2020-08-14 16:58:22 +00:00
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/*
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* Copyright (c) 2014 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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#ifndef API_VIDEO_VIDEO_FRAME_H_
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#define API_VIDEO_VIDEO_FRAME_H_
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#include <stdint.h>
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#include <utility>
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#include "absl/types/optional.h"
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#include "api/rtp_packet_infos.h"
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#include "api/scoped_refptr.h"
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#include "api/video/color_space.h"
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#include "api/video/hdr_metadata.h"
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#include "api/video/video_frame_buffer.h"
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#include "api/video/video_rotation.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/system/rtc_export.h"
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namespace webrtc {
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class RTC_EXPORT VideoFrame {
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public:
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struct RTC_EXPORT UpdateRect {
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int offset_x;
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int offset_y;
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int width;
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int height;
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// Makes this UpdateRect a bounding box of this and other rect.
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void Union(const UpdateRect& other);
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// Makes this UpdateRect an intersection of this and other rect.
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void Intersect(const UpdateRect& other);
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// Sets everything to 0, making this UpdateRect a zero-size (empty) update.
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void MakeEmptyUpdate();
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bool IsEmpty() const;
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// Per-member equality check. Empty rectangles with different offsets would
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// be considered different.
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bool operator==(const UpdateRect& other) const {
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return other.offset_x == offset_x && other.offset_y == offset_y &&
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other.width == width && other.height == height;
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}
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bool operator!=(const UpdateRect& other) const { return !(*this == other); }
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// Scales update_rect given original frame dimensions.
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// Cropping is applied first, then rect is scaled down.
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// Update rect is snapped to 2x2 grid due to possible UV subsampling and
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// then expanded by additional 2 pixels in each direction to accommodate any
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// possible scaling artifacts.
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// Note, close but not equal update_rects on original frame may result in
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// the same scaled update rects.
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UpdateRect ScaleWithFrame(int frame_width,
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int frame_height,
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int crop_x,
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int crop_y,
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int crop_width,
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int crop_height,
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int scaled_width,
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int scaled_height) const;
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};
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struct RTC_EXPORT ProcessingTime {
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TimeDelta Elapsed() const { return finish - start; }
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Timestamp start;
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Timestamp finish;
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};
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// Preferred way of building VideoFrame objects.
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class RTC_EXPORT Builder {
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public:
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Builder();
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~Builder();
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VideoFrame build();
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Builder& set_video_frame_buffer(
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const rtc::scoped_refptr<VideoFrameBuffer>& buffer);
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Builder& set_timestamp_ms(int64_t timestamp_ms);
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Builder& set_timestamp_us(int64_t timestamp_us);
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Builder& set_timestamp_rtp(uint32_t timestamp_rtp);
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Builder& set_ntp_time_ms(int64_t ntp_time_ms);
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Builder& set_rotation(VideoRotation rotation);
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Builder& set_color_space(const absl::optional<ColorSpace>& color_space);
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Builder& set_color_space(const ColorSpace* color_space);
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Builder& set_id(uint16_t id);
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Builder& set_update_rect(const absl::optional<UpdateRect>& update_rect);
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Builder& set_packet_infos(RtpPacketInfos packet_infos);
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private:
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uint16_t id_ = 0;
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rtc::scoped_refptr<webrtc::VideoFrameBuffer> video_frame_buffer_;
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int64_t timestamp_us_ = 0;
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uint32_t timestamp_rtp_ = 0;
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int64_t ntp_time_ms_ = 0;
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VideoRotation rotation_ = kVideoRotation_0;
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absl::optional<ColorSpace> color_space_;
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absl::optional<UpdateRect> update_rect_;
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RtpPacketInfos packet_infos_;
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};
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// To be deprecated. Migrate all use to Builder.
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VideoFrame(const rtc::scoped_refptr<VideoFrameBuffer>& buffer,
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webrtc::VideoRotation rotation,
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int64_t timestamp_us);
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VideoFrame(const rtc::scoped_refptr<VideoFrameBuffer>& buffer,
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uint32_t timestamp_rtp,
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int64_t render_time_ms,
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VideoRotation rotation);
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~VideoFrame();
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// Support move and copy.
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VideoFrame(const VideoFrame&);
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VideoFrame(VideoFrame&&);
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VideoFrame& operator=(const VideoFrame&);
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VideoFrame& operator=(VideoFrame&&);
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// Get frame width.
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int width() const;
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// Get frame height.
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int height() const;
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// Get frame size in pixels.
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uint32_t size() const;
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2021-06-25 00:43:10 +00:00
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// Get frame ID. Returns 0 if ID is not set. Not guaranteed to be transferred
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// from the sender to the receiver, but preserved on the sender side. The id
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// should be propagated between all frame modifications during its lifetime
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// from capturing to sending as encoded image. It is intended to be unique
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2021-06-25 00:43:10 +00:00
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// over a time window of a few minutes for the peer connection to which the
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// corresponding video stream belongs to.
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uint16_t id() const { return id_; }
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void set_id(uint16_t id) { id_ = id; }
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// System monotonic clock, same timebase as rtc::TimeMicros().
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int64_t timestamp_us() const { return timestamp_us_; }
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void set_timestamp_us(int64_t timestamp_us) { timestamp_us_ = timestamp_us; }
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// TODO(nisse): After the cricket::VideoFrame and webrtc::VideoFrame
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// merge, timestamps other than timestamp_us will likely be
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// deprecated.
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// Set frame timestamp (90kHz).
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void set_timestamp(uint32_t timestamp) { timestamp_rtp_ = timestamp; }
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// Get frame timestamp (90kHz).
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uint32_t timestamp() const { return timestamp_rtp_; }
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// For now, transport_frame_id and rtp timestamp are the same.
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// TODO(nisse): Must be handled differently for QUIC.
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uint32_t transport_frame_id() const { return timestamp(); }
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// Set capture ntp time in milliseconds.
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void set_ntp_time_ms(int64_t ntp_time_ms) { ntp_time_ms_ = ntp_time_ms; }
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// Get capture ntp time in milliseconds.
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int64_t ntp_time_ms() const { return ntp_time_ms_; }
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// Naming convention for Coordination of Video Orientation. Please see
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// http://www.etsi.org/deliver/etsi_ts/126100_126199/126114/12.07.00_60/ts_126114v120700p.pdf
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//
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// "pending rotation" or "pending" = a frame that has a VideoRotation > 0.
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//
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// "not pending" = a frame that has a VideoRotation == 0.
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//
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// "apply rotation" = modify a frame from being "pending" to being "not
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// pending" rotation (a no-op for "unrotated").
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//
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VideoRotation rotation() const { return rotation_; }
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void set_rotation(VideoRotation rotation) { rotation_ = rotation; }
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// Get color space when available.
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const absl::optional<ColorSpace>& color_space() const { return color_space_; }
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void set_color_space(const absl::optional<ColorSpace>& color_space) {
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color_space_ = color_space;
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}
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2020-12-23 07:48:30 +00:00
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// max_composition_delay_in_frames() is used in an experiment of a low-latency
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// renderer algorithm see crbug.com/1138888.
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absl::optional<int32_t> max_composition_delay_in_frames() const {
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return max_composition_delay_in_frames_;
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}
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void set_max_composition_delay_in_frames(
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absl::optional<int32_t> max_composition_delay_in_frames) {
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max_composition_delay_in_frames_ = max_composition_delay_in_frames;
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}
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2020-08-14 16:58:22 +00:00
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// Get render time in milliseconds.
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// TODO(nisse): Deprecated. Migrate all users to timestamp_us().
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int64_t render_time_ms() const;
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// Return the underlying buffer. Never nullptr for a properly
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// initialized VideoFrame.
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rtc::scoped_refptr<webrtc::VideoFrameBuffer> video_frame_buffer() const;
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void set_video_frame_buffer(
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const rtc::scoped_refptr<VideoFrameBuffer>& buffer);
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// TODO(nisse): Deprecated.
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// Return true if the frame is stored in a texture.
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bool is_texture() const {
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return video_frame_buffer()->type() == VideoFrameBuffer::Type::kNative;
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}
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bool has_update_rect() const { return update_rect_.has_value(); }
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// Returns update_rect set by the builder or set_update_rect() or whole frame
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// rect if no update rect is available.
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UpdateRect update_rect() const {
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return update_rect_.value_or(UpdateRect{0, 0, width(), height()});
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}
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// Rectangle must be within the frame dimensions.
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void set_update_rect(const VideoFrame::UpdateRect& update_rect) {
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RTC_DCHECK_GE(update_rect.offset_x, 0);
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RTC_DCHECK_GE(update_rect.offset_y, 0);
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RTC_DCHECK_LE(update_rect.offset_x + update_rect.width, width());
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RTC_DCHECK_LE(update_rect.offset_y + update_rect.height, height());
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update_rect_ = update_rect;
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}
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void clear_update_rect() { update_rect_ = absl::nullopt; }
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// Get information about packets used to assemble this video frame. Might be
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// empty if the information isn't available.
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const RtpPacketInfos& packet_infos() const { return packet_infos_; }
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void set_packet_infos(RtpPacketInfos value) {
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packet_infos_ = std::move(value);
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}
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const absl::optional<ProcessingTime> processing_time() const {
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return processing_time_;
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}
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void set_processing_time(const ProcessingTime& processing_time) {
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processing_time_ = processing_time;
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}
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private:
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VideoFrame(uint16_t id,
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const rtc::scoped_refptr<VideoFrameBuffer>& buffer,
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int64_t timestamp_us,
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uint32_t timestamp_rtp,
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int64_t ntp_time_ms,
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VideoRotation rotation,
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const absl::optional<ColorSpace>& color_space,
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const absl::optional<UpdateRect>& update_rect,
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RtpPacketInfos packet_infos);
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uint16_t id_;
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// An opaque reference counted handle that stores the pixel data.
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rtc::scoped_refptr<webrtc::VideoFrameBuffer> video_frame_buffer_;
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uint32_t timestamp_rtp_;
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int64_t ntp_time_ms_;
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int64_t timestamp_us_;
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VideoRotation rotation_;
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absl::optional<ColorSpace> color_space_;
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absl::optional<int32_t> max_composition_delay_in_frames_;
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// Updated since the last frame area. If present it means that the bounding
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// box of all the changes is within the rectangular area and is close to it.
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// If absent, it means that there's no information about the change at all and
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// update_rect() will return a rectangle corresponding to the entire frame.
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absl::optional<UpdateRect> update_rect_;
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// Information about packets used to assemble this video frame. This is needed
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// by |SourceTracker| when the frame is delivered to the RTCRtpReceiver's
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// MediaStreamTrack, in order to implement getContributingSources(). See:
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// https://w3c.github.io/webrtc-pc/#dom-rtcrtpreceiver-getcontributingsources
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RtpPacketInfos packet_infos_;
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// Processing timestamps of the frame. For received video frames these are the
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// timestamps when the frame is sent to the decoder and the decoded image
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// returned from the decoder.
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// Currently, not set for locally captured video frames.
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absl::optional<ProcessingTime> processing_time_;
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};
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} // namespace webrtc
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#endif // API_VIDEO_VIDEO_FRAME_H_
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