format-inl.h 78 KB

12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697989910010110210310410510610710810911011111211311411511611711811912012112212312412512612712812913013113213313413513613713813914014114214314414514614714814915015115215315415515615715815916016116216316416516616716816917017117217317417517617717817918018118218318418518618718818919019119219319419519619719819920020120220320420520620720820921021121221321421521621721821922022122222322422522622722822923023123223323423523623723823924024124224324424524624724824925025125225325425525625725825926026126226326426526626726826927027127227327427527627727827928028128228328428528628728828929029129229329429529629729829930030130230330430530630730830931031131231331431531631731831932032132232332432532632732832933033133233333433533633733833934034134234334434534634734834935035135235335435535635735835936036136236336436536636736836937037137237337437537637737837938038138238338438538638738838939039139239339439539639739839940040140240340440540640740840941041141241341441541641741841942042142242342442542642742842943043143243343443543643743843944044144244344444544644744844945045145245345445545645745845946046146246346446546646746846947047147247347447547647747847948048148248348448548648748848949049149249349449549649749849950050150250350450550650750850951051151251351451551651751851952052152252352452552652752852953053153253353453553653753853954054154254354454554654754854955055155255355455555655755855956056156256356456556656756856957057157257357457557657757857958058158258358458558658758858959059159259359459559659759859960060160260360460560660760860961061161261361461561661761861962062162262362462562662762862963063163263363463563663763863964064164264364464564664764864965065165265365465565665765865966066166266366466566666766866967067167267367467567667767867968068168268368468568668768868969069169269369469569669769869970070170270370470570670770870971071171271371471571671771871972072172272372472572672772872973073173273373473573673773873974074174274374474574674774874975075175275375475575675775875976076176276376476576676776876977077177277377477577677777877978078178278378478578678778878979079179279379479579679779879980080180280380480580680780880981081181281381481581681781881982082182282382482582682782882983083183283383483583683783883984084184284384484584684784884985085185285385485585685785885986086186286386486586686786886987087187287387487587687787887988088188288388488588688788888989089189289389489589689789889990090190290390490590690790890991091191291391491591691791891992092192292392492592692792892993093193293393493593693793893994094194294394494594694794894995095195295395495595695795895996096196296396496596696796896997097197297397497597697797897998098198298398498598698798898999099199299399499599699799899910001001100210031004100510061007100810091010101110121013101410151016101710181019102010211022102310241025102610271028102910301031103210331034103510361037103810391040104110421043104410451046104710481049105010511052105310541055105610571058105910601061106210631064106510661067106810691070107110721073107410751076107710781079108010811082108310841085108610871088108910901091109210931094109510961097109810991100110111021103110411051106110711081109111011111112111311141115111611171118111911201121112211231124112511261127112811291130113111321133113411351136113711381139114011411142114311441145114611471148114911501151115211531154115511561157115811591160116111621163116411651166116711681169117011711172117311741175117611771178117911801181118211831184118511861187118811891190119111921193119411951196119711981199120012011202120312041205120612071208120912101211121212131214121512161217121812191220122112221223122412251226122712281229123012311232123312341235123612371238123912401241124212431244124512461247124812491250125112521253125412551256125712581259126012611262126312641265126612671268126912701271127212731274127512761277127812791280128112821283128412851286128712881289129012911292129312941295129612971298129913001301130213031304130513061307130813091310131113121313131413151316131713181319132013211322132313241325132613271328132913301331133213331334133513361337133813391340134113421343134413451346134713481349135013511352135313541355135613571358135913601361136213631364136513661367136813691370137113721373137413751376137713781379138013811382138313841385138613871388138913901391139213931394139513961397139813991400140114021403140414051406140714081409141014111412141314141415141614171418141914201421142214231424142514261427142814291430143114321433143414351436143714381439144014411442144314441445144614471448144914501451145214531454145514561457145814591460146114621463146414651466146714681469147014711472147314741475147614771478147914801481148214831484148514861487148814891490149114921493149414951496149714981499150015011502150315041505150615071508150915101511151215131514151515161517151815191520152115221523152415251526152715281529153015311532153315341535153615371538153915401541154215431544154515461547154815491550155115521553155415551556155715581559156015611562156315641565156615671568156915701571157215731574157515761577157815791580158115821583158415851586158715881589159015911592159315941595159615971598159916001601160216031604160516061607160816091610161116121613161416151616161716181619162016211622162316241625162616271628162916301631163216331634163516361637163816391640164116421643164416451646164716481649165016511652165316541655165616571658165916601661166216631664166516661667166816691670167116721673167416751676167716781679168016811682168316841685168616871688168916901691169216931694169516961697169816991700170117021703170417051706170717081709171017111712171317141715171617171718171917201721172217231724172517261727172817291730173117321733173417351736173717381739174017411742174317441745174617471748174917501751175217531754175517561757175817591760176117621763176417651766176717681769177017711772177317741775177617771778177917801781178217831784178517861787178817891790179117921793179417951796179717981799180018011802180318041805180618071808180918101811181218131814181518161817181818191820182118221823182418251826182718281829183018311832183318341835183618371838183918401841184218431844184518461847184818491850185118521853185418551856185718581859186018611862186318641865186618671868186918701871187218731874187518761877187818791880188118821883188418851886188718881889189018911892189318941895189618971898189919001901190219031904
  1. // Formatting library for C++ - implementation
  2. //
  3. // Copyright (c) 2012 - 2016, Victor Zverovich
  4. // All rights reserved.
  5. //
  6. // For the license information refer to format.h.
  7. #ifndef FMT_FORMAT_INL_H_
  8. #define FMT_FORMAT_INL_H_
  9. #ifndef FMT_MODULE
  10. # include <algorithm>
  11. # include <cerrno> // errno
  12. # include <climits>
  13. # include <cmath>
  14. # include <exception>
  15. # if !defined(FMT_STATIC_THOUSANDS_SEPARATOR)
  16. # include <locale>
  17. # endif
  18. #endif
  19. #if defined(_WIN32) && !defined(FMT_USE_WRITE_CONSOLE)
  20. # include <io.h> // _isatty
  21. #endif
  22. #include "format.h"
  23. FMT_BEGIN_NAMESPACE
  24. namespace detail {
  25. FMT_FUNC void assert_fail(const char* file, int line, const char* message) {
  26. // Use unchecked std::fprintf to avoid triggering another assertion when
  27. // writing to stderr fails
  28. std::fprintf(stderr, "%s:%d: assertion failed: %s", file, line, message);
  29. // Chosen instead of std::abort to satisfy Clang in CUDA mode during device
  30. // code pass.
  31. std::terminate();
  32. }
  33. FMT_FUNC void format_error_code(detail::buffer<char>& out, int error_code,
  34. string_view message) noexcept {
  35. // Report error code making sure that the output fits into
  36. // inline_buffer_size to avoid dynamic memory allocation and potential
  37. // bad_alloc.
  38. out.try_resize(0);
  39. static const char SEP[] = ": ";
  40. static const char ERROR_STR[] = "error ";
  41. // Subtract 2 to account for terminating null characters in SEP and ERROR_STR.
  42. size_t error_code_size = sizeof(SEP) + sizeof(ERROR_STR) - 2;
  43. auto abs_value = static_cast<uint32_or_64_or_128_t<int>>(error_code);
  44. if (detail::is_negative(error_code)) {
  45. abs_value = 0 - abs_value;
  46. ++error_code_size;
  47. }
  48. error_code_size += detail::to_unsigned(detail::count_digits(abs_value));
  49. auto it = appender(out);
  50. if (message.size() <= inline_buffer_size - error_code_size)
  51. fmt::format_to(it, FMT_STRING("{}{}"), message, SEP);
  52. fmt::format_to(it, FMT_STRING("{}{}"), ERROR_STR, error_code);
  53. FMT_ASSERT(out.size() <= inline_buffer_size, "");
  54. }
  55. FMT_FUNC void report_error(format_func func, int error_code,
  56. const char* message) noexcept {
  57. memory_buffer full_message;
  58. func(full_message, error_code, message);
  59. // Don't use fwrite_fully because the latter may throw.
  60. if (std::fwrite(full_message.data(), full_message.size(), 1, stderr) > 0)
  61. std::fputc('\n', stderr);
  62. }
  63. // A wrapper around fwrite that throws on error.
  64. inline void fwrite_fully(const void* ptr, size_t count, FILE* stream) {
  65. size_t written = std::fwrite(ptr, 1, count, stream);
  66. if (written < count)
  67. FMT_THROW(system_error(errno, FMT_STRING("cannot write to file")));
  68. }
  69. #ifndef FMT_STATIC_THOUSANDS_SEPARATOR
  70. template <typename Locale>
  71. locale_ref::locale_ref(const Locale& loc) : locale_(&loc) {
  72. static_assert(std::is_same<Locale, std::locale>::value, "");
  73. }
  74. template <typename Locale> auto locale_ref::get() const -> Locale {
  75. static_assert(std::is_same<Locale, std::locale>::value, "");
  76. return locale_ ? *static_cast<const std::locale*>(locale_) : std::locale();
  77. }
  78. template <typename Char>
  79. FMT_FUNC auto thousands_sep_impl(locale_ref loc) -> thousands_sep_result<Char> {
  80. auto& facet = std::use_facet<std::numpunct<Char>>(loc.get<std::locale>());
  81. auto grouping = facet.grouping();
  82. auto thousands_sep = grouping.empty() ? Char() : facet.thousands_sep();
  83. return {std::move(grouping), thousands_sep};
  84. }
  85. template <typename Char>
  86. FMT_FUNC auto decimal_point_impl(locale_ref loc) -> Char {
  87. return std::use_facet<std::numpunct<Char>>(loc.get<std::locale>())
  88. .decimal_point();
  89. }
  90. #else
  91. template <typename Char>
  92. FMT_FUNC auto thousands_sep_impl(locale_ref) -> thousands_sep_result<Char> {
  93. return {"\03", FMT_STATIC_THOUSANDS_SEPARATOR};
  94. }
  95. template <typename Char> FMT_FUNC Char decimal_point_impl(locale_ref) {
  96. return '.';
  97. }
  98. #endif
  99. FMT_FUNC auto write_loc(appender out, loc_value value,
  100. const format_specs& specs, locale_ref loc) -> bool {
  101. #ifdef FMT_STATIC_THOUSANDS_SEPARATOR
  102. value.visit(loc_writer<>{
  103. out, specs, std::string(1, FMT_STATIC_THOUSANDS_SEPARATOR), "\3", "."});
  104. return true;
  105. #else
  106. auto locale = loc.get<std::locale>();
  107. // We cannot use the num_put<char> facet because it may produce output in
  108. // a wrong encoding.
  109. using facet = format_facet<std::locale>;
  110. if (std::has_facet<facet>(locale))
  111. return std::use_facet<facet>(locale).put(out, value, specs);
  112. return facet(locale).put(out, value, specs);
  113. #endif
  114. }
  115. } // namespace detail
  116. FMT_FUNC void report_error(const char* message) {
  117. FMT_THROW(format_error(message));
  118. }
  119. template <typename Locale> typename Locale::id format_facet<Locale>::id;
  120. #ifndef FMT_STATIC_THOUSANDS_SEPARATOR
  121. template <typename Locale> format_facet<Locale>::format_facet(Locale& loc) {
  122. auto& numpunct = std::use_facet<std::numpunct<char>>(loc);
  123. grouping_ = numpunct.grouping();
  124. if (!grouping_.empty()) separator_ = std::string(1, numpunct.thousands_sep());
  125. }
  126. template <>
  127. FMT_API FMT_FUNC auto format_facet<std::locale>::do_put(
  128. appender out, loc_value val, const format_specs& specs) const -> bool {
  129. return val.visit(
  130. detail::loc_writer<>{out, specs, separator_, grouping_, decimal_point_});
  131. }
  132. #endif
  133. FMT_FUNC auto vsystem_error(int error_code, string_view fmt, format_args args)
  134. -> std::system_error {
  135. auto ec = std::error_code(error_code, std::generic_category());
  136. return std::system_error(ec, vformat(fmt, args));
  137. }
  138. namespace detail {
  139. template <typename F>
  140. inline auto operator==(basic_fp<F> x, basic_fp<F> y) -> bool {
  141. return x.f == y.f && x.e == y.e;
  142. }
  143. // Compilers should be able to optimize this into the ror instruction.
  144. FMT_CONSTEXPR inline auto rotr(uint32_t n, uint32_t r) noexcept -> uint32_t {
  145. r &= 31;
  146. return (n >> r) | (n << (32 - r));
  147. }
  148. FMT_CONSTEXPR inline auto rotr(uint64_t n, uint32_t r) noexcept -> uint64_t {
  149. r &= 63;
  150. return (n >> r) | (n << (64 - r));
  151. }
  152. // Implementation of Dragonbox algorithm: https://github.com/jk-jeon/dragonbox.
  153. namespace dragonbox {
  154. // Computes upper 64 bits of multiplication of a 32-bit unsigned integer and a
  155. // 64-bit unsigned integer.
  156. inline auto umul96_upper64(uint32_t x, uint64_t y) noexcept -> uint64_t {
  157. return umul128_upper64(static_cast<uint64_t>(x) << 32, y);
  158. }
  159. // Computes lower 128 bits of multiplication of a 64-bit unsigned integer and a
  160. // 128-bit unsigned integer.
  161. inline auto umul192_lower128(uint64_t x, uint128_fallback y) noexcept
  162. -> uint128_fallback {
  163. uint64_t high = x * y.high();
  164. uint128_fallback high_low = umul128(x, y.low());
  165. return {high + high_low.high(), high_low.low()};
  166. }
  167. // Computes lower 64 bits of multiplication of a 32-bit unsigned integer and a
  168. // 64-bit unsigned integer.
  169. inline auto umul96_lower64(uint32_t x, uint64_t y) noexcept -> uint64_t {
  170. return x * y;
  171. }
  172. // Various fast log computations.
  173. inline auto floor_log10_pow2_minus_log10_4_over_3(int e) noexcept -> int {
  174. FMT_ASSERT(e <= 2936 && e >= -2985, "too large exponent");
  175. return (e * 631305 - 261663) >> 21;
  176. }
  177. FMT_INLINE_VARIABLE constexpr struct {
  178. uint32_t divisor;
  179. int shift_amount;
  180. } div_small_pow10_infos[] = {{10, 16}, {100, 16}};
  181. // Replaces n by floor(n / pow(10, N)) returning true if and only if n is
  182. // divisible by pow(10, N).
  183. // Precondition: n <= pow(10, N + 1).
  184. template <int N>
  185. auto check_divisibility_and_divide_by_pow10(uint32_t& n) noexcept -> bool {
  186. // The numbers below are chosen such that:
  187. // 1. floor(n/d) = floor(nm / 2^k) where d=10 or d=100,
  188. // 2. nm mod 2^k < m if and only if n is divisible by d,
  189. // where m is magic_number, k is shift_amount
  190. // and d is divisor.
  191. //
  192. // Item 1 is a common technique of replacing division by a constant with
  193. // multiplication, see e.g. "Division by Invariant Integers Using
  194. // Multiplication" by Granlund and Montgomery (1994). magic_number (m) is set
  195. // to ceil(2^k/d) for large enough k.
  196. // The idea for item 2 originates from Schubfach.
  197. constexpr auto info = div_small_pow10_infos[N - 1];
  198. FMT_ASSERT(n <= info.divisor * 10, "n is too large");
  199. constexpr uint32_t magic_number =
  200. (1u << info.shift_amount) / info.divisor + 1;
  201. n *= magic_number;
  202. const uint32_t comparison_mask = (1u << info.shift_amount) - 1;
  203. bool result = (n & comparison_mask) < magic_number;
  204. n >>= info.shift_amount;
  205. return result;
  206. }
  207. // Computes floor(n / pow(10, N)) for small n and N.
  208. // Precondition: n <= pow(10, N + 1).
  209. template <int N> auto small_division_by_pow10(uint32_t n) noexcept -> uint32_t {
  210. constexpr auto info = div_small_pow10_infos[N - 1];
  211. FMT_ASSERT(n <= info.divisor * 10, "n is too large");
  212. constexpr uint32_t magic_number =
  213. (1u << info.shift_amount) / info.divisor + 1;
  214. return (n * magic_number) >> info.shift_amount;
  215. }
  216. // Computes floor(n / 10^(kappa + 1)) (float)
  217. inline auto divide_by_10_to_kappa_plus_1(uint32_t n) noexcept -> uint32_t {
  218. // 1374389535 = ceil(2^37/100)
  219. return static_cast<uint32_t>((static_cast<uint64_t>(n) * 1374389535) >> 37);
  220. }
  221. // Computes floor(n / 10^(kappa + 1)) (double)
  222. inline auto divide_by_10_to_kappa_plus_1(uint64_t n) noexcept -> uint64_t {
  223. // 2361183241434822607 = ceil(2^(64+7)/1000)
  224. return umul128_upper64(n, 2361183241434822607ull) >> 7;
  225. }
  226. // Various subroutines using pow10 cache
  227. template <typename T> struct cache_accessor;
  228. template <> struct cache_accessor<float> {
  229. using carrier_uint = float_info<float>::carrier_uint;
  230. using cache_entry_type = uint64_t;
  231. static auto get_cached_power(int k) noexcept -> uint64_t {
  232. FMT_ASSERT(k >= float_info<float>::min_k && k <= float_info<float>::max_k,
  233. "k is out of range");
  234. static constexpr const uint64_t pow10_significands[] = {
  235. 0x81ceb32c4b43fcf5, 0xa2425ff75e14fc32, 0xcad2f7f5359a3b3f,
  236. 0xfd87b5f28300ca0e, 0x9e74d1b791e07e49, 0xc612062576589ddb,
  237. 0xf79687aed3eec552, 0x9abe14cd44753b53, 0xc16d9a0095928a28,
  238. 0xf1c90080baf72cb2, 0x971da05074da7bef, 0xbce5086492111aeb,
  239. 0xec1e4a7db69561a6, 0x9392ee8e921d5d08, 0xb877aa3236a4b44a,
  240. 0xe69594bec44de15c, 0x901d7cf73ab0acda, 0xb424dc35095cd810,
  241. 0xe12e13424bb40e14, 0x8cbccc096f5088cc, 0xafebff0bcb24aaff,
  242. 0xdbe6fecebdedd5bf, 0x89705f4136b4a598, 0xabcc77118461cefd,
  243. 0xd6bf94d5e57a42bd, 0x8637bd05af6c69b6, 0xa7c5ac471b478424,
  244. 0xd1b71758e219652c, 0x83126e978d4fdf3c, 0xa3d70a3d70a3d70b,
  245. 0xcccccccccccccccd, 0x8000000000000000, 0xa000000000000000,
  246. 0xc800000000000000, 0xfa00000000000000, 0x9c40000000000000,
  247. 0xc350000000000000, 0xf424000000000000, 0x9896800000000000,
  248. 0xbebc200000000000, 0xee6b280000000000, 0x9502f90000000000,
  249. 0xba43b74000000000, 0xe8d4a51000000000, 0x9184e72a00000000,
  250. 0xb5e620f480000000, 0xe35fa931a0000000, 0x8e1bc9bf04000000,
  251. 0xb1a2bc2ec5000000, 0xde0b6b3a76400000, 0x8ac7230489e80000,
  252. 0xad78ebc5ac620000, 0xd8d726b7177a8000, 0x878678326eac9000,
  253. 0xa968163f0a57b400, 0xd3c21bcecceda100, 0x84595161401484a0,
  254. 0xa56fa5b99019a5c8, 0xcecb8f27f4200f3a, 0x813f3978f8940985,
  255. 0xa18f07d736b90be6, 0xc9f2c9cd04674edf, 0xfc6f7c4045812297,
  256. 0x9dc5ada82b70b59e, 0xc5371912364ce306, 0xf684df56c3e01bc7,
  257. 0x9a130b963a6c115d, 0xc097ce7bc90715b4, 0xf0bdc21abb48db21,
  258. 0x96769950b50d88f5, 0xbc143fa4e250eb32, 0xeb194f8e1ae525fe,
  259. 0x92efd1b8d0cf37bf, 0xb7abc627050305ae, 0xe596b7b0c643c71a,
  260. 0x8f7e32ce7bea5c70, 0xb35dbf821ae4f38c, 0xe0352f62a19e306f};
  261. return pow10_significands[k - float_info<float>::min_k];
  262. }
  263. struct compute_mul_result {
  264. carrier_uint result;
  265. bool is_integer;
  266. };
  267. struct compute_mul_parity_result {
  268. bool parity;
  269. bool is_integer;
  270. };
  271. static auto compute_mul(carrier_uint u,
  272. const cache_entry_type& cache) noexcept
  273. -> compute_mul_result {
  274. auto r = umul96_upper64(u, cache);
  275. return {static_cast<carrier_uint>(r >> 32),
  276. static_cast<carrier_uint>(r) == 0};
  277. }
  278. static auto compute_delta(const cache_entry_type& cache, int beta) noexcept
  279. -> uint32_t {
  280. return static_cast<uint32_t>(cache >> (64 - 1 - beta));
  281. }
  282. static auto compute_mul_parity(carrier_uint two_f,
  283. const cache_entry_type& cache,
  284. int beta) noexcept
  285. -> compute_mul_parity_result {
  286. FMT_ASSERT(beta >= 1, "");
  287. FMT_ASSERT(beta < 64, "");
  288. auto r = umul96_lower64(two_f, cache);
  289. return {((r >> (64 - beta)) & 1) != 0,
  290. static_cast<uint32_t>(r >> (32 - beta)) == 0};
  291. }
  292. static auto compute_left_endpoint_for_shorter_interval_case(
  293. const cache_entry_type& cache, int beta) noexcept -> carrier_uint {
  294. return static_cast<carrier_uint>(
  295. (cache - (cache >> (num_significand_bits<float>() + 2))) >>
  296. (64 - num_significand_bits<float>() - 1 - beta));
  297. }
  298. static auto compute_right_endpoint_for_shorter_interval_case(
  299. const cache_entry_type& cache, int beta) noexcept -> carrier_uint {
  300. return static_cast<carrier_uint>(
  301. (cache + (cache >> (num_significand_bits<float>() + 1))) >>
  302. (64 - num_significand_bits<float>() - 1 - beta));
  303. }
  304. static auto compute_round_up_for_shorter_interval_case(
  305. const cache_entry_type& cache, int beta) noexcept -> carrier_uint {
  306. return (static_cast<carrier_uint>(
  307. cache >> (64 - num_significand_bits<float>() - 2 - beta)) +
  308. 1) /
  309. 2;
  310. }
  311. };
  312. template <> struct cache_accessor<double> {
  313. using carrier_uint = float_info<double>::carrier_uint;
  314. using cache_entry_type = uint128_fallback;
  315. static auto get_cached_power(int k) noexcept -> uint128_fallback {
  316. FMT_ASSERT(k >= float_info<double>::min_k && k <= float_info<double>::max_k,
  317. "k is out of range");
  318. static constexpr const uint128_fallback pow10_significands[] = {
  319. #if FMT_USE_FULL_CACHE_DRAGONBOX
  320. {0xff77b1fcbebcdc4f, 0x25e8e89c13bb0f7b},
  321. {0x9faacf3df73609b1, 0x77b191618c54e9ad},
  322. {0xc795830d75038c1d, 0xd59df5b9ef6a2418},
  323. {0xf97ae3d0d2446f25, 0x4b0573286b44ad1e},
  324. {0x9becce62836ac577, 0x4ee367f9430aec33},
  325. {0xc2e801fb244576d5, 0x229c41f793cda740},
  326. {0xf3a20279ed56d48a, 0x6b43527578c11110},
  327. {0x9845418c345644d6, 0x830a13896b78aaaa},
  328. {0xbe5691ef416bd60c, 0x23cc986bc656d554},
  329. {0xedec366b11c6cb8f, 0x2cbfbe86b7ec8aa9},
  330. {0x94b3a202eb1c3f39, 0x7bf7d71432f3d6aa},
  331. {0xb9e08a83a5e34f07, 0xdaf5ccd93fb0cc54},
  332. {0xe858ad248f5c22c9, 0xd1b3400f8f9cff69},
  333. {0x91376c36d99995be, 0x23100809b9c21fa2},
  334. {0xb58547448ffffb2d, 0xabd40a0c2832a78b},
  335. {0xe2e69915b3fff9f9, 0x16c90c8f323f516d},
  336. {0x8dd01fad907ffc3b, 0xae3da7d97f6792e4},
  337. {0xb1442798f49ffb4a, 0x99cd11cfdf41779d},
  338. {0xdd95317f31c7fa1d, 0x40405643d711d584},
  339. {0x8a7d3eef7f1cfc52, 0x482835ea666b2573},
  340. {0xad1c8eab5ee43b66, 0xda3243650005eed0},
  341. {0xd863b256369d4a40, 0x90bed43e40076a83},
  342. {0x873e4f75e2224e68, 0x5a7744a6e804a292},
  343. {0xa90de3535aaae202, 0x711515d0a205cb37},
  344. {0xd3515c2831559a83, 0x0d5a5b44ca873e04},
  345. {0x8412d9991ed58091, 0xe858790afe9486c3},
  346. {0xa5178fff668ae0b6, 0x626e974dbe39a873},
  347. {0xce5d73ff402d98e3, 0xfb0a3d212dc81290},
  348. {0x80fa687f881c7f8e, 0x7ce66634bc9d0b9a},
  349. {0xa139029f6a239f72, 0x1c1fffc1ebc44e81},
  350. {0xc987434744ac874e, 0xa327ffb266b56221},
  351. {0xfbe9141915d7a922, 0x4bf1ff9f0062baa9},
  352. {0x9d71ac8fada6c9b5, 0x6f773fc3603db4aa},
  353. {0xc4ce17b399107c22, 0xcb550fb4384d21d4},
  354. {0xf6019da07f549b2b, 0x7e2a53a146606a49},
  355. {0x99c102844f94e0fb, 0x2eda7444cbfc426e},
  356. {0xc0314325637a1939, 0xfa911155fefb5309},
  357. {0xf03d93eebc589f88, 0x793555ab7eba27cb},
  358. {0x96267c7535b763b5, 0x4bc1558b2f3458df},
  359. {0xbbb01b9283253ca2, 0x9eb1aaedfb016f17},
  360. {0xea9c227723ee8bcb, 0x465e15a979c1cadd},
  361. {0x92a1958a7675175f, 0x0bfacd89ec191eca},
  362. {0xb749faed14125d36, 0xcef980ec671f667c},
  363. {0xe51c79a85916f484, 0x82b7e12780e7401b},
  364. {0x8f31cc0937ae58d2, 0xd1b2ecb8b0908811},
  365. {0xb2fe3f0b8599ef07, 0x861fa7e6dcb4aa16},
  366. {0xdfbdcece67006ac9, 0x67a791e093e1d49b},
  367. {0x8bd6a141006042bd, 0xe0c8bb2c5c6d24e1},
  368. {0xaecc49914078536d, 0x58fae9f773886e19},
  369. {0xda7f5bf590966848, 0xaf39a475506a899f},
  370. {0x888f99797a5e012d, 0x6d8406c952429604},
  371. {0xaab37fd7d8f58178, 0xc8e5087ba6d33b84},
  372. {0xd5605fcdcf32e1d6, 0xfb1e4a9a90880a65},
  373. {0x855c3be0a17fcd26, 0x5cf2eea09a550680},
  374. {0xa6b34ad8c9dfc06f, 0xf42faa48c0ea481f},
  375. {0xd0601d8efc57b08b, 0xf13b94daf124da27},
  376. {0x823c12795db6ce57, 0x76c53d08d6b70859},
  377. {0xa2cb1717b52481ed, 0x54768c4b0c64ca6f},
  378. {0xcb7ddcdda26da268, 0xa9942f5dcf7dfd0a},
  379. {0xfe5d54150b090b02, 0xd3f93b35435d7c4d},
  380. {0x9efa548d26e5a6e1, 0xc47bc5014a1a6db0},
  381. {0xc6b8e9b0709f109a, 0x359ab6419ca1091c},
  382. {0xf867241c8cc6d4c0, 0xc30163d203c94b63},
  383. {0x9b407691d7fc44f8, 0x79e0de63425dcf1e},
  384. {0xc21094364dfb5636, 0x985915fc12f542e5},
  385. {0xf294b943e17a2bc4, 0x3e6f5b7b17b2939e},
  386. {0x979cf3ca6cec5b5a, 0xa705992ceecf9c43},
  387. {0xbd8430bd08277231, 0x50c6ff782a838354},
  388. {0xece53cec4a314ebd, 0xa4f8bf5635246429},
  389. {0x940f4613ae5ed136, 0x871b7795e136be9a},
  390. {0xb913179899f68584, 0x28e2557b59846e40},
  391. {0xe757dd7ec07426e5, 0x331aeada2fe589d0},
  392. {0x9096ea6f3848984f, 0x3ff0d2c85def7622},
  393. {0xb4bca50b065abe63, 0x0fed077a756b53aa},
  394. {0xe1ebce4dc7f16dfb, 0xd3e8495912c62895},
  395. {0x8d3360f09cf6e4bd, 0x64712dd7abbbd95d},
  396. {0xb080392cc4349dec, 0xbd8d794d96aacfb4},
  397. {0xdca04777f541c567, 0xecf0d7a0fc5583a1},
  398. {0x89e42caaf9491b60, 0xf41686c49db57245},
  399. {0xac5d37d5b79b6239, 0x311c2875c522ced6},
  400. {0xd77485cb25823ac7, 0x7d633293366b828c},
  401. {0x86a8d39ef77164bc, 0xae5dff9c02033198},
  402. {0xa8530886b54dbdeb, 0xd9f57f830283fdfd},
  403. {0xd267caa862a12d66, 0xd072df63c324fd7c},
  404. {0x8380dea93da4bc60, 0x4247cb9e59f71e6e},
  405. {0xa46116538d0deb78, 0x52d9be85f074e609},
  406. {0xcd795be870516656, 0x67902e276c921f8c},
  407. {0x806bd9714632dff6, 0x00ba1cd8a3db53b7},
  408. {0xa086cfcd97bf97f3, 0x80e8a40eccd228a5},
  409. {0xc8a883c0fdaf7df0, 0x6122cd128006b2ce},
  410. {0xfad2a4b13d1b5d6c, 0x796b805720085f82},
  411. {0x9cc3a6eec6311a63, 0xcbe3303674053bb1},
  412. {0xc3f490aa77bd60fc, 0xbedbfc4411068a9d},
  413. {0xf4f1b4d515acb93b, 0xee92fb5515482d45},
  414. {0x991711052d8bf3c5, 0x751bdd152d4d1c4b},
  415. {0xbf5cd54678eef0b6, 0xd262d45a78a0635e},
  416. {0xef340a98172aace4, 0x86fb897116c87c35},
  417. {0x9580869f0e7aac0e, 0xd45d35e6ae3d4da1},
  418. {0xbae0a846d2195712, 0x8974836059cca10a},
  419. {0xe998d258869facd7, 0x2bd1a438703fc94c},
  420. {0x91ff83775423cc06, 0x7b6306a34627ddd0},
  421. {0xb67f6455292cbf08, 0x1a3bc84c17b1d543},
  422. {0xe41f3d6a7377eeca, 0x20caba5f1d9e4a94},
  423. {0x8e938662882af53e, 0x547eb47b7282ee9d},
  424. {0xb23867fb2a35b28d, 0xe99e619a4f23aa44},
  425. {0xdec681f9f4c31f31, 0x6405fa00e2ec94d5},
  426. {0x8b3c113c38f9f37e, 0xde83bc408dd3dd05},
  427. {0xae0b158b4738705e, 0x9624ab50b148d446},
  428. {0xd98ddaee19068c76, 0x3badd624dd9b0958},
  429. {0x87f8a8d4cfa417c9, 0xe54ca5d70a80e5d7},
  430. {0xa9f6d30a038d1dbc, 0x5e9fcf4ccd211f4d},
  431. {0xd47487cc8470652b, 0x7647c32000696720},
  432. {0x84c8d4dfd2c63f3b, 0x29ecd9f40041e074},
  433. {0xa5fb0a17c777cf09, 0xf468107100525891},
  434. {0xcf79cc9db955c2cc, 0x7182148d4066eeb5},
  435. {0x81ac1fe293d599bf, 0xc6f14cd848405531},
  436. {0xa21727db38cb002f, 0xb8ada00e5a506a7d},
  437. {0xca9cf1d206fdc03b, 0xa6d90811f0e4851d},
  438. {0xfd442e4688bd304a, 0x908f4a166d1da664},
  439. {0x9e4a9cec15763e2e, 0x9a598e4e043287ff},
  440. {0xc5dd44271ad3cdba, 0x40eff1e1853f29fe},
  441. {0xf7549530e188c128, 0xd12bee59e68ef47d},
  442. {0x9a94dd3e8cf578b9, 0x82bb74f8301958cf},
  443. {0xc13a148e3032d6e7, 0xe36a52363c1faf02},
  444. {0xf18899b1bc3f8ca1, 0xdc44e6c3cb279ac2},
  445. {0x96f5600f15a7b7e5, 0x29ab103a5ef8c0ba},
  446. {0xbcb2b812db11a5de, 0x7415d448f6b6f0e8},
  447. {0xebdf661791d60f56, 0x111b495b3464ad22},
  448. {0x936b9fcebb25c995, 0xcab10dd900beec35},
  449. {0xb84687c269ef3bfb, 0x3d5d514f40eea743},
  450. {0xe65829b3046b0afa, 0x0cb4a5a3112a5113},
  451. {0x8ff71a0fe2c2e6dc, 0x47f0e785eaba72ac},
  452. {0xb3f4e093db73a093, 0x59ed216765690f57},
  453. {0xe0f218b8d25088b8, 0x306869c13ec3532d},
  454. {0x8c974f7383725573, 0x1e414218c73a13fc},
  455. {0xafbd2350644eeacf, 0xe5d1929ef90898fb},
  456. {0xdbac6c247d62a583, 0xdf45f746b74abf3a},
  457. {0x894bc396ce5da772, 0x6b8bba8c328eb784},
  458. {0xab9eb47c81f5114f, 0x066ea92f3f326565},
  459. {0xd686619ba27255a2, 0xc80a537b0efefebe},
  460. {0x8613fd0145877585, 0xbd06742ce95f5f37},
  461. {0xa798fc4196e952e7, 0x2c48113823b73705},
  462. {0xd17f3b51fca3a7a0, 0xf75a15862ca504c6},
  463. {0x82ef85133de648c4, 0x9a984d73dbe722fc},
  464. {0xa3ab66580d5fdaf5, 0xc13e60d0d2e0ebbb},
  465. {0xcc963fee10b7d1b3, 0x318df905079926a9},
  466. {0xffbbcfe994e5c61f, 0xfdf17746497f7053},
  467. {0x9fd561f1fd0f9bd3, 0xfeb6ea8bedefa634},
  468. {0xc7caba6e7c5382c8, 0xfe64a52ee96b8fc1},
  469. {0xf9bd690a1b68637b, 0x3dfdce7aa3c673b1},
  470. {0x9c1661a651213e2d, 0x06bea10ca65c084f},
  471. {0xc31bfa0fe5698db8, 0x486e494fcff30a63},
  472. {0xf3e2f893dec3f126, 0x5a89dba3c3efccfb},
  473. {0x986ddb5c6b3a76b7, 0xf89629465a75e01d},
  474. {0xbe89523386091465, 0xf6bbb397f1135824},
  475. {0xee2ba6c0678b597f, 0x746aa07ded582e2d},
  476. {0x94db483840b717ef, 0xa8c2a44eb4571cdd},
  477. {0xba121a4650e4ddeb, 0x92f34d62616ce414},
  478. {0xe896a0d7e51e1566, 0x77b020baf9c81d18},
  479. {0x915e2486ef32cd60, 0x0ace1474dc1d122f},
  480. {0xb5b5ada8aaff80b8, 0x0d819992132456bb},
  481. {0xe3231912d5bf60e6, 0x10e1fff697ed6c6a},
  482. {0x8df5efabc5979c8f, 0xca8d3ffa1ef463c2},
  483. {0xb1736b96b6fd83b3, 0xbd308ff8a6b17cb3},
  484. {0xddd0467c64bce4a0, 0xac7cb3f6d05ddbdf},
  485. {0x8aa22c0dbef60ee4, 0x6bcdf07a423aa96c},
  486. {0xad4ab7112eb3929d, 0x86c16c98d2c953c7},
  487. {0xd89d64d57a607744, 0xe871c7bf077ba8b8},
  488. {0x87625f056c7c4a8b, 0x11471cd764ad4973},
  489. {0xa93af6c6c79b5d2d, 0xd598e40d3dd89bd0},
  490. {0xd389b47879823479, 0x4aff1d108d4ec2c4},
  491. {0x843610cb4bf160cb, 0xcedf722a585139bb},
  492. {0xa54394fe1eedb8fe, 0xc2974eb4ee658829},
  493. {0xce947a3da6a9273e, 0x733d226229feea33},
  494. {0x811ccc668829b887, 0x0806357d5a3f5260},
  495. {0xa163ff802a3426a8, 0xca07c2dcb0cf26f8},
  496. {0xc9bcff6034c13052, 0xfc89b393dd02f0b6},
  497. {0xfc2c3f3841f17c67, 0xbbac2078d443ace3},
  498. {0x9d9ba7832936edc0, 0xd54b944b84aa4c0e},
  499. {0xc5029163f384a931, 0x0a9e795e65d4df12},
  500. {0xf64335bcf065d37d, 0x4d4617b5ff4a16d6},
  501. {0x99ea0196163fa42e, 0x504bced1bf8e4e46},
  502. {0xc06481fb9bcf8d39, 0xe45ec2862f71e1d7},
  503. {0xf07da27a82c37088, 0x5d767327bb4e5a4d},
  504. {0x964e858c91ba2655, 0x3a6a07f8d510f870},
  505. {0xbbe226efb628afea, 0x890489f70a55368c},
  506. {0xeadab0aba3b2dbe5, 0x2b45ac74ccea842f},
  507. {0x92c8ae6b464fc96f, 0x3b0b8bc90012929e},
  508. {0xb77ada0617e3bbcb, 0x09ce6ebb40173745},
  509. {0xe55990879ddcaabd, 0xcc420a6a101d0516},
  510. {0x8f57fa54c2a9eab6, 0x9fa946824a12232e},
  511. {0xb32df8e9f3546564, 0x47939822dc96abfa},
  512. {0xdff9772470297ebd, 0x59787e2b93bc56f8},
  513. {0x8bfbea76c619ef36, 0x57eb4edb3c55b65b},
  514. {0xaefae51477a06b03, 0xede622920b6b23f2},
  515. {0xdab99e59958885c4, 0xe95fab368e45ecee},
  516. {0x88b402f7fd75539b, 0x11dbcb0218ebb415},
  517. {0xaae103b5fcd2a881, 0xd652bdc29f26a11a},
  518. {0xd59944a37c0752a2, 0x4be76d3346f04960},
  519. {0x857fcae62d8493a5, 0x6f70a4400c562ddc},
  520. {0xa6dfbd9fb8e5b88e, 0xcb4ccd500f6bb953},
  521. {0xd097ad07a71f26b2, 0x7e2000a41346a7a8},
  522. {0x825ecc24c873782f, 0x8ed400668c0c28c9},
  523. {0xa2f67f2dfa90563b, 0x728900802f0f32fb},
  524. {0xcbb41ef979346bca, 0x4f2b40a03ad2ffba},
  525. {0xfea126b7d78186bc, 0xe2f610c84987bfa9},
  526. {0x9f24b832e6b0f436, 0x0dd9ca7d2df4d7ca},
  527. {0xc6ede63fa05d3143, 0x91503d1c79720dbc},
  528. {0xf8a95fcf88747d94, 0x75a44c6397ce912b},
  529. {0x9b69dbe1b548ce7c, 0xc986afbe3ee11abb},
  530. {0xc24452da229b021b, 0xfbe85badce996169},
  531. {0xf2d56790ab41c2a2, 0xfae27299423fb9c4},
  532. {0x97c560ba6b0919a5, 0xdccd879fc967d41b},
  533. {0xbdb6b8e905cb600f, 0x5400e987bbc1c921},
  534. {0xed246723473e3813, 0x290123e9aab23b69},
  535. {0x9436c0760c86e30b, 0xf9a0b6720aaf6522},
  536. {0xb94470938fa89bce, 0xf808e40e8d5b3e6a},
  537. {0xe7958cb87392c2c2, 0xb60b1d1230b20e05},
  538. {0x90bd77f3483bb9b9, 0xb1c6f22b5e6f48c3},
  539. {0xb4ecd5f01a4aa828, 0x1e38aeb6360b1af4},
  540. {0xe2280b6c20dd5232, 0x25c6da63c38de1b1},
  541. {0x8d590723948a535f, 0x579c487e5a38ad0f},
  542. {0xb0af48ec79ace837, 0x2d835a9df0c6d852},
  543. {0xdcdb1b2798182244, 0xf8e431456cf88e66},
  544. {0x8a08f0f8bf0f156b, 0x1b8e9ecb641b5900},
  545. {0xac8b2d36eed2dac5, 0xe272467e3d222f40},
  546. {0xd7adf884aa879177, 0x5b0ed81dcc6abb10},
  547. {0x86ccbb52ea94baea, 0x98e947129fc2b4ea},
  548. {0xa87fea27a539e9a5, 0x3f2398d747b36225},
  549. {0xd29fe4b18e88640e, 0x8eec7f0d19a03aae},
  550. {0x83a3eeeef9153e89, 0x1953cf68300424ad},
  551. {0xa48ceaaab75a8e2b, 0x5fa8c3423c052dd8},
  552. {0xcdb02555653131b6, 0x3792f412cb06794e},
  553. {0x808e17555f3ebf11, 0xe2bbd88bbee40bd1},
  554. {0xa0b19d2ab70e6ed6, 0x5b6aceaeae9d0ec5},
  555. {0xc8de047564d20a8b, 0xf245825a5a445276},
  556. {0xfb158592be068d2e, 0xeed6e2f0f0d56713},
  557. {0x9ced737bb6c4183d, 0x55464dd69685606c},
  558. {0xc428d05aa4751e4c, 0xaa97e14c3c26b887},
  559. {0xf53304714d9265df, 0xd53dd99f4b3066a9},
  560. {0x993fe2c6d07b7fab, 0xe546a8038efe402a},
  561. {0xbf8fdb78849a5f96, 0xde98520472bdd034},
  562. {0xef73d256a5c0f77c, 0x963e66858f6d4441},
  563. {0x95a8637627989aad, 0xdde7001379a44aa9},
  564. {0xbb127c53b17ec159, 0x5560c018580d5d53},
  565. {0xe9d71b689dde71af, 0xaab8f01e6e10b4a7},
  566. {0x9226712162ab070d, 0xcab3961304ca70e9},
  567. {0xb6b00d69bb55c8d1, 0x3d607b97c5fd0d23},
  568. {0xe45c10c42a2b3b05, 0x8cb89a7db77c506b},
  569. {0x8eb98a7a9a5b04e3, 0x77f3608e92adb243},
  570. {0xb267ed1940f1c61c, 0x55f038b237591ed4},
  571. {0xdf01e85f912e37a3, 0x6b6c46dec52f6689},
  572. {0x8b61313bbabce2c6, 0x2323ac4b3b3da016},
  573. {0xae397d8aa96c1b77, 0xabec975e0a0d081b},
  574. {0xd9c7dced53c72255, 0x96e7bd358c904a22},
  575. {0x881cea14545c7575, 0x7e50d64177da2e55},
  576. {0xaa242499697392d2, 0xdde50bd1d5d0b9ea},
  577. {0xd4ad2dbfc3d07787, 0x955e4ec64b44e865},
  578. {0x84ec3c97da624ab4, 0xbd5af13bef0b113f},
  579. {0xa6274bbdd0fadd61, 0xecb1ad8aeacdd58f},
  580. {0xcfb11ead453994ba, 0x67de18eda5814af3},
  581. {0x81ceb32c4b43fcf4, 0x80eacf948770ced8},
  582. {0xa2425ff75e14fc31, 0xa1258379a94d028e},
  583. {0xcad2f7f5359a3b3e, 0x096ee45813a04331},
  584. {0xfd87b5f28300ca0d, 0x8bca9d6e188853fd},
  585. {0x9e74d1b791e07e48, 0x775ea264cf55347e},
  586. {0xc612062576589dda, 0x95364afe032a819e},
  587. {0xf79687aed3eec551, 0x3a83ddbd83f52205},
  588. {0x9abe14cd44753b52, 0xc4926a9672793543},
  589. {0xc16d9a0095928a27, 0x75b7053c0f178294},
  590. {0xf1c90080baf72cb1, 0x5324c68b12dd6339},
  591. {0x971da05074da7bee, 0xd3f6fc16ebca5e04},
  592. {0xbce5086492111aea, 0x88f4bb1ca6bcf585},
  593. {0xec1e4a7db69561a5, 0x2b31e9e3d06c32e6},
  594. {0x9392ee8e921d5d07, 0x3aff322e62439fd0},
  595. {0xb877aa3236a4b449, 0x09befeb9fad487c3},
  596. {0xe69594bec44de15b, 0x4c2ebe687989a9b4},
  597. {0x901d7cf73ab0acd9, 0x0f9d37014bf60a11},
  598. {0xb424dc35095cd80f, 0x538484c19ef38c95},
  599. {0xe12e13424bb40e13, 0x2865a5f206b06fba},
  600. {0x8cbccc096f5088cb, 0xf93f87b7442e45d4},
  601. {0xafebff0bcb24aafe, 0xf78f69a51539d749},
  602. {0xdbe6fecebdedd5be, 0xb573440e5a884d1c},
  603. {0x89705f4136b4a597, 0x31680a88f8953031},
  604. {0xabcc77118461cefc, 0xfdc20d2b36ba7c3e},
  605. {0xd6bf94d5e57a42bc, 0x3d32907604691b4d},
  606. {0x8637bd05af6c69b5, 0xa63f9a49c2c1b110},
  607. {0xa7c5ac471b478423, 0x0fcf80dc33721d54},
  608. {0xd1b71758e219652b, 0xd3c36113404ea4a9},
  609. {0x83126e978d4fdf3b, 0x645a1cac083126ea},
  610. {0xa3d70a3d70a3d70a, 0x3d70a3d70a3d70a4},
  611. {0xcccccccccccccccc, 0xcccccccccccccccd},
  612. {0x8000000000000000, 0x0000000000000000},
  613. {0xa000000000000000, 0x0000000000000000},
  614. {0xc800000000000000, 0x0000000000000000},
  615. {0xfa00000000000000, 0x0000000000000000},
  616. {0x9c40000000000000, 0x0000000000000000},
  617. {0xc350000000000000, 0x0000000000000000},
  618. {0xf424000000000000, 0x0000000000000000},
  619. {0x9896800000000000, 0x0000000000000000},
  620. {0xbebc200000000000, 0x0000000000000000},
  621. {0xee6b280000000000, 0x0000000000000000},
  622. {0x9502f90000000000, 0x0000000000000000},
  623. {0xba43b74000000000, 0x0000000000000000},
  624. {0xe8d4a51000000000, 0x0000000000000000},
  625. {0x9184e72a00000000, 0x0000000000000000},
  626. {0xb5e620f480000000, 0x0000000000000000},
  627. {0xe35fa931a0000000, 0x0000000000000000},
  628. {0x8e1bc9bf04000000, 0x0000000000000000},
  629. {0xb1a2bc2ec5000000, 0x0000000000000000},
  630. {0xde0b6b3a76400000, 0x0000000000000000},
  631. {0x8ac7230489e80000, 0x0000000000000000},
  632. {0xad78ebc5ac620000, 0x0000000000000000},
  633. {0xd8d726b7177a8000, 0x0000000000000000},
  634. {0x878678326eac9000, 0x0000000000000000},
  635. {0xa968163f0a57b400, 0x0000000000000000},
  636. {0xd3c21bcecceda100, 0x0000000000000000},
  637. {0x84595161401484a0, 0x0000000000000000},
  638. {0xa56fa5b99019a5c8, 0x0000000000000000},
  639. {0xcecb8f27f4200f3a, 0x0000000000000000},
  640. {0x813f3978f8940984, 0x4000000000000000},
  641. {0xa18f07d736b90be5, 0x5000000000000000},
  642. {0xc9f2c9cd04674ede, 0xa400000000000000},
  643. {0xfc6f7c4045812296, 0x4d00000000000000},
  644. {0x9dc5ada82b70b59d, 0xf020000000000000},
  645. {0xc5371912364ce305, 0x6c28000000000000},
  646. {0xf684df56c3e01bc6, 0xc732000000000000},
  647. {0x9a130b963a6c115c, 0x3c7f400000000000},
  648. {0xc097ce7bc90715b3, 0x4b9f100000000000},
  649. {0xf0bdc21abb48db20, 0x1e86d40000000000},
  650. {0x96769950b50d88f4, 0x1314448000000000},
  651. {0xbc143fa4e250eb31, 0x17d955a000000000},
  652. {0xeb194f8e1ae525fd, 0x5dcfab0800000000},
  653. {0x92efd1b8d0cf37be, 0x5aa1cae500000000},
  654. {0xb7abc627050305ad, 0xf14a3d9e40000000},
  655. {0xe596b7b0c643c719, 0x6d9ccd05d0000000},
  656. {0x8f7e32ce7bea5c6f, 0xe4820023a2000000},
  657. {0xb35dbf821ae4f38b, 0xdda2802c8a800000},
  658. {0xe0352f62a19e306e, 0xd50b2037ad200000},
  659. {0x8c213d9da502de45, 0x4526f422cc340000},
  660. {0xaf298d050e4395d6, 0x9670b12b7f410000},
  661. {0xdaf3f04651d47b4c, 0x3c0cdd765f114000},
  662. {0x88d8762bf324cd0f, 0xa5880a69fb6ac800},
  663. {0xab0e93b6efee0053, 0x8eea0d047a457a00},
  664. {0xd5d238a4abe98068, 0x72a4904598d6d880},
  665. {0x85a36366eb71f041, 0x47a6da2b7f864750},
  666. {0xa70c3c40a64e6c51, 0x999090b65f67d924},
  667. {0xd0cf4b50cfe20765, 0xfff4b4e3f741cf6d},
  668. {0x82818f1281ed449f, 0xbff8f10e7a8921a5},
  669. {0xa321f2d7226895c7, 0xaff72d52192b6a0e},
  670. {0xcbea6f8ceb02bb39, 0x9bf4f8a69f764491},
  671. {0xfee50b7025c36a08, 0x02f236d04753d5b5},
  672. {0x9f4f2726179a2245, 0x01d762422c946591},
  673. {0xc722f0ef9d80aad6, 0x424d3ad2b7b97ef6},
  674. {0xf8ebad2b84e0d58b, 0xd2e0898765a7deb3},
  675. {0x9b934c3b330c8577, 0x63cc55f49f88eb30},
  676. {0xc2781f49ffcfa6d5, 0x3cbf6b71c76b25fc},
  677. {0xf316271c7fc3908a, 0x8bef464e3945ef7b},
  678. {0x97edd871cfda3a56, 0x97758bf0e3cbb5ad},
  679. {0xbde94e8e43d0c8ec, 0x3d52eeed1cbea318},
  680. {0xed63a231d4c4fb27, 0x4ca7aaa863ee4bde},
  681. {0x945e455f24fb1cf8, 0x8fe8caa93e74ef6b},
  682. {0xb975d6b6ee39e436, 0xb3e2fd538e122b45},
  683. {0xe7d34c64a9c85d44, 0x60dbbca87196b617},
  684. {0x90e40fbeea1d3a4a, 0xbc8955e946fe31ce},
  685. {0xb51d13aea4a488dd, 0x6babab6398bdbe42},
  686. {0xe264589a4dcdab14, 0xc696963c7eed2dd2},
  687. {0x8d7eb76070a08aec, 0xfc1e1de5cf543ca3},
  688. {0xb0de65388cc8ada8, 0x3b25a55f43294bcc},
  689. {0xdd15fe86affad912, 0x49ef0eb713f39ebf},
  690. {0x8a2dbf142dfcc7ab, 0x6e3569326c784338},
  691. {0xacb92ed9397bf996, 0x49c2c37f07965405},
  692. {0xd7e77a8f87daf7fb, 0xdc33745ec97be907},
  693. {0x86f0ac99b4e8dafd, 0x69a028bb3ded71a4},
  694. {0xa8acd7c0222311bc, 0xc40832ea0d68ce0d},
  695. {0xd2d80db02aabd62b, 0xf50a3fa490c30191},
  696. {0x83c7088e1aab65db, 0x792667c6da79e0fb},
  697. {0xa4b8cab1a1563f52, 0x577001b891185939},
  698. {0xcde6fd5e09abcf26, 0xed4c0226b55e6f87},
  699. {0x80b05e5ac60b6178, 0x544f8158315b05b5},
  700. {0xa0dc75f1778e39d6, 0x696361ae3db1c722},
  701. {0xc913936dd571c84c, 0x03bc3a19cd1e38ea},
  702. {0xfb5878494ace3a5f, 0x04ab48a04065c724},
  703. {0x9d174b2dcec0e47b, 0x62eb0d64283f9c77},
  704. {0xc45d1df942711d9a, 0x3ba5d0bd324f8395},
  705. {0xf5746577930d6500, 0xca8f44ec7ee3647a},
  706. {0x9968bf6abbe85f20, 0x7e998b13cf4e1ecc},
  707. {0xbfc2ef456ae276e8, 0x9e3fedd8c321a67f},
  708. {0xefb3ab16c59b14a2, 0xc5cfe94ef3ea101f},
  709. {0x95d04aee3b80ece5, 0xbba1f1d158724a13},
  710. {0xbb445da9ca61281f, 0x2a8a6e45ae8edc98},
  711. {0xea1575143cf97226, 0xf52d09d71a3293be},
  712. {0x924d692ca61be758, 0x593c2626705f9c57},
  713. {0xb6e0c377cfa2e12e, 0x6f8b2fb00c77836d},
  714. {0xe498f455c38b997a, 0x0b6dfb9c0f956448},
  715. {0x8edf98b59a373fec, 0x4724bd4189bd5ead},
  716. {0xb2977ee300c50fe7, 0x58edec91ec2cb658},
  717. {0xdf3d5e9bc0f653e1, 0x2f2967b66737e3ee},
  718. {0x8b865b215899f46c, 0xbd79e0d20082ee75},
  719. {0xae67f1e9aec07187, 0xecd8590680a3aa12},
  720. {0xda01ee641a708de9, 0xe80e6f4820cc9496},
  721. {0x884134fe908658b2, 0x3109058d147fdcde},
  722. {0xaa51823e34a7eede, 0xbd4b46f0599fd416},
  723. {0xd4e5e2cdc1d1ea96, 0x6c9e18ac7007c91b},
  724. {0x850fadc09923329e, 0x03e2cf6bc604ddb1},
  725. {0xa6539930bf6bff45, 0x84db8346b786151d},
  726. {0xcfe87f7cef46ff16, 0xe612641865679a64},
  727. {0x81f14fae158c5f6e, 0x4fcb7e8f3f60c07f},
  728. {0xa26da3999aef7749, 0xe3be5e330f38f09e},
  729. {0xcb090c8001ab551c, 0x5cadf5bfd3072cc6},
  730. {0xfdcb4fa002162a63, 0x73d9732fc7c8f7f7},
  731. {0x9e9f11c4014dda7e, 0x2867e7fddcdd9afb},
  732. {0xc646d63501a1511d, 0xb281e1fd541501b9},
  733. {0xf7d88bc24209a565, 0x1f225a7ca91a4227},
  734. {0x9ae757596946075f, 0x3375788de9b06959},
  735. {0xc1a12d2fc3978937, 0x0052d6b1641c83af},
  736. {0xf209787bb47d6b84, 0xc0678c5dbd23a49b},
  737. {0x9745eb4d50ce6332, 0xf840b7ba963646e1},
  738. {0xbd176620a501fbff, 0xb650e5a93bc3d899},
  739. {0xec5d3fa8ce427aff, 0xa3e51f138ab4cebf},
  740. {0x93ba47c980e98cdf, 0xc66f336c36b10138},
  741. {0xb8a8d9bbe123f017, 0xb80b0047445d4185},
  742. {0xe6d3102ad96cec1d, 0xa60dc059157491e6},
  743. {0x9043ea1ac7e41392, 0x87c89837ad68db30},
  744. {0xb454e4a179dd1877, 0x29babe4598c311fc},
  745. {0xe16a1dc9d8545e94, 0xf4296dd6fef3d67b},
  746. {0x8ce2529e2734bb1d, 0x1899e4a65f58660d},
  747. {0xb01ae745b101e9e4, 0x5ec05dcff72e7f90},
  748. {0xdc21a1171d42645d, 0x76707543f4fa1f74},
  749. {0x899504ae72497eba, 0x6a06494a791c53a9},
  750. {0xabfa45da0edbde69, 0x0487db9d17636893},
  751. {0xd6f8d7509292d603, 0x45a9d2845d3c42b7},
  752. {0x865b86925b9bc5c2, 0x0b8a2392ba45a9b3},
  753. {0xa7f26836f282b732, 0x8e6cac7768d7141f},
  754. {0xd1ef0244af2364ff, 0x3207d795430cd927},
  755. {0x8335616aed761f1f, 0x7f44e6bd49e807b9},
  756. {0xa402b9c5a8d3a6e7, 0x5f16206c9c6209a7},
  757. {0xcd036837130890a1, 0x36dba887c37a8c10},
  758. {0x802221226be55a64, 0xc2494954da2c978a},
  759. {0xa02aa96b06deb0fd, 0xf2db9baa10b7bd6d},
  760. {0xc83553c5c8965d3d, 0x6f92829494e5acc8},
  761. {0xfa42a8b73abbf48c, 0xcb772339ba1f17fa},
  762. {0x9c69a97284b578d7, 0xff2a760414536efc},
  763. {0xc38413cf25e2d70d, 0xfef5138519684abb},
  764. {0xf46518c2ef5b8cd1, 0x7eb258665fc25d6a},
  765. {0x98bf2f79d5993802, 0xef2f773ffbd97a62},
  766. {0xbeeefb584aff8603, 0xaafb550ffacfd8fb},
  767. {0xeeaaba2e5dbf6784, 0x95ba2a53f983cf39},
  768. {0x952ab45cfa97a0b2, 0xdd945a747bf26184},
  769. {0xba756174393d88df, 0x94f971119aeef9e5},
  770. {0xe912b9d1478ceb17, 0x7a37cd5601aab85e},
  771. {0x91abb422ccb812ee, 0xac62e055c10ab33b},
  772. {0xb616a12b7fe617aa, 0x577b986b314d600a},
  773. {0xe39c49765fdf9d94, 0xed5a7e85fda0b80c},
  774. {0x8e41ade9fbebc27d, 0x14588f13be847308},
  775. {0xb1d219647ae6b31c, 0x596eb2d8ae258fc9},
  776. {0xde469fbd99a05fe3, 0x6fca5f8ed9aef3bc},
  777. {0x8aec23d680043bee, 0x25de7bb9480d5855},
  778. {0xada72ccc20054ae9, 0xaf561aa79a10ae6b},
  779. {0xd910f7ff28069da4, 0x1b2ba1518094da05},
  780. {0x87aa9aff79042286, 0x90fb44d2f05d0843},
  781. {0xa99541bf57452b28, 0x353a1607ac744a54},
  782. {0xd3fa922f2d1675f2, 0x42889b8997915ce9},
  783. {0x847c9b5d7c2e09b7, 0x69956135febada12},
  784. {0xa59bc234db398c25, 0x43fab9837e699096},
  785. {0xcf02b2c21207ef2e, 0x94f967e45e03f4bc},
  786. {0x8161afb94b44f57d, 0x1d1be0eebac278f6},
  787. {0xa1ba1ba79e1632dc, 0x6462d92a69731733},
  788. {0xca28a291859bbf93, 0x7d7b8f7503cfdcff},
  789. {0xfcb2cb35e702af78, 0x5cda735244c3d43f},
  790. {0x9defbf01b061adab, 0x3a0888136afa64a8},
  791. {0xc56baec21c7a1916, 0x088aaa1845b8fdd1},
  792. {0xf6c69a72a3989f5b, 0x8aad549e57273d46},
  793. {0x9a3c2087a63f6399, 0x36ac54e2f678864c},
  794. {0xc0cb28a98fcf3c7f, 0x84576a1bb416a7de},
  795. {0xf0fdf2d3f3c30b9f, 0x656d44a2a11c51d6},
  796. {0x969eb7c47859e743, 0x9f644ae5a4b1b326},
  797. {0xbc4665b596706114, 0x873d5d9f0dde1fef},
  798. {0xeb57ff22fc0c7959, 0xa90cb506d155a7eb},
  799. {0x9316ff75dd87cbd8, 0x09a7f12442d588f3},
  800. {0xb7dcbf5354e9bece, 0x0c11ed6d538aeb30},
  801. {0xe5d3ef282a242e81, 0x8f1668c8a86da5fb},
  802. {0x8fa475791a569d10, 0xf96e017d694487bd},
  803. {0xb38d92d760ec4455, 0x37c981dcc395a9ad},
  804. {0xe070f78d3927556a, 0x85bbe253f47b1418},
  805. {0x8c469ab843b89562, 0x93956d7478ccec8f},
  806. {0xaf58416654a6babb, 0x387ac8d1970027b3},
  807. {0xdb2e51bfe9d0696a, 0x06997b05fcc0319f},
  808. {0x88fcf317f22241e2, 0x441fece3bdf81f04},
  809. {0xab3c2fddeeaad25a, 0xd527e81cad7626c4},
  810. {0xd60b3bd56a5586f1, 0x8a71e223d8d3b075},
  811. {0x85c7056562757456, 0xf6872d5667844e4a},
  812. {0xa738c6bebb12d16c, 0xb428f8ac016561dc},
  813. {0xd106f86e69d785c7, 0xe13336d701beba53},
  814. {0x82a45b450226b39c, 0xecc0024661173474},
  815. {0xa34d721642b06084, 0x27f002d7f95d0191},
  816. {0xcc20ce9bd35c78a5, 0x31ec038df7b441f5},
  817. {0xff290242c83396ce, 0x7e67047175a15272},
  818. {0x9f79a169bd203e41, 0x0f0062c6e984d387},
  819. {0xc75809c42c684dd1, 0x52c07b78a3e60869},
  820. {0xf92e0c3537826145, 0xa7709a56ccdf8a83},
  821. {0x9bbcc7a142b17ccb, 0x88a66076400bb692},
  822. {0xc2abf989935ddbfe, 0x6acff893d00ea436},
  823. {0xf356f7ebf83552fe, 0x0583f6b8c4124d44},
  824. {0x98165af37b2153de, 0xc3727a337a8b704b},
  825. {0xbe1bf1b059e9a8d6, 0x744f18c0592e4c5d},
  826. {0xeda2ee1c7064130c, 0x1162def06f79df74},
  827. {0x9485d4d1c63e8be7, 0x8addcb5645ac2ba9},
  828. {0xb9a74a0637ce2ee1, 0x6d953e2bd7173693},
  829. {0xe8111c87c5c1ba99, 0xc8fa8db6ccdd0438},
  830. {0x910ab1d4db9914a0, 0x1d9c9892400a22a3},
  831. {0xb54d5e4a127f59c8, 0x2503beb6d00cab4c},
  832. {0xe2a0b5dc971f303a, 0x2e44ae64840fd61e},
  833. {0x8da471a9de737e24, 0x5ceaecfed289e5d3},
  834. {0xb10d8e1456105dad, 0x7425a83e872c5f48},
  835. {0xdd50f1996b947518, 0xd12f124e28f7771a},
  836. {0x8a5296ffe33cc92f, 0x82bd6b70d99aaa70},
  837. {0xace73cbfdc0bfb7b, 0x636cc64d1001550c},
  838. {0xd8210befd30efa5a, 0x3c47f7e05401aa4f},
  839. {0x8714a775e3e95c78, 0x65acfaec34810a72},
  840. {0xa8d9d1535ce3b396, 0x7f1839a741a14d0e},
  841. {0xd31045a8341ca07c, 0x1ede48111209a051},
  842. {0x83ea2b892091e44d, 0x934aed0aab460433},
  843. {0xa4e4b66b68b65d60, 0xf81da84d56178540},
  844. {0xce1de40642e3f4b9, 0x36251260ab9d668f},
  845. {0x80d2ae83e9ce78f3, 0xc1d72b7c6b42601a},
  846. {0xa1075a24e4421730, 0xb24cf65b8612f820},
  847. {0xc94930ae1d529cfc, 0xdee033f26797b628},
  848. {0xfb9b7cd9a4a7443c, 0x169840ef017da3b2},
  849. {0x9d412e0806e88aa5, 0x8e1f289560ee864f},
  850. {0xc491798a08a2ad4e, 0xf1a6f2bab92a27e3},
  851. {0xf5b5d7ec8acb58a2, 0xae10af696774b1dc},
  852. {0x9991a6f3d6bf1765, 0xacca6da1e0a8ef2a},
  853. {0xbff610b0cc6edd3f, 0x17fd090a58d32af4},
  854. {0xeff394dcff8a948e, 0xddfc4b4cef07f5b1},
  855. {0x95f83d0a1fb69cd9, 0x4abdaf101564f98f},
  856. {0xbb764c4ca7a4440f, 0x9d6d1ad41abe37f2},
  857. {0xea53df5fd18d5513, 0x84c86189216dc5ee},
  858. {0x92746b9be2f8552c, 0x32fd3cf5b4e49bb5},
  859. {0xb7118682dbb66a77, 0x3fbc8c33221dc2a2},
  860. {0xe4d5e82392a40515, 0x0fabaf3feaa5334b},
  861. {0x8f05b1163ba6832d, 0x29cb4d87f2a7400f},
  862. {0xb2c71d5bca9023f8, 0x743e20e9ef511013},
  863. {0xdf78e4b2bd342cf6, 0x914da9246b255417},
  864. {0x8bab8eefb6409c1a, 0x1ad089b6c2f7548f},
  865. {0xae9672aba3d0c320, 0xa184ac2473b529b2},
  866. {0xda3c0f568cc4f3e8, 0xc9e5d72d90a2741f},
  867. {0x8865899617fb1871, 0x7e2fa67c7a658893},
  868. {0xaa7eebfb9df9de8d, 0xddbb901b98feeab8},
  869. {0xd51ea6fa85785631, 0x552a74227f3ea566},
  870. {0x8533285c936b35de, 0xd53a88958f872760},
  871. {0xa67ff273b8460356, 0x8a892abaf368f138},
  872. {0xd01fef10a657842c, 0x2d2b7569b0432d86},
  873. {0x8213f56a67f6b29b, 0x9c3b29620e29fc74},
  874. {0xa298f2c501f45f42, 0x8349f3ba91b47b90},
  875. {0xcb3f2f7642717713, 0x241c70a936219a74},
  876. {0xfe0efb53d30dd4d7, 0xed238cd383aa0111},
  877. {0x9ec95d1463e8a506, 0xf4363804324a40ab},
  878. {0xc67bb4597ce2ce48, 0xb143c6053edcd0d6},
  879. {0xf81aa16fdc1b81da, 0xdd94b7868e94050b},
  880. {0x9b10a4e5e9913128, 0xca7cf2b4191c8327},
  881. {0xc1d4ce1f63f57d72, 0xfd1c2f611f63a3f1},
  882. {0xf24a01a73cf2dccf, 0xbc633b39673c8ced},
  883. {0x976e41088617ca01, 0xd5be0503e085d814},
  884. {0xbd49d14aa79dbc82, 0x4b2d8644d8a74e19},
  885. {0xec9c459d51852ba2, 0xddf8e7d60ed1219f},
  886. {0x93e1ab8252f33b45, 0xcabb90e5c942b504},
  887. {0xb8da1662e7b00a17, 0x3d6a751f3b936244},
  888. {0xe7109bfba19c0c9d, 0x0cc512670a783ad5},
  889. {0x906a617d450187e2, 0x27fb2b80668b24c6},
  890. {0xb484f9dc9641e9da, 0xb1f9f660802dedf7},
  891. {0xe1a63853bbd26451, 0x5e7873f8a0396974},
  892. {0x8d07e33455637eb2, 0xdb0b487b6423e1e9},
  893. {0xb049dc016abc5e5f, 0x91ce1a9a3d2cda63},
  894. {0xdc5c5301c56b75f7, 0x7641a140cc7810fc},
  895. {0x89b9b3e11b6329ba, 0xa9e904c87fcb0a9e},
  896. {0xac2820d9623bf429, 0x546345fa9fbdcd45},
  897. {0xd732290fbacaf133, 0xa97c177947ad4096},
  898. {0x867f59a9d4bed6c0, 0x49ed8eabcccc485e},
  899. {0xa81f301449ee8c70, 0x5c68f256bfff5a75},
  900. {0xd226fc195c6a2f8c, 0x73832eec6fff3112},
  901. {0x83585d8fd9c25db7, 0xc831fd53c5ff7eac},
  902. {0xa42e74f3d032f525, 0xba3e7ca8b77f5e56},
  903. {0xcd3a1230c43fb26f, 0x28ce1bd2e55f35ec},
  904. {0x80444b5e7aa7cf85, 0x7980d163cf5b81b4},
  905. {0xa0555e361951c366, 0xd7e105bcc3326220},
  906. {0xc86ab5c39fa63440, 0x8dd9472bf3fefaa8},
  907. {0xfa856334878fc150, 0xb14f98f6f0feb952},
  908. {0x9c935e00d4b9d8d2, 0x6ed1bf9a569f33d4},
  909. {0xc3b8358109e84f07, 0x0a862f80ec4700c9},
  910. {0xf4a642e14c6262c8, 0xcd27bb612758c0fb},
  911. {0x98e7e9cccfbd7dbd, 0x8038d51cb897789d},
  912. {0xbf21e44003acdd2c, 0xe0470a63e6bd56c4},
  913. {0xeeea5d5004981478, 0x1858ccfce06cac75},
  914. {0x95527a5202df0ccb, 0x0f37801e0c43ebc9},
  915. {0xbaa718e68396cffd, 0xd30560258f54e6bb},
  916. {0xe950df20247c83fd, 0x47c6b82ef32a206a},
  917. {0x91d28b7416cdd27e, 0x4cdc331d57fa5442},
  918. {0xb6472e511c81471d, 0xe0133fe4adf8e953},
  919. {0xe3d8f9e563a198e5, 0x58180fddd97723a7},
  920. {0x8e679c2f5e44ff8f, 0x570f09eaa7ea7649},
  921. {0xb201833b35d63f73, 0x2cd2cc6551e513db},
  922. {0xde81e40a034bcf4f, 0xf8077f7ea65e58d2},
  923. {0x8b112e86420f6191, 0xfb04afaf27faf783},
  924. {0xadd57a27d29339f6, 0x79c5db9af1f9b564},
  925. {0xd94ad8b1c7380874, 0x18375281ae7822bd},
  926. {0x87cec76f1c830548, 0x8f2293910d0b15b6},
  927. {0xa9c2794ae3a3c69a, 0xb2eb3875504ddb23},
  928. {0xd433179d9c8cb841, 0x5fa60692a46151ec},
  929. {0x849feec281d7f328, 0xdbc7c41ba6bcd334},
  930. {0xa5c7ea73224deff3, 0x12b9b522906c0801},
  931. {0xcf39e50feae16bef, 0xd768226b34870a01},
  932. {0x81842f29f2cce375, 0xe6a1158300d46641},
  933. {0xa1e53af46f801c53, 0x60495ae3c1097fd1},
  934. {0xca5e89b18b602368, 0x385bb19cb14bdfc5},
  935. {0xfcf62c1dee382c42, 0x46729e03dd9ed7b6},
  936. {0x9e19db92b4e31ba9, 0x6c07a2c26a8346d2},
  937. {0xc5a05277621be293, 0xc7098b7305241886},
  938. {0xf70867153aa2db38, 0xb8cbee4fc66d1ea8},
  939. {0x9a65406d44a5c903, 0x737f74f1dc043329},
  940. {0xc0fe908895cf3b44, 0x505f522e53053ff3},
  941. {0xf13e34aabb430a15, 0x647726b9e7c68ff0},
  942. {0x96c6e0eab509e64d, 0x5eca783430dc19f6},
  943. {0xbc789925624c5fe0, 0xb67d16413d132073},
  944. {0xeb96bf6ebadf77d8, 0xe41c5bd18c57e890},
  945. {0x933e37a534cbaae7, 0x8e91b962f7b6f15a},
  946. {0xb80dc58e81fe95a1, 0x723627bbb5a4adb1},
  947. {0xe61136f2227e3b09, 0xcec3b1aaa30dd91d},
  948. {0x8fcac257558ee4e6, 0x213a4f0aa5e8a7b2},
  949. {0xb3bd72ed2af29e1f, 0xa988e2cd4f62d19e},
  950. {0xe0accfa875af45a7, 0x93eb1b80a33b8606},
  951. {0x8c6c01c9498d8b88, 0xbc72f130660533c4},
  952. {0xaf87023b9bf0ee6a, 0xeb8fad7c7f8680b5},
  953. {0xdb68c2ca82ed2a05, 0xa67398db9f6820e2},
  954. #else
  955. {0xff77b1fcbebcdc4f, 0x25e8e89c13bb0f7b},
  956. {0xce5d73ff402d98e3, 0xfb0a3d212dc81290},
  957. {0xa6b34ad8c9dfc06f, 0xf42faa48c0ea481f},
  958. {0x86a8d39ef77164bc, 0xae5dff9c02033198},
  959. {0xd98ddaee19068c76, 0x3badd624dd9b0958},
  960. {0xafbd2350644eeacf, 0xe5d1929ef90898fb},
  961. {0x8df5efabc5979c8f, 0xca8d3ffa1ef463c2},
  962. {0xe55990879ddcaabd, 0xcc420a6a101d0516},
  963. {0xb94470938fa89bce, 0xf808e40e8d5b3e6a},
  964. {0x95a8637627989aad, 0xdde7001379a44aa9},
  965. {0xf1c90080baf72cb1, 0x5324c68b12dd6339},
  966. {0xc350000000000000, 0x0000000000000000},
  967. {0x9dc5ada82b70b59d, 0xf020000000000000},
  968. {0xfee50b7025c36a08, 0x02f236d04753d5b5},
  969. {0xcde6fd5e09abcf26, 0xed4c0226b55e6f87},
  970. {0xa6539930bf6bff45, 0x84db8346b786151d},
  971. {0x865b86925b9bc5c2, 0x0b8a2392ba45a9b3},
  972. {0xd910f7ff28069da4, 0x1b2ba1518094da05},
  973. {0xaf58416654a6babb, 0x387ac8d1970027b3},
  974. {0x8da471a9de737e24, 0x5ceaecfed289e5d3},
  975. {0xe4d5e82392a40515, 0x0fabaf3feaa5334b},
  976. {0xb8da1662e7b00a17, 0x3d6a751f3b936244},
  977. {0x95527a5202df0ccb, 0x0f37801e0c43ebc9},
  978. {0xf13e34aabb430a15, 0x647726b9e7c68ff0}
  979. #endif
  980. };
  981. #if FMT_USE_FULL_CACHE_DRAGONBOX
  982. return pow10_significands[k - float_info<double>::min_k];
  983. #else
  984. static constexpr const uint64_t powers_of_5_64[] = {
  985. 0x0000000000000001, 0x0000000000000005, 0x0000000000000019,
  986. 0x000000000000007d, 0x0000000000000271, 0x0000000000000c35,
  987. 0x0000000000003d09, 0x000000000001312d, 0x000000000005f5e1,
  988. 0x00000000001dcd65, 0x00000000009502f9, 0x0000000002e90edd,
  989. 0x000000000e8d4a51, 0x0000000048c27395, 0x000000016bcc41e9,
  990. 0x000000071afd498d, 0x0000002386f26fc1, 0x000000b1a2bc2ec5,
  991. 0x000003782dace9d9, 0x00001158e460913d, 0x000056bc75e2d631,
  992. 0x0001b1ae4d6e2ef5, 0x000878678326eac9, 0x002a5a058fc295ed,
  993. 0x00d3c21bcecceda1, 0x0422ca8b0a00a425, 0x14adf4b7320334b9};
  994. static const int compression_ratio = 27;
  995. // Compute base index.
  996. int cache_index = (k - float_info<double>::min_k) / compression_ratio;
  997. int kb = cache_index * compression_ratio + float_info<double>::min_k;
  998. int offset = k - kb;
  999. // Get base cache.
  1000. uint128_fallback base_cache = pow10_significands[cache_index];
  1001. if (offset == 0) return base_cache;
  1002. // Compute the required amount of bit-shift.
  1003. int alpha = floor_log2_pow10(kb + offset) - floor_log2_pow10(kb) - offset;
  1004. FMT_ASSERT(alpha > 0 && alpha < 64, "shifting error detected");
  1005. // Try to recover the real cache.
  1006. uint64_t pow5 = powers_of_5_64[offset];
  1007. uint128_fallback recovered_cache = umul128(base_cache.high(), pow5);
  1008. uint128_fallback middle_low = umul128(base_cache.low(), pow5);
  1009. recovered_cache += middle_low.high();
  1010. uint64_t high_to_middle = recovered_cache.high() << (64 - alpha);
  1011. uint64_t middle_to_low = recovered_cache.low() << (64 - alpha);
  1012. recovered_cache =
  1013. uint128_fallback{(recovered_cache.low() >> alpha) | high_to_middle,
  1014. ((middle_low.low() >> alpha) | middle_to_low)};
  1015. FMT_ASSERT(recovered_cache.low() + 1 != 0, "");
  1016. return {recovered_cache.high(), recovered_cache.low() + 1};
  1017. #endif
  1018. }
  1019. struct compute_mul_result {
  1020. carrier_uint result;
  1021. bool is_integer;
  1022. };
  1023. struct compute_mul_parity_result {
  1024. bool parity;
  1025. bool is_integer;
  1026. };
  1027. static auto compute_mul(carrier_uint u,
  1028. const cache_entry_type& cache) noexcept
  1029. -> compute_mul_result {
  1030. auto r = umul192_upper128(u, cache);
  1031. return {r.high(), r.low() == 0};
  1032. }
  1033. static auto compute_delta(cache_entry_type const& cache, int beta) noexcept
  1034. -> uint32_t {
  1035. return static_cast<uint32_t>(cache.high() >> (64 - 1 - beta));
  1036. }
  1037. static auto compute_mul_parity(carrier_uint two_f,
  1038. const cache_entry_type& cache,
  1039. int beta) noexcept
  1040. -> compute_mul_parity_result {
  1041. FMT_ASSERT(beta >= 1, "");
  1042. FMT_ASSERT(beta < 64, "");
  1043. auto r = umul192_lower128(two_f, cache);
  1044. return {((r.high() >> (64 - beta)) & 1) != 0,
  1045. ((r.high() << beta) | (r.low() >> (64 - beta))) == 0};
  1046. }
  1047. static auto compute_left_endpoint_for_shorter_interval_case(
  1048. const cache_entry_type& cache, int beta) noexcept -> carrier_uint {
  1049. return (cache.high() -
  1050. (cache.high() >> (num_significand_bits<double>() + 2))) >>
  1051. (64 - num_significand_bits<double>() - 1 - beta);
  1052. }
  1053. static auto compute_right_endpoint_for_shorter_interval_case(
  1054. const cache_entry_type& cache, int beta) noexcept -> carrier_uint {
  1055. return (cache.high() +
  1056. (cache.high() >> (num_significand_bits<double>() + 1))) >>
  1057. (64 - num_significand_bits<double>() - 1 - beta);
  1058. }
  1059. static auto compute_round_up_for_shorter_interval_case(
  1060. const cache_entry_type& cache, int beta) noexcept -> carrier_uint {
  1061. return ((cache.high() >> (64 - num_significand_bits<double>() - 2 - beta)) +
  1062. 1) /
  1063. 2;
  1064. }
  1065. };
  1066. FMT_FUNC auto get_cached_power(int k) noexcept -> uint128_fallback {
  1067. return cache_accessor<double>::get_cached_power(k);
  1068. }
  1069. // Various integer checks
  1070. template <typename T>
  1071. auto is_left_endpoint_integer_shorter_interval(int exponent) noexcept -> bool {
  1072. const int case_shorter_interval_left_endpoint_lower_threshold = 2;
  1073. const int case_shorter_interval_left_endpoint_upper_threshold = 3;
  1074. return exponent >= case_shorter_interval_left_endpoint_lower_threshold &&
  1075. exponent <= case_shorter_interval_left_endpoint_upper_threshold;
  1076. }
  1077. // Remove trailing zeros from n and return the number of zeros removed (float)
  1078. FMT_INLINE int remove_trailing_zeros(uint32_t& n, int s = 0) noexcept {
  1079. FMT_ASSERT(n != 0, "");
  1080. // Modular inverse of 5 (mod 2^32): (mod_inv_5 * 5) mod 2^32 = 1.
  1081. constexpr uint32_t mod_inv_5 = 0xcccccccd;
  1082. constexpr uint32_t mod_inv_25 = 0xc28f5c29; // = mod_inv_5 * mod_inv_5
  1083. while (true) {
  1084. auto q = rotr(n * mod_inv_25, 2);
  1085. if (q > max_value<uint32_t>() / 100) break;
  1086. n = q;
  1087. s += 2;
  1088. }
  1089. auto q = rotr(n * mod_inv_5, 1);
  1090. if (q <= max_value<uint32_t>() / 10) {
  1091. n = q;
  1092. s |= 1;
  1093. }
  1094. return s;
  1095. }
  1096. // Removes trailing zeros and returns the number of zeros removed (double)
  1097. FMT_INLINE int remove_trailing_zeros(uint64_t& n) noexcept {
  1098. FMT_ASSERT(n != 0, "");
  1099. // This magic number is ceil(2^90 / 10^8).
  1100. constexpr uint64_t magic_number = 12379400392853802749ull;
  1101. auto nm = umul128(n, magic_number);
  1102. // Is n is divisible by 10^8?
  1103. if ((nm.high() & ((1ull << (90 - 64)) - 1)) == 0 && nm.low() < magic_number) {
  1104. // If yes, work with the quotient...
  1105. auto n32 = static_cast<uint32_t>(nm.high() >> (90 - 64));
  1106. // ... and use the 32 bit variant of the function
  1107. int s = remove_trailing_zeros(n32, 8);
  1108. n = n32;
  1109. return s;
  1110. }
  1111. // If n is not divisible by 10^8, work with n itself.
  1112. constexpr uint64_t mod_inv_5 = 0xcccccccccccccccd;
  1113. constexpr uint64_t mod_inv_25 = 0x8f5c28f5c28f5c29; // mod_inv_5 * mod_inv_5
  1114. int s = 0;
  1115. while (true) {
  1116. auto q = rotr(n * mod_inv_25, 2);
  1117. if (q > max_value<uint64_t>() / 100) break;
  1118. n = q;
  1119. s += 2;
  1120. }
  1121. auto q = rotr(n * mod_inv_5, 1);
  1122. if (q <= max_value<uint64_t>() / 10) {
  1123. n = q;
  1124. s |= 1;
  1125. }
  1126. return s;
  1127. }
  1128. // The main algorithm for shorter interval case
  1129. template <typename T>
  1130. FMT_INLINE decimal_fp<T> shorter_interval_case(int exponent) noexcept {
  1131. decimal_fp<T> ret_value;
  1132. // Compute k and beta
  1133. const int minus_k = floor_log10_pow2_minus_log10_4_over_3(exponent);
  1134. const int beta = exponent + floor_log2_pow10(-minus_k);
  1135. // Compute xi and zi
  1136. using cache_entry_type = typename cache_accessor<T>::cache_entry_type;
  1137. const cache_entry_type cache = cache_accessor<T>::get_cached_power(-minus_k);
  1138. auto xi = cache_accessor<T>::compute_left_endpoint_for_shorter_interval_case(
  1139. cache, beta);
  1140. auto zi = cache_accessor<T>::compute_right_endpoint_for_shorter_interval_case(
  1141. cache, beta);
  1142. // If the left endpoint is not an integer, increase it
  1143. if (!is_left_endpoint_integer_shorter_interval<T>(exponent)) ++xi;
  1144. // Try bigger divisor
  1145. ret_value.significand = zi / 10;
  1146. // If succeed, remove trailing zeros if necessary and return
  1147. if (ret_value.significand * 10 >= xi) {
  1148. ret_value.exponent = minus_k + 1;
  1149. ret_value.exponent += remove_trailing_zeros(ret_value.significand);
  1150. return ret_value;
  1151. }
  1152. // Otherwise, compute the round-up of y
  1153. ret_value.significand =
  1154. cache_accessor<T>::compute_round_up_for_shorter_interval_case(cache,
  1155. beta);
  1156. ret_value.exponent = minus_k;
  1157. // When tie occurs, choose one of them according to the rule
  1158. if (exponent >= float_info<T>::shorter_interval_tie_lower_threshold &&
  1159. exponent <= float_info<T>::shorter_interval_tie_upper_threshold) {
  1160. ret_value.significand = ret_value.significand % 2 == 0
  1161. ? ret_value.significand
  1162. : ret_value.significand - 1;
  1163. } else if (ret_value.significand < xi) {
  1164. ++ret_value.significand;
  1165. }
  1166. return ret_value;
  1167. }
  1168. template <typename T> auto to_decimal(T x) noexcept -> decimal_fp<T> {
  1169. // Step 1: integer promotion & Schubfach multiplier calculation.
  1170. using carrier_uint = typename float_info<T>::carrier_uint;
  1171. using cache_entry_type = typename cache_accessor<T>::cache_entry_type;
  1172. auto br = bit_cast<carrier_uint>(x);
  1173. // Extract significand bits and exponent bits.
  1174. const carrier_uint significand_mask =
  1175. (static_cast<carrier_uint>(1) << num_significand_bits<T>()) - 1;
  1176. carrier_uint significand = (br & significand_mask);
  1177. int exponent =
  1178. static_cast<int>((br & exponent_mask<T>()) >> num_significand_bits<T>());
  1179. if (exponent != 0) { // Check if normal.
  1180. exponent -= exponent_bias<T>() + num_significand_bits<T>();
  1181. // Shorter interval case; proceed like Schubfach.
  1182. // In fact, when exponent == 1 and significand == 0, the interval is
  1183. // regular. However, it can be shown that the end-results are anyway same.
  1184. if (significand == 0) return shorter_interval_case<T>(exponent);
  1185. significand |= (static_cast<carrier_uint>(1) << num_significand_bits<T>());
  1186. } else {
  1187. // Subnormal case; the interval is always regular.
  1188. if (significand == 0) return {0, 0};
  1189. exponent =
  1190. std::numeric_limits<T>::min_exponent - num_significand_bits<T>() - 1;
  1191. }
  1192. const bool include_left_endpoint = (significand % 2 == 0);
  1193. const bool include_right_endpoint = include_left_endpoint;
  1194. // Compute k and beta.
  1195. const int minus_k = floor_log10_pow2(exponent) - float_info<T>::kappa;
  1196. const cache_entry_type cache = cache_accessor<T>::get_cached_power(-minus_k);
  1197. const int beta = exponent + floor_log2_pow10(-minus_k);
  1198. // Compute zi and deltai.
  1199. // 10^kappa <= deltai < 10^(kappa + 1)
  1200. const uint32_t deltai = cache_accessor<T>::compute_delta(cache, beta);
  1201. const carrier_uint two_fc = significand << 1;
  1202. // For the case of binary32, the result of integer check is not correct for
  1203. // 29711844 * 2^-82
  1204. // = 6.1442653300000000008655037797566933477355632930994033813476... * 10^-18
  1205. // and 29711844 * 2^-81
  1206. // = 1.2288530660000000001731007559513386695471126586198806762695... * 10^-17,
  1207. // and they are the unique counterexamples. However, since 29711844 is even,
  1208. // this does not cause any problem for the endpoints calculations; it can only
  1209. // cause a problem when we need to perform integer check for the center.
  1210. // Fortunately, with these inputs, that branch is never executed, so we are
  1211. // fine.
  1212. const typename cache_accessor<T>::compute_mul_result z_mul =
  1213. cache_accessor<T>::compute_mul((two_fc | 1) << beta, cache);
  1214. // Step 2: Try larger divisor; remove trailing zeros if necessary.
  1215. // Using an upper bound on zi, we might be able to optimize the division
  1216. // better than the compiler; we are computing zi / big_divisor here.
  1217. decimal_fp<T> ret_value;
  1218. ret_value.significand = divide_by_10_to_kappa_plus_1(z_mul.result);
  1219. uint32_t r = static_cast<uint32_t>(z_mul.result - float_info<T>::big_divisor *
  1220. ret_value.significand);
  1221. if (r < deltai) {
  1222. // Exclude the right endpoint if necessary.
  1223. if (r == 0 && (z_mul.is_integer & !include_right_endpoint)) {
  1224. --ret_value.significand;
  1225. r = float_info<T>::big_divisor;
  1226. goto small_divisor_case_label;
  1227. }
  1228. } else if (r > deltai) {
  1229. goto small_divisor_case_label;
  1230. } else {
  1231. // r == deltai; compare fractional parts.
  1232. const typename cache_accessor<T>::compute_mul_parity_result x_mul =
  1233. cache_accessor<T>::compute_mul_parity(two_fc - 1, cache, beta);
  1234. if (!(x_mul.parity | (x_mul.is_integer & include_left_endpoint)))
  1235. goto small_divisor_case_label;
  1236. }
  1237. ret_value.exponent = minus_k + float_info<T>::kappa + 1;
  1238. // We may need to remove trailing zeros.
  1239. ret_value.exponent += remove_trailing_zeros(ret_value.significand);
  1240. return ret_value;
  1241. // Step 3: Find the significand with the smaller divisor.
  1242. small_divisor_case_label:
  1243. ret_value.significand *= 10;
  1244. ret_value.exponent = minus_k + float_info<T>::kappa;
  1245. uint32_t dist = r - (deltai / 2) + (float_info<T>::small_divisor / 2);
  1246. const bool approx_y_parity =
  1247. ((dist ^ (float_info<T>::small_divisor / 2)) & 1) != 0;
  1248. // Is dist divisible by 10^kappa?
  1249. const bool divisible_by_small_divisor =
  1250. check_divisibility_and_divide_by_pow10<float_info<T>::kappa>(dist);
  1251. // Add dist / 10^kappa to the significand.
  1252. ret_value.significand += dist;
  1253. if (!divisible_by_small_divisor) return ret_value;
  1254. // Check z^(f) >= epsilon^(f).
  1255. // We have either yi == zi - epsiloni or yi == (zi - epsiloni) - 1,
  1256. // where yi == zi - epsiloni if and only if z^(f) >= epsilon^(f).
  1257. // Since there are only 2 possibilities, we only need to care about the
  1258. // parity. Also, zi and r should have the same parity since the divisor
  1259. // is an even number.
  1260. const auto y_mul = cache_accessor<T>::compute_mul_parity(two_fc, cache, beta);
  1261. // If z^(f) >= epsilon^(f), we might have a tie when z^(f) == epsilon^(f),
  1262. // or equivalently, when y is an integer.
  1263. if (y_mul.parity != approx_y_parity)
  1264. --ret_value.significand;
  1265. else if (y_mul.is_integer & (ret_value.significand % 2 != 0))
  1266. --ret_value.significand;
  1267. return ret_value;
  1268. }
  1269. } // namespace dragonbox
  1270. } // namespace detail
  1271. template <> struct formatter<detail::bigint> {
  1272. FMT_CONSTEXPR auto parse(format_parse_context& ctx)
  1273. -> format_parse_context::iterator {
  1274. return ctx.begin();
  1275. }
  1276. auto format(const detail::bigint& n, format_context& ctx) const
  1277. -> format_context::iterator {
  1278. auto out = ctx.out();
  1279. bool first = true;
  1280. for (auto i = n.bigits_.size(); i > 0; --i) {
  1281. auto value = n.bigits_[i - 1u];
  1282. if (first) {
  1283. out = fmt::format_to(out, FMT_STRING("{:x}"), value);
  1284. first = false;
  1285. continue;
  1286. }
  1287. out = fmt::format_to(out, FMT_STRING("{:08x}"), value);
  1288. }
  1289. if (n.exp_ > 0)
  1290. out = fmt::format_to(out, FMT_STRING("p{}"),
  1291. n.exp_ * detail::bigint::bigit_bits);
  1292. return out;
  1293. }
  1294. };
  1295. FMT_FUNC detail::utf8_to_utf16::utf8_to_utf16(string_view s) {
  1296. for_each_codepoint(s, [this](uint32_t cp, string_view) {
  1297. if (cp == invalid_code_point) FMT_THROW(std::runtime_error("invalid utf8"));
  1298. if (cp <= 0xFFFF) {
  1299. buffer_.push_back(static_cast<wchar_t>(cp));
  1300. } else {
  1301. cp -= 0x10000;
  1302. buffer_.push_back(static_cast<wchar_t>(0xD800 + (cp >> 10)));
  1303. buffer_.push_back(static_cast<wchar_t>(0xDC00 + (cp & 0x3FF)));
  1304. }
  1305. return true;
  1306. });
  1307. buffer_.push_back(0);
  1308. }
  1309. FMT_FUNC void format_system_error(detail::buffer<char>& out, int error_code,
  1310. const char* message) noexcept {
  1311. FMT_TRY {
  1312. auto ec = std::error_code(error_code, std::generic_category());
  1313. detail::write(appender(out), std::system_error(ec, message).what());
  1314. return;
  1315. }
  1316. FMT_CATCH(...) {}
  1317. format_error_code(out, error_code, message);
  1318. }
  1319. FMT_FUNC void report_system_error(int error_code,
  1320. const char* message) noexcept {
  1321. report_error(format_system_error, error_code, message);
  1322. }
  1323. FMT_FUNC auto vformat(string_view fmt, format_args args) -> std::string {
  1324. // Don't optimize the "{}" case to keep the binary size small and because it
  1325. // can be better optimized in fmt::format anyway.
  1326. auto buffer = memory_buffer();
  1327. detail::vformat_to(buffer, fmt, args);
  1328. return to_string(buffer);
  1329. }
  1330. namespace detail {
  1331. template <typename T> struct span {
  1332. T* data;
  1333. size_t size;
  1334. };
  1335. #ifdef _WIN32
  1336. inline void flockfile(FILE* f) { _lock_file(f); }
  1337. inline void funlockfile(FILE* f) { _unlock_file(f); }
  1338. inline int getc_unlocked(FILE* f) { return _fgetc_nolock(f); }
  1339. #endif
  1340. // A FILE wrapper. F is FILE defined as a template parameter to make system API
  1341. // detection work.
  1342. template <typename F> class file_base {
  1343. public:
  1344. F* file_;
  1345. public:
  1346. file_base(F* file) : file_(file) {}
  1347. operator F*() const { return file_; }
  1348. // Reads a code unit from the stream.
  1349. auto get() -> int {
  1350. int result = getc_unlocked(file_);
  1351. if (result == EOF && ferror(file_) != 0)
  1352. FMT_THROW(system_error(errno, FMT_STRING("getc failed")));
  1353. return result;
  1354. }
  1355. // Puts the code unit back into the stream buffer.
  1356. void unget(char c) {
  1357. if (ungetc(c, file_) == EOF)
  1358. FMT_THROW(system_error(errno, FMT_STRING("ungetc failed")));
  1359. }
  1360. void flush() { fflush(this->file_); }
  1361. };
  1362. // A FILE wrapper for glibc.
  1363. template <typename F> class glibc_file : public file_base<F> {
  1364. private:
  1365. enum {
  1366. line_buffered = 0x200, // _IO_LINE_BUF
  1367. unbuffered = 2 // _IO_UNBUFFERED
  1368. };
  1369. public:
  1370. using file_base<F>::file_base;
  1371. auto is_buffered() const -> bool {
  1372. return (this->file_->_flags & unbuffered) == 0;
  1373. }
  1374. void init_buffer() {
  1375. if (this->file_->_IO_write_ptr) return;
  1376. // Force buffer initialization by placing and removing a char in a buffer.
  1377. putc_unlocked(0, this->file_);
  1378. --this->file_->_IO_write_ptr;
  1379. }
  1380. // Returns the file's read buffer.
  1381. auto get_read_buffer() const -> span<const char> {
  1382. auto ptr = this->file_->_IO_read_ptr;
  1383. return {ptr, to_unsigned(this->file_->_IO_read_end - ptr)};
  1384. }
  1385. // Returns the file's write buffer.
  1386. auto get_write_buffer() const -> span<char> {
  1387. auto ptr = this->file_->_IO_write_ptr;
  1388. return {ptr, to_unsigned(this->file_->_IO_buf_end - ptr)};
  1389. }
  1390. void advance_write_buffer(size_t size) { this->file_->_IO_write_ptr += size; }
  1391. bool needs_flush() const {
  1392. if ((this->file_->_flags & line_buffered) == 0) return false;
  1393. char* end = this->file_->_IO_write_end;
  1394. return memchr(end, '\n', to_unsigned(this->file_->_IO_write_ptr - end));
  1395. }
  1396. void flush() { fflush_unlocked(this->file_); }
  1397. };
  1398. // A FILE wrapper for Apple's libc.
  1399. template <typename F> class apple_file : public file_base<F> {
  1400. private:
  1401. enum {
  1402. line_buffered = 1, // __SNBF
  1403. unbuffered = 2 // __SLBF
  1404. };
  1405. public:
  1406. using file_base<F>::file_base;
  1407. auto is_buffered() const -> bool {
  1408. return (this->file_->_flags & unbuffered) == 0;
  1409. }
  1410. void init_buffer() {
  1411. if (this->file_->_p) return;
  1412. // Force buffer initialization by placing and removing a char in a buffer.
  1413. putc_unlocked(0, this->file_);
  1414. --this->file_->_p;
  1415. ++this->file_->_w;
  1416. }
  1417. auto get_read_buffer() const -> span<const char> {
  1418. return {reinterpret_cast<char*>(this->file_->_p),
  1419. to_unsigned(this->file_->_r)};
  1420. }
  1421. auto get_write_buffer() const -> span<char> {
  1422. return {reinterpret_cast<char*>(this->file_->_p),
  1423. to_unsigned(this->file_->_bf._base + this->file_->_bf._size -
  1424. this->file_->_p)};
  1425. }
  1426. void advance_write_buffer(size_t size) {
  1427. this->file_->_p += size;
  1428. this->file_->_w -= size;
  1429. }
  1430. bool needs_flush() const {
  1431. if ((this->file_->_flags & line_buffered) == 0) return false;
  1432. return memchr(this->file_->_p + this->file_->_w, '\n',
  1433. to_unsigned(-this->file_->_w));
  1434. }
  1435. };
  1436. // A fallback FILE wrapper.
  1437. template <typename F> class fallback_file : public file_base<F> {
  1438. private:
  1439. char next_; // The next unconsumed character in the buffer.
  1440. bool has_next_ = false;
  1441. public:
  1442. using file_base<F>::file_base;
  1443. auto is_buffered() const -> bool { return false; }
  1444. auto needs_flush() const -> bool { return false; }
  1445. void init_buffer() {}
  1446. auto get_read_buffer() const -> span<const char> {
  1447. return {&next_, has_next_ ? 1u : 0u};
  1448. }
  1449. auto get_write_buffer() const -> span<char> { return {nullptr, 0}; }
  1450. void advance_write_buffer(size_t) {}
  1451. auto get() -> int {
  1452. has_next_ = false;
  1453. return file_base<F>::get();
  1454. }
  1455. void unget(char c) {
  1456. file_base<F>::unget(c);
  1457. next_ = c;
  1458. has_next_ = true;
  1459. }
  1460. };
  1461. #ifndef FMT_USE_FALLBACK_FILE
  1462. # define FMT_USE_FALLBACK_FILE 1
  1463. #endif
  1464. template <typename F,
  1465. FMT_ENABLE_IF(sizeof(F::_p) != 0 && !FMT_USE_FALLBACK_FILE)>
  1466. auto get_file(F* f, int) -> apple_file<F> {
  1467. return f;
  1468. }
  1469. template <typename F,
  1470. FMT_ENABLE_IF(sizeof(F::_IO_read_ptr) != 0 && !FMT_USE_FALLBACK_FILE)>
  1471. inline auto get_file(F* f, int) -> glibc_file<F> {
  1472. return f;
  1473. }
  1474. inline auto get_file(FILE* f, ...) -> fallback_file<FILE> { return f; }
  1475. using file_ref = decltype(get_file(static_cast<FILE*>(nullptr), 0));
  1476. class file_print_buffer : public buffer<char> {
  1477. private:
  1478. file_ref file_;
  1479. static void grow(buffer<char>& base, size_t) {
  1480. auto& self = static_cast<file_print_buffer&>(base);
  1481. self.file_.advance_write_buffer(self.size());
  1482. if (self.file_.get_write_buffer().size == 0) self.file_.flush();
  1483. auto buf = self.file_.get_write_buffer();
  1484. FMT_ASSERT(buf.size > 0, "");
  1485. self.set(buf.data, buf.size);
  1486. self.clear();
  1487. }
  1488. public:
  1489. explicit file_print_buffer(FILE* f) : buffer(grow, size_t()), file_(f) {
  1490. flockfile(f);
  1491. file_.init_buffer();
  1492. auto buf = file_.get_write_buffer();
  1493. set(buf.data, buf.size);
  1494. }
  1495. ~file_print_buffer() {
  1496. file_.advance_write_buffer(size());
  1497. bool flush = file_.needs_flush();
  1498. funlockfile(file_);
  1499. if (flush) fflush(file_);
  1500. }
  1501. };
  1502. #if !defined(_WIN32) || defined(FMT_USE_WRITE_CONSOLE)
  1503. FMT_FUNC auto write_console(int, string_view) -> bool { return false; }
  1504. #else
  1505. using dword = conditional_t<sizeof(long) == 4, unsigned long, unsigned>;
  1506. extern "C" __declspec(dllimport) int __stdcall WriteConsoleW( //
  1507. void*, const void*, dword, dword*, void*);
  1508. FMT_FUNC bool write_console(int fd, string_view text) {
  1509. auto u16 = utf8_to_utf16(text);
  1510. return WriteConsoleW(reinterpret_cast<void*>(_get_osfhandle(fd)), u16.c_str(),
  1511. static_cast<dword>(u16.size()), nullptr, nullptr) != 0;
  1512. }
  1513. #endif
  1514. #ifdef _WIN32
  1515. // Print assuming legacy (non-Unicode) encoding.
  1516. FMT_FUNC void vprint_mojibake(std::FILE* f, string_view fmt, format_args args,
  1517. bool newline) {
  1518. auto buffer = memory_buffer();
  1519. detail::vformat_to(buffer, fmt, args);
  1520. if (newline) buffer.push_back('\n');
  1521. fwrite_fully(buffer.data(), buffer.size(), f);
  1522. }
  1523. #endif
  1524. FMT_FUNC void print(std::FILE* f, string_view text) {
  1525. #if defined(_WIN32) && !defined(FMT_USE_WRITE_CONSOLE)
  1526. int fd = _fileno(f);
  1527. if (_isatty(fd)) {
  1528. std::fflush(f);
  1529. if (write_console(fd, text)) return;
  1530. }
  1531. #endif
  1532. fwrite_fully(text.data(), text.size(), f);
  1533. }
  1534. } // namespace detail
  1535. FMT_FUNC void vprint_buffered(std::FILE* f, string_view fmt, format_args args) {
  1536. auto buffer = memory_buffer();
  1537. detail::vformat_to(buffer, fmt, args);
  1538. detail::print(f, {buffer.data(), buffer.size()});
  1539. }
  1540. FMT_FUNC void vprint(std::FILE* f, string_view fmt, format_args args) {
  1541. if (!detail::file_ref(f).is_buffered()) return vprint_buffered(f, fmt, args);
  1542. auto&& buffer = detail::file_print_buffer(f);
  1543. return detail::vformat_to(buffer, fmt, args);
  1544. }
  1545. FMT_FUNC void vprintln(std::FILE* f, string_view fmt, format_args args) {
  1546. auto buffer = memory_buffer();
  1547. detail::vformat_to(buffer, fmt, args);
  1548. buffer.push_back('\n');
  1549. detail::print(f, {buffer.data(), buffer.size()});
  1550. }
  1551. FMT_FUNC void vprint(string_view fmt, format_args args) {
  1552. vprint(stdout, fmt, args);
  1553. }
  1554. namespace detail {
  1555. struct singleton {
  1556. unsigned char upper;
  1557. unsigned char lower_count;
  1558. };
  1559. inline auto is_printable(uint16_t x, const singleton* singletons,
  1560. size_t singletons_size,
  1561. const unsigned char* singleton_lowers,
  1562. const unsigned char* normal, size_t normal_size)
  1563. -> bool {
  1564. auto upper = x >> 8;
  1565. auto lower_start = 0;
  1566. for (size_t i = 0; i < singletons_size; ++i) {
  1567. auto s = singletons[i];
  1568. auto lower_end = lower_start + s.lower_count;
  1569. if (upper < s.upper) break;
  1570. if (upper == s.upper) {
  1571. for (auto j = lower_start; j < lower_end; ++j) {
  1572. if (singleton_lowers[j] == (x & 0xff)) return false;
  1573. }
  1574. }
  1575. lower_start = lower_end;
  1576. }
  1577. auto xsigned = static_cast<int>(x);
  1578. auto current = true;
  1579. for (size_t i = 0; i < normal_size; ++i) {
  1580. auto v = static_cast<int>(normal[i]);
  1581. auto len = (v & 0x80) != 0 ? (v & 0x7f) << 8 | normal[++i] : v;
  1582. xsigned -= len;
  1583. if (xsigned < 0) break;
  1584. current = !current;
  1585. }
  1586. return current;
  1587. }
  1588. // This code is generated by support/printable.py.
  1589. FMT_FUNC auto is_printable(uint32_t cp) -> bool {
  1590. static constexpr singleton singletons0[] = {
  1591. {0x00, 1}, {0x03, 5}, {0x05, 6}, {0x06, 3}, {0x07, 6}, {0x08, 8},
  1592. {0x09, 17}, {0x0a, 28}, {0x0b, 25}, {0x0c, 20}, {0x0d, 16}, {0x0e, 13},
  1593. {0x0f, 4}, {0x10, 3}, {0x12, 18}, {0x13, 9}, {0x16, 1}, {0x17, 5},
  1594. {0x18, 2}, {0x19, 3}, {0x1a, 7}, {0x1c, 2}, {0x1d, 1}, {0x1f, 22},
  1595. {0x20, 3}, {0x2b, 3}, {0x2c, 2}, {0x2d, 11}, {0x2e, 1}, {0x30, 3},
  1596. {0x31, 2}, {0x32, 1}, {0xa7, 2}, {0xa9, 2}, {0xaa, 4}, {0xab, 8},
  1597. {0xfa, 2}, {0xfb, 5}, {0xfd, 4}, {0xfe, 3}, {0xff, 9},
  1598. };
  1599. static constexpr unsigned char singletons0_lower[] = {
  1600. 0xad, 0x78, 0x79, 0x8b, 0x8d, 0xa2, 0x30, 0x57, 0x58, 0x8b, 0x8c, 0x90,
  1601. 0x1c, 0x1d, 0xdd, 0x0e, 0x0f, 0x4b, 0x4c, 0xfb, 0xfc, 0x2e, 0x2f, 0x3f,
  1602. 0x5c, 0x5d, 0x5f, 0xb5, 0xe2, 0x84, 0x8d, 0x8e, 0x91, 0x92, 0xa9, 0xb1,
  1603. 0xba, 0xbb, 0xc5, 0xc6, 0xc9, 0xca, 0xde, 0xe4, 0xe5, 0xff, 0x00, 0x04,
  1604. 0x11, 0x12, 0x29, 0x31, 0x34, 0x37, 0x3a, 0x3b, 0x3d, 0x49, 0x4a, 0x5d,
  1605. 0x84, 0x8e, 0x92, 0xa9, 0xb1, 0xb4, 0xba, 0xbb, 0xc6, 0xca, 0xce, 0xcf,
  1606. 0xe4, 0xe5, 0x00, 0x04, 0x0d, 0x0e, 0x11, 0x12, 0x29, 0x31, 0x34, 0x3a,
  1607. 0x3b, 0x45, 0x46, 0x49, 0x4a, 0x5e, 0x64, 0x65, 0x84, 0x91, 0x9b, 0x9d,
  1608. 0xc9, 0xce, 0xcf, 0x0d, 0x11, 0x29, 0x45, 0x49, 0x57, 0x64, 0x65, 0x8d,
  1609. 0x91, 0xa9, 0xb4, 0xba, 0xbb, 0xc5, 0xc9, 0xdf, 0xe4, 0xe5, 0xf0, 0x0d,
  1610. 0x11, 0x45, 0x49, 0x64, 0x65, 0x80, 0x84, 0xb2, 0xbc, 0xbe, 0xbf, 0xd5,
  1611. 0xd7, 0xf0, 0xf1, 0x83, 0x85, 0x8b, 0xa4, 0xa6, 0xbe, 0xbf, 0xc5, 0xc7,
  1612. 0xce, 0xcf, 0xda, 0xdb, 0x48, 0x98, 0xbd, 0xcd, 0xc6, 0xce, 0xcf, 0x49,
  1613. 0x4e, 0x4f, 0x57, 0x59, 0x5e, 0x5f, 0x89, 0x8e, 0x8f, 0xb1, 0xb6, 0xb7,
  1614. 0xbf, 0xc1, 0xc6, 0xc7, 0xd7, 0x11, 0x16, 0x17, 0x5b, 0x5c, 0xf6, 0xf7,
  1615. 0xfe, 0xff, 0x80, 0x0d, 0x6d, 0x71, 0xde, 0xdf, 0x0e, 0x0f, 0x1f, 0x6e,
  1616. 0x6f, 0x1c, 0x1d, 0x5f, 0x7d, 0x7e, 0xae, 0xaf, 0xbb, 0xbc, 0xfa, 0x16,
  1617. 0x17, 0x1e, 0x1f, 0x46, 0x47, 0x4e, 0x4f, 0x58, 0x5a, 0x5c, 0x5e, 0x7e,
  1618. 0x7f, 0xb5, 0xc5, 0xd4, 0xd5, 0xdc, 0xf0, 0xf1, 0xf5, 0x72, 0x73, 0x8f,
  1619. 0x74, 0x75, 0x96, 0x2f, 0x5f, 0x26, 0x2e, 0x2f, 0xa7, 0xaf, 0xb7, 0xbf,
  1620. 0xc7, 0xcf, 0xd7, 0xdf, 0x9a, 0x40, 0x97, 0x98, 0x30, 0x8f, 0x1f, 0xc0,
  1621. 0xc1, 0xce, 0xff, 0x4e, 0x4f, 0x5a, 0x5b, 0x07, 0x08, 0x0f, 0x10, 0x27,
  1622. 0x2f, 0xee, 0xef, 0x6e, 0x6f, 0x37, 0x3d, 0x3f, 0x42, 0x45, 0x90, 0x91,
  1623. 0xfe, 0xff, 0x53, 0x67, 0x75, 0xc8, 0xc9, 0xd0, 0xd1, 0xd8, 0xd9, 0xe7,
  1624. 0xfe, 0xff,
  1625. };
  1626. static constexpr singleton singletons1[] = {
  1627. {0x00, 6}, {0x01, 1}, {0x03, 1}, {0x04, 2}, {0x08, 8}, {0x09, 2},
  1628. {0x0a, 5}, {0x0b, 2}, {0x0e, 4}, {0x10, 1}, {0x11, 2}, {0x12, 5},
  1629. {0x13, 17}, {0x14, 1}, {0x15, 2}, {0x17, 2}, {0x19, 13}, {0x1c, 5},
  1630. {0x1d, 8}, {0x24, 1}, {0x6a, 3}, {0x6b, 2}, {0xbc, 2}, {0xd1, 2},
  1631. {0xd4, 12}, {0xd5, 9}, {0xd6, 2}, {0xd7, 2}, {0xda, 1}, {0xe0, 5},
  1632. {0xe1, 2}, {0xe8, 2}, {0xee, 32}, {0xf0, 4}, {0xf8, 2}, {0xf9, 2},
  1633. {0xfa, 2}, {0xfb, 1},
  1634. };
  1635. static constexpr unsigned char singletons1_lower[] = {
  1636. 0x0c, 0x27, 0x3b, 0x3e, 0x4e, 0x4f, 0x8f, 0x9e, 0x9e, 0x9f, 0x06, 0x07,
  1637. 0x09, 0x36, 0x3d, 0x3e, 0x56, 0xf3, 0xd0, 0xd1, 0x04, 0x14, 0x18, 0x36,
  1638. 0x37, 0x56, 0x57, 0x7f, 0xaa, 0xae, 0xaf, 0xbd, 0x35, 0xe0, 0x12, 0x87,
  1639. 0x89, 0x8e, 0x9e, 0x04, 0x0d, 0x0e, 0x11, 0x12, 0x29, 0x31, 0x34, 0x3a,
  1640. 0x45, 0x46, 0x49, 0x4a, 0x4e, 0x4f, 0x64, 0x65, 0x5c, 0xb6, 0xb7, 0x1b,
  1641. 0x1c, 0x07, 0x08, 0x0a, 0x0b, 0x14, 0x17, 0x36, 0x39, 0x3a, 0xa8, 0xa9,
  1642. 0xd8, 0xd9, 0x09, 0x37, 0x90, 0x91, 0xa8, 0x07, 0x0a, 0x3b, 0x3e, 0x66,
  1643. 0x69, 0x8f, 0x92, 0x6f, 0x5f, 0xee, 0xef, 0x5a, 0x62, 0x9a, 0x9b, 0x27,
  1644. 0x28, 0x55, 0x9d, 0xa0, 0xa1, 0xa3, 0xa4, 0xa7, 0xa8, 0xad, 0xba, 0xbc,
  1645. 0xc4, 0x06, 0x0b, 0x0c, 0x15, 0x1d, 0x3a, 0x3f, 0x45, 0x51, 0xa6, 0xa7,
  1646. 0xcc, 0xcd, 0xa0, 0x07, 0x19, 0x1a, 0x22, 0x25, 0x3e, 0x3f, 0xc5, 0xc6,
  1647. 0x04, 0x20, 0x23, 0x25, 0x26, 0x28, 0x33, 0x38, 0x3a, 0x48, 0x4a, 0x4c,
  1648. 0x50, 0x53, 0x55, 0x56, 0x58, 0x5a, 0x5c, 0x5e, 0x60, 0x63, 0x65, 0x66,
  1649. 0x6b, 0x73, 0x78, 0x7d, 0x7f, 0x8a, 0xa4, 0xaa, 0xaf, 0xb0, 0xc0, 0xd0,
  1650. 0xae, 0xaf, 0x79, 0xcc, 0x6e, 0x6f, 0x93,
  1651. };
  1652. static constexpr unsigned char normal0[] = {
  1653. 0x00, 0x20, 0x5f, 0x22, 0x82, 0xdf, 0x04, 0x82, 0x44, 0x08, 0x1b, 0x04,
  1654. 0x06, 0x11, 0x81, 0xac, 0x0e, 0x80, 0xab, 0x35, 0x28, 0x0b, 0x80, 0xe0,
  1655. 0x03, 0x19, 0x08, 0x01, 0x04, 0x2f, 0x04, 0x34, 0x04, 0x07, 0x03, 0x01,
  1656. 0x07, 0x06, 0x07, 0x11, 0x0a, 0x50, 0x0f, 0x12, 0x07, 0x55, 0x07, 0x03,
  1657. 0x04, 0x1c, 0x0a, 0x09, 0x03, 0x08, 0x03, 0x07, 0x03, 0x02, 0x03, 0x03,
  1658. 0x03, 0x0c, 0x04, 0x05, 0x03, 0x0b, 0x06, 0x01, 0x0e, 0x15, 0x05, 0x3a,
  1659. 0x03, 0x11, 0x07, 0x06, 0x05, 0x10, 0x07, 0x57, 0x07, 0x02, 0x07, 0x15,
  1660. 0x0d, 0x50, 0x04, 0x43, 0x03, 0x2d, 0x03, 0x01, 0x04, 0x11, 0x06, 0x0f,
  1661. 0x0c, 0x3a, 0x04, 0x1d, 0x25, 0x5f, 0x20, 0x6d, 0x04, 0x6a, 0x25, 0x80,
  1662. 0xc8, 0x05, 0x82, 0xb0, 0x03, 0x1a, 0x06, 0x82, 0xfd, 0x03, 0x59, 0x07,
  1663. 0x15, 0x0b, 0x17, 0x09, 0x14, 0x0c, 0x14, 0x0c, 0x6a, 0x06, 0x0a, 0x06,
  1664. 0x1a, 0x06, 0x59, 0x07, 0x2b, 0x05, 0x46, 0x0a, 0x2c, 0x04, 0x0c, 0x04,
  1665. 0x01, 0x03, 0x31, 0x0b, 0x2c, 0x04, 0x1a, 0x06, 0x0b, 0x03, 0x80, 0xac,
  1666. 0x06, 0x0a, 0x06, 0x21, 0x3f, 0x4c, 0x04, 0x2d, 0x03, 0x74, 0x08, 0x3c,
  1667. 0x03, 0x0f, 0x03, 0x3c, 0x07, 0x38, 0x08, 0x2b, 0x05, 0x82, 0xff, 0x11,
  1668. 0x18, 0x08, 0x2f, 0x11, 0x2d, 0x03, 0x20, 0x10, 0x21, 0x0f, 0x80, 0x8c,
  1669. 0x04, 0x82, 0x97, 0x19, 0x0b, 0x15, 0x88, 0x94, 0x05, 0x2f, 0x05, 0x3b,
  1670. 0x07, 0x02, 0x0e, 0x18, 0x09, 0x80, 0xb3, 0x2d, 0x74, 0x0c, 0x80, 0xd6,
  1671. 0x1a, 0x0c, 0x05, 0x80, 0xff, 0x05, 0x80, 0xdf, 0x0c, 0xee, 0x0d, 0x03,
  1672. 0x84, 0x8d, 0x03, 0x37, 0x09, 0x81, 0x5c, 0x14, 0x80, 0xb8, 0x08, 0x80,
  1673. 0xcb, 0x2a, 0x38, 0x03, 0x0a, 0x06, 0x38, 0x08, 0x46, 0x08, 0x0c, 0x06,
  1674. 0x74, 0x0b, 0x1e, 0x03, 0x5a, 0x04, 0x59, 0x09, 0x80, 0x83, 0x18, 0x1c,
  1675. 0x0a, 0x16, 0x09, 0x4c, 0x04, 0x80, 0x8a, 0x06, 0xab, 0xa4, 0x0c, 0x17,
  1676. 0x04, 0x31, 0xa1, 0x04, 0x81, 0xda, 0x26, 0x07, 0x0c, 0x05, 0x05, 0x80,
  1677. 0xa5, 0x11, 0x81, 0x6d, 0x10, 0x78, 0x28, 0x2a, 0x06, 0x4c, 0x04, 0x80,
  1678. 0x8d, 0x04, 0x80, 0xbe, 0x03, 0x1b, 0x03, 0x0f, 0x0d,
  1679. };
  1680. static constexpr unsigned char normal1[] = {
  1681. 0x5e, 0x22, 0x7b, 0x05, 0x03, 0x04, 0x2d, 0x03, 0x66, 0x03, 0x01, 0x2f,
  1682. 0x2e, 0x80, 0x82, 0x1d, 0x03, 0x31, 0x0f, 0x1c, 0x04, 0x24, 0x09, 0x1e,
  1683. 0x05, 0x2b, 0x05, 0x44, 0x04, 0x0e, 0x2a, 0x80, 0xaa, 0x06, 0x24, 0x04,
  1684. 0x24, 0x04, 0x28, 0x08, 0x34, 0x0b, 0x01, 0x80, 0x90, 0x81, 0x37, 0x09,
  1685. 0x16, 0x0a, 0x08, 0x80, 0x98, 0x39, 0x03, 0x63, 0x08, 0x09, 0x30, 0x16,
  1686. 0x05, 0x21, 0x03, 0x1b, 0x05, 0x01, 0x40, 0x38, 0x04, 0x4b, 0x05, 0x2f,
  1687. 0x04, 0x0a, 0x07, 0x09, 0x07, 0x40, 0x20, 0x27, 0x04, 0x0c, 0x09, 0x36,
  1688. 0x03, 0x3a, 0x05, 0x1a, 0x07, 0x04, 0x0c, 0x07, 0x50, 0x49, 0x37, 0x33,
  1689. 0x0d, 0x33, 0x07, 0x2e, 0x08, 0x0a, 0x81, 0x26, 0x52, 0x4e, 0x28, 0x08,
  1690. 0x2a, 0x56, 0x1c, 0x14, 0x17, 0x09, 0x4e, 0x04, 0x1e, 0x0f, 0x43, 0x0e,
  1691. 0x19, 0x07, 0x0a, 0x06, 0x48, 0x08, 0x27, 0x09, 0x75, 0x0b, 0x3f, 0x41,
  1692. 0x2a, 0x06, 0x3b, 0x05, 0x0a, 0x06, 0x51, 0x06, 0x01, 0x05, 0x10, 0x03,
  1693. 0x05, 0x80, 0x8b, 0x62, 0x1e, 0x48, 0x08, 0x0a, 0x80, 0xa6, 0x5e, 0x22,
  1694. 0x45, 0x0b, 0x0a, 0x06, 0x0d, 0x13, 0x39, 0x07, 0x0a, 0x36, 0x2c, 0x04,
  1695. 0x10, 0x80, 0xc0, 0x3c, 0x64, 0x53, 0x0c, 0x48, 0x09, 0x0a, 0x46, 0x45,
  1696. 0x1b, 0x48, 0x08, 0x53, 0x1d, 0x39, 0x81, 0x07, 0x46, 0x0a, 0x1d, 0x03,
  1697. 0x47, 0x49, 0x37, 0x03, 0x0e, 0x08, 0x0a, 0x06, 0x39, 0x07, 0x0a, 0x81,
  1698. 0x36, 0x19, 0x80, 0xb7, 0x01, 0x0f, 0x32, 0x0d, 0x83, 0x9b, 0x66, 0x75,
  1699. 0x0b, 0x80, 0xc4, 0x8a, 0xbc, 0x84, 0x2f, 0x8f, 0xd1, 0x82, 0x47, 0xa1,
  1700. 0xb9, 0x82, 0x39, 0x07, 0x2a, 0x04, 0x02, 0x60, 0x26, 0x0a, 0x46, 0x0a,
  1701. 0x28, 0x05, 0x13, 0x82, 0xb0, 0x5b, 0x65, 0x4b, 0x04, 0x39, 0x07, 0x11,
  1702. 0x40, 0x05, 0x0b, 0x02, 0x0e, 0x97, 0xf8, 0x08, 0x84, 0xd6, 0x2a, 0x09,
  1703. 0xa2, 0xf7, 0x81, 0x1f, 0x31, 0x03, 0x11, 0x04, 0x08, 0x81, 0x8c, 0x89,
  1704. 0x04, 0x6b, 0x05, 0x0d, 0x03, 0x09, 0x07, 0x10, 0x93, 0x60, 0x80, 0xf6,
  1705. 0x0a, 0x73, 0x08, 0x6e, 0x17, 0x46, 0x80, 0x9a, 0x14, 0x0c, 0x57, 0x09,
  1706. 0x19, 0x80, 0x87, 0x81, 0x47, 0x03, 0x85, 0x42, 0x0f, 0x15, 0x85, 0x50,
  1707. 0x2b, 0x80, 0xd5, 0x2d, 0x03, 0x1a, 0x04, 0x02, 0x81, 0x70, 0x3a, 0x05,
  1708. 0x01, 0x85, 0x00, 0x80, 0xd7, 0x29, 0x4c, 0x04, 0x0a, 0x04, 0x02, 0x83,
  1709. 0x11, 0x44, 0x4c, 0x3d, 0x80, 0xc2, 0x3c, 0x06, 0x01, 0x04, 0x55, 0x05,
  1710. 0x1b, 0x34, 0x02, 0x81, 0x0e, 0x2c, 0x04, 0x64, 0x0c, 0x56, 0x0a, 0x80,
  1711. 0xae, 0x38, 0x1d, 0x0d, 0x2c, 0x04, 0x09, 0x07, 0x02, 0x0e, 0x06, 0x80,
  1712. 0x9a, 0x83, 0xd8, 0x08, 0x0d, 0x03, 0x0d, 0x03, 0x74, 0x0c, 0x59, 0x07,
  1713. 0x0c, 0x14, 0x0c, 0x04, 0x38, 0x08, 0x0a, 0x06, 0x28, 0x08, 0x22, 0x4e,
  1714. 0x81, 0x54, 0x0c, 0x15, 0x03, 0x03, 0x05, 0x07, 0x09, 0x19, 0x07, 0x07,
  1715. 0x09, 0x03, 0x0d, 0x07, 0x29, 0x80, 0xcb, 0x25, 0x0a, 0x84, 0x06,
  1716. };
  1717. auto lower = static_cast<uint16_t>(cp);
  1718. if (cp < 0x10000) {
  1719. return is_printable(lower, singletons0,
  1720. sizeof(singletons0) / sizeof(*singletons0),
  1721. singletons0_lower, normal0, sizeof(normal0));
  1722. }
  1723. if (cp < 0x20000) {
  1724. return is_printable(lower, singletons1,
  1725. sizeof(singletons1) / sizeof(*singletons1),
  1726. singletons1_lower, normal1, sizeof(normal1));
  1727. }
  1728. if (0x2a6de <= cp && cp < 0x2a700) return false;
  1729. if (0x2b735 <= cp && cp < 0x2b740) return false;
  1730. if (0x2b81e <= cp && cp < 0x2b820) return false;
  1731. if (0x2cea2 <= cp && cp < 0x2ceb0) return false;
  1732. if (0x2ebe1 <= cp && cp < 0x2f800) return false;
  1733. if (0x2fa1e <= cp && cp < 0x30000) return false;
  1734. if (0x3134b <= cp && cp < 0xe0100) return false;
  1735. if (0xe01f0 <= cp && cp < 0x110000) return false;
  1736. return cp < 0x110000;
  1737. }
  1738. } // namespace detail
  1739. FMT_END_NAMESPACE
  1740. #endif // FMT_FORMAT_INL_H_