Merge tag 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/dledford/rdma
[linux-2.6-block.git] / drivers / infiniband / hw / qib / qib_verbs.h
CommitLineData
f931551b 1/*
1dd173b0 2 * Copyright (c) 2012, 2013 Intel Corporation. All rights reserved.
1fb9fed6 3 * Copyright (c) 2006 - 2012 QLogic Corporation. All rights reserved.
f931551b
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4 * Copyright (c) 2005, 2006 PathScale, 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
35#ifndef QIB_VERBS_H
36#define QIB_VERBS_H
37
38#include <linux/types.h>
39#include <linux/spinlock.h>
40#include <linux/kernel.h>
41#include <linux/interrupt.h>
42#include <linux/kref.h>
43#include <linux/workqueue.h>
85caafe3 44#include <linux/kthread.h>
6a82649f 45#include <linux/completion.h>
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46#include <rdma/ib_pack.h>
47#include <rdma/ib_user_verbs.h>
48
49struct qib_ctxtdata;
50struct qib_pportdata;
51struct qib_devdata;
52struct qib_verbs_txreq;
53
54#define QIB_MAX_RDMA_ATOMIC 16
55#define QIB_GUIDS_PER_PORT 5
56
57#define QPN_MAX (1 << 24)
58#define QPNMAP_ENTRIES (QPN_MAX / PAGE_SIZE / BITS_PER_BYTE)
59
60/*
61 * Increment this value if any changes that break userspace ABI
62 * compatibility are made.
63 */
64#define QIB_UVERBS_ABI_VERSION 2
65
66/*
67 * Define an ib_cq_notify value that is not valid so we know when CQ
68 * notifications are armed.
69 */
70#define IB_CQ_NONE (IB_CQ_NEXT_COMP + 1)
71
72#define IB_SEQ_NAK (3 << 29)
73
74/* AETH NAK opcode values */
75#define IB_RNR_NAK 0x20
76#define IB_NAK_PSN_ERROR 0x60
77#define IB_NAK_INVALID_REQUEST 0x61
78#define IB_NAK_REMOTE_ACCESS_ERROR 0x62
79#define IB_NAK_REMOTE_OPERATIONAL_ERROR 0x63
80#define IB_NAK_INVALID_RD_REQUEST 0x64
81
82/* Flags for checking QP state (see ib_qib_state_ops[]) */
83#define QIB_POST_SEND_OK 0x01
84#define QIB_POST_RECV_OK 0x02
85#define QIB_PROCESS_RECV_OK 0x04
86#define QIB_PROCESS_SEND_OK 0x08
87#define QIB_PROCESS_NEXT_SEND_OK 0x10
88#define QIB_FLUSH_SEND 0x20
89#define QIB_FLUSH_RECV 0x40
90#define QIB_PROCESS_OR_FLUSH_SEND \
91 (QIB_PROCESS_SEND_OK | QIB_FLUSH_SEND)
92
93/* IB Performance Manager status values */
94#define IB_PMA_SAMPLE_STATUS_DONE 0x00
95#define IB_PMA_SAMPLE_STATUS_STARTED 0x01
96#define IB_PMA_SAMPLE_STATUS_RUNNING 0x02
97
98/* Mandatory IB performance counter select values. */
99#define IB_PMA_PORT_XMIT_DATA cpu_to_be16(0x0001)
100#define IB_PMA_PORT_RCV_DATA cpu_to_be16(0x0002)
101#define IB_PMA_PORT_XMIT_PKTS cpu_to_be16(0x0003)
102#define IB_PMA_PORT_RCV_PKTS cpu_to_be16(0x0004)
103#define IB_PMA_PORT_XMIT_WAIT cpu_to_be16(0x0005)
104
105#define QIB_VENDOR_IPG cpu_to_be16(0xFFA0)
106
107#define IB_BTH_REQ_ACK (1 << 31)
108#define IB_BTH_SOLICITED (1 << 23)
109#define IB_BTH_MIG_REQ (1 << 22)
110
111/* XXX Should be defined in ib_verbs.h enum ib_port_cap_flags */
112#define IB_PORT_OTHER_LOCAL_CHANGES_SUP (1 << 26)
113
114#define IB_GRH_VERSION 6
115#define IB_GRH_VERSION_MASK 0xF
116#define IB_GRH_VERSION_SHIFT 28
117#define IB_GRH_TCLASS_MASK 0xFF
118#define IB_GRH_TCLASS_SHIFT 20
119#define IB_GRH_FLOW_MASK 0xFFFFF
120#define IB_GRH_FLOW_SHIFT 0
121#define IB_GRH_NEXT_HDR 0x1B
122
123#define IB_DEFAULT_GID_PREFIX cpu_to_be64(0xfe80000000000000ULL)
124
125/* Values for set/get portinfo VLCap OperationalVLs */
126#define IB_VL_VL0 1
127#define IB_VL_VL0_1 2
128#define IB_VL_VL0_3 3
129#define IB_VL_VL0_7 4
130#define IB_VL_VL0_14 5
131
132static inline int qib_num_vls(int vls)
133{
134 switch (vls) {
135 default:
136 case IB_VL_VL0:
137 return 1;
138 case IB_VL_VL0_1:
139 return 2;
140 case IB_VL_VL0_3:
141 return 4;
142 case IB_VL_VL0_7:
143 return 8;
144 case IB_VL_VL0_14:
145 return 15;
146 }
147}
148
149struct ib_reth {
150 __be64 vaddr;
151 __be32 rkey;
152 __be32 length;
78a58864 153} __packed;
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154
155struct ib_atomic_eth {
156 __be32 vaddr[2]; /* unaligned so access as 2 32-bit words */
157 __be32 rkey;
158 __be64 swap_data;
159 __be64 compare_data;
78a58864 160} __packed;
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161
162struct qib_other_headers {
163 __be32 bth[3];
164 union {
165 struct {
166 __be32 deth[2];
167 __be32 imm_data;
168 } ud;
169 struct {
170 struct ib_reth reth;
171 __be32 imm_data;
172 } rc;
173 struct {
174 __be32 aeth;
175 __be32 atomic_ack_eth[2];
176 } at;
177 __be32 imm_data;
178 __be32 aeth;
179 struct ib_atomic_eth atomic_eth;
180 } u;
78a58864 181} __packed;
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182
183/*
184 * Note that UD packets with a GRH header are 8+40+12+8 = 68 bytes
185 * long (72 w/ imm_data). Only the first 56 bytes of the IB header
186 * will be in the eager header buffer. The remaining 12 or 16 bytes
187 * are in the data buffer.
188 */
189struct qib_ib_header {
190 __be16 lrh[4];
191 union {
192 struct {
193 struct ib_grh grh;
194 struct qib_other_headers oth;
195 } l;
196 struct qib_other_headers oth;
197 } u;
78a58864 198} __packed;
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199
200struct qib_pio_header {
201 __le32 pbc[2];
202 struct qib_ib_header hdr;
78a58864 203} __packed;
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204
205/*
206 * There is one struct qib_mcast for each multicast GID.
207 * All attached QPs are then stored as a list of
208 * struct qib_mcast_qp.
209 */
210struct qib_mcast_qp {
211 struct list_head list;
212 struct qib_qp *qp;
213};
214
215struct qib_mcast {
216 struct rb_node rb_node;
217 union ib_gid mgid;
218 struct list_head qp_list;
219 wait_queue_head_t wait;
220 atomic_t refcount;
221 int n_attached;
222};
223
224/* Protection domain */
225struct qib_pd {
226 struct ib_pd ibpd;
227 int user; /* non-zero if created from user space */
228};
229
230/* Address Handle */
231struct qib_ah {
232 struct ib_ah ibah;
233 struct ib_ah_attr attr;
234 atomic_t refcount;
235};
236
237/*
238 * This structure is used by qib_mmap() to validate an offset
239 * when an mmap() request is made. The vm_area_struct then uses
240 * this as its vm_private_data.
241 */
242struct qib_mmap_info {
243 struct list_head pending_mmaps;
244 struct ib_ucontext *context;
245 void *obj;
246 __u64 offset;
247 struct kref ref;
248 unsigned size;
249};
250
251/*
252 * This structure is used to contain the head pointer, tail pointer,
253 * and completion queue entries as a single memory allocation so
254 * it can be mmap'ed into user space.
255 */
256struct qib_cq_wc {
257 u32 head; /* index of next entry to fill */
258 u32 tail; /* index of next ib_poll_cq() entry */
259 union {
260 /* these are actually size ibcq.cqe + 1 */
261 struct ib_uverbs_wc uqueue[0];
262 struct ib_wc kqueue[0];
263 };
264};
265
266/*
267 * The completion queue structure.
268 */
269struct qib_cq {
270 struct ib_cq ibcq;
85caafe3
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271 struct kthread_work comptask;
272 struct qib_devdata *dd;
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273 spinlock_t lock; /* protect changes in this struct */
274 u8 notify;
275 u8 triggered;
276 struct qib_cq_wc *queue;
277 struct qib_mmap_info *ip;
278};
279
280/*
281 * A segment is a linear region of low physical memory.
282 * XXX Maybe we should use phys addr here and kmap()/kunmap().
283 * Used by the verbs layer.
284 */
285struct qib_seg {
286 void *vaddr;
287 size_t length;
288};
289
290/* The number of qib_segs that fit in a page. */
291#define QIB_SEGSZ (PAGE_SIZE / sizeof(struct qib_seg))
292
293struct qib_segarray {
294 struct qib_seg segs[QIB_SEGSZ];
295};
296
297struct qib_mregion {
298 struct ib_pd *pd; /* shares refcnt of ibmr.pd */
299 u64 user_base; /* User's address for this region */
300 u64 iova; /* IB start address of this region */
301 size_t length;
302 u32 lkey;
303 u32 offset; /* offset (bytes) to start of region */
304 int access_flags;
305 u32 max_segs; /* number of qib_segs in all the arrays */
306 u32 mapsz; /* size of the map array */
2a600f14 307 u8 page_shift; /* 0 - non unform/non powerof2 sizes */
8aac4cc3 308 u8 lkey_published; /* in global table */
6a82649f 309 struct completion comp; /* complete when refcount goes to zero */
8aac4cc3 310 struct rcu_head list;
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311 atomic_t refcount;
312 struct qib_segarray *map[0]; /* the segments */
313};
314
315/*
316 * These keep track of the copy progress within a memory region.
317 * Used by the verbs layer.
318 */
319struct qib_sge {
320 struct qib_mregion *mr;
321 void *vaddr; /* kernel virtual address of segment */
322 u32 sge_length; /* length of the SGE */
323 u32 length; /* remaining length of the segment */
324 u16 m; /* current index: mr->map[m] */
325 u16 n; /* current index: mr->map[m]->segs[n] */
326};
327
328/* Memory region */
329struct qib_mr {
330 struct ib_mr ibmr;
331 struct ib_umem *umem;
332 struct qib_mregion mr; /* must be last */
38071a46
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333 u64 *pages;
334 u32 npages;
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335};
336
337/*
338 * Send work request queue entry.
339 * The size of the sg_list is determined when the QP is created and stored
340 * in qp->s_max_sge.
341 */
342struct qib_swqe {
e622f2f4
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343 union {
344 struct ib_send_wr wr; /* don't use wr.sg_list */
345 struct ib_ud_wr ud_wr;
38071a46 346 struct ib_reg_wr reg_wr;
e622f2f4
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347 struct ib_rdma_wr rdma_wr;
348 struct ib_atomic_wr atomic_wr;
349 };
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350 u32 psn; /* first packet sequence number */
351 u32 lpsn; /* last packet sequence number */
352 u32 ssn; /* send sequence number */
353 u32 length; /* total length of data in sg_list */
354 struct qib_sge sg_list[0];
355};
356
357/*
358 * Receive work request queue entry.
359 * The size of the sg_list is determined when the QP (or SRQ) is created
360 * and stored in qp->r_rq.max_sge (or srq->rq.max_sge).
361 */
362struct qib_rwqe {
363 u64 wr_id;
364 u8 num_sge;
365 struct ib_sge sg_list[0];
366};
367
368/*
369 * This structure is used to contain the head pointer, tail pointer,
370 * and receive work queue entries as a single memory allocation so
371 * it can be mmap'ed into user space.
372 * Note that the wq array elements are variable size so you can't
373 * just index into the array to get the N'th element;
374 * use get_rwqe_ptr() instead.
375 */
376struct qib_rwq {
377 u32 head; /* new work requests posted to the head */
378 u32 tail; /* receives pull requests from here. */
379 struct qib_rwqe wq[0];
380};
381
382struct qib_rq {
383 struct qib_rwq *wq;
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384 u32 size; /* size of RWQE array */
385 u8 max_sge;
1c94283d
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386 spinlock_t lock /* protect changes in this struct */
387 ____cacheline_aligned_in_smp;
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388};
389
390struct qib_srq {
391 struct ib_srq ibsrq;
392 struct qib_rq rq;
393 struct qib_mmap_info *ip;
394 /* send signal when number of RWQEs < limit */
395 u32 limit;
396};
397
398struct qib_sge_state {
399 struct qib_sge *sg_list; /* next SGE to be used if any */
400 struct qib_sge sge; /* progress state for the current SGE */
401 u32 total_len;
402 u8 num_sge;
403};
404
405/*
406 * This structure holds the information that the send tasklet needs
407 * to send a RDMA read response or atomic operation.
408 */
409struct qib_ack_entry {
410 u8 opcode;
411 u8 sent;
412 u32 psn;
413 u32 lpsn;
414 union {
415 struct qib_sge rdma_sge;
416 u64 atomic_data;
417 };
418};
419
420/*
421 * Variables prefixed with s_ are for the requester (sender).
422 * Variables prefixed with r_ are for the responder (receiver).
423 * Variables prefixed with ack_ are for responder replies.
424 *
425 * Common variables are protected by both r_rq.lock and s_lock in that order
426 * which only happens in modify_qp() or changing the QP 'state'.
427 */
428struct qib_qp {
429 struct ib_qp ibqp;
1c94283d 430 /* read mostly fields above and below */
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431 struct ib_ah_attr remote_ah_attr;
432 struct ib_ah_attr alt_ah_attr;
1fb9fed6 433 struct qib_qp __rcu *next; /* link list for QPN hash table */
1c94283d 434 struct qib_swqe *s_wq; /* send work queue */
f931551b 435 struct qib_mmap_info *ip;
1c94283d
MM
436 struct qib_ib_header *s_hdr; /* next packet header to send */
437 unsigned long timeout_jiffies; /* computed from timeout */
438
439 enum ib_mtu path_mtu;
440 u32 remote_qpn;
441 u32 pmtu; /* decoded from path_mtu */
442 u32 qkey; /* QKEY for this QP (for UD or RD) */
443 u32 s_size; /* send work queue size */
444 u32 s_rnr_timeout; /* number of milliseconds for RNR timeout */
445
446 u8 state; /* QP state */
447 u8 qp_access_flags;
448 u8 alt_timeout; /* Alternate path timeout for this QP */
449 u8 timeout; /* Timeout for this QP */
450 u8 s_srate;
451 u8 s_mig_state;
452 u8 port_num;
453 u8 s_pkey_index; /* PKEY index to use */
454 u8 s_alt_pkey_index; /* Alternate path PKEY index to use */
455 u8 r_max_rd_atomic; /* max number of RDMA read/atomic to receive */
456 u8 s_max_rd_atomic; /* max number of RDMA read/atomic to send */
457 u8 s_retry_cnt; /* number of times to retry */
458 u8 s_rnr_retry_cnt;
459 u8 r_min_rnr_timer; /* retry timeout value for RNR NAKs */
460 u8 s_max_sge; /* size of s_wq->sg_list */
461 u8 s_draining;
462
463 /* start of read/write fields */
464
465 atomic_t refcount ____cacheline_aligned_in_smp;
466 wait_queue_head_t wait;
467
468
469 struct qib_ack_entry s_ack_queue[QIB_MAX_RDMA_ATOMIC + 1]
470 ____cacheline_aligned_in_smp;
471 struct qib_sge_state s_rdma_read_sge;
472
473 spinlock_t r_lock ____cacheline_aligned_in_smp; /* used for APM */
474 unsigned long r_aflags;
475 u64 r_wr_id; /* ID for current receive WQE */
476 u32 r_ack_psn; /* PSN for next ACK or atomic ACK */
477 u32 r_len; /* total length of r_sge */
478 u32 r_rcv_len; /* receive data len processed */
479 u32 r_psn; /* expected rcv packet sequence number */
480 u32 r_msn; /* message sequence number */
481
482 u8 r_state; /* opcode of last packet received */
483 u8 r_flags;
484 u8 r_head_ack_queue; /* index into s_ack_queue[] */
485
486 struct list_head rspwait; /* link for waititing to respond */
487
488 struct qib_sge_state r_sge; /* current receive data */
489 struct qib_rq r_rq; /* receive work queue */
490
491 spinlock_t s_lock ____cacheline_aligned_in_smp;
f931551b 492 struct qib_sge_state *s_cur_sge;
1c94283d 493 u32 s_flags;
f931551b 494 struct qib_verbs_txreq *s_tx;
1c94283d 495 struct qib_swqe *s_wqe;
f931551b 496 struct qib_sge_state s_sge; /* current send request data */
1c94283d 497 struct qib_mregion *s_rdma_mr;
f931551b 498 atomic_t s_dma_busy;
f931551b
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499 u32 s_cur_size; /* size of send packet in bytes */
500 u32 s_len; /* total length of s_sge */
501 u32 s_rdma_read_len; /* total length of s_rdma_read_sge */
502 u32 s_next_psn; /* PSN for next request */
503 u32 s_last_psn; /* last response PSN processed */
504 u32 s_sending_psn; /* lowest PSN that is being sent */
505 u32 s_sending_hpsn; /* highest PSN that is being sent */
506 u32 s_psn; /* current packet sequence number */
507 u32 s_ack_rdma_psn; /* PSN for sending RDMA read responses */
508 u32 s_ack_psn; /* PSN for acking sends and RDMA writes */
1c94283d
MM
509 u32 s_head; /* new entries added here */
510 u32 s_tail; /* next entry to process */
511 u32 s_cur; /* current work queue entry */
512 u32 s_acked; /* last un-ACK'ed entry */
513 u32 s_last; /* last completed entry */
514 u32 s_ssn; /* SSN of tail entry */
515 u32 s_lsn; /* limit sequence number (credit) */
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516 u16 s_hdrwords; /* size of s_hdr in 32 bit words */
517 u16 s_rdma_ack_cnt;
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518 u8 s_state; /* opcode of last packet sent */
519 u8 s_ack_state; /* opcode of packet to ACK */
520 u8 s_nak_state; /* non-zero if NAK is pending */
f931551b 521 u8 r_nak_state; /* non-zero if NAK is pending */
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522 u8 s_retry; /* requester retry counter */
523 u8 s_rnr_retry; /* requester RNR retry counter */
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524 u8 s_num_rd_atomic; /* number of RDMA read/atomic pending */
525 u8 s_tail_ack_queue; /* index into s_ack_queue[] */
1c94283d
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526
527 struct qib_sge_state s_ack_rdma_sge;
528 struct timer_list s_timer;
529 struct list_head iowait; /* link for wait PIO buf */
530
531 struct work_struct s_work;
532
533 wait_queue_head_t wait_dma;
534
535 struct qib_sge r_sg_list[0] /* verified SGEs */
536 ____cacheline_aligned_in_smp;
f931551b
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537};
538
539/*
540 * Atomic bit definitions for r_aflags.
541 */
542#define QIB_R_WRID_VALID 0
543#define QIB_R_REWIND_SGE 1
544
545/*
546 * Bit definitions for r_flags.
547 */
548#define QIB_R_REUSE_SGE 0x01
549#define QIB_R_RDMAR_SEQ 0x02
550#define QIB_R_RSP_NAK 0x04
551#define QIB_R_RSP_SEND 0x08
552#define QIB_R_COMM_EST 0x10
553
554/*
555 * Bit definitions for s_flags.
556 *
557 * QIB_S_SIGNAL_REQ_WR - set if QP send WRs contain completion signaled
558 * QIB_S_BUSY - send tasklet is processing the QP
559 * QIB_S_TIMER - the RC retry timer is active
560 * QIB_S_ACK_PENDING - an ACK is waiting to be sent after RDMA read/atomics
561 * QIB_S_WAIT_FENCE - waiting for all prior RDMA read or atomic SWQEs
562 * before processing the next SWQE
563 * QIB_S_WAIT_RDMAR - waiting for a RDMA read or atomic SWQE to complete
564 * before processing the next SWQE
565 * QIB_S_WAIT_RNR - waiting for RNR timeout
566 * QIB_S_WAIT_SSN_CREDIT - waiting for RC credits to process next SWQE
567 * QIB_S_WAIT_DMA - waiting for send DMA queue to drain before generating
568 * next send completion entry not via send DMA
569 * QIB_S_WAIT_PIO - waiting for a send buffer to be available
570 * QIB_S_WAIT_TX - waiting for a struct qib_verbs_txreq to be available
571 * QIB_S_WAIT_DMA_DESC - waiting for DMA descriptors to be available
572 * QIB_S_WAIT_KMEM - waiting for kernel memory to be available
573 * QIB_S_WAIT_PSN - waiting for a packet to exit the send DMA queue
574 * QIB_S_WAIT_ACK - waiting for an ACK packet before sending more requests
575 * QIB_S_SEND_ONE - send one packet, request ACK, then wait for ACK
576 */
577#define QIB_S_SIGNAL_REQ_WR 0x0001
578#define QIB_S_BUSY 0x0002
579#define QIB_S_TIMER 0x0004
580#define QIB_S_RESP_PENDING 0x0008
581#define QIB_S_ACK_PENDING 0x0010
582#define QIB_S_WAIT_FENCE 0x0020
583#define QIB_S_WAIT_RDMAR 0x0040
584#define QIB_S_WAIT_RNR 0x0080
585#define QIB_S_WAIT_SSN_CREDIT 0x0100
586#define QIB_S_WAIT_DMA 0x0200
587#define QIB_S_WAIT_PIO 0x0400
588#define QIB_S_WAIT_TX 0x0800
589#define QIB_S_WAIT_DMA_DESC 0x1000
590#define QIB_S_WAIT_KMEM 0x2000
591#define QIB_S_WAIT_PSN 0x4000
592#define QIB_S_WAIT_ACK 0x8000
593#define QIB_S_SEND_ONE 0x10000
594#define QIB_S_UNLIMITED_CREDIT 0x20000
595
596/*
597 * Wait flags that would prevent any packet type from being sent.
598 */
599#define QIB_S_ANY_WAIT_IO (QIB_S_WAIT_PIO | QIB_S_WAIT_TX | \
600 QIB_S_WAIT_DMA_DESC | QIB_S_WAIT_KMEM)
601
602/*
603 * Wait flags that would prevent send work requests from making progress.
604 */
605#define QIB_S_ANY_WAIT_SEND (QIB_S_WAIT_FENCE | QIB_S_WAIT_RDMAR | \
606 QIB_S_WAIT_RNR | QIB_S_WAIT_SSN_CREDIT | QIB_S_WAIT_DMA | \
607 QIB_S_WAIT_PSN | QIB_S_WAIT_ACK)
608
609#define QIB_S_ANY_WAIT (QIB_S_ANY_WAIT_IO | QIB_S_ANY_WAIT_SEND)
610
611#define QIB_PSN_CREDIT 16
612
613/*
614 * Since struct qib_swqe is not a fixed size, we can't simply index into
615 * struct qib_qp.s_wq. This function does the array index computation.
616 */
617static inline struct qib_swqe *get_swqe_ptr(struct qib_qp *qp,
618 unsigned n)
619{
620 return (struct qib_swqe *)((char *)qp->s_wq +
621 (sizeof(struct qib_swqe) +
622 qp->s_max_sge *
623 sizeof(struct qib_sge)) * n);
624}
625
626/*
627 * Since struct qib_rwqe is not a fixed size, we can't simply index into
628 * struct qib_rwq.wq. This function does the array index computation.
629 */
630static inline struct qib_rwqe *get_rwqe_ptr(struct qib_rq *rq, unsigned n)
631{
632 return (struct qib_rwqe *)
633 ((char *) rq->wq->wq +
634 (sizeof(struct qib_rwqe) +
635 rq->max_sge * sizeof(struct ib_sge)) * n);
636}
637
638/*
639 * QPN-map pages start out as NULL, they get allocated upon
640 * first use and are never deallocated. This way,
641 * large bitmaps are not allocated unless large numbers of QPs are used.
642 */
643struct qpn_map {
644 void *page;
645};
646
647struct qib_qpn_table {
648 spinlock_t lock; /* protect changes in this struct */
649 unsigned flags; /* flags for QP0/1 allocated for each port */
650 u32 last; /* last QP number allocated */
651 u32 nmaps; /* size of the map table */
652 u16 limit;
653 u16 mask;
654 /* bit map of free QP numbers other than 0/1 */
655 struct qpn_map map[QPNMAP_ENTRIES];
656};
657
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MM
658#define MAX_LKEY_TABLE_BITS 23
659
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660struct qib_lkey_table {
661 spinlock_t lock; /* protect changes in this struct */
662 u32 next; /* next unused index (speeds search) */
663 u32 gen; /* generation count */
664 u32 max; /* size of the table */
7e230177 665 struct qib_mregion __rcu **table;
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RC
666};
667
668struct qib_opcode_stats {
669 u64 n_packets; /* number of packets */
670 u64 n_bytes; /* total number of bytes */
671};
672
ddb88765
MM
673struct qib_opcode_stats_perctx {
674 struct qib_opcode_stats stats[128];
675};
676
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MM
677struct qib_pma_counters {
678 u64 n_unicast_xmit; /* total unicast packets sent */
679 u64 n_unicast_rcv; /* total unicast packets received */
680 u64 n_multicast_xmit; /* total multicast packets sent */
681 u64 n_multicast_rcv; /* total multicast packets received */
682};
683
f931551b 684struct qib_ibport {
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MM
685 struct qib_qp __rcu *qp0;
686 struct qib_qp __rcu *qp1;
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687 struct ib_mad_agent *send_agent; /* agent for SMI (traps) */
688 struct qib_ah *sm_ah;
689 struct qib_ah *smi_ah;
690 struct rb_root mcast_tree;
691 spinlock_t lock; /* protect changes in this struct */
692
693 /* non-zero when timer is set */
694 unsigned long mkey_lease_timeout;
695 unsigned long trap_timeout;
696 __be64 gid_prefix; /* in network order */
697 __be64 mkey;
698 __be64 guids[QIB_GUIDS_PER_PORT - 1]; /* writable GUIDs */
699 u64 tid; /* TID for traps */
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MM
700 struct qib_pma_counters __percpu *pmastats;
701 u64 z_unicast_xmit; /* starting count for PMA */
702 u64 z_unicast_rcv; /* starting count for PMA */
703 u64 z_multicast_xmit; /* starting count for PMA */
704 u64 z_multicast_rcv; /* starting count for PMA */
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705 u64 z_symbol_error_counter; /* starting count for PMA */
706 u64 z_link_error_recovery_counter; /* starting count for PMA */
707 u64 z_link_downed_counter; /* starting count for PMA */
708 u64 z_port_rcv_errors; /* starting count for PMA */
709 u64 z_port_rcv_remphys_errors; /* starting count for PMA */
710 u64 z_port_xmit_discards; /* starting count for PMA */
711 u64 z_port_xmit_data; /* starting count for PMA */
712 u64 z_port_rcv_data; /* starting count for PMA */
713 u64 z_port_xmit_packets; /* starting count for PMA */
714 u64 z_port_rcv_packets; /* starting count for PMA */
715 u32 z_local_link_integrity_errors; /* starting count for PMA */
716 u32 z_excessive_buffer_overrun_errors; /* starting count for PMA */
717 u32 z_vl15_dropped; /* starting count for PMA */
718 u32 n_rc_resends;
719 u32 n_rc_acks;
720 u32 n_rc_qacks;
721 u32 n_rc_delayed_comp;
722 u32 n_seq_naks;
723 u32 n_rdma_seq;
724 u32 n_rnr_naks;
725 u32 n_other_naks;
726 u32 n_loop_pkts;
727 u32 n_pkt_drops;
728 u32 n_vl15_dropped;
729 u32 n_rc_timeouts;
730 u32 n_dmawait;
731 u32 n_unaligned;
732 u32 n_rc_dupreq;
733 u32 n_rc_seqnak;
734 u32 port_cap_flags;
735 u32 pma_sample_start;
736 u32 pma_sample_interval;
737 __be16 pma_counter_select[5];
738 u16 pma_tag;
739 u16 pkey_violations;
740 u16 qkey_violations;
741 u16 mkey_violations;
742 u16 mkey_lease_period;
743 u16 sm_lid;
744 u16 repress_traps;
745 u8 sm_sl;
746 u8 mkeyprot;
747 u8 subnet_timeout;
748 u8 vl_high_limit;
749 u8 sl_to_vl[16];
750
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751};
752
551ace12 753
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754struct qib_ibdev {
755 struct ib_device ibdev;
756 struct list_head pending_mmaps;
757 spinlock_t mmap_offset_lock; /* protect mmap_offset */
758 u32 mmap_offset;
7e230177 759 struct qib_mregion __rcu *dma_mr;
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760
761 /* QP numbers are shared by all IB ports */
762 struct qib_qpn_table qpn_table;
763 struct qib_lkey_table lk_table;
764 struct list_head piowait; /* list for wait PIO buf */
765 struct list_head dmawait; /* list for wait DMA */
766 struct list_head txwait; /* list for wait qib_verbs_txreq */
767 struct list_head memwait; /* list for wait kernel memory */
768 struct list_head txreq_free;
769 struct timer_list mem_timer;
1fb9fed6 770 struct qib_qp __rcu **qp_table;
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771 struct qib_pio_header *pio_hdrs;
772 dma_addr_t pio_hdrs_phys;
773 /* list of QPs waiting for RNR timer */
774 spinlock_t pending_lock; /* protect wait lists, PMA counters, etc. */
af061a64
MM
775 u32 qp_table_size; /* size of the hash table */
776 u32 qp_rnd; /* random bytes for hash */
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777 spinlock_t qpt_lock;
778
779 u32 n_piowait;
780 u32 n_txwait;
781
782 u32 n_pds_allocated; /* number of PDs allocated for device */
783 spinlock_t n_pds_lock;
784 u32 n_ahs_allocated; /* number of AHs allocated for device */
785 spinlock_t n_ahs_lock;
786 u32 n_cqs_allocated; /* number of CQs allocated for device */
787 spinlock_t n_cqs_lock;
788 u32 n_qps_allocated; /* number of QPs allocated for device */
789 spinlock_t n_qps_lock;
790 u32 n_srqs_allocated; /* number of SRQs allocated for device */
791 spinlock_t n_srqs_lock;
792 u32 n_mcast_grps_allocated; /* number of mcast groups allocated */
793 spinlock_t n_mcast_grps_lock;
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794#ifdef CONFIG_DEBUG_FS
795 /* per HCA debugfs */
796 struct dentry *qib_ibdev_dbg;
797#endif
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798};
799
800struct qib_verbs_counters {
801 u64 symbol_error_counter;
802 u64 link_error_recovery_counter;
803 u64 link_downed_counter;
804 u64 port_rcv_errors;
805 u64 port_rcv_remphys_errors;
806 u64 port_xmit_discards;
807 u64 port_xmit_data;
808 u64 port_rcv_data;
809 u64 port_xmit_packets;
810 u64 port_rcv_packets;
811 u32 local_link_integrity_errors;
812 u32 excessive_buffer_overrun_errors;
813 u32 vl15_dropped;
814};
815
816static inline struct qib_mr *to_imr(struct ib_mr *ibmr)
817{
818 return container_of(ibmr, struct qib_mr, ibmr);
819}
820
821static inline struct qib_pd *to_ipd(struct ib_pd *ibpd)
822{
823 return container_of(ibpd, struct qib_pd, ibpd);
824}
825
826static inline struct qib_ah *to_iah(struct ib_ah *ibah)
827{
828 return container_of(ibah, struct qib_ah, ibah);
829}
830
831static inline struct qib_cq *to_icq(struct ib_cq *ibcq)
832{
833 return container_of(ibcq, struct qib_cq, ibcq);
834}
835
836static inline struct qib_srq *to_isrq(struct ib_srq *ibsrq)
837{
838 return container_of(ibsrq, struct qib_srq, ibsrq);
839}
840
841static inline struct qib_qp *to_iqp(struct ib_qp *ibqp)
842{
843 return container_of(ibqp, struct qib_qp, ibqp);
844}
845
846static inline struct qib_ibdev *to_idev(struct ib_device *ibdev)
847{
848 return container_of(ibdev, struct qib_ibdev, ibdev);
849}
850
851/*
852 * Send if not busy or waiting for I/O and either
853 * a RC response is pending or we can process send work requests.
854 */
855static inline int qib_send_ok(struct qib_qp *qp)
856{
857 return !(qp->s_flags & (QIB_S_BUSY | QIB_S_ANY_WAIT_IO)) &&
858 (qp->s_hdrwords || (qp->s_flags & QIB_S_RESP_PENDING) ||
859 !(qp->s_flags & QIB_S_ANY_WAIT_SEND));
860}
861
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862/*
863 * This must be called with s_lock held.
864 */
551ace12 865void qib_schedule_send(struct qib_qp *qp);
f931551b
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866
867static inline int qib_pkey_ok(u16 pkey1, u16 pkey2)
868{
869 u16 p1 = pkey1 & 0x7FFF;
870 u16 p2 = pkey2 & 0x7FFF;
871
872 /*
873 * Low 15 bits must be non-zero and match, and
874 * one of the two must be a full member.
875 */
876 return p1 && p1 == p2 && ((__s16)pkey1 < 0 || (__s16)pkey2 < 0);
877}
878
879void qib_bad_pqkey(struct qib_ibport *ibp, __be16 trap_num, u32 key, u32 sl,
880 u32 qp1, u32 qp2, __be16 lid1, __be16 lid2);
881void qib_cap_mask_chg(struct qib_ibport *ibp);
882void qib_sys_guid_chg(struct qib_ibport *ibp);
883void qib_node_desc_chg(struct qib_ibport *ibp);
884int qib_process_mad(struct ib_device *ibdev, int mad_flags, u8 port_num,
a97e2d86 885 const struct ib_wc *in_wc, const struct ib_grh *in_grh,
4cd7c947
IW
886 const struct ib_mad_hdr *in, size_t in_mad_size,
887 struct ib_mad_hdr *out, size_t *out_mad_size,
888 u16 *out_mad_pkey_index);
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889int qib_create_agents(struct qib_ibdev *dev);
890void qib_free_agents(struct qib_ibdev *dev);
891
892/*
893 * Compare the lower 24 bits of the two values.
894 * Returns an integer <, ==, or > than zero.
895 */
896static inline int qib_cmp24(u32 a, u32 b)
897{
898 return (((int) a) - ((int) b)) << 8;
899}
900
901struct qib_mcast *qib_mcast_find(struct qib_ibport *ibp, union ib_gid *mgid);
902
903int qib_snapshot_counters(struct qib_pportdata *ppd, u64 *swords,
904 u64 *rwords, u64 *spkts, u64 *rpkts,
905 u64 *xmit_wait);
906
907int qib_get_counters(struct qib_pportdata *ppd,
908 struct qib_verbs_counters *cntrs);
909
910int qib_multicast_attach(struct ib_qp *ibqp, union ib_gid *gid, u16 lid);
911
912int qib_multicast_detach(struct ib_qp *ibqp, union ib_gid *gid, u16 lid);
913
914int qib_mcast_tree_empty(struct qib_ibport *ibp);
915
916__be32 qib_compute_aeth(struct qib_qp *qp);
917
918struct qib_qp *qib_lookup_qpn(struct qib_ibport *ibp, u32 qpn);
919
920struct ib_qp *qib_create_qp(struct ib_pd *ibpd,
921 struct ib_qp_init_attr *init_attr,
922 struct ib_udata *udata);
923
924int qib_destroy_qp(struct ib_qp *ibqp);
925
926int qib_error_qp(struct qib_qp *qp, enum ib_wc_status err);
927
928int qib_modify_qp(struct ib_qp *ibqp, struct ib_qp_attr *attr,
929 int attr_mask, struct ib_udata *udata);
930
931int qib_query_qp(struct ib_qp *ibqp, struct ib_qp_attr *attr,
932 int attr_mask, struct ib_qp_init_attr *init_attr);
933
934unsigned qib_free_all_qps(struct qib_devdata *dd);
935
936void qib_init_qpn_table(struct qib_devdata *dd, struct qib_qpn_table *qpt);
937
938void qib_free_qpn_table(struct qib_qpn_table *qpt);
939
1dd173b0
MM
940#ifdef CONFIG_DEBUG_FS
941
942struct qib_qp_iter;
943
944struct qib_qp_iter *qib_qp_iter_init(struct qib_ibdev *dev);
945
946int qib_qp_iter_next(struct qib_qp_iter *iter);
947
948void qib_qp_iter_print(struct seq_file *s, struct qib_qp_iter *iter);
949
950#endif
951
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952void qib_get_credit(struct qib_qp *qp, u32 aeth);
953
954unsigned qib_pkt_delay(u32 plen, u8 snd_mult, u8 rcv_mult);
955
956void qib_verbs_sdma_desc_avail(struct qib_pportdata *ppd, unsigned avail);
957
958void qib_put_txreq(struct qib_verbs_txreq *tx);
959
960int qib_verbs_send(struct qib_qp *qp, struct qib_ib_header *hdr,
961 u32 hdrwords, struct qib_sge_state *ss, u32 len);
962
963void qib_copy_sge(struct qib_sge_state *ss, void *data, u32 length,
964 int release);
965
966void qib_skip_sge(struct qib_sge_state *ss, u32 length, int release);
967
968void qib_uc_rcv(struct qib_ibport *ibp, struct qib_ib_header *hdr,
969 int has_grh, void *data, u32 tlen, struct qib_qp *qp);
970
971void qib_rc_rcv(struct qib_ctxtdata *rcd, struct qib_ib_header *hdr,
972 int has_grh, void *data, u32 tlen, struct qib_qp *qp);
973
974int qib_check_ah(struct ib_device *ibdev, struct ib_ah_attr *ah_attr);
975
1fb9fed6
MM
976struct ib_ah *qib_create_qp0_ah(struct qib_ibport *ibp, u16 dlid);
977
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978void qib_rc_rnr_retry(unsigned long arg);
979
980void qib_rc_send_complete(struct qib_qp *qp, struct qib_ib_header *hdr);
981
982void qib_rc_error(struct qib_qp *qp, enum ib_wc_status err);
983
984int qib_post_ud_send(struct qib_qp *qp, struct ib_send_wr *wr);
985
986void qib_ud_rcv(struct qib_ibport *ibp, struct qib_ib_header *hdr,
987 int has_grh, void *data, u32 tlen, struct qib_qp *qp);
988
6a82649f 989int qib_alloc_lkey(struct qib_mregion *mr, int dma_region);
f931551b 990
6a82649f 991void qib_free_lkey(struct qib_mregion *mr);
f931551b
RC
992
993int qib_lkey_ok(struct qib_lkey_table *rkt, struct qib_pd *pd,
994 struct qib_sge *isge, struct ib_sge *sge, int acc);
995
996int qib_rkey_ok(struct qib_qp *qp, struct qib_sge *sge,
997 u32 len, u64 vaddr, u32 rkey, int acc);
998
999int qib_post_srq_receive(struct ib_srq *ibsrq, struct ib_recv_wr *wr,
1000 struct ib_recv_wr **bad_wr);
1001
1002struct ib_srq *qib_create_srq(struct ib_pd *ibpd,
1003 struct ib_srq_init_attr *srq_init_attr,
1004 struct ib_udata *udata);
1005
1006int qib_modify_srq(struct ib_srq *ibsrq, struct ib_srq_attr *attr,
1007 enum ib_srq_attr_mask attr_mask,
1008 struct ib_udata *udata);
1009
1010int qib_query_srq(struct ib_srq *ibsrq, struct ib_srq_attr *attr);
1011
1012int qib_destroy_srq(struct ib_srq *ibsrq);
1013
85caafe3
MM
1014int qib_cq_init(struct qib_devdata *dd);
1015
1016void qib_cq_exit(struct qib_devdata *dd);
1017
f931551b
RC
1018void qib_cq_enter(struct qib_cq *cq, struct ib_wc *entry, int sig);
1019
1020int qib_poll_cq(struct ib_cq *ibcq, int num_entries, struct ib_wc *entry);
1021
bcf4c1ea
MB
1022struct ib_cq *qib_create_cq(struct ib_device *ibdev,
1023 const struct ib_cq_init_attr *attr,
1024 struct ib_ucontext *context,
f931551b
RC
1025 struct ib_udata *udata);
1026
1027int qib_destroy_cq(struct ib_cq *ibcq);
1028
1029int qib_req_notify_cq(struct ib_cq *ibcq, enum ib_cq_notify_flags notify_flags);
1030
1031int qib_resize_cq(struct ib_cq *ibcq, int cqe, struct ib_udata *udata);
1032
1033struct ib_mr *qib_get_dma_mr(struct ib_pd *pd, int acc);
1034
1035struct ib_mr *qib_reg_phys_mr(struct ib_pd *pd,
1036 struct ib_phys_buf *buffer_list,
1037 int num_phys_buf, int acc, u64 *iova_start);
1038
1039struct ib_mr *qib_reg_user_mr(struct ib_pd *pd, u64 start, u64 length,
1040 u64 virt_addr, int mr_access_flags,
1041 struct ib_udata *udata);
1042
1043int qib_dereg_mr(struct ib_mr *ibmr);
1044
1302f845
SG
1045struct ib_mr *qib_alloc_mr(struct ib_pd *pd,
1046 enum ib_mr_type mr_type,
1047 u32 max_entries);
f931551b 1048
38071a46
SG
1049int qib_map_mr_sg(struct ib_mr *ibmr,
1050 struct scatterlist *sg,
1051 int sg_nents);
1052
38071a46 1053int qib_reg_mr(struct qib_qp *qp, struct ib_reg_wr *wr);
f931551b
RC
1054
1055struct ib_fmr *qib_alloc_fmr(struct ib_pd *pd, int mr_access_flags,
1056 struct ib_fmr_attr *fmr_attr);
1057
1058int qib_map_phys_fmr(struct ib_fmr *ibfmr, u64 *page_list,
1059 int list_len, u64 iova);
1060
1061int qib_unmap_fmr(struct list_head *fmr_list);
1062
1063int qib_dealloc_fmr(struct ib_fmr *ibfmr);
1064
6a82649f
MM
1065static inline void qib_get_mr(struct qib_mregion *mr)
1066{
1067 atomic_inc(&mr->refcount);
1068}
1069
8aac4cc3
MM
1070void mr_rcu_callback(struct rcu_head *list);
1071
6a82649f
MM
1072static inline void qib_put_mr(struct qib_mregion *mr)
1073{
1074 if (unlikely(atomic_dec_and_test(&mr->refcount)))
8aac4cc3 1075 call_rcu(&mr->list, mr_rcu_callback);
6a82649f
MM
1076}
1077
1078static inline void qib_put_ss(struct qib_sge_state *ss)
1079{
1080 while (ss->num_sge) {
1081 qib_put_mr(ss->sge.mr);
1082 if (--ss->num_sge)
1083 ss->sge = *ss->sg_list++;
1084 }
1085}
1086
1087
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1088void qib_release_mmap_info(struct kref *ref);
1089
1090struct qib_mmap_info *qib_create_mmap_info(struct qib_ibdev *dev, u32 size,
1091 struct ib_ucontext *context,
1092 void *obj);
1093
1094void qib_update_mmap_info(struct qib_ibdev *dev, struct qib_mmap_info *ip,
1095 u32 size, void *obj);
1096
1097int qib_mmap(struct ib_ucontext *context, struct vm_area_struct *vma);
1098
1099int qib_get_rwqe(struct qib_qp *qp, int wr_id_only);
1100
1101void qib_migrate_qp(struct qib_qp *qp);
1102
1103int qib_ruc_check_hdr(struct qib_ibport *ibp, struct qib_ib_header *hdr,
1104 int has_grh, struct qib_qp *qp, u32 bth0);
1105
1106u32 qib_make_grh(struct qib_ibport *ibp, struct ib_grh *hdr,
1107 struct ib_global_route *grh, u32 hwords, u32 nwords);
1108
1109void qib_make_ruc_header(struct qib_qp *qp, struct qib_other_headers *ohdr,
1110 u32 bth0, u32 bth2);
1111
1112void qib_do_send(struct work_struct *work);
1113
1114void qib_send_complete(struct qib_qp *qp, struct qib_swqe *wqe,
1115 enum ib_wc_status status);
1116
1117void qib_send_rc_ack(struct qib_qp *qp);
1118
1119int qib_make_rc_req(struct qib_qp *qp);
1120
1121int qib_make_uc_req(struct qib_qp *qp);
1122
1123int qib_make_ud_req(struct qib_qp *qp);
1124
1125int qib_register_ib_device(struct qib_devdata *);
1126
1127void qib_unregister_ib_device(struct qib_devdata *);
1128
1129void qib_ib_rcv(struct qib_ctxtdata *, void *, void *, u32);
1130
1131void qib_ib_piobufavail(struct qib_devdata *);
1132
1133unsigned qib_get_npkeys(struct qib_devdata *);
1134
1135unsigned qib_get_pkey(struct qib_ibport *, unsigned);
1136
1137extern const enum ib_wc_opcode ib_qib_wc_opcode[];
1138
1139/*
1140 * Below HCA-independent IB PhysPortState values, returned
1141 * by the f_ibphys_portstate() routine.
1142 */
1143#define IB_PHYSPORTSTATE_SLEEP 1
1144#define IB_PHYSPORTSTATE_POLL 2
1145#define IB_PHYSPORTSTATE_DISABLED 3
1146#define IB_PHYSPORTSTATE_CFG_TRAIN 4
1147#define IB_PHYSPORTSTATE_LINKUP 5
1148#define IB_PHYSPORTSTATE_LINK_ERR_RECOVER 6
1149#define IB_PHYSPORTSTATE_CFG_DEBOUNCE 8
1150#define IB_PHYSPORTSTATE_CFG_IDLE 0xB
1151#define IB_PHYSPORTSTATE_RECOVERY_RETRAIN 0xC
1152#define IB_PHYSPORTSTATE_RECOVERY_WAITRMT 0xE
1153#define IB_PHYSPORTSTATE_RECOVERY_IDLE 0xF
1154#define IB_PHYSPORTSTATE_CFG_ENH 0x10
1155#define IB_PHYSPORTSTATE_CFG_WAIT_ENH 0x13
1156
1157extern const int ib_qib_state_ops[];
1158
1159extern __be64 ib_qib_sys_image_guid; /* in network order */
1160
1161extern unsigned int ib_qib_lkey_table_size;
1162
1163extern unsigned int ib_qib_max_cqes;
1164
1165extern unsigned int ib_qib_max_cqs;
1166
1167extern unsigned int ib_qib_max_qp_wrs;
1168
1169extern unsigned int ib_qib_max_qps;
1170
1171extern unsigned int ib_qib_max_sges;
1172
1173extern unsigned int ib_qib_max_mcast_grps;
1174
1175extern unsigned int ib_qib_max_mcast_qp_attached;
1176
1177extern unsigned int ib_qib_max_srqs;
1178
1179extern unsigned int ib_qib_max_srq_sges;
1180
1181extern unsigned int ib_qib_max_srq_wrs;
1182
1183extern const u32 ib_qib_rnr_table[];
1184
1185extern struct ib_dma_mapping_ops qib_dma_mapping_ops;
1186
1187#endif /* QIB_VERBS_H */