mirror of
https://github.com/Fledge68/WiiFlow_Lite.git
synced 2024-11-30 23:24:18 +01:00
550ac3356b
-set down wiiflows entry point from 0x80A00000 to 0x8062000 (saves ALOT of MEM1 for lists etc, so wiiflow should be able to read in alot of more games in for example plugin coverflow) -recompiled libjpeg -removed alot of annoying debug prints -made the trailer code faster
336 lines
7.7 KiB
C++
336 lines
7.7 KiB
C++
/***************************************************************************
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* Copyright (C) 2010
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* by thakis
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*
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* Modification and adjustment for the Wii by Dimok
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*
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* This software is provided 'as-is', without any express or implied
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* warranty. In no event will the authors be held liable for any
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* damages arising from the use of this software.
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*
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* Permission is granted to anyone to use this software for any
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* purpose, including commercial applications, and to alter it and
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* redistribute it freely, subject to the following restrictions:
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*
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* 1. The origin of this software must not be misrepresented; you
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* must not claim that you wrote the original software. If you use
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* this software in a product, an acknowledgment in the product
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* documentation would be appreciated but is not required.
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*
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* 2. Altered source versions must be plainly marked as such, and
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* must not be misrepresented as being the original software.
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*
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* 3. This notice may not be removed or altered from any source
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* distribution.
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*
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* gcvid.h
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***************************************************************************/
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#ifndef THAKIS_GCVID_H
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#define THAKIS_GCVID_H THAKIS_GCVID_H
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#include <stdio.h> //FILE*
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#include <string>
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#include <vector>
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using namespace std;
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#include <gccore.h>
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#pragma pack(push, 1)
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/////////////////////////////////////////////////////////////////////
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//THP
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struct ThpHeader
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{
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char tag[4]; //'THP\0'
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//from monk's thp player:
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u32 version; //0x00011000 = 1.1, 0x00010000 = 1.0
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u32 maxBufferSize;
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u32 maxAudioSamples; //!= 0 if sound is stored in file
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float fps; //usually 29.something (=0x41efc28f) for ntsc
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u32 numFrames;
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u32 firstFrameSize; //size of first frame
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u32 dataSize; //size of file - ThpHeader.offset
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//from monk's thp player:
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u32 componentDataOffset; //ThpComponents stored here
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u32 offsetsDataOffset; //?? if != 0, offset to table with offsets of all frames?
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u32 firstFrameOffset;
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u32 lastFrameOffset;
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};
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//monk:
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struct ThpComponents
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{
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u32 numComponents; //usually 1 or 2 (video or video + audio)
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//component type 0 is video, type 1 is audio,
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//type 0xff is "no component" (numComponent many entries
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//are != 0xff)
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u8 componentTypes[16];
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};
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struct ThpVideoInfo
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{
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u32 width;
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u32 height;
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u32 unknown; //only for version 1.1 thp files
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};
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struct ThpAudioInfo
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{
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u32 numChannels;
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u32 frequency;
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u32 numSamples;
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u32 numData; //only for version 1.1 - that many
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//audio blocks are after each video block
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//(for surround sound?)
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};
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//endmonk
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//a frame image is basically a normal jpeg image (without
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//the jfif application marker), the only important difference
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//is that after the image start marker (0xff 0xda) values
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//of 0xff are simply written as 0xff whereas the jpeg
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//standard requires them to be written as 0xff 0x00 because
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//0xff is the start of a 2-byte control code in jpeg
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//frame (offsets relative to frame start):
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//u32 total (image, sound, etc) size of NEXT frame
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//u32 size1 at 0x04 (total size of PREV frame according to monk)
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//u32 image data size at 0x08
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//size of one audio block ONLY IF THE FILE HAS SOUND. ThpAudioInfo.numData
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//many audio blocks after jpeg data
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//jpeg data
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//audio block(s)
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struct ThpAudioBlockHeader
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{
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//size 80 byte
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u32 channelSize; //size of one channel in bytes
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u32 numSamples; //number of samples/channel
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s16 table1[16]; //table for first channel
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s16 table2[16]; //table for second channel
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s16 channel1Prev1;
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s16 channel1Prev2;
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s16 channel2Prev1;
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s16 channel2Prev2;
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};
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//audio block:
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//u32 size of this audioblock
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//
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//u32 numBytes/channel of audioblock - that many bytes per channel after adpcm table)
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//
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//u32 number of samples per channel
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//
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//2*16 shorts adpcm table (one per channel - always stored both,
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//even for mono files), 5.11 fixed point values
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//
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//4 s16: 2 shorts prev1 and prev2 for each channel (even for mono files)
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//
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//sound data
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//sound data:
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//8 byte are 14 samples:
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//the first byte stores index (upper nibble) and shift (lower nibble),
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//the following 7 bytes contain 14o samples a 4 bit each
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/////////////////////////////////////////////////////////////////////
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//MTH ("mute thp"?)
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//similar to a thp file, but without sound
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struct MthHeader
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{
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//one of the unknown has to be fps in some form
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char tag[4]; //'MTHP'
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u32 unknown;
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u32 unknown2;
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u32 maxFrameSize;
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u32 width;
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u32 height;
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u32 fps;
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u32 numFrames;
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u32 offset;
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u32 unknown5;
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u32 firstFrameSize;
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//5 padding u32's follow
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};
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//frame:
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//u32 size of NEXT frame
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//jpeg data
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//see thp (above) for jpeg format. there's a small difference, though:
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//mth jpegs end with 0xff 0xd9 0xff instead of 0xff 0xd9
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#pragma pack(pop)
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//little helper class that represents one frame of video
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//data is 24 bpp, scanlines aligned to 4 byte boundary
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class VideoFrame
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{
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public:
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VideoFrame();
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~VideoFrame();
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void resize(int width, int height);
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int getWidth() const;
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int getHeight() const;
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int getPitch() const;
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u8* getData();
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const u8* getData() const;
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void dealloc();
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private:
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u8* _data;
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int _w;
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int _h;
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int _p; //pitch in bytes
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//copy constructor and asignment operator are not allowed
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//VideoFrame(const VideoFrame& f);
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VideoFrame& operator=(const VideoFrame& f);
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};
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//swaps red and blue channel of a video frame
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void swapRB(VideoFrame& f);
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class VideoFile
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{
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public:
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VideoFile(FILE* f);
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virtual ~VideoFile();
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virtual int getWidth() const;
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virtual int getHeight() const;
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virtual float getFps() const;
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virtual int getFrameCount() const;
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virtual int getCurrentFrameNr() const;
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virtual bool loadNextFrame() = 0;
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virtual void getCurrentFrame(VideoFrame& frame) const = 0;
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//sound support:
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virtual bool hasSound() const;
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virtual int getNumChannels() const;
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virtual int getFrequency() const;
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virtual int getMaxAudioSamples() const;
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virtual int getCurrentBuffer(s16* data) const;
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bool loop;
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protected:
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FILE* _f;
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//void loadFrame(long offset, int size);
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void loadFrame(VideoFrame& frame, const u8* data, int size) const;
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};
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VideoFile* openVideo(const std::string& fileName);
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void closeVideo(VideoFile*& vf);
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class ThpVideoFile : public VideoFile
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{
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public:
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ThpVideoFile(FILE* f);
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virtual int getWidth() const;
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virtual int getHeight() const;
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virtual float getFps() const;
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virtual int getFrameCount() const;
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virtual int getCurrentFrameNr() const;
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virtual bool loadNextFrame();
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virtual void getCurrentFrame(VideoFrame& frame) const;
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virtual bool hasSound() const;
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virtual int getNumChannels() const;
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virtual int getFrequency() const;
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virtual int getMaxAudioSamples() const;
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virtual int getCurrentBuffer(s16* data) const;
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protected:
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ThpHeader _head;
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ThpComponents _components;
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ThpVideoInfo _videoInfo;
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ThpAudioInfo _audioInfo;
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int _numInts;
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int _currFrameNr;
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int _nextFrameOffset;
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int _nextFrameSize;
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vector<u8> _currFrameData;
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};
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class MthVideoFile : public VideoFile
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{
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public:
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MthVideoFile(FILE* f);
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virtual int getWidth() const;
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virtual int getHeight() const;
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virtual float getFps() const;
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virtual int getFrameCount() const;
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virtual int getCurrentFrameNr() const;
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virtual bool loadNextFrame();
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virtual void getCurrentFrame(VideoFrame& frame) const;
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protected:
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MthHeader _head;
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int _currFrameNr;
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int _nextFrameOffset;
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int _nextFrameSize;
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int _thisFrameSize;
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vector<u8> _currFrameData;
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};
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class JpgVideoFile : public VideoFile
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{
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public:
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JpgVideoFile(FILE* f);
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virtual int getWidth() const;
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virtual int getHeight() const;
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virtual int getFrameCount() const;
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virtual bool loadNextFrame() { return false; }
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virtual void getCurrentFrame(VideoFrame& frame) const;
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private:
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VideoFrame _currFrame;
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};
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void decodeRealJpeg(const u8* data, int size, VideoFrame& dest, bool fancy = false);
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#endif //THAKIS_GCVID_H
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