source: sasmodels/sasmodels/kernel_header.c @ edf06e1

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Last change on this file since edf06e1 was edf06e1, checked in by Paul Kienzle <pkienzle@…>, 8 years ago

fix tinycc build of sphere_sld

  • Property mode set to 100644
File size: 4.9 KB
Line 
1#ifdef __OPENCL_VERSION__
2# define USE_OPENCL
3#elif defined(_OPENMP)
4# define USE_OPENMP
5#endif
6
7// If opencl is not available, then we are compiling a C function
8// Note: if using a C++ compiler, then define kernel as extern "C"
9#ifdef USE_OPENCL
10   typedef int int32_t;
11#  if defined(USE_SINCOS)
12#    define SINCOS(angle,svar,cvar) svar=sincos(angle,&cvar)
13#  else
14#    define SINCOS(angle,svar,cvar) do {const double _t_=angle; svar=sin(_t_);cvar=cos(_t_);} while (0)
15#  endif
16   // OpenCL only has type generic math
17   #define erff erf
18   #define erfcf erfc
19#else // !USE_OPENCL
20// Use SAS_DOUBLE to force the use of double even for float kernels
21#  define SAS_DOUBLE dou ## ble
22#  ifdef __cplusplus
23      #include <cstdio>
24      #include <cmath>
25      using namespace std;
26      #if defined(_MSC_VER)
27         #include <limits>
28         #include <float.h>
29         #define kernel extern "C" __declspec( dllexport )
30         inline double trunc(double x) { return x>=0?floor(x):-floor(-x); }
31         inline double fmin(double x, double y) { return x>y ? y : x; }
32         inline double fmax(double x, double y) { return x<y ? y : x; }
33         #define isnan(x) _isnan(x)
34         #define isinf(x) (!_finite(x))
35         #define isfinite(x) _finite(x)
36         #define NAN (std::numeric_limits<double>::quiet_NaN()) // non-signalling NaN
37         #define INFINITY (std::numeric_limits<double>::infinity())
38         #define NEED_ERF
39         #define NEED_EXPM1
40         #define NEED_TGAMMA
41     #else
42         #define kernel extern "C"
43         #include <cstdint>
44     #endif
45     inline void SINCOS(double angle, double &svar, double &cvar) { svar=sin(angle); cvar=cos(angle); }
46#  else // !__cplusplus
47     #include <inttypes.h>  // C99 guarantees that int32_t types is here
48     #include <stdio.h>
49     #if defined(__TINYC__)
50         typedef int int32_t;
51         #include <math.h>
52         // TODO: test isnan
53         inline double _isnan(double x) { return x != x; } // hope this doesn't optimize away!
54         #undef isnan
55         #define isnan(x) _isnan(x)
56         // Defeat the double->float conversion since we don't have tgmath
57         inline SAS_DOUBLE trunc(SAS_DOUBLE x) { return x>=0?floor(x):-floor(-x); }
58         inline SAS_DOUBLE fmin(SAS_DOUBLE x, SAS_DOUBLE y) { return x>y ? y : x; }
59         inline SAS_DOUBLE fmax(SAS_DOUBLE x, SAS_DOUBLE y) { return x<y ? y : x; }
60         #define NEED_ERF
61         #define NEED_EXPM1
62         #define NEED_TGAMMA
63         // expf missing from windows?
64         #define expf exp
65     #else
66         #include <tgmath.h> // C99 type-generic math, so sin(float) => sinf
67     #endif
68     // MSVC doesn't support C99, so no need for dllexport on C99 branch
69     #define kernel
70     #define SINCOS(angle,svar,cvar) do {const double _t_=angle; svar=sin(_t_);cvar=cos(_t_);} while (0)
71#  endif  // !__cplusplus
72#  define global
73#  define local
74#  define constant const
75// OpenCL powr(a,b) = C99 pow(a,b), b >= 0
76// OpenCL pown(a,b) = C99 pow(a,b), b integer
77#  define powr(a,b) pow(a,b)
78#  define pown(a,b) pow(a,b)
79#endif // !USE_OPENCL
80
81#if defined(NEED_EXPM1)
82   static SAS_DOUBLE expm1(SAS_DOUBLE x_in) {
83      double x = (double)x_in;  // go back to float for single precision kernels
84      // Adapted from the cephes math library.
85      // Copyright 1984 - 1992 by Stephen L. Moshier
86      if (x != x || x == 0.0) {
87         return x; // NaN and +/- 0
88      } else if (x < -0.5 || x > 0.5) {
89         return exp(x) - 1.0;
90      } else {
91         const double xsq = x*x;
92         const double p = (((
93            +1.2617719307481059087798E-4)*xsq
94            +3.0299440770744196129956E-2)*xsq
95            +9.9999999999999999991025E-1);
96         const double q = ((((
97            +3.0019850513866445504159E-6)*xsq
98            +2.5244834034968410419224E-3)*xsq
99            +2.2726554820815502876593E-1)*xsq
100            +2.0000000000000000000897E0);
101         double r = x * p;
102         r =  r / (q - r);
103         return r+r;
104       }
105   }
106#endif
107
108// Standard mathematical constants:
109//   M_E, M_LOG2E, M_LOG10E, M_LN2, M_LN10, M_PI, M_PI_2=pi/2, M_PI_4=pi/4,
110//   M_1_PI=1/pi, M_2_PI=2/pi, M_2_SQRTPI=2/sqrt(pi), SQRT2, SQRT1_2=sqrt(1/2)
111// OpenCL defines M_constant_F for float constants, and nothing if double
112// is not enabled on the card, which is why these constants may be missing
113#ifndef M_PI
114#  define M_PI 3.141592653589793
115#endif
116#ifndef M_PI_2
117#  define M_PI_2 1.570796326794897
118#endif
119#ifndef M_PI_4
120#  define M_PI_4 0.7853981633974483
121#endif
122#ifndef M_E
123#  define M_E 2.718281828459045091
124#endif
125
126// Non-standard function library
127// pi/180, used for converting between degrees and radians
128// 4/3 pi for computing sphere volumes
129// square and cube for computing squares and cubes
130#ifndef M_PI_180
131#  define M_PI_180 0.017453292519943295
132#endif
133#ifndef M_4PI_3
134#  define M_4PI_3 4.18879020478639
135#endif
136inline double square(double x) { return x*x; }
137inline double cube(double x) { return x*x*x; }
138inline double sinc(double x) { return x==0 ? 1.0 : sin(x)/x; }
139
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