raw.c 23 KB

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  1. /*
  2. * INET An implementation of the TCP/IP protocol suite for the LINUX
  3. * operating system. INET is implemented using the BSD Socket
  4. * interface as the means of communication with the user level.
  5. *
  6. * RAW - implementation of IP "raw" sockets.
  7. *
  8. * Authors: Ross Biro
  9. * Fred N. van Kempen, <waltje@uWalt.NL.Mugnet.ORG>
  10. *
  11. * Fixes:
  12. * Alan Cox : verify_area() fixed up
  13. * Alan Cox : ICMP error handling
  14. * Alan Cox : EMSGSIZE if you send too big a packet
  15. * Alan Cox : Now uses generic datagrams and shared
  16. * skbuff library. No more peek crashes,
  17. * no more backlogs
  18. * Alan Cox : Checks sk->broadcast.
  19. * Alan Cox : Uses skb_free_datagram/skb_copy_datagram
  20. * Alan Cox : Raw passes ip options too
  21. * Alan Cox : Setsocketopt added
  22. * Alan Cox : Fixed error return for broadcasts
  23. * Alan Cox : Removed wake_up calls
  24. * Alan Cox : Use ttl/tos
  25. * Alan Cox : Cleaned up old debugging
  26. * Alan Cox : Use new kernel side addresses
  27. * Arnt Gulbrandsen : Fixed MSG_DONTROUTE in raw sockets.
  28. * Alan Cox : BSD style RAW socket demultiplexing.
  29. * Alan Cox : Beginnings of mrouted support.
  30. * Alan Cox : Added IP_HDRINCL option.
  31. * Alan Cox : Skip broadcast check if BSDism set.
  32. * David S. Miller : New socket lookup architecture.
  33. *
  34. * This program is free software; you can redistribute it and/or
  35. * modify it under the terms of the GNU General Public License
  36. * as published by the Free Software Foundation; either version
  37. * 2 of the License, or (at your option) any later version.
  38. */
  39. #include <linux/types.h>
  40. #include <asm/atomic.h>
  41. #include <asm/byteorder.h>
  42. #include <asm/current.h>
  43. #include <asm/uaccess.h>
  44. #include <asm/ioctls.h>
  45. #include <linux/stddef.h>
  46. #include <linux/slab.h>
  47. #include <linux/errno.h>
  48. #include <linux/aio.h>
  49. #include <linux/kernel.h>
  50. #include <linux/spinlock.h>
  51. #include <linux/sockios.h>
  52. #include <linux/socket.h>
  53. #include <linux/in.h>
  54. #include <linux/mroute.h>
  55. #include <linux/netdevice.h>
  56. #include <linux/in_route.h>
  57. #include <linux/route.h>
  58. #include <linux/skbuff.h>
  59. #include <net/net_namespace.h>
  60. #include <net/dst.h>
  61. #include <net/sock.h>
  62. #include <linux/gfp.h>
  63. #include <linux/ip.h>
  64. #include <linux/net.h>
  65. #include <net/ip.h>
  66. #include <net/icmp.h>
  67. #include <net/udp.h>
  68. #include <net/raw.h>
  69. #include <net/snmp.h>
  70. #include <net/tcp_states.h>
  71. #include <net/inet_common.h>
  72. #include <net/checksum.h>
  73. #include <net/xfrm.h>
  74. #include <linux/rtnetlink.h>
  75. #include <linux/proc_fs.h>
  76. #include <linux/seq_file.h>
  77. #include <linux/netfilter.h>
  78. #include <linux/netfilter_ipv4.h>
  79. static struct raw_hashinfo raw_v4_hashinfo = {
  80. .lock = __RW_LOCK_UNLOCKED(raw_v4_hashinfo.lock),
  81. };
  82. void raw_hash_sk(struct sock *sk)
  83. {
  84. struct raw_hashinfo *h = sk->sk_prot->h.raw_hash;
  85. struct hlist_head *head;
  86. head = &h->ht[inet_sk(sk)->num & (RAW_HTABLE_SIZE - 1)];
  87. write_lock_bh(&h->lock);
  88. sk_add_node(sk, head);
  89. sock_prot_inuse_add(sock_net(sk), sk->sk_prot, 1);
  90. write_unlock_bh(&h->lock);
  91. }
  92. EXPORT_SYMBOL_GPL(raw_hash_sk);
  93. void raw_unhash_sk(struct sock *sk)
  94. {
  95. struct raw_hashinfo *h = sk->sk_prot->h.raw_hash;
  96. write_lock_bh(&h->lock);
  97. if (sk_del_node_init(sk))
  98. sock_prot_inuse_add(sock_net(sk), sk->sk_prot, -1);
  99. write_unlock_bh(&h->lock);
  100. }
  101. EXPORT_SYMBOL_GPL(raw_unhash_sk);
  102. static struct sock *__raw_v4_lookup(struct net *net, struct sock *sk,
  103. unsigned short num, __be32 raddr, __be32 laddr, int dif)
  104. {
  105. struct hlist_node *node;
  106. sk_for_each_from(sk, node) {
  107. struct inet_sock *inet = inet_sk(sk);
  108. if (net_eq(sock_net(sk), net) && inet->num == num &&
  109. !(inet->daddr && inet->daddr != raddr) &&
  110. !(inet->rcv_saddr && inet->rcv_saddr != laddr) &&
  111. !(sk->sk_bound_dev_if && sk->sk_bound_dev_if != dif))
  112. goto found; /* gotcha */
  113. }
  114. sk = NULL;
  115. found:
  116. return sk;
  117. }
  118. /*
  119. * 0 - deliver
  120. * 1 - block
  121. */
  122. static __inline__ int icmp_filter(struct sock *sk, struct sk_buff *skb)
  123. {
  124. int type;
  125. if (!pskb_may_pull(skb, sizeof(struct icmphdr)))
  126. return 1;
  127. type = icmp_hdr(skb)->type;
  128. if (type < 32) {
  129. __u32 data = raw_sk(sk)->filter.data;
  130. return ((1 << type) & data) != 0;
  131. }
  132. /* Do not block unknown ICMP types */
  133. return 0;
  134. }
  135. /* IP input processing comes here for RAW socket delivery.
  136. * Caller owns SKB, so we must make clones.
  137. *
  138. * RFC 1122: SHOULD pass TOS value up to the transport layer.
  139. * -> It does. And not only TOS, but all IP header.
  140. */
  141. static int raw_v4_input(struct sk_buff *skb, struct iphdr *iph, int hash)
  142. {
  143. struct sock *sk;
  144. struct hlist_head *head;
  145. int delivered = 0;
  146. struct net *net;
  147. read_lock(&raw_v4_hashinfo.lock);
  148. head = &raw_v4_hashinfo.ht[hash];
  149. if (hlist_empty(head))
  150. goto out;
  151. net = dev_net(skb->dev);
  152. sk = __raw_v4_lookup(net, __sk_head(head), iph->protocol,
  153. iph->saddr, iph->daddr,
  154. skb->dev->ifindex);
  155. while (sk) {
  156. delivered = 1;
  157. if (iph->protocol != IPPROTO_ICMP || !icmp_filter(sk, skb)) {
  158. struct sk_buff *clone = skb_clone(skb, GFP_ATOMIC);
  159. /* Not releasing hash table! */
  160. if (clone)
  161. raw_rcv(sk, clone);
  162. }
  163. sk = __raw_v4_lookup(net, sk_next(sk), iph->protocol,
  164. iph->saddr, iph->daddr,
  165. skb->dev->ifindex);
  166. }
  167. out:
  168. read_unlock(&raw_v4_hashinfo.lock);
  169. return delivered;
  170. }
  171. int raw_local_deliver(struct sk_buff *skb, int protocol)
  172. {
  173. int hash;
  174. struct sock *raw_sk;
  175. hash = protocol & (RAW_HTABLE_SIZE - 1);
  176. raw_sk = sk_head(&raw_v4_hashinfo.ht[hash]);
  177. /* If there maybe a raw socket we must check - if not we
  178. * don't care less
  179. */
  180. if (raw_sk && !raw_v4_input(skb, ip_hdr(skb), hash))
  181. raw_sk = NULL;
  182. return raw_sk != NULL;
  183. }
  184. static void raw_err(struct sock *sk, struct sk_buff *skb, u32 info)
  185. {
  186. struct inet_sock *inet = inet_sk(sk);
  187. const int type = icmp_hdr(skb)->type;
  188. const int code = icmp_hdr(skb)->code;
  189. int err = 0;
  190. int harderr = 0;
  191. /* Report error on raw socket, if:
  192. 1. User requested ip_recverr.
  193. 2. Socket is connected (otherwise the error indication
  194. is useless without ip_recverr and error is hard.
  195. */
  196. if (!inet->recverr && sk->sk_state != TCP_ESTABLISHED)
  197. return;
  198. switch (type) {
  199. default:
  200. case ICMP_TIME_EXCEEDED:
  201. err = EHOSTUNREACH;
  202. break;
  203. case ICMP_SOURCE_QUENCH:
  204. return;
  205. case ICMP_PARAMETERPROB:
  206. err = EPROTO;
  207. harderr = 1;
  208. break;
  209. case ICMP_DEST_UNREACH:
  210. err = EHOSTUNREACH;
  211. if (code > NR_ICMP_UNREACH)
  212. break;
  213. err = icmp_err_convert[code].errno;
  214. harderr = icmp_err_convert[code].fatal;
  215. if (code == ICMP_FRAG_NEEDED) {
  216. harderr = inet->pmtudisc != IP_PMTUDISC_DONT;
  217. err = EMSGSIZE;
  218. }
  219. }
  220. if (inet->recverr) {
  221. struct iphdr *iph = (struct iphdr *)skb->data;
  222. u8 *payload = skb->data + (iph->ihl << 2);
  223. if (inet->hdrincl)
  224. payload = skb->data;
  225. ip_icmp_error(sk, skb, err, 0, info, payload);
  226. }
  227. if (inet->recverr || harderr) {
  228. sk->sk_err = err;
  229. sk->sk_error_report(sk);
  230. }
  231. }
  232. void raw_icmp_error(struct sk_buff *skb, int protocol, u32 info)
  233. {
  234. int hash;
  235. struct sock *raw_sk;
  236. struct iphdr *iph;
  237. struct net *net;
  238. hash = protocol & (RAW_HTABLE_SIZE - 1);
  239. read_lock(&raw_v4_hashinfo.lock);
  240. raw_sk = sk_head(&raw_v4_hashinfo.ht[hash]);
  241. if (raw_sk != NULL) {
  242. iph = (struct iphdr *)skb->data;
  243. net = dev_net(skb->dev);
  244. while ((raw_sk = __raw_v4_lookup(net, raw_sk, protocol,
  245. iph->daddr, iph->saddr,
  246. skb->dev->ifindex)) != NULL) {
  247. raw_err(raw_sk, skb, info);
  248. raw_sk = sk_next(raw_sk);
  249. iph = (struct iphdr *)skb->data;
  250. }
  251. }
  252. read_unlock(&raw_v4_hashinfo.lock);
  253. }
  254. static int raw_rcv_skb(struct sock * sk, struct sk_buff * skb)
  255. {
  256. /* Charge it to the socket. */
  257. if (sock_queue_rcv_skb(sk, skb) < 0) {
  258. atomic_inc(&sk->sk_drops);
  259. kfree_skb(skb);
  260. return NET_RX_DROP;
  261. }
  262. return NET_RX_SUCCESS;
  263. }
  264. int raw_rcv(struct sock *sk, struct sk_buff *skb)
  265. {
  266. if (!xfrm4_policy_check(sk, XFRM_POLICY_IN, skb)) {
  267. atomic_inc(&sk->sk_drops);
  268. kfree_skb(skb);
  269. return NET_RX_DROP;
  270. }
  271. nf_reset(skb);
  272. skb_push(skb, skb->data - skb_network_header(skb));
  273. raw_rcv_skb(sk, skb);
  274. return 0;
  275. }
  276. static int raw_send_hdrinc(struct sock *sk, void *from, size_t length,
  277. struct rtable *rt,
  278. unsigned int flags)
  279. {
  280. struct inet_sock *inet = inet_sk(sk);
  281. struct net *net = sock_net(sk);
  282. struct iphdr *iph;
  283. struct sk_buff *skb;
  284. unsigned int iphlen;
  285. int err;
  286. if (length > rt->u.dst.dev->mtu) {
  287. ip_local_error(sk, EMSGSIZE, rt->rt_dst, inet->dport,
  288. rt->u.dst.dev->mtu);
  289. return -EMSGSIZE;
  290. }
  291. if (flags&MSG_PROBE)
  292. goto out;
  293. skb = sock_alloc_send_skb(sk,
  294. length + LL_ALLOCATED_SPACE(rt->u.dst.dev) + 15,
  295. flags & MSG_DONTWAIT, &err);
  296. if (skb == NULL)
  297. goto error;
  298. skb_reserve(skb, LL_RESERVED_SPACE(rt->u.dst.dev));
  299. skb->priority = sk->sk_priority;
  300. skb->mark = sk->sk_mark;
  301. skb_dst_set(skb, dst_clone(&rt->u.dst));
  302. skb_reset_network_header(skb);
  303. iph = ip_hdr(skb);
  304. skb_put(skb, length);
  305. skb->ip_summed = CHECKSUM_NONE;
  306. skb->transport_header = skb->network_header;
  307. err = memcpy_fromiovecend((void *)iph, from, 0, length);
  308. if (err)
  309. goto error_fault;
  310. /* We don't modify invalid header */
  311. iphlen = iph->ihl * 4;
  312. if (iphlen >= sizeof(*iph) && iphlen <= length) {
  313. if (!iph->saddr)
  314. iph->saddr = rt->rt_src;
  315. iph->check = 0;
  316. iph->tot_len = htons(length);
  317. if (!iph->id)
  318. ip_select_ident(iph, &rt->u.dst, NULL);
  319. iph->check = ip_fast_csum((unsigned char *)iph, iph->ihl);
  320. }
  321. if (iph->protocol == IPPROTO_ICMP)
  322. icmp_out_count(net, ((struct icmphdr *)
  323. skb_transport_header(skb))->type);
  324. err = NF_HOOK(PF_INET, NF_INET_LOCAL_OUT, skb, NULL, rt->u.dst.dev,
  325. dst_output);
  326. if (err > 0)
  327. err = net_xmit_errno(err);
  328. if (err)
  329. goto error;
  330. out:
  331. return 0;
  332. error_fault:
  333. err = -EFAULT;
  334. kfree_skb(skb);
  335. error:
  336. IP_INC_STATS(net, IPSTATS_MIB_OUTDISCARDS);
  337. if (err == -ENOBUFS && !inet->recverr)
  338. err = 0;
  339. return err;
  340. }
  341. static int raw_probe_proto_opt(struct flowi *fl, struct msghdr *msg)
  342. {
  343. struct iovec *iov;
  344. u8 __user *type = NULL;
  345. u8 __user *code = NULL;
  346. int probed = 0;
  347. unsigned int i;
  348. if (!msg->msg_iov)
  349. return 0;
  350. for (i = 0; i < msg->msg_iovlen; i++) {
  351. iov = &msg->msg_iov[i];
  352. if (!iov)
  353. continue;
  354. switch (fl->proto) {
  355. case IPPROTO_ICMP:
  356. /* check if one-byte field is readable or not. */
  357. if (iov->iov_base && iov->iov_len < 1)
  358. break;
  359. if (!type) {
  360. type = iov->iov_base;
  361. /* check if code field is readable or not. */
  362. if (iov->iov_len > 1)
  363. code = type + 1;
  364. } else if (!code)
  365. code = iov->iov_base;
  366. if (type && code) {
  367. if (get_user(fl->fl_icmp_type, type) ||
  368. get_user(fl->fl_icmp_code, code))
  369. return -EFAULT;
  370. probed = 1;
  371. }
  372. break;
  373. default:
  374. probed = 1;
  375. break;
  376. }
  377. if (probed)
  378. break;
  379. }
  380. return 0;
  381. }
  382. static int raw_sendmsg(struct kiocb *iocb, struct sock *sk, struct msghdr *msg,
  383. size_t len)
  384. {
  385. struct inet_sock *inet = inet_sk(sk);
  386. struct ipcm_cookie ipc;
  387. struct rtable *rt = NULL;
  388. int free = 0;
  389. __be32 daddr;
  390. __be32 saddr;
  391. u8 tos;
  392. int err;
  393. err = -EMSGSIZE;
  394. if (len > 0xFFFF)
  395. goto out;
  396. /*
  397. * Check the flags.
  398. */
  399. err = -EOPNOTSUPP;
  400. if (msg->msg_flags & MSG_OOB) /* Mirror BSD error message */
  401. goto out; /* compatibility */
  402. /*
  403. * Get and verify the address.
  404. */
  405. if (msg->msg_namelen) {
  406. struct sockaddr_in *usin = (struct sockaddr_in *)msg->msg_name;
  407. err = -EINVAL;
  408. if (msg->msg_namelen < sizeof(*usin))
  409. goto out;
  410. if (usin->sin_family != AF_INET) {
  411. static int complained;
  412. if (!complained++)
  413. printk(KERN_INFO "%s forgot to set AF_INET in "
  414. "raw sendmsg. Fix it!\n",
  415. current->comm);
  416. err = -EAFNOSUPPORT;
  417. if (usin->sin_family)
  418. goto out;
  419. }
  420. daddr = usin->sin_addr.s_addr;
  421. /* ANK: I did not forget to get protocol from port field.
  422. * I just do not know, who uses this weirdness.
  423. * IP_HDRINCL is much more convenient.
  424. */
  425. } else {
  426. err = -EDESTADDRREQ;
  427. if (sk->sk_state != TCP_ESTABLISHED)
  428. goto out;
  429. daddr = inet->daddr;
  430. }
  431. ipc.addr = inet->saddr;
  432. ipc.opt = NULL;
  433. ipc.shtx.flags = 0;
  434. ipc.oif = sk->sk_bound_dev_if;
  435. if (msg->msg_controllen) {
  436. err = ip_cmsg_send(sock_net(sk), msg, &ipc);
  437. if (err)
  438. goto out;
  439. if (ipc.opt)
  440. free = 1;
  441. }
  442. saddr = ipc.addr;
  443. ipc.addr = daddr;
  444. if (!ipc.opt)
  445. ipc.opt = inet->opt;
  446. if (ipc.opt) {
  447. err = -EINVAL;
  448. /* Linux does not mangle headers on raw sockets,
  449. * so that IP options + IP_HDRINCL is non-sense.
  450. */
  451. if (inet->hdrincl)
  452. goto done;
  453. if (ipc.opt->srr) {
  454. if (!daddr)
  455. goto done;
  456. daddr = ipc.opt->faddr;
  457. }
  458. }
  459. tos = RT_CONN_FLAGS(sk);
  460. if (msg->msg_flags & MSG_DONTROUTE)
  461. tos |= RTO_ONLINK;
  462. if (ipv4_is_multicast(daddr)) {
  463. if (!ipc.oif)
  464. ipc.oif = inet->mc_index;
  465. if (!saddr)
  466. saddr = inet->mc_addr;
  467. }
  468. {
  469. struct flowi fl = { .oif = ipc.oif,
  470. .mark = sk->sk_mark,
  471. .nl_u = { .ip4_u =
  472. { .daddr = daddr,
  473. .saddr = saddr,
  474. .tos = tos } },
  475. .proto = inet->hdrincl ? IPPROTO_RAW :
  476. sk->sk_protocol,
  477. };
  478. if (!inet->hdrincl) {
  479. err = raw_probe_proto_opt(&fl, msg);
  480. if (err)
  481. goto done;
  482. }
  483. security_sk_classify_flow(sk, &fl);
  484. err = ip_route_output_flow(sock_net(sk), &rt, &fl, sk, 1);
  485. }
  486. if (err)
  487. goto done;
  488. err = -EACCES;
  489. if (rt->rt_flags & RTCF_BROADCAST && !sock_flag(sk, SOCK_BROADCAST))
  490. goto done;
  491. if (msg->msg_flags & MSG_CONFIRM)
  492. goto do_confirm;
  493. back_from_confirm:
  494. if (inet->hdrincl)
  495. err = raw_send_hdrinc(sk, msg->msg_iov, len,
  496. rt, msg->msg_flags);
  497. else {
  498. if (!ipc.addr)
  499. ipc.addr = rt->rt_dst;
  500. lock_sock(sk);
  501. err = ip_append_data(sk, ip_generic_getfrag, msg->msg_iov, len, 0,
  502. &ipc, &rt, msg->msg_flags);
  503. if (err)
  504. ip_flush_pending_frames(sk);
  505. else if (!(msg->msg_flags & MSG_MORE)) {
  506. err = ip_push_pending_frames(sk);
  507. if (err == -ENOBUFS && !inet->recverr)
  508. err = 0;
  509. }
  510. release_sock(sk);
  511. }
  512. done:
  513. if (free)
  514. kfree(ipc.opt);
  515. ip_rt_put(rt);
  516. out:
  517. if (err < 0)
  518. return err;
  519. return len;
  520. do_confirm:
  521. dst_confirm(&rt->u.dst);
  522. if (!(msg->msg_flags & MSG_PROBE) || len)
  523. goto back_from_confirm;
  524. err = 0;
  525. goto done;
  526. }
  527. static void raw_close(struct sock *sk, long timeout)
  528. {
  529. /*
  530. * Raw sockets may have direct kernel refereneces. Kill them.
  531. */
  532. ip_ra_control(sk, 0, NULL);
  533. sk_common_release(sk);
  534. }
  535. static void raw_destroy(struct sock *sk)
  536. {
  537. lock_sock(sk);
  538. ip_flush_pending_frames(sk);
  539. release_sock(sk);
  540. }
  541. /* This gets rid of all the nasties in af_inet. -DaveM */
  542. static int raw_bind(struct sock *sk, struct sockaddr *uaddr, int addr_len)
  543. {
  544. struct inet_sock *inet = inet_sk(sk);
  545. struct sockaddr_in *addr = (struct sockaddr_in *) uaddr;
  546. int ret = -EINVAL;
  547. int chk_addr_ret;
  548. if (sk->sk_state != TCP_CLOSE || addr_len < sizeof(struct sockaddr_in))
  549. goto out;
  550. chk_addr_ret = inet_addr_type(sock_net(sk), addr->sin_addr.s_addr);
  551. ret = -EADDRNOTAVAIL;
  552. if (addr->sin_addr.s_addr && chk_addr_ret != RTN_LOCAL &&
  553. chk_addr_ret != RTN_MULTICAST && chk_addr_ret != RTN_BROADCAST)
  554. goto out;
  555. inet->rcv_saddr = inet->saddr = addr->sin_addr.s_addr;
  556. if (chk_addr_ret == RTN_MULTICAST || chk_addr_ret == RTN_BROADCAST)
  557. inet->saddr = 0; /* Use device */
  558. sk_dst_reset(sk);
  559. ret = 0;
  560. out: return ret;
  561. }
  562. /*
  563. * This should be easy, if there is something there
  564. * we return it, otherwise we block.
  565. */
  566. static int raw_recvmsg(struct kiocb *iocb, struct sock *sk, struct msghdr *msg,
  567. size_t len, int noblock, int flags, int *addr_len)
  568. {
  569. struct inet_sock *inet = inet_sk(sk);
  570. size_t copied = 0;
  571. int err = -EOPNOTSUPP;
  572. struct sockaddr_in *sin = (struct sockaddr_in *)msg->msg_name;
  573. struct sk_buff *skb;
  574. if (flags & MSG_OOB)
  575. goto out;
  576. if (addr_len)
  577. *addr_len = sizeof(*sin);
  578. if (flags & MSG_ERRQUEUE) {
  579. err = ip_recv_error(sk, msg, len);
  580. goto out;
  581. }
  582. skb = skb_recv_datagram(sk, flags, noblock, &err);
  583. if (!skb)
  584. goto out;
  585. copied = skb->len;
  586. if (len < copied) {
  587. msg->msg_flags |= MSG_TRUNC;
  588. copied = len;
  589. }
  590. err = skb_copy_datagram_iovec(skb, 0, msg->msg_iov, copied);
  591. if (err)
  592. goto done;
  593. sock_recv_timestamp(msg, sk, skb);
  594. /* Copy the address. */
  595. if (sin) {
  596. sin->sin_family = AF_INET;
  597. sin->sin_addr.s_addr = ip_hdr(skb)->saddr;
  598. sin->sin_port = 0;
  599. memset(&sin->sin_zero, 0, sizeof(sin->sin_zero));
  600. }
  601. if (inet->cmsg_flags)
  602. ip_cmsg_recv(msg, skb);
  603. if (flags & MSG_TRUNC)
  604. copied = skb->len;
  605. done:
  606. skb_free_datagram(sk, skb);
  607. out:
  608. if (err)
  609. return err;
  610. return copied;
  611. }
  612. static int raw_init(struct sock *sk)
  613. {
  614. struct raw_sock *rp = raw_sk(sk);
  615. if (inet_sk(sk)->num == IPPROTO_ICMP)
  616. memset(&rp->filter, 0, sizeof(rp->filter));
  617. return 0;
  618. }
  619. static int raw_seticmpfilter(struct sock *sk, char __user *optval, int optlen)
  620. {
  621. if (optlen > sizeof(struct icmp_filter))
  622. optlen = sizeof(struct icmp_filter);
  623. if (copy_from_user(&raw_sk(sk)->filter, optval, optlen))
  624. return -EFAULT;
  625. return 0;
  626. }
  627. static int raw_geticmpfilter(struct sock *sk, char __user *optval, int __user *optlen)
  628. {
  629. int len, ret = -EFAULT;
  630. if (get_user(len, optlen))
  631. goto out;
  632. ret = -EINVAL;
  633. if (len < 0)
  634. goto out;
  635. if (len > sizeof(struct icmp_filter))
  636. len = sizeof(struct icmp_filter);
  637. ret = -EFAULT;
  638. if (put_user(len, optlen) ||
  639. copy_to_user(optval, &raw_sk(sk)->filter, len))
  640. goto out;
  641. ret = 0;
  642. out: return ret;
  643. }
  644. static int do_raw_setsockopt(struct sock *sk, int level, int optname,
  645. char __user *optval, int optlen)
  646. {
  647. if (optname == ICMP_FILTER) {
  648. if (inet_sk(sk)->num != IPPROTO_ICMP)
  649. return -EOPNOTSUPP;
  650. else
  651. return raw_seticmpfilter(sk, optval, optlen);
  652. }
  653. return -ENOPROTOOPT;
  654. }
  655. static int raw_setsockopt(struct sock *sk, int level, int optname,
  656. char __user *optval, int optlen)
  657. {
  658. if (level != SOL_RAW)
  659. return ip_setsockopt(sk, level, optname, optval, optlen);
  660. return do_raw_setsockopt(sk, level, optname, optval, optlen);
  661. }
  662. #ifdef CONFIG_COMPAT
  663. static int compat_raw_setsockopt(struct sock *sk, int level, int optname,
  664. char __user *optval, int optlen)
  665. {
  666. if (level != SOL_RAW)
  667. return compat_ip_setsockopt(sk, level, optname, optval, optlen);
  668. return do_raw_setsockopt(sk, level, optname, optval, optlen);
  669. }
  670. #endif
  671. static int do_raw_getsockopt(struct sock *sk, int level, int optname,
  672. char __user *optval, int __user *optlen)
  673. {
  674. if (optname == ICMP_FILTER) {
  675. if (inet_sk(sk)->num != IPPROTO_ICMP)
  676. return -EOPNOTSUPP;
  677. else
  678. return raw_geticmpfilter(sk, optval, optlen);
  679. }
  680. return -ENOPROTOOPT;
  681. }
  682. static int raw_getsockopt(struct sock *sk, int level, int optname,
  683. char __user *optval, int __user *optlen)
  684. {
  685. if (level != SOL_RAW)
  686. return ip_getsockopt(sk, level, optname, optval, optlen);
  687. return do_raw_getsockopt(sk, level, optname, optval, optlen);
  688. }
  689. #ifdef CONFIG_COMPAT
  690. static int compat_raw_getsockopt(struct sock *sk, int level, int optname,
  691. char __user *optval, int __user *optlen)
  692. {
  693. if (level != SOL_RAW)
  694. return compat_ip_getsockopt(sk, level, optname, optval, optlen);
  695. return do_raw_getsockopt(sk, level, optname, optval, optlen);
  696. }
  697. #endif
  698. static int raw_ioctl(struct sock *sk, int cmd, unsigned long arg)
  699. {
  700. switch (cmd) {
  701. case SIOCOUTQ: {
  702. int amount = sk_wmem_alloc_get(sk);
  703. return put_user(amount, (int __user *)arg);
  704. }
  705. case SIOCINQ: {
  706. struct sk_buff *skb;
  707. int amount = 0;
  708. spin_lock_bh(&sk->sk_receive_queue.lock);
  709. skb = skb_peek(&sk->sk_receive_queue);
  710. if (skb != NULL)
  711. amount = skb->len;
  712. spin_unlock_bh(&sk->sk_receive_queue.lock);
  713. return put_user(amount, (int __user *)arg);
  714. }
  715. default:
  716. #ifdef CONFIG_IP_MROUTE
  717. return ipmr_ioctl(sk, cmd, (void __user *)arg);
  718. #else
  719. return -ENOIOCTLCMD;
  720. #endif
  721. }
  722. }
  723. struct proto raw_prot = {
  724. .name = "RAW",
  725. .owner = THIS_MODULE,
  726. .close = raw_close,
  727. .destroy = raw_destroy,
  728. .connect = ip4_datagram_connect,
  729. .disconnect = udp_disconnect,
  730. .ioctl = raw_ioctl,
  731. .init = raw_init,
  732. .setsockopt = raw_setsockopt,
  733. .getsockopt = raw_getsockopt,
  734. .sendmsg = raw_sendmsg,
  735. .recvmsg = raw_recvmsg,
  736. .bind = raw_bind,
  737. .backlog_rcv = raw_rcv_skb,
  738. .hash = raw_hash_sk,
  739. .unhash = raw_unhash_sk,
  740. .obj_size = sizeof(struct raw_sock),
  741. .h.raw_hash = &raw_v4_hashinfo,
  742. #ifdef CONFIG_COMPAT
  743. .compat_setsockopt = compat_raw_setsockopt,
  744. .compat_getsockopt = compat_raw_getsockopt,
  745. #endif
  746. };
  747. #ifdef CONFIG_PROC_FS
  748. static struct sock *raw_get_first(struct seq_file *seq)
  749. {
  750. struct sock *sk;
  751. struct raw_iter_state *state = raw_seq_private(seq);
  752. for (state->bucket = 0; state->bucket < RAW_HTABLE_SIZE;
  753. ++state->bucket) {
  754. struct hlist_node *node;
  755. sk_for_each(sk, node, &state->h->ht[state->bucket])
  756. if (sock_net(sk) == seq_file_net(seq))
  757. goto found;
  758. }
  759. sk = NULL;
  760. found:
  761. return sk;
  762. }
  763. static struct sock *raw_get_next(struct seq_file *seq, struct sock *sk)
  764. {
  765. struct raw_iter_state *state = raw_seq_private(seq);
  766. do {
  767. sk = sk_next(sk);
  768. try_again:
  769. ;
  770. } while (sk && sock_net(sk) != seq_file_net(seq));
  771. if (!sk && ++state->bucket < RAW_HTABLE_SIZE) {
  772. sk = sk_head(&state->h->ht[state->bucket]);
  773. goto try_again;
  774. }
  775. return sk;
  776. }
  777. static struct sock *raw_get_idx(struct seq_file *seq, loff_t pos)
  778. {
  779. struct sock *sk = raw_get_first(seq);
  780. if (sk)
  781. while (pos && (sk = raw_get_next(seq, sk)) != NULL)
  782. --pos;
  783. return pos ? NULL : sk;
  784. }
  785. void *raw_seq_start(struct seq_file *seq, loff_t *pos)
  786. {
  787. struct raw_iter_state *state = raw_seq_private(seq);
  788. read_lock(&state->h->lock);
  789. return *pos ? raw_get_idx(seq, *pos - 1) : SEQ_START_TOKEN;
  790. }
  791. EXPORT_SYMBOL_GPL(raw_seq_start);
  792. void *raw_seq_next(struct seq_file *seq, void *v, loff_t *pos)
  793. {
  794. struct sock *sk;
  795. if (v == SEQ_START_TOKEN)
  796. sk = raw_get_first(seq);
  797. else
  798. sk = raw_get_next(seq, v);
  799. ++*pos;
  800. return sk;
  801. }
  802. EXPORT_SYMBOL_GPL(raw_seq_next);
  803. void raw_seq_stop(struct seq_file *seq, void *v)
  804. {
  805. struct raw_iter_state *state = raw_seq_private(seq);
  806. read_unlock(&state->h->lock);
  807. }
  808. EXPORT_SYMBOL_GPL(raw_seq_stop);
  809. static void raw_sock_seq_show(struct seq_file *seq, struct sock *sp, int i)
  810. {
  811. struct inet_sock *inet = inet_sk(sp);
  812. __be32 dest = inet->daddr,
  813. src = inet->rcv_saddr;
  814. __u16 destp = 0,
  815. srcp = inet->num;
  816. seq_printf(seq, "%4d: %08X:%04X %08X:%04X"
  817. " %02X %08X:%08X %02X:%08lX %08X %5d %8d %lu %d %p %d\n",
  818. i, src, srcp, dest, destp, sp->sk_state,
  819. sk_wmem_alloc_get(sp),
  820. sk_rmem_alloc_get(sp),
  821. 0, 0L, 0, sock_i_uid(sp), 0, sock_i_ino(sp),
  822. atomic_read(&sp->sk_refcnt), sp, atomic_read(&sp->sk_drops));
  823. }
  824. static int raw_seq_show(struct seq_file *seq, void *v)
  825. {
  826. if (v == SEQ_START_TOKEN)
  827. seq_printf(seq, " sl local_address rem_address st tx_queue "
  828. "rx_queue tr tm->when retrnsmt uid timeout "
  829. "inode ref pointer drops\n");
  830. else
  831. raw_sock_seq_show(seq, v, raw_seq_private(seq)->bucket);
  832. return 0;
  833. }
  834. static const struct seq_operations raw_seq_ops = {
  835. .start = raw_seq_start,
  836. .next = raw_seq_next,
  837. .stop = raw_seq_stop,
  838. .show = raw_seq_show,
  839. };
  840. int raw_seq_open(struct inode *ino, struct file *file,
  841. struct raw_hashinfo *h, const struct seq_operations *ops)
  842. {
  843. int err;
  844. struct raw_iter_state *i;
  845. err = seq_open_net(ino, file, ops, sizeof(struct raw_iter_state));
  846. if (err < 0)
  847. return err;
  848. i = raw_seq_private((struct seq_file *)file->private_data);
  849. i->h = h;
  850. return 0;
  851. }
  852. EXPORT_SYMBOL_GPL(raw_seq_open);
  853. static int raw_v4_seq_open(struct inode *inode, struct file *file)
  854. {
  855. return raw_seq_open(inode, file, &raw_v4_hashinfo, &raw_seq_ops);
  856. }
  857. static const struct file_operations raw_seq_fops = {
  858. .owner = THIS_MODULE,
  859. .open = raw_v4_seq_open,
  860. .read = seq_read,
  861. .llseek = seq_lseek,
  862. .release = seq_release_net,
  863. };
  864. static __net_init int raw_init_net(struct net *net)
  865. {
  866. if (!proc_net_fops_create(net, "raw", S_IRUGO, &raw_seq_fops))
  867. return -ENOMEM;
  868. return 0;
  869. }
  870. static __net_exit void raw_exit_net(struct net *net)
  871. {
  872. proc_net_remove(net, "raw");
  873. }
  874. static __net_initdata struct pernet_operations raw_net_ops = {
  875. .init = raw_init_net,
  876. .exit = raw_exit_net,
  877. };
  878. int __init raw_proc_init(void)
  879. {
  880. return register_pernet_subsys(&raw_net_ops);
  881. }
  882. void __init raw_proc_exit(void)
  883. {
  884. unregister_pernet_subsys(&raw_net_ops);
  885. }
  886. #endif /* CONFIG_PROC_FS */