quakespasm/Quake/mathlib.h
Ozkan Sezer 16b9fd13ea bspfile.h, cdaudio.h, client.h, cmd.h, common.h, console.h, crc.h, cvar.h,
d_ifacea.h, draw.h, gl_texmgr.h, glquake.h, image.h, input.h, keys.h, mathlib.h,
menu.h, modelgen.h, net.h, net_dgrm.h, net_loop.h, net_sdlnet.h, net_udp.h,
net_wins.h, platform.h, pr_comp.h, progdefs.h, progs.h, protocol.h, quakedef.h,
render.h, resource.h, sbar.h, screen.h, server.h, sound.h, spritegn.h, sys.h,
vid.h, view.h, wad.h, world.h, zone.h: added include guards to the headers.


git-svn-id: svn://svn.code.sf.net/p/quakespasm/code/trunk/quakespasm@84 af15c1b1-3010-417e-b628-4374ebc0bcbd
2010-02-21 00:01:08 +00:00

129 lines
3.7 KiB
C

/*
Copyright (C) 1996-2001 Id Software, Inc.
Copyright (C) 2002-2009 John Fitzgibbons and others
Copyright (C) 2007-2008 Kristian Duske
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
See the GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
*/
#ifndef __MATHLIB_H
#define __MATHLIB_H
// mathlib.h
typedef float vec_t;
typedef vec_t vec3_t[3];
typedef vec_t vec5_t[5];
typedef int fixed4_t;
typedef int fixed8_t;
typedef int fixed16_t;
#ifndef M_PI
#define M_PI 3.14159265358979323846 // matches value in gcc v2 math.h
#endif
#define M_PI_DIV_180 (M_PI / 180.0) //johnfitz
struct mplane_s;
extern vec3_t vec3_origin;
extern int nanmask;
#define IS_NAN(x) (((*(int *)&x)&nanmask)==nanmask)
#define CLAMP(min, x, max) ((x) < (min) ? (min) : (x) > (max) ? (max) : (x)) //johnfitz
#define Q_rint(x) ((x) > 0 ? (int)((x) + 0.5) : (int)((x) - 0.5)) //johnfitz -- from joequake
#define DotProduct(x,y) (x[0]*y[0]+x[1]*y[1]+x[2]*y[2])
#define VectorSubtract(a,b,c) {c[0]=a[0]-b[0];c[1]=a[1]-b[1];c[2]=a[2]-b[2];}
#define VectorAdd(a,b,c) {c[0]=a[0]+b[0];c[1]=a[1]+b[1];c[2]=a[2]+b[2];}
#define VectorCopy(a,b) {b[0]=a[0];b[1]=a[1];b[2]=a[2];}
//johnfitz -- courtesy of lordhavoc
#define VectorNormalizeFast(_v)\
{\
float _y, _number;\
_number = DotProduct(_v, _v);\
if (_number != 0.0)\
{\
*((int *)&_y) = 0x5f3759df - ((* (int *) &_number) >> 1);\
_y = _y * (1.5f - (_number * 0.5f * _y * _y));\
VectorScale(_v, _y, _v);\
}\
}
// kristian - missing math functions
#if !defined(max)
inline int max (int x, int y);
#endif
#if !defined(min)
inline int min (int x, int y);
#endif
// kristian
void TurnVector (vec3_t out, const vec3_t forward, const vec3_t side, float angle); //johnfitz
void VectorAngles (const vec3_t forward, vec3_t angles); //johnfitz
void VectorMA (vec3_t veca, float scale, vec3_t vecb, vec3_t vecc);
vec_t _DotProduct (vec3_t v1, vec3_t v2);
void _VectorSubtract (vec3_t veca, vec3_t vecb, vec3_t out);
void _VectorAdd (vec3_t veca, vec3_t vecb, vec3_t out);
void _VectorCopy (vec3_t in, vec3_t out);
int VectorCompare (vec3_t v1, vec3_t v2);
vec_t Length (vec3_t v);
void CrossProduct (vec3_t v1, vec3_t v2, vec3_t cross);
float VectorNormalize (vec3_t v); // returns vector length
void VectorInverse (vec3_t v);
void VectorScale (vec3_t in, vec_t scale, vec3_t out);
int Q_log2(int val);
void R_ConcatRotations (float in1[3][3], float in2[3][3], float out[3][3]);
void R_ConcatTransforms (float in1[3][4], float in2[3][4], float out[3][4]);
void FloorDivMod (double numer, double denom, int *quotient,
int *rem);
fixed16_t Invert24To16(fixed16_t val);
int GreatestCommonDivisor (int i1, int i2);
void AngleVectors (vec3_t angles, vec3_t forward, vec3_t right, vec3_t up);
int BoxOnPlaneSide (vec3_t emins, vec3_t emaxs, struct mplane_s *plane);
float anglemod(float a);
#define BOX_ON_PLANE_SIDE(emins, emaxs, p) \
(((p)->type < 3)? \
( \
((p)->dist <= (emins)[(p)->type])? \
1 \
: \
( \
((p)->dist >= (emaxs)[(p)->type])?\
2 \
: \
3 \
) \
) \
: \
BoxOnPlaneSide( (emins), (emaxs), (p)))
#endif /* __MATHLIB_H */