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 */ 1026bd1501SBarry Smith #if !defined(PETSCMATH_H) 1126bd1501SBarry Smith #define PETSCMATH_H 12ac09b921SBarry Smith 130a5f7794SBarry Smith #include <math.h> 14df4397b0SStefano Zampini #include <petscsystypes.h> 15df4397b0SStefano Zampini 16ac09b921SBarry Smith /* SUBMANSEC = Sys */ 17ac09b921SBarry Smith 185117d392SLisandro Dalcin /* 195117d392SLisandro Dalcin 205117d392SLisandro Dalcin Defines operations that are different for complex and real numbers. 215117d392SLisandro Dalcin All PETSc objects in one program are built around the object 225117d392SLisandro Dalcin PetscScalar which is either always a real or a complex. 235117d392SLisandro Dalcin 245117d392SLisandro Dalcin */ 255117d392SLisandro Dalcin 265117d392SLisandro Dalcin /* 275117d392SLisandro Dalcin Real number definitions 285117d392SLisandro Dalcin */ 295117d392SLisandro Dalcin #if defined(PETSC_USE_REAL_SINGLE) 305117d392SLisandro Dalcin #define PetscSqrtReal(a) sqrtf(a) 315117d392SLisandro Dalcin #define PetscCbrtReal(a) cbrtf(a) 325117d392SLisandro Dalcin #define PetscHypotReal(a,b) hypotf(a,b) 335117d392SLisandro Dalcin #define PetscAtan2Real(a,b) atan2f(a,b) 345117d392SLisandro Dalcin #define PetscPowReal(a,b) powf(a,b) 355117d392SLisandro Dalcin #define PetscExpReal(a) expf(a) 365117d392SLisandro Dalcin #define PetscLogReal(a) logf(a) 375117d392SLisandro Dalcin #define PetscLog10Real(a) log10f(a) 385117d392SLisandro Dalcin #define PetscLog2Real(a) log2f(a) 395117d392SLisandro Dalcin #define PetscSinReal(a) sinf(a) 405117d392SLisandro Dalcin #define PetscCosReal(a) cosf(a) 415117d392SLisandro Dalcin #define PetscTanReal(a) tanf(a) 425117d392SLisandro Dalcin #define PetscAsinReal(a) asinf(a) 435117d392SLisandro Dalcin #define PetscAcosReal(a) acosf(a) 445117d392SLisandro Dalcin #define PetscAtanReal(a) atanf(a) 455117d392SLisandro Dalcin #define PetscSinhReal(a) sinhf(a) 465117d392SLisandro Dalcin #define PetscCoshReal(a) coshf(a) 475117d392SLisandro Dalcin #define PetscTanhReal(a) tanhf(a) 485117d392SLisandro Dalcin #define PetscAsinhReal(a) asinhf(a) 495117d392SLisandro Dalcin #define PetscAcoshReal(a) acoshf(a) 505117d392SLisandro Dalcin #define PetscAtanhReal(a) atanhf(a) 51d6685f55SMatthew G. Knepley #define PetscErfReal(a) erff(a) 525117d392SLisandro Dalcin #define PetscCeilReal(a) ceilf(a) 535117d392SLisandro Dalcin #define PetscFloorReal(a) floorf(a) 545117d392SLisandro Dalcin #define PetscFmodReal(a,b) fmodf(a,b) 559c3ee494SJed Brown #define PetscCopysignReal(a,b) copysignf(a,b) 565117d392SLisandro Dalcin #define PetscTGamma(a) tgammaf(a) 571f17fa70SToby Isaac #if defined(PETSC_HAVE_LGAMMA_IS_GAMMA) 581f17fa70SToby Isaac #define PetscLGamma(a) gammaf(a) 591f17fa70SToby Isaac #else 601f17fa70SToby Isaac #define PetscLGamma(a) lgammaf(a) 611f17fa70SToby Isaac #endif 625117d392SLisandro Dalcin 635117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL_DOUBLE) 645117d392SLisandro Dalcin #define PetscSqrtReal(a) sqrt(a) 655117d392SLisandro Dalcin #define PetscCbrtReal(a) cbrt(a) 665117d392SLisandro Dalcin #define PetscHypotReal(a,b) hypot(a,b) 675117d392SLisandro Dalcin #define PetscAtan2Real(a,b) atan2(a,b) 685117d392SLisandro Dalcin #define PetscPowReal(a,b) pow(a,b) 695117d392SLisandro Dalcin #define PetscExpReal(a) exp(a) 705117d392SLisandro Dalcin #define PetscLogReal(a) log(a) 715117d392SLisandro Dalcin #define PetscLog10Real(a) log10(a) 725117d392SLisandro Dalcin #define PetscLog2Real(a) log2(a) 735117d392SLisandro Dalcin #define PetscSinReal(a) sin(a) 745117d392SLisandro Dalcin #define PetscCosReal(a) cos(a) 755117d392SLisandro Dalcin #define PetscTanReal(a) tan(a) 765117d392SLisandro Dalcin #define PetscAsinReal(a) asin(a) 775117d392SLisandro Dalcin #define PetscAcosReal(a) acos(a) 785117d392SLisandro Dalcin #define PetscAtanReal(a) atan(a) 795117d392SLisandro Dalcin #define PetscSinhReal(a) sinh(a) 805117d392SLisandro Dalcin #define PetscCoshReal(a) cosh(a) 815117d392SLisandro Dalcin #define PetscTanhReal(a) tanh(a) 825117d392SLisandro Dalcin #define PetscAsinhReal(a) asinh(a) 835117d392SLisandro Dalcin #define PetscAcoshReal(a) acosh(a) 845117d392SLisandro Dalcin #define PetscAtanhReal(a) atanh(a) 85d6685f55SMatthew G. Knepley #define PetscErfReal(a) erf(a) 865117d392SLisandro Dalcin #define PetscCeilReal(a) ceil(a) 875117d392SLisandro Dalcin #define PetscFloorReal(a) floor(a) 885117d392SLisandro Dalcin #define PetscFmodReal(a,b) fmod(a,b) 899c3ee494SJed Brown #define PetscCopysignReal(a,b) copysign(a,b) 905117d392SLisandro Dalcin #define PetscTGamma(a) tgamma(a) 911f17fa70SToby Isaac #if defined(PETSC_HAVE_LGAMMA_IS_GAMMA) 921f17fa70SToby Isaac #define PetscLGamma(a) gamma(a) 931f17fa70SToby Isaac #else 941f17fa70SToby Isaac #define PetscLGamma(a) lgamma(a) 951f17fa70SToby Isaac #endif 965117d392SLisandro Dalcin 975117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL___FLOAT128) 985117d392SLisandro Dalcin #define PetscSqrtReal(a) sqrtq(a) 995117d392SLisandro Dalcin #define PetscCbrtReal(a) cbrtq(a) 1005117d392SLisandro Dalcin #define PetscHypotReal(a,b) hypotq(a,b) 1015117d392SLisandro Dalcin #define PetscAtan2Real(a,b) atan2q(a,b) 1025117d392SLisandro Dalcin #define PetscPowReal(a,b) powq(a,b) 1035117d392SLisandro Dalcin #define PetscExpReal(a) expq(a) 1045117d392SLisandro Dalcin #define PetscLogReal(a) logq(a) 1055117d392SLisandro Dalcin #define PetscLog10Real(a) log10q(a) 1065117d392SLisandro Dalcin #define PetscLog2Real(a) log2q(a) 1075117d392SLisandro Dalcin #define PetscSinReal(a) sinq(a) 1085117d392SLisandro Dalcin #define PetscCosReal(a) cosq(a) 1095117d392SLisandro Dalcin #define PetscTanReal(a) tanq(a) 1105117d392SLisandro Dalcin #define PetscAsinReal(a) asinq(a) 1115117d392SLisandro Dalcin #define PetscAcosReal(a) acosq(a) 1125117d392SLisandro Dalcin #define PetscAtanReal(a) atanq(a) 1135117d392SLisandro Dalcin #define PetscSinhReal(a) sinhq(a) 1145117d392SLisandro Dalcin #define PetscCoshReal(a) coshq(a) 1155117d392SLisandro Dalcin #define PetscTanhReal(a) tanhq(a) 1165117d392SLisandro Dalcin #define PetscAsinhReal(a) asinhq(a) 1175117d392SLisandro Dalcin #define PetscAcoshReal(a) acoshq(a) 1185117d392SLisandro Dalcin #define PetscAtanhReal(a) atanhq(a) 119d6685f55SMatthew G. Knepley #define PetscErfReal(a) erfq(a) 1205117d392SLisandro Dalcin #define PetscCeilReal(a) ceilq(a) 1215117d392SLisandro Dalcin #define PetscFloorReal(a) floorq(a) 1225117d392SLisandro Dalcin #define PetscFmodReal(a,b) fmodq(a,b) 1239c3ee494SJed Brown #define PetscCopysignReal(a,b) copysignq(a,b) 1245117d392SLisandro Dalcin #define PetscTGamma(a) tgammaq(a) 1251f17fa70SToby Isaac #if defined(PETSC_HAVE_LGAMMA_IS_GAMMA) 1261f17fa70SToby Isaac #define PetscLGamma(a) gammaq(a) 1271f17fa70SToby Isaac #else 1281f17fa70SToby Isaac #define PetscLGamma(a) lgammaq(a) 1291f17fa70SToby Isaac #endif 1305117d392SLisandro Dalcin 1315117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL___FP16) 1325117d392SLisandro Dalcin #define PetscSqrtReal(a) sqrtf(a) 1335117d392SLisandro Dalcin #define PetscCbrtReal(a) cbrtf(a) 1345117d392SLisandro Dalcin #define PetscHypotReal(a,b) hypotf(a,b) 1355117d392SLisandro Dalcin #define PetscAtan2Real(a,b) atan2f(a,b) 1365117d392SLisandro Dalcin #define PetscPowReal(a,b) powf(a,b) 1375117d392SLisandro Dalcin #define PetscExpReal(a) expf(a) 1385117d392SLisandro Dalcin #define PetscLogReal(a) logf(a) 1395117d392SLisandro Dalcin #define PetscLog10Real(a) log10f(a) 1405117d392SLisandro Dalcin #define PetscLog2Real(a) log2f(a) 1415117d392SLisandro Dalcin #define PetscSinReal(a) sinf(a) 1425117d392SLisandro Dalcin #define PetscCosReal(a) cosf(a) 1435117d392SLisandro Dalcin #define PetscTanReal(a) tanf(a) 1445117d392SLisandro Dalcin #define PetscAsinReal(a) asinf(a) 1455117d392SLisandro Dalcin #define PetscAcosReal(a) acosf(a) 1465117d392SLisandro Dalcin #define PetscAtanReal(a) atanf(a) 1475117d392SLisandro Dalcin #define PetscSinhReal(a) sinhf(a) 1485117d392SLisandro Dalcin #define PetscCoshReal(a) coshf(a) 1495117d392SLisandro Dalcin #define PetscTanhReal(a) tanhf(a) 1505117d392SLisandro Dalcin #define PetscAsinhReal(a) asinhf(a) 1515117d392SLisandro Dalcin #define PetscAcoshReal(a) acoshf(a) 1525117d392SLisandro Dalcin #define PetscAtanhReal(a) atanhf(a) 153d6685f55SMatthew G. Knepley #define PetscErfReal(a) erff(a) 1545117d392SLisandro Dalcin #define PetscCeilReal(a) ceilf(a) 1555117d392SLisandro Dalcin #define PetscFloorReal(a) floorf(a) 1565117d392SLisandro Dalcin #define PetscFmodReal(a,b) fmodf(a,b) 1579c3ee494SJed Brown #define PetscCopySignReal(a,b) copysignf(a,b) 1585117d392SLisandro Dalcin #define PetscTGamma(a) tgammaf(a) 1591f17fa70SToby Isaac #if defined(PETSC_HAVE_LGAMMA_IS_GAMMA) 1601f17fa70SToby Isaac #define PetscLGamma(a) gammaf(a) 1611f17fa70SToby Isaac #else 1621f17fa70SToby Isaac #define PetscLGamma(a) lgammaf(a) 1631f17fa70SToby Isaac #endif 1645117d392SLisandro Dalcin 1655117d392SLisandro Dalcin #endif /* PETSC_USE_REAL_* */ 1665117d392SLisandro Dalcin 1679fbee547SJacob Faibussowitsch static inline PetscReal PetscSignReal(PetscReal a) 1685117d392SLisandro Dalcin { 1695117d392SLisandro Dalcin return (PetscReal)((a < (PetscReal)0) ? -1 : ((a > (PetscReal)0) ? 1 : 0)); 1705117d392SLisandro Dalcin } 1715117d392SLisandro Dalcin 1725117d392SLisandro Dalcin #if !defined(PETSC_HAVE_LOG2) 1735117d392SLisandro Dalcin #undef PetscLog2Real 1749fbee547SJacob Faibussowitsch static inline PetscReal PetscLog2Real(PetscReal a) 1755117d392SLisandro Dalcin { 1765117d392SLisandro Dalcin return PetscLogReal(a)/PetscLogReal((PetscReal)2); 1775117d392SLisandro Dalcin } 1785117d392SLisandro Dalcin #endif 1795117d392SLisandro Dalcin 180*613bf2b2SPierre Jolivet #if defined(PETSC_HAVE_REAL___FLOAT128) 1815117d392SLisandro Dalcin PETSC_EXTERN MPI_Datatype MPIU___FLOAT128 PetscAttrMPITypeTag(__float128); 1825117d392SLisandro Dalcin #endif 1835117d392SLisandro Dalcin #if defined(PETSC_USE_REAL___FP16) 1845117d392SLisandro Dalcin PETSC_EXTERN MPI_Datatype MPIU___FP16 PetscAttrMPITypeTag(__fp16); 1855117d392SLisandro Dalcin #endif 1865117d392SLisandro Dalcin 187df4397b0SStefano Zampini /*MC 18887497f52SBarry Smith MPIU_REAL - Portable MPI datatype corresponding to `PetscReal` independent of what precision `PetscReal` is in 189df4397b0SStefano Zampini 190df4397b0SStefano Zampini Notes: 19187497f52SBarry Smith In MPI calls that require an MPI datatype that matches a `PetscReal` or array of `PetscReal` values, pass this value. 192df4397b0SStefano Zampini 193df4397b0SStefano Zampini Level: beginner 194df4397b0SStefano Zampini 195db781477SPatrick Sanan .seealso: `PetscReal`, `PetscScalar`, `PetscComplex`, `PetscInt`, `MPIU_SCALAR`, `MPIU_COMPLEX`, `MPIU_INT` 196df4397b0SStefano Zampini M*/ 197c1d390e3SJed Brown #if defined(PETSC_USE_REAL_SINGLE) 198c1d390e3SJed Brown # define MPIU_REAL MPI_FLOAT 199c1d390e3SJed Brown #elif defined(PETSC_USE_REAL_DOUBLE) 200c1d390e3SJed Brown # define MPIU_REAL MPI_DOUBLE 201c1d390e3SJed Brown #elif defined(PETSC_USE_REAL___FLOAT128) 202c1d390e3SJed Brown # define MPIU_REAL MPIU___FLOAT128 203570b7f6dSBarry Smith #elif defined(PETSC_USE_REAL___FP16) 204570b7f6dSBarry Smith # define MPIU_REAL MPIU___FP16 205c1d390e3SJed Brown #endif /* PETSC_USE_REAL_* */ 20659cb5930SBarry Smith 2071093a601SBarry Smith /* 2081093a601SBarry Smith Complex number definitions 2091093a601SBarry Smith */ 210df4397b0SStefano Zampini #if defined(PETSC_HAVE_COMPLEX) 211450fc7c9SSatish Balay #if defined(__cplusplus) && !defined(PETSC_USE_REAL___FLOAT128) 2121093a601SBarry Smith /* C++ support of complex number */ 213b7940d39SSatish Balay 21450f81f78SJed Brown #define PetscRealPartComplex(a) (a).real() 21550f81f78SJed Brown #define PetscImaginaryPartComplex(a) (a).imag() 216df4397b0SStefano Zampini #define PetscAbsComplex(a) petsccomplexlib::abs(a) 2175117d392SLisandro Dalcin #define PetscArgComplex(a) petsccomplexlib::arg(a) 218df4397b0SStefano Zampini #define PetscConjComplex(a) petsccomplexlib::conj(a) 219df4397b0SStefano Zampini #define PetscSqrtComplex(a) petsccomplexlib::sqrt(a) 220df4397b0SStefano Zampini #define PetscPowComplex(a,b) petsccomplexlib::pow(a,b) 221df4397b0SStefano Zampini #define PetscExpComplex(a) petsccomplexlib::exp(a) 222df4397b0SStefano Zampini #define PetscLogComplex(a) petsccomplexlib::log(a) 223df4397b0SStefano Zampini #define PetscSinComplex(a) petsccomplexlib::sin(a) 224df4397b0SStefano Zampini #define PetscCosComplex(a) petsccomplexlib::cos(a) 2255117d392SLisandro Dalcin #define PetscTanComplex(a) petsccomplexlib::tan(a) 226df4397b0SStefano Zampini #define PetscAsinComplex(a) petsccomplexlib::asin(a) 227df4397b0SStefano Zampini #define PetscAcosComplex(a) petsccomplexlib::acos(a) 2285117d392SLisandro Dalcin #define PetscAtanComplex(a) petsccomplexlib::atan(a) 229df4397b0SStefano Zampini #define PetscSinhComplex(a) petsccomplexlib::sinh(a) 230df4397b0SStefano Zampini #define PetscCoshComplex(a) petsccomplexlib::cosh(a) 231df4397b0SStefano Zampini #define PetscTanhComplex(a) petsccomplexlib::tanh(a) 2325117d392SLisandro Dalcin #define PetscAsinhComplex(a) petsccomplexlib::asinh(a) 2335117d392SLisandro Dalcin #define PetscAcoshComplex(a) petsccomplexlib::acosh(a) 2345117d392SLisandro Dalcin #define PetscAtanhComplex(a) petsccomplexlib::atanh(a) 2355117d392SLisandro Dalcin 2365117d392SLisandro Dalcin /* TODO: Add configure tests 2375117d392SLisandro Dalcin 2385117d392SLisandro Dalcin #if !defined(PETSC_HAVE_CXX_TAN_COMPLEX) 2395117d392SLisandro Dalcin #undef PetscTanComplex 2409fbee547SJacob Faibussowitsch static inline PetscComplex PetscTanComplex(PetscComplex z) 2415117d392SLisandro Dalcin { 2425117d392SLisandro Dalcin return PetscSinComplex(z)/PetscCosComplex(z); 2435117d392SLisandro Dalcin } 244027d9794SBarry Smith #endif 245debe9ee2SPaul Mullowney 2465117d392SLisandro Dalcin #if !defined(PETSC_HAVE_CXX_TANH_COMPLEX) 2475117d392SLisandro Dalcin #undef PetscTanhComplex 2489fbee547SJacob Faibussowitsch static inline PetscComplex PetscTanhComplex(PetscComplex z) 2495117d392SLisandro Dalcin { 2505117d392SLisandro Dalcin return PetscSinhComplex(z)/PetscCoshComplex(z); 2515117d392SLisandro Dalcin } 2525117d392SLisandro Dalcin #endif 2535117d392SLisandro Dalcin 2545117d392SLisandro Dalcin #if !defined(PETSC_HAVE_CXX_ASIN_COMPLEX) 2555117d392SLisandro Dalcin #undef PetscAsinComplex 2569fbee547SJacob Faibussowitsch static inline PetscComplex PetscAsinComplex(PetscComplex z) 2575117d392SLisandro Dalcin { 2585117d392SLisandro Dalcin const PetscComplex j(0,1); 2595117d392SLisandro Dalcin return -j*PetscLogComplex(j*z+PetscSqrtComplex(1.0f-z*z)); 2605117d392SLisandro Dalcin } 2615117d392SLisandro Dalcin #endif 2625117d392SLisandro Dalcin 2635117d392SLisandro Dalcin #if !defined(PETSC_HAVE_CXX_ACOS_COMPLEX) 2645117d392SLisandro Dalcin #undef PetscAcosComplex 2659fbee547SJacob Faibussowitsch static inline PetscComplex PetscAcosComplex(PetscComplex z) 2665117d392SLisandro Dalcin { 2675117d392SLisandro Dalcin const PetscComplex j(0,1); 2685117d392SLisandro Dalcin return j*PetscLogComplex(z-j*PetscSqrtComplex(1.0f-z*z)); 2695117d392SLisandro Dalcin } 2705117d392SLisandro Dalcin #endif 2715117d392SLisandro Dalcin 2725117d392SLisandro Dalcin #if !defined(PETSC_HAVE_CXX_ATAN_COMPLEX) 2735117d392SLisandro Dalcin #undef PetscAtanComplex 2749fbee547SJacob Faibussowitsch static inline PetscComplex PetscAtanComplex(PetscComplex z) 2755117d392SLisandro Dalcin { 2765117d392SLisandro Dalcin const PetscComplex j(0,1); 2775117d392SLisandro Dalcin return 0.5f*j*PetscLogComplex((1.0f-j*z)/(1.0f+j*z)); 2785117d392SLisandro Dalcin } 2795117d392SLisandro Dalcin #endif 2805117d392SLisandro Dalcin 2815117d392SLisandro Dalcin #if !defined(PETSC_HAVE_CXX_ASINH_COMPLEX) 2825117d392SLisandro Dalcin #undef PetscAsinhComplex 2839fbee547SJacob Faibussowitsch static inline PetscComplex PetscAsinhComplex(PetscComplex z) 2845117d392SLisandro Dalcin { 2855117d392SLisandro Dalcin return PetscLogComplex(z+PetscSqrtComplex(z*z+1.0f)); 2865117d392SLisandro Dalcin } 2875117d392SLisandro Dalcin #endif 2885117d392SLisandro Dalcin 2895117d392SLisandro Dalcin #if !defined(PETSC_HAVE_CXX_ACOSH_COMPLEX) 2905117d392SLisandro Dalcin #undef PetscAcoshComplex 2919fbee547SJacob Faibussowitsch static inline PetscComplex PetscAcoshComplex(PetscComplex z) 2925117d392SLisandro Dalcin { 2935117d392SLisandro Dalcin return PetscLogComplex(z+PetscSqrtComplex(z*z-1.0f)); 2945117d392SLisandro Dalcin } 2955117d392SLisandro Dalcin #endif 2965117d392SLisandro Dalcin 2975117d392SLisandro Dalcin #if !defined(PETSC_HAVE_CXX_ATANH_COMPLEX) 2985117d392SLisandro Dalcin #undef PetscAtanhComplex 2999fbee547SJacob Faibussowitsch static inline PetscComplex PetscAtanhComplex(PetscComplex z) 3005117d392SLisandro Dalcin { 3015117d392SLisandro Dalcin return 0.5f*PetscLogComplex((1.0f+z)/(1.0f-z)); 3025117d392SLisandro Dalcin } 3035117d392SLisandro Dalcin #endif 3045117d392SLisandro Dalcin 3055117d392SLisandro Dalcin */ 3065117d392SLisandro Dalcin 3077a19d461SSatish Balay #else /* C99 support of complex number */ 308519e2a1fSPaul Mullowney 3097a19d461SSatish Balay #if defined(PETSC_USE_REAL_SINGLE) 31050f81f78SJed Brown #define PetscRealPartComplex(a) crealf(a) 31150f81f78SJed Brown #define PetscImaginaryPartComplex(a) cimagf(a) 31250f81f78SJed Brown #define PetscAbsComplex(a) cabsf(a) 3135117d392SLisandro Dalcin #define PetscArgComplex(a) cargf(a) 31450f81f78SJed Brown #define PetscConjComplex(a) conjf(a) 31550f81f78SJed Brown #define PetscSqrtComplex(a) csqrtf(a) 31650f81f78SJed Brown #define PetscPowComplex(a,b) cpowf(a,b) 31750f81f78SJed Brown #define PetscExpComplex(a) cexpf(a) 31850f81f78SJed Brown #define PetscLogComplex(a) clogf(a) 31950f81f78SJed Brown #define PetscSinComplex(a) csinf(a) 32050f81f78SJed Brown #define PetscCosComplex(a) ccosf(a) 3215117d392SLisandro Dalcin #define PetscTanComplex(a) ctanf(a) 322255453a1SBarry Smith #define PetscAsinComplex(a) casinf(a) 323255453a1SBarry Smith #define PetscAcosComplex(a) cacosf(a) 3245117d392SLisandro Dalcin #define PetscAtanComplex(a) catanf(a) 325a4bea5a6SPeter Brune #define PetscSinhComplex(a) csinhf(a) 326a4bea5a6SPeter Brune #define PetscCoshComplex(a) ccoshf(a) 327a4bea5a6SPeter Brune #define PetscTanhComplex(a) ctanhf(a) 3285117d392SLisandro Dalcin #define PetscAsinhComplex(a) casinhf(a) 3295117d392SLisandro Dalcin #define PetscAcoshComplex(a) cacoshf(a) 3305117d392SLisandro Dalcin #define PetscAtanhComplex(a) catanhf(a) 3311093a601SBarry Smith 332ce63c4c1SBarry Smith #elif defined(PETSC_USE_REAL_DOUBLE) 33350f81f78SJed Brown #define PetscRealPartComplex(a) creal(a) 33450f81f78SJed Brown #define PetscImaginaryPartComplex(a) cimag(a) 33550f81f78SJed Brown #define PetscAbsComplex(a) cabs(a) 3365117d392SLisandro Dalcin #define PetscArgComplex(a) carg(a) 33750f81f78SJed Brown #define PetscConjComplex(a) conj(a) 33850f81f78SJed Brown #define PetscSqrtComplex(a) csqrt(a) 33950f81f78SJed Brown #define PetscPowComplex(a,b) cpow(a,b) 34050f81f78SJed Brown #define PetscExpComplex(a) cexp(a) 34150f81f78SJed Brown #define PetscLogComplex(a) clog(a) 34250f81f78SJed Brown #define PetscSinComplex(a) csin(a) 34350f81f78SJed Brown #define PetscCosComplex(a) ccos(a) 3445117d392SLisandro Dalcin #define PetscTanComplex(a) ctan(a) 345255453a1SBarry Smith #define PetscAsinComplex(a) casin(a) 346255453a1SBarry Smith #define PetscAcosComplex(a) cacos(a) 3475117d392SLisandro Dalcin #define PetscAtanComplex(a) catan(a) 348a4bea5a6SPeter Brune #define PetscSinhComplex(a) csinh(a) 349a4bea5a6SPeter Brune #define PetscCoshComplex(a) ccosh(a) 350a4bea5a6SPeter Brune #define PetscTanhComplex(a) ctanh(a) 3515117d392SLisandro Dalcin #define PetscAsinhComplex(a) casinh(a) 3525117d392SLisandro Dalcin #define PetscAcoshComplex(a) cacosh(a) 3535117d392SLisandro Dalcin #define PetscAtanhComplex(a) catanh(a) 3541093a601SBarry Smith 3558c764dc5SJose Roman #elif defined(PETSC_USE_REAL___FLOAT128) 35650f81f78SJed Brown #define PetscRealPartComplex(a) crealq(a) 35750f81f78SJed Brown #define PetscImaginaryPartComplex(a) cimagq(a) 35850f81f78SJed Brown #define PetscAbsComplex(a) cabsq(a) 3595117d392SLisandro Dalcin #define PetscArgComplex(a) cargq(a) 36050f81f78SJed Brown #define PetscConjComplex(a) conjq(a) 36150f81f78SJed Brown #define PetscSqrtComplex(a) csqrtq(a) 36250f81f78SJed Brown #define PetscPowComplex(a,b) cpowq(a,b) 36350f81f78SJed Brown #define PetscExpComplex(a) cexpq(a) 36450f81f78SJed Brown #define PetscLogComplex(a) clogq(a) 36550f81f78SJed Brown #define PetscSinComplex(a) csinq(a) 36650f81f78SJed Brown #define PetscCosComplex(a) ccosq(a) 3675117d392SLisandro Dalcin #define PetscTanComplex(a) ctanq(a) 368255453a1SBarry Smith #define PetscAsinComplex(a) casinq(a) 369255453a1SBarry Smith #define PetscAcosComplex(a) cacosq(a) 3705117d392SLisandro Dalcin #define PetscAtanComplex(a) catanq(a) 371a4bea5a6SPeter Brune #define PetscSinhComplex(a) csinhq(a) 372a4bea5a6SPeter Brune #define PetscCoshComplex(a) ccoshq(a) 373a4bea5a6SPeter Brune #define PetscTanhComplex(a) ctanhq(a) 3745117d392SLisandro Dalcin #define PetscAsinhComplex(a) casinhq(a) 3755117d392SLisandro Dalcin #define PetscAcoshComplex(a) cacoshq(a) 3765117d392SLisandro Dalcin #define PetscAtanhComplex(a) catanhq(a) 377a4bea5a6SPeter Brune 378ce63c4c1SBarry Smith #endif /* PETSC_USE_REAL_* */ 3797a19d461SSatish Balay #endif /* (__cplusplus) */ 380e489efc1SBarry Smith 3811093a601SBarry Smith /* 3825117d392SLisandro Dalcin PETSC_i is the imaginary number, i 3831093a601SBarry Smith */ 38450f81f78SJed Brown PETSC_EXTERN PetscComplex PETSC_i; 3858a351411SToby Isaac 3865117d392SLisandro Dalcin /* 3875117d392SLisandro Dalcin Try to do the right thing for complex number construction: see 3888a351411SToby Isaac http://www.open-std.org/jtc1/sc22/wg14/www/docs/n1464.htm 3898a351411SToby Isaac for details 3908a351411SToby Isaac */ 3919fbee547SJacob Faibussowitsch static inline PetscComplex PetscCMPLX(PetscReal x, PetscReal y) 3928a351411SToby Isaac { 393450fc7c9SSatish Balay #if defined(__cplusplus) && !defined(PETSC_USE_REAL___FLOAT128) 3948a351411SToby Isaac return PetscComplex(x,y); 3958a351411SToby Isaac #elif defined(_Imaginary_I) 3968a351411SToby Isaac return x + y * _Imaginary_I; 3978a351411SToby Isaac #else 398616d7c5eSToby Isaac { /* In both C99 and C11 (ISO/IEC 9899, Section 6.2.5), 399616d7c5eSToby Isaac 400616d7c5eSToby Isaac "For each floating type there is a corresponding real type, which is always a real floating 401616d7c5eSToby Isaac type. For real floating types, it is the same type. For complex types, it is the type given 402616d7c5eSToby Isaac by deleting the keyword _Complex from the type name." 403616d7c5eSToby Isaac 404616d7c5eSToby Isaac So type punning should be portable. */ 405616d7c5eSToby Isaac union { PetscComplex z; PetscReal f[2]; } uz; 406616d7c5eSToby Isaac 407616d7c5eSToby Isaac uz.f[0] = x; 408616d7c5eSToby Isaac uz.f[1] = y; 409616d7c5eSToby Isaac return uz.z; 410616d7c5eSToby Isaac } 41150f81f78SJed Brown #endif 4128a351411SToby Isaac } 4138a351411SToby Isaac 414de272c7aSSatish Balay #define MPIU_C_COMPLEX MPI_C_COMPLEX PETSC_DEPRECATED_MACRO("GCC warning \"MPIU_C_COMPLEX macro is deprecated use MPI_C_COMPLEX (since version 3.15)\"") 415de272c7aSSatish Balay #define MPIU_C_DOUBLE_COMPLEX MPI_C_DOUBLE_COMPLEX PETSC_DEPRECATED_MACRO("GCC warning \"MPIU_C_DOUBLE_COMPLEX macro is deprecated use MPI_C_DOUBLE_COMPLEX (since version 3.15)\"") 416de272c7aSSatish Balay 417*613bf2b2SPierre Jolivet #if defined(PETSC_HAVE_REAL___FLOAT128) 4185117d392SLisandro Dalcin PETSC_EXTERN MPI_Datatype MPIU___COMPLEX128 PetscAttrMPITypeTag(__complex128); 419*613bf2b2SPierre Jolivet #endif /* PETSC_HAVE_REAL___FLOAT128 */ 4205117d392SLisandro Dalcin 4215117d392SLisandro Dalcin /*MC 42287497f52SBarry Smith MPIU_COMPLEX - Portable MPI datatype corresponding to `PetscComplex` independent of the precision of `PetscComplex` 4235117d392SLisandro Dalcin 4245117d392SLisandro Dalcin Notes: 42587497f52SBarry Smith In MPI calls that require an MPI datatype that matches a `PetscComplex` or array of `PetscComplex` values, pass this value. 4265117d392SLisandro Dalcin 4275117d392SLisandro Dalcin Level: beginner 4285117d392SLisandro Dalcin 429db781477SPatrick Sanan .seealso: `PetscReal`, `PetscScalar`, `PetscComplex`, `PetscInt`, `MPIU_REAL`, `MPIU_SCALAR`, `MPIU_COMPLEX`, `MPIU_INT`, `PETSC_i` 4305117d392SLisandro Dalcin M*/ 4315117d392SLisandro Dalcin #if defined(PETSC_USE_REAL_SINGLE) 432de272c7aSSatish Balay # define MPIU_COMPLEX MPI_C_COMPLEX 4335117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL_DOUBLE) 434de272c7aSSatish Balay # define MPIU_COMPLEX MPI_C_DOUBLE_COMPLEX 4355117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL___FLOAT128) 4365117d392SLisandro Dalcin # define MPIU_COMPLEX MPIU___COMPLEX128 4375117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL___FP16) 438de272c7aSSatish Balay # define MPIU_COMPLEX MPI_C_COMPLEX 4395117d392SLisandro Dalcin #endif /* PETSC_USE_REAL_* */ 4405117d392SLisandro Dalcin 4415117d392SLisandro Dalcin #endif /* PETSC_HAVE_COMPLEX */ 4425117d392SLisandro Dalcin 4435117d392SLisandro Dalcin /* 4445117d392SLisandro Dalcin Scalar number definitions 4455117d392SLisandro Dalcin */ 4467a19d461SSatish Balay #if defined(PETSC_USE_COMPLEX) && defined(PETSC_HAVE_COMPLEX) 4475117d392SLisandro Dalcin /*MC 44887497f52SBarry Smith MPIU_SCALAR - Portable MPI datatype corresponding to `PetscScalar` independent of the precision of `PetscScalar` 4495117d392SLisandro Dalcin 4505117d392SLisandro Dalcin Notes: 45187497f52SBarry Smith In MPI calls that require an MPI datatype that matches a `PetscScalar` or array of `PetscScalar` values, pass this value. 4525117d392SLisandro Dalcin 4535117d392SLisandro Dalcin Level: beginner 4545117d392SLisandro Dalcin 455db781477SPatrick Sanan .seealso: `PetscReal`, `PetscScalar`, `PetscComplex`, `PetscInt`, `MPIU_REAL`, `MPIU_COMPLEX`, `MPIU_INT` 4565117d392SLisandro Dalcin M*/ 4575117d392SLisandro Dalcin #define MPIU_SCALAR MPIU_COMPLEX 4585117d392SLisandro Dalcin 4595117d392SLisandro Dalcin /*MC 46087497f52SBarry Smith PetscRealPart - Returns the real part of a `PetscScalar` 4615117d392SLisandro Dalcin 4625117d392SLisandro Dalcin Synopsis: 4635117d392SLisandro Dalcin #include <petscmath.h> 4645117d392SLisandro Dalcin PetscReal PetscRealPart(PetscScalar v) 4655117d392SLisandro Dalcin 4665117d392SLisandro Dalcin Not Collective 4675117d392SLisandro Dalcin 4685117d392SLisandro Dalcin Input Parameter: 4695117d392SLisandro Dalcin . v - value to find the real part of 4705117d392SLisandro Dalcin 4715117d392SLisandro Dalcin Level: beginner 4725117d392SLisandro Dalcin 473db781477SPatrick Sanan .seealso: `PetscScalar`, `PetscImaginaryPart()`, `PetscMax()`, `PetscClipInterval()`, `PetscAbsInt()`, `PetscAbsReal()`, `PetscSqr()` 4745117d392SLisandro Dalcin 4755117d392SLisandro Dalcin M*/ 4765117d392SLisandro Dalcin #define PetscRealPart(a) PetscRealPartComplex(a) 4775117d392SLisandro Dalcin 4785117d392SLisandro Dalcin /*MC 47987497f52SBarry Smith PetscImaginaryPart - Returns the imaginary part of a `PetscScalar` 4805117d392SLisandro Dalcin 4815117d392SLisandro Dalcin Synopsis: 4825117d392SLisandro Dalcin #include <petscmath.h> 4835117d392SLisandro Dalcin PetscReal PetscImaginaryPart(PetscScalar v) 4845117d392SLisandro Dalcin 4855117d392SLisandro Dalcin Not Collective 4865117d392SLisandro Dalcin 4875117d392SLisandro Dalcin Input Parameter: 4885117d392SLisandro Dalcin . v - value to find the imaginary part of 4895117d392SLisandro Dalcin 4905117d392SLisandro Dalcin Level: beginner 4915117d392SLisandro Dalcin 4925117d392SLisandro Dalcin Notes: 4935117d392SLisandro Dalcin If PETSc was configured for real numbers then this always returns the value 0 4945117d392SLisandro Dalcin 495db781477SPatrick Sanan .seealso: `PetscScalar`, `PetscRealPart()`, `PetscMax()`, `PetscClipInterval()`, `PetscAbsInt()`, `PetscAbsReal()`, `PetscSqr()` 4965117d392SLisandro Dalcin 4975117d392SLisandro Dalcin M*/ 4985117d392SLisandro Dalcin #define PetscImaginaryPart(a) PetscImaginaryPartComplex(a) 4995117d392SLisandro Dalcin 5005117d392SLisandro Dalcin #define PetscAbsScalar(a) PetscAbsComplex(a) 5015117d392SLisandro Dalcin #define PetscArgScalar(a) PetscArgComplex(a) 5025117d392SLisandro Dalcin #define PetscConj(a) PetscConjComplex(a) 5035117d392SLisandro Dalcin #define PetscSqrtScalar(a) PetscSqrtComplex(a) 5045117d392SLisandro Dalcin #define PetscPowScalar(a,b) PetscPowComplex(a,b) 5055117d392SLisandro Dalcin #define PetscExpScalar(a) PetscExpComplex(a) 5065117d392SLisandro Dalcin #define PetscLogScalar(a) PetscLogComplex(a) 5075117d392SLisandro Dalcin #define PetscSinScalar(a) PetscSinComplex(a) 5085117d392SLisandro Dalcin #define PetscCosScalar(a) PetscCosComplex(a) 5095117d392SLisandro Dalcin #define PetscTanScalar(a) PetscTanComplex(a) 5105117d392SLisandro Dalcin #define PetscAsinScalar(a) PetscAsinComplex(a) 5115117d392SLisandro Dalcin #define PetscAcosScalar(a) PetscAcosComplex(a) 5125117d392SLisandro Dalcin #define PetscAtanScalar(a) PetscAtanComplex(a) 5135117d392SLisandro Dalcin #define PetscSinhScalar(a) PetscSinhComplex(a) 5145117d392SLisandro Dalcin #define PetscCoshScalar(a) PetscCoshComplex(a) 5155117d392SLisandro Dalcin #define PetscTanhScalar(a) PetscTanhComplex(a) 5165117d392SLisandro Dalcin #define PetscAsinhScalar(a) PetscAsinhComplex(a) 5175117d392SLisandro Dalcin #define PetscAcoshScalar(a) PetscAcoshComplex(a) 5185117d392SLisandro Dalcin #define PetscAtanhScalar(a) PetscAtanhComplex(a) 5195117d392SLisandro Dalcin 5205117d392SLisandro Dalcin #else /* PETSC_USE_COMPLEX */ 5215117d392SLisandro Dalcin #define MPIU_SCALAR MPIU_REAL 5225117d392SLisandro Dalcin #define PetscRealPart(a) (a) 5235117d392SLisandro Dalcin #define PetscImaginaryPart(a) ((PetscReal)0) 5245117d392SLisandro Dalcin #define PetscAbsScalar(a) PetscAbsReal(a) 5255117d392SLisandro Dalcin #define PetscArgScalar(a) (((a) < (PetscReal)0) ? PETSC_PI : (PetscReal)0) 5265117d392SLisandro Dalcin #define PetscConj(a) (a) 5275117d392SLisandro Dalcin #define PetscSqrtScalar(a) PetscSqrtReal(a) 5285117d392SLisandro Dalcin #define PetscPowScalar(a,b) PetscPowReal(a,b) 5295117d392SLisandro Dalcin #define PetscExpScalar(a) PetscExpReal(a) 5305117d392SLisandro Dalcin #define PetscLogScalar(a) PetscLogReal(a) 5315117d392SLisandro Dalcin #define PetscSinScalar(a) PetscSinReal(a) 5325117d392SLisandro Dalcin #define PetscCosScalar(a) PetscCosReal(a) 5335117d392SLisandro Dalcin #define PetscTanScalar(a) PetscTanReal(a) 5345117d392SLisandro Dalcin #define PetscAsinScalar(a) PetscAsinReal(a) 5355117d392SLisandro Dalcin #define PetscAcosScalar(a) PetscAcosReal(a) 5365117d392SLisandro Dalcin #define PetscAtanScalar(a) PetscAtanReal(a) 5375117d392SLisandro Dalcin #define PetscSinhScalar(a) PetscSinhReal(a) 5385117d392SLisandro Dalcin #define PetscCoshScalar(a) PetscCoshReal(a) 5395117d392SLisandro Dalcin #define PetscTanhScalar(a) PetscTanhReal(a) 5405117d392SLisandro Dalcin #define PetscAsinhScalar(a) PetscAsinhReal(a) 5415117d392SLisandro Dalcin #define PetscAcoshScalar(a) PetscAcoshReal(a) 5425117d392SLisandro Dalcin #define PetscAtanhScalar(a) PetscAtanhReal(a) 5435117d392SLisandro Dalcin 5445117d392SLisandro Dalcin #endif /* PETSC_USE_COMPLEX */ 5455117d392SLisandro Dalcin 5465117d392SLisandro Dalcin /* 5475117d392SLisandro Dalcin Certain objects may be created using either single or double precision. 5485117d392SLisandro Dalcin This is currently not used. 5495117d392SLisandro Dalcin */ 5505117d392SLisandro Dalcin typedef enum { PETSC_SCALAR_DOUBLE, PETSC_SCALAR_SINGLE, PETSC_SCALAR_LONG_DOUBLE, PETSC_SCALAR_HALF } PetscScalarPrecision; 5515117d392SLisandro Dalcin 5525117d392SLisandro Dalcin /* --------------------------------------------------------------------------*/ 5535117d392SLisandro Dalcin 5545117d392SLisandro Dalcin /*MC 5555117d392SLisandro Dalcin PetscAbs - Returns the absolute value of a number 5565117d392SLisandro Dalcin 5575117d392SLisandro Dalcin Synopsis: 5585117d392SLisandro Dalcin #include <petscmath.h> 5595117d392SLisandro Dalcin type PetscAbs(type v) 5605117d392SLisandro Dalcin 5615117d392SLisandro Dalcin Not Collective 5625117d392SLisandro Dalcin 5635117d392SLisandro Dalcin Input Parameter: 5645117d392SLisandro Dalcin . v - the number 5655117d392SLisandro Dalcin 56687497f52SBarry Smith Note: 56787497f52SBarry Smith The type can be integer or real floating point value, but cannot be complex 5685117d392SLisandro Dalcin 5695117d392SLisandro Dalcin Level: beginner 5705117d392SLisandro Dalcin 571db781477SPatrick Sanan .seealso: `PetscAbsInt()`, `PetscAbsReal()`, `PetscAbsScalar()` 5725117d392SLisandro Dalcin 5735117d392SLisandro Dalcin M*/ 5745117d392SLisandro Dalcin #define PetscAbs(a) (((a) >= 0) ? (a) : (-(a))) 5755117d392SLisandro Dalcin 5765117d392SLisandro Dalcin /*MC 5775117d392SLisandro Dalcin PetscSign - Returns the sign of a number as an integer 5785117d392SLisandro Dalcin 5795117d392SLisandro Dalcin Synopsis: 5805117d392SLisandro Dalcin #include <petscmath.h> 5815117d392SLisandro Dalcin int PetscSign(type v) 5825117d392SLisandro Dalcin 5835117d392SLisandro Dalcin Not Collective 5845117d392SLisandro Dalcin 5855117d392SLisandro Dalcin Input Parameter: 5865117d392SLisandro Dalcin . v - the number 5875117d392SLisandro Dalcin 58887497f52SBarry Smith Note: 58987497f52SBarry Smith The type can be integer or real floating point value 5905117d392SLisandro Dalcin 5915117d392SLisandro Dalcin Level: beginner 5925117d392SLisandro Dalcin 5935117d392SLisandro Dalcin M*/ 5945117d392SLisandro Dalcin #define PetscSign(a) (((a) >= 0) ? ((a) == 0 ? 0 : 1) : -1) 595e489efc1SBarry Smith 596b6a5bde7SBarry Smith /*MC 597b6a5bde7SBarry Smith PetscMin - Returns minimum of two numbers 598b6a5bde7SBarry Smith 599eca87e8dSBarry Smith Synopsis: 600aaa7dc30SBarry Smith #include <petscmath.h> 601eca87e8dSBarry Smith type PetscMin(type v1,type v2) 602eca87e8dSBarry Smith 603eca87e8dSBarry Smith Not Collective 604eca87e8dSBarry Smith 605d8d19677SJose E. Roman Input Parameters: 606b6a5bde7SBarry Smith + v1 - first value to find minimum of 607b6a5bde7SBarry Smith - v2 - second value to find minimum of 608b6a5bde7SBarry Smith 60987497f52SBarry Smith Note: 61087497f52SBarry Smith The type can be integer or floating point value 611b6a5bde7SBarry Smith 612b6a5bde7SBarry Smith Level: beginner 613b6a5bde7SBarry Smith 614db781477SPatrick Sanan .seealso: `PetscMax()`, `PetscClipInterval()`, `PetscAbsInt()`, `PetscAbsReal()`, `PetscSqr()` 615b6a5bde7SBarry Smith 616b6a5bde7SBarry Smith M*/ 617e489efc1SBarry Smith #define PetscMin(a,b) (((a)<(b)) ? (a) : (b)) 618b6a5bde7SBarry Smith 619b6a5bde7SBarry Smith /*MC 620b6a5bde7SBarry Smith PetscMax - Returns maxium of two numbers 621b6a5bde7SBarry Smith 622eca87e8dSBarry Smith Synopsis: 623aaa7dc30SBarry Smith #include <petscmath.h> 624eca87e8dSBarry Smith type max PetscMax(type v1,type v2) 625eca87e8dSBarry Smith 626eca87e8dSBarry Smith Not Collective 627eca87e8dSBarry Smith 628d8d19677SJose E. Roman Input Parameters: 629b6a5bde7SBarry Smith + v1 - first value to find maximum of 630b6a5bde7SBarry Smith - v2 - second value to find maximum of 631b6a5bde7SBarry Smith 63287497f52SBarry Smith Note: 63387497f52SBarry Smith The type can be integer or floating point value 634b6a5bde7SBarry Smith 635b6a5bde7SBarry Smith Level: beginner 636b6a5bde7SBarry Smith 637db781477SPatrick Sanan .seealso: `PetscMin()`, `PetscClipInterval()`, `PetscAbsInt()`, `PetscAbsReal()`, `PetscSqr()` 638b6a5bde7SBarry Smith 639b6a5bde7SBarry Smith M*/ 640e489efc1SBarry Smith #define PetscMax(a,b) (((a)<(b)) ? (b) : (a)) 641b6a5bde7SBarry Smith 642b6a5bde7SBarry Smith /*MC 643d9a4bb16SJed Brown PetscClipInterval - Returns a number clipped to be within an interval 644d9a4bb16SJed Brown 645d9a4bb16SJed Brown Synopsis: 646aaa7dc30SBarry Smith #include <petscmath.h> 647d9a4bb16SJed Brown type clip PetscClipInterval(type x,type a,type b) 648d9a4bb16SJed Brown 649d9a4bb16SJed Brown Not Collective 650d9a4bb16SJed Brown 651d8d19677SJose E. Roman Input Parameters: 6520d398bfeSStefano Zampini + x - value to use if within interval [a,b] 653d9a4bb16SJed Brown . a - lower end of interval 654d9a4bb16SJed Brown - b - upper end of interval 655d9a4bb16SJed Brown 65687497f52SBarry Smith Note: 65787497f52SBarry Smith The type can be integer or floating point value 658d9a4bb16SJed Brown 659d9a4bb16SJed Brown Level: beginner 660d9a4bb16SJed Brown 661db781477SPatrick Sanan .seealso: `PetscMin()`, `PetscMax()`, `PetscAbsInt()`, `PetscAbsReal()`, `PetscSqr()` 662d9a4bb16SJed Brown 663d9a4bb16SJed Brown M*/ 664d9a4bb16SJed Brown #define PetscClipInterval(x,a,b) (PetscMax((a),PetscMin((x),(b)))) 665d9a4bb16SJed Brown 666d9a4bb16SJed Brown /*MC 667b6a5bde7SBarry Smith PetscAbsInt - Returns the absolute value of an integer 668b6a5bde7SBarry Smith 669b6a5bde7SBarry Smith Synopsis: 670aaa7dc30SBarry Smith #include <petscmath.h> 671b6a5bde7SBarry Smith int abs PetscAbsInt(int v1) 672b6a5bde7SBarry Smith 673eca87e8dSBarry Smith Input Parameter: 674eca87e8dSBarry Smith . v1 - the integer 675b6a5bde7SBarry Smith 676b6a5bde7SBarry Smith Level: beginner 677b6a5bde7SBarry Smith 678db781477SPatrick Sanan .seealso: `PetscMax()`, `PetscMin()`, `PetscAbsReal()`, `PetscSqr()` 679b6a5bde7SBarry Smith 680b6a5bde7SBarry Smith M*/ 6819fa7d148SSatish Balay #define PetscAbsInt(a) (((a)<0) ? (-(a)) : (a)) 682b6a5bde7SBarry Smith 683b6a5bde7SBarry Smith /*MC 684b6a5bde7SBarry Smith PetscAbsReal - Returns the absolute value of an real number 685b6a5bde7SBarry Smith 686eca87e8dSBarry Smith Synopsis: 687aaa7dc30SBarry Smith #include <petscmath.h> 688eca87e8dSBarry Smith Real abs PetscAbsReal(PetscReal v1) 689eca87e8dSBarry Smith 690b6a5bde7SBarry Smith Input Parameter: 691b6a5bde7SBarry Smith . v1 - the double 692b6a5bde7SBarry Smith 693b6a5bde7SBarry Smith Level: beginner 694b6a5bde7SBarry Smith 695db781477SPatrick Sanan .seealso: `PetscMax()`, `PetscMin()`, `PetscAbsInt()`, `PetscSqr()` 696b6a5bde7SBarry Smith 697b6a5bde7SBarry Smith M*/ 6981118d4bcSLisandro Dalcin #if defined(PETSC_USE_REAL_SINGLE) 6991118d4bcSLisandro Dalcin #define PetscAbsReal(a) fabsf(a) 7001118d4bcSLisandro Dalcin #elif defined(PETSC_USE_REAL_DOUBLE) 7011118d4bcSLisandro Dalcin #define PetscAbsReal(a) fabs(a) 7021118d4bcSLisandro Dalcin #elif defined(PETSC_USE_REAL___FLOAT128) 7031118d4bcSLisandro Dalcin #define PetscAbsReal(a) fabsq(a) 7041118d4bcSLisandro Dalcin #elif defined(PETSC_USE_REAL___FP16) 7051118d4bcSLisandro Dalcin #define PetscAbsReal(a) fabsf(a) 7061118d4bcSLisandro Dalcin #endif 707b6a5bde7SBarry Smith 708b6a5bde7SBarry Smith /*MC 709b6a5bde7SBarry Smith PetscSqr - Returns the square of a number 710b6a5bde7SBarry Smith 711b6a5bde7SBarry Smith Synopsis: 712aaa7dc30SBarry Smith #include <petscmath.h> 713b6a5bde7SBarry Smith type sqr PetscSqr(type v1) 714b6a5bde7SBarry Smith 715eca87e8dSBarry Smith Not Collective 716eca87e8dSBarry Smith 717eca87e8dSBarry Smith Input Parameter: 718eca87e8dSBarry Smith . v1 - the value 719eca87e8dSBarry Smith 72087497f52SBarry Smith Note: 72187497f52SBarry Smith The type can be integer or floating point value 722b6a5bde7SBarry Smith 723b6a5bde7SBarry Smith Level: beginner 724b6a5bde7SBarry Smith 725db781477SPatrick Sanan .seealso: `PetscMax()`, `PetscMin()`, `PetscAbsInt()`, `PetscAbsReal()` 726b6a5bde7SBarry Smith 727b6a5bde7SBarry Smith M*/ 7284ebda54eSMatthew Knepley #define PetscSqr(a) ((a)*(a)) 729e489efc1SBarry Smith 730314da920SBarry Smith /* ----------------------------------------------------------------------------*/ 731ee223c85SLisandro Dalcin 732ee223c85SLisandro Dalcin #if defined(PETSC_USE_REAL_SINGLE) 733ee223c85SLisandro Dalcin #define PetscRealConstant(constant) constant##F 7345117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL_DOUBLE) 7355117d392SLisandro Dalcin #define PetscRealConstant(constant) constant 736ee223c85SLisandro Dalcin #elif defined(PETSC_USE_REAL___FLOAT128) 737ee223c85SLisandro Dalcin #define PetscRealConstant(constant) constant##Q 7385117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL___FP16) 7395117d392SLisandro Dalcin #define PetscRealConstant(constant) constant##F 740ee223c85SLisandro Dalcin #endif 741ee223c85SLisandro Dalcin 742314da920SBarry Smith /* 743d34fcf5fSBarry Smith Basic constants 744314da920SBarry Smith */ 7452fab75feSLisandro Dalcin #define PETSC_PI PetscRealConstant(3.1415926535897932384626433832795029) 7462fab75feSLisandro Dalcin #define PETSC_PHI PetscRealConstant(1.6180339887498948482045868343656381) 7477b156302SMatthew G. Knepley #define PETSC_SQRT2 PetscRealConstant(1.4142135623730950488016887242096981) 748d34fcf5fSBarry Smith 749ab824b78SBarry Smith #if !defined(PETSC_USE_64BIT_INDICES) 75071fd2e92SBarry Smith #define PETSC_MAX_INT 2147483647 751ab824b78SBarry Smith #define PETSC_MIN_INT (-PETSC_MAX_INT - 1) 752ab824b78SBarry Smith #else 753ab824b78SBarry Smith #define PETSC_MAX_INT 9223372036854775807L 754ab824b78SBarry Smith #define PETSC_MIN_INT (-PETSC_MAX_INT - 1) 755ab824b78SBarry Smith #endif 756569ea7c4SPierre Jolivet #define PETSC_MAX_UINT16 65535 757e489efc1SBarry Smith 758ce63c4c1SBarry Smith #if defined(PETSC_USE_REAL_SINGLE) 759ab824b78SBarry Smith # define PETSC_MAX_REAL 3.40282346638528860e+38F 7609fa7d148SSatish Balay # define PETSC_MIN_REAL (-PETSC_MAX_REAL) 76182a7e548SBarry Smith # define PETSC_MACHINE_EPSILON 1.19209290e-07F 76282a7e548SBarry Smith # define PETSC_SQRT_MACHINE_EPSILON 3.45266983e-04F 763ee223c85SLisandro Dalcin # define PETSC_SMALL 1.e-5F 764ce63c4c1SBarry Smith #elif defined(PETSC_USE_REAL_DOUBLE) 765ab824b78SBarry Smith # define PETSC_MAX_REAL 1.7976931348623157e+308 7669fa7d148SSatish Balay # define PETSC_MIN_REAL (-PETSC_MAX_REAL) 76782a7e548SBarry Smith # define PETSC_MACHINE_EPSILON 2.2204460492503131e-16 76882a7e548SBarry Smith # define PETSC_SQRT_MACHINE_EPSILON 1.490116119384766e-08 769cf6e855fSSatish Balay # define PETSC_SMALL 1.e-10 770ce63c4c1SBarry Smith #elif defined(PETSC_USE_REAL___FLOAT128) 771ea345e14SBarry Smith # define PETSC_MAX_REAL FLT128_MAX 7729fa7d148SSatish Balay # define PETSC_MIN_REAL (-FLT128_MAX) 773d34fcf5fSBarry Smith # define PETSC_MACHINE_EPSILON FLT128_EPSILON 774ee223c85SLisandro Dalcin # define PETSC_SQRT_MACHINE_EPSILON 1.38777878078144567552953958511352539e-17Q 775ee223c85SLisandro Dalcin # define PETSC_SMALL 1.e-20Q 7765117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL___FP16) 7775117d392SLisandro Dalcin # define PETSC_MAX_REAL 65504.0F 7789fa7d148SSatish Balay # define PETSC_MIN_REAL (-PETSC_MAX_REAL) 7795117d392SLisandro Dalcin # define PETSC_MACHINE_EPSILON .0009765625F 7805117d392SLisandro Dalcin # define PETSC_SQRT_MACHINE_EPSILON .03125F 7815117d392SLisandro Dalcin # define PETSC_SMALL 5.e-3F 7829cf09972SJed Brown #endif 7833e523bebSBarry Smith 78425d0f998SSatish Balay #define PETSC_INFINITY (PETSC_MAX_REAL/4) 7859fa7d148SSatish Balay #define PETSC_NINFINITY (-PETSC_INFINITY) 786e270355aSBarry Smith 7879f4f8022SLisandro Dalcin PETSC_EXTERN PetscBool PetscIsInfReal(PetscReal); 7883948c36eSLisandro Dalcin PETSC_EXTERN PetscBool PetscIsNanReal(PetscReal); 7898b49ba18SBarry Smith PETSC_EXTERN PetscBool PetscIsNormalReal(PetscReal); 7909fbee547SJacob Faibussowitsch static inline PetscBool PetscIsInfOrNanReal(PetscReal v) {return PetscIsInfReal(v) || PetscIsNanReal(v) ? PETSC_TRUE : PETSC_FALSE;} 7919fbee547SJacob Faibussowitsch static inline PetscBool PetscIsInfScalar(PetscScalar v) {return PetscIsInfReal(PetscAbsScalar(v));} 7929fbee547SJacob Faibussowitsch static inline PetscBool PetscIsNanScalar(PetscScalar v) {return PetscIsNanReal(PetscAbsScalar(v));} 7939fbee547SJacob Faibussowitsch static inline PetscBool PetscIsInfOrNanScalar(PetscScalar v) {return PetscIsInfOrNanReal(PetscAbsScalar(v));} 7949fbee547SJacob Faibussowitsch static inline PetscBool PetscIsNormalScalar(PetscScalar v) {return PetscIsNormalReal(PetscAbsScalar(v));} 7959a25a3ccSBarry Smith 796b10005b4SLisandro Dalcin PETSC_EXTERN PetscBool PetscIsCloseAtTol(PetscReal,PetscReal,PetscReal,PetscReal); 797ce4818fdSLisandro Dalcin PETSC_EXTERN PetscBool PetscEqualReal(PetscReal,PetscReal); 798ce4818fdSLisandro Dalcin PETSC_EXTERN PetscBool PetscEqualScalar(PetscScalar,PetscScalar); 799ce4818fdSLisandro Dalcin 80098725619SBarry Smith /* 80198725619SBarry Smith These macros are currently hardwired to match the regular data types, so there is no support for a different 80298725619SBarry Smith MatScalar from PetscScalar. We left the MatScalar in the source just in case we use it again. 80398725619SBarry Smith */ 80498725619SBarry Smith #define MPIU_MATSCALAR MPIU_SCALAR 80598725619SBarry Smith typedef PetscScalar MatScalar; 80698725619SBarry Smith typedef PetscReal MatReal; 80798725619SBarry Smith 8088ad47952SJed Brown struct petsc_mpiu_2scalar {PetscScalar a,b;}; 8098ad47952SJed Brown PETSC_EXTERN MPI_Datatype MPIU_2SCALAR PetscAttrMPITypeTagLayoutCompatible(struct petsc_mpiu_2scalar); 810df4397b0SStefano Zampini 811092991acSStefano Zampini /* 812092991acSStefano Zampini MPI Datatypes for composite reductions: 813092991acSStefano Zampini MPIU_REAL_INT -> struct { PetscReal; PetscInt; } 814092991acSStefano Zampini MPIU_SCALAR_INT -> struct { PetscScalar; PetscInt; } 815092991acSStefano Zampini */ 816092991acSStefano Zampini PETSC_EXTERN MPI_Datatype MPIU_REAL_INT; 817092991acSStefano Zampini PETSC_EXTERN MPI_Datatype MPIU_SCALAR_INT; 818092991acSStefano Zampini 819a616ada9SVaclav Hapla #if defined(PETSC_USE_64BIT_INDICES) 8208ad47952SJed Brown struct petsc_mpiu_2int {PetscInt a,b;}; 8218ad47952SJed Brown PETSC_EXTERN MPI_Datatype MPIU_2INT PetscAttrMPITypeTagLayoutCompatible(struct petsc_mpiu_2int); 8228ad47952SJed Brown #else 8238ad47952SJed Brown #define MPIU_2INT MPI_2INT 8248ad47952SJed Brown #endif 825b5a892a1SMatthew G. Knepley PETSC_EXTERN MPI_Datatype MPI_4INT; 826b5a892a1SMatthew G. Knepley PETSC_EXTERN MPI_Datatype MPIU_4INT; 827e9fa29b7SSatish Balay 8289fbee547SJacob Faibussowitsch static inline PetscInt PetscPowInt(PetscInt base,PetscInt power) 829b2fb0278SBarry Smith { 830fa711258SJed Brown PetscInt result = 1; 831fa711258SJed Brown while (power) { 832fa711258SJed Brown if (power & 1) result *= base; 833fa711258SJed Brown power >>= 1; 834fa711258SJed Brown base *= base; 835fa711258SJed Brown } 836fa711258SJed Brown return result; 837fa711258SJed Brown } 838b2fb0278SBarry Smith 8399fbee547SJacob Faibussowitsch static inline PetscInt64 PetscPowInt64(PetscInt base,PetscInt power) 840ad70a4c3SStefano Zampini { 841ad70a4c3SStefano Zampini PetscInt64 result = 1; 842ad70a4c3SStefano Zampini while (power) { 843ad70a4c3SStefano Zampini if (power & 1) result *= base; 844ad70a4c3SStefano Zampini power >>= 1; 845ad70a4c3SStefano Zampini base *= base; 846ad70a4c3SStefano Zampini } 847ad70a4c3SStefano Zampini return result; 848ad70a4c3SStefano Zampini } 849ad70a4c3SStefano Zampini 8509fbee547SJacob Faibussowitsch static inline PetscReal PetscPowRealInt(PetscReal base,PetscInt power) 851b2fb0278SBarry Smith { 852fa711258SJed Brown PetscReal result = 1; 853d98d5da7SBarry Smith if (power < 0) { 854d98d5da7SBarry Smith power = -power; 85510d40e53SLisandro Dalcin base = ((PetscReal)1)/base; 856d98d5da7SBarry Smith } 857fa711258SJed Brown while (power) { 858fa711258SJed Brown if (power & 1) result *= base; 859fa711258SJed Brown power >>= 1; 860fa711258SJed Brown base *= base; 861fa711258SJed Brown } 862fa711258SJed Brown return result; 863fa711258SJed Brown } 864fa711258SJed Brown 8659fbee547SJacob Faibussowitsch static inline PetscScalar PetscPowScalarInt(PetscScalar base,PetscInt power) 866b2fb0278SBarry Smith { 8675117d392SLisandro Dalcin PetscScalar result = (PetscReal)1; 8688b49ba18SBarry Smith if (power < 0) { 8698b49ba18SBarry Smith power = -power; 87010d40e53SLisandro Dalcin base = ((PetscReal)1)/base; 8718b49ba18SBarry Smith } 8728b49ba18SBarry Smith while (power) { 8738b49ba18SBarry Smith if (power & 1) result *= base; 8748b49ba18SBarry Smith power >>= 1; 8758b49ba18SBarry Smith base *= base; 8768b49ba18SBarry Smith } 8778b49ba18SBarry Smith return result; 8788b49ba18SBarry Smith } 8798b49ba18SBarry Smith 8809fbee547SJacob Faibussowitsch static inline PetscScalar PetscPowScalarReal(PetscScalar base,PetscReal power) 881b2fb0278SBarry Smith { 882b2fb0278SBarry Smith PetscScalar cpower = power; 883b2fb0278SBarry Smith return PetscPowScalar(base,cpower); 884b2fb0278SBarry Smith } 88578a59e97SMatthew G. Knepley 886c803a25aSBarry Smith /*MC 88766baab88SBarry Smith PetscApproximateLTE - Performs a less than or equal to on a given constant with a fudge for floating point numbers 888c803a25aSBarry Smith 889c803a25aSBarry Smith Synopsis: 890c803a25aSBarry Smith #include <petscmath.h> 89166baab88SBarry Smith bool PetscApproximateLTE(PetscReal x,constant float) 892c803a25aSBarry Smith 893c803a25aSBarry Smith Not Collective 894c803a25aSBarry Smith 895c803a25aSBarry Smith Input Parameters: 896c803a25aSBarry Smith + x - the variable 897c803a25aSBarry Smith - b - the constant float it is checking if x is less than or equal to 898c803a25aSBarry Smith 899c803a25aSBarry Smith Notes: 90087497f52SBarry Smith The fudge factor is the value `PETSC_SMALL` 901c803a25aSBarry Smith 902c803a25aSBarry Smith The constant numerical value is automatically set to the appropriate precision of PETSc so can just be provided as, for example, 3.2 903c803a25aSBarry Smith 904c803a25aSBarry Smith This is used in several examples for setting initial conditions based on coordinate values that are computed with i*h that produces inexact 905c803a25aSBarry Smith floating point results. 906c803a25aSBarry Smith 907c803a25aSBarry Smith Level: advanced 908c803a25aSBarry Smith 909db781477SPatrick Sanan .seealso: `PetscMax()`, `PetscMin()`, `PetscAbsInt()`, `PetscAbsReal()`, `PetscApproximateGTE()` 910c803a25aSBarry Smith 911c803a25aSBarry Smith M*/ 91266baab88SBarry Smith #define PetscApproximateLTE(x,b) ((x) <= (PetscRealConstant(b)+PETSC_SMALL)) 913c803a25aSBarry Smith 914c803a25aSBarry Smith /*MC 91566baab88SBarry Smith PetscApproximateGTE - Performs a greater than or equal to on a given constant with a fudge for floating point numbers 916c803a25aSBarry Smith 917c803a25aSBarry Smith Synopsis: 918c803a25aSBarry Smith #include <petscmath.h> 91966baab88SBarry Smith bool PetscApproximateGTE(PetscReal x,constant float) 920c803a25aSBarry Smith 921c803a25aSBarry Smith Not Collective 922c803a25aSBarry Smith 923c803a25aSBarry Smith Input Parameters: 924c803a25aSBarry Smith + x - the variable 925c803a25aSBarry Smith - b - the constant float it is checking if x is greater than or equal to 926c803a25aSBarry Smith 927c803a25aSBarry Smith Notes: 92887497f52SBarry Smith The fudge factor is the value `PETSC_SMALL` 929c803a25aSBarry Smith 930c803a25aSBarry Smith The constant numerical value is automatically set to the appropriate precision of PETSc so can just be provided as, for example, 3.2 931c803a25aSBarry Smith 932c803a25aSBarry Smith This is used in several examples for setting initial conditions based on coordinate values that are computed with i*h that produces inexact 933c803a25aSBarry Smith floating point results. 934c803a25aSBarry Smith 935c803a25aSBarry Smith Level: advanced 936c803a25aSBarry Smith 937db781477SPatrick Sanan .seealso: `PetscMax()`, `PetscMin()`, `PetscAbsInt()`, `PetscAbsReal()`, `PetscApproximateLTE()` 938c803a25aSBarry Smith 939c803a25aSBarry Smith M*/ 94066baab88SBarry Smith #define PetscApproximateGTE(x,b) ((x) >= (PetscRealConstant(b)-PETSC_SMALL)) 941c803a25aSBarry Smith 942faa75363SBarry Smith /*MC 943faa75363SBarry Smith PetscCeilInt - Returns the ceiling of the quotation of two positive integers 944faa75363SBarry Smith 945faa75363SBarry Smith Synopsis: 946faa75363SBarry Smith #include <petscmath.h> 947faa75363SBarry Smith PetscInt PetscCeilInt(PetscInt x,PetscInt y) 948faa75363SBarry Smith 949faa75363SBarry Smith Not Collective 950faa75363SBarry Smith 951faa75363SBarry Smith Input Parameters: 952faa75363SBarry Smith + x - the numerator 953faa75363SBarry Smith - y - the denominator 954faa75363SBarry Smith 955faa75363SBarry Smith Level: advanced 956faa75363SBarry Smith 957db781477SPatrick Sanan .seealso: `PetscMax()`, `PetscMin()`, `PetscAbsInt()`, `PetscAbsReal()`, `PetscApproximateLTE()` 958faa75363SBarry Smith 959faa75363SBarry Smith M*/ 960faa75363SBarry Smith #define PetscCeilInt(x,y) ((((PetscInt)(x))/((PetscInt)(y))) + ((((PetscInt)(x)) % ((PetscInt)(y))) ? 1 : 0)) 961faa75363SBarry Smith 962faa75363SBarry Smith #define PetscCeilInt64(x,y) ((((PetscInt64)(x))/((PetscInt64)(y))) + ((((PetscInt64)(x)) % ((PetscInt64)(y))) ? 1 : 0)) 963faa75363SBarry Smith 964bebf13c0SMatthew G. Knepley PETSC_EXTERN PetscErrorCode PetscLinearRegression(PetscInt,const PetscReal[],const PetscReal[],PetscReal*,PetscReal*); 965e489efc1SBarry Smith #endif 966