haiku/headers/private/media/EncoderPlugin.h
Stephan Aßmus 6780c24d36 Encoder:
* Fleshed out the Encoder API to support parameter setters/getters and returning
  a BView for configuration. (Not yet sure if this is a good idea.)

BMediaTrack:
* Implemented all but one of the unimplemented methods in BMediaTrack. It should
  be working as far as that class is concerned, unless I missed some of the
  vision. ReplaceFrames() remains a stub, added a comment on why it probably
  stays that way.
* Release the Encoder reference in the destructor.

FFmpeg plugin:
* Refactoring to delay opening the AVCodec until encoding the first chunk,
  so that we can still adjust parameters.
* Support adjusting parameters via [Set|Get]EncodeParameters(). Currently,
  only quality is supported, added TODOs about supporting the bit_rate setup
  versus the automatically calculated bit_rate.
* Extended EncoderDescription by a bit_rate scale. The Encoder calculates the
  raw bitrate needed by the current media format, and then divides that
  number by the specific codec's bit_rate_scale, while taking into account the
  desired quality. This seems to work very well already (tested with MPEG4),
  although a lot more parameters could be specified for libavcodec, depending
  on the desired quality.
* Enabled the ogg muxer in libavformat, although it is currently still disabled
  in MuxerTable.cpp, because it rejects unknown codecs. Added TODO to this
  effect.


git-svn-id: file:///srv/svn/repos/haiku/haiku/trunk@32124 a95241bf-73f2-0310-859d-f6bbb57e9c96
2009-08-05 10:21:36 +00:00

137 lines
4.2 KiB
C++

/*
* Copyright 2009, Haiku Inc. All rights reserved.
* Distributed under the terms of the MIT license.
*/
#ifndef _ENCODER_PLUGIN_H
#define _ENCODER_PLUGIN_H
#include <MediaTrack.h>
#include <MediaFormats.h>
#include <View.h>
#include "MediaPlugin.h"
namespace BPrivate { namespace media {
class PluginManager;
class ChunkWriter {
public:
virtual ~ChunkWriter() {};
virtual status_t WriteChunk(const void* chunkBuffer,
size_t chunkSize,
media_encode_info* encodeInfo) = 0;
};
class Encoder {
public:
Encoder();
virtual ~Encoder();
// Some codecs may only support certain input color spaces, or output
// color spaces, or multiple of 16 width/height... This method is needed
// for get_next_encoder() functionality. If _acceptedInputFormat is NULL,
// you simply return a status indicating if proposed format is acceptable.
// If it contains wildcards for fields that you have restrictions on,
// return an error. In that case, the user should be using the form of
// get_next_encoder() that allows to specify the accepted format. If
// _acceptedInputFormat is not NULL, copy the proposedFormat into
// _acceptedInputFormat and specialize any wildcards. You must (!) also
// change non-wildcard fields, like the video width if you want to round to
// the nearest multiple of 16 for example. Only if the format is completely
// unacceptable, return an error.
virtual status_t AcceptedFormat(
const media_format* proposedInputFormat,
media_format* _acceptedInputFormat = NULL)
= 0;
// The passed media_format may not contain wildcards and must be the same
// format that was passed to get_next_encoder() (or it must be the format
// returned in _acceptedInputFormat).
virtual status_t SetUp(const media_format* inputFormat) = 0;
virtual status_t AddTrackInfo(uint32 code, const void* data,
size_t size, uint32 flags = 0);
// Ownership of the BView and BParameterWeb remain with the Encoder.
// A window embedding the view must remove it before it is destroyed.
virtual BView* ParameterView();
virtual BParameterWeb* ParameterWeb();
virtual status_t GetParameterValue(int32 id, void* value,
size_t* size) const;
virtual status_t SetParameterValue(int32 id, const void* value,
size_t size);
virtual status_t GetEncodeParameters(
encode_parameters* parameters) const;
virtual status_t SetEncodeParameters(
encode_parameters* parameters);
virtual status_t Encode(const void* buffer, int64 frameCount,
media_encode_info* info) = 0;
status_t WriteChunk(const void* chunkBuffer,
size_t chunkSize,
media_encode_info* encodeInfo);
void SetChunkWriter(ChunkWriter* writer);
virtual status_t Perform(perform_code code, void* data);
private:
ChunkWriter* fChunkWriter;
// needed for plug-in reference count management
friend class PluginManager;
MediaPlugin* fMediaPlugin;
private:
// FBC padding
uint32 fReserved[20];
virtual void _ReservedEncoder1();
virtual void _ReservedEncoder2();
virtual void _ReservedEncoder3();
virtual void _ReservedEncoder4();
virtual void _ReservedEncoder5();
virtual void _ReservedEncoder6();
virtual void _ReservedEncoder7();
virtual void _ReservedEncoder8();
virtual void _ReservedEncoder9();
virtual void _ReservedEncoder10();
virtual void _ReservedEncoder11();
virtual void _ReservedEncoder12();
virtual void _ReservedEncoder13();
virtual void _ReservedEncoder14();
virtual void _ReservedEncoder15();
virtual void _ReservedEncoder16();
virtual void _ReservedEncoder17();
virtual void _ReservedEncoder18();
virtual void _ReservedEncoder19();
virtual void _ReservedEncoder20();
};
class EncoderPlugin : public virtual MediaPlugin {
public:
EncoderPlugin();
virtual Encoder* NewEncoder(
const media_codec_info& codecInfo) = 0;
virtual status_t RegisterNextEncoder(int32* cookie,
media_codec_info* codecInfo,
media_format_family* formatFamily,
media_format* inputFormat,
media_format* outputFormat) = 0;
};
} } // namespace BPrivate::media
using namespace BPrivate::media;
#endif // _ENCODER_PLUGIN_H