br2684.c 20 KB

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  1. /*
  2. * Ethernet netdevice using ATM AAL5 as underlying carrier
  3. * (RFC1483 obsoleted by RFC2684) for Linux
  4. *
  5. * Authors: Marcell GAL, 2000, XDSL Ltd, Hungary
  6. * Eric Kinzie, 2006-2007, US Naval Research Laboratory
  7. */
  8. #include <linux/module.h>
  9. #include <linux/init.h>
  10. #include <linux/kernel.h>
  11. #include <linux/list.h>
  12. #include <linux/netdevice.h>
  13. #include <linux/skbuff.h>
  14. #include <linux/etherdevice.h>
  15. #include <linux/rtnetlink.h>
  16. #include <linux/ip.h>
  17. #include <asm/uaccess.h>
  18. #include <net/arp.h>
  19. #include <linux/atm.h>
  20. #include <linux/atmdev.h>
  21. #include <linux/capability.h>
  22. #include <linux/seq_file.h>
  23. #include <linux/atmbr2684.h>
  24. #include "common.h"
  25. #ifdef SKB_DEBUG
  26. static void skb_debug(const struct sk_buff *skb)
  27. {
  28. #define NUM2PRINT 50
  29. char buf[NUM2PRINT * 3 + 1]; /* 3 chars per byte */
  30. int i = 0;
  31. for (i = 0; i < skb->len && i < NUM2PRINT; i++) {
  32. sprintf(buf + i * 3, "%2.2x ", 0xff & skb->data[i]);
  33. }
  34. printk(KERN_DEBUG "br2684: skb: %s\n", buf);
  35. }
  36. #else
  37. #define skb_debug(skb) do {} while (0)
  38. #endif
  39. #define BR2684_ETHERTYPE_LEN 2
  40. #define BR2684_PAD_LEN 2
  41. #define LLC 0xaa, 0xaa, 0x03
  42. #define SNAP_BRIDGED 0x00, 0x80, 0xc2
  43. #define SNAP_ROUTED 0x00, 0x00, 0x00
  44. #define PID_ETHERNET 0x00, 0x07
  45. #define ETHERTYPE_IPV4 0x08, 0x00
  46. #define ETHERTYPE_IPV6 0x86, 0xdd
  47. #define PAD_BRIDGED 0x00, 0x00
  48. static unsigned char ethertype_ipv4[] = { ETHERTYPE_IPV4 };
  49. static unsigned char ethertype_ipv6[] = { ETHERTYPE_IPV6 };
  50. static unsigned char llc_oui_pid_pad[] =
  51. { LLC, SNAP_BRIDGED, PID_ETHERNET, PAD_BRIDGED };
  52. static unsigned char llc_oui_ipv4[] = { LLC, SNAP_ROUTED, ETHERTYPE_IPV4 };
  53. static unsigned char llc_oui_ipv6[] = { LLC, SNAP_ROUTED, ETHERTYPE_IPV6 };
  54. enum br2684_encaps {
  55. e_vc = BR2684_ENCAPS_VC,
  56. e_llc = BR2684_ENCAPS_LLC,
  57. };
  58. struct br2684_vcc {
  59. struct atm_vcc *atmvcc;
  60. struct net_device *device;
  61. /* keep old push, pop functions for chaining */
  62. void (*old_push) (struct atm_vcc * vcc, struct sk_buff * skb);
  63. /* void (*old_pop)(struct atm_vcc *vcc, struct sk_buff *skb); */
  64. enum br2684_encaps encaps;
  65. struct list_head brvccs;
  66. #ifdef CONFIG_ATM_BR2684_IPFILTER
  67. struct br2684_filter filter;
  68. #endif /* CONFIG_ATM_BR2684_IPFILTER */
  69. unsigned copies_needed, copies_failed;
  70. };
  71. struct br2684_dev {
  72. struct net_device *net_dev;
  73. struct list_head br2684_devs;
  74. int number;
  75. struct list_head brvccs; /* one device <=> one vcc (before xmas) */
  76. struct net_device_stats stats;
  77. int mac_was_set;
  78. enum br2684_payload payload;
  79. };
  80. /*
  81. * This lock should be held for writing any time the list of devices or
  82. * their attached vcc's could be altered. It should be held for reading
  83. * any time these are being queried. Note that we sometimes need to
  84. * do read-locking under interrupt context, so write locking must block
  85. * the current CPU's interrupts
  86. */
  87. static DEFINE_RWLOCK(devs_lock);
  88. static LIST_HEAD(br2684_devs);
  89. static inline struct br2684_dev *BRPRIV(const struct net_device *net_dev)
  90. {
  91. return (struct br2684_dev *)net_dev->priv;
  92. }
  93. static inline struct net_device *list_entry_brdev(const struct list_head *le)
  94. {
  95. return list_entry(le, struct br2684_dev, br2684_devs)->net_dev;
  96. }
  97. static inline struct br2684_vcc *BR2684_VCC(const struct atm_vcc *atmvcc)
  98. {
  99. return (struct br2684_vcc *)(atmvcc->user_back);
  100. }
  101. static inline struct br2684_vcc *list_entry_brvcc(const struct list_head *le)
  102. {
  103. return list_entry(le, struct br2684_vcc, brvccs);
  104. }
  105. /* Caller should hold read_lock(&devs_lock) */
  106. static struct net_device *br2684_find_dev(const struct br2684_if_spec *s)
  107. {
  108. struct list_head *lh;
  109. struct net_device *net_dev;
  110. switch (s->method) {
  111. case BR2684_FIND_BYNUM:
  112. list_for_each(lh, &br2684_devs) {
  113. net_dev = list_entry_brdev(lh);
  114. if (BRPRIV(net_dev)->number == s->spec.devnum)
  115. return net_dev;
  116. }
  117. break;
  118. case BR2684_FIND_BYIFNAME:
  119. list_for_each(lh, &br2684_devs) {
  120. net_dev = list_entry_brdev(lh);
  121. if (!strncmp(net_dev->name, s->spec.ifname, IFNAMSIZ))
  122. return net_dev;
  123. }
  124. break;
  125. }
  126. return NULL;
  127. }
  128. /*
  129. * Send a packet out a particular vcc. Not to useful right now, but paves
  130. * the way for multiple vcc's per itf. Returns true if we can send,
  131. * otherwise false
  132. */
  133. static int br2684_xmit_vcc(struct sk_buff *skb, struct br2684_dev *brdev,
  134. struct br2684_vcc *brvcc)
  135. {
  136. struct atm_vcc *atmvcc;
  137. int minheadroom = (brvcc->encaps == e_llc) ? 10 : 2;
  138. if (skb_headroom(skb) < minheadroom) {
  139. struct sk_buff *skb2 = skb_realloc_headroom(skb, minheadroom);
  140. brvcc->copies_needed++;
  141. dev_kfree_skb(skb);
  142. if (skb2 == NULL) {
  143. brvcc->copies_failed++;
  144. return 0;
  145. }
  146. skb = skb2;
  147. }
  148. if (brvcc->encaps == e_llc) {
  149. if (brdev->payload == p_bridged) {
  150. skb_push(skb, sizeof(llc_oui_pid_pad));
  151. skb_copy_to_linear_data(skb, llc_oui_pid_pad,
  152. sizeof(llc_oui_pid_pad));
  153. } else if (brdev->payload == p_routed) {
  154. unsigned short prot = ntohs(skb->protocol);
  155. skb_push(skb, sizeof(llc_oui_ipv4));
  156. switch (prot) {
  157. case ETH_P_IP:
  158. skb_copy_to_linear_data(skb, llc_oui_ipv4,
  159. sizeof(llc_oui_ipv4));
  160. break;
  161. case ETH_P_IPV6:
  162. skb_copy_to_linear_data(skb, llc_oui_ipv6,
  163. sizeof(llc_oui_ipv6));
  164. break;
  165. default:
  166. dev_kfree_skb(skb);
  167. return 0;
  168. }
  169. }
  170. } else {
  171. skb_push(skb, 2);
  172. if (brdev->payload == p_bridged)
  173. memset(skb->data, 0, 2);
  174. }
  175. skb_debug(skb);
  176. ATM_SKB(skb)->vcc = atmvcc = brvcc->atmvcc;
  177. pr_debug("atm_skb(%p)->vcc(%p)->dev(%p)\n", skb, atmvcc, atmvcc->dev);
  178. if (!atm_may_send(atmvcc, skb->truesize)) {
  179. /*
  180. * We free this here for now, because we cannot know in a higher
  181. * layer whether the skb pointer it supplied wasn't freed yet.
  182. * Now, it always is.
  183. */
  184. dev_kfree_skb(skb);
  185. return 0;
  186. }
  187. atomic_add(skb->truesize, &sk_atm(atmvcc)->sk_wmem_alloc);
  188. ATM_SKB(skb)->atm_options = atmvcc->atm_options;
  189. brdev->stats.tx_packets++;
  190. brdev->stats.tx_bytes += skb->len;
  191. atmvcc->send(atmvcc, skb);
  192. return 1;
  193. }
  194. static inline struct br2684_vcc *pick_outgoing_vcc(struct sk_buff *skb,
  195. struct br2684_dev *brdev)
  196. {
  197. return list_empty(&brdev->brvccs) ? NULL : list_entry_brvcc(brdev->brvccs.next); /* 1 vcc/dev right now */
  198. }
  199. static int br2684_start_xmit(struct sk_buff *skb, struct net_device *dev)
  200. {
  201. struct br2684_dev *brdev = BRPRIV(dev);
  202. struct br2684_vcc *brvcc;
  203. pr_debug("br2684_start_xmit, skb->dst=%p\n", skb->dst);
  204. read_lock(&devs_lock);
  205. brvcc = pick_outgoing_vcc(skb, brdev);
  206. if (brvcc == NULL) {
  207. pr_debug("no vcc attached to dev %s\n", dev->name);
  208. brdev->stats.tx_errors++;
  209. brdev->stats.tx_carrier_errors++;
  210. /* netif_stop_queue(dev); */
  211. dev_kfree_skb(skb);
  212. read_unlock(&devs_lock);
  213. return 0;
  214. }
  215. if (!br2684_xmit_vcc(skb, brdev, brvcc)) {
  216. /*
  217. * We should probably use netif_*_queue() here, but that
  218. * involves added complication. We need to walk before
  219. * we can run.
  220. *
  221. * Don't free here! this pointer might be no longer valid!
  222. */
  223. brdev->stats.tx_errors++;
  224. brdev->stats.tx_fifo_errors++;
  225. }
  226. read_unlock(&devs_lock);
  227. return 0;
  228. }
  229. static struct net_device_stats *br2684_get_stats(struct net_device *dev)
  230. {
  231. pr_debug("br2684_get_stats\n");
  232. return &BRPRIV(dev)->stats;
  233. }
  234. /*
  235. * We remember when the MAC gets set, so we don't override it later with
  236. * the ESI of the ATM card of the first VC
  237. */
  238. static int (*my_eth_mac_addr) (struct net_device *, void *);
  239. static int br2684_mac_addr(struct net_device *dev, void *p)
  240. {
  241. int err = my_eth_mac_addr(dev, p);
  242. if (!err)
  243. BRPRIV(dev)->mac_was_set = 1;
  244. return err;
  245. }
  246. #ifdef CONFIG_ATM_BR2684_IPFILTER
  247. /* this IOCTL is experimental. */
  248. static int br2684_setfilt(struct atm_vcc *atmvcc, void __user * arg)
  249. {
  250. struct br2684_vcc *brvcc;
  251. struct br2684_filter_set fs;
  252. if (copy_from_user(&fs, arg, sizeof fs))
  253. return -EFAULT;
  254. if (fs.ifspec.method != BR2684_FIND_BYNOTHING) {
  255. /*
  256. * This is really a per-vcc thing, but we can also search
  257. * by device.
  258. */
  259. struct br2684_dev *brdev;
  260. read_lock(&devs_lock);
  261. brdev = BRPRIV(br2684_find_dev(&fs.ifspec));
  262. if (brdev == NULL || list_empty(&brdev->brvccs) || brdev->brvccs.next != brdev->brvccs.prev) /* >1 VCC */
  263. brvcc = NULL;
  264. else
  265. brvcc = list_entry_brvcc(brdev->brvccs.next);
  266. read_unlock(&devs_lock);
  267. if (brvcc == NULL)
  268. return -ESRCH;
  269. } else
  270. brvcc = BR2684_VCC(atmvcc);
  271. memcpy(&brvcc->filter, &fs.filter, sizeof(brvcc->filter));
  272. return 0;
  273. }
  274. /* Returns 1 if packet should be dropped */
  275. static inline int
  276. packet_fails_filter(__be16 type, struct br2684_vcc *brvcc, struct sk_buff *skb)
  277. {
  278. if (brvcc->filter.netmask == 0)
  279. return 0; /* no filter in place */
  280. if (type == htons(ETH_P_IP) &&
  281. (((struct iphdr *)(skb->data))->daddr & brvcc->filter.
  282. netmask) == brvcc->filter.prefix)
  283. return 0;
  284. if (type == htons(ETH_P_ARP))
  285. return 0;
  286. /*
  287. * TODO: we should probably filter ARPs too.. don't want to have
  288. * them returning values that don't make sense, or is that ok?
  289. */
  290. return 1; /* drop */
  291. }
  292. #endif /* CONFIG_ATM_BR2684_IPFILTER */
  293. static void br2684_close_vcc(struct br2684_vcc *brvcc)
  294. {
  295. pr_debug("removing VCC %p from dev %p\n", brvcc, brvcc->device);
  296. write_lock_irq(&devs_lock);
  297. list_del(&brvcc->brvccs);
  298. write_unlock_irq(&devs_lock);
  299. brvcc->atmvcc->user_back = NULL; /* what about vcc->recvq ??? */
  300. brvcc->old_push(brvcc->atmvcc, NULL); /* pass on the bad news */
  301. kfree(brvcc);
  302. module_put(THIS_MODULE);
  303. }
  304. /* when AAL5 PDU comes in: */
  305. static void br2684_push(struct atm_vcc *atmvcc, struct sk_buff *skb)
  306. {
  307. struct br2684_vcc *brvcc = BR2684_VCC(atmvcc);
  308. struct net_device *net_dev = brvcc->device;
  309. struct br2684_dev *brdev = BRPRIV(net_dev);
  310. pr_debug("br2684_push\n");
  311. if (unlikely(skb == NULL)) {
  312. /* skb==NULL means VCC is being destroyed */
  313. br2684_close_vcc(brvcc);
  314. if (list_empty(&brdev->brvccs)) {
  315. read_lock(&devs_lock);
  316. list_del(&brdev->br2684_devs);
  317. read_unlock(&devs_lock);
  318. unregister_netdev(net_dev);
  319. free_netdev(net_dev);
  320. }
  321. return;
  322. }
  323. skb_debug(skb);
  324. atm_return(atmvcc, skb->truesize);
  325. pr_debug("skb from brdev %p\n", brdev);
  326. if (brvcc->encaps == e_llc) {
  327. if (skb->len > 7 && skb->data[7] == 0x01)
  328. __skb_trim(skb, skb->len - 4);
  329. /* accept packets that have "ipv[46]" in the snap header */
  330. if ((skb->len >= (sizeof(llc_oui_ipv4)))
  331. &&
  332. (memcmp
  333. (skb->data, llc_oui_ipv4,
  334. sizeof(llc_oui_ipv4) - BR2684_ETHERTYPE_LEN) == 0)) {
  335. if (memcmp
  336. (skb->data + 6, ethertype_ipv6,
  337. sizeof(ethertype_ipv6)) == 0)
  338. skb->protocol = __constant_htons(ETH_P_IPV6);
  339. else if (memcmp
  340. (skb->data + 6, ethertype_ipv4,
  341. sizeof(ethertype_ipv4)) == 0)
  342. skb->protocol = __constant_htons(ETH_P_IP);
  343. else {
  344. brdev->stats.rx_errors++;
  345. dev_kfree_skb(skb);
  346. return;
  347. }
  348. skb_pull(skb, sizeof(llc_oui_ipv4));
  349. skb_reset_network_header(skb);
  350. skb->pkt_type = PACKET_HOST;
  351. /*
  352. * Let us waste some time for checking the encapsulation.
  353. * Note, that only 7 char is checked so frames with a valid FCS
  354. * are also accepted (but FCS is not checked of course).
  355. */
  356. } else if ((skb->len >= sizeof(llc_oui_pid_pad)) &&
  357. (memcmp(skb->data, llc_oui_pid_pad, 7) == 0)) {
  358. skb_pull(skb, sizeof(llc_oui_pid_pad));
  359. skb->protocol = eth_type_trans(skb, net_dev);
  360. } else {
  361. brdev->stats.rx_errors++;
  362. dev_kfree_skb(skb);
  363. return;
  364. }
  365. } else {
  366. /* first 2 chars should be 0 */
  367. if (*((u16 *) (skb->data)) != 0) {
  368. brdev->stats.rx_errors++;
  369. dev_kfree_skb(skb);
  370. return;
  371. }
  372. skb_pull(skb, BR2684_PAD_LEN + ETH_HLEN); /* pad, dstmac, srcmac, ethtype */
  373. skb->protocol = eth_type_trans(skb, net_dev);
  374. }
  375. #ifdef CONFIG_ATM_BR2684_IPFILTER
  376. if (unlikely(packet_fails_filter(skb->protocol, brvcc, skb))) {
  377. brdev->stats.rx_dropped++;
  378. dev_kfree_skb(skb);
  379. return;
  380. }
  381. #endif /* CONFIG_ATM_BR2684_IPFILTER */
  382. skb->dev = net_dev;
  383. ATM_SKB(skb)->vcc = atmvcc; /* needed ? */
  384. pr_debug("received packet's protocol: %x\n", ntohs(skb->protocol));
  385. skb_debug(skb);
  386. if (unlikely(!(net_dev->flags & IFF_UP))) {
  387. /* sigh, interface is down */
  388. brdev->stats.rx_dropped++;
  389. dev_kfree_skb(skb);
  390. return;
  391. }
  392. brdev->stats.rx_packets++;
  393. brdev->stats.rx_bytes += skb->len;
  394. memset(ATM_SKB(skb), 0, sizeof(struct atm_skb_data));
  395. netif_rx(skb);
  396. }
  397. /*
  398. * Assign a vcc to a dev
  399. * Note: we do not have explicit unassign, but look at _push()
  400. */
  401. static int br2684_regvcc(struct atm_vcc *atmvcc, void __user * arg)
  402. {
  403. int err;
  404. struct br2684_vcc *brvcc;
  405. struct sk_buff *skb;
  406. struct sk_buff_head *rq;
  407. struct br2684_dev *brdev;
  408. struct net_device *net_dev;
  409. struct atm_backend_br2684 be;
  410. unsigned long flags;
  411. if (copy_from_user(&be, arg, sizeof be))
  412. return -EFAULT;
  413. brvcc = kzalloc(sizeof(struct br2684_vcc), GFP_KERNEL);
  414. if (!brvcc)
  415. return -ENOMEM;
  416. write_lock_irq(&devs_lock);
  417. net_dev = br2684_find_dev(&be.ifspec);
  418. if (net_dev == NULL) {
  419. printk(KERN_ERR
  420. "br2684: tried to attach to non-existant device\n");
  421. err = -ENXIO;
  422. goto error;
  423. }
  424. brdev = BRPRIV(net_dev);
  425. if (atmvcc->push == NULL) {
  426. err = -EBADFD;
  427. goto error;
  428. }
  429. if (!list_empty(&brdev->brvccs)) {
  430. /* Only 1 VCC/dev right now */
  431. err = -EEXIST;
  432. goto error;
  433. }
  434. if (be.fcs_in != BR2684_FCSIN_NO || be.fcs_out != BR2684_FCSOUT_NO ||
  435. be.fcs_auto || be.has_vpiid || be.send_padding || (be.encaps !=
  436. BR2684_ENCAPS_VC
  437. && be.encaps !=
  438. BR2684_ENCAPS_LLC)
  439. || be.min_size != 0) {
  440. err = -EINVAL;
  441. goto error;
  442. }
  443. pr_debug("br2684_regvcc vcc=%p, encaps=%d, brvcc=%p\n", atmvcc,
  444. be.encaps, brvcc);
  445. if (list_empty(&brdev->brvccs) && !brdev->mac_was_set) {
  446. unsigned char *esi = atmvcc->dev->esi;
  447. if (esi[0] | esi[1] | esi[2] | esi[3] | esi[4] | esi[5])
  448. memcpy(net_dev->dev_addr, esi, net_dev->addr_len);
  449. else
  450. net_dev->dev_addr[2] = 1;
  451. }
  452. list_add(&brvcc->brvccs, &brdev->brvccs);
  453. write_unlock_irq(&devs_lock);
  454. brvcc->device = net_dev;
  455. brvcc->atmvcc = atmvcc;
  456. atmvcc->user_back = brvcc;
  457. brvcc->encaps = (enum br2684_encaps)be.encaps;
  458. brvcc->old_push = atmvcc->push;
  459. barrier();
  460. atmvcc->push = br2684_push;
  461. rq = &sk_atm(atmvcc)->sk_receive_queue;
  462. spin_lock_irqsave(&rq->lock, flags);
  463. if (skb_queue_empty(rq)) {
  464. skb = NULL;
  465. } else {
  466. /* NULL terminate the list. */
  467. rq->prev->next = NULL;
  468. skb = rq->next;
  469. }
  470. rq->prev = rq->next = (struct sk_buff *)rq;
  471. rq->qlen = 0;
  472. spin_unlock_irqrestore(&rq->lock, flags);
  473. while (skb) {
  474. struct sk_buff *next = skb->next;
  475. skb->next = skb->prev = NULL;
  476. BRPRIV(skb->dev)->stats.rx_bytes -= skb->len;
  477. BRPRIV(skb->dev)->stats.rx_packets--;
  478. br2684_push(atmvcc, skb);
  479. skb = next;
  480. }
  481. __module_get(THIS_MODULE);
  482. return 0;
  483. error:
  484. write_unlock_irq(&devs_lock);
  485. kfree(brvcc);
  486. return err;
  487. }
  488. static void br2684_setup(struct net_device *netdev)
  489. {
  490. struct br2684_dev *brdev = BRPRIV(netdev);
  491. ether_setup(netdev);
  492. brdev->net_dev = netdev;
  493. my_eth_mac_addr = netdev->set_mac_address;
  494. netdev->set_mac_address = br2684_mac_addr;
  495. netdev->hard_start_xmit = br2684_start_xmit;
  496. netdev->get_stats = br2684_get_stats;
  497. INIT_LIST_HEAD(&brdev->brvccs);
  498. }
  499. static void br2684_setup_routed(struct net_device *netdev)
  500. {
  501. struct br2684_dev *brdev = BRPRIV(netdev);
  502. brdev->net_dev = netdev;
  503. netdev->hard_header_len = 0;
  504. my_eth_mac_addr = netdev->set_mac_address;
  505. netdev->set_mac_address = br2684_mac_addr;
  506. netdev->hard_start_xmit = br2684_start_xmit;
  507. netdev->get_stats = br2684_get_stats;
  508. netdev->addr_len = 0;
  509. netdev->mtu = 1500;
  510. netdev->type = ARPHRD_PPP;
  511. netdev->flags = IFF_POINTOPOINT | IFF_NOARP | IFF_MULTICAST;
  512. netdev->tx_queue_len = 100;
  513. INIT_LIST_HEAD(&brdev->brvccs);
  514. }
  515. static int br2684_create(void __user * arg)
  516. {
  517. int err;
  518. struct net_device *netdev;
  519. struct br2684_dev *brdev;
  520. struct atm_newif_br2684 ni;
  521. enum br2684_payload payload;
  522. pr_debug("br2684_create\n");
  523. if (copy_from_user(&ni, arg, sizeof ni)) {
  524. return -EFAULT;
  525. }
  526. if (ni.media & BR2684_FLAG_ROUTED)
  527. payload = p_routed;
  528. else
  529. payload = p_bridged;
  530. ni.media &= 0xffff; /* strip flags */
  531. if (ni.media != BR2684_MEDIA_ETHERNET || ni.mtu != 1500) {
  532. return -EINVAL;
  533. }
  534. netdev = alloc_netdev(sizeof(struct br2684_dev),
  535. ni.ifname[0] ? ni.ifname : "nas%d",
  536. (payload == p_routed) ?
  537. br2684_setup_routed : br2684_setup);
  538. if (!netdev)
  539. return -ENOMEM;
  540. brdev = BRPRIV(netdev);
  541. pr_debug("registered netdev %s\n", netdev->name);
  542. /* open, stop, do_ioctl ? */
  543. err = register_netdev(netdev);
  544. if (err < 0) {
  545. printk(KERN_ERR "br2684_create: register_netdev failed\n");
  546. free_netdev(netdev);
  547. return err;
  548. }
  549. write_lock_irq(&devs_lock);
  550. brdev->payload = payload;
  551. brdev->number = list_empty(&br2684_devs) ? 1 :
  552. BRPRIV(list_entry_brdev(br2684_devs.prev))->number + 1;
  553. list_add_tail(&brdev->br2684_devs, &br2684_devs);
  554. write_unlock_irq(&devs_lock);
  555. return 0;
  556. }
  557. /*
  558. * This handles ioctls actually performed on our vcc - we must return
  559. * -ENOIOCTLCMD for any unrecognized ioctl
  560. */
  561. static int br2684_ioctl(struct socket *sock, unsigned int cmd,
  562. unsigned long arg)
  563. {
  564. struct atm_vcc *atmvcc = ATM_SD(sock);
  565. void __user *argp = (void __user *)arg;
  566. atm_backend_t b;
  567. int err;
  568. switch (cmd) {
  569. case ATM_SETBACKEND:
  570. case ATM_NEWBACKENDIF:
  571. err = get_user(b, (atm_backend_t __user *) argp);
  572. if (err)
  573. return -EFAULT;
  574. if (b != ATM_BACKEND_BR2684)
  575. return -ENOIOCTLCMD;
  576. if (!capable(CAP_NET_ADMIN))
  577. return -EPERM;
  578. if (cmd == ATM_SETBACKEND)
  579. return br2684_regvcc(atmvcc, argp);
  580. else
  581. return br2684_create(argp);
  582. #ifdef CONFIG_ATM_BR2684_IPFILTER
  583. case BR2684_SETFILT:
  584. if (atmvcc->push != br2684_push)
  585. return -ENOIOCTLCMD;
  586. if (!capable(CAP_NET_ADMIN))
  587. return -EPERM;
  588. err = br2684_setfilt(atmvcc, argp);
  589. return err;
  590. #endif /* CONFIG_ATM_BR2684_IPFILTER */
  591. }
  592. return -ENOIOCTLCMD;
  593. }
  594. static struct atm_ioctl br2684_ioctl_ops = {
  595. .owner = THIS_MODULE,
  596. .ioctl = br2684_ioctl,
  597. };
  598. #ifdef CONFIG_PROC_FS
  599. static void *br2684_seq_start(struct seq_file *seq, loff_t * pos)
  600. __acquires(devs_lock)
  601. {
  602. read_lock(&devs_lock);
  603. return seq_list_start(&br2684_devs, *pos);
  604. }
  605. static void *br2684_seq_next(struct seq_file *seq, void *v, loff_t * pos)
  606. {
  607. return seq_list_next(v, &br2684_devs, pos);
  608. }
  609. static void br2684_seq_stop(struct seq_file *seq, void *v)
  610. __releases(devs_lock)
  611. {
  612. read_unlock(&devs_lock);
  613. }
  614. static int br2684_seq_show(struct seq_file *seq, void *v)
  615. {
  616. const struct br2684_dev *brdev = list_entry(v, struct br2684_dev,
  617. br2684_devs);
  618. const struct net_device *net_dev = brdev->net_dev;
  619. const struct br2684_vcc *brvcc;
  620. DECLARE_MAC_BUF(mac);
  621. seq_printf(seq, "dev %.16s: num=%d, mac=%s (%s)\n",
  622. net_dev->name,
  623. brdev->number,
  624. print_mac(mac, net_dev->dev_addr),
  625. brdev->mac_was_set ? "set" : "auto");
  626. list_for_each_entry(brvcc, &brdev->brvccs, brvccs) {
  627. seq_printf(seq, " vcc %d.%d.%d: encaps=%s payload=%s"
  628. ", failed copies %u/%u"
  629. "\n", brvcc->atmvcc->dev->number,
  630. brvcc->atmvcc->vpi, brvcc->atmvcc->vci,
  631. (brvcc->encaps == e_llc) ? "LLC" : "VC",
  632. (brdev->payload == p_bridged) ? "bridged" : "routed",
  633. brvcc->copies_failed, brvcc->copies_needed);
  634. #ifdef CONFIG_ATM_BR2684_IPFILTER
  635. #define b1(var, byte) ((u8 *) &brvcc->filter.var)[byte]
  636. #define bs(var) b1(var, 0), b1(var, 1), b1(var, 2), b1(var, 3)
  637. if (brvcc->filter.netmask != 0)
  638. seq_printf(seq, " filter=%d.%d.%d.%d/"
  639. "%d.%d.%d.%d\n", bs(prefix), bs(netmask));
  640. #undef bs
  641. #undef b1
  642. #endif /* CONFIG_ATM_BR2684_IPFILTER */
  643. }
  644. return 0;
  645. }
  646. static const struct seq_operations br2684_seq_ops = {
  647. .start = br2684_seq_start,
  648. .next = br2684_seq_next,
  649. .stop = br2684_seq_stop,
  650. .show = br2684_seq_show,
  651. };
  652. static int br2684_proc_open(struct inode *inode, struct file *file)
  653. {
  654. return seq_open(file, &br2684_seq_ops);
  655. }
  656. static const struct file_operations br2684_proc_ops = {
  657. .owner = THIS_MODULE,
  658. .open = br2684_proc_open,
  659. .read = seq_read,
  660. .llseek = seq_lseek,
  661. .release = seq_release,
  662. };
  663. extern struct proc_dir_entry *atm_proc_root; /* from proc.c */
  664. #endif /* CONFIG_PROC_FS */
  665. static int __init br2684_init(void)
  666. {
  667. #ifdef CONFIG_PROC_FS
  668. struct proc_dir_entry *p;
  669. p = proc_create("br2684", 0, atm_proc_root, &br2684_proc_ops);
  670. if (p == NULL)
  671. return -ENOMEM;
  672. #endif
  673. register_atm_ioctl(&br2684_ioctl_ops);
  674. return 0;
  675. }
  676. static void __exit br2684_exit(void)
  677. {
  678. struct net_device *net_dev;
  679. struct br2684_dev *brdev;
  680. struct br2684_vcc *brvcc;
  681. deregister_atm_ioctl(&br2684_ioctl_ops);
  682. #ifdef CONFIG_PROC_FS
  683. remove_proc_entry("br2684", atm_proc_root);
  684. #endif
  685. while (!list_empty(&br2684_devs)) {
  686. net_dev = list_entry_brdev(br2684_devs.next);
  687. brdev = BRPRIV(net_dev);
  688. while (!list_empty(&brdev->brvccs)) {
  689. brvcc = list_entry_brvcc(brdev->brvccs.next);
  690. br2684_close_vcc(brvcc);
  691. }
  692. list_del(&brdev->br2684_devs);
  693. unregister_netdev(net_dev);
  694. free_netdev(net_dev);
  695. }
  696. }
  697. module_init(br2684_init);
  698. module_exit(br2684_exit);
  699. MODULE_AUTHOR("Marcell GAL");
  700. MODULE_DESCRIPTION("RFC2684 bridged protocols over ATM/AAL5");
  701. MODULE_LICENSE("GPL");