276 řádky
13 KiB
C
276 řádky
13 KiB
C
//( { file_desc:" Audio file acoustic feature analyzer and accompanying file reader." kw:[audio analysis file]}
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//
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//
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#ifndef cmFeatFile_h
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#define cmFeatFile_h
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#ifdef __cplusplus
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extern "C" {
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#endif
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// Result codes for all functions in cmFeatFile.h
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enum
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{
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kOkFtRC = cmOkRC,
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kCfgParseFailFtRC,
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kFileSysFailFtRC,
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kJsonFailFtRC,
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kDspProcFailFtRC,
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kDirCreateFailFtRC,
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kFileNotFoundFtRC,
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kAudioFileOpenFailFtRC,
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kFrameFileFailFtRC,
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kChIdxInvalidFtRC,
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kParamRangeFtRC,
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kParamErrorFtRC,
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kFrameWriteFailFtRC,
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kEofFtRC,
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kPlviewFailFtRC,
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kSerialFailFtRC,
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kInvalidFeatIdFtRC,
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kFileFailFtRC,
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kInvalidFrmIdxFtRC
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};
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// Feature Id's
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enum
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{
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kInvalidFtId, // 0
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kAmplFtId, // 1 Fourier transform amplitude
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kDbAmplFtId, // 2 Fourier transform decibel
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kPowFtId, // 3 Fourier transform power
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kDbPowFtId, // 4 Fourier transform power decibel
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kPhaseFtId, // 5 Fourier transform phase (not unwrapped)
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kBfccFtId, // 6 Bark Frequency Cepstral Coeffcients
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kMfccFtId, // 7 Mel Frequency Cepstral Coefficients
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kCepsFtId, // 8 Cepstral Coefficients
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kConstQFtId, // 9 Constant-Q transform
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kLogConstQFtId, // 10 Log Constant-Q transform
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kRmsFtId, // 11 Root means square of the audio signal
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kDbRmsFtId, // 12 RMS in decibels
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kD1AmplFtId, // 13 1st order difference over time of the Fourier transform amplitude
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kD1DbAmplFtId, // 14 1st order difference over time of the Fourier transform decibel
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kD1PowFtId, // 15 1st order difference over time of the Fourier transform power
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kD1DbPowFtId, // 16 1st order difference over time of the Fourier transform power decibel
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kD1PhaseFtId, // 17 1st order difference over time of the Fourier transform phase (not unwrapped)
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kD1BfccFtId, // 18 1st order difference over time of the Bark Frequency Cepstral Coeffcients
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kD1MfccFtId, // 19 1st order difference over time of the Mel Frequency Cepstral Coefficients
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kD1CepsFtId, // 20 1st order difference over time of the Cepstral Coefficients
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kD1ConstQFtId, // 21 1st order difference over time of the Constant-Q transform
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kD1LogConstQFtId, // 22 1st order difference over time of the Log Constant-Q transform
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kD1RmsFtId, // 23 1st order difference over time of the Root means square of the audio signal
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kD1DbRmsFtId, // 24 1st order difference over time of the RMS in decibels
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};
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// User defined feature parameters
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typedef struct
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{
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unsigned id; // feature id
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unsigned cnt; // length of feature vector
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bool normFl; // normalize this feature
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bool enableFl; // true if this feature is enabled
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} cmFtAttr_t;
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// Skip input audio range record
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typedef struct
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{
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unsigned smpIdx; // Index of first sample to skip
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unsigned smpCnt; // Count of successive samples to skip.
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} cmFtSkip_t;
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// Analysis parameters
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typedef struct
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{
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const char* audioFn; // Audio file name.
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const char* featFn; // Feature file name.
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unsigned chIdx; // Audio file channel index
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cmReal_t wndMs; // Length of the analysis window in milliseconds.
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unsigned hopFact; // Analysis window overlap factor 1 = 1:1 2=2:1 ...
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bool normAudioFl; // Normalize the audio over the length of the audio file
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cmMidiByte_t constQMinPitch; // Used to determine the base const-q octave.
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cmMidiByte_t constQMaxPitch; // Used to determine the maximum const-q frequency of interest.
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unsigned constQBinsPerOctave; // Bands per const-q octave.
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unsigned onsetMedFiltWndSmpCnt; // Complex onset median filter
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cmReal_t onsetThreshold; // Complex onset threshold
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cmReal_t minDb; // Fourier Transform magnitude values below minDb are set to minDb.
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cmReal_t floorThreshDb; // Frames with an RMS below this value will be skipped
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cmFtSkip_t* skipArray; // skipArray[skipCnt] user defined sample skip ranges
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unsigned skipCnt; // Count of records in skipArray[].
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cmFtAttr_t* attrArray; // attrArray[attrCnt] user defined parameter array
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unsigned attrCnt; // Count of records in attrArray[].
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} cmFtParam_t;
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// Feature summary information
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typedef struct
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{
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unsigned id; // feature id (same as associated cmFtAttr.id)
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unsigned cnt; // length of each feature vector (same as associated cmFtAttr.cnt)
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// The raw feature summary values are calculated prior to normalization.
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cmReal_t* rawMinV; // Vector of min value over time for each feature element.
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cmReal_t* rawMaxV; // Vector of max value over time for each feature element.
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cmReal_t* rawAvgV; // Vector of avg value over time for each feature element.
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cmReal_t* rawSdvV; // Vector of standard deviation values over time for each feature element.
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cmReal_t rawMin; // Min value of all values for this feature. Equivalent to min(rawMinV).
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cmReal_t rawMax; // Max value of all values for this feature. Equivalent to max(rawMaxV).
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// normalized feature summary values
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cmReal_t* normMinV; // Vector of min value over time for each feature element.
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cmReal_t* normMaxV; // Vector of max value over time for each feature element.
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cmReal_t* normAvgV; // Vector of avg value over time for each feature element.
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cmReal_t* normSdvV; // Vector of standard deviation values over time for each feature element.
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cmReal_t normMin; // Min value of all values for this feature. Equivalent to min(normMinV).
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cmReal_t normMax; // Max value of all values for this feature. Equivalent to max(rawMaxV).
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} cmFtSumm_t;
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// Feature file info record
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typedef struct
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{
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unsigned frmCnt; // count of frames in the file
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cmReal_t srate; // audio sample rate
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unsigned smpCnt; // audio sample count
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unsigned fftSmpCnt; // FFT window length (always power of 2)
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unsigned hopSmpCnt; // audio sample hop count
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unsigned binCnt; // FFT bin count (always fftSmpCnt/2 + 1)
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unsigned skipFrmCnt; // count of frames skipped based on user skip array
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unsigned floorFrmCnt; // count of frames skipped because below floorThreshDb
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cmFtParam_t param; // analysis parameter record used to form this feature file
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cmFtSumm_t* summArray; // summArray[ param.attrCnt ] feature summary information
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} cmFtInfo_t;
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// Data structure returned by cmFtReaderAdvance().
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typedef struct
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{
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unsigned smpIdx; // The audio signal sample index this frames information is based on.
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unsigned frmIdx; // The frame index relative to other frames in this feature file.
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} cmFtFrameDesc_t;
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typedef cmHandle_t cmFtH_t; // Analyzer handle
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typedef cmHandle_t cmFtFileH_t; // Feature file handle.
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typedef unsigned cmFtRC_t; // Result code type used by all functions in cmFeatFile.h.
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extern cmFtH_t cmFtNullHandle; // A NULL handle useful for indicating an uninitialized analyzer.
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extern cmFtFileH_t cmFtFileNullHandle; // A NULL handle useful for indicating an uninitialized feature file.
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// Given a feature type id return the associated label.
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const char* cmFtFeatIdToLabel( unsigned featId );
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// Given a feature type label return the associated id.
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unsigned cmFtFeatLabelToId( const char* label );
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// Feature Analyzer Related functions
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// Initialize the feature analyzer. The memory manager and file system must
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// be initialized (cmMdInitialize(), cmFsInitialize()) prior to calling this function.
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cmFtRC_t cmFtInitialize( cmFtH_t* hp, cmCtx_t* ctx );
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// Finalize a feature analyzer.
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cmFtRC_t cmFtFinalize( cmFtH_t* h );
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// Return true if the handle represents an initialized feature analyzer.
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bool cmFtIsValid( cmFtH_t h );
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// Parse a JSON file containing a set of analysis parameters.
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cmFtRC_t cmFtParse( cmFtH_t h, const char* cfgFn );
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// Run the analyzer.
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cmFtRC_t cmFtAnalyze( cmFtH_t h );
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// If cmFtAnalyze() is being run in a seperate thread this function
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// can be used to access the analyzers progress.
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const char* cmFtAnalyzeProgress( cmFtH_t h, unsigned* passPtr, cmReal_t* percentPtr );
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// Feature File Related Functions
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// Open a feature file.
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// Note that inforPtrPtr is optional and will be ignored if it is set to NULL.
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cmFtRC_t cmFtReaderOpen( cmFtH_t h, cmFtFileH_t* hp, const char* featFn, const cmFtInfo_t** infoPtrPtr );
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// Close a feature file.
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cmFtRC_t cmFtReaderClose( cmFtFileH_t* hp );
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// Return true if the handle reprents an open feature file.
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bool cmFtReaderIsValid( cmFtFileH_t h );
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// Return the count of features types this file contains.
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unsigned cmFtReaderFeatCount( cmFtFileH_t h );
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// Return the feature type id associated with the specified index.
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unsigned cmFtReaderFeatId( cmFtFileH_t h, unsigned index );
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// Reset the current file location to the first frame but do not load it.
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// The next call to cmFtReadAdvance() will load the next frame.
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cmFtRC_t cmFtReaderRewind( cmFtFileH_t h );
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// Make frmIdx the current file location.
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cmFtRC_t cmFtReaderSeek( cmFtFileH_t h, unsigned frmIdx );
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// Load the current frame, advance the current file position, and return
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// a pointer to a cmFtFrameDesc_t record for the loaded frame.
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// Returns kEofFtRC upon reaching end of file.
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// The frameDescPtr is optional.
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cmFtRC_t cmFtReaderAdvance( cmFtFileH_t h, cmFtFrameDesc_t* frameDescPtr );
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// Returns a pointer to a data matrix in the feature identified by featId in the current feature frame.
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cmReal_t* cmFtReaderData( cmFtFileH_t h, unsigned featId, unsigned* cntPtr );
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// Copy the contents of a given set of frames into buf[frmCnt*elePerFrmCnt].
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cmFtRC_t cmFtReaderCopy( cmFtFileH_t h, unsigned featId, unsigned frmIdx, cmReal_t* buf, unsigned frmCnt, unsigned elePerFrmCnt, unsigned* outEleCntPtr );
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// Data structure used to specify multiple features for use by cmFtReaderMultiSetup().
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typedef struct
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{
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unsigned featId; // Feature id of feature to include in the feature vector
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unsigned cnt; // Set to count of feat ele's for this feat. Error if greater than avail. Set to -1 to use all avail ele's.
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// returned with actual count used
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unsigned id0; // Ignored on input. Used internally by cmFtReaderXXX()
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unsigned id1; // Ignored on input. Used internally by cmFtReaderXXX()
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} cmFtMulti_t;
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// Setup an array of cmFtMulti_t records. The cmFtMulti_t array
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// used by cmFtReaderMulitData() must be initialized by this function.
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cmFtRC_t cmFtReaderMultiSetup( cmFtFileH_t h, cmFtMulti_t* multiArray, unsigned multiCnt, unsigned* featVectEleCntPtr );
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// Fill outV[outN] with a consecutive data from the features specified in the cmFtMulti_t array.
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// Use cmFtReaderMultiSetup() to configure the cmFtMulti_t array prior to calling this function.
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cmFtRC_t cmFtReaderMultiData( cmFtFileH_t h, const cmFtMulti_t* multiArray, unsigned multiCnt, cmReal_t* outV, unsigned outN );
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// Report summary information for the specified feature.
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cmFtRC_t cmFtReaderReport( cmFtFileH_t h, unsigned featId );
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// Identical to cmFtReaderReport() except the feature file is identified from a file name rather than an open cmFtFileH_t.
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cmFtRC_t cmFtReaderReportFn( cmFtH_t h, const cmChar_t* fn, unsigned featId );
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// Report feature data for the specified set of feature frames.
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cmFtRC_t cmFtReaderReportFeature( cmFtFileH_t h, unsigned featId, unsigned frmIdx, unsigned frmCnt );
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// Write a feature into a binary file.
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// Set 'frmCnt' to the cmInvalidCnt to include all frames past frmIdx.
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// The first three unsigned values in the output file
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// contain the row count, maximum column count, and the count of bytes in each data element (4=float,8=double).
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// Each row of the file begins with the count of elements in the row and is followed by a data array.
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cmFtRC_t cmFtReaderToBinary( cmFtFileH_t h, unsigned featId, unsigned frmIdx, unsigned frmCnt, const cmChar_t* outFn );
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// Identical to cmFtReaderToBinary() except it takes a feature file name instead of a file handle.
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cmFtRC_t cmFtReaderToBinaryFn( cmFtH_t h, const cmChar_t* fn, unsigned featId, unsigned frmIdx, unsigned frmCnt, const cmChar_t* outFn );
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//)
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#ifdef __cplusplus
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}
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#endif
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#endif
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