Mercurial > dropbear
annotate libtommath/bn_mp_exptmod.c @ 1888:a7b66ea18632
Don't set pubkey_info directly in checkpubkey_line
This makes it safe to use from fuzzer-pubkey without leaking
the value since the cleanup isn't called
author | Matt Johnston <matt@ucc.asn.au> |
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date | Wed, 16 Mar 2022 18:35:23 +0800 |
parents | 1051e4eea25a |
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1 #include "tommath_private.h" |
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2 #ifdef BN_MP_EXPTMOD_C |
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3 /* LibTomMath, multiple-precision integer library -- Tom St Denis */ |
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4 /* SPDX-License-Identifier: Unlicense */ |
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5 |
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6 /* this is a shell function that calls either the normal or Montgomery |
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7 * exptmod functions. Originally the call to the montgomery code was |
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8 * embedded in the normal function but that wasted alot of stack space |
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9 * for nothing (since 99% of the time the Montgomery code would be called) |
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10 */ |
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11 mp_err mp_exptmod(const mp_int *G, const mp_int *X, const mp_int *P, mp_int *Y) |
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12 { |
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13 int dr; |
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14 |
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15 /* modulus P must be positive */ |
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16 if (P->sign == MP_NEG) { |
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17 return MP_VAL; |
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18 } |
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19 |
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20 /* if exponent X is negative we have to recurse */ |
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21 if (X->sign == MP_NEG) { |
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22 mp_int tmpG, tmpX; |
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23 mp_err err; |
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24 |
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25 if (!MP_HAS(MP_INVMOD)) { |
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26 return MP_VAL; |
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27 } |
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28 |
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29 if ((err = mp_init_multi(&tmpG, &tmpX, NULL)) != MP_OKAY) { |
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30 return err; |
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31 } |
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32 |
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33 /* first compute 1/G mod P */ |
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34 if ((err = mp_invmod(G, P, &tmpG)) != MP_OKAY) { |
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35 goto LBL_ERR; |
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36 } |
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37 |
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38 /* now get |X| */ |
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39 if ((err = mp_abs(X, &tmpX)) != MP_OKAY) { |
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40 goto LBL_ERR; |
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41 } |
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42 |
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43 /* and now compute (1/G)**|X| instead of G**X [X < 0] */ |
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44 err = mp_exptmod(&tmpG, &tmpX, P, Y); |
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45 LBL_ERR: |
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46 mp_clear_multi(&tmpG, &tmpX, NULL); |
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47 return err; |
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48 } |
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49 |
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50 /* modified diminished radix reduction */ |
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51 if (MP_HAS(MP_REDUCE_IS_2K_L) && MP_HAS(MP_REDUCE_2K_L) && MP_HAS(S_MP_EXPTMOD) && |
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52 (mp_reduce_is_2k_l(P) == MP_YES)) { |
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53 return s_mp_exptmod(G, X, P, Y, 1); |
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54 } |
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55 |
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56 /* is it a DR modulus? default to no */ |
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57 dr = (MP_HAS(MP_DR_IS_MODULUS) && (mp_dr_is_modulus(P) == MP_YES)) ? 1 : 0; |
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58 |
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59 /* if not, is it a unrestricted DR modulus? */ |
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60 if (MP_HAS(MP_REDUCE_IS_2K) && (dr == 0)) { |
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61 dr = (mp_reduce_is_2k(P) == MP_YES) ? 2 : 0; |
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62 } |
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63 |
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64 /* if the modulus is odd or dr != 0 use the montgomery method */ |
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65 if (MP_HAS(S_MP_EXPTMOD_FAST) && (MP_IS_ODD(P) || (dr != 0))) { |
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66 return s_mp_exptmod_fast(G, X, P, Y, dr); |
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67 } else if (MP_HAS(S_MP_EXPTMOD)) { |
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68 /* otherwise use the generic Barrett reduction technique */ |
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69 return s_mp_exptmod(G, X, P, Y, 0); |
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70 } else { |
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71 /* no exptmod for evens */ |
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72 return MP_VAL; |
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73 } |
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74 } |
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75 |
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76 #endif |