libsec: implement SPKI fingerprinting for okCertificate()
Instead of only using a hash over the whole certificate for white/black-listing, now we can also use a hash over the Subject Public Key Info (SPKI) field of the certificate which contians the public key algorithm and the public key itself. This allows certificates to be renewed independendtly of the public key. X509dump() now prints the public key thumbprint in addition to the certificate thumbprint. tlsclient will print the certificate when run with -D flag. okCertificate() will print the public key thumbprint in its error string when no match has been found.
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6 changed files with 52 additions and 4 deletions
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@ -382,7 +382,9 @@ int pkcs1unpadbuf(uchar *buf, int len, mpint *modulus, int blocktype);
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int asn1encodeRSApub(RSApub *pk, uchar *buf, int len);
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int asn1encodedigest(DigestState* (*fun)(uchar*, ulong, uchar*, DigestState*),
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uchar *digest, uchar *buf, int len);
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int X509digestSPKI(uchar *, int, DigestState* (*)(uchar*, ulong, uchar*, DigestState*), uchar *);
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/*
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* elgamal
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*/
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@ -375,6 +375,7 @@ int asn1encodeRSApub(RSApub *pk, uchar *buf, int len);
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int asn1encodedigest(DigestState* (*fun)(uchar*, ulong, uchar*, DigestState*),
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uchar *digest, uchar *buf, int len);
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int X509digestSPKI(uchar *, int, DigestState* (*)(uchar*, ulong, uchar*, DigestState*), uchar *);
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/*
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* elgamal
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@ -134,9 +134,8 @@ flag
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(and, optionally, the
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.B -x
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flag)
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is given, the remote server must present a key
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whose SHA1 hash is listed in
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the file
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is given, the remote server must present a public key
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whose SHA1 or SHA256 hash is listed in the file
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.I trustedkeys
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but not in the file
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.IR excludedkeys .
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@ -49,6 +49,8 @@ main(int argc, char **argv)
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Thumbprint *thumb;
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AuthInfo *ai = nil;
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fmtinstall('B', mpfmt);
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fmtinstall('[', encodefmt);
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fmtinstall('H', encodefmt);
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ARGBEGIN{
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@ -122,6 +124,9 @@ main(int argc, char **argv)
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if(fd < 0)
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sysfatal("tlsclient: %r");
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if(debug)
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X509dump(conn->cert, conn->certlen);
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if(thumb){
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if(!okCertificate(conn->cert, conn->certlen, thumb))
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sysfatal("cert for %s not recognized: %r", servername ? servername : addr);
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@ -66,6 +66,11 @@ okCertificate(uchar *cert, int len, Thumbprint *table)
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if(okThumbprint(hash, SHA2_256dlen, table))
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return 1;
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if(X509digestSPKI(cert, len, sha2_256, hash) < 0)
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return 0;
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if(okThumbprint(hash, SHA2_256dlen, table))
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return 1;
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len = enc64(thumb, sizeof(thumb), hash, SHA2_256dlen);
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while(len > 0 && thumb[len-1] == '=')
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len--;
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@ -2897,6 +2897,32 @@ errret:
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return cert;
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}
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static void
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digestSPKI(int alg, uchar *pubkey, int npubkey, DigestState* (*fun)(uchar*, ulong, uchar*, DigestState*), uchar *digest)
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{
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Bytes *b = nil;
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Elem e = mkseq(mkel(mkalg(alg), mkel(mkbits(pubkey, npubkey), nil)));
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encode(e, &b);
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freevalfields(&e.val);
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(*fun)(b->data, b->len, digest, nil);
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freebytes(b);
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}
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int
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X509digestSPKI(uchar *cert, int ncert, DigestState* (*fun)(uchar*, ulong, uchar*, DigestState*), uchar *digest)
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{
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CertX509 *c;
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c = decode_cert(cert, ncert);
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if(c == nil){
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werrstr("cannot decode cert");
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return -1;
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}
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digestSPKI(c->publickey_alg, c->publickey->data, c->publickey->len, fun, digest);
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freecert(c);
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return 0;
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}
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static char*
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tagdump(Tag tag)
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{
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@ -3047,6 +3073,16 @@ X509dump(uchar *cert, int ncert)
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ecdomfree(&ecdom);
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break;
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}
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digestSPKI(c->publickey_alg, c->publickey->data, c->publickey->len, sha2_256, digest);
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print("publickey_thumbprint sha256=%.*[\n", SHA2_256dlen, digest);
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sha2_256(cert, ncert, digest, nil);
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print("cert_thumbprint sha256=%.*[\n", SHA2_256dlen, digest);
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sha1(cert, ncert, digest, nil);
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print("cert_thumbprint sha1=%.*H\n", SHA1dlen, digest);
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freecert(c);
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print("end X509dump\n");
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}
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