ip6_flowlabel.c 19 KB

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  1. /*
  2. * ip6_flowlabel.c IPv6 flowlabel manager.
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU General Public License
  6. * as published by the Free Software Foundation; either version
  7. * 2 of the License, or (at your option) any later version.
  8. *
  9. * Authors: Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
  10. */
  11. #include <linux/capability.h>
  12. #include <linux/errno.h>
  13. #include <linux/types.h>
  14. #include <linux/socket.h>
  15. #include <linux/net.h>
  16. #include <linux/netdevice.h>
  17. #include <linux/if_arp.h>
  18. #include <linux/in6.h>
  19. #include <linux/route.h>
  20. #include <linux/proc_fs.h>
  21. #include <linux/seq_file.h>
  22. #include <linux/slab.h>
  23. #include <linux/export.h>
  24. #include <linux/pid_namespace.h>
  25. #include <net/net_namespace.h>
  26. #include <net/sock.h>
  27. #include <net/ipv6.h>
  28. #include <net/ndisc.h>
  29. #include <net/protocol.h>
  30. #include <net/ip6_route.h>
  31. #include <net/addrconf.h>
  32. #include <net/rawv6.h>
  33. #include <net/icmp.h>
  34. #include <net/transp_v6.h>
  35. #include <asm/uaccess.h>
  36. #define FL_MIN_LINGER 6 /* Minimal linger. It is set to 6sec specified
  37. in old IPv6 RFC. Well, it was reasonable value.
  38. */
  39. #define FL_MAX_LINGER 60 /* Maximal linger timeout */
  40. /* FL hash table */
  41. #define FL_MAX_PER_SOCK 32
  42. #define FL_MAX_SIZE 4096
  43. #define FL_HASH_MASK 255
  44. #define FL_HASH(l) (ntohl(l)&FL_HASH_MASK)
  45. static atomic_t fl_size = ATOMIC_INIT(0);
  46. static struct ip6_flowlabel __rcu *fl_ht[FL_HASH_MASK+1];
  47. static void ip6_fl_gc(unsigned long dummy);
  48. static DEFINE_TIMER(ip6_fl_gc_timer, ip6_fl_gc, 0, 0);
  49. /* FL hash table lock: it protects only of GC */
  50. static DEFINE_SPINLOCK(ip6_fl_lock);
  51. /* Big socket sock */
  52. static DEFINE_SPINLOCK(ip6_sk_fl_lock);
  53. #define for_each_fl_rcu(hash, fl) \
  54. for (fl = rcu_dereference_bh(fl_ht[(hash)]); \
  55. fl != NULL; \
  56. fl = rcu_dereference_bh(fl->next))
  57. #define for_each_fl_continue_rcu(fl) \
  58. for (fl = rcu_dereference_bh(fl->next); \
  59. fl != NULL; \
  60. fl = rcu_dereference_bh(fl->next))
  61. #define for_each_sk_fl_rcu(np, sfl) \
  62. for (sfl = rcu_dereference_bh(np->ipv6_fl_list); \
  63. sfl != NULL; \
  64. sfl = rcu_dereference_bh(sfl->next))
  65. static inline struct ip6_flowlabel *__fl_lookup(struct net *net, __be32 label)
  66. {
  67. struct ip6_flowlabel *fl;
  68. for_each_fl_rcu(FL_HASH(label), fl) {
  69. if (fl->label == label && net_eq(fl->fl_net, net))
  70. return fl;
  71. }
  72. return NULL;
  73. }
  74. static struct ip6_flowlabel *fl_lookup(struct net *net, __be32 label)
  75. {
  76. struct ip6_flowlabel *fl;
  77. rcu_read_lock_bh();
  78. fl = __fl_lookup(net, label);
  79. if (fl && !atomic_inc_not_zero(&fl->users))
  80. fl = NULL;
  81. rcu_read_unlock_bh();
  82. return fl;
  83. }
  84. static void fl_free(struct ip6_flowlabel *fl)
  85. {
  86. if (fl) {
  87. if (fl->share == IPV6_FL_S_PROCESS)
  88. put_pid(fl->owner.pid);
  89. release_net(fl->fl_net);
  90. kfree(fl->opt);
  91. kfree_rcu(fl, rcu);
  92. }
  93. }
  94. static void fl_release(struct ip6_flowlabel *fl)
  95. {
  96. spin_lock_bh(&ip6_fl_lock);
  97. fl->lastuse = jiffies;
  98. if (atomic_dec_and_test(&fl->users)) {
  99. unsigned long ttd = fl->lastuse + fl->linger;
  100. if (time_after(ttd, fl->expires))
  101. fl->expires = ttd;
  102. ttd = fl->expires;
  103. if (fl->opt && fl->share == IPV6_FL_S_EXCL) {
  104. struct ipv6_txoptions *opt = fl->opt;
  105. fl->opt = NULL;
  106. kfree(opt);
  107. }
  108. if (!timer_pending(&ip6_fl_gc_timer) ||
  109. time_after(ip6_fl_gc_timer.expires, ttd))
  110. mod_timer(&ip6_fl_gc_timer, ttd);
  111. }
  112. spin_unlock_bh(&ip6_fl_lock);
  113. }
  114. static void ip6_fl_gc(unsigned long dummy)
  115. {
  116. int i;
  117. unsigned long now = jiffies;
  118. unsigned long sched = 0;
  119. spin_lock(&ip6_fl_lock);
  120. for (i=0; i<=FL_HASH_MASK; i++) {
  121. struct ip6_flowlabel *fl;
  122. struct ip6_flowlabel __rcu **flp;
  123. flp = &fl_ht[i];
  124. while ((fl = rcu_dereference_protected(*flp,
  125. lockdep_is_held(&ip6_fl_lock))) != NULL) {
  126. if (atomic_read(&fl->users) == 0) {
  127. unsigned long ttd = fl->lastuse + fl->linger;
  128. if (time_after(ttd, fl->expires))
  129. fl->expires = ttd;
  130. ttd = fl->expires;
  131. if (time_after_eq(now, ttd)) {
  132. *flp = fl->next;
  133. fl_free(fl);
  134. atomic_dec(&fl_size);
  135. continue;
  136. }
  137. if (!sched || time_before(ttd, sched))
  138. sched = ttd;
  139. }
  140. flp = &fl->next;
  141. }
  142. }
  143. if (!sched && atomic_read(&fl_size))
  144. sched = now + FL_MAX_LINGER;
  145. if (sched) {
  146. mod_timer(&ip6_fl_gc_timer, sched);
  147. }
  148. spin_unlock(&ip6_fl_lock);
  149. }
  150. static void __net_exit ip6_fl_purge(struct net *net)
  151. {
  152. int i;
  153. spin_lock(&ip6_fl_lock);
  154. for (i = 0; i <= FL_HASH_MASK; i++) {
  155. struct ip6_flowlabel *fl;
  156. struct ip6_flowlabel __rcu **flp;
  157. flp = &fl_ht[i];
  158. while ((fl = rcu_dereference_protected(*flp,
  159. lockdep_is_held(&ip6_fl_lock))) != NULL) {
  160. if (net_eq(fl->fl_net, net) &&
  161. atomic_read(&fl->users) == 0) {
  162. *flp = fl->next;
  163. fl_free(fl);
  164. atomic_dec(&fl_size);
  165. continue;
  166. }
  167. flp = &fl->next;
  168. }
  169. }
  170. spin_unlock(&ip6_fl_lock);
  171. }
  172. static struct ip6_flowlabel *fl_intern(struct net *net,
  173. struct ip6_flowlabel *fl, __be32 label)
  174. {
  175. struct ip6_flowlabel *lfl;
  176. fl->label = label & IPV6_FLOWLABEL_MASK;
  177. spin_lock_bh(&ip6_fl_lock);
  178. if (label == 0) {
  179. for (;;) {
  180. fl->label = htonl(net_random())&IPV6_FLOWLABEL_MASK;
  181. if (fl->label) {
  182. lfl = __fl_lookup(net, fl->label);
  183. if (lfl == NULL)
  184. break;
  185. }
  186. }
  187. } else {
  188. /*
  189. * we dropper the ip6_fl_lock, so this entry could reappear
  190. * and we need to recheck with it.
  191. *
  192. * OTOH no need to search the active socket first, like it is
  193. * done in ipv6_flowlabel_opt - sock is locked, so new entry
  194. * with the same label can only appear on another sock
  195. */
  196. lfl = __fl_lookup(net, fl->label);
  197. if (lfl != NULL) {
  198. atomic_inc(&lfl->users);
  199. spin_unlock_bh(&ip6_fl_lock);
  200. return lfl;
  201. }
  202. }
  203. fl->lastuse = jiffies;
  204. fl->next = fl_ht[FL_HASH(fl->label)];
  205. rcu_assign_pointer(fl_ht[FL_HASH(fl->label)], fl);
  206. atomic_inc(&fl_size);
  207. spin_unlock_bh(&ip6_fl_lock);
  208. return NULL;
  209. }
  210. /* Socket flowlabel lists */
  211. struct ip6_flowlabel * fl6_sock_lookup(struct sock *sk, __be32 label)
  212. {
  213. struct ipv6_fl_socklist *sfl;
  214. struct ipv6_pinfo *np = inet6_sk(sk);
  215. label &= IPV6_FLOWLABEL_MASK;
  216. rcu_read_lock_bh();
  217. for_each_sk_fl_rcu(np, sfl) {
  218. struct ip6_flowlabel *fl = sfl->fl;
  219. if (fl->label == label) {
  220. fl->lastuse = jiffies;
  221. atomic_inc(&fl->users);
  222. rcu_read_unlock_bh();
  223. return fl;
  224. }
  225. }
  226. rcu_read_unlock_bh();
  227. return NULL;
  228. }
  229. EXPORT_SYMBOL_GPL(fl6_sock_lookup);
  230. void fl6_free_socklist(struct sock *sk)
  231. {
  232. struct ipv6_pinfo *np = inet6_sk(sk);
  233. struct ipv6_fl_socklist *sfl;
  234. if (!rcu_access_pointer(np->ipv6_fl_list))
  235. return;
  236. spin_lock_bh(&ip6_sk_fl_lock);
  237. while ((sfl = rcu_dereference_protected(np->ipv6_fl_list,
  238. lockdep_is_held(&ip6_sk_fl_lock))) != NULL) {
  239. np->ipv6_fl_list = sfl->next;
  240. spin_unlock_bh(&ip6_sk_fl_lock);
  241. fl_release(sfl->fl);
  242. kfree_rcu(sfl, rcu);
  243. spin_lock_bh(&ip6_sk_fl_lock);
  244. }
  245. spin_unlock_bh(&ip6_sk_fl_lock);
  246. }
  247. /* Service routines */
  248. /*
  249. It is the only difficult place. flowlabel enforces equal headers
  250. before and including routing header, however user may supply options
  251. following rthdr.
  252. */
  253. struct ipv6_txoptions *fl6_merge_options(struct ipv6_txoptions * opt_space,
  254. struct ip6_flowlabel * fl,
  255. struct ipv6_txoptions * fopt)
  256. {
  257. struct ipv6_txoptions * fl_opt = fl->opt;
  258. if (fopt == NULL || fopt->opt_flen == 0)
  259. return fl_opt;
  260. if (fl_opt != NULL) {
  261. opt_space->hopopt = fl_opt->hopopt;
  262. opt_space->dst0opt = fl_opt->dst0opt;
  263. opt_space->srcrt = fl_opt->srcrt;
  264. opt_space->opt_nflen = fl_opt->opt_nflen;
  265. } else {
  266. if (fopt->opt_nflen == 0)
  267. return fopt;
  268. opt_space->hopopt = NULL;
  269. opt_space->dst0opt = NULL;
  270. opt_space->srcrt = NULL;
  271. opt_space->opt_nflen = 0;
  272. }
  273. opt_space->dst1opt = fopt->dst1opt;
  274. opt_space->opt_flen = fopt->opt_flen;
  275. return opt_space;
  276. }
  277. EXPORT_SYMBOL_GPL(fl6_merge_options);
  278. static unsigned long check_linger(unsigned long ttl)
  279. {
  280. if (ttl < FL_MIN_LINGER)
  281. return FL_MIN_LINGER*HZ;
  282. if (ttl > FL_MAX_LINGER && !capable(CAP_NET_ADMIN))
  283. return 0;
  284. return ttl*HZ;
  285. }
  286. static int fl6_renew(struct ip6_flowlabel *fl, unsigned long linger, unsigned long expires)
  287. {
  288. linger = check_linger(linger);
  289. if (!linger)
  290. return -EPERM;
  291. expires = check_linger(expires);
  292. if (!expires)
  293. return -EPERM;
  294. fl->lastuse = jiffies;
  295. if (time_before(fl->linger, linger))
  296. fl->linger = linger;
  297. if (time_before(expires, fl->linger))
  298. expires = fl->linger;
  299. if (time_before(fl->expires, fl->lastuse + expires))
  300. fl->expires = fl->lastuse + expires;
  301. return 0;
  302. }
  303. static struct ip6_flowlabel *
  304. fl_create(struct net *net, struct sock *sk, struct in6_flowlabel_req *freq,
  305. char __user *optval, int optlen, int *err_p)
  306. {
  307. struct ip6_flowlabel *fl = NULL;
  308. int olen;
  309. int addr_type;
  310. int err;
  311. olen = optlen - CMSG_ALIGN(sizeof(*freq));
  312. err = -EINVAL;
  313. if (olen > 64 * 1024)
  314. goto done;
  315. err = -ENOMEM;
  316. fl = kzalloc(sizeof(*fl), GFP_KERNEL);
  317. if (fl == NULL)
  318. goto done;
  319. if (olen > 0) {
  320. struct msghdr msg;
  321. struct flowi6 flowi6;
  322. int junk;
  323. err = -ENOMEM;
  324. fl->opt = kmalloc(sizeof(*fl->opt) + olen, GFP_KERNEL);
  325. if (fl->opt == NULL)
  326. goto done;
  327. memset(fl->opt, 0, sizeof(*fl->opt));
  328. fl->opt->tot_len = sizeof(*fl->opt) + olen;
  329. err = -EFAULT;
  330. if (copy_from_user(fl->opt+1, optval+CMSG_ALIGN(sizeof(*freq)), olen))
  331. goto done;
  332. msg.msg_controllen = olen;
  333. msg.msg_control = (void*)(fl->opt+1);
  334. memset(&flowi6, 0, sizeof(flowi6));
  335. err = ip6_datagram_send_ctl(net, sk, &msg, &flowi6, fl->opt,
  336. &junk, &junk, &junk);
  337. if (err)
  338. goto done;
  339. err = -EINVAL;
  340. if (fl->opt->opt_flen)
  341. goto done;
  342. if (fl->opt->opt_nflen == 0) {
  343. kfree(fl->opt);
  344. fl->opt = NULL;
  345. }
  346. }
  347. fl->fl_net = hold_net(net);
  348. fl->expires = jiffies;
  349. err = fl6_renew(fl, freq->flr_linger, freq->flr_expires);
  350. if (err)
  351. goto done;
  352. fl->share = freq->flr_share;
  353. addr_type = ipv6_addr_type(&freq->flr_dst);
  354. if ((addr_type & IPV6_ADDR_MAPPED) ||
  355. addr_type == IPV6_ADDR_ANY) {
  356. err = -EINVAL;
  357. goto done;
  358. }
  359. fl->dst = freq->flr_dst;
  360. atomic_set(&fl->users, 1);
  361. switch (fl->share) {
  362. case IPV6_FL_S_EXCL:
  363. case IPV6_FL_S_ANY:
  364. break;
  365. case IPV6_FL_S_PROCESS:
  366. fl->owner.pid = get_task_pid(current, PIDTYPE_PID);
  367. break;
  368. case IPV6_FL_S_USER:
  369. fl->owner.uid = current_euid();
  370. break;
  371. default:
  372. err = -EINVAL;
  373. goto done;
  374. }
  375. return fl;
  376. done:
  377. fl_free(fl);
  378. *err_p = err;
  379. return NULL;
  380. }
  381. static int mem_check(struct sock *sk)
  382. {
  383. struct ipv6_pinfo *np = inet6_sk(sk);
  384. struct ipv6_fl_socklist *sfl;
  385. int room = FL_MAX_SIZE - atomic_read(&fl_size);
  386. int count = 0;
  387. if (room > FL_MAX_SIZE - FL_MAX_PER_SOCK)
  388. return 0;
  389. for_each_sk_fl_rcu(np, sfl)
  390. count++;
  391. if (room <= 0 ||
  392. ((count >= FL_MAX_PER_SOCK ||
  393. (count > 0 && room < FL_MAX_SIZE/2) || room < FL_MAX_SIZE/4) &&
  394. !capable(CAP_NET_ADMIN)))
  395. return -ENOBUFS;
  396. return 0;
  397. }
  398. static inline void fl_link(struct ipv6_pinfo *np, struct ipv6_fl_socklist *sfl,
  399. struct ip6_flowlabel *fl)
  400. {
  401. spin_lock_bh(&ip6_sk_fl_lock);
  402. sfl->fl = fl;
  403. sfl->next = np->ipv6_fl_list;
  404. rcu_assign_pointer(np->ipv6_fl_list, sfl);
  405. spin_unlock_bh(&ip6_sk_fl_lock);
  406. }
  407. int ipv6_flowlabel_opt(struct sock *sk, char __user *optval, int optlen)
  408. {
  409. int uninitialized_var(err);
  410. struct net *net = sock_net(sk);
  411. struct ipv6_pinfo *np = inet6_sk(sk);
  412. struct in6_flowlabel_req freq;
  413. struct ipv6_fl_socklist *sfl1=NULL;
  414. struct ipv6_fl_socklist *sfl;
  415. struct ipv6_fl_socklist __rcu **sflp;
  416. struct ip6_flowlabel *fl, *fl1 = NULL;
  417. if (optlen < sizeof(freq))
  418. return -EINVAL;
  419. if (copy_from_user(&freq, optval, sizeof(freq)))
  420. return -EFAULT;
  421. switch (freq.flr_action) {
  422. case IPV6_FL_A_PUT:
  423. spin_lock_bh(&ip6_sk_fl_lock);
  424. for (sflp = &np->ipv6_fl_list;
  425. (sfl = rcu_dereference(*sflp))!=NULL;
  426. sflp = &sfl->next) {
  427. if (sfl->fl->label == freq.flr_label) {
  428. if (freq.flr_label == (np->flow_label&IPV6_FLOWLABEL_MASK))
  429. np->flow_label &= ~IPV6_FLOWLABEL_MASK;
  430. *sflp = rcu_dereference(sfl->next);
  431. spin_unlock_bh(&ip6_sk_fl_lock);
  432. fl_release(sfl->fl);
  433. kfree_rcu(sfl, rcu);
  434. return 0;
  435. }
  436. }
  437. spin_unlock_bh(&ip6_sk_fl_lock);
  438. return -ESRCH;
  439. case IPV6_FL_A_RENEW:
  440. rcu_read_lock_bh();
  441. for_each_sk_fl_rcu(np, sfl) {
  442. if (sfl->fl->label == freq.flr_label) {
  443. err = fl6_renew(sfl->fl, freq.flr_linger, freq.flr_expires);
  444. rcu_read_unlock_bh();
  445. return err;
  446. }
  447. }
  448. rcu_read_unlock_bh();
  449. if (freq.flr_share == IPV6_FL_S_NONE &&
  450. ns_capable(net->user_ns, CAP_NET_ADMIN)) {
  451. fl = fl_lookup(net, freq.flr_label);
  452. if (fl) {
  453. err = fl6_renew(fl, freq.flr_linger, freq.flr_expires);
  454. fl_release(fl);
  455. return err;
  456. }
  457. }
  458. return -ESRCH;
  459. case IPV6_FL_A_GET:
  460. if (freq.flr_label & ~IPV6_FLOWLABEL_MASK)
  461. return -EINVAL;
  462. fl = fl_create(net, sk, &freq, optval, optlen, &err);
  463. if (fl == NULL)
  464. return err;
  465. sfl1 = kmalloc(sizeof(*sfl1), GFP_KERNEL);
  466. if (freq.flr_label) {
  467. err = -EEXIST;
  468. rcu_read_lock_bh();
  469. for_each_sk_fl_rcu(np, sfl) {
  470. if (sfl->fl->label == freq.flr_label) {
  471. if (freq.flr_flags&IPV6_FL_F_EXCL) {
  472. rcu_read_unlock_bh();
  473. goto done;
  474. }
  475. fl1 = sfl->fl;
  476. atomic_inc(&fl1->users);
  477. break;
  478. }
  479. }
  480. rcu_read_unlock_bh();
  481. if (fl1 == NULL)
  482. fl1 = fl_lookup(net, freq.flr_label);
  483. if (fl1) {
  484. recheck:
  485. err = -EEXIST;
  486. if (freq.flr_flags&IPV6_FL_F_EXCL)
  487. goto release;
  488. err = -EPERM;
  489. if (fl1->share == IPV6_FL_S_EXCL ||
  490. fl1->share != fl->share ||
  491. ((fl1->share == IPV6_FL_S_PROCESS) &&
  492. (fl1->owner.pid == fl->owner.pid)) ||
  493. ((fl1->share == IPV6_FL_S_USER) &&
  494. uid_eq(fl1->owner.uid, fl->owner.uid)))
  495. goto release;
  496. err = -ENOMEM;
  497. if (sfl1 == NULL)
  498. goto release;
  499. if (fl->linger > fl1->linger)
  500. fl1->linger = fl->linger;
  501. if ((long)(fl->expires - fl1->expires) > 0)
  502. fl1->expires = fl->expires;
  503. fl_link(np, sfl1, fl1);
  504. fl_free(fl);
  505. return 0;
  506. release:
  507. fl_release(fl1);
  508. goto done;
  509. }
  510. }
  511. err = -ENOENT;
  512. if (!(freq.flr_flags&IPV6_FL_F_CREATE))
  513. goto done;
  514. err = -ENOMEM;
  515. if (sfl1 == NULL || (err = mem_check(sk)) != 0)
  516. goto done;
  517. fl1 = fl_intern(net, fl, freq.flr_label);
  518. if (fl1 != NULL)
  519. goto recheck;
  520. if (!freq.flr_label) {
  521. if (copy_to_user(&((struct in6_flowlabel_req __user *) optval)->flr_label,
  522. &fl->label, sizeof(fl->label))) {
  523. /* Intentionally ignore fault. */
  524. }
  525. }
  526. fl_link(np, sfl1, fl);
  527. return 0;
  528. default:
  529. return -EINVAL;
  530. }
  531. done:
  532. fl_free(fl);
  533. kfree(sfl1);
  534. return err;
  535. }
  536. #ifdef CONFIG_PROC_FS
  537. struct ip6fl_iter_state {
  538. struct seq_net_private p;
  539. struct pid_namespace *pid_ns;
  540. int bucket;
  541. };
  542. #define ip6fl_seq_private(seq) ((struct ip6fl_iter_state *)(seq)->private)
  543. static struct ip6_flowlabel *ip6fl_get_first(struct seq_file *seq)
  544. {
  545. struct ip6_flowlabel *fl = NULL;
  546. struct ip6fl_iter_state *state = ip6fl_seq_private(seq);
  547. struct net *net = seq_file_net(seq);
  548. for (state->bucket = 0; state->bucket <= FL_HASH_MASK; ++state->bucket) {
  549. for_each_fl_rcu(state->bucket, fl) {
  550. if (net_eq(fl->fl_net, net))
  551. goto out;
  552. }
  553. }
  554. fl = NULL;
  555. out:
  556. return fl;
  557. }
  558. static struct ip6_flowlabel *ip6fl_get_next(struct seq_file *seq, struct ip6_flowlabel *fl)
  559. {
  560. struct ip6fl_iter_state *state = ip6fl_seq_private(seq);
  561. struct net *net = seq_file_net(seq);
  562. for_each_fl_continue_rcu(fl) {
  563. if (net_eq(fl->fl_net, net))
  564. goto out;
  565. }
  566. try_again:
  567. if (++state->bucket <= FL_HASH_MASK) {
  568. for_each_fl_rcu(state->bucket, fl) {
  569. if (net_eq(fl->fl_net, net))
  570. goto out;
  571. }
  572. goto try_again;
  573. }
  574. fl = NULL;
  575. out:
  576. return fl;
  577. }
  578. static struct ip6_flowlabel *ip6fl_get_idx(struct seq_file *seq, loff_t pos)
  579. {
  580. struct ip6_flowlabel *fl = ip6fl_get_first(seq);
  581. if (fl)
  582. while (pos && (fl = ip6fl_get_next(seq, fl)) != NULL)
  583. --pos;
  584. return pos ? NULL : fl;
  585. }
  586. static void *ip6fl_seq_start(struct seq_file *seq, loff_t *pos)
  587. __acquires(RCU)
  588. {
  589. rcu_read_lock_bh();
  590. return *pos ? ip6fl_get_idx(seq, *pos - 1) : SEQ_START_TOKEN;
  591. }
  592. static void *ip6fl_seq_next(struct seq_file *seq, void *v, loff_t *pos)
  593. {
  594. struct ip6_flowlabel *fl;
  595. if (v == SEQ_START_TOKEN)
  596. fl = ip6fl_get_first(seq);
  597. else
  598. fl = ip6fl_get_next(seq, v);
  599. ++*pos;
  600. return fl;
  601. }
  602. static void ip6fl_seq_stop(struct seq_file *seq, void *v)
  603. __releases(RCU)
  604. {
  605. rcu_read_unlock_bh();
  606. }
  607. static int ip6fl_seq_show(struct seq_file *seq, void *v)
  608. {
  609. struct ip6fl_iter_state *state = ip6fl_seq_private(seq);
  610. if (v == SEQ_START_TOKEN)
  611. seq_printf(seq, "%-5s %-1s %-6s %-6s %-6s %-8s %-32s %s\n",
  612. "Label", "S", "Owner", "Users", "Linger", "Expires", "Dst", "Opt");
  613. else {
  614. struct ip6_flowlabel *fl = v;
  615. seq_printf(seq,
  616. "%05X %-1d %-6d %-6d %-6ld %-8ld %pi6 %-4d\n",
  617. (unsigned int)ntohl(fl->label),
  618. fl->share,
  619. ((fl->share == IPV6_FL_S_PROCESS) ?
  620. pid_nr_ns(fl->owner.pid, state->pid_ns) :
  621. ((fl->share == IPV6_FL_S_USER) ?
  622. from_kuid_munged(seq_user_ns(seq), fl->owner.uid) :
  623. 0)),
  624. atomic_read(&fl->users),
  625. fl->linger/HZ,
  626. (long)(fl->expires - jiffies)/HZ,
  627. &fl->dst,
  628. fl->opt ? fl->opt->opt_nflen : 0);
  629. }
  630. return 0;
  631. }
  632. static const struct seq_operations ip6fl_seq_ops = {
  633. .start = ip6fl_seq_start,
  634. .next = ip6fl_seq_next,
  635. .stop = ip6fl_seq_stop,
  636. .show = ip6fl_seq_show,
  637. };
  638. static int ip6fl_seq_open(struct inode *inode, struct file *file)
  639. {
  640. struct seq_file *seq;
  641. struct ip6fl_iter_state *state;
  642. int err;
  643. err = seq_open_net(inode, file, &ip6fl_seq_ops,
  644. sizeof(struct ip6fl_iter_state));
  645. if (!err) {
  646. seq = file->private_data;
  647. state = ip6fl_seq_private(seq);
  648. rcu_read_lock();
  649. state->pid_ns = get_pid_ns(task_active_pid_ns(current));
  650. rcu_read_unlock();
  651. }
  652. return err;
  653. }
  654. static int ip6fl_seq_release(struct inode *inode, struct file *file)
  655. {
  656. struct seq_file *seq = file->private_data;
  657. struct ip6fl_iter_state *state = ip6fl_seq_private(seq);
  658. put_pid_ns(state->pid_ns);
  659. return seq_release_net(inode, file);
  660. }
  661. static const struct file_operations ip6fl_seq_fops = {
  662. .owner = THIS_MODULE,
  663. .open = ip6fl_seq_open,
  664. .read = seq_read,
  665. .llseek = seq_lseek,
  666. .release = ip6fl_seq_release,
  667. };
  668. static int __net_init ip6_flowlabel_proc_init(struct net *net)
  669. {
  670. if (!proc_create("ip6_flowlabel", S_IRUGO, net->proc_net,
  671. &ip6fl_seq_fops))
  672. return -ENOMEM;
  673. return 0;
  674. }
  675. static void __net_exit ip6_flowlabel_proc_fini(struct net *net)
  676. {
  677. remove_proc_entry("ip6_flowlabel", net->proc_net);
  678. }
  679. #else
  680. static inline int ip6_flowlabel_proc_init(struct net *net)
  681. {
  682. return 0;
  683. }
  684. static inline void ip6_flowlabel_proc_fini(struct net *net)
  685. {
  686. }
  687. #endif
  688. static void __net_exit ip6_flowlabel_net_exit(struct net *net)
  689. {
  690. ip6_fl_purge(net);
  691. ip6_flowlabel_proc_fini(net);
  692. }
  693. static struct pernet_operations ip6_flowlabel_net_ops = {
  694. .init = ip6_flowlabel_proc_init,
  695. .exit = ip6_flowlabel_net_exit,
  696. };
  697. int ip6_flowlabel_init(void)
  698. {
  699. return register_pernet_subsys(&ip6_flowlabel_net_ops);
  700. }
  701. void ip6_flowlabel_cleanup(void)
  702. {
  703. del_timer(&ip6_fl_gc_timer);
  704. unregister_pernet_subsys(&ip6_flowlabel_net_ops);
  705. }