2018-08-03 07:52:20 -03:00
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/*
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "SIM_Precland.h"
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#include "AP_HAL/AP_HAL.h"
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#include "AP_Math/AP_Math.h"
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#include "AP_Common/Location.h"
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#include <stdio.h>
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using namespace SITL;
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// table of user settable parameters
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const AP_Param::GroupInfo SIM_Precland::var_info[] = {
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// @Param: ENABLE
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// @DisplayName: Preland device Sim enable/disable
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// @Description: Allows you to enable (1) or disable (0) the Preland simulation
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// @Values: 0:Disabled,1:Enabled
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// @User: Advanced
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AP_GROUPINFO("ENABLE", 0, SIM_Precland, _enable, 0),
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// @Param: LAT
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// @DisplayName: Precland device origin's latitude
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// @Description: Precland device origin's latitude
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// @Units: deg
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// @Increment: 0.000001
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// @Range: -90 90
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// @User: Advanced
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AP_GROUPINFO("LAT", 1, SIM_Precland, _origin_lat, 0),
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// @Param: LON
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// @DisplayName: Precland device origin's longitude
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// @Description: Precland device origin's longitude
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// @Units: deg
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// @Increment: 0.000001
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// @Range: -180 180
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// @User: Advanced
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AP_GROUPINFO("LON", 2, SIM_Precland, _origin_lon, 0),
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// @Param: HEIGHT
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// @DisplayName: Precland device origin's height above sealevel
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// @Description: Precland device origin's height above sealevel
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// @Units: cm
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// @Increment: 1
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// @Range: 0 10000
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// @User: Advanced
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AP_GROUPINFO("HEIGHT", 3, SIM_Precland, _origin_height, 0),
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// @Param: YAW
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// @DisplayName: Precland device systems rotation from north
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// @Description: Precland device systems rotation from north
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// @Units: deg
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// @Increment: 1
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// @Range: -180 +180
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// @User: Advanced
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AP_GROUPINFO("YAW", 4, SIM_Precland, _orient_yaw, 0),
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// @Param: RATE
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// @DisplayName: Precland device update rate
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// @Description: Precland device rate. e.g led patter refresh rate, RF message rate, etc.
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// @Units: Hz
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// @Range: 0 200
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// @User: Advanced
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AP_GROUPINFO("RATE", 5, SIM_Precland, _rate, 100),
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// @Param: TYPE
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// @DisplayName: Precland device radiance type
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// @Description: Precland device radiance type: it can be a cylinder, a cone, or a sphere.
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// @Values: 0:cylinder,1:cone,2:sphere
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// @User: Advanced
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AP_GROUPINFO("TYPE", 6, SIM_Precland, _type, SIM_Precland::PRECLAND_TYPE_CYLINDER),
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// @Param: ALT_LIMIT
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// @DisplayName: Precland device alt range
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// @Description: Precland device maximum range altitude
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// @Units: m
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// @Range: 0 100
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// @User: Advanced
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AP_GROUPINFO("ALT_LMT", 7, SIM_Precland, _alt_limit, 15),
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// @Param: DIST_LIMIT
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// @DisplayName: Precland device lateral range
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// @Description: Precland device maximum lateral range
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// @Units: m
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// @Range: 5 100
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// @User: Advanced
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AP_GROUPINFO("DIST_LMT", 8, SIM_Precland, _dist_limit, 10),
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AP_GROUPEND
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};
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void SIM_Precland::update(const Location &loc, const Vector3f &position)
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{
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const uint32_t now = AP_HAL::millis();
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if (!_enable) {
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_healthy = false;
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return;
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}
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if (is_zero(_alt_limit) || _dist_limit < 1.0f) {
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_healthy = false;
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return;
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}
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if (now - _last_update_ms < 1000.0f * (1.0f / _rate)) {
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return;
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}
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_last_update_ms = now;
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const float distance_z = -position.z;
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const float origin_height_m = _origin_height * 0.01f;
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if (distance_z > _alt_limit + origin_height_m) {
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_healthy = false;
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return;
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}
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const Location origin_center(static_cast<int32_t>(_origin_lat * 1.0e7f),
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static_cast<int32_t>(_origin_lon * 1.0e7f),
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static_cast<int32_t>(_origin_height),
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2019-03-14 22:44:00 -03:00
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Location::AltFrame::ABOVE_HOME);
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2018-08-03 07:52:20 -03:00
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Vector2f center;
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origin_center.get_vector_xy_from_origin_NE(center);
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center = center * 0.01f; // cm to m
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switch (_type) {
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case PRECLAND_TYPE_CONE: {
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const float in_radius = distance_z * _dist_limit / (_alt_limit + origin_height_m);
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if (norm(position.x - center.x, position.y - center.y) > in_radius) {
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_healthy = false;
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return;
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}
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break;
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}
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case PRECLAND_TYPE_SPHERE: {
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if (norm(position.x - center.x, position.y - center.y, distance_z - _origin_height) > (_alt_limit + origin_height_m)) {
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_healthy = false;
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return;
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}
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break;
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}
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default:
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case PRECLAND_TYPE_CYLINDER: {
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if (norm(position.x - center.x, position.y - center.y) > _dist_limit) {
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_healthy = false;
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return;
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}
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break;
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}
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}
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_target_pos = position - Vector3f(center.x, center.y, origin_height_m);
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_healthy = true;
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}
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void SIM_Precland::set_default_location(float lat, float lon, int16_t yaw) {
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if (is_zero(_origin_lat) && is_zero(_origin_lon)) {
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_origin_lat = lat;
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_origin_lon = lon;
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_orient_yaw = yaw;
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}
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}
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