Mercurial > dropbear
annotate libtomcrypt/src/encauth/gcm/gcm_process.c @ 1861:2b3a8026a6ce
Add re-exec for server
This allows ASLR to re-randomize the address
space for every connection, preventing some
vulnerabilities from being exploitable by
repeated probing.
Overhead (memory and time) is yet to be confirmed.
At present this is only enabled on Linux. Other BSD platforms
with fexecve() would probably also work though have not been tested.
author | Matt Johnston <matt@ucc.asn.au> |
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date | Sun, 30 Jan 2022 10:14:56 +0800 |
parents | 6dba84798cd5 |
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1 /* LibTomCrypt, modular cryptographic library -- Tom St Denis |
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2 * |
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3 * LibTomCrypt is a library that provides various cryptographic |
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4 * algorithms in a highly modular and flexible manner. |
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5 * |
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6 * The library is free for all purposes without any express |
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7 * guarantee it works. |
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8 */ |
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9 |
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10 /** |
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11 @file gcm_process.c |
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12 GCM implementation, process message data, by Tom St Denis |
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13 */ |
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14 #include "tomcrypt.h" |
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15 |
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16 #ifdef LTC_GCM_MODE |
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17 |
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18 /** |
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19 Process plaintext/ciphertext through GCM |
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20 @param gcm The GCM state |
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21 @param pt The plaintext |
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22 @param ptlen The plaintext length (ciphertext length is the same) |
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23 @param ct The ciphertext |
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24 @param direction Encrypt or Decrypt mode (GCM_ENCRYPT or GCM_DECRYPT) |
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25 @return CRYPT_OK on success |
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26 */ |
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27 int gcm_process(gcm_state *gcm, |
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28 unsigned char *pt, unsigned long ptlen, |
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29 unsigned char *ct, |
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30 int direction) |
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31 { |
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32 unsigned long x; |
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33 int y, err; |
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34 unsigned char b; |
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35 |
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36 LTC_ARGCHK(gcm != NULL); |
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37 if (ptlen > 0) { |
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38 LTC_ARGCHK(pt != NULL); |
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39 LTC_ARGCHK(ct != NULL); |
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40 } |
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41 |
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42 if (gcm->buflen > 16 || gcm->buflen < 0) { |
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43 return CRYPT_INVALID_ARG; |
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44 } |
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45 |
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46 if ((err = cipher_is_valid(gcm->cipher)) != CRYPT_OK) { |
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47 return err; |
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48 } |
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49 |
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50 /* 0xFFFFFFFE0 = ((2^39)-256)/8 */ |
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51 if (gcm->pttotlen / 8 + (ulong64)gcm->buflen + (ulong64)ptlen >= CONST64(0xFFFFFFFE0)) { |
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52 return CRYPT_INVALID_ARG; |
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53 } |
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54 |
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55 if (gcm->mode == LTC_GCM_MODE_IV) { |
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56 /* let's process the IV */ |
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57 if ((err = gcm_add_aad(gcm, NULL, 0)) != CRYPT_OK) return err; |
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58 } |
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59 |
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60 /* in AAD mode? */ |
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61 if (gcm->mode == LTC_GCM_MODE_AAD) { |
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62 /* let's process the AAD */ |
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63 if (gcm->buflen) { |
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64 gcm->totlen += gcm->buflen * CONST64(8); |
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65 gcm_mult_h(gcm, gcm->X); |
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66 } |
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67 |
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68 /* increment counter */ |
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69 for (y = 15; y >= 12; y--) { |
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70 if (++gcm->Y[y] & 255) { break; } |
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71 } |
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72 /* encrypt the counter */ |
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73 if ((err = cipher_descriptor[gcm->cipher].ecb_encrypt(gcm->Y, gcm->buf, &gcm->K)) != CRYPT_OK) { |
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74 return err; |
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75 } |
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76 |
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77 gcm->buflen = 0; |
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78 gcm->mode = LTC_GCM_MODE_TEXT; |
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79 } |
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80 |
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81 if (gcm->mode != LTC_GCM_MODE_TEXT) { |
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82 return CRYPT_INVALID_ARG; |
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83 } |
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84 |
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85 x = 0; |
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86 #ifdef LTC_FAST |
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87 if (gcm->buflen == 0) { |
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88 if (direction == GCM_ENCRYPT) { |
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89 for (x = 0; x < (ptlen & ~15); x += 16) { |
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90 /* ctr encrypt */ |
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91 for (y = 0; y < 16; y += sizeof(LTC_FAST_TYPE)) { |
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92 *(LTC_FAST_TYPE_PTR_CAST(&ct[x + y])) = *(LTC_FAST_TYPE_PTR_CAST(&pt[x+y])) ^ *(LTC_FAST_TYPE_PTR_CAST(&gcm->buf[y])); |
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93 *(LTC_FAST_TYPE_PTR_CAST(&gcm->X[y])) ^= *(LTC_FAST_TYPE_PTR_CAST(&ct[x+y])); |
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94 } |
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95 /* GMAC it */ |
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96 gcm->pttotlen += 128; |
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97 gcm_mult_h(gcm, gcm->X); |
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98 /* increment counter */ |
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99 for (y = 15; y >= 12; y--) { |
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100 if (++gcm->Y[y] & 255) { break; } |
285
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101 } |
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102 if ((err = cipher_descriptor[gcm->cipher].ecb_encrypt(gcm->Y, gcm->buf, &gcm->K)) != CRYPT_OK) { |
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103 return err; |
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104 } |
285
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105 } |
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106 } else { |
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107 for (x = 0; x < (ptlen & ~15); x += 16) { |
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108 /* ctr encrypt */ |
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109 for (y = 0; y < 16; y += sizeof(LTC_FAST_TYPE)) { |
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110 *(LTC_FAST_TYPE_PTR_CAST(&gcm->X[y])) ^= *(LTC_FAST_TYPE_PTR_CAST(&ct[x+y])); |
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111 *(LTC_FAST_TYPE_PTR_CAST(&pt[x + y])) = *(LTC_FAST_TYPE_PTR_CAST(&ct[x+y])) ^ *(LTC_FAST_TYPE_PTR_CAST(&gcm->buf[y])); |
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112 } |
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113 /* GMAC it */ |
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114 gcm->pttotlen += 128; |
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115 gcm_mult_h(gcm, gcm->X); |
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116 /* increment counter */ |
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117 for (y = 15; y >= 12; y--) { |
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118 if (++gcm->Y[y] & 255) { break; } |
285
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119 } |
382
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120 if ((err = cipher_descriptor[gcm->cipher].ecb_encrypt(gcm->Y, gcm->buf, &gcm->K)) != CRYPT_OK) { |
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121 return err; |
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122 } |
285
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123 } |
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124 } |
285
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125 } |
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126 #endif |
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127 |
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128 /* process text */ |
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129 for (; x < ptlen; x++) { |
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130 if (gcm->buflen == 16) { |
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131 gcm->pttotlen += 128; |
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132 gcm_mult_h(gcm, gcm->X); |
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133 |
285
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134 /* increment counter */ |
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135 for (y = 15; y >= 12; y--) { |
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136 if (++gcm->Y[y] & 255) { break; } |
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137 } |
382
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138 if ((err = cipher_descriptor[gcm->cipher].ecb_encrypt(gcm->Y, gcm->buf, &gcm->K)) != CRYPT_OK) { |
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139 return err; |
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140 } |
285
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141 gcm->buflen = 0; |
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142 } |
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143 |
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144 if (direction == GCM_ENCRYPT) { |
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145 b = ct[x] = pt[x] ^ gcm->buf[gcm->buflen]; |
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146 } else { |
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147 b = ct[x]; |
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148 pt[x] = ct[x] ^ gcm->buf[gcm->buflen]; |
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149 } |
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150 gcm->X[gcm->buflen++] ^= b; |
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151 } |
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152 |
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153 return CRYPT_OK; |
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154 } |
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155 |
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156 #endif |
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157 |
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158 /* ref: $Format:%D$ */ |
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159 /* git commit: $Format:%H$ */ |
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160 /* commit time: $Format:%ai$ */ |