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); 204f572ea9SToby Isaac PetscAssertPointer(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 49b43aa488SJacob Faibussowitsch . -ts_rhs_jacobian_test_mult_transpose - 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 66*c17ba870SStefano Zampini . -ts_monitor_solution_interval <interval> - output once every interval (default=1) time steps. Use -1 to only output at the end of the simulation 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) 68*c17ba870SStefano Zampini . -ts_monitor_solution_vtk_interval <interval> - output once every interval (default=1) time steps. Use -1 to only output at the end of the simulation 699e336e28SPatrick Sanan - -ts_monitor_envelope - determine maximum and minimum value of each component of the solution over the solution time 7053ea634cSHong Zhang 71bcf0153eSBarry Smith Level: beginner 723d5a8a6aSBarry Smith 73bcf0153eSBarry Smith Notes: 74bcf0153eSBarry Smith See `SNESSetFromOptions()` and `KSPSetFromOptions()` for how to control the nonlinear and linear solves used by the time-stepper. 75bcf0153eSBarry Smith 76195e9b02SBarry Smith Certain `SNES` options get reset for each new nonlinear solver, for example `-snes_lag_jacobian its` and `-snes_lag_preconditioner its`, in order 77195e9b02SBarry Smith to retain them over the multiple nonlinear solves that `TS` uses you mush also provide `-snes_lag_jacobian_persists true` and 78195e9b02SBarry Smith `-snes_lag_preconditioner_persists true` 793d5a8a6aSBarry Smith 80b43aa488SJacob Faibussowitsch Developer Notes: 819e336e28SPatrick Sanan We should unify all the -ts_monitor options in the way that -xxx_view has been unified 82bdad233fSMatthew Knepley 831cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetType()` 84bdad233fSMatthew Knepley @*/ 85d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetFromOptions(TS ts) 86d71ae5a4SJacob Faibussowitsch { 87bc952696SBarry Smith PetscBool opt, flg, tflg; 88eabae89aSBarry Smith char monfilename[PETSC_MAX_PATH_LEN]; 894a658b32SHong Zhang PetscReal time_step, tspan[100]; 904a658b32SHong Zhang PetscInt nt = PETSC_STATIC_ARRAY_LENGTH(tspan); 9149354f04SShri Abhyankar TSExactFinalTimeOption eftopt; 92d1212d36SBarry Smith char dir[16]; 938434afd1SBarry Smith TSIFunctionFn *ifun; 946991f827SBarry Smith const char *defaultType; 956991f827SBarry Smith char typeName[256]; 96bdad233fSMatthew Knepley 97bdad233fSMatthew Knepley PetscFunctionBegin; 980700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 996991f827SBarry Smith 1009566063dSJacob Faibussowitsch PetscCall(TSRegisterAll()); 1019566063dSJacob Faibussowitsch PetscCall(TSGetIFunction(ts, NULL, &ifun, NULL)); 102cd11d68dSLisandro Dalcin 103d0609cedSBarry Smith PetscObjectOptionsBegin((PetscObject)ts); 1041ef27442SStefano Zampini if (((PetscObject)ts)->type_name) defaultType = ((PetscObject)ts)->type_name; 1051ef27442SStefano Zampini else defaultType = ifun ? TSBEULER : TSEULER; 1069566063dSJacob Faibussowitsch PetscCall(PetscOptionsFList("-ts_type", "TS method", "TSSetType", TSList, defaultType, typeName, 256, &opt)); 1071e66621cSBarry Smith if (opt) PetscCall(TSSetType(ts, typeName)); 1081e66621cSBarry Smith else PetscCall(TSSetType(ts, defaultType)); 109bdad233fSMatthew Knepley 110bdad233fSMatthew Knepley /* Handle generic TS options */ 1119566063dSJacob Faibussowitsch PetscCall(PetscOptionsDeprecated("-ts_final_time", "-ts_max_time", "3.10", NULL)); 1129566063dSJacob Faibussowitsch PetscCall(PetscOptionsReal("-ts_max_time", "Maximum time to run to", "TSSetMaxTime", ts->max_time, &ts->max_time, NULL)); 1134a658b32SHong Zhang PetscCall(PetscOptionsRealArray("-ts_time_span", "Time span", "TSSetTimeSpan", tspan, &nt, &flg)); 1144a658b32SHong Zhang if (flg) PetscCall(TSSetTimeSpan(ts, nt, tspan)); 1159566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_max_steps", "Maximum number of time steps", "TSSetMaxSteps", ts->max_steps, &ts->max_steps, NULL)); 1169566063dSJacob Faibussowitsch PetscCall(PetscOptionsReal("-ts_init_time", "Initial time", "TSSetTime", ts->ptime, &ts->ptime, NULL)); 1179566063dSJacob Faibussowitsch PetscCall(PetscOptionsReal("-ts_dt", "Initial time step", "TSSetTimeStep", ts->time_step, &time_step, &flg)); 1189566063dSJacob Faibussowitsch if (flg) PetscCall(TSSetTimeStep(ts, time_step)); 1199566063dSJacob Faibussowitsch PetscCall(PetscOptionsEnum("-ts_exact_final_time", "Option for handling of final time step", "TSSetExactFinalTime", TSExactFinalTimeOptions, (PetscEnum)ts->exact_final_time, (PetscEnum *)&eftopt, &flg)); 1209566063dSJacob Faibussowitsch if (flg) PetscCall(TSSetExactFinalTime(ts, eftopt)); 12109cb0f53SBarry Smith PetscCall(PetscOptionsInt("-ts_max_snes_failures", "Maximum number of nonlinear solve failures", "TSSetMaxSNESFailures", ts->max_snes_failures, &ts->max_snes_failures, &flg)); 12209cb0f53SBarry Smith if (flg) PetscCall(TSSetMaxSNESFailures(ts, ts->max_snes_failures)); 12309cb0f53SBarry Smith PetscCall(PetscOptionsInt("-ts_max_reject", "Maximum number of step rejections before step fails", "TSSetMaxStepRejections", ts->max_reject, &ts->max_reject, &flg)); 12409cb0f53SBarry Smith if (flg) PetscCall(TSSetMaxStepRejections(ts, ts->max_reject)); 1259566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_error_if_step_fails", "Error if no step succeeds", "TSSetErrorIfStepFails", ts->errorifstepfailed, &ts->errorifstepfailed, NULL)); 12609cb0f53SBarry Smith PetscCall(PetscOptionsBoundedReal("-ts_rtol", "Relative tolerance for local truncation error", "TSSetTolerances", ts->rtol, &ts->rtol, NULL, 0)); 12709cb0f53SBarry Smith PetscCall(PetscOptionsBoundedReal("-ts_atol", "Absolute tolerance for local truncation error", "TSSetTolerances", ts->atol, &ts->atol, NULL, 0)); 128bdad233fSMatthew Knepley 1299566063dSJacob 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)); 1309566063dSJacob 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)); 1319566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_use_splitrhsfunction", "Use the split RHS function for multirate solvers ", "TSSetUseSplitRHSFunction", ts->use_splitrhsfunction, &ts->use_splitrhsfunction, NULL)); 13256f85f32SBarry Smith #if defined(PETSC_HAVE_SAWS) 13356f85f32SBarry Smith { 13456f85f32SBarry Smith PetscBool set; 13556f85f32SBarry Smith flg = PETSC_FALSE; 1369566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_saws_block", "Block for SAWs memory snooper at end of TSSolve", "PetscObjectSAWsBlock", ((PetscObject)ts)->amspublishblock, &flg, &set)); 1371baa6e33SBarry Smith if (set) PetscCall(PetscObjectSAWsSetBlock((PetscObject)ts, flg)); 13856f85f32SBarry Smith } 13956f85f32SBarry Smith #endif 14056f85f32SBarry Smith 141bdad233fSMatthew Knepley /* Monitor options */ 1429566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_frequency", "Number of time steps between monitor output", "TSMonitorSetFrequency", ts->monitorFrequency, &ts->monitorFrequency, NULL)); 1439566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_monitor", "Monitor time and timestep size", "TSMonitorDefault", TSMonitorDefault, NULL)); 1449566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_monitor_extreme", "Monitor extreme values of the solution", "TSMonitorExtreme", TSMonitorExtreme, NULL)); 1459566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_monitor_solution", "View the solution at each timestep", "TSMonitorSolution", TSMonitorSolution, NULL)); 1469566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_dmswarm_monitor_moments", "Monitor moments of particle distribution", "TSDMSwarmMonitorMoments", TSDMSwarmMonitorMoments, NULL)); 147fde5950dSBarry Smith 1489566063dSJacob Faibussowitsch PetscCall(PetscOptionsString("-ts_monitor_python", "Use Python function", "TSMonitorSet", NULL, monfilename, sizeof(monfilename), &flg)); 1499566063dSJacob Faibussowitsch if (flg) PetscCall(PetscPythonMonitorSet((PetscObject)ts, monfilename)); 1505180491cSLisandro Dalcin 1519566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_solution", "Monitor solution graphically", "TSMonitorLGSolution", &opt)); 152b3603a34SBarry Smith if (opt) { 1533923b477SBarry Smith PetscInt howoften = 1; 154e669de00SBarry Smith DM dm; 155e669de00SBarry Smith PetscBool net; 156b3603a34SBarry Smith 1579566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_solution", "Monitor solution graphically", "TSMonitorLGSolution", howoften, &howoften, NULL)); 1589566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 1599566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)dm, DMNETWORK, &net)); 160e669de00SBarry Smith if (net) { 161e669de00SBarry Smith TSMonitorLGCtxNetwork ctx; 1629566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxNetworkCreate(ts, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 600, 400, howoften, &ctx)); 1639566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGCtxNetworkSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxNetworkDestroy)); 1649566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_monitor_lg_solution_semilogy", "Plot the solution with a semi-log axis", "", ctx->semilogy, &ctx->semilogy, NULL)); 165e669de00SBarry Smith } else { 166e669de00SBarry Smith TSMonitorLGCtx ctx; 1679566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PETSC_COMM_SELF, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 1689566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 169bdad233fSMatthew Knepley } 170e669de00SBarry Smith } 1716ba87a44SLisandro Dalcin 1729566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_error", "Monitor error graphically", "TSMonitorLGError", &opt)); 173ef20d060SBarry Smith if (opt) { 1740b039ecaSBarry Smith TSMonitorLGCtx ctx; 1753923b477SBarry Smith PetscInt howoften = 1; 176ef20d060SBarry Smith 1779566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_error", "Monitor error graphically", "TSMonitorLGError", howoften, &howoften, NULL)); 1789566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PETSC_COMM_SELF, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 1799566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGError, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 180ef20d060SBarry Smith } 1819566063dSJacob Faibussowitsch PetscCall(TSMonitorSetFromOptions(ts, "-ts_monitor_error", "View the error at each timestep", "TSMonitorError", TSMonitorError, NULL)); 1827cf37e64SBarry Smith 1839566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_timestep", "Monitor timestep size graphically", "TSMonitorLGTimeStep", &opt)); 1846934998bSLisandro Dalcin if (opt) { 1856934998bSLisandro Dalcin TSMonitorLGCtx ctx; 1866934998bSLisandro Dalcin PetscInt howoften = 1; 1876934998bSLisandro Dalcin 1889566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_timestep", "Monitor timestep size graphically", "TSMonitorLGTimeStep", howoften, &howoften, NULL)); 1899566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 1909566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGTimeStep, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 1916934998bSLisandro Dalcin } 1929566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_timestep_log", "Monitor log timestep size graphically", "TSMonitorLGTimeStep", &opt)); 1938b668821SLisandro Dalcin if (opt) { 1948b668821SLisandro Dalcin TSMonitorLGCtx ctx; 1958b668821SLisandro Dalcin PetscInt howoften = 1; 1968b668821SLisandro Dalcin 1979566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_timestep_log", "Monitor log timestep size graphically", "TSMonitorLGTimeStep", howoften, &howoften, NULL)); 1989566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 1999566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGTimeStep, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 2008b668821SLisandro Dalcin ctx->semilogy = PETSC_TRUE; 2018b668821SLisandro Dalcin } 2028b668821SLisandro Dalcin 2039566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_snes_iterations", "Monitor number nonlinear iterations for each timestep graphically", "TSMonitorLGSNESIterations", &opt)); 204201da799SBarry Smith if (opt) { 205201da799SBarry Smith TSMonitorLGCtx ctx; 206201da799SBarry Smith PetscInt howoften = 1; 207201da799SBarry Smith 2089566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_snes_iterations", "Monitor number nonlinear iterations for each timestep graphically", "TSMonitorLGSNESIterations", howoften, &howoften, NULL)); 2099566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 2109566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGSNESIterations, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 211201da799SBarry Smith } 2129566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_lg_ksp_iterations", "Monitor number nonlinear iterations for each timestep graphically", "TSMonitorLGKSPIterations", &opt)); 213201da799SBarry Smith if (opt) { 214201da799SBarry Smith TSMonitorLGCtx ctx; 215201da799SBarry Smith PetscInt howoften = 1; 216201da799SBarry Smith 2179566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_lg_ksp_iterations", "Monitor number nonlinear iterations for each timestep graphically", "TSMonitorLGKSPIterations", howoften, &howoften, NULL)); 2189566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 400, 300, howoften, &ctx)); 2199566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGKSPIterations, ctx, (PetscErrorCode(*)(void **))TSMonitorLGCtxDestroy)); 220201da799SBarry Smith } 2219566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_sp_eig", "Monitor eigenvalues of linearized operator graphically", "TSMonitorSPEig", &opt)); 2228189c53fSBarry Smith if (opt) { 2238189c53fSBarry Smith TSMonitorSPEigCtx ctx; 2248189c53fSBarry Smith PetscInt howoften = 1; 2258189c53fSBarry Smith 2269566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_sp_eig", "Monitor eigenvalues of linearized operator graphically", "TSMonitorSPEig", howoften, &howoften, NULL)); 2279566063dSJacob Faibussowitsch PetscCall(TSMonitorSPEigCtxCreate(PETSC_COMM_SELF, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, &ctx)); 2289566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorSPEig, ctx, (PetscErrorCode(*)(void **))TSMonitorSPEigCtxDestroy)); 2298189c53fSBarry Smith } 23060e16b1bSMatthew G. Knepley PetscCall(PetscOptionsName("-ts_monitor_sp_swarm", "Display particle phase space from the DMSwarm", "TSMonitorSPSwarm", &opt)); 2311b575b74SJoseph Pusztay if (opt) { 2321b575b74SJoseph Pusztay TSMonitorSPCtx ctx; 233d7462660SMatthew Knepley PetscInt howoften = 1, retain = 0; 23460e16b1bSMatthew G. Knepley PetscBool phase = PETSC_TRUE, create = PETSC_TRUE, multispecies = PETSC_FALSE; 235d7462660SMatthew Knepley 2369371c9d4SSatish Balay for (PetscInt i = 0; i < ts->numbermonitors; ++i) 2379371c9d4SSatish Balay if (ts->monitor[i] == TSMonitorSPSwarmSolution) { 2389371c9d4SSatish Balay create = PETSC_FALSE; 2399371c9d4SSatish Balay break; 2409371c9d4SSatish Balay } 2416a5217c0SMatthew G. Knepley if (create) { 24260e16b1bSMatthew G. Knepley PetscCall(PetscOptionsInt("-ts_monitor_sp_swarm", "Display particles phase space from the DMSwarm", "TSMonitorSPSwarm", howoften, &howoften, NULL)); 2439566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_sp_swarm_retain", "Retain n points plotted to show trajectory, -1 for all points", "TSMonitorSPSwarm", retain, &retain, NULL)); 2449566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_monitor_sp_swarm_phase", "Plot in phase space rather than coordinate space", "TSMonitorSPSwarm", phase, &phase, NULL)); 24560e16b1bSMatthew G. Knepley PetscCall(PetscOptionsBool("-ts_monitor_sp_swarm_multi_species", "Color particles by particle species", "TSMonitorSPSwarm", multispecies, &multispecies, NULL)); 24660e16b1bSMatthew G. Knepley PetscCall(TSMonitorSPCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, retain, phase, multispecies, &ctx)); 2479566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorSPSwarmSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorSPCtxDestroy)); 2481b575b74SJoseph Pusztay } 2496a5217c0SMatthew G. Knepley } 25060e16b1bSMatthew G. Knepley PetscCall(PetscOptionsName("-ts_monitor_hg_swarm", "Display particle histogram from the DMSwarm", "TSMonitorHGSwarm", &opt)); 25160e16b1bSMatthew G. Knepley if (opt) { 25260e16b1bSMatthew G. Knepley TSMonitorHGCtx ctx; 25360e16b1bSMatthew G. Knepley PetscInt howoften = 1, Ns = 1; 25460e16b1bSMatthew G. Knepley PetscBool velocity = PETSC_FALSE, create = PETSC_TRUE; 25560e16b1bSMatthew G. Knepley 25660e16b1bSMatthew G. Knepley for (PetscInt i = 0; i < ts->numbermonitors; ++i) 25760e16b1bSMatthew G. Knepley if (ts->monitor[i] == TSMonitorHGSwarmSolution) { 25860e16b1bSMatthew G. Knepley create = PETSC_FALSE; 25960e16b1bSMatthew G. Knepley break; 26060e16b1bSMatthew G. Knepley } 26160e16b1bSMatthew G. Knepley if (create) { 26260e16b1bSMatthew G. Knepley DM sw, dm; 26360e16b1bSMatthew G. Knepley PetscInt Nc, Nb; 26460e16b1bSMatthew G. Knepley 26560e16b1bSMatthew G. Knepley PetscCall(TSGetDM(ts, &sw)); 26660e16b1bSMatthew G. Knepley PetscCall(DMSwarmGetCellDM(sw, &dm)); 26760e16b1bSMatthew G. Knepley PetscCall(DMPlexGetHeightStratum(dm, 0, NULL, &Nc)); 26860e16b1bSMatthew G. Knepley Nb = PetscMin(20, PetscMax(10, Nc)); 26960e16b1bSMatthew G. Knepley PetscCall(PetscOptionsInt("-ts_monitor_hg_swarm", "Display particles histogram from the DMSwarm", "TSMonitorHGSwarm", howoften, &howoften, NULL)); 27060e16b1bSMatthew G. Knepley PetscCall(PetscOptionsBool("-ts_monitor_hg_swarm_velocity", "Plot in velocity space rather than coordinate space", "TSMonitorHGSwarm", velocity, &velocity, NULL)); 27160e16b1bSMatthew G. Knepley PetscCall(PetscOptionsInt("-ts_monitor_hg_swarm_species", "Number of species to histogram", "TSMonitorHGSwarm", Ns, &Ns, NULL)); 27260e16b1bSMatthew G. Knepley PetscCall(PetscOptionsInt("-ts_monitor_hg_swarm_bins", "Number of histogram bins", "TSMonitorHGSwarm", Nb, &Nb, NULL)); 27360e16b1bSMatthew G. Knepley PetscCall(TSMonitorHGCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, Ns, Nb, velocity, &ctx)); 27460e16b1bSMatthew G. Knepley PetscCall(TSMonitorSet(ts, TSMonitorHGSwarmSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorHGCtxDestroy)); 27560e16b1bSMatthew G. Knepley } 27660e16b1bSMatthew G. Knepley } 277ef20d060SBarry Smith opt = PETSC_FALSE; 2789566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_draw_solution", "Monitor solution graphically", "TSMonitorDrawSolution", &opt)); 279a7cc72afSBarry Smith if (opt) { 28083a4ac43SBarry Smith TSMonitorDrawCtx ctx; 28183a4ac43SBarry Smith PetscInt howoften = 1; 282a80ad3e0SBarry Smith 2839566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_draw_solution", "Monitor solution graphically", "TSMonitorDrawSolution", howoften, &howoften, NULL)); 2849566063dSJacob Faibussowitsch PetscCall(TSMonitorDrawCtxCreate(PetscObjectComm((PetscObject)ts), NULL, "Computed Solution", PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, &ctx)); 2859566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDrawSolution, ctx, (PetscErrorCode(*)(void **))TSMonitorDrawCtxDestroy)); 286bdad233fSMatthew Knepley } 287fb1732b5SBarry Smith opt = PETSC_FALSE; 2889566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_draw_solution_phase", "Monitor solution graphically", "TSMonitorDrawSolutionPhase", &opt)); 2892d5ee99bSBarry Smith if (opt) { 2902d5ee99bSBarry Smith TSMonitorDrawCtx ctx; 2912d5ee99bSBarry Smith PetscReal bounds[4]; 2922d5ee99bSBarry Smith PetscInt n = 4; 2932d5ee99bSBarry Smith PetscDraw draw; 2946934998bSLisandro Dalcin PetscDrawAxis axis; 2952d5ee99bSBarry Smith 2969566063dSJacob Faibussowitsch PetscCall(PetscOptionsRealArray("-ts_monitor_draw_solution_phase", "Monitor solution graphically", "TSMonitorDrawSolutionPhase", bounds, &n, NULL)); 2973c633725SBarry Smith PetscCheck(n == 4, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Must provide bounding box of phase field"); 2989566063dSJacob Faibussowitsch PetscCall(TSMonitorDrawCtxCreate(PetscObjectComm((PetscObject)ts), NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 300, 300, 1, &ctx)); 2999566063dSJacob Faibussowitsch PetscCall(PetscViewerDrawGetDraw(ctx->viewer, 0, &draw)); 3009566063dSJacob Faibussowitsch PetscCall(PetscViewerDrawGetDrawAxis(ctx->viewer, 0, &axis)); 3019566063dSJacob Faibussowitsch PetscCall(PetscDrawAxisSetLimits(axis, bounds[0], bounds[2], bounds[1], bounds[3])); 3029566063dSJacob Faibussowitsch PetscCall(PetscDrawAxisSetLabels(axis, "Phase Diagram", "Variable 1", "Variable 2")); 3039566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDrawSolutionPhase, ctx, (PetscErrorCode(*)(void **))TSMonitorDrawCtxDestroy)); 3042d5ee99bSBarry Smith } 3052d5ee99bSBarry Smith opt = PETSC_FALSE; 3069566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_draw_error", "Monitor error graphically", "TSMonitorDrawError", &opt)); 3073a471f94SBarry Smith if (opt) { 30883a4ac43SBarry Smith TSMonitorDrawCtx ctx; 30983a4ac43SBarry Smith PetscInt howoften = 1; 3103a471f94SBarry Smith 3119566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_draw_error", "Monitor error graphically", "TSMonitorDrawError", howoften, &howoften, NULL)); 3129566063dSJacob Faibussowitsch PetscCall(TSMonitorDrawCtxCreate(PetscObjectComm((PetscObject)ts), NULL, "Error", PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, &ctx)); 3139566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDrawError, ctx, (PetscErrorCode(*)(void **))TSMonitorDrawCtxDestroy)); 3143a471f94SBarry Smith } 3150ed3bfb6SBarry Smith opt = PETSC_FALSE; 3169566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_draw_solution_function", "Monitor solution provided by TSMonitorSetSolutionFunction() graphically", "TSMonitorDrawSolutionFunction", &opt)); 3170ed3bfb6SBarry Smith if (opt) { 3180ed3bfb6SBarry Smith TSMonitorDrawCtx ctx; 3190ed3bfb6SBarry Smith PetscInt howoften = 1; 3200ed3bfb6SBarry Smith 3219566063dSJacob Faibussowitsch PetscCall(PetscOptionsInt("-ts_monitor_draw_solution_function", "Monitor solution provided by TSMonitorSetSolutionFunction() graphically", "TSMonitorDrawSolutionFunction", howoften, &howoften, NULL)); 3229566063dSJacob Faibussowitsch PetscCall(TSMonitorDrawCtxCreate(PetscObjectComm((PetscObject)ts), NULL, "Solution provided by user function", PETSC_DECIDE, PETSC_DECIDE, 300, 300, howoften, &ctx)); 3239566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDrawSolutionFunction, ctx, (PetscErrorCode(*)(void **))TSMonitorDrawCtxDestroy)); 3240ed3bfb6SBarry Smith } 325fde5950dSBarry Smith 326ed81e22dSJed Brown opt = PETSC_FALSE; 32763a3b9bcSJacob 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)); 328ed81e22dSJed Brown if (flg) { 3297f27e910SStefano Zampini TSMonitorVTKCtx ctx; 3307f27e910SStefano Zampini 3317f27e910SStefano Zampini PetscCall(TSMonitorSolutionVTKCtxCreate(monfilename, &ctx)); 332*c17ba870SStefano Zampini PetscCall(PetscOptionsInt("-ts_monitor_solution_vtk_interval", "Save every interval time step (-1 for last step only)", NULL, ctx->interval, &ctx->interval, NULL)); 3337f27e910SStefano Zampini PetscCall(TSMonitorSet(ts, (PetscErrorCode(*)(TS, PetscInt, PetscReal, Vec, void *))TSMonitorSolutionVTK, ctx, (PetscErrorCode(*)(void **))TSMonitorSolutionVTKDestroy)); 334ed81e22dSJed Brown } 335bdad233fSMatthew Knepley 3369566063dSJacob Faibussowitsch PetscCall(PetscOptionsString("-ts_monitor_dmda_ray", "Display a ray of the solution", "None", "y=0", dir, sizeof(dir), &flg)); 337d1212d36SBarry Smith if (flg) { 338d1212d36SBarry Smith TSMonitorDMDARayCtx *rayctx; 339d1212d36SBarry Smith int ray = 0; 3403ee9839eSMatthew G. Knepley DMDirection ddir; 341d1212d36SBarry Smith DM da; 342d1212d36SBarry Smith PetscMPIInt rank; 343d1212d36SBarry Smith 3443c633725SBarry Smith PetscCheck(dir[1] == '=', PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Unknown ray %s", dir); 3453ee9839eSMatthew G. Knepley if (dir[0] == 'x') ddir = DM_X; 3463ee9839eSMatthew G. Knepley else if (dir[0] == 'y') ddir = DM_Y; 34798921bdaSJacob Faibussowitsch else SETERRQ(PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Unknown ray %s", dir); 348d1212d36SBarry Smith sscanf(dir + 2, "%d", &ray); 349d1212d36SBarry Smith 3509566063dSJacob Faibussowitsch PetscCall(PetscInfo(((PetscObject)ts), "Displaying DMDA ray %c = %d\n", dir[0], ray)); 3519566063dSJacob Faibussowitsch PetscCall(PetscNew(&rayctx)); 3529566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &da)); 3539566063dSJacob Faibussowitsch PetscCall(DMDAGetRay(da, ddir, ray, &rayctx->ray, &rayctx->scatter)); 3549566063dSJacob Faibussowitsch PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)ts), &rank)); 3551e66621cSBarry Smith if (rank == 0) PetscCall(PetscViewerDrawOpen(PETSC_COMM_SELF, NULL, NULL, 0, 0, 600, 300, &rayctx->viewer)); 35651b4a12fSMatthew G. Knepley rayctx->lgctx = NULL; 3579566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorDMDARay, rayctx, TSMonitorDMDARayDestroy)); 358d1212d36SBarry Smith } 3599566063dSJacob Faibussowitsch PetscCall(PetscOptionsString("-ts_monitor_lg_dmda_ray", "Display a ray of the solution", "None", "x=0", dir, sizeof(dir), &flg)); 36051b4a12fSMatthew G. Knepley if (flg) { 36151b4a12fSMatthew G. Knepley TSMonitorDMDARayCtx *rayctx; 36251b4a12fSMatthew G. Knepley int ray = 0; 3633ee9839eSMatthew G. Knepley DMDirection ddir; 36451b4a12fSMatthew G. Knepley DM da; 36551b4a12fSMatthew G. Knepley PetscInt howoften = 1; 366d1212d36SBarry Smith 3673c633725SBarry Smith PetscCheck(dir[1] == '=', PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Malformed ray %s", dir); 3683ee9839eSMatthew G. Knepley if (dir[0] == 'x') ddir = DM_X; 3693ee9839eSMatthew G. Knepley else if (dir[0] == 'y') ddir = DM_Y; 37098921bdaSJacob Faibussowitsch else SETERRQ(PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Unknown ray direction %s", dir); 37151b4a12fSMatthew G. Knepley sscanf(dir + 2, "%d", &ray); 3721c3436cfSJed Brown 3739566063dSJacob Faibussowitsch PetscCall(PetscInfo(((PetscObject)ts), "Displaying LG DMDA ray %c = %d\n", dir[0], ray)); 3749566063dSJacob Faibussowitsch PetscCall(PetscNew(&rayctx)); 3759566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &da)); 3769566063dSJacob Faibussowitsch PetscCall(DMDAGetRay(da, ddir, ray, &rayctx->ray, &rayctx->scatter)); 3779566063dSJacob Faibussowitsch PetscCall(TSMonitorLGCtxCreate(PETSC_COMM_SELF, NULL, NULL, PETSC_DECIDE, PETSC_DECIDE, 600, 400, howoften, &rayctx->lgctx)); 3789566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorLGDMDARay, rayctx, TSMonitorDMDARayDestroy)); 37951b4a12fSMatthew G. Knepley } 380a7a1495cSBarry Smith 3819566063dSJacob Faibussowitsch PetscCall(PetscOptionsName("-ts_monitor_envelope", "Monitor maximum and minimum value of each component of the solution", "TSMonitorEnvelope", &opt)); 382b3d3934dSBarry Smith if (opt) { 383b3d3934dSBarry Smith TSMonitorEnvelopeCtx ctx; 384b3d3934dSBarry Smith 3859566063dSJacob Faibussowitsch PetscCall(TSMonitorEnvelopeCtxCreate(ts, &ctx)); 3869566063dSJacob Faibussowitsch PetscCall(TSMonitorSet(ts, TSMonitorEnvelope, ctx, (PetscErrorCode(*)(void **))TSMonitorEnvelopeCtxDestroy)); 387b3d3934dSBarry Smith } 388aee7a9fbSMatthew G. Knepley flg = PETSC_FALSE; 3899566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_monitor_cancel", "Remove all monitors", "TSMonitorCancel", flg, &flg, &opt)); 3909566063dSJacob Faibussowitsch if (opt && flg) PetscCall(TSMonitorCancel(ts)); 391b3d3934dSBarry Smith 392847ff0e1SMatthew G. Knepley flg = PETSC_FALSE; 393d7cfae9bSHong Zhang PetscCall(PetscOptionsBool("-ts_fd_color", "Use finite differences with coloring to compute IJacobian", "TSComputeIJacobianDefaultColor", flg, &flg, NULL)); 394847ff0e1SMatthew G. Knepley if (flg) { 395847ff0e1SMatthew G. Knepley DM dm; 396847ff0e1SMatthew G. Knepley 3979371c9d4SSatish Balay PetscCall(TSGetDM(ts, &dm)); 3989371c9d4SSatish Balay PetscCall(DMTSUnsetIJacobianContext_Internal(dm)); 3999566063dSJacob Faibussowitsch PetscCall(TSSetIJacobian(ts, NULL, NULL, TSComputeIJacobianDefaultColor, NULL)); 4009566063dSJacob Faibussowitsch PetscCall(PetscInfo(ts, "Setting default finite difference coloring Jacobian matrix\n")); 401847ff0e1SMatthew G. Knepley } 402847ff0e1SMatthew G. Knepley 403d763cef2SBarry Smith /* Handle specific TS options */ 404dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, setfromoptions, PetscOptionsObject); 405fbc52257SHong Zhang 406a7bdc993SLisandro Dalcin /* Handle TSAdapt options */ 4079566063dSJacob Faibussowitsch PetscCall(TSGetAdapt(ts, &ts->adapt)); 4089566063dSJacob Faibussowitsch PetscCall(TSAdaptSetDefaultType(ts->adapt, ts->default_adapt_type)); 409dbbe0bcdSBarry Smith PetscCall(TSAdaptSetFromOptions(ts->adapt, PetscOptionsObject)); 410a7bdc993SLisandro Dalcin 41168bece0bSHong Zhang /* TS trajectory must be set after TS, since it may use some TS options above */ 4124f122a70SLisandro Dalcin tflg = ts->trajectory ? PETSC_TRUE : PETSC_FALSE; 4139566063dSJacob Faibussowitsch PetscCall(PetscOptionsBool("-ts_save_trajectory", "Save the solution at each timestep", "TSSetSaveTrajectory", tflg, &tflg, NULL)); 4141baa6e33SBarry Smith if (tflg) PetscCall(TSSetSaveTrajectory(ts)); 415a05bf03eSHong Zhang 416dbbe0bcdSBarry Smith PetscCall(TSAdjointSetFromOptions(ts, PetscOptionsObject)); 417d763cef2SBarry Smith 418d763cef2SBarry Smith /* process any options handlers added with PetscObjectAddOptionsHandler() */ 419dbbe0bcdSBarry Smith PetscCall(PetscObjectProcessOptionsHandlers((PetscObject)ts, PetscOptionsObject)); 420d0609cedSBarry Smith PetscOptionsEnd(); 421d763cef2SBarry Smith 4221baa6e33SBarry Smith if (ts->trajectory) PetscCall(TSTrajectorySetFromOptions(ts->trajectory, ts)); 42368bece0bSHong Zhang 4241ef27442SStefano Zampini /* why do we have to do this here and not during TSSetUp? */ 4259566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &ts->snes)); 4261ef27442SStefano Zampini if (ts->problem_type == TS_LINEAR) { 4279566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompareAny((PetscObject)ts->snes, &flg, SNESKSPONLY, SNESKSPTRANSPOSEONLY, "")); 4289566063dSJacob Faibussowitsch if (!flg) PetscCall(SNESSetType(ts->snes, SNESKSPONLY)); 4291ef27442SStefano Zampini } 4309566063dSJacob Faibussowitsch PetscCall(SNESSetFromOptions(ts->snes)); 4313ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 432d763cef2SBarry Smith } 433d763cef2SBarry Smith 434d2daff3dSHong Zhang /*@ 435bcf0153eSBarry Smith TSGetTrajectory - Gets the trajectory from a `TS` if it exists 43678fbdcc8SBarry Smith 437c3339decSBarry Smith Collective 43878fbdcc8SBarry Smith 4392fe279fdSBarry Smith Input Parameter: 440bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 44178fbdcc8SBarry Smith 4422fe279fdSBarry Smith Output Parameter: 443bcf0153eSBarry Smith . tr - the `TSTrajectory` object, if it exists 44478fbdcc8SBarry Smith 44578fbdcc8SBarry Smith Level: advanced 44678fbdcc8SBarry Smith 447bcf0153eSBarry Smith Note: 448bcf0153eSBarry Smith This routine should be called after all `TS` options have been set 44978fbdcc8SBarry Smith 450b43aa488SJacob Faibussowitsch .seealso: [](ch_ts), `TS`, `TSTrajectory`, `TSAdjointSolve()`, `TSTrajectoryCreate()` 45178fbdcc8SBarry Smith @*/ 452d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTrajectory(TS ts, TSTrajectory *tr) 453d71ae5a4SJacob Faibussowitsch { 45478fbdcc8SBarry Smith PetscFunctionBegin; 45578fbdcc8SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 45678fbdcc8SBarry Smith *tr = ts->trajectory; 4573ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 45878fbdcc8SBarry Smith } 45978fbdcc8SBarry Smith 46078fbdcc8SBarry Smith /*@ 461bcf0153eSBarry Smith TSSetSaveTrajectory - Causes the `TS` to save its solutions as it iterates forward in time in a `TSTrajectory` object 462d2daff3dSHong Zhang 463c3339decSBarry Smith Collective 464d2daff3dSHong Zhang 465f899ff85SJose E. Roman Input Parameter: 466bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 467bc952696SBarry Smith 468bcf0153eSBarry Smith Options Database Keys: 46978fbdcc8SBarry Smith + -ts_save_trajectory - saves the trajectory to a file 47067b8a455SSatish Balay - -ts_trajectory_type type - set trajectory type 47178fbdcc8SBarry Smith 472d2daff3dSHong Zhang Level: intermediate 473d2daff3dSHong Zhang 474bcf0153eSBarry Smith Notes: 475bcf0153eSBarry Smith This routine should be called after all `TS` options have been set 476d2daff3dSHong Zhang 477bcf0153eSBarry Smith The `TSTRAJECTORYVISUALIZATION` files can be loaded into Python with $PETSC_DIR/lib/petsc/bin/PetscBinaryIOTrajectory.py and 478bcf0153eSBarry Smith MATLAB with $PETSC_DIR/share/petsc/matlab/PetscReadBinaryTrajectory.m 479bcf0153eSBarry Smith 4801cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSTrajectory`, `TSGetTrajectory()`, `TSAdjointSolve()` 481d2daff3dSHong Zhang @*/ 482d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetSaveTrajectory(TS ts) 483d71ae5a4SJacob Faibussowitsch { 484d2daff3dSHong Zhang PetscFunctionBegin; 485d2daff3dSHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 48663a3b9bcSJacob Faibussowitsch if (!ts->trajectory) PetscCall(TSTrajectoryCreate(PetscObjectComm((PetscObject)ts), &ts->trajectory)); 4873ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 488d2daff3dSHong Zhang } 489d2daff3dSHong Zhang 490a7a1495cSBarry Smith /*@ 491bcf0153eSBarry Smith TSResetTrajectory - Destroys and recreates the internal `TSTrajectory` object 4922d29f1f2SStefano Zampini 493c3339decSBarry Smith Collective 4942d29f1f2SStefano Zampini 4952fe279fdSBarry Smith Input Parameter: 496bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 4972d29f1f2SStefano Zampini 4982d29f1f2SStefano Zampini Level: intermediate 4992d29f1f2SStefano Zampini 5001cc06b55SBarry Smith .seealso: [](ch_ts), `TSTrajectory`, `TSGetTrajectory()`, `TSAdjointSolve()`, `TSRemoveTrajectory()` 5012d29f1f2SStefano Zampini @*/ 502d71ae5a4SJacob Faibussowitsch PetscErrorCode TSResetTrajectory(TS ts) 503d71ae5a4SJacob Faibussowitsch { 5042d29f1f2SStefano Zampini PetscFunctionBegin; 5052d29f1f2SStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5062d29f1f2SStefano Zampini if (ts->trajectory) { 5079566063dSJacob Faibussowitsch PetscCall(TSTrajectoryDestroy(&ts->trajectory)); 5089566063dSJacob Faibussowitsch PetscCall(TSTrajectoryCreate(PetscObjectComm((PetscObject)ts), &ts->trajectory)); 5092d29f1f2SStefano Zampini } 5103ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5112d29f1f2SStefano Zampini } 5122d29f1f2SStefano Zampini 5132d29f1f2SStefano Zampini /*@ 514195e9b02SBarry Smith TSRemoveTrajectory - Destroys and removes the internal `TSTrajectory` object from a `TS` 51567a3cfb0SHong Zhang 516c3339decSBarry Smith Collective 51767a3cfb0SHong Zhang 5182fe279fdSBarry Smith Input Parameter: 519bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 52067a3cfb0SHong Zhang 52167a3cfb0SHong Zhang Level: intermediate 52267a3cfb0SHong Zhang 5231cc06b55SBarry Smith .seealso: [](ch_ts), `TSTrajectory`, `TSResetTrajectory()`, `TSAdjointSolve()` 52467a3cfb0SHong Zhang @*/ 525d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRemoveTrajectory(TS ts) 526d71ae5a4SJacob Faibussowitsch { 52767a3cfb0SHong Zhang PetscFunctionBegin; 52867a3cfb0SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5291e66621cSBarry Smith if (ts->trajectory) PetscCall(TSTrajectoryDestroy(&ts->trajectory)); 5303ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 53167a3cfb0SHong Zhang } 53267a3cfb0SHong Zhang 53367a3cfb0SHong Zhang /*@ 534a7a1495cSBarry Smith TSComputeRHSJacobian - Computes the Jacobian matrix that has been 535bcf0153eSBarry Smith set with `TSSetRHSJacobian()`. 536a7a1495cSBarry Smith 537c3339decSBarry Smith Collective 538a7a1495cSBarry Smith 539a7a1495cSBarry Smith Input Parameters: 540bcf0153eSBarry Smith + ts - the `TS` context 541a7a1495cSBarry Smith . t - current timestep 5420910c330SBarry Smith - U - input vector 543a7a1495cSBarry Smith 544a7a1495cSBarry Smith Output Parameters: 545a7a1495cSBarry Smith + A - Jacobian matrix 5466b867d5aSJose E. Roman - B - optional preconditioning matrix 547a7a1495cSBarry Smith 548bcf0153eSBarry Smith Level: developer 549bcf0153eSBarry Smith 550bcf0153eSBarry Smith Note: 551a7a1495cSBarry Smith Most users should not need to explicitly call this routine, as it 552a7a1495cSBarry Smith is used internally within the nonlinear solvers. 553a7a1495cSBarry Smith 5541cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetRHSJacobian()`, `KSPSetOperators()` 555a7a1495cSBarry Smith @*/ 556d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeRHSJacobian(TS ts, PetscReal t, Vec U, Mat A, Mat B) 557d71ae5a4SJacob Faibussowitsch { 558270bf2e7SJed Brown PetscObjectState Ustate; 5596c1e1eecSBarry Smith PetscObjectId Uid; 56024989b8cSPeter Brune DM dm; 561942e3340SBarry Smith DMTS tsdm; 5628434afd1SBarry Smith TSRHSJacobianFn *rhsjacobianfunc; 56324989b8cSPeter Brune void *ctx; 5648434afd1SBarry Smith TSRHSFunctionFn *rhsfunction; 565a7a1495cSBarry Smith 566a7a1495cSBarry Smith PetscFunctionBegin; 5670700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5680910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 5690910c330SBarry Smith PetscCheckSameComm(ts, 1, U, 3); 5709566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 5719566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(dm, &tsdm)); 5729566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, NULL)); 5739566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, &rhsjacobianfunc, &ctx)); 5749566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &Ustate)); 5759566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &Uid)); 576971015bcSStefano Zampini 5773ba16761SJacob Faibussowitsch if (ts->rhsjacobian.time == t && (ts->problem_type == TS_LINEAR || (ts->rhsjacobian.Xid == Uid && ts->rhsjacobian.Xstate == Ustate)) && (rhsfunction != TSComputeRHSFunctionLinear)) PetscFunctionReturn(PETSC_SUCCESS); 578d90be118SSean Farley 57963a3b9bcSJacob 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); 58024989b8cSPeter Brune if (rhsjacobianfunc) { 581da023ba9SStefano Zampini PetscCall(PetscLogEventBegin(TS_JacobianEval, U, ts, A, B)); 582792fecdfSBarry Smith PetscCallBack("TS callback Jacobian", (*rhsjacobianfunc)(ts, t, U, A, B, ctx)); 583a6ab3590SBarry Smith ts->rhsjacs++; 584da023ba9SStefano Zampini PetscCall(PetscLogEventEnd(TS_JacobianEval, U, ts, A, B)); 585ef66eb69SBarry Smith } else { 5869566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(A)); 5879566063dSJacob Faibussowitsch if (B && A != B) PetscCall(MatZeroEntries(B)); 588ef66eb69SBarry Smith } 5890e4ef248SJed Brown ts->rhsjacobian.time = t; 590971015bcSStefano Zampini ts->rhsjacobian.shift = 0; 591971015bcSStefano Zampini ts->rhsjacobian.scale = 1.; 5929566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &ts->rhsjacobian.Xid)); 5939566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &ts->rhsjacobian.Xstate)); 5943ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 595a7a1495cSBarry Smith } 596a7a1495cSBarry Smith 597316643e7SJed Brown /*@ 598bcf0153eSBarry Smith TSComputeRHSFunction - Evaluates the right-hand-side function for a `TS` 599d763cef2SBarry Smith 600c3339decSBarry Smith Collective 601316643e7SJed Brown 602316643e7SJed Brown Input Parameters: 603bcf0153eSBarry Smith + ts - the `TS` context 604316643e7SJed Brown . t - current time 6050910c330SBarry Smith - U - state vector 606316643e7SJed Brown 607316643e7SJed Brown Output Parameter: 608dd8e379bSPierre Jolivet . y - right-hand side 609316643e7SJed Brown 610bcf0153eSBarry Smith Level: developer 611bcf0153eSBarry Smith 612316643e7SJed Brown Note: 613316643e7SJed Brown Most users should not need to explicitly call this routine, as it 614316643e7SJed Brown is used internally within the nonlinear solvers. 615316643e7SJed Brown 6161cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetRHSFunction()`, `TSComputeIFunction()` 617316643e7SJed Brown @*/ 618d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeRHSFunction(TS ts, PetscReal t, Vec U, Vec y) 619d71ae5a4SJacob Faibussowitsch { 6208434afd1SBarry Smith TSRHSFunctionFn *rhsfunction; 6218434afd1SBarry Smith TSIFunctionFn *ifunction; 62224989b8cSPeter Brune void *ctx; 62324989b8cSPeter Brune DM dm; 62424989b8cSPeter Brune 625d763cef2SBarry Smith PetscFunctionBegin; 6260700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 6270910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 6280700a824SBarry Smith PetscValidHeaderSpecific(y, VEC_CLASSID, 4); 6299566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 6309566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, &ctx)); 6319566063dSJacob Faibussowitsch PetscCall(DMTSGetIFunction(dm, &ifunction, NULL)); 632d763cef2SBarry Smith 6333c633725SBarry Smith PetscCheck(rhsfunction || ifunction, PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "Must call TSSetRHSFunction() and / or TSSetIFunction()"); 634d763cef2SBarry Smith 63524989b8cSPeter Brune if (rhsfunction) { 636da023ba9SStefano Zampini PetscCall(PetscLogEventBegin(TS_FunctionEval, U, ts, y, 0)); 6379566063dSJacob Faibussowitsch PetscCall(VecLockReadPush(U)); 638792fecdfSBarry Smith PetscCallBack("TS callback right-hand-side", (*rhsfunction)(ts, t, U, y, ctx)); 6399566063dSJacob Faibussowitsch PetscCall(VecLockReadPop(U)); 640a6ab3590SBarry Smith ts->rhsfuncs++; 641da023ba9SStefano Zampini PetscCall(PetscLogEventEnd(TS_FunctionEval, U, ts, y, 0)); 6421e66621cSBarry Smith } else PetscCall(VecZeroEntries(y)); 6433ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 644d763cef2SBarry Smith } 645d763cef2SBarry Smith 646ef20d060SBarry Smith /*@ 647ef20d060SBarry Smith TSComputeSolutionFunction - Evaluates the solution function. 648ef20d060SBarry Smith 649c3339decSBarry Smith Collective 650ef20d060SBarry Smith 651ef20d060SBarry Smith Input Parameters: 652bcf0153eSBarry Smith + ts - the `TS` context 653ef20d060SBarry Smith - t - current time 654ef20d060SBarry Smith 655ef20d060SBarry Smith Output Parameter: 6560910c330SBarry Smith . U - the solution 657ef20d060SBarry Smith 658ef20d060SBarry Smith Level: developer 659ef20d060SBarry Smith 6601cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetSolutionFunction()`, `TSSetRHSFunction()`, `TSComputeIFunction()` 661ef20d060SBarry Smith @*/ 662d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeSolutionFunction(TS ts, PetscReal t, Vec U) 663d71ae5a4SJacob Faibussowitsch { 6648434afd1SBarry Smith TSSolutionFn *solutionfunction; 665ef20d060SBarry Smith void *ctx; 666ef20d060SBarry Smith DM dm; 667ef20d060SBarry Smith 668ef20d060SBarry Smith PetscFunctionBegin; 669ef20d060SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 6700910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 6719566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 6729566063dSJacob Faibussowitsch PetscCall(DMTSGetSolutionFunction(dm, &solutionfunction, &ctx)); 673792fecdfSBarry Smith if (solutionfunction) PetscCallBack("TS callback solution", (*solutionfunction)(ts, t, U, ctx)); 6743ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 675ef20d060SBarry Smith } 6769b7cd975SBarry Smith /*@ 6779b7cd975SBarry Smith TSComputeForcingFunction - Evaluates the forcing function. 6789b7cd975SBarry Smith 679c3339decSBarry Smith Collective 6809b7cd975SBarry Smith 6819b7cd975SBarry Smith Input Parameters: 682bcf0153eSBarry Smith + ts - the `TS` context 6839b7cd975SBarry Smith - t - current time 6849b7cd975SBarry Smith 6859b7cd975SBarry Smith Output Parameter: 6869b7cd975SBarry Smith . U - the function value 6879b7cd975SBarry Smith 6889b7cd975SBarry Smith Level: developer 6899b7cd975SBarry Smith 6901cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetSolutionFunction()`, `TSSetRHSFunction()`, `TSComputeIFunction()` 6919b7cd975SBarry Smith @*/ 692d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeForcingFunction(TS ts, PetscReal t, Vec U) 693d71ae5a4SJacob Faibussowitsch { 6949b7cd975SBarry Smith void *ctx; 6959b7cd975SBarry Smith DM dm; 6968434afd1SBarry Smith TSForcingFn *forcing; 6979b7cd975SBarry Smith 6989b7cd975SBarry Smith PetscFunctionBegin; 6999b7cd975SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 7009b7cd975SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 7019566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 7029566063dSJacob Faibussowitsch PetscCall(DMTSGetForcingFunction(dm, &forcing, &ctx)); 7039b7cd975SBarry Smith 704792fecdfSBarry Smith if (forcing) PetscCallBack("TS callback forcing function", (*forcing)(ts, t, U, ctx)); 7053ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 7069b7cd975SBarry Smith } 707ef20d060SBarry Smith 708d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetRHSMats_Private(TS ts, Mat *Arhs, Mat *Brhs) 709d71ae5a4SJacob Faibussowitsch { 710214bc6a2SJed Brown Mat A, B; 7118434afd1SBarry Smith TSIJacobianFn *ijacobian; 712214bc6a2SJed Brown 713214bc6a2SJed Brown PetscFunctionBegin; 714c0cd0301SJed Brown if (Arhs) *Arhs = NULL; 715c0cd0301SJed Brown if (Brhs) *Brhs = NULL; 7169566063dSJacob Faibussowitsch PetscCall(TSGetIJacobian(ts, &A, &B, &ijacobian, NULL)); 717214bc6a2SJed Brown if (Arhs) { 718214bc6a2SJed Brown if (!ts->Arhs) { 71941a1d4d2SBarry Smith if (ijacobian) { 7209566063dSJacob Faibussowitsch PetscCall(MatDuplicate(A, MAT_DO_NOT_COPY_VALUES, &ts->Arhs)); 7219566063dSJacob Faibussowitsch PetscCall(TSSetMatStructure(ts, SAME_NONZERO_PATTERN)); 72241a1d4d2SBarry Smith } else { 72341a1d4d2SBarry Smith ts->Arhs = A; 7249566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)A)); 72541a1d4d2SBarry Smith } 7263565c898SBarry Smith } else { 7273565c898SBarry Smith PetscBool flg; 7289566063dSJacob Faibussowitsch PetscCall(SNESGetUseMatrixFree(ts->snes, NULL, &flg)); 7293565c898SBarry Smith /* Handle case where user provided only RHSJacobian and used -snes_mf_operator */ 7303565c898SBarry Smith if (flg && !ijacobian && ts->Arhs == ts->Brhs) { 7319566063dSJacob Faibussowitsch PetscCall(PetscObjectDereference((PetscObject)ts->Arhs)); 7323565c898SBarry Smith ts->Arhs = A; 7339566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)A)); 7343565c898SBarry Smith } 735214bc6a2SJed Brown } 736214bc6a2SJed Brown *Arhs = ts->Arhs; 737214bc6a2SJed Brown } 738214bc6a2SJed Brown if (Brhs) { 739214bc6a2SJed Brown if (!ts->Brhs) { 740bdb70873SJed Brown if (A != B) { 74141a1d4d2SBarry Smith if (ijacobian) { 7429566063dSJacob Faibussowitsch PetscCall(MatDuplicate(B, MAT_DO_NOT_COPY_VALUES, &ts->Brhs)); 743bdb70873SJed Brown } else { 74441a1d4d2SBarry Smith ts->Brhs = B; 7459566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)B)); 74641a1d4d2SBarry Smith } 74741a1d4d2SBarry Smith } else { 7489566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)ts->Arhs)); 74951699248SLisandro Dalcin ts->Brhs = ts->Arhs; 750bdb70873SJed Brown } 751214bc6a2SJed Brown } 752214bc6a2SJed Brown *Brhs = ts->Brhs; 753214bc6a2SJed Brown } 7543ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 755214bc6a2SJed Brown } 756214bc6a2SJed Brown 757316643e7SJed Brown /*@ 758195e9b02SBarry Smith TSComputeIFunction - Evaluates the DAE residual written in the implicit form F(t,U,Udot)=0 759316643e7SJed Brown 760c3339decSBarry Smith Collective 761316643e7SJed Brown 762316643e7SJed Brown Input Parameters: 763bcf0153eSBarry Smith + ts - the `TS` context 764316643e7SJed Brown . t - current time 7650910c330SBarry Smith . U - state vector 7660910c330SBarry Smith . Udot - time derivative of state vector 767bcf0153eSBarry Smith - imex - flag indicates if the method is `TSIMEX` so that the RHSFunction should be kept separate 768316643e7SJed Brown 769316643e7SJed Brown Output Parameter: 770dd8e379bSPierre Jolivet . Y - right-hand side 771316643e7SJed Brown 772bcf0153eSBarry Smith Level: developer 773bcf0153eSBarry Smith 774316643e7SJed Brown Note: 775316643e7SJed Brown Most users should not need to explicitly call this routine, as it 776316643e7SJed Brown is used internally within the nonlinear solvers. 777316643e7SJed Brown 77815229ffcSPierre Jolivet If the user did not write their equations in implicit form, this 779316643e7SJed Brown function recasts them in implicit form. 780316643e7SJed Brown 7811cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetIFunction()`, `TSComputeRHSFunction()` 782316643e7SJed Brown @*/ 783d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIFunction(TS ts, PetscReal t, Vec U, Vec Udot, Vec Y, PetscBool imex) 784d71ae5a4SJacob Faibussowitsch { 7858434afd1SBarry Smith TSIFunctionFn *ifunction; 7868434afd1SBarry Smith TSRHSFunctionFn *rhsfunction; 78724989b8cSPeter Brune void *ctx; 78824989b8cSPeter Brune DM dm; 789316643e7SJed Brown 790316643e7SJed Brown PetscFunctionBegin; 7910700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 7920910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 7930910c330SBarry Smith PetscValidHeaderSpecific(Udot, VEC_CLASSID, 4); 7940700a824SBarry Smith PetscValidHeaderSpecific(Y, VEC_CLASSID, 5); 795316643e7SJed Brown 7969566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 7979566063dSJacob Faibussowitsch PetscCall(DMTSGetIFunction(dm, &ifunction, &ctx)); 7989566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, NULL)); 79924989b8cSPeter Brune 8003c633725SBarry Smith PetscCheck(rhsfunction || ifunction, PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "Must call TSSetRHSFunction() and / or TSSetIFunction()"); 801d90be118SSean Farley 802da023ba9SStefano Zampini PetscCall(PetscLogEventBegin(TS_FunctionEval, U, ts, Udot, Y)); 80324989b8cSPeter Brune if (ifunction) { 804792fecdfSBarry Smith PetscCallBack("TS callback implicit function", (*ifunction)(ts, t, U, Udot, Y, ctx)); 805a6ab3590SBarry Smith ts->ifuncs++; 806214bc6a2SJed Brown } 807214bc6a2SJed Brown if (imex) { 8081e66621cSBarry Smith if (!ifunction) PetscCall(VecCopy(Udot, Y)); 80924989b8cSPeter Brune } else if (rhsfunction) { 81024989b8cSPeter Brune if (ifunction) { 811214bc6a2SJed Brown Vec Frhs; 8128af0501fSStefano Zampini 8138af0501fSStefano Zampini PetscCall(DMGetGlobalVector(dm, &Frhs)); 8149566063dSJacob Faibussowitsch PetscCall(TSComputeRHSFunction(ts, t, U, Frhs)); 8159566063dSJacob Faibussowitsch PetscCall(VecAXPY(Y, -1, Frhs)); 8168af0501fSStefano Zampini PetscCall(DMRestoreGlobalVector(dm, &Frhs)); 8172dd45cf8SJed Brown } else { 8189566063dSJacob Faibussowitsch PetscCall(TSComputeRHSFunction(ts, t, U, Y)); 8199566063dSJacob Faibussowitsch PetscCall(VecAYPX(Y, -1, Udot)); 820316643e7SJed Brown } 8214a6899ffSJed Brown } 822da023ba9SStefano Zampini PetscCall(PetscLogEventEnd(TS_FunctionEval, U, ts, Udot, Y)); 8233ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 824316643e7SJed Brown } 825316643e7SJed Brown 826cfa8a9a2SHong Zhang /* 827195e9b02SBarry Smith TSRecoverRHSJacobian - Recover the Jacobian matrix so that one can call `TSComputeRHSJacobian()` on it. 828cfa8a9a2SHong Zhang 829cfa8a9a2SHong Zhang Note: 830195e9b02SBarry Smith This routine is needed when one switches from `TSComputeIJacobian()` to `TSComputeRHSJacobian()` because the Jacobian matrix may be shifted or scaled in `TSComputeIJacobian()`. 831cfa8a9a2SHong Zhang 832cfa8a9a2SHong Zhang */ 833d71ae5a4SJacob Faibussowitsch static PetscErrorCode TSRecoverRHSJacobian(TS ts, Mat A, Mat B) 834d71ae5a4SJacob Faibussowitsch { 835cfa8a9a2SHong Zhang PetscFunctionBegin; 836cfa8a9a2SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 8373c633725SBarry Smith PetscCheck(A == ts->Arhs, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Invalid Amat"); 8383c633725SBarry Smith PetscCheck(B == ts->Brhs, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Invalid Bmat"); 839cfa8a9a2SHong Zhang 8401baa6e33SBarry Smith if (ts->rhsjacobian.shift) PetscCall(MatShift(A, -ts->rhsjacobian.shift)); 84148a46eb9SPierre Jolivet if (ts->rhsjacobian.scale == -1.) PetscCall(MatScale(A, -1)); 842cfa8a9a2SHong Zhang if (B && B == ts->Brhs && A != B) { 8431baa6e33SBarry Smith if (ts->rhsjacobian.shift) PetscCall(MatShift(B, -ts->rhsjacobian.shift)); 8441e66621cSBarry Smith if (ts->rhsjacobian.scale == -1.) PetscCall(MatScale(B, -1)); 845cfa8a9a2SHong Zhang } 846cfa8a9a2SHong Zhang ts->rhsjacobian.shift = 0; 847cfa8a9a2SHong Zhang ts->rhsjacobian.scale = 1.; 8483ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 849cfa8a9a2SHong Zhang } 850cfa8a9a2SHong Zhang 851316643e7SJed Brown /*@ 852316643e7SJed Brown TSComputeIJacobian - Evaluates the Jacobian of the DAE 853316643e7SJed Brown 854c3339decSBarry Smith Collective 855316643e7SJed Brown 856316643e7SJed Brown Input Parameters: 857bcf0153eSBarry Smith + ts - the `TS` context 858316643e7SJed Brown . t - current timestep 8590910c330SBarry Smith . U - state vector 8600910c330SBarry Smith . Udot - time derivative of state vector 861214bc6a2SJed Brown . shift - shift to apply, see note below 862bcf0153eSBarry Smith - imex - flag indicates if the method is `TSIMEX` so that the RHSJacobian should be kept separate 863316643e7SJed Brown 864316643e7SJed Brown Output Parameters: 865316643e7SJed Brown + A - Jacobian matrix 866195e9b02SBarry Smith - B - matrix from which the preconditioner is constructed; often the same as `A` 867316643e7SJed Brown 868bcf0153eSBarry Smith Level: developer 869bcf0153eSBarry Smith 870316643e7SJed Brown Notes: 8710910c330SBarry Smith If F(t,U,Udot)=0 is the DAE, the required Jacobian is 872195e9b02SBarry Smith .vb 8730910c330SBarry Smith dF/dU + shift*dF/dUdot 874195e9b02SBarry Smith .ve 875316643e7SJed Brown Most users should not need to explicitly call this routine, as it 876316643e7SJed Brown is used internally within the nonlinear solvers. 877316643e7SJed Brown 8781cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetIJacobian()` 87963495f91SJed Brown @*/ 880d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIJacobian(TS ts, PetscReal t, Vec U, Vec Udot, PetscReal shift, Mat A, Mat B, PetscBool imex) 881d71ae5a4SJacob Faibussowitsch { 8828434afd1SBarry Smith TSIJacobianFn *ijacobian; 8838434afd1SBarry Smith TSRHSJacobianFn *rhsjacobian; 88424989b8cSPeter Brune DM dm; 88524989b8cSPeter Brune void *ctx; 886316643e7SJed Brown 887316643e7SJed Brown PetscFunctionBegin; 8880700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 8890910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 8900910c330SBarry Smith PetscValidHeaderSpecific(Udot, VEC_CLASSID, 4); 89194ab13aaSBarry Smith PetscValidHeaderSpecific(A, MAT_CLASSID, 6); 89294ab13aaSBarry Smith PetscValidHeaderSpecific(B, MAT_CLASSID, 7); 89324989b8cSPeter Brune 8949566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 8959566063dSJacob Faibussowitsch PetscCall(DMTSGetIJacobian(dm, &ijacobian, &ctx)); 8969566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, &rhsjacobian, NULL)); 89724989b8cSPeter Brune 8983c633725SBarry Smith PetscCheck(rhsjacobian || ijacobian, PetscObjectComm((PetscObject)ts), PETSC_ERR_USER, "Must call TSSetRHSJacobian() and / or TSSetIJacobian()"); 899316643e7SJed Brown 900da023ba9SStefano Zampini PetscCall(PetscLogEventBegin(TS_JacobianEval, U, ts, A, B)); 90124989b8cSPeter Brune if (ijacobian) { 902792fecdfSBarry Smith PetscCallBack("TS callback implicit Jacobian", (*ijacobian)(ts, t, U, Udot, shift, A, B, ctx)); 903a6ab3590SBarry Smith ts->ijacs++; 9044a6899ffSJed Brown } 905214bc6a2SJed Brown if (imex) { 906b5abc632SBarry Smith if (!ijacobian) { /* system was written as Udot = G(t,U) */ 9074c26be97Sstefano_zampini PetscBool assembled; 908971015bcSStefano Zampini if (rhsjacobian) { 909971015bcSStefano Zampini Mat Arhs = NULL; 9109566063dSJacob Faibussowitsch PetscCall(TSGetRHSMats_Private(ts, &Arhs, NULL)); 911971015bcSStefano Zampini if (A == Arhs) { 9123c633725SBarry 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 */ 913971015bcSStefano Zampini ts->rhsjacobian.time = PETSC_MIN_REAL; 914971015bcSStefano Zampini } 915971015bcSStefano Zampini } 9169566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(A)); 9179566063dSJacob Faibussowitsch PetscCall(MatAssembled(A, &assembled)); 9184c26be97Sstefano_zampini if (!assembled) { 9199566063dSJacob Faibussowitsch PetscCall(MatAssemblyBegin(A, MAT_FINAL_ASSEMBLY)); 9209566063dSJacob Faibussowitsch PetscCall(MatAssemblyEnd(A, MAT_FINAL_ASSEMBLY)); 9214c26be97Sstefano_zampini } 9229566063dSJacob Faibussowitsch PetscCall(MatShift(A, shift)); 92394ab13aaSBarry Smith if (A != B) { 9249566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(B)); 9259566063dSJacob Faibussowitsch PetscCall(MatAssembled(B, &assembled)); 9264c26be97Sstefano_zampini if (!assembled) { 9279566063dSJacob Faibussowitsch PetscCall(MatAssemblyBegin(B, MAT_FINAL_ASSEMBLY)); 9289566063dSJacob Faibussowitsch PetscCall(MatAssemblyEnd(B, MAT_FINAL_ASSEMBLY)); 9294c26be97Sstefano_zampini } 9309566063dSJacob Faibussowitsch PetscCall(MatShift(B, shift)); 931214bc6a2SJed Brown } 932214bc6a2SJed Brown } 933214bc6a2SJed Brown } else { 934e1244c69SJed Brown Mat Arhs = NULL, Brhs = NULL; 9351e66621cSBarry Smith 9361e66621cSBarry Smith /* RHSJacobian needs to be converted to part of IJacobian if exists */ 9371e66621cSBarry Smith if (rhsjacobian) PetscCall(TSGetRHSMats_Private(ts, &Arhs, &Brhs)); 938e8b1e424SHong Zhang if (Arhs == A) { /* No IJacobian matrix, so we only have the RHS matrix */ 939e8b1e424SHong Zhang PetscObjectState Ustate; 940e8b1e424SHong Zhang PetscObjectId Uid; 9418434afd1SBarry Smith TSRHSFunctionFn *rhsfunction; 942e8b1e424SHong Zhang 9439566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, NULL)); 9449566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &Ustate)); 9459566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &Uid)); 9469371c9d4SSatish Balay if ((rhsjacobian == TSComputeRHSJacobianConstant || (ts->rhsjacobian.time == t && (ts->problem_type == TS_LINEAR || (ts->rhsjacobian.Xid == Uid && ts->rhsjacobian.Xstate == Ustate)) && rhsfunction != TSComputeRHSFunctionLinear)) && 9479371c9d4SSatish Balay ts->rhsjacobian.scale == -1.) { /* No need to recompute RHSJacobian */ 9489566063dSJacob Faibussowitsch PetscCall(MatShift(A, shift - ts->rhsjacobian.shift)); /* revert the old shift and add the new shift with a single call to MatShift */ 9491e66621cSBarry Smith if (A != B) PetscCall(MatShift(B, shift - ts->rhsjacobian.shift)); 950e8b1e424SHong Zhang } else { 9513565c898SBarry Smith PetscBool flg; 952e8b1e424SHong Zhang 953e8b1e424SHong Zhang if (ts->rhsjacobian.reuse) { /* Undo the damage */ 954e8b1e424SHong Zhang /* MatScale has a short path for this case. 955e8b1e424SHong Zhang However, this code path is taken the first time TSComputeRHSJacobian is called 956e8b1e424SHong Zhang and the matrices have not been assembled yet */ 9579566063dSJacob Faibussowitsch PetscCall(TSRecoverRHSJacobian(ts, A, B)); 958e8b1e424SHong Zhang } 9599566063dSJacob Faibussowitsch PetscCall(TSComputeRHSJacobian(ts, t, U, A, B)); 9609566063dSJacob Faibussowitsch PetscCall(SNESGetUseMatrixFree(ts->snes, NULL, &flg)); 9613565c898SBarry Smith /* since -snes_mf_operator uses the full SNES function it does not need to be shifted or scaled here */ 9623565c898SBarry Smith if (!flg) { 9639566063dSJacob Faibussowitsch PetscCall(MatScale(A, -1)); 9649566063dSJacob Faibussowitsch PetscCall(MatShift(A, shift)); 9653565c898SBarry Smith } 96694ab13aaSBarry Smith if (A != B) { 9679566063dSJacob Faibussowitsch PetscCall(MatScale(B, -1)); 9689566063dSJacob Faibussowitsch PetscCall(MatShift(B, shift)); 969316643e7SJed Brown } 970e8b1e424SHong Zhang } 971e8b1e424SHong Zhang ts->rhsjacobian.scale = -1; 972e8b1e424SHong Zhang ts->rhsjacobian.shift = shift; 973d60b7d5cSBarry Smith } else if (Arhs) { /* Both IJacobian and RHSJacobian */ 974e1244c69SJed Brown if (!ijacobian) { /* No IJacobian provided, but we have a separate RHS matrix */ 9759566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(A)); 9769566063dSJacob Faibussowitsch PetscCall(MatShift(A, shift)); 97794ab13aaSBarry Smith if (A != B) { 9789566063dSJacob Faibussowitsch PetscCall(MatZeroEntries(B)); 9799566063dSJacob Faibussowitsch PetscCall(MatShift(B, shift)); 980214bc6a2SJed Brown } 981316643e7SJed Brown } 9829566063dSJacob Faibussowitsch PetscCall(TSComputeRHSJacobian(ts, t, U, Arhs, Brhs)); 9839566063dSJacob Faibussowitsch PetscCall(MatAXPY(A, -1, Arhs, ts->axpy_pattern)); 9841e66621cSBarry Smith if (A != B) PetscCall(MatAXPY(B, -1, Brhs, ts->axpy_pattern)); 985316643e7SJed Brown } 986316643e7SJed Brown } 987da023ba9SStefano Zampini PetscCall(PetscLogEventEnd(TS_JacobianEval, U, ts, A, B)); 9883ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 989316643e7SJed Brown } 990316643e7SJed Brown 991d763cef2SBarry Smith /*@C 992d763cef2SBarry Smith TSSetRHSFunction - Sets the routine for evaluating the function, 993b5abc632SBarry Smith where U_t = G(t,u). 994d763cef2SBarry Smith 995c3339decSBarry Smith Logically Collective 996d763cef2SBarry Smith 997d763cef2SBarry Smith Input Parameters: 998bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 999dd8e379bSPierre Jolivet . r - vector to put the computed right-hand side (or `NULL` to have it created) 1000d763cef2SBarry Smith . f - routine for evaluating the right-hand-side function 1001195e9b02SBarry Smith - ctx - [optional] user-defined context for private data for the function evaluation routine (may be `NULL`) 1002d763cef2SBarry Smith 1003d763cef2SBarry Smith Level: beginner 1004d763cef2SBarry Smith 1005bcf0153eSBarry Smith Note: 1006bcf0153eSBarry Smith You must call this function or `TSSetIFunction()` to define your ODE. You cannot use this function when solving a DAE. 10072bbac0d3SBarry Smith 10088434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSRHSFunctionFn`, `TSSetRHSJacobian()`, `TSSetIJacobian()`, `TSSetIFunction()` 1009d763cef2SBarry Smith @*/ 10108434afd1SBarry Smith PetscErrorCode TSSetRHSFunction(TS ts, Vec r, TSRHSFunctionFn *f, void *ctx) 1011d71ae5a4SJacob Faibussowitsch { 1012089b2837SJed Brown SNES snes; 10130298fd71SBarry Smith Vec ralloc = NULL; 101424989b8cSPeter Brune DM dm; 1015d763cef2SBarry Smith 1016089b2837SJed Brown PetscFunctionBegin; 10170700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1018ca94891dSJed Brown if (r) PetscValidHeaderSpecific(r, VEC_CLASSID, 2); 101924989b8cSPeter Brune 10209566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 10219566063dSJacob Faibussowitsch PetscCall(DMTSSetRHSFunction(dm, f, ctx)); 10229566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 1023e856ceecSJed Brown if (!r && !ts->dm && ts->vec_sol) { 10249566063dSJacob Faibussowitsch PetscCall(VecDuplicate(ts->vec_sol, &ralloc)); 1025e856ceecSJed Brown r = ralloc; 1026e856ceecSJed Brown } 10279566063dSJacob Faibussowitsch PetscCall(SNESSetFunction(snes, r, SNESTSFormFunction, ts)); 10289566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ralloc)); 10293ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1030d763cef2SBarry Smith } 1031d763cef2SBarry Smith 1032ef20d060SBarry Smith /*@C 1033abd5a294SJed Brown TSSetSolutionFunction - Provide a function that computes the solution of the ODE or DAE 1034ef20d060SBarry Smith 1035c3339decSBarry Smith Logically Collective 1036ef20d060SBarry Smith 1037ef20d060SBarry Smith Input Parameters: 1038bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1039ef20d060SBarry Smith . f - routine for evaluating the solution 1040ef20d060SBarry Smith - ctx - [optional] user-defined context for private data for the 1041195e9b02SBarry Smith function evaluation routine (may be `NULL`) 1042ef20d060SBarry Smith 1043bcf0153eSBarry Smith Options Database Keys: 1044bcf0153eSBarry Smith + -ts_monitor_lg_error - create a graphical monitor of error history, requires user to have provided `TSSetSolutionFunction()` 1045bcf0153eSBarry Smith - -ts_monitor_draw_error - Monitor error graphically, requires user to have provided `TSSetSolutionFunction()` 1046bcf0153eSBarry Smith 1047bcf0153eSBarry Smith Level: intermediate 10480ed3bfb6SBarry Smith 1049abd5a294SJed Brown Notes: 1050abd5a294SJed Brown This routine is used for testing accuracy of time integration schemes when you already know the solution. 1051abd5a294SJed Brown If analytic solutions are not known for your system, consider using the Method of Manufactured Solutions to 1052abd5a294SJed Brown create closed-form solutions with non-physical forcing terms. 1053abd5a294SJed Brown 1054bcf0153eSBarry Smith For low-dimensional problems solved in serial, such as small discrete systems, `TSMonitorLGError()` can be used to monitor the error history. 1055abd5a294SJed Brown 10568434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSSolutionFn`, `TSSetRHSJacobian()`, `TSSetIJacobian()`, `TSComputeSolutionFunction()`, `TSSetForcingFunction()`, `TSSetSolution()`, `TSGetSolution()`, `TSMonitorLGError()`, `TSMonitorDrawError()` 1057ef20d060SBarry Smith @*/ 10588434afd1SBarry Smith PetscErrorCode TSSetSolutionFunction(TS ts, TSSolutionFn *f, void *ctx) 1059d71ae5a4SJacob Faibussowitsch { 1060ef20d060SBarry Smith DM dm; 1061ef20d060SBarry Smith 1062ef20d060SBarry Smith PetscFunctionBegin; 1063ef20d060SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 10649566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 10659566063dSJacob Faibussowitsch PetscCall(DMTSSetSolutionFunction(dm, f, ctx)); 10663ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1067ef20d060SBarry Smith } 1068ef20d060SBarry Smith 10699b7cd975SBarry Smith /*@C 10709b7cd975SBarry Smith TSSetForcingFunction - Provide a function that computes a forcing term for a ODE or PDE 10719b7cd975SBarry Smith 1072c3339decSBarry Smith Logically Collective 10739b7cd975SBarry Smith 10749b7cd975SBarry Smith Input Parameters: 1075bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1076e162b725SBarry Smith . func - routine for evaluating the forcing function 107714d0ab18SJacob Faibussowitsch - ctx - [optional] user-defined context for private data for the function evaluation routine 107814d0ab18SJacob Faibussowitsch (may be `NULL`) 10799b7cd975SBarry Smith 1080bcf0153eSBarry Smith Level: intermediate 1081bcf0153eSBarry Smith 10829b7cd975SBarry Smith Notes: 10839b7cd975SBarry Smith This routine is useful for testing accuracy of time integration schemes when using the Method of Manufactured Solutions to 1084e162b725SBarry 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 1085e162b725SBarry Smith definition of the problem you are solving and hence possibly introducing bugs. 1086e162b725SBarry Smith 10878847d985SBarry Smith This replaces the ODE F(u,u_t,t) = 0 the `TS` is solving with F(u,u_t,t) - func(t) = 0 1088e162b725SBarry Smith 1089e162b725SBarry 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 1090e162b725SBarry Smith parameters can be passed in the ctx variable. 10919b7cd975SBarry Smith 1092bcf0153eSBarry Smith For low-dimensional problems solved in serial, such as small discrete systems, `TSMonitorLGError()` can be used to monitor the error history. 10939b7cd975SBarry Smith 10948434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSForcingFn`, `TSSetRHSJacobian()`, `TSSetIJacobian()`, 109514d0ab18SJacob Faibussowitsch `TSComputeSolutionFunction()`, `TSSetSolutionFunction()` 10969b7cd975SBarry Smith @*/ 10978434afd1SBarry Smith PetscErrorCode TSSetForcingFunction(TS ts, TSForcingFn *func, void *ctx) 1098d71ae5a4SJacob Faibussowitsch { 10999b7cd975SBarry Smith DM dm; 11009b7cd975SBarry Smith 11019b7cd975SBarry Smith PetscFunctionBegin; 11029b7cd975SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 11039566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 11049566063dSJacob Faibussowitsch PetscCall(DMTSSetForcingFunction(dm, func, ctx)); 11053ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 11069b7cd975SBarry Smith } 11079b7cd975SBarry Smith 1108d763cef2SBarry Smith /*@C 1109f7ab8db6SBarry Smith TSSetRHSJacobian - Sets the function to compute the Jacobian of G, 1110b5abc632SBarry Smith where U_t = G(U,t), as well as the location to store the matrix. 1111d763cef2SBarry Smith 1112c3339decSBarry Smith Logically Collective 1113d763cef2SBarry Smith 1114d763cef2SBarry Smith Input Parameters: 1115bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1116195e9b02SBarry Smith . Amat - (approximate) location to store Jacobian matrix entries computed by `f` 1117195e9b02SBarry Smith . Pmat - matrix from which preconditioner is to be constructed (usually the same as `Amat`) 1118d763cef2SBarry Smith . f - the Jacobian evaluation routine 1119195e9b02SBarry Smith - ctx - [optional] user-defined context for private data for the Jacobian evaluation routine (may be `NULL`) 1120d763cef2SBarry Smith 1121bcf0153eSBarry Smith Level: beginner 1122bcf0153eSBarry Smith 11236cd88445SBarry Smith Notes: 11246cd88445SBarry Smith You must set all the diagonal entries of the matrices, if they are zero you must still set them with a zero value 11256cd88445SBarry Smith 112614d0ab18SJacob Faibussowitsch The `TS` solver may modify the nonzero structure and the entries of the matrices `Amat` and `Pmat` between the calls to `f()` 1127ca5f011dSBarry Smith You should not assume the values are the same in the next call to f() as you set them in the previous call. 1128d763cef2SBarry Smith 11298434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSRHSJacobianFn`, `SNESComputeJacobianDefaultColor()`, 11308434afd1SBarry Smith `TSSetRHSFunction()`, `TSRHSJacobianSetReuse()`, `TSSetIJacobian()`, `TSRHSFunctionFn`, `TSIFunctionFn` 1131d763cef2SBarry Smith @*/ 11328434afd1SBarry Smith PetscErrorCode TSSetRHSJacobian(TS ts, Mat Amat, Mat Pmat, TSRHSJacobianFn *f, void *ctx) 1133d71ae5a4SJacob Faibussowitsch { 1134089b2837SJed Brown SNES snes; 113524989b8cSPeter Brune DM dm; 11368434afd1SBarry Smith TSIJacobianFn *ijacobian; 1137277b19d0SLisandro Dalcin 1138d763cef2SBarry Smith PetscFunctionBegin; 11390700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1140e5d3d808SBarry Smith if (Amat) PetscValidHeaderSpecific(Amat, MAT_CLASSID, 2); 1141e5d3d808SBarry Smith if (Pmat) PetscValidHeaderSpecific(Pmat, MAT_CLASSID, 3); 1142e5d3d808SBarry Smith if (Amat) PetscCheckSameComm(ts, 1, Amat, 2); 1143e5d3d808SBarry Smith if (Pmat) PetscCheckSameComm(ts, 1, Pmat, 3); 1144d763cef2SBarry Smith 11459566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 11469566063dSJacob Faibussowitsch PetscCall(DMTSSetRHSJacobian(dm, f, ctx)); 11479566063dSJacob Faibussowitsch PetscCall(DMTSGetIJacobian(dm, &ijacobian, NULL)); 11489566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 11491e66621cSBarry Smith if (!ijacobian) PetscCall(SNESSetJacobian(snes, Amat, Pmat, SNESTSFormJacobian, ts)); 1150e5d3d808SBarry Smith if (Amat) { 11519566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)Amat)); 11529566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Arhs)); 1153e5d3d808SBarry Smith ts->Arhs = Amat; 11540e4ef248SJed Brown } 1155e5d3d808SBarry Smith if (Pmat) { 11569566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)Pmat)); 11579566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Brhs)); 1158e5d3d808SBarry Smith ts->Brhs = Pmat; 11590e4ef248SJed Brown } 11603ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1161d763cef2SBarry Smith } 1162d763cef2SBarry Smith 1163316643e7SJed Brown /*@C 1164b5abc632SBarry Smith TSSetIFunction - Set the function to compute F(t,U,U_t) where F() = 0 is the DAE to be solved. 1165316643e7SJed Brown 1166c3339decSBarry Smith Logically Collective 1167316643e7SJed Brown 1168316643e7SJed Brown Input Parameters: 1169bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1170195e9b02SBarry Smith . r - vector to hold the residual (or `NULL` to have it created internally) 1171316643e7SJed Brown . f - the function evaluation routine 1172195e9b02SBarry Smith - ctx - user-defined context for private data for the function evaluation routine (may be `NULL`) 1173316643e7SJed Brown 1174316643e7SJed Brown Level: beginner 1175316643e7SJed Brown 1176bcf0153eSBarry Smith Note: 1177bcf0153eSBarry Smith The user MUST call either this routine or `TSSetRHSFunction()` to define the ODE. When solving DAEs you must use this function. 1178bcf0153eSBarry Smith 11798434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSIFunctionFn`, `TSSetRHSJacobian()`, `TSSetRHSFunction()`, 118014d0ab18SJacob Faibussowitsch `TSSetIJacobian()` 1181316643e7SJed Brown @*/ 11828434afd1SBarry Smith PetscErrorCode TSSetIFunction(TS ts, Vec r, TSIFunctionFn *f, void *ctx) 1183d71ae5a4SJacob Faibussowitsch { 1184089b2837SJed Brown SNES snes; 118551699248SLisandro Dalcin Vec ralloc = NULL; 118624989b8cSPeter Brune DM dm; 1187316643e7SJed Brown 1188316643e7SJed Brown PetscFunctionBegin; 11890700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 119051699248SLisandro Dalcin if (r) PetscValidHeaderSpecific(r, VEC_CLASSID, 2); 119124989b8cSPeter Brune 11929566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 11939566063dSJacob Faibussowitsch PetscCall(DMTSSetIFunction(dm, f, ctx)); 119424989b8cSPeter Brune 11959566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 119651699248SLisandro Dalcin if (!r && !ts->dm && ts->vec_sol) { 11979566063dSJacob Faibussowitsch PetscCall(VecDuplicate(ts->vec_sol, &ralloc)); 119851699248SLisandro Dalcin r = ralloc; 1199e856ceecSJed Brown } 12009566063dSJacob Faibussowitsch PetscCall(SNESSetFunction(snes, r, SNESTSFormFunction, ts)); 12019566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ralloc)); 12023ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1203089b2837SJed Brown } 1204089b2837SJed Brown 1205089b2837SJed Brown /*@C 1206a5b23f4aSJose E. Roman TSGetIFunction - Returns the vector where the implicit residual is stored and the function/context to compute it. 1207089b2837SJed Brown 1208089b2837SJed Brown Not Collective 1209089b2837SJed Brown 1210089b2837SJed Brown Input Parameter: 1211bcf0153eSBarry Smith . ts - the `TS` context 1212089b2837SJed Brown 1213d8d19677SJose E. Roman Output Parameters: 1214195e9b02SBarry Smith + r - vector to hold residual (or `NULL`) 1215195e9b02SBarry Smith . func - the function to compute residual (or `NULL`) 1216195e9b02SBarry Smith - ctx - the function context (or `NULL`) 1217089b2837SJed Brown 1218089b2837SJed Brown Level: advanced 1219089b2837SJed Brown 12201cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetIFunction()`, `SNESGetFunction()` 1221089b2837SJed Brown @*/ 12228434afd1SBarry Smith PetscErrorCode TSGetIFunction(TS ts, Vec *r, TSIFunctionFn **func, void **ctx) 1223d71ae5a4SJacob Faibussowitsch { 1224089b2837SJed Brown SNES snes; 122524989b8cSPeter Brune DM dm; 1226089b2837SJed Brown 1227089b2837SJed Brown PetscFunctionBegin; 1228089b2837SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 12299566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 12309566063dSJacob Faibussowitsch PetscCall(SNESGetFunction(snes, r, NULL, NULL)); 12319566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 12329566063dSJacob Faibussowitsch PetscCall(DMTSGetIFunction(dm, func, ctx)); 12333ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1234089b2837SJed Brown } 1235089b2837SJed Brown 1236089b2837SJed Brown /*@C 1237dd8e379bSPierre Jolivet TSGetRHSFunction - Returns the vector where the right-hand side is stored and the function/context to compute it. 1238089b2837SJed Brown 1239089b2837SJed Brown Not Collective 1240089b2837SJed Brown 1241089b2837SJed Brown Input Parameter: 1242bcf0153eSBarry Smith . ts - the `TS` context 1243089b2837SJed Brown 1244d8d19677SJose E. Roman Output Parameters: 1245dd8e379bSPierre Jolivet + r - vector to hold computed right-hand side (or `NULL`) 1246dd8e379bSPierre Jolivet . func - the function to compute right-hand side (or `NULL`) 1247195e9b02SBarry Smith - ctx - the function context (or `NULL`) 1248089b2837SJed Brown 1249089b2837SJed Brown Level: advanced 1250089b2837SJed Brown 12511cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetRHSFunction()`, `SNESGetFunction()` 1252089b2837SJed Brown @*/ 12538434afd1SBarry Smith PetscErrorCode TSGetRHSFunction(TS ts, Vec *r, TSRHSFunctionFn **func, void **ctx) 1254d71ae5a4SJacob Faibussowitsch { 1255089b2837SJed Brown SNES snes; 125624989b8cSPeter Brune DM dm; 1257089b2837SJed Brown 1258089b2837SJed Brown PetscFunctionBegin; 1259089b2837SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 12609566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 12619566063dSJacob Faibussowitsch PetscCall(SNESGetFunction(snes, r, NULL, NULL)); 12629566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 12639566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, func, ctx)); 12643ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1265316643e7SJed Brown } 1266316643e7SJed Brown 1267316643e7SJed Brown /*@C 1268a4f0a591SBarry Smith TSSetIJacobian - Set the function to compute the matrix dF/dU + a*dF/dU_t where F(t,U,U_t) is the function 1269bcf0153eSBarry Smith provided with `TSSetIFunction()`. 1270316643e7SJed Brown 1271c3339decSBarry Smith Logically Collective 1272316643e7SJed Brown 1273316643e7SJed Brown Input Parameters: 1274bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1275aaa8cc7dSPierre Jolivet . Amat - (approximate) matrix to store Jacobian entries computed by `f` 1276195e9b02SBarry Smith . Pmat - matrix used to compute preconditioner (usually the same as `Amat`) 1277316643e7SJed Brown . f - the Jacobian evaluation routine 1278195e9b02SBarry Smith - ctx - user-defined context for private data for the Jacobian evaluation routine (may be `NULL`) 1279316643e7SJed Brown 1280bcf0153eSBarry Smith Level: beginner 1281316643e7SJed Brown 1282bcf0153eSBarry Smith Notes: 1283195e9b02SBarry Smith The matrices `Amat` and `Pmat` are exactly the matrices that are used by `SNES` for the nonlinear solve. 1284bcf0153eSBarry Smith 1285bcf0153eSBarry Smith If you know the operator Amat has a null space you can use `MatSetNullSpace()` and `MatSetTransposeNullSpace()` to supply the null 1286195e9b02SBarry Smith space to `Amat` and the `KSP` solvers will automatically use that null space as needed during the solution process. 1287895c21f2SBarry Smith 1288a4f0a591SBarry Smith The matrix dF/dU + a*dF/dU_t you provide turns out to be 1289b5abc632SBarry Smith the Jacobian of F(t,U,W+a*U) where F(t,U,U_t) = 0 is the DAE to be solved. 1290a4f0a591SBarry Smith The time integrator internally approximates U_t by W+a*U where the positive "shift" 1291a4f0a591SBarry Smith a and vector W depend on the integration method, step size, and past states. For example with 1292a4f0a591SBarry Smith the backward Euler method a = 1/dt and W = -a*U(previous timestep) so 1293a4f0a591SBarry Smith W + a*U = a*(U - U(previous timestep)) = (U - U(previous timestep))/dt 1294a4f0a591SBarry Smith 12956cd88445SBarry Smith You must set all the diagonal entries of the matrices, if they are zero you must still set them with a zero value 12966cd88445SBarry Smith 1297195e9b02SBarry Smith The TS solver may modify the nonzero structure and the entries of the matrices `Amat` and `Pmat` between the calls to `f` 1298195e9b02SBarry Smith You should not assume the values are the same in the next call to `f` as you set them in the previous call. 1299ca5f011dSBarry Smith 1300bc7fdbb5SPierre Jolivet In case `TSSetRHSJacobian()` is also used in conjunction with a fully-implicit solver, 1301d469ad21SStefano Zampini multilevel linear solvers, e.g. `PCMG`, will likely not work due to the way `TS` handles rhs matrices. 1302d469ad21SStefano Zampini 13038434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSIJacobianFn`, `TSSetIFunction()`, `TSSetRHSJacobian()`, 130414d0ab18SJacob Faibussowitsch `SNESComputeJacobianDefaultColor()`, `SNESComputeJacobianDefault()`, `TSSetRHSFunction()` 1305316643e7SJed Brown @*/ 13068434afd1SBarry Smith PetscErrorCode TSSetIJacobian(TS ts, Mat Amat, Mat Pmat, TSIJacobianFn *f, void *ctx) 1307d71ae5a4SJacob Faibussowitsch { 1308089b2837SJed Brown SNES snes; 130924989b8cSPeter Brune DM dm; 1310316643e7SJed Brown 1311316643e7SJed Brown PetscFunctionBegin; 13120700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1313e5d3d808SBarry Smith if (Amat) PetscValidHeaderSpecific(Amat, MAT_CLASSID, 2); 1314e5d3d808SBarry Smith if (Pmat) PetscValidHeaderSpecific(Pmat, MAT_CLASSID, 3); 1315e5d3d808SBarry Smith if (Amat) PetscCheckSameComm(ts, 1, Amat, 2); 1316e5d3d808SBarry Smith if (Pmat) PetscCheckSameComm(ts, 1, Pmat, 3); 131724989b8cSPeter Brune 13189566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 13199566063dSJacob Faibussowitsch PetscCall(DMTSSetIJacobian(dm, f, ctx)); 132024989b8cSPeter Brune 13219566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 13229566063dSJacob Faibussowitsch PetscCall(SNESSetJacobian(snes, Amat, Pmat, SNESTSFormJacobian, ts)); 13233ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1324316643e7SJed Brown } 1325316643e7SJed Brown 1326e1244c69SJed Brown /*@ 13278434afd1SBarry Smith TSRHSJacobianSetReuse - restore the RHS Jacobian before calling the user-provided `TSRHSJacobianFn` function again 1328e1244c69SJed Brown 1329e1244c69SJed Brown Logically Collective 1330e1244c69SJed Brown 13314165533cSJose E. Roman Input Parameters: 1332bcf0153eSBarry Smith + ts - `TS` context obtained from `TSCreate()` 1333bcf0153eSBarry Smith - reuse - `PETSC_TRUE` if the RHS Jacobian 1334e1244c69SJed Brown 1335e1244c69SJed Brown Level: intermediate 1336e1244c69SJed Brown 133714d0ab18SJacob Faibussowitsch Notes: 133814d0ab18SJacob Faibussowitsch Without this flag, `TS` will change the sign and shift the RHS Jacobian for a 133914d0ab18SJacob Faibussowitsch finite-time-step implicit solve, in which case the user function will need to recompute the 134014d0ab18SJacob Faibussowitsch entire Jacobian. The `reuse `flag must be set if the evaluation function assumes that the 134114d0ab18SJacob Faibussowitsch matrix entries have not been changed by the `TS`. 134214d0ab18SJacob Faibussowitsch 13431cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetRHSJacobian()`, `TSComputeRHSJacobianConstant()` 1344e1244c69SJed Brown @*/ 1345d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRHSJacobianSetReuse(TS ts, PetscBool reuse) 1346d71ae5a4SJacob Faibussowitsch { 1347e1244c69SJed Brown PetscFunctionBegin; 1348e1244c69SJed Brown ts->rhsjacobian.reuse = reuse; 13493ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1350e1244c69SJed Brown } 1351e1244c69SJed Brown 1352efe9872eSLisandro Dalcin /*@C 1353efe9872eSLisandro Dalcin TSSetI2Function - Set the function to compute F(t,U,U_t,U_tt) where F = 0 is the DAE to be solved. 1354efe9872eSLisandro Dalcin 1355c3339decSBarry Smith Logically Collective 1356efe9872eSLisandro Dalcin 1357efe9872eSLisandro Dalcin Input Parameters: 1358bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1359195e9b02SBarry Smith . F - vector to hold the residual (or `NULL` to have it created internally) 1360efe9872eSLisandro Dalcin . fun - the function evaluation routine 1361195e9b02SBarry Smith - ctx - user-defined context for private data for the function evaluation routine (may be `NULL`) 1362efe9872eSLisandro Dalcin 1363efe9872eSLisandro Dalcin Level: beginner 1364efe9872eSLisandro Dalcin 13658434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSI2FunctionFn`, `TSSetI2Jacobian()`, `TSSetIFunction()`, 136614d0ab18SJacob Faibussowitsch `TSCreate()`, `TSSetRHSFunction()` 1367efe9872eSLisandro Dalcin @*/ 13688434afd1SBarry Smith PetscErrorCode TSSetI2Function(TS ts, Vec F, TSI2FunctionFn *fun, void *ctx) 1369d71ae5a4SJacob Faibussowitsch { 1370efe9872eSLisandro Dalcin DM dm; 1371efe9872eSLisandro Dalcin 1372efe9872eSLisandro Dalcin PetscFunctionBegin; 1373efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1374efe9872eSLisandro Dalcin if (F) PetscValidHeaderSpecific(F, VEC_CLASSID, 2); 13759566063dSJacob Faibussowitsch PetscCall(TSSetIFunction(ts, F, NULL, NULL)); 13769566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 13779566063dSJacob Faibussowitsch PetscCall(DMTSSetI2Function(dm, fun, ctx)); 13783ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1379efe9872eSLisandro Dalcin } 1380efe9872eSLisandro Dalcin 1381efe9872eSLisandro Dalcin /*@C 1382a5b23f4aSJose E. Roman TSGetI2Function - Returns the vector where the implicit residual is stored and the function/context to compute it. 1383efe9872eSLisandro Dalcin 1384efe9872eSLisandro Dalcin Not Collective 1385efe9872eSLisandro Dalcin 1386efe9872eSLisandro Dalcin Input Parameter: 1387bcf0153eSBarry Smith . ts - the `TS` context 1388efe9872eSLisandro Dalcin 1389d8d19677SJose E. Roman Output Parameters: 1390195e9b02SBarry Smith + r - vector to hold residual (or `NULL`) 1391195e9b02SBarry Smith . fun - the function to compute residual (or `NULL`) 1392195e9b02SBarry Smith - ctx - the function context (or `NULL`) 1393efe9872eSLisandro Dalcin 1394efe9872eSLisandro Dalcin Level: advanced 1395efe9872eSLisandro Dalcin 13961cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetIFunction()`, `SNESGetFunction()`, `TSCreate()` 1397efe9872eSLisandro Dalcin @*/ 13988434afd1SBarry Smith PetscErrorCode TSGetI2Function(TS ts, Vec *r, TSI2FunctionFn **fun, void **ctx) 1399d71ae5a4SJacob Faibussowitsch { 1400efe9872eSLisandro Dalcin SNES snes; 1401efe9872eSLisandro Dalcin DM dm; 1402efe9872eSLisandro Dalcin 1403efe9872eSLisandro Dalcin PetscFunctionBegin; 1404efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 14059566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 14069566063dSJacob Faibussowitsch PetscCall(SNESGetFunction(snes, r, NULL, NULL)); 14079566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 14089566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Function(dm, fun, ctx)); 14093ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1410efe9872eSLisandro Dalcin } 1411efe9872eSLisandro Dalcin 1412efe9872eSLisandro Dalcin /*@C 1413bc77d74cSLisandro Dalcin TSSetI2Jacobian - Set the function to compute the matrix dF/dU + v*dF/dU_t + a*dF/dU_tt 1414bcf0153eSBarry Smith where F(t,U,U_t,U_tt) is the function you provided with `TSSetI2Function()`. 1415efe9872eSLisandro Dalcin 1416c3339decSBarry Smith Logically Collective 1417efe9872eSLisandro Dalcin 1418efe9872eSLisandro Dalcin Input Parameters: 1419bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1420195e9b02SBarry Smith . J - matrix to hold the Jacobian values 1421195e9b02SBarry Smith . P - matrix for constructing the preconditioner (may be same as `J`) 14228434afd1SBarry Smith . jac - the Jacobian evaluation routine, see `TSI2JacobianFn` for the calling sequence 1423195e9b02SBarry Smith - ctx - user-defined context for private data for the Jacobian evaluation routine (may be `NULL`) 1424efe9872eSLisandro Dalcin 1425bcf0153eSBarry Smith Level: beginner 1426bcf0153eSBarry Smith 1427efe9872eSLisandro Dalcin Notes: 1428195e9b02SBarry Smith The matrices `J` and `P` are exactly the matrices that are used by `SNES` for the nonlinear solve. 1429efe9872eSLisandro Dalcin 1430efe9872eSLisandro Dalcin The matrix dF/dU + v*dF/dU_t + a*dF/dU_tt you provide turns out to be 1431efe9872eSLisandro 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. 1432efe9872eSLisandro Dalcin The time integrator internally approximates U_t by W+v*U and U_tt by W'+a*U where the positive "shift" 1433bc77d74cSLisandro Dalcin parameters 'v' and 'a' and vectors W, W' depend on the integration method, step size, and past states. 1434efe9872eSLisandro Dalcin 14358434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSI2JacobianFn`, `TSSetI2Function()`, `TSGetI2Jacobian()` 1436efe9872eSLisandro Dalcin @*/ 14378434afd1SBarry Smith PetscErrorCode TSSetI2Jacobian(TS ts, Mat J, Mat P, TSI2JacobianFn *jac, void *ctx) 1438d71ae5a4SJacob Faibussowitsch { 1439efe9872eSLisandro Dalcin DM dm; 1440efe9872eSLisandro Dalcin 1441efe9872eSLisandro Dalcin PetscFunctionBegin; 1442efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1443efe9872eSLisandro Dalcin if (J) PetscValidHeaderSpecific(J, MAT_CLASSID, 2); 1444efe9872eSLisandro Dalcin if (P) PetscValidHeaderSpecific(P, MAT_CLASSID, 3); 14459566063dSJacob Faibussowitsch PetscCall(TSSetIJacobian(ts, J, P, NULL, NULL)); 14469566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 14479566063dSJacob Faibussowitsch PetscCall(DMTSSetI2Jacobian(dm, jac, ctx)); 14483ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1449efe9872eSLisandro Dalcin } 1450efe9872eSLisandro Dalcin 1451efe9872eSLisandro Dalcin /*@C 1452efe9872eSLisandro Dalcin TSGetI2Jacobian - Returns the implicit Jacobian at the present timestep. 1453efe9872eSLisandro Dalcin 1454bcf0153eSBarry Smith Not Collective, but parallel objects are returned if `TS` is parallel 1455efe9872eSLisandro Dalcin 1456efe9872eSLisandro Dalcin Input Parameter: 1457bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 1458efe9872eSLisandro Dalcin 1459efe9872eSLisandro Dalcin Output Parameters: 1460efe9872eSLisandro Dalcin + J - The (approximate) Jacobian of F(t,U,U_t,U_tt) 1461195e9b02SBarry Smith . P - The matrix from which the preconditioner is constructed, often the same as `J` 1462efe9872eSLisandro Dalcin . jac - The function to compute the Jacobian matrices 1463efe9872eSLisandro Dalcin - ctx - User-defined context for Jacobian evaluation routine 1464efe9872eSLisandro Dalcin 1465bcf0153eSBarry Smith Level: advanced 1466bcf0153eSBarry Smith 1467195e9b02SBarry Smith Note: 1468195e9b02SBarry Smith You can pass in `NULL` for any return argument you do not need. 1469efe9872eSLisandro Dalcin 14701cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetTimeStep()`, `TSGetMatrices()`, `TSGetTime()`, `TSGetStepNumber()`, `TSSetI2Jacobian()`, `TSGetI2Function()`, `TSCreate()` 1471efe9872eSLisandro Dalcin @*/ 14728434afd1SBarry Smith PetscErrorCode TSGetI2Jacobian(TS ts, Mat *J, Mat *P, TSI2JacobianFn **jac, void **ctx) 1473d71ae5a4SJacob Faibussowitsch { 1474efe9872eSLisandro Dalcin SNES snes; 1475efe9872eSLisandro Dalcin DM dm; 1476efe9872eSLisandro Dalcin 1477efe9872eSLisandro Dalcin PetscFunctionBegin; 14789566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 14799566063dSJacob Faibussowitsch PetscCall(SNESSetUpMatrices(snes)); 14809566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(snes, J, P, NULL, NULL)); 14819566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 14829566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Jacobian(dm, jac, ctx)); 14833ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1484efe9872eSLisandro Dalcin } 1485efe9872eSLisandro Dalcin 1486efe9872eSLisandro Dalcin /*@ 1487efe9872eSLisandro Dalcin TSComputeI2Function - Evaluates the DAE residual written in implicit form F(t,U,U_t,U_tt) = 0 1488efe9872eSLisandro Dalcin 1489c3339decSBarry Smith Collective 1490efe9872eSLisandro Dalcin 1491efe9872eSLisandro Dalcin Input Parameters: 1492bcf0153eSBarry Smith + ts - the `TS` context 1493efe9872eSLisandro Dalcin . t - current time 1494efe9872eSLisandro Dalcin . U - state vector 1495efe9872eSLisandro Dalcin . V - time derivative of state vector (U_t) 1496efe9872eSLisandro Dalcin - A - second time derivative of state vector (U_tt) 1497efe9872eSLisandro Dalcin 1498efe9872eSLisandro Dalcin Output Parameter: 1499efe9872eSLisandro Dalcin . F - the residual vector 1500efe9872eSLisandro Dalcin 1501bcf0153eSBarry Smith Level: developer 1502bcf0153eSBarry Smith 1503efe9872eSLisandro Dalcin Note: 1504efe9872eSLisandro Dalcin Most users should not need to explicitly call this routine, as it 1505efe9872eSLisandro Dalcin is used internally within the nonlinear solvers. 1506efe9872eSLisandro Dalcin 15071cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetI2Function()`, `TSGetI2Function()` 1508efe9872eSLisandro Dalcin @*/ 1509d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeI2Function(TS ts, PetscReal t, Vec U, Vec V, Vec A, Vec F) 1510d71ae5a4SJacob Faibussowitsch { 1511efe9872eSLisandro Dalcin DM dm; 15128434afd1SBarry Smith TSI2FunctionFn *I2Function; 1513efe9872eSLisandro Dalcin void *ctx; 15148434afd1SBarry Smith TSRHSFunctionFn *rhsfunction; 1515efe9872eSLisandro Dalcin 1516efe9872eSLisandro Dalcin PetscFunctionBegin; 1517efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1518efe9872eSLisandro Dalcin PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 1519efe9872eSLisandro Dalcin PetscValidHeaderSpecific(V, VEC_CLASSID, 4); 1520efe9872eSLisandro Dalcin PetscValidHeaderSpecific(A, VEC_CLASSID, 5); 1521efe9872eSLisandro Dalcin PetscValidHeaderSpecific(F, VEC_CLASSID, 6); 1522efe9872eSLisandro Dalcin 15239566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 15249566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Function(dm, &I2Function, &ctx)); 15259566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSFunction(dm, &rhsfunction, NULL)); 1526efe9872eSLisandro Dalcin 1527efe9872eSLisandro Dalcin if (!I2Function) { 15289566063dSJacob Faibussowitsch PetscCall(TSComputeIFunction(ts, t, U, A, F, PETSC_FALSE)); 15293ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1530efe9872eSLisandro Dalcin } 1531efe9872eSLisandro Dalcin 1532da023ba9SStefano Zampini PetscCall(PetscLogEventBegin(TS_FunctionEval, U, ts, V, F)); 1533efe9872eSLisandro Dalcin 1534792fecdfSBarry Smith PetscCallBack("TS callback implicit function", I2Function(ts, t, U, V, A, F, ctx)); 1535efe9872eSLisandro Dalcin 1536efe9872eSLisandro Dalcin if (rhsfunction) { 1537efe9872eSLisandro Dalcin Vec Frhs; 15388af0501fSStefano Zampini 15398af0501fSStefano Zampini PetscCall(DMGetGlobalVector(dm, &Frhs)); 15409566063dSJacob Faibussowitsch PetscCall(TSComputeRHSFunction(ts, t, U, Frhs)); 15419566063dSJacob Faibussowitsch PetscCall(VecAXPY(F, -1, Frhs)); 15428af0501fSStefano Zampini PetscCall(DMRestoreGlobalVector(dm, &Frhs)); 1543efe9872eSLisandro Dalcin } 1544efe9872eSLisandro Dalcin 1545da023ba9SStefano Zampini PetscCall(PetscLogEventEnd(TS_FunctionEval, U, ts, V, F)); 15463ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1547efe9872eSLisandro Dalcin } 1548efe9872eSLisandro Dalcin 1549efe9872eSLisandro Dalcin /*@ 1550efe9872eSLisandro Dalcin TSComputeI2Jacobian - Evaluates the Jacobian of the DAE 1551efe9872eSLisandro Dalcin 1552c3339decSBarry Smith Collective 1553efe9872eSLisandro Dalcin 1554efe9872eSLisandro Dalcin Input Parameters: 1555bcf0153eSBarry Smith + ts - the `TS` context 1556efe9872eSLisandro Dalcin . t - current timestep 1557efe9872eSLisandro Dalcin . U - state vector 1558efe9872eSLisandro Dalcin . V - time derivative of state vector 1559efe9872eSLisandro Dalcin . A - second time derivative of state vector 1560efe9872eSLisandro Dalcin . shiftV - shift to apply, see note below 1561efe9872eSLisandro Dalcin - shiftA - shift to apply, see note below 1562efe9872eSLisandro Dalcin 1563efe9872eSLisandro Dalcin Output Parameters: 1564efe9872eSLisandro Dalcin + J - Jacobian matrix 1565efe9872eSLisandro Dalcin - P - optional preconditioning matrix 1566efe9872eSLisandro Dalcin 1567bcf0153eSBarry Smith Level: developer 1568bcf0153eSBarry Smith 1569efe9872eSLisandro Dalcin Notes: 1570efe9872eSLisandro Dalcin If F(t,U,V,A)=0 is the DAE, the required Jacobian is 1571efe9872eSLisandro Dalcin 1572efe9872eSLisandro Dalcin dF/dU + shiftV*dF/dV + shiftA*dF/dA 1573efe9872eSLisandro Dalcin 1574efe9872eSLisandro Dalcin Most users should not need to explicitly call this routine, as it 1575efe9872eSLisandro Dalcin is used internally within the nonlinear solvers. 1576efe9872eSLisandro Dalcin 15771cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetI2Jacobian()` 1578efe9872eSLisandro Dalcin @*/ 1579d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeI2Jacobian(TS ts, PetscReal t, Vec U, Vec V, Vec A, PetscReal shiftV, PetscReal shiftA, Mat J, Mat P) 1580d71ae5a4SJacob Faibussowitsch { 1581efe9872eSLisandro Dalcin DM dm; 15828434afd1SBarry Smith TSI2JacobianFn *I2Jacobian; 1583efe9872eSLisandro Dalcin void *ctx; 15848434afd1SBarry Smith TSRHSJacobianFn *rhsjacobian; 1585efe9872eSLisandro Dalcin 1586efe9872eSLisandro Dalcin PetscFunctionBegin; 1587efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1588efe9872eSLisandro Dalcin PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 1589efe9872eSLisandro Dalcin PetscValidHeaderSpecific(V, VEC_CLASSID, 4); 1590efe9872eSLisandro Dalcin PetscValidHeaderSpecific(A, VEC_CLASSID, 5); 1591efe9872eSLisandro Dalcin PetscValidHeaderSpecific(J, MAT_CLASSID, 8); 1592efe9872eSLisandro Dalcin PetscValidHeaderSpecific(P, MAT_CLASSID, 9); 1593efe9872eSLisandro Dalcin 15949566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 15959566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Jacobian(dm, &I2Jacobian, &ctx)); 15969566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, &rhsjacobian, NULL)); 1597efe9872eSLisandro Dalcin 1598efe9872eSLisandro Dalcin if (!I2Jacobian) { 15999566063dSJacob Faibussowitsch PetscCall(TSComputeIJacobian(ts, t, U, A, shiftA, J, P, PETSC_FALSE)); 16003ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1601efe9872eSLisandro Dalcin } 1602efe9872eSLisandro Dalcin 1603da023ba9SStefano Zampini PetscCall(PetscLogEventBegin(TS_JacobianEval, U, ts, J, P)); 1604792fecdfSBarry Smith PetscCallBack("TS callback implicit Jacobian", I2Jacobian(ts, t, U, V, A, shiftV, shiftA, J, P, ctx)); 1605efe9872eSLisandro Dalcin if (rhsjacobian) { 1606d60b7d5cSBarry Smith Mat Jrhs, Prhs; 16079566063dSJacob Faibussowitsch PetscCall(TSGetRHSMats_Private(ts, &Jrhs, &Prhs)); 16089566063dSJacob Faibussowitsch PetscCall(TSComputeRHSJacobian(ts, t, U, Jrhs, Prhs)); 16099566063dSJacob Faibussowitsch PetscCall(MatAXPY(J, -1, Jrhs, ts->axpy_pattern)); 16109566063dSJacob Faibussowitsch if (P != J) PetscCall(MatAXPY(P, -1, Prhs, ts->axpy_pattern)); 1611efe9872eSLisandro Dalcin } 1612efe9872eSLisandro Dalcin 1613da023ba9SStefano Zampini PetscCall(PetscLogEventEnd(TS_JacobianEval, U, ts, J, P)); 16143ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1615efe9872eSLisandro Dalcin } 1616efe9872eSLisandro Dalcin 1617438f35afSJed Brown /*@C 1618438f35afSJed Brown TSSetTransientVariable - sets function to transform from state to transient variables 1619438f35afSJed Brown 1620438f35afSJed Brown Logically Collective 1621438f35afSJed Brown 16224165533cSJose E. Roman Input Parameters: 1623438f35afSJed Brown + ts - time stepping context on which to change the transient variable 16248434afd1SBarry Smith . tvar - a function that transforms to transient variables, see `TSTransientVariableFn` for the calling sequence 1625438f35afSJed Brown - ctx - a context for tvar 1626438f35afSJed Brown 1627438f35afSJed Brown Level: advanced 1628438f35afSJed Brown 1629438f35afSJed Brown Notes: 1630bcf0153eSBarry Smith This is typically used to transform from primitive to conservative variables so that a time integrator (e.g., `TSBDF`) 1631438f35afSJed Brown can be conservative. In this context, primitive variables P are used to model the state (e.g., because they lead to 1632438f35afSJed Brown well-conditioned formulations even in limiting cases such as low-Mach or zero porosity). The transient variable is 1633438f35afSJed Brown C(P), specified by calling this function. An IFunction thus receives arguments (P, Cdot) and the IJacobian must be 1634438f35afSJed Brown evaluated via the chain rule, as in 1635195e9b02SBarry Smith .vb 1636438f35afSJed Brown dF/dP + shift * dF/dCdot dC/dP. 1637195e9b02SBarry Smith .ve 1638438f35afSJed Brown 16398434afd1SBarry Smith .seealso: [](ch_ts), `TS`, `TSBDF`, `TSTransientVariableFn`, `DMTSSetTransientVariable()`, `DMTSGetTransientVariable()`, `TSSetIFunction()`, `TSSetIJacobian()` 1640438f35afSJed Brown @*/ 16418434afd1SBarry Smith PetscErrorCode TSSetTransientVariable(TS ts, TSTransientVariableFn *tvar, void *ctx) 1642d71ae5a4SJacob Faibussowitsch { 1643438f35afSJed Brown DM dm; 1644438f35afSJed Brown 1645438f35afSJed Brown PetscFunctionBegin; 1646438f35afSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 16479566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 16489566063dSJacob Faibussowitsch PetscCall(DMTSSetTransientVariable(dm, tvar, ctx)); 16493ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1650438f35afSJed Brown } 1651438f35afSJed Brown 1652efe9872eSLisandro Dalcin /*@ 1653e3c11fc1SJed Brown TSComputeTransientVariable - transforms state (primitive) variables to transient (conservative) variables 1654e3c11fc1SJed Brown 1655e3c11fc1SJed Brown Logically Collective 1656e3c11fc1SJed Brown 1657e3c11fc1SJed Brown Input Parameters: 1658e3c11fc1SJed Brown + ts - TS on which to compute 1659e3c11fc1SJed Brown - U - state vector to be transformed to transient variables 1660e3c11fc1SJed Brown 16612fe279fdSBarry Smith Output Parameter: 1662e3c11fc1SJed Brown . C - transient (conservative) variable 1663e3c11fc1SJed Brown 1664e3c11fc1SJed Brown Level: developer 1665e3c11fc1SJed Brown 1666b43aa488SJacob Faibussowitsch Developer Notes: 1667195e9b02SBarry Smith If `DMTSSetTransientVariable()` has not been called, then C is not modified in this routine and C = `NULL` is allowed. 1668bcf0153eSBarry Smith This makes it safe to call without a guard. One can use `TSHasTransientVariable()` to check if transient variables are 1669bcf0153eSBarry Smith being used. 1670bcf0153eSBarry Smith 16711cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSBDF`, `DMTSSetTransientVariable()`, `TSComputeIFunction()`, `TSComputeIJacobian()` 1672e3c11fc1SJed Brown @*/ 1673d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeTransientVariable(TS ts, Vec U, Vec C) 1674d71ae5a4SJacob Faibussowitsch { 1675e3c11fc1SJed Brown DM dm; 1676e3c11fc1SJed Brown DMTS dmts; 1677e3c11fc1SJed Brown 1678e3c11fc1SJed Brown PetscFunctionBegin; 1679e3c11fc1SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1680e3c11fc1SJed Brown PetscValidHeaderSpecific(U, VEC_CLASSID, 2); 16819566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 16829566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(dm, &dmts)); 1683e3c11fc1SJed Brown if (dmts->ops->transientvar) { 1684e3c11fc1SJed Brown PetscValidHeaderSpecific(C, VEC_CLASSID, 3); 16859566063dSJacob Faibussowitsch PetscCall((*dmts->ops->transientvar)(ts, U, C, dmts->transientvarctx)); 1686e3c11fc1SJed Brown } 16873ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1688e3c11fc1SJed Brown } 1689e3c11fc1SJed Brown 1690e3c11fc1SJed Brown /*@ 1691e3c11fc1SJed Brown TSHasTransientVariable - determine whether transient variables have been set 1692e3c11fc1SJed Brown 1693e3c11fc1SJed Brown Logically Collective 1694e3c11fc1SJed Brown 16952fe279fdSBarry Smith Input Parameter: 1696195e9b02SBarry Smith . ts - `TS` on which to compute 1697e3c11fc1SJed Brown 16982fe279fdSBarry Smith Output Parameter: 1699bcf0153eSBarry Smith . has - `PETSC_TRUE` if transient variables have been set 1700e3c11fc1SJed Brown 1701e3c11fc1SJed Brown Level: developer 1702e3c11fc1SJed Brown 17031cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSBDF`, `DMTSSetTransientVariable()`, `TSComputeTransientVariable()` 1704e3c11fc1SJed Brown @*/ 1705d71ae5a4SJacob Faibussowitsch PetscErrorCode TSHasTransientVariable(TS ts, PetscBool *has) 1706d71ae5a4SJacob Faibussowitsch { 1707e3c11fc1SJed Brown DM dm; 1708e3c11fc1SJed Brown DMTS dmts; 1709e3c11fc1SJed Brown 1710e3c11fc1SJed Brown PetscFunctionBegin; 1711e3c11fc1SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 17129566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 17139566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(dm, &dmts)); 1714e3c11fc1SJed Brown *has = dmts->ops->transientvar ? PETSC_TRUE : PETSC_FALSE; 17153ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1716e3c11fc1SJed Brown } 1717e3c11fc1SJed Brown 1718e3c11fc1SJed Brown /*@ 1719efe9872eSLisandro Dalcin TS2SetSolution - Sets the initial solution and time derivative vectors 1720bcf0153eSBarry Smith for use by the `TS` routines handling second order equations. 1721efe9872eSLisandro Dalcin 1722c3339decSBarry Smith Logically Collective 1723efe9872eSLisandro Dalcin 1724efe9872eSLisandro Dalcin Input Parameters: 1725bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1726efe9872eSLisandro Dalcin . u - the solution vector 1727efe9872eSLisandro Dalcin - v - the time derivative vector 1728efe9872eSLisandro Dalcin 1729efe9872eSLisandro Dalcin Level: beginner 1730efe9872eSLisandro Dalcin 17311cc06b55SBarry Smith .seealso: [](ch_ts), `TS` 1732efe9872eSLisandro Dalcin @*/ 1733d71ae5a4SJacob Faibussowitsch PetscErrorCode TS2SetSolution(TS ts, Vec u, Vec v) 1734d71ae5a4SJacob Faibussowitsch { 1735efe9872eSLisandro Dalcin PetscFunctionBegin; 1736efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1737efe9872eSLisandro Dalcin PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 1738efe9872eSLisandro Dalcin PetscValidHeaderSpecific(v, VEC_CLASSID, 3); 17399566063dSJacob Faibussowitsch PetscCall(TSSetSolution(ts, u)); 17409566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)v)); 17419566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_dot)); 1742efe9872eSLisandro Dalcin ts->vec_dot = v; 17433ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1744efe9872eSLisandro Dalcin } 1745efe9872eSLisandro Dalcin 1746efe9872eSLisandro Dalcin /*@ 1747efe9872eSLisandro Dalcin TS2GetSolution - Returns the solution and time derivative at the present timestep 174814d0ab18SJacob Faibussowitsch for second order equations. 1749efe9872eSLisandro Dalcin 175014d0ab18SJacob Faibussowitsch Not Collective 1751efe9872eSLisandro Dalcin 1752efe9872eSLisandro Dalcin Input Parameter: 1753bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 1754efe9872eSLisandro Dalcin 1755d8d19677SJose E. Roman Output Parameters: 1756efe9872eSLisandro Dalcin + u - the vector containing the solution 1757efe9872eSLisandro Dalcin - v - the vector containing the time derivative 1758efe9872eSLisandro Dalcin 1759efe9872eSLisandro Dalcin Level: intermediate 1760efe9872eSLisandro Dalcin 176114d0ab18SJacob Faibussowitsch Notes: 176214d0ab18SJacob Faibussowitsch It is valid to call this routine inside the function 176314d0ab18SJacob Faibussowitsch that you are evaluating in order to move to the new timestep. This vector not 176414d0ab18SJacob Faibussowitsch changed until the solution at the next timestep has been calculated. 176514d0ab18SJacob Faibussowitsch 17661cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TS2SetSolution()`, `TSGetTimeStep()`, `TSGetTime()` 1767efe9872eSLisandro Dalcin @*/ 1768d71ae5a4SJacob Faibussowitsch PetscErrorCode TS2GetSolution(TS ts, Vec *u, Vec *v) 1769d71ae5a4SJacob Faibussowitsch { 1770efe9872eSLisandro Dalcin PetscFunctionBegin; 1771efe9872eSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 17724f572ea9SToby Isaac if (u) PetscAssertPointer(u, 2); 17734f572ea9SToby Isaac if (v) PetscAssertPointer(v, 3); 1774efe9872eSLisandro Dalcin if (u) *u = ts->vec_sol; 1775efe9872eSLisandro Dalcin if (v) *v = ts->vec_dot; 17763ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1777efe9872eSLisandro Dalcin } 1778efe9872eSLisandro Dalcin 1779ffeef943SBarry Smith /*@ 1780bcf0153eSBarry Smith TSLoad - Loads a `TS` that has been stored in binary with `TSView()`. 178155849f57SBarry Smith 1782c3339decSBarry Smith Collective 178355849f57SBarry Smith 178455849f57SBarry Smith Input Parameters: 1785b43aa488SJacob Faibussowitsch + ts - the newly loaded `TS`, this needs to have been created with `TSCreate()` or 1786bcf0153eSBarry Smith some related function before a call to `TSLoad()`. 1787bcf0153eSBarry Smith - viewer - binary file viewer, obtained from `PetscViewerBinaryOpen()` 178855849f57SBarry Smith 178955849f57SBarry Smith Level: intermediate 179055849f57SBarry Smith 1791bcf0153eSBarry Smith Note: 1792bcf0153eSBarry Smith The type is determined by the data in the file, any type set into the `TS` before this call is ignored. 179355849f57SBarry Smith 17941cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `PetscViewer`, `PetscViewerBinaryOpen()`, `TSView()`, `MatLoad()`, `VecLoad()` 179555849f57SBarry Smith @*/ 1796d71ae5a4SJacob Faibussowitsch PetscErrorCode TSLoad(TS ts, PetscViewer viewer) 1797d71ae5a4SJacob Faibussowitsch { 179855849f57SBarry Smith PetscBool isbinary; 179955849f57SBarry Smith PetscInt classid; 180055849f57SBarry Smith char type[256]; 18012d53ad75SBarry Smith DMTS sdm; 1802ad6bc421SBarry Smith DM dm; 180355849f57SBarry Smith 180455849f57SBarry Smith PetscFunctionBegin; 1805f2c2a1b9SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 180655849f57SBarry Smith PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 18079566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERBINARY, &isbinary)); 18083c633725SBarry Smith PetscCheck(isbinary, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Invalid viewer; open viewer with PetscViewerBinaryOpen()"); 180955849f57SBarry Smith 18109566063dSJacob Faibussowitsch PetscCall(PetscViewerBinaryRead(viewer, &classid, 1, NULL, PETSC_INT)); 18113c633725SBarry Smith PetscCheck(classid == TS_FILE_CLASSID, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Not TS next in file"); 18129566063dSJacob Faibussowitsch PetscCall(PetscViewerBinaryRead(viewer, type, 256, NULL, PETSC_CHAR)); 18139566063dSJacob Faibussowitsch PetscCall(TSSetType(ts, type)); 1814dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, load, viewer); 18159566063dSJacob Faibussowitsch PetscCall(DMCreate(PetscObjectComm((PetscObject)ts), &dm)); 18169566063dSJacob Faibussowitsch PetscCall(DMLoad(dm, viewer)); 18179566063dSJacob Faibussowitsch PetscCall(TSSetDM(ts, dm)); 18189566063dSJacob Faibussowitsch PetscCall(DMCreateGlobalVector(ts->dm, &ts->vec_sol)); 18199566063dSJacob Faibussowitsch PetscCall(VecLoad(ts->vec_sol, viewer)); 18209566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(ts->dm, &sdm)); 18219566063dSJacob Faibussowitsch PetscCall(DMTSLoad(sdm, viewer)); 18223ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 182355849f57SBarry Smith } 182455849f57SBarry Smith 18259804daf3SBarry Smith #include <petscdraw.h> 1826e04113cfSBarry Smith #if defined(PETSC_HAVE_SAWS) 1827e04113cfSBarry Smith #include <petscviewersaws.h> 1828f05ece33SBarry Smith #endif 1829fe2efc57SMark 1830ffeef943SBarry Smith /*@ 1831bcf0153eSBarry Smith TSViewFromOptions - View a `TS` based on values in the options database 1832fe2efc57SMark 1833c3339decSBarry Smith Collective 1834fe2efc57SMark 1835fe2efc57SMark Input Parameters: 1836bcf0153eSBarry Smith + ts - the `TS` context 1837bcf0153eSBarry Smith . obj - Optional object that provides the prefix for the options database keys 1838bcf0153eSBarry Smith - name - command line option string to be passed by user 1839fe2efc57SMark 1840fe2efc57SMark Level: intermediate 1841bcf0153eSBarry Smith 18421cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSView`, `PetscObjectViewFromOptions()`, `TSCreate()` 1843fe2efc57SMark @*/ 1844bcf0153eSBarry Smith PetscErrorCode TSViewFromOptions(TS ts, PetscObject obj, const char name[]) 1845d71ae5a4SJacob Faibussowitsch { 1846fe2efc57SMark PetscFunctionBegin; 1847bcf0153eSBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 1848bcf0153eSBarry Smith PetscCall(PetscObjectViewFromOptions((PetscObject)ts, obj, name)); 18493ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 1850fe2efc57SMark } 1851fe2efc57SMark 1852ffeef943SBarry Smith /*@ 1853bcf0153eSBarry Smith TSView - Prints the `TS` data structure. 1854d763cef2SBarry Smith 1855c3339decSBarry Smith Collective 1856d763cef2SBarry Smith 1857d763cef2SBarry Smith Input Parameters: 1858bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 1859d763cef2SBarry Smith - viewer - visualization context 1860d763cef2SBarry Smith 1861d763cef2SBarry Smith Options Database Key: 1862bcf0153eSBarry Smith . -ts_view - calls `TSView()` at end of `TSStep()` 1863bcf0153eSBarry Smith 1864bcf0153eSBarry Smith Level: beginner 1865d763cef2SBarry Smith 1866d763cef2SBarry Smith Notes: 1867d763cef2SBarry Smith The available visualization contexts include 1868bcf0153eSBarry Smith + `PETSC_VIEWER_STDOUT_SELF` - standard output (default) 1869bcf0153eSBarry Smith - `PETSC_VIEWER_STDOUT_WORLD` - synchronized standard 1870d763cef2SBarry Smith output where only the first processor opens 1871d763cef2SBarry Smith the file. All other processors send their 1872d763cef2SBarry Smith data to the first processor to print. 1873d763cef2SBarry Smith 1874d763cef2SBarry Smith The user can open an alternative visualization context with 1875bcf0153eSBarry Smith `PetscViewerASCIIOpen()` - output to a specified file. 1876d763cef2SBarry Smith 1877bcf0153eSBarry Smith In the debugger you can do call `TSView`(ts,0) to display the `TS` solver. (The same holds for any PETSc object viewer). 1878595c91d4SBarry Smith 18791cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `PetscViewer`, `PetscViewerASCIIOpen()` 1880d763cef2SBarry Smith @*/ 1881d71ae5a4SJacob Faibussowitsch PetscErrorCode TSView(TS ts, PetscViewer viewer) 1882d71ae5a4SJacob Faibussowitsch { 188319fd82e9SBarry Smith TSType type; 18842b0a91c0SBarry Smith PetscBool iascii, isstring, isundials, isbinary, isdraw; 18852d53ad75SBarry Smith DMTS sdm; 1886e04113cfSBarry Smith #if defined(PETSC_HAVE_SAWS) 1887536b137fSBarry Smith PetscBool issaws; 1888f05ece33SBarry Smith #endif 1889d763cef2SBarry Smith 1890d763cef2SBarry Smith PetscFunctionBegin; 18910700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 18921e66621cSBarry Smith if (!viewer) PetscCall(PetscViewerASCIIGetStdout(PetscObjectComm((PetscObject)ts), &viewer)); 18930700a824SBarry Smith PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 1894c9780b6fSBarry Smith PetscCheckSameComm(ts, 1, viewer, 2); 1895fd16b177SBarry Smith 18969566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERASCII, &iascii)); 18979566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERSTRING, &isstring)); 18989566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERBINARY, &isbinary)); 18999566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERDRAW, &isdraw)); 1900e04113cfSBarry Smith #if defined(PETSC_HAVE_SAWS) 19019566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERSAWS, &issaws)); 1902f05ece33SBarry Smith #endif 190332077d6dSBarry Smith if (iascii) { 19049566063dSJacob Faibussowitsch PetscCall(PetscObjectPrintClassNamePrefixType((PetscObject)ts, viewer)); 1905efd4aadfSBarry Smith if (ts->ops->view) { 19069566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPushTab(viewer)); 1907dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, view, viewer); 19089566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPopTab(viewer)); 1909efd4aadfSBarry Smith } 19101690c2aeSBarry Smith if (ts->max_steps < PETSC_INT_MAX) PetscCall(PetscViewerASCIIPrintf(viewer, " maximum steps=%" PetscInt_FMT "\n", ts->max_steps)); 19111e66621cSBarry Smith if (ts->max_time < PETSC_MAX_REAL) PetscCall(PetscViewerASCIIPrintf(viewer, " maximum time=%g\n", (double)ts->max_time)); 19121e66621cSBarry Smith if (ts->ifuncs) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of I function evaluations=%" PetscInt_FMT "\n", ts->ifuncs)); 19131e66621cSBarry Smith if (ts->ijacs) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of I Jacobian evaluations=%" PetscInt_FMT "\n", ts->ijacs)); 19141e66621cSBarry Smith if (ts->rhsfuncs) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of RHS function evaluations=%" PetscInt_FMT "\n", ts->rhsfuncs)); 19151e66621cSBarry Smith if (ts->rhsjacs) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of RHS Jacobian evaluations=%" PetscInt_FMT "\n", ts->rhsjacs)); 1916efd4aadfSBarry Smith if (ts->usessnes) { 1917efd4aadfSBarry Smith PetscBool lin; 19181e66621cSBarry Smith if (ts->problem_type == TS_NONLINEAR) PetscCall(PetscViewerASCIIPrintf(viewer, " total number of nonlinear solver iterations=%" PetscInt_FMT "\n", ts->snes_its)); 191963a3b9bcSJacob Faibussowitsch PetscCall(PetscViewerASCIIPrintf(viewer, " total number of linear solver iterations=%" PetscInt_FMT "\n", ts->ksp_its)); 19209566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompareAny((PetscObject)ts->snes, &lin, SNESKSPONLY, SNESKSPTRANSPOSEONLY, "")); 192163a3b9bcSJacob Faibussowitsch PetscCall(PetscViewerASCIIPrintf(viewer, " total number of %slinear solve failures=%" PetscInt_FMT "\n", lin ? "" : "non", ts->num_snes_failures)); 1922efd4aadfSBarry Smith } 192363a3b9bcSJacob Faibussowitsch PetscCall(PetscViewerASCIIPrintf(viewer, " total number of rejected steps=%" PetscInt_FMT "\n", ts->reject)); 19241e66621cSBarry Smith if (ts->vrtol) PetscCall(PetscViewerASCIIPrintf(viewer, " using vector of relative error tolerances, ")); 19251e66621cSBarry Smith else PetscCall(PetscViewerASCIIPrintf(viewer, " using relative error tolerance of %g, ", (double)ts->rtol)); 19261e66621cSBarry Smith if (ts->vatol) PetscCall(PetscViewerASCIIPrintf(viewer, " using vector of absolute error tolerances\n")); 19271e66621cSBarry Smith else PetscCall(PetscViewerASCIIPrintf(viewer, " using absolute error tolerance of %g\n", (double)ts->atol)); 19289566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPushTab(viewer)); 19299566063dSJacob Faibussowitsch PetscCall(TSAdaptView(ts->adapt, viewer)); 19309566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPopTab(viewer)); 19310f5bd95cSBarry Smith } else if (isstring) { 19329566063dSJacob Faibussowitsch PetscCall(TSGetType(ts, &type)); 19339566063dSJacob Faibussowitsch PetscCall(PetscViewerStringSPrintf(viewer, " TSType: %-7.7s", type)); 1934dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, view, viewer); 193555849f57SBarry Smith } else if (isbinary) { 193655849f57SBarry Smith PetscInt classid = TS_FILE_CLASSID; 193755849f57SBarry Smith MPI_Comm comm; 193855849f57SBarry Smith PetscMPIInt rank; 193955849f57SBarry Smith char type[256]; 194055849f57SBarry Smith 19419566063dSJacob Faibussowitsch PetscCall(PetscObjectGetComm((PetscObject)ts, &comm)); 19429566063dSJacob Faibussowitsch PetscCallMPI(MPI_Comm_rank(comm, &rank)); 1943dd400576SPatrick Sanan if (rank == 0) { 19449566063dSJacob Faibussowitsch PetscCall(PetscViewerBinaryWrite(viewer, &classid, 1, PETSC_INT)); 19459566063dSJacob Faibussowitsch PetscCall(PetscStrncpy(type, ((PetscObject)ts)->type_name, 256)); 19469566063dSJacob Faibussowitsch PetscCall(PetscViewerBinaryWrite(viewer, type, 256, PETSC_CHAR)); 194755849f57SBarry Smith } 1948dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, view, viewer); 19499566063dSJacob Faibussowitsch if (ts->adapt) PetscCall(TSAdaptView(ts->adapt, viewer)); 19509566063dSJacob Faibussowitsch PetscCall(DMView(ts->dm, viewer)); 19519566063dSJacob Faibussowitsch PetscCall(VecView(ts->vec_sol, viewer)); 19529566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(ts->dm, &sdm)); 19539566063dSJacob Faibussowitsch PetscCall(DMTSView(sdm, viewer)); 19542b0a91c0SBarry Smith } else if (isdraw) { 19552b0a91c0SBarry Smith PetscDraw draw; 19562b0a91c0SBarry Smith char str[36]; 195789fd9fafSBarry Smith PetscReal x, y, bottom, h; 19582b0a91c0SBarry Smith 19599566063dSJacob Faibussowitsch PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw)); 19609566063dSJacob Faibussowitsch PetscCall(PetscDrawGetCurrentPoint(draw, &x, &y)); 1961c6a7a370SJeremy L Thompson PetscCall(PetscStrncpy(str, "TS: ", sizeof(str))); 1962c6a7a370SJeremy L Thompson PetscCall(PetscStrlcat(str, ((PetscObject)ts)->type_name, sizeof(str))); 19639566063dSJacob Faibussowitsch PetscCall(PetscDrawStringBoxed(draw, x, y, PETSC_DRAW_BLACK, PETSC_DRAW_BLACK, str, NULL, &h)); 196489fd9fafSBarry Smith bottom = y - h; 19659566063dSJacob Faibussowitsch PetscCall(PetscDrawPushCurrentPoint(draw, x, bottom)); 1966dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, view, viewer); 19679566063dSJacob Faibussowitsch if (ts->adapt) PetscCall(TSAdaptView(ts->adapt, viewer)); 19689566063dSJacob Faibussowitsch if (ts->snes) PetscCall(SNESView(ts->snes, viewer)); 19699566063dSJacob Faibussowitsch PetscCall(PetscDrawPopCurrentPoint(draw)); 1970e04113cfSBarry Smith #if defined(PETSC_HAVE_SAWS) 1971536b137fSBarry Smith } else if (issaws) { 1972d45a07a7SBarry Smith PetscMPIInt rank; 19732657e9d9SBarry Smith const char *name; 19742657e9d9SBarry Smith 19759566063dSJacob Faibussowitsch PetscCall(PetscObjectGetName((PetscObject)ts, &name)); 19769566063dSJacob Faibussowitsch PetscCallMPI(MPI_Comm_rank(PETSC_COMM_WORLD, &rank)); 1977dd400576SPatrick Sanan if (!((PetscObject)ts)->amsmem && rank == 0) { 1978d45a07a7SBarry Smith char dir[1024]; 1979d45a07a7SBarry Smith 19809566063dSJacob Faibussowitsch PetscCall(PetscObjectViewSAWs((PetscObject)ts, viewer)); 19819566063dSJacob Faibussowitsch PetscCall(PetscSNPrintf(dir, 1024, "/PETSc/Objects/%s/time_step", name)); 1982792fecdfSBarry Smith PetscCallSAWs(SAWs_Register, (dir, &ts->steps, 1, SAWs_READ, SAWs_INT)); 19839566063dSJacob Faibussowitsch PetscCall(PetscSNPrintf(dir, 1024, "/PETSc/Objects/%s/time", name)); 1984792fecdfSBarry Smith PetscCallSAWs(SAWs_Register, (dir, &ts->ptime, 1, SAWs_READ, SAWs_DOUBLE)); 1985d763cef2SBarry Smith } 1986dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, view, viewer); 1987f05ece33SBarry Smith #endif 1988f05ece33SBarry Smith } 198936a9e3b9SBarry Smith if (ts->snes && ts->usessnes) { 19909566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPushTab(viewer)); 19919566063dSJacob Faibussowitsch PetscCall(SNESView(ts->snes, viewer)); 19929566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPopTab(viewer)); 199336a9e3b9SBarry Smith } 19949566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(ts->dm, &sdm)); 19959566063dSJacob Faibussowitsch PetscCall(DMTSView(sdm, viewer)); 1996f05ece33SBarry Smith 19979566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPushTab(viewer)); 19989566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)ts, TSSUNDIALS, &isundials)); 19999566063dSJacob Faibussowitsch PetscCall(PetscViewerASCIIPopTab(viewer)); 20003ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2001d763cef2SBarry Smith } 2002d763cef2SBarry Smith 2003b07ff414SBarry Smith /*@ 2004d763cef2SBarry Smith TSSetApplicationContext - Sets an optional user-defined context for 2005d763cef2SBarry Smith the timesteppers. 2006d763cef2SBarry Smith 2007c3339decSBarry Smith Logically Collective 2008d763cef2SBarry Smith 2009d763cef2SBarry Smith Input Parameters: 2010bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2011bcf0153eSBarry Smith - usrP - user context 2012daf670e6SBarry Smith 2013d763cef2SBarry Smith Level: intermediate 2014d763cef2SBarry Smith 2015b43aa488SJacob Faibussowitsch Fortran Notes: 2016195e9b02SBarry Smith You must write a Fortran interface definition for this 2017195e9b02SBarry Smith function that tells Fortran the Fortran derived data type that you are passing in as the `ctx` argument. 2018bcf0153eSBarry Smith 20191cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetApplicationContext()` 2020d763cef2SBarry Smith @*/ 2021d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetApplicationContext(TS ts, void *usrP) 2022d71ae5a4SJacob Faibussowitsch { 2023d763cef2SBarry Smith PetscFunctionBegin; 20240700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2025d763cef2SBarry Smith ts->user = usrP; 20263ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2027d763cef2SBarry Smith } 2028d763cef2SBarry Smith 2029b07ff414SBarry Smith /*@ 2030d763cef2SBarry Smith TSGetApplicationContext - Gets the user-defined context for the 2031bcf0153eSBarry Smith timestepper that was set with `TSSetApplicationContext()` 2032d763cef2SBarry Smith 2033d763cef2SBarry Smith Not Collective 2034d763cef2SBarry Smith 2035d763cef2SBarry Smith Input Parameter: 2036bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2037d763cef2SBarry Smith 2038d763cef2SBarry Smith Output Parameter: 2039d763cef2SBarry Smith . usrP - user context 2040d763cef2SBarry Smith 2041bcf0153eSBarry Smith Level: intermediate 2042bcf0153eSBarry Smith 2043b43aa488SJacob Faibussowitsch Fortran Notes: 2044195e9b02SBarry Smith You must write a Fortran interface definition for this 2045195e9b02SBarry Smith function that tells Fortran the Fortran derived data type that you are passing in as the `ctx` argument. 2046daf670e6SBarry Smith 20471cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetApplicationContext()` 2048d763cef2SBarry Smith @*/ 2049d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetApplicationContext(TS ts, void *usrP) 2050d71ae5a4SJacob Faibussowitsch { 2051d763cef2SBarry Smith PetscFunctionBegin; 20520700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2053e71120c6SJed Brown *(void **)usrP = ts->user; 20543ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2055d763cef2SBarry Smith } 2056d763cef2SBarry Smith 2057d763cef2SBarry Smith /*@ 2058bcf0153eSBarry Smith TSGetStepNumber - Gets the number of time steps completed. 2059d763cef2SBarry Smith 2060d763cef2SBarry Smith Not Collective 2061d763cef2SBarry Smith 2062d763cef2SBarry Smith Input Parameter: 2063bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2064d763cef2SBarry Smith 2065d763cef2SBarry Smith Output Parameter: 206680275a0aSLisandro Dalcin . steps - number of steps completed so far 2067d763cef2SBarry Smith 2068d763cef2SBarry Smith Level: intermediate 2069d763cef2SBarry Smith 20701cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetTime()`, `TSGetTimeStep()`, `TSSetPreStep()`, `TSSetPreStage()`, `TSSetPostStage()`, `TSSetPostStep()` 2071d763cef2SBarry Smith @*/ 2072d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetStepNumber(TS ts, PetscInt *steps) 2073d71ae5a4SJacob Faibussowitsch { 2074d763cef2SBarry Smith PetscFunctionBegin; 20750700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 20764f572ea9SToby Isaac PetscAssertPointer(steps, 2); 207780275a0aSLisandro Dalcin *steps = ts->steps; 20783ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 207980275a0aSLisandro Dalcin } 208080275a0aSLisandro Dalcin 208180275a0aSLisandro Dalcin /*@ 208280275a0aSLisandro Dalcin TSSetStepNumber - Sets the number of steps completed. 208380275a0aSLisandro Dalcin 2084c3339decSBarry Smith Logically Collective 208580275a0aSLisandro Dalcin 208680275a0aSLisandro Dalcin Input Parameters: 2087bcf0153eSBarry Smith + ts - the `TS` context 208880275a0aSLisandro Dalcin - steps - number of steps completed so far 208980275a0aSLisandro Dalcin 2090bcf0153eSBarry Smith Level: developer 2091bcf0153eSBarry Smith 2092bcf0153eSBarry Smith Note: 2093bcf0153eSBarry Smith For most uses of the `TS` solvers the user need not explicitly call 2094bcf0153eSBarry Smith `TSSetStepNumber()`, as the step counter is appropriately updated in 2095bcf0153eSBarry Smith `TSSolve()`/`TSStep()`/`TSRollBack()`. Power users may call this routine to 209680275a0aSLisandro Dalcin reinitialize timestepping by setting the step counter to zero (and time 209780275a0aSLisandro Dalcin to the initial time) to solve a similar problem with different initial 209880275a0aSLisandro Dalcin conditions or parameters. Other possible use case is to continue 2099195e9b02SBarry Smith timestepping from a previously interrupted run in such a way that `TS` 210080275a0aSLisandro Dalcin monitors will be called with a initial nonzero step counter. 210180275a0aSLisandro Dalcin 21021cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetStepNumber()`, `TSSetTime()`, `TSSetTimeStep()`, `TSSetSolution()` 210380275a0aSLisandro Dalcin @*/ 2104d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetStepNumber(TS ts, PetscInt steps) 2105d71ae5a4SJacob Faibussowitsch { 210680275a0aSLisandro Dalcin PetscFunctionBegin; 210780275a0aSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 210880275a0aSLisandro Dalcin PetscValidLogicalCollectiveInt(ts, steps, 2); 21093c633725SBarry Smith PetscCheck(steps >= 0, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Step number must be non-negative"); 211080275a0aSLisandro Dalcin ts->steps = steps; 21113ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2112d763cef2SBarry Smith } 2113d763cef2SBarry Smith 2114d763cef2SBarry Smith /*@ 2115d763cef2SBarry Smith TSSetTimeStep - Allows one to reset the timestep at any time, 2116d763cef2SBarry Smith useful for simple pseudo-timestepping codes. 2117d763cef2SBarry Smith 2118c3339decSBarry Smith Logically Collective 2119d763cef2SBarry Smith 2120d763cef2SBarry Smith Input Parameters: 2121bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2122d763cef2SBarry Smith - time_step - the size of the timestep 2123d763cef2SBarry Smith 2124d763cef2SBarry Smith Level: intermediate 2125d763cef2SBarry Smith 21261cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSPSEUDO`, `TSGetTimeStep()`, `TSSetTime()` 2127d763cef2SBarry Smith @*/ 2128d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTimeStep(TS ts, PetscReal time_step) 2129d71ae5a4SJacob Faibussowitsch { 2130d763cef2SBarry Smith PetscFunctionBegin; 21310700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2132c5eb9154SBarry Smith PetscValidLogicalCollectiveReal(ts, time_step, 2); 2133d763cef2SBarry Smith ts->time_step = time_step; 21343ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2135d763cef2SBarry Smith } 2136d763cef2SBarry Smith 2137a43b19c4SJed Brown /*@ 213849354f04SShri Abhyankar TSSetExactFinalTime - Determines whether to adapt the final time step to 213949354f04SShri Abhyankar match the exact final time, interpolate solution to the exact final time, 2140bcf0153eSBarry Smith or just return at the final time `TS` computed. 2141a43b19c4SJed Brown 2142c3339decSBarry Smith Logically Collective 2143a43b19c4SJed Brown 2144d8d19677SJose E. Roman Input Parameters: 2145a43b19c4SJed Brown + ts - the time-step context 214649354f04SShri Abhyankar - eftopt - exact final time option 2147bcf0153eSBarry Smith .vb 2148bcf0153eSBarry Smith TS_EXACTFINALTIME_STEPOVER - Don't do anything if final time is exceeded 2149bcf0153eSBarry Smith TS_EXACTFINALTIME_INTERPOLATE - Interpolate back to final time 2150bcf0153eSBarry Smith TS_EXACTFINALTIME_MATCHSTEP - Adapt final time step to match the final time 2151bcf0153eSBarry Smith .ve 2152a43b19c4SJed Brown 2153bcf0153eSBarry Smith Options Database Key: 2154feed9e9dSBarry Smith . -ts_exact_final_time <stepover,interpolate,matchstep> - select the final step at runtime 2155feed9e9dSBarry Smith 2156a43b19c4SJed Brown Level: beginner 2157a43b19c4SJed Brown 2158bcf0153eSBarry Smith Note: 2159bcf0153eSBarry Smith If you use the option `TS_EXACTFINALTIME_STEPOVER` the solution may be at a very different time 2160bcf0153eSBarry Smith then the final time you selected. 2161bcf0153eSBarry Smith 21621cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSExactFinalTimeOption`, `TSGetExactFinalTime()` 2163a43b19c4SJed Brown @*/ 2164d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetExactFinalTime(TS ts, TSExactFinalTimeOption eftopt) 2165d71ae5a4SJacob Faibussowitsch { 2166a43b19c4SJed Brown PetscFunctionBegin; 2167a43b19c4SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 216849354f04SShri Abhyankar PetscValidLogicalCollectiveEnum(ts, eftopt, 2); 216949354f04SShri Abhyankar ts->exact_final_time = eftopt; 21703ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2171a43b19c4SJed Brown } 2172a43b19c4SJed Brown 2173d763cef2SBarry Smith /*@ 2174bcf0153eSBarry Smith TSGetExactFinalTime - Gets the exact final time option set with `TSSetExactFinalTime()` 2175f6953c82SLisandro Dalcin 2176f6953c82SLisandro Dalcin Not Collective 2177f6953c82SLisandro Dalcin 2178f6953c82SLisandro Dalcin Input Parameter: 2179bcf0153eSBarry Smith . ts - the `TS` context 2180f6953c82SLisandro Dalcin 2181f6953c82SLisandro Dalcin Output Parameter: 2182f6953c82SLisandro Dalcin . eftopt - exact final time option 2183f6953c82SLisandro Dalcin 2184f6953c82SLisandro Dalcin Level: beginner 2185f6953c82SLisandro Dalcin 21861cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSExactFinalTimeOption`, `TSSetExactFinalTime()` 2187f6953c82SLisandro Dalcin @*/ 2188d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetExactFinalTime(TS ts, TSExactFinalTimeOption *eftopt) 2189d71ae5a4SJacob Faibussowitsch { 2190f6953c82SLisandro Dalcin PetscFunctionBegin; 2191f6953c82SLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 21924f572ea9SToby Isaac PetscAssertPointer(eftopt, 2); 2193f6953c82SLisandro Dalcin *eftopt = ts->exact_final_time; 21943ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2195f6953c82SLisandro Dalcin } 2196f6953c82SLisandro Dalcin 2197f6953c82SLisandro Dalcin /*@ 2198d763cef2SBarry Smith TSGetTimeStep - Gets the current timestep size. 2199d763cef2SBarry Smith 2200d763cef2SBarry Smith Not Collective 2201d763cef2SBarry Smith 2202d763cef2SBarry Smith Input Parameter: 2203bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2204d763cef2SBarry Smith 2205d763cef2SBarry Smith Output Parameter: 2206d763cef2SBarry Smith . dt - the current timestep size 2207d763cef2SBarry Smith 2208d763cef2SBarry Smith Level: intermediate 2209d763cef2SBarry Smith 22101cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetTimeStep()`, `TSGetTime()` 2211d763cef2SBarry Smith @*/ 2212d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeStep(TS ts, PetscReal *dt) 2213d71ae5a4SJacob Faibussowitsch { 2214d763cef2SBarry Smith PetscFunctionBegin; 22150700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 22164f572ea9SToby Isaac PetscAssertPointer(dt, 2); 2217d763cef2SBarry Smith *dt = ts->time_step; 22183ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2219d763cef2SBarry Smith } 2220d763cef2SBarry Smith 2221d8e5e3e6SSatish Balay /*@ 2222d763cef2SBarry Smith TSGetSolution - Returns the solution at the present timestep. It 2223d763cef2SBarry Smith is valid to call this routine inside the function that you are evaluating 2224d763cef2SBarry Smith in order to move to the new timestep. This vector not changed until 2225d763cef2SBarry Smith the solution at the next timestep has been calculated. 2226d763cef2SBarry Smith 2227bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 2228d763cef2SBarry Smith 2229d763cef2SBarry Smith Input Parameter: 2230bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2231d763cef2SBarry Smith 2232d763cef2SBarry Smith Output Parameter: 2233d763cef2SBarry Smith . v - the vector containing the solution 2234d763cef2SBarry Smith 2235d763cef2SBarry Smith Level: intermediate 2236d763cef2SBarry Smith 2237bcf0153eSBarry Smith Note: 2238bcf0153eSBarry Smith If you used `TSSetExactFinalTime`(ts,`TS_EXACTFINALTIME_MATCHSTEP`); this does not return the solution at the requested 2239bcf0153eSBarry Smith final time. It returns the solution at the next timestep. 2240d763cef2SBarry Smith 22411cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetTimeStep()`, `TSGetTime()`, `TSGetSolveTime()`, `TSGetSolutionComponents()`, `TSSetSolutionFunction()` 2242d763cef2SBarry Smith @*/ 2243d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSolution(TS ts, Vec *v) 2244d71ae5a4SJacob Faibussowitsch { 2245d763cef2SBarry Smith PetscFunctionBegin; 22460700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 22474f572ea9SToby Isaac PetscAssertPointer(v, 2); 22488737fe31SLisandro Dalcin *v = ts->vec_sol; 22493ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2250d763cef2SBarry Smith } 2251d763cef2SBarry Smith 225203fe5f5eSDebojyoti Ghosh /*@ 2253b2bf4f3aSDebojyoti Ghosh TSGetSolutionComponents - Returns any solution components at the present 225403fe5f5eSDebojyoti Ghosh timestep, if available for the time integration method being used. 2255b2bf4f3aSDebojyoti Ghosh Solution components are quantities that share the same size and 225603fe5f5eSDebojyoti Ghosh structure as the solution vector. 225703fe5f5eSDebojyoti Ghosh 2258bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 225903fe5f5eSDebojyoti Ghosh 2260b43aa488SJacob Faibussowitsch Input Parameters: 2261bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` (input parameter). 2262195e9b02SBarry Smith . n - If v is `NULL`, then the number of solution components is 2263b2bf4f3aSDebojyoti Ghosh returned through n, else the n-th solution component is 226403fe5f5eSDebojyoti Ghosh returned in v. 2265a2b725a8SWilliam Gropp - v - the vector containing the n-th solution component 2266195e9b02SBarry Smith (may be `NULL` to use this function to find out 2267b2bf4f3aSDebojyoti Ghosh the number of solutions components). 226803fe5f5eSDebojyoti Ghosh 22694cdd57e5SDebojyoti Ghosh Level: advanced 227003fe5f5eSDebojyoti Ghosh 22711cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetSolution()` 227203fe5f5eSDebojyoti Ghosh @*/ 2273d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSolutionComponents(TS ts, PetscInt *n, Vec *v) 2274d71ae5a4SJacob Faibussowitsch { 227503fe5f5eSDebojyoti Ghosh PetscFunctionBegin; 227603fe5f5eSDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2277b2bf4f3aSDebojyoti Ghosh if (!ts->ops->getsolutioncomponents) *n = 0; 2278dbbe0bcdSBarry Smith else PetscUseTypeMethod(ts, getsolutioncomponents, n, v); 22793ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 228003fe5f5eSDebojyoti Ghosh } 228103fe5f5eSDebojyoti Ghosh 22824cdd57e5SDebojyoti Ghosh /*@ 22834cdd57e5SDebojyoti Ghosh TSGetAuxSolution - Returns an auxiliary solution at the present 22844cdd57e5SDebojyoti Ghosh timestep, if available for the time integration method being used. 22854cdd57e5SDebojyoti Ghosh 2286bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 22874cdd57e5SDebojyoti Ghosh 2288b43aa488SJacob Faibussowitsch Input Parameters: 2289bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` (input parameter). 2290a2b725a8SWilliam Gropp - v - the vector containing the auxiliary solution 22914cdd57e5SDebojyoti Ghosh 22924cdd57e5SDebojyoti Ghosh Level: intermediate 22934cdd57e5SDebojyoti Ghosh 22941cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetSolution()` 22954cdd57e5SDebojyoti Ghosh @*/ 2296d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetAuxSolution(TS ts, Vec *v) 2297d71ae5a4SJacob Faibussowitsch { 22984cdd57e5SDebojyoti Ghosh PetscFunctionBegin; 22994cdd57e5SDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2300dbbe0bcdSBarry Smith if (ts->ops->getauxsolution) PetscUseTypeMethod(ts, getauxsolution, v); 23011e66621cSBarry Smith else PetscCall(VecZeroEntries(*v)); 23023ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 23034cdd57e5SDebojyoti Ghosh } 23044cdd57e5SDebojyoti Ghosh 23054cdd57e5SDebojyoti Ghosh /*@ 23064cdd57e5SDebojyoti Ghosh TSGetTimeError - Returns the estimated error vector, if the chosen 2307bcf0153eSBarry Smith `TSType` has an error estimation functionality and `TSSetTimeError()` was called 23084cdd57e5SDebojyoti Ghosh 2309bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 23109657682dSDebojyoti Ghosh 2311b43aa488SJacob Faibussowitsch Input Parameters: 2312bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` (input parameter). 2313657c1e31SEmil Constantinescu . n - current estimate (n=0) or previous one (n=-1) 2314a2b725a8SWilliam Gropp - v - the vector containing the error (same size as the solution). 23154cdd57e5SDebojyoti Ghosh 23164cdd57e5SDebojyoti Ghosh Level: intermediate 23174cdd57e5SDebojyoti Ghosh 2318bcf0153eSBarry Smith Note: 2319bcf0153eSBarry Smith MUST call after `TSSetUp()` 23204cdd57e5SDebojyoti Ghosh 23211cc06b55SBarry Smith .seealso: [](ch_ts), `TSGetSolution()`, `TSSetTimeError()` 23224cdd57e5SDebojyoti Ghosh @*/ 2323d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeError(TS ts, PetscInt n, Vec *v) 2324d71ae5a4SJacob Faibussowitsch { 23254cdd57e5SDebojyoti Ghosh PetscFunctionBegin; 23264cdd57e5SDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2327dbbe0bcdSBarry Smith if (ts->ops->gettimeerror) PetscUseTypeMethod(ts, gettimeerror, n, v); 23281e66621cSBarry Smith else PetscCall(VecZeroEntries(*v)); 23293ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 23304cdd57e5SDebojyoti Ghosh } 23314cdd57e5SDebojyoti Ghosh 233257df6a1bSDebojyoti Ghosh /*@ 233357df6a1bSDebojyoti Ghosh TSSetTimeError - Sets the estimated error vector, if the chosen 2334bcf0153eSBarry Smith `TSType` has an error estimation functionality. This can be used 233557df6a1bSDebojyoti Ghosh to restart such a time integrator with a given error vector. 233657df6a1bSDebojyoti Ghosh 2337bcf0153eSBarry Smith Not Collective, but v returned is parallel if ts is parallel 233857df6a1bSDebojyoti Ghosh 2339b43aa488SJacob Faibussowitsch Input Parameters: 2340bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` (input parameter). 2341a2b725a8SWilliam Gropp - v - the vector containing the error (same size as the solution). 234257df6a1bSDebojyoti Ghosh 234357df6a1bSDebojyoti Ghosh Level: intermediate 234457df6a1bSDebojyoti Ghosh 2345b43aa488SJacob Faibussowitsch .seealso: [](ch_ts), `TS`, `TSSetSolution()`, `TSGetTimeError()` 234657df6a1bSDebojyoti Ghosh @*/ 2347d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTimeError(TS ts, Vec v) 2348d71ae5a4SJacob Faibussowitsch { 234957df6a1bSDebojyoti Ghosh PetscFunctionBegin; 235057df6a1bSDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 23513c633725SBarry Smith PetscCheck(ts->setupcalled, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "Must call TSSetUp() first"); 2352dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, settimeerror, v); 23533ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 235457df6a1bSDebojyoti Ghosh } 235557df6a1bSDebojyoti Ghosh 2356bdad233fSMatthew Knepley /* ----- Routines to initialize and destroy a timestepper ---- */ 2357d8e5e3e6SSatish Balay /*@ 2358bdad233fSMatthew Knepley TSSetProblemType - Sets the type of problem to be solved. 2359d763cef2SBarry Smith 2360bdad233fSMatthew Knepley Not collective 2361d763cef2SBarry Smith 2362bdad233fSMatthew Knepley Input Parameters: 2363bcf0153eSBarry Smith + ts - The `TS` 2364bcf0153eSBarry Smith - type - One of `TS_LINEAR`, `TS_NONLINEAR` where these types refer to problems of the forms 2365d763cef2SBarry Smith .vb 23660910c330SBarry Smith U_t - A U = 0 (linear) 23670910c330SBarry Smith U_t - A(t) U = 0 (linear) 23680910c330SBarry Smith F(t,U,U_t) = 0 (nonlinear) 2369d763cef2SBarry Smith .ve 2370d763cef2SBarry Smith 2371d763cef2SBarry Smith Level: beginner 2372d763cef2SBarry Smith 23731cc06b55SBarry Smith .seealso: [](ch_ts), `TSSetUp()`, `TSProblemType`, `TS` 2374d763cef2SBarry Smith @*/ 2375d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetProblemType(TS ts, TSProblemType type) 2376d71ae5a4SJacob Faibussowitsch { 2377d763cef2SBarry Smith PetscFunctionBegin; 23780700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2379bdad233fSMatthew Knepley ts->problem_type = type; 23809e2a6581SJed Brown if (type == TS_LINEAR) { 23819e2a6581SJed Brown SNES snes; 23829566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 23839566063dSJacob Faibussowitsch PetscCall(SNESSetType(snes, SNESKSPONLY)); 23849e2a6581SJed Brown } 23853ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2386d763cef2SBarry Smith } 2387d763cef2SBarry Smith 2388cc4c1da9SBarry Smith /*@ 2389bdad233fSMatthew Knepley TSGetProblemType - Gets the type of problem to be solved. 2390bdad233fSMatthew Knepley 2391bdad233fSMatthew Knepley Not collective 2392bdad233fSMatthew Knepley 2393bdad233fSMatthew Knepley Input Parameter: 2394bcf0153eSBarry Smith . ts - The `TS` 2395bdad233fSMatthew Knepley 2396bdad233fSMatthew Knepley Output Parameter: 2397bcf0153eSBarry Smith . type - One of `TS_LINEAR`, `TS_NONLINEAR` where these types refer to problems of the forms 2398bdad233fSMatthew Knepley .vb 2399089b2837SJed Brown M U_t = A U 2400089b2837SJed Brown M(t) U_t = A(t) U 2401b5abc632SBarry Smith F(t,U,U_t) 2402bdad233fSMatthew Knepley .ve 2403bdad233fSMatthew Knepley 2404bdad233fSMatthew Knepley Level: beginner 2405bdad233fSMatthew Knepley 24061cc06b55SBarry Smith .seealso: [](ch_ts), `TSSetUp()`, `TSProblemType`, `TS` 2407bdad233fSMatthew Knepley @*/ 2408d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetProblemType(TS ts, TSProblemType *type) 2409d71ae5a4SJacob Faibussowitsch { 2410bdad233fSMatthew Knepley PetscFunctionBegin; 24110700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 24124f572ea9SToby Isaac PetscAssertPointer(type, 2); 2413bdad233fSMatthew Knepley *type = ts->problem_type; 24143ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2415bdad233fSMatthew Knepley } 2416d763cef2SBarry Smith 2417303a5415SBarry Smith /* 2418303a5415SBarry 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() 2419303a5415SBarry Smith */ 2420d71ae5a4SJacob Faibussowitsch static PetscErrorCode TSSetExactFinalTimeDefault(TS ts) 2421d71ae5a4SJacob Faibussowitsch { 2422303a5415SBarry Smith PetscBool isnone; 2423303a5415SBarry Smith 2424303a5415SBarry Smith PetscFunctionBegin; 24259566063dSJacob Faibussowitsch PetscCall(TSGetAdapt(ts, &ts->adapt)); 24269566063dSJacob Faibussowitsch PetscCall(TSAdaptSetDefaultType(ts->adapt, ts->default_adapt_type)); 2427303a5415SBarry Smith 24289566063dSJacob Faibussowitsch PetscCall(PetscObjectTypeCompare((PetscObject)ts->adapt, TSADAPTNONE, &isnone)); 24291e66621cSBarry Smith if (!isnone && ts->exact_final_time == TS_EXACTFINALTIME_UNSPECIFIED) ts->exact_final_time = TS_EXACTFINALTIME_MATCHSTEP; 24301e66621cSBarry Smith else if (ts->exact_final_time == TS_EXACTFINALTIME_UNSPECIFIED) ts->exact_final_time = TS_EXACTFINALTIME_INTERPOLATE; 24313ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2432303a5415SBarry Smith } 2433303a5415SBarry Smith 2434d763cef2SBarry Smith /*@ 2435303a5415SBarry Smith TSSetUp - Sets up the internal data structures for the later use of a timestepper. 2436d763cef2SBarry Smith 2437c3339decSBarry Smith Collective 2438d763cef2SBarry Smith 2439d763cef2SBarry Smith Input Parameter: 2440bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2441d763cef2SBarry Smith 2442d763cef2SBarry Smith Level: advanced 2443d763cef2SBarry Smith 2444bcf0153eSBarry Smith Note: 2445bcf0153eSBarry Smith For basic use of the `TS` solvers the user need not explicitly call 2446bcf0153eSBarry Smith `TSSetUp()`, since these actions will automatically occur during 2447bcf0153eSBarry Smith the call to `TSStep()` or `TSSolve()`. However, if one wishes to control this 2448bcf0153eSBarry Smith phase separately, `TSSetUp()` should be called after `TSCreate()` 2449bcf0153eSBarry Smith and optional routines of the form TSSetXXX(), but before `TSStep()` and `TSSolve()`. 2450bcf0153eSBarry Smith 24511cc06b55SBarry Smith .seealso: [](ch_ts), `TSCreate()`, `TS`, `TSStep()`, `TSDestroy()`, `TSSolve()` 2452d763cef2SBarry Smith @*/ 2453d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetUp(TS ts) 2454d71ae5a4SJacob Faibussowitsch { 24556c6b9e74SPeter Brune DM dm; 24566c6b9e74SPeter Brune PetscErrorCode (*func)(SNES, Vec, Vec, void *); 2457d1e9a80fSBarry Smith PetscErrorCode (*jac)(SNES, Vec, Mat, Mat, void *); 24588434afd1SBarry Smith TSIFunctionFn *ifun; 24598434afd1SBarry Smith TSIJacobianFn *ijac; 24608434afd1SBarry Smith TSI2JacobianFn *i2jac; 24618434afd1SBarry Smith TSRHSJacobianFn *rhsjac; 2462d763cef2SBarry Smith 2463d763cef2SBarry Smith PetscFunctionBegin; 24640700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 24653ba16761SJacob Faibussowitsch if (ts->setupcalled) PetscFunctionReturn(PETSC_SUCCESS); 2466277b19d0SLisandro Dalcin 24677adad957SLisandro Dalcin if (!((PetscObject)ts)->type_name) { 24689566063dSJacob Faibussowitsch PetscCall(TSGetIFunction(ts, NULL, &ifun, NULL)); 24699566063dSJacob Faibussowitsch PetscCall(TSSetType(ts, ifun ? TSBEULER : TSEULER)); 2470d763cef2SBarry Smith } 2471277b19d0SLisandro Dalcin 24721a638600SStefano Zampini if (!ts->vec_sol) { 24731e66621cSBarry Smith PetscCheck(ts->dm, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "Must call TSSetSolution() first"); 24749566063dSJacob Faibussowitsch PetscCall(DMCreateGlobalVector(ts->dm, &ts->vec_sol)); 24751a638600SStefano Zampini } 2476277b19d0SLisandro Dalcin 24774a658b32SHong Zhang if (ts->tspan) { 24781e66621cSBarry Smith if (!ts->tspan->vecs_sol) PetscCall(VecDuplicateVecs(ts->vec_sol, ts->tspan->num_span_times, &ts->tspan->vecs_sol)); 24794a658b32SHong Zhang } 2480298bade4SHong Zhang if (!ts->Jacp && ts->Jacprhs) { /* IJacobianP shares the same matrix with RHSJacobianP if only RHSJacobianP is provided */ 24819566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)ts->Jacprhs)); 2482298bade4SHong Zhang ts->Jacp = ts->Jacprhs; 2483298bade4SHong Zhang } 2484298bade4SHong Zhang 2485cd4cee2dSHong Zhang if (ts->quadraturets) { 24869566063dSJacob Faibussowitsch PetscCall(TSSetUp(ts->quadraturets)); 24879566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_costintegrand)); 24889566063dSJacob Faibussowitsch PetscCall(VecDuplicate(ts->quadraturets->vec_sol, &ts->vec_costintegrand)); 2489cd4cee2dSHong Zhang } 2490cd4cee2dSHong Zhang 24919566063dSJacob Faibussowitsch PetscCall(TSGetRHSJacobian(ts, NULL, NULL, &rhsjac, NULL)); 2492f23ba4b3SHong Zhang if (rhsjac == TSComputeRHSJacobianConstant) { 2493e1244c69SJed Brown Mat Amat, Pmat; 2494e1244c69SJed Brown SNES snes; 24959566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 24969566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(snes, &Amat, &Pmat, NULL, NULL)); 2497e1244c69SJed Brown /* Matching matrices implies that an IJacobian is NOT set, because if it had been set, the IJacobian's matrix would 2498e1244c69SJed Brown * have displaced the RHS matrix */ 2499971015bcSStefano Zampini if (Amat && Amat == ts->Arhs) { 2500abc0d4abSBarry 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 */ 25019566063dSJacob Faibussowitsch PetscCall(MatDuplicate(ts->Arhs, MAT_COPY_VALUES, &Amat)); 25029566063dSJacob Faibussowitsch PetscCall(SNESSetJacobian(snes, Amat, NULL, NULL, NULL)); 25039566063dSJacob Faibussowitsch PetscCall(MatDestroy(&Amat)); 2504e1244c69SJed Brown } 2505971015bcSStefano Zampini if (Pmat && Pmat == ts->Brhs) { 25069566063dSJacob Faibussowitsch PetscCall(MatDuplicate(ts->Brhs, MAT_COPY_VALUES, &Pmat)); 25079566063dSJacob Faibussowitsch PetscCall(SNESSetJacobian(snes, NULL, Pmat, NULL, NULL)); 25089566063dSJacob Faibussowitsch PetscCall(MatDestroy(&Pmat)); 2509e1244c69SJed Brown } 2510e1244c69SJed Brown } 25112ffb9264SLisandro Dalcin 25129566063dSJacob Faibussowitsch PetscCall(TSGetAdapt(ts, &ts->adapt)); 25139566063dSJacob Faibussowitsch PetscCall(TSAdaptSetDefaultType(ts->adapt, ts->default_adapt_type)); 25142ffb9264SLisandro Dalcin 2515dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, setup); 2516277b19d0SLisandro Dalcin 25179566063dSJacob Faibussowitsch PetscCall(TSSetExactFinalTimeDefault(ts)); 25182ffb9264SLisandro Dalcin 2519a6772fa2SLisandro Dalcin /* In the case where we've set a DMTSFunction or what have you, we need the default SNESFunction 25206c6b9e74SPeter Brune to be set right but can't do it elsewhere due to the overreliance on ctx=ts. 25216c6b9e74SPeter Brune */ 25229566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 25239566063dSJacob Faibussowitsch PetscCall(DMSNESGetFunction(dm, &func, NULL)); 25241e66621cSBarry Smith if (!func) PetscCall(DMSNESSetFunction(dm, SNESTSFormFunction, ts)); 25251e66621cSBarry Smith 2526a6772fa2SLisandro 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. 25276c6b9e74SPeter Brune Otherwise, the SNES will use coloring internally to form the Jacobian. 25286c6b9e74SPeter Brune */ 25299566063dSJacob Faibussowitsch PetscCall(DMSNESGetJacobian(dm, &jac, NULL)); 25309566063dSJacob Faibussowitsch PetscCall(DMTSGetIJacobian(dm, &ijac, NULL)); 25319566063dSJacob Faibussowitsch PetscCall(DMTSGetI2Jacobian(dm, &i2jac, NULL)); 25329566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, &rhsjac, NULL)); 25331e66621cSBarry Smith if (!jac && (ijac || i2jac || rhsjac)) PetscCall(DMSNESSetJacobian(dm, SNESTSFormJacobian, ts)); 2534c0517034SDebojyoti Ghosh 2535c0517034SDebojyoti Ghosh /* if time integration scheme has a starting method, call it */ 2536dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, startingmethod); 2537c0517034SDebojyoti Ghosh 2538277b19d0SLisandro Dalcin ts->setupcalled = PETSC_TRUE; 25393ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2540277b19d0SLisandro Dalcin } 2541277b19d0SLisandro Dalcin 2542f6a906c0SBarry Smith /*@ 2543bcf0153eSBarry Smith TSReset - Resets a `TS` context and removes any allocated `Vec`s and `Mat`s. 2544277b19d0SLisandro Dalcin 2545c3339decSBarry Smith Collective 2546277b19d0SLisandro Dalcin 2547277b19d0SLisandro Dalcin Input Parameter: 2548bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2549277b19d0SLisandro Dalcin 2550277b19d0SLisandro Dalcin Level: beginner 2551277b19d0SLisandro Dalcin 25521cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSCreate()`, `TSSetup()`, `TSDestroy()` 2553277b19d0SLisandro Dalcin @*/ 2554d71ae5a4SJacob Faibussowitsch PetscErrorCode TSReset(TS ts) 2555d71ae5a4SJacob Faibussowitsch { 25561d06f6b3SHong Zhang TS_RHSSplitLink ilink = ts->tsrhssplit, next; 2557277b19d0SLisandro Dalcin 2558277b19d0SLisandro Dalcin PetscFunctionBegin; 2559277b19d0SLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2560b18ea86cSHong Zhang 2561dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, reset); 25629566063dSJacob Faibussowitsch if (ts->snes) PetscCall(SNESReset(ts->snes)); 25639566063dSJacob Faibussowitsch if (ts->adapt) PetscCall(TSAdaptReset(ts->adapt)); 2564bbd56ea5SKarl Rupp 25659566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Arhs)); 25669566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Brhs)); 25679566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->Frhs)); 25689566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_sol)); 2569c61711c8SStefano Zampini PetscCall(VecDestroy(&ts->vec_sol0)); 25709566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_dot)); 25719566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vatol)); 25729566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vrtol)); 25739566063dSJacob Faibussowitsch PetscCall(VecDestroyVecs(ts->nwork, &ts->work)); 2574bbd56ea5SKarl Rupp 25759566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Jacprhs)); 25769566063dSJacob Faibussowitsch PetscCall(MatDestroy(&ts->Jacp)); 25771baa6e33SBarry Smith if (ts->forward_solve) PetscCall(TSForwardReset(ts)); 2578cd4cee2dSHong Zhang if (ts->quadraturets) { 25799566063dSJacob Faibussowitsch PetscCall(TSReset(ts->quadraturets)); 25809566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_costintegrand)); 2581cd4cee2dSHong Zhang } 25821d06f6b3SHong Zhang while (ilink) { 25831d06f6b3SHong Zhang next = ilink->next; 25849566063dSJacob Faibussowitsch PetscCall(TSDestroy(&ilink->ts)); 25859566063dSJacob Faibussowitsch PetscCall(PetscFree(ilink->splitname)); 25869566063dSJacob Faibussowitsch PetscCall(ISDestroy(&ilink->is)); 25879566063dSJacob Faibussowitsch PetscCall(PetscFree(ilink)); 25881d06f6b3SHong Zhang ilink = next; 258987f4e208SHong Zhang } 25906bf673ebSJoe Pusztay ts->tsrhssplit = NULL; 2591545aaa6fSHong Zhang ts->num_rhs_splits = 0; 25924a658b32SHong Zhang if (ts->tspan) { 25934a658b32SHong Zhang PetscCall(PetscFree(ts->tspan->span_times)); 25944a658b32SHong Zhang PetscCall(VecDestroyVecs(ts->tspan->num_span_times, &ts->tspan->vecs_sol)); 25954a658b32SHong Zhang PetscCall(PetscFree(ts->tspan)); 25964a658b32SHong Zhang } 2597b3a72457SStefano Zampini ts->rhsjacobian.time = PETSC_MIN_REAL; 2598b3a72457SStefano Zampini ts->rhsjacobian.scale = 1.0; 2599b3a72457SStefano Zampini ts->ijacobian.shift = 1.0; 2600277b19d0SLisandro Dalcin ts->setupcalled = PETSC_FALSE; 26013ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2602d763cef2SBarry Smith } 2603d763cef2SBarry Smith 260414d0ab18SJacob Faibussowitsch static PetscErrorCode TSResizeReset(TS); 260514d0ab18SJacob Faibussowitsch 26060764c050SBarry Smith /*@ 2607d763cef2SBarry Smith TSDestroy - Destroys the timestepper context that was created 2608bcf0153eSBarry Smith with `TSCreate()`. 2609d763cef2SBarry Smith 2610c3339decSBarry Smith Collective 2611d763cef2SBarry Smith 2612d763cef2SBarry Smith Input Parameter: 2613bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2614d763cef2SBarry Smith 2615d763cef2SBarry Smith Level: beginner 2616d763cef2SBarry Smith 26171cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSCreate()`, `TSSetUp()`, `TSSolve()` 2618d763cef2SBarry Smith @*/ 2619d71ae5a4SJacob Faibussowitsch PetscErrorCode TSDestroy(TS *ts) 2620d71ae5a4SJacob Faibussowitsch { 2621d763cef2SBarry Smith PetscFunctionBegin; 26223ba16761SJacob Faibussowitsch if (!*ts) PetscFunctionReturn(PETSC_SUCCESS); 2623ecf68647SHong Zhang PetscValidHeaderSpecific(*ts, TS_CLASSID, 1); 2624f4f49eeaSPierre Jolivet if (--((PetscObject)*ts)->refct > 0) { 26259371c9d4SSatish Balay *ts = NULL; 26263ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 26279371c9d4SSatish Balay } 2628d763cef2SBarry Smith 26299566063dSJacob Faibussowitsch PetscCall(TSReset(*ts)); 26309566063dSJacob Faibussowitsch PetscCall(TSAdjointReset(*ts)); 26311e66621cSBarry Smith if ((*ts)->forward_solve) PetscCall(TSForwardReset(*ts)); 26326bd3a4fdSStefano Zampini PetscCall(TSResizeReset(*ts)); 26331e66621cSBarry Smith 2634e04113cfSBarry Smith /* if memory was published with SAWs then destroy it */ 26359566063dSJacob Faibussowitsch PetscCall(PetscObjectSAWsViewOff((PetscObject)*ts)); 2636f4f49eeaSPierre Jolivet PetscTryTypeMethod(*ts, destroy); 26376d4c513bSLisandro Dalcin 26389566063dSJacob Faibussowitsch PetscCall(TSTrajectoryDestroy(&(*ts)->trajectory)); 2639bc952696SBarry Smith 26409566063dSJacob Faibussowitsch PetscCall(TSAdaptDestroy(&(*ts)->adapt)); 26419566063dSJacob Faibussowitsch PetscCall(TSEventDestroy(&(*ts)->event)); 26426427ac75SLisandro Dalcin 26439566063dSJacob Faibussowitsch PetscCall(SNESDestroy(&(*ts)->snes)); 26444bd3aaa3SHong Zhang PetscCall(SNESDestroy(&(*ts)->snesrhssplit)); 26459566063dSJacob Faibussowitsch PetscCall(DMDestroy(&(*ts)->dm)); 2646f4f49eeaSPierre Jolivet PetscCall(TSMonitorCancel(*ts)); 2647f4f49eeaSPierre Jolivet PetscCall(TSAdjointMonitorCancel(*ts)); 26486d4c513bSLisandro Dalcin 26499566063dSJacob Faibussowitsch PetscCall(TSDestroy(&(*ts)->quadraturets)); 26509566063dSJacob Faibussowitsch PetscCall(PetscHeaderDestroy(ts)); 26513ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2652d763cef2SBarry Smith } 2653d763cef2SBarry Smith 2654d8e5e3e6SSatish Balay /*@ 2655bcf0153eSBarry Smith TSGetSNES - Returns the `SNES` (nonlinear solver) associated with 2656bcf0153eSBarry Smith a `TS` (timestepper) context. Valid only for nonlinear problems. 2657d763cef2SBarry Smith 2658bcf0153eSBarry Smith Not Collective, but snes is parallel if ts is parallel 2659d763cef2SBarry Smith 2660d763cef2SBarry Smith Input Parameter: 2661bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2662d763cef2SBarry Smith 2663d763cef2SBarry Smith Output Parameter: 2664d763cef2SBarry Smith . snes - the nonlinear solver context 2665d763cef2SBarry Smith 2666d763cef2SBarry Smith Level: beginner 2667d763cef2SBarry Smith 2668bcf0153eSBarry Smith Notes: 2669bcf0153eSBarry Smith The user can then directly manipulate the `SNES` context to set various 2670bcf0153eSBarry Smith options, etc. Likewise, the user can then extract and manipulate the 2671bcf0153eSBarry Smith `KSP`, and `PC` contexts as well. 2672bcf0153eSBarry Smith 2673bcf0153eSBarry Smith `TSGetSNES()` does not work for integrators that do not use `SNES`; in 2674195e9b02SBarry Smith this case `TSGetSNES()` returns `NULL` in `snes`. 2675bcf0153eSBarry Smith 26761cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `SNES`, `TSCreate()`, `TSSetUp()`, `TSSolve()` 2677d763cef2SBarry Smith @*/ 2678d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSNES(TS ts, SNES *snes) 2679d71ae5a4SJacob Faibussowitsch { 2680d763cef2SBarry Smith PetscFunctionBegin; 26810700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 26824f572ea9SToby Isaac PetscAssertPointer(snes, 2); 2683d372ba47SLisandro Dalcin if (!ts->snes) { 26849566063dSJacob Faibussowitsch PetscCall(SNESCreate(PetscObjectComm((PetscObject)ts), &ts->snes)); 26859566063dSJacob Faibussowitsch PetscCall(PetscObjectSetOptions((PetscObject)ts->snes, ((PetscObject)ts)->options)); 26869566063dSJacob Faibussowitsch PetscCall(SNESSetFunction(ts->snes, NULL, SNESTSFormFunction, ts)); 26879566063dSJacob Faibussowitsch PetscCall(PetscObjectIncrementTabLevel((PetscObject)ts->snes, (PetscObject)ts, 1)); 26884bd3aaa3SHong Zhang if (ts->dm) PetscCall(SNESSetDM(ts->snes, ts->dm)); 26891e66621cSBarry Smith if (ts->problem_type == TS_LINEAR) PetscCall(SNESSetType(ts->snes, SNESKSPONLY)); 2690d372ba47SLisandro Dalcin } 2691d763cef2SBarry Smith *snes = ts->snes; 26923ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2693d763cef2SBarry Smith } 2694d763cef2SBarry Smith 2695deb2cd25SJed Brown /*@ 2696bcf0153eSBarry Smith TSSetSNES - Set the `SNES` (nonlinear solver) to be used by the timestepping context 2697deb2cd25SJed Brown 2698deb2cd25SJed Brown Collective 2699deb2cd25SJed Brown 2700d8d19677SJose E. Roman Input Parameters: 2701bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2702deb2cd25SJed Brown - snes - the nonlinear solver context 2703deb2cd25SJed Brown 2704deb2cd25SJed Brown Level: developer 2705deb2cd25SJed Brown 2706bcf0153eSBarry Smith Note: 2707bcf0153eSBarry Smith Most users should have the `TS` created by calling `TSGetSNES()` 2708bcf0153eSBarry Smith 27091cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `SNES`, `TSCreate()`, `TSSetUp()`, `TSSolve()`, `TSGetSNES()` 2710deb2cd25SJed Brown @*/ 2711d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetSNES(TS ts, SNES snes) 2712d71ae5a4SJacob Faibussowitsch { 2713d1e9a80fSBarry Smith PetscErrorCode (*func)(SNES, Vec, Mat, Mat, void *); 2714deb2cd25SJed Brown 2715deb2cd25SJed Brown PetscFunctionBegin; 2716deb2cd25SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2717deb2cd25SJed Brown PetscValidHeaderSpecific(snes, SNES_CLASSID, 2); 27189566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)snes)); 27199566063dSJacob Faibussowitsch PetscCall(SNESDestroy(&ts->snes)); 2720bbd56ea5SKarl Rupp 2721deb2cd25SJed Brown ts->snes = snes; 2722bbd56ea5SKarl Rupp 27239566063dSJacob Faibussowitsch PetscCall(SNESSetFunction(ts->snes, NULL, SNESTSFormFunction, ts)); 27249566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(ts->snes, NULL, NULL, &func, NULL)); 27251e66621cSBarry Smith if (func == SNESTSFormJacobian) PetscCall(SNESSetJacobian(ts->snes, NULL, NULL, SNESTSFormJacobian, ts)); 27263ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2727deb2cd25SJed Brown } 2728deb2cd25SJed Brown 2729d8e5e3e6SSatish Balay /*@ 2730bcf0153eSBarry Smith TSGetKSP - Returns the `KSP` (linear solver) associated with 2731bcf0153eSBarry Smith a `TS` (timestepper) context. 2732d763cef2SBarry Smith 2733195e9b02SBarry Smith Not Collective, but `ksp` 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: 273994b7f48cSBarry Smith . ksp - the nonlinear solver context 2740d763cef2SBarry Smith 2741d763cef2SBarry Smith Level: beginner 2742d763cef2SBarry Smith 2743bcf0153eSBarry Smith Notes: 2744bcf0153eSBarry Smith The user can then directly manipulate the `KSP` context to set various 2745bcf0153eSBarry Smith options, etc. Likewise, the user can then extract and manipulate the 2746bcf0153eSBarry Smith `PC` context as well. 2747bcf0153eSBarry Smith 2748bcf0153eSBarry Smith `TSGetKSP()` does not work for integrators that do not use `KSP`; 2749195e9b02SBarry Smith in this case `TSGetKSP()` returns `NULL` in `ksp`. 2750bcf0153eSBarry Smith 27511cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `SNES`, `KSP`, `TSCreate()`, `TSSetUp()`, `TSSolve()`, `TSGetSNES()` 2752d763cef2SBarry Smith @*/ 2753d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetKSP(TS ts, KSP *ksp) 2754d71ae5a4SJacob Faibussowitsch { 2755089b2837SJed Brown SNES snes; 2756d372ba47SLisandro Dalcin 2757d763cef2SBarry Smith PetscFunctionBegin; 27580700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 27594f572ea9SToby Isaac PetscAssertPointer(ksp, 2); 27603c633725SBarry Smith PetscCheck(((PetscObject)ts)->type_name, PETSC_COMM_SELF, PETSC_ERR_ARG_NULL, "KSP is not created yet. Call TSSetType() first"); 27613c633725SBarry Smith PetscCheck(ts->problem_type == TS_LINEAR, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Linear only; use TSGetSNES()"); 27629566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 27639566063dSJacob Faibussowitsch PetscCall(SNESGetKSP(snes, ksp)); 27643ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2765d763cef2SBarry Smith } 2766d763cef2SBarry Smith 2767d763cef2SBarry Smith /* ----------- Routines to set solver parameters ---------- */ 2768d763cef2SBarry Smith 2769adb62b0dSMatthew Knepley /*@ 2770618ce8baSLisandro Dalcin TSSetMaxSteps - Sets the maximum number of steps to use. 2771618ce8baSLisandro Dalcin 2772c3339decSBarry Smith Logically Collective 2773618ce8baSLisandro Dalcin 2774618ce8baSLisandro Dalcin Input Parameters: 2775bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2776618ce8baSLisandro Dalcin - maxsteps - maximum number of steps to use 2777618ce8baSLisandro Dalcin 2778bcf0153eSBarry Smith Options Database Key: 2779618ce8baSLisandro Dalcin . -ts_max_steps <maxsteps> - Sets maxsteps 2780618ce8baSLisandro Dalcin 2781618ce8baSLisandro Dalcin Level: intermediate 2782618ce8baSLisandro Dalcin 2783bcf0153eSBarry Smith Note: 278409cb0f53SBarry Smith Use `PETSC_DETERMINE` to reset the maximum number of steps to the default from when the object's type was set 278509cb0f53SBarry Smith 278609cb0f53SBarry Smith The default maximum number of steps is 5,000 278709cb0f53SBarry Smith 278809cb0f53SBarry Smith Fortran Note: 278909cb0f53SBarry Smith Use `PETSC_DETERMINE_INTEGER` 2790bcf0153eSBarry Smith 27911cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetMaxSteps()`, `TSSetMaxTime()`, `TSSetExactFinalTime()` 2792618ce8baSLisandro Dalcin @*/ 2793d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMaxSteps(TS ts, PetscInt maxsteps) 2794d71ae5a4SJacob Faibussowitsch { 2795618ce8baSLisandro Dalcin PetscFunctionBegin; 2796618ce8baSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2797618ce8baSLisandro Dalcin PetscValidLogicalCollectiveInt(ts, maxsteps, 2); 279809cb0f53SBarry Smith if (maxsteps == PETSC_DETERMINE) { 279909cb0f53SBarry Smith ts->max_steps = ts->default_max_steps; 280009cb0f53SBarry Smith } else { 28013c633725SBarry Smith PetscCheck(maxsteps >= 0, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Maximum number of steps must be non-negative"); 2802618ce8baSLisandro Dalcin ts->max_steps = maxsteps; 280309cb0f53SBarry Smith } 28043ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2805618ce8baSLisandro Dalcin } 2806618ce8baSLisandro Dalcin 2807618ce8baSLisandro Dalcin /*@ 2808618ce8baSLisandro Dalcin TSGetMaxSteps - Gets the maximum number of steps to use. 2809618ce8baSLisandro Dalcin 2810618ce8baSLisandro Dalcin Not Collective 2811618ce8baSLisandro Dalcin 28122fe279fdSBarry Smith Input Parameter: 2813bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2814618ce8baSLisandro Dalcin 2815618ce8baSLisandro Dalcin Output Parameter: 2816618ce8baSLisandro Dalcin . maxsteps - maximum number of steps to use 2817618ce8baSLisandro Dalcin 2818618ce8baSLisandro Dalcin Level: advanced 2819618ce8baSLisandro Dalcin 28201cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetMaxSteps()`, `TSGetMaxTime()`, `TSSetMaxTime()` 2821618ce8baSLisandro Dalcin @*/ 2822d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetMaxSteps(TS ts, PetscInt *maxsteps) 2823d71ae5a4SJacob Faibussowitsch { 2824618ce8baSLisandro Dalcin PetscFunctionBegin; 2825618ce8baSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 28264f572ea9SToby Isaac PetscAssertPointer(maxsteps, 2); 2827618ce8baSLisandro Dalcin *maxsteps = ts->max_steps; 28283ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2829618ce8baSLisandro Dalcin } 2830618ce8baSLisandro Dalcin 2831618ce8baSLisandro Dalcin /*@ 2832618ce8baSLisandro Dalcin TSSetMaxTime - Sets the maximum (or final) time for timestepping. 2833618ce8baSLisandro Dalcin 2834c3339decSBarry Smith Logically Collective 2835618ce8baSLisandro Dalcin 2836618ce8baSLisandro Dalcin Input Parameters: 2837bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 2838618ce8baSLisandro Dalcin - maxtime - final time to step to 2839618ce8baSLisandro Dalcin 2840bcf0153eSBarry Smith Options Database Key: 2841ef85077eSLisandro Dalcin . -ts_max_time <maxtime> - Sets maxtime 2842618ce8baSLisandro Dalcin 2843bcf0153eSBarry Smith Level: intermediate 2844bcf0153eSBarry Smith 2845618ce8baSLisandro Dalcin Notes: 284609cb0f53SBarry Smith Use `PETSC_DETERMINE` to reset the maximum time to the default from when the object's type was set 284709cb0f53SBarry Smith 2848618ce8baSLisandro Dalcin The default maximum time is 5.0 2849618ce8baSLisandro Dalcin 285009cb0f53SBarry Smith Fortran Note: 285109cb0f53SBarry Smith Use `PETSC_DETERMINE_REAL` 285209cb0f53SBarry Smith 28531cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetMaxTime()`, `TSSetMaxSteps()`, `TSSetExactFinalTime()` 2854618ce8baSLisandro Dalcin @*/ 2855d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMaxTime(TS ts, PetscReal maxtime) 2856d71ae5a4SJacob Faibussowitsch { 2857618ce8baSLisandro Dalcin PetscFunctionBegin; 2858618ce8baSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2859618ce8baSLisandro Dalcin PetscValidLogicalCollectiveReal(ts, maxtime, 2); 286009cb0f53SBarry Smith if (maxtime == PETSC_DETERMINE) { 286109cb0f53SBarry Smith ts->max_time = ts->default_max_time; 286209cb0f53SBarry Smith } else { 2863618ce8baSLisandro Dalcin ts->max_time = maxtime; 286409cb0f53SBarry Smith } 28653ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2866618ce8baSLisandro Dalcin } 2867618ce8baSLisandro Dalcin 2868618ce8baSLisandro Dalcin /*@ 2869618ce8baSLisandro Dalcin TSGetMaxTime - Gets the maximum (or final) time for timestepping. 2870618ce8baSLisandro Dalcin 2871618ce8baSLisandro Dalcin Not Collective 2872618ce8baSLisandro Dalcin 28732fe279fdSBarry Smith Input Parameter: 2874bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 2875618ce8baSLisandro Dalcin 2876618ce8baSLisandro Dalcin Output Parameter: 2877618ce8baSLisandro Dalcin . maxtime - final time to step to 2878618ce8baSLisandro Dalcin 2879618ce8baSLisandro Dalcin Level: advanced 2880618ce8baSLisandro Dalcin 28811cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetMaxTime()`, `TSGetMaxSteps()`, `TSSetMaxSteps()` 2882618ce8baSLisandro Dalcin @*/ 2883d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetMaxTime(TS ts, PetscReal *maxtime) 2884d71ae5a4SJacob Faibussowitsch { 2885618ce8baSLisandro Dalcin PetscFunctionBegin; 2886618ce8baSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 28874f572ea9SToby Isaac PetscAssertPointer(maxtime, 2); 2888618ce8baSLisandro Dalcin *maxtime = ts->max_time; 28893ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2890618ce8baSLisandro Dalcin } 2891618ce8baSLisandro Dalcin 289214d0ab18SJacob Faibussowitsch // PetscClangLinter pragma disable: -fdoc-* 2893618ce8baSLisandro Dalcin /*@ 2894bcf0153eSBarry Smith TSSetInitialTimeStep - Deprecated, use `TSSetTime()` and `TSSetTimeStep()`. 2895edc382c3SSatish Balay 2896edc382c3SSatish Balay Level: deprecated 2897edc382c3SSatish Balay 2898aaa6c58dSLisandro Dalcin @*/ 2899d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetInitialTimeStep(TS ts, PetscReal initial_time, PetscReal time_step) 2900d71ae5a4SJacob Faibussowitsch { 2901aaa6c58dSLisandro Dalcin PetscFunctionBegin; 2902aaa6c58dSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 29039566063dSJacob Faibussowitsch PetscCall(TSSetTime(ts, initial_time)); 29049566063dSJacob Faibussowitsch PetscCall(TSSetTimeStep(ts, time_step)); 29053ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2906aaa6c58dSLisandro Dalcin } 2907aaa6c58dSLisandro Dalcin 290814d0ab18SJacob Faibussowitsch // PetscClangLinter pragma disable: -fdoc-* 2909aaa6c58dSLisandro Dalcin /*@ 2910bcf0153eSBarry Smith TSGetDuration - Deprecated, use `TSGetMaxSteps()` and `TSGetMaxTime()`. 2911edc382c3SSatish Balay 2912edc382c3SSatish Balay Level: deprecated 2913edc382c3SSatish Balay 2914adb62b0dSMatthew Knepley @*/ 2915d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetDuration(TS ts, PetscInt *maxsteps, PetscReal *maxtime) 2916d71ae5a4SJacob Faibussowitsch { 2917adb62b0dSMatthew Knepley PetscFunctionBegin; 29180700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 2919abc0a331SBarry Smith if (maxsteps) { 29204f572ea9SToby Isaac PetscAssertPointer(maxsteps, 2); 2921adb62b0dSMatthew Knepley *maxsteps = ts->max_steps; 2922adb62b0dSMatthew Knepley } 2923abc0a331SBarry Smith if (maxtime) { 29244f572ea9SToby Isaac PetscAssertPointer(maxtime, 3); 2925adb62b0dSMatthew Knepley *maxtime = ts->max_time; 2926adb62b0dSMatthew Knepley } 29273ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2928adb62b0dSMatthew Knepley } 2929adb62b0dSMatthew Knepley 293014d0ab18SJacob Faibussowitsch // PetscClangLinter pragma disable: -fdoc-* 2931d763cef2SBarry Smith /*@ 2932bcf0153eSBarry Smith TSSetDuration - Deprecated, use `TSSetMaxSteps()` and `TSSetMaxTime()`. 2933edc382c3SSatish Balay 2934edc382c3SSatish Balay Level: deprecated 2935edc382c3SSatish Balay 2936d763cef2SBarry Smith @*/ 2937d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetDuration(TS ts, PetscInt maxsteps, PetscReal maxtime) 2938d71ae5a4SJacob Faibussowitsch { 2939d763cef2SBarry Smith PetscFunctionBegin; 294009cb0f53SBarry Smith if (maxsteps != (PetscInt)PETSC_CURRENT) PetscCall(TSSetMaxSteps(ts, maxsteps)); 294109cb0f53SBarry Smith if (maxtime != (PetscReal)PETSC_CURRENT) PetscCall(TSSetMaxTime(ts, maxtime)); 29423ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2943d763cef2SBarry Smith } 2944d763cef2SBarry Smith 294514d0ab18SJacob Faibussowitsch // PetscClangLinter pragma disable: -fdoc-* 2946d763cef2SBarry Smith /*@ 2947bcf0153eSBarry Smith TSGetTimeStepNumber - Deprecated, use `TSGetStepNumber()`. 2948edc382c3SSatish Balay 2949edc382c3SSatish Balay Level: deprecated 2950edc382c3SSatish Balay 29515c5f5948SLisandro Dalcin @*/ 2952d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeStepNumber(TS ts, PetscInt *steps) 2953d71ae5a4SJacob Faibussowitsch { 29549371c9d4SSatish Balay return TSGetStepNumber(ts, steps); 29559371c9d4SSatish Balay } 29565c5f5948SLisandro Dalcin 295714d0ab18SJacob Faibussowitsch // PetscClangLinter pragma disable: -fdoc-* 295819eac22cSLisandro Dalcin /*@ 2959bcf0153eSBarry Smith TSGetTotalSteps - Deprecated, use `TSGetStepNumber()`. 2960edc382c3SSatish Balay 2961edc382c3SSatish Balay Level: deprecated 2962edc382c3SSatish Balay 29634f4e0956SLisandro Dalcin @*/ 2964d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTotalSteps(TS ts, PetscInt *steps) 2965d71ae5a4SJacob Faibussowitsch { 29669371c9d4SSatish Balay return TSGetStepNumber(ts, steps); 29679371c9d4SSatish Balay } 29684f4e0956SLisandro Dalcin 29694f4e0956SLisandro Dalcin /*@ 2970d763cef2SBarry Smith TSSetSolution - Sets the initial solution vector 2971bcf0153eSBarry Smith for use by the `TS` routines. 2972d763cef2SBarry Smith 2973c3339decSBarry Smith Logically Collective 2974d763cef2SBarry Smith 2975d763cef2SBarry Smith Input Parameters: 2976bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 29770910c330SBarry Smith - u - the solution vector 2978d763cef2SBarry Smith 2979d763cef2SBarry Smith Level: beginner 2980d763cef2SBarry Smith 29811cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetSolutionFunction()`, `TSGetSolution()`, `TSCreate()` 2982d763cef2SBarry Smith @*/ 2983d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetSolution(TS ts, Vec u) 2984d71ae5a4SJacob Faibussowitsch { 2985496e6a7aSJed Brown DM dm; 29868737fe31SLisandro Dalcin 2987d763cef2SBarry Smith PetscFunctionBegin; 29880700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 29890910c330SBarry Smith PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 29909566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)u)); 29919566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vec_sol)); 29920910c330SBarry Smith ts->vec_sol = u; 2993bbd56ea5SKarl Rupp 29949566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 29959566063dSJacob Faibussowitsch PetscCall(DMShellSetGlobalVector(dm, u)); 29963ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 2997d763cef2SBarry Smith } 2998d763cef2SBarry Smith 2999ac226902SBarry Smith /*@C 3000000e7ae3SMatthew Knepley TSSetPreStep - Sets the general-purpose function 30013f2090d5SJed Brown called once at the beginning of each time step. 3002000e7ae3SMatthew Knepley 3003c3339decSBarry Smith Logically Collective 3004000e7ae3SMatthew Knepley 3005000e7ae3SMatthew Knepley Input Parameters: 3006bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 3007000e7ae3SMatthew Knepley - func - The function 3008000e7ae3SMatthew Knepley 300920f4b53cSBarry Smith Calling sequence of `func`: 301014d0ab18SJacob Faibussowitsch . ts - the `TS` context 3011000e7ae3SMatthew Knepley 3012000e7ae3SMatthew Knepley Level: intermediate 3013000e7ae3SMatthew Knepley 30141cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetPreStage()`, `TSSetPostStage()`, `TSSetPostStep()`, `TSStep()`, `TSRestartStep()` 3015000e7ae3SMatthew Knepley @*/ 301614d0ab18SJacob Faibussowitsch PetscErrorCode TSSetPreStep(TS ts, PetscErrorCode (*func)(TS ts)) 3017d71ae5a4SJacob Faibussowitsch { 3018000e7ae3SMatthew Knepley PetscFunctionBegin; 30190700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3020ae60f76fSBarry Smith ts->prestep = func; 30213ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3022000e7ae3SMatthew Knepley } 3023000e7ae3SMatthew Knepley 302409ee8438SJed Brown /*@ 3025bcf0153eSBarry Smith TSPreStep - Runs the user-defined pre-step function provided with `TSSetPreStep()` 30263f2090d5SJed Brown 3027c3339decSBarry Smith Collective 30283f2090d5SJed Brown 30292fe279fdSBarry Smith Input Parameter: 3030bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 30313f2090d5SJed Brown 30323f2090d5SJed Brown Level: developer 30333f2090d5SJed Brown 3034bcf0153eSBarry Smith Note: 3035bcf0153eSBarry Smith `TSPreStep()` is typically used within time stepping implementations, 3036bcf0153eSBarry Smith so most users would not generally call this routine themselves. 3037bcf0153eSBarry Smith 30381cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetPreStep()`, `TSPreStage()`, `TSPostStage()`, `TSPostStep()` 30393f2090d5SJed Brown @*/ 3040d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPreStep(TS ts) 3041d71ae5a4SJacob Faibussowitsch { 30423f2090d5SJed Brown PetscFunctionBegin; 30430700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3044ae60f76fSBarry Smith if (ts->prestep) { 30455efd42a4SStefano Zampini Vec U; 3046ef8d1ce0SJohann Rudi PetscObjectId idprev; 3047ef8d1ce0SJohann Rudi PetscBool sameObject; 30485efd42a4SStefano Zampini PetscObjectState sprev, spost; 30495efd42a4SStefano Zampini 30509566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 30519566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &idprev)); 30529566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &sprev)); 305325e27a38SBarry Smith PetscCallBack("TS callback preset", (*ts->prestep)(ts)); 30549566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 30559566063dSJacob Faibussowitsch PetscCall(PetscObjectCompareId((PetscObject)U, idprev, &sameObject)); 30569566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &spost)); 30579566063dSJacob Faibussowitsch if (!sameObject || sprev != spost) PetscCall(TSRestartStep(ts)); 3058312ce896SJed Brown } 30593ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 30603f2090d5SJed Brown } 30613f2090d5SJed Brown 3062b8123daeSJed Brown /*@C 3063b8123daeSJed Brown TSSetPreStage - Sets the general-purpose function 3064b8123daeSJed Brown called once at the beginning of each stage. 3065b8123daeSJed Brown 3066c3339decSBarry Smith Logically Collective 3067b8123daeSJed Brown 3068b8123daeSJed Brown Input Parameters: 3069bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 3070b8123daeSJed Brown - func - The function 3071b8123daeSJed Brown 307220f4b53cSBarry Smith Calling sequence of `func`: 307314d0ab18SJacob Faibussowitsch + ts - the `TS` context 307414d0ab18SJacob Faibussowitsch - stagetime - the stage time 3075b8123daeSJed Brown 3076b8123daeSJed Brown Level: intermediate 3077b8123daeSJed Brown 3078b8123daeSJed Brown Note: 3079b8123daeSJed Brown There may be several stages per time step. If the solve for a given stage fails, the step may be rejected and retried. 3080bcf0153eSBarry Smith The time step number being computed can be queried using `TSGetStepNumber()` and the total size of the step being 3081bcf0153eSBarry Smith attempted can be obtained using `TSGetTimeStep()`. The time at the start of the step is available via `TSGetTime()`. 3082b8123daeSJed Brown 30831cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetPostStage()`, `TSSetPreStep()`, `TSSetPostStep()`, `TSGetApplicationContext()` 3084b8123daeSJed Brown @*/ 308514d0ab18SJacob Faibussowitsch PetscErrorCode TSSetPreStage(TS ts, PetscErrorCode (*func)(TS ts, PetscReal stagetime)) 3086d71ae5a4SJacob Faibussowitsch { 3087b8123daeSJed Brown PetscFunctionBegin; 3088b8123daeSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3089ae60f76fSBarry Smith ts->prestage = func; 30903ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3091b8123daeSJed Brown } 3092b8123daeSJed Brown 30939be3e283SDebojyoti Ghosh /*@C 3094bcf0153eSBarry Smith TSSetPostStage - Sets the general-purpose function, provided with `TSSetPostStep()`, 30959be3e283SDebojyoti Ghosh called once at the end of each stage. 30969be3e283SDebojyoti Ghosh 3097c3339decSBarry Smith Logically Collective 30989be3e283SDebojyoti Ghosh 30999be3e283SDebojyoti Ghosh Input Parameters: 3100bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 31019be3e283SDebojyoti Ghosh - func - The function 31029be3e283SDebojyoti Ghosh 310320f4b53cSBarry Smith Calling sequence of `func`: 310414d0ab18SJacob Faibussowitsch + ts - the `TS` context 310514d0ab18SJacob Faibussowitsch . stagetime - the stage time 310614d0ab18SJacob Faibussowitsch . stageindex - the stage index 310714d0ab18SJacob Faibussowitsch - Y - Array of vectors (of size = total number of stages) with the stage solutions 31089be3e283SDebojyoti Ghosh 31099be3e283SDebojyoti Ghosh Level: intermediate 31109be3e283SDebojyoti Ghosh 31119be3e283SDebojyoti Ghosh Note: 31129be3e283SDebojyoti Ghosh There may be several stages per time step. If the solve for a given stage fails, the step may be rejected and retried. 3113bcf0153eSBarry Smith The time step number being computed can be queried using `TSGetStepNumber()` and the total size of the step being 3114bcf0153eSBarry Smith attempted can be obtained using `TSGetTimeStep()`. The time at the start of the step is available via `TSGetTime()`. 31159be3e283SDebojyoti Ghosh 31161cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetPreStage()`, `TSSetPreStep()`, `TSSetPostStep()`, `TSGetApplicationContext()` 31179be3e283SDebojyoti Ghosh @*/ 311814d0ab18SJacob Faibussowitsch PetscErrorCode TSSetPostStage(TS ts, PetscErrorCode (*func)(TS ts, PetscReal stagetime, PetscInt stageindex, Vec *Y)) 3119d71ae5a4SJacob Faibussowitsch { 31209be3e283SDebojyoti Ghosh PetscFunctionBegin; 31219be3e283SDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 31229be3e283SDebojyoti Ghosh ts->poststage = func; 31233ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 31249be3e283SDebojyoti Ghosh } 31259be3e283SDebojyoti Ghosh 3126c688d042SShri Abhyankar /*@C 3127c688d042SShri Abhyankar TSSetPostEvaluate - Sets the general-purpose function 3128c688d042SShri Abhyankar called once at the end of each step evaluation. 3129c688d042SShri Abhyankar 3130c3339decSBarry Smith Logically Collective 3131c688d042SShri Abhyankar 3132c688d042SShri Abhyankar Input Parameters: 3133bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 3134c688d042SShri Abhyankar - func - The function 3135c688d042SShri Abhyankar 313620f4b53cSBarry Smith Calling sequence of `func`: 313714d0ab18SJacob Faibussowitsch . ts - the `TS` context 3138c688d042SShri Abhyankar 3139c688d042SShri Abhyankar Level: intermediate 3140c688d042SShri Abhyankar 3141c688d042SShri Abhyankar Note: 3142bcf0153eSBarry Smith Semantically, `TSSetPostEvaluate()` differs from `TSSetPostStep()` since the function it sets is called before event-handling 3143bcf0153eSBarry Smith thus guaranteeing the same solution (computed by the time-stepper) will be passed to it. On the other hand, `TSPostStep()` 3144bcf0153eSBarry Smith may be passed a different solution, possibly changed by the event handler. `TSPostEvaluate()` is called after the next step 3145bcf0153eSBarry Smith solution is evaluated allowing to modify it, if need be. The solution can be obtained with `TSGetSolution()`, the time step 3146bcf0153eSBarry Smith with `TSGetTimeStep()`, and the time at the start of the step is available via `TSGetTime()` 3147c688d042SShri Abhyankar 31481cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetPreStage()`, `TSSetPreStep()`, `TSSetPostStep()`, `TSGetApplicationContext()` 3149c688d042SShri Abhyankar @*/ 315014d0ab18SJacob Faibussowitsch PetscErrorCode TSSetPostEvaluate(TS ts, PetscErrorCode (*func)(TS ts)) 3151d71ae5a4SJacob Faibussowitsch { 3152c688d042SShri Abhyankar PetscFunctionBegin; 3153c688d042SShri Abhyankar PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3154c688d042SShri Abhyankar ts->postevaluate = func; 31553ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3156c688d042SShri Abhyankar } 3157c688d042SShri Abhyankar 3158b8123daeSJed Brown /*@ 3159bcf0153eSBarry Smith TSPreStage - Runs the user-defined pre-stage function set using `TSSetPreStage()` 3160b8123daeSJed Brown 3161c3339decSBarry Smith Collective 3162b8123daeSJed Brown 3163b8123daeSJed Brown Input Parameters: 316414d0ab18SJacob Faibussowitsch + ts - The `TS` context obtained from `TSCreate()` 316514d0ab18SJacob Faibussowitsch - stagetime - The absolute time of the current stage 3166b8123daeSJed Brown 3167b8123daeSJed Brown Level: developer 3168b8123daeSJed Brown 3169bcf0153eSBarry Smith Note: 3170bcf0153eSBarry Smith `TSPreStage()` is typically used within time stepping implementations, 3171bcf0153eSBarry Smith most users would not generally call this routine themselves. 3172bcf0153eSBarry Smith 31731cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSPostStage()`, `TSSetPreStep()`, `TSPreStep()`, `TSPostStep()` 3174b8123daeSJed Brown @*/ 3175d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPreStage(TS ts, PetscReal stagetime) 3176d71ae5a4SJacob Faibussowitsch { 3177b8123daeSJed Brown PetscFunctionBegin; 3178b8123daeSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 31791e66621cSBarry Smith if (ts->prestage) PetscCallBack("TS callback prestage", (*ts->prestage)(ts, stagetime)); 31803ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3181b8123daeSJed Brown } 3182b8123daeSJed Brown 31839be3e283SDebojyoti Ghosh /*@ 3184bcf0153eSBarry Smith TSPostStage - Runs the user-defined post-stage function set using `TSSetPostStage()` 31859be3e283SDebojyoti Ghosh 3186c3339decSBarry Smith Collective 31879be3e283SDebojyoti Ghosh 31889be3e283SDebojyoti Ghosh Input Parameters: 318914d0ab18SJacob Faibussowitsch + ts - The `TS` context obtained from `TSCreate()` 319014d0ab18SJacob Faibussowitsch . stagetime - The absolute time of the current stage 319114d0ab18SJacob Faibussowitsch . stageindex - Stage number 319214d0ab18SJacob Faibussowitsch - Y - Array of vectors (of size = total number of stages) with the stage solutions 31939be3e283SDebojyoti Ghosh 31949be3e283SDebojyoti Ghosh Level: developer 31959be3e283SDebojyoti Ghosh 3196bcf0153eSBarry Smith Note: 3197bcf0153eSBarry Smith `TSPostStage()` is typically used within time stepping implementations, 3198bcf0153eSBarry Smith most users would not generally call this routine themselves. 3199bcf0153eSBarry Smith 32001cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSPreStage()`, `TSSetPreStep()`, `TSPreStep()`, `TSPostStep()` 32019be3e283SDebojyoti Ghosh @*/ 3202d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPostStage(TS ts, PetscReal stagetime, PetscInt stageindex, Vec *Y) 3203d71ae5a4SJacob Faibussowitsch { 32049be3e283SDebojyoti Ghosh PetscFunctionBegin; 32059be3e283SDebojyoti Ghosh PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 32061e66621cSBarry Smith if (ts->poststage) PetscCallBack("TS callback poststage", (*ts->poststage)(ts, stagetime, stageindex, Y)); 32073ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 32089be3e283SDebojyoti Ghosh } 32099be3e283SDebojyoti Ghosh 3210c688d042SShri Abhyankar /*@ 3211bcf0153eSBarry Smith TSPostEvaluate - Runs the user-defined post-evaluate function set using `TSSetPostEvaluate()` 3212c688d042SShri Abhyankar 3213c3339decSBarry Smith Collective 3214c688d042SShri Abhyankar 32152fe279fdSBarry Smith Input Parameter: 3216bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 3217c688d042SShri Abhyankar 3218c688d042SShri Abhyankar Level: developer 3219c688d042SShri Abhyankar 3220bcf0153eSBarry Smith Note: 3221bcf0153eSBarry Smith `TSPostEvaluate()` is typically used within time stepping implementations, 3222bcf0153eSBarry Smith most users would not generally call this routine themselves. 3223bcf0153eSBarry Smith 32241cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetPostEvaluate()`, `TSSetPreStep()`, `TSPreStep()`, `TSPostStep()` 3225c688d042SShri Abhyankar @*/ 3226d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPostEvaluate(TS ts) 3227d71ae5a4SJacob Faibussowitsch { 3228c688d042SShri Abhyankar PetscFunctionBegin; 3229c688d042SShri Abhyankar PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3230c688d042SShri Abhyankar if (ts->postevaluate) { 3231dcb233daSLisandro Dalcin Vec U; 3232dcb233daSLisandro Dalcin PetscObjectState sprev, spost; 3233dcb233daSLisandro Dalcin 32349566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 32359566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &sprev)); 323625e27a38SBarry Smith PetscCallBack("TS callback postevaluate", (*ts->postevaluate)(ts)); 32379566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &spost)); 32389566063dSJacob Faibussowitsch if (sprev != spost) PetscCall(TSRestartStep(ts)); 3239c688d042SShri Abhyankar } 32403ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3241c688d042SShri Abhyankar } 3242c688d042SShri Abhyankar 3243ac226902SBarry Smith /*@C 3244000e7ae3SMatthew Knepley TSSetPostStep - Sets the general-purpose function 32453f2090d5SJed Brown called once at the end of each time step. 3246000e7ae3SMatthew Knepley 3247c3339decSBarry Smith Logically Collective 3248000e7ae3SMatthew Knepley 3249000e7ae3SMatthew Knepley Input Parameters: 3250bcf0153eSBarry Smith + ts - The `TS` context obtained from `TSCreate()` 3251000e7ae3SMatthew Knepley - func - The function 3252000e7ae3SMatthew Knepley 325320f4b53cSBarry Smith Calling sequence of `func`: 325414d0ab18SJacob Faibussowitsch . ts - the `TS` context 3255000e7ae3SMatthew Knepley 3256000e7ae3SMatthew Knepley Level: intermediate 3257000e7ae3SMatthew Knepley 3258bcf0153eSBarry Smith Note: 3259195e9b02SBarry Smith The function set by `TSSetPostStep()` is called after each successful step. The solution vector 3260bcf0153eSBarry Smith obtained by `TSGetSolution()` may be different than that computed at the step end if the event handler 3261bcf0153eSBarry Smith locates an event and `TSPostEvent()` modifies it. Use `TSSetPostEvaluate()` if an unmodified solution is needed instead. 3262bcf0153eSBarry Smith 32631cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetPreStep()`, `TSSetPreStage()`, `TSSetPostEvaluate()`, `TSGetTimeStep()`, `TSGetStepNumber()`, `TSGetTime()`, `TSRestartStep()` 3264000e7ae3SMatthew Knepley @*/ 326514d0ab18SJacob Faibussowitsch PetscErrorCode TSSetPostStep(TS ts, PetscErrorCode (*func)(TS ts)) 3266d71ae5a4SJacob Faibussowitsch { 3267000e7ae3SMatthew Knepley PetscFunctionBegin; 32680700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3269ae60f76fSBarry Smith ts->poststep = func; 32703ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3271000e7ae3SMatthew Knepley } 3272000e7ae3SMatthew Knepley 327309ee8438SJed Brown /*@ 3274195e9b02SBarry Smith TSPostStep - Runs the user-defined post-step function that was set with `TSSetPostStep()` 32753f2090d5SJed Brown 3276c3339decSBarry Smith Collective 32773f2090d5SJed Brown 32782fe279fdSBarry Smith Input Parameter: 3279bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 32803f2090d5SJed Brown 3281bcf0153eSBarry Smith Note: 3282bcf0153eSBarry Smith `TSPostStep()` is typically used within time stepping implementations, 32833f2090d5SJed Brown so most users would not generally call this routine themselves. 32843f2090d5SJed Brown 32853f2090d5SJed Brown Level: developer 32863f2090d5SJed Brown 32871cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetPreStep()`, `TSSetPreStage()`, `TSSetPostEvaluate()`, `TSGetTimeStep()`, `TSGetStepNumber()`, `TSGetTime()`, `TSSetPotsStep()` 32883f2090d5SJed Brown @*/ 3289d71ae5a4SJacob Faibussowitsch PetscErrorCode TSPostStep(TS ts) 3290d71ae5a4SJacob Faibussowitsch { 32913f2090d5SJed Brown PetscFunctionBegin; 32920700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3293ae60f76fSBarry Smith if (ts->poststep) { 32945efd42a4SStefano Zampini Vec U; 3295ef8d1ce0SJohann Rudi PetscObjectId idprev; 3296ef8d1ce0SJohann Rudi PetscBool sameObject; 32975efd42a4SStefano Zampini PetscObjectState sprev, spost; 32985efd42a4SStefano Zampini 32999566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 33009566063dSJacob Faibussowitsch PetscCall(PetscObjectGetId((PetscObject)U, &idprev)); 33019566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &sprev)); 330225e27a38SBarry Smith PetscCallBack("TS callback poststep", (*ts->poststep)(ts)); 33039566063dSJacob Faibussowitsch PetscCall(TSGetSolution(ts, &U)); 33049566063dSJacob Faibussowitsch PetscCall(PetscObjectCompareId((PetscObject)U, idprev, &sameObject)); 33059566063dSJacob Faibussowitsch PetscCall(PetscObjectStateGet((PetscObject)U, &spost)); 33069566063dSJacob Faibussowitsch if (!sameObject || sprev != spost) PetscCall(TSRestartStep(ts)); 330772ac3e02SJed Brown } 33083ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 33093f2090d5SJed Brown } 33103f2090d5SJed Brown 3311cd652676SJed Brown /*@ 3312cd652676SJed Brown TSInterpolate - Interpolate the solution computed during the previous step to an arbitrary location in the interval 3313cd652676SJed Brown 3314c3339decSBarry Smith Collective 3315cd652676SJed Brown 33164165533cSJose E. Roman Input Parameters: 3317cd652676SJed Brown + ts - time stepping context 3318cd652676SJed Brown - t - time to interpolate to 3319cd652676SJed Brown 33204165533cSJose E. Roman Output Parameter: 33210910c330SBarry Smith . U - state at given time 3322cd652676SJed Brown 3323cd652676SJed Brown Level: intermediate 3324cd652676SJed Brown 3325b43aa488SJacob Faibussowitsch Developer Notes: 3326bcf0153eSBarry Smith `TSInterpolate()` and the storing of previous steps/stages should be generalized to support delay differential equations and continuous adjoints. 3327cd652676SJed Brown 33281cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetExactFinalTime()`, `TSSolve()` 3329cd652676SJed Brown @*/ 3330d71ae5a4SJacob Faibussowitsch PetscErrorCode TSInterpolate(TS ts, PetscReal t, Vec U) 3331d71ae5a4SJacob Faibussowitsch { 3332cd652676SJed Brown PetscFunctionBegin; 3333cd652676SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3334b06615a5SLisandro Dalcin PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 333563a3b9bcSJacob 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); 3336dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, interpolate, t, U); 33373ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3338cd652676SJed Brown } 3339cd652676SJed Brown 3340d763cef2SBarry Smith /*@ 33416d9e5789SSean Farley TSStep - Steps one time step 3342d763cef2SBarry Smith 3343c3339decSBarry Smith Collective 3344d763cef2SBarry Smith 3345d763cef2SBarry Smith Input Parameter: 3346bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 3347d763cef2SBarry Smith 334827829d71SBarry Smith Level: developer 3349d763cef2SBarry Smith 3350b8123daeSJed Brown Notes: 3351bcf0153eSBarry Smith The public interface for the ODE/DAE solvers is `TSSolve()`, you should almost for sure be using that routine and not this routine. 335227829d71SBarry Smith 3353bcf0153eSBarry Smith The hook set using `TSSetPreStep()` is called before each attempt to take the step. In general, the time step size may 3354b8123daeSJed Brown be changed due to adaptive error controller or solve failures. Note that steps may contain multiple stages. 3355b8123daeSJed Brown 3356bcf0153eSBarry Smith This may over-step the final time provided in `TSSetMaxTime()` depending on the time-step used. `TSSolve()` interpolates to exactly the 3357bcf0153eSBarry Smith time provided in `TSSetMaxTime()`. One can use `TSInterpolate()` to determine an interpolated solution within the final timestep. 335825cb2221SBarry Smith 33591cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSCreate()`, `TSSetUp()`, `TSDestroy()`, `TSSolve()`, `TSSetPreStep()`, `TSSetPreStage()`, `TSSetPostStage()`, `TSInterpolate()` 3360d763cef2SBarry Smith @*/ 3361d71ae5a4SJacob Faibussowitsch PetscErrorCode TSStep(TS ts) 3362d71ae5a4SJacob Faibussowitsch { 3363fffbeea8SBarry Smith static PetscBool cite = PETSC_FALSE; 3364be5899b3SLisandro Dalcin PetscReal ptime; 3365d763cef2SBarry Smith 3366d763cef2SBarry Smith PetscFunctionBegin; 33670700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3368d0609cedSBarry Smith PetscCall(PetscCitationsRegister("@article{tspaper,\n" 3369fffbeea8SBarry Smith " title = {{PETSc/TS}: A Modern Scalable {DAE/ODE} Solver Library},\n" 3370f1d62c27SHong Zhang " author = {Abhyankar, Shrirang and Brown, Jed and Constantinescu, Emil and Ghosh, Debojyoti and Smith, Barry F. and Zhang, Hong},\n" 3371f1d62c27SHong Zhang " journal = {arXiv e-preprints},\n" 3372f1d62c27SHong Zhang " eprint = {1806.01437},\n" 3373f1d62c27SHong Zhang " archivePrefix = {arXiv},\n" 33749371c9d4SSatish Balay " year = {2018}\n}\n", 33759371c9d4SSatish Balay &cite)); 33769566063dSJacob Faibussowitsch PetscCall(TSSetUp(ts)); 33779566063dSJacob Faibussowitsch PetscCall(TSTrajectorySetUp(ts->trajectory, ts)); 3378ca4445c7SIlya Fursov if (ts->tspan) 3379ca4445c7SIlya Fursov ts->tspan->worktol = 0; /* In each step of TSSolve() 'tspan->worktol' will be meaningfully defined (later) only once: 3380ca4445c7SIlya Fursov in TSAdaptChoose() or TSEvent_dt_cap(), and then reused till the end of the step */ 3381d405a339SMatthew Knepley 33821690c2aeSBarry Smith PetscCheck(ts->max_time < PETSC_MAX_REAL || ts->max_steps != PETSC_INT_MAX, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONGSTATE, "You must call TSSetMaxTime() or TSSetMaxSteps(), or use -ts_max_time <time> or -ts_max_steps <steps>"); 33833c633725SBarry 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()"); 33843c633725SBarry 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"); 3385a6772fa2SLisandro Dalcin 3386c61711c8SStefano Zampini if (!ts->vec_sol0) PetscCall(VecDuplicate(ts->vec_sol, &ts->vec_sol0)); 3387c61711c8SStefano Zampini PetscCall(VecCopy(ts->vec_sol, ts->vec_sol0)); 3388c61711c8SStefano Zampini ts->time_step0 = ts->time_step; 3389c61711c8SStefano Zampini 3390be5899b3SLisandro Dalcin if (!ts->steps) ts->ptime_prev = ts->ptime; 33919371c9d4SSatish Balay ptime = ts->ptime; 3392c61711c8SStefano Zampini 33939371c9d4SSatish Balay ts->ptime_prev_rollback = ts->ptime_prev; 33942808aa04SLisandro Dalcin ts->reason = TS_CONVERGED_ITERATING; 3395fc8dbba5SLisandro Dalcin 33969566063dSJacob Faibussowitsch PetscCall(PetscLogEventBegin(TS_Step, ts, 0, 0, 0)); 3397dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, step); 33989566063dSJacob Faibussowitsch PetscCall(PetscLogEventEnd(TS_Step, ts, 0, 0, 0)); 3399fc8dbba5SLisandro Dalcin 3400fc8dbba5SLisandro Dalcin if (ts->reason >= 0) { 3401be5899b3SLisandro Dalcin ts->ptime_prev = ptime; 34022808aa04SLisandro Dalcin ts->steps++; 3403be5899b3SLisandro Dalcin ts->steprollback = PETSC_FALSE; 340428d5b5d6SLisandro Dalcin ts->steprestart = PETSC_FALSE; 3405c6bf8827SStefano Zampini ts->stepresize = PETSC_FALSE; 3406d2daff3dSHong Zhang } 3407fc8dbba5SLisandro Dalcin 34085c9bbc89SJed Brown if (ts->reason < 0 && ts->errorifstepfailed) { 34095c9bbc89SJed Brown PetscCall(TSMonitorCancel(ts)); 341009cb0f53SBarry Smith 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 use unlimited to attempt recovery", TSConvergedReasons[ts->reason]); 34115c9bbc89SJed Brown SETERRQ(PetscObjectComm((PetscObject)ts), PETSC_ERR_NOT_CONVERGED, "TSStep has failed due to %s", TSConvergedReasons[ts->reason]); 34125c9bbc89SJed Brown } 34133ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 341408c7845fSBarry Smith } 341508c7845fSBarry Smith 341608c7845fSBarry Smith /*@ 34177cbde773SLisandro Dalcin TSEvaluateWLTE - Evaluate the weighted local truncation error norm 34187cbde773SLisandro Dalcin at the end of a time step with a given order of accuracy. 34197cbde773SLisandro Dalcin 3420c3339decSBarry Smith Collective 34217cbde773SLisandro Dalcin 34224165533cSJose E. Roman Input Parameters: 34237cbde773SLisandro Dalcin + ts - time stepping context 3424bcf0153eSBarry Smith - wnormtype - norm type, either `NORM_2` or `NORM_INFINITY` 34257cbde773SLisandro Dalcin 342697bb3fdcSJose E. Roman Input/Output Parameter: 3427bcf0153eSBarry Smith . order - optional, desired order for the error evaluation or `PETSC_DECIDE`; 342897bb3fdcSJose E. Roman on output, the actual order of the error evaluation 342997bb3fdcSJose E. Roman 343097bb3fdcSJose E. Roman Output Parameter: 343197bb3fdcSJose E. Roman . wlte - the weighted local truncation error norm 34327cbde773SLisandro Dalcin 34337cbde773SLisandro Dalcin Level: advanced 34347cbde773SLisandro Dalcin 3435bcf0153eSBarry Smith Note: 34367cbde773SLisandro Dalcin If the timestepper cannot evaluate the error in a particular step 34377cbde773SLisandro Dalcin (eg. in the first step or restart steps after event handling), 34387cbde773SLisandro Dalcin this routine returns wlte=-1.0 . 34397cbde773SLisandro Dalcin 34401cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSStep()`, `TSAdapt`, `TSErrorWeightedNorm()` 34417cbde773SLisandro Dalcin @*/ 3442d71ae5a4SJacob Faibussowitsch PetscErrorCode TSEvaluateWLTE(TS ts, NormType wnormtype, PetscInt *order, PetscReal *wlte) 3443d71ae5a4SJacob Faibussowitsch { 34447cbde773SLisandro Dalcin PetscFunctionBegin; 34457cbde773SLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 34467cbde773SLisandro Dalcin PetscValidType(ts, 1); 3447064a246eSJacob Faibussowitsch PetscValidLogicalCollectiveEnum(ts, wnormtype, 2); 34484f572ea9SToby Isaac if (order) PetscAssertPointer(order, 3); 34497cbde773SLisandro Dalcin if (order) PetscValidLogicalCollectiveInt(ts, *order, 3); 34504f572ea9SToby Isaac PetscAssertPointer(wlte, 4); 34513c633725SBarry Smith PetscCheck(wnormtype == NORM_2 || wnormtype == NORM_INFINITY, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "No support for norm type %s", NormTypes[wnormtype]); 3452dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, evaluatewlte, wnormtype, order, wlte); 34533ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 34547cbde773SLisandro Dalcin } 34557cbde773SLisandro Dalcin 345605175c85SJed Brown /*@ 345705175c85SJed Brown TSEvaluateStep - Evaluate the solution at the end of a time step with a given order of accuracy. 345805175c85SJed Brown 3459c3339decSBarry Smith Collective 346005175c85SJed Brown 34614165533cSJose E. Roman Input Parameters: 34621c3436cfSJed Brown + ts - time stepping context 34631c3436cfSJed Brown . order - desired order of accuracy 3464195e9b02SBarry Smith - done - whether the step was evaluated at this order (pass `NULL` to generate an error if not available) 346505175c85SJed Brown 34664165533cSJose E. Roman Output Parameter: 34670910c330SBarry Smith . U - state at the end of the current step 346805175c85SJed Brown 346905175c85SJed Brown Level: advanced 347005175c85SJed Brown 3471108c343cSJed Brown Notes: 3472108c343cSJed Brown This function cannot be called until all stages have been evaluated. 3473108c343cSJed Brown 3474bcf0153eSBarry 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. 3475bcf0153eSBarry Smith 34761cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSStep()`, `TSAdapt` 347705175c85SJed Brown @*/ 3478d71ae5a4SJacob Faibussowitsch PetscErrorCode TSEvaluateStep(TS ts, PetscInt order, Vec U, PetscBool *done) 3479d71ae5a4SJacob Faibussowitsch { 348005175c85SJed Brown PetscFunctionBegin; 348105175c85SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 348205175c85SJed Brown PetscValidType(ts, 1); 34830910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 3); 3484dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, evaluatestep, order, U, done); 34853ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 348605175c85SJed Brown } 348705175c85SJed Brown 3488aad739acSMatthew G. Knepley /*@C 34892e61be88SMatthew G. Knepley TSGetComputeInitialCondition - Get the function used to automatically compute an initial condition for the timestepping. 3490aad739acSMatthew G. Knepley 3491aad739acSMatthew G. Knepley Not collective 3492aad739acSMatthew G. Knepley 34934165533cSJose E. Roman Input Parameter: 3494aad739acSMatthew G. Knepley . ts - time stepping context 3495aad739acSMatthew G. Knepley 34964165533cSJose E. Roman Output Parameter: 3497b43aa488SJacob Faibussowitsch . initCondition - The function which computes an initial condition 3498aad739acSMatthew G. Knepley 349920f4b53cSBarry Smith Calling sequence of `initCondition`: 350020f4b53cSBarry Smith + ts - The timestepping context 350120f4b53cSBarry Smith - u - The input vector in which the initial condition is stored 3502bcf0153eSBarry Smith 3503aad739acSMatthew G. Knepley Level: advanced 3504aad739acSMatthew G. Knepley 35051cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetComputeInitialCondition()`, `TSComputeInitialCondition()` 3506aad739acSMatthew G. Knepley @*/ 350714d0ab18SJacob Faibussowitsch PetscErrorCode TSGetComputeInitialCondition(TS ts, PetscErrorCode (**initCondition)(TS ts, Vec u)) 3508d71ae5a4SJacob Faibussowitsch { 3509aad739acSMatthew G. Knepley PetscFunctionBegin; 3510aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 35114f572ea9SToby Isaac PetscAssertPointer(initCondition, 2); 35122e61be88SMatthew G. Knepley *initCondition = ts->ops->initcondition; 35133ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3514aad739acSMatthew G. Knepley } 3515aad739acSMatthew G. Knepley 3516aad739acSMatthew G. Knepley /*@C 35172e61be88SMatthew G. Knepley TSSetComputeInitialCondition - Set the function used to automatically compute an initial condition for the timestepping. 3518aad739acSMatthew G. Knepley 3519c3339decSBarry Smith Logically collective 3520aad739acSMatthew G. Knepley 35214165533cSJose E. Roman Input Parameters: 3522aad739acSMatthew G. Knepley + ts - time stepping context 35232e61be88SMatthew G. Knepley - initCondition - The function which computes an initial condition 3524aad739acSMatthew G. Knepley 352520f4b53cSBarry Smith Calling sequence of `initCondition`: 3526a96d6ef6SBarry Smith + ts - The timestepping context 352714d0ab18SJacob Faibussowitsch - e - The input vector in which the initial condition is to be stored 3528aad739acSMatthew G. Knepley 3529bcf0153eSBarry Smith Level: advanced 3530bcf0153eSBarry Smith 35311cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetComputeInitialCondition()`, `TSComputeInitialCondition()` 3532aad739acSMatthew G. Knepley @*/ 353314d0ab18SJacob Faibussowitsch PetscErrorCode TSSetComputeInitialCondition(TS ts, PetscErrorCode (*initCondition)(TS ts, Vec e)) 3534d71ae5a4SJacob Faibussowitsch { 3535aad739acSMatthew G. Knepley PetscFunctionBegin; 3536aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 35372e61be88SMatthew G. Knepley PetscValidFunction(initCondition, 2); 35382e61be88SMatthew G. Knepley ts->ops->initcondition = initCondition; 35393ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3540aad739acSMatthew G. Knepley } 3541aad739acSMatthew G. Knepley 3542aad739acSMatthew G. Knepley /*@ 3543bcf0153eSBarry Smith TSComputeInitialCondition - Compute an initial condition for the timestepping using the function previously set with `TSSetComputeInitialCondition()` 3544aad739acSMatthew G. Knepley 3545c3339decSBarry Smith Collective 3546aad739acSMatthew G. Knepley 35474165533cSJose E. Roman Input Parameters: 3548aad739acSMatthew G. Knepley + ts - time stepping context 3549bcf0153eSBarry Smith - u - The `Vec` to store the condition in which will be used in `TSSolve()` 3550aad739acSMatthew G. Knepley 3551aad739acSMatthew G. Knepley Level: advanced 3552aad739acSMatthew G. Knepley 35531cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetComputeInitialCondition()`, `TSSetComputeInitialCondition()`, `TSSolve()` 3554aad739acSMatthew G. Knepley @*/ 3555d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeInitialCondition(TS ts, Vec u) 3556d71ae5a4SJacob Faibussowitsch { 3557aad739acSMatthew G. Knepley PetscFunctionBegin; 3558aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3559aad739acSMatthew G. Knepley PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 3560dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, initcondition, u); 35613ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3562aad739acSMatthew G. Knepley } 3563aad739acSMatthew G. Knepley 3564aad739acSMatthew G. Knepley /*@C 3565aad739acSMatthew G. Knepley TSGetComputeExactError - Get the function used to automatically compute the exact error for the timestepping. 3566aad739acSMatthew G. Knepley 3567aad739acSMatthew G. Knepley Not collective 3568aad739acSMatthew G. Knepley 35694165533cSJose E. Roman Input Parameter: 3570aad739acSMatthew G. Knepley . ts - time stepping context 3571aad739acSMatthew G. Knepley 35724165533cSJose E. Roman Output Parameter: 3573aad739acSMatthew G. Knepley . exactError - The function which computes the solution error 3574aad739acSMatthew G. Knepley 357520f4b53cSBarry Smith Calling sequence of `exactError`: 3576a96d6ef6SBarry Smith + ts - The timestepping context 3577a96d6ef6SBarry Smith . u - The approximate solution vector 357820f4b53cSBarry Smith - e - The vector in which the error is stored 3579aad739acSMatthew G. Knepley 3580bcf0153eSBarry Smith Level: advanced 3581bcf0153eSBarry Smith 358242747ad1SJacob Faibussowitsch .seealso: [](ch_ts), `TS`, `TSComputeExactError()` 3583aad739acSMatthew G. Knepley @*/ 358414d0ab18SJacob Faibussowitsch PetscErrorCode TSGetComputeExactError(TS ts, PetscErrorCode (**exactError)(TS ts, Vec u, Vec e)) 3585d71ae5a4SJacob Faibussowitsch { 3586aad739acSMatthew G. Knepley PetscFunctionBegin; 3587aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 35884f572ea9SToby Isaac PetscAssertPointer(exactError, 2); 3589aad739acSMatthew G. Knepley *exactError = ts->ops->exacterror; 35903ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3591aad739acSMatthew G. Knepley } 3592aad739acSMatthew G. Knepley 3593aad739acSMatthew G. Knepley /*@C 3594aad739acSMatthew G. Knepley TSSetComputeExactError - Set the function used to automatically compute the exact error for the timestepping. 3595aad739acSMatthew G. Knepley 3596c3339decSBarry Smith Logically collective 3597aad739acSMatthew G. Knepley 35984165533cSJose E. Roman Input Parameters: 3599aad739acSMatthew G. Knepley + ts - time stepping context 3600aad739acSMatthew G. Knepley - exactError - The function which computes the solution error 3601aad739acSMatthew G. Knepley 360220f4b53cSBarry Smith Calling sequence of `exactError`: 3603a96d6ef6SBarry Smith + ts - The timestepping context 3604a96d6ef6SBarry Smith . u - The approximate solution vector 360520f4b53cSBarry Smith - e - The vector in which the error is stored 3606aad739acSMatthew G. Knepley 3607bcf0153eSBarry Smith Level: advanced 3608bcf0153eSBarry Smith 36091cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetComputeExactError()`, `TSComputeExactError()` 3610aad739acSMatthew G. Knepley @*/ 361114d0ab18SJacob Faibussowitsch PetscErrorCode TSSetComputeExactError(TS ts, PetscErrorCode (*exactError)(TS ts, Vec u, Vec e)) 3612d71ae5a4SJacob Faibussowitsch { 3613aad739acSMatthew G. Knepley PetscFunctionBegin; 3614aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3615f907fdbfSMatthew G. Knepley PetscValidFunction(exactError, 2); 3616aad739acSMatthew G. Knepley ts->ops->exacterror = exactError; 36173ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3618aad739acSMatthew G. Knepley } 3619aad739acSMatthew G. Knepley 3620aad739acSMatthew G. Knepley /*@ 3621bcf0153eSBarry Smith TSComputeExactError - Compute the solution error for the timestepping using the function previously set with `TSSetComputeExactError()` 3622aad739acSMatthew G. Knepley 3623c3339decSBarry Smith Collective 3624aad739acSMatthew G. Knepley 36254165533cSJose E. Roman Input Parameters: 3626aad739acSMatthew G. Knepley + ts - time stepping context 3627aad739acSMatthew G. Knepley . u - The approximate solution 3628bcf0153eSBarry Smith - e - The `Vec` used to store the error 3629aad739acSMatthew G. Knepley 3630aad739acSMatthew G. Knepley Level: advanced 3631aad739acSMatthew G. Knepley 36321cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetComputeInitialCondition()`, `TSSetComputeInitialCondition()`, `TSSolve()` 3633aad739acSMatthew G. Knepley @*/ 3634d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeExactError(TS ts, Vec u, Vec e) 3635d71ae5a4SJacob Faibussowitsch { 3636aad739acSMatthew G. Knepley PetscFunctionBegin; 3637aad739acSMatthew G. Knepley PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3638aad739acSMatthew G. Knepley PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 3639aad739acSMatthew G. Knepley PetscValidHeaderSpecific(e, VEC_CLASSID, 3); 3640dbbe0bcdSBarry Smith PetscTryTypeMethod(ts, exacterror, u, e); 36413ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 3642aad739acSMatthew G. Knepley } 3643aad739acSMatthew G. Knepley 36446bd3a4fdSStefano Zampini /*@C 36456bd3a4fdSStefano Zampini TSSetResize - Sets the resize callbacks. 36466bd3a4fdSStefano Zampini 36476bd3a4fdSStefano Zampini Logically Collective 36486bd3a4fdSStefano Zampini 36496bd3a4fdSStefano Zampini Input Parameters: 36506bd3a4fdSStefano Zampini + ts - The `TS` context obtained from `TSCreate()` 3651ecc87898SStefano Zampini . rollback - Whether a resize will restart the step 36526bd3a4fdSStefano Zampini . setup - The setup function 365314d0ab18SJacob Faibussowitsch . transfer - The transfer function 365414d0ab18SJacob Faibussowitsch - ctx - [optional] The user-defined context 36556bd3a4fdSStefano Zampini 36566bd3a4fdSStefano Zampini Calling sequence of `setup`: 36578847d985SBarry Smith + ts - the `TS` context 36586bd3a4fdSStefano Zampini . step - the current step 36596bd3a4fdSStefano Zampini . time - the current time 36606bd3a4fdSStefano Zampini . state - the current vector of state 36616bd3a4fdSStefano Zampini . resize - (output parameter) `PETSC_TRUE` if need resizing, `PETSC_FALSE` otherwise 36626bd3a4fdSStefano Zampini - ctx - user defined context 36636bd3a4fdSStefano Zampini 36646bd3a4fdSStefano Zampini Calling sequence of `transfer`: 36658847d985SBarry Smith + ts - the `TS` context 36666bd3a4fdSStefano Zampini . nv - the number of vectors to be transferred 36676bd3a4fdSStefano Zampini . vecsin - array of vectors to be transferred 36686bd3a4fdSStefano Zampini . vecsout - array of transferred vectors 36696bd3a4fdSStefano Zampini - ctx - user defined context 36706bd3a4fdSStefano Zampini 36716bd3a4fdSStefano Zampini Notes: 3672ecc87898SStefano Zampini The `setup` function is called inside `TSSolve()` after `TSEventHandler()` or after `TSPostStep()` 3673ecc87898SStefano Zampini depending on the `rollback` value: if `rollback` is true, then these callbacks behave as error indicators 3674ecc87898SStefano Zampini and will flag the need to remesh and restart the current step. Otherwise, they will simply flag the solver 3675ecc87898SStefano Zampini that the size of the discrete problem has changed. 3676ecc87898SStefano Zampini In both cases, the solver will collect the needed vectors that will be 3677ecc87898SStefano Zampini transferred from the old to the new sizes using the `transfer` callback. These vectors will include the 3678ecc87898SStefano Zampini current solution vector, and other vectors needed by the specific solver used. 36796bd3a4fdSStefano Zampini For example, `TSBDF` uses previous solutions vectors to solve for the next time step. 36806bd3a4fdSStefano Zampini Other application specific objects associated with the solver, i.e. Jacobian matrices and `DM`, 36816bd3a4fdSStefano Zampini will be automatically reset if the sizes are changed and they must be specified again by the user 36826bd3a4fdSStefano Zampini inside the `transfer` function. 36836bd3a4fdSStefano Zampini The input and output arrays passed to `transfer` are allocated by PETSc. 36846bd3a4fdSStefano Zampini Vectors in `vecsout` must be created by the user. 36856bd3a4fdSStefano Zampini Ownership of vectors in `vecsout` is transferred to PETSc. 36866bd3a4fdSStefano Zampini 36876bd3a4fdSStefano Zampini Level: advanced 36886bd3a4fdSStefano Zampini 36896bd3a4fdSStefano Zampini .seealso: [](ch_ts), `TS`, `TSSetDM()`, `TSSetIJacobian()`, `TSSetRHSJacobian()` 36906bd3a4fdSStefano Zampini @*/ 3691ecc87898SStefano Zampini PetscErrorCode TSSetResize(TS ts, PetscBool rollback, PetscErrorCode (*setup)(TS ts, PetscInt step, PetscReal time, Vec state, PetscBool *resize, void *ctx), PetscErrorCode (*transfer)(TS ts, PetscInt nv, Vec vecsin[], Vec vecsout[], void *ctx), void *ctx) 36926bd3a4fdSStefano Zampini { 36936bd3a4fdSStefano Zampini PetscFunctionBegin; 36946bd3a4fdSStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3695ecc87898SStefano Zampini ts->resizerollback = rollback; 36966bd3a4fdSStefano Zampini ts->resizesetup = setup; 36976bd3a4fdSStefano Zampini ts->resizetransfer = transfer; 36986bd3a4fdSStefano Zampini ts->resizectx = ctx; 36996bd3a4fdSStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 37006bd3a4fdSStefano Zampini } 37016bd3a4fdSStefano Zampini 370214d0ab18SJacob Faibussowitsch /* 37036bd3a4fdSStefano Zampini TSResizeRegisterOrRetrieve - Register or import vectors transferred with `TSResize()`. 37046bd3a4fdSStefano Zampini 37056bd3a4fdSStefano Zampini Collective 37066bd3a4fdSStefano Zampini 37076bd3a4fdSStefano Zampini Input Parameters: 37086bd3a4fdSStefano Zampini + ts - The `TS` context obtained from `TSCreate()` 37096bd3a4fdSStefano Zampini - flg - If `PETSC_TRUE` each TS implementation (e.g. `TSBDF`) will register vectors to be transferred, if `PETSC_FALSE` vectors will be imported from transferred vectors. 37106bd3a4fdSStefano Zampini 37116bd3a4fdSStefano Zampini Level: developer 37126bd3a4fdSStefano Zampini 37136bd3a4fdSStefano Zampini Note: 37146bd3a4fdSStefano Zampini `TSResizeRegisterOrRetrieve()` is declared PETSC_INTERN since it is 37156bd3a4fdSStefano Zampini used within time stepping implementations, 37166bd3a4fdSStefano Zampini so most users would not generally call this routine themselves. 37176bd3a4fdSStefano Zampini 37186bd3a4fdSStefano Zampini .seealso: [](ch_ts), `TS`, `TSSetResize()` 37196bd3a4fdSStefano Zampini @*/ 372014d0ab18SJacob Faibussowitsch static PetscErrorCode TSResizeRegisterOrRetrieve(TS ts, PetscBool flg) 37216bd3a4fdSStefano Zampini { 37226bd3a4fdSStefano Zampini PetscFunctionBegin; 37236bd3a4fdSStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 37246bd3a4fdSStefano Zampini PetscTryTypeMethod(ts, resizeregister, flg); 37256bd3a4fdSStefano Zampini /* PetscTryTypeMethod(adapt, resizeregister, flg); */ 37266bd3a4fdSStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 37276bd3a4fdSStefano Zampini } 37286bd3a4fdSStefano Zampini 372914d0ab18SJacob Faibussowitsch static PetscErrorCode TSResizeReset(TS ts) 37306bd3a4fdSStefano Zampini { 37316bd3a4fdSStefano Zampini PetscFunctionBegin; 37326bd3a4fdSStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 37336bd3a4fdSStefano Zampini PetscCall(PetscObjectListDestroy(&ts->resizetransferobjs)); 37346bd3a4fdSStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 37356bd3a4fdSStefano Zampini } 37366bd3a4fdSStefano Zampini 37376bd3a4fdSStefano Zampini static PetscErrorCode TSResizeTransferVecs(TS ts, PetscInt cnt, Vec vecsin[], Vec vecsout[]) 37386bd3a4fdSStefano Zampini { 37396bd3a4fdSStefano Zampini PetscFunctionBegin; 37406bd3a4fdSStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 37416bd3a4fdSStefano Zampini PetscValidLogicalCollectiveInt(ts, cnt, 2); 37426bd3a4fdSStefano Zampini for (PetscInt i = 0; i < cnt; i++) PetscCall(VecLockReadPush(vecsin[i])); 37436bd3a4fdSStefano Zampini if (ts->resizetransfer) { 37446bd3a4fdSStefano Zampini PetscCall(PetscInfo(ts, "Transferring %" PetscInt_FMT " vectors\n", cnt)); 37456bd3a4fdSStefano Zampini PetscCallBack("TS callback resize transfer", (*ts->resizetransfer)(ts, cnt, vecsin, vecsout, ts->resizectx)); 37466bd3a4fdSStefano Zampini } 37476bd3a4fdSStefano Zampini for (PetscInt i = 0; i < cnt; i++) PetscCall(VecLockReadPop(vecsin[i])); 37486bd3a4fdSStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 37496bd3a4fdSStefano Zampini } 37506bd3a4fdSStefano Zampini 37516bd3a4fdSStefano Zampini /*@C 37526bd3a4fdSStefano Zampini TSResizeRegisterVec - Register a vector to be transferred with `TSResize()`. 37536bd3a4fdSStefano Zampini 37546bd3a4fdSStefano Zampini Collective 37556bd3a4fdSStefano Zampini 37566bd3a4fdSStefano Zampini Input Parameters: 37576bd3a4fdSStefano Zampini + ts - The `TS` context obtained from `TSCreate()` 3758baca6076SPierre Jolivet . name - A string identifying the vector 37596bd3a4fdSStefano Zampini - vec - The vector 37606bd3a4fdSStefano Zampini 37616bd3a4fdSStefano Zampini Level: developer 37626bd3a4fdSStefano Zampini 37636bd3a4fdSStefano Zampini Note: 37646bd3a4fdSStefano Zampini `TSResizeRegisterVec()` is typically used within time stepping implementations, 37656bd3a4fdSStefano Zampini so most users would not generally call this routine themselves. 37666bd3a4fdSStefano Zampini 37676bd3a4fdSStefano Zampini .seealso: [](ch_ts), `TS`, `TSSetResize()`, `TSResize()`, `TSResizeRetrieveVec()` 37686bd3a4fdSStefano Zampini @*/ 3769cc4c1da9SBarry Smith PetscErrorCode TSResizeRegisterVec(TS ts, const char name[], Vec vec) 37706bd3a4fdSStefano Zampini { 37716bd3a4fdSStefano Zampini PetscFunctionBegin; 37726bd3a4fdSStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 37734f572ea9SToby Isaac PetscAssertPointer(name, 2); 37746bd3a4fdSStefano Zampini if (vec) PetscValidHeaderSpecific(vec, VEC_CLASSID, 3); 37756bd3a4fdSStefano Zampini PetscCall(PetscObjectListAdd(&ts->resizetransferobjs, name, (PetscObject)vec)); 37766bd3a4fdSStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 37776bd3a4fdSStefano Zampini } 37786bd3a4fdSStefano Zampini 37796bd3a4fdSStefano Zampini /*@C 37806bd3a4fdSStefano Zampini TSResizeRetrieveVec - Retrieve a vector registered with `TSResizeRegisterVec()`. 37816bd3a4fdSStefano Zampini 37826bd3a4fdSStefano Zampini Collective 37836bd3a4fdSStefano Zampini 37846bd3a4fdSStefano Zampini Input Parameters: 37856bd3a4fdSStefano Zampini + ts - The `TS` context obtained from `TSCreate()` 3786baca6076SPierre Jolivet . name - A string identifying the vector 37876bd3a4fdSStefano Zampini - vec - The vector 37886bd3a4fdSStefano Zampini 37896bd3a4fdSStefano Zampini Level: developer 37906bd3a4fdSStefano Zampini 37916bd3a4fdSStefano Zampini Note: 37926bd3a4fdSStefano Zampini `TSResizeRetrieveVec()` is typically used within time stepping implementations, 37936bd3a4fdSStefano Zampini so most users would not generally call this routine themselves. 37946bd3a4fdSStefano Zampini 37956bd3a4fdSStefano Zampini .seealso: [](ch_ts), `TS`, `TSSetResize()`, `TSResize()`, `TSResizeRegisterVec()` 37966bd3a4fdSStefano Zampini @*/ 3797cc4c1da9SBarry Smith PetscErrorCode TSResizeRetrieveVec(TS ts, const char name[], Vec *vec) 37986bd3a4fdSStefano Zampini { 37996bd3a4fdSStefano Zampini PetscFunctionBegin; 38006bd3a4fdSStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 38014f572ea9SToby Isaac PetscAssertPointer(name, 2); 38024f572ea9SToby Isaac PetscAssertPointer(vec, 3); 38036bd3a4fdSStefano Zampini PetscCall(PetscObjectListFind(ts->resizetransferobjs, name, (PetscObject *)vec)); 38046bd3a4fdSStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 38056bd3a4fdSStefano Zampini } 38066bd3a4fdSStefano Zampini 38076bd3a4fdSStefano Zampini static PetscErrorCode TSResizeGetVecArray(TS ts, PetscInt *nv, const char **names[], Vec *vecs[]) 38086bd3a4fdSStefano Zampini { 38096bd3a4fdSStefano Zampini PetscInt cnt; 38106bd3a4fdSStefano Zampini PetscObjectList tmp; 38116bd3a4fdSStefano Zampini Vec *vecsin = NULL; 38126bd3a4fdSStefano Zampini const char **namesin = NULL; 38136bd3a4fdSStefano Zampini 38146bd3a4fdSStefano Zampini PetscFunctionBegin; 38156bd3a4fdSStefano Zampini for (tmp = ts->resizetransferobjs, cnt = 0; tmp; tmp = tmp->next) 38166bd3a4fdSStefano Zampini if (tmp->obj && tmp->obj->classid == VEC_CLASSID) cnt++; 381703ba6ac9SBarry Smith if (names) PetscCall(PetscMalloc1(cnt, &namesin)); 381803ba6ac9SBarry Smith if (vecs) PetscCall(PetscMalloc1(cnt, &vecsin)); 38196bd3a4fdSStefano Zampini for (tmp = ts->resizetransferobjs, cnt = 0; tmp; tmp = tmp->next) { 38206bd3a4fdSStefano Zampini if (tmp->obj && tmp->obj->classid == VEC_CLASSID) { 38216bd3a4fdSStefano Zampini if (vecs) vecsin[cnt] = (Vec)tmp->obj; 38226bd3a4fdSStefano Zampini if (names) namesin[cnt] = tmp->name; 38236bd3a4fdSStefano Zampini cnt++; 38246bd3a4fdSStefano Zampini } 38256bd3a4fdSStefano Zampini } 38266bd3a4fdSStefano Zampini if (nv) *nv = cnt; 38276bd3a4fdSStefano Zampini if (names) *names = namesin; 38286bd3a4fdSStefano Zampini if (vecs) *vecs = vecsin; 38296bd3a4fdSStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 38306bd3a4fdSStefano Zampini } 38316bd3a4fdSStefano Zampini 38326bd3a4fdSStefano Zampini /*@ 38336bd3a4fdSStefano Zampini TSResize - Runs the user-defined transfer functions provided with `TSSetResize()` 38346bd3a4fdSStefano Zampini 38356bd3a4fdSStefano Zampini Collective 38366bd3a4fdSStefano Zampini 38376bd3a4fdSStefano Zampini Input Parameter: 38386bd3a4fdSStefano Zampini . ts - The `TS` context obtained from `TSCreate()` 38396bd3a4fdSStefano Zampini 38406bd3a4fdSStefano Zampini Level: developer 38416bd3a4fdSStefano Zampini 38426bd3a4fdSStefano Zampini Note: 38436bd3a4fdSStefano Zampini `TSResize()` is typically used within time stepping implementations, 38446bd3a4fdSStefano Zampini so most users would not generally call this routine themselves. 38456bd3a4fdSStefano Zampini 38466bd3a4fdSStefano Zampini .seealso: [](ch_ts), `TS`, `TSSetResize()` 38476bd3a4fdSStefano Zampini @*/ 38486bd3a4fdSStefano Zampini PetscErrorCode TSResize(TS ts) 38496bd3a4fdSStefano Zampini { 38506bd3a4fdSStefano Zampini PetscInt nv = 0; 38516bd3a4fdSStefano Zampini const char **names = NULL; 38526bd3a4fdSStefano Zampini Vec *vecsin = NULL; 38536bd3a4fdSStefano Zampini const char *solname = "ts:vec_sol"; 38546bd3a4fdSStefano Zampini 38556bd3a4fdSStefano Zampini PetscFunctionBegin; 38566bd3a4fdSStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3857ecc87898SStefano Zampini if (!ts->resizesetup) PetscFunctionReturn(PETSC_SUCCESS); 38586bd3a4fdSStefano Zampini if (ts->resizesetup) { 38596bd3a4fdSStefano Zampini PetscCall(VecLockReadPush(ts->vec_sol)); 3860c6bf8827SStefano Zampini PetscCallBack("TS callback resize setup", (*ts->resizesetup)(ts, ts->steps, ts->ptime, ts->vec_sol, &ts->stepresize, ts->resizectx)); 38616bd3a4fdSStefano Zampini PetscCall(VecLockReadPop(ts->vec_sol)); 3862c6bf8827SStefano Zampini if (ts->stepresize) { 3863ecc87898SStefano Zampini if (ts->resizerollback) { 3864ecc87898SStefano Zampini PetscCall(TSRollBack(ts)); 3865ecc87898SStefano Zampini ts->time_step = ts->time_step0; 3866ecc87898SStefano Zampini } 38676bd3a4fdSStefano Zampini PetscCall(TSResizeRegisterVec(ts, solname, ts->vec_sol)); 38686bd3a4fdSStefano Zampini PetscCall(TSResizeRegisterOrRetrieve(ts, PETSC_TRUE)); /* specific impls register their own objects */ 38696bd3a4fdSStefano Zampini } 38706bd3a4fdSStefano Zampini } 38716bd3a4fdSStefano Zampini 38726bd3a4fdSStefano Zampini PetscCall(TSResizeGetVecArray(ts, &nv, &names, &vecsin)); 38736bd3a4fdSStefano Zampini if (nv) { 38746bd3a4fdSStefano Zampini Vec *vecsout, vecsol; 38756bd3a4fdSStefano Zampini 38766bd3a4fdSStefano Zampini /* Reset internal objects */ 38776bd3a4fdSStefano Zampini PetscCall(TSReset(ts)); 38786bd3a4fdSStefano Zampini 3879ecc87898SStefano Zampini /* Transfer needed vectors (users can call SetJacobian, SetDM, etc. here) */ 38806bd3a4fdSStefano Zampini PetscCall(PetscCalloc1(nv, &vecsout)); 38816bd3a4fdSStefano Zampini PetscCall(TSResizeTransferVecs(ts, nv, vecsin, vecsout)); 38826bd3a4fdSStefano Zampini for (PetscInt i = 0; i < nv; i++) { 3883ecc87898SStefano Zampini const char *name; 3884ecc87898SStefano Zampini char *oname; 3885ecc87898SStefano Zampini 3886ecc87898SStefano Zampini PetscCall(PetscObjectGetName((PetscObject)vecsin[i], &name)); 3887ecc87898SStefano Zampini PetscCall(PetscStrallocpy(name, &oname)); 38886bd3a4fdSStefano Zampini PetscCall(TSResizeRegisterVec(ts, names[i], vecsout[i])); 3889ecc87898SStefano Zampini if (vecsout[i]) PetscCall(PetscObjectSetName((PetscObject)vecsout[i], oname)); 3890ecc87898SStefano Zampini PetscCall(PetscFree(oname)); 38916bd3a4fdSStefano Zampini PetscCall(VecDestroy(&vecsout[i])); 38926bd3a4fdSStefano Zampini } 38936bd3a4fdSStefano Zampini PetscCall(PetscFree(vecsout)); 38946bd3a4fdSStefano Zampini PetscCall(TSResizeRegisterOrRetrieve(ts, PETSC_FALSE)); /* specific impls import the transferred objects */ 38956bd3a4fdSStefano Zampini 38966bd3a4fdSStefano Zampini PetscCall(TSResizeRetrieveVec(ts, solname, &vecsol)); 38976bd3a4fdSStefano Zampini if (vecsol) PetscCall(TSSetSolution(ts, vecsol)); 38986bd3a4fdSStefano Zampini PetscAssert(ts->vec_sol, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_NULL, "Missing TS solution"); 38996bd3a4fdSStefano Zampini } 39006bd3a4fdSStefano Zampini 39016bd3a4fdSStefano Zampini PetscCall(PetscFree(names)); 39026bd3a4fdSStefano Zampini PetscCall(PetscFree(vecsin)); 39036bd3a4fdSStefano Zampini PetscCall(TSResizeReset(ts)); 39046bd3a4fdSStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 39056bd3a4fdSStefano Zampini } 39066bd3a4fdSStefano Zampini 3907b1cb36f3SHong Zhang /*@ 39086a4d4014SLisandro Dalcin TSSolve - Steps the requested number of timesteps. 39096a4d4014SLisandro Dalcin 3910c3339decSBarry Smith Collective 39116a4d4014SLisandro Dalcin 3912d8d19677SJose E. Roman Input Parameters: 3913bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 3914bcf0153eSBarry Smith - u - the solution vector (can be null if `TSSetSolution()` was used and `TSSetExactFinalTime`(ts,`TS_EXACTFINALTIME_MATCHSTEP`) was not used, 391563e21af5SBarry Smith otherwise must contain the initial conditions and will contain the solution at the final requested time 39165a3a76d0SJed Brown 39176a4d4014SLisandro Dalcin Level: beginner 39186a4d4014SLisandro Dalcin 39195a3a76d0SJed Brown Notes: 39205a3a76d0SJed Brown The final time returned by this function may be different from the time of the internally 3921bcf0153eSBarry Smith held state accessible by `TSGetSolution()` and `TSGetTime()` because the method may have 39225a3a76d0SJed Brown stepped over the final time. 39235a3a76d0SJed Brown 39241cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSCreate()`, `TSSetSolution()`, `TSStep()`, `TSGetTime()`, `TSGetSolveTime()` 39256a4d4014SLisandro Dalcin @*/ 3926d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSolve(TS ts, Vec u) 3927d71ae5a4SJacob Faibussowitsch { 3928b06615a5SLisandro Dalcin Vec solution; 3929f22f69f0SBarry Smith 39306a4d4014SLisandro Dalcin PetscFunctionBegin; 39310700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 3932f2c2a1b9SBarry Smith if (u) PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 3933303a5415SBarry Smith 39349566063dSJacob Faibussowitsch PetscCall(TSSetExactFinalTimeDefault(ts)); 3935ee41a567SStefano 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 */ 39360910c330SBarry Smith if (!ts->vec_sol || u == ts->vec_sol) { 39379566063dSJacob Faibussowitsch PetscCall(VecDuplicate(u, &solution)); 39389566063dSJacob Faibussowitsch PetscCall(TSSetSolution(ts, solution)); 39399566063dSJacob Faibussowitsch PetscCall(VecDestroy(&solution)); /* grant ownership */ 39405a3a76d0SJed Brown } 39419566063dSJacob Faibussowitsch PetscCall(VecCopy(u, ts->vec_sol)); 39423c633725SBarry Smith PetscCheck(!ts->forward_solve, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "Sensitivity analysis does not support the mode TS_EXACTFINALTIME_INTERPOLATE"); 39431baa6e33SBarry Smith } else if (u) PetscCall(TSSetSolution(ts, u)); 39449566063dSJacob Faibussowitsch PetscCall(TSSetUp(ts)); 39459566063dSJacob Faibussowitsch PetscCall(TSTrajectorySetUp(ts->trajectory, ts)); 3946a6772fa2SLisandro Dalcin 39471690c2aeSBarry Smith PetscCheck(ts->max_time < PETSC_MAX_REAL || ts->max_steps != PETSC_INT_MAX, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONGSTATE, "You must call TSSetMaxTime() or TSSetMaxSteps(), or use -ts_max_time <time> or -ts_max_steps <steps>"); 39483c633725SBarry 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()"); 39493c633725SBarry 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"); 39504a658b32SHong 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"); 39514a658b32SHong Zhang 3952e1db57b0SHong 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 */ 39534a658b32SHong Zhang PetscCall(VecCopy(ts->vec_sol, ts->tspan->vecs_sol[0])); 39544a658b32SHong Zhang ts->tspan->spanctr = 1; 39554a658b32SHong Zhang } 3956a6772fa2SLisandro Dalcin 39571baa6e33SBarry Smith if (ts->forward_solve) PetscCall(TSForwardSetUp(ts)); 3958715f1b00SHong Zhang 3959e7069c78SShri /* reset number of steps only when the step is not restarted. ARKIMEX 3960715f1b00SHong Zhang restarts the step after an event. Resetting these counters in such case causes 3961e7069c78SShri TSTrajectory to incorrectly save the output files 3962e7069c78SShri */ 3963715f1b00SHong Zhang /* reset time step and iteration counters */ 39642808aa04SLisandro Dalcin if (!ts->steps) { 39655ef26d82SJed Brown ts->ksp_its = 0; 39665ef26d82SJed Brown ts->snes_its = 0; 3967c610991cSLisandro Dalcin ts->num_snes_failures = 0; 3968c610991cSLisandro Dalcin ts->reject = 0; 39692808aa04SLisandro Dalcin ts->steprestart = PETSC_TRUE; 39702808aa04SLisandro Dalcin ts->steprollback = PETSC_FALSE; 3971c6bf8827SStefano Zampini ts->stepresize = PETSC_FALSE; 39727d51462cSStefano Zampini ts->rhsjacobian.time = PETSC_MIN_REAL; 39732808aa04SLisandro Dalcin } 3974e97c63d7SStefano Zampini 39754a658b32SHong Zhang /* make sure initial time step does not overshoot final time or the next point in tspan */ 3976e97c63d7SStefano Zampini if (ts->exact_final_time == TS_EXACTFINALTIME_MATCHSTEP) { 39774a658b32SHong Zhang PetscReal maxdt; 3978e97c63d7SStefano Zampini PetscReal dt = ts->time_step; 3979e97c63d7SStefano Zampini 39804a658b32SHong Zhang if (ts->tspan) maxdt = ts->tspan->span_times[ts->tspan->spanctr] - ts->ptime; 39814a658b32SHong Zhang else maxdt = ts->max_time - ts->ptime; 3982e97c63d7SStefano Zampini ts->time_step = dt >= maxdt ? maxdt : (PetscIsCloseAtTol(dt, maxdt, 10 * PETSC_MACHINE_EPSILON, 0) ? maxdt : dt); 3983e97c63d7SStefano Zampini } 3984193ac0bcSJed Brown ts->reason = TS_CONVERGED_ITERATING; 3985193ac0bcSJed Brown 3986900f6b5bSMatthew G. Knepley { 3987900f6b5bSMatthew G. Knepley PetscViewer viewer; 3988900f6b5bSMatthew G. Knepley PetscViewerFormat format; 3989900f6b5bSMatthew G. Knepley PetscBool flg; 3990900f6b5bSMatthew G. Knepley static PetscBool incall = PETSC_FALSE; 3991900f6b5bSMatthew G. Knepley 3992900f6b5bSMatthew G. Knepley if (!incall) { 3993900f6b5bSMatthew G. Knepley /* Estimate the convergence rate of the time discretization */ 3994648c30bcSBarry Smith PetscCall(PetscOptionsCreateViewer(PetscObjectComm((PetscObject)ts), ((PetscObject)ts)->options, ((PetscObject)ts)->prefix, "-ts_convergence_estimate", &viewer, &format, &flg)); 3995900f6b5bSMatthew G. Knepley if (flg) { 3996900f6b5bSMatthew G. Knepley PetscConvEst conv; 3997900f6b5bSMatthew G. Knepley DM dm; 3998900f6b5bSMatthew G. Knepley PetscReal *alpha; /* Convergence rate of the solution error for each field in the L_2 norm */ 3999900f6b5bSMatthew G. Knepley PetscInt Nf; 4000f2ed2dc7SMatthew G. Knepley PetscBool checkTemporal = PETSC_TRUE; 4001900f6b5bSMatthew G. Knepley 4002900f6b5bSMatthew G. Knepley incall = PETSC_TRUE; 40039566063dSJacob Faibussowitsch PetscCall(PetscOptionsGetBool(((PetscObject)ts)->options, ((PetscObject)ts)->prefix, "-ts_convergence_temporal", &checkTemporal, &flg)); 40049566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 40059566063dSJacob Faibussowitsch PetscCall(DMGetNumFields(dm, &Nf)); 40069566063dSJacob Faibussowitsch PetscCall(PetscCalloc1(PetscMax(Nf, 1), &alpha)); 40079566063dSJacob Faibussowitsch PetscCall(PetscConvEstCreate(PetscObjectComm((PetscObject)ts), &conv)); 40089566063dSJacob Faibussowitsch PetscCall(PetscConvEstUseTS(conv, checkTemporal)); 40099566063dSJacob Faibussowitsch PetscCall(PetscConvEstSetSolver(conv, (PetscObject)ts)); 40109566063dSJacob Faibussowitsch PetscCall(PetscConvEstSetFromOptions(conv)); 40119566063dSJacob Faibussowitsch PetscCall(PetscConvEstSetUp(conv)); 40129566063dSJacob Faibussowitsch PetscCall(PetscConvEstGetConvRate(conv, alpha)); 40139566063dSJacob Faibussowitsch PetscCall(PetscViewerPushFormat(viewer, format)); 40149566063dSJacob Faibussowitsch PetscCall(PetscConvEstRateView(conv, alpha, viewer)); 40159566063dSJacob Faibussowitsch PetscCall(PetscViewerPopFormat(viewer)); 4016648c30bcSBarry Smith PetscCall(PetscViewerDestroy(&viewer)); 40179566063dSJacob Faibussowitsch PetscCall(PetscConvEstDestroy(&conv)); 40189566063dSJacob Faibussowitsch PetscCall(PetscFree(alpha)); 4019900f6b5bSMatthew G. Knepley incall = PETSC_FALSE; 4020900f6b5bSMatthew G. Knepley } 4021900f6b5bSMatthew G. Knepley } 4022900f6b5bSMatthew G. Knepley } 4023900f6b5bSMatthew G. Knepley 40249566063dSJacob Faibussowitsch PetscCall(TSViewFromOptions(ts, NULL, "-ts_view_pre")); 4025f05ece33SBarry Smith 4026193ac0bcSJed Brown if (ts->ops->solve) { /* This private interface is transitional and should be removed when all implementations are updated. */ 4027dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, solve); 40289566063dSJacob Faibussowitsch if (u) PetscCall(VecCopy(ts->vec_sol, u)); 4029cc708dedSBarry Smith ts->solvetime = ts->ptime; 4030a6772fa2SLisandro Dalcin solution = ts->vec_sol; 4031be5899b3SLisandro Dalcin } else { /* Step the requested number of timesteps. */ 4032db4deed7SKarl Rupp if (ts->steps >= ts->max_steps) ts->reason = TS_CONVERGED_ITS; 4033db4deed7SKarl Rupp else if (ts->ptime >= ts->max_time) ts->reason = TS_CONVERGED_TIME; 4034e7069c78SShri 40352808aa04SLisandro Dalcin if (!ts->steps) { 40369566063dSJacob Faibussowitsch PetscCall(TSTrajectorySet(ts->trajectory, ts, ts->steps, ts->ptime, ts->vec_sol)); 40379566063dSJacob Faibussowitsch PetscCall(TSEventInitialize(ts->event, ts, ts->ptime, ts->vec_sol)); 40382808aa04SLisandro Dalcin } 40396427ac75SLisandro Dalcin 4040e1a7a14fSJed Brown while (!ts->reason) { 40419566063dSJacob Faibussowitsch PetscCall(TSMonitor(ts, ts->steps, ts->ptime, ts->vec_sol)); 4042c6bf8827SStefano Zampini if (!ts->steprollback || (ts->stepresize && ts->resizerollback)) PetscCall(TSPreStep(ts)); 40439566063dSJacob Faibussowitsch PetscCall(TSStep(ts)); 40441baa6e33SBarry Smith if (ts->testjacobian) PetscCall(TSRHSJacobianTest(ts, NULL)); 40451baa6e33SBarry Smith if (ts->testjacobiantranspose) PetscCall(TSRHSJacobianTestTranspose(ts, NULL)); 4046cd4cee2dSHong Zhang if (ts->quadraturets && ts->costintegralfwd) { /* Must evaluate the cost integral before event is handled. The cost integral value can also be rolled back. */ 40477b0e2f17SHong Zhang if (ts->reason >= 0) ts->steps--; /* Revert the step number changed by TSStep() */ 40489566063dSJacob Faibussowitsch PetscCall(TSForwardCostIntegral(ts)); 40497b0e2f17SHong Zhang if (ts->reason >= 0) ts->steps++; 4050b1cb36f3SHong Zhang } 405158818c2dSLisandro Dalcin if (ts->forward_solve) { /* compute forward sensitivities before event handling because postevent() may change RHS and jump conditions may have to be applied */ 40527b0e2f17SHong Zhang if (ts->reason >= 0) ts->steps--; /* Revert the step number changed by TSStep() */ 40539566063dSJacob Faibussowitsch PetscCall(TSForwardStep(ts)); 40547b0e2f17SHong Zhang if (ts->reason >= 0) ts->steps++; 4055715f1b00SHong Zhang } 40569566063dSJacob Faibussowitsch PetscCall(TSPostEvaluate(ts)); 40579566063dSJacob 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. */ 40581baa6e33SBarry Smith if (ts->steprollback) PetscCall(TSPostEvaluate(ts)); 4059ecc87898SStefano Zampini if (!ts->steprollback && ts->resizerollback) PetscCall(TSResize(ts)); 406090d719a4SStefano Zampini /* check convergence */ 406190d719a4SStefano Zampini if (!ts->reason) { 406290d719a4SStefano Zampini if (ts->steps >= ts->max_steps) ts->reason = TS_CONVERGED_ITS; 406390d719a4SStefano Zampini else if (ts->ptime >= ts->max_time) ts->reason = TS_CONVERGED_TIME; 406490d719a4SStefano Zampini } 4065e783b05fSHong Zhang if (!ts->steprollback) { 40669566063dSJacob Faibussowitsch PetscCall(TSTrajectorySet(ts->trajectory, ts, ts->steps, ts->ptime, ts->vec_sol)); 40679566063dSJacob Faibussowitsch PetscCall(TSPostStep(ts)); 4068ecc87898SStefano Zampini if (!ts->resizerollback) PetscCall(TSResize(ts)); 4069ca4445c7SIlya Fursov 4070ca4445c7SIlya Fursov if (ts->tspan && ts->tspan->spanctr < ts->tspan->num_span_times) { 4071ca4445c7SIlya Fursov PetscCheck(ts->tspan->worktol > 0, PetscObjectComm((PetscObject)ts), PETSC_ERR_PLIB, "Unexpected state !(tspan->worktol > 0) in TSSolve()"); 4072ca4445c7SIlya Fursov if (PetscIsCloseAtTol(ts->ptime, ts->tspan->span_times[ts->tspan->spanctr], ts->tspan->worktol, 0)) PetscCall(VecCopy(ts->vec_sol, ts->tspan->vecs_sol[ts->tspan->spanctr++])); 4073ca4445c7SIlya Fursov } 4074aeb4809dSShri Abhyankar } 4075193ac0bcSJed Brown } 40769566063dSJacob Faibussowitsch PetscCall(TSMonitor(ts, ts->steps, ts->ptime, ts->vec_sol)); 40776427ac75SLisandro Dalcin 407849354f04SShri Abhyankar if (ts->exact_final_time == TS_EXACTFINALTIME_INTERPOLATE && ts->ptime > ts->max_time) { 40795dbbf88eSStefano Zampini if (!u) u = ts->vec_sol; 40809566063dSJacob Faibussowitsch PetscCall(TSInterpolate(ts, ts->max_time, u)); 4081cc708dedSBarry Smith ts->solvetime = ts->max_time; 4082b06615a5SLisandro Dalcin solution = u; 40839566063dSJacob Faibussowitsch PetscCall(TSMonitor(ts, -1, ts->solvetime, solution)); 40840574a7fbSJed Brown } else { 40859566063dSJacob Faibussowitsch if (u) PetscCall(VecCopy(ts->vec_sol, u)); 4086cc708dedSBarry Smith ts->solvetime = ts->ptime; 4087b06615a5SLisandro Dalcin solution = ts->vec_sol; 40880574a7fbSJed Brown } 4089193ac0bcSJed Brown } 4090d2daff3dSHong Zhang 40919566063dSJacob Faibussowitsch PetscCall(TSViewFromOptions(ts, NULL, "-ts_view")); 40929566063dSJacob Faibussowitsch PetscCall(VecViewFromOptions(solution, (PetscObject)ts, "-ts_view_solution")); 40939566063dSJacob Faibussowitsch PetscCall(PetscObjectSAWsBlock((PetscObject)ts)); 40941baa6e33SBarry Smith if (ts->adjoint_solve) PetscCall(TSAdjointSolve(ts)); 40953ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 40966a4d4014SLisandro Dalcin } 40976a4d4014SLisandro Dalcin 4098d763cef2SBarry Smith /*@ 4099b8123daeSJed Brown TSGetTime - Gets the time of the most recently completed step. 4100d763cef2SBarry Smith 4101d763cef2SBarry Smith Not Collective 4102d763cef2SBarry Smith 4103d763cef2SBarry Smith Input Parameter: 4104bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 4105d763cef2SBarry Smith 4106d763cef2SBarry Smith Output Parameter: 4107bcf0153eSBarry Smith . t - the current time. This time may not corresponds to the final time set with `TSSetMaxTime()`, use `TSGetSolveTime()`. 4108d763cef2SBarry Smith 4109d763cef2SBarry Smith Level: beginner 4110d763cef2SBarry Smith 4111b8123daeSJed Brown Note: 4112bcf0153eSBarry Smith When called during time step evaluation (e.g. during residual evaluation or via hooks set using `TSSetPreStep()`, 4113bcf0153eSBarry Smith `TSSetPreStage()`, `TSSetPostStage()`, or `TSSetPostStep()`), the time is the time at the start of the step being evaluated. 4114b8123daeSJed Brown 4115a94f484eSPierre Jolivet .seealso: [](ch_ts), `TS`, `TSGetSolveTime()`, `TSSetTime()`, `TSGetTimeStep()`, `TSGetStepNumber()` 4116d763cef2SBarry Smith @*/ 4117d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTime(TS ts, PetscReal *t) 4118d71ae5a4SJacob Faibussowitsch { 4119d763cef2SBarry Smith PetscFunctionBegin; 41200700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 41214f572ea9SToby Isaac PetscAssertPointer(t, 2); 4122d763cef2SBarry Smith *t = ts->ptime; 41233ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4124d763cef2SBarry Smith } 4125d763cef2SBarry Smith 4126e5e524a1SHong Zhang /*@ 4127e5e524a1SHong Zhang TSGetPrevTime - Gets the starting time of the previously completed step. 4128e5e524a1SHong Zhang 4129e5e524a1SHong Zhang Not Collective 4130e5e524a1SHong Zhang 4131e5e524a1SHong Zhang Input Parameter: 4132bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 4133e5e524a1SHong Zhang 4134e5e524a1SHong Zhang Output Parameter: 4135e5e524a1SHong Zhang . t - the previous time 4136e5e524a1SHong Zhang 4137e5e524a1SHong Zhang Level: beginner 4138e5e524a1SHong Zhang 4139a94f484eSPierre Jolivet .seealso: [](ch_ts), `TS`, `TSGetTime()`, `TSGetSolveTime()`, `TSGetTimeStep()` 4140e5e524a1SHong Zhang @*/ 4141d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetPrevTime(TS ts, PetscReal *t) 4142d71ae5a4SJacob Faibussowitsch { 4143e5e524a1SHong Zhang PetscFunctionBegin; 4144e5e524a1SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 41454f572ea9SToby Isaac PetscAssertPointer(t, 2); 4146e5e524a1SHong Zhang *t = ts->ptime_prev; 41473ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4148e5e524a1SHong Zhang } 4149e5e524a1SHong Zhang 41506a4d4014SLisandro Dalcin /*@ 41516a4d4014SLisandro Dalcin TSSetTime - Allows one to reset the time. 41526a4d4014SLisandro Dalcin 4153c3339decSBarry Smith Logically Collective 41546a4d4014SLisandro Dalcin 41556a4d4014SLisandro Dalcin Input Parameters: 4156bcf0153eSBarry Smith + ts - the `TS` context obtained from `TSCreate()` 4157b43aa488SJacob Faibussowitsch - t - the time 41586a4d4014SLisandro Dalcin 41596a4d4014SLisandro Dalcin Level: intermediate 41606a4d4014SLisandro Dalcin 41611cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetTime()`, `TSSetMaxSteps()` 41626a4d4014SLisandro Dalcin @*/ 4163d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTime(TS ts, PetscReal t) 4164d71ae5a4SJacob Faibussowitsch { 41656a4d4014SLisandro Dalcin PetscFunctionBegin; 41660700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4167c5eb9154SBarry Smith PetscValidLogicalCollectiveReal(ts, t, 2); 41686a4d4014SLisandro Dalcin ts->ptime = t; 41693ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 41706a4d4014SLisandro Dalcin } 41716a4d4014SLisandro Dalcin 4172cc4c1da9SBarry Smith /*@ 4173d763cef2SBarry Smith TSSetOptionsPrefix - Sets the prefix used for searching for all 4174d763cef2SBarry Smith TS options in the database. 4175d763cef2SBarry Smith 4176c3339decSBarry Smith Logically Collective 4177d763cef2SBarry Smith 4178d8d19677SJose E. Roman Input Parameters: 4179bcf0153eSBarry Smith + ts - The `TS` context 4180d763cef2SBarry Smith - prefix - The prefix to prepend to all option names 4181d763cef2SBarry Smith 4182bcf0153eSBarry Smith Level: advanced 4183bcf0153eSBarry Smith 4184bcf0153eSBarry Smith Note: 4185d763cef2SBarry Smith A hyphen (-) must NOT be given at the beginning of the prefix name. 4186d763cef2SBarry Smith The first character of all runtime options is AUTOMATICALLY the 4187d763cef2SBarry Smith hyphen. 4188d763cef2SBarry Smith 41891cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetFromOptions()`, `TSAppendOptionsPrefix()` 4190d763cef2SBarry Smith @*/ 4191d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetOptionsPrefix(TS ts, const char prefix[]) 4192d71ae5a4SJacob Faibussowitsch { 4193089b2837SJed Brown SNES snes; 4194d763cef2SBarry Smith 4195d763cef2SBarry Smith PetscFunctionBegin; 41960700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 41979566063dSJacob Faibussowitsch PetscCall(PetscObjectSetOptionsPrefix((PetscObject)ts, prefix)); 41989566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 41999566063dSJacob Faibussowitsch PetscCall(SNESSetOptionsPrefix(snes, prefix)); 42003ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4201d763cef2SBarry Smith } 4202d763cef2SBarry Smith 4203cc4c1da9SBarry Smith /*@ 4204d763cef2SBarry Smith TSAppendOptionsPrefix - Appends to the prefix used for searching for all 4205d763cef2SBarry Smith TS options in the database. 4206d763cef2SBarry Smith 4207c3339decSBarry Smith Logically Collective 4208d763cef2SBarry Smith 4209d8d19677SJose E. Roman Input Parameters: 4210bcf0153eSBarry Smith + ts - The `TS` context 4211d763cef2SBarry Smith - prefix - The prefix to prepend to all option names 4212d763cef2SBarry Smith 4213bcf0153eSBarry Smith Level: advanced 4214bcf0153eSBarry Smith 4215bcf0153eSBarry Smith Note: 4216d763cef2SBarry Smith A hyphen (-) must NOT be given at the beginning of the prefix name. 4217d763cef2SBarry Smith The first character of all runtime options is AUTOMATICALLY the 4218d763cef2SBarry Smith hyphen. 4219d763cef2SBarry Smith 42201cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetOptionsPrefix()`, `TSSetOptionsPrefix()`, `TSSetFromOptions()` 4221d763cef2SBarry Smith @*/ 4222d71ae5a4SJacob Faibussowitsch PetscErrorCode TSAppendOptionsPrefix(TS ts, const char prefix[]) 4223d71ae5a4SJacob Faibussowitsch { 4224089b2837SJed Brown SNES snes; 4225d763cef2SBarry Smith 4226d763cef2SBarry Smith PetscFunctionBegin; 42270700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 42289566063dSJacob Faibussowitsch PetscCall(PetscObjectAppendOptionsPrefix((PetscObject)ts, prefix)); 42299566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 42309566063dSJacob Faibussowitsch PetscCall(SNESAppendOptionsPrefix(snes, prefix)); 42313ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4232d763cef2SBarry Smith } 4233d763cef2SBarry Smith 4234cc4c1da9SBarry Smith /*@ 4235d763cef2SBarry Smith TSGetOptionsPrefix - Sets the prefix used for searching for all 4236bcf0153eSBarry Smith `TS` options in the database. 4237d763cef2SBarry Smith 4238d763cef2SBarry Smith Not Collective 4239d763cef2SBarry Smith 4240d763cef2SBarry Smith Input Parameter: 4241bcf0153eSBarry Smith . ts - The `TS` context 4242d763cef2SBarry Smith 4243d763cef2SBarry Smith Output Parameter: 4244d763cef2SBarry Smith . prefix - A pointer to the prefix string used 4245d763cef2SBarry Smith 4246d763cef2SBarry Smith Level: intermediate 4247d763cef2SBarry Smith 4248b43aa488SJacob Faibussowitsch Fortran Notes: 4249195e9b02SBarry Smith The user should pass in a string 'prefix' of 4250bcf0153eSBarry Smith sufficient length to hold the prefix. 4251bcf0153eSBarry Smith 42521cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSAppendOptionsPrefix()`, `TSSetFromOptions()` 4253d763cef2SBarry Smith @*/ 4254d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetOptionsPrefix(TS ts, const char *prefix[]) 4255d71ae5a4SJacob Faibussowitsch { 4256d763cef2SBarry Smith PetscFunctionBegin; 42570700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 42584f572ea9SToby Isaac PetscAssertPointer(prefix, 2); 42599566063dSJacob Faibussowitsch PetscCall(PetscObjectGetOptionsPrefix((PetscObject)ts, prefix)); 42603ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4261d763cef2SBarry Smith } 4262d763cef2SBarry Smith 4263d763cef2SBarry Smith /*@C 4264d763cef2SBarry Smith TSGetRHSJacobian - Returns the Jacobian J at the present timestep. 4265d763cef2SBarry Smith 4266bcf0153eSBarry Smith Not Collective, but parallel objects are returned if ts is parallel 4267d763cef2SBarry Smith 4268d763cef2SBarry Smith Input Parameter: 4269bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 4270d763cef2SBarry Smith 4271d763cef2SBarry Smith Output Parameters: 4272195e9b02SBarry Smith + Amat - The (approximate) Jacobian J of G, where U_t = G(U,t) (or `NULL`) 4273195e9b02SBarry Smith . Pmat - The matrix from which the preconditioner is constructed, usually the same as `Amat` (or `NULL`) 4274195e9b02SBarry Smith . func - Function to compute the Jacobian of the RHS (or `NULL`) 4275195e9b02SBarry Smith - ctx - User-defined context for Jacobian evaluation routine (or `NULL`) 4276d763cef2SBarry Smith 4277d763cef2SBarry Smith Level: intermediate 4278d763cef2SBarry Smith 4279bcf0153eSBarry Smith Note: 4280195e9b02SBarry Smith You can pass in `NULL` for any return argument you do not need. 4281bcf0153eSBarry Smith 42821cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetTimeStep()`, `TSGetMatrices()`, `TSGetTime()`, `TSGetStepNumber()` 4283d763cef2SBarry Smith 4284d763cef2SBarry Smith @*/ 42858434afd1SBarry Smith PetscErrorCode TSGetRHSJacobian(TS ts, Mat *Amat, Mat *Pmat, TSRHSJacobianFn **func, void **ctx) 4286d71ae5a4SJacob Faibussowitsch { 428724989b8cSPeter Brune DM dm; 4288089b2837SJed Brown 4289d763cef2SBarry Smith PetscFunctionBegin; 429023a57915SBarry Smith if (Amat || Pmat) { 429123a57915SBarry Smith SNES snes; 42929566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 42939566063dSJacob Faibussowitsch PetscCall(SNESSetUpMatrices(snes)); 42949566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(snes, Amat, Pmat, NULL, NULL)); 429523a57915SBarry Smith } 42969566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 42979566063dSJacob Faibussowitsch PetscCall(DMTSGetRHSJacobian(dm, func, ctx)); 42983ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4299d763cef2SBarry Smith } 4300d763cef2SBarry Smith 43012eca1d9cSJed Brown /*@C 43022eca1d9cSJed Brown TSGetIJacobian - Returns the implicit Jacobian at the present timestep. 43032eca1d9cSJed Brown 4304bcf0153eSBarry Smith Not Collective, but parallel objects are returned if ts is parallel 43052eca1d9cSJed Brown 43062eca1d9cSJed Brown Input Parameter: 4307bcf0153eSBarry Smith . ts - The `TS` context obtained from `TSCreate()` 43082eca1d9cSJed Brown 43092eca1d9cSJed Brown Output Parameters: 4310e4357dc4SBarry Smith + Amat - The (approximate) Jacobian of F(t,U,U_t) 4311195e9b02SBarry Smith . Pmat - The matrix from which the preconditioner is constructed, often the same as `Amat` 43122eca1d9cSJed Brown . f - The function to compute the matrices 43132eca1d9cSJed Brown - ctx - User-defined context for Jacobian evaluation routine 43142eca1d9cSJed Brown 43152eca1d9cSJed Brown Level: advanced 43162eca1d9cSJed Brown 4317bcf0153eSBarry Smith Note: 4318195e9b02SBarry Smith You can pass in `NULL` for any return argument you do not need. 4319bcf0153eSBarry Smith 43201cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetTimeStep()`, `TSGetRHSJacobian()`, `TSGetMatrices()`, `TSGetTime()`, `TSGetStepNumber()` 43212eca1d9cSJed Brown @*/ 43228434afd1SBarry Smith PetscErrorCode TSGetIJacobian(TS ts, Mat *Amat, Mat *Pmat, TSIJacobianFn **f, void **ctx) 4323d71ae5a4SJacob Faibussowitsch { 432424989b8cSPeter Brune DM dm; 43250910c330SBarry Smith 43262eca1d9cSJed Brown PetscFunctionBegin; 4327c0aab802Sstefano_zampini if (Amat || Pmat) { 4328c0aab802Sstefano_zampini SNES snes; 43299566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 43309566063dSJacob Faibussowitsch PetscCall(SNESSetUpMatrices(snes)); 43319566063dSJacob Faibussowitsch PetscCall(SNESGetJacobian(snes, Amat, Pmat, NULL, NULL)); 4332c0aab802Sstefano_zampini } 43339566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 43349566063dSJacob Faibussowitsch PetscCall(DMTSGetIJacobian(dm, f, ctx)); 43353ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 43362eca1d9cSJed Brown } 43372eca1d9cSJed Brown 4338af0996ceSBarry Smith #include <petsc/private/dmimpl.h> 43396c699258SBarry Smith /*@ 4340bcf0153eSBarry Smith TSSetDM - Sets the `DM` that may be used by some nonlinear solvers or preconditioners under the `TS` 43416c699258SBarry Smith 4342c3339decSBarry Smith Logically Collective 43436c699258SBarry Smith 43446c699258SBarry Smith Input Parameters: 4345bcf0153eSBarry Smith + ts - the `TS` integrator object 4346195e9b02SBarry Smith - dm - the dm, cannot be `NULL` 43476c699258SBarry Smith 43486c699258SBarry Smith Level: intermediate 43496c699258SBarry Smith 4350bcf0153eSBarry Smith Notes: 4351bcf0153eSBarry Smith A `DM` can only be used for solving one problem at a time because information about the problem is stored on the `DM`, 4352bcf0153eSBarry Smith even when not using interfaces like `DMTSSetIFunction()`. Use `DMClone()` to get a distinct `DM` when solving 4353bcf0153eSBarry Smith different problems using the same function space. 4354bcf0153eSBarry Smith 43551cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `DM`, `TSGetDM()`, `SNESSetDM()`, `SNESGetDM()` 43566c699258SBarry Smith @*/ 4357d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetDM(TS ts, DM dm) 4358d71ae5a4SJacob Faibussowitsch { 4359089b2837SJed Brown SNES snes; 4360942e3340SBarry Smith DMTS tsdm; 43616c699258SBarry Smith 43626c699258SBarry Smith PetscFunctionBegin; 43630700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 43642a808120SBarry Smith PetscValidHeaderSpecific(dm, DM_CLASSID, 2); 43659566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)dm)); 4366942e3340SBarry Smith if (ts->dm) { /* Move the DMTS context over to the new DM unless the new DM already has one */ 43672a34c10cSBarry Smith if (ts->dm->dmts && !dm->dmts) { 43689566063dSJacob Faibussowitsch PetscCall(DMCopyDMTS(ts->dm, dm)); 43699566063dSJacob Faibussowitsch PetscCall(DMGetDMTS(ts->dm, &tsdm)); 43701e66621cSBarry Smith /* Grant write privileges to the replacement DM */ 43711e66621cSBarry Smith if (tsdm->originaldm == ts->dm) tsdm->originaldm = dm; 437224989b8cSPeter Brune } 43739566063dSJacob Faibussowitsch PetscCall(DMDestroy(&ts->dm)); 437424989b8cSPeter Brune } 43756c699258SBarry Smith ts->dm = dm; 4376bbd56ea5SKarl Rupp 43779566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 43789566063dSJacob Faibussowitsch PetscCall(SNESSetDM(snes, dm)); 43793ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 43806c699258SBarry Smith } 43816c699258SBarry Smith 43826c699258SBarry Smith /*@ 4383bcf0153eSBarry Smith TSGetDM - Gets the `DM` that may be used by some preconditioners 43846c699258SBarry Smith 43853f9fe445SBarry Smith Not Collective 43866c699258SBarry Smith 43876c699258SBarry Smith Input Parameter: 4388bcf0153eSBarry Smith . ts - the `TS` 43896c699258SBarry Smith 43906c699258SBarry Smith Output Parameter: 4391195e9b02SBarry Smith . dm - the `DM` 43926c699258SBarry Smith 43936c699258SBarry Smith Level: intermediate 43946c699258SBarry Smith 43951cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `DM`, `TSSetDM()`, `SNESSetDM()`, `SNESGetDM()` 43966c699258SBarry Smith @*/ 4397d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetDM(TS ts, DM *dm) 4398d71ae5a4SJacob Faibussowitsch { 43996c699258SBarry Smith PetscFunctionBegin; 44000700a824SBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4401496e6a7aSJed Brown if (!ts->dm) { 44029566063dSJacob Faibussowitsch PetscCall(DMShellCreate(PetscObjectComm((PetscObject)ts), &ts->dm)); 44034bd3aaa3SHong Zhang if (ts->snes) PetscCall(SNESSetDM(ts->snes, ts->dm)); 4404496e6a7aSJed Brown } 44056c699258SBarry Smith *dm = ts->dm; 44063ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 44076c699258SBarry Smith } 44081713a123SBarry Smith 44090f5c6efeSJed Brown /*@ 44100f5c6efeSJed Brown SNESTSFormFunction - Function to evaluate nonlinear residual 44110f5c6efeSJed Brown 4412c3339decSBarry Smith Logically Collective 44130f5c6efeSJed Brown 4414d8d19677SJose E. Roman Input Parameters: 4415d42a1c89SJed Brown + snes - nonlinear solver 44160910c330SBarry Smith . U - the current state at which to evaluate the residual 4417d42a1c89SJed Brown - ctx - user context, must be a TS 44180f5c6efeSJed Brown 44190f5c6efeSJed Brown Output Parameter: 44200f5c6efeSJed Brown . F - the nonlinear residual 44210f5c6efeSJed Brown 44220f5c6efeSJed Brown Level: advanced 44230f5c6efeSJed Brown 4424bcf0153eSBarry Smith Note: 4425bcf0153eSBarry Smith This function is not normally called by users and is automatically registered with the `SNES` used by `TS`. 4426bcf0153eSBarry Smith It is most frequently passed to `MatFDColoringSetFunction()`. 4427bcf0153eSBarry Smith 44281cc06b55SBarry Smith .seealso: [](ch_ts), `SNESSetFunction()`, `MatFDColoringSetFunction()` 44290f5c6efeSJed Brown @*/ 4430d71ae5a4SJacob Faibussowitsch PetscErrorCode SNESTSFormFunction(SNES snes, Vec U, Vec F, void *ctx) 4431d71ae5a4SJacob Faibussowitsch { 44320f5c6efeSJed Brown TS ts = (TS)ctx; 44330f5c6efeSJed Brown 44340f5c6efeSJed Brown PetscFunctionBegin; 44350f5c6efeSJed Brown PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 44360910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 2); 44370f5c6efeSJed Brown PetscValidHeaderSpecific(F, VEC_CLASSID, 3); 44380f5c6efeSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 4); 4439346ce620SStefano Zampini PetscCheck(ts->ops->snesfunction, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "No method snesfunction for TS of type %s", ((PetscObject)ts)->type_name); 4440346ce620SStefano Zampini PetscCall((*ts->ops->snesfunction)(snes, U, F, ts)); 44413ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 44420f5c6efeSJed Brown } 44430f5c6efeSJed Brown 44440f5c6efeSJed Brown /*@ 44450f5c6efeSJed Brown SNESTSFormJacobian - Function to evaluate the Jacobian 44460f5c6efeSJed Brown 4447c3339decSBarry Smith Collective 44480f5c6efeSJed Brown 4449d8d19677SJose E. Roman Input Parameters: 44500f5c6efeSJed Brown + snes - nonlinear solver 44510910c330SBarry Smith . U - the current state at which to evaluate the residual 4452bcf0153eSBarry Smith - ctx - user context, must be a `TS` 44530f5c6efeSJed Brown 4454d8d19677SJose E. Roman Output Parameters: 44550f5c6efeSJed Brown + A - the Jacobian 44566b867d5aSJose E. Roman - B - the preconditioning matrix (may be the same as A) 44570f5c6efeSJed Brown 44580f5c6efeSJed Brown Level: developer 44590f5c6efeSJed Brown 4460bcf0153eSBarry Smith Note: 4461bcf0153eSBarry Smith This function is not normally called by users and is automatically registered with the `SNES` used by `TS`. 4462bcf0153eSBarry Smith 44631cc06b55SBarry Smith .seealso: [](ch_ts), `SNESSetJacobian()` 44640f5c6efeSJed Brown @*/ 4465d71ae5a4SJacob Faibussowitsch PetscErrorCode SNESTSFormJacobian(SNES snes, Vec U, Mat A, Mat B, void *ctx) 4466d71ae5a4SJacob Faibussowitsch { 44670f5c6efeSJed Brown TS ts = (TS)ctx; 44680f5c6efeSJed Brown 44690f5c6efeSJed Brown PetscFunctionBegin; 44700f5c6efeSJed Brown PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 44710910c330SBarry Smith PetscValidHeaderSpecific(U, VEC_CLASSID, 2); 447294ab13aaSBarry Smith PetscValidHeaderSpecific(A, MAT_CLASSID, 3); 447394ab13aaSBarry Smith PetscValidHeaderSpecific(B, MAT_CLASSID, 4); 4474064a246eSJacob Faibussowitsch PetscValidHeaderSpecific(ts, TS_CLASSID, 5); 4475346ce620SStefano Zampini PetscCheck(ts->ops->snesjacobian, PetscObjectComm((PetscObject)ts), PETSC_ERR_SUP, "No method snesjacobian for TS of type %s", ((PetscObject)ts)->type_name); 4476346ce620SStefano Zampini PetscCall((*ts->ops->snesjacobian)(snes, U, A, B, ts)); 44773ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 44780f5c6efeSJed Brown } 4479325fc9f4SBarry Smith 44800e4ef248SJed Brown /*@C 4481dd8e379bSPierre Jolivet TSComputeRHSFunctionLinear - Evaluate the right-hand side via the user-provided Jacobian, for linear problems Udot = A U only 44820e4ef248SJed Brown 4483c3339decSBarry Smith Collective 44840e4ef248SJed Brown 44854165533cSJose E. Roman Input Parameters: 44860e4ef248SJed Brown + ts - time stepping context 44870e4ef248SJed Brown . t - time at which to evaluate 44880910c330SBarry Smith . U - state at which to evaluate 44890e4ef248SJed Brown - ctx - context 44900e4ef248SJed Brown 44914165533cSJose E. Roman Output Parameter: 4492dd8e379bSPierre Jolivet . F - right-hand side 44930e4ef248SJed Brown 44940e4ef248SJed Brown Level: intermediate 44950e4ef248SJed Brown 4496bcf0153eSBarry Smith Note: 4497dd8e379bSPierre Jolivet This function is intended to be passed to `TSSetRHSFunction()` to evaluate the right-hand side for linear problems. 4498bcf0153eSBarry Smith The matrix (and optionally the evaluation context) should be passed to `TSSetRHSJacobian()`. 44990e4ef248SJed Brown 45001cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetRHSFunction()`, `TSSetRHSJacobian()`, `TSComputeRHSJacobianConstant()` 45010e4ef248SJed Brown @*/ 4502d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeRHSFunctionLinear(TS ts, PetscReal t, Vec U, Vec F, void *ctx) 4503d71ae5a4SJacob Faibussowitsch { 45040e4ef248SJed Brown Mat Arhs, Brhs; 45050e4ef248SJed Brown 45060e4ef248SJed Brown PetscFunctionBegin; 45079566063dSJacob Faibussowitsch PetscCall(TSGetRHSMats_Private(ts, &Arhs, &Brhs)); 45082663174eSHong Zhang /* undo the damage caused by shifting */ 45099566063dSJacob Faibussowitsch PetscCall(TSRecoverRHSJacobian(ts, Arhs, Brhs)); 45109566063dSJacob Faibussowitsch PetscCall(TSComputeRHSJacobian(ts, t, U, Arhs, Brhs)); 45119566063dSJacob Faibussowitsch PetscCall(MatMult(Arhs, U, F)); 45123ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 45130e4ef248SJed Brown } 45140e4ef248SJed Brown 45150e4ef248SJed Brown /*@C 45160e4ef248SJed Brown TSComputeRHSJacobianConstant - Reuses a Jacobian that is time-independent. 45170e4ef248SJed Brown 4518c3339decSBarry Smith Collective 45190e4ef248SJed Brown 45204165533cSJose E. Roman Input Parameters: 45210e4ef248SJed Brown + ts - time stepping context 45220e4ef248SJed Brown . t - time at which to evaluate 45230910c330SBarry Smith . U - state at which to evaluate 45240e4ef248SJed Brown - ctx - context 45250e4ef248SJed Brown 45264165533cSJose E. Roman Output Parameters: 45270e4ef248SJed Brown + A - pointer to operator 452897bb3fdcSJose E. Roman - B - pointer to preconditioning matrix 45290e4ef248SJed Brown 45300e4ef248SJed Brown Level: intermediate 45310e4ef248SJed Brown 4532bcf0153eSBarry Smith Note: 4533bcf0153eSBarry Smith This function is intended to be passed to `TSSetRHSJacobian()` to evaluate the Jacobian for linear time-independent problems. 45340e4ef248SJed Brown 45351cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetRHSFunction()`, `TSSetRHSJacobian()`, `TSComputeRHSFunctionLinear()` 45360e4ef248SJed Brown @*/ 4537d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeRHSJacobianConstant(TS ts, PetscReal t, Vec U, Mat A, Mat B, void *ctx) 4538d71ae5a4SJacob Faibussowitsch { 45390e4ef248SJed Brown PetscFunctionBegin; 45403ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 45410e4ef248SJed Brown } 45420e4ef248SJed Brown 45430026cea9SSean Farley /*@C 45440026cea9SSean Farley TSComputeIFunctionLinear - Evaluate the left hand side via the user-provided Jacobian, for linear problems only 45450026cea9SSean Farley 4546c3339decSBarry Smith Collective 45470026cea9SSean Farley 45484165533cSJose E. Roman Input Parameters: 45490026cea9SSean Farley + ts - time stepping context 45500026cea9SSean Farley . t - time at which to evaluate 45510910c330SBarry Smith . U - state at which to evaluate 45520910c330SBarry Smith . Udot - time derivative of state vector 45530026cea9SSean Farley - ctx - context 45540026cea9SSean Farley 45554165533cSJose E. Roman Output Parameter: 45560026cea9SSean Farley . F - left hand side 45570026cea9SSean Farley 45580026cea9SSean Farley Level: intermediate 45590026cea9SSean Farley 45600026cea9SSean Farley Notes: 45610910c330SBarry 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 4562bcf0153eSBarry Smith user is required to write their own `TSComputeIFunction()`. 4563bcf0153eSBarry Smith This function is intended to be passed to `TSSetIFunction()` to evaluate the left hand side for linear problems. 4564bcf0153eSBarry Smith The matrix (and optionally the evaluation context) should be passed to `TSSetIJacobian()`. 45650026cea9SSean Farley 4566bcf0153eSBarry Smith Note that using this function is NOT equivalent to using `TSComputeRHSFunctionLinear()` since that solves Udot = A U 45679ae8fd06SBarry Smith 45681cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetIFunction()`, `TSSetIJacobian()`, `TSComputeIJacobianConstant()`, `TSComputeRHSFunctionLinear()` 45690026cea9SSean Farley @*/ 4570d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIFunctionLinear(TS ts, PetscReal t, Vec U, Vec Udot, Vec F, void *ctx) 4571d71ae5a4SJacob Faibussowitsch { 45720026cea9SSean Farley Mat A, B; 45730026cea9SSean Farley 45740026cea9SSean Farley PetscFunctionBegin; 45759566063dSJacob Faibussowitsch PetscCall(TSGetIJacobian(ts, &A, &B, NULL, NULL)); 45769566063dSJacob Faibussowitsch PetscCall(TSComputeIJacobian(ts, t, U, Udot, 1.0, A, B, PETSC_TRUE)); 45779566063dSJacob Faibussowitsch PetscCall(MatMult(A, Udot, F)); 45783ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 45790026cea9SSean Farley } 45800026cea9SSean Farley 45810026cea9SSean Farley /*@C 45828434afd1SBarry Smith TSComputeIJacobianConstant - Reuses the matrix previously computed with the provided `TSIJacobianFn` for a semi-implicit DAE or ODE 45830026cea9SSean Farley 4584c3339decSBarry Smith Collective 45850026cea9SSean Farley 45864165533cSJose E. Roman Input Parameters: 45870026cea9SSean Farley + ts - time stepping context 45880026cea9SSean Farley . t - time at which to evaluate 45890910c330SBarry Smith . U - state at which to evaluate 45900910c330SBarry Smith . Udot - time derivative of state vector 45910026cea9SSean Farley . shift - shift to apply 45920026cea9SSean Farley - ctx - context 45930026cea9SSean Farley 45944165533cSJose E. Roman Output Parameters: 45950026cea9SSean Farley + A - pointer to operator 4596d1c5d1fcSBarry Smith - B - pointer to matrix from which the preconditioner is built (often `A`) 45970026cea9SSean Farley 4598b41af12eSJed Brown Level: advanced 45990026cea9SSean Farley 46000026cea9SSean Farley Notes: 4601bcf0153eSBarry Smith This function is intended to be passed to `TSSetIJacobian()` to evaluate the Jacobian for linear time-independent problems. 46020026cea9SSean Farley 4603b41af12eSJed Brown It is only appropriate for problems of the form 4604b41af12eSJed Brown 4605d1c5d1fcSBarry Smith $$ 4606d1c5d1fcSBarry Smith M \dot{U} = F(U,t) 4607d1c5d1fcSBarry Smith $$ 4608b41af12eSJed Brown 4609bcf0153eSBarry Smith where M is constant and F is non-stiff. The user must pass M to `TSSetIJacobian()`. The current implementation only 4610bcf0153eSBarry Smith works with IMEX time integration methods such as `TSROSW` and `TSARKIMEX`, since there is no support for de-constructing 4611b41af12eSJed Brown an implicit operator of the form 4612b41af12eSJed Brown 4613d1c5d1fcSBarry Smith $$ 4614d1c5d1fcSBarry Smith shift*M + J 4615d1c5d1fcSBarry Smith $$ 4616b41af12eSJed Brown 4617b41af12eSJed 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 4618b41af12eSJed Brown a copy of M or reassemble it when requested. 4619b41af12eSJed Brown 46201cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSROSW`, `TSARKIMEX`, `TSSetIFunction()`, `TSSetIJacobian()`, `TSComputeIFunctionLinear()` 46210026cea9SSean Farley @*/ 4622d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIJacobianConstant(TS ts, PetscReal t, Vec U, Vec Udot, PetscReal shift, Mat A, Mat B, void *ctx) 4623d71ae5a4SJacob Faibussowitsch { 46240026cea9SSean Farley PetscFunctionBegin; 46259566063dSJacob Faibussowitsch PetscCall(MatScale(A, shift / ts->ijacobian.shift)); 4626b41af12eSJed Brown ts->ijacobian.shift = shift; 46273ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 46280026cea9SSean Farley } 4629b41af12eSJed Brown 4630e817cc15SEmil Constantinescu /*@ 4631bcf0153eSBarry Smith TSGetEquationType - Gets the type of the equation that `TS` is solving. 4632e817cc15SEmil Constantinescu 4633e817cc15SEmil Constantinescu Not Collective 4634e817cc15SEmil Constantinescu 4635e817cc15SEmil Constantinescu Input Parameter: 4636bcf0153eSBarry Smith . ts - the `TS` context 4637e817cc15SEmil Constantinescu 4638e817cc15SEmil Constantinescu Output Parameter: 4639bcf0153eSBarry Smith . equation_type - see `TSEquationType` 4640e817cc15SEmil Constantinescu 4641e817cc15SEmil Constantinescu Level: beginner 4642e817cc15SEmil Constantinescu 46431cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetEquationType()`, `TSEquationType` 4644e817cc15SEmil Constantinescu @*/ 4645d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetEquationType(TS ts, TSEquationType *equation_type) 4646d71ae5a4SJacob Faibussowitsch { 4647e817cc15SEmil Constantinescu PetscFunctionBegin; 4648e817cc15SEmil Constantinescu PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 46494f572ea9SToby Isaac PetscAssertPointer(equation_type, 2); 4650e817cc15SEmil Constantinescu *equation_type = ts->equation_type; 46513ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4652e817cc15SEmil Constantinescu } 4653e817cc15SEmil Constantinescu 4654e817cc15SEmil Constantinescu /*@ 4655bcf0153eSBarry Smith TSSetEquationType - Sets the type of the equation that `TS` is solving. 4656e817cc15SEmil Constantinescu 4657e817cc15SEmil Constantinescu Not Collective 4658e817cc15SEmil Constantinescu 4659d8d19677SJose E. Roman Input Parameters: 4660bcf0153eSBarry Smith + ts - the `TS` context 4661bcf0153eSBarry Smith - equation_type - see `TSEquationType` 4662e817cc15SEmil Constantinescu 4663e817cc15SEmil Constantinescu Level: advanced 4664e817cc15SEmil Constantinescu 46651cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetEquationType()`, `TSEquationType` 4666e817cc15SEmil Constantinescu @*/ 4667d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetEquationType(TS ts, TSEquationType equation_type) 4668d71ae5a4SJacob Faibussowitsch { 4669e817cc15SEmil Constantinescu PetscFunctionBegin; 4670e817cc15SEmil Constantinescu PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4671e817cc15SEmil Constantinescu ts->equation_type = equation_type; 46723ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4673e817cc15SEmil Constantinescu } 46740026cea9SSean Farley 46754af1b03aSJed Brown /*@ 4676bcf0153eSBarry Smith TSGetConvergedReason - Gets the reason the `TS` iteration was stopped. 46774af1b03aSJed Brown 46784af1b03aSJed Brown Not Collective 46794af1b03aSJed Brown 46804af1b03aSJed Brown Input Parameter: 4681bcf0153eSBarry Smith . ts - the `TS` context 46824af1b03aSJed Brown 46834af1b03aSJed Brown Output Parameter: 4684bcf0153eSBarry Smith . reason - negative value indicates diverged, positive value converged, see `TSConvergedReason` or the 46854af1b03aSJed Brown manual pages for the individual convergence tests for complete lists 46864af1b03aSJed Brown 4687487e0bb9SJed Brown Level: beginner 46884af1b03aSJed Brown 4689bcf0153eSBarry Smith Note: 4690bcf0153eSBarry Smith Can only be called after the call to `TSSolve()` is complete. 46914af1b03aSJed Brown 46927d66147cSPierre Jolivet .seealso: [](ch_ts), `TS`, `TSSolve()`, `TSConvergedReason` 46934af1b03aSJed Brown @*/ 4694d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetConvergedReason(TS ts, TSConvergedReason *reason) 4695d71ae5a4SJacob Faibussowitsch { 46964af1b03aSJed Brown PetscFunctionBegin; 46974af1b03aSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 46984f572ea9SToby Isaac PetscAssertPointer(reason, 2); 46994af1b03aSJed Brown *reason = ts->reason; 47003ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 47014af1b03aSJed Brown } 47024af1b03aSJed Brown 4703d6ad946cSShri Abhyankar /*@ 4704bcf0153eSBarry Smith TSSetConvergedReason - Sets the reason for handling the convergence of `TSSolve()`. 4705d6ad946cSShri Abhyankar 47066b221cbeSPatrick Sanan Logically Collective; reason must contain common value 4707d6ad946cSShri Abhyankar 47086b221cbeSPatrick Sanan Input Parameters: 4709bcf0153eSBarry Smith + ts - the `TS` context 4710bcf0153eSBarry Smith - reason - negative value indicates diverged, positive value converged, see `TSConvergedReason` or the 4711d6ad946cSShri Abhyankar manual pages for the individual convergence tests for complete lists 4712d6ad946cSShri Abhyankar 4713f5abba47SShri Abhyankar Level: advanced 4714d6ad946cSShri Abhyankar 4715bcf0153eSBarry Smith Note: 4716bcf0153eSBarry Smith Can only be called while `TSSolve()` is active. 4717d6ad946cSShri Abhyankar 47181cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSolve()`, `TSConvergedReason` 4719d6ad946cSShri Abhyankar @*/ 4720d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetConvergedReason(TS ts, TSConvergedReason reason) 4721d71ae5a4SJacob Faibussowitsch { 4722d6ad946cSShri Abhyankar PetscFunctionBegin; 4723d6ad946cSShri Abhyankar PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4724d6ad946cSShri Abhyankar ts->reason = reason; 47253ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4726d6ad946cSShri Abhyankar } 4727d6ad946cSShri Abhyankar 4728cc708dedSBarry Smith /*@ 4729bcf0153eSBarry Smith TSGetSolveTime - Gets the time after a call to `TSSolve()` 4730cc708dedSBarry Smith 4731cc708dedSBarry Smith Not Collective 4732cc708dedSBarry Smith 4733cc708dedSBarry Smith Input Parameter: 4734bcf0153eSBarry Smith . ts - the `TS` context 4735cc708dedSBarry Smith 4736cc708dedSBarry Smith Output Parameter: 4737bcf0153eSBarry Smith . ftime - the final time. This time corresponds to the final time set with `TSSetMaxTime()` 4738cc708dedSBarry Smith 4739487e0bb9SJed Brown Level: beginner 4740cc708dedSBarry Smith 4741bcf0153eSBarry Smith Note: 4742bcf0153eSBarry Smith Can only be called after the call to `TSSolve()` is complete. 4743cc708dedSBarry Smith 47447d66147cSPierre Jolivet .seealso: [](ch_ts), `TS`, `TSSolve()`, `TSConvergedReason` 4745cc708dedSBarry Smith @*/ 4746d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSolveTime(TS ts, PetscReal *ftime) 4747d71ae5a4SJacob Faibussowitsch { 4748cc708dedSBarry Smith PetscFunctionBegin; 4749cc708dedSBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 47504f572ea9SToby Isaac PetscAssertPointer(ftime, 2); 4751cc708dedSBarry Smith *ftime = ts->solvetime; 47523ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4753cc708dedSBarry Smith } 4754cc708dedSBarry Smith 47552c18e0fdSBarry Smith /*@ 47565ef26d82SJed Brown TSGetSNESIterations - Gets the total number of nonlinear iterations 47579f67acb7SJed Brown used by the time integrator. 47589f67acb7SJed Brown 47599f67acb7SJed Brown Not Collective 47609f67acb7SJed Brown 47619f67acb7SJed Brown Input Parameter: 4762bcf0153eSBarry Smith . ts - `TS` context 47639f67acb7SJed Brown 47649f67acb7SJed Brown Output Parameter: 47659f67acb7SJed Brown . nits - number of nonlinear iterations 47669f67acb7SJed Brown 47679f67acb7SJed Brown Level: intermediate 47689f67acb7SJed Brown 4769195e9b02SBarry Smith Note: 4770bcf0153eSBarry Smith This counter is reset to zero for each successive call to `TSSolve()`. 4771bcf0153eSBarry Smith 47721cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSolve()`, `TSGetKSPIterations()` 47739f67acb7SJed Brown @*/ 4774d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSNESIterations(TS ts, PetscInt *nits) 4775d71ae5a4SJacob Faibussowitsch { 47769f67acb7SJed Brown PetscFunctionBegin; 47779f67acb7SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 47784f572ea9SToby Isaac PetscAssertPointer(nits, 2); 47795ef26d82SJed Brown *nits = ts->snes_its; 47803ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 47819f67acb7SJed Brown } 47829f67acb7SJed Brown 47839f67acb7SJed Brown /*@ 47845ef26d82SJed Brown TSGetKSPIterations - Gets the total number of linear iterations 47859f67acb7SJed Brown used by the time integrator. 47869f67acb7SJed Brown 47879f67acb7SJed Brown Not Collective 47889f67acb7SJed Brown 47899f67acb7SJed Brown Input Parameter: 4790bcf0153eSBarry Smith . ts - `TS` context 47919f67acb7SJed Brown 47929f67acb7SJed Brown Output Parameter: 47939f67acb7SJed Brown . lits - number of linear iterations 47949f67acb7SJed Brown 47959f67acb7SJed Brown Level: intermediate 47969f67acb7SJed Brown 4797bcf0153eSBarry Smith Note: 4798bcf0153eSBarry Smith This counter is reset to zero for each successive call to `TSSolve()`. 4799bcf0153eSBarry Smith 48001cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSolve()`, `TSGetSNESIterations()`, `SNESGetKSPIterations()` 48019f67acb7SJed Brown @*/ 4802d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetKSPIterations(TS ts, PetscInt *lits) 4803d71ae5a4SJacob Faibussowitsch { 48049f67acb7SJed Brown PetscFunctionBegin; 48059f67acb7SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 48064f572ea9SToby Isaac PetscAssertPointer(lits, 2); 48075ef26d82SJed Brown *lits = ts->ksp_its; 48083ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 48099f67acb7SJed Brown } 48109f67acb7SJed Brown 4811cef5090cSJed Brown /*@ 4812cef5090cSJed Brown TSGetStepRejections - Gets the total number of rejected steps. 4813cef5090cSJed Brown 4814cef5090cSJed Brown Not Collective 4815cef5090cSJed Brown 4816cef5090cSJed Brown Input Parameter: 4817bcf0153eSBarry Smith . ts - `TS` context 4818cef5090cSJed Brown 4819cef5090cSJed Brown Output Parameter: 4820cef5090cSJed Brown . rejects - number of steps rejected 4821cef5090cSJed Brown 4822cef5090cSJed Brown Level: intermediate 4823cef5090cSJed Brown 4824bcf0153eSBarry Smith Note: 4825bcf0153eSBarry Smith This counter is reset to zero for each successive call to `TSSolve()`. 4826bcf0153eSBarry Smith 48271cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSolve()`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxStepRejections()`, `TSGetSNESFailures()`, `TSSetMaxSNESFailures()`, `TSSetErrorIfStepFails()` 4828cef5090cSJed Brown @*/ 4829d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetStepRejections(TS ts, PetscInt *rejects) 4830d71ae5a4SJacob Faibussowitsch { 4831cef5090cSJed Brown PetscFunctionBegin; 4832cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 48334f572ea9SToby Isaac PetscAssertPointer(rejects, 2); 4834cef5090cSJed Brown *rejects = ts->reject; 48353ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4836cef5090cSJed Brown } 4837cef5090cSJed Brown 4838cef5090cSJed Brown /*@ 4839bcf0153eSBarry Smith TSGetSNESFailures - Gets the total number of failed `SNES` solves in a `TS` 4840cef5090cSJed Brown 4841cef5090cSJed Brown Not Collective 4842cef5090cSJed Brown 4843cef5090cSJed Brown Input Parameter: 4844bcf0153eSBarry Smith . ts - `TS` context 4845cef5090cSJed Brown 4846cef5090cSJed Brown Output Parameter: 4847cef5090cSJed Brown . fails - number of failed nonlinear solves 4848cef5090cSJed Brown 4849cef5090cSJed Brown Level: intermediate 4850cef5090cSJed Brown 4851bcf0153eSBarry Smith Note: 4852bcf0153eSBarry Smith This counter is reset to zero for each successive call to `TSSolve()`. 4853bcf0153eSBarry Smith 48541cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSolve()`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxStepRejections()`, `TSGetStepRejections()`, `TSSetMaxSNESFailures()` 4855cef5090cSJed Brown @*/ 4856d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetSNESFailures(TS ts, PetscInt *fails) 4857d71ae5a4SJacob Faibussowitsch { 4858cef5090cSJed Brown PetscFunctionBegin; 4859cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 48604f572ea9SToby Isaac PetscAssertPointer(fails, 2); 4861cef5090cSJed Brown *fails = ts->num_snes_failures; 48623ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4863cef5090cSJed Brown } 4864cef5090cSJed Brown 4865cef5090cSJed Brown /*@ 4866bcf0153eSBarry Smith TSSetMaxStepRejections - Sets the maximum number of step rejections before a time step fails 4867cef5090cSJed Brown 4868cef5090cSJed Brown Not Collective 4869cef5090cSJed Brown 4870d8d19677SJose E. Roman Input Parameters: 4871bcf0153eSBarry Smith + ts - `TS` context 487209cb0f53SBarry Smith - rejects - maximum number of rejected steps, pass `PETSC_UNLIMITED` for unlimited 4873cef5090cSJed Brown 4874cef5090cSJed Brown Options Database Key: 4875cef5090cSJed Brown . -ts_max_reject - Maximum number of step rejections before a step fails 4876cef5090cSJed Brown 4877cef5090cSJed Brown Level: intermediate 4878cef5090cSJed Brown 487909cb0f53SBarry Smith Developer Note: 488009cb0f53SBarry Smith The options database name is incorrect. 488109cb0f53SBarry Smith 48821cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `SNES`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxSNESFailures()`, `TSGetStepRejections()`, `TSGetSNESFailures()`, `TSSetErrorIfStepFails()`, `TSGetConvergedReason()` 4883cef5090cSJed Brown @*/ 4884d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMaxStepRejections(TS ts, PetscInt rejects) 4885d71ae5a4SJacob Faibussowitsch { 4886cef5090cSJed Brown PetscFunctionBegin; 4887cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 488809cb0f53SBarry Smith if (rejects == PETSC_UNLIMITED || rejects == -1) { 488909cb0f53SBarry Smith ts->max_reject = PETSC_UNLIMITED; 489009cb0f53SBarry Smith } else { 489109cb0f53SBarry Smith PetscCheck(rejects >= 0, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Cannot have a negative maximum number of rejections"); 4892cef5090cSJed Brown ts->max_reject = rejects; 489309cb0f53SBarry Smith } 48943ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4895cef5090cSJed Brown } 4896cef5090cSJed Brown 4897cef5090cSJed Brown /*@ 4898bcf0153eSBarry Smith TSSetMaxSNESFailures - Sets the maximum number of failed `SNES` solves 4899cef5090cSJed Brown 4900cef5090cSJed Brown Not Collective 4901cef5090cSJed Brown 4902d8d19677SJose E. Roman Input Parameters: 4903bcf0153eSBarry Smith + ts - `TS` context 490409cb0f53SBarry Smith - fails - maximum number of failed nonlinear solves, pass `PETSC_UNLIMITED` to allow any number of failures. 4905cef5090cSJed Brown 4906cef5090cSJed Brown Options Database Key: 4907cef5090cSJed Brown . -ts_max_snes_failures - Maximum number of nonlinear solve failures 4908cef5090cSJed Brown 4909cef5090cSJed Brown Level: intermediate 4910cef5090cSJed Brown 49111cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `SNES`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxStepRejections()`, `TSGetStepRejections()`, `TSGetSNESFailures()`, `SNESGetConvergedReason()`, `TSGetConvergedReason()` 4912cef5090cSJed Brown @*/ 4913d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMaxSNESFailures(TS ts, PetscInt fails) 4914d71ae5a4SJacob Faibussowitsch { 4915cef5090cSJed Brown PetscFunctionBegin; 4916cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 491709cb0f53SBarry Smith if (fails == PETSC_UNLIMITED || fails == -1) { 491809cb0f53SBarry Smith ts->max_snes_failures = PETSC_UNLIMITED; 491909cb0f53SBarry Smith } else { 492009cb0f53SBarry Smith PetscCheck(fails >= 0, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Cannot have a negative maximum number of failures"); 4921cef5090cSJed Brown ts->max_snes_failures = fails; 492209cb0f53SBarry Smith } 49233ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4924cef5090cSJed Brown } 4925cef5090cSJed Brown 4926cef5090cSJed Brown /*@ 4927195e9b02SBarry Smith TSSetErrorIfStepFails - Immediately error if no step succeeds during `TSSolve()` 4928cef5090cSJed Brown 4929cef5090cSJed Brown Not Collective 4930cef5090cSJed Brown 4931d8d19677SJose E. Roman Input Parameters: 4932bcf0153eSBarry Smith + ts - `TS` context 4933bcf0153eSBarry Smith - err - `PETSC_TRUE` to error if no step succeeds, `PETSC_FALSE` to return without failure 4934cef5090cSJed Brown 4935cef5090cSJed Brown Options Database Key: 4936cef5090cSJed Brown . -ts_error_if_step_fails - Error if no step succeeds 4937cef5090cSJed Brown 4938cef5090cSJed Brown Level: intermediate 4939cef5090cSJed Brown 494042747ad1SJacob Faibussowitsch .seealso: [](ch_ts), `TS`, `TSGetSNESIterations()`, `TSGetKSPIterations()`, `TSSetMaxStepRejections()`, `TSGetStepRejections()`, `TSGetSNESFailures()`, `TSGetConvergedReason()` 4941cef5090cSJed Brown @*/ 4942d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetErrorIfStepFails(TS ts, PetscBool err) 4943d71ae5a4SJacob Faibussowitsch { 4944cef5090cSJed Brown PetscFunctionBegin; 4945cef5090cSJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 4946cef5090cSJed Brown ts->errorifstepfailed = err; 49473ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 4948cef5090cSJed Brown } 4949cef5090cSJed Brown 495084df9cb4SJed Brown /*@ 4951552698daSJed Brown TSGetAdapt - Get the adaptive controller context for the current method 495284df9cb4SJed Brown 49538f14a041SBarry Smith Collective if controller has not yet been created 495484df9cb4SJed Brown 49554165533cSJose E. Roman Input Parameter: 4956ed81e22dSJed Brown . ts - time stepping context 495784df9cb4SJed Brown 49584165533cSJose E. Roman Output Parameter: 4959ed81e22dSJed Brown . adapt - adaptive controller 496084df9cb4SJed Brown 496184df9cb4SJed Brown Level: intermediate 496284df9cb4SJed Brown 49631cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSAdapt`, `TSAdaptSetType()`, `TSAdaptChoose()` 496484df9cb4SJed Brown @*/ 4965d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetAdapt(TS ts, TSAdapt *adapt) 4966d71ae5a4SJacob Faibussowitsch { 496784df9cb4SJed Brown PetscFunctionBegin; 496884df9cb4SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 49694f572ea9SToby Isaac PetscAssertPointer(adapt, 2); 497084df9cb4SJed Brown if (!ts->adapt) { 49719566063dSJacob Faibussowitsch PetscCall(TSAdaptCreate(PetscObjectComm((PetscObject)ts), &ts->adapt)); 49729566063dSJacob Faibussowitsch PetscCall(PetscObjectIncrementTabLevel((PetscObject)ts->adapt, (PetscObject)ts, 1)); 497384df9cb4SJed Brown } 4974bec58848SLisandro Dalcin *adapt = ts->adapt; 49753ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 497684df9cb4SJed Brown } 4977d6ebe24aSShri Abhyankar 49781c3436cfSJed Brown /*@ 4979195e9b02SBarry Smith TSSetTolerances - Set tolerances for local truncation error when using an adaptive controller 49801c3436cfSJed Brown 49811c3436cfSJed Brown Logically Collective 49821c3436cfSJed Brown 49834165533cSJose E. Roman Input Parameters: 49841c3436cfSJed Brown + ts - time integration context 498509cb0f53SBarry Smith . atol - scalar absolute tolerances 498609cb0f53SBarry Smith . vatol - vector of absolute tolerances or `NULL`, used in preference to `atol` if present 498709cb0f53SBarry Smith . rtol - scalar relative tolerances 498809cb0f53SBarry Smith - vrtol - vector of relative tolerances or `NULL`, used in preference to `rtol` if present 49891c3436cfSJed Brown 4990195e9b02SBarry Smith Options Database Keys: 4991a3cdaa26SBarry Smith + -ts_rtol <rtol> - relative tolerance for local truncation error 499267b8a455SSatish Balay - -ts_atol <atol> - Absolute tolerance for local truncation error 4993a3cdaa26SBarry Smith 4994bcf0153eSBarry Smith Level: beginner 4995bcf0153eSBarry Smith 49963ff766beSShri Abhyankar Notes: 499709cb0f53SBarry Smith `PETSC_CURRENT` or `PETSC_DETERMINE` may be used for `atol` or `rtol` to indicate the current value 499809cb0f53SBarry Smith or the default value from when the object's type was set. 499909cb0f53SBarry Smith 50003ff766beSShri Abhyankar With PETSc's implicit schemes for DAE problems, the calculation of the local truncation error 50013ff766beSShri Abhyankar (LTE) includes both the differential and the algebraic variables. If one wants the LTE to be 50023ff766beSShri Abhyankar computed only for the differential or the algebraic part then this can be done using the vector of 50033ff766beSShri Abhyankar tolerances vatol. For example, by setting the tolerance vector with the desired tolerance for the 50043ff766beSShri Abhyankar differential part and infinity for the algebraic part, the LTE calculation will include only the 50053ff766beSShri Abhyankar differential variables. 50063ff766beSShri Abhyankar 500709cb0f53SBarry Smith Fortran Note: 500809cb0f53SBarry Smith Use `PETSC_CURRENT_INTEGER` or `PETSC_DETERMINE_INTEGER`. 500909cb0f53SBarry Smith 50101cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSAdapt`, `TSErrorWeightedNorm()`, `TSGetTolerances()` 50111c3436cfSJed Brown @*/ 5012d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTolerances(TS ts, PetscReal atol, Vec vatol, PetscReal rtol, Vec vrtol) 5013d71ae5a4SJacob Faibussowitsch { 50141c3436cfSJed Brown PetscFunctionBegin; 501509cb0f53SBarry Smith if (atol == (PetscReal)PETSC_DETERMINE) { 5016dd460d27SBarry Smith ts->atol = ts->default_atol; 501709cb0f53SBarry Smith } else if (atol != (PetscReal)PETSC_CURRENT) { 501809cb0f53SBarry Smith PetscCheck(atol >= 0.0, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Absolute tolerance %g must be non-negative", (double)atol); 501909cb0f53SBarry Smith ts->atol = atol; 502009cb0f53SBarry Smith } 502109cb0f53SBarry Smith 50221c3436cfSJed Brown if (vatol) { 50239566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)vatol)); 50249566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vatol)); 50251c3436cfSJed Brown ts->vatol = vatol; 50261c3436cfSJed Brown } 502709cb0f53SBarry Smith 502809cb0f53SBarry Smith if (rtol == (PetscReal)PETSC_DETERMINE) { 5029dd460d27SBarry Smith ts->rtol = ts->default_rtol; 503009cb0f53SBarry Smith } else if (rtol != (PetscReal)PETSC_CURRENT) { 503109cb0f53SBarry Smith PetscCheck(rtol >= 0.0, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_OUTOFRANGE, "Relative tolerance %g must be non-negative", (double)rtol); 503209cb0f53SBarry Smith ts->rtol = rtol; 503309cb0f53SBarry Smith } 503409cb0f53SBarry Smith 50351c3436cfSJed Brown if (vrtol) { 50369566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)vrtol)); 50379566063dSJacob Faibussowitsch PetscCall(VecDestroy(&ts->vrtol)); 50381c3436cfSJed Brown ts->vrtol = vrtol; 50391c3436cfSJed Brown } 50403ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 50411c3436cfSJed Brown } 50421c3436cfSJed Brown 5043c5033834SJed Brown /*@ 5044c5033834SJed Brown TSGetTolerances - Get tolerances for local truncation error when using adaptive controller 5045c5033834SJed Brown 5046c5033834SJed Brown Logically Collective 5047c5033834SJed Brown 50484165533cSJose E. Roman Input Parameter: 5049c5033834SJed Brown . ts - time integration context 5050c5033834SJed Brown 50514165533cSJose E. Roman Output Parameters: 5052195e9b02SBarry Smith + atol - scalar absolute tolerances, `NULL` to ignore 5053195e9b02SBarry Smith . vatol - vector of absolute tolerances, `NULL` to ignore 5054195e9b02SBarry Smith . rtol - scalar relative tolerances, `NULL` to ignore 5055195e9b02SBarry Smith - vrtol - vector of relative tolerances, `NULL` to ignore 5056c5033834SJed Brown 5057c5033834SJed Brown Level: beginner 5058c5033834SJed Brown 50591cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSAdapt`, `TSErrorWeightedNorm()`, `TSSetTolerances()` 5060c5033834SJed Brown @*/ 5061d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTolerances(TS ts, PetscReal *atol, Vec *vatol, PetscReal *rtol, Vec *vrtol) 5062d71ae5a4SJacob Faibussowitsch { 5063c5033834SJed Brown PetscFunctionBegin; 5064c5033834SJed Brown if (atol) *atol = ts->atol; 5065c5033834SJed Brown if (vatol) *vatol = ts->vatol; 5066c5033834SJed Brown if (rtol) *rtol = ts->rtol; 5067c5033834SJed Brown if (vrtol) *vrtol = ts->vrtol; 50683ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5069c5033834SJed Brown } 5070c5033834SJed Brown 50719c6b16b5SShri Abhyankar /*@ 50728a175baeSEmil Constantinescu TSErrorWeightedNorm - compute a weighted norm of the difference between two state vectors based on supplied absolute and relative tolerances 50731c3436cfSJed Brown 5074c3339decSBarry Smith Collective 50751c3436cfSJed Brown 50764165533cSJose E. Roman Input Parameters: 50771c3436cfSJed Brown + ts - time stepping context 5078a4868fbcSLisandro Dalcin . U - state vector, usually ts->vec_sol 5079a4868fbcSLisandro Dalcin . Y - state vector to be compared to U 5080bcf0153eSBarry Smith - wnormtype - norm type, either `NORM_2` or `NORM_INFINITY` 50817619abb3SShri 50824165533cSJose E. Roman Output Parameters: 5083a2b725a8SWilliam Gropp + norm - weighted norm, a value of 1.0 achieves a balance between absolute and relative tolerances 50848a175baeSEmil Constantinescu . norma - weighted norm, a value of 1.0 means that the error meets the absolute tolerance set by the user 5085a2b725a8SWilliam Gropp - normr - weighted norm, a value of 1.0 means that the error meets the relative tolerance set by the user 5086a4868fbcSLisandro Dalcin 5087bcf0153eSBarry Smith Options Database Key: 5088a4868fbcSLisandro Dalcin . -ts_adapt_wnormtype <wnormtype> - 2, INFINITY 5089a4868fbcSLisandro Dalcin 50901c3436cfSJed Brown Level: developer 50911c3436cfSJed Brown 50928c38e02aSSatish Balay .seealso: [](ch_ts), `TS`, `VecErrorWeightedNorms()`, `TSErrorWeightedENorm()` 50931c3436cfSJed Brown @*/ 5094d71ae5a4SJacob Faibussowitsch PetscErrorCode TSErrorWeightedNorm(TS ts, Vec U, Vec Y, NormType wnormtype, PetscReal *norm, PetscReal *norma, PetscReal *normr) 5095d71ae5a4SJacob Faibussowitsch { 5096037d63e4SStefano Zampini PetscInt norma_loc, norm_loc, normr_loc; 50978a175baeSEmil Constantinescu 50988a175baeSEmil Constantinescu PetscFunctionBegin; 50998a175baeSEmil Constantinescu PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5100037d63e4SStefano 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)); 5101037d63e4SStefano Zampini if (wnormtype == NORM_2) { 5102037d63e4SStefano Zampini if (norm_loc) *norm = PetscSqrtReal(PetscSqr(*norm) / norm_loc); 5103037d63e4SStefano Zampini if (norma_loc) *norma = PetscSqrtReal(PetscSqr(*norma) / norma_loc); 5104037d63e4SStefano Zampini if (normr_loc) *normr = PetscSqrtReal(PetscSqr(*normr) / normr_loc); 51058a175baeSEmil Constantinescu } 51063c633725SBarry Smith PetscCheck(!PetscIsInfOrNanScalar(*norm), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in norm"); 51073c633725SBarry Smith PetscCheck(!PetscIsInfOrNanScalar(*norma), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in norma"); 51083c633725SBarry Smith PetscCheck(!PetscIsInfOrNanScalar(*normr), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in normr"); 51093ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 51108a175baeSEmil Constantinescu } 51118a175baeSEmil Constantinescu 51128a175baeSEmil Constantinescu /*@ 51138a175baeSEmil Constantinescu TSErrorWeightedENorm - compute a weighted error norm based on supplied absolute and relative tolerances 51148a175baeSEmil Constantinescu 5115c3339decSBarry Smith Collective 51168a175baeSEmil Constantinescu 51174165533cSJose E. Roman Input Parameters: 51188a175baeSEmil Constantinescu + ts - time stepping context 51198a175baeSEmil Constantinescu . E - error vector 51208a175baeSEmil Constantinescu . U - state vector, usually ts->vec_sol 51218a175baeSEmil Constantinescu . Y - state vector, previous time step 5122bcf0153eSBarry Smith - wnormtype - norm type, either `NORM_2` or `NORM_INFINITY` 51238a175baeSEmil Constantinescu 51244165533cSJose E. Roman Output Parameters: 5125a2b725a8SWilliam Gropp + norm - weighted norm, a value of 1.0 achieves a balance between absolute and relative tolerances 51268a175baeSEmil Constantinescu . norma - weighted norm, a value of 1.0 means that the error meets the absolute tolerance set by the user 5127a2b725a8SWilliam Gropp - normr - weighted norm, a value of 1.0 means that the error meets the relative tolerance set by the user 51288a175baeSEmil Constantinescu 5129bcf0153eSBarry Smith Options Database Key: 51308a175baeSEmil Constantinescu . -ts_adapt_wnormtype <wnormtype> - 2, INFINITY 51318a175baeSEmil Constantinescu 51328a175baeSEmil Constantinescu Level: developer 51338a175baeSEmil Constantinescu 51348c38e02aSSatish Balay .seealso: [](ch_ts), `TS`, `VecErrorWeightedNorms()`, `TSErrorWeightedNorm()` 51358a175baeSEmil Constantinescu @*/ 5136d71ae5a4SJacob Faibussowitsch PetscErrorCode TSErrorWeightedENorm(TS ts, Vec E, Vec U, Vec Y, NormType wnormtype, PetscReal *norm, PetscReal *norma, PetscReal *normr) 5137d71ae5a4SJacob Faibussowitsch { 5138037d63e4SStefano Zampini PetscInt norma_loc, norm_loc, normr_loc; 5139037d63e4SStefano Zampini 51408a175baeSEmil Constantinescu PetscFunctionBegin; 5141037d63e4SStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5142037d63e4SStefano 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)); 5143037d63e4SStefano Zampini if (wnormtype == NORM_2) { 5144037d63e4SStefano Zampini if (norm_loc) *norm = PetscSqrtReal(PetscSqr(*norm) / norm_loc); 5145037d63e4SStefano Zampini if (norma_loc) *norma = PetscSqrtReal(PetscSqr(*norma) / norma_loc); 5146037d63e4SStefano Zampini if (normr_loc) *normr = PetscSqrtReal(PetscSqr(*normr) / normr_loc); 5147037d63e4SStefano Zampini } 5148037d63e4SStefano Zampini PetscCheck(!PetscIsInfOrNanScalar(*norm), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in norm"); 5149037d63e4SStefano Zampini PetscCheck(!PetscIsInfOrNanScalar(*norma), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in norma"); 5150037d63e4SStefano Zampini PetscCheck(!PetscIsInfOrNanScalar(*normr), PetscObjectComm((PetscObject)ts), PETSC_ERR_FP, "Infinite or not-a-number generated in normr"); 51513ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 51528a175baeSEmil Constantinescu } 51538a175baeSEmil Constantinescu 51548d59e960SJed Brown /*@ 51558d59e960SJed Brown TSSetCFLTimeLocal - Set the local CFL constraint relative to forward Euler 51568d59e960SJed Brown 5157c3339decSBarry Smith Logically Collective 51588d59e960SJed Brown 51594165533cSJose E. Roman Input Parameters: 51608d59e960SJed Brown + ts - time stepping context 51618d59e960SJed Brown - cfltime - maximum stable time step if using forward Euler (value can be different on each process) 51628d59e960SJed Brown 51638d59e960SJed Brown Note: 51648d59e960SJed Brown After calling this function, the global CFL time can be obtained by calling TSGetCFLTime() 51658d59e960SJed Brown 51668d59e960SJed Brown Level: intermediate 51678d59e960SJed Brown 51681cc06b55SBarry Smith .seealso: [](ch_ts), `TSGetCFLTime()`, `TSADAPTCFL` 51698d59e960SJed Brown @*/ 5170d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetCFLTimeLocal(TS ts, PetscReal cfltime) 5171d71ae5a4SJacob Faibussowitsch { 51728d59e960SJed Brown PetscFunctionBegin; 51738d59e960SJed Brown PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 51748d59e960SJed Brown ts->cfltime_local = cfltime; 51758d59e960SJed Brown ts->cfltime = -1.; 51763ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 51778d59e960SJed Brown } 51788d59e960SJed Brown 51798d59e960SJed Brown /*@ 51808d59e960SJed Brown TSGetCFLTime - Get the maximum stable time step according to CFL criteria applied to forward Euler 51818d59e960SJed Brown 5182c3339decSBarry Smith Collective 51838d59e960SJed Brown 51844165533cSJose E. Roman Input Parameter: 51858d59e960SJed Brown . ts - time stepping context 51868d59e960SJed Brown 51874165533cSJose E. Roman Output Parameter: 51888d59e960SJed Brown . cfltime - maximum stable time step for forward Euler 51898d59e960SJed Brown 51908d59e960SJed Brown Level: advanced 51918d59e960SJed Brown 51921cc06b55SBarry Smith .seealso: [](ch_ts), `TSSetCFLTimeLocal()` 51938d59e960SJed Brown @*/ 5194d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetCFLTime(TS ts, PetscReal *cfltime) 5195d71ae5a4SJacob Faibussowitsch { 51968d59e960SJed Brown PetscFunctionBegin; 5197462c564dSBarry Smith if (ts->cfltime < 0) PetscCallMPI(MPIU_Allreduce(&ts->cfltime_local, &ts->cfltime, 1, MPIU_REAL, MPIU_MIN, PetscObjectComm((PetscObject)ts))); 51988d59e960SJed Brown *cfltime = ts->cfltime; 51993ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 52008d59e960SJed Brown } 52018d59e960SJed Brown 5202d6ebe24aSShri Abhyankar /*@ 5203d6ebe24aSShri Abhyankar TSVISetVariableBounds - Sets the lower and upper bounds for the solution vector. xl <= x <= xu 5204d6ebe24aSShri Abhyankar 5205d6ebe24aSShri Abhyankar Input Parameters: 5206bcf0153eSBarry Smith + ts - the `TS` context. 5207d6ebe24aSShri Abhyankar . xl - lower bound. 5208a2b725a8SWilliam Gropp - xu - upper bound. 5209d6ebe24aSShri Abhyankar 52102bd2b0e6SSatish Balay Level: advanced 52112bd2b0e6SSatish Balay 5212bcf0153eSBarry Smith Note: 5213bcf0153eSBarry Smith If this routine is not called then the lower and upper bounds are set to 5214bcf0153eSBarry Smith `PETSC_NINFINITY` and `PETSC_INFINITY` respectively during `SNESSetUp()`. 5215bcf0153eSBarry Smith 52161cc06b55SBarry Smith .seealso: [](ch_ts), `TS` 5217d6ebe24aSShri Abhyankar @*/ 5218d71ae5a4SJacob Faibussowitsch PetscErrorCode TSVISetVariableBounds(TS ts, Vec xl, Vec xu) 5219d71ae5a4SJacob Faibussowitsch { 5220d6ebe24aSShri Abhyankar SNES snes; 5221d6ebe24aSShri Abhyankar 5222d6ebe24aSShri Abhyankar PetscFunctionBegin; 52239566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 52249566063dSJacob Faibussowitsch PetscCall(SNESVISetVariableBounds(snes, xl, xu)); 52253ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5226d6ebe24aSShri Abhyankar } 5227d6ebe24aSShri Abhyankar 5228f9c1d6abSBarry Smith /*@ 5229f9c1d6abSBarry Smith TSComputeLinearStability - computes the linear stability function at a point 5230f9c1d6abSBarry Smith 5231c3339decSBarry Smith Collective 5232f9c1d6abSBarry Smith 5233f9c1d6abSBarry Smith Input Parameters: 5234bcf0153eSBarry Smith + ts - the `TS` context 52352fe279fdSBarry Smith . xr - real part of input argument 52362fe279fdSBarry Smith - xi - imaginary part of input argument 5237f9c1d6abSBarry Smith 5238f9c1d6abSBarry Smith Output Parameters: 52392fe279fdSBarry Smith + yr - real part of function value 52402fe279fdSBarry Smith - yi - imaginary part of function value 5241f9c1d6abSBarry Smith 5242f9c1d6abSBarry Smith Level: developer 5243f9c1d6abSBarry Smith 52441cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetRHSFunction()`, `TSComputeIFunction()` 5245f9c1d6abSBarry Smith @*/ 5246d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeLinearStability(TS ts, PetscReal xr, PetscReal xi, PetscReal *yr, PetscReal *yi) 5247d71ae5a4SJacob Faibussowitsch { 5248f9c1d6abSBarry Smith PetscFunctionBegin; 5249f9c1d6abSBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5250dbbe0bcdSBarry Smith PetscUseTypeMethod(ts, linearstability, xr, xi, yr, yi); 52513ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5252f9c1d6abSBarry Smith } 525324655328SShri 525424655328SShri /*@ 5255dcb233daSLisandro Dalcin TSRestartStep - Flags the solver to restart the next step 5256dcb233daSLisandro Dalcin 5257c3339decSBarry Smith Collective 5258dcb233daSLisandro Dalcin 5259dcb233daSLisandro Dalcin Input Parameter: 5260bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 5261dcb233daSLisandro Dalcin 5262dcb233daSLisandro Dalcin Level: advanced 5263dcb233daSLisandro Dalcin 5264dcb233daSLisandro Dalcin Notes: 5265bcf0153eSBarry Smith Multistep methods like `TSBDF` or Runge-Kutta methods with FSAL property require restarting the solver in the event of 5266dcb233daSLisandro Dalcin discontinuities. These discontinuities may be introduced as a consequence of explicitly modifications to the solution 5267dcb233daSLisandro Dalcin vector (which PETSc attempts to detect and handle) or problem coefficients (which PETSc is not able to detect). For 5268bcf0153eSBarry Smith the sake of correctness and maximum safety, users are expected to call `TSRestart()` whenever they introduce 5269dcb233daSLisandro Dalcin discontinuities in callback routines (e.g. prestep and poststep routines, or implicit/rhs function routines with 5270dcb233daSLisandro Dalcin discontinuous source terms). 5271dcb233daSLisandro Dalcin 52721cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSBDF`, `TSSolve()`, `TSSetPreStep()`, `TSSetPostStep()` 5273dcb233daSLisandro Dalcin @*/ 5274d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRestartStep(TS ts) 5275d71ae5a4SJacob Faibussowitsch { 5276dcb233daSLisandro Dalcin PetscFunctionBegin; 5277dcb233daSLisandro Dalcin PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5278dcb233daSLisandro Dalcin ts->steprestart = PETSC_TRUE; 52793ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5280dcb233daSLisandro Dalcin } 5281dcb233daSLisandro Dalcin 5282dcb233daSLisandro Dalcin /*@ 528324655328SShri TSRollBack - Rolls back one time step 528424655328SShri 5285c3339decSBarry Smith Collective 528624655328SShri 528724655328SShri Input Parameter: 5288bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 528924655328SShri 529024655328SShri Level: advanced 529124655328SShri 52929dc50cb5SStefano Zampini .seealso: [](ch_ts), `TS`, `TSGetStepRollBack()`, `TSCreate()`, `TSSetUp()`, `TSDestroy()`, `TSSolve()`, `TSSetPreStep()`, `TSSetPreStage()`, `TSInterpolate()` 529324655328SShri @*/ 5294d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRollBack(TS ts) 5295d71ae5a4SJacob Faibussowitsch { 529624655328SShri PetscFunctionBegin; 529724655328SShri PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 52983c633725SBarry Smith PetscCheck(!ts->steprollback, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONGSTATE, "TSRollBack already called"); 5299c61711c8SStefano Zampini PetscTryTypeMethod(ts, rollback); 5300c61711c8SStefano Zampini PetscCall(VecCopy(ts->vec_sol0, ts->vec_sol)); 530124655328SShri ts->time_step = ts->ptime - ts->ptime_prev; 530224655328SShri ts->ptime = ts->ptime_prev; 5303be5899b3SLisandro Dalcin ts->ptime_prev = ts->ptime_prev_rollback; 53042808aa04SLisandro Dalcin ts->steps--; 5305b3de5cdeSLisandro Dalcin ts->steprollback = PETSC_TRUE; 53063ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 530724655328SShri } 5308aeb4809dSShri Abhyankar 5309ff22ae23SHong Zhang /*@ 53109dc50cb5SStefano Zampini TSGetStepRollBack - Get the internal flag indicating if you are rolling back a step 53119dc50cb5SStefano Zampini 53129dc50cb5SStefano Zampini Not collective 53139dc50cb5SStefano Zampini 53149dc50cb5SStefano Zampini Input Parameter: 53159dc50cb5SStefano Zampini . ts - the `TS` context obtained from `TSCreate()` 53169dc50cb5SStefano Zampini 53179dc50cb5SStefano Zampini Output Parameter: 53189dc50cb5SStefano Zampini . flg - the rollback flag 53199dc50cb5SStefano Zampini 53209dc50cb5SStefano Zampini Level: advanced 53219dc50cb5SStefano Zampini 53229dc50cb5SStefano Zampini .seealso: [](ch_ts), `TS`, `TSCreate()`, `TSRollBack()` 53239dc50cb5SStefano Zampini @*/ 53249dc50cb5SStefano Zampini PetscErrorCode TSGetStepRollBack(TS ts, PetscBool *flg) 53259dc50cb5SStefano Zampini { 53269dc50cb5SStefano Zampini PetscFunctionBegin; 53279dc50cb5SStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 53289dc50cb5SStefano Zampini PetscAssertPointer(flg, 2); 53299dc50cb5SStefano Zampini *flg = ts->steprollback; 53309dc50cb5SStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 53319dc50cb5SStefano Zampini } 53329dc50cb5SStefano Zampini 53339dc50cb5SStefano Zampini /*@ 5334c6bf8827SStefano Zampini TSGetStepResize - Get the internal flag indicating if the current step is after a resize. 5335c6bf8827SStefano Zampini 5336c6bf8827SStefano Zampini Not collective 5337c6bf8827SStefano Zampini 5338c6bf8827SStefano Zampini Input Parameter: 5339c6bf8827SStefano Zampini . ts - the `TS` context obtained from `TSCreate()` 5340c6bf8827SStefano Zampini 5341c6bf8827SStefano Zampini Output Parameter: 5342c6bf8827SStefano Zampini . flg - the resize flag 5343c6bf8827SStefano Zampini 5344c6bf8827SStefano Zampini Level: advanced 5345c6bf8827SStefano Zampini 5346c6bf8827SStefano Zampini .seealso: [](ch_ts), `TS`, `TSCreate()`, `TSSetResize()` 5347c6bf8827SStefano Zampini @*/ 5348c6bf8827SStefano Zampini PetscErrorCode TSGetStepResize(TS ts, PetscBool *flg) 5349c6bf8827SStefano Zampini { 5350c6bf8827SStefano Zampini PetscFunctionBegin; 5351c6bf8827SStefano Zampini PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5352c6bf8827SStefano Zampini PetscAssertPointer(flg, 2); 5353c6bf8827SStefano Zampini *flg = ts->stepresize; 5354c6bf8827SStefano Zampini PetscFunctionReturn(PETSC_SUCCESS); 5355c6bf8827SStefano Zampini } 5356c6bf8827SStefano Zampini 5357c6bf8827SStefano Zampini /*@ 5358ff22ae23SHong Zhang TSGetStages - Get the number of stages and stage values 5359ff22ae23SHong Zhang 5360ff22ae23SHong Zhang Input Parameter: 5361bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 5362ff22ae23SHong Zhang 53630429704eSStefano Zampini Output Parameters: 53640429704eSStefano Zampini + ns - the number of stages 53650429704eSStefano Zampini - Y - the current stage vectors 53660429704eSStefano Zampini 5367ff22ae23SHong Zhang Level: advanced 5368ff22ae23SHong Zhang 5369bcf0153eSBarry Smith Note: 5370195e9b02SBarry Smith Both `ns` and `Y` can be `NULL`. 53710429704eSStefano Zampini 53721cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSCreate()` 5373ff22ae23SHong Zhang @*/ 5374d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetStages(TS ts, PetscInt *ns, Vec **Y) 5375d71ae5a4SJacob Faibussowitsch { 5376ff22ae23SHong Zhang PetscFunctionBegin; 5377ff22ae23SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 53784f572ea9SToby Isaac if (ns) PetscAssertPointer(ns, 2); 53794f572ea9SToby Isaac if (Y) PetscAssertPointer(Y, 3); 53800429704eSStefano Zampini if (!ts->ops->getstages) { 53810429704eSStefano Zampini if (ns) *ns = 0; 53820429704eSStefano Zampini if (Y) *Y = NULL; 5383dbbe0bcdSBarry Smith } else PetscUseTypeMethod(ts, getstages, ns, Y); 53843ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5385ff22ae23SHong Zhang } 5386ff22ae23SHong Zhang 5387847ff0e1SMatthew G. Knepley /*@C 5388847ff0e1SMatthew G. Knepley TSComputeIJacobianDefaultColor - Computes the Jacobian using finite differences and coloring to exploit matrix sparsity. 5389847ff0e1SMatthew G. Knepley 5390c3339decSBarry Smith Collective 5391847ff0e1SMatthew G. Knepley 5392847ff0e1SMatthew G. Knepley Input Parameters: 5393bcf0153eSBarry Smith + ts - the `TS` context 5394847ff0e1SMatthew G. Knepley . t - current timestep 5395847ff0e1SMatthew G. Knepley . U - state vector 5396847ff0e1SMatthew G. Knepley . Udot - time derivative of state vector 5397847ff0e1SMatthew G. Knepley . shift - shift to apply, see note below 5398847ff0e1SMatthew G. Knepley - ctx - an optional user context 5399847ff0e1SMatthew G. Knepley 5400847ff0e1SMatthew G. Knepley Output Parameters: 5401847ff0e1SMatthew G. Knepley + J - Jacobian matrix (not altered in this routine) 5402195e9b02SBarry Smith - B - newly computed Jacobian matrix to use with preconditioner (generally the same as `J`) 5403847ff0e1SMatthew G. Knepley 5404847ff0e1SMatthew G. Knepley Level: intermediate 5405847ff0e1SMatthew G. Knepley 5406847ff0e1SMatthew G. Knepley Notes: 5407847ff0e1SMatthew G. Knepley If F(t,U,Udot)=0 is the DAE, the required Jacobian is 5408847ff0e1SMatthew G. Knepley 5409847ff0e1SMatthew G. Knepley dF/dU + shift*dF/dUdot 5410847ff0e1SMatthew G. Knepley 5411847ff0e1SMatthew G. Knepley Most users should not need to explicitly call this routine, as it 5412847ff0e1SMatthew G. Knepley is used internally within the nonlinear solvers. 5413847ff0e1SMatthew G. Knepley 5414bcf0153eSBarry Smith This will first try to get the coloring from the `DM`. If the `DM` type has no coloring 5415847ff0e1SMatthew G. Knepley routine, then it will try to get the coloring from the matrix. This requires that the 5416847ff0e1SMatthew G. Knepley matrix have nonzero entries precomputed. 5417847ff0e1SMatthew G. Knepley 54181cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetIJacobian()`, `MatFDColoringCreate()`, `MatFDColoringSetFunction()` 5419847ff0e1SMatthew G. Knepley @*/ 5420d71ae5a4SJacob Faibussowitsch PetscErrorCode TSComputeIJacobianDefaultColor(TS ts, PetscReal t, Vec U, Vec Udot, PetscReal shift, Mat J, Mat B, void *ctx) 5421d71ae5a4SJacob Faibussowitsch { 5422847ff0e1SMatthew G. Knepley SNES snes; 5423847ff0e1SMatthew G. Knepley MatFDColoring color; 5424847ff0e1SMatthew G. Knepley PetscBool hascolor, matcolor = PETSC_FALSE; 5425847ff0e1SMatthew G. Knepley 5426847ff0e1SMatthew G. Knepley PetscFunctionBegin; 54279566063dSJacob Faibussowitsch PetscCall(PetscOptionsGetBool(((PetscObject)ts)->options, ((PetscObject)ts)->prefix, "-ts_fd_color_use_mat", &matcolor, NULL)); 54289566063dSJacob Faibussowitsch PetscCall(PetscObjectQuery((PetscObject)B, "TSMatFDColoring", (PetscObject *)&color)); 5429847ff0e1SMatthew G. Knepley if (!color) { 5430847ff0e1SMatthew G. Knepley DM dm; 5431847ff0e1SMatthew G. Knepley ISColoring iscoloring; 5432847ff0e1SMatthew G. Knepley 54339566063dSJacob Faibussowitsch PetscCall(TSGetDM(ts, &dm)); 54349566063dSJacob Faibussowitsch PetscCall(DMHasColoring(dm, &hascolor)); 5435847ff0e1SMatthew G. Knepley if (hascolor && !matcolor) { 54369566063dSJacob Faibussowitsch PetscCall(DMCreateColoring(dm, IS_COLORING_GLOBAL, &iscoloring)); 54379566063dSJacob Faibussowitsch PetscCall(MatFDColoringCreate(B, iscoloring, &color)); 54389566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetFunction(color, (PetscErrorCode(*)(void))SNESTSFormFunction, (void *)ts)); 54399566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetFromOptions(color)); 54409566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetUp(B, iscoloring, color)); 54419566063dSJacob Faibussowitsch PetscCall(ISColoringDestroy(&iscoloring)); 5442847ff0e1SMatthew G. Knepley } else { 5443847ff0e1SMatthew G. Knepley MatColoring mc; 5444847ff0e1SMatthew G. Knepley 54459566063dSJacob Faibussowitsch PetscCall(MatColoringCreate(B, &mc)); 54469566063dSJacob Faibussowitsch PetscCall(MatColoringSetDistance(mc, 2)); 54479566063dSJacob Faibussowitsch PetscCall(MatColoringSetType(mc, MATCOLORINGSL)); 54489566063dSJacob Faibussowitsch PetscCall(MatColoringSetFromOptions(mc)); 54499566063dSJacob Faibussowitsch PetscCall(MatColoringApply(mc, &iscoloring)); 54509566063dSJacob Faibussowitsch PetscCall(MatColoringDestroy(&mc)); 54519566063dSJacob Faibussowitsch PetscCall(MatFDColoringCreate(B, iscoloring, &color)); 54529566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetFunction(color, (PetscErrorCode(*)(void))SNESTSFormFunction, (void *)ts)); 54539566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetFromOptions(color)); 54549566063dSJacob Faibussowitsch PetscCall(MatFDColoringSetUp(B, iscoloring, color)); 54559566063dSJacob Faibussowitsch PetscCall(ISColoringDestroy(&iscoloring)); 5456847ff0e1SMatthew G. Knepley } 54579566063dSJacob Faibussowitsch PetscCall(PetscObjectCompose((PetscObject)B, "TSMatFDColoring", (PetscObject)color)); 54589566063dSJacob Faibussowitsch PetscCall(PetscObjectDereference((PetscObject)color)); 5459847ff0e1SMatthew G. Knepley } 54609566063dSJacob Faibussowitsch PetscCall(TSGetSNES(ts, &snes)); 54619566063dSJacob Faibussowitsch PetscCall(MatFDColoringApply(B, color, U, snes)); 5462847ff0e1SMatthew G. Knepley if (J != B) { 54639566063dSJacob Faibussowitsch PetscCall(MatAssemblyBegin(J, MAT_FINAL_ASSEMBLY)); 54649566063dSJacob Faibussowitsch PetscCall(MatAssemblyEnd(J, MAT_FINAL_ASSEMBLY)); 5465847ff0e1SMatthew G. Knepley } 54663ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5467847ff0e1SMatthew G. Knepley } 546893b34091SDebojyoti Ghosh 5469b43aa488SJacob Faibussowitsch /*@C 54706bc98fa9SBarry Smith TSSetFunctionDomainError - Set a function that tests if the current state vector is valid 5471cb9d8021SPierre Barbier de Reuille 5472cb9d8021SPierre Barbier de Reuille Input Parameters: 5473bcf0153eSBarry Smith + ts - the `TS` context 5474bcf0153eSBarry Smith - func - function called within `TSFunctionDomainError()` 54756bc98fa9SBarry Smith 547620f4b53cSBarry Smith Calling sequence of `func`: 54778847d985SBarry Smith + ts - the `TS` context 54786bc98fa9SBarry Smith . time - the current time (of the stage) 54796bc98fa9SBarry Smith . state - the state to check if it is valid 5480a144a63fSStefano Zampini - accept - (output parameter) `PETSC_FALSE` if the state is not acceptable, `PETSC_TRUE` if acceptable 5481cb9d8021SPierre Barbier de Reuille 5482cb9d8021SPierre Barbier de Reuille Level: intermediate 5483cb9d8021SPierre Barbier de Reuille 54846bc98fa9SBarry Smith Notes: 54856bc98fa9SBarry Smith If an implicit ODE solver is being used then, in addition to providing this routine, the 5486bcf0153eSBarry Smith user's code should call `SNESSetFunctionDomainError()` when domain errors occur during 5487bcf0153eSBarry Smith function evaluations where the functions are provided by `TSSetIFunction()` or `TSSetRHSFunction()`. 5488bcf0153eSBarry Smith Use `TSGetSNES()` to obtain the `SNES` object 54896bc98fa9SBarry Smith 5490b43aa488SJacob Faibussowitsch Developer Notes: 5491bcf0153eSBarry Smith The naming of this function is inconsistent with the `SNESSetFunctionDomainError()` 54926bc98fa9SBarry Smith since one takes a function pointer and the other does not. 54936bc98fa9SBarry Smith 54941cc06b55SBarry Smith .seealso: [](ch_ts), `TSAdaptCheckStage()`, `TSFunctionDomainError()`, `SNESSetFunctionDomainError()`, `TSGetSNES()` 5495cb9d8021SPierre Barbier de Reuille @*/ 5496a144a63fSStefano Zampini PetscErrorCode TSSetFunctionDomainError(TS ts, PetscErrorCode (*func)(TS ts, PetscReal time, Vec state, PetscBool *accept)) 5497d71ae5a4SJacob Faibussowitsch { 5498cb9d8021SPierre Barbier de Reuille PetscFunctionBegin; 5499cb9d8021SPierre Barbier de Reuille PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5500cb9d8021SPierre Barbier de Reuille ts->functiondomainerror = func; 55013ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5502cb9d8021SPierre Barbier de Reuille } 5503cb9d8021SPierre Barbier de Reuille 5504cb9d8021SPierre Barbier de Reuille /*@ 55056bc98fa9SBarry Smith TSFunctionDomainError - Checks if the current state is valid 5506cb9d8021SPierre Barbier de Reuille 5507cb9d8021SPierre Barbier de Reuille Input Parameters: 5508bcf0153eSBarry Smith + ts - the `TS` context 55096bc98fa9SBarry Smith . stagetime - time of the simulation 55106bc98fa9SBarry Smith - Y - state vector to check. 5511cb9d8021SPierre Barbier de Reuille 5512cb9d8021SPierre Barbier de Reuille Output Parameter: 5513bcf0153eSBarry Smith . accept - Set to `PETSC_FALSE` if the current state vector is valid. 551496a0c994SBarry Smith 55156bc98fa9SBarry Smith Level: developer 55166bc98fa9SBarry Smith 5517bcf0153eSBarry Smith Note: 5518bcf0153eSBarry Smith This function is called by the `TS` integration routines and calls the user provided function (set with `TSSetFunctionDomainError()`) 5519bcf0153eSBarry Smith to check if the current state is valid. 5520bcf0153eSBarry Smith 55211cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetFunctionDomainError()` 5522cb9d8021SPierre Barbier de Reuille @*/ 5523d71ae5a4SJacob Faibussowitsch PetscErrorCode TSFunctionDomainError(TS ts, PetscReal stagetime, Vec Y, PetscBool *accept) 5524d71ae5a4SJacob Faibussowitsch { 5525cb9d8021SPierre Barbier de Reuille PetscFunctionBegin; 5526cb9d8021SPierre Barbier de Reuille PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5527cb9d8021SPierre Barbier de Reuille *accept = PETSC_TRUE; 55281e66621cSBarry Smith if (ts->functiondomainerror) PetscCall((*ts->functiondomainerror)(ts, stagetime, Y, accept)); 55293ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5530cb9d8021SPierre Barbier de Reuille } 55311ceb14c0SBarry Smith 5532cc4c1da9SBarry Smith /*@ 5533195e9b02SBarry Smith TSClone - This function clones a time step `TS` object. 553493b34091SDebojyoti Ghosh 5535d083f849SBarry Smith Collective 553693b34091SDebojyoti Ghosh 553793b34091SDebojyoti Ghosh Input Parameter: 5538bcf0153eSBarry Smith . tsin - The input `TS` 553993b34091SDebojyoti Ghosh 554093b34091SDebojyoti Ghosh Output Parameter: 5541bcf0153eSBarry Smith . tsout - The output `TS` (cloned) 55425eca1a21SEmil Constantinescu 55435eca1a21SEmil Constantinescu Level: developer 554493b34091SDebojyoti Ghosh 5545bcf0153eSBarry Smith Notes: 5546bcf0153eSBarry 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. 5547bcf0153eSBarry Smith It will likely be replaced in the future with a mechanism of switching methods on the fly. 5548bcf0153eSBarry Smith 5549195e9b02SBarry 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 5550195e9b02SBarry Smith .vb 5551195e9b02SBarry Smith SNES snes_dup = NULL; 5552195e9b02SBarry Smith TSGetSNES(ts,&snes_dup); 5553195e9b02SBarry Smith TSSetSNES(ts,snes_dup); 5554195e9b02SBarry Smith .ve 5555bcf0153eSBarry Smith 55561cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `SNES`, `TSCreate()`, `TSSetType()`, `TSSetUp()`, `TSDestroy()`, `TSSetProblemType()` 555793b34091SDebojyoti Ghosh @*/ 5558d71ae5a4SJacob Faibussowitsch PetscErrorCode TSClone(TS tsin, TS *tsout) 5559d71ae5a4SJacob Faibussowitsch { 556093b34091SDebojyoti Ghosh TS t; 5561dc846ba4SSatish Balay SNES snes_start; 5562dc846ba4SSatish Balay DM dm; 5563dc846ba4SSatish Balay TSType type; 556493b34091SDebojyoti Ghosh 556593b34091SDebojyoti Ghosh PetscFunctionBegin; 55664f572ea9SToby Isaac PetscAssertPointer(tsin, 1); 556793b34091SDebojyoti Ghosh *tsout = NULL; 556893b34091SDebojyoti Ghosh 55699566063dSJacob Faibussowitsch PetscCall(PetscHeaderCreate(t, TS_CLASSID, "TS", "Time stepping", "TS", PetscObjectComm((PetscObject)tsin), TSDestroy, TSView)); 557093b34091SDebojyoti Ghosh 557193b34091SDebojyoti Ghosh /* General TS description */ 557293b34091SDebojyoti Ghosh t->numbermonitors = 0; 5573d0c080abSJoseph Pusztay t->monitorFrequency = 1; 557493b34091SDebojyoti Ghosh t->setupcalled = 0; 557593b34091SDebojyoti Ghosh t->ksp_its = 0; 557693b34091SDebojyoti Ghosh t->snes_its = 0; 557793b34091SDebojyoti Ghosh t->nwork = 0; 55787d51462cSStefano Zampini t->rhsjacobian.time = PETSC_MIN_REAL; 557993b34091SDebojyoti Ghosh t->rhsjacobian.scale = 1.; 558093b34091SDebojyoti Ghosh t->ijacobian.shift = 1.; 558193b34091SDebojyoti Ghosh 55829566063dSJacob Faibussowitsch PetscCall(TSGetSNES(tsin, &snes_start)); 55839566063dSJacob Faibussowitsch PetscCall(TSSetSNES(t, snes_start)); 5584d15a3a53SEmil Constantinescu 55859566063dSJacob Faibussowitsch PetscCall(TSGetDM(tsin, &dm)); 55869566063dSJacob Faibussowitsch PetscCall(TSSetDM(t, dm)); 558793b34091SDebojyoti Ghosh 558893b34091SDebojyoti Ghosh t->adapt = tsin->adapt; 55899566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)t->adapt)); 559093b34091SDebojyoti Ghosh 5591e7069c78SShri t->trajectory = tsin->trajectory; 55929566063dSJacob Faibussowitsch PetscCall(PetscObjectReference((PetscObject)t->trajectory)); 5593e7069c78SShri 5594e7069c78SShri t->event = tsin->event; 55956b10a48eSSatish Balay if (t->event) t->event->refct++; 5596e7069c78SShri 559793b34091SDebojyoti Ghosh t->problem_type = tsin->problem_type; 559893b34091SDebojyoti Ghosh t->ptime = tsin->ptime; 5599e7069c78SShri t->ptime_prev = tsin->ptime_prev; 560093b34091SDebojyoti Ghosh t->time_step = tsin->time_step; 560193b34091SDebojyoti Ghosh t->max_time = tsin->max_time; 560293b34091SDebojyoti Ghosh t->steps = tsin->steps; 560393b34091SDebojyoti Ghosh t->max_steps = tsin->max_steps; 560493b34091SDebojyoti Ghosh t->equation_type = tsin->equation_type; 560593b34091SDebojyoti Ghosh t->atol = tsin->atol; 560693b34091SDebojyoti Ghosh t->rtol = tsin->rtol; 560793b34091SDebojyoti Ghosh t->max_snes_failures = tsin->max_snes_failures; 560893b34091SDebojyoti Ghosh t->max_reject = tsin->max_reject; 560993b34091SDebojyoti Ghosh t->errorifstepfailed = tsin->errorifstepfailed; 561093b34091SDebojyoti Ghosh 56119566063dSJacob Faibussowitsch PetscCall(TSGetType(tsin, &type)); 56129566063dSJacob Faibussowitsch PetscCall(TSSetType(t, type)); 561393b34091SDebojyoti Ghosh 561493b34091SDebojyoti Ghosh t->vec_sol = NULL; 561593b34091SDebojyoti Ghosh 561693b34091SDebojyoti Ghosh t->cfltime = tsin->cfltime; 561793b34091SDebojyoti Ghosh t->cfltime_local = tsin->cfltime_local; 561893b34091SDebojyoti Ghosh t->exact_final_time = tsin->exact_final_time; 561993b34091SDebojyoti Ghosh 5620aea10558SJacob Faibussowitsch t->ops[0] = tsin->ops[0]; 562193b34091SDebojyoti Ghosh 56220d4fed19SBarry Smith if (((PetscObject)tsin)->fortran_func_pointers) { 56230d4fed19SBarry Smith PetscInt i; 56249566063dSJacob Faibussowitsch PetscCall(PetscMalloc((10) * sizeof(void (*)(void)), &((PetscObject)t)->fortran_func_pointers)); 5625ad540459SPierre Jolivet for (i = 0; i < 10; i++) ((PetscObject)t)->fortran_func_pointers[i] = ((PetscObject)tsin)->fortran_func_pointers[i]; 56260d4fed19SBarry Smith } 562793b34091SDebojyoti Ghosh *tsout = t; 56283ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 562993b34091SDebojyoti Ghosh } 5630f3b1f45cSBarry Smith 5631d71ae5a4SJacob Faibussowitsch static PetscErrorCode RHSWrapperFunction_TSRHSJacobianTest(void *ctx, Vec x, Vec y) 5632d71ae5a4SJacob Faibussowitsch { 5633f3b1f45cSBarry Smith TS ts = (TS)ctx; 5634f3b1f45cSBarry Smith 5635f3b1f45cSBarry Smith PetscFunctionBegin; 56369566063dSJacob Faibussowitsch PetscCall(TSComputeRHSFunction(ts, 0, x, y)); 56373ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5638f3b1f45cSBarry Smith } 5639f3b1f45cSBarry Smith 5640f3b1f45cSBarry Smith /*@ 5641bcf0153eSBarry Smith TSRHSJacobianTest - Compares the multiply routine provided to the `MATSHELL` with differencing on the `TS` given RHS function. 5642f3b1f45cSBarry Smith 5643c3339decSBarry Smith Logically Collective 5644f3b1f45cSBarry Smith 56452fe279fdSBarry Smith Input Parameter: 5646b43aa488SJacob Faibussowitsch . ts - the time stepping routine 5647f3b1f45cSBarry Smith 5648f3b1f45cSBarry Smith Output Parameter: 5649bcf0153eSBarry Smith . flg - `PETSC_TRUE` if the multiply is likely correct 5650f3b1f45cSBarry Smith 5651bcf0153eSBarry Smith Options Database Key: 5652f3b1f45cSBarry Smith . -ts_rhs_jacobian_test_mult -mat_shell_test_mult_view - run the test at each timestep of the integrator 5653f3b1f45cSBarry Smith 5654f3b1f45cSBarry Smith Level: advanced 5655f3b1f45cSBarry Smith 5656bcf0153eSBarry Smith Note: 5657195e9b02SBarry Smith This only works for problems defined using `TSSetRHSFunction()` and Jacobian NOT `TSSetIFunction()` and Jacobian 5658f3b1f45cSBarry Smith 56591cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `Mat`, `MATSHELL`, `MatCreateShell()`, `MatShellGetContext()`, `MatShellGetOperation()`, `MatShellTestMultTranspose()`, `TSRHSJacobianTestTranspose()` 5660f3b1f45cSBarry Smith @*/ 5661d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRHSJacobianTest(TS ts, PetscBool *flg) 5662d71ae5a4SJacob Faibussowitsch { 5663f3b1f45cSBarry Smith Mat J, B; 56648434afd1SBarry Smith TSRHSJacobianFn *func; 5665f3b1f45cSBarry Smith void *ctx; 5666f3b1f45cSBarry Smith 5667f3b1f45cSBarry Smith PetscFunctionBegin; 56689566063dSJacob Faibussowitsch PetscCall(TSGetRHSJacobian(ts, &J, &B, &func, &ctx)); 56699566063dSJacob Faibussowitsch PetscCall((*func)(ts, 0.0, ts->vec_sol, J, B, ctx)); 56709566063dSJacob Faibussowitsch PetscCall(MatShellTestMult(J, RHSWrapperFunction_TSRHSJacobianTest, ts->vec_sol, ts, flg)); 56713ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5672f3b1f45cSBarry Smith } 5673f3b1f45cSBarry Smith 5674cc4c1da9SBarry Smith /*@ 5675bcf0153eSBarry Smith TSRHSJacobianTestTranspose - Compares the multiply transpose routine provided to the `MATSHELL` with differencing on the `TS` given RHS function. 5676f3b1f45cSBarry Smith 5677c3339decSBarry Smith Logically Collective 5678f3b1f45cSBarry Smith 56792fe279fdSBarry Smith Input Parameter: 5680b43aa488SJacob Faibussowitsch . ts - the time stepping routine 5681f3b1f45cSBarry Smith 5682f3b1f45cSBarry Smith Output Parameter: 5683bcf0153eSBarry Smith . flg - `PETSC_TRUE` if the multiply is likely correct 5684f3b1f45cSBarry Smith 5685bcf0153eSBarry Smith Options Database Key: 5686f3b1f45cSBarry Smith . -ts_rhs_jacobian_test_mult_transpose -mat_shell_test_mult_transpose_view - run the test at each timestep of the integrator 5687f3b1f45cSBarry Smith 5688bcf0153eSBarry Smith Level: advanced 5689bcf0153eSBarry Smith 569095452b02SPatrick Sanan Notes: 5691195e9b02SBarry Smith This only works for problems defined using `TSSetRHSFunction()` and Jacobian NOT `TSSetIFunction()` and Jacobian 5692f3b1f45cSBarry Smith 56931cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `Mat`, `MatCreateShell()`, `MatShellGetContext()`, `MatShellGetOperation()`, `MatShellTestMultTranspose()`, `TSRHSJacobianTest()` 5694f3b1f45cSBarry Smith @*/ 5695d71ae5a4SJacob Faibussowitsch PetscErrorCode TSRHSJacobianTestTranspose(TS ts, PetscBool *flg) 5696d71ae5a4SJacob Faibussowitsch { 5697f3b1f45cSBarry Smith Mat J, B; 5698f3b1f45cSBarry Smith void *ctx; 56998434afd1SBarry Smith TSRHSJacobianFn *func; 5700f3b1f45cSBarry Smith 5701f3b1f45cSBarry Smith PetscFunctionBegin; 57029566063dSJacob Faibussowitsch PetscCall(TSGetRHSJacobian(ts, &J, &B, &func, &ctx)); 57039566063dSJacob Faibussowitsch PetscCall((*func)(ts, 0.0, ts->vec_sol, J, B, ctx)); 57049566063dSJacob Faibussowitsch PetscCall(MatShellTestMultTranspose(J, RHSWrapperFunction_TSRHSJacobianTest, ts->vec_sol, ts, flg)); 57053ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5706f3b1f45cSBarry Smith } 57070fe4d17eSHong Zhang 57080fe4d17eSHong Zhang /*@ 57090fe4d17eSHong Zhang TSSetUseSplitRHSFunction - Use the split RHSFunction when a multirate method is used. 57100fe4d17eSHong Zhang 571120f4b53cSBarry Smith Logically Collective 57120fe4d17eSHong Zhang 5713d8d19677SJose E. Roman Input Parameters: 57140fe4d17eSHong Zhang + ts - timestepping context 5715bcf0153eSBarry Smith - use_splitrhsfunction - `PETSC_TRUE` indicates that the split RHSFunction will be used 57160fe4d17eSHong Zhang 5717bcf0153eSBarry Smith Options Database Key: 57180fe4d17eSHong Zhang . -ts_use_splitrhsfunction - <true,false> 57190fe4d17eSHong Zhang 57200fe4d17eSHong Zhang Level: intermediate 57210fe4d17eSHong Zhang 5722bcf0153eSBarry Smith Note: 5723195e9b02SBarry Smith This is only for multirate methods 5724bcf0153eSBarry Smith 57251cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetUseSplitRHSFunction()` 57260fe4d17eSHong Zhang @*/ 5727d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetUseSplitRHSFunction(TS ts, PetscBool use_splitrhsfunction) 5728d71ae5a4SJacob Faibussowitsch { 57290fe4d17eSHong Zhang PetscFunctionBegin; 57300fe4d17eSHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 57310fe4d17eSHong Zhang ts->use_splitrhsfunction = use_splitrhsfunction; 57323ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 57330fe4d17eSHong Zhang } 57340fe4d17eSHong Zhang 57350fe4d17eSHong Zhang /*@ 57360fe4d17eSHong Zhang TSGetUseSplitRHSFunction - Gets whether to use the split RHSFunction when a multirate method is used. 57370fe4d17eSHong Zhang 573820f4b53cSBarry Smith Not Collective 57390fe4d17eSHong Zhang 57400fe4d17eSHong Zhang Input Parameter: 57410fe4d17eSHong Zhang . ts - timestepping context 57420fe4d17eSHong Zhang 57430fe4d17eSHong Zhang Output Parameter: 5744bcf0153eSBarry Smith . use_splitrhsfunction - `PETSC_TRUE` indicates that the split RHSFunction will be used 57450fe4d17eSHong Zhang 57460fe4d17eSHong Zhang Level: intermediate 57470fe4d17eSHong Zhang 57481cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetUseSplitRHSFunction()` 57490fe4d17eSHong Zhang @*/ 5750d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetUseSplitRHSFunction(TS ts, PetscBool *use_splitrhsfunction) 5751d71ae5a4SJacob Faibussowitsch { 57520fe4d17eSHong Zhang PetscFunctionBegin; 57530fe4d17eSHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 57540fe4d17eSHong Zhang *use_splitrhsfunction = ts->use_splitrhsfunction; 57553ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 57560fe4d17eSHong Zhang } 5757d60b7d5cSBarry Smith 5758d60b7d5cSBarry Smith /*@ 5759d60b7d5cSBarry Smith TSSetMatStructure - sets the relationship between the nonzero structure of the RHS Jacobian matrix to the IJacobian matrix. 5760d60b7d5cSBarry Smith 5761c3339decSBarry Smith Logically Collective 5762d60b7d5cSBarry Smith 5763d60b7d5cSBarry Smith Input Parameters: 5764d60b7d5cSBarry Smith + ts - the time-stepper 5765bcf0153eSBarry Smith - str - the structure (the default is `UNKNOWN_NONZERO_PATTERN`) 5766d60b7d5cSBarry Smith 5767d60b7d5cSBarry Smith Level: intermediate 5768d60b7d5cSBarry Smith 5769bcf0153eSBarry Smith Note: 5770d60b7d5cSBarry Smith When the relationship between the nonzero structures is known and supplied the solution process can be much faster 5771d60b7d5cSBarry Smith 57721cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `MatAXPY()`, `MatStructure` 5773d60b7d5cSBarry Smith @*/ 5774d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetMatStructure(TS ts, MatStructure str) 5775d71ae5a4SJacob Faibussowitsch { 5776d60b7d5cSBarry Smith PetscFunctionBegin; 5777d60b7d5cSBarry Smith PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 5778d60b7d5cSBarry Smith ts->axpy_pattern = str; 57793ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5780d60b7d5cSBarry Smith } 57814a658b32SHong Zhang 57824a658b32SHong Zhang /*@ 5783bcf0153eSBarry Smith TSSetTimeSpan - sets the time span. The solution will be computed and stored for each time requested in the span 57844a658b32SHong Zhang 5785c3339decSBarry Smith Collective 57864a658b32SHong Zhang 57874a658b32SHong Zhang Input Parameters: 57884a658b32SHong Zhang + ts - the time-stepper 57894a658b32SHong Zhang . n - number of the time points (>=2) 57904a658b32SHong Zhang - span_times - array of the time points. The first element and the last element are the initial time and the final time respectively. 57914a658b32SHong Zhang 5792bcf0153eSBarry Smith Options Database Key: 57934a658b32SHong Zhang . -ts_time_span <t0,...tf> - Sets the time span 57944a658b32SHong Zhang 5795bcf0153eSBarry Smith Level: intermediate 57964a658b32SHong Zhang 57974a658b32SHong Zhang Notes: 57984a658b32SHong Zhang The elements in tspan must be all increasing. They correspond to the intermediate points for time integration. 5799bcf0153eSBarry Smith `TS_EXACTFINALTIME_MATCHSTEP` must be used to make the last time step in each sub-interval match the intermediate points specified. 5800bcf0153eSBarry Smith The intermediate solutions are saved in a vector array that can be accessed with `TSGetTimeSpanSolutions()`. Thus using time span may 58014a658b32SHong Zhang pressure the memory system when using a large number of span points. 58024a658b32SHong Zhang 58031cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSGetTimeSpan()`, `TSGetTimeSpanSolutions()` 58044a658b32SHong Zhang @*/ 5805d71ae5a4SJacob Faibussowitsch PetscErrorCode TSSetTimeSpan(TS ts, PetscInt n, PetscReal *span_times) 5806d71ae5a4SJacob Faibussowitsch { 58074a658b32SHong Zhang PetscFunctionBegin; 58084a658b32SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 580963a3b9bcSJacob Faibussowitsch PetscCheck(n >= 2, PetscObjectComm((PetscObject)ts), PETSC_ERR_ARG_WRONG, "Minimum time span size is 2 but %" PetscInt_FMT " is provided", n); 58104a658b32SHong Zhang if (ts->tspan && n != ts->tspan->num_span_times) { 58114a658b32SHong Zhang PetscCall(PetscFree(ts->tspan->span_times)); 58124a658b32SHong Zhang PetscCall(VecDestroyVecs(ts->tspan->num_span_times, &ts->tspan->vecs_sol)); 58134a658b32SHong Zhang PetscCall(PetscMalloc1(n, &ts->tspan->span_times)); 58144a658b32SHong Zhang } 58154a658b32SHong Zhang if (!ts->tspan) { 58164a658b32SHong Zhang TSTimeSpan tspan; 58174a658b32SHong Zhang PetscCall(PetscNew(&tspan)); 58184a658b32SHong Zhang PetscCall(PetscMalloc1(n, &tspan->span_times)); 5819e1db57b0SHong Zhang tspan->reltol = 1e-6; 5820e1db57b0SHong Zhang tspan->abstol = 10 * PETSC_MACHINE_EPSILON; 5821ca4445c7SIlya Fursov tspan->worktol = 0; 58224a658b32SHong Zhang ts->tspan = tspan; 58234a658b32SHong Zhang } 58244a658b32SHong Zhang ts->tspan->num_span_times = n; 58254a658b32SHong Zhang PetscCall(PetscArraycpy(ts->tspan->span_times, span_times, n)); 58264a658b32SHong Zhang PetscCall(TSSetTime(ts, ts->tspan->span_times[0])); 58274a658b32SHong Zhang PetscCall(TSSetMaxTime(ts, ts->tspan->span_times[n - 1])); 58283ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 58294a658b32SHong Zhang } 58304a658b32SHong Zhang 58314a658b32SHong Zhang /*@C 5832195e9b02SBarry Smith TSGetTimeSpan - gets the time span set with `TSSetTimeSpan()` 58334a658b32SHong Zhang 58344a658b32SHong Zhang Not Collective 58354a658b32SHong Zhang 58364a658b32SHong Zhang Input Parameter: 58374a658b32SHong Zhang . ts - the time-stepper 58384a658b32SHong Zhang 58394a658b32SHong Zhang Output Parameters: 58404a658b32SHong Zhang + n - number of the time points (>=2) 5841bcf0153eSBarry Smith - span_times - array of the time points. The first element and the last element are the initial time and the final time respectively. 58424a658b32SHong Zhang 58434a658b32SHong Zhang Level: beginner 58444a658b32SHong Zhang 5845bcf0153eSBarry Smith Note: 5846195e9b02SBarry Smith The values obtained are valid until the `TS` object is destroyed. 5847195e9b02SBarry Smith 5848195e9b02SBarry Smith Both `n` and `span_times` can be `NULL`. 5849bcf0153eSBarry Smith 58501cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetTimeSpan()`, `TSGetTimeSpanSolutions()` 58514a658b32SHong Zhang @*/ 5852cc4c1da9SBarry Smith PetscErrorCode TSGetTimeSpan(TS ts, PetscInt *n, const PetscReal *span_times[]) 5853d71ae5a4SJacob Faibussowitsch { 58544a658b32SHong Zhang PetscFunctionBegin; 58554a658b32SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 58564f572ea9SToby Isaac if (n) PetscAssertPointer(n, 2); 58574f572ea9SToby Isaac if (span_times) PetscAssertPointer(span_times, 3); 58584a658b32SHong Zhang if (!ts->tspan) { 58594a658b32SHong Zhang if (n) *n = 0; 58604a658b32SHong Zhang if (span_times) *span_times = NULL; 58614a658b32SHong Zhang } else { 58624a658b32SHong Zhang if (n) *n = ts->tspan->num_span_times; 58634a658b32SHong Zhang if (span_times) *span_times = ts->tspan->span_times; 58644a658b32SHong Zhang } 58653ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 58664a658b32SHong Zhang } 58674a658b32SHong Zhang 58684a658b32SHong Zhang /*@ 58694a658b32SHong Zhang TSGetTimeSpanSolutions - Get the number of solutions and the solutions at the time points specified by the time span. 58704a658b32SHong Zhang 58714a658b32SHong Zhang Input Parameter: 5872bcf0153eSBarry Smith . ts - the `TS` context obtained from `TSCreate()` 58734a658b32SHong Zhang 58744a658b32SHong Zhang Output Parameters: 58754a658b32SHong Zhang + nsol - the number of solutions 58764a658b32SHong Zhang - Sols - the solution vectors 58774a658b32SHong Zhang 5878bcf0153eSBarry Smith Level: intermediate 58794a658b32SHong Zhang 588040bd4cedSHong Zhang Notes: 5881195e9b02SBarry Smith Both `nsol` and `Sols` can be `NULL`. 58824a658b32SHong Zhang 5883195e9b02SBarry 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()`. 5884bcf0153eSBarry Smith For example, manipulating the step size, especially with a reduced precision, may cause `TS` to step over certain points in the span. 5885bcf0153eSBarry Smith 58861cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `TSSetTimeSpan()` 58874a658b32SHong Zhang @*/ 5888d71ae5a4SJacob Faibussowitsch PetscErrorCode TSGetTimeSpanSolutions(TS ts, PetscInt *nsol, Vec **Sols) 5889d71ae5a4SJacob Faibussowitsch { 58904a658b32SHong Zhang PetscFunctionBegin; 58914a658b32SHong Zhang PetscValidHeaderSpecific(ts, TS_CLASSID, 1); 58924f572ea9SToby Isaac if (nsol) PetscAssertPointer(nsol, 2); 58934f572ea9SToby Isaac if (Sols) PetscAssertPointer(Sols, 3); 58944a658b32SHong Zhang if (!ts->tspan) { 58954a658b32SHong Zhang if (nsol) *nsol = 0; 58964a658b32SHong Zhang if (Sols) *Sols = NULL; 58974a658b32SHong Zhang } else { 589840bd4cedSHong Zhang if (nsol) *nsol = ts->tspan->spanctr; 58994a658b32SHong Zhang if (Sols) *Sols = ts->tspan->vecs_sol; 59004a658b32SHong Zhang } 59013ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 59024a658b32SHong Zhang } 5903d7cfae9bSHong Zhang 5904cc4c1da9SBarry Smith /*@ 59057b2dc123SHong Zhang TSPruneIJacobianColor - Remove nondiagonal zeros in the Jacobian matrix and update the `MatMFFD` coloring information. 5906d7cfae9bSHong Zhang 5907195e9b02SBarry Smith Collective 5908d7cfae9bSHong Zhang 5909d7cfae9bSHong Zhang Input Parameters: 5910195e9b02SBarry Smith + ts - the `TS` context 5911d7cfae9bSHong Zhang . J - Jacobian matrix (not altered in this routine) 5912195e9b02SBarry Smith - B - newly computed Jacobian matrix to use with preconditioner 5913d7cfae9bSHong Zhang 5914d7cfae9bSHong Zhang Level: intermediate 5915d7cfae9bSHong Zhang 5916d7cfae9bSHong Zhang Notes: 5917195e9b02SBarry Smith This function improves the `MatFDColoring` performance when the Jacobian matrix was over-allocated or contains 5918195e9b02SBarry Smith many constant zeros entries, which is typically the case when the matrix is generated by a `DM` 5919d7cfae9bSHong Zhang and multiple fields are involved. 5920d7cfae9bSHong Zhang 5921d7cfae9bSHong Zhang Users need to make sure that the Jacobian matrix is properly filled to reflect the sparsity 5922195e9b02SBarry Smith structure. For `MatFDColoring`, the values of nonzero entries are not important. So one can 59237b2dc123SHong Zhang usually call `TSComputeIJacobian()` with randomized input vectors to generate a dummy Jacobian. 59247b2dc123SHong Zhang `TSComputeIJacobian()` should be called before `TSSolve()` but after `TSSetUp()`. 5925d7cfae9bSHong Zhang 59261cc06b55SBarry Smith .seealso: [](ch_ts), `TS`, `MatFDColoring`, `TSComputeIJacobianDefaultColor()`, `MatEliminateZeros()`, `MatFDColoringCreate()`, `MatFDColoringSetFunction()` 5927d7cfae9bSHong Zhang @*/ 5928d7cfae9bSHong Zhang PetscErrorCode TSPruneIJacobianColor(TS ts, Mat J, Mat B) 5929d7cfae9bSHong Zhang { 5930d7cfae9bSHong Zhang MatColoring mc = NULL; 5931d7cfae9bSHong Zhang ISColoring iscoloring = NULL; 5932d7cfae9bSHong Zhang MatFDColoring matfdcoloring = NULL; 5933d7cfae9bSHong Zhang 5934d7cfae9bSHong Zhang PetscFunctionBegin; 5935d7cfae9bSHong Zhang /* Generate new coloring after eliminating zeros in the matrix */ 593658c11ad4SPierre Jolivet PetscCall(MatEliminateZeros(B, PETSC_TRUE)); 5937d7cfae9bSHong Zhang PetscCall(MatColoringCreate(B, &mc)); 5938d7cfae9bSHong Zhang PetscCall(MatColoringSetDistance(mc, 2)); 5939d7cfae9bSHong Zhang PetscCall(MatColoringSetType(mc, MATCOLORINGSL)); 5940d7cfae9bSHong Zhang PetscCall(MatColoringSetFromOptions(mc)); 5941d7cfae9bSHong Zhang PetscCall(MatColoringApply(mc, &iscoloring)); 5942d7cfae9bSHong Zhang PetscCall(MatColoringDestroy(&mc)); 5943d7cfae9bSHong Zhang /* Replace the old coloring with the new one */ 5944d7cfae9bSHong Zhang PetscCall(MatFDColoringCreate(B, iscoloring, &matfdcoloring)); 5945d7cfae9bSHong Zhang PetscCall(MatFDColoringSetFunction(matfdcoloring, (PetscErrorCode(*)(void))SNESTSFormFunction, (void *)ts)); 5946d7cfae9bSHong Zhang PetscCall(MatFDColoringSetFromOptions(matfdcoloring)); 5947d7cfae9bSHong Zhang PetscCall(MatFDColoringSetUp(B, iscoloring, matfdcoloring)); 5948d7cfae9bSHong Zhang PetscCall(PetscObjectCompose((PetscObject)B, "TSMatFDColoring", (PetscObject)matfdcoloring)); 5949d7cfae9bSHong Zhang PetscCall(PetscObjectDereference((PetscObject)matfdcoloring)); 5950d7cfae9bSHong Zhang PetscCall(ISColoringDestroy(&iscoloring)); 59513ba16761SJacob Faibussowitsch PetscFunctionReturn(PETSC_SUCCESS); 5952d7cfae9bSHong Zhang } 5953