Coverage Report

Created: 2026-08-14 07:10

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/nettle/poly1305-internal.c
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/* poly1305-internal.c
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   Copyright: 2012-2013 Andrew M. (floodyberry)
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   Copyright: 2013 Nikos Mavrogiannopoulos
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   Copyright: 2013 Niels Möller
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   This file is part of GNU Nettle.
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   GNU Nettle is free software: you can redistribute it and/or
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   modify it under the terms of either:
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     * the GNU Lesser General Public License as published by the Free
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       Software Foundation; either version 3 of the License, or (at your
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       option) any later version.
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   or
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     * the GNU General Public License as published by the Free
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       Software Foundation; either version 2 of the License, or (at your
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       option) any later version.
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   or both in parallel, as here.
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   GNU Nettle 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 GNU
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   General Public License for more details.
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   You should have received copies of the GNU General Public License and
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   the GNU Lesser General Public License along with this program.  If
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   not, see http://www.gnu.org/licenses/.
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*/
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/* Based on https://github.com/floodyberry/poly1305-donna.
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 * Modified for nettle by Nikos Mavrogiannopoulos and Niels Möller.
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 * Original license notice:
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 *
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 * Permission is hereby granted, free of charge, to any person obtaining a
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 * copy of this software and associated documentation files (the
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 * "Software"), to deal in the Software without restriction, including
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 * without limitation the rights to use, copy, modify, merge, publish,
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 * distribute, sublicense, and/or sell copies of the Software, and to
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 * permit persons to whom the Software is furnished to do so, subject to
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 * the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included
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 * in all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
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 * IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
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 * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
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 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
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 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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 */
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#if HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <assert.h>
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#include <string.h>
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#include "poly1305.h"
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#include "poly1305-internal.h"
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#include "macros.h"
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#define mul32x32_64(a,b) ((uint64_t)(a) * (b))
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#define r0 r.r32[0]
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1.74k
#define r1 r.r32[1]
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1.74k
#define r2 r.r32[2]
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1.74k
#define r3 r.r32[3]
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1.74k
#define r4 r.r32[4]
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874
#define s1 r.r32[5]
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#define s2 s32[0]
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#define s3 s32[1]
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#define s4 s32[2]
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#define h0 h.h32[0]
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37.0k
#define h1 h.h32[1]
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#define h2 h.h32[2]
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#define h3 h.h32[3]
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#define h4 hh
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/* For fat builds */
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#if HAVE_NATIVE_poly1305_set_key
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void
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_nettle_poly1305_set_key_c(struct poly1305_ctx *ctx,
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         const uint8_t key[16]);
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# define _nettle_poly1305_set_key _nettle_poly1305_set_key_c
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#endif
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#if HAVE_NATIVE_poly1305_block
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void
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_nettle_poly1305_block_c(struct poly1305_ctx *ctx, const uint8_t *m,
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         unsigned t4);
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# define _nettle_poly1305_block _nettle_poly1305_block_c
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#endif
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#if HAVE_NATIVE_poly1305_digest
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void
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_nettle_poly1305_digest_c(struct poly1305_ctx *ctx,
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         union nettle_block16 *s);
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# define _nettle_poly1305_digest _nettle_poly1305_digest_c
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#endif
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void
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_nettle_poly1305_set_key(struct poly1305_ctx *ctx, const uint8_t key[16])
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{
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  uint32_t t0,t1,t2,t3;
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  t0 = LE_READ_UINT32(key);
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  t1 = LE_READ_UINT32(key+4);
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  t2 = LE_READ_UINT32(key+8);
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  t3 = LE_READ_UINT32(key+12);
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  ctx->r0 = t0 & 0x3ffffff; t0 >>= 26; t0 |= t1 << 6;
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  ctx->r1 = t0 & 0x3ffff03; t1 >>= 20; t1 |= t2 << 12;
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  ctx->r2 = t1 & 0x3ffc0ff; t2 >>= 14; t2 |= t3 << 18;
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  ctx->r3 = t2 & 0x3f03fff; t3 >>= 8;
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  ctx->r4 = t3 & 0x00fffff;
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  ctx->s1 = ctx->r1 * 5;
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  ctx->s2 = ctx->r2 * 5;
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  ctx->s3 = ctx->r3 * 5;
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  ctx->s4 = ctx->r4 * 5;
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  ctx->h0 = 0;
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  ctx->h1 = 0;
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  ctx->h2 = 0;
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  ctx->h3 = 0;
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  ctx->h4 = 0;
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}
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void
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_nettle_poly1305_block (struct poly1305_ctx *ctx, const uint8_t *m, unsigned t4)
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{
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  uint32_t t0,t1,t2,t3;
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  uint32_t b;
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  uint64_t t[5];
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  uint64_t c;
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  t0 = LE_READ_UINT32(m);
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  t1 = LE_READ_UINT32(m+4);
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  t2 = LE_READ_UINT32(m+8);
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  t3 = LE_READ_UINT32(m+12);
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  ctx->h0 += t0 & 0x3ffffff;
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  ctx->h1 += ((((uint64_t)t1 << 32) | t0) >> 26) & 0x3ffffff;
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  ctx->h2 += ((((uint64_t)t2 << 32) | t1) >> 20) & 0x3ffffff;
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  ctx->h3 += ((((uint64_t)t3 << 32) | t2) >> 14) & 0x3ffffff;
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  ctx->h4 += (t3 >> 8) | ((uint32_t) t4 << 24);
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  /* poly1305_donna_mul: */
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  t[0]  = mul32x32_64(ctx->h0,ctx->r0) + mul32x32_64(ctx->h1,ctx->s4) + mul32x32_64(ctx->h2,ctx->s3) + mul32x32_64(ctx->h3,ctx->s2) + mul32x32_64(ctx->h4,ctx->s1);
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  t[1]  = mul32x32_64(ctx->h0,ctx->r1) + mul32x32_64(ctx->h1,ctx->r0) + mul32x32_64(ctx->h2,ctx->s4) + mul32x32_64(ctx->h3,ctx->s3) + mul32x32_64(ctx->h4,ctx->s2);
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  t[2]  = mul32x32_64(ctx->h0,ctx->r2) + mul32x32_64(ctx->h1,ctx->r1) + mul32x32_64(ctx->h2,ctx->r0) + mul32x32_64(ctx->h3,ctx->s4) + mul32x32_64(ctx->h4,ctx->s3);
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  t[3]  = mul32x32_64(ctx->h0,ctx->r3) + mul32x32_64(ctx->h1,ctx->r2) + mul32x32_64(ctx->h2,ctx->r1) + mul32x32_64(ctx->h3,ctx->r0) + mul32x32_64(ctx->h4,ctx->s4);
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  t[4]  = mul32x32_64(ctx->h0,ctx->r4) + mul32x32_64(ctx->h1,ctx->r3) + mul32x32_64(ctx->h2,ctx->r2) + mul32x32_64(ctx->h3,ctx->r1) + mul32x32_64(ctx->h4,ctx->r0);
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  ctx->h0 = (uint32_t)t[0] & 0x3ffffff; c =           (t[0] >> 26);
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  t[1] += c;      ctx->h1 = (uint32_t)t[1] & 0x3ffffff; b = (uint32_t)(t[1] >> 26);
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  t[2] += b;      ctx->h2 = (uint32_t)t[2] & 0x3ffffff; b = (uint32_t)(t[2] >> 26);
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  t[3] += b;      ctx->h3 = (uint32_t)t[3] & 0x3ffffff; b = (uint32_t)(t[3] >> 26);
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  t[4] += b;      ctx->h4 = (uint32_t)t[4] & 0x3ffffff; b = (uint32_t)(t[4] >> 26);
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  ctx->h0 += b * 5;
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}
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/* Adds digest to the nonce */
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void
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_nettle_poly1305_digest (struct poly1305_ctx *ctx, union nettle_block16 *s)
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{
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  uint32_t b, nb;
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  uint64_t f0,f1,f2,f3;
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  uint32_t g0,g1,g2,g3,g4;
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  b = ctx->h0 >> 26; ctx->h0 = ctx->h0 & 0x3ffffff;
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  ctx->h1 +=     b; b = ctx->h1 >> 26; ctx->h1 = ctx->h1 & 0x3ffffff;
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  ctx->h2 +=     b; b = ctx->h2 >> 26; ctx->h2 = ctx->h2 & 0x3ffffff;
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  ctx->h3 +=     b; b = ctx->h3 >> 26; ctx->h3 = ctx->h3 & 0x3ffffff;
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  ctx->h4 +=     b; b = ctx->h4 >> 26; ctx->h4 = ctx->h4 & 0x3ffffff;
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  ctx->h0 += b * 5; b = ctx->h0 >> 26; ctx->h0 = ctx->h0 & 0x3ffffff;
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  ctx->h1 +=     b;
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  g0 = ctx->h0 + 5; b = g0 >> 26; g0 &= 0x3ffffff;
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  g1 = ctx->h1 + b; b = g1 >> 26; g1 &= 0x3ffffff;
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  g2 = ctx->h2 + b; b = g2 >> 26; g2 &= 0x3ffffff;
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  g3 = ctx->h3 + b; b = g3 >> 26; g3 &= 0x3ffffff;
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  g4 = ctx->h4 + b - (1 << 26);
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  b = (g4 >> 31) - 1;
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  nb = ~b;
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  ctx->h0 = (ctx->h0 & nb) | (g0 & b);
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  ctx->h1 = (ctx->h1 & nb) | (g1 & b);
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  ctx->h2 = (ctx->h2 & nb) | (g2 & b);
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  ctx->h3 = (ctx->h3 & nb) | (g3 & b);
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  ctx->h4 = (ctx->h4 & nb) | (g4 & b);
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  /* FIXME: Take advantage of s being aligned as an unsigned long. */
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  f0 = ((ctx->h0    )|(ctx->h1<<26)) + (uint64_t)LE_READ_UINT32(s->b);
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  f1 = ((ctx->h1>> 6)|(ctx->h2<<20)) + (uint64_t)LE_READ_UINT32(s->b+4);
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  f2 = ((ctx->h2>>12)|(ctx->h3<<14)) + (uint64_t)LE_READ_UINT32(s->b+8);
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  f3 = ((ctx->h3>>18)|(ctx->h4<< 8)) + (uint64_t)LE_READ_UINT32(s->b+12);
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  LE_WRITE_UINT32(s->b, f0);
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  f1 += (f0 >> 32);
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  LE_WRITE_UINT32(s->b+4, f1);
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  f2 += (f1 >> 32);
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  LE_WRITE_UINT32(s->b+8, f2);
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  f3 += (f2 >> 32);
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  LE_WRITE_UINT32(s->b+12, f3);
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  ctx->h0 = 0;
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  ctx->h1 = 0;
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  ctx->h2 = 0;
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  ctx->h3 = 0;
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  ctx->h4 = 0;
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}