Implement constexpr int_to_ary.
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5 changed files with 258 additions and 1 deletions
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include/duckhandy/implem/reversed_sized_array_bt.hpp
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include/duckhandy/implem/reversed_sized_array_bt.hpp
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/* Copyright 2016, Michele Santullo
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* This file is part of "duckhandy".
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*
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* "duckhandy" is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* "duckhandy" is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with "duckhandy". If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef idFC25566D624140559C54B39FFFE52F04
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#define idFC25566D624140559C54B39FFFE52F04
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#include <array>
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#include <type_traits>
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#include <stdexcept>
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namespace dhandy {
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template <typename T, std::size_t S>
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class ReversedSizedArray {
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static_assert(S > 0, "This container requires size to be at least 1");
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static_assert(std::is_trivial<T>::value, "Only use this container with trivial types");
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public:
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using iterator = typename std::array<T, S>::iterator;
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constexpr ReversedSizedArray() = default;
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~ReversedSizedArray() = default;
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constexpr std::size_t size() const { return S - (m_curr + 1); }
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constexpr bool empty() const { return m_curr + 1 == S; }
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constexpr const T operator[] (std::size_t idx) const { if (idx >= size()) throw std::out_of_range("Out of bound array access"); return m_data[idx + m_curr + 1]; }
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constexpr T& operator[] (std::size_t idx) { if (idx >= size()) throw std::out_of_range("Out of bound array access"); return m_data[idx + m_curr + 1]; }
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constexpr void push_front (const T& itm) { if (size() == S) throw std::length_error("ReversedSizedArray is full"); m_data[m_curr--] = itm; }
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constexpr const T* data() const { return m_data.data() + m_curr + 1; }
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constexpr iterator begin() { return m_data.begin() + m_curr + 1; }
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constexpr iterator end() { return m_data.end(); }
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private:
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std::array<T, S> m_data {};
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std::size_t m_curr {S - 1};
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};
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} //namespace dhandy
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#endif
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include/duckhandy/int_conv.hpp
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include/duckhandy/int_conv.hpp
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/* Copyright 2016, 2017 Michele Santullo
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* This file is part of "duckhandy".
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*
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* "duckhandy" is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* "duckhandy" is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with "duckhandy". If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef id4754A95F12BE4ADEA65642A056A51907
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#define id4754A95F12BE4ADEA65642A056A51907
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#include "implem/reversed_sized_array_bt.hpp"
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#include "sprout/math/log10.hpp"
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#include "sprout/math/abs.hpp"
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#include "sprout/math/ceil.hpp"
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#include <cstddef>
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#include <array>
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#include <limits>
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#if !defined(INT_CONV_WITHOUT_HELPERS)
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# include <string_view>
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#endif
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namespace dhandy {
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namespace implem {
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template <typename I, std::size_t Base>
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constexpr std::size_t max_digit_count = static_cast<std::size_t>(
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sprout::ceil(
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sprout::log10(sprout::abs(static_cast<long double>(std::numeric_limits<I>::max()))) /
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sprout::log10(static_cast<long double>(Base))
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)
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);
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template <typename I, unsigned int Base>
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struct int_info {
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static_assert(Base > 1, "Invalid base");
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static const constexpr bool always_unsigned = (Base == 16 or Base == 2);
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static const constexpr bool is_signed = std::numeric_limits<I>::is_signed and not always_unsigned;
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static const constexpr std::size_t max_len = max_digit_count<typename std::conditional<always_unsigned, std::make_unsigned_t<I>, I>::type, Base> + is_signed;
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};
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template <typename I, unsigned int Base, bool Signed=int_info<I, Base>::is_signed>
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struct IsNegative { static constexpr bool check (I) { return false; } };
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template <typename I, unsigned int Base>
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struct IsNegative<I, Base, true> { static constexpr bool check (I in) { return in < I(0); } };
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template <typename I, unsigned int Base>
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constexpr bool is_negative (I in) {
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return IsNegative<I, Base>::check(in);
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}
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template <
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typename I,
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std::size_t Base,
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bool IsSigned=std::numeric_limits<I>::is_signed,
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bool ForceUnsigned=int_info<I, Base>::always_unsigned
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> struct NumberAdaptation {
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static const constexpr bool BecomesUnsigned = IsSigned and ForceUnsigned;
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using UnsignedType = typename std::make_unsigned<I>::type;
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using CastedType = typename std::conditional<BecomesUnsigned, UnsignedType, I>::type;
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template <typename L>
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static constexpr L abs(L in) { return (not BecomesUnsigned and std::numeric_limits<L>::is_signed and in < L(0) ? -in : in); }
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static constexpr CastedType cast (I in) { return static_cast<CastedType>(in); }
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};
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} //namespace implem
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template <typename C, C FirstLetter='a'>
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struct DefaultTranslator {
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static constexpr C to_digit (unsigned int num) {
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return (num <= 9 ?
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static_cast<C>(num + '0') :
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static_cast<C>(num + FirstLetter - 10)
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);
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}
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static constexpr C minus() { return '-'; }
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};
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template <typename I, unsigned int Base=10, typename Tr=DefaultTranslator<char>>
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constexpr inline ReversedSizedArray<std::decay_t<decltype(std::declval<Tr>().to_digit(1))>, implem::int_info<I, Base>::max_len + 1> int_to_ary (I in) {
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using RetType = ReversedSizedArray<std::decay_t<decltype(std::declval<Tr>().to_digit(1))>, implem::int_info<I, Base>::max_len + 1>;
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using Num = implem::NumberAdaptation<std::decay_t<I>, Base>;
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const bool was_negative = implem::is_negative<I, Base>(in);
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RetType arr;
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arr.push_front('\0');
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do {
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arr.push_front(Tr::to_digit(static_cast<int>(Num::abs(Num::cast(in)) % Base)));
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in = static_cast<I>(Num::cast(in) / static_cast<I>(Base));
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} while (in);
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if (was_negative)
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arr.push_front(Tr::minus());
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return arr;
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}
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#if !defined(INT_CONV_WITHOUT_HELPERS)
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template <typename T, std::size_t S>
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std::basic_string_view<T> to_string_view (const ReversedSizedArray<T, S>& ary) {
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return std::basic_string_view<T>(ary.data(), ary.size() - 1);
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}
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#endif
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} //namespace dhandy
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#endif
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