#include "car.h" namespace { #define DIM 9 #define EDIM 9 #define MEDIM 9 typedef void (*Hfun)(double *, double *, double *); double mass; void set_mass(double x){ mass = x;} double rotational_inertia; void set_rotational_inertia(double x){ rotational_inertia = x;} double center_to_front; void set_center_to_front(double x){ center_to_front = x;} double center_to_rear; void set_center_to_rear(double x){ center_to_rear = x;} double stiffness_front; void set_stiffness_front(double x){ stiffness_front = x;} double stiffness_rear; void set_stiffness_rear(double x){ stiffness_rear = x;} const static double MAHA_THRESH_25 = 3.8414588206941227; const static double MAHA_THRESH_24 = 5.991464547107981; const static double MAHA_THRESH_30 = 3.8414588206941227; const static double MAHA_THRESH_26 = 3.8414588206941227; const static double MAHA_THRESH_27 = 3.8414588206941227; const static double MAHA_THRESH_29 = 3.8414588206941227; const static double MAHA_THRESH_28 = 3.8414588206941227; const static double MAHA_THRESH_31 = 3.8414588206941227; /****************************************************************************** * Code generated with SymPy 1.14.0 * * * * See http://www.sympy.org/ for more information. * * * * This file is part of 'ekf' * ******************************************************************************/ void err_fun(double *nom_x, double *delta_x, double *out_6312187491562868488) { out_6312187491562868488[0] = delta_x[0] + nom_x[0]; out_6312187491562868488[1] = delta_x[1] + nom_x[1]; out_6312187491562868488[2] = delta_x[2] + nom_x[2]; out_6312187491562868488[3] = delta_x[3] + nom_x[3]; out_6312187491562868488[4] = delta_x[4] + nom_x[4]; out_6312187491562868488[5] = delta_x[5] + nom_x[5]; out_6312187491562868488[6] = delta_x[6] + nom_x[6]; out_6312187491562868488[7] = delta_x[7] + nom_x[7]; out_6312187491562868488[8] = delta_x[8] + nom_x[8]; } void inv_err_fun(double *nom_x, double *true_x, double *out_8729778864089017210) { out_8729778864089017210[0] = -nom_x[0] + true_x[0]; out_8729778864089017210[1] = -nom_x[1] + true_x[1]; out_8729778864089017210[2] = -nom_x[2] + true_x[2]; out_8729778864089017210[3] = -nom_x[3] + true_x[3]; out_8729778864089017210[4] = -nom_x[4] + true_x[4]; out_8729778864089017210[5] = -nom_x[5] + true_x[5]; out_8729778864089017210[6] = -nom_x[6] + true_x[6]; out_8729778864089017210[7] = -nom_x[7] + true_x[7]; out_8729778864089017210[8] = -nom_x[8] + true_x[8]; } void H_mod_fun(double *state, double *out_2433884036008471400) { out_2433884036008471400[0] = 1.0; out_2433884036008471400[1] = 0.0; out_2433884036008471400[2] = 0.0; out_2433884036008471400[3] = 0.0; out_2433884036008471400[4] = 0.0; out_2433884036008471400[5] = 0.0; out_2433884036008471400[6] = 0.0; out_2433884036008471400[7] = 0.0; out_2433884036008471400[8] = 0.0; out_2433884036008471400[9] = 0.0; out_2433884036008471400[10] = 1.0; out_2433884036008471400[11] = 0.0; out_2433884036008471400[12] = 0.0; out_2433884036008471400[13] = 0.0; out_2433884036008471400[14] = 0.0; out_2433884036008471400[15] = 0.0; out_2433884036008471400[16] = 0.0; out_2433884036008471400[17] = 0.0; out_2433884036008471400[18] = 0.0; out_2433884036008471400[19] = 0.0; out_2433884036008471400[20] = 1.0; out_2433884036008471400[21] = 0.0; out_2433884036008471400[22] = 0.0; out_2433884036008471400[23] = 0.0; out_2433884036008471400[24] = 0.0; out_2433884036008471400[25] = 0.0; out_2433884036008471400[26] = 0.0; out_2433884036008471400[27] = 0.0; out_2433884036008471400[28] = 0.0; out_2433884036008471400[29] = 0.0; out_2433884036008471400[30] = 1.0; out_2433884036008471400[31] = 0.0; out_2433884036008471400[32] = 0.0; out_2433884036008471400[33] = 0.0; out_2433884036008471400[34] = 0.0; out_2433884036008471400[35] = 0.0; out_2433884036008471400[36] = 0.0; out_2433884036008471400[37] = 0.0; out_2433884036008471400[38] = 0.0; out_2433884036008471400[39] = 0.0; out_2433884036008471400[40] = 1.0; out_2433884036008471400[41] = 0.0; out_2433884036008471400[42] = 0.0; out_2433884036008471400[43] = 0.0; out_2433884036008471400[44] = 0.0; out_2433884036008471400[45] = 0.0; out_2433884036008471400[46] = 0.0; out_2433884036008471400[47] = 0.0; out_2433884036008471400[48] = 0.0; out_2433884036008471400[49] = 0.0; out_2433884036008471400[50] = 1.0; out_2433884036008471400[51] = 0.0; out_2433884036008471400[52] = 0.0; out_2433884036008471400[53] = 0.0; out_2433884036008471400[54] = 0.0; out_2433884036008471400[55] = 0.0; out_2433884036008471400[56] = 0.0; out_2433884036008471400[57] = 0.0; out_2433884036008471400[58] = 0.0; out_2433884036008471400[59] = 0.0; out_2433884036008471400[60] = 1.0; out_2433884036008471400[61] = 0.0; out_2433884036008471400[62] = 0.0; out_2433884036008471400[63] = 0.0; out_2433884036008471400[64] = 0.0; out_2433884036008471400[65] = 0.0; out_2433884036008471400[66] = 0.0; out_2433884036008471400[67] = 0.0; out_2433884036008471400[68] = 0.0; out_2433884036008471400[69] = 0.0; out_2433884036008471400[70] = 1.0; out_2433884036008471400[71] = 0.0; out_2433884036008471400[72] = 0.0; out_2433884036008471400[73] = 0.0; out_2433884036008471400[74] = 0.0; out_2433884036008471400[75] = 0.0; out_2433884036008471400[76] = 0.0; out_2433884036008471400[77] = 0.0; out_2433884036008471400[78] = 0.0; out_2433884036008471400[79] = 0.0; out_2433884036008471400[80] = 1.0; } void f_fun(double *state, double dt, double *out_796409112878320158) { out_796409112878320158[0] = state[0]; out_796409112878320158[1] = state[1]; out_796409112878320158[2] = state[2]; out_796409112878320158[3] = state[3]; out_796409112878320158[4] = state[4]; out_796409112878320158[5] = dt*((-state[4] + (-center_to_front*stiffness_front*state[0] + center_to_rear*stiffness_rear*state[0])/(mass*state[4]))*state[6] - 9.8100000000000005*state[8] + stiffness_front*(-state[2] - state[3] + state[7])*state[0]/(mass*state[1]) + (-stiffness_front*state[0] - stiffness_rear*state[0])*state[5]/(mass*state[4])) + state[5]; out_796409112878320158[6] = dt*(center_to_front*stiffness_front*(-state[2] - state[3] + state[7])*state[0]/(rotational_inertia*state[1]) + (-center_to_front*stiffness_front*state[0] + center_to_rear*stiffness_rear*state[0])*state[5]/(rotational_inertia*state[4]) + (-pow(center_to_front, 2)*stiffness_front*state[0] - pow(center_to_rear, 2)*stiffness_rear*state[0])*state[6]/(rotational_inertia*state[4])) + state[6]; out_796409112878320158[7] = state[7]; out_796409112878320158[8] = state[8]; } void F_fun(double *state, double dt, double *out_8757589862379398872) { out_8757589862379398872[0] = 1; out_8757589862379398872[1] = 0; out_8757589862379398872[2] = 0; out_8757589862379398872[3] = 0; out_8757589862379398872[4] = 0; out_8757589862379398872[5] = 0; out_8757589862379398872[6] = 0; out_8757589862379398872[7] = 0; out_8757589862379398872[8] = 0; out_8757589862379398872[9] = 0; out_8757589862379398872[10] = 1; out_8757589862379398872[11] = 0; out_8757589862379398872[12] = 0; out_8757589862379398872[13] = 0; out_8757589862379398872[14] = 0; out_8757589862379398872[15] = 0; out_8757589862379398872[16] = 0; out_8757589862379398872[17] = 0; out_8757589862379398872[18] = 0; out_8757589862379398872[19] = 0; out_8757589862379398872[20] = 1; out_8757589862379398872[21] = 0; out_8757589862379398872[22] = 0; out_8757589862379398872[23] = 0; out_8757589862379398872[24] = 0; out_8757589862379398872[25] = 0; out_8757589862379398872[26] = 0; out_8757589862379398872[27] = 0; out_8757589862379398872[28] = 0; out_8757589862379398872[29] = 0; out_8757589862379398872[30] = 1; out_8757589862379398872[31] = 0; out_8757589862379398872[32] = 0; out_8757589862379398872[33] = 0; out_8757589862379398872[34] = 0; out_8757589862379398872[35] = 0; out_8757589862379398872[36] = 0; out_8757589862379398872[37] = 0; out_8757589862379398872[38] = 0; out_8757589862379398872[39] = 0; out_8757589862379398872[40] = 1; out_8757589862379398872[41] = 0; out_8757589862379398872[42] = 0; out_8757589862379398872[43] = 0; out_8757589862379398872[44] = 0; out_8757589862379398872[45] = dt*(stiffness_front*(-state[2] - state[3] + state[7])/(mass*state[1]) + (-stiffness_front - stiffness_rear)*state[5]/(mass*state[4]) + (-center_to_front*stiffness_front + center_to_rear*stiffness_rear)*state[6]/(mass*state[4])); out_8757589862379398872[46] = -dt*stiffness_front*(-state[2] - state[3] + state[7])*state[0]/(mass*pow(state[1], 2)); out_8757589862379398872[47] = -dt*stiffness_front*state[0]/(mass*state[1]); out_8757589862379398872[48] = -dt*stiffness_front*state[0]/(mass*state[1]); out_8757589862379398872[49] = dt*((-1 - (-center_to_front*stiffness_front*state[0] + center_to_rear*stiffness_rear*state[0])/(mass*pow(state[4], 2)))*state[6] - (-stiffness_front*state[0] - stiffness_rear*state[0])*state[5]/(mass*pow(state[4], 2))); out_8757589862379398872[50] = dt*(-stiffness_front*state[0] - stiffness_rear*state[0])/(mass*state[4]) + 1; out_8757589862379398872[51] = dt*(-state[4] + (-center_to_front*stiffness_front*state[0] + center_to_rear*stiffness_rear*state[0])/(mass*state[4])); out_8757589862379398872[52] = dt*stiffness_front*state[0]/(mass*state[1]); out_8757589862379398872[53] = -9.8100000000000005*dt; out_8757589862379398872[54] = dt*(center_to_front*stiffness_front*(-state[2] - state[3] + state[7])/(rotational_inertia*state[1]) + (-center_to_front*stiffness_front + center_to_rear*stiffness_rear)*state[5]/(rotational_inertia*state[4]) + (-pow(center_to_front, 2)*stiffness_front - pow(center_to_rear, 2)*stiffness_rear)*state[6]/(rotational_inertia*state[4])); out_8757589862379398872[55] = -center_to_front*dt*stiffness_front*(-state[2] - state[3] + state[7])*state[0]/(rotational_inertia*pow(state[1], 2)); out_8757589862379398872[56] = -center_to_front*dt*stiffness_front*state[0]/(rotational_inertia*state[1]); out_8757589862379398872[57] = -center_to_front*dt*stiffness_front*state[0]/(rotational_inertia*state[1]); out_8757589862379398872[58] = dt*(-(-center_to_front*stiffness_front*state[0] + center_to_rear*stiffness_rear*state[0])*state[5]/(rotational_inertia*pow(state[4], 2)) - (-pow(center_to_front, 2)*stiffness_front*state[0] - pow(center_to_rear, 2)*stiffness_rear*state[0])*state[6]/(rotational_inertia*pow(state[4], 2))); out_8757589862379398872[59] = dt*(-center_to_front*stiffness_front*state[0] + center_to_rear*stiffness_rear*state[0])/(rotational_inertia*state[4]); out_8757589862379398872[60] = dt*(-pow(center_to_front, 2)*stiffness_front*state[0] - pow(center_to_rear, 2)*stiffness_rear*state[0])/(rotational_inertia*state[4]) + 1; out_8757589862379398872[61] = center_to_front*dt*stiffness_front*state[0]/(rotational_inertia*state[1]); out_8757589862379398872[62] = 0; out_8757589862379398872[63] = 0; out_8757589862379398872[64] = 0; out_8757589862379398872[65] = 0; out_8757589862379398872[66] = 0; out_8757589862379398872[67] = 0; out_8757589862379398872[68] = 0; out_8757589862379398872[69] = 0; out_8757589862379398872[70] = 1; out_8757589862379398872[71] = 0; out_8757589862379398872[72] = 0; out_8757589862379398872[73] = 0; out_8757589862379398872[74] = 0; out_8757589862379398872[75] = 0; out_8757589862379398872[76] = 0; out_8757589862379398872[77] = 0; out_8757589862379398872[78] = 0; out_8757589862379398872[79] = 0; out_8757589862379398872[80] = 1; } void h_25(double *state, double *unused, double *out_7412030721099193028) { out_7412030721099193028[0] = state[6]; } void H_25(double *state, double *unused, double *out_4581042973285851812) { out_4581042973285851812[0] = 0; out_4581042973285851812[1] = 0; out_4581042973285851812[2] = 0; out_4581042973285851812[3] = 0; out_4581042973285851812[4] = 0; out_4581042973285851812[5] = 0; out_4581042973285851812[6] = 1; out_4581042973285851812[7] = 0; out_4581042973285851812[8] = 0; } void h_24(double *state, double *unused, double *out_36611885517981660) { out_36611885517981660[0] = state[4]; out_36611885517981660[1] = state[5]; } void H_24(double *state, double *unused, double *out_4647022212783343413) { out_4647022212783343413[0] = 0; out_4647022212783343413[1] = 0; out_4647022212783343413[2] = 0; out_4647022212783343413[3] = 0; out_4647022212783343413[4] = 1; out_4647022212783343413[5] = 0; out_4647022212783343413[6] = 0; out_4647022212783343413[7] = 0; out_4647022212783343413[8] = 0; out_4647022212783343413[9] = 0; out_4647022212783343413[10] = 0; out_4647022212783343413[11] = 0; out_4647022212783343413[12] = 0; out_4647022212783343413[13] = 0; out_4647022212783343413[14] = 1; out_4647022212783343413[15] = 0; out_4647022212783343413[16] = 0; out_4647022212783343413[17] = 0; } void h_30(double *state, double *unused, double *out_7173029876181856936) { out_7173029876181856936[0] = state[4]; } void H_30(double *state, double *unused, double *out_9108739303413460010) { out_9108739303413460010[0] = 0; out_9108739303413460010[1] = 0; out_9108739303413460010[2] = 0; out_9108739303413460010[3] = 0; out_9108739303413460010[4] = 1; out_9108739303413460010[5] = 0; out_9108739303413460010[6] = 0; out_9108739303413460010[7] = 0; out_9108739303413460010[8] = 0; } void h_26(double *state, double *unused, double *out_5482582041446175976) { out_5482582041446175976[0] = state[7]; } void H_26(double *state, double *unused, double *out_8322546292159908036) { out_8322546292159908036[0] = 0; out_8322546292159908036[1] = 0; out_8322546292159908036[2] = 0; out_8322546292159908036[3] = 0; out_8322546292159908036[4] = 0; out_8322546292159908036[5] = 0; out_8322546292159908036[6] = 0; out_8322546292159908036[7] = 1; out_8322546292159908036[8] = 0; } void h_27(double *state, double *unused, double *out_1569938450907647737) { out_1569938450907647737[0] = state[3]; } void H_27(double *state, double *unused, double *out_6885145232229516793) { out_6885145232229516793[0] = 0; out_6885145232229516793[1] = 0; out_6885145232229516793[2] = 0; out_6885145232229516793[3] = 1; out_6885145232229516793[4] = 0; out_6885145232229516793[5] = 0; out_6885145232229516793[6] = 0; out_6885145232229516793[7] = 0; out_6885145232229516793[8] = 0; } void h_29(double *state, double *unused, double *out_5017889475568647426) { out_5017889475568647426[0] = state[1]; } void H_29(double *state, double *unused, double *out_8598507959099067826) { out_8598507959099067826[0] = 0; out_8598507959099067826[1] = 1; out_8598507959099067826[2] = 0; out_8598507959099067826[3] = 0; out_8598507959099067826[4] = 0; out_8598507959099067826[5] = 0; out_8598507959099067826[6] = 0; out_8598507959099067826[7] = 0; out_8598507959099067826[8] = 0; } void h_28(double *state, double *unused, double *out_3431734816753197908) { out_3431734816753197908[0] = state[0]; } void H_28(double *state, double *unused, double *out_4765837097540953216) { out_4765837097540953216[0] = 1; out_4765837097540953216[1] = 0; out_4765837097540953216[2] = 0; out_4765837097540953216[3] = 0; out_4765837097540953216[4] = 0; out_4765837097540953216[5] = 0; out_4765837097540953216[6] = 0; out_4765837097540953216[7] = 0; out_4765837097540953216[8] = 0; } void h_31(double *state, double *unused, double *out_8237682826887035884) { out_8237682826887035884[0] = state[8]; } void H_31(double *state, double *unused, double *out_4550397011408891384) { out_4550397011408891384[0] = 0; out_4550397011408891384[1] = 0; out_4550397011408891384[2] = 0; out_4550397011408891384[3] = 0; out_4550397011408891384[4] = 0; out_4550397011408891384[5] = 0; out_4550397011408891384[6] = 0; out_4550397011408891384[7] = 0; out_4550397011408891384[8] = 1; } #include #include typedef Eigen::Matrix DDM; typedef Eigen::Matrix EEM; typedef Eigen::Matrix DEM; void predict(double *in_x, double *in_P, double *in_Q, double dt) { typedef Eigen::Matrix RRM; double nx[DIM] = {0}; double in_F[EDIM*EDIM] = {0}; // functions from sympy f_fun(in_x, dt, nx); F_fun(in_x, dt, in_F); EEM F(in_F); EEM P(in_P); EEM Q(in_Q); RRM F_main = F.topLeftCorner(MEDIM, MEDIM); P.topLeftCorner(MEDIM, MEDIM) = (F_main * P.topLeftCorner(MEDIM, MEDIM)) * F_main.transpose(); P.topRightCorner(MEDIM, EDIM - MEDIM) = F_main * P.topRightCorner(MEDIM, EDIM - MEDIM); P.bottomLeftCorner(EDIM - MEDIM, MEDIM) = P.bottomLeftCorner(EDIM - MEDIM, MEDIM) * F_main.transpose(); P = P + dt*Q; // copy out state memcpy(in_x, nx, DIM * sizeof(double)); memcpy(in_P, P.data(), EDIM * EDIM * sizeof(double)); } // note: extra_args dim only correct when null space projecting // otherwise 1 template void update(double *in_x, double *in_P, Hfun h_fun, Hfun H_fun, Hfun Hea_fun, double *in_z, double *in_R, double *in_ea, double MAHA_THRESHOLD) { typedef Eigen::Matrix ZZM; typedef Eigen::Matrix ZDM; typedef Eigen::Matrix XEM; //typedef Eigen::Matrix EZM; typedef Eigen::Matrix X1M; typedef Eigen::Matrix XXM; double in_hx[ZDIM] = {0}; double in_H[ZDIM * DIM] = {0}; double in_H_mod[EDIM * DIM] = {0}; double delta_x[EDIM] = {0}; double x_new[DIM] = {0}; // state x, P Eigen::Matrix z(in_z); EEM P(in_P); ZZM pre_R(in_R); // functions from sympy h_fun(in_x, in_ea, in_hx); H_fun(in_x, in_ea, in_H); ZDM pre_H(in_H); // get y (y = z - hx) Eigen::Matrix pre_y(in_hx); pre_y = z - pre_y; X1M y; XXM H; XXM R; if (Hea_fun){ typedef Eigen::Matrix ZAM; double in_Hea[ZDIM * EADIM] = {0}; Hea_fun(in_x, in_ea, in_Hea); ZAM Hea(in_Hea); XXM A = Hea.transpose().fullPivLu().kernel(); y = A.transpose() * pre_y; H = A.transpose() * pre_H; R = A.transpose() * pre_R * A; } else { y = pre_y; H = pre_H; R = pre_R; } // get modified H H_mod_fun(in_x, in_H_mod); DEM H_mod(in_H_mod); XEM H_err = H * H_mod; // Do mahalobis distance test if (MAHA_TEST){ XXM a = (H_err * P * H_err.transpose() + R).inverse(); double maha_dist = y.transpose() * a * y; if (maha_dist > MAHA_THRESHOLD){ R = 1.0e16 * R; } } // Outlier resilient weighting double weight = 1;//(1.5)/(1 + y.squaredNorm()/R.sum()); // kalman gains and I_KH XXM S = ((H_err * P) * H_err.transpose()) + R/weight; XEM KT = S.fullPivLu().solve(H_err * P.transpose()); //EZM K = KT.transpose(); TODO: WHY DOES THIS NOT COMPILE? //EZM K = S.fullPivLu().solve(H_err * P.transpose()).transpose(); //std::cout << "Here is the matrix rot:\n" << K << std::endl; EEM I_KH = Eigen::Matrix::Identity() - (KT.transpose() * H_err); // update state by injecting dx Eigen::Matrix dx(delta_x); dx = (KT.transpose() * y); memcpy(delta_x, dx.data(), EDIM * sizeof(double)); err_fun(in_x, delta_x, x_new); Eigen::Matrix x(x_new); // update cov P = ((I_KH * P) * I_KH.transpose()) + ((KT.transpose() * R) * KT); // copy out state memcpy(in_x, x.data(), DIM * sizeof(double)); memcpy(in_P, P.data(), EDIM * EDIM * sizeof(double)); memcpy(in_z, y.data(), y.rows() * sizeof(double)); } } extern "C" { void car_update_25(double *in_x, double *in_P, double *in_z, double *in_R, double *in_ea) { update<1, 3, 0>(in_x, in_P, h_25, H_25, NULL, in_z, in_R, in_ea, MAHA_THRESH_25); } void car_update_24(double *in_x, double *in_P, double *in_z, double *in_R, double *in_ea) { update<2, 3, 0>(in_x, in_P, h_24, H_24, NULL, in_z, in_R, in_ea, MAHA_THRESH_24); } void car_update_30(double *in_x, double *in_P, double *in_z, double *in_R, double *in_ea) { update<1, 3, 0>(in_x, in_P, h_30, H_30, NULL, in_z, in_R, in_ea, MAHA_THRESH_30); } void car_update_26(double *in_x, double *in_P, double *in_z, double *in_R, double *in_ea) { update<1, 3, 0>(in_x, in_P, h_26, H_26, NULL, in_z, in_R, in_ea, MAHA_THRESH_26); } void car_update_27(double *in_x, double *in_P, double *in_z, double *in_R, double *in_ea) { update<1, 3, 0>(in_x, in_P, h_27, H_27, NULL, in_z, in_R, in_ea, MAHA_THRESH_27); } void car_update_29(double *in_x, double *in_P, double *in_z, double *in_R, double *in_ea) { update<1, 3, 0>(in_x, in_P, h_29, H_29, NULL, in_z, in_R, in_ea, MAHA_THRESH_29); } void car_update_28(double *in_x, double *in_P, double *in_z, double *in_R, double *in_ea) { update<1, 3, 0>(in_x, in_P, h_28, H_28, NULL, in_z, in_R, in_ea, MAHA_THRESH_28); } void car_update_31(double *in_x, double *in_P, double *in_z, double *in_R, double *in_ea) { update<1, 3, 0>(in_x, in_P, h_31, H_31, NULL, in_z, in_R, in_ea, MAHA_THRESH_31); } void car_err_fun(double *nom_x, double *delta_x, double *out_6312187491562868488) { err_fun(nom_x, delta_x, out_6312187491562868488); } void car_inv_err_fun(double *nom_x, double *true_x, double *out_8729778864089017210) { inv_err_fun(nom_x, true_x, out_8729778864089017210); } void car_H_mod_fun(double *state, double *out_2433884036008471400) { H_mod_fun(state, out_2433884036008471400); } void car_f_fun(double *state, double dt, double *out_796409112878320158) { f_fun(state, dt, out_796409112878320158); } void car_F_fun(double *state, double dt, double *out_8757589862379398872) { F_fun(state, dt, out_8757589862379398872); } void car_h_25(double *state, double *unused, double *out_7412030721099193028) { h_25(state, unused, out_7412030721099193028); } void car_H_25(double *state, double *unused, double *out_4581042973285851812) { H_25(state, unused, out_4581042973285851812); } void car_h_24(double *state, double *unused, double *out_36611885517981660) { h_24(state, unused, out_36611885517981660); } void car_H_24(double *state, double *unused, double *out_4647022212783343413) { H_24(state, unused, out_4647022212783343413); } void car_h_30(double *state, double *unused, double *out_7173029876181856936) { h_30(state, unused, out_7173029876181856936); } void car_H_30(double *state, double *unused, double *out_9108739303413460010) { H_30(state, unused, out_9108739303413460010); } void car_h_26(double *state, double *unused, double *out_5482582041446175976) { h_26(state, unused, out_5482582041446175976); } void car_H_26(double *state, double *unused, double *out_8322546292159908036) { H_26(state, unused, out_8322546292159908036); } void car_h_27(double *state, double *unused, double *out_1569938450907647737) { h_27(state, unused, out_1569938450907647737); } void car_H_27(double *state, double *unused, double *out_6885145232229516793) { H_27(state, unused, out_6885145232229516793); } void car_h_29(double *state, double *unused, double *out_5017889475568647426) { h_29(state, unused, out_5017889475568647426); } void car_H_29(double *state, double *unused, double *out_8598507959099067826) { H_29(state, unused, out_8598507959099067826); } void car_h_28(double *state, double *unused, double *out_3431734816753197908) { h_28(state, unused, out_3431734816753197908); } void car_H_28(double *state, double *unused, double *out_4765837097540953216) { H_28(state, unused, out_4765837097540953216); } void car_h_31(double *state, double *unused, double *out_8237682826887035884) { h_31(state, unused, out_8237682826887035884); } void car_H_31(double *state, double *unused, double *out_4550397011408891384) { H_31(state, unused, out_4550397011408891384); } void car_predict(double *in_x, double *in_P, double *in_Q, double dt) { predict(in_x, in_P, in_Q, dt); } void car_set_mass(double x) { set_mass(x); } void car_set_rotational_inertia(double x) { set_rotational_inertia(x); } void car_set_center_to_front(double x) { set_center_to_front(x); } void car_set_center_to_rear(double x) { set_center_to_rear(x); } void car_set_stiffness_front(double x) { set_stiffness_front(x); } void car_set_stiffness_rear(double x) { set_stiffness_rear(x); } } const EKF car = { .name = "car", .kinds = { 25, 24, 30, 26, 27, 29, 28, 31 }, .feature_kinds = { }, .f_fun = car_f_fun, .F_fun = car_F_fun, .err_fun = car_err_fun, .inv_err_fun = car_inv_err_fun, .H_mod_fun = car_H_mod_fun, .predict = car_predict, .hs = { { 25, car_h_25 }, { 24, car_h_24 }, { 30, car_h_30 }, { 26, car_h_26 }, { 27, car_h_27 }, { 29, car_h_29 }, { 28, car_h_28 }, { 31, car_h_31 }, }, .Hs = { { 25, car_H_25 }, { 24, car_H_24 }, { 30, car_H_30 }, { 26, car_H_26 }, { 27, car_H_27 }, { 29, car_H_29 }, { 28, car_H_28 }, { 31, car_H_31 }, }, .updates = { { 25, car_update_25 }, { 24, car_update_24 }, { 30, car_update_30 }, { 26, car_update_26 }, { 27, car_update_27 }, { 29, car_update_29 }, { 28, car_update_28 }, { 31, car_update_31 }, }, .Hes = { }, .sets = { { "mass", car_set_mass }, { "rotational_inertia", car_set_rotational_inertia }, { "center_to_front", car_set_center_to_front }, { "center_to_rear", car_set_center_to_rear }, { "stiffness_front", car_set_stiffness_front }, { "stiffness_rear", car_set_stiffness_rear }, }, .extra_routines = { }, }; ekf_lib_init(car)