4#define HEAT_CAPACITY_VERSION "5"
11#include "../../src/GenericManagingModule.h"
12#include "../../src/ModuleFactory.h"
40 static bool m_registered;
41 std::string m_ini_filepath{
"heat_capacity/HeatCapacity.ini"};
46 bool exec(std::string_view param)
override;
51 bool output()
override {
return true; };
62 return std::make_shared<HeatCapacity<T>>(
sim);
64 static std::string
getName() {
return "HeatCapacity"; };
65 std::string_view
getNameLocal()
const override {
return "HeatCapacity"; };
75 std::string ini_folder_path{
82 std::cerr <<
"[HeatCapacity]: " << e.
what() <<
'\n';
83 throw BadInput(
static_cast<std::string
>(
"[HeatCapacity]: ")
84 +
static_cast<std::string
>(e.
what()));
93 this->sim->m_field_map.insert(
96 this->sim->m_simulation_config.getIntParameters(
"numerical_layers")
97 * this->sim->m_simulation_config.getIntParameters(
"number_of_facets"))});
98 this->module_field = std::make_shared<std::valarray<T>>(
99 this->sim->m_simulation_config.getIntParameters(
"numerical_layers")
100 * this->sim->m_simulation_config.getIntParameters(
"number_of_facets"));
101 this->setSubmodules(all_submodules);
106 <<
"[HeatCapacity]: Failed to insert field map and/or local field!\n[HeatCapacity]: "
109 static_cast<std::string
>(
110 "[HeatCapacity]: Failed to insert field map and/or local field!\n[HeatCapacity]: ")
111 +
static_cast<std::string
>(e.
what()));
119 if (param ==
"InitChain")
123 if (param ==
"PreTimeStepChain")
125 return preTimeStep();
127 if (param ==
"PostTimeStepChain")
129 return postTimeStep();
131 if (param ==
"OutputChain")
141 this->sim->m_field_map[
"HeatCapacity"] = (*this->module_field);
147 this->sub_module_chain.runChain(
"PreTimeStepChain");
155 this->sub_module_chain.runChain(
"InitChain");
Abstract base class for the managing modules. Managing modules are the highest tier of modules and ar...
Definition GenericManagingModule.h:29
InputManager ini_file_data
Definition GenericManagingModule.h:38
SimulationClassBase< T > * sim
Definition GenericManagingModule.h:31
std::vector< std::string > m_generic_submodules
Definition GenericManagingModule.h:36
Abstract base class for the submodules. Submodules are below managing modules and will only be run by...
Definition GenericSubmodule.h:25
Managing module that calculates heat capacity based on submodules.
Definition HeatCapacity.h:38
bool setup(std::vector< std::shared_ptr< GenericSubmodule< T > > > all_submodules) override
Definition HeatCapacity.h:89
static std::string getName()
Definition HeatCapacity.h:64
bool postTimeStep() override
Definition HeatCapacity.h:50
void writeToSim()
Definition HeatCapacity.h:139
std::string_view getNameLocal() const override
Definition HeatCapacity.h:65
bool exec(std::string_view param) override
Definition HeatCapacity.h:117
bool init() override
Definition HeatCapacity.h:153
HeatCapacity(SimulationClassBase< T > *sim)
Definition HeatCapacity.h:71
std::vector< std::string > getChainInsertion() const override
Definition HeatCapacity.h:55
bool preTimeStep() override
Definition HeatCapacity.h:145
static std::shared_ptr< GenericManagingModule< T > > createMethode(SimulationClassBase< T > *sim)
Definition HeatCapacity.h:60
bool output() override
Definition HeatCapacity.h:51
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