379 lines
4.7 KiB
C++
379 lines
4.7 KiB
C++
// SPDX-License-Identifier: Apache-2.0
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//
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// Copyright 2008-2016 Conrad Sanderson (http://conradsanderson.id.au)
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// Copyright 2008-2016 National ICT Australia (NICTA)
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// ------------------------------------------------------------------------
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//! \addtogroup arma_cmath
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//! @{
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//
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// wrappers for isfinite
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template<typename eT>
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inline
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bool
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arma_isfinite(eT)
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{
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return true;
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}
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template<>
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inline
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bool
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arma_isfinite(float x)
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{
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return std::isfinite(x);
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}
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template<>
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inline
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bool
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arma_isfinite(double x)
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{
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return std::isfinite(x);
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}
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template<typename T>
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inline
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bool
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arma_isfinite(const std::complex<T>& x)
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{
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return ( arma_isfinite(x.real()) && arma_isfinite(x.imag()) );
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}
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//
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// wrappers for isinf
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template<typename eT>
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inline
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bool
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arma_isinf(eT)
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{
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return false;
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}
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template<>
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inline
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bool
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arma_isinf(float x)
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{
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return std::isinf(x);
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}
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template<>
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inline
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bool
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arma_isinf(double x)
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{
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return std::isinf(x);
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}
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template<typename T>
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inline
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bool
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arma_isinf(const std::complex<T>& x)
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{
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return ( arma_isinf(x.real()) || arma_isinf(x.imag()) );
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}
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//
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// wrappers for isnan
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template<typename eT>
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inline
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bool
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arma_isnan(eT val)
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{
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arma_ignore(val);
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return false;
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}
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template<>
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inline
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bool
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arma_isnan(float x)
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{
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return std::isnan(x);
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}
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template<>
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inline
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bool
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arma_isnan(double x)
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{
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return std::isnan(x);
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}
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template<typename T>
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inline
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bool
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arma_isnan(const std::complex<T>& x)
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{
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return ( arma_isnan(x.real()) || arma_isnan(x.imag()) );
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}
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//
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// implementation of arma_sign()
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template<typename eT>
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constexpr
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typename arma_unsigned_integral_only<eT>::result
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arma_sign(const eT x)
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{
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return (x > eT(0)) ? eT(+1) : eT(0);
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}
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template<typename eT>
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constexpr
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typename arma_signed_integral_only<eT>::result
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arma_sign(const eT x)
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{
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return (x > eT(0)) ? eT(+1) : ( (x < eT(0)) ? eT(-1) : eT(0) );
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}
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template<typename eT>
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constexpr
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typename arma_real_only<eT>::result
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arma_sign(const eT x)
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{
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return (x > eT(0)) ? eT(+1) : ( (x < eT(0)) ? eT(-1) : ((x == eT(0)) ? eT(0) : x) );
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}
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template<typename eT>
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inline
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typename arma_cx_only<eT>::result
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arma_sign(const eT& x)
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{
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typedef typename eT::value_type T;
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const T abs_x = std::abs(x);
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return (abs_x != T(0)) ? (x / abs_x) : x;
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}
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//
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// wrappers for hypot(x, y) = sqrt(x^2 + y^2)
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template<typename eT>
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inline
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eT
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arma_hypot(const eT x, const eT y)
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{
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arma_ignore(x);
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arma_ignore(y);
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arma_stop_runtime_error("arma_hypot(): not implemented for integer or complex element types");
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return eT(0);
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}
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template<>
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inline
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float
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arma_hypot(const float x, const float y)
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{
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return std::hypot(x, y);
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}
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template<>
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inline
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double
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arma_hypot(const double x, const double y)
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{
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return std::hypot(x, y);
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}
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//
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// implementation of arma_sinc()
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template<typename eT>
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inline
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eT
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arma_sinc_generic(const eT x)
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{
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typedef typename get_pod_type<eT>::result T;
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const eT tmp = Datum<T>::pi * x;
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return (tmp == eT(0)) ? eT(1) : eT( std::sin(tmp) / tmp );
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}
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template<typename eT>
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inline
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eT
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arma_sinc(const eT x)
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{
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return eT( arma_sinc_generic( double(x) ) );
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}
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template<>
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inline
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float
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arma_sinc(const float x)
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{
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return arma_sinc_generic(x);
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}
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template<>
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inline
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double
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arma_sinc(const double x)
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{
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return arma_sinc_generic(x);
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}
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template<typename T>
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inline
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std::complex<T>
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arma_sinc(const std::complex<T>& x)
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{
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return arma_sinc_generic(x);
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}
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//
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// wrappers for arg()
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template<typename eT>
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struct arma_arg
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{
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static
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inline
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eT
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eval(const eT x)
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{
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return eT( std::arg(x) );
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}
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};
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template<>
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struct arma_arg<float>
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{
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static
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inline
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float
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eval(const float x)
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{
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return std::arg(x);
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}
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};
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template<>
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struct arma_arg<double>
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{
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static
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inline
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double
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eval(const double x)
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{
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return std::arg(x);
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}
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};
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template<>
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struct arma_arg< std::complex<float> >
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{
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static
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inline
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float
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eval(const std::complex<float>& x)
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{
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return std::arg(x);
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}
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};
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template<>
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struct arma_arg< std::complex<double> >
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{
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static
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inline
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double
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eval(const std::complex<double>& x)
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{
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return std::arg(x);
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}
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};
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//! @}
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