/src/proj/src/projections/eck5.cpp
Line | Count | Source (jump to first uncovered line) |
1 | | |
2 | | |
3 | | #include <math.h> |
4 | | |
5 | | #include "proj.h" |
6 | | #include "proj_internal.h" |
7 | | |
8 | | PROJ_HEAD(eck5, "Eckert V") "\n\tPCyl, Sph"; |
9 | | |
10 | 0 | #define XF 0.44101277172455148219 |
11 | 0 | #define RXF 2.26750802723822639137 |
12 | 0 | #define YF 0.88202554344910296438 |
13 | 0 | #define RYF 1.13375401361911319568 |
14 | | |
15 | 0 | static PJ_XY eck5_s_forward(PJ_LP lp, PJ *P) { /* Spheroidal, forward */ |
16 | 0 | PJ_XY xy = {0.0, 0.0}; |
17 | 0 | (void)P; |
18 | 0 | xy.x = XF * (1. + cos(lp.phi)) * lp.lam; |
19 | 0 | xy.y = YF * lp.phi; |
20 | |
|
21 | 0 | return xy; |
22 | 0 | } |
23 | | |
24 | 0 | static PJ_LP eck5_s_inverse(PJ_XY xy, PJ *P) { /* Spheroidal, inverse */ |
25 | 0 | PJ_LP lp = {0.0, 0.0}; |
26 | 0 | (void)P; |
27 | 0 | lp.phi = RYF * xy.y; |
28 | 0 | lp.lam = RXF * xy.x / (1. + cos(lp.phi)); |
29 | |
|
30 | 0 | return lp; |
31 | 0 | } |
32 | | |
33 | 0 | PJ *PJ_PROJECTION(eck5) { |
34 | 0 | P->es = 0.0; |
35 | 0 | P->inv = eck5_s_inverse; |
36 | 0 | P->fwd = eck5_s_forward; |
37 | |
|
38 | 0 | return P; |
39 | 0 | } |