This file is indexed.

/usr/include/ossim/projection/ossimMillerProjection.h is in libossim-dev 1.7.21-4.

This file is owned by root:root, with mode 0o644.

The actual contents of the file can be viewed below.

  1
  2
  3
  4
  5
  6
  7
  8
  9
 10
 11
 12
 13
 14
 15
 16
 17
 18
 19
 20
 21
 22
 23
 24
 25
 26
 27
 28
 29
 30
 31
 32
 33
 34
 35
 36
 37
 38
 39
 40
 41
 42
 43
 44
 45
 46
 47
 48
 49
 50
 51
 52
 53
 54
 55
 56
 57
 58
 59
 60
 61
 62
 63
 64
 65
 66
 67
 68
 69
 70
 71
 72
 73
 74
 75
 76
 77
 78
 79
 80
 81
 82
 83
 84
 85
 86
 87
 88
 89
 90
 91
 92
 93
 94
 95
 96
 97
 98
 99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
//*******************************************************************
//
// License:  See top level LICENSE.txt file.
// 
// Author:  Garrett Potts (gpotts@imagelinks.com)
//
// Description:
//
// Calls Geotrans Miller projection code.  
//*******************************************************************
//  $Id: ossimMillerProjection.h 9968 2006-11-29 14:01:53Z gpotts $

#ifndef ossimMillerProjection_HEADER
#define ossimMillerProjection_HEADER

#include <ossim/projection/ossimMapProjection.h>

class ossimMillerProjection : public ossimMapProjection
{
public:
   ossimMillerProjection(const ossimEllipsoid& ellipsoid = ossimEllipsoid(),
                         const ossimGpt& origin = ossimGpt());
   ossimMillerProjection(const ossimEllipsoid& ellipsoid,
                         const ossimGpt& origin,
                         const double falseEasting,
                         const double falseNorthing);
   
   ~ossimMillerProjection(){}
   
   virtual ossimObject *dup()const{return new ossimMillerProjection(*this);}

   virtual ossimGpt inverse(const ossimDpt &eastingNorthing)const;
   virtual ossimDpt forward(const ossimGpt &latLon)const;
   virtual void update();

   /*!
    * SetFalseEasting.  The value is in meters.
    * Update is then called so we can pre-compute paramters
    */
   void setFalseEasting(double falseEasting);

   /*!
    * SetFalseNorthing.  The value is in meters.
    * Update is then called so we can pre-compute paramters
    */
   void setFalseNorthing(double falseNorthing);

   /*!
    * Sets both false easting and northing values.  The values are
    * expected to be in meters.
    * Update is then called so we can pre-compute paramters
    */
   void setFalseEastingNorthing(double falseEasting, double falseNorthing);

   void setDefaults();

   double getFalseEasting()const{return Mill_False_Easting;}
   double getFalseNorthing()const{return Mill_False_Northing;}
   /*!
    * Method to save the state of an object to a keyword list.
    * Return true if ok or false on error.
    */
   virtual bool saveState(ossimKeywordlist& kwl,
                          const char* prefix=0)const;

   /*!
    * Method to the load (recreate) the state of an object from a keyword
    * list.  Return true if ok or false on error.
    */
   virtual bool loadState(const ossimKeywordlist& kwl,
                          const char* prefix=0);
   
private:

   //________________GEOTRANS STUFF___________________

   mutable double Mill_a;   /* Semi-major axis of ellipsoid in meters */
   mutable double Mill_f;   /* Flattening of ellipsoid */
   mutable double es2;      /* Eccentricity (0.08181919084262188000) squared         */
   mutable double es4;      /* es2 * es2	*/
   mutable double es6;      /* es4 * es2   */
   mutable double Ra;       /* Spherical Radius */
   
/* Miller projection Parameters */
   mutable double Mill_Origin_Long;                  /* Longitude of origin in radians    */
   mutable double Mill_False_Easting;
   mutable double Mill_False_Northing;
   mutable double Mill_Delta_Northing;
   mutable double Mill_Max_Easting;
   mutable double Mill_Min_Easting;
   
/*!
 * The function Set_Miller_Parameters receives the ellipsoid parameters and
 * Miller Cylindrical projcetion parameters as inputs, and sets the corresponding
 * state variables.  If any errors occur, the error code(s) are returned by the 
 * function, otherwise MILL_NO_ERROR is returned.
 *
 *    a                 : Semi-major axis of ellipsoid, in meters   (input)
 *    f                 : Flattening of ellipsoid						        (input)
 *    Central_Meridian  : Longitude in radians at the center of     (input)
 *                          the projection
 *    False_Easting     : A coordinate value in meters assigned to the
 *                          central meridian of the projection.     (input)
 *    False_Northing    : A coordinate value in meters assigned to the
 *                          origin latitude of the projection       (input)
 */
  long Set_Miller_Parameters(double a,
                             double f,
                             double Central_Meridian,
                             double False_Easting,
                             double False_Northing);


/*!
 * The function Get_Miller_Parameters returns the current ellipsoid
 * parameters and Miller Cylindrical projection parameters.
 *
 *    a                 : Semi-major axis of ellipsoid, in meters   (output)
 *    f                 : Flattening of ellipsoid						        (output)
 *    Central_Meridian  : Longitude in radians at the center of     (output)
 *                          the projection
 *    False_Easting     : A coordinate value in meters assigned to the
 *                          central meridian of the projection.     (output)
 *    False_Northing    : A coordinate value in meters assigned to the
 *                          origin latitude of the projection       (output)
 */
  void Get_Miller_Parameters(double *a,
                             double *f,
                             double *Central_Meridian,
                             double *False_Easting,
                             double *False_Northing)const;


/*!
 * The function Convert_Geodetic_To_Miller converts geodetic (latitude and
 * longitude) coordinates to Miller Cylindrical projection easting, and northing
 * coordinates, according to the current ellipsoid and Miller Cylindrical projection
 * parameters.  If any errors occur, the error code(s) are returned by the
 * function, otherwise MILL_NO_ERROR is returned.
 *
 *    Latitude          : Latitude (phi) in radians           (input)
 *    Longitude         : Longitude (lambda) in radians       (input)
 *    Easting           : Easting (X) in meters               (output)
 *    Northing          : Northing (Y) in meters              (output)
 */
  long Convert_Geodetic_To_Miller (double Latitude,
                                   double Longitude,
                                   double *Easting,
                                   double *Northing)const;


/*!
 * The function Convert_Miller_To_Geodetic converts Miller Cylindrical projection
 * easting and northing coordinates to geodetic (latitude and longitude)
 * coordinates, according to the current ellipsoid and Miller Cylindrical projection
 * coordinates.  If any errors occur, the error code(s) are returned by the
 * function, otherwise MILL_NO_ERROR is returned.
 *
 *    Easting           : Easting (X) in meters                  (input)
 *    Northing          : Northing (Y) in meters                 (input)
 *    Latitude          : Latitude (phi) in radians              (output)
 *    Longitude         : Longitude (lambda) in radians          (output)
 */
  long Convert_Miller_To_Geodetic(double Easting,
                                  double Northing,
                                  double *Latitude,
                                  double *Longitude)const;

TYPE_DATA
};

#endif