オープンソース・ソフトウェアの開発とダウンロード

Subversion リポジトリの参照

Contents of /trunk/1.6.x/ccs-patch/fs/tomoyo_network.c

Parent Directory Parent Directory | Revision Log Revision Log


Revision 1056 - (show annotations) (download) (as text)
Wed Mar 26 05:36:41 2008 UTC (16 years, 2 months ago) by kumaneko
File MIME type: text/x-csrc
File size: 27198 byte(s)


1 /*
2 * fs/tomoyo_network.c
3 *
4 * Implementation of the Domain-Based Mandatory Access Control.
5 *
6 * Copyright (C) 2005-2008 NTT DATA CORPORATION
7 *
8 * Version: 1.6.0-rc 2008/03/26
9 *
10 * This file is applicable to both 2.4.30 and 2.6.11 and later.
11 * See README.ccs for ChangeLog.
12 *
13 */
14
15 #include <linux/ccs_common.h>
16 #include <linux/tomoyo.h>
17 #include <linux/realpath.h>
18 #include <net/ip.h>
19
20 /**
21 * audit_network_log - Audit network log.
22 *
23 * @is_ipv6: True if @address is an IPv6 address.
24 * @operation: The name of operation.
25 * @address: An IPv4 or IPv6 address.
26 * @port: Port number.
27 * @is_granted: True if this is a granted log.
28 * @profile: Profile number.
29 * @mode: Access control mode.
30 *
31 * Returns 0 on success, negative value otherwise.
32 */
33 static int audit_network_log(const bool is_ipv6, const char *operation,
34 const u32 *address, const u16 port,
35 const bool is_granted, const u8 profile,
36 const u8 mode)
37 {
38 char *buf;
39 int len = 256, len2;
40 if (ccs_can_save_audit_log(is_granted) < 0)
41 return -ENOMEM;
42 buf = ccs_init_audit_log(&len, profile, mode, NULL);
43 if (!buf)
44 return -ENOMEM;
45 len2 = strlen(buf);
46 snprintf(buf + len2, len - len2 - 1, KEYWORD_ALLOW_NETWORK "%s ",
47 operation);
48 len2 = strlen(buf);
49 if (is_ipv6) {
50 ccs_print_ipv6(buf + len2, len - len2,
51 (const struct in6_addr *) address);
52 } else {
53 u32 ip = *address;
54 snprintf(buf + len2, len - len2 - 1, "%u.%u.%u.%u",
55 NIPQUAD(ip));
56 }
57 len2 = strlen(buf);
58 snprintf(buf + len2, len - len2 - 1, " %u\n", port);
59 return ccs_write_audit_log(buf, is_granted);
60 }
61
62 /**
63 * save_ipv6_address - Keep the given IPv6 address on the RAM.
64 *
65 * @addr: Pointer to "struct in6_addr".
66 *
67 * Returns pointer to "struct in6_addr" on success, NULL otherwise.
68 *
69 * The RAM is shared, so NEVER try to modify or kfree() the returned address.
70 */
71 static const struct in6_addr *save_ipv6_address(const struct in6_addr *addr)
72 {
73 static const u8 block_size = 16;
74 struct addr_list {
75 struct in6_addr addr[block_size];
76 struct list1_head list;
77 u32 in_use_count;
78 };
79 static LIST1_HEAD(address_list);
80 struct addr_list *ptr;
81 static DEFINE_MUTEX(lock);
82 u8 i = block_size;
83 if (!addr)
84 return NULL;
85 mutex_lock(&lock);
86 list1_for_each_entry(ptr, &address_list, list) {
87 for (i = 0; i < ptr->in_use_count; i++) {
88 if (memcmp(&ptr->addr[i], addr, sizeof(*addr)) == 0)
89 goto ok;
90 }
91 if (i < block_size)
92 break;
93 }
94 if (i == block_size) {
95 ptr = ccs_alloc_element(sizeof(*ptr));
96 if (!ptr)
97 goto ok;
98 list1_add_tail_mb(&ptr->list, &address_list);
99 i = 0;
100 }
101 ptr->addr[ptr->in_use_count++] = *addr;
102 ok:
103 mutex_unlock(&lock);
104 return ptr ? &ptr->addr[i] : NULL;
105 }
106
107 /* The list for "struct address_group_entry". */
108 static LIST1_HEAD(address_group_list);
109
110 /**
111 * update_address_group_entry - Update "struct address_group_entry" list.
112 *
113 * @group_name: The name of group.
114 * @is_ipv6: True if @address is an IPv6 address.
115 * @min_address: Start of IPv4 or IPv6 address range.
116 * @max_address: End of IPv4 or IPv6 address range.
117 * @is_delete: True if it is a delete request.
118 *
119 * Returns 0 on success, negative value otherwise.
120 */
121 static int update_address_group_entry(const char *group_name,
122 const bool is_ipv6,
123 const u16 *min_address,
124 const u16 *max_address,
125 const bool is_delete)
126 {
127 static DEFINE_MUTEX(lock);
128 struct address_group_entry *new_group, *group;
129 struct address_group_member *new_member, *member;
130 const struct path_info *saved_group_name;
131 const struct in6_addr *saved_min_address = NULL;
132 const struct in6_addr *saved_max_address = NULL;
133 int error = -ENOMEM;
134 bool found = false;
135 if (!ccs_is_correct_path(group_name, 0, 0, 0, __func__) ||
136 !group_name[0])
137 return -EINVAL;
138 saved_group_name = ccs_save_name(group_name);
139 if (!saved_group_name)
140 return -ENOMEM;
141 if (!is_ipv6)
142 goto not_ipv6;
143 saved_min_address
144 = save_ipv6_address((struct in6_addr *) min_address);
145 saved_max_address
146 = save_ipv6_address((struct in6_addr *) max_address);
147 if (!saved_min_address || !saved_max_address)
148 return -ENOMEM;
149 not_ipv6:
150 mutex_lock(&lock);
151 list1_for_each_entry(group, &address_group_list, list) {
152 if (saved_group_name != group->group_name)
153 continue;
154 list1_for_each_entry(member, &group->address_group_member_list,
155 list) {
156 if (member->is_ipv6 != is_ipv6)
157 continue;
158 if (is_ipv6) {
159 if (member->min.ipv6 != saved_min_address ||
160 member->max.ipv6 != saved_max_address)
161 continue;
162 } else {
163 if (member->min.ipv4 != *(u32 *) min_address ||
164 member->max.ipv4 != *(u32 *) max_address)
165 continue;
166 }
167 member->is_deleted = is_delete;
168 error = 0;
169 goto out;
170 }
171 found = true;
172 break;
173 }
174 if (is_delete) {
175 error = -ENOENT;
176 goto out;
177 }
178 if (!found) {
179 new_group = ccs_alloc_element(sizeof(*new_group));
180 if (!new_group)
181 goto out;
182 INIT_LIST1_HEAD(&new_group->address_group_member_list);
183 new_group->group_name = saved_group_name;
184 list1_add_tail_mb(&new_group->list, &address_group_list);
185 group = new_group;
186 }
187 new_member = ccs_alloc_element(sizeof(*new_member));
188 if (!new_member)
189 goto out;
190 new_member->is_ipv6 = is_ipv6;
191 if (is_ipv6) {
192 new_member->min.ipv6 = saved_min_address;
193 new_member->max.ipv6 = saved_max_address;
194 } else {
195 new_member->min.ipv4 = *(u32 *) min_address;
196 new_member->max.ipv4 = *(u32 *) max_address;
197 }
198 list1_add_tail_mb(&new_member->list, &group->address_group_member_list);
199 error = 0;
200 out:
201 mutex_unlock(&lock);
202 return error;
203 }
204
205 /**
206 * ccs_write_address_group_policy - Write "struct address_group_entry" list.
207 *
208 * @data: String to parse.
209 * @is_delete: True if it is a delete request.
210 *
211 * Returns 0 on success, negative value otherwise.
212 */
213 int ccs_write_address_group_policy(char *data, const bool is_delete)
214 {
215 u8 count;
216 bool is_ipv6;
217 u16 min_address[8], max_address[8];
218 char *cp = strchr(data, ' ');
219 if (!cp)
220 return -EINVAL;
221 *cp++ = '\0';
222 count = sscanf(cp, "%hx:%hx:%hx:%hx:%hx:%hx:%hx:%hx"
223 "-%hx:%hx:%hx:%hx:%hx:%hx:%hx:%hx",
224 &min_address[0], &min_address[1],
225 &min_address[2], &min_address[3],
226 &min_address[4], &min_address[5],
227 &min_address[6], &min_address[7],
228 &max_address[0], &max_address[1],
229 &max_address[2], &max_address[3],
230 &max_address[4], &max_address[5],
231 &max_address[6], &max_address[7]);
232 if (count == 8 || count == 16) {
233 u8 i;
234 for (i = 0; i < 8; i++) {
235 min_address[i] = htons(min_address[i]);
236 max_address[i] = htons(max_address[i]);
237 }
238 if (count == 8)
239 memmove(max_address, min_address, sizeof(min_address));
240 is_ipv6 = true;
241 goto ok;
242 }
243 count = sscanf(cp, "%hu.%hu.%hu.%hu-%hu.%hu.%hu.%hu",
244 &min_address[0], &min_address[1],
245 &min_address[2], &min_address[3],
246 &max_address[0], &max_address[1],
247 &max_address[2], &max_address[3]);
248 if (count == 4 || count == 8) {
249 u32 ip = ((((u8) min_address[0]) << 24)
250 + (((u8) min_address[1]) << 16)
251 + (((u8) min_address[2]) << 8)
252 + (u8) min_address[3]);
253 *(u32 *) min_address = ip;
254 if (count == 8)
255 ip = ((((u8) max_address[0]) << 24)
256 + (((u8) max_address[1]) << 16)
257 + (((u8) max_address[2]) << 8)
258 + (u8) max_address[3]);
259 *(u32 *) max_address = ip;
260 is_ipv6 = false;
261 } else {
262 return -EINVAL;
263 }
264 ok:
265 return update_address_group_entry(data, is_ipv6,
266 min_address, max_address, is_delete);
267 }
268
269 /**
270 * find_or_assign_new_address_group - Create address group.
271 *
272 * @group_name: The name of group.
273 *
274 * Returns pointer to "struct address_group_entry" on success, NULL otherwise.
275 */
276 static struct address_group_entry *
277 find_or_assign_new_address_group(const char *group_name)
278 {
279 u8 i;
280 struct address_group_entry *group;
281 for (i = 0; i <= 1; i++) {
282 list1_for_each_entry(group, &address_group_list, list) {
283 if (strcmp(group_name, group->group_name->name) == 0)
284 return group;
285 }
286 if (i == 0) {
287 const u16 dummy[2] = { 0, 0 };
288 update_address_group_entry(group_name, false,
289 dummy, dummy, false);
290 update_address_group_entry(group_name, false,
291 dummy, dummy, true);
292 }
293 }
294 return NULL;
295 }
296
297 /**
298 * address_matches_to_group - Check whether the given address matches members of the given address group.
299 *
300 * @is_ipv6: True if @address is an IPv6 address.
301 * @address: An IPv4 or IPv6 address.
302 * @group: Pointer to "struct address_group_entry".
303 *
304 * Returns true if @address matches addresses in @group group, false otherwise.
305 */
306 static bool address_matches_to_group(const bool is_ipv6, const u32 *address,
307 const struct address_group_entry *group)
308 {
309 struct address_group_member *member;
310 const u32 ip = ntohl(*address);
311 list1_for_each_entry(member, &group->address_group_member_list, list) {
312 if (member->is_deleted)
313 continue;
314 if (member->is_ipv6) {
315 if (is_ipv6 &&
316 memcmp(member->min.ipv6, address, 16) <= 0 &&
317 memcmp(address, member->max.ipv6, 16) <= 0)
318 return true;
319 } else {
320 if (!is_ipv6 &&
321 member->min.ipv4 <= ip && ip <= member->max.ipv4)
322 return true;
323 }
324 }
325 return false;
326 }
327
328 /**
329 * ccs_read_address_group_policy - Read "struct address_group_entry" list.
330 *
331 * @head: Pointer to "struct ccs_io_buffer".
332 *
333 * Returns true on success, false otherwise.
334 */
335 bool ccs_read_address_group_policy(struct ccs_io_buffer *head)
336 {
337 struct list1_head *gpos;
338 struct list1_head *mpos;
339 list1_for_each_cookie(gpos, head->read_var1, &address_group_list) {
340 struct address_group_entry *group;
341 group = list1_entry(gpos, struct address_group_entry, list);
342 list1_for_each_cookie(mpos, head->read_var2,
343 &group->address_group_member_list) {
344 char buf[128];
345 struct address_group_member *member;
346 member = list1_entry(mpos, struct address_group_member,
347 list);
348 if (member->is_deleted)
349 continue;
350 if (!member->is_ipv6) {
351 const struct in6_addr *min_address
352 = member->min.ipv6;
353 const struct in6_addr *max_address
354 = member->max.ipv6;
355 ccs_print_ipv6(buf, sizeof(buf), min_address);
356 if (min_address != max_address) {
357 int len;
358 char *cp = strchr(buf, '\0');
359 *cp++ = '-';
360 len = strlen(buf);
361 ccs_print_ipv6(cp, sizeof(buf) - len,
362 max_address);
363 }
364 } else {
365 const u32 min_address = member->min.ipv4;
366 const u32 max_address = member->max.ipv4;
367 memset(buf, 0, sizeof(buf));
368 snprintf(buf, sizeof(buf) - 1, "%u.%u.%u.%u",
369 HIPQUAD(min_address));
370 if (min_address != max_address) {
371 const int len = strlen(buf);
372 snprintf(buf + len,
373 sizeof(buf) - 1 - len,
374 "-%u.%u.%u.%u",
375 HIPQUAD(max_address));
376 }
377 }
378 if (!ccs_io_printf(head, KEYWORD_ADDRESS_GROUP
379 "%s %s\n", group->group_name->name,
380 buf))
381 goto out;
382 }
383 }
384 return true;
385 out:
386 return false;
387 }
388
389 #if !defined(NIP6)
390 #define NIP6(addr) \
391 ntohs((addr).s6_addr16[0]), ntohs((addr).s6_addr16[1]), \
392 ntohs((addr).s6_addr16[2]), ntohs((addr).s6_addr16[3]), \
393 ntohs((addr).s6_addr16[4]), ntohs((addr).s6_addr16[5]), \
394 ntohs((addr).s6_addr16[6]), ntohs((addr).s6_addr16[7])
395 #endif
396
397 /**
398 * ccs_print_ipv6 - Print an IPv6 address.
399 *
400 * @buffer: Buffer to write to.
401 * @buffer_len: Size of @buffer .
402 * @ip: Pointer to "struct in6_addr".
403 *
404 * Returns @buffer.
405 */
406 char *ccs_print_ipv6(char *buffer, const int buffer_len,
407 const struct in6_addr *ip)
408 {
409 memset(buffer, 0, buffer_len);
410 snprintf(buffer, buffer_len - 1, "%x:%x:%x:%x:%x:%x:%x:%x", NIP6(*ip));
411 return buffer;
412 }
413
414 /**
415 * ccs_net2keyword - Convert network operation index to network operation name.
416 *
417 * @operation: Type of operation.
418 *
419 * Returns the name of operation.
420 */
421 const char *ccs_net2keyword(const u8 operation)
422 {
423 const char *keyword = "unknown";
424 switch (operation) {
425 case NETWORK_ACL_UDP_BIND:
426 keyword = "UDP bind";
427 break;
428 case NETWORK_ACL_UDP_CONNECT:
429 keyword = "UDP connect";
430 break;
431 case NETWORK_ACL_TCP_BIND:
432 keyword = "TCP bind";
433 break;
434 case NETWORK_ACL_TCP_LISTEN:
435 keyword = "TCP listen";
436 break;
437 case NETWORK_ACL_TCP_CONNECT:
438 keyword = "TCP connect";
439 break;
440 case NETWORK_ACL_TCP_ACCEPT:
441 keyword = "TCP accept";
442 break;
443 case NETWORK_ACL_RAW_BIND:
444 keyword = "RAW bind";
445 break;
446 case NETWORK_ACL_RAW_CONNECT:
447 keyword = "RAW connect";
448 break;
449 }
450 return keyword;
451 }
452
453 /**
454 * update_network_entry - Update "struct ip_network_acl_record" list.
455 *
456 * @operation: Type of operation.
457 * @record_type: Type of address.
458 * @group: Pointer to "struct address_group_entry". May be NULL.
459 * @min_address: Start of IPv4 or IPv6 address range.
460 * @max_address: End of IPv4 or IPv6 address range.
461 * @min_port: Start of port number range.
462 * @max_port: End of port number range.
463 * @domain: Pointer to "struct domain_info".
464 * @condition: Pointer to "struct condition_list". May be NULL.
465 * @is_delete: True if it is a delete request.
466 *
467 * Returns 0 on success, negative value otherwise.
468 */
469 static int update_network_entry(const u8 operation, const u8 record_type,
470 const struct address_group_entry *group,
471 const u32 *min_address, const u32 *max_address,
472 const u16 min_port, const u16 max_port,
473 struct domain_info *domain,
474 const struct condition_list *condition,
475 const bool is_delete)
476 {
477 struct acl_info *ptr;
478 struct ip_network_acl_record *acl;
479 int error = -ENOMEM;
480 /* using host byte order to allow u32 comparison than memcmp().*/
481 const u32 min_ip = ntohl(*min_address);
482 const u32 max_ip = ntohl(*max_address);
483 const struct in6_addr *saved_min_address = NULL;
484 const struct in6_addr *saved_max_address = NULL;
485 if (!domain)
486 return -EINVAL;
487 if (record_type != IP_RECORD_TYPE_IPv6)
488 goto not_ipv6;
489 saved_min_address = save_ipv6_address((struct in6_addr *) min_address);
490 saved_max_address = save_ipv6_address((struct in6_addr *) max_address);
491 if (!saved_min_address || !saved_max_address)
492 return -ENOMEM;
493 not_ipv6:
494 mutex_lock(&domain_acl_lock);
495 if (is_delete)
496 goto delete;
497 list1_for_each_entry(ptr, &domain->acl_info_list, list) {
498 if ((ptr->type & ~(ACL_DELETED | ACL_WITH_CONDITION))
499 != TYPE_IP_NETWORK_ACL)
500 continue;
501 if (ccs_get_condition_part(ptr) != condition)
502 continue;
503 acl = container_of(ptr, struct ip_network_acl_record, head);
504 if (acl->operation_type != operation ||
505 acl->record_type != record_type ||
506 acl->min_port != min_port || max_port != acl->max_port)
507 continue;
508 if (record_type == IP_RECORD_TYPE_ADDRESS_GROUP) {
509 if (acl->u.group != group)
510 continue;
511 } else if (record_type == IP_RECORD_TYPE_IPv4) {
512 if (acl->u.ipv4.min != min_ip ||
513 max_ip != acl->u.ipv4.max)
514 continue;
515 } else if (record_type == IP_RECORD_TYPE_IPv6) {
516 if (acl->u.ipv6.min != saved_min_address ||
517 saved_max_address != acl->u.ipv6.max)
518 continue;
519 }
520 error = ccs_add_domain_acl(NULL, ptr);
521 goto out;
522 }
523 /* Not found. Append it to the tail. */
524 acl = ccs_alloc_acl_element(TYPE_IP_NETWORK_ACL, condition);
525 if (!acl)
526 goto out;
527 acl->operation_type = operation;
528 acl->record_type = record_type;
529 if (record_type == IP_RECORD_TYPE_ADDRESS_GROUP) {
530 acl->u.group = group;
531 } else if (record_type == IP_RECORD_TYPE_IPv4) {
532 acl->u.ipv4.min = min_ip;
533 acl->u.ipv4.max = max_ip;
534 } else {
535 acl->u.ipv6.min = saved_min_address;
536 acl->u.ipv6.max = saved_max_address;
537 }
538 acl->min_port = min_port;
539 acl->max_port = max_port;
540 error = ccs_add_domain_acl(domain, &acl->head);
541 goto out;
542 delete:
543 error = -ENOENT;
544 list1_for_each_entry(ptr, &domain->acl_info_list, list) {
545 if ((ptr->type & ~ACL_WITH_CONDITION) != TYPE_IP_NETWORK_ACL)
546 continue;
547 if (ccs_get_condition_part(ptr) != condition)
548 continue;
549 acl = container_of(ptr, struct ip_network_acl_record, head);
550 if (acl->operation_type != operation ||
551 acl->record_type != record_type ||
552 acl->min_port != min_port || max_port != acl->max_port)
553 continue;
554 if (record_type == IP_RECORD_TYPE_ADDRESS_GROUP) {
555 if (acl->u.group != group)
556 continue;
557 } else if (record_type == IP_RECORD_TYPE_IPv4) {
558 if (acl->u.ipv4.min != min_ip ||
559 max_ip != acl->u.ipv4.max)
560 continue;
561 } else if (record_type == IP_RECORD_TYPE_IPv6) {
562 if (acl->u.ipv6.min != saved_min_address ||
563 saved_max_address != acl->u.ipv6.max)
564 continue;
565 }
566 error = ccs_del_domain_acl(ptr);
567 break;
568 }
569 out:
570 mutex_unlock(&domain_acl_lock);
571 return error;
572 }
573
574 /**
575 * check_network_entry - Check permission for network operation.
576 *
577 * @is_ipv6: True if @address is an IPv6 address.
578 * @operation: Type of operation.
579 * @address: An IPv4 or IPv6 address.
580 * @port: Port number.
581 *
582 * Returns 0 on success, negative value otherwise.
583 */
584 static int check_network_entry(const bool is_ipv6, const u8 operation,
585 const u32 *address, const u16 port)
586 {
587 struct domain_info * const domain = current->domain_info;
588 struct acl_info *ptr;
589 const char *keyword = ccs_net2keyword(operation);
590 const u8 profile = current->domain_info->profile;
591 const u8 mode = ccs_check_flags(CCS_TOMOYO_MAC_FOR_NETWORK);
592 const bool is_enforce = (mode == 3);
593 /* using host byte order to allow u32 comparison than memcmp().*/
594 const u32 ip = ntohl(*address);
595 bool found = false;
596 if (!mode)
597 return 0;
598 list1_for_each_entry(ptr, &domain->acl_info_list, list) {
599 struct ip_network_acl_record *acl;
600 if ((ptr->type & ~ACL_WITH_CONDITION) != TYPE_IP_NETWORK_ACL)
601 continue;
602 acl = container_of(ptr, struct ip_network_acl_record, head);
603 if (acl->operation_type != operation || port < acl->min_port ||
604 acl->max_port < port || !ccs_check_condition(ptr, NULL))
605 continue;
606 if (acl->record_type == IP_RECORD_TYPE_ADDRESS_GROUP) {
607 if (!address_matches_to_group(is_ipv6, address,
608 acl->u.group))
609 continue;
610 } else if (acl->record_type == IP_RECORD_TYPE_IPv4) {
611 if (is_ipv6 ||
612 ip < acl->u.ipv4.min || acl->u.ipv4.max < ip)
613 continue;
614 } else {
615 if (!is_ipv6 ||
616 memcmp(acl->u.ipv6.min, address, 16) > 0 ||
617 memcmp(address, acl->u.ipv6.max, 16) > 0)
618 continue;
619 }
620 ccs_update_condition(ptr);
621 found = true;
622 break;
623 }
624 audit_network_log(is_ipv6, keyword, address, port, found, profile,
625 mode);
626 if (found)
627 return 0;
628 if (ccs_verbose_mode()) {
629 if (is_ipv6) {
630 char buf[64];
631 ccs_print_ipv6(buf, sizeof(buf),
632 (const struct in6_addr *) address);
633 printk(KERN_WARNING "TOMOYO-%s: %s to %s %u "
634 "denied for %s\n", ccs_get_msg(is_enforce),
635 keyword, buf, port, ccs_get_last_name(domain));
636 } else {
637 printk(KERN_WARNING "TOMOYO-%s: %s to %u.%u.%u.%u %u "
638 "denied for %s\n", ccs_get_msg(is_enforce),
639 keyword, HIPQUAD(ip), port,
640 ccs_get_last_name(domain));
641 }
642 }
643 if (is_enforce) {
644 if (is_ipv6) {
645 char buf[64];
646 ccs_print_ipv6(buf, sizeof(buf),
647 (const struct in6_addr *) address);
648 return ccs_check_supervisor("%s\n"
649 KEYWORD_ALLOW_NETWORK "%s "
650 "%s %u\n",
651 domain->domainname->name,
652 keyword, buf, port);
653 }
654 return ccs_check_supervisor("%s\n" KEYWORD_ALLOW_NETWORK "%s "
655 "%u.%u.%u.%u %u\n",
656 domain->domainname->name, keyword,
657 HIPQUAD(ip), port);
658 } else if (mode == 1 && ccs_check_domain_quota(domain))
659 update_network_entry(operation, is_ipv6 ?
660 IP_RECORD_TYPE_IPv6 : IP_RECORD_TYPE_IPv4,
661 NULL, address, address, port, port, domain,
662 NULL, 0);
663 return 0;
664 }
665
666 /**
667 * ccs_write_network_policy - Write "struct ip_network_acl_record" list.
668 *
669 * @data: String to parse.
670 * @domain: Pointer to "struct domain_info".
671 * @condition: Pointer to "struct condition_list". May be NULL.
672 * @is_delete: True if it is a delete request.
673 *
674 * Returns 0 on success, negative value otherwise.
675 */
676 int ccs_write_network_policy(char *data, struct domain_info *domain,
677 const struct condition_list *condition,
678 const bool is_delete)
679 {
680 u8 sock_type, operation, record_type;
681 u16 min_address[8], max_address[8];
682 struct address_group_entry *group = NULL;
683 u16 min_port, max_port;
684 u8 count;
685 char *cp1 = NULL, *cp2 = NULL;
686 cp1 = strchr(data, ' ');
687 if (!cp1)
688 goto out;
689 cp1++;
690 if (!strncmp(data, "TCP ", 4))
691 sock_type = SOCK_STREAM;
692 else if (!strncmp(data, "UDP ", 4))
693 sock_type = SOCK_DGRAM;
694 else if (!strncmp(data, "RAW ", 4))
695 sock_type = SOCK_RAW;
696 else
697 goto out;
698 cp2 = strchr(cp1, ' ');
699 if (!cp2)
700 goto out;
701 cp2++;
702 if (!strncmp(cp1, "bind ", 5))
703 switch (sock_type) {
704 case SOCK_STREAM:
705 operation = NETWORK_ACL_TCP_BIND;
706 break;
707 case SOCK_DGRAM:
708 operation = NETWORK_ACL_UDP_BIND;
709 break;
710 default:
711 operation = NETWORK_ACL_RAW_BIND;
712 }
713 else if (!strncmp(cp1, "connect ", 8))
714 switch (sock_type) {
715 case SOCK_STREAM:
716 operation = NETWORK_ACL_TCP_CONNECT;
717 break;
718 case SOCK_DGRAM:
719 operation = NETWORK_ACL_UDP_CONNECT;
720 break;
721 default:
722 operation = NETWORK_ACL_RAW_CONNECT;
723 }
724 else if (sock_type == SOCK_STREAM && !strncmp(cp1, "listen ", 7))
725 operation = NETWORK_ACL_TCP_LISTEN;
726 else if (sock_type == SOCK_STREAM && !strncmp(cp1, "accept ", 7))
727 operation = NETWORK_ACL_TCP_ACCEPT;
728 else
729 goto out;
730 cp1 = strchr(cp2, ' ');
731 if (!cp1)
732 goto out;
733 *cp1++ = '\0';
734 count = sscanf(cp2, "%hx:%hx:%hx:%hx:%hx:%hx:%hx:%hx"
735 "-%hx:%hx:%hx:%hx:%hx:%hx:%hx:%hx",
736 &min_address[0], &min_address[1],
737 &min_address[2], &min_address[3],
738 &min_address[4], &min_address[5],
739 &min_address[6], &min_address[7],
740 &max_address[0], &max_address[1],
741 &max_address[2], &max_address[3],
742 &max_address[4], &max_address[5],
743 &max_address[6], &max_address[7]);
744 if (count == 8 || count == 16) {
745 u8 i;
746 for (i = 0; i < 8; i++) {
747 min_address[i] = htons(min_address[i]);
748 max_address[i] = htons(max_address[i]);
749 }
750 if (count == 8)
751 memmove(max_address, min_address, sizeof(min_address));
752 record_type = IP_RECORD_TYPE_IPv6;
753 goto ok;
754 }
755 count = sscanf(cp2, "%hu.%hu.%hu.%hu-%hu.%hu.%hu.%hu",
756 &min_address[0], &min_address[1],
757 &min_address[2], &min_address[3],
758 &max_address[0], &max_address[1],
759 &max_address[2], &max_address[3]);
760 if (count == 4 || count == 8) {
761 u32 ip = htonl((((u8) min_address[0]) << 24)
762 + (((u8) min_address[1]) << 16)
763 + (((u8) min_address[2]) << 8)
764 + (u8) min_address[3]);
765 *(u32 *) min_address = ip;
766 if (count == 8)
767 ip = htonl((((u8) max_address[0]) << 24)
768 + (((u8) max_address[1]) << 16)
769 + (((u8) max_address[2]) << 8)
770 + (u8) max_address[3]);
771 *(u32 *) max_address = ip;
772 record_type = IP_RECORD_TYPE_IPv4;
773 } else if (*cp2 == '@') {
774 group = find_or_assign_new_address_group(cp2 + 1);
775 if (!group)
776 return -ENOMEM;
777 record_type = IP_RECORD_TYPE_ADDRESS_GROUP;
778 } else {
779 goto out;
780 }
781 ok:
782 if (strchr(cp1, ' '))
783 goto out;
784 count = sscanf(cp1, "%hu-%hu", &min_port, &max_port);
785 if (count != 1 && count != 2)
786 goto out;
787 if (count == 1)
788 max_port = min_port;
789 return update_network_entry(operation, record_type, group,
790 (u32 *) min_address, (u32 *) max_address,
791 min_port, max_port, domain, condition,
792 is_delete);
793 out:
794 return -EINVAL;
795 }
796
797 /**
798 * ccs_check_network_listen_acl - Check permission for listen() operation.
799 *
800 * @is_ipv6: True if @address is an IPv6 address.
801 * @address: An IPv4 or IPv6 address.
802 * @port: Port number.
803 *
804 * Returns 0 on success, negative value otherwise.
805 */
806 int ccs_check_network_listen_acl(const _Bool is_ipv6, const u8 *address,
807 const u16 port)
808 {
809 return check_network_entry(is_ipv6, NETWORK_ACL_TCP_LISTEN,
810 (const u32 *) address, ntohs(port));
811 }
812
813 /**
814 * ccs_check_network_connect_acl - Check permission for connect() operation.
815 *
816 * @is_ipv6: True if @address is an IPv6 address.
817 * @sock_type: Type of socket. (TCP or UDP or RAW)
818 * @address: An IPv4 or IPv6 address.
819 * @port: Port number.
820 *
821 * Returns 0 on success, negative value otherwise.
822 */
823 int ccs_check_network_connect_acl(const _Bool is_ipv6, const int sock_type,
824 const u8 *address, const u16 port)
825 {
826 u8 operation;
827 switch (sock_type) {
828 case SOCK_STREAM:
829 operation = NETWORK_ACL_TCP_CONNECT;
830 break;
831 case SOCK_DGRAM:
832 operation = NETWORK_ACL_UDP_CONNECT;
833 break;
834 default:
835 operation = NETWORK_ACL_RAW_CONNECT;
836 }
837 return check_network_entry(is_ipv6, operation, (const u32 *) address,
838 ntohs(port));
839 }
840
841 /**
842 * ccs_check_network_bind_acl - Check permission for bind() operation.
843 *
844 * @is_ipv6: True if @address is an IPv6 address.
845 * @sock_type: Type of socket. (TCP or UDP or RAW)
846 * @address: An IPv4 or IPv6 address.
847 * @port: Port number.
848 *
849 * Returns 0 on success, negative value otherwise.
850 */
851 int ccs_check_network_bind_acl(const _Bool is_ipv6, const int sock_type,
852 const u8 *address, const u16 port)
853 {
854 u8 operation;
855 switch (sock_type) {
856 case SOCK_STREAM:
857 operation = NETWORK_ACL_TCP_BIND;
858 break;
859 case SOCK_DGRAM:
860 operation = NETWORK_ACL_UDP_BIND;
861 break;
862 default:
863 operation = NETWORK_ACL_RAW_BIND;
864 }
865 return check_network_entry(is_ipv6, operation, (const u32 *) address,
866 ntohs(port));
867 }
868
869 /**
870 * ccs_check_network_accept_acl - Check permission for accept() operation.
871 *
872 * @is_ipv6: True if @address is an IPv6 address.
873 * @address: An IPv4 or IPv6 address.
874 * @port: Port number.
875 *
876 * Returns 0 on success, negative value otherwise.
877 */
878 int ccs_check_network_accept_acl(const _Bool is_ipv6, const u8 *address,
879 const u16 port)
880 {
881 int retval;
882 current->tomoyo_flags |= CCS_DONT_SLEEP_ON_ENFORCE_ERROR;
883 retval = check_network_entry(is_ipv6, NETWORK_ACL_TCP_ACCEPT,
884 (const u32 *) address, ntohs(port));
885 current->tomoyo_flags &= ~CCS_DONT_SLEEP_ON_ENFORCE_ERROR;
886 return retval;
887 }
888
889 /**
890 * ccs_check_network_sendmsg_acl - Check permission for sendmsg() operation.
891 *
892 * @is_ipv6: True if @address is an IPv6 address.
893 * @sock_type: Type of socket. (UDP or RAW)
894 * @address: An IPv4 or IPv6 address.
895 * @port: Port number.
896 *
897 * Returns 0 on success, negative value otherwise.
898 */
899 int ccs_check_network_sendmsg_acl(const _Bool is_ipv6, const int sock_type,
900 const u8 *address, const u16 port)
901 {
902 u8 operation;
903 if (sock_type == SOCK_DGRAM)
904 operation = NETWORK_ACL_UDP_CONNECT;
905 else
906 operation = NETWORK_ACL_RAW_CONNECT;
907 return check_network_entry(is_ipv6, operation, (const u32 *) address,
908 ntohs(port));
909 }
910
911 /**
912 * ccs_check_network_recvmsg_acl - Check permission for recvmsg() operation.
913 *
914 * @is_ipv6: True if @address is an IPv6 address.
915 * @sock_type: Type of socket. (UDP or RAW)
916 * @address: An IPv4 or IPv6 address.
917 * @port: Port number.
918 *
919 * Returns 0 on success, negative value otherwise.
920 */
921 int ccs_check_network_recvmsg_acl(const _Bool is_ipv6, const int sock_type,
922 const u8 *address, const u16 port)
923 {
924 int retval;
925 const u8 operation
926 = sock_type == SOCK_DGRAM ?
927 NETWORK_ACL_UDP_CONNECT : NETWORK_ACL_RAW_CONNECT;
928 current->tomoyo_flags |= CCS_DONT_SLEEP_ON_ENFORCE_ERROR;
929 retval = check_network_entry(is_ipv6, operation, (const u32 *) address,
930 ntohs(port));
931 current->tomoyo_flags &= ~CCS_DONT_SLEEP_ON_ENFORCE_ERROR;
932 return retval;
933 }

Back to OSDN">Back to OSDN
ViewVC Help
Powered by ViewVC 1.1.26