1c4762a1bSJed Brown static char help[] = "Second Order TVD Finite Volume Example.\n"; 2c4762a1bSJed Brown /*F 3c4762a1bSJed Brown 4c4762a1bSJed Brown We use a second order TVD finite volume method to evolve a system of PDEs. Our simple upwinded residual evaluation loops 5c4762a1bSJed Brown over all mesh faces and uses a Riemann solver to produce the flux given the face geometry and cell values, 6c4762a1bSJed Brown \begin{equation} 7c4762a1bSJed Brown f_i = \mathrm{riemann}(\mathrm{phys}, p_\mathrm{centroid}, \hat n, x^L, x^R) 8c4762a1bSJed Brown \end{equation} 9c4762a1bSJed Brown and then update the cell values given the cell volume. 10c4762a1bSJed Brown \begin{eqnarray} 11c4762a1bSJed Brown f^L_i &-=& \frac{f_i}{vol^L} \\ 12c4762a1bSJed Brown f^R_i &+=& \frac{f_i}{vol^R} 13c4762a1bSJed Brown \end{eqnarray} 14c4762a1bSJed Brown 15c4762a1bSJed Brown As an example, we can consider the shallow water wave equation, 16c4762a1bSJed Brown \begin{eqnarray} 17c4762a1bSJed Brown h_t + \nabla\cdot \left( uh \right) &=& 0 \\ 18c4762a1bSJed Brown (uh)_t + \nabla\cdot \left( u\otimes uh + \frac{g h^2}{2} I \right) &=& 0 19c4762a1bSJed Brown \end{eqnarray} 20c4762a1bSJed Brown where $h$ is wave height, $u$ is wave velocity, and $g$ is the acceleration due to gravity. 21c4762a1bSJed Brown 22c4762a1bSJed Brown A representative Riemann solver for the shallow water equations is given in the PhysicsRiemann_SW() function, 23c4762a1bSJed Brown \begin{eqnarray} 24c4762a1bSJed Brown f^{L,R}_h &=& uh^{L,R} \cdot \hat n \\ 25c4762a1bSJed Brown f^{L,R}_{uh} &=& \frac{f^{L,R}_h}{h^{L,R}} uh^{L,R} + g (h^{L,R})^2 \hat n \\ 26c4762a1bSJed Brown c^{L,R} &=& \sqrt{g h^{L,R}} \\ 27c4762a1bSJed Brown s &=& \max\left( \left|\frac{uh^L \cdot \hat n}{h^L}\right| + c^L, \left|\frac{uh^R \cdot \hat n}{h^R}\right| + c^R \right) \\ 28c4762a1bSJed Brown f_i &=& \frac{A_\mathrm{face}}{2} \left( f^L_i + f^R_i + s \left( x^L_i - x^R_i \right) \right) 29c4762a1bSJed Brown \end{eqnarray} 30c4762a1bSJed Brown where $c$ is the local gravity wave speed and $f_i$ is a Rusanov flux. 31c4762a1bSJed Brown 32c4762a1bSJed Brown The more sophisticated residual evaluation in RHSFunctionLocal_LS() uses a least-squares fit to a quadratic polynomial 33c4762a1bSJed Brown over a neighborhood of the given element. 34c4762a1bSJed Brown 35c4762a1bSJed Brown The mesh is read in from an ExodusII file, usually generated by Cubit. 36c4762a1bSJed Brown F*/ 37c4762a1bSJed Brown #include <petscdmplex.h> 38c4762a1bSJed Brown #include <petscdmforest.h> 39c4762a1bSJed Brown #include <petscds.h> 40c4762a1bSJed Brown #include <petscts.h> 41c4762a1bSJed Brown 42c4762a1bSJed Brown #define DIM 2 /* Geometric dimension */ 43c4762a1bSJed Brown #define ALEN(a) (sizeof(a)/sizeof((a)[0])) 44c4762a1bSJed Brown 458d2c18caSMukkund Sunjii static PetscFunctionList PhysicsList, PhysicsRiemannList_SW; 46c4762a1bSJed Brown 47c4762a1bSJed Brown /* Represents continuum physical equations. */ 48c4762a1bSJed Brown typedef struct _n_Physics *Physics; 49c4762a1bSJed Brown 50c4762a1bSJed Brown /* Physical model includes boundary conditions, initial conditions, and functionals of interest. It is 51c4762a1bSJed Brown * discretization-independent, but its members depend on the scenario being solved. */ 52c4762a1bSJed Brown typedef struct _n_Model *Model; 53c4762a1bSJed Brown 54c4762a1bSJed Brown /* 'User' implements a discretization of a continuous model. */ 55c4762a1bSJed Brown typedef struct _n_User *User; 56c4762a1bSJed Brown typedef PetscErrorCode (*SolutionFunction)(Model,PetscReal,const PetscReal*,PetscScalar*,void*); 5745480ffeSMatthew G. Knepley typedef PetscErrorCode (*SetUpBCFunction)(DM,PetscDS,Physics); 58c4762a1bSJed Brown typedef PetscErrorCode (*FunctionalFunction)(Model,PetscReal,const PetscReal*,const PetscScalar*,PetscReal*,void*); 59c4762a1bSJed Brown typedef PetscErrorCode (*SetupFields)(Physics,PetscSection); 60c4762a1bSJed Brown static PetscErrorCode ModelSolutionSetDefault(Model,SolutionFunction,void*); 61c4762a1bSJed Brown static PetscErrorCode ModelFunctionalRegister(Model,const char*,PetscInt*,FunctionalFunction,void*); 62c4762a1bSJed Brown static PetscErrorCode OutputVTK(DM,const char*,PetscViewer*); 63c4762a1bSJed Brown 64c4762a1bSJed Brown struct FieldDescription { 65c4762a1bSJed Brown const char *name; 66c4762a1bSJed Brown PetscInt dof; 67c4762a1bSJed Brown }; 68c4762a1bSJed Brown 69c4762a1bSJed Brown typedef struct _n_FunctionalLink *FunctionalLink; 70c4762a1bSJed Brown struct _n_FunctionalLink { 71c4762a1bSJed Brown char *name; 72c4762a1bSJed Brown FunctionalFunction func; 73c4762a1bSJed Brown void *ctx; 74c4762a1bSJed Brown PetscInt offset; 75c4762a1bSJed Brown FunctionalLink next; 76c4762a1bSJed Brown }; 77c4762a1bSJed Brown 78c4762a1bSJed Brown struct _n_Physics { 79c4762a1bSJed Brown PetscRiemannFunc riemann; 80c4762a1bSJed Brown PetscInt dof; /* number of degrees of freedom per cell */ 81c4762a1bSJed Brown PetscReal maxspeed; /* kludge to pick initial time step, need to add monitoring and step control */ 82c4762a1bSJed Brown void *data; 83c4762a1bSJed Brown PetscInt nfields; 84c4762a1bSJed Brown const struct FieldDescription *field_desc; 85c4762a1bSJed Brown }; 86c4762a1bSJed Brown 87c4762a1bSJed Brown struct _n_Model { 88c4762a1bSJed Brown MPI_Comm comm; /* Does not do collective communicaton, but some error conditions can be collective */ 89c4762a1bSJed Brown Physics physics; 90c4762a1bSJed Brown FunctionalLink functionalRegistry; 91c4762a1bSJed Brown PetscInt maxComputed; 92c4762a1bSJed Brown PetscInt numMonitored; 93c4762a1bSJed Brown FunctionalLink *functionalMonitored; 94c4762a1bSJed Brown PetscInt numCall; 95c4762a1bSJed Brown FunctionalLink *functionalCall; 96c4762a1bSJed Brown SolutionFunction solution; 97c4762a1bSJed Brown SetUpBCFunction setupbc; 98c4762a1bSJed Brown void *solutionctx; 99c4762a1bSJed Brown PetscReal maxspeed; /* estimate of global maximum speed (for CFL calculation) */ 100c4762a1bSJed Brown PetscReal bounds[2*DIM]; 101c4762a1bSJed Brown PetscErrorCode (*errorIndicator)(PetscInt, PetscReal, PetscInt, const PetscScalar[], const PetscScalar[], PetscReal *, void *); 102c4762a1bSJed Brown void *errorCtx; 103c4762a1bSJed Brown }; 104c4762a1bSJed Brown 105c4762a1bSJed Brown struct _n_User { 106c4762a1bSJed Brown PetscInt vtkInterval; /* For monitor */ 107c4762a1bSJed Brown char outputBasename[PETSC_MAX_PATH_LEN]; /* Basename for output files */ 108c4762a1bSJed Brown PetscInt monitorStepOffset; 109c4762a1bSJed Brown Model model; 110c4762a1bSJed Brown PetscBool vtkmon; 111c4762a1bSJed Brown }; 112c4762a1bSJed Brown 1139fbee547SJacob Faibussowitsch static inline PetscReal DotDIMReal(const PetscReal *x,const PetscReal *y) 114c4762a1bSJed Brown { 115c4762a1bSJed Brown PetscInt i; 116c4762a1bSJed Brown PetscReal prod=0.0; 117c4762a1bSJed Brown 118c4762a1bSJed Brown for (i=0; i<DIM; i++) prod += x[i]*y[i]; 119c4762a1bSJed Brown return prod; 120c4762a1bSJed Brown } 1219fbee547SJacob Faibussowitsch static inline PetscReal NormDIM(const PetscReal *x) { return PetscSqrtReal(PetscAbsReal(DotDIMReal(x,x))); } 122c4762a1bSJed Brown 1239fbee547SJacob Faibussowitsch static inline PetscReal Dot2Real(const PetscReal *x,const PetscReal *y) { return x[0]*y[0] + x[1]*y[1];} 1249fbee547SJacob Faibussowitsch static inline PetscReal Norm2Real(const PetscReal *x) { return PetscSqrtReal(PetscAbsReal(Dot2Real(x,x)));} 1259fbee547SJacob Faibussowitsch static inline void Normalize2Real(PetscReal *x) { PetscReal a = 1./Norm2Real(x); x[0] *= a; x[1] *= a; } 1269fbee547SJacob Faibussowitsch static inline void Waxpy2Real(PetscReal a,const PetscReal *x,const PetscReal *y,PetscReal *w) { w[0] = a*x[0] + y[0]; w[1] = a*x[1] + y[1]; } 1279fbee547SJacob Faibussowitsch static inline void Scale2Real(PetscReal a,const PetscReal *x,PetscReal *y) { y[0] = a*x[0]; y[1] = a*x[1]; } 128c4762a1bSJed Brown 129c4762a1bSJed Brown /******************* Advect ********************/ 130c4762a1bSJed Brown typedef enum {ADVECT_SOL_TILTED,ADVECT_SOL_BUMP,ADVECT_SOL_BUMP_CAVITY} AdvectSolType; 131c4762a1bSJed Brown static const char *const AdvectSolTypes[] = {"TILTED","BUMP","BUMP_CAVITY","AdvectSolType","ADVECT_SOL_",0}; 132c4762a1bSJed Brown typedef enum {ADVECT_SOL_BUMP_CONE,ADVECT_SOL_BUMP_COS} AdvectSolBumpType; 133c4762a1bSJed Brown static const char *const AdvectSolBumpTypes[] = {"CONE","COS","AdvectSolBumpType","ADVECT_SOL_BUMP_",0}; 134c4762a1bSJed Brown 135c4762a1bSJed Brown typedef struct { 136c4762a1bSJed Brown PetscReal wind[DIM]; 137c4762a1bSJed Brown } Physics_Advect_Tilted; 138c4762a1bSJed Brown typedef struct { 139c4762a1bSJed Brown PetscReal center[DIM]; 140c4762a1bSJed Brown PetscReal radius; 141c4762a1bSJed Brown AdvectSolBumpType type; 142c4762a1bSJed Brown } Physics_Advect_Bump; 143c4762a1bSJed Brown 144c4762a1bSJed Brown typedef struct { 145c4762a1bSJed Brown PetscReal inflowState; 146c4762a1bSJed Brown AdvectSolType soltype; 147c4762a1bSJed Brown union { 148c4762a1bSJed Brown Physics_Advect_Tilted tilted; 149c4762a1bSJed Brown Physics_Advect_Bump bump; 150c4762a1bSJed Brown } sol; 151c4762a1bSJed Brown struct { 152c4762a1bSJed Brown PetscInt Solution; 153c4762a1bSJed Brown PetscInt Error; 154c4762a1bSJed Brown } functional; 155c4762a1bSJed Brown } Physics_Advect; 156c4762a1bSJed Brown 157c4762a1bSJed Brown static const struct FieldDescription PhysicsFields_Advect[] = {{"U",1},{NULL,0}}; 158c4762a1bSJed Brown 159c4762a1bSJed Brown static PetscErrorCode PhysicsBoundary_Advect_Inflow(PetscReal time, const PetscReal *c, const PetscReal *n, const PetscScalar *xI, PetscScalar *xG, void *ctx) 160c4762a1bSJed Brown { 161c4762a1bSJed Brown Physics phys = (Physics)ctx; 162c4762a1bSJed Brown Physics_Advect *advect = (Physics_Advect*)phys->data; 163c4762a1bSJed Brown 164c4762a1bSJed Brown PetscFunctionBeginUser; 165c4762a1bSJed Brown xG[0] = advect->inflowState; 166c4762a1bSJed Brown PetscFunctionReturn(0); 167c4762a1bSJed Brown } 168c4762a1bSJed Brown 169c4762a1bSJed Brown static PetscErrorCode PhysicsBoundary_Advect_Outflow(PetscReal time, const PetscReal *c, const PetscReal *n, const PetscScalar *xI, PetscScalar *xG, void *ctx) 170c4762a1bSJed Brown { 171c4762a1bSJed Brown PetscFunctionBeginUser; 172c4762a1bSJed Brown xG[0] = xI[0]; 173c4762a1bSJed Brown PetscFunctionReturn(0); 174c4762a1bSJed Brown } 175c4762a1bSJed Brown 176c4762a1bSJed Brown static void PhysicsRiemann_Advect(PetscInt dim, PetscInt Nf, const PetscReal *qp, const PetscReal *n, const PetscScalar *xL, const PetscScalar *xR, PetscInt numConstants, const PetscScalar constants[], PetscScalar *flux, Physics phys) 177c4762a1bSJed Brown { 178c4762a1bSJed Brown Physics_Advect *advect = (Physics_Advect*)phys->data; 179c4762a1bSJed Brown PetscReal wind[DIM],wn; 180c4762a1bSJed Brown 181c4762a1bSJed Brown switch (advect->soltype) { 182c4762a1bSJed Brown case ADVECT_SOL_TILTED: { 183c4762a1bSJed Brown Physics_Advect_Tilted *tilted = &advect->sol.tilted; 184c4762a1bSJed Brown wind[0] = tilted->wind[0]; 185c4762a1bSJed Brown wind[1] = tilted->wind[1]; 186c4762a1bSJed Brown } break; 187c4762a1bSJed Brown case ADVECT_SOL_BUMP: 188c4762a1bSJed Brown wind[0] = -qp[1]; 189c4762a1bSJed Brown wind[1] = qp[0]; 190c4762a1bSJed Brown break; 191c4762a1bSJed Brown case ADVECT_SOL_BUMP_CAVITY: 192c4762a1bSJed Brown { 193c4762a1bSJed Brown PetscInt i; 194c4762a1bSJed Brown PetscReal comp2[3] = {0.,0.,0.}, rad2; 195c4762a1bSJed Brown 196c4762a1bSJed Brown rad2 = 0.; 197c4762a1bSJed Brown for (i = 0; i < dim; i++) { 198c4762a1bSJed Brown comp2[i] = qp[i] * qp[i]; 199c4762a1bSJed Brown rad2 += comp2[i]; 200c4762a1bSJed Brown } 201c4762a1bSJed Brown 202c4762a1bSJed Brown wind[0] = -qp[1]; 203c4762a1bSJed Brown wind[1] = qp[0]; 204c4762a1bSJed Brown if (rad2 > 1.) { 205c4762a1bSJed Brown PetscInt maxI = 0; 206c4762a1bSJed Brown PetscReal maxComp2 = comp2[0]; 207c4762a1bSJed Brown 208c4762a1bSJed Brown for (i = 1; i < dim; i++) { 209c4762a1bSJed Brown if (comp2[i] > maxComp2) { 210c4762a1bSJed Brown maxI = i; 211c4762a1bSJed Brown maxComp2 = comp2[i]; 212c4762a1bSJed Brown } 213c4762a1bSJed Brown } 214c4762a1bSJed Brown wind[maxI] = 0.; 215c4762a1bSJed Brown } 216c4762a1bSJed Brown } 217c4762a1bSJed Brown break; 218c4762a1bSJed Brown default: 219c4762a1bSJed Brown { 220c4762a1bSJed Brown PetscInt i; 221c4762a1bSJed Brown for (i = 0; i < DIM; ++i) wind[i] = 0.0; 222c4762a1bSJed Brown } 22398921bdaSJacob Faibussowitsch /* default: SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP,"No support for solution type %s",AdvectSolBumpTypes[advect->soltype]); */ 224c4762a1bSJed Brown } 225c4762a1bSJed Brown wn = Dot2Real(wind, n); 226c4762a1bSJed Brown flux[0] = (wn > 0 ? xL[0] : xR[0]) * wn; 227c4762a1bSJed Brown } 228c4762a1bSJed Brown 229c4762a1bSJed Brown static PetscErrorCode PhysicsSolution_Advect(Model mod,PetscReal time,const PetscReal *x,PetscScalar *u,void *ctx) 230c4762a1bSJed Brown { 231c4762a1bSJed Brown Physics phys = (Physics)ctx; 232c4762a1bSJed Brown Physics_Advect *advect = (Physics_Advect*)phys->data; 233c4762a1bSJed Brown 234c4762a1bSJed Brown PetscFunctionBeginUser; 235c4762a1bSJed Brown switch (advect->soltype) { 236c4762a1bSJed Brown case ADVECT_SOL_TILTED: { 237c4762a1bSJed Brown PetscReal x0[DIM]; 238c4762a1bSJed Brown Physics_Advect_Tilted *tilted = &advect->sol.tilted; 239c4762a1bSJed Brown Waxpy2Real(-time,tilted->wind,x,x0); 240c4762a1bSJed Brown if (x0[1] > 0) u[0] = 1.*x[0] + 3.*x[1]; 241c4762a1bSJed Brown else u[0] = advect->inflowState; 242c4762a1bSJed Brown } break; 243c4762a1bSJed Brown case ADVECT_SOL_BUMP_CAVITY: 244c4762a1bSJed Brown case ADVECT_SOL_BUMP: { 245c4762a1bSJed Brown Physics_Advect_Bump *bump = &advect->sol.bump; 246c4762a1bSJed Brown PetscReal x0[DIM],v[DIM],r,cost,sint; 247c4762a1bSJed Brown cost = PetscCosReal(time); 248c4762a1bSJed Brown sint = PetscSinReal(time); 249c4762a1bSJed Brown x0[0] = cost*x[0] + sint*x[1]; 250c4762a1bSJed Brown x0[1] = -sint*x[0] + cost*x[1]; 251c4762a1bSJed Brown Waxpy2Real(-1,bump->center,x0,v); 252c4762a1bSJed Brown r = Norm2Real(v); 253c4762a1bSJed Brown switch (bump->type) { 254c4762a1bSJed Brown case ADVECT_SOL_BUMP_CONE: 255c4762a1bSJed Brown u[0] = PetscMax(1 - r/bump->radius,0); 256c4762a1bSJed Brown break; 257c4762a1bSJed Brown case ADVECT_SOL_BUMP_COS: 258c4762a1bSJed Brown u[0] = 0.5 + 0.5*PetscCosReal(PetscMin(r/bump->radius,1)*PETSC_PI); 259c4762a1bSJed Brown break; 260c4762a1bSJed Brown } 261c4762a1bSJed Brown } break; 262c4762a1bSJed Brown default: SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP,"Unknown solution type"); 263c4762a1bSJed Brown } 264c4762a1bSJed Brown PetscFunctionReturn(0); 265c4762a1bSJed Brown } 266c4762a1bSJed Brown 267c4762a1bSJed Brown static PetscErrorCode PhysicsFunctional_Advect(Model mod,PetscReal time,const PetscReal *x,const PetscScalar *y,PetscReal *f,void *ctx) 268c4762a1bSJed Brown { 269c4762a1bSJed Brown Physics phys = (Physics)ctx; 270c4762a1bSJed Brown Physics_Advect *advect = (Physics_Advect*)phys->data; 271391faea4SSatish Balay PetscScalar yexact[1] = {0.0}; 272c4762a1bSJed Brown 273c4762a1bSJed Brown PetscFunctionBeginUser; 274*5f80ce2aSJacob Faibussowitsch CHKERRQ(PhysicsSolution_Advect(mod,time,x,yexact,phys)); 275c4762a1bSJed Brown f[advect->functional.Solution] = PetscRealPart(y[0]); 276c4762a1bSJed Brown f[advect->functional.Error] = PetscAbsScalar(y[0]-yexact[0]); 277c4762a1bSJed Brown PetscFunctionReturn(0); 278c4762a1bSJed Brown } 279c4762a1bSJed Brown 28045480ffeSMatthew G. Knepley static PetscErrorCode SetUpBC_Advect(DM dm, PetscDS prob, Physics phys) 281c4762a1bSJed Brown { 282c4762a1bSJed Brown const PetscInt inflowids[] = {100,200,300},outflowids[] = {101}; 28345480ffeSMatthew G. Knepley DMLabel label; 284c4762a1bSJed Brown 285c4762a1bSJed Brown PetscFunctionBeginUser; 286c4762a1bSJed Brown /* Register "canned" boundary conditions and defaults for where to apply. */ 287*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetLabel(dm, "Face Sets", &label)); 288*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscDSAddBoundary(prob, DM_BC_NATURAL_RIEMANN, "inflow", label, ALEN(inflowids), inflowids, 0, 0, NULL, (void (*)(void)) PhysicsBoundary_Advect_Inflow, NULL, phys, NULL)); 289*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscDSAddBoundary(prob, DM_BC_NATURAL_RIEMANN, "outflow", label, ALEN(outflowids), outflowids, 0, 0, NULL, (void (*)(void)) PhysicsBoundary_Advect_Outflow, NULL, phys, NULL)); 290c4762a1bSJed Brown PetscFunctionReturn(0); 291c4762a1bSJed Brown } 292c4762a1bSJed Brown 293c4762a1bSJed Brown static PetscErrorCode PhysicsCreate_Advect(Model mod,Physics phys,PetscOptionItems *PetscOptionsObject) 294c4762a1bSJed Brown { 295c4762a1bSJed Brown Physics_Advect *advect; 296c4762a1bSJed Brown 297c4762a1bSJed Brown PetscFunctionBeginUser; 298c4762a1bSJed Brown phys->field_desc = PhysicsFields_Advect; 299c4762a1bSJed Brown phys->riemann = (PetscRiemannFunc)PhysicsRiemann_Advect; 300*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscNew(&advect)); 301c4762a1bSJed Brown phys->data = advect; 302c4762a1bSJed Brown mod->setupbc = SetUpBC_Advect; 303c4762a1bSJed Brown 304*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsHead(PetscOptionsObject,"Advect options")); 305c4762a1bSJed Brown { 306c4762a1bSJed Brown PetscInt two = 2,dof = 1; 307c4762a1bSJed Brown advect->soltype = ADVECT_SOL_TILTED; 308*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsEnum("-advect_sol_type","solution type","",AdvectSolTypes,(PetscEnum)advect->soltype,(PetscEnum*)&advect->soltype,NULL)); 309c4762a1bSJed Brown switch (advect->soltype) { 310c4762a1bSJed Brown case ADVECT_SOL_TILTED: { 311c4762a1bSJed Brown Physics_Advect_Tilted *tilted = &advect->sol.tilted; 312c4762a1bSJed Brown two = 2; 313c4762a1bSJed Brown tilted->wind[0] = 0.0; 314c4762a1bSJed Brown tilted->wind[1] = 1.0; 315*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsRealArray("-advect_tilted_wind","background wind vx,vy","",tilted->wind,&two,NULL)); 316c4762a1bSJed Brown advect->inflowState = -2.0; 317*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsRealArray("-advect_tilted_inflow","Inflow state","",&advect->inflowState,&dof,NULL)); 318c4762a1bSJed Brown phys->maxspeed = Norm2Real(tilted->wind); 319c4762a1bSJed Brown } break; 320c4762a1bSJed Brown case ADVECT_SOL_BUMP_CAVITY: 321c4762a1bSJed Brown case ADVECT_SOL_BUMP: { 322c4762a1bSJed Brown Physics_Advect_Bump *bump = &advect->sol.bump; 323c4762a1bSJed Brown two = 2; 324c4762a1bSJed Brown bump->center[0] = 2.; 325c4762a1bSJed Brown bump->center[1] = 0.; 326*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsRealArray("-advect_bump_center","location of center of bump x,y","",bump->center,&two,NULL)); 327c4762a1bSJed Brown bump->radius = 0.9; 328*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsReal("-advect_bump_radius","radius of bump","",bump->radius,&bump->radius,NULL)); 329c4762a1bSJed Brown bump->type = ADVECT_SOL_BUMP_CONE; 330*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsEnum("-advect_bump_type","type of bump","",AdvectSolBumpTypes,(PetscEnum)bump->type,(PetscEnum*)&bump->type,NULL)); 331c4762a1bSJed Brown phys->maxspeed = 3.; /* radius of mesh, kludge */ 332c4762a1bSJed Brown } break; 333c4762a1bSJed Brown } 334c4762a1bSJed Brown } 335*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsTail()); 336c4762a1bSJed Brown /* Initial/transient solution with default boundary conditions */ 337*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelSolutionSetDefault(mod,PhysicsSolution_Advect,phys)); 338c4762a1bSJed Brown /* Register "canned" functionals */ 339*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Solution",&advect->functional.Solution,PhysicsFunctional_Advect,phys)); 340*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Error",&advect->functional.Error,PhysicsFunctional_Advect,phys)); 341c4762a1bSJed Brown PetscFunctionReturn(0); 342c4762a1bSJed Brown } 343c4762a1bSJed Brown 344c4762a1bSJed Brown /******************* Shallow Water ********************/ 345c4762a1bSJed Brown typedef struct { 346c4762a1bSJed Brown PetscReal gravity; 347c4762a1bSJed Brown PetscReal boundaryHeight; 348c4762a1bSJed Brown struct { 349c4762a1bSJed Brown PetscInt Height; 350c4762a1bSJed Brown PetscInt Speed; 351c4762a1bSJed Brown PetscInt Energy; 352c4762a1bSJed Brown } functional; 353c4762a1bSJed Brown } Physics_SW; 354c4762a1bSJed Brown typedef struct { 355c4762a1bSJed Brown PetscReal h; 356c4762a1bSJed Brown PetscReal uh[DIM]; 357c4762a1bSJed Brown } SWNode; 358c4762a1bSJed Brown typedef union { 359c4762a1bSJed Brown SWNode swnode; 360c4762a1bSJed Brown PetscReal vals[DIM+1]; 361c4762a1bSJed Brown } SWNodeUnion; 362c4762a1bSJed Brown 363c4762a1bSJed Brown static const struct FieldDescription PhysicsFields_SW[] = {{"Height",1},{"Momentum",DIM},{NULL,0}}; 364c4762a1bSJed Brown 365c4762a1bSJed Brown /* 366c4762a1bSJed Brown * h_t + div(uh) = 0 367c4762a1bSJed Brown * (uh)_t + div (u\otimes uh + g h^2 / 2 I) = 0 368c4762a1bSJed Brown * 369c4762a1bSJed Brown * */ 370c4762a1bSJed Brown static PetscErrorCode SWFlux(Physics phys,const PetscReal *n,const SWNode *x,SWNode *f) 371c4762a1bSJed Brown { 372c4762a1bSJed Brown Physics_SW *sw = (Physics_SW*)phys->data; 373c4762a1bSJed Brown PetscReal uhn,u[DIM]; 374c4762a1bSJed Brown PetscInt i; 375c4762a1bSJed Brown 376c4762a1bSJed Brown PetscFunctionBeginUser; 377c4762a1bSJed Brown Scale2Real(1./x->h,x->uh,u); 378c4762a1bSJed Brown uhn = x->uh[0] * n[0] + x->uh[1] * n[1]; 379c4762a1bSJed Brown f->h = uhn; 380c4762a1bSJed Brown for (i=0; i<DIM; i++) f->uh[i] = u[i] * uhn + sw->gravity * PetscSqr(x->h) * n[i]; 381c4762a1bSJed Brown PetscFunctionReturn(0); 382c4762a1bSJed Brown } 383c4762a1bSJed Brown 384c4762a1bSJed Brown static PetscErrorCode PhysicsBoundary_SW_Wall(PetscReal time, const PetscReal *c, const PetscReal *n, const PetscScalar *xI, PetscScalar *xG, void *ctx) 385c4762a1bSJed Brown { 386c4762a1bSJed Brown PetscFunctionBeginUser; 387c4762a1bSJed Brown xG[0] = xI[0]; 388c4762a1bSJed Brown xG[1] = -xI[1]; 389c4762a1bSJed Brown xG[2] = -xI[2]; 390c4762a1bSJed Brown PetscFunctionReturn(0); 391c4762a1bSJed Brown } 392c4762a1bSJed Brown 3938d2c18caSMukkund Sunjii static void PhysicsRiemann_SW_HLL(PetscInt dim, PetscInt Nf, const PetscReal *qp, const PetscReal *n, const PetscScalar *xL, const PetscScalar *xR, PetscInt numConstants, const PetscScalar constants[], PetscScalar *flux, Physics phys) 3948d2c18caSMukkund Sunjii { 3958d2c18caSMukkund Sunjii Physics_SW *sw = (Physics_SW *) phys->data; 3968d2c18caSMukkund Sunjii PetscReal aL, aR; 3978d2c18caSMukkund Sunjii PetscReal nn[DIM]; 3988d2c18caSMukkund Sunjii #if !defined(PETSC_USE_COMPLEX) 3998d2c18caSMukkund Sunjii const SWNode *uL = (const SWNode *) xL, *uR = (const SWNode *) xR; 4008d2c18caSMukkund Sunjii #else 4018d2c18caSMukkund Sunjii SWNodeUnion uLreal, uRreal; 4028d2c18caSMukkund Sunjii const SWNode *uL = &uLreal.swnode; 4038d2c18caSMukkund Sunjii const SWNode *uR = &uRreal.swnode; 4048d2c18caSMukkund Sunjii #endif 4058d2c18caSMukkund Sunjii SWNodeUnion fL, fR; 4068d2c18caSMukkund Sunjii PetscInt i; 4078d2c18caSMukkund Sunjii PetscReal zero = 0.; 4088d2c18caSMukkund Sunjii 4098d2c18caSMukkund Sunjii #if defined(PETSC_USE_COMPLEX) 4108d2c18caSMukkund Sunjii uLreal.swnode.h = 0; uRreal.swnode.h = 0; 4118d2c18caSMukkund Sunjii for (i = 0; i < 1+dim; i++) uLreal.vals[i] = PetscRealPart(xL[i]); 4128d2c18caSMukkund Sunjii for (i = 0; i < 1+dim; i++) uRreal.vals[i] = PetscRealPart(xR[i]); 4138d2c18caSMukkund Sunjii #endif 4148d2c18caSMukkund Sunjii if (uL->h <= 0 || uR->h <= 0) { 4158d2c18caSMukkund Sunjii for (i = 0; i < 1 + dim; i++) flux[i] = zero; 4168d2c18caSMukkund Sunjii return; 4178d2c18caSMukkund Sunjii } /* SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Reconstructed thickness is negative"); */ 4188d2c18caSMukkund Sunjii nn[0] = n[0]; 4198d2c18caSMukkund Sunjii nn[1] = n[1]; 4208d2c18caSMukkund Sunjii Normalize2Real(nn); 4218d2c18caSMukkund Sunjii SWFlux(phys, nn, uL, &(fL.swnode)); 4228d2c18caSMukkund Sunjii SWFlux(phys, nn, uR, &(fR.swnode)); 4238d2c18caSMukkund Sunjii /* gravity wave speed */ 4248d2c18caSMukkund Sunjii aL = PetscSqrtReal(sw->gravity * uL->h); 4258d2c18caSMukkund Sunjii aR = PetscSqrtReal(sw->gravity * uR->h); 4268d2c18caSMukkund Sunjii // Defining u_tilda and v_tilda as u and v 4278d2c18caSMukkund Sunjii PetscReal u_L, u_R; 4288d2c18caSMukkund Sunjii u_L = Dot2Real(uL->uh,nn)/uL->h; 4298d2c18caSMukkund Sunjii u_R = Dot2Real(uR->uh,nn)/uR->h; 4308d2c18caSMukkund Sunjii PetscReal sL, sR; 4318d2c18caSMukkund Sunjii sL = PetscMin(u_L - aL, u_R - aR); 4328d2c18caSMukkund Sunjii sR = PetscMax(u_L + aL, u_R + aR); 4338d2c18caSMukkund Sunjii if (sL > zero) { 4348d2c18caSMukkund Sunjii for (i = 0; i < dim + 1; i++) { 4358d2c18caSMukkund Sunjii flux[i] = fL.vals[i] * Norm2Real(n); 4368d2c18caSMukkund Sunjii } 4378d2c18caSMukkund Sunjii } else if (sR < zero) { 4388d2c18caSMukkund Sunjii for (i = 0; i < dim + 1; i++) { 4398d2c18caSMukkund Sunjii flux[i] = fR.vals[i] * Norm2Real(n); 4408d2c18caSMukkund Sunjii } 4418d2c18caSMukkund Sunjii } else { 4428d2c18caSMukkund Sunjii for (i = 0; i < dim + 1; i++) { 4438d2c18caSMukkund Sunjii flux[i] = ((sR * fL.vals[i] - sL * fR.vals[i] + sR * sL * (xR[i] - xL[i])) / (sR - sL)) * Norm2Real(n); 4448d2c18caSMukkund Sunjii } 4458d2c18caSMukkund Sunjii } 4468d2c18caSMukkund Sunjii } 4478d2c18caSMukkund Sunjii 4488d2c18caSMukkund Sunjii static void PhysicsRiemann_SW_Rusanov(PetscInt dim, PetscInt Nf, const PetscReal *qp, const PetscReal *n, const PetscScalar *xL, const PetscScalar *xR, PetscInt numConstants, const PetscScalar constants[], PetscScalar *flux, Physics phys) 449c4762a1bSJed Brown { 450c4762a1bSJed Brown Physics_SW *sw = (Physics_SW*)phys->data; 451c4762a1bSJed Brown PetscReal cL,cR,speed; 452c4762a1bSJed Brown PetscReal nn[DIM]; 453c4762a1bSJed Brown #if !defined(PETSC_USE_COMPLEX) 454c4762a1bSJed Brown const SWNode *uL = (const SWNode*)xL,*uR = (const SWNode*)xR; 455c4762a1bSJed Brown #else 456c4762a1bSJed Brown SWNodeUnion uLreal, uRreal; 457c4762a1bSJed Brown const SWNode *uL = &uLreal.swnode; 458c4762a1bSJed Brown const SWNode *uR = &uRreal.swnode; 459c4762a1bSJed Brown #endif 460c4762a1bSJed Brown SWNodeUnion fL,fR; 461c4762a1bSJed Brown PetscInt i; 462c4762a1bSJed Brown PetscReal zero=0.; 463c4762a1bSJed Brown 464c4762a1bSJed Brown #if defined(PETSC_USE_COMPLEX) 465c4762a1bSJed Brown uLreal.swnode.h = 0; uRreal.swnode.h = 0; 466c4762a1bSJed Brown for (i = 0; i < 1+dim; i++) uLreal.vals[i] = PetscRealPart(xL[i]); 467c4762a1bSJed Brown for (i = 0; i < 1+dim; i++) uRreal.vals[i] = PetscRealPart(xR[i]); 468c4762a1bSJed Brown #endif 46954c59aa7SJacob Faibussowitsch if (uL->h < 0 || uR->h < 0) {for (i=0; i<1+dim; i++) flux[i] = zero/zero; return;} /* reconstructed thickness is negative */ 470c4762a1bSJed Brown nn[0] = n[0]; 471c4762a1bSJed Brown nn[1] = n[1]; 472c4762a1bSJed Brown Normalize2Real(nn); 473c4762a1bSJed Brown SWFlux(phys,nn,uL,&(fL.swnode)); 474c4762a1bSJed Brown SWFlux(phys,nn,uR,&(fR.swnode)); 475c4762a1bSJed Brown cL = PetscSqrtReal(sw->gravity*uL->h); 476c4762a1bSJed Brown cR = PetscSqrtReal(sw->gravity*uR->h); /* gravity wave speed */ 477c4762a1bSJed Brown speed = PetscMax(PetscAbsReal(Dot2Real(uL->uh,nn)/uL->h) + cL,PetscAbsReal(Dot2Real(uR->uh,nn)/uR->h) + cR); 478c4762a1bSJed Brown for (i=0; i<1+dim; i++) flux[i] = (0.5*(fL.vals[i] + fR.vals[i]) + 0.5*speed*(xL[i] - xR[i])) * Norm2Real(n); 479c4762a1bSJed Brown } 480c4762a1bSJed Brown 481c4762a1bSJed Brown static PetscErrorCode PhysicsSolution_SW(Model mod,PetscReal time,const PetscReal *x,PetscScalar *u,void *ctx) 482c4762a1bSJed Brown { 483c4762a1bSJed Brown PetscReal dx[2],r,sigma; 484c4762a1bSJed Brown 485c4762a1bSJed Brown PetscFunctionBeginUser; 48654c59aa7SJacob Faibussowitsch PetscCheck(time == 0.0,mod->comm,PETSC_ERR_SUP,"No solution known for time %g",(double)time); 487c4762a1bSJed Brown dx[0] = x[0] - 1.5; 488c4762a1bSJed Brown dx[1] = x[1] - 1.0; 489c4762a1bSJed Brown r = Norm2Real(dx); 490c4762a1bSJed Brown sigma = 0.5; 491c4762a1bSJed Brown u[0] = 1 + 2*PetscExpReal(-PetscSqr(r)/(2*PetscSqr(sigma))); 492c4762a1bSJed Brown u[1] = 0.0; 493c4762a1bSJed Brown u[2] = 0.0; 494c4762a1bSJed Brown PetscFunctionReturn(0); 495c4762a1bSJed Brown } 496c4762a1bSJed Brown 497c4762a1bSJed Brown static PetscErrorCode PhysicsFunctional_SW(Model mod,PetscReal time,const PetscReal *coord,const PetscScalar *xx,PetscReal *f,void *ctx) 498c4762a1bSJed Brown { 499c4762a1bSJed Brown Physics phys = (Physics)ctx; 500c4762a1bSJed Brown Physics_SW *sw = (Physics_SW*)phys->data; 501c4762a1bSJed Brown const SWNode *x = (const SWNode*)xx; 502c4762a1bSJed Brown PetscReal u[2]; 503c4762a1bSJed Brown PetscReal h; 504c4762a1bSJed Brown 505c4762a1bSJed Brown PetscFunctionBeginUser; 506c4762a1bSJed Brown h = x->h; 507c4762a1bSJed Brown Scale2Real(1./x->h,x->uh,u); 508c4762a1bSJed Brown f[sw->functional.Height] = h; 509c4762a1bSJed Brown f[sw->functional.Speed] = Norm2Real(u) + PetscSqrtReal(sw->gravity*h); 510c4762a1bSJed Brown f[sw->functional.Energy] = 0.5*(Dot2Real(x->uh,u) + sw->gravity*PetscSqr(h)); 511c4762a1bSJed Brown PetscFunctionReturn(0); 512c4762a1bSJed Brown } 513c4762a1bSJed Brown 51445480ffeSMatthew G. Knepley static PetscErrorCode SetUpBC_SW(DM dm, PetscDS prob,Physics phys) 515c4762a1bSJed Brown { 516c4762a1bSJed Brown const PetscInt wallids[] = {100,101,200,300}; 51745480ffeSMatthew G. Knepley DMLabel label; 51845480ffeSMatthew G. Knepley 519c4762a1bSJed Brown PetscFunctionBeginUser; 520*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetLabel(dm, "Face Sets", &label)); 521*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscDSAddBoundary(prob, DM_BC_NATURAL_RIEMANN, "wall", label, ALEN(wallids), wallids, 0, 0, NULL, (void (*)(void)) PhysicsBoundary_SW_Wall, NULL, phys, NULL)); 522c4762a1bSJed Brown PetscFunctionReturn(0); 523c4762a1bSJed Brown } 524c4762a1bSJed Brown 525c4762a1bSJed Brown static PetscErrorCode PhysicsCreate_SW(Model mod,Physics phys,PetscOptionItems *PetscOptionsObject) 526c4762a1bSJed Brown { 527c4762a1bSJed Brown Physics_SW *sw; 5288d2c18caSMukkund Sunjii char sw_riemann[64] = "rusanov"; 529c4762a1bSJed Brown 530c4762a1bSJed Brown PetscFunctionBeginUser; 531c4762a1bSJed Brown phys->field_desc = PhysicsFields_SW; 532*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscNew(&sw)); 533c4762a1bSJed Brown phys->data = sw; 534c4762a1bSJed Brown mod->setupbc = SetUpBC_SW; 535c4762a1bSJed Brown 5368d2c18caSMukkund Sunjii PetscFunctionListAdd(&PhysicsRiemannList_SW, "rusanov", PhysicsRiemann_SW_Rusanov); 5378d2c18caSMukkund Sunjii PetscFunctionListAdd(&PhysicsRiemannList_SW, "hll", PhysicsRiemann_SW_HLL); 5388d2c18caSMukkund Sunjii 539*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsHead(PetscOptionsObject,"SW options")); 540c4762a1bSJed Brown { 5418d2c18caSMukkund Sunjii void (*PhysicsRiemann_SW)(PetscInt, PetscInt, const PetscReal *, const PetscReal *, const PetscScalar *, const PetscScalar *, PetscInt, const PetscScalar, PetscScalar *, Physics); 542c4762a1bSJed Brown sw->gravity = 1.0; 543*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsReal("-sw_gravity","Gravitational constant","",sw->gravity,&sw->gravity,NULL)); 544*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsFList("-sw_riemann","Riemann solver","",PhysicsRiemannList_SW,sw_riemann,sw_riemann,sizeof sw_riemann,NULL)); 545*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFunctionListFind(PhysicsRiemannList_SW,sw_riemann,&PhysicsRiemann_SW)); 5468d2c18caSMukkund Sunjii phys->riemann = (PetscRiemannFunc) PhysicsRiemann_SW; 547c4762a1bSJed Brown } 548*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsTail()); 549c4762a1bSJed Brown phys->maxspeed = PetscSqrtReal(2.0*sw->gravity); /* Mach 1 for depth of 2 */ 550c4762a1bSJed Brown 551*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelSolutionSetDefault(mod,PhysicsSolution_SW,phys)); 552*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Height",&sw->functional.Height,PhysicsFunctional_SW,phys)); 553*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Speed",&sw->functional.Speed,PhysicsFunctional_SW,phys)); 554*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Energy",&sw->functional.Energy,PhysicsFunctional_SW,phys)); 555c4762a1bSJed Brown 556c4762a1bSJed Brown PetscFunctionReturn(0); 557c4762a1bSJed Brown } 558c4762a1bSJed Brown 559c4762a1bSJed Brown /******************* Euler Density Shock (EULER_IV_SHOCK,EULER_SS_SHOCK) ********************/ 560c4762a1bSJed Brown /* An initial-value and self-similar solutions of the compressible Euler equations */ 561c4762a1bSJed Brown /* Ravi Samtaney and D. I. Pullin */ 562c4762a1bSJed Brown /* Phys. Fluids 8, 2650 (1996); http://dx.doi.org/10.1063/1.869050 */ 563c4762a1bSJed Brown typedef enum {EULER_PAR_GAMMA,EULER_PAR_RHOR,EULER_PAR_AMACH,EULER_PAR_ITANA,EULER_PAR_SIZE} EulerParamIdx; 564c4762a1bSJed Brown typedef enum {EULER_IV_SHOCK,EULER_SS_SHOCK,EULER_SHOCK_TUBE,EULER_LINEAR_WAVE} EulerType; 565c4762a1bSJed Brown typedef struct { 566c4762a1bSJed Brown PetscReal r; 567c4762a1bSJed Brown PetscReal ru[DIM]; 568c4762a1bSJed Brown PetscReal E; 569c4762a1bSJed Brown } EulerNode; 570c4762a1bSJed Brown typedef union { 571c4762a1bSJed Brown EulerNode eulernode; 572c4762a1bSJed Brown PetscReal vals[DIM+2]; 573c4762a1bSJed Brown } EulerNodeUnion; 574c4762a1bSJed Brown typedef PetscErrorCode (*EquationOfState)(const PetscReal*, const EulerNode*, PetscReal*); 575c4762a1bSJed Brown typedef struct { 576c4762a1bSJed Brown EulerType type; 577c4762a1bSJed Brown PetscReal pars[EULER_PAR_SIZE]; 578c4762a1bSJed Brown EquationOfState sound; 579c4762a1bSJed Brown struct { 580c4762a1bSJed Brown PetscInt Density; 581c4762a1bSJed Brown PetscInt Momentum; 582c4762a1bSJed Brown PetscInt Energy; 583c4762a1bSJed Brown PetscInt Pressure; 584c4762a1bSJed Brown PetscInt Speed; 585c4762a1bSJed Brown } monitor; 586c4762a1bSJed Brown } Physics_Euler; 587c4762a1bSJed Brown 588c4762a1bSJed Brown static const struct FieldDescription PhysicsFields_Euler[] = {{"Density",1},{"Momentum",DIM},{"Energy",1},{NULL,0}}; 589c4762a1bSJed Brown 590c4762a1bSJed Brown /* initial condition */ 591c4762a1bSJed Brown int initLinearWave(EulerNode *ux, const PetscReal gamma, const PetscReal coord[], const PetscReal Lx); 592c4762a1bSJed Brown static PetscErrorCode PhysicsSolution_Euler(Model mod, PetscReal time, const PetscReal *x, PetscScalar *u, void *ctx) 593c4762a1bSJed Brown { 594c4762a1bSJed Brown PetscInt i; 595c4762a1bSJed Brown Physics phys = (Physics)ctx; 596c4762a1bSJed Brown Physics_Euler *eu = (Physics_Euler*)phys->data; 597c4762a1bSJed Brown EulerNode *uu = (EulerNode*)u; 598c4762a1bSJed Brown PetscReal p0,gamma,c; 599c4762a1bSJed Brown PetscFunctionBeginUser; 60054c59aa7SJacob Faibussowitsch PetscCheck(time == 0.0,mod->comm,PETSC_ERR_SUP,"No solution known for time %g",(double)time); 601c4762a1bSJed Brown 602c4762a1bSJed Brown for (i=0; i<DIM; i++) uu->ru[i] = 0.0; /* zero out initial velocity */ 603c4762a1bSJed Brown /* set E and rho */ 604c4762a1bSJed Brown gamma = eu->pars[EULER_PAR_GAMMA]; 605c4762a1bSJed Brown 606c4762a1bSJed Brown if (eu->type==EULER_IV_SHOCK || eu->type==EULER_SS_SHOCK) { 607c4762a1bSJed Brown /******************* Euler Density Shock ********************/ 608c4762a1bSJed Brown /* On initial-value and self-similar solutions of the compressible Euler equations */ 609c4762a1bSJed Brown /* Ravi Samtaney and D. I. Pullin */ 610c4762a1bSJed Brown /* Phys. Fluids 8, 2650 (1996); http://dx.doi.org/10.1063/1.869050 */ 611c4762a1bSJed Brown /* initial conditions 1: left of shock, 0: left of discontinuity 2: right of discontinuity, */ 612c4762a1bSJed Brown p0 = 1.; 613c4762a1bSJed Brown if (x[0] < 0.0 + x[1]*eu->pars[EULER_PAR_ITANA]) { 614c4762a1bSJed Brown if (x[0] < mod->bounds[0]*0.5) { /* left of shock (1) */ 615c4762a1bSJed Brown PetscReal amach,rho,press,gas1,p1; 616c4762a1bSJed Brown amach = eu->pars[EULER_PAR_AMACH]; 617c4762a1bSJed Brown rho = 1.; 618c4762a1bSJed Brown press = p0; 619c4762a1bSJed Brown p1 = press*(1.0+2.0*gamma/(gamma+1.0)*(amach*amach-1.0)); 620c4762a1bSJed Brown gas1 = (gamma-1.0)/(gamma+1.0); 621c4762a1bSJed Brown uu->r = rho*(p1/press+gas1)/(gas1*p1/press+1.0); 622c4762a1bSJed Brown uu->ru[0] = ((uu->r - rho)*PetscSqrtReal(gamma*press/rho)*amach); 623c4762a1bSJed Brown uu->E = p1/(gamma-1.0) + .5/uu->r*uu->ru[0]*uu->ru[0]; 624c4762a1bSJed Brown } 625c4762a1bSJed Brown else { /* left of discontinuity (0) */ 626c4762a1bSJed Brown uu->r = 1.; /* rho = 1 */ 627c4762a1bSJed Brown uu->E = p0/(gamma-1.0); 628c4762a1bSJed Brown } 629c4762a1bSJed Brown } 630c4762a1bSJed Brown else { /* right of discontinuity (2) */ 631c4762a1bSJed Brown uu->r = eu->pars[EULER_PAR_RHOR]; 632c4762a1bSJed Brown uu->E = p0/(gamma-1.0); 633c4762a1bSJed Brown } 634c4762a1bSJed Brown } 635c4762a1bSJed Brown else if (eu->type==EULER_SHOCK_TUBE) { 636c4762a1bSJed Brown /* For (x<x0) set (rho,u,p)=(8,0,10) and for (x>x0) set (rho,u,p)=(1,0,1). Choose x0 to the midpoint of the domain in the x-direction. */ 637c4762a1bSJed Brown if (x[0] < 0.0) { 638c4762a1bSJed Brown uu->r = 8.; 639c4762a1bSJed Brown uu->E = 10./(gamma-1.); 640c4762a1bSJed Brown } 641c4762a1bSJed Brown else { 642c4762a1bSJed Brown uu->r = 1.; 643c4762a1bSJed Brown uu->E = 1./(gamma-1.); 644c4762a1bSJed Brown } 645c4762a1bSJed Brown } 646c4762a1bSJed Brown else if (eu->type==EULER_LINEAR_WAVE) { 647c4762a1bSJed Brown initLinearWave( uu, gamma, x, mod->bounds[1] - mod->bounds[0]); 648c4762a1bSJed Brown } 64998921bdaSJacob Faibussowitsch else SETERRQ(mod->comm,PETSC_ERR_SUP,"Unknown type %d",eu->type); 650c4762a1bSJed Brown 651c4762a1bSJed Brown /* set phys->maxspeed: (mod->maxspeed = phys->maxspeed) in main; */ 652c4762a1bSJed Brown eu->sound(&gamma,uu,&c); 653c4762a1bSJed Brown c = (uu->ru[0]/uu->r) + c; 654c4762a1bSJed Brown if (c > phys->maxspeed) phys->maxspeed = c; 655c4762a1bSJed Brown 656c4762a1bSJed Brown PetscFunctionReturn(0); 657c4762a1bSJed Brown } 658c4762a1bSJed Brown 659c4762a1bSJed Brown static PetscErrorCode Pressure_PG(const PetscReal gamma,const EulerNode *x,PetscReal *p) 660c4762a1bSJed Brown { 661c4762a1bSJed Brown PetscReal ru2; 662c4762a1bSJed Brown 663c4762a1bSJed Brown PetscFunctionBeginUser; 664c4762a1bSJed Brown ru2 = DotDIMReal(x->ru,x->ru); 665c4762a1bSJed Brown (*p)=(x->E - 0.5*ru2/x->r)*(gamma - 1.0); /* (E - rho V^2/2)(gamma-1) = e rho (gamma-1) */ 666c4762a1bSJed Brown PetscFunctionReturn(0); 667c4762a1bSJed Brown } 668c4762a1bSJed Brown 669c4762a1bSJed Brown static PetscErrorCode SpeedOfSound_PG(const PetscReal *gamma, const EulerNode *x, PetscReal *c) 670c4762a1bSJed Brown { 671c4762a1bSJed Brown PetscReal p; 672c4762a1bSJed Brown 673c4762a1bSJed Brown PetscFunctionBeginUser; 674c4762a1bSJed Brown Pressure_PG(*gamma,x,&p); 67554c59aa7SJacob Faibussowitsch PetscCheck(p>=0.,PETSC_COMM_WORLD,PETSC_ERR_SUP,"negative pressure time %g -- NEED TO FIX!!!!!!",(double) p); 676c4762a1bSJed Brown /* pars[EULER_PAR_GAMMA] = heat capacity ratio */ 677c4762a1bSJed Brown (*c)=PetscSqrtReal(*gamma * p / x->r); 678c4762a1bSJed Brown PetscFunctionReturn(0); 679c4762a1bSJed Brown } 680c4762a1bSJed Brown 681c4762a1bSJed Brown /* 682c4762a1bSJed Brown * x = (rho,rho*(u_1),...,rho*e)^T 683c4762a1bSJed Brown * x_t+div(f_1(x))+...+div(f_DIM(x)) = 0 684c4762a1bSJed Brown * 685c4762a1bSJed Brown * f_i(x) = u_i*x+(0,0,...,p,...,p*u_i)^T 686c4762a1bSJed Brown * 687c4762a1bSJed Brown */ 688c4762a1bSJed Brown static PetscErrorCode EulerFlux(Physics phys,const PetscReal *n,const EulerNode *x,EulerNode *f) 689c4762a1bSJed Brown { 690c4762a1bSJed Brown Physics_Euler *eu = (Physics_Euler*)phys->data; 691c4762a1bSJed Brown PetscReal nu,p; 692c4762a1bSJed Brown PetscInt i; 693c4762a1bSJed Brown 694c4762a1bSJed Brown PetscFunctionBeginUser; 695c4762a1bSJed Brown Pressure_PG(eu->pars[EULER_PAR_GAMMA],x,&p); 696c4762a1bSJed Brown nu = DotDIMReal(x->ru,n); 697c4762a1bSJed Brown f->r = nu; /* A rho u */ 698c4762a1bSJed Brown nu /= x->r; /* A u */ 699c4762a1bSJed Brown for (i=0; i<DIM; i++) f->ru[i] = nu * x->ru[i] + n[i]*p; /* r u^2 + p */ 700c4762a1bSJed Brown f->E = nu * (x->E + p); /* u(e+p) */ 701c4762a1bSJed Brown PetscFunctionReturn(0); 702c4762a1bSJed Brown } 703c4762a1bSJed Brown 704c4762a1bSJed Brown /* PetscReal* => EulerNode* conversion */ 705c4762a1bSJed Brown static PetscErrorCode PhysicsBoundary_Euler_Wall(PetscReal time, const PetscReal *c, const PetscReal *n, const PetscScalar *a_xI, PetscScalar *a_xG, void *ctx) 706c4762a1bSJed Brown { 707c4762a1bSJed Brown PetscInt i; 708c4762a1bSJed Brown const EulerNode *xI = (const EulerNode*)a_xI; 709c4762a1bSJed Brown EulerNode *xG = (EulerNode*)a_xG; 710c4762a1bSJed Brown Physics phys = (Physics)ctx; 711c4762a1bSJed Brown Physics_Euler *eu = (Physics_Euler*)phys->data; 712c4762a1bSJed Brown PetscFunctionBeginUser; 713c4762a1bSJed Brown xG->r = xI->r; /* ghost cell density - same */ 714c4762a1bSJed Brown xG->E = xI->E; /* ghost cell energy - same */ 715c4762a1bSJed Brown if (n[1] != 0.) { /* top and bottom */ 716c4762a1bSJed Brown xG->ru[0] = xI->ru[0]; /* copy tang to wall */ 717c4762a1bSJed Brown xG->ru[1] = -xI->ru[1]; /* reflect perp to t/b wall */ 718c4762a1bSJed Brown } 719c4762a1bSJed Brown else { /* sides */ 720c4762a1bSJed Brown for (i=0; i<DIM; i++) xG->ru[i] = xI->ru[i]; /* copy */ 721c4762a1bSJed Brown } 722c4762a1bSJed Brown if (eu->type == EULER_LINEAR_WAVE) { /* debug */ 723c4762a1bSJed Brown #if 0 724c4762a1bSJed Brown PetscPrintf(PETSC_COMM_WORLD,"%s coord=%g,%g\n",PETSC_FUNCTION_NAME,c[0],c[1]); 725c4762a1bSJed Brown #endif 726c4762a1bSJed Brown } 727c4762a1bSJed Brown PetscFunctionReturn(0); 728c4762a1bSJed Brown } 729c4762a1bSJed Brown int godunovflux( const PetscScalar *ul, const PetscScalar *ur, PetscScalar *flux, const PetscReal *nn, const int *ndim, const PetscReal *gamma); 730c4762a1bSJed Brown /* PetscReal* => EulerNode* conversion */ 731c4762a1bSJed Brown static void PhysicsRiemann_Euler_Godunov( PetscInt dim, PetscInt Nf, const PetscReal *qp, const PetscReal *n, 732c4762a1bSJed Brown const PetscScalar *xL, const PetscScalar *xR, PetscInt numConstants, const PetscScalar constants[], PetscScalar *flux, Physics phys) 733c4762a1bSJed Brown { 734c4762a1bSJed Brown Physics_Euler *eu = (Physics_Euler*)phys->data; 735c4762a1bSJed Brown PetscReal cL,cR,speed,velL,velR,nn[DIM],s2; 736c4762a1bSJed Brown PetscInt i; 737c4762a1bSJed Brown PetscErrorCode ierr; 738c4762a1bSJed Brown PetscFunctionBeginUser; 739c4762a1bSJed Brown 740c4762a1bSJed Brown for (i=0,s2=0.; i<DIM; i++) { 741c4762a1bSJed Brown nn[i] = n[i]; 742c4762a1bSJed Brown s2 += nn[i]*nn[i]; 743c4762a1bSJed Brown } 744c4762a1bSJed Brown s2 = PetscSqrtReal(s2); /* |n|_2 = sum(n^2)^1/2 */ 745c4762a1bSJed Brown for (i=0.; i<DIM; i++) nn[i] /= s2; 746c4762a1bSJed Brown if (0) { /* Rusanov */ 747c4762a1bSJed Brown const EulerNode *uL = (const EulerNode*)xL,*uR = (const EulerNode*)xR; 748c4762a1bSJed Brown EulerNodeUnion fL,fR; 749c4762a1bSJed Brown EulerFlux(phys,nn,uL,&(fL.eulernode)); 750c4762a1bSJed Brown EulerFlux(phys,nn,uR,&(fR.eulernode)); 751c4762a1bSJed Brown ierr = eu->sound(&eu->pars[EULER_PAR_GAMMA],uL,&cL);if (ierr) exit(13); 752c4762a1bSJed Brown ierr = eu->sound(&eu->pars[EULER_PAR_GAMMA],uR,&cR);if (ierr) exit(14); 753c4762a1bSJed Brown velL = DotDIMReal(uL->ru,nn)/uL->r; 754c4762a1bSJed Brown velR = DotDIMReal(uR->ru,nn)/uR->r; 755c4762a1bSJed Brown speed = PetscMax(velR + cR, velL + cL); 756c4762a1bSJed Brown for (i=0; i<2+dim; i++) flux[i] = 0.5*((fL.vals[i]+fR.vals[i]) + speed*(xL[i] - xR[i]))*s2; 757c4762a1bSJed Brown } 758c4762a1bSJed Brown else { 759c4762a1bSJed Brown int dim = DIM; 760c4762a1bSJed Brown /* int iwave = */ 761c4762a1bSJed Brown godunovflux(xL, xR, flux, nn, &dim, &eu->pars[EULER_PAR_GAMMA]); 762c4762a1bSJed Brown for (i=0; i<2+dim; i++) flux[i] *= s2; 763c4762a1bSJed Brown } 764c4762a1bSJed Brown PetscFunctionReturnVoid(); 765c4762a1bSJed Brown } 766c4762a1bSJed Brown 767c4762a1bSJed Brown static PetscErrorCode PhysicsFunctional_Euler(Model mod,PetscReal time,const PetscReal *coord,const PetscScalar *xx,PetscReal *f,void *ctx) 768c4762a1bSJed Brown { 769c4762a1bSJed Brown Physics phys = (Physics)ctx; 770c4762a1bSJed Brown Physics_Euler *eu = (Physics_Euler*)phys->data; 771c4762a1bSJed Brown const EulerNode *x = (const EulerNode*)xx; 772c4762a1bSJed Brown PetscReal p; 773c4762a1bSJed Brown 774c4762a1bSJed Brown PetscFunctionBeginUser; 775c4762a1bSJed Brown f[eu->monitor.Density] = x->r; 776c4762a1bSJed Brown f[eu->monitor.Momentum] = NormDIM(x->ru); 777c4762a1bSJed Brown f[eu->monitor.Energy] = x->E; 778c4762a1bSJed Brown f[eu->monitor.Speed] = NormDIM(x->ru)/x->r; 779c4762a1bSJed Brown Pressure_PG(eu->pars[EULER_PAR_GAMMA], x, &p); 780c4762a1bSJed Brown f[eu->monitor.Pressure] = p; 781c4762a1bSJed Brown PetscFunctionReturn(0); 782c4762a1bSJed Brown } 783c4762a1bSJed Brown 78445480ffeSMatthew G. Knepley static PetscErrorCode SetUpBC_Euler(DM dm, PetscDS prob,Physics phys) 785c4762a1bSJed Brown { 786c4762a1bSJed Brown Physics_Euler *eu = (Physics_Euler *) phys->data; 78745480ffeSMatthew G. Knepley DMLabel label; 78845480ffeSMatthew G. Knepley 789362febeeSStefano Zampini PetscFunctionBeginUser; 790*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetLabel(dm, "Face Sets", &label)); 791c4762a1bSJed Brown if (eu->type == EULER_LINEAR_WAVE) { 792c4762a1bSJed Brown const PetscInt wallids[] = {100,101}; 793*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscDSAddBoundary(prob, DM_BC_NATURAL_RIEMANN, "wall", label, ALEN(wallids), wallids, 0, 0, NULL, (void (*)(void)) PhysicsBoundary_Euler_Wall, NULL, phys, NULL)); 794c4762a1bSJed Brown } 795c4762a1bSJed Brown else { 796c4762a1bSJed Brown const PetscInt wallids[] = {100,101,200,300}; 797*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscDSAddBoundary(prob, DM_BC_NATURAL_RIEMANN, "wall", label, ALEN(wallids), wallids, 0, 0, NULL, (void (*)(void)) PhysicsBoundary_Euler_Wall, NULL, phys, NULL)); 798c4762a1bSJed Brown } 799c4762a1bSJed Brown PetscFunctionReturn(0); 800c4762a1bSJed Brown } 801c4762a1bSJed Brown 802c4762a1bSJed Brown static PetscErrorCode PhysicsCreate_Euler(Model mod,Physics phys,PetscOptionItems *PetscOptionsObject) 803c4762a1bSJed Brown { 804c4762a1bSJed Brown Physics_Euler *eu; 805c4762a1bSJed Brown 806c4762a1bSJed Brown PetscFunctionBeginUser; 807c4762a1bSJed Brown phys->field_desc = PhysicsFields_Euler; 808c4762a1bSJed Brown phys->riemann = (PetscRiemannFunc) PhysicsRiemann_Euler_Godunov; 809*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscNew(&eu)); 810c4762a1bSJed Brown phys->data = eu; 811c4762a1bSJed Brown mod->setupbc = SetUpBC_Euler; 812*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsHead(PetscOptionsObject,"Euler options")); 813c4762a1bSJed Brown { 814c4762a1bSJed Brown PetscReal alpha; 815c4762a1bSJed Brown char type[64] = "linear_wave"; 816c4762a1bSJed Brown PetscBool is; 817c4762a1bSJed Brown eu->pars[EULER_PAR_GAMMA] = 1.4; 818c4762a1bSJed Brown eu->pars[EULER_PAR_AMACH] = 2.02; 819c4762a1bSJed Brown eu->pars[EULER_PAR_RHOR] = 3.0; 820c4762a1bSJed Brown eu->pars[EULER_PAR_ITANA] = 0.57735026918963; /* angle of Euler self similar (SS) shock */ 821*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsReal("-eu_gamma","Heat capacity ratio","",eu->pars[EULER_PAR_GAMMA],&eu->pars[EULER_PAR_GAMMA],NULL)); 822*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsReal("-eu_amach","Shock speed (Mach)","",eu->pars[EULER_PAR_AMACH],&eu->pars[EULER_PAR_AMACH],NULL)); 823*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsReal("-eu_rho2","Density right of discontinuity","",eu->pars[EULER_PAR_RHOR],&eu->pars[EULER_PAR_RHOR],NULL)); 824c4762a1bSJed Brown alpha = 60.; 825*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsReal("-eu_alpha","Angle of discontinuity","",alpha,&alpha,NULL)); 82654c59aa7SJacob Faibussowitsch PetscCheck(alpha>0. && alpha<=90.,PETSC_COMM_WORLD,PETSC_ERR_SUP,"Alpha bust be > 0 and <= 90 (%g)",alpha); 827c4762a1bSJed Brown eu->pars[EULER_PAR_ITANA] = 1./PetscTanReal( alpha * PETSC_PI / 180.0); 828*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsString("-eu_type","Type of Euler test","",type,type,sizeof(type),NULL)); 829*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscStrcmp(type,"linear_wave", &is)); 830c4762a1bSJed Brown if (is) { 83130602db0SMatthew G. Knepley /* Remember this should be periodic */ 832c4762a1bSJed Brown eu->type = EULER_LINEAR_WAVE; 833*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscPrintf(PETSC_COMM_WORLD,"%s set Euler type: %s\n",PETSC_FUNCTION_NAME,"linear_wave")); 834c4762a1bSJed Brown } 835c4762a1bSJed Brown else { 83654c59aa7SJacob Faibussowitsch PetscCheck(DIM == 2,PETSC_COMM_WORLD,PETSC_ERR_SUP,"DIM must be 2 unless linear wave test %s",type); 837*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscStrcmp(type,"iv_shock", &is)); 838c4762a1bSJed Brown if (is) { 839c4762a1bSJed Brown eu->type = EULER_IV_SHOCK; 840*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscPrintf(PETSC_COMM_WORLD,"%s set Euler type: %s\n",PETSC_FUNCTION_NAME,"iv_shock")); 841c4762a1bSJed Brown } 842c4762a1bSJed Brown else { 843*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscStrcmp(type,"ss_shock", &is)); 844c4762a1bSJed Brown if (is) { 845c4762a1bSJed Brown eu->type = EULER_SS_SHOCK; 846*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscPrintf(PETSC_COMM_WORLD,"%s set Euler type: %s\n",PETSC_FUNCTION_NAME,"ss_shock")); 847c4762a1bSJed Brown } 848c4762a1bSJed Brown else { 849*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscStrcmp(type,"shock_tube", &is)); 850c4762a1bSJed Brown if (is) eu->type = EULER_SHOCK_TUBE; 85198921bdaSJacob Faibussowitsch else SETERRQ(PETSC_COMM_WORLD,PETSC_ERR_SUP,"Unknown Euler type %s",type); 852*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscPrintf(PETSC_COMM_WORLD,"%s set Euler type: %s\n",PETSC_FUNCTION_NAME,"shock_tube")); 853c4762a1bSJed Brown } 854c4762a1bSJed Brown } 855c4762a1bSJed Brown } 856c4762a1bSJed Brown } 857*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsTail()); 858c4762a1bSJed Brown eu->sound = SpeedOfSound_PG; 859c4762a1bSJed Brown phys->maxspeed = 0.; /* will get set in solution */ 860*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelSolutionSetDefault(mod,PhysicsSolution_Euler,phys)); 861*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Speed",&eu->monitor.Speed,PhysicsFunctional_Euler,phys)); 862*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Energy",&eu->monitor.Energy,PhysicsFunctional_Euler,phys)); 863*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Density",&eu->monitor.Density,PhysicsFunctional_Euler,phys)); 864*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Momentum",&eu->monitor.Momentum,PhysicsFunctional_Euler,phys)); 865*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalRegister(mod,"Pressure",&eu->monitor.Pressure,PhysicsFunctional_Euler,phys)); 866c4762a1bSJed Brown 867c4762a1bSJed Brown PetscFunctionReturn(0); 868c4762a1bSJed Brown } 869c4762a1bSJed Brown 870c4762a1bSJed Brown static PetscErrorCode ErrorIndicator_Simple(PetscInt dim, PetscReal volume, PetscInt numComps, const PetscScalar u[], const PetscScalar grad[], PetscReal *error, void *ctx) 871c4762a1bSJed Brown { 872c4762a1bSJed Brown PetscReal err = 0.; 873c4762a1bSJed Brown PetscInt i, j; 874c4762a1bSJed Brown 875c4762a1bSJed Brown PetscFunctionBeginUser; 876c4762a1bSJed Brown for (i = 0; i < numComps; i++) { 877c4762a1bSJed Brown for (j = 0; j < dim; j++) { 878c4762a1bSJed Brown err += PetscSqr(PetscRealPart(grad[i * dim + j])); 879c4762a1bSJed Brown } 880c4762a1bSJed Brown } 881c4762a1bSJed Brown *error = volume * err; 882c4762a1bSJed Brown PetscFunctionReturn(0); 883c4762a1bSJed Brown } 884c4762a1bSJed Brown 885c4762a1bSJed Brown PetscErrorCode CreatePartitionVec(DM dm, DM *dmCell, Vec *partition) 886c4762a1bSJed Brown { 887c4762a1bSJed Brown PetscSF sfPoint; 888c4762a1bSJed Brown PetscSection coordSection; 889c4762a1bSJed Brown Vec coordinates; 890c4762a1bSJed Brown PetscSection sectionCell; 891c4762a1bSJed Brown PetscScalar *part; 892c4762a1bSJed Brown PetscInt cStart, cEnd, c; 893c4762a1bSJed Brown PetscMPIInt rank; 894c4762a1bSJed Brown 895c4762a1bSJed Brown PetscFunctionBeginUser; 896*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetCoordinateSection(dm, &coordSection)); 897*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetCoordinatesLocal(dm, &coordinates)); 898*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMClone(dm, dmCell)); 899*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetPointSF(dm, &sfPoint)); 900*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetPointSF(*dmCell, sfPoint)); 901*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetCoordinateSection(*dmCell, PETSC_DETERMINE, coordSection)); 902*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetCoordinatesLocal(*dmCell, coordinates)); 903*5f80ce2aSJacob Faibussowitsch CHKERRMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank)); 904*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionCreate(PetscObjectComm((PetscObject)dm), §ionCell)); 905*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetHeightStratum(*dmCell, 0, &cStart, &cEnd)); 906*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionSetChart(sectionCell, cStart, cEnd)); 907c4762a1bSJed Brown for (c = cStart; c < cEnd; ++c) { 908*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionSetDof(sectionCell, c, 1)); 909c4762a1bSJed Brown } 910*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionSetUp(sectionCell)); 911*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetLocalSection(*dmCell, sectionCell)); 912*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionDestroy(§ionCell)); 913*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateLocalVector(*dmCell, partition)); 914*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectSetName((PetscObject)*partition, "partition")); 915*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArray(*partition, &part)); 916c4762a1bSJed Brown for (c = cStart; c < cEnd; ++c) { 917c4762a1bSJed Brown PetscScalar *p; 918c4762a1bSJed Brown 919*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRef(*dmCell, c, part, &p)); 920c4762a1bSJed Brown p[0] = rank; 921c4762a1bSJed Brown } 922*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArray(*partition, &part)); 923c4762a1bSJed Brown PetscFunctionReturn(0); 924c4762a1bSJed Brown } 925c4762a1bSJed Brown 926c4762a1bSJed Brown PetscErrorCode CreateMassMatrix(DM dm, Vec *massMatrix, User user) 927c4762a1bSJed Brown { 9283e9753d6SMatthew G. Knepley DM plex, dmMass, dmFace, dmCell, dmCoord; 929c4762a1bSJed Brown PetscSection coordSection; 930c4762a1bSJed Brown Vec coordinates, facegeom, cellgeom; 931c4762a1bSJed Brown PetscSection sectionMass; 932c4762a1bSJed Brown PetscScalar *m; 933c4762a1bSJed Brown const PetscScalar *fgeom, *cgeom, *coords; 934c4762a1bSJed Brown PetscInt vStart, vEnd, v; 935c4762a1bSJed Brown 936c4762a1bSJed Brown PetscFunctionBeginUser; 937*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMConvert(dm, DMPLEX, &plex)); 938*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetCoordinateSection(dm, &coordSection)); 939*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetCoordinatesLocal(dm, &coordinates)); 940*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMClone(dm, &dmMass)); 941*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetCoordinateSection(dmMass, PETSC_DETERMINE, coordSection)); 942*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetCoordinatesLocal(dmMass, coordinates)); 943*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionCreate(PetscObjectComm((PetscObject)dm), §ionMass)); 944*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 945*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionSetChart(sectionMass, vStart, vEnd)); 946c4762a1bSJed Brown for (v = vStart; v < vEnd; ++v) { 947c4762a1bSJed Brown PetscInt numFaces; 948c4762a1bSJed Brown 949*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetSupportSize(dmMass, v, &numFaces)); 950*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionSetDof(sectionMass, v, numFaces*numFaces)); 951c4762a1bSJed Brown } 952*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionSetUp(sectionMass)); 953*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetLocalSection(dmMass, sectionMass)); 954*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSectionDestroy(§ionMass)); 955*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetLocalVector(dmMass, massMatrix)); 956*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArray(*massMatrix, &m)); 957*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetGeometryFVM(plex, &facegeom, &cellgeom, NULL)); 958*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetDM(facegeom, &dmFace)); 959*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArrayRead(facegeom, &fgeom)); 960*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetDM(cellgeom, &dmCell)); 961*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArrayRead(cellgeom, &cgeom)); 962*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetCoordinateDM(dm, &dmCoord)); 963*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArrayRead(coordinates, &coords)); 964c4762a1bSJed Brown for (v = vStart; v < vEnd; ++v) { 965c4762a1bSJed Brown const PetscInt *faces; 966c4762a1bSJed Brown PetscFVFaceGeom *fgA, *fgB, *cg; 967c4762a1bSJed Brown PetscScalar *vertex; 968c4762a1bSJed Brown PetscInt numFaces, sides[2], f, g; 969c4762a1bSJed Brown 970*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRead(dmCoord, v, coords, &vertex)); 971*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetSupportSize(dmMass, v, &numFaces)); 972*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetSupport(dmMass, v, &faces)); 973c4762a1bSJed Brown for (f = 0; f < numFaces; ++f) { 974c4762a1bSJed Brown sides[0] = faces[f]; 975*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRead(dmFace, faces[f], fgeom, &fgA)); 976c4762a1bSJed Brown for (g = 0; g < numFaces; ++g) { 977c4762a1bSJed Brown const PetscInt *cells = NULL; 978c4762a1bSJed Brown PetscReal area = 0.0; 979c4762a1bSJed Brown PetscInt numCells; 980c4762a1bSJed Brown 981c4762a1bSJed Brown sides[1] = faces[g]; 982*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRead(dmFace, faces[g], fgeom, &fgB)); 983*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetJoin(dmMass, 2, sides, &numCells, &cells)); 98454c59aa7SJacob Faibussowitsch PetscCheck(numCells == 1,PETSC_COMM_SELF, PETSC_ERR_LIB, "Invalid join for faces"); 985*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRead(dmCell, cells[0], cgeom, &cg)); 986c4762a1bSJed Brown area += PetscAbsScalar((vertex[0] - cg->centroid[0])*(fgA->centroid[1] - cg->centroid[1]) - (vertex[1] - cg->centroid[1])*(fgA->centroid[0] - cg->centroid[0])); 987c4762a1bSJed Brown area += PetscAbsScalar((vertex[0] - cg->centroid[0])*(fgB->centroid[1] - cg->centroid[1]) - (vertex[1] - cg->centroid[1])*(fgB->centroid[0] - cg->centroid[0])); 988c4762a1bSJed Brown m[f*numFaces+g] = Dot2Real(fgA->normal, fgB->normal)*area*0.5; 989*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexRestoreJoin(dmMass, 2, sides, &numCells, &cells)); 990c4762a1bSJed Brown } 991c4762a1bSJed Brown } 992c4762a1bSJed Brown } 993*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArrayRead(facegeom, &fgeom)); 994*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArrayRead(cellgeom, &cgeom)); 995*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArrayRead(coordinates, &coords)); 996*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArray(*massMatrix, &m)); 997*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&dmMass)); 998*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&plex)); 999c4762a1bSJed Brown PetscFunctionReturn(0); 1000c4762a1bSJed Brown } 1001c4762a1bSJed Brown 1002c4762a1bSJed Brown /* Behavior will be different for multi-physics or when using non-default boundary conditions */ 1003c4762a1bSJed Brown static PetscErrorCode ModelSolutionSetDefault(Model mod,SolutionFunction func,void *ctx) 1004c4762a1bSJed Brown { 1005c4762a1bSJed Brown PetscFunctionBeginUser; 1006c4762a1bSJed Brown mod->solution = func; 1007c4762a1bSJed Brown mod->solutionctx = ctx; 1008c4762a1bSJed Brown PetscFunctionReturn(0); 1009c4762a1bSJed Brown } 1010c4762a1bSJed Brown 1011c4762a1bSJed Brown static PetscErrorCode ModelFunctionalRegister(Model mod,const char *name,PetscInt *offset,FunctionalFunction func,void *ctx) 1012c4762a1bSJed Brown { 1013c4762a1bSJed Brown FunctionalLink link,*ptr; 1014c4762a1bSJed Brown PetscInt lastoffset = -1; 1015c4762a1bSJed Brown 1016c4762a1bSJed Brown PetscFunctionBeginUser; 1017c4762a1bSJed Brown for (ptr=&mod->functionalRegistry; *ptr; ptr = &(*ptr)->next) lastoffset = (*ptr)->offset; 1018*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscNew(&link)); 1019*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscStrallocpy(name,&link->name)); 1020c4762a1bSJed Brown link->offset = lastoffset + 1; 1021c4762a1bSJed Brown link->func = func; 1022c4762a1bSJed Brown link->ctx = ctx; 1023c4762a1bSJed Brown link->next = NULL; 1024c4762a1bSJed Brown *ptr = link; 1025c4762a1bSJed Brown *offset = link->offset; 1026c4762a1bSJed Brown PetscFunctionReturn(0); 1027c4762a1bSJed Brown } 1028c4762a1bSJed Brown 1029c4762a1bSJed Brown static PetscErrorCode ModelFunctionalSetFromOptions(Model mod,PetscOptionItems *PetscOptionsObject) 1030c4762a1bSJed Brown { 1031c4762a1bSJed Brown PetscInt i,j; 1032c4762a1bSJed Brown FunctionalLink link; 1033c4762a1bSJed Brown char *names[256]; 1034c4762a1bSJed Brown 1035c4762a1bSJed Brown PetscFunctionBeginUser; 1036c4762a1bSJed Brown mod->numMonitored = ALEN(names); 1037*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsStringArray("-monitor","list of functionals to monitor","",names,&mod->numMonitored,NULL)); 1038c4762a1bSJed Brown /* Create list of functionals that will be computed somehow */ 1039*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMalloc1(mod->numMonitored,&mod->functionalMonitored)); 1040c4762a1bSJed Brown /* Create index of calls that we will have to make to compute these functionals (over-allocation in general). */ 1041*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMalloc1(mod->numMonitored,&mod->functionalCall)); 1042c4762a1bSJed Brown mod->numCall = 0; 1043c4762a1bSJed Brown for (i=0; i<mod->numMonitored; i++) { 1044c4762a1bSJed Brown for (link=mod->functionalRegistry; link; link=link->next) { 1045c4762a1bSJed Brown PetscBool match; 1046*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscStrcasecmp(names[i],link->name,&match)); 1047c4762a1bSJed Brown if (match) break; 1048c4762a1bSJed Brown } 104954c59aa7SJacob Faibussowitsch PetscCheck(link,mod->comm,PETSC_ERR_USER,"No known functional '%s'",names[i]); 1050c4762a1bSJed Brown mod->functionalMonitored[i] = link; 1051c4762a1bSJed Brown for (j=0; j<i; j++) { 1052c4762a1bSJed Brown if (mod->functionalCall[j]->func == link->func && mod->functionalCall[j]->ctx == link->ctx) goto next_name; 1053c4762a1bSJed Brown } 1054c4762a1bSJed Brown mod->functionalCall[mod->numCall++] = link; /* Just points to the first link using the result. There may be more results. */ 1055c4762a1bSJed Brown next_name: 1056*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(names[i])); 1057c4762a1bSJed Brown } 1058c4762a1bSJed Brown 1059c4762a1bSJed Brown /* Find out the maximum index of any functional computed by a function we will be calling (even if we are not using it) */ 1060c4762a1bSJed Brown mod->maxComputed = -1; 1061c4762a1bSJed Brown for (link=mod->functionalRegistry; link; link=link->next) { 1062c4762a1bSJed Brown for (i=0; i<mod->numCall; i++) { 1063c4762a1bSJed Brown FunctionalLink call = mod->functionalCall[i]; 1064c4762a1bSJed Brown if (link->func == call->func && link->ctx == call->ctx) { 1065c4762a1bSJed Brown mod->maxComputed = PetscMax(mod->maxComputed,link->offset); 1066c4762a1bSJed Brown } 1067c4762a1bSJed Brown } 1068c4762a1bSJed Brown } 1069c4762a1bSJed Brown PetscFunctionReturn(0); 1070c4762a1bSJed Brown } 1071c4762a1bSJed Brown 1072c4762a1bSJed Brown static PetscErrorCode FunctionalLinkDestroy(FunctionalLink *link) 1073c4762a1bSJed Brown { 1074c4762a1bSJed Brown FunctionalLink l,next; 1075c4762a1bSJed Brown 1076c4762a1bSJed Brown PetscFunctionBeginUser; 1077c4762a1bSJed Brown if (!link) PetscFunctionReturn(0); 1078c4762a1bSJed Brown l = *link; 1079c4762a1bSJed Brown *link = NULL; 1080c4762a1bSJed Brown for (; l; l=next) { 1081c4762a1bSJed Brown next = l->next; 1082*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(l->name)); 1083*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(l)); 1084c4762a1bSJed Brown } 1085c4762a1bSJed Brown PetscFunctionReturn(0); 1086c4762a1bSJed Brown } 1087c4762a1bSJed Brown 1088c4762a1bSJed Brown /* put the solution callback into a functional callback */ 1089c4762a1bSJed Brown static PetscErrorCode SolutionFunctional(PetscInt dim, PetscReal time, const PetscReal x[], PetscInt Nf, PetscScalar *u, void *modctx) 1090c4762a1bSJed Brown { 1091c4762a1bSJed Brown Model mod; 1092c4762a1bSJed Brown PetscFunctionBegin; 1093c4762a1bSJed Brown mod = (Model) modctx; 1094*5f80ce2aSJacob Faibussowitsch CHKERRQ((*mod->solution)(mod, time, x, u, mod->solutionctx)); 1095c4762a1bSJed Brown PetscFunctionReturn(0); 1096c4762a1bSJed Brown } 1097c4762a1bSJed Brown 1098c4762a1bSJed Brown PetscErrorCode SetInitialCondition(DM dm, Vec X, User user) 1099c4762a1bSJed Brown { 1100c4762a1bSJed Brown PetscErrorCode (*func[1]) (PetscInt dim, PetscReal time, const PetscReal x[], PetscInt Nf, PetscScalar *u, void *ctx); 1101c4762a1bSJed Brown void *ctx[1]; 1102c4762a1bSJed Brown Model mod = user->model; 1103c4762a1bSJed Brown 1104c4762a1bSJed Brown PetscFunctionBeginUser; 1105c4762a1bSJed Brown func[0] = SolutionFunctional; 1106c4762a1bSJed Brown ctx[0] = (void *) mod; 1107*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMProjectFunction(dm,0.0,func,ctx,INSERT_ALL_VALUES,X)); 1108c4762a1bSJed Brown PetscFunctionReturn(0); 1109c4762a1bSJed Brown } 1110c4762a1bSJed Brown 1111c4762a1bSJed Brown static PetscErrorCode OutputVTK(DM dm, const char *filename, PetscViewer *viewer) 1112c4762a1bSJed Brown { 1113c4762a1bSJed Brown PetscFunctionBeginUser; 1114*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerCreate(PetscObjectComm((PetscObject)dm), viewer)); 1115*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerSetType(*viewer, PETSCVIEWERVTK)); 1116*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerFileSetName(*viewer, filename)); 1117c4762a1bSJed Brown PetscFunctionReturn(0); 1118c4762a1bSJed Brown } 1119c4762a1bSJed Brown 1120c4762a1bSJed Brown static PetscErrorCode MonitorVTK(TS ts,PetscInt stepnum,PetscReal time,Vec X,void *ctx) 1121c4762a1bSJed Brown { 1122c4762a1bSJed Brown User user = (User)ctx; 11233e9753d6SMatthew G. Knepley DM dm, plex; 1124c4762a1bSJed Brown PetscViewer viewer; 1125c4762a1bSJed Brown char filename[PETSC_MAX_PATH_LEN],*ftable = NULL; 1126c4762a1bSJed Brown PetscReal xnorm; 1127c4762a1bSJed Brown 1128c4762a1bSJed Brown PetscFunctionBeginUser; 1129*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectSetName((PetscObject) X, "u")); 1130*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetDM(X,&dm)); 1131*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecNorm(X,NORM_INFINITY,&xnorm)); 1132c4762a1bSJed Brown 1133c4762a1bSJed Brown if (stepnum >= 0) { 1134c4762a1bSJed Brown stepnum += user->monitorStepOffset; 1135c4762a1bSJed Brown } 1136c4762a1bSJed Brown if (stepnum >= 0) { /* No summary for final time */ 1137c4762a1bSJed Brown Model mod = user->model; 11383e9753d6SMatthew G. Knepley Vec cellgeom; 1139c4762a1bSJed Brown PetscInt c,cStart,cEnd,fcount,i; 1140c4762a1bSJed Brown size_t ftableused,ftablealloc; 1141c4762a1bSJed Brown const PetscScalar *cgeom,*x; 1142c4762a1bSJed Brown DM dmCell; 1143c4762a1bSJed Brown DMLabel vtkLabel; 1144c4762a1bSJed Brown PetscReal *fmin,*fmax,*fintegral,*ftmp; 11453e9753d6SMatthew G. Knepley 1146*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMConvert(dm, DMPLEX, &plex)); 1147*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetGeometryFVM(plex, NULL, &cellgeom, NULL)); 1148c4762a1bSJed Brown fcount = mod->maxComputed+1; 1149*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMalloc4(fcount,&fmin,fcount,&fmax,fcount,&fintegral,fcount,&ftmp)); 1150c4762a1bSJed Brown for (i=0; i<fcount; i++) { 1151c4762a1bSJed Brown fmin[i] = PETSC_MAX_REAL; 1152c4762a1bSJed Brown fmax[i] = PETSC_MIN_REAL; 1153c4762a1bSJed Brown fintegral[i] = 0; 1154c4762a1bSJed Brown } 1155*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetDM(cellgeom,&dmCell)); 1156*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetSimplexOrBoxCells(dmCell,0,&cStart,&cEnd)); 1157*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArrayRead(cellgeom,&cgeom)); 1158*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArrayRead(X,&x)); 1159*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetLabel(dm,"vtk",&vtkLabel)); 1160c4762a1bSJed Brown for (c = cStart; c < cEnd; ++c) { 1161c4762a1bSJed Brown PetscFVCellGeom *cg; 1162c4762a1bSJed Brown const PetscScalar *cx = NULL; 1163c4762a1bSJed Brown PetscInt vtkVal = 0; 1164c4762a1bSJed Brown 1165c4762a1bSJed Brown /* not that these two routines as currently implemented work for any dm with a 1166c4762a1bSJed Brown * localSection/globalSection */ 1167*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRead(dmCell,c,cgeom,&cg)); 1168*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointGlobalRead(dm,c,x,&cx)); 1169*5f80ce2aSJacob Faibussowitsch if (vtkLabel) CHKERRQ(DMLabelGetValue(vtkLabel,c,&vtkVal)); 1170c4762a1bSJed Brown if (!vtkVal || !cx) continue; /* ghost, or not a global cell */ 1171c4762a1bSJed Brown for (i=0; i<mod->numCall; i++) { 1172c4762a1bSJed Brown FunctionalLink flink = mod->functionalCall[i]; 1173*5f80ce2aSJacob Faibussowitsch CHKERRQ((*flink->func)(mod,time,cg->centroid,cx,ftmp,flink->ctx)); 1174c4762a1bSJed Brown } 1175c4762a1bSJed Brown for (i=0; i<fcount; i++) { 1176c4762a1bSJed Brown fmin[i] = PetscMin(fmin[i],ftmp[i]); 1177c4762a1bSJed Brown fmax[i] = PetscMax(fmax[i],ftmp[i]); 1178c4762a1bSJed Brown fintegral[i] += cg->volume * ftmp[i]; 1179c4762a1bSJed Brown } 1180c4762a1bSJed Brown } 1181*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArrayRead(cellgeom,&cgeom)); 1182*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArrayRead(X,&x)); 1183*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&plex)); 1184*5f80ce2aSJacob Faibussowitsch CHKERRMPI(MPI_Allreduce(MPI_IN_PLACE,fmin,fcount,MPIU_REAL,MPIU_MIN,PetscObjectComm((PetscObject)ts))); 1185*5f80ce2aSJacob Faibussowitsch CHKERRMPI(MPI_Allreduce(MPI_IN_PLACE,fmax,fcount,MPIU_REAL,MPIU_MAX,PetscObjectComm((PetscObject)ts))); 1186*5f80ce2aSJacob Faibussowitsch CHKERRMPI(MPI_Allreduce(MPI_IN_PLACE,fintegral,fcount,MPIU_REAL,MPIU_SUM,PetscObjectComm((PetscObject)ts))); 1187c4762a1bSJed Brown 1188c4762a1bSJed Brown ftablealloc = fcount * 100; 1189c4762a1bSJed Brown ftableused = 0; 1190*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMalloc1(ftablealloc,&ftable)); 1191c4762a1bSJed Brown for (i=0; i<mod->numMonitored; i++) { 1192c4762a1bSJed Brown size_t countused; 1193c4762a1bSJed Brown char buffer[256],*p; 1194c4762a1bSJed Brown FunctionalLink flink = mod->functionalMonitored[i]; 1195c4762a1bSJed Brown PetscInt id = flink->offset; 1196c4762a1bSJed Brown if (i % 3) { 1197*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscArraycpy(buffer," ",2)); 1198c4762a1bSJed Brown p = buffer + 2; 1199c4762a1bSJed Brown } else if (i) { 1200c4762a1bSJed Brown char newline[] = "\n"; 1201*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMemcpy(buffer,newline,sizeof(newline)-1)); 1202c4762a1bSJed Brown p = buffer + sizeof(newline) - 1; 1203c4762a1bSJed Brown } else { 1204c4762a1bSJed Brown p = buffer; 1205c4762a1bSJed Brown } 1206*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSNPrintfCount(p,sizeof buffer-(p-buffer),"%12s [%10.7g,%10.7g] int %10.7g",&countused,flink->name,(double)fmin[id],(double)fmax[id],(double)fintegral[id])); 1207c4762a1bSJed Brown countused--; 1208c4762a1bSJed Brown countused += p - buffer; 1209c4762a1bSJed Brown if (countused > ftablealloc-ftableused-1) { /* reallocate */ 1210c4762a1bSJed Brown char *ftablenew; 1211c4762a1bSJed Brown ftablealloc = 2*ftablealloc + countused; 1212*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMalloc(ftablealloc,&ftablenew)); 1213*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscArraycpy(ftablenew,ftable,ftableused)); 1214*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(ftable)); 1215c4762a1bSJed Brown ftable = ftablenew; 1216c4762a1bSJed Brown } 1217*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscArraycpy(ftable+ftableused,buffer,countused)); 1218c4762a1bSJed Brown ftableused += countused; 1219c4762a1bSJed Brown ftable[ftableused] = 0; 1220c4762a1bSJed Brown } 1221*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree4(fmin,fmax,fintegral,ftmp)); 1222c4762a1bSJed Brown 1223*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscPrintf(PetscObjectComm((PetscObject)ts),"% 3D time %8.4g |x| %8.4g %s\n",stepnum,(double)time,(double)xnorm,ftable ? ftable : "")); 1224*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(ftable)); 1225c4762a1bSJed Brown } 1226c4762a1bSJed Brown if (user->vtkInterval < 1) PetscFunctionReturn(0); 1227c4762a1bSJed Brown if ((stepnum == -1) ^ (stepnum % user->vtkInterval == 0)) { 1228c4762a1bSJed Brown if (stepnum == -1) { /* Final time is not multiple of normal time interval, write it anyway */ 1229*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetStepNumber(ts,&stepnum)); 1230c4762a1bSJed Brown } 1231*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSNPrintf(filename,sizeof filename,"%s-%03D.vtu",user->outputBasename,stepnum)); 1232*5f80ce2aSJacob Faibussowitsch CHKERRQ(OutputVTK(dm,filename,&viewer)); 1233*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecView(X,viewer)); 1234*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerDestroy(&viewer)); 1235c4762a1bSJed Brown } 1236c4762a1bSJed Brown PetscFunctionReturn(0); 1237c4762a1bSJed Brown } 1238c4762a1bSJed Brown 1239c4762a1bSJed Brown static PetscErrorCode initializeTS(DM dm, User user, TS *ts) 1240c4762a1bSJed Brown { 1241c4762a1bSJed Brown PetscFunctionBegin; 1242*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSCreate(PetscObjectComm((PetscObject)dm), ts)); 1243*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetType(*ts, TSSSP)); 1244*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetDM(*ts, dm)); 1245c4762a1bSJed Brown if (user->vtkmon) { 1246*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSMonitorSet(*ts,MonitorVTK,user,NULL)); 1247c4762a1bSJed Brown } 1248*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMTSSetBoundaryLocal(dm, DMPlexTSComputeBoundary, user)); 1249*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMTSSetRHSFunctionLocal(dm, DMPlexTSComputeRHSFunctionFVM, user)); 1250*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetMaxTime(*ts,2.0)); 1251*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetExactFinalTime(*ts,TS_EXACTFINALTIME_STEPOVER)); 1252c4762a1bSJed Brown PetscFunctionReturn(0); 1253c4762a1bSJed Brown } 1254c4762a1bSJed Brown 1255c4762a1bSJed Brown static PetscErrorCode adaptToleranceFVM(PetscFV fvm, TS ts, Vec sol, VecTagger refineTag, VecTagger coarsenTag, User user, TS *tsNew, Vec *solNew) 1256c4762a1bSJed Brown { 1257c4762a1bSJed Brown DM dm, gradDM, plex, cellDM, adaptedDM = NULL; 1258c4762a1bSJed Brown Vec cellGeom, faceGeom; 1259c4762a1bSJed Brown PetscBool isForest, computeGradient; 1260c4762a1bSJed Brown Vec grad, locGrad, locX, errVec; 1261c4762a1bSJed Brown PetscInt cStart, cEnd, c, dim, nRefine, nCoarsen; 1262c4762a1bSJed Brown PetscReal minMaxInd[2] = {PETSC_MAX_REAL, PETSC_MIN_REAL}, minMaxIndGlobal[2], minInd, maxInd, time; 1263c4762a1bSJed Brown PetscScalar *errArray; 1264c4762a1bSJed Brown const PetscScalar *pointVals; 1265c4762a1bSJed Brown const PetscScalar *pointGrads; 1266c4762a1bSJed Brown const PetscScalar *pointGeom; 1267c4762a1bSJed Brown DMLabel adaptLabel = NULL; 1268c4762a1bSJed Brown IS refineIS, coarsenIS; 1269c4762a1bSJed Brown 1270c4762a1bSJed Brown PetscFunctionBegin; 1271*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetTime(ts,&time)); 1272*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetDM(sol, &dm)); 1273*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetDimension(dm,&dim)); 1274*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVGetComputeGradients(fvm,&computeGradient)); 1275*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetComputeGradients(fvm,PETSC_TRUE)); 1276*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMIsForest(dm, &isForest)); 1277*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMConvert(dm, DMPLEX, &plex)); 1278*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetDataFVM(plex, fvm, &cellGeom, &faceGeom, &gradDM)); 1279*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateLocalVector(plex,&locX)); 1280*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexInsertBoundaryValues(plex, PETSC_TRUE, locX, 0.0, faceGeom, cellGeom, NULL)); 1281*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGlobalToLocalBegin(plex, sol, INSERT_VALUES, locX)); 1282*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGlobalToLocalEnd (plex, sol, INSERT_VALUES, locX)); 1283*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateGlobalVector(gradDM, &grad)); 1284*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexReconstructGradientsFVM(plex, locX, grad)); 1285*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateLocalVector(gradDM, &locGrad)); 1286*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGlobalToLocalBegin(gradDM, grad, INSERT_VALUES, locGrad)); 1287*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGlobalToLocalEnd(gradDM, grad, INSERT_VALUES, locGrad)); 1288*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecDestroy(&grad)); 1289*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetSimplexOrBoxCells(plex,0,&cStart,&cEnd)); 1290*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArrayRead(locGrad,&pointGrads)); 1291*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArrayRead(cellGeom,&pointGeom)); 1292*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArrayRead(locX,&pointVals)); 1293*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetDM(cellGeom,&cellDM)); 1294*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMLabelCreate(PETSC_COMM_SELF,"adapt",&adaptLabel)); 1295*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecCreateMPI(PetscObjectComm((PetscObject)plex),cEnd-cStart,PETSC_DETERMINE,&errVec)); 1296*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecSetUp(errVec)); 1297*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArray(errVec,&errArray)); 1298c4762a1bSJed Brown for (c = cStart; c < cEnd; c++) { 1299c4762a1bSJed Brown PetscReal errInd = 0.; 1300c4762a1bSJed Brown PetscScalar *pointGrad; 1301c4762a1bSJed Brown PetscScalar *pointVal; 1302c4762a1bSJed Brown PetscFVCellGeom *cg; 1303c4762a1bSJed Brown 1304*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRead(gradDM,c,pointGrads,&pointGrad)); 1305*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRead(cellDM,c,pointGeom,&cg)); 1306*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexPointLocalRead(plex,c,pointVals,&pointVal)); 1307c4762a1bSJed Brown 1308*5f80ce2aSJacob Faibussowitsch CHKERRQ((user->model->errorIndicator)(dim,cg->volume,user->model->physics->dof,pointVal,pointGrad,&errInd,user->model->errorCtx)); 1309c4762a1bSJed Brown errArray[c-cStart] = errInd; 1310c4762a1bSJed Brown minMaxInd[0] = PetscMin(minMaxInd[0],errInd); 1311c4762a1bSJed Brown minMaxInd[1] = PetscMax(minMaxInd[1],errInd); 1312c4762a1bSJed Brown } 1313*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArray(errVec,&errArray)); 1314*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArrayRead(locX,&pointVals)); 1315*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArrayRead(cellGeom,&pointGeom)); 1316*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArrayRead(locGrad,&pointGrads)); 1317*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecDestroy(&locGrad)); 1318*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecDestroy(&locX)); 1319*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&plex)); 1320c4762a1bSJed Brown 1321*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerComputeIS(refineTag,errVec,&refineIS,NULL)); 1322*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerComputeIS(coarsenTag,errVec,&coarsenIS,NULL)); 1323*5f80ce2aSJacob Faibussowitsch CHKERRQ(ISGetSize(refineIS,&nRefine)); 1324*5f80ce2aSJacob Faibussowitsch CHKERRQ(ISGetSize(coarsenIS,&nCoarsen)); 1325*5f80ce2aSJacob Faibussowitsch if (nRefine) CHKERRQ(DMLabelSetStratumIS(adaptLabel,DM_ADAPT_REFINE,refineIS)); 1326*5f80ce2aSJacob Faibussowitsch if (nCoarsen) CHKERRQ(DMLabelSetStratumIS(adaptLabel,DM_ADAPT_COARSEN,coarsenIS)); 1327*5f80ce2aSJacob Faibussowitsch CHKERRQ(ISDestroy(&coarsenIS)); 1328*5f80ce2aSJacob Faibussowitsch CHKERRQ(ISDestroy(&refineIS)); 1329*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecDestroy(&errVec)); 1330c4762a1bSJed Brown 1331*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetComputeGradients(fvm,computeGradient)); 1332c4762a1bSJed Brown minMaxInd[1] = -minMaxInd[1]; 1333*5f80ce2aSJacob Faibussowitsch CHKERRMPI(MPI_Allreduce(minMaxInd,minMaxIndGlobal,2,MPIU_REAL,MPI_MIN,PetscObjectComm((PetscObject)dm))); 1334c4762a1bSJed Brown minInd = minMaxIndGlobal[0]; 1335c4762a1bSJed Brown maxInd = -minMaxIndGlobal[1]; 1336*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscInfo(ts, "error indicator range (%E, %E)\n", minInd, maxInd)); 1337c4762a1bSJed Brown if (nRefine || nCoarsen) { /* at least one cell is over the refinement threshold */ 1338*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMAdaptLabel(dm,adaptLabel,&adaptedDM)); 1339c4762a1bSJed Brown } 1340*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMLabelDestroy(&adaptLabel)); 1341c4762a1bSJed Brown if (adaptedDM) { 1342*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscInfo(ts, "Adapted mesh, marking %D cells for refinement, and %D cells for coarsening\n", nRefine, nCoarsen)); 1343*5f80ce2aSJacob Faibussowitsch if (tsNew) CHKERRQ(initializeTS(adaptedDM, user, tsNew)); 1344c4762a1bSJed Brown if (solNew) { 1345*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateGlobalVector(adaptedDM, solNew)); 1346*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectSetName((PetscObject) *solNew, "solution")); 1347*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMForestTransferVec(dm, sol, adaptedDM, *solNew, PETSC_TRUE, time)); 1348c4762a1bSJed Brown } 1349*5f80ce2aSJacob Faibussowitsch if (isForest) CHKERRQ(DMForestSetAdaptivityForest(adaptedDM,NULL)); /* clear internal references to the previous dm */ 1350*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&adaptedDM)); 1351c4762a1bSJed Brown } else { 1352c4762a1bSJed Brown if (tsNew) *tsNew = NULL; 1353c4762a1bSJed Brown if (solNew) *solNew = NULL; 1354c4762a1bSJed Brown } 1355c4762a1bSJed Brown PetscFunctionReturn(0); 1356c4762a1bSJed Brown } 1357c4762a1bSJed Brown 1358c4762a1bSJed Brown int main(int argc, char **argv) 1359c4762a1bSJed Brown { 1360c4762a1bSJed Brown MPI_Comm comm; 1361c4762a1bSJed Brown PetscDS prob; 1362c4762a1bSJed Brown PetscFV fvm; 1363c4762a1bSJed Brown PetscLimiter limiter = NULL, noneLimiter = NULL; 1364c4762a1bSJed Brown User user; 1365c4762a1bSJed Brown Model mod; 1366c4762a1bSJed Brown Physics phys; 13673e9753d6SMatthew G. Knepley DM dm, plex; 1368c4762a1bSJed Brown PetscReal ftime, cfl, dt, minRadius; 1369c4762a1bSJed Brown PetscInt dim, nsteps; 1370c4762a1bSJed Brown TS ts; 1371c4762a1bSJed Brown TSConvergedReason reason; 1372c4762a1bSJed Brown Vec X; 1373c4762a1bSJed Brown PetscViewer viewer; 1374b5a892a1SMatthew G. Knepley PetscBool vtkCellGeom, useAMR; 137530602db0SMatthew G. Knepley PetscInt adaptInterval; 1376c4762a1bSJed Brown char physname[256] = "advect"; 1377c4762a1bSJed Brown VecTagger refineTag = NULL, coarsenTag = NULL; 1378c4762a1bSJed Brown PetscErrorCode ierr; 1379c4762a1bSJed Brown 1380c4762a1bSJed Brown ierr = PetscInitialize(&argc, &argv, (char*) 0, help);if (ierr) return ierr; 1381c4762a1bSJed Brown comm = PETSC_COMM_WORLD; 1382c4762a1bSJed Brown 1383*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscNew(&user)); 1384*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscNew(&user->model)); 1385*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscNew(&user->model->physics)); 1386c4762a1bSJed Brown mod = user->model; 1387c4762a1bSJed Brown phys = mod->physics; 1388c4762a1bSJed Brown mod->comm = comm; 1389c4762a1bSJed Brown useAMR = PETSC_FALSE; 1390c4762a1bSJed Brown adaptInterval = 1; 1391c4762a1bSJed Brown 1392c4762a1bSJed Brown /* Register physical models to be available on the command line */ 1393*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFunctionListAdd(&PhysicsList,"advect" ,PhysicsCreate_Advect)); 1394*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFunctionListAdd(&PhysicsList,"sw" ,PhysicsCreate_SW)); 1395*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFunctionListAdd(&PhysicsList,"euler" ,PhysicsCreate_Euler)); 1396c4762a1bSJed Brown 1397c4762a1bSJed Brown ierr = PetscOptionsBegin(comm,NULL,"Unstructured Finite Volume Mesh Options","");CHKERRQ(ierr); 1398c4762a1bSJed Brown { 1399c4762a1bSJed Brown cfl = 0.9 * 4; /* default SSPRKS2 with s=5 stages is stable for CFL number s-1 */ 1400*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsReal("-ufv_cfl","CFL number per step","",cfl,&cfl,NULL)); 1401c4762a1bSJed Brown user->vtkInterval = 1; 1402*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsInt("-ufv_vtk_interval","VTK output interval (0 to disable)","",user->vtkInterval,&user->vtkInterval,NULL)); 1403c4762a1bSJed Brown user->vtkmon = PETSC_TRUE; 1404*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsBool("-ufv_vtk_monitor","Use VTKMonitor routine","",user->vtkmon,&user->vtkmon,NULL)); 1405c4762a1bSJed Brown vtkCellGeom = PETSC_FALSE; 1406*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscStrcpy(user->outputBasename, "ex11")); 1407*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsString("-ufv_vtk_basename","VTK output basename","",user->outputBasename,user->outputBasename,sizeof(user->outputBasename),NULL)); 1408*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsBool("-ufv_vtk_cellgeom","Write cell geometry (for debugging)","",vtkCellGeom,&vtkCellGeom,NULL)); 1409*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsBool("-ufv_use_amr","use local adaptive mesh refinement","",useAMR,&useAMR,NULL)); 1410*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsInt("-ufv_adapt_interval","time steps between AMR","",adaptInterval,&adaptInterval,NULL)); 1411c4762a1bSJed Brown } 1412c4762a1bSJed Brown ierr = PetscOptionsEnd();CHKERRQ(ierr); 1413c4762a1bSJed Brown 1414c4762a1bSJed Brown if (useAMR) { 1415c4762a1bSJed Brown VecTaggerBox refineBox, coarsenBox; 1416c4762a1bSJed Brown 1417c4762a1bSJed Brown refineBox.min = refineBox.max = PETSC_MAX_REAL; 1418c4762a1bSJed Brown coarsenBox.min = coarsenBox.max = PETSC_MIN_REAL; 1419c4762a1bSJed Brown 1420*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerCreate(comm,&refineTag)); 1421*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectSetOptionsPrefix((PetscObject)refineTag,"refine_")); 1422*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerSetType(refineTag,VECTAGGERABSOLUTE)); 1423*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerAbsoluteSetBox(refineTag,&refineBox)); 1424*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerSetFromOptions(refineTag)); 1425*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerSetUp(refineTag)); 1426*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectViewFromOptions((PetscObject)refineTag,NULL,"-tag_view")); 1427c4762a1bSJed Brown 1428*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerCreate(comm,&coarsenTag)); 1429*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectSetOptionsPrefix((PetscObject)coarsenTag,"coarsen_")); 1430*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerSetType(coarsenTag,VECTAGGERABSOLUTE)); 1431*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerAbsoluteSetBox(coarsenTag,&coarsenBox)); 1432*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerSetFromOptions(coarsenTag)); 1433*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerSetUp(coarsenTag)); 1434*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectViewFromOptions((PetscObject)coarsenTag,NULL,"-tag_view")); 1435c4762a1bSJed Brown } 1436c4762a1bSJed Brown 1437c4762a1bSJed Brown ierr = PetscOptionsBegin(comm,NULL,"Unstructured Finite Volume Physics Options","");CHKERRQ(ierr); 1438c4762a1bSJed Brown { 1439c4762a1bSJed Brown PetscErrorCode (*physcreate)(Model,Physics,PetscOptionItems*); 1440*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsFList("-physics","Physics module to solve","",PhysicsList,physname,physname,sizeof physname,NULL)); 1441*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFunctionListFind(PhysicsList,physname,&physcreate)); 1442*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMemzero(phys,sizeof(struct _n_Physics))); 1443*5f80ce2aSJacob Faibussowitsch CHKERRQ((*physcreate)(mod,phys,PetscOptionsObject)); 1444c4762a1bSJed Brown /* Count number of fields and dofs */ 1445c4762a1bSJed Brown for (phys->nfields=0,phys->dof=0; phys->field_desc[phys->nfields].name; phys->nfields++) phys->dof += phys->field_desc[phys->nfields].dof; 144654c59aa7SJacob Faibussowitsch PetscCheck(phys->dof > 0,comm,PETSC_ERR_ARG_WRONGSTATE,"Physics '%s' did not set dof",physname); 1447*5f80ce2aSJacob Faibussowitsch CHKERRQ(ModelFunctionalSetFromOptions(mod,PetscOptionsObject)); 1448c4762a1bSJed Brown } 1449c4762a1bSJed Brown ierr = PetscOptionsEnd();CHKERRQ(ierr); 1450c4762a1bSJed Brown 1451c4762a1bSJed Brown /* Create mesh */ 1452c4762a1bSJed Brown { 145330602db0SMatthew G. Knepley PetscInt i; 145430602db0SMatthew G. Knepley 1455*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreate(comm, &dm)); 1456*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetType(dm, DMPLEX)); 1457*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetFromOptions(dm)); 1458c4762a1bSJed Brown for (i = 0; i < DIM; i++) { mod->bounds[2*i] = 0.; mod->bounds[2*i+1] = 1.;}; 1459c4762a1bSJed Brown dim = DIM; 146030602db0SMatthew G. Knepley { /* a null name means just do a hex box */ 146130602db0SMatthew G. Knepley PetscInt cells[3] = {1, 1, 1}, n = 3; 146230602db0SMatthew G. Knepley PetscBool flg2, skew = PETSC_FALSE; 1463c4762a1bSJed Brown PetscInt nret2 = 2*DIM; 1464c4762a1bSJed Brown ierr = PetscOptionsBegin(comm,NULL,"Rectangular mesh options","");CHKERRQ(ierr); 1465*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsRealArray("-grid_bounds","bounds of the mesh in each direction (i.e., x_min,x_max,y_min,y_max","",mod->bounds,&nret2,&flg2)); 1466*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsBool("-grid_skew_60","Skew grid for 60 degree shock mesh","",skew,&skew,NULL)); 1467*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsIntArray("-dm_plex_box_faces", "Number of faces along each dimension", "", cells, &n, NULL)); 1468c4762a1bSJed Brown ierr = PetscOptionsEnd();CHKERRQ(ierr); 146930602db0SMatthew G. Knepley /* TODO Rewrite this with Mark, and remove grid_bounds at that time */ 1470c4762a1bSJed Brown if (flg2) { 1471c4762a1bSJed Brown PetscInt dimEmbed, i; 1472c4762a1bSJed Brown PetscInt nCoords; 1473c4762a1bSJed Brown PetscScalar *coords; 1474c4762a1bSJed Brown Vec coordinates; 1475c4762a1bSJed Brown 1476*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetCoordinatesLocal(dm,&coordinates)); 1477*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetCoordinateDim(dm,&dimEmbed)); 1478*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetLocalSize(coordinates,&nCoords)); 147954c59aa7SJacob Faibussowitsch PetscCheck(!(nCoords % dimEmbed),PETSC_COMM_SELF,PETSC_ERR_ARG_SIZ,"Coordinate vector the wrong size"); 1480*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetArray(coordinates,&coords)); 1481c4762a1bSJed Brown for (i = 0; i < nCoords; i += dimEmbed) { 1482c4762a1bSJed Brown PetscInt j; 1483c4762a1bSJed Brown 1484c4762a1bSJed Brown PetscScalar *coord = &coords[i]; 1485c4762a1bSJed Brown for (j = 0; j < dimEmbed; j++) { 1486c4762a1bSJed Brown coord[j] = mod->bounds[2 * j] + coord[j] * (mod->bounds[2 * j + 1] - mod->bounds[2 * j]); 1487c4762a1bSJed Brown if (dim==2 && cells[1]==1 && j==0 && skew) { 1488c4762a1bSJed Brown if (cells[0] == 2 && i == 8) { 1489c4762a1bSJed Brown coord[j] = .57735026918963; /* hack to get 60 deg skewed mesh */ 149030602db0SMatthew G. Knepley } else if (cells[0] == 3) { 1491c4762a1bSJed Brown if (i==2 || i==10) coord[j] = mod->bounds[1]/4.; 1492c4762a1bSJed Brown else if (i==4) coord[j] = mod->bounds[1]/2.; 1493c4762a1bSJed Brown else if (i==12) coord[j] = 1.57735026918963*mod->bounds[1]/2.; 1494c4762a1bSJed Brown } 1495c4762a1bSJed Brown } 1496c4762a1bSJed Brown } 1497c4762a1bSJed Brown } 1498*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecRestoreArray(coordinates,&coords)); 1499*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetCoordinatesLocal(dm,coordinates)); 1500c4762a1bSJed Brown } 1501c4762a1bSJed Brown } 1502c4762a1bSJed Brown } 1503*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMViewFromOptions(dm, NULL, "-orig_dm_view")); 1504*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetDimension(dm, &dim)); 1505c4762a1bSJed Brown 1506c4762a1bSJed Brown /* set up BCs, functions, tags */ 1507*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateLabel(dm, "Face Sets")); 1508c4762a1bSJed Brown mod->errorIndicator = ErrorIndicator_Simple; 1509c4762a1bSJed Brown 1510c4762a1bSJed Brown { 1511c4762a1bSJed Brown DM gdm; 1512c4762a1bSJed Brown 1513*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexConstructGhostCells(dm, NULL, NULL, &gdm)); 1514*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&dm)); 1515c4762a1bSJed Brown dm = gdm; 1516*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMViewFromOptions(dm, NULL, "-dm_view")); 1517c4762a1bSJed Brown } 1518c4762a1bSJed Brown 1519*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVCreate(comm, &fvm)); 1520*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetFromOptions(fvm)); 1521*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetNumComponents(fvm, phys->dof)); 1522*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetSpatialDimension(fvm, dim)); 1523*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectSetName((PetscObject) fvm,"")); 1524c4762a1bSJed Brown { 1525c4762a1bSJed Brown PetscInt f, dof; 1526c4762a1bSJed Brown for (f=0,dof=0; f < phys->nfields; f++) { 1527c4762a1bSJed Brown PetscInt newDof = phys->field_desc[f].dof; 1528c4762a1bSJed Brown 1529c4762a1bSJed Brown if (newDof == 1) { 1530*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetComponentName(fvm,dof,phys->field_desc[f].name)); 1531c4762a1bSJed Brown } 1532c4762a1bSJed Brown else { 1533c4762a1bSJed Brown PetscInt j; 1534c4762a1bSJed Brown 1535c4762a1bSJed Brown for (j = 0; j < newDof; j++) { 1536c4762a1bSJed Brown char compName[256] = "Unknown"; 1537c4762a1bSJed Brown 1538*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSNPrintf(compName,sizeof(compName),"%s_%d",phys->field_desc[f].name,j)); 1539*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetComponentName(fvm,dof+j,compName)); 1540c4762a1bSJed Brown } 1541c4762a1bSJed Brown } 1542c4762a1bSJed Brown dof += newDof; 1543c4762a1bSJed Brown } 1544c4762a1bSJed Brown } 1545c4762a1bSJed Brown /* FV is now structured with one field having all physics as components */ 1546*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMAddField(dm, NULL, (PetscObject) fvm)); 1547*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateDS(dm)); 1548*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMGetDS(dm, &prob)); 1549*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscDSSetRiemannSolver(prob, 0, user->model->physics->riemann)); 1550*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscDSSetContext(prob, 0, user->model->physics)); 1551*5f80ce2aSJacob Faibussowitsch CHKERRQ((*mod->setupbc)(dm, prob,phys)); 1552*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscDSSetFromOptions(prob)); 1553c4762a1bSJed Brown { 1554c4762a1bSJed Brown char convType[256]; 1555c4762a1bSJed Brown PetscBool flg; 1556c4762a1bSJed Brown 1557c4762a1bSJed Brown ierr = PetscOptionsBegin(comm, "", "Mesh conversion options", "DMPLEX");CHKERRQ(ierr); 1558*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscOptionsFList("-dm_type","Convert DMPlex to another format","ex12",DMList,DMPLEX,convType,256,&flg)); 1559c4762a1bSJed Brown ierr = PetscOptionsEnd();CHKERRQ(ierr); 1560c4762a1bSJed Brown if (flg) { 1561c4762a1bSJed Brown DM dmConv; 1562c4762a1bSJed Brown 1563*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMConvert(dm,convType,&dmConv)); 1564c4762a1bSJed Brown if (dmConv) { 1565*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMViewFromOptions(dmConv, NULL, "-dm_conv_view")); 1566*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&dm)); 1567c4762a1bSJed Brown dm = dmConv; 1568*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMSetFromOptions(dm)); 1569c4762a1bSJed Brown } 1570c4762a1bSJed Brown } 1571c4762a1bSJed Brown } 1572c4762a1bSJed Brown 1573*5f80ce2aSJacob Faibussowitsch CHKERRQ(initializeTS(dm, user, &ts)); 1574c4762a1bSJed Brown 1575*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateGlobalVector(dm, &X)); 1576*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectSetName((PetscObject) X, "solution")); 1577*5f80ce2aSJacob Faibussowitsch CHKERRQ(SetInitialCondition(dm, X, user)); 1578c4762a1bSJed Brown if (useAMR) { 1579c4762a1bSJed Brown PetscInt adaptIter; 1580c4762a1bSJed Brown 1581c4762a1bSJed Brown /* use no limiting when reconstructing gradients for adaptivity */ 1582*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVGetLimiter(fvm, &limiter)); 1583*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectReference((PetscObject) limiter)); 1584*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscLimiterCreate(PetscObjectComm((PetscObject) fvm), &noneLimiter)); 1585*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscLimiterSetType(noneLimiter, PETSCLIMITERNONE)); 1586c4762a1bSJed Brown 1587*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetLimiter(fvm, noneLimiter)); 1588c4762a1bSJed Brown for (adaptIter = 0; ; ++adaptIter) { 1589c4762a1bSJed Brown PetscLogDouble bytes; 1590c4762a1bSJed Brown TS tsNew = NULL; 1591c4762a1bSJed Brown 1592*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMemoryGetCurrentUsage(&bytes)); 1593*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscInfo(ts, "refinement loop %D: memory used %g\n", adaptIter, bytes)); 1594*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMViewFromOptions(dm, NULL, "-initial_dm_view")); 1595*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecViewFromOptions(X, NULL, "-initial_vec_view")); 1596c4762a1bSJed Brown #if 0 1597c4762a1bSJed Brown if (viewInitial) { 1598c4762a1bSJed Brown PetscViewer viewer; 1599c4762a1bSJed Brown char buf[256]; 1600c4762a1bSJed Brown PetscBool isHDF5, isVTK; 1601c4762a1bSJed Brown 1602*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerCreate(comm,&viewer)); 1603*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerSetType(viewer,PETSCVIEWERVTK)); 1604*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerSetOptionsPrefix(viewer,"initial_")); 1605*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerSetFromOptions(viewer)); 1606*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERHDF5,&isHDF5)); 1607*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERVTK,&isVTK)); 1608c4762a1bSJed Brown if (isHDF5) { 1609*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSNPrintf(buf, 256, "ex11-initial-%d.h5", adaptIter)); 1610c4762a1bSJed Brown } else if (isVTK) { 1611*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscSNPrintf(buf, 256, "ex11-initial-%d.vtu", adaptIter)); 1612*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerPushFormat(viewer,PETSC_VIEWER_VTK_VTU)); 1613c4762a1bSJed Brown } 1614*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerFileSetMode(viewer,FILE_MODE_WRITE)); 1615*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerFileSetName(viewer,buf)); 1616c4762a1bSJed Brown if (isHDF5) { 1617*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMView(dm,viewer)); 1618*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerFileSetMode(viewer,FILE_MODE_UPDATE)); 1619c4762a1bSJed Brown } 1620*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecView(X,viewer)); 1621*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerDestroy(&viewer)); 1622c4762a1bSJed Brown } 1623c4762a1bSJed Brown #endif 1624c4762a1bSJed Brown 1625*5f80ce2aSJacob Faibussowitsch CHKERRQ(adaptToleranceFVM(fvm, ts, X, refineTag, coarsenTag, user, &tsNew, NULL)); 1626c4762a1bSJed Brown if (!tsNew) { 1627c4762a1bSJed Brown break; 1628c4762a1bSJed Brown } else { 1629*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&dm)); 1630*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecDestroy(&X)); 1631*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSDestroy(&ts)); 1632c4762a1bSJed Brown ts = tsNew; 1633*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetDM(ts,&dm)); 1634*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectReference((PetscObject)dm)); 1635*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMCreateGlobalVector(dm,&X)); 1636*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectSetName((PetscObject) X, "solution")); 1637*5f80ce2aSJacob Faibussowitsch CHKERRQ(SetInitialCondition(dm, X, user)); 1638c4762a1bSJed Brown } 1639c4762a1bSJed Brown } 1640c4762a1bSJed Brown /* restore original limiter */ 1641*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetLimiter(fvm, limiter)); 1642c4762a1bSJed Brown } 1643c4762a1bSJed Brown 1644*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMConvert(dm, DMPLEX, &plex)); 1645c4762a1bSJed Brown if (vtkCellGeom) { 1646c4762a1bSJed Brown DM dmCell; 1647c4762a1bSJed Brown Vec cellgeom, partition; 1648c4762a1bSJed Brown 1649*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetGeometryFVM(plex, NULL, &cellgeom, NULL)); 1650*5f80ce2aSJacob Faibussowitsch CHKERRQ(OutputVTK(dm, "ex11-cellgeom.vtk", &viewer)); 1651*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecView(cellgeom, viewer)); 1652*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerDestroy(&viewer)); 1653*5f80ce2aSJacob Faibussowitsch CHKERRQ(CreatePartitionVec(dm, &dmCell, &partition)); 1654*5f80ce2aSJacob Faibussowitsch CHKERRQ(OutputVTK(dmCell, "ex11-partition.vtk", &viewer)); 1655*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecView(partition, viewer)); 1656*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscViewerDestroy(&viewer)); 1657*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecDestroy(&partition)); 1658*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&dmCell)); 1659c4762a1bSJed Brown } 1660c4762a1bSJed Brown /* collect max maxspeed from all processes -- todo */ 1661*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetGeometryFVM(plex, NULL, NULL, &minRadius)); 1662*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&plex)); 1663*5f80ce2aSJacob Faibussowitsch CHKERRMPI(MPI_Allreduce(&phys->maxspeed,&mod->maxspeed,1,MPIU_REAL,MPIU_MAX,PetscObjectComm((PetscObject)ts))); 166454c59aa7SJacob Faibussowitsch PetscCheck(mod->maxspeed > 0,comm,PETSC_ERR_ARG_WRONGSTATE,"Physics '%s' did not set maxspeed",physname); 1665c4762a1bSJed Brown dt = cfl * minRadius / mod->maxspeed; 1666*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetTimeStep(ts,dt)); 1667*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetFromOptions(ts)); 1668c4762a1bSJed Brown if (!useAMR) { 1669*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSolve(ts,X)); 1670*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetSolveTime(ts,&ftime)); 1671*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetStepNumber(ts,&nsteps)); 1672c4762a1bSJed Brown } else { 1673c4762a1bSJed Brown PetscReal finalTime; 1674c4762a1bSJed Brown PetscInt adaptIter; 1675c4762a1bSJed Brown TS tsNew = NULL; 1676c4762a1bSJed Brown Vec solNew = NULL; 1677c4762a1bSJed Brown 1678*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetMaxTime(ts,&finalTime)); 1679*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetMaxSteps(ts,adaptInterval)); 1680*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSolve(ts,X)); 1681*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetSolveTime(ts,&ftime)); 1682*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetStepNumber(ts,&nsteps)); 1683c4762a1bSJed Brown for (adaptIter = 0;ftime < finalTime;adaptIter++) { 1684c4762a1bSJed Brown PetscLogDouble bytes; 1685c4762a1bSJed Brown 1686*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscMemoryGetCurrentUsage(&bytes)); 1687*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscInfo(ts, "AMR time step loop %D: memory used %g\n", adaptIter, bytes)); 1688*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetLimiter(fvm,noneLimiter)); 1689*5f80ce2aSJacob Faibussowitsch CHKERRQ(adaptToleranceFVM(fvm,ts,X,refineTag,coarsenTag,user,&tsNew,&solNew)); 1690*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVSetLimiter(fvm,limiter)); 1691c4762a1bSJed Brown if (tsNew) { 1692*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscInfo(ts, "AMR used\n")); 1693*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&dm)); 1694*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecDestroy(&X)); 1695*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSDestroy(&ts)); 1696c4762a1bSJed Brown ts = tsNew; 1697c4762a1bSJed Brown X = solNew; 1698*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetFromOptions(ts)); 1699*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecGetDM(X,&dm)); 1700*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscObjectReference((PetscObject)dm)); 1701*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMConvert(dm, DMPLEX, &plex)); 1702*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMPlexGetGeometryFVM(dm, NULL, NULL, &minRadius)); 1703*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&plex)); 1704*5f80ce2aSJacob Faibussowitsch CHKERRMPI(MPI_Allreduce(&phys->maxspeed,&mod->maxspeed,1,MPIU_REAL,MPIU_MAX,PetscObjectComm((PetscObject)ts))); 170554c59aa7SJacob Faibussowitsch PetscCheck(mod->maxspeed > 0,comm,PETSC_ERR_ARG_WRONGSTATE,"Physics '%s' did not set maxspeed",physname); 1706c4762a1bSJed Brown dt = cfl * minRadius / mod->maxspeed; 1707*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetStepNumber(ts,nsteps)); 1708*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetTime(ts,ftime)); 1709*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetTimeStep(ts,dt)); 1710c4762a1bSJed Brown } else { 1711*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscInfo(ts, "AMR not used\n")); 1712c4762a1bSJed Brown } 1713c4762a1bSJed Brown user->monitorStepOffset = nsteps; 1714*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSetMaxSteps(ts,nsteps+adaptInterval)); 1715*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSSolve(ts,X)); 1716*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetSolveTime(ts,&ftime)); 1717*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetStepNumber(ts,&nsteps)); 1718c4762a1bSJed Brown } 1719c4762a1bSJed Brown } 1720*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSGetConvergedReason(ts,&reason)); 1721*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscPrintf(PETSC_COMM_WORLD,"%s at time %g after %D steps\n",TSConvergedReasons[reason],(double)ftime,nsteps)); 1722*5f80ce2aSJacob Faibussowitsch CHKERRQ(TSDestroy(&ts)); 1723c4762a1bSJed Brown 1724*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerDestroy(&refineTag)); 1725*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecTaggerDestroy(&coarsenTag)); 1726*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFunctionListDestroy(&PhysicsList)); 1727*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFunctionListDestroy(&PhysicsRiemannList_SW)); 1728*5f80ce2aSJacob Faibussowitsch CHKERRQ(FunctionalLinkDestroy(&user->model->functionalRegistry)); 1729*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(user->model->functionalMonitored)); 1730*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(user->model->functionalCall)); 1731*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(user->model->physics->data)); 1732*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(user->model->physics)); 1733*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(user->model)); 1734*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFree(user)); 1735*5f80ce2aSJacob Faibussowitsch CHKERRQ(VecDestroy(&X)); 1736*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscLimiterDestroy(&limiter)); 1737*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscLimiterDestroy(&noneLimiter)); 1738*5f80ce2aSJacob Faibussowitsch CHKERRQ(PetscFVDestroy(&fvm)); 1739*5f80ce2aSJacob Faibussowitsch CHKERRQ(DMDestroy(&dm)); 1740c4762a1bSJed Brown ierr = PetscFinalize(); 1741c4762a1bSJed Brown return ierr; 1742c4762a1bSJed Brown } 1743c4762a1bSJed Brown 1744c4762a1bSJed Brown /* Godunov fluxs */ 1745c4762a1bSJed Brown PetscScalar cvmgp_(PetscScalar *a, PetscScalar *b, PetscScalar *test) 1746c4762a1bSJed Brown { 1747c4762a1bSJed Brown /* System generated locals */ 1748c4762a1bSJed Brown PetscScalar ret_val; 1749c4762a1bSJed Brown 1750c4762a1bSJed Brown if (PetscRealPart(*test) > 0.) { 1751c4762a1bSJed Brown goto L10; 1752c4762a1bSJed Brown } 1753c4762a1bSJed Brown ret_val = *b; 1754c4762a1bSJed Brown return ret_val; 1755c4762a1bSJed Brown L10: 1756c4762a1bSJed Brown ret_val = *a; 1757c4762a1bSJed Brown return ret_val; 1758c4762a1bSJed Brown } /* cvmgp_ */ 1759c4762a1bSJed Brown 1760c4762a1bSJed Brown PetscScalar cvmgm_(PetscScalar *a, PetscScalar *b, PetscScalar *test) 1761c4762a1bSJed Brown { 1762c4762a1bSJed Brown /* System generated locals */ 1763c4762a1bSJed Brown PetscScalar ret_val; 1764c4762a1bSJed Brown 1765c4762a1bSJed Brown if (PetscRealPart(*test) < 0.) { 1766c4762a1bSJed Brown goto L10; 1767c4762a1bSJed Brown } 1768c4762a1bSJed Brown ret_val = *b; 1769c4762a1bSJed Brown return ret_val; 1770c4762a1bSJed Brown L10: 1771c4762a1bSJed Brown ret_val = *a; 1772c4762a1bSJed Brown return ret_val; 1773c4762a1bSJed Brown } /* cvmgm_ */ 1774c4762a1bSJed Brown 1775c4762a1bSJed Brown int riem1mdt( PetscScalar *gaml, PetscScalar *gamr, PetscScalar *rl, PetscScalar *pl, 1776c4762a1bSJed Brown PetscScalar *uxl, PetscScalar *rr, PetscScalar *pr, 1777c4762a1bSJed Brown PetscScalar *uxr, PetscScalar *rstarl, PetscScalar *rstarr, PetscScalar * 1778c4762a1bSJed Brown pstar, PetscScalar *ustar) 1779c4762a1bSJed Brown { 1780c4762a1bSJed Brown /* Initialized data */ 1781c4762a1bSJed Brown 1782c4762a1bSJed Brown static PetscScalar smallp = 1e-8; 1783c4762a1bSJed Brown 1784c4762a1bSJed Brown /* System generated locals */ 1785c4762a1bSJed Brown int i__1; 1786c4762a1bSJed Brown PetscScalar d__1, d__2; 1787c4762a1bSJed Brown 1788c4762a1bSJed Brown /* Local variables */ 1789c4762a1bSJed Brown static int i0; 1790c4762a1bSJed Brown static PetscScalar cl, cr, wl, zl, wr, zr, pst, durl, skpr1, skpr2; 1791c4762a1bSJed Brown static int iwave; 1792c4762a1bSJed Brown static PetscScalar gascl4, gascr4, cstarl, dpstar, cstarr; 1793c4762a1bSJed Brown /* static PetscScalar csqrl, csqrr, gascl1, gascl2, gascl3, gascr1, gascr2, gascr3; */ 1794c4762a1bSJed Brown static int iterno; 1795c4762a1bSJed Brown static PetscScalar ustarl, ustarr, rarepr1, rarepr2; 1796c4762a1bSJed Brown 1797c4762a1bSJed Brown /* gascl1 = *gaml - 1.; */ 1798c4762a1bSJed Brown /* gascl2 = (*gaml + 1.) * .5; */ 1799c4762a1bSJed Brown /* gascl3 = gascl2 / *gaml; */ 1800c4762a1bSJed Brown gascl4 = 1. / (*gaml - 1.); 1801c4762a1bSJed Brown 1802c4762a1bSJed Brown /* gascr1 = *gamr - 1.; */ 1803c4762a1bSJed Brown /* gascr2 = (*gamr + 1.) * .5; */ 1804c4762a1bSJed Brown /* gascr3 = gascr2 / *gamr; */ 1805c4762a1bSJed Brown gascr4 = 1. / (*gamr - 1.); 1806c4762a1bSJed Brown iterno = 10; 1807c4762a1bSJed Brown /* find pstar: */ 1808c4762a1bSJed Brown cl = PetscSqrtScalar(*gaml * *pl / *rl); 1809c4762a1bSJed Brown cr = PetscSqrtScalar(*gamr * *pr / *rr); 1810c4762a1bSJed Brown wl = *rl * cl; 1811c4762a1bSJed Brown wr = *rr * cr; 1812c4762a1bSJed Brown /* csqrl = wl * wl; */ 1813c4762a1bSJed Brown /* csqrr = wr * wr; */ 1814c4762a1bSJed Brown *pstar = (wl * *pr + wr * *pl) / (wl + wr); 1815c4762a1bSJed Brown *pstar = PetscMax(PetscRealPart(*pstar),PetscRealPart(smallp)); 1816c4762a1bSJed Brown pst = *pl / *pr; 1817c4762a1bSJed Brown skpr1 = cr * (pst - 1.) * PetscSqrtScalar(2. / (*gamr * (*gamr - 1. + (*gamr + 1.) * pst))); 1818c4762a1bSJed Brown d__1 = (*gamr - 1.) / (*gamr * 2.); 1819c4762a1bSJed Brown rarepr2 = gascr4 * 2. * cr * (1. - PetscPowScalar(pst, d__1)); 1820c4762a1bSJed Brown pst = *pr / *pl; 1821c4762a1bSJed Brown skpr2 = cl * (pst - 1.) * PetscSqrtScalar(2. / (*gaml * (*gaml - 1. + (*gaml + 1.) * pst))); 1822c4762a1bSJed Brown d__1 = (*gaml - 1.) / (*gaml * 2.); 1823c4762a1bSJed Brown rarepr1 = gascl4 * 2. * cl * (1. - PetscPowScalar(pst, d__1)); 1824c4762a1bSJed Brown durl = *uxr - *uxl; 1825c4762a1bSJed Brown if (PetscRealPart(*pr) < PetscRealPart(*pl)) { 1826c4762a1bSJed Brown if (PetscRealPart(durl) >= PetscRealPart(rarepr1)) { 1827c4762a1bSJed Brown iwave = 100; 1828c4762a1bSJed Brown } else if (PetscRealPart(durl) <= PetscRealPart(-skpr1)) { 1829c4762a1bSJed Brown iwave = 300; 1830c4762a1bSJed Brown } else { 1831c4762a1bSJed Brown iwave = 400; 1832c4762a1bSJed Brown } 1833c4762a1bSJed Brown } else { 1834c4762a1bSJed Brown if (PetscRealPart(durl) >= PetscRealPart(rarepr2)) { 1835c4762a1bSJed Brown iwave = 100; 1836c4762a1bSJed Brown } else if (PetscRealPart(durl) <= PetscRealPart(-skpr2)) { 1837c4762a1bSJed Brown iwave = 300; 1838c4762a1bSJed Brown } else { 1839c4762a1bSJed Brown iwave = 200; 1840c4762a1bSJed Brown } 1841c4762a1bSJed Brown } 1842c4762a1bSJed Brown if (iwave == 100) { 1843c4762a1bSJed Brown /* 1-wave: rarefaction wave, 3-wave: rarefaction wave */ 1844c4762a1bSJed Brown /* case (100) */ 1845c4762a1bSJed Brown i__1 = iterno; 1846c4762a1bSJed Brown for (i0 = 1; i0 <= i__1; ++i0) { 1847c4762a1bSJed Brown d__1 = *pstar / *pl; 1848c4762a1bSJed Brown d__2 = 1. / *gaml; 1849c4762a1bSJed Brown *rstarl = *rl * PetscPowScalar(d__1, d__2); 1850c4762a1bSJed Brown cstarl = PetscSqrtScalar(*gaml * *pstar / *rstarl); 1851c4762a1bSJed Brown ustarl = *uxl - gascl4 * 2. * (cstarl - cl); 1852c4762a1bSJed Brown zl = *rstarl * cstarl; 1853c4762a1bSJed Brown d__1 = *pstar / *pr; 1854c4762a1bSJed Brown d__2 = 1. / *gamr; 1855c4762a1bSJed Brown *rstarr = *rr * PetscPowScalar(d__1, d__2); 1856c4762a1bSJed Brown cstarr = PetscSqrtScalar(*gamr * *pstar / *rstarr); 1857c4762a1bSJed Brown ustarr = *uxr + gascr4 * 2. * (cstarr - cr); 1858c4762a1bSJed Brown zr = *rstarr * cstarr; 1859c4762a1bSJed Brown dpstar = zl * zr * (ustarr - ustarl) / (zl + zr); 1860c4762a1bSJed Brown *pstar -= dpstar; 1861c4762a1bSJed Brown *pstar = PetscMax(PetscRealPart(*pstar),PetscRealPart(smallp)); 1862c4762a1bSJed Brown if (PetscAbsScalar(dpstar) / PetscRealPart(*pstar) <= 1e-8) { 1863c4762a1bSJed Brown #if 0 1864c4762a1bSJed Brown break; 1865c4762a1bSJed Brown #endif 1866c4762a1bSJed Brown } 1867c4762a1bSJed Brown } 1868c4762a1bSJed Brown /* 1-wave: shock wave, 3-wave: rarefaction wave */ 1869c4762a1bSJed Brown } else if (iwave == 200) { 1870c4762a1bSJed Brown /* case (200) */ 1871c4762a1bSJed Brown i__1 = iterno; 1872c4762a1bSJed Brown for (i0 = 1; i0 <= i__1; ++i0) { 1873c4762a1bSJed Brown pst = *pstar / *pl; 1874c4762a1bSJed Brown ustarl = *uxl - (pst - 1.) * cl * PetscSqrtScalar(2. / (*gaml * (*gaml - 1. + (*gaml + 1.) * pst))); 1875c4762a1bSJed Brown zl = *pl / cl * PetscSqrtScalar(*gaml * 2. * (*gaml - 1. + (*gaml + 1.) * pst)) * (*gaml - 1. + (*gaml + 1.) * pst) / (*gaml * 3. - 1. + (*gaml + 1.) * pst); 1876c4762a1bSJed Brown d__1 = *pstar / *pr; 1877c4762a1bSJed Brown d__2 = 1. / *gamr; 1878c4762a1bSJed Brown *rstarr = *rr * PetscPowScalar(d__1, d__2); 1879c4762a1bSJed Brown cstarr = PetscSqrtScalar(*gamr * *pstar / *rstarr); 1880c4762a1bSJed Brown zr = *rstarr * cstarr; 1881c4762a1bSJed Brown ustarr = *uxr + gascr4 * 2. * (cstarr - cr); 1882c4762a1bSJed Brown dpstar = zl * zr * (ustarr - ustarl) / (zl + zr); 1883c4762a1bSJed Brown *pstar -= dpstar; 1884c4762a1bSJed Brown *pstar = PetscMax(PetscRealPart(*pstar),PetscRealPart(smallp)); 1885c4762a1bSJed Brown if (PetscAbsScalar(dpstar) / PetscRealPart(*pstar) <= 1e-8) { 1886c4762a1bSJed Brown #if 0 1887c4762a1bSJed Brown break; 1888c4762a1bSJed Brown #endif 1889c4762a1bSJed Brown } 1890c4762a1bSJed Brown } 1891c4762a1bSJed Brown /* 1-wave: shock wave, 3-wave: shock */ 1892c4762a1bSJed Brown } else if (iwave == 300) { 1893c4762a1bSJed Brown /* case (300) */ 1894c4762a1bSJed Brown i__1 = iterno; 1895c4762a1bSJed Brown for (i0 = 1; i0 <= i__1; ++i0) { 1896c4762a1bSJed Brown pst = *pstar / *pl; 1897c4762a1bSJed Brown ustarl = *uxl - (pst - 1.) * cl * PetscSqrtScalar(2. / (*gaml * (*gaml - 1. + (*gaml + 1.) * pst))); 1898c4762a1bSJed Brown zl = *pl / cl * PetscSqrtScalar(*gaml * 2. * (*gaml - 1. + (*gaml + 1.) * pst)) * (*gaml - 1. + (*gaml + 1.) * pst) / (*gaml * 3. - 1. + (*gaml + 1.) * pst); 1899c4762a1bSJed Brown pst = *pstar / *pr; 1900c4762a1bSJed Brown ustarr = *uxr + (pst - 1.) * cr * PetscSqrtScalar(2. / (*gamr * (*gamr - 1. + (*gamr + 1.) * pst))); 1901c4762a1bSJed Brown zr = *pr / cr * PetscSqrtScalar(*gamr * 2. * (*gamr - 1. + (*gamr + 1.) * pst)) * (*gamr - 1. + (*gamr + 1.) * pst) / (*gamr * 3. - 1. + (*gamr + 1.) * pst); 1902c4762a1bSJed Brown dpstar = zl * zr * (ustarr - ustarl) / (zl + zr); 1903c4762a1bSJed Brown *pstar -= dpstar; 1904c4762a1bSJed Brown *pstar = PetscMax(PetscRealPart(*pstar),PetscRealPart(smallp)); 1905c4762a1bSJed Brown if (PetscAbsScalar(dpstar) / PetscRealPart(*pstar) <= 1e-8) { 1906c4762a1bSJed Brown #if 0 1907c4762a1bSJed Brown break; 1908c4762a1bSJed Brown #endif 1909c4762a1bSJed Brown } 1910c4762a1bSJed Brown } 1911c4762a1bSJed Brown /* 1-wave: rarefaction wave, 3-wave: shock */ 1912c4762a1bSJed Brown } else if (iwave == 400) { 1913c4762a1bSJed Brown /* case (400) */ 1914c4762a1bSJed Brown i__1 = iterno; 1915c4762a1bSJed Brown for (i0 = 1; i0 <= i__1; ++i0) { 1916c4762a1bSJed Brown d__1 = *pstar / *pl; 1917c4762a1bSJed Brown d__2 = 1. / *gaml; 1918c4762a1bSJed Brown *rstarl = *rl * PetscPowScalar(d__1, d__2); 1919c4762a1bSJed Brown cstarl = PetscSqrtScalar(*gaml * *pstar / *rstarl); 1920c4762a1bSJed Brown ustarl = *uxl - gascl4 * 2. * (cstarl - cl); 1921c4762a1bSJed Brown zl = *rstarl * cstarl; 1922c4762a1bSJed Brown pst = *pstar / *pr; 1923c4762a1bSJed Brown ustarr = *uxr + (pst - 1.) * cr * PetscSqrtScalar(2. / (*gamr * (*gamr - 1. + (*gamr + 1.) * pst))); 1924c4762a1bSJed Brown zr = *pr / cr * PetscSqrtScalar(*gamr * 2. * (*gamr - 1. + (*gamr + 1.) * pst)) * (*gamr - 1. + (*gamr + 1.) * pst) / (*gamr * 3. - 1. + (*gamr + 1.) * pst); 1925c4762a1bSJed Brown dpstar = zl * zr * (ustarr - ustarl) / (zl + zr); 1926c4762a1bSJed Brown *pstar -= dpstar; 1927c4762a1bSJed Brown *pstar = PetscMax(PetscRealPart(*pstar),PetscRealPart(smallp)); 1928c4762a1bSJed Brown if (PetscAbsScalar(dpstar) / PetscRealPart(*pstar) <= 1e-8) { 1929c4762a1bSJed Brown #if 0 1930c4762a1bSJed Brown break; 1931c4762a1bSJed Brown #endif 1932c4762a1bSJed Brown } 1933c4762a1bSJed Brown } 1934c4762a1bSJed Brown } 1935c4762a1bSJed Brown 1936c4762a1bSJed Brown *ustar = (zl * ustarr + zr * ustarl) / (zl + zr); 1937c4762a1bSJed Brown if (PetscRealPart(*pstar) > PetscRealPart(*pl)) { 1938c4762a1bSJed Brown pst = *pstar / *pl; 1939c4762a1bSJed Brown *rstarl = ((*gaml + 1.) * pst + *gaml - 1.) / ((*gaml - 1.) * pst + * 1940c4762a1bSJed Brown gaml + 1.) * *rl; 1941c4762a1bSJed Brown } 1942c4762a1bSJed Brown if (PetscRealPart(*pstar) > PetscRealPart(*pr)) { 1943c4762a1bSJed Brown pst = *pstar / *pr; 1944c4762a1bSJed Brown *rstarr = ((*gamr + 1.) * pst + *gamr - 1.) / ((*gamr - 1.) * pst + * 1945c4762a1bSJed Brown gamr + 1.) * *rr; 1946c4762a1bSJed Brown } 1947c4762a1bSJed Brown return iwave; 1948c4762a1bSJed Brown } 1949c4762a1bSJed Brown 1950c4762a1bSJed Brown PetscScalar sign(PetscScalar x) 1951c4762a1bSJed Brown { 1952c4762a1bSJed Brown if (PetscRealPart(x) > 0) return 1.0; 1953c4762a1bSJed Brown if (PetscRealPart(x) < 0) return -1.0; 1954c4762a1bSJed Brown return 0.0; 1955c4762a1bSJed Brown } 1956c4762a1bSJed Brown /* Riemann Solver */ 1957c4762a1bSJed Brown /* -------------------------------------------------------------------- */ 1958c4762a1bSJed Brown int riemannsolver(PetscScalar *xcen, PetscScalar *xp, 1959c4762a1bSJed Brown PetscScalar *dtt, PetscScalar *rl, PetscScalar *uxl, PetscScalar *pl, 1960c4762a1bSJed Brown PetscScalar *utl, PetscScalar *ubl, PetscScalar *gaml, PetscScalar *rho1l, 1961c4762a1bSJed Brown PetscScalar *rr, PetscScalar *uxr, PetscScalar *pr, PetscScalar *utr, 1962c4762a1bSJed Brown PetscScalar *ubr, PetscScalar *gamr, PetscScalar *rho1r, PetscScalar *rx, 1963c4762a1bSJed Brown PetscScalar *uxm, PetscScalar *px, PetscScalar *utx, PetscScalar *ubx, 1964c4762a1bSJed Brown PetscScalar *gam, PetscScalar *rho1) 1965c4762a1bSJed Brown { 1966c4762a1bSJed Brown /* System generated locals */ 1967c4762a1bSJed Brown PetscScalar d__1, d__2; 1968c4762a1bSJed Brown 1969c4762a1bSJed Brown /* Local variables */ 1970c4762a1bSJed Brown static PetscScalar s, c0, p0, r0, u0, w0, x0, x2, ri, cx, sgn0, wsp0, gasc1, gasc2, gasc3, gasc4; 1971c4762a1bSJed Brown static PetscScalar cstar, pstar, rstar, ustar, xstar, wspst, ushock, streng, rstarl, rstarr, rstars; 1972c4762a1bSJed Brown int iwave; 1973c4762a1bSJed Brown 1974c4762a1bSJed Brown if (*rl == *rr && *pr == *pl && *uxl == *uxr && *gaml == *gamr) { 1975c4762a1bSJed Brown *rx = *rl; 1976c4762a1bSJed Brown *px = *pl; 1977c4762a1bSJed Brown *uxm = *uxl; 1978c4762a1bSJed Brown *gam = *gaml; 1979c4762a1bSJed Brown x2 = *xcen + *uxm * *dtt; 1980c4762a1bSJed Brown 1981c4762a1bSJed Brown if (PetscRealPart(*xp) >= PetscRealPart(x2)) { 1982c4762a1bSJed Brown *utx = *utr; 1983c4762a1bSJed Brown *ubx = *ubr; 1984c4762a1bSJed Brown *rho1 = *rho1r; 1985c4762a1bSJed Brown } else { 1986c4762a1bSJed Brown *utx = *utl; 1987c4762a1bSJed Brown *ubx = *ubl; 1988c4762a1bSJed Brown *rho1 = *rho1l; 1989c4762a1bSJed Brown } 1990c4762a1bSJed Brown return 0; 1991c4762a1bSJed Brown } 1992c4762a1bSJed Brown iwave = riem1mdt(gaml, gamr, rl, pl, uxl, rr, pr, uxr, &rstarl, &rstarr, &pstar, &ustar); 1993c4762a1bSJed Brown 1994c4762a1bSJed Brown x2 = *xcen + ustar * *dtt; 1995c4762a1bSJed Brown d__1 = *xp - x2; 1996c4762a1bSJed Brown sgn0 = sign(d__1); 1997c4762a1bSJed Brown /* x is in 3-wave if sgn0 = 1 */ 1998c4762a1bSJed Brown /* x is in 1-wave if sgn0 = -1 */ 1999c4762a1bSJed Brown r0 = cvmgm_(rl, rr, &sgn0); 2000c4762a1bSJed Brown p0 = cvmgm_(pl, pr, &sgn0); 2001c4762a1bSJed Brown u0 = cvmgm_(uxl, uxr, &sgn0); 2002c4762a1bSJed Brown *gam = cvmgm_(gaml, gamr, &sgn0); 2003c4762a1bSJed Brown gasc1 = *gam - 1.; 2004c4762a1bSJed Brown gasc2 = (*gam + 1.) * .5; 2005c4762a1bSJed Brown gasc3 = gasc2 / *gam; 2006c4762a1bSJed Brown gasc4 = 1. / (*gam - 1.); 2007c4762a1bSJed Brown c0 = PetscSqrtScalar(*gam * p0 / r0); 2008c4762a1bSJed Brown streng = pstar - p0; 2009c4762a1bSJed Brown w0 = *gam * r0 * p0 * (gasc3 * streng / p0 + 1.); 2010c4762a1bSJed Brown rstars = r0 / (1. - r0 * streng / w0); 2011c4762a1bSJed Brown d__1 = p0 / pstar; 2012c4762a1bSJed Brown d__2 = -1. / *gam; 2013c4762a1bSJed Brown rstarr = r0 * PetscPowScalar(d__1, d__2); 2014c4762a1bSJed Brown rstar = cvmgm_(&rstarr, &rstars, &streng); 2015c4762a1bSJed Brown w0 = PetscSqrtScalar(w0); 2016c4762a1bSJed Brown cstar = PetscSqrtScalar(*gam * pstar / rstar); 2017c4762a1bSJed Brown wsp0 = u0 + sgn0 * c0; 2018c4762a1bSJed Brown wspst = ustar + sgn0 * cstar; 2019c4762a1bSJed Brown ushock = ustar + sgn0 * w0 / rstar; 2020c4762a1bSJed Brown wspst = cvmgp_(&ushock, &wspst, &streng); 2021c4762a1bSJed Brown wsp0 = cvmgp_(&ushock, &wsp0, &streng); 2022c4762a1bSJed Brown x0 = *xcen + wsp0 * *dtt; 2023c4762a1bSJed Brown xstar = *xcen + wspst * *dtt; 2024c4762a1bSJed Brown /* using gas formula to evaluate rarefaction wave */ 2025c4762a1bSJed Brown /* ri : reiman invariant */ 2026c4762a1bSJed Brown ri = u0 - sgn0 * 2. * gasc4 * c0; 2027c4762a1bSJed Brown cx = sgn0 * .5 * gasc1 / gasc2 * ((*xp - *xcen) / *dtt - ri); 2028c4762a1bSJed Brown *uxm = ri + sgn0 * 2. * gasc4 * cx; 2029c4762a1bSJed Brown s = p0 / PetscPowScalar(r0, *gam); 2030c4762a1bSJed Brown d__1 = cx * cx / (*gam * s); 2031c4762a1bSJed Brown *rx = PetscPowScalar(d__1, gasc4); 2032c4762a1bSJed Brown *px = cx * cx * *rx / *gam; 2033c4762a1bSJed Brown d__1 = sgn0 * (x0 - *xp); 2034c4762a1bSJed Brown *rx = cvmgp_(rx, &r0, &d__1); 2035c4762a1bSJed Brown d__1 = sgn0 * (x0 - *xp); 2036c4762a1bSJed Brown *px = cvmgp_(px, &p0, &d__1); 2037c4762a1bSJed Brown d__1 = sgn0 * (x0 - *xp); 2038c4762a1bSJed Brown *uxm = cvmgp_(uxm, &u0, &d__1); 2039c4762a1bSJed Brown d__1 = sgn0 * (xstar - *xp); 2040c4762a1bSJed Brown *rx = cvmgm_(rx, &rstar, &d__1); 2041c4762a1bSJed Brown d__1 = sgn0 * (xstar - *xp); 2042c4762a1bSJed Brown *px = cvmgm_(px, &pstar, &d__1); 2043c4762a1bSJed Brown d__1 = sgn0 * (xstar - *xp); 2044c4762a1bSJed Brown *uxm = cvmgm_(uxm, &ustar, &d__1); 2045c4762a1bSJed Brown if (PetscRealPart(*xp) >= PetscRealPart(x2)) { 2046c4762a1bSJed Brown *utx = *utr; 2047c4762a1bSJed Brown *ubx = *ubr; 2048c4762a1bSJed Brown *rho1 = *rho1r; 2049c4762a1bSJed Brown } else { 2050c4762a1bSJed Brown *utx = *utl; 2051c4762a1bSJed Brown *ubx = *ubl; 2052c4762a1bSJed Brown *rho1 = *rho1l; 2053c4762a1bSJed Brown } 2054c4762a1bSJed Brown return iwave; 2055c4762a1bSJed Brown } 2056c4762a1bSJed Brown int godunovflux( const PetscScalar *ul, const PetscScalar *ur, 2057c4762a1bSJed Brown PetscScalar *flux, const PetscReal *nn, const int *ndim, 2058c4762a1bSJed Brown const PetscReal *gamma) 2059c4762a1bSJed Brown { 2060c4762a1bSJed Brown /* System generated locals */ 2061c4762a1bSJed Brown int i__1,iwave; 2062c4762a1bSJed Brown PetscScalar d__1, d__2, d__3; 2063c4762a1bSJed Brown 2064c4762a1bSJed Brown /* Local variables */ 2065c4762a1bSJed Brown static int k; 2066c4762a1bSJed Brown static PetscScalar bn[3], fn, ft, tg[3], pl, rl, pm, pr, rr, xp, ubl, ubm, 2067c4762a1bSJed Brown ubr, dtt, unm, tmp, utl, utm, uxl, utr, uxr, gaml, gamm, gamr, 2068c4762a1bSJed Brown xcen, rhom, rho1l, rho1m, rho1r; 2069c4762a1bSJed Brown 2070c4762a1bSJed Brown /* Function Body */ 2071c4762a1bSJed Brown xcen = 0.; 2072c4762a1bSJed Brown xp = 0.; 2073c4762a1bSJed Brown i__1 = *ndim; 2074c4762a1bSJed Brown for (k = 1; k <= i__1; ++k) { 2075c4762a1bSJed Brown tg[k - 1] = 0.; 2076c4762a1bSJed Brown bn[k - 1] = 0.; 2077c4762a1bSJed Brown } 2078c4762a1bSJed Brown dtt = 1.; 2079c4762a1bSJed Brown if (*ndim == 3) { 2080a795f3e7SBarry Smith if (nn[0] == 0. && nn[1] == 0.) { 2081c4762a1bSJed Brown tg[0] = 1.; 2082c4762a1bSJed Brown } else { 2083a795f3e7SBarry Smith tg[0] = -nn[1]; 2084a795f3e7SBarry Smith tg[1] = nn[0]; 2085c4762a1bSJed Brown } 2086c4762a1bSJed Brown /* tmp=dsqrt(tg(1)**2+tg(2)**2) */ 2087c4762a1bSJed Brown /* tg=tg/tmp */ 2088a795f3e7SBarry Smith bn[0] = -nn[2] * tg[1]; 2089a795f3e7SBarry Smith bn[1] = nn[2] * tg[0]; 2090a795f3e7SBarry Smith bn[2] = nn[0] * tg[1] - nn[1] * tg[0]; 2091c4762a1bSJed Brown /* Computing 2nd power */ 2092c4762a1bSJed Brown d__1 = bn[0]; 2093c4762a1bSJed Brown /* Computing 2nd power */ 2094c4762a1bSJed Brown d__2 = bn[1]; 2095c4762a1bSJed Brown /* Computing 2nd power */ 2096c4762a1bSJed Brown d__3 = bn[2]; 2097c4762a1bSJed Brown tmp = PetscSqrtScalar(d__1 * d__1 + d__2 * d__2 + d__3 * d__3); 2098c4762a1bSJed Brown i__1 = *ndim; 2099c4762a1bSJed Brown for (k = 1; k <= i__1; ++k) { 2100c4762a1bSJed Brown bn[k - 1] /= tmp; 2101c4762a1bSJed Brown } 2102c4762a1bSJed Brown } else if (*ndim == 2) { 2103a795f3e7SBarry Smith tg[0] = -nn[1]; 2104a795f3e7SBarry Smith tg[1] = nn[0]; 2105c4762a1bSJed Brown /* tmp=dsqrt(tg(1)**2+tg(2)**2) */ 2106c4762a1bSJed Brown /* tg=tg/tmp */ 2107c4762a1bSJed Brown bn[0] = 0.; 2108c4762a1bSJed Brown bn[1] = 0.; 2109c4762a1bSJed Brown bn[2] = 1.; 2110c4762a1bSJed Brown } 2111a795f3e7SBarry Smith rl = ul[0]; 2112a795f3e7SBarry Smith rr = ur[0]; 2113c4762a1bSJed Brown uxl = 0.; 2114c4762a1bSJed Brown uxr = 0.; 2115c4762a1bSJed Brown utl = 0.; 2116c4762a1bSJed Brown utr = 0.; 2117c4762a1bSJed Brown ubl = 0.; 2118c4762a1bSJed Brown ubr = 0.; 2119c4762a1bSJed Brown i__1 = *ndim; 2120c4762a1bSJed Brown for (k = 1; k <= i__1; ++k) { 2121a795f3e7SBarry Smith uxl += ul[k] * nn[k-1]; 2122a795f3e7SBarry Smith uxr += ur[k] * nn[k-1]; 2123a795f3e7SBarry Smith utl += ul[k] * tg[k - 1]; 2124a795f3e7SBarry Smith utr += ur[k] * tg[k - 1]; 2125a795f3e7SBarry Smith ubl += ul[k] * bn[k - 1]; 2126a795f3e7SBarry Smith ubr += ur[k] * bn[k - 1]; 2127c4762a1bSJed Brown } 2128c4762a1bSJed Brown uxl /= rl; 2129c4762a1bSJed Brown uxr /= rr; 2130c4762a1bSJed Brown utl /= rl; 2131c4762a1bSJed Brown utr /= rr; 2132c4762a1bSJed Brown ubl /= rl; 2133c4762a1bSJed Brown ubr /= rr; 2134c4762a1bSJed Brown 2135c4762a1bSJed Brown gaml = *gamma; 2136c4762a1bSJed Brown gamr = *gamma; 2137c4762a1bSJed Brown /* Computing 2nd power */ 2138c4762a1bSJed Brown d__1 = uxl; 2139c4762a1bSJed Brown /* Computing 2nd power */ 2140c4762a1bSJed Brown d__2 = utl; 2141c4762a1bSJed Brown /* Computing 2nd power */ 2142c4762a1bSJed Brown d__3 = ubl; 2143a795f3e7SBarry Smith pl = (*gamma - 1.) * (ul[*ndim + 1] - rl * .5 * (d__1 * d__1 + d__2 * d__2 + d__3 * d__3)); 2144c4762a1bSJed Brown /* Computing 2nd power */ 2145c4762a1bSJed Brown d__1 = uxr; 2146c4762a1bSJed Brown /* Computing 2nd power */ 2147c4762a1bSJed Brown d__2 = utr; 2148c4762a1bSJed Brown /* Computing 2nd power */ 2149c4762a1bSJed Brown d__3 = ubr; 2150a795f3e7SBarry Smith pr = (*gamma - 1.) * (ur[*ndim + 1] - rr * .5 * (d__1 * d__1 + d__2 * d__2 + d__3 * d__3)); 2151c4762a1bSJed Brown rho1l = rl; 2152c4762a1bSJed Brown rho1r = rr; 2153c4762a1bSJed Brown 2154c4762a1bSJed Brown iwave = riemannsolver(&xcen, &xp, &dtt, &rl, &uxl, &pl, &utl, &ubl, &gaml, & 2155c4762a1bSJed Brown rho1l, &rr, &uxr, &pr, &utr, &ubr, &gamr, &rho1r, &rhom, &unm, & 2156c4762a1bSJed Brown pm, &utm, &ubm, &gamm, &rho1m); 2157c4762a1bSJed Brown 2158a795f3e7SBarry Smith flux[0] = rhom * unm; 2159c4762a1bSJed Brown fn = rhom * unm * unm + pm; 2160c4762a1bSJed Brown ft = rhom * unm * utm; 2161c4762a1bSJed Brown /* flux(2)=fn*nn(1)+ft*nn(2) */ 2162c4762a1bSJed Brown /* flux(3)=fn*tg(1)+ft*tg(2) */ 2163a795f3e7SBarry Smith flux[1] = fn * nn[0] + ft * tg[0]; 2164a795f3e7SBarry Smith flux[2] = fn * nn[1] + ft * tg[1]; 2165c4762a1bSJed Brown /* flux(2)=rhom*unm*(unm)+pm */ 2166c4762a1bSJed Brown /* flux(3)=rhom*(unm)*utm */ 2167c4762a1bSJed Brown if (*ndim == 3) { 2168a795f3e7SBarry Smith flux[3] = rhom * unm * ubm; 2169c4762a1bSJed Brown } 2170a795f3e7SBarry Smith flux[*ndim + 1] = (rhom * .5 * (unm * unm + utm * utm + ubm * ubm) + gamm / (gamm - 1.) * pm) * unm; 2171c4762a1bSJed Brown return iwave; 2172c4762a1bSJed Brown } /* godunovflux_ */ 2173c4762a1bSJed Brown 2174c4762a1bSJed Brown /* Subroutine to set up the initial conditions for the */ 2175c4762a1bSJed Brown /* Shock Interface interaction or linear wave (Ravi Samtaney,Mark Adams). */ 2176c4762a1bSJed Brown /* ----------------------------------------------------------------------- */ 2177c4762a1bSJed Brown int projecteqstate(PetscReal wc[], const PetscReal ueq[], PetscReal lv[][3]) 2178c4762a1bSJed Brown { 2179c4762a1bSJed Brown int j,k; 2180c4762a1bSJed Brown /* Wc=matmul(lv,Ueq) 3 vars */ 2181c4762a1bSJed Brown for (k = 0; k < 3; ++k) { 2182c4762a1bSJed Brown wc[k] = 0.; 2183c4762a1bSJed Brown for (j = 0; j < 3; ++j) { 2184c4762a1bSJed Brown wc[k] += lv[k][j]*ueq[j]; 2185c4762a1bSJed Brown } 2186c4762a1bSJed Brown } 2187c4762a1bSJed Brown return 0; 2188c4762a1bSJed Brown } 2189c4762a1bSJed Brown /* ----------------------------------------------------------------------- */ 2190c4762a1bSJed Brown int projecttoprim(PetscReal v[], const PetscReal wc[], PetscReal rv[][3]) 2191c4762a1bSJed Brown { 2192c4762a1bSJed Brown int k,j; 2193c4762a1bSJed Brown /* V=matmul(rv,WC) 3 vars */ 2194c4762a1bSJed Brown for (k = 0; k < 3; ++k) { 2195c4762a1bSJed Brown v[k] = 0.; 2196c4762a1bSJed Brown for (j = 0; j < 3; ++j) { 2197c4762a1bSJed Brown v[k] += rv[k][j]*wc[j]; 2198c4762a1bSJed Brown } 2199c4762a1bSJed Brown } 2200c4762a1bSJed Brown return 0; 2201c4762a1bSJed Brown } 2202c4762a1bSJed Brown /* ---------------------------------------------------------------------- */ 2203c4762a1bSJed Brown int eigenvectors(PetscReal rv[][3], PetscReal lv[][3], const PetscReal ueq[], PetscReal gamma) 2204c4762a1bSJed Brown { 2205c4762a1bSJed Brown int j,k; 2206c4762a1bSJed Brown PetscReal rho,csnd,p0; 2207c4762a1bSJed Brown /* PetscScalar u; */ 2208c4762a1bSJed Brown 2209c4762a1bSJed Brown for (k = 0; k < 3; ++k) for (j = 0; j < 3; ++j) { lv[k][j] = 0.; rv[k][j] = 0.; } 2210c4762a1bSJed Brown rho = ueq[0]; 2211c4762a1bSJed Brown /* u = ueq[1]; */ 2212c4762a1bSJed Brown p0 = ueq[2]; 2213c4762a1bSJed Brown csnd = PetscSqrtReal(gamma * p0 / rho); 2214c4762a1bSJed Brown lv[0][1] = rho * .5; 2215c4762a1bSJed Brown lv[0][2] = -.5 / csnd; 2216c4762a1bSJed Brown lv[1][0] = csnd; 2217c4762a1bSJed Brown lv[1][2] = -1. / csnd; 2218c4762a1bSJed Brown lv[2][1] = rho * .5; 2219c4762a1bSJed Brown lv[2][2] = .5 / csnd; 2220c4762a1bSJed Brown rv[0][0] = -1. / csnd; 2221c4762a1bSJed Brown rv[1][0] = 1. / rho; 2222c4762a1bSJed Brown rv[2][0] = -csnd; 2223c4762a1bSJed Brown rv[0][1] = 1. / csnd; 2224c4762a1bSJed Brown rv[0][2] = 1. / csnd; 2225c4762a1bSJed Brown rv[1][2] = 1. / rho; 2226c4762a1bSJed Brown rv[2][2] = csnd; 2227c4762a1bSJed Brown return 0; 2228c4762a1bSJed Brown } 2229c4762a1bSJed Brown 2230c4762a1bSJed Brown int initLinearWave(EulerNode *ux, const PetscReal gamma, const PetscReal coord[], const PetscReal Lx) 2231c4762a1bSJed Brown { 2232c4762a1bSJed Brown PetscReal p0,u0,wcp[3],wc[3]; 2233c4762a1bSJed Brown PetscReal lv[3][3]; 2234c4762a1bSJed Brown PetscReal vp[3]; 2235c4762a1bSJed Brown PetscReal rv[3][3]; 2236c4762a1bSJed Brown PetscReal eps, ueq[3], rho0, twopi; 2237c4762a1bSJed Brown 2238c4762a1bSJed Brown /* Function Body */ 2239c4762a1bSJed Brown twopi = 2.*PETSC_PI; 2240c4762a1bSJed Brown eps = 1e-4; /* perturbation */ 2241c4762a1bSJed Brown rho0 = 1e3; /* density of water */ 2242c4762a1bSJed Brown p0 = 101325.; /* init pressure of 1 atm (?) */ 2243c4762a1bSJed Brown u0 = 0.; 2244c4762a1bSJed Brown ueq[0] = rho0; 2245c4762a1bSJed Brown ueq[1] = u0; 2246c4762a1bSJed Brown ueq[2] = p0; 2247c4762a1bSJed Brown /* Project initial state to characteristic variables */ 2248c4762a1bSJed Brown eigenvectors(rv, lv, ueq, gamma); 2249c4762a1bSJed Brown projecteqstate(wc, ueq, lv); 2250c4762a1bSJed Brown wcp[0] = wc[0]; 2251c4762a1bSJed Brown wcp[1] = wc[1]; 2252c4762a1bSJed Brown wcp[2] = wc[2] + eps * PetscCosReal(coord[0] * 2. * twopi / Lx); 2253c4762a1bSJed Brown projecttoprim(vp, wcp, rv); 2254c4762a1bSJed Brown ux->r = vp[0]; /* density */ 2255c4762a1bSJed Brown ux->ru[0] = vp[0] * vp[1]; /* x momentum */ 2256c4762a1bSJed Brown ux->ru[1] = 0.; 2257c4762a1bSJed Brown #if defined DIM > 2 2258c4762a1bSJed Brown if (dim>2) ux->ru[2] = 0.; 2259c4762a1bSJed Brown #endif 2260c4762a1bSJed Brown /* E = rho * e + rho * v^2/2 = p/(gam-1) + rho*v^2/2 */ 2261c4762a1bSJed Brown ux->E = vp[2]/(gamma - 1.) + 0.5*vp[0]*vp[1]*vp[1]; 2262c4762a1bSJed Brown return 0; 2263c4762a1bSJed Brown } 2264c4762a1bSJed Brown 2265c4762a1bSJed Brown /*TEST 2266c4762a1bSJed Brown 226730602db0SMatthew G. Knepley testset: 226830602db0SMatthew G. Knepley args: -dm_plex_adj_cone -dm_plex_adj_closure 0 226930602db0SMatthew G. Knepley 227030602db0SMatthew G. Knepley test: 227130602db0SMatthew G. Knepley suffix: adv_2d_tri_0 227230602db0SMatthew G. Knepley requires: triangle 227330602db0SMatthew G. Knepley TODO: how did this ever get in main when there is no support for this 227430602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -simplex -dm_refine 3 -dm_plex_faces 1,1 -dm_plex_separate_marker -bc_inflow 1,2,4 -bc_outflow 3 227530602db0SMatthew G. Knepley 227630602db0SMatthew G. Knepley test: 227730602db0SMatthew G. Knepley suffix: adv_2d_tri_1 227830602db0SMatthew G. Knepley requires: triangle 227930602db0SMatthew G. Knepley TODO: how did this ever get in main when there is no support for this 228030602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -simplex -dm_refine 5 -dm_plex_faces 1,1 -dm_plex_separate_marker -grid_bounds -0.5,0.5,-0.5,0.5 -bc_inflow 1,2,4 -bc_outflow 3 -advect_sol_type bump -advect_bump_center 0.25,0 -advect_bump_radius 0.1 228130602db0SMatthew G. Knepley 228230602db0SMatthew G. Knepley test: 228330602db0SMatthew G. Knepley suffix: tut_1 228430602db0SMatthew G. Knepley requires: exodusii 228530602db0SMatthew G. Knepley nsize: 1 228630602db0SMatthew G. Knepley args: -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside.exo 228730602db0SMatthew G. Knepley 228830602db0SMatthew G. Knepley test: 228930602db0SMatthew G. Knepley suffix: tut_2 229030602db0SMatthew G. Knepley requires: exodusii 229130602db0SMatthew G. Knepley nsize: 1 229230602db0SMatthew G. Knepley args: -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside.exo -ts_type rosw 229330602db0SMatthew G. Knepley 229430602db0SMatthew G. Knepley test: 229530602db0SMatthew G. Knepley suffix: tut_3 229630602db0SMatthew G. Knepley requires: exodusii 229730602db0SMatthew G. Knepley nsize: 4 2298e600fa54SMatthew G. Knepley args: -dm_distribute_overlap 1 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/annulus-20.exo -monitor Error -advect_sol_type bump -petscfv_type leastsquares -petsclimiter_type sin 229930602db0SMatthew G. Knepley 230030602db0SMatthew G. Knepley test: 230130602db0SMatthew G. Knepley suffix: tut_4 230230602db0SMatthew G. Knepley requires: exodusii 230330602db0SMatthew G. Knepley nsize: 4 2304e600fa54SMatthew G. Knepley args: -dm_distribute_overlap 1 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/annulus-20.exo -physics sw -monitor Height,Energy -petscfv_type leastsquares -petsclimiter_type minmod 230530602db0SMatthew G. Knepley 230630602db0SMatthew G. Knepley testset: 230730602db0SMatthew G. Knepley args: -dm_plex_adj_cone -dm_plex_adj_closure 0 -dm_plex_simplex 0 -dm_plex_box_faces 1,1,1 230830602db0SMatthew G. Knepley 2309c4762a1bSJed Brown # 2D Advection 0-10 2310c4762a1bSJed Brown test: 2311c4762a1bSJed Brown suffix: 0 2312c4762a1bSJed Brown requires: exodusii 231330602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside.exo 2314c4762a1bSJed Brown 2315c4762a1bSJed Brown test: 2316c4762a1bSJed Brown suffix: 1 2317c4762a1bSJed Brown requires: exodusii 231830602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside-quad-15.exo 2319c4762a1bSJed Brown 2320c4762a1bSJed Brown test: 2321c4762a1bSJed Brown suffix: 2 2322c4762a1bSJed Brown requires: exodusii 2323c4762a1bSJed Brown nsize: 2 2324e600fa54SMatthew G. Knepley args: -dm_distribute_overlap 1 -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside.exo 2325c4762a1bSJed Brown 2326c4762a1bSJed Brown test: 2327c4762a1bSJed Brown suffix: 3 2328c4762a1bSJed Brown requires: exodusii 2329c4762a1bSJed Brown nsize: 2 2330e600fa54SMatthew G. Knepley args: -dm_distribute_overlap 1 -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside-quad-15.exo 2331c4762a1bSJed Brown 2332c4762a1bSJed Brown test: 2333c4762a1bSJed Brown suffix: 4 2334c4762a1bSJed Brown requires: exodusii 2335c4762a1bSJed Brown nsize: 8 2336e600fa54SMatthew G. Knepley args: -dm_distribute_overlap 1 -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside-quad.exo 2337c4762a1bSJed Brown 2338c4762a1bSJed Brown test: 2339c4762a1bSJed Brown suffix: 5 2340c4762a1bSJed Brown requires: exodusii 234130602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside.exo -ts_type rosw -ts_adapt_reject_safety 1 2342c4762a1bSJed Brown 2343c4762a1bSJed Brown test: 2344c4762a1bSJed Brown suffix: 7 2345c4762a1bSJed Brown requires: exodusii 234630602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside-quad-15.exo -dm_refine 1 2347c4762a1bSJed Brown 2348c4762a1bSJed Brown test: 2349c4762a1bSJed Brown suffix: 8 2350c4762a1bSJed Brown requires: exodusii 2351c4762a1bSJed Brown nsize: 2 2352e600fa54SMatthew G. Knepley args: -dm_distribute_overlap 1 -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside-quad-15.exo -dm_refine 1 2353c4762a1bSJed Brown 2354c4762a1bSJed Brown test: 2355c4762a1bSJed Brown suffix: 9 2356c4762a1bSJed Brown requires: exodusii 2357c4762a1bSJed Brown nsize: 8 2358e600fa54SMatthew G. Knepley args: -dm_distribute_overlap 1 -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside-quad-15.exo -dm_refine 1 2359c4762a1bSJed Brown 2360c4762a1bSJed Brown test: 2361c4762a1bSJed Brown suffix: 10 2362c4762a1bSJed Brown requires: exodusii 236330602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/sevenside-quad.exo 2364c4762a1bSJed Brown 2365c4762a1bSJed Brown # 2D Shallow water 2366c4762a1bSJed Brown test: 2367c4762a1bSJed Brown suffix: sw_0 2368c4762a1bSJed Brown requires: exodusii 236930602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/annulus-20.exo -bc_wall 100,101 -physics sw -ufv_cfl 5 -petscfv_type leastsquares -petsclimiter_type sin -ts_max_time 1 -ts_ssp_type rks2 -ts_ssp_nstages 10 -monitor height,energy 2370c4762a1bSJed Brown 23718d2c18caSMukkund Sunjii test: 23728d2c18caSMukkund Sunjii suffix: sw_hll 237330602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -bc_wall 1,2,3,4 -physics sw -ufv_cfl 3 -petscfv_type leastsquares -petsclimiter_type sin -ts_max_steps 5 -ts_ssp_type rks2 -ts_ssp_nstages 10 -monitor height,energy -grid_bounds 0,5,0,5 -dm_plex_box_faces 25,25 -sw_riemann hll 23748d2c18caSMukkund Sunjii 2375c4762a1bSJed Brown # 2D Advection: p4est 2376c4762a1bSJed Brown test: 2377c4762a1bSJed Brown suffix: p4est_advec_2d 2378c4762a1bSJed Brown requires: p4est 237930602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -dm_type p4est -dm_forest_minimum_refinement 1 -dm_forest_initial_refinement 2 -dm_p4est_refine_pattern hash -dm_forest_maximum_refinement 5 2380c4762a1bSJed Brown 2381c4762a1bSJed Brown # Advection in a box 2382c4762a1bSJed Brown test: 2383c4762a1bSJed Brown suffix: adv_2d_quad_0 2384c4762a1bSJed Brown args: -ufv_vtk_interval 0 -dm_refine 3 -dm_plex_separate_marker -bc_inflow 1,2,4 -bc_outflow 3 2385c4762a1bSJed Brown 2386c4762a1bSJed Brown test: 2387c4762a1bSJed Brown suffix: adv_2d_quad_1 2388c4762a1bSJed Brown args: -ufv_vtk_interval 0 -dm_refine 3 -dm_plex_separate_marker -grid_bounds -0.5,0.5,-0.5,0.5 -bc_inflow 1,2,4 -bc_outflow 3 -advect_sol_type bump -advect_bump_center 0.25,0 -advect_bump_radius 0.1 2389c4762a1bSJed Brown timeoutfactor: 3 2390c4762a1bSJed Brown 2391c4762a1bSJed Brown test: 2392c4762a1bSJed Brown suffix: adv_2d_quad_p4est_0 2393c4762a1bSJed Brown requires: p4est 2394c4762a1bSJed Brown args: -ufv_vtk_interval 0 -dm_refine 5 -dm_type p4est -dm_plex_separate_marker -bc_inflow 1,2,4 -bc_outflow 3 2395c4762a1bSJed Brown 2396c4762a1bSJed Brown test: 2397c4762a1bSJed Brown suffix: adv_2d_quad_p4est_1 2398c4762a1bSJed Brown requires: p4est 2399c4762a1bSJed Brown args: -ufv_vtk_interval 0 -dm_refine 5 -dm_type p4est -dm_plex_separate_marker -grid_bounds -0.5,0.5,-0.5,0.5 -bc_inflow 1,2,4 -bc_outflow 3 -advect_sol_type bump -advect_bump_center 0.25,0 -advect_bump_radius 0.1 2400c4762a1bSJed Brown timeoutfactor: 3 2401c4762a1bSJed Brown 2402c4762a1bSJed Brown test: 2403c4762a1bSJed Brown suffix: adv_2d_quad_p4est_adapt_0 2404c4762a1bSJed Brown requires: p4est !__float128 #broken for quad precision 2405c4762a1bSJed Brown args: -ufv_vtk_interval 0 -dm_refine 3 -dm_type p4est -dm_plex_separate_marker -grid_bounds -0.5,0.5,-0.5,0.5 -bc_inflow 1,2,4 -bc_outflow 3 -advect_sol_type bump -advect_bump_center 0.25,0 -advect_bump_radius 0.1 -ufv_use_amr -refine_vec_tagger_box 0.005,inf -coarsen_vec_tagger_box 0,1.e-5 -petscfv_type leastsquares -ts_max_time 0.01 2406c4762a1bSJed Brown timeoutfactor: 3 2407c4762a1bSJed Brown 2408c4762a1bSJed Brown test: 2409c4762a1bSJed Brown suffix: adv_0 2410c4762a1bSJed Brown requires: exodusii 241130602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/blockcylinder-50.exo -bc_inflow 100,101,200 -bc_outflow 201 2412c4762a1bSJed Brown 2413c4762a1bSJed Brown test: 2414c4762a1bSJed Brown suffix: shock_0 2415c4762a1bSJed Brown requires: p4est !single !complex 241630602db0SMatthew G. Knepley args: -dm_plex_box_faces 2,1 -grid_bounds -1,1.,0.,1 -grid_skew_60 \ 241730602db0SMatthew G. Knepley -dm_type p4est -dm_forest_partition_overlap 1 -dm_forest_maximum_refinement 6 -dm_forest_minimum_refinement 2 -dm_forest_initial_refinement 2 \ 241830602db0SMatthew G. Knepley -ufv_use_amr -refine_vec_tagger_box 0.5,inf -coarsen_vec_tagger_box 0,1.e-2 -refine_tag_view -coarsen_tag_view \ 241930602db0SMatthew G. Knepley -bc_wall 1,2,3,4 -physics euler -eu_type iv_shock -ufv_cfl 10 -eu_alpha 60. -eu_gamma 1.4 -eu_amach 2.02 -eu_rho2 3. \ 242030602db0SMatthew G. Knepley -petscfv_type leastsquares -petsclimiter_type minmod -petscfv_compute_gradients 0 \ 242130602db0SMatthew G. Knepley -ts_max_time 0.5 -ts_ssp_type rks2 -ts_ssp_nstages 10 \ 242230602db0SMatthew G. Knepley -ufv_vtk_basename ${wPETSC_DIR}/ex11 -ufv_vtk_interval 0 -monitor density,energy 2423c4762a1bSJed Brown timeoutfactor: 3 2424c4762a1bSJed Brown 2425c4762a1bSJed Brown # Test GLVis visualization of PetscFV fields 2426c4762a1bSJed Brown test: 2427c4762a1bSJed Brown suffix: glvis_adv_2d_tet 242830602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -ufv_vtk_monitor 0 \ 242930602db0SMatthew G. Knepley -dm_plex_filename ${wPETSC_DIR}/share/petsc/datafiles/meshes/square_periodic.msh -dm_plex_gmsh_periodic 0 \ 243030602db0SMatthew G. Knepley -ts_monitor_solution glvis: -ts_max_steps 0 2431c4762a1bSJed Brown 2432c4762a1bSJed Brown test: 2433c4762a1bSJed Brown suffix: glvis_adv_2d_quad 243430602db0SMatthew G. Knepley args: -ufv_vtk_interval 0 -ufv_vtk_monitor 0 -bc_inflow 1,2,4 -bc_outflow 3 \ 243530602db0SMatthew G. Knepley -dm_refine 5 -dm_plex_separate_marker \ 243630602db0SMatthew G. Knepley -ts_monitor_solution glvis: -ts_max_steps 0 2437c4762a1bSJed Brown 2438c4762a1bSJed Brown TEST*/ 2439