qlcnic_io.c 53 KB

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  1. /*
  2. * QLogic qlcnic NIC Driver
  3. * Copyright (c) 2009-2013 QLogic Corporation
  4. *
  5. * See LICENSE.qlcnic for copyright and licensing details.
  6. */
  7. #include <linux/netdevice.h>
  8. #include <linux/if_vlan.h>
  9. #include <net/ip.h>
  10. #include <linux/ipv6.h>
  11. #include <net/checksum.h>
  12. #include "qlcnic.h"
  13. #define TX_ETHER_PKT 0x01
  14. #define TX_TCP_PKT 0x02
  15. #define TX_UDP_PKT 0x03
  16. #define TX_IP_PKT 0x04
  17. #define TX_TCP_LSO 0x05
  18. #define TX_TCP_LSO6 0x06
  19. #define TX_TCPV6_PKT 0x0b
  20. #define TX_UDPV6_PKT 0x0c
  21. #define FLAGS_VLAN_TAGGED 0x10
  22. #define FLAGS_VLAN_OOB 0x40
  23. #define qlcnic_set_tx_vlan_tci(cmd_desc, v) \
  24. (cmd_desc)->vlan_TCI = cpu_to_le16(v);
  25. #define qlcnic_set_cmd_desc_port(cmd_desc, var) \
  26. ((cmd_desc)->port_ctxid |= ((var) & 0x0F))
  27. #define qlcnic_set_cmd_desc_ctxid(cmd_desc, var) \
  28. ((cmd_desc)->port_ctxid |= ((var) << 4 & 0xF0))
  29. #define qlcnic_set_tx_port(_desc, _port) \
  30. ((_desc)->port_ctxid = ((_port) & 0xf) | (((_port) << 4) & 0xf0))
  31. #define qlcnic_set_tx_flags_opcode(_desc, _flags, _opcode) \
  32. ((_desc)->flags_opcode |= \
  33. cpu_to_le16(((_flags) & 0x7f) | (((_opcode) & 0x3f) << 7)))
  34. #define qlcnic_set_tx_frags_len(_desc, _frags, _len) \
  35. ((_desc)->nfrags__length = \
  36. cpu_to_le32(((_frags) & 0xff) | (((_len) & 0xffffff) << 8)))
  37. /* owner bits of status_desc */
  38. #define STATUS_OWNER_HOST (0x1ULL << 56)
  39. #define STATUS_OWNER_PHANTOM (0x2ULL << 56)
  40. /* Status descriptor:
  41. 0-3 port, 4-7 status, 8-11 type, 12-27 total_length
  42. 28-43 reference_handle, 44-47 protocol, 48-52 pkt_offset
  43. 53-55 desc_cnt, 56-57 owner, 58-63 opcode
  44. */
  45. #define qlcnic_get_sts_port(sts_data) \
  46. ((sts_data) & 0x0F)
  47. #define qlcnic_get_sts_status(sts_data) \
  48. (((sts_data) >> 4) & 0x0F)
  49. #define qlcnic_get_sts_type(sts_data) \
  50. (((sts_data) >> 8) & 0x0F)
  51. #define qlcnic_get_sts_totallength(sts_data) \
  52. (((sts_data) >> 12) & 0xFFFF)
  53. #define qlcnic_get_sts_refhandle(sts_data) \
  54. (((sts_data) >> 28) & 0xFFFF)
  55. #define qlcnic_get_sts_prot(sts_data) \
  56. (((sts_data) >> 44) & 0x0F)
  57. #define qlcnic_get_sts_pkt_offset(sts_data) \
  58. (((sts_data) >> 48) & 0x1F)
  59. #define qlcnic_get_sts_desc_cnt(sts_data) \
  60. (((sts_data) >> 53) & 0x7)
  61. #define qlcnic_get_sts_opcode(sts_data) \
  62. (((sts_data) >> 58) & 0x03F)
  63. #define qlcnic_get_lro_sts_refhandle(sts_data) \
  64. ((sts_data) & 0x07FFF)
  65. #define qlcnic_get_lro_sts_length(sts_data) \
  66. (((sts_data) >> 16) & 0x0FFFF)
  67. #define qlcnic_get_lro_sts_l2_hdr_offset(sts_data) \
  68. (((sts_data) >> 32) & 0x0FF)
  69. #define qlcnic_get_lro_sts_l4_hdr_offset(sts_data) \
  70. (((sts_data) >> 40) & 0x0FF)
  71. #define qlcnic_get_lro_sts_timestamp(sts_data) \
  72. (((sts_data) >> 48) & 0x1)
  73. #define qlcnic_get_lro_sts_type(sts_data) \
  74. (((sts_data) >> 49) & 0x7)
  75. #define qlcnic_get_lro_sts_push_flag(sts_data) \
  76. (((sts_data) >> 52) & 0x1)
  77. #define qlcnic_get_lro_sts_seq_number(sts_data) \
  78. ((sts_data) & 0x0FFFFFFFF)
  79. #define qlcnic_get_lro_sts_mss(sts_data1) \
  80. ((sts_data1 >> 32) & 0x0FFFF)
  81. #define qlcnic_83xx_get_lro_sts_mss(sts) ((sts) & 0xffff)
  82. /* opcode field in status_desc */
  83. #define QLCNIC_SYN_OFFLOAD 0x03
  84. #define QLCNIC_RXPKT_DESC 0x04
  85. #define QLCNIC_OLD_RXPKT_DESC 0x3f
  86. #define QLCNIC_RESPONSE_DESC 0x05
  87. #define QLCNIC_LRO_DESC 0x12
  88. #define QLCNIC_TX_POLL_BUDGET 128
  89. #define QLCNIC_TCP_HDR_SIZE 20
  90. #define QLCNIC_TCP_TS_OPTION_SIZE 12
  91. #define QLCNIC_FETCH_RING_ID(handle) ((handle) >> 63)
  92. #define QLCNIC_DESC_OWNER_FW cpu_to_le64(STATUS_OWNER_PHANTOM)
  93. #define QLCNIC_TCP_TS_HDR_SIZE (QLCNIC_TCP_HDR_SIZE + QLCNIC_TCP_TS_OPTION_SIZE)
  94. /* for status field in status_desc */
  95. #define STATUS_CKSUM_LOOP 0
  96. #define STATUS_CKSUM_OK 2
  97. #define qlcnic_83xx_pktln(sts) ((sts >> 32) & 0x3FFF)
  98. #define qlcnic_83xx_hndl(sts) ((sts >> 48) & 0x7FFF)
  99. #define qlcnic_83xx_csum_status(sts) ((sts >> 39) & 7)
  100. #define qlcnic_83xx_opcode(sts) ((sts >> 42) & 0xF)
  101. #define qlcnic_83xx_vlan_tag(sts) (((sts) >> 48) & 0xFFFF)
  102. #define qlcnic_83xx_lro_pktln(sts) (((sts) >> 32) & 0x3FFF)
  103. #define qlcnic_83xx_l2_hdr_off(sts) (((sts) >> 16) & 0xFF)
  104. #define qlcnic_83xx_l4_hdr_off(sts) (((sts) >> 24) & 0xFF)
  105. #define qlcnic_83xx_pkt_cnt(sts) (((sts) >> 16) & 0x7)
  106. #define qlcnic_83xx_is_tstamp(sts) (((sts) >> 40) & 1)
  107. #define qlcnic_83xx_is_psh_bit(sts) (((sts) >> 41) & 1)
  108. #define qlcnic_83xx_is_ip_align(sts) (((sts) >> 46) & 1)
  109. #define qlcnic_83xx_has_vlan_tag(sts) (((sts) >> 47) & 1)
  110. struct sk_buff *qlcnic_process_rxbuf(struct qlcnic_adapter *,
  111. struct qlcnic_host_rds_ring *, u16, u16);
  112. inline void qlcnic_83xx_enable_tx_intr(struct qlcnic_adapter *adapter,
  113. struct qlcnic_host_tx_ring *tx_ring)
  114. {
  115. writel(0, tx_ring->crb_intr_mask);
  116. }
  117. inline void qlcnic_83xx_disable_tx_intr(struct qlcnic_adapter *adapter,
  118. struct qlcnic_host_tx_ring *tx_ring)
  119. {
  120. writel(1, tx_ring->crb_intr_mask);
  121. }
  122. static inline u8 qlcnic_mac_hash(u64 mac)
  123. {
  124. return (u8)((mac & 0xff) ^ ((mac >> 40) & 0xff));
  125. }
  126. static inline u32 qlcnic_get_ref_handle(struct qlcnic_adapter *adapter,
  127. u16 handle, u8 ring_id)
  128. {
  129. unsigned short device = adapter->pdev->device;
  130. if ((device == PCI_DEVICE_ID_QLOGIC_QLE834X) ||
  131. (device == PCI_DEVICE_ID_QLOGIC_VF_QLE834X))
  132. return handle | (ring_id << 15);
  133. else
  134. return handle;
  135. }
  136. static inline int qlcnic_82xx_is_lb_pkt(u64 sts_data)
  137. {
  138. return (qlcnic_get_sts_status(sts_data) == STATUS_CKSUM_LOOP) ? 1 : 0;
  139. }
  140. void qlcnic_add_lb_filter(struct qlcnic_adapter *adapter, struct sk_buff *skb,
  141. int loopback_pkt, u16 vlan_id)
  142. {
  143. struct ethhdr *phdr = (struct ethhdr *)(skb->data);
  144. struct qlcnic_filter *fil, *tmp_fil;
  145. struct hlist_node *n;
  146. struct hlist_head *head;
  147. unsigned long time;
  148. u64 src_addr = 0;
  149. u8 hindex, found = 0, op;
  150. int ret;
  151. memcpy(&src_addr, phdr->h_source, ETH_ALEN);
  152. if (loopback_pkt) {
  153. if (adapter->rx_fhash.fnum >= adapter->rx_fhash.fmax)
  154. return;
  155. hindex = qlcnic_mac_hash(src_addr) &
  156. (adapter->fhash.fbucket_size - 1);
  157. head = &(adapter->rx_fhash.fhead[hindex]);
  158. hlist_for_each_entry_safe(tmp_fil, n, head, fnode) {
  159. if (!memcmp(tmp_fil->faddr, &src_addr, ETH_ALEN) &&
  160. tmp_fil->vlan_id == vlan_id) {
  161. time = tmp_fil->ftime;
  162. if (jiffies > (QLCNIC_READD_AGE * HZ + time))
  163. tmp_fil->ftime = jiffies;
  164. return;
  165. }
  166. }
  167. fil = kzalloc(sizeof(struct qlcnic_filter), GFP_ATOMIC);
  168. if (!fil)
  169. return;
  170. fil->ftime = jiffies;
  171. memcpy(fil->faddr, &src_addr, ETH_ALEN);
  172. fil->vlan_id = vlan_id;
  173. spin_lock(&adapter->rx_mac_learn_lock);
  174. hlist_add_head(&(fil->fnode), head);
  175. adapter->rx_fhash.fnum++;
  176. spin_unlock(&adapter->rx_mac_learn_lock);
  177. } else {
  178. hindex = qlcnic_mac_hash(src_addr) &
  179. (adapter->fhash.fbucket_size - 1);
  180. head = &(adapter->rx_fhash.fhead[hindex]);
  181. spin_lock(&adapter->rx_mac_learn_lock);
  182. hlist_for_each_entry_safe(tmp_fil, n, head, fnode) {
  183. if (!memcmp(tmp_fil->faddr, &src_addr, ETH_ALEN) &&
  184. tmp_fil->vlan_id == vlan_id) {
  185. found = 1;
  186. break;
  187. }
  188. }
  189. if (!found) {
  190. spin_unlock(&adapter->rx_mac_learn_lock);
  191. return;
  192. }
  193. op = vlan_id ? QLCNIC_MAC_VLAN_ADD : QLCNIC_MAC_ADD;
  194. ret = qlcnic_sre_macaddr_change(adapter, (u8 *)&src_addr,
  195. vlan_id, op);
  196. if (!ret) {
  197. op = vlan_id ? QLCNIC_MAC_VLAN_DEL : QLCNIC_MAC_DEL;
  198. ret = qlcnic_sre_macaddr_change(adapter,
  199. (u8 *)&src_addr,
  200. vlan_id, op);
  201. if (!ret) {
  202. hlist_del(&(tmp_fil->fnode));
  203. adapter->rx_fhash.fnum--;
  204. }
  205. }
  206. spin_unlock(&adapter->rx_mac_learn_lock);
  207. }
  208. }
  209. void qlcnic_82xx_change_filter(struct qlcnic_adapter *adapter, u64 *uaddr,
  210. u16 vlan_id)
  211. {
  212. struct cmd_desc_type0 *hwdesc;
  213. struct qlcnic_nic_req *req;
  214. struct qlcnic_mac_req *mac_req;
  215. struct qlcnic_vlan_req *vlan_req;
  216. struct qlcnic_host_tx_ring *tx_ring = adapter->tx_ring;
  217. u32 producer;
  218. u64 word;
  219. producer = tx_ring->producer;
  220. hwdesc = &tx_ring->desc_head[tx_ring->producer];
  221. req = (struct qlcnic_nic_req *)hwdesc;
  222. memset(req, 0, sizeof(struct qlcnic_nic_req));
  223. req->qhdr = cpu_to_le64(QLCNIC_REQUEST << 23);
  224. word = QLCNIC_MAC_EVENT | ((u64)(adapter->portnum) << 16);
  225. req->req_hdr = cpu_to_le64(word);
  226. mac_req = (struct qlcnic_mac_req *)&(req->words[0]);
  227. mac_req->op = vlan_id ? QLCNIC_MAC_VLAN_ADD : QLCNIC_MAC_ADD;
  228. memcpy(mac_req->mac_addr, &uaddr, ETH_ALEN);
  229. vlan_req = (struct qlcnic_vlan_req *)&req->words[1];
  230. vlan_req->vlan_id = cpu_to_le16(vlan_id);
  231. tx_ring->producer = get_next_index(producer, tx_ring->num_desc);
  232. smp_mb();
  233. }
  234. static void qlcnic_send_filter(struct qlcnic_adapter *adapter,
  235. struct cmd_desc_type0 *first_desc,
  236. struct sk_buff *skb)
  237. {
  238. struct qlcnic_filter *fil, *tmp_fil;
  239. struct hlist_node *n;
  240. struct hlist_head *head;
  241. struct net_device *netdev = adapter->netdev;
  242. struct ethhdr *phdr = (struct ethhdr *)(skb->data);
  243. u64 src_addr = 0;
  244. u16 vlan_id = 0;
  245. u8 hindex;
  246. if (ether_addr_equal(phdr->h_source, adapter->mac_addr))
  247. return;
  248. if (adapter->fhash.fnum >= adapter->fhash.fmax) {
  249. adapter->stats.mac_filter_limit_overrun++;
  250. netdev_info(netdev, "Can not add more than %d mac addresses\n",
  251. adapter->fhash.fmax);
  252. return;
  253. }
  254. memcpy(&src_addr, phdr->h_source, ETH_ALEN);
  255. hindex = qlcnic_mac_hash(src_addr) & (adapter->fhash.fbucket_size - 1);
  256. head = &(adapter->fhash.fhead[hindex]);
  257. hlist_for_each_entry_safe(tmp_fil, n, head, fnode) {
  258. if (!memcmp(tmp_fil->faddr, &src_addr, ETH_ALEN) &&
  259. tmp_fil->vlan_id == vlan_id) {
  260. if (jiffies > (QLCNIC_READD_AGE * HZ + tmp_fil->ftime))
  261. qlcnic_change_filter(adapter, &src_addr,
  262. vlan_id);
  263. tmp_fil->ftime = jiffies;
  264. return;
  265. }
  266. }
  267. fil = kzalloc(sizeof(struct qlcnic_filter), GFP_ATOMIC);
  268. if (!fil)
  269. return;
  270. qlcnic_change_filter(adapter, &src_addr, vlan_id);
  271. fil->ftime = jiffies;
  272. fil->vlan_id = vlan_id;
  273. memcpy(fil->faddr, &src_addr, ETH_ALEN);
  274. spin_lock(&adapter->mac_learn_lock);
  275. hlist_add_head(&(fil->fnode), head);
  276. adapter->fhash.fnum++;
  277. spin_unlock(&adapter->mac_learn_lock);
  278. }
  279. static int qlcnic_tx_pkt(struct qlcnic_adapter *adapter,
  280. struct cmd_desc_type0 *first_desc, struct sk_buff *skb)
  281. {
  282. u8 l4proto, opcode = 0, hdr_len = 0;
  283. u16 flags = 0, vlan_tci = 0;
  284. int copied, offset, copy_len, size;
  285. struct cmd_desc_type0 *hwdesc;
  286. struct vlan_ethhdr *vh;
  287. struct qlcnic_host_tx_ring *tx_ring = adapter->tx_ring;
  288. u16 protocol = ntohs(skb->protocol);
  289. u32 producer = tx_ring->producer;
  290. if (protocol == ETH_P_8021Q) {
  291. vh = (struct vlan_ethhdr *)skb->data;
  292. flags = FLAGS_VLAN_TAGGED;
  293. vlan_tci = ntohs(vh->h_vlan_TCI);
  294. protocol = ntohs(vh->h_vlan_encapsulated_proto);
  295. } else if (vlan_tx_tag_present(skb)) {
  296. flags = FLAGS_VLAN_OOB;
  297. vlan_tci = vlan_tx_tag_get(skb);
  298. }
  299. if (unlikely(adapter->pvid)) {
  300. if (vlan_tci && !(adapter->flags & QLCNIC_TAGGING_ENABLED))
  301. return -EIO;
  302. if (vlan_tci && (adapter->flags & QLCNIC_TAGGING_ENABLED))
  303. goto set_flags;
  304. flags = FLAGS_VLAN_OOB;
  305. vlan_tci = adapter->pvid;
  306. }
  307. set_flags:
  308. qlcnic_set_tx_vlan_tci(first_desc, vlan_tci);
  309. qlcnic_set_tx_flags_opcode(first_desc, flags, opcode);
  310. if (*(skb->data) & BIT_0) {
  311. flags |= BIT_0;
  312. memcpy(&first_desc->eth_addr, skb->data, ETH_ALEN);
  313. }
  314. opcode = TX_ETHER_PKT;
  315. if ((adapter->netdev->features & (NETIF_F_TSO | NETIF_F_TSO6)) &&
  316. skb_shinfo(skb)->gso_size > 0) {
  317. hdr_len = skb_transport_offset(skb) + tcp_hdrlen(skb);
  318. first_desc->mss = cpu_to_le16(skb_shinfo(skb)->gso_size);
  319. first_desc->total_hdr_length = hdr_len;
  320. opcode = (protocol == ETH_P_IPV6) ? TX_TCP_LSO6 : TX_TCP_LSO;
  321. /* For LSO, we need to copy the MAC/IP/TCP headers into
  322. * the descriptor ring */
  323. copied = 0;
  324. offset = 2;
  325. if (flags & FLAGS_VLAN_OOB) {
  326. first_desc->total_hdr_length += VLAN_HLEN;
  327. first_desc->tcp_hdr_offset = VLAN_HLEN;
  328. first_desc->ip_hdr_offset = VLAN_HLEN;
  329. /* Only in case of TSO on vlan device */
  330. flags |= FLAGS_VLAN_TAGGED;
  331. /* Create a TSO vlan header template for firmware */
  332. hwdesc = &tx_ring->desc_head[producer];
  333. tx_ring->cmd_buf_arr[producer].skb = NULL;
  334. copy_len = min((int)sizeof(struct cmd_desc_type0) -
  335. offset, hdr_len + VLAN_HLEN);
  336. vh = (struct vlan_ethhdr *)((char *) hwdesc + 2);
  337. skb_copy_from_linear_data(skb, vh, 12);
  338. vh->h_vlan_proto = htons(ETH_P_8021Q);
  339. vh->h_vlan_TCI = htons(vlan_tci);
  340. skb_copy_from_linear_data_offset(skb, 12,
  341. (char *)vh + 16,
  342. copy_len - 16);
  343. copied = copy_len - VLAN_HLEN;
  344. offset = 0;
  345. producer = get_next_index(producer, tx_ring->num_desc);
  346. }
  347. while (copied < hdr_len) {
  348. size = (int)sizeof(struct cmd_desc_type0) - offset;
  349. copy_len = min(size, (hdr_len - copied));
  350. hwdesc = &tx_ring->desc_head[producer];
  351. tx_ring->cmd_buf_arr[producer].skb = NULL;
  352. skb_copy_from_linear_data_offset(skb, copied,
  353. (char *)hwdesc +
  354. offset, copy_len);
  355. copied += copy_len;
  356. offset = 0;
  357. producer = get_next_index(producer, tx_ring->num_desc);
  358. }
  359. tx_ring->producer = producer;
  360. smp_mb();
  361. adapter->stats.lso_frames++;
  362. } else if (skb->ip_summed == CHECKSUM_PARTIAL) {
  363. if (protocol == ETH_P_IP) {
  364. l4proto = ip_hdr(skb)->protocol;
  365. if (l4proto == IPPROTO_TCP)
  366. opcode = TX_TCP_PKT;
  367. else if (l4proto == IPPROTO_UDP)
  368. opcode = TX_UDP_PKT;
  369. } else if (protocol == ETH_P_IPV6) {
  370. l4proto = ipv6_hdr(skb)->nexthdr;
  371. if (l4proto == IPPROTO_TCP)
  372. opcode = TX_TCPV6_PKT;
  373. else if (l4proto == IPPROTO_UDP)
  374. opcode = TX_UDPV6_PKT;
  375. }
  376. }
  377. first_desc->tcp_hdr_offset += skb_transport_offset(skb);
  378. first_desc->ip_hdr_offset += skb_network_offset(skb);
  379. qlcnic_set_tx_flags_opcode(first_desc, flags, opcode);
  380. return 0;
  381. }
  382. static int qlcnic_map_tx_skb(struct pci_dev *pdev, struct sk_buff *skb,
  383. struct qlcnic_cmd_buffer *pbuf)
  384. {
  385. struct qlcnic_skb_frag *nf;
  386. struct skb_frag_struct *frag;
  387. int i, nr_frags;
  388. dma_addr_t map;
  389. nr_frags = skb_shinfo(skb)->nr_frags;
  390. nf = &pbuf->frag_array[0];
  391. map = pci_map_single(pdev, skb->data, skb_headlen(skb),
  392. PCI_DMA_TODEVICE);
  393. if (pci_dma_mapping_error(pdev, map))
  394. goto out_err;
  395. nf->dma = map;
  396. nf->length = skb_headlen(skb);
  397. for (i = 0; i < nr_frags; i++) {
  398. frag = &skb_shinfo(skb)->frags[i];
  399. nf = &pbuf->frag_array[i+1];
  400. map = skb_frag_dma_map(&pdev->dev, frag, 0, skb_frag_size(frag),
  401. DMA_TO_DEVICE);
  402. if (dma_mapping_error(&pdev->dev, map))
  403. goto unwind;
  404. nf->dma = map;
  405. nf->length = skb_frag_size(frag);
  406. }
  407. return 0;
  408. unwind:
  409. while (--i >= 0) {
  410. nf = &pbuf->frag_array[i+1];
  411. pci_unmap_page(pdev, nf->dma, nf->length, PCI_DMA_TODEVICE);
  412. }
  413. nf = &pbuf->frag_array[0];
  414. pci_unmap_single(pdev, nf->dma, skb_headlen(skb), PCI_DMA_TODEVICE);
  415. out_err:
  416. return -ENOMEM;
  417. }
  418. static void qlcnic_unmap_buffers(struct pci_dev *pdev, struct sk_buff *skb,
  419. struct qlcnic_cmd_buffer *pbuf)
  420. {
  421. struct qlcnic_skb_frag *nf = &pbuf->frag_array[0];
  422. int i, nr_frags = skb_shinfo(skb)->nr_frags;
  423. for (i = 0; i < nr_frags; i++) {
  424. nf = &pbuf->frag_array[i+1];
  425. pci_unmap_page(pdev, nf->dma, nf->length, PCI_DMA_TODEVICE);
  426. }
  427. nf = &pbuf->frag_array[0];
  428. pci_unmap_single(pdev, nf->dma, skb_headlen(skb), PCI_DMA_TODEVICE);
  429. pbuf->skb = NULL;
  430. }
  431. static inline void qlcnic_clear_cmddesc(u64 *desc)
  432. {
  433. desc[0] = 0ULL;
  434. desc[2] = 0ULL;
  435. desc[7] = 0ULL;
  436. }
  437. netdev_tx_t qlcnic_xmit_frame(struct sk_buff *skb, struct net_device *netdev)
  438. {
  439. struct qlcnic_adapter *adapter = netdev_priv(netdev);
  440. struct qlcnic_host_tx_ring *tx_ring = adapter->tx_ring;
  441. struct qlcnic_cmd_buffer *pbuf;
  442. struct qlcnic_skb_frag *buffrag;
  443. struct cmd_desc_type0 *hwdesc, *first_desc;
  444. struct pci_dev *pdev;
  445. struct ethhdr *phdr;
  446. int i, k, frag_count, delta = 0;
  447. u32 producer, num_txd;
  448. num_txd = tx_ring->num_desc;
  449. if (!test_bit(__QLCNIC_DEV_UP, &adapter->state)) {
  450. netif_stop_queue(netdev);
  451. return NETDEV_TX_BUSY;
  452. }
  453. if (adapter->flags & QLCNIC_MACSPOOF) {
  454. phdr = (struct ethhdr *)skb->data;
  455. if (!ether_addr_equal(phdr->h_source, adapter->mac_addr))
  456. goto drop_packet;
  457. }
  458. frag_count = skb_shinfo(skb)->nr_frags + 1;
  459. /* 14 frags supported for normal packet and
  460. * 32 frags supported for TSO packet
  461. */
  462. if (!skb_is_gso(skb) && frag_count > QLCNIC_MAX_FRAGS_PER_TX) {
  463. for (i = 0; i < (frag_count - QLCNIC_MAX_FRAGS_PER_TX); i++)
  464. delta += skb_frag_size(&skb_shinfo(skb)->frags[i]);
  465. if (!__pskb_pull_tail(skb, delta))
  466. goto drop_packet;
  467. frag_count = 1 + skb_shinfo(skb)->nr_frags;
  468. }
  469. if (unlikely(qlcnic_tx_avail(tx_ring) <= TX_STOP_THRESH)) {
  470. netif_stop_queue(netdev);
  471. if (qlcnic_tx_avail(tx_ring) > TX_STOP_THRESH) {
  472. netif_start_queue(netdev);
  473. } else {
  474. adapter->stats.xmit_off++;
  475. return NETDEV_TX_BUSY;
  476. }
  477. }
  478. producer = tx_ring->producer;
  479. pbuf = &tx_ring->cmd_buf_arr[producer];
  480. pdev = adapter->pdev;
  481. first_desc = &tx_ring->desc_head[producer];
  482. hwdesc = &tx_ring->desc_head[producer];
  483. qlcnic_clear_cmddesc((u64 *)hwdesc);
  484. if (qlcnic_map_tx_skb(pdev, skb, pbuf)) {
  485. adapter->stats.tx_dma_map_error++;
  486. goto drop_packet;
  487. }
  488. pbuf->skb = skb;
  489. pbuf->frag_count = frag_count;
  490. qlcnic_set_tx_frags_len(first_desc, frag_count, skb->len);
  491. qlcnic_set_tx_port(first_desc, adapter->portnum);
  492. for (i = 0; i < frag_count; i++) {
  493. k = i % 4;
  494. if ((k == 0) && (i > 0)) {
  495. /* move to next desc.*/
  496. producer = get_next_index(producer, num_txd);
  497. hwdesc = &tx_ring->desc_head[producer];
  498. qlcnic_clear_cmddesc((u64 *)hwdesc);
  499. tx_ring->cmd_buf_arr[producer].skb = NULL;
  500. }
  501. buffrag = &pbuf->frag_array[i];
  502. hwdesc->buffer_length[k] = cpu_to_le16(buffrag->length);
  503. switch (k) {
  504. case 0:
  505. hwdesc->addr_buffer1 = cpu_to_le64(buffrag->dma);
  506. break;
  507. case 1:
  508. hwdesc->addr_buffer2 = cpu_to_le64(buffrag->dma);
  509. break;
  510. case 2:
  511. hwdesc->addr_buffer3 = cpu_to_le64(buffrag->dma);
  512. break;
  513. case 3:
  514. hwdesc->addr_buffer4 = cpu_to_le64(buffrag->dma);
  515. break;
  516. }
  517. }
  518. tx_ring->producer = get_next_index(producer, num_txd);
  519. smp_mb();
  520. if (unlikely(qlcnic_tx_pkt(adapter, first_desc, skb)))
  521. goto unwind_buff;
  522. if (adapter->drv_mac_learn)
  523. qlcnic_send_filter(adapter, first_desc, skb);
  524. adapter->stats.txbytes += skb->len;
  525. adapter->stats.xmitcalled++;
  526. qlcnic_update_cmd_producer(tx_ring);
  527. return NETDEV_TX_OK;
  528. unwind_buff:
  529. qlcnic_unmap_buffers(pdev, skb, pbuf);
  530. drop_packet:
  531. adapter->stats.txdropped++;
  532. dev_kfree_skb_any(skb);
  533. return NETDEV_TX_OK;
  534. }
  535. void qlcnic_advert_link_change(struct qlcnic_adapter *adapter, int linkup)
  536. {
  537. struct net_device *netdev = adapter->netdev;
  538. if (adapter->ahw->linkup && !linkup) {
  539. netdev_info(netdev, "NIC Link is down\n");
  540. adapter->ahw->linkup = 0;
  541. if (netif_running(netdev)) {
  542. netif_carrier_off(netdev);
  543. netif_stop_queue(netdev);
  544. }
  545. } else if (!adapter->ahw->linkup && linkup) {
  546. netdev_info(netdev, "NIC Link is up\n");
  547. adapter->ahw->linkup = 1;
  548. if (netif_running(netdev)) {
  549. netif_carrier_on(netdev);
  550. netif_wake_queue(netdev);
  551. }
  552. }
  553. }
  554. static int qlcnic_alloc_rx_skb(struct qlcnic_adapter *adapter,
  555. struct qlcnic_host_rds_ring *rds_ring,
  556. struct qlcnic_rx_buffer *buffer)
  557. {
  558. struct sk_buff *skb;
  559. dma_addr_t dma;
  560. struct pci_dev *pdev = adapter->pdev;
  561. skb = netdev_alloc_skb(adapter->netdev, rds_ring->skb_size);
  562. if (!skb) {
  563. adapter->stats.skb_alloc_failure++;
  564. return -ENOMEM;
  565. }
  566. skb_reserve(skb, NET_IP_ALIGN);
  567. dma = pci_map_single(pdev, skb->data,
  568. rds_ring->dma_size, PCI_DMA_FROMDEVICE);
  569. if (pci_dma_mapping_error(pdev, dma)) {
  570. adapter->stats.rx_dma_map_error++;
  571. dev_kfree_skb_any(skb);
  572. return -ENOMEM;
  573. }
  574. buffer->skb = skb;
  575. buffer->dma = dma;
  576. return 0;
  577. }
  578. static void qlcnic_post_rx_buffers_nodb(struct qlcnic_adapter *adapter,
  579. struct qlcnic_host_rds_ring *rds_ring,
  580. u8 ring_id)
  581. {
  582. struct rcv_desc *pdesc;
  583. struct qlcnic_rx_buffer *buffer;
  584. int count = 0;
  585. uint32_t producer, handle;
  586. struct list_head *head;
  587. if (!spin_trylock(&rds_ring->lock))
  588. return;
  589. producer = rds_ring->producer;
  590. head = &rds_ring->free_list;
  591. while (!list_empty(head)) {
  592. buffer = list_entry(head->next, struct qlcnic_rx_buffer, list);
  593. if (!buffer->skb) {
  594. if (qlcnic_alloc_rx_skb(adapter, rds_ring, buffer))
  595. break;
  596. }
  597. count++;
  598. list_del(&buffer->list);
  599. /* make a rcv descriptor */
  600. pdesc = &rds_ring->desc_head[producer];
  601. handle = qlcnic_get_ref_handle(adapter,
  602. buffer->ref_handle, ring_id);
  603. pdesc->reference_handle = cpu_to_le16(handle);
  604. pdesc->buffer_length = cpu_to_le32(rds_ring->dma_size);
  605. pdesc->addr_buffer = cpu_to_le64(buffer->dma);
  606. producer = get_next_index(producer, rds_ring->num_desc);
  607. }
  608. if (count) {
  609. rds_ring->producer = producer;
  610. writel((producer - 1) & (rds_ring->num_desc - 1),
  611. rds_ring->crb_rcv_producer);
  612. }
  613. spin_unlock(&rds_ring->lock);
  614. }
  615. static int qlcnic_process_cmd_ring(struct qlcnic_adapter *adapter,
  616. struct qlcnic_host_tx_ring *tx_ring,
  617. int budget)
  618. {
  619. u32 sw_consumer, hw_consumer;
  620. int i, done, count = 0;
  621. struct qlcnic_cmd_buffer *buffer;
  622. struct pci_dev *pdev = adapter->pdev;
  623. struct net_device *netdev = adapter->netdev;
  624. struct qlcnic_skb_frag *frag;
  625. if (!spin_trylock(&adapter->tx_clean_lock))
  626. return 1;
  627. sw_consumer = tx_ring->sw_consumer;
  628. hw_consumer = le32_to_cpu(*(tx_ring->hw_consumer));
  629. while (sw_consumer != hw_consumer) {
  630. buffer = &tx_ring->cmd_buf_arr[sw_consumer];
  631. if (buffer->skb) {
  632. frag = &buffer->frag_array[0];
  633. pci_unmap_single(pdev, frag->dma, frag->length,
  634. PCI_DMA_TODEVICE);
  635. frag->dma = 0ULL;
  636. for (i = 1; i < buffer->frag_count; i++) {
  637. frag++;
  638. pci_unmap_page(pdev, frag->dma, frag->length,
  639. PCI_DMA_TODEVICE);
  640. frag->dma = 0ULL;
  641. }
  642. adapter->stats.xmitfinished++;
  643. dev_kfree_skb_any(buffer->skb);
  644. buffer->skb = NULL;
  645. }
  646. sw_consumer = get_next_index(sw_consumer, tx_ring->num_desc);
  647. if (++count >= budget)
  648. break;
  649. }
  650. if (count && netif_running(netdev)) {
  651. tx_ring->sw_consumer = sw_consumer;
  652. smp_mb();
  653. if (netif_queue_stopped(netdev) && netif_carrier_ok(netdev)) {
  654. if (qlcnic_tx_avail(tx_ring) > TX_STOP_THRESH) {
  655. netif_wake_queue(netdev);
  656. adapter->stats.xmit_on++;
  657. }
  658. }
  659. adapter->tx_timeo_cnt = 0;
  660. }
  661. /*
  662. * If everything is freed up to consumer then check if the ring is full
  663. * If the ring is full then check if more needs to be freed and
  664. * schedule the call back again.
  665. *
  666. * This happens when there are 2 CPUs. One could be freeing and the
  667. * other filling it. If the ring is full when we get out of here and
  668. * the card has already interrupted the host then the host can miss the
  669. * interrupt.
  670. *
  671. * There is still a possible race condition and the host could miss an
  672. * interrupt. The card has to take care of this.
  673. */
  674. hw_consumer = le32_to_cpu(*(tx_ring->hw_consumer));
  675. done = (sw_consumer == hw_consumer);
  676. spin_unlock(&adapter->tx_clean_lock);
  677. return done;
  678. }
  679. static int qlcnic_poll(struct napi_struct *napi, int budget)
  680. {
  681. int tx_complete, work_done;
  682. struct qlcnic_host_sds_ring *sds_ring;
  683. struct qlcnic_adapter *adapter;
  684. sds_ring = container_of(napi, struct qlcnic_host_sds_ring, napi);
  685. adapter = sds_ring->adapter;
  686. tx_complete = qlcnic_process_cmd_ring(adapter, adapter->tx_ring,
  687. budget);
  688. work_done = qlcnic_process_rcv_ring(sds_ring, budget);
  689. if ((work_done < budget) && tx_complete) {
  690. napi_complete(&sds_ring->napi);
  691. if (test_bit(__QLCNIC_DEV_UP, &adapter->state))
  692. qlcnic_enable_int(sds_ring);
  693. }
  694. return work_done;
  695. }
  696. static int qlcnic_rx_poll(struct napi_struct *napi, int budget)
  697. {
  698. struct qlcnic_host_sds_ring *sds_ring;
  699. struct qlcnic_adapter *adapter;
  700. int work_done;
  701. sds_ring = container_of(napi, struct qlcnic_host_sds_ring, napi);
  702. adapter = sds_ring->adapter;
  703. work_done = qlcnic_process_rcv_ring(sds_ring, budget);
  704. if (work_done < budget) {
  705. napi_complete(&sds_ring->napi);
  706. if (test_bit(__QLCNIC_DEV_UP, &adapter->state))
  707. qlcnic_enable_int(sds_ring);
  708. }
  709. return work_done;
  710. }
  711. static void qlcnic_handle_linkevent(struct qlcnic_adapter *adapter,
  712. struct qlcnic_fw_msg *msg)
  713. {
  714. u32 cable_OUI;
  715. u16 cable_len, link_speed;
  716. u8 link_status, module, duplex, autoneg, lb_status = 0;
  717. struct net_device *netdev = adapter->netdev;
  718. adapter->ahw->has_link_events = 1;
  719. cable_OUI = msg->body[1] & 0xffffffff;
  720. cable_len = (msg->body[1] >> 32) & 0xffff;
  721. link_speed = (msg->body[1] >> 48) & 0xffff;
  722. link_status = msg->body[2] & 0xff;
  723. duplex = (msg->body[2] >> 16) & 0xff;
  724. autoneg = (msg->body[2] >> 24) & 0xff;
  725. lb_status = (msg->body[2] >> 32) & 0x3;
  726. module = (msg->body[2] >> 8) & 0xff;
  727. if (module == LINKEVENT_MODULE_TWINAX_UNSUPPORTED_CABLE)
  728. dev_info(&netdev->dev,
  729. "unsupported cable: OUI 0x%x, length %d\n",
  730. cable_OUI, cable_len);
  731. else if (module == LINKEVENT_MODULE_TWINAX_UNSUPPORTED_CABLELEN)
  732. dev_info(&netdev->dev, "unsupported cable length %d\n",
  733. cable_len);
  734. if (!link_status && (lb_status == QLCNIC_ILB_MODE ||
  735. lb_status == QLCNIC_ELB_MODE))
  736. adapter->ahw->loopback_state |= QLCNIC_LINKEVENT;
  737. qlcnic_advert_link_change(adapter, link_status);
  738. if (duplex == LINKEVENT_FULL_DUPLEX)
  739. adapter->ahw->link_duplex = DUPLEX_FULL;
  740. else
  741. adapter->ahw->link_duplex = DUPLEX_HALF;
  742. adapter->ahw->module_type = module;
  743. adapter->ahw->link_autoneg = autoneg;
  744. if (link_status) {
  745. adapter->ahw->link_speed = link_speed;
  746. } else {
  747. adapter->ahw->link_speed = SPEED_UNKNOWN;
  748. adapter->ahw->link_duplex = DUPLEX_UNKNOWN;
  749. }
  750. }
  751. static void qlcnic_handle_fw_message(int desc_cnt, int index,
  752. struct qlcnic_host_sds_ring *sds_ring)
  753. {
  754. struct qlcnic_fw_msg msg;
  755. struct status_desc *desc;
  756. struct qlcnic_adapter *adapter;
  757. struct device *dev;
  758. int i = 0, opcode, ret;
  759. while (desc_cnt > 0 && i < 8) {
  760. desc = &sds_ring->desc_head[index];
  761. msg.words[i++] = le64_to_cpu(desc->status_desc_data[0]);
  762. msg.words[i++] = le64_to_cpu(desc->status_desc_data[1]);
  763. index = get_next_index(index, sds_ring->num_desc);
  764. desc_cnt--;
  765. }
  766. adapter = sds_ring->adapter;
  767. dev = &adapter->pdev->dev;
  768. opcode = qlcnic_get_nic_msg_opcode(msg.body[0]);
  769. switch (opcode) {
  770. case QLCNIC_C2H_OPCODE_GET_LINKEVENT_RESPONSE:
  771. qlcnic_handle_linkevent(adapter, &msg);
  772. break;
  773. case QLCNIC_C2H_OPCODE_CONFIG_LOOPBACK:
  774. ret = (u32)(msg.body[1]);
  775. switch (ret) {
  776. case 0:
  777. adapter->ahw->loopback_state |= QLCNIC_LB_RESPONSE;
  778. break;
  779. case 1:
  780. dev_info(dev, "loopback already in progress\n");
  781. adapter->ahw->diag_cnt = -QLCNIC_TEST_IN_PROGRESS;
  782. break;
  783. case 2:
  784. dev_info(dev, "loopback cable is not connected\n");
  785. adapter->ahw->diag_cnt = -QLCNIC_LB_CABLE_NOT_CONN;
  786. break;
  787. default:
  788. dev_info(dev,
  789. "loopback configure request failed, err %x\n",
  790. ret);
  791. adapter->ahw->diag_cnt = -QLCNIC_UNDEFINED_ERROR;
  792. break;
  793. }
  794. break;
  795. default:
  796. break;
  797. }
  798. }
  799. struct sk_buff *qlcnic_process_rxbuf(struct qlcnic_adapter *adapter,
  800. struct qlcnic_host_rds_ring *ring,
  801. u16 index, u16 cksum)
  802. {
  803. struct qlcnic_rx_buffer *buffer;
  804. struct sk_buff *skb;
  805. buffer = &ring->rx_buf_arr[index];
  806. if (unlikely(buffer->skb == NULL)) {
  807. WARN_ON(1);
  808. return NULL;
  809. }
  810. pci_unmap_single(adapter->pdev, buffer->dma, ring->dma_size,
  811. PCI_DMA_FROMDEVICE);
  812. skb = buffer->skb;
  813. if (likely((adapter->netdev->features & NETIF_F_RXCSUM) &&
  814. (cksum == STATUS_CKSUM_OK || cksum == STATUS_CKSUM_LOOP))) {
  815. adapter->stats.csummed++;
  816. skb->ip_summed = CHECKSUM_UNNECESSARY;
  817. } else {
  818. skb_checksum_none_assert(skb);
  819. }
  820. buffer->skb = NULL;
  821. return skb;
  822. }
  823. static inline int qlcnic_check_rx_tagging(struct qlcnic_adapter *adapter,
  824. struct sk_buff *skb, u16 *vlan_tag)
  825. {
  826. struct ethhdr *eth_hdr;
  827. if (!__vlan_get_tag(skb, vlan_tag)) {
  828. eth_hdr = (struct ethhdr *)skb->data;
  829. memmove(skb->data + VLAN_HLEN, eth_hdr, ETH_ALEN * 2);
  830. skb_pull(skb, VLAN_HLEN);
  831. }
  832. if (!adapter->pvid)
  833. return 0;
  834. if (*vlan_tag == adapter->pvid) {
  835. /* Outer vlan tag. Packet should follow non-vlan path */
  836. *vlan_tag = 0xffff;
  837. return 0;
  838. }
  839. if (adapter->flags & QLCNIC_TAGGING_ENABLED)
  840. return 0;
  841. return -EINVAL;
  842. }
  843. static struct qlcnic_rx_buffer *
  844. qlcnic_process_rcv(struct qlcnic_adapter *adapter,
  845. struct qlcnic_host_sds_ring *sds_ring, int ring,
  846. u64 sts_data0)
  847. {
  848. struct net_device *netdev = adapter->netdev;
  849. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  850. struct qlcnic_rx_buffer *buffer;
  851. struct sk_buff *skb;
  852. struct qlcnic_host_rds_ring *rds_ring;
  853. int index, length, cksum, pkt_offset, is_lb_pkt;
  854. u16 vid = 0xffff, t_vid;
  855. if (unlikely(ring >= adapter->max_rds_rings))
  856. return NULL;
  857. rds_ring = &recv_ctx->rds_rings[ring];
  858. index = qlcnic_get_sts_refhandle(sts_data0);
  859. if (unlikely(index >= rds_ring->num_desc))
  860. return NULL;
  861. buffer = &rds_ring->rx_buf_arr[index];
  862. length = qlcnic_get_sts_totallength(sts_data0);
  863. cksum = qlcnic_get_sts_status(sts_data0);
  864. pkt_offset = qlcnic_get_sts_pkt_offset(sts_data0);
  865. skb = qlcnic_process_rxbuf(adapter, rds_ring, index, cksum);
  866. if (!skb)
  867. return buffer;
  868. if (adapter->drv_mac_learn &&
  869. (adapter->flags & QLCNIC_ESWITCH_ENABLED)) {
  870. t_vid = 0;
  871. is_lb_pkt = qlcnic_82xx_is_lb_pkt(sts_data0);
  872. qlcnic_add_lb_filter(adapter, skb, is_lb_pkt, t_vid);
  873. }
  874. if (length > rds_ring->skb_size)
  875. skb_put(skb, rds_ring->skb_size);
  876. else
  877. skb_put(skb, length);
  878. if (pkt_offset)
  879. skb_pull(skb, pkt_offset);
  880. if (unlikely(qlcnic_check_rx_tagging(adapter, skb, &vid))) {
  881. adapter->stats.rxdropped++;
  882. dev_kfree_skb(skb);
  883. return buffer;
  884. }
  885. skb->protocol = eth_type_trans(skb, netdev);
  886. if (vid != 0xffff)
  887. __vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q), vid);
  888. napi_gro_receive(&sds_ring->napi, skb);
  889. adapter->stats.rx_pkts++;
  890. adapter->stats.rxbytes += length;
  891. return buffer;
  892. }
  893. #define QLC_TCP_HDR_SIZE 20
  894. #define QLC_TCP_TS_OPTION_SIZE 12
  895. #define QLC_TCP_TS_HDR_SIZE (QLC_TCP_HDR_SIZE + QLC_TCP_TS_OPTION_SIZE)
  896. static struct qlcnic_rx_buffer *
  897. qlcnic_process_lro(struct qlcnic_adapter *adapter,
  898. int ring, u64 sts_data0, u64 sts_data1)
  899. {
  900. struct net_device *netdev = adapter->netdev;
  901. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  902. struct qlcnic_rx_buffer *buffer;
  903. struct sk_buff *skb;
  904. struct qlcnic_host_rds_ring *rds_ring;
  905. struct iphdr *iph;
  906. struct ipv6hdr *ipv6h;
  907. struct tcphdr *th;
  908. bool push, timestamp;
  909. int index, l2_hdr_offset, l4_hdr_offset, is_lb_pkt;
  910. u16 lro_length, length, data_offset, t_vid, vid = 0xffff;
  911. u32 seq_number;
  912. if (unlikely(ring > adapter->max_rds_rings))
  913. return NULL;
  914. rds_ring = &recv_ctx->rds_rings[ring];
  915. index = qlcnic_get_lro_sts_refhandle(sts_data0);
  916. if (unlikely(index > rds_ring->num_desc))
  917. return NULL;
  918. buffer = &rds_ring->rx_buf_arr[index];
  919. timestamp = qlcnic_get_lro_sts_timestamp(sts_data0);
  920. lro_length = qlcnic_get_lro_sts_length(sts_data0);
  921. l2_hdr_offset = qlcnic_get_lro_sts_l2_hdr_offset(sts_data0);
  922. l4_hdr_offset = qlcnic_get_lro_sts_l4_hdr_offset(sts_data0);
  923. push = qlcnic_get_lro_sts_push_flag(sts_data0);
  924. seq_number = qlcnic_get_lro_sts_seq_number(sts_data1);
  925. skb = qlcnic_process_rxbuf(adapter, rds_ring, index, STATUS_CKSUM_OK);
  926. if (!skb)
  927. return buffer;
  928. if (adapter->drv_mac_learn &&
  929. (adapter->flags & QLCNIC_ESWITCH_ENABLED)) {
  930. t_vid = 0;
  931. is_lb_pkt = qlcnic_82xx_is_lb_pkt(sts_data0);
  932. qlcnic_add_lb_filter(adapter, skb, is_lb_pkt, t_vid);
  933. }
  934. if (timestamp)
  935. data_offset = l4_hdr_offset + QLC_TCP_TS_HDR_SIZE;
  936. else
  937. data_offset = l4_hdr_offset + QLC_TCP_HDR_SIZE;
  938. skb_put(skb, lro_length + data_offset);
  939. skb_pull(skb, l2_hdr_offset);
  940. if (unlikely(qlcnic_check_rx_tagging(adapter, skb, &vid))) {
  941. adapter->stats.rxdropped++;
  942. dev_kfree_skb(skb);
  943. return buffer;
  944. }
  945. skb->protocol = eth_type_trans(skb, netdev);
  946. if (ntohs(skb->protocol) == ETH_P_IPV6) {
  947. ipv6h = (struct ipv6hdr *)skb->data;
  948. th = (struct tcphdr *)(skb->data + sizeof(struct ipv6hdr));
  949. length = (th->doff << 2) + lro_length;
  950. ipv6h->payload_len = htons(length);
  951. } else {
  952. iph = (struct iphdr *)skb->data;
  953. th = (struct tcphdr *)(skb->data + (iph->ihl << 2));
  954. length = (iph->ihl << 2) + (th->doff << 2) + lro_length;
  955. csum_replace2(&iph->check, iph->tot_len, htons(length));
  956. iph->tot_len = htons(length);
  957. }
  958. th->psh = push;
  959. th->seq = htonl(seq_number);
  960. length = skb->len;
  961. if (adapter->flags & QLCNIC_FW_LRO_MSS_CAP) {
  962. skb_shinfo(skb)->gso_size = qlcnic_get_lro_sts_mss(sts_data1);
  963. if (skb->protocol == htons(ETH_P_IPV6))
  964. skb_shinfo(skb)->gso_type = SKB_GSO_TCPV6;
  965. else
  966. skb_shinfo(skb)->gso_type = SKB_GSO_TCPV4;
  967. }
  968. if (vid != 0xffff)
  969. __vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q), vid);
  970. netif_receive_skb(skb);
  971. adapter->stats.lro_pkts++;
  972. adapter->stats.lrobytes += length;
  973. return buffer;
  974. }
  975. int qlcnic_process_rcv_ring(struct qlcnic_host_sds_ring *sds_ring, int max)
  976. {
  977. struct qlcnic_host_rds_ring *rds_ring;
  978. struct qlcnic_adapter *adapter = sds_ring->adapter;
  979. struct list_head *cur;
  980. struct status_desc *desc;
  981. struct qlcnic_rx_buffer *rxbuf;
  982. int opcode, desc_cnt, count = 0;
  983. u64 sts_data0, sts_data1;
  984. u8 ring;
  985. u32 consumer = sds_ring->consumer;
  986. while (count < max) {
  987. desc = &sds_ring->desc_head[consumer];
  988. sts_data0 = le64_to_cpu(desc->status_desc_data[0]);
  989. if (!(sts_data0 & STATUS_OWNER_HOST))
  990. break;
  991. desc_cnt = qlcnic_get_sts_desc_cnt(sts_data0);
  992. opcode = qlcnic_get_sts_opcode(sts_data0);
  993. switch (opcode) {
  994. case QLCNIC_RXPKT_DESC:
  995. case QLCNIC_OLD_RXPKT_DESC:
  996. case QLCNIC_SYN_OFFLOAD:
  997. ring = qlcnic_get_sts_type(sts_data0);
  998. rxbuf = qlcnic_process_rcv(adapter, sds_ring, ring,
  999. sts_data0);
  1000. break;
  1001. case QLCNIC_LRO_DESC:
  1002. ring = qlcnic_get_lro_sts_type(sts_data0);
  1003. sts_data1 = le64_to_cpu(desc->status_desc_data[1]);
  1004. rxbuf = qlcnic_process_lro(adapter, ring, sts_data0,
  1005. sts_data1);
  1006. break;
  1007. case QLCNIC_RESPONSE_DESC:
  1008. qlcnic_handle_fw_message(desc_cnt, consumer, sds_ring);
  1009. default:
  1010. goto skip;
  1011. }
  1012. WARN_ON(desc_cnt > 1);
  1013. if (likely(rxbuf))
  1014. list_add_tail(&rxbuf->list, &sds_ring->free_list[ring]);
  1015. else
  1016. adapter->stats.null_rxbuf++;
  1017. skip:
  1018. for (; desc_cnt > 0; desc_cnt--) {
  1019. desc = &sds_ring->desc_head[consumer];
  1020. desc->status_desc_data[0] = QLCNIC_DESC_OWNER_FW;
  1021. consumer = get_next_index(consumer, sds_ring->num_desc);
  1022. }
  1023. count++;
  1024. }
  1025. for (ring = 0; ring < adapter->max_rds_rings; ring++) {
  1026. rds_ring = &adapter->recv_ctx->rds_rings[ring];
  1027. if (!list_empty(&sds_ring->free_list[ring])) {
  1028. list_for_each(cur, &sds_ring->free_list[ring]) {
  1029. rxbuf = list_entry(cur, struct qlcnic_rx_buffer,
  1030. list);
  1031. qlcnic_alloc_rx_skb(adapter, rds_ring, rxbuf);
  1032. }
  1033. spin_lock(&rds_ring->lock);
  1034. list_splice_tail_init(&sds_ring->free_list[ring],
  1035. &rds_ring->free_list);
  1036. spin_unlock(&rds_ring->lock);
  1037. }
  1038. qlcnic_post_rx_buffers_nodb(adapter, rds_ring, ring);
  1039. }
  1040. if (count) {
  1041. sds_ring->consumer = consumer;
  1042. writel(consumer, sds_ring->crb_sts_consumer);
  1043. }
  1044. return count;
  1045. }
  1046. void qlcnic_post_rx_buffers(struct qlcnic_adapter *adapter,
  1047. struct qlcnic_host_rds_ring *rds_ring, u8 ring_id)
  1048. {
  1049. struct rcv_desc *pdesc;
  1050. struct qlcnic_rx_buffer *buffer;
  1051. int count = 0;
  1052. u32 producer, handle;
  1053. struct list_head *head;
  1054. producer = rds_ring->producer;
  1055. head = &rds_ring->free_list;
  1056. while (!list_empty(head)) {
  1057. buffer = list_entry(head->next, struct qlcnic_rx_buffer, list);
  1058. if (!buffer->skb) {
  1059. if (qlcnic_alloc_rx_skb(adapter, rds_ring, buffer))
  1060. break;
  1061. }
  1062. count++;
  1063. list_del(&buffer->list);
  1064. /* make a rcv descriptor */
  1065. pdesc = &rds_ring->desc_head[producer];
  1066. pdesc->addr_buffer = cpu_to_le64(buffer->dma);
  1067. handle = qlcnic_get_ref_handle(adapter, buffer->ref_handle,
  1068. ring_id);
  1069. pdesc->reference_handle = cpu_to_le16(handle);
  1070. pdesc->buffer_length = cpu_to_le32(rds_ring->dma_size);
  1071. producer = get_next_index(producer, rds_ring->num_desc);
  1072. }
  1073. if (count) {
  1074. rds_ring->producer = producer;
  1075. writel((producer-1) & (rds_ring->num_desc-1),
  1076. rds_ring->crb_rcv_producer);
  1077. }
  1078. }
  1079. static void dump_skb(struct sk_buff *skb, struct qlcnic_adapter *adapter)
  1080. {
  1081. int i;
  1082. unsigned char *data = skb->data;
  1083. pr_info(KERN_INFO "\n");
  1084. for (i = 0; i < skb->len; i++) {
  1085. QLCDB(adapter, DRV, "%02x ", data[i]);
  1086. if ((i & 0x0f) == 8)
  1087. pr_info(KERN_INFO "\n");
  1088. }
  1089. }
  1090. static void qlcnic_process_rcv_diag(struct qlcnic_adapter *adapter, int ring,
  1091. u64 sts_data0)
  1092. {
  1093. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1094. struct sk_buff *skb;
  1095. struct qlcnic_host_rds_ring *rds_ring;
  1096. int index, length, cksum, pkt_offset;
  1097. if (unlikely(ring >= adapter->max_rds_rings))
  1098. return;
  1099. rds_ring = &recv_ctx->rds_rings[ring];
  1100. index = qlcnic_get_sts_refhandle(sts_data0);
  1101. length = qlcnic_get_sts_totallength(sts_data0);
  1102. if (unlikely(index >= rds_ring->num_desc))
  1103. return;
  1104. cksum = qlcnic_get_sts_status(sts_data0);
  1105. pkt_offset = qlcnic_get_sts_pkt_offset(sts_data0);
  1106. skb = qlcnic_process_rxbuf(adapter, rds_ring, index, cksum);
  1107. if (!skb)
  1108. return;
  1109. if (length > rds_ring->skb_size)
  1110. skb_put(skb, rds_ring->skb_size);
  1111. else
  1112. skb_put(skb, length);
  1113. if (pkt_offset)
  1114. skb_pull(skb, pkt_offset);
  1115. if (!qlcnic_check_loopback_buff(skb->data, adapter->mac_addr))
  1116. adapter->ahw->diag_cnt++;
  1117. else
  1118. dump_skb(skb, adapter);
  1119. dev_kfree_skb_any(skb);
  1120. adapter->stats.rx_pkts++;
  1121. adapter->stats.rxbytes += length;
  1122. return;
  1123. }
  1124. void qlcnic_82xx_process_rcv_ring_diag(struct qlcnic_host_sds_ring *sds_ring)
  1125. {
  1126. struct qlcnic_adapter *adapter = sds_ring->adapter;
  1127. struct status_desc *desc;
  1128. u64 sts_data0;
  1129. int ring, opcode, desc_cnt;
  1130. u32 consumer = sds_ring->consumer;
  1131. desc = &sds_ring->desc_head[consumer];
  1132. sts_data0 = le64_to_cpu(desc->status_desc_data[0]);
  1133. if (!(sts_data0 & STATUS_OWNER_HOST))
  1134. return;
  1135. desc_cnt = qlcnic_get_sts_desc_cnt(sts_data0);
  1136. opcode = qlcnic_get_sts_opcode(sts_data0);
  1137. switch (opcode) {
  1138. case QLCNIC_RESPONSE_DESC:
  1139. qlcnic_handle_fw_message(desc_cnt, consumer, sds_ring);
  1140. break;
  1141. default:
  1142. ring = qlcnic_get_sts_type(sts_data0);
  1143. qlcnic_process_rcv_diag(adapter, ring, sts_data0);
  1144. break;
  1145. }
  1146. for (; desc_cnt > 0; desc_cnt--) {
  1147. desc = &sds_ring->desc_head[consumer];
  1148. desc->status_desc_data[0] = cpu_to_le64(STATUS_OWNER_PHANTOM);
  1149. consumer = get_next_index(consumer, sds_ring->num_desc);
  1150. }
  1151. sds_ring->consumer = consumer;
  1152. writel(consumer, sds_ring->crb_sts_consumer);
  1153. }
  1154. int qlcnic_82xx_napi_add(struct qlcnic_adapter *adapter,
  1155. struct net_device *netdev)
  1156. {
  1157. int ring, max_sds_rings;
  1158. struct qlcnic_host_sds_ring *sds_ring;
  1159. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1160. if (qlcnic_alloc_sds_rings(recv_ctx, adapter->max_sds_rings))
  1161. return -ENOMEM;
  1162. max_sds_rings = adapter->max_sds_rings;
  1163. for (ring = 0; ring < adapter->max_sds_rings; ring++) {
  1164. sds_ring = &recv_ctx->sds_rings[ring];
  1165. if (ring == adapter->max_sds_rings - 1)
  1166. netif_napi_add(netdev, &sds_ring->napi, qlcnic_poll,
  1167. QLCNIC_NETDEV_WEIGHT / max_sds_rings);
  1168. else
  1169. netif_napi_add(netdev, &sds_ring->napi, qlcnic_rx_poll,
  1170. QLCNIC_NETDEV_WEIGHT*2);
  1171. }
  1172. if (qlcnic_alloc_tx_rings(adapter, netdev)) {
  1173. qlcnic_free_sds_rings(recv_ctx);
  1174. return -ENOMEM;
  1175. }
  1176. return 0;
  1177. }
  1178. void qlcnic_82xx_napi_del(struct qlcnic_adapter *adapter)
  1179. {
  1180. int ring;
  1181. struct qlcnic_host_sds_ring *sds_ring;
  1182. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1183. for (ring = 0; ring < adapter->max_sds_rings; ring++) {
  1184. sds_ring = &recv_ctx->sds_rings[ring];
  1185. netif_napi_del(&sds_ring->napi);
  1186. }
  1187. qlcnic_free_sds_rings(adapter->recv_ctx);
  1188. qlcnic_free_tx_rings(adapter);
  1189. }
  1190. void qlcnic_82xx_napi_enable(struct qlcnic_adapter *adapter)
  1191. {
  1192. int ring;
  1193. struct qlcnic_host_sds_ring *sds_ring;
  1194. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1195. if (adapter->is_up != QLCNIC_ADAPTER_UP_MAGIC)
  1196. return;
  1197. for (ring = 0; ring < adapter->max_sds_rings; ring++) {
  1198. sds_ring = &recv_ctx->sds_rings[ring];
  1199. napi_enable(&sds_ring->napi);
  1200. qlcnic_enable_int(sds_ring);
  1201. }
  1202. }
  1203. void qlcnic_82xx_napi_disable(struct qlcnic_adapter *adapter)
  1204. {
  1205. int ring;
  1206. struct qlcnic_host_sds_ring *sds_ring;
  1207. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1208. if (adapter->is_up != QLCNIC_ADAPTER_UP_MAGIC)
  1209. return;
  1210. for (ring = 0; ring < adapter->max_sds_rings; ring++) {
  1211. sds_ring = &recv_ctx->sds_rings[ring];
  1212. qlcnic_disable_int(sds_ring);
  1213. napi_synchronize(&sds_ring->napi);
  1214. napi_disable(&sds_ring->napi);
  1215. }
  1216. }
  1217. #define QLC_83XX_NORMAL_LB_PKT (1ULL << 36)
  1218. #define QLC_83XX_LRO_LB_PKT (1ULL << 46)
  1219. static inline int qlcnic_83xx_is_lb_pkt(u64 sts_data, int lro_pkt)
  1220. {
  1221. if (lro_pkt)
  1222. return (sts_data & QLC_83XX_LRO_LB_PKT) ? 1 : 0;
  1223. else
  1224. return (sts_data & QLC_83XX_NORMAL_LB_PKT) ? 1 : 0;
  1225. }
  1226. static struct qlcnic_rx_buffer *
  1227. qlcnic_83xx_process_rcv(struct qlcnic_adapter *adapter,
  1228. struct qlcnic_host_sds_ring *sds_ring,
  1229. u8 ring, u64 sts_data[])
  1230. {
  1231. struct net_device *netdev = adapter->netdev;
  1232. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1233. struct qlcnic_rx_buffer *buffer;
  1234. struct sk_buff *skb;
  1235. struct qlcnic_host_rds_ring *rds_ring;
  1236. int index, length, cksum, is_lb_pkt;
  1237. u16 vid = 0xffff, t_vid;
  1238. if (unlikely(ring >= adapter->max_rds_rings))
  1239. return NULL;
  1240. rds_ring = &recv_ctx->rds_rings[ring];
  1241. index = qlcnic_83xx_hndl(sts_data[0]);
  1242. if (unlikely(index >= rds_ring->num_desc))
  1243. return NULL;
  1244. buffer = &rds_ring->rx_buf_arr[index];
  1245. length = qlcnic_83xx_pktln(sts_data[0]);
  1246. cksum = qlcnic_83xx_csum_status(sts_data[1]);
  1247. skb = qlcnic_process_rxbuf(adapter, rds_ring, index, cksum);
  1248. if (!skb)
  1249. return buffer;
  1250. if (adapter->drv_mac_learn &&
  1251. (adapter->flags & QLCNIC_ESWITCH_ENABLED)) {
  1252. t_vid = 0;
  1253. is_lb_pkt = qlcnic_83xx_is_lb_pkt(sts_data[1], 0);
  1254. qlcnic_add_lb_filter(adapter, skb, is_lb_pkt, t_vid);
  1255. }
  1256. if (length > rds_ring->skb_size)
  1257. skb_put(skb, rds_ring->skb_size);
  1258. else
  1259. skb_put(skb, length);
  1260. if (unlikely(qlcnic_check_rx_tagging(adapter, skb, &vid))) {
  1261. adapter->stats.rxdropped++;
  1262. dev_kfree_skb(skb);
  1263. return buffer;
  1264. }
  1265. skb->protocol = eth_type_trans(skb, netdev);
  1266. if (vid != 0xffff)
  1267. __vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q), vid);
  1268. napi_gro_receive(&sds_ring->napi, skb);
  1269. adapter->stats.rx_pkts++;
  1270. adapter->stats.rxbytes += length;
  1271. return buffer;
  1272. }
  1273. static struct qlcnic_rx_buffer *
  1274. qlcnic_83xx_process_lro(struct qlcnic_adapter *adapter,
  1275. u8 ring, u64 sts_data[])
  1276. {
  1277. struct net_device *netdev = adapter->netdev;
  1278. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1279. struct qlcnic_rx_buffer *buffer;
  1280. struct sk_buff *skb;
  1281. struct qlcnic_host_rds_ring *rds_ring;
  1282. struct iphdr *iph;
  1283. struct ipv6hdr *ipv6h;
  1284. struct tcphdr *th;
  1285. bool push;
  1286. int l2_hdr_offset, l4_hdr_offset;
  1287. int index, is_lb_pkt;
  1288. u16 lro_length, length, data_offset, gso_size;
  1289. u16 vid = 0xffff, t_vid;
  1290. if (unlikely(ring > adapter->max_rds_rings))
  1291. return NULL;
  1292. rds_ring = &recv_ctx->rds_rings[ring];
  1293. index = qlcnic_83xx_hndl(sts_data[0]);
  1294. if (unlikely(index > rds_ring->num_desc))
  1295. return NULL;
  1296. buffer = &rds_ring->rx_buf_arr[index];
  1297. lro_length = qlcnic_83xx_lro_pktln(sts_data[0]);
  1298. l2_hdr_offset = qlcnic_83xx_l2_hdr_off(sts_data[1]);
  1299. l4_hdr_offset = qlcnic_83xx_l4_hdr_off(sts_data[1]);
  1300. push = qlcnic_83xx_is_psh_bit(sts_data[1]);
  1301. skb = qlcnic_process_rxbuf(adapter, rds_ring, index, STATUS_CKSUM_OK);
  1302. if (!skb)
  1303. return buffer;
  1304. if (adapter->drv_mac_learn &&
  1305. (adapter->flags & QLCNIC_ESWITCH_ENABLED)) {
  1306. t_vid = 0;
  1307. is_lb_pkt = qlcnic_83xx_is_lb_pkt(sts_data[1], 1);
  1308. qlcnic_add_lb_filter(adapter, skb, is_lb_pkt, t_vid);
  1309. }
  1310. if (qlcnic_83xx_is_tstamp(sts_data[1]))
  1311. data_offset = l4_hdr_offset + QLCNIC_TCP_TS_HDR_SIZE;
  1312. else
  1313. data_offset = l4_hdr_offset + QLCNIC_TCP_HDR_SIZE;
  1314. skb_put(skb, lro_length + data_offset);
  1315. skb_pull(skb, l2_hdr_offset);
  1316. if (unlikely(qlcnic_check_rx_tagging(adapter, skb, &vid))) {
  1317. adapter->stats.rxdropped++;
  1318. dev_kfree_skb(skb);
  1319. return buffer;
  1320. }
  1321. skb->protocol = eth_type_trans(skb, netdev);
  1322. if (ntohs(skb->protocol) == ETH_P_IPV6) {
  1323. ipv6h = (struct ipv6hdr *)skb->data;
  1324. th = (struct tcphdr *)(skb->data + sizeof(struct ipv6hdr));
  1325. length = (th->doff << 2) + lro_length;
  1326. ipv6h->payload_len = htons(length);
  1327. } else {
  1328. iph = (struct iphdr *)skb->data;
  1329. th = (struct tcphdr *)(skb->data + (iph->ihl << 2));
  1330. length = (iph->ihl << 2) + (th->doff << 2) + lro_length;
  1331. csum_replace2(&iph->check, iph->tot_len, htons(length));
  1332. iph->tot_len = htons(length);
  1333. }
  1334. th->psh = push;
  1335. length = skb->len;
  1336. if (adapter->flags & QLCNIC_FW_LRO_MSS_CAP) {
  1337. gso_size = qlcnic_83xx_get_lro_sts_mss(sts_data[0]);
  1338. skb_shinfo(skb)->gso_size = gso_size;
  1339. if (skb->protocol == htons(ETH_P_IPV6))
  1340. skb_shinfo(skb)->gso_type = SKB_GSO_TCPV6;
  1341. else
  1342. skb_shinfo(skb)->gso_type = SKB_GSO_TCPV4;
  1343. }
  1344. if (vid != 0xffff)
  1345. __vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q), vid);
  1346. netif_receive_skb(skb);
  1347. adapter->stats.lro_pkts++;
  1348. adapter->stats.lrobytes += length;
  1349. return buffer;
  1350. }
  1351. static int qlcnic_83xx_process_rcv_ring(struct qlcnic_host_sds_ring *sds_ring,
  1352. int max)
  1353. {
  1354. struct qlcnic_host_rds_ring *rds_ring;
  1355. struct qlcnic_adapter *adapter = sds_ring->adapter;
  1356. struct list_head *cur;
  1357. struct status_desc *desc;
  1358. struct qlcnic_rx_buffer *rxbuf = NULL;
  1359. u8 ring;
  1360. u64 sts_data[2];
  1361. int count = 0, opcode;
  1362. u32 consumer = sds_ring->consumer;
  1363. while (count < max) {
  1364. desc = &sds_ring->desc_head[consumer];
  1365. sts_data[1] = le64_to_cpu(desc->status_desc_data[1]);
  1366. opcode = qlcnic_83xx_opcode(sts_data[1]);
  1367. if (!opcode)
  1368. break;
  1369. sts_data[0] = le64_to_cpu(desc->status_desc_data[0]);
  1370. ring = QLCNIC_FETCH_RING_ID(sts_data[0]);
  1371. switch (opcode) {
  1372. case QLC_83XX_REG_DESC:
  1373. rxbuf = qlcnic_83xx_process_rcv(adapter, sds_ring,
  1374. ring, sts_data);
  1375. break;
  1376. case QLC_83XX_LRO_DESC:
  1377. rxbuf = qlcnic_83xx_process_lro(adapter, ring,
  1378. sts_data);
  1379. break;
  1380. default:
  1381. dev_info(&adapter->pdev->dev,
  1382. "Unkonwn opcode: 0x%x\n", opcode);
  1383. goto skip;
  1384. }
  1385. if (likely(rxbuf))
  1386. list_add_tail(&rxbuf->list, &sds_ring->free_list[ring]);
  1387. else
  1388. adapter->stats.null_rxbuf++;
  1389. skip:
  1390. desc = &sds_ring->desc_head[consumer];
  1391. /* Reset the descriptor */
  1392. desc->status_desc_data[1] = 0;
  1393. consumer = get_next_index(consumer, sds_ring->num_desc);
  1394. count++;
  1395. }
  1396. for (ring = 0; ring < adapter->max_rds_rings; ring++) {
  1397. rds_ring = &adapter->recv_ctx->rds_rings[ring];
  1398. if (!list_empty(&sds_ring->free_list[ring])) {
  1399. list_for_each(cur, &sds_ring->free_list[ring]) {
  1400. rxbuf = list_entry(cur, struct qlcnic_rx_buffer,
  1401. list);
  1402. qlcnic_alloc_rx_skb(adapter, rds_ring, rxbuf);
  1403. }
  1404. spin_lock(&rds_ring->lock);
  1405. list_splice_tail_init(&sds_ring->free_list[ring],
  1406. &rds_ring->free_list);
  1407. spin_unlock(&rds_ring->lock);
  1408. }
  1409. qlcnic_post_rx_buffers_nodb(adapter, rds_ring, ring);
  1410. }
  1411. if (count) {
  1412. sds_ring->consumer = consumer;
  1413. writel(consumer, sds_ring->crb_sts_consumer);
  1414. }
  1415. return count;
  1416. }
  1417. static int qlcnic_83xx_msix_sriov_vf_poll(struct napi_struct *napi, int budget)
  1418. {
  1419. int tx_complete;
  1420. int work_done;
  1421. struct qlcnic_host_sds_ring *sds_ring;
  1422. struct qlcnic_adapter *adapter;
  1423. struct qlcnic_host_tx_ring *tx_ring;
  1424. sds_ring = container_of(napi, struct qlcnic_host_sds_ring, napi);
  1425. adapter = sds_ring->adapter;
  1426. /* tx ring count = 1 */
  1427. tx_ring = adapter->tx_ring;
  1428. tx_complete = qlcnic_process_cmd_ring(adapter, tx_ring, budget);
  1429. work_done = qlcnic_83xx_process_rcv_ring(sds_ring, budget);
  1430. if ((work_done < budget) && tx_complete) {
  1431. napi_complete(&sds_ring->napi);
  1432. qlcnic_83xx_enable_intr(adapter, sds_ring);
  1433. }
  1434. return work_done;
  1435. }
  1436. static int qlcnic_83xx_poll(struct napi_struct *napi, int budget)
  1437. {
  1438. int tx_complete;
  1439. int work_done;
  1440. struct qlcnic_host_sds_ring *sds_ring;
  1441. struct qlcnic_adapter *adapter;
  1442. struct qlcnic_host_tx_ring *tx_ring;
  1443. sds_ring = container_of(napi, struct qlcnic_host_sds_ring, napi);
  1444. adapter = sds_ring->adapter;
  1445. /* tx ring count = 1 */
  1446. tx_ring = adapter->tx_ring;
  1447. tx_complete = qlcnic_process_cmd_ring(adapter, tx_ring, budget);
  1448. work_done = qlcnic_83xx_process_rcv_ring(sds_ring, budget);
  1449. if ((work_done < budget) && tx_complete) {
  1450. napi_complete(&sds_ring->napi);
  1451. qlcnic_83xx_enable_intr(adapter, sds_ring);
  1452. }
  1453. return work_done;
  1454. }
  1455. static int qlcnic_83xx_msix_tx_poll(struct napi_struct *napi, int budget)
  1456. {
  1457. int work_done;
  1458. struct qlcnic_host_tx_ring *tx_ring;
  1459. struct qlcnic_adapter *adapter;
  1460. budget = QLCNIC_TX_POLL_BUDGET;
  1461. tx_ring = container_of(napi, struct qlcnic_host_tx_ring, napi);
  1462. adapter = tx_ring->adapter;
  1463. work_done = qlcnic_process_cmd_ring(adapter, tx_ring, budget);
  1464. if (work_done) {
  1465. napi_complete(&tx_ring->napi);
  1466. if (test_bit(__QLCNIC_DEV_UP , &adapter->state))
  1467. qlcnic_83xx_enable_tx_intr(adapter, tx_ring);
  1468. }
  1469. return work_done;
  1470. }
  1471. static int qlcnic_83xx_rx_poll(struct napi_struct *napi, int budget)
  1472. {
  1473. int work_done;
  1474. struct qlcnic_host_sds_ring *sds_ring;
  1475. struct qlcnic_adapter *adapter;
  1476. sds_ring = container_of(napi, struct qlcnic_host_sds_ring, napi);
  1477. adapter = sds_ring->adapter;
  1478. work_done = qlcnic_83xx_process_rcv_ring(sds_ring, budget);
  1479. if (work_done < budget) {
  1480. napi_complete(&sds_ring->napi);
  1481. if (test_bit(__QLCNIC_DEV_UP, &adapter->state))
  1482. qlcnic_83xx_enable_intr(adapter, sds_ring);
  1483. }
  1484. return work_done;
  1485. }
  1486. void qlcnic_83xx_napi_enable(struct qlcnic_adapter *adapter)
  1487. {
  1488. int ring;
  1489. struct qlcnic_host_sds_ring *sds_ring;
  1490. struct qlcnic_host_tx_ring *tx_ring;
  1491. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1492. if (adapter->is_up != QLCNIC_ADAPTER_UP_MAGIC)
  1493. return;
  1494. for (ring = 0; ring < adapter->max_sds_rings; ring++) {
  1495. sds_ring = &recv_ctx->sds_rings[ring];
  1496. napi_enable(&sds_ring->napi);
  1497. if (adapter->flags & QLCNIC_MSIX_ENABLED)
  1498. qlcnic_83xx_enable_intr(adapter, sds_ring);
  1499. }
  1500. if ((adapter->flags & QLCNIC_MSIX_ENABLED) &&
  1501. !(adapter->flags & QLCNIC_TX_INTR_SHARED)) {
  1502. for (ring = 0; ring < adapter->max_drv_tx_rings; ring++) {
  1503. tx_ring = &adapter->tx_ring[ring];
  1504. napi_enable(&tx_ring->napi);
  1505. qlcnic_83xx_enable_tx_intr(adapter, tx_ring);
  1506. }
  1507. }
  1508. }
  1509. void qlcnic_83xx_napi_disable(struct qlcnic_adapter *adapter)
  1510. {
  1511. int ring;
  1512. struct qlcnic_host_sds_ring *sds_ring;
  1513. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1514. struct qlcnic_host_tx_ring *tx_ring;
  1515. if (adapter->is_up != QLCNIC_ADAPTER_UP_MAGIC)
  1516. return;
  1517. for (ring = 0; ring < adapter->max_sds_rings; ring++) {
  1518. sds_ring = &recv_ctx->sds_rings[ring];
  1519. if (adapter->flags & QLCNIC_MSIX_ENABLED)
  1520. qlcnic_83xx_disable_intr(adapter, sds_ring);
  1521. napi_synchronize(&sds_ring->napi);
  1522. napi_disable(&sds_ring->napi);
  1523. }
  1524. if ((adapter->flags & QLCNIC_MSIX_ENABLED) &&
  1525. !(adapter->flags & QLCNIC_TX_INTR_SHARED)) {
  1526. for (ring = 0; ring < adapter->max_drv_tx_rings; ring++) {
  1527. tx_ring = &adapter->tx_ring[ring];
  1528. qlcnic_83xx_disable_tx_intr(adapter, tx_ring);
  1529. napi_synchronize(&tx_ring->napi);
  1530. napi_disable(&tx_ring->napi);
  1531. }
  1532. }
  1533. }
  1534. int qlcnic_83xx_napi_add(struct qlcnic_adapter *adapter,
  1535. struct net_device *netdev)
  1536. {
  1537. int ring, max_sds_rings, temp;
  1538. struct qlcnic_host_sds_ring *sds_ring;
  1539. struct qlcnic_host_tx_ring *tx_ring;
  1540. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1541. if (qlcnic_alloc_sds_rings(recv_ctx, adapter->max_sds_rings))
  1542. return -ENOMEM;
  1543. max_sds_rings = adapter->max_sds_rings;
  1544. for (ring = 0; ring < adapter->max_sds_rings; ring++) {
  1545. sds_ring = &recv_ctx->sds_rings[ring];
  1546. if (adapter->flags & QLCNIC_MSIX_ENABLED) {
  1547. if (!(adapter->flags & QLCNIC_TX_INTR_SHARED)) {
  1548. netif_napi_add(netdev, &sds_ring->napi,
  1549. qlcnic_83xx_rx_poll,
  1550. QLCNIC_NETDEV_WEIGHT * 2);
  1551. } else {
  1552. temp = QLCNIC_NETDEV_WEIGHT / max_sds_rings;
  1553. netif_napi_add(netdev, &sds_ring->napi,
  1554. qlcnic_83xx_msix_sriov_vf_poll,
  1555. temp);
  1556. }
  1557. } else {
  1558. netif_napi_add(netdev, &sds_ring->napi,
  1559. qlcnic_83xx_poll,
  1560. QLCNIC_NETDEV_WEIGHT / max_sds_rings);
  1561. }
  1562. }
  1563. if (qlcnic_alloc_tx_rings(adapter, netdev)) {
  1564. qlcnic_free_sds_rings(recv_ctx);
  1565. return -ENOMEM;
  1566. }
  1567. if ((adapter->flags & QLCNIC_MSIX_ENABLED) &&
  1568. !(adapter->flags & QLCNIC_TX_INTR_SHARED)) {
  1569. for (ring = 0; ring < adapter->max_drv_tx_rings; ring++) {
  1570. tx_ring = &adapter->tx_ring[ring];
  1571. netif_napi_add(netdev, &tx_ring->napi,
  1572. qlcnic_83xx_msix_tx_poll,
  1573. QLCNIC_NETDEV_WEIGHT);
  1574. }
  1575. }
  1576. return 0;
  1577. }
  1578. void qlcnic_83xx_napi_del(struct qlcnic_adapter *adapter)
  1579. {
  1580. int ring;
  1581. struct qlcnic_host_sds_ring *sds_ring;
  1582. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1583. struct qlcnic_host_tx_ring *tx_ring;
  1584. for (ring = 0; ring < adapter->max_sds_rings; ring++) {
  1585. sds_ring = &recv_ctx->sds_rings[ring];
  1586. netif_napi_del(&sds_ring->napi);
  1587. }
  1588. qlcnic_free_sds_rings(adapter->recv_ctx);
  1589. if ((adapter->flags & QLCNIC_MSIX_ENABLED) &&
  1590. !(adapter->flags & QLCNIC_TX_INTR_SHARED)) {
  1591. for (ring = 0; ring < adapter->max_drv_tx_rings; ring++) {
  1592. tx_ring = &adapter->tx_ring[ring];
  1593. netif_napi_del(&tx_ring->napi);
  1594. }
  1595. }
  1596. qlcnic_free_tx_rings(adapter);
  1597. }
  1598. void qlcnic_83xx_process_rcv_diag(struct qlcnic_adapter *adapter,
  1599. int ring, u64 sts_data[])
  1600. {
  1601. struct qlcnic_recv_context *recv_ctx = adapter->recv_ctx;
  1602. struct sk_buff *skb;
  1603. struct qlcnic_host_rds_ring *rds_ring;
  1604. int index, length;
  1605. if (unlikely(ring >= adapter->max_rds_rings))
  1606. return;
  1607. rds_ring = &recv_ctx->rds_rings[ring];
  1608. index = qlcnic_83xx_hndl(sts_data[0]);
  1609. if (unlikely(index >= rds_ring->num_desc))
  1610. return;
  1611. length = qlcnic_83xx_pktln(sts_data[0]);
  1612. skb = qlcnic_process_rxbuf(adapter, rds_ring, index, STATUS_CKSUM_OK);
  1613. if (!skb)
  1614. return;
  1615. if (length > rds_ring->skb_size)
  1616. skb_put(skb, rds_ring->skb_size);
  1617. else
  1618. skb_put(skb, length);
  1619. if (!qlcnic_check_loopback_buff(skb->data, adapter->mac_addr))
  1620. adapter->ahw->diag_cnt++;
  1621. else
  1622. dump_skb(skb, adapter);
  1623. dev_kfree_skb_any(skb);
  1624. return;
  1625. }
  1626. void qlcnic_83xx_process_rcv_ring_diag(struct qlcnic_host_sds_ring *sds_ring)
  1627. {
  1628. struct qlcnic_adapter *adapter = sds_ring->adapter;
  1629. struct status_desc *desc;
  1630. u64 sts_data[2];
  1631. int ring, opcode;
  1632. u32 consumer = sds_ring->consumer;
  1633. desc = &sds_ring->desc_head[consumer];
  1634. sts_data[0] = le64_to_cpu(desc->status_desc_data[0]);
  1635. sts_data[1] = le64_to_cpu(desc->status_desc_data[1]);
  1636. opcode = qlcnic_83xx_opcode(sts_data[1]);
  1637. if (!opcode)
  1638. return;
  1639. ring = QLCNIC_FETCH_RING_ID(qlcnic_83xx_hndl(sts_data[0]));
  1640. qlcnic_83xx_process_rcv_diag(adapter, ring, sts_data);
  1641. desc = &sds_ring->desc_head[consumer];
  1642. desc->status_desc_data[0] = cpu_to_le64(STATUS_OWNER_PHANTOM);
  1643. consumer = get_next_index(consumer, sds_ring->num_desc);
  1644. sds_ring->consumer = consumer;
  1645. writel(consumer, sds_ring->crb_sts_consumer);
  1646. }