e133ace8d9
2007-05-31 Paolo Carlini <pcarlini@suse.de> PR libstdc++/31426 * include/bits/c++config: Remove namespace association bits from tr1 to std. * include/ext/type_traits.h (__promote, __promote2, __promote3, __promote4): Add. * include/bits/hashtable.h: New. * include/bits/functional_hash.h: Likewise. * include/tr1/hashtable.h: Likewise. * include/tr1_impl/random: New. * include/tr1_impl/cinttypes: Likewise. * include/tr1_impl/cstdlib: Likewise. * include/tr1_impl/unordered_map: Likewise. * include/tr1_impl/cstdio: Likewise. * include/tr1_impl/boost_shared_ptr.h: Likewise. * include/tr1_impl/cctype: Likewise. * include/tr1_impl/random.tcc: Likewise. * include/tr1_impl/tuple: Likewise. * include/tr1_impl/functional_hash.h: Likewise. * include/tr1_impl/hashtable: Likewise. * include/tr1_impl/cmath: Likewise. * include/tr1_impl/type_traitsfwd.h: Likewise. * include/tr1_impl/hashtable_policy.h: Likewise. * include/tr1_impl/cfenv: Likewise. * include/tr1_impl/unordered_set: Likewise. * include/tr1_impl/functional: Likewise. * include/tr1_impl/utility: Likewise. * include/tr1_impl/complex: Likewise. * include/tr1_impl/type_traits: Likewise. * include/tr1_impl/cwchar: Likewise. * include/tr1_impl/cstdint: Likewise. * include/tr1_impl/regex: Likewise. * include/tr1_impl/array: Likewise. * include/tr1_impl/cwctype: Likewise. * include/tr1/type_traitsfwd.h: Remove. * include/tr1/boost_shared_ptr.h: Likewise. * include/tr1/common.h: Likewise. * include/tr1/hashtable: Likewise. * include/tr1/hashtable_policy.h: Likewise. * include/tr1/random.tcc: Likewise. * include/c_global/cinttypes: Include tr1_impl/cinttypes. * include/c_global/cstdlib: Likewise for cstdlib. * include/c_global/cstdio: Likewise for cstdio. * include/c_global/cctype: Likewise for cctype. * include/c_global/cmath: Likewise for cmath. * include/c_global/cfenv: Likewise for cfenv. * include/c_global/cwchar: Likewise for cwchar. * include/c_global/cstdint: Likewise for cstdint. * include/c_global/cwctype: Likewise for cwctype. * include/tr1/cinttypes: Likewise for cinttypes. * include/tr1/cstdlib: Likewise for cstdlib. * include/tr1/cstdio: Likewise for cstdio. * include/tr1/cctype: Likewise for cctype. * include/tr1/cmath: Likewise for cmath. * include/tr1/cfenv: Likewise for cfenv. * include/tr1/cwchar: Likewise for cwchar. * include/tr1/cstdint: Likewise for cstdint. * include/tr1/cwctype: Likewise for cwctype. * include/tr1/functional_hash.h: Likewise for functional_hash. * include/std/tuple: Include tr1_impl/tuple. * include/std/utility: Likewise for utility. * include/std/type_traits: Likewise for type_traits. (is_pod): Just forward to __is_pod. (has_trivial_default_constructor): Just forward to __has_trivial_constructor. (has_trivial_copy_constructor): Just forward to __has_trivial_copy. (has_trivial_assign): Just forward to __has_trivial_assign. (has_trivial_destructor): Just forward to __has_trivial_destructor. (has_nothrow_default_constructor): Just forward to __has_nothrow_constructor. (has_nothrow_copy_constructor): Just forward to __has_nothrow_copy. (has_nothrow_assign): Just forward to __has_nothrow_assign. (is_base_of): Just forward to __is_base_of. (is_signed, is_unsigned): Implement according to the C++0x specifications. * include/std/memory: Likewise for memory. * include/std/regex: Likewise for regex. * include/std/random: Likewise for random. * include/std/unordered_map: Likewise for unordered_map. * include/std/unordered_set: Likewise for unordered_set. * include/std/functional: Likewise for functional. * include/std/complex: Likewise for complex. * include/std/array: Likewise for array. * include/tr1/tuple: Likewise for tuple. * include/tr1/utility: Likewise for utility. * include/tr1/type_traits: Likewise for type_traits * include/tr1/memory: Likewise for memory. * include/tr1/regex: Likewise for regex. * include/tr1/random: Likewise for random. * include/tr1/unordered_map: Likewise for unordered_map. * include/tr1/unordered_set: Likewise for unordered_set. * include/tr1/functional: Likewise for functional. * include/tr1/complex: Likewise for complex. * include/tr1/array: Likewise for array. * include/c_global/ctgmath: Tweak. * include/c_global/cstdarg: Likewise. * include/c_global/ctime: Likewise. * include/c_global/climits: Likewise. * include/c_global/cfloat: Likewise. * include/c_global/ccomplex: Likewise. * include/c_global/cstdbool: Likewise. * include/tr1/poly_laguerre.tcc: Tweak, don't use _GLIBCXX_TR1. * include/tr1/riemann_zeta.tcc: Likewise. * include/tr1/beta_function.tcc: Likewise. * include/tr1/exp_integral.tcc: Likewise. * include/tr1/hypergeometric.tcc: Likewise. * include/tr1/modified_bessel_func.tcc: Likewise. * include/tr1/legendre_function.tcc: Likewise. * include/tr1/special_function_util.h: Likewise. * include/tr1/bessel_function.tcc: Likewise. * include/tr1/poly_hermite.tcc: Likewise. * include/tr1/ell_integral.tcc: Likewise. * include/tr1/gamma.tcc: Likewise. * include/tr1/stdlib.h: Likewise. * include/tr1/math.h: Likewise. * include/tr1/complex.h: Minor tweaks. * include/tr1/wctype.h: Likewise. * include/tr1/wchar.h: Likewise. * include/tr1/inttypes.h: Likewise. * include/tr1/tgmath.h: Likewise. * include/tr1/cstdbool: Likewise. * include/tr1/cfloat: Likewise. * include/tr1/ccomplex: Likewise. * include/tr1/ctime: Likewise. * include/tr1/climits: Likewise. * include/tr1/ctgmath: Likewise. * include/tr1/cstdarg: Likewise. * testsuite/tr1/headers.cc: Move... * testsuite/tr1/headers/all.cc: ... here. * testsuite/tr1/using_namespace_std_tr1.cc: Move... * testsuite/tr1/headers/c++200x/using_namespace_std_tr1.cc: ... here. * testsuite/tr1/headers/using_namespace_std_tr1.cc ... here. * testsuite/tr1/headers/c++200x/using_namespace_std_tr1.cc: New. * testsuite/20_util/tuple/requirements/explicit_instantiation.cc: Adjust namespace. * testsuite/20_util/has_nothrow_copy_constructor/value.cc: Adjust to the C++0x requirements. * testsuite/20_util/has_nothrow_default_constructor/value.cc: Likewise. * testsuite/20_util/has_trivial_copy_constructor/value.cc: Likewise. * testsuite/20_util/has_trivial_default_constructor/value.cc: Likewise. * testsuite/20_util/make_signed/requirements/typedefs_neg.cc: Adjust dg-error lines. * testsuite/20_util/make_unsigned/requirements/typedefs_neg.cc: Likewise. * testsuite/20_util/headers/type_traits/types_std_c++0x_neg.cc: Un-xfail. * testsuite/20_util/is_signed/value.cc: New. * testsuite/20_util/is_signed/requirements/typedefs.cc: Likewise. * testsuite/20_util/is_signed/requirements/explicit_instantiation.cc: Likewise. * testsuite/20_util/is_unsigned/value.cc: Likewise.. * testsuite/20_util/is_unsigned/requirements/typedefs.cc: Likewise. * testsuite/20_util/is_unsigned/requirements/explicit_instantiation.cc: Likewise. * include/Makefile.am: Adjust. * include/Makefile.in: Regenerate. From-SVN: r125244
345 lines
12 KiB
C++
345 lines
12 KiB
C++
// Special functions -*- C++ -*-
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// Copyright (C) 2006-2007
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// Free Software Foundation, Inc.
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//
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// This file is part of the GNU ISO C++ Library. This library is free
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// software; you can redistribute it and/or modify it under the
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// terms of the GNU General Public License as published by the
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// Free Software Foundation; either version 2, or (at your option)
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// any later version.
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//
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License along
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// with this library; see the file COPYING. If not, write to the Free
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// Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
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// USA.
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//
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// As a special exception, you may use this file as part of a free software
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// library without restriction. Specifically, if other files instantiate
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// templates or use macros or inline functions from this file, or you compile
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// this file and link it with other files to produce an executable, this
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// file does not by itself cause the resulting executable to be covered by
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// the GNU General Public License. This exception does not however
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// invalidate any other reasons why the executable file might be covered by
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// the GNU General Public License.
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/** @file tr1/poly_laguerre.tcc
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* This is an internal header file, included by other library headers.
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* You should not attempt to use it directly.
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*/
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//
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// ISO C++ 14882 TR1: 5.2 Special functions
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//
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// Written by Edward Smith-Rowland based on:
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// (1) Handbook of Mathematical Functions,
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// Ed. Milton Abramowitz and Irene A. Stegun,
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// Dover Publications,
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// Section 13, pp. 509-510, Section 22 pp. 773-802
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// (2) The Gnu Scientific Library, http://www.gnu.org/software/gsl
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#ifndef _GLIBCXX_TR1_POLY_LAGUERRE_TCC
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#define _GLIBCXX_TR1_POLY_LAGUERRE_TCC 1
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namespace std
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{
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namespace tr1
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{
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// [5.2] Special functions
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/**
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* @ingroup tr1_math_spec_func
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* @{
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*/
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//
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// Implementation-space details.
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//
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namespace __detail
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{
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/**
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* @brief This routine returns the associated Laguerre polynomial
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* of order @f$ n @f$, degree @f$ \alpha @f$ for large n.
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* Abramowitz & Stegun, 13.5.21
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*
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* @param __n The order of the Laguerre function.
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* @param __alpha The degree of the Laguerre function.
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* @param __x The argument of the Laguerre function.
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* @return The value of the Laguerre function of order n,
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* degree @f$ \alpha @f$, and argument x.
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*
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* This is from the GNU Scientific Library.
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*/
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template<typename _Tpa, typename _Tp>
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_Tp
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__poly_laguerre_large_n(const unsigned __n, const _Tpa __alpha1,
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const _Tp __x)
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{
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const _Tp __a = -_Tp(__n);
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const _Tp __b = _Tp(__alpha1) + _Tp(1);
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const _Tp __eta = _Tp(2) * __b - _Tp(4) * __a;
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const _Tp __cos2th = __x / __eta;
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const _Tp __sin2th = _Tp(1) - __cos2th;
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const _Tp __th = std::acos(std::sqrt(__cos2th));
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const _Tp __pre_h = __numeric_constants<_Tp>::__pi_2()
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* __numeric_constants<_Tp>::__pi_2()
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* __eta * __eta * __cos2th * __sin2th;
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#if _GLIBCXX_USE_C99_MATH_TR1
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const _Tp __lg_b = std::tr1::lgamma(_Tp(__n) + __b);
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const _Tp __lnfact = std::tr1::lgamma(_Tp(__n + 1));
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#else
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const _Tp __lg_b = __log_gamma(_Tp(__n) + __b);
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const _Tp __lnfact = __log_gamma(_Tp(__n + 1));
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#endif
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_Tp __pre_term1 = _Tp(0.5L) * (_Tp(1) - __b)
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* std::log(_Tp(0.25L) * __x * __eta);
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_Tp __pre_term2 = _Tp(0.25L) * std::log(__pre_h);
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_Tp __lnpre = __lg_b - __lnfact + _Tp(0.5L) * __x
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+ __pre_term1 - __pre_term2;
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_Tp __ser_term1 = std::sin(__a * __numeric_constants<_Tp>::__pi());
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_Tp __ser_term2 = std::sin(_Tp(0.25L) * __eta
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* (_Tp(2) * __th
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- std::sin(_Tp(2) * __th))
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+ __numeric_constants<_Tp>::__pi_4());
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_Tp __ser = __ser_term1 + __ser_term2;
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return std::exp(__lnpre) * __ser;
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}
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/**
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* @brief Evaluate the polynomial based on the confluent hypergeometric
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* function in a safe way, with no restriction on the arguments.
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*
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* The associated Laguerre function is defined by
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* @f[
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* L_n^\alpha(x) = \frac{(\alpha + 1)_n}{n!}
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* _1F_1(-n; \alpha + 1; x)
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* @f]
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* where @f$ (\alpha)_n @f$ is the Pochhammer symbol and
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* @f$ _1F_1(a; c; x) @f$ is the confluent hypergeometric function.
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*
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* This function assumes x != 0.
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*
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* This is from the GNU Scientific Library.
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*/
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template<typename _Tpa, typename _Tp>
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_Tp
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__poly_laguerre_hyperg(const unsigned int __n, const _Tpa __alpha1,
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const _Tp __x)
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{
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const _Tp __b = _Tp(__alpha1) + _Tp(1);
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const _Tp __mx = -__x;
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const _Tp __tc_sgn = (__x < _Tp(0) ? _Tp(1)
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: ((__n % 2 == 1) ? -_Tp(1) : _Tp(1)));
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// Get |x|^n/n!
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_Tp __tc = _Tp(1);
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const _Tp __ax = std::abs(__x);
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for (unsigned int __k = 1; __k <= __n; ++__k)
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__tc *= (__ax / __k);
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_Tp __term = __tc * __tc_sgn;
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_Tp __sum = __term;
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for (int __k = int(__n) - 1; __k >= 0; --__k)
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{
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__term *= ((__b + _Tp(__k)) / _Tp(int(__n) - __k))
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* _Tp(__k + 1) / __mx;
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__sum += __term;
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}
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return __sum;
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}
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/**
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* @brief This routine returns the associated Laguerre polynomial
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* of order @f$ n @f$, degree @f$ \alpha @f$: @f$ L_n^\alpha(x) @f$
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* by recursion.
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*
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* The associated Laguerre function is defined by
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* @f[
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* L_n^\alpha(x) = \frac{(\alpha + 1)_n}{n!}
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* _1F_1(-n; \alpha + 1; x)
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* @f]
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* where @f$ (\alpha)_n @f$ is the Pochhammer symbol and
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* @f$ _1F_1(a; c; x) @f$ is the confluent hypergeometric function.
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*
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* The associated Laguerre polynomial is defined for integral
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* @f$ \alpha = m @f$ by:
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* @f[
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* L_n^m(x) = (-1)^m \frac{d^m}{dx^m} L_{n + m}(x)
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* @f]
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* where the Laguerre polynomial is defined by:
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* @f[
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* L_n(x) = \frac{e^x}{n!} \frac{d^n}{dx^n} (x^ne^{-x})
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* @f]
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*
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* @param __n The order of the Laguerre function.
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* @param __alpha The degree of the Laguerre function.
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* @param __x The argument of the Laguerre function.
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* @return The value of the Laguerre function of order n,
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* degree @f$ \alpha @f$, and argument x.
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*/
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template<typename _Tpa, typename _Tp>
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_Tp
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__poly_laguerre_recursion(const unsigned int __n,
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const _Tpa __alpha1, const _Tp __x)
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{
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// Compute l_0.
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_Tp __l_0 = _Tp(1);
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if (__n == 0)
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return __l_0;
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// Compute l_1^alpha.
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_Tp __l_1 = -__x + _Tp(1) + _Tp(__alpha1);
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if (__n == 1)
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return __l_1;
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// Compute l_n^alpha by recursion on n.
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_Tp __l_n2 = __l_0;
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_Tp __l_n1 = __l_1;
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_Tp __l_n = _Tp(0);
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for (unsigned int __nn = 2; __nn <= __n; ++__nn)
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{
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__l_n = (_Tp(2 * __nn - 1) + _Tp(__alpha1) - __x)
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* __l_n1 / _Tp(__nn)
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- (_Tp(__nn - 1) + _Tp(__alpha1)) * __l_n2 / _Tp(__nn);
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__l_n2 = __l_n1;
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__l_n1 = __l_n;
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}
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return __l_n;
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}
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/**
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* @brief This routine returns the associated Laguerre polynomial
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* of order n, degree @f$ \alpha @f$: @f$ L_n^alpha(x) @f$.
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*
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* The associated Laguerre function is defined by
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* @f[
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* L_n^\alpha(x) = \frac{(\alpha + 1)_n}{n!}
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* _1F_1(-n; \alpha + 1; x)
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* @f]
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* where @f$ (\alpha)_n @f$ is the Pochhammer symbol and
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* @f$ _1F_1(a; c; x) @f$ is the confluent hypergeometric function.
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*
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* The associated Laguerre polynomial is defined for integral
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* @f$ \alpha = m @f$ by:
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* @f[
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* L_n^m(x) = (-1)^m \frac{d^m}{dx^m} L_{n + m}(x)
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* @f]
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* where the Laguerre polynomial is defined by:
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* @f[
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* L_n(x) = \frac{e^x}{n!} \frac{d^n}{dx^n} (x^ne^{-x})
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* @f]
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*
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* @param __n The order of the Laguerre function.
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* @param __alpha The degree of the Laguerre function.
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* @param __x The argument of the Laguerre function.
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* @return The value of the Laguerre function of order n,
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* degree @f$ \alpha @f$, and argument x.
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*/
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template<typename _Tpa, typename _Tp>
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inline _Tp
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__poly_laguerre(const unsigned int __n, const _Tpa __alpha1,
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const _Tp __x)
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{
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if (__x < _Tp(0))
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std::__throw_domain_error(__N("Negative argument "
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"in __poly_laguerre."));
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// Return NaN on NaN input.
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else if (__isnan(__x))
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return std::numeric_limits<_Tp>::quiet_NaN();
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else if (__n == 0)
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return _Tp(1);
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else if (__n == 1)
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return _Tp(1) + _Tp(__alpha1) - __x;
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else if (__x == _Tp(0))
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{
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_Tp __prod = _Tp(__alpha1) + _Tp(1);
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for (unsigned int __k = 2; __k <= __n; ++__k)
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__prod *= (_Tp(__alpha1) + _Tp(__k)) / _Tp(__k);
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return __prod;
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}
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else if (__n > 10000000 && _Tp(__alpha1) > -_Tp(1)
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&& __x < _Tp(2) * (_Tp(__alpha1) + _Tp(1)) + _Tp(4 * __n))
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return __poly_laguerre_large_n(__n, __alpha1, __x);
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else if (_Tp(__alpha1) >= _Tp(0)
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|| (__x > _Tp(0) && _Tp(__alpha1) < -_Tp(__n + 1)))
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return __poly_laguerre_recursion(__n, __alpha1, __x);
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else
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return __poly_laguerre_hyperg(__n, __alpha1, __x);
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}
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/**
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* @brief This routine returns the associated Laguerre polynomial
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* of order n, degree m: @f$ L_n^m @f$.
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*
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* The associated Laguerre polynomial is defined for integral
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* @f$ \alpha = m @f$ by:
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* @f[
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* L_n^m(x) = (-1)^m \frac{d^m}{dx^m} L_{n + m}(x)
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* @f]
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* where the Laguerre polynomial is defined by:
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* @f[
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* L_n(x) = \frac{e^x}{n!} \frac{d^n}{dx^n} (x^ne^{-x})
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* @f]
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*
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* @param __n The order of the Laguerre polynomial.
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* @param __m The degree of the Laguerre polynomial.
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* @param __x The argument of the Laguerre polynomial.
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* @return The value of the associated Laguerre polynomial of order n,
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* degree m, and argument x.
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*/
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template<typename _Tp>
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inline _Tp
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__assoc_laguerre(const unsigned int __n, const unsigned int __m,
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const _Tp __x)
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{
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return __poly_laguerre<unsigned int, _Tp>(__n, __m, __x);
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}
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/**
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* @brief This routine returns the associated Laguerre polynomial
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* of order n: @f$ L_n(x) @f$.
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*
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* The Laguerre polynomial is defined by:
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* @f[
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* L_n(x) = \frac{e^x}{n!} \frac{d^n}{dx^n} (x^ne^{-x})
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* @f]
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*
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* @param __n The order of the Laguerre polynomial.
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* @param __x The argument of the Laguerre polynomial.
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* @return The value of the Laguerre polynomial of order n
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* and argument x.
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*/
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template<typename _Tp>
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inline _Tp
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__laguerre(const unsigned int __n, const _Tp __x)
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{
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return __poly_laguerre<unsigned int, _Tp>(__n, 0, __x);
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}
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} // namespace std::tr1::__detail
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/* @} */ // group tr1_math_spec_func
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}
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}
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#endif // _GLIBCXX_TR1_POLY_LAGUERRE_TCC
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