14 #if defined(__CUDA_ARCH__) 16 #include <math_constants.h> 19 #if EIGEN_COMP_ICC>=1600 && __cplusplus >= 201103L 25 typedef EIGEN_DEFAULT_DENSE_INDEX_TYPE DenseIndex;
33 typedef EIGEN_DEFAULT_DENSE_INDEX_TYPE
Index;
46 #if EIGEN_COMP_ICC>=1600 && __cplusplus >= 201103L 47 typedef std::intptr_t IntPtr;
48 typedef std::uintptr_t UIntPtr;
50 typedef std::ptrdiff_t IntPtr;
51 typedef std::size_t UIntPtr;
57 template<
bool Condition,
typename Then,
typename Else>
60 template<
typename Then,
typename Else>
61 struct conditional <false, Then, Else> {
typedef Else type; };
63 template<
typename T,
typename U>
struct is_same {
enum { value = 0 }; };
64 template<
typename T>
struct is_same<
T,
T> {
enum { value = 1 }; };
76 template <
class T,
unsigned int Size>
struct remove_const<const
T[Size]> {
typedef T type[Size]; };
88 template<>
struct is_arithmetic<long double> {
enum { value =
true }; };
91 template<>
struct is_arithmetic<signed char> {
enum { value =
true }; };
92 template<>
struct is_arithmetic<unsigned char> {
enum { value =
true }; };
93 template<>
struct is_arithmetic<signed short> {
enum { value =
true }; };
94 template<>
struct is_arithmetic<unsigned short>{
enum { value =
true }; };
96 template<>
struct is_arithmetic<unsigned int> {
enum { value =
true }; };
97 template<>
struct is_arithmetic<signed long> {
enum { value =
true }; };
98 template<>
struct is_arithmetic<unsigned long> {
enum { value =
true }; };
100 template<
typename T>
struct is_integral {
enum { value =
false }; };
103 template<>
struct is_integral<signed char> {
enum { value =
true }; };
104 template<>
struct is_integral<unsigned char> {
enum { value =
true }; };
105 template<>
struct is_integral<signed short> {
enum { value =
true }; };
106 template<>
struct is_integral<unsigned short> {
enum { value =
true }; };
107 template<>
struct is_integral<signed int> {
enum { value =
true }; };
108 template<>
struct is_integral<unsigned int> {
enum { value =
true }; };
109 template<>
struct is_integral<signed long> {
enum { value =
true }; };
110 template<>
struct is_integral<unsigned long> {
enum { value =
true }; };
115 template <
typename T>
struct is_const {
enum { value = 0 }; };
116 template <
typename T>
struct is_const<
T const> {
enum { value = 1 }; };
125 template<
typename From,
typename To>
129 struct any_conversion
131 template <
typename T> any_conversion(
const volatile T&);
132 template <
typename T> any_conversion(
T&);
134 struct yes {
int a[1];};
135 struct no {
int a[2];};
137 static yes test(
const To&,
int);
138 static no test(any_conversion, ...);
142 #ifdef __INTEL_COMPILER 144 #pragma warning ( disable : 2259 ) 146 enum { value =
sizeof(test(ms_from, 0))==
sizeof(yes) };
147 #ifdef __INTEL_COMPILER 152 template<
typename From,
typename To>
162 template<
bool Condition,
typename T=
void>
struct enable_if;
167 #if defined(__CUDA_ARCH__) 168 #if !defined(__FLT_EPSILON__) 169 #define __FLT_EPSILON__ FLT_EPSILON 170 #define __DBL_EPSILON__ DBL_EPSILON 175 template<
typename T>
struct numeric_limits
178 static T epsilon() {
return 0; }
179 static T (max)() { assert(
false &&
"Highest not supported for this type"); }
180 static T (min)() { assert(
false &&
"Lowest not supported for this type"); }
181 static T infinity() { assert(
false &&
"Infinity not supported for this type"); }
182 static T quiet_NaN() { assert(
false &&
"quiet_NaN not supported for this type"); }
184 template<>
struct numeric_limits<float>
187 static float epsilon() {
return __FLT_EPSILON__; }
189 static float (max)() {
return CUDART_MAX_NORMAL_F; }
191 static float (min)() {
return FLT_MIN; }
193 static float infinity() {
return CUDART_INF_F; }
195 static float quiet_NaN() {
return CUDART_NAN_F; }
197 template<>
struct numeric_limits<double>
200 static double epsilon() {
return __DBL_EPSILON__; }
202 static double (max)() {
return DBL_MAX; }
204 static double (min)() {
return DBL_MIN; }
206 static double infinity() {
return CUDART_INF; }
208 static double quiet_NaN() {
return CUDART_NAN; }
210 template<>
struct numeric_limits<int>
213 static int epsilon() {
return 0; }
215 static int (max)() {
return INT_MAX; }
217 static int (min)() {
return INT_MIN; }
219 template<>
struct numeric_limits<unsigned int>
222 static unsigned int epsilon() {
return 0; }
224 static unsigned int (max)() {
return UINT_MAX; }
226 static unsigned int (min)() {
return 0; }
228 template<>
struct numeric_limits<long>
231 static long epsilon() {
return 0; }
233 static long (max)() {
return LONG_MAX; }
235 static long (min)() {
return LONG_MIN; }
237 template<>
struct numeric_limits<unsigned long>
240 static unsigned long epsilon() {
return 0; }
242 static unsigned long (max)() {
return ULONG_MAX; }
244 static unsigned long (min)() {
return 0; }
246 template<>
struct numeric_limits<long long>
249 static long long epsilon() {
return 0; }
251 static long long (max)() {
return LLONG_MAX; }
253 static long long (min)() {
return LLONG_MIN; }
255 template<>
struct numeric_limits<unsigned long long>
258 static unsigned long long epsilon() {
return 0; }
260 static unsigned long long (max)() {
return ULLONG_MAX; }
262 static unsigned long long (min)() {
return 0; }
275 EIGEN_DEVICE_FUNC
const noncopyable& operator=(
const noncopyable&);
277 EIGEN_DEVICE_FUNC noncopyable() {}
278 EIGEN_DEVICE_FUNC ~noncopyable() {}
288 #if EIGEN_HAS_STD_RESULT_OF 290 typedef typename std::result_of<T>::type type1;
300 template<
typename Func,
typename ArgType,
int SizeOf=sizeof(has_none)>
303 template<
typename Func,
typename ArgType>
306 template<
typename Func,
typename ArgType>
309 template<
typename Func,
typename ArgType>
314 static has_tr1_result testFunctor(
T const *,
typename T::template result<
T(ArgType)>::
type const * = 0);
318 enum {FunctorType =
sizeof(testFunctor(static_cast<Func*>(0)))};
322 template<
typename Func,
typename ArgType0,
typename ArgType1,
int SizeOf=sizeof(has_none)>
325 template<
typename Func,
typename ArgType0,
typename ArgType1>
327 {
typedef typename Func::result_type type;};
329 template<
typename Func,
typename ArgType0,
typename ArgType1>
331 {
typedef typename Func::template result<Func(ArgType0,ArgType1)>::type type;};
333 template<
typename Func,
typename ArgType0,
typename ArgType1>
338 static has_tr1_result testFunctor(
T const *,
typename T::template result<
T(ArgType0,ArgType1)>::
type const * = 0);
342 enum {FunctorType =
sizeof(testFunctor(static_cast<Func*>(0)))};
346 template<
typename Func,
typename ArgType0,
typename ArgType1,
typename ArgType2,
int SizeOf=sizeof(has_none)>
349 template<
typename Func,
typename ArgType0,
typename ArgType1,
typename ArgType2>
351 {
typedef typename Func::result_type type;};
353 template<
typename Func,
typename ArgType0,
typename ArgType1,
typename ArgType2>
355 {
typedef typename Func::template result<Func(ArgType0,ArgType1,ArgType2)>::type type;};
357 template<
typename Func,
typename ArgType0,
typename ArgType1,
typename ArgType2>
362 static has_tr1_result testFunctor(
T const *,
typename T::template result<
T(ArgType0,ArgType1,ArgType2)>::
type const * = 0);
366 enum {FunctorType =
sizeof(testFunctor(static_cast<Func*>(0)))};
375 template <
typename T>
378 template <
typename C>
static meta_yes testFunctor(
typename C::ReturnType
const *);
379 template <
typename C>
static meta_no testFunctor(...);
381 enum { value =
sizeof(testFunctor<T>(0)) ==
sizeof(
meta_yes) };
384 template<
typename T>
const T* return_ptr();
386 template <
typename T,
typename IndexType=Index>
389 template <
typename C>
static meta_yes testFunctor(
C const *,
typename enable_if<(
sizeof(return_ptr<C>()->
operator()())>0)>::type * = 0);
390 static meta_no testFunctor(...);
392 enum { value =
sizeof(testFunctor(static_cast<T*>(0))) ==
sizeof(
meta_yes) };
395 template <
typename T,
typename IndexType=Index>
398 template <
typename C>
static meta_yes testFunctor(
C const *,
typename enable_if<(
sizeof(return_ptr<C>()->
operator()(IndexType(0)))>0)>::type * = 0);
399 static meta_no testFunctor(...);
401 enum { value =
sizeof(testFunctor(static_cast<T*>(0))) ==
sizeof(
meta_yes) };
404 template <
typename T,
typename IndexType=Index>
407 template <
typename C>
static meta_yes testFunctor(
C const *,
typename enable_if<(
sizeof(return_ptr<C>()->
operator()(IndexType(0),IndexType(0)))>0)>::type * = 0);
408 static meta_no testFunctor(...);
410 enum { value =
sizeof(testFunctor(static_cast<T*>(0))) ==
sizeof(
meta_yes) };
418 int SupX = ((Y==1) ? 1 : Y/2),
419 bool Done = ((SupX-InfX)<=1 ?
true : ((SupX*SupX <= Y) && ((SupX+1)*(SupX+1) > Y))) >
424 MidX = (InfX+SupX)/2,
425 TakeInf = MidX*MidX > Y ? 1 : 0,
426 NewInf =
int(TakeInf) ? InfX : int(MidX),
427 NewSup = int(TakeInf) ? int(MidX) : SupX
433 template<
int Y,
int InfX,
int SupX>
434 class meta_sqrt<Y, InfX, SupX, true> {
public:
enum { ret = (SupX*SupX <= Y) ? SupX : InfX }; };
441 template<
int A,
int B,
int K=1,
bool Done = ((A*K)%B)==0>
446 template<
int A,
int B,
int K>
455 enum { Defined = 0 };
468 #if defined(__CUDA_ARCH__) 469 template<
typename T> EIGEN_DEVICE_FUNC
void swap(
T &a,
T &b) {
T tmp = b; b = a; a = tmp; }
471 template<
typename T> EIGEN_STRONG_INLINE
void swap(
T &a,
T &b) { std::swap(a,b); }
474 #if defined(__CUDA_ARCH__) 475 using internal::device::numeric_limits;
477 using std::numeric_limits;
483 T div_ceil(
const T &a,
const T &b)
492 #endif // EIGEN_META_H
Expression of the transpose of a matrix.
Definition: Transpose.h:52
Namespace containing all symbols from the Eigen library.
Definition: bench_norm.cpp:85
EIGEN_DEFAULT_DENSE_INDEX_TYPE Index
The Index type as used for the API.
Definition: Meta.h:33
Definition: BandTriangularSolver.h:13
Generic expression where a coefficient-wise unary operator is applied to an expression.
Definition: CwiseUnaryOp.h:55