#define PJ_LIB__ #include #include #include "proj.h" #include "proj_internal.h" namespace { // anonymous namespace struct pj_opaque { double phi1; double fxa; double fxb; int mode; }; } // anonymous namespace PROJ_HEAD(rpoly, "Rectangular Polyconic") "\n\tConic, Sph, no inv\n\tlat_ts="; #define EPS 1e-9 static PJ_XY rpoly_s_forward (PJ_LP lp, PJ *P) { /* Spheroidal, forward */ PJ_XY xy = {0.0,0.0}; struct pj_opaque *Q = static_cast(P->opaque); double fa; if (Q->mode) fa = tan(lp.lam * Q->fxb) * Q->fxa; else fa = 0.5 * lp.lam; if (fabs(lp.phi) < EPS) { xy.x = fa + fa; xy.y = - P->phi0; } else { xy.y = 1. / tan(lp.phi); fa = 2. * atan(fa * sin(lp.phi)); xy.x = sin(fa) * xy.y; xy.y = lp.phi - P->phi0 + (1. - cos(fa)) * xy.y; } return xy; } PJ *PROJECTION(rpoly) { struct pj_opaque *Q = static_cast(calloc (1, sizeof (struct pj_opaque))); if (nullptr==Q) return pj_default_destructor(P, PROJ_ERR_OTHER /*ENOMEM*/); P->opaque = Q; Q->phi1 = fabs(pj_param(P->ctx, P->params, "rlat_ts").f); Q->mode = Q->phi1 > EPS; if (Q->mode) { Q->fxb = 0.5 * sin(Q->phi1); Q->fxa = 0.5 / Q->fxb; } P->es = 0.; P->fwd = rpoly_s_forward; return P; }