This CL makes scaling and cropping lazy in AVFoundationVideoCapturer and provides optimized paths for SW and HW encoding. For SW encoding, an efficient NV12 -> I420 cropping and scaling is implemented in CoreVideoFrameBuffer::NativeToI420. For HW encoding, an efficient NV12 -> NV12 cropping and scaling is implemented in CoreVideoFrameBuffer::CropAndScaleTo. The performance improvement over the existing cropping and scaling is that it is now done in one step instead of making an intermediary copy of the Y plane. There might still be room for improvement in the HW path using some HW support. That will be explored in a future CL. BUG=b/30939444 Review-Url: https://codereview.webrtc.org/2394483005 Cr-Commit-Position: refs/heads/master@{#14701}
831 lines
28 KiB
Plaintext
831 lines
28 KiB
Plaintext
/*
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* Copyright 2015 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "avfoundationvideocapturer.h"
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#import <AVFoundation/AVFoundation.h>
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#import <Foundation/Foundation.h>
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#if TARGET_OS_IPHONE
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#import <UIKit/UIKit.h>
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#endif
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#import "RTCDispatcher+Private.h"
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#import "WebRTC/RTCLogging.h"
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#if TARGET_OS_IPHONE
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#import "WebRTC/UIDevice+RTCDevice.h"
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#endif
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#include "libyuv/rotate.h"
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#include "webrtc/base/bind.h"
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#include "webrtc/base/checks.h"
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#include "webrtc/base/logging.h"
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#include "webrtc/base/thread.h"
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#include "webrtc/common_video/include/corevideo_frame_buffer.h"
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#include "webrtc/common_video/rotation.h"
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// TODO(denicija): add support for higher frame rates.
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// See http://crbug/webrtc/6355 for more info.
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static const int kFramesPerSecond = 30;
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static inline BOOL IsMediaSubTypeSupported(FourCharCode mediaSubType) {
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return (mediaSubType == kCVPixelFormatType_420YpCbCr8PlanarFullRange ||
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mediaSubType == kCVPixelFormatType_420YpCbCr8BiPlanarVideoRange);
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}
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static inline BOOL IsFrameRateWithinRange(int fps, AVFrameRateRange *range) {
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return range.minFrameRate <= fps && range.maxFrameRate >= fps;
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}
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// Returns filtered array of device formats based on predefined constraints our
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// stack imposes.
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static NSArray<AVCaptureDeviceFormat *> *GetEligibleDeviceFormats(
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const AVCaptureDevice *device,
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int supportedFps) {
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NSMutableArray<AVCaptureDeviceFormat *> *eligibleDeviceFormats =
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[NSMutableArray array];
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for (AVCaptureDeviceFormat *format in device.formats) {
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// Filter out subTypes that we currently don't support in the stack
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FourCharCode mediaSubType =
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CMFormatDescriptionGetMediaSubType(format.formatDescription);
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if (!IsMediaSubTypeSupported(mediaSubType)) {
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continue;
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}
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// Filter out frame rate ranges that we currently don't support in the stack
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for (AVFrameRateRange *frameRateRange in format.videoSupportedFrameRateRanges) {
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if (IsFrameRateWithinRange(supportedFps, frameRateRange)) {
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[eligibleDeviceFormats addObject:format];
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break;
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}
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}
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}
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return [eligibleDeviceFormats copy];
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}
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// Mapping from cricket::VideoFormat to AVCaptureDeviceFormat.
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static AVCaptureDeviceFormat *GetDeviceFormatForVideoFormat(
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const AVCaptureDevice *device,
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const cricket::VideoFormat &videoFormat) {
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AVCaptureDeviceFormat *desiredDeviceFormat = nil;
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NSArray<AVCaptureDeviceFormat *> *eligibleFormats =
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GetEligibleDeviceFormats(device, videoFormat.framerate());
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for (AVCaptureDeviceFormat *deviceFormat in eligibleFormats) {
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CMVideoDimensions dimension =
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CMVideoFormatDescriptionGetDimensions(deviceFormat.formatDescription);
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FourCharCode mediaSubType =
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CMFormatDescriptionGetMediaSubType(deviceFormat.formatDescription);
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if (videoFormat.width == dimension.width &&
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videoFormat.height == dimension.height) {
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if (mediaSubType == kCVPixelFormatType_420YpCbCr8BiPlanarFullRange) {
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// This is the preferred format so no need to wait for better option.
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return deviceFormat;
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} else {
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// This is good candidate, but let's wait for something better.
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desiredDeviceFormat = deviceFormat;
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}
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}
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}
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return desiredDeviceFormat;
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}
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// Mapping from AVCaptureDeviceFormat to cricket::VideoFormat for given input
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// device.
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static std::set<cricket::VideoFormat> GetSupportedVideoFormatsForDevice(
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AVCaptureDevice *device) {
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std::set<cricket::VideoFormat> supportedFormats;
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NSArray<AVCaptureDeviceFormat *> *eligibleFormats =
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GetEligibleDeviceFormats(device, kFramesPerSecond);
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for (AVCaptureDeviceFormat *deviceFormat in eligibleFormats) {
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CMVideoDimensions dimension =
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CMVideoFormatDescriptionGetDimensions(deviceFormat.formatDescription);
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cricket::VideoFormat format = cricket::VideoFormat(
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dimension.width, dimension.height,
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cricket::VideoFormat::FpsToInterval(kFramesPerSecond),
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cricket::FOURCC_NV12);
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supportedFormats.insert(format);
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}
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return supportedFormats;
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}
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// Sets device format for the provided capture device. Returns YES/NO depending on success.
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// TODO(denicija): When this file is split this static method should be reconsidered.
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// Perhaps adding a category on AVCaptureDevice would be better.
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static BOOL SetFormatForCaptureDevice(AVCaptureDevice *device,
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AVCaptureSession *session,
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const cricket::VideoFormat &format) {
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AVCaptureDeviceFormat *deviceFormat =
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GetDeviceFormatForVideoFormat(device, format);
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const int fps = cricket::VideoFormat::IntervalToFps(format.interval);
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NSError *error = nil;
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BOOL success = YES;
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[session beginConfiguration];
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if ([device lockForConfiguration:&error]) {
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@try {
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device.activeFormat = deviceFormat;
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device.activeVideoMinFrameDuration = CMTimeMake(1, fps);
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} @catch (NSException *exception) {
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RTCLogError(
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@"Failed to set active format!\n User info:%@",
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exception.userInfo);
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success = NO;
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}
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[device unlockForConfiguration];
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} else {
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RTCLogError(
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@"Failed to lock device %@. Error: %@",
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device, error.userInfo);
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success = NO;
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}
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[session commitConfiguration];
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return success;
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}
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// This class used to capture frames using AVFoundation APIs on iOS. It is meant
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// to be owned by an instance of AVFoundationVideoCapturer. The reason for this
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// because other webrtc objects own cricket::VideoCapturer, which is not
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// ref counted. To prevent bad behavior we do not expose this class directly.
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@interface RTCAVFoundationVideoCapturerInternal : NSObject
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<AVCaptureVideoDataOutputSampleBufferDelegate>
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@property(nonatomic, readonly) AVCaptureSession *captureSession;
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@property(nonatomic, readonly) dispatch_queue_t frameQueue;
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@property(nonatomic, readonly) BOOL canUseBackCamera;
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@property(nonatomic, assign) BOOL useBackCamera; // Defaults to NO.
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@property(atomic, assign) BOOL isRunning; // Whether the capture session is running.
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@property(atomic, assign) BOOL hasStarted; // Whether we have an unmatched start.
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// We keep a pointer back to AVFoundationVideoCapturer to make callbacks on it
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// when we receive frames. This is safe because this object should be owned by
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// it.
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- (instancetype)initWithCapturer:(webrtc::AVFoundationVideoCapturer *)capturer;
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- (AVCaptureDevice *)getActiveCaptureDevice;
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- (nullable AVCaptureDevice *)frontCaptureDevice;
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- (nullable AVCaptureDevice *)backCaptureDevice;
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// Starts and stops the capture session asynchronously. We cannot do this
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// synchronously without blocking a WebRTC thread.
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- (void)start;
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- (void)stop;
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@end
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@implementation RTCAVFoundationVideoCapturerInternal {
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// Keep pointers to inputs for convenience.
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AVCaptureDeviceInput *_frontCameraInput;
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AVCaptureDeviceInput *_backCameraInput;
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AVCaptureVideoDataOutput *_videoDataOutput;
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// The cricket::VideoCapturer that owns this class. Should never be NULL.
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webrtc::AVFoundationVideoCapturer *_capturer;
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webrtc::VideoRotation _rotation;
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BOOL _hasRetriedOnFatalError;
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BOOL _isRunning;
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BOOL _hasStarted;
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rtc::CriticalSection _crit;
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}
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@synthesize captureSession = _captureSession;
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@synthesize frameQueue = _frameQueue;
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@synthesize useBackCamera = _useBackCamera;
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@synthesize isRunning = _isRunning;
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@synthesize hasStarted = _hasStarted;
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// This is called from the thread that creates the video source, which is likely
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// the main thread.
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- (instancetype)initWithCapturer:(webrtc::AVFoundationVideoCapturer *)capturer {
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RTC_DCHECK(capturer);
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if (self = [super init]) {
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_capturer = capturer;
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// Create the capture session and all relevant inputs and outputs. We need
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// to do this in init because the application may want the capture session
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// before we start the capturer for e.g. AVCapturePreviewLayer. All objects
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// created here are retained until dealloc and never recreated.
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if (![self setupCaptureSession]) {
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return nil;
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}
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NSNotificationCenter *center = [NSNotificationCenter defaultCenter];
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#if TARGET_OS_IPHONE
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[center addObserver:self
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selector:@selector(deviceOrientationDidChange:)
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name:UIDeviceOrientationDidChangeNotification
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object:nil];
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[center addObserver:self
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selector:@selector(handleCaptureSessionInterruption:)
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name:AVCaptureSessionWasInterruptedNotification
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object:_captureSession];
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[center addObserver:self
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selector:@selector(handleCaptureSessionInterruptionEnded:)
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name:AVCaptureSessionInterruptionEndedNotification
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object:_captureSession];
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[center addObserver:self
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selector:@selector(handleApplicationDidBecomeActive:)
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name:UIApplicationDidBecomeActiveNotification
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object:[UIApplication sharedApplication]];
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#endif
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[center addObserver:self
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selector:@selector(handleCaptureSessionRuntimeError:)
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name:AVCaptureSessionRuntimeErrorNotification
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object:_captureSession];
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[center addObserver:self
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selector:@selector(handleCaptureSessionDidStartRunning:)
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name:AVCaptureSessionDidStartRunningNotification
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object:_captureSession];
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[center addObserver:self
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selector:@selector(handleCaptureSessionDidStopRunning:)
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name:AVCaptureSessionDidStopRunningNotification
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object:_captureSession];
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}
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return self;
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}
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- (void)dealloc {
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RTC_DCHECK(!self.hasStarted);
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[[NSNotificationCenter defaultCenter] removeObserver:self];
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_capturer = nullptr;
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}
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- (AVCaptureSession *)captureSession {
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return _captureSession;
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}
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- (AVCaptureDevice *)getActiveCaptureDevice {
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return self.useBackCamera ? _backCameraInput.device : _frontCameraInput.device;
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}
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- (AVCaptureDevice *)frontCaptureDevice {
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return _frontCameraInput.device;
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}
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- (AVCaptureDevice *)backCaptureDevice {
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return _backCameraInput.device;
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}
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- (dispatch_queue_t)frameQueue {
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if (!_frameQueue) {
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_frameQueue =
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dispatch_queue_create("org.webrtc.avfoundationvideocapturer.video",
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DISPATCH_QUEUE_SERIAL);
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dispatch_set_target_queue(
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_frameQueue,
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dispatch_get_global_queue(DISPATCH_QUEUE_PRIORITY_HIGH, 0));
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}
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return _frameQueue;
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}
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// Called from any thread (likely main thread).
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- (BOOL)canUseBackCamera {
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return _backCameraInput != nil;
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}
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// Called from any thread (likely main thread).
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- (BOOL)useBackCamera {
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@synchronized(self) {
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return _useBackCamera;
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}
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}
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// Called from any thread (likely main thread).
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- (void)setUseBackCamera:(BOOL)useBackCamera {
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if (!self.canUseBackCamera) {
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if (useBackCamera) {
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RTCLogWarning(@"No rear-facing camera exists or it cannot be used;"
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"not switching.");
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}
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return;
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}
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@synchronized(self) {
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if (_useBackCamera == useBackCamera) {
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return;
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}
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_useBackCamera = useBackCamera;
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[self updateSessionInputForUseBackCamera:useBackCamera];
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}
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}
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// Called from WebRTC thread.
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- (void)start {
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if (self.hasStarted) {
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return;
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}
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self.hasStarted = YES;
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[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
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block:^{
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#if TARGET_OS_IPHONE
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// Default to portrait orientation on iPhone. This will be reset in
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// updateOrientation unless orientation is unknown/faceup/facedown.
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_rotation = webrtc::kVideoRotation_90;
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#else
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// No rotation on Mac.
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_rotation = webrtc::kVideoRotation_0;
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#endif
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[self updateOrientation];
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#if TARGET_OS_IPHONE
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[[UIDevice currentDevice] beginGeneratingDeviceOrientationNotifications];
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#endif
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AVCaptureSession *captureSession = self.captureSession;
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[captureSession startRunning];
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}];
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}
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// Called from same thread as start.
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- (void)stop {
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if (!self.hasStarted) {
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return;
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}
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self.hasStarted = NO;
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// Due to this async block, it's possible that the ObjC object outlives the
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// C++ one. In order to not invoke functions on the C++ object, we set
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// hasStarted immediately instead of dispatching it async.
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[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
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block:^{
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[_videoDataOutput setSampleBufferDelegate:nil queue:nullptr];
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[_captureSession stopRunning];
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#if TARGET_OS_IPHONE
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[[UIDevice currentDevice] endGeneratingDeviceOrientationNotifications];
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#endif
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}];
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}
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#pragma mark iOS notifications
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#if TARGET_OS_IPHONE
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- (void)deviceOrientationDidChange:(NSNotification *)notification {
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[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
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block:^{
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[self updateOrientation];
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}];
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}
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#endif
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#pragma mark AVCaptureVideoDataOutputSampleBufferDelegate
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- (void)captureOutput:(AVCaptureOutput *)captureOutput
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didOutputSampleBuffer:(CMSampleBufferRef)sampleBuffer
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fromConnection:(AVCaptureConnection *)connection {
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NSParameterAssert(captureOutput == _videoDataOutput);
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if (!self.hasStarted) {
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return;
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}
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_capturer->CaptureSampleBuffer(sampleBuffer, _rotation);
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}
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- (void)captureOutput:(AVCaptureOutput *)captureOutput
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didDropSampleBuffer:(CMSampleBufferRef)sampleBuffer
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fromConnection:(AVCaptureConnection *)connection {
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RTCLogError(@"Dropped sample buffer.");
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}
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#pragma mark - AVCaptureSession notifications
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- (void)handleCaptureSessionInterruption:(NSNotification *)notification {
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NSString *reasonString = nil;
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#if defined(__IPHONE_9_0) && defined(__IPHONE_OS_VERSION_MAX_ALLOWED) \
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&& __IPHONE_OS_VERSION_MAX_ALLOWED >= __IPHONE_9_0
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NSNumber *reason =
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notification.userInfo[AVCaptureSessionInterruptionReasonKey];
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if (reason) {
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switch (reason.intValue) {
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case AVCaptureSessionInterruptionReasonVideoDeviceNotAvailableInBackground:
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reasonString = @"VideoDeviceNotAvailableInBackground";
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break;
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case AVCaptureSessionInterruptionReasonAudioDeviceInUseByAnotherClient:
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reasonString = @"AudioDeviceInUseByAnotherClient";
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break;
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case AVCaptureSessionInterruptionReasonVideoDeviceInUseByAnotherClient:
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reasonString = @"VideoDeviceInUseByAnotherClient";
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break;
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case AVCaptureSessionInterruptionReasonVideoDeviceNotAvailableWithMultipleForegroundApps:
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reasonString = @"VideoDeviceNotAvailableWithMultipleForegroundApps";
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break;
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}
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}
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#endif
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RTCLog(@"Capture session interrupted: %@", reasonString);
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// TODO(tkchin): Handle this case.
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}
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- (void)handleCaptureSessionInterruptionEnded:(NSNotification *)notification {
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RTCLog(@"Capture session interruption ended.");
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// TODO(tkchin): Handle this case.
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}
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- (void)handleCaptureSessionRuntimeError:(NSNotification *)notification {
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NSError *error =
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[notification.userInfo objectForKey:AVCaptureSessionErrorKey];
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RTCLogError(@"Capture session runtime error: %@", error);
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[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
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block:^{
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#if TARGET_OS_IPHONE
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if (error.code == AVErrorMediaServicesWereReset) {
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[self handleNonFatalError];
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} else {
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[self handleFatalError];
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}
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#else
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[self handleFatalError];
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#endif
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}];
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}
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- (void)handleCaptureSessionDidStartRunning:(NSNotification *)notification {
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RTCLog(@"Capture session started.");
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self.isRunning = YES;
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[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
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block:^{
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// If we successfully restarted after an unknown error, allow future
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// retries on fatal errors.
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_hasRetriedOnFatalError = NO;
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}];
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}
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- (void)handleCaptureSessionDidStopRunning:(NSNotification *)notification {
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RTCLog(@"Capture session stopped.");
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self.isRunning = NO;
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}
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- (void)handleFatalError {
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[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
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block:^{
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if (!_hasRetriedOnFatalError) {
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RTCLogWarning(@"Attempting to recover from fatal capture error.");
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[self handleNonFatalError];
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_hasRetriedOnFatalError = YES;
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} else {
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RTCLogError(@"Previous fatal error recovery failed.");
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}
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}];
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}
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- (void)handleNonFatalError {
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[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
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block:^{
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if (self.hasStarted) {
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RTCLog(@"Restarting capture session after error.");
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[self.captureSession startRunning];
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}
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}];
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}
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#if TARGET_OS_IPHONE
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#pragma mark - UIApplication notifications
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- (void)handleApplicationDidBecomeActive:(NSNotification *)notification {
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[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
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block:^{
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if (self.hasStarted && !self.captureSession.isRunning) {
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RTCLog(@"Restarting capture session on active.");
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[self.captureSession startRunning];
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}
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}];
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}
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#endif // TARGET_OS_IPHONE
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#pragma mark - Private
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|
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- (BOOL)setupCaptureSession {
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AVCaptureSession *captureSession = [[AVCaptureSession alloc] init];
|
|
#if defined(WEBRTC_IOS)
|
|
captureSession.usesApplicationAudioSession = NO;
|
|
#endif
|
|
// Add the output.
|
|
AVCaptureVideoDataOutput *videoDataOutput = [self videoDataOutput];
|
|
if (![captureSession canAddOutput:videoDataOutput]) {
|
|
RTCLogError(@"Video data output unsupported.");
|
|
return NO;
|
|
}
|
|
[captureSession addOutput:videoDataOutput];
|
|
|
|
// Get the front and back cameras. If there isn't a front camera
|
|
// give up.
|
|
AVCaptureDeviceInput *frontCameraInput = [self frontCameraInput];
|
|
AVCaptureDeviceInput *backCameraInput = [self backCameraInput];
|
|
if (!frontCameraInput) {
|
|
RTCLogError(@"No front camera for capture session.");
|
|
return NO;
|
|
}
|
|
|
|
// Add the inputs.
|
|
if (![captureSession canAddInput:frontCameraInput] ||
|
|
(backCameraInput && ![captureSession canAddInput:backCameraInput])) {
|
|
RTCLogError(@"Session does not support capture inputs.");
|
|
return NO;
|
|
}
|
|
AVCaptureDeviceInput *input = self.useBackCamera ?
|
|
backCameraInput : frontCameraInput;
|
|
[captureSession addInput:input];
|
|
|
|
_captureSession = captureSession;
|
|
return YES;
|
|
}
|
|
|
|
- (AVCaptureVideoDataOutput *)videoDataOutput {
|
|
if (!_videoDataOutput) {
|
|
// Make the capturer output NV12. Ideally we want I420 but that's not
|
|
// currently supported on iPhone / iPad.
|
|
AVCaptureVideoDataOutput *videoDataOutput =
|
|
[[AVCaptureVideoDataOutput alloc] init];
|
|
videoDataOutput.videoSettings = @{
|
|
(NSString *)kCVPixelBufferPixelFormatTypeKey :
|
|
@(kCVPixelFormatType_420YpCbCr8BiPlanarFullRange)
|
|
};
|
|
videoDataOutput.alwaysDiscardsLateVideoFrames = NO;
|
|
[videoDataOutput setSampleBufferDelegate:self queue:self.frameQueue];
|
|
_videoDataOutput = videoDataOutput;
|
|
}
|
|
return _videoDataOutput;
|
|
}
|
|
|
|
- (AVCaptureDevice *)videoCaptureDeviceForPosition:
|
|
(AVCaptureDevicePosition)position {
|
|
for (AVCaptureDevice *captureDevice in
|
|
[AVCaptureDevice devicesWithMediaType:AVMediaTypeVideo]) {
|
|
if (captureDevice.position == position) {
|
|
return captureDevice;
|
|
}
|
|
}
|
|
return nil;
|
|
}
|
|
|
|
- (AVCaptureDeviceInput *)frontCameraInput {
|
|
if (!_frontCameraInput) {
|
|
#if TARGET_OS_IPHONE
|
|
AVCaptureDevice *frontCameraDevice =
|
|
[self videoCaptureDeviceForPosition:AVCaptureDevicePositionFront];
|
|
#else
|
|
AVCaptureDevice *frontCameraDevice =
|
|
[AVCaptureDevice defaultDeviceWithMediaType:AVMediaTypeVideo];
|
|
#endif
|
|
if (!frontCameraDevice) {
|
|
RTCLogWarning(@"Failed to find front capture device.");
|
|
return nil;
|
|
}
|
|
NSError *error = nil;
|
|
AVCaptureDeviceInput *frontCameraInput =
|
|
[AVCaptureDeviceInput deviceInputWithDevice:frontCameraDevice
|
|
error:&error];
|
|
if (!frontCameraInput) {
|
|
RTCLogError(@"Failed to create front camera input: %@",
|
|
error.localizedDescription);
|
|
return nil;
|
|
}
|
|
_frontCameraInput = frontCameraInput;
|
|
}
|
|
return _frontCameraInput;
|
|
}
|
|
|
|
- (AVCaptureDeviceInput *)backCameraInput {
|
|
if (!_backCameraInput) {
|
|
AVCaptureDevice *backCameraDevice =
|
|
[self videoCaptureDeviceForPosition:AVCaptureDevicePositionBack];
|
|
if (!backCameraDevice) {
|
|
RTCLogWarning(@"Failed to find front capture device.");
|
|
return nil;
|
|
}
|
|
NSError *error = nil;
|
|
AVCaptureDeviceInput *backCameraInput =
|
|
[AVCaptureDeviceInput deviceInputWithDevice:backCameraDevice
|
|
error:&error];
|
|
if (!backCameraInput) {
|
|
RTCLogError(@"Failed to create front camera input: %@",
|
|
error.localizedDescription);
|
|
return nil;
|
|
}
|
|
_backCameraInput = backCameraInput;
|
|
}
|
|
return _backCameraInput;
|
|
}
|
|
|
|
// Called from capture session queue.
|
|
- (void)updateOrientation {
|
|
#if TARGET_OS_IPHONE
|
|
switch ([UIDevice currentDevice].orientation) {
|
|
case UIDeviceOrientationPortrait:
|
|
_rotation = webrtc::kVideoRotation_90;
|
|
break;
|
|
case UIDeviceOrientationPortraitUpsideDown:
|
|
_rotation = webrtc::kVideoRotation_270;
|
|
break;
|
|
case UIDeviceOrientationLandscapeLeft:
|
|
_rotation = _capturer->GetUseBackCamera() ? webrtc::kVideoRotation_0
|
|
: webrtc::kVideoRotation_180;
|
|
break;
|
|
case UIDeviceOrientationLandscapeRight:
|
|
_rotation = _capturer->GetUseBackCamera() ? webrtc::kVideoRotation_180
|
|
: webrtc::kVideoRotation_0;
|
|
break;
|
|
case UIDeviceOrientationFaceUp:
|
|
case UIDeviceOrientationFaceDown:
|
|
case UIDeviceOrientationUnknown:
|
|
// Ignore.
|
|
break;
|
|
}
|
|
#endif
|
|
}
|
|
|
|
// Update the current session input to match what's stored in _useBackCamera.
|
|
- (void)updateSessionInputForUseBackCamera:(BOOL)useBackCamera {
|
|
[RTCDispatcher dispatchAsyncOnType:RTCDispatcherTypeCaptureSession
|
|
block:^{
|
|
[_captureSession beginConfiguration];
|
|
AVCaptureDeviceInput *oldInput = _backCameraInput;
|
|
AVCaptureDeviceInput *newInput = _frontCameraInput;
|
|
if (useBackCamera) {
|
|
oldInput = _frontCameraInput;
|
|
newInput = _backCameraInput;
|
|
}
|
|
if (oldInput) {
|
|
// Ok to remove this even if it's not attached. Will be no-op.
|
|
[_captureSession removeInput:oldInput];
|
|
}
|
|
if (newInput) {
|
|
[_captureSession addInput:newInput];
|
|
}
|
|
[self updateOrientation];
|
|
AVCaptureDevice *newDevice = newInput.device;
|
|
const cricket::VideoFormat *format = _capturer->GetCaptureFormat();
|
|
SetFormatForCaptureDevice(newDevice, _captureSession, *format);
|
|
[_captureSession commitConfiguration];
|
|
}];
|
|
}
|
|
|
|
@end
|
|
|
|
namespace webrtc {
|
|
|
|
enum AVFoundationVideoCapturerMessageType : uint32_t {
|
|
kMessageTypeFrame,
|
|
};
|
|
|
|
AVFoundationVideoCapturer::AVFoundationVideoCapturer() : _capturer(nil) {
|
|
_capturer =
|
|
[[RTCAVFoundationVideoCapturerInternal alloc] initWithCapturer:this];
|
|
|
|
std::set<cricket::VideoFormat> front_camera_video_formats =
|
|
GetSupportedVideoFormatsForDevice([_capturer frontCaptureDevice]);
|
|
|
|
std::set<cricket::VideoFormat> back_camera_video_formats =
|
|
GetSupportedVideoFormatsForDevice([_capturer backCaptureDevice]);
|
|
|
|
std::vector<cricket::VideoFormat> intersection_video_formats;
|
|
if (back_camera_video_formats.empty()) {
|
|
intersection_video_formats.assign(front_camera_video_formats.begin(),
|
|
front_camera_video_formats.end());
|
|
|
|
} else if (front_camera_video_formats.empty()) {
|
|
intersection_video_formats.assign(back_camera_video_formats.begin(),
|
|
back_camera_video_formats.end());
|
|
} else {
|
|
std::set_intersection(
|
|
front_camera_video_formats.begin(), front_camera_video_formats.end(),
|
|
back_camera_video_formats.begin(), back_camera_video_formats.end(),
|
|
std::back_inserter(intersection_video_formats));
|
|
}
|
|
SetSupportedFormats(intersection_video_formats);
|
|
}
|
|
|
|
AVFoundationVideoCapturer::~AVFoundationVideoCapturer() {
|
|
_capturer = nil;
|
|
}
|
|
|
|
cricket::CaptureState AVFoundationVideoCapturer::Start(
|
|
const cricket::VideoFormat& format) {
|
|
if (!_capturer) {
|
|
LOG(LS_ERROR) << "Failed to create AVFoundation capturer.";
|
|
return cricket::CaptureState::CS_FAILED;
|
|
}
|
|
if (_capturer.isRunning) {
|
|
LOG(LS_ERROR) << "The capturer is already running.";
|
|
return cricket::CaptureState::CS_FAILED;
|
|
}
|
|
|
|
AVCaptureDevice* device = [_capturer getActiveCaptureDevice];
|
|
AVCaptureSession* session = _capturer.captureSession;
|
|
|
|
if (!SetFormatForCaptureDevice(device, session, format)) {
|
|
return cricket::CaptureState::CS_FAILED;
|
|
}
|
|
|
|
SetCaptureFormat(&format);
|
|
// This isn't super accurate because it takes a while for the AVCaptureSession
|
|
// to spin up, and this call returns async.
|
|
// TODO(tkchin): make this better.
|
|
[_capturer start];
|
|
SetCaptureState(cricket::CaptureState::CS_RUNNING);
|
|
|
|
return cricket::CaptureState::CS_STARTING;
|
|
}
|
|
|
|
void AVFoundationVideoCapturer::Stop() {
|
|
[_capturer stop];
|
|
SetCaptureFormat(NULL);
|
|
}
|
|
|
|
bool AVFoundationVideoCapturer::IsRunning() {
|
|
return _capturer.isRunning;
|
|
}
|
|
|
|
AVCaptureSession* AVFoundationVideoCapturer::GetCaptureSession() {
|
|
return _capturer.captureSession;
|
|
}
|
|
|
|
bool AVFoundationVideoCapturer::CanUseBackCamera() const {
|
|
return _capturer.canUseBackCamera;
|
|
}
|
|
|
|
void AVFoundationVideoCapturer::SetUseBackCamera(bool useBackCamera) {
|
|
_capturer.useBackCamera = useBackCamera;
|
|
}
|
|
|
|
bool AVFoundationVideoCapturer::GetUseBackCamera() const {
|
|
return _capturer.useBackCamera;
|
|
}
|
|
|
|
void AVFoundationVideoCapturer::CaptureSampleBuffer(
|
|
CMSampleBufferRef sample_buffer, VideoRotation rotation) {
|
|
if (CMSampleBufferGetNumSamples(sample_buffer) != 1 ||
|
|
!CMSampleBufferIsValid(sample_buffer) ||
|
|
!CMSampleBufferDataIsReady(sample_buffer)) {
|
|
return;
|
|
}
|
|
|
|
CVImageBufferRef image_buffer = CMSampleBufferGetImageBuffer(sample_buffer);
|
|
if (image_buffer == NULL) {
|
|
return;
|
|
}
|
|
|
|
const int captured_width = CVPixelBufferGetWidth(image_buffer);
|
|
const int captured_height = CVPixelBufferGetHeight(image_buffer);
|
|
|
|
int adapted_width;
|
|
int adapted_height;
|
|
int crop_width;
|
|
int crop_height;
|
|
int crop_x;
|
|
int crop_y;
|
|
int64_t translated_camera_time_us;
|
|
|
|
if (!AdaptFrame(captured_width, captured_height,
|
|
rtc::TimeNanos() / rtc::kNumNanosecsPerMicrosec,
|
|
rtc::TimeMicros(), &adapted_width, &adapted_height,
|
|
&crop_width, &crop_height, &crop_x, &crop_y,
|
|
&translated_camera_time_us)) {
|
|
return;
|
|
}
|
|
|
|
rtc::scoped_refptr<VideoFrameBuffer> buffer =
|
|
new rtc::RefCountedObject<CoreVideoFrameBuffer>(
|
|
image_buffer,
|
|
adapted_width, adapted_height,
|
|
crop_width, crop_height,
|
|
crop_x, crop_y);
|
|
|
|
// Applying rotation is only supported for legacy reasons and performance is
|
|
// not critical here.
|
|
if (apply_rotation() && rotation != kVideoRotation_0) {
|
|
buffer = buffer->NativeToI420Buffer();
|
|
rtc::scoped_refptr<I420Buffer> rotated_buffer =
|
|
(rotation == kVideoRotation_180)
|
|
? I420Buffer::Create(adapted_width, adapted_height)
|
|
: I420Buffer::Create(adapted_height, adapted_width);
|
|
libyuv::I420Rotate(
|
|
buffer->DataY(), buffer->StrideY(),
|
|
buffer->DataU(), buffer->StrideU(),
|
|
buffer->DataV(), buffer->StrideV(),
|
|
rotated_buffer->MutableDataY(), rotated_buffer->StrideY(),
|
|
rotated_buffer->MutableDataU(), rotated_buffer->StrideU(),
|
|
rotated_buffer->MutableDataV(), rotated_buffer->StrideV(),
|
|
buffer->width(), buffer->height(),
|
|
static_cast<libyuv::RotationMode>(rotation));
|
|
buffer = rotated_buffer;
|
|
}
|
|
|
|
OnFrame(webrtc::VideoFrame(buffer, rotation, translated_camera_time_us),
|
|
captured_width, captured_height);
|
|
}
|
|
|
|
} // namespace webrtc
|