gmp.hpp 106 KB

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  1. ///////////////////////////////////////////////////////////////////////////////
  2. // Copyright 2011 John Maddock. Distributed under the Boost
  3. // Software License, Version 1.0. (See accompanying file
  4. // LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
  5. #ifndef BOOST_MATH_ER_GMP_BACKEND_HPP
  6. #define BOOST_MATH_ER_GMP_BACKEND_HPP
  7. #include <boost/multiprecision/number.hpp>
  8. #include <boost/multiprecision/debug_adaptor.hpp>
  9. #include <boost/multiprecision/detail/integer_ops.hpp>
  10. #include <boost/multiprecision/detail/big_lanczos.hpp>
  11. #include <boost/multiprecision/detail/digits.hpp>
  12. #include <boost/math/special_functions/fpclassify.hpp>
  13. #include <boost/cstdint.hpp>
  14. #include <boost/functional/hash_fwd.hpp>
  15. //
  16. // Some includes we need from Boost.Math, since we rely on that library to provide these functions:
  17. //
  18. #include <boost/math/special_functions/asinh.hpp>
  19. #include <boost/math/special_functions/acosh.hpp>
  20. #include <boost/math/special_functions/atanh.hpp>
  21. #include <boost/math/special_functions/cbrt.hpp>
  22. #include <boost/math/special_functions/expm1.hpp>
  23. #include <boost/math/special_functions/gamma.hpp>
  24. #ifdef BOOST_MSVC
  25. # pragma warning(push)
  26. # pragma warning(disable:4127)
  27. #endif
  28. #include <gmp.h>
  29. #ifdef BOOST_MSVC
  30. # pragma warning(pop)
  31. #endif
  32. #if defined(__MPIR_VERSION) && defined(__MPIR_VERSION_MINOR) && defined(__MPIR_VERSION_PATCHLEVEL)
  33. # define BOOST_MP_MPIR_VERSION (__MPIR_VERSION * 10000 + __MPIR_VERSION_MINOR * 100 + __MPIR_VERSION_PATCHLEVEL)
  34. #else
  35. # define BOOST_MP_MPIR_VERSION 0
  36. #endif
  37. #include <cmath>
  38. #include <limits>
  39. #include <climits>
  40. namespace boost{
  41. namespace multiprecision{
  42. namespace backends{
  43. #ifdef BOOST_MSVC
  44. // warning C4127: conditional expression is constant
  45. #pragma warning(push)
  46. #pragma warning(disable:4127)
  47. #endif
  48. template <unsigned digits10>
  49. struct gmp_float;
  50. struct gmp_int;
  51. struct gmp_rational;
  52. } // namespace backends
  53. template<>
  54. struct number_category<backends::gmp_int> : public mpl::int_<number_kind_integer>{};
  55. template<>
  56. struct number_category<backends::gmp_rational> : public mpl::int_<number_kind_rational>{};
  57. template <unsigned digits10>
  58. struct number_category<backends::gmp_float<digits10> > : public mpl::int_<number_kind_floating_point>{};
  59. namespace backends{
  60. //
  61. // Within this file, the only functions we mark as noexcept are those that manipulate
  62. // (but don't create) an mpf_t. All other types may allocate at pretty much any time
  63. // via a user-supplied allocator, and therefore throw.
  64. //
  65. namespace detail{
  66. template <unsigned digits10>
  67. struct gmp_float_imp
  68. {
  69. #ifdef BOOST_HAS_LONG_LONG
  70. typedef mpl::list<long, boost::long_long_type> signed_types;
  71. typedef mpl::list<unsigned long, boost::ulong_long_type> unsigned_types;
  72. #else
  73. typedef mpl::list<long> signed_types;
  74. typedef mpl::list<unsigned long> unsigned_types;
  75. #endif
  76. typedef mpl::list<double, long double> float_types;
  77. typedef long exponent_type;
  78. gmp_float_imp() BOOST_NOEXCEPT
  79. {
  80. m_data[0]._mp_d = 0; // uninitialized m_data
  81. }
  82. gmp_float_imp(const gmp_float_imp& o)
  83. {
  84. //
  85. // We have to do an init followed by a set here, otherwise *this may be at
  86. // a lower precision than o: seems like mpf_init_set copies just enough bits
  87. // to get the right value, but if it's then used in further calculations
  88. // things go badly wrong!!
  89. //
  90. mpf_init2(m_data, mpf_get_prec(o.data()));
  91. if(o.m_data[0]._mp_d)
  92. mpf_set(m_data, o.m_data);
  93. }
  94. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  95. gmp_float_imp(gmp_float_imp&& o) BOOST_NOEXCEPT
  96. {
  97. m_data[0] = o.m_data[0];
  98. o.m_data[0]._mp_d = 0;
  99. }
  100. #endif
  101. gmp_float_imp& operator = (const gmp_float_imp& o)
  102. {
  103. if(m_data[0]._mp_d == 0)
  104. mpf_init2(m_data, mpf_get_prec(o.data()));
  105. if (mpf_get_prec(data()) != mpf_get_prec(o.data()))
  106. {
  107. mpf_t t;
  108. mpf_init2(t, mpf_get_prec(o.data()));
  109. mpf_set(t, o.data());
  110. mpf_swap(data(), t);
  111. mpf_clear(t);
  112. }
  113. else
  114. {
  115. if (o.m_data[0]._mp_d)
  116. mpf_set(m_data, o.m_data);
  117. }
  118. return *this;
  119. }
  120. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  121. gmp_float_imp& operator = (gmp_float_imp&& o) BOOST_NOEXCEPT
  122. {
  123. mpf_swap(m_data, o.m_data);
  124. return *this;
  125. }
  126. #endif
  127. #ifdef BOOST_HAS_LONG_LONG
  128. #if defined(ULLONG_MAX) && (ULLONG_MAX == ULONG_MAX)
  129. gmp_float_imp& operator = (boost::ulong_long_type i)
  130. {
  131. *this = static_cast<unsigned long>(i);
  132. return *this;
  133. }
  134. #else
  135. gmp_float_imp& operator = (boost::ulong_long_type i)
  136. {
  137. if(m_data[0]._mp_d == 0)
  138. mpf_init2(m_data, multiprecision::detail::digits10_2_2(digits10 ? digits10 : get_default_precision()));
  139. boost::ulong_long_type mask = ((((1uLL << (std::numeric_limits<unsigned long>::digits - 1)) - 1) << 1) | 1uLL);
  140. unsigned shift = 0;
  141. mpf_t t;
  142. mpf_init2(t, multiprecision::detail::digits10_2_2(digits10 ? digits10 : get_default_precision()));
  143. mpf_set_ui(m_data, 0);
  144. while(i)
  145. {
  146. mpf_set_ui(t, static_cast<unsigned long>(i & mask));
  147. if(shift)
  148. mpf_mul_2exp(t, t, shift);
  149. mpf_add(m_data, m_data, t);
  150. shift += std::numeric_limits<unsigned long>::digits;
  151. i >>= std::numeric_limits<unsigned long>::digits;
  152. }
  153. mpf_clear(t);
  154. return *this;
  155. }
  156. #endif
  157. gmp_float_imp& operator = (boost::long_long_type i)
  158. {
  159. if(m_data[0]._mp_d == 0)
  160. mpf_init2(m_data, multiprecision::detail::digits10_2_2(digits10 ? digits10 : get_default_precision()));
  161. bool neg = i < 0;
  162. *this = static_cast<boost::ulong_long_type>(boost::multiprecision::detail::unsigned_abs(i));
  163. if(neg)
  164. mpf_neg(m_data, m_data);
  165. return *this;
  166. }
  167. #endif
  168. gmp_float_imp& operator = (unsigned long i)
  169. {
  170. if(m_data[0]._mp_d == 0)
  171. mpf_init2(m_data, multiprecision::detail::digits10_2_2(digits10 ? digits10 : get_default_precision()));
  172. mpf_set_ui(m_data, i);
  173. return *this;
  174. }
  175. gmp_float_imp& operator = (long i)
  176. {
  177. if(m_data[0]._mp_d == 0)
  178. mpf_init2(m_data, multiprecision::detail::digits10_2_2(digits10 ? digits10 : get_default_precision()));
  179. mpf_set_si(m_data, i);
  180. return *this;
  181. }
  182. gmp_float_imp& operator = (double d)
  183. {
  184. if(m_data[0]._mp_d == 0)
  185. mpf_init2(m_data, multiprecision::detail::digits10_2_2(digits10 ? digits10 : get_default_precision()));
  186. mpf_set_d(m_data, d);
  187. return *this;
  188. }
  189. gmp_float_imp& operator = (long double a)
  190. {
  191. using std::frexp;
  192. using std::ldexp;
  193. using std::floor;
  194. if(m_data[0]._mp_d == 0)
  195. mpf_init2(m_data, multiprecision::detail::digits10_2_2(digits10 ? digits10 : get_default_precision()));
  196. if (a == 0) {
  197. mpf_set_si(m_data, 0);
  198. return *this;
  199. }
  200. if (a == 1) {
  201. mpf_set_si(m_data, 1);
  202. return *this;
  203. }
  204. BOOST_ASSERT(!(boost::math::isinf)(a));
  205. BOOST_ASSERT(!(boost::math::isnan)(a));
  206. int e;
  207. long double f, term;
  208. mpf_set_ui(m_data, 0u);
  209. f = frexp(a, &e);
  210. static const int shift = std::numeric_limits<int>::digits - 1;
  211. while(f)
  212. {
  213. // extract int sized bits from f:
  214. f = ldexp(f, shift);
  215. term = floor(f);
  216. e -= shift;
  217. mpf_mul_2exp(m_data, m_data, shift);
  218. if(term > 0)
  219. mpf_add_ui(m_data, m_data, static_cast<unsigned>(term));
  220. else
  221. mpf_sub_ui(m_data, m_data, static_cast<unsigned>(-term));
  222. f -= term;
  223. }
  224. if(e > 0)
  225. mpf_mul_2exp(m_data, m_data, e);
  226. else if(e < 0)
  227. mpf_div_2exp(m_data, m_data, -e);
  228. return *this;
  229. }
  230. gmp_float_imp& operator = (const char* s)
  231. {
  232. if(m_data[0]._mp_d == 0)
  233. mpf_init2(m_data, multiprecision::detail::digits10_2_2(digits10 ? digits10 : get_default_precision()));
  234. if(0 != mpf_set_str(m_data, s, 10))
  235. BOOST_THROW_EXCEPTION(std::runtime_error(std::string("The string \"") + s + std::string("\"could not be interpreted as a valid floating point number.")));
  236. return *this;
  237. }
  238. void swap(gmp_float_imp& o) BOOST_NOEXCEPT
  239. {
  240. mpf_swap(m_data, o.m_data);
  241. }
  242. std::string str(std::streamsize digits, std::ios_base::fmtflags f)const
  243. {
  244. BOOST_ASSERT(m_data[0]._mp_d);
  245. bool scientific = (f & std::ios_base::scientific) == std::ios_base::scientific;
  246. bool fixed = (f & std::ios_base::fixed) == std::ios_base::fixed;
  247. std::streamsize org_digits(digits);
  248. if(scientific && digits)
  249. ++digits;
  250. std::string result;
  251. mp_exp_t e;
  252. void *(*alloc_func_ptr) (size_t);
  253. void *(*realloc_func_ptr) (void *, size_t, size_t);
  254. void (*free_func_ptr) (void *, size_t);
  255. mp_get_memory_functions(&alloc_func_ptr, &realloc_func_ptr, &free_func_ptr);
  256. if(mpf_sgn(m_data) == 0)
  257. {
  258. e = 0;
  259. result = "0";
  260. if(fixed && digits)
  261. ++digits;
  262. }
  263. else
  264. {
  265. char* ps = mpf_get_str (0, &e, 10, static_cast<std::size_t>(digits), m_data);
  266. --e; // To match with what our formatter expects.
  267. if(fixed && e != -1)
  268. {
  269. // Oops we actually need a different number of digits to what we asked for:
  270. (*free_func_ptr)((void*)ps, std::strlen(ps) + 1);
  271. digits += e + 1;
  272. if(digits == 0)
  273. {
  274. // We need to get *all* the digits and then possibly round up,
  275. // we end up with either "0" or "1" as the result.
  276. ps = mpf_get_str (0, &e, 10, 0, m_data);
  277. --e;
  278. unsigned offset = *ps == '-' ? 1 : 0;
  279. if(ps[offset] > '5')
  280. {
  281. ++e;
  282. ps[offset] = '1';
  283. ps[offset + 1] = 0;
  284. }
  285. else if(ps[offset] == '5')
  286. {
  287. unsigned i = offset + 1;
  288. bool round_up = false;
  289. while(ps[i] != 0)
  290. {
  291. if(ps[i] != '0')
  292. {
  293. round_up = true;
  294. break;
  295. }
  296. ++i;
  297. }
  298. if(round_up)
  299. {
  300. ++e;
  301. ps[offset] = '1';
  302. ps[offset + 1] = 0;
  303. }
  304. else
  305. {
  306. ps[offset] = '0';
  307. ps[offset + 1] = 0;
  308. }
  309. }
  310. else
  311. {
  312. ps[offset] = '0';
  313. ps[offset + 1] = 0;
  314. }
  315. }
  316. else if(digits > 0)
  317. {
  318. mp_exp_t old_e = e;
  319. ps = mpf_get_str (0, &e, 10, static_cast<std::size_t>(digits), m_data);
  320. --e; // To match with what our formatter expects.
  321. if (old_e > e)
  322. {
  323. // in some cases, when we ask for more digits of precision, it will
  324. // change the number of digits to the left of the decimal, if that
  325. // happens, account for it here.
  326. // example: cout << fixed << setprecision(3) << mpf_float_50("99.9809")
  327. digits -= old_e - e;
  328. ps = mpf_get_str (0, &e, 10, static_cast<std::size_t>(digits), m_data);
  329. --e; // To match with what our formatter expects.
  330. }
  331. }
  332. else
  333. {
  334. ps = mpf_get_str (0, &e, 10, 1, m_data);
  335. --e;
  336. unsigned offset = *ps == '-' ? 1 : 0;
  337. ps[offset] = '0';
  338. ps[offset + 1] = 0;
  339. }
  340. }
  341. result = ps;
  342. (*free_func_ptr)((void*)ps, std::strlen(ps) + 1);
  343. }
  344. boost::multiprecision::detail::format_float_string(result, e, org_digits, f, mpf_sgn(m_data) == 0);
  345. return result;
  346. }
  347. ~gmp_float_imp() BOOST_NOEXCEPT
  348. {
  349. if(m_data[0]._mp_d)
  350. mpf_clear(m_data);
  351. }
  352. void negate() BOOST_NOEXCEPT
  353. {
  354. BOOST_ASSERT(m_data[0]._mp_d);
  355. mpf_neg(m_data, m_data);
  356. }
  357. int compare(const gmp_float<digits10>& o)const BOOST_NOEXCEPT
  358. {
  359. BOOST_ASSERT(m_data[0]._mp_d && o.m_data[0]._mp_d);
  360. return mpf_cmp(m_data, o.m_data);
  361. }
  362. int compare(long i)const BOOST_NOEXCEPT
  363. {
  364. BOOST_ASSERT(m_data[0]._mp_d);
  365. return mpf_cmp_si(m_data, i);
  366. }
  367. int compare(unsigned long i)const BOOST_NOEXCEPT
  368. {
  369. BOOST_ASSERT(m_data[0]._mp_d);
  370. return mpf_cmp_ui(m_data, i);
  371. }
  372. template <class V>
  373. typename enable_if<is_arithmetic<V>, int>::type compare(V v)const
  374. {
  375. gmp_float<digits10> d;
  376. d = v;
  377. return compare(d);
  378. }
  379. mpf_t& data() BOOST_NOEXCEPT
  380. {
  381. BOOST_ASSERT(m_data[0]._mp_d);
  382. return m_data;
  383. }
  384. const mpf_t& data()const BOOST_NOEXCEPT
  385. {
  386. BOOST_ASSERT(m_data[0]._mp_d);
  387. return m_data;
  388. }
  389. protected:
  390. mpf_t m_data;
  391. static unsigned& get_default_precision() BOOST_NOEXCEPT
  392. {
  393. static unsigned val = 50;
  394. return val;
  395. }
  396. };
  397. } // namespace detail
  398. struct gmp_int;
  399. struct gmp_rational;
  400. template <unsigned digits10>
  401. struct gmp_float : public detail::gmp_float_imp<digits10>
  402. {
  403. gmp_float()
  404. {
  405. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  406. }
  407. gmp_float(const gmp_float& o) : detail::gmp_float_imp<digits10>(o) {}
  408. template <unsigned D>
  409. gmp_float(const gmp_float<D>& o, typename enable_if_c<D <= digits10>::type* = 0);
  410. template <unsigned D>
  411. explicit gmp_float(const gmp_float<D>& o, typename disable_if_c<D <= digits10>::type* = 0);
  412. gmp_float(const gmp_int& o);
  413. gmp_float(const gmp_rational& o);
  414. gmp_float(const mpf_t val)
  415. {
  416. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  417. mpf_set(this->m_data, val);
  418. }
  419. gmp_float(const mpz_t val)
  420. {
  421. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  422. mpf_set_z(this->m_data, val);
  423. }
  424. gmp_float(const mpq_t val)
  425. {
  426. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  427. mpf_set_q(this->m_data, val);
  428. }
  429. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  430. gmp_float(gmp_float&& o) BOOST_NOEXCEPT : detail::gmp_float_imp<digits10>(static_cast<detail::gmp_float_imp<digits10>&&>(o)) {}
  431. #endif
  432. gmp_float& operator=(const gmp_float& o)
  433. {
  434. *static_cast<detail::gmp_float_imp<digits10>*>(this) = static_cast<detail::gmp_float_imp<digits10> const&>(o);
  435. return *this;
  436. }
  437. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  438. gmp_float& operator=(gmp_float&& o) BOOST_NOEXCEPT
  439. {
  440. *static_cast<detail::gmp_float_imp<digits10>*>(this) = static_cast<detail::gmp_float_imp<digits10>&&>(o);
  441. return *this;
  442. }
  443. #endif
  444. template <unsigned D>
  445. gmp_float& operator=(const gmp_float<D>& o);
  446. gmp_float& operator=(const gmp_int& o);
  447. gmp_float& operator=(const gmp_rational& o);
  448. gmp_float& operator=(const mpf_t val)
  449. {
  450. if(this->m_data[0]._mp_d == 0)
  451. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  452. mpf_set(this->m_data, val);
  453. return *this;
  454. }
  455. gmp_float& operator=(const mpz_t val)
  456. {
  457. if(this->m_data[0]._mp_d == 0)
  458. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  459. mpf_set_z(this->m_data, val);
  460. return *this;
  461. }
  462. gmp_float& operator=(const mpq_t val)
  463. {
  464. if(this->m_data[0]._mp_d == 0)
  465. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  466. mpf_set_q(this->m_data, val);
  467. return *this;
  468. }
  469. template <class V>
  470. gmp_float& operator=(const V& v)
  471. {
  472. *static_cast<detail::gmp_float_imp<digits10>*>(this) = v;
  473. return *this;
  474. }
  475. };
  476. template <>
  477. struct gmp_float<0> : public detail::gmp_float_imp<0>
  478. {
  479. gmp_float()
  480. {
  481. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  482. }
  483. gmp_float(const mpf_t val)
  484. {
  485. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  486. mpf_set(this->m_data, val);
  487. }
  488. gmp_float(const mpz_t val)
  489. {
  490. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  491. mpf_set_z(this->m_data, val);
  492. }
  493. gmp_float(const mpq_t val)
  494. {
  495. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  496. mpf_set_q(this->m_data, val);
  497. }
  498. gmp_float(const gmp_float& o) : detail::gmp_float_imp<0>(o) {}
  499. template <unsigned D>
  500. gmp_float(const gmp_float<D>& o)
  501. {
  502. mpf_init2(this->m_data, mpf_get_prec(o.data()));
  503. mpf_set(this->m_data, o.data());
  504. }
  505. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  506. gmp_float(gmp_float&& o) BOOST_NOEXCEPT : detail::gmp_float_imp<0>(static_cast<detail::gmp_float_imp<0>&&>(o)) {}
  507. #endif
  508. gmp_float(const gmp_int& o);
  509. gmp_float(const gmp_rational& o);
  510. gmp_float(const gmp_float& o, unsigned digits10)
  511. {
  512. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  513. mpf_set(this->m_data, o.data());
  514. }
  515. template <class V>
  516. gmp_float(const V& o, unsigned digits10)
  517. {
  518. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  519. *this = o;
  520. }
  521. #ifndef BOOST_NO_CXX17_HDR_STRING_VIEW
  522. //
  523. // Support for new types in C++17
  524. //
  525. template <class Traits>
  526. gmp_float(const std::basic_string_view<char, Traits>& o, unsigned digits10)
  527. {
  528. using default_ops::assign_from_string_view;
  529. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  530. assign_from_string_view(*this, o);
  531. }
  532. #endif
  533. gmp_float& operator=(const gmp_float& o)
  534. {
  535. *static_cast<detail::gmp_float_imp<0>*>(this) = static_cast<detail::gmp_float_imp<0> const&>(o);
  536. return *this;
  537. }
  538. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  539. gmp_float& operator=(gmp_float&& o) BOOST_NOEXCEPT
  540. {
  541. *static_cast<detail::gmp_float_imp<0>*>(this) = static_cast<detail::gmp_float_imp<0> &&>(o);
  542. return *this;
  543. }
  544. #endif
  545. template <unsigned D>
  546. gmp_float& operator=(const gmp_float<D>& o)
  547. {
  548. if(this->m_data[0]._mp_d == 0)
  549. {
  550. mpf_init2(this->m_data, mpf_get_prec(o.data()));
  551. }
  552. else
  553. {
  554. mpf_set_prec(this->m_data, mpf_get_prec(o.data()));
  555. }
  556. mpf_set(this->m_data, o.data());
  557. return *this;
  558. }
  559. gmp_float& operator=(const gmp_int& o);
  560. gmp_float& operator=(const gmp_rational& o);
  561. gmp_float& operator=(const mpf_t val)
  562. {
  563. if(this->m_data[0]._mp_d == 0)
  564. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  565. mpf_set(this->m_data, val);
  566. return *this;
  567. }
  568. gmp_float& operator=(const mpz_t val)
  569. {
  570. if(this->m_data[0]._mp_d == 0)
  571. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  572. mpf_set_z(this->m_data, val);
  573. return *this;
  574. }
  575. gmp_float& operator=(const mpq_t val)
  576. {
  577. if(this->m_data[0]._mp_d == 0)
  578. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  579. mpf_set_q(this->m_data, val);
  580. return *this;
  581. }
  582. template <class V>
  583. gmp_float& operator=(const V& v)
  584. {
  585. *static_cast<detail::gmp_float_imp<0>*>(this) = v;
  586. return *this;
  587. }
  588. static unsigned default_precision() BOOST_NOEXCEPT
  589. {
  590. return get_default_precision();
  591. }
  592. static void default_precision(unsigned v) BOOST_NOEXCEPT
  593. {
  594. get_default_precision() = v;
  595. }
  596. unsigned precision()const BOOST_NOEXCEPT
  597. {
  598. return static_cast<unsigned>(multiprecision::detail::digits2_2_10(static_cast<unsigned long>(mpf_get_prec(this->m_data))));
  599. }
  600. void precision(unsigned digits10) BOOST_NOEXCEPT
  601. {
  602. mpf_set_prec(this->m_data, multiprecision::detail::digits10_2_2(digits10));
  603. }
  604. };
  605. template <unsigned digits10, class T>
  606. inline typename enable_if_c<is_arithmetic<T>::value, bool>::type eval_eq(const gmp_float<digits10>& a, const T& b) BOOST_NOEXCEPT
  607. {
  608. return a.compare(b) == 0;
  609. }
  610. template <unsigned digits10, class T>
  611. inline typename enable_if_c<is_arithmetic<T>::value, bool>::type eval_lt(const gmp_float<digits10>& a, const T& b) BOOST_NOEXCEPT
  612. {
  613. return a.compare(b) < 0;
  614. }
  615. template <unsigned digits10, class T>
  616. inline typename enable_if_c<is_arithmetic<T>::value, bool>::type eval_gt(const gmp_float<digits10>& a, const T& b) BOOST_NOEXCEPT
  617. {
  618. return a.compare(b) > 0;
  619. }
  620. template <unsigned D1, unsigned D2>
  621. inline void eval_add(gmp_float<D1>& result, const gmp_float<D2>& o)
  622. {
  623. mpf_add(result.data(), result.data(), o.data());
  624. }
  625. template <unsigned D1, unsigned D2>
  626. inline void eval_subtract(gmp_float<D1>& result, const gmp_float<D2>& o)
  627. {
  628. mpf_sub(result.data(), result.data(), o.data());
  629. }
  630. template <unsigned D1, unsigned D2>
  631. inline void eval_multiply(gmp_float<D1>& result, const gmp_float<D2>& o)
  632. {
  633. mpf_mul(result.data(), result.data(), o.data());
  634. }
  635. template <unsigned digits10>
  636. inline bool eval_is_zero(const gmp_float<digits10>& val) BOOST_NOEXCEPT
  637. {
  638. return mpf_sgn(val.data()) == 0;
  639. }
  640. template <unsigned D1, unsigned D2>
  641. inline void eval_divide(gmp_float<D1>& result, const gmp_float<D2>& o)
  642. {
  643. if(eval_is_zero(o))
  644. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  645. mpf_div(result.data(), result.data(), o.data());
  646. }
  647. template <unsigned digits10>
  648. inline void eval_add(gmp_float<digits10>& result, unsigned long i)
  649. {
  650. mpf_add_ui(result.data(), result.data(), i);
  651. }
  652. template <unsigned digits10>
  653. inline void eval_subtract(gmp_float<digits10>& result, unsigned long i)
  654. {
  655. mpf_sub_ui(result.data(), result.data(), i);
  656. }
  657. template <unsigned digits10>
  658. inline void eval_multiply(gmp_float<digits10>& result, unsigned long i)
  659. {
  660. mpf_mul_ui(result.data(), result.data(), i);
  661. }
  662. template <unsigned digits10>
  663. inline void eval_divide(gmp_float<digits10>& result, unsigned long i)
  664. {
  665. if(i == 0)
  666. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  667. mpf_div_ui(result.data(), result.data(), i);
  668. }
  669. template <unsigned digits10>
  670. inline void eval_add(gmp_float<digits10>& result, long i)
  671. {
  672. if(i > 0)
  673. mpf_add_ui(result.data(), result.data(), i);
  674. else
  675. mpf_sub_ui(result.data(), result.data(), boost::multiprecision::detail::unsigned_abs(i));
  676. }
  677. template <unsigned digits10>
  678. inline void eval_subtract(gmp_float<digits10>& result, long i)
  679. {
  680. if(i > 0)
  681. mpf_sub_ui(result.data(), result.data(), i);
  682. else
  683. mpf_add_ui(result.data(), result.data(), boost::multiprecision::detail::unsigned_abs(i));
  684. }
  685. template <unsigned digits10>
  686. inline void eval_multiply(gmp_float<digits10>& result, long i)
  687. {
  688. mpf_mul_ui(result.data(), result.data(), boost::multiprecision::detail::unsigned_abs(i));
  689. if(i < 0)
  690. mpf_neg(result.data(), result.data());
  691. }
  692. template <unsigned digits10>
  693. inline void eval_divide(gmp_float<digits10>& result, long i)
  694. {
  695. if(i == 0)
  696. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  697. mpf_div_ui(result.data(), result.data(), boost::multiprecision::detail::unsigned_abs(i));
  698. if(i < 0)
  699. mpf_neg(result.data(), result.data());
  700. }
  701. //
  702. // Specialised 3 arg versions of the basic operators:
  703. //
  704. template <unsigned D1, unsigned D2, unsigned D3>
  705. inline void eval_add(gmp_float<D1>& a, const gmp_float<D2>& x, const gmp_float<D3>& y)
  706. {
  707. mpf_add(a.data(), x.data(), y.data());
  708. }
  709. template <unsigned D1, unsigned D2>
  710. inline void eval_add(gmp_float<D1>& a, const gmp_float<D2>& x, unsigned long y)
  711. {
  712. mpf_add_ui(a.data(), x.data(), y);
  713. }
  714. template <unsigned D1, unsigned D2>
  715. inline void eval_add(gmp_float<D1>& a, const gmp_float<D2>& x, long y)
  716. {
  717. if(y < 0)
  718. mpf_sub_ui(a.data(), x.data(), boost::multiprecision::detail::unsigned_abs(y));
  719. else
  720. mpf_add_ui(a.data(), x.data(), y);
  721. }
  722. template <unsigned D1, unsigned D2>
  723. inline void eval_add(gmp_float<D1>& a, unsigned long x, const gmp_float<D2>& y)
  724. {
  725. mpf_add_ui(a.data(), y.data(), x);
  726. }
  727. template <unsigned D1, unsigned D2>
  728. inline void eval_add(gmp_float<D1>& a, long x, const gmp_float<D2>& y)
  729. {
  730. if(x < 0)
  731. {
  732. mpf_ui_sub(a.data(), boost::multiprecision::detail::unsigned_abs(x), y.data());
  733. mpf_neg(a.data(), a.data());
  734. }
  735. else
  736. mpf_add_ui(a.data(), y.data(), x);
  737. }
  738. template <unsigned D1, unsigned D2, unsigned D3>
  739. inline void eval_subtract(gmp_float<D1>& a, const gmp_float<D2>& x, const gmp_float<D3>& y)
  740. {
  741. mpf_sub(a.data(), x.data(), y.data());
  742. }
  743. template <unsigned D1, unsigned D2>
  744. inline void eval_subtract(gmp_float<D1>& a, const gmp_float<D2>& x, unsigned long y)
  745. {
  746. mpf_sub_ui(a.data(), x.data(), y);
  747. }
  748. template <unsigned D1, unsigned D2>
  749. inline void eval_subtract(gmp_float<D1>& a, const gmp_float<D2>& x, long y)
  750. {
  751. if(y < 0)
  752. mpf_add_ui(a.data(), x.data(), boost::multiprecision::detail::unsigned_abs(y));
  753. else
  754. mpf_sub_ui(a.data(), x.data(), y);
  755. }
  756. template <unsigned D1, unsigned D2>
  757. inline void eval_subtract(gmp_float<D1>& a, unsigned long x, const gmp_float<D2>& y)
  758. {
  759. mpf_ui_sub(a.data(), x, y.data());
  760. }
  761. template <unsigned D1, unsigned D2>
  762. inline void eval_subtract(gmp_float<D1>& a, long x, const gmp_float<D2>& y)
  763. {
  764. if(x < 0)
  765. {
  766. mpf_add_ui(a.data(), y.data(), boost::multiprecision::detail::unsigned_abs(x));
  767. mpf_neg(a.data(), a.data());
  768. }
  769. else
  770. mpf_ui_sub(a.data(), x, y.data());
  771. }
  772. template <unsigned D1, unsigned D2, unsigned D3>
  773. inline void eval_multiply(gmp_float<D1>& a, const gmp_float<D2>& x, const gmp_float<D3>& y)
  774. {
  775. mpf_mul(a.data(), x.data(), y.data());
  776. }
  777. template <unsigned D1, unsigned D2>
  778. inline void eval_multiply(gmp_float<D1>& a, const gmp_float<D2>& x, unsigned long y)
  779. {
  780. mpf_mul_ui(a.data(), x.data(), y);
  781. }
  782. template <unsigned D1, unsigned D2>
  783. inline void eval_multiply(gmp_float<D1>& a, const gmp_float<D2>& x, long y)
  784. {
  785. if(y < 0)
  786. {
  787. mpf_mul_ui(a.data(), x.data(), boost::multiprecision::detail::unsigned_abs(y));
  788. a.negate();
  789. }
  790. else
  791. mpf_mul_ui(a.data(), x.data(), y);
  792. }
  793. template <unsigned D1, unsigned D2>
  794. inline void eval_multiply(gmp_float<D1>& a, unsigned long x, const gmp_float<D2>& y)
  795. {
  796. mpf_mul_ui(a.data(), y.data(), x);
  797. }
  798. template <unsigned D1, unsigned D2>
  799. inline void eval_multiply(gmp_float<D1>& a, long x, const gmp_float<D2>& y)
  800. {
  801. if(x < 0)
  802. {
  803. mpf_mul_ui(a.data(), y.data(), boost::multiprecision::detail::unsigned_abs(x));
  804. mpf_neg(a.data(), a.data());
  805. }
  806. else
  807. mpf_mul_ui(a.data(), y.data(), x);
  808. }
  809. template <unsigned D1, unsigned D2, unsigned D3>
  810. inline void eval_divide(gmp_float<D1>& a, const gmp_float<D2>& x, const gmp_float<D3>& y)
  811. {
  812. if(eval_is_zero(y))
  813. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  814. mpf_div(a.data(), x.data(), y.data());
  815. }
  816. template <unsigned D1, unsigned D2>
  817. inline void eval_divide(gmp_float<D1>& a, const gmp_float<D2>& x, unsigned long y)
  818. {
  819. if(y == 0)
  820. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  821. mpf_div_ui(a.data(), x.data(), y);
  822. }
  823. template <unsigned D1, unsigned D2>
  824. inline void eval_divide(gmp_float<D1>& a, const gmp_float<D2>& x, long y)
  825. {
  826. if(y == 0)
  827. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  828. if(y < 0)
  829. {
  830. mpf_div_ui(a.data(), x.data(), boost::multiprecision::detail::unsigned_abs(y));
  831. a.negate();
  832. }
  833. else
  834. mpf_div_ui(a.data(), x.data(), y);
  835. }
  836. template <unsigned D1, unsigned D2>
  837. inline void eval_divide(gmp_float<D1>& a, unsigned long x, const gmp_float<D2>& y)
  838. {
  839. if(eval_is_zero(y))
  840. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  841. mpf_ui_div(a.data(), x, y.data());
  842. }
  843. template <unsigned D1, unsigned D2>
  844. inline void eval_divide(gmp_float<D1>& a, long x, const gmp_float<D2>& y)
  845. {
  846. if(eval_is_zero(y))
  847. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  848. if(x < 0)
  849. {
  850. mpf_ui_div(a.data(), boost::multiprecision::detail::unsigned_abs(x), y.data());
  851. mpf_neg(a.data(), a.data());
  852. }
  853. else
  854. mpf_ui_div(a.data(), x, y.data());
  855. }
  856. template <unsigned digits10>
  857. inline int eval_get_sign(const gmp_float<digits10>& val) BOOST_NOEXCEPT
  858. {
  859. return mpf_sgn(val.data());
  860. }
  861. template <unsigned digits10>
  862. inline void eval_convert_to(unsigned long* result, const gmp_float<digits10>& val) BOOST_NOEXCEPT
  863. {
  864. if(0 == mpf_fits_ulong_p(val.data()))
  865. *result = (std::numeric_limits<unsigned long>::max)();
  866. else
  867. *result = (unsigned long)mpf_get_ui(val.data());
  868. }
  869. template <unsigned digits10>
  870. inline void eval_convert_to(long* result, const gmp_float<digits10>& val) BOOST_NOEXCEPT
  871. {
  872. if(0 == mpf_fits_slong_p(val.data()))
  873. {
  874. *result = (std::numeric_limits<long>::max)();
  875. *result *= mpf_sgn(val.data());
  876. }
  877. else
  878. *result = (long)mpf_get_si(val.data());
  879. }
  880. template <unsigned digits10>
  881. inline void eval_convert_to(double* result, const gmp_float<digits10>& val) BOOST_NOEXCEPT
  882. {
  883. *result = mpf_get_d(val.data());
  884. }
  885. #ifdef BOOST_HAS_LONG_LONG
  886. template <unsigned digits10>
  887. inline void eval_convert_to(boost::long_long_type* result, const gmp_float<digits10>& val)
  888. {
  889. gmp_float<digits10> t(val);
  890. if(eval_get_sign(t) < 0)
  891. t.negate();
  892. long digits = std::numeric_limits<boost::long_long_type>::digits - std::numeric_limits<long>::digits;
  893. if(digits > 0)
  894. mpf_div_2exp(t.data(), t.data(), digits);
  895. if(!mpf_fits_slong_p(t.data()))
  896. {
  897. if(eval_get_sign(val) < 0)
  898. *result = (std::numeric_limits<boost::long_long_type>::min)();
  899. else
  900. *result = (std::numeric_limits<boost::long_long_type>::max)();
  901. return;
  902. };
  903. *result = mpf_get_si(t.data());
  904. while(digits > 0)
  905. {
  906. *result <<= digits;
  907. digits -= std::numeric_limits<unsigned long>::digits;
  908. mpf_mul_2exp(t.data(), t.data(), digits >= 0 ? std::numeric_limits<unsigned long>::digits : std::numeric_limits<unsigned long>::digits + digits);
  909. unsigned long l = (unsigned long)mpf_get_ui(t.data());
  910. if(digits < 0)
  911. l >>= -digits;
  912. *result |= l;
  913. }
  914. if(eval_get_sign(val) < 0)
  915. *result = -*result;
  916. }
  917. template <unsigned digits10>
  918. inline void eval_convert_to(boost::ulong_long_type* result, const gmp_float<digits10>& val)
  919. {
  920. gmp_float<digits10> t(val);
  921. long digits = std::numeric_limits<boost::long_long_type>::digits - std::numeric_limits<long>::digits;
  922. if(digits > 0)
  923. mpf_div_2exp(t.data(), t.data(), digits);
  924. if(!mpf_fits_ulong_p(t.data()))
  925. {
  926. *result = (std::numeric_limits<boost::long_long_type>::max)();
  927. return;
  928. }
  929. *result = mpf_get_ui(t.data());
  930. while(digits > 0)
  931. {
  932. *result <<= digits;
  933. digits -= std::numeric_limits<unsigned long>::digits;
  934. mpf_mul_2exp(t.data(), t.data(), digits >= 0 ? std::numeric_limits<unsigned long>::digits : std::numeric_limits<unsigned long>::digits + digits);
  935. unsigned long l = (unsigned long)mpf_get_ui(t.data());
  936. if(digits < 0)
  937. l >>= -digits;
  938. *result |= l;
  939. }
  940. }
  941. #endif
  942. //
  943. // Native non-member operations:
  944. //
  945. template <unsigned Digits10>
  946. inline void eval_sqrt(gmp_float<Digits10>& result, const gmp_float<Digits10>& val)
  947. {
  948. mpf_sqrt(result.data(), val.data());
  949. }
  950. template <unsigned Digits10>
  951. inline void eval_abs(gmp_float<Digits10>& result, const gmp_float<Digits10>& val)
  952. {
  953. mpf_abs(result.data(), val.data());
  954. }
  955. template <unsigned Digits10>
  956. inline void eval_fabs(gmp_float<Digits10>& result, const gmp_float<Digits10>& val)
  957. {
  958. mpf_abs(result.data(), val.data());
  959. }
  960. template <unsigned Digits10>
  961. inline void eval_ceil(gmp_float<Digits10>& result, const gmp_float<Digits10>& val)
  962. {
  963. mpf_ceil(result.data(), val.data());
  964. }
  965. template <unsigned Digits10>
  966. inline void eval_floor(gmp_float<Digits10>& result, const gmp_float<Digits10>& val)
  967. {
  968. mpf_floor(result.data(), val.data());
  969. }
  970. template <unsigned Digits10>
  971. inline void eval_trunc(gmp_float<Digits10>& result, const gmp_float<Digits10>& val)
  972. {
  973. mpf_trunc(result.data(), val.data());
  974. }
  975. template <unsigned Digits10>
  976. inline void eval_ldexp(gmp_float<Digits10>& result, const gmp_float<Digits10>& val, long e)
  977. {
  978. if(e > 0)
  979. mpf_mul_2exp(result.data(), val.data(), e);
  980. else if(e < 0)
  981. mpf_div_2exp(result.data(), val.data(), -e);
  982. else
  983. result = val;
  984. }
  985. template <unsigned Digits10>
  986. inline void eval_frexp(gmp_float<Digits10>& result, const gmp_float<Digits10>& val, int* e)
  987. {
  988. #if (BOOST_MP_MPIR_VERSION >= 20600) && (BOOST_MP_MPIR_VERSION < 30000)
  989. mpir_si v;
  990. mpf_get_d_2exp(&v, val.data());
  991. #else
  992. long v;
  993. mpf_get_d_2exp(&v, val.data());
  994. #endif
  995. *e = v;
  996. eval_ldexp(result, val, -v);
  997. }
  998. template <unsigned Digits10>
  999. inline void eval_frexp(gmp_float<Digits10>& result, const gmp_float<Digits10>& val, long* e)
  1000. {
  1001. #if (BOOST_MP_MPIR_VERSION >= 20600) && (BOOST_MP_MPIR_VERSION < 30000)
  1002. mpir_si v;
  1003. mpf_get_d_2exp(&v, val.data());
  1004. *e = v;
  1005. eval_ldexp(result, val, -v);
  1006. #else
  1007. mpf_get_d_2exp(e, val.data());
  1008. eval_ldexp(result, val, -*e);
  1009. #endif
  1010. }
  1011. template <unsigned Digits10>
  1012. inline std::size_t hash_value(const gmp_float<Digits10>& val)
  1013. {
  1014. std::size_t result = 0;
  1015. for(int i = 0; i < std::abs(val.data()[0]._mp_size); ++i)
  1016. boost::hash_combine(result, val.data()[0]._mp_d[i]);
  1017. boost::hash_combine(result, val.data()[0]._mp_exp);
  1018. boost::hash_combine(result, val.data()[0]._mp_size);
  1019. return result;
  1020. }
  1021. struct gmp_int
  1022. {
  1023. #ifdef BOOST_HAS_LONG_LONG
  1024. typedef mpl::list<long, boost::long_long_type> signed_types;
  1025. typedef mpl::list<unsigned long, boost::ulong_long_type> unsigned_types;
  1026. #else
  1027. typedef mpl::list<long> signed_types;
  1028. typedef mpl::list<unsigned long> unsigned_types;
  1029. #endif
  1030. typedef mpl::list<double, long double> float_types;
  1031. gmp_int()
  1032. {
  1033. mpz_init(this->m_data);
  1034. }
  1035. gmp_int(const gmp_int& o)
  1036. {
  1037. if(o.m_data[0]._mp_d)
  1038. mpz_init_set(m_data, o.m_data);
  1039. else
  1040. mpz_init(this->m_data);
  1041. }
  1042. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  1043. gmp_int(gmp_int&& o) BOOST_NOEXCEPT
  1044. {
  1045. m_data[0] = o.m_data[0];
  1046. o.m_data[0]._mp_d = 0;
  1047. }
  1048. #endif
  1049. explicit gmp_int(const mpf_t val)
  1050. {
  1051. mpz_init(this->m_data);
  1052. mpz_set_f(this->m_data, val);
  1053. }
  1054. gmp_int(const mpz_t val)
  1055. {
  1056. mpz_init_set(this->m_data, val);
  1057. }
  1058. explicit gmp_int(const mpq_t val)
  1059. {
  1060. mpz_init(this->m_data);
  1061. mpz_set_q(this->m_data, val);
  1062. }
  1063. template <unsigned Digits10>
  1064. explicit gmp_int(const gmp_float<Digits10>& o)
  1065. {
  1066. mpz_init(this->m_data);
  1067. mpz_set_f(this->m_data, o.data());
  1068. }
  1069. explicit gmp_int(const gmp_rational& o);
  1070. gmp_int& operator = (const gmp_int& o)
  1071. {
  1072. if(m_data[0]._mp_d == 0)
  1073. mpz_init(this->m_data);
  1074. mpz_set(m_data, o.m_data);
  1075. return *this;
  1076. }
  1077. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  1078. gmp_int& operator = (gmp_int&& o) BOOST_NOEXCEPT
  1079. {
  1080. mpz_swap(m_data, o.m_data);
  1081. return *this;
  1082. }
  1083. #endif
  1084. #ifdef BOOST_HAS_LONG_LONG
  1085. #if defined(ULLONG_MAX) && (ULLONG_MAX == ULONG_MAX)
  1086. gmp_int& operator = (boost::ulong_long_type i)
  1087. {
  1088. *this = static_cast<unsigned long>(i);
  1089. return *this;
  1090. }
  1091. #else
  1092. gmp_int& operator = (boost::ulong_long_type i)
  1093. {
  1094. if(m_data[0]._mp_d == 0)
  1095. mpz_init(this->m_data);
  1096. boost::ulong_long_type mask = ((((1uLL << (std::numeric_limits<unsigned long>::digits - 1)) - 1) << 1) | 1uLL);
  1097. unsigned shift = 0;
  1098. mpz_t t;
  1099. mpz_set_ui(m_data, 0);
  1100. mpz_init_set_ui(t, 0);
  1101. while(i)
  1102. {
  1103. mpz_set_ui(t, static_cast<unsigned long>(i & mask));
  1104. if(shift)
  1105. mpz_mul_2exp(t, t, shift);
  1106. mpz_add(m_data, m_data, t);
  1107. shift += std::numeric_limits<unsigned long>::digits;
  1108. i >>= std::numeric_limits<unsigned long>::digits;
  1109. }
  1110. mpz_clear(t);
  1111. return *this;
  1112. }
  1113. #endif
  1114. gmp_int& operator = (boost::long_long_type i)
  1115. {
  1116. if(m_data[0]._mp_d == 0)
  1117. mpz_init(this->m_data);
  1118. bool neg = i < 0;
  1119. *this = boost::multiprecision::detail::unsigned_abs(i);
  1120. if(neg)
  1121. mpz_neg(m_data, m_data);
  1122. return *this;
  1123. }
  1124. #endif
  1125. gmp_int& operator = (unsigned long i)
  1126. {
  1127. if(m_data[0]._mp_d == 0)
  1128. mpz_init(this->m_data);
  1129. mpz_set_ui(m_data, i);
  1130. return *this;
  1131. }
  1132. gmp_int& operator = (long i)
  1133. {
  1134. if(m_data[0]._mp_d == 0)
  1135. mpz_init(this->m_data);
  1136. mpz_set_si(m_data, i);
  1137. return *this;
  1138. }
  1139. gmp_int& operator = (double d)
  1140. {
  1141. if(m_data[0]._mp_d == 0)
  1142. mpz_init(this->m_data);
  1143. mpz_set_d(m_data, d);
  1144. return *this;
  1145. }
  1146. gmp_int& operator = (long double a)
  1147. {
  1148. using std::frexp;
  1149. using std::ldexp;
  1150. using std::floor;
  1151. if(m_data[0]._mp_d == 0)
  1152. mpz_init(this->m_data);
  1153. if (a == 0) {
  1154. mpz_set_si(m_data, 0);
  1155. return *this;
  1156. }
  1157. if (a == 1) {
  1158. mpz_set_si(m_data, 1);
  1159. return *this;
  1160. }
  1161. BOOST_ASSERT(!(boost::math::isinf)(a));
  1162. BOOST_ASSERT(!(boost::math::isnan)(a));
  1163. int e;
  1164. long double f, term;
  1165. mpz_set_ui(m_data, 0u);
  1166. f = frexp(a, &e);
  1167. static const int shift = std::numeric_limits<int>::digits - 1;
  1168. while(f)
  1169. {
  1170. // extract int sized bits from f:
  1171. f = ldexp(f, shift);
  1172. term = floor(f);
  1173. e -= shift;
  1174. mpz_mul_2exp(m_data, m_data, shift);
  1175. if(term > 0)
  1176. mpz_add_ui(m_data, m_data, static_cast<unsigned>(term));
  1177. else
  1178. mpz_sub_ui(m_data, m_data, static_cast<unsigned>(-term));
  1179. f -= term;
  1180. }
  1181. if(e > 0)
  1182. mpz_mul_2exp(m_data, m_data, e);
  1183. else if(e < 0)
  1184. mpz_div_2exp(m_data, m_data, -e);
  1185. return *this;
  1186. }
  1187. gmp_int& operator = (const char* s)
  1188. {
  1189. if(m_data[0]._mp_d == 0)
  1190. mpz_init(this->m_data);
  1191. std::size_t n = s ? std::strlen(s) : 0;
  1192. int radix = 10;
  1193. if(n && (*s == '0'))
  1194. {
  1195. if((n > 1) && ((s[1] == 'x') || (s[1] == 'X')))
  1196. {
  1197. radix = 16;
  1198. s +=2;
  1199. n -= 2;
  1200. }
  1201. else
  1202. {
  1203. radix = 8;
  1204. n -= 1;
  1205. }
  1206. }
  1207. if(n)
  1208. {
  1209. if(0 != mpz_set_str(m_data, s, radix))
  1210. BOOST_THROW_EXCEPTION(std::runtime_error(std::string("The string \"") + s + std::string("\"could not be interpreted as a valid integer.")));
  1211. }
  1212. else
  1213. mpz_set_ui(m_data, 0);
  1214. return *this;
  1215. }
  1216. gmp_int& operator=(const mpf_t val)
  1217. {
  1218. if(m_data[0]._mp_d == 0)
  1219. mpz_init(this->m_data);
  1220. mpz_set_f(this->m_data, val);
  1221. return *this;
  1222. }
  1223. gmp_int& operator=(const mpz_t val)
  1224. {
  1225. if(m_data[0]._mp_d == 0)
  1226. mpz_init(this->m_data);
  1227. mpz_set(this->m_data, val);
  1228. return *this;
  1229. }
  1230. gmp_int& operator=(const mpq_t val)
  1231. {
  1232. if(m_data[0]._mp_d == 0)
  1233. mpz_init(this->m_data);
  1234. mpz_set_q(this->m_data, val);
  1235. return *this;
  1236. }
  1237. template <unsigned Digits10>
  1238. gmp_int& operator=(const gmp_float<Digits10>& o)
  1239. {
  1240. if(m_data[0]._mp_d == 0)
  1241. mpz_init(this->m_data);
  1242. mpz_set_f(this->m_data, o.data());
  1243. return *this;
  1244. }
  1245. gmp_int& operator=(const gmp_rational& o);
  1246. void swap(gmp_int& o)
  1247. {
  1248. mpz_swap(m_data, o.m_data);
  1249. }
  1250. std::string str(std::streamsize /*digits*/, std::ios_base::fmtflags f)const
  1251. {
  1252. BOOST_ASSERT(m_data[0]._mp_d);
  1253. int base = 10;
  1254. if((f & std::ios_base::oct) == std::ios_base::oct)
  1255. base = 8;
  1256. else if((f & std::ios_base::hex) == std::ios_base::hex)
  1257. base = 16;
  1258. //
  1259. // sanity check, bases 8 and 16 are only available for positive numbers:
  1260. //
  1261. if((base != 10) && (mpz_sgn(m_data) < 0))
  1262. BOOST_THROW_EXCEPTION(std::runtime_error("Formatted output in bases 8 or 16 is only available for positive numbers"));
  1263. void *(*alloc_func_ptr) (size_t);
  1264. void *(*realloc_func_ptr) (void *, size_t, size_t);
  1265. void (*free_func_ptr) (void *, size_t);
  1266. const char* ps = mpz_get_str (0, base, m_data);
  1267. std::string s = ps;
  1268. mp_get_memory_functions(&alloc_func_ptr, &realloc_func_ptr, &free_func_ptr);
  1269. (*free_func_ptr)((void*)ps, std::strlen(ps) + 1);
  1270. if((base != 10) && (f & std::ios_base::showbase))
  1271. {
  1272. int pos = s[0] == '-' ? 1 : 0;
  1273. const char* pp = base == 8 ? "0" : "0x";
  1274. s.insert(static_cast<std::string::size_type>(pos), pp);
  1275. }
  1276. if((f & std::ios_base::showpos) && (s[0] != '-'))
  1277. s.insert(static_cast<std::string::size_type>(0), 1, '+');
  1278. return s;
  1279. }
  1280. ~gmp_int() BOOST_NOEXCEPT
  1281. {
  1282. if(m_data[0]._mp_d)
  1283. mpz_clear(m_data);
  1284. }
  1285. void negate() BOOST_NOEXCEPT
  1286. {
  1287. BOOST_ASSERT(m_data[0]._mp_d);
  1288. mpz_neg(m_data, m_data);
  1289. }
  1290. int compare(const gmp_int& o)const BOOST_NOEXCEPT
  1291. {
  1292. BOOST_ASSERT(m_data[0]._mp_d && o.m_data[0]._mp_d);
  1293. return mpz_cmp(m_data, o.m_data);
  1294. }
  1295. int compare(long i)const BOOST_NOEXCEPT
  1296. {
  1297. BOOST_ASSERT(m_data[0]._mp_d);
  1298. return mpz_cmp_si(m_data, i);
  1299. }
  1300. int compare(unsigned long i)const BOOST_NOEXCEPT
  1301. {
  1302. BOOST_ASSERT(m_data[0]._mp_d);
  1303. return mpz_cmp_ui(m_data, i);
  1304. }
  1305. template <class V>
  1306. int compare(V v)const
  1307. {
  1308. gmp_int d;
  1309. d = v;
  1310. return compare(d);
  1311. }
  1312. mpz_t& data() BOOST_NOEXCEPT
  1313. {
  1314. BOOST_ASSERT(m_data[0]._mp_d);
  1315. return m_data;
  1316. }
  1317. const mpz_t& data()const BOOST_NOEXCEPT
  1318. {
  1319. BOOST_ASSERT(m_data[0]._mp_d);
  1320. return m_data;
  1321. }
  1322. protected:
  1323. mpz_t m_data;
  1324. };
  1325. template <class T>
  1326. inline typename enable_if<is_arithmetic<T>, bool>::type eval_eq(const gmp_int& a, const T& b)
  1327. {
  1328. return a.compare(b) == 0;
  1329. }
  1330. template <class T>
  1331. inline typename enable_if<is_arithmetic<T>, bool>::type eval_lt(const gmp_int& a, const T& b)
  1332. {
  1333. return a.compare(b) < 0;
  1334. }
  1335. template <class T>
  1336. inline typename enable_if<is_arithmetic<T>, bool>::type eval_gt(const gmp_int& a, const T& b)
  1337. {
  1338. return a.compare(b) > 0;
  1339. }
  1340. inline bool eval_is_zero(const gmp_int& val)
  1341. {
  1342. return mpz_sgn(val.data()) == 0;
  1343. }
  1344. inline void eval_add(gmp_int& t, const gmp_int& o)
  1345. {
  1346. mpz_add(t.data(), t.data(), o.data());
  1347. }
  1348. inline void eval_multiply_add(gmp_int& t, const gmp_int& a, const gmp_int& b)
  1349. {
  1350. mpz_addmul(t.data(), a.data(), b.data());
  1351. }
  1352. inline void eval_multiply_subtract(gmp_int& t, const gmp_int& a, const gmp_int& b)
  1353. {
  1354. mpz_submul(t.data(), a.data(), b.data());
  1355. }
  1356. inline void eval_subtract(gmp_int& t, const gmp_int& o)
  1357. {
  1358. mpz_sub(t.data(), t.data(), o.data());
  1359. }
  1360. inline void eval_multiply(gmp_int& t, const gmp_int& o)
  1361. {
  1362. mpz_mul(t.data(), t.data(), o.data());
  1363. }
  1364. inline void eval_divide(gmp_int& t, const gmp_int& o)
  1365. {
  1366. if(eval_is_zero(o))
  1367. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  1368. mpz_tdiv_q(t.data(), t.data(), o.data());
  1369. }
  1370. inline void eval_modulus(gmp_int& t, const gmp_int& o)
  1371. {
  1372. mpz_tdiv_r(t.data(), t.data(), o.data());
  1373. }
  1374. inline void eval_add(gmp_int& t, unsigned long i)
  1375. {
  1376. mpz_add_ui(t.data(), t.data(), i);
  1377. }
  1378. inline void eval_multiply_add(gmp_int& t, const gmp_int& a, unsigned long i)
  1379. {
  1380. mpz_addmul_ui(t.data(), a.data(), i);
  1381. }
  1382. inline void eval_multiply_subtract(gmp_int& t, const gmp_int& a, unsigned long i)
  1383. {
  1384. mpz_submul_ui(t.data(), a.data(), i);
  1385. }
  1386. inline void eval_subtract(gmp_int& t, unsigned long i)
  1387. {
  1388. mpz_sub_ui(t.data(), t.data(), i);
  1389. }
  1390. inline void eval_multiply(gmp_int& t, unsigned long i)
  1391. {
  1392. mpz_mul_ui(t.data(), t.data(), i);
  1393. }
  1394. inline void eval_modulus(gmp_int& t, unsigned long i)
  1395. {
  1396. mpz_tdiv_r_ui(t.data(), t.data(), i);
  1397. }
  1398. inline void eval_divide(gmp_int& t, unsigned long i)
  1399. {
  1400. if(i == 0)
  1401. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  1402. mpz_tdiv_q_ui(t.data(), t.data(), i);
  1403. }
  1404. inline void eval_add(gmp_int& t, long i)
  1405. {
  1406. if(i > 0)
  1407. mpz_add_ui(t.data(), t.data(), i);
  1408. else
  1409. mpz_sub_ui(t.data(), t.data(), boost::multiprecision::detail::unsigned_abs(i));
  1410. }
  1411. inline void eval_multiply_add(gmp_int& t, const gmp_int& a, long i)
  1412. {
  1413. if(i > 0)
  1414. mpz_addmul_ui(t.data(), a.data(), i);
  1415. else
  1416. mpz_submul_ui(t.data(), a.data(), boost::multiprecision::detail::unsigned_abs(i));
  1417. }
  1418. inline void eval_multiply_subtract(gmp_int& t, const gmp_int& a, long i)
  1419. {
  1420. if(i > 0)
  1421. mpz_submul_ui(t.data(), a.data(), i);
  1422. else
  1423. mpz_addmul_ui(t.data(), a.data(), boost::multiprecision::detail::unsigned_abs(i));
  1424. }
  1425. inline void eval_subtract(gmp_int& t, long i)
  1426. {
  1427. if(i > 0)
  1428. mpz_sub_ui(t.data(), t.data(), i);
  1429. else
  1430. mpz_add_ui(t.data(), t.data(), boost::multiprecision::detail::unsigned_abs(i));
  1431. }
  1432. inline void eval_multiply(gmp_int& t, long i)
  1433. {
  1434. mpz_mul_ui(t.data(), t.data(), boost::multiprecision::detail::unsigned_abs(i));
  1435. if(i < 0)
  1436. mpz_neg(t.data(), t.data());
  1437. }
  1438. inline void eval_modulus(gmp_int& t, long i)
  1439. {
  1440. mpz_tdiv_r_ui(t.data(), t.data(), boost::multiprecision::detail::unsigned_abs(i));
  1441. }
  1442. inline void eval_divide(gmp_int& t, long i)
  1443. {
  1444. if(i == 0)
  1445. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  1446. mpz_tdiv_q_ui(t.data(), t.data(), boost::multiprecision::detail::unsigned_abs(i));
  1447. if(i < 0)
  1448. mpz_neg(t.data(), t.data());
  1449. }
  1450. template <class UI>
  1451. inline void eval_left_shift(gmp_int& t, UI i)
  1452. {
  1453. mpz_mul_2exp(t.data(), t.data(), static_cast<unsigned long>(i));
  1454. }
  1455. template <class UI>
  1456. inline void eval_right_shift(gmp_int& t, UI i)
  1457. {
  1458. mpz_fdiv_q_2exp(t.data(), t.data(), static_cast<unsigned long>(i));
  1459. }
  1460. template <class UI>
  1461. inline void eval_left_shift(gmp_int& t, const gmp_int& v, UI i)
  1462. {
  1463. mpz_mul_2exp(t.data(), v.data(), static_cast<unsigned long>(i));
  1464. }
  1465. template <class UI>
  1466. inline void eval_right_shift(gmp_int& t, const gmp_int& v, UI i)
  1467. {
  1468. mpz_fdiv_q_2exp(t.data(), v.data(), static_cast<unsigned long>(i));
  1469. }
  1470. inline void eval_bitwise_and(gmp_int& result, const gmp_int& v)
  1471. {
  1472. mpz_and(result.data(), result.data(), v.data());
  1473. }
  1474. inline void eval_bitwise_or(gmp_int& result, const gmp_int& v)
  1475. {
  1476. mpz_ior(result.data(), result.data(), v.data());
  1477. }
  1478. inline void eval_bitwise_xor(gmp_int& result, const gmp_int& v)
  1479. {
  1480. mpz_xor(result.data(), result.data(), v.data());
  1481. }
  1482. inline void eval_add(gmp_int& t, const gmp_int& p, const gmp_int& o)
  1483. {
  1484. mpz_add(t.data(), p.data(), o.data());
  1485. }
  1486. inline void eval_subtract(gmp_int& t, const gmp_int& p, const gmp_int& o)
  1487. {
  1488. mpz_sub(t.data(), p.data(), o.data());
  1489. }
  1490. inline void eval_multiply(gmp_int& t, const gmp_int& p, const gmp_int& o)
  1491. {
  1492. mpz_mul(t.data(), p.data(), o.data());
  1493. }
  1494. inline void eval_divide(gmp_int& t, const gmp_int& p, const gmp_int& o)
  1495. {
  1496. if(eval_is_zero(o))
  1497. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  1498. mpz_tdiv_q(t.data(), p.data(), o.data());
  1499. }
  1500. inline void eval_modulus(gmp_int& t, const gmp_int& p, const gmp_int& o)
  1501. {
  1502. mpz_tdiv_r(t.data(), p.data(), o.data());
  1503. }
  1504. inline void eval_add(gmp_int& t, const gmp_int& p, unsigned long i)
  1505. {
  1506. mpz_add_ui(t.data(), p.data(), i);
  1507. }
  1508. inline void eval_subtract(gmp_int& t, const gmp_int& p, unsigned long i)
  1509. {
  1510. mpz_sub_ui(t.data(), p.data(), i);
  1511. }
  1512. inline void eval_multiply(gmp_int& t, const gmp_int& p, unsigned long i)
  1513. {
  1514. mpz_mul_ui(t.data(), p.data(), i);
  1515. }
  1516. inline void eval_modulus(gmp_int& t, const gmp_int& p, unsigned long i)
  1517. {
  1518. mpz_tdiv_r_ui(t.data(), p.data(), i);
  1519. }
  1520. inline void eval_divide(gmp_int& t, const gmp_int& p, unsigned long i)
  1521. {
  1522. if(i == 0)
  1523. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  1524. mpz_tdiv_q_ui(t.data(), p.data(), i);
  1525. }
  1526. inline void eval_add(gmp_int& t, const gmp_int& p, long i)
  1527. {
  1528. if(i > 0)
  1529. mpz_add_ui(t.data(), p.data(), i);
  1530. else
  1531. mpz_sub_ui(t.data(), p.data(), boost::multiprecision::detail::unsigned_abs(i));
  1532. }
  1533. inline void eval_subtract(gmp_int& t, const gmp_int& p, long i)
  1534. {
  1535. if(i > 0)
  1536. mpz_sub_ui(t.data(), p.data(), i);
  1537. else
  1538. mpz_add_ui(t.data(), p.data(), boost::multiprecision::detail::unsigned_abs(i));
  1539. }
  1540. inline void eval_multiply(gmp_int& t, const gmp_int& p, long i)
  1541. {
  1542. mpz_mul_ui(t.data(), p.data(), boost::multiprecision::detail::unsigned_abs(i));
  1543. if(i < 0)
  1544. mpz_neg(t.data(), t.data());
  1545. }
  1546. inline void eval_modulus(gmp_int& t, const gmp_int& p, long i)
  1547. {
  1548. mpz_tdiv_r_ui(t.data(), p.data(), boost::multiprecision::detail::unsigned_abs(i));
  1549. }
  1550. inline void eval_divide(gmp_int& t, const gmp_int& p, long i)
  1551. {
  1552. if(i == 0)
  1553. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  1554. mpz_tdiv_q_ui(t.data(), p.data(), boost::multiprecision::detail::unsigned_abs(i));
  1555. if(i < 0)
  1556. mpz_neg(t.data(), t.data());
  1557. }
  1558. inline void eval_bitwise_and(gmp_int& result, const gmp_int& u, const gmp_int& v)
  1559. {
  1560. mpz_and(result.data(), u.data(), v.data());
  1561. }
  1562. inline void eval_bitwise_or(gmp_int& result, const gmp_int& u, const gmp_int& v)
  1563. {
  1564. mpz_ior(result.data(), u.data(), v.data());
  1565. }
  1566. inline void eval_bitwise_xor(gmp_int& result, const gmp_int& u, const gmp_int& v)
  1567. {
  1568. mpz_xor(result.data(), u.data(), v.data());
  1569. }
  1570. inline void eval_complement(gmp_int& result, const gmp_int& u)
  1571. {
  1572. mpz_com(result.data(), u.data());
  1573. }
  1574. inline int eval_get_sign(const gmp_int& val)
  1575. {
  1576. return mpz_sgn(val.data());
  1577. }
  1578. inline void eval_convert_to(unsigned long* result, const gmp_int& val)
  1579. {
  1580. if (mpz_sgn(val.data()) < 0)
  1581. {
  1582. BOOST_THROW_EXCEPTION(std::range_error("Conversion from negative integer to an unsigned type results in undefined behaviour"));
  1583. }
  1584. else
  1585. *result = (unsigned long)mpz_get_ui(val.data());
  1586. }
  1587. inline void eval_convert_to(long* result, const gmp_int& val)
  1588. {
  1589. if(0 == mpz_fits_slong_p(val.data()))
  1590. {
  1591. *result = mpz_sgn(val.data()) < 0 ? (std::numeric_limits<long>::min)() : (std::numeric_limits<long>::max)();
  1592. }
  1593. else
  1594. *result = (signed long)mpz_get_si(val.data());
  1595. }
  1596. inline void eval_convert_to(double* result, const gmp_int& val)
  1597. {
  1598. *result = mpz_get_d(val.data());
  1599. }
  1600. inline void eval_abs(gmp_int& result, const gmp_int& val)
  1601. {
  1602. mpz_abs(result.data(), val.data());
  1603. }
  1604. inline void eval_gcd(gmp_int& result, const gmp_int& a, const gmp_int& b)
  1605. {
  1606. mpz_gcd(result.data(), a.data(), b.data());
  1607. }
  1608. inline void eval_lcm(gmp_int& result, const gmp_int& a, const gmp_int& b)
  1609. {
  1610. mpz_lcm(result.data(), a.data(), b.data());
  1611. }
  1612. template <class I>
  1613. inline typename enable_if_c<(is_unsigned<I>::value && (sizeof(I) <= sizeof(unsigned long)))>::type eval_gcd(gmp_int& result, const gmp_int& a, const I b)
  1614. {
  1615. mpz_gcd_ui(result.data(), a.data(), b);
  1616. }
  1617. template <class I>
  1618. inline typename enable_if_c<(is_unsigned<I>::value && (sizeof(I) <= sizeof(unsigned long)))>::type eval_lcm(gmp_int& result, const gmp_int& a, const I b)
  1619. {
  1620. mpz_lcm_ui(result.data(), a.data(), b);
  1621. }
  1622. template <class I>
  1623. inline typename enable_if_c<(is_signed<I>::value && (sizeof(I) <= sizeof(long)))>::type eval_gcd(gmp_int& result, const gmp_int& a, const I b)
  1624. {
  1625. mpz_gcd_ui(result.data(), a.data(), boost::multiprecision::detail::unsigned_abs(b));
  1626. }
  1627. template <class I>
  1628. inline typename enable_if_c<is_signed<I>::value && ((sizeof(I) <= sizeof(long)))>::type eval_lcm(gmp_int& result, const gmp_int& a, const I b)
  1629. {
  1630. mpz_lcm_ui(result.data(), a.data(), boost::multiprecision::detail::unsigned_abs(b));
  1631. }
  1632. inline void eval_integer_sqrt(gmp_int& s, gmp_int& r, const gmp_int& x)
  1633. {
  1634. mpz_sqrtrem(s.data(), r.data(), x.data());
  1635. }
  1636. inline unsigned eval_lsb(const gmp_int& val)
  1637. {
  1638. int c = eval_get_sign(val);
  1639. if(c == 0)
  1640. {
  1641. BOOST_THROW_EXCEPTION(std::range_error("No bits were set in the operand."));
  1642. }
  1643. if(c < 0)
  1644. {
  1645. BOOST_THROW_EXCEPTION(std::range_error("Testing individual bits in negative values is not supported - results are undefined."));
  1646. }
  1647. return static_cast<unsigned>(mpz_scan1(val.data(), 0));
  1648. }
  1649. inline unsigned eval_msb(const gmp_int& val)
  1650. {
  1651. int c = eval_get_sign(val);
  1652. if(c == 0)
  1653. {
  1654. BOOST_THROW_EXCEPTION(std::range_error("No bits were set in the operand."));
  1655. }
  1656. if(c < 0)
  1657. {
  1658. BOOST_THROW_EXCEPTION(std::range_error("Testing individual bits in negative values is not supported - results are undefined."));
  1659. }
  1660. return static_cast<unsigned>(mpz_sizeinbase(val.data(), 2) - 1);
  1661. }
  1662. inline bool eval_bit_test(const gmp_int& val, unsigned index)
  1663. {
  1664. return mpz_tstbit(val.data(), index) ? true : false;
  1665. }
  1666. inline void eval_bit_set(gmp_int& val, unsigned index)
  1667. {
  1668. mpz_setbit(val.data(), index);
  1669. }
  1670. inline void eval_bit_unset(gmp_int& val, unsigned index)
  1671. {
  1672. mpz_clrbit(val.data(), index);
  1673. }
  1674. inline void eval_bit_flip(gmp_int& val, unsigned index)
  1675. {
  1676. mpz_combit(val.data(), index);
  1677. }
  1678. inline void eval_qr(const gmp_int& x, const gmp_int& y,
  1679. gmp_int& q, gmp_int& r)
  1680. {
  1681. mpz_tdiv_qr(q.data(), r.data(), x.data(), y.data());
  1682. }
  1683. template <class Integer>
  1684. inline typename enable_if<is_unsigned<Integer>, Integer>::type eval_integer_modulus(const gmp_int& x, Integer val)
  1685. {
  1686. #if defined(__MPIR_VERSION) && (__MPIR_VERSION >= 3)
  1687. if((sizeof(Integer) <= sizeof(mpir_ui)) || (val <= (std::numeric_limits<mpir_ui>::max)()))
  1688. #else
  1689. if((sizeof(Integer) <= sizeof(long)) || (val <= (std::numeric_limits<unsigned long>::max)()))
  1690. #endif
  1691. {
  1692. return static_cast<Integer>(mpz_tdiv_ui(x.data(), val));
  1693. }
  1694. else
  1695. {
  1696. return default_ops::eval_integer_modulus(x, val);
  1697. }
  1698. }
  1699. template <class Integer>
  1700. inline typename enable_if<is_signed<Integer>, Integer>::type eval_integer_modulus(const gmp_int& x, Integer val)
  1701. {
  1702. return eval_integer_modulus(x, boost::multiprecision::detail::unsigned_abs(val));
  1703. }
  1704. inline void eval_powm(gmp_int& result, const gmp_int& base, const gmp_int& p, const gmp_int& m)
  1705. {
  1706. if(eval_get_sign(p) < 0)
  1707. {
  1708. BOOST_THROW_EXCEPTION(std::runtime_error("powm requires a positive exponent."));
  1709. }
  1710. mpz_powm(result.data(), base.data(), p.data(), m.data());
  1711. }
  1712. template <class Integer>
  1713. inline typename enable_if<
  1714. mpl::and_<
  1715. is_unsigned<Integer>,
  1716. mpl::bool_<sizeof(Integer) <= sizeof(unsigned long)>
  1717. >
  1718. >::type eval_powm(gmp_int& result, const gmp_int& base, Integer p, const gmp_int& m)
  1719. {
  1720. mpz_powm_ui(result.data(), base.data(), p, m.data());
  1721. }
  1722. template <class Integer>
  1723. inline typename enable_if<
  1724. mpl::and_<
  1725. is_signed<Integer>,
  1726. mpl::bool_<sizeof(Integer) <= sizeof(unsigned long)>
  1727. >
  1728. >::type eval_powm(gmp_int& result, const gmp_int& base, Integer p, const gmp_int& m)
  1729. {
  1730. if(p < 0)
  1731. {
  1732. BOOST_THROW_EXCEPTION(std::runtime_error("powm requires a positive exponent."));
  1733. }
  1734. mpz_powm_ui(result.data(), base.data(), p, m.data());
  1735. }
  1736. inline std::size_t hash_value(const gmp_int& val)
  1737. {
  1738. // We should really use mpz_limbs_read here, but that's unsupported on older versions:
  1739. std::size_t result = 0;
  1740. for(int i = 0; i < std::abs(val.data()[0]._mp_size); ++i)
  1741. boost::hash_combine(result, val.data()[0]._mp_d[i]);
  1742. boost::hash_combine(result, val.data()[0]._mp_size);
  1743. return result;
  1744. }
  1745. struct gmp_rational;
  1746. void eval_add(gmp_rational& t, const gmp_rational& o);
  1747. struct gmp_rational
  1748. {
  1749. #ifdef BOOST_HAS_LONG_LONG
  1750. typedef mpl::list<long, boost::long_long_type> signed_types;
  1751. typedef mpl::list<unsigned long, boost::ulong_long_type> unsigned_types;
  1752. #else
  1753. typedef mpl::list<long> signed_types;
  1754. typedef mpl::list<unsigned long> unsigned_types;
  1755. #endif
  1756. typedef mpl::list<double, long double> float_types;
  1757. gmp_rational()
  1758. {
  1759. mpq_init(this->m_data);
  1760. }
  1761. gmp_rational(const gmp_rational& o)
  1762. {
  1763. mpq_init(m_data);
  1764. if(o.m_data[0]._mp_num._mp_d)
  1765. mpq_set(m_data, o.m_data);
  1766. }
  1767. gmp_rational(const gmp_int& o)
  1768. {
  1769. mpq_init(m_data);
  1770. mpq_set_z(m_data, o.data());
  1771. }
  1772. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  1773. gmp_rational(gmp_rational&& o) BOOST_NOEXCEPT
  1774. {
  1775. m_data[0] = o.m_data[0];
  1776. o.m_data[0]._mp_num._mp_d = 0;
  1777. o.m_data[0]._mp_den._mp_d = 0;
  1778. }
  1779. #endif
  1780. gmp_rational(const mpq_t o)
  1781. {
  1782. mpq_init(m_data);
  1783. mpq_set(m_data, o);
  1784. }
  1785. gmp_rational(const mpz_t o)
  1786. {
  1787. mpq_init(m_data);
  1788. mpq_set_z(m_data, o);
  1789. }
  1790. gmp_rational& operator = (const gmp_rational& o)
  1791. {
  1792. if(m_data[0]._mp_den._mp_d == 0)
  1793. mpq_init(m_data);
  1794. mpq_set(m_data, o.m_data);
  1795. return *this;
  1796. }
  1797. #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
  1798. gmp_rational& operator = (gmp_rational&& o) BOOST_NOEXCEPT
  1799. {
  1800. mpq_swap(m_data, o.m_data);
  1801. return *this;
  1802. }
  1803. #endif
  1804. #ifdef BOOST_HAS_LONG_LONG
  1805. #if defined(ULLONG_MAX) && (ULLONG_MAX == ULONG_MAX)
  1806. gmp_rational& operator = (boost::ulong_long_type i)
  1807. {
  1808. *this = static_cast<unsigned long>(i);
  1809. return *this;
  1810. }
  1811. #else
  1812. gmp_rational& operator = (boost::ulong_long_type i)
  1813. {
  1814. if(m_data[0]._mp_den._mp_d == 0)
  1815. mpq_init(m_data);
  1816. gmp_int zi;
  1817. zi = i;
  1818. mpq_set_z(m_data, zi.data());
  1819. return *this;
  1820. }
  1821. gmp_rational& operator = (boost::long_long_type i)
  1822. {
  1823. if(m_data[0]._mp_den._mp_d == 0)
  1824. mpq_init(m_data);
  1825. bool neg = i < 0;
  1826. *this = boost::multiprecision::detail::unsigned_abs(i);
  1827. if(neg)
  1828. mpq_neg(m_data, m_data);
  1829. return *this;
  1830. }
  1831. #endif
  1832. #endif
  1833. gmp_rational& operator = (unsigned long i)
  1834. {
  1835. if(m_data[0]._mp_den._mp_d == 0)
  1836. mpq_init(m_data);
  1837. mpq_set_ui(m_data, i, 1);
  1838. return *this;
  1839. }
  1840. gmp_rational& operator = (long i)
  1841. {
  1842. if(m_data[0]._mp_den._mp_d == 0)
  1843. mpq_init(m_data);
  1844. mpq_set_si(m_data, i, 1);
  1845. return *this;
  1846. }
  1847. gmp_rational& operator = (double d)
  1848. {
  1849. if(m_data[0]._mp_den._mp_d == 0)
  1850. mpq_init(m_data);
  1851. mpq_set_d(m_data, d);
  1852. return *this;
  1853. }
  1854. gmp_rational& operator = (long double a)
  1855. {
  1856. using std::frexp;
  1857. using std::ldexp;
  1858. using std::floor;
  1859. using default_ops::eval_add;
  1860. using default_ops::eval_subtract;
  1861. if(m_data[0]._mp_den._mp_d == 0)
  1862. mpq_init(m_data);
  1863. if (a == 0) {
  1864. mpq_set_si(m_data, 0, 1);
  1865. return *this;
  1866. }
  1867. if (a == 1) {
  1868. mpq_set_si(m_data, 1, 1);
  1869. return *this;
  1870. }
  1871. BOOST_ASSERT(!(boost::math::isinf)(a));
  1872. BOOST_ASSERT(!(boost::math::isnan)(a));
  1873. int e;
  1874. long double f, term;
  1875. mpq_set_ui(m_data, 0, 1);
  1876. mpq_set_ui(m_data, 0u, 1);
  1877. gmp_rational t;
  1878. f = frexp(a, &e);
  1879. static const int shift = std::numeric_limits<int>::digits - 1;
  1880. while(f)
  1881. {
  1882. // extract int sized bits from f:
  1883. f = ldexp(f, shift);
  1884. term = floor(f);
  1885. e -= shift;
  1886. mpq_mul_2exp(m_data, m_data, shift);
  1887. t = static_cast<long>(term);
  1888. eval_add(*this, t);
  1889. f -= term;
  1890. }
  1891. if(e > 0)
  1892. mpq_mul_2exp(m_data, m_data, e);
  1893. else if(e < 0)
  1894. mpq_div_2exp(m_data, m_data, -e);
  1895. return *this;
  1896. }
  1897. gmp_rational& operator = (const char* s)
  1898. {
  1899. if(m_data[0]._mp_den._mp_d == 0)
  1900. mpq_init(m_data);
  1901. if(0 != mpq_set_str(m_data, s, 10))
  1902. BOOST_THROW_EXCEPTION(std::runtime_error(std::string("The string \"") + s + std::string("\"could not be interpreted as a valid rational number.")));
  1903. return *this;
  1904. }
  1905. gmp_rational& operator=(const gmp_int& o)
  1906. {
  1907. if(m_data[0]._mp_den._mp_d == 0)
  1908. mpq_init(m_data);
  1909. mpq_set_z(m_data, o.data());
  1910. return *this;
  1911. }
  1912. gmp_rational& operator=(const mpq_t o)
  1913. {
  1914. if(m_data[0]._mp_den._mp_d == 0)
  1915. mpq_init(m_data);
  1916. mpq_set(m_data, o);
  1917. return *this;
  1918. }
  1919. gmp_rational& operator=(const mpz_t o)
  1920. {
  1921. if(m_data[0]._mp_den._mp_d == 0)
  1922. mpq_init(m_data);
  1923. mpq_set_z(m_data, o);
  1924. return *this;
  1925. }
  1926. void swap(gmp_rational& o)
  1927. {
  1928. mpq_swap(m_data, o.m_data);
  1929. }
  1930. std::string str(std::streamsize /*digits*/, std::ios_base::fmtflags /*f*/)const
  1931. {
  1932. BOOST_ASSERT(m_data[0]._mp_num._mp_d);
  1933. // TODO make a better job of this including handling of f!!
  1934. void *(*alloc_func_ptr) (size_t);
  1935. void *(*realloc_func_ptr) (void *, size_t, size_t);
  1936. void (*free_func_ptr) (void *, size_t);
  1937. const char* ps = mpq_get_str (0, 10, m_data);
  1938. std::string s = ps;
  1939. mp_get_memory_functions(&alloc_func_ptr, &realloc_func_ptr, &free_func_ptr);
  1940. (*free_func_ptr)((void*)ps, std::strlen(ps) + 1);
  1941. return s;
  1942. }
  1943. ~gmp_rational()
  1944. {
  1945. if(m_data[0]._mp_num._mp_d || m_data[0]._mp_den._mp_d)
  1946. mpq_clear(m_data);
  1947. }
  1948. void negate()
  1949. {
  1950. BOOST_ASSERT(m_data[0]._mp_num._mp_d);
  1951. mpq_neg(m_data, m_data);
  1952. }
  1953. int compare(const gmp_rational& o)const
  1954. {
  1955. BOOST_ASSERT(m_data[0]._mp_num._mp_d && o.m_data[0]._mp_num._mp_d);
  1956. return mpq_cmp(m_data, o.m_data);
  1957. }
  1958. template <class V>
  1959. int compare(V v)const
  1960. {
  1961. gmp_rational d;
  1962. d = v;
  1963. return compare(d);
  1964. }
  1965. int compare(unsigned long v)const
  1966. {
  1967. BOOST_ASSERT(m_data[0]._mp_num._mp_d);
  1968. return mpq_cmp_ui(m_data, v, 1);
  1969. }
  1970. int compare(long v)const
  1971. {
  1972. BOOST_ASSERT(m_data[0]._mp_num._mp_d);
  1973. return mpq_cmp_si(m_data, v, 1);
  1974. }
  1975. mpq_t& data()
  1976. {
  1977. BOOST_ASSERT(m_data[0]._mp_num._mp_d);
  1978. return m_data;
  1979. }
  1980. const mpq_t& data()const
  1981. {
  1982. BOOST_ASSERT(m_data[0]._mp_num._mp_d);
  1983. return m_data;
  1984. }
  1985. protected:
  1986. mpq_t m_data;
  1987. };
  1988. inline bool eval_is_zero(const gmp_rational& val)
  1989. {
  1990. return mpq_sgn(val.data()) == 0;
  1991. }
  1992. template <class T>
  1993. inline bool eval_eq(gmp_rational& a, const T& b)
  1994. {
  1995. return a.compare(b) == 0;
  1996. }
  1997. template <class T>
  1998. inline bool eval_lt(gmp_rational& a, const T& b)
  1999. {
  2000. return a.compare(b) < 0;
  2001. }
  2002. template <class T>
  2003. inline bool eval_gt(gmp_rational& a, const T& b)
  2004. {
  2005. return a.compare(b) > 0;
  2006. }
  2007. inline void eval_add(gmp_rational& t, const gmp_rational& o)
  2008. {
  2009. mpq_add(t.data(), t.data(), o.data());
  2010. }
  2011. inline void eval_subtract(gmp_rational& t, const gmp_rational& o)
  2012. {
  2013. mpq_sub(t.data(), t.data(), o.data());
  2014. }
  2015. inline void eval_multiply(gmp_rational& t, const gmp_rational& o)
  2016. {
  2017. mpq_mul(t.data(), t.data(), o.data());
  2018. }
  2019. inline void eval_divide(gmp_rational& t, const gmp_rational& o)
  2020. {
  2021. if(eval_is_zero(o))
  2022. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  2023. mpq_div(t.data(), t.data(), o.data());
  2024. }
  2025. inline void eval_add(gmp_rational& t, const gmp_rational& p, const gmp_rational& o)
  2026. {
  2027. mpq_add(t.data(), p.data(), o.data());
  2028. }
  2029. inline void eval_subtract(gmp_rational& t, const gmp_rational& p, const gmp_rational& o)
  2030. {
  2031. mpq_sub(t.data(), p.data(), o.data());
  2032. }
  2033. inline void eval_multiply(gmp_rational& t, const gmp_rational& p, const gmp_rational& o)
  2034. {
  2035. mpq_mul(t.data(), p.data(), o.data());
  2036. }
  2037. inline void eval_divide(gmp_rational& t, const gmp_rational& p, const gmp_rational& o)
  2038. {
  2039. if(eval_is_zero(o))
  2040. BOOST_THROW_EXCEPTION(std::overflow_error("Division by zero."));
  2041. mpq_div(t.data(), p.data(), o.data());
  2042. }
  2043. inline int eval_get_sign(const gmp_rational& val)
  2044. {
  2045. return mpq_sgn(val.data());
  2046. }
  2047. inline void eval_convert_to(double* result, const gmp_rational& val)
  2048. {
  2049. //
  2050. // This does not round correctly:
  2051. //
  2052. //*result = mpq_get_d(val.data());
  2053. //
  2054. // This does:
  2055. //
  2056. boost::multiprecision::detail::generic_convert_rational_to_float(*result, val);
  2057. }
  2058. inline void eval_convert_to(long* result, const gmp_rational& val)
  2059. {
  2060. double r;
  2061. eval_convert_to(&r, val);
  2062. *result = static_cast<long>(r);
  2063. }
  2064. inline void eval_convert_to(unsigned long* result, const gmp_rational& val)
  2065. {
  2066. double r;
  2067. eval_convert_to(&r, val);
  2068. *result = static_cast<long>(r);
  2069. }
  2070. inline void eval_abs(gmp_rational& result, const gmp_rational& val)
  2071. {
  2072. mpq_abs(result.data(), val.data());
  2073. }
  2074. inline void assign_components(gmp_rational& result, unsigned long v1, unsigned long v2)
  2075. {
  2076. mpq_set_ui(result.data(), v1, v2);
  2077. mpq_canonicalize(result.data());
  2078. }
  2079. inline void assign_components(gmp_rational& result, long v1, long v2)
  2080. {
  2081. mpq_set_si(result.data(), v1, v2);
  2082. mpq_canonicalize(result.data());
  2083. }
  2084. inline void assign_components(gmp_rational& result, gmp_int const& v1, gmp_int const& v2)
  2085. {
  2086. mpz_set(mpq_numref(result.data()), v1.data());
  2087. mpz_set(mpq_denref(result.data()), v2.data());
  2088. mpq_canonicalize(result.data());
  2089. }
  2090. inline std::size_t hash_value(const gmp_rational& val)
  2091. {
  2092. std::size_t result = 0;
  2093. for(int i = 0; i < std::abs(val.data()[0]._mp_num._mp_size); ++i)
  2094. boost::hash_combine(result, val.data()[0]._mp_num._mp_d[i]);
  2095. for(int i = 0; i < std::abs(val.data()[0]._mp_den._mp_size); ++i)
  2096. boost::hash_combine(result, val.data()[0]._mp_den._mp_d[i]);
  2097. boost::hash_combine(result, val.data()[0]._mp_num._mp_size);
  2098. return result;
  2099. }
  2100. //
  2101. // Some member functions that are dependent upon previous code go here:
  2102. //
  2103. template <unsigned Digits10>
  2104. template <unsigned D>
  2105. inline gmp_float<Digits10>::gmp_float(const gmp_float<D>& o, typename enable_if_c<D <= Digits10>::type*)
  2106. {
  2107. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(Digits10 ? Digits10 : this->get_default_precision()));
  2108. mpf_set(this->m_data, o.data());
  2109. }
  2110. template <unsigned Digits10>
  2111. template <unsigned D>
  2112. inline gmp_float<Digits10>::gmp_float(const gmp_float<D>& o, typename disable_if_c<D <= Digits10>::type*)
  2113. {
  2114. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(Digits10 ? Digits10 : this->get_default_precision()));
  2115. mpf_set(this->m_data, o.data());
  2116. }
  2117. template <unsigned Digits10>
  2118. inline gmp_float<Digits10>::gmp_float(const gmp_int& o)
  2119. {
  2120. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(Digits10 ? Digits10 : this->get_default_precision()));
  2121. mpf_set_z(this->data(), o.data());
  2122. }
  2123. template <unsigned Digits10>
  2124. inline gmp_float<Digits10>::gmp_float(const gmp_rational& o)
  2125. {
  2126. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(Digits10 ? Digits10 : this->get_default_precision()));
  2127. mpf_set_q(this->data(), o.data());
  2128. }
  2129. template <unsigned Digits10>
  2130. template <unsigned D>
  2131. inline gmp_float<Digits10>& gmp_float<Digits10>::operator=(const gmp_float<D>& o)
  2132. {
  2133. if(this->m_data[0]._mp_d == 0)
  2134. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(Digits10 ? Digits10 : this->get_default_precision()));
  2135. mpf_set(this->m_data, o.data());
  2136. return *this;
  2137. }
  2138. template <unsigned Digits10>
  2139. inline gmp_float<Digits10>& gmp_float<Digits10>::operator=(const gmp_int& o)
  2140. {
  2141. if(this->m_data[0]._mp_d == 0)
  2142. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(Digits10 ? Digits10 : this->get_default_precision()));
  2143. mpf_set_z(this->data(), o.data());
  2144. return *this;
  2145. }
  2146. template <unsigned Digits10>
  2147. inline gmp_float<Digits10>& gmp_float<Digits10>::operator=(const gmp_rational& o)
  2148. {
  2149. if(this->m_data[0]._mp_d == 0)
  2150. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(Digits10 ? Digits10 : this->get_default_precision()));
  2151. mpf_set_q(this->data(), o.data());
  2152. return *this;
  2153. }
  2154. inline gmp_float<0>::gmp_float(const gmp_int& o)
  2155. {
  2156. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  2157. mpf_set_z(this->data(), o.data());
  2158. }
  2159. inline gmp_float<0>::gmp_float(const gmp_rational& o)
  2160. {
  2161. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(get_default_precision()));
  2162. mpf_set_q(this->data(), o.data());
  2163. }
  2164. inline gmp_float<0>& gmp_float<0>::operator=(const gmp_int& o)
  2165. {
  2166. if(this->m_data[0]._mp_d == 0)
  2167. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(this->get_default_precision()));
  2168. mpf_set_z(this->data(), o.data());
  2169. return *this;
  2170. }
  2171. inline gmp_float<0>& gmp_float<0>::operator=(const gmp_rational& o)
  2172. {
  2173. if(this->m_data[0]._mp_d == 0)
  2174. mpf_init2(this->m_data, multiprecision::detail::digits10_2_2(this->get_default_precision()));
  2175. mpf_set_q(this->data(), o.data());
  2176. return *this;
  2177. }
  2178. inline gmp_int::gmp_int(const gmp_rational& o)
  2179. {
  2180. mpz_init(this->m_data);
  2181. mpz_set_q(this->m_data, o.data());
  2182. }
  2183. inline gmp_int& gmp_int::operator=(const gmp_rational& o)
  2184. {
  2185. if(this->m_data[0]._mp_d == 0)
  2186. mpz_init(this->m_data);
  2187. mpz_set_q(this->m_data, o.data());
  2188. return *this;
  2189. }
  2190. } //namespace backends
  2191. using boost::multiprecision::backends::gmp_int;
  2192. using boost::multiprecision::backends::gmp_rational;
  2193. using boost::multiprecision::backends::gmp_float;
  2194. template <expression_template_option ExpressionTemplates>
  2195. struct component_type<number<gmp_rational, ExpressionTemplates> >
  2196. {
  2197. typedef number<gmp_int, ExpressionTemplates> type;
  2198. };
  2199. template <expression_template_option ET>
  2200. inline number<gmp_int, ET> numerator(const number<gmp_rational, ET>& val)
  2201. {
  2202. number<gmp_int, ET> result;
  2203. mpz_set(result.backend().data(), (mpq_numref(val.backend().data())));
  2204. return result;
  2205. }
  2206. template <expression_template_option ET>
  2207. inline number<gmp_int, ET> denominator(const number<gmp_rational, ET>& val)
  2208. {
  2209. number<gmp_int, ET> result;
  2210. mpz_set(result.backend().data(), (mpq_denref(val.backend().data())));
  2211. return result;
  2212. }
  2213. namespace detail{
  2214. #ifdef BOOST_NO_SFINAE_EXPR
  2215. template<>
  2216. struct is_explicitly_convertible<canonical<mpf_t, gmp_int>::type, gmp_int> : public mpl::true_ {};
  2217. template<>
  2218. struct is_explicitly_convertible<canonical<mpq_t, gmp_int>::type, gmp_int> : public mpl::true_ {};
  2219. template<unsigned Digits10>
  2220. struct is_explicitly_convertible<gmp_float<Digits10>, gmp_int> : public mpl::true_ {};
  2221. template<>
  2222. struct is_explicitly_convertible<gmp_rational, gmp_int> : public mpl::true_ {};
  2223. template<unsigned D1, unsigned D2>
  2224. struct is_explicitly_convertible<gmp_float<D1>, gmp_float<D2> > : public mpl::true_ {};
  2225. #endif
  2226. template <>
  2227. struct digits2<number<gmp_float<0>, et_on> >
  2228. {
  2229. static long value()
  2230. {
  2231. return multiprecision::detail::digits10_2_2(gmp_float<0>::default_precision());
  2232. }
  2233. };
  2234. template <>
  2235. struct digits2<number<gmp_float<0>, et_off> >
  2236. {
  2237. static long value()
  2238. {
  2239. return multiprecision::detail::digits10_2_2(gmp_float<0>::default_precision());
  2240. }
  2241. };
  2242. template <>
  2243. struct digits2<number<debug_adaptor<gmp_float<0> >, et_on> >
  2244. {
  2245. static long value()
  2246. {
  2247. return multiprecision::detail::digits10_2_2(gmp_float<0>::default_precision());
  2248. }
  2249. };
  2250. template <>
  2251. struct digits2<number<debug_adaptor<gmp_float<0> >, et_off> >
  2252. {
  2253. static long value()
  2254. {
  2255. return multiprecision::detail::digits10_2_2(gmp_float<0>::default_precision());
  2256. }
  2257. };
  2258. }
  2259. template<>
  2260. struct number_category<detail::canonical<mpz_t, gmp_int>::type> : public mpl::int_<number_kind_integer>{};
  2261. template<>
  2262. struct number_category<detail::canonical<mpq_t, gmp_rational>::type> : public mpl::int_<number_kind_rational>{};
  2263. template<>
  2264. struct number_category<detail::canonical<mpf_t, gmp_float<0> >::type> : public mpl::int_<number_kind_floating_point>{};
  2265. namespace detail
  2266. {
  2267. template<>
  2268. struct is_variable_precision<backends::gmp_float<0> > : public true_type {};
  2269. }
  2270. typedef number<gmp_float<50> > mpf_float_50;
  2271. typedef number<gmp_float<100> > mpf_float_100;
  2272. typedef number<gmp_float<500> > mpf_float_500;
  2273. typedef number<gmp_float<1000> > mpf_float_1000;
  2274. typedef number<gmp_float<0> > mpf_float;
  2275. typedef number<gmp_int > mpz_int;
  2276. typedef number<gmp_rational > mpq_rational;
  2277. } // namespace multiprecision
  2278. namespace math { namespace tools{
  2279. template <>
  2280. inline int digits<boost::multiprecision::mpf_float>()
  2281. #ifdef BOOST_MATH_NOEXCEPT
  2282. BOOST_NOEXCEPT
  2283. #endif
  2284. {
  2285. return multiprecision::detail::digits10_2_2(boost::multiprecision::mpf_float::default_precision());
  2286. }
  2287. template <>
  2288. inline int digits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, boost::multiprecision::et_off> >()
  2289. #ifdef BOOST_MATH_NOEXCEPT
  2290. BOOST_NOEXCEPT
  2291. #endif
  2292. {
  2293. return multiprecision::detail::digits10_2_2(boost::multiprecision::mpf_float::default_precision());
  2294. }
  2295. template <>
  2296. inline boost::multiprecision::mpf_float
  2297. max_value<boost::multiprecision::mpf_float>()
  2298. {
  2299. boost::multiprecision::mpf_float result(0.5);
  2300. mpf_mul_2exp(result.backend().data(), result.backend().data(), (std::numeric_limits<mp_exp_t>::max)() / 64 + 1);
  2301. return result;
  2302. }
  2303. template <>
  2304. inline boost::multiprecision::mpf_float
  2305. min_value<boost::multiprecision::mpf_float>()
  2306. {
  2307. boost::multiprecision::mpf_float result(0.5);
  2308. mpf_div_2exp(result.backend().data(), result.backend().data(), (std::numeric_limits<mp_exp_t>::min)() / 64 + 1);
  2309. return result;
  2310. }
  2311. template <>
  2312. inline boost::multiprecision::number<boost::multiprecision::gmp_float<0>, boost::multiprecision::et_off>
  2313. max_value<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, boost::multiprecision::et_off> >()
  2314. {
  2315. boost::multiprecision::number<boost::multiprecision::gmp_float<0>, boost::multiprecision::et_off> result(0.5);
  2316. mpf_mul_2exp(result.backend().data(), result.backend().data(), (std::numeric_limits<mp_exp_t>::max)() / 64 + 1);
  2317. return result;
  2318. }
  2319. template <>
  2320. inline boost::multiprecision::number<boost::multiprecision::gmp_float<0>, boost::multiprecision::et_off>
  2321. min_value<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, boost::multiprecision::et_off> >()
  2322. {
  2323. boost::multiprecision::number<boost::multiprecision::gmp_float<0>, boost::multiprecision::et_off> result(0.5);
  2324. mpf_div_2exp(result.backend().data(), result.backend().data(), (std::numeric_limits<mp_exp_t>::max)() / 64 + 1);
  2325. return result;
  2326. }
  2327. template <>
  2328. inline int digits<boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::mpf_float::backend_type> > >()
  2329. #ifdef BOOST_MATH_NOEXCEPT
  2330. BOOST_NOEXCEPT
  2331. #endif
  2332. {
  2333. return multiprecision::detail::digits10_2_2(boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::mpf_float::backend_type> >::default_precision());
  2334. }
  2335. template <>
  2336. inline int digits<boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::gmp_float<0> >, boost::multiprecision::et_off> >()
  2337. #ifdef BOOST_MATH_NOEXCEPT
  2338. BOOST_NOEXCEPT
  2339. #endif
  2340. {
  2341. return multiprecision::detail::digits10_2_2(boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::mpf_float::backend_type> >::default_precision());
  2342. }
  2343. template <>
  2344. inline boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::mpf_float::backend_type> >
  2345. max_value<boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::mpf_float::backend_type> > >()
  2346. {
  2347. return max_value<boost::multiprecision::mpf_float>().backend();
  2348. }
  2349. template <>
  2350. inline boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::mpf_float::backend_type> >
  2351. min_value<boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::mpf_float::backend_type> > >()
  2352. {
  2353. return min_value<boost::multiprecision::mpf_float>().backend();
  2354. }
  2355. template <>
  2356. inline boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::gmp_float<0> >, boost::multiprecision::et_off>
  2357. max_value<boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::gmp_float<0> >, boost::multiprecision::et_off> >()
  2358. {
  2359. return max_value<boost::multiprecision::mpf_float>().backend();
  2360. }
  2361. template <>
  2362. inline boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::gmp_float<0> >, boost::multiprecision::et_off>
  2363. min_value<boost::multiprecision::number<boost::multiprecision::debug_adaptor<boost::multiprecision::gmp_float<0> >, boost::multiprecision::et_off> >()
  2364. {
  2365. return min_value<boost::multiprecision::mpf_float>().backend();
  2366. }
  2367. }} // namespaces math::tools
  2368. } // namespace boost
  2369. namespace std{
  2370. //
  2371. // numeric_limits [partial] specializations for the types declared in this header:
  2372. //
  2373. template<unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2374. class numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >
  2375. {
  2376. typedef boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> number_type;
  2377. public:
  2378. BOOST_STATIC_CONSTEXPR bool is_specialized = true;
  2379. //
  2380. // min and max values chosen so as to not cause segfaults when calling
  2381. // mpf_get_str on 64-bit Linux builds. Possibly we could use larger
  2382. // exponent values elsewhere.
  2383. //
  2384. static number_type (min)()
  2385. {
  2386. initializer.do_nothing();
  2387. static std::pair<bool, number_type> value;
  2388. if(!value.first)
  2389. {
  2390. value.first = true;
  2391. value.second = 1;
  2392. mpf_div_2exp(value.second.backend().data(), value.second.backend().data(), (std::numeric_limits<mp_exp_t>::max)() / 64 + 1);
  2393. }
  2394. return value.second;
  2395. }
  2396. static number_type (max)()
  2397. {
  2398. initializer.do_nothing();
  2399. static std::pair<bool, number_type> value;
  2400. if(!value.first)
  2401. {
  2402. value.first = true;
  2403. value.second = 1;
  2404. mpf_mul_2exp(value.second.backend().data(), value.second.backend().data(), (std::numeric_limits<mp_exp_t>::max)() / 64 + 1);
  2405. }
  2406. return value.second;
  2407. }
  2408. BOOST_STATIC_CONSTEXPR number_type lowest()
  2409. {
  2410. return -(max)();
  2411. }
  2412. BOOST_STATIC_CONSTEXPR int digits = static_cast<int>((Digits10 * 1000L) / 301L + ((Digits10 * 1000L) % 301L ? 2 : 1));
  2413. BOOST_STATIC_CONSTEXPR int digits10 = Digits10;
  2414. // Have to allow for a possible extra limb inside the gmp data structure:
  2415. BOOST_STATIC_CONSTEXPR int max_digits10 = Digits10 + 3 + ((GMP_LIMB_BITS * 301L) / 1000L);
  2416. BOOST_STATIC_CONSTEXPR bool is_signed = true;
  2417. BOOST_STATIC_CONSTEXPR bool is_integer = false;
  2418. BOOST_STATIC_CONSTEXPR bool is_exact = false;
  2419. BOOST_STATIC_CONSTEXPR int radix = 2;
  2420. static number_type epsilon()
  2421. {
  2422. initializer.do_nothing();
  2423. static std::pair<bool, number_type> value;
  2424. if(!value.first)
  2425. {
  2426. value.first = true;
  2427. value.second = 1;
  2428. mpf_div_2exp(value.second.backend().data(), value.second.backend().data(), std::numeric_limits<number_type>::digits - 1);
  2429. }
  2430. return value.second;
  2431. }
  2432. // What value should this be????
  2433. static number_type round_error()
  2434. {
  2435. // returns epsilon/2
  2436. initializer.do_nothing();
  2437. static std::pair<bool, number_type> value;
  2438. if(!value.first)
  2439. {
  2440. value.first = true;
  2441. value.second = 1;
  2442. }
  2443. return value.second;
  2444. }
  2445. BOOST_STATIC_CONSTEXPR long min_exponent = LONG_MIN;
  2446. BOOST_STATIC_CONSTEXPR long min_exponent10 = (LONG_MIN / 1000) * 301L;
  2447. BOOST_STATIC_CONSTEXPR long max_exponent = LONG_MAX;
  2448. BOOST_STATIC_CONSTEXPR long max_exponent10 = (LONG_MAX / 1000) * 301L;
  2449. BOOST_STATIC_CONSTEXPR bool has_infinity = false;
  2450. BOOST_STATIC_CONSTEXPR bool has_quiet_NaN = false;
  2451. BOOST_STATIC_CONSTEXPR bool has_signaling_NaN = false;
  2452. BOOST_STATIC_CONSTEXPR float_denorm_style has_denorm = denorm_absent;
  2453. BOOST_STATIC_CONSTEXPR bool has_denorm_loss = false;
  2454. BOOST_STATIC_CONSTEXPR number_type infinity() { return number_type(); }
  2455. BOOST_STATIC_CONSTEXPR number_type quiet_NaN() { return number_type(); }
  2456. BOOST_STATIC_CONSTEXPR number_type signaling_NaN() { return number_type(); }
  2457. BOOST_STATIC_CONSTEXPR number_type denorm_min() { return number_type(); }
  2458. BOOST_STATIC_CONSTEXPR bool is_iec559 = false;
  2459. BOOST_STATIC_CONSTEXPR bool is_bounded = true;
  2460. BOOST_STATIC_CONSTEXPR bool is_modulo = false;
  2461. BOOST_STATIC_CONSTEXPR bool traps = true;
  2462. BOOST_STATIC_CONSTEXPR bool tinyness_before = false;
  2463. BOOST_STATIC_CONSTEXPR float_round_style round_style = round_indeterminate;
  2464. private:
  2465. struct data_initializer
  2466. {
  2467. data_initializer()
  2468. {
  2469. std::numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<digits10> > >::epsilon();
  2470. std::numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<digits10> > >::round_error();
  2471. (std::numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<digits10> > >::min)();
  2472. (std::numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<digits10> > >::max)();
  2473. }
  2474. void do_nothing()const{}
  2475. };
  2476. static const data_initializer initializer;
  2477. };
  2478. template<unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2479. const typename numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::data_initializer numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::initializer;
  2480. #ifndef BOOST_NO_INCLASS_MEMBER_INITIALIZATION
  2481. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2482. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::digits;
  2483. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2484. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::digits10;
  2485. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2486. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::max_digits10;
  2487. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2488. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::is_signed;
  2489. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2490. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::is_integer;
  2491. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2492. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::is_exact;
  2493. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2494. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::radix;
  2495. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2496. BOOST_CONSTEXPR_OR_CONST long numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::min_exponent;
  2497. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2498. BOOST_CONSTEXPR_OR_CONST long numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::min_exponent10;
  2499. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2500. BOOST_CONSTEXPR_OR_CONST long numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::max_exponent;
  2501. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2502. BOOST_CONSTEXPR_OR_CONST long numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::max_exponent10;
  2503. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2504. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::has_infinity;
  2505. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2506. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::has_quiet_NaN;
  2507. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2508. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::has_signaling_NaN;
  2509. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2510. BOOST_CONSTEXPR_OR_CONST float_denorm_style numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::has_denorm;
  2511. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2512. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::has_denorm_loss;
  2513. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2514. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::is_iec559;
  2515. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2516. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::is_bounded;
  2517. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2518. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::is_modulo;
  2519. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2520. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::traps;
  2521. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2522. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::tinyness_before;
  2523. template <unsigned Digits10, boost::multiprecision::expression_template_option ExpressionTemplates>
  2524. BOOST_CONSTEXPR_OR_CONST float_round_style numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<Digits10>, ExpressionTemplates> >::round_style;
  2525. #endif
  2526. template<boost::multiprecision::expression_template_option ExpressionTemplates>
  2527. class numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >
  2528. {
  2529. typedef boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> number_type;
  2530. public:
  2531. BOOST_STATIC_CONSTEXPR bool is_specialized = false;
  2532. static number_type (min)() { return number_type(); }
  2533. static number_type (max)() { return number_type(); }
  2534. static number_type lowest() { return number_type(); }
  2535. BOOST_STATIC_CONSTEXPR int digits = 0;
  2536. BOOST_STATIC_CONSTEXPR int digits10 = 0;
  2537. BOOST_STATIC_CONSTEXPR int max_digits10 = 0;
  2538. BOOST_STATIC_CONSTEXPR bool is_signed = false;
  2539. BOOST_STATIC_CONSTEXPR bool is_integer = false;
  2540. BOOST_STATIC_CONSTEXPR bool is_exact = false;
  2541. BOOST_STATIC_CONSTEXPR int radix = 0;
  2542. static number_type epsilon() { return number_type(); }
  2543. static number_type round_error() { return number_type(); }
  2544. BOOST_STATIC_CONSTEXPR int min_exponent = 0;
  2545. BOOST_STATIC_CONSTEXPR int min_exponent10 = 0;
  2546. BOOST_STATIC_CONSTEXPR int max_exponent = 0;
  2547. BOOST_STATIC_CONSTEXPR int max_exponent10 = 0;
  2548. BOOST_STATIC_CONSTEXPR bool has_infinity = false;
  2549. BOOST_STATIC_CONSTEXPR bool has_quiet_NaN = false;
  2550. BOOST_STATIC_CONSTEXPR bool has_signaling_NaN = false;
  2551. BOOST_STATIC_CONSTEXPR float_denorm_style has_denorm = denorm_absent;
  2552. BOOST_STATIC_CONSTEXPR bool has_denorm_loss = false;
  2553. static number_type infinity() { return number_type(); }
  2554. static number_type quiet_NaN() { return number_type(); }
  2555. static number_type signaling_NaN() { return number_type(); }
  2556. static number_type denorm_min() { return number_type(); }
  2557. BOOST_STATIC_CONSTEXPR bool is_iec559 = false;
  2558. BOOST_STATIC_CONSTEXPR bool is_bounded = false;
  2559. BOOST_STATIC_CONSTEXPR bool is_modulo = false;
  2560. BOOST_STATIC_CONSTEXPR bool traps = false;
  2561. BOOST_STATIC_CONSTEXPR bool tinyness_before = false;
  2562. BOOST_STATIC_CONSTEXPR float_round_style round_style = round_indeterminate;
  2563. };
  2564. #ifndef BOOST_NO_INCLASS_MEMBER_INITIALIZATION
  2565. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2566. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::digits;
  2567. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2568. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::digits10;
  2569. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2570. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::max_digits10;
  2571. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2572. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::is_signed;
  2573. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2574. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::is_integer;
  2575. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2576. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::is_exact;
  2577. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2578. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::radix;
  2579. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2580. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::min_exponent;
  2581. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2582. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::min_exponent10;
  2583. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2584. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::max_exponent;
  2585. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2586. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::max_exponent10;
  2587. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2588. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::has_infinity;
  2589. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2590. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::has_quiet_NaN;
  2591. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2592. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::has_signaling_NaN;
  2593. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2594. BOOST_CONSTEXPR_OR_CONST float_denorm_style numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::has_denorm;
  2595. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2596. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::has_denorm_loss;
  2597. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2598. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::is_iec559;
  2599. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2600. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::is_bounded;
  2601. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2602. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::is_modulo;
  2603. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2604. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::traps;
  2605. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2606. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::tinyness_before;
  2607. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2608. BOOST_CONSTEXPR_OR_CONST float_round_style numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_float<0>, ExpressionTemplates> >::round_style;
  2609. #endif
  2610. template<boost::multiprecision::expression_template_option ExpressionTemplates>
  2611. class numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >
  2612. {
  2613. typedef boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> number_type;
  2614. public:
  2615. BOOST_STATIC_CONSTEXPR bool is_specialized = true;
  2616. //
  2617. // Largest and smallest numbers are bounded only by available memory, set
  2618. // to zero:
  2619. //
  2620. static number_type (min)()
  2621. {
  2622. return number_type();
  2623. }
  2624. static number_type (max)()
  2625. {
  2626. return number_type();
  2627. }
  2628. static number_type lowest() { return (min)(); }
  2629. BOOST_STATIC_CONSTEXPR int digits = INT_MAX;
  2630. BOOST_STATIC_CONSTEXPR int digits10 = (INT_MAX / 1000) * 301L;
  2631. BOOST_STATIC_CONSTEXPR int max_digits10 = digits10 + 3;
  2632. BOOST_STATIC_CONSTEXPR bool is_signed = true;
  2633. BOOST_STATIC_CONSTEXPR bool is_integer = true;
  2634. BOOST_STATIC_CONSTEXPR bool is_exact = true;
  2635. BOOST_STATIC_CONSTEXPR int radix = 2;
  2636. static number_type epsilon() { return number_type(); }
  2637. static number_type round_error() { return number_type(); }
  2638. BOOST_STATIC_CONSTEXPR int min_exponent = 0;
  2639. BOOST_STATIC_CONSTEXPR int min_exponent10 = 0;
  2640. BOOST_STATIC_CONSTEXPR int max_exponent = 0;
  2641. BOOST_STATIC_CONSTEXPR int max_exponent10 = 0;
  2642. BOOST_STATIC_CONSTEXPR bool has_infinity = false;
  2643. BOOST_STATIC_CONSTEXPR bool has_quiet_NaN = false;
  2644. BOOST_STATIC_CONSTEXPR bool has_signaling_NaN = false;
  2645. BOOST_STATIC_CONSTEXPR float_denorm_style has_denorm = denorm_absent;
  2646. BOOST_STATIC_CONSTEXPR bool has_denorm_loss = false;
  2647. static number_type infinity() { return number_type(); }
  2648. static number_type quiet_NaN() { return number_type(); }
  2649. static number_type signaling_NaN() { return number_type(); }
  2650. static number_type denorm_min() { return number_type(); }
  2651. BOOST_STATIC_CONSTEXPR bool is_iec559 = false;
  2652. BOOST_STATIC_CONSTEXPR bool is_bounded = false;
  2653. BOOST_STATIC_CONSTEXPR bool is_modulo = false;
  2654. BOOST_STATIC_CONSTEXPR bool traps = false;
  2655. BOOST_STATIC_CONSTEXPR bool tinyness_before = false;
  2656. BOOST_STATIC_CONSTEXPR float_round_style round_style = round_toward_zero;
  2657. };
  2658. #ifndef BOOST_NO_INCLASS_MEMBER_INITIALIZATION
  2659. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2660. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::digits;
  2661. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2662. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::digits10;
  2663. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2664. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::max_digits10;
  2665. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2666. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::is_signed;
  2667. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2668. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::is_integer;
  2669. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2670. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::is_exact;
  2671. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2672. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::radix;
  2673. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2674. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::min_exponent;
  2675. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2676. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::min_exponent10;
  2677. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2678. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::max_exponent;
  2679. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2680. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::max_exponent10;
  2681. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2682. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::has_infinity;
  2683. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2684. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::has_quiet_NaN;
  2685. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2686. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::has_signaling_NaN;
  2687. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2688. BOOST_CONSTEXPR_OR_CONST float_denorm_style numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::has_denorm;
  2689. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2690. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::has_denorm_loss;
  2691. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2692. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::is_iec559;
  2693. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2694. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::is_bounded;
  2695. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2696. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::is_modulo;
  2697. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2698. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::traps;
  2699. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2700. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::tinyness_before;
  2701. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2702. BOOST_CONSTEXPR_OR_CONST float_round_style numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_int, ExpressionTemplates> >::round_style;
  2703. #endif
  2704. template<boost::multiprecision::expression_template_option ExpressionTemplates>
  2705. class numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >
  2706. {
  2707. typedef boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> number_type;
  2708. public:
  2709. BOOST_STATIC_CONSTEXPR bool is_specialized = true;
  2710. //
  2711. // Largest and smallest numbers are bounded only by available memory, set
  2712. // to zero:
  2713. //
  2714. static number_type (min)()
  2715. {
  2716. return number_type();
  2717. }
  2718. static number_type (max)()
  2719. {
  2720. return number_type();
  2721. }
  2722. static number_type lowest() { return (min)(); }
  2723. // Digits are unbounded, use zero for now:
  2724. BOOST_STATIC_CONSTEXPR int digits = INT_MAX;
  2725. BOOST_STATIC_CONSTEXPR int digits10 = (INT_MAX / 1000) * 301L;
  2726. BOOST_STATIC_CONSTEXPR int max_digits10 = digits10 + 3;
  2727. BOOST_STATIC_CONSTEXPR bool is_signed = true;
  2728. BOOST_STATIC_CONSTEXPR bool is_integer = false;
  2729. BOOST_STATIC_CONSTEXPR bool is_exact = true;
  2730. BOOST_STATIC_CONSTEXPR int radix = 2;
  2731. static number_type epsilon() { return number_type(); }
  2732. static number_type round_error() { return number_type(); }
  2733. BOOST_STATIC_CONSTEXPR int min_exponent = 0;
  2734. BOOST_STATIC_CONSTEXPR int min_exponent10 = 0;
  2735. BOOST_STATIC_CONSTEXPR int max_exponent = 0;
  2736. BOOST_STATIC_CONSTEXPR int max_exponent10 = 0;
  2737. BOOST_STATIC_CONSTEXPR bool has_infinity = false;
  2738. BOOST_STATIC_CONSTEXPR bool has_quiet_NaN = false;
  2739. BOOST_STATIC_CONSTEXPR bool has_signaling_NaN = false;
  2740. BOOST_STATIC_CONSTEXPR float_denorm_style has_denorm = denorm_absent;
  2741. BOOST_STATIC_CONSTEXPR bool has_denorm_loss = false;
  2742. static number_type infinity() { return number_type(); }
  2743. static number_type quiet_NaN() { return number_type(); }
  2744. static number_type signaling_NaN() { return number_type(); }
  2745. static number_type denorm_min() { return number_type(); }
  2746. BOOST_STATIC_CONSTEXPR bool is_iec559 = false;
  2747. BOOST_STATIC_CONSTEXPR bool is_bounded = false;
  2748. BOOST_STATIC_CONSTEXPR bool is_modulo = false;
  2749. BOOST_STATIC_CONSTEXPR bool traps = false;
  2750. BOOST_STATIC_CONSTEXPR bool tinyness_before = false;
  2751. BOOST_STATIC_CONSTEXPR float_round_style round_style = round_toward_zero;
  2752. };
  2753. #ifndef BOOST_NO_INCLASS_MEMBER_INITIALIZATION
  2754. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2755. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::digits;
  2756. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2757. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::digits10;
  2758. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2759. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::max_digits10;
  2760. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2761. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::is_signed;
  2762. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2763. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::is_integer;
  2764. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2765. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::is_exact;
  2766. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2767. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::radix;
  2768. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2769. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::min_exponent;
  2770. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2771. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::min_exponent10;
  2772. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2773. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::max_exponent;
  2774. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2775. BOOST_CONSTEXPR_OR_CONST int numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::max_exponent10;
  2776. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2777. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::has_infinity;
  2778. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2779. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::has_quiet_NaN;
  2780. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2781. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::has_signaling_NaN;
  2782. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2783. BOOST_CONSTEXPR_OR_CONST float_denorm_style numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::has_denorm;
  2784. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2785. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::has_denorm_loss;
  2786. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2787. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::is_iec559;
  2788. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2789. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::is_bounded;
  2790. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2791. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::is_modulo;
  2792. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2793. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::traps;
  2794. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2795. BOOST_CONSTEXPR_OR_CONST bool numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::tinyness_before;
  2796. template <boost::multiprecision::expression_template_option ExpressionTemplates>
  2797. BOOST_CONSTEXPR_OR_CONST float_round_style numeric_limits<boost::multiprecision::number<boost::multiprecision::gmp_rational, ExpressionTemplates> >::round_style;
  2798. #endif
  2799. #ifdef BOOST_MSVC
  2800. #pragma warning(pop)
  2801. #endif
  2802. } // namespace std
  2803. #endif