Coverage Report

Created: 2025-07-01 06:04

/src/hpn-ssh/poly1305.c
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Source (jump to first uncovered line)
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/* $OpenBSD: poly1305.c,v 1.4 2023/07/17 05:26:38 djm Exp $ */
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/* 
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 * Public Domain poly1305 from Andrew Moon
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 * poly1305-donna-unrolled.c from https://github.com/floodyberry/poly1305-donna
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 */
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#include "includes.h"
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#include <sys/types.h>
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#ifdef HAVE_STDINT_H
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# include <stdint.h>
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#endif
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#include "poly1305.h"
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#ifdef OPENSSL_HAVE_POLY_EVP
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void
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poly1305_auth(EVP_MAC_CTX *poly_ctx, unsigned char out[POLY1305_TAGLEN], const unsigned char *m, size_t inlen, const unsigned char key[POLY1305_KEYLEN]) {
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  size_t poly_out_len;
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  EVP_MAC_init(poly_ctx, (const u_char *)key, POLY1305_KEYLEN, NULL);
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  EVP_MAC_update(poly_ctx, m, inlen);
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  EVP_MAC_final(poly_ctx, out, &poly_out_len, (size_t)POLY1305_TAGLEN);
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}
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#else
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0
#define mul32x32_64(a,b) ((uint64_t)(a) * (b))
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#define U8TO32_LE(p) \
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0
  (((uint32_t)((p)[0])) | \
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0
   ((uint32_t)((p)[1]) <<  8) | \
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0
   ((uint32_t)((p)[2]) << 16) | \
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   ((uint32_t)((p)[3]) << 24))
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#define U32TO8_LE(p, v) \
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0
  do { \
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0
    (p)[0] = (uint8_t)((v)); \
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0
    (p)[1] = (uint8_t)((v) >>  8); \
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0
    (p)[2] = (uint8_t)((v) >> 16); \
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0
    (p)[3] = (uint8_t)((v) >> 24); \
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0
  } while (0)
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void
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0
poly1305_auth(char *unused, unsigned char out[POLY1305_TAGLEN], const unsigned char *m, size_t inlen, const unsigned char key[POLY1305_KEYLEN]) {
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0
  uint32_t t0,t1,t2,t3;
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0
  uint32_t h0,h1,h2,h3,h4;
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0
  uint32_t r0,r1,r2,r3,r4;
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0
  uint32_t s1,s2,s3,s4;
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0
  uint32_t b, nb;
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0
  size_t j;
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0
  uint64_t t[5];
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0
  uint64_t f0,f1,f2,f3;
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0
  uint32_t g0,g1,g2,g3,g4;
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0
  uint64_t c;
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0
  unsigned char mp[16];
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  /* clamp key */
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0
  t0 = U8TO32_LE(key+0);
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0
  t1 = U8TO32_LE(key+4);
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0
  t2 = U8TO32_LE(key+8);
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0
  t3 = U8TO32_LE(key+12);
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  /* precompute multipliers */
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0
  r0 = t0 & 0x3ffffff; t0 >>= 26; t0 |= t1 << 6;
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  r1 = t0 & 0x3ffff03; t1 >>= 20; t1 |= t2 << 12;
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0
  r2 = t1 & 0x3ffc0ff; t2 >>= 14; t2 |= t3 << 18;
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0
  r3 = t2 & 0x3f03fff; t3 >>= 8;
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0
  r4 = t3 & 0x00fffff;
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0
  s1 = r1 * 5;
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0
  s2 = r2 * 5;
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0
  s3 = r3 * 5;
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0
  s4 = r4 * 5;
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  /* init state */
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0
  h0 = 0;
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0
  h1 = 0;
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0
  h2 = 0;
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0
  h3 = 0;
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0
  h4 = 0;
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  /* full blocks */
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0
  if (inlen < 16) goto poly1305_donna_atmost15bytes;
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0
poly1305_donna_16bytes:
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0
  m += 16;
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0
  inlen -= 16;
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0
  t0 = U8TO32_LE(m-16);
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0
  t1 = U8TO32_LE(m-12);
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0
  t2 = U8TO32_LE(m-8);
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0
  t3 = U8TO32_LE(m-4);
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0
  h0 += t0 & 0x3ffffff;
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  h1 += ((((uint64_t)t1 << 32) | t0) >> 26) & 0x3ffffff;
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  h2 += ((((uint64_t)t2 << 32) | t1) >> 20) & 0x3ffffff;
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  h3 += ((((uint64_t)t3 << 32) | t2) >> 14) & 0x3ffffff;
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  h4 += (t3 >> 8) | (1 << 24);
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poly1305_donna_mul:
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  t[0]  = mul32x32_64(h0,r0) + mul32x32_64(h1,s4) + mul32x32_64(h2,s3) + mul32x32_64(h3,s2) + mul32x32_64(h4,s1);
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0
  t[1]  = mul32x32_64(h0,r1) + mul32x32_64(h1,r0) + mul32x32_64(h2,s4) + mul32x32_64(h3,s3) + mul32x32_64(h4,s2);
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0
  t[2]  = mul32x32_64(h0,r2) + mul32x32_64(h1,r1) + mul32x32_64(h2,r0) + mul32x32_64(h3,s4) + mul32x32_64(h4,s3);
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  t[3]  = mul32x32_64(h0,r3) + mul32x32_64(h1,r2) + mul32x32_64(h2,r1) + mul32x32_64(h3,r0) + mul32x32_64(h4,s4);
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  t[4]  = mul32x32_64(h0,r4) + mul32x32_64(h1,r3) + mul32x32_64(h2,r2) + mul32x32_64(h3,r1) + mul32x32_64(h4,r0);
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                  h0 = (uint32_t)t[0] & 0x3ffffff; c =           (t[0] >> 26);
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  t[1] += c;      h1 = (uint32_t)t[1] & 0x3ffffff; b = (uint32_t)(t[1] >> 26);
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0
  t[2] += b;      h2 = (uint32_t)t[2] & 0x3ffffff; b = (uint32_t)(t[2] >> 26);
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0
  t[3] += b;      h3 = (uint32_t)t[3] & 0x3ffffff; b = (uint32_t)(t[3] >> 26);
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0
  t[4] += b;      h4 = (uint32_t)t[4] & 0x3ffffff; b = (uint32_t)(t[4] >> 26);
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0
  h0 += b * 5;
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0
  if (inlen >= 16) goto poly1305_donna_16bytes;
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  /* final bytes */
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0
poly1305_donna_atmost15bytes:
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0
  if (!inlen) goto poly1305_donna_finish;
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0
  for (j = 0; j < inlen; j++) mp[j] = m[j];
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0
  mp[j++] = 1;
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  for (; j < 16; j++) mp[j] = 0;
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0
  inlen = 0;
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0
  t0 = U8TO32_LE(mp+0);
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0
  t1 = U8TO32_LE(mp+4);
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0
  t2 = U8TO32_LE(mp+8);
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0
  t3 = U8TO32_LE(mp+12);
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0
  h0 += t0 & 0x3ffffff;
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0
  h1 += ((((uint64_t)t1 << 32) | t0) >> 26) & 0x3ffffff;
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0
  h2 += ((((uint64_t)t2 << 32) | t1) >> 20) & 0x3ffffff;
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0
  h3 += ((((uint64_t)t3 << 32) | t2) >> 14) & 0x3ffffff;
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0
  h4 += (t3 >> 8);
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0
  goto poly1305_donna_mul;
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0
poly1305_donna_finish:
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0
               b = h0 >> 26; h0 = h0 & 0x3ffffff;
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0
  h1 +=     b; b = h1 >> 26; h1 = h1 & 0x3ffffff;
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  h2 +=     b; b = h2 >> 26; h2 = h2 & 0x3ffffff;
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  h3 +=     b; b = h3 >> 26; h3 = h3 & 0x3ffffff;
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  h4 +=     b; b = h4 >> 26; h4 = h4 & 0x3ffffff;
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0
  h0 += b * 5; b = h0 >> 26; h0 = h0 & 0x3ffffff;
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  h1 +=     b;
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  g0 = h0 + 5; b = g0 >> 26; g0 &= 0x3ffffff;
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  g1 = h1 + b; b = g1 >> 26; g1 &= 0x3ffffff;
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  g2 = h2 + b; b = g2 >> 26; g2 &= 0x3ffffff;
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  g3 = h3 + b; b = g3 >> 26; g3 &= 0x3ffffff;
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  g4 = h4 + b - (1 << 26);
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  b = (g4 >> 31) - 1;
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  nb = ~b;
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  h0 = (h0 & nb) | (g0 & b);
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  h1 = (h1 & nb) | (g1 & b);
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  h2 = (h2 & nb) | (g2 & b);
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  h3 = (h3 & nb) | (g3 & b);
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0
  h4 = (h4 & nb) | (g4 & b);
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0
  f0 = ((h0      ) | (h1 << 26)) + (uint64_t)U8TO32_LE(&key[16]);
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0
  f1 = ((h1 >>  6) | (h2 << 20)) + (uint64_t)U8TO32_LE(&key[20]);
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  f2 = ((h2 >> 12) | (h3 << 14)) + (uint64_t)U8TO32_LE(&key[24]);
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  f3 = ((h3 >> 18) | (h4 <<  8)) + (uint64_t)U8TO32_LE(&key[28]);
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  U32TO8_LE(&out[ 0], f0); f1 += (f0 >> 32);
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  U32TO8_LE(&out[ 4], f1); f2 += (f1 >> 32);
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  U32TO8_LE(&out[ 8], f2); f3 += (f2 >> 32);
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  U32TO8_LE(&out[12], f3);
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0
}
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#endif /* OPENSSL_HAVE_POLY_EVP */