1e489efc1SBarry Smith /* 2314da920SBarry Smith 3314da920SBarry Smith PETSc mathematics include file. Defines certain basic mathematical 4a5057860SBarry Smith constants and functions for working with single, double, and quad precision 5a5057860SBarry Smith floating point numbers as well as complex single and double. 6314da920SBarry Smith 7d382aafbSBarry Smith This file is included by petscsys.h and should not be used directly. 8e7029fe1SSatish Balay 9e489efc1SBarry Smith */ 10e489efc1SBarry Smith 11488ecbafSBarry Smith #if !defined(__PETSCMATH_H) 12488ecbafSBarry Smith #define __PETSCMATH_H 130a5f7794SBarry Smith #include <math.h> 140a5f7794SBarry Smith 15314da920SBarry Smith /* 16f4ccad53SBarry Smith 17f4ccad53SBarry Smith Defines operations that are different for complex and real numbers; 18a5057860SBarry Smith note that one cannot mix the use of complex and real in the same 19f4ccad53SBarry Smith PETSc program. All PETSc objects in one program are built around the object 2098725619SBarry Smith PetscScalar which is either always a real or a complex. 21f4ccad53SBarry Smith 22e489efc1SBarry Smith */ 23b36a9721SBarry Smith 2459cb5930SBarry Smith #define PetscExpPassiveScalar(a) PetscExpScalar() 25c1d390e3SJed Brown #if defined(PETSC_USE_REAL_SINGLE) 26c1d390e3SJed Brown #define MPIU_REAL MPI_FLOAT 27c1d390e3SJed Brown typedef float PetscReal; 289cf33046SSatish Balay #define PetscSqrtReal(a) sqrt(a) 299a07f4dfSJed Brown #define PetscExpReal(a) exp(a) 309a07f4dfSJed Brown #define PetscLogReal(a) log(a) 319a07f4dfSJed Brown #define PetscSinReal(a) sin(a) 329a07f4dfSJed Brown #define PetscCosReal(a) cos(a) 33*0646a658SBarry Smith #define PetscASinReal(a) asin(a) 34*0646a658SBarry Smith #define PetscACosReal(a) acos(a) 35369cc0aeSBarry Smith #define PetscPowReal(a,b) pow(a,b) 36*0646a658SBarry Smith #define PetscTGamma(a) tgammaf(a) 37c1d390e3SJed Brown #elif defined(PETSC_USE_REAL_DOUBLE) 38c1d390e3SJed Brown #define MPIU_REAL MPI_DOUBLE 39c1d390e3SJed Brown typedef double PetscReal; 408f1a2a5eSBarry Smith #define PetscSqrtReal(a) sqrt(a) 419a07f4dfSJed Brown #define PetscExpReal(a) exp(a) 429a07f4dfSJed Brown #define PetscLogReal(a) log(a) 439a07f4dfSJed Brown #define PetscSinReal(a) sin(a) 449a07f4dfSJed Brown #define PetscCosReal(a) cos(a) 45*0646a658SBarry Smith #define PetscASinReal(a) asin(a) 46*0646a658SBarry Smith #define PetscACosReal(a) acos(a) 47369cc0aeSBarry Smith #define PetscPowReal(a,b) pow(a,b) 48*0646a658SBarry Smith #define PetscTGamma(a) tgamma(a) 49c1d390e3SJed Brown #elif defined(PETSC_USE_REAL___FLOAT128) 50574fde7bSSatish Balay #if defined(__cplusplus) 51574fde7bSSatish Balay extern "C" { 52574fde7bSSatish Balay #endif 53574fde7bSSatish Balay #include <quadmath.h> 54574fde7bSSatish Balay #if defined(__cplusplus) 55574fde7bSSatish Balay } 56574fde7bSSatish Balay #endif 578ad47952SJed Brown PETSC_EXTERN MPI_Datatype MPIU___FLOAT128 PetscAttrMPITypeTag(__float128); 58c1d390e3SJed Brown #define MPIU_REAL MPIU___FLOAT128 59c1d390e3SJed Brown typedef __float128 PetscReal; 608f1a2a5eSBarry Smith #define PetscSqrtReal(a) sqrtq(a) 619a07f4dfSJed Brown #define PetscExpReal(a) expq(a) 629a07f4dfSJed Brown #define PetscLogReal(a) logq(a) 639a07f4dfSJed Brown #define PetscSinReal(a) sinq(a) 649a07f4dfSJed Brown #define PetscCosReal(a) cosq(a) 65*0646a658SBarry Smith #define PetscASinReal(a) asinq(a) 66*0646a658SBarry Smith #define PetscACosReal(a) acosq(a) 67369cc0aeSBarry Smith #define PetscPowReal(a,b) powq(a,b) 68*0646a658SBarry Smith #define PetscTGamma(a) tgammaq(a) 69c1d390e3SJed Brown #endif /* PETSC_USE_REAL_* */ 7059cb5930SBarry Smith 711093a601SBarry Smith /* 721093a601SBarry Smith Complex number definitions 731093a601SBarry Smith */ 7403df5147SBarry Smith #if defined(PETSC_CLANGUAGE_CXX) && defined(PETSC_HAVE_CXX_COMPLEX) && !defined(PETSC_USE_REAL___FLOAT128) 759f20b660SSatish Balay #if defined(PETSC_USE_COMPLEX) || defined(PETSC_DESIRE_COMPLEX) 7650f81f78SJed Brown #define PETSC_HAVE_COMPLEX 1 771093a601SBarry Smith /* C++ support of complex number */ 78debe9ee2SPaul Mullowney #if defined(PETSC_HAVE_CUSP) 79debe9ee2SPaul Mullowney #define complexlib cusp 809ae82921SPaul Mullowney #include <cusp/complex.h> 81debe9ee2SPaul Mullowney #else 82debe9ee2SPaul Mullowney #define complexlib std 83debe9ee2SPaul Mullowney #include <complex> 849ae82921SPaul Mullowney #endif 85b7940d39SSatish Balay 8650f81f78SJed Brown #define PetscRealPartComplex(a) (a).real() 8750f81f78SJed Brown #define PetscImaginaryPartComplex(a) (a).imag() 8850f81f78SJed Brown #define PetscAbsComplex(a) complexlib::abs(a) 8950f81f78SJed Brown #define PetscConjComplex(a) complexlib::conj(a) 9050f81f78SJed Brown #define PetscSqrtComplex(a) complexlib::sqrt(a) 9150f81f78SJed Brown #define PetscPowComplex(a,b) complexlib::pow(a,b) 9250f81f78SJed Brown #define PetscExpComplex(a) complexlib::exp(a) 9350f81f78SJed Brown #define PetscLogComplex(a) complexlib::log(a) 9450f81f78SJed Brown #define PetscSinComplex(a) complexlib::sin(a) 9550f81f78SJed Brown #define PetscCosComplex(a) complexlib::cos(a) 96*0646a658SBarry Smith #define PetscASinComplex(a) complexlib::asin(a) 97*0646a658SBarry Smith #define PetscACosComplex(a) complexlib::acos(a) 98debe9ee2SPaul Mullowney 99debe9ee2SPaul Mullowney #if defined(PETSC_USE_REAL_SINGLE) 10050f81f78SJed Brown typedef complexlib::complex<float> PetscComplex; 101debe9ee2SPaul Mullowney #elif defined(PETSC_USE_REAL_DOUBLE) 10250f81f78SJed Brown typedef complexlib::complex<double> PetscComplex; 1038c764dc5SJose Roman #elif defined(PETSC_USE_REAL___FLOAT128) 10450f81f78SJed Brown typedef complexlib::complex<__float128> PetscComplex; /* Notstandard and not expected to work, use __complex128 */ 105debe9ee2SPaul Mullowney #endif /* PETSC_USE_REAL_ */ 10603df5147SBarry Smith #endif /* PETSC_USE_COMPLEX || PETSC_DESIRE_COMPLEX */ 107debe9ee2SPaul Mullowney 10850f81f78SJed Brown #elif defined(PETSC_CLANGUAGE_C) && defined(PETSC_HAVE_C99_COMPLEX) 10950f81f78SJed Brown /* Use C99 _Complex for the type. Do not include complex.h by default to define "complex" because of symbol conflicts in Hypre. */ 11050f81f78SJed Brown /* Compilation units that can safely use complex should define PETSC_DESIRE_COMPLEX before including any headers */ 11150f81f78SJed Brown #if defined(PETSC_USE_COMPLEX) || defined(PETSC_DESIRE_COMPLEX) 1129f20b660SSatish Balay #define PETSC_HAVE_COMPLEX 1 113519e2a1fSPaul Mullowney #include <complex.h> 114519e2a1fSPaul Mullowney 115ce63c4c1SBarry Smith #if defined(PETSC_USE_REAL_SINGLE) 11650f81f78SJed Brown typedef float _Complex PetscComplex; 11785b47369SMatthew Knepley 11850f81f78SJed Brown #define PetscRealPartComplex(a) crealf(a) 11950f81f78SJed Brown #define PetscImaginaryPartComplex(a) cimagf(a) 12050f81f78SJed Brown #define PetscAbsComplex(a) cabsf(a) 12150f81f78SJed Brown #define PetscConjComplex(a) conjf(a) 12250f81f78SJed Brown #define PetscSqrtComplex(a) csqrtf(a) 12350f81f78SJed Brown #define PetscPowComplex(a,b) cpowf(a,b) 12450f81f78SJed Brown #define PetscExpComplex(a) cexpf(a) 12550f81f78SJed Brown #define PetscLogComplex(a) clogf(a) 12650f81f78SJed Brown #define PetscSinComplex(a) csinf(a) 12750f81f78SJed Brown #define PetscCosComplex(a) ccosf(a) 128*0646a658SBarry Smith #define PetscASinComplex(a) casinf(a) 129*0646a658SBarry Smith #define PetscACosComplex(a) cacosf(a) 1301093a601SBarry Smith 131ce63c4c1SBarry Smith #elif defined(PETSC_USE_REAL_DOUBLE) 13250f81f78SJed Brown typedef double _Complex PetscComplex; 1331093a601SBarry Smith 13450f81f78SJed Brown #define PetscRealPartComplex(a) creal(a) 13550f81f78SJed Brown #define PetscImaginaryPartComplex(a) cimag(a) 13650f81f78SJed Brown #define PetscAbsComplex(a) cabs(a) 13750f81f78SJed Brown #define PetscConjComplex(a) conj(a) 13850f81f78SJed Brown #define PetscSqrtComplex(a) csqrt(a) 13950f81f78SJed Brown #define PetscPowComplex(a,b) cpow(a,b) 14050f81f78SJed Brown #define PetscExpComplex(a) cexp(a) 14150f81f78SJed Brown #define PetscLogComplex(a) clog(a) 14250f81f78SJed Brown #define PetscSinComplex(a) csin(a) 14350f81f78SJed Brown #define PetscCosComplex(a) ccos(a) 144*0646a658SBarry Smith #define PetscASinComplex(a) casin(a) 145*0646a658SBarry Smith #define PetscACosComplex(a) cacos(a) 1461093a601SBarry Smith 1478c764dc5SJose Roman #elif defined(PETSC_USE_REAL___FLOAT128) 14850f81f78SJed Brown typedef __complex128 PetscComplex; 1498ad47952SJed Brown PETSC_EXTERN MPI_Datatype MPIU___COMPLEX128 PetscAttrMPITypeTag(__complex128); 1508c764dc5SJose Roman 15150f81f78SJed Brown #define PetscRealPartComplex(a) crealq(a) 15250f81f78SJed Brown #define PetscImaginaryPartComplex(a) cimagq(a) 15350f81f78SJed Brown #define PetscAbsComplex(a) cabsq(a) 15450f81f78SJed Brown #define PetscConjComplex(a) conjq(a) 15550f81f78SJed Brown #define PetscSqrtComplex(a) csqrtq(a) 15650f81f78SJed Brown #define PetscPowComplex(a,b) cpowq(a,b) 15750f81f78SJed Brown #define PetscExpComplex(a) cexpq(a) 15850f81f78SJed Brown #define PetscLogComplex(a) clogq(a) 15950f81f78SJed Brown #define PetscSinComplex(a) csinq(a) 16050f81f78SJed Brown #define PetscCosComplex(a) ccosq(a) 161*0646a658SBarry Smith #define PetscASinComplex(a) casinq(a) 162*0646a658SBarry Smith #define PetscACosComplex(a) cacosq(a) 163ce63c4c1SBarry Smith #endif /* PETSC_USE_REAL_* */ 16450f81f78SJed Brown #elif defined(PETSC_USE_COMPLEX) 16550f81f78SJed Brown #error "PETSc was configured --with-scalar-type=complex, but a language-appropriate complex library is not available" 1669f20b660SSatish Balay #endif /* PETSC_USE_COMPLEX || PETSC_DESIRE_COMPLEX */ 1679f20b660SSatish Balay #endif /* (PETSC_CLANGUAGE_CXX && PETSC_HAVE_CXX_COMPLEX) else-if (PETSC_CLANGUAGE_C && PETSC_HAVE_C99_COMPLEX) */ 168e489efc1SBarry Smith 1698dc6f2c2SJed Brown #if defined(PETSC_HAVE_COMPLEX) 17070da9c3bSJed Brown #if defined(PETSC_HAVE_MPI_C_DOUBLE_COMPLEX) 171500d8756SSatish Balay #define MPIU_C_DOUBLE_COMPLEX MPI_C_DOUBLE_COMPLEX 172500d8756SSatish Balay #define MPIU_C_COMPLEX MPI_C_COMPLEX 17370da9c3bSJed Brown #else 1748ad47952SJed Brown # if defined(PETSC_CLANGUAGE_CXX) && defined(PETSC_HAVE_CXX_COMPLEX) 1758ad47952SJed Brown typedef complexlib::complex<double> petsc_mpiu_c_double_complex; 1768ad47952SJed Brown typedef complexlib::complex<float> petsc_mpiu_c_complex; 1778ad47952SJed Brown # elif defined(PETSC_CLANGUAGE_C) && defined(PETSC_HAVE_C99_COMPLEX) 1788ad47952SJed Brown typedef double _Complex petsc_mpiu_c_double_complex; 1798ad47952SJed Brown typedef float _Complex petsc_mpiu_c_complex; 1808ad47952SJed Brown # else 1818ad47952SJed Brown typedef struct {double real,imag;} petsc_mpiu_c_double_complex; 1828ad47952SJed Brown typedef struct {float real,imag;} petsc_mpiu_c_complex; 1838ad47952SJed Brown # endif 1848ad47952SJed Brown PETSC_EXTERN MPI_Datatype MPIU_C_DOUBLE_COMPLEX PetscAttrMPITypeTagLayoutCompatible(petsc_mpiu_c_double_complex); 1858ad47952SJed Brown PETSC_EXTERN MPI_Datatype MPIU_C_COMPLEX PetscAttrMPITypeTagLayoutCompatible(petsc_mpiu_c_complex); 1861b65fc54SMatthew G Knepley #endif /* PETSC_HAVE_MPI_C_DOUBLE_COMPLEX */ 1878dc6f2c2SJed Brown #endif /* PETSC_HAVE_COMPLEX */ 1882c876bd9SBarry Smith 1897c2de775SJed Brown #if defined(PETSC_HAVE_COMPLEX) 1907c2de775SJed Brown # if defined(PETSC_USE_REAL_SINGLE) 1917c2de775SJed Brown # define MPIU_COMPLEX MPIU_C_COMPLEX 1927c2de775SJed Brown # elif defined(PETSC_USE_REAL_DOUBLE) 1937c2de775SJed Brown # define MPIU_COMPLEX MPIU_C_DOUBLE_COMPLEX 1947c2de775SJed Brown # elif defined(PETSC_USE_REAL___FLOAT128) 1957c2de775SJed Brown # define MPIU_COMPLEX MPIU___COMPLEX128 1967c2de775SJed Brown # endif /* PETSC_USE_REAL_* */ 1977c2de775SJed Brown #endif 1987c2de775SJed Brown 19950f81f78SJed Brown #if defined(PETSC_USE_COMPLEX) 20050f81f78SJed Brown typedef PetscComplex PetscScalar; 20150f81f78SJed Brown #define PetscRealPart(a) PetscRealPartComplex(a) 20250f81f78SJed Brown #define PetscImaginaryPart(a) PetscImaginaryPartComplex(a) 20350f81f78SJed Brown #define PetscAbsScalar(a) PetscAbsComplex(a) 20450f81f78SJed Brown #define PetscConj(a) PetscConjComplex(a) 20550f81f78SJed Brown #define PetscSqrtScalar(a) PetscSqrtComplex(a) 20650f81f78SJed Brown #define PetscPowScalar(a,b) PetscPowComplex(a,b) 20750f81f78SJed Brown #define PetscExpScalar(a) PetscExpComplex(a) 20850f81f78SJed Brown #define PetscLogScalar(a) PetscLogComplex(a) 20950f81f78SJed Brown #define PetscSinScalar(a) PetscSinComplex(a) 21050f81f78SJed Brown #define PetscCosScalar(a) PetscCosComplex(a) 211*0646a658SBarry Smith #define PetscASinScalar(a) PetscASinComplex(a) 212*0646a658SBarry Smith #define PetscACosScalar(a) PetscACosComplex(a) 21350f81f78SJed Brown 2147c2de775SJed Brown #define MPIU_SCALAR MPIU_COMPLEX 21575567043SBarry Smith 2161093a601SBarry Smith /* 2171093a601SBarry Smith real number definitions 2181093a601SBarry Smith */ 2191b65fc54SMatthew G Knepley #else /* PETSC_USE_COMPLEX */ 2207c2de775SJed Brown typedef PetscReal PetscScalar; 2217c2de775SJed Brown #define MPIU_SCALAR MPIU_REAL 2227c2de775SJed Brown 223329f5518SBarry Smith #define PetscRealPart(a) (a) 224c1d390e3SJed Brown #define PetscImaginaryPart(a) ((PetscReal)0.) 225c1d390e3SJed Brown PETSC_STATIC_INLINE PetscReal PetscAbsScalar(PetscScalar a) {return a < 0.0 ? -a : a;} 226e489efc1SBarry Smith #define PetscConj(a) (a) 227ce63c4c1SBarry Smith #if !defined(PETSC_USE_REAL___FLOAT128) 22818a7d68fSSatish Balay #define PetscSqrtScalar(a) sqrt(a) 229184914b5SBarry Smith #define PetscPowScalar(a,b) pow(a,b) 230184914b5SBarry Smith #define PetscExpScalar(a) exp(a) 23106c1185fSBarry Smith #define PetscLogScalar(a) log(a) 232184914b5SBarry Smith #define PetscSinScalar(a) sin(a) 233184914b5SBarry Smith #define PetscCosScalar(a) cos(a) 234*0646a658SBarry Smith #define PetscASinScalar(a) asin(a) 235*0646a658SBarry Smith #define PetscACosScalar(a) acos(a) 236ce63c4c1SBarry Smith #else /* PETSC_USE_REAL___FLOAT128 */ 2370d0cc1b5SBarry Smith #define PetscSqrtScalar(a) sqrtq(a) 2380d0cc1b5SBarry Smith #define PetscPowScalar(a,b) powq(a,b) 2390d0cc1b5SBarry Smith #define PetscExpScalar(a) expq(a) 2400d0cc1b5SBarry Smith #define PetscLogScalar(a) logq(a) 2410d0cc1b5SBarry Smith #define PetscSinScalar(a) sinq(a) 2420d0cc1b5SBarry Smith #define PetscCosScalar(a) cosq(a) 243*0646a658SBarry Smith #define PetscASinScalar(a) asinq(a) 244*0646a658SBarry Smith #define PetscACosScalar(a) qcosq(a) 245ce63c4c1SBarry Smith #endif /* PETSC_USE_REAL___FLOAT128 */ 246b0a32e0cSBarry Smith 2471b65fc54SMatthew G Knepley #endif /* PETSC_USE_COMPLEX */ 248e489efc1SBarry Smith 249da9b6338SBarry Smith #define PetscSign(a) (((a) >= 0) ? ((a) == 0 ? 0 : 1) : -1) 25026aa1773SMatthew Knepley #define PetscAbs(a) (((a) >= 0) ? (a) : -(a)) 2513f1db9ecSBarry Smith 252314da920SBarry Smith /* --------------------------------------------------------------------------*/ 253314da920SBarry Smith 254e489efc1SBarry Smith /* 255f22f69f0SBarry Smith Certain objects may be created using either single or double precision. 256f22f69f0SBarry Smith This is currently not used. 257e489efc1SBarry Smith */ 258557d4da8SBarry Smith typedef enum { PETSC_SCALAR_DOUBLE,PETSC_SCALAR_SINGLE, PETSC_SCALAR_LONG_DOUBLE } PetscScalarPrecision; 259e489efc1SBarry Smith 26050f81f78SJed Brown #if defined(PETSC_HAVE_COMPLEX) 261e489efc1SBarry Smith /* PETSC_i is the imaginary number, i */ 26250f81f78SJed Brown PETSC_EXTERN PetscComplex PETSC_i; 26350f81f78SJed Brown #endif 264e489efc1SBarry Smith 265b6a5bde7SBarry Smith /*MC 266b6a5bde7SBarry Smith PetscMin - Returns minimum of two numbers 267b6a5bde7SBarry Smith 268eca87e8dSBarry Smith Synopsis: 269aaa7dc30SBarry Smith #include <petscmath.h> 270eca87e8dSBarry Smith type PetscMin(type v1,type v2) 271eca87e8dSBarry Smith 272eca87e8dSBarry Smith Not Collective 273eca87e8dSBarry Smith 274b6a5bde7SBarry Smith Input Parameter: 275b6a5bde7SBarry Smith + v1 - first value to find minimum of 276b6a5bde7SBarry Smith - v2 - second value to find minimum of 277b6a5bde7SBarry Smith 278b6a5bde7SBarry Smith 279b6a5bde7SBarry Smith Notes: type can be integer or floating point value 280b6a5bde7SBarry Smith 281b6a5bde7SBarry Smith Level: beginner 282b6a5bde7SBarry Smith 283b6a5bde7SBarry Smith 284d9a4bb16SJed Brown .seealso: PetscMin(), PetscClipInterval(), PetscAbsInt(), PetscAbsReal(), PetscSqr() 285b6a5bde7SBarry Smith 286b6a5bde7SBarry Smith M*/ 287e489efc1SBarry Smith #define PetscMin(a,b) (((a)<(b)) ? (a) : (b)) 288b6a5bde7SBarry Smith 289b6a5bde7SBarry Smith /*MC 290b6a5bde7SBarry Smith PetscMax - Returns maxium of two numbers 291b6a5bde7SBarry Smith 292eca87e8dSBarry Smith Synopsis: 293aaa7dc30SBarry Smith #include <petscmath.h> 294eca87e8dSBarry Smith type max PetscMax(type v1,type v2) 295eca87e8dSBarry Smith 296eca87e8dSBarry Smith Not Collective 297eca87e8dSBarry Smith 298b6a5bde7SBarry Smith Input Parameter: 299b6a5bde7SBarry Smith + v1 - first value to find maximum of 300b6a5bde7SBarry Smith - v2 - second value to find maximum of 301b6a5bde7SBarry Smith 302b6a5bde7SBarry Smith Notes: type can be integer or floating point value 303b6a5bde7SBarry Smith 304b6a5bde7SBarry Smith Level: beginner 305b6a5bde7SBarry Smith 306d9a4bb16SJed Brown .seealso: PetscMin(), PetscClipInterval(), PetscAbsInt(), PetscAbsReal(), PetscSqr() 307b6a5bde7SBarry Smith 308b6a5bde7SBarry Smith M*/ 309e489efc1SBarry Smith #define PetscMax(a,b) (((a)<(b)) ? (b) : (a)) 310b6a5bde7SBarry Smith 311b6a5bde7SBarry Smith /*MC 312d9a4bb16SJed Brown PetscClipInterval - Returns a number clipped to be within an interval 313d9a4bb16SJed Brown 314d9a4bb16SJed Brown Synopsis: 315aaa7dc30SBarry Smith #include <petscmath.h> 316d9a4bb16SJed Brown type clip PetscClipInterval(type x,type a,type b) 317d9a4bb16SJed Brown 318d9a4bb16SJed Brown Not Collective 319d9a4bb16SJed Brown 320d9a4bb16SJed Brown Input Parameter: 321d9a4bb16SJed Brown + x - value to use if within interval (a,b) 322d9a4bb16SJed Brown . a - lower end of interval 323d9a4bb16SJed Brown - b - upper end of interval 324d9a4bb16SJed Brown 325d9a4bb16SJed Brown Notes: type can be integer or floating point value 326d9a4bb16SJed Brown 327d9a4bb16SJed Brown Level: beginner 328d9a4bb16SJed Brown 329d9a4bb16SJed Brown .seealso: PetscMin(), PetscMax(), PetscAbsInt(), PetscAbsReal(), PetscSqr() 330d9a4bb16SJed Brown 331d9a4bb16SJed Brown M*/ 332d9a4bb16SJed Brown #define PetscClipInterval(x,a,b) (PetscMax((a),PetscMin((x),(b)))) 333d9a4bb16SJed Brown 334d9a4bb16SJed Brown /*MC 335b6a5bde7SBarry Smith PetscAbsInt - Returns the absolute value of an integer 336b6a5bde7SBarry Smith 337b6a5bde7SBarry Smith Synopsis: 338aaa7dc30SBarry Smith #include <petscmath.h> 339b6a5bde7SBarry Smith int abs PetscAbsInt(int v1) 340b6a5bde7SBarry Smith 341eca87e8dSBarry Smith Not Collective 342eca87e8dSBarry Smith 343eca87e8dSBarry Smith Input Parameter: 344eca87e8dSBarry Smith . v1 - the integer 345b6a5bde7SBarry Smith 346b6a5bde7SBarry Smith Level: beginner 347b6a5bde7SBarry Smith 348b6a5bde7SBarry Smith .seealso: PetscMax(), PetscMin(), PetscAbsReal(), PetscSqr() 349b6a5bde7SBarry Smith 350b6a5bde7SBarry Smith M*/ 351e489efc1SBarry Smith #define PetscAbsInt(a) (((a)<0) ? -(a) : (a)) 352b6a5bde7SBarry Smith 353b6a5bde7SBarry Smith /*MC 354b6a5bde7SBarry Smith PetscAbsReal - Returns the absolute value of an real number 355b6a5bde7SBarry Smith 356eca87e8dSBarry Smith Synopsis: 357aaa7dc30SBarry Smith #include <petscmath.h> 358eca87e8dSBarry Smith Real abs PetscAbsReal(PetscReal v1) 359eca87e8dSBarry Smith 360eca87e8dSBarry Smith Not Collective 361eca87e8dSBarry Smith 362b6a5bde7SBarry Smith Input Parameter: 363b6a5bde7SBarry Smith . v1 - the double 364b6a5bde7SBarry Smith 365b6a5bde7SBarry Smith 366b6a5bde7SBarry Smith Level: beginner 367b6a5bde7SBarry Smith 368b6a5bde7SBarry Smith .seealso: PetscMax(), PetscMin(), PetscAbsInt(), PetscSqr() 369b6a5bde7SBarry Smith 370b6a5bde7SBarry Smith M*/ 371f6275e2eSBarry Smith #define PetscAbsReal(a) (((a)<0) ? -(a) : (a)) 372b6a5bde7SBarry Smith 373b6a5bde7SBarry Smith /*MC 374b6a5bde7SBarry Smith PetscSqr - Returns the square of a number 375b6a5bde7SBarry Smith 376b6a5bde7SBarry Smith Synopsis: 377aaa7dc30SBarry Smith #include <petscmath.h> 378b6a5bde7SBarry Smith type sqr PetscSqr(type v1) 379b6a5bde7SBarry Smith 380eca87e8dSBarry Smith Not Collective 381eca87e8dSBarry Smith 382eca87e8dSBarry Smith Input Parameter: 383eca87e8dSBarry Smith . v1 - the value 384eca87e8dSBarry Smith 385b6a5bde7SBarry Smith Notes: type can be integer or floating point value 386b6a5bde7SBarry Smith 387b6a5bde7SBarry Smith Level: beginner 388b6a5bde7SBarry Smith 389b6a5bde7SBarry Smith .seealso: PetscMax(), PetscMin(), PetscAbsInt(), PetscAbsReal() 390b6a5bde7SBarry Smith 391b6a5bde7SBarry Smith M*/ 3924ebda54eSMatthew Knepley #define PetscSqr(a) ((a)*(a)) 393e489efc1SBarry Smith 394314da920SBarry Smith /* ----------------------------------------------------------------------------*/ 395314da920SBarry Smith /* 396d34fcf5fSBarry Smith Basic constants 397314da920SBarry Smith */ 398ce63c4c1SBarry Smith #if defined(PETSC_USE_REAL___FLOAT128) 399d34fcf5fSBarry Smith #define PETSC_PI M_PIq 400d34fcf5fSBarry Smith #elif defined(M_PI) 401d34fcf5fSBarry Smith #define PETSC_PI M_PI 402d34fcf5fSBarry Smith #else 403faa6e9b0SMatthew G Knepley #define PETSC_PI 3.14159265358979323846264338327950288419716939937510582 404d34fcf5fSBarry Smith #endif 405d34fcf5fSBarry Smith 406ab824b78SBarry Smith #if !defined(PETSC_USE_64BIT_INDICES) 40771fd2e92SBarry Smith #define PETSC_MAX_INT 2147483647 408ab824b78SBarry Smith #define PETSC_MIN_INT (-PETSC_MAX_INT - 1) 409ab824b78SBarry Smith #else 410ab824b78SBarry Smith #define PETSC_MAX_INT 9223372036854775807L 411ab824b78SBarry Smith #define PETSC_MIN_INT (-PETSC_MAX_INT - 1) 412ab824b78SBarry Smith #endif 413e489efc1SBarry Smith 414ce63c4c1SBarry Smith #if defined(PETSC_USE_REAL_SINGLE) 415ab824b78SBarry Smith # define PETSC_MAX_REAL 3.40282346638528860e+38F 416ea345e14SBarry Smith # define PETSC_MIN_REAL -PETSC_MAX_REAL 41782a7e548SBarry Smith # define PETSC_MACHINE_EPSILON 1.19209290e-07F 41882a7e548SBarry Smith # define PETSC_SQRT_MACHINE_EPSILON 3.45266983e-04F 419cf6e855fSSatish Balay # define PETSC_SMALL 1.e-5 420ce63c4c1SBarry Smith #elif defined(PETSC_USE_REAL_DOUBLE) 421ab824b78SBarry Smith # define PETSC_MAX_REAL 1.7976931348623157e+308 422ea345e14SBarry Smith # define PETSC_MIN_REAL -PETSC_MAX_REAL 42382a7e548SBarry Smith # define PETSC_MACHINE_EPSILON 2.2204460492503131e-16 42482a7e548SBarry Smith # define PETSC_SQRT_MACHINE_EPSILON 1.490116119384766e-08 425cf6e855fSSatish Balay # define PETSC_SMALL 1.e-10 426ce63c4c1SBarry Smith #elif defined(PETSC_USE_REAL___FLOAT128) 427ea345e14SBarry Smith # define PETSC_MAX_REAL FLT128_MAX 428ce63c4c1SBarry Smith # define PETSC_MIN_REAL -FLT128_MAX 429d34fcf5fSBarry Smith # define PETSC_MACHINE_EPSILON FLT128_EPSILON 430d34fcf5fSBarry Smith # define PETSC_SQRT_MACHINE_EPSILON 1.38777878078e-17 431d34fcf5fSBarry Smith # define PETSC_SMALL 1.e-20 4329cf09972SJed Brown #endif 4333e523bebSBarry Smith 434e270355aSBarry Smith #define PETSC_INFINITY PETSC_MAX_REAL/4.0 435e270355aSBarry Smith #define PETSC_NINFINITY -PETSC_INFINITY 436e270355aSBarry Smith 437014dd563SJed Brown PETSC_EXTERN PetscErrorCode PetscIsInfOrNanScalar(PetscScalar); 438014dd563SJed Brown PETSC_EXTERN PetscErrorCode PetscIsInfOrNanReal(PetscReal); 4398b49ba18SBarry Smith PETSC_EXTERN PetscBool PetscIsNormalScalar(PetscScalar); 4408b49ba18SBarry Smith PETSC_EXTERN PetscBool PetscIsNormalReal(PetscReal); 4419a25a3ccSBarry Smith 442314da920SBarry Smith /* ----------------------------------------------------------------------------*/ 44387828ca2SBarry Smith #define PassiveReal PetscReal 444ea709b57SSatish Balay #define PassiveScalar PetscScalar 445d3ecb3a7SBarry Smith 44698725619SBarry Smith /* 44798725619SBarry Smith These macros are currently hardwired to match the regular data types, so there is no support for a different 44898725619SBarry Smith MatScalar from PetscScalar. We left the MatScalar in the source just in case we use it again. 44998725619SBarry Smith */ 45098725619SBarry Smith #define MPIU_MATSCALAR MPIU_SCALAR 45198725619SBarry Smith typedef PetscScalar MatScalar; 45298725619SBarry Smith typedef PetscReal MatReal; 45398725619SBarry Smith 4548ad47952SJed Brown struct petsc_mpiu_2scalar {PetscScalar a,b;}; 4558ad47952SJed Brown PETSC_EXTERN MPI_Datatype MPIU_2SCALAR PetscAttrMPITypeTagLayoutCompatible(struct petsc_mpiu_2scalar); 4568ad47952SJed Brown #if defined(PETSC_USE_64BIT_INDICES) || !defined(MPI_2INT) 4578ad47952SJed Brown struct petsc_mpiu_2int {PetscInt a,b;}; 4588ad47952SJed Brown PETSC_EXTERN MPI_Datatype MPIU_2INT PetscAttrMPITypeTagLayoutCompatible(struct petsc_mpiu_2int); 4598ad47952SJed Brown #else 4608ad47952SJed Brown #define MPIU_2INT MPI_2INT 4618ad47952SJed Brown #endif 462e9fa29b7SSatish Balay 463fa711258SJed Brown PETSC_STATIC_INLINE PetscInt PetscPowInt(PetscInt base,PetscInt power) { 464fa711258SJed Brown PetscInt result = 1; 465fa711258SJed Brown while (power) { 466fa711258SJed Brown if (power & 1) result *= base; 467fa711258SJed Brown power >>= 1; 468fa711258SJed Brown base *= base; 469fa711258SJed Brown } 470fa711258SJed Brown return result; 471fa711258SJed Brown } 472fa711258SJed Brown PETSC_STATIC_INLINE PetscReal PetscPowRealInt(PetscReal base,PetscInt power) { 473fa711258SJed Brown PetscReal result = 1; 474d98d5da7SBarry Smith if (power < 0) { 475d98d5da7SBarry Smith power = -power; 476d98d5da7SBarry Smith if (base != 0.0) base = 1./base; 477d98d5da7SBarry Smith } 478fa711258SJed Brown while (power) { 479fa711258SJed Brown if (power & 1) result *= base; 480fa711258SJed Brown power >>= 1; 481fa711258SJed Brown base *= base; 482fa711258SJed Brown } 483fa711258SJed Brown return result; 484fa711258SJed Brown } 485fa711258SJed Brown 4868b49ba18SBarry Smith PETSC_STATIC_INLINE PetscScalar PetscPowScalarInt(PetscScalar base,PetscInt power) { 4878b49ba18SBarry Smith PetscScalar result = 1; 4888b49ba18SBarry Smith if (power < 0) { 4898b49ba18SBarry Smith power = -power; 4908b49ba18SBarry Smith if (base != 0.0) base = 1./base; 4918b49ba18SBarry Smith } 4928b49ba18SBarry Smith while (power) { 4938b49ba18SBarry Smith if (power & 1) result *= base; 4948b49ba18SBarry Smith power >>= 1; 4958b49ba18SBarry Smith base *= base; 4968b49ba18SBarry Smith } 4978b49ba18SBarry Smith return result; 4988b49ba18SBarry Smith } 4998b49ba18SBarry Smith 500e489efc1SBarry Smith #endif 501