HarrisSIFTFeatureCalculator.h
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36 // Filename: HarrisSIFTFeatureCalculator.h
37 // Author: Pedram Azad
38 // Date: 20.11.2007
39 // ****************************************************************************
40 
44 #ifndef _HARRIS_SIFT_FEATURE_CALCULATOR__H_
45 #define _HARRIS_SIFT_FEATURE_CALCULATOR__H_
46 
47 
48 // ****************************************************************************
49 // Necessary includes
50 // ****************************************************************************
51 
54 
55 
56 // ****************************************************************************
57 // Forward declarations
58 // ****************************************************************************
59 
60 class CFeatureEntry;
61 class CByteImage;
62 struct Vec2d;
63 
64 
65 
66 // ****************************************************************************
67 // CHarrisSIFTFeatureCalculator
68 // ****************************************************************************
69 
75 {
76 public:
77  // constructor
78  CHarrisSIFTFeatureCalculator(float fThreshold = 0.01f, int nLayers = 3, int nMaxInterestPoints = 500);
79 
80  // destructor
82 
83 
84  // public methods
85  int CalculateFeatures(const CByteImage *pImage, CDynamicArray *pResultList, bool bManageMemory = true);
87  CFeatureEntry* CreateCopy(const CFeatureEntry *pFeatureEntry);
88 
89  // member access
90  void SetMaxInterestPoints(int nMaxInterestPoints) { m_nMaxInterestPoints = nMaxInterestPoints; }
91  void SetThreshold(float fThreshold) { m_fThreshold = fThreshold;}
92  void SetMinDistance(float fMinDistance) { m_fMinDistance = fMinDistance; }
93  void SetNumberOfLevels(int nLevels) { m_nLevels = nLevels; }
94  void SetPerform80PercentCheck(bool bPerform80PercentCheck) { m_bPerform80PercentCheck = bPerform80PercentCheck; }
95 
97  float GetThreshold() { return m_fThreshold; }
98  float GetMinDistance() { return m_fMinDistance; }
99  int GetNumberOfLevels() { return m_nLevels; }
100 
101  const Vec2d* GetInterestPoints() const { return m_pInterestPoints; }
103 
104 
105 private:
106  // private methods
107  void FindInterestPoints(const CByteImage *pImage, float scale, int nLevel);
108 
109  // private attributes
115 
119  bool m_bManageMemory; // only needed if CDynamicArray is used
120 
124 };
125 
126 
127 
128 #endif /* _HARRIS_SIFT_FEATURE_CALCULATOR__H_ */
GLenum GLenum GLenum GLenum GLenum scale
Definition: glext.h:5308
Base class for the representation of local features.
Definition: FeatureEntry.h:72
Data structure for the representation of 8-bit grayscale images and 24-bit RGB (or HSV) color images ...
Definition: ByteImage.h:80
void SetMinDistance(float fMinDistance)
int CalculateFeatures(const CByteImage *pImage, CDynamicArray *pResultList, bool bManageMemory=true)
void SetMaxInterestPoints(int nMaxInterestPoints)
void FindInterestPoints(const CByteImage *pImage, float scale, int nLevel)
CFeatureEntry * CreateCopy(const CFeatureEntry *pFeatureEntry)
CDynamicArrayTemplatePointer< CFeatureEntry > * m_pResultListTemplate
Class for computing Harris-SIFT features in a CByteImage.
Data structure for the representation of a 2D vector.
Definition: Math2d.h:82
void SetPerform80PercentCheck(bool bPerform80PercentCheck)
CHarrisSIFTFeatureCalculator(float fThreshold=0.01f, int nLayers=3, int nMaxInterestPoints=500)


asr_ivt
Author(s): Allgeyer Tobias, Hutmacher Robin, Kleinert Daniel, Meißner Pascal, Scholz Jonas, Stöckle Patrick
autogenerated on Mon Dec 2 2019 03:47:28