Eigen  3.4.90 (git rev 67eeba6e720c5745abc77ae6c92ce0a44aa7b7ae)
GenericPacketMath.h
1 // This file is part of Eigen, a lightweight C++ template library
2 // for linear algebra.
3 //
4 // Copyright (C) 2008 Gael Guennebaud <gael.guennebaud@inria.fr>
5 // Copyright (C) 2006-2008 Benoit Jacob <jacob.benoit.1@gmail.com>
6 //
7 // This Source Code Form is subject to the terms of the Mozilla
8 // Public License v. 2.0. If a copy of the MPL was not distributed
9 // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
10 
11 #ifndef EIGEN_GENERIC_PACKET_MATH_H
12 #define EIGEN_GENERIC_PACKET_MATH_H
13 
14 #include "./InternalHeaderCheck.h"
15 
16 namespace Eigen {
17 
18 namespace internal {
19 
28 #ifndef EIGEN_DEBUG_ALIGNED_LOAD
29 #define EIGEN_DEBUG_ALIGNED_LOAD
30 #endif
31 
32 #ifndef EIGEN_DEBUG_UNALIGNED_LOAD
33 #define EIGEN_DEBUG_UNALIGNED_LOAD
34 #endif
35 
36 #ifndef EIGEN_DEBUG_ALIGNED_STORE
37 #define EIGEN_DEBUG_ALIGNED_STORE
38 #endif
39 
40 #ifndef EIGEN_DEBUG_UNALIGNED_STORE
41 #define EIGEN_DEBUG_UNALIGNED_STORE
42 #endif
43 
44 struct default_packet_traits
45 {
46  enum {
47  HasHalfPacket = 0,
48 
49  HasAdd = 1,
50  HasSub = 1,
51  HasShift = 1,
52  HasMul = 1,
53  HasNegate = 1,
54  HasAbs = 1,
55  HasArg = 0,
56  HasAbs2 = 1,
57  HasAbsDiff = 0,
58  HasMin = 1,
59  HasMax = 1,
60  HasConj = 1,
61  HasSetLinear = 1,
62  HasBlend = 0,
63  // This flag is used to indicate whether packet comparison is supported.
64  // pcmp_eq, pcmp_lt and pcmp_le should be defined for it to be true.
65  HasCmp = 0,
66 
67  HasDiv = 0,
68  HasReciprocal = 0,
69  HasSqrt = 0,
70  HasRsqrt = 0,
71  HasExp = 0,
72  HasExpm1 = 0,
73  HasLog = 0,
74  HasLog1p = 0,
75  HasLog10 = 0,
76  HasPow = 0,
77 
78  HasSin = 0,
79  HasCos = 0,
80  HasTan = 0,
81  HasASin = 0,
82  HasACos = 0,
83  HasATan = 0,
84  HasSinh = 0,
85  HasCosh = 0,
86  HasTanh = 0,
87  HasLGamma = 0,
88  HasDiGamma = 0,
89  HasZeta = 0,
90  HasPolygamma = 0,
91  HasErf = 0,
92  HasErfc = 0,
93  HasNdtri = 0,
94  HasBessel = 0,
95  HasIGamma = 0,
96  HasIGammaDerA = 0,
97  HasGammaSampleDerAlpha = 0,
98  HasIGammac = 0,
99  HasBetaInc = 0,
100 
101  HasRound = 0,
102  HasRint = 0,
103  HasFloor = 0,
104  HasCeil = 0,
105  HasSign = 0
106  };
107 };
108 
109 template<typename T> struct packet_traits : default_packet_traits
110 {
111  typedef T type;
112  typedef T half;
113  enum {
114  Vectorizable = 0,
115  size = 1,
116  AlignedOnScalar = 0,
117  HasHalfPacket = 0
118  };
119  enum {
120  HasAdd = 0,
121  HasSub = 0,
122  HasMul = 0,
123  HasNegate = 0,
124  HasAbs = 0,
125  HasAbs2 = 0,
126  HasMin = 0,
127  HasMax = 0,
128  HasConj = 0,
129  HasSetLinear = 0
130  };
131 };
132 
133 template<typename T> struct packet_traits<const T> : packet_traits<T> { };
134 
135 template<typename T> struct unpacket_traits
136 {
137  typedef T type;
138  typedef T half;
139  enum
140  {
141  size = 1,
142  alignment = 1,
143  vectorizable = false,
144  masked_load_available=false,
145  masked_store_available=false
146  };
147 };
148 
149 template<typename T> struct unpacket_traits<const T> : unpacket_traits<T> { };
150 
151 template <typename Src, typename Tgt> struct type_casting_traits {
152  enum {
153  VectorizedCast = 0,
154  SrcCoeffRatio = 1,
155  TgtCoeffRatio = 1
156  };
157 };
158 
161 template<typename T, int unique_id = 0>
162 struct eigen_packet_wrapper
163 {
164  EIGEN_ALWAYS_INLINE operator T&() { return m_val; }
165  EIGEN_ALWAYS_INLINE operator const T&() const { return m_val; }
166  EIGEN_ALWAYS_INLINE eigen_packet_wrapper() = default;
167  EIGEN_ALWAYS_INLINE eigen_packet_wrapper(const T &v) : m_val(v) {}
168  EIGEN_ALWAYS_INLINE eigen_packet_wrapper& operator=(const T &v) {
169  m_val = v;
170  return *this;
171  }
172 
173  T m_val;
174 };
175 
176 
180 template<typename Packet>
181 struct is_scalar {
182  typedef typename unpacket_traits<Packet>::type Scalar;
183  enum {
184  value = internal::is_same<Packet, Scalar>::value
185  };
186 };
187 
189 template <typename SrcPacket, typename TgtPacket>
190 EIGEN_DEVICE_FUNC inline TgtPacket
191 pcast(const SrcPacket& a) {
192  return static_cast<TgtPacket>(a);
193 }
194 template <typename SrcPacket, typename TgtPacket>
195 EIGEN_DEVICE_FUNC inline TgtPacket
196 pcast(const SrcPacket& a, const SrcPacket& /*b*/) {
197  return static_cast<TgtPacket>(a);
198 }
199 template <typename SrcPacket, typename TgtPacket>
200 EIGEN_DEVICE_FUNC inline TgtPacket
201 pcast(const SrcPacket& a, const SrcPacket& /*b*/, const SrcPacket& /*c*/, const SrcPacket& /*d*/) {
202  return static_cast<TgtPacket>(a);
203 }
204 template <typename SrcPacket, typename TgtPacket>
205 EIGEN_DEVICE_FUNC inline TgtPacket
206 pcast(const SrcPacket& a, const SrcPacket& /*b*/, const SrcPacket& /*c*/, const SrcPacket& /*d*/,
207  const SrcPacket& /*e*/, const SrcPacket& /*f*/, const SrcPacket& /*g*/, const SrcPacket& /*h*/) {
208  return static_cast<TgtPacket>(a);
209 }
210 
212 template <typename Target, typename Packet>
213 EIGEN_DEVICE_FUNC inline Target
214 preinterpret(const Packet& a); /* { return reinterpret_cast<const Target&>(a); } */
215 
217 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
218 padd(const Packet& a, const Packet& b) { return a+b; }
219 // Avoid compiler warning for boolean algebra.
220 template<> EIGEN_DEVICE_FUNC inline bool
221 padd(const bool& a, const bool& b) { return a || b; }
222 
227 template<typename Packet> EIGEN_DEVICE_FUNC inline
228 std::enable_if_t<unpacket_traits<Packet>::masked_fpops_available, Packet>
229 padd(const Packet& a, const Packet& b, typename unpacket_traits<Packet>::mask_t umask);
230 
231 
233 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
234 psub(const Packet& a, const Packet& b) { return a-b; }
235 
237 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
238 pnegate(const Packet& a) { return -a; }
239 
240 template<> EIGEN_DEVICE_FUNC inline bool
241 pnegate(const bool& a) { return !a; }
242 
244 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
245 pconj(const Packet& a) { return numext::conj(a); }
246 
248 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
249 pmul(const Packet& a, const Packet& b) { return a*b; }
250 // Avoid compiler warning for boolean algebra.
251 template<> EIGEN_DEVICE_FUNC inline bool
252 pmul(const bool& a, const bool& b) { return a && b; }
253 
255 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
256 pdiv(const Packet& a, const Packet& b) { return a/b; }
257 
258 // In the generic case, memset to all one bits.
259 template<typename Packet, typename EnableIf = void>
260 struct ptrue_impl {
261  static EIGEN_DEVICE_FUNC inline Packet run(const Packet& /*a*/){
262  Packet b;
263  memset(static_cast<void*>(&b), 0xff, sizeof(Packet));
264  return b;
265  }
266 };
267 
268 // For non-trivial scalars, set to Scalar(1) (i.e. a non-zero value).
269 // Although this is technically not a valid bitmask, the scalar path for pselect
270 // uses a comparison to zero, so this should still work in most cases. We don't
271 // have another option, since the scalar type requires initialization.
272 template<typename T>
273 struct ptrue_impl<T,
274  std::enable_if_t<is_scalar<T>::value && NumTraits<T>::RequireInitialization> > {
275  static EIGEN_DEVICE_FUNC inline T run(const T& /*a*/){
276  return T(1);
277  }
278 };
279 
281 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
282 ptrue(const Packet& a) {
283  return ptrue_impl<Packet>::run(a);
284 }
285 
286 // In the general case, memset to zero.
287 template<typename Packet, typename EnableIf = void>
288 struct pzero_impl {
289  static EIGEN_DEVICE_FUNC inline Packet run(const Packet& /*a*/) {
290  Packet b;
291  memset(static_cast<void*>(&b), 0x00, sizeof(Packet));
292  return b;
293  }
294 };
295 
296 // For scalars, explicitly set to Scalar(0), since the underlying representation
297 // for zero may not consist of all-zero bits.
298 template<typename T>
299 struct pzero_impl<T,
300  std::enable_if_t<is_scalar<T>::value>> {
301  static EIGEN_DEVICE_FUNC inline T run(const T& /*a*/) {
302  return T(0);
303  }
304 };
305 
307 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
308 pzero(const Packet& a) {
309  return pzero_impl<Packet>::run(a);
310 }
311 
313 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
314 pcmp_le(const Packet& a, const Packet& b) { return a<=b ? ptrue(a) : pzero(a); }
315 
317 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
318 pcmp_lt(const Packet& a, const Packet& b) { return a<b ? ptrue(a) : pzero(a); }
319 
321 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
322 pcmp_eq(const Packet& a, const Packet& b) { return a==b ? ptrue(a) : pzero(a); }
323 
325 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
326 pcmp_lt_or_nan(const Packet& a, const Packet& b) { return a>=b ? pzero(a) : ptrue(a); }
327 
328 template<typename T>
329 struct bit_and {
330  EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR EIGEN_ALWAYS_INLINE T operator()(const T& a, const T& b) const {
331  return a & b;
332  }
333 };
334 
335 template<typename T>
336 struct bit_or {
337  EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR EIGEN_ALWAYS_INLINE T operator()(const T& a, const T& b) const {
338  return a | b;
339  }
340 };
341 
342 template<typename T>
343 struct bit_xor {
344  EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR EIGEN_ALWAYS_INLINE T operator()(const T& a, const T& b) const {
345  return a ^ b;
346  }
347 };
348 
349 template<typename T>
350 struct bit_not {
351  EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR EIGEN_ALWAYS_INLINE T operator()(const T& a) const {
352  return ~a;
353  }
354 };
355 
356 // Use operators &, |, ^, ~.
357 template<typename T>
358 struct operator_bitwise_helper {
359  EIGEN_DEVICE_FUNC static inline T bitwise_and(const T& a, const T& b) { return bit_and<T>()(a, b); }
360  EIGEN_DEVICE_FUNC static inline T bitwise_or(const T& a, const T& b) { return bit_or<T>()(a, b); }
361  EIGEN_DEVICE_FUNC static inline T bitwise_xor(const T& a, const T& b) { return bit_xor<T>()(a, b); }
362  EIGEN_DEVICE_FUNC static inline T bitwise_not(const T& a) { return bit_not<T>()(a); }
363 };
364 
365 // Apply binary operations byte-by-byte
366 template<typename T>
367 struct bytewise_bitwise_helper {
368  EIGEN_DEVICE_FUNC static inline T bitwise_and(const T& a, const T& b) {
369  return binary(a, b, bit_and<unsigned char>());
370  }
371  EIGEN_DEVICE_FUNC static inline T bitwise_or(const T& a, const T& b) {
372  return binary(a, b, bit_or<unsigned char>());
373  }
374  EIGEN_DEVICE_FUNC static inline T bitwise_xor(const T& a, const T& b) {
375  return binary(a, b, bit_xor<unsigned char>());
376  }
377  EIGEN_DEVICE_FUNC static inline T bitwise_not(const T& a) {
378  return unary(a,bit_not<unsigned char>());
379  }
380 
381  private:
382  template<typename Op>
383  EIGEN_DEVICE_FUNC static inline T unary(const T& a, Op op) {
384  const unsigned char* a_ptr = reinterpret_cast<const unsigned char*>(&a);
385  T c;
386  unsigned char* c_ptr = reinterpret_cast<unsigned char*>(&c);
387  for (size_t i = 0; i < sizeof(T); ++i) {
388  *c_ptr++ = op(*a_ptr++);
389  }
390  return c;
391  }
392 
393  template<typename Op>
394  EIGEN_DEVICE_FUNC static inline T binary(const T& a, const T& b, Op op) {
395  const unsigned char* a_ptr = reinterpret_cast<const unsigned char*>(&a);
396  const unsigned char* b_ptr = reinterpret_cast<const unsigned char*>(&b);
397  T c;
398  unsigned char* c_ptr = reinterpret_cast<unsigned char*>(&c);
399  for (size_t i = 0; i < sizeof(T); ++i) {
400  *c_ptr++ = op(*a_ptr++, *b_ptr++);
401  }
402  return c;
403  }
404 };
405 
406 // In the general case, use byte-by-byte manipulation.
407 template<typename T, typename EnableIf = void>
408 struct bitwise_helper : public bytewise_bitwise_helper<T> {};
409 
410 // For integers or non-trivial scalars, use binary operators.
411 template<typename T>
412 struct bitwise_helper<T,
413  typename std::enable_if_t<
414  is_scalar<T>::value && (NumTraits<T>::IsInteger || NumTraits<T>::RequireInitialization)>
415  > : public operator_bitwise_helper<T> {};
416 
418 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
419 pand(const Packet& a, const Packet& b) {
420  return bitwise_helper<Packet>::bitwise_and(a, b);
421 }
422 
424 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
425 por(const Packet& a, const Packet& b) {
426  return bitwise_helper<Packet>::bitwise_or(a, b);
427 }
428 
430 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
431 pxor(const Packet& a, const Packet& b) {
432  return bitwise_helper<Packet>::bitwise_xor(a, b);
433 }
434 
436 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
437 pnot(const Packet& a) {
438  return bitwise_helper<Packet>::bitwise_not(a);
439 }
440 
442 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
443 pandnot(const Packet& a, const Packet& b) { return pand(a, pnot(b)); }
444 
445 // In the general case, use bitwise select.
446 template<typename Packet, typename EnableIf = void>
447 struct pselect_impl {
448  static EIGEN_DEVICE_FUNC inline Packet run(const Packet& mask, const Packet& a, const Packet& b) {
449  return por(pand(a,mask),pandnot(b,mask));
450  }
451 };
452 
453 // For scalars, use ternary select.
454 template<typename Packet>
455 struct pselect_impl<Packet,
456  std::enable_if_t<is_scalar<Packet>::value> > {
457  static EIGEN_DEVICE_FUNC inline Packet run(const Packet& mask, const Packet& a, const Packet& b) {
458  return numext::equal_strict(mask, Packet(0)) ? b : a;
459  }
460 };
461 
463 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
464 pselect(const Packet& mask, const Packet& a, const Packet& b) {
465  return pselect_impl<Packet>::run(mask, a, b);
466 }
467 
468 template<> EIGEN_DEVICE_FUNC inline bool pselect<bool>(
469  const bool& cond, const bool& a, const bool& b) {
470  return cond ? a : b;
471 }
472 
475 template<int NaNPropagation>
476 struct pminmax_impl {
477  template <typename Packet, typename Op>
478  static EIGEN_DEVICE_FUNC inline Packet run(const Packet& a, const Packet& b, Op op) {
479  return op(a,b);
480  }
481 };
482 
485 template<>
486 struct pminmax_impl<PropagateNaN> {
487  template <typename Packet, typename Op>
488  static EIGEN_DEVICE_FUNC inline Packet run(const Packet& a, const Packet& b, Op op) {
489  Packet not_nan_mask_a = pcmp_eq(a, a);
490  Packet not_nan_mask_b = pcmp_eq(b, b);
491  return pselect(not_nan_mask_a,
492  pselect(not_nan_mask_b, op(a, b), b),
493  a);
494  }
495 };
496 
500 template<>
501 struct pminmax_impl<PropagateNumbers> {
502  template <typename Packet, typename Op>
503  static EIGEN_DEVICE_FUNC inline Packet run(const Packet& a, const Packet& b, Op op) {
504  Packet not_nan_mask_a = pcmp_eq(a, a);
505  Packet not_nan_mask_b = pcmp_eq(b, b);
506  return pselect(not_nan_mask_a,
507  pselect(not_nan_mask_b, op(a, b), a),
508  b);
509  }
510 };
511 
512 
513 #ifndef SYCL_DEVICE_ONLY
514 #define EIGEN_BINARY_OP_NAN_PROPAGATION(Type, Func) Func
515 #else
516 #define EIGEN_BINARY_OP_NAN_PROPAGATION(Type, Func) \
517 [](const Type& a, const Type& b) { \
518  return Func(a, b);}
519 #endif
520 
523 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
524 pmin(const Packet& a, const Packet& b) { return numext::mini(a,b); }
525 
528 template <int NaNPropagation, typename Packet>
529 EIGEN_DEVICE_FUNC inline Packet pmin(const Packet& a, const Packet& b) {
530  return pminmax_impl<NaNPropagation>::run(a, b, EIGEN_BINARY_OP_NAN_PROPAGATION(Packet, (pmin<Packet>)));
531 }
532 
535 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
536 pmax(const Packet& a, const Packet& b) { return numext::maxi(a, b); }
537 
540 template <int NaNPropagation, typename Packet>
541 EIGEN_DEVICE_FUNC inline Packet pmax(const Packet& a, const Packet& b) {
542  return pminmax_impl<NaNPropagation>::run(a, b, EIGEN_BINARY_OP_NAN_PROPAGATION(Packet,(pmax<Packet>)));
543 }
544 
546 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
547 pabs(const Packet& a) { return numext::abs(a); }
548 template<> EIGEN_DEVICE_FUNC inline unsigned int
549 pabs(const unsigned int& a) { return a; }
550 template<> EIGEN_DEVICE_FUNC inline unsigned long
551 pabs(const unsigned long& a) { return a; }
552 template<> EIGEN_DEVICE_FUNC inline unsigned long long
553 pabs(const unsigned long long& a) { return a; }
554 
556 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
557 paddsub(const Packet& a, const Packet& b) {
558  return pselect(peven_mask(a), padd(a, b), psub(a, b));
559  }
560 
562 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
563 parg(const Packet& a) { using numext::arg; return arg(a); }
564 
565 
567 template<int N> EIGEN_DEVICE_FUNC inline int
568 parithmetic_shift_right(const int& a) { return a >> N; }
569 template<int N> EIGEN_DEVICE_FUNC inline long int
570 parithmetic_shift_right(const long int& a) { return a >> N; }
571 
573 template<int N> EIGEN_DEVICE_FUNC inline int
574 plogical_shift_right(const int& a) { return static_cast<int>(static_cast<unsigned int>(a) >> N); }
575 template<int N> EIGEN_DEVICE_FUNC inline long int
576 plogical_shift_right(const long int& a) { return static_cast<long>(static_cast<unsigned long>(a) >> N); }
577 
579 template<int N> EIGEN_DEVICE_FUNC inline int
580 plogical_shift_left(const int& a) { return a << N; }
581 template<int N> EIGEN_DEVICE_FUNC inline long int
582 plogical_shift_left(const long int& a) { return a << N; }
583 
587 template <typename Packet>
588 EIGEN_DEVICE_FUNC inline Packet pfrexp(const Packet& a, Packet& exponent) {
589  int exp;
590  EIGEN_USING_STD(frexp);
591  Packet result = static_cast<Packet>(frexp(a, &exp));
592  exponent = static_cast<Packet>(exp);
593  return result;
594 }
595 
599 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
600 pldexp(const Packet &a, const Packet &exponent) {
601  EIGEN_USING_STD(ldexp)
602  return static_cast<Packet>(ldexp(a, static_cast<int>(exponent)));
603 }
604 
606 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
607 pabsdiff(const Packet& a, const Packet& b) { return pselect(pcmp_lt(a, b), psub(b, a), psub(a, b)); }
608 
610 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
611 pload(const typename unpacket_traits<Packet>::type* from) { return *from; }
612 
614 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
615 ploadu(const typename unpacket_traits<Packet>::type* from) { return *from; }
616 
621 template<typename Packet> EIGEN_DEVICE_FUNC inline
622 std::enable_if_t<unpacket_traits<Packet>::masked_load_available, Packet>
623 ploadu(const typename unpacket_traits<Packet>::type* from, typename unpacket_traits<Packet>::mask_t umask);
624 
626 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
627 pset1(const typename unpacket_traits<Packet>::type& a) { return a; }
628 
630 template<typename Packet,typename BitsType> EIGEN_DEVICE_FUNC inline Packet
631 pset1frombits(BitsType a);
632 
634 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
635 pload1(const typename unpacket_traits<Packet>::type *a) { return pset1<Packet>(*a); }
636 
642 template<typename Packet> EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet
643 ploaddup(const typename unpacket_traits<Packet>::type* from) { return *from; }
644 
651 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
652 ploadquad(const typename unpacket_traits<Packet>::type* from)
653 { return pload1<Packet>(from); }
654 
664 template<typename Packet> EIGEN_DEVICE_FUNC
665 inline void pbroadcast4(const typename unpacket_traits<Packet>::type *a,
666  Packet& a0, Packet& a1, Packet& a2, Packet& a3)
667 {
668  a0 = pload1<Packet>(a+0);
669  a1 = pload1<Packet>(a+1);
670  a2 = pload1<Packet>(a+2);
671  a3 = pload1<Packet>(a+3);
672 }
673 
681 template<typename Packet> EIGEN_DEVICE_FUNC
682 inline void pbroadcast2(const typename unpacket_traits<Packet>::type *a,
683  Packet& a0, Packet& a1)
684 {
685  a0 = pload1<Packet>(a+0);
686  a1 = pload1<Packet>(a+1);
687 }
688 
690 template<typename Packet> EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet
691 plset(const typename unpacket_traits<Packet>::type& a) { return a; }
692 
695 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
696 peven_mask(const Packet& /*a*/) {
697  typedef typename unpacket_traits<Packet>::type Scalar;
698  const size_t n = unpacket_traits<Packet>::size;
699  EIGEN_ALIGN_TO_BOUNDARY(sizeof(Packet)) Scalar elements[n];
700  for(size_t i = 0; i < n; ++i) {
701  memset(elements+i, ((i & 1) == 0 ? 0xff : 0), sizeof(Scalar));
702  }
703  return ploadu<Packet>(elements);
704 }
705 
706 
708 template<typename Scalar, typename Packet> EIGEN_DEVICE_FUNC inline void pstore(Scalar* to, const Packet& from)
709 { (*to) = from; }
710 
712 template<typename Scalar, typename Packet> EIGEN_DEVICE_FUNC inline void pstoreu(Scalar* to, const Packet& from)
713 { (*to) = from; }
714 
719 template<typename Scalar, typename Packet>
720 EIGEN_DEVICE_FUNC inline
721 std::enable_if_t<unpacket_traits<Packet>::masked_store_available, void>
722 pstoreu(Scalar* to, const Packet& from, typename unpacket_traits<Packet>::mask_t umask);
723 
724  template<typename Scalar, typename Packet> EIGEN_DEVICE_FUNC inline Packet pgather(const Scalar* from, Index /*stride*/)
725  { return ploadu<Packet>(from); }
726 
727  template<typename Scalar, typename Packet> EIGEN_DEVICE_FUNC inline void pscatter(Scalar* to, const Packet& from, Index /*stride*/)
728  { pstore(to, from); }
729 
731 template<typename Scalar> EIGEN_DEVICE_FUNC inline void prefetch(const Scalar* addr)
732 {
733 #if defined(EIGEN_HIP_DEVICE_COMPILE)
734  // do nothing
735 #elif defined(EIGEN_CUDA_ARCH)
736 #if defined(__LP64__) || EIGEN_OS_WIN64
737  // 64-bit pointer operand constraint for inlined asm
738  asm(" prefetch.L1 [ %1 ];" : "=l"(addr) : "l"(addr));
739 #else
740  // 32-bit pointer operand constraint for inlined asm
741  asm(" prefetch.L1 [ %1 ];" : "=r"(addr) : "r"(addr));
742 #endif
743 #elif (!EIGEN_COMP_MSVC) && (EIGEN_COMP_GNUC || EIGEN_COMP_CLANG || EIGEN_COMP_ICC)
744  __builtin_prefetch(addr);
745 #endif
746 }
747 
749 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet preverse(const Packet& a)
750 { return a; }
751 
753 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet pcplxflip(const Packet& a)
754 {
755  return Packet(numext::imag(a),numext::real(a));
756 }
757 
758 /**************************
759 * Special math functions
760 ***************************/
761 
763 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
764 Packet psin(const Packet& a) { EIGEN_USING_STD(sin); return sin(a); }
765 
767 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
768 Packet pcos(const Packet& a) { EIGEN_USING_STD(cos); return cos(a); }
769 
771 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
772 Packet ptan(const Packet& a) { EIGEN_USING_STD(tan); return tan(a); }
773 
775 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
776 Packet pasin(const Packet& a) { EIGEN_USING_STD(asin); return asin(a); }
777 
779 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
780 Packet pacos(const Packet& a) { EIGEN_USING_STD(acos); return acos(a); }
781 
783 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
784 Packet patan(const Packet& a) { EIGEN_USING_STD(atan); return atan(a); }
785 
787 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
788 Packet psinh(const Packet& a) { EIGEN_USING_STD(sinh); return sinh(a); }
789 
791 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
792 Packet pcosh(const Packet& a) { EIGEN_USING_STD(cosh); return cosh(a); }
793 
795 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
796 Packet ptanh(const Packet& a) { EIGEN_USING_STD(tanh); return tanh(a); }
797 
799 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
800 Packet pexp(const Packet& a) { EIGEN_USING_STD(exp); return exp(a); }
801 
803 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
804 Packet pexpm1(const Packet& a) { return numext::expm1(a); }
805 
807 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
808 Packet plog(const Packet& a) { EIGEN_USING_STD(log); return log(a); }
809 
811 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
812 Packet plog1p(const Packet& a) { return numext::log1p(a); }
813 
815 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
816 Packet plog10(const Packet& a) { EIGEN_USING_STD(log10); return log10(a); }
817 
819 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
820 Packet plog2(const Packet& a) {
821  typedef typename internal::unpacket_traits<Packet>::type Scalar;
822  return pmul(pset1<Packet>(Scalar(EIGEN_LOG2E)), plog(a));
823 }
824 
826 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
827 Packet psqrt(const Packet& a) { return numext::sqrt(a); }
828 
830 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
831 Packet pround(const Packet& a) { using numext::round; return round(a); }
832 
834 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
835 Packet pfloor(const Packet& a) { using numext::floor; return floor(a); }
836 
839 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
840 Packet print(const Packet& a) { using numext::rint; return rint(a); }
841 
843 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
844 Packet pceil(const Packet& a) { using numext::ceil; return ceil(a); }
845 
847 template<typename Packet>
848 EIGEN_DEVICE_FUNC inline typename unpacket_traits<Packet>::type
849 pfirst(const Packet& a)
850 { return a; }
851 
856 template<typename Packet>
857 EIGEN_DEVICE_FUNC inline std::conditional_t<(unpacket_traits<Packet>::size%8)==0,typename unpacket_traits<Packet>::half,Packet>
858 predux_half_dowto4(const Packet& a)
859 { return a; }
860 
861 // Slow generic implementation of Packet reduction.
862 template <typename Packet, typename Op>
863 EIGEN_DEVICE_FUNC inline typename unpacket_traits<Packet>::type
864 predux_helper(const Packet& a, Op op) {
865  typedef typename unpacket_traits<Packet>::type Scalar;
866  const size_t n = unpacket_traits<Packet>::size;
867  EIGEN_ALIGN_TO_BOUNDARY(sizeof(Packet)) Scalar elements[n];
868  pstoreu<Scalar>(elements, a);
869  for(size_t k = n / 2; k > 0; k /= 2) {
870  for(size_t i = 0; i < k; ++i) {
871  elements[i] = op(elements[i], elements[i + k]);
872  }
873  }
874  return elements[0];
875 }
876 
878 template<typename Packet>
879 EIGEN_DEVICE_FUNC inline typename unpacket_traits<Packet>::type
880 predux(const Packet& a)
881 {
882  return a;
883 }
884 
886 template <typename Packet>
887 EIGEN_DEVICE_FUNC inline typename unpacket_traits<Packet>::type predux_mul(
888  const Packet& a) {
889  typedef typename unpacket_traits<Packet>::type Scalar;
890  return predux_helper(a, EIGEN_BINARY_OP_NAN_PROPAGATION(Scalar, (pmul<Scalar>)));
891 }
892 
894 template <typename Packet>
895 EIGEN_DEVICE_FUNC inline typename unpacket_traits<Packet>::type predux_min(
896  const Packet &a) {
897  typedef typename unpacket_traits<Packet>::type Scalar;
898  return predux_helper(a, EIGEN_BINARY_OP_NAN_PROPAGATION(Scalar, (pmin<PropagateFast, Scalar>)));
899 }
900 
901 template <int NaNPropagation, typename Packet>
902 EIGEN_DEVICE_FUNC inline typename unpacket_traits<Packet>::type predux_min(
903  const Packet& a) {
904  typedef typename unpacket_traits<Packet>::type Scalar;
905  return predux_helper(a, EIGEN_BINARY_OP_NAN_PROPAGATION(Scalar, (pmin<NaNPropagation, Scalar>)));
906 }
907 
909 template <typename Packet>
910 EIGEN_DEVICE_FUNC inline typename unpacket_traits<Packet>::type predux_max(
911  const Packet &a) {
912  typedef typename unpacket_traits<Packet>::type Scalar;
913  return predux_helper(a, EIGEN_BINARY_OP_NAN_PROPAGATION(Scalar, (pmax<PropagateFast, Scalar>)));
914 }
915 
916 template <int NaNPropagation, typename Packet>
917 EIGEN_DEVICE_FUNC inline typename unpacket_traits<Packet>::type predux_max(
918  const Packet& a) {
919  typedef typename unpacket_traits<Packet>::type Scalar;
920  return predux_helper(a, EIGEN_BINARY_OP_NAN_PROPAGATION(Scalar, (pmax<NaNPropagation, Scalar>)));
921 }
922 
923 #undef EIGEN_BINARY_OP_NAN_PROPAGATION
924 
928 // not needed yet
929 // template<typename Packet> EIGEN_DEVICE_FUNC inline bool predux_all(const Packet& a)
930 // { return bool(a); }
931 
935 template<typename Packet> EIGEN_DEVICE_FUNC inline bool predux_any(const Packet& a)
936 {
937  // Dirty but generic implementation where "true" is assumed to be non 0 and all the sames.
938  // It is expected that "true" is either:
939  // - Scalar(1)
940  // - bits full of ones (NaN for floats),
941  // - or first bit equals to 1 (1 for ints, smallest denormal for floats).
942  // For all these cases, taking the sum is just fine, and this boils down to a no-op for scalars.
943  typedef typename unpacket_traits<Packet>::type Scalar;
944  return numext::not_equal_strict(predux(a), Scalar(0));
945 }
946 
947 /***************************************************************************
948 * The following functions might not have to be overwritten for vectorized types
949 ***************************************************************************/
950 
951 // FMA instructions.
953 template <typename Packet>
954 EIGEN_DEVICE_FUNC inline Packet pmadd(const Packet& a, const Packet& b,
955  const Packet& c) {
956  return padd(pmul(a, b), c);
957 }
958 
960 template <typename Packet>
961 EIGEN_DEVICE_FUNC inline Packet pmsub(const Packet& a, const Packet& b,
962  const Packet& c) {
963  return psub(pmul(a, b), c);
964 }
965 
967 template <typename Packet>
968 EIGEN_DEVICE_FUNC inline Packet pnmadd(const Packet& a, const Packet& b,
969  const Packet& c) {
970  return padd(pnegate(pmul(a, b)), c);
971 }
972 
974 template <typename Packet>
975 EIGEN_DEVICE_FUNC inline Packet pnmsub(const Packet& a, const Packet& b,
976  const Packet& c) {
977  return psub(pnegate(pmul(a, b)), c);
978 }
979 
981 // NOTE: this function must really be templated on the packet type (think about different packet types for the same scalar type)
982 template<typename Packet>
983 inline void pstore1(typename unpacket_traits<Packet>::type* to, const typename unpacket_traits<Packet>::type& a)
984 {
985  pstore(to, pset1<Packet>(a));
986 }
987 
990 template<typename Packet, int Alignment>
991 EIGEN_DEVICE_FUNC EIGEN_ALWAYS_INLINE Packet ploadt(const typename unpacket_traits<Packet>::type* from)
992 {
993  if(Alignment >= unpacket_traits<Packet>::alignment)
994  return pload<Packet>(from);
995  else
996  return ploadu<Packet>(from);
997 }
998 
1001 template<typename Scalar, typename Packet, int Alignment>
1002 EIGEN_DEVICE_FUNC EIGEN_ALWAYS_INLINE void pstoret(Scalar* to, const Packet& from)
1003 {
1004  if(Alignment >= unpacket_traits<Packet>::alignment)
1005  pstore(to, from);
1006  else
1007  pstoreu(to, from);
1008 }
1009 
1015 template<typename Packet, int LoadMode>
1016 EIGEN_DEVICE_FUNC EIGEN_ALWAYS_INLINE Packet ploadt_ro(const typename unpacket_traits<Packet>::type* from)
1017 {
1018  return ploadt<Packet, LoadMode>(from);
1019 }
1020 
1021 /***************************************************************************
1022 * Fast complex products (GCC generates a function call which is very slow)
1023 ***************************************************************************/
1024 
1025 // Eigen+CUDA does not support complexes.
1026 #if !defined(EIGEN_GPUCC)
1027 
1028 template<> inline std::complex<float> pmul(const std::complex<float>& a, const std::complex<float>& b)
1029 { return std::complex<float>(a.real()*b.real() - a.imag()*b.imag(), a.imag()*b.real() + a.real()*b.imag()); }
1030 
1031 template<> inline std::complex<double> pmul(const std::complex<double>& a, const std::complex<double>& b)
1032 { return std::complex<double>(a.real()*b.real() - a.imag()*b.imag(), a.imag()*b.real() + a.real()*b.imag()); }
1033 
1034 #endif
1035 
1036 
1037 /***************************************************************************
1038  * PacketBlock, that is a collection of N packets where the number of words
1039  * in the packet is a multiple of N.
1040 ***************************************************************************/
1041 template <typename Packet,int N=unpacket_traits<Packet>::size> struct PacketBlock {
1042  Packet packet[N];
1043 };
1044 
1045 template<typename Packet> EIGEN_DEVICE_FUNC inline void
1046 ptranspose(PacketBlock<Packet,1>& /*kernel*/) {
1047  // Nothing to do in the scalar case, i.e. a 1x1 matrix.
1048 }
1049 
1050 /***************************************************************************
1051  * Selector, i.e. vector of N boolean values used to select (i.e. blend)
1052  * words from 2 packets.
1053 ***************************************************************************/
1054 template <size_t N> struct Selector {
1055  bool select[N];
1056 };
1057 
1058 template<typename Packet> EIGEN_DEVICE_FUNC inline Packet
1059 pblend(const Selector<unpacket_traits<Packet>::size>& ifPacket, const Packet& thenPacket, const Packet& elsePacket) {
1060  return ifPacket.select[0] ? thenPacket : elsePacket;
1061 }
1062 
1064 template <typename Packet>
1065 EIGEN_DEVICE_FUNC inline Packet preciprocal(const Packet& a) {
1066  using Scalar = typename unpacket_traits<Packet>::type;
1067  return pdiv(pset1<Packet>(Scalar(1)), a);
1068 }
1069 
1071 template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
1072 Packet prsqrt(const Packet& a) {
1073  return preciprocal<Packet>(psqrt(a));
1074 }
1075 
1076 } // end namespace internal
1077 
1078 } // end namespace Eigen
1079 
1080 #endif // EIGEN_GENERIC_PACKET_MATH_H
@ PropagateNaN
Definition: Constants.h:345
@ PropagateNumbers
Definition: Constants.h:347
Namespace containing all symbols from the Eigen library.
Definition: Core:139
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_tanh_op< typename Derived::Scalar >, const Derived > tanh(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_rint_op< typename Derived::Scalar >, const Derived > rint(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_atan_op< typename Derived::Scalar >, const Derived > atan(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 Eigen::CwiseUnaryOp< Eigen::internal::scalar_cosh_op< typename Derived::Scalar >, const Derived > cosh(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_tan_op< typename Derived::Scalar >, const Derived > tan(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_acos_op< typename Derived::Scalar >, const Derived > acos(const Eigen::ArrayBase< Derived > &x)
EIGEN_DEFAULT_DENSE_INDEX_TYPE Index
The Index type as used for the API.
Definition: Meta.h:59
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_asin_op< typename Derived::Scalar >, const Derived > asin(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_arg_op< typename Derived::Scalar >, const Derived > arg(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_ceil_op< typename Derived::Scalar >, const Derived > ceil(const Eigen::ArrayBase< Derived > &x)
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_cos_op< typename Derived::Scalar >, const Derived > cos(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_round_op< typename Derived::Scalar >, const Derived > round(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_exp_op< typename Derived::Scalar >, const Derived > exp(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_sin_op< typename Derived::Scalar >, const Derived > sin(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_log_op< typename Derived::Scalar >, const Derived > log(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_sinh_op< typename Derived::Scalar >, const Derived > sinh(const Eigen::ArrayBase< Derived > &x)