2016-02-04 10:36:36 -08:00
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// This file is part of Eigen, a lightweight C++ template library
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// for linear algebra.
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//
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// Copyright (C) 2016 Pedro Gonnet (pedro.gonnet@gmail.com)
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//
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// This Source Code Form is subject to the terms of the Mozilla
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// Public License v. 2.0. If a copy of the MPL was not distributed
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// with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
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#ifndef THIRD_PARTY_EIGEN3_EIGEN_SRC_CORE_ARCH_AVX512_MATHFUNCTIONS_H_
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#define THIRD_PARTY_EIGEN3_EIGEN_SRC_CORE_ARCH_AVX512_MATHFUNCTIONS_H_
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2021-09-10 19:12:26 +00:00
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#include "../../InternalHeaderCheck.h"
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2016-02-04 10:36:36 -08:00
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namespace Eigen {
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namespace internal {
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2022-02-04 22:25:52 +00:00
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#if EIGEN_HAS_AVX512_MATH
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2016-04-29 12:50:29 -07:00
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2022-01-10 20:53:29 +00:00
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#define EIGEN_DECLARE_CONST_Packet16f(NAME, X) \
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2016-02-04 10:36:36 -08:00
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const Packet16f p16f_##NAME = pset1<Packet16f>(X)
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2022-01-10 20:53:29 +00:00
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#define EIGEN_DECLARE_CONST_Packet16f_FROM_INT(NAME, X) \
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2019-10-31 16:09:16 -07:00
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const Packet16f p16f_##NAME = preinterpret<Packet16f,Packet16i>(pset1<Packet16i>(X))
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2016-02-04 10:36:36 -08:00
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2022-01-10 20:53:29 +00:00
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#define EIGEN_DECLARE_CONST_Packet8d(NAME, X) \
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2016-02-04 10:36:36 -08:00
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const Packet8d p8d_##NAME = pset1<Packet8d>(X)
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2022-01-10 20:53:29 +00:00
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#define EIGEN_DECLARE_CONST_Packet8d_FROM_INT64(NAME, X) \
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2016-02-04 10:36:36 -08:00
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const Packet8d p8d_##NAME = _mm512_castsi512_pd(_mm512_set1_epi64(X))
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2022-01-10 20:53:29 +00:00
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#define EIGEN_DECLARE_CONST_Packet16bf(NAME, X) \
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2020-06-20 19:16:24 +00:00
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const Packet16bf p16bf_##NAME = pset1<Packet16bf>(X)
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2022-01-10 20:53:29 +00:00
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#define EIGEN_DECLARE_CONST_Packet16bf_FROM_INT(NAME, X) \
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2020-06-20 19:16:24 +00:00
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const Packet16bf p16bf_##NAME = preinterpret<Packet16bf,Packet16i>(pset1<Packet16i>(X))
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2016-02-04 10:36:36 -08:00
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
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2016-02-04 10:36:36 -08:00
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plog<Packet16f>(const Packet16f& _x) {
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2020-10-15 00:54:45 +00:00
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return plog_float(_x);
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}
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2016-02-04 10:36:36 -08:00
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2020-10-15 00:54:45 +00:00
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet8d
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2020-10-15 00:54:45 +00:00
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plog<Packet8d>(const Packet8d& _x) {
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return plog_double(_x);
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2016-02-04 10:36:36 -08:00
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}
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2020-06-20 19:16:24 +00:00
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2020-11-24 16:28:07 -08:00
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F16_PACKET_FUNCTION(Packet16f, Packet16h, plog)
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2020-07-14 01:34:03 +00:00
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BF16_PACKET_FUNCTION(Packet16f, Packet16bf, plog)
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2016-02-04 10:36:36 -08:00
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2020-12-04 21:45:09 +00:00
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
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2020-12-04 21:45:09 +00:00
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plog2<Packet16f>(const Packet16f& _x) {
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return plog2_float(_x);
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}
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet8d
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2020-12-04 21:45:09 +00:00
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plog2<Packet8d>(const Packet8d& _x) {
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return plog2_double(_x);
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}
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F16_PACKET_FUNCTION(Packet16f, Packet16h, plog2)
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BF16_PACKET_FUNCTION(Packet16f, Packet16bf, plog2)
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2016-02-04 10:36:36 -08:00
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// Exponential function. Works by writing "x = m*log(2) + r" where
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// "m = floor(x/log(2)+1/2)" and "r" is the remainder. The result is then
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// "exp(x) = 2^m*exp(r)" where exp(r) is in the range [-1,1).
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
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2016-02-04 10:36:36 -08:00
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pexp<Packet16f>(const Packet16f& _x) {
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2022-01-10 20:53:29 +00:00
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EIGEN_DECLARE_CONST_Packet16f(1, 1.0f);
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EIGEN_DECLARE_CONST_Packet16f(half, 0.5f);
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EIGEN_DECLARE_CONST_Packet16f(127, 127.0f);
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2016-02-04 10:36:36 -08:00
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2022-01-10 20:53:29 +00:00
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EIGEN_DECLARE_CONST_Packet16f(exp_hi, 88.3762626647950f);
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EIGEN_DECLARE_CONST_Packet16f(exp_lo, -88.3762626647949f);
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2016-02-04 10:36:36 -08:00
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2022-01-10 20:53:29 +00:00
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EIGEN_DECLARE_CONST_Packet16f(cephes_LOG2EF, 1.44269504088896341f);
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2016-02-04 10:36:36 -08:00
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2022-01-10 20:53:29 +00:00
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EIGEN_DECLARE_CONST_Packet16f(cephes_exp_p0, 1.9875691500E-4f);
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EIGEN_DECLARE_CONST_Packet16f(cephes_exp_p1, 1.3981999507E-3f);
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EIGEN_DECLARE_CONST_Packet16f(cephes_exp_p2, 8.3334519073E-3f);
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EIGEN_DECLARE_CONST_Packet16f(cephes_exp_p3, 4.1665795894E-2f);
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EIGEN_DECLARE_CONST_Packet16f(cephes_exp_p4, 1.6666665459E-1f);
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EIGEN_DECLARE_CONST_Packet16f(cephes_exp_p5, 5.0000001201E-1f);
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2016-02-04 10:36:36 -08:00
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// Clamp x.
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Packet16f x = pmax(pmin(_x, p16f_exp_hi), p16f_exp_lo);
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// Express exp(x) as exp(m*ln(2) + r), start by extracting
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// m = floor(x/ln(2) + 0.5).
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Packet16f m = _mm512_floor_ps(pmadd(x, p16f_cephes_LOG2EF, p16f_half));
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// Get r = x - m*ln(2). Note that we can do this without losing more than one
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// ulp precision due to the FMA instruction.
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2022-01-10 20:53:29 +00:00
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EIGEN_DECLARE_CONST_Packet16f(nln2, -0.6931471805599453f);
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2016-02-04 10:36:36 -08:00
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Packet16f r = _mm512_fmadd_ps(m, p16f_nln2, x);
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Packet16f r2 = pmul(r, r);
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2020-10-20 11:37:09 +08:00
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Packet16f r3 = pmul(r2, r);
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// Evaluate the polynomial approximant,improved by instruction-level parallelism.
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Packet16f y, y1, y2;
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y = pmadd(p16f_cephes_exp_p0, r, p16f_cephes_exp_p1);
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y1 = pmadd(p16f_cephes_exp_p3, r, p16f_cephes_exp_p4);
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y2 = padd(r, p16f_1);
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y = pmadd(y, r, p16f_cephes_exp_p2);
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y1 = pmadd(y1, r, p16f_cephes_exp_p5);
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y = pmadd(y, r3, y1);
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y = pmadd(y, r2, y2);
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2016-02-04 10:36:36 -08:00
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// Build emm0 = 2^m.
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Packet16i emm0 = _mm512_cvttps_epi32(padd(m, p16f_127));
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emm0 = _mm512_slli_epi32(emm0, 23);
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// Return 2^m * exp(r).
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return pmax(pmul(y, _mm512_castsi512_ps(emm0)), _x);
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}
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2021-04-20 11:14:56 +00:00
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet8d
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2016-02-04 10:36:36 -08:00
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pexp<Packet8d>(const Packet8d& _x) {
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2021-04-20 11:14:56 +00:00
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return pexp_double(_x);
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}
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2016-02-04 10:36:36 -08:00
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2020-11-24 16:28:07 -08:00
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F16_PACKET_FUNCTION(Packet16f, Packet16h, pexp)
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2020-07-14 01:34:03 +00:00
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BF16_PACKET_FUNCTION(Packet16f, Packet16bf, pexp)
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2019-11-15 17:09:46 -08:00
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2021-01-20 19:00:09 -08:00
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template <>
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EIGEN_STRONG_INLINE Packet16h pfrexp(const Packet16h& a, Packet16h& exponent) {
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Packet16f fexponent;
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const Packet16h out = float2half(pfrexp<Packet16f>(half2float(a), fexponent));
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exponent = float2half(fexponent);
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return out;
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}
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template <>
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EIGEN_STRONG_INLINE Packet16h pldexp(const Packet16h& a, const Packet16h& exponent) {
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return float2half(pldexp<Packet16f>(half2float(a), half2float(exponent)));
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}
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template <>
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EIGEN_STRONG_INLINE Packet16bf pfrexp(const Packet16bf& a, Packet16bf& exponent) {
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Packet16f fexponent;
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const Packet16bf out = F32ToBf16(pfrexp<Packet16f>(Bf16ToF32(a), fexponent));
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exponent = F32ToBf16(fexponent);
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return out;
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}
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template <>
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EIGEN_STRONG_INLINE Packet16bf pldexp(const Packet16bf& a, const Packet16bf& exponent) {
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return F32ToBf16(pldexp<Packet16f>(Bf16ToF32(a), Bf16ToF32(exponent)));
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}
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2016-02-04 10:36:36 -08:00
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#if EIGEN_FAST_MATH
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
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2016-02-04 10:36:36 -08:00
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psqrt<Packet16f>(const Packet16f& _x) {
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2022-02-05 00:20:13 +00:00
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return generic_sqrt_newton_step<Packet16f>::run(_x, _mm512_rsqrt14_ps(_x));
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2016-02-04 10:36:36 -08:00
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}
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet8d
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2016-02-04 10:36:36 -08:00
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psqrt<Packet8d>(const Packet8d& _x) {
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2022-02-05 00:20:13 +00:00
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// Double requires 2 Newton-Raphson steps for convergence.
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return generic_sqrt_newton_step<Packet8d, /*Steps=*/2>::run(_x, _mm512_rsqrt14_pd(_x));
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2016-02-04 10:36:36 -08:00
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}
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#else
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template <>
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EIGEN_STRONG_INLINE Packet16f psqrt<Packet16f>(const Packet16f& x) {
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return _mm512_sqrt_ps(x);
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}
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2020-06-20 19:16:24 +00:00
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2016-02-04 10:36:36 -08:00
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template <>
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EIGEN_STRONG_INLINE Packet8d psqrt<Packet8d>(const Packet8d& x) {
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return _mm512_sqrt_pd(x);
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}
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#endif
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2020-11-24 16:28:07 -08:00
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F16_PACKET_FUNCTION(Packet16f, Packet16h, psqrt)
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2020-07-14 01:34:03 +00:00
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BF16_PACKET_FUNCTION(Packet16f, Packet16bf, psqrt)
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2020-06-20 19:16:24 +00:00
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2019-11-15 17:09:46 -08:00
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// prsqrt for float.
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#if defined(EIGEN_VECTORIZE_AVX512ER)
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template <>
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EIGEN_STRONG_INLINE Packet16f prsqrt<Packet16f>(const Packet16f& x) {
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return _mm512_rsqrt28_ps(x);
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}
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#elif EIGEN_FAST_MATH
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2016-02-04 10:36:36 -08:00
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
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2016-02-04 10:36:36 -08:00
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prsqrt<Packet16f>(const Packet16f& _x) {
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2022-02-05 00:20:13 +00:00
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return generic_rsqrt_newton_step<Packet16f, /*Steps=*/1>::run(_x, _mm512_rsqrt14_ps(_x));
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2020-06-20 19:16:24 +00:00
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}
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2019-11-15 17:09:46 -08:00
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#endif
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2020-11-24 16:28:07 -08:00
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F16_PACKET_FUNCTION(Packet16f, Packet16h, prsqrt)
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2020-07-14 01:34:03 +00:00
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BF16_PACKET_FUNCTION(Packet16f, Packet16bf, prsqrt)
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2020-06-20 19:16:24 +00:00
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2019-11-15 17:09:46 -08:00
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// prsqrt for double.
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#if EIGEN_FAST_MATH
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2016-02-04 10:36:36 -08:00
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet8d
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2016-02-04 10:36:36 -08:00
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prsqrt<Packet8d>(const Packet8d& _x) {
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2022-03-02 17:20:47 +00:00
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#ifdef EIGEN_VECTORIZE_AVX512ER
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return generic_rsqrt_newton_step<Packet8d, /*Steps=*/1>::run(_x, _mm512_rsqrt28_pd(_x));
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#else
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return generic_rsqrt_newton_step<Packet8d, /*Steps=*/2>::run(_x, _mm512_rsqrt14_pd(_x));
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#endif
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2016-02-04 10:36:36 -08:00
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}
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2022-01-21 23:49:18 +00:00
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template<> EIGEN_STRONG_INLINE Packet16f preciprocal<Packet16f>(const Packet16f& a) {
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#ifdef EIGEN_VECTORIZE_AVX512ER
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2022-03-02 17:20:47 +00:00
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return _mm512_rcp28_ps(a);
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2019-11-15 17:09:46 -08:00
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#else
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2022-01-21 23:49:18 +00:00
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return generic_reciprocal_newton_step<Packet16f, /*Steps=*/1>::run(a, _mm512_rcp14_ps(a));
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#endif
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2016-02-04 10:36:36 -08:00
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}
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2022-01-21 23:49:18 +00:00
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F16_PACKET_FUNCTION(Packet16f, Packet16h, preciprocal)
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BF16_PACKET_FUNCTION(Packet16f, Packet16bf, preciprocal)
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2016-02-04 10:36:36 -08:00
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#endif
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2019-11-15 13:39:51 +01:00
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2022-03-03 20:19:33 +00:00
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template<> EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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2019-11-15 13:39:51 +01:00
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Packet16f plog1p<Packet16f>(const Packet16f& _x) {
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return generic_plog1p(_x);
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}
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2020-11-24 16:28:07 -08:00
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F16_PACKET_FUNCTION(Packet16f, Packet16h, plog1p)
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2020-07-14 01:34:03 +00:00
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BF16_PACKET_FUNCTION(Packet16f, Packet16bf, plog1p)
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2020-06-20 19:16:24 +00:00
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2022-03-03 20:19:33 +00:00
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template<> EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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2019-11-15 13:39:51 +01:00
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Packet16f pexpm1<Packet16f>(const Packet16f& _x) {
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return generic_expm1(_x);
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}
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2020-06-20 19:16:24 +00:00
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2020-11-24 16:28:07 -08:00
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F16_PACKET_FUNCTION(Packet16f, Packet16h, pexpm1)
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2020-07-14 01:34:03 +00:00
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BF16_PACKET_FUNCTION(Packet16f, Packet16bf, pexpm1)
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2019-11-15 13:39:51 +01:00
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2022-02-04 19:35:18 +00:00
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#endif // EIGEN_HAS_AVX512_MATH
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2016-02-04 10:36:36 -08:00
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2018-11-30 14:33:13 +01:00
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
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2018-11-30 14:33:13 +01:00
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psin<Packet16f>(const Packet16f& _x) {
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return psin_float(_x);
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}
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template <>
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2022-03-03 20:19:33 +00:00
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
|
2018-11-30 14:33:13 +01:00
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pcos<Packet16f>(const Packet16f& _x) {
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return pcos_float(_x);
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}
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2022-08-29 19:49:33 +00:00
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template <>
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
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pacos<Packet16f>(const Packet16f& _x) {
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return pacos_float(_x);
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}
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template <>
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
|
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pasin<Packet16f>(const Packet16f& _x) {
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return pasin_float(_x);
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}
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template <>
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EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
|
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patan<Packet16f>(const Packet16f& _x) {
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|
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|
return patan_float(_x);
|
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|
}
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|
2023-02-21 03:14:05 +00:00
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template <>
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|
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|
EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
|
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|
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|
patanh<Packet16f>(const Packet16f& _x) {
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|
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|
|
return patanh_float(_x);
|
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|
}
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|
2022-10-01 01:49:30 +00:00
|
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|
template <>
|
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|
EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet8d
|
|
|
|
|
patan<Packet8d>(const Packet8d& _x) {
|
|
|
|
|
return patan_double(_x);
|
|
|
|
|
}
|
|
|
|
|
|
2019-09-19 12:48:30 -07:00
|
|
|
template <>
|
2022-03-03 20:19:33 +00:00
|
|
|
EIGEN_DEFINE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS Packet16f
|
2019-09-19 12:48:30 -07:00
|
|
|
ptanh<Packet16f>(const Packet16f& _x) {
|
|
|
|
|
return internal::generic_fast_tanh_float(_x);
|
|
|
|
|
}
|
|
|
|
|
|
2020-11-24 16:28:07 -08:00
|
|
|
F16_PACKET_FUNCTION(Packet16f, Packet16h, psin)
|
|
|
|
|
F16_PACKET_FUNCTION(Packet16f, Packet16h, pcos)
|
|
|
|
|
F16_PACKET_FUNCTION(Packet16f, Packet16h, ptanh)
|
|
|
|
|
|
2020-07-14 01:34:03 +00:00
|
|
|
BF16_PACKET_FUNCTION(Packet16f, Packet16bf, psin)
|
|
|
|
|
BF16_PACKET_FUNCTION(Packet16f, Packet16bf, pcos)
|
|
|
|
|
BF16_PACKET_FUNCTION(Packet16f, Packet16bf, ptanh)
|
2020-06-20 19:16:24 +00:00
|
|
|
|
2016-02-04 10:36:36 -08:00
|
|
|
} // end namespace internal
|
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|
} // end namespace Eigen
|
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|
#endif // THIRD_PARTY_EIGEN3_EIGEN_SRC_CORE_ARCH_AVX512_MATHFUNCTIONS_H_
|