1af0996ceSBarry Smith #include <petsc/private/tsimpl.h> /*I "petscts.h" I*/ 21e25c274SJed Brown #include <petscdmda.h> 360e16b1bSMatthew G. Knepley #include <petscdmshell.h> 460e16b1bSMatthew G. Knepley #include <petscdmplex.h> // For TSSetFromOptions() 560e16b1bSMatthew G. Knepley #include <petscdmswarm.h> // For TSSetFromOptions() 62d5ee99bSBarry Smith #include <petscviewer.h> 72d5ee99bSBarry Smith #include <petscdraw.h> 8900f6b5bSMatthew G. Knepley #include <petscconvest.h> 9d763cef2SBarry Smith 10d5ba7fb7SMatthew Knepley /* Logging support */ 11d74926cbSBarry Smith PetscClassId TS_CLASSID, DMTS_CLASSID; 12a05bf03eSHong Zhang PetscLogEvent TS_Step, TS_PseudoComputeTimeStep, TS_FunctionEval, TS_JacobianEval; 13d405a339SMatthew Knepley 14c793f718SLisandro Dalcin const char *const TSExactFinalTimeOptions[] = {"UNSPECIFIED", "STEPOVER", "INTERPOLATE", "MATCHSTEP", "TSExactFinalTimeOption", "TS_EXACTFINALTIME_", NULL}; 1549354f04SShri Abhyankar 16d71ae5a4SJacob Faibussowitsch static PetscErrorCode TSAdaptSetDefaultType(TSAdapt adapt, TSAdaptType default_type) 17d71ae5a4SJacob Faibussowitsch { 182ffb9264SLisandro Dalcin PetscFunctionBegin; 19b92453a8SLisandro Dalcin PetscValidHeaderSpecific(adapt, TSADAPT_CLASSID, 1); 20b92453a8SLisandro Dalcin PetscValidCharPointer(default_type, 2); 211e66621cSBarry Smith if (!((PetscObject)adapt)->type_name) PetscCall(TSAdaptSetType(adapt, default_type)); 223ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 232ffb9264SLisandro Dalcin } 242ffb9264SLisandro Dalcin 25bdad233fSMatthew Knepley /*@ 26195e9b02SBarry Smith TSSetFromOptions - Sets various `TS` parameters from the options database 27bdad233fSMatthew Knepley 28c3339decSBarry Smith Collective 29bdad233fSMatthew Knepley 30bdad233fSMatthew Knepley Input Parameter: 31bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 32bdad233fSMatthew Knepley 33bdad233fSMatthew Knepley Options Database Keys: 34195e9b02SBarry Smith + -ts_type <type> - EULER, BEULER, SUNDIALS, PSEUDO, CN, RK, THETA, ALPHA, GLLE, SSP, GLEE, BSYMP, IRK, see `TSType` 35ef222394SBarry Smith . -ts_save_trajectory - checkpoint the solution at each time-step 36ef85077eSLisandro Dalcin . -ts_max_time <time> - maximum time to compute to 374a658b32SHong Zhang . -ts_time_span <t0,...tf> - sets the time span, solutions are computed and stored for each indicated time 38ef85077eSLisandro Dalcin . -ts_max_steps <steps> - maximum number of time-steps to take 39ef85077eSLisandro Dalcin . -ts_init_time <time> - initial time to start computation 40195e9b02SBarry Smith . -ts_final_time <time> - final time to compute to (deprecated: use `-ts_max_time`) 413e4cdcaaSBarry Smith . -ts_dt <dt> - initial time step 421628793fSSatish Balay . -ts_exact_final_time <stepover,interpolate,matchstep> - whether to stop at the exact given final time and how to compute the solution at that time 43a3cdaa26SBarry Smith . -ts_max_snes_failures <maxfailures> - Maximum number of nonlinear solve failures allowed 44a3cdaa26SBarry Smith . -ts_max_reject <maxrejects> - Maximum number of step rejections before step fails 45a3cdaa26SBarry Smith . -ts_error_if_step_fails <true,false> - Error if no step succeeds 46a3cdaa26SBarry Smith . -ts_rtol <rtol> - relative tolerance for local truncation error 4767b8a455SSatish Balay . -ts_atol <atol> - Absolute tolerance for local truncation error 48f3b1f45cSBarry Smith . -ts_rhs_jacobian_test_mult -mat_shell_test_mult_view - test the Jacobian at each iteration against finite difference with RHS function 49f3b1f45cSBarry Smith . -ts_rhs_jacobian_test_mult_transpose -mat_shell_test_mult_transpose_view - test the Jacobian at each iteration against finite difference with RHS function 50195e9b02SBarry Smith . -ts_adjoint_solve <yes,no> - After solving the ODE/DAE solve the adjoint problem (requires `-ts_save_trajectory`) 51847ff0e1SMatthew G. Knepley . -ts_fd_color - Use finite differences with coloring to compute IJacobian 52bdad233fSMatthew Knepley . -ts_monitor - print information at each timestep 53aee7a9fbSMatthew G. Knepley . -ts_monitor_cancel - Cancel all monitors 54de06c3feSJed Brown . -ts_monitor_lg_solution - Monitor solution graphically 55de06c3feSJed Brown . -ts_monitor_lg_error - Monitor error graphically 567cf37e64SBarry Smith . -ts_monitor_error - Monitors norm of error 576934998bSLisandro Dalcin . -ts_monitor_lg_timestep - Monitor timestep size graphically 588b668821SLisandro Dalcin . -ts_monitor_lg_timestep_log - Monitor log timestep size graphically 59de06c3feSJed Brown . -ts_monitor_lg_snes_iterations - Monitor number nonlinear iterations for each timestep graphically 60de06c3feSJed Brown . -ts_monitor_lg_ksp_iterations - Monitor number nonlinear iterations for each timestep graphically 61de06c3feSJed Brown . -ts_monitor_sp_eig - Monitor eigenvalues of linearized operator graphically 62de06c3feSJed Brown . -ts_monitor_draw_solution - Monitor solution graphically 633e4cdcaaSBarry Smith . -ts_monitor_draw_solution_phase <xleft,yleft,xright,yright> - Monitor solution graphically with phase diagram, requires problem with exactly 2 degrees of freedom 643e4cdcaaSBarry Smith . -ts_monitor_draw_error - Monitor error graphically, requires use to have provided TSSetSolutionFunction() 65fde5950dSBarry Smith . -ts_monitor_solution [ascii binary draw][:filename][:viewerformat] - monitors the solution at each timestep 669812b6beSJed Brown -ts_monitor_solution_interval <interval> - output once every interval (default=1) time steps; used with -ts_monitor_solution 6763a3b9bcSJacob Faibussowitsch . -ts_monitor_solution_vtk <filename.vts,filename.vtu> - Save each time step to a binary file, use filename-%%03" PetscInt_FMT ".vts (filename-%%03" PetscInt_FMT ".vtu) 689e336e28SPatrick Sanan - -ts_monitor_envelope - determine maximum and minimum value of each component of the solution over the solution time 6953ea634cSHong Zhang 70bcf0153eSBarry Smith Level: beginner 713d5a8a6aSBarry Smith 72bcf0153eSBarry Smith Notes: 73bcf0153eSBarry Smith See `SNESSetFromOptions()` and `KSPSetFromOptions()` for how to control the nonlinear and linear solves used by the time-stepper. 74bcf0153eSBarry Smith 75195e9b02SBarry Smith Certain `SNES` options get reset for each new nonlinear solver, for example `-snes_lag_jacobian its` and `-snes_lag_preconditioner its`, in order 76195e9b02SBarry Smith to retain them over the multiple nonlinear solves that `TS` uses you mush also provide `-snes_lag_jacobian_persists true` and 77195e9b02SBarry Smith `-snes_lag_preconditioner_persists true` 783d5a8a6aSBarry Smith 799e336e28SPatrick Sanan Developer Note: 809e336e28SPatrick Sanan We should unify all the -ts_monitor options in the way that -xxx_view has been unified 81bdad233fSMatthew Knepley 82bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetType()` 83bdad233fSMatthew Knepley @*/ 84d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetFromOptions(TS ts) 85d71ae5a4SJacob Faibussowitsch { 86bc952696SBarry Smith PetscBool opt, flg, tflg; 87eabae89aSBarry Smith char monfilename[PETSC_MAX_PATH_LEN]; 884a658b32SHong Zhang PetscReal time_step, tspan[100]; 894a658b32SHong Zhang PetscInt nt = PETSC_STATIC_ARRAY_LENGTH(tspan); 9049354f04SShri Abhyankar TSExactFinalTimeOption eftopt; 91d1212d36SBarry Smith char dir[16]; 92cd11d68dSLisandro Dalcin TSIFunction ifun; 936991f827SBarry Smith const char *defaultType; 946991f827SBarry Smith char typeName[256]; 95bdad233fSMatthew Knepley 96bdad233fSMatthew Knepley PetscFunctionBegin; 970700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 986991f827SBarry Smith 999566063dSJacob Faibussowitsch PetscCall(TSRegisterAll()); 1009566063dSJacob Faibussowitsch PetscCall(TSGetIFunction(ts, NULL, &ifun, NULL)); 101cd11d68dSLisandro Dalcin 102d0609cedSBarry Smith PetscObjectOptionsBegin((PetscObject)ts); 1031ef27442SStefano Zampini if (((PetscObject)ts)->type_name) defaultType = ((PetscObject)ts)->type_name; 1041ef27442SStefano Zampini else defaultType = ifun ? TSBEULER : TSEULER; 1059566063dSJacob Faibussowitsch PetscCall(PetscOptionsFList("-ts_type", "TS method", "TSSetType", TSList, defaultType, typeName, 256, &opt)); 1061e66621cSBarry Smith if (opt) PetscCall(TSSetType(ts, typeName)); 1071e66621cSBarry Smith else PetscCall(TSSetType(ts, defaultType)); 108bdad233fSMatthew Knepley 109bdad233fSMatthew Knepley /* Handle generic TS options */ 1109566063dSJacob Faibussowitsch PetscCall(PetscOptionsDeprecated("-ts_final_time", "-ts_max_time", "3.10", NULL)); 1119566063dSJacob Faibussowitsch PetscCall(PetscOptionsReal("-ts_max_time", "Maximum time to run to", "TSSetMaxTime", ts->max_time, &ts->max_time, NULL)); 1124a658b32SHong Zhang PetscCall(PetscOptionsRealArray("-ts_time_span", "Time span", "TSSetTimeSpan", tspan, &nt, &flg)); 1134a658b32SHong Zhang if (flg) PetscCall(TSSetTimeSpan(ts, nt, tspan)); 1149566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_max_steps", "Maximum number of time steps", "TSSetMaxSteps", ts->max_steps, &ts->max_steps, NULL)); 1159566063dSJacob Faibussowitsch PetscCall(PetscOptionsReal("-ts_init_time", "Initial time", "TSSetTime", ts->ptime, &ts->ptime, NULL)); 1169566063dSJacob Faibussowitsch PetscCall(PetscOptionsReal("-ts_dt", "Initial time step", "TSSetTimeStep", ts->time_step, &time_step, &flg)); 1179566063dSJacob Faibussowitsch if (flg) PetscCall(TSSetTimeStep(ts, time_step)); 1189566063dSJacob Faibussowitsch PetscCall(PetscOptionsEnum("-ts_exact_final_time", "Option for handling of final time step", "TSSetExactFinalTime", TSExactFinalTimeOptions, (PetscEnum)ts->exact_final_time, (PetscEnum *)&eftopt, &flg)); 1199566063dSJacob Faibussowitsch if (flg) PetscCall(TSSetExactFinalTime(ts, eftopt)); 1209566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_max_snes_failures", "Maximum number of nonlinear solve failures", "TSSetMaxSNESFailures", ts->max_snes_failures, &ts->max_snes_failures, NULL)); 1219566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_max_reject", "Maximum number of step rejections before step fails", "TSSetMaxStepRejections", ts->max_reject, &ts->max_reject, NULL)); 1229566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_error_if_step_fails", "Error if no step succeeds", "TSSetErrorIfStepFails", ts->errorifstepfailed, &ts->errorifstepfailed, NULL)); 1239566063dSJacob Faibussowitsch PetscCall(PetscOptionsReal("-ts_rtol", "Relative tolerance for local truncation error", "TSSetTolerances", ts->rtol, &ts->rtol, NULL)); 1249566063dSJacob Faibussowitsch PetscCall(PetscOptionsReal("-ts_atol", "Absolute tolerance for local truncation error", "TSSetTolerances", ts->atol, &ts->atol, NULL)); 125bdad233fSMatthew Knepley 1269566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_rhs_jacobian_test_mult", "Test the RHS Jacobian for consistency with RHS at each solve ", "None", ts->testjacobian, &ts->testjacobian, NULL)); 1279566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_rhs_jacobian_test_mult_transpose", "Test the RHS Jacobian transpose for consistency with RHS at each solve ", "None", ts->testjacobiantranspose, &ts->testjacobiantranspose, NULL)); 1289566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_use_splitrhsfunction", "Use the split RHS function for multirate solvers ", "TSSetUseSplitRHSFunction", ts->use_splitrhsfunction, &ts->use_splitrhsfunction, NULL)); 12956f85f32SBarry Smith #if defined(PETSC_HAVE_SAWS) 13056f85f32SBarry Smith { 13156f85f32SBarry Smith PetscBool set; 13256f85f32SBarry Smith flg = PETSC_FALSE; 1339566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_saws_block", "Block for SAWs memory snooper at end of TSSolve", "PetscObjectSAWsBlock", ((PetscObject)ts)->amspublishblock, &flg, &set)); 1341baa6e33SBarry Smith if (set) PetscCall(PetscObjectSAWsSetBlock((PetscObject)ts, flg)); 13556f85f32SBarry Smith } 13656f85f32SBarry Smith #endif 13756f85f32SBarry Smith 138bdad233fSMatthew Knepley /* Monitor options */ 1399566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_frequency", "Number of time steps between monitor output", "TSMonitorSetFrequency", ts->monitorFrequency, &ts->monitorFrequency, NULL)); 1409566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_monitor", "Monitor time and timestep size", "TSMonitorDefault", TSMonitorDefault, NULL)); 1419566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_monitor_extreme", "Monitor extreme values of the solution", "TSMonitorExtreme", TSMonitorExtreme, NULL)); 1429566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_monitor_solution", "View the solution at each timestep", "TSMonitorSolution", TSMonitorSolution, NULL)); 1439566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_dmswarm_monitor_moments", "Monitor moments of particle distribution", "TSDMSwarmMonitorMoments", TSDMSwarmMonitorMoments, NULL)); 144fde5950dSBarry Smith 1459566063dSJacob Faibussowitsch PetscCall(PetscOptionsString("-ts_monitor_python", "Use Python function", "TSMonitorSet", NULL, monfilename, sizeof(monfilename), &flg)); 1469566063dSJacob Faibussowitsch if (flg) PetscCall(PetscPythonMonitorSet((PetscObject)ts, monfilename)); 1475180491cSLisandro Dalcin 1489566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_solution", "Monitor solution graphically", "TSMonitorLGSolution", &opt)); 149b3603a34SBarry Smith if (opt) { 1503923b477SBarry Smith PetscInt howoften = 1; 151e669de00SBarry Smith DM dm; 152e669de00SBarry Smith PetscBool net; 153b3603a34SBarry Smith 1549566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_solution", "Monitor solution graphically", "TSMonitorLGSolution", howoften, &howoften, NULL)); 1559566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 1569566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)dm, DMNETWORK, &net)); 157e669de00SBarry Smith if (net) { 158e669de00SBarry Smith TSMonitorLGCtxNetwork ctx; 1599566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxNetworkCreate(ts, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 600, 400, howoften, &ctx)); 1609566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGCtxNetworkSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxNetworkDestroy)); 1619566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_monitor_lg_solution_semilogy", "Plot the solution with a semi-log axis", "", ctx->semilogy, &ctx->semilogy, NULL)); 162e669de00SBarry Smith } else { 163e669de00SBarry Smith TSMonitorLGCtx ctx; 1649566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PETSC_COMM_SELF, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 1659566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 166bdad233fSMatthew Knepley } 167e669de00SBarry Smith } 1686ba87a44SLisandro Dalcin 1699566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_error", "Monitor error graphically", "TSMonitorLGError", &opt)); 170ef20d060SBarry Smith if (opt) { 1710b039ecaSBarry Smith TSMonitorLGCtx ctx; 1723923b477SBarry Smith PetscInt howoften = 1; 173ef20d060SBarry Smith 1749566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_error", "Monitor error graphically", "TSMonitorLGError", howoften, &howoften, NULL)); 1759566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PETSC_COMM_SELF, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 1769566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGError, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 177ef20d060SBarry Smith } 1789566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_monitor_error", "View the error at each timestep", "TSMonitorError", TSMonitorError, NULL)); 1797cf37e64SBarry Smith 1809566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_timestep", "Monitor timestep size graphically", "TSMonitorLGTimeStep", &opt)); 1816934998bSLisandro Dalcin if (opt) { 1826934998bSLisandro Dalcin TSMonitorLGCtx ctx; 1836934998bSLisandro Dalcin PetscInt howoften = 1; 1846934998bSLisandro Dalcin 1859566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_timestep", "Monitor timestep size graphically", "TSMonitorLGTimeStep", howoften, &howoften, NULL)); 1869566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 1879566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGTimeStep, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 1886934998bSLisandro Dalcin } 1899566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_timestep_log", "Monitor log timestep size graphically", "TSMonitorLGTimeStep", &opt)); 1908b668821SLisandro Dalcin if (opt) { 1918b668821SLisandro Dalcin TSMonitorLGCtx ctx; 1928b668821SLisandro Dalcin PetscInt howoften = 1; 1938b668821SLisandro Dalcin 1949566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_timestep_log", "Monitor log timestep size graphically", "TSMonitorLGTimeStep", howoften, &howoften, NULL)); 1959566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 1969566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGTimeStep, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 1978b668821SLisandro Dalcin ctx->semilogy = PETSC_TRUE; 1988b668821SLisandro Dalcin } 1998b668821SLisandro Dalcin 2009566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_snes_iterations", "Monitor number nonlinear iterations for each timestep graphically", "TSMonitorLGSNESIterations", &opt)); 201201da799SBarry Smith if (opt) { 202201da799SBarry Smith TSMonitorLGCtx ctx; 203201da799SBarry Smith PetscInt howoften = 1; 204201da799SBarry Smith 2059566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_snes_iterations", "Monitor number nonlinear iterations for each timestep graphically", "TSMonitorLGSNESIterations", howoften, &howoften, NULL)); 2069566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 2079566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGSNESIterations, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 208201da799SBarry Smith } 2099566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_ksp_iterations", "Monitor number nonlinear iterations for each timestep graphically", "TSMonitorLGKSPIterations", &opt)); 210201da799SBarry Smith if (opt) { 211201da799SBarry Smith TSMonitorLGCtx ctx; 212201da799SBarry Smith PetscInt howoften = 1; 213201da799SBarry Smith 2149566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_ksp_iterations", "Monitor number nonlinear iterations for each timestep graphically", "TSMonitorLGKSPIterations", howoften, &howoften, NULL)); 2159566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 2169566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGKSPIterations, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 217201da799SBarry Smith } 2189566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_sp_eig", "Monitor eigenvalues of linearized operator graphically", "TSMonitorSPEig", &opt)); 2198189c53fSBarry Smith if (opt) { 2208189c53fSBarry Smith TSMonitorSPEigCtx ctx; 2218189c53fSBarry Smith PetscInt howoften = 1; 2228189c53fSBarry Smith 2239566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_sp_eig", "Monitor eigenvalues of linearized operator graphically", "TSMonitorSPEig", howoften, &howoften, NULL)); 2249566063dSJacob Faibussowitsch PetscCall(TSMonitorSPEigCtxCreate(PETSC_COMM_SELF, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, &ctx)); 2259566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorSPEig, ctx, (PetscErrorCode(*)(void **))TSMonitorSPEigCtxDestroy)); 2268189c53fSBarry Smith } 22760e16b1bSMatthew G. Knepley PetscCall(PetscOptionsName("-ts_monitor_sp_swarm", "Display particle phase space from the DMSwarm", "TSMonitorSPSwarm", &opt)); 2281b575b74SJoseph Pusztay if (opt) { 2291b575b74SJoseph Pusztay TSMonitorSPCtx ctx; 230d7462660SMatthew Knepley PetscInt howoften = 1, retain = 0; 23160e16b1bSMatthew G. Knepley PetscBool phase = PETSC_TRUE, create = PETSC_TRUE, multispecies = PETSC_FALSE; 232d7462660SMatthew Knepley 2339371c9d4SSatish Balay for (PetscInt i = 0; i < ts->numbermonitors; ++i) 2349371c9d4SSatish Balay if (ts->monitor[i] == TSMonitorSPSwarmSolution) { 2359371c9d4SSatish Balay create = PETSC_FALSE; 2369371c9d4SSatish Balay break; 2379371c9d4SSatish Balay } 2386a5217c0SMatthew G. Knepley if (create) { 23960e16b1bSMatthew G. Knepley PetscCall(PetscOptionsInt("-ts_monitor_sp_swarm", "Display particles phase space from the DMSwarm", "TSMonitorSPSwarm", howoften, &howoften, NULL)); 2409566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_sp_swarm_retain", "Retain n points plotted to show trajectory, -1 for all points", "TSMonitorSPSwarm", retain, &retain, NULL)); 2419566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_monitor_sp_swarm_phase", "Plot in phase space rather than coordinate space", "TSMonitorSPSwarm", phase, &phase, NULL)); 24260e16b1bSMatthew G. Knepley PetscCall(PetscOptionsBool("-ts_monitor_sp_swarm_multi_species", "Color particles by particle species", "TSMonitorSPSwarm", multispecies, &multispecies, NULL)); 24360e16b1bSMatthew G. Knepley PetscCall(TSMonitorSPCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, retain, phase, multispecies, &ctx)); 2449566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorSPSwarmSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorSPCtxDestroy)); 2451b575b74SJoseph Pusztay } 2466a5217c0SMatthew G. Knepley } 24760e16b1bSMatthew G. Knepley PetscCall(PetscOptionsName("-ts_monitor_hg_swarm", "Display particle histogram from the DMSwarm", "TSMonitorHGSwarm", &opt)); 24860e16b1bSMatthew G. Knepley if (opt) { 24960e16b1bSMatthew G. Knepley TSMonitorHGCtx ctx; 25060e16b1bSMatthew G. Knepley PetscInt howoften = 1, Ns = 1; 25160e16b1bSMatthew G. Knepley PetscBool velocity = PETSC_FALSE, create = PETSC_TRUE; 25260e16b1bSMatthew G. Knepley 25360e16b1bSMatthew G. Knepley for (PetscInt i = 0; i < ts->numbermonitors; ++i) 25460e16b1bSMatthew G. Knepley if (ts->monitor[i] == TSMonitorHGSwarmSolution) { 25560e16b1bSMatthew G. Knepley create = PETSC_FALSE; 25660e16b1bSMatthew G. Knepley break; 25760e16b1bSMatthew G. Knepley } 25860e16b1bSMatthew G. Knepley if (create) { 25960e16b1bSMatthew G. Knepley DM sw, dm; 26060e16b1bSMatthew G. Knepley PetscInt Nc, Nb; 26160e16b1bSMatthew G. Knepley 26260e16b1bSMatthew G. Knepley PetscCall(TSGetDM(ts, &sw)); 26360e16b1bSMatthew G. Knepley PetscCall(DMSwarmGetCellDM(sw, &dm)); 26460e16b1bSMatthew G. Knepley PetscCall(DMPlexGetHeightStratum(dm, 0, NULL, &Nc)); 26560e16b1bSMatthew G. Knepley Nb = PetscMin(20, PetscMax(10, Nc)); 26660e16b1bSMatthew G. Knepley PetscCall(PetscOptionsInt("-ts_monitor_hg_swarm", "Display particles histogram from the DMSwarm", "TSMonitorHGSwarm", howoften, &howoften, NULL)); 26760e16b1bSMatthew G. Knepley PetscCall(PetscOptionsBool("-ts_monitor_hg_swarm_velocity", "Plot in velocity space rather than coordinate space", "TSMonitorHGSwarm", velocity, &velocity, NULL)); 26860e16b1bSMatthew G. Knepley PetscCall(PetscOptionsInt("-ts_monitor_hg_swarm_species", "Number of species to histogram", "TSMonitorHGSwarm", Ns, &Ns, NULL)); 26960e16b1bSMatthew G. Knepley PetscCall(PetscOptionsInt("-ts_monitor_hg_swarm_bins", "Number of histogram bins", "TSMonitorHGSwarm", Nb, &Nb, NULL)); 27060e16b1bSMatthew G. Knepley PetscCall(TSMonitorHGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, Ns, Nb, velocity, &ctx)); 27160e16b1bSMatthew G. Knepley PetscCall(TSMonitorSet(ts, TSMonitorHGSwarmSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorHGCtxDestroy)); 27260e16b1bSMatthew G. Knepley } 27360e16b1bSMatthew G. Knepley } 274ef20d060SBarry Smith opt = PETSC_FALSE; 2759566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_draw_solution", "Monitor solution graphically", "TSMonitorDrawSolution", &opt)); 276a7cc72afSBarry Smith if (opt) { 27783a4ac43SBarry Smith TSMonitorDrawCtx ctx; 27883a4ac43SBarry Smith PetscInt howoften = 1; 279a80ad3e0SBarry Smith 2809566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_draw_solution", "Monitor solution graphically", "TSMonitorDrawSolution", howoften, &howoften, NULL)); 2819566063dSJacob Faibussowitsch PetscCall(TSMonitorDrawCtxCreate(PetscObjectComm((PetscObject)ts), NULL, "Computed Solution", PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, &ctx)); 2829566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDrawSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorDrawCtxDestroy)); 283bdad233fSMatthew Knepley } 284fb1732b5SBarry Smith opt = PETSC_FALSE; 2859566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_draw_solution_phase", "Monitor solution graphically", "TSMonitorDrawSolutionPhase", &opt)); 2862d5ee99bSBarry Smith if (opt) { 2872d5ee99bSBarry Smith TSMonitorDrawCtx ctx; 2882d5ee99bSBarry Smith PetscReal bounds[4]; 2892d5ee99bSBarry Smith PetscInt n = 4; 2902d5ee99bSBarry Smith PetscDraw draw; 2916934998bSLisandro Dalcin PetscDrawAxis axis; 2922d5ee99bSBarry Smith 2939566063dSJacob Faibussowitsch PetscCall(PetscOptionsRealArray("-ts_monitor_draw_solution_phase", "Monitor solution graphically", "TSMonitorDrawSolutionPhase", bounds, &n, NULL)); 2943c633725SBarry Smith PetscCheck(n == 4, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Must provide bounding box of phase field"); 2959566063dSJacob Faibussowitsch PetscCall(TSMonitorDrawCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 300, 300, 1, &ctx)); 2969566063dSJacob Faibussowitsch PetscCall(PetscViewerDrawGetDraw(ctx->viewer, 0, &draw)); 2979566063dSJacob Faibussowitsch PetscCall(PetscViewerDrawGetDrawAxis(ctx->viewer, 0, &axis)); 2989566063dSJacob Faibussowitsch PetscCall(PetscDrawAxisSetLimits(axis, bounds[0], bounds[2], bounds[1], bounds[3])); 2999566063dSJacob Faibussowitsch PetscCall(PetscDrawAxisSetLabels(axis, "Phase Diagram", "Variable 1", "Variable 2")); 3009566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDrawSolutionPhase, ctx, (PetscErrorCode(*)(void **))TSMonitorDrawCtxDestroy)); 3012d5ee99bSBarry Smith } 3022d5ee99bSBarry Smith opt = PETSC_FALSE; 3039566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_draw_error", "Monitor error graphically", "TSMonitorDrawError", &opt)); 3043a471f94SBarry Smith if (opt) { 30583a4ac43SBarry Smith TSMonitorDrawCtx ctx; 30683a4ac43SBarry Smith PetscInt howoften = 1; 3073a471f94SBarry Smith 3089566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_draw_error", "Monitor error graphically", "TSMonitorDrawError", howoften, &howoften, NULL)); 3099566063dSJacob Faibussowitsch PetscCall(TSMonitorDrawCtxCreate(PetscObjectComm((PetscObject)ts), NULL, "Error", PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, &ctx)); 3109566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDrawError, ctx, (PetscErrorCode(*)(void **))TSMonitorDrawCtxDestroy)); 3113a471f94SBarry Smith } 3120ed3bfb6SBarry Smith opt = PETSC_FALSE; 3139566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_draw_solution_function", "Monitor solution provided by TSMonitorSetSolutionFunction() graphically", "TSMonitorDrawSolutionFunction", &opt)); 3140ed3bfb6SBarry Smith if (opt) { 3150ed3bfb6SBarry Smith TSMonitorDrawCtx ctx; 3160ed3bfb6SBarry Smith PetscInt howoften = 1; 3170ed3bfb6SBarry Smith 3189566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_draw_solution_function", "Monitor solution provided by TSMonitorSetSolutionFunction() graphically", "TSMonitorDrawSolutionFunction", howoften, &howoften, NULL)); 3199566063dSJacob Faibussowitsch PetscCall(TSMonitorDrawCtxCreate(PetscObjectComm((PetscObject)ts), NULL, "Solution provided by user function", PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, &ctx)); 3209566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDrawSolutionFunction, ctx, (PetscErrorCode(*)(void **))TSMonitorDrawCtxDestroy)); 3210ed3bfb6SBarry Smith } 322fde5950dSBarry Smith 323ed81e22dSJed Brown opt = PETSC_FALSE; 32463a3b9bcSJacob Faibussowitsch PetscCall(PetscOptionsString("-ts_monitor_solution_vtk", "Save each time step to a binary file, use filename-%%03" PetscInt_FMT ".vts", "TSMonitorSolutionVTK", NULL, monfilename, sizeof(monfilename), &flg)); 325ed81e22dSJed Brown if (flg) { 326bbcf679cSJacob Faibussowitsch const char *ptr = NULL, *ptr2 = NULL; 327ed81e22dSJed Brown char *filetemplate; 32863a3b9bcSJacob Faibussowitsch PetscCheck(monfilename[0], PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "-ts_monitor_solution_vtk requires a file template, e.g. filename-%%03" PetscInt_FMT ".vts"); 329ed81e22dSJed Brown /* Do some cursory validation of the input. */ 3309566063dSJacob Faibussowitsch PetscCall(PetscStrstr(monfilename, "%", (char **)&ptr)); 33163a3b9bcSJacob Faibussowitsch PetscCheck(ptr, PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "-ts_monitor_solution_vtk requires a file template, e.g. filename-%%03" PetscInt_FMT ".vts"); 332ed81e22dSJed Brown for (ptr++; ptr && *ptr; ptr++) { 3339566063dSJacob Faibussowitsch PetscCall(PetscStrchr("DdiouxX", *ptr, (char **)&ptr2)); 33463a3b9bcSJacob Faibussowitsch PetscCheck(ptr2 || (*ptr >= '0' && *ptr <= '9'), PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "Invalid file template argument to -ts_monitor_solution_vtk, should look like filename-%%03" PetscInt_FMT ".vts"); 335ed81e22dSJed Brown if (ptr2) break; 336ed81e22dSJed Brown } 3379566063dSJacob Faibussowitsch PetscCall(PetscStrallocpy(monfilename, &filetemplate)); 3389566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorSolutionVTK, filetemplate, (PetscErrorCode(*)(void **))TSMonitorSolutionVTKDestroy)); 339ed81e22dSJed Brown } 340bdad233fSMatthew Knepley 3419566063dSJacob Faibussowitsch PetscCall(PetscOptionsString("-ts_monitor_dmda_ray", "Display a ray of the solution", "None", "y=0", dir, sizeof(dir), &flg)); 342d1212d36SBarry Smith if (flg) { 343d1212d36SBarry Smith TSMonitorDMDARayCtx *rayctx; 344d1212d36SBarry Smith int ray = 0; 3453ee9839eSMatthew G. Knepley DMDirection ddir; 346d1212d36SBarry Smith DM da; 347d1212d36SBarry Smith PetscMPIInt rank; 348d1212d36SBarry Smith 3493c633725SBarry Smith PetscCheck(dir[1] == '=', PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Unknown ray %s", dir); 3503ee9839eSMatthew G. Knepley if (dir[0] == 'x') ddir = DM_X; 3513ee9839eSMatthew G. Knepley else if (dir[0] == 'y') ddir = DM_Y; 35298921bdaSJacob Faibussowitsch else SETERRQ(PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Unknown ray %s", dir); 353d1212d36SBarry Smith sscanf(dir + 2, "%d", &ray); 354d1212d36SBarry Smith 3559566063dSJacob Faibussowitsch PetscCall(PetscInfo(((PetscObject)ts), "Displaying DMDA ray %c = %d\n", dir[0], ray)); 3569566063dSJacob Faibussowitsch PetscCall(PetscNew(&rayctx)); 3579566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &da)); 3589566063dSJacob Faibussowitsch PetscCall(DMDAGetRay(da, ddir, ray, &rayctx->ray, &rayctx->scatter)); 3599566063dSJacob Faibussowitsch PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)ts), &rank)); 3601e66621cSBarry Smith if (rank == 0) PetscCall(PetscViewerDrawOpen(PETSC_COMM_SELF, NULL, NULL, 0, 0, 600, 300, &rayctx->viewer)); 36151b4a12fSMatthew G. Knepley rayctx->lgctx = NULL; 3629566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDMDARay, rayctx, TSMonitorDMDARayDestroy)); 363d1212d36SBarry Smith } 3649566063dSJacob Faibussowitsch PetscCall(PetscOptionsString("-ts_monitor_lg_dmda_ray", "Display a ray of the solution", "None", "x=0", dir, sizeof(dir), &flg)); 36551b4a12fSMatthew G. Knepley if (flg) { 36651b4a12fSMatthew G. Knepley TSMonitorDMDARayCtx *rayctx; 36751b4a12fSMatthew G. Knepley int ray = 0; 3683ee9839eSMatthew G. Knepley DMDirection ddir; 36951b4a12fSMatthew G. Knepley DM da; 37051b4a12fSMatthew G. Knepley PetscInt howoften = 1; 371d1212d36SBarry Smith 3723c633725SBarry Smith PetscCheck(dir[1] == '=', PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Malformed ray %s", dir); 3733ee9839eSMatthew G. Knepley if (dir[0] == 'x') ddir = DM_X; 3743ee9839eSMatthew G. Knepley else if (dir[0] == 'y') ddir = DM_Y; 37598921bdaSJacob Faibussowitsch else SETERRQ(PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Unknown ray direction %s", dir); 37651b4a12fSMatthew G. Knepley sscanf(dir + 2, "%d", &ray); 3771c3436cfSJed Brown 3789566063dSJacob Faibussowitsch PetscCall(PetscInfo(((PetscObject)ts), "Displaying LG DMDA ray %c = %d\n", dir[0], ray)); 3799566063dSJacob Faibussowitsch PetscCall(PetscNew(&rayctx)); 3809566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &da)); 3819566063dSJacob Faibussowitsch PetscCall(DMDAGetRay(da, ddir, ray, &rayctx->ray, &rayctx->scatter)); 3829566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PETSC_COMM_SELF, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 600, 400, howoften, &rayctx->lgctx)); 3839566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGDMDARay, rayctx, TSMonitorDMDARayDestroy)); 38451b4a12fSMatthew G. Knepley } 385a7a1495cSBarry Smith 3869566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_envelope", "Monitor maximum and minimum value of each component of the solution", "TSMonitorEnvelope", &opt)); 387b3d3934dSBarry Smith if (opt) { 388b3d3934dSBarry Smith TSMonitorEnvelopeCtx ctx; 389b3d3934dSBarry Smith 3909566063dSJacob Faibussowitsch PetscCall(TSMonitorEnvelopeCtxCreate(ts, &ctx)); 3919566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorEnvelope, ctx, (PetscErrorCode(*)(void **))TSMonitorEnvelopeCtxDestroy)); 392b3d3934dSBarry Smith } 393aee7a9fbSMatthew G. Knepley flg = PETSC_FALSE; 3949566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_monitor_cancel", "Remove all monitors", "TSMonitorCancel", flg, &flg, &opt)); 3959566063dSJacob Faibussowitsch if (opt && flg) PetscCall(TSMonitorCancel(ts)); 396b3d3934dSBarry Smith 397847ff0e1SMatthew G. Knepley flg = PETSC_FALSE; 398d7cfae9bSHong Zhang PetscCall(PetscOptionsBool("-ts_fd_color", "Use finite differences with coloring to compute IJacobian", "TSComputeIJacobianDefaultColor", flg, &flg, NULL)); 399847ff0e1SMatthew G. Knepley if (flg) { 400847ff0e1SMatthew G. Knepley DM dm; 401847ff0e1SMatthew G. Knepley 4029371c9d4SSatish Balay PetscCall(TSGetDM(ts, &dm)); 4039371c9d4SSatish Balay PetscCall(DMTSUnsetIJacobianContext_Internal(dm)); 4049566063dSJacob Faibussowitsch PetscCall(TSSetIJacobian(ts, NULL, NULL, TSComputeIJacobianDefaultColor, NULL)); 4059566063dSJacob Faibussowitsch PetscCall(PetscInfo(ts, "Setting default finite difference coloring Jacobian matrix\n")); 406847ff0e1SMatthew G. Knepley } 407847ff0e1SMatthew G. Knepley 408d763cef2SBarry Smith /* Handle specific TS options */ 409dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, setfromoptions, PetscOptionsObject); 410fbc52257SHong Zhang 411a7bdc993SLisandro Dalcin /* Handle TSAdapt options */ 4129566063dSJacob Faibussowitsch PetscCall(TSGetAdapt(ts, &ts->adapt)); 4139566063dSJacob Faibussowitsch PetscCall(TSAdaptSetDefaultType(ts->adapt, ts->default_adapt_type)); 414dbbe0bcdSBarry Smith PetscCall(TSAdaptSetFromOptions(ts->adapt, PetscOptionsObject)); 415a7bdc993SLisandro Dalcin 41668bece0bSHong Zhang /* TS trajectory must be set after TS, since it may use some TS options above */ 4174f122a70SLisandro Dalcin tflg = ts->trajectory ? PETSC_TRUE : PETSC_FALSE; 4189566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_save_trajectory", "Save the solution at each timestep", "TSSetSaveTrajectory", tflg, &tflg, NULL)); 4191baa6e33SBarry Smith if (tflg) PetscCall(TSSetSaveTrajectory(ts)); 420a05bf03eSHong Zhang 421dbbe0bcdSBarry Smith PetscCall(TSAdjointSetFromOptions(ts, PetscOptionsObject)); 422d763cef2SBarry Smith 423d763cef2SBarry Smith /* process any options handlers added with PetscObjectAddOptionsHandler() */ 424dbbe0bcdSBarry Smith PetscCall(PetscObjectProcessOptionsHandlers((PetscObject)ts, PetscOptionsObject)); 425d0609cedSBarry Smith PetscOptionsEnd(); 426d763cef2SBarry Smith 4271baa6e33SBarry Smith if (ts->trajectory) PetscCall(TSTrajectorySetFromOptions(ts->trajectory, ts)); 42868bece0bSHong Zhang 4291ef27442SStefano Zampini /* why do we have to do this here and not during TSSetUp? */ 4309566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &ts->snes)); 4311ef27442SStefano Zampini if (ts->problem_type == TS_LINEAR) { 4329566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompareAny((PetscObject)ts->snes, &flg, SNESKSPONLY, SNESKSPTRANSPOSEONLY, "")); 4339566063dSJacob Faibussowitsch if (!flg) PetscCall(SNESSetType(ts->snes, SNESKSPONLY)); 4341ef27442SStefano Zampini } 4359566063dSJacob Faibussowitsch PetscCall(SNESSetFromOptions(ts->snes)); 4363ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 437d763cef2SBarry Smith } 438d763cef2SBarry Smith 439d2daff3dSHong Zhang /*@ 440bcf0153eSBarry Smith TSGetTrajectory - Gets the trajectory from a `TS` if it exists 44178fbdcc8SBarry Smith 442c3339decSBarry Smith Collective 44378fbdcc8SBarry Smith 4442fe279fdSBarry Smith Input Parameter: 445bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 44678fbdcc8SBarry Smith 4472fe279fdSBarry Smith Output Parameter: 448bcf0153eSBarry Smith . tr - the `TSTrajectory` object, if it exists 44978fbdcc8SBarry Smith 45078fbdcc8SBarry Smith Level: advanced 45178fbdcc8SBarry Smith 452bcf0153eSBarry Smith Note: 453bcf0153eSBarry Smith This routine should be called after all `TS` options have been set 45478fbdcc8SBarry Smith 455195e9b02SBarry Smith .seealso: [](chapter_ts), `TS`, `TSTrajectory`, `TSAdjointSolve()`, `TSTrajectory`, `TSTrajectoryCreate()` 45678fbdcc8SBarry Smith @*/ 457d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTrajectory(TS ts, TSTrajectory *tr) 458d71ae5a4SJacob Faibussowitsch { 45978fbdcc8SBarry Smith PetscFunctionBegin; 46078fbdcc8SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 46178fbdcc8SBarry Smith *tr = ts->trajectory; 4623ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 46378fbdcc8SBarry Smith } 46478fbdcc8SBarry Smith 46578fbdcc8SBarry Smith /*@ 466bcf0153eSBarry Smith TSSetSaveTrajectory - Causes the `TS` to save its solutions as it iterates forward in time in a `TSTrajectory` object 467d2daff3dSHong Zhang 468c3339decSBarry Smith Collective 469d2daff3dSHong Zhang 470f899ff85SJose E. Roman Input Parameter: 471bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 472bc952696SBarry Smith 473bcf0153eSBarry Smith Options Database Keys: 47478fbdcc8SBarry Smith + -ts_save_trajectory - saves the trajectory to a file 47567b8a455SSatish Balay - -ts_trajectory_type type - set trajectory type 47678fbdcc8SBarry Smith 477d2daff3dSHong Zhang Level: intermediate 478d2daff3dSHong Zhang 479bcf0153eSBarry Smith Notes: 480bcf0153eSBarry Smith This routine should be called after all `TS` options have been set 481d2daff3dSHong Zhang 482bcf0153eSBarry Smith The `TSTRAJECTORYVISUALIZATION` files can be loaded into Python with $PETSC_DIR/lib/petsc/bin/PetscBinaryIOTrajectory.py and 483bcf0153eSBarry Smith MATLAB with $PETSC_DIR/share/petsc/matlab/PetscReadBinaryTrajectory.m 484bcf0153eSBarry Smith 485195e9b02SBarry Smith .seealso: [](chapter_ts), `TS`, `TSTrajectory`, `TSGetTrajectory()`, `TSAdjointSolve()` 486d2daff3dSHong Zhang @*/ 487d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetSaveTrajectory(TS ts) 488d71ae5a4SJacob Faibussowitsch { 489d2daff3dSHong Zhang PetscFunctionBegin; 490d2daff3dSHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 49163a3b9bcSJacob Faibussowitsch if (!ts->trajectory) PetscCall(TSTrajectoryCreate(PetscObjectComm((PetscObject)ts), &ts->trajectory)); 4923ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 493d2daff3dSHong Zhang } 494d2daff3dSHong Zhang 495a7a1495cSBarry Smith /*@ 496bcf0153eSBarry Smith TSResetTrajectory - Destroys and recreates the internal `TSTrajectory` object 4972d29f1f2SStefano Zampini 498c3339decSBarry Smith Collective 4992d29f1f2SStefano Zampini 5002fe279fdSBarry Smith Input Parameter: 501bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 5022d29f1f2SStefano Zampini 5032d29f1f2SStefano Zampini Level: intermediate 5042d29f1f2SStefano Zampini 505bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSTrajectory`, `TSGetTrajectory()`, `TSAdjointSolve()`, `TSRemoveTrajectory()` 5062d29f1f2SStefano Zampini @*/ 507d71ae5a4SJacob Faibussowitsch PetscErrorCode TSResetTrajectory(TS ts) 508d71ae5a4SJacob Faibussowitsch { 5092d29f1f2SStefano Zampini PetscFunctionBegin; 5102d29f1f2SStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5112d29f1f2SStefano Zampini if (ts->trajectory) { 5129566063dSJacob Faibussowitsch PetscCall(TSTrajectoryDestroy(&ts->trajectory)); 5139566063dSJacob Faibussowitsch PetscCall(TSTrajectoryCreate(PetscObjectComm((PetscObject)ts), &ts->trajectory)); 5142d29f1f2SStefano Zampini } 5153ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5162d29f1f2SStefano Zampini } 5172d29f1f2SStefano Zampini 5182d29f1f2SStefano Zampini /*@ 519195e9b02SBarry Smith TSRemoveTrajectory - Destroys and removes the internal `TSTrajectory` object from a `TS` 52067a3cfb0SHong Zhang 521c3339decSBarry Smith Collective 52267a3cfb0SHong Zhang 5232fe279fdSBarry Smith Input Parameter: 524bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 52567a3cfb0SHong Zhang 52667a3cfb0SHong Zhang Level: intermediate 52767a3cfb0SHong Zhang 528bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSTrajectory`, `TSResetTrajectory()`, `TSAdjointSolve()` 52967a3cfb0SHong Zhang @*/ 530d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRemoveTrajectory(TS ts) 531d71ae5a4SJacob Faibussowitsch { 53267a3cfb0SHong Zhang PetscFunctionBegin; 53367a3cfb0SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5341e66621cSBarry Smith if (ts->trajectory) PetscCall(TSTrajectoryDestroy(&ts->trajectory)); 5353ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 53667a3cfb0SHong Zhang } 53767a3cfb0SHong Zhang 53867a3cfb0SHong Zhang /*@ 539a7a1495cSBarry Smith TSComputeRHSJacobian - Computes the Jacobian matrix that has been 540bcf0153eSBarry Smith set with `TSSetRHSJacobian()`. 541a7a1495cSBarry Smith 542c3339decSBarry Smith Collective 543a7a1495cSBarry Smith 544a7a1495cSBarry Smith Input Parameters: 545bcf0153eSBarry Smith + ts - the `TS` context 546a7a1495cSBarry Smith . t - current timestep 5470910c330SBarry Smith - U - input vector 548a7a1495cSBarry Smith 549a7a1495cSBarry Smith Output Parameters: 550a7a1495cSBarry Smith + A - Jacobian matrix 5516b867d5aSJose E. Roman - B - optional preconditioning matrix 552a7a1495cSBarry Smith 553bcf0153eSBarry Smith Level: developer 554bcf0153eSBarry Smith 555bcf0153eSBarry Smith Note: 556a7a1495cSBarry Smith Most users should not need to explicitly call this routine, as it 557a7a1495cSBarry Smith is used internally within the nonlinear solvers. 558a7a1495cSBarry Smith 559bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSJacobian()`, `KSPSetOperators()` 560a7a1495cSBarry Smith @*/ 561d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeRHSJacobian(TS ts, PetscReal t, Vec U, Mat A, Mat B) 562d71ae5a4SJacob Faibussowitsch { 563270bf2e7SJed Brown PetscObjectState Ustate; 5646c1e1eecSBarry Smith PetscObjectId Uid; 56524989b8cSPeter Brune DM dm; 566942e3340SBarry Smith DMTS tsdm; 56724989b8cSPeter Brune TSRHSJacobian rhsjacobianfunc; 56824989b8cSPeter Brune void *ctx; 569b2df71adSDebojyoti Ghosh TSRHSFunction rhsfunction; 570a7a1495cSBarry Smith 571a7a1495cSBarry Smith PetscFunctionBegin; 5720700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5730910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 5740910c330SBarry Smith PetscCheckSameComm(ts, 1, U, 3); 5759566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 5769566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(dm, &tsdm)); 5779566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, NULL)); 5789566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, &rhsjacobianfunc, &ctx)); 5799566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &Ustate)); 5809566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &Uid)); 581971015bcSStefano Zampini 5823ba16761SJacob Faibussowitsch if (ts->rhsjacobian.time == t && (ts->problem_type == TS_LINEAR || (ts->rhsjacobian.Xid == Uid && ts->rhsjacobian.Xstate == Ustate)) && (rhsfunction != TSComputeRHSFunctionLinear)) PetscFunctionReturn(PETSC_SUCCESS); 583d90be118SSean Farley 58463a3b9bcSJacob Faibussowitsch PetscCheck(ts->rhsjacobian.shift == 0.0 || !ts->rhsjacobian.reuse, PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "Should not call TSComputeRHSJacobian() on a shifted matrix (shift=%lf) when RHSJacobian is reusable.", (double)ts->rhsjacobian.shift); 58524989b8cSPeter Brune if (rhsjacobianfunc) { 5869566063dSJacob Faibussowitsch PetscCall(PetscLogEventBegin(TS_JacobianEval, ts, U, A, B)); 587792fecdfSBarry Smith PetscCallBack("TS callback Jacobian", (*rhsjacobianfunc)(ts, t, U, A, B, ctx)); 588a6ab3590SBarry Smith ts->rhsjacs++; 5899566063dSJacob Faibussowitsch PetscCall(PetscLogEventEnd(TS_JacobianEval, ts, U, A, B)); 590ef66eb69SBarry Smith } else { 5919566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(A)); 5929566063dSJacob Faibussowitsch if (B && A != B) PetscCall(MatZeroEntries(B)); 593ef66eb69SBarry Smith } 5940e4ef248SJed Brown ts->rhsjacobian.time = t; 595971015bcSStefano Zampini ts->rhsjacobian.shift = 0; 596971015bcSStefano Zampini ts->rhsjacobian.scale = 1.; 5979566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &ts->rhsjacobian.Xid)); 5989566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &ts->rhsjacobian.Xstate)); 5993ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 600a7a1495cSBarry Smith } 601a7a1495cSBarry Smith 602316643e7SJed Brown /*@ 603bcf0153eSBarry Smith TSComputeRHSFunction - Evaluates the right-hand-side function for a `TS` 604d763cef2SBarry Smith 605c3339decSBarry Smith Collective 606316643e7SJed Brown 607316643e7SJed Brown Input Parameters: 608bcf0153eSBarry Smith + ts - the `TS` context 609316643e7SJed Brown . t - current time 6100910c330SBarry Smith - U - state vector 611316643e7SJed Brown 612316643e7SJed Brown Output Parameter: 613316643e7SJed Brown . y - right hand side 614316643e7SJed Brown 615bcf0153eSBarry Smith Level: developer 616bcf0153eSBarry Smith 617316643e7SJed Brown Note: 618316643e7SJed Brown Most users should not need to explicitly call this routine, as it 619316643e7SJed Brown is used internally within the nonlinear solvers. 620316643e7SJed Brown 621bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSFunction()`, `TSComputeIFunction()` 622316643e7SJed Brown @*/ 623d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeRHSFunction(TS ts, PetscReal t, Vec U, Vec y) 624d71ae5a4SJacob Faibussowitsch { 62524989b8cSPeter Brune TSRHSFunction rhsfunction; 62624989b8cSPeter Brune TSIFunction ifunction; 62724989b8cSPeter Brune void *ctx; 62824989b8cSPeter Brune DM dm; 62924989b8cSPeter Brune 630d763cef2SBarry Smith PetscFunctionBegin; 6310700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 6320910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 6330700a824SBarry Smith PetscValidHeaderSpecific(y, VEC_CLASSID, 4); 6349566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 6359566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, &ctx)); 6369566063dSJacob Faibussowitsch PetscCall(DMTSGetIFunction(dm, &ifunction, NULL)); 637d763cef2SBarry Smith 6383c633725SBarry Smith PetscCheck(rhsfunction || ifunction, PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "Must call TSSetRHSFunction() and / or TSSetIFunction()"); 639d763cef2SBarry Smith 64024989b8cSPeter Brune if (rhsfunction) { 6419566063dSJacob Faibussowitsch PetscCall(PetscLogEventBegin(TS_FunctionEval, ts, U, y, 0)); 6429566063dSJacob Faibussowitsch PetscCall(VecLockReadPush(U)); 643792fecdfSBarry Smith PetscCallBack("TS callback right-hand-side", (*rhsfunction)(ts, t, U, y, ctx)); 6449566063dSJacob Faibussowitsch PetscCall(VecLockReadPop(U)); 645a6ab3590SBarry Smith ts->rhsfuncs++; 6469566063dSJacob Faibussowitsch PetscCall(PetscLogEventEnd(TS_FunctionEval, ts, U, y, 0)); 6471e66621cSBarry Smith } else PetscCall(VecZeroEntries(y)); 6483ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 649d763cef2SBarry Smith } 650d763cef2SBarry Smith 651ef20d060SBarry Smith /*@ 652ef20d060SBarry Smith TSComputeSolutionFunction - Evaluates the solution function. 653ef20d060SBarry Smith 654c3339decSBarry Smith Collective 655ef20d060SBarry Smith 656ef20d060SBarry Smith Input Parameters: 657bcf0153eSBarry Smith + ts - the `TS` context 658ef20d060SBarry Smith - t - current time 659ef20d060SBarry Smith 660ef20d060SBarry Smith Output Parameter: 6610910c330SBarry Smith . U - the solution 662ef20d060SBarry Smith 663ef20d060SBarry Smith Level: developer 664ef20d060SBarry Smith 665bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetSolutionFunction()`, `TSSetRHSFunction()`, `TSComputeIFunction()` 666ef20d060SBarry Smith @*/ 667d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeSolutionFunction(TS ts, PetscReal t, Vec U) 668d71ae5a4SJacob Faibussowitsch { 669ef20d060SBarry Smith TSSolutionFunction solutionfunction; 670ef20d060SBarry Smith void *ctx; 671ef20d060SBarry Smith DM dm; 672ef20d060SBarry Smith 673ef20d060SBarry Smith PetscFunctionBegin; 674ef20d060SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 6750910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 6769566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 6779566063dSJacob Faibussowitsch PetscCall(DMTSGetSolutionFunction(dm, &solutionfunction, &ctx)); 678792fecdfSBarry Smith if (solutionfunction) PetscCallBack("TS callback solution", (*solutionfunction)(ts, t, U, ctx)); 6793ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 680ef20d060SBarry Smith } 6819b7cd975SBarry Smith /*@ 6829b7cd975SBarry Smith TSComputeForcingFunction - Evaluates the forcing function. 6839b7cd975SBarry Smith 684c3339decSBarry Smith Collective 6859b7cd975SBarry Smith 6869b7cd975SBarry Smith Input Parameters: 687bcf0153eSBarry Smith + ts - the `TS` context 6889b7cd975SBarry Smith - t - current time 6899b7cd975SBarry Smith 6909b7cd975SBarry Smith Output Parameter: 6919b7cd975SBarry Smith . U - the function value 6929b7cd975SBarry Smith 6939b7cd975SBarry Smith Level: developer 6949b7cd975SBarry Smith 695bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetSolutionFunction()`, `TSSetRHSFunction()`, `TSComputeIFunction()` 6969b7cd975SBarry Smith @*/ 697d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeForcingFunction(TS ts, PetscReal t, Vec U) 698d71ae5a4SJacob Faibussowitsch { 6999b7cd975SBarry Smith void *ctx; 7009b7cd975SBarry Smith DM dm; 7015f80ce2aSJacob Faibussowitsch TSForcingFunction forcing; 7029b7cd975SBarry Smith 7039b7cd975SBarry Smith PetscFunctionBegin; 7049b7cd975SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 7059b7cd975SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 7069566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 7079566063dSJacob Faibussowitsch PetscCall(DMTSGetForcingFunction(dm, &forcing, &ctx)); 7089b7cd975SBarry Smith 709792fecdfSBarry Smith if (forcing) PetscCallBack("TS callback forcing function", (*forcing)(ts, t, U, ctx)); 7103ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 7119b7cd975SBarry Smith } 712ef20d060SBarry Smith 713d71ae5a4SJacob Faibussowitsch static PetscErrorCode TSGetRHSVec_Private(TS ts, Vec *Frhs) 714d71ae5a4SJacob Faibussowitsch { 7152dd45cf8SJed Brown Vec F; 716214bc6a2SJed Brown 717214bc6a2SJed Brown PetscFunctionBegin; 7180298fd71SBarry Smith *Frhs = NULL; 7199566063dSJacob Faibussowitsch PetscCall(TSGetIFunction(ts, &F, NULL, NULL)); 7201e66621cSBarry Smith if (!ts->Frhs) PetscCall(VecDuplicate(F, &ts->Frhs)); 721214bc6a2SJed Brown *Frhs = ts->Frhs; 7223ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 723214bc6a2SJed Brown } 724214bc6a2SJed Brown 725d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetRHSMats_Private(TS ts, Mat *Arhs, Mat *Brhs) 726d71ae5a4SJacob Faibussowitsch { 727214bc6a2SJed Brown Mat A, B; 72841a1d4d2SBarry Smith TSIJacobian ijacobian; 729214bc6a2SJed Brown 730214bc6a2SJed Brown PetscFunctionBegin; 731c0cd0301SJed Brown if (Arhs) *Arhs = NULL; 732c0cd0301SJed Brown if (Brhs) *Brhs = NULL; 7339566063dSJacob Faibussowitsch PetscCall(TSGetIJacobian(ts, &A, &B, &ijacobian, NULL)); 734214bc6a2SJed Brown if (Arhs) { 735214bc6a2SJed Brown if (!ts->Arhs) { 73641a1d4d2SBarry Smith if (ijacobian) { 7379566063dSJacob Faibussowitsch PetscCall(MatDuplicate(A, MAT_DO_NOT_COPY_VALUES, &ts->Arhs)); 7389566063dSJacob Faibussowitsch PetscCall(TSSetMatStructure(ts, SAME_NONZERO_PATTERN)); 73941a1d4d2SBarry Smith } else { 74041a1d4d2SBarry Smith ts->Arhs = A; 7419566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)A)); 74241a1d4d2SBarry Smith } 7433565c898SBarry Smith } else { 7443565c898SBarry Smith PetscBool flg; 7459566063dSJacob Faibussowitsch PetscCall(SNESGetUseMatrixFree(ts->snes, NULL, &flg)); 7463565c898SBarry Smith /* Handle case where user provided only RHSJacobian and used -snes_mf_operator */ 7473565c898SBarry Smith if (flg && !ijacobian && ts->Arhs == ts->Brhs) { 7489566063dSJacob Faibussowitsch PetscCall(PetscObjectDereference((PetscObject)ts->Arhs)); 7493565c898SBarry Smith ts->Arhs = A; 7509566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)A)); 7513565c898SBarry Smith } 752214bc6a2SJed Brown } 753214bc6a2SJed Brown *Arhs = ts->Arhs; 754214bc6a2SJed Brown } 755214bc6a2SJed Brown if (Brhs) { 756214bc6a2SJed Brown if (!ts->Brhs) { 757bdb70873SJed Brown if (A != B) { 75841a1d4d2SBarry Smith if (ijacobian) { 7599566063dSJacob Faibussowitsch PetscCall(MatDuplicate(B, MAT_DO_NOT_COPY_VALUES, &ts->Brhs)); 760bdb70873SJed Brown } else { 76141a1d4d2SBarry Smith ts->Brhs = B; 7629566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)B)); 76341a1d4d2SBarry Smith } 76441a1d4d2SBarry Smith } else { 7659566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)ts->Arhs)); 76651699248SLisandro Dalcin ts->Brhs = ts->Arhs; 767bdb70873SJed Brown } 768214bc6a2SJed Brown } 769214bc6a2SJed Brown *Brhs = ts->Brhs; 770214bc6a2SJed Brown } 7713ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 772214bc6a2SJed Brown } 773214bc6a2SJed Brown 774316643e7SJed Brown /*@ 775195e9b02SBarry Smith TSComputeIFunction - Evaluates the DAE residual written in the implicit form F(t,U,Udot)=0 776316643e7SJed Brown 777c3339decSBarry Smith Collective 778316643e7SJed Brown 779316643e7SJed Brown Input Parameters: 780bcf0153eSBarry Smith + ts - the `TS` context 781316643e7SJed Brown . t - current time 7820910c330SBarry Smith . U - state vector 7830910c330SBarry Smith . Udot - time derivative of state vector 784bcf0153eSBarry Smith - imex - flag indicates if the method is `TSIMEX` so that the RHSFunction should be kept separate 785316643e7SJed Brown 786316643e7SJed Brown Output Parameter: 787316643e7SJed Brown . Y - right hand side 788316643e7SJed Brown 789bcf0153eSBarry Smith Level: developer 790bcf0153eSBarry Smith 791316643e7SJed Brown Note: 792316643e7SJed Brown Most users should not need to explicitly call this routine, as it 793316643e7SJed Brown is used internally within the nonlinear solvers. 794316643e7SJed Brown 795316643e7SJed Brown If the user did did not write their equations in implicit form, this 796316643e7SJed Brown function recasts them in implicit form. 797316643e7SJed Brown 798bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetIFunction()`, `TSComputeRHSFunction()` 799316643e7SJed Brown @*/ 800d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIFunction(TS ts, PetscReal t, Vec U, Vec Udot, Vec Y, PetscBool imex) 801d71ae5a4SJacob Faibussowitsch { 80224989b8cSPeter Brune TSIFunction ifunction; 80324989b8cSPeter Brune TSRHSFunction rhsfunction; 80424989b8cSPeter Brune void *ctx; 80524989b8cSPeter Brune DM dm; 806316643e7SJed Brown 807316643e7SJed Brown PetscFunctionBegin; 8080700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 8090910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 8100910c330SBarry Smith PetscValidHeaderSpecific(Udot, VEC_CLASSID, 4); 8110700a824SBarry Smith PetscValidHeaderSpecific(Y, VEC_CLASSID, 5); 812316643e7SJed Brown 8139566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 8149566063dSJacob Faibussowitsch PetscCall(DMTSGetIFunction(dm, &ifunction, &ctx)); 8159566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, NULL)); 81624989b8cSPeter Brune 8173c633725SBarry Smith PetscCheck(rhsfunction || ifunction, PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "Must call TSSetRHSFunction() and / or TSSetIFunction()"); 818d90be118SSean Farley 8199566063dSJacob Faibussowitsch PetscCall(PetscLogEventBegin(TS_FunctionEval, ts, U, Udot, Y)); 82024989b8cSPeter Brune if (ifunction) { 821792fecdfSBarry Smith PetscCallBack("TS callback implicit function", (*ifunction)(ts, t, U, Udot, Y, ctx)); 822a6ab3590SBarry Smith ts->ifuncs++; 823214bc6a2SJed Brown } 824214bc6a2SJed Brown if (imex) { 8251e66621cSBarry Smith if (!ifunction) PetscCall(VecCopy(Udot, Y)); 82624989b8cSPeter Brune } else if (rhsfunction) { 82724989b8cSPeter Brune if (ifunction) { 828214bc6a2SJed Brown Vec Frhs; 8299566063dSJacob Faibussowitsch PetscCall(TSGetRHSVec_Private(ts, &Frhs)); 8309566063dSJacob Faibussowitsch PetscCall(TSComputeRHSFunction(ts, t, U, Frhs)); 8319566063dSJacob Faibussowitsch PetscCall(VecAXPY(Y, -1, Frhs)); 8322dd45cf8SJed Brown } else { 8339566063dSJacob Faibussowitsch PetscCall(TSComputeRHSFunction(ts, t, U, Y)); 8349566063dSJacob Faibussowitsch PetscCall(VecAYPX(Y, -1, Udot)); 835316643e7SJed Brown } 8364a6899ffSJed Brown } 8379566063dSJacob Faibussowitsch PetscCall(PetscLogEventEnd(TS_FunctionEval, ts, U, Udot, Y)); 8383ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 839316643e7SJed Brown } 840316643e7SJed Brown 841cfa8a9a2SHong Zhang /* 842195e9b02SBarry Smith TSRecoverRHSJacobian - Recover the Jacobian matrix so that one can call `TSComputeRHSJacobian()` on it. 843cfa8a9a2SHong Zhang 844cfa8a9a2SHong Zhang Note: 845195e9b02SBarry Smith This routine is needed when one switches from `TSComputeIJacobian()` to `TSComputeRHSJacobian()` because the Jacobian matrix may be shifted or scaled in `TSComputeIJacobian()`. 846cfa8a9a2SHong Zhang 847cfa8a9a2SHong Zhang */ 848d71ae5a4SJacob Faibussowitsch static PetscErrorCode TSRecoverRHSJacobian(TS ts, Mat A, Mat B) 849d71ae5a4SJacob Faibussowitsch { 850cfa8a9a2SHong Zhang PetscFunctionBegin; 851cfa8a9a2SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 8523c633725SBarry Smith PetscCheck(A == ts->Arhs, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Invalid Amat"); 8533c633725SBarry Smith PetscCheck(B == ts->Brhs, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Invalid Bmat"); 854cfa8a9a2SHong Zhang 8551baa6e33SBarry Smith if (ts->rhsjacobian.shift) PetscCall(MatShift(A, -ts->rhsjacobian.shift)); 85648a46eb9SPierre Jolivet if (ts->rhsjacobian.scale == -1.) PetscCall(MatScale(A, -1)); 857cfa8a9a2SHong Zhang if (B && B == ts->Brhs && A != B) { 8581baa6e33SBarry Smith if (ts->rhsjacobian.shift) PetscCall(MatShift(B, -ts->rhsjacobian.shift)); 8591e66621cSBarry Smith if (ts->rhsjacobian.scale == -1.) PetscCall(MatScale(B, -1)); 860cfa8a9a2SHong Zhang } 861cfa8a9a2SHong Zhang ts->rhsjacobian.shift = 0; 862cfa8a9a2SHong Zhang ts->rhsjacobian.scale = 1.; 8633ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 864cfa8a9a2SHong Zhang } 865cfa8a9a2SHong Zhang 866316643e7SJed Brown /*@ 867316643e7SJed Brown TSComputeIJacobian - Evaluates the Jacobian of the DAE 868316643e7SJed Brown 869c3339decSBarry Smith Collective 870316643e7SJed Brown 871316643e7SJed Brown Input 872316643e7SJed Brown Input Parameters: 873bcf0153eSBarry Smith + ts - the `TS` context 874316643e7SJed Brown . t - current timestep 8750910c330SBarry Smith . U - state vector 8760910c330SBarry Smith . Udot - time derivative of state vector 877214bc6a2SJed Brown . shift - shift to apply, see note below 878bcf0153eSBarry Smith - imex - flag indicates if the method is `TSIMEX` so that the RHSJacobian should be kept separate 879316643e7SJed Brown 880316643e7SJed Brown Output Parameters: 881316643e7SJed Brown + A - Jacobian matrix 882195e9b02SBarry Smith - B - matrix from which the preconditioner is constructed; often the same as `A` 883316643e7SJed Brown 884bcf0153eSBarry Smith Level: developer 885bcf0153eSBarry Smith 886316643e7SJed Brown Notes: 8870910c330SBarry Smith If F(t,U,Udot)=0 is the DAE, the required Jacobian is 888195e9b02SBarry Smith .vb 8890910c330SBarry Smith dF/dU + shift*dF/dUdot 890195e9b02SBarry Smith .ve 891316643e7SJed Brown Most users should not need to explicitly call this routine, as it 892316643e7SJed Brown is used internally within the nonlinear solvers. 893316643e7SJed Brown 894bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetIJacobian()` 89563495f91SJed Brown @*/ 896d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIJacobian(TS ts, PetscReal t, Vec U, Vec Udot, PetscReal shift, Mat A, Mat B, PetscBool imex) 897d71ae5a4SJacob Faibussowitsch { 89824989b8cSPeter Brune TSIJacobian ijacobian; 89924989b8cSPeter Brune TSRHSJacobian rhsjacobian; 90024989b8cSPeter Brune DM dm; 90124989b8cSPeter Brune void *ctx; 902316643e7SJed Brown 903316643e7SJed Brown PetscFunctionBegin; 9040700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 9050910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 9060910c330SBarry Smith PetscValidHeaderSpecific(Udot, VEC_CLASSID, 4); 907316643e7SJed Brown PetscValidPointer(A, 6); 90894ab13aaSBarry Smith PetscValidHeaderSpecific(A, MAT_CLASSID, 6); 909316643e7SJed Brown PetscValidPointer(B, 7); 91094ab13aaSBarry Smith PetscValidHeaderSpecific(B, MAT_CLASSID, 7); 91124989b8cSPeter Brune 9129566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 9139566063dSJacob Faibussowitsch PetscCall(DMTSGetIJacobian(dm, &ijacobian, &ctx)); 9149566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, &rhsjacobian, NULL)); 91524989b8cSPeter Brune 9163c633725SBarry Smith PetscCheck(rhsjacobian || ijacobian, PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "Must call TSSetRHSJacobian() and / or TSSetIJacobian()"); 917316643e7SJed Brown 9189566063dSJacob Faibussowitsch PetscCall(PetscLogEventBegin(TS_JacobianEval, ts, U, A, B)); 91924989b8cSPeter Brune if (ijacobian) { 920792fecdfSBarry Smith PetscCallBack("TS callback implicit Jacobian", (*ijacobian)(ts, t, U, Udot, shift, A, B, ctx)); 921a6ab3590SBarry Smith ts->ijacs++; 9224a6899ffSJed Brown } 923214bc6a2SJed Brown if (imex) { 924b5abc632SBarry Smith if (!ijacobian) { /* system was written as Udot = G(t,U) */ 9254c26be97Sstefano_zampini PetscBool assembled; 926971015bcSStefano Zampini if (rhsjacobian) { 927971015bcSStefano Zampini Mat Arhs = NULL; 9289566063dSJacob Faibussowitsch PetscCall(TSGetRHSMats_Private(ts, &Arhs, NULL)); 929971015bcSStefano Zampini if (A == Arhs) { 9303c633725SBarry Smith PetscCheck(rhsjacobian != TSComputeRHSJacobianConstant, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Unsupported operation! cannot use TSComputeRHSJacobianConstant"); /* there is no way to reconstruct shift*M-J since J cannot be reevaluated */ 931971015bcSStefano Zampini ts->rhsjacobian.time = PETSC_MIN_REAL; 932971015bcSStefano Zampini } 933971015bcSStefano Zampini } 9349566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(A)); 9359566063dSJacob Faibussowitsch PetscCall(MatAssembled(A, &assembled)); 9364c26be97Sstefano_zampini if (!assembled) { 9379566063dSJacob Faibussowitsch PetscCall(MatAssemblyBegin(A, MAT_FINAL_ASSEMBLY)); 9389566063dSJacob Faibussowitsch PetscCall(MatAssemblyEnd(A, MAT_FINAL_ASSEMBLY)); 9394c26be97Sstefano_zampini } 9409566063dSJacob Faibussowitsch PetscCall(MatShift(A, shift)); 94194ab13aaSBarry Smith if (A != B) { 9429566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(B)); 9439566063dSJacob Faibussowitsch PetscCall(MatAssembled(B, &assembled)); 9444c26be97Sstefano_zampini if (!assembled) { 9459566063dSJacob Faibussowitsch PetscCall(MatAssemblyBegin(B, MAT_FINAL_ASSEMBLY)); 9469566063dSJacob Faibussowitsch PetscCall(MatAssemblyEnd(B, MAT_FINAL_ASSEMBLY)); 9474c26be97Sstefano_zampini } 9489566063dSJacob Faibussowitsch PetscCall(MatShift(B, shift)); 949214bc6a2SJed Brown } 950214bc6a2SJed Brown } 951214bc6a2SJed Brown } else { 952e1244c69SJed Brown Mat Arhs = NULL, Brhs = NULL; 9531e66621cSBarry Smith 9541e66621cSBarry Smith /* RHSJacobian needs to be converted to part of IJacobian if exists */ 9551e66621cSBarry Smith if (rhsjacobian) PetscCall(TSGetRHSMats_Private(ts, &Arhs, &Brhs)); 956e8b1e424SHong Zhang if (Arhs == A) { /* No IJacobian matrix, so we only have the RHS matrix */ 957e8b1e424SHong Zhang PetscObjectState Ustate; 958e8b1e424SHong Zhang PetscObjectId Uid; 959e8b1e424SHong Zhang TSRHSFunction rhsfunction; 960e8b1e424SHong Zhang 9619566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, NULL)); 9629566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &Ustate)); 9639566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &Uid)); 9649371c9d4SSatish Balay if ((rhsjacobian == TSComputeRHSJacobianConstant || (ts->rhsjacobian.time == t && (ts->problem_type == TS_LINEAR || (ts->rhsjacobian.Xid == Uid && ts->rhsjacobian.Xstate == Ustate)) && rhsfunction != TSComputeRHSFunctionLinear)) && 9659371c9d4SSatish Balay ts->rhsjacobian.scale == -1.) { /* No need to recompute RHSJacobian */ 9669566063dSJacob Faibussowitsch PetscCall(MatShift(A, shift - ts->rhsjacobian.shift)); /* revert the old shift and add the new shift with a single call to MatShift */ 9671e66621cSBarry Smith if (A != B) PetscCall(MatShift(B, shift - ts->rhsjacobian.shift)); 968e8b1e424SHong Zhang } else { 9693565c898SBarry Smith PetscBool flg; 970e8b1e424SHong Zhang 971e8b1e424SHong Zhang if (ts->rhsjacobian.reuse) { /* Undo the damage */ 972e8b1e424SHong Zhang /* MatScale has a short path for this case. 973e8b1e424SHong Zhang However, this code path is taken the first time TSComputeRHSJacobian is called 974e8b1e424SHong Zhang and the matrices have not been assembled yet */ 9759566063dSJacob Faibussowitsch PetscCall(TSRecoverRHSJacobian(ts, A, B)); 976e8b1e424SHong Zhang } 9779566063dSJacob Faibussowitsch PetscCall(TSComputeRHSJacobian(ts, t, U, A, B)); 9789566063dSJacob Faibussowitsch PetscCall(SNESGetUseMatrixFree(ts->snes, NULL, &flg)); 9793565c898SBarry Smith /* since -snes_mf_operator uses the full SNES function it does not need to be shifted or scaled here */ 9803565c898SBarry Smith if (!flg) { 9819566063dSJacob Faibussowitsch PetscCall(MatScale(A, -1)); 9829566063dSJacob Faibussowitsch PetscCall(MatShift(A, shift)); 9833565c898SBarry Smith } 98494ab13aaSBarry Smith if (A != B) { 9859566063dSJacob Faibussowitsch PetscCall(MatScale(B, -1)); 9869566063dSJacob Faibussowitsch PetscCall(MatShift(B, shift)); 987316643e7SJed Brown } 988e8b1e424SHong Zhang } 989e8b1e424SHong Zhang ts->rhsjacobian.scale = -1; 990e8b1e424SHong Zhang ts->rhsjacobian.shift = shift; 991d60b7d5cSBarry Smith } else if (Arhs) { /* Both IJacobian and RHSJacobian */ 992e1244c69SJed Brown if (!ijacobian) { /* No IJacobian provided, but we have a separate RHS matrix */ 9939566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(A)); 9949566063dSJacob Faibussowitsch PetscCall(MatShift(A, shift)); 99594ab13aaSBarry Smith if (A != B) { 9969566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(B)); 9979566063dSJacob Faibussowitsch PetscCall(MatShift(B, shift)); 998214bc6a2SJed Brown } 999316643e7SJed Brown } 10009566063dSJacob Faibussowitsch PetscCall(TSComputeRHSJacobian(ts, t, U, Arhs, Brhs)); 10019566063dSJacob Faibussowitsch PetscCall(MatAXPY(A, -1, Arhs, ts->axpy_pattern)); 10021e66621cSBarry Smith if (A != B) PetscCall(MatAXPY(B, -1, Brhs, ts->axpy_pattern)); 1003316643e7SJed Brown } 1004316643e7SJed Brown } 10059566063dSJacob Faibussowitsch PetscCall(PetscLogEventEnd(TS_JacobianEval, ts, U, A, B)); 10063ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1007316643e7SJed Brown } 1008316643e7SJed Brown 1009d763cef2SBarry Smith /*@C 1010d763cef2SBarry Smith TSSetRHSFunction - Sets the routine for evaluating the function, 1011b5abc632SBarry Smith where U_t = G(t,u). 1012d763cef2SBarry Smith 1013c3339decSBarry Smith Logically Collective 1014d763cef2SBarry Smith 1015d763cef2SBarry Smith Input Parameters: 1016bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1017195e9b02SBarry Smith . r - vector to put the computed right hand side (or `NULL` to have it created) 1018d763cef2SBarry Smith . f - routine for evaluating the right-hand-side function 1019195e9b02SBarry Smith - ctx - [optional] user-defined context for private data for the function evaluation routine (may be `NULL`) 1020d763cef2SBarry Smith 102120f4b53cSBarry Smith Calling sequence of `f`: 102220f4b53cSBarry Smith $ PetscErrorCode f(TS ts, PetscReal t, Vec u, Vec F, void *ctx) 1023a96d6ef6SBarry Smith + ts - timestep context 1024a96d6ef6SBarry Smith . t - current timestep 1025d763cef2SBarry Smith . u - input vector 1026d763cef2SBarry Smith . F - function vector 1027d763cef2SBarry Smith - ctx - [optional] user-defined function context 1028d763cef2SBarry Smith 1029d763cef2SBarry Smith Level: beginner 1030d763cef2SBarry Smith 1031bcf0153eSBarry Smith Note: 1032bcf0153eSBarry Smith You must call this function or `TSSetIFunction()` to define your ODE. You cannot use this function when solving a DAE. 10332bbac0d3SBarry Smith 1034bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSJacobian()`, `TSSetIJacobian()`, `TSSetIFunction()` 1035d763cef2SBarry Smith @*/ 1036d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetRHSFunction(TS ts, Vec r, PetscErrorCode (*f)(TS, PetscReal, Vec, Vec, void *), void *ctx) 1037d71ae5a4SJacob Faibussowitsch { 1038089b2837SJed Brown SNES snes; 10390298fd71SBarry Smith Vec ralloc = NULL; 104024989b8cSPeter Brune DM dm; 1041d763cef2SBarry Smith 1042089b2837SJed Brown PetscFunctionBegin; 10430700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1044ca94891dSJed Brown if (r) PetscValidHeaderSpecific(r, VEC_CLASSID, 2); 104524989b8cSPeter Brune 10469566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 10479566063dSJacob Faibussowitsch PetscCall(DMTSSetRHSFunction(dm, f, ctx)); 10489566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 1049e856ceecSJed Brown if (!r && !ts->dm && ts->vec_sol) { 10509566063dSJacob Faibussowitsch PetscCall(VecDuplicate(ts->vec_sol, &ralloc)); 1051e856ceecSJed Brown r = ralloc; 1052e856ceecSJed Brown } 10539566063dSJacob Faibussowitsch PetscCall(SNESSetFunction(snes, r, SNESTSFormFunction, ts)); 10549566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ralloc)); 10553ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1056d763cef2SBarry Smith } 1057d763cef2SBarry Smith 1058ef20d060SBarry Smith /*@C 1059abd5a294SJed Brown TSSetSolutionFunction - Provide a function that computes the solution of the ODE or DAE 1060ef20d060SBarry Smith 1061c3339decSBarry Smith Logically Collective 1062ef20d060SBarry Smith 1063ef20d060SBarry Smith Input Parameters: 1064bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1065ef20d060SBarry Smith . f - routine for evaluating the solution 1066ef20d060SBarry Smith - ctx - [optional] user-defined context for private data for the 1067195e9b02SBarry Smith function evaluation routine (may be `NULL`) 1068ef20d060SBarry Smith 106920f4b53cSBarry Smith Calling sequence of `f`: 107020f4b53cSBarry Smith $ PetscErrorCode f(TS ts, PetscReal t, Vec u, void *ctx) 107120f4b53cSBarry Smith + ts - the integrator context 107220f4b53cSBarry Smith . t - current timestep 1073ef20d060SBarry Smith . u - output vector 1074ef20d060SBarry Smith - ctx - [optional] user-defined function context 1075ef20d060SBarry Smith 1076bcf0153eSBarry Smith Options Database Keys: 1077bcf0153eSBarry Smith + -ts_monitor_lg_error - create a graphical monitor of error history, requires user to have provided `TSSetSolutionFunction()` 1078bcf0153eSBarry Smith - -ts_monitor_draw_error - Monitor error graphically, requires user to have provided `TSSetSolutionFunction()` 1079bcf0153eSBarry Smith 1080bcf0153eSBarry Smith Level: intermediate 10810ed3bfb6SBarry Smith 1082abd5a294SJed Brown Notes: 1083abd5a294SJed Brown This routine is used for testing accuracy of time integration schemes when you already know the solution. 1084abd5a294SJed Brown If analytic solutions are not known for your system, consider using the Method of Manufactured Solutions to 1085abd5a294SJed Brown create closed-form solutions with non-physical forcing terms. 1086abd5a294SJed Brown 1087bcf0153eSBarry Smith For low-dimensional problems solved in serial, such as small discrete systems, `TSMonitorLGError()` can be used to monitor the error history. 1088abd5a294SJed Brown 1089bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSJacobian()`, `TSSetIJacobian()`, `TSComputeSolutionFunction()`, `TSSetForcingFunction()`, `TSSetSolution()`, `TSGetSolution()`, `TSMonitorLGError()`, `TSMonitorDrawError()` 1090ef20d060SBarry Smith @*/ 1091d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetSolutionFunction(TS ts, PetscErrorCode (*f)(TS, PetscReal, Vec, void *), void *ctx) 1092d71ae5a4SJacob Faibussowitsch { 1093ef20d060SBarry Smith DM dm; 1094ef20d060SBarry Smith 1095ef20d060SBarry Smith PetscFunctionBegin; 1096ef20d060SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 10979566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 10989566063dSJacob Faibussowitsch PetscCall(DMTSSetSolutionFunction(dm, f, ctx)); 10993ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1100ef20d060SBarry Smith } 1101ef20d060SBarry Smith 11029b7cd975SBarry Smith /*@C 11039b7cd975SBarry Smith TSSetForcingFunction - Provide a function that computes a forcing term for a ODE or PDE 11049b7cd975SBarry Smith 1105c3339decSBarry Smith Logically Collective 11069b7cd975SBarry Smith 11079b7cd975SBarry Smith Input Parameters: 1108bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1109e162b725SBarry Smith . func - routine for evaluating the forcing function 11109b7cd975SBarry Smith - ctx - [optional] user-defined context for private data for the 1111195e9b02SBarry Smith function evaluation routine (may be `NULL`) 11129b7cd975SBarry Smith 11139b7cd975SBarry Smith Calling sequence of func: 111420f4b53cSBarry Smith $ PetscErrorCode func(TS ts, PetscReal t, Vec f, void *ctx) 111520f4b53cSBarry Smith + ts - the integrator context 111620f4b53cSBarry Smith . t - current timestep 1117e162b725SBarry Smith . f - output vector 11189b7cd975SBarry Smith - ctx - [optional] user-defined function context 11199b7cd975SBarry Smith 1120bcf0153eSBarry Smith Level: intermediate 1121bcf0153eSBarry Smith 11229b7cd975SBarry Smith Notes: 11239b7cd975SBarry Smith This routine is useful for testing accuracy of time integration schemes when using the Method of Manufactured Solutions to 1124e162b725SBarry Smith create closed-form solutions with a non-physical forcing term. It allows you to use the Method of Manufactored Solution without directly editing the 1125e162b725SBarry Smith definition of the problem you are solving and hence possibly introducing bugs. 1126e162b725SBarry Smith 1127e162b725SBarry Smith This replaces the ODE F(u,u_t,t) = 0 the TS is solving with F(u,u_t,t) - func(t) = 0 1128e162b725SBarry Smith 1129e162b725SBarry Smith This forcing function does not depend on the solution to the equations, it can only depend on spatial location, time, and possibly parameters, the 1130e162b725SBarry Smith parameters can be passed in the ctx variable. 11319b7cd975SBarry Smith 1132bcf0153eSBarry Smith For low-dimensional problems solved in serial, such as small discrete systems, `TSMonitorLGError()` can be used to monitor the error history. 11339b7cd975SBarry Smith 1134bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSJacobian()`, `TSSetIJacobian()`, `TSComputeSolutionFunction()`, `TSSetSolutionFunction()` 11359b7cd975SBarry Smith @*/ 1136d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetForcingFunction(TS ts, TSForcingFunction func, void *ctx) 1137d71ae5a4SJacob Faibussowitsch { 11389b7cd975SBarry Smith DM dm; 11399b7cd975SBarry Smith 11409b7cd975SBarry Smith PetscFunctionBegin; 11419b7cd975SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 11429566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 11439566063dSJacob Faibussowitsch PetscCall(DMTSSetForcingFunction(dm, func, ctx)); 11443ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 11459b7cd975SBarry Smith } 11469b7cd975SBarry Smith 1147d763cef2SBarry Smith /*@C 1148f7ab8db6SBarry Smith TSSetRHSJacobian - Sets the function to compute the Jacobian of G, 1149b5abc632SBarry Smith where U_t = G(U,t), as well as the location to store the matrix. 1150d763cef2SBarry Smith 1151c3339decSBarry Smith Logically Collective 1152d763cef2SBarry Smith 1153d763cef2SBarry Smith Input Parameters: 1154bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1155195e9b02SBarry Smith . Amat - (approximate) location to store Jacobian matrix entries computed by `f` 1156195e9b02SBarry Smith . Pmat - matrix from which preconditioner is to be constructed (usually the same as `Amat`) 1157d763cef2SBarry Smith . f - the Jacobian evaluation routine 1158195e9b02SBarry Smith - ctx - [optional] user-defined context for private data for the Jacobian evaluation routine (may be `NULL`) 1159d763cef2SBarry Smith 116020f4b53cSBarry Smith Calling sequence of `f`: 116120f4b53cSBarry Smith $ PetscErrorCode f(TS ts, PetscReal t, Vec u, Mat A, Mat B, void *ctx) 116220f4b53cSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 116320f4b53cSBarry Smith . t - current timestep 1164d763cef2SBarry Smith . u - input vector 1165e5d3d808SBarry Smith . Amat - (approximate) Jacobian matrix 1166195e9b02SBarry Smith . Pmat - matrix from which preconditioner is to be constructed (usually the same as `Amat`) 1167d763cef2SBarry Smith - ctx - [optional] user-defined context for matrix evaluation routine 1168d763cef2SBarry Smith 1169bcf0153eSBarry Smith Level: beginner 1170bcf0153eSBarry Smith 11716cd88445SBarry Smith Notes: 11726cd88445SBarry Smith You must set all the diagonal entries of the matrices, if they are zero you must still set them with a zero value 11736cd88445SBarry Smith 1174bcf0153eSBarry Smith The `TS` solver may modify the nonzero structure and the entries of the matrices Amat and Pmat between the calls to f() 1175ca5f011dSBarry Smith You should not assume the values are the same in the next call to f() as you set them in the previous call. 1176d763cef2SBarry Smith 1177bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `SNESComputeJacobianDefaultColor()`, `TSSetRHSFunction()`, `TSRHSJacobianSetReuse()`, `TSSetIJacobian()` 1178d763cef2SBarry Smith @*/ 1179d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetRHSJacobian(TS ts, Mat Amat, Mat Pmat, TSRHSJacobian f, void *ctx) 1180d71ae5a4SJacob Faibussowitsch { 1181089b2837SJed Brown SNES snes; 118224989b8cSPeter Brune DM dm; 118324989b8cSPeter Brune TSIJacobian ijacobian; 1184277b19d0SLisandro Dalcin 1185d763cef2SBarry Smith PetscFunctionBegin; 11860700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1187e5d3d808SBarry Smith if (Amat) PetscValidHeaderSpecific(Amat, MAT_CLASSID, 2); 1188e5d3d808SBarry Smith if (Pmat) PetscValidHeaderSpecific(Pmat, MAT_CLASSID, 3); 1189e5d3d808SBarry Smith if (Amat) PetscCheckSameComm(ts, 1, Amat, 2); 1190e5d3d808SBarry Smith if (Pmat) PetscCheckSameComm(ts, 1, Pmat, 3); 1191d763cef2SBarry Smith 11929566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 11939566063dSJacob Faibussowitsch PetscCall(DMTSSetRHSJacobian(dm, f, ctx)); 11949566063dSJacob Faibussowitsch PetscCall(DMTSGetIJacobian(dm, &ijacobian, NULL)); 11959566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 11961e66621cSBarry Smith if (!ijacobian) PetscCall(SNESSetJacobian(snes, Amat, Pmat, SNESTSFormJacobian, ts)); 1197e5d3d808SBarry Smith if (Amat) { 11989566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)Amat)); 11999566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Arhs)); 1200e5d3d808SBarry Smith ts->Arhs = Amat; 12010e4ef248SJed Brown } 1202e5d3d808SBarry Smith if (Pmat) { 12039566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)Pmat)); 12049566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Brhs)); 1205e5d3d808SBarry Smith ts->Brhs = Pmat; 12060e4ef248SJed Brown } 12073ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1208d763cef2SBarry Smith } 1209d763cef2SBarry Smith 1210316643e7SJed Brown /*@C 1211b5abc632SBarry Smith TSSetIFunction - Set the function to compute F(t,U,U_t) where F() = 0 is the DAE to be solved. 1212316643e7SJed Brown 1213c3339decSBarry Smith Logically Collective 1214316643e7SJed Brown 1215316643e7SJed Brown Input Parameters: 1216bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1217195e9b02SBarry Smith . r - vector to hold the residual (or `NULL` to have it created internally) 1218316643e7SJed Brown . f - the function evaluation routine 1219195e9b02SBarry Smith - ctx - user-defined context for private data for the function evaluation routine (may be `NULL`) 1220316643e7SJed Brown 122120f4b53cSBarry Smith Calling sequence of `f`: 122220f4b53cSBarry Smith $ PetscErrorCode f(TS ts, PetscReal t, Vec u, Vec u_t, Vec F, void *ctx) 122320f4b53cSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 122420f4b53cSBarry Smith . t - time at step/stage being solved 1225316643e7SJed Brown . u - state vector 1226316643e7SJed Brown . u_t - time derivative of state vector 1227316643e7SJed Brown . F - function vector 1228316643e7SJed Brown - ctx - [optional] user-defined context for matrix evaluation routine 1229316643e7SJed Brown 1230316643e7SJed Brown Level: beginner 1231316643e7SJed Brown 1232bcf0153eSBarry Smith Note: 1233bcf0153eSBarry Smith The user MUST call either this routine or `TSSetRHSFunction()` to define the ODE. When solving DAEs you must use this function. 1234bcf0153eSBarry Smith 1235bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSJacobian()`, `TSSetRHSFunction()`, `TSSetIJacobian()` 1236316643e7SJed Brown @*/ 1237d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetIFunction(TS ts, Vec r, TSIFunction f, void *ctx) 1238d71ae5a4SJacob Faibussowitsch { 1239089b2837SJed Brown SNES snes; 124051699248SLisandro Dalcin Vec ralloc = NULL; 124124989b8cSPeter Brune DM dm; 1242316643e7SJed Brown 1243316643e7SJed Brown PetscFunctionBegin; 12440700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 124551699248SLisandro Dalcin if (r) PetscValidHeaderSpecific(r, VEC_CLASSID, 2); 124624989b8cSPeter Brune 12479566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 12489566063dSJacob Faibussowitsch PetscCall(DMTSSetIFunction(dm, f, ctx)); 124924989b8cSPeter Brune 12509566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 125151699248SLisandro Dalcin if (!r && !ts->dm && ts->vec_sol) { 12529566063dSJacob Faibussowitsch PetscCall(VecDuplicate(ts->vec_sol, &ralloc)); 125351699248SLisandro Dalcin r = ralloc; 1254e856ceecSJed Brown } 12559566063dSJacob Faibussowitsch PetscCall(SNESSetFunction(snes, r, SNESTSFormFunction, ts)); 12569566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ralloc)); 12573ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1258089b2837SJed Brown } 1259089b2837SJed Brown 1260089b2837SJed Brown /*@C 1261a5b23f4aSJose E. Roman TSGetIFunction - Returns the vector where the implicit residual is stored and the function/context to compute it. 1262089b2837SJed Brown 1263089b2837SJed Brown Not Collective 1264089b2837SJed Brown 1265089b2837SJed Brown Input Parameter: 1266bcf0153eSBarry Smith . ts - the `TS` context 1267089b2837SJed Brown 1268d8d19677SJose E. Roman Output Parameters: 1269195e9b02SBarry Smith + r - vector to hold residual (or `NULL`) 1270195e9b02SBarry Smith . func - the function to compute residual (or `NULL`) 1271195e9b02SBarry Smith - ctx - the function context (or `NULL`) 1272089b2837SJed Brown 1273089b2837SJed Brown Level: advanced 1274089b2837SJed Brown 1275bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetIFunction()`, `SNESGetFunction()` 1276089b2837SJed Brown @*/ 1277d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetIFunction(TS ts, Vec *r, TSIFunction *func, void **ctx) 1278d71ae5a4SJacob Faibussowitsch { 1279089b2837SJed Brown SNES snes; 128024989b8cSPeter Brune DM dm; 1281089b2837SJed Brown 1282089b2837SJed Brown PetscFunctionBegin; 1283089b2837SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 12849566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 12859566063dSJacob Faibussowitsch PetscCall(SNESGetFunction(snes, r, NULL, NULL)); 12869566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 12879566063dSJacob Faibussowitsch PetscCall(DMTSGetIFunction(dm, func, ctx)); 12883ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1289089b2837SJed Brown } 1290089b2837SJed Brown 1291089b2837SJed Brown /*@C 1292089b2837SJed Brown TSGetRHSFunction - Returns the vector where the right hand side is stored and the function/context to compute it. 1293089b2837SJed Brown 1294089b2837SJed Brown Not Collective 1295089b2837SJed Brown 1296089b2837SJed Brown Input Parameter: 1297bcf0153eSBarry Smith . ts - the `TS` context 1298089b2837SJed Brown 1299d8d19677SJose E. Roman Output Parameters: 1300195e9b02SBarry Smith + r - vector to hold computed right hand side (or `NULL`) 1301195e9b02SBarry Smith . func - the function to compute right hand side (or `NULL`) 1302195e9b02SBarry Smith - ctx - the function context (or `NULL`) 1303089b2837SJed Brown 1304089b2837SJed Brown Level: advanced 1305089b2837SJed Brown 1306bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSFunction()`, `SNESGetFunction()` 1307089b2837SJed Brown @*/ 1308d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetRHSFunction(TS ts, Vec *r, TSRHSFunction *func, void **ctx) 1309d71ae5a4SJacob Faibussowitsch { 1310089b2837SJed Brown SNES snes; 131124989b8cSPeter Brune DM dm; 1312089b2837SJed Brown 1313089b2837SJed Brown PetscFunctionBegin; 1314089b2837SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 13159566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 13169566063dSJacob Faibussowitsch PetscCall(SNESGetFunction(snes, r, NULL, NULL)); 13179566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 13189566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, func, ctx)); 13193ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1320316643e7SJed Brown } 1321316643e7SJed Brown 1322316643e7SJed Brown /*@C 1323a4f0a591SBarry Smith TSSetIJacobian - Set the function to compute the matrix dF/dU + a*dF/dU_t where F(t,U,U_t) is the function 1324bcf0153eSBarry Smith provided with `TSSetIFunction()`. 1325316643e7SJed Brown 1326c3339decSBarry Smith Logically Collective 1327316643e7SJed Brown 1328316643e7SJed Brown Input Parameters: 1329bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1330aaa8cc7dSPierre Jolivet . Amat - (approximate) matrix to store Jacobian entries computed by `f` 1331195e9b02SBarry Smith . Pmat - matrix used to compute preconditioner (usually the same as `Amat`) 1332316643e7SJed Brown . f - the Jacobian evaluation routine 1333195e9b02SBarry Smith - ctx - user-defined context for private data for the Jacobian evaluation routine (may be `NULL`) 1334316643e7SJed Brown 133520f4b53cSBarry Smith Calling sequence of `f`: 133620f4b53cSBarry Smith $ PetscErrorCode f(TS ts, PetscReal t, Vec U, Vec U_t, PetscReal a, Mat Amat, Mat Pmat, void *ctx) 133720f4b53cSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 133820f4b53cSBarry Smith . t - time at step/stage being solved 13391b4a444bSJed Brown . U - state vector 13401b4a444bSJed Brown . U_t - time derivative of state vector 1341316643e7SJed Brown . a - shift 1342e5d3d808SBarry Smith . Amat - (approximate) Jacobian of F(t,U,W+a*U), equivalent to dF/dU + a*dF/dU_t 1343195e9b02SBarry Smith . Pmat - matrix used for constructing preconditioner, usually the same as `Amat` 1344316643e7SJed Brown - ctx - [optional] user-defined context for matrix evaluation routine 1345316643e7SJed Brown 1346bcf0153eSBarry Smith Level: beginner 1347316643e7SJed Brown 1348bcf0153eSBarry Smith Notes: 1349195e9b02SBarry Smith The matrices `Amat` and `Pmat` are exactly the matrices that are used by `SNES` for the nonlinear solve. 1350bcf0153eSBarry Smith 1351bcf0153eSBarry Smith If you know the operator Amat has a null space you can use `MatSetNullSpace()` and `MatSetTransposeNullSpace()` to supply the null 1352195e9b02SBarry Smith space to `Amat` and the `KSP` solvers will automatically use that null space as needed during the solution process. 1353895c21f2SBarry Smith 1354a4f0a591SBarry Smith The matrix dF/dU + a*dF/dU_t you provide turns out to be 1355b5abc632SBarry Smith the Jacobian of F(t,U,W+a*U) where F(t,U,U_t) = 0 is the DAE to be solved. 1356a4f0a591SBarry Smith The time integrator internally approximates U_t by W+a*U where the positive "shift" 1357a4f0a591SBarry Smith a and vector W depend on the integration method, step size, and past states. For example with 1358a4f0a591SBarry Smith the backward Euler method a = 1/dt and W = -a*U(previous timestep) so 1359a4f0a591SBarry Smith W + a*U = a*(U - U(previous timestep)) = (U - U(previous timestep))/dt 1360a4f0a591SBarry Smith 13616cd88445SBarry Smith You must set all the diagonal entries of the matrices, if they are zero you must still set them with a zero value 13626cd88445SBarry Smith 1363195e9b02SBarry Smith The TS solver may modify the nonzero structure and the entries of the matrices `Amat` and `Pmat` between the calls to `f` 1364195e9b02SBarry Smith You should not assume the values are the same in the next call to `f` as you set them in the previous call. 1365ca5f011dSBarry Smith 1366bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetIFunction()`, `TSSetRHSJacobian()`, `SNESComputeJacobianDefaultColor()`, `SNESComputeJacobianDefault()`, `TSSetRHSFunction()` 1367316643e7SJed Brown @*/ 1368d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetIJacobian(TS ts, Mat Amat, Mat Pmat, TSIJacobian f, void *ctx) 1369d71ae5a4SJacob Faibussowitsch { 1370089b2837SJed Brown SNES snes; 137124989b8cSPeter Brune DM dm; 1372316643e7SJed Brown 1373316643e7SJed Brown PetscFunctionBegin; 13740700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1375e5d3d808SBarry Smith if (Amat) PetscValidHeaderSpecific(Amat, MAT_CLASSID, 2); 1376e5d3d808SBarry Smith if (Pmat) PetscValidHeaderSpecific(Pmat, MAT_CLASSID, 3); 1377e5d3d808SBarry Smith if (Amat) PetscCheckSameComm(ts, 1, Amat, 2); 1378e5d3d808SBarry Smith if (Pmat) PetscCheckSameComm(ts, 1, Pmat, 3); 137924989b8cSPeter Brune 13809566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 13819566063dSJacob Faibussowitsch PetscCall(DMTSSetIJacobian(dm, f, ctx)); 138224989b8cSPeter Brune 13839566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 13849566063dSJacob Faibussowitsch PetscCall(SNESSetJacobian(snes, Amat, Pmat, SNESTSFormJacobian, ts)); 13853ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1386316643e7SJed Brown } 1387316643e7SJed Brown 1388e1244c69SJed Brown /*@ 1389bcf0153eSBarry Smith TSRHSJacobianSetReuse - restore RHS Jacobian before re-evaluating. Without this flag, `TS` will change the sign and 1390e1244c69SJed Brown shift the RHS Jacobian for a finite-time-step implicit solve, in which case the user function will need to recompute 1391e1244c69SJed Brown the entire Jacobian. The reuse flag must be set if the evaluation function will assume that the matrix entries have 1392195e9b02SBarry Smith not been changed by the `TS`. 1393e1244c69SJed Brown 1394e1244c69SJed Brown Logically Collective 1395e1244c69SJed Brown 13964165533cSJose E. Roman Input Parameters: 1397bcf0153eSBarry Smith + ts - `TS` context obtained from `TSCreate()` 1398bcf0153eSBarry Smith - reuse - `PETSC_TRUE` if the RHS Jacobian 1399e1244c69SJed Brown 1400e1244c69SJed Brown Level: intermediate 1401e1244c69SJed Brown 1402bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSJacobian()`, `TSComputeRHSJacobianConstant()` 1403e1244c69SJed Brown @*/ 1404d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRHSJacobianSetReuse(TS ts, PetscBool reuse) 1405d71ae5a4SJacob Faibussowitsch { 1406e1244c69SJed Brown PetscFunctionBegin; 1407e1244c69SJed Brown ts->rhsjacobian.reuse = reuse; 14083ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1409e1244c69SJed Brown } 1410e1244c69SJed Brown 1411efe9872eSLisandro Dalcin /*@C 1412efe9872eSLisandro Dalcin TSSetI2Function - Set the function to compute F(t,U,U_t,U_tt) where F = 0 is the DAE to be solved. 1413efe9872eSLisandro Dalcin 1414c3339decSBarry Smith Logically Collective 1415efe9872eSLisandro Dalcin 1416efe9872eSLisandro Dalcin Input Parameters: 1417bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1418195e9b02SBarry Smith . F - vector to hold the residual (or `NULL` to have it created internally) 1419efe9872eSLisandro Dalcin . fun - the function evaluation routine 1420195e9b02SBarry Smith - ctx - user-defined context for private data for the function evaluation routine (may be `NULL`) 1421efe9872eSLisandro Dalcin 142220f4b53cSBarry Smith Calling sequence of `fun`: 142320f4b53cSBarry Smith $ PetscErrorCode fun(TS ts, PetscReal t, Vec U, Vec U_t, Vec U_tt, Vec F,void *ctx); 142420f4b53cSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 142520f4b53cSBarry Smith . t - time at step/stage being solved 1426efe9872eSLisandro Dalcin . U - state vector 1427efe9872eSLisandro Dalcin . U_t - time derivative of state vector 1428efe9872eSLisandro Dalcin . U_tt - second time derivative of state vector 1429efe9872eSLisandro Dalcin . F - function vector 1430195e9b02SBarry Smith - ctx - [optional] user-defined context for matrix evaluation routine (may be `NULL`) 1431efe9872eSLisandro Dalcin 1432efe9872eSLisandro Dalcin Level: beginner 1433efe9872eSLisandro Dalcin 1434bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetI2Jacobian()`, `TSSetIFunction()`, `TSCreate()`, `TSSetRHSFunction()` 1435efe9872eSLisandro Dalcin @*/ 1436d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetI2Function(TS ts, Vec F, TSI2Function fun, void *ctx) 1437d71ae5a4SJacob Faibussowitsch { 1438efe9872eSLisandro Dalcin DM dm; 1439efe9872eSLisandro Dalcin 1440efe9872eSLisandro Dalcin PetscFunctionBegin; 1441efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1442efe9872eSLisandro Dalcin if (F) PetscValidHeaderSpecific(F, VEC_CLASSID, 2); 14439566063dSJacob Faibussowitsch PetscCall(TSSetIFunction(ts, F, NULL, NULL)); 14449566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 14459566063dSJacob Faibussowitsch PetscCall(DMTSSetI2Function(dm, fun, ctx)); 14463ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1447efe9872eSLisandro Dalcin } 1448efe9872eSLisandro Dalcin 1449efe9872eSLisandro Dalcin /*@C 1450a5b23f4aSJose E. Roman TSGetI2Function - Returns the vector where the implicit residual is stored and the function/context to compute it. 1451efe9872eSLisandro Dalcin 1452efe9872eSLisandro Dalcin Not Collective 1453efe9872eSLisandro Dalcin 1454efe9872eSLisandro Dalcin Input Parameter: 1455bcf0153eSBarry Smith . ts - the `TS` context 1456efe9872eSLisandro Dalcin 1457d8d19677SJose E. Roman Output Parameters: 1458195e9b02SBarry Smith + r - vector to hold residual (or `NULL`) 1459195e9b02SBarry Smith . fun - the function to compute residual (or `NULL`) 1460195e9b02SBarry Smith - ctx - the function context (or `NULL`) 1461efe9872eSLisandro Dalcin 1462efe9872eSLisandro Dalcin Level: advanced 1463efe9872eSLisandro Dalcin 1464bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetIFunction()`, `SNESGetFunction()`, `TSCreate()` 1465efe9872eSLisandro Dalcin @*/ 1466d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetI2Function(TS ts, Vec *r, TSI2Function *fun, void **ctx) 1467d71ae5a4SJacob Faibussowitsch { 1468efe9872eSLisandro Dalcin SNES snes; 1469efe9872eSLisandro Dalcin DM dm; 1470efe9872eSLisandro Dalcin 1471efe9872eSLisandro Dalcin PetscFunctionBegin; 1472efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 14739566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 14749566063dSJacob Faibussowitsch PetscCall(SNESGetFunction(snes, r, NULL, NULL)); 14759566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 14769566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Function(dm, fun, ctx)); 14773ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1478efe9872eSLisandro Dalcin } 1479efe9872eSLisandro Dalcin 1480efe9872eSLisandro Dalcin /*@C 1481bc77d74cSLisandro Dalcin TSSetI2Jacobian - Set the function to compute the matrix dF/dU + v*dF/dU_t + a*dF/dU_tt 1482bcf0153eSBarry Smith where F(t,U,U_t,U_tt) is the function you provided with `TSSetI2Function()`. 1483efe9872eSLisandro Dalcin 1484c3339decSBarry Smith Logically Collective 1485efe9872eSLisandro Dalcin 1486efe9872eSLisandro Dalcin Input Parameters: 1487bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1488195e9b02SBarry Smith . J - matrix to hold the Jacobian values 1489195e9b02SBarry Smith . P - matrix for constructing the preconditioner (may be same as `J`) 1490efe9872eSLisandro Dalcin . jac - the Jacobian evaluation routine 1491195e9b02SBarry Smith - ctx - user-defined context for private data for the Jacobian evaluation routine (may be `NULL`) 1492efe9872eSLisandro Dalcin 149320f4b53cSBarry Smith Calling sequence of `jac`: 149420f4b53cSBarry Smith $ PetscErrorCode jac(TS ts, PetscReal t, Vec U, Vec U_t, Vec U_tt, PetscReal v, PetscReal a, Mat J, Mat P, void *ctx) 149520f4b53cSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 149620f4b53cSBarry Smith . t - time at step/stage being solved 1497efe9872eSLisandro Dalcin . U - state vector 1498efe9872eSLisandro Dalcin . U_t - time derivative of state vector 1499efe9872eSLisandro Dalcin . U_tt - second time derivative of state vector 1500efe9872eSLisandro Dalcin . v - shift for U_t 1501efe9872eSLisandro Dalcin . a - shift for U_tt 1502efe9872eSLisandro Dalcin . J - Jacobian of G(U) = F(t,U,W+v*U,W'+a*U), equivalent to dF/dU + v*dF/dU_t + a*dF/dU_tt 1503efe9872eSLisandro Dalcin . P - preconditioning matrix for J, may be same as J 1504efe9872eSLisandro Dalcin - ctx - [optional] user-defined context for matrix evaluation routine 1505efe9872eSLisandro Dalcin 1506bcf0153eSBarry Smith Level: beginner 1507bcf0153eSBarry Smith 1508efe9872eSLisandro Dalcin Notes: 1509195e9b02SBarry Smith The matrices `J` and `P` are exactly the matrices that are used by `SNES` for the nonlinear solve. 1510efe9872eSLisandro Dalcin 1511efe9872eSLisandro Dalcin The matrix dF/dU + v*dF/dU_t + a*dF/dU_tt you provide turns out to be 1512efe9872eSLisandro Dalcin the Jacobian of G(U) = F(t,U,W+v*U,W'+a*U) where F(t,U,U_t,U_tt) = 0 is the DAE to be solved. 1513efe9872eSLisandro Dalcin The time integrator internally approximates U_t by W+v*U and U_tt by W'+a*U where the positive "shift" 1514bc77d74cSLisandro Dalcin parameters 'v' and 'a' and vectors W, W' depend on the integration method, step size, and past states. 1515efe9872eSLisandro Dalcin 1516bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetI2Function()`, `TSGetI2Jacobian()` 1517efe9872eSLisandro Dalcin @*/ 1518d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetI2Jacobian(TS ts, Mat J, Mat P, TSI2Jacobian jac, void *ctx) 1519d71ae5a4SJacob Faibussowitsch { 1520efe9872eSLisandro Dalcin DM dm; 1521efe9872eSLisandro Dalcin 1522efe9872eSLisandro Dalcin PetscFunctionBegin; 1523efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1524efe9872eSLisandro Dalcin if (J) PetscValidHeaderSpecific(J, MAT_CLASSID, 2); 1525efe9872eSLisandro Dalcin if (P) PetscValidHeaderSpecific(P, MAT_CLASSID, 3); 15269566063dSJacob Faibussowitsch PetscCall(TSSetIJacobian(ts, J, P, NULL, NULL)); 15279566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 15289566063dSJacob Faibussowitsch PetscCall(DMTSSetI2Jacobian(dm, jac, ctx)); 15293ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1530efe9872eSLisandro Dalcin } 1531efe9872eSLisandro Dalcin 1532efe9872eSLisandro Dalcin /*@C 1533efe9872eSLisandro Dalcin TSGetI2Jacobian - Returns the implicit Jacobian at the present timestep. 1534efe9872eSLisandro Dalcin 1535bcf0153eSBarry Smith Not Collective, but parallel objects are returned if `TS` is parallel 1536efe9872eSLisandro Dalcin 1537efe9872eSLisandro Dalcin Input Parameter: 1538bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 1539efe9872eSLisandro Dalcin 1540efe9872eSLisandro Dalcin Output Parameters: 1541efe9872eSLisandro Dalcin + J - The (approximate) Jacobian of F(t,U,U_t,U_tt) 1542195e9b02SBarry Smith . P - The matrix from which the preconditioner is constructed, often the same as `J` 1543efe9872eSLisandro Dalcin . jac - The function to compute the Jacobian matrices 1544efe9872eSLisandro Dalcin - ctx - User-defined context for Jacobian evaluation routine 1545efe9872eSLisandro Dalcin 1546bcf0153eSBarry Smith Level: advanced 1547bcf0153eSBarry Smith 1548195e9b02SBarry Smith Note: 1549195e9b02SBarry Smith You can pass in `NULL` for any return argument you do not need. 1550efe9872eSLisandro Dalcin 1551bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetTimeStep()`, `TSGetMatrices()`, `TSGetTime()`, `TSGetStepNumber()`, `TSSetI2Jacobian()`, `TSGetI2Function()`, `TSCreate()` 1552efe9872eSLisandro Dalcin @*/ 1553d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetI2Jacobian(TS ts, Mat *J, Mat *P, TSI2Jacobian *jac, void **ctx) 1554d71ae5a4SJacob Faibussowitsch { 1555efe9872eSLisandro Dalcin SNES snes; 1556efe9872eSLisandro Dalcin DM dm; 1557efe9872eSLisandro Dalcin 1558efe9872eSLisandro Dalcin PetscFunctionBegin; 15599566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 15609566063dSJacob Faibussowitsch PetscCall(SNESSetUpMatrices(snes)); 15619566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(snes, J, P, NULL, NULL)); 15629566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 15639566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Jacobian(dm, jac, ctx)); 15643ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1565efe9872eSLisandro Dalcin } 1566efe9872eSLisandro Dalcin 1567efe9872eSLisandro Dalcin /*@ 1568efe9872eSLisandro Dalcin TSComputeI2Function - Evaluates the DAE residual written in implicit form F(t,U,U_t,U_tt) = 0 1569efe9872eSLisandro Dalcin 1570c3339decSBarry Smith Collective 1571efe9872eSLisandro Dalcin 1572efe9872eSLisandro Dalcin Input Parameters: 1573bcf0153eSBarry Smith + ts - the `TS` context 1574efe9872eSLisandro Dalcin . t - current time 1575efe9872eSLisandro Dalcin . U - state vector 1576efe9872eSLisandro Dalcin . V - time derivative of state vector (U_t) 1577efe9872eSLisandro Dalcin - A - second time derivative of state vector (U_tt) 1578efe9872eSLisandro Dalcin 1579efe9872eSLisandro Dalcin Output Parameter: 1580efe9872eSLisandro Dalcin . F - the residual vector 1581efe9872eSLisandro Dalcin 1582bcf0153eSBarry Smith Level: developer 1583bcf0153eSBarry Smith 1584efe9872eSLisandro Dalcin Note: 1585efe9872eSLisandro Dalcin Most users should not need to explicitly call this routine, as it 1586efe9872eSLisandro Dalcin is used internally within the nonlinear solvers. 1587efe9872eSLisandro Dalcin 1588bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetI2Function()`, `TSGetI2Function()` 1589efe9872eSLisandro Dalcin @*/ 1590d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeI2Function(TS ts, PetscReal t, Vec U, Vec V, Vec A, Vec F) 1591d71ae5a4SJacob Faibussowitsch { 1592efe9872eSLisandro Dalcin DM dm; 1593efe9872eSLisandro Dalcin TSI2Function I2Function; 1594efe9872eSLisandro Dalcin void *ctx; 1595efe9872eSLisandro Dalcin TSRHSFunction rhsfunction; 1596efe9872eSLisandro Dalcin 1597efe9872eSLisandro Dalcin PetscFunctionBegin; 1598efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1599efe9872eSLisandro Dalcin PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 1600efe9872eSLisandro Dalcin PetscValidHeaderSpecific(V, VEC_CLASSID, 4); 1601efe9872eSLisandro Dalcin PetscValidHeaderSpecific(A, VEC_CLASSID, 5); 1602efe9872eSLisandro Dalcin PetscValidHeaderSpecific(F, VEC_CLASSID, 6); 1603efe9872eSLisandro Dalcin 16049566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 16059566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Function(dm, &I2Function, &ctx)); 16069566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, NULL)); 1607efe9872eSLisandro Dalcin 1608efe9872eSLisandro Dalcin if (!I2Function) { 16099566063dSJacob Faibussowitsch PetscCall(TSComputeIFunction(ts, t, U, A, F, PETSC_FALSE)); 16103ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1611efe9872eSLisandro Dalcin } 1612efe9872eSLisandro Dalcin 16139566063dSJacob Faibussowitsch PetscCall(PetscLogEventBegin(TS_FunctionEval, ts, U, V, F)); 1614efe9872eSLisandro Dalcin 1615792fecdfSBarry Smith PetscCallBack("TS callback implicit function", I2Function(ts, t, U, V, A, F, ctx)); 1616efe9872eSLisandro Dalcin 1617efe9872eSLisandro Dalcin if (rhsfunction) { 1618efe9872eSLisandro Dalcin Vec Frhs; 16199566063dSJacob Faibussowitsch PetscCall(TSGetRHSVec_Private(ts, &Frhs)); 16209566063dSJacob Faibussowitsch PetscCall(TSComputeRHSFunction(ts, t, U, Frhs)); 16219566063dSJacob Faibussowitsch PetscCall(VecAXPY(F, -1, Frhs)); 1622efe9872eSLisandro Dalcin } 1623efe9872eSLisandro Dalcin 16249566063dSJacob Faibussowitsch PetscCall(PetscLogEventEnd(TS_FunctionEval, ts, U, V, F)); 16253ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1626efe9872eSLisandro Dalcin } 1627efe9872eSLisandro Dalcin 1628efe9872eSLisandro Dalcin /*@ 1629efe9872eSLisandro Dalcin TSComputeI2Jacobian - Evaluates the Jacobian of the DAE 1630efe9872eSLisandro Dalcin 1631c3339decSBarry Smith Collective 1632efe9872eSLisandro Dalcin 1633efe9872eSLisandro Dalcin Input Parameters: 1634bcf0153eSBarry Smith + ts - the `TS` context 1635efe9872eSLisandro Dalcin . t - current timestep 1636efe9872eSLisandro Dalcin . U - state vector 1637efe9872eSLisandro Dalcin . V - time derivative of state vector 1638efe9872eSLisandro Dalcin . A - second time derivative of state vector 1639efe9872eSLisandro Dalcin . shiftV - shift to apply, see note below 1640efe9872eSLisandro Dalcin - shiftA - shift to apply, see note below 1641efe9872eSLisandro Dalcin 1642efe9872eSLisandro Dalcin Output Parameters: 1643efe9872eSLisandro Dalcin + J - Jacobian matrix 1644efe9872eSLisandro Dalcin - P - optional preconditioning matrix 1645efe9872eSLisandro Dalcin 1646bcf0153eSBarry Smith Level: developer 1647bcf0153eSBarry Smith 1648efe9872eSLisandro Dalcin Notes: 1649efe9872eSLisandro Dalcin If F(t,U,V,A)=0 is the DAE, the required Jacobian is 1650efe9872eSLisandro Dalcin 1651efe9872eSLisandro Dalcin dF/dU + shiftV*dF/dV + shiftA*dF/dA 1652efe9872eSLisandro Dalcin 1653efe9872eSLisandro Dalcin Most users should not need to explicitly call this routine, as it 1654efe9872eSLisandro Dalcin is used internally within the nonlinear solvers. 1655efe9872eSLisandro Dalcin 1656bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetI2Jacobian()` 1657efe9872eSLisandro Dalcin @*/ 1658d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeI2Jacobian(TS ts, PetscReal t, Vec U, Vec V, Vec A, PetscReal shiftV, PetscReal shiftA, Mat J, Mat P) 1659d71ae5a4SJacob Faibussowitsch { 1660efe9872eSLisandro Dalcin DM dm; 1661efe9872eSLisandro Dalcin TSI2Jacobian I2Jacobian; 1662efe9872eSLisandro Dalcin void *ctx; 1663efe9872eSLisandro Dalcin TSRHSJacobian rhsjacobian; 1664efe9872eSLisandro Dalcin 1665efe9872eSLisandro Dalcin PetscFunctionBegin; 1666efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1667efe9872eSLisandro Dalcin PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 1668efe9872eSLisandro Dalcin PetscValidHeaderSpecific(V, VEC_CLASSID, 4); 1669efe9872eSLisandro Dalcin PetscValidHeaderSpecific(A, VEC_CLASSID, 5); 1670efe9872eSLisandro Dalcin PetscValidHeaderSpecific(J, MAT_CLASSID, 8); 1671efe9872eSLisandro Dalcin PetscValidHeaderSpecific(P, MAT_CLASSID, 9); 1672efe9872eSLisandro Dalcin 16739566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 16749566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Jacobian(dm, &I2Jacobian, &ctx)); 16759566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, &rhsjacobian, NULL)); 1676efe9872eSLisandro Dalcin 1677efe9872eSLisandro Dalcin if (!I2Jacobian) { 16789566063dSJacob Faibussowitsch PetscCall(TSComputeIJacobian(ts, t, U, A, shiftA, J, P, PETSC_FALSE)); 16793ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1680efe9872eSLisandro Dalcin } 1681efe9872eSLisandro Dalcin 16829566063dSJacob Faibussowitsch PetscCall(PetscLogEventBegin(TS_JacobianEval, ts, U, J, P)); 1683792fecdfSBarry Smith PetscCallBack("TS callback implicit Jacobian", I2Jacobian(ts, t, U, V, A, shiftV, shiftA, J, P, ctx)); 1684efe9872eSLisandro Dalcin if (rhsjacobian) { 1685d60b7d5cSBarry Smith Mat Jrhs, Prhs; 16869566063dSJacob Faibussowitsch PetscCall(TSGetRHSMats_Private(ts, &Jrhs, &Prhs)); 16879566063dSJacob Faibussowitsch PetscCall(TSComputeRHSJacobian(ts, t, U, Jrhs, Prhs)); 16889566063dSJacob Faibussowitsch PetscCall(MatAXPY(J, -1, Jrhs, ts->axpy_pattern)); 16899566063dSJacob Faibussowitsch if (P != J) PetscCall(MatAXPY(P, -1, Prhs, ts->axpy_pattern)); 1690efe9872eSLisandro Dalcin } 1691efe9872eSLisandro Dalcin 16929566063dSJacob Faibussowitsch PetscCall(PetscLogEventEnd(TS_JacobianEval, ts, U, J, P)); 16933ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1694efe9872eSLisandro Dalcin } 1695efe9872eSLisandro Dalcin 1696438f35afSJed Brown /*@C 1697438f35afSJed Brown TSSetTransientVariable - sets function to transform from state to transient variables 1698438f35afSJed Brown 1699438f35afSJed Brown Logically Collective 1700438f35afSJed Brown 17014165533cSJose E. Roman Input Parameters: 1702438f35afSJed Brown + ts - time stepping context on which to change the transient variable 1703a96d6ef6SBarry Smith . tvar - a function that transforms to transient variables 1704438f35afSJed Brown - ctx - a context for tvar 1705438f35afSJed Brown 170620f4b53cSBarry Smith Calling sequence of `tvar`: 170720f4b53cSBarry Smith $ PetscErrorCode tvar(TS ts, Vec p, Vec c, void *ctx) 1708a96d6ef6SBarry Smith + ts - timestep context 17096aad120cSJose E. Roman . p - input vector (primitive form) 1710a96d6ef6SBarry Smith . c - output vector, transient variables (conservative form) 1711a96d6ef6SBarry Smith - ctx - [optional] user-defined function context 1712a96d6ef6SBarry Smith 1713438f35afSJed Brown Level: advanced 1714438f35afSJed Brown 1715438f35afSJed Brown Notes: 1716bcf0153eSBarry Smith This is typically used to transform from primitive to conservative variables so that a time integrator (e.g., `TSBDF`) 1717438f35afSJed Brown can be conservative. In this context, primitive variables P are used to model the state (e.g., because they lead to 1718438f35afSJed Brown well-conditioned formulations even in limiting cases such as low-Mach or zero porosity). The transient variable is 1719438f35afSJed Brown C(P), specified by calling this function. An IFunction thus receives arguments (P, Cdot) and the IJacobian must be 1720438f35afSJed Brown evaluated via the chain rule, as in 1721195e9b02SBarry Smith .vb 1722438f35afSJed Brown dF/dP + shift * dF/dCdot dC/dP. 1723195e9b02SBarry Smith .ve 1724438f35afSJed Brown 1725bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSBDF`, `DMTSSetTransientVariable()`, `DMTSGetTransientVariable()`, `TSSetIFunction()`, `TSSetIJacobian()` 1726438f35afSJed Brown @*/ 1727d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTransientVariable(TS ts, TSTransientVariable tvar, void *ctx) 1728d71ae5a4SJacob Faibussowitsch { 1729438f35afSJed Brown DM dm; 1730438f35afSJed Brown 1731438f35afSJed Brown PetscFunctionBegin; 1732438f35afSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 17339566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 17349566063dSJacob Faibussowitsch PetscCall(DMTSSetTransientVariable(dm, tvar, ctx)); 17353ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1736438f35afSJed Brown } 1737438f35afSJed Brown 1738efe9872eSLisandro Dalcin /*@ 1739e3c11fc1SJed Brown TSComputeTransientVariable - transforms state (primitive) variables to transient (conservative) variables 1740e3c11fc1SJed Brown 1741e3c11fc1SJed Brown Logically Collective 1742e3c11fc1SJed Brown 1743e3c11fc1SJed Brown Input Parameters: 1744e3c11fc1SJed Brown + ts - TS on which to compute 1745e3c11fc1SJed Brown - U - state vector to be transformed to transient variables 1746e3c11fc1SJed Brown 17472fe279fdSBarry Smith Output Parameter: 1748e3c11fc1SJed Brown . C - transient (conservative) variable 1749e3c11fc1SJed Brown 1750e3c11fc1SJed Brown Level: developer 1751e3c11fc1SJed Brown 1752bcf0153eSBarry Smith Developer Note: 1753195e9b02SBarry Smith If `DMTSSetTransientVariable()` has not been called, then C is not modified in this routine and C = `NULL` is allowed. 1754bcf0153eSBarry Smith This makes it safe to call without a guard. One can use `TSHasTransientVariable()` to check if transient variables are 1755bcf0153eSBarry Smith being used. 1756bcf0153eSBarry Smith 1757bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSBDF`, `DMTSSetTransientVariable()`, `TSComputeIFunction()`, `TSComputeIJacobian()` 1758e3c11fc1SJed Brown @*/ 1759d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeTransientVariable(TS ts, Vec U, Vec C) 1760d71ae5a4SJacob Faibussowitsch { 1761e3c11fc1SJed Brown DM dm; 1762e3c11fc1SJed Brown DMTS dmts; 1763e3c11fc1SJed Brown 1764e3c11fc1SJed Brown PetscFunctionBegin; 1765e3c11fc1SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1766e3c11fc1SJed Brown PetscValidHeaderSpecific(U, VEC_CLASSID, 2); 17679566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 17689566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(dm, &dmts)); 1769e3c11fc1SJed Brown if (dmts->ops->transientvar) { 1770e3c11fc1SJed Brown PetscValidHeaderSpecific(C, VEC_CLASSID, 3); 17719566063dSJacob Faibussowitsch PetscCall((*dmts->ops->transientvar)(ts, U, C, dmts->transientvarctx)); 1772e3c11fc1SJed Brown } 17733ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1774e3c11fc1SJed Brown } 1775e3c11fc1SJed Brown 1776e3c11fc1SJed Brown /*@ 1777e3c11fc1SJed Brown TSHasTransientVariable - determine whether transient variables have been set 1778e3c11fc1SJed Brown 1779e3c11fc1SJed Brown Logically Collective 1780e3c11fc1SJed Brown 17812fe279fdSBarry Smith Input Parameter: 1782195e9b02SBarry Smith . ts - `TS` on which to compute 1783e3c11fc1SJed Brown 17842fe279fdSBarry Smith Output Parameter: 1785bcf0153eSBarry Smith . has - `PETSC_TRUE` if transient variables have been set 1786e3c11fc1SJed Brown 1787e3c11fc1SJed Brown Level: developer 1788e3c11fc1SJed Brown 1789bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSBDF`, `DMTSSetTransientVariable()`, `TSComputeTransientVariable()` 1790e3c11fc1SJed Brown @*/ 1791d71ae5a4SJacob Faibussowitsch PetscErrorCode TSHasTransientVariable(TS ts, PetscBool *has) 1792d71ae5a4SJacob Faibussowitsch { 1793e3c11fc1SJed Brown DM dm; 1794e3c11fc1SJed Brown DMTS dmts; 1795e3c11fc1SJed Brown 1796e3c11fc1SJed Brown PetscFunctionBegin; 1797e3c11fc1SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 17989566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 17999566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(dm, &dmts)); 1800e3c11fc1SJed Brown *has = dmts->ops->transientvar ? PETSC_TRUE : PETSC_FALSE; 18013ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1802e3c11fc1SJed Brown } 1803e3c11fc1SJed Brown 1804e3c11fc1SJed Brown /*@ 1805efe9872eSLisandro Dalcin TS2SetSolution - Sets the initial solution and time derivative vectors 1806bcf0153eSBarry Smith for use by the `TS` routines handling second order equations. 1807efe9872eSLisandro Dalcin 1808c3339decSBarry Smith Logically Collective 1809efe9872eSLisandro Dalcin 1810efe9872eSLisandro Dalcin Input Parameters: 1811bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1812efe9872eSLisandro Dalcin . u - the solution vector 1813efe9872eSLisandro Dalcin - v - the time derivative vector 1814efe9872eSLisandro Dalcin 1815efe9872eSLisandro Dalcin Level: beginner 1816efe9872eSLisandro Dalcin 1817bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS` 1818efe9872eSLisandro Dalcin @*/ 1819d71ae5a4SJacob Faibussowitsch PetscErrorCode TS2SetSolution(TS ts, Vec u, Vec v) 1820d71ae5a4SJacob Faibussowitsch { 1821efe9872eSLisandro Dalcin PetscFunctionBegin; 1822efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1823efe9872eSLisandro Dalcin PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 1824efe9872eSLisandro Dalcin PetscValidHeaderSpecific(v, VEC_CLASSID, 3); 18259566063dSJacob Faibussowitsch PetscCall(TSSetSolution(ts, u)); 18269566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)v)); 18279566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_dot)); 1828efe9872eSLisandro Dalcin ts->vec_dot = v; 18293ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1830efe9872eSLisandro Dalcin } 1831efe9872eSLisandro Dalcin 1832efe9872eSLisandro Dalcin /*@ 1833efe9872eSLisandro Dalcin TS2GetSolution - Returns the solution and time derivative at the present timestep 1834efe9872eSLisandro Dalcin for second order equations. It is valid to call this routine inside the function 1835efe9872eSLisandro Dalcin that you are evaluating in order to move to the new timestep. This vector not 1836efe9872eSLisandro Dalcin changed until the solution at the next timestep has been calculated. 1837efe9872eSLisandro Dalcin 1838195e9b02SBarry Smith Not Collective, but `u` returned is parallel if `TS` is parallel 1839efe9872eSLisandro Dalcin 1840efe9872eSLisandro Dalcin Input Parameter: 1841bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 1842efe9872eSLisandro Dalcin 1843d8d19677SJose E. Roman Output Parameters: 1844efe9872eSLisandro Dalcin + u - the vector containing the solution 1845efe9872eSLisandro Dalcin - v - the vector containing the time derivative 1846efe9872eSLisandro Dalcin 1847efe9872eSLisandro Dalcin Level: intermediate 1848efe9872eSLisandro Dalcin 1849bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TS2SetSolution()`, `TSGetTimeStep()`, `TSGetTime()` 1850efe9872eSLisandro Dalcin @*/ 1851d71ae5a4SJacob Faibussowitsch PetscErrorCode TS2GetSolution(TS ts, Vec *u, Vec *v) 1852d71ae5a4SJacob Faibussowitsch { 1853efe9872eSLisandro Dalcin PetscFunctionBegin; 1854efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1855efe9872eSLisandro Dalcin if (u) PetscValidPointer(u, 2); 1856efe9872eSLisandro Dalcin if (v) PetscValidPointer(v, 3); 1857efe9872eSLisandro Dalcin if (u) *u = ts->vec_sol; 1858efe9872eSLisandro Dalcin if (v) *v = ts->vec_dot; 18593ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1860efe9872eSLisandro Dalcin } 1861efe9872eSLisandro Dalcin 186255849f57SBarry Smith /*@C 1863bcf0153eSBarry Smith TSLoad - Loads a `TS` that has been stored in binary with `TSView()`. 186455849f57SBarry Smith 1865c3339decSBarry Smith Collective 186655849f57SBarry Smith 186755849f57SBarry Smith Input Parameters: 1868bcf0153eSBarry Smith + newdm - the newly loaded `TS`, this needs to have been created with `TSCreate()` or 1869bcf0153eSBarry Smith some related function before a call to `TSLoad()`. 1870bcf0153eSBarry Smith - viewer - binary file viewer, obtained from `PetscViewerBinaryOpen()` 187155849f57SBarry Smith 187255849f57SBarry Smith Level: intermediate 187355849f57SBarry Smith 1874bcf0153eSBarry Smith Note: 1875bcf0153eSBarry Smith The type is determined by the data in the file, any type set into the `TS` before this call is ignored. 187655849f57SBarry Smith 1877bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `PetscViewer`, `PetscViewerBinaryOpen()`, `TSView()`, `MatLoad()`, `VecLoad()` 187855849f57SBarry Smith @*/ 1879d71ae5a4SJacob Faibussowitsch PetscErrorCode TSLoad(TS ts, PetscViewer viewer) 1880d71ae5a4SJacob Faibussowitsch { 188155849f57SBarry Smith PetscBool isbinary; 188255849f57SBarry Smith PetscInt classid; 188355849f57SBarry Smith char type[256]; 18842d53ad75SBarry Smith DMTS sdm; 1885ad6bc421SBarry Smith DM dm; 188655849f57SBarry Smith 188755849f57SBarry Smith PetscFunctionBegin; 1888f2c2a1b9SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 188955849f57SBarry Smith PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 18909566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERBINARY, &isbinary)); 18913c633725SBarry Smith PetscCheck(isbinary, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Invalid viewer; open viewer with PetscViewerBinaryOpen()"); 189255849f57SBarry Smith 18939566063dSJacob Faibussowitsch PetscCall(PetscViewerBinaryRead(viewer, &classid, 1, NULL, PETSC_INT)); 18943c633725SBarry Smith PetscCheck(classid == TS_FILE_CLASSID, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Not TS next in file"); 18959566063dSJacob Faibussowitsch PetscCall(PetscViewerBinaryRead(viewer, type, 256, NULL, PETSC_CHAR)); 18969566063dSJacob Faibussowitsch PetscCall(TSSetType(ts, type)); 1897dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, load, viewer); 18989566063dSJacob Faibussowitsch PetscCall(DMCreate(PetscObjectComm((PetscObject)ts), &dm)); 18999566063dSJacob Faibussowitsch PetscCall(DMLoad(dm, viewer)); 19009566063dSJacob Faibussowitsch PetscCall(TSSetDM(ts, dm)); 19019566063dSJacob Faibussowitsch PetscCall(DMCreateGlobalVector(ts->dm, &ts->vec_sol)); 19029566063dSJacob Faibussowitsch PetscCall(VecLoad(ts->vec_sol, viewer)); 19039566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(ts->dm, &sdm)); 19049566063dSJacob Faibussowitsch PetscCall(DMTSLoad(sdm, viewer)); 19053ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 190655849f57SBarry Smith } 190755849f57SBarry Smith 19089804daf3SBarry Smith #include <petscdraw.h> 1909e04113cfSBarry Smith #if defined(PETSC_HAVE_SAWS) 1910e04113cfSBarry Smith #include <petscviewersaws.h> 1911f05ece33SBarry Smith #endif 1912fe2efc57SMark 1913fe2efc57SMark /*@C 1914bcf0153eSBarry Smith TSViewFromOptions - View a `TS` based on values in the options database 1915fe2efc57SMark 1916c3339decSBarry Smith Collective 1917fe2efc57SMark 1918fe2efc57SMark Input Parameters: 1919bcf0153eSBarry Smith + ts - the `TS` context 1920bcf0153eSBarry Smith . obj - Optional object that provides the prefix for the options database keys 1921bcf0153eSBarry Smith - name - command line option string to be passed by user 1922fe2efc57SMark 1923fe2efc57SMark Level: intermediate 1924bcf0153eSBarry Smith 1925bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSView`, `PetscObjectViewFromOptions()`, `TSCreate()` 1926fe2efc57SMark @*/ 1927bcf0153eSBarry Smith PetscErrorCode TSViewFromOptions(TS ts, PetscObject obj, const char name[]) 1928d71ae5a4SJacob Faibussowitsch { 1929fe2efc57SMark PetscFunctionBegin; 1930bcf0153eSBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1931bcf0153eSBarry Smith PetscCall(PetscObjectViewFromOptions((PetscObject)ts, obj, name)); 19323ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1933fe2efc57SMark } 1934fe2efc57SMark 19357e2c5f70SBarry Smith /*@C 1936bcf0153eSBarry Smith TSView - Prints the `TS` data structure. 1937d763cef2SBarry Smith 1938c3339decSBarry Smith Collective 1939d763cef2SBarry Smith 1940d763cef2SBarry Smith Input Parameters: 1941bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1942d763cef2SBarry Smith - viewer - visualization context 1943d763cef2SBarry Smith 1944d763cef2SBarry Smith Options Database Key: 1945bcf0153eSBarry Smith . -ts_view - calls `TSView()` at end of `TSStep()` 1946bcf0153eSBarry Smith 1947bcf0153eSBarry Smith Level: beginner 1948d763cef2SBarry Smith 1949d763cef2SBarry Smith Notes: 1950d763cef2SBarry Smith The available visualization contexts include 1951bcf0153eSBarry Smith + `PETSC_VIEWER_STDOUT_SELF` - standard output (default) 1952bcf0153eSBarry Smith - `PETSC_VIEWER_STDOUT_WORLD` - synchronized standard 1953d763cef2SBarry Smith output where only the first processor opens 1954d763cef2SBarry Smith the file. All other processors send their 1955d763cef2SBarry Smith data to the first processor to print. 1956d763cef2SBarry Smith 1957d763cef2SBarry Smith The user can open an alternative visualization context with 1958bcf0153eSBarry Smith `PetscViewerASCIIOpen()` - output to a specified file. 1959d763cef2SBarry Smith 1960bcf0153eSBarry Smith In the debugger you can do call `TSView`(ts,0) to display the `TS` solver. (The same holds for any PETSc object viewer). 1961595c91d4SBarry Smith 1962bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `PetscViewer`, `PetscViewerASCIIOpen()` 1963d763cef2SBarry Smith @*/ 1964d71ae5a4SJacob Faibussowitsch PetscErrorCode TSView(TS ts, PetscViewer viewer) 1965d71ae5a4SJacob Faibussowitsch { 196619fd82e9SBarry Smith TSType type; 19672b0a91c0SBarry Smith PetscBool iascii, isstring, isundials, isbinary, isdraw; 19682d53ad75SBarry Smith DMTS sdm; 1969e04113cfSBarry Smith #if defined(PETSC_HAVE_SAWS) 1970536b137fSBarry Smith PetscBool issaws; 1971f05ece33SBarry Smith #endif 1972d763cef2SBarry Smith 1973d763cef2SBarry Smith PetscFunctionBegin; 19740700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 19751e66621cSBarry Smith if (!viewer) PetscCall(PetscViewerASCIIGetStdout(PetscObjectComm((PetscObject)ts), &viewer)); 19760700a824SBarry Smith PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 1977c9780b6fSBarry Smith PetscCheckSameComm(ts, 1, viewer, 2); 1978fd16b177SBarry Smith 19799566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERASCII, &iascii)); 19809566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERSTRING, &isstring)); 19819566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERBINARY, &isbinary)); 19829566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERDRAW, &isdraw)); 1983e04113cfSBarry Smith #if defined(PETSC_HAVE_SAWS) 19849566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERSAWS, &issaws)); 1985f05ece33SBarry Smith #endif 198632077d6dSBarry Smith if (iascii) { 19879566063dSJacob Faibussowitsch PetscCall(PetscObjectPrintClassNamePrefixType((PetscObject)ts, viewer)); 1988efd4aadfSBarry Smith if (ts->ops->view) { 19899566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPushTab(viewer)); 1990dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, view, viewer); 19919566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPopTab(viewer)); 1992efd4aadfSBarry Smith } 19931e66621cSBarry Smith if (ts->max_steps < PETSC_MAX_INT) PetscCall(PetscViewerASCIIPrintf(viewer, " maximum steps=%" PetscInt_FMT "\n", ts->max_steps)); 19941e66621cSBarry Smith if (ts->max_time < PETSC_MAX_REAL) PetscCall(PetscViewerASCIIPrintf(viewer, " maximum time=%g\n", (double)ts->max_time)); 19951e66621cSBarry Smith if (ts->ifuncs) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of I function evaluations=%" PetscInt_FMT "\n", ts->ifuncs)); 19961e66621cSBarry Smith if (ts->ijacs) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of I Jacobian evaluations=%" PetscInt_FMT "\n", ts->ijacs)); 19971e66621cSBarry Smith if (ts->rhsfuncs) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of RHS function evaluations=%" PetscInt_FMT "\n", ts->rhsfuncs)); 19981e66621cSBarry Smith if (ts->rhsjacs) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of RHS Jacobian evaluations=%" PetscInt_FMT "\n", ts->rhsjacs)); 1999efd4aadfSBarry Smith if (ts->usessnes) { 2000efd4aadfSBarry Smith PetscBool lin; 20011e66621cSBarry Smith if (ts->problem_type == TS_NONLINEAR) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of nonlinear solver iterations=%" PetscInt_FMT "\n", ts->snes_its)); 200263a3b9bcSJacob Faibussowitsch PetscCall(PetscViewerASCIIPrintf(viewer, " total number of linear solver iterations=%" PetscInt_FMT "\n", ts->ksp_its)); 20039566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompareAny((PetscObject)ts->snes, &lin, SNESKSPONLY, SNESKSPTRANSPOSEONLY, "")); 200463a3b9bcSJacob Faibussowitsch PetscCall(PetscViewerASCIIPrintf(viewer, " total number of %slinear solve failures=%" PetscInt_FMT "\n", lin ? "" : "non", ts->num_snes_failures)); 2005efd4aadfSBarry Smith } 200663a3b9bcSJacob Faibussowitsch PetscCall(PetscViewerASCIIPrintf(viewer, " total number of rejected steps=%" PetscInt_FMT "\n", ts->reject)); 20071e66621cSBarry Smith if (ts->vrtol) PetscCall(PetscViewerASCIIPrintf(viewer, " using vector of relative error tolerances, ")); 20081e66621cSBarry Smith else PetscCall(PetscViewerASCIIPrintf(viewer, " using relative error tolerance of %g, ", (double)ts->rtol)); 20091e66621cSBarry Smith if (ts->vatol) PetscCall(PetscViewerASCIIPrintf(viewer, " using vector of absolute error tolerances\n")); 20101e66621cSBarry Smith else PetscCall(PetscViewerASCIIPrintf(viewer, " using absolute error tolerance of %g\n", (double)ts->atol)); 20119566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPushTab(viewer)); 20129566063dSJacob Faibussowitsch PetscCall(TSAdaptView(ts->adapt, viewer)); 20139566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPopTab(viewer)); 20140f5bd95cSBarry Smith } else if (isstring) { 20159566063dSJacob Faibussowitsch PetscCall(TSGetType(ts, &type)); 20169566063dSJacob Faibussowitsch PetscCall(PetscViewerStringSPrintf(viewer, " TSType: %-7.7s", type)); 2017dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, view, viewer); 201855849f57SBarry Smith } else if (isbinary) { 201955849f57SBarry Smith PetscInt classid = TS_FILE_CLASSID; 202055849f57SBarry Smith MPI_Comm comm; 202155849f57SBarry Smith PetscMPIInt rank; 202255849f57SBarry Smith char type[256]; 202355849f57SBarry Smith 20249566063dSJacob Faibussowitsch PetscCall(PetscObjectGetComm((PetscObject)ts, &comm)); 20259566063dSJacob Faibussowitsch PetscCallMPI(MPI_Comm_rank(comm, &rank)); 2026dd400576SPatrick Sanan if (rank == 0) { 20279566063dSJacob Faibussowitsch PetscCall(PetscViewerBinaryWrite(viewer, &classid, 1, PETSC_INT)); 20289566063dSJacob Faibussowitsch PetscCall(PetscStrncpy(type, ((PetscObject)ts)->type_name, 256)); 20299566063dSJacob Faibussowitsch PetscCall(PetscViewerBinaryWrite(viewer, type, 256, PETSC_CHAR)); 203055849f57SBarry Smith } 2031dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, view, viewer); 20329566063dSJacob Faibussowitsch if (ts->adapt) PetscCall(TSAdaptView(ts->adapt, viewer)); 20339566063dSJacob Faibussowitsch PetscCall(DMView(ts->dm, viewer)); 20349566063dSJacob Faibussowitsch PetscCall(VecView(ts->vec_sol, viewer)); 20359566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(ts->dm, &sdm)); 20369566063dSJacob Faibussowitsch PetscCall(DMTSView(sdm, viewer)); 20372b0a91c0SBarry Smith } else if (isdraw) { 20382b0a91c0SBarry Smith PetscDraw draw; 20392b0a91c0SBarry Smith char str[36]; 204089fd9fafSBarry Smith PetscReal x, y, bottom, h; 20412b0a91c0SBarry Smith 20429566063dSJacob Faibussowitsch PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw)); 20439566063dSJacob Faibussowitsch PetscCall(PetscDrawGetCurrentPoint(draw, &x, &y)); 2044c6a7a370SJeremy L Thompson PetscCall(PetscStrncpy(str, "TS: ", sizeof(str))); 2045c6a7a370SJeremy L Thompson PetscCall(PetscStrlcat(str, ((PetscObject)ts)->type_name, sizeof(str))); 20469566063dSJacob Faibussowitsch PetscCall(PetscDrawStringBoxed(draw, x, y, PETSC_DRAW_BLACK, PETSC_DRAW_BLACK, str, NULL, &h)); 204789fd9fafSBarry Smith bottom = y - h; 20489566063dSJacob Faibussowitsch PetscCall(PetscDrawPushCurrentPoint(draw, x, bottom)); 2049dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, view, viewer); 20509566063dSJacob Faibussowitsch if (ts->adapt) PetscCall(TSAdaptView(ts->adapt, viewer)); 20519566063dSJacob Faibussowitsch if (ts->snes) PetscCall(SNESView(ts->snes, viewer)); 20529566063dSJacob Faibussowitsch PetscCall(PetscDrawPopCurrentPoint(draw)); 2053e04113cfSBarry Smith #if defined(PETSC_HAVE_SAWS) 2054536b137fSBarry Smith } else if (issaws) { 2055d45a07a7SBarry Smith PetscMPIInt rank; 20562657e9d9SBarry Smith const char *name; 20572657e9d9SBarry Smith 20589566063dSJacob Faibussowitsch PetscCall(PetscObjectGetName((PetscObject)ts, &name)); 20599566063dSJacob Faibussowitsch PetscCallMPI(MPI_Comm_rank(PETSC_COMM_WORLD, &rank)); 2060dd400576SPatrick Sanan if (!((PetscObject)ts)->amsmem && rank == 0) { 2061d45a07a7SBarry Smith char dir[1024]; 2062d45a07a7SBarry Smith 20639566063dSJacob Faibussowitsch PetscCall(PetscObjectViewSAWs((PetscObject)ts, viewer)); 20649566063dSJacob Faibussowitsch PetscCall(PetscSNPrintf(dir, 1024, "/PETSc/Objects/%s/time_step", name)); 2065792fecdfSBarry Smith PetscCallSAWs(SAWs_Register, (dir, &ts->steps, 1, SAWs_READ, SAWs_INT)); 20669566063dSJacob Faibussowitsch PetscCall(PetscSNPrintf(dir, 1024, "/PETSc/Objects/%s/time", name)); 2067792fecdfSBarry Smith PetscCallSAWs(SAWs_Register, (dir, &ts->ptime, 1, SAWs_READ, SAWs_DOUBLE)); 2068d763cef2SBarry Smith } 2069dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, view, viewer); 2070f05ece33SBarry Smith #endif 2071f05ece33SBarry Smith } 207236a9e3b9SBarry Smith if (ts->snes && ts->usessnes) { 20739566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPushTab(viewer)); 20749566063dSJacob Faibussowitsch PetscCall(SNESView(ts->snes, viewer)); 20759566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPopTab(viewer)); 207636a9e3b9SBarry Smith } 20779566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(ts->dm, &sdm)); 20789566063dSJacob Faibussowitsch PetscCall(DMTSView(sdm, viewer)); 2079f05ece33SBarry Smith 20809566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPushTab(viewer)); 20819566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)ts, TSSUNDIALS, &isundials)); 20829566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPopTab(viewer)); 20833ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2084d763cef2SBarry Smith } 2085d763cef2SBarry Smith 2086b07ff414SBarry Smith /*@ 2087d763cef2SBarry Smith TSSetApplicationContext - Sets an optional user-defined context for 2088d763cef2SBarry Smith the timesteppers. 2089d763cef2SBarry Smith 2090c3339decSBarry Smith Logically Collective 2091d763cef2SBarry Smith 2092d763cef2SBarry Smith Input Parameters: 2093bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2094bcf0153eSBarry Smith - usrP - user context 2095daf670e6SBarry Smith 2096d763cef2SBarry Smith Level: intermediate 2097d763cef2SBarry Smith 2098bcf0153eSBarry Smith Fortran Note: 2099195e9b02SBarry Smith You must write a Fortran interface definition for this 2100195e9b02SBarry Smith function that tells Fortran the Fortran derived data type that you are passing in as the `ctx` argument. 2101bcf0153eSBarry Smith 2102bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetApplicationContext()` 2103d763cef2SBarry Smith @*/ 2104d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetApplicationContext(TS ts, void *usrP) 2105d71ae5a4SJacob Faibussowitsch { 2106d763cef2SBarry Smith PetscFunctionBegin; 21070700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2108d763cef2SBarry Smith ts->user = usrP; 21093ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2110d763cef2SBarry Smith } 2111d763cef2SBarry Smith 2112b07ff414SBarry Smith /*@ 2113d763cef2SBarry Smith TSGetApplicationContext - Gets the user-defined context for the 2114bcf0153eSBarry Smith timestepper that was set with `TSSetApplicationContext()` 2115d763cef2SBarry Smith 2116d763cef2SBarry Smith Not Collective 2117d763cef2SBarry Smith 2118d763cef2SBarry Smith Input Parameter: 2119bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2120d763cef2SBarry Smith 2121d763cef2SBarry Smith Output Parameter: 2122d763cef2SBarry Smith . usrP - user context 2123d763cef2SBarry Smith 2124bcf0153eSBarry Smith Level: intermediate 2125bcf0153eSBarry Smith 2126bcf0153eSBarry Smith Fortran Note: 2127195e9b02SBarry Smith You must write a Fortran interface definition for this 2128195e9b02SBarry Smith function that tells Fortran the Fortran derived data type that you are passing in as the `ctx` argument. 2129daf670e6SBarry Smith 2130bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetApplicationContext()` 2131d763cef2SBarry Smith @*/ 2132d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetApplicationContext(TS ts, void *usrP) 2133d71ae5a4SJacob Faibussowitsch { 2134d763cef2SBarry Smith PetscFunctionBegin; 21350700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2136e71120c6SJed Brown *(void **)usrP = ts->user; 21373ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2138d763cef2SBarry Smith } 2139d763cef2SBarry Smith 2140d763cef2SBarry Smith /*@ 2141bcf0153eSBarry Smith TSGetStepNumber - Gets the number of time steps completed. 2142d763cef2SBarry Smith 2143d763cef2SBarry Smith Not Collective 2144d763cef2SBarry Smith 2145d763cef2SBarry Smith Input Parameter: 2146bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2147d763cef2SBarry Smith 2148d763cef2SBarry Smith Output Parameter: 214980275a0aSLisandro Dalcin . steps - number of steps completed so far 2150d763cef2SBarry Smith 2151d763cef2SBarry Smith Level: intermediate 2152d763cef2SBarry Smith 2153bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetTime()`, `TSGetTimeStep()`, `TSSetPreStep()`, `TSSetPreStage()`, `TSSetPostStage()`, `TSSetPostStep()` 2154d763cef2SBarry Smith @*/ 2155d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetStepNumber(TS ts, PetscInt *steps) 2156d71ae5a4SJacob Faibussowitsch { 2157d763cef2SBarry Smith PetscFunctionBegin; 21580700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 215980275a0aSLisandro Dalcin PetscValidIntPointer(steps, 2); 216080275a0aSLisandro Dalcin *steps = ts->steps; 21613ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 216280275a0aSLisandro Dalcin } 216380275a0aSLisandro Dalcin 216480275a0aSLisandro Dalcin /*@ 216580275a0aSLisandro Dalcin TSSetStepNumber - Sets the number of steps completed. 216680275a0aSLisandro Dalcin 2167c3339decSBarry Smith Logically Collective 216880275a0aSLisandro Dalcin 216980275a0aSLisandro Dalcin Input Parameters: 2170bcf0153eSBarry Smith + ts - the `TS` context 217180275a0aSLisandro Dalcin - steps - number of steps completed so far 217280275a0aSLisandro Dalcin 2173bcf0153eSBarry Smith Level: developer 2174bcf0153eSBarry Smith 2175bcf0153eSBarry Smith Note: 2176bcf0153eSBarry Smith For most uses of the `TS` solvers the user need not explicitly call 2177bcf0153eSBarry Smith `TSSetStepNumber()`, as the step counter is appropriately updated in 2178bcf0153eSBarry Smith `TSSolve()`/`TSStep()`/`TSRollBack()`. Power users may call this routine to 217980275a0aSLisandro Dalcin reinitialize timestepping by setting the step counter to zero (and time 218080275a0aSLisandro Dalcin to the initial time) to solve a similar problem with different initial 218180275a0aSLisandro Dalcin conditions or parameters. Other possible use case is to continue 2182195e9b02SBarry Smith timestepping from a previously interrupted run in such a way that `TS` 218380275a0aSLisandro Dalcin monitors will be called with a initial nonzero step counter. 218480275a0aSLisandro Dalcin 2185bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetStepNumber()`, `TSSetTime()`, `TSSetTimeStep()`, `TSSetSolution()` 218680275a0aSLisandro Dalcin @*/ 2187d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetStepNumber(TS ts, PetscInt steps) 2188d71ae5a4SJacob Faibussowitsch { 218980275a0aSLisandro Dalcin PetscFunctionBegin; 219080275a0aSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 219180275a0aSLisandro Dalcin PetscValidLogicalCollectiveInt(ts, steps, 2); 21923c633725SBarry Smith PetscCheck(steps >= 0, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Step number must be non-negative"); 219380275a0aSLisandro Dalcin ts->steps = steps; 21943ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2195d763cef2SBarry Smith } 2196d763cef2SBarry Smith 2197d763cef2SBarry Smith /*@ 2198d763cef2SBarry Smith TSSetTimeStep - Allows one to reset the timestep at any time, 2199d763cef2SBarry Smith useful for simple pseudo-timestepping codes. 2200d763cef2SBarry Smith 2201c3339decSBarry Smith Logically Collective 2202d763cef2SBarry Smith 2203d763cef2SBarry Smith Input Parameters: 2204bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2205d763cef2SBarry Smith - time_step - the size of the timestep 2206d763cef2SBarry Smith 2207d763cef2SBarry Smith Level: intermediate 2208d763cef2SBarry Smith 2209bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSPSEUDO`, `TSGetTimeStep()`, `TSSetTime()` 2210d763cef2SBarry Smith @*/ 2211d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTimeStep(TS ts, PetscReal time_step) 2212d71ae5a4SJacob Faibussowitsch { 2213d763cef2SBarry Smith PetscFunctionBegin; 22140700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2215c5eb9154SBarry Smith PetscValidLogicalCollectiveReal(ts, time_step, 2); 2216d763cef2SBarry Smith ts->time_step = time_step; 22173ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2218d763cef2SBarry Smith } 2219d763cef2SBarry Smith 2220a43b19c4SJed Brown /*@ 222149354f04SShri Abhyankar TSSetExactFinalTime - Determines whether to adapt the final time step to 222249354f04SShri Abhyankar match the exact final time, interpolate solution to the exact final time, 2223bcf0153eSBarry Smith or just return at the final time `TS` computed. 2224a43b19c4SJed Brown 2225c3339decSBarry Smith Logically Collective 2226a43b19c4SJed Brown 2227d8d19677SJose E. Roman Input Parameters: 2228a43b19c4SJed Brown + ts - the time-step context 222949354f04SShri Abhyankar - eftopt - exact final time option 2230bcf0153eSBarry Smith .vb 2231bcf0153eSBarry Smith TS_EXACTFINALTIME_STEPOVER - Don't do anything if final time is exceeded 2232bcf0153eSBarry Smith TS_EXACTFINALTIME_INTERPOLATE - Interpolate back to final time 2233bcf0153eSBarry Smith TS_EXACTFINALTIME_MATCHSTEP - Adapt final time step to match the final time 2234bcf0153eSBarry Smith .ve 2235a43b19c4SJed Brown 2236bcf0153eSBarry Smith Options Database Key: 2237feed9e9dSBarry Smith . -ts_exact_final_time <stepover,interpolate,matchstep> - select the final step at runtime 2238feed9e9dSBarry Smith 2239a43b19c4SJed Brown Level: beginner 2240a43b19c4SJed Brown 2241bcf0153eSBarry Smith Note: 2242bcf0153eSBarry Smith If you use the option `TS_EXACTFINALTIME_STEPOVER` the solution may be at a very different time 2243bcf0153eSBarry Smith then the final time you selected. 2244bcf0153eSBarry Smith 2245bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSExactFinalTimeOption`, `TSGetExactFinalTime()` 2246a43b19c4SJed Brown @*/ 2247d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetExactFinalTime(TS ts, TSExactFinalTimeOption eftopt) 2248d71ae5a4SJacob Faibussowitsch { 2249a43b19c4SJed Brown PetscFunctionBegin; 2250a43b19c4SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 225149354f04SShri Abhyankar PetscValidLogicalCollectiveEnum(ts, eftopt, 2); 225249354f04SShri Abhyankar ts->exact_final_time = eftopt; 22533ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2254a43b19c4SJed Brown } 2255a43b19c4SJed Brown 2256d763cef2SBarry Smith /*@ 2257bcf0153eSBarry Smith TSGetExactFinalTime - Gets the exact final time option set with `TSSetExactFinalTime()` 2258f6953c82SLisandro Dalcin 2259f6953c82SLisandro Dalcin Not Collective 2260f6953c82SLisandro Dalcin 2261f6953c82SLisandro Dalcin Input Parameter: 2262bcf0153eSBarry Smith . ts - the `TS` context 2263f6953c82SLisandro Dalcin 2264f6953c82SLisandro Dalcin Output Parameter: 2265f6953c82SLisandro Dalcin . eftopt - exact final time option 2266f6953c82SLisandro Dalcin 2267f6953c82SLisandro Dalcin Level: beginner 2268f6953c82SLisandro Dalcin 2269bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSExactFinalTimeOption`, `TSSetExactFinalTime()` 2270f6953c82SLisandro Dalcin @*/ 2271d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetExactFinalTime(TS ts, TSExactFinalTimeOption *eftopt) 2272d71ae5a4SJacob Faibussowitsch { 2273f6953c82SLisandro Dalcin PetscFunctionBegin; 2274f6953c82SLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2275f6953c82SLisandro Dalcin PetscValidPointer(eftopt, 2); 2276f6953c82SLisandro Dalcin *eftopt = ts->exact_final_time; 22773ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2278f6953c82SLisandro Dalcin } 2279f6953c82SLisandro Dalcin 2280f6953c82SLisandro Dalcin /*@ 2281d763cef2SBarry Smith TSGetTimeStep - Gets the current timestep size. 2282d763cef2SBarry Smith 2283d763cef2SBarry Smith Not Collective 2284d763cef2SBarry Smith 2285d763cef2SBarry Smith Input Parameter: 2286bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2287d763cef2SBarry Smith 2288d763cef2SBarry Smith Output Parameter: 2289d763cef2SBarry Smith . dt - the current timestep size 2290d763cef2SBarry Smith 2291d763cef2SBarry Smith Level: intermediate 2292d763cef2SBarry Smith 2293bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetTimeStep()`, `TSGetTime()` 2294d763cef2SBarry Smith @*/ 2295d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeStep(TS ts, PetscReal *dt) 2296d71ae5a4SJacob Faibussowitsch { 2297d763cef2SBarry Smith PetscFunctionBegin; 22980700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2299f7cf8827SBarry Smith PetscValidRealPointer(dt, 2); 2300d763cef2SBarry Smith *dt = ts->time_step; 23013ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2302d763cef2SBarry Smith } 2303d763cef2SBarry Smith 2304d8e5e3e6SSatish Balay /*@ 2305d763cef2SBarry Smith TSGetSolution - Returns the solution at the present timestep. It 2306d763cef2SBarry Smith is valid to call this routine inside the function that you are evaluating 2307d763cef2SBarry Smith in order to move to the new timestep. This vector not changed until 2308d763cef2SBarry Smith the solution at the next timestep has been calculated. 2309d763cef2SBarry Smith 2310bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 2311d763cef2SBarry Smith 2312d763cef2SBarry Smith Input Parameter: 2313bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2314d763cef2SBarry Smith 2315d763cef2SBarry Smith Output Parameter: 2316d763cef2SBarry Smith . v - the vector containing the solution 2317d763cef2SBarry Smith 2318d763cef2SBarry Smith Level: intermediate 2319d763cef2SBarry Smith 2320bcf0153eSBarry Smith Note: 2321bcf0153eSBarry Smith If you used `TSSetExactFinalTime`(ts,`TS_EXACTFINALTIME_MATCHSTEP`); this does not return the solution at the requested 2322bcf0153eSBarry Smith final time. It returns the solution at the next timestep. 2323d763cef2SBarry Smith 2324bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetTimeStep()`, `TSGetTime()`, `TSGetSolveTime()`, `TSGetSolutionComponents()`, `TSSetSolutionFunction()` 2325d763cef2SBarry Smith @*/ 2326d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSolution(TS ts, Vec *v) 2327d71ae5a4SJacob Faibussowitsch { 2328d763cef2SBarry Smith PetscFunctionBegin; 23290700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 23304482741eSBarry Smith PetscValidPointer(v, 2); 23318737fe31SLisandro Dalcin *v = ts->vec_sol; 23323ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2333d763cef2SBarry Smith } 2334d763cef2SBarry Smith 233503fe5f5eSDebojyoti Ghosh /*@ 2336b2bf4f3aSDebojyoti Ghosh TSGetSolutionComponents - Returns any solution components at the present 233703fe5f5eSDebojyoti Ghosh timestep, if available for the time integration method being used. 2338b2bf4f3aSDebojyoti Ghosh Solution components are quantities that share the same size and 233903fe5f5eSDebojyoti Ghosh structure as the solution vector. 234003fe5f5eSDebojyoti Ghosh 2341bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 234203fe5f5eSDebojyoti Ghosh 234303fe5f5eSDebojyoti Ghosh Parameters : 2344bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` (input parameter). 2345195e9b02SBarry Smith . n - If v is `NULL`, then the number of solution components is 2346b2bf4f3aSDebojyoti Ghosh returned through n, else the n-th solution component is 234703fe5f5eSDebojyoti Ghosh returned in v. 2348a2b725a8SWilliam Gropp - v - the vector containing the n-th solution component 2349195e9b02SBarry Smith (may be `NULL` to use this function to find out 2350b2bf4f3aSDebojyoti Ghosh the number of solutions components). 235103fe5f5eSDebojyoti Ghosh 23524cdd57e5SDebojyoti Ghosh Level: advanced 235303fe5f5eSDebojyoti Ghosh 2354bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetSolution()` 235503fe5f5eSDebojyoti Ghosh @*/ 2356d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSolutionComponents(TS ts, PetscInt *n, Vec *v) 2357d71ae5a4SJacob Faibussowitsch { 235803fe5f5eSDebojyoti Ghosh PetscFunctionBegin; 235903fe5f5eSDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2360b2bf4f3aSDebojyoti Ghosh if (!ts->ops->getsolutioncomponents) *n = 0; 2361dbbe0bcdSBarry Smith else PetscUseTypeMethod(ts, getsolutioncomponents, n, v); 23623ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 236303fe5f5eSDebojyoti Ghosh } 236403fe5f5eSDebojyoti Ghosh 23654cdd57e5SDebojyoti Ghosh /*@ 23664cdd57e5SDebojyoti Ghosh TSGetAuxSolution - Returns an auxiliary solution at the present 23674cdd57e5SDebojyoti Ghosh timestep, if available for the time integration method being used. 23684cdd57e5SDebojyoti Ghosh 2369bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 23704cdd57e5SDebojyoti Ghosh 23714cdd57e5SDebojyoti Ghosh Parameters : 2372bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` (input parameter). 2373a2b725a8SWilliam Gropp - v - the vector containing the auxiliary solution 23744cdd57e5SDebojyoti Ghosh 23754cdd57e5SDebojyoti Ghosh Level: intermediate 23764cdd57e5SDebojyoti Ghosh 2377bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetSolution()` 23784cdd57e5SDebojyoti Ghosh @*/ 2379d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetAuxSolution(TS ts, Vec *v) 2380d71ae5a4SJacob Faibussowitsch { 23814cdd57e5SDebojyoti Ghosh PetscFunctionBegin; 23824cdd57e5SDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2383dbbe0bcdSBarry Smith if (ts->ops->getauxsolution) PetscUseTypeMethod(ts, getauxsolution, v); 23841e66621cSBarry Smith else PetscCall(VecZeroEntries(*v)); 23853ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 23864cdd57e5SDebojyoti Ghosh } 23874cdd57e5SDebojyoti Ghosh 23884cdd57e5SDebojyoti Ghosh /*@ 23894cdd57e5SDebojyoti Ghosh TSGetTimeError - Returns the estimated error vector, if the chosen 2390bcf0153eSBarry Smith `TSType` has an error estimation functionality and `TSSetTimeError()` was called 23914cdd57e5SDebojyoti Ghosh 2392bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 23939657682dSDebojyoti Ghosh 23944cdd57e5SDebojyoti Ghosh Parameters : 2395bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` (input parameter). 2396657c1e31SEmil Constantinescu . n - current estimate (n=0) or previous one (n=-1) 2397a2b725a8SWilliam Gropp - v - the vector containing the error (same size as the solution). 23984cdd57e5SDebojyoti Ghosh 23994cdd57e5SDebojyoti Ghosh Level: intermediate 24004cdd57e5SDebojyoti Ghosh 2401bcf0153eSBarry Smith Note: 2402bcf0153eSBarry Smith MUST call after `TSSetUp()` 24034cdd57e5SDebojyoti Ghosh 2404bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSGetSolution()`, `TSSetTimeError()` 24054cdd57e5SDebojyoti Ghosh @*/ 2406d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeError(TS ts, PetscInt n, Vec *v) 2407d71ae5a4SJacob Faibussowitsch { 24084cdd57e5SDebojyoti Ghosh PetscFunctionBegin; 24094cdd57e5SDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2410dbbe0bcdSBarry Smith if (ts->ops->gettimeerror) PetscUseTypeMethod(ts, gettimeerror, n, v); 24111e66621cSBarry Smith else PetscCall(VecZeroEntries(*v)); 24123ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 24134cdd57e5SDebojyoti Ghosh } 24144cdd57e5SDebojyoti Ghosh 241557df6a1bSDebojyoti Ghosh /*@ 241657df6a1bSDebojyoti Ghosh TSSetTimeError - Sets the estimated error vector, if the chosen 2417bcf0153eSBarry Smith `TSType` has an error estimation functionality. This can be used 241857df6a1bSDebojyoti Ghosh to restart such a time integrator with a given error vector. 241957df6a1bSDebojyoti Ghosh 2420bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 242157df6a1bSDebojyoti Ghosh 242257df6a1bSDebojyoti Ghosh Parameters : 2423bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` (input parameter). 2424a2b725a8SWilliam Gropp - v - the vector containing the error (same size as the solution). 242557df6a1bSDebojyoti Ghosh 242657df6a1bSDebojyoti Ghosh Level: intermediate 242757df6a1bSDebojyoti Ghosh 2428bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetSolution()`, `TSGetTimeError)` 242957df6a1bSDebojyoti Ghosh @*/ 2430d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTimeError(TS ts, Vec v) 2431d71ae5a4SJacob Faibussowitsch { 243257df6a1bSDebojyoti Ghosh PetscFunctionBegin; 243357df6a1bSDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 24343c633725SBarry Smith PetscCheck(ts->setupcalled, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "Must call TSSetUp() first"); 2435dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, settimeerror, v); 24363ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 243757df6a1bSDebojyoti Ghosh } 243857df6a1bSDebojyoti Ghosh 2439bdad233fSMatthew Knepley /* ----- Routines to initialize and destroy a timestepper ---- */ 2440d8e5e3e6SSatish Balay /*@ 2441bdad233fSMatthew Knepley TSSetProblemType - Sets the type of problem to be solved. 2442d763cef2SBarry Smith 2443bdad233fSMatthew Knepley Not collective 2444d763cef2SBarry Smith 2445bdad233fSMatthew Knepley Input Parameters: 2446bcf0153eSBarry Smith + ts - The `TS` 2447bcf0153eSBarry Smith - type - One of `TS_LINEAR`, `TS_NONLINEAR` where these types refer to problems of the forms 2448d763cef2SBarry Smith .vb 24490910c330SBarry Smith U_t - A U = 0 (linear) 24500910c330SBarry Smith U_t - A(t) U = 0 (linear) 24510910c330SBarry Smith F(t,U,U_t) = 0 (nonlinear) 2452d763cef2SBarry Smith .ve 2453d763cef2SBarry Smith 2454d763cef2SBarry Smith Level: beginner 2455d763cef2SBarry Smith 2456bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSSetUp()`, `TSProblemType`, `TS` 2457d763cef2SBarry Smith @*/ 2458d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetProblemType(TS ts, TSProblemType type) 2459d71ae5a4SJacob Faibussowitsch { 2460d763cef2SBarry Smith PetscFunctionBegin; 24610700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2462bdad233fSMatthew Knepley ts->problem_type = type; 24639e2a6581SJed Brown if (type == TS_LINEAR) { 24649e2a6581SJed Brown SNES snes; 24659566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 24669566063dSJacob Faibussowitsch PetscCall(SNESSetType(snes, SNESKSPONLY)); 24679e2a6581SJed Brown } 24683ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2469d763cef2SBarry Smith } 2470d763cef2SBarry Smith 2471bdad233fSMatthew Knepley /*@C 2472bdad233fSMatthew Knepley TSGetProblemType - Gets the type of problem to be solved. 2473bdad233fSMatthew Knepley 2474bdad233fSMatthew Knepley Not collective 2475bdad233fSMatthew Knepley 2476bdad233fSMatthew Knepley Input Parameter: 2477bcf0153eSBarry Smith . ts - The `TS` 2478bdad233fSMatthew Knepley 2479bdad233fSMatthew Knepley Output Parameter: 2480bcf0153eSBarry Smith . type - One of `TS_LINEAR`, `TS_NONLINEAR` where these types refer to problems of the forms 2481bdad233fSMatthew Knepley .vb 2482089b2837SJed Brown M U_t = A U 2483089b2837SJed Brown M(t) U_t = A(t) U 2484b5abc632SBarry Smith F(t,U,U_t) 2485bdad233fSMatthew Knepley .ve 2486bdad233fSMatthew Knepley 2487bdad233fSMatthew Knepley Level: beginner 2488bdad233fSMatthew Knepley 2489bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSSetUp()`, `TSProblemType`, `TS` 2490bdad233fSMatthew Knepley @*/ 2491d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetProblemType(TS ts, TSProblemType *type) 2492d71ae5a4SJacob Faibussowitsch { 2493bdad233fSMatthew Knepley PetscFunctionBegin; 24940700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 24954482741eSBarry Smith PetscValidIntPointer(type, 2); 2496bdad233fSMatthew Knepley *type = ts->problem_type; 24973ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2498bdad233fSMatthew Knepley } 2499d763cef2SBarry Smith 2500303a5415SBarry Smith /* 2501303a5415SBarry Smith Attempt to check/preset a default value for the exact final time option. This is needed at the beginning of TSSolve() and in TSSetUp() 2502303a5415SBarry Smith */ 2503d71ae5a4SJacob Faibussowitsch static PetscErrorCode TSSetExactFinalTimeDefault(TS ts) 2504d71ae5a4SJacob Faibussowitsch { 2505303a5415SBarry Smith PetscBool isnone; 2506303a5415SBarry Smith 2507303a5415SBarry Smith PetscFunctionBegin; 25089566063dSJacob Faibussowitsch PetscCall(TSGetAdapt(ts, &ts->adapt)); 25099566063dSJacob Faibussowitsch PetscCall(TSAdaptSetDefaultType(ts->adapt, ts->default_adapt_type)); 2510303a5415SBarry Smith 25119566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)ts->adapt, TSADAPTNONE, &isnone)); 25121e66621cSBarry Smith if (!isnone && ts->exact_final_time == TS_EXACTFINALTIME_UNSPECIFIED) ts->exact_final_time = TS_EXACTFINALTIME_MATCHSTEP; 25131e66621cSBarry Smith else if (ts->exact_final_time == TS_EXACTFINALTIME_UNSPECIFIED) ts->exact_final_time = TS_EXACTFINALTIME_INTERPOLATE; 25143ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2515303a5415SBarry Smith } 2516303a5415SBarry Smith 2517d763cef2SBarry Smith /*@ 2518303a5415SBarry Smith TSSetUp - Sets up the internal data structures for the later use of a timestepper. 2519d763cef2SBarry Smith 2520c3339decSBarry Smith Collective 2521d763cef2SBarry Smith 2522d763cef2SBarry Smith Input Parameter: 2523bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2524d763cef2SBarry Smith 2525d763cef2SBarry Smith Level: advanced 2526d763cef2SBarry Smith 2527bcf0153eSBarry Smith Note: 2528bcf0153eSBarry Smith For basic use of the `TS` solvers the user need not explicitly call 2529bcf0153eSBarry Smith `TSSetUp()`, since these actions will automatically occur during 2530bcf0153eSBarry Smith the call to `TSStep()` or `TSSolve()`. However, if one wishes to control this 2531bcf0153eSBarry Smith phase separately, `TSSetUp()` should be called after `TSCreate()` 2532bcf0153eSBarry Smith and optional routines of the form TSSetXXX(), but before `TSStep()` and `TSSolve()`. 2533bcf0153eSBarry Smith 2534bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSCreate()`, `TS`, `TSStep()`, `TSDestroy()`, `TSSolve()` 2535d763cef2SBarry Smith @*/ 2536d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetUp(TS ts) 2537d71ae5a4SJacob Faibussowitsch { 25386c6b9e74SPeter Brune DM dm; 25396c6b9e74SPeter Brune PetscErrorCode (*func)(SNES, Vec, Vec, void *); 2540d1e9a80fSBarry Smith PetscErrorCode (*jac)(SNES, Vec, Mat, Mat, void *); 2541cd11d68dSLisandro Dalcin TSIFunction ifun; 25426c6b9e74SPeter Brune TSIJacobian ijac; 2543efe9872eSLisandro Dalcin TSI2Jacobian i2jac; 25446c6b9e74SPeter Brune TSRHSJacobian rhsjac; 2545d763cef2SBarry Smith 2546d763cef2SBarry Smith PetscFunctionBegin; 25470700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 25483ba16761SJacob Faibussowitsch if (ts->setupcalled) PetscFunctionReturn(PETSC_SUCCESS); 2549277b19d0SLisandro Dalcin 25507adad957SLisandro Dalcin if (!((PetscObject)ts)->type_name) { 25519566063dSJacob Faibussowitsch PetscCall(TSGetIFunction(ts, NULL, &ifun, NULL)); 25529566063dSJacob Faibussowitsch PetscCall(TSSetType(ts, ifun ? TSBEULER : TSEULER)); 2553d763cef2SBarry Smith } 2554277b19d0SLisandro Dalcin 25551a638600SStefano Zampini if (!ts->vec_sol) { 25561e66621cSBarry Smith PetscCheck(ts->dm, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "Must call TSSetSolution() first"); 25579566063dSJacob Faibussowitsch PetscCall(DMCreateGlobalVector(ts->dm, &ts->vec_sol)); 25581a638600SStefano Zampini } 2559277b19d0SLisandro Dalcin 25604a658b32SHong Zhang if (ts->tspan) { 25611e66621cSBarry Smith if (!ts->tspan->vecs_sol) PetscCall(VecDuplicateVecs(ts->vec_sol, ts->tspan->num_span_times, &ts->tspan->vecs_sol)); 25624a658b32SHong Zhang } 2563298bade4SHong Zhang if (!ts->Jacp && ts->Jacprhs) { /* IJacobianP shares the same matrix with RHSJacobianP if only RHSJacobianP is provided */ 25649566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)ts->Jacprhs)); 2565298bade4SHong Zhang ts->Jacp = ts->Jacprhs; 2566298bade4SHong Zhang } 2567298bade4SHong Zhang 2568cd4cee2dSHong Zhang if (ts->quadraturets) { 25699566063dSJacob Faibussowitsch PetscCall(TSSetUp(ts->quadraturets)); 25709566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_costintegrand)); 25719566063dSJacob Faibussowitsch PetscCall(VecDuplicate(ts->quadraturets->vec_sol, &ts->vec_costintegrand)); 2572cd4cee2dSHong Zhang } 2573cd4cee2dSHong Zhang 25749566063dSJacob Faibussowitsch PetscCall(TSGetRHSJacobian(ts, NULL, NULL, &rhsjac, NULL)); 2575f23ba4b3SHong Zhang if (rhsjac == TSComputeRHSJacobianConstant) { 2576e1244c69SJed Brown Mat Amat, Pmat; 2577e1244c69SJed Brown SNES snes; 25789566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 25799566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(snes, &Amat, &Pmat, NULL, NULL)); 2580e1244c69SJed Brown /* Matching matrices implies that an IJacobian is NOT set, because if it had been set, the IJacobian's matrix would 2581e1244c69SJed Brown * have displaced the RHS matrix */ 2582971015bcSStefano Zampini if (Amat && Amat == ts->Arhs) { 2583abc0d4abSBarry Smith /* we need to copy the values of the matrix because for the constant Jacobian case the user will never set the numerical values in this new location */ 25849566063dSJacob Faibussowitsch PetscCall(MatDuplicate(ts->Arhs, MAT_COPY_VALUES, &Amat)); 25859566063dSJacob Faibussowitsch PetscCall(SNESSetJacobian(snes, Amat, NULL, NULL, NULL)); 25869566063dSJacob Faibussowitsch PetscCall(MatDestroy(&Amat)); 2587e1244c69SJed Brown } 2588971015bcSStefano Zampini if (Pmat && Pmat == ts->Brhs) { 25899566063dSJacob Faibussowitsch PetscCall(MatDuplicate(ts->Brhs, MAT_COPY_VALUES, &Pmat)); 25909566063dSJacob Faibussowitsch PetscCall(SNESSetJacobian(snes, NULL, Pmat, NULL, NULL)); 25919566063dSJacob Faibussowitsch PetscCall(MatDestroy(&Pmat)); 2592e1244c69SJed Brown } 2593e1244c69SJed Brown } 25942ffb9264SLisandro Dalcin 25959566063dSJacob Faibussowitsch PetscCall(TSGetAdapt(ts, &ts->adapt)); 25969566063dSJacob Faibussowitsch PetscCall(TSAdaptSetDefaultType(ts->adapt, ts->default_adapt_type)); 25972ffb9264SLisandro Dalcin 2598dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, setup); 2599277b19d0SLisandro Dalcin 26009566063dSJacob Faibussowitsch PetscCall(TSSetExactFinalTimeDefault(ts)); 26012ffb9264SLisandro Dalcin 2602a6772fa2SLisandro Dalcin /* In the case where we've set a DMTSFunction or what have you, we need the default SNESFunction 26036c6b9e74SPeter Brune to be set right but can't do it elsewhere due to the overreliance on ctx=ts. 26046c6b9e74SPeter Brune */ 26059566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 26069566063dSJacob Faibussowitsch PetscCall(DMSNESGetFunction(dm, &func, NULL)); 26071e66621cSBarry Smith if (!func) PetscCall(DMSNESSetFunction(dm, SNESTSFormFunction, ts)); 26081e66621cSBarry Smith 2609a6772fa2SLisandro Dalcin /* If the SNES doesn't have a jacobian set and the TS has an ijacobian or rhsjacobian set, set the SNES to use it. 26106c6b9e74SPeter Brune Otherwise, the SNES will use coloring internally to form the Jacobian. 26116c6b9e74SPeter Brune */ 26129566063dSJacob Faibussowitsch PetscCall(DMSNESGetJacobian(dm, &jac, NULL)); 26139566063dSJacob Faibussowitsch PetscCall(DMTSGetIJacobian(dm, &ijac, NULL)); 26149566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Jacobian(dm, &i2jac, NULL)); 26159566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, &rhsjac, NULL)); 26161e66621cSBarry Smith if (!jac && (ijac || i2jac || rhsjac)) PetscCall(DMSNESSetJacobian(dm, SNESTSFormJacobian, ts)); 2617c0517034SDebojyoti Ghosh 2618c0517034SDebojyoti Ghosh /* if time integration scheme has a starting method, call it */ 2619dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, startingmethod); 2620c0517034SDebojyoti Ghosh 2621277b19d0SLisandro Dalcin ts->setupcalled = PETSC_TRUE; 26223ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2623277b19d0SLisandro Dalcin } 2624277b19d0SLisandro Dalcin 2625f6a906c0SBarry Smith /*@ 2626bcf0153eSBarry Smith TSReset - Resets a `TS` context and removes any allocated `Vec`s and `Mat`s. 2627277b19d0SLisandro Dalcin 2628c3339decSBarry Smith Collective 2629277b19d0SLisandro Dalcin 2630277b19d0SLisandro Dalcin Input Parameter: 2631bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2632277b19d0SLisandro Dalcin 2633277b19d0SLisandro Dalcin Level: beginner 2634277b19d0SLisandro Dalcin 2635bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSCreate()`, `TSSetup()`, `TSDestroy()` 2636277b19d0SLisandro Dalcin @*/ 2637d71ae5a4SJacob Faibussowitsch PetscErrorCode TSReset(TS ts) 2638d71ae5a4SJacob Faibussowitsch { 26391d06f6b3SHong Zhang TS_RHSSplitLink ilink = ts->tsrhssplit, next; 2640277b19d0SLisandro Dalcin 2641277b19d0SLisandro Dalcin PetscFunctionBegin; 2642277b19d0SLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2643b18ea86cSHong Zhang 2644dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, reset); 26459566063dSJacob Faibussowitsch if (ts->snes) PetscCall(SNESReset(ts->snes)); 26469566063dSJacob Faibussowitsch if (ts->adapt) PetscCall(TSAdaptReset(ts->adapt)); 2647bbd56ea5SKarl Rupp 26489566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Arhs)); 26499566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Brhs)); 26509566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->Frhs)); 26519566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_sol)); 26529566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_dot)); 26539566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vatol)); 26549566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vrtol)); 26559566063dSJacob Faibussowitsch PetscCall(VecDestroyVecs(ts->nwork, &ts->work)); 2656bbd56ea5SKarl Rupp 26579566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Jacprhs)); 26589566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Jacp)); 26591baa6e33SBarry Smith if (ts->forward_solve) PetscCall(TSForwardReset(ts)); 2660cd4cee2dSHong Zhang if (ts->quadraturets) { 26619566063dSJacob Faibussowitsch PetscCall(TSReset(ts->quadraturets)); 26629566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_costintegrand)); 2663cd4cee2dSHong Zhang } 26641d06f6b3SHong Zhang while (ilink) { 26651d06f6b3SHong Zhang next = ilink->next; 26669566063dSJacob Faibussowitsch PetscCall(TSDestroy(&ilink->ts)); 26679566063dSJacob Faibussowitsch PetscCall(PetscFree(ilink->splitname)); 26689566063dSJacob Faibussowitsch PetscCall(ISDestroy(&ilink->is)); 26699566063dSJacob Faibussowitsch PetscCall(PetscFree(ilink)); 26701d06f6b3SHong Zhang ilink = next; 267187f4e208SHong Zhang } 26726bf673ebSJoe Pusztay ts->tsrhssplit = NULL; 2673545aaa6fSHong Zhang ts->num_rhs_splits = 0; 26744a658b32SHong Zhang if (ts->tspan) { 26754a658b32SHong Zhang PetscCall(PetscFree(ts->tspan->span_times)); 26764a658b32SHong Zhang PetscCall(VecDestroyVecs(ts->tspan->num_span_times, &ts->tspan->vecs_sol)); 26774a658b32SHong Zhang PetscCall(PetscFree(ts->tspan)); 26784a658b32SHong Zhang } 2679277b19d0SLisandro Dalcin ts->setupcalled = PETSC_FALSE; 26803ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2681d763cef2SBarry Smith } 2682d763cef2SBarry Smith 26831fb7b255SJunchao Zhang /*@C 2684d763cef2SBarry Smith TSDestroy - Destroys the timestepper context that was created 2685bcf0153eSBarry Smith with `TSCreate()`. 2686d763cef2SBarry Smith 2687c3339decSBarry Smith Collective 2688d763cef2SBarry Smith 2689d763cef2SBarry Smith Input Parameter: 2690bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2691d763cef2SBarry Smith 2692d763cef2SBarry Smith Level: beginner 2693d763cef2SBarry Smith 2694bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSCreate()`, `TSSetUp()`, `TSSolve()` 2695d763cef2SBarry Smith @*/ 2696d71ae5a4SJacob Faibussowitsch PetscErrorCode TSDestroy(TS *ts) 2697d71ae5a4SJacob Faibussowitsch { 2698d763cef2SBarry Smith PetscFunctionBegin; 26993ba16761SJacob Faibussowitsch if (!*ts) PetscFunctionReturn(PETSC_SUCCESS); 2700ecf68647SHong Zhang PetscValidHeaderSpecific(*ts, TS_CLASSID, 1); 27019371c9d4SSatish Balay if (--((PetscObject)(*ts))->refct > 0) { 27029371c9d4SSatish Balay *ts = NULL; 27033ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 27049371c9d4SSatish Balay } 2705d763cef2SBarry Smith 27069566063dSJacob Faibussowitsch PetscCall(TSReset(*ts)); 27079566063dSJacob Faibussowitsch PetscCall(TSAdjointReset(*ts)); 27081e66621cSBarry Smith if ((*ts)->forward_solve) PetscCall(TSForwardReset(*ts)); 27091e66621cSBarry Smith 2710e04113cfSBarry Smith /* if memory was published with SAWs then destroy it */ 27119566063dSJacob Faibussowitsch PetscCall(PetscObjectSAWsViewOff((PetscObject)*ts)); 2712dbbe0bcdSBarry Smith PetscTryTypeMethod((*ts), destroy); 27136d4c513bSLisandro Dalcin 27149566063dSJacob Faibussowitsch PetscCall(TSTrajectoryDestroy(&(*ts)->trajectory)); 2715bc952696SBarry Smith 27169566063dSJacob Faibussowitsch PetscCall(TSAdaptDestroy(&(*ts)->adapt)); 27179566063dSJacob Faibussowitsch PetscCall(TSEventDestroy(&(*ts)->event)); 27186427ac75SLisandro Dalcin 27199566063dSJacob Faibussowitsch PetscCall(SNESDestroy(&(*ts)->snes)); 27209566063dSJacob Faibussowitsch PetscCall(DMDestroy(&(*ts)->dm)); 27219566063dSJacob Faibussowitsch PetscCall(TSMonitorCancel((*ts))); 27229566063dSJacob Faibussowitsch PetscCall(TSAdjointMonitorCancel((*ts))); 27236d4c513bSLisandro Dalcin 27249566063dSJacob Faibussowitsch PetscCall(TSDestroy(&(*ts)->quadraturets)); 27259566063dSJacob Faibussowitsch PetscCall(PetscHeaderDestroy(ts)); 27263ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2727d763cef2SBarry Smith } 2728d763cef2SBarry Smith 2729d8e5e3e6SSatish Balay /*@ 2730bcf0153eSBarry Smith TSGetSNES - Returns the `SNES` (nonlinear solver) associated with 2731bcf0153eSBarry Smith a `TS` (timestepper) context. Valid only for nonlinear problems. 2732d763cef2SBarry Smith 2733bcf0153eSBarry Smith Not Collective, but snes is parallel if ts is parallel 2734d763cef2SBarry Smith 2735d763cef2SBarry Smith Input Parameter: 2736bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2737d763cef2SBarry Smith 2738d763cef2SBarry Smith Output Parameter: 2739d763cef2SBarry Smith . snes - the nonlinear solver context 2740d763cef2SBarry Smith 2741d763cef2SBarry Smith Level: beginner 2742d763cef2SBarry Smith 2743bcf0153eSBarry Smith Notes: 2744bcf0153eSBarry Smith The user can then directly manipulate the `SNES` context to set various 2745bcf0153eSBarry Smith options, etc. Likewise, the user can then extract and manipulate the 2746bcf0153eSBarry Smith `KSP`, and `PC` contexts as well. 2747bcf0153eSBarry Smith 2748bcf0153eSBarry Smith `TSGetSNES()` does not work for integrators that do not use `SNES`; in 2749195e9b02SBarry Smith this case `TSGetSNES()` returns `NULL` in `snes`. 2750bcf0153eSBarry Smith 2751bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `SNES`, `TSCreate()`, `TSSetUp()`, `TSSolve()` 2752d763cef2SBarry Smith @*/ 2753d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSNES(TS ts, SNES *snes) 2754d71ae5a4SJacob Faibussowitsch { 2755d763cef2SBarry Smith PetscFunctionBegin; 27560700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 27574482741eSBarry Smith PetscValidPointer(snes, 2); 2758d372ba47SLisandro Dalcin if (!ts->snes) { 27599566063dSJacob Faibussowitsch PetscCall(SNESCreate(PetscObjectComm((PetscObject)ts), &ts->snes)); 27609566063dSJacob Faibussowitsch PetscCall(PetscObjectSetOptions((PetscObject)ts->snes, ((PetscObject)ts)->options)); 27619566063dSJacob Faibussowitsch PetscCall(SNESSetFunction(ts->snes, NULL, SNESTSFormFunction, ts)); 27629566063dSJacob Faibussowitsch PetscCall(PetscObjectIncrementTabLevel((PetscObject)ts->snes, (PetscObject)ts, 1)); 27639566063dSJacob Faibussowitsch if (ts->dm) PetscCall(SNESSetDM(ts->snes, ts->dm)); 27641e66621cSBarry Smith if (ts->problem_type == TS_LINEAR) PetscCall(SNESSetType(ts->snes, SNESKSPONLY)); 2765d372ba47SLisandro Dalcin } 2766d763cef2SBarry Smith *snes = ts->snes; 27673ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2768d763cef2SBarry Smith } 2769d763cef2SBarry Smith 2770deb2cd25SJed Brown /*@ 2771bcf0153eSBarry Smith TSSetSNES - Set the `SNES` (nonlinear solver) to be used by the timestepping context 2772deb2cd25SJed Brown 2773deb2cd25SJed Brown Collective 2774deb2cd25SJed Brown 2775d8d19677SJose E. Roman Input Parameters: 2776bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2777deb2cd25SJed Brown - snes - the nonlinear solver context 2778deb2cd25SJed Brown 2779deb2cd25SJed Brown Level: developer 2780deb2cd25SJed Brown 2781bcf0153eSBarry Smith Note: 2782bcf0153eSBarry Smith Most users should have the `TS` created by calling `TSGetSNES()` 2783bcf0153eSBarry Smith 2784bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `SNES`, `TSCreate()`, `TSSetUp()`, `TSSolve()`, `TSGetSNES()` 2785deb2cd25SJed Brown @*/ 2786d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetSNES(TS ts, SNES snes) 2787d71ae5a4SJacob Faibussowitsch { 2788d1e9a80fSBarry Smith PetscErrorCode (*func)(SNES, Vec, Mat, Mat, void *); 2789deb2cd25SJed Brown 2790deb2cd25SJed Brown PetscFunctionBegin; 2791deb2cd25SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2792deb2cd25SJed Brown PetscValidHeaderSpecific(snes, SNES_CLASSID, 2); 27939566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)snes)); 27949566063dSJacob Faibussowitsch PetscCall(SNESDestroy(&ts->snes)); 2795bbd56ea5SKarl Rupp 2796deb2cd25SJed Brown ts->snes = snes; 2797bbd56ea5SKarl Rupp 27989566063dSJacob Faibussowitsch PetscCall(SNESSetFunction(ts->snes, NULL, SNESTSFormFunction, ts)); 27999566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(ts->snes, NULL, NULL, &func, NULL)); 28001e66621cSBarry Smith if (func == SNESTSFormJacobian) PetscCall(SNESSetJacobian(ts->snes, NULL, NULL, SNESTSFormJacobian, ts)); 28013ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2802deb2cd25SJed Brown } 2803deb2cd25SJed Brown 2804d8e5e3e6SSatish Balay /*@ 2805bcf0153eSBarry Smith TSGetKSP - Returns the `KSP` (linear solver) associated with 2806bcf0153eSBarry Smith a `TS` (timestepper) context. 2807d763cef2SBarry Smith 2808195e9b02SBarry Smith Not Collective, but `ksp` is parallel if `ts` is parallel 2809d763cef2SBarry Smith 2810d763cef2SBarry Smith Input Parameter: 2811bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2812d763cef2SBarry Smith 2813d763cef2SBarry Smith Output Parameter: 281494b7f48cSBarry Smith . ksp - the nonlinear solver context 2815d763cef2SBarry Smith 2816d763cef2SBarry Smith Level: beginner 2817d763cef2SBarry Smith 2818bcf0153eSBarry Smith Notes: 2819bcf0153eSBarry Smith The user can then directly manipulate the `KSP` context to set various 2820bcf0153eSBarry Smith options, etc. Likewise, the user can then extract and manipulate the 2821bcf0153eSBarry Smith `PC` context as well. 2822bcf0153eSBarry Smith 2823bcf0153eSBarry Smith `TSGetKSP()` does not work for integrators that do not use `KSP`; 2824195e9b02SBarry Smith in this case `TSGetKSP()` returns `NULL` in `ksp`. 2825bcf0153eSBarry Smith 2826bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `SNES`, `KSP`, `TSCreate()`, `TSSetUp()`, `TSSolve()`, `TSGetSNES()` 2827d763cef2SBarry Smith @*/ 2828d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetKSP(TS ts, KSP *ksp) 2829d71ae5a4SJacob Faibussowitsch { 2830089b2837SJed Brown SNES snes; 2831d372ba47SLisandro Dalcin 2832d763cef2SBarry Smith PetscFunctionBegin; 28330700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 28344482741eSBarry Smith PetscValidPointer(ksp, 2); 28353c633725SBarry Smith PetscCheck(((PetscObject)ts)->type_name, PETSC_COMM_SELF, PETSC_ERR_ARG_NULL, "KSP is not created yet. Call TSSetType() first"); 28363c633725SBarry Smith PetscCheck(ts->problem_type == TS_LINEAR, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Linear only; use TSGetSNES()"); 28379566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 28389566063dSJacob Faibussowitsch PetscCall(SNESGetKSP(snes, ksp)); 28393ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2840d763cef2SBarry Smith } 2841d763cef2SBarry Smith 2842d763cef2SBarry Smith /* ----------- Routines to set solver parameters ---------- */ 2843d763cef2SBarry Smith 2844adb62b0dSMatthew Knepley /*@ 2845618ce8baSLisandro Dalcin TSSetMaxSteps - Sets the maximum number of steps to use. 2846618ce8baSLisandro Dalcin 2847c3339decSBarry Smith Logically Collective 2848618ce8baSLisandro Dalcin 2849618ce8baSLisandro Dalcin Input Parameters: 2850bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2851618ce8baSLisandro Dalcin - maxsteps - maximum number of steps to use 2852618ce8baSLisandro Dalcin 2853bcf0153eSBarry Smith Options Database Key: 2854618ce8baSLisandro Dalcin . -ts_max_steps <maxsteps> - Sets maxsteps 2855618ce8baSLisandro Dalcin 2856618ce8baSLisandro Dalcin Level: intermediate 2857618ce8baSLisandro Dalcin 2858bcf0153eSBarry Smith Note: 2859bcf0153eSBarry Smith The default maximum number of steps is 5000 2860bcf0153eSBarry Smith 2861bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetMaxSteps()`, `TSSetMaxTime()`, `TSSetExactFinalTime()` 2862618ce8baSLisandro Dalcin @*/ 2863d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMaxSteps(TS ts, PetscInt maxsteps) 2864d71ae5a4SJacob Faibussowitsch { 2865618ce8baSLisandro Dalcin PetscFunctionBegin; 2866618ce8baSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2867618ce8baSLisandro Dalcin PetscValidLogicalCollectiveInt(ts, maxsteps, 2); 28683c633725SBarry Smith PetscCheck(maxsteps >= 0, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Maximum number of steps must be non-negative"); 2869618ce8baSLisandro Dalcin ts->max_steps = maxsteps; 28703ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2871618ce8baSLisandro Dalcin } 2872618ce8baSLisandro Dalcin 2873618ce8baSLisandro Dalcin /*@ 2874618ce8baSLisandro Dalcin TSGetMaxSteps - Gets the maximum number of steps to use. 2875618ce8baSLisandro Dalcin 2876618ce8baSLisandro Dalcin Not Collective 2877618ce8baSLisandro Dalcin 28782fe279fdSBarry Smith Input Parameter: 2879bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2880618ce8baSLisandro Dalcin 2881618ce8baSLisandro Dalcin Output Parameter: 2882618ce8baSLisandro Dalcin . maxsteps - maximum number of steps to use 2883618ce8baSLisandro Dalcin 2884618ce8baSLisandro Dalcin Level: advanced 2885618ce8baSLisandro Dalcin 2886bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetMaxSteps()`, `TSGetMaxTime()`, `TSSetMaxTime()` 2887618ce8baSLisandro Dalcin @*/ 2888d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetMaxSteps(TS ts, PetscInt *maxsteps) 2889d71ae5a4SJacob Faibussowitsch { 2890618ce8baSLisandro Dalcin PetscFunctionBegin; 2891618ce8baSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2892618ce8baSLisandro Dalcin PetscValidIntPointer(maxsteps, 2); 2893618ce8baSLisandro Dalcin *maxsteps = ts->max_steps; 28943ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2895618ce8baSLisandro Dalcin } 2896618ce8baSLisandro Dalcin 2897618ce8baSLisandro Dalcin /*@ 2898618ce8baSLisandro Dalcin TSSetMaxTime - Sets the maximum (or final) time for timestepping. 2899618ce8baSLisandro Dalcin 2900c3339decSBarry Smith Logically Collective 2901618ce8baSLisandro Dalcin 2902618ce8baSLisandro Dalcin Input Parameters: 2903bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2904618ce8baSLisandro Dalcin - maxtime - final time to step to 2905618ce8baSLisandro Dalcin 2906bcf0153eSBarry Smith Options Database Key: 2907ef85077eSLisandro Dalcin . -ts_max_time <maxtime> - Sets maxtime 2908618ce8baSLisandro Dalcin 2909bcf0153eSBarry Smith Level: intermediate 2910bcf0153eSBarry Smith 2911618ce8baSLisandro Dalcin Notes: 2912618ce8baSLisandro Dalcin The default maximum time is 5.0 2913618ce8baSLisandro Dalcin 2914bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetMaxTime()`, `TSSetMaxSteps()`, `TSSetExactFinalTime()` 2915618ce8baSLisandro Dalcin @*/ 2916d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMaxTime(TS ts, PetscReal maxtime) 2917d71ae5a4SJacob Faibussowitsch { 2918618ce8baSLisandro Dalcin PetscFunctionBegin; 2919618ce8baSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2920618ce8baSLisandro Dalcin PetscValidLogicalCollectiveReal(ts, maxtime, 2); 2921618ce8baSLisandro Dalcin ts->max_time = maxtime; 29223ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2923618ce8baSLisandro Dalcin } 2924618ce8baSLisandro Dalcin 2925618ce8baSLisandro Dalcin /*@ 2926618ce8baSLisandro Dalcin TSGetMaxTime - Gets the maximum (or final) time for timestepping. 2927618ce8baSLisandro Dalcin 2928618ce8baSLisandro Dalcin Not Collective 2929618ce8baSLisandro Dalcin 29302fe279fdSBarry Smith Input Parameter: 2931bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2932618ce8baSLisandro Dalcin 2933618ce8baSLisandro Dalcin Output Parameter: 2934618ce8baSLisandro Dalcin . maxtime - final time to step to 2935618ce8baSLisandro Dalcin 2936618ce8baSLisandro Dalcin Level: advanced 2937618ce8baSLisandro Dalcin 2938bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetMaxTime()`, `TSGetMaxSteps()`, `TSSetMaxSteps()` 2939618ce8baSLisandro Dalcin @*/ 2940d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetMaxTime(TS ts, PetscReal *maxtime) 2941d71ae5a4SJacob Faibussowitsch { 2942618ce8baSLisandro Dalcin PetscFunctionBegin; 2943618ce8baSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2944618ce8baSLisandro Dalcin PetscValidRealPointer(maxtime, 2); 2945618ce8baSLisandro Dalcin *maxtime = ts->max_time; 29463ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2947618ce8baSLisandro Dalcin } 2948618ce8baSLisandro Dalcin 2949618ce8baSLisandro Dalcin /*@ 2950bcf0153eSBarry Smith TSSetInitialTimeStep - Deprecated, use `TSSetTime()` and `TSSetTimeStep()`. 2951edc382c3SSatish Balay 2952edc382c3SSatish Balay Level: deprecated 2953edc382c3SSatish Balay 2954aaa6c58dSLisandro Dalcin @*/ 2955d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetInitialTimeStep(TS ts, PetscReal initial_time, PetscReal time_step) 2956d71ae5a4SJacob Faibussowitsch { 2957aaa6c58dSLisandro Dalcin PetscFunctionBegin; 2958aaa6c58dSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 29599566063dSJacob Faibussowitsch PetscCall(TSSetTime(ts, initial_time)); 29609566063dSJacob Faibussowitsch PetscCall(TSSetTimeStep(ts, time_step)); 29613ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2962aaa6c58dSLisandro Dalcin } 2963aaa6c58dSLisandro Dalcin 2964aaa6c58dSLisandro Dalcin /*@ 2965bcf0153eSBarry Smith TSGetDuration - Deprecated, use `TSGetMaxSteps()` and `TSGetMaxTime()`. 2966edc382c3SSatish Balay 2967edc382c3SSatish Balay Level: deprecated 2968edc382c3SSatish Balay 2969adb62b0dSMatthew Knepley @*/ 2970d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetDuration(TS ts, PetscInt *maxsteps, PetscReal *maxtime) 2971d71ae5a4SJacob Faibussowitsch { 2972adb62b0dSMatthew Knepley PetscFunctionBegin; 29730700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2974abc0a331SBarry Smith if (maxsteps) { 29754482741eSBarry Smith PetscValidIntPointer(maxsteps, 2); 2976adb62b0dSMatthew Knepley *maxsteps = ts->max_steps; 2977adb62b0dSMatthew Knepley } 2978abc0a331SBarry Smith if (maxtime) { 2979064a246eSJacob Faibussowitsch PetscValidRealPointer(maxtime, 3); 2980adb62b0dSMatthew Knepley *maxtime = ts->max_time; 2981adb62b0dSMatthew Knepley } 29823ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2983adb62b0dSMatthew Knepley } 2984adb62b0dSMatthew Knepley 2985d763cef2SBarry Smith /*@ 2986bcf0153eSBarry Smith TSSetDuration - Deprecated, use `TSSetMaxSteps()` and `TSSetMaxTime()`. 2987edc382c3SSatish Balay 2988edc382c3SSatish Balay Level: deprecated 2989edc382c3SSatish Balay 2990d763cef2SBarry Smith @*/ 2991d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetDuration(TS ts, PetscInt maxsteps, PetscReal maxtime) 2992d71ae5a4SJacob Faibussowitsch { 2993d763cef2SBarry Smith PetscFunctionBegin; 29940700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2995c5eb9154SBarry Smith PetscValidLogicalCollectiveInt(ts, maxsteps, 2); 2996064a246eSJacob Faibussowitsch PetscValidLogicalCollectiveReal(ts, maxtime, 3); 299739b7ec4bSSean Farley if (maxsteps >= 0) ts->max_steps = maxsteps; 299813bcc0bdSJacob Faibussowitsch if (maxtime != (PetscReal)PETSC_DEFAULT) ts->max_time = maxtime; 29993ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3000d763cef2SBarry Smith } 3001d763cef2SBarry Smith 3002d763cef2SBarry Smith /*@ 3003bcf0153eSBarry Smith TSGetTimeStepNumber - Deprecated, use `TSGetStepNumber()`. 3004edc382c3SSatish Balay 3005edc382c3SSatish Balay Level: deprecated 3006edc382c3SSatish Balay 30075c5f5948SLisandro Dalcin @*/ 3008d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeStepNumber(TS ts, PetscInt *steps) 3009d71ae5a4SJacob Faibussowitsch { 30109371c9d4SSatish Balay return TSGetStepNumber(ts, steps); 30119371c9d4SSatish Balay } 30125c5f5948SLisandro Dalcin 301319eac22cSLisandro Dalcin /*@ 3014bcf0153eSBarry Smith TSGetTotalSteps - Deprecated, use `TSGetStepNumber()`. 3015edc382c3SSatish Balay 3016edc382c3SSatish Balay Level: deprecated 3017edc382c3SSatish Balay 30184f4e0956SLisandro Dalcin @*/ 3019d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTotalSteps(TS ts, PetscInt *steps) 3020d71ae5a4SJacob Faibussowitsch { 30219371c9d4SSatish Balay return TSGetStepNumber(ts, steps); 30229371c9d4SSatish Balay } 30234f4e0956SLisandro Dalcin 30244f4e0956SLisandro Dalcin /*@ 3025d763cef2SBarry Smith TSSetSolution - Sets the initial solution vector 3026bcf0153eSBarry Smith for use by the `TS` routines. 3027d763cef2SBarry Smith 3028c3339decSBarry Smith Logically Collective 3029d763cef2SBarry Smith 3030d763cef2SBarry Smith Input Parameters: 3031bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 30320910c330SBarry Smith - u - the solution vector 3033d763cef2SBarry Smith 3034d763cef2SBarry Smith Level: beginner 3035d763cef2SBarry Smith 3036bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetSolutionFunction()`, `TSGetSolution()`, `TSCreate()` 3037d763cef2SBarry Smith @*/ 3038d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetSolution(TS ts, Vec u) 3039d71ae5a4SJacob Faibussowitsch { 3040496e6a7aSJed Brown DM dm; 30418737fe31SLisandro Dalcin 3042d763cef2SBarry Smith PetscFunctionBegin; 30430700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 30440910c330SBarry Smith PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 30459566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)u)); 30469566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_sol)); 30470910c330SBarry Smith ts->vec_sol = u; 3048bbd56ea5SKarl Rupp 30499566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 30509566063dSJacob Faibussowitsch PetscCall(DMShellSetGlobalVector(dm, u)); 30513ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3052d763cef2SBarry Smith } 3053d763cef2SBarry Smith 3054ac226902SBarry Smith /*@C 3055000e7ae3SMatthew Knepley TSSetPreStep - Sets the general-purpose function 30563f2090d5SJed Brown called once at the beginning of each time step. 3057000e7ae3SMatthew Knepley 3058c3339decSBarry Smith Logically Collective 3059000e7ae3SMatthew Knepley 3060000e7ae3SMatthew Knepley Input Parameters: 3061bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 3062000e7ae3SMatthew Knepley - func - The function 3063000e7ae3SMatthew Knepley 306420f4b53cSBarry Smith Calling sequence of `func`: 306567b8a455SSatish Balay .vb 306620f4b53cSBarry Smith PetscErrorCode func (TS ts) 306767b8a455SSatish Balay .ve 3068000e7ae3SMatthew Knepley 3069000e7ae3SMatthew Knepley Level: intermediate 3070000e7ae3SMatthew Knepley 3071bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetPreStage()`, `TSSetPostStage()`, `TSSetPostStep()`, `TSStep()`, `TSRestartStep()` 3072000e7ae3SMatthew Knepley @*/ 3073d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetPreStep(TS ts, PetscErrorCode (*func)(TS)) 3074d71ae5a4SJacob Faibussowitsch { 3075000e7ae3SMatthew Knepley PetscFunctionBegin; 30760700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3077ae60f76fSBarry Smith ts->prestep = func; 30783ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3079000e7ae3SMatthew Knepley } 3080000e7ae3SMatthew Knepley 308109ee8438SJed Brown /*@ 3082bcf0153eSBarry Smith TSPreStep - Runs the user-defined pre-step function provided with `TSSetPreStep()` 30833f2090d5SJed Brown 3084c3339decSBarry Smith Collective 30853f2090d5SJed Brown 30862fe279fdSBarry Smith Input Parameter: 3087bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 30883f2090d5SJed Brown 30893f2090d5SJed Brown Level: developer 30903f2090d5SJed Brown 3091bcf0153eSBarry Smith Note: 3092bcf0153eSBarry Smith `TSPreStep()` is typically used within time stepping implementations, 3093bcf0153eSBarry Smith so most users would not generally call this routine themselves. 3094bcf0153eSBarry Smith 3095bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetPreStep()`, `TSPreStage()`, `TSPostStage()`, `TSPostStep()` 30963f2090d5SJed Brown @*/ 3097d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPreStep(TS ts) 3098d71ae5a4SJacob Faibussowitsch { 30993f2090d5SJed Brown PetscFunctionBegin; 31000700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3101ae60f76fSBarry Smith if (ts->prestep) { 31025efd42a4SStefano Zampini Vec U; 3103ef8d1ce0SJohann Rudi PetscObjectId idprev; 3104ef8d1ce0SJohann Rudi PetscBool sameObject; 31055efd42a4SStefano Zampini PetscObjectState sprev, spost; 31065efd42a4SStefano Zampini 31079566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 31089566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &idprev)); 31099566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &sprev)); 311025e27a38SBarry Smith PetscCallBack("TS callback preset", (*ts->prestep)(ts)); 31119566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 31129566063dSJacob Faibussowitsch PetscCall(PetscObjectCompareId((PetscObject)U, idprev, &sameObject)); 31139566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &spost)); 31149566063dSJacob Faibussowitsch if (!sameObject || sprev != spost) PetscCall(TSRestartStep(ts)); 3115312ce896SJed Brown } 31163ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 31173f2090d5SJed Brown } 31183f2090d5SJed Brown 3119b8123daeSJed Brown /*@C 3120b8123daeSJed Brown TSSetPreStage - Sets the general-purpose function 3121b8123daeSJed Brown called once at the beginning of each stage. 3122b8123daeSJed Brown 3123c3339decSBarry Smith Logically Collective 3124b8123daeSJed Brown 3125b8123daeSJed Brown Input Parameters: 3126bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 3127b8123daeSJed Brown - func - The function 3128b8123daeSJed Brown 312920f4b53cSBarry Smith Calling sequence of `func`: 313067b8a455SSatish Balay .vb 313120f4b53cSBarry Smith PetscErrorCode func(TS ts, PetscReal stagetime) 313267b8a455SSatish Balay .ve 3133b8123daeSJed Brown 3134b8123daeSJed Brown Level: intermediate 3135b8123daeSJed Brown 3136b8123daeSJed Brown Note: 3137b8123daeSJed Brown There may be several stages per time step. If the solve for a given stage fails, the step may be rejected and retried. 3138bcf0153eSBarry Smith The time step number being computed can be queried using `TSGetStepNumber()` and the total size of the step being 3139bcf0153eSBarry Smith attempted can be obtained using `TSGetTimeStep()`. The time at the start of the step is available via `TSGetTime()`. 3140b8123daeSJed Brown 3141bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetPostStage()`, `TSSetPreStep()`, `TSSetPostStep()`, `TSGetApplicationContext()` 3142b8123daeSJed Brown @*/ 3143d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetPreStage(TS ts, PetscErrorCode (*func)(TS, PetscReal)) 3144d71ae5a4SJacob Faibussowitsch { 3145b8123daeSJed Brown PetscFunctionBegin; 3146b8123daeSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3147ae60f76fSBarry Smith ts->prestage = func; 31483ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3149b8123daeSJed Brown } 3150b8123daeSJed Brown 31519be3e283SDebojyoti Ghosh /*@C 3152bcf0153eSBarry Smith TSSetPostStage - Sets the general-purpose function, provided with `TSSetPostStep()`, 31539be3e283SDebojyoti Ghosh called once at the end of each stage. 31549be3e283SDebojyoti Ghosh 3155c3339decSBarry Smith Logically Collective 31569be3e283SDebojyoti Ghosh 31579be3e283SDebojyoti Ghosh Input Parameters: 3158bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 31599be3e283SDebojyoti Ghosh - func - The function 31609be3e283SDebojyoti Ghosh 316120f4b53cSBarry Smith Calling sequence of `func`: 316267b8a455SSatish Balay .vb 316320f4b53cSBarry Smith PetscErrorCode func(TS ts, PetscReal stagetime, PetscInt stageindex, Vec* Y) 316467b8a455SSatish Balay .ve 31659be3e283SDebojyoti Ghosh 31669be3e283SDebojyoti Ghosh Level: intermediate 31679be3e283SDebojyoti Ghosh 31689be3e283SDebojyoti Ghosh Note: 31699be3e283SDebojyoti Ghosh There may be several stages per time step. If the solve for a given stage fails, the step may be rejected and retried. 3170bcf0153eSBarry Smith The time step number being computed can be queried using `TSGetStepNumber()` and the total size of the step being 3171bcf0153eSBarry Smith attempted can be obtained using `TSGetTimeStep()`. The time at the start of the step is available via `TSGetTime()`. 31729be3e283SDebojyoti Ghosh 3173bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetPreStage()`, `TSSetPreStep()`, `TSSetPostStep()`, `TSGetApplicationContext()` 31749be3e283SDebojyoti Ghosh @*/ 3175d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetPostStage(TS ts, PetscErrorCode (*func)(TS, PetscReal, PetscInt, Vec *)) 3176d71ae5a4SJacob Faibussowitsch { 31779be3e283SDebojyoti Ghosh PetscFunctionBegin; 31789be3e283SDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 31799be3e283SDebojyoti Ghosh ts->poststage = func; 31803ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 31819be3e283SDebojyoti Ghosh } 31829be3e283SDebojyoti Ghosh 3183c688d042SShri Abhyankar /*@C 3184c688d042SShri Abhyankar TSSetPostEvaluate - Sets the general-purpose function 3185c688d042SShri Abhyankar called once at the end of each step evaluation. 3186c688d042SShri Abhyankar 3187c3339decSBarry Smith Logically Collective 3188c688d042SShri Abhyankar 3189c688d042SShri Abhyankar Input Parameters: 3190bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 3191c688d042SShri Abhyankar - func - The function 3192c688d042SShri Abhyankar 319320f4b53cSBarry Smith Calling sequence of `func`: 319467b8a455SSatish Balay .vb 319520f4b53cSBarry Smith PetscErrorCode func(TS ts) 319667b8a455SSatish Balay .ve 3197c688d042SShri Abhyankar 3198c688d042SShri Abhyankar Level: intermediate 3199c688d042SShri Abhyankar 3200c688d042SShri Abhyankar Note: 3201bcf0153eSBarry Smith Semantically, `TSSetPostEvaluate()` differs from `TSSetPostStep()` since the function it sets is called before event-handling 3202bcf0153eSBarry Smith thus guaranteeing the same solution (computed by the time-stepper) will be passed to it. On the other hand, `TSPostStep()` 3203bcf0153eSBarry Smith may be passed a different solution, possibly changed by the event handler. `TSPostEvaluate()` is called after the next step 3204bcf0153eSBarry Smith solution is evaluated allowing to modify it, if need be. The solution can be obtained with `TSGetSolution()`, the time step 3205bcf0153eSBarry Smith with `TSGetTimeStep()`, and the time at the start of the step is available via `TSGetTime()` 3206c688d042SShri Abhyankar 3207bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetPreStage()`, `TSSetPreStep()`, `TSSetPostStep()`, `TSGetApplicationContext()` 3208c688d042SShri Abhyankar @*/ 3209d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetPostEvaluate(TS ts, PetscErrorCode (*func)(TS)) 3210d71ae5a4SJacob Faibussowitsch { 3211c688d042SShri Abhyankar PetscFunctionBegin; 3212c688d042SShri Abhyankar PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3213c688d042SShri Abhyankar ts->postevaluate = func; 32143ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3215c688d042SShri Abhyankar } 3216c688d042SShri Abhyankar 3217b8123daeSJed Brown /*@ 3218bcf0153eSBarry Smith TSPreStage - Runs the user-defined pre-stage function set using `TSSetPreStage()` 3219b8123daeSJed Brown 3220c3339decSBarry Smith Collective 3221b8123daeSJed Brown 3222b8123daeSJed Brown Input Parameters: 3223bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 32249be3e283SDebojyoti Ghosh stagetime - The absolute time of the current stage 3225b8123daeSJed Brown 3226b8123daeSJed Brown Level: developer 3227b8123daeSJed Brown 3228bcf0153eSBarry Smith Note: 3229bcf0153eSBarry Smith `TSPreStage()` is typically used within time stepping implementations, 3230bcf0153eSBarry Smith most users would not generally call this routine themselves. 3231bcf0153eSBarry Smith 3232bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSPostStage()`, `TSSetPreStep()`, `TSPreStep()`, `TSPostStep()` 3233b8123daeSJed Brown @*/ 3234d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPreStage(TS ts, PetscReal stagetime) 3235d71ae5a4SJacob Faibussowitsch { 3236b8123daeSJed Brown PetscFunctionBegin; 3237b8123daeSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 32381e66621cSBarry Smith if (ts->prestage) PetscCallBack("TS callback prestage", (*ts->prestage)(ts, stagetime)); 32393ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3240b8123daeSJed Brown } 3241b8123daeSJed Brown 32429be3e283SDebojyoti Ghosh /*@ 3243bcf0153eSBarry Smith TSPostStage - Runs the user-defined post-stage function set using `TSSetPostStage()` 32449be3e283SDebojyoti Ghosh 3245c3339decSBarry Smith Collective 32469be3e283SDebojyoti Ghosh 32479be3e283SDebojyoti Ghosh Input Parameters: 3248bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 32499be3e283SDebojyoti Ghosh stagetime - The absolute time of the current stage 32509be3e283SDebojyoti Ghosh stageindex - Stage number 32519be3e283SDebojyoti Ghosh Y - Array of vectors (of size = total number 32529be3e283SDebojyoti Ghosh of stages) with the stage solutions 32539be3e283SDebojyoti Ghosh 32549be3e283SDebojyoti Ghosh Level: developer 32559be3e283SDebojyoti Ghosh 3256bcf0153eSBarry Smith Note: 3257bcf0153eSBarry Smith `TSPostStage()` is typically used within time stepping implementations, 3258bcf0153eSBarry Smith most users would not generally call this routine themselves. 3259bcf0153eSBarry Smith 3260bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSPreStage()`, `TSSetPreStep()`, `TSPreStep()`, `TSPostStep()` 32619be3e283SDebojyoti Ghosh @*/ 3262d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPostStage(TS ts, PetscReal stagetime, PetscInt stageindex, Vec *Y) 3263d71ae5a4SJacob Faibussowitsch { 32649be3e283SDebojyoti Ghosh PetscFunctionBegin; 32659be3e283SDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 32661e66621cSBarry Smith if (ts->poststage) PetscCallBack("TS callback poststage", (*ts->poststage)(ts, stagetime, stageindex, Y)); 32673ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 32689be3e283SDebojyoti Ghosh } 32699be3e283SDebojyoti Ghosh 3270c688d042SShri Abhyankar /*@ 3271bcf0153eSBarry Smith TSPostEvaluate - Runs the user-defined post-evaluate function set using `TSSetPostEvaluate()` 3272c688d042SShri Abhyankar 3273c3339decSBarry Smith Collective 3274c688d042SShri Abhyankar 32752fe279fdSBarry Smith Input Parameter: 3276bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 3277c688d042SShri Abhyankar 3278c688d042SShri Abhyankar Level: developer 3279c688d042SShri Abhyankar 3280bcf0153eSBarry Smith Note: 3281bcf0153eSBarry Smith `TSPostEvaluate()` is typically used within time stepping implementations, 3282bcf0153eSBarry Smith most users would not generally call this routine themselves. 3283bcf0153eSBarry Smith 3284bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetPostEvaluate()`, `TSSetPreStep()`, `TSPreStep()`, `TSPostStep()` 3285c688d042SShri Abhyankar @*/ 3286d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPostEvaluate(TS ts) 3287d71ae5a4SJacob Faibussowitsch { 3288c688d042SShri Abhyankar PetscFunctionBegin; 3289c688d042SShri Abhyankar PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3290c688d042SShri Abhyankar if (ts->postevaluate) { 3291dcb233daSLisandro Dalcin Vec U; 3292dcb233daSLisandro Dalcin PetscObjectState sprev, spost; 3293dcb233daSLisandro Dalcin 32949566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 32959566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &sprev)); 329625e27a38SBarry Smith PetscCallBack("TS callback postevaluate", (*ts->postevaluate)(ts)); 32979566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &spost)); 32989566063dSJacob Faibussowitsch if (sprev != spost) PetscCall(TSRestartStep(ts)); 3299c688d042SShri Abhyankar } 33003ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3301c688d042SShri Abhyankar } 3302c688d042SShri Abhyankar 3303ac226902SBarry Smith /*@C 3304000e7ae3SMatthew Knepley TSSetPostStep - Sets the general-purpose function 33053f2090d5SJed Brown called once at the end of each time step. 3306000e7ae3SMatthew Knepley 3307c3339decSBarry Smith Logically Collective 3308000e7ae3SMatthew Knepley 3309000e7ae3SMatthew Knepley Input Parameters: 3310bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 3311000e7ae3SMatthew Knepley - func - The function 3312000e7ae3SMatthew Knepley 331320f4b53cSBarry Smith Calling sequence of `func`: 331420f4b53cSBarry Smith $ PetscErrorCode func(TS ts) 3315000e7ae3SMatthew Knepley 3316000e7ae3SMatthew Knepley Level: intermediate 3317000e7ae3SMatthew Knepley 3318bcf0153eSBarry Smith Note: 3319195e9b02SBarry Smith The function set by `TSSetPostStep()` is called after each successful step. The solution vector 3320bcf0153eSBarry Smith obtained by `TSGetSolution()` may be different than that computed at the step end if the event handler 3321bcf0153eSBarry Smith locates an event and `TSPostEvent()` modifies it. Use `TSSetPostEvaluate()` if an unmodified solution is needed instead. 3322bcf0153eSBarry Smith 3323bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetPreStep()`, `TSSetPreStage()`, `TSSetPostEvaluate()`, `TSGetTimeStep()`, `TSGetStepNumber()`, `TSGetTime()`, `TSRestartStep()` 3324000e7ae3SMatthew Knepley @*/ 3325d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetPostStep(TS ts, PetscErrorCode (*func)(TS)) 3326d71ae5a4SJacob Faibussowitsch { 3327000e7ae3SMatthew Knepley PetscFunctionBegin; 33280700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3329ae60f76fSBarry Smith ts->poststep = func; 33303ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3331000e7ae3SMatthew Knepley } 3332000e7ae3SMatthew Knepley 333309ee8438SJed Brown /*@ 3334195e9b02SBarry Smith TSPostStep - Runs the user-defined post-step function that was set with `TSSetPostStep()` 33353f2090d5SJed Brown 3336c3339decSBarry Smith Collective 33373f2090d5SJed Brown 33382fe279fdSBarry Smith Input Parameter: 3339bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 33403f2090d5SJed Brown 3341bcf0153eSBarry Smith Note: 3342bcf0153eSBarry Smith `TSPostStep()` is typically used within time stepping implementations, 33433f2090d5SJed Brown so most users would not generally call this routine themselves. 33443f2090d5SJed Brown 33453f2090d5SJed Brown Level: developer 33463f2090d5SJed Brown 3347bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetPreStep()`, `TSSetPreStage()`, `TSSetPostEvaluate()`, `TSGetTimeStep()`, `TSGetStepNumber()`, `TSGetTime()`, `TSSetPotsStep()` 33483f2090d5SJed Brown @*/ 3349d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPostStep(TS ts) 3350d71ae5a4SJacob Faibussowitsch { 33513f2090d5SJed Brown PetscFunctionBegin; 33520700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3353ae60f76fSBarry Smith if (ts->poststep) { 33545efd42a4SStefano Zampini Vec U; 3355ef8d1ce0SJohann Rudi PetscObjectId idprev; 3356ef8d1ce0SJohann Rudi PetscBool sameObject; 33575efd42a4SStefano Zampini PetscObjectState sprev, spost; 33585efd42a4SStefano Zampini 33599566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 33609566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &idprev)); 33619566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &sprev)); 336225e27a38SBarry Smith PetscCallBack("TS callback poststep", (*ts->poststep)(ts)); 33639566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 33649566063dSJacob Faibussowitsch PetscCall(PetscObjectCompareId((PetscObject)U, idprev, &sameObject)); 33659566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &spost)); 33669566063dSJacob Faibussowitsch if (!sameObject || sprev != spost) PetscCall(TSRestartStep(ts)); 336772ac3e02SJed Brown } 33683ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 33693f2090d5SJed Brown } 33703f2090d5SJed Brown 3371cd652676SJed Brown /*@ 3372cd652676SJed Brown TSInterpolate - Interpolate the solution computed during the previous step to an arbitrary location in the interval 3373cd652676SJed Brown 3374c3339decSBarry Smith Collective 3375cd652676SJed Brown 33764165533cSJose E. Roman Input Parameters: 3377cd652676SJed Brown + ts - time stepping context 3378cd652676SJed Brown - t - time to interpolate to 3379cd652676SJed Brown 33804165533cSJose E. Roman Output Parameter: 33810910c330SBarry Smith . U - state at given time 3382cd652676SJed Brown 3383cd652676SJed Brown Level: intermediate 3384cd652676SJed Brown 3385bcf0153eSBarry Smith Developer Note: 3386bcf0153eSBarry Smith `TSInterpolate()` and the storing of previous steps/stages should be generalized to support delay differential equations and continuous adjoints. 3387cd652676SJed Brown 3388bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetExactFinalTime()`, `TSSolve()` 3389cd652676SJed Brown @*/ 3390d71ae5a4SJacob Faibussowitsch PetscErrorCode TSInterpolate(TS ts, PetscReal t, Vec U) 3391d71ae5a4SJacob Faibussowitsch { 3392cd652676SJed Brown PetscFunctionBegin; 3393cd652676SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3394b06615a5SLisandro Dalcin PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 339563a3b9bcSJacob Faibussowitsch PetscCheck(t >= ts->ptime_prev && t <= ts->ptime, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Requested time %g not in last time steps [%g,%g]", (double)t, (double)ts->ptime_prev, (double)ts->ptime); 3396dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, interpolate, t, U); 33973ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3398cd652676SJed Brown } 3399cd652676SJed Brown 3400d763cef2SBarry Smith /*@ 34016d9e5789SSean Farley TSStep - Steps one time step 3402d763cef2SBarry Smith 3403c3339decSBarry Smith Collective 3404d763cef2SBarry Smith 3405d763cef2SBarry Smith Input Parameter: 3406bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 3407d763cef2SBarry Smith 340827829d71SBarry Smith Level: developer 3409d763cef2SBarry Smith 3410b8123daeSJed Brown Notes: 3411bcf0153eSBarry Smith The public interface for the ODE/DAE solvers is `TSSolve()`, you should almost for sure be using that routine and not this routine. 341227829d71SBarry Smith 3413bcf0153eSBarry Smith The hook set using `TSSetPreStep()` is called before each attempt to take the step. In general, the time step size may 3414b8123daeSJed Brown be changed due to adaptive error controller or solve failures. Note that steps may contain multiple stages. 3415b8123daeSJed Brown 3416bcf0153eSBarry Smith This may over-step the final time provided in `TSSetMaxTime()` depending on the time-step used. `TSSolve()` interpolates to exactly the 3417bcf0153eSBarry Smith time provided in `TSSetMaxTime()`. One can use `TSInterpolate()` to determine an interpolated solution within the final timestep. 341825cb2221SBarry Smith 3419bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSCreate()`, `TSSetUp()`, `TSDestroy()`, `TSSolve()`, `TSSetPreStep()`, `TSSetPreStage()`, `TSSetPostStage()`, `TSInterpolate()` 3420d763cef2SBarry Smith @*/ 3421d71ae5a4SJacob Faibussowitsch PetscErrorCode TSStep(TS ts) 3422d71ae5a4SJacob Faibussowitsch { 3423fffbeea8SBarry Smith static PetscBool cite = PETSC_FALSE; 3424be5899b3SLisandro Dalcin PetscReal ptime; 3425d763cef2SBarry Smith 3426d763cef2SBarry Smith PetscFunctionBegin; 34270700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3428d0609cedSBarry Smith PetscCall(PetscCitationsRegister("@article{tspaper,\n" 3429fffbeea8SBarry Smith " title = {{PETSc/TS}: A Modern Scalable {DAE/ODE} Solver Library},\n" 3430f1d62c27SHong Zhang " author = {Abhyankar, Shrirang and Brown, Jed and Constantinescu, Emil and Ghosh, Debojyoti and Smith, Barry F. and Zhang, Hong},\n" 3431f1d62c27SHong Zhang " journal = {arXiv e-preprints},\n" 3432f1d62c27SHong Zhang " eprint = {1806.01437},\n" 3433f1d62c27SHong Zhang " archivePrefix = {arXiv},\n" 34349371c9d4SSatish Balay " year = {2018}\n}\n", 34359371c9d4SSatish Balay &cite)); 34369566063dSJacob Faibussowitsch PetscCall(TSSetUp(ts)); 34379566063dSJacob Faibussowitsch PetscCall(TSTrajectorySetUp(ts->trajectory, ts)); 3438d405a339SMatthew Knepley 34393c633725SBarry Smith PetscCheck(ts->max_time < PETSC_MAX_REAL || ts->max_steps != PETSC_MAX_INT, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONGSTATE, "You must call TSSetMaxTime() or TSSetMaxSteps(), or use -ts_max_time <time> or -ts_max_steps <steps>"); 34403c633725SBarry Smith PetscCheck(ts->exact_final_time != TS_EXACTFINALTIME_UNSPECIFIED, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONGSTATE, "You must call TSSetExactFinalTime() or use -ts_exact_final_time <stepover,interpolate,matchstep> before calling TSStep()"); 34413c633725SBarry Smith PetscCheck(ts->exact_final_time != TS_EXACTFINALTIME_MATCHSTEP || ts->adapt, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Since TS is not adaptive you cannot use TS_EXACTFINALTIME_MATCHSTEP, suggest TS_EXACTFINALTIME_INTERPOLATE"); 3442a6772fa2SLisandro Dalcin 3443be5899b3SLisandro Dalcin if (!ts->steps) ts->ptime_prev = ts->ptime; 34449371c9d4SSatish Balay ptime = ts->ptime; 34459371c9d4SSatish Balay ts->ptime_prev_rollback = ts->ptime_prev; 34462808aa04SLisandro Dalcin ts->reason = TS_CONVERGED_ITERATING; 3447fc8dbba5SLisandro Dalcin 34489566063dSJacob Faibussowitsch PetscCall(PetscLogEventBegin(TS_Step, ts, 0, 0, 0)); 3449dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, step); 34509566063dSJacob Faibussowitsch PetscCall(PetscLogEventEnd(TS_Step, ts, 0, 0, 0)); 3451fc8dbba5SLisandro Dalcin 34529371c9d4SSatish Balay if (ts->tspan && PetscIsCloseAtTol(ts->ptime, ts->tspan->span_times[ts->tspan->spanctr], ts->tspan->reltol * ts->time_step + ts->tspan->abstol, 0) && ts->tspan->spanctr < ts->tspan->num_span_times) 34539371c9d4SSatish Balay PetscCall(VecCopy(ts->vec_sol, ts->tspan->vecs_sol[ts->tspan->spanctr++])); 3454fc8dbba5SLisandro Dalcin if (ts->reason >= 0) { 3455be5899b3SLisandro Dalcin ts->ptime_prev = ptime; 34562808aa04SLisandro Dalcin ts->steps++; 3457be5899b3SLisandro Dalcin ts->steprollback = PETSC_FALSE; 345828d5b5d6SLisandro Dalcin ts->steprestart = PETSC_FALSE; 3459d2daff3dSHong Zhang } 3460fc8dbba5SLisandro Dalcin if (!ts->reason) { 346108c7845fSBarry Smith if (ts->steps >= ts->max_steps) ts->reason = TS_CONVERGED_ITS; 346208c7845fSBarry Smith else if (ts->ptime >= ts->max_time) ts->reason = TS_CONVERGED_TIME; 346308c7845fSBarry Smith } 3464fc8dbba5SLisandro Dalcin 34655c9bbc89SJed Brown if (ts->reason < 0 && ts->errorifstepfailed) { 34665c9bbc89SJed Brown PetscCall(TSMonitorCancel(ts)); 34675c9bbc89SJed Brown PetscCheck(ts->reason != TS_DIVERGED_NONLINEAR_SOLVE, PetscObjectComm((PetscObject)ts), PETSC_ERR_NOT_CONVERGED, "TSStep has failed due to %s, increase -ts_max_snes_failures or make negative to attempt recovery", TSConvergedReasons[ts->reason]); 34685c9bbc89SJed Brown SETERRQ(PetscObjectComm((PetscObject)ts), PETSC_ERR_NOT_CONVERGED, "TSStep has failed due to %s", TSConvergedReasons[ts->reason]); 34695c9bbc89SJed Brown } 34703ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 347108c7845fSBarry Smith } 347208c7845fSBarry Smith 347308c7845fSBarry Smith /*@ 34747cbde773SLisandro Dalcin TSEvaluateWLTE - Evaluate the weighted local truncation error norm 34757cbde773SLisandro Dalcin at the end of a time step with a given order of accuracy. 34767cbde773SLisandro Dalcin 3477c3339decSBarry Smith Collective 34787cbde773SLisandro Dalcin 34794165533cSJose E. Roman Input Parameters: 34807cbde773SLisandro Dalcin + ts - time stepping context 3481bcf0153eSBarry Smith - wnormtype - norm type, either `NORM_2` or `NORM_INFINITY` 34827cbde773SLisandro Dalcin 348397bb3fdcSJose E. Roman Input/Output Parameter: 3484bcf0153eSBarry Smith . order - optional, desired order for the error evaluation or `PETSC_DECIDE`; 348597bb3fdcSJose E. Roman on output, the actual order of the error evaluation 348697bb3fdcSJose E. Roman 348797bb3fdcSJose E. Roman Output Parameter: 348897bb3fdcSJose E. Roman . wlte - the weighted local truncation error norm 34897cbde773SLisandro Dalcin 34907cbde773SLisandro Dalcin Level: advanced 34917cbde773SLisandro Dalcin 3492bcf0153eSBarry Smith Note: 34937cbde773SLisandro Dalcin If the timestepper cannot evaluate the error in a particular step 34947cbde773SLisandro Dalcin (eg. in the first step or restart steps after event handling), 34957cbde773SLisandro Dalcin this routine returns wlte=-1.0 . 34967cbde773SLisandro Dalcin 3497bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSStep()`, `TSAdapt`, `TSErrorWeightedNorm()` 34987cbde773SLisandro Dalcin @*/ 3499d71ae5a4SJacob Faibussowitsch PetscErrorCode TSEvaluateWLTE(TS ts, NormType wnormtype, PetscInt *order, PetscReal *wlte) 3500d71ae5a4SJacob Faibussowitsch { 35017cbde773SLisandro Dalcin PetscFunctionBegin; 35027cbde773SLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 35037cbde773SLisandro Dalcin PetscValidType(ts, 1); 3504064a246eSJacob Faibussowitsch PetscValidLogicalCollectiveEnum(ts, wnormtype, 2); 35057cbde773SLisandro Dalcin if (order) PetscValidIntPointer(order, 3); 35067cbde773SLisandro Dalcin if (order) PetscValidLogicalCollectiveInt(ts, *order, 3); 35077cbde773SLisandro Dalcin PetscValidRealPointer(wlte, 4); 35083c633725SBarry Smith PetscCheck(wnormtype == NORM_2 || wnormtype == NORM_INFINITY, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "No support for norm type %s", NormTypes[wnormtype]); 3509dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, evaluatewlte, wnormtype, order, wlte); 35103ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 35117cbde773SLisandro Dalcin } 35127cbde773SLisandro Dalcin 351305175c85SJed Brown /*@ 351405175c85SJed Brown TSEvaluateStep - Evaluate the solution at the end of a time step with a given order of accuracy. 351505175c85SJed Brown 3516c3339decSBarry Smith Collective 351705175c85SJed Brown 35184165533cSJose E. Roman Input Parameters: 35191c3436cfSJed Brown + ts - time stepping context 35201c3436cfSJed Brown . order - desired order of accuracy 3521195e9b02SBarry Smith - done - whether the step was evaluated at this order (pass `NULL` to generate an error if not available) 352205175c85SJed Brown 35234165533cSJose E. Roman Output Parameter: 35240910c330SBarry Smith . U - state at the end of the current step 352505175c85SJed Brown 352605175c85SJed Brown Level: advanced 352705175c85SJed Brown 3528108c343cSJed Brown Notes: 3529108c343cSJed Brown This function cannot be called until all stages have been evaluated. 3530108c343cSJed Brown 3531bcf0153eSBarry Smith It is normally called by adaptive controllers before a step has been accepted and may also be called by the user after `TSStep()` has returned. 3532bcf0153eSBarry Smith 3533bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSStep()`, `TSAdapt` 353405175c85SJed Brown @*/ 3535d71ae5a4SJacob Faibussowitsch PetscErrorCode TSEvaluateStep(TS ts, PetscInt order, Vec U, PetscBool *done) 3536d71ae5a4SJacob Faibussowitsch { 353705175c85SJed Brown PetscFunctionBegin; 353805175c85SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 353905175c85SJed Brown PetscValidType(ts, 1); 35400910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 3541dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, evaluatestep, order, U, done); 35423ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 354305175c85SJed Brown } 354405175c85SJed Brown 3545aad739acSMatthew G. Knepley /*@C 35462e61be88SMatthew G. Knepley TSGetComputeInitialCondition - Get the function used to automatically compute an initial condition for the timestepping. 3547aad739acSMatthew G. Knepley 3548aad739acSMatthew G. Knepley Not collective 3549aad739acSMatthew G. Knepley 35504165533cSJose E. Roman Input Parameter: 3551aad739acSMatthew G. Knepley . ts - time stepping context 3552aad739acSMatthew G. Knepley 35534165533cSJose E. Roman Output Parameter: 35542e61be88SMatthew G. Knepley . initConditions - The function which computes an initial condition 3555aad739acSMatthew G. Knepley 355620f4b53cSBarry Smith Calling sequence of `initCondition`: 3557bcf0153eSBarry Smith .vb 355820f4b53cSBarry Smith PetscErrorCode initCondition(TS ts, Vec u) 3559bcf0153eSBarry Smith .ve 356020f4b53cSBarry Smith + ts - The timestepping context 356120f4b53cSBarry Smith - u - The input vector in which the initial condition is stored 3562bcf0153eSBarry Smith 3563aad739acSMatthew G. Knepley Level: advanced 3564aad739acSMatthew G. Knepley 3565bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetComputeInitialCondition()`, `TSComputeInitialCondition()` 3566aad739acSMatthew G. Knepley @*/ 3567d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetComputeInitialCondition(TS ts, PetscErrorCode (**initCondition)(TS, Vec)) 3568d71ae5a4SJacob Faibussowitsch { 3569aad739acSMatthew G. Knepley PetscFunctionBegin; 3570aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 35712e61be88SMatthew G. Knepley PetscValidPointer(initCondition, 2); 35722e61be88SMatthew G. Knepley *initCondition = ts->ops->initcondition; 35733ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3574aad739acSMatthew G. Knepley } 3575aad739acSMatthew G. Knepley 3576aad739acSMatthew G. Knepley /*@C 35772e61be88SMatthew G. Knepley TSSetComputeInitialCondition - Set the function used to automatically compute an initial condition for the timestepping. 3578aad739acSMatthew G. Knepley 3579c3339decSBarry Smith Logically collective 3580aad739acSMatthew G. Knepley 35814165533cSJose E. Roman Input Parameters: 3582aad739acSMatthew G. Knepley + ts - time stepping context 35832e61be88SMatthew G. Knepley - initCondition - The function which computes an initial condition 3584aad739acSMatthew G. Knepley 358520f4b53cSBarry Smith Calling sequence of `initCondition`: 3586a96d6ef6SBarry Smith $ PetscErrorCode initCondition(TS ts, Vec u) 3587a96d6ef6SBarry Smith + ts - The timestepping context 3588a96d6ef6SBarry Smith - u - The input vector in which the initial condition is to be stored 3589aad739acSMatthew G. Knepley 3590bcf0153eSBarry Smith Level: advanced 3591bcf0153eSBarry Smith 3592bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetComputeInitialCondition()`, `TSComputeInitialCondition()` 3593aad739acSMatthew G. Knepley @*/ 3594d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetComputeInitialCondition(TS ts, PetscErrorCode (*initCondition)(TS, Vec)) 3595d71ae5a4SJacob Faibussowitsch { 3596aad739acSMatthew G. Knepley PetscFunctionBegin; 3597aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 35982e61be88SMatthew G. Knepley PetscValidFunction(initCondition, 2); 35992e61be88SMatthew G. Knepley ts->ops->initcondition = initCondition; 36003ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3601aad739acSMatthew G. Knepley } 3602aad739acSMatthew G. Knepley 3603aad739acSMatthew G. Knepley /*@ 3604bcf0153eSBarry Smith TSComputeInitialCondition - Compute an initial condition for the timestepping using the function previously set with `TSSetComputeInitialCondition()` 3605aad739acSMatthew G. Knepley 3606c3339decSBarry Smith Collective 3607aad739acSMatthew G. Knepley 36084165533cSJose E. Roman Input Parameters: 3609aad739acSMatthew G. Knepley + ts - time stepping context 3610bcf0153eSBarry Smith - u - The `Vec` to store the condition in which will be used in `TSSolve()` 3611aad739acSMatthew G. Knepley 3612aad739acSMatthew G. Knepley Level: advanced 3613aad739acSMatthew G. Knepley 3614bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetComputeInitialCondition()`, `TSSetComputeInitialCondition()`, `TSSolve()` 3615aad739acSMatthew G. Knepley @*/ 3616d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeInitialCondition(TS ts, Vec u) 3617d71ae5a4SJacob Faibussowitsch { 3618aad739acSMatthew G. Knepley PetscFunctionBegin; 3619aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3620aad739acSMatthew G. Knepley PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 3621dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, initcondition, u); 36223ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3623aad739acSMatthew G. Knepley } 3624aad739acSMatthew G. Knepley 3625aad739acSMatthew G. Knepley /*@C 3626aad739acSMatthew G. Knepley TSGetComputeExactError - Get the function used to automatically compute the exact error for the timestepping. 3627aad739acSMatthew G. Knepley 3628aad739acSMatthew G. Knepley Not collective 3629aad739acSMatthew G. Knepley 36304165533cSJose E. Roman Input Parameter: 3631aad739acSMatthew G. Knepley . ts - time stepping context 3632aad739acSMatthew G. Knepley 36334165533cSJose E. Roman Output Parameter: 3634aad739acSMatthew G. Knepley . exactError - The function which computes the solution error 3635aad739acSMatthew G. Knepley 363620f4b53cSBarry Smith Calling sequence of `exactError`: 363720f4b53cSBarry Smith $ PetscErrorCode exactError(TS ts, Vec u, Vec e) 3638a96d6ef6SBarry Smith + ts - The timestepping context 3639a96d6ef6SBarry Smith . u - The approximate solution vector 364020f4b53cSBarry Smith - e - The vector in which the error is stored 3641aad739acSMatthew G. Knepley 3642bcf0153eSBarry Smith Level: advanced 3643bcf0153eSBarry Smith 3644bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetComputeExactError()`, `TSComputeExactError()` 3645aad739acSMatthew G. Knepley @*/ 3646d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetComputeExactError(TS ts, PetscErrorCode (**exactError)(TS, Vec, Vec)) 3647d71ae5a4SJacob Faibussowitsch { 3648aad739acSMatthew G. Knepley PetscFunctionBegin; 3649aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3650aad739acSMatthew G. Knepley PetscValidPointer(exactError, 2); 3651aad739acSMatthew G. Knepley *exactError = ts->ops->exacterror; 36523ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3653aad739acSMatthew G. Knepley } 3654aad739acSMatthew G. Knepley 3655aad739acSMatthew G. Knepley /*@C 3656aad739acSMatthew G. Knepley TSSetComputeExactError - Set the function used to automatically compute the exact error for the timestepping. 3657aad739acSMatthew G. Knepley 3658c3339decSBarry Smith Logically collective 3659aad739acSMatthew G. Knepley 36604165533cSJose E. Roman Input Parameters: 3661aad739acSMatthew G. Knepley + ts - time stepping context 3662aad739acSMatthew G. Knepley - exactError - The function which computes the solution error 3663aad739acSMatthew G. Knepley 366420f4b53cSBarry Smith Calling sequence of `exactError`: 3665a96d6ef6SBarry Smith $ PetscErrorCode exactError(TS ts, Vec u) 3666a96d6ef6SBarry Smith + ts - The timestepping context 3667a96d6ef6SBarry Smith . u - The approximate solution vector 366820f4b53cSBarry Smith - e - The vector in which the error is stored 3669aad739acSMatthew G. Knepley 3670bcf0153eSBarry Smith Level: advanced 3671bcf0153eSBarry Smith 3672bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetComputeExactError()`, `TSComputeExactError()` 3673aad739acSMatthew G. Knepley @*/ 3674d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetComputeExactError(TS ts, PetscErrorCode (*exactError)(TS, Vec, Vec)) 3675d71ae5a4SJacob Faibussowitsch { 3676aad739acSMatthew G. Knepley PetscFunctionBegin; 3677aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3678f907fdbfSMatthew G. Knepley PetscValidFunction(exactError, 2); 3679aad739acSMatthew G. Knepley ts->ops->exacterror = exactError; 36803ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3681aad739acSMatthew G. Knepley } 3682aad739acSMatthew G. Knepley 3683aad739acSMatthew G. Knepley /*@ 3684bcf0153eSBarry Smith TSComputeExactError - Compute the solution error for the timestepping using the function previously set with `TSSetComputeExactError()` 3685aad739acSMatthew G. Knepley 3686c3339decSBarry Smith Collective 3687aad739acSMatthew G. Knepley 36884165533cSJose E. Roman Input Parameters: 3689aad739acSMatthew G. Knepley + ts - time stepping context 3690aad739acSMatthew G. Knepley . u - The approximate solution 3691bcf0153eSBarry Smith - e - The `Vec` used to store the error 3692aad739acSMatthew G. Knepley 3693aad739acSMatthew G. Knepley Level: advanced 3694aad739acSMatthew G. Knepley 3695bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetComputeInitialCondition()`, `TSSetComputeInitialCondition()`, `TSSolve()` 3696aad739acSMatthew G. Knepley @*/ 3697d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeExactError(TS ts, Vec u, Vec e) 3698d71ae5a4SJacob Faibussowitsch { 3699aad739acSMatthew G. Knepley PetscFunctionBegin; 3700aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3701aad739acSMatthew G. Knepley PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 3702aad739acSMatthew G. Knepley PetscValidHeaderSpecific(e, VEC_CLASSID, 3); 3703dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, exacterror, u, e); 37043ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3705aad739acSMatthew G. Knepley } 3706aad739acSMatthew G. Knepley 3707b1cb36f3SHong Zhang /*@ 37086a4d4014SLisandro Dalcin TSSolve - Steps the requested number of timesteps. 37096a4d4014SLisandro Dalcin 3710c3339decSBarry Smith Collective 37116a4d4014SLisandro Dalcin 3712d8d19677SJose E. Roman Input Parameters: 3713bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 3714bcf0153eSBarry Smith - u - the solution vector (can be null if `TSSetSolution()` was used and `TSSetExactFinalTime`(ts,`TS_EXACTFINALTIME_MATCHSTEP`) was not used, 371563e21af5SBarry Smith otherwise must contain the initial conditions and will contain the solution at the final requested time 37165a3a76d0SJed Brown 37176a4d4014SLisandro Dalcin Level: beginner 37186a4d4014SLisandro Dalcin 37195a3a76d0SJed Brown Notes: 37205a3a76d0SJed Brown The final time returned by this function may be different from the time of the internally 3721bcf0153eSBarry Smith held state accessible by `TSGetSolution()` and `TSGetTime()` because the method may have 37225a3a76d0SJed Brown stepped over the final time. 37235a3a76d0SJed Brown 3724bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSCreate()`, `TSSetSolution()`, `TSStep()`, `TSGetTime()`, `TSGetSolveTime()` 37256a4d4014SLisandro Dalcin @*/ 3726d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSolve(TS ts, Vec u) 3727d71ae5a4SJacob Faibussowitsch { 3728b06615a5SLisandro Dalcin Vec solution; 3729f22f69f0SBarry Smith 37306a4d4014SLisandro Dalcin PetscFunctionBegin; 37310700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3732f2c2a1b9SBarry Smith if (u) PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 3733303a5415SBarry Smith 37349566063dSJacob Faibussowitsch PetscCall(TSSetExactFinalTimeDefault(ts)); 3735ee41a567SStefano Zampini if (ts->exact_final_time == TS_EXACTFINALTIME_INTERPOLATE && u) { /* Need ts->vec_sol to be distinct so it is not overwritten when we interpolate at the end */ 37360910c330SBarry Smith if (!ts->vec_sol || u == ts->vec_sol) { 37379566063dSJacob Faibussowitsch PetscCall(VecDuplicate(u, &solution)); 37389566063dSJacob Faibussowitsch PetscCall(TSSetSolution(ts, solution)); 37399566063dSJacob Faibussowitsch PetscCall(VecDestroy(&solution)); /* grant ownership */ 37405a3a76d0SJed Brown } 37419566063dSJacob Faibussowitsch PetscCall(VecCopy(u, ts->vec_sol)); 37423c633725SBarry Smith PetscCheck(!ts->forward_solve, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Sensitivity analysis does not support the mode TS_EXACTFINALTIME_INTERPOLATE"); 37431baa6e33SBarry Smith } else if (u) PetscCall(TSSetSolution(ts, u)); 37449566063dSJacob Faibussowitsch PetscCall(TSSetUp(ts)); 37459566063dSJacob Faibussowitsch PetscCall(TSTrajectorySetUp(ts->trajectory, ts)); 3746a6772fa2SLisandro Dalcin 37473c633725SBarry Smith PetscCheck(ts->max_time < PETSC_MAX_REAL || ts->max_steps != PETSC_MAX_INT, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONGSTATE, "You must call TSSetMaxTime() or TSSetMaxSteps(), or use -ts_max_time <time> or -ts_max_steps <steps>"); 37483c633725SBarry Smith PetscCheck(ts->exact_final_time != TS_EXACTFINALTIME_UNSPECIFIED, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONGSTATE, "You must call TSSetExactFinalTime() or use -ts_exact_final_time <stepover,interpolate,matchstep> before calling TSSolve()"); 37493c633725SBarry Smith PetscCheck(ts->exact_final_time != TS_EXACTFINALTIME_MATCHSTEP || ts->adapt, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Since TS is not adaptive you cannot use TS_EXACTFINALTIME_MATCHSTEP, suggest TS_EXACTFINALTIME_INTERPOLATE"); 37504a658b32SHong Zhang PetscCheck(!(ts->tspan && ts->exact_final_time != TS_EXACTFINALTIME_MATCHSTEP), PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "You must use TS_EXACTFINALTIME_MATCHSTEP when using time span"); 37514a658b32SHong Zhang 3752e1db57b0SHong Zhang if (ts->tspan && PetscIsCloseAtTol(ts->ptime, ts->tspan->span_times[0], ts->tspan->reltol * ts->time_step + ts->tspan->abstol, 0)) { /* starting point in time span */ 37534a658b32SHong Zhang PetscCall(VecCopy(ts->vec_sol, ts->tspan->vecs_sol[0])); 37544a658b32SHong Zhang ts->tspan->spanctr = 1; 37554a658b32SHong Zhang } 3756a6772fa2SLisandro Dalcin 37571baa6e33SBarry Smith if (ts->forward_solve) PetscCall(TSForwardSetUp(ts)); 3758715f1b00SHong Zhang 3759e7069c78SShri /* reset number of steps only when the step is not restarted. ARKIMEX 3760715f1b00SHong Zhang restarts the step after an event. Resetting these counters in such case causes 3761e7069c78SShri TSTrajectory to incorrectly save the output files 3762e7069c78SShri */ 3763715f1b00SHong Zhang /* reset time step and iteration counters */ 37642808aa04SLisandro Dalcin if (!ts->steps) { 37655ef26d82SJed Brown ts->ksp_its = 0; 37665ef26d82SJed Brown ts->snes_its = 0; 3767c610991cSLisandro Dalcin ts->num_snes_failures = 0; 3768c610991cSLisandro Dalcin ts->reject = 0; 37692808aa04SLisandro Dalcin ts->steprestart = PETSC_TRUE; 37702808aa04SLisandro Dalcin ts->steprollback = PETSC_FALSE; 37717d51462cSStefano Zampini ts->rhsjacobian.time = PETSC_MIN_REAL; 37722808aa04SLisandro Dalcin } 3773e97c63d7SStefano Zampini 37744a658b32SHong Zhang /* make sure initial time step does not overshoot final time or the next point in tspan */ 3775e97c63d7SStefano Zampini if (ts->exact_final_time == TS_EXACTFINALTIME_MATCHSTEP) { 37764a658b32SHong Zhang PetscReal maxdt; 3777e97c63d7SStefano Zampini PetscReal dt = ts->time_step; 3778e97c63d7SStefano Zampini 37794a658b32SHong Zhang if (ts->tspan) maxdt = ts->tspan->span_times[ts->tspan->spanctr] - ts->ptime; 37804a658b32SHong Zhang else maxdt = ts->max_time - ts->ptime; 3781e97c63d7SStefano Zampini ts->time_step = dt >= maxdt ? maxdt : (PetscIsCloseAtTol(dt, maxdt, 10 * PETSC_MACHINE_EPSILON, 0) ? maxdt : dt); 3782e97c63d7SStefano Zampini } 3783193ac0bcSJed Brown ts->reason = TS_CONVERGED_ITERATING; 3784193ac0bcSJed Brown 3785900f6b5bSMatthew G. Knepley { 3786900f6b5bSMatthew G. Knepley PetscViewer viewer; 3787900f6b5bSMatthew G. Knepley PetscViewerFormat format; 3788900f6b5bSMatthew G. Knepley PetscBool flg; 3789900f6b5bSMatthew G. Knepley static PetscBool incall = PETSC_FALSE; 3790900f6b5bSMatthew G. Knepley 3791900f6b5bSMatthew G. Knepley if (!incall) { 3792900f6b5bSMatthew G. Knepley /* Estimate the convergence rate of the time discretization */ 37939566063dSJacob Faibussowitsch PetscCall(PetscOptionsGetViewer(PetscObjectComm((PetscObject)ts), ((PetscObject)ts)->options, ((PetscObject)ts)->prefix, "-ts_convergence_estimate", &viewer, &format, &flg)); 3794900f6b5bSMatthew G. Knepley if (flg) { 3795900f6b5bSMatthew G. Knepley PetscConvEst conv; 3796900f6b5bSMatthew G. Knepley DM dm; 3797900f6b5bSMatthew G. Knepley PetscReal *alpha; /* Convergence rate of the solution error for each field in the L_2 norm */ 3798900f6b5bSMatthew G. Knepley PetscInt Nf; 3799f2ed2dc7SMatthew G. Knepley PetscBool checkTemporal = PETSC_TRUE; 3800900f6b5bSMatthew G. Knepley 3801900f6b5bSMatthew G. Knepley incall = PETSC_TRUE; 38029566063dSJacob Faibussowitsch PetscCall(PetscOptionsGetBool(((PetscObject)ts)->options, ((PetscObject)ts)->prefix, "-ts_convergence_temporal", &checkTemporal, &flg)); 38039566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 38049566063dSJacob Faibussowitsch PetscCall(DMGetNumFields(dm, &Nf)); 38059566063dSJacob Faibussowitsch PetscCall(PetscCalloc1(PetscMax(Nf, 1), &alpha)); 38069566063dSJacob Faibussowitsch PetscCall(PetscConvEstCreate(PetscObjectComm((PetscObject)ts), &conv)); 38079566063dSJacob Faibussowitsch PetscCall(PetscConvEstUseTS(conv, checkTemporal)); 38089566063dSJacob Faibussowitsch PetscCall(PetscConvEstSetSolver(conv, (PetscObject)ts)); 38099566063dSJacob Faibussowitsch PetscCall(PetscConvEstSetFromOptions(conv)); 38109566063dSJacob Faibussowitsch PetscCall(PetscConvEstSetUp(conv)); 38119566063dSJacob Faibussowitsch PetscCall(PetscConvEstGetConvRate(conv, alpha)); 38129566063dSJacob Faibussowitsch PetscCall(PetscViewerPushFormat(viewer, format)); 38139566063dSJacob Faibussowitsch PetscCall(PetscConvEstRateView(conv, alpha, viewer)); 38149566063dSJacob Faibussowitsch PetscCall(PetscViewerPopFormat(viewer)); 38159566063dSJacob Faibussowitsch PetscCall(PetscViewerDestroy(&viewer)); 38169566063dSJacob Faibussowitsch PetscCall(PetscConvEstDestroy(&conv)); 38179566063dSJacob Faibussowitsch PetscCall(PetscFree(alpha)); 3818900f6b5bSMatthew G. Knepley incall = PETSC_FALSE; 3819900f6b5bSMatthew G. Knepley } 3820900f6b5bSMatthew G. Knepley } 3821900f6b5bSMatthew G. Knepley } 3822900f6b5bSMatthew G. Knepley 38239566063dSJacob Faibussowitsch PetscCall(TSViewFromOptions(ts, NULL, "-ts_view_pre")); 3824f05ece33SBarry Smith 3825193ac0bcSJed Brown if (ts->ops->solve) { /* This private interface is transitional and should be removed when all implementations are updated. */ 3826dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, solve); 38279566063dSJacob Faibussowitsch if (u) PetscCall(VecCopy(ts->vec_sol, u)); 3828cc708dedSBarry Smith ts->solvetime = ts->ptime; 3829a6772fa2SLisandro Dalcin solution = ts->vec_sol; 3830be5899b3SLisandro Dalcin } else { /* Step the requested number of timesteps. */ 3831db4deed7SKarl Rupp if (ts->steps >= ts->max_steps) ts->reason = TS_CONVERGED_ITS; 3832db4deed7SKarl Rupp else if (ts->ptime >= ts->max_time) ts->reason = TS_CONVERGED_TIME; 3833e7069c78SShri 38342808aa04SLisandro Dalcin if (!ts->steps) { 38359566063dSJacob Faibussowitsch PetscCall(TSTrajectorySet(ts->trajectory, ts, ts->steps, ts->ptime, ts->vec_sol)); 38369566063dSJacob Faibussowitsch PetscCall(TSEventInitialize(ts->event, ts, ts->ptime, ts->vec_sol)); 38372808aa04SLisandro Dalcin } 38386427ac75SLisandro Dalcin 3839e1a7a14fSJed Brown while (!ts->reason) { 38409566063dSJacob Faibussowitsch PetscCall(TSMonitor(ts, ts->steps, ts->ptime, ts->vec_sol)); 38411e66621cSBarry Smith if (!ts->steprollback) PetscCall(TSPreStep(ts)); 38429566063dSJacob Faibussowitsch PetscCall(TSStep(ts)); 38431baa6e33SBarry Smith if (ts->testjacobian) PetscCall(TSRHSJacobianTest(ts, NULL)); 38441baa6e33SBarry Smith if (ts->testjacobiantranspose) PetscCall(TSRHSJacobianTestTranspose(ts, NULL)); 3845cd4cee2dSHong Zhang if (ts->quadraturets && ts->costintegralfwd) { /* Must evaluate the cost integral before event is handled. The cost integral value can also be rolled back. */ 38467b0e2f17SHong Zhang if (ts->reason >= 0) ts->steps--; /* Revert the step number changed by TSStep() */ 38479566063dSJacob Faibussowitsch PetscCall(TSForwardCostIntegral(ts)); 38487b0e2f17SHong Zhang if (ts->reason >= 0) ts->steps++; 3849b1cb36f3SHong Zhang } 385058818c2dSLisandro Dalcin if (ts->forward_solve) { /* compute forward sensitivities before event handling because postevent() may change RHS and jump conditions may have to be applied */ 38517b0e2f17SHong Zhang if (ts->reason >= 0) ts->steps--; /* Revert the step number changed by TSStep() */ 38529566063dSJacob Faibussowitsch PetscCall(TSForwardStep(ts)); 38537b0e2f17SHong Zhang if (ts->reason >= 0) ts->steps++; 3854715f1b00SHong Zhang } 38559566063dSJacob Faibussowitsch PetscCall(TSPostEvaluate(ts)); 38569566063dSJacob Faibussowitsch PetscCall(TSEventHandler(ts)); /* The right-hand side may be changed due to event. Be careful with Any computation using the RHS information after this point. */ 38571baa6e33SBarry Smith if (ts->steprollback) PetscCall(TSPostEvaluate(ts)); 3858e783b05fSHong Zhang if (!ts->steprollback) { 38599566063dSJacob Faibussowitsch PetscCall(TSTrajectorySet(ts->trajectory, ts, ts->steps, ts->ptime, ts->vec_sol)); 38609566063dSJacob Faibussowitsch PetscCall(TSPostStep(ts)); 3861aeb4809dSShri Abhyankar } 3862193ac0bcSJed Brown } 38639566063dSJacob Faibussowitsch PetscCall(TSMonitor(ts, ts->steps, ts->ptime, ts->vec_sol)); 38646427ac75SLisandro Dalcin 386549354f04SShri Abhyankar if (ts->exact_final_time == TS_EXACTFINALTIME_INTERPOLATE && ts->ptime > ts->max_time) { 38669566063dSJacob Faibussowitsch PetscCall(TSInterpolate(ts, ts->max_time, u)); 3867cc708dedSBarry Smith ts->solvetime = ts->max_time; 3868b06615a5SLisandro Dalcin solution = u; 38699566063dSJacob Faibussowitsch PetscCall(TSMonitor(ts, -1, ts->solvetime, solution)); 38700574a7fbSJed Brown } else { 38719566063dSJacob Faibussowitsch if (u) PetscCall(VecCopy(ts->vec_sol, u)); 3872cc708dedSBarry Smith ts->solvetime = ts->ptime; 3873b06615a5SLisandro Dalcin solution = ts->vec_sol; 38740574a7fbSJed Brown } 3875193ac0bcSJed Brown } 3876d2daff3dSHong Zhang 38779566063dSJacob Faibussowitsch PetscCall(TSViewFromOptions(ts, NULL, "-ts_view")); 38789566063dSJacob Faibussowitsch PetscCall(VecViewFromOptions(solution, (PetscObject)ts, "-ts_view_solution")); 38799566063dSJacob Faibussowitsch PetscCall(PetscObjectSAWsBlock((PetscObject)ts)); 38801baa6e33SBarry Smith if (ts->adjoint_solve) PetscCall(TSAdjointSolve(ts)); 38813ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 38826a4d4014SLisandro Dalcin } 38836a4d4014SLisandro Dalcin 3884d763cef2SBarry Smith /*@ 3885b8123daeSJed Brown TSGetTime - Gets the time of the most recently completed step. 3886d763cef2SBarry Smith 3887d763cef2SBarry Smith Not Collective 3888d763cef2SBarry Smith 3889d763cef2SBarry Smith Input Parameter: 3890bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 3891d763cef2SBarry Smith 3892d763cef2SBarry Smith Output Parameter: 3893bcf0153eSBarry Smith . t - the current time. This time may not corresponds to the final time set with `TSSetMaxTime()`, use `TSGetSolveTime()`. 3894d763cef2SBarry Smith 3895d763cef2SBarry Smith Level: beginner 3896d763cef2SBarry Smith 3897b8123daeSJed Brown Note: 3898bcf0153eSBarry Smith When called during time step evaluation (e.g. during residual evaluation or via hooks set using `TSSetPreStep()`, 3899bcf0153eSBarry Smith `TSSetPreStage()`, `TSSetPostStage()`, or `TSSetPostStep()`), the time is the time at the start of the step being evaluated. 3900b8123daeSJed Brown 3901bcf0153eSBarry Smith .seealso: [](chapter_ts), TS`, ``TSGetSolveTime()`, `TSSetTime()`, `TSGetTimeStep()`, `TSGetStepNumber()` 3902d763cef2SBarry Smith @*/ 3903d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTime(TS ts, PetscReal *t) 3904d71ae5a4SJacob Faibussowitsch { 3905d763cef2SBarry Smith PetscFunctionBegin; 39060700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3907f7cf8827SBarry Smith PetscValidRealPointer(t, 2); 3908d763cef2SBarry Smith *t = ts->ptime; 39093ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3910d763cef2SBarry Smith } 3911d763cef2SBarry Smith 3912e5e524a1SHong Zhang /*@ 3913e5e524a1SHong Zhang TSGetPrevTime - Gets the starting time of the previously completed step. 3914e5e524a1SHong Zhang 3915e5e524a1SHong Zhang Not Collective 3916e5e524a1SHong Zhang 3917e5e524a1SHong Zhang Input Parameter: 3918bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 3919e5e524a1SHong Zhang 3920e5e524a1SHong Zhang Output Parameter: 3921e5e524a1SHong Zhang . t - the previous time 3922e5e524a1SHong Zhang 3923e5e524a1SHong Zhang Level: beginner 3924e5e524a1SHong Zhang 3925bcf0153eSBarry Smith .seealso: [](chapter_ts), TS`, ``TSGetTime()`, `TSGetSolveTime()`, `TSGetTimeStep()` 3926e5e524a1SHong Zhang @*/ 3927d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetPrevTime(TS ts, PetscReal *t) 3928d71ae5a4SJacob Faibussowitsch { 3929e5e524a1SHong Zhang PetscFunctionBegin; 3930e5e524a1SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3931e5e524a1SHong Zhang PetscValidRealPointer(t, 2); 3932e5e524a1SHong Zhang *t = ts->ptime_prev; 39333ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3934e5e524a1SHong Zhang } 3935e5e524a1SHong Zhang 39366a4d4014SLisandro Dalcin /*@ 39376a4d4014SLisandro Dalcin TSSetTime - Allows one to reset the time. 39386a4d4014SLisandro Dalcin 3939c3339decSBarry Smith Logically Collective 39406a4d4014SLisandro Dalcin 39416a4d4014SLisandro Dalcin Input Parameters: 3942bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 39436a4d4014SLisandro Dalcin - time - the time 39446a4d4014SLisandro Dalcin 39456a4d4014SLisandro Dalcin Level: intermediate 39466a4d4014SLisandro Dalcin 3947bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetTime()`, `TSSetMaxSteps()` 39486a4d4014SLisandro Dalcin @*/ 3949d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTime(TS ts, PetscReal t) 3950d71ae5a4SJacob Faibussowitsch { 39516a4d4014SLisandro Dalcin PetscFunctionBegin; 39520700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3953c5eb9154SBarry Smith PetscValidLogicalCollectiveReal(ts, t, 2); 39546a4d4014SLisandro Dalcin ts->ptime = t; 39553ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 39566a4d4014SLisandro Dalcin } 39576a4d4014SLisandro Dalcin 3958d763cef2SBarry Smith /*@C 3959d763cef2SBarry Smith TSSetOptionsPrefix - Sets the prefix used for searching for all 3960d763cef2SBarry Smith TS options in the database. 3961d763cef2SBarry Smith 3962c3339decSBarry Smith Logically Collective 3963d763cef2SBarry Smith 3964d8d19677SJose E. Roman Input Parameters: 3965bcf0153eSBarry Smith + ts - The `TS` context 3966d763cef2SBarry Smith - prefix - The prefix to prepend to all option names 3967d763cef2SBarry Smith 3968bcf0153eSBarry Smith Level: advanced 3969bcf0153eSBarry Smith 3970bcf0153eSBarry Smith Note: 3971d763cef2SBarry Smith A hyphen (-) must NOT be given at the beginning of the prefix name. 3972d763cef2SBarry Smith The first character of all runtime options is AUTOMATICALLY the 3973d763cef2SBarry Smith hyphen. 3974d763cef2SBarry Smith 3975bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetFromOptions()`, `TSAppendOptionsPrefix()` 3976d763cef2SBarry Smith @*/ 3977d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetOptionsPrefix(TS ts, const char prefix[]) 3978d71ae5a4SJacob Faibussowitsch { 3979089b2837SJed Brown SNES snes; 3980d763cef2SBarry Smith 3981d763cef2SBarry Smith PetscFunctionBegin; 39820700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 39839566063dSJacob Faibussowitsch PetscCall(PetscObjectSetOptionsPrefix((PetscObject)ts, prefix)); 39849566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 39859566063dSJacob Faibussowitsch PetscCall(SNESSetOptionsPrefix(snes, prefix)); 39863ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3987d763cef2SBarry Smith } 3988d763cef2SBarry Smith 3989d763cef2SBarry Smith /*@C 3990d763cef2SBarry Smith TSAppendOptionsPrefix - Appends to the prefix used for searching for all 3991d763cef2SBarry Smith TS options in the database. 3992d763cef2SBarry Smith 3993c3339decSBarry Smith Logically Collective 3994d763cef2SBarry Smith 3995d8d19677SJose E. Roman Input Parameters: 3996bcf0153eSBarry Smith + ts - The `TS` context 3997d763cef2SBarry Smith - prefix - The prefix to prepend to all option names 3998d763cef2SBarry Smith 3999bcf0153eSBarry Smith Level: advanced 4000bcf0153eSBarry Smith 4001bcf0153eSBarry Smith Note: 4002d763cef2SBarry Smith A hyphen (-) must NOT be given at the beginning of the prefix name. 4003d763cef2SBarry Smith The first character of all runtime options is AUTOMATICALLY the 4004d763cef2SBarry Smith hyphen. 4005d763cef2SBarry Smith 4006bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetOptionsPrefix()`, `TSSetOptionsPrefix()`, `TSSetFromOptions()` 4007d763cef2SBarry Smith @*/ 4008d71ae5a4SJacob Faibussowitsch PetscErrorCode TSAppendOptionsPrefix(TS ts, const char prefix[]) 4009d71ae5a4SJacob Faibussowitsch { 4010089b2837SJed Brown SNES snes; 4011d763cef2SBarry Smith 4012d763cef2SBarry Smith PetscFunctionBegin; 40130700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 40149566063dSJacob Faibussowitsch PetscCall(PetscObjectAppendOptionsPrefix((PetscObject)ts, prefix)); 40159566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 40169566063dSJacob Faibussowitsch PetscCall(SNESAppendOptionsPrefix(snes, prefix)); 40173ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4018d763cef2SBarry Smith } 4019d763cef2SBarry Smith 4020d763cef2SBarry Smith /*@C 4021d763cef2SBarry Smith TSGetOptionsPrefix - Sets the prefix used for searching for all 4022bcf0153eSBarry Smith `TS` options in the database. 4023d763cef2SBarry Smith 4024d763cef2SBarry Smith Not Collective 4025d763cef2SBarry Smith 4026d763cef2SBarry Smith Input Parameter: 4027bcf0153eSBarry Smith . ts - The `TS` context 4028d763cef2SBarry Smith 4029d763cef2SBarry Smith Output Parameter: 4030d763cef2SBarry Smith . prefix - A pointer to the prefix string used 4031d763cef2SBarry Smith 4032d763cef2SBarry Smith Level: intermediate 4033d763cef2SBarry Smith 4034bcf0153eSBarry Smith Fortran Note: 4035195e9b02SBarry Smith The user should pass in a string 'prefix' of 4036bcf0153eSBarry Smith sufficient length to hold the prefix. 4037bcf0153eSBarry Smith 4038bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSAppendOptionsPrefix()`, `TSSetFromOptions()` 4039d763cef2SBarry Smith @*/ 4040d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetOptionsPrefix(TS ts, const char *prefix[]) 4041d71ae5a4SJacob Faibussowitsch { 4042d763cef2SBarry Smith PetscFunctionBegin; 40430700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 40444482741eSBarry Smith PetscValidPointer(prefix, 2); 40459566063dSJacob Faibussowitsch PetscCall(PetscObjectGetOptionsPrefix((PetscObject)ts, prefix)); 40463ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4047d763cef2SBarry Smith } 4048d763cef2SBarry Smith 4049d763cef2SBarry Smith /*@C 4050d763cef2SBarry Smith TSGetRHSJacobian - Returns the Jacobian J at the present timestep. 4051d763cef2SBarry Smith 4052bcf0153eSBarry Smith Not Collective, but parallel objects are returned if ts is parallel 4053d763cef2SBarry Smith 4054d763cef2SBarry Smith Input Parameter: 4055bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 4056d763cef2SBarry Smith 4057d763cef2SBarry Smith Output Parameters: 4058195e9b02SBarry Smith + Amat - The (approximate) Jacobian J of G, where U_t = G(U,t) (or `NULL`) 4059195e9b02SBarry Smith . Pmat - The matrix from which the preconditioner is constructed, usually the same as `Amat` (or `NULL`) 4060195e9b02SBarry Smith . func - Function to compute the Jacobian of the RHS (or `NULL`) 4061195e9b02SBarry Smith - ctx - User-defined context for Jacobian evaluation routine (or `NULL`) 4062d763cef2SBarry Smith 4063d763cef2SBarry Smith Level: intermediate 4064d763cef2SBarry Smith 4065bcf0153eSBarry Smith Note: 4066195e9b02SBarry Smith You can pass in `NULL` for any return argument you do not need. 4067bcf0153eSBarry Smith 4068bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetTimeStep()`, `TSGetMatrices()`, `TSGetTime()`, `TSGetStepNumber()` 4069d763cef2SBarry Smith 4070d763cef2SBarry Smith @*/ 4071d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetRHSJacobian(TS ts, Mat *Amat, Mat *Pmat, TSRHSJacobian *func, void **ctx) 4072d71ae5a4SJacob Faibussowitsch { 407324989b8cSPeter Brune DM dm; 4074089b2837SJed Brown 4075d763cef2SBarry Smith PetscFunctionBegin; 407623a57915SBarry Smith if (Amat || Pmat) { 407723a57915SBarry Smith SNES snes; 40789566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 40799566063dSJacob Faibussowitsch PetscCall(SNESSetUpMatrices(snes)); 40809566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(snes, Amat, Pmat, NULL, NULL)); 408123a57915SBarry Smith } 40829566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 40839566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, func, ctx)); 40843ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4085d763cef2SBarry Smith } 4086d763cef2SBarry Smith 40872eca1d9cSJed Brown /*@C 40882eca1d9cSJed Brown TSGetIJacobian - Returns the implicit Jacobian at the present timestep. 40892eca1d9cSJed Brown 4090bcf0153eSBarry Smith Not Collective, but parallel objects are returned if ts is parallel 40912eca1d9cSJed Brown 40922eca1d9cSJed Brown Input Parameter: 4093bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 40942eca1d9cSJed Brown 40952eca1d9cSJed Brown Output Parameters: 4096e4357dc4SBarry Smith + Amat - The (approximate) Jacobian of F(t,U,U_t) 4097195e9b02SBarry Smith . Pmat - The matrix from which the preconditioner is constructed, often the same as `Amat` 40982eca1d9cSJed Brown . f - The function to compute the matrices 40992eca1d9cSJed Brown - ctx - User-defined context for Jacobian evaluation routine 41002eca1d9cSJed Brown 41012eca1d9cSJed Brown Level: advanced 41022eca1d9cSJed Brown 4103bcf0153eSBarry Smith Note: 4104195e9b02SBarry Smith You can pass in `NULL` for any return argument you do not need. 4105bcf0153eSBarry Smith 4106bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetTimeStep()`, `TSGetRHSJacobian()`, `TSGetMatrices()`, `TSGetTime()`, `TSGetStepNumber()` 41072eca1d9cSJed Brown @*/ 4108d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetIJacobian(TS ts, Mat *Amat, Mat *Pmat, TSIJacobian *f, void **ctx) 4109d71ae5a4SJacob Faibussowitsch { 411024989b8cSPeter Brune DM dm; 41110910c330SBarry Smith 41122eca1d9cSJed Brown PetscFunctionBegin; 4113c0aab802Sstefano_zampini if (Amat || Pmat) { 4114c0aab802Sstefano_zampini SNES snes; 41159566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 41169566063dSJacob Faibussowitsch PetscCall(SNESSetUpMatrices(snes)); 41179566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(snes, Amat, Pmat, NULL, NULL)); 4118c0aab802Sstefano_zampini } 41199566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 41209566063dSJacob Faibussowitsch PetscCall(DMTSGetIJacobian(dm, f, ctx)); 41213ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 41222eca1d9cSJed Brown } 41232eca1d9cSJed Brown 4124af0996ceSBarry Smith #include <petsc/private/dmimpl.h> 41256c699258SBarry Smith /*@ 4126bcf0153eSBarry Smith TSSetDM - Sets the `DM` that may be used by some nonlinear solvers or preconditioners under the `TS` 41276c699258SBarry Smith 4128c3339decSBarry Smith Logically Collective 41296c699258SBarry Smith 41306c699258SBarry Smith Input Parameters: 4131bcf0153eSBarry Smith + ts - the `TS` integrator object 4132195e9b02SBarry Smith - dm - the dm, cannot be `NULL` 41336c699258SBarry Smith 41346c699258SBarry Smith Level: intermediate 41356c699258SBarry Smith 4136bcf0153eSBarry Smith Notes: 4137bcf0153eSBarry Smith A `DM` can only be used for solving one problem at a time because information about the problem is stored on the `DM`, 4138bcf0153eSBarry Smith even when not using interfaces like `DMTSSetIFunction()`. Use `DMClone()` to get a distinct `DM` when solving 4139bcf0153eSBarry Smith different problems using the same function space. 4140bcf0153eSBarry Smith 4141bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `DM`, `TSGetDM()`, `SNESSetDM()`, `SNESGetDM()` 41426c699258SBarry Smith @*/ 4143d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetDM(TS ts, DM dm) 4144d71ae5a4SJacob Faibussowitsch { 4145089b2837SJed Brown SNES snes; 4146942e3340SBarry Smith DMTS tsdm; 41476c699258SBarry Smith 41486c699258SBarry Smith PetscFunctionBegin; 41490700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 41502a808120SBarry Smith PetscValidHeaderSpecific(dm, DM_CLASSID, 2); 41519566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)dm)); 4152942e3340SBarry Smith if (ts->dm) { /* Move the DMTS context over to the new DM unless the new DM already has one */ 41532a34c10cSBarry Smith if (ts->dm->dmts && !dm->dmts) { 41549566063dSJacob Faibussowitsch PetscCall(DMCopyDMTS(ts->dm, dm)); 41559566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(ts->dm, &tsdm)); 41561e66621cSBarry Smith /* Grant write privileges to the replacement DM */ 41571e66621cSBarry Smith if (tsdm->originaldm == ts->dm) tsdm->originaldm = dm; 415824989b8cSPeter Brune } 41599566063dSJacob Faibussowitsch PetscCall(DMDestroy(&ts->dm)); 416024989b8cSPeter Brune } 41616c699258SBarry Smith ts->dm = dm; 4162bbd56ea5SKarl Rupp 41639566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 41649566063dSJacob Faibussowitsch PetscCall(SNESSetDM(snes, dm)); 41653ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 41666c699258SBarry Smith } 41676c699258SBarry Smith 41686c699258SBarry Smith /*@ 4169bcf0153eSBarry Smith TSGetDM - Gets the `DM` that may be used by some preconditioners 41706c699258SBarry Smith 41713f9fe445SBarry Smith Not Collective 41726c699258SBarry Smith 41736c699258SBarry Smith Input Parameter: 4174bcf0153eSBarry Smith . ts - the `TS` 41756c699258SBarry Smith 41766c699258SBarry Smith Output Parameter: 4177195e9b02SBarry Smith . dm - the `DM` 41786c699258SBarry Smith 41796c699258SBarry Smith Level: intermediate 41806c699258SBarry Smith 4181bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `DM`, `TSSetDM()`, `SNESSetDM()`, `SNESGetDM()` 41826c699258SBarry Smith @*/ 4183d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetDM(TS ts, DM *dm) 4184d71ae5a4SJacob Faibussowitsch { 41856c699258SBarry Smith PetscFunctionBegin; 41860700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4187496e6a7aSJed Brown if (!ts->dm) { 41889566063dSJacob Faibussowitsch PetscCall(DMShellCreate(PetscObjectComm((PetscObject)ts), &ts->dm)); 41899566063dSJacob Faibussowitsch if (ts->snes) PetscCall(SNESSetDM(ts->snes, ts->dm)); 4190496e6a7aSJed Brown } 41916c699258SBarry Smith *dm = ts->dm; 41923ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 41936c699258SBarry Smith } 41941713a123SBarry Smith 41950f5c6efeSJed Brown /*@ 41960f5c6efeSJed Brown SNESTSFormFunction - Function to evaluate nonlinear residual 41970f5c6efeSJed Brown 4198c3339decSBarry Smith Logically Collective 41990f5c6efeSJed Brown 4200d8d19677SJose E. Roman Input Parameters: 4201d42a1c89SJed Brown + snes - nonlinear solver 42020910c330SBarry Smith . U - the current state at which to evaluate the residual 4203d42a1c89SJed Brown - ctx - user context, must be a TS 42040f5c6efeSJed Brown 42050f5c6efeSJed Brown Output Parameter: 42060f5c6efeSJed Brown . F - the nonlinear residual 42070f5c6efeSJed Brown 42080f5c6efeSJed Brown Level: advanced 42090f5c6efeSJed Brown 4210bcf0153eSBarry Smith Note: 4211bcf0153eSBarry Smith This function is not normally called by users and is automatically registered with the `SNES` used by `TS`. 4212bcf0153eSBarry Smith It is most frequently passed to `MatFDColoringSetFunction()`. 4213bcf0153eSBarry Smith 4214bcf0153eSBarry Smith .seealso: [](chapter_ts), `SNESSetFunction()`, `MatFDColoringSetFunction()` 42150f5c6efeSJed Brown @*/ 4216d71ae5a4SJacob Faibussowitsch PetscErrorCode SNESTSFormFunction(SNES snes, Vec U, Vec F, void *ctx) 4217d71ae5a4SJacob Faibussowitsch { 42180f5c6efeSJed Brown TS ts = (TS)ctx; 42190f5c6efeSJed Brown 42200f5c6efeSJed Brown PetscFunctionBegin; 42210f5c6efeSJed Brown PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 42220910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 2); 42230f5c6efeSJed Brown PetscValidHeaderSpecific(F, VEC_CLASSID, 3); 42240f5c6efeSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 4); 42259566063dSJacob Faibussowitsch PetscCall((ts->ops->snesfunction)(snes, U, F, ts)); 42263ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 42270f5c6efeSJed Brown } 42280f5c6efeSJed Brown 42290f5c6efeSJed Brown /*@ 42300f5c6efeSJed Brown SNESTSFormJacobian - Function to evaluate the Jacobian 42310f5c6efeSJed Brown 4232c3339decSBarry Smith Collective 42330f5c6efeSJed Brown 4234d8d19677SJose E. Roman Input Parameters: 42350f5c6efeSJed Brown + snes - nonlinear solver 42360910c330SBarry Smith . U - the current state at which to evaluate the residual 4237bcf0153eSBarry Smith - ctx - user context, must be a `TS` 42380f5c6efeSJed Brown 4239d8d19677SJose E. Roman Output Parameters: 42400f5c6efeSJed Brown + A - the Jacobian 42416b867d5aSJose E. Roman - B - the preconditioning matrix (may be the same as A) 42420f5c6efeSJed Brown 42430f5c6efeSJed Brown Level: developer 42440f5c6efeSJed Brown 4245bcf0153eSBarry Smith Note: 4246bcf0153eSBarry Smith This function is not normally called by users and is automatically registered with the `SNES` used by `TS`. 4247bcf0153eSBarry Smith 4248bcf0153eSBarry Smith .seealso: [](chapter_ts), `SNESSetJacobian()` 42490f5c6efeSJed Brown @*/ 4250d71ae5a4SJacob Faibussowitsch PetscErrorCode SNESTSFormJacobian(SNES snes, Vec U, Mat A, Mat B, void *ctx) 4251d71ae5a4SJacob Faibussowitsch { 42520f5c6efeSJed Brown TS ts = (TS)ctx; 42530f5c6efeSJed Brown 42540f5c6efeSJed Brown PetscFunctionBegin; 42550f5c6efeSJed Brown PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 42560910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 2); 42570f5c6efeSJed Brown PetscValidPointer(A, 3); 425894ab13aaSBarry Smith PetscValidHeaderSpecific(A, MAT_CLASSID, 3); 42590f5c6efeSJed Brown PetscValidPointer(B, 4); 426094ab13aaSBarry Smith PetscValidHeaderSpecific(B, MAT_CLASSID, 4); 4261064a246eSJacob Faibussowitsch PetscValidHeaderSpecific(ts, TS_CLASSID, 5); 42629566063dSJacob Faibussowitsch PetscCall((ts->ops->snesjacobian)(snes, U, A, B, ts)); 42633ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 42640f5c6efeSJed Brown } 4265325fc9f4SBarry Smith 42660e4ef248SJed Brown /*@C 42679ae8fd06SBarry Smith TSComputeRHSFunctionLinear - Evaluate the right hand side via the user-provided Jacobian, for linear problems Udot = A U only 42680e4ef248SJed Brown 4269c3339decSBarry Smith Collective 42700e4ef248SJed Brown 42714165533cSJose E. Roman Input Parameters: 42720e4ef248SJed Brown + ts - time stepping context 42730e4ef248SJed Brown . t - time at which to evaluate 42740910c330SBarry Smith . U - state at which to evaluate 42750e4ef248SJed Brown - ctx - context 42760e4ef248SJed Brown 42774165533cSJose E. Roman Output Parameter: 42780e4ef248SJed Brown . F - right hand side 42790e4ef248SJed Brown 42800e4ef248SJed Brown Level: intermediate 42810e4ef248SJed Brown 4282bcf0153eSBarry Smith Note: 4283bcf0153eSBarry Smith This function is intended to be passed to `TSSetRHSFunction()` to evaluate the right hand side for linear problems. 4284bcf0153eSBarry Smith The matrix (and optionally the evaluation context) should be passed to `TSSetRHSJacobian()`. 42850e4ef248SJed Brown 4286bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSFunction()`, `TSSetRHSJacobian()`, `TSComputeRHSJacobianConstant()` 42870e4ef248SJed Brown @*/ 4288d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeRHSFunctionLinear(TS ts, PetscReal t, Vec U, Vec F, void *ctx) 4289d71ae5a4SJacob Faibussowitsch { 42900e4ef248SJed Brown Mat Arhs, Brhs; 42910e4ef248SJed Brown 42920e4ef248SJed Brown PetscFunctionBegin; 42939566063dSJacob Faibussowitsch PetscCall(TSGetRHSMats_Private(ts, &Arhs, &Brhs)); 42942663174eSHong Zhang /* undo the damage caused by shifting */ 42959566063dSJacob Faibussowitsch PetscCall(TSRecoverRHSJacobian(ts, Arhs, Brhs)); 42969566063dSJacob Faibussowitsch PetscCall(TSComputeRHSJacobian(ts, t, U, Arhs, Brhs)); 42979566063dSJacob Faibussowitsch PetscCall(MatMult(Arhs, U, F)); 42983ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 42990e4ef248SJed Brown } 43000e4ef248SJed Brown 43010e4ef248SJed Brown /*@C 43020e4ef248SJed Brown TSComputeRHSJacobianConstant - Reuses a Jacobian that is time-independent. 43030e4ef248SJed Brown 4304c3339decSBarry Smith Collective 43050e4ef248SJed Brown 43064165533cSJose E. Roman Input Parameters: 43070e4ef248SJed Brown + ts - time stepping context 43080e4ef248SJed Brown . t - time at which to evaluate 43090910c330SBarry Smith . U - state at which to evaluate 43100e4ef248SJed Brown - ctx - context 43110e4ef248SJed Brown 43124165533cSJose E. Roman Output Parameters: 43130e4ef248SJed Brown + A - pointer to operator 431497bb3fdcSJose E. Roman - B - pointer to preconditioning matrix 43150e4ef248SJed Brown 43160e4ef248SJed Brown Level: intermediate 43170e4ef248SJed Brown 4318bcf0153eSBarry Smith Note: 4319bcf0153eSBarry Smith This function is intended to be passed to `TSSetRHSJacobian()` to evaluate the Jacobian for linear time-independent problems. 43200e4ef248SJed Brown 4321bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSFunction()`, `TSSetRHSJacobian()`, `TSComputeRHSFunctionLinear()` 43220e4ef248SJed Brown @*/ 4323d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeRHSJacobianConstant(TS ts, PetscReal t, Vec U, Mat A, Mat B, void *ctx) 4324d71ae5a4SJacob Faibussowitsch { 43250e4ef248SJed Brown PetscFunctionBegin; 43263ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 43270e4ef248SJed Brown } 43280e4ef248SJed Brown 43290026cea9SSean Farley /*@C 43300026cea9SSean Farley TSComputeIFunctionLinear - Evaluate the left hand side via the user-provided Jacobian, for linear problems only 43310026cea9SSean Farley 4332c3339decSBarry Smith Collective 43330026cea9SSean Farley 43344165533cSJose E. Roman Input Parameters: 43350026cea9SSean Farley + ts - time stepping context 43360026cea9SSean Farley . t - time at which to evaluate 43370910c330SBarry Smith . U - state at which to evaluate 43380910c330SBarry Smith . Udot - time derivative of state vector 43390026cea9SSean Farley - ctx - context 43400026cea9SSean Farley 43414165533cSJose E. Roman Output Parameter: 43420026cea9SSean Farley . F - left hand side 43430026cea9SSean Farley 43440026cea9SSean Farley Level: intermediate 43450026cea9SSean Farley 43460026cea9SSean Farley Notes: 43470910c330SBarry Smith The assumption here is that the left hand side is of the form A*Udot (and not A*Udot + B*U). For other cases, the 4348bcf0153eSBarry Smith user is required to write their own `TSComputeIFunction()`. 4349bcf0153eSBarry Smith This function is intended to be passed to `TSSetIFunction()` to evaluate the left hand side for linear problems. 4350bcf0153eSBarry Smith The matrix (and optionally the evaluation context) should be passed to `TSSetIJacobian()`. 43510026cea9SSean Farley 4352bcf0153eSBarry Smith Note that using this function is NOT equivalent to using `TSComputeRHSFunctionLinear()` since that solves Udot = A U 43539ae8fd06SBarry Smith 4354bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetIFunction()`, `TSSetIJacobian()`, `TSComputeIJacobianConstant()`, `TSComputeRHSFunctionLinear()` 43550026cea9SSean Farley @*/ 4356d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIFunctionLinear(TS ts, PetscReal t, Vec U, Vec Udot, Vec F, void *ctx) 4357d71ae5a4SJacob Faibussowitsch { 43580026cea9SSean Farley Mat A, B; 43590026cea9SSean Farley 43600026cea9SSean Farley PetscFunctionBegin; 43619566063dSJacob Faibussowitsch PetscCall(TSGetIJacobian(ts, &A, &B, NULL, NULL)); 43629566063dSJacob Faibussowitsch PetscCall(TSComputeIJacobian(ts, t, U, Udot, 1.0, A, B, PETSC_TRUE)); 43639566063dSJacob Faibussowitsch PetscCall(MatMult(A, Udot, F)); 43643ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 43650026cea9SSean Farley } 43660026cea9SSean Farley 43670026cea9SSean Farley /*@C 4368b41af12eSJed Brown TSComputeIJacobianConstant - Reuses a time-independent for a semi-implicit DAE or ODE 43690026cea9SSean Farley 4370c3339decSBarry Smith Collective 43710026cea9SSean Farley 43724165533cSJose E. Roman Input Parameters: 43730026cea9SSean Farley + ts - time stepping context 43740026cea9SSean Farley . t - time at which to evaluate 43750910c330SBarry Smith . U - state at which to evaluate 43760910c330SBarry Smith . Udot - time derivative of state vector 43770026cea9SSean Farley . shift - shift to apply 43780026cea9SSean Farley - ctx - context 43790026cea9SSean Farley 43804165533cSJose E. Roman Output Parameters: 43810026cea9SSean Farley + A - pointer to operator 438297bb3fdcSJose E. Roman - B - pointer to preconditioning matrix 43830026cea9SSean Farley 4384b41af12eSJed Brown Level: advanced 43850026cea9SSean Farley 43860026cea9SSean Farley Notes: 4387bcf0153eSBarry Smith This function is intended to be passed to `TSSetIJacobian()` to evaluate the Jacobian for linear time-independent problems. 43880026cea9SSean Farley 4389b41af12eSJed Brown It is only appropriate for problems of the form 4390b41af12eSJed Brown 4391b41af12eSJed Brown $ M Udot = F(U,t) 4392b41af12eSJed Brown 4393bcf0153eSBarry Smith where M is constant and F is non-stiff. The user must pass M to `TSSetIJacobian()`. The current implementation only 4394bcf0153eSBarry Smith works with IMEX time integration methods such as `TSROSW` and `TSARKIMEX`, since there is no support for de-constructing 4395b41af12eSJed Brown an implicit operator of the form 4396b41af12eSJed Brown 4397b41af12eSJed Brown $ shift*M + J 4398b41af12eSJed Brown 4399b41af12eSJed Brown where J is the Jacobian of -F(U). Support may be added in a future version of PETSc, but for now, the user must store 4400b41af12eSJed Brown a copy of M or reassemble it when requested. 4401b41af12eSJed Brown 4402bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSROSW`, `TSARKIMEX`, `TSSetIFunction()`, `TSSetIJacobian()`, `TSComputeIFunctionLinear()` 44030026cea9SSean Farley @*/ 4404d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIJacobianConstant(TS ts, PetscReal t, Vec U, Vec Udot, PetscReal shift, Mat A, Mat B, void *ctx) 4405d71ae5a4SJacob Faibussowitsch { 44060026cea9SSean Farley PetscFunctionBegin; 44079566063dSJacob Faibussowitsch PetscCall(MatScale(A, shift / ts->ijacobian.shift)); 4408b41af12eSJed Brown ts->ijacobian.shift = shift; 44093ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 44100026cea9SSean Farley } 4411b41af12eSJed Brown 4412e817cc15SEmil Constantinescu /*@ 4413bcf0153eSBarry Smith TSGetEquationType - Gets the type of the equation that `TS` is solving. 4414e817cc15SEmil Constantinescu 4415e817cc15SEmil Constantinescu Not Collective 4416e817cc15SEmil Constantinescu 4417e817cc15SEmil Constantinescu Input Parameter: 4418bcf0153eSBarry Smith . ts - the `TS` context 4419e817cc15SEmil Constantinescu 4420e817cc15SEmil Constantinescu Output Parameter: 4421bcf0153eSBarry Smith . equation_type - see `TSEquationType` 4422e817cc15SEmil Constantinescu 4423e817cc15SEmil Constantinescu Level: beginner 4424e817cc15SEmil Constantinescu 4425bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetEquationType()`, `TSEquationType` 4426e817cc15SEmil Constantinescu @*/ 4427d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetEquationType(TS ts, TSEquationType *equation_type) 4428d71ae5a4SJacob Faibussowitsch { 4429e817cc15SEmil Constantinescu PetscFunctionBegin; 4430e817cc15SEmil Constantinescu PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4431e817cc15SEmil Constantinescu PetscValidPointer(equation_type, 2); 4432e817cc15SEmil Constantinescu *equation_type = ts->equation_type; 44333ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4434e817cc15SEmil Constantinescu } 4435e817cc15SEmil Constantinescu 4436e817cc15SEmil Constantinescu /*@ 4437bcf0153eSBarry Smith TSSetEquationType - Sets the type of the equation that `TS` is solving. 4438e817cc15SEmil Constantinescu 4439e817cc15SEmil Constantinescu Not Collective 4440e817cc15SEmil Constantinescu 4441d8d19677SJose E. Roman Input Parameters: 4442bcf0153eSBarry Smith + ts - the `TS` context 4443bcf0153eSBarry Smith - equation_type - see `TSEquationType` 4444e817cc15SEmil Constantinescu 4445e817cc15SEmil Constantinescu Level: advanced 4446e817cc15SEmil Constantinescu 4447bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetEquationType()`, `TSEquationType` 4448e817cc15SEmil Constantinescu @*/ 4449d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetEquationType(TS ts, TSEquationType equation_type) 4450d71ae5a4SJacob Faibussowitsch { 4451e817cc15SEmil Constantinescu PetscFunctionBegin; 4452e817cc15SEmil Constantinescu PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4453e817cc15SEmil Constantinescu ts->equation_type = equation_type; 44543ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4455e817cc15SEmil Constantinescu } 44560026cea9SSean Farley 44574af1b03aSJed Brown /*@ 4458bcf0153eSBarry Smith TSGetConvergedReason - Gets the reason the `TS` iteration was stopped. 44594af1b03aSJed Brown 44604af1b03aSJed Brown Not Collective 44614af1b03aSJed Brown 44624af1b03aSJed Brown Input Parameter: 4463bcf0153eSBarry Smith . ts - the `TS` context 44644af1b03aSJed Brown 44654af1b03aSJed Brown Output Parameter: 4466bcf0153eSBarry Smith . reason - negative value indicates diverged, positive value converged, see `TSConvergedReason` or the 44674af1b03aSJed Brown manual pages for the individual convergence tests for complete lists 44684af1b03aSJed Brown 4469487e0bb9SJed Brown Level: beginner 44704af1b03aSJed Brown 4471bcf0153eSBarry Smith Note: 4472bcf0153eSBarry Smith Can only be called after the call to `TSSolve()` is complete. 44734af1b03aSJed Brown 4474bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSolve()`, `TSSetConvergenceTest()`, `TSConvergedReason` 44754af1b03aSJed Brown @*/ 4476d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetConvergedReason(TS ts, TSConvergedReason *reason) 4477d71ae5a4SJacob Faibussowitsch { 44784af1b03aSJed Brown PetscFunctionBegin; 44794af1b03aSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 44804af1b03aSJed Brown PetscValidPointer(reason, 2); 44814af1b03aSJed Brown *reason = ts->reason; 44823ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 44834af1b03aSJed Brown } 44844af1b03aSJed Brown 4485d6ad946cSShri Abhyankar /*@ 4486bcf0153eSBarry Smith TSSetConvergedReason - Sets the reason for handling the convergence of `TSSolve()`. 4487d6ad946cSShri Abhyankar 44886b221cbeSPatrick Sanan Logically Collective; reason must contain common value 4489d6ad946cSShri Abhyankar 44906b221cbeSPatrick Sanan Input Parameters: 4491bcf0153eSBarry Smith + ts - the `TS` context 4492bcf0153eSBarry Smith - reason - negative value indicates diverged, positive value converged, see `TSConvergedReason` or the 4493d6ad946cSShri Abhyankar manual pages for the individual convergence tests for complete lists 4494d6ad946cSShri Abhyankar 4495f5abba47SShri Abhyankar Level: advanced 4496d6ad946cSShri Abhyankar 4497bcf0153eSBarry Smith Note: 4498bcf0153eSBarry Smith Can only be called while `TSSolve()` is active. 4499d6ad946cSShri Abhyankar 4500bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSolve()`, `TSConvergedReason` 4501d6ad946cSShri Abhyankar @*/ 4502d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetConvergedReason(TS ts, TSConvergedReason reason) 4503d71ae5a4SJacob Faibussowitsch { 4504d6ad946cSShri Abhyankar PetscFunctionBegin; 4505d6ad946cSShri Abhyankar PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4506d6ad946cSShri Abhyankar ts->reason = reason; 45073ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4508d6ad946cSShri Abhyankar } 4509d6ad946cSShri Abhyankar 4510cc708dedSBarry Smith /*@ 4511bcf0153eSBarry Smith TSGetSolveTime - Gets the time after a call to `TSSolve()` 4512cc708dedSBarry Smith 4513cc708dedSBarry Smith Not Collective 4514cc708dedSBarry Smith 4515cc708dedSBarry Smith Input Parameter: 4516bcf0153eSBarry Smith . ts - the `TS` context 4517cc708dedSBarry Smith 4518cc708dedSBarry Smith Output Parameter: 4519bcf0153eSBarry Smith . ftime - the final time. This time corresponds to the final time set with `TSSetMaxTime()` 4520cc708dedSBarry Smith 4521487e0bb9SJed Brown Level: beginner 4522cc708dedSBarry Smith 4523bcf0153eSBarry Smith Note: 4524bcf0153eSBarry Smith Can only be called after the call to `TSSolve()` is complete. 4525cc708dedSBarry Smith 4526bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSolve()`, `TSSetConvergenceTest()`, `TSConvergedReason` 4527cc708dedSBarry Smith @*/ 4528d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSolveTime(TS ts, PetscReal *ftime) 4529d71ae5a4SJacob Faibussowitsch { 4530cc708dedSBarry Smith PetscFunctionBegin; 4531cc708dedSBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4532dadcf809SJacob Faibussowitsch PetscValidRealPointer(ftime, 2); 4533cc708dedSBarry Smith *ftime = ts->solvetime; 45343ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4535cc708dedSBarry Smith } 4536cc708dedSBarry Smith 45372c18e0fdSBarry Smith /*@ 45385ef26d82SJed Brown TSGetSNESIterations - Gets the total number of nonlinear iterations 45399f67acb7SJed Brown used by the time integrator. 45409f67acb7SJed Brown 45419f67acb7SJed Brown Not Collective 45429f67acb7SJed Brown 45439f67acb7SJed Brown Input Parameter: 4544bcf0153eSBarry Smith . ts - `TS` context 45459f67acb7SJed Brown 45469f67acb7SJed Brown Output Parameter: 45479f67acb7SJed Brown . nits - number of nonlinear iterations 45489f67acb7SJed Brown 45499f67acb7SJed Brown Level: intermediate 45509f67acb7SJed Brown 4551195e9b02SBarry Smith Note: 4552bcf0153eSBarry Smith This counter is reset to zero for each successive call to `TSSolve()`. 4553bcf0153eSBarry Smith 4554bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSolve()`, `TSGetKSPIterations()` 45559f67acb7SJed Brown @*/ 4556d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSNESIterations(TS ts, PetscInt *nits) 4557d71ae5a4SJacob Faibussowitsch { 45589f67acb7SJed Brown PetscFunctionBegin; 45599f67acb7SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 45609f67acb7SJed Brown PetscValidIntPointer(nits, 2); 45615ef26d82SJed Brown *nits = ts->snes_its; 45623ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 45639f67acb7SJed Brown } 45649f67acb7SJed Brown 45659f67acb7SJed Brown /*@ 45665ef26d82SJed Brown TSGetKSPIterations - Gets the total number of linear iterations 45679f67acb7SJed Brown used by the time integrator. 45689f67acb7SJed Brown 45699f67acb7SJed Brown Not Collective 45709f67acb7SJed Brown 45719f67acb7SJed Brown Input Parameter: 4572bcf0153eSBarry Smith . ts - `TS` context 45739f67acb7SJed Brown 45749f67acb7SJed Brown Output Parameter: 45759f67acb7SJed Brown . lits - number of linear iterations 45769f67acb7SJed Brown 45779f67acb7SJed Brown Level: intermediate 45789f67acb7SJed Brown 4579bcf0153eSBarry Smith Note: 4580bcf0153eSBarry Smith This counter is reset to zero for each successive call to `TSSolve()`. 4581bcf0153eSBarry Smith 4582bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSolve()`, `TSGetSNESIterations()`, `SNESGetKSPIterations()` 45839f67acb7SJed Brown @*/ 4584d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetKSPIterations(TS ts, PetscInt *lits) 4585d71ae5a4SJacob Faibussowitsch { 45869f67acb7SJed Brown PetscFunctionBegin; 45879f67acb7SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 45889f67acb7SJed Brown PetscValidIntPointer(lits, 2); 45895ef26d82SJed Brown *lits = ts->ksp_its; 45903ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 45919f67acb7SJed Brown } 45929f67acb7SJed Brown 4593cef5090cSJed Brown /*@ 4594cef5090cSJed Brown TSGetStepRejections - Gets the total number of rejected steps. 4595cef5090cSJed Brown 4596cef5090cSJed Brown Not Collective 4597cef5090cSJed Brown 4598cef5090cSJed Brown Input Parameter: 4599bcf0153eSBarry Smith . ts - `TS` context 4600cef5090cSJed Brown 4601cef5090cSJed Brown Output Parameter: 4602cef5090cSJed Brown . rejects - number of steps rejected 4603cef5090cSJed Brown 4604cef5090cSJed Brown Level: intermediate 4605cef5090cSJed Brown 4606bcf0153eSBarry Smith Note: 4607bcf0153eSBarry Smith This counter is reset to zero for each successive call to `TSSolve()`. 4608bcf0153eSBarry Smith 4609bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSolve()`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxStepRejections()`, `TSGetSNESFailures()`, `TSSetMaxSNESFailures()`, `TSSetErrorIfStepFails()` 4610cef5090cSJed Brown @*/ 4611d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetStepRejections(TS ts, PetscInt *rejects) 4612d71ae5a4SJacob Faibussowitsch { 4613cef5090cSJed Brown PetscFunctionBegin; 4614cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4615cef5090cSJed Brown PetscValidIntPointer(rejects, 2); 4616cef5090cSJed Brown *rejects = ts->reject; 46173ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4618cef5090cSJed Brown } 4619cef5090cSJed Brown 4620cef5090cSJed Brown /*@ 4621bcf0153eSBarry Smith TSGetSNESFailures - Gets the total number of failed `SNES` solves in a `TS` 4622cef5090cSJed Brown 4623cef5090cSJed Brown Not Collective 4624cef5090cSJed Brown 4625cef5090cSJed Brown Input Parameter: 4626bcf0153eSBarry Smith . ts - `TS` context 4627cef5090cSJed Brown 4628cef5090cSJed Brown Output Parameter: 4629cef5090cSJed Brown . fails - number of failed nonlinear solves 4630cef5090cSJed Brown 4631cef5090cSJed Brown Level: intermediate 4632cef5090cSJed Brown 4633bcf0153eSBarry Smith Note: 4634bcf0153eSBarry Smith This counter is reset to zero for each successive call to `TSSolve()`. 4635bcf0153eSBarry Smith 4636bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSolve()`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxStepRejections()`, `TSGetStepRejections()`, `TSSetMaxSNESFailures()` 4637cef5090cSJed Brown @*/ 4638d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSNESFailures(TS ts, PetscInt *fails) 4639d71ae5a4SJacob Faibussowitsch { 4640cef5090cSJed Brown PetscFunctionBegin; 4641cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4642cef5090cSJed Brown PetscValidIntPointer(fails, 2); 4643cef5090cSJed Brown *fails = ts->num_snes_failures; 46443ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4645cef5090cSJed Brown } 4646cef5090cSJed Brown 4647cef5090cSJed Brown /*@ 4648bcf0153eSBarry Smith TSSetMaxStepRejections - Sets the maximum number of step rejections before a time step fails 4649cef5090cSJed Brown 4650cef5090cSJed Brown Not Collective 4651cef5090cSJed Brown 4652d8d19677SJose E. Roman Input Parameters: 4653bcf0153eSBarry Smith + ts - `TS` context 4654cef5090cSJed Brown - rejects - maximum number of rejected steps, pass -1 for unlimited 4655cef5090cSJed Brown 4656cef5090cSJed Brown Options Database Key: 4657cef5090cSJed Brown . -ts_max_reject - Maximum number of step rejections before a step fails 4658cef5090cSJed Brown 4659cef5090cSJed Brown Level: intermediate 4660cef5090cSJed Brown 4661bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `SNES`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxSNESFailures()`, `TSGetStepRejections()`, `TSGetSNESFailures()`, `TSSetErrorIfStepFails()`, `TSGetConvergedReason()` 4662cef5090cSJed Brown @*/ 4663d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMaxStepRejections(TS ts, PetscInt rejects) 4664d71ae5a4SJacob Faibussowitsch { 4665cef5090cSJed Brown PetscFunctionBegin; 4666cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4667cef5090cSJed Brown ts->max_reject = rejects; 46683ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4669cef5090cSJed Brown } 4670cef5090cSJed Brown 4671cef5090cSJed Brown /*@ 4672bcf0153eSBarry Smith TSSetMaxSNESFailures - Sets the maximum number of failed `SNES` solves 4673cef5090cSJed Brown 4674cef5090cSJed Brown Not Collective 4675cef5090cSJed Brown 4676d8d19677SJose E. Roman Input Parameters: 4677bcf0153eSBarry Smith + ts - `TS` context 4678cef5090cSJed Brown - fails - maximum number of failed nonlinear solves, pass -1 for unlimited 4679cef5090cSJed Brown 4680cef5090cSJed Brown Options Database Key: 4681cef5090cSJed Brown . -ts_max_snes_failures - Maximum number of nonlinear solve failures 4682cef5090cSJed Brown 4683cef5090cSJed Brown Level: intermediate 4684cef5090cSJed Brown 4685bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `SNES`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxStepRejections()`, `TSGetStepRejections()`, `TSGetSNESFailures()`, `SNESGetConvergedReason()`, `TSGetConvergedReason()` 4686cef5090cSJed Brown @*/ 4687d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMaxSNESFailures(TS ts, PetscInt fails) 4688d71ae5a4SJacob Faibussowitsch { 4689cef5090cSJed Brown PetscFunctionBegin; 4690cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4691cef5090cSJed Brown ts->max_snes_failures = fails; 46923ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4693cef5090cSJed Brown } 4694cef5090cSJed Brown 4695cef5090cSJed Brown /*@ 4696195e9b02SBarry Smith TSSetErrorIfStepFails - Immediately error if no step succeeds during `TSSolve()` 4697cef5090cSJed Brown 4698cef5090cSJed Brown Not Collective 4699cef5090cSJed Brown 4700d8d19677SJose E. Roman Input Parameters: 4701bcf0153eSBarry Smith + ts - `TS` context 4702bcf0153eSBarry Smith - err - `PETSC_TRUE` to error if no step succeeds, `PETSC_FALSE` to return without failure 4703cef5090cSJed Brown 4704cef5090cSJed Brown Options Database Key: 4705cef5090cSJed Brown . -ts_error_if_step_fails - Error if no step succeeds 4706cef5090cSJed Brown 4707cef5090cSJed Brown Level: intermediate 4708cef5090cSJed Brown 4709bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxStepRejections()`, `TSGetStepRejections()`, `TSGetSNESFailures()`, `TSSetErrorIfStepFails()`, `TSGetConvergedReason()` 4710cef5090cSJed Brown @*/ 4711d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetErrorIfStepFails(TS ts, PetscBool err) 4712d71ae5a4SJacob Faibussowitsch { 4713cef5090cSJed Brown PetscFunctionBegin; 4714cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4715cef5090cSJed Brown ts->errorifstepfailed = err; 47163ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4717cef5090cSJed Brown } 4718cef5090cSJed Brown 471984df9cb4SJed Brown /*@ 4720552698daSJed Brown TSGetAdapt - Get the adaptive controller context for the current method 472184df9cb4SJed Brown 4722195e9b02SBarry Smith Collective on `ts` if controller has not been created yet 472384df9cb4SJed Brown 47244165533cSJose E. Roman Input Parameter: 4725ed81e22dSJed Brown . ts - time stepping context 472684df9cb4SJed Brown 47274165533cSJose E. Roman Output Parameter: 4728ed81e22dSJed Brown . adapt - adaptive controller 472984df9cb4SJed Brown 473084df9cb4SJed Brown Level: intermediate 473184df9cb4SJed Brown 4732bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSAdapt`, `TSAdaptSetType()`, `TSAdaptChoose()` 473384df9cb4SJed Brown @*/ 4734d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetAdapt(TS ts, TSAdapt *adapt) 4735d71ae5a4SJacob Faibussowitsch { 473684df9cb4SJed Brown PetscFunctionBegin; 473784df9cb4SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4738bec58848SLisandro Dalcin PetscValidPointer(adapt, 2); 473984df9cb4SJed Brown if (!ts->adapt) { 47409566063dSJacob Faibussowitsch PetscCall(TSAdaptCreate(PetscObjectComm((PetscObject)ts), &ts->adapt)); 47419566063dSJacob Faibussowitsch PetscCall(PetscObjectIncrementTabLevel((PetscObject)ts->adapt, (PetscObject)ts, 1)); 474284df9cb4SJed Brown } 4743bec58848SLisandro Dalcin *adapt = ts->adapt; 47443ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 474584df9cb4SJed Brown } 4746d6ebe24aSShri Abhyankar 47471c3436cfSJed Brown /*@ 4748195e9b02SBarry Smith TSSetTolerances - Set tolerances for local truncation error when using an adaptive controller 47491c3436cfSJed Brown 47501c3436cfSJed Brown Logically Collective 47511c3436cfSJed Brown 47524165533cSJose E. Roman Input Parameters: 47531c3436cfSJed Brown + ts - time integration context 4754bcf0153eSBarry Smith . atol - scalar absolute tolerances, `PETSC_DECIDE` to leave current value 4755195e9b02SBarry Smith . vatol - vector of absolute tolerances or `NULL`, used in preference to atol if present 4756bcf0153eSBarry Smith . rtol - scalar relative tolerances, `PETSC_DECIDE` to leave current value 4757195e9b02SBarry Smith - vrtol - vector of relative tolerances or `NULL`, used in preference to atol if present 47581c3436cfSJed Brown 4759195e9b02SBarry Smith Options Database Keys: 4760a3cdaa26SBarry Smith + -ts_rtol <rtol> - relative tolerance for local truncation error 476167b8a455SSatish Balay - -ts_atol <atol> - Absolute tolerance for local truncation error 4762a3cdaa26SBarry Smith 4763bcf0153eSBarry Smith Level: beginner 4764bcf0153eSBarry Smith 47653ff766beSShri Abhyankar Notes: 47663ff766beSShri Abhyankar With PETSc's implicit schemes for DAE problems, the calculation of the local truncation error 47673ff766beSShri Abhyankar (LTE) includes both the differential and the algebraic variables. If one wants the LTE to be 47683ff766beSShri Abhyankar computed only for the differential or the algebraic part then this can be done using the vector of 47693ff766beSShri Abhyankar tolerances vatol. For example, by setting the tolerance vector with the desired tolerance for the 47703ff766beSShri Abhyankar differential part and infinity for the algebraic part, the LTE calculation will include only the 47713ff766beSShri Abhyankar differential variables. 47723ff766beSShri Abhyankar 4773bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSAdapt`, `TSErrorWeightedNorm()`, `TSGetTolerances()` 47741c3436cfSJed Brown @*/ 4775d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTolerances(TS ts, PetscReal atol, Vec vatol, PetscReal rtol, Vec vrtol) 4776d71ae5a4SJacob Faibussowitsch { 47771c3436cfSJed Brown PetscFunctionBegin; 477813bcc0bdSJacob Faibussowitsch if (atol != (PetscReal)PETSC_DECIDE && atol != (PetscReal)PETSC_DEFAULT) ts->atol = atol; 47791c3436cfSJed Brown if (vatol) { 47809566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)vatol)); 47819566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vatol)); 47821c3436cfSJed Brown ts->vatol = vatol; 47831c3436cfSJed Brown } 478413bcc0bdSJacob Faibussowitsch if (rtol != (PetscReal)PETSC_DECIDE && rtol != (PetscReal)PETSC_DEFAULT) ts->rtol = rtol; 47851c3436cfSJed Brown if (vrtol) { 47869566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)vrtol)); 47879566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vrtol)); 47881c3436cfSJed Brown ts->vrtol = vrtol; 47891c3436cfSJed Brown } 47903ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 47911c3436cfSJed Brown } 47921c3436cfSJed Brown 4793c5033834SJed Brown /*@ 4794c5033834SJed Brown TSGetTolerances - Get tolerances for local truncation error when using adaptive controller 4795c5033834SJed Brown 4796c5033834SJed Brown Logically Collective 4797c5033834SJed Brown 47984165533cSJose E. Roman Input Parameter: 4799c5033834SJed Brown . ts - time integration context 4800c5033834SJed Brown 48014165533cSJose E. Roman Output Parameters: 4802195e9b02SBarry Smith + atol - scalar absolute tolerances, `NULL` to ignore 4803195e9b02SBarry Smith . vatol - vector of absolute tolerances, `NULL` to ignore 4804195e9b02SBarry Smith . rtol - scalar relative tolerances, `NULL` to ignore 4805195e9b02SBarry Smith - vrtol - vector of relative tolerances, `NULL` to ignore 4806c5033834SJed Brown 4807c5033834SJed Brown Level: beginner 4808c5033834SJed Brown 4809bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSAdapt`, `TSErrorWeightedNorm()`, `TSSetTolerances()` 4810c5033834SJed Brown @*/ 4811d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTolerances(TS ts, PetscReal *atol, Vec *vatol, PetscReal *rtol, Vec *vrtol) 4812d71ae5a4SJacob Faibussowitsch { 4813c5033834SJed Brown PetscFunctionBegin; 4814c5033834SJed Brown if (atol) *atol = ts->atol; 4815c5033834SJed Brown if (vatol) *vatol = ts->vatol; 4816c5033834SJed Brown if (rtol) *rtol = ts->rtol; 4817c5033834SJed Brown if (vrtol) *vrtol = ts->vrtol; 48183ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4819c5033834SJed Brown } 4820c5033834SJed Brown 48219c6b16b5SShri Abhyankar /*@ 48228a175baeSEmil Constantinescu TSErrorWeightedNorm - compute a weighted norm of the difference between two state vectors based on supplied absolute and relative tolerances 48231c3436cfSJed Brown 4824c3339decSBarry Smith Collective 48251c3436cfSJed Brown 48264165533cSJose E. Roman Input Parameters: 48271c3436cfSJed Brown + ts - time stepping context 4828a4868fbcSLisandro Dalcin . U - state vector, usually ts->vec_sol 4829a4868fbcSLisandro Dalcin . Y - state vector to be compared to U 4830bcf0153eSBarry Smith - wnormtype - norm type, either `NORM_2` or `NORM_INFINITY` 48317619abb3SShri 48324165533cSJose E. Roman Output Parameters: 4833a2b725a8SWilliam Gropp + norm - weighted norm, a value of 1.0 achieves a balance between absolute and relative tolerances 48348a175baeSEmil Constantinescu . norma - weighted norm, a value of 1.0 means that the error meets the absolute tolerance set by the user 4835a2b725a8SWilliam Gropp - normr - weighted norm, a value of 1.0 means that the error meets the relative tolerance set by the user 4836a4868fbcSLisandro Dalcin 4837bcf0153eSBarry Smith Options Database Key: 4838a4868fbcSLisandro Dalcin . -ts_adapt_wnormtype <wnormtype> - 2, INFINITY 4839a4868fbcSLisandro Dalcin 48401c3436cfSJed Brown Level: developer 48411c3436cfSJed Brown 4842*037d63e4SStefano Zampini .seealso: [](chapter_ts), `TS`, `VecErrorWeightedNorms()`, `TSErrorWeightedENorm()` 48431c3436cfSJed Brown @*/ 4844d71ae5a4SJacob Faibussowitsch PetscErrorCode TSErrorWeightedNorm(TS ts, Vec U, Vec Y, NormType wnormtype, PetscReal *norm, PetscReal *norma, PetscReal *normr) 4845d71ae5a4SJacob Faibussowitsch { 4846*037d63e4SStefano Zampini PetscInt norma_loc, norm_loc, normr_loc; 48478a175baeSEmil Constantinescu 48488a175baeSEmil Constantinescu PetscFunctionBegin; 48498a175baeSEmil Constantinescu PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4850*037d63e4SStefano Zampini PetscCall(VecErrorWeightedNorms(U, Y, NULL, wnormtype, ts->atol, ts->vatol, ts->rtol, ts->vrtol, ts->adapt->ignore_max, norm, &norm_loc, norma, &norma_loc, normr, &normr_loc)); 4851*037d63e4SStefano Zampini if (wnormtype == NORM_2) { 4852*037d63e4SStefano Zampini if (norm_loc) *norm = PetscSqrtReal(PetscSqr(*norm) / norm_loc); 4853*037d63e4SStefano Zampini if (norma_loc) *norma = PetscSqrtReal(PetscSqr(*norma) / norma_loc); 4854*037d63e4SStefano Zampini if (normr_loc) *normr = PetscSqrtReal(PetscSqr(*normr) / normr_loc); 48558a175baeSEmil Constantinescu } 48563c633725SBarry Smith PetscCheck(!PetscIsInfOrNanScalar(*norm), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in norm"); 48573c633725SBarry Smith PetscCheck(!PetscIsInfOrNanScalar(*norma), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in norma"); 48583c633725SBarry Smith PetscCheck(!PetscIsInfOrNanScalar(*normr), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in normr"); 48593ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 48608a175baeSEmil Constantinescu } 48618a175baeSEmil Constantinescu 48628a175baeSEmil Constantinescu /*@ 48638a175baeSEmil Constantinescu TSErrorWeightedENorm - compute a weighted error norm based on supplied absolute and relative tolerances 48648a175baeSEmil Constantinescu 4865c3339decSBarry Smith Collective 48668a175baeSEmil Constantinescu 48674165533cSJose E. Roman Input Parameters: 48688a175baeSEmil Constantinescu + ts - time stepping context 48698a175baeSEmil Constantinescu . E - error vector 48708a175baeSEmil Constantinescu . U - state vector, usually ts->vec_sol 48718a175baeSEmil Constantinescu . Y - state vector, previous time step 4872bcf0153eSBarry Smith - wnormtype - norm type, either `NORM_2` or `NORM_INFINITY` 48738a175baeSEmil Constantinescu 48744165533cSJose E. Roman Output Parameters: 4875a2b725a8SWilliam Gropp + norm - weighted norm, a value of 1.0 achieves a balance between absolute and relative tolerances 48768a175baeSEmil Constantinescu . norma - weighted norm, a value of 1.0 means that the error meets the absolute tolerance set by the user 4877a2b725a8SWilliam Gropp - normr - weighted norm, a value of 1.0 means that the error meets the relative tolerance set by the user 48788a175baeSEmil Constantinescu 4879bcf0153eSBarry Smith Options Database Key: 48808a175baeSEmil Constantinescu . -ts_adapt_wnormtype <wnormtype> - 2, INFINITY 48818a175baeSEmil Constantinescu 48828a175baeSEmil Constantinescu Level: developer 48838a175baeSEmil Constantinescu 4884*037d63e4SStefano Zampini .seealso: [](chapter_ts), `TS`, `VecErrorWeightedNorms()`, `TSErrorWeightedNorm()` 48858a175baeSEmil Constantinescu @*/ 4886d71ae5a4SJacob Faibussowitsch PetscErrorCode TSErrorWeightedENorm(TS ts, Vec E, Vec U, Vec Y, NormType wnormtype, PetscReal *norm, PetscReal *norma, PetscReal *normr) 4887d71ae5a4SJacob Faibussowitsch { 4888*037d63e4SStefano Zampini PetscInt norma_loc, norm_loc, normr_loc; 4889*037d63e4SStefano Zampini 48908a175baeSEmil Constantinescu PetscFunctionBegin; 4891*037d63e4SStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4892*037d63e4SStefano Zampini PetscCall(VecErrorWeightedNorms(U, Y, E, wnormtype, ts->atol, ts->vatol, ts->rtol, ts->vrtol, ts->adapt->ignore_max, norm, &norm_loc, norma, &norma_loc, normr, &normr_loc)); 4893*037d63e4SStefano Zampini if (wnormtype == NORM_2) { 4894*037d63e4SStefano Zampini if (norm_loc) *norm = PetscSqrtReal(PetscSqr(*norm) / norm_loc); 4895*037d63e4SStefano Zampini if (norma_loc) *norma = PetscSqrtReal(PetscSqr(*norma) / norma_loc); 4896*037d63e4SStefano Zampini if (normr_loc) *normr = PetscSqrtReal(PetscSqr(*normr) / normr_loc); 4897*037d63e4SStefano Zampini } 4898*037d63e4SStefano Zampini PetscCheck(!PetscIsInfOrNanScalar(*norm), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in norm"); 4899*037d63e4SStefano Zampini PetscCheck(!PetscIsInfOrNanScalar(*norma), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in norma"); 4900*037d63e4SStefano Zampini PetscCheck(!PetscIsInfOrNanScalar(*normr), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in normr"); 49013ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 49028a175baeSEmil Constantinescu } 49038a175baeSEmil Constantinescu 49048d59e960SJed Brown /*@ 49058d59e960SJed Brown TSSetCFLTimeLocal - Set the local CFL constraint relative to forward Euler 49068d59e960SJed Brown 4907c3339decSBarry Smith Logically Collective 49088d59e960SJed Brown 49094165533cSJose E. Roman Input Parameters: 49108d59e960SJed Brown + ts - time stepping context 49118d59e960SJed Brown - cfltime - maximum stable time step if using forward Euler (value can be different on each process) 49128d59e960SJed Brown 49138d59e960SJed Brown Note: 49148d59e960SJed Brown After calling this function, the global CFL time can be obtained by calling TSGetCFLTime() 49158d59e960SJed Brown 49168d59e960SJed Brown Level: intermediate 49178d59e960SJed Brown 4918bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSGetCFLTime()`, `TSADAPTCFL` 49198d59e960SJed Brown @*/ 4920d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetCFLTimeLocal(TS ts, PetscReal cfltime) 4921d71ae5a4SJacob Faibussowitsch { 49228d59e960SJed Brown PetscFunctionBegin; 49238d59e960SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 49248d59e960SJed Brown ts->cfltime_local = cfltime; 49258d59e960SJed Brown ts->cfltime = -1.; 49263ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 49278d59e960SJed Brown } 49288d59e960SJed Brown 49298d59e960SJed Brown /*@ 49308d59e960SJed Brown TSGetCFLTime - Get the maximum stable time step according to CFL criteria applied to forward Euler 49318d59e960SJed Brown 4932c3339decSBarry Smith Collective 49338d59e960SJed Brown 49344165533cSJose E. Roman Input Parameter: 49358d59e960SJed Brown . ts - time stepping context 49368d59e960SJed Brown 49374165533cSJose E. Roman Output Parameter: 49388d59e960SJed Brown . cfltime - maximum stable time step for forward Euler 49398d59e960SJed Brown 49408d59e960SJed Brown Level: advanced 49418d59e960SJed Brown 4942bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSSetCFLTimeLocal()` 49438d59e960SJed Brown @*/ 4944d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetCFLTime(TS ts, PetscReal *cfltime) 4945d71ae5a4SJacob Faibussowitsch { 49468d59e960SJed Brown PetscFunctionBegin; 49471e66621cSBarry Smith if (ts->cfltime < 0) PetscCall(MPIU_Allreduce(&ts->cfltime_local, &ts->cfltime, 1, MPIU_REAL, MPIU_MIN, PetscObjectComm((PetscObject)ts))); 49488d59e960SJed Brown *cfltime = ts->cfltime; 49493ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 49508d59e960SJed Brown } 49518d59e960SJed Brown 4952d6ebe24aSShri Abhyankar /*@ 4953d6ebe24aSShri Abhyankar TSVISetVariableBounds - Sets the lower and upper bounds for the solution vector. xl <= x <= xu 4954d6ebe24aSShri Abhyankar 4955d6ebe24aSShri Abhyankar Input Parameters: 4956bcf0153eSBarry Smith + ts - the `TS` context. 4957d6ebe24aSShri Abhyankar . xl - lower bound. 4958a2b725a8SWilliam Gropp - xu - upper bound. 4959d6ebe24aSShri Abhyankar 49602bd2b0e6SSatish Balay Level: advanced 49612bd2b0e6SSatish Balay 4962bcf0153eSBarry Smith Note: 4963bcf0153eSBarry Smith If this routine is not called then the lower and upper bounds are set to 4964bcf0153eSBarry Smith `PETSC_NINFINITY` and `PETSC_INFINITY` respectively during `SNESSetUp()`. 4965bcf0153eSBarry Smith 4966bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS` 4967d6ebe24aSShri Abhyankar @*/ 4968d71ae5a4SJacob Faibussowitsch PetscErrorCode TSVISetVariableBounds(TS ts, Vec xl, Vec xu) 4969d71ae5a4SJacob Faibussowitsch { 4970d6ebe24aSShri Abhyankar SNES snes; 4971d6ebe24aSShri Abhyankar 4972d6ebe24aSShri Abhyankar PetscFunctionBegin; 49739566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 49749566063dSJacob Faibussowitsch PetscCall(SNESVISetVariableBounds(snes, xl, xu)); 49753ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4976d6ebe24aSShri Abhyankar } 4977d6ebe24aSShri Abhyankar 4978f9c1d6abSBarry Smith /*@ 4979f9c1d6abSBarry Smith TSComputeLinearStability - computes the linear stability function at a point 4980f9c1d6abSBarry Smith 4981c3339decSBarry Smith Collective 4982f9c1d6abSBarry Smith 4983f9c1d6abSBarry Smith Input Parameters: 4984bcf0153eSBarry Smith + ts - the `TS` context 49852fe279fdSBarry Smith . xr - real part of input argument 49862fe279fdSBarry Smith - xi - imaginary part of input argument 4987f9c1d6abSBarry Smith 4988f9c1d6abSBarry Smith Output Parameters: 49892fe279fdSBarry Smith + yr - real part of function value 49902fe279fdSBarry Smith - yi - imaginary part of function value 4991f9c1d6abSBarry Smith 4992f9c1d6abSBarry Smith Level: developer 4993f9c1d6abSBarry Smith 4994bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetRHSFunction()`, `TSComputeIFunction()` 4995f9c1d6abSBarry Smith @*/ 4996d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeLinearStability(TS ts, PetscReal xr, PetscReal xi, PetscReal *yr, PetscReal *yi) 4997d71ae5a4SJacob Faibussowitsch { 4998f9c1d6abSBarry Smith PetscFunctionBegin; 4999f9c1d6abSBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5000dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, linearstability, xr, xi, yr, yi); 50013ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5002f9c1d6abSBarry Smith } 500324655328SShri 500424655328SShri /*@ 5005dcb233daSLisandro Dalcin TSRestartStep - Flags the solver to restart the next step 5006dcb233daSLisandro Dalcin 5007c3339decSBarry Smith Collective 5008dcb233daSLisandro Dalcin 5009dcb233daSLisandro Dalcin Input Parameter: 5010bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 5011dcb233daSLisandro Dalcin 5012dcb233daSLisandro Dalcin Level: advanced 5013dcb233daSLisandro Dalcin 5014dcb233daSLisandro Dalcin Notes: 5015bcf0153eSBarry Smith Multistep methods like `TSBDF` or Runge-Kutta methods with FSAL property require restarting the solver in the event of 5016dcb233daSLisandro Dalcin discontinuities. These discontinuities may be introduced as a consequence of explicitly modifications to the solution 5017dcb233daSLisandro Dalcin vector (which PETSc attempts to detect and handle) or problem coefficients (which PETSc is not able to detect). For 5018bcf0153eSBarry Smith the sake of correctness and maximum safety, users are expected to call `TSRestart()` whenever they introduce 5019dcb233daSLisandro Dalcin discontinuities in callback routines (e.g. prestep and poststep routines, or implicit/rhs function routines with 5020dcb233daSLisandro Dalcin discontinuous source terms). 5021dcb233daSLisandro Dalcin 5022bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSBDF`, `TSSolve()`, `TSSetPreStep()`, `TSSetPostStep()` 5023dcb233daSLisandro Dalcin @*/ 5024d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRestartStep(TS ts) 5025d71ae5a4SJacob Faibussowitsch { 5026dcb233daSLisandro Dalcin PetscFunctionBegin; 5027dcb233daSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5028dcb233daSLisandro Dalcin ts->steprestart = PETSC_TRUE; 50293ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5030dcb233daSLisandro Dalcin } 5031dcb233daSLisandro Dalcin 5032dcb233daSLisandro Dalcin /*@ 503324655328SShri TSRollBack - Rolls back one time step 503424655328SShri 5035c3339decSBarry Smith Collective 503624655328SShri 503724655328SShri Input Parameter: 5038bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 503924655328SShri 504024655328SShri Level: advanced 504124655328SShri 5042bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSCreate()`, `TSSetUp()`, `TSDestroy()`, `TSSolve()`, `TSSetPreStep()`, `TSSetPreStage()`, `TSInterpolate()` 504324655328SShri @*/ 5044d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRollBack(TS ts) 5045d71ae5a4SJacob Faibussowitsch { 504624655328SShri PetscFunctionBegin; 504724655328SShri PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 50483c633725SBarry Smith PetscCheck(!ts->steprollback, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONGSTATE, "TSRollBack already called"); 5049dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, rollback); 505024655328SShri ts->time_step = ts->ptime - ts->ptime_prev; 505124655328SShri ts->ptime = ts->ptime_prev; 5052be5899b3SLisandro Dalcin ts->ptime_prev = ts->ptime_prev_rollback; 50532808aa04SLisandro Dalcin ts->steps--; 5054b3de5cdeSLisandro Dalcin ts->steprollback = PETSC_TRUE; 50553ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 505624655328SShri } 5057aeb4809dSShri Abhyankar 5058ff22ae23SHong Zhang /*@ 5059ff22ae23SHong Zhang TSGetStages - Get the number of stages and stage values 5060ff22ae23SHong Zhang 5061ff22ae23SHong Zhang Input Parameter: 5062bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 5063ff22ae23SHong Zhang 50640429704eSStefano Zampini Output Parameters: 50650429704eSStefano Zampini + ns - the number of stages 50660429704eSStefano Zampini - Y - the current stage vectors 50670429704eSStefano Zampini 5068ff22ae23SHong Zhang Level: advanced 5069ff22ae23SHong Zhang 5070bcf0153eSBarry Smith Note: 5071195e9b02SBarry Smith Both `ns` and `Y` can be `NULL`. 50720429704eSStefano Zampini 5073bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSCreate()` 5074ff22ae23SHong Zhang @*/ 5075d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetStages(TS ts, PetscInt *ns, Vec **Y) 5076d71ae5a4SJacob Faibussowitsch { 5077ff22ae23SHong Zhang PetscFunctionBegin; 5078ff22ae23SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5079dadcf809SJacob Faibussowitsch if (ns) PetscValidIntPointer(ns, 2); 50800429704eSStefano Zampini if (Y) PetscValidPointer(Y, 3); 50810429704eSStefano Zampini if (!ts->ops->getstages) { 50820429704eSStefano Zampini if (ns) *ns = 0; 50830429704eSStefano Zampini if (Y) *Y = NULL; 5084dbbe0bcdSBarry Smith } else PetscUseTypeMethod(ts, getstages, ns, Y); 50853ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5086ff22ae23SHong Zhang } 5087ff22ae23SHong Zhang 5088847ff0e1SMatthew G. Knepley /*@C 5089847ff0e1SMatthew G. Knepley TSComputeIJacobianDefaultColor - Computes the Jacobian using finite differences and coloring to exploit matrix sparsity. 5090847ff0e1SMatthew G. Knepley 5091c3339decSBarry Smith Collective 5092847ff0e1SMatthew G. Knepley 5093847ff0e1SMatthew G. Knepley Input Parameters: 5094bcf0153eSBarry Smith + ts - the `TS` context 5095847ff0e1SMatthew G. Knepley . t - current timestep 5096847ff0e1SMatthew G. Knepley . U - state vector 5097847ff0e1SMatthew G. Knepley . Udot - time derivative of state vector 5098847ff0e1SMatthew G. Knepley . shift - shift to apply, see note below 5099847ff0e1SMatthew G. Knepley - ctx - an optional user context 5100847ff0e1SMatthew G. Knepley 5101847ff0e1SMatthew G. Knepley Output Parameters: 5102847ff0e1SMatthew G. Knepley + J - Jacobian matrix (not altered in this routine) 5103195e9b02SBarry Smith - B - newly computed Jacobian matrix to use with preconditioner (generally the same as `J`) 5104847ff0e1SMatthew G. Knepley 5105847ff0e1SMatthew G. Knepley Level: intermediate 5106847ff0e1SMatthew G. Knepley 5107847ff0e1SMatthew G. Knepley Notes: 5108847ff0e1SMatthew G. Knepley If F(t,U,Udot)=0 is the DAE, the required Jacobian is 5109847ff0e1SMatthew G. Knepley 5110847ff0e1SMatthew G. Knepley dF/dU + shift*dF/dUdot 5111847ff0e1SMatthew G. Knepley 5112847ff0e1SMatthew G. Knepley Most users should not need to explicitly call this routine, as it 5113847ff0e1SMatthew G. Knepley is used internally within the nonlinear solvers. 5114847ff0e1SMatthew G. Knepley 5115bcf0153eSBarry Smith This will first try to get the coloring from the `DM`. If the `DM` type has no coloring 5116847ff0e1SMatthew G. Knepley routine, then it will try to get the coloring from the matrix. This requires that the 5117847ff0e1SMatthew G. Knepley matrix have nonzero entries precomputed. 5118847ff0e1SMatthew G. Knepley 5119bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetIJacobian()`, `MatFDColoringCreate()`, `MatFDColoringSetFunction()` 5120847ff0e1SMatthew G. Knepley @*/ 5121d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIJacobianDefaultColor(TS ts, PetscReal t, Vec U, Vec Udot, PetscReal shift, Mat J, Mat B, void *ctx) 5122d71ae5a4SJacob Faibussowitsch { 5123847ff0e1SMatthew G. Knepley SNES snes; 5124847ff0e1SMatthew G. Knepley MatFDColoring color; 5125847ff0e1SMatthew G. Knepley PetscBool hascolor, matcolor = PETSC_FALSE; 5126847ff0e1SMatthew G. Knepley 5127847ff0e1SMatthew G. Knepley PetscFunctionBegin; 51289566063dSJacob Faibussowitsch PetscCall(PetscOptionsGetBool(((PetscObject)ts)->options, ((PetscObject)ts)->prefix, "-ts_fd_color_use_mat", &matcolor, NULL)); 51299566063dSJacob Faibussowitsch PetscCall(PetscObjectQuery((PetscObject)B, "TSMatFDColoring", (PetscObject *)&color)); 5130847ff0e1SMatthew G. Knepley if (!color) { 5131847ff0e1SMatthew G. Knepley DM dm; 5132847ff0e1SMatthew G. Knepley ISColoring iscoloring; 5133847ff0e1SMatthew G. Knepley 51349566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 51359566063dSJacob Faibussowitsch PetscCall(DMHasColoring(dm, &hascolor)); 5136847ff0e1SMatthew G. Knepley if (hascolor && !matcolor) { 51379566063dSJacob Faibussowitsch PetscCall(DMCreateColoring(dm, IS_COLORING_GLOBAL, &iscoloring)); 51389566063dSJacob Faibussowitsch PetscCall(MatFDColoringCreate(B, iscoloring, &color)); 51399566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetFunction(color, (PetscErrorCode(*)(void))SNESTSFormFunction, (void *)ts)); 51409566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetFromOptions(color)); 51419566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetUp(B, iscoloring, color)); 51429566063dSJacob Faibussowitsch PetscCall(ISColoringDestroy(&iscoloring)); 5143847ff0e1SMatthew G. Knepley } else { 5144847ff0e1SMatthew G. Knepley MatColoring mc; 5145847ff0e1SMatthew G. Knepley 51469566063dSJacob Faibussowitsch PetscCall(MatColoringCreate(B, &mc)); 51479566063dSJacob Faibussowitsch PetscCall(MatColoringSetDistance(mc, 2)); 51489566063dSJacob Faibussowitsch PetscCall(MatColoringSetType(mc, MATCOLORINGSL)); 51499566063dSJacob Faibussowitsch PetscCall(MatColoringSetFromOptions(mc)); 51509566063dSJacob Faibussowitsch PetscCall(MatColoringApply(mc, &iscoloring)); 51519566063dSJacob Faibussowitsch PetscCall(MatColoringDestroy(&mc)); 51529566063dSJacob Faibussowitsch PetscCall(MatFDColoringCreate(B, iscoloring, &color)); 51539566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetFunction(color, (PetscErrorCode(*)(void))SNESTSFormFunction, (void *)ts)); 51549566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetFromOptions(color)); 51559566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetUp(B, iscoloring, color)); 51569566063dSJacob Faibussowitsch PetscCall(ISColoringDestroy(&iscoloring)); 5157847ff0e1SMatthew G. Knepley } 51589566063dSJacob Faibussowitsch PetscCall(PetscObjectCompose((PetscObject)B, "TSMatFDColoring", (PetscObject)color)); 51599566063dSJacob Faibussowitsch PetscCall(PetscObjectDereference((PetscObject)color)); 5160847ff0e1SMatthew G. Knepley } 51619566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 51629566063dSJacob Faibussowitsch PetscCall(MatFDColoringApply(B, color, U, snes)); 5163847ff0e1SMatthew G. Knepley if (J != B) { 51649566063dSJacob Faibussowitsch PetscCall(MatAssemblyBegin(J, MAT_FINAL_ASSEMBLY)); 51659566063dSJacob Faibussowitsch PetscCall(MatAssemblyEnd(J, MAT_FINAL_ASSEMBLY)); 5166847ff0e1SMatthew G. Knepley } 51673ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5168847ff0e1SMatthew G. Knepley } 516993b34091SDebojyoti Ghosh 5170cb9d8021SPierre Barbier de Reuille /*@ 51716bc98fa9SBarry Smith TSSetFunctionDomainError - Set a function that tests if the current state vector is valid 5172cb9d8021SPierre Barbier de Reuille 5173cb9d8021SPierre Barbier de Reuille Input Parameters: 5174bcf0153eSBarry Smith + ts - the `TS` context 5175bcf0153eSBarry Smith - func - function called within `TSFunctionDomainError()` 51766bc98fa9SBarry Smith 517720f4b53cSBarry Smith Calling sequence of `func`: 51786bc98fa9SBarry Smith $ PetscErrorCode func(TS ts, PetscReal time, Vec state, PetscBool reject) 51796bc98fa9SBarry Smith + ts - the TS context 51806bc98fa9SBarry Smith . time - the current time (of the stage) 51816bc98fa9SBarry Smith . state - the state to check if it is valid 518220f4b53cSBarry Smith - reject - (output parameter) `PETSC_FALSE` if the state is acceptable, `PETSC_TRUE` if not acceptable 5183cb9d8021SPierre Barbier de Reuille 5184cb9d8021SPierre Barbier de Reuille Level: intermediate 5185cb9d8021SPierre Barbier de Reuille 51866bc98fa9SBarry Smith Notes: 51876bc98fa9SBarry Smith If an implicit ODE solver is being used then, in addition to providing this routine, the 5188bcf0153eSBarry Smith user's code should call `SNESSetFunctionDomainError()` when domain errors occur during 5189bcf0153eSBarry Smith function evaluations where the functions are provided by `TSSetIFunction()` or `TSSetRHSFunction()`. 5190bcf0153eSBarry Smith Use `TSGetSNES()` to obtain the `SNES` object 51916bc98fa9SBarry Smith 5192bcf0153eSBarry Smith Developer Note: 5193bcf0153eSBarry Smith The naming of this function is inconsistent with the `SNESSetFunctionDomainError()` 51946bc98fa9SBarry Smith since one takes a function pointer and the other does not. 51956bc98fa9SBarry Smith 5196bcf0153eSBarry Smith .seealso: [](chapter_ts), `TSAdaptCheckStage()`, `TSFunctionDomainError()`, `SNESSetFunctionDomainError()`, `TSGetSNES()` 5197cb9d8021SPierre Barbier de Reuille @*/ 5198cb9d8021SPierre Barbier de Reuille 5199d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetFunctionDomainError(TS ts, PetscErrorCode (*func)(TS, PetscReal, Vec, PetscBool *)) 5200d71ae5a4SJacob Faibussowitsch { 5201cb9d8021SPierre Barbier de Reuille PetscFunctionBegin; 5202cb9d8021SPierre Barbier de Reuille PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5203cb9d8021SPierre Barbier de Reuille ts->functiondomainerror = func; 52043ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5205cb9d8021SPierre Barbier de Reuille } 5206cb9d8021SPierre Barbier de Reuille 5207cb9d8021SPierre Barbier de Reuille /*@ 52086bc98fa9SBarry Smith TSFunctionDomainError - Checks if the current state is valid 5209cb9d8021SPierre Barbier de Reuille 5210cb9d8021SPierre Barbier de Reuille Input Parameters: 5211bcf0153eSBarry Smith + ts - the `TS` context 52126bc98fa9SBarry Smith . stagetime - time of the simulation 52136bc98fa9SBarry Smith - Y - state vector to check. 5214cb9d8021SPierre Barbier de Reuille 5215cb9d8021SPierre Barbier de Reuille Output Parameter: 5216bcf0153eSBarry Smith . accept - Set to `PETSC_FALSE` if the current state vector is valid. 521796a0c994SBarry Smith 52186bc98fa9SBarry Smith Level: developer 52196bc98fa9SBarry Smith 5220bcf0153eSBarry Smith Note: 5221bcf0153eSBarry Smith This function is called by the `TS` integration routines and calls the user provided function (set with `TSSetFunctionDomainError()`) 5222bcf0153eSBarry Smith to check if the current state is valid. 5223bcf0153eSBarry Smith 5224bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetFunctionDomainError()` 5225cb9d8021SPierre Barbier de Reuille @*/ 5226d71ae5a4SJacob Faibussowitsch PetscErrorCode TSFunctionDomainError(TS ts, PetscReal stagetime, Vec Y, PetscBool *accept) 5227d71ae5a4SJacob Faibussowitsch { 5228cb9d8021SPierre Barbier de Reuille PetscFunctionBegin; 5229cb9d8021SPierre Barbier de Reuille PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5230cb9d8021SPierre Barbier de Reuille *accept = PETSC_TRUE; 52311e66621cSBarry Smith if (ts->functiondomainerror) PetscCall((*ts->functiondomainerror)(ts, stagetime, Y, accept)); 52323ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5233cb9d8021SPierre Barbier de Reuille } 52341ceb14c0SBarry Smith 523593b34091SDebojyoti Ghosh /*@C 5236195e9b02SBarry Smith TSClone - This function clones a time step `TS` object. 523793b34091SDebojyoti Ghosh 5238d083f849SBarry Smith Collective 523993b34091SDebojyoti Ghosh 524093b34091SDebojyoti Ghosh Input Parameter: 5241bcf0153eSBarry Smith . tsin - The input `TS` 524293b34091SDebojyoti Ghosh 524393b34091SDebojyoti Ghosh Output Parameter: 5244bcf0153eSBarry Smith . tsout - The output `TS` (cloned) 52455eca1a21SEmil Constantinescu 52465eca1a21SEmil Constantinescu Level: developer 524793b34091SDebojyoti Ghosh 5248bcf0153eSBarry Smith Notes: 5249bcf0153eSBarry Smith This function is used to create a clone of a `TS` object. It is used in `TSARKIMEX` for initializing the slope for first stage explicit methods. 5250bcf0153eSBarry Smith It will likely be replaced in the future with a mechanism of switching methods on the fly. 5251bcf0153eSBarry Smith 5252195e9b02SBarry Smith When using `TSDestroy()` on a clone the user has to first reset the correct `TS` reference in the embedded `SNES` object: e.g., by running 5253195e9b02SBarry Smith .vb 5254195e9b02SBarry Smith SNES snes_dup = NULL; 5255195e9b02SBarry Smith TSGetSNES(ts,&snes_dup); 5256195e9b02SBarry Smith TSSetSNES(ts,snes_dup); 5257195e9b02SBarry Smith .ve 5258bcf0153eSBarry Smith 5259bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `SNES`, `TSCreate()`, `TSSetType()`, `TSSetUp()`, `TSDestroy()`, `TSSetProblemType()` 526093b34091SDebojyoti Ghosh @*/ 5261d71ae5a4SJacob Faibussowitsch PetscErrorCode TSClone(TS tsin, TS *tsout) 5262d71ae5a4SJacob Faibussowitsch { 526393b34091SDebojyoti Ghosh TS t; 5264dc846ba4SSatish Balay SNES snes_start; 5265dc846ba4SSatish Balay DM dm; 5266dc846ba4SSatish Balay TSType type; 526793b34091SDebojyoti Ghosh 526893b34091SDebojyoti Ghosh PetscFunctionBegin; 526993b34091SDebojyoti Ghosh PetscValidPointer(tsin, 1); 527093b34091SDebojyoti Ghosh *tsout = NULL; 527193b34091SDebojyoti Ghosh 52729566063dSJacob Faibussowitsch PetscCall(PetscHeaderCreate(t, TS_CLASSID, "TS", "Time stepping", "TS", PetscObjectComm((PetscObject)tsin), TSDestroy, TSView)); 527393b34091SDebojyoti Ghosh 527493b34091SDebojyoti Ghosh /* General TS description */ 527593b34091SDebojyoti Ghosh t->numbermonitors = 0; 5276d0c080abSJoseph Pusztay t->monitorFrequency = 1; 527793b34091SDebojyoti Ghosh t->setupcalled = 0; 527893b34091SDebojyoti Ghosh t->ksp_its = 0; 527993b34091SDebojyoti Ghosh t->snes_its = 0; 528093b34091SDebojyoti Ghosh t->nwork = 0; 52817d51462cSStefano Zampini t->rhsjacobian.time = PETSC_MIN_REAL; 528293b34091SDebojyoti Ghosh t->rhsjacobian.scale = 1.; 528393b34091SDebojyoti Ghosh t->ijacobian.shift = 1.; 528493b34091SDebojyoti Ghosh 52859566063dSJacob Faibussowitsch PetscCall(TSGetSNES(tsin, &snes_start)); 52869566063dSJacob Faibussowitsch PetscCall(TSSetSNES(t, snes_start)); 5287d15a3a53SEmil Constantinescu 52889566063dSJacob Faibussowitsch PetscCall(TSGetDM(tsin, &dm)); 52899566063dSJacob Faibussowitsch PetscCall(TSSetDM(t, dm)); 529093b34091SDebojyoti Ghosh 529193b34091SDebojyoti Ghosh t->adapt = tsin->adapt; 52929566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)t->adapt)); 529393b34091SDebojyoti Ghosh 5294e7069c78SShri t->trajectory = tsin->trajectory; 52959566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)t->trajectory)); 5296e7069c78SShri 5297e7069c78SShri t->event = tsin->event; 52986b10a48eSSatish Balay if (t->event) t->event->refct++; 5299e7069c78SShri 530093b34091SDebojyoti Ghosh t->problem_type = tsin->problem_type; 530193b34091SDebojyoti Ghosh t->ptime = tsin->ptime; 5302e7069c78SShri t->ptime_prev = tsin->ptime_prev; 530393b34091SDebojyoti Ghosh t->time_step = tsin->time_step; 530493b34091SDebojyoti Ghosh t->max_time = tsin->max_time; 530593b34091SDebojyoti Ghosh t->steps = tsin->steps; 530693b34091SDebojyoti Ghosh t->max_steps = tsin->max_steps; 530793b34091SDebojyoti Ghosh t->equation_type = tsin->equation_type; 530893b34091SDebojyoti Ghosh t->atol = tsin->atol; 530993b34091SDebojyoti Ghosh t->rtol = tsin->rtol; 531093b34091SDebojyoti Ghosh t->max_snes_failures = tsin->max_snes_failures; 531193b34091SDebojyoti Ghosh t->max_reject = tsin->max_reject; 531293b34091SDebojyoti Ghosh t->errorifstepfailed = tsin->errorifstepfailed; 531393b34091SDebojyoti Ghosh 53149566063dSJacob Faibussowitsch PetscCall(TSGetType(tsin, &type)); 53159566063dSJacob Faibussowitsch PetscCall(TSSetType(t, type)); 531693b34091SDebojyoti Ghosh 531793b34091SDebojyoti Ghosh t->vec_sol = NULL; 531893b34091SDebojyoti Ghosh 531993b34091SDebojyoti Ghosh t->cfltime = tsin->cfltime; 532093b34091SDebojyoti Ghosh t->cfltime_local = tsin->cfltime_local; 532193b34091SDebojyoti Ghosh t->exact_final_time = tsin->exact_final_time; 532293b34091SDebojyoti Ghosh 53239566063dSJacob Faibussowitsch PetscCall(PetscMemcpy(t->ops, tsin->ops, sizeof(struct _TSOps))); 532493b34091SDebojyoti Ghosh 53250d4fed19SBarry Smith if (((PetscObject)tsin)->fortran_func_pointers) { 53260d4fed19SBarry Smith PetscInt i; 53279566063dSJacob Faibussowitsch PetscCall(PetscMalloc((10) * sizeof(void (*)(void)), &((PetscObject)t)->fortran_func_pointers)); 5328ad540459SPierre Jolivet for (i = 0; i < 10; i++) ((PetscObject)t)->fortran_func_pointers[i] = ((PetscObject)tsin)->fortran_func_pointers[i]; 53290d4fed19SBarry Smith } 533093b34091SDebojyoti Ghosh *tsout = t; 53313ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 533293b34091SDebojyoti Ghosh } 5333f3b1f45cSBarry Smith 5334d71ae5a4SJacob Faibussowitsch static PetscErrorCode RHSWrapperFunction_TSRHSJacobianTest(void *ctx, Vec x, Vec y) 5335d71ae5a4SJacob Faibussowitsch { 5336f3b1f45cSBarry Smith TS ts = (TS)ctx; 5337f3b1f45cSBarry Smith 5338f3b1f45cSBarry Smith PetscFunctionBegin; 53399566063dSJacob Faibussowitsch PetscCall(TSComputeRHSFunction(ts, 0, x, y)); 53403ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5341f3b1f45cSBarry Smith } 5342f3b1f45cSBarry Smith 5343f3b1f45cSBarry Smith /*@ 5344bcf0153eSBarry Smith TSRHSJacobianTest - Compares the multiply routine provided to the `MATSHELL` with differencing on the `TS` given RHS function. 5345f3b1f45cSBarry Smith 5346c3339decSBarry Smith Logically Collective 5347f3b1f45cSBarry Smith 53482fe279fdSBarry Smith Input Parameter: 53492fe279fdSBarry Smith . TS - the time stepping routine 5350f3b1f45cSBarry Smith 5351f3b1f45cSBarry Smith Output Parameter: 5352bcf0153eSBarry Smith . flg - `PETSC_TRUE` if the multiply is likely correct 5353f3b1f45cSBarry Smith 5354bcf0153eSBarry Smith Options Database Key: 5355f3b1f45cSBarry Smith . -ts_rhs_jacobian_test_mult -mat_shell_test_mult_view - run the test at each timestep of the integrator 5356f3b1f45cSBarry Smith 5357f3b1f45cSBarry Smith Level: advanced 5358f3b1f45cSBarry Smith 5359bcf0153eSBarry Smith Note: 5360195e9b02SBarry Smith This only works for problems defined using `TSSetRHSFunction()` and Jacobian NOT `TSSetIFunction()` and Jacobian 5361f3b1f45cSBarry Smith 5362bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `Mat`, `MATSHELL`, `MatCreateShell()`, `MatShellGetContext()`, `MatShellGetOperation()`, `MatShellTestMultTranspose()`, `TSRHSJacobianTestTranspose()` 5363f3b1f45cSBarry Smith @*/ 5364d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRHSJacobianTest(TS ts, PetscBool *flg) 5365d71ae5a4SJacob Faibussowitsch { 5366f3b1f45cSBarry Smith Mat J, B; 5367f3b1f45cSBarry Smith TSRHSJacobian func; 5368f3b1f45cSBarry Smith void *ctx; 5369f3b1f45cSBarry Smith 5370f3b1f45cSBarry Smith PetscFunctionBegin; 53719566063dSJacob Faibussowitsch PetscCall(TSGetRHSJacobian(ts, &J, &B, &func, &ctx)); 53729566063dSJacob Faibussowitsch PetscCall((*func)(ts, 0.0, ts->vec_sol, J, B, ctx)); 53739566063dSJacob Faibussowitsch PetscCall(MatShellTestMult(J, RHSWrapperFunction_TSRHSJacobianTest, ts->vec_sol, ts, flg)); 53743ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5375f3b1f45cSBarry Smith } 5376f3b1f45cSBarry Smith 5377f3b1f45cSBarry Smith /*@C 5378bcf0153eSBarry Smith TSRHSJacobianTestTranspose - Compares the multiply transpose routine provided to the `MATSHELL` with differencing on the `TS` given RHS function. 5379f3b1f45cSBarry Smith 5380c3339decSBarry Smith Logically Collective 5381f3b1f45cSBarry Smith 53822fe279fdSBarry Smith Input Parameter: 53832fe279fdSBarry Smith . TS - the time stepping routine 5384f3b1f45cSBarry Smith 5385f3b1f45cSBarry Smith Output Parameter: 5386bcf0153eSBarry Smith . flg - `PETSC_TRUE` if the multiply is likely correct 5387f3b1f45cSBarry Smith 5388bcf0153eSBarry Smith Options Database Key: 5389f3b1f45cSBarry Smith . -ts_rhs_jacobian_test_mult_transpose -mat_shell_test_mult_transpose_view - run the test at each timestep of the integrator 5390f3b1f45cSBarry Smith 5391bcf0153eSBarry Smith Level: advanced 5392bcf0153eSBarry Smith 539395452b02SPatrick Sanan Notes: 5394195e9b02SBarry Smith This only works for problems defined using `TSSetRHSFunction()` and Jacobian NOT `TSSetIFunction()` and Jacobian 5395f3b1f45cSBarry Smith 5396bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `Mat`, `MatCreateShell()`, `MatShellGetContext()`, `MatShellGetOperation()`, `MatShellTestMultTranspose()`, `TSRHSJacobianTest()` 5397f3b1f45cSBarry Smith @*/ 5398d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRHSJacobianTestTranspose(TS ts, PetscBool *flg) 5399d71ae5a4SJacob Faibussowitsch { 5400f3b1f45cSBarry Smith Mat J, B; 5401f3b1f45cSBarry Smith void *ctx; 5402f3b1f45cSBarry Smith TSRHSJacobian func; 5403f3b1f45cSBarry Smith 5404f3b1f45cSBarry Smith PetscFunctionBegin; 54059566063dSJacob Faibussowitsch PetscCall(TSGetRHSJacobian(ts, &J, &B, &func, &ctx)); 54069566063dSJacob Faibussowitsch PetscCall((*func)(ts, 0.0, ts->vec_sol, J, B, ctx)); 54079566063dSJacob Faibussowitsch PetscCall(MatShellTestMultTranspose(J, RHSWrapperFunction_TSRHSJacobianTest, ts->vec_sol, ts, flg)); 54083ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5409f3b1f45cSBarry Smith } 54100fe4d17eSHong Zhang 54110fe4d17eSHong Zhang /*@ 54120fe4d17eSHong Zhang TSSetUseSplitRHSFunction - Use the split RHSFunction when a multirate method is used. 54130fe4d17eSHong Zhang 541420f4b53cSBarry Smith Logically Collective 54150fe4d17eSHong Zhang 5416d8d19677SJose E. Roman Input Parameters: 54170fe4d17eSHong Zhang + ts - timestepping context 5418bcf0153eSBarry Smith - use_splitrhsfunction - `PETSC_TRUE` indicates that the split RHSFunction will be used 54190fe4d17eSHong Zhang 5420bcf0153eSBarry Smith Options Database Key: 54210fe4d17eSHong Zhang . -ts_use_splitrhsfunction - <true,false> 54220fe4d17eSHong Zhang 54230fe4d17eSHong Zhang Level: intermediate 54240fe4d17eSHong Zhang 5425bcf0153eSBarry Smith Note: 5426195e9b02SBarry Smith This is only for multirate methods 5427bcf0153eSBarry Smith 5428bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetUseSplitRHSFunction()` 54290fe4d17eSHong Zhang @*/ 5430d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetUseSplitRHSFunction(TS ts, PetscBool use_splitrhsfunction) 5431d71ae5a4SJacob Faibussowitsch { 54320fe4d17eSHong Zhang PetscFunctionBegin; 54330fe4d17eSHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 54340fe4d17eSHong Zhang ts->use_splitrhsfunction = use_splitrhsfunction; 54353ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 54360fe4d17eSHong Zhang } 54370fe4d17eSHong Zhang 54380fe4d17eSHong Zhang /*@ 54390fe4d17eSHong Zhang TSGetUseSplitRHSFunction - Gets whether to use the split RHSFunction when a multirate method is used. 54400fe4d17eSHong Zhang 544120f4b53cSBarry Smith Not Collective 54420fe4d17eSHong Zhang 54430fe4d17eSHong Zhang Input Parameter: 54440fe4d17eSHong Zhang . ts - timestepping context 54450fe4d17eSHong Zhang 54460fe4d17eSHong Zhang Output Parameter: 5447bcf0153eSBarry Smith . use_splitrhsfunction - `PETSC_TRUE` indicates that the split RHSFunction will be used 54480fe4d17eSHong Zhang 54490fe4d17eSHong Zhang Level: intermediate 54500fe4d17eSHong Zhang 5451bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetUseSplitRHSFunction()` 54520fe4d17eSHong Zhang @*/ 5453d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetUseSplitRHSFunction(TS ts, PetscBool *use_splitrhsfunction) 5454d71ae5a4SJacob Faibussowitsch { 54550fe4d17eSHong Zhang PetscFunctionBegin; 54560fe4d17eSHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 54570fe4d17eSHong Zhang *use_splitrhsfunction = ts->use_splitrhsfunction; 54583ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 54590fe4d17eSHong Zhang } 5460d60b7d5cSBarry Smith 5461d60b7d5cSBarry Smith /*@ 5462d60b7d5cSBarry Smith TSSetMatStructure - sets the relationship between the nonzero structure of the RHS Jacobian matrix to the IJacobian matrix. 5463d60b7d5cSBarry Smith 5464c3339decSBarry Smith Logically Collective 5465d60b7d5cSBarry Smith 5466d60b7d5cSBarry Smith Input Parameters: 5467d60b7d5cSBarry Smith + ts - the time-stepper 5468bcf0153eSBarry Smith - str - the structure (the default is `UNKNOWN_NONZERO_PATTERN`) 5469d60b7d5cSBarry Smith 5470d60b7d5cSBarry Smith Level: intermediate 5471d60b7d5cSBarry Smith 5472bcf0153eSBarry Smith Note: 5473d60b7d5cSBarry Smith When the relationship between the nonzero structures is known and supplied the solution process can be much faster 5474d60b7d5cSBarry Smith 5475bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `MatAXPY()`, `MatStructure` 5476d60b7d5cSBarry Smith @*/ 5477d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMatStructure(TS ts, MatStructure str) 5478d71ae5a4SJacob Faibussowitsch { 5479d60b7d5cSBarry Smith PetscFunctionBegin; 5480d60b7d5cSBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5481d60b7d5cSBarry Smith ts->axpy_pattern = str; 54823ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5483d60b7d5cSBarry Smith } 54844a658b32SHong Zhang 54854a658b32SHong Zhang /*@ 5486bcf0153eSBarry Smith TSSetTimeSpan - sets the time span. The solution will be computed and stored for each time requested in the span 54874a658b32SHong Zhang 5488c3339decSBarry Smith Collective 54894a658b32SHong Zhang 54904a658b32SHong Zhang Input Parameters: 54914a658b32SHong Zhang + ts - the time-stepper 54924a658b32SHong Zhang . n - number of the time points (>=2) 54934a658b32SHong Zhang - span_times - array of the time points. The first element and the last element are the initial time and the final time respectively. 54944a658b32SHong Zhang 5495bcf0153eSBarry Smith Options Database Key: 54964a658b32SHong Zhang . -ts_time_span <t0,...tf> - Sets the time span 54974a658b32SHong Zhang 5498bcf0153eSBarry Smith Level: intermediate 54994a658b32SHong Zhang 55004a658b32SHong Zhang Notes: 55014a658b32SHong Zhang The elements in tspan must be all increasing. They correspond to the intermediate points for time integration. 5502bcf0153eSBarry Smith `TS_EXACTFINALTIME_MATCHSTEP` must be used to make the last time step in each sub-interval match the intermediate points specified. 5503bcf0153eSBarry Smith The intermediate solutions are saved in a vector array that can be accessed with `TSGetTimeSpanSolutions()`. Thus using time span may 55044a658b32SHong Zhang pressure the memory system when using a large number of span points. 55054a658b32SHong Zhang 5506bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSGetTimeSpan()`, `TSGetTimeSpanSolutions()` 55074a658b32SHong Zhang @*/ 5508d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTimeSpan(TS ts, PetscInt n, PetscReal *span_times) 5509d71ae5a4SJacob Faibussowitsch { 55104a658b32SHong Zhang PetscFunctionBegin; 55114a658b32SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 551263a3b9bcSJacob Faibussowitsch PetscCheck(n >= 2, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Minimum time span size is 2 but %" PetscInt_FMT " is provided", n); 55134a658b32SHong Zhang if (ts->tspan && n != ts->tspan->num_span_times) { 55144a658b32SHong Zhang PetscCall(PetscFree(ts->tspan->span_times)); 55154a658b32SHong Zhang PetscCall(VecDestroyVecs(ts->tspan->num_span_times, &ts->tspan->vecs_sol)); 55164a658b32SHong Zhang PetscCall(PetscMalloc1(n, &ts->tspan->span_times)); 55174a658b32SHong Zhang } 55184a658b32SHong Zhang if (!ts->tspan) { 55194a658b32SHong Zhang TSTimeSpan tspan; 55204a658b32SHong Zhang PetscCall(PetscNew(&tspan)); 55214a658b32SHong Zhang PetscCall(PetscMalloc1(n, &tspan->span_times)); 5522e1db57b0SHong Zhang tspan->reltol = 1e-6; 5523e1db57b0SHong Zhang tspan->abstol = 10 * PETSC_MACHINE_EPSILON; 55244a658b32SHong Zhang ts->tspan = tspan; 55254a658b32SHong Zhang } 55264a658b32SHong Zhang ts->tspan->num_span_times = n; 55274a658b32SHong Zhang PetscCall(PetscArraycpy(ts->tspan->span_times, span_times, n)); 55284a658b32SHong Zhang PetscCall(TSSetTime(ts, ts->tspan->span_times[0])); 55294a658b32SHong Zhang PetscCall(TSSetMaxTime(ts, ts->tspan->span_times[n - 1])); 55303ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 55314a658b32SHong Zhang } 55324a658b32SHong Zhang 55334a658b32SHong Zhang /*@C 5534195e9b02SBarry Smith TSGetTimeSpan - gets the time span set with `TSSetTimeSpan()` 55354a658b32SHong Zhang 55364a658b32SHong Zhang Not Collective 55374a658b32SHong Zhang 55384a658b32SHong Zhang Input Parameter: 55394a658b32SHong Zhang . ts - the time-stepper 55404a658b32SHong Zhang 55414a658b32SHong Zhang Output Parameters: 55424a658b32SHong Zhang + n - number of the time points (>=2) 5543bcf0153eSBarry Smith - span_times - array of the time points. The first element and the last element are the initial time and the final time respectively. 55444a658b32SHong Zhang 55454a658b32SHong Zhang Level: beginner 55464a658b32SHong Zhang 5547bcf0153eSBarry Smith Note: 5548195e9b02SBarry Smith The values obtained are valid until the `TS` object is destroyed. 5549195e9b02SBarry Smith 5550195e9b02SBarry Smith Both `n` and `span_times` can be `NULL`. 5551bcf0153eSBarry Smith 5552bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetTimeSpan()`, `TSGetTimeSpanSolutions()` 55534a658b32SHong Zhang @*/ 5554d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeSpan(TS ts, PetscInt *n, const PetscReal **span_times) 5555d71ae5a4SJacob Faibussowitsch { 55564a658b32SHong Zhang PetscFunctionBegin; 55574a658b32SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 55584a658b32SHong Zhang if (n) PetscValidIntPointer(n, 2); 55594a658b32SHong Zhang if (span_times) PetscValidPointer(span_times, 3); 55604a658b32SHong Zhang if (!ts->tspan) { 55614a658b32SHong Zhang if (n) *n = 0; 55624a658b32SHong Zhang if (span_times) *span_times = NULL; 55634a658b32SHong Zhang } else { 55644a658b32SHong Zhang if (n) *n = ts->tspan->num_span_times; 55654a658b32SHong Zhang if (span_times) *span_times = ts->tspan->span_times; 55664a658b32SHong Zhang } 55673ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 55684a658b32SHong Zhang } 55694a658b32SHong Zhang 55704a658b32SHong Zhang /*@ 55714a658b32SHong Zhang TSGetTimeSpanSolutions - Get the number of solutions and the solutions at the time points specified by the time span. 55724a658b32SHong Zhang 55734a658b32SHong Zhang Input Parameter: 5574bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 55754a658b32SHong Zhang 55764a658b32SHong Zhang Output Parameters: 55774a658b32SHong Zhang + nsol - the number of solutions 55784a658b32SHong Zhang - Sols - the solution vectors 55794a658b32SHong Zhang 5580bcf0153eSBarry Smith Level: intermediate 55814a658b32SHong Zhang 558240bd4cedSHong Zhang Notes: 5583195e9b02SBarry Smith Both `nsol` and `Sols` can be `NULL`. 55844a658b32SHong Zhang 5585195e9b02SBarry Smith Some time points in the time span may be skipped by `TS` so that `nsol` is less than the number of points specified by `TSSetTimeSpan()`. 5586bcf0153eSBarry Smith For example, manipulating the step size, especially with a reduced precision, may cause `TS` to step over certain points in the span. 5587bcf0153eSBarry Smith 5588bcf0153eSBarry Smith .seealso: [](chapter_ts), `TS`, `TSSetTimeSpan()` 55894a658b32SHong Zhang @*/ 5590d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeSpanSolutions(TS ts, PetscInt *nsol, Vec **Sols) 5591d71ae5a4SJacob Faibussowitsch { 55924a658b32SHong Zhang PetscFunctionBegin; 55934a658b32SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 55944a658b32SHong Zhang if (nsol) PetscValidIntPointer(nsol, 2); 55954a658b32SHong Zhang if (Sols) PetscValidPointer(Sols, 3); 55964a658b32SHong Zhang if (!ts->tspan) { 55974a658b32SHong Zhang if (nsol) *nsol = 0; 55984a658b32SHong Zhang if (Sols) *Sols = NULL; 55994a658b32SHong Zhang } else { 560040bd4cedSHong Zhang if (nsol) *nsol = ts->tspan->spanctr; 56014a658b32SHong Zhang if (Sols) *Sols = ts->tspan->vecs_sol; 56024a658b32SHong Zhang } 56033ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 56044a658b32SHong Zhang } 5605d7cfae9bSHong Zhang 5606d7cfae9bSHong Zhang /*@C 56077b2dc123SHong Zhang TSPruneIJacobianColor - Remove nondiagonal zeros in the Jacobian matrix and update the `MatMFFD` coloring information. 5608d7cfae9bSHong Zhang 5609195e9b02SBarry Smith Collective 5610d7cfae9bSHong Zhang 5611d7cfae9bSHong Zhang Input Parameters: 5612195e9b02SBarry Smith + ts - the `TS` context 5613d7cfae9bSHong Zhang . J - Jacobian matrix (not altered in this routine) 5614195e9b02SBarry Smith - B - newly computed Jacobian matrix to use with preconditioner 5615d7cfae9bSHong Zhang 5616d7cfae9bSHong Zhang Level: intermediate 5617d7cfae9bSHong Zhang 5618d7cfae9bSHong Zhang Notes: 5619195e9b02SBarry Smith This function improves the `MatFDColoring` performance when the Jacobian matrix was over-allocated or contains 5620195e9b02SBarry Smith many constant zeros entries, which is typically the case when the matrix is generated by a `DM` 5621d7cfae9bSHong Zhang and multiple fields are involved. 5622d7cfae9bSHong Zhang 5623d7cfae9bSHong Zhang Users need to make sure that the Jacobian matrix is properly filled to reflect the sparsity 5624195e9b02SBarry Smith structure. For `MatFDColoring`, the values of nonzero entries are not important. So one can 56257b2dc123SHong Zhang usually call `TSComputeIJacobian()` with randomized input vectors to generate a dummy Jacobian. 56267b2dc123SHong Zhang `TSComputeIJacobian()` should be called before `TSSolve()` but after `TSSetUp()`. 5627d7cfae9bSHong Zhang 5628195e9b02SBarry Smith .seealso: [](chapter_ts), `TS`, `MatFDColoring`, `TSComputeIJacobianDefaultColor()`, `MatEliminateZeros()`, `MatFDColoringCreate()`, `MatFDColoringSetFunction()` 5629d7cfae9bSHong Zhang @*/ 5630d7cfae9bSHong Zhang PetscErrorCode TSPruneIJacobianColor(TS ts, Mat J, Mat B) 5631d7cfae9bSHong Zhang { 5632d7cfae9bSHong Zhang MatColoring mc = NULL; 5633d7cfae9bSHong Zhang ISColoring iscoloring = NULL; 5634d7cfae9bSHong Zhang MatFDColoring matfdcoloring = NULL; 5635d7cfae9bSHong Zhang 5636d7cfae9bSHong Zhang PetscFunctionBegin; 5637d7cfae9bSHong Zhang /* Generate new coloring after eliminating zeros in the matrix */ 5638d7cfae9bSHong Zhang PetscCall(MatEliminateZeros(B)); 5639d7cfae9bSHong Zhang PetscCall(MatColoringCreate(B, &mc)); 5640d7cfae9bSHong Zhang PetscCall(MatColoringSetDistance(mc, 2)); 5641d7cfae9bSHong Zhang PetscCall(MatColoringSetType(mc, MATCOLORINGSL)); 5642d7cfae9bSHong Zhang PetscCall(MatColoringSetFromOptions(mc)); 5643d7cfae9bSHong Zhang PetscCall(MatColoringApply(mc, &iscoloring)); 5644d7cfae9bSHong Zhang PetscCall(MatColoringDestroy(&mc)); 5645d7cfae9bSHong Zhang /* Replace the old coloring with the new one */ 5646d7cfae9bSHong Zhang PetscCall(MatFDColoringCreate(B, iscoloring, &matfdcoloring)); 5647d7cfae9bSHong Zhang PetscCall(MatFDColoringSetFunction(matfdcoloring, (PetscErrorCode(*)(void))SNESTSFormFunction, (void *)ts)); 5648d7cfae9bSHong Zhang PetscCall(MatFDColoringSetFromOptions(matfdcoloring)); 5649d7cfae9bSHong Zhang PetscCall(MatFDColoringSetUp(B, iscoloring, matfdcoloring)); 5650d7cfae9bSHong Zhang PetscCall(PetscObjectCompose((PetscObject)B, "TSMatFDColoring", (PetscObject)matfdcoloring)); 5651d7cfae9bSHong Zhang PetscCall(PetscObjectDereference((PetscObject)matfdcoloring)); 5652d7cfae9bSHong Zhang PetscCall(ISColoringDestroy(&iscoloring)); 56533ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5654d7cfae9bSHong Zhang } 5655