Sprout/sprout/string/char_traits.hpp

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/*=============================================================================
Copyright (c) 2011-2013 Bolero MURAKAMI
https://github.com/bolero-MURAKAMI/Sprout
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
=============================================================================*/
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#ifndef SPROUT_STRING_CHAR_TRAITS_HPP
#define SPROUT_STRING_CHAR_TRAITS_HPP
#include <cstddef>
#include <cstdio>
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#include <string>
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#include <algorithm>
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#include <sprout/config.hpp>
#include <sprout/functional/bind2nd.hpp>
#include <sprout/iterator/ptr_index_iterator.hpp>
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#include <sprout/algorithm/find_if.hpp>
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#include <sprout/algorithm/tristate_lexicographical_compare.hpp>
#include <sprout/iterator/operation.hpp>
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#include <sprout/cstring/strlen.hpp>
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namespace sprout {
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namespace detail {
template<typename Traits>
class char_traits_eq {
public:
typedef Traits traits_type;
typedef typename traits_type::char_type char_type;
typedef bool result_type;
typedef char_type first_argument_type;
typedef char_type second_argument_type;
public:
SPROUT_CONSTEXPR bool operator()(char_type c1, char_type c2) const SPROUT_NOEXCEPT {
return traits_type::eq(c1, c2);
}
};
template<typename Traits>
class char_traits_lt {
public:
typedef Traits traits_type;
typedef typename traits_type::char_type char_type;
typedef bool result_type;
typedef char_type first_argument_type;
typedef char_type second_argument_type;
public:
SPROUT_CONSTEXPR bool operator()(char_type c1, char_type c2) const SPROUT_NOEXCEPT {
return traits_type::lt(c1, c2);
}
};
} // namespace detail
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//
// char_traits
//
template<typename Char>
class char_traits {
private:
typedef std::char_traits<Char> impl_type;
public:
typedef typename impl_type::char_type char_type;
typedef typename impl_type::int_type int_type;
typedef typename impl_type::off_type off_type;
typedef typename impl_type::pos_type pos_type;
typedef typename impl_type::state_type state_type;
private:
static SPROUT_CONSTEXPR char_type const* find_impl(char_type const* found, char_type const* last) {
return found == last ? nullptr
: found
;
}
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public:
static void assign(char_type& c1, char_type const& c2) SPROUT_NOEXCEPT {
impl_type::assign(c1, c2);
}
#ifdef SPROUT_NO_CXX11_CHAR_TRAITS
static SPROUT_CONSTEXPR bool eq(char_type c1, char_type c2) SPROUT_NOEXCEPT {
return c1 == c2;
}
static SPROUT_CONSTEXPR bool lt(char_type c1, char_type c2) SPROUT_NOEXCEPT {
return c1 < c2;
}
#else
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static SPROUT_CONSTEXPR bool eq(char_type c1, char_type c2) SPROUT_NOEXCEPT {
return impl_type::eq(c1, c2);
}
static SPROUT_CONSTEXPR bool lt(char_type c1, char_type c2) SPROUT_NOEXCEPT {
return impl_type::lt(c1, c2);
}
#endif
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static SPROUT_CONSTEXPR int compare(char_type const* s1, char_type const* s2, std::size_t n) {
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return sprout::tristate_lexicographical_compare(
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sprout::ptr_index(s1), sprout::ptr_index(s1, n), char_type(),
sprout::ptr_index(s2), sprout::ptr_index(s2, n), char_type(),
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sprout::detail::char_traits_lt<char_traits>()
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);
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}
static SPROUT_CONSTEXPR std::size_t length(char_type const* s) {
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return sprout::strlen(s);
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}
static SPROUT_CONSTEXPR char_type const* find(char_type const* s, std::size_t n, char_type const& a) {
return find_impl(
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sprout::ptr_unindex(
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sprout::find_if(
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sprout::ptr_index(s), sprout::ptr_index(s, n),
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sprout::bind2nd(sprout::detail::char_traits_eq<char_traits>(), a)
)
),
s + n
);
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}
static char_type* move(char_type* s1, char_type const* s2, std::size_t n) {
return impl_type::move(s1, s2, n);
}
static char_type* copy(char_type* s1, char_type const* s2, std::size_t n) {
return impl_type::copy(s1, s2, n);
}
static char_type* assign(char_type* s, std::size_t n, char_type a) {
return impl_type::assign(s, n, a);
}
#ifdef SPROUT_NO_CXX11_CHAR_TRAITS
static SPROUT_CONSTEXPR int_type not_eof(int_type c) SPROUT_NOEXCEPT {
return eq_int_type(c, eof()) ? int_type()
: c
;
}
static SPROUT_CONSTEXPR char_type to_char_type(int_type c) SPROUT_NOEXCEPT {
return static_cast<char_type>(c);
}
static SPROUT_CONSTEXPR int_type to_int_type(char_type c) SPROUT_NOEXCEPT {
return static_cast<int_type>(c);
}
static SPROUT_CONSTEXPR bool eq_int_type(int_type c1, int_type c2) SPROUT_NOEXCEPT {
return c1 == c2;
}
static SPROUT_CONSTEXPR int_type eof() SPROUT_NOEXCEPT {
return static_cast<int_type>(EOF);
}
#else
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static SPROUT_CONSTEXPR int_type not_eof(int_type c) SPROUT_NOEXCEPT {
return impl_type::not_eof(c);
}
static SPROUT_CONSTEXPR char_type to_char_type(int_type c) SPROUT_NOEXCEPT {
return impl_type::to_char_type(c);
}
static SPROUT_CONSTEXPR int_type to_int_type(char_type c) SPROUT_NOEXCEPT {
return impl_type::to_int_type(c);
}
static SPROUT_CONSTEXPR bool eq_int_type(int_type c1, int_type c2) SPROUT_NOEXCEPT {
return impl_type::eq_int_type(c1, c2);
}
static SPROUT_CONSTEXPR int_type eof() SPROUT_NOEXCEPT {
return impl_type::eof();
}
#endif
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#if SPROUT_USE_INDEX_ITERATOR_IMPLEMENTATION
template<typename ConstIterator>
static SPROUT_CONSTEXPR int compare(char_type const* s1, ConstIterator s2, std::size_t n) {
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return sprout::tristate_lexicographical_compare(
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sprout::ptr_index(s1), sprout::ptr_index(s1, n), char_type(),
s2, s2 + n, char_type(),
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sprout::detail::char_traits_lt<char_traits>()
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);
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}
template<typename ConstIterator>
static SPROUT_CONSTEXPR int compare(ConstIterator s1, char_type const* s2, std::size_t n) {
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return sprout::tristate_lexicographical_compare(
s1, s1 + n, char_type(),
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sprout::ptr_index(s2), sprout::ptr_index(s2, n), char_type(),
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sprout::detail::char_traits_lt<char_traits>()
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);
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}
template<typename ConstIterator1, typename ConstIterator2>
static SPROUT_CONSTEXPR int compare(ConstIterator1 s1, ConstIterator2 s2, std::size_t n) {
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return sprout::tristate_lexicographical_compare(
s1, s1 + n, char_type(),
s2, s2 + n, char_type(),
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sprout::detail::char_traits_lt<char_traits>()
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);
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}
template<typename ConstIterator>
static SPROUT_CONSTEXPR std::size_t length(ConstIterator s) {
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return sprout::detail::strlen(s);
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}
template<typename ConstIterator>
static SPROUT_CONSTEXPR ConstIterator find(ConstIterator s, std::size_t n, char_type const& a) {
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return sprout::ptr_unindex(
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sprout::find_if(
s, s + n,
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sprout::bind2nd(sprout::detail::char_traits_eq<char_traits>(), a)
)
);
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}
template<typename Iterator, typename ConstIterator>
static Iterator move(Iterator s1, ConstIterator s2, std::size_t n) {
std::copy_backward(s2, s2 + n, s1);
return s1;
}
template<typename Iterator, typename ConstIterator>
static Iterator copy(Iterator s1, ConstIterator s2, std::size_t n) {
std::copy(s2, s2 + n, s1);
return s1;
}
template<typename Iterator>
static Iterator assign(Iterator s, std::size_t n, char_type a) {
std::fill(s, s + n, a);
return s;
}
#endif
};
//
// char_traits_helper
//
template<typename Traits>
class char_traits_helper {
public:
typedef Traits traits_type;
typedef typename traits_type::char_type char_type;
typedef typename traits_type::int_type int_type;
typedef typename traits_type::off_type off_type;
typedef typename traits_type::pos_type pos_type;
typedef typename traits_type::state_type state_type;
public:
static SPROUT_CONSTEXPR std::size_t length(char_type const* s, std::size_t n) {
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return sprout::strlen(s, n);
}
static SPROUT_CONSTEXPR char_type const* find(char_type const* s, std::size_t n, char_type const& a) {
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return sprout::ptr_unindex(
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sprout::find_if(
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sprout::ptr_index(s), sprout::ptr_index(s, n),
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sprout::bind2nd(sprout::detail::char_traits_eq<traits_type>(), a)
)
);
}
static SPROUT_CONSTEXPR bool is_found(char_type const* found, char_type const* last) {
return found != last;
}
#if SPROUT_USE_INDEX_ITERATOR_IMPLEMENTATION
template<typename ConstIterator>
static SPROUT_CONSTEXPR std::size_t length(ConstIterator s, std::size_t n) {
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return sprout::detail::strlen(s, n);
}
template<typename ConstIterator>
static SPROUT_CONSTEXPR ConstIterator find(ConstIterator s, std::size_t n, char_type const& a) {
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return sprout::find_if(
s, s + n,
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sprout::bind2nd(sprout::detail::char_traits_eq<traits_type>(), a)
);
}
template<typename ConstIterator>
static SPROUT_CONSTEXPR bool is_found(ConstIterator found, ConstIterator last) {
return found != last;
}
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#endif
};
} // namespace sprout
#endif // #ifndef SPROUT_STRING_CHAR_TRAITS_HPP