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root/radiance/ray/src/common/fvect.h
Revision: 2.16
Committed: Fri Apr 11 20:27:23 2014 UTC (10 years ago) by greg
Content type: text/plain
Branch: MAIN
CVS Tags: rad4R2P2, rad4R2, rad4R2P1
Changes since 2.15: +3 -1 lines
Log Message:
Made reading of vectors more consistent with FVFORMAT macro

File Contents

# User Rev Content
1 greg 2.16 /* RCSid $Id: fvect.h,v 2.15 2013/06/29 21:03:44 greg Exp $ */
2 greg 2.7 /*
3     * Declarations for floating-point vector operations.
4     */
5 schorsch 2.9 #ifndef _RAD_FVECT_H_
6     #define _RAD_FVECT_H_
7     #ifdef __cplusplus
8     extern "C" {
9     #endif
10 greg 1.1
11 greg 1.3 #ifdef SMLFLT
12 schorsch 2.10 #define RREAL float
13 greg 2.3 #define FTINY (1e-3)
14 greg 2.16 #define FVFORMAT "%f %f %f"
15 greg 1.2 #else
16 schorsch 2.10 #define RREAL double
17 greg 1.3 #define FTINY (1e-6)
18 greg 2.16 #define FVFORMAT "%lf %lf %lf"
19 greg 1.2 #endif
20 greg 1.3 #define FHUGE (1e10)
21 greg 1.1
22 schorsch 2.10 typedef RREAL FVECT[3];
23 greg 1.2
24 greg 1.1 #define VCOPY(v1,v2) ((v1)[0]=(v2)[0],(v1)[1]=(v2)[1],(v1)[2]=(v2)[2])
25     #define DOT(v1,v2) ((v1)[0]*(v2)[0]+(v1)[1]*(v2)[1]+(v1)[2]*(v2)[2])
26 gregl 2.5 #define VLEN(v) sqrt(DOT(v,v))
27 gwlarson 2.6 #define VADD(vr,v1,v2) ((vr)[0]=(v1)[0]+(v2)[0], \
28     (vr)[1]=(v1)[1]+(v2)[1], \
29     (vr)[2]=(v1)[2]+(v2)[2])
30     #define VSUB(vr,v1,v2) ((vr)[0]=(v1)[0]-(v2)[0], \
31     (vr)[1]=(v1)[1]-(v2)[1], \
32     (vr)[2]=(v1)[2]-(v2)[2])
33 greg 1.2 #define VSUM(vr,v1,v2,f) ((vr)[0]=(v1)[0]+(f)*(v2)[0], \
34     (vr)[1]=(v1)[1]+(f)*(v2)[1], \
35     (vr)[2]=(v1)[2]+(f)*(v2)[2])
36 gwlarson 2.6 #define VCROSS(vr,v1,v2) \
37     ((vr)[0]=(v1)[1]*(v2)[2]-(v1)[2]*(v2)[1], \
38     (vr)[1]=(v1)[2]*(v2)[0]-(v1)[0]*(v2)[2], \
39     (vr)[2]=(v1)[0]*(v2)[1]-(v1)[1]*(v2)[0])
40 greg 1.1
41 greg 2.14 #define GEOD_RAD 0 /* geodesic distance specified in radians */
42     #define GEOD_ABS 1 /* absolute geodesic distance */
43     #define GEOD_REL 2 /* relative geodesic distance */
44 greg 2.7
45 greg 2.15 extern double Acos(double x);
46     extern double Asin(double x);
47 greg 2.13 extern double fdot(const FVECT v1, const FVECT v2);
48     extern double dist2(const FVECT v1, const FVECT v2);
49     extern double dist2line(const FVECT p, const FVECT ep1, const FVECT ep2);
50     extern double dist2lseg(const FVECT p, const FVECT ep1, const FVECT ep2);
51     extern void fcross(FVECT vres, const FVECT v1, const FVECT v2);
52     extern void fvsum(FVECT vres, const FVECT v0, const FVECT v1, double f);
53 greg 2.7 extern double normalize(FVECT v);
54 greg 2.13 extern int closestapproach(RREAL t[2],
55     const FVECT rorg0, const FVECT rdir0,
56     const FVECT rorg1, const FVECT rdir1);
57     extern void spinvector(FVECT vres, const FVECT vorig,
58     const FVECT vnorm, double theta);
59 greg 2.14 extern double geodesic(FVECT vres, const FVECT vorig,
60     const FVECT vtarg, double t, int meas);
61 schorsch 2.9 #ifdef __cplusplus
62     }
63 greg 2.7 #endif
64 schorsch 2.9 #endif /* _RAD_FVECT_H_ */
65