OMCompiler/SimulationRuntime/c/simulation/solver/gbode_events.c
| Line | Branch | Exec | Source |
|---|---|---|---|
| 1 | /* | ||
| 2 | * This file belongs to the OpenModelica Run-Time System | ||
| 3 | * | ||
| 4 | * Copyright (c) 1998-2026, Open Source Modelica Consortium (OSMC), c/o Linköpings | ||
| 5 | * universitet, Department of Computer and Information Science, SE-58183 Linköping, Sweden. All rights | ||
| 6 | * reserved. | ||
| 7 | * | ||
| 8 | * THIS PROGRAM IS PROVIDED UNDER THE TERMS OF THE BSD NEW LICENSE OR THE | ||
| 9 | * AGPL VERSION 3 LICENSE OR THE OSMC PUBLIC LICENSE (OSMC-PL) VERSION 1.8. ANY | ||
| 10 | * USE, REPRODUCTION OR DISTRIBUTION OF THIS PROGRAM CONSTITUTES RECIPIENT'S | ||
| 11 | * ACCEPTANCE OF THE BSD NEW LICENSE OR THE OSMC PUBLIC LICENSE OR THE AGPL | ||
| 12 | * VERSION 3, ACCORDING TO RECIPIENTS CHOICE. | ||
| 13 | * | ||
| 14 | * The OpenModelica software and the OSMC (Open Source Modelica Consortium) Public License | ||
| 15 | * (OSMC-PL) are obtained from OSMC, either from the above address, from the URLs: | ||
| 16 | * http://www.openmodelica.org or https://github.com/OpenModelica/ or | ||
| 17 | * http://www.ida.liu.se/projects/OpenModelica, and in the OpenModelica distribution. GNU | ||
| 18 | * AGPL version 3 is obtained from: https://www.gnu.org/licenses/licenses.html#GPL. The BSD NEW | ||
| 19 | * License is obtained from: http://www.opensource.org/licenses/BSD-3-Clause. | ||
| 20 | * | ||
| 21 | * This program is distributed WITHOUT ANY WARRANTY; without even the implied warranty of | ||
| 22 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE, EXCEPT AS EXPRESSLY | ||
| 23 | * SET FORTH IN THE BY RECIPIENT SELECTED SUBSIDIARY LICENSE CONDITIONS OF | ||
| 24 | * OSMC-PL. | ||
| 25 | * | ||
| 26 | */ | ||
| 27 | |||
| 28 | /*! \file gbode_events.c | ||
| 29 | */ | ||
| 30 | |||
| 31 | #include "../../simulation/options.h" | ||
| 32 | #include "epsilon.h" | ||
| 33 | #include "events.h" | ||
| 34 | #include "external_input.h" | ||
| 35 | #include "gbode_main.h" | ||
| 36 | #include "gbode_util.h" | ||
| 37 | #include "model_help.h" | ||
| 38 | |||
| 39 | /*! \fn bisection_gb | ||
| 40 | * | ||
| 41 | * \param [ref] [data] | ||
| 42 | * \param [ref] [a] | ||
| 43 | * \param [ref] [b] | ||
| 44 | * \param [ref] [states_a] | ||
| 45 | * \param [ref] [states_b] | ||
| 46 | * \param [ref] [eventListTmp] | ||
| 47 | * \param [in] [eventList] | ||
| 48 | * | ||
| 49 | * Method to find root in interval [oldTime, timeValue] | ||
| 50 | */ | ||
| 51 | ✗ | void bisection_gb(DATA* data, threadData_t *threadData, SOLVER_INFO* solverInfo, double* a, double* b, double* states_a, double* states_b, LIST *tmpEventList, LIST *eventList, modelica_boolean isInnerIntegration) | |
| 52 | { | ||
| 53 | ✗ | DATA_GBODE *gbData = (DATA_GBODE *)solverInfo->solverData; | |
| 54 | DATA_GBODEF *gbfData; | ||
| 55 | |||
| 56 | int gb_step_info; | ||
| 57 | double timeValue, *y; | ||
| 58 | |||
| 59 | ✗ | double TTOL = MINIMAL_STEP_SIZE + MINIMAL_STEP_SIZE*fabs(*b-*a); /* absTol + relTol*abs(b-a) */ | |
| 60 | double c; | ||
| 61 | long i=0; | ||
| 62 | /* n >= log(2)/log(2) + log(|b-a|/TOL)/log(2)*/ | ||
| 63 | ✗ | unsigned int n = maxBisectionIterations > 0 ? maxBisectionIterations : 1 + ceil(log(fabs(*b - *a)/TTOL)/log(2)); | |
| 64 | |||
| 65 | ✗ | memcpy(data->simulationInfo->zeroCrossingsBackup, data->simulationInfo->zeroCrossings, data->modelData->nZeroCrossings * sizeof(modelica_real)); | |
| 66 | |||
| 67 | ✗ | infoStreamPrint(OMC_LOG_ZEROCROSSINGS, 0, "bisection method starts in interval [%e, %e]", *a, *b); | |
| 68 | ✗ | infoStreamPrint(OMC_LOG_ZEROCROSSINGS, 0, "TTOL is set to %e and maximum number of intersections %d.", TTOL, n); | |
| 69 | |||
| 70 | ✗ | while(fabs(*b - *a) > MINIMAL_STEP_SIZE && n-- > 0) | |
| 71 | { | ||
| 72 | ✗ | c = 0.5 * (*a + *b); | |
| 73 | ✗ | data->localData[0]->timeValue = c; | |
| 74 | |||
| 75 | /*calculates states at time c using interpolation */ | ||
| 76 | ✗ | if (isInnerIntegration) { | |
| 77 | ✗ | gbfData = gbData->gbfData; | |
| 78 | ✗ | gb_interpolation(gbfData->interpolation, | |
| 79 | gbfData->timeLeft, gbfData->yLeft, gbfData->kLeft, | ||
| 80 | gbfData->timeRight, gbfData->yRight, gbfData->kRight, | ||
| 81 | ✗ | c, data->localData[0]->realVars, | |
| 82 | gbData->nStates, NULL, gbData->nStates, gbfData->tableau, gbfData->x, gbfData->k); | ||
| 83 | } else { | ||
| 84 | ✗ | gb_interpolation(gbData->interpolation, | |
| 85 | gbData->timeLeft, gbData->yLeft, gbData->kLeft, | ||
| 86 | gbData->timeRight, gbData->yRight, gbData->kRight, | ||
| 87 | ✗ | c, data->localData[0]->realVars, | |
| 88 | gbData->nStates, NULL, gbData->nStates, gbData->tableau, gbData->x, gbData->k); | ||
| 89 | } | ||
| 90 | |||
| 91 | /*calculates Values dependents on new states*/ | ||
| 92 | /* read input vars */ | ||
| 93 | ✗ | externalInputUpdate(data); | |
| 94 | ✗ | data->callback->input_function(data, threadData); | |
| 95 | /* eval needed equations*/ | ||
| 96 | ✗ | data->callback->function_ZeroCrossingsEquations(data, threadData); | |
| 97 | |||
| 98 | ✗ | data->callback->function_ZeroCrossings(data, threadData, data->simulationInfo->zeroCrossings); | |
| 99 | |||
| 100 | ✗ | if(checkZeroCrossings(data, tmpEventList, eventList)) /* If Zerocrossing in left Section */ | |
| 101 | { | ||
| 102 | ✗ | memcpy(states_b, data->localData[0]->realVars, data->modelData->nStates * sizeof(modelica_real)); | |
| 103 | ✗ | *b = c; | |
| 104 | ✗ | memcpy(data->simulationInfo->zeroCrossingsBackup, data->simulationInfo->zeroCrossings, data->modelData->nZeroCrossings * sizeof(modelica_real)); | |
| 105 | } | ||
| 106 | else /*else Zerocrossing in right Section */ | ||
| 107 | { | ||
| 108 | ✗ | memcpy(states_a, data->localData[0]->realVars, data->modelData->nStates * sizeof(modelica_real)); | |
| 109 | ✗ | *a = c; | |
| 110 | ✗ | memcpy(data->simulationInfo->zeroCrossingsPre, data->simulationInfo->zeroCrossings, data->modelData->nZeroCrossings * sizeof(modelica_real)); | |
| 111 | ✗ | memcpy(data->simulationInfo->zeroCrossings, data->simulationInfo->zeroCrossingsBackup, data->modelData->nZeroCrossings * sizeof(modelica_real)); | |
| 112 | } | ||
| 113 | } | ||
| 114 | ✗ | } | |
| 115 | |||
| 116 | /*! \fn findRoot | ||
| 117 | * | ||
| 118 | * \param [ref] [data] | ||
| 119 | * \param [ref] [threadData] | ||
| 120 | * \param [ref] [eventList] | ||
| 121 | * \param [in] [time_left] | ||
| 122 | * \param [in] [values_left] | ||
| 123 | * \param [in] [time_right] | ||
| 124 | * \param [in] [values_right] | ||
| 125 | * \return: first event of interval [time_left, time_right] | ||
| 126 | */ | ||
| 127 | ✗ | double findRoot_gb(DATA* data, threadData_t* threadData, SOLVER_INFO* solverInfo, LIST* eventList, double time_left, double* values_left, double time_right, double* values_right, modelica_boolean isInnerIntegration) | |
| 128 | { | ||
| 129 | LIST_NODE* it; | ||
| 130 | fortran_integer i=0; | ||
| 131 | ✗ | LIST *tmpEventList = allocList(eventListAlloc, eventListFree, eventListCopy); | |
| 132 | |||
| 133 | /* static work arrays */ | ||
| 134 | ✗ | double *states_left = data->simulationInfo->states_left; | |
| 135 | ✗ | double *states_right = data->simulationInfo->states_right; | |
| 136 | |||
| 137 | /* write states to work arrays */ | ||
| 138 | ✗ | memcpy(states_left, values_left, data->modelData->nStates * sizeof(double)); | |
| 139 | ✗ | memcpy(states_right, values_right, data->modelData->nStates * sizeof(double)); | |
| 140 | |||
| 141 | ✗ | for(it=listFirstNode(eventList); it; it=listNextNode(it)) | |
| 142 | { | ||
| 143 | ✗ | infoStreamPrint(OMC_LOG_ZEROCROSSINGS, 0, "search for current event. Events in list: %ld", *((long*)listNodeData(it))); | |
| 144 | } | ||
| 145 | |||
| 146 | /* Search for event time and event_id with bisection method */ | ||
| 147 | ✗ | bisection_gb(data, threadData, solverInfo, &time_left, &time_right, states_left, states_right, tmpEventList, eventList, isInnerIntegration); | |
| 148 | |||
| 149 | /* what happens here? */ | ||
| 150 | ✗ | if(listLen(tmpEventList) == 0) | |
| 151 | { | ||
| 152 | ✗ | double value = fabs(data->simulationInfo->zeroCrossings[*((long*) listFirstData(eventList))]); | |
| 153 | ✗ | for(it = listFirstNode(eventList); it; it = listNextNode(it)) | |
| 154 | { | ||
| 155 | ✗ | double fvalue = fabs(data->simulationInfo->zeroCrossings[*((long*) listNodeData(it))]); | |
| 156 | ✗ | if(value > fvalue) | |
| 157 | { | ||
| 158 | value = fvalue; | ||
| 159 | } | ||
| 160 | } | ||
| 161 | ✗ | infoStreamPrint(OMC_LOG_ZEROCROSSINGS, 0, "Minimum value: %e", value); | |
| 162 | ✗ | for(it = listFirstNode(eventList); it; it = listNextNode(it)) | |
| 163 | { | ||
| 164 | ✗ | if(value == fabs(data->simulationInfo->zeroCrossings[*((long*) listNodeData(it))])) | |
| 165 | { | ||
| 166 | ✗ | listPushBack(tmpEventList, listNodeData(it)); | |
| 167 | ✗ | infoStreamPrint(OMC_LOG_ZEROCROSSINGS, 0, "added tmp event : %ld", *((long*) listNodeData(it))); | |
| 168 | } | ||
| 169 | } | ||
| 170 | } | ||
| 171 | |||
| 172 | ✗ | listClear(eventList); | |
| 173 | |||
| 174 | ✗ | while(listLen(tmpEventList) > 0) | |
| 175 | { | ||
| 176 | ✗ | long event_id = *((long*)listFirstData(tmpEventList)); | |
| 177 | ✗ | listPushFrontNodeNoCopy(eventList, listPopFrontNode(tmpEventList)); | |
| 178 | ✗ | infoStreamPrint(OMC_LOG_ZEROCROSSINGS, 0, "Event id: %ld", event_id); | |
| 179 | } | ||
| 180 | |||
| 181 | ✗ | data->localData[0]->timeValue = time_left; | |
| 182 | ✗ | memcpy(data->localData[0]->realVars, states_left, data->modelData->nStates * sizeof(double)); | |
| 183 | |||
| 184 | /* determined continuous system */ | ||
| 185 | ✗ | data->callback->updateContinuousSystem(data, threadData); | |
| 186 | ✗ | updateRelationsPre(data); | |
| 187 | /*sim_result_emit(data);*/ | ||
| 188 | |||
| 189 | ✗ | data->localData[0]->timeValue = time_right; | |
| 190 | ✗ | memcpy(data->localData[0]->realVars, states_right, data->modelData->nStates * sizeof(double)); | |
| 191 | |||
| 192 | ✗ | freeList(tmpEventList); | |
| 193 | |||
| 194 | ✗ | return time_right; | |
| 195 | } | ||
| 196 | |||
| 197 | /** | ||
| 198 | * @brief Check if an event has happend between timeLeft and timeRight by comparing the | ||
| 199 | * values of the zero crossing functions with the pre values | ||
| 200 | * | ||
| 201 | * @param data Runtime data struct. | ||
| 202 | * @param threadData Thread data for error handling. | ||
| 203 | * @param solverInfo Information about main solver. | ||
| 204 | * @param timeLeft Time value at the left hand side of the interval | ||
| 205 | * @param leftValues State values at the left hand side of the time interval | ||
| 206 | * @param timeRight Time value at the right hand side of the interval | ||
| 207 | * @param rightValues State values at the right hand side of the time interval | ||
| 208 | * @param isInnerIntegration Specifying if inner or outer step function should be used. | ||
| 209 | * @param eventTime On return is set to event time if an event was found. | ||
| 210 | * @return modelica_boolean Return if an event was found. | ||
| 211 | */ | ||
| 212 | ✗ | modelica_boolean checkForEvents(DATA* data, threadData_t* threadData, SOLVER_INFO* solverInfo, double timeLeft, double* leftValues, double timeRight, double* rightValues, modelica_boolean isInnerIntegration, modelica_real* eventTime) | |
| 213 | { | ||
| 214 | modelica_boolean foundEvent; | ||
| 215 | ✗ | SIMULATION_DATA *sData = (SIMULATION_DATA*)data->localData[0]; | |
| 216 | |||
| 217 | // store the pre values of the zeroCrossings for comparison | ||
| 218 | ✗ | memcpy(data->simulationInfo->zeroCrossingsPre, data->simulationInfo->zeroCrossings, data->modelData->nZeroCrossings * sizeof(modelica_real)); | |
| 219 | |||
| 220 | // set simulation data to the current time | ||
| 221 | ✗ | sData->timeValue = timeRight; | |
| 222 | ✗ | memcpy(sData->realVars, rightValues, data->modelData->nStates*sizeof(double)); | |
| 223 | /*calculates Values dependents on new states*/ | ||
| 224 | /* read input vars */ | ||
| 225 | ✗ | externalInputUpdate(data); | |
| 226 | ✗ | data->callback->input_function(data, threadData); | |
| 227 | /* eval needed equations*/ | ||
| 228 | ✗ | data->callback->function_ZeroCrossingsEquations(data, threadData); | |
| 229 | ✗ | data->callback->function_ZeroCrossings(data, threadData, data->simulationInfo->zeroCrossings); | |
| 230 | |||
| 231 | ✗ | foundEvent = checkForStateEvent(data, solverInfo->eventLst); | |
| 232 | |||
| 233 | ✗ | if (foundEvent) { | |
| 234 | ✗ | if (omc_flag[FLAG_NO_ROOTFINDING]) { | |
| 235 | ✗ | *eventTime = timeRight; | |
| 236 | ✗ | infoStreamPrint(OMC_LOG_SOLVER, 0, "gbode detected an event at time: %20.16g (rootfinding is disabled)", *eventTime); | |
| 237 | } else { | ||
| 238 | ✗ | *eventTime = findRoot_gb(data, threadData, solverInfo, solverInfo->eventLst, timeLeft, leftValues, timeRight, rightValues, isInnerIntegration); | |
| 239 | ✗ | infoStreamPrint(OMC_LOG_SOLVER, 0, "gbode detected an event at time: %20.16g", *eventTime); | |
| 240 | } | ||
| 241 | } | ||
| 242 | // re-store the pre values of the zeroCrossings for comparison | ||
| 243 | ✗ | memcpy(data->simulationInfo->zeroCrossings, data->simulationInfo->zeroCrossingsPre, data->modelData->nZeroCrossings * sizeof(modelica_real)); | |
| 244 | |||
| 245 | ✗ | return foundEvent; | |
| 246 | } | ||
| 247 |