netdevice.h 78 KB

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  1. /*
  2. * INET An implementation of the TCP/IP protocol suite for the LINUX
  3. * operating system. INET is implemented using the BSD Socket
  4. * interface as the means of communication with the user level.
  5. *
  6. * Definitions for the Interfaces handler.
  7. *
  8. * Version: @(#)dev.h 1.0.10 08/12/93
  9. *
  10. * Authors: Ross Biro
  11. * Fred N. van Kempen, <waltje@uWalt.NL.Mugnet.ORG>
  12. * Corey Minyard <wf-rch!minyard@relay.EU.net>
  13. * Donald J. Becker, <becker@cesdis.gsfc.nasa.gov>
  14. * Alan Cox, <alan@lxorguk.ukuu.org.uk>
  15. * Bjorn Ekwall. <bj0rn@blox.se>
  16. * Pekka Riikonen <priikone@poseidon.pspt.fi>
  17. *
  18. * This program is free software; you can redistribute it and/or
  19. * modify it under the terms of the GNU General Public License
  20. * as published by the Free Software Foundation; either version
  21. * 2 of the License, or (at your option) any later version.
  22. *
  23. * Moved to /usr/include/linux for NET3
  24. */
  25. #ifndef _LINUX_NETDEVICE_H
  26. #define _LINUX_NETDEVICE_H
  27. #include <linux/if.h>
  28. #include <linux/if_ether.h>
  29. #include <linux/if_packet.h>
  30. #include <linux/if_link.h>
  31. #ifdef __KERNEL__
  32. #include <linux/pm_qos_params.h>
  33. #include <linux/timer.h>
  34. #include <linux/delay.h>
  35. #include <linux/mm.h>
  36. #include <asm/atomic.h>
  37. #include <asm/cache.h>
  38. #include <asm/byteorder.h>
  39. #include <linux/device.h>
  40. #include <linux/percpu.h>
  41. #include <linux/rculist.h>
  42. #include <linux/dmaengine.h>
  43. #include <linux/workqueue.h>
  44. #include <linux/ethtool.h>
  45. #include <net/net_namespace.h>
  46. #include <net/dsa.h>
  47. #ifdef CONFIG_DCB
  48. #include <net/dcbnl.h>
  49. #endif
  50. struct vlan_group;
  51. struct netpoll_info;
  52. struct phy_device;
  53. /* 802.11 specific */
  54. struct wireless_dev;
  55. /* source back-compat hooks */
  56. #define SET_ETHTOOL_OPS(netdev,ops) \
  57. ( (netdev)->ethtool_ops = (ops) )
  58. #define HAVE_ALLOC_NETDEV /* feature macro: alloc_xxxdev
  59. functions are available. */
  60. #define HAVE_FREE_NETDEV /* free_netdev() */
  61. #define HAVE_NETDEV_PRIV /* netdev_priv() */
  62. /* hardware address assignment types */
  63. #define NET_ADDR_PERM 0 /* address is permanent (default) */
  64. #define NET_ADDR_RANDOM 1 /* address is generated randomly */
  65. #define NET_ADDR_STOLEN 2 /* address is stolen from other device */
  66. /* Backlog congestion levels */
  67. #define NET_RX_SUCCESS 0 /* keep 'em coming, baby */
  68. #define NET_RX_DROP 1 /* packet dropped */
  69. /* Initial net device group. All devices belong to group 0 by default. */
  70. #define INIT_NETDEV_GROUP 0
  71. /*
  72. * Transmit return codes: transmit return codes originate from three different
  73. * namespaces:
  74. *
  75. * - qdisc return codes
  76. * - driver transmit return codes
  77. * - errno values
  78. *
  79. * Drivers are allowed to return any one of those in their hard_start_xmit()
  80. * function. Real network devices commonly used with qdiscs should only return
  81. * the driver transmit return codes though - when qdiscs are used, the actual
  82. * transmission happens asynchronously, so the value is not propagated to
  83. * higher layers. Virtual network devices transmit synchronously, in this case
  84. * the driver transmit return codes are consumed by dev_queue_xmit(), all
  85. * others are propagated to higher layers.
  86. */
  87. /* qdisc ->enqueue() return codes. */
  88. #define NET_XMIT_SUCCESS 0x00
  89. #define NET_XMIT_DROP 0x01 /* skb dropped */
  90. #define NET_XMIT_CN 0x02 /* congestion notification */
  91. #define NET_XMIT_POLICED 0x03 /* skb is shot by police */
  92. #define NET_XMIT_MASK 0x0f /* qdisc flags in net/sch_generic.h */
  93. /* NET_XMIT_CN is special. It does not guarantee that this packet is lost. It
  94. * indicates that the device will soon be dropping packets, or already drops
  95. * some packets of the same priority; prompting us to send less aggressively. */
  96. #define net_xmit_eval(e) ((e) == NET_XMIT_CN ? 0 : (e))
  97. #define net_xmit_errno(e) ((e) != NET_XMIT_CN ? -ENOBUFS : 0)
  98. /* Driver transmit return codes */
  99. #define NETDEV_TX_MASK 0xf0
  100. enum netdev_tx {
  101. __NETDEV_TX_MIN = INT_MIN, /* make sure enum is signed */
  102. NETDEV_TX_OK = 0x00, /* driver took care of packet */
  103. NETDEV_TX_BUSY = 0x10, /* driver tx path was busy*/
  104. NETDEV_TX_LOCKED = 0x20, /* driver tx lock was already taken */
  105. };
  106. typedef enum netdev_tx netdev_tx_t;
  107. /*
  108. * Current order: NETDEV_TX_MASK > NET_XMIT_MASK >= 0 is significant;
  109. * hard_start_xmit() return < NET_XMIT_MASK means skb was consumed.
  110. */
  111. static inline bool dev_xmit_complete(int rc)
  112. {
  113. /*
  114. * Positive cases with an skb consumed by a driver:
  115. * - successful transmission (rc == NETDEV_TX_OK)
  116. * - error while transmitting (rc < 0)
  117. * - error while queueing to a different device (rc & NET_XMIT_MASK)
  118. */
  119. if (likely(rc < NET_XMIT_MASK))
  120. return true;
  121. return false;
  122. }
  123. #endif
  124. #define MAX_ADDR_LEN 32 /* Largest hardware address length */
  125. #ifdef __KERNEL__
  126. /*
  127. * Compute the worst case header length according to the protocols
  128. * used.
  129. */
  130. #if defined(CONFIG_WLAN) || defined(CONFIG_AX25) || defined(CONFIG_AX25_MODULE)
  131. # if defined(CONFIG_MAC80211_MESH)
  132. # define LL_MAX_HEADER 128
  133. # else
  134. # define LL_MAX_HEADER 96
  135. # endif
  136. #elif defined(CONFIG_TR) || defined(CONFIG_TR_MODULE)
  137. # define LL_MAX_HEADER 48
  138. #else
  139. # define LL_MAX_HEADER 32
  140. #endif
  141. #if !defined(CONFIG_NET_IPIP) && !defined(CONFIG_NET_IPIP_MODULE) && \
  142. !defined(CONFIG_NET_IPGRE) && !defined(CONFIG_NET_IPGRE_MODULE) && \
  143. !defined(CONFIG_IPV6_SIT) && !defined(CONFIG_IPV6_SIT_MODULE) && \
  144. !defined(CONFIG_IPV6_TUNNEL) && !defined(CONFIG_IPV6_TUNNEL_MODULE)
  145. #define MAX_HEADER LL_MAX_HEADER
  146. #else
  147. #define MAX_HEADER (LL_MAX_HEADER + 48)
  148. #endif
  149. /*
  150. * Old network device statistics. Fields are native words
  151. * (unsigned long) so they can be read and written atomically.
  152. */
  153. struct net_device_stats {
  154. unsigned long rx_packets;
  155. unsigned long tx_packets;
  156. unsigned long rx_bytes;
  157. unsigned long tx_bytes;
  158. unsigned long rx_errors;
  159. unsigned long tx_errors;
  160. unsigned long rx_dropped;
  161. unsigned long tx_dropped;
  162. unsigned long multicast;
  163. unsigned long collisions;
  164. unsigned long rx_length_errors;
  165. unsigned long rx_over_errors;
  166. unsigned long rx_crc_errors;
  167. unsigned long rx_frame_errors;
  168. unsigned long rx_fifo_errors;
  169. unsigned long rx_missed_errors;
  170. unsigned long tx_aborted_errors;
  171. unsigned long tx_carrier_errors;
  172. unsigned long tx_fifo_errors;
  173. unsigned long tx_heartbeat_errors;
  174. unsigned long tx_window_errors;
  175. unsigned long rx_compressed;
  176. unsigned long tx_compressed;
  177. };
  178. #endif /* __KERNEL__ */
  179. /* Media selection options. */
  180. enum {
  181. IF_PORT_UNKNOWN = 0,
  182. IF_PORT_10BASE2,
  183. IF_PORT_10BASET,
  184. IF_PORT_AUI,
  185. IF_PORT_100BASET,
  186. IF_PORT_100BASETX,
  187. IF_PORT_100BASEFX
  188. };
  189. #ifdef __KERNEL__
  190. #include <linux/cache.h>
  191. #include <linux/skbuff.h>
  192. struct neighbour;
  193. struct neigh_parms;
  194. struct sk_buff;
  195. struct netdev_hw_addr {
  196. struct list_head list;
  197. unsigned char addr[MAX_ADDR_LEN];
  198. unsigned char type;
  199. #define NETDEV_HW_ADDR_T_LAN 1
  200. #define NETDEV_HW_ADDR_T_SAN 2
  201. #define NETDEV_HW_ADDR_T_SLAVE 3
  202. #define NETDEV_HW_ADDR_T_UNICAST 4
  203. #define NETDEV_HW_ADDR_T_MULTICAST 5
  204. bool synced;
  205. bool global_use;
  206. int refcount;
  207. struct rcu_head rcu_head;
  208. };
  209. struct netdev_hw_addr_list {
  210. struct list_head list;
  211. int count;
  212. };
  213. #define netdev_hw_addr_list_count(l) ((l)->count)
  214. #define netdev_hw_addr_list_empty(l) (netdev_hw_addr_list_count(l) == 0)
  215. #define netdev_hw_addr_list_for_each(ha, l) \
  216. list_for_each_entry(ha, &(l)->list, list)
  217. #define netdev_uc_count(dev) netdev_hw_addr_list_count(&(dev)->uc)
  218. #define netdev_uc_empty(dev) netdev_hw_addr_list_empty(&(dev)->uc)
  219. #define netdev_for_each_uc_addr(ha, dev) \
  220. netdev_hw_addr_list_for_each(ha, &(dev)->uc)
  221. #define netdev_mc_count(dev) netdev_hw_addr_list_count(&(dev)->mc)
  222. #define netdev_mc_empty(dev) netdev_hw_addr_list_empty(&(dev)->mc)
  223. #define netdev_for_each_mc_addr(ha, dev) \
  224. netdev_hw_addr_list_for_each(ha, &(dev)->mc)
  225. struct hh_cache {
  226. struct hh_cache *hh_next; /* Next entry */
  227. atomic_t hh_refcnt; /* number of users */
  228. /*
  229. * We want hh_output, hh_len, hh_lock and hh_data be a in a separate
  230. * cache line on SMP.
  231. * They are mostly read, but hh_refcnt may be changed quite frequently,
  232. * incurring cache line ping pongs.
  233. */
  234. __be16 hh_type ____cacheline_aligned_in_smp;
  235. /* protocol identifier, f.e ETH_P_IP
  236. * NOTE: For VLANs, this will be the
  237. * encapuslated type. --BLG
  238. */
  239. u16 hh_len; /* length of header */
  240. int (*hh_output)(struct sk_buff *skb);
  241. seqlock_t hh_lock;
  242. /* cached hardware header; allow for machine alignment needs. */
  243. #define HH_DATA_MOD 16
  244. #define HH_DATA_OFF(__len) \
  245. (HH_DATA_MOD - (((__len - 1) & (HH_DATA_MOD - 1)) + 1))
  246. #define HH_DATA_ALIGN(__len) \
  247. (((__len)+(HH_DATA_MOD-1))&~(HH_DATA_MOD - 1))
  248. unsigned long hh_data[HH_DATA_ALIGN(LL_MAX_HEADER) / sizeof(long)];
  249. };
  250. static inline void hh_cache_put(struct hh_cache *hh)
  251. {
  252. if (atomic_dec_and_test(&hh->hh_refcnt))
  253. kfree(hh);
  254. }
  255. /* Reserve HH_DATA_MOD byte aligned hard_header_len, but at least that much.
  256. * Alternative is:
  257. * dev->hard_header_len ? (dev->hard_header_len +
  258. * (HH_DATA_MOD - 1)) & ~(HH_DATA_MOD - 1) : 0
  259. *
  260. * We could use other alignment values, but we must maintain the
  261. * relationship HH alignment <= LL alignment.
  262. *
  263. * LL_ALLOCATED_SPACE also takes into account the tailroom the device
  264. * may need.
  265. */
  266. #define LL_RESERVED_SPACE(dev) \
  267. ((((dev)->hard_header_len+(dev)->needed_headroom)&~(HH_DATA_MOD - 1)) + HH_DATA_MOD)
  268. #define LL_RESERVED_SPACE_EXTRA(dev,extra) \
  269. ((((dev)->hard_header_len+(dev)->needed_headroom+(extra))&~(HH_DATA_MOD - 1)) + HH_DATA_MOD)
  270. #define LL_ALLOCATED_SPACE(dev) \
  271. ((((dev)->hard_header_len+(dev)->needed_headroom+(dev)->needed_tailroom)&~(HH_DATA_MOD - 1)) + HH_DATA_MOD)
  272. struct header_ops {
  273. int (*create) (struct sk_buff *skb, struct net_device *dev,
  274. unsigned short type, const void *daddr,
  275. const void *saddr, unsigned len);
  276. int (*parse)(const struct sk_buff *skb, unsigned char *haddr);
  277. int (*rebuild)(struct sk_buff *skb);
  278. #define HAVE_HEADER_CACHE
  279. int (*cache)(const struct neighbour *neigh, struct hh_cache *hh);
  280. void (*cache_update)(struct hh_cache *hh,
  281. const struct net_device *dev,
  282. const unsigned char *haddr);
  283. };
  284. /* These flag bits are private to the generic network queueing
  285. * layer, they may not be explicitly referenced by any other
  286. * code.
  287. */
  288. enum netdev_state_t {
  289. __LINK_STATE_START,
  290. __LINK_STATE_PRESENT,
  291. __LINK_STATE_NOCARRIER,
  292. __LINK_STATE_LINKWATCH_PENDING,
  293. __LINK_STATE_DORMANT,
  294. };
  295. /*
  296. * This structure holds at boot time configured netdevice settings. They
  297. * are then used in the device probing.
  298. */
  299. struct netdev_boot_setup {
  300. char name[IFNAMSIZ];
  301. struct ifmap map;
  302. };
  303. #define NETDEV_BOOT_SETUP_MAX 8
  304. extern int __init netdev_boot_setup(char *str);
  305. /*
  306. * Structure for NAPI scheduling similar to tasklet but with weighting
  307. */
  308. struct napi_struct {
  309. /* The poll_list must only be managed by the entity which
  310. * changes the state of the NAPI_STATE_SCHED bit. This means
  311. * whoever atomically sets that bit can add this napi_struct
  312. * to the per-cpu poll_list, and whoever clears that bit
  313. * can remove from the list right before clearing the bit.
  314. */
  315. struct list_head poll_list;
  316. unsigned long state;
  317. int weight;
  318. int (*poll)(struct napi_struct *, int);
  319. #ifdef CONFIG_NETPOLL
  320. spinlock_t poll_lock;
  321. int poll_owner;
  322. #endif
  323. unsigned int gro_count;
  324. struct net_device *dev;
  325. struct list_head dev_list;
  326. struct sk_buff *gro_list;
  327. struct sk_buff *skb;
  328. };
  329. enum {
  330. NAPI_STATE_SCHED, /* Poll is scheduled */
  331. NAPI_STATE_DISABLE, /* Disable pending */
  332. NAPI_STATE_NPSVC, /* Netpoll - don't dequeue from poll_list */
  333. };
  334. enum gro_result {
  335. GRO_MERGED,
  336. GRO_MERGED_FREE,
  337. GRO_HELD,
  338. GRO_NORMAL,
  339. GRO_DROP,
  340. };
  341. typedef enum gro_result gro_result_t;
  342. typedef struct sk_buff *rx_handler_func_t(struct sk_buff *skb);
  343. extern void __napi_schedule(struct napi_struct *n);
  344. static inline int napi_disable_pending(struct napi_struct *n)
  345. {
  346. return test_bit(NAPI_STATE_DISABLE, &n->state);
  347. }
  348. /**
  349. * napi_schedule_prep - check if napi can be scheduled
  350. * @n: napi context
  351. *
  352. * Test if NAPI routine is already running, and if not mark
  353. * it as running. This is used as a condition variable
  354. * insure only one NAPI poll instance runs. We also make
  355. * sure there is no pending NAPI disable.
  356. */
  357. static inline int napi_schedule_prep(struct napi_struct *n)
  358. {
  359. return !napi_disable_pending(n) &&
  360. !test_and_set_bit(NAPI_STATE_SCHED, &n->state);
  361. }
  362. /**
  363. * napi_schedule - schedule NAPI poll
  364. * @n: napi context
  365. *
  366. * Schedule NAPI poll routine to be called if it is not already
  367. * running.
  368. */
  369. static inline void napi_schedule(struct napi_struct *n)
  370. {
  371. if (napi_schedule_prep(n))
  372. __napi_schedule(n);
  373. }
  374. /* Try to reschedule poll. Called by dev->poll() after napi_complete(). */
  375. static inline int napi_reschedule(struct napi_struct *napi)
  376. {
  377. if (napi_schedule_prep(napi)) {
  378. __napi_schedule(napi);
  379. return 1;
  380. }
  381. return 0;
  382. }
  383. /**
  384. * napi_complete - NAPI processing complete
  385. * @n: napi context
  386. *
  387. * Mark NAPI processing as complete.
  388. */
  389. extern void __napi_complete(struct napi_struct *n);
  390. extern void napi_complete(struct napi_struct *n);
  391. /**
  392. * napi_disable - prevent NAPI from scheduling
  393. * @n: napi context
  394. *
  395. * Stop NAPI from being scheduled on this context.
  396. * Waits till any outstanding processing completes.
  397. */
  398. static inline void napi_disable(struct napi_struct *n)
  399. {
  400. set_bit(NAPI_STATE_DISABLE, &n->state);
  401. while (test_and_set_bit(NAPI_STATE_SCHED, &n->state))
  402. msleep(1);
  403. clear_bit(NAPI_STATE_DISABLE, &n->state);
  404. }
  405. /**
  406. * napi_enable - enable NAPI scheduling
  407. * @n: napi context
  408. *
  409. * Resume NAPI from being scheduled on this context.
  410. * Must be paired with napi_disable.
  411. */
  412. static inline void napi_enable(struct napi_struct *n)
  413. {
  414. BUG_ON(!test_bit(NAPI_STATE_SCHED, &n->state));
  415. smp_mb__before_clear_bit();
  416. clear_bit(NAPI_STATE_SCHED, &n->state);
  417. }
  418. #ifdef CONFIG_SMP
  419. /**
  420. * napi_synchronize - wait until NAPI is not running
  421. * @n: napi context
  422. *
  423. * Wait until NAPI is done being scheduled on this context.
  424. * Waits till any outstanding processing completes but
  425. * does not disable future activations.
  426. */
  427. static inline void napi_synchronize(const struct napi_struct *n)
  428. {
  429. while (test_bit(NAPI_STATE_SCHED, &n->state))
  430. msleep(1);
  431. }
  432. #else
  433. # define napi_synchronize(n) barrier()
  434. #endif
  435. enum netdev_queue_state_t {
  436. __QUEUE_STATE_XOFF,
  437. __QUEUE_STATE_FROZEN,
  438. #define QUEUE_STATE_XOFF_OR_FROZEN ((1 << __QUEUE_STATE_XOFF) | \
  439. (1 << __QUEUE_STATE_FROZEN))
  440. };
  441. struct netdev_queue {
  442. /*
  443. * read mostly part
  444. */
  445. struct net_device *dev;
  446. struct Qdisc *qdisc;
  447. unsigned long state;
  448. struct Qdisc *qdisc_sleeping;
  449. #ifdef CONFIG_RPS
  450. struct kobject kobj;
  451. #endif
  452. #if defined(CONFIG_XPS) && defined(CONFIG_NUMA)
  453. int numa_node;
  454. #endif
  455. /*
  456. * write mostly part
  457. */
  458. spinlock_t _xmit_lock ____cacheline_aligned_in_smp;
  459. int xmit_lock_owner;
  460. /*
  461. * please use this field instead of dev->trans_start
  462. */
  463. unsigned long trans_start;
  464. } ____cacheline_aligned_in_smp;
  465. static inline int netdev_queue_numa_node_read(const struct netdev_queue *q)
  466. {
  467. #if defined(CONFIG_XPS) && defined(CONFIG_NUMA)
  468. return q->numa_node;
  469. #else
  470. return NUMA_NO_NODE;
  471. #endif
  472. }
  473. static inline void netdev_queue_numa_node_write(struct netdev_queue *q, int node)
  474. {
  475. #if defined(CONFIG_XPS) && defined(CONFIG_NUMA)
  476. q->numa_node = node;
  477. #endif
  478. }
  479. #ifdef CONFIG_RPS
  480. /*
  481. * This structure holds an RPS map which can be of variable length. The
  482. * map is an array of CPUs.
  483. */
  484. struct rps_map {
  485. unsigned int len;
  486. struct rcu_head rcu;
  487. u16 cpus[0];
  488. };
  489. #define RPS_MAP_SIZE(_num) (sizeof(struct rps_map) + (_num * sizeof(u16)))
  490. /*
  491. * The rps_dev_flow structure contains the mapping of a flow to a CPU, the
  492. * tail pointer for that CPU's input queue at the time of last enqueue, and
  493. * a hardware filter index.
  494. */
  495. struct rps_dev_flow {
  496. u16 cpu;
  497. u16 filter;
  498. unsigned int last_qtail;
  499. };
  500. #define RPS_NO_FILTER 0xffff
  501. /*
  502. * The rps_dev_flow_table structure contains a table of flow mappings.
  503. */
  504. struct rps_dev_flow_table {
  505. unsigned int mask;
  506. struct rcu_head rcu;
  507. struct work_struct free_work;
  508. struct rps_dev_flow flows[0];
  509. };
  510. #define RPS_DEV_FLOW_TABLE_SIZE(_num) (sizeof(struct rps_dev_flow_table) + \
  511. (_num * sizeof(struct rps_dev_flow)))
  512. /*
  513. * The rps_sock_flow_table contains mappings of flows to the last CPU
  514. * on which they were processed by the application (set in recvmsg).
  515. */
  516. struct rps_sock_flow_table {
  517. unsigned int mask;
  518. u16 ents[0];
  519. };
  520. #define RPS_SOCK_FLOW_TABLE_SIZE(_num) (sizeof(struct rps_sock_flow_table) + \
  521. (_num * sizeof(u16)))
  522. #define RPS_NO_CPU 0xffff
  523. static inline void rps_record_sock_flow(struct rps_sock_flow_table *table,
  524. u32 hash)
  525. {
  526. if (table && hash) {
  527. unsigned int cpu, index = hash & table->mask;
  528. /* We only give a hint, preemption can change cpu under us */
  529. cpu = raw_smp_processor_id();
  530. if (table->ents[index] != cpu)
  531. table->ents[index] = cpu;
  532. }
  533. }
  534. static inline void rps_reset_sock_flow(struct rps_sock_flow_table *table,
  535. u32 hash)
  536. {
  537. if (table && hash)
  538. table->ents[hash & table->mask] = RPS_NO_CPU;
  539. }
  540. extern struct rps_sock_flow_table __rcu *rps_sock_flow_table;
  541. #ifdef CONFIG_RFS_ACCEL
  542. extern bool rps_may_expire_flow(struct net_device *dev, u16 rxq_index,
  543. u32 flow_id, u16 filter_id);
  544. #endif
  545. /* This structure contains an instance of an RX queue. */
  546. struct netdev_rx_queue {
  547. struct rps_map __rcu *rps_map;
  548. struct rps_dev_flow_table __rcu *rps_flow_table;
  549. struct kobject kobj;
  550. struct net_device *dev;
  551. } ____cacheline_aligned_in_smp;
  552. #endif /* CONFIG_RPS */
  553. #ifdef CONFIG_XPS
  554. /*
  555. * This structure holds an XPS map which can be of variable length. The
  556. * map is an array of queues.
  557. */
  558. struct xps_map {
  559. unsigned int len;
  560. unsigned int alloc_len;
  561. struct rcu_head rcu;
  562. u16 queues[0];
  563. };
  564. #define XPS_MAP_SIZE(_num) (sizeof(struct xps_map) + (_num * sizeof(u16)))
  565. #define XPS_MIN_MAP_ALLOC ((L1_CACHE_BYTES - sizeof(struct xps_map)) \
  566. / sizeof(u16))
  567. /*
  568. * This structure holds all XPS maps for device. Maps are indexed by CPU.
  569. */
  570. struct xps_dev_maps {
  571. struct rcu_head rcu;
  572. struct xps_map __rcu *cpu_map[0];
  573. };
  574. #define XPS_DEV_MAPS_SIZE (sizeof(struct xps_dev_maps) + \
  575. (nr_cpu_ids * sizeof(struct xps_map *)))
  576. #endif /* CONFIG_XPS */
  577. #define TC_MAX_QUEUE 16
  578. #define TC_BITMASK 15
  579. /* HW offloaded queuing disciplines txq count and offset maps */
  580. struct netdev_tc_txq {
  581. u16 count;
  582. u16 offset;
  583. };
  584. /*
  585. * This structure defines the management hooks for network devices.
  586. * The following hooks can be defined; unless noted otherwise, they are
  587. * optional and can be filled with a null pointer.
  588. *
  589. * int (*ndo_init)(struct net_device *dev);
  590. * This function is called once when network device is registered.
  591. * The network device can use this to any late stage initializaton
  592. * or semantic validattion. It can fail with an error code which will
  593. * be propogated back to register_netdev
  594. *
  595. * void (*ndo_uninit)(struct net_device *dev);
  596. * This function is called when device is unregistered or when registration
  597. * fails. It is not called if init fails.
  598. *
  599. * int (*ndo_open)(struct net_device *dev);
  600. * This function is called when network device transistions to the up
  601. * state.
  602. *
  603. * int (*ndo_stop)(struct net_device *dev);
  604. * This function is called when network device transistions to the down
  605. * state.
  606. *
  607. * netdev_tx_t (*ndo_start_xmit)(struct sk_buff *skb,
  608. * struct net_device *dev);
  609. * Called when a packet needs to be transmitted.
  610. * Must return NETDEV_TX_OK , NETDEV_TX_BUSY.
  611. * (can also return NETDEV_TX_LOCKED iff NETIF_F_LLTX)
  612. * Required can not be NULL.
  613. *
  614. * u16 (*ndo_select_queue)(struct net_device *dev, struct sk_buff *skb);
  615. * Called to decide which queue to when device supports multiple
  616. * transmit queues.
  617. *
  618. * void (*ndo_change_rx_flags)(struct net_device *dev, int flags);
  619. * This function is called to allow device receiver to make
  620. * changes to configuration when multicast or promiscious is enabled.
  621. *
  622. * void (*ndo_set_rx_mode)(struct net_device *dev);
  623. * This function is called device changes address list filtering.
  624. *
  625. * void (*ndo_set_multicast_list)(struct net_device *dev);
  626. * This function is called when the multicast address list changes.
  627. *
  628. * int (*ndo_set_mac_address)(struct net_device *dev, void *addr);
  629. * This function is called when the Media Access Control address
  630. * needs to be changed. If this interface is not defined, the
  631. * mac address can not be changed.
  632. *
  633. * int (*ndo_validate_addr)(struct net_device *dev);
  634. * Test if Media Access Control address is valid for the device.
  635. *
  636. * int (*ndo_do_ioctl)(struct net_device *dev, struct ifreq *ifr, int cmd);
  637. * Called when a user request an ioctl which can't be handled by
  638. * the generic interface code. If not defined ioctl's return
  639. * not supported error code.
  640. *
  641. * int (*ndo_set_config)(struct net_device *dev, struct ifmap *map);
  642. * Used to set network devices bus interface parameters. This interface
  643. * is retained for legacy reason, new devices should use the bus
  644. * interface (PCI) for low level management.
  645. *
  646. * int (*ndo_change_mtu)(struct net_device *dev, int new_mtu);
  647. * Called when a user wants to change the Maximum Transfer Unit
  648. * of a device. If not defined, any request to change MTU will
  649. * will return an error.
  650. *
  651. * void (*ndo_tx_timeout)(struct net_device *dev);
  652. * Callback uses when the transmitter has not made any progress
  653. * for dev->watchdog ticks.
  654. *
  655. * struct rtnl_link_stats64* (*ndo_get_stats64)(struct net_device *dev,
  656. * struct rtnl_link_stats64 *storage);
  657. * struct net_device_stats* (*ndo_get_stats)(struct net_device *dev);
  658. * Called when a user wants to get the network device usage
  659. * statistics. Drivers must do one of the following:
  660. * 1. Define @ndo_get_stats64 to fill in a zero-initialised
  661. * rtnl_link_stats64 structure passed by the caller.
  662. * 2. Define @ndo_get_stats to update a net_device_stats structure
  663. * (which should normally be dev->stats) and return a pointer to
  664. * it. The structure may be changed asynchronously only if each
  665. * field is written atomically.
  666. * 3. Update dev->stats asynchronously and atomically, and define
  667. * neither operation.
  668. *
  669. * void (*ndo_vlan_rx_register)(struct net_device *dev, struct vlan_group *grp);
  670. * If device support VLAN receive acceleration
  671. * (ie. dev->features & NETIF_F_HW_VLAN_RX), then this function is called
  672. * when vlan groups for the device changes. Note: grp is NULL
  673. * if no vlan's groups are being used.
  674. *
  675. * void (*ndo_vlan_rx_add_vid)(struct net_device *dev, unsigned short vid);
  676. * If device support VLAN filtering (dev->features & NETIF_F_HW_VLAN_FILTER)
  677. * this function is called when a VLAN id is registered.
  678. *
  679. * void (*ndo_vlan_rx_kill_vid)(struct net_device *dev, unsigned short vid);
  680. * If device support VLAN filtering (dev->features & NETIF_F_HW_VLAN_FILTER)
  681. * this function is called when a VLAN id is unregistered.
  682. *
  683. * void (*ndo_poll_controller)(struct net_device *dev);
  684. *
  685. * SR-IOV management functions.
  686. * int (*ndo_set_vf_mac)(struct net_device *dev, int vf, u8* mac);
  687. * int (*ndo_set_vf_vlan)(struct net_device *dev, int vf, u16 vlan, u8 qos);
  688. * int (*ndo_set_vf_tx_rate)(struct net_device *dev, int vf, int rate);
  689. * int (*ndo_get_vf_config)(struct net_device *dev,
  690. * int vf, struct ifla_vf_info *ivf);
  691. * int (*ndo_set_vf_port)(struct net_device *dev, int vf,
  692. * struct nlattr *port[]);
  693. * int (*ndo_get_vf_port)(struct net_device *dev, int vf, struct sk_buff *skb);
  694. * int (*ndo_setup_tc)(struct net_device *dev, u8 tc)
  695. * Called to setup 'tc' number of traffic classes in the net device. This
  696. * is always called from the stack with the rtnl lock held and netif tx
  697. * queues stopped. This allows the netdevice to perform queue management
  698. * safely.
  699. *
  700. * RFS acceleration.
  701. * int (*ndo_rx_flow_steer)(struct net_device *dev, const struct sk_buff *skb,
  702. * u16 rxq_index, u32 flow_id);
  703. * Set hardware filter for RFS. rxq_index is the target queue index;
  704. * flow_id is a flow ID to be passed to rps_may_expire_flow() later.
  705. * Return the filter ID on success, or a negative error code.
  706. *
  707. * Slave management functions (for bridge, bonding, etc). User should
  708. * call netdev_set_master() to set dev->master properly.
  709. * int (*ndo_add_slave)(struct net_device *dev, struct net_device *slave_dev);
  710. * Called to make another netdev an underling.
  711. *
  712. * int (*ndo_del_slave)(struct net_device *dev, struct net_device *slave_dev);
  713. * Called to release previously enslaved netdev.
  714. */
  715. #define HAVE_NET_DEVICE_OPS
  716. struct net_device_ops {
  717. int (*ndo_init)(struct net_device *dev);
  718. void (*ndo_uninit)(struct net_device *dev);
  719. int (*ndo_open)(struct net_device *dev);
  720. int (*ndo_stop)(struct net_device *dev);
  721. netdev_tx_t (*ndo_start_xmit) (struct sk_buff *skb,
  722. struct net_device *dev);
  723. u16 (*ndo_select_queue)(struct net_device *dev,
  724. struct sk_buff *skb);
  725. void (*ndo_change_rx_flags)(struct net_device *dev,
  726. int flags);
  727. void (*ndo_set_rx_mode)(struct net_device *dev);
  728. void (*ndo_set_multicast_list)(struct net_device *dev);
  729. int (*ndo_set_mac_address)(struct net_device *dev,
  730. void *addr);
  731. int (*ndo_validate_addr)(struct net_device *dev);
  732. int (*ndo_do_ioctl)(struct net_device *dev,
  733. struct ifreq *ifr, int cmd);
  734. int (*ndo_set_config)(struct net_device *dev,
  735. struct ifmap *map);
  736. int (*ndo_change_mtu)(struct net_device *dev,
  737. int new_mtu);
  738. int (*ndo_neigh_setup)(struct net_device *dev,
  739. struct neigh_parms *);
  740. void (*ndo_tx_timeout) (struct net_device *dev);
  741. struct rtnl_link_stats64* (*ndo_get_stats64)(struct net_device *dev,
  742. struct rtnl_link_stats64 *storage);
  743. struct net_device_stats* (*ndo_get_stats)(struct net_device *dev);
  744. void (*ndo_vlan_rx_register)(struct net_device *dev,
  745. struct vlan_group *grp);
  746. void (*ndo_vlan_rx_add_vid)(struct net_device *dev,
  747. unsigned short vid);
  748. void (*ndo_vlan_rx_kill_vid)(struct net_device *dev,
  749. unsigned short vid);
  750. #ifdef CONFIG_NET_POLL_CONTROLLER
  751. void (*ndo_poll_controller)(struct net_device *dev);
  752. int (*ndo_netpoll_setup)(struct net_device *dev,
  753. struct netpoll_info *info);
  754. void (*ndo_netpoll_cleanup)(struct net_device *dev);
  755. #endif
  756. int (*ndo_set_vf_mac)(struct net_device *dev,
  757. int queue, u8 *mac);
  758. int (*ndo_set_vf_vlan)(struct net_device *dev,
  759. int queue, u16 vlan, u8 qos);
  760. int (*ndo_set_vf_tx_rate)(struct net_device *dev,
  761. int vf, int rate);
  762. int (*ndo_get_vf_config)(struct net_device *dev,
  763. int vf,
  764. struct ifla_vf_info *ivf);
  765. int (*ndo_set_vf_port)(struct net_device *dev,
  766. int vf,
  767. struct nlattr *port[]);
  768. int (*ndo_get_vf_port)(struct net_device *dev,
  769. int vf, struct sk_buff *skb);
  770. int (*ndo_setup_tc)(struct net_device *dev, u8 tc);
  771. #if defined(CONFIG_FCOE) || defined(CONFIG_FCOE_MODULE)
  772. int (*ndo_fcoe_enable)(struct net_device *dev);
  773. int (*ndo_fcoe_disable)(struct net_device *dev);
  774. int (*ndo_fcoe_ddp_setup)(struct net_device *dev,
  775. u16 xid,
  776. struct scatterlist *sgl,
  777. unsigned int sgc);
  778. int (*ndo_fcoe_ddp_done)(struct net_device *dev,
  779. u16 xid);
  780. #define NETDEV_FCOE_WWNN 0
  781. #define NETDEV_FCOE_WWPN 1
  782. int (*ndo_fcoe_get_wwn)(struct net_device *dev,
  783. u64 *wwn, int type);
  784. #endif
  785. #ifdef CONFIG_RFS_ACCEL
  786. int (*ndo_rx_flow_steer)(struct net_device *dev,
  787. const struct sk_buff *skb,
  788. u16 rxq_index,
  789. u32 flow_id);
  790. #endif
  791. int (*ndo_add_slave)(struct net_device *dev,
  792. struct net_device *slave_dev);
  793. int (*ndo_del_slave)(struct net_device *dev,
  794. struct net_device *slave_dev);
  795. };
  796. /*
  797. * The DEVICE structure.
  798. * Actually, this whole structure is a big mistake. It mixes I/O
  799. * data with strictly "high-level" data, and it has to know about
  800. * almost every data structure used in the INET module.
  801. *
  802. * FIXME: cleanup struct net_device such that network protocol info
  803. * moves out.
  804. */
  805. struct net_device {
  806. /*
  807. * This is the first field of the "visible" part of this structure
  808. * (i.e. as seen by users in the "Space.c" file). It is the name
  809. * of the interface.
  810. */
  811. char name[IFNAMSIZ];
  812. struct pm_qos_request_list pm_qos_req;
  813. /* device name hash chain */
  814. struct hlist_node name_hlist;
  815. /* snmp alias */
  816. char *ifalias;
  817. /*
  818. * I/O specific fields
  819. * FIXME: Merge these and struct ifmap into one
  820. */
  821. unsigned long mem_end; /* shared mem end */
  822. unsigned long mem_start; /* shared mem start */
  823. unsigned long base_addr; /* device I/O address */
  824. unsigned int irq; /* device IRQ number */
  825. /*
  826. * Some hardware also needs these fields, but they are not
  827. * part of the usual set specified in Space.c.
  828. */
  829. unsigned char if_port; /* Selectable AUI, TP,..*/
  830. unsigned char dma; /* DMA channel */
  831. unsigned long state;
  832. struct list_head dev_list;
  833. struct list_head napi_list;
  834. struct list_head unreg_list;
  835. /* Net device features */
  836. u32 features;
  837. /* VLAN feature mask */
  838. u32 vlan_features;
  839. #define NETIF_F_SG 1 /* Scatter/gather IO. */
  840. #define NETIF_F_IP_CSUM 2 /* Can checksum TCP/UDP over IPv4. */
  841. #define NETIF_F_NO_CSUM 4 /* Does not require checksum. F.e. loopack. */
  842. #define NETIF_F_HW_CSUM 8 /* Can checksum all the packets. */
  843. #define NETIF_F_IPV6_CSUM 16 /* Can checksum TCP/UDP over IPV6 */
  844. #define NETIF_F_HIGHDMA 32 /* Can DMA to high memory. */
  845. #define NETIF_F_FRAGLIST 64 /* Scatter/gather IO. */
  846. #define NETIF_F_HW_VLAN_TX 128 /* Transmit VLAN hw acceleration */
  847. #define NETIF_F_HW_VLAN_RX 256 /* Receive VLAN hw acceleration */
  848. #define NETIF_F_HW_VLAN_FILTER 512 /* Receive filtering on VLAN */
  849. #define NETIF_F_VLAN_CHALLENGED 1024 /* Device cannot handle VLAN packets */
  850. #define NETIF_F_GSO 2048 /* Enable software GSO. */
  851. #define NETIF_F_LLTX 4096 /* LockLess TX - deprecated. Please */
  852. /* do not use LLTX in new drivers */
  853. #define NETIF_F_NETNS_LOCAL 8192 /* Does not change network namespaces */
  854. #define NETIF_F_GRO 16384 /* Generic receive offload */
  855. #define NETIF_F_LRO 32768 /* large receive offload */
  856. /* the GSO_MASK reserves bits 16 through 23 */
  857. #define NETIF_F_FCOE_CRC (1 << 24) /* FCoE CRC32 */
  858. #define NETIF_F_SCTP_CSUM (1 << 25) /* SCTP checksum offload */
  859. #define NETIF_F_FCOE_MTU (1 << 26) /* Supports max FCoE MTU, 2158 bytes*/
  860. #define NETIF_F_NTUPLE (1 << 27) /* N-tuple filters supported */
  861. #define NETIF_F_RXHASH (1 << 28) /* Receive hashing offload */
  862. /* Segmentation offload features */
  863. #define NETIF_F_GSO_SHIFT 16
  864. #define NETIF_F_GSO_MASK 0x00ff0000
  865. #define NETIF_F_TSO (SKB_GSO_TCPV4 << NETIF_F_GSO_SHIFT)
  866. #define NETIF_F_UFO (SKB_GSO_UDP << NETIF_F_GSO_SHIFT)
  867. #define NETIF_F_GSO_ROBUST (SKB_GSO_DODGY << NETIF_F_GSO_SHIFT)
  868. #define NETIF_F_TSO_ECN (SKB_GSO_TCP_ECN << NETIF_F_GSO_SHIFT)
  869. #define NETIF_F_TSO6 (SKB_GSO_TCPV6 << NETIF_F_GSO_SHIFT)
  870. #define NETIF_F_FSO (SKB_GSO_FCOE << NETIF_F_GSO_SHIFT)
  871. /* List of features with software fallbacks. */
  872. #define NETIF_F_GSO_SOFTWARE (NETIF_F_TSO | NETIF_F_TSO_ECN | \
  873. NETIF_F_TSO6 | NETIF_F_UFO)
  874. #define NETIF_F_GEN_CSUM (NETIF_F_NO_CSUM | NETIF_F_HW_CSUM)
  875. #define NETIF_F_V4_CSUM (NETIF_F_GEN_CSUM | NETIF_F_IP_CSUM)
  876. #define NETIF_F_V6_CSUM (NETIF_F_GEN_CSUM | NETIF_F_IPV6_CSUM)
  877. #define NETIF_F_ALL_CSUM (NETIF_F_V4_CSUM | NETIF_F_V6_CSUM)
  878. /*
  879. * If one device supports one of these features, then enable them
  880. * for all in netdev_increment_features.
  881. */
  882. #define NETIF_F_ONE_FOR_ALL (NETIF_F_GSO_SOFTWARE | NETIF_F_GSO_ROBUST | \
  883. NETIF_F_SG | NETIF_F_HIGHDMA | \
  884. NETIF_F_FRAGLIST)
  885. /* Interface index. Unique device identifier */
  886. int ifindex;
  887. int iflink;
  888. struct net_device_stats stats;
  889. atomic_long_t rx_dropped; /* dropped packets by core network
  890. * Do not use this in drivers.
  891. */
  892. #ifdef CONFIG_WIRELESS_EXT
  893. /* List of functions to handle Wireless Extensions (instead of ioctl).
  894. * See <net/iw_handler.h> for details. Jean II */
  895. const struct iw_handler_def * wireless_handlers;
  896. /* Instance data managed by the core of Wireless Extensions. */
  897. struct iw_public_data * wireless_data;
  898. #endif
  899. /* Management operations */
  900. const struct net_device_ops *netdev_ops;
  901. const struct ethtool_ops *ethtool_ops;
  902. /* Hardware header description */
  903. const struct header_ops *header_ops;
  904. unsigned int flags; /* interface flags (a la BSD) */
  905. unsigned short gflags;
  906. unsigned int priv_flags; /* Like 'flags' but invisible to userspace. */
  907. unsigned short padded; /* How much padding added by alloc_netdev() */
  908. unsigned char operstate; /* RFC2863 operstate */
  909. unsigned char link_mode; /* mapping policy to operstate */
  910. unsigned int mtu; /* interface MTU value */
  911. unsigned short type; /* interface hardware type */
  912. unsigned short hard_header_len; /* hardware hdr length */
  913. /* extra head- and tailroom the hardware may need, but not in all cases
  914. * can this be guaranteed, especially tailroom. Some cases also use
  915. * LL_MAX_HEADER instead to allocate the skb.
  916. */
  917. unsigned short needed_headroom;
  918. unsigned short needed_tailroom;
  919. /* Interface address info. */
  920. unsigned char perm_addr[MAX_ADDR_LEN]; /* permanent hw address */
  921. unsigned char addr_assign_type; /* hw address assignment type */
  922. unsigned char addr_len; /* hardware address length */
  923. unsigned short dev_id; /* for shared network cards */
  924. spinlock_t addr_list_lock;
  925. struct netdev_hw_addr_list uc; /* Unicast mac addresses */
  926. struct netdev_hw_addr_list mc; /* Multicast mac addresses */
  927. int uc_promisc;
  928. unsigned int promiscuity;
  929. unsigned int allmulti;
  930. /* Protocol specific pointers */
  931. #if defined(CONFIG_VLAN_8021Q) || defined(CONFIG_VLAN_8021Q_MODULE)
  932. struct vlan_group __rcu *vlgrp; /* VLAN group */
  933. #endif
  934. #ifdef CONFIG_NET_DSA
  935. void *dsa_ptr; /* dsa specific data */
  936. #endif
  937. void *atalk_ptr; /* AppleTalk link */
  938. struct in_device __rcu *ip_ptr; /* IPv4 specific data */
  939. struct dn_dev __rcu *dn_ptr; /* DECnet specific data */
  940. struct inet6_dev __rcu *ip6_ptr; /* IPv6 specific data */
  941. void *ec_ptr; /* Econet specific data */
  942. void *ax25_ptr; /* AX.25 specific data */
  943. struct wireless_dev *ieee80211_ptr; /* IEEE 802.11 specific data,
  944. assign before registering */
  945. /*
  946. * Cache lines mostly used on receive path (including eth_type_trans())
  947. */
  948. unsigned long last_rx; /* Time of last Rx
  949. * This should not be set in
  950. * drivers, unless really needed,
  951. * because network stack (bonding)
  952. * use it if/when necessary, to
  953. * avoid dirtying this cache line.
  954. */
  955. struct net_device *master; /* Pointer to master device of a group,
  956. * which this device is member of.
  957. */
  958. /* Interface address info used in eth_type_trans() */
  959. unsigned char *dev_addr; /* hw address, (before bcast
  960. because most packets are
  961. unicast) */
  962. struct netdev_hw_addr_list dev_addrs; /* list of device
  963. hw addresses */
  964. unsigned char broadcast[MAX_ADDR_LEN]; /* hw bcast add */
  965. #ifdef CONFIG_RPS
  966. struct kset *queues_kset;
  967. struct netdev_rx_queue *_rx;
  968. /* Number of RX queues allocated at register_netdev() time */
  969. unsigned int num_rx_queues;
  970. /* Number of RX queues currently active in device */
  971. unsigned int real_num_rx_queues;
  972. #ifdef CONFIG_RFS_ACCEL
  973. /* CPU reverse-mapping for RX completion interrupts, indexed
  974. * by RX queue number. Assigned by driver. This must only be
  975. * set if the ndo_rx_flow_steer operation is defined. */
  976. struct cpu_rmap *rx_cpu_rmap;
  977. #endif
  978. #endif
  979. rx_handler_func_t __rcu *rx_handler;
  980. void __rcu *rx_handler_data;
  981. struct netdev_queue __rcu *ingress_queue;
  982. /*
  983. * Cache lines mostly used on transmit path
  984. */
  985. struct netdev_queue *_tx ____cacheline_aligned_in_smp;
  986. /* Number of TX queues allocated at alloc_netdev_mq() time */
  987. unsigned int num_tx_queues;
  988. /* Number of TX queues currently active in device */
  989. unsigned int real_num_tx_queues;
  990. /* root qdisc from userspace point of view */
  991. struct Qdisc *qdisc;
  992. unsigned long tx_queue_len; /* Max frames per queue allowed */
  993. spinlock_t tx_global_lock;
  994. #ifdef CONFIG_XPS
  995. struct xps_dev_maps __rcu *xps_maps;
  996. #endif
  997. /* These may be needed for future network-power-down code. */
  998. /*
  999. * trans_start here is expensive for high speed devices on SMP,
  1000. * please use netdev_queue->trans_start instead.
  1001. */
  1002. unsigned long trans_start; /* Time (in jiffies) of last Tx */
  1003. int watchdog_timeo; /* used by dev_watchdog() */
  1004. struct timer_list watchdog_timer;
  1005. /* Number of references to this device */
  1006. int __percpu *pcpu_refcnt;
  1007. /* delayed register/unregister */
  1008. struct list_head todo_list;
  1009. /* device index hash chain */
  1010. struct hlist_node index_hlist;
  1011. struct list_head link_watch_list;
  1012. /* register/unregister state machine */
  1013. enum { NETREG_UNINITIALIZED=0,
  1014. NETREG_REGISTERED, /* completed register_netdevice */
  1015. NETREG_UNREGISTERING, /* called unregister_netdevice */
  1016. NETREG_UNREGISTERED, /* completed unregister todo */
  1017. NETREG_RELEASED, /* called free_netdev */
  1018. NETREG_DUMMY, /* dummy device for NAPI poll */
  1019. } reg_state:16;
  1020. enum {
  1021. RTNL_LINK_INITIALIZED,
  1022. RTNL_LINK_INITIALIZING,
  1023. } rtnl_link_state:16;
  1024. /* Called from unregister, can be used to call free_netdev */
  1025. void (*destructor)(struct net_device *dev);
  1026. #ifdef CONFIG_NETPOLL
  1027. struct netpoll_info *npinfo;
  1028. #endif
  1029. #ifdef CONFIG_NET_NS
  1030. /* Network namespace this network device is inside */
  1031. struct net *nd_net;
  1032. #endif
  1033. /* mid-layer private */
  1034. union {
  1035. void *ml_priv;
  1036. struct pcpu_lstats __percpu *lstats; /* loopback stats */
  1037. struct pcpu_tstats __percpu *tstats; /* tunnel stats */
  1038. struct pcpu_dstats __percpu *dstats; /* dummy stats */
  1039. };
  1040. /* GARP */
  1041. struct garp_port __rcu *garp_port;
  1042. /* class/net/name entry */
  1043. struct device dev;
  1044. /* space for optional device, statistics, and wireless sysfs groups */
  1045. const struct attribute_group *sysfs_groups[4];
  1046. /* rtnetlink link ops */
  1047. const struct rtnl_link_ops *rtnl_link_ops;
  1048. /* for setting kernel sock attribute on TCP connection setup */
  1049. #define GSO_MAX_SIZE 65536
  1050. unsigned int gso_max_size;
  1051. #ifdef CONFIG_DCB
  1052. /* Data Center Bridging netlink ops */
  1053. const struct dcbnl_rtnl_ops *dcbnl_ops;
  1054. #endif
  1055. u8 num_tc;
  1056. struct netdev_tc_txq tc_to_txq[TC_MAX_QUEUE];
  1057. u8 prio_tc_map[TC_BITMASK + 1];
  1058. #if defined(CONFIG_FCOE) || defined(CONFIG_FCOE_MODULE)
  1059. /* max exchange id for FCoE LRO by ddp */
  1060. unsigned int fcoe_ddp_xid;
  1061. #endif
  1062. /* n-tuple filter list attached to this device */
  1063. struct ethtool_rx_ntuple_list ethtool_ntuple_list;
  1064. /* phy device may attach itself for hardware timestamping */
  1065. struct phy_device *phydev;
  1066. /* group the device belongs to */
  1067. int group;
  1068. };
  1069. #define to_net_dev(d) container_of(d, struct net_device, dev)
  1070. #define NETDEV_ALIGN 32
  1071. static inline
  1072. int netdev_get_prio_tc_map(const struct net_device *dev, u32 prio)
  1073. {
  1074. return dev->prio_tc_map[prio & TC_BITMASK];
  1075. }
  1076. static inline
  1077. int netdev_set_prio_tc_map(struct net_device *dev, u8 prio, u8 tc)
  1078. {
  1079. if (tc >= dev->num_tc)
  1080. return -EINVAL;
  1081. dev->prio_tc_map[prio & TC_BITMASK] = tc & TC_BITMASK;
  1082. return 0;
  1083. }
  1084. static inline
  1085. void netdev_reset_tc(struct net_device *dev)
  1086. {
  1087. dev->num_tc = 0;
  1088. memset(dev->tc_to_txq, 0, sizeof(dev->tc_to_txq));
  1089. memset(dev->prio_tc_map, 0, sizeof(dev->prio_tc_map));
  1090. }
  1091. static inline
  1092. int netdev_set_tc_queue(struct net_device *dev, u8 tc, u16 count, u16 offset)
  1093. {
  1094. if (tc >= dev->num_tc)
  1095. return -EINVAL;
  1096. dev->tc_to_txq[tc].count = count;
  1097. dev->tc_to_txq[tc].offset = offset;
  1098. return 0;
  1099. }
  1100. static inline
  1101. int netdev_set_num_tc(struct net_device *dev, u8 num_tc)
  1102. {
  1103. if (num_tc > TC_MAX_QUEUE)
  1104. return -EINVAL;
  1105. dev->num_tc = num_tc;
  1106. return 0;
  1107. }
  1108. static inline
  1109. int netdev_get_num_tc(struct net_device *dev)
  1110. {
  1111. return dev->num_tc;
  1112. }
  1113. static inline
  1114. struct netdev_queue *netdev_get_tx_queue(const struct net_device *dev,
  1115. unsigned int index)
  1116. {
  1117. return &dev->_tx[index];
  1118. }
  1119. static inline void netdev_for_each_tx_queue(struct net_device *dev,
  1120. void (*f)(struct net_device *,
  1121. struct netdev_queue *,
  1122. void *),
  1123. void *arg)
  1124. {
  1125. unsigned int i;
  1126. for (i = 0; i < dev->num_tx_queues; i++)
  1127. f(dev, &dev->_tx[i], arg);
  1128. }
  1129. /*
  1130. * Net namespace inlines
  1131. */
  1132. static inline
  1133. struct net *dev_net(const struct net_device *dev)
  1134. {
  1135. return read_pnet(&dev->nd_net);
  1136. }
  1137. static inline
  1138. void dev_net_set(struct net_device *dev, struct net *net)
  1139. {
  1140. #ifdef CONFIG_NET_NS
  1141. release_net(dev->nd_net);
  1142. dev->nd_net = hold_net(net);
  1143. #endif
  1144. }
  1145. static inline bool netdev_uses_dsa_tags(struct net_device *dev)
  1146. {
  1147. #ifdef CONFIG_NET_DSA_TAG_DSA
  1148. if (dev->dsa_ptr != NULL)
  1149. return dsa_uses_dsa_tags(dev->dsa_ptr);
  1150. #endif
  1151. return 0;
  1152. }
  1153. #ifndef CONFIG_NET_NS
  1154. static inline void skb_set_dev(struct sk_buff *skb, struct net_device *dev)
  1155. {
  1156. skb->dev = dev;
  1157. }
  1158. #else /* CONFIG_NET_NS */
  1159. void skb_set_dev(struct sk_buff *skb, struct net_device *dev);
  1160. #endif
  1161. static inline bool netdev_uses_trailer_tags(struct net_device *dev)
  1162. {
  1163. #ifdef CONFIG_NET_DSA_TAG_TRAILER
  1164. if (dev->dsa_ptr != NULL)
  1165. return dsa_uses_trailer_tags(dev->dsa_ptr);
  1166. #endif
  1167. return 0;
  1168. }
  1169. /**
  1170. * netdev_priv - access network device private data
  1171. * @dev: network device
  1172. *
  1173. * Get network device private data
  1174. */
  1175. static inline void *netdev_priv(const struct net_device *dev)
  1176. {
  1177. return (char *)dev + ALIGN(sizeof(struct net_device), NETDEV_ALIGN);
  1178. }
  1179. /* Set the sysfs physical device reference for the network logical device
  1180. * if set prior to registration will cause a symlink during initialization.
  1181. */
  1182. #define SET_NETDEV_DEV(net, pdev) ((net)->dev.parent = (pdev))
  1183. /* Set the sysfs device type for the network logical device to allow
  1184. * fin grained indentification of different network device types. For
  1185. * example Ethernet, Wirelss LAN, Bluetooth, WiMAX etc.
  1186. */
  1187. #define SET_NETDEV_DEVTYPE(net, devtype) ((net)->dev.type = (devtype))
  1188. /**
  1189. * netif_napi_add - initialize a napi context
  1190. * @dev: network device
  1191. * @napi: napi context
  1192. * @poll: polling function
  1193. * @weight: default weight
  1194. *
  1195. * netif_napi_add() must be used to initialize a napi context prior to calling
  1196. * *any* of the other napi related functions.
  1197. */
  1198. void netif_napi_add(struct net_device *dev, struct napi_struct *napi,
  1199. int (*poll)(struct napi_struct *, int), int weight);
  1200. /**
  1201. * netif_napi_del - remove a napi context
  1202. * @napi: napi context
  1203. *
  1204. * netif_napi_del() removes a napi context from the network device napi list
  1205. */
  1206. void netif_napi_del(struct napi_struct *napi);
  1207. struct napi_gro_cb {
  1208. /* Virtual address of skb_shinfo(skb)->frags[0].page + offset. */
  1209. void *frag0;
  1210. /* Length of frag0. */
  1211. unsigned int frag0_len;
  1212. /* This indicates where we are processing relative to skb->data. */
  1213. int data_offset;
  1214. /* This is non-zero if the packet may be of the same flow. */
  1215. int same_flow;
  1216. /* This is non-zero if the packet cannot be merged with the new skb. */
  1217. int flush;
  1218. /* Number of segments aggregated. */
  1219. int count;
  1220. /* Free the skb? */
  1221. int free;
  1222. };
  1223. #define NAPI_GRO_CB(skb) ((struct napi_gro_cb *)(skb)->cb)
  1224. struct packet_type {
  1225. __be16 type; /* This is really htons(ether_type). */
  1226. struct net_device *dev; /* NULL is wildcarded here */
  1227. int (*func) (struct sk_buff *,
  1228. struct net_device *,
  1229. struct packet_type *,
  1230. struct net_device *);
  1231. struct sk_buff *(*gso_segment)(struct sk_buff *skb,
  1232. u32 features);
  1233. int (*gso_send_check)(struct sk_buff *skb);
  1234. struct sk_buff **(*gro_receive)(struct sk_buff **head,
  1235. struct sk_buff *skb);
  1236. int (*gro_complete)(struct sk_buff *skb);
  1237. void *af_packet_priv;
  1238. struct list_head list;
  1239. };
  1240. #include <linux/interrupt.h>
  1241. #include <linux/notifier.h>
  1242. extern rwlock_t dev_base_lock; /* Device list lock */
  1243. #define for_each_netdev(net, d) \
  1244. list_for_each_entry(d, &(net)->dev_base_head, dev_list)
  1245. #define for_each_netdev_reverse(net, d) \
  1246. list_for_each_entry_reverse(d, &(net)->dev_base_head, dev_list)
  1247. #define for_each_netdev_rcu(net, d) \
  1248. list_for_each_entry_rcu(d, &(net)->dev_base_head, dev_list)
  1249. #define for_each_netdev_safe(net, d, n) \
  1250. list_for_each_entry_safe(d, n, &(net)->dev_base_head, dev_list)
  1251. #define for_each_netdev_continue(net, d) \
  1252. list_for_each_entry_continue(d, &(net)->dev_base_head, dev_list)
  1253. #define for_each_netdev_continue_rcu(net, d) \
  1254. list_for_each_entry_continue_rcu(d, &(net)->dev_base_head, dev_list)
  1255. #define net_device_entry(lh) list_entry(lh, struct net_device, dev_list)
  1256. static inline struct net_device *next_net_device(struct net_device *dev)
  1257. {
  1258. struct list_head *lh;
  1259. struct net *net;
  1260. net = dev_net(dev);
  1261. lh = dev->dev_list.next;
  1262. return lh == &net->dev_base_head ? NULL : net_device_entry(lh);
  1263. }
  1264. static inline struct net_device *next_net_device_rcu(struct net_device *dev)
  1265. {
  1266. struct list_head *lh;
  1267. struct net *net;
  1268. net = dev_net(dev);
  1269. lh = rcu_dereference(list_next_rcu(&dev->dev_list));
  1270. return lh == &net->dev_base_head ? NULL : net_device_entry(lh);
  1271. }
  1272. static inline struct net_device *first_net_device(struct net *net)
  1273. {
  1274. return list_empty(&net->dev_base_head) ? NULL :
  1275. net_device_entry(net->dev_base_head.next);
  1276. }
  1277. static inline struct net_device *first_net_device_rcu(struct net *net)
  1278. {
  1279. struct list_head *lh = rcu_dereference(list_next_rcu(&net->dev_base_head));
  1280. return lh == &net->dev_base_head ? NULL : net_device_entry(lh);
  1281. }
  1282. extern int netdev_boot_setup_check(struct net_device *dev);
  1283. extern unsigned long netdev_boot_base(const char *prefix, int unit);
  1284. extern struct net_device *dev_getbyhwaddr_rcu(struct net *net, unsigned short type,
  1285. const char *hwaddr);
  1286. extern struct net_device *dev_getfirstbyhwtype(struct net *net, unsigned short type);
  1287. extern struct net_device *__dev_getfirstbyhwtype(struct net *net, unsigned short type);
  1288. extern void dev_add_pack(struct packet_type *pt);
  1289. extern void dev_remove_pack(struct packet_type *pt);
  1290. extern void __dev_remove_pack(struct packet_type *pt);
  1291. extern struct net_device *dev_get_by_flags_rcu(struct net *net, unsigned short flags,
  1292. unsigned short mask);
  1293. extern struct net_device *dev_get_by_name(struct net *net, const char *name);
  1294. extern struct net_device *dev_get_by_name_rcu(struct net *net, const char *name);
  1295. extern struct net_device *__dev_get_by_name(struct net *net, const char *name);
  1296. extern int dev_alloc_name(struct net_device *dev, const char *name);
  1297. extern int dev_open(struct net_device *dev);
  1298. extern int dev_close(struct net_device *dev);
  1299. extern void dev_disable_lro(struct net_device *dev);
  1300. extern int dev_queue_xmit(struct sk_buff *skb);
  1301. extern int register_netdevice(struct net_device *dev);
  1302. extern void unregister_netdevice_queue(struct net_device *dev,
  1303. struct list_head *head);
  1304. extern void unregister_netdevice_many(struct list_head *head);
  1305. static inline void unregister_netdevice(struct net_device *dev)
  1306. {
  1307. unregister_netdevice_queue(dev, NULL);
  1308. }
  1309. extern int netdev_refcnt_read(const struct net_device *dev);
  1310. extern void free_netdev(struct net_device *dev);
  1311. extern void synchronize_net(void);
  1312. extern int register_netdevice_notifier(struct notifier_block *nb);
  1313. extern int unregister_netdevice_notifier(struct notifier_block *nb);
  1314. extern int init_dummy_netdev(struct net_device *dev);
  1315. extern void netdev_resync_ops(struct net_device *dev);
  1316. extern int call_netdevice_notifiers(unsigned long val, struct net_device *dev);
  1317. extern struct net_device *dev_get_by_index(struct net *net, int ifindex);
  1318. extern struct net_device *__dev_get_by_index(struct net *net, int ifindex);
  1319. extern struct net_device *dev_get_by_index_rcu(struct net *net, int ifindex);
  1320. extern int dev_restart(struct net_device *dev);
  1321. #ifdef CONFIG_NETPOLL_TRAP
  1322. extern int netpoll_trap(void);
  1323. #endif
  1324. extern int skb_gro_receive(struct sk_buff **head,
  1325. struct sk_buff *skb);
  1326. extern void skb_gro_reset_offset(struct sk_buff *skb);
  1327. static inline unsigned int skb_gro_offset(const struct sk_buff *skb)
  1328. {
  1329. return NAPI_GRO_CB(skb)->data_offset;
  1330. }
  1331. static inline unsigned int skb_gro_len(const struct sk_buff *skb)
  1332. {
  1333. return skb->len - NAPI_GRO_CB(skb)->data_offset;
  1334. }
  1335. static inline void skb_gro_pull(struct sk_buff *skb, unsigned int len)
  1336. {
  1337. NAPI_GRO_CB(skb)->data_offset += len;
  1338. }
  1339. static inline void *skb_gro_header_fast(struct sk_buff *skb,
  1340. unsigned int offset)
  1341. {
  1342. return NAPI_GRO_CB(skb)->frag0 + offset;
  1343. }
  1344. static inline int skb_gro_header_hard(struct sk_buff *skb, unsigned int hlen)
  1345. {
  1346. return NAPI_GRO_CB(skb)->frag0_len < hlen;
  1347. }
  1348. static inline void *skb_gro_header_slow(struct sk_buff *skb, unsigned int hlen,
  1349. unsigned int offset)
  1350. {
  1351. NAPI_GRO_CB(skb)->frag0 = NULL;
  1352. NAPI_GRO_CB(skb)->frag0_len = 0;
  1353. return pskb_may_pull(skb, hlen) ? skb->data + offset : NULL;
  1354. }
  1355. static inline void *skb_gro_mac_header(struct sk_buff *skb)
  1356. {
  1357. return NAPI_GRO_CB(skb)->frag0 ?: skb_mac_header(skb);
  1358. }
  1359. static inline void *skb_gro_network_header(struct sk_buff *skb)
  1360. {
  1361. return (NAPI_GRO_CB(skb)->frag0 ?: skb->data) +
  1362. skb_network_offset(skb);
  1363. }
  1364. static inline int dev_hard_header(struct sk_buff *skb, struct net_device *dev,
  1365. unsigned short type,
  1366. const void *daddr, const void *saddr,
  1367. unsigned len)
  1368. {
  1369. if (!dev->header_ops || !dev->header_ops->create)
  1370. return 0;
  1371. return dev->header_ops->create(skb, dev, type, daddr, saddr, len);
  1372. }
  1373. static inline int dev_parse_header(const struct sk_buff *skb,
  1374. unsigned char *haddr)
  1375. {
  1376. const struct net_device *dev = skb->dev;
  1377. if (!dev->header_ops || !dev->header_ops->parse)
  1378. return 0;
  1379. return dev->header_ops->parse(skb, haddr);
  1380. }
  1381. typedef int gifconf_func_t(struct net_device * dev, char __user * bufptr, int len);
  1382. extern int register_gifconf(unsigned int family, gifconf_func_t * gifconf);
  1383. static inline int unregister_gifconf(unsigned int family)
  1384. {
  1385. return register_gifconf(family, NULL);
  1386. }
  1387. /*
  1388. * Incoming packets are placed on per-cpu queues
  1389. */
  1390. struct softnet_data {
  1391. struct Qdisc *output_queue;
  1392. struct Qdisc **output_queue_tailp;
  1393. struct list_head poll_list;
  1394. struct sk_buff *completion_queue;
  1395. struct sk_buff_head process_queue;
  1396. /* stats */
  1397. unsigned int processed;
  1398. unsigned int time_squeeze;
  1399. unsigned int cpu_collision;
  1400. unsigned int received_rps;
  1401. #ifdef CONFIG_RPS
  1402. struct softnet_data *rps_ipi_list;
  1403. /* Elements below can be accessed between CPUs for RPS */
  1404. struct call_single_data csd ____cacheline_aligned_in_smp;
  1405. struct softnet_data *rps_ipi_next;
  1406. unsigned int cpu;
  1407. unsigned int input_queue_head;
  1408. unsigned int input_queue_tail;
  1409. #endif
  1410. unsigned dropped;
  1411. struct sk_buff_head input_pkt_queue;
  1412. struct napi_struct backlog;
  1413. };
  1414. static inline void input_queue_head_incr(struct softnet_data *sd)
  1415. {
  1416. #ifdef CONFIG_RPS
  1417. sd->input_queue_head++;
  1418. #endif
  1419. }
  1420. static inline void input_queue_tail_incr_save(struct softnet_data *sd,
  1421. unsigned int *qtail)
  1422. {
  1423. #ifdef CONFIG_RPS
  1424. *qtail = ++sd->input_queue_tail;
  1425. #endif
  1426. }
  1427. DECLARE_PER_CPU_ALIGNED(struct softnet_data, softnet_data);
  1428. #define HAVE_NETIF_QUEUE
  1429. extern void __netif_schedule(struct Qdisc *q);
  1430. static inline void netif_schedule_queue(struct netdev_queue *txq)
  1431. {
  1432. if (!test_bit(__QUEUE_STATE_XOFF, &txq->state))
  1433. __netif_schedule(txq->qdisc);
  1434. }
  1435. static inline void netif_tx_schedule_all(struct net_device *dev)
  1436. {
  1437. unsigned int i;
  1438. for (i = 0; i < dev->num_tx_queues; i++)
  1439. netif_schedule_queue(netdev_get_tx_queue(dev, i));
  1440. }
  1441. static inline void netif_tx_start_queue(struct netdev_queue *dev_queue)
  1442. {
  1443. clear_bit(__QUEUE_STATE_XOFF, &dev_queue->state);
  1444. }
  1445. /**
  1446. * netif_start_queue - allow transmit
  1447. * @dev: network device
  1448. *
  1449. * Allow upper layers to call the device hard_start_xmit routine.
  1450. */
  1451. static inline void netif_start_queue(struct net_device *dev)
  1452. {
  1453. netif_tx_start_queue(netdev_get_tx_queue(dev, 0));
  1454. }
  1455. static inline void netif_tx_start_all_queues(struct net_device *dev)
  1456. {
  1457. unsigned int i;
  1458. for (i = 0; i < dev->num_tx_queues; i++) {
  1459. struct netdev_queue *txq = netdev_get_tx_queue(dev, i);
  1460. netif_tx_start_queue(txq);
  1461. }
  1462. }
  1463. static inline void netif_tx_wake_queue(struct netdev_queue *dev_queue)
  1464. {
  1465. #ifdef CONFIG_NETPOLL_TRAP
  1466. if (netpoll_trap()) {
  1467. netif_tx_start_queue(dev_queue);
  1468. return;
  1469. }
  1470. #endif
  1471. if (test_and_clear_bit(__QUEUE_STATE_XOFF, &dev_queue->state))
  1472. __netif_schedule(dev_queue->qdisc);
  1473. }
  1474. /**
  1475. * netif_wake_queue - restart transmit
  1476. * @dev: network device
  1477. *
  1478. * Allow upper layers to call the device hard_start_xmit routine.
  1479. * Used for flow control when transmit resources are available.
  1480. */
  1481. static inline void netif_wake_queue(struct net_device *dev)
  1482. {
  1483. netif_tx_wake_queue(netdev_get_tx_queue(dev, 0));
  1484. }
  1485. static inline void netif_tx_wake_all_queues(struct net_device *dev)
  1486. {
  1487. unsigned int i;
  1488. for (i = 0; i < dev->num_tx_queues; i++) {
  1489. struct netdev_queue *txq = netdev_get_tx_queue(dev, i);
  1490. netif_tx_wake_queue(txq);
  1491. }
  1492. }
  1493. static inline void netif_tx_stop_queue(struct netdev_queue *dev_queue)
  1494. {
  1495. if (WARN_ON(!dev_queue)) {
  1496. printk(KERN_INFO "netif_stop_queue() cannot be called before "
  1497. "register_netdev()");
  1498. return;
  1499. }
  1500. set_bit(__QUEUE_STATE_XOFF, &dev_queue->state);
  1501. }
  1502. /**
  1503. * netif_stop_queue - stop transmitted packets
  1504. * @dev: network device
  1505. *
  1506. * Stop upper layers calling the device hard_start_xmit routine.
  1507. * Used for flow control when transmit resources are unavailable.
  1508. */
  1509. static inline void netif_stop_queue(struct net_device *dev)
  1510. {
  1511. netif_tx_stop_queue(netdev_get_tx_queue(dev, 0));
  1512. }
  1513. static inline void netif_tx_stop_all_queues(struct net_device *dev)
  1514. {
  1515. unsigned int i;
  1516. for (i = 0; i < dev->num_tx_queues; i++) {
  1517. struct netdev_queue *txq = netdev_get_tx_queue(dev, i);
  1518. netif_tx_stop_queue(txq);
  1519. }
  1520. }
  1521. static inline int netif_tx_queue_stopped(const struct netdev_queue *dev_queue)
  1522. {
  1523. return test_bit(__QUEUE_STATE_XOFF, &dev_queue->state);
  1524. }
  1525. /**
  1526. * netif_queue_stopped - test if transmit queue is flowblocked
  1527. * @dev: network device
  1528. *
  1529. * Test if transmit queue on device is currently unable to send.
  1530. */
  1531. static inline int netif_queue_stopped(const struct net_device *dev)
  1532. {
  1533. return netif_tx_queue_stopped(netdev_get_tx_queue(dev, 0));
  1534. }
  1535. static inline int netif_tx_queue_frozen_or_stopped(const struct netdev_queue *dev_queue)
  1536. {
  1537. return dev_queue->state & QUEUE_STATE_XOFF_OR_FROZEN;
  1538. }
  1539. /**
  1540. * netif_running - test if up
  1541. * @dev: network device
  1542. *
  1543. * Test if the device has been brought up.
  1544. */
  1545. static inline int netif_running(const struct net_device *dev)
  1546. {
  1547. return test_bit(__LINK_STATE_START, &dev->state);
  1548. }
  1549. /*
  1550. * Routines to manage the subqueues on a device. We only need start
  1551. * stop, and a check if it's stopped. All other device management is
  1552. * done at the overall netdevice level.
  1553. * Also test the device if we're multiqueue.
  1554. */
  1555. /**
  1556. * netif_start_subqueue - allow sending packets on subqueue
  1557. * @dev: network device
  1558. * @queue_index: sub queue index
  1559. *
  1560. * Start individual transmit queue of a device with multiple transmit queues.
  1561. */
  1562. static inline void netif_start_subqueue(struct net_device *dev, u16 queue_index)
  1563. {
  1564. struct netdev_queue *txq = netdev_get_tx_queue(dev, queue_index);
  1565. netif_tx_start_queue(txq);
  1566. }
  1567. /**
  1568. * netif_stop_subqueue - stop sending packets on subqueue
  1569. * @dev: network device
  1570. * @queue_index: sub queue index
  1571. *
  1572. * Stop individual transmit queue of a device with multiple transmit queues.
  1573. */
  1574. static inline void netif_stop_subqueue(struct net_device *dev, u16 queue_index)
  1575. {
  1576. struct netdev_queue *txq = netdev_get_tx_queue(dev, queue_index);
  1577. #ifdef CONFIG_NETPOLL_TRAP
  1578. if (netpoll_trap())
  1579. return;
  1580. #endif
  1581. netif_tx_stop_queue(txq);
  1582. }
  1583. /**
  1584. * netif_subqueue_stopped - test status of subqueue
  1585. * @dev: network device
  1586. * @queue_index: sub queue index
  1587. *
  1588. * Check individual transmit queue of a device with multiple transmit queues.
  1589. */
  1590. static inline int __netif_subqueue_stopped(const struct net_device *dev,
  1591. u16 queue_index)
  1592. {
  1593. struct netdev_queue *txq = netdev_get_tx_queue(dev, queue_index);
  1594. return netif_tx_queue_stopped(txq);
  1595. }
  1596. static inline int netif_subqueue_stopped(const struct net_device *dev,
  1597. struct sk_buff *skb)
  1598. {
  1599. return __netif_subqueue_stopped(dev, skb_get_queue_mapping(skb));
  1600. }
  1601. /**
  1602. * netif_wake_subqueue - allow sending packets on subqueue
  1603. * @dev: network device
  1604. * @queue_index: sub queue index
  1605. *
  1606. * Resume individual transmit queue of a device with multiple transmit queues.
  1607. */
  1608. static inline void netif_wake_subqueue(struct net_device *dev, u16 queue_index)
  1609. {
  1610. struct netdev_queue *txq = netdev_get_tx_queue(dev, queue_index);
  1611. #ifdef CONFIG_NETPOLL_TRAP
  1612. if (netpoll_trap())
  1613. return;
  1614. #endif
  1615. if (test_and_clear_bit(__QUEUE_STATE_XOFF, &txq->state))
  1616. __netif_schedule(txq->qdisc);
  1617. }
  1618. /*
  1619. * Returns a Tx hash for the given packet when dev->real_num_tx_queues is used
  1620. * as a distribution range limit for the returned value.
  1621. */
  1622. static inline u16 skb_tx_hash(const struct net_device *dev,
  1623. const struct sk_buff *skb)
  1624. {
  1625. return __skb_tx_hash(dev, skb, dev->real_num_tx_queues);
  1626. }
  1627. /**
  1628. * netif_is_multiqueue - test if device has multiple transmit queues
  1629. * @dev: network device
  1630. *
  1631. * Check if device has multiple transmit queues
  1632. */
  1633. static inline int netif_is_multiqueue(const struct net_device *dev)
  1634. {
  1635. return dev->num_tx_queues > 1;
  1636. }
  1637. extern int netif_set_real_num_tx_queues(struct net_device *dev,
  1638. unsigned int txq);
  1639. #ifdef CONFIG_RPS
  1640. extern int netif_set_real_num_rx_queues(struct net_device *dev,
  1641. unsigned int rxq);
  1642. #else
  1643. static inline int netif_set_real_num_rx_queues(struct net_device *dev,
  1644. unsigned int rxq)
  1645. {
  1646. return 0;
  1647. }
  1648. #endif
  1649. static inline int netif_copy_real_num_queues(struct net_device *to_dev,
  1650. const struct net_device *from_dev)
  1651. {
  1652. netif_set_real_num_tx_queues(to_dev, from_dev->real_num_tx_queues);
  1653. #ifdef CONFIG_RPS
  1654. return netif_set_real_num_rx_queues(to_dev,
  1655. from_dev->real_num_rx_queues);
  1656. #else
  1657. return 0;
  1658. #endif
  1659. }
  1660. /* Use this variant when it is known for sure that it
  1661. * is executing from hardware interrupt context or with hardware interrupts
  1662. * disabled.
  1663. */
  1664. extern void dev_kfree_skb_irq(struct sk_buff *skb);
  1665. /* Use this variant in places where it could be invoked
  1666. * from either hardware interrupt or other context, with hardware interrupts
  1667. * either disabled or enabled.
  1668. */
  1669. extern void dev_kfree_skb_any(struct sk_buff *skb);
  1670. #define HAVE_NETIF_RX 1
  1671. extern int netif_rx(struct sk_buff *skb);
  1672. extern int netif_rx_ni(struct sk_buff *skb);
  1673. #define HAVE_NETIF_RECEIVE_SKB 1
  1674. extern int netif_receive_skb(struct sk_buff *skb);
  1675. extern gro_result_t dev_gro_receive(struct napi_struct *napi,
  1676. struct sk_buff *skb);
  1677. extern gro_result_t napi_skb_finish(gro_result_t ret, struct sk_buff *skb);
  1678. extern gro_result_t napi_gro_receive(struct napi_struct *napi,
  1679. struct sk_buff *skb);
  1680. extern void napi_gro_flush(struct napi_struct *napi);
  1681. extern struct sk_buff * napi_get_frags(struct napi_struct *napi);
  1682. extern gro_result_t napi_frags_finish(struct napi_struct *napi,
  1683. struct sk_buff *skb,
  1684. gro_result_t ret);
  1685. extern struct sk_buff * napi_frags_skb(struct napi_struct *napi);
  1686. extern gro_result_t napi_gro_frags(struct napi_struct *napi);
  1687. static inline void napi_free_frags(struct napi_struct *napi)
  1688. {
  1689. kfree_skb(napi->skb);
  1690. napi->skb = NULL;
  1691. }
  1692. extern int netdev_rx_handler_register(struct net_device *dev,
  1693. rx_handler_func_t *rx_handler,
  1694. void *rx_handler_data);
  1695. extern void netdev_rx_handler_unregister(struct net_device *dev);
  1696. extern int dev_valid_name(const char *name);
  1697. extern int dev_ioctl(struct net *net, unsigned int cmd, void __user *);
  1698. extern int dev_ethtool(struct net *net, struct ifreq *);
  1699. extern unsigned dev_get_flags(const struct net_device *);
  1700. extern int __dev_change_flags(struct net_device *, unsigned int flags);
  1701. extern int dev_change_flags(struct net_device *, unsigned);
  1702. extern void __dev_notify_flags(struct net_device *, unsigned int old_flags);
  1703. extern int dev_change_name(struct net_device *, const char *);
  1704. extern int dev_set_alias(struct net_device *, const char *, size_t);
  1705. extern int dev_change_net_namespace(struct net_device *,
  1706. struct net *, const char *);
  1707. extern int dev_set_mtu(struct net_device *, int);
  1708. extern void dev_set_group(struct net_device *, int);
  1709. extern int dev_set_mac_address(struct net_device *,
  1710. struct sockaddr *);
  1711. extern int dev_hard_start_xmit(struct sk_buff *skb,
  1712. struct net_device *dev,
  1713. struct netdev_queue *txq);
  1714. extern int dev_forward_skb(struct net_device *dev,
  1715. struct sk_buff *skb);
  1716. extern int netdev_budget;
  1717. /* Called by rtnetlink.c:rtnl_unlock() */
  1718. extern void netdev_run_todo(void);
  1719. /**
  1720. * dev_put - release reference to device
  1721. * @dev: network device
  1722. *
  1723. * Release reference to device to allow it to be freed.
  1724. */
  1725. static inline void dev_put(struct net_device *dev)
  1726. {
  1727. irqsafe_cpu_dec(*dev->pcpu_refcnt);
  1728. }
  1729. /**
  1730. * dev_hold - get reference to device
  1731. * @dev: network device
  1732. *
  1733. * Hold reference to device to keep it from being freed.
  1734. */
  1735. static inline void dev_hold(struct net_device *dev)
  1736. {
  1737. irqsafe_cpu_inc(*dev->pcpu_refcnt);
  1738. }
  1739. /* Carrier loss detection, dial on demand. The functions netif_carrier_on
  1740. * and _off may be called from IRQ context, but it is caller
  1741. * who is responsible for serialization of these calls.
  1742. *
  1743. * The name carrier is inappropriate, these functions should really be
  1744. * called netif_lowerlayer_*() because they represent the state of any
  1745. * kind of lower layer not just hardware media.
  1746. */
  1747. extern void linkwatch_fire_event(struct net_device *dev);
  1748. extern void linkwatch_forget_dev(struct net_device *dev);
  1749. /**
  1750. * netif_carrier_ok - test if carrier present
  1751. * @dev: network device
  1752. *
  1753. * Check if carrier is present on device
  1754. */
  1755. static inline int netif_carrier_ok(const struct net_device *dev)
  1756. {
  1757. return !test_bit(__LINK_STATE_NOCARRIER, &dev->state);
  1758. }
  1759. extern unsigned long dev_trans_start(struct net_device *dev);
  1760. extern void __netdev_watchdog_up(struct net_device *dev);
  1761. extern void netif_carrier_on(struct net_device *dev);
  1762. extern void netif_carrier_off(struct net_device *dev);
  1763. extern void netif_notify_peers(struct net_device *dev);
  1764. /**
  1765. * netif_dormant_on - mark device as dormant.
  1766. * @dev: network device
  1767. *
  1768. * Mark device as dormant (as per RFC2863).
  1769. *
  1770. * The dormant state indicates that the relevant interface is not
  1771. * actually in a condition to pass packets (i.e., it is not 'up') but is
  1772. * in a "pending" state, waiting for some external event. For "on-
  1773. * demand" interfaces, this new state identifies the situation where the
  1774. * interface is waiting for events to place it in the up state.
  1775. *
  1776. */
  1777. static inline void netif_dormant_on(struct net_device *dev)
  1778. {
  1779. if (!test_and_set_bit(__LINK_STATE_DORMANT, &dev->state))
  1780. linkwatch_fire_event(dev);
  1781. }
  1782. /**
  1783. * netif_dormant_off - set device as not dormant.
  1784. * @dev: network device
  1785. *
  1786. * Device is not in dormant state.
  1787. */
  1788. static inline void netif_dormant_off(struct net_device *dev)
  1789. {
  1790. if (test_and_clear_bit(__LINK_STATE_DORMANT, &dev->state))
  1791. linkwatch_fire_event(dev);
  1792. }
  1793. /**
  1794. * netif_dormant - test if carrier present
  1795. * @dev: network device
  1796. *
  1797. * Check if carrier is present on device
  1798. */
  1799. static inline int netif_dormant(const struct net_device *dev)
  1800. {
  1801. return test_bit(__LINK_STATE_DORMANT, &dev->state);
  1802. }
  1803. /**
  1804. * netif_oper_up - test if device is operational
  1805. * @dev: network device
  1806. *
  1807. * Check if carrier is operational
  1808. */
  1809. static inline int netif_oper_up(const struct net_device *dev)
  1810. {
  1811. return (dev->operstate == IF_OPER_UP ||
  1812. dev->operstate == IF_OPER_UNKNOWN /* backward compat */);
  1813. }
  1814. /**
  1815. * netif_device_present - is device available or removed
  1816. * @dev: network device
  1817. *
  1818. * Check if device has not been removed from system.
  1819. */
  1820. static inline int netif_device_present(struct net_device *dev)
  1821. {
  1822. return test_bit(__LINK_STATE_PRESENT, &dev->state);
  1823. }
  1824. extern void netif_device_detach(struct net_device *dev);
  1825. extern void netif_device_attach(struct net_device *dev);
  1826. /*
  1827. * Network interface message level settings
  1828. */
  1829. #define HAVE_NETIF_MSG 1
  1830. enum {
  1831. NETIF_MSG_DRV = 0x0001,
  1832. NETIF_MSG_PROBE = 0x0002,
  1833. NETIF_MSG_LINK = 0x0004,
  1834. NETIF_MSG_TIMER = 0x0008,
  1835. NETIF_MSG_IFDOWN = 0x0010,
  1836. NETIF_MSG_IFUP = 0x0020,
  1837. NETIF_MSG_RX_ERR = 0x0040,
  1838. NETIF_MSG_TX_ERR = 0x0080,
  1839. NETIF_MSG_TX_QUEUED = 0x0100,
  1840. NETIF_MSG_INTR = 0x0200,
  1841. NETIF_MSG_TX_DONE = 0x0400,
  1842. NETIF_MSG_RX_STATUS = 0x0800,
  1843. NETIF_MSG_PKTDATA = 0x1000,
  1844. NETIF_MSG_HW = 0x2000,
  1845. NETIF_MSG_WOL = 0x4000,
  1846. };
  1847. #define netif_msg_drv(p) ((p)->msg_enable & NETIF_MSG_DRV)
  1848. #define netif_msg_probe(p) ((p)->msg_enable & NETIF_MSG_PROBE)
  1849. #define netif_msg_link(p) ((p)->msg_enable & NETIF_MSG_LINK)
  1850. #define netif_msg_timer(p) ((p)->msg_enable & NETIF_MSG_TIMER)
  1851. #define netif_msg_ifdown(p) ((p)->msg_enable & NETIF_MSG_IFDOWN)
  1852. #define netif_msg_ifup(p) ((p)->msg_enable & NETIF_MSG_IFUP)
  1853. #define netif_msg_rx_err(p) ((p)->msg_enable & NETIF_MSG_RX_ERR)
  1854. #define netif_msg_tx_err(p) ((p)->msg_enable & NETIF_MSG_TX_ERR)
  1855. #define netif_msg_tx_queued(p) ((p)->msg_enable & NETIF_MSG_TX_QUEUED)
  1856. #define netif_msg_intr(p) ((p)->msg_enable & NETIF_MSG_INTR)
  1857. #define netif_msg_tx_done(p) ((p)->msg_enable & NETIF_MSG_TX_DONE)
  1858. #define netif_msg_rx_status(p) ((p)->msg_enable & NETIF_MSG_RX_STATUS)
  1859. #define netif_msg_pktdata(p) ((p)->msg_enable & NETIF_MSG_PKTDATA)
  1860. #define netif_msg_hw(p) ((p)->msg_enable & NETIF_MSG_HW)
  1861. #define netif_msg_wol(p) ((p)->msg_enable & NETIF_MSG_WOL)
  1862. static inline u32 netif_msg_init(int debug_value, int default_msg_enable_bits)
  1863. {
  1864. /* use default */
  1865. if (debug_value < 0 || debug_value >= (sizeof(u32) * 8))
  1866. return default_msg_enable_bits;
  1867. if (debug_value == 0) /* no output */
  1868. return 0;
  1869. /* set low N bits */
  1870. return (1 << debug_value) - 1;
  1871. }
  1872. static inline void __netif_tx_lock(struct netdev_queue *txq, int cpu)
  1873. {
  1874. spin_lock(&txq->_xmit_lock);
  1875. txq->xmit_lock_owner = cpu;
  1876. }
  1877. static inline void __netif_tx_lock_bh(struct netdev_queue *txq)
  1878. {
  1879. spin_lock_bh(&txq->_xmit_lock);
  1880. txq->xmit_lock_owner = smp_processor_id();
  1881. }
  1882. static inline int __netif_tx_trylock(struct netdev_queue *txq)
  1883. {
  1884. int ok = spin_trylock(&txq->_xmit_lock);
  1885. if (likely(ok))
  1886. txq->xmit_lock_owner = smp_processor_id();
  1887. return ok;
  1888. }
  1889. static inline void __netif_tx_unlock(struct netdev_queue *txq)
  1890. {
  1891. txq->xmit_lock_owner = -1;
  1892. spin_unlock(&txq->_xmit_lock);
  1893. }
  1894. static inline void __netif_tx_unlock_bh(struct netdev_queue *txq)
  1895. {
  1896. txq->xmit_lock_owner = -1;
  1897. spin_unlock_bh(&txq->_xmit_lock);
  1898. }
  1899. static inline void txq_trans_update(struct netdev_queue *txq)
  1900. {
  1901. if (txq->xmit_lock_owner != -1)
  1902. txq->trans_start = jiffies;
  1903. }
  1904. /**
  1905. * netif_tx_lock - grab network device transmit lock
  1906. * @dev: network device
  1907. *
  1908. * Get network device transmit lock
  1909. */
  1910. static inline void netif_tx_lock(struct net_device *dev)
  1911. {
  1912. unsigned int i;
  1913. int cpu;
  1914. spin_lock(&dev->tx_global_lock);
  1915. cpu = smp_processor_id();
  1916. for (i = 0; i < dev->num_tx_queues; i++) {
  1917. struct netdev_queue *txq = netdev_get_tx_queue(dev, i);
  1918. /* We are the only thread of execution doing a
  1919. * freeze, but we have to grab the _xmit_lock in
  1920. * order to synchronize with threads which are in
  1921. * the ->hard_start_xmit() handler and already
  1922. * checked the frozen bit.
  1923. */
  1924. __netif_tx_lock(txq, cpu);
  1925. set_bit(__QUEUE_STATE_FROZEN, &txq->state);
  1926. __netif_tx_unlock(txq);
  1927. }
  1928. }
  1929. static inline void netif_tx_lock_bh(struct net_device *dev)
  1930. {
  1931. local_bh_disable();
  1932. netif_tx_lock(dev);
  1933. }
  1934. static inline void netif_tx_unlock(struct net_device *dev)
  1935. {
  1936. unsigned int i;
  1937. for (i = 0; i < dev->num_tx_queues; i++) {
  1938. struct netdev_queue *txq = netdev_get_tx_queue(dev, i);
  1939. /* No need to grab the _xmit_lock here. If the
  1940. * queue is not stopped for another reason, we
  1941. * force a schedule.
  1942. */
  1943. clear_bit(__QUEUE_STATE_FROZEN, &txq->state);
  1944. netif_schedule_queue(txq);
  1945. }
  1946. spin_unlock(&dev->tx_global_lock);
  1947. }
  1948. static inline void netif_tx_unlock_bh(struct net_device *dev)
  1949. {
  1950. netif_tx_unlock(dev);
  1951. local_bh_enable();
  1952. }
  1953. #define HARD_TX_LOCK(dev, txq, cpu) { \
  1954. if ((dev->features & NETIF_F_LLTX) == 0) { \
  1955. __netif_tx_lock(txq, cpu); \
  1956. } \
  1957. }
  1958. #define HARD_TX_UNLOCK(dev, txq) { \
  1959. if ((dev->features & NETIF_F_LLTX) == 0) { \
  1960. __netif_tx_unlock(txq); \
  1961. } \
  1962. }
  1963. static inline void netif_tx_disable(struct net_device *dev)
  1964. {
  1965. unsigned int i;
  1966. int cpu;
  1967. local_bh_disable();
  1968. cpu = smp_processor_id();
  1969. for (i = 0; i < dev->num_tx_queues; i++) {
  1970. struct netdev_queue *txq = netdev_get_tx_queue(dev, i);
  1971. __netif_tx_lock(txq, cpu);
  1972. netif_tx_stop_queue(txq);
  1973. __netif_tx_unlock(txq);
  1974. }
  1975. local_bh_enable();
  1976. }
  1977. static inline void netif_addr_lock(struct net_device *dev)
  1978. {
  1979. spin_lock(&dev->addr_list_lock);
  1980. }
  1981. static inline void netif_addr_lock_bh(struct net_device *dev)
  1982. {
  1983. spin_lock_bh(&dev->addr_list_lock);
  1984. }
  1985. static inline void netif_addr_unlock(struct net_device *dev)
  1986. {
  1987. spin_unlock(&dev->addr_list_lock);
  1988. }
  1989. static inline void netif_addr_unlock_bh(struct net_device *dev)
  1990. {
  1991. spin_unlock_bh(&dev->addr_list_lock);
  1992. }
  1993. /*
  1994. * dev_addrs walker. Should be used only for read access. Call with
  1995. * rcu_read_lock held.
  1996. */
  1997. #define for_each_dev_addr(dev, ha) \
  1998. list_for_each_entry_rcu(ha, &dev->dev_addrs.list, list)
  1999. /* These functions live elsewhere (drivers/net/net_init.c, but related) */
  2000. extern void ether_setup(struct net_device *dev);
  2001. /* Support for loadable net-drivers */
  2002. extern struct net_device *alloc_netdev_mqs(int sizeof_priv, const char *name,
  2003. void (*setup)(struct net_device *),
  2004. unsigned int txqs, unsigned int rxqs);
  2005. #define alloc_netdev(sizeof_priv, name, setup) \
  2006. alloc_netdev_mqs(sizeof_priv, name, setup, 1, 1)
  2007. #define alloc_netdev_mq(sizeof_priv, name, setup, count) \
  2008. alloc_netdev_mqs(sizeof_priv, name, setup, count, count)
  2009. extern int register_netdev(struct net_device *dev);
  2010. extern void unregister_netdev(struct net_device *dev);
  2011. /* General hardware address lists handling functions */
  2012. extern int __hw_addr_add_multiple(struct netdev_hw_addr_list *to_list,
  2013. struct netdev_hw_addr_list *from_list,
  2014. int addr_len, unsigned char addr_type);
  2015. extern void __hw_addr_del_multiple(struct netdev_hw_addr_list *to_list,
  2016. struct netdev_hw_addr_list *from_list,
  2017. int addr_len, unsigned char addr_type);
  2018. extern int __hw_addr_sync(struct netdev_hw_addr_list *to_list,
  2019. struct netdev_hw_addr_list *from_list,
  2020. int addr_len);
  2021. extern void __hw_addr_unsync(struct netdev_hw_addr_list *to_list,
  2022. struct netdev_hw_addr_list *from_list,
  2023. int addr_len);
  2024. extern void __hw_addr_flush(struct netdev_hw_addr_list *list);
  2025. extern void __hw_addr_init(struct netdev_hw_addr_list *list);
  2026. /* Functions used for device addresses handling */
  2027. extern int dev_addr_add(struct net_device *dev, unsigned char *addr,
  2028. unsigned char addr_type);
  2029. extern int dev_addr_del(struct net_device *dev, unsigned char *addr,
  2030. unsigned char addr_type);
  2031. extern int dev_addr_add_multiple(struct net_device *to_dev,
  2032. struct net_device *from_dev,
  2033. unsigned char addr_type);
  2034. extern int dev_addr_del_multiple(struct net_device *to_dev,
  2035. struct net_device *from_dev,
  2036. unsigned char addr_type);
  2037. extern void dev_addr_flush(struct net_device *dev);
  2038. extern int dev_addr_init(struct net_device *dev);
  2039. /* Functions used for unicast addresses handling */
  2040. extern int dev_uc_add(struct net_device *dev, unsigned char *addr);
  2041. extern int dev_uc_del(struct net_device *dev, unsigned char *addr);
  2042. extern int dev_uc_sync(struct net_device *to, struct net_device *from);
  2043. extern void dev_uc_unsync(struct net_device *to, struct net_device *from);
  2044. extern void dev_uc_flush(struct net_device *dev);
  2045. extern void dev_uc_init(struct net_device *dev);
  2046. /* Functions used for multicast addresses handling */
  2047. extern int dev_mc_add(struct net_device *dev, unsigned char *addr);
  2048. extern int dev_mc_add_global(struct net_device *dev, unsigned char *addr);
  2049. extern int dev_mc_del(struct net_device *dev, unsigned char *addr);
  2050. extern int dev_mc_del_global(struct net_device *dev, unsigned char *addr);
  2051. extern int dev_mc_sync(struct net_device *to, struct net_device *from);
  2052. extern void dev_mc_unsync(struct net_device *to, struct net_device *from);
  2053. extern void dev_mc_flush(struct net_device *dev);
  2054. extern void dev_mc_init(struct net_device *dev);
  2055. /* Functions used for secondary unicast and multicast support */
  2056. extern void dev_set_rx_mode(struct net_device *dev);
  2057. extern void __dev_set_rx_mode(struct net_device *dev);
  2058. extern int dev_set_promiscuity(struct net_device *dev, int inc);
  2059. extern int dev_set_allmulti(struct net_device *dev, int inc);
  2060. extern void netdev_state_change(struct net_device *dev);
  2061. extern int netdev_bonding_change(struct net_device *dev,
  2062. unsigned long event);
  2063. extern void netdev_features_change(struct net_device *dev);
  2064. /* Load a device via the kmod */
  2065. extern void dev_load(struct net *net, const char *name);
  2066. extern void dev_mcast_init(void);
  2067. extern struct rtnl_link_stats64 *dev_get_stats(struct net_device *dev,
  2068. struct rtnl_link_stats64 *storage);
  2069. extern int netdev_max_backlog;
  2070. extern int netdev_tstamp_prequeue;
  2071. extern int weight_p;
  2072. extern int netdev_set_master(struct net_device *dev, struct net_device *master);
  2073. extern int netdev_set_bond_master(struct net_device *dev,
  2074. struct net_device *master);
  2075. extern int skb_checksum_help(struct sk_buff *skb);
  2076. extern struct sk_buff *skb_gso_segment(struct sk_buff *skb, u32 features);
  2077. #ifdef CONFIG_BUG
  2078. extern void netdev_rx_csum_fault(struct net_device *dev);
  2079. #else
  2080. static inline void netdev_rx_csum_fault(struct net_device *dev)
  2081. {
  2082. }
  2083. #endif
  2084. /* rx skb timestamps */
  2085. extern void net_enable_timestamp(void);
  2086. extern void net_disable_timestamp(void);
  2087. #ifdef CONFIG_PROC_FS
  2088. extern void *dev_seq_start(struct seq_file *seq, loff_t *pos);
  2089. extern void *dev_seq_next(struct seq_file *seq, void *v, loff_t *pos);
  2090. extern void dev_seq_stop(struct seq_file *seq, void *v);
  2091. #endif
  2092. extern int netdev_class_create_file(struct class_attribute *class_attr);
  2093. extern void netdev_class_remove_file(struct class_attribute *class_attr);
  2094. extern struct kobj_ns_type_operations net_ns_type_operations;
  2095. extern char *netdev_drivername(const struct net_device *dev, char *buffer, int len);
  2096. extern void linkwatch_run_queue(void);
  2097. u32 netdev_increment_features(u32 all, u32 one, u32 mask);
  2098. u32 netdev_fix_features(struct net_device *dev, u32 features);
  2099. void netif_stacked_transfer_operstate(const struct net_device *rootdev,
  2100. struct net_device *dev);
  2101. u32 netif_skb_features(struct sk_buff *skb);
  2102. static inline int net_gso_ok(u32 features, int gso_type)
  2103. {
  2104. int feature = gso_type << NETIF_F_GSO_SHIFT;
  2105. return (features & feature) == feature;
  2106. }
  2107. static inline int skb_gso_ok(struct sk_buff *skb, u32 features)
  2108. {
  2109. return net_gso_ok(features, skb_shinfo(skb)->gso_type) &&
  2110. (!skb_has_frag_list(skb) || (features & NETIF_F_FRAGLIST));
  2111. }
  2112. static inline int netif_needs_gso(struct sk_buff *skb, int features)
  2113. {
  2114. return skb_is_gso(skb) && (!skb_gso_ok(skb, features) ||
  2115. unlikely(skb->ip_summed != CHECKSUM_PARTIAL));
  2116. }
  2117. static inline void netif_set_gso_max_size(struct net_device *dev,
  2118. unsigned int size)
  2119. {
  2120. dev->gso_max_size = size;
  2121. }
  2122. static inline int netif_is_bond_slave(struct net_device *dev)
  2123. {
  2124. return dev->flags & IFF_SLAVE && dev->priv_flags & IFF_BONDING;
  2125. }
  2126. extern struct pernet_operations __net_initdata loopback_net_ops;
  2127. static inline int dev_ethtool_get_settings(struct net_device *dev,
  2128. struct ethtool_cmd *cmd)
  2129. {
  2130. if (!dev->ethtool_ops || !dev->ethtool_ops->get_settings)
  2131. return -EOPNOTSUPP;
  2132. return dev->ethtool_ops->get_settings(dev, cmd);
  2133. }
  2134. static inline u32 dev_ethtool_get_rx_csum(struct net_device *dev)
  2135. {
  2136. if (!dev->ethtool_ops || !dev->ethtool_ops->get_rx_csum)
  2137. return 0;
  2138. return dev->ethtool_ops->get_rx_csum(dev);
  2139. }
  2140. static inline u32 dev_ethtool_get_flags(struct net_device *dev)
  2141. {
  2142. if (!dev->ethtool_ops || !dev->ethtool_ops->get_flags)
  2143. return 0;
  2144. return dev->ethtool_ops->get_flags(dev);
  2145. }
  2146. /* Logging, debugging and troubleshooting/diagnostic helpers. */
  2147. /* netdev_printk helpers, similar to dev_printk */
  2148. static inline const char *netdev_name(const struct net_device *dev)
  2149. {
  2150. if (dev->reg_state != NETREG_REGISTERED)
  2151. return "(unregistered net_device)";
  2152. return dev->name;
  2153. }
  2154. extern int netdev_printk(const char *level, const struct net_device *dev,
  2155. const char *format, ...)
  2156. __attribute__ ((format (printf, 3, 4)));
  2157. extern int netdev_emerg(const struct net_device *dev, const char *format, ...)
  2158. __attribute__ ((format (printf, 2, 3)));
  2159. extern int netdev_alert(const struct net_device *dev, const char *format, ...)
  2160. __attribute__ ((format (printf, 2, 3)));
  2161. extern int netdev_crit(const struct net_device *dev, const char *format, ...)
  2162. __attribute__ ((format (printf, 2, 3)));
  2163. extern int netdev_err(const struct net_device *dev, const char *format, ...)
  2164. __attribute__ ((format (printf, 2, 3)));
  2165. extern int netdev_warn(const struct net_device *dev, const char *format, ...)
  2166. __attribute__ ((format (printf, 2, 3)));
  2167. extern int netdev_notice(const struct net_device *dev, const char *format, ...)
  2168. __attribute__ ((format (printf, 2, 3)));
  2169. extern int netdev_info(const struct net_device *dev, const char *format, ...)
  2170. __attribute__ ((format (printf, 2, 3)));
  2171. #if defined(DEBUG)
  2172. #define netdev_dbg(__dev, format, args...) \
  2173. netdev_printk(KERN_DEBUG, __dev, format, ##args)
  2174. #elif defined(CONFIG_DYNAMIC_DEBUG)
  2175. #define netdev_dbg(__dev, format, args...) \
  2176. do { \
  2177. dynamic_dev_dbg((__dev)->dev.parent, "%s: " format, \
  2178. netdev_name(__dev), ##args); \
  2179. } while (0)
  2180. #else
  2181. #define netdev_dbg(__dev, format, args...) \
  2182. ({ \
  2183. if (0) \
  2184. netdev_printk(KERN_DEBUG, __dev, format, ##args); \
  2185. 0; \
  2186. })
  2187. #endif
  2188. #if defined(VERBOSE_DEBUG)
  2189. #define netdev_vdbg netdev_dbg
  2190. #else
  2191. #define netdev_vdbg(dev, format, args...) \
  2192. ({ \
  2193. if (0) \
  2194. netdev_printk(KERN_DEBUG, dev, format, ##args); \
  2195. 0; \
  2196. })
  2197. #endif
  2198. /*
  2199. * netdev_WARN() acts like dev_printk(), but with the key difference
  2200. * of using a WARN/WARN_ON to get the message out, including the
  2201. * file/line information and a backtrace.
  2202. */
  2203. #define netdev_WARN(dev, format, args...) \
  2204. WARN(1, "netdevice: %s\n" format, netdev_name(dev), ##args);
  2205. /* netif printk helpers, similar to netdev_printk */
  2206. #define netif_printk(priv, type, level, dev, fmt, args...) \
  2207. do { \
  2208. if (netif_msg_##type(priv)) \
  2209. netdev_printk(level, (dev), fmt, ##args); \
  2210. } while (0)
  2211. #define netif_level(level, priv, type, dev, fmt, args...) \
  2212. do { \
  2213. if (netif_msg_##type(priv)) \
  2214. netdev_##level(dev, fmt, ##args); \
  2215. } while (0)
  2216. #define netif_emerg(priv, type, dev, fmt, args...) \
  2217. netif_level(emerg, priv, type, dev, fmt, ##args)
  2218. #define netif_alert(priv, type, dev, fmt, args...) \
  2219. netif_level(alert, priv, type, dev, fmt, ##args)
  2220. #define netif_crit(priv, type, dev, fmt, args...) \
  2221. netif_level(crit, priv, type, dev, fmt, ##args)
  2222. #define netif_err(priv, type, dev, fmt, args...) \
  2223. netif_level(err, priv, type, dev, fmt, ##args)
  2224. #define netif_warn(priv, type, dev, fmt, args...) \
  2225. netif_level(warn, priv, type, dev, fmt, ##args)
  2226. #define netif_notice(priv, type, dev, fmt, args...) \
  2227. netif_level(notice, priv, type, dev, fmt, ##args)
  2228. #define netif_info(priv, type, dev, fmt, args...) \
  2229. netif_level(info, priv, type, dev, fmt, ##args)
  2230. #if defined(DEBUG)
  2231. #define netif_dbg(priv, type, dev, format, args...) \
  2232. netif_printk(priv, type, KERN_DEBUG, dev, format, ##args)
  2233. #elif defined(CONFIG_DYNAMIC_DEBUG)
  2234. #define netif_dbg(priv, type, netdev, format, args...) \
  2235. do { \
  2236. if (netif_msg_##type(priv)) \
  2237. dynamic_dev_dbg((netdev)->dev.parent, \
  2238. "%s: " format, \
  2239. netdev_name(netdev), ##args); \
  2240. } while (0)
  2241. #else
  2242. #define netif_dbg(priv, type, dev, format, args...) \
  2243. ({ \
  2244. if (0) \
  2245. netif_printk(priv, type, KERN_DEBUG, dev, format, ##args); \
  2246. 0; \
  2247. })
  2248. #endif
  2249. #if defined(VERBOSE_DEBUG)
  2250. #define netif_vdbg netif_dbg
  2251. #else
  2252. #define netif_vdbg(priv, type, dev, format, args...) \
  2253. ({ \
  2254. if (0) \
  2255. netif_printk(priv, type, KERN_DEBUG, dev, format, ##args); \
  2256. 0; \
  2257. })
  2258. #endif
  2259. #endif /* __KERNEL__ */
  2260. #endif /* _LINUX_NETDEVICE_H */