fm10k.h 16 KB

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  1. /* Intel Ethernet Switch Host Interface Driver
  2. * Copyright(c) 2013 - 2015 Intel Corporation.
  3. *
  4. * This program is free software; you can redistribute it and/or modify it
  5. * under the terms and conditions of the GNU General Public License,
  6. * version 2, as published by the Free Software Foundation.
  7. *
  8. * This program is distributed in the hope it will be useful, but WITHOUT
  9. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  10. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  11. * more details.
  12. *
  13. * The full GNU General Public License is included in this distribution in
  14. * the file called "COPYING".
  15. *
  16. * Contact Information:
  17. * e1000-devel Mailing List <e1000-devel@lists.sourceforge.net>
  18. * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
  19. */
  20. #ifndef _FM10K_H_
  21. #define _FM10K_H_
  22. #include <linux/types.h>
  23. #include <linux/etherdevice.h>
  24. #include <linux/rtnetlink.h>
  25. #include <linux/if_vlan.h>
  26. #include <linux/pci.h>
  27. #include <linux/net_tstamp.h>
  28. #include <linux/clocksource.h>
  29. #include <linux/ptp_clock_kernel.h>
  30. #include "fm10k_pf.h"
  31. #include "fm10k_vf.h"
  32. #define FM10K_MAX_JUMBO_FRAME_SIZE 15342 /* Maximum supported size 15K */
  33. #define MAX_QUEUES FM10K_MAX_QUEUES_PF
  34. #define FM10K_MIN_RXD 128
  35. #define FM10K_MAX_RXD 4096
  36. #define FM10K_DEFAULT_RXD 256
  37. #define FM10K_MIN_TXD 128
  38. #define FM10K_MAX_TXD 4096
  39. #define FM10K_DEFAULT_TXD 256
  40. #define FM10K_DEFAULT_TX_WORK 256
  41. #define FM10K_RXBUFFER_256 256
  42. #define FM10K_RX_HDR_LEN FM10K_RXBUFFER_256
  43. #define FM10K_RXBUFFER_2048 2048
  44. #define FM10K_RX_BUFSZ FM10K_RXBUFFER_2048
  45. /* How many Rx Buffers do we bundle into one write to the hardware ? */
  46. #define FM10K_RX_BUFFER_WRITE 16 /* Must be power of 2 */
  47. #define FM10K_MAX_STATIONS 63
  48. struct fm10k_l2_accel {
  49. int size;
  50. u16 count;
  51. u16 dglort;
  52. struct rcu_head rcu;
  53. struct net_device *macvlan[0];
  54. };
  55. enum fm10k_ring_state_t {
  56. __FM10K_TX_DETECT_HANG,
  57. __FM10K_HANG_CHECK_ARMED,
  58. };
  59. #define check_for_tx_hang(ring) \
  60. test_bit(__FM10K_TX_DETECT_HANG, &(ring)->state)
  61. #define set_check_for_tx_hang(ring) \
  62. set_bit(__FM10K_TX_DETECT_HANG, &(ring)->state)
  63. #define clear_check_for_tx_hang(ring) \
  64. clear_bit(__FM10K_TX_DETECT_HANG, &(ring)->state)
  65. struct fm10k_tx_buffer {
  66. struct fm10k_tx_desc *next_to_watch;
  67. struct sk_buff *skb;
  68. unsigned int bytecount;
  69. u16 gso_segs;
  70. u16 tx_flags;
  71. DEFINE_DMA_UNMAP_ADDR(dma);
  72. DEFINE_DMA_UNMAP_LEN(len);
  73. };
  74. struct fm10k_rx_buffer {
  75. dma_addr_t dma;
  76. struct page *page;
  77. u32 page_offset;
  78. };
  79. struct fm10k_queue_stats {
  80. u64 packets;
  81. u64 bytes;
  82. };
  83. struct fm10k_tx_queue_stats {
  84. u64 restart_queue;
  85. u64 csum_err;
  86. u64 tx_busy;
  87. u64 tx_done_old;
  88. u64 csum_good;
  89. };
  90. struct fm10k_rx_queue_stats {
  91. u64 alloc_failed;
  92. u64 csum_err;
  93. u64 errors;
  94. u64 csum_good;
  95. u64 switch_errors;
  96. u64 drops;
  97. u64 pp_errors;
  98. u64 link_errors;
  99. u64 length_errors;
  100. };
  101. struct fm10k_ring {
  102. struct fm10k_q_vector *q_vector;/* backpointer to host q_vector */
  103. struct net_device *netdev; /* netdev ring belongs to */
  104. struct device *dev; /* device for DMA mapping */
  105. struct fm10k_l2_accel __rcu *l2_accel; /* L2 acceleration list */
  106. void *desc; /* descriptor ring memory */
  107. union {
  108. struct fm10k_tx_buffer *tx_buffer;
  109. struct fm10k_rx_buffer *rx_buffer;
  110. };
  111. u32 __iomem *tail;
  112. unsigned long state;
  113. dma_addr_t dma; /* phys. address of descriptor ring */
  114. unsigned int size; /* length in bytes */
  115. u8 queue_index; /* needed for queue management */
  116. u8 reg_idx; /* holds the special value that gets
  117. * the hardware register offset
  118. * associated with this ring, which is
  119. * different for DCB and RSS modes
  120. */
  121. u8 qos_pc; /* priority class of queue */
  122. u16 vid; /* default vlan ID of queue */
  123. u16 count; /* amount of descriptors */
  124. u16 next_to_alloc;
  125. u16 next_to_use;
  126. u16 next_to_clean;
  127. struct fm10k_queue_stats stats;
  128. struct u64_stats_sync syncp;
  129. union {
  130. /* Tx */
  131. struct fm10k_tx_queue_stats tx_stats;
  132. /* Rx */
  133. struct {
  134. struct fm10k_rx_queue_stats rx_stats;
  135. struct sk_buff *skb;
  136. };
  137. };
  138. } ____cacheline_internodealigned_in_smp;
  139. struct fm10k_ring_container {
  140. struct fm10k_ring *ring; /* pointer to linked list of rings */
  141. unsigned int total_bytes; /* total bytes processed this int */
  142. unsigned int total_packets; /* total packets processed this int */
  143. u16 work_limit; /* total work allowed per interrupt */
  144. u16 itr; /* interrupt throttle rate value */
  145. u8 count; /* total number of rings in vector */
  146. };
  147. #define FM10K_ITR_MAX 0x0FFF /* maximum value for ITR */
  148. #define FM10K_ITR_10K 100 /* 100us */
  149. #define FM10K_ITR_20K 50 /* 50us */
  150. #define FM10K_ITR_ADAPTIVE 0x8000 /* adaptive interrupt moderation flag */
  151. #define FM10K_ITR_ENABLE (FM10K_ITR_AUTOMASK | FM10K_ITR_MASK_CLEAR)
  152. static inline struct netdev_queue *txring_txq(const struct fm10k_ring *ring)
  153. {
  154. return &ring->netdev->_tx[ring->queue_index];
  155. }
  156. /* iterator for handling rings in ring container */
  157. #define fm10k_for_each_ring(pos, head) \
  158. for (pos = &(head).ring[(head).count]; (--pos) >= (head).ring;)
  159. #define MAX_Q_VECTORS 256
  160. #define MIN_Q_VECTORS 1
  161. enum fm10k_non_q_vectors {
  162. FM10K_MBX_VECTOR,
  163. #define NON_Q_VECTORS_VF NON_Q_VECTORS_PF
  164. NON_Q_VECTORS_PF
  165. };
  166. #define NON_Q_VECTORS(hw) (((hw)->mac.type == fm10k_mac_pf) ? \
  167. NON_Q_VECTORS_PF : \
  168. NON_Q_VECTORS_VF)
  169. #define MIN_MSIX_COUNT(hw) (MIN_Q_VECTORS + NON_Q_VECTORS(hw))
  170. struct fm10k_q_vector {
  171. struct fm10k_intfc *interface;
  172. u32 __iomem *itr; /* pointer to ITR register for this vector */
  173. u16 v_idx; /* index of q_vector within interface array */
  174. struct fm10k_ring_container rx, tx;
  175. struct napi_struct napi;
  176. char name[IFNAMSIZ + 9];
  177. #ifdef CONFIG_DEBUG_FS
  178. struct dentry *dbg_q_vector;
  179. #endif /* CONFIG_DEBUG_FS */
  180. struct rcu_head rcu; /* to avoid race with update stats on free */
  181. /* for dynamic allocation of rings associated with this q_vector */
  182. struct fm10k_ring ring[0] ____cacheline_internodealigned_in_smp;
  183. };
  184. enum fm10k_ring_f_enum {
  185. RING_F_RSS,
  186. RING_F_QOS,
  187. RING_F_ARRAY_SIZE /* must be last in enum set */
  188. };
  189. struct fm10k_ring_feature {
  190. u16 limit; /* upper limit on feature indices */
  191. u16 indices; /* current value of indices */
  192. u16 mask; /* Mask used for feature to ring mapping */
  193. u16 offset; /* offset to start of feature */
  194. };
  195. struct fm10k_iov_data {
  196. unsigned int num_vfs;
  197. unsigned int next_vf_mbx;
  198. struct rcu_head rcu;
  199. struct fm10k_vf_info vf_info[0];
  200. };
  201. #define fm10k_vxlan_port_for_each(vp, intfc) \
  202. list_for_each_entry(vp, &(intfc)->vxlan_port, list)
  203. struct fm10k_vxlan_port {
  204. struct list_head list;
  205. sa_family_t sa_family;
  206. __be16 port;
  207. };
  208. /* one work queue for entire driver */
  209. extern struct workqueue_struct *fm10k_workqueue;
  210. struct fm10k_intfc {
  211. unsigned long active_vlans[BITS_TO_LONGS(VLAN_N_VID)];
  212. struct net_device *netdev;
  213. struct fm10k_l2_accel *l2_accel; /* pointer to L2 acceleration list */
  214. struct pci_dev *pdev;
  215. unsigned long state;
  216. u32 flags;
  217. #define FM10K_FLAG_RESET_REQUESTED (u32)(1 << 0)
  218. #define FM10K_FLAG_RSS_FIELD_IPV4_UDP (u32)(1 << 1)
  219. #define FM10K_FLAG_RSS_FIELD_IPV6_UDP (u32)(1 << 2)
  220. #define FM10K_FLAG_RX_TS_ENABLED (u32)(1 << 3)
  221. #define FM10K_FLAG_SWPRI_CONFIG (u32)(1 << 4)
  222. #define FM10K_FLAG_DEBUG_STATS (u32)(1 << 5)
  223. int xcast_mode;
  224. /* Tx fast path data */
  225. int num_tx_queues;
  226. u16 tx_itr;
  227. /* Rx fast path data */
  228. int num_rx_queues;
  229. u16 rx_itr;
  230. /* TX */
  231. struct fm10k_ring *tx_ring[MAX_QUEUES] ____cacheline_aligned_in_smp;
  232. u64 restart_queue;
  233. u64 tx_busy;
  234. u64 tx_csum_errors;
  235. u64 alloc_failed;
  236. u64 rx_csum_errors;
  237. u64 tx_bytes_nic;
  238. u64 tx_packets_nic;
  239. u64 rx_bytes_nic;
  240. u64 rx_packets_nic;
  241. u64 rx_drops_nic;
  242. u64 rx_overrun_pf;
  243. u64 rx_overrun_vf;
  244. /* Debug Statistics */
  245. u64 hw_sm_mbx_full;
  246. u64 hw_csum_tx_good;
  247. u64 hw_csum_rx_good;
  248. u64 rx_switch_errors;
  249. u64 rx_drops;
  250. u64 rx_pp_errors;
  251. u64 rx_link_errors;
  252. u64 rx_length_errors;
  253. u32 tx_timeout_count;
  254. /* RX */
  255. struct fm10k_ring *rx_ring[MAX_QUEUES];
  256. /* Queueing vectors */
  257. struct fm10k_q_vector *q_vector[MAX_Q_VECTORS];
  258. struct msix_entry *msix_entries;
  259. int num_q_vectors; /* current number of q_vectors for device */
  260. struct fm10k_ring_feature ring_feature[RING_F_ARRAY_SIZE];
  261. /* SR-IOV information management structure */
  262. struct fm10k_iov_data *iov_data;
  263. struct fm10k_hw_stats stats;
  264. struct fm10k_hw hw;
  265. u32 __iomem *uc_addr;
  266. u32 __iomem *sw_addr;
  267. u16 msg_enable;
  268. u16 tx_ring_count;
  269. u16 rx_ring_count;
  270. struct timer_list service_timer;
  271. struct work_struct service_task;
  272. unsigned long next_stats_update;
  273. unsigned long next_tx_hang_check;
  274. unsigned long last_reset;
  275. unsigned long link_down_event;
  276. bool host_ready;
  277. u32 reta[FM10K_RETA_SIZE];
  278. u32 rssrk[FM10K_RSSRK_SIZE];
  279. /* VXLAN port tracking information */
  280. struct list_head vxlan_port;
  281. #ifdef CONFIG_DEBUG_FS
  282. struct dentry *dbg_intfc;
  283. #endif /* CONFIG_DEBUG_FS */
  284. struct ptp_clock_info ptp_caps;
  285. struct ptp_clock *ptp_clock;
  286. struct sk_buff_head ts_tx_skb_queue;
  287. u32 tx_hwtstamp_timeouts;
  288. struct hwtstamp_config ts_config;
  289. /* We are unable to actually adjust the clock beyond the frequency
  290. * value. Once the clock is started there is no resetting it. As
  291. * such we maintain a separate offset from the actual hardware clock
  292. * to allow for offset adjustment.
  293. */
  294. s64 ptp_adjust;
  295. rwlock_t systime_lock;
  296. #ifdef CONFIG_DCB
  297. u8 pfc_en;
  298. #endif
  299. u8 rx_pause;
  300. /* GLORT resources in use by PF */
  301. u16 glort;
  302. u16 glort_count;
  303. /* VLAN ID for updating multicast/unicast lists */
  304. u16 vid;
  305. };
  306. enum fm10k_state_t {
  307. __FM10K_RESETTING,
  308. __FM10K_DOWN,
  309. __FM10K_SERVICE_SCHED,
  310. __FM10K_SERVICE_DISABLE,
  311. __FM10K_MBX_LOCK,
  312. __FM10K_LINK_DOWN,
  313. };
  314. static inline void fm10k_mbx_lock(struct fm10k_intfc *interface)
  315. {
  316. /* busy loop if we cannot obtain the lock as some calls
  317. * such as ndo_set_rx_mode may be made in atomic context
  318. */
  319. while (test_and_set_bit(__FM10K_MBX_LOCK, &interface->state))
  320. udelay(20);
  321. }
  322. static inline void fm10k_mbx_unlock(struct fm10k_intfc *interface)
  323. {
  324. /* flush memory to make sure state is correct */
  325. smp_mb__before_atomic();
  326. clear_bit(__FM10K_MBX_LOCK, &interface->state);
  327. }
  328. static inline int fm10k_mbx_trylock(struct fm10k_intfc *interface)
  329. {
  330. return !test_and_set_bit(__FM10K_MBX_LOCK, &interface->state);
  331. }
  332. /* fm10k_test_staterr - test bits in Rx descriptor status and error fields */
  333. static inline __le32 fm10k_test_staterr(union fm10k_rx_desc *rx_desc,
  334. const u32 stat_err_bits)
  335. {
  336. return rx_desc->d.staterr & cpu_to_le32(stat_err_bits);
  337. }
  338. /* fm10k_desc_unused - calculate if we have unused descriptors */
  339. static inline u16 fm10k_desc_unused(struct fm10k_ring *ring)
  340. {
  341. s16 unused = ring->next_to_clean - ring->next_to_use - 1;
  342. return likely(unused < 0) ? unused + ring->count : unused;
  343. }
  344. #define FM10K_TX_DESC(R, i) \
  345. (&(((struct fm10k_tx_desc *)((R)->desc))[i]))
  346. #define FM10K_RX_DESC(R, i) \
  347. (&(((union fm10k_rx_desc *)((R)->desc))[i]))
  348. #define FM10K_MAX_TXD_PWR 14
  349. #define FM10K_MAX_DATA_PER_TXD (1 << FM10K_MAX_TXD_PWR)
  350. /* Tx Descriptors needed, worst case */
  351. #define TXD_USE_COUNT(S) DIV_ROUND_UP((S), FM10K_MAX_DATA_PER_TXD)
  352. #define DESC_NEEDED (MAX_SKB_FRAGS + 4)
  353. enum fm10k_tx_flags {
  354. /* Tx offload flags */
  355. FM10K_TX_FLAGS_CSUM = 0x01,
  356. };
  357. /* This structure is stored as little endian values as that is the native
  358. * format of the Rx descriptor. The ordering of these fields is reversed
  359. * from the actual ftag header to allow for a single bswap to take care
  360. * of placing all of the values in network order
  361. */
  362. union fm10k_ftag_info {
  363. __le64 ftag;
  364. struct {
  365. /* dglort and sglort combined into a single 32bit desc read */
  366. __le32 glort;
  367. /* upper 16 bits of vlan are reserved 0 for swpri_type_user */
  368. __le32 vlan;
  369. } d;
  370. struct {
  371. __le16 dglort;
  372. __le16 sglort;
  373. __le16 vlan;
  374. __le16 swpri_type_user;
  375. } w;
  376. };
  377. struct fm10k_cb {
  378. union {
  379. __le64 tstamp;
  380. unsigned long ts_tx_timeout;
  381. };
  382. union fm10k_ftag_info fi;
  383. };
  384. #define FM10K_CB(skb) ((struct fm10k_cb *)(skb)->cb)
  385. /* main */
  386. extern char fm10k_driver_name[];
  387. extern const char fm10k_driver_version[];
  388. int fm10k_init_queueing_scheme(struct fm10k_intfc *interface);
  389. void fm10k_clear_queueing_scheme(struct fm10k_intfc *interface);
  390. __be16 fm10k_tx_encap_offload(struct sk_buff *skb);
  391. netdev_tx_t fm10k_xmit_frame_ring(struct sk_buff *skb,
  392. struct fm10k_ring *tx_ring);
  393. void fm10k_tx_timeout_reset(struct fm10k_intfc *interface);
  394. bool fm10k_check_tx_hang(struct fm10k_ring *tx_ring);
  395. void fm10k_alloc_rx_buffers(struct fm10k_ring *rx_ring, u16 cleaned_count);
  396. /* PCI */
  397. void fm10k_mbx_free_irq(struct fm10k_intfc *);
  398. int fm10k_mbx_request_irq(struct fm10k_intfc *);
  399. void fm10k_qv_free_irq(struct fm10k_intfc *interface);
  400. int fm10k_qv_request_irq(struct fm10k_intfc *interface);
  401. int fm10k_register_pci_driver(void);
  402. void fm10k_unregister_pci_driver(void);
  403. void fm10k_up(struct fm10k_intfc *interface);
  404. void fm10k_down(struct fm10k_intfc *interface);
  405. void fm10k_update_stats(struct fm10k_intfc *interface);
  406. void fm10k_service_event_schedule(struct fm10k_intfc *interface);
  407. void fm10k_update_rx_drop_en(struct fm10k_intfc *interface);
  408. #ifdef CONFIG_NET_POLL_CONTROLLER
  409. void fm10k_netpoll(struct net_device *netdev);
  410. #endif
  411. /* Netdev */
  412. struct net_device *fm10k_alloc_netdev(void);
  413. int fm10k_setup_rx_resources(struct fm10k_ring *);
  414. int fm10k_setup_tx_resources(struct fm10k_ring *);
  415. void fm10k_free_rx_resources(struct fm10k_ring *);
  416. void fm10k_free_tx_resources(struct fm10k_ring *);
  417. void fm10k_clean_all_rx_rings(struct fm10k_intfc *);
  418. void fm10k_clean_all_tx_rings(struct fm10k_intfc *);
  419. void fm10k_unmap_and_free_tx_resource(struct fm10k_ring *,
  420. struct fm10k_tx_buffer *);
  421. void fm10k_restore_rx_state(struct fm10k_intfc *);
  422. void fm10k_reset_rx_state(struct fm10k_intfc *);
  423. int fm10k_setup_tc(struct net_device *dev, u8 tc);
  424. int fm10k_open(struct net_device *netdev);
  425. int fm10k_close(struct net_device *netdev);
  426. /* Ethtool */
  427. void fm10k_set_ethtool_ops(struct net_device *dev);
  428. /* IOV */
  429. s32 fm10k_iov_event(struct fm10k_intfc *interface);
  430. s32 fm10k_iov_mbx(struct fm10k_intfc *interface);
  431. void fm10k_iov_suspend(struct pci_dev *pdev);
  432. int fm10k_iov_resume(struct pci_dev *pdev);
  433. void fm10k_iov_disable(struct pci_dev *pdev);
  434. int fm10k_iov_configure(struct pci_dev *pdev, int num_vfs);
  435. s32 fm10k_iov_update_pvid(struct fm10k_intfc *interface, u16 glort, u16 pvid);
  436. int fm10k_ndo_set_vf_mac(struct net_device *netdev, int vf_idx, u8 *mac);
  437. int fm10k_ndo_set_vf_vlan(struct net_device *netdev,
  438. int vf_idx, u16 vid, u8 qos);
  439. int fm10k_ndo_set_vf_bw(struct net_device *netdev, int vf_idx, int rate,
  440. int unused);
  441. int fm10k_ndo_get_vf_config(struct net_device *netdev,
  442. int vf_idx, struct ifla_vf_info *ivi);
  443. /* DebugFS */
  444. #ifdef CONFIG_DEBUG_FS
  445. void fm10k_dbg_q_vector_init(struct fm10k_q_vector *q_vector);
  446. void fm10k_dbg_q_vector_exit(struct fm10k_q_vector *q_vector);
  447. void fm10k_dbg_intfc_init(struct fm10k_intfc *interface);
  448. void fm10k_dbg_intfc_exit(struct fm10k_intfc *interface);
  449. void fm10k_dbg_init(void);
  450. void fm10k_dbg_exit(void);
  451. #else
  452. static inline void fm10k_dbg_q_vector_init(struct fm10k_q_vector *q_vector) {}
  453. static inline void fm10k_dbg_q_vector_exit(struct fm10k_q_vector *q_vector) {}
  454. static inline void fm10k_dbg_intfc_init(struct fm10k_intfc *interface) {}
  455. static inline void fm10k_dbg_intfc_exit(struct fm10k_intfc *interface) {}
  456. static inline void fm10k_dbg_init(void) {}
  457. static inline void fm10k_dbg_exit(void) {}
  458. #endif /* CONFIG_DEBUG_FS */
  459. /* Time Stamping */
  460. void fm10k_systime_to_hwtstamp(struct fm10k_intfc *interface,
  461. struct skb_shared_hwtstamps *hwtstamp,
  462. u64 systime);
  463. void fm10k_ts_tx_enqueue(struct fm10k_intfc *interface, struct sk_buff *skb);
  464. void fm10k_ts_tx_hwtstamp(struct fm10k_intfc *interface, __le16 dglort,
  465. u64 systime);
  466. void fm10k_ts_reset(struct fm10k_intfc *interface);
  467. void fm10k_ts_init(struct fm10k_intfc *interface);
  468. void fm10k_ts_tx_subtask(struct fm10k_intfc *interface);
  469. void fm10k_ptp_register(struct fm10k_intfc *interface);
  470. void fm10k_ptp_unregister(struct fm10k_intfc *interface);
  471. int fm10k_get_ts_config(struct net_device *netdev, struct ifreq *ifr);
  472. int fm10k_set_ts_config(struct net_device *netdev, struct ifreq *ifr);
  473. /* DCB */
  474. void fm10k_dcbnl_set_ops(struct net_device *dev);
  475. #endif /* _FM10K_H_ */