1#ifndef HELIOCENTRIC_DISTANCE_VARIABLE_SPICE_H
2#define HELIOCENTRIC_DISTANCE_VARIABLE_SPICE_H
18#include "../../src/GenericSubmodule.h"
19#include "../../src/ModuleFactory.h"
20#include "../../src/PhysicalConstants.h"
46 static bool m_registered;
47 std::string m_ini_filepath{
"heliocentric_distance/HeliocentricDistanceVariableSpice.ini"};
48 std::string m_start_time_utc;
49 std::string m_observer_id;
50 std::string m_reference_frame_id;
51 ConstSpiceChar* m_target =
"SUN";
53 SpiceDouble m_start_time_et;
54 SpiceDouble m_body_center_to_sun_vector[3];
55 SpiceDouble m_light_time;
63 bool exec(std::string_view param)
override;
68 bool output()
override {
return true; };
70 void calculateHeliocentricDistance();
72 void setFieldPtr(std::shared_ptr<std::valarray<T>> field_ptr)
override
74 this->module_field = field_ptr;
79 return std::make_shared<HeliocentricDistanceVariableSpice<T>>(
sim);
81 static std::string getName() {
return "HeliocentricDistanceVariableSpice"; }
84 return "HeliocentricDistanceVariableSpice";
88 return this->ini_file_data.getStringVectorParameters(
"dependencies");
100 std::string ini_folder_path{
102 this->ini_file_data.loadUserInput(ini_folder_path + m_ini_filepath);
103 this->m_generic_submodules = this->ini_file_data.getStringVectorParameters(
"submodules");
107 std::cerr << e.
what() <<
'\n';
112bool HeliocentricDistanceVariableSpice<T>::setup(
121bool HeliocentricDistanceVariableSpice<T>::exec(std::string_view param)
123 if (param ==
"InitChain")
127 if (param ==
"PreTimeStepChain")
129 return preTimeStep();
131 if (param ==
"PostTimeStepChain")
133 return postTimeStep();
135 if (param ==
"OutputChain")
143void HeliocentricDistanceVariableSpice<T>::calculateHeliocentricDistance()
146 this->m_et = this->m_start_time_et + this->sim->
elapsed_time;
147 spkpos_c(this->m_target, this->m_et, this->m_reference_frame_id.c_str(),
"NONE",
148 this->m_observer_id.c_str(), this->m_body_center_to_sun_vector, &this->m_light_time);
150 (*this->module_field)[0] = vnorm_c(this->m_body_center_to_sun_vector) * 1000 / m_au;
154bool HeliocentricDistanceVariableSpice<T>::preTimeStep()
156 calculateHeliocentricDistance();
161bool HeliocentricDistanceVariableSpice<T>::init()
166 std::cout <<
"[HeliocentricDistanceVariableSpice] Loading SPICE kernels.\n";
168 furnsh_c(this->ini_file_data.getStringParameters(
"spice_metakernel_path").c_str());
171 std::cout <<
"[HeliocentricDistanceVariableSpice] Done.\n";
175 this->m_start_time_utc = this->ini_file_data.getStringParameters(
"start_time_utc");
176 str2et_c(this->m_start_time_utc.c_str(), &this->m_start_time_et);
177 this->m_et = this->m_start_time_et;
178 this->m_observer_id = this->ini_file_data.getStringParameters(
"object_id");
179 this->m_reference_frame_id = this->ini_file_data.getStringParameters(
"reference_frame_id");
182 std::cout <<
"[HeliocentricDistanceVariableSpice] Loaded parameters.\n";
185 calculateHeliocentricDistance();
190bool HeliocentricDistanceVariableSpice<T>::m_registered =
Abstract base class for the submodules. Submodules are below managing modules and will only be run by...
Definition GenericSubmodule.h:25
virtual void setFieldPtr(std::shared_ptr< std::valarray< T > > field_ptr)
Definition GenericSubmodule.h:85
virtual std::vector< std::string > getDependencies() const
Definition GenericSubmodule.h:73
virtual bool setup(std::vector< std::shared_ptr< GenericSubmodule< T > > > all_submodules)
Definition GenericSubmodule.h:60
virtual std::string_view getNameLocal() const =0
virtual bool postTimeStep()
Definition GenericSubmodule.h:69
virtual bool exec(std::string_view param)=0
virtual bool init()
Definition GenericSubmodule.h:67
const SimulationClassBase< T > * sim
Definition GenericSubmodule.h:32
virtual bool output()
Definition GenericSubmodule.h:71
virtual bool preTimeStep()
Definition GenericSubmodule.h:68
static constexpr bool registerModule(std::string name, creation_method module) noexcept
Function that adds a module to the module registry map.
Definition ModuleFactory.h:75
Definition SimulationClassBase.h:19
InputManager m_simulation_config
Definition SimulationClassBase.h:29
T elapsed_time
Definition SimulationClassBase.h:31
int my_rank
Definition SimulationClassBase.h:36
constexpr double au
Definition PhysicalConstants.h:9