126bd1501SBarry Smith #if !defined(PETSCPCTYPES_H) 226bd1501SBarry Smith #define PETSCPCTYPES_H 3b0753f9dSMatthew G. Knepley 4b0753f9dSMatthew G. Knepley /*S 5b0753f9dSMatthew G. Knepley PC - Abstract PETSc object that manages all preconditioners including direct solvers such as PCLU 6b0753f9dSMatthew G. Knepley 7b0753f9dSMatthew G. Knepley Level: beginner 8b0753f9dSMatthew G. Knepley 9b0753f9dSMatthew G. Knepley .seealso: PCCreate(), PCSetType(), PCType (for list of available types) 10b0753f9dSMatthew G. Knepley S*/ 11b0753f9dSMatthew G. Knepley typedef struct _p_PC* PC; 12b0753f9dSMatthew G. Knepley 13b0753f9dSMatthew G. Knepley /*J 14b0753f9dSMatthew G. Knepley PCType - String with the name of a PETSc preconditioner method. 15b0753f9dSMatthew G. Knepley 16b0753f9dSMatthew G. Knepley Level: beginner 17b0753f9dSMatthew G. Knepley 1895452b02SPatrick Sanan Notes: 1995452b02SPatrick Sanan Click on the links above to see details on a particular solver 20b0753f9dSMatthew G. Knepley 21b0753f9dSMatthew G. Knepley PCRegister() is used to register preconditioners that are then accessible via PCSetType() 22b0753f9dSMatthew G. Knepley 23b0753f9dSMatthew G. Knepley .seealso: PCSetType(), PC, PCCreate(), PCRegister(), PCSetFromOptions() 24b0753f9dSMatthew G. Knepley J*/ 25b0753f9dSMatthew G. Knepley typedef const char* PCType; 26b0753f9dSMatthew G. Knepley #define PCNONE "none" 27b0753f9dSMatthew G. Knepley #define PCJACOBI "jacobi" 28b0753f9dSMatthew G. Knepley #define PCSOR "sor" 29b0753f9dSMatthew G. Knepley #define PCLU "lu" 30a2fc1e05SToby Isaac #define PCQR "qr" 31b0753f9dSMatthew G. Knepley #define PCSHELL "shell" 32b0753f9dSMatthew G. Knepley #define PCBJACOBI "bjacobi" 33b0753f9dSMatthew G. Knepley #define PCMG "mg" 34b0753f9dSMatthew G. Knepley #define PCEISENSTAT "eisenstat" 35b0753f9dSMatthew G. Knepley #define PCILU "ilu" 36b0753f9dSMatthew G. Knepley #define PCICC "icc" 37b0753f9dSMatthew G. Knepley #define PCASM "asm" 38b0753f9dSMatthew G. Knepley #define PCGASM "gasm" 39b0753f9dSMatthew G. Knepley #define PCKSP "ksp" 40e607c864SMark Adams #define PCBJKOKKOS "bjkokkos" 41b0753f9dSMatthew G. Knepley #define PCCOMPOSITE "composite" 42b0753f9dSMatthew G. Knepley #define PCREDUNDANT "redundant" 43b0753f9dSMatthew G. Knepley #define PCSPAI "spai" 44b0753f9dSMatthew G. Knepley #define PCNN "nn" 45b0753f9dSMatthew G. Knepley #define PCCHOLESKY "cholesky" 46b0753f9dSMatthew G. Knepley #define PCPBJACOBI "pbjacobi" 470da83c2eSBarry Smith #define PCVPBJACOBI "vpbjacobi" 48b0753f9dSMatthew G. Knepley #define PCMAT "mat" 49b0753f9dSMatthew G. Knepley #define PCHYPRE "hypre" 50b0753f9dSMatthew G. Knepley #define PCPARMS "parms" 51b0753f9dSMatthew G. Knepley #define PCFIELDSPLIT "fieldsplit" 52b0753f9dSMatthew G. Knepley #define PCTFS "tfs" 53b0753f9dSMatthew G. Knepley #define PCML "ml" 54b0753f9dSMatthew G. Knepley #define PCGALERKIN "galerkin" 55b0753f9dSMatthew G. Knepley #define PCEXOTIC "exotic" 56b0753f9dSMatthew G. Knepley #define PCCP "cp" 57b0753f9dSMatthew G. Knepley #define PCBFBT "bfbt" 58b0753f9dSMatthew G. Knepley #define PCLSC "lsc" 59b0753f9dSMatthew G. Knepley #define PCPYTHON "python" 60b0753f9dSMatthew G. Knepley #define PCPFMG "pfmg" 61b0753f9dSMatthew G. Knepley #define PCSYSPFMG "syspfmg" 62b0753f9dSMatthew G. Knepley #define PCREDISTRIBUTE "redistribute" 63b0753f9dSMatthew G. Knepley #define PCSVD "svd" 64b0753f9dSMatthew G. Knepley #define PCGAMG "gamg" 654b3f184cSKarl Rupp #define PCCHOWILUVIENNACL "chowiluviennacl" 6670baa948SKarl Rupp #define PCROWSCALINGVIENNACL "rowscalingviennacl" 6707598726SKarl Rupp #define PCSAVIENNACL "saviennacl" 68b0753f9dSMatthew G. Knepley #define PCBDDC "bddc" 69b0753f9dSMatthew G. Knepley #define PCKACZMARZ "kaczmarz" 7068ddcbeaSBarry Smith #define PCTELESCOPE "telescope" 714bbf5ea8SMatthew G. Knepley #define PCPATCH "patch" 72b9ac7092SAlp Dener #define PCLMVM "lmvm" 73360ee056SFande Kong #define PCHMG "hmg" 7437eeb815SJakub Kruzik #define PCDEFLATION "deflation" 7538cfc46eSPierre Jolivet #define PCHPDDM "hpddm" 7653022affSStefano Zampini #define PCH2OPUS "h2opus" 77b0753f9dSMatthew G. Knepley 78b0753f9dSMatthew G. Knepley /*E 79b0753f9dSMatthew G. Knepley PCSide - If the preconditioner is to be applied to the left, right 80b0753f9dSMatthew G. Knepley or symmetrically around the operator. 81b0753f9dSMatthew G. Knepley 82b0753f9dSMatthew G. Knepley Level: beginner 83b0753f9dSMatthew G. Knepley 84b0753f9dSMatthew G. Knepley .seealso: 85b0753f9dSMatthew G. Knepley E*/ 86b0753f9dSMatthew G. Knepley typedef enum { PC_SIDE_DEFAULT=-1,PC_LEFT,PC_RIGHT,PC_SYMMETRIC} PCSide; 87b0753f9dSMatthew G. Knepley #define PC_SIDE_MAX (PC_SYMMETRIC + 1) 88b0753f9dSMatthew G. Knepley 89b0753f9dSMatthew G. Knepley /*E 90b0753f9dSMatthew G. Knepley PCRichardsonConvergedReason - reason a PCApplyRichardson method terminates 91b0753f9dSMatthew G. Knepley 92b0753f9dSMatthew G. Knepley Level: advanced 93b0753f9dSMatthew G. Knepley 9495452b02SPatrick Sanan Notes: 9595452b02SPatrick Sanan this must match petsc/finclude/petscpc.h and the KSPConvergedReason values in petscksp.h 96b0753f9dSMatthew G. Knepley 97b0753f9dSMatthew G. Knepley .seealso: PCApplyRichardson() 98b0753f9dSMatthew G. Knepley E*/ 99b0753f9dSMatthew G. Knepley typedef enum { 100b0753f9dSMatthew G. Knepley PCRICHARDSON_CONVERGED_RTOL = 2, 101b0753f9dSMatthew G. Knepley PCRICHARDSON_CONVERGED_ATOL = 3, 102b0753f9dSMatthew G. Knepley PCRICHARDSON_CONVERGED_ITS = 4, 103b0753f9dSMatthew G. Knepley PCRICHARDSON_DIVERGED_DTOL = -4} PCRichardsonConvergedReason; 104b0753f9dSMatthew G. Knepley 105b0753f9dSMatthew G. Knepley /*E 106b0753f9dSMatthew G. Knepley PCJacobiType - What elements are used to form the Jacobi preconditioner 107b0753f9dSMatthew G. Knepley 108b0753f9dSMatthew G. Knepley Level: intermediate 109b0753f9dSMatthew G. Knepley 110b0753f9dSMatthew G. Knepley .seealso: 111b0753f9dSMatthew G. Knepley E*/ 112b0753f9dSMatthew G. Knepley typedef enum { PC_JACOBI_DIAGONAL,PC_JACOBI_ROWMAX,PC_JACOBI_ROWSUM} PCJacobiType; 113b0753f9dSMatthew G. Knepley 114b0753f9dSMatthew G. Knepley /*E 115b0753f9dSMatthew G. Knepley PCASMType - Type of additive Schwarz method to use 116b0753f9dSMatthew G. Knepley 117b0753f9dSMatthew G. Knepley $ PC_ASM_BASIC - Symmetric version where residuals from the ghost points are used 118b0753f9dSMatthew G. Knepley $ and computed values in ghost regions are added together. 119b0753f9dSMatthew G. Knepley $ Classical standard additive Schwarz. 120b0753f9dSMatthew G. Knepley $ PC_ASM_RESTRICT - Residuals from ghost points are used but computed values in ghost 121b0753f9dSMatthew G. Knepley $ region are discarded. 122b0753f9dSMatthew G. Knepley $ Default. 123b0753f9dSMatthew G. Knepley $ PC_ASM_INTERPOLATE - Residuals from ghost points are not used, computed values in ghost 124b0753f9dSMatthew G. Knepley $ region are added back in. 125b0753f9dSMatthew G. Knepley $ PC_ASM_NONE - Residuals from ghost points are not used, computed ghost values are 126b0753f9dSMatthew G. Knepley $ discarded. 127b0753f9dSMatthew G. Knepley $ Not very good. 128b0753f9dSMatthew G. Knepley 129b0753f9dSMatthew G. Knepley Level: beginner 130b0753f9dSMatthew G. Knepley 131b0753f9dSMatthew G. Knepley .seealso: PCASMSetType() 132b0753f9dSMatthew G. Knepley E*/ 133b0753f9dSMatthew G. Knepley typedef enum {PC_ASM_BASIC = 3,PC_ASM_RESTRICT = 1,PC_ASM_INTERPOLATE = 2,PC_ASM_NONE = 0} PCASMType; 134b0753f9dSMatthew G. Knepley 135b0753f9dSMatthew G. Knepley /*E 136b0753f9dSMatthew G. Knepley PCGASMType - Type of generalized additive Schwarz method to use (differs from ASM in allowing multiple processors per subdomain). 137b0753f9dSMatthew G. Knepley 138b0753f9dSMatthew G. Knepley Each subdomain has nested inner and outer parts. The inner subdomains are assumed to form a non-overlapping covering of the computational 139b0753f9dSMatthew G. Knepley domain, while the outer subdomains contain the inner subdomains and overlap with each other. This preconditioner will compute 140b0753f9dSMatthew G. Knepley a subdomain correction over each *outer* subdomain from a residual computed there, but its different variants will differ in 141b0753f9dSMatthew G. Knepley (a) how the outer subdomain residual is computed, and (b) how the outer subdomain correction is computed. 142b0753f9dSMatthew G. Knepley 143b0753f9dSMatthew G. Knepley $ PC_GASM_BASIC - Symmetric version where the full from the outer subdomain is used, and the resulting correction is applied 144b0753f9dSMatthew G. Knepley $ over the outer subdomains. As a result, points in the overlap will receive the sum of the corrections 145b0753f9dSMatthew G. Knepley $ from neighboring subdomains. 146b0753f9dSMatthew G. Knepley $ Classical standard additive Schwarz. 147b0753f9dSMatthew G. Knepley $ PC_GASM_RESTRICT - Residual from the outer subdomain is used but the correction is restricted to the inner subdomain only 148b0753f9dSMatthew G. Knepley $ (i.e., zeroed out over the overlap portion of the outer subdomain before being applied). As a result, 149b0753f9dSMatthew G. Knepley $ each point will receive a correction only from the unique inner subdomain containing it (nonoverlapping covering 150b0753f9dSMatthew G. Knepley $ assumption). 151b0753f9dSMatthew G. Knepley $ Default. 152b0753f9dSMatthew G. Knepley $ PC_GASM_INTERPOLATE - Residual is zeroed out over the overlap portion of the outer subdomain, but the resulting correction is 153b0753f9dSMatthew G. Knepley $ applied over the outer subdomain. As a result, points in the overlap will receive the sum of the corrections 154b0753f9dSMatthew G. Knepley $ from neighboring subdomains. 155b0753f9dSMatthew G. Knepley $ 156b0753f9dSMatthew G. Knepley $ PC_GASM_NONE - Residuals and corrections are zeroed out outside the local subdomains. 157b0753f9dSMatthew G. Knepley $ Not very good. 158b0753f9dSMatthew G. Knepley 159b0753f9dSMatthew G. Knepley Level: beginner 160b0753f9dSMatthew G. Knepley 161b0753f9dSMatthew G. Knepley .seealso: PCGASMSetType() 162b0753f9dSMatthew G. Knepley E*/ 163b0753f9dSMatthew G. Knepley typedef enum {PC_GASM_BASIC = 3,PC_GASM_RESTRICT = 1,PC_GASM_INTERPOLATE = 2,PC_GASM_NONE = 0} PCGASMType; 164b0753f9dSMatthew G. Knepley 165b0753f9dSMatthew G. Knepley /*E 166b0753f9dSMatthew G. Knepley PCCompositeType - Determines how two or more preconditioner are composed 167b0753f9dSMatthew G. Knepley 168b0753f9dSMatthew G. Knepley $ PC_COMPOSITE_ADDITIVE - results from application of all preconditioners are added together 169b0753f9dSMatthew G. Knepley $ PC_COMPOSITE_MULTIPLICATIVE - preconditioners are applied sequentially to the residual freshly 170b0753f9dSMatthew G. Knepley $ computed after the previous preconditioner application 171b0753f9dSMatthew G. Knepley $ PC_COMPOSITE_SYMMETRIC_MULTIPLICATIVE - preconditioners are applied sequentially to the residual freshly 172d0ecd4dfSBarry Smith $ computed from first preconditioner to last and then back (Use only for symmetric matrices and preconditioners) 173b0753f9dSMatthew G. Knepley $ PC_COMPOSITE_SPECIAL - This is very special for a matrix of the form alpha I + R + S 174b0753f9dSMatthew G. Knepley $ where first preconditioner is built from alpha I + S and second from 175b0753f9dSMatthew G. Knepley $ alpha I + R 176b0753f9dSMatthew G. Knepley 177b0753f9dSMatthew G. Knepley Level: beginner 178b0753f9dSMatthew G. Knepley 179b0753f9dSMatthew G. Knepley .seealso: PCCompositeSetType() 180b0753f9dSMatthew G. Knepley E*/ 181a51937d4SCarola Kruse typedef enum {PC_COMPOSITE_ADDITIVE,PC_COMPOSITE_MULTIPLICATIVE,PC_COMPOSITE_SYMMETRIC_MULTIPLICATIVE,PC_COMPOSITE_SPECIAL,PC_COMPOSITE_SCHUR,PC_COMPOSITE_GKB} PCCompositeType; 182b0753f9dSMatthew G. Knepley 183b0753f9dSMatthew G. Knepley /*E 184b0753f9dSMatthew G. Knepley PCFieldSplitSchurPreType - Determines how to precondition Schur complement 185b0753f9dSMatthew G. Knepley 186b0753f9dSMatthew G. Knepley Level: intermediate 187b0753f9dSMatthew G. Knepley 188b0753f9dSMatthew G. Knepley .seealso: PCFieldSplitSetSchurPre() 189b0753f9dSMatthew G. Knepley E*/ 190b0753f9dSMatthew G. Knepley typedef enum {PC_FIELDSPLIT_SCHUR_PRE_SELF,PC_FIELDSPLIT_SCHUR_PRE_SELFP,PC_FIELDSPLIT_SCHUR_PRE_A11,PC_FIELDSPLIT_SCHUR_PRE_USER,PC_FIELDSPLIT_SCHUR_PRE_FULL} PCFieldSplitSchurPreType; 191b0753f9dSMatthew G. Knepley 192b0753f9dSMatthew G. Knepley /*E 193b0753f9dSMatthew G. Knepley PCFieldSplitSchurFactType - determines which off-diagonal parts of the approximate block factorization to use 194b0753f9dSMatthew G. Knepley 195b0753f9dSMatthew G. Knepley Level: intermediate 196b0753f9dSMatthew G. Knepley 197b0753f9dSMatthew G. Knepley .seealso: PCFieldSplitSetSchurFactType() 198b0753f9dSMatthew G. Knepley E*/ 199b0753f9dSMatthew G. Knepley typedef enum { 200b0753f9dSMatthew G. Knepley PC_FIELDSPLIT_SCHUR_FACT_DIAG, 201b0753f9dSMatthew G. Knepley PC_FIELDSPLIT_SCHUR_FACT_LOWER, 202b0753f9dSMatthew G. Knepley PC_FIELDSPLIT_SCHUR_FACT_UPPER, 203b0753f9dSMatthew G. Knepley PC_FIELDSPLIT_SCHUR_FACT_FULL 204b0753f9dSMatthew G. Knepley } PCFieldSplitSchurFactType; 205b0753f9dSMatthew G. Knepley 206b0753f9dSMatthew G. Knepley /*E 207b0753f9dSMatthew G. Knepley PCPARMSGlobalType - Determines the global preconditioner method in PARMS 208b0753f9dSMatthew G. Knepley 209b0753f9dSMatthew G. Knepley Level: intermediate 210b0753f9dSMatthew G. Knepley 211b0753f9dSMatthew G. Knepley .seealso: PCPARMSSetGlobal() 212b0753f9dSMatthew G. Knepley E*/ 213b0753f9dSMatthew G. Knepley typedef enum {PC_PARMS_GLOBAL_RAS,PC_PARMS_GLOBAL_SCHUR,PC_PARMS_GLOBAL_BJ} PCPARMSGlobalType; 2149d8081ecSMatthew G. Knepley 215b0753f9dSMatthew G. Knepley /*E 216b0753f9dSMatthew G. Knepley PCPARMSLocalType - Determines the local preconditioner method in PARMS 217b0753f9dSMatthew G. Knepley 218b0753f9dSMatthew G. Knepley Level: intermediate 219b0753f9dSMatthew G. Knepley 220b0753f9dSMatthew G. Knepley .seealso: PCPARMSSetLocal() 221b0753f9dSMatthew G. Knepley E*/ 222b0753f9dSMatthew G. Knepley typedef enum {PC_PARMS_LOCAL_ILU0,PC_PARMS_LOCAL_ILUK,PC_PARMS_LOCAL_ILUT,PC_PARMS_LOCAL_ARMS} PCPARMSLocalType; 223b0753f9dSMatthew G. Knepley 224f0fc11ceSJed Brown /*J 225b0753f9dSMatthew G. Knepley PCGAMGType - type of generalized algebraic multigrid (PCGAMG) method 226b0753f9dSMatthew G. Knepley 227b0753f9dSMatthew G. Knepley Level: intermediate 228b0753f9dSMatthew G. Knepley 229f6130c64SBarry Smith $ PCGAMGAGG - (the default) smoothed aggregation algorithm, robust, very well tested 230f6130c64SBarry Smith $ PCGAMGGEO - geometric coarsening, uses mesh generator to produce coarser meshes, limited to triangles, not well tested 231f6130c64SBarry Smith $ PCGAMGCLASSICAL - classical algebraic multigrid preconditioner, incomplete, poorly tested 232f6130c64SBarry Smith 233b0753f9dSMatthew G. Knepley .seealso: PCMG, PCSetType(), PCGAMGSetThreshold(), PCGAMGSetThreshold(), PCGAMGSetReuseInterpolation() 234f0fc11ceSJed Brown J*/ 235b0753f9dSMatthew G. Knepley typedef const char *PCGAMGType; 236b0753f9dSMatthew G. Knepley #define PCGAMGAGG "agg" 237b0753f9dSMatthew G. Knepley #define PCGAMGGEO "geo" 238b0753f9dSMatthew G. Knepley #define PCGAMGCLASSICAL "classical" 239b0753f9dSMatthew G. Knepley 240b0753f9dSMatthew G. Knepley typedef const char *PCGAMGClassicalType; 241b0753f9dSMatthew G. Knepley #define PCGAMGCLASSICALDIRECT "direct" 242b0753f9dSMatthew G. Knepley #define PCGAMGCLASSICALSTANDARD "standard" 243b0753f9dSMatthew G. Knepley 244b0753f9dSMatthew G. Knepley /*E 245b0753f9dSMatthew G. Knepley PCMGType - Determines the type of multigrid method that is run. 246b0753f9dSMatthew G. Knepley 247b0753f9dSMatthew G. Knepley Level: beginner 248b0753f9dSMatthew G. Knepley 249b0753f9dSMatthew G. Knepley Values: 250c1cbb1deSBarry Smith + PC_MG_MULTIPLICATIVE (default) - traditional V or W cycle as determined by PCMGSetCycleType() 251b0753f9dSMatthew G. Knepley . PC_MG_ADDITIVE - the additive multigrid preconditioner where all levels are 252b0753f9dSMatthew G. Knepley smoothed before updating the residual. This only uses the 253b0753f9dSMatthew G. Knepley down smoother, in the preconditioner the upper smoother is ignored 254b0753f9dSMatthew G. Knepley . PC_MG_FULL - same as multiplicative except one also performs grid sequencing, 255b0753f9dSMatthew G. Knepley that is starts on the coarsest grid, performs a cycle, interpolates 256b0753f9dSMatthew G. Knepley to the next, performs a cycle etc. This is much like the F-cycle presented in "Multigrid" by Trottenberg, Oosterlee, Schuller page 49, but that 257b0753f9dSMatthew G. Knepley algorithm supports smoothing on before the restriction on each level in the initial restriction to the coarsest stage. In addition that algorithm 258b0753f9dSMatthew G. Knepley calls the V-cycle only on the coarser level and has a post-smoother instead. 259b0753f9dSMatthew G. Knepley - PC_MG_KASKADE - like full multigrid except one never goes back to a coarser level 260b0753f9dSMatthew G. Knepley from a finer 261b0753f9dSMatthew G. Knepley 262c1cbb1deSBarry Smith .seealso: PCMGSetType(), PCMGSetCycleType(), PCMGSetCycleTypeOnLevel() 263b0753f9dSMatthew G. Knepley 264b0753f9dSMatthew G. Knepley E*/ 265b0753f9dSMatthew G. Knepley typedef enum { PC_MG_MULTIPLICATIVE,PC_MG_ADDITIVE,PC_MG_FULL,PC_MG_KASKADE } PCMGType; 266b0753f9dSMatthew G. Knepley #define PC_MG_CASCADE PC_MG_KASKADE; 267b0753f9dSMatthew G. Knepley 268b0753f9dSMatthew G. Knepley /*E 269b0753f9dSMatthew G. Knepley PCMGCycleType - Use V-cycle or W-cycle 270b0753f9dSMatthew G. Knepley 271b0753f9dSMatthew G. Knepley Level: beginner 272b0753f9dSMatthew G. Knepley 273b0753f9dSMatthew G. Knepley Values: 274*147403d9SBarry Smith + PC_MG_V_CYCLE - use the v cycle 275*147403d9SBarry Smith - PC_MG_W_CYCLE - use the w cycle 276b0753f9dSMatthew G. Knepley 277b0753f9dSMatthew G. Knepley .seealso: PCMGSetCycleType() 278b0753f9dSMatthew G. Knepley 279b0753f9dSMatthew G. Knepley E*/ 280b0753f9dSMatthew G. Knepley typedef enum { PC_MG_CYCLE_V = 1,PC_MG_CYCLE_W = 2 } PCMGCycleType; 281b0753f9dSMatthew G. Knepley 282b0753f9dSMatthew G. Knepley /*E 2832134b1e4SBarry Smith PCMGalerkinType - Determines if the coarse grid operators are computed via the Galerkin process 2842134b1e4SBarry Smith 2852134b1e4SBarry Smith Level: beginner 2862134b1e4SBarry Smith 2872134b1e4SBarry Smith Values: 2882134b1e4SBarry Smith + PC_MG_GALERKIN_PMAT - computes the pmat (matrix from which the preconditioner is built) via the Galerkin process from the finest grid 2892134b1e4SBarry Smith . PC_MG_GALERKIN_MAT - computes the mat (matrix used to apply the operator) via the Galerkin process from the finest grid 2902134b1e4SBarry Smith . PC_MG_GALERKIN_BOTH - computes both the mat and pmat via the Galerkin process (if pmat == mat the construction is only done once 2912134b1e4SBarry Smith - PC_MG_GALERKIN_NONE - neither operator is computed via the Galerkin process, the user must provide the operator 2922134b1e4SBarry Smith 2932134b1e4SBarry Smith Users should never set PC_MG_GALERKIN_EXTERNAL, it is used by GAMG and ML 2942134b1e4SBarry Smith 2952134b1e4SBarry Smith .seealso: PCMGSetCycleType() 2962134b1e4SBarry Smith 2972134b1e4SBarry Smith E*/ 2982134b1e4SBarry Smith typedef enum { PC_MG_GALERKIN_BOTH,PC_MG_GALERKIN_PMAT,PC_MG_GALERKIN_MAT, PC_MG_GALERKIN_NONE, PC_MG_GALERKIN_EXTERNAL} PCMGGalerkinType; 2992134b1e4SBarry Smith 3002134b1e4SBarry Smith /*E 301b0753f9dSMatthew G. Knepley PCExoticType - Face based or wirebasket based coarse grid space 302b0753f9dSMatthew G. Knepley 303b0753f9dSMatthew G. Knepley Level: beginner 304b0753f9dSMatthew G. Knepley 305b0753f9dSMatthew G. Knepley .seealso: PCExoticSetType(), PCEXOTIC 306b0753f9dSMatthew G. Knepley E*/ 307b0753f9dSMatthew G. Knepley typedef enum { PC_EXOTIC_FACE,PC_EXOTIC_WIREBASKET } PCExoticType; 308b0753f9dSMatthew G. Knepley 3098c1cd74cSHong Zhang /*E 310bc960bbfSJed Brown PCBDDCInterfaceExtType - Defines how interface balancing is extended into the interior of subdomains. 311bc960bbfSJed Brown 312bc960bbfSJed Brown Level: intermediate 313bc960bbfSJed Brown 314bc960bbfSJed Brown Values: 315bc960bbfSJed Brown + PC_BDDC_INTERFACE_EXT_DIRICHLET - solves Dirichlet interior problem; this is the standard BDDC algorithm 316bc960bbfSJed Brown - PC_BDDC_INTERFACE_EXT_LUMP - skips interior solve; sometimes called M_1 and associated with "lumped FETI-DP" 317bc960bbfSJed Brown 318bc960bbfSJed Brown E*/ 319bc960bbfSJed Brown typedef enum { 320bc960bbfSJed Brown PC_BDDC_INTERFACE_EXT_DIRICHLET, 321bc960bbfSJed Brown PC_BDDC_INTERFACE_EXT_LUMP 322bc960bbfSJed Brown } PCBDDCInterfaceExtType; 323bc960bbfSJed Brown 324bc960bbfSJed Brown /*E 325f3b08a26SMatthew G. Knepley PCMGCoarseSpaceType - Function space for coarse space for adaptive interpolation 326f3b08a26SMatthew G. Knepley 327f3b08a26SMatthew G. Knepley Level: beginner 328f3b08a26SMatthew G. Knepley 329f3b08a26SMatthew G. Knepley .seealso: PCMGSetAdaptCoarseSpaceType(), PCMG 330f3b08a26SMatthew G. Knepley E*/ 331f3b08a26SMatthew G. Knepley typedef enum { PCMG_POLYNOMIAL, PCMG_HARMONIC, PCMG_EIGENVECTOR, PCMG_GENERALIZED_EIGENVECTOR } PCMGCoarseSpaceType; 332f3b08a26SMatthew G. Knepley 333f3b08a26SMatthew G. Knepley /*E 334ee6acaa3SMatthew G. Knepley PCPatchConstructType - The algorithm used to construct patches for the preconditioner 3354bbf5ea8SMatthew G. Knepley 3364bbf5ea8SMatthew G. Knepley Level: beginner 3374bbf5ea8SMatthew G. Knepley 3384bbf5ea8SMatthew G. Knepley .seealso: PCPatchSetConstructType(), PCEXOTIC 3394bbf5ea8SMatthew G. Knepley E*/ 340e5b9877fSPatrick Farrell typedef enum {PC_PATCH_STAR, PC_PATCH_VANKA, PC_PATCH_PARDECOMP, PC_PATCH_USER, PC_PATCH_PYTHON} PCPatchConstructType; 3414bbf5ea8SMatthew G. Knepley 3424bbf5ea8SMatthew G. Knepley /*E 343e26ad46dSJakub Kruzik PCDeflationSpaceType - Type of deflation 344e662bc50SJakub Kruzik 345e662bc50SJakub Kruzik Values: 3467e9012c5SJakub Kruzik + PC_DEFLATION_SPACE_HAAR - directly assembled based on Haar (db2) wavelet with overflowed filter cuted-off 347e26ad46dSJakub Kruzik . PC_DEFLATION_SPACE_DB2 - MATCOMPOSITE of 1-lvl matices based on db2 (2 coefficient Daubechies / Haar wavelet) 348e26ad46dSJakub Kruzik . PC_DEFLATION_SPACE_DB4 - same as above, but with db4 (4 coefficient Daubechies) 349e26ad46dSJakub Kruzik . PC_DEFLATION_SPACE_DB8 - same as above, but with db8 (8 coefficient Daubechies) 350e26ad46dSJakub Kruzik . PC_DEFLATION_SPACE_DB16 - same as above, but with db16 (16 coefficient Daubechies) 351e26ad46dSJakub Kruzik . PC_DEFLATION_SPACE_BIORTH22 - same as above, but with biorthogonal 2.2 (6 coefficients) 352e26ad46dSJakub Kruzik . PC_DEFLATION_SPACE_MEYER - same as above, but with Meyer/FIR (62 coefficients) 353e26ad46dSJakub Kruzik . PC_DEFLATION_SPACE_AGGREGATION - aggregates local indices (given by operator matix distribution) into a subdomain 354e662bc50SJakub Kruzik - PC_DEFLATION_SPACE_USER - indicates space set by user 355e662bc50SJakub Kruzik 356e662bc50SJakub Kruzik Notes: 3577e9012c5SJakub Kruzik Wavelet-based space (except Haar) can be used in multilevel deflation. 358e662bc50SJakub Kruzik 3591fdb00f9SJakub Kruzik Level: intermediate 3601fdb00f9SJakub Kruzik 3611fdb00f9SJakub Kruzik .seealso: PCDeflationSetSpaceToCompute(), PCDEFLATION 362e662bc50SJakub Kruzik E*/ 363e662bc50SJakub Kruzik typedef enum { 364e662bc50SJakub Kruzik PC_DEFLATION_SPACE_HAAR, 365e662bc50SJakub Kruzik PC_DEFLATION_SPACE_DB2, 366e662bc50SJakub Kruzik PC_DEFLATION_SPACE_DB4, 367e662bc50SJakub Kruzik PC_DEFLATION_SPACE_DB8, 368e662bc50SJakub Kruzik PC_DEFLATION_SPACE_DB16, 369e662bc50SJakub Kruzik PC_DEFLATION_SPACE_BIORTH22, 370e662bc50SJakub Kruzik PC_DEFLATION_SPACE_MEYER, 371e662bc50SJakub Kruzik PC_DEFLATION_SPACE_AGGREGATION, 372e662bc50SJakub Kruzik PC_DEFLATION_SPACE_USER 373e662bc50SJakub Kruzik } PCDeflationSpaceType; 374e662bc50SJakub Kruzik 375e662bc50SJakub Kruzik /*E 37638cfc46eSPierre Jolivet PCHPDDMCoarseCorrectionType - Type of coarse correction used by PCHPDDM 37738cfc46eSPierre Jolivet 37838cfc46eSPierre Jolivet Level: intermediate 37938cfc46eSPierre Jolivet 38038cfc46eSPierre Jolivet Values: 381e5cd072eSprj- + PC_HPDDM_COARSE_CORRECTION_DEFLATED (default) - eq. (1) in PCHPDDMShellApply() 382e5cd072eSprj- . PC_HPDDM_COARSE_CORRECTION_ADDITIVE - eq. (2) 383e5cd072eSprj- - PC_HPDDM_COARSE_CORRECTION_BALANCED - eq. (3) 38438cfc46eSPierre Jolivet 38538cfc46eSPierre Jolivet .seealso: PCHPDDM, PCSetType(), PCHPDDMShellApply() 38638cfc46eSPierre Jolivet E*/ 38738cfc46eSPierre Jolivet typedef enum { PC_HPDDM_COARSE_CORRECTION_DEFLATED, PC_HPDDM_COARSE_CORRECTION_ADDITIVE, PC_HPDDM_COARSE_CORRECTION_BALANCED } PCHPDDMCoarseCorrectionType; 38838cfc46eSPierre Jolivet 38938cfc46eSPierre Jolivet /*E 3908c1cd74cSHong Zhang PCFailedReason - indicates type of PC failure 3918c1cd74cSHong Zhang 3928c1cd74cSHong Zhang Level: beginner 3938c1cd74cSHong Zhang 3948c1cd74cSHong Zhang Any additions/changes here MUST also be made in include/petsc/finclude/petscpc.h 3958c1cd74cSHong Zhang E*/ 3961b2b9847SBarry Smith typedef enum {PC_SETUP_ERROR = -1,PC_NOERROR,PC_FACTOR_STRUCT_ZEROPIVOT,PC_FACTOR_NUMERIC_ZEROPIVOT,PC_FACTOR_OUTMEMORY,PC_FACTOR_OTHER,PC_SUBPC_ERROR} PCFailedReason; 397ce7c7f2fSMark Adams 398ce7c7f2fSMark Adams /*E 399ce7c7f2fSMark Adams PCGAMGLayoutType - Layout for reduced grids 400ce7c7f2fSMark Adams 401ce7c7f2fSMark Adams Level: intermediate 402ce7c7f2fSMark Adams 403f73ac439SMark Adams .seealso: PCGAMGSetCoarseGridLayoutType() 404ce7c7f2fSMark Adams Any additions/changes here MUST also be made in include/petsc/finclude/petscpc.h 405ce7c7f2fSMark Adams E*/ 406a0095786SMark typedef enum {PCGAMG_LAYOUT_COMPACT,PCGAMG_LAYOUT_SPREAD} PCGAMGLayoutType; 407ce7c7f2fSMark Adams 408b0753f9dSMatthew G. Knepley #endif 409