netxen_nic_main.c 45 KB

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  1. /*
  2. * Copyright (C) 2003 - 2006 NetXen, Inc.
  3. * All rights reserved.
  4. *
  5. * This program is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU General Public License
  7. * as published by the Free Software Foundation; either version 2
  8. * of the License, or (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful, but
  11. * WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program; if not, write to the Free Software
  17. * Foundation, Inc., 59 Temple Place - Suite 330, Boston,
  18. * MA 02111-1307, USA.
  19. *
  20. * The full GNU General Public License is included in this distribution
  21. * in the file called LICENSE.
  22. *
  23. * Contact Information:
  24. * info@netxen.com
  25. * NetXen,
  26. * 3965 Freedom Circle, Fourth floor,
  27. * Santa Clara, CA 95054
  28. *
  29. *
  30. * Main source file for NetXen NIC Driver on Linux
  31. *
  32. */
  33. #include <linux/vmalloc.h>
  34. #include <linux/highmem.h>
  35. #include "netxen_nic_hw.h"
  36. #include "netxen_nic.h"
  37. #include "netxen_nic_phan_reg.h"
  38. #include <linux/dma-mapping.h>
  39. #include <linux/if_vlan.h>
  40. #include <net/ip.h>
  41. #include <linux/ipv6.h>
  42. MODULE_DESCRIPTION("NetXen Multi port (1/10) Gigabit Network Driver");
  43. MODULE_LICENSE("GPL");
  44. MODULE_VERSION(NETXEN_NIC_LINUX_VERSIONID);
  45. char netxen_nic_driver_name[] = "netxen_nic";
  46. static char netxen_nic_driver_string[] = "NetXen Network Driver version "
  47. NETXEN_NIC_LINUX_VERSIONID;
  48. static int port_mode = NETXEN_PORT_MODE_AUTO_NEG;
  49. /* Default to restricted 1G auto-neg mode */
  50. static int wol_port_mode = 5;
  51. static int use_msi = 1;
  52. static int use_msi_x = 1;
  53. /* Local functions to NetXen NIC driver */
  54. static int __devinit netxen_nic_probe(struct pci_dev *pdev,
  55. const struct pci_device_id *ent);
  56. static void __devexit netxen_nic_remove(struct pci_dev *pdev);
  57. static int netxen_nic_open(struct net_device *netdev);
  58. static int netxen_nic_close(struct net_device *netdev);
  59. static int netxen_nic_xmit_frame(struct sk_buff *, struct net_device *);
  60. static void netxen_tx_timeout(struct net_device *netdev);
  61. static void netxen_tx_timeout_task(struct work_struct *work);
  62. static void netxen_watchdog(unsigned long);
  63. static int netxen_nic_poll(struct napi_struct *napi, int budget);
  64. #ifdef CONFIG_NET_POLL_CONTROLLER
  65. static void netxen_nic_poll_controller(struct net_device *netdev);
  66. #endif
  67. static irqreturn_t netxen_intr(int irq, void *data);
  68. static irqreturn_t netxen_msi_intr(int irq, void *data);
  69. /* PCI Device ID Table */
  70. #define ENTRY(device) \
  71. {PCI_DEVICE(PCI_VENDOR_ID_NETXEN, (device)), \
  72. .class = PCI_CLASS_NETWORK_ETHERNET << 8, .class_mask = ~0}
  73. static struct pci_device_id netxen_pci_tbl[] __devinitdata = {
  74. ENTRY(PCI_DEVICE_ID_NX2031_10GXSR),
  75. ENTRY(PCI_DEVICE_ID_NX2031_10GCX4),
  76. ENTRY(PCI_DEVICE_ID_NX2031_4GCU),
  77. ENTRY(PCI_DEVICE_ID_NX2031_IMEZ),
  78. ENTRY(PCI_DEVICE_ID_NX2031_HMEZ),
  79. ENTRY(PCI_DEVICE_ID_NX2031_XG_MGMT),
  80. ENTRY(PCI_DEVICE_ID_NX2031_XG_MGMT2),
  81. ENTRY(PCI_DEVICE_ID_NX3031),
  82. {0,}
  83. };
  84. MODULE_DEVICE_TABLE(pci, netxen_pci_tbl);
  85. /*
  86. * In netxen_nic_down(), we must wait for any pending callback requests into
  87. * netxen_watchdog_task() to complete; eg otherwise the watchdog_timer could be
  88. * reenabled right after it is deleted in netxen_nic_down().
  89. * FLUSH_SCHEDULED_WORK() does this synchronization.
  90. *
  91. * Normally, schedule_work()/flush_scheduled_work() could have worked, but
  92. * netxen_nic_close() is invoked with kernel rtnl lock held. netif_carrier_off()
  93. * call in netxen_nic_close() triggers a schedule_work(&linkwatch_work), and a
  94. * subsequent call to flush_scheduled_work() in netxen_nic_down() would cause
  95. * linkwatch_event() to be executed which also attempts to acquire the rtnl
  96. * lock thus causing a deadlock.
  97. */
  98. static struct workqueue_struct *netxen_workq;
  99. #define SCHEDULE_WORK(tp) queue_work(netxen_workq, tp)
  100. #define FLUSH_SCHEDULED_WORK() flush_workqueue(netxen_workq)
  101. static void netxen_watchdog(unsigned long);
  102. static uint32_t crb_cmd_producer[4] = {
  103. CRB_CMD_PRODUCER_OFFSET, CRB_CMD_PRODUCER_OFFSET_1,
  104. CRB_CMD_PRODUCER_OFFSET_2, CRB_CMD_PRODUCER_OFFSET_3
  105. };
  106. void
  107. netxen_nic_update_cmd_producer(struct netxen_adapter *adapter,
  108. uint32_t crb_producer)
  109. {
  110. adapter->pci_write_normalize(adapter,
  111. adapter->crb_addr_cmd_producer, crb_producer);
  112. }
  113. static uint32_t crb_cmd_consumer[4] = {
  114. CRB_CMD_CONSUMER_OFFSET, CRB_CMD_CONSUMER_OFFSET_1,
  115. CRB_CMD_CONSUMER_OFFSET_2, CRB_CMD_CONSUMER_OFFSET_3
  116. };
  117. static inline void
  118. netxen_nic_update_cmd_consumer(struct netxen_adapter *adapter,
  119. u32 crb_consumer)
  120. {
  121. adapter->pci_write_normalize(adapter,
  122. adapter->crb_addr_cmd_consumer, crb_consumer);
  123. }
  124. static uint32_t msi_tgt_status[8] = {
  125. ISR_INT_TARGET_STATUS, ISR_INT_TARGET_STATUS_F1,
  126. ISR_INT_TARGET_STATUS_F2, ISR_INT_TARGET_STATUS_F3,
  127. ISR_INT_TARGET_STATUS_F4, ISR_INT_TARGET_STATUS_F5,
  128. ISR_INT_TARGET_STATUS_F6, ISR_INT_TARGET_STATUS_F7
  129. };
  130. static struct netxen_legacy_intr_set legacy_intr[] = NX_LEGACY_INTR_CONFIG;
  131. static inline void netxen_nic_disable_int(struct netxen_adapter *adapter)
  132. {
  133. adapter->pci_write_normalize(adapter, adapter->crb_intr_mask, 0);
  134. }
  135. static inline void netxen_nic_enable_int(struct netxen_adapter *adapter)
  136. {
  137. adapter->pci_write_normalize(adapter, adapter->crb_intr_mask, 0x1);
  138. if (!NETXEN_IS_MSI_FAMILY(adapter))
  139. adapter->pci_write_immediate(adapter,
  140. adapter->legacy_intr.tgt_mask_reg, 0xfbff);
  141. }
  142. static int nx_set_dma_mask(struct netxen_adapter *adapter, uint8_t revision_id)
  143. {
  144. struct pci_dev *pdev = adapter->pdev;
  145. int err;
  146. uint64_t mask;
  147. #ifdef CONFIG_IA64
  148. adapter->dma_mask = DMA_32BIT_MASK;
  149. #else
  150. if (revision_id >= NX_P3_B0) {
  151. /* should go to DMA_64BIT_MASK */
  152. adapter->dma_mask = DMA_39BIT_MASK;
  153. mask = DMA_39BIT_MASK;
  154. } else if (revision_id == NX_P3_A2) {
  155. adapter->dma_mask = DMA_39BIT_MASK;
  156. mask = DMA_39BIT_MASK;
  157. } else if (revision_id == NX_P2_C1) {
  158. adapter->dma_mask = DMA_35BIT_MASK;
  159. mask = DMA_35BIT_MASK;
  160. } else {
  161. adapter->dma_mask = DMA_32BIT_MASK;
  162. mask = DMA_32BIT_MASK;
  163. goto set_32_bit_mask;
  164. }
  165. /*
  166. * Consistent DMA mask is set to 32 bit because it cannot be set to
  167. * 35 bits. For P3 also leave it at 32 bits for now. Only the rings
  168. * come off this pool.
  169. */
  170. if (pci_set_dma_mask(pdev, mask) == 0 &&
  171. pci_set_consistent_dma_mask(pdev, DMA_32BIT_MASK) == 0) {
  172. adapter->pci_using_dac = 1;
  173. return 0;
  174. }
  175. #endif /* CONFIG_IA64 */
  176. set_32_bit_mask:
  177. err = pci_set_dma_mask(pdev, DMA_32BIT_MASK);
  178. if (!err)
  179. err = pci_set_consistent_dma_mask(pdev, DMA_32BIT_MASK);
  180. if (err) {
  181. DPRINTK(ERR, "No usable DMA configuration, aborting:%d\n", err);
  182. return err;
  183. }
  184. adapter->pci_using_dac = 0;
  185. return 0;
  186. }
  187. static void netxen_check_options(struct netxen_adapter *adapter)
  188. {
  189. switch (adapter->ahw.boardcfg.board_type) {
  190. case NETXEN_BRDTYPE_P3_HMEZ:
  191. case NETXEN_BRDTYPE_P3_XG_LOM:
  192. case NETXEN_BRDTYPE_P3_10G_CX4:
  193. case NETXEN_BRDTYPE_P3_10G_CX4_LP:
  194. case NETXEN_BRDTYPE_P3_IMEZ:
  195. case NETXEN_BRDTYPE_P3_10G_SFP_PLUS:
  196. case NETXEN_BRDTYPE_P3_10G_SFP_QT:
  197. case NETXEN_BRDTYPE_P3_10G_SFP_CT:
  198. case NETXEN_BRDTYPE_P3_10G_XFP:
  199. case NETXEN_BRDTYPE_P3_10000_BASE_T:
  200. adapter->msix_supported = !!use_msi_x;
  201. adapter->max_rx_desc_count = MAX_RCV_DESCRIPTORS_10G;
  202. break;
  203. case NETXEN_BRDTYPE_P2_SB31_10G:
  204. case NETXEN_BRDTYPE_P2_SB31_10G_CX4:
  205. case NETXEN_BRDTYPE_P2_SB31_10G_IMEZ:
  206. case NETXEN_BRDTYPE_P2_SB31_10G_HMEZ:
  207. adapter->msix_supported = 0;
  208. adapter->max_rx_desc_count = MAX_RCV_DESCRIPTORS_10G;
  209. break;
  210. case NETXEN_BRDTYPE_P3_REF_QG:
  211. case NETXEN_BRDTYPE_P3_4_GB:
  212. case NETXEN_BRDTYPE_P3_4_GB_MM:
  213. adapter->msix_supported = !!use_msi_x;
  214. adapter->max_rx_desc_count = MAX_RCV_DESCRIPTORS_1G;
  215. break;
  216. case NETXEN_BRDTYPE_P2_SB35_4G:
  217. case NETXEN_BRDTYPE_P2_SB31_2G:
  218. adapter->msix_supported = 0;
  219. adapter->max_rx_desc_count = MAX_RCV_DESCRIPTORS_1G;
  220. break;
  221. case NETXEN_BRDTYPE_P3_10G_TP:
  222. adapter->msix_supported = !!use_msi_x;
  223. if (adapter->ahw.board_type == NETXEN_NIC_XGBE)
  224. adapter->max_rx_desc_count = MAX_RCV_DESCRIPTORS_10G;
  225. else
  226. adapter->max_rx_desc_count = MAX_RCV_DESCRIPTORS_1G;
  227. break;
  228. default:
  229. adapter->msix_supported = 0;
  230. adapter->max_rx_desc_count = MAX_RCV_DESCRIPTORS_1G;
  231. printk(KERN_WARNING "Unknown board type(0x%x)\n",
  232. adapter->ahw.boardcfg.board_type);
  233. break;
  234. }
  235. adapter->max_tx_desc_count = MAX_CMD_DESCRIPTORS_HOST;
  236. adapter->max_jumbo_rx_desc_count = MAX_JUMBO_RCV_DESCRIPTORS;
  237. adapter->max_lro_rx_desc_count = MAX_LRO_RCV_DESCRIPTORS;
  238. adapter->max_possible_rss_rings = 1;
  239. return;
  240. }
  241. static int
  242. netxen_check_hw_init(struct netxen_adapter *adapter, int first_boot)
  243. {
  244. u32 val, timeout;
  245. if (first_boot == 0x55555555) {
  246. /* This is the first boot after power up */
  247. adapter->pci_write_normalize(adapter,
  248. NETXEN_CAM_RAM(0x1fc), NETXEN_BDINFO_MAGIC);
  249. if (!NX_IS_REVISION_P2(adapter->ahw.revision_id))
  250. return 0;
  251. /* PCI bus master workaround */
  252. adapter->hw_read_wx(adapter,
  253. NETXEN_PCIE_REG(0x4), &first_boot, 4);
  254. if (!(first_boot & 0x4)) {
  255. first_boot |= 0x4;
  256. adapter->hw_write_wx(adapter,
  257. NETXEN_PCIE_REG(0x4), &first_boot, 4);
  258. adapter->hw_read_wx(adapter,
  259. NETXEN_PCIE_REG(0x4), &first_boot, 4);
  260. }
  261. /* This is the first boot after power up */
  262. adapter->hw_read_wx(adapter,
  263. NETXEN_ROMUSB_GLB_SW_RESET, &first_boot, 4);
  264. if (first_boot != 0x80000f) {
  265. /* clear the register for future unloads/loads */
  266. adapter->pci_write_normalize(adapter,
  267. NETXEN_CAM_RAM(0x1fc), 0);
  268. return -EIO;
  269. }
  270. /* Start P2 boot loader */
  271. val = adapter->pci_read_normalize(adapter,
  272. NETXEN_ROMUSB_GLB_PEGTUNE_DONE);
  273. adapter->pci_write_normalize(adapter,
  274. NETXEN_ROMUSB_GLB_PEGTUNE_DONE, val | 0x1);
  275. timeout = 0;
  276. do {
  277. msleep(1);
  278. val = adapter->pci_read_normalize(adapter,
  279. NETXEN_CAM_RAM(0x1fc));
  280. if (++timeout > 5000)
  281. return -EIO;
  282. } while (val == NETXEN_BDINFO_MAGIC);
  283. }
  284. return 0;
  285. }
  286. static void netxen_set_port_mode(struct netxen_adapter *adapter)
  287. {
  288. u32 val, data;
  289. val = adapter->ahw.boardcfg.board_type;
  290. if ((val == NETXEN_BRDTYPE_P3_HMEZ) ||
  291. (val == NETXEN_BRDTYPE_P3_XG_LOM)) {
  292. if (port_mode == NETXEN_PORT_MODE_802_3_AP) {
  293. data = NETXEN_PORT_MODE_802_3_AP;
  294. adapter->hw_write_wx(adapter,
  295. NETXEN_PORT_MODE_ADDR, &data, 4);
  296. } else if (port_mode == NETXEN_PORT_MODE_XG) {
  297. data = NETXEN_PORT_MODE_XG;
  298. adapter->hw_write_wx(adapter,
  299. NETXEN_PORT_MODE_ADDR, &data, 4);
  300. } else if (port_mode == NETXEN_PORT_MODE_AUTO_NEG_1G) {
  301. data = NETXEN_PORT_MODE_AUTO_NEG_1G;
  302. adapter->hw_write_wx(adapter,
  303. NETXEN_PORT_MODE_ADDR, &data, 4);
  304. } else if (port_mode == NETXEN_PORT_MODE_AUTO_NEG_XG) {
  305. data = NETXEN_PORT_MODE_AUTO_NEG_XG;
  306. adapter->hw_write_wx(adapter,
  307. NETXEN_PORT_MODE_ADDR, &data, 4);
  308. } else {
  309. data = NETXEN_PORT_MODE_AUTO_NEG;
  310. adapter->hw_write_wx(adapter,
  311. NETXEN_PORT_MODE_ADDR, &data, 4);
  312. }
  313. if ((wol_port_mode != NETXEN_PORT_MODE_802_3_AP) &&
  314. (wol_port_mode != NETXEN_PORT_MODE_XG) &&
  315. (wol_port_mode != NETXEN_PORT_MODE_AUTO_NEG_1G) &&
  316. (wol_port_mode != NETXEN_PORT_MODE_AUTO_NEG_XG)) {
  317. wol_port_mode = NETXEN_PORT_MODE_AUTO_NEG;
  318. }
  319. adapter->hw_write_wx(adapter, NETXEN_WOL_PORT_MODE,
  320. &wol_port_mode, 4);
  321. }
  322. }
  323. #define PCI_CAP_ID_GEN 0x10
  324. static void netxen_pcie_strap_init(struct netxen_adapter *adapter)
  325. {
  326. u32 pdevfuncsave;
  327. u32 c8c9value = 0;
  328. u32 chicken = 0;
  329. u32 control = 0;
  330. int i, pos;
  331. struct pci_dev *pdev;
  332. pdev = adapter->pdev;
  333. adapter->hw_read_wx(adapter,
  334. NETXEN_PCIE_REG(PCIE_CHICKEN3), &chicken, 4);
  335. /* clear chicken3.25:24 */
  336. chicken &= 0xFCFFFFFF;
  337. /*
  338. * if gen1 and B0, set F1020 - if gen 2, do nothing
  339. * if gen2 set to F1000
  340. */
  341. pos = pci_find_capability(pdev, PCI_CAP_ID_GEN);
  342. if (pos == 0xC0) {
  343. pci_read_config_dword(pdev, pos + 0x10, &control);
  344. if ((control & 0x000F0000) != 0x00020000) {
  345. /* set chicken3.24 if gen1 */
  346. chicken |= 0x01000000;
  347. }
  348. printk(KERN_INFO "%s Gen2 strapping detected\n",
  349. netxen_nic_driver_name);
  350. c8c9value = 0xF1000;
  351. } else {
  352. /* set chicken3.24 if gen1 */
  353. chicken |= 0x01000000;
  354. printk(KERN_INFO "%s Gen1 strapping detected\n",
  355. netxen_nic_driver_name);
  356. if (adapter->ahw.revision_id == NX_P3_B0)
  357. c8c9value = 0xF1020;
  358. else
  359. c8c9value = 0;
  360. }
  361. adapter->hw_write_wx(adapter,
  362. NETXEN_PCIE_REG(PCIE_CHICKEN3), &chicken, 4);
  363. if (!c8c9value)
  364. return;
  365. pdevfuncsave = pdev->devfn;
  366. if (pdevfuncsave & 0x07)
  367. return;
  368. for (i = 0; i < 8; i++) {
  369. pci_read_config_dword(pdev, pos + 8, &control);
  370. pci_read_config_dword(pdev, pos + 8, &control);
  371. pci_write_config_dword(pdev, pos + 8, c8c9value);
  372. pdev->devfn++;
  373. }
  374. pdev->devfn = pdevfuncsave;
  375. }
  376. static void netxen_set_msix_bit(struct pci_dev *pdev, int enable)
  377. {
  378. u32 control;
  379. int pos;
  380. pos = pci_find_capability(pdev, PCI_CAP_ID_MSIX);
  381. if (pos) {
  382. pci_read_config_dword(pdev, pos, &control);
  383. if (enable)
  384. control |= PCI_MSIX_FLAGS_ENABLE;
  385. else
  386. control = 0;
  387. pci_write_config_dword(pdev, pos, control);
  388. }
  389. }
  390. static void netxen_init_msix_entries(struct netxen_adapter *adapter)
  391. {
  392. int i;
  393. for (i = 0; i < MSIX_ENTRIES_PER_ADAPTER; i++)
  394. adapter->msix_entries[i].entry = i;
  395. }
  396. static int
  397. netxen_read_mac_addr(struct netxen_adapter *adapter)
  398. {
  399. int i;
  400. unsigned char *p;
  401. __le64 mac_addr;
  402. struct net_device *netdev = adapter->netdev;
  403. struct pci_dev *pdev = adapter->pdev;
  404. if (netxen_is_flash_supported(adapter) != 0)
  405. return -EIO;
  406. if (NX_IS_REVISION_P3(adapter->ahw.revision_id)) {
  407. if (netxen_p3_get_mac_addr(adapter, &mac_addr) != 0)
  408. return -EIO;
  409. } else {
  410. if (netxen_get_flash_mac_addr(adapter, &mac_addr) != 0)
  411. return -EIO;
  412. }
  413. p = (unsigned char *)&mac_addr;
  414. for (i = 0; i < 6; i++)
  415. netdev->dev_addr[i] = *(p + 5 - i);
  416. memcpy(netdev->perm_addr, netdev->dev_addr, netdev->addr_len);
  417. /* set station address */
  418. if (!is_valid_ether_addr(netdev->perm_addr))
  419. dev_warn(&pdev->dev, "Bad MAC address %pM.\n", netdev->dev_addr);
  420. else
  421. adapter->macaddr_set(adapter, netdev->dev_addr);
  422. return 0;
  423. }
  424. static void netxen_set_multicast_list(struct net_device *dev)
  425. {
  426. struct netxen_adapter *adapter = netdev_priv(dev);
  427. if (NX_IS_REVISION_P3(adapter->ahw.revision_id))
  428. netxen_p3_nic_set_multi(dev);
  429. else
  430. netxen_p2_nic_set_multi(dev);
  431. }
  432. static const struct net_device_ops netxen_netdev_ops = {
  433. .ndo_open = netxen_nic_open,
  434. .ndo_stop = netxen_nic_close,
  435. .ndo_start_xmit = netxen_nic_xmit_frame,
  436. .ndo_get_stats = netxen_nic_get_stats,
  437. .ndo_validate_addr = eth_validate_addr,
  438. .ndo_set_multicast_list = netxen_set_multicast_list,
  439. .ndo_set_mac_address = netxen_nic_set_mac,
  440. .ndo_change_mtu = netxen_nic_change_mtu,
  441. .ndo_tx_timeout = netxen_tx_timeout,
  442. #ifdef CONFIG_NET_POLL_CONTROLLER
  443. .ndo_poll_controller = netxen_nic_poll_controller,
  444. #endif
  445. };
  446. /*
  447. * netxen_nic_probe()
  448. *
  449. * The Linux system will invoke this after identifying the vendor ID and
  450. * device Id in the pci_tbl supported by this module.
  451. *
  452. * A quad port card has one operational PCI config space, (function 0),
  453. * which is used to access all four ports.
  454. *
  455. * This routine will initialize the adapter, and setup the global parameters
  456. * along with the port's specific structure.
  457. */
  458. static int __devinit
  459. netxen_nic_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
  460. {
  461. struct net_device *netdev = NULL;
  462. struct netxen_adapter *adapter = NULL;
  463. void __iomem *mem_ptr0 = NULL;
  464. void __iomem *mem_ptr1 = NULL;
  465. void __iomem *mem_ptr2 = NULL;
  466. unsigned long first_page_group_end;
  467. unsigned long first_page_group_start;
  468. u8 __iomem *db_ptr = NULL;
  469. unsigned long mem_base, mem_len, db_base, db_len, pci_len0 = 0;
  470. int i = 0, err;
  471. int first_driver, first_boot;
  472. u32 val;
  473. int pci_func_id = PCI_FUNC(pdev->devfn);
  474. struct netxen_legacy_intr_set *legacy_intrp;
  475. uint8_t revision_id;
  476. if (pci_func_id == 0)
  477. printk(KERN_INFO "%s\n", netxen_nic_driver_string);
  478. if (pdev->class != 0x020000) {
  479. printk(KERN_DEBUG "NetXen function %d, class %x will not "
  480. "be enabled.\n",pci_func_id, pdev->class);
  481. return -ENODEV;
  482. }
  483. if (pdev->revision >= NX_P3_A0 && pdev->revision < NX_P3_B1) {
  484. printk(KERN_WARNING "NetXen chip revisions between 0x%x-0x%x"
  485. "will not be enabled.\n",
  486. NX_P3_A0, NX_P3_B1);
  487. return -ENODEV;
  488. }
  489. if ((err = pci_enable_device(pdev)))
  490. return err;
  491. if (!(pci_resource_flags(pdev, 0) & IORESOURCE_MEM)) {
  492. err = -ENODEV;
  493. goto err_out_disable_pdev;
  494. }
  495. if ((err = pci_request_regions(pdev, netxen_nic_driver_name)))
  496. goto err_out_disable_pdev;
  497. pci_set_master(pdev);
  498. netdev = alloc_etherdev(sizeof(struct netxen_adapter));
  499. if(!netdev) {
  500. printk(KERN_ERR"%s: Failed to allocate memory for the "
  501. "device block.Check system memory resource"
  502. " usage.\n", netxen_nic_driver_name);
  503. goto err_out_free_res;
  504. }
  505. SET_NETDEV_DEV(netdev, &pdev->dev);
  506. adapter = netdev_priv(netdev);
  507. adapter->netdev = netdev;
  508. adapter->pdev = pdev;
  509. adapter->ahw.pci_func = pci_func_id;
  510. revision_id = pdev->revision;
  511. adapter->ahw.revision_id = revision_id;
  512. err = nx_set_dma_mask(adapter, revision_id);
  513. if (err)
  514. goto err_out_free_netdev;
  515. rwlock_init(&adapter->adapter_lock);
  516. adapter->ahw.qdr_sn_window = -1;
  517. adapter->ahw.ddr_mn_window = -1;
  518. /* remap phys address */
  519. mem_base = pci_resource_start(pdev, 0); /* 0 is for BAR 0 */
  520. mem_len = pci_resource_len(pdev, 0);
  521. pci_len0 = 0;
  522. adapter->hw_write_wx = netxen_nic_hw_write_wx_128M;
  523. adapter->hw_read_wx = netxen_nic_hw_read_wx_128M;
  524. adapter->pci_read_immediate = netxen_nic_pci_read_immediate_128M;
  525. adapter->pci_write_immediate = netxen_nic_pci_write_immediate_128M;
  526. adapter->pci_read_normalize = netxen_nic_pci_read_normalize_128M;
  527. adapter->pci_write_normalize = netxen_nic_pci_write_normalize_128M;
  528. adapter->pci_set_window = netxen_nic_pci_set_window_128M;
  529. adapter->pci_mem_read = netxen_nic_pci_mem_read_128M;
  530. adapter->pci_mem_write = netxen_nic_pci_mem_write_128M;
  531. /* 128 Meg of memory */
  532. if (mem_len == NETXEN_PCI_128MB_SIZE) {
  533. mem_ptr0 = ioremap(mem_base, FIRST_PAGE_GROUP_SIZE);
  534. mem_ptr1 = ioremap(mem_base + SECOND_PAGE_GROUP_START,
  535. SECOND_PAGE_GROUP_SIZE);
  536. mem_ptr2 = ioremap(mem_base + THIRD_PAGE_GROUP_START,
  537. THIRD_PAGE_GROUP_SIZE);
  538. first_page_group_start = FIRST_PAGE_GROUP_START;
  539. first_page_group_end = FIRST_PAGE_GROUP_END;
  540. } else if (mem_len == NETXEN_PCI_32MB_SIZE) {
  541. mem_ptr1 = ioremap(mem_base, SECOND_PAGE_GROUP_SIZE);
  542. mem_ptr2 = ioremap(mem_base + THIRD_PAGE_GROUP_START -
  543. SECOND_PAGE_GROUP_START, THIRD_PAGE_GROUP_SIZE);
  544. first_page_group_start = 0;
  545. first_page_group_end = 0;
  546. } else if (mem_len == NETXEN_PCI_2MB_SIZE) {
  547. adapter->hw_write_wx = netxen_nic_hw_write_wx_2M;
  548. adapter->hw_read_wx = netxen_nic_hw_read_wx_2M;
  549. adapter->pci_read_immediate = netxen_nic_pci_read_immediate_2M;
  550. adapter->pci_write_immediate =
  551. netxen_nic_pci_write_immediate_2M;
  552. adapter->pci_read_normalize = netxen_nic_pci_read_normalize_2M;
  553. adapter->pci_write_normalize =
  554. netxen_nic_pci_write_normalize_2M;
  555. adapter->pci_set_window = netxen_nic_pci_set_window_2M;
  556. adapter->pci_mem_read = netxen_nic_pci_mem_read_2M;
  557. adapter->pci_mem_write = netxen_nic_pci_mem_write_2M;
  558. mem_ptr0 = ioremap(mem_base, mem_len);
  559. pci_len0 = mem_len;
  560. first_page_group_start = 0;
  561. first_page_group_end = 0;
  562. adapter->ahw.ddr_mn_window = 0;
  563. adapter->ahw.qdr_sn_window = 0;
  564. adapter->ahw.mn_win_crb = 0x100000 + PCIX_MN_WINDOW +
  565. (pci_func_id * 0x20);
  566. adapter->ahw.ms_win_crb = 0x100000 + PCIX_SN_WINDOW;
  567. if (pci_func_id < 4)
  568. adapter->ahw.ms_win_crb += (pci_func_id * 0x20);
  569. else
  570. adapter->ahw.ms_win_crb +=
  571. 0xA0 + ((pci_func_id - 4) * 0x10);
  572. } else {
  573. err = -EIO;
  574. goto err_out_free_netdev;
  575. }
  576. dev_info(&pdev->dev, "%dMB memory map\n", (int)(mem_len>>20));
  577. db_base = pci_resource_start(pdev, 4); /* doorbell is on bar 4 */
  578. db_len = pci_resource_len(pdev, 4);
  579. if (db_len == 0) {
  580. printk(KERN_ERR "%s: doorbell is disabled\n",
  581. netxen_nic_driver_name);
  582. err = -EIO;
  583. goto err_out_iounmap;
  584. }
  585. DPRINTK(INFO, "doorbell ioremap from %lx a size of %lx\n", db_base,
  586. db_len);
  587. db_ptr = ioremap(db_base, NETXEN_DB_MAPSIZE_BYTES);
  588. if (!db_ptr) {
  589. printk(KERN_ERR "%s: Failed to allocate doorbell map.",
  590. netxen_nic_driver_name);
  591. err = -EIO;
  592. goto err_out_iounmap;
  593. }
  594. DPRINTK(INFO, "doorbell ioremaped at %p\n", db_ptr);
  595. adapter->ahw.pci_base0 = mem_ptr0;
  596. adapter->ahw.pci_len0 = pci_len0;
  597. adapter->ahw.first_page_group_start = first_page_group_start;
  598. adapter->ahw.first_page_group_end = first_page_group_end;
  599. adapter->ahw.pci_base1 = mem_ptr1;
  600. adapter->ahw.pci_base2 = mem_ptr2;
  601. adapter->ahw.db_base = db_ptr;
  602. adapter->ahw.db_len = db_len;
  603. netif_napi_add(netdev, &adapter->napi,
  604. netxen_nic_poll, NETXEN_NETDEV_WEIGHT);
  605. if (revision_id >= NX_P3_B0)
  606. legacy_intrp = &legacy_intr[pci_func_id];
  607. else
  608. legacy_intrp = &legacy_intr[0];
  609. adapter->legacy_intr.int_vec_bit = legacy_intrp->int_vec_bit;
  610. adapter->legacy_intr.tgt_status_reg = legacy_intrp->tgt_status_reg;
  611. adapter->legacy_intr.tgt_mask_reg = legacy_intrp->tgt_mask_reg;
  612. adapter->legacy_intr.pci_int_reg = legacy_intrp->pci_int_reg;
  613. /* this will be read from FW later */
  614. adapter->intr_scheme = -1;
  615. adapter->msi_mode = -1;
  616. /* This will be reset for mezz cards */
  617. adapter->portnum = pci_func_id;
  618. adapter->status &= ~NETXEN_NETDEV_STATUS;
  619. adapter->rx_csum = 1;
  620. adapter->mc_enabled = 0;
  621. if (NX_IS_REVISION_P3(revision_id))
  622. adapter->max_mc_count = 38;
  623. else
  624. adapter->max_mc_count = 16;
  625. netdev->netdev_ops = &netxen_netdev_ops;
  626. netdev->watchdog_timeo = 2*HZ;
  627. netxen_nic_change_mtu(netdev, netdev->mtu);
  628. SET_ETHTOOL_OPS(netdev, &netxen_nic_ethtool_ops);
  629. netdev->features |= (NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_TSO);
  630. netdev->vlan_features |= (NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_TSO);
  631. if (NX_IS_REVISION_P3(revision_id)) {
  632. netdev->features |= (NETIF_F_IPV6_CSUM | NETIF_F_TSO6);
  633. netdev->vlan_features |= (NETIF_F_IPV6_CSUM | NETIF_F_TSO6);
  634. }
  635. if (adapter->pci_using_dac) {
  636. netdev->features |= NETIF_F_HIGHDMA;
  637. netdev->vlan_features |= NETIF_F_HIGHDMA;
  638. }
  639. /*
  640. * Set the CRB window to invalid. If any register in window 0 is
  641. * accessed it should set the window to 0 and then reset it to 1.
  642. */
  643. adapter->curr_window = 255;
  644. if (netxen_nic_get_board_info(adapter) != 0) {
  645. printk("%s: Error getting board config info.\n",
  646. netxen_nic_driver_name);
  647. err = -EIO;
  648. goto err_out_iounmap;
  649. }
  650. netxen_initialize_adapter_ops(adapter);
  651. /* Mezz cards have PCI function 0,2,3 enabled */
  652. switch (adapter->ahw.boardcfg.board_type) {
  653. case NETXEN_BRDTYPE_P2_SB31_10G_IMEZ:
  654. case NETXEN_BRDTYPE_P2_SB31_10G_HMEZ:
  655. if (pci_func_id >= 2)
  656. adapter->portnum = pci_func_id - 2;
  657. break;
  658. default:
  659. break;
  660. }
  661. /*
  662. * This call will setup various max rx/tx counts.
  663. * It must be done before any buffer/ring allocations.
  664. */
  665. netxen_check_options(adapter);
  666. first_driver = 0;
  667. if (NX_IS_REVISION_P3(revision_id)) {
  668. if (adapter->ahw.pci_func == 0)
  669. first_driver = 1;
  670. } else {
  671. if (adapter->portnum == 0)
  672. first_driver = 1;
  673. }
  674. if (first_driver) {
  675. first_boot = adapter->pci_read_normalize(adapter,
  676. NETXEN_CAM_RAM(0x1fc));
  677. err = netxen_check_hw_init(adapter, first_boot);
  678. if (err) {
  679. printk(KERN_ERR "%s: error in init HW init sequence\n",
  680. netxen_nic_driver_name);
  681. goto err_out_iounmap;
  682. }
  683. if (NX_IS_REVISION_P3(revision_id))
  684. netxen_set_port_mode(adapter);
  685. if (first_boot != 0x55555555) {
  686. adapter->pci_write_normalize(adapter,
  687. CRB_CMDPEG_STATE, 0);
  688. netxen_pinit_from_rom(adapter, 0);
  689. msleep(1);
  690. }
  691. netxen_load_firmware(adapter);
  692. if (NX_IS_REVISION_P3(revision_id))
  693. netxen_pcie_strap_init(adapter);
  694. if (NX_IS_REVISION_P2(revision_id)) {
  695. /* Initialize multicast addr pool owners */
  696. val = 0x7654;
  697. if (adapter->ahw.board_type == NETXEN_NIC_XGBE)
  698. val |= 0x0f000000;
  699. netxen_crb_writelit_adapter(adapter,
  700. NETXEN_MAC_ADDR_CNTL_REG, val);
  701. }
  702. err = netxen_initialize_adapter_offload(adapter);
  703. if (err)
  704. goto err_out_iounmap;
  705. /*
  706. * Tell the hardware our version number.
  707. */
  708. i = (_NETXEN_NIC_LINUX_MAJOR << 16)
  709. | ((_NETXEN_NIC_LINUX_MINOR << 8))
  710. | (_NETXEN_NIC_LINUX_SUBVERSION);
  711. adapter->pci_write_normalize(adapter, CRB_DRIVER_VERSION, i);
  712. /* Handshake with the card before we register the devices. */
  713. err = netxen_phantom_init(adapter, NETXEN_NIC_PEG_TUNE);
  714. if (err)
  715. goto err_out_free_offload;
  716. } /* first_driver */
  717. netxen_nic_flash_print(adapter);
  718. if (NX_IS_REVISION_P3(revision_id)) {
  719. adapter->hw_read_wx(adapter,
  720. NETXEN_MIU_MN_CONTROL, &val, 4);
  721. adapter->ahw.cut_through = (val & 0x4) ? 1 : 0;
  722. dev_info(&pdev->dev, "firmware running in %s mode\n",
  723. adapter->ahw.cut_through ? "cut through" : "legacy");
  724. }
  725. /*
  726. * See if the firmware gave us a virtual-physical port mapping.
  727. */
  728. adapter->physical_port = adapter->portnum;
  729. i = adapter->pci_read_normalize(adapter, CRB_V2P(adapter->portnum));
  730. if (i != 0x55555555)
  731. adapter->physical_port = i;
  732. adapter->flags &= ~(NETXEN_NIC_MSI_ENABLED | NETXEN_NIC_MSIX_ENABLED);
  733. netxen_set_msix_bit(pdev, 0);
  734. if (NX_IS_REVISION_P3(revision_id)) {
  735. if ((mem_len != NETXEN_PCI_128MB_SIZE) &&
  736. mem_len != NETXEN_PCI_2MB_SIZE)
  737. adapter->msix_supported = 0;
  738. }
  739. if (adapter->msix_supported) {
  740. netxen_init_msix_entries(adapter);
  741. if (pci_enable_msix(pdev, adapter->msix_entries,
  742. MSIX_ENTRIES_PER_ADAPTER))
  743. goto request_msi;
  744. adapter->flags |= NETXEN_NIC_MSIX_ENABLED;
  745. netxen_set_msix_bit(pdev, 1);
  746. dev_info(&pdev->dev, "using msi-x interrupts\n");
  747. } else {
  748. request_msi:
  749. if (use_msi && !pci_enable_msi(pdev)) {
  750. adapter->flags |= NETXEN_NIC_MSI_ENABLED;
  751. dev_info(&pdev->dev, "using msi interrupts\n");
  752. } else
  753. dev_info(&pdev->dev, "using legacy interrupts\n");
  754. }
  755. if (adapter->flags & NETXEN_NIC_MSIX_ENABLED)
  756. netdev->irq = adapter->msix_entries[0].vector;
  757. else
  758. netdev->irq = pdev->irq;
  759. err = netxen_receive_peg_ready(adapter);
  760. if (err)
  761. goto err_out_disable_msi;
  762. init_timer(&adapter->watchdog_timer);
  763. adapter->watchdog_timer.function = &netxen_watchdog;
  764. adapter->watchdog_timer.data = (unsigned long)adapter;
  765. INIT_WORK(&adapter->watchdog_task, netxen_watchdog_task);
  766. INIT_WORK(&adapter->tx_timeout_task, netxen_tx_timeout_task);
  767. err = netxen_read_mac_addr(adapter);
  768. if (err)
  769. dev_warn(&pdev->dev, "failed to read mac addr\n");
  770. netif_carrier_off(netdev);
  771. netif_stop_queue(netdev);
  772. if ((err = register_netdev(netdev))) {
  773. printk(KERN_ERR "%s: register_netdev failed port #%d"
  774. " aborting\n", netxen_nic_driver_name,
  775. adapter->portnum);
  776. err = -EIO;
  777. goto err_out_disable_msi;
  778. }
  779. pci_set_drvdata(pdev, adapter);
  780. switch (adapter->ahw.board_type) {
  781. case NETXEN_NIC_GBE:
  782. dev_info(&adapter->pdev->dev, "%s: GbE port initialized\n",
  783. adapter->netdev->name);
  784. break;
  785. case NETXEN_NIC_XGBE:
  786. dev_info(&adapter->pdev->dev, "%s: XGbE port initialized\n",
  787. adapter->netdev->name);
  788. break;
  789. }
  790. return 0;
  791. err_out_disable_msi:
  792. if (adapter->flags & NETXEN_NIC_MSIX_ENABLED)
  793. pci_disable_msix(pdev);
  794. if (adapter->flags & NETXEN_NIC_MSI_ENABLED)
  795. pci_disable_msi(pdev);
  796. err_out_free_offload:
  797. if (first_driver)
  798. netxen_free_adapter_offload(adapter);
  799. err_out_iounmap:
  800. if (db_ptr)
  801. iounmap(db_ptr);
  802. if (mem_ptr0)
  803. iounmap(mem_ptr0);
  804. if (mem_ptr1)
  805. iounmap(mem_ptr1);
  806. if (mem_ptr2)
  807. iounmap(mem_ptr2);
  808. err_out_free_netdev:
  809. free_netdev(netdev);
  810. err_out_free_res:
  811. pci_release_regions(pdev);
  812. err_out_disable_pdev:
  813. pci_set_drvdata(pdev, NULL);
  814. pci_disable_device(pdev);
  815. return err;
  816. }
  817. static void __devexit netxen_nic_remove(struct pci_dev *pdev)
  818. {
  819. struct netxen_adapter *adapter;
  820. struct net_device *netdev;
  821. adapter = pci_get_drvdata(pdev);
  822. if (adapter == NULL)
  823. return;
  824. netdev = adapter->netdev;
  825. unregister_netdev(netdev);
  826. if (adapter->is_up == NETXEN_ADAPTER_UP_MAGIC) {
  827. netxen_free_hw_resources(adapter);
  828. netxen_release_rx_buffers(adapter);
  829. netxen_free_sw_resources(adapter);
  830. if (NX_IS_REVISION_P3(adapter->ahw.revision_id))
  831. netxen_p3_free_mac_list(adapter);
  832. }
  833. if (adapter->portnum == 0)
  834. netxen_free_adapter_offload(adapter);
  835. if (adapter->irq)
  836. free_irq(adapter->irq, adapter);
  837. if (adapter->flags & NETXEN_NIC_MSIX_ENABLED)
  838. pci_disable_msix(pdev);
  839. if (adapter->flags & NETXEN_NIC_MSI_ENABLED)
  840. pci_disable_msi(pdev);
  841. iounmap(adapter->ahw.db_base);
  842. iounmap(adapter->ahw.pci_base0);
  843. if (adapter->ahw.pci_base1 != NULL)
  844. iounmap(adapter->ahw.pci_base1);
  845. if (adapter->ahw.pci_base2 != NULL)
  846. iounmap(adapter->ahw.pci_base2);
  847. pci_release_regions(pdev);
  848. pci_disable_device(pdev);
  849. pci_set_drvdata(pdev, NULL);
  850. free_netdev(netdev);
  851. }
  852. /*
  853. * Called when a network interface is made active
  854. * @returns 0 on success, negative value on failure
  855. */
  856. static int netxen_nic_open(struct net_device *netdev)
  857. {
  858. struct netxen_adapter *adapter = netdev_priv(netdev);
  859. int err = 0;
  860. int ctx, ring;
  861. irq_handler_t handler;
  862. unsigned long flags = IRQF_SAMPLE_RANDOM;
  863. if (adapter->driver_mismatch)
  864. return -EIO;
  865. if (adapter->is_up != NETXEN_ADAPTER_UP_MAGIC) {
  866. err = netxen_init_firmware(adapter);
  867. if (err != 0) {
  868. printk(KERN_ERR "Failed to init firmware\n");
  869. return -EIO;
  870. }
  871. if (adapter->fw_major < 4)
  872. adapter->max_rds_rings = 3;
  873. else
  874. adapter->max_rds_rings = 2;
  875. err = netxen_alloc_sw_resources(adapter);
  876. if (err) {
  877. printk(KERN_ERR "%s: Error in setting sw resources\n",
  878. netdev->name);
  879. return err;
  880. }
  881. netxen_nic_clear_stats(adapter);
  882. err = netxen_alloc_hw_resources(adapter);
  883. if (err) {
  884. printk(KERN_ERR "%s: Error in setting hw resources\n",
  885. netdev->name);
  886. goto err_out_free_sw;
  887. }
  888. if ((adapter->msi_mode != MSI_MODE_MULTIFUNC) ||
  889. (adapter->intr_scheme != INTR_SCHEME_PERPORT)) {
  890. printk(KERN_ERR "%s: Firmware interrupt scheme is "
  891. "incompatible with driver\n",
  892. netdev->name);
  893. adapter->driver_mismatch = 1;
  894. goto err_out_free_hw;
  895. }
  896. if (adapter->fw_major < 4) {
  897. adapter->crb_addr_cmd_producer =
  898. crb_cmd_producer[adapter->portnum];
  899. adapter->crb_addr_cmd_consumer =
  900. crb_cmd_consumer[adapter->portnum];
  901. netxen_nic_update_cmd_producer(adapter, 0);
  902. netxen_nic_update_cmd_consumer(adapter, 0);
  903. }
  904. for (ctx = 0; ctx < MAX_RCV_CTX; ++ctx) {
  905. for (ring = 0; ring < adapter->max_rds_rings; ring++)
  906. netxen_post_rx_buffers(adapter, ctx, ring);
  907. }
  908. if (NETXEN_IS_MSI_FAMILY(adapter))
  909. handler = netxen_msi_intr;
  910. else {
  911. flags |= IRQF_SHARED;
  912. handler = netxen_intr;
  913. }
  914. adapter->irq = netdev->irq;
  915. err = request_irq(adapter->irq, handler,
  916. flags, netdev->name, adapter);
  917. if (err) {
  918. printk(KERN_ERR "request_irq failed with: %d\n", err);
  919. goto err_out_free_rxbuf;
  920. }
  921. adapter->is_up = NETXEN_ADAPTER_UP_MAGIC;
  922. }
  923. /* Done here again so that even if phantom sw overwrote it,
  924. * we set it */
  925. err = adapter->init_port(adapter, adapter->physical_port);
  926. if (err) {
  927. printk(KERN_ERR "%s: Failed to initialize port %d\n",
  928. netxen_nic_driver_name, adapter->portnum);
  929. goto err_out_free_irq;
  930. }
  931. adapter->macaddr_set(adapter, netdev->dev_addr);
  932. netxen_nic_set_link_parameters(adapter);
  933. netxen_set_multicast_list(netdev);
  934. if (adapter->set_mtu)
  935. adapter->set_mtu(adapter, netdev->mtu);
  936. adapter->ahw.linkup = 0;
  937. mod_timer(&adapter->watchdog_timer, jiffies);
  938. napi_enable(&adapter->napi);
  939. netxen_nic_enable_int(adapter);
  940. netif_start_queue(netdev);
  941. return 0;
  942. err_out_free_irq:
  943. free_irq(adapter->irq, adapter);
  944. err_out_free_rxbuf:
  945. netxen_release_rx_buffers(adapter);
  946. err_out_free_hw:
  947. netxen_free_hw_resources(adapter);
  948. err_out_free_sw:
  949. netxen_free_sw_resources(adapter);
  950. return err;
  951. }
  952. /*
  953. * netxen_nic_close - Disables a network interface entry point
  954. */
  955. static int netxen_nic_close(struct net_device *netdev)
  956. {
  957. struct netxen_adapter *adapter = netdev_priv(netdev);
  958. netif_carrier_off(netdev);
  959. netif_stop_queue(netdev);
  960. napi_disable(&adapter->napi);
  961. if (adapter->stop_port)
  962. adapter->stop_port(adapter);
  963. netxen_nic_disable_int(adapter);
  964. netxen_release_tx_buffers(adapter);
  965. FLUSH_SCHEDULED_WORK();
  966. del_timer_sync(&adapter->watchdog_timer);
  967. return 0;
  968. }
  969. static bool netxen_tso_check(struct net_device *netdev,
  970. struct cmd_desc_type0 *desc, struct sk_buff *skb)
  971. {
  972. bool tso = false;
  973. u8 opcode = TX_ETHER_PKT;
  974. __be16 protocol = skb->protocol;
  975. u16 flags = 0;
  976. if (protocol == __constant_htons(ETH_P_8021Q)) {
  977. struct vlan_ethhdr *vh = (struct vlan_ethhdr *)skb->data;
  978. protocol = vh->h_vlan_encapsulated_proto;
  979. flags = FLAGS_VLAN_TAGGED;
  980. }
  981. if ((netdev->features & (NETIF_F_TSO | NETIF_F_TSO6)) &&
  982. skb_shinfo(skb)->gso_size > 0) {
  983. desc->mss = cpu_to_le16(skb_shinfo(skb)->gso_size);
  984. desc->total_hdr_length =
  985. skb_transport_offset(skb) + tcp_hdrlen(skb);
  986. opcode = (protocol == __constant_htons(ETH_P_IPV6)) ?
  987. TX_TCP_LSO6 : TX_TCP_LSO;
  988. tso = true;
  989. } else if (skb->ip_summed == CHECKSUM_PARTIAL) {
  990. u8 l4proto;
  991. if (protocol == __constant_htons(ETH_P_IP)) {
  992. l4proto = ip_hdr(skb)->protocol;
  993. if (l4proto == IPPROTO_TCP)
  994. opcode = TX_TCP_PKT;
  995. else if(l4proto == IPPROTO_UDP)
  996. opcode = TX_UDP_PKT;
  997. } else if (protocol == __constant_htons(ETH_P_IPV6)) {
  998. l4proto = ipv6_hdr(skb)->nexthdr;
  999. if (l4proto == IPPROTO_TCP)
  1000. opcode = TX_TCPV6_PKT;
  1001. else if(l4proto == IPPROTO_UDP)
  1002. opcode = TX_UDPV6_PKT;
  1003. }
  1004. }
  1005. desc->tcp_hdr_offset = skb_transport_offset(skb);
  1006. desc->ip_hdr_offset = skb_network_offset(skb);
  1007. netxen_set_tx_flags_opcode(desc, flags, opcode);
  1008. return tso;
  1009. }
  1010. static void
  1011. netxen_clean_tx_dma_mapping(struct pci_dev *pdev,
  1012. struct netxen_cmd_buffer *pbuf, int last)
  1013. {
  1014. int k;
  1015. struct netxen_skb_frag *buffrag;
  1016. buffrag = &pbuf->frag_array[0];
  1017. pci_unmap_single(pdev, buffrag->dma,
  1018. buffrag->length, PCI_DMA_TODEVICE);
  1019. for (k = 1; k < last; k++) {
  1020. buffrag = &pbuf->frag_array[k];
  1021. pci_unmap_page(pdev, buffrag->dma,
  1022. buffrag->length, PCI_DMA_TODEVICE);
  1023. }
  1024. }
  1025. static int netxen_nic_xmit_frame(struct sk_buff *skb, struct net_device *netdev)
  1026. {
  1027. struct netxen_adapter *adapter = netdev_priv(netdev);
  1028. struct netxen_hardware_context *hw = &adapter->ahw;
  1029. unsigned int first_seg_len = skb->len - skb->data_len;
  1030. struct netxen_cmd_buffer *pbuf;
  1031. struct netxen_skb_frag *buffrag;
  1032. struct cmd_desc_type0 *hwdesc;
  1033. struct pci_dev *pdev = adapter->pdev;
  1034. dma_addr_t temp_dma;
  1035. int i, k;
  1036. u32 producer, consumer;
  1037. int frag_count, no_of_desc;
  1038. u32 num_txd = adapter->max_tx_desc_count;
  1039. bool is_tso = false;
  1040. frag_count = skb_shinfo(skb)->nr_frags + 1;
  1041. /* There 4 fragments per descriptor */
  1042. no_of_desc = (frag_count + 3) >> 2;
  1043. producer = adapter->cmd_producer;
  1044. smp_mb();
  1045. consumer = adapter->last_cmd_consumer;
  1046. if ((no_of_desc+2) > find_diff_among(producer, consumer, num_txd)) {
  1047. netif_stop_queue(netdev);
  1048. smp_mb();
  1049. return NETDEV_TX_BUSY;
  1050. }
  1051. /* Copy the descriptors into the hardware */
  1052. hwdesc = &hw->cmd_desc_head[producer];
  1053. memset(hwdesc, 0, sizeof(struct cmd_desc_type0));
  1054. /* Take skb->data itself */
  1055. pbuf = &adapter->cmd_buf_arr[producer];
  1056. is_tso = netxen_tso_check(netdev, hwdesc, skb);
  1057. pbuf->skb = skb;
  1058. pbuf->frag_count = frag_count;
  1059. buffrag = &pbuf->frag_array[0];
  1060. temp_dma = pci_map_single(pdev, skb->data, first_seg_len,
  1061. PCI_DMA_TODEVICE);
  1062. if (pci_dma_mapping_error(pdev, temp_dma))
  1063. goto drop_packet;
  1064. buffrag->dma = temp_dma;
  1065. buffrag->length = first_seg_len;
  1066. netxen_set_tx_frags_len(hwdesc, frag_count, skb->len);
  1067. netxen_set_tx_port(hwdesc, adapter->portnum);
  1068. hwdesc->buffer1_length = cpu_to_le16(first_seg_len);
  1069. hwdesc->addr_buffer1 = cpu_to_le64(buffrag->dma);
  1070. for (i = 1, k = 1; i < frag_count; i++, k++) {
  1071. struct skb_frag_struct *frag;
  1072. int len, temp_len;
  1073. unsigned long offset;
  1074. /* move to next desc. if there is a need */
  1075. if ((i & 0x3) == 0) {
  1076. k = 0;
  1077. producer = get_next_index(producer, num_txd);
  1078. hwdesc = &hw->cmd_desc_head[producer];
  1079. memset(hwdesc, 0, sizeof(struct cmd_desc_type0));
  1080. pbuf = &adapter->cmd_buf_arr[producer];
  1081. pbuf->skb = NULL;
  1082. }
  1083. frag = &skb_shinfo(skb)->frags[i - 1];
  1084. len = frag->size;
  1085. offset = frag->page_offset;
  1086. temp_len = len;
  1087. temp_dma = pci_map_page(pdev, frag->page, offset,
  1088. len, PCI_DMA_TODEVICE);
  1089. if (pci_dma_mapping_error(pdev, temp_dma)) {
  1090. netxen_clean_tx_dma_mapping(pdev, pbuf, i);
  1091. goto drop_packet;
  1092. }
  1093. buffrag++;
  1094. buffrag->dma = temp_dma;
  1095. buffrag->length = temp_len;
  1096. switch (k) {
  1097. case 0:
  1098. hwdesc->buffer1_length = cpu_to_le16(temp_len);
  1099. hwdesc->addr_buffer1 = cpu_to_le64(temp_dma);
  1100. break;
  1101. case 1:
  1102. hwdesc->buffer2_length = cpu_to_le16(temp_len);
  1103. hwdesc->addr_buffer2 = cpu_to_le64(temp_dma);
  1104. break;
  1105. case 2:
  1106. hwdesc->buffer3_length = cpu_to_le16(temp_len);
  1107. hwdesc->addr_buffer3 = cpu_to_le64(temp_dma);
  1108. break;
  1109. case 3:
  1110. hwdesc->buffer4_length = cpu_to_le16(temp_len);
  1111. hwdesc->addr_buffer4 = cpu_to_le64(temp_dma);
  1112. break;
  1113. }
  1114. frag++;
  1115. }
  1116. producer = get_next_index(producer, num_txd);
  1117. /* For LSO, we need to copy the MAC/IP/TCP headers into
  1118. * the descriptor ring
  1119. */
  1120. if (is_tso) {
  1121. int hdr_len, first_hdr_len, more_hdr;
  1122. hdr_len = skb_transport_offset(skb) + tcp_hdrlen(skb);
  1123. if (hdr_len > (sizeof(struct cmd_desc_type0) - 2)) {
  1124. first_hdr_len = sizeof(struct cmd_desc_type0) - 2;
  1125. more_hdr = 1;
  1126. } else {
  1127. first_hdr_len = hdr_len;
  1128. more_hdr = 0;
  1129. }
  1130. /* copy the MAC/IP/TCP headers to the cmd descriptor list */
  1131. hwdesc = &hw->cmd_desc_head[producer];
  1132. pbuf = &adapter->cmd_buf_arr[producer];
  1133. pbuf->skb = NULL;
  1134. /* copy the first 64 bytes */
  1135. memcpy(((void *)hwdesc) + 2,
  1136. (void *)(skb->data), first_hdr_len);
  1137. producer = get_next_index(producer, num_txd);
  1138. if (more_hdr) {
  1139. hwdesc = &hw->cmd_desc_head[producer];
  1140. pbuf = &adapter->cmd_buf_arr[producer];
  1141. pbuf->skb = NULL;
  1142. /* copy the next 64 bytes - should be enough except
  1143. * for pathological case
  1144. */
  1145. skb_copy_from_linear_data_offset(skb, first_hdr_len,
  1146. hwdesc,
  1147. (hdr_len -
  1148. first_hdr_len));
  1149. producer = get_next_index(producer, num_txd);
  1150. }
  1151. }
  1152. adapter->cmd_producer = producer;
  1153. adapter->stats.txbytes += skb->len;
  1154. netxen_nic_update_cmd_producer(adapter, adapter->cmd_producer);
  1155. adapter->stats.xmitcalled++;
  1156. netdev->trans_start = jiffies;
  1157. return NETDEV_TX_OK;
  1158. drop_packet:
  1159. adapter->stats.txdropped++;
  1160. dev_kfree_skb_any(skb);
  1161. return NETDEV_TX_OK;
  1162. }
  1163. static int netxen_nic_check_temp(struct netxen_adapter *adapter)
  1164. {
  1165. struct net_device *netdev = adapter->netdev;
  1166. uint32_t temp, temp_state, temp_val;
  1167. int rv = 0;
  1168. temp = adapter->pci_read_normalize(adapter, CRB_TEMP_STATE);
  1169. temp_state = nx_get_temp_state(temp);
  1170. temp_val = nx_get_temp_val(temp);
  1171. if (temp_state == NX_TEMP_PANIC) {
  1172. printk(KERN_ALERT
  1173. "%s: Device temperature %d degrees C exceeds"
  1174. " maximum allowed. Hardware has been shut down.\n",
  1175. netxen_nic_driver_name, temp_val);
  1176. netif_carrier_off(netdev);
  1177. netif_stop_queue(netdev);
  1178. rv = 1;
  1179. } else if (temp_state == NX_TEMP_WARN) {
  1180. if (adapter->temp == NX_TEMP_NORMAL) {
  1181. printk(KERN_ALERT
  1182. "%s: Device temperature %d degrees C "
  1183. "exceeds operating range."
  1184. " Immediate action needed.\n",
  1185. netxen_nic_driver_name, temp_val);
  1186. }
  1187. } else {
  1188. if (adapter->temp == NX_TEMP_WARN) {
  1189. printk(KERN_INFO
  1190. "%s: Device temperature is now %d degrees C"
  1191. " in normal range.\n", netxen_nic_driver_name,
  1192. temp_val);
  1193. }
  1194. }
  1195. adapter->temp = temp_state;
  1196. return rv;
  1197. }
  1198. static void netxen_nic_handle_phy_intr(struct netxen_adapter *adapter)
  1199. {
  1200. struct net_device *netdev = adapter->netdev;
  1201. u32 val, port, linkup;
  1202. port = adapter->physical_port;
  1203. if (NX_IS_REVISION_P3(adapter->ahw.revision_id)) {
  1204. val = adapter->pci_read_normalize(adapter, CRB_XG_STATE_P3);
  1205. val = XG_LINK_STATE_P3(adapter->ahw.pci_func, val);
  1206. linkup = (val == XG_LINK_UP_P3);
  1207. } else {
  1208. val = adapter->pci_read_normalize(adapter, CRB_XG_STATE);
  1209. if (adapter->ahw.board_type == NETXEN_NIC_GBE)
  1210. linkup = (val >> port) & 1;
  1211. else {
  1212. val = (val >> port*8) & 0xff;
  1213. linkup = (val == XG_LINK_UP);
  1214. }
  1215. }
  1216. if (adapter->ahw.linkup && !linkup) {
  1217. printk(KERN_INFO "%s: %s NIC Link is down\n",
  1218. netxen_nic_driver_name, netdev->name);
  1219. adapter->ahw.linkup = 0;
  1220. if (netif_running(netdev)) {
  1221. netif_carrier_off(netdev);
  1222. netif_stop_queue(netdev);
  1223. }
  1224. netxen_nic_set_link_parameters(adapter);
  1225. } else if (!adapter->ahw.linkup && linkup) {
  1226. printk(KERN_INFO "%s: %s NIC Link is up\n",
  1227. netxen_nic_driver_name, netdev->name);
  1228. adapter->ahw.linkup = 1;
  1229. if (netif_running(netdev)) {
  1230. netif_carrier_on(netdev);
  1231. netif_wake_queue(netdev);
  1232. }
  1233. netxen_nic_set_link_parameters(adapter);
  1234. }
  1235. }
  1236. static void netxen_watchdog(unsigned long v)
  1237. {
  1238. struct netxen_adapter *adapter = (struct netxen_adapter *)v;
  1239. SCHEDULE_WORK(&adapter->watchdog_task);
  1240. }
  1241. void netxen_watchdog_task(struct work_struct *work)
  1242. {
  1243. struct netxen_adapter *adapter =
  1244. container_of(work, struct netxen_adapter, watchdog_task);
  1245. if ((adapter->portnum == 0) && netxen_nic_check_temp(adapter))
  1246. return;
  1247. netxen_nic_handle_phy_intr(adapter);
  1248. if (netif_running(adapter->netdev))
  1249. mod_timer(&adapter->watchdog_timer, jiffies + 2 * HZ);
  1250. }
  1251. static void netxen_tx_timeout(struct net_device *netdev)
  1252. {
  1253. struct netxen_adapter *adapter = (struct netxen_adapter *)
  1254. netdev_priv(netdev);
  1255. SCHEDULE_WORK(&adapter->tx_timeout_task);
  1256. }
  1257. static void netxen_tx_timeout_task(struct work_struct *work)
  1258. {
  1259. struct netxen_adapter *adapter =
  1260. container_of(work, struct netxen_adapter, tx_timeout_task);
  1261. printk(KERN_ERR "%s %s: transmit timeout, resetting.\n",
  1262. netxen_nic_driver_name, adapter->netdev->name);
  1263. netxen_nic_disable_int(adapter);
  1264. napi_disable(&adapter->napi);
  1265. adapter->netdev->trans_start = jiffies;
  1266. napi_enable(&adapter->napi);
  1267. netxen_nic_enable_int(adapter);
  1268. netif_wake_queue(adapter->netdev);
  1269. }
  1270. /*
  1271. * netxen_nic_get_stats - Get System Network Statistics
  1272. * @netdev: network interface device structure
  1273. */
  1274. struct net_device_stats *netxen_nic_get_stats(struct net_device *netdev)
  1275. {
  1276. struct netxen_adapter *adapter = netdev_priv(netdev);
  1277. struct net_device_stats *stats = &adapter->net_stats;
  1278. memset(stats, 0, sizeof(*stats));
  1279. /* total packets received */
  1280. stats->rx_packets = adapter->stats.no_rcv;
  1281. /* total packets transmitted */
  1282. stats->tx_packets = adapter->stats.xmitedframes +
  1283. adapter->stats.xmitfinished;
  1284. /* total bytes received */
  1285. stats->rx_bytes = adapter->stats.rxbytes;
  1286. /* total bytes transmitted */
  1287. stats->tx_bytes = adapter->stats.txbytes;
  1288. /* bad packets received */
  1289. stats->rx_errors = adapter->stats.rcvdbadskb;
  1290. /* packet transmit problems */
  1291. stats->tx_errors = adapter->stats.nocmddescriptor;
  1292. /* no space in linux buffers */
  1293. stats->rx_dropped = adapter->stats.rxdropped;
  1294. /* no space available in linux */
  1295. stats->tx_dropped = adapter->stats.txdropped;
  1296. return stats;
  1297. }
  1298. static irqreturn_t netxen_intr(int irq, void *data)
  1299. {
  1300. struct netxen_adapter *adapter = data;
  1301. u32 status = 0;
  1302. status = adapter->pci_read_immediate(adapter, ISR_INT_VECTOR);
  1303. if (!(status & adapter->legacy_intr.int_vec_bit))
  1304. return IRQ_NONE;
  1305. if (adapter->ahw.revision_id >= NX_P3_B1) {
  1306. /* check interrupt state machine, to be sure */
  1307. status = adapter->pci_read_immediate(adapter,
  1308. ISR_INT_STATE_REG);
  1309. if (!ISR_LEGACY_INT_TRIGGERED(status))
  1310. return IRQ_NONE;
  1311. } else {
  1312. unsigned long our_int = 0;
  1313. our_int = adapter->pci_read_normalize(adapter, CRB_INT_VECTOR);
  1314. /* not our interrupt */
  1315. if (!test_and_clear_bit((7 + adapter->portnum), &our_int))
  1316. return IRQ_NONE;
  1317. /* claim interrupt */
  1318. adapter->pci_write_normalize(adapter,
  1319. CRB_INT_VECTOR, (our_int & 0xffffffff));
  1320. }
  1321. /* clear interrupt */
  1322. if (adapter->fw_major < 4)
  1323. netxen_nic_disable_int(adapter);
  1324. adapter->pci_write_immediate(adapter,
  1325. adapter->legacy_intr.tgt_status_reg,
  1326. 0xffffffff);
  1327. /* read twice to ensure write is flushed */
  1328. adapter->pci_read_immediate(adapter, ISR_INT_VECTOR);
  1329. adapter->pci_read_immediate(adapter, ISR_INT_VECTOR);
  1330. napi_schedule(&adapter->napi);
  1331. return IRQ_HANDLED;
  1332. }
  1333. static irqreturn_t netxen_msi_intr(int irq, void *data)
  1334. {
  1335. struct netxen_adapter *adapter = data;
  1336. /* clear interrupt */
  1337. adapter->pci_write_immediate(adapter,
  1338. msi_tgt_status[adapter->ahw.pci_func], 0xffffffff);
  1339. napi_schedule(&adapter->napi);
  1340. return IRQ_HANDLED;
  1341. }
  1342. static int netxen_nic_poll(struct napi_struct *napi, int budget)
  1343. {
  1344. struct netxen_adapter *adapter = container_of(napi, struct netxen_adapter, napi);
  1345. int tx_complete;
  1346. int ctx;
  1347. int work_done;
  1348. tx_complete = netxen_process_cmd_ring(adapter);
  1349. work_done = 0;
  1350. for (ctx = 0; ctx < MAX_RCV_CTX; ++ctx) {
  1351. /*
  1352. * Fairness issue. This will give undue weight to the
  1353. * receive context 0.
  1354. */
  1355. /*
  1356. * To avoid starvation, we give each of our receivers,
  1357. * a fraction of the quota. Sometimes, it might happen that we
  1358. * have enough quota to process every packet, but since all the
  1359. * packets are on one context, it gets only half of the quota,
  1360. * and ends up not processing it.
  1361. */
  1362. work_done += netxen_process_rcv_ring(adapter, ctx,
  1363. budget / MAX_RCV_CTX);
  1364. }
  1365. if ((work_done < budget) && tx_complete) {
  1366. netif_rx_complete(&adapter->napi);
  1367. netxen_nic_enable_int(adapter);
  1368. }
  1369. return work_done;
  1370. }
  1371. #ifdef CONFIG_NET_POLL_CONTROLLER
  1372. static void netxen_nic_poll_controller(struct net_device *netdev)
  1373. {
  1374. struct netxen_adapter *adapter = netdev_priv(netdev);
  1375. disable_irq(adapter->irq);
  1376. netxen_intr(adapter->irq, adapter);
  1377. enable_irq(adapter->irq);
  1378. }
  1379. #endif
  1380. static struct pci_driver netxen_driver = {
  1381. .name = netxen_nic_driver_name,
  1382. .id_table = netxen_pci_tbl,
  1383. .probe = netxen_nic_probe,
  1384. .remove = __devexit_p(netxen_nic_remove)
  1385. };
  1386. /* Driver Registration on NetXen card */
  1387. static int __init netxen_init_module(void)
  1388. {
  1389. if ((netxen_workq = create_singlethread_workqueue("netxen")) == NULL)
  1390. return -ENOMEM;
  1391. return pci_register_driver(&netxen_driver);
  1392. }
  1393. module_init(netxen_init_module);
  1394. static void __exit netxen_exit_module(void)
  1395. {
  1396. pci_unregister_driver(&netxen_driver);
  1397. destroy_workqueue(netxen_workq);
  1398. }
  1399. module_exit(netxen_exit_module);