Builder(segmentFile).build()
|
||||
}
|
||||
|
||||
fun createSegmentFile(
|
||||
context: Context,
|
||||
displayName: String?,
|
||||
): MediaStoreOutputOptions {
|
||||
index: Int,
|
||||
): File {
|
||||
val directory = File(context.cacheDir, "recording_segments")
|
||||
if (!directory.exists()) {
|
||||
directory.mkdirs()
|
||||
}
|
||||
val baseName = resolveFileName(displayName).removeSuffix(".mp4")
|
||||
return File(directory, "${baseName}_${System.currentTimeMillis()}_part$index.mp4")
|
||||
}
|
||||
|
||||
fun createMergeFile(context: Context, displayName: String?): File {
|
||||
val directory = File(context.cacheDir, "recording_segments")
|
||||
if (!directory.exists()) {
|
||||
directory.mkdirs()
|
||||
}
|
||||
val baseName = resolveFileName(displayName).removeSuffix(".mp4")
|
||||
return File(directory, "${baseName}_${System.currentTimeMillis()}_merged.mp4")
|
||||
}
|
||||
|
||||
fun publishToMediaStore(
|
||||
context: Context,
|
||||
displayName: String?,
|
||||
sourceFile: File,
|
||||
): String? {
|
||||
val fileName = resolveFileName(displayName)
|
||||
val contentValues =
|
||||
ContentValues().apply {
|
||||
@@ -24,15 +53,42 @@ object RecordingOutputFactory {
|
||||
put(MediaStore.MediaColumns.MIME_TYPE, MIME_TYPE)
|
||||
if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.Q) {
|
||||
put(MediaStore.Video.Media.RELATIVE_PATH, RELATIVE_PATH)
|
||||
put(MediaStore.Video.Media.IS_PENDING, 1)
|
||||
}
|
||||
}
|
||||
|
||||
return MediaStoreOutputOptions.Builder(
|
||||
context.contentResolver,
|
||||
MediaStore.Video.Media.EXTERNAL_CONTENT_URI,
|
||||
)
|
||||
.setContentValues(contentValues)
|
||||
.build()
|
||||
val resolver = context.contentResolver
|
||||
val uri =
|
||||
resolver.insert(MediaStore.Video.Media.EXTERNAL_CONTENT_URI, contentValues)
|
||||
?: return null
|
||||
try {
|
||||
val outputStream =
|
||||
resolver.openOutputStream(uri)
|
||||
?: throw IllegalStateException("Cannot open MediaStore output stream")
|
||||
outputStream.use { output ->
|
||||
FileInputStream(sourceFile).use { input -> input.copyTo(output) }
|
||||
}
|
||||
if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.Q) {
|
||||
val publishedValues =
|
||||
ContentValues().apply { put(MediaStore.Video.Media.IS_PENDING, 0) }
|
||||
resolver.update(uri, publishedValues, null, null)
|
||||
}
|
||||
return uri.toString()
|
||||
} catch (error: Exception) {
|
||||
resolver.delete(uri, null, null)
|
||||
throw error
|
||||
}
|
||||
}
|
||||
|
||||
fun publishPartToMediaStore(
|
||||
context: Context,
|
||||
displayName: String?,
|
||||
sourceFile: File,
|
||||
partIndex: Int,
|
||||
): String? {
|
||||
val resolvedName = resolveFileName(displayName)
|
||||
val partName = resolvedName.replace(".mp4", "_part$partIndex.mp4")
|
||||
return publishToMediaStore(context, partName, sourceFile)
|
||||
}
|
||||
|
||||
fun resolveFileName(displayName: String?): String {
|
||||
|
||||
@@ -196,6 +196,7 @@ class RecordingPlatformHandler(
|
||||
"outputPath" to path,
|
||||
"status" to controller.status.toMap(),
|
||||
"fileSaved" to fileSaved,
|
||||
"segmentOutputPaths" to controller.segmentOutputPaths(),
|
||||
)
|
||||
if (!fileSaved) {
|
||||
payload["fileErrorMessage"] = controller.status.message ?: "保存到文件夹失败"
|
||||
|
||||
@@ -0,0 +1,174 @@
|
||||
package com.dronex.rec.recording
|
||||
|
||||
import android.media.MediaCodec
|
||||
import android.media.MediaExtractor
|
||||
import android.media.MediaFormat
|
||||
import android.media.MediaMuxer
|
||||
import java.io.File
|
||||
import java.io.FileInputStream
|
||||
import java.io.FileOutputStream
|
||||
import java.nio.ByteBuffer
|
||||
|
||||
object RecordingSegmentMuxer {
|
||||
fun mergeOrCopy(
|
||||
segments: List<File>,
|
||||
outputFile: File,
|
||||
) {
|
||||
val validSegments = segments.filter { it.exists() && it.length() > 0L }
|
||||
require(validSegments.isNotEmpty()) { "No recording segments were generated" }
|
||||
if (validSegments.size == 1) {
|
||||
copyFile(validSegments.first(), outputFile)
|
||||
return
|
||||
}
|
||||
|
||||
MediaMuxer(outputFile.absolutePath, MediaMuxer.OutputFormat.MUXER_OUTPUT_MPEG_4).use {
|
||||
muxer ->
|
||||
val firstTracks = readTrackFormats(validSegments.first())
|
||||
val videoTrack = firstTracks.video?.let { muxer.addTrack(it) }
|
||||
val audioTrack = firstTracks.audio?.let { muxer.addTrack(it) }
|
||||
require(videoTrack != null) { "No video track in recording segment" }
|
||||
|
||||
muxer.start()
|
||||
var offsetUs = 0L
|
||||
validSegments.forEach { segment ->
|
||||
val durationUs =
|
||||
copySegmentTracks(
|
||||
segment = segment,
|
||||
muxer = muxer,
|
||||
videoOutputTrack = videoTrack,
|
||||
audioOutputTrack = audioTrack,
|
||||
offsetUs = offsetUs,
|
||||
)
|
||||
offsetUs += durationUs + 1L
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
private fun copyFile(source: File, target: File) {
|
||||
FileInputStream(source).use { input ->
|
||||
FileOutputStream(target).use { output -> input.copyTo(output) }
|
||||
}
|
||||
}
|
||||
|
||||
private fun readTrackFormats(file: File): TrackFormats {
|
||||
val extractor = MediaExtractor()
|
||||
extractor.setDataSource(file.absolutePath)
|
||||
try {
|
||||
var video: MediaFormat? = null
|
||||
var audio: MediaFormat? = null
|
||||
for (index in 0 until extractor.trackCount) {
|
||||
val format = extractor.getTrackFormat(index)
|
||||
val mime = format.getString(MediaFormat.KEY_MIME).orEmpty()
|
||||
when {
|
||||
mime.startsWith("video/") && video == null -> video = format
|
||||
mime.startsWith("audio/") && audio == null -> audio = format
|
||||
}
|
||||
}
|
||||
return TrackFormats(video = video, audio = audio)
|
||||
} finally {
|
||||
extractor.release()
|
||||
}
|
||||
}
|
||||
|
||||
private fun copySegmentTracks(
|
||||
segment: File,
|
||||
muxer: MediaMuxer,
|
||||
videoOutputTrack: Int,
|
||||
audioOutputTrack: Int?,
|
||||
offsetUs: Long,
|
||||
): Long {
|
||||
var segmentDurationUs = 0L
|
||||
segmentDurationUs =
|
||||
maxOf(
|
||||
segmentDurationUs,
|
||||
copyTrack(segment, muxer, "video/", videoOutputTrack, offsetUs),
|
||||
)
|
||||
if (audioOutputTrack != null) {
|
||||
segmentDurationUs =
|
||||
maxOf(
|
||||
segmentDurationUs,
|
||||
copyTrack(segment, muxer, "audio/", audioOutputTrack, offsetUs),
|
||||
)
|
||||
}
|
||||
return segmentDurationUs
|
||||
}
|
||||
|
||||
private fun copyTrack(
|
||||
segment: File,
|
||||
muxer: MediaMuxer,
|
||||
mimePrefix: String,
|
||||
outputTrack: Int,
|
||||
offsetUs: Long,
|
||||
): Long {
|
||||
val extractor = MediaExtractor()
|
||||
extractor.setDataSource(segment.absolutePath)
|
||||
try {
|
||||
val inputTrack = findTrack(extractor, mimePrefix) ?: return 0L
|
||||
extractor.selectTrack(inputTrack)
|
||||
val bufferSize = trackBufferSize(extractor.getTrackFormat(inputTrack))
|
||||
val buffer = ByteBuffer.allocate(bufferSize)
|
||||
val info = MediaCodec.BufferInfo()
|
||||
var firstSampleTimeUs: Long? = null
|
||||
var lastSampleTimeUs = 0L
|
||||
|
||||
while (true) {
|
||||
buffer.clear()
|
||||
val sampleSize = extractor.readSampleData(buffer, 0)
|
||||
if (sampleSize < 0) break
|
||||
|
||||
val sampleTimeUs = extractor.sampleTime
|
||||
val baseTimeUs = firstSampleTimeUs ?: sampleTimeUs.also { firstSampleTimeUs = it }
|
||||
val normalizedTimeUs = (sampleTimeUs - baseTimeUs).coerceAtLeast(0L)
|
||||
info.set(
|
||||
0,
|
||||
sampleSize,
|
||||
offsetUs + normalizedTimeUs,
|
||||
extractor.sampleFlags,
|
||||
)
|
||||
muxer.writeSampleData(outputTrack, buffer, info)
|
||||
lastSampleTimeUs = normalizedTimeUs
|
||||
extractor.advance()
|
||||
}
|
||||
return lastSampleTimeUs
|
||||
} finally {
|
||||
extractor.release()
|
||||
}
|
||||
}
|
||||
|
||||
private fun findTrack(extractor: MediaExtractor, mimePrefix: String): Int? {
|
||||
for (index in 0 until extractor.trackCount) {
|
||||
val mime = extractor.getTrackFormat(index).getString(MediaFormat.KEY_MIME).orEmpty()
|
||||
if (mime.startsWith(mimePrefix)) {
|
||||
return index
|
||||
}
|
||||
}
|
||||
return null
|
||||
}
|
||||
|
||||
private fun trackBufferSize(format: MediaFormat): Int {
|
||||
return if (format.containsKey(MediaFormat.KEY_MAX_INPUT_SIZE)) {
|
||||
format.getInteger(MediaFormat.KEY_MAX_INPUT_SIZE).coerceAtLeast(DEFAULT_BUFFER_SIZE)
|
||||
} else {
|
||||
DEFAULT_BUFFER_SIZE
|
||||
}
|
||||
}
|
||||
|
||||
private data class TrackFormats(
|
||||
val video: MediaFormat?,
|
||||
val audio: MediaFormat?,
|
||||
)
|
||||
|
||||
private const val DEFAULT_BUFFER_SIZE = 2 * 1024 * 1024
|
||||
}
|
||||
|
||||
private inline fun MediaMuxer.use(block: (MediaMuxer) -> Unit) {
|
||||
try {
|
||||
block(this)
|
||||
} finally {
|
||||
try {
|
||||
stop()
|
||||
} catch (_: Exception) {
|
||||
}
|
||||
release()
|
||||
}
|
||||
}
|
||||
Reference in New Issue
Block a user