c825f470cb
redbear-ci / check (push) Has been cancelled
kf6-kwallet's kwalletbackend hard-requires LibGcrypt 1.5.0 for PBKDF2 key derivation and the GPG-backed wallet format. Vendor both libraries under the full-fork model (committed source/, offline-reproducible) and add libgcrypt to kf6-kwallet's dependencies. Release tarballs ship a pre-generated configure and a config.sub that already recognises the *-redox triple, so no autotools regeneration is needed at cook time. libgpg-error supplies a generic pthread-backed gpgrt_lock_t for Redox via its build script; the test-only redox.patch (tms/times stub) is baked into libgcrypt's source and kept alongside for future version bumps. Promoted from the stale recipes/wip copies (now .disabled).
291 lines
7.3 KiB
C
291 lines
7.3 KiB
C
/* mpih-const-time.c - Constant-time MPI helper functions
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* Copyright (C) 2020, 2025 g10 Code GmbH
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*
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* This file is part of Libgcrypt.
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*
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* Libgcrypt 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
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* published by the Free Software Foundation; either version 2.1 of
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* the License, or (at your option) any later version.
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*
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* Libgcrypt is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this program; if not, see <http://www.gnu.org/licenses/>.
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*/
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#include <config.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include "mpi-internal.h"
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#include "g10lib.h"
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#include "const-time.h"
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#include "longlong.h"
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#define A_LIMB_1 ((mpi_limb_t)1)
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/*
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* Return 1 if X > Y and otherwise return 0.
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*/
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static inline mpi_limb_t
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mpih_ct_limb_greater_than (mpi_limb_t x, mpi_limb_t y)
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{
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mpi_limb_t diff_hi, diff_lo;
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sub_ddmmss (diff_hi, diff_lo, 0, y, 0, x);
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(void)diff_lo;
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return diff_hi >> (BITS_PER_MPI_LIMB - 1);
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}
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/*
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* Return 1 if X < Y and otherwise return 0.
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*/
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static inline mpi_limb_t
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mpih_ct_limb_less_than (mpi_limb_t x, mpi_limb_t y)
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{
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return mpih_ct_limb_greater_than (y, x);
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}
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/*
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* W = U when OP_ENABLED=1
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* otherwise, W keeps old value
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*/
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void
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_gcry_mpih_set_cond (mpi_ptr_t wp, mpi_ptr_t up, mpi_size_t usize,
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unsigned long op_enable)
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{
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/* Note: dual mask with AND/OR used for EM leakage mitigation */
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mpi_limb_t mask1 = ct_limb_gen_mask(op_enable);
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mpi_limb_t mask2 = ct_limb_gen_inv_mask(op_enable);
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mpi_size_t i;
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for (i = 0; i < usize; i++)
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{
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wp[i] = (wp[i] & mask2) | (up[i] & mask1);
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}
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}
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/*
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* W = U + V when OP_ENABLED=1
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* otherwise, W = U
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*/
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mpi_limb_t
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_gcry_mpih_add_n_cond (mpi_ptr_t wp, mpi_ptr_t up, mpi_ptr_t vp,
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mpi_size_t usize, unsigned long op_enable)
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{
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/* Note: dual mask with AND/OR used for EM leakage mitigation */
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mpi_limb_t mask1 = ct_limb_gen_mask(op_enable);
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mpi_limb_t mask2 = ct_limb_gen_inv_mask(op_enable);
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mpi_size_t i;
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mpi_limb_t cy;
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cy = 0;
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for (i = 0; i < usize; i++)
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{
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mpi_limb_t u = up[i];
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mpi_limb_t x = u + vp[i];
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mpi_limb_t cy1 = mpih_ct_limb_less_than(x, u);
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mpi_limb_t cy2;
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x = x + cy;
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cy2 = mpih_ct_limb_less_than(x, cy);
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cy = cy1 | cy2;
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wp[i] = (u & mask2) | (x & mask1);
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}
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return cy & mask1;
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}
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/*
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* W = U - V when OP_ENABLED=1
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* otherwise, W = U
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*/
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mpi_limb_t
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_gcry_mpih_sub_n_cond (mpi_ptr_t wp, mpi_ptr_t up, mpi_ptr_t vp,
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mpi_size_t usize, unsigned long op_enable)
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{
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/* Note: dual mask with AND/OR used for EM leakage mitigation */
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mpi_limb_t mask1 = ct_limb_gen_mask(op_enable);
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mpi_limb_t mask2 = ct_limb_gen_inv_mask(op_enable);
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mpi_size_t i;
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mpi_limb_t cy;
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cy = 0;
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for (i = 0; i < usize; i++)
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{
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mpi_limb_t u = up[i];
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mpi_limb_t x = u - vp[i];
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mpi_limb_t cy1 = mpih_ct_limb_greater_than(x, u);
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mpi_limb_t cy2;
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cy2 = mpih_ct_limb_less_than(x, cy);
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x = x - cy;
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cy = cy1 | cy2;
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wp[i] = (u & mask2) | (x & mask1);
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}
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return cy & mask1;
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}
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/*
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* Swap value of U and V when OP_ENABLED=1
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* otherwise, no change
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*/
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void
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_gcry_mpih_swap_cond (mpi_ptr_t up, mpi_ptr_t vp, mpi_size_t usize,
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unsigned long op_enable)
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{
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/* Note: dual mask with AND/OR used for EM leakage mitigation */
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mpi_limb_t mask1 = ct_limb_gen_mask(op_enable);
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mpi_limb_t mask2 = ct_limb_gen_inv_mask(op_enable);
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mpi_size_t i;
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for (i = 0; i < usize; i++)
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{
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mpi_limb_t u = up[i];
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mpi_limb_t v = vp[i];
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up[i] = (u & mask2) | (v & mask1);
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vp[i] = (u & mask1) | (v & mask2);
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}
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}
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/*
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* W = -U when OP_ENABLED=1
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* otherwise, W = U
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*/
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void
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_gcry_mpih_abs_cond (mpi_ptr_t wp, mpi_ptr_t up, mpi_size_t usize,
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unsigned long op_enable)
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{
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/* Note: dual mask with AND/OR used for EM leakage mitigation */
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mpi_limb_t mask1 = ct_limb_gen_mask(op_enable);
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mpi_limb_t mask2 = ct_limb_gen_inv_mask(op_enable);
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mpi_limb_t cy = op_enable;
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mpi_size_t i;
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for (i = 0; i < usize; i++)
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{
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mpi_limb_t u = up[i];
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mpi_limb_t x = ~u + cy;
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cy = mpih_ct_limb_less_than(x, ~u);
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wp[i] = (u & mask2) | (x & mask1);
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}
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}
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/*
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* Allocating memory for W,
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* compute W = V % U, then return W
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*/
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mpi_ptr_t
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_gcry_mpih_mod_lli (mpi_ptr_t vp, mpi_size_t vsize,
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mpi_ptr_t up, mpi_size_t usize)
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{
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int secure;
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mpi_ptr_t rp;
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mpi_size_t i;
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secure = _gcry_is_secure (vp);
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rp = mpi_alloc_limb_space (usize, secure);
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MPN_ZERO (rp, usize);
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for (i = 0; i < vsize * BITS_PER_MPI_LIMB; i++)
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{
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unsigned int j = vsize * BITS_PER_MPI_LIMB - 1 - i;
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unsigned int limbno = j / BITS_PER_MPI_LIMB;
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unsigned int bitno = j % BITS_PER_MPI_LIMB;
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mpi_limb_t limb = vp[limbno];
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unsigned int the_bit = (limb >> bitno) & 1;
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mpi_limb_t underflow;
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mpi_limb_t overflow;
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overflow = _gcry_mpih_lshift (rp, rp, usize, 1);
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rp[0] |= the_bit;
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underflow = _gcry_mpih_sub_n (rp, rp, up, usize);
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mpih_add_n_cond (rp, rp, up, usize, overflow ^ underflow);
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}
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return rp;
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}
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int
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_gcry_mpih_cmp_ui (mpi_ptr_t up, mpi_size_t usize, unsigned long v)
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{
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unsigned long is_all_zero = ct_ulong_gen_mask(1);
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int cmp0;
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mpi_size_t i;
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cmp0 = -mpih_ct_limb_less_than (up[0], v);
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cmp0 |= mpih_ct_limb_greater_than (up[0], v);
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for (i = 1; i < usize; i++)
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is_all_zero &= ct_ulong_gen_mask(mpih_limb_is_zero (up[i]));
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return (int)((cmp0 & is_all_zero) | (~is_all_zero & 1));
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}
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/* Do same calculation as _gcry_mpih_cmp does, Least Leak Intended.
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* Return 1 if U > V, 0 if they are equal, and -1 if U < V. */
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int
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_gcry_mpih_cmp_lli (mpi_ptr_t up, mpi_ptr_t vp, mpi_size_t size)
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{
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mpi_size_t i;
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mpi_limb_t res_gt = 0;
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mpi_limb_t res_lt = 0;
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for (i = 0; i < size ; i++)
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{
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mpi_limb_t gt, lt, eq, neq;
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gt = mpih_ct_limb_greater_than (up[i], vp[i]);
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lt = mpih_ct_limb_less_than (up[i], vp[i]);
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neq = ct_limb_gen_mask (gt | lt);
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eq = ct_limb_gen_inv_mask (gt | lt);
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res_gt = (eq & res_gt) | (neq & gt);
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res_lt = (eq & res_lt) | (neq & lt);
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}
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return (int)(res_gt - res_lt); /* return 0 if U==V, 1 if U>V, -1 if U<V */
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}
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/*
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* Lookup an MPI value from TABLE at IDX, and put into RP.
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* The size of the MPI value is N limbs.
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* TABLE has NENTS entries.
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*
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* Note: This is an implementation which accesses all the entries in
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* the table, so that it can mitigate cache timing attacks. For some
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* architectures, there may be possible optimization:
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*
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* - Access an entry only, with an instruction like
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* __mm_stream_load_si128 (it makes sense when table is larger and
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* read-only, and no timing difference)
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*
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*/
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void
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_gcry_mpih_lookup_lli (mpi_ptr_t rp, const mpi_limb_t *table,
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mpi_size_t n, mpi_size_t nents, mpi_size_t idx)
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{
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mpi_size_t i, k;
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const mpi_limb_t *tp = table;
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for (k = 0; k < nents; k++)
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{
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unsigned long idx_neq_k = ct_is_not_zero (idx ^ k);
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for (i = 0; i < n; i++)
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rp[i] = ct_limb_select (rp[i], tp[i], idx_neq_k);
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tp += n;
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}
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}
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