cxgb4.h 25 KB

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  1. /*
  2. * This file is part of the Chelsio T4 Ethernet driver for Linux.
  3. *
  4. * Copyright (c) 2003-2010 Chelsio Communications, Inc. All rights reserved.
  5. *
  6. * This software is available to you under a choice of one of two
  7. * licenses. You may choose to be licensed under the terms of the GNU
  8. * General Public License (GPL) Version 2, available from the file
  9. * COPYING in the main directory of this source tree, or the
  10. * OpenIB.org BSD license below:
  11. *
  12. * Redistribution and use in source and binary forms, with or
  13. * without modification, are permitted provided that the following
  14. * conditions are met:
  15. *
  16. * - Redistributions of source code must retain the above
  17. * copyright notice, this list of conditions and the following
  18. * disclaimer.
  19. *
  20. * - Redistributions in binary form must reproduce the above
  21. * copyright notice, this list of conditions and the following
  22. * disclaimer in the documentation and/or other materials
  23. * provided with the distribution.
  24. *
  25. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  26. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  27. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  28. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  29. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  30. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  31. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  32. * SOFTWARE.
  33. */
  34. #ifndef __CXGB4_H__
  35. #define __CXGB4_H__
  36. #include <linux/bitops.h>
  37. #include <linux/cache.h>
  38. #include <linux/interrupt.h>
  39. #include <linux/list.h>
  40. #include <linux/netdevice.h>
  41. #include <linux/pci.h>
  42. #include <linux/spinlock.h>
  43. #include <linux/timer.h>
  44. #include <asm/io.h>
  45. #include "cxgb4_uld.h"
  46. #include "t4_hw.h"
  47. #define FW_VERSION_MAJOR 1
  48. #define FW_VERSION_MINOR 1
  49. #define FW_VERSION_MICRO 0
  50. enum {
  51. MAX_NPORTS = 4, /* max # of ports */
  52. SERNUM_LEN = 24, /* Serial # length */
  53. EC_LEN = 16, /* E/C length */
  54. ID_LEN = 16, /* ID length */
  55. };
  56. enum {
  57. MEM_EDC0,
  58. MEM_EDC1,
  59. MEM_MC
  60. };
  61. enum dev_master {
  62. MASTER_CANT,
  63. MASTER_MAY,
  64. MASTER_MUST
  65. };
  66. enum dev_state {
  67. DEV_STATE_UNINIT,
  68. DEV_STATE_INIT,
  69. DEV_STATE_ERR
  70. };
  71. enum {
  72. PAUSE_RX = 1 << 0,
  73. PAUSE_TX = 1 << 1,
  74. PAUSE_AUTONEG = 1 << 2
  75. };
  76. struct port_stats {
  77. u64 tx_octets; /* total # of octets in good frames */
  78. u64 tx_frames; /* all good frames */
  79. u64 tx_bcast_frames; /* all broadcast frames */
  80. u64 tx_mcast_frames; /* all multicast frames */
  81. u64 tx_ucast_frames; /* all unicast frames */
  82. u64 tx_error_frames; /* all error frames */
  83. u64 tx_frames_64; /* # of Tx frames in a particular range */
  84. u64 tx_frames_65_127;
  85. u64 tx_frames_128_255;
  86. u64 tx_frames_256_511;
  87. u64 tx_frames_512_1023;
  88. u64 tx_frames_1024_1518;
  89. u64 tx_frames_1519_max;
  90. u64 tx_drop; /* # of dropped Tx frames */
  91. u64 tx_pause; /* # of transmitted pause frames */
  92. u64 tx_ppp0; /* # of transmitted PPP prio 0 frames */
  93. u64 tx_ppp1; /* # of transmitted PPP prio 1 frames */
  94. u64 tx_ppp2; /* # of transmitted PPP prio 2 frames */
  95. u64 tx_ppp3; /* # of transmitted PPP prio 3 frames */
  96. u64 tx_ppp4; /* # of transmitted PPP prio 4 frames */
  97. u64 tx_ppp5; /* # of transmitted PPP prio 5 frames */
  98. u64 tx_ppp6; /* # of transmitted PPP prio 6 frames */
  99. u64 tx_ppp7; /* # of transmitted PPP prio 7 frames */
  100. u64 rx_octets; /* total # of octets in good frames */
  101. u64 rx_frames; /* all good frames */
  102. u64 rx_bcast_frames; /* all broadcast frames */
  103. u64 rx_mcast_frames; /* all multicast frames */
  104. u64 rx_ucast_frames; /* all unicast frames */
  105. u64 rx_too_long; /* # of frames exceeding MTU */
  106. u64 rx_jabber; /* # of jabber frames */
  107. u64 rx_fcs_err; /* # of received frames with bad FCS */
  108. u64 rx_len_err; /* # of received frames with length error */
  109. u64 rx_symbol_err; /* symbol errors */
  110. u64 rx_runt; /* # of short frames */
  111. u64 rx_frames_64; /* # of Rx frames in a particular range */
  112. u64 rx_frames_65_127;
  113. u64 rx_frames_128_255;
  114. u64 rx_frames_256_511;
  115. u64 rx_frames_512_1023;
  116. u64 rx_frames_1024_1518;
  117. u64 rx_frames_1519_max;
  118. u64 rx_pause; /* # of received pause frames */
  119. u64 rx_ppp0; /* # of received PPP prio 0 frames */
  120. u64 rx_ppp1; /* # of received PPP prio 1 frames */
  121. u64 rx_ppp2; /* # of received PPP prio 2 frames */
  122. u64 rx_ppp3; /* # of received PPP prio 3 frames */
  123. u64 rx_ppp4; /* # of received PPP prio 4 frames */
  124. u64 rx_ppp5; /* # of received PPP prio 5 frames */
  125. u64 rx_ppp6; /* # of received PPP prio 6 frames */
  126. u64 rx_ppp7; /* # of received PPP prio 7 frames */
  127. u64 rx_ovflow0; /* drops due to buffer-group 0 overflows */
  128. u64 rx_ovflow1; /* drops due to buffer-group 1 overflows */
  129. u64 rx_ovflow2; /* drops due to buffer-group 2 overflows */
  130. u64 rx_ovflow3; /* drops due to buffer-group 3 overflows */
  131. u64 rx_trunc0; /* buffer-group 0 truncated packets */
  132. u64 rx_trunc1; /* buffer-group 1 truncated packets */
  133. u64 rx_trunc2; /* buffer-group 2 truncated packets */
  134. u64 rx_trunc3; /* buffer-group 3 truncated packets */
  135. };
  136. struct lb_port_stats {
  137. u64 octets;
  138. u64 frames;
  139. u64 bcast_frames;
  140. u64 mcast_frames;
  141. u64 ucast_frames;
  142. u64 error_frames;
  143. u64 frames_64;
  144. u64 frames_65_127;
  145. u64 frames_128_255;
  146. u64 frames_256_511;
  147. u64 frames_512_1023;
  148. u64 frames_1024_1518;
  149. u64 frames_1519_max;
  150. u64 drop;
  151. u64 ovflow0;
  152. u64 ovflow1;
  153. u64 ovflow2;
  154. u64 ovflow3;
  155. u64 trunc0;
  156. u64 trunc1;
  157. u64 trunc2;
  158. u64 trunc3;
  159. };
  160. struct tp_tcp_stats {
  161. u32 tcpOutRsts;
  162. u64 tcpInSegs;
  163. u64 tcpOutSegs;
  164. u64 tcpRetransSegs;
  165. };
  166. struct tp_err_stats {
  167. u32 macInErrs[4];
  168. u32 hdrInErrs[4];
  169. u32 tcpInErrs[4];
  170. u32 tnlCongDrops[4];
  171. u32 ofldChanDrops[4];
  172. u32 tnlTxDrops[4];
  173. u32 ofldVlanDrops[4];
  174. u32 tcp6InErrs[4];
  175. u32 ofldNoNeigh;
  176. u32 ofldCongDefer;
  177. };
  178. struct tp_params {
  179. unsigned int ntxchan; /* # of Tx channels */
  180. unsigned int tre; /* log2 of core clocks per TP tick */
  181. };
  182. struct vpd_params {
  183. unsigned int cclk;
  184. u8 ec[EC_LEN + 1];
  185. u8 sn[SERNUM_LEN + 1];
  186. u8 id[ID_LEN + 1];
  187. };
  188. struct pci_params {
  189. unsigned char speed;
  190. unsigned char width;
  191. };
  192. struct adapter_params {
  193. struct tp_params tp;
  194. struct vpd_params vpd;
  195. struct pci_params pci;
  196. unsigned int fw_vers;
  197. unsigned int tp_vers;
  198. u8 api_vers[7];
  199. unsigned short mtus[NMTUS];
  200. unsigned short a_wnd[NCCTRL_WIN];
  201. unsigned short b_wnd[NCCTRL_WIN];
  202. unsigned char nports; /* # of ethernet ports */
  203. unsigned char portvec;
  204. unsigned char rev; /* chip revision */
  205. unsigned char offload;
  206. unsigned int ofldq_wr_cred;
  207. };
  208. struct trace_params {
  209. u32 data[TRACE_LEN / 4];
  210. u32 mask[TRACE_LEN / 4];
  211. unsigned short snap_len;
  212. unsigned short min_len;
  213. unsigned char skip_ofst;
  214. unsigned char skip_len;
  215. unsigned char invert;
  216. unsigned char port;
  217. };
  218. struct link_config {
  219. unsigned short supported; /* link capabilities */
  220. unsigned short advertising; /* advertised capabilities */
  221. unsigned short requested_speed; /* speed user has requested */
  222. unsigned short speed; /* actual link speed */
  223. unsigned char requested_fc; /* flow control user has requested */
  224. unsigned char fc; /* actual link flow control */
  225. unsigned char autoneg; /* autonegotiating? */
  226. unsigned char link_ok; /* link up? */
  227. };
  228. #define FW_LEN16(fw_struct) FW_CMD_LEN16(sizeof(fw_struct) / 16)
  229. enum {
  230. MAX_ETH_QSETS = 32, /* # of Ethernet Tx/Rx queue sets */
  231. MAX_OFLD_QSETS = 16, /* # of offload Tx/Rx queue sets */
  232. MAX_CTRL_QUEUES = NCHAN, /* # of control Tx queues */
  233. MAX_RDMA_QUEUES = NCHAN, /* # of streaming RDMA Rx queues */
  234. };
  235. enum {
  236. MAX_EGRQ = 128, /* max # of egress queues, including FLs */
  237. MAX_INGQ = 64 /* max # of interrupt-capable ingress queues */
  238. };
  239. struct adapter;
  240. struct vlan_group;
  241. struct sge_rspq;
  242. struct port_info {
  243. struct adapter *adapter;
  244. struct vlan_group *vlan_grp;
  245. u16 viid;
  246. s16 xact_addr_filt; /* index of exact MAC address filter */
  247. u16 rss_size; /* size of VI's RSS table slice */
  248. s8 mdio_addr;
  249. u8 port_type;
  250. u8 mod_type;
  251. u8 port_id;
  252. u8 tx_chan;
  253. u8 lport; /* associated offload logical port */
  254. u8 rx_offload; /* CSO, etc */
  255. u8 nqsets; /* # of qsets */
  256. u8 first_qset; /* index of first qset */
  257. struct link_config link_cfg;
  258. };
  259. /* port_info.rx_offload flags */
  260. enum {
  261. RX_CSO = 1 << 0,
  262. };
  263. struct dentry;
  264. struct work_struct;
  265. enum { /* adapter flags */
  266. FULL_INIT_DONE = (1 << 0),
  267. USING_MSI = (1 << 1),
  268. USING_MSIX = (1 << 2),
  269. QUEUES_BOUND = (1 << 3),
  270. FW_OK = (1 << 4),
  271. };
  272. struct rx_sw_desc;
  273. struct sge_fl { /* SGE free-buffer queue state */
  274. unsigned int avail; /* # of available Rx buffers */
  275. unsigned int pend_cred; /* new buffers since last FL DB ring */
  276. unsigned int cidx; /* consumer index */
  277. unsigned int pidx; /* producer index */
  278. unsigned long alloc_failed; /* # of times buffer allocation failed */
  279. unsigned long large_alloc_failed;
  280. unsigned long starving;
  281. /* RO fields */
  282. unsigned int cntxt_id; /* SGE context id for the free list */
  283. unsigned int size; /* capacity of free list */
  284. struct rx_sw_desc *sdesc; /* address of SW Rx descriptor ring */
  285. __be64 *desc; /* address of HW Rx descriptor ring */
  286. dma_addr_t addr; /* bus address of HW ring start */
  287. };
  288. /* A packet gather list */
  289. struct pkt_gl {
  290. skb_frag_t frags[MAX_SKB_FRAGS];
  291. void *va; /* virtual address of first byte */
  292. unsigned int nfrags; /* # of fragments */
  293. unsigned int tot_len; /* total length of fragments */
  294. };
  295. typedef int (*rspq_handler_t)(struct sge_rspq *q, const __be64 *rsp,
  296. const struct pkt_gl *gl);
  297. struct sge_rspq { /* state for an SGE response queue */
  298. struct napi_struct napi;
  299. const __be64 *cur_desc; /* current descriptor in queue */
  300. unsigned int cidx; /* consumer index */
  301. u8 gen; /* current generation bit */
  302. u8 intr_params; /* interrupt holdoff parameters */
  303. u8 next_intr_params; /* holdoff params for next interrupt */
  304. u8 pktcnt_idx; /* interrupt packet threshold */
  305. u8 uld; /* ULD handling this queue */
  306. u8 idx; /* queue index within its group */
  307. int offset; /* offset into current Rx buffer */
  308. u16 cntxt_id; /* SGE context id for the response q */
  309. u16 abs_id; /* absolute SGE id for the response q */
  310. __be64 *desc; /* address of HW response ring */
  311. dma_addr_t phys_addr; /* physical address of the ring */
  312. unsigned int iqe_len; /* entry size */
  313. unsigned int size; /* capacity of response queue */
  314. struct adapter *adap;
  315. struct net_device *netdev; /* associated net device */
  316. rspq_handler_t handler;
  317. };
  318. struct sge_eth_stats { /* Ethernet queue statistics */
  319. unsigned long pkts; /* # of ethernet packets */
  320. unsigned long lro_pkts; /* # of LRO super packets */
  321. unsigned long lro_merged; /* # of wire packets merged by LRO */
  322. unsigned long rx_cso; /* # of Rx checksum offloads */
  323. unsigned long vlan_ex; /* # of Rx VLAN extractions */
  324. unsigned long rx_drops; /* # of packets dropped due to no mem */
  325. };
  326. struct sge_eth_rxq { /* SW Ethernet Rx queue */
  327. struct sge_rspq rspq;
  328. struct sge_fl fl;
  329. struct sge_eth_stats stats;
  330. } ____cacheline_aligned_in_smp;
  331. struct sge_ofld_stats { /* offload queue statistics */
  332. unsigned long pkts; /* # of packets */
  333. unsigned long imm; /* # of immediate-data packets */
  334. unsigned long an; /* # of asynchronous notifications */
  335. unsigned long nomem; /* # of responses deferred due to no mem */
  336. };
  337. struct sge_ofld_rxq { /* SW offload Rx queue */
  338. struct sge_rspq rspq;
  339. struct sge_fl fl;
  340. struct sge_ofld_stats stats;
  341. } ____cacheline_aligned_in_smp;
  342. struct tx_desc {
  343. __be64 flit[8];
  344. };
  345. struct tx_sw_desc;
  346. struct sge_txq {
  347. unsigned int in_use; /* # of in-use Tx descriptors */
  348. unsigned int size; /* # of descriptors */
  349. unsigned int cidx; /* SW consumer index */
  350. unsigned int pidx; /* producer index */
  351. unsigned long stops; /* # of times q has been stopped */
  352. unsigned long restarts; /* # of queue restarts */
  353. unsigned int cntxt_id; /* SGE context id for the Tx q */
  354. struct tx_desc *desc; /* address of HW Tx descriptor ring */
  355. struct tx_sw_desc *sdesc; /* address of SW Tx descriptor ring */
  356. struct sge_qstat *stat; /* queue status entry */
  357. dma_addr_t phys_addr; /* physical address of the ring */
  358. };
  359. struct sge_eth_txq { /* state for an SGE Ethernet Tx queue */
  360. struct sge_txq q;
  361. struct netdev_queue *txq; /* associated netdev TX queue */
  362. unsigned long tso; /* # of TSO requests */
  363. unsigned long tx_cso; /* # of Tx checksum offloads */
  364. unsigned long vlan_ins; /* # of Tx VLAN insertions */
  365. unsigned long mapping_err; /* # of I/O MMU packet mapping errors */
  366. } ____cacheline_aligned_in_smp;
  367. struct sge_ofld_txq { /* state for an SGE offload Tx queue */
  368. struct sge_txq q;
  369. struct adapter *adap;
  370. struct sk_buff_head sendq; /* list of backpressured packets */
  371. struct tasklet_struct qresume_tsk; /* restarts the queue */
  372. u8 full; /* the Tx ring is full */
  373. unsigned long mapping_err; /* # of I/O MMU packet mapping errors */
  374. } ____cacheline_aligned_in_smp;
  375. struct sge_ctrl_txq { /* state for an SGE control Tx queue */
  376. struct sge_txq q;
  377. struct adapter *adap;
  378. struct sk_buff_head sendq; /* list of backpressured packets */
  379. struct tasklet_struct qresume_tsk; /* restarts the queue */
  380. u8 full; /* the Tx ring is full */
  381. } ____cacheline_aligned_in_smp;
  382. struct sge {
  383. struct sge_eth_txq ethtxq[MAX_ETH_QSETS];
  384. struct sge_ofld_txq ofldtxq[MAX_OFLD_QSETS];
  385. struct sge_ctrl_txq ctrlq[MAX_CTRL_QUEUES];
  386. struct sge_eth_rxq ethrxq[MAX_ETH_QSETS];
  387. struct sge_ofld_rxq ofldrxq[MAX_OFLD_QSETS];
  388. struct sge_ofld_rxq rdmarxq[MAX_RDMA_QUEUES];
  389. struct sge_rspq fw_evtq ____cacheline_aligned_in_smp;
  390. struct sge_rspq intrq ____cacheline_aligned_in_smp;
  391. spinlock_t intrq_lock;
  392. u16 max_ethqsets; /* # of available Ethernet queue sets */
  393. u16 ethqsets; /* # of active Ethernet queue sets */
  394. u16 ethtxq_rover; /* Tx queue to clean up next */
  395. u16 ofldqsets; /* # of active offload queue sets */
  396. u16 rdmaqs; /* # of available RDMA Rx queues */
  397. u16 ofld_rxq[MAX_OFLD_QSETS];
  398. u16 rdma_rxq[NCHAN];
  399. u16 timer_val[SGE_NTIMERS];
  400. u8 counter_val[SGE_NCOUNTERS];
  401. unsigned int starve_thres;
  402. u8 idma_state[2];
  403. void *egr_map[MAX_EGRQ]; /* qid->queue egress queue map */
  404. struct sge_rspq *ingr_map[MAX_INGQ]; /* qid->queue ingress queue map */
  405. DECLARE_BITMAP(starving_fl, MAX_EGRQ);
  406. DECLARE_BITMAP(txq_maperr, MAX_EGRQ);
  407. struct timer_list rx_timer; /* refills starving FLs */
  408. struct timer_list tx_timer; /* checks Tx queues */
  409. };
  410. #define for_each_ethrxq(sge, i) for (i = 0; i < (sge)->ethqsets; i++)
  411. #define for_each_ofldrxq(sge, i) for (i = 0; i < (sge)->ofldqsets; i++)
  412. #define for_each_rdmarxq(sge, i) for (i = 0; i < (sge)->rdmaqs; i++)
  413. struct l2t_data;
  414. struct adapter {
  415. void __iomem *regs;
  416. struct pci_dev *pdev;
  417. struct device *pdev_dev;
  418. unsigned long registered_device_map;
  419. unsigned long flags;
  420. const char *name;
  421. int msg_enable;
  422. struct adapter_params params;
  423. struct cxgb4_virt_res vres;
  424. unsigned int swintr;
  425. unsigned int wol;
  426. struct {
  427. unsigned short vec;
  428. char desc[14];
  429. } msix_info[MAX_INGQ + 1];
  430. struct sge sge;
  431. struct net_device *port[MAX_NPORTS];
  432. u8 chan_map[NCHAN]; /* channel -> port map */
  433. struct l2t_data *l2t;
  434. void *uld_handle[CXGB4_ULD_MAX];
  435. struct list_head list_node;
  436. struct tid_info tids;
  437. void **tid_release_head;
  438. spinlock_t tid_release_lock;
  439. struct work_struct tid_release_task;
  440. bool tid_release_task_busy;
  441. struct dentry *debugfs_root;
  442. spinlock_t stats_lock;
  443. };
  444. static inline u32 t4_read_reg(struct adapter *adap, u32 reg_addr)
  445. {
  446. return readl(adap->regs + reg_addr);
  447. }
  448. static inline void t4_write_reg(struct adapter *adap, u32 reg_addr, u32 val)
  449. {
  450. writel(val, adap->regs + reg_addr);
  451. }
  452. #ifndef readq
  453. static inline u64 readq(const volatile void __iomem *addr)
  454. {
  455. return readl(addr) + ((u64)readl(addr + 4) << 32);
  456. }
  457. static inline void writeq(u64 val, volatile void __iomem *addr)
  458. {
  459. writel(val, addr);
  460. writel(val >> 32, addr + 4);
  461. }
  462. #endif
  463. static inline u64 t4_read_reg64(struct adapter *adap, u32 reg_addr)
  464. {
  465. return readq(adap->regs + reg_addr);
  466. }
  467. static inline void t4_write_reg64(struct adapter *adap, u32 reg_addr, u64 val)
  468. {
  469. writeq(val, adap->regs + reg_addr);
  470. }
  471. /**
  472. * netdev2pinfo - return the port_info structure associated with a net_device
  473. * @dev: the netdev
  474. *
  475. * Return the struct port_info associated with a net_device
  476. */
  477. static inline struct port_info *netdev2pinfo(const struct net_device *dev)
  478. {
  479. return netdev_priv(dev);
  480. }
  481. /**
  482. * adap2pinfo - return the port_info of a port
  483. * @adap: the adapter
  484. * @idx: the port index
  485. *
  486. * Return the port_info structure for the port of the given index.
  487. */
  488. static inline struct port_info *adap2pinfo(struct adapter *adap, int idx)
  489. {
  490. return netdev_priv(adap->port[idx]);
  491. }
  492. /**
  493. * netdev2adap - return the adapter structure associated with a net_device
  494. * @dev: the netdev
  495. *
  496. * Return the struct adapter associated with a net_device
  497. */
  498. static inline struct adapter *netdev2adap(const struct net_device *dev)
  499. {
  500. return netdev2pinfo(dev)->adapter;
  501. }
  502. void t4_os_portmod_changed(const struct adapter *adap, int port_id);
  503. void t4_os_link_changed(struct adapter *adap, int port_id, int link_stat);
  504. void *t4_alloc_mem(size_t size);
  505. void t4_free_mem(void *addr);
  506. void t4_free_sge_resources(struct adapter *adap);
  507. irq_handler_t t4_intr_handler(struct adapter *adap);
  508. netdev_tx_t t4_eth_xmit(struct sk_buff *skb, struct net_device *dev);
  509. int t4_ethrx_handler(struct sge_rspq *q, const __be64 *rsp,
  510. const struct pkt_gl *gl);
  511. int t4_mgmt_tx(struct adapter *adap, struct sk_buff *skb);
  512. int t4_ofld_send(struct adapter *adap, struct sk_buff *skb);
  513. int t4_sge_alloc_rxq(struct adapter *adap, struct sge_rspq *iq, bool fwevtq,
  514. struct net_device *dev, int intr_idx,
  515. struct sge_fl *fl, rspq_handler_t hnd);
  516. int t4_sge_alloc_eth_txq(struct adapter *adap, struct sge_eth_txq *txq,
  517. struct net_device *dev, struct netdev_queue *netdevq,
  518. unsigned int iqid);
  519. int t4_sge_alloc_ctrl_txq(struct adapter *adap, struct sge_ctrl_txq *txq,
  520. struct net_device *dev, unsigned int iqid,
  521. unsigned int cmplqid);
  522. int t4_sge_alloc_ofld_txq(struct adapter *adap, struct sge_ofld_txq *txq,
  523. struct net_device *dev, unsigned int iqid);
  524. irqreturn_t t4_sge_intr_msix(int irq, void *cookie);
  525. void t4_sge_init(struct adapter *adap);
  526. void t4_sge_start(struct adapter *adap);
  527. void t4_sge_stop(struct adapter *adap);
  528. #define for_each_port(adapter, iter) \
  529. for (iter = 0; iter < (adapter)->params.nports; ++iter)
  530. static inline unsigned int core_ticks_per_usec(const struct adapter *adap)
  531. {
  532. return adap->params.vpd.cclk / 1000;
  533. }
  534. static inline unsigned int us_to_core_ticks(const struct adapter *adap,
  535. unsigned int us)
  536. {
  537. return (us * adap->params.vpd.cclk) / 1000;
  538. }
  539. void t4_set_reg_field(struct adapter *adap, unsigned int addr, u32 mask,
  540. u32 val);
  541. int t4_wr_mbox_meat(struct adapter *adap, int mbox, const void *cmd, int size,
  542. void *rpl, bool sleep_ok);
  543. static inline int t4_wr_mbox(struct adapter *adap, int mbox, const void *cmd,
  544. int size, void *rpl)
  545. {
  546. return t4_wr_mbox_meat(adap, mbox, cmd, size, rpl, true);
  547. }
  548. static inline int t4_wr_mbox_ns(struct adapter *adap, int mbox, const void *cmd,
  549. int size, void *rpl)
  550. {
  551. return t4_wr_mbox_meat(adap, mbox, cmd, size, rpl, false);
  552. }
  553. void t4_intr_enable(struct adapter *adapter);
  554. void t4_intr_disable(struct adapter *adapter);
  555. void t4_intr_clear(struct adapter *adapter);
  556. int t4_slow_intr_handler(struct adapter *adapter);
  557. int t4_link_start(struct adapter *adap, unsigned int mbox, unsigned int port,
  558. struct link_config *lc);
  559. int t4_restart_aneg(struct adapter *adap, unsigned int mbox, unsigned int port);
  560. int t4_seeprom_wp(struct adapter *adapter, bool enable);
  561. int t4_load_fw(struct adapter *adapter, const u8 *fw_data, unsigned int size);
  562. int t4_check_fw_version(struct adapter *adapter);
  563. int t4_prep_adapter(struct adapter *adapter);
  564. int t4_port_init(struct adapter *adap, int mbox, int pf, int vf);
  565. void t4_fatal_err(struct adapter *adapter);
  566. int t4_set_trace_filter(struct adapter *adapter, const struct trace_params *tp,
  567. int filter_index, int enable);
  568. void t4_get_trace_filter(struct adapter *adapter, struct trace_params *tp,
  569. int filter_index, int *enabled);
  570. int t4_config_rss_range(struct adapter *adapter, int mbox, unsigned int viid,
  571. int start, int n, const u16 *rspq, unsigned int nrspq);
  572. int t4_config_glbl_rss(struct adapter *adapter, int mbox, unsigned int mode,
  573. unsigned int flags);
  574. int t4_read_rss(struct adapter *adapter, u16 *entries);
  575. int t4_mc_read(struct adapter *adap, u32 addr, __be32 *data, u64 *parity);
  576. int t4_edc_read(struct adapter *adap, int idx, u32 addr, __be32 *data,
  577. u64 *parity);
  578. void t4_get_port_stats(struct adapter *adap, int idx, struct port_stats *p);
  579. void t4_get_lb_stats(struct adapter *adap, int idx, struct lb_port_stats *p);
  580. void t4_read_mtu_tbl(struct adapter *adap, u16 *mtus, u8 *mtu_log);
  581. void t4_tp_get_err_stats(struct adapter *adap, struct tp_err_stats *st);
  582. void t4_tp_get_tcp_stats(struct adapter *adap, struct tp_tcp_stats *v4,
  583. struct tp_tcp_stats *v6);
  584. void t4_load_mtus(struct adapter *adap, const unsigned short *mtus,
  585. const unsigned short *alpha, const unsigned short *beta);
  586. void t4_wol_magic_enable(struct adapter *adap, unsigned int port,
  587. const u8 *addr);
  588. int t4_wol_pat_enable(struct adapter *adap, unsigned int port, unsigned int map,
  589. u64 mask0, u64 mask1, unsigned int crc, bool enable);
  590. int t4_fw_hello(struct adapter *adap, unsigned int mbox, unsigned int evt_mbox,
  591. enum dev_master master, enum dev_state *state);
  592. int t4_fw_bye(struct adapter *adap, unsigned int mbox);
  593. int t4_early_init(struct adapter *adap, unsigned int mbox);
  594. int t4_fw_reset(struct adapter *adap, unsigned int mbox, int reset);
  595. int t4_query_params(struct adapter *adap, unsigned int mbox, unsigned int pf,
  596. unsigned int vf, unsigned int nparams, const u32 *params,
  597. u32 *val);
  598. int t4_set_params(struct adapter *adap, unsigned int mbox, unsigned int pf,
  599. unsigned int vf, unsigned int nparams, const u32 *params,
  600. const u32 *val);
  601. int t4_cfg_pfvf(struct adapter *adap, unsigned int mbox, unsigned int pf,
  602. unsigned int vf, unsigned int txq, unsigned int txq_eth_ctrl,
  603. unsigned int rxqi, unsigned int rxq, unsigned int tc,
  604. unsigned int vi, unsigned int cmask, unsigned int pmask,
  605. unsigned int nexact, unsigned int rcaps, unsigned int wxcaps);
  606. int t4_alloc_vi(struct adapter *adap, unsigned int mbox, unsigned int port,
  607. unsigned int pf, unsigned int vf, unsigned int nmac, u8 *mac,
  608. unsigned int *rss_size);
  609. int t4_free_vi(struct adapter *adap, unsigned int mbox, unsigned int pf,
  610. unsigned int vf, unsigned int viid);
  611. int t4_set_rxmode(struct adapter *adap, unsigned int mbox, unsigned int viid,
  612. int mtu, int promisc, int all_multi, int bcast, int vlanex,
  613. bool sleep_ok);
  614. int t4_alloc_mac_filt(struct adapter *adap, unsigned int mbox,
  615. unsigned int viid, bool free, unsigned int naddr,
  616. const u8 **addr, u16 *idx, u64 *hash, bool sleep_ok);
  617. int t4_change_mac(struct adapter *adap, unsigned int mbox, unsigned int viid,
  618. int idx, const u8 *addr, bool persist, bool add_smt);
  619. int t4_set_addr_hash(struct adapter *adap, unsigned int mbox, unsigned int viid,
  620. bool ucast, u64 vec, bool sleep_ok);
  621. int t4_enable_vi(struct adapter *adap, unsigned int mbox, unsigned int viid,
  622. bool rx_en, bool tx_en);
  623. int t4_identify_port(struct adapter *adap, unsigned int mbox, unsigned int viid,
  624. unsigned int nblinks);
  625. int t4_mdio_rd(struct adapter *adap, unsigned int mbox, unsigned int phy_addr,
  626. unsigned int mmd, unsigned int reg, u16 *valp);
  627. int t4_mdio_wr(struct adapter *adap, unsigned int mbox, unsigned int phy_addr,
  628. unsigned int mmd, unsigned int reg, u16 val);
  629. int t4_iq_start_stop(struct adapter *adap, unsigned int mbox, bool start,
  630. unsigned int pf, unsigned int vf, unsigned int iqid,
  631. unsigned int fl0id, unsigned int fl1id);
  632. int t4_iq_free(struct adapter *adap, unsigned int mbox, unsigned int pf,
  633. unsigned int vf, unsigned int iqtype, unsigned int iqid,
  634. unsigned int fl0id, unsigned int fl1id);
  635. int t4_eth_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf,
  636. unsigned int vf, unsigned int eqid);
  637. int t4_ctrl_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf,
  638. unsigned int vf, unsigned int eqid);
  639. int t4_ofld_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf,
  640. unsigned int vf, unsigned int eqid);
  641. int t4_handle_fw_rpl(struct adapter *adap, const __be64 *rpl);
  642. #endif /* __CXGB4_H__ */