13#ifndef EIGEN_COMPLEX_LSX_H
14#define EIGEN_COMPLEX_LSX_H
17#include "../../InternalHeaderCheck.h"
23EIGEN_GCC_FAST_MATH_COMPLEX_VECTORIZE_WORKAROUND_PUSH
27 EIGEN_STRONG_INLINE Packet2cf() {}
28 EIGEN_STRONG_INLINE
explicit Packet2cf(
const __m128& a) : v(a) {}
33struct packet_traits<std::complex<float> > : default_packet_traits {
34 typedef Packet2cf type;
35 typedef Packet2cf half;
58struct unpacket_traits<Packet2cf> {
59 typedef std::complex<float> type;
60 typedef Packet2cf half;
61 typedef Packet4f as_real;
66 masked_load_available =
false,
67 masked_store_available =
false
72EIGEN_STRONG_INLINE Packet2cf padd<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b) {
73 return Packet2cf(__lsx_vfadd_s(a.v, b.v));
76EIGEN_STRONG_INLINE Packet2cf psub<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b) {
77 return Packet2cf(__lsx_vfsub_s(a.v, b.v));
81EIGEN_STRONG_INLINE Packet2cf pnegate(
const Packet2cf& a) {
82 const uint32_t b[4] = {0x80000000u, 0x80000000u, 0x80000000u, 0x80000000u};
83 Packet4i mask = (Packet4i)__lsx_vld(b, 0);
85 res.v = (Packet4f)__lsx_vxor_v((__m128i)a.v, mask);
90EIGEN_STRONG_INLINE Packet2cf pconj(
const Packet2cf& a) {
91 const uint32_t b[4] = {0x00000000u, 0x80000000u, 0x00000000u, 0x80000000u};
92 Packet4i mask = (__m128i)__lsx_vld(b, 0);
94 res.v = (Packet4f)__lsx_vxor_v((__m128i)a.v, mask);
99EIGEN_STRONG_INLINE Packet2cf pmul<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b) {
100 Packet4f part0_tmp = (Packet4f)__lsx_vfmul_s(a.v, b.v);
101 Packet4f part0 = __lsx_vfsub_s(part0_tmp, (__m128)__lsx_vshuf4i_w(part0_tmp, 0x31));
102 Packet4f part1_tmp = __lsx_vfmul_s((__m128)__lsx_vshuf4i_w(a.v, 0xb1), b.v);
103 Packet4f part1 = __lsx_vfadd_s(part1_tmp, (__m128)__lsx_vshuf4i_w(part1_tmp, 0x31));
105 res.v = (Packet4f)__lsx_vpackev_w((__m128i)part1, (__m128i)part0);
110EIGEN_STRONG_INLINE Packet2cf ptrue<Packet2cf>(
const Packet2cf& a) {
111 return Packet2cf(ptrue(Packet4f(a.v)));
115EIGEN_STRONG_INLINE Packet2cf pand<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b) {
117 res.v = (Packet4f)__lsx_vand_v((__m128i)a.v, (__m128i)b.v);
122EIGEN_STRONG_INLINE Packet2cf por<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b) {
124 res.v = (Packet4f)__lsx_vor_v((__m128i)a.v, (__m128i)b.v);
129EIGEN_STRONG_INLINE Packet2cf pxor<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b) {
131 res.v = (Packet4f)__lsx_vxor_v((__m128i)a.v, (__m128i)b.v);
136EIGEN_STRONG_INLINE Packet2cf pandnot<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b) {
138 res.v = (Packet4f)__lsx_vandn_v((__m128i)b.v, (__m128i)a.v);
143EIGEN_STRONG_INLINE Packet2cf pload<Packet2cf>(
const std::complex<float>* from) {
144 EIGEN_DEBUG_ALIGNED_LOAD
return Packet2cf(pload<Packet4f>(&numext::real_ref(*from)));
148EIGEN_STRONG_INLINE Packet2cf ploadu<Packet2cf>(
const std::complex<float>* from) {
149 EIGEN_DEBUG_UNALIGNED_LOAD
return Packet2cf(ploadu<Packet4f>(&numext::real_ref(*from)));
153EIGEN_STRONG_INLINE Packet2cf pset1<Packet2cf>(
const std::complex<float>& from) {
154 float f0 = from.real(), f1 = from.imag();
155 Packet4f re = {f0, f0, f0, f0};
156 Packet4f im = {f1, f1, f1, f1};
157 return Packet2cf((Packet4f)__lsx_vilvl_w((__m128i)im, (__m128i)re));
161EIGEN_STRONG_INLINE Packet2cf ploaddup<Packet2cf>(
const std::complex<float>* from) {
162 return pset1<Packet2cf>(*from);
166EIGEN_STRONG_INLINE
void pstore<std::complex<float> >(std::complex<float>* to,
const Packet2cf& from) {
167 EIGEN_DEBUG_ALIGNED_STORE pstore(&numext::real_ref(*to), Packet4f(from.v));
171EIGEN_STRONG_INLINE
void pstoreu<std::complex<float> >(std::complex<float>* to,
const Packet2cf& from) {
172 EIGEN_DEBUG_UNALIGNED_STORE pstoreu(&numext::real_ref(*to), Packet4f(from.v));
176EIGEN_DEVICE_FUNC
inline Packet2cf pgather<std::complex<float>, Packet2cf>(
const std::complex<float>* from,
179 __m128i tmp = __lsx_vldrepl_d(from, 0);
180 __m128i tmp1 = __lsx_vldrepl_d(from + stride, 0);
181 tmp = __lsx_vilvl_d(tmp1, tmp);
187EIGEN_DEVICE_FUNC
inline void pscatter<std::complex<float>, Packet2cf>(std::complex<float>* to,
const Packet2cf& from,
189 __lsx_vstelm_d((__m128i)from.v, to, 0, 0);
190 __lsx_vstelm_d((__m128i)from.v, to + stride, 0, 1);
194EIGEN_STRONG_INLINE
void prefetch<std::complex<float> >(
const std::complex<float>* addr) {
195 __builtin_prefetch(addr);
199EIGEN_STRONG_INLINE std::complex<float> pfirst<Packet2cf>(
const Packet2cf& a) {
200 EIGEN_ALIGN16 std::complex<float> res[2];
201 __lsx_vst(a.v, res, 0);
206EIGEN_STRONG_INLINE Packet2cf preverse(
const Packet2cf& a) {
208 res.v = (Packet4f)__lsx_vshuf4i_w(a.v, 0x4e);
213EIGEN_STRONG_INLINE std::complex<float> predux<Packet2cf>(
const Packet2cf& a) {
214 return pfirst(Packet2cf(__lsx_vfadd_s(a.v, vec4f_movehl(a.v, a.v))));
218EIGEN_STRONG_INLINE std::complex<float> predux_mul<Packet2cf>(
const Packet2cf& a) {
219 return pfirst(pmul(a, Packet2cf(vec4f_movehl(a.v, a.v))));
222EIGEN_STRONG_INLINE Packet2cf pcplxflip (
const Packet2cf& x) {
223 return Packet2cf(vec4f_swizzle1(x.v, 1, 0, 3, 2));
226EIGEN_MAKE_CONJ_HELPER_CPLX_REAL(Packet2cf, Packet4f)
229EIGEN_STRONG_INLINE Packet2cf pdiv<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b) {
230 return pdiv_complex(a, b);
234EIGEN_STRONG_INLINE Packet2cf pzero(
const Packet2cf& ) {
235 __m128 v = {0.0f, 0.0f, 0.0f, 0.0f};
240EIGEN_STRONG_INLINE Packet2cf pmadd<Packet2cf>(
const Packet2cf& a,
const Packet2cf& b,
const Packet2cf& c) {
241 Packet2cf result, t0, t1, t2;
243 t0.v = (__m128)__lsx_vpackev_w((__m128i)a.v, (__m128i)a.v);
244 t2.v = __lsx_vfmadd_s(t0.v, b.v, c.v);
245 result.v = __lsx_vfadd_s(t2.v, t1.v);
246 t1.v = __lsx_vfsub_s(t1.v, a.v);
247 t1.v = (__m128)__lsx_vpackod_w((__m128i)a.v, (__m128i)t1.v);
248 t2.v = (__m128)__lsx_vshuf4i_w((__m128i)b.v, 0xb1);
249 result.v = __lsx_vfmadd_s(t1.v, t2.v, result.v);
255 EIGEN_STRONG_INLINE Packet1cd() {}
256 EIGEN_STRONG_INLINE
explicit Packet1cd(
const __m128d& a) : v(a) {}
261struct packet_traits<std::complex<double> > : default_packet_traits {
262 typedef Packet1cd type;
263 typedef Packet1cd half;
285struct unpacket_traits<Packet1cd> {
286 typedef std::complex<double> type;
287 typedef Packet1cd half;
288 typedef Packet2d as_real;
293 masked_load_available =
false,
294 masked_store_available =
false
299EIGEN_STRONG_INLINE Packet1cd padd<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b) {
300 return Packet1cd(__lsx_vfadd_d(a.v, b.v));
303EIGEN_STRONG_INLINE Packet1cd psub<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b) {
304 return Packet1cd(__lsx_vfsub_d(a.v, b.v));
307EIGEN_STRONG_INLINE Packet1cd pnegate(
const Packet1cd& a) {
308 return Packet1cd(pnegate(Packet2d(a.v)));
312EIGEN_STRONG_INLINE Packet1cd pconj(
const Packet1cd& a) {
313 const uint64_t tmp[2] = {0x0000000000000000u, 0x8000000000000000u};
314 __m128i mask = __lsx_vld(tmp, 0);
316 res.v = (Packet2d)__lsx_vxor_v((__m128i)a.v, mask);
321EIGEN_STRONG_INLINE Packet1cd pmul<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b) {
322 Packet2d tmp_real = __lsx_vfmul_d(a.v, b.v);
323 Packet2d real = __lsx_vfsub_d(tmp_real, preverse(tmp_real));
325 Packet2d tmp_imag = __lsx_vfmul_d(preverse(a.v), b.v);
326 Packet2d imag = (__m128d)__lsx_vfadd_d((__m128d)tmp_imag, preverse(tmp_imag));
328 res.v = (__m128d)__lsx_vilvl_d((__m128i)imag, (__m128i)real);
333EIGEN_STRONG_INLINE Packet1cd ptrue<Packet1cd>(
const Packet1cd& a) {
334 return Packet1cd(ptrue(Packet2d(a.v)));
337EIGEN_STRONG_INLINE Packet1cd pand<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b) {
339 res.v = (Packet2d)__lsx_vand_v((__m128i)a.v, (__m128i)b.v);
343EIGEN_STRONG_INLINE Packet1cd por<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b) {
345 res.v = (Packet2d)__lsx_vor_v((__m128i)a.v, (__m128i)b.v);
349EIGEN_STRONG_INLINE Packet1cd pxor<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b) {
351 res.v = (Packet2d)__lsx_vxor_v((__m128i)a.v, (__m128i)b.v);
355EIGEN_STRONG_INLINE Packet1cd pandnot<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b) {
357 res.v = (Packet2d)__lsx_vandn_v((__m128i)b.v, (__m128i)a.v);
362EIGEN_STRONG_INLINE Packet1cd pload<Packet1cd>(
const std::complex<double>* from) {
363 EIGEN_DEBUG_ALIGNED_LOAD
return Packet1cd(pload<Packet2d>((
const double*)from));
366EIGEN_STRONG_INLINE Packet1cd ploadu<Packet1cd>(
const std::complex<double>* from) {
367 EIGEN_DEBUG_UNALIGNED_LOAD
return Packet1cd(ploadu<Packet2d>((
const double*)from));
370EIGEN_STRONG_INLINE Packet1cd
371pset1<Packet1cd>(
const std::complex<double>& from) {
372 return ploadu<Packet1cd>(&from);
378EIGEN_STRONG_INLINE Packet1cd ploaddup<Packet1cd>(
const std::complex<double>* from) {
379 return pset1<Packet1cd>(*from);
383EIGEN_STRONG_INLINE
void pstore<std::complex<double> >(std::complex<double>* to,
const Packet1cd& from) {
384 EIGEN_DEBUG_ALIGNED_STORE pstore((
double*)to, Packet2d(from.v));
387EIGEN_STRONG_INLINE
void pstoreu<std::complex<double> >(std::complex<double>* to,
const Packet1cd& from) {
388 EIGEN_DEBUG_UNALIGNED_STORE pstoreu((
double*)to, Packet2d(from.v));
392EIGEN_STRONG_INLINE
void prefetch<std::complex<double> >(
const std::complex<double>* addr) {
393 __builtin_prefetch(addr);
397EIGEN_STRONG_INLINE std::complex<double> pfirst<Packet1cd>(
const Packet1cd& a) {
398 EIGEN_ALIGN16
double res[2];
399 __lsx_vst(a.v, res, 0);
400 return std::complex<double>(res[0], res[1]);
403EIGEN_MAKE_CONJ_HELPER_CPLX_REAL(Packet1cd, Packet2d)
406EIGEN_STRONG_INLINE Packet1cd pdiv<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b) {
407 return pdiv_complex(a, b);
410EIGEN_STRONG_INLINE Packet1cd pcplxflip (
const Packet1cd& x) {
411 return Packet1cd(preverse(Packet2d(x.v)));
414EIGEN_DEVICE_FUNC
inline void ptranspose(PacketBlock<Packet2cf, 2>& kernel) {
415 Packet4f tmp1 = (Packet4f)__lsx_vilvl_w((__m128i)kernel.packet[1].v, (__m128i)kernel.packet[0].v);
416 Packet4f tmp2 = (Packet4f)__lsx_vilvh_w((__m128i)kernel.packet[1].v, (__m128i)kernel.packet[0].v);
417 kernel.packet[0].v = (Packet4f)__lsx_vshuf4i_w(tmp1, 0xd8);
418 kernel.packet[1].v = (Packet4f)__lsx_vshuf4i_w(tmp2, 0xd8);
422EIGEN_STRONG_INLINE Packet2cf pcmp_eq(
const Packet2cf& a,
const Packet2cf& b) {
423 Packet4f eq = (Packet4f)__lsx_vfcmp_ceq_s(a.v, b.v);
424 return Packet2cf(pand<Packet4f>(eq, vec4f_swizzle1(eq, 1, 0, 3, 2)));
428EIGEN_STRONG_INLINE Packet1cd pcmp_eq(
const Packet1cd& a,
const Packet1cd& b) {
429 Packet2d eq = (Packet2d)__lsx_vfcmp_ceq_d(a.v, b.v);
430 return Packet1cd(pand<Packet2d>(eq, preverse(eq)));
434EIGEN_DEVICE_FUNC
inline Packet2cf pselect(
const Packet2cf& mask,
const Packet2cf& a,
const Packet2cf& b) {
436 res.v = (Packet4f)__lsx_vbitsel_v((__m128i)b.v, (__m128i)a.v, (__m128i)mask.v);
440EIGEN_INSTANTIATE_COMPLEX_MATH_FUNCS(Packet2cf)
441EIGEN_INSTANTIATE_COMPLEX_MATH_FUNCS_NO_EXP(Packet1cd)
444EIGEN_STRONG_INLINE Packet1cd pzero<Packet1cd>(
const Packet1cd& ) {
445 __m128d v = {0.0, 0.0};
450EIGEN_STRONG_INLINE Packet1cd pmadd<Packet1cd>(
const Packet1cd& a,
const Packet1cd& b,
const Packet1cd& c) {
451 Packet1cd result, t0, t1, t2;
453 t0.v = (__m128d)__lsx_vpackev_d((__m128i)a.v, (__m128i)a.v);
454 t2.v = __lsx_vfmadd_d(t0.v, b.v, c.v);
455 result.v = __lsx_vfadd_d(t2.v, t1.v);
456 t1.v = __lsx_vfsub_d(t1.v, a.v);
457 t1.v = (__m128d)__lsx_vpackod_d((__m128i)a.v, (__m128i)t1.v);
458 t2.v = (__m128d)__lsx_vshuf4i_d((__m128i)t2.v, (__m128i)b.v, 0xb);
459 result.v = __lsx_vfmadd_d(t1.v, t2.v, result.v);
464EIGEN_DEVICE_FUNC
inline Packet1cd pgather<std::complex<double>, Packet1cd>(
const std::complex<double>* from,
467 __m128i tmp = __lsx_vld((
void*)from, 0);
468 res.v = (__m128d)tmp;
473EIGEN_DEVICE_FUNC
inline void pscatter<std::complex<double>, Packet1cd>(std::complex<double>* to,
const Packet1cd& from,
475 __lsx_vst((__m128i)from.v, (
void*)to, 0);
478EIGEN_STRONG_INLINE
void ptranspose(PacketBlock<Packet1cd, 2>& kernel) {
479 Packet2d tmp = (__m128d)__lsx_vilvl_d((__m128i)kernel.packet[1].v, (__m128i)kernel.packet[0].v);
480 kernel.packet[1].v = (__m128d)__lsx_vilvh_d((__m128i)kernel.packet[1].v, (__m128i)kernel.packet[0].v);
481 kernel.packet[0].v = tmp;
484EIGEN_GCC_FAST_MATH_COMPLEX_VECTORIZE_WORKAROUND_POP
@ Aligned16
Definition Constants.h:238