Soft RoCE driver
[linux-2.6-microblaze.git] / drivers / infiniband / sw / rxe / rxe_resp.c
1 /*
2  * Copyright (c) 2016 Mellanox Technologies Ltd. All rights reserved.
3  * Copyright (c) 2015 System Fabric Works, Inc. All rights reserved.
4  *
5  * This software is available to you under a choice of one of two
6  * licenses.  You may choose to be licensed under the terms of the GNU
7  * General Public License (GPL) Version 2, available from the file
8  * COPYING in the main directory of this source tree, or the
9  * OpenIB.org BSD license below:
10  *
11  *     Redistribution and use in source and binary forms, with or
12  *     without modification, are permitted provided that the following
13  *     conditions are met:
14  *
15  *      - Redistributions of source code must retain the above
16  *        copyright notice, this list of conditions and the following
17  *        disclaimer.
18  *
19  *      - Redistributions in binary form must reproduce the above
20  *        copyright notice, this list of conditions and the following
21  *        disclaimer in the documentation and/or other materials
22  *        provided with the distribution.
23  *
24  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
25  * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
26  * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
27  * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
28  * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
29  * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
30  * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
31  * SOFTWARE.
32  */
33
34 #include <linux/skbuff.h>
35
36 #include "rxe.h"
37 #include "rxe_loc.h"
38 #include "rxe_queue.h"
39
40 enum resp_states {
41         RESPST_NONE,
42         RESPST_GET_REQ,
43         RESPST_CHK_PSN,
44         RESPST_CHK_OP_SEQ,
45         RESPST_CHK_OP_VALID,
46         RESPST_CHK_RESOURCE,
47         RESPST_CHK_LENGTH,
48         RESPST_CHK_RKEY,
49         RESPST_EXECUTE,
50         RESPST_READ_REPLY,
51         RESPST_COMPLETE,
52         RESPST_ACKNOWLEDGE,
53         RESPST_CLEANUP,
54         RESPST_DUPLICATE_REQUEST,
55         RESPST_ERR_MALFORMED_WQE,
56         RESPST_ERR_UNSUPPORTED_OPCODE,
57         RESPST_ERR_MISALIGNED_ATOMIC,
58         RESPST_ERR_PSN_OUT_OF_SEQ,
59         RESPST_ERR_MISSING_OPCODE_FIRST,
60         RESPST_ERR_MISSING_OPCODE_LAST_C,
61         RESPST_ERR_MISSING_OPCODE_LAST_D1E,
62         RESPST_ERR_TOO_MANY_RDMA_ATM_REQ,
63         RESPST_ERR_RNR,
64         RESPST_ERR_RKEY_VIOLATION,
65         RESPST_ERR_LENGTH,
66         RESPST_ERR_CQ_OVERFLOW,
67         RESPST_ERROR,
68         RESPST_RESET,
69         RESPST_DONE,
70         RESPST_EXIT,
71 };
72
73 static char *resp_state_name[] = {
74         [RESPST_NONE]                           = "NONE",
75         [RESPST_GET_REQ]                        = "GET_REQ",
76         [RESPST_CHK_PSN]                        = "CHK_PSN",
77         [RESPST_CHK_OP_SEQ]                     = "CHK_OP_SEQ",
78         [RESPST_CHK_OP_VALID]                   = "CHK_OP_VALID",
79         [RESPST_CHK_RESOURCE]                   = "CHK_RESOURCE",
80         [RESPST_CHK_LENGTH]                     = "CHK_LENGTH",
81         [RESPST_CHK_RKEY]                       = "CHK_RKEY",
82         [RESPST_EXECUTE]                        = "EXECUTE",
83         [RESPST_READ_REPLY]                     = "READ_REPLY",
84         [RESPST_COMPLETE]                       = "COMPLETE",
85         [RESPST_ACKNOWLEDGE]                    = "ACKNOWLEDGE",
86         [RESPST_CLEANUP]                        = "CLEANUP",
87         [RESPST_DUPLICATE_REQUEST]              = "DUPLICATE_REQUEST",
88         [RESPST_ERR_MALFORMED_WQE]              = "ERR_MALFORMED_WQE",
89         [RESPST_ERR_UNSUPPORTED_OPCODE]         = "ERR_UNSUPPORTED_OPCODE",
90         [RESPST_ERR_MISALIGNED_ATOMIC]          = "ERR_MISALIGNED_ATOMIC",
91         [RESPST_ERR_PSN_OUT_OF_SEQ]             = "ERR_PSN_OUT_OF_SEQ",
92         [RESPST_ERR_MISSING_OPCODE_FIRST]       = "ERR_MISSING_OPCODE_FIRST",
93         [RESPST_ERR_MISSING_OPCODE_LAST_C]      = "ERR_MISSING_OPCODE_LAST_C",
94         [RESPST_ERR_MISSING_OPCODE_LAST_D1E]    = "ERR_MISSING_OPCODE_LAST_D1E",
95         [RESPST_ERR_TOO_MANY_RDMA_ATM_REQ]      = "ERR_TOO_MANY_RDMA_ATM_REQ",
96         [RESPST_ERR_RNR]                        = "ERR_RNR",
97         [RESPST_ERR_RKEY_VIOLATION]             = "ERR_RKEY_VIOLATION",
98         [RESPST_ERR_LENGTH]                     = "ERR_LENGTH",
99         [RESPST_ERR_CQ_OVERFLOW]                = "ERR_CQ_OVERFLOW",
100         [RESPST_ERROR]                          = "ERROR",
101         [RESPST_RESET]                          = "RESET",
102         [RESPST_DONE]                           = "DONE",
103         [RESPST_EXIT]                           = "EXIT",
104 };
105
106 /* rxe_recv calls here to add a request packet to the input queue */
107 void rxe_resp_queue_pkt(struct rxe_dev *rxe, struct rxe_qp *qp,
108                         struct sk_buff *skb)
109 {
110         int must_sched;
111         struct rxe_pkt_info *pkt = SKB_TO_PKT(skb);
112
113         skb_queue_tail(&qp->req_pkts, skb);
114
115         must_sched = (pkt->opcode == IB_OPCODE_RC_RDMA_READ_REQUEST) ||
116                         (skb_queue_len(&qp->req_pkts) > 1);
117
118         rxe_run_task(&qp->resp.task, must_sched);
119 }
120
121 static inline enum resp_states get_req(struct rxe_qp *qp,
122                                        struct rxe_pkt_info **pkt_p)
123 {
124         struct sk_buff *skb;
125
126         if (qp->resp.state == QP_STATE_ERROR) {
127                 skb = skb_dequeue(&qp->req_pkts);
128                 if (skb) {
129                         /* drain request packet queue */
130                         rxe_drop_ref(qp);
131                         kfree_skb(skb);
132                         return RESPST_GET_REQ;
133                 }
134
135                 /* go drain recv wr queue */
136                 return RESPST_CHK_RESOURCE;
137         }
138
139         skb = skb_peek(&qp->req_pkts);
140         if (!skb)
141                 return RESPST_EXIT;
142
143         *pkt_p = SKB_TO_PKT(skb);
144
145         return (qp->resp.res) ? RESPST_READ_REPLY : RESPST_CHK_PSN;
146 }
147
148 static enum resp_states check_psn(struct rxe_qp *qp,
149                                   struct rxe_pkt_info *pkt)
150 {
151         int diff = psn_compare(pkt->psn, qp->resp.psn);
152
153         switch (qp_type(qp)) {
154         case IB_QPT_RC:
155                 if (diff > 0) {
156                         if (qp->resp.sent_psn_nak)
157                                 return RESPST_CLEANUP;
158
159                         qp->resp.sent_psn_nak = 1;
160                         return RESPST_ERR_PSN_OUT_OF_SEQ;
161
162                 } else if (diff < 0) {
163                         return RESPST_DUPLICATE_REQUEST;
164                 }
165
166                 if (qp->resp.sent_psn_nak)
167                         qp->resp.sent_psn_nak = 0;
168
169                 break;
170
171         case IB_QPT_UC:
172                 if (qp->resp.drop_msg || diff != 0) {
173                         if (pkt->mask & RXE_START_MASK) {
174                                 qp->resp.drop_msg = 0;
175                                 return RESPST_CHK_OP_SEQ;
176                         }
177
178                         qp->resp.drop_msg = 1;
179                         return RESPST_CLEANUP;
180                 }
181                 break;
182         default:
183                 break;
184         }
185
186         return RESPST_CHK_OP_SEQ;
187 }
188
189 static enum resp_states check_op_seq(struct rxe_qp *qp,
190                                      struct rxe_pkt_info *pkt)
191 {
192         switch (qp_type(qp)) {
193         case IB_QPT_RC:
194                 switch (qp->resp.opcode) {
195                 case IB_OPCODE_RC_SEND_FIRST:
196                 case IB_OPCODE_RC_SEND_MIDDLE:
197                         switch (pkt->opcode) {
198                         case IB_OPCODE_RC_SEND_MIDDLE:
199                         case IB_OPCODE_RC_SEND_LAST:
200                         case IB_OPCODE_RC_SEND_LAST_WITH_IMMEDIATE:
201                         case IB_OPCODE_RC_SEND_LAST_WITH_INVALIDATE:
202                                 return RESPST_CHK_OP_VALID;
203                         default:
204                                 return RESPST_ERR_MISSING_OPCODE_LAST_C;
205                         }
206
207                 case IB_OPCODE_RC_RDMA_WRITE_FIRST:
208                 case IB_OPCODE_RC_RDMA_WRITE_MIDDLE:
209                         switch (pkt->opcode) {
210                         case IB_OPCODE_RC_RDMA_WRITE_MIDDLE:
211                         case IB_OPCODE_RC_RDMA_WRITE_LAST:
212                         case IB_OPCODE_RC_RDMA_WRITE_LAST_WITH_IMMEDIATE:
213                                 return RESPST_CHK_OP_VALID;
214                         default:
215                                 return RESPST_ERR_MISSING_OPCODE_LAST_C;
216                         }
217
218                 default:
219                         switch (pkt->opcode) {
220                         case IB_OPCODE_RC_SEND_MIDDLE:
221                         case IB_OPCODE_RC_SEND_LAST:
222                         case IB_OPCODE_RC_SEND_LAST_WITH_IMMEDIATE:
223                         case IB_OPCODE_RC_SEND_LAST_WITH_INVALIDATE:
224                         case IB_OPCODE_RC_RDMA_WRITE_MIDDLE:
225                         case IB_OPCODE_RC_RDMA_WRITE_LAST:
226                         case IB_OPCODE_RC_RDMA_WRITE_LAST_WITH_IMMEDIATE:
227                                 return RESPST_ERR_MISSING_OPCODE_FIRST;
228                         default:
229                                 return RESPST_CHK_OP_VALID;
230                         }
231                 }
232                 break;
233
234         case IB_QPT_UC:
235                 switch (qp->resp.opcode) {
236                 case IB_OPCODE_UC_SEND_FIRST:
237                 case IB_OPCODE_UC_SEND_MIDDLE:
238                         switch (pkt->opcode) {
239                         case IB_OPCODE_UC_SEND_MIDDLE:
240                         case IB_OPCODE_UC_SEND_LAST:
241                         case IB_OPCODE_UC_SEND_LAST_WITH_IMMEDIATE:
242                                 return RESPST_CHK_OP_VALID;
243                         default:
244                                 return RESPST_ERR_MISSING_OPCODE_LAST_D1E;
245                         }
246
247                 case IB_OPCODE_UC_RDMA_WRITE_FIRST:
248                 case IB_OPCODE_UC_RDMA_WRITE_MIDDLE:
249                         switch (pkt->opcode) {
250                         case IB_OPCODE_UC_RDMA_WRITE_MIDDLE:
251                         case IB_OPCODE_UC_RDMA_WRITE_LAST:
252                         case IB_OPCODE_UC_RDMA_WRITE_LAST_WITH_IMMEDIATE:
253                                 return RESPST_CHK_OP_VALID;
254                         default:
255                                 return RESPST_ERR_MISSING_OPCODE_LAST_D1E;
256                         }
257
258                 default:
259                         switch (pkt->opcode) {
260                         case IB_OPCODE_UC_SEND_MIDDLE:
261                         case IB_OPCODE_UC_SEND_LAST:
262                         case IB_OPCODE_UC_SEND_LAST_WITH_IMMEDIATE:
263                         case IB_OPCODE_UC_RDMA_WRITE_MIDDLE:
264                         case IB_OPCODE_UC_RDMA_WRITE_LAST:
265                         case IB_OPCODE_UC_RDMA_WRITE_LAST_WITH_IMMEDIATE:
266                                 qp->resp.drop_msg = 1;
267                                 return RESPST_CLEANUP;
268                         default:
269                                 return RESPST_CHK_OP_VALID;
270                         }
271                 }
272                 break;
273
274         default:
275                 return RESPST_CHK_OP_VALID;
276         }
277 }
278
279 static enum resp_states check_op_valid(struct rxe_qp *qp,
280                                        struct rxe_pkt_info *pkt)
281 {
282         switch (qp_type(qp)) {
283         case IB_QPT_RC:
284                 if (((pkt->mask & RXE_READ_MASK) &&
285                      !(qp->attr.qp_access_flags & IB_ACCESS_REMOTE_READ)) ||
286                     ((pkt->mask & RXE_WRITE_MASK) &&
287                      !(qp->attr.qp_access_flags & IB_ACCESS_REMOTE_WRITE)) ||
288                     ((pkt->mask & RXE_ATOMIC_MASK) &&
289                      !(qp->attr.qp_access_flags & IB_ACCESS_REMOTE_ATOMIC))) {
290                         return RESPST_ERR_UNSUPPORTED_OPCODE;
291                 }
292
293                 break;
294
295         case IB_QPT_UC:
296                 if ((pkt->mask & RXE_WRITE_MASK) &&
297                     !(qp->attr.qp_access_flags & IB_ACCESS_REMOTE_WRITE)) {
298                         qp->resp.drop_msg = 1;
299                         return RESPST_CLEANUP;
300                 }
301
302                 break;
303
304         case IB_QPT_UD:
305         case IB_QPT_SMI:
306         case IB_QPT_GSI:
307                 break;
308
309         default:
310                 WARN_ON(1);
311                 break;
312         }
313
314         return RESPST_CHK_RESOURCE;
315 }
316
317 static enum resp_states get_srq_wqe(struct rxe_qp *qp)
318 {
319         struct rxe_srq *srq = qp->srq;
320         struct rxe_queue *q = srq->rq.queue;
321         struct rxe_recv_wqe *wqe;
322         struct ib_event ev;
323
324         if (srq->error)
325                 return RESPST_ERR_RNR;
326
327         spin_lock_bh(&srq->rq.consumer_lock);
328
329         wqe = queue_head(q);
330         if (!wqe) {
331                 spin_unlock_bh(&srq->rq.consumer_lock);
332                 return RESPST_ERR_RNR;
333         }
334
335         /* note kernel and user space recv wqes have same size */
336         memcpy(&qp->resp.srq_wqe, wqe, sizeof(qp->resp.srq_wqe));
337
338         qp->resp.wqe = &qp->resp.srq_wqe.wqe;
339         advance_consumer(q);
340
341         if (srq->limit && srq->ibsrq.event_handler &&
342             (queue_count(q) < srq->limit)) {
343                 srq->limit = 0;
344                 goto event;
345         }
346
347         spin_unlock_bh(&srq->rq.consumer_lock);
348         return RESPST_CHK_LENGTH;
349
350 event:
351         spin_unlock_bh(&srq->rq.consumer_lock);
352         ev.device = qp->ibqp.device;
353         ev.element.srq = qp->ibqp.srq;
354         ev.event = IB_EVENT_SRQ_LIMIT_REACHED;
355         srq->ibsrq.event_handler(&ev, srq->ibsrq.srq_context);
356         return RESPST_CHK_LENGTH;
357 }
358
359 static enum resp_states check_resource(struct rxe_qp *qp,
360                                        struct rxe_pkt_info *pkt)
361 {
362         struct rxe_srq *srq = qp->srq;
363
364         if (qp->resp.state == QP_STATE_ERROR) {
365                 if (qp->resp.wqe) {
366                         qp->resp.status = IB_WC_WR_FLUSH_ERR;
367                         return RESPST_COMPLETE;
368                 } else if (!srq) {
369                         qp->resp.wqe = queue_head(qp->rq.queue);
370                         if (qp->resp.wqe) {
371                                 qp->resp.status = IB_WC_WR_FLUSH_ERR;
372                                 return RESPST_COMPLETE;
373                         } else {
374                                 return RESPST_EXIT;
375                         }
376                 } else {
377                         return RESPST_EXIT;
378                 }
379         }
380
381         if (pkt->mask & RXE_READ_OR_ATOMIC) {
382                 /* it is the requesters job to not send
383                  * too many read/atomic ops, we just
384                  * recycle the responder resource queue
385                  */
386                 if (likely(qp->attr.max_rd_atomic > 0))
387                         return RESPST_CHK_LENGTH;
388                 else
389                         return RESPST_ERR_TOO_MANY_RDMA_ATM_REQ;
390         }
391
392         if (pkt->mask & RXE_RWR_MASK) {
393                 if (srq)
394                         return get_srq_wqe(qp);
395
396                 qp->resp.wqe = queue_head(qp->rq.queue);
397                 return (qp->resp.wqe) ? RESPST_CHK_LENGTH : RESPST_ERR_RNR;
398         }
399
400         return RESPST_CHK_LENGTH;
401 }
402
403 static enum resp_states check_length(struct rxe_qp *qp,
404                                      struct rxe_pkt_info *pkt)
405 {
406         switch (qp_type(qp)) {
407         case IB_QPT_RC:
408                 return RESPST_CHK_RKEY;
409
410         case IB_QPT_UC:
411                 return RESPST_CHK_RKEY;
412
413         default:
414                 return RESPST_CHK_RKEY;
415         }
416 }
417
418 static enum resp_states check_rkey(struct rxe_qp *qp,
419                                    struct rxe_pkt_info *pkt)
420 {
421         struct rxe_mem *mem;
422         u64 va;
423         u32 rkey;
424         u32 resid;
425         u32 pktlen;
426         int mtu = qp->mtu;
427         enum resp_states state;
428         int access;
429
430         if (pkt->mask & (RXE_READ_MASK | RXE_WRITE_MASK)) {
431                 if (pkt->mask & RXE_RETH_MASK) {
432                         qp->resp.va = reth_va(pkt);
433                         qp->resp.rkey = reth_rkey(pkt);
434                         qp->resp.resid = reth_len(pkt);
435                 }
436                 access = (pkt->mask & RXE_READ_MASK) ? IB_ACCESS_REMOTE_READ
437                                                      : IB_ACCESS_REMOTE_WRITE;
438         } else if (pkt->mask & RXE_ATOMIC_MASK) {
439                 qp->resp.va = atmeth_va(pkt);
440                 qp->resp.rkey = atmeth_rkey(pkt);
441                 qp->resp.resid = sizeof(u64);
442                 access = IB_ACCESS_REMOTE_ATOMIC;
443         } else {
444                 return RESPST_EXECUTE;
445         }
446
447         va      = qp->resp.va;
448         rkey    = qp->resp.rkey;
449         resid   = qp->resp.resid;
450         pktlen  = payload_size(pkt);
451
452         mem = lookup_mem(qp->pd, access, rkey, lookup_remote);
453         if (!mem) {
454                 state = RESPST_ERR_RKEY_VIOLATION;
455                 goto err1;
456         }
457
458         if (unlikely(mem->state == RXE_MEM_STATE_FREE)) {
459                 state = RESPST_ERR_RKEY_VIOLATION;
460                 goto err1;
461         }
462
463         if (mem_check_range(mem, va, resid)) {
464                 state = RESPST_ERR_RKEY_VIOLATION;
465                 goto err2;
466         }
467
468         if (pkt->mask & RXE_WRITE_MASK)  {
469                 if (resid > mtu) {
470                         if (pktlen != mtu || bth_pad(pkt)) {
471                                 state = RESPST_ERR_LENGTH;
472                                 goto err2;
473                         }
474
475                         resid = mtu;
476                 } else {
477                         if (pktlen != resid) {
478                                 state = RESPST_ERR_LENGTH;
479                                 goto err2;
480                         }
481                         if ((bth_pad(pkt) != (0x3 & (-resid)))) {
482                                 /* This case may not be exactly that
483                                  * but nothing else fits.
484                                  */
485                                 state = RESPST_ERR_LENGTH;
486                                 goto err2;
487                         }
488                 }
489         }
490
491         WARN_ON(qp->resp.mr);
492
493         qp->resp.mr = mem;
494         return RESPST_EXECUTE;
495
496 err2:
497         rxe_drop_ref(mem);
498 err1:
499         return state;
500 }
501
502 static enum resp_states send_data_in(struct rxe_qp *qp, void *data_addr,
503                                      int data_len)
504 {
505         int err;
506         struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
507
508         err = copy_data(rxe, qp->pd, IB_ACCESS_LOCAL_WRITE, &qp->resp.wqe->dma,
509                         data_addr, data_len, to_mem_obj, NULL);
510         if (unlikely(err))
511                 return (err == -ENOSPC) ? RESPST_ERR_LENGTH
512                                         : RESPST_ERR_MALFORMED_WQE;
513
514         return RESPST_NONE;
515 }
516
517 static enum resp_states write_data_in(struct rxe_qp *qp,
518                                       struct rxe_pkt_info *pkt)
519 {
520         enum resp_states rc = RESPST_NONE;
521         int     err;
522         int data_len = payload_size(pkt);
523
524         err = rxe_mem_copy(qp->resp.mr, qp->resp.va, payload_addr(pkt),
525                            data_len, to_mem_obj, NULL);
526         if (err) {
527                 rc = RESPST_ERR_RKEY_VIOLATION;
528                 goto out;
529         }
530
531         qp->resp.va += data_len;
532         qp->resp.resid -= data_len;
533
534 out:
535         return rc;
536 }
537
538 /* Guarantee atomicity of atomic operations at the machine level. */
539 static DEFINE_SPINLOCK(atomic_ops_lock);
540
541 static enum resp_states process_atomic(struct rxe_qp *qp,
542                                        struct rxe_pkt_info *pkt)
543 {
544         u64 iova = atmeth_va(pkt);
545         u64 *vaddr;
546         enum resp_states ret;
547         struct rxe_mem *mr = qp->resp.mr;
548
549         if (mr->state != RXE_MEM_STATE_VALID) {
550                 ret = RESPST_ERR_RKEY_VIOLATION;
551                 goto out;
552         }
553
554         vaddr = iova_to_vaddr(mr, iova, sizeof(u64));
555
556         /* check vaddr is 8 bytes aligned. */
557         if (!vaddr || (uintptr_t)vaddr & 7) {
558                 ret = RESPST_ERR_MISALIGNED_ATOMIC;
559                 goto out;
560         }
561
562         spin_lock_bh(&atomic_ops_lock);
563
564         qp->resp.atomic_orig = *vaddr;
565
566         if (pkt->opcode == IB_OPCODE_RC_COMPARE_SWAP ||
567             pkt->opcode == IB_OPCODE_RD_COMPARE_SWAP) {
568                 if (*vaddr == atmeth_comp(pkt))
569                         *vaddr = atmeth_swap_add(pkt);
570         } else {
571                 *vaddr += atmeth_swap_add(pkt);
572         }
573
574         spin_unlock_bh(&atomic_ops_lock);
575
576         ret = RESPST_NONE;
577 out:
578         return ret;
579 }
580
581 static struct sk_buff *prepare_ack_packet(struct rxe_qp *qp,
582                                           struct rxe_pkt_info *pkt,
583                                           struct rxe_pkt_info *ack,
584                                           int opcode,
585                                           int payload,
586                                           u32 psn,
587                                           u8 syndrome,
588                                           u32 *crcp)
589 {
590         struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
591         struct sk_buff *skb;
592         u32 crc = 0;
593         u32 *p;
594         int paylen;
595         int pad;
596         int err;
597
598         /*
599          * allocate packet
600          */
601         pad = (-payload) & 0x3;
602         paylen = rxe_opcode[opcode].length + payload + pad + RXE_ICRC_SIZE;
603
604         skb = rxe->ifc_ops->init_packet(rxe, &qp->pri_av, paylen, ack);
605         if (!skb)
606                 return NULL;
607
608         ack->qp = qp;
609         ack->opcode = opcode;
610         ack->mask = rxe_opcode[opcode].mask;
611         ack->offset = pkt->offset;
612         ack->paylen = paylen;
613
614         /* fill in bth using the request packet headers */
615         memcpy(ack->hdr, pkt->hdr, pkt->offset + RXE_BTH_BYTES);
616
617         bth_set_opcode(ack, opcode);
618         bth_set_qpn(ack, qp->attr.dest_qp_num);
619         bth_set_pad(ack, pad);
620         bth_set_se(ack, 0);
621         bth_set_psn(ack, psn);
622         bth_set_ack(ack, 0);
623         ack->psn = psn;
624
625         if (ack->mask & RXE_AETH_MASK) {
626                 aeth_set_syn(ack, syndrome);
627                 aeth_set_msn(ack, qp->resp.msn);
628         }
629
630         if (ack->mask & RXE_ATMACK_MASK)
631                 atmack_set_orig(ack, qp->resp.atomic_orig);
632
633         err = rxe->ifc_ops->prepare(rxe, ack, skb, &crc);
634         if (err) {
635                 kfree_skb(skb);
636                 return NULL;
637         }
638
639         if (crcp) {
640                 /* CRC computation will be continued by the caller */
641                 *crcp = crc;
642         } else {
643                 p = payload_addr(ack) + payload + bth_pad(ack);
644                 *p = ~crc;
645         }
646
647         return skb;
648 }
649
650 /* RDMA read response. If res is not NULL, then we have a current RDMA request
651  * being processed or replayed.
652  */
653 static enum resp_states read_reply(struct rxe_qp *qp,
654                                    struct rxe_pkt_info *req_pkt)
655 {
656         struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
657         struct rxe_pkt_info ack_pkt;
658         struct sk_buff *skb;
659         int mtu = qp->mtu;
660         enum resp_states state;
661         int payload;
662         int opcode;
663         int err;
664         struct resp_res *res = qp->resp.res;
665         u32 icrc;
666         u32 *p;
667
668         if (!res) {
669                 /* This is the first time we process that request. Get a
670                  * resource
671                  */
672                 res = &qp->resp.resources[qp->resp.res_head];
673
674                 free_rd_atomic_resource(qp, res);
675                 rxe_advance_resp_resource(qp);
676
677                 res->type               = RXE_READ_MASK;
678
679                 res->read.va            = qp->resp.va;
680                 res->read.va_org        = qp->resp.va;
681
682                 res->first_psn          = req_pkt->psn;
683                 res->last_psn           = req_pkt->psn +
684                                           (reth_len(req_pkt) + mtu - 1) /
685                                           mtu - 1;
686                 res->cur_psn            = req_pkt->psn;
687
688                 res->read.resid         = qp->resp.resid;
689                 res->read.length        = qp->resp.resid;
690                 res->read.rkey          = qp->resp.rkey;
691
692                 /* note res inherits the reference to mr from qp */
693                 res->read.mr            = qp->resp.mr;
694                 qp->resp.mr             = NULL;
695
696                 qp->resp.res            = res;
697                 res->state              = rdatm_res_state_new;
698         }
699
700         if (res->state == rdatm_res_state_new) {
701                 if (res->read.resid <= mtu)
702                         opcode = IB_OPCODE_RC_RDMA_READ_RESPONSE_ONLY;
703                 else
704                         opcode = IB_OPCODE_RC_RDMA_READ_RESPONSE_FIRST;
705         } else {
706                 if (res->read.resid > mtu)
707                         opcode = IB_OPCODE_RC_RDMA_READ_RESPONSE_MIDDLE;
708                 else
709                         opcode = IB_OPCODE_RC_RDMA_READ_RESPONSE_LAST;
710         }
711
712         res->state = rdatm_res_state_next;
713
714         payload = min_t(int, res->read.resid, mtu);
715
716         skb = prepare_ack_packet(qp, req_pkt, &ack_pkt, opcode, payload,
717                                  res->cur_psn, AETH_ACK_UNLIMITED, &icrc);
718         if (!skb)
719                 return RESPST_ERR_RNR;
720
721         err = rxe_mem_copy(res->read.mr, res->read.va, payload_addr(&ack_pkt),
722                            payload, from_mem_obj, &icrc);
723         if (err)
724                 pr_err("Failed copying memory\n");
725
726         p = payload_addr(&ack_pkt) + payload + bth_pad(&ack_pkt);
727         *p = ~icrc;
728
729         err = rxe_xmit_packet(rxe, qp, &ack_pkt, skb);
730         if (err) {
731                 pr_err("Failed sending RDMA reply.\n");
732                 kfree_skb(skb);
733                 return RESPST_ERR_RNR;
734         }
735
736         res->read.va += payload;
737         res->read.resid -= payload;
738         res->cur_psn = (res->cur_psn + 1) & BTH_PSN_MASK;
739
740         if (res->read.resid > 0) {
741                 state = RESPST_DONE;
742         } else {
743                 qp->resp.res = NULL;
744                 qp->resp.opcode = -1;
745                 qp->resp.psn = res->cur_psn;
746                 state = RESPST_CLEANUP;
747         }
748
749         return state;
750 }
751
752 /* Executes a new request. A retried request never reach that function (send
753  * and writes are discarded, and reads and atomics are retried elsewhere.
754  */
755 static enum resp_states execute(struct rxe_qp *qp, struct rxe_pkt_info *pkt)
756 {
757         enum resp_states err;
758
759         if (pkt->mask & RXE_SEND_MASK) {
760                 if (qp_type(qp) == IB_QPT_UD ||
761                     qp_type(qp) == IB_QPT_SMI ||
762                     qp_type(qp) == IB_QPT_GSI) {
763                         union rdma_network_hdr hdr;
764                         struct sk_buff *skb = PKT_TO_SKB(pkt);
765
766                         memset(&hdr, 0, sizeof(hdr));
767                         if (skb->protocol == htons(ETH_P_IP))
768                                 memcpy(&hdr.roce4grh, ip_hdr(skb), sizeof(hdr.roce4grh));
769                         else if (skb->protocol == htons(ETH_P_IPV6))
770                                 memcpy(&hdr.ibgrh, ipv6_hdr(skb), sizeof(hdr.ibgrh));
771
772                         err = send_data_in(qp, &hdr, sizeof(hdr));
773                         if (err)
774                                 return err;
775                 }
776                 err = send_data_in(qp, payload_addr(pkt), payload_size(pkt));
777                 if (err)
778                         return err;
779         } else if (pkt->mask & RXE_WRITE_MASK) {
780                 err = write_data_in(qp, pkt);
781                 if (err)
782                         return err;
783         } else if (pkt->mask & RXE_READ_MASK) {
784                 /* For RDMA Read we can increment the msn now. See C9-148. */
785                 qp->resp.msn++;
786                 return RESPST_READ_REPLY;
787         } else if (pkt->mask & RXE_ATOMIC_MASK) {
788                 err = process_atomic(qp, pkt);
789                 if (err)
790                         return err;
791         } else
792                 /* Unreachable */
793                 WARN_ON(1);
794
795         /* We successfully processed this new request. */
796         qp->resp.msn++;
797
798         /* next expected psn, read handles this separately */
799         qp->resp.psn = (pkt->psn + 1) & BTH_PSN_MASK;
800
801         qp->resp.opcode = pkt->opcode;
802         qp->resp.status = IB_WC_SUCCESS;
803
804         if (pkt->mask & RXE_COMP_MASK)
805                 return RESPST_COMPLETE;
806         else if (qp_type(qp) == IB_QPT_RC)
807                 return RESPST_ACKNOWLEDGE;
808         else
809                 return RESPST_CLEANUP;
810 }
811
812 static enum resp_states do_complete(struct rxe_qp *qp,
813                                     struct rxe_pkt_info *pkt)
814 {
815         struct rxe_cqe cqe;
816         struct ib_wc *wc = &cqe.ibwc;
817         struct ib_uverbs_wc *uwc = &cqe.uibwc;
818         struct rxe_recv_wqe *wqe = qp->resp.wqe;
819
820         if (unlikely(!wqe))
821                 return RESPST_CLEANUP;
822
823         memset(&cqe, 0, sizeof(cqe));
824
825         wc->wr_id               = wqe->wr_id;
826         wc->status              = qp->resp.status;
827         wc->qp                  = &qp->ibqp;
828
829         /* fields after status are not required for errors */
830         if (wc->status == IB_WC_SUCCESS) {
831                 wc->opcode = (pkt->mask & RXE_IMMDT_MASK &&
832                                 pkt->mask & RXE_WRITE_MASK) ?
833                                         IB_WC_RECV_RDMA_WITH_IMM : IB_WC_RECV;
834                 wc->vendor_err = 0;
835                 wc->byte_len = wqe->dma.length - wqe->dma.resid;
836
837                 /* fields after byte_len are different between kernel and user
838                  * space
839                  */
840                 if (qp->rcq->is_user) {
841                         uwc->wc_flags = IB_WC_GRH;
842
843                         if (pkt->mask & RXE_IMMDT_MASK) {
844                                 uwc->wc_flags |= IB_WC_WITH_IMM;
845                                 uwc->ex.imm_data =
846                                         (__u32 __force)immdt_imm(pkt);
847                         }
848
849                         if (pkt->mask & RXE_IETH_MASK) {
850                                 uwc->wc_flags |= IB_WC_WITH_INVALIDATE;
851                                 uwc->ex.invalidate_rkey = ieth_rkey(pkt);
852                         }
853
854                         uwc->qp_num             = qp->ibqp.qp_num;
855
856                         if (pkt->mask & RXE_DETH_MASK)
857                                 uwc->src_qp = deth_sqp(pkt);
858
859                         uwc->port_num           = qp->attr.port_num;
860                 } else {
861                         struct sk_buff *skb = PKT_TO_SKB(pkt);
862
863                         wc->wc_flags = IB_WC_GRH | IB_WC_WITH_NETWORK_HDR_TYPE;
864                         if (skb->protocol == htons(ETH_P_IP))
865                                 wc->network_hdr_type = RDMA_NETWORK_IPV4;
866                         else
867                                 wc->network_hdr_type = RDMA_NETWORK_IPV6;
868
869                         if (pkt->mask & RXE_IMMDT_MASK) {
870                                 wc->wc_flags |= IB_WC_WITH_IMM;
871                                 wc->ex.imm_data = immdt_imm(pkt);
872                         }
873
874                         if (pkt->mask & RXE_IETH_MASK) {
875                                 struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
876                                 struct rxe_mem *rmr;
877
878                                 wc->wc_flags |= IB_WC_WITH_INVALIDATE;
879                                 wc->ex.invalidate_rkey = ieth_rkey(pkt);
880
881                                 rmr = rxe_pool_get_index(&rxe->mr_pool,
882                                                          wc->ex.invalidate_rkey >> 8);
883                                 if (unlikely(!rmr)) {
884                                         pr_err("Bad rkey %#x invalidation\n", wc->ex.invalidate_rkey);
885                                         return RESPST_ERROR;
886                                 }
887                                 rmr->state = RXE_MEM_STATE_FREE;
888                         }
889
890                         wc->qp                  = &qp->ibqp;
891
892                         if (pkt->mask & RXE_DETH_MASK)
893                                 wc->src_qp = deth_sqp(pkt);
894
895                         wc->port_num            = qp->attr.port_num;
896                 }
897         }
898
899         /* have copy for srq and reference for !srq */
900         if (!qp->srq)
901                 advance_consumer(qp->rq.queue);
902
903         qp->resp.wqe = NULL;
904
905         if (rxe_cq_post(qp->rcq, &cqe, pkt ? bth_se(pkt) : 1))
906                 return RESPST_ERR_CQ_OVERFLOW;
907
908         if (qp->resp.state == QP_STATE_ERROR)
909                 return RESPST_CHK_RESOURCE;
910
911         if (!pkt)
912                 return RESPST_DONE;
913         else if (qp_type(qp) == IB_QPT_RC)
914                 return RESPST_ACKNOWLEDGE;
915         else
916                 return RESPST_CLEANUP;
917 }
918
919 static int send_ack(struct rxe_qp *qp, struct rxe_pkt_info *pkt,
920                     u8 syndrome, u32 psn)
921 {
922         int err = 0;
923         struct rxe_pkt_info ack_pkt;
924         struct sk_buff *skb;
925         struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
926
927         skb = prepare_ack_packet(qp, pkt, &ack_pkt, IB_OPCODE_RC_ACKNOWLEDGE,
928                                  0, psn, syndrome, NULL);
929         if (!skb) {
930                 err = -ENOMEM;
931                 goto err1;
932         }
933
934         err = rxe_xmit_packet(rxe, qp, &ack_pkt, skb);
935         if (err) {
936                 pr_err_ratelimited("Failed sending ack\n");
937                 kfree_skb(skb);
938         }
939
940 err1:
941         return err;
942 }
943
944 static int send_atomic_ack(struct rxe_qp *qp, struct rxe_pkt_info *pkt,
945                            u8 syndrome)
946 {
947         int rc = 0;
948         struct rxe_pkt_info ack_pkt;
949         struct sk_buff *skb;
950         struct sk_buff *skb_copy;
951         struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
952         struct resp_res *res;
953
954         skb = prepare_ack_packet(qp, pkt, &ack_pkt,
955                                  IB_OPCODE_RC_ATOMIC_ACKNOWLEDGE, 0, pkt->psn,
956                                  syndrome, NULL);
957         if (!skb) {
958                 rc = -ENOMEM;
959                 goto out;
960         }
961
962         skb_copy = skb_clone(skb, GFP_ATOMIC);
963         if (skb_copy)
964                 rxe_add_ref(qp); /* for the new SKB */
965         else {
966                 pr_warn("Could not clone atomic response\n");
967                 rc = -ENOMEM;
968                 goto out;
969         }
970
971         res = &qp->resp.resources[qp->resp.res_head];
972         free_rd_atomic_resource(qp, res);
973         rxe_advance_resp_resource(qp);
974
975         res->type = RXE_ATOMIC_MASK;
976         res->atomic.skb = skb;
977         res->first_psn = qp->resp.psn;
978         res->last_psn = qp->resp.psn;
979         res->cur_psn = qp->resp.psn;
980
981         rc = rxe_xmit_packet(rxe, qp, &ack_pkt, skb_copy);
982         if (rc) {
983                 pr_err_ratelimited("Failed sending ack\n");
984                 rxe_drop_ref(qp);
985                 kfree_skb(skb_copy);
986         }
987
988 out:
989         return rc;
990 }
991
992 static enum resp_states acknowledge(struct rxe_qp *qp,
993                                     struct rxe_pkt_info *pkt)
994 {
995         if (qp_type(qp) != IB_QPT_RC)
996                 return RESPST_CLEANUP;
997
998         if (qp->resp.aeth_syndrome != AETH_ACK_UNLIMITED)
999                 send_ack(qp, pkt, qp->resp.aeth_syndrome, pkt->psn);
1000         else if (pkt->mask & RXE_ATOMIC_MASK)
1001                 send_atomic_ack(qp, pkt, AETH_ACK_UNLIMITED);
1002         else if (bth_ack(pkt))
1003                 send_ack(qp, pkt, AETH_ACK_UNLIMITED, pkt->psn);
1004
1005         return RESPST_CLEANUP;
1006 }
1007
1008 static enum resp_states cleanup(struct rxe_qp *qp,
1009                                 struct rxe_pkt_info *pkt)
1010 {
1011         struct sk_buff *skb;
1012
1013         if (pkt) {
1014                 skb = skb_dequeue(&qp->req_pkts);
1015                 rxe_drop_ref(qp);
1016                 kfree_skb(skb);
1017         }
1018
1019         if (qp->resp.mr) {
1020                 rxe_drop_ref(qp->resp.mr);
1021                 qp->resp.mr = NULL;
1022         }
1023
1024         return RESPST_DONE;
1025 }
1026
1027 static struct resp_res *find_resource(struct rxe_qp *qp, u32 psn)
1028 {
1029         int i;
1030
1031         for (i = 0; i < qp->attr.max_rd_atomic; i++) {
1032                 struct resp_res *res = &qp->resp.resources[i];
1033
1034                 if (res->type == 0)
1035                         continue;
1036
1037                 if (psn_compare(psn, res->first_psn) >= 0 &&
1038                     psn_compare(psn, res->last_psn) <= 0) {
1039                         return res;
1040                 }
1041         }
1042
1043         return NULL;
1044 }
1045
1046 static enum resp_states duplicate_request(struct rxe_qp *qp,
1047                                           struct rxe_pkt_info *pkt)
1048 {
1049         enum resp_states rc;
1050
1051         if (pkt->mask & RXE_SEND_MASK ||
1052             pkt->mask & RXE_WRITE_MASK) {
1053                 /* SEND. Ack again and cleanup. C9-105. */
1054                 if (bth_ack(pkt))
1055                         send_ack(qp, pkt, AETH_ACK_UNLIMITED, qp->resp.psn - 1);
1056                 rc = RESPST_CLEANUP;
1057                 goto out;
1058         } else if (pkt->mask & RXE_READ_MASK) {
1059                 struct resp_res *res;
1060
1061                 res = find_resource(qp, pkt->psn);
1062                 if (!res) {
1063                         /* Resource not found. Class D error.  Drop the
1064                          * request.
1065                          */
1066                         rc = RESPST_CLEANUP;
1067                         goto out;
1068                 } else {
1069                         /* Ensure this new request is the same as the previous
1070                          * one or a subset of it.
1071                          */
1072                         u64 iova = reth_va(pkt);
1073                         u32 resid = reth_len(pkt);
1074
1075                         if (iova < res->read.va_org ||
1076                             resid > res->read.length ||
1077                             (iova + resid) > (res->read.va_org +
1078                                               res->read.length)) {
1079                                 rc = RESPST_CLEANUP;
1080                                 goto out;
1081                         }
1082
1083                         if (reth_rkey(pkt) != res->read.rkey) {
1084                                 rc = RESPST_CLEANUP;
1085                                 goto out;
1086                         }
1087
1088                         res->cur_psn = pkt->psn;
1089                         res->state = (pkt->psn == res->first_psn) ?
1090                                         rdatm_res_state_new :
1091                                         rdatm_res_state_replay;
1092
1093                         /* Reset the resource, except length. */
1094                         res->read.va_org = iova;
1095                         res->read.va = iova;
1096                         res->read.resid = resid;
1097
1098                         /* Replay the RDMA read reply. */
1099                         qp->resp.res = res;
1100                         rc = RESPST_READ_REPLY;
1101                         goto out;
1102                 }
1103         } else {
1104                 struct resp_res *res;
1105
1106                 /* Find the operation in our list of responder resources. */
1107                 res = find_resource(qp, pkt->psn);
1108                 if (res) {
1109                         struct sk_buff *skb_copy;
1110
1111                         skb_copy = skb_clone(res->atomic.skb, GFP_ATOMIC);
1112                         if (skb_copy) {
1113                                 rxe_add_ref(qp); /* for the new SKB */
1114                         } else {
1115                                 pr_warn("Couldn't clone atomic resp\n");
1116                                 rc = RESPST_CLEANUP;
1117                                 goto out;
1118                         }
1119                         bth_set_psn(SKB_TO_PKT(skb_copy),
1120                                     qp->resp.psn - 1);
1121                         /* Resend the result. */
1122                         rc = rxe_xmit_packet(to_rdev(qp->ibqp.device), qp,
1123                                              pkt, skb_copy);
1124                         if (rc) {
1125                                 pr_err("Failed resending result. This flow is not handled - skb ignored\n");
1126                                 kfree_skb(skb_copy);
1127                                 rc = RESPST_CLEANUP;
1128                                 goto out;
1129                         }
1130                 }
1131
1132                 /* Resource not found. Class D error. Drop the request. */
1133                 rc = RESPST_CLEANUP;
1134                 goto out;
1135         }
1136 out:
1137         return rc;
1138 }
1139
1140 /* Process a class A or C. Both are treated the same in this implementation. */
1141 static void do_class_ac_error(struct rxe_qp *qp, u8 syndrome,
1142                               enum ib_wc_status status)
1143 {
1144         qp->resp.aeth_syndrome  = syndrome;
1145         qp->resp.status         = status;
1146
1147         /* indicate that we should go through the ERROR state */
1148         qp->resp.goto_error     = 1;
1149 }
1150
1151 static enum resp_states do_class_d1e_error(struct rxe_qp *qp)
1152 {
1153         /* UC */
1154         if (qp->srq) {
1155                 /* Class E */
1156                 qp->resp.drop_msg = 1;
1157                 if (qp->resp.wqe) {
1158                         qp->resp.status = IB_WC_REM_INV_REQ_ERR;
1159                         return RESPST_COMPLETE;
1160                 } else {
1161                         return RESPST_CLEANUP;
1162                 }
1163         } else {
1164                 /* Class D1. This packet may be the start of a
1165                  * new message and could be valid. The previous
1166                  * message is invalid and ignored. reset the
1167                  * recv wr to its original state
1168                  */
1169                 if (qp->resp.wqe) {
1170                         qp->resp.wqe->dma.resid = qp->resp.wqe->dma.length;
1171                         qp->resp.wqe->dma.cur_sge = 0;
1172                         qp->resp.wqe->dma.sge_offset = 0;
1173                         qp->resp.opcode = -1;
1174                 }
1175
1176                 if (qp->resp.mr) {
1177                         rxe_drop_ref(qp->resp.mr);
1178                         qp->resp.mr = NULL;
1179                 }
1180
1181                 return RESPST_CLEANUP;
1182         }
1183 }
1184
1185 int rxe_responder(void *arg)
1186 {
1187         struct rxe_qp *qp = (struct rxe_qp *)arg;
1188         enum resp_states state;
1189         struct rxe_pkt_info *pkt = NULL;
1190         int ret = 0;
1191
1192         qp->resp.aeth_syndrome = AETH_ACK_UNLIMITED;
1193
1194         if (!qp->valid) {
1195                 ret = -EINVAL;
1196                 goto done;
1197         }
1198
1199         switch (qp->resp.state) {
1200         case QP_STATE_RESET:
1201                 state = RESPST_RESET;
1202                 break;
1203
1204         default:
1205                 state = RESPST_GET_REQ;
1206                 break;
1207         }
1208
1209         while (1) {
1210                 pr_debug("state = %s\n", resp_state_name[state]);
1211                 switch (state) {
1212                 case RESPST_GET_REQ:
1213                         state = get_req(qp, &pkt);
1214                         break;
1215                 case RESPST_CHK_PSN:
1216                         state = check_psn(qp, pkt);
1217                         break;
1218                 case RESPST_CHK_OP_SEQ:
1219                         state = check_op_seq(qp, pkt);
1220                         break;
1221                 case RESPST_CHK_OP_VALID:
1222                         state = check_op_valid(qp, pkt);
1223                         break;
1224                 case RESPST_CHK_RESOURCE:
1225                         state = check_resource(qp, pkt);
1226                         break;
1227                 case RESPST_CHK_LENGTH:
1228                         state = check_length(qp, pkt);
1229                         break;
1230                 case RESPST_CHK_RKEY:
1231                         state = check_rkey(qp, pkt);
1232                         break;
1233                 case RESPST_EXECUTE:
1234                         state = execute(qp, pkt);
1235                         break;
1236                 case RESPST_COMPLETE:
1237                         state = do_complete(qp, pkt);
1238                         break;
1239                 case RESPST_READ_REPLY:
1240                         state = read_reply(qp, pkt);
1241                         break;
1242                 case RESPST_ACKNOWLEDGE:
1243                         state = acknowledge(qp, pkt);
1244                         break;
1245                 case RESPST_CLEANUP:
1246                         state = cleanup(qp, pkt);
1247                         break;
1248                 case RESPST_DUPLICATE_REQUEST:
1249                         state = duplicate_request(qp, pkt);
1250                         break;
1251                 case RESPST_ERR_PSN_OUT_OF_SEQ:
1252                         /* RC only - Class B. Drop packet. */
1253                         send_ack(qp, pkt, AETH_NAK_PSN_SEQ_ERROR, qp->resp.psn);
1254                         state = RESPST_CLEANUP;
1255                         break;
1256
1257                 case RESPST_ERR_TOO_MANY_RDMA_ATM_REQ:
1258                 case RESPST_ERR_MISSING_OPCODE_FIRST:
1259                 case RESPST_ERR_MISSING_OPCODE_LAST_C:
1260                 case RESPST_ERR_UNSUPPORTED_OPCODE:
1261                 case RESPST_ERR_MISALIGNED_ATOMIC:
1262                         /* RC Only - Class C. */
1263                         do_class_ac_error(qp, AETH_NAK_INVALID_REQ,
1264                                           IB_WC_REM_INV_REQ_ERR);
1265                         state = RESPST_COMPLETE;
1266                         break;
1267
1268                 case RESPST_ERR_MISSING_OPCODE_LAST_D1E:
1269                         state = do_class_d1e_error(qp);
1270                         break;
1271                 case RESPST_ERR_RNR:
1272                         if (qp_type(qp) == IB_QPT_RC) {
1273                                 /* RC - class B */
1274                                 send_ack(qp, pkt, AETH_RNR_NAK |
1275                                          (~AETH_TYPE_MASK &
1276                                          qp->attr.min_rnr_timer),
1277                                          pkt->psn);
1278                         } else {
1279                                 /* UD/UC - class D */
1280                                 qp->resp.drop_msg = 1;
1281                         }
1282                         state = RESPST_CLEANUP;
1283                         break;
1284
1285                 case RESPST_ERR_RKEY_VIOLATION:
1286                         if (qp_type(qp) == IB_QPT_RC) {
1287                                 /* Class C */
1288                                 do_class_ac_error(qp, AETH_NAK_REM_ACC_ERR,
1289                                                   IB_WC_REM_ACCESS_ERR);
1290                                 state = RESPST_COMPLETE;
1291                         } else {
1292                                 qp->resp.drop_msg = 1;
1293                                 if (qp->srq) {
1294                                         /* UC/SRQ Class D */
1295                                         qp->resp.status = IB_WC_REM_ACCESS_ERR;
1296                                         state = RESPST_COMPLETE;
1297                                 } else {
1298                                         /* UC/non-SRQ Class E. */
1299                                         state = RESPST_CLEANUP;
1300                                 }
1301                         }
1302                         break;
1303
1304                 case RESPST_ERR_LENGTH:
1305                         if (qp_type(qp) == IB_QPT_RC) {
1306                                 /* Class C */
1307                                 do_class_ac_error(qp, AETH_NAK_INVALID_REQ,
1308                                                   IB_WC_REM_INV_REQ_ERR);
1309                                 state = RESPST_COMPLETE;
1310                         } else if (qp->srq) {
1311                                 /* UC/UD - class E */
1312                                 qp->resp.status = IB_WC_REM_INV_REQ_ERR;
1313                                 state = RESPST_COMPLETE;
1314                         } else {
1315                                 /* UC/UD - class D */
1316                                 qp->resp.drop_msg = 1;
1317                                 state = RESPST_CLEANUP;
1318                         }
1319                         break;
1320
1321                 case RESPST_ERR_MALFORMED_WQE:
1322                         /* All, Class A. */
1323                         do_class_ac_error(qp, AETH_NAK_REM_OP_ERR,
1324                                           IB_WC_LOC_QP_OP_ERR);
1325                         state = RESPST_COMPLETE;
1326                         break;
1327
1328                 case RESPST_ERR_CQ_OVERFLOW:
1329                         /* All - Class G */
1330                         state = RESPST_ERROR;
1331                         break;
1332
1333                 case RESPST_DONE:
1334                         if (qp->resp.goto_error) {
1335                                 state = RESPST_ERROR;
1336                                 break;
1337                         }
1338
1339                         goto done;
1340
1341                 case RESPST_EXIT:
1342                         if (qp->resp.goto_error) {
1343                                 state = RESPST_ERROR;
1344                                 break;
1345                         }
1346
1347                         goto exit;
1348
1349                 case RESPST_RESET: {
1350                         struct sk_buff *skb;
1351
1352                         while ((skb = skb_dequeue(&qp->req_pkts))) {
1353                                 rxe_drop_ref(qp);
1354                                 kfree_skb(skb);
1355                         }
1356
1357                         while (!qp->srq && qp->rq.queue &&
1358                                queue_head(qp->rq.queue))
1359                                 advance_consumer(qp->rq.queue);
1360
1361                         qp->resp.wqe = NULL;
1362                         goto exit;
1363                 }
1364
1365                 case RESPST_ERROR:
1366                         qp->resp.goto_error = 0;
1367                         pr_warn("qp#%d moved to error state\n", qp_num(qp));
1368                         rxe_qp_error(qp);
1369                         goto exit;
1370
1371                 default:
1372                         WARN_ON(1);
1373                 }
1374         }
1375
1376 exit:
1377         ret = -EAGAIN;
1378 done:
1379         return ret;
1380 }