5 * Copyright (C) 2007-2010 Intel Corporation. All rights reserved.
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
31 #include <sys/errno.h>
32 #include <sys/socket.h>
35 #include <linux/netfilter_ipv4/ip_tables.h>
40 static const char *hooknames[] = {
41 [NF_IP_PRE_ROUTING] = "PREROUTING",
42 [NF_IP_LOCAL_IN] = "INPUT",
43 [NF_IP_FORWARD] = "FORWARD",
44 [NF_IP_LOCAL_OUT] = "OUTPUT",
45 [NF_IP_POST_ROUTING] = "POSTROUTING",
48 #define LABEL_ACCEPT "ACCEPT"
49 #define LABEL_DROP "DROP"
50 #define LABEL_QUEUE "QUEUE"
51 #define LABEL_RETURN "RETURN"
53 /* fn returns 0 to continue iteration */
54 #define _XT_ENTRY_ITERATE_CONTINUE(type, entries, size, n, fn, args...) \
61 for (__i = 0, __n = 0; __i < (size); \
62 __i += __entry->next_offset, __n++) { \
63 __entry = (void *)(entries) + __i; \
67 __ret = fn(__entry, ## args); \
74 /* fn returns 0 to continue iteration */
75 #define _XT_ENTRY_ITERATE(type, entries, size, fn, args...) \
76 _XT_ENTRY_ITERATE_CONTINUE(type, entries, size, 0, fn, args)
78 #define ENTRY_ITERATE(entries, size, fn, args...) \
79 _XT_ENTRY_ITERATE(struct ipt_entry, entries, size, fn, ## args)
81 #define MIN_ALIGN (__alignof__(struct ipt_entry))
83 #define ALIGN(s) (((s) + ((MIN_ALIGN)-1)) & ~((MIN_ALIGN)-1))
85 struct ipt_error_target {
86 struct xt_entry_target t;
87 char error[IPT_TABLE_MAXNAMELEN];
90 struct connman_iptables_entry {
94 struct ipt_entry *entry;
97 struct connman_iptables {
100 struct ipt_getinfo *info;
101 struct ipt_get_entries *blob_entries;
103 unsigned int num_entries;
104 unsigned int old_entries;
107 unsigned int underflow[NF_INET_NUMHOOKS];
108 unsigned int hook_entry[NF_INET_NUMHOOKS];
113 static GHashTable *table_hash = NULL;
115 static struct ipt_entry *get_entry(struct connman_iptables *table,
118 return (struct ipt_entry *)((char *)table->blob_entries->entrytable +
122 static int is_hook_entry(struct connman_iptables *table,
123 struct ipt_entry *entry)
127 for (i = 0; i < NF_INET_NUMHOOKS; i++) {
128 if ((table->info->valid_hooks & (1 << i))
129 && get_entry(table, table->info->hook_entry[i]) == entry)
136 static unsigned long entry_to_offset(struct connman_iptables *table,
137 struct ipt_entry *entry)
139 return (void *)entry - (void *)table->blob_entries->entrytable;
142 static int target_to_verdict(char *target_name)
144 if (!strcmp(target_name, LABEL_ACCEPT))
145 return -NF_ACCEPT - 1;
147 if (!strcmp(target_name, LABEL_DROP))
150 if (!strcmp(target_name, LABEL_QUEUE))
151 return -NF_QUEUE - 1;
153 if (!strcmp(target_name, LABEL_RETURN))
159 static gboolean is_builtin_target(char *target_name)
161 if (!strcmp(target_name, LABEL_ACCEPT) ||
162 !strcmp(target_name, LABEL_DROP) ||
163 !strcmp(target_name, LABEL_QUEUE) ||
164 !strcmp(target_name, LABEL_RETURN))
170 static gboolean is_jump(struct connman_iptables_entry *e)
172 struct xt_entry_target *target;
174 target = ipt_get_target(e->entry);
176 if (!strcmp(target->u.user.name, IPT_STANDARD_TARGET)) {
177 struct xt_standard_target *t;
179 t = (struct xt_standard_target *)target;
181 switch (t->verdict) {
197 static gboolean is_chain(struct connman_iptables *table,
198 struct connman_iptables_entry *e)
200 struct ipt_entry *entry;
201 struct xt_entry_target *target;
207 target = ipt_get_target(entry);
208 if (!strcmp(target->u.user.name, IPT_ERROR_TARGET))
214 static GList *find_chain_head(struct connman_iptables *table,
218 struct connman_iptables_entry *head;
219 struct ipt_entry *entry;
220 struct xt_entry_target *target;
223 for (list = table->entries; list; list = list->next) {
228 builtin = head->builtin;
229 if (builtin >= 0 && !strcmp(hooknames[builtin], chain_name))
232 /* User defined chain */
233 target = ipt_get_target(entry);
234 if (!strcmp(target->u.user.name, IPT_ERROR_TARGET) &&
235 !strcmp((char *)target->data, chain_name))
242 static GList *find_chain_tail(struct connman_iptables *table,
245 GList *chain_head, *list;
246 struct connman_iptables_entry *head, *tail;
247 struct ipt_entry *entry;
248 struct xt_entry_target *target;
251 /* First we look for the head */
252 for (list = table->entries; list; list = list->next) {
257 builtin = head->builtin;
258 if (builtin >= 0 && !strcmp(hooknames[builtin], chain_name))
261 /* User defined chain */
262 target = ipt_get_target(entry);
263 if (!strcmp(target->u.user.name, IPT_ERROR_TARGET) &&
264 !strcmp((char *)target->data, chain_name))
273 /* Then we look for the next chain */
274 for (list = chain_head->next; list; list = list->next) {
278 if (is_chain(table, tail))
282 /* Nothing found, we return the table end */
283 return g_list_last(table->entries);
287 static void update_offsets(struct connman_iptables *table)
290 struct connman_iptables_entry *entry, *prev_entry;
292 for (list = table->entries; list; list = list->next) {
295 if (list == table->entries) {
302 prev_entry = prev->data;
304 entry->offset = prev_entry->offset +
305 prev_entry->entry->next_offset;
309 static int iptables_add_entry(struct connman_iptables *table,
310 struct ipt_entry *entry, GList *before,
314 struct connman_iptables_entry *e, *tmp, *entry_before;
315 struct xt_standard_target *t;
320 e = g_try_malloc0(sizeof(struct connman_iptables_entry));
325 e->builtin = builtin;
327 table->entries = g_list_insert_before(table->entries, before, e);
328 table->num_entries++;
329 table->size += entry->next_offset;
331 if (before == NULL) {
332 e->offset = table->size - entry->next_offset;
337 entry_before = before->data;
340 * We've just insterted a new entry. All references before it
341 * should be bumped accordingly.
343 for (list = table->entries; list != before; list = list->next) {
349 t = (struct xt_standard_target *)ipt_get_target(tmp->entry);
351 if (t->verdict >= entry_before->offset)
352 t->verdict += entry->next_offset;
355 update_offsets(table);
360 static int iptables_add_chain(struct connman_iptables *table,
364 struct ipt_entry *entry_head;
365 struct ipt_entry *entry_return;
366 struct ipt_error_target *error;
367 struct ipt_standard_target *standard;
368 u_int16_t entry_head_size, entry_return_size;
370 last = g_list_last(table->entries);
373 * An empty chain is composed of:
374 * - A head entry, with no match and an error target.
375 * The error target data is the chain name.
376 * - A tail entry, with no match and a standard target.
377 * The standard target verdict is XT_RETURN (return to the
382 entry_head_size = sizeof(struct ipt_entry) +
383 sizeof(struct ipt_error_target);
384 entry_head = g_try_malloc0(entry_head_size);
385 if (entry_head == NULL)
388 memset(entry_head, 0, entry_head_size);
390 entry_head->target_offset = sizeof(struct ipt_entry);
391 entry_head->next_offset = entry_head_size;
393 error = (struct ipt_error_target *) entry_head->elems;
394 strcpy(error->t.u.user.name, IPT_ERROR_TARGET);
395 error->t.u.user.target_size = ALIGN(sizeof(struct ipt_error_target));
396 strcpy(error->error, name);
398 if (iptables_add_entry(table, entry_head, last, -1) < 0)
402 entry_return_size = sizeof(struct ipt_entry) +
403 sizeof(struct ipt_standard_target);
404 entry_return = g_try_malloc0(entry_return_size);
405 if (entry_return == NULL)
408 memset(entry_return, 0, entry_return_size);
410 entry_return->target_offset = sizeof(struct ipt_entry);
411 entry_return->next_offset = entry_return_size;
413 standard = (struct ipt_standard_target *) entry_return->elems;
414 standard->target.u.user.target_size =
415 ALIGN(sizeof(struct ipt_standard_target));
416 standard->verdict = XT_RETURN;
418 if (iptables_add_entry(table, entry_return, last, -1) < 0)
425 g_free(entry_return);
430 static struct ipt_entry *
431 new_rule(struct connman_iptables *table, struct ipt_ip *ip,
432 char *target_name, struct xtables_target *xt_t,
433 char *match_name, struct xtables_match *xt_m)
435 struct ipt_entry *new_entry;
436 size_t match_size, target_size;
437 int is_builtin = is_builtin_target(target_name);
440 match_size = xt_m->m->u.match_size;
445 target_size = ALIGN(xt_t->t->u.target_size);
447 target_size = ALIGN(sizeof(struct xt_standard_target));
449 new_entry = g_try_malloc0(sizeof(struct ipt_entry) + target_size +
451 if (new_entry == NULL)
454 memcpy(&new_entry->ip, ip, sizeof(struct ipt_ip));
456 new_entry->target_offset = sizeof(struct ipt_entry) + match_size;
457 new_entry->next_offset = sizeof(struct ipt_entry) + target_size +
460 struct xt_entry_match *entry_match;
462 entry_match = (struct xt_entry_match *)new_entry->elems;
463 memcpy(entry_match, xt_m->m, match_size);
467 struct xt_entry_target *entry_target;
470 struct xt_standard_target *target;
472 target = (struct xt_standard_target *)(xt_t->t);
473 strcpy(target->target.u.user.name, IPT_STANDARD_TARGET);
474 target->verdict = target_to_verdict(target_name);
477 entry_target = ipt_get_target(new_entry);
478 memcpy(entry_target, xt_t->t, target_size);
480 struct connman_iptables_entry *target_rule;
481 struct xt_standard_target *target;
485 * This is a user defined target, i.e. a chain jump.
486 * We search for the chain head, and the target verdict
487 * is the first rule's offset on this chain.
488 * The offset is from the beginning of the table.
491 chain_head = find_chain_head(table, target_name);
492 if (chain_head == NULL || chain_head->next == NULL) {
497 target_rule = chain_head->next->data;
499 target = (struct xt_standard_target *)ipt_get_target(new_entry);
500 strcpy(target->target.u.user.name, IPT_STANDARD_TARGET);
501 target->target.u.user.target_size = target_size;
502 target->verdict = target_rule->offset;
508 static void update_hooks(struct connman_iptables *table, GList *chain_head,
509 struct ipt_entry *entry)
512 struct connman_iptables_entry *head, *e;
515 if (chain_head == NULL)
518 head = chain_head->data;
520 builtin = head->builtin;
524 table->underflow[builtin] += entry->next_offset;
526 for (list = chain_head->next; list; list = list->next) {
529 builtin = e->builtin;
533 table->hook_entry[builtin] += entry->next_offset;
534 table->underflow[builtin] += entry->next_offset;
539 iptables_add_rule(struct connman_iptables *table,
540 struct ipt_ip *ip, char *chain_name,
541 char *target_name, struct xtables_target *xt_t,
542 char *match_name, struct xtables_match *xt_m)
544 GList *chain_tail, *chain_head;
545 struct ipt_entry *new_entry;
546 struct connman_iptables_entry *head;
551 chain_head = find_chain_head(table, chain_name);
552 if (chain_head == NULL)
555 chain_tail = find_chain_tail(table, chain_name);
556 if (chain_tail == NULL)
559 new_entry = new_rule(table, ip,
562 if (new_entry == NULL)
565 update_hooks(table, chain_head, new_entry);
568 * If the chain is builtin, and does not have any rule,
569 * then the one that we're inserting is becoming the head
570 * and thus needs the builtin flag.
572 head = chain_head->data;
573 if (head->builtin < 0)
575 else if (chain_head == chain_tail->prev) {
577 builtin = head->builtin;
580 return iptables_add_entry(table, new_entry, chain_tail->prev, builtin);
583 static struct ipt_replace *
584 iptables_blob(struct connman_iptables *table)
586 struct ipt_replace *r;
588 struct connman_iptables_entry *e;
589 unsigned char *entry_index;
591 r = g_try_malloc0(sizeof(struct ipt_replace) + table->size);
595 memset(r, 0, sizeof(*r) + table->size);
597 r->counters = g_try_malloc0(sizeof(struct xt_counters)
598 * table->num_entries);
599 if (r->counters == NULL) {
604 strcpy(r->name, table->info->name);
605 r->num_entries = table->num_entries;
606 r->size = table->size;
608 r->num_counters = table->old_entries;
609 r->valid_hooks = table->info->valid_hooks;
611 memcpy(r->hook_entry, table->hook_entry, sizeof(table->hook_entry));
612 memcpy(r->underflow, table->underflow, sizeof(table->underflow));
614 entry_index = (unsigned char *)r->entries;
615 for (list = table->entries; list; list = list->next) {
618 memcpy(entry_index, e->entry, e->entry->next_offset);
619 entry_index += e->entry->next_offset;
625 static void dump_ip(struct ipt_entry *entry)
627 struct ipt_ip *ip = &entry->ip;
628 char ip_string[INET6_ADDRSTRLEN];
629 char ip_mask[INET6_ADDRSTRLEN];
631 if (strlen(ip->iniface))
632 connman_info("\tin %s", ip->iniface);
634 if (strlen(ip->outiface))
635 connman_info("\tout %s", ip->outiface);
637 if (inet_ntop(AF_INET, &ip->src, ip_string, INET6_ADDRSTRLEN) != NULL &&
638 inet_ntop(AF_INET, &ip->smsk,
639 ip_mask, INET6_ADDRSTRLEN) != NULL)
640 connman_info("\tsrc %s/%s", ip_string, ip_mask);
642 if (inet_ntop(AF_INET, &ip->dst, ip_string, INET6_ADDRSTRLEN) != NULL &&
643 inet_ntop(AF_INET, &ip->dmsk,
644 ip_mask, INET6_ADDRSTRLEN) != NULL)
645 connman_info("\tdst %s/%s", ip_string, ip_mask);
648 static void dump_target(struct connman_iptables *table,
649 struct ipt_entry *entry)
652 struct xtables_target *xt_t;
653 struct xt_entry_target *target;
655 target = ipt_get_target(entry);
657 if (!strcmp(target->u.user.name, IPT_STANDARD_TARGET)) {
658 struct xt_standard_target *t;
660 t = (struct xt_standard_target *)target;
662 switch (t->verdict) {
664 connman_info("\ttarget RETURN");
668 connman_info("\ttarget ACCEPT");
672 connman_info("\ttarget DROP");
676 connman_info("\ttarget QUEUE");
680 connman_info("\ttarget STOP");
684 connman_info("\tJUMP @%p (0x%x)",
685 (char*)table->blob_entries->entrytable +
686 t->verdict, t->verdict);
690 xt_t = xtables_find_target(IPT_STANDARD_TARGET,
691 XTF_LOAD_MUST_SUCCEED);
693 if(xt_t->print != NULL)
694 xt_t->print(NULL, target, 1);
696 xt_t = xtables_find_target(target->u.user.name, XTF_TRY_LOAD);
698 connman_info("\ttarget %s", target->u.user.name);
702 if(xt_t->print != NULL) {
703 connman_info("\ttarget ");
704 xt_t->print(NULL, target, 1);
709 static void dump_match(struct connman_iptables *table, struct ipt_entry *entry)
711 struct xtables_match *xt_m;
712 struct xt_entry_match *match;
714 if (entry->elems == (unsigned char *)entry + entry->target_offset)
717 match = (struct xt_entry_match *) entry->elems;
719 if (!strlen(match->u.user.name))
722 xt_m = xtables_find_match(match->u.user.name, XTF_TRY_LOAD, NULL);
726 if(xt_m->print != NULL) {
727 connman_info("\tmatch ");
728 xt_m->print(NULL, match, 1);
734 connman_info("\tmatch %s", match->u.user.name);
738 static int dump_entry(struct ipt_entry *entry,
739 struct connman_iptables *table)
741 struct xt_entry_target *target;
745 offset = (char *)entry - (char *)table->blob_entries->entrytable;
746 target = ipt_get_target(entry);
747 builtin = is_hook_entry(table, entry);
749 if (entry_to_offset(table, entry) + entry->next_offset ==
750 table->blob_entries->size) {
751 connman_info("End of CHAIN 0x%x", offset);
755 if (!strcmp(target->u.user.name, IPT_ERROR_TARGET)) {
756 connman_info("USER CHAIN (%s) %p match %p target %p size %d",
757 target->data, entry, entry->elems,
758 (char *)entry + entry->target_offset,
762 } else if (builtin >= 0) {
763 connman_info("CHAIN (%s) %p match %p target %p size %d",
764 hooknames[builtin], entry, entry->elems,
765 (char *)entry + entry->target_offset,
768 connman_info("RULE %p match %p target %p size %d", entry,
770 (char *)entry + entry->target_offset,
774 dump_match(table, entry);
775 dump_target(table, entry);
781 static void iptables_dump(struct connman_iptables *table)
783 connman_info("%s valid_hooks=0x%08x, num_entries=%u, size=%u",
785 table->info->valid_hooks, table->info->num_entries,
788 ENTRY_ITERATE(table->blob_entries->entrytable,
789 table->blob_entries->size,
794 static int iptables_get_entries(struct connman_iptables *table)
796 socklen_t entry_size;
798 entry_size = sizeof(struct ipt_get_entries) + table->info->size;
800 return getsockopt(table->ipt_sock, IPPROTO_IP, IPT_SO_GET_ENTRIES,
801 table->blob_entries, &entry_size);
804 static int iptables_replace(struct connman_iptables *table,
805 struct ipt_replace *r)
807 return setsockopt(table->ipt_sock, IPPROTO_IP, IPT_SO_SET_REPLACE, r,
808 sizeof(*r) + r->size);
811 static int add_entry(struct ipt_entry *entry, struct connman_iptables *table)
813 struct ipt_entry *new_entry;
816 new_entry = g_try_malloc0(entry->next_offset);
817 if (new_entry == NULL)
820 memcpy(new_entry, entry, entry->next_offset);
822 builtin = is_hook_entry(table, entry);
824 return iptables_add_entry(table, new_entry, NULL, builtin);
827 static void table_cleanup(struct connman_iptables *table)
830 struct connman_iptables_entry *entry;
832 close(table->ipt_sock);
834 for (list = table->entries; list; list = list->next) {
837 g_free(entry->entry);
840 g_list_free(table->entries);
842 g_free(table->blob_entries);
846 static struct connman_iptables *iptables_init(char *table_name)
848 struct connman_iptables *table;
851 DBG("%s", table_name);
853 table = g_hash_table_lookup(table_hash, table_name);
857 table = g_try_new0(struct connman_iptables, 1);
861 table->info = g_try_new0(struct ipt_getinfo, 1);
862 if (table->info == NULL)
865 table->ipt_sock = socket(AF_INET, SOCK_RAW, IPPROTO_RAW);
866 if (table->ipt_sock < 0)
869 s = sizeof(*table->info);
870 strcpy(table->info->name, table_name);
871 if (getsockopt(table->ipt_sock, IPPROTO_IP, IPT_SO_GET_INFO,
872 table->info, &s) < 0)
875 table->blob_entries = g_try_malloc0(sizeof(struct ipt_get_entries) +
877 if (table->blob_entries == NULL)
880 strcpy(table->blob_entries->name, table_name);
881 table->blob_entries->size = table->info->size;
883 if (iptables_get_entries(table) < 0)
886 table->num_entries = 0;
887 table->old_entries = table->info->num_entries;
890 memcpy(table->underflow, table->info->underflow,
891 sizeof(table->info->underflow));
892 memcpy(table->hook_entry, table->info->hook_entry,
893 sizeof(table->info->hook_entry));
895 ENTRY_ITERATE(table->blob_entries->entrytable,
896 table->blob_entries->size,
899 g_hash_table_insert(table_hash, g_strdup(table_name), table);
905 table_cleanup(table);
910 static struct option iptables_opts[] = {
911 {.name = "append", .has_arg = 1, .val = 'A'},
912 {.name = "list", .has_arg = 2, .val = 'L'},
913 {.name = "new-chain", .has_arg = 1, .val = 'N'},
914 {.name = "destination", .has_arg = 1, .val = 'd'},
915 {.name = "in-interface", .has_arg = 1, .val = 'i'},
916 {.name = "jump", .has_arg = 1, .val = 'j'},
917 {.name = "match", .has_arg = 1, .val = 'm'},
918 {.name = "out-interface", .has_arg = 1, .val = 'o'},
919 {.name = "source", .has_arg = 1, .val = 's'},
920 {.name = "table", .has_arg = 1, .val = 't'},
924 struct xtables_globals iptables_globals = {
926 .opts = iptables_opts,
927 .orig_opts = iptables_opts,
930 static int iptables_command(int argc, char *argv[])
932 struct connman_iptables *table;
933 struct xtables_match *xt_m;
934 struct xtables_target *xt_t;
936 char *table_name, *chain, *new_chain, *match_name, *target_name;
937 int c, ret, in_len, out_len;
939 gboolean dump, invert;
940 struct in_addr src, dst;
947 table_name = chain = new_chain = match_name = target_name = NULL;
948 memset(&ip, 0, sizeof(struct ipt_ip));
956 while ((c = getopt_long(argc, argv,
957 "-A:L::N:d:j:i:m:o:s:t:", iptables_globals.opts, NULL)) != -1) {
972 if (!inet_pton(AF_INET, optarg, &dst))
976 inet_pton(AF_INET, "255.255.255.255", &ip.dmsk);
979 ip.invflags |= IPT_INV_DSTIP;
984 in_len = strlen(optarg);
986 if (in_len + 1 > IFNAMSIZ)
989 strcpy(ip.iniface, optarg);
990 memset(ip.iniface_mask, 0xff, in_len + 1);
993 ip.invflags |= IPT_INV_VIA_IN;
998 target_name = optarg;
999 xt_t = xtables_find_target(target_name, XTF_TRY_LOAD);
1004 size = ALIGN(sizeof(struct ipt_entry_target)) +
1007 xt_t->t = g_try_malloc0(size);
1008 if (xt_t->t == NULL)
1010 xt_t->t->u.target_size = size;
1011 strcpy(xt_t->t->u.user.name, target_name);
1012 xt_t->t->u.user.revision = xt_t->revision;
1013 if (xt_t->init != NULL)
1014 xt_t->init(xt_t->t);
1015 iptables_globals.opts =
1016 xtables_merge_options(iptables_globals.opts,
1018 &xt_t->option_offset);
1019 if (iptables_globals.opts == NULL)
1025 match_name = optarg;
1027 xt_m = xtables_find_match(optarg, XTF_LOAD_MUST_SUCCEED, NULL);
1028 size = ALIGN(sizeof(struct ipt_entry_match)) +
1030 xt_m->m = g_try_malloc0(size);
1033 xt_m->m->u.match_size = size;
1034 strcpy(xt_m->m->u.user.name, xt_m->name);
1035 xt_m->m->u.user.revision = xt_m->revision;
1036 if (xt_m->init != NULL)
1037 xt_m->init(xt_m->m);
1038 if (xt_m != xt_m->next) {
1039 iptables_globals.opts =
1040 xtables_merge_options(iptables_globals.opts,
1042 &xt_m->option_offset);
1043 if (iptables_globals.opts == NULL)
1050 out_len = strlen(optarg);
1052 if (out_len + 1 > IFNAMSIZ)
1055 strcpy(ip.outiface, optarg);
1056 memset(ip.outiface_mask, 0xff, out_len + 1);
1059 ip.invflags |= IPT_INV_VIA_OUT;
1064 if (!inet_pton(AF_INET, optarg, &src))
1068 inet_pton(AF_INET, "255.255.255.255", &ip.smsk);
1071 ip.invflags |= IPT_INV_SRCIP;
1076 table_name = optarg;
1080 if (optarg[0] == '!' && optarg[1] == '\0') {
1086 connman_error("Invalid option");
1092 if (xt_t == NULL || xt_t->parse == NULL ||
1093 !xt_t->parse(c - xt_t->option_offset, argv, invert,
1094 &xt_t->tflags, NULL, &xt_t->t)) {
1095 if (xt_m == NULL || xt_m->parse == NULL)
1098 xt_m->parse(c - xt_m->option_offset, argv,
1099 invert, &xt_m->mflags, NULL, &xt_m->m);
1108 if (table_name == NULL)
1109 table_name = "filter";
1111 table = iptables_init(table_name);
1112 if (table == NULL) {
1118 iptables_dump(table);
1124 if (chain && new_chain) {
1130 DBG("New chain %s", new_chain);
1132 ret = iptables_add_chain(table, new_chain);
1137 if (target_name == NULL)
1140 DBG("Adding %s to %s (match %s)",
1141 target_name, chain, match_name);
1143 ret = iptables_add_rule(table, &ip, chain, target_name, xt_t,
1159 int __connman_iptables_command(const char *format, ...)
1161 char **argv, **arguments, *command;
1168 va_start(args, format);
1170 command = g_strdup_vprintf(format, args);
1174 if (command == NULL)
1177 arguments = g_strsplit_set(command, " ", -1);
1179 for (argc = 0; arguments[argc]; argc++);
1181 DBG("command %s argc %d", command, ++argc);
1183 argv = g_try_malloc0(argc * sizeof(char *));
1186 g_strfreev(arguments);
1190 argv[0] = "iptables";
1191 for (i = 1; i < argc; i++)
1192 argv[i] = arguments[i - 1];
1194 ret = iptables_command(argc, argv);
1197 g_strfreev(arguments);
1204 int __connman_iptables_commit(const char *table_name)
1206 struct connman_iptables *table;
1207 struct ipt_replace *repl;
1209 DBG("%s", table_name);
1211 table = g_hash_table_lookup(table_hash, table_name);
1215 repl = iptables_blob(table);
1217 return iptables_replace(table, repl);
1220 static void remove_table(gpointer user_data)
1222 struct connman_iptables *table = user_data;
1224 table_cleanup(table);
1227 int __connman_iptables_init(void)
1231 table_hash = g_hash_table_new_full(g_str_hash, g_str_equal,
1232 g_free, remove_table);
1234 xtables_init_all(&iptables_globals, NFPROTO_IPV4);
1240 void __connman_iptables_cleanup(void)
1242 g_hash_table_destroy(table_hash);
1244 xtables_free_opts(1);