/* Kernel module to match one of a list of TCP/UDP/SCTP/DCCP ports: ports are in the same place so we can treat them as equal. */ /* (C) 1999-2001 Paul `Rusty' Russell * (C) 2002-2004 Netfilter Core Team * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. */ #include #include #include #include #include #include #include #include #include MODULE_LICENSE("GPL"); MODULE_AUTHOR("Netfilter Core Team "); MODULE_DESCRIPTION("x_tables multiple port match module"); MODULE_ALIAS("ipt_multiport"); MODULE_ALIAS("ip6t_multiport"); #if 0 #define duprintf(format, args...) printk(format , ## args) #else #define duprintf(format, args...) #endif /* Returns 1 if the port is matched by the test, 0 otherwise. */ static inline int ports_match(const u_int16_t *portlist, enum xt_multiport_flags flags, u_int8_t count, u_int16_t src, u_int16_t dst) { unsigned int i; for (i = 0; i < count; i++) { if (flags != XT_MULTIPORT_DESTINATION && portlist[i] == src) return 1; if (flags != XT_MULTIPORT_SOURCE && portlist[i] == dst) return 1; } return 0; } /* Returns 1 if the port is matched by the test, 0 otherwise. */ static inline int ports_match_v1(const struct xt_multiport_v1 *minfo, u_int16_t src, u_int16_t dst) { unsigned int i; u_int16_t s, e; for (i = 0; i < minfo->count; i++) { s = minfo->ports[i]; if (minfo->pflags[i]) { /* range port matching */ e = minfo->ports[++i]; duprintf("src or dst matches with %d-%d?\n", s, e); if (minfo->flags == XT_MULTIPORT_SOURCE && src >= s && src <= e) return 1 ^ minfo->invert; if (minfo->flags == XT_MULTIPORT_DESTINATION && dst >= s && dst <= e) return 1 ^ minfo->invert; if (minfo->flags == XT_MULTIPORT_EITHER && ((dst >= s && dst <= e) || (src >= s && src <= e))) return 1 ^ minfo->invert; } else { /* exact port matching */ duprintf("src or dst matches with %d?\n", s); if (minfo->flags == XT_MULTIPORT_SOURCE && src == s) return 1 ^ minfo->invert; if (minfo->flags == XT_MULTIPORT_DESTINATION && dst == s) return 1 ^ minfo->invert; if (minfo->flags == XT_MULTIPORT_EITHER && (src == s || dst == s)) return 1 ^ minfo->invert; } } return minfo->invert; } static int match(const struct sk_buff *skb, const struct net_device *in, const struct net_device *out, const struct xt_match *match, const void *matchinfo, int offset, unsigned int protoff, int *hotdrop) { __be16 _ports[2], *pptr; const struct xt_multiport *multiinfo = matchinfo; if (offset) return 0; pptr = skb_header_pointer(skb, protoff, sizeof(_ports), _ports); if (pptr == NULL) { /* We've been asked to examine this packet, and we * can't. Hence, no choice but to drop. */ duprintf("xt_multiport: Dropping evil offset=0 tinygram.\n"); *hotdrop = 1; return 0; } return ports_match(multiinfo->ports, multiinfo->flags, multiinfo->count, ntohs(pptr[0]), ntohs(pptr[1])); } static int match_v1(const struct sk_buff *skb, const struct net_device *in, const struct net_device *out, const struct xt_match *match, const void *matchinfo, int offset, unsigned int protoff, int *hotdrop) { __be16 _ports[2], *pptr; const struct xt_multiport_v1 *multiinfo = matchinfo; if (offset) return 0; pptr = skb_header_pointer(skb, protoff, sizeof(_ports), _ports); if (pptr == NULL) { /* We've been asked to examine this packet, and we * can't. Hence, no choice but to drop. */ duprintf("xt_multiport: Dropping evil offset=0 tinygram.\n"); *hotdrop = 1; return 0; } return ports_match_v1(multiinfo, ntohs(pptr[0]), ntohs(pptr[1])); } static inline int check(u_int16_t proto, u_int8_t ip_invflags, u_int8_t match_flags, u_int8_t count) { /* Must specify supported protocol, no unknown flags or bad count */ return (proto == IPPROTO_TCP || proto == IPPROTO_UDP || proto == IPPROTO_SCTP || proto == IPPROTO_DCCP) && !(ip_invflags & XT_INV_PROTO) && (match_flags == XT_MULTIPORT_SOURCE || match_flags == XT_MULTIPORT_DESTINATION || match_flags == XT_MULTIPORT_EITHER) && count <= XT_MULTI_PORTS; } /* Called when user tries to insert an entry of this type. */ static int checkentry(const char *tablename, const void *info, const struct xt_match *match, void *matchinfo, unsigned int hook_mask) { const struct ipt_ip *ip = info; const struct xt_multiport *multiinfo = matchinfo; return check(ip->proto, ip->invflags, multiinfo->flags, multiinfo->count); } static int checkentry_v1(const char *tablename, const void *info, const struct xt_match *match, void *matchinfo, unsigned int hook_mask) { const struct ipt_ip *ip = info; const struct xt_multiport_v1 *multiinfo = matchinfo; return check(ip->proto, ip->invflags, multiinfo->flags, multiinfo->count); } static int checkentry6(const char *tablename, const void *info, const struct xt_match *match, void *matchinfo, unsigned int hook_mask) { const struct ip6t_ip6 *ip = info; const struct xt_multiport *multiinfo = matchinfo; return check(ip->proto, ip->invflags, multiinfo->flags, multiinfo->count); } static int checkentry6_v1(const char *tablename, const void *info, const struct xt_match *match, void *matchinfo, unsigned int hook_mask) { const struct ip6t_ip6 *ip = info; const struct xt_multiport_v1 *multiinfo = matchinfo; return check(ip->proto, ip->invflags, multiinfo->flags, multiinfo->count); } static struct xt_match xt_multiport_match[] = { { .name = "multiport", .family = AF_INET, .revision = 0, .checkentry = checkentry, .match = match, .matchsize = sizeof(struct xt_multiport), .me = THIS_MODULE, }, { .name = "multiport", .family = AF_INET, .revision = 1, .checkentry = checkentry_v1, .match = match_v1, .matchsize = sizeof(struct xt_multiport_v1), .me = THIS_MODULE, }, { .name = "multiport", .family = AF_INET6, .revision = 0, .checkentry = checkentry6, .match = match, .matchsize = sizeof(struct xt_multiport), .me = THIS_MODULE, }, { .name = "multiport", .family = AF_INET6, .revision = 1, .checkentry = checkentry6_v1, .match = match_v1, .matchsize = sizeof(struct xt_multiport_v1), .me = THIS_MODULE, }, }; static int __init xt_multiport_init(void) { return xt_register_matches(xt_multiport_match, ARRAY_SIZE(xt_multiport_match)); } static void __exit xt_multiport_fini(void) { xt_unregister_matches(xt_multiport_match, ARRAY_SIZE(xt_multiport_match)); } module_init(xt_multiport_init); module_exit(xt_multiport_fini);