193 lines
6.8 KiB
C
193 lines
6.8 KiB
C
/*
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Copyright (C) 1989 by the Massachusetts Institute of Technology
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Export of this software from the United States of America is assumed
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to require a specific license from the United States Government.
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It is the responsibility of any person or organization contemplating
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export to obtain such a license before exporting.
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WITHIN THAT CONSTRAINT, permission to use, copy, modify, and
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distribute this software and its documentation for any purpose and
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without fee is hereby granted, provided that the above copyright
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notice appear in all copies and that both that copyright notice and
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this permission notice appear in supporting documentation, and that
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the name of M.I.T. not be used in advertising or publicity pertaining
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to distribution of the software without specific, written prior
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permission. M.I.T. makes no representations about the suitability of
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this software for any purpose. It is provided "as is" without express
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or implied warranty.
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*/
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#include "krb_locl.h"
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__RCSID("$KTH-KRB: recvauth.c,v 1.21 2001/08/26 02:52:18 assar Exp $"
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"$NetBSD: recvauth.c,v 1.1.1.4 2002/09/12 12:22:10 joda Exp $");
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/*
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* krb_recvauth() reads (and optionally responds to) a message sent
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* using krb_sendauth(). The "options" argument is a bit-field of
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* selected options (see "sendauth.c" for options description).
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* The only option relevant to krb_recvauth() is KOPT_DO_MUTUAL
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* (mutual authentication requested). The "fd" argument supplies
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* a file descriptor to read from (and write to, if mutual authenti-
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* cation is requested).
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*
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* Part of the received message will be a Kerberos ticket sent by the
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* client; this is read into the "ticket" argument. The "service" and
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* "instance" arguments supply the server's Kerberos name. If the
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* "instance" argument is the string "*", it is treated as a wild card
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* and filled in during the krb_rd_req() call (see read_service_key()).
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*
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* The "faddr" and "laddr" give the sending (client) and receiving
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* (local server) network addresses. ("laddr" may be left NULL unless
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* mutual authentication is requested, in which case it must be set.)
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*
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* The authentication information extracted from the message is returned
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* in "kdata". The "filename" argument indicates the file where the
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* server's key can be found. (It is passed on to krb_rd_req().) If
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* left null, the default "/etc/srvtab" will be used.
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*
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* If mutual authentication is requested, the session key schedule must
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* be computed in order to reply; this schedule is returned in the
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* "schedule" argument. A string containing the application version
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* number from the received message is returned in "version", which
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* should be large enough to hold a KRB_SENDAUTH_VLEN-character string.
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*
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* See krb_sendauth() for the format of the received client message.
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*
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* krb_recvauth() first reads the protocol version string from the
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* given file descriptor. If it doesn't match the current protocol
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* version (KRB_SENDAUTH_VERS), the old-style format is assumed. In
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* that case, the string of characters up to the first space is read
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* and interpreted as the ticket length, then the ticket is read.
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*
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* If the first string did match KRB_SENDAUTH_VERS, krb_recvauth()
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* next reads the application protocol version string. Then the
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* ticket length and ticket itself are read.
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*
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* The ticket is decrypted and checked by the call to krb_rd_req().
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* If no mutual authentication is required, the result of the
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* krb_rd_req() call is retured by this routine. If mutual authenti-
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* cation is required, a message in the following format is returned
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* on "fd":
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*
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* Size Variable Field
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* ---- -------- -----
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*
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* 4 bytes tkt_len length of ticket or -1
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* if error occurred
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*
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* priv_len tmp_buf "private" message created
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* by krb_mk_priv() which
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* contains the incremented
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* checksum sent by the client
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* encrypted in the session
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* key. (This field is not
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* present in case of error.)
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*
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* If all goes well, KSUCCESS is returned; otherwise KFAILURE or some
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* other error code is returned.
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*/
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static int
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send_error_reply(int fd)
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{
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unsigned char tmp[4] = { 255, 255, 255, 255 };
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if(krb_net_write(fd, tmp, sizeof(tmp)) != sizeof(tmp))
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return -1;
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return 0;
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}
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int
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krb_recvauth(int32_t options, /* bit-pattern of options */
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int fd, /* file descr. to read from */
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KTEXT ticket, /* storage for client's ticket */
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char *service, /* service expected */
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char *instance, /* inst expected (may be filled in) */
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struct sockaddr_in *faddr, /* address of foreign host on fd */
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struct sockaddr_in *laddr, /* local address */
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AUTH_DAT *kdata, /* kerberos data (returned) */
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char *filename, /* name of file with service keys */
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struct des_ks_struct *schedule, /* key schedule (return) */
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char *version) /* version string (filled in) */
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{
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char krb_vers[KRB_SENDAUTH_VLEN + 1]; /* + 1 for the null terminator */
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int rem;
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int32_t priv_len;
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u_char tmp_buf[MAX_KTXT_LEN+max(KRB_SENDAUTH_VLEN+1,21)];
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if (!(options & KOPT_IGNORE_PROTOCOL)) {
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/* read the protocol version number */
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if (krb_net_read(fd, krb_vers, KRB_SENDAUTH_VLEN) != KRB_SENDAUTH_VLEN)
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return(errno);
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krb_vers[KRB_SENDAUTH_VLEN] = '\0';
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}
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/* read the application version string */
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if (krb_net_read(fd, version, KRB_SENDAUTH_VLEN) != KRB_SENDAUTH_VLEN)
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return(errno);
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version[KRB_SENDAUTH_VLEN] = '\0';
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/* get the length of the ticket */
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{
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char tmp[4];
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if (krb_net_read(fd, tmp, 4) != 4)
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return -1;
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krb_get_int(tmp, &ticket->length, 4, 0);
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}
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/* sanity check */
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if (ticket->length <= 0 || ticket->length > MAX_KTXT_LEN) {
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if (options & KOPT_DO_MUTUAL) {
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if(send_error_reply(fd))
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return -1;
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return KFAILURE;
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} else
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return KFAILURE; /* XXX there may still be junk on the fd? */
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}
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/* read the ticket */
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if (krb_net_read(fd, ticket->dat, ticket->length) != ticket->length)
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return -1;
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/*
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* now have the ticket. decrypt it to get the authenticated
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* data.
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*/
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rem = krb_rd_req(ticket, service, instance, faddr->sin_addr.s_addr,
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kdata, filename);
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/* if we are doing mutual auth, compose a response */
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if (options & KOPT_DO_MUTUAL) {
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if (rem != KSUCCESS){
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/* the krb_rd_req failed */
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if(send_error_reply(fd))
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return -1;
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return rem;
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}
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/* add one to the (formerly) sealed checksum, and re-seal it
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for return to the client */
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{
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unsigned char cs[4];
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krb_put_int(kdata->checksum + 1, cs, sizeof(cs), 4);
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#ifndef NOENCRYPTION
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des_key_sched(&kdata->session,schedule);
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#endif
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priv_len = krb_mk_priv(cs,
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tmp_buf+4,
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4,
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schedule,
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&kdata->session,
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laddr,
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faddr);
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}
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/* mk_priv will never fail */
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priv_len += krb_put_int(priv_len, tmp_buf, 4, 4);
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if(krb_net_write(fd, tmp_buf, priv_len) != priv_len)
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return -1;
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}
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return rem;
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}
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