TR-mbed 1.0
Loading...
Searching...
No Matches
UnaryFunctors.h
Go to the documentation of this file.
1// This file is part of Eigen, a lightweight C++ template library
2// for linear algebra.
3//
4// Copyright (C) 2008-2016 Gael Guennebaud <gael.guennebaud@inria.fr>
5//
6// This Source Code Form is subject to the terms of the Mozilla
7// Public License v. 2.0. If a copy of the MPL was not distributed
8// with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
9
10#ifndef EIGEN_UNARY_FUNCTORS_H
11#define EIGEN_UNARY_FUNCTORS_H
12
13namespace Eigen {
14
15namespace internal {
16
22template<typename Scalar> struct scalar_opposite_op {
25 template<typename Packet>
28};
29template<typename Scalar>
35
49template<typename Scalar>
57
63template<typename Scalar> struct scalar_score_coeff_op : scalar_abs_op<Scalar>
64{
65 typedef void Score_is_abs;
66};
67template<typename Scalar>
68struct functor_traits<scalar_score_coeff_op<Scalar> > : functor_traits<scalar_abs_op<Scalar> > {};
69
70/* Avoid recomputing abs when we know the score and they are the same. Not a true Eigen functor. */
85
100template<typename Scalar>
103
109template<typename Scalar> struct scalar_conjugate_op {
112 EIGEN_STRONG_INLINE const Scalar operator() (const Scalar& a) const { return numext::conj(a); }
113 template<typename Packet>
115};
116template<typename Scalar>
118{
119 enum {
120 Cost = 0,
121 // Yes the cost is zero even for complexes because in most cases for which
122 // the cost is used, conjugation turns to be a no-op. Some examples:
123 // cost(a*conj(b)) == cost(a*b)
124 // cost(a+conj(b)) == cost(a+b)
125 // <etc.
126 // If we don't set it to zero, then:
127 // A.conjugate().lazyProduct(B.conjugate())
128 // will bake its operands. We definitely don't want that!
130 };
131};
132
138template<typename Scalar> struct scalar_arg_op {
142 template<typename Packet>
145};
146template<typename Scalar>
159template<typename Scalar, typename NewType>
165template<typename Scalar, typename NewType>
168
174template<typename Scalar, int N>
184template<typename Scalar, int N>
187
193template<typename Scalar, int N>
203template<typename Scalar, int N>
206
212template<typename Scalar>
219template<typename Scalar>
221{ enum { Cost = 0, PacketAccess = false }; };
222
228template<typename Scalar>
235template<typename Scalar>
237{ enum { Cost = 0, PacketAccess = false }; };
238
244template<typename Scalar>
251template<typename Scalar>
253{ enum { Cost = 0, PacketAccess = false }; };
254
260template<typename Scalar>
267template<typename Scalar>
269{ enum { Cost = 0, PacketAccess = false }; };
270
277template<typename Scalar> struct scalar_exp_op {
280 template <typename Packet>
281 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pexp(a); }
282};
283template <typename Scalar>
285 enum {
287 // The following numbers are based on the AVX implementation.
288#ifdef EIGEN_VECTORIZE_FMA
289 // Haswell can issue 2 add/mul/madd per cycle.
290 Cost =
291 (sizeof(Scalar) == 4
292 // float: 8 pmadd, 4 pmul, 2 padd/psub, 6 other
294 // double: 7 pmadd, 5 pmul, 3 padd/psub, 1 div, 13 other
298#else
299 Cost =
300 (sizeof(Scalar) == 4
301 // float: 7 pmadd, 6 pmul, 4 padd/psub, 10 other
303 // double: 7 pmadd, 5 pmul, 3 padd/psub, 1 div, 13 other
307#endif
308 };
309};
310
317template<typename Scalar> struct scalar_expm1_op {
319 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::expm1(a); }
320 template <typename Packet>
321 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pexpm1(a); }
322};
323template <typename Scalar>
330
337template<typename Scalar> struct scalar_log_op {
340 template <typename Packet>
341 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::plog(a); }
342};
343template <typename Scalar>
345 enum {
347 Cost =
349 // The following numbers are based on the AVX implementation.
350#ifdef EIGEN_VECTORIZE_FMA
351 // 8 pmadd, 6 pmul, 8 padd/psub, 16 other, can issue 2 add/mul/madd per cycle.
353#else
354 // 8 pmadd, 6 pmul, 8 padd/psub, 20 other
356#endif
357 // Measured cost of std::log.
358 : sizeof(Scalar)==4 ? 40 : 85)
359 };
360};
361
368template<typename Scalar> struct scalar_log1p_op {
370 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::log1p(a); }
371 template <typename Packet>
372 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::plog1p(a); }
373};
374template <typename Scalar>
376 enum {
378 Cost = functor_traits<scalar_log_op<Scalar> >::Cost // TODO measure cost of log1p
379 };
380};
381
388template<typename Scalar> struct scalar_log10_op {
391 template <typename Packet>
392 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::plog10(a); }
393};
394template<typename Scalar>
397
404template<typename Scalar> struct scalar_log2_op {
407 template <typename Packet>
408 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::plog2(a); }
409};
410template<typename Scalar>
413
418template<typename Scalar> struct scalar_sqrt_op {
420 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::sqrt(a); }
421 template <typename Packet>
422 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::psqrt(a); }
423};
424template <typename Scalar>
426 enum {
427#if EIGEN_FAST_MATH
428 // The following numbers are based on the AVX implementation.
429 Cost = (sizeof(Scalar) == 8 ? 28
430 // 4 pmul, 1 pmadd, 3 other
433#else
434 // The following numbers are based on min VSQRT throughput on Haswell.
435 Cost = (sizeof(Scalar) == 8 ? 28 : 14),
436#endif
437 PacketAccess = packet_traits<Scalar>::HasSqrt
438 };
439};
440
441// Boolean specialization to eliminate -Wimplicit-conversion-floating-point-to-bool warnings.
442template<> struct scalar_sqrt_op<bool> {
444 EIGEN_DEPRECATED EIGEN_DEVICE_FUNC inline bool operator() (const bool& a) const { return a; }
445 template <typename Packet>
446 EIGEN_DEPRECATED EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return a; }
447};
448template <>
450 enum { Cost = 1, PacketAccess = packet_traits<bool>::Vectorizable };
451};
452
457template<typename Scalar> struct scalar_rsqrt_op {
459 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::rsqrt(a); }
460 template <typename Packet>
461 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::prsqrt(a); }
462};
463
464template<typename Scalar>
471
476template<typename Scalar> struct scalar_cos_op {
478 EIGEN_DEVICE_FUNC inline Scalar operator() (const Scalar& a) const { return numext::cos(a); }
479 template <typename Packet>
480 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pcos(a); }
481};
482template<typename Scalar>
484{
485 enum {
487 PacketAccess = packet_traits<Scalar>::HasCos
488 };
489};
490
495template<typename Scalar> struct scalar_sin_op {
497 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::sin(a); }
498 template <typename Packet>
499 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::psin(a); }
500};
501template<typename Scalar>
503{
504 enum {
506 PacketAccess = packet_traits<Scalar>::HasSin
507 };
508};
509
510
515template<typename Scalar> struct scalar_tan_op {
517 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::tan(a); }
518 template <typename Packet>
519 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::ptan(a); }
520};
521template<typename Scalar>
523{
524 enum {
526 PacketAccess = packet_traits<Scalar>::HasTan
527 };
528};
529
534template<typename Scalar> struct scalar_acos_op {
536 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::acos(a); }
537 template <typename Packet>
538 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pacos(a); }
539};
540template<typename Scalar>
542{
543 enum {
545 PacketAccess = packet_traits<Scalar>::HasACos
546 };
547};
548
553template<typename Scalar> struct scalar_asin_op {
555 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::asin(a); }
556 template <typename Packet>
557 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pasin(a); }
558};
559template<typename Scalar>
561{
562 enum {
564 PacketAccess = packet_traits<Scalar>::HasASin
565 };
566};
567
568
573template<typename Scalar> struct scalar_atan_op {
575 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::atan(a); }
576 template <typename Packet>
577 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::patan(a); }
578};
579template<typename Scalar>
581{
582 enum {
584 PacketAccess = packet_traits<Scalar>::HasATan
585 };
586};
587
592template <typename Scalar>
595 EIGEN_DEVICE_FUNC inline const Scalar operator()(const Scalar& a) const { return numext::tanh(a); }
596 template <typename Packet>
597 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& x) const { return ptanh(x); }
598};
599
600template <typename Scalar>
602 enum {
605// The following numbers are based on the AVX implementation,
607 // Haswell can issue 2 add/mul/madd per cycle.
608 // 9 pmadd, 2 pmul, 1 div, 2 other
612#else
616#endif
617 // This number assumes a naive implementation of tanh
618 : (6 * NumTraits<Scalar>::AddCost +
619 3 * NumTraits<Scalar>::MulCost +
620 2 * scalar_div_cost<Scalar,packet_traits<Scalar>::HasDiv>::value +
622 };
623};
624
625#if EIGEN_HAS_CXX11_MATH
630template <typename Scalar>
631struct scalar_atanh_op {
633 EIGEN_DEVICE_FUNC inline const Scalar operator()(const Scalar& a) const { return numext::atanh(a); }
634};
635
636template <typename Scalar>
637struct functor_traits<scalar_atanh_op<Scalar> > {
638 enum { Cost = 5 * NumTraits<Scalar>::MulCost, PacketAccess = false };
639};
640#endif
641
646template<typename Scalar> struct scalar_sinh_op {
648 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::sinh(a); }
649 template <typename Packet>
650 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::psinh(a); }
651};
652template<typename Scalar>
654{
655 enum {
657 PacketAccess = packet_traits<Scalar>::HasSinh
658 };
659};
660
661#if EIGEN_HAS_CXX11_MATH
666template <typename Scalar>
667struct scalar_asinh_op {
668 EIGEN_EMPTY_STRUCT_CTOR(scalar_asinh_op)
669 EIGEN_DEVICE_FUNC inline const Scalar operator()(const Scalar& a) const { return numext::asinh(a); }
670};
671
672template <typename Scalar>
673struct functor_traits<scalar_asinh_op<Scalar> > {
674 enum { Cost = 5 * NumTraits<Scalar>::MulCost, PacketAccess = false };
675};
676#endif
677
682template<typename Scalar> struct scalar_cosh_op {
684 EIGEN_DEVICE_FUNC inline const Scalar operator() (const Scalar& a) const { return numext::cosh(a); }
685 template <typename Packet>
686 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pcosh(a); }
687};
688template<typename Scalar>
690{
691 enum {
693 PacketAccess = packet_traits<Scalar>::HasCosh
694 };
695};
696
697#if EIGEN_HAS_CXX11_MATH
702template <typename Scalar>
703struct scalar_acosh_op {
704 EIGEN_EMPTY_STRUCT_CTOR(scalar_acosh_op)
705 EIGEN_DEVICE_FUNC inline const Scalar operator()(const Scalar& a) const { return numext::acosh(a); }
706};
707
708template <typename Scalar>
709struct functor_traits<scalar_acosh_op<Scalar> > {
710 enum { Cost = 5 * NumTraits<Scalar>::MulCost, PacketAccess = false };
711};
712#endif
713
718template<typename Scalar>
722 template<typename Packet>
723 EIGEN_DEVICE_FUNC inline const Packet packetOp(const Packet& a) const
724 { return internal::pdiv(pset1<Packet>(Scalar(1)),a); }
725};
726template <typename Scalar>
733
738template<typename Scalar>
742 template<typename Packet>
743 EIGEN_DEVICE_FUNC inline const Packet packetOp(const Packet& a) const
744 { return internal::pmul(a,a); }
745};
746template<typename Scalar>
749
750// Boolean specialization to avoid -Wint-in-bool-context warnings on GCC.
751template<>
754 EIGEN_DEPRECATED EIGEN_DEVICE_FUNC inline bool operator() (const bool& a) const { return a; }
755 template<typename Packet>
757 { return a; }
758};
759template<>
761{ enum { Cost = 0, PacketAccess = packet_traits<bool>::Vectorizable }; };
762
767template<typename Scalar>
771 template<typename Packet>
772 EIGEN_DEVICE_FUNC inline const Packet packetOp(const Packet& a) const
773 { return internal::pmul(a,pmul(a,a)); }
774};
775template<typename Scalar>
778
779// Boolean specialization to avoid -Wint-in-bool-context warnings on GCC.
780template<>
783 EIGEN_DEPRECATED EIGEN_DEVICE_FUNC inline bool operator() (const bool& a) const { return a; }
784 template<typename Packet>
786 { return a; }
787};
788template<>
790{ enum { Cost = 0, PacketAccess = packet_traits<bool>::Vectorizable }; };
791
796template<typename Scalar> struct scalar_round_op {
799 template <typename Packet>
800 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pround(a); }
801};
802template<typename Scalar>
810
815template<typename Scalar> struct scalar_floor_op {
818 template <typename Packet>
819 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pfloor(a); }
820};
821template<typename Scalar>
829
834template<typename Scalar> struct scalar_rint_op {
837 template <typename Packet>
838 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::print(a); }
839};
840template<typename Scalar>
848
853template<typename Scalar> struct scalar_ceil_op {
856 template <typename Packet>
857 EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::pceil(a); }
858};
859template<typename Scalar>
867
872template<typename Scalar> struct scalar_isnan_op {
876#if defined(SYCL_DEVICE_ONLY)
877 return numext::isnan(a);
878#else
879 return (numext::isnan)(a);
880#endif
881 }
882};
883template<typename Scalar>
885{
886 enum {
888 PacketAccess = false
889 };
890};
891
896template<typename Scalar> struct scalar_isinf_op {
900#if defined(SYCL_DEVICE_ONLY)
901 return numext::isinf(a);
902#else
903 return (numext::isinf)(a);
904#endif
905 }
906};
907template<typename Scalar>
909{
910 enum {
912 PacketAccess = false
913 };
914};
915
920template<typename Scalar> struct scalar_isfinite_op {
924#if defined(SYCL_DEVICE_ONLY)
925 return numext::isfinite(a);
926#else
927 return (numext::isfinite)(a);
928#endif
929 }
930};
931template<typename Scalar>
933{
934 enum {
936 PacketAccess = false
937 };
938};
939
945template<typename Scalar> struct scalar_boolean_not_op {
947 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE bool operator() (const bool& a) const { return !a; }
948};
949template<typename Scalar>
951 enum {
953 PacketAccess = false
954 };
955};
956
961template<typename Scalar,bool is_complex=(NumTraits<Scalar>::IsComplex!=0), bool is_integer=(NumTraits<Scalar>::IsInteger!=0) > struct scalar_sign_op;
962template<typename Scalar>
966 {
967 return Scalar( (a>Scalar(0)) - (a<Scalar(0)) );
968 }
969 //TODO
970 //template <typename Packet>
971 //EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::psign(a); }
972};
973
974template<typename Scalar>
978 {
979 return (numext::isnan)(a) ? a : Scalar( (a>Scalar(0)) - (a<Scalar(0)) );
980 }
981 //TODO
982 //template <typename Packet>
983 //EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::psign(a); }
984};
985
986template<typename Scalar, bool is_integer>
987struct scalar_sign_op<Scalar,true, is_integer> {
990 {
991 typedef typename NumTraits<Scalar>::Real real_type;
992 real_type aa = numext::abs(a);
993 if (aa==real_type(0))
994 return Scalar(0);
995 aa = real_type(1)/aa;
996 return Scalar(a.real()*aa, a.imag()*aa );
997 }
998 //TODO
999 //template <typename Packet>
1000 //EIGEN_DEVICE_FUNC inline Packet packetOp(const Packet& a) const { return internal::psign(a); }
1001};
1002template<typename Scalar>
1004{ enum {
1005 Cost =
1007 ? ( 8*NumTraits<Scalar>::MulCost ) // roughly
1008 : ( 3*NumTraits<Scalar>::AddCost),
1009 PacketAccess = packet_traits<Scalar>::HasSign
1011};
1012
1017template <typename T>
1021 return packetOp(x);
1022 }
1023
1024 template <typename Packet> EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
1025 Packet packetOp(const Packet& x) const {
1026 const Packet one = pset1<Packet>(T(1));
1027 return pdiv(one, padd(one, pexp(pnegate(x))));
1028 }
1029};
1030
1031#ifndef EIGEN_GPU_COMPILE_PHASE
1043template <>
1047 return packetOp(x);
1048 }
1049
1050 template <typename Packet> EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
1051 Packet packetOp(const Packet& _x) const {
1052 const Packet cutoff_lower = pset1<Packet>(-9.f);
1054 const bool any_small = predux_any(lt_mask);
1055
1056 // The upper cut-off is the smallest x for which the rational approximation evaluates to 1.
1057 // Choosing this value saves us a few instructions clamping the results at the end.
1058#ifdef EIGEN_VECTORIZE_FMA
1059 const Packet cutoff_upper = pset1<Packet>(15.7243833541870117f);
1060#else
1061 const Packet cutoff_upper = pset1<Packet>(15.6437711715698242f);
1062#endif
1063 const Packet x = pmin(_x, cutoff_upper);
1064
1065 // The monomial coefficients of the numerator polynomial (odd).
1066 const Packet alpha_1 = pset1<Packet>(2.48287947061529e-01f);
1067 const Packet alpha_3 = pset1<Packet>(8.51377133304701e-03f);
1068 const Packet alpha_5 = pset1<Packet>(6.08574864600143e-05f);
1069 const Packet alpha_7 = pset1<Packet>(1.15627324459942e-07f);
1070 const Packet alpha_9 = pset1<Packet>(4.37031012579801e-11f);
1071
1072 // The monomial coefficients of the denominator polynomial (even).
1073 const Packet beta_0 = pset1<Packet>(9.93151921023180e-01f);
1074 const Packet beta_2 = pset1<Packet>(1.16817656904453e-01f);
1075 const Packet beta_4 = pset1<Packet>(1.70198817374094e-03f);
1076 const Packet beta_6 = pset1<Packet>(6.29106785017040e-06f);
1077 const Packet beta_8 = pset1<Packet>(5.76102136993427e-09f);
1078 const Packet beta_10 = pset1<Packet>(6.10247389755681e-13f);
1079
1080 // Since the polynomials are odd/even, we need x^2.
1081 const Packet x2 = pmul(x, x);
1082
1083 // Evaluate the numerator polynomial p.
1085 p = pmadd(x2, p, alpha_5);
1086 p = pmadd(x2, p, alpha_3);
1087 p = pmadd(x2, p, alpha_1);
1088 p = pmul(x, p);
1089
1090 // Evaluate the denominator polynomial q.
1091 Packet q = pmadd(x2, beta_10, beta_8);
1092 q = pmadd(x2, q, beta_6);
1093 q = pmadd(x2, q, beta_4);
1094 q = pmadd(x2, q, beta_2);
1095 q = pmadd(x2, q, beta_0);
1096 // Divide the numerator by the denominator and shift it up.
1097 const Packet logistic = padd(pdiv(p, q), pset1<Packet>(0.5f));
1099 const Packet exponential = pexp(_x);
1101 } else {
1102 return logistic;
1103 }
1104 }
1105};
1106#endif // #ifndef EIGEN_GPU_COMPILE_PHASE
1107
1108template <typename T>
1110 enum {
1111 // The cost estimate for float here here is for the common(?) case where
1112 // all arguments are greater than -9.
1116 : NumTraits<T>::AddCost * 2 +
1118 PacketAccess =
1123 : packet_traits<T>::HasNegate && packet_traits<T>::HasExp)
1125};
1126
1127} // end namespace internal
1128
1129} // end namespace Eigen
1130
1131#endif // EIGEN_FUNCTORS_H
EIGEN_DEVICE_FUNC const Log10ReturnType log10() const
Definition ArrayCwiseUnaryOps.h:158
EIGEN_DEVICE_FUNC const LogisticReturnType logistic() const
Definition ArrayCwiseUnaryOps.h:397
ArrayXXi a
Definition Array_initializer_list_23_cxx11.cpp:1
#define EIGEN_LOG2E
Definition MathFunctions.h:17
internal::enable_if< internal::valid_indexed_view_overload< RowIndices, ColIndices >::value &&internal::traits< typenameEIGEN_INDEXED_VIEW_METHOD_TYPE< RowIndices, ColIndices >::type >::ReturnAsIndexedView, typenameEIGEN_INDEXED_VIEW_METHOD_TYPE< RowIndices, ColIndices >::type >::type operator()(const RowIndices &rowIndices, const ColIndices &colIndices) EIGEN_INDEXED_VIEW_METHOD_CONST
Definition IndexedViewMethods.h:73
#define EIGEN_DEPRECATED
Definition Macros.h:1058
#define EIGEN_USING_STD(FUNC)
Definition Macros.h:1185
#define EIGEN_PREDICT_FALSE(x)
Definition Macros.h:1321
#define EIGEN_DEVICE_FUNC
Definition Macros.h:976
#define EIGEN_FAST_MATH
Definition Macros.h:49
#define EIGEN_STRONG_INLINE
Definition Macros.h:917
float * p
Definition Tutorial_Map_using.cpp:9
Eigen::Triplet< double > T
Definition Tutorial_sparse_example.cpp:6
#define EIGEN_EMPTY_STRUCT_CTOR(X)
Definition XprHelper.h:22
SCALAR Scalar
Definition bench_gemm.cpp:46
mp::number< mp::cpp_dec_float< 100 >, mp::et_on > Real
Definition boostmultiprec.cpp:78
@ N
Definition constructor.cpp:23
set noclip points set clip one set noclip two set bar set border lt lw set xdata set ydata set zdata set x2data set y2data set boxwidth set dummy x
Definition gnuplot_common_settings.hh:12
EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet pexpm1(const Packet &a)
Definition GenericPacketMath.h:792
EIGEN_STRONG_INLINE Packet2cf pconj(const Packet2cf &a)
Definition Complex.h:167
EIGEN_DEVICE_FUNC Packet padd(const Packet &a, const Packet &b)
Definition GenericPacketMath.h:215
EIGEN_DEVICE_FUNC Packet parg(const Packet &a)
Definition GenericPacketMath.h:551
EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet plog(const Packet &a)
Definition GenericPacketMath.h:796
EIGEN_STRONG_INLINE bool predux_any(const Packet4f &x)
Definition PacketMath.h:1765
EIGEN_DEVICE_FUNC Packet pdiv(const Packet &a, const Packet &b)
Definition GenericPacketMath.h:244
EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet pexp(const Packet &a)
Definition GenericPacketMath.h:788
EIGEN_STRONG_INLINE Packet4f pmadd(const Packet4f &a, const Packet4f &b, const Packet4f &c)
Definition PacketMath.h:827
EIGEN_DEVICE_FUNC Packet pmul(const Packet &a, const Packet &b)
Definition GenericPacketMath.h:237
EIGEN_DEVICE_FUNC Packet pmin(const Packet &a, const Packet &b)
Definition GenericPacketMath.h:512
EIGEN_STRONG_INLINE Packet2cf pnegate(const Packet2cf &a)
Definition Complex.h:166
EIGEN_STRONG_INLINE Packet4f pselect(const Packet4f &mask, const Packet4f &a, const Packet4f &b)
Definition PacketMath.h:917
EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet ptanh(const Packet &a)
Definition GenericPacketMath.h:784
EIGEN_STRONG_INLINE Packet4f pabs(const Packet4f &a)
Definition PacketMath.h:1176
EIGEN_DEVICE_FUNC EIGEN_ALWAYS_INLINE T log(const T &x)
Definition MathFunctions.h:1489
EIGEN_DEVICE_FUNC internal::add_const_on_value_type< EIGEN_MATHFUNC_RETVAL(imag_ref, Scalar)>::type imag_ref(const Scalar &x)
Definition MathFunctions.h:1265
EIGEN_DEVICE_FUNC EIGEN_ALWAYS_INLINE T exp(const T &x)
Definition MathFunctions.h:1546
EIGEN_DEVICE_FUNC internal::add_const_on_value_type< EIGEN_MATHFUNC_RETVAL(real_ref, Scalar)>::type real_ref(const Scalar &x)
Definition MathFunctions.h:1237
EIGEN_DEVICE_FUNC EIGEN_ALWAYS_INLINE internal::enable_if< NumTraits< T >::IsSigned||NumTraits< T >::IsComplex, typenameNumTraits< T >::Real >::type abs(const T &x)
Definition MathFunctions.h:1509
EIGEN_DEVICE_FUNC bool abs2(bool x)
Definition MathFunctions.h:1292
Namespace containing all symbols from the Eigen library.
Definition bench_norm.cpp:85
Definition BandTriangularSolver.h:13
Holds information about the various numeric (i.e. scalar) types allowed by Eigen.
Definition NumTraits.h:233
Definition UnaryFunctors.h:72
Definition XprHelper.h:176
@ PacketAccess
Definition XprHelper.h:180
@ Cost
Definition XprHelper.h:179
Definition Meta.h:148
Definition GenericPacketMath.h:107
Definition UnaryFunctors.h:91
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:97
Definition UnaryFunctors.h:41
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:46
Definition UnaryFunctors.h:534
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:538
Definition UnaryFunctors.h:138
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:143
Definition UnaryFunctors.h:553
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:557
Definition UnaryFunctors.h:573
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:577
Definition UnaryFunctors.h:945
Definition UnaryFunctors.h:160
Definition UnaryFunctors.h:853
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:857
Definition UnaryFunctors.h:109
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:114
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar &a) const
Definition UnaryFunctors.h:112
Definition UnaryFunctors.h:476
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:480
Definition UnaryFunctors.h:682
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:686
EIGEN_DEPRECATED EIGEN_DEVICE_FUNC const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:785
Definition UnaryFunctors.h:768
EIGEN_DEVICE_FUNC const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:772
Definition XprHelper.h:710
Definition UnaryFunctors.h:277
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:281
Definition UnaryFunctors.h:317
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:321
Definition UnaryFunctors.h:815
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:819
Definition UnaryFunctors.h:229
Definition UnaryFunctors.h:261
Definition UnaryFunctors.h:719
EIGEN_DEVICE_FUNC const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:723
Definition UnaryFunctors.h:920
Definition UnaryFunctors.h:896
Definition UnaryFunctors.h:872
Definition UnaryFunctors.h:388
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:392
Definition UnaryFunctors.h:368
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:372
Definition UnaryFunctors.h:404
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:408
Definition UnaryFunctors.h:337
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:341
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet &_x) const
Definition UnaryFunctors.h:1051
Definition UnaryFunctors.h:1018
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet &x) const
Definition UnaryFunctors.h:1025
Definition UnaryFunctors.h:22
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:26
Definition UnaryFunctors.h:213
Definition UnaryFunctors.h:245
Definition UnaryFunctors.h:834
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:838
Definition UnaryFunctors.h:796
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:800
Definition UnaryFunctors.h:457
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:461
Definition UnaryFunctors.h:64
void Score_is_abs
Definition UnaryFunctors.h:65
Definition UnaryFunctors.h:194
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:200
Definition UnaryFunctors.h:175
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:181
Definition UnaryFunctors.h:961
Definition UnaryFunctors.h:495
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:499
Definition UnaryFunctors.h:646
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:650
EIGEN_DEPRECATED EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:446
Definition UnaryFunctors.h:418
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:422
EIGEN_DEPRECATED EIGEN_DEVICE_FUNC const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:756
Definition UnaryFunctors.h:739
EIGEN_DEVICE_FUNC const Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:743
Definition UnaryFunctors.h:515
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &a) const
Definition UnaryFunctors.h:519
Definition UnaryFunctors.h:593
EIGEN_DEVICE_FUNC Packet packetOp(const Packet &x) const
Definition UnaryFunctors.h:597
Definition ForwardDeclarations.h:17
Definition PacketMath.h:47