
Extract sigslot into separate target and move it to proper third_party directory. Bug: webrtc:8366 Change-Id: Id2e0712bd020bfad811947803c94553dce06d976 Reviewed-on: https://webrtc-review.googlesource.com/84141 Reviewed-by: Mirko Bonadei <mbonadei@webrtc.org> Reviewed-by: Harald Alvestrand <hta@webrtc.org> Reviewed-by: Niklas Enbom <niklas.enbom@webrtc.org> Commit-Queue: Artem Titov <titovartem@webrtc.org> Cr-Commit-Position: refs/heads/master@{#24099}
282 lines
12 KiB
C++
282 lines
12 KiB
C++
/*
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* Copyright (c) 2010 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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// Declaration of abstract class VideoCapturer
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#ifndef MEDIA_BASE_VIDEOCAPTURER_H_
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#define MEDIA_BASE_VIDEOCAPTURER_H_
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#include <stdint.h>
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#include <algorithm>
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#include <memory>
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#include <string>
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#include <vector>
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#include "api/video/video_source_interface.h"
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#include "media/base/videoadapter.h"
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#include "media/base/videobroadcaster.h"
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#include "media/base/videocommon.h"
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#include "rtc_base/constructormagic.h"
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#include "rtc_base/criticalsection.h"
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#include "rtc_base/third_party/sigslot/sigslot.h"
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#include "rtc_base/thread_checker.h"
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#include "rtc_base/timestampaligner.h"
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namespace webrtc {
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class VideoFrame;
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}
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namespace cricket {
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// Current state of the capturer.
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enum CaptureState {
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CS_STOPPED, // The capturer has been stopped or hasn't started yet.
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CS_STARTING, // The capturer is in the process of starting. Note, it may
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// still fail to start.
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CS_RUNNING, // The capturer has been started successfully and is now
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// capturing.
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CS_FAILED, // The capturer failed to start.
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};
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// VideoCapturer is an abstract class that defines the interfaces for video
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// capturing. The subclasses implement the video capturer for various types of
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// capturers and various platforms.
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//
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// The captured frames may need to be adapted (for example, cropping).
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// Video adaptation is built into and enabled by default. After a frame has
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// been captured from the device, it is sent to the video adapter, then out to
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// the sinks.
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//
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// Programming model:
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// Create an object of a subclass of VideoCapturer
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// Initialize
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// SignalStateChange.connect()
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// AddOrUpdateSink()
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// Find the capture format for Start() by either calling GetSupportedFormats()
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// and selecting one of the supported or calling GetBestCaptureFormat().
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// video_adapter()->OnOutputFormatRequest(desired_encoding_format)
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// Start()
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// GetCaptureFormat() optionally
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// Stop()
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//
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// Assumption:
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// The Start() and Stop() methods are called by a single thread (E.g., the
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// media engine thread). Hence, the VideoCapture subclasses dont need to be
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// thread safe.
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//
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class VideoCapturer : public sigslot::has_slots<>,
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public rtc::VideoSourceInterface<webrtc::VideoFrame> {
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public:
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VideoCapturer();
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~VideoCapturer() override;
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// Gets the id of the underlying device, which is available after the capturer
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// is initialized. Can be used to determine if two capturers reference the
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// same device.
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const std::string& GetId() const { return id_; }
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// Get the capture formats supported by the video capturer. The supported
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// formats are non empty after the device has been opened successfully.
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const std::vector<VideoFormat>* GetSupportedFormats() const;
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// Get the best capture format for the desired format. The best format is the
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// same as one of the supported formats except that the frame interval may be
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// different. If the application asks for 16x9 and the camera does not support
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// 16x9 HD or the application asks for 16x10, we find the closest 4x3 and then
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// crop; Otherwise, we find what the application asks for. Note that we assume
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// that for HD, the desired format is always 16x9. The subclasses can override
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// the default implementation.
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// Parameters
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// desired: the input desired format. If desired.fourcc is not kAnyFourcc,
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// the best capture format has the exactly same fourcc. Otherwise,
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// the best capture format uses a fourcc in GetPreferredFourccs().
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// best_format: the output of the best capture format.
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// Return false if there is no such a best format, that is, the desired format
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// is not supported.
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virtual bool GetBestCaptureFormat(const VideoFormat& desired,
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VideoFormat* best_format);
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// TODO(hellner): deprecate (make private) the Start API in favor of this one.
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// Also remove CS_STARTING as it is implied by the return
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// value of StartCapturing().
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bool StartCapturing(const VideoFormat& capture_format);
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// Start the video capturer with the specified capture format.
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// Parameter
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// capture_format: The caller got this parameter by either calling
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// GetSupportedFormats() and selecting one of the supported
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// or calling GetBestCaptureFormat().
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// Return
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// CS_STARTING: The capturer is trying to start. Success or failure will
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// be notified via the |SignalStateChange| callback.
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// CS_RUNNING: if the capturer is started and capturing.
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// CS_FAILED: if the capturer failes to start..
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// CS_NO_DEVICE: if the capturer has no device and fails to start.
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virtual CaptureState Start(const VideoFormat& capture_format) = 0;
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// Get the current capture format, which is set by the Start() call.
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// Note that the width and height of the captured frames may differ from the
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// capture format. For example, the capture format is HD but the captured
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// frames may be smaller than HD.
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const VideoFormat* GetCaptureFormat() const { return capture_format_.get(); }
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// Stop the video capturer.
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virtual void Stop() = 0;
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// Check if the video capturer is running.
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virtual bool IsRunning() = 0;
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CaptureState capture_state() const { return capture_state_; }
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virtual bool apply_rotation();
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// Returns true if the capturer is screencasting. This can be used to
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// implement screencast specific behavior.
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virtual bool IsScreencast() const = 0;
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// Caps the VideoCapturer's format according to max_format. It can e.g. be
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// used to prevent cameras from capturing at a resolution or framerate that
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// the capturer is capable of but not performing satisfactorily at.
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// The capping is an upper bound for each component of the capturing format.
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// The fourcc component is ignored.
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void ConstrainSupportedFormats(const VideoFormat& max_format);
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void set_enable_camera_list(bool enable_camera_list) {
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enable_camera_list_ = enable_camera_list;
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}
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bool enable_camera_list() { return enable_camera_list_; }
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// Signal all capture state changes that are not a direct result of calling
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// Start().
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sigslot::signal2<VideoCapturer*, CaptureState> SignalStateChange;
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// If true, run video adaptation. By default, video adaptation is enabled
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// and users must call video_adapter()->OnOutputFormatRequest()
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// to receive frames.
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bool enable_video_adapter() const { return enable_video_adapter_; }
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void set_enable_video_adapter(bool enable_video_adapter) {
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enable_video_adapter_ = enable_video_adapter;
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}
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bool GetInputSize(int* width, int* height);
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// Implements VideoSourceInterface
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void AddOrUpdateSink(rtc::VideoSinkInterface<webrtc::VideoFrame>* sink,
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const rtc::VideoSinkWants& wants) override;
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void RemoveSink(rtc::VideoSinkInterface<webrtc::VideoFrame>* sink) override;
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protected:
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// OnSinkWantsChanged can be overridden to change the default behavior
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// when a sink changes its VideoSinkWants by calling AddOrUpdateSink.
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virtual void OnSinkWantsChanged(const rtc::VideoSinkWants& wants);
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// Reports the appropriate frame size after adaptation. Returns true
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// if a frame is wanted. Returns false if there are no interested
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// sinks, or if the VideoAdapter decides to drop the frame.
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// This function also implements timestamp translation/filtering.
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// |camera_time_ns| is the camera's timestamp for the captured
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// frame; it is expected to have good accuracy, but it may use an
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// arbitrary epoch and a small possibly free-running with a frequency
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// slightly different from the system clock. |system_time_us| is the
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// monotonic system time (in the same scale as rtc::TimeMicros) when
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// the frame was captured; the application is expected to read the
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// system time as soon as possible after frame capture, but it may
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// suffer scheduling jitter or poor system clock resolution. The
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// output |translated_camera_time_us| is a combined timestamp,
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// taking advantage of the supposedly higher accuracy in the camera
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// timestamp, but using the same epoch and frequency as system time.
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bool AdaptFrame(int width,
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int height,
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int64_t camera_time_us,
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int64_t system_time_us,
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int* out_width,
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int* out_height,
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int* crop_width,
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int* crop_height,
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int* crop_x,
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int* crop_y,
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int64_t* translated_camera_time_us);
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// Called when a frame has been captured and converted to a
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// VideoFrame. OnFrame can be called directly by an implementation
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// that does not use SignalFrameCaptured or OnFrameCaptured. The
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// orig_width and orig_height are used only to produce stats.
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void OnFrame(const webrtc::VideoFrame& frame,
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int orig_width,
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int orig_height);
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VideoAdapter* video_adapter() { return &video_adapter_; }
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void SetCaptureState(CaptureState state);
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// subclasses override this virtual method to provide a vector of fourccs, in
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// order of preference, that are expected by the media engine.
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virtual bool GetPreferredFourccs(std::vector<uint32_t>* fourccs) = 0;
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// mutators to set private attributes
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void SetId(const std::string& id) { id_ = id; }
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void SetCaptureFormat(const VideoFormat* format) {
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capture_format_.reset(format ? new VideoFormat(*format) : NULL);
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}
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void SetSupportedFormats(const std::vector<VideoFormat>& formats);
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private:
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void Construct();
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// Get the distance between the desired format and the supported format.
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// Return the max distance if they mismatch. See the implementation for
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// details.
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int64_t GetFormatDistance(const VideoFormat& desired,
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const VideoFormat& supported);
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// Updates filtered_supported_formats_ so that it contains the formats in
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// supported_formats_ that fulfill all applied restrictions.
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void UpdateFilteredSupportedFormats();
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// Returns true if format doesn't fulfill all applied restrictions.
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bool ShouldFilterFormat(const VideoFormat& format) const;
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void UpdateInputSize(int width, int height);
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rtc::ThreadChecker thread_checker_;
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std::string id_;
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CaptureState capture_state_;
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std::unique_ptr<VideoFormat> capture_format_;
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std::vector<VideoFormat> supported_formats_;
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std::unique_ptr<VideoFormat> max_format_;
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std::vector<VideoFormat> filtered_supported_formats_;
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bool enable_camera_list_;
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int scaled_width_; // Current output size from ComputeScale.
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int scaled_height_;
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rtc::VideoBroadcaster broadcaster_;
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bool enable_video_adapter_;
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VideoAdapter video_adapter_;
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rtc::CriticalSection frame_stats_crit_;
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// The captured frame size before potential adapation.
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bool input_size_valid_ RTC_GUARDED_BY(frame_stats_crit_) = false;
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int input_width_ RTC_GUARDED_BY(frame_stats_crit_);
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int input_height_ RTC_GUARDED_BY(frame_stats_crit_);
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// Whether capturer should apply rotation to the frame before
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// passing it on to the registered sinks.
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bool apply_rotation_;
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// State for the timestamp translation.
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rtc::TimestampAligner timestamp_aligner_;
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RTC_DISALLOW_COPY_AND_ASSIGN(VideoCapturer);
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};
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} // namespace cricket
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#endif // MEDIA_BASE_VIDEOCAPTURER_H_
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