Coverage Report

Created: 2026-05-30 06:16

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/dropbear/libtommath/bn_s_mp_sqr.c
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#include "tommath_private.h"
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#ifdef BN_S_MP_SQR_C
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/* LibTomMath, multiple-precision integer library -- Tom St Denis */
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/* SPDX-License-Identifier: Unlicense */
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/* low level squaring, b = a*a, HAC pp.596-597, Algorithm 14.16 */
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mp_err s_mp_sqr(const mp_int *a, mp_int *b)
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{
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   mp_int   t;
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   int      ix, iy, pa;
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   mp_err   err;
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   mp_word  r;
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   mp_digit u, tmpx, *tmpt;
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   pa = a->used;
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   if ((err = mp_init_size(&t, (2 * pa) + 1)) != MP_OKAY) {
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0
      return err;
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0
   }
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   /* default used is maximum possible size */
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266
   t.used = (2 * pa) + 1;
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35.5k
   for (ix = 0; ix < pa; ix++) {
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      /* first calculate the digit at 2*ix */
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      /* calculate double precision result */
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35.2k
      r = (mp_word)t.dp[2*ix] +
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35.2k
          ((mp_word)a->dp[ix] * (mp_word)a->dp[ix]);
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      /* store lower part in result */
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35.2k
      t.dp[ix+ix] = (mp_digit)(r & (mp_word)MP_MASK);
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      /* get the carry */
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35.2k
      u           = (mp_digit)(r >> (mp_word)MP_DIGIT_BIT);
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      /* left hand side of A[ix] * A[iy] */
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35.2k
      tmpx        = a->dp[ix];
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      /* alias for where to store the results */
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35.2k
      tmpt        = t.dp + ((2 * ix) + 1);
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2.35M
      for (iy = ix + 1; iy < pa; iy++) {
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         /* first calculate the product */
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2.31M
         r       = (mp_word)tmpx * (mp_word)a->dp[iy];
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         /* now calculate the double precision result, note we use
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          * addition instead of *2 since it's easier to optimize
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          */
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2.31M
         r       = (mp_word)*tmpt + r + r + (mp_word)u;
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         /* store lower part */
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2.31M
         *tmpt++ = (mp_digit)(r & (mp_word)MP_MASK);
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         /* get carry */
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2.31M
         u       = (mp_digit)(r >> (mp_word)MP_DIGIT_BIT);
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2.31M
      }
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      /* propagate upwards */
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65.8k
      while (u != 0uL) {
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30.6k
         r       = (mp_word)*tmpt + (mp_word)u;
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30.6k
         *tmpt++ = (mp_digit)(r & (mp_word)MP_MASK);
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30.6k
         u       = (mp_digit)(r >> (mp_word)MP_DIGIT_BIT);
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30.6k
      }
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35.2k
   }
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   mp_clamp(&t);
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   mp_exch(&t, b);
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   mp_clear(&t);
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   return MP_OKAY;
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}
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#endif