source: cpp/common/nonstd_math.h @ 970

Last change on this file since 970 was 970, checked in by Maciej Komosinski, 4 years ago

Added functions to properly round floating point values to specified precision

  • Property svn:eol-style set to native
File size: 3.2 KB
RevLine 
[286]1// This file is a part of Framsticks SDK.  http://www.framsticks.com/
[896]2// Copyright (C) 1999-2019  Maciej Komosinski and Szymon Ulatowski.
[286]3// See LICENSE.txt for details.
[122]4
[109]5#ifndef _NONSTD_MATH_H_
6#define _NONSTD_MATH_H_
7
8
9#ifdef _MSC_VER
10 #define _USE_MATH_DEFINES //after this is defined, the next #include <math.h> or <cmath> will define M_PI etc.
11 #include <math.h> //w vc2008 dzia³a³o tu <cmath>, ale w vc2010 juz nie bo "coœ" (jakiœ inny .h stl'a?) includuje wczeœniej <cmath> bez _USE_MATH_DEFINES, a <cmath> includuje <math.h> (ale tylko raz bo ma "include guards" jak kazdy .h)
12 #include <float.h>
[251]13 //#define isnan(x) _isnan(x) //since 2014 we use std::isnan()
[109]14 #define finite(x) _finite(x)
15#else //m.in. __BORLANDC__
16 #include <math.h>
17#endif
18
19
20
21//random number generator:
22#include "random.h"
[896]23RandomGenerator &rndGetInstance();
[109]24
[896]25inline double rndDouble(double limit_exclusive) { return rndGetInstance().getDouble() * limit_exclusive; }
26inline unsigned int rndUint(unsigned int limit_exclusive) { return (unsigned int)(rndGetInstance().getDouble() * limit_exclusive); } //returns random from 0..limit_exclusive-1
27inline void rndSetSeed(unsigned int seed) { rndGetInstance().setSeed(seed); }
28inline unsigned int rndRandomizeSeed() { return rndGetInstance().randomize(); }
[109]29
[970]30
31
32// precision==-1 for full precision, or positive values for the number of digits to print past the decimal point.
33// Allocated buffer with bufferlen=30 is OK.
34// Returns the number of chars actually used (not including the ending 0).
35int doubleToString(double x, int precision, char *buffer, int bufferlen);
36
37double round(const double x, const int precision);
38
39
40
41
42
[109]43//floating point specific numbers
44#include "stdlib.h"
45
46#ifdef __BORLANDC__
47        #include <float.h>
48        #define isnan(x) _isnan(x) //http://stackoverflow.com/questions/570669/checking-if-a-double-or-float-is-nan-in-c
49        #define finite(x) _finite(x)
50#endif
51
[122]52#ifdef LINUX
53  #define _isnan(a) isnan(a)
54#endif
55
[109]56#ifdef IPHONE
57        #define finite(x) (!isinf(x))
[122]58  #define _isnan(a) isnan(a)
[109]59#endif
60
61
[122]62#if defined SHP
[109]63 //#define __assert_func(a,b,c,d) 0 //Currently, we are sorry to inform you that assert() is not yet supported. We have considered your request for internal discussion. Na szczêœcie jest w³asna (byle by by³a, bo i tak zak³adamy ze assert ktore przeciez dziala tylko w trybie debug nie jest potrzebne na bada) implementacja w "bada-assert.cpp"
64 #define isnan(x) false //isnan() sie nie linkuje
65 #define finite(x) true //j.w.
66 //#include <cstdlib> //RAND_MAX defined incorrectly
67 //#ifdef BADA_SIMULATOR //...but only in simulator libs
68 // #undef RAND_MAX
69 // #define RAND_MAX 32768 //...this is the actual value used by rand()
70 //#endif
71#endif
72
73//handling floating point exceptions
74void fpExceptInit(); //call once, before ...Enable/Disable
75void fpExceptEnable();
76void fpExceptDisable();
77
[896]78// std::lerp can be used since c++20 (and has some guaranteed properties probably better than this basic formula) but apparently it is not a template
79template <typename Value, typename Linear> Value universal_lerp(Value a,Value b,Linear t) {return a*(1-t)+b*t;}
80
[913]81template <typename T> T linearTransform(T value, T min_in, T max_in, T min_out, T max_out)
82{
83        return min_out + (value-min_in)*(max_out-min_out)/(max_in-min_in);
84}
85
[109]86#endif
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