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sunnypilot/openpilot/selfdrive/locationd/models/generated/car.cpp
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github-actions[bot] af7bf5dc64 sunnypilot v2026.09.03-4844
version: sunnypilot v2026.003.000 (feature-branch)
date: 2026-09-03T14:07:59
master commit: 1500f45576
2026-09-03 14:07:59 +00:00

662 lines
26 KiB
C++

#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_5744499419236567507) {
out_5744499419236567507[0] = delta_x[0] + nom_x[0];
out_5744499419236567507[1] = delta_x[1] + nom_x[1];
out_5744499419236567507[2] = delta_x[2] + nom_x[2];
out_5744499419236567507[3] = delta_x[3] + nom_x[3];
out_5744499419236567507[4] = delta_x[4] + nom_x[4];
out_5744499419236567507[5] = delta_x[5] + nom_x[5];
out_5744499419236567507[6] = delta_x[6] + nom_x[6];
out_5744499419236567507[7] = delta_x[7] + nom_x[7];
out_5744499419236567507[8] = delta_x[8] + nom_x[8];
}
void inv_err_fun(double *nom_x, double *true_x, double *out_1184805137205037163) {
out_1184805137205037163[0] = -nom_x[0] + true_x[0];
out_1184805137205037163[1] = -nom_x[1] + true_x[1];
out_1184805137205037163[2] = -nom_x[2] + true_x[2];
out_1184805137205037163[3] = -nom_x[3] + true_x[3];
out_1184805137205037163[4] = -nom_x[4] + true_x[4];
out_1184805137205037163[5] = -nom_x[5] + true_x[5];
out_1184805137205037163[6] = -nom_x[6] + true_x[6];
out_1184805137205037163[7] = -nom_x[7] + true_x[7];
out_1184805137205037163[8] = -nom_x[8] + true_x[8];
}
void H_mod_fun(double *state, double *out_2752971634021862652) {
out_2752971634021862652[0] = 1.0;
out_2752971634021862652[1] = 0.0;
out_2752971634021862652[2] = 0.0;
out_2752971634021862652[3] = 0.0;
out_2752971634021862652[4] = 0.0;
out_2752971634021862652[5] = 0.0;
out_2752971634021862652[6] = 0.0;
out_2752971634021862652[7] = 0.0;
out_2752971634021862652[8] = 0.0;
out_2752971634021862652[9] = 0.0;
out_2752971634021862652[10] = 1.0;
out_2752971634021862652[11] = 0.0;
out_2752971634021862652[12] = 0.0;
out_2752971634021862652[13] = 0.0;
out_2752971634021862652[14] = 0.0;
out_2752971634021862652[15] = 0.0;
out_2752971634021862652[16] = 0.0;
out_2752971634021862652[17] = 0.0;
out_2752971634021862652[18] = 0.0;
out_2752971634021862652[19] = 0.0;
out_2752971634021862652[20] = 1.0;
out_2752971634021862652[21] = 0.0;
out_2752971634021862652[22] = 0.0;
out_2752971634021862652[23] = 0.0;
out_2752971634021862652[24] = 0.0;
out_2752971634021862652[25] = 0.0;
out_2752971634021862652[26] = 0.0;
out_2752971634021862652[27] = 0.0;
out_2752971634021862652[28] = 0.0;
out_2752971634021862652[29] = 0.0;
out_2752971634021862652[30] = 1.0;
out_2752971634021862652[31] = 0.0;
out_2752971634021862652[32] = 0.0;
out_2752971634021862652[33] = 0.0;
out_2752971634021862652[34] = 0.0;
out_2752971634021862652[35] = 0.0;
out_2752971634021862652[36] = 0.0;
out_2752971634021862652[37] = 0.0;
out_2752971634021862652[38] = 0.0;
out_2752971634021862652[39] = 0.0;
out_2752971634021862652[40] = 1.0;
out_2752971634021862652[41] = 0.0;
out_2752971634021862652[42] = 0.0;
out_2752971634021862652[43] = 0.0;
out_2752971634021862652[44] = 0.0;
out_2752971634021862652[45] = 0.0;
out_2752971634021862652[46] = 0.0;
out_2752971634021862652[47] = 0.0;
out_2752971634021862652[48] = 0.0;
out_2752971634021862652[49] = 0.0;
out_2752971634021862652[50] = 1.0;
out_2752971634021862652[51] = 0.0;
out_2752971634021862652[52] = 0.0;
out_2752971634021862652[53] = 0.0;
out_2752971634021862652[54] = 0.0;
out_2752971634021862652[55] = 0.0;
out_2752971634021862652[56] = 0.0;
out_2752971634021862652[57] = 0.0;
out_2752971634021862652[58] = 0.0;
out_2752971634021862652[59] = 0.0;
out_2752971634021862652[60] = 1.0;
out_2752971634021862652[61] = 0.0;
out_2752971634021862652[62] = 0.0;
out_2752971634021862652[63] = 0.0;
out_2752971634021862652[64] = 0.0;
out_2752971634021862652[65] = 0.0;
out_2752971634021862652[66] = 0.0;
out_2752971634021862652[67] = 0.0;
out_2752971634021862652[68] = 0.0;
out_2752971634021862652[69] = 0.0;
out_2752971634021862652[70] = 1.0;
out_2752971634021862652[71] = 0.0;
out_2752971634021862652[72] = 0.0;
out_2752971634021862652[73] = 0.0;
out_2752971634021862652[74] = 0.0;
out_2752971634021862652[75] = 0.0;
out_2752971634021862652[76] = 0.0;
out_2752971634021862652[77] = 0.0;
out_2752971634021862652[78] = 0.0;
out_2752971634021862652[79] = 0.0;
out_2752971634021862652[80] = 1.0;
}
void f_fun(double *state, double dt, double *out_7658700760911629364) {
out_7658700760911629364[0] = state[0];
out_7658700760911629364[1] = state[1];
out_7658700760911629364[2] = state[2];
out_7658700760911629364[3] = state[3];
out_7658700760911629364[4] = state[4];
out_7658700760911629364[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_7658700760911629364[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_7658700760911629364[7] = state[7];
out_7658700760911629364[8] = state[8];
}
void F_fun(double *state, double dt, double *out_6351856658156694456) {
out_6351856658156694456[0] = 1;
out_6351856658156694456[1] = 0;
out_6351856658156694456[2] = 0;
out_6351856658156694456[3] = 0;
out_6351856658156694456[4] = 0;
out_6351856658156694456[5] = 0;
out_6351856658156694456[6] = 0;
out_6351856658156694456[7] = 0;
out_6351856658156694456[8] = 0;
out_6351856658156694456[9] = 0;
out_6351856658156694456[10] = 1;
out_6351856658156694456[11] = 0;
out_6351856658156694456[12] = 0;
out_6351856658156694456[13] = 0;
out_6351856658156694456[14] = 0;
out_6351856658156694456[15] = 0;
out_6351856658156694456[16] = 0;
out_6351856658156694456[17] = 0;
out_6351856658156694456[18] = 0;
out_6351856658156694456[19] = 0;
out_6351856658156694456[20] = 1;
out_6351856658156694456[21] = 0;
out_6351856658156694456[22] = 0;
out_6351856658156694456[23] = 0;
out_6351856658156694456[24] = 0;
out_6351856658156694456[25] = 0;
out_6351856658156694456[26] = 0;
out_6351856658156694456[27] = 0;
out_6351856658156694456[28] = 0;
out_6351856658156694456[29] = 0;
out_6351856658156694456[30] = 1;
out_6351856658156694456[31] = 0;
out_6351856658156694456[32] = 0;
out_6351856658156694456[33] = 0;
out_6351856658156694456[34] = 0;
out_6351856658156694456[35] = 0;
out_6351856658156694456[36] = 0;
out_6351856658156694456[37] = 0;
out_6351856658156694456[38] = 0;
out_6351856658156694456[39] = 0;
out_6351856658156694456[40] = 1;
out_6351856658156694456[41] = 0;
out_6351856658156694456[42] = 0;
out_6351856658156694456[43] = 0;
out_6351856658156694456[44] = 0;
out_6351856658156694456[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_6351856658156694456[46] = -dt*stiffness_front*(-state[2] - state[3] + state[7])*state[0]/(mass*pow(state[1], 2));
out_6351856658156694456[47] = -dt*stiffness_front*state[0]/(mass*state[1]);
out_6351856658156694456[48] = -dt*stiffness_front*state[0]/(mass*state[1]);
out_6351856658156694456[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_6351856658156694456[50] = dt*(-stiffness_front*state[0] - stiffness_rear*state[0])/(mass*state[4]) + 1;
out_6351856658156694456[51] = dt*(-state[4] + (-center_to_front*stiffness_front*state[0] + center_to_rear*stiffness_rear*state[0])/(mass*state[4]));
out_6351856658156694456[52] = dt*stiffness_front*state[0]/(mass*state[1]);
out_6351856658156694456[53] = -9.8100000000000005*dt;
out_6351856658156694456[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_6351856658156694456[55] = -center_to_front*dt*stiffness_front*(-state[2] - state[3] + state[7])*state[0]/(rotational_inertia*pow(state[1], 2));
out_6351856658156694456[56] = -center_to_front*dt*stiffness_front*state[0]/(rotational_inertia*state[1]);
out_6351856658156694456[57] = -center_to_front*dt*stiffness_front*state[0]/(rotational_inertia*state[1]);
out_6351856658156694456[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_6351856658156694456[59] = dt*(-center_to_front*stiffness_front*state[0] + center_to_rear*stiffness_rear*state[0])/(rotational_inertia*state[4]);
out_6351856658156694456[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_6351856658156694456[61] = center_to_front*dt*stiffness_front*state[0]/(rotational_inertia*state[1]);
out_6351856658156694456[62] = 0;
out_6351856658156694456[63] = 0;
out_6351856658156694456[64] = 0;
out_6351856658156694456[65] = 0;
out_6351856658156694456[66] = 0;
out_6351856658156694456[67] = 0;
out_6351856658156694456[68] = 0;
out_6351856658156694456[69] = 0;
out_6351856658156694456[70] = 1;
out_6351856658156694456[71] = 0;
out_6351856658156694456[72] = 0;
out_6351856658156694456[73] = 0;
out_6351856658156694456[74] = 0;
out_6351856658156694456[75] = 0;
out_6351856658156694456[76] = 0;
out_6351856658156694456[77] = 0;
out_6351856658156694456[78] = 0;
out_6351856658156694456[79] = 0;
out_6351856658156694456[80] = 1;
}
void h_25(double *state, double *unused, double *out_2115125997200973707) {
out_2115125997200973707[0] = state[6];
}
void H_25(double *state, double *unused, double *out_6275952284011354329) {
out_6275952284011354329[0] = 0;
out_6275952284011354329[1] = 0;
out_6275952284011354329[2] = 0;
out_6275952284011354329[3] = 0;
out_6275952284011354329[4] = 0;
out_6275952284011354329[5] = 0;
out_6275952284011354329[6] = 1;
out_6275952284011354329[7] = 0;
out_6275952284011354329[8] = 0;
}
void h_24(double *state, double *unused, double *out_7937179482135297626) {
out_7937179482135297626[0] = state[4];
out_7937179482135297626[1] = state[5];
}
void H_24(double *state, double *unused, double *out_8612866190895874151) {
out_8612866190895874151[0] = 0;
out_8612866190895874151[1] = 0;
out_8612866190895874151[2] = 0;
out_8612866190895874151[3] = 0;
out_8612866190895874151[4] = 1;
out_8612866190895874151[5] = 0;
out_8612866190895874151[6] = 0;
out_8612866190895874151[7] = 0;
out_8612866190895874151[8] = 0;
out_8612866190895874151[9] = 0;
out_8612866190895874151[10] = 0;
out_8612866190895874151[11] = 0;
out_8612866190895874151[12] = 0;
out_8612866190895874151[13] = 0;
out_8612866190895874151[14] = 1;
out_8612866190895874151[15] = 0;
out_8612866190895874151[16] = 0;
out_8612866190895874151[17] = 0;
}
void h_30(double *state, double *unused, double *out_8646825364085210282) {
out_8646825364085210282[0] = state[4];
}
void H_30(double *state, double *unused, double *out_6146613336868114259) {
out_6146613336868114259[0] = 0;
out_6146613336868114259[1] = 0;
out_6146613336868114259[2] = 0;
out_6146613336868114259[3] = 0;
out_6146613336868114259[4] = 1;
out_6146613336868114259[5] = 0;
out_6146613336868114259[6] = 0;
out_6146613336868114259[7] = 0;
out_6146613336868114259[8] = 0;
}
void h_26(double *state, double *unused, double *out_7195513388815643683) {
out_7195513388815643683[0] = state[7];
}
void H_26(double *state, double *unused, double *out_2534448965137298105) {
out_2534448965137298105[0] = 0;
out_2534448965137298105[1] = 0;
out_2534448965137298105[2] = 0;
out_2534448965137298105[3] = 0;
out_2534448965137298105[4] = 0;
out_2534448965137298105[5] = 0;
out_2534448965137298105[6] = 0;
out_2534448965137298105[7] = 1;
out_2534448965137298105[8] = 0;
}
void h_27(double *state, double *unused, double *out_3029764065914673830) {
out_3029764065914673830[0] = state[3];
}
void H_27(double *state, double *unused, double *out_3971850025067689348) {
out_3971850025067689348[0] = 0;
out_3971850025067689348[1] = 0;
out_3971850025067689348[2] = 0;
out_3971850025067689348[3] = 1;
out_3971850025067689348[4] = 0;
out_3971850025067689348[5] = 0;
out_3971850025067689348[6] = 0;
out_3971850025067689348[7] = 0;
out_3971850025067689348[8] = 0;
}
void h_29(double *state, double *unused, double *out_4733501190905998611) {
out_4733501190905998611[0] = state[1];
}
void H_29(double *state, double *unused, double *out_6656844681182506443) {
out_6656844681182506443[0] = 0;
out_6656844681182506443[1] = 1;
out_6656844681182506443[2] = 0;
out_6656844681182506443[3] = 0;
out_6656844681182506443[4] = 0;
out_6656844681182506443[5] = 0;
out_6656844681182506443[6] = 0;
out_6656844681182506443[7] = 0;
out_6656844681182506443[8] = 0;
}
void h_28(double *state, double *unused, double *out_6095421901546968827) {
out_6095421901546968827[0] = state[0];
}
void H_28(double *state, double *unused, double *out_2823911718871392259) {
out_2823911718871392259[0] = 1;
out_2823911718871392259[1] = 0;
out_2823911718871392259[2] = 0;
out_2823911718871392259[3] = 0;
out_2823911718871392259[4] = 0;
out_2823911718871392259[5] = 0;
out_2823911718871392259[6] = 0;
out_2823911718871392259[7] = 0;
out_2823911718871392259[8] = 0;
}
void h_31(double *state, double *unused, double *out_6524751479517568177) {
out_6524751479517568177[0] = state[8];
}
void H_31(double *state, double *unused, double *out_6306598245888314757) {
out_6306598245888314757[0] = 0;
out_6306598245888314757[1] = 0;
out_6306598245888314757[2] = 0;
out_6306598245888314757[3] = 0;
out_6306598245888314757[4] = 0;
out_6306598245888314757[5] = 0;
out_6306598245888314757[6] = 0;
out_6306598245888314757[7] = 0;
out_6306598245888314757[8] = 1;
}
#include <eigen3/Eigen/Dense>
#include <iostream>
typedef Eigen::Matrix<double, DIM, DIM, Eigen::RowMajor> DDM;
typedef Eigen::Matrix<double, EDIM, EDIM, Eigen::RowMajor> EEM;
typedef Eigen::Matrix<double, DIM, EDIM, Eigen::RowMajor> DEM;
void predict(double *in_x, double *in_P, double *in_Q, double dt) {
typedef Eigen::Matrix<double, MEDIM, MEDIM, Eigen::RowMajor> 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 <int ZDIM, int EADIM, bool MAHA_TEST>
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<double, ZDIM, ZDIM, Eigen::RowMajor> ZZM;
typedef Eigen::Matrix<double, ZDIM, DIM, Eigen::RowMajor> ZDM;
typedef Eigen::Matrix<double, Eigen::Dynamic, EDIM, Eigen::RowMajor> XEM;
//typedef Eigen::Matrix<double, EDIM, ZDIM, Eigen::RowMajor> EZM;
typedef Eigen::Matrix<double, Eigen::Dynamic, 1> X1M;
typedef Eigen::Matrix<double, Eigen::Dynamic, Eigen::Dynamic, Eigen::RowMajor> 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<double, ZDIM, 1> 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<double, ZDIM, 1> pre_y(in_hx); pre_y = z - pre_y;
X1M y; XXM H; XXM R;
if (Hea_fun){
typedef Eigen::Matrix<double, ZDIM, EADIM, Eigen::RowMajor> 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<double, EDIM, EDIM>::Identity() - (KT.transpose() * H_err);
// update state by injecting dx
Eigen::Matrix<double, EDIM, 1> 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<double, DIM, 1> 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_5744499419236567507) {
err_fun(nom_x, delta_x, out_5744499419236567507);
}
void car_inv_err_fun(double *nom_x, double *true_x, double *out_1184805137205037163) {
inv_err_fun(nom_x, true_x, out_1184805137205037163);
}
void car_H_mod_fun(double *state, double *out_2752971634021862652) {
H_mod_fun(state, out_2752971634021862652);
}
void car_f_fun(double *state, double dt, double *out_7658700760911629364) {
f_fun(state, dt, out_7658700760911629364);
}
void car_F_fun(double *state, double dt, double *out_6351856658156694456) {
F_fun(state, dt, out_6351856658156694456);
}
void car_h_25(double *state, double *unused, double *out_2115125997200973707) {
h_25(state, unused, out_2115125997200973707);
}
void car_H_25(double *state, double *unused, double *out_6275952284011354329) {
H_25(state, unused, out_6275952284011354329);
}
void car_h_24(double *state, double *unused, double *out_7937179482135297626) {
h_24(state, unused, out_7937179482135297626);
}
void car_H_24(double *state, double *unused, double *out_8612866190895874151) {
H_24(state, unused, out_8612866190895874151);
}
void car_h_30(double *state, double *unused, double *out_8646825364085210282) {
h_30(state, unused, out_8646825364085210282);
}
void car_H_30(double *state, double *unused, double *out_6146613336868114259) {
H_30(state, unused, out_6146613336868114259);
}
void car_h_26(double *state, double *unused, double *out_7195513388815643683) {
h_26(state, unused, out_7195513388815643683);
}
void car_H_26(double *state, double *unused, double *out_2534448965137298105) {
H_26(state, unused, out_2534448965137298105);
}
void car_h_27(double *state, double *unused, double *out_3029764065914673830) {
h_27(state, unused, out_3029764065914673830);
}
void car_H_27(double *state, double *unused, double *out_3971850025067689348) {
H_27(state, unused, out_3971850025067689348);
}
void car_h_29(double *state, double *unused, double *out_4733501190905998611) {
h_29(state, unused, out_4733501190905998611);
}
void car_H_29(double *state, double *unused, double *out_6656844681182506443) {
H_29(state, unused, out_6656844681182506443);
}
void car_h_28(double *state, double *unused, double *out_6095421901546968827) {
h_28(state, unused, out_6095421901546968827);
}
void car_H_28(double *state, double *unused, double *out_2823911718871392259) {
H_28(state, unused, out_2823911718871392259);
}
void car_h_31(double *state, double *unused, double *out_6524751479517568177) {
h_31(state, unused, out_6524751479517568177);
}
void car_H_31(double *state, double *unused, double *out_6306598245888314757) {
H_31(state, unused, out_6306598245888314757);
}
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)