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boost_static_string/include/boost/static_string/static_string.hpp

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//
// Copyright (c) 2016-2019 Vinnie Falco (vinnie dot falco at gmail dot com)
// Copyright (c) 2019-2020 Krystian Stasiowski (sdkrystian at gmail dot com)
//
// 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)
//
// Official repository: https://github.com/boostorg/static_string
//
#ifndef BOOST_STATIC_STRING_STATIC_STRING_HPP
#define BOOST_STATIC_STRING_STATIC_STRING_HPP
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// External include guard
#ifndef BOOST_STATIC_STRING_CONFIG_HPP
#include <boost/static_string/config.hpp>
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#endif
#include <algorithm>
#include <cstdint>
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#include <cstdio>
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#include <cwchar>
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#include <functional>
#include <initializer_list>
#include <iosfwd>
#include <type_traits>
namespace boost {
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namespace static_strings {
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#ifndef BOOST_STATIC_STRING_DOCS
template<std::size_t N, typename CharT, typename Traits>
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class basic_static_string;
//------------------------------------------------------------------------------
//
// Aliases
//
//------------------------------------------------------------------------------
template<std::size_t N>
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using static_string =
basic_static_string<N, char, std::char_traits<char>>;
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template<std::size_t N>
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using static_wstring =
basic_static_string<N, wchar_t, std::char_traits<wchar_t>>;
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template<std::size_t N>
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using static_u16string =
basic_static_string<N, char16_t, std::char_traits<char16_t>>;
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template<std::size_t N>
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using static_u32string =
basic_static_string<N, char32_t, std::char_traits<char32_t>>;
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#ifdef BOOST_STATIC_STRING_CPP20
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template<std::size_t N>
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using static_u8string =
basic_static_string<N, char8_t, std::char_traits<char8_t>>;
#endif
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//--------------------------------------------------------------------------
//
// Detail
//
//--------------------------------------------------------------------------
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namespace detail {
// Find the smallest width integral type that can hold a value as large as N (Glen Fernandes)
template<std::size_t N>
using smallest_width =
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typename std::conditional<(N <= (std::numeric_limits<unsigned char>::max)()), unsigned char,
typename std::conditional<(N <= (std::numeric_limits<unsigned short>::max)()), unsigned short,
typename std::conditional<(N <= (std::numeric_limits<unsigned int>::max)()), unsigned int,
typename std::conditional<(N <= (std::numeric_limits<unsigned long>::max)()), unsigned long,
typename std::conditional<(N <= (std::numeric_limits<unsigned long long>::max)()), unsigned long long,
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std::size_t>::type>::type>::type>::type>::type;
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// std::is_nothrow_convertible is C++20
template<typename To>
void is_nothrow_convertible_helper(To) noexcept;
// MSVC is unable to parse this as a single expression, so a helper is needed
template<typename From, typename To, typename =
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decltype(is_nothrow_convertible_helper<To>(std::declval<From>()))>
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struct is_nothrow_convertible_msvc_helper
{
static const bool value =
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noexcept(is_nothrow_convertible_helper<To>(std::declval<From>()));
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};
template<typename From, typename To, typename = void>
struct is_nothrow_convertible
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: std::false_type { };
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template<typename From, typename To>
struct is_nothrow_convertible<From, To, typename std::enable_if<
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is_nothrow_convertible_msvc_helper<From, To>::value>::type>
: std::true_type { };
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// GCC 4.8, 4.9 workaround for void_t to make the defining-type-id dependant
template<typename...>
struct void_t_helper
{
using type = void;
};
// void_t for c++11
template<typename... Ts>
using void_t = typename void_t_helper<Ts...>::type;
// Check if a type can be used for templated
// overloads string_view_type
template<typename T, typename CharT, typename Traits, typename = void>
struct enable_if_viewable { };
template<typename T, typename CharT, typename Traits>
struct enable_if_viewable<T, CharT, Traits,
typename std::enable_if<
std::is_convertible<const T&, basic_string_view<CharT, Traits>>::value &&
!std::is_convertible<const T&, const CharT*>::value>::type>
{
using type = void;
};
template<typename T, typename CharT, typename Traits>
using enable_if_viewable_t = typename enable_if_viewable<T, CharT, Traits>::type;
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// Simplified check for if a type is an iterator
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template<typename T, typename = void>
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struct is_iterator : std::false_type { };
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template<typename T>
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struct is_iterator<T,
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typename std::enable_if<std::is_class<T>::value,
void_t<typename T::iterator_category>>::type>
: std::true_type { };
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template<typename T>
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struct is_iterator<T*, void>
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: std::true_type { };
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template<typename T, typename = void>
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struct is_input_iterator : std::false_type { };
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template<typename T>
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struct is_input_iterator<T, typename std::enable_if<is_iterator<T>::value &&
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std::is_convertible<typename std::iterator_traits<T>::iterator_category,
std::input_iterator_tag>::value>::type>
: std::true_type { };
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template<typename T, typename = void>
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struct is_forward_iterator : std::false_type { };
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template<typename T>
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struct is_forward_iterator<T, typename std::enable_if<is_iterator<T>::value &&
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std::is_convertible<typename std::iterator_traits<T>::iterator_category,
std::forward_iterator_tag>::value>::type>
: std::true_type { };
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template<typename T, typename = void>
struct is_subtractable
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: std::false_type { };
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template<typename T>
struct is_subtractable<T, void_t<decltype(std::declval<T&>() - std::declval<T&>())>>
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: std::true_type { };
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// constexpr distance for c++14
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template<
typename ForwardIt,
typename std::enable_if<!is_subtractable<ForwardIt>::value>::type* = nullptr>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
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std::size_t
distance(ForwardIt first, ForwardIt last)
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{
std::size_t dist = 0;
for (; first != last; ++first, ++dist);
return dist;
}
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template<
typename RandomIt,
typename std::enable_if<is_subtractable<RandomIt>::value>::type* = nullptr>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
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std::size_t
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distance(RandomIt first, RandomIt last)
{
return last - first;
}
// Copy using traits, respecting iterator rules
template<typename Traits, typename InputIt, typename CharT>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
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copy_with_traits(
InputIt first,
InputIt last,
CharT* out)
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{
for (; first != last; ++first, ++out)
Traits::assign(*out, *first);
}
// Optimization for using the smallest possible type
template<std::size_t N, typename CharT, typename Traits>
class static_string_base
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{
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private:
using size_type = smallest_width<N>;
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using value_type = typename Traits::char_type;
using pointer = value_type*;
using const_pointer = const value_type*;
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public:
BOOST_STATIC_STRING_CPP11_CONSTEXPR
static_string_base() noexcept { };
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
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pointer
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data_impl() noexcept
{
return data_;
}
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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const_pointer
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data_impl() const noexcept
{
return data_;
}
BOOST_STATIC_STRING_CPP11_CONSTEXPR
std::size_t
size_impl() const noexcept
{
return size_;
}
BOOST_STATIC_STRING_CPP14_CONSTEXPR
std::size_t
set_size(std::size_t n) noexcept
{
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// Functions that set size will throw
// if the new size would exceed max_size()
// therefore we can guarantee that this will
// not lose data.
return size_ = size_type(n);
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}
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
term_impl() noexcept
{
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Traits::assign(data_[size_], value_type());
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}
size_type size_ = 0;
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#ifdef BOOST_STATIC_STRING_CPP20
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value_type data_[N + 1];
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#else
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value_type data_[N + 1]{};
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#endif
};
// Optimization for when the size is 0
template<typename CharT, typename Traits>
class static_string_base<0, CharT, Traits>
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{
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private:
using value_type = typename Traits::char_type;
using pointer = value_type*;
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public:
BOOST_STATIC_STRING_CPP11_CONSTEXPR
static_string_base() noexcept { }
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// Modifying the null terminator is UB
BOOST_STATIC_STRING_CPP11_CONSTEXPR
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pointer
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data_impl() const noexcept
{
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return const_cast<pointer>(&null_);
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}
BOOST_STATIC_STRING_CPP11_CONSTEXPR
std::size_t
size_impl() const noexcept
{
return 0;
}
BOOST_STATIC_STRING_CPP11_CONSTEXPR
std::size_t
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set_size(std::size_t) const noexcept
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{
return 0;
}
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
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term_impl() const noexcept { }
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private:
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static constexpr const value_type null_{};
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};
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// This is only needed in C++14 and lower.
// see http://eel.is/c++draft/depr.static.constexpr
#ifndef BOOST_STATIC_STRING_CPP17
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template<typename CharT, typename Traits>
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constexpr
const
typename static_string_base<0, CharT, Traits>::value_type
static_string_base<0, CharT, Traits>::
null_;
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#endif
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template<typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
int
lexicographical_compare(
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const CharT* s1,
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std::size_t n1,
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const CharT* s2,
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std::size_t n2) noexcept
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{
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if(n1 < n2)
return Traits::compare(
s1, s2, n1) <= 0 ? -1 : 1;
if(n1 > n2)
return Traits::compare(
s1, s2, n2) >= 0 ? 1 : -1;
return Traits::compare(s1, s2, n1);
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}
template<typename Traits, typename Integer>
inline
char*
integer_to_string(
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char* str_end,
Integer value,
std::true_type) noexcept
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{
if (value == 0)
{
Traits::assign(*--str_end, '0');
return str_end;
}
if (value < 0)
{
const bool is_min = value == std::numeric_limits<Integer>::min();
// negation of a min value cannot be represented
if (is_min)
value = std::numeric_limits<Integer>::max();
else
value = -value;
const auto last_char = str_end - 1;
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for (; value > 0; value /= 10)
Traits::assign(*--str_end, "0123456789"[value % 10]);
// minimum values are powers of 2, so it will
// never terminate with a 9.
if (is_min)
Traits::assign(*last_char, Traits::to_char_type(
Traits::to_int_type(*last_char) + 1));
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Traits::assign(*--str_end, '-');
return str_end;
}
for (; value > 0; value /= 10)
Traits::assign(*--str_end, "0123456789"[value % 10]);
return str_end;
}
template<typename Traits, typename Integer>
inline
char*
integer_to_string(
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char* str_end,
Integer value,
std::false_type) noexcept
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{
if (value == 0)
{
Traits::assign(*--str_end, '0');
return str_end;
}
for (; value > 0; value /= 10)
Traits::assign(*--str_end, "0123456789"[value % 10]);
return str_end;
}
template<typename Traits, typename Integer>
inline
wchar_t*
integer_to_wstring(
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wchar_t* str_end,
Integer value,
std::true_type) noexcept
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{
if (value == 0)
{
Traits::assign(*--str_end, L'0');
return str_end;
}
if (value < 0)
{
const bool is_min = value == std::numeric_limits<Integer>::min();
// negation of a min value cannot be represented
if (is_min)
value = std::numeric_limits<Integer>::max();
else
value = -value;
const auto last_char = str_end - 1;
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for (; value > 0; value /= 10)
Traits::assign(*--str_end, L"0123456789"[value % 10]);
// minimum values are powers of 2, so it will
// never terminate with a 9.
if (is_min)
Traits::assign(*last_char, Traits::to_char_type(
Traits::to_int_type(*last_char) + 1));
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Traits::assign(*--str_end, L'-');
return str_end;
}
for (; value > 0; value /= 10)
Traits::assign(*--str_end, L"0123456789"[value % 10]);
return str_end;
}
template<typename Traits, typename Integer>
inline
wchar_t*
integer_to_wstring(
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wchar_t* str_end,
Integer value,
std::false_type) noexcept
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{
if (value == 0)
{
Traits::assign(*--str_end, L'0');
return str_end;
}
for (; value > 0; value /= 10)
Traits::assign(*--str_end, L"0123456789"[value % 10]);
return str_end;
}
template<std::size_t N, typename Integer>
inline
static_string<N>
to_static_string_int_impl(Integer value) noexcept
{
char buffer[N];
const auto digits_end = std::end(buffer);
const auto digits_begin = integer_to_string<std::char_traits<char>, Integer>(
digits_end, value, std::is_signed<Integer>{});
return static_string<N>(digits_begin, std::distance(digits_begin, digits_end));
}
template<std::size_t N, typename Integer>
inline
static_wstring<N>
to_static_wstring_int_impl(Integer value) noexcept
{
wchar_t buffer[N];
const auto digits_end = std::end(buffer);
const auto digits_begin = integer_to_wstring<std::char_traits<wchar_t>, Integer>(
digits_end, value, std::is_signed<Integer>{});
return static_wstring<N>(digits_begin, std::distance(digits_begin, digits_end));
}
BOOST_STATIC_STRING_CPP11_CONSTEXPR
inline
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int
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count_digits(std::size_t value)
{
return value < 10 ? 1 : count_digits(value / 10) + 1;
}
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// Ignore -Wformat-truncation, we know what
// we are doing here. The version check does
// not need to be extremely precise.
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#if defined(__GNUC__) && __GNUC__ >= 7
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#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wformat-truncation"
#endif
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template<std::size_t N>
inline
static_string<N>
to_static_string_float_impl(double value) noexcept
{
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// we have to assume here that no reasonable implementation
// will require more than 2^63 chars to represent a float value.
const long long narrow =
static_cast<long long>(N);
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// extra one needed for null terminator
char buffer[N + 1];
// we know that a formatting error will not occur, so
// we assume that the result is always positive
if (std::size_t(std::snprintf(buffer, N + 1, "%f", value)) > N)
{
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// the + 4 is for the decimal, 'e',
// its sign, and the sign of the integral portion
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const int reserved_count =
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(std::max)(2, count_digits(
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std::numeric_limits<double>::max_exponent10)) + 4;
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const int precision = narrow > reserved_count ?
N - reserved_count : 0;
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// switch to scientific notation
std::snprintf(buffer, N + 1, "%.*e", precision, value);
}
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// this will not throw
return static_string<N>(buffer);
}
template<std::size_t N>
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inline
static_string<N>
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to_static_string_float_impl(long double value) noexcept
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{
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// we have to assume here that no reasonable implementation
// will require more than 2^63 chars to represent a float value.
const long long narrow =
static_cast<long long>(N);
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// extra one needed for null terminator
char buffer[N + 1];
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// snprintf returns the number of characters
// that would have been written
// we know that a formatting error will not occur, so
// we assume that the result is always positive
if (std::size_t(std::snprintf(buffer, N + 1, "%Lf", value)) > N)
{
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// the + 4 is for the decimal, 'e',
// its sign, and the sign of the integral portion
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const int reserved_count =
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(std::max)(2, count_digits(
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std::numeric_limits<long double>::max_exponent10)) + 4;
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const int precision = narrow > reserved_count ?
N - reserved_count : 0;
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// switch to scientific notation
std::snprintf(buffer, N + 1, "%.*Le", precision, value);
}
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// this will not throw
return static_string<N>(buffer);
}
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template<std::size_t N>
inline
static_wstring<N>
to_static_wstring_float_impl(double value) noexcept
{
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// we have to assume here that no reasonable implementation
// will require more than 2^63 chars to represent a float value.
const long long narrow =
static_cast<long long>(N);
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// extra one needed for null terminator
wchar_t buffer[N + 1];
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// swprintf returns a negative number if it can't
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// fit all the characters in the buffer.
// mingw has a non-standard swprintf, so
// this just covers all the bases. short
// circuit evaluation will ensure that the
// second operand is not evaluated on conforming
// implementations.
const long long num_written =
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std::swprintf(buffer, N + 1, L"%f", value);
if (num_written < 0 ||
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num_written > narrow)
{
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// the + 4 is for the decimal, 'e',
// its sign, and the sign of the integral portion
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const int reserved_count =
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(std::max)(2, count_digits(
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std::numeric_limits<double>::max_exponent10)) + 4;
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const int precision = narrow > reserved_count ?
N - reserved_count : 0;
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// switch to scientific notation
std::swprintf(buffer, N + 1, L"%.*e", precision, value);
}
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// this will not throw
return static_wstring<N>(buffer);
}
template<std::size_t N>
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inline
static_wstring<N>
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to_static_wstring_float_impl(long double value) noexcept
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{
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// we have to assume here that no reasonable implementation
// will require more than 2^63 chars to represent a float value.
const long long narrow =
static_cast<long long>(N);
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// extra one needed for null terminator
wchar_t buffer[N + 1];
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// swprintf returns a negative number if it can't
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// fit all the characters in the buffer.
// mingw has a non-standard swprintf, so
// this just covers all the bases. short
// circuit evaluation will ensure that the
// second operand is not evaluated on conforming
// implementations.
const long long num_written =
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std::swprintf(buffer, N + 1, L"%Lf", value);
if (num_written < 0 ||
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num_written > narrow)
{
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// the + 4 is for the decimal, 'e',
// its sign, and the sign of the integral portion
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const int reserved_count =
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(std::max)(2, count_digits(
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std::numeric_limits<long double>::max_exponent10)) + 4;
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const int precision = narrow > reserved_count ?
N - reserved_count : 0;
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// switch to scientific notation
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std::swprintf(buffer, N + 1, L"%.*Le", precision, value);
}
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// this will not throw
return static_wstring<N>(buffer);
}
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#if defined(__GNUC__) && __GNUC__ >= 7
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#pragma GCC diagnostic pop
#endif
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template<typename Traits, typename CharT, typename ForwardIterator>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
ForwardIterator
find_not_of(
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ForwardIterator first,
ForwardIterator last,
const CharT* str,
std::size_t n) noexcept
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{
for (; first != last; ++first)
if (!Traits::find(str, n, *first))
return first;
return last;
}
// constexpr search for C++14
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template<typename ForwardIt1, typename ForwardIt2, typename BinaryPredicate>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
ForwardIt1
search(
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ForwardIt1 first,
ForwardIt1 last,
ForwardIt2 s_first,
ForwardIt2 s_last,
BinaryPredicate p)
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{
for (; ; ++first)
{
ForwardIt1 it = first;
for (ForwardIt2 s_it = s_first; ; ++it, ++s_it)
{
if (s_it == s_last)
return first;
if (it == last)
return last;
if (!p(*it, *s_it))
break;
}
}
}
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template<typename InputIt, typename ForwardIt, typename BinaryPredicate>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
InputIt
find_first_of(
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InputIt first,
InputIt last,
ForwardIt s_first,
ForwardIt s_last,
BinaryPredicate p)
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{
for (; first != last; ++first)
for (ForwardIt it = s_first; it != s_last; ++it)
if (p(*first, *it))
return first;
return last;
}
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// KRYSTIAN TODO: add a constexpr rotate
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// Check if a pointer lies within the range {src_first, src_last)
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// without unspecified behavior, allowing it to be used
// in a constant evaluation.
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template<typename T>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
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ptr_in_range(
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const T* src_first,
const T* src_last,
const T* ptr)
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{
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#if defined(BOOST_STATIC_STRING_CPP14) && \
defined(BOOST_STATIC_STRING_IS_CONST_EVAL)
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// Our second best option is to use is_constant_evaluated
// and a loop that checks for equality, since equality for
// pointer to object types is never unspecified in this case.
if (BOOST_STATIC_STRING_IS_CONST_EVAL)
{
for (; src_first != src_last; ++src_first)
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if (ptr == src_first)
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return true;
return false;
}
#endif
// We want to make this usable in constant expressions as much as possible
// while retaining the guarentee that the comparison has a strict total ordering.
// We also want this to be fast. Since different compilers have differing levels
// of conformance, we will settle for the best option that is available.
// We don't care about this in C++11, since this function would have
// no applications in constant expressions.
#if defined(BOOST_STATIC_STRING_CPP14) && \
defined(BOOST_STATIC_STRING_NO_PTR_COMP_FUNCTIONS)
// If library comparison functions don't work,
// we can use try builtin comparison operators instead.
return ptr >= src_first && ptr < src_last;
#else
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// Use the library comparison functions if we can't use
// is_constant_evaluated or if we don't need to.
return std::greater_equal<const T*>()(ptr, src_first) &&
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std::less<const T*>()(ptr, src_last);
#endif
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}
} // detail
#endif
//--------------------------------------------------------------------------
//
// static_string
//
//--------------------------------------------------------------------------
/** A fixed-capacity string.
These objects behave like `std::string` except that the storage
is not dynamically allocated but rather fixed in size, and
stored in the object itself.
These strings offer performance advantages when an algorithm
can execute with a reasonable upper limit on the size of a value.
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@par Aliases
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The following alias templates are provided for convenience:
@code
template<std::size_t N>
using static_string =
basic_static_string<N, char, std::char_traits<char>>;
@endcode
@code
template<std::size_t N>
using static_wstring =
basic_static_string<N, wchar_t, std::char_traits<wchar_t>>;
@endcode
@code
template<std::size_t N>
using static_u16string =
basic_static_string<N, char16_t, std::char_traits<char16_t>>;
@endcode
@code
template<std::size_t N>
using static_u32string =
basic_static_string<N, char32_t, std::char_traits<char32_t>>;
@endcode
Addtionally, the alias template `static_u8string` is provided in C++20
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@code
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template<std::size_t N>
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using static_u8string =
basic_static_string<N, char8_t, std::char_traits<char8_t>>;
@endcode
@see to_static_string
*/
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template<std::size_t N, typename CharT,
typename Traits = std::char_traits<CharT>>
class basic_static_string
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#ifndef BOOST_STATIC_STRING_DOCS
: private detail::static_string_base<N, CharT, Traits>
#endif
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{
private:
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template<std::size_t, class, class>
friend class basic_static_string;
public:
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//--------------------------------------------------------------------------
//
// Member types
//
//--------------------------------------------------------------------------
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/// The traits type.
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using traits_type = Traits;
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/// The character type.
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using value_type = typename traits_type::char_type;
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/// The size type.
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using size_type = std::size_t;
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/// The difference type.
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using difference_type = std::ptrdiff_t;
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/// The pointer type.
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using pointer = value_type*;
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/// The reference type.
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using reference = value_type&;
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/// The constant pointer type.
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using const_pointer = const value_type*;
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/// The constant reference type.
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using const_reference = const value_type&;
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/// The iterator type.
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using iterator = value_type*;
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/// The constant iterator type.
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using const_iterator = const value_type*;
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/// The reverse iterator type.
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using reverse_iterator =
std::reverse_iterator<iterator>;
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/// The constant reverse iterator type.
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using const_reverse_iterator =
std::reverse_iterator<const_iterator>;
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/// The string view type.
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using string_view_type =
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basic_string_view<value_type, traits_type>;
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//--------------------------------------------------------------------------
//
// Constants
//
//--------------------------------------------------------------------------
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/// Maximum size of the string excluding any null terminator
static constexpr size_type static_capacity = N;
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/// A special index
static constexpr size_type npos = size_type(-1);
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//--------------------------------------------------------------------------
//
// Construction
//
//--------------------------------------------------------------------------
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/** Constructor.
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Construct an empty string
*/
BOOST_STATIC_STRING_CPP11_CONSTEXPR
basic_static_string() noexcept
{
#ifdef BOOST_STATIC_STRING_CPP20
term();
#endif
}
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/** Constructor.
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Construct the string with `count` copies of character `ch`.
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The behavior is undefined if `count >= npos`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(
size_type count,
value_type ch)
{
assign(count, ch);
}
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/** Constructor.
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Construct with a substring (pos, other.size()) of `other`.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(
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const basic_static_string<M, CharT, Traits>& other,
size_type pos)
{
assign(other, pos);
}
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/** Constructor.
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Construct with a substring (pos, count) of `other`.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(
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const basic_static_string<M, CharT, Traits>& other,
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size_type pos,
size_type count)
{
assign(other, pos, count);
}
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/** Constructor.
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Construct with the first `count` characters of `s`, including nulls.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(
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const_pointer s,
size_type count)
{
assign(s, count);
}
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/** Constructor.
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Construct from a null terminated string.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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basic_static_string(const_pointer s);
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/** Constructor.
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Construct from a range of characters
*/
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template<typename InputIterator
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#ifndef BOOST_STATIC_STRING_DOCS
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, typename std::enable_if<
detail::is_input_iterator<InputIterator>
::value>::type* = nullptr
#endif
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>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(
InputIterator first,
InputIterator last)
{
// KRYSTIAN TODO: we can use a better algorithm if this is a forward iterator
assign(first, last);
}
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/** Constructor.
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Copy constructor.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(const basic_static_string& other) noexcept
{
assign(other);
}
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/** Constructor.
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Copy constructor.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(
const basic_static_string<M, CharT, Traits>& other)
{
assign(other);
}
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/** Constructor.
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Construct from an initializer list
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(std::initializer_list<value_type> init)
{
assign(init.begin(), init.size());
}
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/** Constructor.
Construct from a object convertible to `string_view_type`
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*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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explicit
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(const T& t)
{
assign(t);
}
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/** Constructor.
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Construct from any object convertible to `string_view_type`.
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The range (pos, n) is extracted from the value
obtained by converting `t` to `string_view_type`,
and used to construct the string.
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
2020-02-14 16:24:44 -05:00
>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string(
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const T& t,
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size_type pos,
size_type n)
{
assign(t, pos, n);
}
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//--------------------------------------------------------------------------
//
// Assignment
//
//--------------------------------------------------------------------------
/** Assign to the string.
If `*this` and `s` are the same object,
this function has no effect.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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operator=(const basic_static_string& s) noexcept
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{
return assign(s);
}
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/** Assign to the string.
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Replace the contents with a copy of `s`
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@throw std::length_error if `s.size() > max_size()`
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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operator=(const basic_static_string<M, CharT, Traits>& s)
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{
return assign(s);
}
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/** Assign to the string.
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Replace the contents with those of the null-terminated string `s`
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@throw std::length_error if `traits_type::length(s) > max_size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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operator=(const_pointer s)
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{
return assign(s);
}
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/** Assign to the string.
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Assign from single character.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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operator=(value_type ch)
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{
return assign_char(ch,
std::integral_constant<bool, (N > 0)>{});
}
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/** Assign to the string.
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Assign from initializer list.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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operator=(std::initializer_list<value_type> ilist)
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{
return assign(ilist);
}
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/** Assign to the string.
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Assign from an object convertible to `string_view_type`.
2020-02-14 16:24:44 -05:00
*/
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template<typename T
#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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operator=(const T& t)
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{
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return assign(t);
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}
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/** Assign to the string.
Replaces the contents with `count` copies of
character `ch`.
@par Complexity
Linear in `count`.
@par Exception Safety
Strong guarantee.
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@return `*this`
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@param count The size of the resulting string.
@param ch The value to initialize characters
of the string with.
@throw std::length_error `count > max_size()`.
2020-02-14 16:24:44 -05:00
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
assign(
size_type count,
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value_type ch);
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/** Assign to the string.
Replaces the contents with those of
the string `s`.
@par Complexity
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Linear in `s.size()`.
@par Exception Safety
Strong guarantee.
@tparam M The capacity of the other string.
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@return `*this`
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@param s The string to replace
the contents with.
@throw std::length_error `s.size() > max_size()`.
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*/
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template<std::size_t M
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#ifndef BOOST_STATIC_STRING_DOCS
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, typename std::enable_if<(M < N)>::type* = nullptr
#endif
>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
assign(const basic_static_string<M, CharT, Traits>& s)
{
return assign_unchecked(s.data(), s.size());
}
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#ifndef BOOST_STATIC_STRING_DOCS
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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assign(const basic_static_string& s) noexcept
{
if (this == &s)
return *this;
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return assign_unchecked(s.data(), s.size());
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}
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template<std::size_t M,
typename std::enable_if<(M > N)>::type* = nullptr>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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assign(const basic_static_string<M, CharT, Traits>& s)
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{
return assign(s.data(), s.size());
}
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#endif
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/** Assign to the string.
Let `sub` be `s.substr(pos, count)`. Replaces
the contents with those of the string `sub`.
@par Complexity
Linear in `sub.size()`.
@par Exception Safety
Strong guarantee.
@tparam M The capacity of the other string.
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@return `*this`
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@param s The string to replace
the contents with.
@param pos The index at which to begin the substring.
@param count The size of the substring. The default
argument for this parameter is @ref npos.
@throw std::length_error `sub.size() > max_size()`.
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*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
assign(
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const basic_static_string<M, CharT, Traits>& s,
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size_type pos,
size_type count = npos)
{
return assign(s.data() + pos, s.capped_length(pos, count));
}
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/** Assign to the string.
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Replaces the contents with those of `{s, s + count)`.
@par Complexity
Linear in `count`.
@par Exception Safety
Strong guarantee.
@note
The range can contain null characters.
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@return `*this`
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@param count The number of characters to copy.
@param s A pointer to the string to copy from.
@throw std::length_error `count > max_size()`.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
assign(
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const_pointer s,
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size_type count);
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/** Assign to the string.
Replaces the contents with those of
`{s, s + traits_type::length(s))`.
@par Complexity
Linear in `count`.
@par Exception Safety
Strong guarantee.
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@return `*this`
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@param s A pointer to the string to copy from.
@throw std::length_error `traits_type::length(s) > max_size()`.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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assign(const_pointer s)
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{
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return assign(s, traits_type::length(s));
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}
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/** Assign to the string.
Replaces the contents with the characters
in the range `{first, last)`.
@par Complexity
Linear in `std::distance(first, last)`.
@par Exception Safety
Strong guarantee.
@tparam InputIterator The type of the iterators.
@par Constraints
`InputIterator` satisfies __InputIterator__.
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@return `*this`
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@param first An iterator referring to the
first character to assign.
@param last An iterator past the end
of the range to assign from.
@throw std::length_error `std::distance(first, last) > max_size()`.
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*/
template<typename InputIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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#ifdef BOOST_STATIC_STRING_DOCS
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basic_static_string&
#else
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typename std::enable_if<
detail::is_input_iterator<InputIterator>::value,
basic_static_string&>::type
#endif
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assign(
InputIterator first,
InputIterator last);
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/** Assign to the string.
Replaces the contents with those of the
initializer list `ilist`.
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@par Complexity
Linear in `init.size()`.
@par Exception Safety
Strong guarantee.
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@return `*this`
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@param ilist The initializer list to copy from.
@throw std::length_error `ilist.size() > max_size()`.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
assign(
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std::initializer_list<value_type> ilist)
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{
return assign(ilist.begin(), ilist.end());
}
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/** Assign to the string.
Let `sv` be `string_view_type(t)`. Replaces the
contents with those of `sv`.
@par Complexity
Linear in `sv.size()`.
@par Exception Safety
Strong guarantee.
@note
The view can contain null characters.
@tparam T A type convertible to `string_view_type`.
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@par Constraints
@code
std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value
@endcode
@return `*this`
@param t The object to assign from.
@throw std::length_error `sv.size() > max_size()`.
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*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
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assign(const T& t)
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{
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const string_view_type sv = t;
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return assign(sv.data(), sv.size());
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}
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/** Assign characters to a string.
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Let `sv` be `string_view_type(t).substr(pos, count)`.
Replaces the contents with those of the substring `sv`.
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@par Complexity
Linear in `sv.size()`.
@par Exception Safety
Strong guarantee.
@note
The view can contain null characters.
@tparam T A type convertible to `string_view_type`.
@par Constraints
@code
std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value
@endcode
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@return `*this`
@param t The object to assign from.
@param pos The index at which to begin the substring.
@param count The size of the substring. The default
argument for this parameter is @ref npos.
@throw std::length_error `sv.size() > max_size()`.
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
basic_static_string&
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assign(
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const T& t,
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size_type pos,
size_type count = npos)
{
const auto sv = string_view_type(t).substr(pos, count);
return assign(sv.data(), sv.size());
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}
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//--------------------------------------------------------------------------
//
// Element access
//
//--------------------------------------------------------------------------
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/** Access a character with bounds checking.
Returns a reference to the character at
index `pos`.
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@par Complexity
Constant.
@par Exception Safety
Strong guarantee.
@param pos The index to access.
@throw std::out_of_range `pos >= size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
reference
at(size_type pos)
{
BOOST_STATIC_STRING_THROW_IF(
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pos >= size(), std::out_of_range("pos >= size()"));
return data()[pos];
}
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/** Access a character with bounds checking.
Returns a reference to the character at
index `pos`.
@par Complexity
Constant.
@par Exception Safety
Strong guarantee.
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@param pos The index to access.
@throw std::out_of_range `pos >= size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
const_reference
at(size_type pos) const
{
BOOST_STATIC_STRING_THROW_IF(
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pos >= size(), std::out_of_range("pos >= size()"));
return data()[pos];
}
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/** Access a character.
Returns a reference to the character at
index `pos`.
@par Complexity
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Constant.
@par Precondition
`pos >= size`
@param pos The index to access.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
reference
operator[](size_type pos) noexcept
{
return data()[pos];
}
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/** Access a character.
Returns a reference to the character at
index `pos`.
@par Complexity
Constant.
@par Precondition
`pos >= size`
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@param pos The index to access.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
const_reference
operator[](size_type pos) const noexcept
{
return data()[pos];
}
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/** Return the first character.
Returns a reference to the first character.
@par Complexity
Constant.
@par Precondition
`not empty()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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reference
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front() noexcept
{
return data()[0];
}
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/** Return the first character.
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Returns a reference to the first character.
@par Complexity
Constant.
@par Precondition
`not empty()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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const_reference
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front() const noexcept
{
return data()[0];
}
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/** Return the last character.
Returns a reference to the last character.
@par Complexity
Constant.
@par Precondition
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`not empty()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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reference
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back() noexcept
{
return data()[size() - 1];
}
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/** Return the last character.
Returns a reference to the last character.
@par Complexity
Constant.
@par Precondition
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`not empty()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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const_reference
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back() const noexcept
{
return data()[size() - 1];
}
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/** Return a pointer to string.
Returns a pointer to the underlying array
serving as storage. The value returned is such that
the range `{data(), data() + size())` is always a
valid range, even if the container is empty.
@par Complexity
Constant.
@note The value returned from this function
is never never a null pointer value.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
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pointer
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data() noexcept
{
return this->data_impl();
}
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/** Return a pointer to string.
Returns a pointer to the underlying array
serving as storage. The value returned is such that
the range `{data(), data() + size())` is always a
valid range, even if the container is empty.
@par Complexity
Constant.
@note The value returned from this function
is never never a null pointer value.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
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const_pointer
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data() const noexcept
{
return this->data_impl();
}
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/** Return a pointer to string.
Returns a pointer to the underlying array
serving as storage. The value returned is such that
the range `{c_str(), c_str() + size())` is always a
valid range, even if the container is empty.
@par Complexity
Constant.
@note The value returned from this function
is never never a null pointer value.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
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const_pointer
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c_str() const noexcept
{
return data();
}
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/** Convert to a string view referring to the string.
Returns a string view referring to the
underlying character string.
@par Complexity
Constant.
*/
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BOOST_STATIC_STRING_CPP11_CONSTEXPR
operator string_view_type() const noexcept
{
return string_view_type(data(), size());
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}
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//--------------------------------------------------------------------------
//
// Iterators
//
//--------------------------------------------------------------------------
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/// Return an iterator to the beginning.
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
iterator
begin() noexcept
{
return data();
}
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/// Return an iterator to the beginning.
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
const_iterator
begin() const noexcept
{
return data();
}
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/// Return an iterator to the beginning.
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
const_iterator
cbegin() const noexcept
{
return data();
}
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/// Return an iterator to the end.
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
iterator
end() noexcept
{
return data() + size();
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}
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/// Return an iterator to the end.
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
const_iterator
end() const noexcept
{
return data() + size();
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}
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/// Return an iterator to the end.
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
const_iterator
cend() const noexcept
{
return data() + size();
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}
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/// Return a reverse iterator to the beginning.
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BOOST_STATIC_STRING_CPP17_CONSTEXPR
reverse_iterator
rbegin() noexcept
{
return reverse_iterator{end()};
}
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/// Returns a reverse iterator to the beginning.
BOOST_STATIC_STRING_CPP17_CONSTEXPR
const_reverse_iterator
rbegin() const noexcept
{
return const_reverse_iterator{cend()};
}
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/// Return a reverse iterator to the beginning.
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BOOST_STATIC_STRING_CPP17_CONSTEXPR
const_reverse_iterator
crbegin() const noexcept
{
return const_reverse_iterator{cend()};
}
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/// Return a reverse iterator to the end.
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BOOST_STATIC_STRING_CPP17_CONSTEXPR
reverse_iterator
rend() noexcept
{
return reverse_iterator{begin()};
}
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/// Return a reverse iterator to the end.
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BOOST_STATIC_STRING_CPP17_CONSTEXPR
const_reverse_iterator
rend() const noexcept
{
return const_reverse_iterator{cbegin()};
}
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/// Return a reverse iterator to the end.
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BOOST_STATIC_STRING_CPP17_CONSTEXPR
const_reverse_iterator
crend() const noexcept
{
return const_reverse_iterator{cbegin()};
}
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//--------------------------------------------------------------------------
//
// Capacity
//
//--------------------------------------------------------------------------
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/** Return if the string is empty.
Returns whether the string contains no characters.
@par Complexity
Constant.
@return `size() == 0`
*/
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BOOST_STATIC_STRING_NODISCARD
BOOST_STATIC_STRING_CPP11_CONSTEXPR
bool
empty() const noexcept
{
return size() == 0;
}
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/** Return the size of the string.
Returns the number of characters stored in the
string, excluding the null terminator.
@par Complexity
Constant.
*/
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BOOST_STATIC_STRING_CPP11_CONSTEXPR
size_type
size() const noexcept
{
return this->size_impl();
}
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/** Return the size of the string.
Returns the number of characters stored in the
string, excluding the null terminator.
@par Complexity
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Constant.
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*/
BOOST_STATIC_STRING_CPP11_CONSTEXPR
size_type
length() const noexcept
{
return size();
}
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/** Return the number of characters that can be stored.
Returns the maximum size of the string, excluding the
null terminator. The returned value is always `N`.
@par Complexity
Constant.
*/
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BOOST_STATIC_STRING_CPP11_CONSTEXPR
size_type
max_size() const noexcept
{
return N;
}
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/** Increase the capacity.
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This function has no effect.
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@throw std::length_error if `n > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
reserve(size_type n)
{
BOOST_STATIC_STRING_THROW_IF(
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n > max_size(), std::length_error("n > max_size()"));
}
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/** Return the number of characters that can be stored.
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Returns the maximum size of the string, excluding the
null terminator. The returned value is always `N`.
@par Complexity
Constant.
*/
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BOOST_STATIC_STRING_CPP11_CONSTEXPR
size_type
capacity() const noexcept
{
return max_size();
}
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/** Request the removal of unused capacity.
This function has no effect.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
shrink_to_fit() noexcept { }
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//--------------------------------------------------------------------------
//
// Operations
//
//--------------------------------------------------------------------------
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/** Clear the contents.
Erases all characters from the string. After this
call, @ref size() returns zero.
@par Complexity
Linear in @ref size().
@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
clear() noexcept
{
this->set_size(0);
term();
}
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/** Insert into the string.
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Inserts `count` copies of `ch` at the position `index`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param index The index to insert at.
@param count The number of characters to insert.
@param ch The character to insert.
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@throw std::length_error `size() + count > max_size()`
@throw std::out_of_range `index > size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
size_type count,
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value_type ch)
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{
BOOST_STATIC_STRING_THROW_IF(
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index > size(), std::out_of_range("index > size()"));
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insert(begin() + index, count, ch);
return *this;
}
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/** Insert into the string.
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Inserts the null-terminated character string pointed to by `s`
of length `count` at the position `index` where `count`
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is `traits_type::length(s)`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param index The index to insert at.
@param s The string to insert.
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@throw std::length_error `size() + count > max_size()`
@throw std::out_of_range `index > size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
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const_pointer s)
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{
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return insert(index, s, traits_type::length(s));
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}
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/** Insert into the string.
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Inserts `count` characters of the string pointed to by `s`
at the position `index`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param index The index to insert at.
@param s The string to insert.
@param count The length of the string to insert.
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@throw std::length_error `size() + count > max_size()`
@throw std::out_of_range `index > size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
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const_pointer s,
size_type count)
{
BOOST_STATIC_STRING_THROW_IF(
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index > size(), std::out_of_range("index > size()"));
insert(data() + index, s, s + count);
return *this;
}
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/** Insert into the string.
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Inserts the string `str`
at the position `index`.
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@par Exception Safety
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Strong guarantee.
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@note The insertion is done unchecked when
the capacity of `str` differs from that of the
string the function is called on.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam M The size of the input string.
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@return `*this`
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@param index The index to insert at.
@param str The string to insert.
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@throw std::length_error `size() + str.size() > max_size()`
@throw std::out_of_range `index > size()`
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
const basic_static_string<M, CharT, Traits>& str)
{
return insert_unchecked(index, str.data(), str.size());
}
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#ifndef BOOST_STATIC_STRING_DOCS
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
const basic_static_string& str)
{
return insert(index, str.data(), str.size());
}
#endif
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/** Insert into the string.
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Inserts a string, obtained by `str.substr(index_str, count)`
at the position `index`.
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@par Exception Safety
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Strong guarantee.
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@note The insertion is done unchecked when
the capacity of `str` differs from that of the
string the function is called on.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam M The size of the input string.
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@return `*this`
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@param index The index to insert at.
@param str The string from which to insert.
@param index_str The index in `str` to start inserting from.
@param count The number of characters to insert.
The default argument for this parameter is @ref npos.
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@throw std::length_error `size() + str.substr(index_str, count).size() > max_size()`
@throw std::out_of_range `index > size()`
@throw std::out_of_range `index_str > str.size()`
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
const basic_static_string<M, CharT, Traits>& str,
size_type index_str,
size_type count = npos)
{
return insert_unchecked(index, str.data() + index_str, str.capped_length(index_str, count));
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}
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#ifndef BOOST_STATIC_STRING_DOCS
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
const basic_static_string& str,
size_type index_str,
size_type count = npos)
{
return insert(index, str.data() + index_str, str.capped_length(index_str, count));
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}
#endif
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/** Insert into the string.
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Inserts the character `ch` before the character pointed by `pos`.
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@par Precondition
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`pos` shall be vaild within `{data(), data() + size()}`
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return An iterator which refers to the first inserted character
or `pos` if no characters were inserted
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@param pos The index to insert at.
@param ch The character to insert.
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@throw std::length_error `size() + 1 > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
iterator
insert(
const_iterator pos,
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value_type ch)
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{
return insert(pos, 1, ch);
}
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/** Insert into the string.
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Inserts `count` copies of `ch` before the character pointed by `pos`.
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@par Precondition
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`pos` shall be valid within `{data(), data() + size()}`
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return An iterator which refers to the first inserted character
or `pos` if no characters were inserted
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@param pos The position to insert at.
@param count The number of characters to insert.
@param ch The character to insert.
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@throw std::length_error `size() + count > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
iterator
insert(
const_iterator pos,
size_type count,
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value_type ch);
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/** Insert into the string.
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Inserts characters from the range `{first, last)` before the
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character pointed to by `pos`.
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@par Precondition
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`pos` shall be valid within `{data(), data() + size()}`,
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`{first, last)` shall be a valid range
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam InputIterator The type of the iterators.
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@par Constraints
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`InputIterator` satisfies __InputIterator__ and does not
satisfy __ForwardIterator__.
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@return An iterator which refers to the first inserted character
or `pos` if no characters were inserted
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@param pos The position to insert at.
@param first An iterator representing the first character to insert.
@param last An iterator representing one past the last character to insert.
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@throw std::length_error `size() + insert_count > max_size()`
*/
template<typename InputIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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#ifdef BOOST_STATIC_STRING_DOCS
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iterator
#else
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typename std::enable_if<
detail::is_input_iterator<
InputIterator>::value &&
!detail::is_forward_iterator<
InputIterator>::value, iterator>::type
#endif
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insert(
const_iterator pos,
InputIterator first,
InputIterator last);
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#ifndef BOOST_STATIC_STRING_DOCS
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template<typename ForwardIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
typename std::enable_if<
detail::is_forward_iterator<
ForwardIterator>::value,
iterator>::type
insert(
const_iterator pos,
ForwardIterator first,
ForwardIterator last);
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#endif
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/** Insert into the string.
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Inserts characters from `ilist` before `pos`.
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@par Precondition
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`pos` shall be valid within `{data(), data() + size()}`
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return An iterator which refers to the first inserted character
or `pos` if no characters were inserted
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@param pos The position to insert at.
@param ilist The initializer list from which to insert.
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@throw std::length_error `size() + ilist.size() > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
iterator
insert(
const_iterator pos,
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std::initializer_list<value_type> ilist)
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{
return insert_unchecked(pos, ilist.begin(), ilist.size());
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}
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/** Insert into the string.
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Constructs a temporary `string_view_type` object `sv` from `t` and
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inserts `{sv.begin(), sv.end())` at `index`.
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@par Precondition
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`index` shall be valid within `{data(), data() + size()}`
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@param index The index to insert at.
@param t The string to insert from.
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@throw std::length_error `size() + sv.size() > max_size()`
@throw std::out_of_range `index > size()`
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
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const T& t)
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{
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const string_view_type sv = t;
return insert(index, sv.data(), sv.size());
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}
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/** Insert into the string.
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Constructs a temporary `string_view_type` object `sv` from `t`
and inserts `sv.substr(index_str, count)` at `index`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const_pointer>::value`.
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@return `*this`
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@param index The index to insert at.
@param t The string to insert from.
@param index_str The index in the temporary `string_view_type` object
to start the substring from.
@param count The number of characters to insert.
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@throw std::length_error `size() + sv.size() > max_size()`
@throw std::out_of_range `index > size()`
@throw std::out_of_range `index_str > sv.size()`
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert(
size_type index,
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const T& t,
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size_type index_str,
size_type count = npos)
{
const auto sv = string_view_type(t).substr(index_str, count);
return insert(index, sv.data(), sv.size());
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}
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/** Erase from the string.
Erases `num` characters from the string, starting at `index`.
`num` is determined as the smaller of `count` and `size() - index`.
@par Exception Safety
Strong guarantee.
@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param index The index to erase at.
The default argument for this parameter is `0`.
@param count The number of characters to erase.
The default argument for this parameter is @ref npos.
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@throw std::out_of_range `index > size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
erase(
size_type index = 0,
size_type count = npos)
{
erase(data() + index, data() + index + capped_length(index, count));
return *this;
}
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/** Erase from the string.
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Erases the character at `pos`.
.
@par Precondition
`pos` shall be valid within `{data(), data() + size()}`
@par Exception Safety
Strong guarantee.
@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
@return An iterator referring to character immediately following
the erased character, or @ref end() if one does not exist.
@param pos An iterator referring to the character to erase.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
iterator
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erase(const_iterator pos)
{
BOOST_STATIC_STRING_ASSERT(!empty());
return erase(pos, pos + 1);
}
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/** Erase from the string.
Erases the characters in the range `{first, last)`.
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@par Precondition
`{first, last}` shall be valid within `{data(), data() + size()}`
@par Exception Safety
Strong guarantee.
@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
@return An iterator referring to the character `last`
previously referred to, or @ref end() if one does not exist.
@param first An iterator referring to the first character to erase.
@param last An iterator past the last character to erase.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
iterator
erase(
const_iterator first,
const_iterator last);
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/** Append a character.
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Appends a character to the end of the string.
@par Exception Safety
Strong guarantee.
@param ch The character to append.
@throw std::length_error `size() >= max_size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
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push_back(value_type ch);
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/** Remove the last character.
Removes a character from the end of the string.
@par Precondition
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`not empty()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
pop_back() noexcept
{
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BOOST_STATIC_STRING_ASSERT(!empty());
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this->set_size(size() - 1);
term();
}
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/** Appends `count` copies of character `ch`
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The appended characters may be null.
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@return `*this`
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@throw std::length_error if `count > max_size() - size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
append(
size_type count,
value_type ch);
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/** Append to the string.
Appends the string `s`.
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The appended string can contain null characters.
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@return `*this`
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@throw std::length_error if `s.size() > max_size() - size()`
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*/
template<std::size_t M>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
append(
const basic_static_string<M, CharT, Traits>& s)
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{
return append(s.data(), s.size());
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}
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/** Append to the string.
Appends the contents of `s.substr(pos, count)`
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The appended string can contain null characters.
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@return `*this`
@throw std::out_of_range if `pos > s.size()`
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@throw std::length_error if `s.substr(pos, count).size() > max_size() - size()`
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*/
template<std::size_t M>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
append(
const basic_static_string<M, CharT, Traits>& s,
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size_type pos,
size_type count = npos)
{
return append(s.data() + pos, s.capped_length(pos, count));
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}
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/** Append to the string.
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Appends characters in the range `(s, s + count)`
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The appended string can contain null characters.
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@return `*this`
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@throw std::length_error if `count > max_size() - size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
append(
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const_pointer s,
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size_type count);
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/** Append to the string.
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Appends the null-terminated character string pointed to by `s`
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The length of the string is determined by the first
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null character using `traits_type::length(s)`.
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@return `*this`
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@throw std::length_error if `traits_type::length(s) > max_size() - size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
append(const_pointer s)
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{
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return append(s, traits_type::length(s));
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}
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/** Append to the string.
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Appends characters from the range `(first, last)`
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The inserted string can contain null characters.
This function does not participate in overload resolution if
`InputIterator` does not satisfy <em>LegacyInputIterator</em>
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@return `*this`
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@throw std::length_error if `std::distance(first, last) > max_size() - size()`
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*/
template<typename InputIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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#ifdef BOOST_STATIC_STRING_DOCS
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basic_static_string&
#else
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typename std::enable_if<
detail::is_input_iterator<InputIterator>::value,
basic_static_string&>::type
#endif
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append(
InputIterator first,
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InputIterator last)
{
this->set_size(size() + read_back(true, first, last));
return term();
}
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/** Append to the string.
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Appends characters from initializer list `ilist`
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The appended string can contain null characters.
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@return `*this`
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@throw std::length_error if `ilist.size() > max_size() - size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
append(
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std::initializer_list<value_type> ilist)
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{
return append(ilist.begin(), ilist.size());
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}
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/** Append to the string.
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Appends characters from `string_view_type{t}`
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The appended string can contain null characters.
This function participates in overload resolution if
`T` is convertible to `string_view_type` and `T` is not
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convertible to `const_pointer`.
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@return `*this`
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@throw std::length_error if `string_view_type{t}.size() > max_size() - size()`
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*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
append(const T& t)
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{
const string_view_type sv = t;
return append(sv.data(), sv.size());
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}
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/** Append to the string.
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Appends characters from `string_view_type{t}.substr{pos, count}`
The appended string can contain null characters.
This function participates in overload resolution if
`T` is convertible to `string_view_type` and `T` is not
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convertible to `const_pointer`.
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@return `*this`
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@throw std::out_of_range if `pos > string_view_type{t}.size()`
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@throw std::length_error if `string_view_type{t}.substr(pos, count).size() > max_size() - size()`
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
append(
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const T& t,
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size_type pos,
size_type count = npos)
{
const auto sv = string_view_type(t).substr(pos, count);
return append(sv.data(), sv.size());
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}
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/** Append to the string.
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@throw std::length_error if `s.size() > max_size() - size()`
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
operator+=(
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const basic_static_string<M, CharT, Traits>& s)
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{
return append(s);
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}
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/** Append to the string.
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Appends the given character `ch` to the end of the string.
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@throw std::length_error if `1 > max_size() - size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
operator+=(value_type ch)
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{
push_back(ch);
return *this;
}
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/** Append to the string.
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Appends the null-terminated character string pointed to by `s`
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The length of the string is determined by the first
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null character using `traits_type::length(s)`.
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@return `*this`
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@throw std::length_error if `traits_type::length(s) > max_size() - size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
operator+=(const_pointer s)
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{
return append(s);
}
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/** Append to the string.
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Appends characters from initializer list `ilist`
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The appended string can contain null characters.
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@return `*this`
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@throw std::length_error if `ilist.size() > max_size() - size()`
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
operator+=(
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std::initializer_list<value_type> ilist)
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{
return append(ilist);
}
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/** Append to the string.
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Appends a copy of the characters from `string_view_type{t}`
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The appended string can contain null characters.
This function participates in overload resolution if
`T` is convertible to `string_view_type` and `T` is not
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convertible to `const_pointer`.
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@throw std::length_error if `string_view_type{t}.size() > max_size()`
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
operator+=(const T& t)
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{
return append(t);
}
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/** Compare the string with another.
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Compares this string to `s`.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(
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const basic_static_string<M, CharT, Traits>& s) const noexcept
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{
return detail::lexicographical_compare<CharT, Traits>(
data(), size(), s.data(), s.size());
}
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/** Compare the string with another.
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Compares a `{pos1, pos1+count1)` substring of this string to `s`. If `count1 > size() - pos1` the substring is `{pos1, size())`.
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*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(
size_type pos1,
size_type count1,
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const basic_static_string<M, CharT, Traits>& s) const
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{
return detail::lexicographical_compare<CharT, Traits>(
data() + pos1, capped_length(pos1, count1), s.data(), s.size());
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}
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/** Compare the string with another.
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Compares a `{pos1, pos1+count1)` substring of this string to a substring `{pos2, pos2+count2)` of `s`.
If `count1 > size() - pos1` the first substring is `{pos1, size())`. Likewise, if `count2 > s.size() - pos2` the
second substring is `{pos2, s.size())`.
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*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(
size_type pos1,
size_type count1,
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const basic_static_string<M, CharT, Traits>& s,
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size_type pos2,
size_type count2 = npos) const
{
return detail::lexicographical_compare<CharT, Traits>(
data() + pos1, capped_length(pos1, count1),
s.data() + pos2, s.capped_length(pos2, count2));
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}
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/** Compare the string with another.
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Compares this string to the null-terminated character sequence beginning at the character pointed to by `s` with length `traits_type::length(s)`.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(const_pointer s) const noexcept
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{
return detail::lexicographical_compare<CharT, Traits>(
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data(), size(), s, traits_type::length(s));
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}
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/** Compare the string with another.
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Compares a `{pos1, pos1+count1)` substring of this string to the null-terminated character sequence beginning at the character pointed to by `s` with
length `traits_type::length(s)`. If `count1 > size() - pos1` the substring is `{pos1, size())`.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(
size_type pos1,
size_type count1,
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const_pointer s) const
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{
return detail::lexicographical_compare<CharT, Traits>(
data() + pos1, capped_length(pos1, count1), s, traits_type::length(s));
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}
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/** Compare the string with another.
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Compares a `{pos1, pos1+count1)` substring of this string to the characters in the range `{s, s + count2)`. If `count1 > size() - pos1` the substring is `{pos1, size())`.
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*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(
size_type pos1,
size_type count1,
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const_pointer s,
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size_type count2) const
{
return detail::lexicographical_compare<CharT, Traits>(
data() + pos1, capped_length(pos1, count1), s, count2);
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}
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/** Compare the string with another.
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Compares this string to `t` after converting `t` to `string_view_type`.
This function participates in overload resolution if
`T` is convertible to `string_view_type` and `T` is not
convertible to `const_pointer`.
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*/
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template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
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, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(const T& t) const noexcept
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{
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const string_view_type sv = t;
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return detail::lexicographical_compare<CharT, Traits>(
data(), size(), sv.data(), sv.size());
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}
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/** Compare the string with another.
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Compares a `{pos1, pos1+count1)` substring of this string to `t` after converting it to
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`string_view_type`. If `count1 > size() - pos1`
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the substring is `{pos1, size())`.
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This function participates in overload resolution if
`T` is convertible to `string_view_type` and `T` is not
convertible to `const_pointer`.
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*/
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template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
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, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(
size_type pos1,
size_type count1,
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const T& t) const
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{
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const string_view_type sv = t;
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return detail::lexicographical_compare<CharT, Traits>(
data() + pos1, capped_length(pos1, count1), sv.data(), sv.size());
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}
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/** Compare the string with another.
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Replaces the part of the string indicated by `{pos1, pos1 + count1)` with a substring `{pos2, pos2 + count2)` of `t` after converting to `string_view_type`.
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This function participates in overload resolution if
`T` is convertible to `string_view_type` and `T` is not
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convertible to `const_pointer`.
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*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
int
compare(
size_type pos1,
size_type count1,
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const T& t,
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size_type pos2,
size_type count2 = npos) const
{
const auto sv = string_view_type(t).substr(pos2, count2);
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return compare(pos1, count1,
sv.data(), sv.size());
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}
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/** Return a substring.
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Returns a substring of the string.
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@par Exception Safety
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Strong guarantee.
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@return A string object containing the characters
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`{data() + pos, std::min(count, size() - pos))`.
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@param pos The index to being the substring at. The
default arugment for this parameter is `0`.
@param count The length of the substring. The default arugment
for this parameter is @ref npos.
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@throw std::out_of_range `pos > size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string
substr(
size_type pos = 0,
size_type count = npos) const
{
return basic_static_string(data() + pos, capped_length(pos, count));
}
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/** Return a string view of a substring.
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Returns a view of a substring.
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@par Exception Safety
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Strong guarantee.
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@return A `string_view_type` object referring
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to `{data() + pos, std::min(count, size() - pos))`.
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@param pos The index to being the substring at. The
default arugment for this parameter is `0`.
@param count The length of the substring. The default arugment
for this parameter is @ref npos.
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@throw std::out_of_range `pos > size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
string_view_type
subview(
size_type pos = 0,
size_type count = npos) const
{
return string_view_type(
data() + pos, capped_length(pos, count));
}
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/** Copy a substring to another string.
Copies `std::min(count, size() - pos)` characters starting at
index `pos` to the string pointed to by `dest`.
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@note The resulting string is not null terminated.
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@return The number of characters copied.
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@param count The number of characters to copy.
@param dest The string to copy to.
@param pos The index to begin copying from. The
default argument for this parameter is `0`.
@throw std::out_of_range `pos > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
copy(
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pointer dest,
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size_type count,
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size_type pos = 0) const
{
const auto num_copied = capped_length(pos, count);
traits_type::copy(dest, data() + pos, num_copied);
return num_copied;
}
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/** Change the size of the string.
Resizes the string to contain `n` characters. If
`n > size()`, characters with the value `CharT()` are
appended. Otherwise, `size()` is reduced to `n`.
@param n The size to resize the string to.
@throw std::out_of_range `n > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
resize(size_type n)
{
resize(n, value_type());
}
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/** Change the size of the string.
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Resizes the string to contain `n` characters. If
`n > size()`, copies of `c` are
appended. Otherwise, `size()` is reduced to `n`.
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@param n The size to resize the string to.
@param c The characters to append if the size
increases.
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@throw std::out_of_range `n > max_size()`
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
resize(
size_type n,
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value_type c);
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/// Exchange the contents of this string with another.
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
swap(basic_static_string& s) noexcept;
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/// Exchange the contents of this string with another.
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
swap(basic_static_string<M, CharT, Traits>& s);
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/** Replace a part of the string.
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Replaces `rcount` characters starting at index `pos1` with those
of `str`, where `rcount` is `std::min(n1, size() - pos1)`.
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@par Exception Safety
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Strong guarantee.
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@note The replacement is done unchecked when
the capacity of `str` differs from that of the
string the function is called on.
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All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam M The size of the input string.
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@return `*this`
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@param pos1 The index to replace at.
@param n1 The number of characters to replace.
@param str The string to replace with.
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@throw std::length_error `size() + (str.size() - rcount) > max_size()`
@throw std::out_of_range `pos1 > size()`
*/
template<size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos1,
size_type n1,
const basic_static_string<M, CharT, Traits>& str)
{
return replace_unchecked(pos1, n1, str.data(), str.size());
}
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#ifndef BOOST_STATIC_STRING_DOCS
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos1,
size_type n1,
const basic_static_string& str)
{
return replace(pos1, n1, str.data(), str.size());
}
#endif
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/** Replace a part of the string.
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Replaces `rcount` characters starting at index `pos1` with those of
`str.subview(pos2, n2)`, where `rcount` is `std::min(n1, size() - pos1)`.
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@par Exception Safety
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Strong guarantee.
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@note The replacement is done unchecked when
the capacity of `str` differs from that of the
string the function is called on.
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All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
@return `*this`
@param pos1 The index to replace at.
@param n1 The number of characters to replace.
@param str The string to replace with.
@param pos2 The index to begin the substring.
@param n2 The length of the substring.
The default argument for this parameter is @ref npos.
@throw std::length_error `size() + (std::min(str.size(), n2) - rcount) > max_size()`
@throw std::out_of_range `pos1 > size()`
@throw std::out_of_range `pos2 > str.size()`
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos1,
size_type n1,
const basic_static_string<M, CharT, Traits>& str,
size_type pos2,
size_type n2 = npos)
{
return replace_unchecked(pos1, n1, str.data() + pos2, str.capped_length(pos2, n2));
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}
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#ifndef BOOST_STATIC_STRING_DOCS
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos1,
size_type n1,
const basic_static_string& str,
size_type pos2,
size_type n2 = npos)
{
return replace(pos1, n1, str.data() + pos2, str.capped_length(pos2, n2));
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}
#endif
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/** Replace a part of the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and
replaces `rcount` characters starting at index `pos1` with those
of `sv`, where `rcount` is `std::min(n1, size() - pos1)`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return `*this`
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@param pos1 The index to replace at.
@param n1 The number of characters to replace.
@param t The object to replace with.
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@throw std::length_error `size() + (sv.size() - rcount) > max_size()`
@throw std::out_of_range `pos1 > size()`
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos1,
size_type n1,
const T& t)
{
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const string_view_type sv = t;
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return replace(pos1, n1, sv.data(), sv.size());
}
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/** Replace a part of the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and
replaces `rcount` characters starting at index `pos1` with those
of `sv.substr(pos2, n2)`, where `rcount` is `std::min(n1, size() - pos)`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return `*this`
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@param pos1 The index to replace at.
@param n1 The number of characters to replace.
@param t The object to replace with.
@param pos2 The index to begin the substring.
@param n2 The length of the substring.
The default argument for this parameter is @ref npos.
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@throw std::length_error `size() + (std::min(n2, sv.size()) - rcount) > max_size()`
@throw std::out_of_range `pos1 > size()`
@throw std::out_of_range `pos2 > sv.size()`
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos1,
size_type n1,
const T& t,
size_type pos2,
size_type n2 = npos)
{
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const string_view_type sv = t;
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return replace(pos1, n1, sv.substr(pos2, n2));
}
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/** Replace a part of the string.
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Replaces `rcount` characters starting at index `pos` with those of
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`{s, s + n2)`, where `rcount` is `std::min(n1, size() - pos)`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param pos The index to replace at.
@param n1 The number of characters to replace.
@param s The string to replace with.
@param n2 The length of the string to replace with.
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@throw std::length_error `size() + (n2 - rcount) > max_size()`
@throw std::out_of_range `pos > size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos,
size_type n1,
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const_pointer s,
size_type n2)
{
return replace(data() + pos, data() + pos + capped_length(pos, n1), s, n2);
}
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/** Replace a part of the string.
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Replaces `rcount` characters starting at index `pos` with those of
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`{s, s + len)`, where the length of the string `len` is `traits_type::length(s)` and `rcount`
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is `std::min(n1, size() - pos)`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param pos The index to replace at.
@param n1 The number of characters to replace.
@param s The string to replace with.
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@throw std::length_error `size() + (len - rcount) > max_size()`
@throw std::out_of_range `pos > size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos,
size_type n1,
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const_pointer s)
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{
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return replace(pos, n1, s, traits_type::length(s));
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}
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/** Replace a part of the string.
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Replaces `rcount` characters starting at index `pos` with `n2` copies
of `c`, where `rcount` is `std::min(n1, size() - pos)`.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param pos The index to replace at.
@param n1 The number of characters to replace.
@param n2 The number of characters to replace with.
@param c The character to replace with.
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@throw std::length_error `size() + (n2 - rcount) > max_size()`
@throw std::out_of_range `pos > size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
size_type pos,
size_type n1,
size_type n2,
value_type c)
{
return replace(data() + pos, data() + pos + capped_length(pos, n1), n2, c);
}
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/** Replace a part of the string.
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Replaces the characters in the range `{i1, i2)`
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with those of `str`.
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@par Precondition
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`{i1, i2)` is a valid range.
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@par Exception Safety
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Strong guarantee.
@note The replacement is done unchecked when
the capacity of `str` differs from that of the
string the function is called on.
All references, pointers, or iterators
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referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam M The size of the input string.
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@return `*this`
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@param i1 An iterator referring to the first character to replace.
@param i2 An iterator referring past the end of
the last character to replace.
@param str The string to replace with.
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@throw std::length_error `size() + (str.size() - std::distance(i1, i2)) > max_size()`
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
const_iterator i1,
const_iterator i2,
const basic_static_string<M, CharT, Traits>& str)
{
return replace_unchecked(i1, i2, str.data(), str.size());
}
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#ifndef BOOST_STATIC_STRING_DOCS
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
const_iterator i1,
const_iterator i2,
const basic_static_string& str)
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{
return replace(i1, i2, str.data(), str.size());
}
#endif
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/** Replace a part of the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and
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replaces the characters in the range `{i1, i2)` with those
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of `sv`.
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@par Precondition
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`{i1, i2)` is a valid range.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return `*this`
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@param i1 An iterator referring to the first character to replace.
@param i2 An iterator referring past the end of
the last character to replace.
@param t The object to replace with.
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@throw std::length_error `size() + (sv.size() - std::distance(i1, i2)) > max_size()`
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
const_iterator i1,
const_iterator i2,
const T& t)
{
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const string_view_type sv = t;
return replace(i1, i2, sv.begin(), sv.end());
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}
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/** Replace a part of the string.
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Replaces the characters in the range `{i1, i2)` with those of
`{s, s + n)`.
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@par Precondition
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`{i1, i2)` is a valid range.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param i1 An iterator referring to the first character to replace.
@param i2 An iterator referring past the end of
the last character to replace.
@param s The string to replace with.
@param n The length of the string to replace with.
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@throw std::length_error `size() + (n - std::distance(i1, i2)) > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
const_iterator i1,
const_iterator i2,
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const_pointer s,
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size_type n)
{
return replace(i1, i2, s, s + n);
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}
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/** Replace a part of the string.
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Replaces the characters in the range `{i1, i2)` with those of
`{s, s + len)`, where the length of the string `len` is `traits_type::length(s)`.
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@par Precondition
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`{i1, i2)` shall be a valid range.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param i1 An iterator referring to the first character to replace.
@param i2 An iterator referring past the end of
the last character to replace.
@param s The string to replace with.
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@throw std::length_error `size() + (len - std::distance(i1, i2)) > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
const_iterator i1,
const_iterator i2,
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const_pointer s)
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{
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return replace(i1, i2, s, traits_type::length(s));
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}
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/** Replace a part of the string.
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Replaces the characters in the range `{i1, i2)` with
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`n` copies of `c`.
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@par Precondition
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`{i1, i2)` is a valid range.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param i1 An iterator referring to the first character to replace.
@param i2 An iterator past the end of
the last character to replace.
@param n The number of characters to replace with.
@param c The character to replace with.
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@throw std::length_error `size() + (n - std::distance(i1, i2)) > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
const_iterator i1,
const_iterator i2,
size_type n,
value_type c);
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/** Replace a part of the string.
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Replaces the characters in the range `{i1, i2)`
with those of `{j1, j2)`.
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@par Precondition
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`{i1, i2)` is a valid range.
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`{j1, j2)` is a valid range.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@tparam InputIterator The type of the iterators.
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@par Constraints
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`InputIterator` satisfies __InputIterator__ and does not
satisfy __ForwardIterator__.
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@return `*this`
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@param i1 An iterator referring to the first character to replace.
@param i2 An iterator referring past the end of
the last character to replace.
@param j1 An iterator referring to the first character to replace with.
@param j2 An iterator referring past the end of
the last character to replace with.
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@throw std::length_error `size() + (inserted - std::distance(i1, i2)) > max_size()`
*/
template<typename InputIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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#ifdef BOOST_STATIC_STRING_DOCS
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basic_static_string&
#else
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typename std::enable_if<
detail::is_input_iterator<
InputIterator>::value &&
!detail::is_forward_iterator<
InputIterator>::value,
basic_static_string<N, CharT, Traits>&>::type
#endif
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replace(
const_iterator i1,
const_iterator i2,
InputIterator j1,
InputIterator j2);
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#ifndef BOOST_STATIC_STRING_DOCS
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template<typename ForwardIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
typename std::enable_if<
detail::is_forward_iterator<
ForwardIterator>::value,
basic_static_string<N, CharT, Traits>&>::type
replace(
const_iterator i1,
const_iterator i2,
ForwardIterator j1,
ForwardIterator j2);
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#endif
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/** Replace a part of the string.
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Replaces the characters in the range `{i1, i2)`
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with those of contained in the initializer list `il`.
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@par Precondition
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`{i1, i2)` is a valid range.
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@par Exception Safety
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Strong guarantee.
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@note All references, pointers, or iterators
referring to contained elements are invalidated. Any
past-the-end iterators are also invalidated.
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@return `*this`
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@param i1 An iterator referring to the first character to replace.
@param i2 An iterator past the end of
the last character to replace.
@param il The initializer list to replace with.
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@throw std::length_error `size() + (il.size() - std::distance(i1, i2)) > max_size()`
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace(
const_iterator i1,
const_iterator i2,
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std::initializer_list<value_type> il)
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{
return replace_unchecked(i1, i2, il.begin(), il.size());
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}
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//--------------------------------------------------------------------------
//
// Search
//
//--------------------------------------------------------------------------
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/** Find the first occurrence of a string within the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and finds
the first occurrence of `sv` within the string starting at the index `pos`.
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@par Complexity
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Linear.
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@note An empty string is always found.
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@tparam T The type of the object to convert.
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2020-02-14 16:24:44 -05:00
@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return The lowest index `idx` greater than or equal to `pos`
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where each element of `{sv.begin(), sv.end())` is equal to
that of `{begin() + idx, begin() + idx + count)` if one exists,
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and @ref npos otherwise.
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@param t The string to search for.
@param pos The index to start searching at. The default argument
for this parameter is `0`.
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find(
const T& t,
size_type pos = 0) const
noexcept(detail::is_nothrow_convertible<const T&, string_view_type>::value)
{
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const string_view_type sv = t;
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return find(sv.data(), pos, sv.size());
}
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/** Find the first occurrence of a string within the string.
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Finds the first occurrence of `str` within the
string starting at the index `pos`.
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@par Complexity
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Linear.
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@return The lowest index `idx` greater than or equal to `pos`
where each element of `str` is equal to that of
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`{begin() + idx, begin() + idx + str.size())`
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if one exists, and @ref npos otherwise.
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@param str The string to search for.
@param pos The index to start searching at. The default argument for
this parameter is `0`.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find(
const basic_static_string<M, CharT, Traits>& str,
size_type pos = 0) const noexcept
{
return find(str.data(), pos, str.size());
}
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/** Find the first occurrence of a string within the string.
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Finds the first occurrence of the string pointed to
by `s` within the string starting at the index `pos`.
2020-01-29 21:15:27 -05:00
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@par Complexity
2020-01-29 21:15:27 -05:00
2020-02-14 16:24:44 -05:00
Linear.
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@note An empty string is always found.
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@return The lowest index `idx` greater than or equal to `pos`
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where each element of `{s, s + n)` is equal to that of
`{begin() + idx, begin() + idx + n)` if one exists,
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and @ref npos otherwise.
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@param s The string to search for.
@param pos The index to start searching at.
@param n The length of the string to search for.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find(
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const_pointer s,
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size_type pos,
size_type n) const noexcept;
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/** Find the first occurrence of a string within the string.
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Finds the first occurrence of the string pointed to by `s`
of length `count` within the string starting at the index `pos`,
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where `count` is `traits_type::length(s)`.
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@par Complexity
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Linear.
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@note An empty string is always found.
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@return The lowest index `idx` greater than or equal to `pos`
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where each element of `{s, s + count)` is equal to that of
`{begin() + idx, begin() + idx + count)` if one exists,
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and @ref npos otherwise.
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@param s The string to search for.
@param pos The index to start searching at. The default argument
for this parameter is `0`.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find(
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const_pointer s,
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size_type pos = 0) const noexcept
{
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return find(s, pos, traits_type::length(s));
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}
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/** Find the first occurrence of a character within the string.
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Finds the first occurrence of `c` within the string
starting at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first occurrence of `c` within
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`{begin() + pos, end())` if it exists, and @ref npos otherwise.
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@param c The character to search for.
@param pos The index to start searching at. The default argument
for this parameter is `0`.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find(
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value_type c,
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size_type pos = 0) const noexcept
{
return find(&c, pos, 1);
}
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/** Find the last occurrence of a string within the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and finds
the last occurrence of `sv` within the string starting before or at
the index `pos`.
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@par Complexity
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Linear.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return The highest index `idx` less than or equal to `pos`
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where each element of `{sv.begin(), sv.end())` is equal to
that of `{begin() + idx, begin() + idx + count)` if one exists,
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and @ref npos otherwise.
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@param t The string to search for.
@param pos The index to start searching at. The default argument
for this parameter is @ref npos.
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
rfind(
const T& t,
size_type pos = npos) const
noexcept(detail::is_nothrow_convertible<const T&, string_view_type>::value)
{
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const string_view_type sv = t;
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return rfind(sv.data(), pos, sv.size());
}
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/** Find the last occurrence of a string within the string.
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Finds the last occurrence of `str` within the string
starting before or at the index `pos`.
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@par Complexity
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Linear.
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@return The highest index `idx` less than or equal to `pos`
where each element of `str` is equal to that
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of `{begin() + idx, begin() + idx + str.size())`
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if one exists, and @ref npos otherwise.
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@param str The string to search for.
@param pos The index to start searching at. The default argument for
this parameter is @ref npos.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
rfind(
const basic_static_string<M, CharT, Traits>& str,
size_type pos = npos) const noexcept
{
return rfind(str.data(), pos, str.size());
}
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/** Find the last occurrence of a string within the string.
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Finds the last occurrence of the string pointed to
by `s` within the string starting before or at
the index `pos`.
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@par Complexity
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Linear.
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@return The highest index `idx` less than or equal to `pos`
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where each element of `{s, s + n)` is equal to that of
`{begin() + idx, begin() + idx + n)` if one exists,
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and @ref npos otherwise.
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@param s The string to search for.
@param pos The index to start searching at.
@param n The length of the string to search for.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
rfind(
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const_pointer s,
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size_type pos,
size_type n) const noexcept;
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/** Find the last occurrence of a string within the string.
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Finds the last occurrence of the string pointed to by `s`
of length `count` within the string starting before or at the
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index `pos`, where `count` is `traits_type::length(s)`.
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@par Complexity
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Linear.
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@return The highest index `idx` less than or equal to `pos`
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where each element of `{s, s + count)` is equal to that of
`{begin() + idx, begin() + idx + count)` if one exists,
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and @ref npos otherwise.
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@param s The string to search for.
@param pos The index to stop searching at. The default argument
for this parameter is @ref npos.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
rfind(
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const_pointer s,
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size_type pos = npos) const noexcept
{
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return rfind(s, pos, traits_type::length(s));
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}
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/** Find the last occurrence of a character within the string.
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Finds the last occurrence of `c` within the string
starting before or at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the last occurrence of `c` within
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`{begin(), begin() + pos}` if it exists, and @ref npos otherwise.
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@param c The character to search for.
@param pos The index to stop searching at. The default argument
for this parameter is @ref npos.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
rfind(
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value_type c,
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size_type pos = npos) const noexcept
{
return rfind(&c, pos, 1);
}
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/** Find the first occurrence of any of the characters within the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and finds
the first occurrence of any of the characters in `sv`
within the string starting at the index `pos`.
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@par Complexity
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Linear.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return The index corrosponding to the first occurrence of
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any of the characters in `{sv.begin(), sv.end())` within
`{begin() + pos, end())` if it exists, and @ref npos otherwise.
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@param t The characters to search for.
@param pos The index to start searching at. The default argument
for this parameter is `0`.
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_of(
const T& t,
size_type pos = 0) const
noexcept(detail::is_nothrow_convertible<const T&, string_view_type>::value)
{
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const string_view_type sv = t;
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return find_first_of(sv.data(), pos, sv.size());
}
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/** Find the first occurrence of any of the characters within the string.
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Finds the first occurrence of any of the characters within `str` within the
string starting at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first occurrence of any of the characters
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of `str` within `{begin() + pos, end())` if it exists, and @ref npos otherwise.
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@param str The characters to search for.
@param pos The index to start searching at. The default argument for
this parameter is `0`.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_of(
const basic_static_string<M, CharT, Traits>& str,
size_type pos = 0) const noexcept
{
return find_first_of(str.data(), pos, str.size());
}
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/** Find the first occurrence of any of the characters within the string.
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Finds the first occurrence of any of the characters within the string pointed to
by `s` within the string starting at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first occurrence
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of any of the characters in `{s, s + n)` within `{begin() + pos, end())`
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if it exists, and @ref npos otherwise.
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@param s The characters to search for.
@param pos The index to start searching at.
@param n The length of the string to search for.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_of(
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const_pointer s,
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size_type pos,
size_type n) const noexcept;
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/** Find the first occurrence of any of the characters within the string.
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Finds the first occurrence of the any of the characters within string
pointed to by `s` of length `count` within the string starting at the
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index `pos`, where `count` is `traits_type::length(s)`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first occurrence of any of
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the characters in `{s, s + count)` within
`{begin() + pos, end())` if it exists, and @ref npos otherwise.
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@param s The characters to search for.
@param pos The index to start searching at. The default argument
for this parameter is `0`.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_of(
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const_pointer s,
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size_type pos = 0) const noexcept
{
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return find_first_of(s, pos, traits_type::length(s));
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}
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/** Find the first occurrence of a character within the string.
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Finds the first occurrence of `c` within the string
starting at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first occurrence of `c` within
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`{begin() + pos, end())` if it exists, and @ref npos otherwise.
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@param c The character to search for.
@param pos The index to start searching at. The default argument
for this parameter is `0`.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_of(
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value_type c,
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size_type pos = 0) const noexcept
{
return find_first_of(&c, pos, 1);
}
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/** Find the last occurrence of any of the characters within the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and finds
the last occurrence of any of the characters in `sv`
within the string before or at the index `pos`.
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@par Complexity
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Linear.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return The index corrosponding to the last occurrence of
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any of the characters in `{sv.begin(), sv.end())` within
`{begin(), begin() + pos}` if it exists, and @ref npos otherwise.
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@param t The characters to search for.
@param pos The index to stop searching at. The default argument
for this parameter is @ref npos.
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_of(
const T& t,
size_type pos = npos) const
noexcept(detail::is_nothrow_convertible<const T&, string_view_type>::value)
{
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const string_view_type sv = t;
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return find_last_of(sv.data(), pos, sv.size());
}
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/** Find the last occurrence of any of the characters within the string.
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Finds the last occurrence of any of the characters within `str` within the
string starting before or at the index `pos`.
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@par Complexity
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Linear.
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2020-02-14 16:24:44 -05:00
@return The index corrosponding to the last occurrence of any of the characters
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of `str` within `{begin(), begin() + pos}` if it exists, and @ref npos otherwise.
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@param str The characters to search for.
@param pos The index to stop searching at. The default argument for
this parameter is @ref npos.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_of(
const basic_static_string<M, CharT, Traits>& str,
size_type pos = npos) const noexcept
{
return find_last_of(str.data(), pos, str.size());
}
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/** Find the last occurrence of any of the characters within the string.
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Finds the last occurrence of any of the characters within the string pointed to
by `s` within the string before or at the index `pos`.
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@par Complexity
Linear.
@return The index corrosponding to the last occurrence
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of any of the characters in `{s, s + n)` within `{begin(), begin() + pos}`
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if it exists, and @ref npos otherwise.
@param s The characters to search for.
@param pos The index to stop searching at.
@param n The length of the string to search for.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_of(
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const_pointer s,
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size_type pos,
size_type n) const noexcept;
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/** Find the last occurrence of any of the characters within the string.
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Finds the last occurrence of any of the characters within the string pointed to
by `s` of length `count` within the string before or at the index `pos`,
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where `count` is `traits_type::length(s)`.
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@par Complexity
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Linear.
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@return The index corrosponding to the last occurrence
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of any of the characters in `{s, s + count)` within `{begin(), begin() + pos}`
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if it exists, and @ref npos otherwise.
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@param s The characters to search for.
@param pos The index to stop searching at. The default argument for
this parameter is @ref npos.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_of(
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const_pointer s,
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size_type pos = npos) const noexcept
{
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return find_last_of(s, pos, traits_type::length(s));
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}
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/** Find the last occurrence of a character within the string.
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Finds the last occurrence of `c` within the string
before or at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the last occurrence of `c` within
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`{begin(), begin() + pos}` if it exists, and @ref npos otherwise.
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@param c The character to search for.
@param pos The index to stop searching at. The default argument
for this parameter is @ref npos.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_of(
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value_type c,
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size_type pos = npos) const noexcept
{
return find_last_of(&c, pos, 1);
}
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/** Find the first occurrence of a character not within the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and finds
the first character that is not within `sv`, starting at the index `pos`.
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@par Complexity
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Linear.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return The index corrosponding to the first occurrence of
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a character that is not in `{sv.begin(), sv.end())` within
`{begin() + pos, end())` if it exists, and @ref npos otherwise.
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@param t The characters to ignore.
@param pos The index to start searching at. The default argument
for this parameter is `0`.
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_not_of(
const T& t,
size_type pos = 0) const
noexcept(detail::is_nothrow_convertible<const T&, string_view_type>::value)
{
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const string_view_type sv = t;
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return find_first_not_of(sv.data(), pos, sv.size());
}
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/** Find the first occurrence of any of the characters not within the string.
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Finds the first occurrence of a character that is not within `str`
within the string starting at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first character of `{begin() + pos, end())`
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that is not within `str` if it exists, and @ref npos otherwise.
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@param str The characters to ignore.
@param pos The index to start searching at. The default argument for
this parameter is `0`.
*/
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_not_of(
const basic_static_string<M, CharT, Traits>& str,
size_type pos = 0) const noexcept
{
return find_first_not_of(str.data(), pos, str.size());
}
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/** Find the first occurrence of any of the characters not within the string.
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Finds the first occurrence of a character that is not within the string
pointed to by `s` within the string starting at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first character of `{begin() + pos, end())`
that is not within `{s, s + n)` if it exists, and @ref npos otherwise.
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@param s The characters to ignore.
@param pos The index to start searching at. The default argument for
this parameter is `0`.
@param n The length of the characters to ignore.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_not_of(
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const_pointer s,
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size_type pos,
size_type n) const noexcept;
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/** Find the first occurrence of any of the characters not within the string.
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Finds the first occurrence of a character that is not within the string
pointed to by `s` of length `count` within the string starting
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at the index `pos`, where `count` is `traits_type::length(s)`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first character of `{begin() + pos, end())`
that is not within `{s, s + count)` if it exists, and @ref npos otherwise.
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@param s The characters to ignore.
@param pos The index to start searching at. The default argument for
this parameter is `0`.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_not_of(
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const_pointer s,
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size_type pos = 0) const noexcept
{
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return find_first_not_of(s, pos, traits_type::length(s));
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}
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/** Find the first occurrence of a character not equal to `c`.
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Finds the first occurrence of a character that is not equal
to `c`.
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@par Complexity
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Linear.
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@return The index corrosponding to the first character of `{begin() + pos, end())`
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that is not equal to `c` if it exists, and @ref npos otherwise.
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@param c The character to ignore.
@param pos The index to start searching at. The default argument for
this parameter is `0`.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_first_not_of(
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value_type c,
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size_type pos = 0) const noexcept
{
return find_first_not_of(&c, pos, 1);
}
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/** Find the last occurrence of a character not within the string.
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Constructs a temporary `string_view_type` object `sv` from `t`, and finds
the last character that is not within `sv`, starting at the index `pos`.
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@par Complexity
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Linear.
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@tparam T The type of the object to convert.
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@par Constraints
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`std::is_convertible<const T&, string_view>::value &&
!std::is_convertible<const T&, const CharT*>::value`.
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@return The index corrosponding to the last occurrence of
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a character that is not in `{sv.begin(), sv.end())` within
`{begin(), begin() + pos}` if it exists, and @ref npos otherwise.
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@param t The characters to ignore.
@param pos The index to start searching at. The default argument
for this parameter is @ref npos.
*/
template<typename T
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#ifndef BOOST_STATIC_STRING_DOCS
, typename = detail::enable_if_viewable_t<T, CharT, Traits>
#endif
>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_not_of(
const T& t,
size_type pos = npos) const
noexcept(detail::is_nothrow_convertible<const T&, string_view_type>::value)
{
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const string_view_type sv = t;
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return find_last_not_of(sv.data(), pos, sv.size());
}
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/** Find the last occurrence of a character not within the string.
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Finds the last occurrence of a character that is not within `str`
within the string before or at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the last character of `{begin(), begin() + pos}`
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that is not within `str` if it exists, and @ref npos otherwise.
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@param str The characters to ignore.
@param pos The index to stop searching at. The default argument for
this parameter is @ref npos.
*/
template<size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_not_of(
const basic_static_string<M, CharT, Traits>& str,
size_type pos = npos) const noexcept
{
return find_last_not_of(str.data(), pos, str.size());
}
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/** Find the last occurrence of a character not within the string.
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Finds the last occurrence of a character that is not within the
string pointed to by `s` within the string before or at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the last character of `{begin(), begin() + pos}`
that is not within `{s, s + n)` if it exists, and @ref npos otherwise.
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@param s The characters to ignore.
@param pos The index to stop searching at. The default argument for
this parameter is @ref npos.
@param n The length of the characters to ignore.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_not_of(
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const_pointer s,
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size_type pos,
size_type n) const noexcept;
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/** Find the last occurrence of a character not within the string.
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Finds the last occurrence of a character that is not within the
string pointed to by `s` of length `count` within the string
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before or at the index `pos`, where `count` is `traits_type::length(s)`.
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@par Complexity
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Linear.
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@return The index corrosponding to the last character of `{begin(), begin() + pos}`
that is not within `{s, s + count)` if it exists, and @ref npos otherwise.
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@param s The characters to ignore.
@param pos The index to stop searching at. The default argument for
this parameter is @ref npos.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_not_of(
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const_pointer s,
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size_type pos = npos) const noexcept
{
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return find_last_not_of(s, pos, traits_type::length(s));
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}
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/** Find the last occurrence of a character not equal to `c`.
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Finds the last occurrence of a character that is not equal
to `c` before or at the index `pos`.
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@par Complexity
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Linear.
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@return The index corrosponding to the last character of `{begin(), begin() + pos}`
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that is not equal to `c` if it exists, and @ref npos otherwise.
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@param c The character to ignore.
@param pos The index to start searching at. The default argument for
this parameter is @ref npos.
*/
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
find_last_not_of(
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value_type c,
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size_type pos = npos) const noexcept
{
return find_last_not_of(&c, pos, 1);
}
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/** Return whether the string begins with a string.
Returns `true` if the string begins with `s`, and `false` otherwise.
@par Complexity
Linear.
@param s The string view to check for.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
bool
starts_with(
string_view_type s) const noexcept
{
const size_type len = s.size();
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return size() >= len && !traits_type::compare(data(), s.data(), len);
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}
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/** Return whether the string begins with a character.
Returns `true` if the string begins with `c`, and `false` otherwise.
@par Complexity
Constant.
@param c The character to check for.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
bool
starts_with(
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value_type c) const noexcept
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{
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return !empty() && traits_type::eq(front(), c);
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}
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/** Return whether the string begins with a string.
Returns `true` if the string begins with the string
pointed to be `s` of length `traits_type::length(s)`,
and `false` otherwise.
@par Complexity
Linear.
@param s The string to check for.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
bool
starts_with(
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const_pointer s) const noexcept
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{
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const size_type len = traits_type::length(s);
return size() >= len && !traits_type::compare(data(), s, len);
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}
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/** Return whether the string ends with a string.
Returns `true` if the string ends with `s`, and `false` otherwise.
@par Complexity
Linear.
@param s The string view to check for.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
bool
ends_with(
string_view_type s) const noexcept
{
const size_type len = s.size();
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return size() >= len && !traits_type::compare(data() + (size() - len), s.data(), len);
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}
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/** Return whether the string ends with a character.
Returns `true` if the string ends with `c`, and `false` otherwise.
@par Complexity
Constant.
@param c The character to check for.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
bool
ends_with(
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value_type c) const noexcept
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{
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return !empty() && traits_type::eq(back(), c);
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}
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/** Return whether the string ends with a string.
Returns `true` if the string ends with the string
pointed to be `s` of length `traits_type::length(s)`,
and `false` otherwise.
@par Complexity
Linear.
@param s The string to check for.
*/
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
bool
ends_with(
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const_pointer s) const noexcept
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{
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const size_type len = traits_type::length(s);
return size() >= len && !traits_type::compare(data() + (size() - len), s, len);
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}
private:
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
term() noexcept
{
this->term_impl();
return *this;
}
BOOST_STATIC_STRING_CPP14_CONSTEXPR
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basic_static_string&
assign_char(value_type ch, std::true_type) noexcept
{
this->set_size(1);
traits_type::assign(data()[0], ch);
return term();
}
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BOOST_STATIC_STRING_NORETURN
basic_static_string&
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assign_char(value_type, std::false_type)
{
BOOST_STATIC_STRING_THROW(
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std::length_error("max_size() == 0"));
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// This eliminates any potential warnings
#ifdef BOOST_STATIC_STRING_NO_NORETURN
return *this;
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#endif
}
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// Returns the size of data read from input iterator. Read data begins at data() + size() + 1.
template<typename InputIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
read_back(
bool overwrite_null,
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InputIterator first,
InputIterator last);
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace_unchecked(
size_type pos,
size_type n1,
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const_pointer s,
size_type n2)
{
BOOST_STATIC_STRING_THROW_IF(
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pos > size(), std::out_of_range("pos > size()"));
return replace_unchecked(data() + pos, data() + pos + capped_length(pos, n1), s, n2);
}
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
replace_unchecked(
const_iterator i1,
const_iterator i2,
const_pointer s,
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size_type n2);
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
insert_unchecked(
size_type index,
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const_pointer s,
size_type count)
{
BOOST_STATIC_STRING_THROW_IF(
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index > size(), std::out_of_range("index > size()"));
insert_unchecked(data() + index, s, count);
return *this;
}
BOOST_STATIC_STRING_CPP14_CONSTEXPR
iterator
insert_unchecked(
const_iterator pos,
const_pointer s,
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size_type count);
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string&
assign_unchecked(
const_pointer s,
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size_type count) noexcept
{
this->set_size(count);
traits_type::copy(data(), s, size() + 1);
return *this;
}
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
size_type
capped_length(
size_type index,
size_type length) const
{
BOOST_STATIC_STRING_THROW_IF(
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index > size(), std::out_of_range("index > size()"));
return (std::min)(length, size() - index);
}
};
//------------------------------------------------------------------------------
//
// Non-member functions
//
//------------------------------------------------------------------------------
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator==(
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const basic_static_string<N, CharT, Traits>& lhs,
const basic_static_string<M, CharT, Traits>& rhs)
{
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return lhs.compare(rhs) == 0;
}
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator!=(
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const basic_static_string<N, CharT, Traits>& lhs,
const basic_static_string<M, CharT, Traits>& rhs)
{
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return lhs.compare(rhs) != 0;
}
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator<(
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const basic_static_string<N, CharT, Traits>& lhs,
const basic_static_string<M, CharT, Traits>& rhs)
{
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return lhs.compare(rhs) < 0;
}
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator<=(
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const basic_static_string<N, CharT, Traits>& lhs,
const basic_static_string<M, CharT, Traits>& rhs)
{
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return lhs.compare(rhs) <= 0;
}
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator>(
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const basic_static_string<N, CharT, Traits>& lhs,
const basic_static_string<M, CharT, Traits>& rhs)
{
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return lhs.compare(rhs) > 0;
}
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator>=(
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const basic_static_string<N, CharT, Traits>& lhs,
const basic_static_string<M, CharT, Traits>& rhs)
{
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return lhs.compare(rhs) >= 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator==(
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const CharT* lhs,
const basic_static_string<N, CharT, Traits>& rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs, Traits::length(lhs),
rhs.data(), rhs.size()) == 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator==(
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const basic_static_string<N, CharT, Traits>& lhs,
const CharT* rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs.data(), lhs.size(),
rhs, Traits::length(rhs)) == 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator!=(
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const CharT* lhs,
const basic_static_string<N, CharT, Traits>& rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs, Traits::length(lhs),
rhs.data(), rhs.size()) != 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator!=(
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const basic_static_string<N, CharT, Traits>& lhs,
const CharT* rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs.data(), lhs.size(),
rhs, Traits::length(rhs)) != 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator<(
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const CharT* lhs,
const basic_static_string<N, CharT, Traits>& rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs, Traits::length(lhs),
rhs.data(), rhs.size()) < 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator<(
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const basic_static_string<N, CharT, Traits>& lhs,
const CharT* rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs.data(), lhs.size(),
rhs, Traits::length(rhs)) < 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator<=(
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const CharT* lhs,
const basic_static_string<N, CharT, Traits>& rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs, Traits::length(lhs),
rhs.data(), rhs.size()) <= 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator<=(
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const basic_static_string<N, CharT, Traits>& lhs,
const CharT* rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs.data(), lhs.size(),
rhs, Traits::length(rhs)) <= 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator>(
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const CharT* lhs,
const basic_static_string<N, CharT, Traits>& rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs, Traits::length(lhs),
rhs.data(), rhs.size()) > 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator>(
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const basic_static_string<N, CharT, Traits>& lhs,
const CharT* rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs.data(), lhs.size(),
rhs, Traits::length(rhs)) > 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator>=(
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const CharT* lhs,
const basic_static_string<N, CharT, Traits>& rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs, Traits::length(lhs),
rhs.data(), rhs.size()) >= 0;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
bool
operator>=(
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const basic_static_string<N, CharT, Traits>& lhs,
const CharT* rhs)
{
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return detail::lexicographical_compare<CharT, Traits>(
lhs.data(), lhs.size(),
rhs, Traits::length(rhs)) >= 0;
}
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
basic_static_string<N + M, CharT, Traits>
operator+(
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const basic_static_string<N, CharT, Traits>& lhs,
const basic_static_string<M, CharT, Traits>& rhs)
{
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return basic_static_string<N + M, CharT, Traits>(lhs) += rhs;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
basic_static_string<N + 1, CharT, Traits>
operator+(
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const basic_static_string<N, CharT, Traits>& lhs,
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CharT rhs)
{
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return basic_static_string<N + 1, CharT, Traits>(lhs) += rhs;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
basic_static_string<N + 1, CharT, Traits>
operator+(
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CharT lhs,
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const basic_static_string<N, CharT, Traits>& rhs)
{
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// The cast to std::size_t is needed here since 0 is a null pointer constant
return basic_static_string<N + 1, CharT, Traits>(rhs).insert(
std::size_t(0), 1, lhs);
}
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// Add a null-terminated character array to a string.
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
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basic_static_string<(N + M) - 1, CharT, Traits>
operator+(
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const basic_static_string<N, CharT, Traits>& lhs,
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const CharT(&rhs)[M])
{
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// Subtract 1 to account for the null terminator, as "hello" is a char[6]
return basic_static_string<(N + M) - 1, CharT, Traits>(lhs).append(+rhs, M - 1);
}
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// Add a string to a null-terminated character array.
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
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basic_static_string<(N + M) - 1, CharT, Traits>
operator+(
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const CharT(&lhs)[N],
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const basic_static_string<M, CharT, Traits>& rhs)
{
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// Subtract 1 to account for the null terminator, as "hello" is a char[6]
// The cast to std::size_t is needed here since 0 is a null pointer constant
return basic_static_string<(N + M) - 1, CharT, Traits>(rhs).insert(
std::size_t(0), +lhs, N - 1);
}
//------------------------------------------------------------------------------
//
// swap
//
//------------------------------------------------------------------------------
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template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
void
swap(
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basic_static_string<N, CharT, Traits>& lhs,
basic_static_string<N, CharT, Traits>& rhs)
{
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lhs.swap(rhs);
}
template<
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std::size_t N, std::size_t M,
typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
inline
void
swap(
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basic_static_string<N, CharT, Traits>& lhs,
basic_static_string<M, CharT, Traits>& rhs)
{
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lhs.swap(rhs);
}
//------------------------------------------------------------------------------
//
// Input/Output
//
//------------------------------------------------------------------------------
template<std::size_t N, typename CharT, typename Traits>
inline
std::basic_ostream<CharT, Traits>&
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operator<<(
std::basic_ostream<CharT, Traits>& os,
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const basic_static_string<N, CharT, Traits>& s)
{
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return os << basic_string_view<CharT, Traits>(s.data(), s.size());
}
//------------------------------------------------------------------------------
//
// Numeric conversions
//
//------------------------------------------------------------------------------
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// Signed overloads have a + 2, one for the missing digit,
// and one for the sign.
// Unsigned overloads have a + 1, for the missing digit.
// Floating point overloads have a + 4, for the sign
// of the integral part, sign of the exponent, the 'e',
// and the decimal.
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/// Converts `value` to a `static_string`
static_string<std::numeric_limits<int>::digits10 + 2>
inline
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to_static_string(int value) noexcept
{
return detail::to_static_string_int_impl<
std::numeric_limits<int>::digits10 + 2>(value);
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}
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/// Converts `value` to a `static_string`
static_string<std::numeric_limits<long>::digits10 + 2>
inline
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to_static_string(long value) noexcept
{
return detail::to_static_string_int_impl<
std::numeric_limits<long>::digits10 + 2>(value);
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}
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/// Converts `value` to a `static_string`
static_string<std::numeric_limits<long long>::digits10 + 2>
inline
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to_static_string(long long value) noexcept
{
return detail::to_static_string_int_impl<
std::numeric_limits<long long>::digits10 + 2>(value);
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}
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/// Converts `value` to a `static_string`
static_string<std::numeric_limits<unsigned int>::digits10 + 1>
inline
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to_static_string(unsigned int value) noexcept
{
return detail::to_static_string_int_impl<
std::numeric_limits<unsigned int>::digits10 + 1>(value);
}
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/// Converts `value` to a `static_string`
static_string<std::numeric_limits<unsigned long>::digits10 + 1>
inline
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to_static_string(unsigned long value) noexcept
{
return detail::to_static_string_int_impl<
std::numeric_limits<unsigned long>::digits10 + 1>(value);
}
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/// Converts `value` to a `static_string`
static_string<std::numeric_limits<unsigned long long>::digits10 + 1>
inline
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to_static_string(unsigned long long value) noexcept
{
return detail::to_static_string_int_impl<
std::numeric_limits<unsigned long long>::digits10 + 1>(value);
}
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/// Converts `value` to a `static_string`
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static_string<std::numeric_limits<float>::max_digits10 + 4>
inline
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to_static_string(float value) noexcept
{
return detail::to_static_string_float_impl<
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std::numeric_limits<float>::max_digits10 + 4>(value);
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}
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/// Converts `value` to a `static_string`
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static_string<std::numeric_limits<double>::max_digits10 + 4>
inline
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to_static_string(double value) noexcept
{
return detail::to_static_string_float_impl<
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std::numeric_limits<double>::max_digits10 + 4>(value);
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}
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/// Converts `value` to a `static_string`
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static_string<std::numeric_limits<long double>::max_digits10 + 4>
inline
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to_static_string(long double value) noexcept
{
return detail::to_static_string_float_impl<
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std::numeric_limits<long double>::max_digits10 + 4>(value);
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}
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/// Converts `value` to a `static_wstring`
static_wstring<std::numeric_limits<int>::digits10 + 2>
inline
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to_static_wstring(int value) noexcept
{
return detail::to_static_wstring_int_impl<
std::numeric_limits<int>::digits10 + 2>(value);
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}
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/// Converts `value` to a `static_wstring`
static_wstring<std::numeric_limits<long>::digits10 + 2>
inline
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to_static_wstring(long value) noexcept
{
return detail::to_static_wstring_int_impl<
std::numeric_limits<long>::digits10 + 2>(value);
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}
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/// Converts `value` to a `static_wstring`
static_wstring<std::numeric_limits<long long>::digits10 + 2>
inline
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to_static_wstring(long long value) noexcept
{
return detail::to_static_wstring_int_impl<
std::numeric_limits<long long>::digits10 + 2>(value);
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}
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/// Converts `value` to a `static_wstring`
static_wstring<std::numeric_limits<unsigned int>::digits10 + 1>
inline
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to_static_wstring(unsigned int value) noexcept
{
return detail::to_static_wstring_int_impl<
std::numeric_limits<unsigned int>::digits10 + 1>(value);
}
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/// Converts `value` to a `static_wstring`
static_wstring<std::numeric_limits<unsigned long>::digits10 + 1>
inline
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to_static_wstring(unsigned long value) noexcept
{
return detail::to_static_wstring_int_impl<
std::numeric_limits<unsigned long>::digits10 + 1>(value);
}
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/// Converts `value` to a `static_wstring`
static_wstring<std::numeric_limits<unsigned long long>::digits10 + 1>
inline
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to_static_wstring(unsigned long long value) noexcept
{
return detail::to_static_wstring_int_impl<
std::numeric_limits<unsigned long long>::digits10 + 1>(value);
}
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/// Converts `value` to a `static_wstring`
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static_wstring<std::numeric_limits<float>::max_digits10 + 4>
inline
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to_static_wstring(float value) noexcept
{
return detail::to_static_wstring_float_impl<
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std::numeric_limits<float>::max_digits10 + 4>(value);
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}
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/// Converts `value` to a `static_wstring`
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static_wstring<std::numeric_limits<double>::max_digits10 + 4>
inline
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to_static_wstring(double value) noexcept
{
return detail::to_static_wstring_float_impl<
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std::numeric_limits<double>::max_digits10 + 4>(value);
2020-02-01 16:30:23 -05:00
}
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/// Converts `value` to a `static_wstring`
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static_wstring<std::numeric_limits<long double>::max_digits10 + 4>
inline
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to_static_wstring(long double value) noexcept
{
return detail::to_static_wstring_float_impl<
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std::numeric_limits<long double>::max_digits10 + 4>(value);
2020-02-01 16:30:23 -05:00
}
//------------------------------------------------------------------------------
//
// Deduction Guides
//
//------------------------------------------------------------------------------
#ifdef BOOST_STATIC_STRING_USE_DEDUCT
template<std::size_t N, typename CharT>
basic_static_string(CharT(&)[N]) ->
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basic_static_string<N, CharT, std::char_traits<CharT>>;
#endif
//------------------------------------------------------------------------------
//
// Hashing
//
//------------------------------------------------------------------------------
#ifndef BOOST_STATIC_STRING_STANDALONE
/// hash_value overload for Boost.Container_Hash
template <std::size_t N,
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typename CharT,
typename Traits>
std::size_t
hash_value(
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const basic_static_string<N, CharT, Traits>& str)
{
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return boost::hash_range(str.begin(), str.end());
}
#endif
} // static_strings
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//------------------------------------------------------------------------------
//
// using Declarations
//
//------------------------------------------------------------------------------
using static_strings::static_string;
using static_strings::static_wstring;
using static_strings::static_u16string;
using static_strings::static_u32string;
} // boost
/// std::hash partial specialization for basic_static_string
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namespace std {
template<std::size_t N, typename CharT, typename Traits>
struct hash<
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#ifdef BOOST_STATIC_STRING_DOCS
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basic_static_string
#else
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boost::static_strings::basic_static_string<N, CharT, Traits>
#endif
>
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{
std::size_t
operator()(
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const boost::static_strings::basic_static_string<N, CharT, Traits>& str) const noexcept
{
#ifndef BOOST_STATIC_STRING_STANDALONE
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return boost::hash_range(str.begin(), str.end());
#else
using view_type = typename
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boost::static_strings::basic_string_view<CharT, Traits>;
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return std::hash<view_type>()(view_type(str.data(), str.size()));
#endif
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}
};
} // std
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//--------------------------------------------------------------------------
//
// Implementation
//
//--------------------------------------------------------------------------
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#ifndef BOOST_STATIC_STRING_DOCS
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namespace boost {
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namespace static_strings {
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template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
basic_static_string<N, CharT, Traits>::
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basic_static_string(const_pointer s)
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{
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const auto count = traits_type::length(s);
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BOOST_STATIC_STRING_THROW_IF(count > max_size(),
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std::length_error("count > max_size()"));
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traits_type::copy(data(), s, count + 1);
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this->set_size(count);
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
assign(
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size_type count,
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value_type ch) ->
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basic_static_string&
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{
BOOST_STATIC_STRING_THROW_IF(count > max_size(),
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std::length_error("count > max_size()"));
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this->set_size(count);
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traits_type::assign(data(), size(), ch);
return term();
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}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
assign(
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const_pointer s,
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size_type count) ->
basic_static_string&
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{
BOOST_STATIC_STRING_THROW_IF(count > max_size(),
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std::length_error("count > max_size()"));
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this->set_size(count);
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traits_type::move(data(), s, size());
return term();
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}
template<std::size_t N, typename CharT, typename Traits>
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template<typename InputIterator>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
assign(
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InputIterator first,
InputIterator last) ->
typename std::enable_if<
detail::is_input_iterator<InputIterator>::value,
basic_static_string&>::type
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{
auto ptr = data();
for (std::size_t i = 0; first != last; ++first, ++ptr, ++i)
{
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if (i >= max_size())
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{
this->set_size(i);
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term();
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BOOST_STATIC_STRING_THROW(std::length_error("n > max_size()"));
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}
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traits_type::assign(*ptr, *first);
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}
this->set_size(ptr - data());
return term();
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}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
insert(
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const_iterator pos,
size_type count,
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value_type ch) ->
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iterator
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{
const auto curr_size = size();
const auto curr_data = data();
BOOST_STATIC_STRING_THROW_IF(
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count > max_size() - curr_size, std::length_error("count() > max_size() - size()"));
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const auto index = pos - curr_data;
traits_type::move(&curr_data[index + count], &curr_data[index], curr_size - index + 1);
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traits_type::assign(&curr_data[index], count, ch);
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this->set_size(curr_size + count);
return &curr_data[index];
}
template<std::size_t N, typename CharT, typename Traits>
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template<typename ForwardIterator>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
insert(
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const_iterator pos,
ForwardIterator first,
ForwardIterator last) ->
typename std::enable_if<
detail::is_forward_iterator<
ForwardIterator>::value, iterator>::type
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{
const auto curr_size = size();
const auto curr_data = data();
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const std::size_t count = detail::distance(first, last);
const std::size_t index = pos - curr_data;
const auto first_addr = &*first;
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BOOST_STATIC_STRING_THROW_IF(
count > max_size() - curr_size, std::length_error("count > max_size() - size()"));
const bool inside = detail::ptr_in_range(curr_data, curr_data + curr_size, first_addr);
if (!inside || (inside && (first_addr + count <= pos)))
{
traits_type::move(&curr_data[index + count], &curr_data[index], curr_size - index + 1);
detail::copy_with_traits<Traits>(first, last, &curr_data[index]);
}
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else
{
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const size_type offset = first_addr - curr_data;
traits_type::move(&curr_data[index + count], &curr_data[index], curr_size - index + 1);
if (offset < index)
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{
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const size_type diff = index - offset;
traits_type::copy(&curr_data[index], &curr_data[offset], diff);
traits_type::copy(&curr_data[index + diff], &curr_data[index + count], count - diff);
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}
else
{
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traits_type::copy(&curr_data[index], &curr_data[offset + count], count);
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}
}
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this->set_size(curr_size + count);
return curr_data + index;
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}
template<std::size_t N, typename CharT, typename Traits>
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template<typename InputIterator>
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BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
insert(
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const_iterator pos,
InputIterator first,
InputIterator last) ->
typename std::enable_if<
detail::is_input_iterator<
InputIterator>::value &&
!detail::is_forward_iterator<
InputIterator>::value, iterator>::type
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{
const auto curr_size = size();
const auto curr_data = data();
const auto count = read_back(false, first, last);
const std::size_t index = pos - curr_data;
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std::rotate(&curr_data[index], &curr_data[curr_size + 1], &curr_data[curr_size + count + 1]);
this->set_size(curr_size + count);
return curr_data + index;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
erase(
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const_iterator first,
const_iterator last) ->
iterator
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{
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const auto curr_data = data();
const std::size_t index = first - curr_data;
traits_type::move(&curr_data[index], last, (end() - last) + 1);
this->set_size(size() - std::size_t(last - first));
return curr_data + index;
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}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
basic_static_string<N, CharT, Traits>::
push_back(
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value_type ch)
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{
const auto curr_size = size();
BOOST_STATIC_STRING_THROW_IF(
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curr_size >= max_size(), std::length_error("size() >= max_size()"));
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traits_type::assign(data()[curr_size], ch);
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this->set_size(curr_size + 1);
term();
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
append(
size_type count,
value_type ch) ->
basic_static_string&
{
const auto curr_size = size();
BOOST_STATIC_STRING_THROW_IF(
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count > max_size() - curr_size, std::length_error("count > max_size() - size()"));
traits_type::assign(end(), count, ch);
this->set_size(curr_size + count);
return term();
}
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template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
append(
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const_pointer s,
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size_type count) ->
basic_static_string&
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{
const auto curr_size = size();
BOOST_STATIC_STRING_THROW_IF(
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count > max_size() - curr_size, std::length_error("count > max_size() - size()"));
traits_type::copy(end(), s, count);
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this->set_size(curr_size + count);
return term();
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}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
basic_static_string<N, CharT, Traits>::
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resize(size_type n, value_type c)
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{
BOOST_STATIC_STRING_THROW_IF(
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n > max_size(), std::length_error("n > max_size()"));
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const auto curr_size = size();
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if(n > curr_size)
traits_type::assign(data() + curr_size, n - curr_size, c);
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this->set_size(n);
term();
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
basic_static_string<N, CharT, Traits>::
swap(basic_static_string& s) noexcept
{
const auto curr_size = size();
basic_static_string tmp(s);
s.set_size(curr_size);
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traits_type::copy(&s.data()[0], data(), curr_size + 1);
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this->set_size(tmp.size());
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traits_type::copy(data(), tmp.data(), size() + 1);
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}
template<std::size_t N, typename CharT, typename Traits>
template<std::size_t M>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
void
basic_static_string<N, CharT, Traits>::
swap(basic_static_string<M, CharT, Traits>& s)
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{
const auto curr_size = size();
BOOST_STATIC_STRING_THROW_IF(
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curr_size > s.max_size(), std::length_error("size() > s.max_size()"));
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BOOST_STATIC_STRING_THROW_IF(
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s.size() > max_size(), std::length_error("s.size() > max_size()"));
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basic_static_string tmp(s);
s.set_size(curr_size);
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traits_type::copy(&s.data()[0], data(), curr_size + 1);
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this->set_size(tmp.size());
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traits_type::copy(data(), &tmp.data()[0], size() + 1);
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}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
replace(
const_iterator i1,
const_iterator i2,
size_type n,
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value_type c) ->
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basic_static_string<N, CharT, Traits>&
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{
const auto curr_size = size();
const auto curr_data = data();
const std::size_t n1 = i2 - i1;
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BOOST_STATIC_STRING_THROW_IF(
n > max_size() ||
curr_size - n1 >= max_size() - n,
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std::length_error("replaced string exceeds max_size()"));
const auto pos = i1 - curr_data;
traits_type::move(&curr_data[pos + n], i2, (end() - i2) + 1);
traits_type::assign(&curr_data[pos], n, c);
this->set_size((curr_size - n1) + n);
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return *this;
}
template<std::size_t N, typename CharT, typename Traits>
template<typename ForwardIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
replace(
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const_iterator i1,
const_iterator i2,
ForwardIterator j1,
ForwardIterator j2) ->
typename std::enable_if<
detail::is_forward_iterator<ForwardIterator>::value,
basic_static_string<N, CharT, Traits>&>::type
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{
const auto curr_size = size();
const auto curr_data = data();
const auto first_addr = &*j1;
const std::size_t n1 = i2 - i1;
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const std::size_t n2 = detail::distance(j1, j2);
const std::size_t pos = i1 - curr_data;
BOOST_STATIC_STRING_THROW_IF(
n2 > max_size() ||
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curr_size - (std::min)(n1, curr_size - pos) >= max_size() - n2,
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std::length_error("replaced string exceeds max_size()"));
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const bool inside = detail::ptr_in_range(curr_data, curr_data + curr_size, first_addr);
if (inside && first_addr == i1 && n1 == n2)
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return *this;
// Short circuit evaluation ensures that the pointer arithmetic is valid
if (!inside || (inside && (first_addr + n2 <= i1)))
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{
// source outside
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traits_type::move(&curr_data[pos + n2], &curr_data[pos + n1], curr_size - pos - n1 + 1);
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detail::copy_with_traits<Traits>(j1, j2, &curr_data[pos]);
}
else
{
// source inside
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const size_type offset = first_addr - curr_data;
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if (n2 >= n1)
{
// grow/unchanged
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const size_type diff = offset <= pos + n1 ? (std::min)((pos + n1) - offset, n2) : 0;
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// shift all right of splice point by n2 - n1 to the right
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traits_type::move(&curr_data[pos + n2], &curr_data[pos + n1], curr_size - pos - n1 + 1);
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// copy all before splice point
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traits_type::move(&curr_data[pos], &curr_data[offset], diff);
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// copy all after splice point
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traits_type::move(&curr_data[pos + diff], &curr_data[(offset - n1) + n2 + diff], n2 - diff);
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}
else
{
// shrink
// copy all elements into place
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traits_type::move(&curr_data[pos], &curr_data[offset], n2);
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// shift all elements after splice point left
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traits_type::move(&curr_data[pos + n2], &curr_data[pos + n1], curr_size - pos - n1 + 1);
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}
}
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this->set_size((curr_size - n1) + n2);
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return *this;
}
template<std::size_t N, typename CharT, typename Traits>
template<typename InputIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
replace(
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const_iterator i1,
const_iterator i2,
InputIterator j1,
InputIterator j2) ->
typename std::enable_if<
detail::is_input_iterator<
InputIterator>::value &&
!detail::is_forward_iterator<
InputIterator>::value,
basic_static_string<N, CharT, Traits>&>::type
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{
const auto curr_size = size();
const auto curr_data = data();
const std::size_t n1 = detail::distance(i1, i2);
const std::size_t n2 = read_back(false, j1, j2);
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const std::size_t pos = i1 - curr_data;
BOOST_STATIC_STRING_THROW_IF(
n2 > max_size() ||
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curr_size - (std::min)(n1, curr_size - pos) >= max_size() - n2,
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std::length_error("replaced string exceeds max_size()"));
// Rotate to the correct order. [i2, end] will now start with the replaced string,
// continue to the existing string not being replaced, and end with a null terminator
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std::rotate(&curr_data[pos], &curr_data[curr_size + 1], &curr_data[curr_size + n2 + 1]);
// Move everything from the end of the splice point to the end of the rotated string to
// the begining of the splice point
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traits_type::move(&curr_data[pos + n2], &curr_data[pos + n2 + n1], ((curr_size - n1) + n2) - pos);
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this->set_size((curr_size - n1) + n2);
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return *this;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
find(
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const_pointer s,
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size_type pos,
size_type n) const noexcept ->
size_type
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{
const auto curr_size = size();
if (pos > curr_size || n > curr_size - pos)
return npos;
if (!n)
return pos;
const auto res = detail::search(data() + pos, data() + curr_size, s, s + n, traits_type::eq);
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return res == end() ? npos : detail::distance(data(), res);
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
rfind(
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const_pointer s,
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size_type pos,
size_type n) const noexcept ->
size_type
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{
const auto curr_size = size();
const auto curr_data = data();
if (curr_size < n)
return npos;
if (pos > curr_size - n)
pos = curr_size - n;
if (!n)
return pos;
for (auto sub = &curr_data[pos]; sub >= curr_data; --sub)
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if (!traits_type::compare(sub, s, n))
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return detail::distance(curr_data, sub);
return npos;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
find_first_of(
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const_pointer s,
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size_type pos,
size_type n) const noexcept ->
size_type
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{
const auto curr_data = data();
if (pos >= size() || !n)
return npos;
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const auto res = detail::find_first_of(&curr_data[pos], &curr_data[size()], s, &s[n], traits_type::eq);
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return res == end() ? npos : detail::distance(curr_data, res);
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
find_last_of(
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const_pointer s,
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size_type pos,
size_type n) const noexcept ->
size_type
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{
const auto curr_size = size();
if (!n)
return npos;
if (pos >= curr_size)
pos = 0;
else
pos = curr_size - (pos + 1);
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const auto res = detail::find_first_of(rbegin() + pos, rend(), s, &s[n], traits_type::eq);
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return res == rend() ? npos : curr_size - 1 - detail::distance(rbegin(), res);
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
find_first_not_of(
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const_pointer s,
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size_type pos,
size_type n) const noexcept ->
size_type
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{
if (pos >= size())
return npos;
if (!n)
return pos;
const auto res = detail::find_not_of<Traits>(data() + pos, data() + size(), s, n);
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return res == end() ? npos : detail::distance(data(), res);
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
find_last_not_of(
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const_pointer s,
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size_type pos,
size_type n) const noexcept ->
size_type
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{
const auto curr_size = size();
if (pos >= curr_size)
pos = curr_size - 1;
if (!n)
return pos;
pos = curr_size - (pos + 1);
const auto res = detail::find_not_of<Traits>(rbegin() + pos, rend(), s, n);
return res == rend() ? npos : curr_size - 1 - detail::distance(rbegin(), res);
}
template<std::size_t N, typename CharT, typename Traits>
template<typename InputIterator>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
read_back(
bool overwrite_null,
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InputIterator first,
InputIterator last) ->
size_type
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{
const auto curr_data = data();
auto new_size = size();
for (; first != last; ++first)
{
if (new_size >= max_size())
{
if (overwrite_null)
term();
BOOST_STATIC_STRING_THROW(
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std::length_error("count > max_size() - size()"));
}
traits_type::assign(curr_data[new_size++ + (!overwrite_null)], *first);
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}
return new_size - size();
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
replace_unchecked(
const_iterator i1,
const_iterator i2,
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const_pointer s,
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size_type n2) ->
basic_static_string&
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{
const auto curr_data = data();
const auto curr_size = size();
const std::size_t pos = i1 - curr_data;
const std::size_t n1 = i2 - i1;
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BOOST_STATIC_STRING_THROW_IF(
n2 > max_size() ||
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curr_size - (std::min)(n1, curr_size - pos) >= max_size() - n2,
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std::length_error("replaced string exceeds max_size()"));
traits_type::move(&curr_data[pos + n2], i2, (end() - i2) + 1);
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traits_type::copy(&curr_data[pos], s, n2);
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this->set_size((curr_size - n1) + n2);
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return *this;
}
template<std::size_t N, typename CharT, typename Traits>
BOOST_STATIC_STRING_CPP14_CONSTEXPR
auto
basic_static_string<N, CharT, Traits>::
insert_unchecked(
const_iterator pos,
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const_pointer s,
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size_type count) ->
iterator
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{
const auto curr_data = data();
const auto curr_size = size();
BOOST_STATIC_STRING_THROW_IF(
count > max_size() - curr_size,
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std::length_error("count > max_size() - size()"));
const std::size_t index = pos - curr_data;
traits_type::move(&curr_data[index + count], pos, (end() - pos) + 1);
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traits_type::copy(&curr_data[index], s, count);
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this->set_size(curr_size + count);
return curr_data + index;
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}
} // static_strings
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} // boost
#endif
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#endif