Eigen  5.0.1-dev+60122df6
 
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NumTraits.h
1// This file is part of Eigen, a lightweight C++ template library
2// for linear algebra.
3//
4// Copyright (C) 2006-2010 Benoit Jacob <jacob.benoit.1@gmail.com>
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_NUMTRAITS_H
11#define EIGEN_NUMTRAITS_H
12
13// IWYU pragma: private
14#include "./InternalHeaderCheck.h"
15
16namespace Eigen {
17
18namespace internal {
19
20// default implementation of digits(), based on numeric_limits if specialized,
21// 0 for integer types, and log2(epsilon()) otherwise.
22template <typename T, bool use_numeric_limits = std::numeric_limits<T>::is_specialized,
23 bool is_integer = NumTraits<T>::IsInteger>
24struct default_digits_impl {
25 EIGEN_DEVICE_FUNC constexpr static int run() { return std::numeric_limits<T>::digits; }
26};
27
28template <typename T>
29struct default_digits_impl<T, false, false> // Floating point
30{
31 EIGEN_DEVICE_FUNC constexpr static int run() {
32 using std::ceil;
33 using std::log2;
34 typedef typename NumTraits<T>::Real Real;
35 return int(ceil(-log2(NumTraits<Real>::epsilon())));
36 }
37};
38
39template <typename T>
40struct default_digits_impl<T, false, true> // Integer
41{
42 EIGEN_DEVICE_FUNC constexpr static int run() { return 0; }
43};
44
45// default implementation of digits10(), based on numeric_limits if specialized,
46// 0 for integer types, and floor((digits()-1)*log10(2)) otherwise.
47template <typename T, bool use_numeric_limits = std::numeric_limits<T>::is_specialized,
48 bool is_integer = NumTraits<T>::IsInteger>
49struct default_digits10_impl {
50 EIGEN_DEVICE_FUNC constexpr static int run() { return std::numeric_limits<T>::digits10; }
51};
52
53template <typename T>
54struct default_digits10_impl<T, false, false> // Floating point
55{
56 EIGEN_DEVICE_FUNC constexpr static int run() {
57 using std::floor;
58 using std::log10;
59 typedef typename NumTraits<T>::Real Real;
60 return int(floor((internal::default_digits_impl<Real>::run() - 1) * log10(2)));
61 }
62};
63
64template <typename T>
65struct default_digits10_impl<T, false, true> // Integer
66{
67 EIGEN_DEVICE_FUNC constexpr static int run() { return 0; }
68};
69
70// default implementation of max_digits10(), based on numeric_limits if specialized,
71// 0 for integer types, and log10(2) * digits() + 1 otherwise.
72template <typename T, bool use_numeric_limits = std::numeric_limits<T>::is_specialized,
73 bool is_integer = NumTraits<T>::IsInteger>
74struct default_max_digits10_impl {
75 EIGEN_DEVICE_FUNC constexpr static int run() { return std::numeric_limits<T>::max_digits10; }
76};
77
78template <typename T>
79struct default_max_digits10_impl<T, false, false> // Floating point
80{
81 EIGEN_DEVICE_FUNC constexpr static int run() {
82 using std::ceil;
83 using std::log10;
84 typedef typename NumTraits<T>::Real Real;
85 return int(ceil(internal::default_digits_impl<Real>::run() * log10(2) + 1));
86 }
87};
88
89template <typename T>
90struct default_max_digits10_impl<T, false, true> // Integer
91{
92 EIGEN_DEVICE_FUNC constexpr static int run() { return 0; }
93};
94
95} // end namespace internal
96
97namespace numext {
98
100#if defined(__cpp_lib_bit_cast) && __cpp_lib_bit_cast >= 201806L
101template <typename Tgt, typename Src>
102EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC constexpr Tgt bit_cast(const Src& src) {
103 return std::bit_cast<Tgt>(src);
104}
105#elif EIGEN_HAS_BUILTIN(__builtin_bit_cast)
106template <typename Tgt, typename Src>
107EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC constexpr Tgt bit_cast(const Src& src) {
108 EIGEN_STATIC_ASSERT(std::is_trivially_copyable<Src>::value, THIS_TYPE_IS_NOT_SUPPORTED)
109 EIGEN_STATIC_ASSERT(std::is_trivially_copyable<Tgt>::value, THIS_TYPE_IS_NOT_SUPPORTED)
110 EIGEN_STATIC_ASSERT(sizeof(Src) == sizeof(Tgt), THIS_TYPE_IS_NOT_SUPPORTED)
111 return __builtin_bit_cast(Tgt, src);
112}
113#else
114template <typename Tgt, typename Src>
115EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC Tgt bit_cast(const Src& src) {
116 // The behaviour of memcpy is not specified for non-trivially copyable types
117 EIGEN_STATIC_ASSERT(std::is_trivially_copyable<Src>::value, THIS_TYPE_IS_NOT_SUPPORTED)
118 EIGEN_STATIC_ASSERT(std::is_trivially_copyable<Tgt>::value && std::is_default_constructible<Tgt>::value,
119 THIS_TYPE_IS_NOT_SUPPORTED)
120 EIGEN_STATIC_ASSERT(sizeof(Src) == sizeof(Tgt), THIS_TYPE_IS_NOT_SUPPORTED)
121
122 Tgt tgt;
123 // Load src into registers first. This allows the memcpy to be elided by CUDA.
124 const Src staged = src;
125 EIGEN_USING_STD(memcpy)
126 memcpy(static_cast<void*>(&tgt), static_cast<const void*>(&staged), sizeof(Tgt));
127 return tgt;
128}
129#endif
130} // namespace numext
131
132// clang-format off
187// clang-format on
188template <typename T>
189struct GenericNumTraits {
190 enum {
191 IsInteger = std::numeric_limits<T>::is_integer,
192 IsSigned = std::numeric_limits<T>::is_signed,
193 IsComplex = 0,
194 RequireInitialization = internal::is_arithmetic<T>::value ? 0 : 1,
195 ReadCost = 1,
196 AddCost = 1,
197 MulCost = 1
198 };
199
200 typedef T Real;
201 typedef std::conditional_t<IsInteger, std::conditional_t<sizeof(T) <= 2, float, double>, T> NonInteger;
202 typedef T Nested;
203 typedef T Literal;
204
205 EIGEN_DEVICE_FUNC constexpr static Real epsilon() { return numext::numeric_limits<T>::epsilon(); }
206
207 EIGEN_DEVICE_FUNC constexpr static int digits10() { return internal::default_digits10_impl<T>::run(); }
208
209 EIGEN_DEVICE_FUNC constexpr static int max_digits10() { return internal::default_max_digits10_impl<T>::run(); }
210
211 EIGEN_DEVICE_FUNC constexpr static int digits() { return internal::default_digits_impl<T>::run(); }
212
213 EIGEN_DEVICE_FUNC constexpr static int min_exponent() { return numext::numeric_limits<T>::min_exponent; }
214
215 EIGEN_DEVICE_FUNC constexpr static int max_exponent() { return numext::numeric_limits<T>::max_exponent; }
216
217 EIGEN_DEVICE_FUNC constexpr static Real dummy_precision() {
218 // make sure to override this for floating-point types
219 return Real(0);
220 }
221
222 EIGEN_DEVICE_FUNC constexpr static T highest() { return (numext::numeric_limits<T>::max)(); }
223
224 EIGEN_DEVICE_FUNC constexpr static T lowest() { return (numext::numeric_limits<T>::lowest)(); }
225
226 EIGEN_DEVICE_FUNC constexpr static T infinity() { return numext::numeric_limits<T>::infinity(); }
227
228 EIGEN_DEVICE_FUNC constexpr static T quiet_NaN() { return numext::numeric_limits<T>::quiet_NaN(); }
229};
230
231template <typename T>
232struct NumTraits : GenericNumTraits<T> {};
233
234template <>
235struct NumTraits<float> : GenericNumTraits<float> {
236 EIGEN_DEVICE_FUNC constexpr static float dummy_precision() { return 1e-5f; }
237};
238
239template <>
240struct NumTraits<double> : GenericNumTraits<double> {
241 EIGEN_DEVICE_FUNC constexpr static double dummy_precision() { return 1e-12; }
242};
243
244// GPU devices treat `long double` as `double`.
245#ifndef EIGEN_GPU_COMPILE_PHASE
246template <>
247struct NumTraits<long double> : GenericNumTraits<long double> {
248 EIGEN_DEVICE_FUNC constexpr static long double dummy_precision() { return static_cast<long double>(1e-15l); }
249
250#if defined(EIGEN_ARCH_PPC) && (__LDBL_MANT_DIG__ == 106)
251 // PowerPC double double causes issues with some values
252 EIGEN_DEVICE_FUNC constexpr static long double epsilon() {
253 // 2^(-(__LDBL_MANT_DIG__)+1)
254 return static_cast<long double>(2.4651903288156618919116517665087e-32l);
255 }
256#endif
257};
258#endif
259
260template <typename Real_>
261struct NumTraits<std::complex<Real_> > : GenericNumTraits<std::complex<Real_> > {
262 typedef Real_ Real;
263 typedef typename NumTraits<Real_>::Literal Literal;
264 enum {
265 IsComplex = 1,
266 IsSigned = NumTraits<Real_>::IsSigned,
267 RequireInitialization = NumTraits<Real_>::RequireInitialization,
268 ReadCost = 2 * NumTraits<Real_>::ReadCost,
269 AddCost = 2 * NumTraits<Real>::AddCost,
270 MulCost = 4 * NumTraits<Real>::MulCost + 2 * NumTraits<Real>::AddCost
271 };
272
273 EIGEN_DEVICE_FUNC constexpr static Real epsilon() { return NumTraits<Real>::epsilon(); }
274 EIGEN_DEVICE_FUNC constexpr static Real dummy_precision() { return NumTraits<Real>::dummy_precision(); }
275 EIGEN_DEVICE_FUNC constexpr static int digits10() { return NumTraits<Real>::digits10(); }
276 EIGEN_DEVICE_FUNC constexpr static int max_digits10() { return NumTraits<Real>::max_digits10(); }
277};
278
279template <typename Scalar, int Rows, int Cols, int Options, int MaxRows, int MaxCols>
280struct NumTraits<Array<Scalar, Rows, Cols, Options, MaxRows, MaxCols> > {
281 typedef Array<Scalar, Rows, Cols, Options, MaxRows, MaxCols> ArrayType;
282 typedef typename NumTraits<Scalar>::Real RealScalar;
283 typedef Array<RealScalar, Rows, Cols, Options, MaxRows, MaxCols> Real;
284 typedef typename NumTraits<Scalar>::NonInteger NonIntegerScalar;
285 typedef Array<NonIntegerScalar, Rows, Cols, Options, MaxRows, MaxCols> NonInteger;
286 typedef ArrayType& Nested;
287 typedef typename NumTraits<Scalar>::Literal Literal;
288
289 enum {
290 IsComplex = NumTraits<Scalar>::IsComplex,
291 IsInteger = NumTraits<Scalar>::IsInteger,
292 IsSigned = NumTraits<Scalar>::IsSigned,
293 RequireInitialization = 1,
294 ReadCost = ArrayType::SizeAtCompileTime == Dynamic
295 ? HugeCost
296 : ArrayType::SizeAtCompileTime * int(NumTraits<Scalar>::ReadCost),
297 AddCost = ArrayType::SizeAtCompileTime == Dynamic ? HugeCost
298 : ArrayType::SizeAtCompileTime * int(NumTraits<Scalar>::AddCost),
299 MulCost = ArrayType::SizeAtCompileTime == Dynamic ? HugeCost
300 : ArrayType::SizeAtCompileTime * int(NumTraits<Scalar>::MulCost)
301 };
302
303 EIGEN_DEVICE_FUNC constexpr static RealScalar epsilon() { return NumTraits<RealScalar>::epsilon(); }
304 EIGEN_DEVICE_FUNC constexpr static RealScalar dummy_precision() { return NumTraits<RealScalar>::dummy_precision(); }
305
306 constexpr static int digits10() { return NumTraits<Scalar>::digits10(); }
307 constexpr static int max_digits10() { return NumTraits<Scalar>::max_digits10(); }
308};
309
310template <>
311struct NumTraits<std::string> : GenericNumTraits<std::string> {
312 enum { RequireInitialization = 1, ReadCost = HugeCost, AddCost = HugeCost, MulCost = HugeCost };
313
314 constexpr static int digits10() { return 0; }
315 constexpr static int max_digits10() { return 0; }
316
317 private:
318 static inline std::string epsilon();
319 static inline std::string dummy_precision();
320 static inline std::string lowest();
321 static inline std::string highest();
322 static inline std::string infinity();
323 static inline std::string quiet_NaN();
324};
325
326// Empty specialization for void to allow template specialization based on NumTraits<T>::Real with T==void and SFINAE.
327template <>
328struct NumTraits<void> {};
329
330template <>
331struct NumTraits<bool> : GenericNumTraits<bool> {};
332
333} // end namespace Eigen
334
335#endif // EIGEN_NUMTRAITS_H
General-purpose arrays with easy API for coefficient-wise operations.
Definition Array.h:48
Namespace containing all symbols from the Eigen library.
Definition B01_Experimental.dox:1
const int HugeCost
Definition Constants.h:48
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_log2_op< typename Derived::Scalar >, const Derived > log2(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_log10_op< typename Derived::Scalar >, const Derived > log10(const Eigen::ArrayBase< Derived > &x)
const int Dynamic
Definition Constants.h:25
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_floor_op< typename Derived::Scalar >, const Derived > floor(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_ceil_op< typename Derived::Scalar >, const Derived > ceil(const Eigen::ArrayBase< Derived > &x)
Holds information about the various numeric (i.e. scalar) types allowed by Eigen.
Definition NumTraits.h:232