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root/radiance/ray/src/common/interp2d.h
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Comparing ray/src/common/interp2d.h (file contents):
Revision 2.5 by greg, Mon Feb 11 23:33:35 2013 UTC vs.
Revision 2.7 by greg, Thu Feb 14 19:57:10 2013 UTC

# Line 15 | Line 15 | extern "C" {
15   #define NI2DSMF 0.42f                   /* minimal smoothing factor */
16  
17   #define NI2DIR  (2*4)                   /* # interpolation directions */
18 + #define NI2DIM  16                      /* size of black flag array */
19  
20   /* Data structure for interpolant */
21   typedef struct {
22          int             ns;             /* number of sample positions */
23          float           dmin;           /* minimum diameter (default=1) */
24          float           smf;            /* smoothing factor (def=NI2DSMF) */
25 <        unsigned short  (*da)[NI2DIR];  /* anisotropic distances (private) */
25 >        float           smin[2];        /* sample minima */
26 >        float           smul[2];        /* NI2DIM/(smax-smin) */
27 >        float           grid2;          /* twice grid diameter squared */
28 >        struct interp2_samp {
29 >                unsigned short  dia[NI2DIR];
30 >                unsigned short  blkflg[NI2DIM];
31 >        }               *da;            /* direction array (private) */
32          float           spt[1][2];      /* sample positions (extends struct) */
33   } INTERP2;
34  
# Line 49 | Line 56 | extern void    interp2_free(INTERP2 *ip);
56   /* (Re)compute anisotropic basis function interpolant (normally automatic) */
57   extern int      interp2_analyze(INTERP2 *ip);
58  
59 + /* Compute unnormalized weight for a position relative to a sample */
60 + double          interp2_wti(INTERP2 *ip, const int i, double x, double y);
61 +
62   /***************************************************************
63   * Typical use is to allocate an INTERP2 struct and assign the
64   * spt[] array with the ordered sample locations in x & y.  (The
# Line 58 | Line 68 | extern int     interp2_analyze(INTERP2 *ip);
68   * vector for all the samples, or interp2_topsamp() is called to
69   * get the most important N samples for the specified location.
70   * The weights (and indexes in the case of interp2_topsamp)
71 < * are then used as coefficients for corresponding sample values
72 < * in a vector sum that interpolates the function at that
73 < * location.
71 > * are then used as coefficients for corresponding sample
72 > * values in a vector sum that interpolates the function at
73 > * that location.
74   * The minimum distance between sample positions defaults to 1.0.
75 < * Values spaced closer than this will be merged (averaged).  The
76 < * interp2_spacing() call may be used to alter this member,
75 > * Values spaced closer than this will be merged/averaged.
76 > * The interp2_spacing() call may be used to alter this distance,
77   * causing the interpolant to be recalculated during the
78 < * next call to either of the sampling functions.
78 > * next call to the sampling functions.
79   * The default smoothing factor NI2DSMF provides near-optimal
80   * interpolation when well-separated values are known
81 < * precisely.  Increase this setting by a factor > 1.0
81 > * precisely.  Increase this setting by a factor > 1
82   * with the interp2_smooth() call if greater mixing is desired.
83 < * A call of interp2_smooth(ip,0.0) resets to the minimum
83 > * A call of interp2_smooth(ip,0) resets to the minimum
84   * default.  It is not possible to "sharpen" the data.
85   **************************************************************/
86  

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