cxgb4_uld.h 13 KB

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  1. /*
  2. * This file is part of the Chelsio T4 Ethernet driver for Linux.
  3. *
  4. * Copyright (c) 2003-2016 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_ULD_H
  35. #define __CXGB4_ULD_H
  36. #include <linux/cache.h>
  37. #include <linux/spinlock.h>
  38. #include <linux/skbuff.h>
  39. #include <linux/inetdevice.h>
  40. #include <linux/atomic.h>
  41. #include "cxgb4.h"
  42. #define MAX_ULD_QSETS 16
  43. /* CPL message priority levels */
  44. enum {
  45. CPL_PRIORITY_DATA = 0, /* data messages */
  46. CPL_PRIORITY_SETUP = 1, /* connection setup messages */
  47. CPL_PRIORITY_TEARDOWN = 0, /* connection teardown messages */
  48. CPL_PRIORITY_LISTEN = 1, /* listen start/stop messages */
  49. CPL_PRIORITY_ACK = 1, /* RX ACK messages */
  50. CPL_PRIORITY_CONTROL = 1 /* control messages */
  51. };
  52. #define INIT_TP_WR(w, tid) do { \
  53. (w)->wr.wr_hi = htonl(FW_WR_OP_V(FW_TP_WR) | \
  54. FW_WR_IMMDLEN_V(sizeof(*w) - sizeof(w->wr))); \
  55. (w)->wr.wr_mid = htonl(FW_WR_LEN16_V(DIV_ROUND_UP(sizeof(*w), 16)) | \
  56. FW_WR_FLOWID_V(tid)); \
  57. (w)->wr.wr_lo = cpu_to_be64(0); \
  58. } while (0)
  59. #define INIT_TP_WR_CPL(w, cpl, tid) do { \
  60. INIT_TP_WR(w, tid); \
  61. OPCODE_TID(w) = htonl(MK_OPCODE_TID(cpl, tid)); \
  62. } while (0)
  63. #define INIT_ULPTX_WR(w, wrlen, atomic, tid) do { \
  64. (w)->wr.wr_hi = htonl(FW_WR_OP_V(FW_ULPTX_WR) | \
  65. FW_WR_ATOMIC_V(atomic)); \
  66. (w)->wr.wr_mid = htonl(FW_WR_LEN16_V(DIV_ROUND_UP(wrlen, 16)) | \
  67. FW_WR_FLOWID_V(tid)); \
  68. (w)->wr.wr_lo = cpu_to_be64(0); \
  69. } while (0)
  70. /* Special asynchronous notification message */
  71. #define CXGB4_MSG_AN ((void *)1)
  72. struct serv_entry {
  73. void *data;
  74. };
  75. union aopen_entry {
  76. void *data;
  77. union aopen_entry *next;
  78. };
  79. /*
  80. * Holds the size, base address, free list start, etc of the TID, server TID,
  81. * and active-open TID tables. The tables themselves are allocated dynamically.
  82. */
  83. struct tid_info {
  84. void **tid_tab;
  85. unsigned int ntids;
  86. struct serv_entry *stid_tab;
  87. unsigned long *stid_bmap;
  88. unsigned int nstids;
  89. unsigned int stid_base;
  90. unsigned int hash_base;
  91. union aopen_entry *atid_tab;
  92. unsigned int natids;
  93. unsigned int atid_base;
  94. struct filter_entry *ftid_tab;
  95. unsigned long *ftid_bmap;
  96. unsigned int nftids;
  97. unsigned int ftid_base;
  98. unsigned int aftid_base;
  99. unsigned int aftid_end;
  100. /* Server filter region */
  101. unsigned int sftid_base;
  102. unsigned int nsftids;
  103. spinlock_t atid_lock ____cacheline_aligned_in_smp;
  104. union aopen_entry *afree;
  105. unsigned int atids_in_use;
  106. spinlock_t stid_lock;
  107. unsigned int stids_in_use;
  108. unsigned int sftids_in_use;
  109. /* TIDs in the TCAM */
  110. atomic_t tids_in_use;
  111. /* TIDs in the HASH */
  112. atomic_t hash_tids_in_use;
  113. /* lock for setting/clearing filter bitmap */
  114. spinlock_t ftid_lock;
  115. };
  116. static inline void *lookup_tid(const struct tid_info *t, unsigned int tid)
  117. {
  118. return tid < t->ntids ? t->tid_tab[tid] : NULL;
  119. }
  120. static inline void *lookup_atid(const struct tid_info *t, unsigned int atid)
  121. {
  122. return atid < t->natids ? t->atid_tab[atid].data : NULL;
  123. }
  124. static inline void *lookup_stid(const struct tid_info *t, unsigned int stid)
  125. {
  126. /* Is it a server filter TID? */
  127. if (t->nsftids && (stid >= t->sftid_base)) {
  128. stid -= t->sftid_base;
  129. stid += t->nstids;
  130. } else {
  131. stid -= t->stid_base;
  132. }
  133. return stid < (t->nstids + t->nsftids) ? t->stid_tab[stid].data : NULL;
  134. }
  135. static inline void cxgb4_insert_tid(struct tid_info *t, void *data,
  136. unsigned int tid)
  137. {
  138. t->tid_tab[tid] = data;
  139. if (t->hash_base && (tid >= t->hash_base))
  140. atomic_inc(&t->hash_tids_in_use);
  141. else
  142. atomic_inc(&t->tids_in_use);
  143. }
  144. int cxgb4_alloc_atid(struct tid_info *t, void *data);
  145. int cxgb4_alloc_stid(struct tid_info *t, int family, void *data);
  146. int cxgb4_alloc_sftid(struct tid_info *t, int family, void *data);
  147. void cxgb4_free_atid(struct tid_info *t, unsigned int atid);
  148. void cxgb4_free_stid(struct tid_info *t, unsigned int stid, int family);
  149. void cxgb4_remove_tid(struct tid_info *t, unsigned int qid, unsigned int tid);
  150. struct in6_addr;
  151. int cxgb4_create_server(const struct net_device *dev, unsigned int stid,
  152. __be32 sip, __be16 sport, __be16 vlan,
  153. unsigned int queue);
  154. int cxgb4_create_server6(const struct net_device *dev, unsigned int stid,
  155. const struct in6_addr *sip, __be16 sport,
  156. unsigned int queue);
  157. int cxgb4_remove_server(const struct net_device *dev, unsigned int stid,
  158. unsigned int queue, bool ipv6);
  159. int cxgb4_create_server_filter(const struct net_device *dev, unsigned int stid,
  160. __be32 sip, __be16 sport, __be16 vlan,
  161. unsigned int queue,
  162. unsigned char port, unsigned char mask);
  163. int cxgb4_remove_server_filter(const struct net_device *dev, unsigned int stid,
  164. unsigned int queue, bool ipv6);
  165. /* Filter operation context to allow callers of cxgb4_set_filter() and
  166. * cxgb4_del_filter() to wait for an asynchronous completion.
  167. */
  168. struct filter_ctx {
  169. struct completion completion; /* completion rendezvous */
  170. void *closure; /* caller's opaque information */
  171. int result; /* result of operation */
  172. u32 tid; /* to store tid */
  173. };
  174. struct ch_filter_specification;
  175. int __cxgb4_set_filter(struct net_device *dev, int filter_id,
  176. struct ch_filter_specification *fs,
  177. struct filter_ctx *ctx);
  178. int __cxgb4_del_filter(struct net_device *dev, int filter_id,
  179. struct filter_ctx *ctx);
  180. int cxgb4_set_filter(struct net_device *dev, int filter_id,
  181. struct ch_filter_specification *fs);
  182. int cxgb4_del_filter(struct net_device *dev, int filter_id);
  183. static inline void set_wr_txq(struct sk_buff *skb, int prio, int queue)
  184. {
  185. skb_set_queue_mapping(skb, (queue << 1) | prio);
  186. }
  187. enum cxgb4_uld {
  188. CXGB4_ULD_INIT,
  189. CXGB4_ULD_RDMA,
  190. CXGB4_ULD_ISCSI,
  191. CXGB4_ULD_ISCSIT,
  192. CXGB4_ULD_CRYPTO,
  193. CXGB4_ULD_MAX
  194. };
  195. enum cxgb4_state {
  196. CXGB4_STATE_UP,
  197. CXGB4_STATE_START_RECOVERY,
  198. CXGB4_STATE_DOWN,
  199. CXGB4_STATE_DETACH
  200. };
  201. enum cxgb4_control {
  202. CXGB4_CONTROL_DB_FULL,
  203. CXGB4_CONTROL_DB_EMPTY,
  204. CXGB4_CONTROL_DB_DROP,
  205. };
  206. struct pci_dev;
  207. struct l2t_data;
  208. struct net_device;
  209. struct pkt_gl;
  210. struct tp_tcp_stats;
  211. struct t4_lro_mgr;
  212. struct cxgb4_range {
  213. unsigned int start;
  214. unsigned int size;
  215. };
  216. struct cxgb4_virt_res { /* virtualized HW resources */
  217. struct cxgb4_range ddp;
  218. struct cxgb4_range iscsi;
  219. struct cxgb4_range stag;
  220. struct cxgb4_range rq;
  221. struct cxgb4_range pbl;
  222. struct cxgb4_range qp;
  223. struct cxgb4_range cq;
  224. struct cxgb4_range ocq;
  225. };
  226. #define OCQ_WIN_OFFSET(pdev, vres) \
  227. (pci_resource_len((pdev), 2) - roundup_pow_of_two((vres)->ocq.size))
  228. /*
  229. * Block of information the LLD provides to ULDs attaching to a device.
  230. */
  231. struct cxgb4_lld_info {
  232. struct pci_dev *pdev; /* associated PCI device */
  233. struct l2t_data *l2t; /* L2 table */
  234. struct tid_info *tids; /* TID table */
  235. struct net_device **ports; /* device ports */
  236. const struct cxgb4_virt_res *vr; /* assorted HW resources */
  237. const unsigned short *mtus; /* MTU table */
  238. const unsigned short *rxq_ids; /* the ULD's Rx queue ids */
  239. const unsigned short *ciq_ids; /* the ULD's concentrator IQ ids */
  240. unsigned short nrxq; /* # of Rx queues */
  241. unsigned short ntxq; /* # of Tx queues */
  242. unsigned short nciq; /* # of concentrator IQ */
  243. unsigned char nchan:4; /* # of channels */
  244. unsigned char nports:4; /* # of ports */
  245. unsigned char wr_cred; /* WR 16-byte credits */
  246. unsigned char adapter_type; /* type of adapter */
  247. unsigned char fw_api_ver; /* FW API version */
  248. unsigned int fw_vers; /* FW version */
  249. unsigned int iscsi_iolen; /* iSCSI max I/O length */
  250. unsigned int cclk_ps; /* Core clock period in psec */
  251. unsigned short udb_density; /* # of user DB/page */
  252. unsigned short ucq_density; /* # of user CQs/page */
  253. unsigned short filt_mode; /* filter optional components */
  254. unsigned short tx_modq[NCHAN]; /* maps each tx channel to a */
  255. /* scheduler queue */
  256. void __iomem *gts_reg; /* address of GTS register */
  257. void __iomem *db_reg; /* address of kernel doorbell */
  258. int dbfifo_int_thresh; /* doorbell fifo int threshold */
  259. unsigned int sge_ingpadboundary; /* SGE ingress padding boundary */
  260. unsigned int sge_egrstatuspagesize; /* SGE egress status page size */
  261. unsigned int sge_pktshift; /* Padding between CPL and */
  262. /* packet data */
  263. unsigned int pf; /* Physical Function we're using */
  264. bool enable_fw_ofld_conn; /* Enable connection through fw */
  265. /* WR */
  266. unsigned int max_ordird_qp; /* Max ORD/IRD depth per RDMA QP */
  267. unsigned int max_ird_adapter; /* Max IRD memory per adapter */
  268. bool ulptx_memwrite_dsgl; /* use of T5 DSGL allowed */
  269. unsigned int iscsi_tagmask; /* iscsi ddp tag mask */
  270. unsigned int iscsi_pgsz_order; /* iscsi ddp page size orders */
  271. unsigned int iscsi_llimit; /* chip's iscsi region llimit */
  272. void **iscsi_ppm; /* iscsi page pod manager */
  273. int nodeid; /* device numa node id */
  274. bool fr_nsmr_tpte_wr_support; /* FW supports FR_NSMR_TPTE_WR */
  275. };
  276. struct cxgb4_uld_info {
  277. const char *name;
  278. void *handle;
  279. unsigned int nrxq;
  280. unsigned int rxq_size;
  281. bool ciq;
  282. bool lro;
  283. void *(*add)(const struct cxgb4_lld_info *p);
  284. int (*rx_handler)(void *handle, const __be64 *rsp,
  285. const struct pkt_gl *gl);
  286. int (*state_change)(void *handle, enum cxgb4_state new_state);
  287. int (*control)(void *handle, enum cxgb4_control control, ...);
  288. int (*lro_rx_handler)(void *handle, const __be64 *rsp,
  289. const struct pkt_gl *gl,
  290. struct t4_lro_mgr *lro_mgr,
  291. struct napi_struct *napi);
  292. void (*lro_flush)(struct t4_lro_mgr *);
  293. };
  294. int cxgb4_register_uld(enum cxgb4_uld type, const struct cxgb4_uld_info *p);
  295. int cxgb4_unregister_uld(enum cxgb4_uld type);
  296. int cxgb4_ofld_send(struct net_device *dev, struct sk_buff *skb);
  297. unsigned int cxgb4_dbfifo_count(const struct net_device *dev, int lpfifo);
  298. unsigned int cxgb4_port_chan(const struct net_device *dev);
  299. unsigned int cxgb4_port_viid(const struct net_device *dev);
  300. unsigned int cxgb4_tp_smt_idx(enum chip_type chip, unsigned int viid);
  301. unsigned int cxgb4_port_idx(const struct net_device *dev);
  302. unsigned int cxgb4_best_mtu(const unsigned short *mtus, unsigned short mtu,
  303. unsigned int *idx);
  304. unsigned int cxgb4_best_aligned_mtu(const unsigned short *mtus,
  305. unsigned short header_size,
  306. unsigned short data_size_max,
  307. unsigned short data_size_align,
  308. unsigned int *mtu_idxp);
  309. void cxgb4_get_tcp_stats(struct pci_dev *pdev, struct tp_tcp_stats *v4,
  310. struct tp_tcp_stats *v6);
  311. void cxgb4_iscsi_init(struct net_device *dev, unsigned int tag_mask,
  312. const unsigned int *pgsz_order);
  313. struct sk_buff *cxgb4_pktgl_to_skb(const struct pkt_gl *gl,
  314. unsigned int skb_len, unsigned int pull_len);
  315. int cxgb4_sync_txq_pidx(struct net_device *dev, u16 qid, u16 pidx, u16 size);
  316. int cxgb4_flush_eq_cache(struct net_device *dev);
  317. int cxgb4_read_tpte(struct net_device *dev, u32 stag, __be32 *tpte);
  318. u64 cxgb4_read_sge_timestamp(struct net_device *dev);
  319. enum cxgb4_bar2_qtype { CXGB4_BAR2_QTYPE_EGRESS, CXGB4_BAR2_QTYPE_INGRESS };
  320. int cxgb4_bar2_sge_qregs(struct net_device *dev,
  321. unsigned int qid,
  322. enum cxgb4_bar2_qtype qtype,
  323. int user,
  324. u64 *pbar2_qoffset,
  325. unsigned int *pbar2_qid);
  326. #endif /* !__CXGB4_ULD_H */