ff4ff35918
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187 lines
6.1 KiB
C
187 lines
6.1 KiB
C
/* mpfr_exp -- exponential of a floating-point number
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Copyright 1999-2025 Free Software Foundation, Inc.
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Contributed by the Pascaline and Caramba projects, INRIA.
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This file is part of the GNU MPFR Library.
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The GNU MPFR Library is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation; either version 3 of the License, or (at your
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option) any later version.
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The GNU MPFR Library is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public
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License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with the GNU MPFR Library; see the file COPYING.LESSER.
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If not, see <https://www.gnu.org/licenses/>. */
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#include "mpfr-impl.h"
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/* Cache for emin and emax bounds.
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Contrary to other caches, it uses a fixed size for the mantissa,
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so there is no dynamic allocation, and no need to free them. */
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static MPFR_THREAD_ATTR mpfr_exp_t previous_emin;
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static MPFR_THREAD_ATTR mp_limb_t bound_emin_limb[(32 - 1) / GMP_NUMB_BITS + 1];
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static MPFR_THREAD_ATTR mpfr_t bound_emin;
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static MPFR_THREAD_ATTR mpfr_exp_t previous_emax;
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static MPFR_THREAD_ATTR mp_limb_t bound_emax_limb[(32 - 1) / GMP_NUMB_BITS + 1];
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static MPFR_THREAD_ATTR mpfr_t bound_emax;
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int
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mpfr_exp (mpfr_ptr y, mpfr_srcptr x, mpfr_rnd_t rnd_mode)
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{
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mpfr_exp_t expx;
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mpfr_prec_t precy;
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int inexact;
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MPFR_SAVE_EXPO_DECL (expo);
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MPFR_LOG_FUNC
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(("x[%Pd]=%.*Rg rnd=%d", mpfr_get_prec (x), mpfr_log_prec, x, rnd_mode),
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("y[%Pd]=%.*Rg inexact=%d",
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mpfr_get_prec (y), mpfr_log_prec, y, inexact));
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if (MPFR_UNLIKELY( MPFR_IS_SINGULAR(x) ))
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{
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if (MPFR_IS_NAN(x))
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{
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MPFR_SET_NAN(y);
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MPFR_RET_NAN;
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}
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else if (MPFR_IS_INF(x))
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{
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if (MPFR_IS_POS(x))
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MPFR_SET_INF(y);
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else
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MPFR_SET_ZERO(y);
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MPFR_SET_POS(y);
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MPFR_RET(0);
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}
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else
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{
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MPFR_ASSERTD(MPFR_IS_ZERO(x));
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return mpfr_set_ui (y, 1, rnd_mode);
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}
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}
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/* First, let's detect most overflow and underflow cases. */
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/* emax bound is cached. Check if the value in cache is ok */
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if (MPFR_UNLIKELY (mpfr_get_emax() != previous_emax))
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{
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/* Recompute the emax bound */
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mp_limb_t e_limb[MPFR_EXP_LIMB_SIZE];
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mpfr_t e;
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/* We extend the exponent range and save the flags. */
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MPFR_SAVE_EXPO_MARK (expo);
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MPFR_TMP_INIT1(e_limb, e, sizeof (mpfr_exp_t) * CHAR_BIT);
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MPFR_TMP_INIT1(bound_emax_limb, bound_emax, 32);
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inexact = mpfr_set_exp_t (e, expo.saved_emax, MPFR_RNDN);
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MPFR_ASSERTD (inexact == 0);
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mpfr_mul (bound_emax, expo.saved_emax < 0 ?
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__gmpfr_const_log2_RNDD : __gmpfr_const_log2_RNDU,
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e, MPFR_RNDU);
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previous_emax = expo.saved_emax;
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MPFR_SAVE_EXPO_FREE (expo);
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}
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/* mpfr_cmp works even in reduced emin,emax range */
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if (MPFR_UNLIKELY (mpfr_cmp (x, bound_emax) >= 0))
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{
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/* x > log(2^emax), thus exp(x) > 2^emax */
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return mpfr_overflow (y, rnd_mode, 1);
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}
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/* emin bound is cached. Check if the value in cache is ok */
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if (MPFR_UNLIKELY (mpfr_get_emin() != previous_emin))
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{
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mp_limb_t e_limb[MPFR_EXP_LIMB_SIZE];
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mpfr_t e;
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/* We extend the exponent range and save the flags. */
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MPFR_SAVE_EXPO_MARK (expo);
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/* avoid using a full limb since arithmetic might be slower */
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MPFR_TMP_INIT1(e_limb, e, sizeof (mpfr_exp_t) * CHAR_BIT - 1);
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MPFR_TMP_INIT1(bound_emin_limb, bound_emin, 32);
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inexact = mpfr_set_exp_t (e, expo.saved_emin, MPFR_RNDN);
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MPFR_ASSERTD (inexact == 0);
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inexact = mpfr_sub_ui (e, e, 2, MPFR_RNDN);
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MPFR_ASSERTD (inexact == 0);
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mpfr_const_log2 (bound_emin, expo.saved_emin < 0 ? MPFR_RNDU : MPFR_RNDD);
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mpfr_mul (bound_emin, bound_emin, e, MPFR_RNDD);
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previous_emin = expo.saved_emin;
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MPFR_SAVE_EXPO_FREE (expo);
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}
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if (MPFR_UNLIKELY (mpfr_cmp (x, bound_emin) <= 0))
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{
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/* x < log(2^(emin - 2)), thus exp(x) < 2^(emin - 2) */
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return mpfr_underflow (y, rnd_mode == MPFR_RNDN ? MPFR_RNDZ : rnd_mode,
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1);
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}
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expx = MPFR_GET_EXP (x);
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precy = MPFR_PREC (y);
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/* if x < 2^(-precy), then exp(x) gives 1 +/- 1 ulp(1) */
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if (MPFR_UNLIKELY (expx < 0 && (mpfr_uexp_t) (-expx) > precy))
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{
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mpfr_exp_t emin = __gmpfr_emin;
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mpfr_exp_t emax = __gmpfr_emax;
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int signx = MPFR_SIGN (x);
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/* Make sure that the exponent range is large enough:
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* [0,2] is sufficient in all precisions.
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*/
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__gmpfr_emin = 0;
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__gmpfr_emax = 2;
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MPFR_SET_POS (y);
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if (MPFR_IS_NEG_SIGN (signx) && (rnd_mode == MPFR_RNDD ||
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rnd_mode == MPFR_RNDZ))
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{
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mpfr_setmax (y, 0); /* y = 1 - epsilon */
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inexact = -1;
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}
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else
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{
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mpfr_setmin (y, 1); /* y = 1 */
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if (MPFR_IS_POS_SIGN (signx) && (rnd_mode == MPFR_RNDU ||
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rnd_mode == MPFR_RNDA))
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{
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/* Warning: should work for precision 1 bit too! */
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mpfr_nextabove (y);
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inexact = 1;
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}
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else
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inexact = -MPFR_FROM_SIGN_TO_INT(signx);
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}
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__gmpfr_emin = emin;
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__gmpfr_emax = emax;
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}
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else /* General case */
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{
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if (MPFR_UNLIKELY (precy >= MPFR_EXP_THRESHOLD))
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/* mpfr_exp_3 saves the exponent range and flags itself, otherwise
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the flag changes in mpfr_exp_3 are lost */
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inexact = mpfr_exp_3 (y, x, rnd_mode); /* O(M(n) log(n)^2) */
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else
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{
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MPFR_SAVE_EXPO_MARK (expo);
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inexact = mpfr_exp_2 (y, x, rnd_mode); /* O(n^(1/3) M(n)) */
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MPFR_SAVE_EXPO_UPDATE_FLAGS (expo, __gmpfr_flags);
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MPFR_SAVE_EXPO_FREE (expo);
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}
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}
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return mpfr_check_range (y, inexact, rnd_mode);
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}
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