/******************************************************************************* * * TRIQS: a Toolbox for Research in Interacting Quantum Systems * * Copyright (C) 2012 by M. Ferrero, O. Parcollet * * TRIQS is free software: you can redistribute it and/or modify it under the * terms of the GNU General Public License as published by the Free Software * Foundation, either version 3 of the License, or (at your option) any later * version. * * TRIQS is distributed in the hope that it will be useful, but WITHOUT ANY * WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS * FOR A PARTICULAR PURPOSE. See the GNU General Public License for more * details. * * You should have received a copy of the GNU General Public License along with * TRIQS. If not, see . * ******************************************************************************/ #ifndef TRIQS_STD_VECTOR_EXPR_TEMPL_H #define TRIQS_STD_VECTOR_EXPR_TEMPL_H #include #include #include #include namespace triqs { namespace utility { // a trait to identify the std::vector ... TRIQS_DEFINE_CONCEPT_AND_ASSOCIATED_TRAIT(ImmutableStdVector); template struct ImmutableStdVector> : std::true_type{}; namespace expr_temp_vec_tools { template struct scalar_wrap { typedef S value_type; S s; scalar_wrap(S const &s_):s(s_){} S operator[](size_t i) const { return s;} friend std::ostream &operator <<(std::ostream &sout, scalar_wrap const &expr){return sout << expr.s; } }; // Combine the two sizes of LHS and RHS : need to specialize where there is a scalar struct combine_size { template size_t operator() (L const & l, R const & r) const { if (!(l.size() == r.size())) TRIQS_RUNTIME_ERROR << "size mismatch : ";//<< l.size()<<" vs" < size_t operator() (scalar_wrap const & w, R const & r) const {return r.size();} template size_t operator() (L const & l, scalar_wrap const & w) const {return l.size();} }; template struct keeper_type : std::conditional::value, scalar_wrap, T const &> {}; template std::vector make_vector(V const & v) { std::vector res; res.reserve(v.size()); for (size_t i =0; i struct std_vec_expr : triqs::utility::ImmutableStdVector__concept_tag { typedef typename triqs::utility::expr_temp_vec_tools::keeper_type::type L_t; typedef typename triqs::utility::expr_temp_vec_tools::keeper_type::type R_t; typedef typename std::result_of(typename std::remove_reference::type::value_type, typename std::remove_reference::type::value_type)>::type value_t; typedef value_t value_type; L_t l; R_t r; template std_vec_expr(LL && l_, RR && r_) : l(std::forward(l_)), r(std::forward(r_)) {} size_t size() const { return triqs::utility::expr_temp_vec_tools::combine_size()(l,r); } value_type operator[](size_t i) const { return triqs::utility::operation()(l[i] , r[i]);} friend std::ostream &operator <<(std::ostream &sout, std_vec_expr const &expr){return sout << "("<::name << " "< make_vector(std_vec_expr const & v) { return triqs::utility::expr_temp_vec_tools::make_vector(v);} }; // ------------------------------------------------------------------- //a special case : the unary operator ! template struct std_vec_expr_unary : triqs::utility::ImmutableStdVector__concept_tag { typedef typename triqs::utility::expr_temp_vec_tools::keeper_type::type L_t; typedef typename L_t::value_type value_type; L_t l; template std_vec_expr_unary(LL && l_) : l(std::forward(l_)) {} size_t size() const { return l.size(); } value_type operator[](size_t i) const { return -l[i];} friend std::ostream &operator <<(std::ostream &sout, std_vec_expr_unary const &expr){return sout << '-'< make_vector(std_vec_expr_unary const & v) { return triqs::utility::expr_temp_vec_tools::make_vector(v);} }; // ------------------------------------------------------------------- // Now we can define all the C++ operators ... #define DEFINE_OPERATOR(TAG, OP, TRAIT1, TRAIT2) \ template\ typename std::enable_if::value && triqs::utility::TRAIT2 ::value, std_vec_expr>::type\ operator OP (A1 const & a1, A2 const & a2) { return std_vec_expr(a1,a2);} DEFINE_OPERATOR(plus, +, ImmutableStdVector,ImmutableStdVector); DEFINE_OPERATOR(minus, -, ImmutableStdVector,ImmutableStdVector); DEFINE_OPERATOR(multiplies, *, ImmutableStdVector,ImmutableStdVector); DEFINE_OPERATOR(multiplies, *, is_in_ZRC,ImmutableStdVector); DEFINE_OPERATOR(multiplies, *, ImmutableStdVector,is_in_ZRC); DEFINE_OPERATOR(divides, /, ImmutableStdVector,ImmutableStdVector); DEFINE_OPERATOR(divides, /, is_in_ZRC,ImmutableStdVector); DEFINE_OPERATOR(divides, /, ImmutableStdVector,is_in_ZRC); #undef DEFINE_OPERATOR // the unary is special template typename std::enable_if::value, std_vec_expr_unary>::type operator - (A1 const & a1) { return std_vec_expr_unary(a1);} } #endif