#define PJ_LIB__ #include #include #include "proj.h" #include "proj_internal.h" PROJ_HEAD(fouc_s, "Foucaut Sinusoidal") "\n\tPCyl, Sph"; #define MAX_ITER 10 #define LOOP_TOL 1e-7 namespace { // anonymous namespace struct pj_opaque { double n, n1; }; } // anonymous namespace static PJ_XY fouc_s_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 t; t = cos(lp.phi); xy.x = lp.lam * t / (Q->n + Q->n1 * t); xy.y = Q->n * lp.phi + Q->n1 * sin(lp.phi); return xy; } static PJ_LP fouc_s_s_inverse (PJ_XY xy, PJ *P) { /* Spheroidal, inverse */ PJ_LP lp = {0.0,0.0}; struct pj_opaque *Q = static_cast(P->opaque); int i; if (Q->n != 0.0) { lp.phi = xy.y; for (i = MAX_ITER; i ; --i) { const double V = (Q->n * lp.phi + Q->n1 * sin(lp.phi) - xy.y ) / (Q->n + Q->n1 * cos(lp.phi)); lp.phi -= V; if (fabs(V) < LOOP_TOL) break; } if (!i) lp.phi = xy.y < 0. ? -M_HALFPI : M_HALFPI; } else lp.phi = aasin(P->ctx,xy.y); const double V = cos(lp.phi); lp.lam = xy.x * (Q->n + Q->n1 * V) / V; return lp; } PJ *PROJECTION(fouc_s) { 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->n = pj_param(P->ctx, P->params, "dn").f; if (Q->n < 0. || Q->n > 1.) { proj_log_error(P, _("Invalid value for n: it should be in [0,1] range.")); return pj_default_destructor(P, PROJ_ERR_INVALID_OP_ILLEGAL_ARG_VALUE); } Q->n1 = 1. - Q->n; P->es = 0; P->inv = fouc_s_s_inverse; P->fwd = fouc_s_s_forward; return P; }