xref: /petsc/src/ksp/pc/impls/jacobi/jacobi.c (revision 23ce13286abb4b24d31095dd761f3599be08cebe)
14b9ad928SBarry Smith /*$Id: jacobi.c,v 1.75 2001/08/07 03:03:32 balay Exp $*/
24b9ad928SBarry Smith 
34b9ad928SBarry Smith /*  --------------------------------------------------------------------
44b9ad928SBarry Smith 
54b9ad928SBarry Smith      This file implements a Jacobi preconditioner for matrices that use
64b9ad928SBarry Smith      the Mat interface (various matrix formats).  Actually, the only
74b9ad928SBarry Smith      matrix operation used here is MatGetDiagonal(), which extracts
84b9ad928SBarry Smith      diagonal elements of the preconditioning matrix.
94b9ad928SBarry Smith 
104b9ad928SBarry Smith      The following basic routines are required for each preconditioner.
114b9ad928SBarry Smith           PCCreate_XXX()          - Creates a preconditioner context
124b9ad928SBarry Smith           PCSetFromOptions_XXX()  - Sets runtime options
134b9ad928SBarry Smith           PCApply_XXX()           - Applies the preconditioner
144b9ad928SBarry Smith           PCDestroy_XXX()         - Destroys the preconditioner context
154b9ad928SBarry Smith      where the suffix "_XXX" denotes a particular implementation, in
164b9ad928SBarry Smith      this case we use _Jacobi (e.g., PCCreate_Jacobi, PCApply_Jacobi).
174b9ad928SBarry Smith      These routines are actually called via the common user interface
184b9ad928SBarry Smith      routines PCCreate(), PCSetFromOptions(), PCApply(), and PCDestroy(),
194b9ad928SBarry Smith      so the application code interface remains identical for all
204b9ad928SBarry Smith      preconditioners.
214b9ad928SBarry Smith 
224b9ad928SBarry Smith      Another key routine is:
234b9ad928SBarry Smith           PCSetUp_XXX()           - Prepares for the use of a preconditioner
244b9ad928SBarry Smith      by setting data structures and options.   The interface routine PCSetUp()
254b9ad928SBarry Smith      is not usually called directly by the user, but instead is called by
264b9ad928SBarry Smith      PCApply() if necessary.
274b9ad928SBarry Smith 
284b9ad928SBarry Smith      Additional basic routines are:
294b9ad928SBarry Smith           PCView_XXX()            - Prints details of runtime options that
304b9ad928SBarry Smith                                     have actually been used.
314b9ad928SBarry Smith      These are called by application codes via the interface routines
324b9ad928SBarry Smith      PCView().
334b9ad928SBarry Smith 
344b9ad928SBarry Smith      The various types of solvers (preconditioners, Krylov subspace methods,
354b9ad928SBarry Smith      nonlinear solvers, timesteppers) are all organized similarly, so the
364b9ad928SBarry Smith      above description applies to these categories also.  One exception is
374b9ad928SBarry Smith      that the analogues of PCApply() for these components are KSPSolve(),
384b9ad928SBarry Smith      SNESSolve(), and TSSolve().
394b9ad928SBarry Smith 
404b9ad928SBarry Smith      Additional optional functionality unique to preconditioners is left and
414b9ad928SBarry Smith      right symmetric preconditioner application via PCApplySymmetricLeft()
424b9ad928SBarry Smith      and PCApplySymmetricRight().  The Jacobi implementation is
434b9ad928SBarry Smith      PCApplySymmetricLeftOrRight_Jacobi().
444b9ad928SBarry Smith 
454b9ad928SBarry Smith     -------------------------------------------------------------------- */
464b9ad928SBarry Smith 
474b9ad928SBarry Smith /*
484b9ad928SBarry Smith    Include files needed for the Jacobi preconditioner:
494b9ad928SBarry Smith      pcimpl.h - private include file intended for use by all preconditioners
504b9ad928SBarry Smith */
514b9ad928SBarry Smith 
524b9ad928SBarry Smith #include "src/ksp/pc/pcimpl.h"   /*I "petscpc.h" I*/
534b9ad928SBarry Smith 
544b9ad928SBarry Smith /*
554b9ad928SBarry Smith    Private context (data structure) for the Jacobi preconditioner.
564b9ad928SBarry Smith */
574b9ad928SBarry Smith typedef struct {
584b9ad928SBarry Smith   Vec        diag;               /* vector containing the reciprocals of the diagonal elements
594b9ad928SBarry Smith                                     of the preconditioner matrix */
604b9ad928SBarry Smith   Vec        diagsqrt;           /* vector containing the reciprocals of the square roots of
614b9ad928SBarry Smith                                     the diagonal elements of the preconditioner matrix (used
624b9ad928SBarry Smith                                     only for symmetric preconditioner application) */
634b9ad928SBarry Smith   PetscTruth userowmax;
644b9ad928SBarry Smith } PC_Jacobi;
654b9ad928SBarry Smith 
664b9ad928SBarry Smith EXTERN_C_BEGIN
674b9ad928SBarry Smith #undef __FUNCT__
684b9ad928SBarry Smith #define __FUNCT__ "PCJacobiSetUseRowMax_Jacobi"
694b9ad928SBarry Smith int PCJacobiSetUseRowMax_Jacobi(PC pc)
704b9ad928SBarry Smith {
714b9ad928SBarry Smith   PC_Jacobi *j;
724b9ad928SBarry Smith 
734b9ad928SBarry Smith   PetscFunctionBegin;
744b9ad928SBarry Smith   j            = (PC_Jacobi*)pc->data;
754b9ad928SBarry Smith   j->userowmax = PETSC_TRUE;
764b9ad928SBarry Smith   PetscFunctionReturn(0);
774b9ad928SBarry Smith }
784b9ad928SBarry Smith EXTERN_C_END
794b9ad928SBarry Smith 
804b9ad928SBarry Smith /* -------------------------------------------------------------------------- */
814b9ad928SBarry Smith /*
824b9ad928SBarry Smith    PCSetUp_Jacobi - Prepares for the use of the Jacobi preconditioner
834b9ad928SBarry Smith                     by setting data structures and options.
844b9ad928SBarry Smith 
854b9ad928SBarry Smith    Input Parameter:
864b9ad928SBarry Smith .  pc - the preconditioner context
874b9ad928SBarry Smith 
884b9ad928SBarry Smith    Application Interface Routine: PCSetUp()
894b9ad928SBarry Smith 
904b9ad928SBarry Smith    Notes:
914b9ad928SBarry Smith    The interface routine PCSetUp() is not usually called directly by
924b9ad928SBarry Smith    the user, but instead is called by PCApply() if necessary.
934b9ad928SBarry Smith */
944b9ad928SBarry Smith #undef __FUNCT__
954b9ad928SBarry Smith #define __FUNCT__ "PCSetUp_Jacobi"
964b9ad928SBarry Smith static int PCSetUp_Jacobi(PC pc)
974b9ad928SBarry Smith {
984b9ad928SBarry Smith   PC_Jacobi     *jac = (PC_Jacobi*)pc->data;
994b9ad928SBarry Smith   Vec           diag,diagsqrt;
1004b9ad928SBarry Smith   int           ierr,n,i,zeroflag=0;
1014b9ad928SBarry Smith   PetscScalar   *x;
1024b9ad928SBarry Smith 
1034b9ad928SBarry Smith   PetscFunctionBegin;
1044b9ad928SBarry Smith 
1054b9ad928SBarry Smith   /*
1064b9ad928SBarry Smith        For most preconditioners the code would begin here something like
1074b9ad928SBarry Smith 
1084b9ad928SBarry Smith   if (pc->setupcalled == 0) { allocate space the first time this is ever called
109*23ce1328SBarry Smith     ierr = MatGetVecs(pc->mat,&jac->diag);CHKERRQ(ierr);
1104b9ad928SBarry Smith     PetscLogObjectParent(pc,jac->diag);
1114b9ad928SBarry Smith   }
1124b9ad928SBarry Smith 
1134b9ad928SBarry Smith     But for this preconditioner we want to support use of both the matrix' diagonal
1144b9ad928SBarry Smith     elements (for left or right preconditioning) and square root of diagonal elements
1154b9ad928SBarry Smith     (for symmetric preconditioning).  Hence we do not allocate space here, since we
1164b9ad928SBarry Smith     don't know at this point which will be needed (diag and/or diagsqrt) until the user
1174b9ad928SBarry Smith     applies the preconditioner, and we don't want to allocate BOTH unless we need
1184b9ad928SBarry Smith     them both.  Thus, the diag and diagsqrt are allocated in PCSetUp_Jacobi_NonSymmetric()
1194b9ad928SBarry Smith     and PCSetUp_Jacobi_Symmetric(), respectively.
1204b9ad928SBarry Smith   */
1214b9ad928SBarry Smith 
1224b9ad928SBarry Smith   /*
1234b9ad928SBarry Smith     Here we set up the preconditioner; that is, we copy the diagonal values from
1244b9ad928SBarry Smith     the matrix and put them into a format to make them quick to apply as a preconditioner.
1254b9ad928SBarry Smith   */
1264b9ad928SBarry Smith   diag     = jac->diag;
1274b9ad928SBarry Smith   diagsqrt = jac->diagsqrt;
1284b9ad928SBarry Smith 
1294b9ad928SBarry Smith   if (diag) {
1304b9ad928SBarry Smith     if (jac->userowmax) {
1314b9ad928SBarry Smith       ierr = MatGetRowMax(pc->pmat,diag);CHKERRQ(ierr);
1324b9ad928SBarry Smith     } else {
1334b9ad928SBarry Smith       ierr = MatGetDiagonal(pc->pmat,diag);CHKERRQ(ierr);
1344b9ad928SBarry Smith     }
1354b9ad928SBarry Smith     ierr = VecReciprocal(diag);CHKERRQ(ierr);
1364b9ad928SBarry Smith     ierr = VecGetLocalSize(diag,&n);CHKERRQ(ierr);
1374b9ad928SBarry Smith     ierr = VecGetArray(diag,&x);CHKERRQ(ierr);
1384b9ad928SBarry Smith     for (i=0; i<n; i++) {
1394b9ad928SBarry Smith       if (x[i] == 0.0) {
1404b9ad928SBarry Smith         x[i]     = 1.0;
1414b9ad928SBarry Smith         zeroflag = 1;
1424b9ad928SBarry Smith       }
1434b9ad928SBarry Smith     }
1444b9ad928SBarry Smith     ierr = VecRestoreArray(diag,&x);CHKERRQ(ierr);
1454b9ad928SBarry Smith   }
1464b9ad928SBarry Smith   if (diagsqrt) {
1474b9ad928SBarry Smith     if (jac->userowmax) {
1484b9ad928SBarry Smith       ierr = MatGetRowMax(pc->pmat,diagsqrt);CHKERRQ(ierr);
1494b9ad928SBarry Smith     } else {
1504b9ad928SBarry Smith       ierr = MatGetDiagonal(pc->pmat,diagsqrt);CHKERRQ(ierr);
1514b9ad928SBarry Smith     }
1524b9ad928SBarry Smith     ierr = VecGetLocalSize(diagsqrt,&n);CHKERRQ(ierr);
1534b9ad928SBarry Smith     ierr = VecGetArray(diagsqrt,&x);CHKERRQ(ierr);
1544b9ad928SBarry Smith     for (i=0; i<n; i++) {
1554b9ad928SBarry Smith       if (x[i] != 0.0) x[i] = 1.0/sqrt(PetscAbsScalar(x[i]));
1564b9ad928SBarry Smith       else {
1574b9ad928SBarry Smith         x[i]     = 1.0;
1584b9ad928SBarry Smith         zeroflag = 1;
1594b9ad928SBarry Smith       }
1604b9ad928SBarry Smith     }
1614b9ad928SBarry Smith     ierr = VecRestoreArray(diagsqrt,&x);CHKERRQ(ierr);
1624b9ad928SBarry Smith   }
1634b9ad928SBarry Smith   if (zeroflag) {
1644b9ad928SBarry Smith     PetscLogInfo(pc,"PCSetUp_Jacobi:Zero detected in diagonal of matrix, using 1 at those locations\n");
1654b9ad928SBarry Smith   }
1664b9ad928SBarry Smith 
1674b9ad928SBarry Smith   PetscFunctionReturn(0);
1684b9ad928SBarry Smith }
1694b9ad928SBarry Smith /* -------------------------------------------------------------------------- */
1704b9ad928SBarry Smith /*
1714b9ad928SBarry Smith    PCSetUp_Jacobi_Symmetric - Allocates the vector needed to store the
1724b9ad928SBarry Smith    inverse of the square root of the diagonal entries of the matrix.  This
1734b9ad928SBarry Smith    is used for symmetric application of the Jacobi preconditioner.
1744b9ad928SBarry Smith 
1754b9ad928SBarry Smith    Input Parameter:
1764b9ad928SBarry Smith .  pc - the preconditioner context
1774b9ad928SBarry Smith */
1784b9ad928SBarry Smith #undef __FUNCT__
1794b9ad928SBarry Smith #define __FUNCT__ "PCSetUp_Jacobi_Symmetric"
1804b9ad928SBarry Smith static int PCSetUp_Jacobi_Symmetric(PC pc)
1814b9ad928SBarry Smith {
1824b9ad928SBarry Smith   int        ierr;
1834b9ad928SBarry Smith   PC_Jacobi  *jac = (PC_Jacobi*)pc->data;
1844b9ad928SBarry Smith 
1854b9ad928SBarry Smith   PetscFunctionBegin;
1864b9ad928SBarry Smith 
187*23ce1328SBarry Smith   ierr = MatGetVecs(pc->pmat,&jac->diagsqrt,0);CHKERRQ(ierr);
1884b9ad928SBarry Smith   PetscLogObjectParent(pc,jac->diagsqrt);
1894b9ad928SBarry Smith   ierr = PCSetUp_Jacobi(pc);CHKERRQ(ierr);
1904b9ad928SBarry Smith   PetscFunctionReturn(0);
1914b9ad928SBarry Smith }
1924b9ad928SBarry Smith /* -------------------------------------------------------------------------- */
1934b9ad928SBarry Smith /*
1944b9ad928SBarry Smith    PCSetUp_Jacobi_NonSymmetric - Allocates the vector needed to store the
1954b9ad928SBarry Smith    inverse of the diagonal entries of the matrix.  This is used for left of
1964b9ad928SBarry Smith    right application of the Jacobi preconditioner.
1974b9ad928SBarry Smith 
1984b9ad928SBarry Smith    Input Parameter:
1994b9ad928SBarry Smith .  pc - the preconditioner context
2004b9ad928SBarry Smith */
2014b9ad928SBarry Smith #undef __FUNCT__
2024b9ad928SBarry Smith #define __FUNCT__ "PCSetUp_Jacobi_NonSymmetric"
2034b9ad928SBarry Smith static int PCSetUp_Jacobi_NonSymmetric(PC pc)
2044b9ad928SBarry Smith {
2054b9ad928SBarry Smith   int        ierr;
2064b9ad928SBarry Smith   PC_Jacobi  *jac = (PC_Jacobi*)pc->data;
2074b9ad928SBarry Smith 
2084b9ad928SBarry Smith   PetscFunctionBegin;
2094b9ad928SBarry Smith 
210*23ce1328SBarry Smith   ierr = MatGetVecs(pc->pmat,&jac->diag,0);CHKERRQ(ierr);
2114b9ad928SBarry Smith   PetscLogObjectParent(pc,jac->diag);
2124b9ad928SBarry Smith   ierr = PCSetUp_Jacobi(pc);CHKERRQ(ierr);
2134b9ad928SBarry Smith   PetscFunctionReturn(0);
2144b9ad928SBarry Smith }
2154b9ad928SBarry Smith /* -------------------------------------------------------------------------- */
2164b9ad928SBarry Smith /*
2174b9ad928SBarry Smith    PCApply_Jacobi - Applies the Jacobi preconditioner to a vector.
2184b9ad928SBarry Smith 
2194b9ad928SBarry Smith    Input Parameters:
2204b9ad928SBarry Smith .  pc - the preconditioner context
2214b9ad928SBarry Smith .  x - input vector
2224b9ad928SBarry Smith 
2234b9ad928SBarry Smith    Output Parameter:
2244b9ad928SBarry Smith .  y - output vector
2254b9ad928SBarry Smith 
2264b9ad928SBarry Smith    Application Interface Routine: PCApply()
2274b9ad928SBarry Smith  */
2284b9ad928SBarry Smith #undef __FUNCT__
2294b9ad928SBarry Smith #define __FUNCT__ "PCApply_Jacobi"
2304b9ad928SBarry Smith static int PCApply_Jacobi(PC pc,Vec x,Vec y)
2314b9ad928SBarry Smith {
2324b9ad928SBarry Smith   PC_Jacobi *jac = (PC_Jacobi*)pc->data;
2334b9ad928SBarry Smith   int       ierr;
2344b9ad928SBarry Smith 
2354b9ad928SBarry Smith   PetscFunctionBegin;
2364b9ad928SBarry Smith   if (!jac->diag) {
2374b9ad928SBarry Smith     ierr = PCSetUp_Jacobi_NonSymmetric(pc);CHKERRQ(ierr);
2384b9ad928SBarry Smith   }
2394b9ad928SBarry Smith   ierr = VecPointwiseMult(x,jac->diag,y);CHKERRQ(ierr);
2404b9ad928SBarry Smith   PetscFunctionReturn(0);
2414b9ad928SBarry Smith }
2424b9ad928SBarry Smith /* -------------------------------------------------------------------------- */
2434b9ad928SBarry Smith /*
2444b9ad928SBarry Smith    PCApplySymmetricLeftOrRight_Jacobi - Applies the left or right part of a
2454b9ad928SBarry Smith    symmetric preconditioner to a vector.
2464b9ad928SBarry Smith 
2474b9ad928SBarry Smith    Input Parameters:
2484b9ad928SBarry Smith .  pc - the preconditioner context
2494b9ad928SBarry Smith .  x - input vector
2504b9ad928SBarry Smith 
2514b9ad928SBarry Smith    Output Parameter:
2524b9ad928SBarry Smith .  y - output vector
2534b9ad928SBarry Smith 
2544b9ad928SBarry Smith    Application Interface Routines: PCApplySymmetricLeft(), PCApplySymmetricRight()
2554b9ad928SBarry Smith */
2564b9ad928SBarry Smith #undef __FUNCT__
2574b9ad928SBarry Smith #define __FUNCT__ "PCApplySymmetricLeftOrRight_Jacobi"
2584b9ad928SBarry Smith static int PCApplySymmetricLeftOrRight_Jacobi(PC pc,Vec x,Vec y)
2594b9ad928SBarry Smith {
2604b9ad928SBarry Smith   int       ierr;
2614b9ad928SBarry Smith   PC_Jacobi *jac = (PC_Jacobi*)pc->data;
2624b9ad928SBarry Smith 
2634b9ad928SBarry Smith   PetscFunctionBegin;
2644b9ad928SBarry Smith   if (!jac->diagsqrt) {
2654b9ad928SBarry Smith     ierr = PCSetUp_Jacobi_Symmetric(pc);CHKERRQ(ierr);
2664b9ad928SBarry Smith   }
2674b9ad928SBarry Smith   VecPointwiseMult(x,jac->diagsqrt,y);
2684b9ad928SBarry Smith   PetscFunctionReturn(0);
2694b9ad928SBarry Smith }
2704b9ad928SBarry Smith /* -------------------------------------------------------------------------- */
2714b9ad928SBarry Smith /*
2724b9ad928SBarry Smith    PCDestroy_Jacobi - Destroys the private context for the Jacobi preconditioner
2734b9ad928SBarry Smith    that was created with PCCreate_Jacobi().
2744b9ad928SBarry Smith 
2754b9ad928SBarry Smith    Input Parameter:
2764b9ad928SBarry Smith .  pc - the preconditioner context
2774b9ad928SBarry Smith 
2784b9ad928SBarry Smith    Application Interface Routine: PCDestroy()
2794b9ad928SBarry Smith */
2804b9ad928SBarry Smith #undef __FUNCT__
2814b9ad928SBarry Smith #define __FUNCT__ "PCDestroy_Jacobi"
2824b9ad928SBarry Smith static int PCDestroy_Jacobi(PC pc)
2834b9ad928SBarry Smith {
2844b9ad928SBarry Smith   PC_Jacobi *jac = (PC_Jacobi*)pc->data;
2854b9ad928SBarry Smith   int       ierr;
2864b9ad928SBarry Smith 
2874b9ad928SBarry Smith   PetscFunctionBegin;
2884b9ad928SBarry Smith   if (jac->diag)     {ierr = VecDestroy(jac->diag);CHKERRQ(ierr);}
2894b9ad928SBarry Smith   if (jac->diagsqrt) {ierr = VecDestroy(jac->diagsqrt);CHKERRQ(ierr);}
2904b9ad928SBarry Smith 
2914b9ad928SBarry Smith   /*
2924b9ad928SBarry Smith       Free the private data structure that was hanging off the PC
2934b9ad928SBarry Smith   */
2944b9ad928SBarry Smith   ierr = PetscFree(jac);CHKERRQ(ierr);
2954b9ad928SBarry Smith   PetscFunctionReturn(0);
2964b9ad928SBarry Smith }
2974b9ad928SBarry Smith 
2984b9ad928SBarry Smith #undef __FUNCT__
2994b9ad928SBarry Smith #define __FUNCT__ "PCSetFromOptions_Jacobi"
3004b9ad928SBarry Smith static int PCSetFromOptions_Jacobi(PC pc)
3014b9ad928SBarry Smith {
3024b9ad928SBarry Smith   PC_Jacobi  *jac = (PC_Jacobi*)pc->data;
3034b9ad928SBarry Smith   int        ierr;
3044b9ad928SBarry Smith 
3054b9ad928SBarry Smith   PetscFunctionBegin;
3064b9ad928SBarry Smith   ierr = PetscOptionsHead("Jacobi options");CHKERRQ(ierr);
3074b9ad928SBarry Smith     ierr = PetscOptionsLogical("-pc_jacobi_rowmax","Use row maximums for diagonal","PCJacobiSetUseRowMax",jac->userowmax,
3084b9ad928SBarry Smith                           &jac->userowmax,PETSC_NULL);CHKERRQ(ierr);
3094b9ad928SBarry Smith   ierr = PetscOptionsTail();CHKERRQ(ierr);
3104b9ad928SBarry Smith   PetscFunctionReturn(0);
3114b9ad928SBarry Smith }
3124b9ad928SBarry Smith 
3134b9ad928SBarry Smith /* -------------------------------------------------------------------------- */
3144b9ad928SBarry Smith /*
3154b9ad928SBarry Smith    PCCreate_Jacobi - Creates a Jacobi preconditioner context, PC_Jacobi,
3164b9ad928SBarry Smith    and sets this as the private data within the generic preconditioning
3174b9ad928SBarry Smith    context, PC, that was created within PCCreate().
3184b9ad928SBarry Smith 
3194b9ad928SBarry Smith    Input Parameter:
3204b9ad928SBarry Smith .  pc - the preconditioner context
3214b9ad928SBarry Smith 
3224b9ad928SBarry Smith    Application Interface Routine: PCCreate()
3234b9ad928SBarry Smith */
3244b9ad928SBarry Smith 
3254b9ad928SBarry Smith /*MC
3264b9ad928SBarry Smith      PCJacobi - Jacobi (i.e. diagonal scaling preconditioning)
3274b9ad928SBarry Smith 
3284b9ad928SBarry Smith    Options Database Key:
3294b9ad928SBarry Smith .    -pc_jacobi_rowmax - use the maximum absolute value in each row as the scaling factor,
3304b9ad928SBarry Smith                         rather than the diagonal
3314b9ad928SBarry Smith 
3324b9ad928SBarry Smith    Level: beginner
3334b9ad928SBarry Smith 
3344b9ad928SBarry Smith   Concepts: Jacobi, diagonal scaling, preconditioners
3354b9ad928SBarry Smith 
3364b9ad928SBarry Smith   Notes: By using KSPSetPreconditionerSide(ksp,PC_SYMMETRIC) or -ksp_symmetric_pc you
3374b9ad928SBarry Smith          can scale each side of the matrix by the squareroot of the diagonal entries.
3384b9ad928SBarry Smith 
3394b9ad928SBarry Smith          Zero entries along the diagonal are replaced with the value 1.0
3404b9ad928SBarry Smith 
3414b9ad928SBarry Smith .seealso:  PCCreate(), PCSetType(), PCType (for list of available types), PC,
3424b9ad928SBarry Smith            PCJacobiSetUseRowMax(),
3434b9ad928SBarry Smith M*/
3444b9ad928SBarry Smith 
3454b9ad928SBarry Smith EXTERN_C_BEGIN
3464b9ad928SBarry Smith #undef __FUNCT__
3474b9ad928SBarry Smith #define __FUNCT__ "PCCreate_Jacobi"
3484b9ad928SBarry Smith int PCCreate_Jacobi(PC pc)
3494b9ad928SBarry Smith {
3504b9ad928SBarry Smith   PC_Jacobi *jac;
3514b9ad928SBarry Smith   int       ierr;
3524b9ad928SBarry Smith 
3534b9ad928SBarry Smith   PetscFunctionBegin;
3544b9ad928SBarry Smith 
3554b9ad928SBarry Smith   /*
3564b9ad928SBarry Smith      Creates the private data structure for this preconditioner and
3574b9ad928SBarry Smith      attach it to the PC object.
3584b9ad928SBarry Smith   */
3594b9ad928SBarry Smith   ierr      = PetscNew(PC_Jacobi,&jac);CHKERRQ(ierr);
3604b9ad928SBarry Smith   pc->data  = (void*)jac;
3614b9ad928SBarry Smith 
3624b9ad928SBarry Smith   /*
3634b9ad928SBarry Smith      Logs the memory usage; this is not needed but allows PETSc to
3644b9ad928SBarry Smith      monitor how much memory is being used for various purposes.
3654b9ad928SBarry Smith   */
3664b9ad928SBarry Smith   PetscLogObjectMemory(pc,sizeof(PC_Jacobi));
3674b9ad928SBarry Smith 
3684b9ad928SBarry Smith   /*
3694b9ad928SBarry Smith      Initialize the pointers to vectors to ZERO; these will be used to store
3704b9ad928SBarry Smith      diagonal entries of the matrix for fast preconditioner application.
3714b9ad928SBarry Smith   */
3724b9ad928SBarry Smith   jac->diag          = 0;
3734b9ad928SBarry Smith   jac->diagsqrt      = 0;
3744b9ad928SBarry Smith   jac->userowmax     = PETSC_FALSE;
3754b9ad928SBarry Smith 
3764b9ad928SBarry Smith   /*
3774b9ad928SBarry Smith       Set the pointers for the functions that are provided above.
3784b9ad928SBarry Smith       Now when the user-level routines (such as PCApply(), PCDestroy(), etc.)
3794b9ad928SBarry Smith       are called, they will automatically call these functions.  Note we
3804b9ad928SBarry Smith       choose not to provide a couple of these functions since they are
3814b9ad928SBarry Smith       not needed.
3824b9ad928SBarry Smith   */
3834b9ad928SBarry Smith   pc->ops->apply               = PCApply_Jacobi;
3844b9ad928SBarry Smith   pc->ops->applytranspose      = PCApply_Jacobi;
3854b9ad928SBarry Smith   pc->ops->setup               = PCSetUp_Jacobi;
3864b9ad928SBarry Smith   pc->ops->destroy             = PCDestroy_Jacobi;
3874b9ad928SBarry Smith   pc->ops->setfromoptions      = PCSetFromOptions_Jacobi;
3884b9ad928SBarry Smith   pc->ops->view                = 0;
3894b9ad928SBarry Smith   pc->ops->applyrichardson     = 0;
3904b9ad928SBarry Smith   pc->ops->applysymmetricleft  = PCApplySymmetricLeftOrRight_Jacobi;
3914b9ad928SBarry Smith   pc->ops->applysymmetricright = PCApplySymmetricLeftOrRight_Jacobi;
3924b9ad928SBarry Smith   ierr = PetscObjectComposeFunctionDynamic((PetscObject)pc,"PCJacobiSetUseRowMax_C","PCJacobiSetUseRowMax_Jacobi",
3934b9ad928SBarry Smith                     PCJacobiSetUseRowMax_Jacobi);CHKERRQ(ierr);
3944b9ad928SBarry Smith   PetscFunctionReturn(0);
3954b9ad928SBarry Smith }
3964b9ad928SBarry Smith EXTERN_C_END
3974b9ad928SBarry Smith 
3984b9ad928SBarry Smith #undef __FUNCT__
3994b9ad928SBarry Smith #define __FUNCT__ "PCJacobiSetUseRowMax"
4004b9ad928SBarry Smith /*@
4014b9ad928SBarry Smith    PCJacobiSetUseRowMax - Causes the Jacobi preconditioner to use the
4024b9ad928SBarry Smith       maximum entry in each row as the diagonal preconditioner, instead of
4034b9ad928SBarry Smith       the diagonal entry
4044b9ad928SBarry Smith 
4054b9ad928SBarry Smith    Collective on PC
4064b9ad928SBarry Smith 
4074b9ad928SBarry Smith    Input Parameters:
4084b9ad928SBarry Smith .  pc - the preconditioner context
4094b9ad928SBarry Smith 
4104b9ad928SBarry Smith 
4114b9ad928SBarry Smith    Options Database Key:
4124b9ad928SBarry Smith .  -pc_jacobi_rowmax
4134b9ad928SBarry Smith 
4144b9ad928SBarry Smith    Level: intermediate
4154b9ad928SBarry Smith 
4164b9ad928SBarry Smith    Concepts: Jacobi preconditioner
4174b9ad928SBarry Smith 
4184b9ad928SBarry Smith @*/
4194b9ad928SBarry Smith int PCJacobiSetUseRowMax(PC pc)
4204b9ad928SBarry Smith {
4214b9ad928SBarry Smith   int ierr,(*f)(PC);
4224b9ad928SBarry Smith 
4234b9ad928SBarry Smith   PetscFunctionBegin;
4244482741eSBarry Smith   PetscValidHeaderSpecific(pc,PC_COOKIE,1);
4254b9ad928SBarry Smith   ierr = PetscObjectQueryFunction((PetscObject)pc,"PCJacobiSetRowMax_C",(void (**)(void))&f);CHKERRQ(ierr);
4264b9ad928SBarry Smith   if (f) {
4274b9ad928SBarry Smith     ierr = (*f)(pc);CHKERRQ(ierr);
4284b9ad928SBarry Smith   }
4294b9ad928SBarry Smith   PetscFunctionReturn(0);
4304b9ad928SBarry Smith }
4314b9ad928SBarry Smith 
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