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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Copyright (c) 2004 Mellanox Technologies Ltd. All rights reserved.
3 * Copyright (c) 2004 Infinicon Corporation. All rights reserved.
4 * Copyright (c) 2004 Intel Corporation. All rights reserved.
5 * Copyright (c) 2004 Topspin Corporation. All rights reserved.
6 * Copyright (c) 2004 Voltaire Corporation. All rights reserved.
Roland Dreiere2773c02005-07-07 17:57:10 -07007 * Copyright (c) 2005 Cisco Systems. All rights reserved.
Linus Torvalds1da177e2005-04-16 15:20:36 -07008 *
9 * This software is available to you under a choice of one of two
10 * licenses. You may choose to be licensed under the terms of the GNU
11 * General Public License (GPL) Version 2, available from the file
12 * COPYING in the main directory of this source tree, or the
13 * OpenIB.org BSD license below:
14 *
15 * Redistribution and use in source and binary forms, with or
16 * without modification, are permitted provided that the following
17 * conditions are met:
18 *
19 * - Redistributions of source code must retain the above
20 * copyright notice, this list of conditions and the following
21 * disclaimer.
22 *
23 * - Redistributions in binary form must reproduce the above
24 * copyright notice, this list of conditions and the following
25 * disclaimer in the documentation and/or other materials
26 * provided with the distribution.
27 *
28 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
29 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
30 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
31 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
32 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
33 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
34 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
35 * SOFTWARE.
36 *
37 * $Id: ib_verbs.h 1349 2004-12-16 21:09:43Z roland $
38 */
39
40#if !defined(IB_VERBS_H)
41#define IB_VERBS_H
42
43#include <linux/types.h>
44#include <linux/device.h>
Roland Dreiere2773c02005-07-07 17:57:10 -070045
Linus Torvalds1da177e2005-04-16 15:20:36 -070046#include <asm/atomic.h>
Roland Dreiere2773c02005-07-07 17:57:10 -070047#include <asm/scatterlist.h>
48#include <asm/uaccess.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070049
50union ib_gid {
51 u8 raw[16];
52 struct {
53 u64 subnet_prefix;
54 u64 interface_id;
55 } global;
56};
57
58enum ib_node_type {
59 IB_NODE_CA = 1,
60 IB_NODE_SWITCH,
61 IB_NODE_ROUTER
62};
63
64enum ib_device_cap_flags {
65 IB_DEVICE_RESIZE_MAX_WR = 1,
66 IB_DEVICE_BAD_PKEY_CNTR = (1<<1),
67 IB_DEVICE_BAD_QKEY_CNTR = (1<<2),
68 IB_DEVICE_RAW_MULTI = (1<<3),
69 IB_DEVICE_AUTO_PATH_MIG = (1<<4),
70 IB_DEVICE_CHANGE_PHY_PORT = (1<<5),
71 IB_DEVICE_UD_AV_PORT_ENFORCE = (1<<6),
72 IB_DEVICE_CURR_QP_STATE_MOD = (1<<7),
73 IB_DEVICE_SHUTDOWN_PORT = (1<<8),
74 IB_DEVICE_INIT_TYPE = (1<<9),
75 IB_DEVICE_PORT_ACTIVE_EVENT = (1<<10),
76 IB_DEVICE_SYS_IMAGE_GUID = (1<<11),
77 IB_DEVICE_RC_RNR_NAK_GEN = (1<<12),
78 IB_DEVICE_SRQ_RESIZE = (1<<13),
79 IB_DEVICE_N_NOTIFY_CQ = (1<<14),
80};
81
82enum ib_atomic_cap {
83 IB_ATOMIC_NONE,
84 IB_ATOMIC_HCA,
85 IB_ATOMIC_GLOB
86};
87
88struct ib_device_attr {
89 u64 fw_ver;
90 u64 node_guid;
91 u64 sys_image_guid;
92 u64 max_mr_size;
93 u64 page_size_cap;
94 u32 vendor_id;
95 u32 vendor_part_id;
96 u32 hw_ver;
97 int max_qp;
98 int max_qp_wr;
99 int device_cap_flags;
100 int max_sge;
101 int max_sge_rd;
102 int max_cq;
103 int max_cqe;
104 int max_mr;
105 int max_pd;
106 int max_qp_rd_atom;
107 int max_ee_rd_atom;
108 int max_res_rd_atom;
109 int max_qp_init_rd_atom;
110 int max_ee_init_rd_atom;
111 enum ib_atomic_cap atomic_cap;
112 int max_ee;
113 int max_rdd;
114 int max_mw;
115 int max_raw_ipv6_qp;
116 int max_raw_ethy_qp;
117 int max_mcast_grp;
118 int max_mcast_qp_attach;
119 int max_total_mcast_qp_attach;
120 int max_ah;
121 int max_fmr;
122 int max_map_per_fmr;
123 int max_srq;
124 int max_srq_wr;
125 int max_srq_sge;
126 u16 max_pkeys;
127 u8 local_ca_ack_delay;
128};
129
130enum ib_mtu {
131 IB_MTU_256 = 1,
132 IB_MTU_512 = 2,
133 IB_MTU_1024 = 3,
134 IB_MTU_2048 = 4,
135 IB_MTU_4096 = 5
136};
137
138static inline int ib_mtu_enum_to_int(enum ib_mtu mtu)
139{
140 switch (mtu) {
141 case IB_MTU_256: return 256;
142 case IB_MTU_512: return 512;
143 case IB_MTU_1024: return 1024;
144 case IB_MTU_2048: return 2048;
145 case IB_MTU_4096: return 4096;
146 default: return -1;
147 }
148}
149
150enum ib_port_state {
151 IB_PORT_NOP = 0,
152 IB_PORT_DOWN = 1,
153 IB_PORT_INIT = 2,
154 IB_PORT_ARMED = 3,
155 IB_PORT_ACTIVE = 4,
156 IB_PORT_ACTIVE_DEFER = 5
157};
158
159enum ib_port_cap_flags {
160 IB_PORT_SM = 1 << 1,
161 IB_PORT_NOTICE_SUP = 1 << 2,
162 IB_PORT_TRAP_SUP = 1 << 3,
163 IB_PORT_OPT_IPD_SUP = 1 << 4,
164 IB_PORT_AUTO_MIGR_SUP = 1 << 5,
165 IB_PORT_SL_MAP_SUP = 1 << 6,
166 IB_PORT_MKEY_NVRAM = 1 << 7,
167 IB_PORT_PKEY_NVRAM = 1 << 8,
168 IB_PORT_LED_INFO_SUP = 1 << 9,
169 IB_PORT_SM_DISABLED = 1 << 10,
170 IB_PORT_SYS_IMAGE_GUID_SUP = 1 << 11,
171 IB_PORT_PKEY_SW_EXT_PORT_TRAP_SUP = 1 << 12,
172 IB_PORT_CM_SUP = 1 << 16,
173 IB_PORT_SNMP_TUNNEL_SUP = 1 << 17,
174 IB_PORT_REINIT_SUP = 1 << 18,
175 IB_PORT_DEVICE_MGMT_SUP = 1 << 19,
176 IB_PORT_VENDOR_CLASS_SUP = 1 << 20,
177 IB_PORT_DR_NOTICE_SUP = 1 << 21,
178 IB_PORT_CAP_MASK_NOTICE_SUP = 1 << 22,
179 IB_PORT_BOOT_MGMT_SUP = 1 << 23,
180 IB_PORT_LINK_LATENCY_SUP = 1 << 24,
181 IB_PORT_CLIENT_REG_SUP = 1 << 25
182};
183
184enum ib_port_width {
185 IB_WIDTH_1X = 1,
186 IB_WIDTH_4X = 2,
187 IB_WIDTH_8X = 4,
188 IB_WIDTH_12X = 8
189};
190
191static inline int ib_width_enum_to_int(enum ib_port_width width)
192{
193 switch (width) {
194 case IB_WIDTH_1X: return 1;
195 case IB_WIDTH_4X: return 4;
196 case IB_WIDTH_8X: return 8;
197 case IB_WIDTH_12X: return 12;
198 default: return -1;
199 }
200}
201
202struct ib_port_attr {
203 enum ib_port_state state;
204 enum ib_mtu max_mtu;
205 enum ib_mtu active_mtu;
206 int gid_tbl_len;
207 u32 port_cap_flags;
208 u32 max_msg_sz;
209 u32 bad_pkey_cntr;
210 u32 qkey_viol_cntr;
211 u16 pkey_tbl_len;
212 u16 lid;
213 u16 sm_lid;
214 u8 lmc;
215 u8 max_vl_num;
216 u8 sm_sl;
217 u8 subnet_timeout;
218 u8 init_type_reply;
219 u8 active_width;
220 u8 active_speed;
221 u8 phys_state;
222};
223
224enum ib_device_modify_flags {
225 IB_DEVICE_MODIFY_SYS_IMAGE_GUID = 1
226};
227
228struct ib_device_modify {
229 u64 sys_image_guid;
230};
231
232enum ib_port_modify_flags {
233 IB_PORT_SHUTDOWN = 1,
234 IB_PORT_INIT_TYPE = (1<<2),
235 IB_PORT_RESET_QKEY_CNTR = (1<<3)
236};
237
238struct ib_port_modify {
239 u32 set_port_cap_mask;
240 u32 clr_port_cap_mask;
241 u8 init_type;
242};
243
244enum ib_event_type {
245 IB_EVENT_CQ_ERR,
246 IB_EVENT_QP_FATAL,
247 IB_EVENT_QP_REQ_ERR,
248 IB_EVENT_QP_ACCESS_ERR,
249 IB_EVENT_COMM_EST,
250 IB_EVENT_SQ_DRAINED,
251 IB_EVENT_PATH_MIG,
252 IB_EVENT_PATH_MIG_ERR,
253 IB_EVENT_DEVICE_FATAL,
254 IB_EVENT_PORT_ACTIVE,
255 IB_EVENT_PORT_ERR,
256 IB_EVENT_LID_CHANGE,
257 IB_EVENT_PKEY_CHANGE,
258 IB_EVENT_SM_CHANGE
259};
260
261struct ib_event {
262 struct ib_device *device;
263 union {
264 struct ib_cq *cq;
265 struct ib_qp *qp;
266 u8 port_num;
267 } element;
268 enum ib_event_type event;
269};
270
271struct ib_event_handler {
272 struct ib_device *device;
273 void (*handler)(struct ib_event_handler *, struct ib_event *);
274 struct list_head list;
275};
276
277#define INIT_IB_EVENT_HANDLER(_ptr, _device, _handler) \
278 do { \
279 (_ptr)->device = _device; \
280 (_ptr)->handler = _handler; \
281 INIT_LIST_HEAD(&(_ptr)->list); \
282 } while (0)
283
284struct ib_global_route {
285 union ib_gid dgid;
286 u32 flow_label;
287 u8 sgid_index;
288 u8 hop_limit;
289 u8 traffic_class;
290};
291
292enum {
293 IB_MULTICAST_QPN = 0xffffff
294};
295
296enum ib_ah_flags {
297 IB_AH_GRH = 1
298};
299
300struct ib_ah_attr {
301 struct ib_global_route grh;
302 u16 dlid;
303 u8 sl;
304 u8 src_path_bits;
305 u8 static_rate;
306 u8 ah_flags;
307 u8 port_num;
308};
309
310enum ib_wc_status {
311 IB_WC_SUCCESS,
312 IB_WC_LOC_LEN_ERR,
313 IB_WC_LOC_QP_OP_ERR,
314 IB_WC_LOC_EEC_OP_ERR,
315 IB_WC_LOC_PROT_ERR,
316 IB_WC_WR_FLUSH_ERR,
317 IB_WC_MW_BIND_ERR,
318 IB_WC_BAD_RESP_ERR,
319 IB_WC_LOC_ACCESS_ERR,
320 IB_WC_REM_INV_REQ_ERR,
321 IB_WC_REM_ACCESS_ERR,
322 IB_WC_REM_OP_ERR,
323 IB_WC_RETRY_EXC_ERR,
324 IB_WC_RNR_RETRY_EXC_ERR,
325 IB_WC_LOC_RDD_VIOL_ERR,
326 IB_WC_REM_INV_RD_REQ_ERR,
327 IB_WC_REM_ABORT_ERR,
328 IB_WC_INV_EECN_ERR,
329 IB_WC_INV_EEC_STATE_ERR,
330 IB_WC_FATAL_ERR,
331 IB_WC_RESP_TIMEOUT_ERR,
332 IB_WC_GENERAL_ERR
333};
334
335enum ib_wc_opcode {
336 IB_WC_SEND,
337 IB_WC_RDMA_WRITE,
338 IB_WC_RDMA_READ,
339 IB_WC_COMP_SWAP,
340 IB_WC_FETCH_ADD,
341 IB_WC_BIND_MW,
342/*
343 * Set value of IB_WC_RECV so consumers can test if a completion is a
344 * receive by testing (opcode & IB_WC_RECV).
345 */
346 IB_WC_RECV = 1 << 7,
347 IB_WC_RECV_RDMA_WITH_IMM
348};
349
350enum ib_wc_flags {
351 IB_WC_GRH = 1,
352 IB_WC_WITH_IMM = (1<<1)
353};
354
355struct ib_wc {
356 u64 wr_id;
357 enum ib_wc_status status;
358 enum ib_wc_opcode opcode;
359 u32 vendor_err;
360 u32 byte_len;
361 __be32 imm_data;
362 u32 qp_num;
363 u32 src_qp;
364 int wc_flags;
365 u16 pkey_index;
366 u16 slid;
367 u8 sl;
368 u8 dlid_path_bits;
369 u8 port_num; /* valid only for DR SMPs on switches */
370};
371
372enum ib_cq_notify {
373 IB_CQ_SOLICITED,
374 IB_CQ_NEXT_COMP
375};
376
377struct ib_qp_cap {
378 u32 max_send_wr;
379 u32 max_recv_wr;
380 u32 max_send_sge;
381 u32 max_recv_sge;
382 u32 max_inline_data;
383};
384
385enum ib_sig_type {
386 IB_SIGNAL_ALL_WR,
387 IB_SIGNAL_REQ_WR
388};
389
390enum ib_qp_type {
391 /*
392 * IB_QPT_SMI and IB_QPT_GSI have to be the first two entries
393 * here (and in that order) since the MAD layer uses them as
394 * indices into a 2-entry table.
395 */
396 IB_QPT_SMI,
397 IB_QPT_GSI,
398
399 IB_QPT_RC,
400 IB_QPT_UC,
401 IB_QPT_UD,
402 IB_QPT_RAW_IPV6,
403 IB_QPT_RAW_ETY
404};
405
406struct ib_qp_init_attr {
407 void (*event_handler)(struct ib_event *, void *);
408 void *qp_context;
409 struct ib_cq *send_cq;
410 struct ib_cq *recv_cq;
411 struct ib_srq *srq;
412 struct ib_qp_cap cap;
413 enum ib_sig_type sq_sig_type;
414 enum ib_qp_type qp_type;
415 u8 port_num; /* special QP types only */
416};
417
418enum ib_rnr_timeout {
419 IB_RNR_TIMER_655_36 = 0,
420 IB_RNR_TIMER_000_01 = 1,
421 IB_RNR_TIMER_000_02 = 2,
422 IB_RNR_TIMER_000_03 = 3,
423 IB_RNR_TIMER_000_04 = 4,
424 IB_RNR_TIMER_000_06 = 5,
425 IB_RNR_TIMER_000_08 = 6,
426 IB_RNR_TIMER_000_12 = 7,
427 IB_RNR_TIMER_000_16 = 8,
428 IB_RNR_TIMER_000_24 = 9,
429 IB_RNR_TIMER_000_32 = 10,
430 IB_RNR_TIMER_000_48 = 11,
431 IB_RNR_TIMER_000_64 = 12,
432 IB_RNR_TIMER_000_96 = 13,
433 IB_RNR_TIMER_001_28 = 14,
434 IB_RNR_TIMER_001_92 = 15,
435 IB_RNR_TIMER_002_56 = 16,
436 IB_RNR_TIMER_003_84 = 17,
437 IB_RNR_TIMER_005_12 = 18,
438 IB_RNR_TIMER_007_68 = 19,
439 IB_RNR_TIMER_010_24 = 20,
440 IB_RNR_TIMER_015_36 = 21,
441 IB_RNR_TIMER_020_48 = 22,
442 IB_RNR_TIMER_030_72 = 23,
443 IB_RNR_TIMER_040_96 = 24,
444 IB_RNR_TIMER_061_44 = 25,
445 IB_RNR_TIMER_081_92 = 26,
446 IB_RNR_TIMER_122_88 = 27,
447 IB_RNR_TIMER_163_84 = 28,
448 IB_RNR_TIMER_245_76 = 29,
449 IB_RNR_TIMER_327_68 = 30,
450 IB_RNR_TIMER_491_52 = 31
451};
452
453enum ib_qp_attr_mask {
454 IB_QP_STATE = 1,
455 IB_QP_CUR_STATE = (1<<1),
456 IB_QP_EN_SQD_ASYNC_NOTIFY = (1<<2),
457 IB_QP_ACCESS_FLAGS = (1<<3),
458 IB_QP_PKEY_INDEX = (1<<4),
459 IB_QP_PORT = (1<<5),
460 IB_QP_QKEY = (1<<6),
461 IB_QP_AV = (1<<7),
462 IB_QP_PATH_MTU = (1<<8),
463 IB_QP_TIMEOUT = (1<<9),
464 IB_QP_RETRY_CNT = (1<<10),
465 IB_QP_RNR_RETRY = (1<<11),
466 IB_QP_RQ_PSN = (1<<12),
467 IB_QP_MAX_QP_RD_ATOMIC = (1<<13),
468 IB_QP_ALT_PATH = (1<<14),
469 IB_QP_MIN_RNR_TIMER = (1<<15),
470 IB_QP_SQ_PSN = (1<<16),
471 IB_QP_MAX_DEST_RD_ATOMIC = (1<<17),
472 IB_QP_PATH_MIG_STATE = (1<<18),
473 IB_QP_CAP = (1<<19),
474 IB_QP_DEST_QPN = (1<<20)
475};
476
477enum ib_qp_state {
478 IB_QPS_RESET,
479 IB_QPS_INIT,
480 IB_QPS_RTR,
481 IB_QPS_RTS,
482 IB_QPS_SQD,
483 IB_QPS_SQE,
484 IB_QPS_ERR
485};
486
487enum ib_mig_state {
488 IB_MIG_MIGRATED,
489 IB_MIG_REARM,
490 IB_MIG_ARMED
491};
492
493struct ib_qp_attr {
494 enum ib_qp_state qp_state;
495 enum ib_qp_state cur_qp_state;
496 enum ib_mtu path_mtu;
497 enum ib_mig_state path_mig_state;
498 u32 qkey;
499 u32 rq_psn;
500 u32 sq_psn;
501 u32 dest_qp_num;
502 int qp_access_flags;
503 struct ib_qp_cap cap;
504 struct ib_ah_attr ah_attr;
505 struct ib_ah_attr alt_ah_attr;
506 u16 pkey_index;
507 u16 alt_pkey_index;
508 u8 en_sqd_async_notify;
509 u8 sq_draining;
510 u8 max_rd_atomic;
511 u8 max_dest_rd_atomic;
512 u8 min_rnr_timer;
513 u8 port_num;
514 u8 timeout;
515 u8 retry_cnt;
516 u8 rnr_retry;
517 u8 alt_port_num;
518 u8 alt_timeout;
519};
520
521enum ib_wr_opcode {
522 IB_WR_RDMA_WRITE,
523 IB_WR_RDMA_WRITE_WITH_IMM,
524 IB_WR_SEND,
525 IB_WR_SEND_WITH_IMM,
526 IB_WR_RDMA_READ,
527 IB_WR_ATOMIC_CMP_AND_SWP,
528 IB_WR_ATOMIC_FETCH_AND_ADD
529};
530
531enum ib_send_flags {
532 IB_SEND_FENCE = 1,
533 IB_SEND_SIGNALED = (1<<1),
534 IB_SEND_SOLICITED = (1<<2),
535 IB_SEND_INLINE = (1<<3)
536};
537
538struct ib_sge {
539 u64 addr;
540 u32 length;
541 u32 lkey;
542};
543
544struct ib_send_wr {
545 struct ib_send_wr *next;
546 u64 wr_id;
547 struct ib_sge *sg_list;
548 int num_sge;
549 enum ib_wr_opcode opcode;
550 int send_flags;
Roland Dreiere2773c02005-07-07 17:57:10 -0700551 __be32 imm_data;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700552 union {
553 struct {
554 u64 remote_addr;
555 u32 rkey;
556 } rdma;
557 struct {
558 u64 remote_addr;
559 u64 compare_add;
560 u64 swap;
561 u32 rkey;
562 } atomic;
563 struct {
564 struct ib_ah *ah;
565 struct ib_mad_hdr *mad_hdr;
566 u32 remote_qpn;
567 u32 remote_qkey;
568 int timeout_ms; /* valid for MADs only */
569 u16 pkey_index; /* valid for GSI only */
570 u8 port_num; /* valid for DR SMPs on switch only */
571 } ud;
572 } wr;
573};
574
575struct ib_recv_wr {
576 struct ib_recv_wr *next;
577 u64 wr_id;
578 struct ib_sge *sg_list;
579 int num_sge;
580};
581
582enum ib_access_flags {
583 IB_ACCESS_LOCAL_WRITE = 1,
584 IB_ACCESS_REMOTE_WRITE = (1<<1),
585 IB_ACCESS_REMOTE_READ = (1<<2),
586 IB_ACCESS_REMOTE_ATOMIC = (1<<3),
587 IB_ACCESS_MW_BIND = (1<<4)
588};
589
590struct ib_phys_buf {
591 u64 addr;
592 u64 size;
593};
594
595struct ib_mr_attr {
596 struct ib_pd *pd;
597 u64 device_virt_addr;
598 u64 size;
599 int mr_access_flags;
600 u32 lkey;
601 u32 rkey;
602};
603
604enum ib_mr_rereg_flags {
605 IB_MR_REREG_TRANS = 1,
606 IB_MR_REREG_PD = (1<<1),
607 IB_MR_REREG_ACCESS = (1<<2)
608};
609
610struct ib_mw_bind {
611 struct ib_mr *mr;
612 u64 wr_id;
613 u64 addr;
614 u32 length;
615 int send_flags;
616 int mw_access_flags;
617};
618
619struct ib_fmr_attr {
620 int max_pages;
621 int max_maps;
622 u8 page_size;
623};
624
Roland Dreiere2773c02005-07-07 17:57:10 -0700625struct ib_ucontext {
626 struct ib_device *device;
627 struct list_head pd_list;
628 struct list_head mr_list;
629 struct list_head mw_list;
630 struct list_head cq_list;
631 struct list_head qp_list;
632 struct list_head srq_list;
633 struct list_head ah_list;
634 spinlock_t lock;
635};
636
637struct ib_uobject {
638 u64 user_handle; /* handle given to us by userspace */
639 struct ib_ucontext *context; /* associated user context */
640 struct list_head list; /* link to context's list */
641 u32 id; /* index into kernel idr */
642};
643
644struct ib_umem {
645 unsigned long user_base;
646 unsigned long virt_base;
647 size_t length;
648 int offset;
649 int page_size;
650 int writable;
651 struct list_head chunk_list;
652};
653
654struct ib_umem_chunk {
655 struct list_head list;
656 int nents;
657 int nmap;
658 struct scatterlist page_list[0];
659};
660
661struct ib_udata {
662 void __user *inbuf;
663 void __user *outbuf;
664 size_t inlen;
665 size_t outlen;
666};
667
668#define IB_UMEM_MAX_PAGE_CHUNK \
669 ((PAGE_SIZE - offsetof(struct ib_umem_chunk, page_list)) / \
670 ((void *) &((struct ib_umem_chunk *) 0)->page_list[1] - \
671 (void *) &((struct ib_umem_chunk *) 0)->page_list[0]))
672
673struct ib_umem_object {
674 struct ib_uobject uobject;
675 struct ib_umem umem;
676};
677
Linus Torvalds1da177e2005-04-16 15:20:36 -0700678struct ib_pd {
Roland Dreiere2773c02005-07-07 17:57:10 -0700679 struct ib_device *device;
680 struct ib_uobject *uobject;
681 atomic_t usecnt; /* count all resources */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700682};
683
684struct ib_ah {
685 struct ib_device *device;
686 struct ib_pd *pd;
Roland Dreiere2773c02005-07-07 17:57:10 -0700687 struct ib_uobject *uobject;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700688};
689
690typedef void (*ib_comp_handler)(struct ib_cq *cq, void *cq_context);
691
692struct ib_cq {
Roland Dreiere2773c02005-07-07 17:57:10 -0700693 struct ib_device *device;
694 struct ib_uobject *uobject;
695 ib_comp_handler comp_handler;
696 void (*event_handler)(struct ib_event *, void *);
697 void * cq_context;
698 int cqe;
699 atomic_t usecnt; /* count number of work queues */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700700};
701
702struct ib_srq {
703 struct ib_device *device;
Roland Dreiere2773c02005-07-07 17:57:10 -0700704 struct ib_uobject *uobject;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700705 struct ib_pd *pd;
706 void *srq_context;
707 atomic_t usecnt;
708};
709
710struct ib_qp {
711 struct ib_device *device;
712 struct ib_pd *pd;
713 struct ib_cq *send_cq;
714 struct ib_cq *recv_cq;
715 struct ib_srq *srq;
Roland Dreiere2773c02005-07-07 17:57:10 -0700716 struct ib_uobject *uobject;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700717 void (*event_handler)(struct ib_event *, void *);
718 void *qp_context;
719 u32 qp_num;
720 enum ib_qp_type qp_type;
721};
722
723struct ib_mr {
Roland Dreiere2773c02005-07-07 17:57:10 -0700724 struct ib_device *device;
725 struct ib_pd *pd;
726 struct ib_uobject *uobject;
727 u32 lkey;
728 u32 rkey;
729 atomic_t usecnt; /* count number of MWs */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700730};
731
732struct ib_mw {
733 struct ib_device *device;
734 struct ib_pd *pd;
Roland Dreiere2773c02005-07-07 17:57:10 -0700735 struct ib_uobject *uobject;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700736 u32 rkey;
737};
738
739struct ib_fmr {
740 struct ib_device *device;
741 struct ib_pd *pd;
742 struct list_head list;
743 u32 lkey;
744 u32 rkey;
745};
746
747struct ib_mad;
748struct ib_grh;
749
750enum ib_process_mad_flags {
751 IB_MAD_IGNORE_MKEY = 1,
752 IB_MAD_IGNORE_BKEY = 2,
753 IB_MAD_IGNORE_ALL = IB_MAD_IGNORE_MKEY | IB_MAD_IGNORE_BKEY
754};
755
756enum ib_mad_result {
757 IB_MAD_RESULT_FAILURE = 0, /* (!SUCCESS is the important flag) */
758 IB_MAD_RESULT_SUCCESS = 1 << 0, /* MAD was successfully processed */
759 IB_MAD_RESULT_REPLY = 1 << 1, /* Reply packet needs to be sent */
760 IB_MAD_RESULT_CONSUMED = 1 << 2 /* Packet consumed: stop processing */
761};
762
763#define IB_DEVICE_NAME_MAX 64
764
765struct ib_cache {
766 rwlock_t lock;
767 struct ib_event_handler event_handler;
768 struct ib_pkey_cache **pkey_cache;
769 struct ib_gid_cache **gid_cache;
770};
771
772struct ib_device {
773 struct device *dma_device;
774
775 char name[IB_DEVICE_NAME_MAX];
776
777 struct list_head event_handler_list;
778 spinlock_t event_handler_lock;
779
780 struct list_head core_list;
781 struct list_head client_data_list;
782 spinlock_t client_data_lock;
783
784 struct ib_cache cache;
785
786 u32 flags;
787
788 int (*query_device)(struct ib_device *device,
789 struct ib_device_attr *device_attr);
790 int (*query_port)(struct ib_device *device,
791 u8 port_num,
792 struct ib_port_attr *port_attr);
793 int (*query_gid)(struct ib_device *device,
794 u8 port_num, int index,
795 union ib_gid *gid);
796 int (*query_pkey)(struct ib_device *device,
797 u8 port_num, u16 index, u16 *pkey);
798 int (*modify_device)(struct ib_device *device,
799 int device_modify_mask,
800 struct ib_device_modify *device_modify);
801 int (*modify_port)(struct ib_device *device,
802 u8 port_num, int port_modify_mask,
803 struct ib_port_modify *port_modify);
Roland Dreiere2773c02005-07-07 17:57:10 -0700804 struct ib_ucontext * (*alloc_ucontext)(struct ib_device *device,
805 struct ib_udata *udata);
806 int (*dealloc_ucontext)(struct ib_ucontext *context);
807 int (*mmap)(struct ib_ucontext *context,
808 struct vm_area_struct *vma);
809 struct ib_pd * (*alloc_pd)(struct ib_device *device,
810 struct ib_ucontext *context,
811 struct ib_udata *udata);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700812 int (*dealloc_pd)(struct ib_pd *pd);
813 struct ib_ah * (*create_ah)(struct ib_pd *pd,
814 struct ib_ah_attr *ah_attr);
815 int (*modify_ah)(struct ib_ah *ah,
816 struct ib_ah_attr *ah_attr);
817 int (*query_ah)(struct ib_ah *ah,
818 struct ib_ah_attr *ah_attr);
819 int (*destroy_ah)(struct ib_ah *ah);
820 struct ib_qp * (*create_qp)(struct ib_pd *pd,
Roland Dreiere2773c02005-07-07 17:57:10 -0700821 struct ib_qp_init_attr *qp_init_attr,
822 struct ib_udata *udata);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700823 int (*modify_qp)(struct ib_qp *qp,
824 struct ib_qp_attr *qp_attr,
825 int qp_attr_mask);
826 int (*query_qp)(struct ib_qp *qp,
827 struct ib_qp_attr *qp_attr,
828 int qp_attr_mask,
829 struct ib_qp_init_attr *qp_init_attr);
830 int (*destroy_qp)(struct ib_qp *qp);
831 int (*post_send)(struct ib_qp *qp,
832 struct ib_send_wr *send_wr,
833 struct ib_send_wr **bad_send_wr);
834 int (*post_recv)(struct ib_qp *qp,
835 struct ib_recv_wr *recv_wr,
836 struct ib_recv_wr **bad_recv_wr);
Roland Dreiere2773c02005-07-07 17:57:10 -0700837 struct ib_cq * (*create_cq)(struct ib_device *device, int cqe,
838 struct ib_ucontext *context,
839 struct ib_udata *udata);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700840 int (*destroy_cq)(struct ib_cq *cq);
841 int (*resize_cq)(struct ib_cq *cq, int *cqe);
842 int (*poll_cq)(struct ib_cq *cq, int num_entries,
843 struct ib_wc *wc);
844 int (*peek_cq)(struct ib_cq *cq, int wc_cnt);
845 int (*req_notify_cq)(struct ib_cq *cq,
846 enum ib_cq_notify cq_notify);
847 int (*req_ncomp_notif)(struct ib_cq *cq,
848 int wc_cnt);
849 struct ib_mr * (*get_dma_mr)(struct ib_pd *pd,
850 int mr_access_flags);
851 struct ib_mr * (*reg_phys_mr)(struct ib_pd *pd,
852 struct ib_phys_buf *phys_buf_array,
853 int num_phys_buf,
854 int mr_access_flags,
855 u64 *iova_start);
Roland Dreiere2773c02005-07-07 17:57:10 -0700856 struct ib_mr * (*reg_user_mr)(struct ib_pd *pd,
857 struct ib_umem *region,
858 int mr_access_flags,
859 struct ib_udata *udata);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700860 int (*query_mr)(struct ib_mr *mr,
861 struct ib_mr_attr *mr_attr);
862 int (*dereg_mr)(struct ib_mr *mr);
863 int (*rereg_phys_mr)(struct ib_mr *mr,
864 int mr_rereg_mask,
865 struct ib_pd *pd,
866 struct ib_phys_buf *phys_buf_array,
867 int num_phys_buf,
868 int mr_access_flags,
869 u64 *iova_start);
870 struct ib_mw * (*alloc_mw)(struct ib_pd *pd);
871 int (*bind_mw)(struct ib_qp *qp,
872 struct ib_mw *mw,
873 struct ib_mw_bind *mw_bind);
874 int (*dealloc_mw)(struct ib_mw *mw);
875 struct ib_fmr * (*alloc_fmr)(struct ib_pd *pd,
876 int mr_access_flags,
877 struct ib_fmr_attr *fmr_attr);
878 int (*map_phys_fmr)(struct ib_fmr *fmr,
879 u64 *page_list, int list_len,
880 u64 iova);
881 int (*unmap_fmr)(struct list_head *fmr_list);
882 int (*dealloc_fmr)(struct ib_fmr *fmr);
883 int (*attach_mcast)(struct ib_qp *qp,
884 union ib_gid *gid,
885 u16 lid);
886 int (*detach_mcast)(struct ib_qp *qp,
887 union ib_gid *gid,
888 u16 lid);
889 int (*process_mad)(struct ib_device *device,
890 int process_mad_flags,
891 u8 port_num,
892 struct ib_wc *in_wc,
893 struct ib_grh *in_grh,
894 struct ib_mad *in_mad,
895 struct ib_mad *out_mad);
896
Roland Dreiere2773c02005-07-07 17:57:10 -0700897 struct module *owner;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700898 struct class_device class_dev;
899 struct kobject ports_parent;
900 struct list_head port_list;
901
902 enum {
903 IB_DEV_UNINITIALIZED,
904 IB_DEV_REGISTERED,
905 IB_DEV_UNREGISTERED
906 } reg_state;
907
908 u8 node_type;
909 u8 phys_port_cnt;
910};
911
912struct ib_client {
913 char *name;
914 void (*add) (struct ib_device *);
915 void (*remove)(struct ib_device *);
916
917 struct list_head list;
918};
919
920struct ib_device *ib_alloc_device(size_t size);
921void ib_dealloc_device(struct ib_device *device);
922
923int ib_register_device (struct ib_device *device);
924void ib_unregister_device(struct ib_device *device);
925
926int ib_register_client (struct ib_client *client);
927void ib_unregister_client(struct ib_client *client);
928
929void *ib_get_client_data(struct ib_device *device, struct ib_client *client);
930void ib_set_client_data(struct ib_device *device, struct ib_client *client,
931 void *data);
932
Roland Dreiere2773c02005-07-07 17:57:10 -0700933static inline int ib_copy_from_udata(void *dest, struct ib_udata *udata, size_t len)
934{
935 return copy_from_user(dest, udata->inbuf, len) ? -EFAULT : 0;
936}
937
938static inline int ib_copy_to_udata(struct ib_udata *udata, void *src, size_t len)
939{
940 return copy_to_user(udata->outbuf, src, len) ? -EFAULT : 0;
941}
942
Linus Torvalds1da177e2005-04-16 15:20:36 -0700943int ib_register_event_handler (struct ib_event_handler *event_handler);
944int ib_unregister_event_handler(struct ib_event_handler *event_handler);
945void ib_dispatch_event(struct ib_event *event);
946
947int ib_query_device(struct ib_device *device,
948 struct ib_device_attr *device_attr);
949
950int ib_query_port(struct ib_device *device,
951 u8 port_num, struct ib_port_attr *port_attr);
952
953int ib_query_gid(struct ib_device *device,
954 u8 port_num, int index, union ib_gid *gid);
955
956int ib_query_pkey(struct ib_device *device,
957 u8 port_num, u16 index, u16 *pkey);
958
959int ib_modify_device(struct ib_device *device,
960 int device_modify_mask,
961 struct ib_device_modify *device_modify);
962
963int ib_modify_port(struct ib_device *device,
964 u8 port_num, int port_modify_mask,
965 struct ib_port_modify *port_modify);
966
967/**
968 * ib_alloc_pd - Allocates an unused protection domain.
969 * @device: The device on which to allocate the protection domain.
970 *
971 * A protection domain object provides an association between QPs, shared
972 * receive queues, address handles, memory regions, and memory windows.
973 */
974struct ib_pd *ib_alloc_pd(struct ib_device *device);
975
976/**
977 * ib_dealloc_pd - Deallocates a protection domain.
978 * @pd: The protection domain to deallocate.
979 */
980int ib_dealloc_pd(struct ib_pd *pd);
981
982/**
983 * ib_create_ah - Creates an address handle for the given address vector.
984 * @pd: The protection domain associated with the address handle.
985 * @ah_attr: The attributes of the address vector.
986 *
987 * The address handle is used to reference a local or global destination
988 * in all UD QP post sends.
989 */
990struct ib_ah *ib_create_ah(struct ib_pd *pd, struct ib_ah_attr *ah_attr);
991
992/**
993 * ib_modify_ah - Modifies the address vector associated with an address
994 * handle.
995 * @ah: The address handle to modify.
996 * @ah_attr: The new address vector attributes to associate with the
997 * address handle.
998 */
999int ib_modify_ah(struct ib_ah *ah, struct ib_ah_attr *ah_attr);
1000
1001/**
1002 * ib_query_ah - Queries the address vector associated with an address
1003 * handle.
1004 * @ah: The address handle to query.
1005 * @ah_attr: The address vector attributes associated with the address
1006 * handle.
1007 */
1008int ib_query_ah(struct ib_ah *ah, struct ib_ah_attr *ah_attr);
1009
1010/**
1011 * ib_destroy_ah - Destroys an address handle.
1012 * @ah: The address handle to destroy.
1013 */
1014int ib_destroy_ah(struct ib_ah *ah);
1015
1016/**
1017 * ib_create_qp - Creates a QP associated with the specified protection
1018 * domain.
1019 * @pd: The protection domain associated with the QP.
1020 * @qp_init_attr: A list of initial attributes required to create the QP.
1021 */
1022struct ib_qp *ib_create_qp(struct ib_pd *pd,
1023 struct ib_qp_init_attr *qp_init_attr);
1024
1025/**
1026 * ib_modify_qp - Modifies the attributes for the specified QP and then
1027 * transitions the QP to the given state.
1028 * @qp: The QP to modify.
1029 * @qp_attr: On input, specifies the QP attributes to modify. On output,
1030 * the current values of selected QP attributes are returned.
1031 * @qp_attr_mask: A bit-mask used to specify which attributes of the QP
1032 * are being modified.
1033 */
1034int ib_modify_qp(struct ib_qp *qp,
1035 struct ib_qp_attr *qp_attr,
1036 int qp_attr_mask);
1037
1038/**
1039 * ib_query_qp - Returns the attribute list and current values for the
1040 * specified QP.
1041 * @qp: The QP to query.
1042 * @qp_attr: The attributes of the specified QP.
1043 * @qp_attr_mask: A bit-mask used to select specific attributes to query.
1044 * @qp_init_attr: Additional attributes of the selected QP.
1045 *
1046 * The qp_attr_mask may be used to limit the query to gathering only the
1047 * selected attributes.
1048 */
1049int ib_query_qp(struct ib_qp *qp,
1050 struct ib_qp_attr *qp_attr,
1051 int qp_attr_mask,
1052 struct ib_qp_init_attr *qp_init_attr);
1053
1054/**
1055 * ib_destroy_qp - Destroys the specified QP.
1056 * @qp: The QP to destroy.
1057 */
1058int ib_destroy_qp(struct ib_qp *qp);
1059
1060/**
1061 * ib_post_send - Posts a list of work requests to the send queue of
1062 * the specified QP.
1063 * @qp: The QP to post the work request on.
1064 * @send_wr: A list of work requests to post on the send queue.
1065 * @bad_send_wr: On an immediate failure, this parameter will reference
1066 * the work request that failed to be posted on the QP.
1067 */
1068static inline int ib_post_send(struct ib_qp *qp,
1069 struct ib_send_wr *send_wr,
1070 struct ib_send_wr **bad_send_wr)
1071{
1072 return qp->device->post_send(qp, send_wr, bad_send_wr);
1073}
1074
1075/**
1076 * ib_post_recv - Posts a list of work requests to the receive queue of
1077 * the specified QP.
1078 * @qp: The QP to post the work request on.
1079 * @recv_wr: A list of work requests to post on the receive queue.
1080 * @bad_recv_wr: On an immediate failure, this parameter will reference
1081 * the work request that failed to be posted on the QP.
1082 */
1083static inline int ib_post_recv(struct ib_qp *qp,
1084 struct ib_recv_wr *recv_wr,
1085 struct ib_recv_wr **bad_recv_wr)
1086{
1087 return qp->device->post_recv(qp, recv_wr, bad_recv_wr);
1088}
1089
1090/**
1091 * ib_create_cq - Creates a CQ on the specified device.
1092 * @device: The device on which to create the CQ.
1093 * @comp_handler: A user-specified callback that is invoked when a
1094 * completion event occurs on the CQ.
1095 * @event_handler: A user-specified callback that is invoked when an
1096 * asynchronous event not associated with a completion occurs on the CQ.
1097 * @cq_context: Context associated with the CQ returned to the user via
1098 * the associated completion and event handlers.
1099 * @cqe: The minimum size of the CQ.
1100 *
1101 * Users can examine the cq structure to determine the actual CQ size.
1102 */
1103struct ib_cq *ib_create_cq(struct ib_device *device,
1104 ib_comp_handler comp_handler,
1105 void (*event_handler)(struct ib_event *, void *),
1106 void *cq_context, int cqe);
1107
1108/**
1109 * ib_resize_cq - Modifies the capacity of the CQ.
1110 * @cq: The CQ to resize.
1111 * @cqe: The minimum size of the CQ.
1112 *
1113 * Users can examine the cq structure to determine the actual CQ size.
1114 */
1115int ib_resize_cq(struct ib_cq *cq, int cqe);
1116
1117/**
1118 * ib_destroy_cq - Destroys the specified CQ.
1119 * @cq: The CQ to destroy.
1120 */
1121int ib_destroy_cq(struct ib_cq *cq);
1122
1123/**
1124 * ib_poll_cq - poll a CQ for completion(s)
1125 * @cq:the CQ being polled
1126 * @num_entries:maximum number of completions to return
1127 * @wc:array of at least @num_entries &struct ib_wc where completions
1128 * will be returned
1129 *
1130 * Poll a CQ for (possibly multiple) completions. If the return value
1131 * is < 0, an error occurred. If the return value is >= 0, it is the
1132 * number of completions returned. If the return value is
1133 * non-negative and < num_entries, then the CQ was emptied.
1134 */
1135static inline int ib_poll_cq(struct ib_cq *cq, int num_entries,
1136 struct ib_wc *wc)
1137{
1138 return cq->device->poll_cq(cq, num_entries, wc);
1139}
1140
1141/**
1142 * ib_peek_cq - Returns the number of unreaped completions currently
1143 * on the specified CQ.
1144 * @cq: The CQ to peek.
1145 * @wc_cnt: A minimum number of unreaped completions to check for.
1146 *
1147 * If the number of unreaped completions is greater than or equal to wc_cnt,
1148 * this function returns wc_cnt, otherwise, it returns the actual number of
1149 * unreaped completions.
1150 */
1151int ib_peek_cq(struct ib_cq *cq, int wc_cnt);
1152
1153/**
1154 * ib_req_notify_cq - Request completion notification on a CQ.
1155 * @cq: The CQ to generate an event for.
1156 * @cq_notify: If set to %IB_CQ_SOLICITED, completion notification will
1157 * occur on the next solicited event. If set to %IB_CQ_NEXT_COMP,
1158 * notification will occur on the next completion.
1159 */
1160static inline int ib_req_notify_cq(struct ib_cq *cq,
1161 enum ib_cq_notify cq_notify)
1162{
1163 return cq->device->req_notify_cq(cq, cq_notify);
1164}
1165
1166/**
1167 * ib_req_ncomp_notif - Request completion notification when there are
1168 * at least the specified number of unreaped completions on the CQ.
1169 * @cq: The CQ to generate an event for.
1170 * @wc_cnt: The number of unreaped completions that should be on the
1171 * CQ before an event is generated.
1172 */
1173static inline int ib_req_ncomp_notif(struct ib_cq *cq, int wc_cnt)
1174{
1175 return cq->device->req_ncomp_notif ?
1176 cq->device->req_ncomp_notif(cq, wc_cnt) :
1177 -ENOSYS;
1178}
1179
1180/**
1181 * ib_get_dma_mr - Returns a memory region for system memory that is
1182 * usable for DMA.
1183 * @pd: The protection domain associated with the memory region.
1184 * @mr_access_flags: Specifies the memory access rights.
1185 */
1186struct ib_mr *ib_get_dma_mr(struct ib_pd *pd, int mr_access_flags);
1187
1188/**
1189 * ib_reg_phys_mr - Prepares a virtually addressed memory region for use
1190 * by an HCA.
1191 * @pd: The protection domain associated assigned to the registered region.
1192 * @phys_buf_array: Specifies a list of physical buffers to use in the
1193 * memory region.
1194 * @num_phys_buf: Specifies the size of the phys_buf_array.
1195 * @mr_access_flags: Specifies the memory access rights.
1196 * @iova_start: The offset of the region's starting I/O virtual address.
1197 */
1198struct ib_mr *ib_reg_phys_mr(struct ib_pd *pd,
1199 struct ib_phys_buf *phys_buf_array,
1200 int num_phys_buf,
1201 int mr_access_flags,
1202 u64 *iova_start);
1203
1204/**
1205 * ib_rereg_phys_mr - Modifies the attributes of an existing memory region.
1206 * Conceptually, this call performs the functions deregister memory region
1207 * followed by register physical memory region. Where possible,
1208 * resources are reused instead of deallocated and reallocated.
1209 * @mr: The memory region to modify.
1210 * @mr_rereg_mask: A bit-mask used to indicate which of the following
1211 * properties of the memory region are being modified.
1212 * @pd: If %IB_MR_REREG_PD is set in mr_rereg_mask, this field specifies
1213 * the new protection domain to associated with the memory region,
1214 * otherwise, this parameter is ignored.
1215 * @phys_buf_array: If %IB_MR_REREG_TRANS is set in mr_rereg_mask, this
1216 * field specifies a list of physical buffers to use in the new
1217 * translation, otherwise, this parameter is ignored.
1218 * @num_phys_buf: If %IB_MR_REREG_TRANS is set in mr_rereg_mask, this
1219 * field specifies the size of the phys_buf_array, otherwise, this
1220 * parameter is ignored.
1221 * @mr_access_flags: If %IB_MR_REREG_ACCESS is set in mr_rereg_mask, this
1222 * field specifies the new memory access rights, otherwise, this
1223 * parameter is ignored.
1224 * @iova_start: The offset of the region's starting I/O virtual address.
1225 */
1226int ib_rereg_phys_mr(struct ib_mr *mr,
1227 int mr_rereg_mask,
1228 struct ib_pd *pd,
1229 struct ib_phys_buf *phys_buf_array,
1230 int num_phys_buf,
1231 int mr_access_flags,
1232 u64 *iova_start);
1233
1234/**
1235 * ib_query_mr - Retrieves information about a specific memory region.
1236 * @mr: The memory region to retrieve information about.
1237 * @mr_attr: The attributes of the specified memory region.
1238 */
1239int ib_query_mr(struct ib_mr *mr, struct ib_mr_attr *mr_attr);
1240
1241/**
1242 * ib_dereg_mr - Deregisters a memory region and removes it from the
1243 * HCA translation table.
1244 * @mr: The memory region to deregister.
1245 */
1246int ib_dereg_mr(struct ib_mr *mr);
1247
1248/**
1249 * ib_alloc_mw - Allocates a memory window.
1250 * @pd: The protection domain associated with the memory window.
1251 */
1252struct ib_mw *ib_alloc_mw(struct ib_pd *pd);
1253
1254/**
1255 * ib_bind_mw - Posts a work request to the send queue of the specified
1256 * QP, which binds the memory window to the given address range and
1257 * remote access attributes.
1258 * @qp: QP to post the bind work request on.
1259 * @mw: The memory window to bind.
1260 * @mw_bind: Specifies information about the memory window, including
1261 * its address range, remote access rights, and associated memory region.
1262 */
1263static inline int ib_bind_mw(struct ib_qp *qp,
1264 struct ib_mw *mw,
1265 struct ib_mw_bind *mw_bind)
1266{
1267 /* XXX reference counting in corresponding MR? */
1268 return mw->device->bind_mw ?
1269 mw->device->bind_mw(qp, mw, mw_bind) :
1270 -ENOSYS;
1271}
1272
1273/**
1274 * ib_dealloc_mw - Deallocates a memory window.
1275 * @mw: The memory window to deallocate.
1276 */
1277int ib_dealloc_mw(struct ib_mw *mw);
1278
1279/**
1280 * ib_alloc_fmr - Allocates a unmapped fast memory region.
1281 * @pd: The protection domain associated with the unmapped region.
1282 * @mr_access_flags: Specifies the memory access rights.
1283 * @fmr_attr: Attributes of the unmapped region.
1284 *
1285 * A fast memory region must be mapped before it can be used as part of
1286 * a work request.
1287 */
1288struct ib_fmr *ib_alloc_fmr(struct ib_pd *pd,
1289 int mr_access_flags,
1290 struct ib_fmr_attr *fmr_attr);
1291
1292/**
1293 * ib_map_phys_fmr - Maps a list of physical pages to a fast memory region.
1294 * @fmr: The fast memory region to associate with the pages.
1295 * @page_list: An array of physical pages to map to the fast memory region.
1296 * @list_len: The number of pages in page_list.
1297 * @iova: The I/O virtual address to use with the mapped region.
1298 */
1299static inline int ib_map_phys_fmr(struct ib_fmr *fmr,
1300 u64 *page_list, int list_len,
1301 u64 iova)
1302{
1303 return fmr->device->map_phys_fmr(fmr, page_list, list_len, iova);
1304}
1305
1306/**
1307 * ib_unmap_fmr - Removes the mapping from a list of fast memory regions.
1308 * @fmr_list: A linked list of fast memory regions to unmap.
1309 */
1310int ib_unmap_fmr(struct list_head *fmr_list);
1311
1312/**
1313 * ib_dealloc_fmr - Deallocates a fast memory region.
1314 * @fmr: The fast memory region to deallocate.
1315 */
1316int ib_dealloc_fmr(struct ib_fmr *fmr);
1317
1318/**
1319 * ib_attach_mcast - Attaches the specified QP to a multicast group.
1320 * @qp: QP to attach to the multicast group. The QP must be type
1321 * IB_QPT_UD.
1322 * @gid: Multicast group GID.
1323 * @lid: Multicast group LID in host byte order.
1324 *
1325 * In order to send and receive multicast packets, subnet
1326 * administration must have created the multicast group and configured
1327 * the fabric appropriately. The port associated with the specified
1328 * QP must also be a member of the multicast group.
1329 */
1330int ib_attach_mcast(struct ib_qp *qp, union ib_gid *gid, u16 lid);
1331
1332/**
1333 * ib_detach_mcast - Detaches the specified QP from a multicast group.
1334 * @qp: QP to detach from the multicast group.
1335 * @gid: Multicast group GID.
1336 * @lid: Multicast group LID in host byte order.
1337 */
1338int ib_detach_mcast(struct ib_qp *qp, union ib_gid *gid, u16 lid);
1339
1340#endif /* IB_VERBS_H */