dn_route.c 45 KB

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  1. /*
  2. * DECnet An implementation of the DECnet protocol suite for the LINUX
  3. * operating system. DECnet is implemented using the BSD Socket
  4. * interface as the means of communication with the user level.
  5. *
  6. * DECnet Routing Functions (Endnode and Router)
  7. *
  8. * Authors: Steve Whitehouse <SteveW@ACM.org>
  9. * Eduardo Marcelo Serrat <emserrat@geocities.com>
  10. *
  11. * Changes:
  12. * Steve Whitehouse : Fixes to allow "intra-ethernet" and
  13. * "return-to-sender" bits on outgoing
  14. * packets.
  15. * Steve Whitehouse : Timeouts for cached routes.
  16. * Steve Whitehouse : Use dst cache for input routes too.
  17. * Steve Whitehouse : Fixed error values in dn_send_skb.
  18. * Steve Whitehouse : Rework routing functions to better fit
  19. * DECnet routing design
  20. * Alexey Kuznetsov : New SMP locking
  21. * Steve Whitehouse : More SMP locking changes & dn_cache_dump()
  22. * Steve Whitehouse : Prerouting NF hook, now really is prerouting.
  23. * Fixed possible skb leak in rtnetlink funcs.
  24. * Steve Whitehouse : Dave Miller's dynamic hash table sizing and
  25. * Alexey Kuznetsov's finer grained locking
  26. * from ipv4/route.c.
  27. * Steve Whitehouse : Routing is now starting to look like a
  28. * sensible set of code now, mainly due to
  29. * my copying the IPv4 routing code. The
  30. * hooks here are modified and will continue
  31. * to evolve for a while.
  32. * Steve Whitehouse : Real SMP at last :-) Also new netfilter
  33. * stuff. Look out raw sockets your days
  34. * are numbered!
  35. * Steve Whitehouse : Added return-to-sender functions. Added
  36. * backlog congestion level return codes.
  37. * Steve Whitehouse : Fixed bug where routes were set up with
  38. * no ref count on net devices.
  39. * Steve Whitehouse : RCU for the route cache
  40. * Steve Whitehouse : Preparations for the flow cache
  41. * Steve Whitehouse : Prepare for nonlinear skbs
  42. */
  43. /******************************************************************************
  44. (c) 1995-1998 E.M. Serrat emserrat@geocities.com
  45. This program is free software; you can redistribute it and/or modify
  46. it under the terms of the GNU General Public License as published by
  47. the Free Software Foundation; either version 2 of the License, or
  48. any later version.
  49. This program is distributed in the hope that it will be useful,
  50. but WITHOUT ANY WARRANTY; without even the implied warranty of
  51. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  52. GNU General Public License for more details.
  53. *******************************************************************************/
  54. #include <linux/errno.h>
  55. #include <linux/types.h>
  56. #include <linux/socket.h>
  57. #include <linux/in.h>
  58. #include <linux/kernel.h>
  59. #include <linux/sockios.h>
  60. #include <linux/net.h>
  61. #include <linux/netdevice.h>
  62. #include <linux/inet.h>
  63. #include <linux/route.h>
  64. #include <linux/in_route.h>
  65. #include <net/sock.h>
  66. #include <linux/mm.h>
  67. #include <linux/proc_fs.h>
  68. #include <linux/seq_file.h>
  69. #include <linux/init.h>
  70. #include <linux/rtnetlink.h>
  71. #include <linux/string.h>
  72. #include <linux/netfilter_decnet.h>
  73. #include <linux/rcupdate.h>
  74. #include <linux/times.h>
  75. #include <asm/errno.h>
  76. #include <net/neighbour.h>
  77. #include <net/dst.h>
  78. #include <net/flow.h>
  79. #include <net/dn.h>
  80. #include <net/dn_dev.h>
  81. #include <net/dn_nsp.h>
  82. #include <net/dn_route.h>
  83. #include <net/dn_neigh.h>
  84. #include <net/dn_fib.h>
  85. struct dn_rt_hash_bucket
  86. {
  87. struct dn_route *chain;
  88. spinlock_t lock;
  89. } __attribute__((__aligned__(8)));
  90. extern struct neigh_table dn_neigh_table;
  91. static unsigned char dn_hiord_addr[6] = {0xAA,0x00,0x04,0x00,0x00,0x00};
  92. static const int dn_rt_min_delay = 2 * HZ;
  93. static const int dn_rt_max_delay = 10 * HZ;
  94. static const int dn_rt_mtu_expires = 10 * 60 * HZ;
  95. static unsigned long dn_rt_deadline;
  96. static int dn_dst_gc(void);
  97. static struct dst_entry *dn_dst_check(struct dst_entry *, __u32);
  98. static struct dst_entry *dn_dst_negative_advice(struct dst_entry *);
  99. static void dn_dst_link_failure(struct sk_buff *);
  100. static void dn_dst_update_pmtu(struct dst_entry *dst, u32 mtu);
  101. static int dn_route_input(struct sk_buff *);
  102. static void dn_run_flush(unsigned long dummy);
  103. static struct dn_rt_hash_bucket *dn_rt_hash_table;
  104. static unsigned dn_rt_hash_mask;
  105. static struct timer_list dn_route_timer;
  106. static DEFINE_TIMER(dn_rt_flush_timer, dn_run_flush, 0, 0);
  107. int decnet_dst_gc_interval = 2;
  108. static struct dst_ops dn_dst_ops = {
  109. .family = PF_DECnet,
  110. .protocol = __constant_htons(ETH_P_DNA_RT),
  111. .gc_thresh = 128,
  112. .gc = dn_dst_gc,
  113. .check = dn_dst_check,
  114. .negative_advice = dn_dst_negative_advice,
  115. .link_failure = dn_dst_link_failure,
  116. .update_pmtu = dn_dst_update_pmtu,
  117. .entry_size = sizeof(struct dn_route),
  118. .entries = ATOMIC_INIT(0),
  119. };
  120. static __inline__ unsigned dn_hash(__le16 src, __le16 dst)
  121. {
  122. __u16 tmp = (__u16 __force)(src ^ dst);
  123. tmp ^= (tmp >> 3);
  124. tmp ^= (tmp >> 5);
  125. tmp ^= (tmp >> 10);
  126. return dn_rt_hash_mask & (unsigned)tmp;
  127. }
  128. static inline void dnrt_free(struct dn_route *rt)
  129. {
  130. call_rcu_bh(&rt->u.dst.rcu_head, dst_rcu_free);
  131. }
  132. static inline void dnrt_drop(struct dn_route *rt)
  133. {
  134. dst_release(&rt->u.dst);
  135. call_rcu_bh(&rt->u.dst.rcu_head, dst_rcu_free);
  136. }
  137. static void dn_dst_check_expire(unsigned long dummy)
  138. {
  139. int i;
  140. struct dn_route *rt, **rtp;
  141. unsigned long now = jiffies;
  142. unsigned long expire = 120 * HZ;
  143. for(i = 0; i <= dn_rt_hash_mask; i++) {
  144. rtp = &dn_rt_hash_table[i].chain;
  145. spin_lock(&dn_rt_hash_table[i].lock);
  146. while((rt=*rtp) != NULL) {
  147. if (atomic_read(&rt->u.dst.__refcnt) ||
  148. (now - rt->u.dst.lastuse) < expire) {
  149. rtp = &rt->u.rt_next;
  150. continue;
  151. }
  152. *rtp = rt->u.rt_next;
  153. rt->u.rt_next = NULL;
  154. dnrt_free(rt);
  155. }
  156. spin_unlock(&dn_rt_hash_table[i].lock);
  157. if ((jiffies - now) > 0)
  158. break;
  159. }
  160. mod_timer(&dn_route_timer, now + decnet_dst_gc_interval * HZ);
  161. }
  162. static int dn_dst_gc(void)
  163. {
  164. struct dn_route *rt, **rtp;
  165. int i;
  166. unsigned long now = jiffies;
  167. unsigned long expire = 10 * HZ;
  168. for(i = 0; i <= dn_rt_hash_mask; i++) {
  169. spin_lock_bh(&dn_rt_hash_table[i].lock);
  170. rtp = &dn_rt_hash_table[i].chain;
  171. while((rt=*rtp) != NULL) {
  172. if (atomic_read(&rt->u.dst.__refcnt) ||
  173. (now - rt->u.dst.lastuse) < expire) {
  174. rtp = &rt->u.rt_next;
  175. continue;
  176. }
  177. *rtp = rt->u.rt_next;
  178. rt->u.rt_next = NULL;
  179. dnrt_drop(rt);
  180. break;
  181. }
  182. spin_unlock_bh(&dn_rt_hash_table[i].lock);
  183. }
  184. return 0;
  185. }
  186. /*
  187. * The decnet standards don't impose a particular minimum mtu, what they
  188. * do insist on is that the routing layer accepts a datagram of at least
  189. * 230 bytes long. Here we have to subtract the routing header length from
  190. * 230 to get the minimum acceptable mtu. If there is no neighbour, then we
  191. * assume the worst and use a long header size.
  192. *
  193. * We update both the mtu and the advertised mss (i.e. the segment size we
  194. * advertise to the other end).
  195. */
  196. static void dn_dst_update_pmtu(struct dst_entry *dst, u32 mtu)
  197. {
  198. u32 min_mtu = 230;
  199. struct dn_dev *dn = dst->neighbour ?
  200. (struct dn_dev *)dst->neighbour->dev->dn_ptr : NULL;
  201. if (dn && dn->use_long == 0)
  202. min_mtu -= 6;
  203. else
  204. min_mtu -= 21;
  205. if (dst->metrics[RTAX_MTU-1] > mtu && mtu >= min_mtu) {
  206. if (!(dst_metric_locked(dst, RTAX_MTU))) {
  207. dst->metrics[RTAX_MTU-1] = mtu;
  208. dst_set_expires(dst, dn_rt_mtu_expires);
  209. }
  210. if (!(dst_metric_locked(dst, RTAX_ADVMSS))) {
  211. u32 mss = mtu - DN_MAX_NSP_DATA_HEADER;
  212. if (dst->metrics[RTAX_ADVMSS-1] > mss)
  213. dst->metrics[RTAX_ADVMSS-1] = mss;
  214. }
  215. }
  216. }
  217. /*
  218. * When a route has been marked obsolete. (e.g. routing cache flush)
  219. */
  220. static struct dst_entry *dn_dst_check(struct dst_entry *dst, __u32 cookie)
  221. {
  222. return NULL;
  223. }
  224. static struct dst_entry *dn_dst_negative_advice(struct dst_entry *dst)
  225. {
  226. dst_release(dst);
  227. return NULL;
  228. }
  229. static void dn_dst_link_failure(struct sk_buff *skb)
  230. {
  231. return;
  232. }
  233. static inline int compare_keys(struct flowi *fl1, struct flowi *fl2)
  234. {
  235. return memcmp(&fl1->nl_u.dn_u, &fl2->nl_u.dn_u, sizeof(fl1->nl_u.dn_u)) == 0 &&
  236. fl1->oif == fl2->oif &&
  237. fl1->iif == fl2->iif;
  238. }
  239. static int dn_insert_route(struct dn_route *rt, unsigned hash, struct dn_route **rp)
  240. {
  241. struct dn_route *rth, **rthp;
  242. unsigned long now = jiffies;
  243. rthp = &dn_rt_hash_table[hash].chain;
  244. spin_lock_bh(&dn_rt_hash_table[hash].lock);
  245. while((rth = *rthp) != NULL) {
  246. if (compare_keys(&rth->fl, &rt->fl)) {
  247. /* Put it first */
  248. *rthp = rth->u.rt_next;
  249. rcu_assign_pointer(rth->u.rt_next,
  250. dn_rt_hash_table[hash].chain);
  251. rcu_assign_pointer(dn_rt_hash_table[hash].chain, rth);
  252. rth->u.dst.__use++;
  253. dst_hold(&rth->u.dst);
  254. rth->u.dst.lastuse = now;
  255. spin_unlock_bh(&dn_rt_hash_table[hash].lock);
  256. dnrt_drop(rt);
  257. *rp = rth;
  258. return 0;
  259. }
  260. rthp = &rth->u.rt_next;
  261. }
  262. rcu_assign_pointer(rt->u.rt_next, dn_rt_hash_table[hash].chain);
  263. rcu_assign_pointer(dn_rt_hash_table[hash].chain, rt);
  264. dst_hold(&rt->u.dst);
  265. rt->u.dst.__use++;
  266. rt->u.dst.lastuse = now;
  267. spin_unlock_bh(&dn_rt_hash_table[hash].lock);
  268. *rp = rt;
  269. return 0;
  270. }
  271. void dn_run_flush(unsigned long dummy)
  272. {
  273. int i;
  274. struct dn_route *rt, *next;
  275. for(i = 0; i < dn_rt_hash_mask; i++) {
  276. spin_lock_bh(&dn_rt_hash_table[i].lock);
  277. if ((rt = xchg(&dn_rt_hash_table[i].chain, NULL)) == NULL)
  278. goto nothing_to_declare;
  279. for(; rt; rt=next) {
  280. next = rt->u.rt_next;
  281. rt->u.rt_next = NULL;
  282. dst_free((struct dst_entry *)rt);
  283. }
  284. nothing_to_declare:
  285. spin_unlock_bh(&dn_rt_hash_table[i].lock);
  286. }
  287. }
  288. static DEFINE_SPINLOCK(dn_rt_flush_lock);
  289. void dn_rt_cache_flush(int delay)
  290. {
  291. unsigned long now = jiffies;
  292. int user_mode = !in_interrupt();
  293. if (delay < 0)
  294. delay = dn_rt_min_delay;
  295. spin_lock_bh(&dn_rt_flush_lock);
  296. if (del_timer(&dn_rt_flush_timer) && delay > 0 && dn_rt_deadline) {
  297. long tmo = (long)(dn_rt_deadline - now);
  298. if (user_mode && tmo < dn_rt_max_delay - dn_rt_min_delay)
  299. tmo = 0;
  300. if (delay > tmo)
  301. delay = tmo;
  302. }
  303. if (delay <= 0) {
  304. spin_unlock_bh(&dn_rt_flush_lock);
  305. dn_run_flush(0);
  306. return;
  307. }
  308. if (dn_rt_deadline == 0)
  309. dn_rt_deadline = now + dn_rt_max_delay;
  310. dn_rt_flush_timer.expires = now + delay;
  311. add_timer(&dn_rt_flush_timer);
  312. spin_unlock_bh(&dn_rt_flush_lock);
  313. }
  314. /**
  315. * dn_return_short - Return a short packet to its sender
  316. * @skb: The packet to return
  317. *
  318. */
  319. static int dn_return_short(struct sk_buff *skb)
  320. {
  321. struct dn_skb_cb *cb;
  322. unsigned char *ptr;
  323. __le16 *src;
  324. __le16 *dst;
  325. __le16 tmp;
  326. /* Add back headers */
  327. skb_push(skb, skb->data - skb->nh.raw);
  328. if ((skb = skb_unshare(skb, GFP_ATOMIC)) == NULL)
  329. return NET_RX_DROP;
  330. cb = DN_SKB_CB(skb);
  331. /* Skip packet length and point to flags */
  332. ptr = skb->data + 2;
  333. *ptr++ = (cb->rt_flags & ~DN_RT_F_RQR) | DN_RT_F_RTS;
  334. dst = (__le16 *)ptr;
  335. ptr += 2;
  336. src = (__le16 *)ptr;
  337. ptr += 2;
  338. *ptr = 0; /* Zero hop count */
  339. /* Swap source and destination */
  340. tmp = *src;
  341. *src = *dst;
  342. *dst = tmp;
  343. skb->pkt_type = PACKET_OUTGOING;
  344. dn_rt_finish_output(skb, NULL, NULL);
  345. return NET_RX_SUCCESS;
  346. }
  347. /**
  348. * dn_return_long - Return a long packet to its sender
  349. * @skb: The long format packet to return
  350. *
  351. */
  352. static int dn_return_long(struct sk_buff *skb)
  353. {
  354. struct dn_skb_cb *cb;
  355. unsigned char *ptr;
  356. unsigned char *src_addr, *dst_addr;
  357. unsigned char tmp[ETH_ALEN];
  358. /* Add back all headers */
  359. skb_push(skb, skb->data - skb->nh.raw);
  360. if ((skb = skb_unshare(skb, GFP_ATOMIC)) == NULL)
  361. return NET_RX_DROP;
  362. cb = DN_SKB_CB(skb);
  363. /* Ignore packet length and point to flags */
  364. ptr = skb->data + 2;
  365. /* Skip padding */
  366. if (*ptr & DN_RT_F_PF) {
  367. char padlen = (*ptr & ~DN_RT_F_PF);
  368. ptr += padlen;
  369. }
  370. *ptr++ = (cb->rt_flags & ~DN_RT_F_RQR) | DN_RT_F_RTS;
  371. ptr += 2;
  372. dst_addr = ptr;
  373. ptr += 8;
  374. src_addr = ptr;
  375. ptr += 6;
  376. *ptr = 0; /* Zero hop count */
  377. /* Swap source and destination */
  378. memcpy(tmp, src_addr, ETH_ALEN);
  379. memcpy(src_addr, dst_addr, ETH_ALEN);
  380. memcpy(dst_addr, tmp, ETH_ALEN);
  381. skb->pkt_type = PACKET_OUTGOING;
  382. dn_rt_finish_output(skb, dst_addr, src_addr);
  383. return NET_RX_SUCCESS;
  384. }
  385. /**
  386. * dn_route_rx_packet - Try and find a route for an incoming packet
  387. * @skb: The packet to find a route for
  388. *
  389. * Returns: result of input function if route is found, error code otherwise
  390. */
  391. static int dn_route_rx_packet(struct sk_buff *skb)
  392. {
  393. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  394. int err;
  395. if ((err = dn_route_input(skb)) == 0)
  396. return dst_input(skb);
  397. if (decnet_debug_level & 4) {
  398. char *devname = skb->dev ? skb->dev->name : "???";
  399. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  400. printk(KERN_DEBUG
  401. "DECnet: dn_route_rx_packet: rt_flags=0x%02x dev=%s len=%d src=0x%04hx dst=0x%04hx err=%d type=%d\n",
  402. (int)cb->rt_flags, devname, skb->len,
  403. dn_ntohs(cb->src), dn_ntohs(cb->dst),
  404. err, skb->pkt_type);
  405. }
  406. if ((skb->pkt_type == PACKET_HOST) && (cb->rt_flags & DN_RT_F_RQR)) {
  407. switch(cb->rt_flags & DN_RT_PKT_MSK) {
  408. case DN_RT_PKT_SHORT:
  409. return dn_return_short(skb);
  410. case DN_RT_PKT_LONG:
  411. return dn_return_long(skb);
  412. }
  413. }
  414. kfree_skb(skb);
  415. return NET_RX_DROP;
  416. }
  417. static int dn_route_rx_long(struct sk_buff *skb)
  418. {
  419. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  420. unsigned char *ptr = skb->data;
  421. if (!pskb_may_pull(skb, 21)) /* 20 for long header, 1 for shortest nsp */
  422. goto drop_it;
  423. skb_pull(skb, 20);
  424. skb->h.raw = skb->data;
  425. /* Destination info */
  426. ptr += 2;
  427. cb->dst = dn_eth2dn(ptr);
  428. if (memcmp(ptr, dn_hiord_addr, 4) != 0)
  429. goto drop_it;
  430. ptr += 6;
  431. /* Source info */
  432. ptr += 2;
  433. cb->src = dn_eth2dn(ptr);
  434. if (memcmp(ptr, dn_hiord_addr, 4) != 0)
  435. goto drop_it;
  436. ptr += 6;
  437. /* Other junk */
  438. ptr++;
  439. cb->hops = *ptr++; /* Visit Count */
  440. return NF_HOOK(PF_DECnet, NF_DN_PRE_ROUTING, skb, skb->dev, NULL, dn_route_rx_packet);
  441. drop_it:
  442. kfree_skb(skb);
  443. return NET_RX_DROP;
  444. }
  445. static int dn_route_rx_short(struct sk_buff *skb)
  446. {
  447. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  448. unsigned char *ptr = skb->data;
  449. if (!pskb_may_pull(skb, 6)) /* 5 for short header + 1 for shortest nsp */
  450. goto drop_it;
  451. skb_pull(skb, 5);
  452. skb->h.raw = skb->data;
  453. cb->dst = *(__le16 *)ptr;
  454. ptr += 2;
  455. cb->src = *(__le16 *)ptr;
  456. ptr += 2;
  457. cb->hops = *ptr & 0x3f;
  458. return NF_HOOK(PF_DECnet, NF_DN_PRE_ROUTING, skb, skb->dev, NULL, dn_route_rx_packet);
  459. drop_it:
  460. kfree_skb(skb);
  461. return NET_RX_DROP;
  462. }
  463. static int dn_route_discard(struct sk_buff *skb)
  464. {
  465. /*
  466. * I know we drop the packet here, but thats considered success in
  467. * this case
  468. */
  469. kfree_skb(skb);
  470. return NET_RX_SUCCESS;
  471. }
  472. static int dn_route_ptp_hello(struct sk_buff *skb)
  473. {
  474. dn_dev_hello(skb);
  475. dn_neigh_pointopoint_hello(skb);
  476. return NET_RX_SUCCESS;
  477. }
  478. int dn_route_rcv(struct sk_buff *skb, struct net_device *dev, struct packet_type *pt, struct net_device *orig_dev)
  479. {
  480. struct dn_skb_cb *cb;
  481. unsigned char flags = 0;
  482. __u16 len = dn_ntohs(*(__le16 *)skb->data);
  483. struct dn_dev *dn = (struct dn_dev *)dev->dn_ptr;
  484. unsigned char padlen = 0;
  485. if (dn == NULL)
  486. goto dump_it;
  487. if ((skb = skb_share_check(skb, GFP_ATOMIC)) == NULL)
  488. goto out;
  489. if (!pskb_may_pull(skb, 3))
  490. goto dump_it;
  491. skb_pull(skb, 2);
  492. if (len > skb->len)
  493. goto dump_it;
  494. skb_trim(skb, len);
  495. flags = *skb->data;
  496. cb = DN_SKB_CB(skb);
  497. cb->stamp = jiffies;
  498. cb->iif = dev->ifindex;
  499. /*
  500. * If we have padding, remove it.
  501. */
  502. if (flags & DN_RT_F_PF) {
  503. padlen = flags & ~DN_RT_F_PF;
  504. if (!pskb_may_pull(skb, padlen + 1))
  505. goto dump_it;
  506. skb_pull(skb, padlen);
  507. flags = *skb->data;
  508. }
  509. skb->nh.raw = skb->data;
  510. /*
  511. * Weed out future version DECnet
  512. */
  513. if (flags & DN_RT_F_VER)
  514. goto dump_it;
  515. cb->rt_flags = flags;
  516. if (decnet_debug_level & 1)
  517. printk(KERN_DEBUG
  518. "dn_route_rcv: got 0x%02x from %s [%d %d %d]\n",
  519. (int)flags, (dev) ? dev->name : "???", len, skb->len,
  520. padlen);
  521. if (flags & DN_RT_PKT_CNTL) {
  522. if (unlikely(skb_linearize(skb)))
  523. goto dump_it;
  524. switch(flags & DN_RT_CNTL_MSK) {
  525. case DN_RT_PKT_INIT:
  526. dn_dev_init_pkt(skb);
  527. break;
  528. case DN_RT_PKT_VERI:
  529. dn_dev_veri_pkt(skb);
  530. break;
  531. }
  532. if (dn->parms.state != DN_DEV_S_RU)
  533. goto dump_it;
  534. switch(flags & DN_RT_CNTL_MSK) {
  535. case DN_RT_PKT_HELO:
  536. return NF_HOOK(PF_DECnet, NF_DN_HELLO, skb, skb->dev, NULL, dn_route_ptp_hello);
  537. case DN_RT_PKT_L1RT:
  538. case DN_RT_PKT_L2RT:
  539. return NF_HOOK(PF_DECnet, NF_DN_ROUTE, skb, skb->dev, NULL, dn_route_discard);
  540. case DN_RT_PKT_ERTH:
  541. return NF_HOOK(PF_DECnet, NF_DN_HELLO, skb, skb->dev, NULL, dn_neigh_router_hello);
  542. case DN_RT_PKT_EEDH:
  543. return NF_HOOK(PF_DECnet, NF_DN_HELLO, skb, skb->dev, NULL, dn_neigh_endnode_hello);
  544. }
  545. } else {
  546. if (dn->parms.state != DN_DEV_S_RU)
  547. goto dump_it;
  548. skb_pull(skb, 1); /* Pull flags */
  549. switch(flags & DN_RT_PKT_MSK) {
  550. case DN_RT_PKT_LONG:
  551. return dn_route_rx_long(skb);
  552. case DN_RT_PKT_SHORT:
  553. return dn_route_rx_short(skb);
  554. }
  555. }
  556. dump_it:
  557. kfree_skb(skb);
  558. out:
  559. return NET_RX_DROP;
  560. }
  561. static int dn_output(struct sk_buff *skb)
  562. {
  563. struct dst_entry *dst = skb->dst;
  564. struct dn_route *rt = (struct dn_route *)dst;
  565. struct net_device *dev = dst->dev;
  566. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  567. struct neighbour *neigh;
  568. int err = -EINVAL;
  569. if ((neigh = dst->neighbour) == NULL)
  570. goto error;
  571. skb->dev = dev;
  572. cb->src = rt->rt_saddr;
  573. cb->dst = rt->rt_daddr;
  574. /*
  575. * Always set the Intra-Ethernet bit on all outgoing packets
  576. * originated on this node. Only valid flag from upper layers
  577. * is return-to-sender-requested. Set hop count to 0 too.
  578. */
  579. cb->rt_flags &= ~DN_RT_F_RQR;
  580. cb->rt_flags |= DN_RT_F_IE;
  581. cb->hops = 0;
  582. return NF_HOOK(PF_DECnet, NF_DN_LOCAL_OUT, skb, NULL, dev, neigh->output);
  583. error:
  584. if (net_ratelimit())
  585. printk(KERN_DEBUG "dn_output: This should not happen\n");
  586. kfree_skb(skb);
  587. return err;
  588. }
  589. static int dn_forward(struct sk_buff *skb)
  590. {
  591. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  592. struct dst_entry *dst = skb->dst;
  593. struct dn_dev *dn_db = dst->dev->dn_ptr;
  594. struct dn_route *rt;
  595. struct neighbour *neigh = dst->neighbour;
  596. int header_len;
  597. #ifdef CONFIG_NETFILTER
  598. struct net_device *dev = skb->dev;
  599. #endif
  600. if (skb->pkt_type != PACKET_HOST)
  601. goto drop;
  602. /* Ensure that we have enough space for headers */
  603. rt = (struct dn_route *)skb->dst;
  604. header_len = dn_db->use_long ? 21 : 6;
  605. if (skb_cow(skb, LL_RESERVED_SPACE(rt->u.dst.dev)+header_len))
  606. goto drop;
  607. /*
  608. * Hop count exceeded.
  609. */
  610. if (++cb->hops > 30)
  611. goto drop;
  612. skb->dev = rt->u.dst.dev;
  613. /*
  614. * If packet goes out same interface it came in on, then set
  615. * the Intra-Ethernet bit. This has no effect for short
  616. * packets, so we don't need to test for them here.
  617. */
  618. cb->rt_flags &= ~DN_RT_F_IE;
  619. if (rt->rt_flags & RTCF_DOREDIRECT)
  620. cb->rt_flags |= DN_RT_F_IE;
  621. return NF_HOOK(PF_DECnet, NF_DN_FORWARD, skb, dev, skb->dev, neigh->output);
  622. drop:
  623. kfree_skb(skb);
  624. return NET_RX_DROP;
  625. }
  626. /*
  627. * Drop packet. This is used for endnodes and for
  628. * when we should not be forwarding packets from
  629. * this dest.
  630. */
  631. static int dn_blackhole(struct sk_buff *skb)
  632. {
  633. kfree_skb(skb);
  634. return NET_RX_DROP;
  635. }
  636. /*
  637. * Used to catch bugs. This should never normally get
  638. * called.
  639. */
  640. static int dn_rt_bug(struct sk_buff *skb)
  641. {
  642. if (net_ratelimit()) {
  643. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  644. printk(KERN_DEBUG "dn_rt_bug: skb from:%04x to:%04x\n",
  645. dn_ntohs(cb->src), dn_ntohs(cb->dst));
  646. }
  647. kfree_skb(skb);
  648. return NET_RX_BAD;
  649. }
  650. static int dn_rt_set_next_hop(struct dn_route *rt, struct dn_fib_res *res)
  651. {
  652. struct dn_fib_info *fi = res->fi;
  653. struct net_device *dev = rt->u.dst.dev;
  654. struct neighbour *n;
  655. unsigned mss;
  656. if (fi) {
  657. if (DN_FIB_RES_GW(*res) &&
  658. DN_FIB_RES_NH(*res).nh_scope == RT_SCOPE_LINK)
  659. rt->rt_gateway = DN_FIB_RES_GW(*res);
  660. memcpy(rt->u.dst.metrics, fi->fib_metrics,
  661. sizeof(rt->u.dst.metrics));
  662. }
  663. rt->rt_type = res->type;
  664. if (dev != NULL && rt->u.dst.neighbour == NULL) {
  665. n = __neigh_lookup_errno(&dn_neigh_table, &rt->rt_gateway, dev);
  666. if (IS_ERR(n))
  667. return PTR_ERR(n);
  668. rt->u.dst.neighbour = n;
  669. }
  670. if (rt->u.dst.metrics[RTAX_MTU-1] == 0 ||
  671. rt->u.dst.metrics[RTAX_MTU-1] > rt->u.dst.dev->mtu)
  672. rt->u.dst.metrics[RTAX_MTU-1] = rt->u.dst.dev->mtu;
  673. mss = dn_mss_from_pmtu(dev, dst_mtu(&rt->u.dst));
  674. if (rt->u.dst.metrics[RTAX_ADVMSS-1] == 0 ||
  675. rt->u.dst.metrics[RTAX_ADVMSS-1] > mss)
  676. rt->u.dst.metrics[RTAX_ADVMSS-1] = mss;
  677. return 0;
  678. }
  679. static inline int dn_match_addr(__le16 addr1, __le16 addr2)
  680. {
  681. __u16 tmp = dn_ntohs(addr1) ^ dn_ntohs(addr2);
  682. int match = 16;
  683. while(tmp) {
  684. tmp >>= 1;
  685. match--;
  686. }
  687. return match;
  688. }
  689. static __le16 dnet_select_source(const struct net_device *dev, __le16 daddr, int scope)
  690. {
  691. __le16 saddr = 0;
  692. struct dn_dev *dn_db = dev->dn_ptr;
  693. struct dn_ifaddr *ifa;
  694. int best_match = 0;
  695. int ret;
  696. read_lock(&dev_base_lock);
  697. for(ifa = dn_db->ifa_list; ifa; ifa = ifa->ifa_next) {
  698. if (ifa->ifa_scope > scope)
  699. continue;
  700. if (!daddr) {
  701. saddr = ifa->ifa_local;
  702. break;
  703. }
  704. ret = dn_match_addr(daddr, ifa->ifa_local);
  705. if (ret > best_match)
  706. saddr = ifa->ifa_local;
  707. if (best_match == 0)
  708. saddr = ifa->ifa_local;
  709. }
  710. read_unlock(&dev_base_lock);
  711. return saddr;
  712. }
  713. static inline __le16 __dn_fib_res_prefsrc(struct dn_fib_res *res)
  714. {
  715. return dnet_select_source(DN_FIB_RES_DEV(*res), DN_FIB_RES_GW(*res), res->scope);
  716. }
  717. static inline __le16 dn_fib_rules_map_destination(__le16 daddr, struct dn_fib_res *res)
  718. {
  719. __le16 mask = dnet_make_mask(res->prefixlen);
  720. return (daddr&~mask)|res->fi->fib_nh->nh_gw;
  721. }
  722. static int dn_route_output_slow(struct dst_entry **pprt, const struct flowi *oldflp, int try_hard)
  723. {
  724. struct flowi fl = { .nl_u = { .dn_u =
  725. { .daddr = oldflp->fld_dst,
  726. .saddr = oldflp->fld_src,
  727. .scope = RT_SCOPE_UNIVERSE,
  728. #ifdef CONFIG_DECNET_ROUTE_FWMARK
  729. .fwmark = oldflp->fld_fwmark
  730. #endif
  731. } },
  732. .iif = loopback_dev.ifindex,
  733. .oif = oldflp->oif };
  734. struct dn_route *rt = NULL;
  735. struct net_device *dev_out = NULL;
  736. struct neighbour *neigh = NULL;
  737. unsigned hash;
  738. unsigned flags = 0;
  739. struct dn_fib_res res = { .fi = NULL, .type = RTN_UNICAST };
  740. int err;
  741. int free_res = 0;
  742. __le16 gateway = 0;
  743. if (decnet_debug_level & 16)
  744. printk(KERN_DEBUG
  745. "dn_route_output_slow: dst=%04x src=%04x mark=%d"
  746. " iif=%d oif=%d\n", dn_ntohs(oldflp->fld_dst),
  747. dn_ntohs(oldflp->fld_src),
  748. oldflp->fld_fwmark, loopback_dev.ifindex, oldflp->oif);
  749. /* If we have an output interface, verify its a DECnet device */
  750. if (oldflp->oif) {
  751. dev_out = dev_get_by_index(oldflp->oif);
  752. err = -ENODEV;
  753. if (dev_out && dev_out->dn_ptr == NULL) {
  754. dev_put(dev_out);
  755. dev_out = NULL;
  756. }
  757. if (dev_out == NULL)
  758. goto out;
  759. }
  760. /* If we have a source address, verify that its a local address */
  761. if (oldflp->fld_src) {
  762. err = -EADDRNOTAVAIL;
  763. if (dev_out) {
  764. if (dn_dev_islocal(dev_out, oldflp->fld_src))
  765. goto source_ok;
  766. dev_put(dev_out);
  767. goto out;
  768. }
  769. read_lock(&dev_base_lock);
  770. for(dev_out = dev_base; dev_out; dev_out = dev_out->next) {
  771. if (!dev_out->dn_ptr)
  772. continue;
  773. if (!dn_dev_islocal(dev_out, oldflp->fld_src))
  774. continue;
  775. if ((dev_out->flags & IFF_LOOPBACK) &&
  776. oldflp->fld_dst &&
  777. !dn_dev_islocal(dev_out, oldflp->fld_dst))
  778. continue;
  779. break;
  780. }
  781. read_unlock(&dev_base_lock);
  782. if (dev_out == NULL)
  783. goto out;
  784. dev_hold(dev_out);
  785. source_ok:
  786. ;
  787. }
  788. /* No destination? Assume its local */
  789. if (!fl.fld_dst) {
  790. fl.fld_dst = fl.fld_src;
  791. err = -EADDRNOTAVAIL;
  792. if (dev_out)
  793. dev_put(dev_out);
  794. dev_out = &loopback_dev;
  795. dev_hold(dev_out);
  796. if (!fl.fld_dst) {
  797. fl.fld_dst =
  798. fl.fld_src = dnet_select_source(dev_out, 0,
  799. RT_SCOPE_HOST);
  800. if (!fl.fld_dst)
  801. goto out;
  802. }
  803. fl.oif = loopback_dev.ifindex;
  804. res.type = RTN_LOCAL;
  805. goto make_route;
  806. }
  807. if (decnet_debug_level & 16)
  808. printk(KERN_DEBUG
  809. "dn_route_output_slow: initial checks complete."
  810. " dst=%o4x src=%04x oif=%d try_hard=%d\n",
  811. dn_ntohs(fl.fld_dst), dn_ntohs(fl.fld_src),
  812. fl.oif, try_hard);
  813. /*
  814. * N.B. If the kernel is compiled without router support then
  815. * dn_fib_lookup() will evaluate to non-zero so this if () block
  816. * will always be executed.
  817. */
  818. err = -ESRCH;
  819. if (try_hard || (err = dn_fib_lookup(&fl, &res)) != 0) {
  820. struct dn_dev *dn_db;
  821. if (err != -ESRCH)
  822. goto out;
  823. /*
  824. * Here the fallback is basically the standard algorithm for
  825. * routing in endnodes which is described in the DECnet routing
  826. * docs
  827. *
  828. * If we are not trying hard, look in neighbour cache.
  829. * The result is tested to ensure that if a specific output
  830. * device/source address was requested, then we honour that
  831. * here
  832. */
  833. if (!try_hard) {
  834. neigh = neigh_lookup_nodev(&dn_neigh_table, &fl.fld_dst);
  835. if (neigh) {
  836. if ((oldflp->oif &&
  837. (neigh->dev->ifindex != oldflp->oif)) ||
  838. (oldflp->fld_src &&
  839. (!dn_dev_islocal(neigh->dev,
  840. oldflp->fld_src)))) {
  841. neigh_release(neigh);
  842. neigh = NULL;
  843. } else {
  844. if (dev_out)
  845. dev_put(dev_out);
  846. if (dn_dev_islocal(neigh->dev, fl.fld_dst)) {
  847. dev_out = &loopback_dev;
  848. res.type = RTN_LOCAL;
  849. } else {
  850. dev_out = neigh->dev;
  851. }
  852. dev_hold(dev_out);
  853. goto select_source;
  854. }
  855. }
  856. }
  857. /* Not there? Perhaps its a local address */
  858. if (dev_out == NULL)
  859. dev_out = dn_dev_get_default();
  860. err = -ENODEV;
  861. if (dev_out == NULL)
  862. goto out;
  863. dn_db = dev_out->dn_ptr;
  864. /* Possible improvement - check all devices for local addr */
  865. if (dn_dev_islocal(dev_out, fl.fld_dst)) {
  866. dev_put(dev_out);
  867. dev_out = &loopback_dev;
  868. dev_hold(dev_out);
  869. res.type = RTN_LOCAL;
  870. goto select_source;
  871. }
  872. /* Not local either.... try sending it to the default router */
  873. neigh = neigh_clone(dn_db->router);
  874. BUG_ON(neigh && neigh->dev != dev_out);
  875. /* Ok then, we assume its directly connected and move on */
  876. select_source:
  877. if (neigh)
  878. gateway = ((struct dn_neigh *)neigh)->addr;
  879. if (gateway == 0)
  880. gateway = fl.fld_dst;
  881. if (fl.fld_src == 0) {
  882. fl.fld_src = dnet_select_source(dev_out, gateway,
  883. res.type == RTN_LOCAL ?
  884. RT_SCOPE_HOST :
  885. RT_SCOPE_LINK);
  886. if (fl.fld_src == 0 && res.type != RTN_LOCAL)
  887. goto e_addr;
  888. }
  889. fl.oif = dev_out->ifindex;
  890. goto make_route;
  891. }
  892. free_res = 1;
  893. if (res.type == RTN_NAT)
  894. goto e_inval;
  895. if (res.type == RTN_LOCAL) {
  896. if (!fl.fld_src)
  897. fl.fld_src = fl.fld_dst;
  898. if (dev_out)
  899. dev_put(dev_out);
  900. dev_out = &loopback_dev;
  901. dev_hold(dev_out);
  902. fl.oif = dev_out->ifindex;
  903. if (res.fi)
  904. dn_fib_info_put(res.fi);
  905. res.fi = NULL;
  906. goto make_route;
  907. }
  908. if (res.fi->fib_nhs > 1 && fl.oif == 0)
  909. dn_fib_select_multipath(&fl, &res);
  910. /*
  911. * We could add some logic to deal with default routes here and
  912. * get rid of some of the special casing above.
  913. */
  914. if (!fl.fld_src)
  915. fl.fld_src = DN_FIB_RES_PREFSRC(res);
  916. if (dev_out)
  917. dev_put(dev_out);
  918. dev_out = DN_FIB_RES_DEV(res);
  919. dev_hold(dev_out);
  920. fl.oif = dev_out->ifindex;
  921. gateway = DN_FIB_RES_GW(res);
  922. make_route:
  923. if (dev_out->flags & IFF_LOOPBACK)
  924. flags |= RTCF_LOCAL;
  925. rt = dst_alloc(&dn_dst_ops);
  926. if (rt == NULL)
  927. goto e_nobufs;
  928. atomic_set(&rt->u.dst.__refcnt, 1);
  929. rt->u.dst.flags = DST_HOST;
  930. rt->fl.fld_src = oldflp->fld_src;
  931. rt->fl.fld_dst = oldflp->fld_dst;
  932. rt->fl.oif = oldflp->oif;
  933. rt->fl.iif = 0;
  934. #ifdef CONFIG_DECNET_ROUTE_FWMARK
  935. rt->fl.fld_fwmark = oldflp->fld_fwmark;
  936. #endif
  937. rt->rt_saddr = fl.fld_src;
  938. rt->rt_daddr = fl.fld_dst;
  939. rt->rt_gateway = gateway ? gateway : fl.fld_dst;
  940. rt->rt_local_src = fl.fld_src;
  941. rt->rt_dst_map = fl.fld_dst;
  942. rt->rt_src_map = fl.fld_src;
  943. rt->u.dst.dev = dev_out;
  944. dev_hold(dev_out);
  945. rt->u.dst.neighbour = neigh;
  946. neigh = NULL;
  947. rt->u.dst.lastuse = jiffies;
  948. rt->u.dst.output = dn_output;
  949. rt->u.dst.input = dn_rt_bug;
  950. rt->rt_flags = flags;
  951. if (flags & RTCF_LOCAL)
  952. rt->u.dst.input = dn_nsp_rx;
  953. err = dn_rt_set_next_hop(rt, &res);
  954. if (err)
  955. goto e_neighbour;
  956. hash = dn_hash(rt->fl.fld_src, rt->fl.fld_dst);
  957. dn_insert_route(rt, hash, (struct dn_route **)pprt);
  958. done:
  959. if (neigh)
  960. neigh_release(neigh);
  961. if (free_res)
  962. dn_fib_res_put(&res);
  963. if (dev_out)
  964. dev_put(dev_out);
  965. out:
  966. return err;
  967. e_addr:
  968. err = -EADDRNOTAVAIL;
  969. goto done;
  970. e_inval:
  971. err = -EINVAL;
  972. goto done;
  973. e_nobufs:
  974. err = -ENOBUFS;
  975. goto done;
  976. e_neighbour:
  977. dst_free(&rt->u.dst);
  978. goto e_nobufs;
  979. }
  980. /*
  981. * N.B. The flags may be moved into the flowi at some future stage.
  982. */
  983. static int __dn_route_output_key(struct dst_entry **pprt, const struct flowi *flp, int flags)
  984. {
  985. unsigned hash = dn_hash(flp->fld_src, flp->fld_dst);
  986. struct dn_route *rt = NULL;
  987. if (!(flags & MSG_TRYHARD)) {
  988. rcu_read_lock_bh();
  989. for(rt = rcu_dereference(dn_rt_hash_table[hash].chain); rt;
  990. rt = rcu_dereference(rt->u.rt_next)) {
  991. if ((flp->fld_dst == rt->fl.fld_dst) &&
  992. (flp->fld_src == rt->fl.fld_src) &&
  993. #ifdef CONFIG_DECNET_ROUTE_FWMARK
  994. (flp->fld_fwmark == rt->fl.fld_fwmark) &&
  995. #endif
  996. (rt->fl.iif == 0) &&
  997. (rt->fl.oif == flp->oif)) {
  998. rt->u.dst.lastuse = jiffies;
  999. dst_hold(&rt->u.dst);
  1000. rt->u.dst.__use++;
  1001. rcu_read_unlock_bh();
  1002. *pprt = &rt->u.dst;
  1003. return 0;
  1004. }
  1005. }
  1006. rcu_read_unlock_bh();
  1007. }
  1008. return dn_route_output_slow(pprt, flp, flags);
  1009. }
  1010. static int dn_route_output_key(struct dst_entry **pprt, struct flowi *flp, int flags)
  1011. {
  1012. int err;
  1013. err = __dn_route_output_key(pprt, flp, flags);
  1014. if (err == 0 && flp->proto) {
  1015. err = xfrm_lookup(pprt, flp, NULL, 0);
  1016. }
  1017. return err;
  1018. }
  1019. int dn_route_output_sock(struct dst_entry **pprt, struct flowi *fl, struct sock *sk, int flags)
  1020. {
  1021. int err;
  1022. err = __dn_route_output_key(pprt, fl, flags & MSG_TRYHARD);
  1023. if (err == 0 && fl->proto) {
  1024. err = xfrm_lookup(pprt, fl, sk, !(flags & MSG_DONTWAIT));
  1025. }
  1026. return err;
  1027. }
  1028. static int dn_route_input_slow(struct sk_buff *skb)
  1029. {
  1030. struct dn_route *rt = NULL;
  1031. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  1032. struct net_device *in_dev = skb->dev;
  1033. struct net_device *out_dev = NULL;
  1034. struct dn_dev *dn_db;
  1035. struct neighbour *neigh = NULL;
  1036. unsigned hash;
  1037. int flags = 0;
  1038. __le16 gateway = 0;
  1039. __le16 local_src = 0;
  1040. struct flowi fl = { .nl_u = { .dn_u =
  1041. { .daddr = cb->dst,
  1042. .saddr = cb->src,
  1043. .scope = RT_SCOPE_UNIVERSE,
  1044. #ifdef CONFIG_DECNET_ROUTE_FWMARK
  1045. .fwmark = skb->nfmark
  1046. #endif
  1047. } },
  1048. .iif = skb->dev->ifindex };
  1049. struct dn_fib_res res = { .fi = NULL, .type = RTN_UNREACHABLE };
  1050. int err = -EINVAL;
  1051. int free_res = 0;
  1052. dev_hold(in_dev);
  1053. if ((dn_db = in_dev->dn_ptr) == NULL)
  1054. goto out;
  1055. /* Zero source addresses are not allowed */
  1056. if (fl.fld_src == 0)
  1057. goto out;
  1058. /*
  1059. * In this case we've just received a packet from a source
  1060. * outside ourselves pretending to come from us. We don't
  1061. * allow it any further to prevent routing loops, spoofing and
  1062. * other nasties. Loopback packets already have the dst attached
  1063. * so this only affects packets which have originated elsewhere.
  1064. */
  1065. err = -ENOTUNIQ;
  1066. if (dn_dev_islocal(in_dev, cb->src))
  1067. goto out;
  1068. err = dn_fib_lookup(&fl, &res);
  1069. if (err) {
  1070. if (err != -ESRCH)
  1071. goto out;
  1072. /*
  1073. * Is the destination us ?
  1074. */
  1075. if (!dn_dev_islocal(in_dev, cb->dst))
  1076. goto e_inval;
  1077. res.type = RTN_LOCAL;
  1078. flags |= RTCF_DIRECTSRC;
  1079. } else {
  1080. __le16 src_map = fl.fld_src;
  1081. free_res = 1;
  1082. out_dev = DN_FIB_RES_DEV(res);
  1083. if (out_dev == NULL) {
  1084. if (net_ratelimit())
  1085. printk(KERN_CRIT "Bug in dn_route_input_slow() "
  1086. "No output device\n");
  1087. goto e_inval;
  1088. }
  1089. dev_hold(out_dev);
  1090. if (res.r)
  1091. src_map = dn_fib_rules_policy(fl.fld_src, &res, &flags);
  1092. gateway = DN_FIB_RES_GW(res);
  1093. if (res.type == RTN_NAT) {
  1094. fl.fld_dst = dn_fib_rules_map_destination(fl.fld_dst, &res);
  1095. dn_fib_res_put(&res);
  1096. free_res = 0;
  1097. if (dn_fib_lookup(&fl, &res))
  1098. goto e_inval;
  1099. free_res = 1;
  1100. if (res.type != RTN_UNICAST)
  1101. goto e_inval;
  1102. flags |= RTCF_DNAT;
  1103. gateway = fl.fld_dst;
  1104. }
  1105. fl.fld_src = src_map;
  1106. }
  1107. switch(res.type) {
  1108. case RTN_UNICAST:
  1109. /*
  1110. * Forwarding check here, we only check for forwarding
  1111. * being turned off, if you want to only forward intra
  1112. * area, its up to you to set the routing tables up
  1113. * correctly.
  1114. */
  1115. if (dn_db->parms.forwarding == 0)
  1116. goto e_inval;
  1117. if (res.fi->fib_nhs > 1 && fl.oif == 0)
  1118. dn_fib_select_multipath(&fl, &res);
  1119. /*
  1120. * Check for out_dev == in_dev. We use the RTCF_DOREDIRECT
  1121. * flag as a hint to set the intra-ethernet bit when
  1122. * forwarding. If we've got NAT in operation, we don't do
  1123. * this optimisation.
  1124. */
  1125. if (out_dev == in_dev && !(flags & RTCF_NAT))
  1126. flags |= RTCF_DOREDIRECT;
  1127. local_src = DN_FIB_RES_PREFSRC(res);
  1128. case RTN_BLACKHOLE:
  1129. case RTN_UNREACHABLE:
  1130. break;
  1131. case RTN_LOCAL:
  1132. flags |= RTCF_LOCAL;
  1133. fl.fld_src = cb->dst;
  1134. fl.fld_dst = cb->src;
  1135. /* Routing tables gave us a gateway */
  1136. if (gateway)
  1137. goto make_route;
  1138. /* Packet was intra-ethernet, so we know its on-link */
  1139. if (cb->rt_flags | DN_RT_F_IE) {
  1140. gateway = cb->src;
  1141. flags |= RTCF_DIRECTSRC;
  1142. goto make_route;
  1143. }
  1144. /* Use the default router if there is one */
  1145. neigh = neigh_clone(dn_db->router);
  1146. if (neigh) {
  1147. gateway = ((struct dn_neigh *)neigh)->addr;
  1148. goto make_route;
  1149. }
  1150. /* Close eyes and pray */
  1151. gateway = cb->src;
  1152. flags |= RTCF_DIRECTSRC;
  1153. goto make_route;
  1154. default:
  1155. goto e_inval;
  1156. }
  1157. make_route:
  1158. rt = dst_alloc(&dn_dst_ops);
  1159. if (rt == NULL)
  1160. goto e_nobufs;
  1161. rt->rt_saddr = fl.fld_src;
  1162. rt->rt_daddr = fl.fld_dst;
  1163. rt->rt_gateway = fl.fld_dst;
  1164. if (gateway)
  1165. rt->rt_gateway = gateway;
  1166. rt->rt_local_src = local_src ? local_src : rt->rt_saddr;
  1167. rt->rt_dst_map = fl.fld_dst;
  1168. rt->rt_src_map = fl.fld_src;
  1169. rt->fl.fld_src = cb->src;
  1170. rt->fl.fld_dst = cb->dst;
  1171. rt->fl.oif = 0;
  1172. rt->fl.iif = in_dev->ifindex;
  1173. rt->fl.fld_fwmark = fl.fld_fwmark;
  1174. rt->u.dst.flags = DST_HOST;
  1175. rt->u.dst.neighbour = neigh;
  1176. rt->u.dst.dev = out_dev;
  1177. rt->u.dst.lastuse = jiffies;
  1178. rt->u.dst.output = dn_rt_bug;
  1179. switch(res.type) {
  1180. case RTN_UNICAST:
  1181. rt->u.dst.input = dn_forward;
  1182. break;
  1183. case RTN_LOCAL:
  1184. rt->u.dst.output = dn_output;
  1185. rt->u.dst.input = dn_nsp_rx;
  1186. rt->u.dst.dev = in_dev;
  1187. flags |= RTCF_LOCAL;
  1188. break;
  1189. default:
  1190. case RTN_UNREACHABLE:
  1191. case RTN_BLACKHOLE:
  1192. rt->u.dst.input = dn_blackhole;
  1193. }
  1194. rt->rt_flags = flags;
  1195. if (rt->u.dst.dev)
  1196. dev_hold(rt->u.dst.dev);
  1197. err = dn_rt_set_next_hop(rt, &res);
  1198. if (err)
  1199. goto e_neighbour;
  1200. hash = dn_hash(rt->fl.fld_src, rt->fl.fld_dst);
  1201. dn_insert_route(rt, hash, (struct dn_route **)&skb->dst);
  1202. done:
  1203. if (neigh)
  1204. neigh_release(neigh);
  1205. if (free_res)
  1206. dn_fib_res_put(&res);
  1207. dev_put(in_dev);
  1208. if (out_dev)
  1209. dev_put(out_dev);
  1210. out:
  1211. return err;
  1212. e_inval:
  1213. err = -EINVAL;
  1214. goto done;
  1215. e_nobufs:
  1216. err = -ENOBUFS;
  1217. goto done;
  1218. e_neighbour:
  1219. dst_free(&rt->u.dst);
  1220. goto done;
  1221. }
  1222. int dn_route_input(struct sk_buff *skb)
  1223. {
  1224. struct dn_route *rt;
  1225. struct dn_skb_cb *cb = DN_SKB_CB(skb);
  1226. unsigned hash = dn_hash(cb->src, cb->dst);
  1227. if (skb->dst)
  1228. return 0;
  1229. rcu_read_lock();
  1230. for(rt = rcu_dereference(dn_rt_hash_table[hash].chain); rt != NULL;
  1231. rt = rcu_dereference(rt->u.rt_next)) {
  1232. if ((rt->fl.fld_src == cb->src) &&
  1233. (rt->fl.fld_dst == cb->dst) &&
  1234. (rt->fl.oif == 0) &&
  1235. #ifdef CONFIG_DECNET_ROUTE_FWMARK
  1236. (rt->fl.fld_fwmark == skb->nfmark) &&
  1237. #endif
  1238. (rt->fl.iif == cb->iif)) {
  1239. rt->u.dst.lastuse = jiffies;
  1240. dst_hold(&rt->u.dst);
  1241. rt->u.dst.__use++;
  1242. rcu_read_unlock();
  1243. skb->dst = (struct dst_entry *)rt;
  1244. return 0;
  1245. }
  1246. }
  1247. rcu_read_unlock();
  1248. return dn_route_input_slow(skb);
  1249. }
  1250. static int dn_rt_fill_info(struct sk_buff *skb, u32 pid, u32 seq,
  1251. int event, int nowait, unsigned int flags)
  1252. {
  1253. struct dn_route *rt = (struct dn_route *)skb->dst;
  1254. struct rtmsg *r;
  1255. struct nlmsghdr *nlh;
  1256. unsigned char *b = skb->tail;
  1257. struct rta_cacheinfo ci;
  1258. nlh = NLMSG_NEW(skb, pid, seq, event, sizeof(*r), flags);
  1259. r = NLMSG_DATA(nlh);
  1260. r->rtm_family = AF_DECnet;
  1261. r->rtm_dst_len = 16;
  1262. r->rtm_src_len = 0;
  1263. r->rtm_tos = 0;
  1264. r->rtm_table = RT_TABLE_MAIN;
  1265. r->rtm_type = rt->rt_type;
  1266. r->rtm_flags = (rt->rt_flags & ~0xFFFF) | RTM_F_CLONED;
  1267. r->rtm_scope = RT_SCOPE_UNIVERSE;
  1268. r->rtm_protocol = RTPROT_UNSPEC;
  1269. if (rt->rt_flags & RTCF_NOTIFY)
  1270. r->rtm_flags |= RTM_F_NOTIFY;
  1271. RTA_PUT(skb, RTA_DST, 2, &rt->rt_daddr);
  1272. if (rt->fl.fld_src) {
  1273. r->rtm_src_len = 16;
  1274. RTA_PUT(skb, RTA_SRC, 2, &rt->fl.fld_src);
  1275. }
  1276. if (rt->u.dst.dev)
  1277. RTA_PUT(skb, RTA_OIF, sizeof(int), &rt->u.dst.dev->ifindex);
  1278. /*
  1279. * Note to self - change this if input routes reverse direction when
  1280. * they deal only with inputs and not with replies like they do
  1281. * currently.
  1282. */
  1283. RTA_PUT(skb, RTA_PREFSRC, 2, &rt->rt_local_src);
  1284. if (rt->rt_daddr != rt->rt_gateway)
  1285. RTA_PUT(skb, RTA_GATEWAY, 2, &rt->rt_gateway);
  1286. if (rtnetlink_put_metrics(skb, rt->u.dst.metrics) < 0)
  1287. goto rtattr_failure;
  1288. ci.rta_lastuse = jiffies_to_clock_t(jiffies - rt->u.dst.lastuse);
  1289. ci.rta_used = rt->u.dst.__use;
  1290. ci.rta_clntref = atomic_read(&rt->u.dst.__refcnt);
  1291. if (rt->u.dst.expires)
  1292. ci.rta_expires = jiffies_to_clock_t(rt->u.dst.expires - jiffies);
  1293. else
  1294. ci.rta_expires = 0;
  1295. ci.rta_error = rt->u.dst.error;
  1296. ci.rta_id = ci.rta_ts = ci.rta_tsage = 0;
  1297. RTA_PUT(skb, RTA_CACHEINFO, sizeof(ci), &ci);
  1298. if (rt->fl.iif)
  1299. RTA_PUT(skb, RTA_IIF, sizeof(int), &rt->fl.iif);
  1300. nlh->nlmsg_len = skb->tail - b;
  1301. return skb->len;
  1302. nlmsg_failure:
  1303. rtattr_failure:
  1304. skb_trim(skb, b - skb->data);
  1305. return -1;
  1306. }
  1307. /*
  1308. * This is called by both endnodes and routers now.
  1309. */
  1310. int dn_cache_getroute(struct sk_buff *in_skb, struct nlmsghdr *nlh, void *arg)
  1311. {
  1312. struct rtattr **rta = arg;
  1313. struct rtmsg *rtm = NLMSG_DATA(nlh);
  1314. struct dn_route *rt = NULL;
  1315. struct dn_skb_cb *cb;
  1316. int err;
  1317. struct sk_buff *skb;
  1318. struct flowi fl;
  1319. memset(&fl, 0, sizeof(fl));
  1320. fl.proto = DNPROTO_NSP;
  1321. skb = alloc_skb(NLMSG_GOODSIZE, GFP_KERNEL);
  1322. if (skb == NULL)
  1323. return -ENOBUFS;
  1324. skb->mac.raw = skb->data;
  1325. cb = DN_SKB_CB(skb);
  1326. if (rta[RTA_SRC-1])
  1327. memcpy(&fl.fld_src, RTA_DATA(rta[RTA_SRC-1]), 2);
  1328. if (rta[RTA_DST-1])
  1329. memcpy(&fl.fld_dst, RTA_DATA(rta[RTA_DST-1]), 2);
  1330. if (rta[RTA_IIF-1])
  1331. memcpy(&fl.iif, RTA_DATA(rta[RTA_IIF-1]), sizeof(int));
  1332. if (fl.iif) {
  1333. struct net_device *dev;
  1334. if ((dev = dev_get_by_index(fl.iif)) == NULL) {
  1335. kfree_skb(skb);
  1336. return -ENODEV;
  1337. }
  1338. if (!dev->dn_ptr) {
  1339. dev_put(dev);
  1340. kfree_skb(skb);
  1341. return -ENODEV;
  1342. }
  1343. skb->protocol = __constant_htons(ETH_P_DNA_RT);
  1344. skb->dev = dev;
  1345. cb->src = fl.fld_src;
  1346. cb->dst = fl.fld_dst;
  1347. local_bh_disable();
  1348. err = dn_route_input(skb);
  1349. local_bh_enable();
  1350. memset(cb, 0, sizeof(struct dn_skb_cb));
  1351. rt = (struct dn_route *)skb->dst;
  1352. if (!err && -rt->u.dst.error)
  1353. err = rt->u.dst.error;
  1354. } else {
  1355. int oif = 0;
  1356. if (rta[RTA_OIF - 1])
  1357. memcpy(&oif, RTA_DATA(rta[RTA_OIF - 1]), sizeof(int));
  1358. fl.oif = oif;
  1359. err = dn_route_output_key((struct dst_entry **)&rt, &fl, 0);
  1360. }
  1361. if (skb->dev)
  1362. dev_put(skb->dev);
  1363. skb->dev = NULL;
  1364. if (err)
  1365. goto out_free;
  1366. skb->dst = &rt->u.dst;
  1367. if (rtm->rtm_flags & RTM_F_NOTIFY)
  1368. rt->rt_flags |= RTCF_NOTIFY;
  1369. NETLINK_CB(skb).dst_pid = NETLINK_CB(in_skb).pid;
  1370. err = dn_rt_fill_info(skb, NETLINK_CB(in_skb).pid, nlh->nlmsg_seq, RTM_NEWROUTE, 0, 0);
  1371. if (err == 0)
  1372. goto out_free;
  1373. if (err < 0) {
  1374. err = -EMSGSIZE;
  1375. goto out_free;
  1376. }
  1377. err = netlink_unicast(rtnl, skb, NETLINK_CB(in_skb).pid, MSG_DONTWAIT);
  1378. return err;
  1379. out_free:
  1380. kfree_skb(skb);
  1381. return err;
  1382. }
  1383. /*
  1384. * For routers, this is called from dn_fib_dump, but for endnodes its
  1385. * called directly from the rtnetlink dispatch table.
  1386. */
  1387. int dn_cache_dump(struct sk_buff *skb, struct netlink_callback *cb)
  1388. {
  1389. struct dn_route *rt;
  1390. int h, s_h;
  1391. int idx, s_idx;
  1392. if (NLMSG_PAYLOAD(cb->nlh, 0) < sizeof(struct rtmsg))
  1393. return -EINVAL;
  1394. if (!(((struct rtmsg *)NLMSG_DATA(cb->nlh))->rtm_flags&RTM_F_CLONED))
  1395. return 0;
  1396. s_h = cb->args[0];
  1397. s_idx = idx = cb->args[1];
  1398. for(h = 0; h <= dn_rt_hash_mask; h++) {
  1399. if (h < s_h)
  1400. continue;
  1401. if (h > s_h)
  1402. s_idx = 0;
  1403. rcu_read_lock_bh();
  1404. for(rt = rcu_dereference(dn_rt_hash_table[h].chain), idx = 0;
  1405. rt;
  1406. rt = rcu_dereference(rt->u.rt_next), idx++) {
  1407. if (idx < s_idx)
  1408. continue;
  1409. skb->dst = dst_clone(&rt->u.dst);
  1410. if (dn_rt_fill_info(skb, NETLINK_CB(cb->skb).pid,
  1411. cb->nlh->nlmsg_seq, RTM_NEWROUTE,
  1412. 1, NLM_F_MULTI) <= 0) {
  1413. dst_release(xchg(&skb->dst, NULL));
  1414. rcu_read_unlock_bh();
  1415. goto done;
  1416. }
  1417. dst_release(xchg(&skb->dst, NULL));
  1418. }
  1419. rcu_read_unlock_bh();
  1420. }
  1421. done:
  1422. cb->args[0] = h;
  1423. cb->args[1] = idx;
  1424. return skb->len;
  1425. }
  1426. #ifdef CONFIG_PROC_FS
  1427. struct dn_rt_cache_iter_state {
  1428. int bucket;
  1429. };
  1430. static struct dn_route *dn_rt_cache_get_first(struct seq_file *seq)
  1431. {
  1432. struct dn_route *rt = NULL;
  1433. struct dn_rt_cache_iter_state *s = seq->private;
  1434. for(s->bucket = dn_rt_hash_mask; s->bucket >= 0; --s->bucket) {
  1435. rcu_read_lock_bh();
  1436. rt = dn_rt_hash_table[s->bucket].chain;
  1437. if (rt)
  1438. break;
  1439. rcu_read_unlock_bh();
  1440. }
  1441. return rt;
  1442. }
  1443. static struct dn_route *dn_rt_cache_get_next(struct seq_file *seq, struct dn_route *rt)
  1444. {
  1445. struct dn_rt_cache_iter_state *s = rcu_dereference(seq->private);
  1446. rt = rt->u.rt_next;
  1447. while(!rt) {
  1448. rcu_read_unlock_bh();
  1449. if (--s->bucket < 0)
  1450. break;
  1451. rcu_read_lock_bh();
  1452. rt = dn_rt_hash_table[s->bucket].chain;
  1453. }
  1454. return rt;
  1455. }
  1456. static void *dn_rt_cache_seq_start(struct seq_file *seq, loff_t *pos)
  1457. {
  1458. struct dn_route *rt = dn_rt_cache_get_first(seq);
  1459. if (rt) {
  1460. while(*pos && (rt = dn_rt_cache_get_next(seq, rt)))
  1461. --*pos;
  1462. }
  1463. return *pos ? NULL : rt;
  1464. }
  1465. static void *dn_rt_cache_seq_next(struct seq_file *seq, void *v, loff_t *pos)
  1466. {
  1467. struct dn_route *rt = dn_rt_cache_get_next(seq, v);
  1468. ++*pos;
  1469. return rt;
  1470. }
  1471. static void dn_rt_cache_seq_stop(struct seq_file *seq, void *v)
  1472. {
  1473. if (v)
  1474. rcu_read_unlock_bh();
  1475. }
  1476. static int dn_rt_cache_seq_show(struct seq_file *seq, void *v)
  1477. {
  1478. struct dn_route *rt = v;
  1479. char buf1[DN_ASCBUF_LEN], buf2[DN_ASCBUF_LEN];
  1480. seq_printf(seq, "%-8s %-7s %-7s %04d %04d %04d\n",
  1481. rt->u.dst.dev ? rt->u.dst.dev->name : "*",
  1482. dn_addr2asc(dn_ntohs(rt->rt_daddr), buf1),
  1483. dn_addr2asc(dn_ntohs(rt->rt_saddr), buf2),
  1484. atomic_read(&rt->u.dst.__refcnt),
  1485. rt->u.dst.__use,
  1486. (int) dst_metric(&rt->u.dst, RTAX_RTT));
  1487. return 0;
  1488. }
  1489. static struct seq_operations dn_rt_cache_seq_ops = {
  1490. .start = dn_rt_cache_seq_start,
  1491. .next = dn_rt_cache_seq_next,
  1492. .stop = dn_rt_cache_seq_stop,
  1493. .show = dn_rt_cache_seq_show,
  1494. };
  1495. static int dn_rt_cache_seq_open(struct inode *inode, struct file *file)
  1496. {
  1497. struct seq_file *seq;
  1498. int rc = -ENOMEM;
  1499. struct dn_rt_cache_iter_state *s = kmalloc(sizeof(*s), GFP_KERNEL);
  1500. if (!s)
  1501. goto out;
  1502. rc = seq_open(file, &dn_rt_cache_seq_ops);
  1503. if (rc)
  1504. goto out_kfree;
  1505. seq = file->private_data;
  1506. seq->private = s;
  1507. memset(s, 0, sizeof(*s));
  1508. out:
  1509. return rc;
  1510. out_kfree:
  1511. kfree(s);
  1512. goto out;
  1513. }
  1514. static struct file_operations dn_rt_cache_seq_fops = {
  1515. .owner = THIS_MODULE,
  1516. .open = dn_rt_cache_seq_open,
  1517. .read = seq_read,
  1518. .llseek = seq_lseek,
  1519. .release = seq_release_private,
  1520. };
  1521. #endif /* CONFIG_PROC_FS */
  1522. void __init dn_route_init(void)
  1523. {
  1524. int i, goal, order;
  1525. dn_dst_ops.kmem_cachep = kmem_cache_create("dn_dst_cache",
  1526. sizeof(struct dn_route),
  1527. 0, SLAB_HWCACHE_ALIGN,
  1528. NULL, NULL);
  1529. if (!dn_dst_ops.kmem_cachep)
  1530. panic("DECnet: Failed to allocate dn_dst_cache\n");
  1531. init_timer(&dn_route_timer);
  1532. dn_route_timer.function = dn_dst_check_expire;
  1533. dn_route_timer.expires = jiffies + decnet_dst_gc_interval * HZ;
  1534. add_timer(&dn_route_timer);
  1535. goal = num_physpages >> (26 - PAGE_SHIFT);
  1536. for(order = 0; (1UL << order) < goal; order++)
  1537. /* NOTHING */;
  1538. /*
  1539. * Only want 1024 entries max, since the table is very, very unlikely
  1540. * to be larger than that.
  1541. */
  1542. while(order && ((((1UL << order) * PAGE_SIZE) /
  1543. sizeof(struct dn_rt_hash_bucket)) >= 2048))
  1544. order--;
  1545. do {
  1546. dn_rt_hash_mask = (1UL << order) * PAGE_SIZE /
  1547. sizeof(struct dn_rt_hash_bucket);
  1548. while(dn_rt_hash_mask & (dn_rt_hash_mask - 1))
  1549. dn_rt_hash_mask--;
  1550. dn_rt_hash_table = (struct dn_rt_hash_bucket *)
  1551. __get_free_pages(GFP_ATOMIC, order);
  1552. } while (dn_rt_hash_table == NULL && --order > 0);
  1553. if (!dn_rt_hash_table)
  1554. panic("Failed to allocate DECnet route cache hash table\n");
  1555. printk(KERN_INFO
  1556. "DECnet: Routing cache hash table of %u buckets, %ldKbytes\n",
  1557. dn_rt_hash_mask,
  1558. (long)(dn_rt_hash_mask*sizeof(struct dn_rt_hash_bucket))/1024);
  1559. dn_rt_hash_mask--;
  1560. for(i = 0; i <= dn_rt_hash_mask; i++) {
  1561. spin_lock_init(&dn_rt_hash_table[i].lock);
  1562. dn_rt_hash_table[i].chain = NULL;
  1563. }
  1564. dn_dst_ops.gc_thresh = (dn_rt_hash_mask + 1);
  1565. proc_net_fops_create("decnet_cache", S_IRUGO, &dn_rt_cache_seq_fops);
  1566. }
  1567. void __exit dn_route_cleanup(void)
  1568. {
  1569. del_timer(&dn_route_timer);
  1570. dn_run_flush(0);
  1571. proc_net_remove("decnet_cache");
  1572. }