Mercurial > dropbear
annotate libtomcrypt/src/ciphers/skipjack.c @ 1631:292f79307600
fix some gcc warnings (#73)
* tweak string size
fix gcc8 warnings
```
svr-agentfwd.c: In function 'bindagent':
svr-agentfwd.c:254:53: warning: '%s' directive output may be truncated writing up to 107 bytes into a region of size between 0 and 107 [-Wformat-truncation=]
snprintf(addr.sun_path, sizeof(addr.sun_path), "%s/%s", path, sockfile);
^~ ~~~~~~~~
svr-agentfwd.c:254:2: note: 'snprintf' output between 2 and 216 bytes into a destination of size 108
snprintf(addr.sun_path, sizeof(addr.sun_path), "%s/%s", path, sockfile);
^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
```
* cleanup signed/unsigned comparison
fix gcc8 warnings
```
scp.c: In function 'do_local_cmd':
scp.c:132:17: warning: comparison of integer expressions of different signedness: 'u_int' {aka 'unsigned int'} and 'int' [-Wsign-compare]
for (i = 0; i < a->num; i++)
^
scpmisc.c: In function 'addargs':
scpmisc.c:161:25: warning: comparison of integer expressions of different signedness: 'int' and 'u_int' {aka 'unsigned int'} [-Wsign-compare]
} else if (args->num+2 >= nalloc)
^~
scpmisc.c: In function 'replacearg':
scpmisc.c:183:12: warning: comparison of integer expressions of different signedness: 'u_int' {aka 'unsigned int'} and 'int' [-Wsign-compare]
if (which >= args->num)
^~
scpmisc.c: In function 'freeargs':
scpmisc.c:196:17: warning: comparison of integer expressions of different signedness: 'u_int' {aka 'unsigned int'} and 'int' [-Wsign-compare]
for (i = 0; i < args->num; i++)
^
```
see https://cvsweb.openbsd.org/cgi-bin/cvsweb/src/usr.bin/ssh/misc.h.diff?r1=1.16&r2=1.17
author | François Perrad <francois.perrad@gadz.org> |
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date | Wed, 20 Mar 2019 15:25:15 +0100 |
parents | 6dba84798cd5 |
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rev | line source |
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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 skipjack.c |
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12 Skipjack Implementation 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_SKIPJACK |
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17 |
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18 const struct ltc_cipher_descriptor skipjack_desc = |
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19 { |
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20 "skipjack", |
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21 17, |
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22 10, 10, 8, 32, |
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23 &skipjack_setup, |
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24 &skipjack_ecb_encrypt, |
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25 &skipjack_ecb_decrypt, |
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26 &skipjack_test, |
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27 &skipjack_done, |
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28 &skipjack_keysize, |
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29 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL |
285
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30 }; |
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31 |
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32 static const unsigned char sbox[256] = { |
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33 0xa3,0xd7,0x09,0x83,0xf8,0x48,0xf6,0xf4,0xb3,0x21,0x15,0x78,0x99,0xb1,0xaf,0xf9, |
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34 0xe7,0x2d,0x4d,0x8a,0xce,0x4c,0xca,0x2e,0x52,0x95,0xd9,0x1e,0x4e,0x38,0x44,0x28, |
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35 0x0a,0xdf,0x02,0xa0,0x17,0xf1,0x60,0x68,0x12,0xb7,0x7a,0xc3,0xe9,0xfa,0x3d,0x53, |
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36 0x96,0x84,0x6b,0xba,0xf2,0x63,0x9a,0x19,0x7c,0xae,0xe5,0xf5,0xf7,0x16,0x6a,0xa2, |
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37 0x39,0xb6,0x7b,0x0f,0xc1,0x93,0x81,0x1b,0xee,0xb4,0x1a,0xea,0xd0,0x91,0x2f,0xb8, |
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38 0x55,0xb9,0xda,0x85,0x3f,0x41,0xbf,0xe0,0x5a,0x58,0x80,0x5f,0x66,0x0b,0xd8,0x90, |
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39 0x35,0xd5,0xc0,0xa7,0x33,0x06,0x65,0x69,0x45,0x00,0x94,0x56,0x6d,0x98,0x9b,0x76, |
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40 0x97,0xfc,0xb2,0xc2,0xb0,0xfe,0xdb,0x20,0xe1,0xeb,0xd6,0xe4,0xdd,0x47,0x4a,0x1d, |
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41 0x42,0xed,0x9e,0x6e,0x49,0x3c,0xcd,0x43,0x27,0xd2,0x07,0xd4,0xde,0xc7,0x67,0x18, |
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42 0x89,0xcb,0x30,0x1f,0x8d,0xc6,0x8f,0xaa,0xc8,0x74,0xdc,0xc9,0x5d,0x5c,0x31,0xa4, |
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43 0x70,0x88,0x61,0x2c,0x9f,0x0d,0x2b,0x87,0x50,0x82,0x54,0x64,0x26,0x7d,0x03,0x40, |
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44 0x34,0x4b,0x1c,0x73,0xd1,0xc4,0xfd,0x3b,0xcc,0xfb,0x7f,0xab,0xe6,0x3e,0x5b,0xa5, |
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45 0xad,0x04,0x23,0x9c,0x14,0x51,0x22,0xf0,0x29,0x79,0x71,0x7e,0xff,0x8c,0x0e,0xe2, |
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46 0x0c,0xef,0xbc,0x72,0x75,0x6f,0x37,0xa1,0xec,0xd3,0x8e,0x62,0x8b,0x86,0x10,0xe8, |
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47 0x08,0x77,0x11,0xbe,0x92,0x4f,0x24,0xc5,0x32,0x36,0x9d,0xcf,0xf3,0xa6,0xbb,0xac, |
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48 0x5e,0x6c,0xa9,0x13,0x57,0x25,0xb5,0xe3,0xbd,0xa8,0x3a,0x01,0x05,0x59,0x2a,0x46 |
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49 }; |
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50 |
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51 /* simple x + 1 (mod 10) in one step. */ |
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52 static const int keystep[] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 0 }; |
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53 |
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54 /* simple x - 1 (mod 10) in one step */ |
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55 static const int ikeystep[] = { 9, 0, 1, 2, 3, 4, 5, 6, 7, 8 }; |
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56 |
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57 /** |
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58 Initialize the Skipjack block cipher |
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59 @param key The symmetric key you wish to pass |
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60 @param keylen The key length in bytes |
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61 @param num_rounds The number of rounds desired (0 for default) |
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62 @param skey The key in as scheduled by this function. |
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63 @return CRYPT_OK if successful |
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64 */ |
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65 int skipjack_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey) |
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66 { |
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67 int x; |
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68 |
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69 LTC_ARGCHK(key != NULL); |
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70 LTC_ARGCHK(skey != NULL); |
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71 |
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72 if (keylen != 10) { |
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73 return CRYPT_INVALID_KEYSIZE; |
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74 } |
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75 |
1471
6dba84798cd5
Update to libtomcrypt 1.18.1, merged with Dropbear changes
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76 if (num_rounds != 32 && num_rounds != 0) { |
285
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77 return CRYPT_INVALID_ROUNDS; |
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78 } |
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79 |
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80 /* make sure the key is in range for platforms where CHAR_BIT != 8 */ |
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81 for (x = 0; x < 10; x++) { |
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82 skey->skipjack.key[x] = key[x] & 255; |
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83 } |
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84 |
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85 return CRYPT_OK; |
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86 } |
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87 |
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88 #define RULE_A \ |
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89 tmp = g_func(w1, &kp, skey->skipjack.key); \ |
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90 w1 = tmp ^ w4 ^ x; \ |
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91 w4 = w3; w3 = w2; \ |
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92 w2 = tmp; |
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93 |
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94 #define RULE_B \ |
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95 tmp = g_func(w1, &kp, skey->skipjack.key); \ |
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96 tmp1 = w4; w4 = w3; \ |
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97 w3 = w1 ^ w2 ^ x; \ |
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98 w1 = tmp1; w2 = tmp; |
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99 |
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100 #define RULE_A1 \ |
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101 tmp = w1 ^ w2 ^ x; \ |
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102 w1 = ig_func(w2, &kp, skey->skipjack.key); \ |
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103 w2 = w3; w3 = w4; w4 = tmp; |
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104 |
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105 #define RULE_B1 \ |
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106 tmp = ig_func(w2, &kp, skey->skipjack.key); \ |
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107 w2 = tmp ^ w3 ^ x; \ |
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108 w3 = w4; w4 = w1; w1 = tmp; |
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109 |
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110 static unsigned g_func(unsigned w, int *kp, unsigned char *key) |
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111 { |
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112 unsigned char g1,g2; |
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113 |
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114 g1 = (w >> 8) & 255; g2 = w & 255; |
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115 g1 ^= sbox[g2^key[*kp]]; *kp = keystep[*kp]; |
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116 g2 ^= sbox[g1^key[*kp]]; *kp = keystep[*kp]; |
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117 g1 ^= sbox[g2^key[*kp]]; *kp = keystep[*kp]; |
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118 g2 ^= sbox[g1^key[*kp]]; *kp = keystep[*kp]; |
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119 return ((unsigned)g1<<8)|(unsigned)g2; |
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120 } |
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121 |
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122 static unsigned ig_func(unsigned w, int *kp, unsigned char *key) |
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123 { |
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124 unsigned char g1,g2; |
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125 |
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126 g1 = (w >> 8) & 255; g2 = w & 255; |
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127 *kp = ikeystep[*kp]; g2 ^= sbox[g1^key[*kp]]; |
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128 *kp = ikeystep[*kp]; g1 ^= sbox[g2^key[*kp]]; |
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129 *kp = ikeystep[*kp]; g2 ^= sbox[g1^key[*kp]]; |
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130 *kp = ikeystep[*kp]; g1 ^= sbox[g2^key[*kp]]; |
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131 return ((unsigned)g1<<8)|(unsigned)g2; |
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132 } |
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