Moved uart utils to separate type submodule
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6f592dd098
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41b9ef74f9
@ -2,9 +2,9 @@
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#include "../clock.hpp"
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#include <stdint.h>
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#include "../type/type.hpp"
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#include "utils.hpp"
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#include <stdint.h>
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#define FORCE_INLINE __attribute__((always_inline))
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@ -258,7 +258,7 @@ class BlockingHardware {
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static bool peek(data_t &) FORCE_INLINE
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{
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static_assert(util::always_false_v<data_t>, "Peek with data is not supported in blocking mode");
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static_assert(type::always_false_v<data_t>, "Peek with data is not supported in blocking mode");
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return false;
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}
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@ -1,15 +1,15 @@
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#pragma once
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#include "config.hpp"
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#include "utils.hpp"
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#include "../io/io.hpp"
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#include "../type/type.hpp"
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namespace uart {
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template <io::P rxPin, io::P txPin, class cfg = Config<>>
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class Software {
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static_assert(util::always_false_v<cfg>, "Not implemented");
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static_assert(type::always_false_v<cfg>, "Not implemented");
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public:
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using data_t = typename cfg::data_t;
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43
uart.hpp
43
uart.hpp
@ -4,7 +4,6 @@
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#include "config.hpp"
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#include "software.hpp"
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#include "utils.hpp"
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#undef UART0_INT_VECTORS
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#include "hardware0.hpp"
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@ -36,8 +35,8 @@ static constexpr size_t cntDigits()
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template <typename T, size_t Base>
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static constexpr size_t maxNumDigits()
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{
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constexpr T MinVal = util::NumericLimits<T>::min();
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constexpr T MaxVal = util::NumericLimits<T>::max();
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constexpr T MinVal = type::NumericLimits<T>::min();
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constexpr T MaxVal = type::NumericLimits<T>::max();
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constexpr T MinDigits = cntDigits<T, MinVal, Base>();
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constexpr T MaxDigits = cntDigits<T, MaxVal, Base>();
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@ -115,7 +114,7 @@ class Uart {
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template <typename T, size_t Base = 10, size_t Padding = 0, char PadChar = '0', bool LowerCase = true>
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static void txNumber(const T &val)
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{
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static_assert(util::is_integral_v<T>, "Only supported on integral types");
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static_assert(type::is_integral_v<T>, "Only supported on integral types");
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static_assert(Base >= 2, "Numbers with base less than 2 make no sense");
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static_assert(Base <= 16, "Numbers with base higher than 16 are not supported");
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static_assert(Padding <= detail::maxNumDigits<T, Base>(), "Cannot pad more than maximum length of number");
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@ -237,19 +236,19 @@ class Uart {
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template <typename... Ts>
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Uart &operator<<(float) const
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{
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static_assert(util::always_false_v<Ts...>, "Not supported by hardware");
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static_assert(type::always_false_v<Ts...>, "Not supported by hardware");
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}
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template <typename... Ts>
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Uart &operator<<(double) const
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{
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static_assert(util::always_false_v<Ts...>, "Not supported by hardware");
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static_assert(type::always_false_v<Ts...>, "Not supported by hardware");
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}
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template <typename... Ts>
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Uart &operator<<(long double) const
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{
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static_assert(util::always_false_v<Ts...>, "Not supported by hardware");
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static_assert(type::always_false_v<Ts...>, "Not supported by hardware");
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}
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Uart &operator<<(const bool &val)
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@ -271,91 +270,91 @@ class Uart {
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template <typename... Ts>
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Uart &operator>>(char &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(unsigned char &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(short &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(unsigned short &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(int &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(unsigned int &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(long &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(unsigned long &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(long long &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(unsigned long long &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(float &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not supported by hardware");
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static_assert(type::always_false_v<Ts...>, "Not supported by hardware");
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}
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template <typename... Ts>
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Uart &operator>>(double &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not supported by hardware");
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static_assert(type::always_false_v<Ts...>, "Not supported by hardware");
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}
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template <typename... Ts>
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Uart &operator>>(long double &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not supported by hardware");
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static_assert(type::always_false_v<Ts...>, "Not supported by hardware");
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}
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template <typename... Ts>
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Uart &operator>>(bool &) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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template <typename... Ts>
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Uart &operator>>(const void *&) const
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{
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static_assert(util::always_false_v<Ts...>, "Not implemented");
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static_assert(type::always_false_v<Ts...>, "Not implemented");
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}
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};
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143
utils.hpp
143
utils.hpp
@ -1,143 +0,0 @@
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#pragma once
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// Fix for limits.h not exposing LLONG_MIN, LLONG_MIN, and ULLONG_MAX to C++ context
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#ifdef __cplusplus
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#define __STDC_VERSION__ 201112L
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#endif
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#include <float.h>
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#include <limits.h>
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namespace uart {
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namespace util {
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// clang-format off
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template <bool Val> struct set_bool { static constexpr auto value = Val; };
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struct true_type : set_bool<true> {};
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struct false_type : set_bool<false> {};
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template <typename...> struct always_false : false_type {};
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template <typename... Ts> static constexpr auto always_false_v = always_false<Ts...>::value;
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template <typename T> struct is_integral : false_type {};
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template <> struct is_integral<bool> : true_type {};
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template <> struct is_integral<char> : true_type {};
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template <> struct is_integral<signed char> : true_type {};
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template <> struct is_integral<unsigned char> : true_type {};
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template <> struct is_integral<short> : true_type {};
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template <> struct is_integral<int> : true_type {};
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template <> struct is_integral<long int> : true_type {};
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template <> struct is_integral<long long int> : true_type {};
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template <> struct is_integral<unsigned short> : true_type {};
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template <> struct is_integral<unsigned int> : true_type {};
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template <> struct is_integral<unsigned long int> : true_type {};
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template <> struct is_integral<unsigned long long int> : true_type {};
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template <typename T> static constexpr auto is_integral_v = is_integral<T>::value;
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template <typename T, typename U> struct is_same : false_type {};
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template <typename T> struct is_same<T, T> : true_type {};
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template <typename T, typename U> static constexpr auto is_same_v = is_same<T, U>::value;
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template <typename T>
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struct NumericLimits {
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static constexpr T min() { return T(); }
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static constexpr T max() { return T(); }
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};
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template <>
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struct NumericLimits<bool> {
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static constexpr bool min() { return false; }
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static constexpr bool max() { return true; }
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};
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template <>
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struct NumericLimits<char> {
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static constexpr char min() { return CHAR_MIN; }
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static constexpr char max() { return CHAR_MAX; }
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};
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template <>
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struct NumericLimits<signed char> {
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static constexpr signed char min() { return SCHAR_MIN; }
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static constexpr signed char max() { return SCHAR_MAX; }
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};
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template <>
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struct NumericLimits<unsigned char> {
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static constexpr unsigned char min() { return 0; }
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static constexpr unsigned char max() { return UCHAR_MAX; }
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};
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template <>
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struct NumericLimits<short> {
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static constexpr short min() { return SHRT_MIN; }
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static constexpr short max() { return SHRT_MAX; }
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};
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template <>
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struct NumericLimits<int> {
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static constexpr int min() { return INT_MIN; }
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static constexpr int max() { return INT_MAX; }
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};
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template <>
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struct NumericLimits<long> {
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static constexpr long int min() { return LONG_MIN; }
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static constexpr long int max() { return LONG_MAX; }
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};
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template <>
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struct NumericLimits<long long int> {
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static constexpr long long int min() { return LLONG_MIN; }
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static constexpr long long int max() { return LLONG_MAX; }
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};
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template <>
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struct NumericLimits<unsigned short> {
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static constexpr unsigned short min() { return 0; }
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static constexpr unsigned short max() { return USHRT_MAX; }
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};
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template <>
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struct NumericLimits<unsigned int> {
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static constexpr unsigned int min() { return 0; }
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static constexpr unsigned int max() { return UINT_MAX; }
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};
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template <>
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struct NumericLimits<unsigned long int> {
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static constexpr unsigned long int min() { return 0; }
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static constexpr unsigned long int max() { return ULONG_MAX; }
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};
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template <>
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struct NumericLimits<unsigned long long int> {
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static constexpr unsigned long long int min() { return 0; }
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static constexpr unsigned long long int max() { return ULLONG_MAX; }
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};
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template <>
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struct NumericLimits<float> {
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template <typename... Ts> static constexpr float min() { return FLT_MIN; }
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template <typename... Ts> static constexpr float max() { return FLT_MAX; }
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};
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template <>
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struct NumericLimits<double> {
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template <typename... Ts> static constexpr double min() { return DBL_MIN; }
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template <typename... Ts> static constexpr double max() { return DBL_MAX; }
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};
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template <>
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struct NumericLimits<long double> {
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template <typename... Ts> static constexpr long double min() { return LDBL_MIN; }
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template <typename... Ts> static constexpr long double max() { return LDBL_MAX; }
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};
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// clang-format on
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} // namespace util
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} // namespace uart
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