* For each run, the input filename and restart information (if needed) must * * be given on the command line. For non-restarted case, command line is: * * * * executable * *
| 101 | * * |
| 102 | *******************************************************************************/ |
| 103 | int |
| 104 | main(int argc, char* argv[]) |
| 105 | { |
| 106 | // Initialize PETSc, MPI, and SAMRAI. |
| 107 | PetscInitialize(&argc, &argv, nullptr, nullptr); |
| 108 | SAMRAI_MPI::setCommunicator(PETSC_COMM_WORLD); |
| 109 | SAMRAI_MPI::setCallAbortInSerialInsteadOfExit(); |
| 110 | SAMRAIManager::startup(); |
| 111 | |
| 112 | // Increase maximum patch data component indices |
| 113 | SAMRAIManager::setMaxNumberPatchDataEntries(2500); |
| 114 | |
| 115 | { // cleanup dynamically allocated objects prior to shutdown |
| 116 | |
| 117 | // Parse command line options, set some standard options from the input |
| 118 | // file, initialize the restart database (if this is a restarted run), |
| 119 | // and enable file logging. |
| 120 | Pointer<AppInitializer> app_initializer = new AppInitializer(argc, argv, "adv_diff.log"); |
| 121 | Pointer<Database> input_db = app_initializer->getInputDatabase(); |
| 122 | |
| 123 | // Get various standard options set in the input file. |
| 124 | const bool dump_viz_data = app_initializer->dumpVizData(); |
| 125 | const int viz_dump_interval = app_initializer->getVizDumpInterval(); |
| 126 | const bool uses_visit = dump_viz_data && app_initializer->getVisItDataWriter(); |
| 127 | |
| 128 | const bool dump_restart_data = app_initializer->dumpRestartData(); |
| 129 | const int restart_dump_interval = app_initializer->getRestartDumpInterval(); |
| 130 | const string restart_dump_dirname = app_initializer->getRestartDumpDirectory(); |
| 131 | |
| 132 | const bool dump_postproc_data = app_initializer->dumpPostProcessingData(); |
| 133 | const int postproc_data_dump_interval = app_initializer->getPostProcessingDataDumpInterval(); |
| 134 | const string postproc_data_dump_dirname = app_initializer->getPostProcessingDataDumpDirectory(); |
| 135 | if (dump_postproc_data && (postproc_data_dump_interval > 0) && !postproc_data_dump_dirname.empty()) |
| 136 | { |
| 137 | Utilities::recursiveMkdir(postproc_data_dump_dirname); |
| 138 | } |
| 139 | |
| 140 | const bool dump_timer_data = app_initializer->dumpTimerData(); |
| 141 | const int timer_dump_interval = app_initializer->getTimerDumpInterval(); |
| 142 | |
| 143 | Pointer<Database> main_db = app_initializer->getComponentDatabase("Main"); |
| 144 | |
| 145 | // Create major algorithm and data objects that comprise the |
| 146 | // application. These objects are configured from the input database |
| 147 | // and, if this is a restarted run, from the restart database. |
| 148 | // |
| 149 | Pointer<AdvDiffHierarchyIntegrator> time_integrator; |
| 150 | const string solver_type = |
| 151 | app_initializer->getComponentDatabase("Main")->getStringWithDefault("solver_type", "PREDICTOR_CORRECTOR"); |
| 152 | time_integrator = new BrinkmanAdvDiffSemiImplicitHierarchyIntegrator( |
| 153 | "BrinkmanAdvDiffSemiImplicitHierarchyIntegrator", |
| 154 | app_initializer->getComponentDatabase("BrinkmanAdvDiffSemiImplicitHierarchyIntegrator")); |
| 155 | |
| 156 | Pointer<CartesianGridGeometry<NDIM>> grid_geometry = new CartesianGridGeometry<NDIM>( |
| 157 | "CartesianGeometry", app_initializer->getComponentDatabase("CartesianGeometry")); |
| 158 | Pointer<PatchHierarchy<NDIM>> patch_hierarchy = new PatchHierarchy<NDIM>("PatchHierarchy", grid_geometry); |
| 159 | Pointer<StandardTagAndInitialize<NDIM>> error_detector = |
| 160 | new StandardTagAndInitialize<NDIM>("StandardTagAndInitialize", |
nothing calls this directly
no test coverage detected