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https://github.com/VDR4Arch/vdr.git
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353 lines
13 KiB
C++
353 lines
13 KiB
C++
/*
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* dvbapi.h: Interface to the DVB driver
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*
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* See the main source file 'vdr.c' for copyright information and
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* how to reach the author.
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*
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* $Id: dvbapi.h 1.53 2001/09/23 11:01:46 kls Exp $
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*/
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#ifndef __DVBAPI_H
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#define __DVBAPI_H
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#if defined(DEBUG_OSD) || defined(REMOTE_KBD)
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#include <ncurses.h>
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#endif
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#include <stdlib.h> // FIXME: this is apparently necessary for the ost/... header files
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// FIXME: shouldn't every header file include ALL the other header
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// FIXME: files it depends on? The sequence in which header files
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// FIXME: are included here should not matter - and it should NOT
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// FIXME: be necessary to include <stdlib.h> here!
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#include <linux/videodev.h>
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#include <ost/dmx.h>
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#include <ost/sec.h>
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#include <ost/frontend.h>
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#include <ost/video.h>
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#include <ost/audio.h>
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#include <ost/osd.h>
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#include <stdio.h>
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#include "dvbosd.h"
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#ifdef DVDSUPPORT
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#include "dvd.h"
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#endif //DVDSUPPORT
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#include "eit.h"
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#include "thread.h"
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// Overlay facilities
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#define MAXCLIPRECTS 100
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typedef struct CRect {
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signed short x, y, width, height;
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};
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#define FRAMESPERSEC 25
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// The maximum file size is limited by the range that can be covered
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// with 'int'. 4GB might be possible (if the range is considered
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// 'unsigned'), 2GB should be possible (even if the range is considered
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// 'signed'), so let's use 2000MB for absolute safety (the actual file size
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// may be slightly higher because we stop recording only before the next
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// 'I' frame, to have a complete Group Of Pictures):
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#define MAXVIDEOFILESIZE 2000 // MB
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#define MINVIDEOFILESIZE 100 // MB
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#define MAXVOLUME 255
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const char *IndexToHMSF(int Index, bool WithFrame = false);
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// Converts the given index to a string, optionally containing the frame number.
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int HMSFToIndex(const char *HMSF);
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// Converts the given string (format: "hh:mm:ss.ff") to an index.
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enum eSetChannelResult { scrOk, scrNoTransfer, scrFailed };
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class cChannel;
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class cRecordBuffer;
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class cPlayBuffer;
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class cReplayBuffer;
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#ifdef DVDSUPPORT
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class cDVDplayBuffer;
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#endif //DVDSUPPORT
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class cTransferBuffer;
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class cCuttingBuffer;
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class cVideoCutter {
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private:
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static char *editedVersionName;
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static cCuttingBuffer *cuttingBuffer;
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public:
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static bool Start(const char *FileName);
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static void Stop(void);
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static bool Active(void);
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};
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class cDvbApi {
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friend class cRecordBuffer;
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friend class cReplayBuffer;
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#ifdef DVDSUPPORT
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friend class cDVDplayBuffer;
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#endif //DVDSUPPORT
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friend class cTransferBuffer;
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private:
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int videoDev;
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int fd_osd, fd_frontend, fd_sec, fd_dvr, fd_audio, fd_video, fd_demuxa1, fd_demuxa2, fd_demuxd1, fd_demuxd2, fd_demuxv, fd_demuxt;
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int vPid, aPid1, aPid2, dPid1, dPid2;
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bool SetPid(int fd, dmxPesType_t PesType, int Pid, dmxOutput_t Output);
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bool SetVpid(int Vpid, dmxOutput_t Output) { return SetPid(fd_demuxv, DMX_PES_VIDEO, Vpid, Output); }
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bool SetApid1(int Apid, dmxOutput_t Output) { return SetPid(fd_demuxa1, DMX_PES_AUDIO, Apid, Output); }
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bool SetApid2(int Apid, dmxOutput_t Output) { return SetPid(fd_demuxa2, DMX_PES_OTHER, Apid, Output); }
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bool SetDpid1(int Dpid, dmxOutput_t Output) { return SetPid(fd_demuxd1, DMX_PES_OTHER, Dpid, Output); }
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bool SetDpid2(int Dpid, dmxOutput_t Output) { return SetPid(fd_demuxd2, DMX_PES_OTHER, Dpid, Output); }
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bool SetTpid(int Tpid, dmxOutput_t Output) { return SetPid(fd_demuxt, DMX_PES_TELETEXT, Tpid, Output); }
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bool SetPids(bool ForRecording);
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cDvbApi(int n);
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public:
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~cDvbApi();
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#define MAXDVBAPI 4
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static int NumDvbApis;
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private:
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static cDvbApi *dvbApi[MAXDVBAPI];
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static int useDvbApi;
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int cardIndex;
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public:
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static cDvbApi *PrimaryDvbApi;
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static void SetUseDvbApi(int n);
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// Sets the 'useDvbApi' flag of the given DVB device.
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// If this function is not called before Init(), all DVB devices
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// will be used.
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static bool SetPrimaryDvbApi(int n);
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// Sets the primary DVB device to 'n' (which must be in the range
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// 1...NumDvbApis) and returns true if this was possible.
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static cDvbApi *GetDvbApi(int Ca, int Priority);
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// Selects a free DVB device, starting with the highest device number
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// (but avoiding, if possible, the PrimaryDvbApi).
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// If Ca is not 0, the device with the given number will be returned.
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// If all DVB devices are currently recording, the one recording the
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// lowest priority timer (if any) that is lower than the given Priority
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// will be returned.
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// The caller must check whether the returned DVB device is actually
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// recording and stop recording if necessary.
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int CardIndex(void) { return cardIndex; }
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// Returns the card index of this DvbApi (0 ... MAXDVBAPI - 1).
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static bool Probe(const char *FileName);
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// Probes for existing DVB devices.
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static bool Init(void);
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// Initializes the DVB API.
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// Must be called before accessing any DVB functions.
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static void Cleanup(void);
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// Closes down all DVB devices.
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// Must be called at the end of the program.
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// EIT facilities
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private:
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cSIProcessor *siProcessor;
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public:
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const cSchedules *Schedules(cThreadLock *ThreadLock) const;
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// Caller must provide a cThreadLock which has to survive the entire
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// time the returned cSchedules is accessed. Once the cSchedules is no
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// longer used, the cThreadLock must be destroyed.
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void SetUseTSTime(bool On) { if (siProcessor) siProcessor->SetUseTSTime(On); }
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// Image Grab facilities
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bool GrabImage(const char *FileName, bool Jpeg = true, int Quality = -1, int SizeX = -1, int SizeY = -1);
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// Overlay facilities
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private:
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bool ovlStat, ovlGeoSet, ovlFbSet;
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int ovlSizeX, ovlSizeY, ovlPosX, ovlPosY, ovlBpp, ovlPalette, ovlClips, ovlClipCount;
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int ovlFbSizeX, ovlFbSizeY;
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__u16 ovlBrightness, ovlColour, ovlHue, ovlContrast;
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struct video_clip ovlClipRects[MAXCLIPRECTS];
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public:
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bool OvlF(int SizeX, int SizeY, int FbAddr, int Bpp, int Palette);
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bool OvlG(int SizeX, int SizeY, int PosX, int PosY);
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bool OvlC(int ClipCount, CRect *Cr);
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bool OvlP(__u16 Brightness, __u16 Color, __u16 Hue, __u16 Contrast);
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bool OvlO(bool Value);
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// On Screen Display facilities
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private:
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enum { charWidth = 12, // average character width
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lineHeight = 27 // smallest text height
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};
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#ifdef DEBUG_OSD
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WINDOW *window;
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enum { MaxColorPairs = 16 };
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int colorPairs[MaxColorPairs];
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void SetColor(eDvbColor colorFg, eDvbColor colorBg = clrBackground);
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#else
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cDvbOsd *osd;
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#endif
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int cols, rows;
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public:
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void Open(int w, int h);
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void Close(void);
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void Clear(void);
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void Fill(int x, int y, int w, int h, eDvbColor color = clrBackground);
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void SetBitmap(int x, int y, const cBitmap &Bitmap);
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void ClrEol(int x, int y, eDvbColor color = clrBackground);
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int CellWidth(void);
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int LineHeight(void);
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int Width(unsigned char c);
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int WidthInCells(const char *s);
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eDvbFont SetFont(eDvbFont Font);
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void Text(int x, int y, const char *s, eDvbColor colorFg = clrWhite, eDvbColor colorBg = clrBackground);
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void Flush(void);
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// Video format facilities:
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void SetVideoFormat(videoFormat_t Format);
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// Channel facilities
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private:
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int currentChannel;
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public:
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eSetChannelResult SetChannel(int ChannelNumber, int FrequencyMHz, char Polarization, int Diseqc, int Srate, int Vpid, int Apid1, int Apid2, int Dpid1, int Dpid2, int Tpid, int Ca, int Pnr);
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static int CurrentChannel(void) { return PrimaryDvbApi ? PrimaryDvbApi->currentChannel : 0; }
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int Channel(void) { return currentChannel; }
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// Transfer facilities
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private:
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cTransferBuffer *transferBuffer;
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cDvbApi *transferringFromDvbApi;
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public:
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bool Transferring(void);
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// Returns true if we are currently transferring video data.
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private:
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cDvbApi *StartTransfer(int TransferToVideoDev);
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// Starts transferring video data from this DVB device to TransferToVideoDev.
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void StopTransfer(void);
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// Stops transferring video data (in case a transfer is currently active).
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// Record/Replay facilities
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private:
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cRecordBuffer *recordBuffer;
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cPlayBuffer *replayBuffer;
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int ca;
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int priority;
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int Ca(void) { return ca; }
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// Returns the ca of the current recording session (0..MAXDVBAPI).
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int Priority(void) { return priority; }
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// Returns the priority of the current recording session (0..MAXPRIORITY),
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// or -1 if no recording is currently active.
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int SetModeRecord(void);
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// Initiates recording mode and returns the file handle to read from.
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void SetModeReplay(void);
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void SetModeNormal(bool FromRecording);
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public:
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int SecondsToFrames(int Seconds);
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// Returns the number of frames corresponding to the given number of seconds.
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bool Recording(void);
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// Returns true if we are currently recording.
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bool Replaying(void);
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// Returns true if we are currently replaying.
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bool StartRecord(const char *FileName, int Ca, int Priority);
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// Starts recording the current channel into the given file, with
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// the given ca and priority.
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// In order to be able to record longer movies,
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// a numerical suffix will be appended to the file name. The inital
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// value of that suffix will be larger than any existing file under
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// the given name, thus allowing an interrupted recording to continue
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// gracefully.
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// Returns true if recording was started successfully.
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// If there is already a recording session active, false will be
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// returned.
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void StopRecord(void);
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// Stops the current recording session (if any).
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bool StartReplay(const char *FileName);
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// Starts replaying the given file.
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// If there is already a replay session active, it will be stopped
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// and the new file will be played back.
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#ifdef DVDSUPPORT
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bool StartDVDplay(cDVD *dvd, int TitleID);//XXX dvd parameter necessary???
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// Starts replaying the given TitleID on the DVD.
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#endif //DVDSUPPORT
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void StopReplay(void);
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// Stops the current replay session (if any).
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void Pause(void);
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// Pauses the current replay session, or resumes a paused session.
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void Play(void);
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// Resumes normal replay mode.
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void Forward(void);
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// Runs the current replay session forward at a higher speed.
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void Backward(void);
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// Runs the current replay session backwards at a higher speed.
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void SkipSeconds(int Seconds);
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// Skips the given number of seconds in the current replay session.
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// The sign of 'Seconds' determines the direction in which to skip.
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// Use a very large negative value to go all the way back to the
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// beginning of the recording.
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int SkipFrames(int Frames);
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// Returns the new index into the current replay session after skipping
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// the given number of frames (no actual repositioning is done!).
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// The sign of 'Frames' determines the direction in which to skip.
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bool GetIndex(int &Current, int &Total, bool SnapToIFrame = false);
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// Returns the current and total frame index, optionally snapped to the
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// nearest I-frame.
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bool GetReplayMode(bool &Play, bool &Forward, int &Speed);
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// Returns the current replay mode (if applicable).
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// 'Play' tells whether we are playing or pausing, 'Forward' tells whether
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// we are going forward or backward and 'Speed' is -1 if this is normal
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// play/pause mode, 0 if it is single speed fast/slow forward/back mode
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// and >0 if this is multi speed mode.
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void Goto(int Index, bool Still = false);
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// Positions to the given index and displays that frame as a still picture
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// if Still is true.
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// Audio track facilities
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public:
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bool CanToggleAudioTrack(void);
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// Returns true if we are currently replaying and this recording has two
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// audio tracks, or if the current channel has two audio PIDs.
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bool ToggleAudioTrack(void);
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// Toggles the audio track if possible.
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// Dolby Digital audio facilities
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private:
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static char *audioCommand;
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public:
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static void SetAudioCommand(const char *Command);
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static const char *AudioCommand(void) { return audioCommand; }
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// Volume facilities:
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private:
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bool mute;
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int volume;
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public:
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void ToggleMute(void);
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// Turns the volume off or on.
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void SetVolume(int Volume, bool Absolute = false);
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// Sets the volume to the given value, either absolutely or relative to
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// the current volume.
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};
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class cEITScanner {
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private:
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enum { ActivityTimeout = 60,
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ScanTimeout = 20
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};
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time_t lastScan, lastActivity;
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int currentChannel, lastChannel;
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int numTransponders, *transponders;
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bool TransponderScanned(cChannel *Channel);
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public:
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cEITScanner(void);
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~cEITScanner();
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bool Active(void) { return currentChannel; }
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void Activity(void);
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void Process(void);
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};
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#endif //__DVBAPI_H
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