10 #ifndef EIGEN_PACKET_MATH_ZVECTOR_H 11 #define EIGEN_PACKET_MATH_ZVECTOR_H 19 #ifndef EIGEN_CACHEFRIENDLY_PRODUCT_THRESHOLD 20 #define EIGEN_CACHEFRIENDLY_PRODUCT_THRESHOLD 4 23 #ifndef EIGEN_HAS_SINGLE_INSTRUCTION_MADD 24 #define EIGEN_HAS_SINGLE_INSTRUCTION_MADD 27 #ifndef EIGEN_HAS_SINGLE_INSTRUCTION_CJMADD 28 #define EIGEN_HAS_SINGLE_INSTRUCTION_CJMADD 31 #ifndef EIGEN_ARCH_DEFAULT_NUMBER_OF_REGISTERS 32 #define EIGEN_ARCH_DEFAULT_NUMBER_OF_REGISTERS 16 35 typedef __vector
int Packet4i;
36 typedef __vector
unsigned int Packet4ui;
37 typedef __vector __bool
int Packet4bi;
38 typedef __vector
short int Packet8i;
39 typedef __vector
unsigned char Packet16uc;
40 typedef __vector
double Packet2d;
41 typedef __vector
unsigned long long Packet2ul;
42 typedef __vector
long long Packet2l;
64 #define _EIGEN_DECLARE_CONST_FAST_Packet4i(NAME,X) \ 65 Packet4i p4i_##NAME = reinterpret_cast<Packet4i>(vec_splat_s32(X)) 67 #define _EIGEN_DECLARE_CONST_FAST_Packet2d(NAME,X) \ 68 Packet2d p2d_##NAME = reinterpret_cast<Packet2d>(vec_splat_s64(X)) 70 #define _EIGEN_DECLARE_CONST_FAST_Packet2l(NAME,X) \ 71 Packet2l p2l_##NAME = reinterpret_cast<Packet2l>(vec_splat_s64(X)) 73 #define _EIGEN_DECLARE_CONST_Packet4i(NAME,X) \ 74 Packet4i p4i_##NAME = pset1<Packet4i>(X) 76 #define _EIGEN_DECLARE_CONST_Packet2d(NAME,X) \ 77 Packet2d p2d_##NAME = pset1<Packet2d>(X) 79 #define _EIGEN_DECLARE_CONST_Packet2l(NAME,X) \ 80 Packet2l p2l_##NAME = pset1<Packet2l>(X) 84 static _EIGEN_DECLARE_CONST_FAST_Packet4i(ONE, 1);
86 static _EIGEN_DECLARE_CONST_FAST_Packet2d(ZERO, 0);
87 static _EIGEN_DECLARE_CONST_FAST_Packet2l(ZERO, 0);
88 static _EIGEN_DECLARE_CONST_FAST_Packet2l(ONE, 1);
90 static Packet2d p2d_ONE = { 1.0, 1.0 };
91 static Packet2d p2d_ZERO_ = { -0.0, -0.0 };
93 static Packet4i p4i_COUNTDOWN = { 0, 1, 2, 3 };
94 static Packet4f p4f_COUNTDOWN = { 0.0, 1.0, 2.0, 3.0 };
95 static Packet2d p2d_COUNTDOWN =
reinterpret_cast<Packet2d
>(vec_sld(reinterpret_cast<Packet16uc>(p2d_ZERO), reinterpret_cast<Packet16uc>(p2d_ONE), 8));
97 static Packet16uc p16uc_PSET64_HI = { 0,1,2,3, 4,5,6,7, 0,1,2,3, 4,5,6,7 };
98 static Packet16uc p16uc_DUPLICATE32_HI = { 0,1,2,3, 0,1,2,3, 4,5,6,7, 4,5,6,7 };
101 #define _EIGEN_MASK_ALIGNMENT 0xfffffffffffffff0 103 #define _EIGEN_ALIGNED_PTR(x) ((ptrdiff_t)(x) & _EIGEN_MASK_ALIGNMENT) 108 static Packet16uc p16uc_FORWARD = { 0,1,2,3, 4,5,6,7, 8,9,10,11, 12,13,14,15 };
109 static Packet16uc p16uc_REVERSE32 = { 12,13,14,15, 8,9,10,11, 4,5,6,7, 0,1,2,3 };
110 static Packet16uc p16uc_REVERSE64 = { 8,9,10,11, 12,13,14,15, 0,1,2,3, 4,5,6,7 };
112 static Packet16uc p16uc_PSET32_WODD = vec_sld((Packet16uc) vec_splat((Packet4ui)p16uc_FORWARD, 0), (Packet16uc) vec_splat((Packet4ui)p16uc_FORWARD, 2), 8);
113 static Packet16uc p16uc_PSET32_WEVEN = vec_sld(p16uc_DUPLICATE32_HI, (Packet16uc) vec_splat((Packet4ui)p16uc_FORWARD, 3), 8);
117 static Packet16uc p16uc_PSET64_LO = (Packet16uc) vec_mergel((Packet4ui)p16uc_PSET32_WODD, (Packet4ui)p16uc_PSET32_WEVEN);
120 static Packet16uc p16uc_TRANSPOSE64_HI = { 0,1,2,3, 4,5,6,7, 16,17,18,19, 20,21,22,23};
121 static Packet16uc p16uc_TRANSPOSE64_LO = { 8,9,10,11, 12,13,14,15, 24,25,26,27, 28,29,30,31};
128 #if EIGEN_HAS_BUILTIN(__builtin_prefetch) || EIGEN_COMP_GNUC 129 #define EIGEN_ZVECTOR_PREFETCH(ADDR) __builtin_prefetch(ADDR); 131 #define EIGEN_ZVECTOR_PREFETCH(ADDR) asm( " pfd [%[addr]]\n" :: [addr] "r" (ADDR) : "cc" ); 136 typedef Packet4i type;
137 typedef Packet4i
half;
185 typedef Packet2d type;
186 typedef Packet2d
half;
221 inline std::ostream & operator <<(std::ostream & s,
const Packet4i & v)
225 s << vt.i[0] <<
", " << vt.i[1] <<
", " << vt.i[2] <<
", " << vt.i[3];
229 inline std::ostream & operator <<(std::ostream & s,
const Packet4ui & v)
233 s << vt.ui[0] <<
", " << vt.ui[1] <<
", " << vt.ui[2] <<
", " << vt.ui[3];
237 inline std::ostream & operator <<(std::ostream & s,
const Packet2l & v)
241 s << vt.l[0] <<
", " << vt.l[1];
245 inline std::ostream & operator <<(std::ostream & s,
const Packet2ul & v)
249 s << vt.ul[0] <<
", " << vt.ul[1] ;
253 inline std::ostream & operator <<(std::ostream & s,
const Packet2d & v)
257 s << vt.d[0] <<
", " << vt.d[1];
263 template<
int element> EIGEN_STRONG_INLINE Packet4f vec_splat_packet4f(
const Packet4f& from)
268 splat.v4f[0] = vec_splat(from.v4f[0], 0);
269 splat.v4f[1] = splat.v4f[0];
272 splat.v4f[0] = vec_splat(from.v4f[0], 1);
273 splat.v4f[1] = splat.v4f[0];
276 splat.v4f[0] = vec_splat(from.v4f[1], 0);
277 splat.v4f[1] = splat.v4f[0];
280 splat.v4f[0] = vec_splat(from.v4f[1], 1);
281 splat.v4f[1] = splat.v4f[0];
290 static EIGEN_STRONG_INLINE
void run(Packet4i& first,
const Packet4i& second)
292 switch (Offset % 4) {
294 first = vec_sld(first, second, 4);
break;
296 first = vec_sld(first, second, 8);
break;
298 first = vec_sld(first, second, 12);
break;
308 static EIGEN_STRONG_INLINE
void run(Packet4f& first,
const Packet4f& second)
310 switch (Offset % 4) {
312 first.v4f[0] = vec_sld(first.v4f[0], first.v4f[1], 8);
313 first.v4f[1] = vec_sld(first.v4f[1], second.v4f[0], 8);
316 first.v4f[0] = first.v4f[1];
317 first.v4f[1] = second.v4f[0];
320 first.v4f[0] = vec_sld(first.v4f[1], second.v4f[0], 8);
321 first.v4f[1] = vec_sld(second.v4f[0], second.v4f[1], 8);
331 static EIGEN_STRONG_INLINE
void run(Packet2d& first,
const Packet2d& second)
334 first =
reinterpret_cast<Packet2d
>(vec_sld(reinterpret_cast<Packet4i>(first), reinterpret_cast<Packet4i>(second), 8));
338 template<> EIGEN_STRONG_INLINE Packet4i pload<Packet4i>(
const int* from)
341 EIGEN_DEBUG_ALIGNED_LOAD
347 template<> EIGEN_STRONG_INLINE Packet4f pload<Packet4f>(
const float* from)
350 EIGEN_DEBUG_ALIGNED_LOAD
352 vfrom.v4f[0] = vec_ld2f(&from[0]);
353 vfrom.v4f[1] = vec_ld2f(&from[2]);
357 template<> EIGEN_STRONG_INLINE Packet2d pload<Packet2d>(
const double* from)
360 EIGEN_DEBUG_ALIGNED_LOAD
366 template<> EIGEN_STRONG_INLINE
void pstore<int>(
int* to,
const Packet4i& from)
369 EIGEN_DEBUG_ALIGNED_STORE
375 template<> EIGEN_STRONG_INLINE
void pstore<float>(
float* to,
const Packet4f& from)
378 EIGEN_DEBUG_ALIGNED_STORE
379 vec_st2f(from.v4f[0], &to[0]);
380 vec_st2f(from.v4f[1], &to[2]);
384 template<> EIGEN_STRONG_INLINE
void pstore<double>(
double* to,
const Packet2d& from)
387 EIGEN_DEBUG_ALIGNED_STORE
393 template<> EIGEN_STRONG_INLINE Packet4i pset1<Packet4i>(
const int& from)
395 return vec_splats(from);
397 template<> EIGEN_STRONG_INLINE Packet2d pset1<Packet2d>(
const double& from) {
398 return vec_splats(from);
400 template<> EIGEN_STRONG_INLINE Packet4f pset1<Packet4f>(
const float& from)
403 to.v4f[0] = pset1<Packet2d>(
static_cast<const double&
>(from));
404 to.v4f[1] = to.v4f[0];
408 template<> EIGEN_STRONG_INLINE
void 409 pbroadcast4<Packet4i>(
const int *a,
410 Packet4i& a0, Packet4i& a1, Packet4i& a2, Packet4i& a3)
412 a3 = pload<Packet4i>(a);
413 a0 = vec_splat(a3, 0);
414 a1 = vec_splat(a3, 1);
415 a2 = vec_splat(a3, 2);
416 a3 = vec_splat(a3, 3);
419 template<> EIGEN_STRONG_INLINE
void 420 pbroadcast4<Packet4f>(
const float *a,
421 Packet4f& a0, Packet4f& a1, Packet4f& a2, Packet4f& a3)
423 a3 = pload<Packet4f>(a);
424 a0 = vec_splat_packet4f<0>(a3);
425 a1 = vec_splat_packet4f<1>(a3);
426 a2 = vec_splat_packet4f<2>(a3);
427 a3 = vec_splat_packet4f<3>(a3);
430 template<> EIGEN_STRONG_INLINE
void 431 pbroadcast4<Packet2d>(
const double *a,
432 Packet2d& a0, Packet2d& a1, Packet2d& a2, Packet2d& a3)
434 a1 = pload<Packet2d>(a);
435 a0 = vec_splat(a1, 0);
436 a1 = vec_splat(a1, 1);
437 a3 = pload<Packet2d>(a+2);
438 a2 = vec_splat(a3, 0);
439 a3 = vec_splat(a3, 1);
442 template<> EIGEN_DEVICE_FUNC
inline Packet4i pgather<int, Packet4i>(
const int* from,
Index stride)
444 int EIGEN_ALIGN16 ai[4];
445 ai[0] = from[0*stride];
446 ai[1] = from[1*stride];
447 ai[2] = from[2*stride];
448 ai[3] = from[3*stride];
449 return pload<Packet4i>(ai);
452 template<> EIGEN_DEVICE_FUNC
inline Packet4f pgather<float, Packet4f>(
const float* from,
Index stride)
454 float EIGEN_ALIGN16 ai[4];
455 ai[0] = from[0*stride];
456 ai[1] = from[1*stride];
457 ai[2] = from[2*stride];
458 ai[3] = from[3*stride];
459 return pload<Packet4f>(ai);
462 template<> EIGEN_DEVICE_FUNC
inline Packet2d pgather<double, Packet2d>(
const double* from,
Index stride)
464 double EIGEN_ALIGN16 af[2];
465 af[0] = from[0*stride];
466 af[1] = from[1*stride];
467 return pload<Packet2d>(af);
470 template<> EIGEN_DEVICE_FUNC
inline void pscatter<int, Packet4i>(
int* to,
const Packet4i& from,
Index stride)
472 int EIGEN_ALIGN16 ai[4];
473 pstore<int>((
int *)ai, from);
474 to[0*stride] = ai[0];
475 to[1*stride] = ai[1];
476 to[2*stride] = ai[2];
477 to[3*stride] = ai[3];
480 template<> EIGEN_DEVICE_FUNC
inline void pscatter<float, Packet4f>(
float* to,
const Packet4f& from,
Index stride)
482 float EIGEN_ALIGN16 ai[4];
483 pstore<float>((
float *)ai, from);
484 to[0*stride] = ai[0];
485 to[1*stride] = ai[1];
486 to[2*stride] = ai[2];
487 to[3*stride] = ai[3];
490 template<> EIGEN_DEVICE_FUNC
inline void pscatter<double, Packet2d>(
double* to,
const Packet2d& from,
Index stride)
492 double EIGEN_ALIGN16 af[2];
493 pstore<double>(af, from);
494 to[0*stride] = af[0];
495 to[1*stride] = af[1];
498 template<> EIGEN_STRONG_INLINE Packet4i padd<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return (a + b); }
499 template<> EIGEN_STRONG_INLINE Packet4f padd<Packet4f>(
const Packet4f& a,
const Packet4f& b)
502 c.v4f[0] = a.v4f[0] + b.v4f[0];
503 c.v4f[1] = a.v4f[1] + b.v4f[1];
506 template<> EIGEN_STRONG_INLINE Packet2d padd<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return (a + b); }
508 template<> EIGEN_STRONG_INLINE Packet4i psub<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return (a - b); }
509 template<> EIGEN_STRONG_INLINE Packet4f psub<Packet4f>(
const Packet4f& a,
const Packet4f& b)
512 c.v4f[0] = a.v4f[0] - b.v4f[0];
513 c.v4f[1] = a.v4f[1] - b.v4f[1];
516 template<> EIGEN_STRONG_INLINE Packet2d psub<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return (a - b); }
518 template<> EIGEN_STRONG_INLINE Packet4i pmul<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return (a * b); }
519 template<> EIGEN_STRONG_INLINE Packet4f pmul<Packet4f>(
const Packet4f& a,
const Packet4f& b)
522 c.v4f[0] = a.v4f[0] * b.v4f[0];
523 c.v4f[1] = a.v4f[1] * b.v4f[1];
526 template<> EIGEN_STRONG_INLINE Packet2d pmul<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return (a * b); }
528 template<> EIGEN_STRONG_INLINE Packet4i pdiv<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return (a / b); }
529 template<> EIGEN_STRONG_INLINE Packet4f pdiv<Packet4f>(
const Packet4f& a,
const Packet4f& b)
532 c.v4f[0] = a.v4f[0] / b.v4f[0];
533 c.v4f[1] = a.v4f[1] / b.v4f[1];
536 template<> EIGEN_STRONG_INLINE Packet2d pdiv<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return (a / b); }
538 template<> EIGEN_STRONG_INLINE Packet4i pnegate(
const Packet4i& a) {
return (-a); }
539 template<> EIGEN_STRONG_INLINE Packet4f pnegate(
const Packet4f& a)
542 c.v4f[0] = -a.v4f[0];
543 c.v4f[1] = -a.v4f[1];
546 template<> EIGEN_STRONG_INLINE Packet2d pnegate(
const Packet2d& a) {
return (-a); }
548 template<> EIGEN_STRONG_INLINE Packet4i pconj(
const Packet4i& a) {
return a; }
549 template<> EIGEN_STRONG_INLINE Packet4f pconj(
const Packet4f& a) {
return a; }
550 template<> EIGEN_STRONG_INLINE Packet2d pconj(
const Packet2d& a) {
return a; }
552 template<> EIGEN_STRONG_INLINE Packet4i pmadd(
const Packet4i& a,
const Packet4i& b,
const Packet4i& c) {
return padd<Packet4i>(pmul<Packet4i>(a, b), c); }
553 template<> EIGEN_STRONG_INLINE Packet4f pmadd(
const Packet4f& a,
const Packet4f& b,
const Packet4f& c)
556 res.v4f[0] = vec_madd(a.v4f[0], b.v4f[0], c.v4f[0]);
557 res.v4f[1] = vec_madd(a.v4f[1], b.v4f[1], c.v4f[1]);
560 template<> EIGEN_STRONG_INLINE Packet2d pmadd(
const Packet2d& a,
const Packet2d& b,
const Packet2d& c) {
return vec_madd(a, b, c); }
562 template<> EIGEN_STRONG_INLINE Packet4i plset<Packet4i>(
const int& a) {
return padd<Packet4i>(pset1<Packet4i>(a), p4i_COUNTDOWN); }
563 template<> EIGEN_STRONG_INLINE Packet4f plset<Packet4f>(
const float& a) {
return padd<Packet4f>(pset1<Packet4f>(a), p4f_COUNTDOWN); }
564 template<> EIGEN_STRONG_INLINE Packet2d plset<Packet2d>(
const double& a) {
return padd<Packet2d>(pset1<Packet2d>(a), p2d_COUNTDOWN); }
566 template<> EIGEN_STRONG_INLINE Packet4i pmin<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return vec_min(a, b); }
567 template<> EIGEN_STRONG_INLINE Packet2d pmin<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return vec_min(a, b); }
568 template<> EIGEN_STRONG_INLINE Packet4f pmin<Packet4f>(
const Packet4f& a,
const Packet4f& b)
571 res.v4f[0] = pmin(a.v4f[0], b.v4f[0]);
572 res.v4f[1] = pmin(a.v4f[1], b.v4f[1]);
576 template<> EIGEN_STRONG_INLINE Packet4i pmax<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return vec_max(a, b); }
577 template<> EIGEN_STRONG_INLINE Packet2d pmax<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return vec_max(a, b); }
578 template<> EIGEN_STRONG_INLINE Packet4f pmax<Packet4f>(
const Packet4f& a,
const Packet4f& b)
581 res.v4f[0] = pmax(a.v4f[0], b.v4f[0]);
582 res.v4f[1] = pmax(a.v4f[1], b.v4f[1]);
586 template<> EIGEN_STRONG_INLINE Packet4i pand<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return vec_and(a, b); }
587 template<> EIGEN_STRONG_INLINE Packet2d pand<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return vec_and(a, b); }
588 template<> EIGEN_STRONG_INLINE Packet4f pand<Packet4f>(
const Packet4f& a,
const Packet4f& b)
591 res.v4f[0] = pand(a.v4f[0], b.v4f[0]);
592 res.v4f[1] = pand(a.v4f[1], b.v4f[1]);
596 template<> EIGEN_STRONG_INLINE Packet4i por<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return vec_or(a, b); }
597 template<> EIGEN_STRONG_INLINE Packet2d por<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return vec_or(a, b); }
598 template<> EIGEN_STRONG_INLINE Packet4f por<Packet4f>(
const Packet4f& a,
const Packet4f& b)
601 res.v4f[0] = pand(a.v4f[0], b.v4f[0]);
602 res.v4f[1] = pand(a.v4f[1], b.v4f[1]);
606 template<> EIGEN_STRONG_INLINE Packet4i pxor<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return vec_xor(a, b); }
607 template<> EIGEN_STRONG_INLINE Packet2d pxor<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return vec_xor(a, b); }
608 template<> EIGEN_STRONG_INLINE Packet4f pxor<Packet4f>(
const Packet4f& a,
const Packet4f& b)
611 res.v4f[0] = pand(a.v4f[0], b.v4f[0]);
612 res.v4f[1] = pand(a.v4f[1], b.v4f[1]);
616 template<> EIGEN_STRONG_INLINE Packet4i pandnot<Packet4i>(
const Packet4i& a,
const Packet4i& b) {
return pand<Packet4i>(a, vec_nor(b, b)); }
617 template<> EIGEN_STRONG_INLINE Packet2d pandnot<Packet2d>(
const Packet2d& a,
const Packet2d& b) {
return vec_and(a, vec_nor(b, b)); }
618 template<> EIGEN_STRONG_INLINE Packet4f pandnot<Packet4f>(
const Packet4f& a,
const Packet4f& b)
621 res.v4f[0] = pandnot(a.v4f[0], b.v4f[0]);
622 res.v4f[1] = pandnot(a.v4f[1], b.v4f[1]);
626 template<> EIGEN_STRONG_INLINE Packet4f pround<Packet4f>(
const Packet4f& a)
629 res.v4f[0] = vec_round(a.v4f[0]);
630 res.v4f[1] = vec_round(a.v4f[1]);
633 template<> EIGEN_STRONG_INLINE Packet2d pround<Packet2d>(
const Packet2d& a) {
return vec_round(a); }
634 template<> EIGEN_STRONG_INLINE Packet4f pceil<Packet4f>(
const Packet4f& a)
637 res.v4f[0] = vec_ceil(a.v4f[0]);
638 res.v4f[1] = vec_ceil(a.v4f[1]);
641 template<> EIGEN_STRONG_INLINE Packet2d pceil<Packet2d>(
const Packet2d& a) {
return vec_ceil(a); }
642 template<> EIGEN_STRONG_INLINE Packet4f pfloor<Packet4f>(
const Packet4f& a)
645 res.v4f[0] = vec_floor(a.v4f[0]);
646 res.v4f[1] = vec_floor(a.v4f[1]);
649 template<> EIGEN_STRONG_INLINE Packet2d pfloor<Packet2d>(
const Packet2d& a) {
return vec_floor(a); }
651 template<> EIGEN_STRONG_INLINE Packet4i ploadu<Packet4i>(
const int* from) {
return pload<Packet4i>(from); }
652 template<> EIGEN_STRONG_INLINE Packet4f ploadu<Packet4f>(
const float* from) {
return pload<Packet4f>(from); }
653 template<> EIGEN_STRONG_INLINE Packet2d ploadu<Packet2d>(
const double* from) {
return pload<Packet2d>(from); }
656 template<> EIGEN_STRONG_INLINE Packet4i ploaddup<Packet4i>(
const int* from)
658 Packet4i p = pload<Packet4i>(from);
659 return vec_perm(p, p, p16uc_DUPLICATE32_HI);
662 template<> EIGEN_STRONG_INLINE Packet4f ploaddup<Packet4f>(
const float* from)
664 Packet4f p = pload<Packet4f>(from);
665 p.v4f[1] = vec_splat(p.v4f[0], 1);
666 p.v4f[0] = vec_splat(p.v4f[0], 0);
670 template<> EIGEN_STRONG_INLINE Packet2d ploaddup<Packet2d>(
const double* from)
672 Packet2d p = pload<Packet2d>(from);
673 return vec_perm(p, p, p16uc_PSET64_HI);
676 template<> EIGEN_STRONG_INLINE
void pstoreu<int>(
int* to,
const Packet4i& from) { pstore<int>(to, from); }
677 template<> EIGEN_STRONG_INLINE
void pstoreu<float>(
float* to,
const Packet4f& from) { pstore<float>(to, from); }
678 template<> EIGEN_STRONG_INLINE
void pstoreu<double>(
double* to,
const Packet2d& from) { pstore<double>(to, from); }
680 template<> EIGEN_STRONG_INLINE
void prefetch<int>(
const int* addr) { EIGEN_ZVECTOR_PREFETCH(addr); }
681 template<> EIGEN_STRONG_INLINE
void prefetch<float>(
const float* addr) { EIGEN_ZVECTOR_PREFETCH(addr); }
682 template<> EIGEN_STRONG_INLINE
void prefetch<double>(
const double* addr) { EIGEN_ZVECTOR_PREFETCH(addr); }
684 template<> EIGEN_STRONG_INLINE
int pfirst<Packet4i>(
const Packet4i& a) {
int EIGEN_ALIGN16 x[4]; pstore(x, a);
return x[0]; }
685 template<> EIGEN_STRONG_INLINE
float pfirst<Packet4f>(
const Packet4f& a) {
float EIGEN_ALIGN16 x[2]; vec_st2f(a.v4f[0], &x[0]);
return x[0]; }
686 template<> EIGEN_STRONG_INLINE
double pfirst<Packet2d>(
const Packet2d& a) {
double EIGEN_ALIGN16 x[2]; pstore(x, a);
return x[0]; }
688 template<> EIGEN_STRONG_INLINE Packet4i preverse(
const Packet4i& a)
690 return reinterpret_cast<Packet4i
>(vec_perm(reinterpret_cast<Packet16uc>(a), reinterpret_cast<Packet16uc>(a), p16uc_REVERSE32));
693 template<> EIGEN_STRONG_INLINE Packet2d preverse(
const Packet2d& a)
695 return reinterpret_cast<Packet2d
>(vec_perm(reinterpret_cast<Packet16uc>(a), reinterpret_cast<Packet16uc>(a), p16uc_REVERSE64));
698 template<> EIGEN_STRONG_INLINE Packet4f preverse(
const Packet4f& a)
701 rev.v4f[0] = preverse<Packet2d>(a.v4f[1]);
702 rev.v4f[1] = preverse<Packet2d>(a.v4f[0]);
706 template<> EIGEN_STRONG_INLINE Packet4i pabs<Packet4i>(
const Packet4i& a) {
return vec_abs(a); }
707 template<> EIGEN_STRONG_INLINE Packet2d pabs<Packet2d>(
const Packet2d& a) {
return vec_abs(a); }
708 template<> EIGEN_STRONG_INLINE Packet4f pabs<Packet4f>(
const Packet4f& a)
711 res.v4f[0] = pabs(a.v4f[0]);
712 res.v4f[1] = pabs(a.v4f[1]);
716 template<> EIGEN_STRONG_INLINE
int predux<Packet4i>(
const Packet4i& a)
719 b = vec_sld(a, a, 8);
720 sum = padd<Packet4i>(a, b);
721 b = vec_sld(sum, sum, 4);
722 sum = padd<Packet4i>(sum, b);
726 template<> EIGEN_STRONG_INLINE
double predux<Packet2d>(
const Packet2d& a)
729 b =
reinterpret_cast<Packet2d
>(vec_sld(reinterpret_cast<Packet4i>(a), reinterpret_cast<Packet4i>(a), 8));
730 sum = padd<Packet2d>(a, b);
733 template<> EIGEN_STRONG_INLINE
float predux<Packet4f>(
const Packet4f& a)
736 sum = padd<Packet2d>(a.v4f[0], a.v4f[1]);
737 double first = predux<Packet2d>(sum);
738 return static_cast<float>(first);
741 template<> EIGEN_STRONG_INLINE Packet4i preduxp<Packet4i>(
const Packet4i* vecs)
743 Packet4i v[4], sum[4];
748 v[0] = vec_mergeh(vecs[0], vecs[2]);
749 v[1] = vec_mergel(vecs[0], vecs[2]);
750 v[2] = vec_mergeh(vecs[1], vecs[3]);
751 v[3] = vec_mergel(vecs[1], vecs[3]);
753 sum[0] = vec_mergeh(v[0], v[2]);
754 sum[1] = vec_mergel(v[0], v[2]);
755 sum[2] = vec_mergeh(v[1], v[3]);
756 sum[3] = vec_mergel(v[1], v[3]);
760 sum[0] = padd<Packet4i>(sum[0], sum[1]);
762 sum[1] = padd<Packet4i>(sum[2], sum[3]);
764 sum[0] = padd<Packet4i>(sum[0], sum[1]);
769 template<> EIGEN_STRONG_INLINE Packet2d preduxp<Packet2d>(
const Packet2d* vecs)
772 v[0] = padd<Packet2d>(vecs[0],
reinterpret_cast<Packet2d
>(vec_sld(reinterpret_cast<Packet4ui>(vecs[0]), reinterpret_cast<Packet4ui>(vecs[0]), 8)));
773 v[1] = padd<Packet2d>(vecs[1],
reinterpret_cast<Packet2d
>(vec_sld(reinterpret_cast<Packet4ui>(vecs[1]), reinterpret_cast<Packet4ui>(vecs[1]), 8)));
775 sum =
reinterpret_cast<Packet2d
>(vec_sld(reinterpret_cast<Packet4ui>(v[0]), reinterpret_cast<Packet4ui>(v[1]), 8));
780 template<> EIGEN_STRONG_INLINE Packet4f preduxp<Packet4f>(
const Packet4f* vecs)
783 transpose.packet[0] = vecs[0];
784 transpose.packet[1] = vecs[1];
785 transpose.packet[2] = vecs[2];
786 transpose.packet[3] = vecs[3];
787 ptranspose(transpose);
789 Packet4f sum = padd(transpose.packet[0], transpose.packet[1]);
790 sum = padd(sum, transpose.packet[2]);
791 sum = padd(sum, transpose.packet[3]);
797 template<> EIGEN_STRONG_INLINE
int predux_mul<Packet4i>(
const Packet4i& a)
799 EIGEN_ALIGN16
int aux[4];
801 return aux[0] * aux[1] * aux[2] * aux[3];
804 template<> EIGEN_STRONG_INLINE
double predux_mul<Packet2d>(
const Packet2d& a)
806 return pfirst(pmul(a, reinterpret_cast<Packet2d>(vec_sld(reinterpret_cast<Packet4i>(a), reinterpret_cast<Packet4i>(a), 8))));
809 template<> EIGEN_STRONG_INLINE
float predux_mul<Packet4f>(
const Packet4f& a)
812 return static_cast<float>(pfirst(predux_mul(pmul(a.v4f[0], a.v4f[1]))));
816 template<> EIGEN_STRONG_INLINE
int predux_min<Packet4i>(
const Packet4i& a)
819 b = pmin<Packet4i>(a, vec_sld(a, a, 8));
820 res = pmin<Packet4i>(b, vec_sld(b, b, 4));
824 template<> EIGEN_STRONG_INLINE
double predux_min<Packet2d>(
const Packet2d& a)
826 return pfirst(pmin<Packet2d>(a, reinterpret_cast<Packet2d>(vec_sld(reinterpret_cast<Packet4i>(a), reinterpret_cast<Packet4i>(a), 8))));
829 template<> EIGEN_STRONG_INLINE
float predux_min<Packet4f>(
const Packet4f& a)
832 b = pmin<Packet2d>(a.v4f[0], a.v4f[1]);
833 res = pmin<Packet2d>(b,
reinterpret_cast<Packet2d
>(vec_sld(reinterpret_cast<Packet4i>(b), reinterpret_cast<Packet4i>(b), 8)));
834 return static_cast<float>(pfirst(res));
838 template<> EIGEN_STRONG_INLINE
int predux_max<Packet4i>(
const Packet4i& a)
841 b = pmax<Packet4i>(a, vec_sld(a, a, 8));
842 res = pmax<Packet4i>(b, vec_sld(b, b, 4));
847 template<> EIGEN_STRONG_INLINE
double predux_max<Packet2d>(
const Packet2d& a)
849 return pfirst(pmax<Packet2d>(a, reinterpret_cast<Packet2d>(vec_sld(reinterpret_cast<Packet4i>(a), reinterpret_cast<Packet4i>(a), 8))));
852 template<> EIGEN_STRONG_INLINE
float predux_max<Packet4f>(
const Packet4f& a)
855 b = pmax<Packet2d>(a.v4f[0], a.v4f[1]);
856 res = pmax<Packet2d>(b,
reinterpret_cast<Packet2d
>(vec_sld(reinterpret_cast<Packet4i>(b), reinterpret_cast<Packet4i>(b), 8)));
857 return static_cast<float>(pfirst(res));
860 EIGEN_DEVICE_FUNC
inline void 862 Packet4i t0 = vec_mergeh(kernel.packet[0], kernel.packet[2]);
863 Packet4i t1 = vec_mergel(kernel.packet[0], kernel.packet[2]);
864 Packet4i t2 = vec_mergeh(kernel.packet[1], kernel.packet[3]);
865 Packet4i t3 = vec_mergel(kernel.packet[1], kernel.packet[3]);
866 kernel.packet[0] = vec_mergeh(t0, t2);
867 kernel.packet[1] = vec_mergel(t0, t2);
868 kernel.packet[2] = vec_mergeh(t1, t3);
869 kernel.packet[3] = vec_mergel(t1, t3);
872 EIGEN_DEVICE_FUNC
inline void 874 Packet2d t0 = vec_perm(kernel.packet[0], kernel.packet[1], p16uc_TRANSPOSE64_HI);
875 Packet2d t1 = vec_perm(kernel.packet[0], kernel.packet[1], p16uc_TRANSPOSE64_LO);
876 kernel.packet[0] = t0;
877 kernel.packet[1] = t1;
882 EIGEN_DEVICE_FUNC
inline void 886 t0.packet[0] = kernel.packet[0].v4f[0];
887 t0.packet[1] = kernel.packet[1].v4f[0];
890 t1.packet[0] = kernel.packet[0].v4f[1];
891 t1.packet[1] = kernel.packet[1].v4f[1];
894 t2.packet[0] = kernel.packet[2].v4f[0];
895 t2.packet[1] = kernel.packet[3].v4f[0];
898 t3.packet[0] = kernel.packet[2].v4f[1];
899 t3.packet[1] = kernel.packet[3].v4f[1];
908 kernel.packet[0].v4f[0] = t0.packet[0];
909 kernel.packet[0].v4f[1] = t2.packet[0];
910 kernel.packet[1].v4f[0] = t0.packet[1];
911 kernel.packet[1].v4f[1] = t2.packet[1];
912 kernel.packet[2].v4f[0] = t1.packet[0];
913 kernel.packet[2].v4f[1] = t3.packet[0];
914 kernel.packet[3].v4f[0] = t1.packet[1];
915 kernel.packet[3].v4f[1] = t3.packet[1];
918 template<> EIGEN_STRONG_INLINE Packet4i pblend(
const Selector<4>& ifPacket,
const Packet4i& thenPacket,
const Packet4i& elsePacket) {
919 Packet4ui select = { ifPacket.select[0], ifPacket.select[1], ifPacket.select[2], ifPacket.select[3] };
920 Packet4ui mask = vec_cmpeq(select, reinterpret_cast<Packet4ui>(p4i_ONE));
921 return vec_sel(elsePacket, thenPacket, mask);
924 template<> EIGEN_STRONG_INLINE Packet4f pblend(
const Selector<4>& ifPacket,
const Packet4f& thenPacket,
const Packet4f& elsePacket) {
925 Packet2ul select_hi = { ifPacket.select[0], ifPacket.select[1] };
926 Packet2ul select_lo = { ifPacket.select[2], ifPacket.select[3] };
927 Packet2ul mask_hi = vec_cmpeq(select_hi, reinterpret_cast<Packet2ul>(p2l_ONE));
928 Packet2ul mask_lo = vec_cmpeq(select_lo, reinterpret_cast<Packet2ul>(p2l_ONE));
930 result.v4f[0] = vec_sel(elsePacket.v4f[0], thenPacket.v4f[0], mask_hi);
931 result.v4f[1] = vec_sel(elsePacket.v4f[1], thenPacket.v4f[1], mask_lo);
935 template<> EIGEN_STRONG_INLINE Packet2d pblend(
const Selector<2>& ifPacket,
const Packet2d& thenPacket,
const Packet2d& elsePacket) {
936 Packet2ul select = { ifPacket.select[0], ifPacket.select[1] };
937 Packet2ul mask = vec_cmpeq(select, reinterpret_cast<Packet2ul>(p2l_ONE));
938 return vec_sel(elsePacket, thenPacket, mask);
945 #endif // EIGEN_PACKET_MATH_ZVECTOR_H
Data pointer is aligned on a 16 bytes boundary.
Definition: Constants.h:230
Definition: XprHelper.h:158
Namespace containing all symbols from the Eigen library.
Definition: bench_norm.cpp:85
Definition: GenericPacketMath.h:96
Definition: GenericPacketMath.h:42
EIGEN_DEFAULT_DENSE_INDEX_TYPE Index
The Index type as used for the API.
Definition: Meta.h:33
Definition: GenericPacketMath.h:539
Definition: PacketMath.h:48
Definition: BandTriangularSolver.h:13
Definition: GenericPacketMath.h:492
Definition: PacketMath.h:44
Definition: GenericPacketMath.h:552