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- #define ALLOW_DOUBLE_MATH_FUNCTIONS
- #include <AP_HAL/AP_HAL.h>
- #include <stdlib.h>
- #include "AP_Math.h"
- #include "location.h"
- void wgsllh2ecef(const Vector3d &llh, Vector3d &ecef) {
- double d = WGS84_E * sin(llh[0]);
- double N = WGS84_A / sqrt(1 - d*d);
- ecef[0] = (N + llh[2]) * cos(llh[0]) * cos(llh[1]);
- ecef[1] = (N + llh[2]) * cos(llh[0]) * sin(llh[1]);
- ecef[2] = ((1 - WGS84_E*WGS84_E)*N + llh[2]) * sin(llh[0]);
- }
- void wgsecef2llh(const Vector3d &ecef, Vector3d &llh) {
-
- const double p = sqrt(ecef[0]*ecef[0] + ecef[1]*ecef[1]);
-
- if (!is_zero(p))
- llh[1] = atan2(ecef[1], ecef[0]);
- else
- llh[1] = 0;
-
- if (p < WGS84_A * double(1e-16)) {
- llh[0] = copysign(M_PI_2, ecef[2]);
- llh[2] = fabs(ecef[2]) - WGS84_B;
- return;
- }
-
- const double P = p / WGS84_A;
- const double e_c = sqrt(1 - WGS84_E*WGS84_E);
- const double Z = fabs(ecef[2]) * e_c / WGS84_A;
-
- double S = Z;
- double C = e_c * P;
-
- double prev_C = -1;
- double prev_S = -1;
- double A_n, B_n, D_n, F_n;
-
- for (int i=0; i<10; i++)
- {
-
- A_n = sqrt(S*S + C*C);
- D_n = Z*A_n*A_n*A_n + WGS84_E*WGS84_E*S*S*S;
- F_n = P*A_n*A_n*A_n - WGS84_E*WGS84_E*C*C*C;
- B_n = double(1.5) * WGS84_E*S*C*C*(A_n*(P*S - Z*C) - WGS84_E*S*C);
-
- S = D_n*F_n - B_n*S;
- C = F_n*F_n - B_n*C;
-
- if (S > C) {
- C = C / S;
- S = 1;
- } else {
- S = S / C;
- C = 1;
- }
-
- if (fabs(S - prev_S) < double(1e-16) && fabs(C - prev_C) < double(1e-16)) {
- break;
- } else {
- prev_S = S;
- prev_C = C;
- }
- }
- A_n = sqrt(S*S + C*C);
- llh[0] = copysign(1.0, ecef[2]) * atan(S / (e_c*C));
- llh[2] = (p*e_c*C + fabs(ecef[2])*S - WGS84_A*e_c*A_n) / sqrt(e_c*e_c*C*C + S*S);
- }
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