vxge-main.h 13 KB

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  1. /******************************************************************************
  2. * This software may be used and distributed according to the terms of
  3. * the GNU General Public License (GPL), incorporated herein by reference.
  4. * Drivers based on or derived from this code fall under the GPL and must
  5. * retain the authorship, copyright and license notice. This file is not
  6. * a complete program and may only be used when the entire operating
  7. * system is licensed under the GPL.
  8. * See the file COPYING in this distribution for more information.
  9. *
  10. * vxge-main.h: Driver for Exar Corp's X3100 Series 10GbE PCIe I/O
  11. * Virtualized Server Adapter.
  12. * Copyright(c) 2002-2010 Exar Corp.
  13. ******************************************************************************/
  14. #ifndef VXGE_MAIN_H
  15. #define VXGE_MAIN_H
  16. #include "vxge-traffic.h"
  17. #include "vxge-config.h"
  18. #include "vxge-version.h"
  19. #include <linux/list.h>
  20. #define VXGE_DRIVER_NAME "vxge"
  21. #define VXGE_DRIVER_VENDOR "Neterion, Inc"
  22. #define VXGE_DRIVER_FW_VERSION_MAJOR 1
  23. #define DRV_VERSION VXGE_VERSION_MAJOR"."VXGE_VERSION_MINOR"."\
  24. VXGE_VERSION_FIX"."VXGE_VERSION_BUILD"-"\
  25. VXGE_VERSION_FOR
  26. #define PCI_DEVICE_ID_TITAN_WIN 0x5733
  27. #define PCI_DEVICE_ID_TITAN_UNI 0x5833
  28. #define VXGE_HW_TITAN1_PCI_REVISION 1
  29. #define VXGE_HW_TITAN1A_PCI_REVISION 2
  30. #define VXGE_USE_DEFAULT 0xffffffff
  31. #define VXGE_HW_VPATH_MSIX_ACTIVE 4
  32. #define VXGE_ALARM_MSIX_ID 2
  33. #define VXGE_HW_RXSYNC_FREQ_CNT 4
  34. #define VXGE_LL_WATCH_DOG_TIMEOUT (15 * HZ)
  35. #define VXGE_LL_RX_COPY_THRESHOLD 256
  36. #define VXGE_DEF_FIFO_LENGTH 84
  37. #define NO_STEERING 0
  38. #define PORT_STEERING 0x1
  39. #define RTH_STEERING 0x2
  40. #define RX_TOS_STEERING 0x3
  41. #define RX_VLAN_STEERING 0x4
  42. #define RTH_BUCKET_SIZE 4
  43. #define TX_PRIORITY_STEERING 1
  44. #define TX_VLAN_STEERING 2
  45. #define TX_PORT_STEERING 3
  46. #define TX_MULTIQ_STEERING 4
  47. #define VXGE_HW_MAC_ADDR_LEARN_DEFAULT VXGE_HW_RTS_MAC_DISABLE
  48. #define VXGE_TTI_BTIMER_VAL 250000
  49. #define VXGE_TTI_LTIMER_VAL 1000
  50. #define VXGE_T1A_TTI_LTIMER_VAL 80
  51. #define VXGE_TTI_RTIMER_VAL 0
  52. #define VXGE_TTI_RTIMER_ADAPT_VAL 10
  53. #define VXGE_T1A_TTI_RTIMER_VAL 400
  54. #define VXGE_RTI_BTIMER_VAL 250
  55. #define VXGE_RTI_LTIMER_VAL 100
  56. #define VXGE_RTI_RTIMER_VAL 0
  57. #define VXGE_RTI_RTIMER_ADAPT_VAL 15
  58. #define VXGE_FIFO_INDICATE_MAX_PKTS VXGE_DEF_FIFO_LENGTH
  59. #define VXGE_ISR_POLLING_CNT 8
  60. #define VXGE_MAX_CONFIG_DEV 0xFF
  61. #define VXGE_EXEC_MODE_DISABLE 0
  62. #define VXGE_EXEC_MODE_ENABLE 1
  63. #define VXGE_MAX_CONFIG_PORT 1
  64. #define VXGE_ALL_VID_DISABLE 0
  65. #define VXGE_ALL_VID_ENABLE 1
  66. #define VXGE_PAUSE_CTRL_DISABLE 0
  67. #define VXGE_PAUSE_CTRL_ENABLE 1
  68. #define TTI_TX_URANGE_A 5
  69. #define TTI_TX_URANGE_B 15
  70. #define TTI_TX_URANGE_C 40
  71. #define TTI_TX_UFC_A 5
  72. #define TTI_TX_UFC_B 40
  73. #define TTI_TX_UFC_C 60
  74. #define TTI_TX_UFC_D 100
  75. #define TTI_T1A_TX_UFC_A 30
  76. #define TTI_T1A_TX_UFC_B 80
  77. /* Slope - (max_mtu - min_mtu)/(max_mtu_ufc - min_mtu_ufc) */
  78. /* Slope - 93 */
  79. /* 60 - 9k Mtu, 140 - 1.5k mtu */
  80. #define TTI_T1A_TX_UFC_C(mtu) (60 + ((VXGE_HW_MAX_MTU - mtu) / 93))
  81. /* Slope - 37 */
  82. /* 100 - 9k Mtu, 300 - 1.5k mtu */
  83. #define TTI_T1A_TX_UFC_D(mtu) (100 + ((VXGE_HW_MAX_MTU - mtu) / 37))
  84. #define RTI_RX_URANGE_A 5
  85. #define RTI_RX_URANGE_B 15
  86. #define RTI_RX_URANGE_C 40
  87. #define RTI_T1A_RX_URANGE_A 1
  88. #define RTI_T1A_RX_URANGE_B 20
  89. #define RTI_T1A_RX_URANGE_C 50
  90. #define RTI_RX_UFC_A 1
  91. #define RTI_RX_UFC_B 5
  92. #define RTI_RX_UFC_C 10
  93. #define RTI_RX_UFC_D 15
  94. #define RTI_T1A_RX_UFC_B 20
  95. #define RTI_T1A_RX_UFC_C 50
  96. #define RTI_T1A_RX_UFC_D 60
  97. /*
  98. * The interrupt rate is maintained at 3k per second with the moderation
  99. * parameters for most traffic but not all. This is the maximum interrupt
  100. * count allowed per function with INTA or per vector in the case of
  101. * MSI-X in a 10 millisecond time period. Enabled only for Titan 1A.
  102. */
  103. #define VXGE_T1A_MAX_INTERRUPT_COUNT 100
  104. #define VXGE_T1A_MAX_TX_INTERRUPT_COUNT 200
  105. /* Milli secs timer period */
  106. #define VXGE_TIMER_DELAY 10000
  107. #define VXGE_LL_MAX_FRAME_SIZE(dev) ((dev)->mtu + VXGE_HW_MAC_HEADER_MAX_SIZE)
  108. #define is_sriov(function_mode) \
  109. ((function_mode == VXGE_HW_FUNCTION_MODE_SRIOV) || \
  110. (function_mode == VXGE_HW_FUNCTION_MODE_SRIOV_8) || \
  111. (function_mode == VXGE_HW_FUNCTION_MODE_SRIOV_4))
  112. enum vxge_reset_event {
  113. /* reset events */
  114. VXGE_LL_VPATH_RESET = 0,
  115. VXGE_LL_DEVICE_RESET = 1,
  116. VXGE_LL_FULL_RESET = 2,
  117. VXGE_LL_START_RESET = 3,
  118. VXGE_LL_COMPL_RESET = 4
  119. };
  120. /* These flags represent the devices temporary state */
  121. enum vxge_device_state_t {
  122. __VXGE_STATE_RESET_CARD = 0,
  123. __VXGE_STATE_CARD_UP
  124. };
  125. enum vxge_mac_addr_state {
  126. /* mac address states */
  127. VXGE_LL_MAC_ADDR_IN_LIST = 0,
  128. VXGE_LL_MAC_ADDR_IN_DA_TABLE = 1
  129. };
  130. struct vxge_drv_config {
  131. int config_dev_cnt;
  132. int total_dev_cnt;
  133. int g_no_cpus;
  134. unsigned int vpath_per_dev;
  135. };
  136. struct macInfo {
  137. unsigned char macaddr[ETH_ALEN];
  138. unsigned char macmask[ETH_ALEN];
  139. unsigned int vpath_no;
  140. enum vxge_mac_addr_state state;
  141. };
  142. struct vxge_config {
  143. int tx_pause_enable;
  144. int rx_pause_enable;
  145. #define NEW_NAPI_WEIGHT 64
  146. int napi_weight;
  147. int intr_type;
  148. #define INTA 0
  149. #define MSI 1
  150. #define MSI_X 2
  151. int addr_learn_en;
  152. u32 rth_steering:2,
  153. rth_algorithm:2,
  154. rth_hash_type_tcpipv4:1,
  155. rth_hash_type_ipv4:1,
  156. rth_hash_type_tcpipv6:1,
  157. rth_hash_type_ipv6:1,
  158. rth_hash_type_tcpipv6ex:1,
  159. rth_hash_type_ipv6ex:1,
  160. rth_bkt_sz:8;
  161. int rth_jhash_golden_ratio;
  162. int tx_steering_type;
  163. int fifo_indicate_max_pkts;
  164. struct vxge_hw_device_hw_info device_hw_info;
  165. };
  166. struct vxge_msix_entry {
  167. /* Mimicing the msix_entry struct of Kernel. */
  168. u16 vector;
  169. u16 entry;
  170. u16 in_use;
  171. void *arg;
  172. };
  173. /* Software Statistics */
  174. struct vxge_sw_stats {
  175. /* Network Stats (interface stats) */
  176. /* Tx */
  177. u64 tx_frms;
  178. u64 tx_errors;
  179. u64 tx_bytes;
  180. u64 txd_not_free;
  181. u64 txd_out_of_desc;
  182. /* Virtual Path */
  183. u64 vpaths_open;
  184. u64 vpath_open_fail;
  185. /* Rx */
  186. u64 rx_frms;
  187. u64 rx_errors;
  188. u64 rx_bytes;
  189. u64 rx_mcast;
  190. /* Misc. */
  191. u64 link_up;
  192. u64 link_down;
  193. u64 pci_map_fail;
  194. u64 skb_alloc_fail;
  195. };
  196. struct vxge_mac_addrs {
  197. struct list_head item;
  198. u64 macaddr;
  199. u64 macmask;
  200. enum vxge_mac_addr_state state;
  201. };
  202. struct vxgedev;
  203. struct vxge_fifo_stats {
  204. u64 tx_frms;
  205. u64 tx_errors;
  206. u64 tx_bytes;
  207. u64 txd_not_free;
  208. u64 txd_out_of_desc;
  209. u64 pci_map_fail;
  210. };
  211. struct vxge_fifo {
  212. struct net_device *ndev;
  213. struct pci_dev *pdev;
  214. struct __vxge_hw_fifo *handle;
  215. struct netdev_queue *txq;
  216. int tx_steering_type;
  217. int indicate_max_pkts;
  218. /* Adaptive interrupt moderation parameters used in T1A */
  219. unsigned long interrupt_count;
  220. unsigned long jiffies;
  221. u32 tx_vector_no;
  222. /* Tx stats */
  223. struct vxge_fifo_stats stats;
  224. } ____cacheline_aligned;
  225. struct vxge_ring_stats {
  226. u64 prev_rx_frms;
  227. u64 rx_frms;
  228. u64 rx_errors;
  229. u64 rx_dropped;
  230. u64 rx_bytes;
  231. u64 rx_mcast;
  232. u64 pci_map_fail;
  233. u64 skb_alloc_fail;
  234. };
  235. struct vxge_ring {
  236. struct net_device *ndev;
  237. struct pci_dev *pdev;
  238. struct __vxge_hw_ring *handle;
  239. /* The vpath id maintained in the driver -
  240. * 0 to 'maximum_vpaths_in_function - 1'
  241. */
  242. int driver_id;
  243. /* Adaptive interrupt moderation parameters used in T1A */
  244. unsigned long interrupt_count;
  245. unsigned long jiffies;
  246. /* copy of the flag indicating whether rx_hwts is to be used */
  247. u32 rx_hwts:1;
  248. int pkts_processed;
  249. int budget;
  250. struct napi_struct napi;
  251. struct napi_struct *napi_p;
  252. #define VXGE_MAX_MAC_ADDR_COUNT 30
  253. int vlan_tag_strip;
  254. struct vlan_group *vlgrp;
  255. u32 rx_vector_no;
  256. enum vxge_hw_status last_status;
  257. /* Rx stats */
  258. struct vxge_ring_stats stats;
  259. } ____cacheline_aligned;
  260. struct vxge_vpath {
  261. struct vxge_fifo fifo;
  262. struct vxge_ring ring;
  263. struct __vxge_hw_vpath_handle *handle;
  264. /* Actual vpath id for this vpath in the device - 0 to 16 */
  265. int device_id;
  266. int max_mac_addr_cnt;
  267. int is_configured;
  268. int is_open;
  269. struct vxgedev *vdev;
  270. u8 macaddr[ETH_ALEN];
  271. u8 macmask[ETH_ALEN];
  272. #define VXGE_MAX_LEARN_MAC_ADDR_CNT 2048
  273. /* mac addresses currently programmed into NIC */
  274. u16 mac_addr_cnt;
  275. u16 mcast_addr_cnt;
  276. struct list_head mac_addr_list;
  277. u32 level_err;
  278. u32 level_trace;
  279. };
  280. #define VXGE_COPY_DEBUG_INFO_TO_LL(vdev, err, trace) { \
  281. for (i = 0; i < vdev->no_of_vpath; i++) { \
  282. vdev->vpaths[i].level_err = err; \
  283. vdev->vpaths[i].level_trace = trace; \
  284. } \
  285. vdev->level_err = err; \
  286. vdev->level_trace = trace; \
  287. }
  288. struct vxgedev {
  289. struct net_device *ndev;
  290. struct pci_dev *pdev;
  291. struct __vxge_hw_device *devh;
  292. struct vlan_group *vlgrp;
  293. int vlan_tag_strip;
  294. struct vxge_config config;
  295. unsigned long state;
  296. /* Indicates which vpath to reset */
  297. unsigned long vp_reset;
  298. /* Timer used for polling vpath resets */
  299. struct timer_list vp_reset_timer;
  300. /* Timer used for polling vpath lockup */
  301. struct timer_list vp_lockup_timer;
  302. /*
  303. * Flags to track whether device is in All Multicast
  304. * or in promiscuous mode.
  305. */
  306. u16 all_multi_flg;
  307. /* A flag indicating whether rx_hwts is to be used or not. */
  308. u32 rx_hwts:1,
  309. titan1:1;
  310. struct vxge_msix_entry *vxge_entries;
  311. struct msix_entry *entries;
  312. /*
  313. * 4 for each vpath * 17;
  314. * total is 68
  315. */
  316. #define VXGE_MAX_REQUESTED_MSIX 68
  317. #define VXGE_INTR_STRLEN 80
  318. char desc[VXGE_MAX_REQUESTED_MSIX][VXGE_INTR_STRLEN];
  319. enum vxge_hw_event cric_err_event;
  320. int max_vpath_supported;
  321. int no_of_vpath;
  322. struct napi_struct napi;
  323. /* A debug option, when enabled and if error condition occurs,
  324. * the driver will do following steps:
  325. * - mask all interrupts
  326. * - Not clear the source of the alarm
  327. * - gracefully stop all I/O
  328. * A diagnostic dump of register and stats at this point
  329. * reveals very useful information.
  330. */
  331. int exec_mode;
  332. int max_config_port;
  333. struct vxge_vpath *vpaths;
  334. struct __vxge_hw_vpath_handle *vp_handles[VXGE_HW_MAX_VIRTUAL_PATHS];
  335. void __iomem *bar0;
  336. struct vxge_sw_stats stats;
  337. int mtu;
  338. /* Below variables are used for vpath selection to transmit a packet */
  339. u8 vpath_selector[VXGE_HW_MAX_VIRTUAL_PATHS];
  340. u64 vpaths_deployed;
  341. u32 intr_cnt;
  342. u32 level_err;
  343. u32 level_trace;
  344. char fw_version[VXGE_HW_FW_STRLEN];
  345. struct work_struct reset_task;
  346. };
  347. struct vxge_rx_priv {
  348. struct sk_buff *skb;
  349. unsigned char *skb_data;
  350. dma_addr_t data_dma;
  351. dma_addr_t data_size;
  352. };
  353. struct vxge_tx_priv {
  354. struct sk_buff *skb;
  355. dma_addr_t dma_buffers[MAX_SKB_FRAGS+1];
  356. };
  357. #define VXGE_MODULE_PARAM_INT(p, val) \
  358. static int p = val; \
  359. module_param(p, int, 0)
  360. #define vxge_os_timer(timer, handle, arg, exp) do { \
  361. init_timer(&timer); \
  362. timer.function = handle; \
  363. timer.data = (unsigned long) arg; \
  364. mod_timer(&timer, (jiffies + exp)); \
  365. } while (0);
  366. void vxge_initialize_ethtool_ops(struct net_device *ndev);
  367. enum vxge_hw_status vxge_reset_all_vpaths(struct vxgedev *vdev);
  368. int vxge_fw_upgrade(struct vxgedev *vdev, char *fw_name, int override);
  369. /**
  370. * #define VXGE_DEBUG_INIT: debug for initialization functions
  371. * #define VXGE_DEBUG_TX : debug transmit related functions
  372. * #define VXGE_DEBUG_RX : debug recevice related functions
  373. * #define VXGE_DEBUG_MEM : debug memory module
  374. * #define VXGE_DEBUG_LOCK: debug locks
  375. * #define VXGE_DEBUG_SEM : debug semaphore
  376. * #define VXGE_DEBUG_ENTRYEXIT: debug functions by adding entry exit statements
  377. */
  378. #define VXGE_DEBUG_INIT 0x00000001
  379. #define VXGE_DEBUG_TX 0x00000002
  380. #define VXGE_DEBUG_RX 0x00000004
  381. #define VXGE_DEBUG_MEM 0x00000008
  382. #define VXGE_DEBUG_LOCK 0x00000010
  383. #define VXGE_DEBUG_SEM 0x00000020
  384. #define VXGE_DEBUG_ENTRYEXIT 0x00000040
  385. #define VXGE_DEBUG_INTR 0x00000080
  386. #define VXGE_DEBUG_LL_CONFIG 0x00000100
  387. /* Debug tracing for VXGE driver */
  388. #ifndef VXGE_DEBUG_MASK
  389. #define VXGE_DEBUG_MASK 0x0
  390. #endif
  391. #if (VXGE_DEBUG_LL_CONFIG & VXGE_DEBUG_MASK)
  392. #define vxge_debug_ll_config(level, fmt, ...) \
  393. vxge_debug_ll(level, VXGE_DEBUG_LL_CONFIG, fmt, __VA_ARGS__)
  394. #else
  395. #define vxge_debug_ll_config(level, fmt, ...)
  396. #endif
  397. #if (VXGE_DEBUG_INIT & VXGE_DEBUG_MASK)
  398. #define vxge_debug_init(level, fmt, ...) \
  399. vxge_debug_ll(level, VXGE_DEBUG_INIT, fmt, __VA_ARGS__)
  400. #else
  401. #define vxge_debug_init(level, fmt, ...)
  402. #endif
  403. #if (VXGE_DEBUG_TX & VXGE_DEBUG_MASK)
  404. #define vxge_debug_tx(level, fmt, ...) \
  405. vxge_debug_ll(level, VXGE_DEBUG_TX, fmt, __VA_ARGS__)
  406. #else
  407. #define vxge_debug_tx(level, fmt, ...)
  408. #endif
  409. #if (VXGE_DEBUG_RX & VXGE_DEBUG_MASK)
  410. #define vxge_debug_rx(level, fmt, ...) \
  411. vxge_debug_ll(level, VXGE_DEBUG_RX, fmt, __VA_ARGS__)
  412. #else
  413. #define vxge_debug_rx(level, fmt, ...)
  414. #endif
  415. #if (VXGE_DEBUG_MEM & VXGE_DEBUG_MASK)
  416. #define vxge_debug_mem(level, fmt, ...) \
  417. vxge_debug_ll(level, VXGE_DEBUG_MEM, fmt, __VA_ARGS__)
  418. #else
  419. #define vxge_debug_mem(level, fmt, ...)
  420. #endif
  421. #if (VXGE_DEBUG_ENTRYEXIT & VXGE_DEBUG_MASK)
  422. #define vxge_debug_entryexit(level, fmt, ...) \
  423. vxge_debug_ll(level, VXGE_DEBUG_ENTRYEXIT, fmt, __VA_ARGS__)
  424. #else
  425. #define vxge_debug_entryexit(level, fmt, ...)
  426. #endif
  427. #if (VXGE_DEBUG_INTR & VXGE_DEBUG_MASK)
  428. #define vxge_debug_intr(level, fmt, ...) \
  429. vxge_debug_ll(level, VXGE_DEBUG_INTR, fmt, __VA_ARGS__)
  430. #else
  431. #define vxge_debug_intr(level, fmt, ...)
  432. #endif
  433. #define VXGE_DEVICE_DEBUG_LEVEL_SET(level, mask, vdev) {\
  434. vxge_hw_device_debug_set((struct __vxge_hw_device *)vdev->devh, \
  435. level, mask);\
  436. VXGE_COPY_DEBUG_INFO_TO_LL(vdev, \
  437. vxge_hw_device_error_level_get((struct __vxge_hw_device *) \
  438. vdev->devh), \
  439. vxge_hw_device_trace_level_get((struct __vxge_hw_device *) \
  440. vdev->devh));\
  441. }
  442. #ifdef NETIF_F_GSO
  443. #define vxge_tcp_mss(skb) (skb_shinfo(skb)->gso_size)
  444. #define vxge_udp_mss(skb) (skb_shinfo(skb)->gso_size)
  445. #define vxge_offload_type(skb) (skb_shinfo(skb)->gso_type)
  446. #endif
  447. #endif