Files
client-sdk-rust/webrtc-sys/include/livekit/video_frame_buffer.h
T
Théo Monnom 16ea02075f RtpTransceiver bindings & requirements for publishing tracks (#39)
- RtpSender
- RtpReceiver
- RtpTransceiver
- RtpParameters
- VideoFrameBuilder
- Interior mutability on c++ side
- Cleanup bindings ( Use #pragma once instead of include guards )
     - webrtc-sys/src/* headers are now used in only one place 
     - Avoid confusion between generated headers and our headers
- AdaptedVideoTrackSource
- Cleanup the workaround with unsupported Vec<Shared<T>>
    - Put everything inside one file
2023-02-12 19:44:04 +01:00

204 lines
4.7 KiB
C++

//
// Created by theom on 14/11/2022.
//
#pragma once
#include <memory>
#include "api/video/i420_buffer.h"
#include "api/video/video_frame_buffer.h"
namespace livekit {
class VideoFrameBuffer;
class PlanarYuvBuffer;
class PlanarYuv8Buffer;
class PlanarYuv16BBuffer;
class BiplanarYuvBuffer;
class BiplanarYuv8Buffer;
class I420Buffer;
class I420ABuffer;
class I422Buffer;
class I444Buffer;
class I010Buffer;
class NV12Buffer;
} // namespace livekit
#include "webrtc-sys/src/video_frame_buffer.rs.h"
namespace livekit {
class VideoFrameBuffer {
public:
explicit VideoFrameBuffer(
rtc::scoped_refptr<webrtc::VideoFrameBuffer> buffer);
VideoFrameBufferType buffer_type() const;
int width() const;
int height() const;
// Takes ownership
std::unique_ptr<I420Buffer> to_i420();
std::unique_ptr<I420Buffer> get_i420();
std::unique_ptr<I420ABuffer> get_i420a();
std::unique_ptr<I422Buffer> get_i422();
std::unique_ptr<I444Buffer> get_i444();
std::unique_ptr<I010Buffer> get_i010();
std::unique_ptr<NV12Buffer> get_nv12();
rtc::scoped_refptr<webrtc::VideoFrameBuffer> get() const;
protected:
rtc::scoped_refptr<webrtc::VideoFrameBuffer> buffer_;
};
class PlanarYuvBuffer : public VideoFrameBuffer {
public:
explicit PlanarYuvBuffer(rtc::scoped_refptr<webrtc::PlanarYuvBuffer> buffer);
int chroma_width() const;
int chroma_height() const;
int stride_y() const;
int stride_u() const;
int stride_v() const;
private:
webrtc::PlanarYuvBuffer* buffer() const;
};
class PlanarYuv8Buffer : public PlanarYuvBuffer {
public:
explicit PlanarYuv8Buffer(
rtc::scoped_refptr<webrtc::PlanarYuv8Buffer> buffer);
const uint8_t* data_y() const;
const uint8_t* data_u() const;
const uint8_t* data_v() const;
private:
webrtc::PlanarYuv8Buffer* buffer() const;
};
class PlanarYuv16BBuffer : public PlanarYuvBuffer {
public:
explicit PlanarYuv16BBuffer(
rtc::scoped_refptr<webrtc::PlanarYuv16BBuffer> buffer);
const uint16_t* data_y() const;
const uint16_t* data_u() const;
const uint16_t* data_v() const;
private:
webrtc::PlanarYuv16BBuffer* buffer() const;
};
class BiplanarYuvBuffer : public VideoFrameBuffer {
public:
explicit BiplanarYuvBuffer(
rtc::scoped_refptr<webrtc::BiplanarYuvBuffer> buffer);
int chroma_width() const;
int chroma_height() const;
int stride_y() const;
int stride_uv() const;
private:
webrtc::BiplanarYuvBuffer* buffer() const;
};
class BiplanarYuv8Buffer : public BiplanarYuvBuffer {
public:
explicit BiplanarYuv8Buffer(
rtc::scoped_refptr<webrtc::BiplanarYuv8Buffer> buffer);
const uint8_t* data_y() const;
const uint8_t* data_uv() const;
private:
webrtc::BiplanarYuv8Buffer* buffer() const;
};
std::unique_ptr<I420Buffer> create_i420_buffer(int width, int height);
class I420Buffer : public PlanarYuv8Buffer {
public:
explicit I420Buffer(rtc::scoped_refptr<webrtc::I420BufferInterface> buffer);
};
class I420ABuffer : public I420Buffer {
public:
explicit I420ABuffer(rtc::scoped_refptr<webrtc::I420ABufferInterface> buffer);
};
class I422Buffer : public PlanarYuv8Buffer {
public:
explicit I422Buffer(rtc::scoped_refptr<webrtc::I422BufferInterface> buffer);
};
class I444Buffer : public PlanarYuv8Buffer {
public:
explicit I444Buffer(rtc::scoped_refptr<webrtc::I444BufferInterface> buffer);
};
class I010Buffer : public PlanarYuv16BBuffer {
public:
explicit I010Buffer(rtc::scoped_refptr<webrtc::I010BufferInterface> buffer);
};
class NV12Buffer : public BiplanarYuv8Buffer {
public:
explicit NV12Buffer(rtc::scoped_refptr<webrtc::NV12BufferInterface> buffer);
};
static const VideoFrameBuffer* yuv_to_vfb(const PlanarYuvBuffer* yuv) {
return yuv;
}
static const VideoFrameBuffer* biyuv_to_vfb(const BiplanarYuvBuffer* biyuv) {
return biyuv;
}
static const PlanarYuvBuffer* yuv8_to_yuv(const PlanarYuv8Buffer* yuv8) {
return yuv8;
}
static const PlanarYuvBuffer* yuv16b_to_yuv(const PlanarYuv16BBuffer* yuv16) {
return yuv16;
}
static const BiplanarYuvBuffer* biyuv8_to_biyuv(
const BiplanarYuv8Buffer* biyuv8) {
return biyuv8;
}
static const PlanarYuv8Buffer* i420_to_yuv8(const I420Buffer* i420) {
return i420;
}
static const PlanarYuv8Buffer* i420a_to_yuv8(const I420ABuffer* i420a) {
return i420a;
}
static const PlanarYuv8Buffer* i422_to_yuv8(const I422Buffer* i422) {
return i422;
}
static const PlanarYuv8Buffer* i444_to_yuv8(const I444Buffer* i444) {
return i444;
}
static const PlanarYuv16BBuffer* i010_to_yuv16b(const I010Buffer* i010) {
return i010;
}
static const BiplanarYuv8Buffer* nv12_to_biyuv8(const NV12Buffer* nv12) {
return nv12;
}
static std::unique_ptr<VideoFrameBuffer> _unique_video_frame_buffer() {
return nullptr;
}
} // namespace livekit