15170378fSJakub Kruzik #include <../src/ksp/pc/impls/deflation/deflation.h> /*I "petscksp.h" I*/ /* includes for fortran wrappers */ 237eeb815SJakub Kruzik 38513960bSJakub Kruzik const char *const PCDeflationSpaceTypes[] = { 48513960bSJakub Kruzik "haar", 58513960bSJakub Kruzik "db2", 68513960bSJakub Kruzik "db4", 78513960bSJakub Kruzik "db8", 88513960bSJakub Kruzik "db16", 98513960bSJakub Kruzik "biorth22", 108513960bSJakub Kruzik "meyer", 118513960bSJakub Kruzik "aggregation", 128513960bSJakub Kruzik "user", 130a78af22SJakub Kruzik "PCDeflationSpaceType", 140a78af22SJakub Kruzik "PC_DEFLATION_SPACE_", 150a545947SLisandro Dalcin NULL 168513960bSJakub Kruzik }; 178513960bSJakub Kruzik 18a122ebaeSJakub Kruzik static PetscErrorCode PCDeflationSetInitOnly_Deflation(PC pc,PetscBool flg) 19a122ebaeSJakub Kruzik { 20a122ebaeSJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 21a122ebaeSJakub Kruzik 22a122ebaeSJakub Kruzik PetscFunctionBegin; 23a122ebaeSJakub Kruzik def->init = flg; 24a122ebaeSJakub Kruzik PetscFunctionReturn(0); 25a122ebaeSJakub Kruzik } 26a122ebaeSJakub Kruzik 27a122ebaeSJakub Kruzik /*@ 28a122ebaeSJakub Kruzik PCDeflationSetInitOnly - Do only initialization step. 29e26ad46dSJakub Kruzik Sets initial guess to the solution on the deflation space but does not apply 30e26ad46dSJakub Kruzik the deflation preconditioner. The additional preconditioner is still applied. 31a122ebaeSJakub Kruzik 32e26ad46dSJakub Kruzik Logically Collective 33a122ebaeSJakub Kruzik 34a122ebaeSJakub Kruzik Input Parameters: 35a122ebaeSJakub Kruzik + pc - the preconditioner context 36a122ebaeSJakub Kruzik - flg - default PETSC_FALSE 37a122ebaeSJakub Kruzik 38e26ad46dSJakub Kruzik Options Database Keys: 39e26ad46dSJakub Kruzik . -pc_deflation_init_only <false> - if true computes only the special guess 40e26ad46dSJakub Kruzik 41a122ebaeSJakub Kruzik Level: intermediate 42a122ebaeSJakub Kruzik 43a122ebaeSJakub Kruzik .seealso: PCDEFLATION 44a122ebaeSJakub Kruzik @*/ 45a122ebaeSJakub Kruzik PetscErrorCode PCDeflationSetInitOnly(PC pc,PetscBool flg) 46a122ebaeSJakub Kruzik { 47a122ebaeSJakub Kruzik PetscErrorCode ierr; 48a122ebaeSJakub Kruzik 49a122ebaeSJakub Kruzik PetscFunctionBegin; 50a122ebaeSJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 51a122ebaeSJakub Kruzik PetscValidLogicalCollectiveBool(pc,flg,2); 52a122ebaeSJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationSetInitOnly_C",(PC,PetscBool),(pc,flg));CHKERRQ(ierr); 53a122ebaeSJakub Kruzik PetscFunctionReturn(0); 54a122ebaeSJakub Kruzik } 55a122ebaeSJakub Kruzik 5693b79a5aSJakub Kruzik static PetscErrorCode PCDeflationSetLevels_Deflation(PC pc,PetscInt current,PetscInt max) 5798d6e3deSJakub Kruzik { 5898d6e3deSJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 5998d6e3deSJakub Kruzik 6098d6e3deSJakub Kruzik PetscFunctionBegin; 616c93e71cSJakub Kruzik if (current) def->lvl = current; 626c93e71cSJakub Kruzik def->maxlvl = max; 6398d6e3deSJakub Kruzik PetscFunctionReturn(0); 6498d6e3deSJakub Kruzik } 6598d6e3deSJakub Kruzik 6698d6e3deSJakub Kruzik /*@ 6793b79a5aSJakub Kruzik PCDeflationSetLevels - Set the maximum level of deflation nesting. 6898d6e3deSJakub Kruzik 69e26ad46dSJakub Kruzik Logically Collective 7098d6e3deSJakub Kruzik 7198d6e3deSJakub Kruzik Input Parameters: 7298d6e3deSJakub Kruzik + pc - the preconditioner context 7398d6e3deSJakub Kruzik - max - maximum deflation level 7498d6e3deSJakub Kruzik 75e26ad46dSJakub Kruzik Options Database Keys: 76e26ad46dSJakub Kruzik . -pc_deflation_max_lvl <0> - maximum number of levels for multilevel deflation 77e26ad46dSJakub Kruzik 7898d6e3deSJakub Kruzik Level: intermediate 7998d6e3deSJakub Kruzik 80e26ad46dSJakub Kruzik .seealso: PCDeflationSetSpaceToCompute(), PCDeflationSetSpace(), PCDEFLATION 8198d6e3deSJakub Kruzik @*/ 8293b79a5aSJakub Kruzik PetscErrorCode PCDeflationSetLevels(PC pc,PetscInt max) 8398d6e3deSJakub Kruzik { 8498d6e3deSJakub Kruzik PetscErrorCode ierr; 8598d6e3deSJakub Kruzik 8698d6e3deSJakub Kruzik PetscFunctionBegin; 8798d6e3deSJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 8898d6e3deSJakub Kruzik PetscValidLogicalCollectiveInt(pc,max,2); 8993b79a5aSJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationSetLevels_C",(PC,PetscInt,PetscInt),(pc,0,max));CHKERRQ(ierr); 9098d6e3deSJakub Kruzik PetscFunctionReturn(0); 9198d6e3deSJakub Kruzik } 9298d6e3deSJakub Kruzik 93859a873cSJakub Kruzik static PetscErrorCode PCDeflationSetReductionFactor_Deflation(PC pc,PetscInt red) 94859a873cSJakub Kruzik { 95859a873cSJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 96859a873cSJakub Kruzik 97859a873cSJakub Kruzik PetscFunctionBegin; 98859a873cSJakub Kruzik def->reductionfact = red; 99859a873cSJakub Kruzik PetscFunctionReturn(0); 100859a873cSJakub Kruzik } 101859a873cSJakub Kruzik 102859a873cSJakub Kruzik /*@ 103e26ad46dSJakub Kruzik PCDeflationSetReductionFactor - Set reduction factor for the bottom PCTELESCOPE coarse problem solver. 104859a873cSJakub Kruzik 105e26ad46dSJakub Kruzik Logically Collective 106859a873cSJakub Kruzik 107859a873cSJakub Kruzik Input Parameters: 108859a873cSJakub Kruzik + pc - the preconditioner context 109859a873cSJakub Kruzik - red - reduction factor (or PETSC_DETERMINE) 110859a873cSJakub Kruzik 111e26ad46dSJakub Kruzik Options Database Keys: 11271f2caa7Sprj- . -pc_deflation_reduction_factor <\-1> - reduction factor on bottom level coarse problem for PCTELESCOPE 113e26ad46dSJakub Kruzik 114e26ad46dSJakub Kruzik Notes: 115e26ad46dSJakub Kruzik Default is computed based on the size of the coarse problem. 116e26ad46dSJakub Kruzik 117859a873cSJakub Kruzik Level: intermediate 118859a873cSJakub Kruzik 119e26ad46dSJakub Kruzik .seealso: PCTELESCOPE, PCDEFLATION 120859a873cSJakub Kruzik @*/ 121859a873cSJakub Kruzik PetscErrorCode PCDeflationSetReductionFactor(PC pc,PetscInt red) 122859a873cSJakub Kruzik { 123859a873cSJakub Kruzik PetscErrorCode ierr; 124859a873cSJakub Kruzik 125859a873cSJakub Kruzik PetscFunctionBegin; 126859a873cSJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 127859a873cSJakub Kruzik PetscValidLogicalCollectiveInt(pc,red,2); 128859a873cSJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationSetReductionFactor_C",(PC,PetscInt),(pc,red));CHKERRQ(ierr); 129859a873cSJakub Kruzik PetscFunctionReturn(0); 130859a873cSJakub Kruzik } 131859a873cSJakub Kruzik 1328a71cb68SJakub Kruzik static PetscErrorCode PCDeflationSetCorrectionFactor_Deflation(PC pc,PetscScalar fact) 1338a71cb68SJakub Kruzik { 1348a71cb68SJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 1358a71cb68SJakub Kruzik 1368a71cb68SJakub Kruzik PetscFunctionBegin; 1378a71cb68SJakub Kruzik /* TODO PETSC_DETERMINE -> compute max eigenvalue with power method */ 1388a71cb68SJakub Kruzik def->correct = PETSC_TRUE; 1398a71cb68SJakub Kruzik def->correctfact = fact; 140e26ad46dSJakub Kruzik if (def->correct == 0.0) { 1418a71cb68SJakub Kruzik def->correct = PETSC_FALSE; 1428a71cb68SJakub Kruzik } 1438a71cb68SJakub Kruzik PetscFunctionReturn(0); 1448a71cb68SJakub Kruzik } 1458a71cb68SJakub Kruzik 1468a71cb68SJakub Kruzik /*@ 1478a71cb68SJakub Kruzik PCDeflationSetCorrectionFactor - Set coarse problem correction factor. 148e26ad46dSJakub Kruzik The Preconditioner becomes P*M^{-1} + fact*Q. 1498a71cb68SJakub Kruzik 150e26ad46dSJakub Kruzik Logically Collective 1518a71cb68SJakub Kruzik 1528a71cb68SJakub Kruzik Input Parameters: 1538a71cb68SJakub Kruzik + pc - the preconditioner context 154e26ad46dSJakub Kruzik - fact - correction factor 155e26ad46dSJakub Kruzik 156e26ad46dSJakub Kruzik Options Database Keys: 157e26ad46dSJakub Kruzik + -pc_deflation_correction <false> - if true apply coarse problem correction 158e26ad46dSJakub Kruzik - -pc_deflation_correction_factor <1.0> - sets coarse problem correction factor 159e26ad46dSJakub Kruzik 160e26ad46dSJakub Kruzik Notes: 161e26ad46dSJakub Kruzik Any non-zero fact enables the coarse problem correction. 1628a71cb68SJakub Kruzik 1638a71cb68SJakub Kruzik Level: intermediate 1648a71cb68SJakub Kruzik 1658a71cb68SJakub Kruzik .seealso: PCDEFLATION 1668a71cb68SJakub Kruzik @*/ 1678a71cb68SJakub Kruzik PetscErrorCode PCDeflationSetCorrectionFactor(PC pc,PetscScalar fact) 1688a71cb68SJakub Kruzik { 1698a71cb68SJakub Kruzik PetscErrorCode ierr; 1708a71cb68SJakub Kruzik 1718a71cb68SJakub Kruzik PetscFunctionBegin; 1728a71cb68SJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 1738a71cb68SJakub Kruzik PetscValidLogicalCollectiveScalar(pc,fact,2); 1748a71cb68SJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationSetCorrectionFactor_C",(PC,PetscScalar),(pc,fact));CHKERRQ(ierr); 1758a71cb68SJakub Kruzik PetscFunctionReturn(0); 1768a71cb68SJakub Kruzik } 1778a71cb68SJakub Kruzik 17839417d7eSJakub Kruzik static PetscErrorCode PCDeflationSetSpaceToCompute_Deflation(PC pc,PCDeflationSpaceType type,PetscInt size) 17939417d7eSJakub Kruzik { 18039417d7eSJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 18139417d7eSJakub Kruzik 18239417d7eSJakub Kruzik PetscFunctionBegin; 18339417d7eSJakub Kruzik if (type) def->spacetype = type; 18439417d7eSJakub Kruzik if (size > 0) def->spacesize = size; 18539417d7eSJakub Kruzik PetscFunctionReturn(0); 18639417d7eSJakub Kruzik } 18739417d7eSJakub Kruzik 18839417d7eSJakub Kruzik /*@ 18939417d7eSJakub Kruzik PCDeflationSetSpaceToCompute - Set deflation space type and size to compute. 19039417d7eSJakub Kruzik 191e26ad46dSJakub Kruzik Logically Collective 19239417d7eSJakub Kruzik 19339417d7eSJakub Kruzik Input Parameters: 19439417d7eSJakub Kruzik + pc - the preconditioner context 19539417d7eSJakub Kruzik . type - deflation space type to compute (or PETSC_IGNORE) 19639417d7eSJakub Kruzik - size - size of the space to compute (or PETSC_DEFAULT) 19739417d7eSJakub Kruzik 198e26ad46dSJakub Kruzik Options Database Keys: 199e26ad46dSJakub Kruzik + -pc_deflation_compute_space <haar> - compute PCDeflationSpaceType deflation space 200e26ad46dSJakub Kruzik - -pc_deflation_compute_space_size <1> - size of the deflation space 201e26ad46dSJakub Kruzik 20239417d7eSJakub Kruzik Notes: 20339417d7eSJakub Kruzik For wavelet-based deflation, size represents number of levels. 204e26ad46dSJakub Kruzik 20534a84908Sprj- The deflation space is computed in PCSetUp(). 20639417d7eSJakub Kruzik 20739417d7eSJakub Kruzik Level: intermediate 20839417d7eSJakub Kruzik 20993b79a5aSJakub Kruzik .seealso: PCDeflationSetLevels(), PCDEFLATION 21039417d7eSJakub Kruzik @*/ 21139417d7eSJakub Kruzik PetscErrorCode PCDeflationSetSpaceToCompute(PC pc,PCDeflationSpaceType type,PetscInt size) 21239417d7eSJakub Kruzik { 21339417d7eSJakub Kruzik PetscErrorCode ierr; 21439417d7eSJakub Kruzik 21539417d7eSJakub Kruzik PetscFunctionBegin; 21639417d7eSJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 21739417d7eSJakub Kruzik if (type) PetscValidLogicalCollectiveEnum(pc,type,2); 21839417d7eSJakub Kruzik if (size > 0) PetscValidLogicalCollectiveInt(pc,size,3); 21939417d7eSJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationSetSpaceToCompute_C",(PC,PCDeflationSpaceType,PetscInt),(pc,type,size));CHKERRQ(ierr); 22039417d7eSJakub Kruzik PetscFunctionReturn(0); 22139417d7eSJakub Kruzik } 2228513960bSJakub Kruzik 223e662bc50SJakub Kruzik static PetscErrorCode PCDeflationSetSpace_Deflation(PC pc,Mat W,PetscBool transpose) 224e662bc50SJakub Kruzik { 225e662bc50SJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 226e662bc50SJakub Kruzik PetscErrorCode ierr; 227e662bc50SJakub Kruzik 228e662bc50SJakub Kruzik PetscFunctionBegin; 22970f9219eSJakub Kruzik /* possibly allows W' = Wt (which is valid but not tested) */ 23070f9219eSJakub Kruzik ierr = PetscObjectReference((PetscObject)W);CHKERRQ(ierr); 231e662bc50SJakub Kruzik if (transpose) { 23270f9219eSJakub Kruzik ierr = MatDestroy(&def->Wt);CHKERRQ(ierr); 233e662bc50SJakub Kruzik def->Wt = W; 234e662bc50SJakub Kruzik } else { 23570f9219eSJakub Kruzik ierr = MatDestroy(&def->W);CHKERRQ(ierr); 236e662bc50SJakub Kruzik def->W = W; 237e662bc50SJakub Kruzik } 238e662bc50SJakub Kruzik PetscFunctionReturn(0); 239e662bc50SJakub Kruzik } 240e662bc50SJakub Kruzik 241e662bc50SJakub Kruzik /*@ 2427e9012c5SJakub Kruzik PCDeflationSetSpace - Set the deflation space matrix (or its (Hermitian) transpose). 243e662bc50SJakub Kruzik 244e26ad46dSJakub Kruzik Logically Collective 245e662bc50SJakub Kruzik 246e662bc50SJakub Kruzik Input Parameters: 247e662bc50SJakub Kruzik + pc - the preconditioner context 248e662bc50SJakub Kruzik . W - deflation matrix 249e26ad46dSJakub Kruzik - transpose - indicates that W is an explicit transpose of the deflation matrix 250e26ad46dSJakub Kruzik 251e26ad46dSJakub Kruzik Notes: 252e26ad46dSJakub Kruzik Setting W as a multipliplicative MATCOMPOSITE enables use of the multilevel 253e26ad46dSJakub Kruzik deflation. If W = W0*W1*W2*...*Wn, W0 is taken as the first deflation space and 254e26ad46dSJakub Kruzik the coarse problem (W0'*A*W0)^{-1} is again preconditioned by deflation with 255e26ad46dSJakub Kruzik W1 as the deflation matrix. This repeats until the maximum level set by 25693b79a5aSJakub Kruzik PCDeflationSetLevels() is reached or there are no more matrices available. 257e26ad46dSJakub Kruzik If there are matrices left after reaching the maximum level, 258e26ad46dSJakub Kruzik they are merged into a deflation matrix ...*W{n-1}*Wn. 259e662bc50SJakub Kruzik 260e662bc50SJakub Kruzik Level: intermediate 261e662bc50SJakub Kruzik 26293b79a5aSJakub Kruzik .seealso: PCDeflationSetLevels(), PCDEFLATION 263e662bc50SJakub Kruzik @*/ 264e662bc50SJakub Kruzik PetscErrorCode PCDeflationSetSpace(PC pc,Mat W,PetscBool transpose) 265e662bc50SJakub Kruzik { 266e662bc50SJakub Kruzik PetscErrorCode ierr; 267e662bc50SJakub Kruzik 268e662bc50SJakub Kruzik PetscFunctionBegin; 269e662bc50SJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 270e662bc50SJakub Kruzik PetscValidHeaderSpecific(W,MAT_CLASSID,2); 271e662bc50SJakub Kruzik PetscValidLogicalCollectiveBool(pc,transpose,3); 272e662bc50SJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationSetSpace_C",(PC,Mat,PetscBool),(pc,W,transpose));CHKERRQ(ierr); 273e662bc50SJakub Kruzik PetscFunctionReturn(0); 274e662bc50SJakub Kruzik } 275e662bc50SJakub Kruzik 2763cf3a049SJakub Kruzik static PetscErrorCode PCDeflationSetProjectionNullSpaceMat_Deflation(PC pc,Mat mat) 2773cf3a049SJakub Kruzik { 2783cf3a049SJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 2793cf3a049SJakub Kruzik PetscErrorCode ierr; 2803cf3a049SJakub Kruzik 2813cf3a049SJakub Kruzik PetscFunctionBegin; 28270f9219eSJakub Kruzik ierr = PetscObjectReference((PetscObject)mat);CHKERRQ(ierr); 2833cf3a049SJakub Kruzik ierr = MatDestroy(&def->WtA);CHKERRQ(ierr); 2843cf3a049SJakub Kruzik def->WtA = mat; 2853cf3a049SJakub Kruzik ierr = PetscLogObjectParent((PetscObject)pc,(PetscObject)def->WtA);CHKERRQ(ierr); 2863cf3a049SJakub Kruzik PetscFunctionReturn(0); 2873cf3a049SJakub Kruzik } 2883cf3a049SJakub Kruzik 2893cf3a049SJakub Kruzik /*@ 290e26ad46dSJakub Kruzik PCDeflationSetProjectionNullSpaceMat - Set the projection null space matrix (W'*A). 2913cf3a049SJakub Kruzik 292e26ad46dSJakub Kruzik Collective 2933cf3a049SJakub Kruzik 2943cf3a049SJakub Kruzik Input Parameters: 2953cf3a049SJakub Kruzik + pc - preconditioner context 2963cf3a049SJakub Kruzik - mat - projection null space matrix 2973cf3a049SJakub Kruzik 2983cf3a049SJakub Kruzik Level: developer 2993cf3a049SJakub Kruzik 3003cf3a049SJakub Kruzik .seealso: PCDEFLATION 3013cf3a049SJakub Kruzik @*/ 3023cf3a049SJakub Kruzik PetscErrorCode PCDeflationSetProjectionNullSpaceMat(PC pc,Mat mat) 3033cf3a049SJakub Kruzik { 3043cf3a049SJakub Kruzik PetscErrorCode ierr; 3053cf3a049SJakub Kruzik 3063cf3a049SJakub Kruzik PetscFunctionBegin; 3073cf3a049SJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 3083cf3a049SJakub Kruzik PetscValidHeaderSpecific(mat,MAT_CLASSID,2); 3093cf3a049SJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationSetProjectionNullSpaceMat_C",(PC,Mat),(pc,mat));CHKERRQ(ierr); 3103cf3a049SJakub Kruzik PetscFunctionReturn(0); 3113cf3a049SJakub Kruzik } 3123cf3a049SJakub Kruzik 313e924b002SJakub Kruzik static PetscErrorCode PCDeflationSetCoarseMat_Deflation(PC pc,Mat mat) 314e924b002SJakub Kruzik { 315e924b002SJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 316e924b002SJakub Kruzik PetscErrorCode ierr; 317e924b002SJakub Kruzik 318e924b002SJakub Kruzik PetscFunctionBegin; 31920cd032fSJakub Kruzik ierr = PetscObjectReference((PetscObject)mat);CHKERRQ(ierr); 320e924b002SJakub Kruzik ierr = MatDestroy(&def->WtAW);CHKERRQ(ierr); 321e924b002SJakub Kruzik def->WtAW = mat; 322e924b002SJakub Kruzik ierr = PetscLogObjectParent((PetscObject)pc,(PetscObject)def->WtAW);CHKERRQ(ierr); 323e924b002SJakub Kruzik PetscFunctionReturn(0); 324e924b002SJakub Kruzik } 325e924b002SJakub Kruzik 326e924b002SJakub Kruzik /*@ 327e26ad46dSJakub Kruzik PCDeflationSetCoarseMat - Set the coarse problem Mat. 328e924b002SJakub Kruzik 329e26ad46dSJakub Kruzik Collective 330e924b002SJakub Kruzik 331e924b002SJakub Kruzik Input Parameters: 332e924b002SJakub Kruzik + pc - preconditioner context 333e924b002SJakub Kruzik - mat - coarse problem mat 334e924b002SJakub Kruzik 335e924b002SJakub Kruzik Level: developer 336e924b002SJakub Kruzik 337e924b002SJakub Kruzik .seealso: PCDEFLATION 338e924b002SJakub Kruzik @*/ 339e924b002SJakub Kruzik PetscErrorCode PCDeflationSetCoarseMat(PC pc,Mat mat) 340e924b002SJakub Kruzik { 341e924b002SJakub Kruzik PetscErrorCode ierr; 342e924b002SJakub Kruzik 343e924b002SJakub Kruzik PetscFunctionBegin; 344e924b002SJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 345e924b002SJakub Kruzik PetscValidHeaderSpecific(mat,MAT_CLASSID,2); 346e924b002SJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationSetCoarseMat_C",(PC,Mat),(pc,mat));CHKERRQ(ierr); 347e924b002SJakub Kruzik PetscFunctionReturn(0); 348e924b002SJakub Kruzik } 349e924b002SJakub Kruzik 35098d6e3deSJakub Kruzik static PetscErrorCode PCDeflationGetCoarseKSP_Deflation(PC pc,KSP *ksp) 3515c0c31c5SJakub Kruzik { 3525c0c31c5SJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 3535c0c31c5SJakub Kruzik 3545c0c31c5SJakub Kruzik PetscFunctionBegin; 35598d6e3deSJakub Kruzik *ksp = def->WtAWinv; 3565c0c31c5SJakub Kruzik PetscFunctionReturn(0); 3575c0c31c5SJakub Kruzik } 3585c0c31c5SJakub Kruzik 3595c0c31c5SJakub Kruzik /*@ 3607e9012c5SJakub Kruzik PCDeflationGetCoarseKSP - Returns the coarse problem KSP. 3615c0c31c5SJakub Kruzik 36298d6e3deSJakub Kruzik Not Collective 3635c0c31c5SJakub Kruzik 3645c0c31c5SJakub Kruzik Input Parameters: 36598d6e3deSJakub Kruzik . pc - preconditioner context 3665c0c31c5SJakub Kruzik 367e26ad46dSJakub Kruzik Output Parameters: 36898d6e3deSJakub Kruzik . ksp - coarse problem KSP context 3695c0c31c5SJakub Kruzik 370e26ad46dSJakub Kruzik Level: advanced 37198d6e3deSJakub Kruzik 3728c4db21fSJakub Kruzik .seealso: PCDEFLATION 3735c0c31c5SJakub Kruzik @*/ 37498d6e3deSJakub Kruzik PetscErrorCode PCDeflationGetCoarseKSP(PC pc,KSP *ksp) 3755c0c31c5SJakub Kruzik { 3765c0c31c5SJakub Kruzik PetscErrorCode ierr; 3775c0c31c5SJakub Kruzik 3785c0c31c5SJakub Kruzik PetscFunctionBegin; 37922b0793eSJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 38098d6e3deSJakub Kruzik PetscValidPointer(ksp,2); 38198d6e3deSJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationGetCoarseKSP_C",(PC,KSP*),(pc,ksp));CHKERRQ(ierr); 38298d6e3deSJakub Kruzik PetscFunctionReturn(0); 38398d6e3deSJakub Kruzik } 38498d6e3deSJakub Kruzik 385268c6673SJakub Kruzik static PetscErrorCode PCDeflationGetPC_Deflation(PC pc,PC *apc) 386268c6673SJakub Kruzik { 387268c6673SJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 388268c6673SJakub Kruzik 389268c6673SJakub Kruzik PetscFunctionBegin; 390268c6673SJakub Kruzik *apc = def->pc; 391268c6673SJakub Kruzik PetscFunctionReturn(0); 392268c6673SJakub Kruzik } 393268c6673SJakub Kruzik 394268c6673SJakub Kruzik /*@ 3957e9012c5SJakub Kruzik PCDeflationGetPC - Returns the additional preconditioner M^{-1}. 396268c6673SJakub Kruzik 397268c6673SJakub Kruzik Not Collective 398268c6673SJakub Kruzik 399268c6673SJakub Kruzik Input Parameters: 400268c6673SJakub Kruzik . pc - the preconditioner context 401268c6673SJakub Kruzik 402e26ad46dSJakub Kruzik Output Parameters: 403268c6673SJakub Kruzik . apc - additional preconditioner 404268c6673SJakub Kruzik 405268c6673SJakub Kruzik Level: advanced 406268c6673SJakub Kruzik 4078c4db21fSJakub Kruzik .seealso: PCDEFLATION 408268c6673SJakub Kruzik @*/ 409268c6673SJakub Kruzik PetscErrorCode PCDeflationGetPC(PC pc,PC *apc) 410268c6673SJakub Kruzik { 411268c6673SJakub Kruzik PetscErrorCode ierr; 412268c6673SJakub Kruzik 413268c6673SJakub Kruzik PetscFunctionBegin; 414268c6673SJakub Kruzik PetscValidHeaderSpecific(pc,PC_CLASSID,1); 415064a246eSJacob Faibussowitsch PetscValidPointer(pc,1); 416268c6673SJakub Kruzik ierr = PetscTryMethod(pc,"PCDeflationGetPC_C",(PC,PC*),(pc,apc));CHKERRQ(ierr); 417268c6673SJakub Kruzik PetscFunctionReturn(0); 418268c6673SJakub Kruzik } 419268c6673SJakub Kruzik 42037eeb815SJakub Kruzik /* 421b27c8092SJakub Kruzik x <- x + W*(W'*A*W)^{-1}*W'*r = x + Q*r 422b27c8092SJakub Kruzik */ 423b27c8092SJakub Kruzik static PetscErrorCode PCPreSolve_Deflation(PC pc,KSP ksp,Vec b, Vec x) 424b27c8092SJakub Kruzik { 425b27c8092SJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 426b27c8092SJakub Kruzik Mat A; 427b27c8092SJakub Kruzik Vec r,w1,w2; 428b27c8092SJakub Kruzik PetscBool nonzero; 429b27c8092SJakub Kruzik PetscErrorCode ierr; 43037eeb815SJakub Kruzik 431b27c8092SJakub Kruzik PetscFunctionBegin; 432b27c8092SJakub Kruzik w1 = def->workcoarse[0]; 433b27c8092SJakub Kruzik w2 = def->workcoarse[1]; 434b27c8092SJakub Kruzik r = def->work; 435b27c8092SJakub Kruzik ierr = PCGetOperators(pc,NULL,&A);CHKERRQ(ierr); 43637eeb815SJakub Kruzik 437b27c8092SJakub Kruzik ierr = KSPGetInitialGuessNonzero(ksp,&nonzero);CHKERRQ(ierr); 438b27c8092SJakub Kruzik ierr = KSPSetInitialGuessNonzero(ksp,PETSC_TRUE);CHKERRQ(ierr); 439b27c8092SJakub Kruzik if (nonzero) { 440b27c8092SJakub Kruzik ierr = MatMult(A,x,r);CHKERRQ(ierr); /* r <- b - Ax */ 441b27c8092SJakub Kruzik ierr = VecAYPX(r,-1.0,b);CHKERRQ(ierr); 442b27c8092SJakub Kruzik } else { 443b27c8092SJakub Kruzik ierr = VecCopy(b,r);CHKERRQ(ierr); /* r <- b (x is 0) */ 444b27c8092SJakub Kruzik } 445b27c8092SJakub Kruzik 446a3177931SJakub Kruzik if (def->Wt) { 447a3177931SJakub Kruzik ierr = MatMult(def->Wt,r,w1);CHKERRQ(ierr); /* w1 <- W'*r */ 448a3177931SJakub Kruzik } else { 449a3177931SJakub Kruzik ierr = MatMultHermitianTranspose(def->W,r,w1);CHKERRQ(ierr); /* w1 <- W'*r */ 450a3177931SJakub Kruzik } 451b27c8092SJakub Kruzik ierr = KSPSolve(def->WtAWinv,w1,w2);CHKERRQ(ierr); /* w2 <- (W'*A*W)^{-1}*w1 */ 452b27c8092SJakub Kruzik ierr = MatMult(def->W,w2,r);CHKERRQ(ierr); /* r <- W*w2 */ 453b27c8092SJakub Kruzik ierr = VecAYPX(x,1.0,r);CHKERRQ(ierr); 454b27c8092SJakub Kruzik PetscFunctionReturn(0); 455b27c8092SJakub Kruzik } 45637eeb815SJakub Kruzik 457f8bf229cSJakub Kruzik /* 458f8bf229cSJakub Kruzik if (def->correct) { 459ae029463SJakub Kruzik z <- M^{-1}r - W*(W'*A*W)^{-1}*(W'*A*M^{-1}r - l*W'*r) = (P*M^{-1} + l*Q)*r 460f8bf229cSJakub Kruzik } else { 461ae029463SJakub Kruzik z <- M^{-1}*r - W*(W'*A*W)^{-1}*W'*A*M{-1}*r = P*M^{-1}*r 462f8bf229cSJakub Kruzik } 46337eeb815SJakub Kruzik */ 464f8bf229cSJakub Kruzik static PetscErrorCode PCApply_Deflation(PC pc,Vec r,Vec z) 465f8bf229cSJakub Kruzik { 466f8bf229cSJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 467f8bf229cSJakub Kruzik Mat A; 468f8bf229cSJakub Kruzik Vec u,w1,w2; 469f8bf229cSJakub Kruzik PetscErrorCode ierr; 470f8bf229cSJakub Kruzik 471f8bf229cSJakub Kruzik PetscFunctionBegin; 472f8bf229cSJakub Kruzik w1 = def->workcoarse[0]; 473f8bf229cSJakub Kruzik w2 = def->workcoarse[1]; 474f8bf229cSJakub Kruzik u = def->work; 475f8bf229cSJakub Kruzik ierr = PCGetOperators(pc,NULL,&A);CHKERRQ(ierr); 476f8bf229cSJakub Kruzik 477ae029463SJakub Kruzik ierr = PCApply(def->pc,r,z);CHKERRQ(ierr); /* z <- M^{-1}*r */ 47822b0793eSJakub Kruzik if (!def->init) { 479ae029463SJakub Kruzik ierr = MatMult(def->WtA,z,w1);CHKERRQ(ierr); /* w1 <- W'*A*z */ 480f8bf229cSJakub Kruzik if (def->correct) { 481ae029463SJakub Kruzik if (def->Wt) { 482ae029463SJakub Kruzik ierr = MatMult(def->Wt,r,w2);CHKERRQ(ierr); /* w2 <- W'*r */ 483ae029463SJakub Kruzik } else { 484a3177931SJakub Kruzik ierr = MatMultHermitianTranspose(def->W,r,w2);CHKERRQ(ierr); /* w2 <- W'*r */ 485f8bf229cSJakub Kruzik } 486ae029463SJakub Kruzik ierr = VecAXPY(w1,-1.0*def->correctfact,w2);CHKERRQ(ierr); /* w1 <- w1 - l*w2 */ 487f8bf229cSJakub Kruzik } 488f8bf229cSJakub Kruzik ierr = KSPSolve(def->WtAWinv,w1,w2);CHKERRQ(ierr); /* w2 <- (W'*A*W)^{-1}*w1 */ 489f8bf229cSJakub Kruzik ierr = MatMult(def->W,w2,u);CHKERRQ(ierr); /* u <- W*w2 */ 49022b0793eSJakub Kruzik ierr = VecAXPY(z,-1.0,u);CHKERRQ(ierr); /* z <- z - u */ 49122b0793eSJakub Kruzik } 492f8bf229cSJakub Kruzik PetscFunctionReturn(0); 493f8bf229cSJakub Kruzik } 494f8bf229cSJakub Kruzik 49537eeb815SJakub Kruzik static PetscErrorCode PCSetUp_Deflation(PC pc) 49637eeb815SJakub Kruzik { 497409a357bSJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 498409a357bSJakub Kruzik KSP innerksp; 499409a357bSJakub Kruzik PC pcinner; 500409a357bSJakub Kruzik Mat Amat,nextDef=NULL,*mats; 5017b3faf33SJakub Kruzik PetscInt i,m,red,size; 5027b3faf33SJakub Kruzik PetscMPIInt commsize; 503409a357bSJakub Kruzik PetscBool match,flgspd,transp=PETSC_FALSE; 504409a357bSJakub Kruzik MatCompositeType ctype; 505409a357bSJakub Kruzik MPI_Comm comm; 5066c93e71cSJakub Kruzik char prefix[128]=""; 50737eeb815SJakub Kruzik PetscErrorCode ierr; 50837eeb815SJakub Kruzik 50937eeb815SJakub Kruzik PetscFunctionBegin; 510409a357bSJakub Kruzik if (pc->setupcalled) PetscFunctionReturn(0); 511409a357bSJakub Kruzik ierr = PetscObjectGetComm((PetscObject)pc,&comm);CHKERRQ(ierr); 512f8bf229cSJakub Kruzik ierr = PCGetOperators(pc,NULL,&Amat);CHKERRQ(ierr); 5136c93e71cSJakub Kruzik if (!def->lvl && !def->prefix) { 5146c93e71cSJakub Kruzik ierr = PCGetOptionsPrefix(pc,&def->prefix);CHKERRQ(ierr); 5156c93e71cSJakub Kruzik } 5166c93e71cSJakub Kruzik if (def->lvl) { 517f44b4ef6SJakub Kruzik ierr = PetscSNPrintf(prefix,sizeof(prefix),"%d_",(int)def->lvl);CHKERRQ(ierr); 5186c93e71cSJakub Kruzik } 519f8bf229cSJakub Kruzik 520f8bf229cSJakub Kruzik /* compute a deflation space */ 521409a357bSJakub Kruzik if (def->W || def->Wt) { 522409a357bSJakub Kruzik def->spacetype = PC_DEFLATION_SPACE_USER; 523409a357bSJakub Kruzik } else { 524e53e0a0dSJakub Kruzik ierr = PCDeflationComputeSpace(pc);CHKERRQ(ierr); 52537eeb815SJakub Kruzik } 52637eeb815SJakub Kruzik 527409a357bSJakub Kruzik /* nested deflation */ 528409a357bSJakub Kruzik if (def->W) { 529409a357bSJakub Kruzik ierr = PetscObjectTypeCompare((PetscObject)def->W,MATCOMPOSITE,&match);CHKERRQ(ierr); 530409a357bSJakub Kruzik if (match) { 531409a357bSJakub Kruzik ierr = MatCompositeGetType(def->W,&ctype);CHKERRQ(ierr); 532409a357bSJakub Kruzik ierr = MatCompositeGetNumberMat(def->W,&size);CHKERRQ(ierr); 53337eeb815SJakub Kruzik } 534409a357bSJakub Kruzik } else { 535a3177931SJakub Kruzik ierr = MatCreateHermitianTranspose(def->Wt,&def->W);CHKERRQ(ierr); 536409a357bSJakub Kruzik ierr = PetscObjectTypeCompare((PetscObject)def->Wt,MATCOMPOSITE,&match);CHKERRQ(ierr); 537409a357bSJakub Kruzik if (match) { 538409a357bSJakub Kruzik ierr = MatCompositeGetType(def->Wt,&ctype);CHKERRQ(ierr); 539409a357bSJakub Kruzik ierr = MatCompositeGetNumberMat(def->Wt,&size);CHKERRQ(ierr); 540409a357bSJakub Kruzik } 541409a357bSJakub Kruzik transp = PETSC_TRUE; 542409a357bSJakub Kruzik } 543409a357bSJakub Kruzik if (match && ctype == MAT_COMPOSITE_MULTIPLICATIVE) { 544409a357bSJakub Kruzik if (!transp) { 5456c93e71cSJakub Kruzik if (def->lvl < def->maxlvl) { 54628da0170SJakub Kruzik ierr = PetscMalloc1(size,&mats);CHKERRQ(ierr); 547409a357bSJakub Kruzik for (i=0; i<size; i++) { 548409a357bSJakub Kruzik ierr = MatCompositeGetMat(def->W,i,&mats[i]);CHKERRQ(ierr); 549409a357bSJakub Kruzik } 550409a357bSJakub Kruzik size -= 1; 551409a357bSJakub Kruzik ierr = MatDestroy(&def->W);CHKERRQ(ierr); 552409a357bSJakub Kruzik def->W = mats[size]; 553409a357bSJakub Kruzik ierr = PetscObjectReference((PetscObject)mats[size]);CHKERRQ(ierr); 554409a357bSJakub Kruzik if (size > 1) { 555409a357bSJakub Kruzik ierr = MatCreateComposite(comm,size,mats,&nextDef);CHKERRQ(ierr); 556409a357bSJakub Kruzik ierr = MatCompositeSetType(nextDef,MAT_COMPOSITE_MULTIPLICATIVE);CHKERRQ(ierr); 557409a357bSJakub Kruzik } else { 558409a357bSJakub Kruzik nextDef = mats[0]; 559409a357bSJakub Kruzik ierr = PetscObjectReference((PetscObject)mats[0]);CHKERRQ(ierr); 560409a357bSJakub Kruzik } 56128da0170SJakub Kruzik ierr = PetscFree(mats);CHKERRQ(ierr); 562409a357bSJakub Kruzik } else { 5631fdb00f9SJakub Kruzik /* TODO test merge side performance */ 564409a357bSJakub Kruzik /* ierr = MatCompositeSetMergeType(def->W,MAT_COMPOSITE_MERGE_LEFT);CHKERRQ(ierr); */ 565409a357bSJakub Kruzik ierr = MatCompositeMerge(def->W);CHKERRQ(ierr); 566409a357bSJakub Kruzik } 56728da0170SJakub Kruzik } else { 5686c93e71cSJakub Kruzik if (def->lvl < def->maxlvl) { 56928da0170SJakub Kruzik ierr = PetscMalloc1(size,&mats);CHKERRQ(ierr); 57028da0170SJakub Kruzik for (i=0; i<size; i++) { 57128da0170SJakub Kruzik ierr = MatCompositeGetMat(def->Wt,i,&mats[i]);CHKERRQ(ierr); 57228da0170SJakub Kruzik } 57328da0170SJakub Kruzik size -= 1; 57428da0170SJakub Kruzik ierr = MatDestroy(&def->Wt);CHKERRQ(ierr); 57528da0170SJakub Kruzik def->Wt = mats[0]; 57628da0170SJakub Kruzik ierr = PetscObjectReference((PetscObject)mats[0]);CHKERRQ(ierr); 57728da0170SJakub Kruzik if (size > 1) { 57828da0170SJakub Kruzik ierr = MatCreateComposite(comm,size,&mats[1],&nextDef);CHKERRQ(ierr); 57928da0170SJakub Kruzik ierr = MatCompositeSetType(nextDef,MAT_COMPOSITE_MULTIPLICATIVE);CHKERRQ(ierr); 58028da0170SJakub Kruzik } else { 58128da0170SJakub Kruzik nextDef = mats[1]; 58228da0170SJakub Kruzik ierr = PetscObjectReference((PetscObject)mats[1]);CHKERRQ(ierr); 583409a357bSJakub Kruzik } 584409a357bSJakub Kruzik ierr = PetscFree(mats);CHKERRQ(ierr); 58528da0170SJakub Kruzik } else { 58628da0170SJakub Kruzik /* ierr = MatCompositeSetMergeType(def->W,MAT_COMPOSITE_MERGE_LEFT);CHKERRQ(ierr); */ 58728da0170SJakub Kruzik ierr = MatCompositeMerge(def->Wt);CHKERRQ(ierr); 58828da0170SJakub Kruzik } 58928da0170SJakub Kruzik } 59028da0170SJakub Kruzik } 59128da0170SJakub Kruzik 59228da0170SJakub Kruzik if (transp) { 59328da0170SJakub Kruzik ierr = MatDestroy(&def->W);CHKERRQ(ierr); 594a3177931SJakub Kruzik ierr = MatHermitianTranspose(def->Wt,MAT_INITIAL_MATRIX,&def->W);CHKERRQ(ierr); 595409a357bSJakub Kruzik } 596409a357bSJakub Kruzik 597ae029463SJakub Kruzik /* assemble WtA */ 598ae029463SJakub Kruzik if (!def->WtA) { 599ae029463SJakub Kruzik if (def->Wt) { 600ae029463SJakub Kruzik ierr = MatMatMult(def->Wt,Amat,MAT_INITIAL_MATRIX,PETSC_DEFAULT,&def->WtA);CHKERRQ(ierr); 601ae029463SJakub Kruzik } else { 602a3177931SJakub Kruzik #if defined(PETSC_USE_COMPLEX) 603a3177931SJakub Kruzik ierr = MatHermitianTranspose(def->W,MAT_INITIAL_MATRIX,&def->Wt);CHKERRQ(ierr); 6049e56ec8aSJakub Kruzik ierr = MatMatMult(def->Wt,Amat,MAT_INITIAL_MATRIX,PETSC_DEFAULT,&def->WtA);CHKERRQ(ierr); 605a3177931SJakub Kruzik #else 606ae029463SJakub Kruzik ierr = MatTransposeMatMult(def->W,Amat,MAT_INITIAL_MATRIX,PETSC_DEFAULT,&def->WtA);CHKERRQ(ierr); 607a3177931SJakub Kruzik #endif 608ae029463SJakub Kruzik } 609ae029463SJakub Kruzik } 610409a357bSJakub Kruzik /* setup coarse problem */ 611409a357bSJakub Kruzik if (!def->WtAWinv) { 61228da0170SJakub Kruzik ierr = MatGetSize(def->W,NULL,&m);CHKERRQ(ierr); 613409a357bSJakub Kruzik if (!def->WtAW) { 614ae029463SJakub Kruzik ierr = MatMatMult(def->WtA,def->W,MAT_INITIAL_MATRIX,PETSC_DEFAULT,&def->WtAW);CHKERRQ(ierr); 615409a357bSJakub Kruzik /* TODO create MatInheritOption(Mat,MatOption) */ 616409a357bSJakub Kruzik ierr = MatGetOption(Amat,MAT_SPD,&flgspd);CHKERRQ(ierr); 617409a357bSJakub Kruzik ierr = MatSetOption(def->WtAW,MAT_SPD,flgspd);CHKERRQ(ierr); 61876bd3646SJed Brown if (PetscDefined(USE_DEBUG)) { 619ae029463SJakub Kruzik /* Check columns of W are not in kernel of A */ 620409a357bSJakub Kruzik PetscReal *norms; 621409a357bSJakub Kruzik ierr = PetscMalloc1(m,&norms);CHKERRQ(ierr); 622409a357bSJakub Kruzik ierr = MatGetColumnNorms(def->WtAW,NORM_INFINITY,norms);CHKERRQ(ierr); 623409a357bSJakub Kruzik for (i=0; i<m; i++) { 624409a357bSJakub Kruzik if (norms[i] < 100*PETSC_MACHINE_EPSILON) { 625409a357bSJakub Kruzik SETERRQ1(comm,PETSC_ERR_SUP,"Column %D of W is in kernel of A.",i); 626409a357bSJakub Kruzik } 627409a357bSJakub Kruzik } 628409a357bSJakub Kruzik ierr = PetscFree(norms);CHKERRQ(ierr); 629377006c5SJakub Kruzik } 630409a357bSJakub Kruzik } else { 631409a357bSJakub Kruzik ierr = MatGetOption(def->WtAW,MAT_SPD,&flgspd);CHKERRQ(ierr); 632409a357bSJakub Kruzik } 6331fdb00f9SJakub Kruzik /* TODO use MATINV ? */ 634409a357bSJakub Kruzik ierr = KSPCreate(comm,&def->WtAWinv);CHKERRQ(ierr); 635409a357bSJakub Kruzik ierr = KSPSetOperators(def->WtAWinv,def->WtAW,def->WtAW);CHKERRQ(ierr); 636409a357bSJakub Kruzik ierr = KSPGetPC(def->WtAWinv,&pcinner);CHKERRQ(ierr); 637557a2f7dSJakub Kruzik /* Setup KSP and PC */ 638557a2f7dSJakub Kruzik if (nextDef) { /* next level for multilevel deflation */ 639557a2f7dSJakub Kruzik innerksp = def->WtAWinv; 640557a2f7dSJakub Kruzik /* set default KSPtype */ 641557a2f7dSJakub Kruzik if (!def->ksptype) { 642557a2f7dSJakub Kruzik def->ksptype = KSPFGMRES; 643557a2f7dSJakub Kruzik if (flgspd) { /* SPD system */ 644557a2f7dSJakub Kruzik def->ksptype = KSPFCG; 645557a2f7dSJakub Kruzik } 646557a2f7dSJakub Kruzik } 647ae029463SJakub Kruzik ierr = KSPSetType(innerksp,def->ksptype);CHKERRQ(ierr); /* TODO iherit from KSP + tolerances */ 648557a2f7dSJakub Kruzik ierr = PCSetType(pcinner,PCDEFLATION);CHKERRQ(ierr); /* TODO create coarse preconditinoner M_c = WtMW ? */ 649557a2f7dSJakub Kruzik ierr = PCDeflationSetSpace(pcinner,nextDef,transp);CHKERRQ(ierr); 65093b79a5aSJakub Kruzik ierr = PCDeflationSetLevels_Deflation(pcinner,def->lvl+1,def->maxlvl);CHKERRQ(ierr); 651ae029463SJakub Kruzik /* inherit options */ 6526c93e71cSJakub Kruzik if (def->prefix) ((PC_Deflation*)(pcinner->data))->prefix = def->prefix; 6539f604af8SJakub Kruzik ((PC_Deflation*)(pcinner->data))->init = def->init; 654557a2f7dSJakub Kruzik ((PC_Deflation*)(pcinner->data))->ksptype = def->ksptype; 655557a2f7dSJakub Kruzik ((PC_Deflation*)(pcinner->data))->correct = def->correct; 6569f604af8SJakub Kruzik ((PC_Deflation*)(pcinner->data))->correctfact = def->correctfact; 6579f604af8SJakub Kruzik ((PC_Deflation*)(pcinner->data))->reductionfact = def->reductionfact; 658557a2f7dSJakub Kruzik ierr = MatDestroy(&nextDef);CHKERRQ(ierr); 659557a2f7dSJakub Kruzik } else { /* the last level */ 660557a2f7dSJakub Kruzik ierr = KSPSetType(def->WtAWinv,KSPPREONLY);CHKERRQ(ierr); 661409a357bSJakub Kruzik ierr = PCSetType(pcinner,PCTELESCOPE);CHKERRQ(ierr); 6626c93e71cSJakub Kruzik /* do not overwrite PCTELESCOPE */ 6636c93e71cSJakub Kruzik if (def->prefix) { 6646c93e71cSJakub Kruzik ierr = KSPSetOptionsPrefix(def->WtAWinv,def->prefix);CHKERRQ(ierr); 665ac66f006SJakub Kruzik } 666e63c2c6dSJakub Kruzik ierr = KSPAppendOptionsPrefix(def->WtAWinv,"deflation_tel_");CHKERRQ(ierr); 667ac66f006SJakub Kruzik ierr = PCSetFromOptions(pcinner);CHKERRQ(ierr); 668b2f12e24SJakub Kruzik ierr = PetscObjectTypeCompare((PetscObject)pcinner,PCTELESCOPE,&match);CHKERRQ(ierr); 669b2f12e24SJakub Kruzik if (!match) SETERRQ(comm,PETSC_ERR_SUP,"User can not owerwrite PCTELESCOPE on bottom level, use reduction factor = 1 instead."); 670409a357bSJakub Kruzik /* Reduction factor choice */ 671409a357bSJakub Kruzik red = def->reductionfact; 672409a357bSJakub Kruzik if (red < 0) { 673ffc4695bSBarry Smith ierr = MPI_Comm_size(comm,&commsize);CHKERRMPI(ierr); 674*faa75363SBarry Smith red = PetscCeilInt(commsize,PetscCeilInt(m,commsize)); 675409a357bSJakub Kruzik ierr = PetscObjectTypeCompareAny((PetscObject)(def->WtAW),&match,MATSEQDENSE,MATMPIDENSE,MATDENSE,"");CHKERRQ(ierr); 676409a357bSJakub Kruzik if (match) red = commsize; 6776c93e71cSJakub Kruzik ierr = PetscInfo1(pc,"Auto choosing reduction factor %D\n",red);CHKERRQ(ierr); 678409a357bSJakub Kruzik } 679409a357bSJakub Kruzik ierr = PCTelescopeSetReductionFactor(pcinner,red);CHKERRQ(ierr); 680ac66f006SJakub Kruzik ierr = PCSetUp(pcinner);CHKERRQ(ierr); 681409a357bSJakub Kruzik ierr = PCTelescopeGetKSP(pcinner,&innerksp);CHKERRQ(ierr); 682ac66f006SJakub Kruzik if (innerksp) { 683409a357bSJakub Kruzik ierr = KSPGetPC(innerksp,&pcinner);CHKERRQ(ierr); 684ac66f006SJakub Kruzik ierr = PCSetType(pcinner,PCLU);CHKERRQ(ierr); 685481b7641SJakub Kruzik #if defined(PETSC_HAVE_SUPERLU) 686481b7641SJakub Kruzik ierr = MatGetFactorAvailable(def->WtAW,MATSOLVERSUPERLU,MAT_FACTOR_LU,&match);CHKERRQ(ierr); 687481b7641SJakub Kruzik if (match) { 688ac66f006SJakub Kruzik ierr = PCFactorSetMatSolverType(pcinner,MATSOLVERSUPERLU);CHKERRQ(ierr); 689481b7641SJakub Kruzik } 690481b7641SJakub Kruzik #endif 691481b7641SJakub Kruzik #if defined(PETSC_HAVE_SUPERLU_DIST) 692481b7641SJakub Kruzik ierr = MatGetFactorAvailable(def->WtAW,MATSOLVERSUPERLU_DIST,MAT_FACTOR_LU,&match);CHKERRQ(ierr); 693481b7641SJakub Kruzik if (match) { 694ac66f006SJakub Kruzik ierr = PCFactorSetMatSolverType(pcinner,MATSOLVERSUPERLU_DIST);CHKERRQ(ierr); 695409a357bSJakub Kruzik } 696481b7641SJakub Kruzik #endif 697409a357bSJakub Kruzik } 698557a2f7dSJakub Kruzik } 699557a2f7dSJakub Kruzik 700557a2f7dSJakub Kruzik if (innerksp) { 7016c93e71cSJakub Kruzik if (def->prefix) { 7026c93e71cSJakub Kruzik ierr = KSPSetOptionsPrefix(innerksp,def->prefix);CHKERRQ(ierr); 703e63c2c6dSJakub Kruzik ierr = KSPAppendOptionsPrefix(innerksp,"deflation_");CHKERRQ(ierr); 7046c93e71cSJakub Kruzik } else { 705e63c2c6dSJakub Kruzik ierr = KSPSetOptionsPrefix(innerksp,"deflation_");CHKERRQ(ierr); 7066c93e71cSJakub Kruzik } 7076c93e71cSJakub Kruzik ierr = KSPAppendOptionsPrefix(innerksp,prefix);CHKERRQ(ierr); 708557a2f7dSJakub Kruzik ierr = KSPSetFromOptions(innerksp);CHKERRQ(ierr); 709557a2f7dSJakub Kruzik ierr = KSPSetUp(innerksp);CHKERRQ(ierr); 710ac66f006SJakub Kruzik } 711409a357bSJakub Kruzik } 712557a2f7dSJakub Kruzik ierr = KSPSetFromOptions(def->WtAWinv);CHKERRQ(ierr); 713557a2f7dSJakub Kruzik ierr = KSPSetUp(def->WtAWinv);CHKERRQ(ierr); 714409a357bSJakub Kruzik 7151fdb00f9SJakub Kruzik /* create preconditioner */ 71622b0793eSJakub Kruzik if (!def->pc) { 71722b0793eSJakub Kruzik ierr = PCCreate(comm,&def->pc);CHKERRQ(ierr); 71822b0793eSJakub Kruzik ierr = PCSetOperators(def->pc,Amat,Amat);CHKERRQ(ierr); 71922b0793eSJakub Kruzik ierr = PCSetType(def->pc,PCNONE);CHKERRQ(ierr); 7206c93e71cSJakub Kruzik if (def->prefix) { 7216c93e71cSJakub Kruzik ierr = PCSetOptionsPrefix(def->pc,def->prefix);CHKERRQ(ierr); 72222b0793eSJakub Kruzik } 723e63c2c6dSJakub Kruzik ierr = PCAppendOptionsPrefix(def->pc,"deflation_");CHKERRQ(ierr); 7246c93e71cSJakub Kruzik ierr = PCAppendOptionsPrefix(def->pc,prefix);CHKERRQ(ierr); 7256c93e71cSJakub Kruzik ierr = PCAppendOptionsPrefix(def->pc,"pc_");CHKERRQ(ierr); 72622b0793eSJakub Kruzik ierr = PCSetFromOptions(def->pc);CHKERRQ(ierr); 72722b0793eSJakub Kruzik ierr = PCSetUp(def->pc);CHKERRQ(ierr); 72822b0793eSJakub Kruzik } 72922b0793eSJakub Kruzik 730f8bf229cSJakub Kruzik /* create work vecs */ 731f8bf229cSJakub Kruzik ierr = MatCreateVecs(Amat,NULL,&def->work);CHKERRQ(ierr); 732f8bf229cSJakub Kruzik ierr = KSPCreateVecs(def->WtAWinv,2,&def->workcoarse,0,NULL);CHKERRQ(ierr); 73337eeb815SJakub Kruzik PetscFunctionReturn(0); 73437eeb815SJakub Kruzik } 735b30d4775SJakub Kruzik 73637eeb815SJakub Kruzik static PetscErrorCode PCReset_Deflation(PC pc) 73737eeb815SJakub Kruzik { 738b30d4775SJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 73937eeb815SJakub Kruzik PetscErrorCode ierr; 74037eeb815SJakub Kruzik 74137eeb815SJakub Kruzik PetscFunctionBegin; 742b30d4775SJakub Kruzik ierr = VecDestroy(&def->work);CHKERRQ(ierr); 743b30d4775SJakub Kruzik ierr = VecDestroyVecs(2,&def->workcoarse);CHKERRQ(ierr); 744b30d4775SJakub Kruzik ierr = MatDestroy(&def->W);CHKERRQ(ierr); 745b30d4775SJakub Kruzik ierr = MatDestroy(&def->Wt);CHKERRQ(ierr); 746ae029463SJakub Kruzik ierr = MatDestroy(&def->WtA);CHKERRQ(ierr); 747b30d4775SJakub Kruzik ierr = MatDestroy(&def->WtAW);CHKERRQ(ierr); 748b30d4775SJakub Kruzik ierr = KSPDestroy(&def->WtAWinv);CHKERRQ(ierr); 74922b0793eSJakub Kruzik ierr = PCDestroy(&def->pc);CHKERRQ(ierr); 75037eeb815SJakub Kruzik PetscFunctionReturn(0); 75137eeb815SJakub Kruzik } 75237eeb815SJakub Kruzik 75337eeb815SJakub Kruzik static PetscErrorCode PCDestroy_Deflation(PC pc) 75437eeb815SJakub Kruzik { 75537eeb815SJakub Kruzik PetscErrorCode ierr; 75637eeb815SJakub Kruzik 75737eeb815SJakub Kruzik PetscFunctionBegin; 75837eeb815SJakub Kruzik ierr = PCReset_Deflation(pc);CHKERRQ(ierr); 75937eeb815SJakub Kruzik ierr = PetscFree(pc->data);CHKERRQ(ierr); 76037eeb815SJakub Kruzik PetscFunctionReturn(0); 76137eeb815SJakub Kruzik } 76237eeb815SJakub Kruzik 7638513960bSJakub Kruzik static PetscErrorCode PCView_Deflation(PC pc,PetscViewer viewer) 7648513960bSJakub Kruzik { 7658513960bSJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 7661ac6250aSJakub Kruzik PetscInt its; 7678513960bSJakub Kruzik PetscBool iascii; 7688513960bSJakub Kruzik PetscErrorCode ierr; 7698513960bSJakub Kruzik 7708513960bSJakub Kruzik PetscFunctionBegin; 7718513960bSJakub Kruzik ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERASCII,&iascii);CHKERRQ(ierr); 7728513960bSJakub Kruzik if (iascii) { 7738513960bSJakub Kruzik if (def->correct) { 7741ac6250aSJakub Kruzik ierr = PetscViewerASCIIPrintf(viewer,"using CP correction, factor = %g+%gi\n", 7751ac6250aSJakub Kruzik (double)PetscRealPart(def->correctfact), 7761ac6250aSJakub Kruzik (double)PetscImaginaryPart(def->correctfact));CHKERRQ(ierr); 7778513960bSJakub Kruzik } 7786c93e71cSJakub Kruzik if (!def->lvl) { 7791ac6250aSJakub Kruzik ierr = PetscViewerASCIIPrintf(viewer,"deflation space type: %s\n",PCDeflationSpaceTypes[def->spacetype]);CHKERRQ(ierr); 7808513960bSJakub Kruzik } 7818513960bSJakub Kruzik 7821ac6250aSJakub Kruzik ierr = PetscViewerASCIIPrintf(viewer,"--- Additional PC:\n");CHKERRQ(ierr); 78322b0793eSJakub Kruzik ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr); 78422b0793eSJakub Kruzik ierr = PCView(def->pc,viewer);CHKERRQ(ierr); 78522b0793eSJakub Kruzik ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr); 78622b0793eSJakub Kruzik 7871ac6250aSJakub Kruzik ierr = PetscViewerASCIIPrintf(viewer,"--- Coarse problem solver:\n");CHKERRQ(ierr); 7888513960bSJakub Kruzik ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr); 7891ac6250aSJakub Kruzik ierr = KSPGetTotalIterations(def->WtAWinv,&its);CHKERRQ(ierr); 7901ac6250aSJakub Kruzik ierr = PetscViewerASCIIPrintf(viewer,"total number of iterations: %D\n",its);CHKERRQ(ierr); 7918513960bSJakub Kruzik ierr = KSPView(def->WtAWinv,viewer);CHKERRQ(ierr); 7928513960bSJakub Kruzik ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr); 7938513960bSJakub Kruzik } 7948513960bSJakub Kruzik PetscFunctionReturn(0); 7958513960bSJakub Kruzik } 7968513960bSJakub Kruzik 79737eeb815SJakub Kruzik static PetscErrorCode PCSetFromOptions_Deflation(PetscOptionItems *PetscOptionsObject,PC pc) 79837eeb815SJakub Kruzik { 799880d05ceSJakub Kruzik PC_Deflation *def = (PC_Deflation*)pc->data; 80037eeb815SJakub Kruzik PetscErrorCode ierr; 80137eeb815SJakub Kruzik 80237eeb815SJakub Kruzik PetscFunctionBegin; 80337eeb815SJakub Kruzik ierr = PetscOptionsHead(PetscOptionsObject,"Deflation options");CHKERRQ(ierr); 804a122ebaeSJakub Kruzik ierr = PetscOptionsBool("-pc_deflation_init_only","Use only initialization step - Initdef","PCDeflationSetInitOnly",def->init,&def->init,NULL);CHKERRQ(ierr); 80593b79a5aSJakub Kruzik ierr = PetscOptionsInt("-pc_deflation_levels","Maximum of deflation levels","PCDeflationSetLevels",def->maxlvl,&def->maxlvl,NULL);CHKERRQ(ierr); 806859a873cSJakub Kruzik ierr = PetscOptionsInt("-pc_deflation_reduction_factor","Reduction factor for coarse problem solution using PCTELESCOPE","PCDeflationSetReductionFactor",def->reductionfact,&def->reductionfact,NULL);CHKERRQ(ierr); 8078a71cb68SJakub Kruzik ierr = PetscOptionsBool("-pc_deflation_correction","Add coarse problem correction Q to P","PCDeflationSetCorrectionFactor",def->correct,&def->correct,NULL);CHKERRQ(ierr); 8088a71cb68SJakub Kruzik ierr = PetscOptionsScalar("-pc_deflation_correction_factor","Set multiple of Q to use as coarse problem correction","PCDeflationSetCorrectionFactor",def->correctfact,&def->correctfact,NULL);CHKERRQ(ierr); 809880d05ceSJakub Kruzik ierr = PetscOptionsEnum("-pc_deflation_compute_space","Compute deflation space","PCDeflationSetSpace",PCDeflationSpaceTypes,(PetscEnum)def->spacetype,(PetscEnum*)&def->spacetype,NULL);CHKERRQ(ierr); 810880d05ceSJakub Kruzik ierr = PetscOptionsInt("-pc_deflation_compute_space_size","Set size of the deflation space to compute","PCDeflationSetSpace",def->spacesize,&def->spacesize,NULL);CHKERRQ(ierr); 811880d05ceSJakub Kruzik ierr = PetscOptionsBool("-pc_deflation_space_extend","Extend deflation space instead of truncating (wavelets)","PCDeflation",def->extendsp,&def->extendsp,NULL);CHKERRQ(ierr); 81237eeb815SJakub Kruzik ierr = PetscOptionsTail();CHKERRQ(ierr); 81337eeb815SJakub Kruzik PetscFunctionReturn(0); 81437eeb815SJakub Kruzik } 81537eeb815SJakub Kruzik 81637eeb815SJakub Kruzik /*MC 817e26ad46dSJakub Kruzik PCDEFLATION - Deflation preconditioner shifts (deflates) part of the spectrum to zero or to a predefined value. 81837eeb815SJakub Kruzik 819e26ad46dSJakub Kruzik Options Database Keys: 820e26ad46dSJakub Kruzik + -pc_deflation_init_only <false> - if true computes only the special guess 821e26ad46dSJakub Kruzik . -pc_deflation_max_lvl <0> - maximum number of levels for multilevel deflation 82271f2caa7Sprj- . -pc_deflation_reduction_factor <\-1> - reduction factor on bottom level coarse problem for PCTELESCOPE (default based on the size of the coarse problem) 823e26ad46dSJakub Kruzik . -pc_deflation_correction <false> - if true apply coarse problem correction 824e26ad46dSJakub Kruzik . -pc_deflation_correction_factor <1.0> - sets coarse problem correction factor 825e26ad46dSJakub Kruzik . -pc_deflation_compute_space <haar> - compute PCDeflationSpaceType deflation space 826e26ad46dSJakub Kruzik - -pc_deflation_compute_space_size <1> - size of the deflation space (corresponds to number of levels for wavelet-based deflation) 82737eeb815SJakub Kruzik 82837eeb815SJakub Kruzik Notes: 8297e9012c5SJakub Kruzik Given a (complex - transpose is always Hermitian) full rank deflation matrix W, the deflation (introduced in [1,2]) 830e26ad46dSJakub Kruzik preconditioner uses projections Q = W*(W'*A*W)^{-1}*W' and P = I - Q*A, where A is pmat. 831e26ad46dSJakub Kruzik 832e26ad46dSJakub Kruzik The deflation computes initial guess x0 = x_{-1} - Q*r_{-1}, which is the solution on the deflation space. 833e26ad46dSJakub Kruzik If PCDeflationSetInitOnly() or -pc_deflation_init_only is set to PETSC_TRUE (InitDef scheme), the application of the 834e26ad46dSJakub Kruzik preconditioner consists only of application of the additional preconditioner M^{-1}. Otherwise, the preconditioner 8351fdb00f9SJakub Kruzik application consists of P*M^{-1} + factor*Q. The first part of the preconditioner (PM^{-1}) shifts some eigenvalues 836e26ad46dSJakub Kruzik to zero while the addition of the coarse problem correction (factor*Q) makes the preconditioner to shift some 837e26ad46dSJakub Kruzik eigenvalues to the given factor. The InitDef scheme is recommended for deflation using high accuracy estimates 838e26ad46dSJakub Kruzik of eigenvectors of A when it exhibits similar convergence to the full deflation but is cheaper. 839e26ad46dSJakub Kruzik 840e26ad46dSJakub Kruzik The deflation matrix is by default automatically computed. The type of deflation matrix and its size to compute can 841e26ad46dSJakub Kruzik be controlled by PCDeflationSetSpaceToCompute() or -pc_deflation_compute_space and -pc_deflation_compute_space_size. 842e26ad46dSJakub Kruzik User can set an arbitrary deflation space matrix with PCDeflationSetSpace(). If the deflation matrix 843e26ad46dSJakub Kruzik is a multiplicative MATCOMPOSITE, a multilevel deflation [3] is used. The first matrix in the composite is used as the 8441fdb00f9SJakub Kruzik deflation matrix, and the coarse problem (W'*A*W)^{-1} is solved by KSPFCG (if A is MAT_SPD) or KSPFGMRES preconditioned 845e26ad46dSJakub Kruzik by deflation with deflation matrix being the next matrix in the MATCOMPOSITE. This scheme repeats until the maximum 8461fdb00f9SJakub Kruzik level is reached or there are no more matrices. If the maximum level is reached, the remaining matrices are merged 8471fdb00f9SJakub Kruzik (multiplied) to create the last deflation matrix. The maximum level defaults to 0 and can be set by 84893b79a5aSJakub Kruzik PCDeflationSetLevels() or by -pc_deflation_levels. 849e26ad46dSJakub Kruzik 850e63c2c6dSJakub Kruzik The coarse problem KSP can be controlled from the command line with prefix -deflation_ for the first level and -deflation_[lvl-1] 8516c93e71cSJakub Kruzik from the second level onward. You can also use 8528c4db21fSJakub Kruzik PCDeflationGetCoarseKSP() to control it from code. The bottom level KSP defaults to 8531fdb00f9SJakub Kruzik KSPPREONLY with PCLU direct solver (MATSOLVERSUPERLU/MATSOLVERSUPERLU_DIST if available) wrapped into PCTELESCOPE. 854481b7641SJakub Kruzik For convenience, the reduction factor can be set by PCDeflationSetReductionFactor() 855481b7641SJakub Kruzik or -pc_deflation_recduction_factor. The default is chosen heuristically based on the coarse problem size. 856e26ad46dSJakub Kruzik 857e63c2c6dSJakub Kruzik The additional preconditioner can be controlled from command line with prefix -deflation_[lvl]_pc (same rules used for 858e63c2c6dSJakub Kruzik coarse problem KSP apply for [lvl]_ part of prefix), e.g., -deflation_1_pc_pc_type bjacobi. You can also use 8598c4db21fSJakub Kruzik PCDeflationGetPC() to control the additional preconditioner from code. It defaults to PCNONE. 860e26ad46dSJakub Kruzik 861e26ad46dSJakub Kruzik The coarse problem correction term (factor*Q) can be turned on by -pc_deflation_correction and the factor value can 862e26ad46dSJakub Kruzik be set by pc_deflation_correction_factor or by PCDeflationSetCorrectionFactor(). The coarse problem can 863e26ad46dSJakub Kruzik significantly improve convergence when the deflation coarse problem is not solved with high enough accuracy. We 864e26ad46dSJakub Kruzik recommend setting factor to some eigenvalue, e.g., the largest eigenvalue so that the preconditioner does not create 865e26ad46dSJakub Kruzik an isolated eigenvalue. 866e26ad46dSJakub Kruzik 8671fdb00f9SJakub Kruzik The options are automatically inherited from the previous deflation level. 8689f604af8SJakub Kruzik 869e26ad46dSJakub Kruzik The preconditioner supports KSPMonitorDynamicTolerance(). This is useful for the multilevel scheme for which we also 8701fdb00f9SJakub Kruzik recommend limiting the number of iterations for the coarse problems. 871e26ad46dSJakub Kruzik 872e26ad46dSJakub Kruzik See section 3 of [4] for additional references and decription of the algorithm when used for conjugate gradients. 873e26ad46dSJakub Kruzik Section 4 describes some possible choices for the deflation space. 874e26ad46dSJakub Kruzik 875e26ad46dSJakub Kruzik Developer Notes: 876e26ad46dSJakub Kruzik Contributed by Jakub Kruzik (PERMON), Institute of Geonics of the Czech 877e26ad46dSJakub Kruzik Academy of Sciences and VSB - TU Ostrava. 878e26ad46dSJakub Kruzik 879e26ad46dSJakub Kruzik Developed from PERMON code used in [4] while on a research stay with 880e26ad46dSJakub Kruzik Prof. Reinhard Nabben at the Institute of Mathematics, TU Berlin. 881e26ad46dSJakub Kruzik 882e26ad46dSJakub Kruzik References: 883110fc3b0SBarry Smith + [1] - A. Nicolaides. "Deflation of conjugate gradients with applications to boundary value problems", SIAM J. Numer. Anal. 24.2, 1987. 884e26ad46dSJakub Kruzik . [2] - Z. Dostal. "Conjugate gradient method with preconditioning by projector", Int J. Comput. Math. 23.3-4, 1988. 885e26ad46dSJakub Kruzik . [3] - Y. A. Erlangga and R. Nabben. "Multilevel Projection-Based Nested Krylov Iteration for Boundary Value Problems", SIAM J. Sci. Comput. 30.3, 2008. 8861fdb00f9SJakub Kruzik - [4] - J. Kruzik "Implementation of the Deflated Variants of the Conjugate Gradient Method", Master's thesis, VSB-TUO, 2018 - http://dspace5.vsb.cz/bitstream/handle/10084/130303/KRU0097_USP_N2658_2612T078_2018.pdf 887e26ad46dSJakub Kruzik 888e26ad46dSJakub Kruzik Level: intermediate 88937eeb815SJakub Kruzik 89037eeb815SJakub Kruzik .seealso: PCCreate(), PCSetType(), PCType (for list of available types), PC, 89193b79a5aSJakub Kruzik PCDeflationSetInitOnly(), PCDeflationSetLevels(), PCDeflationSetReductionFactor(), 8921fdb00f9SJakub Kruzik PCDeflationSetCorrectionFactor(), PCDeflationSetSpaceToCompute(), 893e26ad46dSJakub Kruzik PCDeflationSetSpace(), PCDeflationSpaceType, PCDeflationSetProjectionNullSpaceMat(), 8948c4db21fSJakub Kruzik PCDeflationSetCoarseMat(), PCDeflationGetCoarseKSP(), PCDeflationGetPC() 89537eeb815SJakub Kruzik M*/ 89637eeb815SJakub Kruzik 89737eeb815SJakub Kruzik PETSC_EXTERN PetscErrorCode PCCreate_Deflation(PC pc) 89837eeb815SJakub Kruzik { 89937eeb815SJakub Kruzik PC_Deflation *def; 90037eeb815SJakub Kruzik PetscErrorCode ierr; 90137eeb815SJakub Kruzik 90237eeb815SJakub Kruzik PetscFunctionBegin; 90337eeb815SJakub Kruzik ierr = PetscNewLog(pc,&def);CHKERRQ(ierr); 90437eeb815SJakub Kruzik pc->data = (void*)def; 90537eeb815SJakub Kruzik 906e662bc50SJakub Kruzik def->init = PETSC_FALSE; 907e662bc50SJakub Kruzik def->correct = PETSC_FALSE; 908fcb31d99SJakub Kruzik def->correctfact = 1.0; 909e662bc50SJakub Kruzik def->reductionfact = -1; 910e662bc50SJakub Kruzik def->spacetype = PC_DEFLATION_SPACE_HAAR; 911e662bc50SJakub Kruzik def->spacesize = 1; 912e662bc50SJakub Kruzik def->extendsp = PETSC_FALSE; 9136c93e71cSJakub Kruzik def->lvl = 0; 9146c93e71cSJakub Kruzik def->maxlvl = 0; 91570f9219eSJakub Kruzik def->W = NULL; 91670f9219eSJakub Kruzik def->Wt = NULL; 91737eeb815SJakub Kruzik 91837eeb815SJakub Kruzik pc->ops->apply = PCApply_Deflation; 919b27c8092SJakub Kruzik pc->ops->presolve = PCPreSolve_Deflation; 92037eeb815SJakub Kruzik pc->ops->setup = PCSetUp_Deflation; 92137eeb815SJakub Kruzik pc->ops->reset = PCReset_Deflation; 92237eeb815SJakub Kruzik pc->ops->destroy = PCDestroy_Deflation; 92337eeb815SJakub Kruzik pc->ops->setfromoptions = PCSetFromOptions_Deflation; 9248513960bSJakub Kruzik pc->ops->view = PCView_Deflation; 92537eeb815SJakub Kruzik 926a122ebaeSJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationSetInitOnly_C",PCDeflationSetInitOnly_Deflation);CHKERRQ(ierr); 92793b79a5aSJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationSetLevels_C",PCDeflationSetLevels_Deflation);CHKERRQ(ierr); 928859a873cSJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationSetReductionFactor_C",PCDeflationSetReductionFactor_Deflation);CHKERRQ(ierr); 9298a71cb68SJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationSetCorrectionFactor_C",PCDeflationSetCorrectionFactor_Deflation);CHKERRQ(ierr); 93039417d7eSJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationSetSpaceToCompute_C",PCDeflationSetSpaceToCompute_Deflation);CHKERRQ(ierr); 931e662bc50SJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationSetSpace_C",PCDeflationSetSpace_Deflation);CHKERRQ(ierr); 9323cf3a049SJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationSetProjectionNullSpaceMat_C",PCDeflationSetProjectionNullSpaceMat_Deflation);CHKERRQ(ierr); 933e924b002SJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationSetCoarseMat_C",PCDeflationSetCoarseMat_Deflation);CHKERRQ(ierr); 9344a99276eSJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationGetCoarseKSP_C",PCDeflationGetCoarseKSP_Deflation);CHKERRQ(ierr); 93598d6e3deSJakub Kruzik ierr = PetscObjectComposeFunction((PetscObject)pc,"PCDeflationGetPC_C",PCDeflationGetPC_Deflation);CHKERRQ(ierr); 93637eeb815SJakub Kruzik PetscFunctionReturn(0); 93737eeb815SJakub Kruzik } 93837eeb815SJakub Kruzik 939