mirror of
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708 lines
25 KiB
C++
708 lines
25 KiB
C++
//
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// Created by orange on 6/11/2026.
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//
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#pragma once
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#include <bit>
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#include <cmath>
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#include <cstdint>
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#include <limits>
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#include <numbers>
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#include <type_traits>
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namespace omath::internal
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{
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// Embedded subset of GCE-Math 1.18.0.
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//
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// Original project:
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// GCE-Math: A C++ generalized constant expression-based math library
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// Copyright 2016-2024 Keith O'Hara
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// Licensed under the Apache License, Version 2.0.
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namespace math_detail
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{
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using uint_t = unsigned int;
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using llint_t = long long int;
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using ullint_t = unsigned long long int;
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template<class Type>
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using limits = std::numeric_limits<Type>;
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template<class Type>
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constexpr Type pi = std::numbers::pi_v<Type>;
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template<class Type>
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constexpr Type half_pi = std::numbers::pi_v<Type> / static_cast<Type>(2);
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type abs(const Type value) noexcept
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{
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return value == Type{0} ? Type{0} : value < Type{0} ? -value : value;
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr int sgn(const Type value) noexcept
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{
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return value > Type{0} ? 1 : value < Type{0} ? -1 : 0;
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}
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[[nodiscard]]
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constexpr bool is_odd(const llint_t value) noexcept
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{
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return (value & 1U) != 0;
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool is_nan(const Type value) noexcept
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{
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return value != value;
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool is_neginf(const Type value) noexcept
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{
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return value == -limits<Type>::infinity();
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool is_posinf(const Type value) noexcept
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{
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return value == limits<Type>::infinity();
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool is_inf(const Type value) noexcept
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{
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return is_neginf(value) || is_posinf(value);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool is_finite(const Type value) noexcept
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{
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return !is_nan(value) && !is_inf(value);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool any_nan(const Type x, const Type y) noexcept
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{
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return is_nan(x) || is_nan(y);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool any_inf(const Type x, const Type y) noexcept
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{
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return is_inf(x) || is_inf(y);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool all_finite(const Type x, const Type y) noexcept
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{
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return is_finite(x) && is_finite(y);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool signbit(const Type value) noexcept
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{
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if constexpr (std::is_same_v<Type, float>)
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return (std::bit_cast<std::uint32_t>(value) & 0x80000000U) != 0;
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else if constexpr (std::is_same_v<Type, double>)
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return (std::bit_cast<std::uint64_t>(value) & 0x8000000000000000ULL) != 0;
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else
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return value < Type{0};
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr bool neg_zero(const Type value) noexcept
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{
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return value == Type{0} && signbit(value);
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}
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template<class Type, class ExpType>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type pow_integral_compute(const Type base, const ExpType exp_term) noexcept;
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template<class Type, class ExpType>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type pow_integral_compute_recur(const Type base, const Type value, const ExpType exp_term) noexcept
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{
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return exp_term > ExpType{1}
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? is_odd(static_cast<llint_t>(exp_term))
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? pow_integral_compute_recur(base * base, value * base, exp_term / ExpType{2})
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: pow_integral_compute_recur(base * base, value, exp_term / ExpType{2})
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: exp_term == ExpType{1} ? value * base
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: value;
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}
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template<class Type, class ExpType>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type pow_integral_sgn_check(const Type base, const ExpType exp_term) noexcept
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{
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if constexpr (std::is_signed_v<ExpType>)
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return exp_term < ExpType{0} ? Type{1} / pow_integral_compute(base, -exp_term)
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: pow_integral_compute_recur(base, Type{1}, exp_term);
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else
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return pow_integral_compute_recur(base, Type{1}, exp_term);
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}
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template<class Type, class ExpType>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type pow_integral_compute(const Type base, const ExpType exp_term) noexcept
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{
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return exp_term == ExpType{3} ? base * base * base
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: exp_term == ExpType{2} ? base * base
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: exp_term == ExpType{1} ? base
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: exp_term == ExpType{0} ? Type{1}
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: exp_term == limits<ExpType>::min() ? Type{0}
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: exp_term == limits<ExpType>::max() ? limits<Type>::infinity()
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: pow_integral_sgn_check(base, exp_term);
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}
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template<class Type, class ExpType>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type pow_integral(const Type base, const ExpType exp_term) noexcept
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{
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return pow_integral_compute(base, exp_term);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type sqrt_recur(const Type x, const Type xn, const int count) noexcept
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{
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return abs(xn - x / xn) / (Type{1} + xn) < limits<Type>::min() ? xn
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: count < 100 ? sqrt_recur(x, Type{0.5} * (xn + x / xn), count + 1)
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: xn;
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type sqrt_simplify(const Type x, const Type m_val) noexcept
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{
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return x > Type{1e+08} ? sqrt_simplify(x / Type{1e+08}, Type{1e+04} * m_val)
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: x > Type{1e+06} ? sqrt_simplify(x / Type{1e+06}, Type{1e+03} * m_val)
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: x > Type{1e+04} ? sqrt_simplify(x / Type{1e+04}, Type{1e+02} * m_val)
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: x > Type{100} ? sqrt_simplify(x / Type{100}, Type{10} * m_val)
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: x > Type{4} ? sqrt_simplify(x / Type{4}, Type{2} * m_val)
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: m_val * sqrt_recur(x, x / Type{2}, 0);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type sqrt(const Type x) noexcept
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{
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return is_nan(x) ? limits<Type>::quiet_NaN()
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: x < Type{0} ? limits<Type>::quiet_NaN()
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: is_posinf(x) ? x
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: limits<Type>::min() > abs(x) ? Type{0}
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: limits<Type>::min() > abs(Type{1} - x) ? x
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: sqrt_simplify(x, Type{1});
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type floor_int(const Type x, const Type x_whole) noexcept
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{
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return x_whole - static_cast<Type>((x < Type{0}) && (x < x_whole));
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type floor_check_internal(const Type x) noexcept
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{
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if constexpr (std::is_same_v<Type, float>)
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return abs(x) >= 8388608.f ? x : floor_int(x, static_cast<float>(static_cast<int>(x)));
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else if constexpr (std::is_same_v<Type, double>)
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return abs(x) >= 4503599627370496. ? x : floor_int(x, static_cast<double>(static_cast<llint_t>(x)));
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else
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return abs(x) >= 9223372036854775808.l
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? x
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: static_cast<long double>(static_cast<ullint_t>(abs(x))) * sgn(x);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type floor(const Type x) noexcept
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{
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return is_nan(x) ? limits<Type>::quiet_NaN()
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: !is_finite(x) ? x
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: limits<Type>::min() > abs(x) ? x
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: floor_check_internal(x);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type trunc_int(const Type x) noexcept
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{
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return static_cast<Type>(static_cast<llint_t>(x));
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type trunc_check_internal(const Type x) noexcept
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{
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if constexpr (std::is_same_v<Type, float>)
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return abs(x) >= 8388608.f ? x : trunc_int(x);
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else if constexpr (std::is_same_v<Type, double>)
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return abs(x) >= 4503599627370496. ? x : trunc_int(x);
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else
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return abs(x) >= 9223372036854775808.l
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? x
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: static_cast<long double>(static_cast<ullint_t>(abs(x))) * sgn(x);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type trunc(const Type x) noexcept
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{
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return is_nan(x) ? limits<Type>::quiet_NaN()
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: !is_finite(x) ? x
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: limits<Type>::min() > abs(x) ? x
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: trunc_check_internal(x);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type fmod(const Type x, const Type y) noexcept
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{
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return any_nan(x, y) || !all_finite(x, y) || limits<Type>::min() > abs(y) ? limits<Type>::quiet_NaN()
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: x - trunc(x / y) * y;
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type tan_series_exp_long(const Type z) noexcept
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{
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return -Type{1} / z
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+ (z / Type{3}
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+ (pow_integral(z, 3) / Type{45}
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+ (Type{2} * pow_integral(z, 5) / Type{945} + pow_integral(z, 7) / Type{4725})));
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type tan_series_exp(const Type x) noexcept
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{
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return limits<Type>::min() > abs(x - half_pi<Type>) ? Type{1.633124e+16}
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: tan_series_exp_long(x - half_pi<Type>);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type tan_cf_recur(const Type xx, const int max_depth) noexcept
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{
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Type result = static_cast<Type>(2 * max_depth - 1);
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for (int depth = max_depth - 1; depth >= 1; --depth)
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result = static_cast<Type>(2 * depth - 1) - xx / result;
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return result;
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type tan_cf_main(const Type x) noexcept
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{
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return x > Type{1.55} && x < Type{1.60} ? tan_series_exp(x)
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: x > Type{1.4} ? x / tan_cf_recur(x * x, 45)
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: x > Type{1} ? x / tan_cf_recur(x * x, 35)
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: x / tan_cf_recur(x * x, 25);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type tan_begin(const Type x, const int count = 0) noexcept
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{
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return x > pi<Type> ? count > 1 ? limits<Type>::quiet_NaN()
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: tan_begin(x - pi<Type> * floor(x / pi<Type>), count + 1)
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: tan_cf_main(x);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type tan(const Type x) noexcept
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{
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return is_nan(x) ? limits<Type>::quiet_NaN()
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: limits<Type>::min() > abs(x) ? Type{0}
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: x < Type{0} ? -tan_begin(-x)
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: tan_begin(x);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type sin(const Type x) noexcept
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{
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return is_nan(x) ? limits<Type>::quiet_NaN()
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: limits<Type>::min() > abs(x) ? Type{0}
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: limits<Type>::min() > abs(x - half_pi<Type>) ? Type{1}
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: limits<Type>::min() > abs(x + half_pi<Type>) ? -Type{1}
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: limits<Type>::min() > abs(x - pi<Type>) ? Type{0}
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: limits<Type>::min() > abs(x + pi<Type>)
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? -Type{0}
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: (Type{2} * tan(x / Type{2})) / (Type{1} + tan(x / Type{2}) * tan(x / Type{2}));
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type cos(const Type x) noexcept
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{
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return is_nan(x) ? limits<Type>::quiet_NaN()
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: limits<Type>::min() > abs(x) ? Type{1}
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: limits<Type>::min() > abs(x - half_pi<Type>) ? Type{0}
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: limits<Type>::min() > abs(x + half_pi<Type>) ? Type{0}
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: limits<Type>::min() > abs(x - pi<Type>) ? -Type{1}
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: limits<Type>::min() > abs(x + pi<Type>)
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? -Type{1}
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: (Type{1} - tan(x / Type{2}) * tan(x / Type{2}))
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/ (Type{1} + tan(x / Type{2}) * tan(x / Type{2}));
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type atan_series_order_calc(const Type xx, const Type x_pow, const uint_t order) noexcept
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{
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return Type{1} / (static_cast<Type>((order - 1) * 4 - 1) * x_pow)
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- Type{1} / (static_cast<Type>((order - 1) * 4 + 1) * x_pow * xx);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type atan_series_order(const Type x, const uint_t order_begin, const uint_t max_order) noexcept
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{
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if (max_order == 1)
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return half_pi<Type> - Type{1} / x;
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const Type xx = x * x;
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Type result = atan_series_order_calc(xx, pow_integral(x, 4 * max_order - 5), max_order);
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auto depth = max_order - 1;
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while (depth > order_begin)
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{
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result += atan_series_order_calc(xx, pow_integral(x, 4 * depth - 5), depth);
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--depth;
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}
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return result + half_pi<Type> - Type{1} / x;
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type atan_series_main(const Type x) noexcept
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{
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return x < Type{3} ? atan_series_order(x, 1U, 10U)
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: x < Type{4} ? atan_series_order(x, 1U, 9U)
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: x < Type{5} ? atan_series_order(x, 1U, 8U)
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: x < Type{7} ? atan_series_order(x, 1U, 7U)
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: x < Type{11} ? atan_series_order(x, 1U, 6U)
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: x < Type{25} ? atan_series_order(x, 1U, 5U)
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: x < Type{100} ? atan_series_order(x, 1U, 4U)
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: x < Type{1000} ? atan_series_order(x, 1U, 3U)
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: atan_series_order(x, 1U, 2U);
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
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[[nodiscard]]
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constexpr Type atan_cf_recur(const Type xx, const uint_t depth_begin, const uint_t max_depth) noexcept
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{
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auto depth = max_depth - 1;
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Type result = static_cast<Type>(2 * (depth + 1) - 1);
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while (depth > depth_begin - 1)
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{
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result = static_cast<Type>(2 * depth - 1) + static_cast<Type>(depth * depth) * xx / result;
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--depth;
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}
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return result;
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}
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template<class Type>
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requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type atan_cf_main(const Type x) noexcept
|
|
{
|
|
return x < Type{0.5} ? x / atan_cf_recur(x * x, 1U, 15U)
|
|
: x < Type{1} ? x / atan_cf_recur(x * x, 1U, 25U)
|
|
: x < Type{1.5} ? x / atan_cf_recur(x * x, 1U, 35U)
|
|
: x < Type{2} ? x / atan_cf_recur(x * x, 1U, 45U)
|
|
: x / atan_cf_recur(x * x, 1U, 52U);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type atan_begin(const Type x) noexcept
|
|
{
|
|
return x > Type{2.5} ? atan_series_main(x) : atan_cf_main(x);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type atan(const Type x) noexcept
|
|
{
|
|
return is_nan(x) ? limits<Type>::quiet_NaN()
|
|
: limits<Type>::min() > abs(x) ? Type{0}
|
|
: x < Type{0} ? -atan_begin(-x)
|
|
: atan_begin(x);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type atan2(const Type y, const Type x) noexcept
|
|
{
|
|
return any_nan(y, x) ? limits<Type>::quiet_NaN()
|
|
: limits<Type>::min() > abs(x) ? limits<Type>::min() > abs(y)
|
|
? neg_zero(y) ? neg_zero(x) ? -pi<Type> : -Type{0}
|
|
: neg_zero(x) ? pi<Type>
|
|
: Type{0}
|
|
: y > Type{0} ? half_pi<Type>
|
|
: -half_pi<Type>
|
|
: x < Type{0} ? y < Type{0} ? atan(y / x) - pi<Type> : atan(y / x) + pi<Type>
|
|
: atan(y / x);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type asin_compute(const Type x) noexcept
|
|
{
|
|
return x > Type{1} ? limits<Type>::quiet_NaN()
|
|
: limits<Type>::min() > abs(x - Type{1}) ? half_pi<Type>
|
|
: limits<Type>::min() > abs(x) ? Type{0}
|
|
: atan(x / sqrt(Type{1} - x * x));
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type asin(const Type x) noexcept
|
|
{
|
|
return is_nan(x) ? limits<Type>::quiet_NaN() : x < Type{0} ? -asin_compute(-x) : asin_compute(x);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type acos_compute(const Type x) noexcept
|
|
{
|
|
return abs(x) > Type{1} ? limits<Type>::quiet_NaN()
|
|
: limits<Type>::min() > abs(x - Type{1}) ? Type{0}
|
|
: limits<Type>::min() > abs(x) ? half_pi<Type>
|
|
: atan(sqrt(Type{1} - x * x) / x);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type acos(const Type x) noexcept
|
|
{
|
|
return is_nan(x) ? limits<Type>::quiet_NaN() : x > Type{0} ? acos_compute(x) : pi<Type> - acos_compute(-x);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type hypot(const Type x, const Type y) noexcept
|
|
{
|
|
return any_nan(x, y) ? limits<Type>::quiet_NaN()
|
|
: any_inf(x, y) ? limits<Type>::infinity()
|
|
: limits<Type>::min() > abs(x) ? abs(y)
|
|
: limits<Type>::min() > abs(y) ? abs(x)
|
|
: abs(x) * sqrt(Type{1} + (y / x) * (y / x));
|
|
}
|
|
} // namespace math_detail
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type sin(const Type& value) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::sin(value);
|
|
}
|
|
return std::sin(value);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type cos(const Type& value) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::cos(value);
|
|
}
|
|
return std::cos(value);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type tan(const Type& value) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::tan(value);
|
|
}
|
|
return std::tan(value);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type atan(const Type& value) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::atan(value);
|
|
}
|
|
return std::atan(value);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type atan2(const Type& y, const Type& x) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::atan2(y, x);
|
|
}
|
|
return std::atan2(y, x);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type asin(const Type& value) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::asin(value);
|
|
}
|
|
return std::asin(value);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type acos(const Type& value) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::acos(value);
|
|
}
|
|
return std::acos(value);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type sqrt(const Type& value) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::sqrt(value);
|
|
}
|
|
return std::sqrt(value);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type hypot(const Type& x, const Type& y) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::hypot(x, y);
|
|
}
|
|
return std::hypot(x, y);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type hypot(const Type& x, const Type& y, const Type& z) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::sqrt(x * x + y * y + z * z);
|
|
}
|
|
return std::hypot(x, y, z);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type abs(const Type& value) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::abs(value);
|
|
}
|
|
return std::abs(value);
|
|
}
|
|
|
|
template<class Type>
|
|
requires std::is_floating_point_v<Type>
|
|
[[nodiscard]]
|
|
constexpr Type fmod(const Type& dividend, const Type& divisor) noexcept
|
|
{
|
|
if consteval
|
|
{
|
|
return math_detail::fmod(dividend, divisor);
|
|
}
|
|
return std::fmod(dividend, divisor);
|
|
}
|
|
} // namespace omath::internal
|