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signature.c revision 1.1.1.10
      1 /*
      2  * Redistribution and use in source and binary forms, with or without
      3  * modification, are permitted provided that: (1) source code
      4  * distributions retain the above copyright notice and this paragraph
      5  * in its entirety, and (2) distributions including binary code include
      6  * the above copyright notice and this paragraph in its entirety in
      7  * the documentation or other materials provided with the distribution.
      8  * THIS SOFTWARE IS PROVIDED ``AS IS'' AND
      9  * WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, WITHOUT
     10  * LIMITATION, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
     11  * FOR A PARTICULAR PURPOSE.
     12  *
     13  * Functions for signature and digest verification.
     14  *
     15  * Original code by Hannes Gredler (hannes (at) gredler.at)
     16  */
     17 
     18 #include <config.h>
     19 
     20 #include "netdissect-stdinc.h"
     21 
     22 #include <string.h>
     23 #include <stdlib.h>
     24 
     25 #include "netdissect.h"
     26 #include "signature.h"
     27 #include "diag-control.h"
     28 
     29 #ifdef HAVE_LIBCRYPTO
     30 #include <openssl/md5.h>
     31 #endif
     32 
     33 const struct tok signature_check_values[] = {
     34     { SIGNATURE_VALID, "valid"},
     35     { SIGNATURE_INVALID, "invalid"},
     36     { CANT_ALLOCATE_COPY, "can't allocate memory"},
     37     { CANT_CHECK_SIGNATURE, "unchecked"},
     38     { 0, NULL }
     39 };
     40 
     41 
     42 #ifdef HAVE_LIBCRYPTO
     43 /*
     44  * Compute a HMAC MD5 sum.
     45  * Taken from rfc2104, Appendix.
     46  */
     47 DIAG_OFF_DEPRECATION
     48 static void
     49 signature_compute_hmac_md5(const uint8_t *text, int text_len, unsigned char *key,
     50                            unsigned int key_len, uint8_t *digest)
     51 {
     52     MD5_CTX context;
     53     unsigned char k_ipad[65];    /* inner padding - key XORd with ipad */
     54     unsigned char k_opad[65];    /* outer padding - key XORd with opad */
     55     unsigned char tk[16];
     56     int i;
     57 
     58     /* if key is longer than 64 bytes reset it to key=MD5(key) */
     59     if (key_len > 64) {
     60 
     61         MD5_CTX tctx;
     62 
     63         MD5_Init(&tctx);
     64         MD5_Update(&tctx, key, key_len);
     65         MD5_Final(tk, &tctx);
     66 
     67         key = tk;
     68         key_len = 16;
     69     }
     70 
     71     /*
     72      * the HMAC_MD5 transform looks like:
     73      *
     74      * MD5(K XOR opad, MD5(K XOR ipad, text))
     75      *
     76      * where K is an n byte key
     77      * ipad is the byte 0x36 repeated 64 times
     78      * opad is the byte 0x5c repeated 64 times
     79      * and text is the data being protected
     80      */
     81 
     82     /* start out by storing key in pads */
     83     memset(k_ipad, 0, sizeof(k_ipad));
     84     memset(k_opad, 0, sizeof(k_opad));
     85     memcpy(k_ipad, key, key_len);
     86     memcpy(k_opad, key, key_len);
     87 
     88     /* XOR key with ipad and opad values */
     89     for (i=0; i<64; i++) {
     90         k_ipad[i] ^= 0x36;
     91         k_opad[i] ^= 0x5c;
     92     }
     93 
     94     /*
     95      * perform inner MD5
     96      */
     97     MD5_Init(&context);                   /* init context for 1st pass */
     98     MD5_Update(&context, k_ipad, 64);     /* start with inner pad */
     99     MD5_Update(&context, text, text_len); /* then text of datagram */
    100     MD5_Final(digest, &context);          /* finish up 1st pass */
    101 
    102     /*
    103      * perform outer MD5
    104      */
    105     MD5_Init(&context);                   /* init context for 2nd pass */
    106     MD5_Update(&context, k_opad, 64);     /* start with outer pad */
    107     MD5_Update(&context, digest, 16);     /* then results of 1st hash */
    108     MD5_Final(digest, &context);          /* finish up 2nd pass */
    109 }
    110 DIAG_ON_DEPRECATION
    111 
    112 /*
    113  * Verify a cryptographic signature of the packet.
    114  * Currently only MD5 is supported.
    115  */
    116 int
    117 signature_verify(netdissect_options *ndo, const u_char *pptr, u_int plen,
    118                  const u_char *sig_ptr, void (*clear_rtn)(void *),
    119                  const void *clear_arg)
    120 {
    121     uint8_t *packet_copy, *sig_copy;
    122     uint8_t sig[16];
    123     unsigned int i;
    124 
    125     if (!ndo->ndo_sigsecret) {
    126         return (CANT_CHECK_SIGNATURE);
    127     }
    128 
    129     /*
    130      * Do we have all the packet data to be checked?
    131      */
    132     if (!ND_TTEST_LEN(pptr, plen)) {
    133         /* No. */
    134         return (CANT_CHECK_SIGNATURE);
    135     }
    136 
    137     /*
    138      * Do we have the entire signature to check?
    139      */
    140     if (!ND_TTEST_LEN(sig_ptr, sizeof(sig))) {
    141         /* No. */
    142         return (CANT_CHECK_SIGNATURE);
    143     }
    144     if (sig_ptr + sizeof(sig) > pptr + plen) {
    145         /* No. */
    146         return (CANT_CHECK_SIGNATURE);
    147     }
    148 
    149     /*
    150      * Make a copy of the packet, so we don't overwrite the original.
    151      */
    152     packet_copy = malloc(plen);
    153     if (packet_copy == NULL) {
    154         return (CANT_ALLOCATE_COPY);
    155     }
    156 
    157     memcpy(packet_copy, pptr, plen);
    158 
    159     /*
    160      * Clear the signature in the copy.
    161      */
    162     sig_copy = packet_copy + (sig_ptr - pptr);
    163     memset(sig_copy, 0, sizeof(sig));
    164 
    165     /*
    166      * Clear anything else that needs to be cleared in the copy.
    167      * Our caller is assumed to have vetted the clear_arg pointer.
    168      */
    169     (*clear_rtn)((void *)(packet_copy + ((const uint8_t *)clear_arg - pptr)));
    170 
    171     /*
    172      * Compute the signature.
    173      */
    174     signature_compute_hmac_md5(packet_copy, plen,
    175                                (unsigned char *)ndo->ndo_sigsecret,
    176                                strlen(ndo->ndo_sigsecret), sig);
    177 
    178     /*
    179      * Free the copy.
    180      */
    181     free(packet_copy);
    182 
    183     /*
    184      * Does the computed signature match the signature in the packet?
    185      */
    186     if (memcmp(sig_ptr, sig, sizeof(sig)) == 0) {
    187         /* Yes. */
    188         return (SIGNATURE_VALID);
    189     } else {
    190         /* No - print the computed signature. */
    191         for (i = 0; i < sizeof(sig); ++i) {
    192             ND_PRINT("%02x", sig[i]);
    193         }
    194 
    195         return (SIGNATURE_INVALID);
    196     }
    197 }
    198 #else
    199 int
    200 signature_verify(netdissect_options *ndo _U_, const u_char *pptr _U_,
    201                  u_int plen _U_, const u_char *sig_ptr _U_,
    202                  void (*clear_rtn)(void *) _U_, const void *clear_arg _U_)
    203 {
    204     return (CANT_CHECK_SIGNATURE);
    205 }
    206 #endif
    207