1 //===----------------------------------------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #ifndef SUPPORT_CHARCONV_TEST_HELPERS_H 10 #define SUPPORT_CHARCONV_TEST_HELPERS_H 11 12 #include <charconv> 13 #include <cassert> 14 #include <limits> 15 #include <string.h> 16 #include <stdlib.h> 17 18 #include "test_macros.h" 19 20 #if TEST_STD_VER < 11 21 #error This file requires C++11 22 #endif 23 24 using std::false_type; 25 using std::true_type; 26 27 template <typename To, typename From> 28 constexpr auto 29 is_non_narrowing(From a) -> decltype(To{a}, true_type()) 30 { 31 return {}; 32 } 33 34 template <typename To> 35 constexpr auto 36 is_non_narrowing(...) -> false_type 37 { 38 return {}; 39 } 40 41 template <typename X, typename T> 42 constexpr bool 43 _fits_in(T, true_type /* non-narrowing*/, ...) 44 { 45 return true; 46 } 47 48 template <typename X, typename T, typename xl = std::numeric_limits<X>> 49 constexpr bool 50 _fits_in(T v, false_type, true_type /* T signed*/, true_type /* X signed */) 51 { 52 return xl::lowest() <= v && v <= (xl::max)(); 53 } 54 55 template <typename X, typename T, typename xl = std::numeric_limits<X>> 56 constexpr bool 57 _fits_in(T v, false_type, true_type /* T signed */, false_type /* X unsigned*/) 58 { 59 return 0 <= v && typename std::make_unsigned<T>::type(v) <= (xl::max)(); 60 } 61 62 template <typename X, typename T, typename xl = std::numeric_limits<X>> 63 constexpr bool 64 _fits_in(T v, false_type, false_type /* T unsigned */, ...) 65 { 66 return v <= typename std::make_unsigned<X>::type((xl::max)()); 67 } 68 69 template <typename X, typename T> 70 constexpr bool 71 fits_in(T v) 72 { 73 return _fits_in<X>(v, is_non_narrowing<X>(v), std::is_signed<T>(), 74 std::is_signed<X>()); 75 } 76 77 template <typename X> 78 struct to_chars_test_base 79 { 80 template <typename T, size_t N, typename... Ts> 81 void test(T v, char const (&expect)[N], Ts... args) 82 { 83 using std::to_chars; 84 std::to_chars_result r; 85 86 constexpr size_t len = N - 1; 87 static_assert(len > 0, "expected output won't be empty"); 88 89 if (!fits_in<X>(v)) 90 return; 91 92 r = to_chars(buf, buf + len - 1, X(v), args...); 93 assert(r.ptr == buf + len - 1); 94 assert(r.ec == std::errc::value_too_large); 95 96 r = to_chars(buf, buf + sizeof(buf), X(v), args...); 97 assert(r.ptr == buf + len); 98 assert(r.ec == std::errc{}); 99 assert(memcmp(buf, expect, len) == 0); 100 } 101 102 template <typename... Ts> 103 void test_value(X v, Ts... args) 104 { 105 using std::to_chars; 106 std::to_chars_result r; 107 108 r = to_chars(buf, buf + sizeof(buf), v, args...); 109 assert(r.ec == std::errc{}); 110 *r.ptr = '\0'; 111 112 auto a = fromchars(buf, r.ptr, args...); 113 assert(v == a); 114 115 auto ep = r.ptr - 1; 116 r = to_chars(buf, ep, v, args...); 117 assert(r.ptr == ep); 118 assert(r.ec == std::errc::value_too_large); 119 } 120 121 private: 122 static long long fromchars(char const* p, char const* ep, int base, true_type) 123 { 124 char* last; 125 auto r = strtoll(p, &last, base); 126 assert(last == ep); 127 128 return r; 129 } 130 131 static unsigned long long fromchars(char const* p, char const* ep, int base, false_type) 132 { 133 char* last; 134 auto r = strtoull(p, &last, base); 135 assert(last == ep); 136 137 return r; 138 } 139 140 static auto fromchars(char const* p, char const* ep, int base = 10) 141 -> decltype(fromchars(p, ep, base, std::is_signed<X>())) 142 { 143 return fromchars(p, ep, base, std::is_signed<X>()); 144 } 145 146 char buf[100]; 147 }; 148 149 template <typename X> 150 struct roundtrip_test_base 151 { 152 template <typename T, typename... Ts> 153 void test(T v, Ts... args) 154 { 155 using std::from_chars; 156 using std::to_chars; 157 std::from_chars_result r2; 158 std::to_chars_result r; 159 X x = 0xc; 160 161 if (fits_in<X>(v)) 162 { 163 r = to_chars(buf, buf + sizeof(buf), v, args...); 164 assert(r.ec == std::errc{}); 165 166 r2 = from_chars(buf, r.ptr, x, args...); 167 assert(r2.ptr == r.ptr); 168 assert(x == X(v)); 169 } 170 else 171 { 172 r = to_chars(buf, buf + sizeof(buf), v, args...); 173 assert(r.ec == std::errc{}); 174 175 r2 = from_chars(buf, r.ptr, x, args...); 176 177 #ifdef TEST_COMPILER_C1XX 178 #pragma warning(push) 179 #pragma warning(disable: 4127) // conditional expression is constant 180 #endif // TEST_COMPILER_C1XX 181 if (std::is_signed<T>::value && v < 0 && std::is_unsigned<X>::value) 182 { 183 assert(x == 0xc); 184 assert(r2.ptr == buf); 185 assert(r2.ec == std::errc::invalid_argument); 186 } 187 else 188 { 189 assert(x == 0xc); 190 assert(r2.ptr == r.ptr); 191 assert(r2.ec == std::errc::result_out_of_range); 192 } 193 #ifdef TEST_COMPILER_C1XX 194 #pragma warning(pop) 195 #endif // TEST_COMPILER_C1XX 196 } 197 } 198 199 private: 200 char buf[100]; 201 }; 202 203 template <typename... T> 204 struct type_list 205 { 206 }; 207 208 template <typename L1, typename L2> 209 struct type_concat; 210 211 template <typename... Xs, typename... Ys> 212 struct type_concat<type_list<Xs...>, type_list<Ys...>> 213 { 214 using type = type_list<Xs..., Ys...>; 215 }; 216 217 template <typename L1, typename L2> 218 using concat_t = typename type_concat<L1, L2>::type; 219 220 template <typename L1, typename L2> 221 constexpr auto concat(L1, L2) -> concat_t<L1, L2> 222 { 223 return {}; 224 } 225 226 auto all_signed = type_list<char, signed char, short, int, long, long long>(); 227 auto all_unsigned = type_list<unsigned char, unsigned short, unsigned int, 228 unsigned long, unsigned long long>(); 229 auto integrals = concat(all_signed, all_unsigned); 230 231 template <template <typename> class Fn, typename... Ts> 232 void 233 run(type_list<Ts...>) 234 { 235 int ls[sizeof...(Ts)] = {(Fn<Ts>{}(), 0)...}; 236 (void)ls; 237 } 238 239 #endif // SUPPORT_CHARCONV_TEST_HELPERS_H 240