#define PROJ_PARMS__ \ double A, B; #define PJ_LIB__ # include PROJ_HEAD(putp5, "Putnins P5") "\n\tPCyl., Sph."; PROJ_HEAD(putp5p, "Putnins P5'") "\n\tPCyl., Sph."; #define C 1.01346 #define D 1.2158542 FORWARD(s_forward); /* spheroid */ xy.x = C * lp.lam * (P->A - P->B * sqrt(1. + D * lp.phi * lp.phi)); xy.y = C * lp.phi; return (xy); } INVERSE(s_inverse); /* spheroid */ lp.phi = xy.y / C; lp.lam = xy.x / (C * (P->A - P->B * sqrt(1. + D * lp.phi * lp.phi))); return (lp); } FREEUP; if (P) pj_dalloc(P); } static PJ * setup(PJ *P) { P->es = 0.; P->inv = s_inverse; P->fwd = s_forward; return P; } ENTRY0(putp5) P->A = 2.; P->B = 1.; ENDENTRY(setup(P)) ENTRY0(putp5p) P->A = 1.5; P->B = 0.5; ENDENTRY(setup(P))