Merge branch 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/dtor/input
[linux-2.6] / drivers / infiniband / hw / mthca / mthca_qp.c
1 /*
2  * Copyright (c) 2004 Topspin Communications.  All rights reserved.
3  * Copyright (c) 2005 Cisco Systems. All rights reserved.
4  * Copyright (c) 2005 Mellanox Technologies. All rights reserved.
5  * Copyright (c) 2004 Voltaire, Inc. All rights reserved.
6  *
7  * This software is available to you under a choice of one of two
8  * licenses.  You may choose to be licensed under the terms of the GNU
9  * General Public License (GPL) Version 2, available from the file
10  * COPYING in the main directory of this source tree, or the
11  * OpenIB.org BSD license below:
12  *
13  *     Redistribution and use in source and binary forms, with or
14  *     without modification, are permitted provided that the following
15  *     conditions are met:
16  *
17  *      - Redistributions of source code must retain the above
18  *        copyright notice, this list of conditions and the following
19  *        disclaimer.
20  *
21  *      - Redistributions in binary form must reproduce the above
22  *        copyright notice, this list of conditions and the following
23  *        disclaimer in the documentation and/or other materials
24  *        provided with the distribution.
25  *
26  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
27  * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
28  * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
29  * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
30  * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
31  * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
32  * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
33  * SOFTWARE.
34  *
35  * $Id: mthca_qp.c 1355 2004-12-17 15:23:43Z roland $
36  */
37
38 #include <linux/string.h>
39 #include <linux/slab.h>
40 #include <linux/sched.h>
41
42 #include <asm/io.h>
43
44 #include <rdma/ib_verbs.h>
45 #include <rdma/ib_cache.h>
46 #include <rdma/ib_pack.h>
47
48 #include "mthca_dev.h"
49 #include "mthca_cmd.h"
50 #include "mthca_memfree.h"
51 #include "mthca_wqe.h"
52
53 enum {
54         MTHCA_MAX_DIRECT_QP_SIZE = 4 * PAGE_SIZE,
55         MTHCA_ACK_REQ_FREQ       = 10,
56         MTHCA_FLIGHT_LIMIT       = 9,
57         MTHCA_UD_HEADER_SIZE     = 72, /* largest UD header possible */
58         MTHCA_INLINE_HEADER_SIZE = 4,  /* data segment overhead for inline */
59         MTHCA_INLINE_CHUNK_SIZE  = 16  /* inline data segment chunk */
60 };
61
62 enum {
63         MTHCA_QP_STATE_RST  = 0,
64         MTHCA_QP_STATE_INIT = 1,
65         MTHCA_QP_STATE_RTR  = 2,
66         MTHCA_QP_STATE_RTS  = 3,
67         MTHCA_QP_STATE_SQE  = 4,
68         MTHCA_QP_STATE_SQD  = 5,
69         MTHCA_QP_STATE_ERR  = 6,
70         MTHCA_QP_STATE_DRAINING = 7
71 };
72
73 enum {
74         MTHCA_QP_ST_RC  = 0x0,
75         MTHCA_QP_ST_UC  = 0x1,
76         MTHCA_QP_ST_RD  = 0x2,
77         MTHCA_QP_ST_UD  = 0x3,
78         MTHCA_QP_ST_MLX = 0x7
79 };
80
81 enum {
82         MTHCA_QP_PM_MIGRATED = 0x3,
83         MTHCA_QP_PM_ARMED    = 0x0,
84         MTHCA_QP_PM_REARM    = 0x1
85 };
86
87 enum {
88         /* qp_context flags */
89         MTHCA_QP_BIT_DE  = 1 <<  8,
90         /* params1 */
91         MTHCA_QP_BIT_SRE = 1 << 15,
92         MTHCA_QP_BIT_SWE = 1 << 14,
93         MTHCA_QP_BIT_SAE = 1 << 13,
94         MTHCA_QP_BIT_SIC = 1 <<  4,
95         MTHCA_QP_BIT_SSC = 1 <<  3,
96         /* params2 */
97         MTHCA_QP_BIT_RRE = 1 << 15,
98         MTHCA_QP_BIT_RWE = 1 << 14,
99         MTHCA_QP_BIT_RAE = 1 << 13,
100         MTHCA_QP_BIT_RIC = 1 <<  4,
101         MTHCA_QP_BIT_RSC = 1 <<  3
102 };
103
104 enum {
105         MTHCA_SEND_DOORBELL_FENCE = 1 << 5
106 };
107
108 struct mthca_qp_path {
109         __be32 port_pkey;
110         u8     rnr_retry;
111         u8     g_mylmc;
112         __be16 rlid;
113         u8     ackto;
114         u8     mgid_index;
115         u8     static_rate;
116         u8     hop_limit;
117         __be32 sl_tclass_flowlabel;
118         u8     rgid[16];
119 } __attribute__((packed));
120
121 struct mthca_qp_context {
122         __be32 flags;
123         __be32 tavor_sched_queue; /* Reserved on Arbel */
124         u8     mtu_msgmax;
125         u8     rq_size_stride;  /* Reserved on Tavor */
126         u8     sq_size_stride;  /* Reserved on Tavor */
127         u8     rlkey_arbel_sched_queue; /* Reserved on Tavor */
128         __be32 usr_page;
129         __be32 local_qpn;
130         __be32 remote_qpn;
131         u32    reserved1[2];
132         struct mthca_qp_path pri_path;
133         struct mthca_qp_path alt_path;
134         __be32 rdd;
135         __be32 pd;
136         __be32 wqe_base;
137         __be32 wqe_lkey;
138         __be32 params1;
139         __be32 reserved2;
140         __be32 next_send_psn;
141         __be32 cqn_snd;
142         __be32 snd_wqe_base_l;  /* Next send WQE on Tavor */
143         __be32 snd_db_index;    /* (debugging only entries) */
144         __be32 last_acked_psn;
145         __be32 ssn;
146         __be32 params2;
147         __be32 rnr_nextrecvpsn;
148         __be32 ra_buff_indx;
149         __be32 cqn_rcv;
150         __be32 rcv_wqe_base_l;  /* Next recv WQE on Tavor */
151         __be32 rcv_db_index;    /* (debugging only entries) */
152         __be32 qkey;
153         __be32 srqn;
154         __be32 rmsn;
155         __be16 rq_wqe_counter;  /* reserved on Tavor */
156         __be16 sq_wqe_counter;  /* reserved on Tavor */
157         u32    reserved3[18];
158 } __attribute__((packed));
159
160 struct mthca_qp_param {
161         __be32 opt_param_mask;
162         u32    reserved1;
163         struct mthca_qp_context context;
164         u32    reserved2[62];
165 } __attribute__((packed));
166
167 enum {
168         MTHCA_QP_OPTPAR_ALT_ADDR_PATH     = 1 << 0,
169         MTHCA_QP_OPTPAR_RRE               = 1 << 1,
170         MTHCA_QP_OPTPAR_RAE               = 1 << 2,
171         MTHCA_QP_OPTPAR_RWE               = 1 << 3,
172         MTHCA_QP_OPTPAR_PKEY_INDEX        = 1 << 4,
173         MTHCA_QP_OPTPAR_Q_KEY             = 1 << 5,
174         MTHCA_QP_OPTPAR_RNR_TIMEOUT       = 1 << 6,
175         MTHCA_QP_OPTPAR_PRIMARY_ADDR_PATH = 1 << 7,
176         MTHCA_QP_OPTPAR_SRA_MAX           = 1 << 8,
177         MTHCA_QP_OPTPAR_RRA_MAX           = 1 << 9,
178         MTHCA_QP_OPTPAR_PM_STATE          = 1 << 10,
179         MTHCA_QP_OPTPAR_PORT_NUM          = 1 << 11,
180         MTHCA_QP_OPTPAR_RETRY_COUNT       = 1 << 12,
181         MTHCA_QP_OPTPAR_ALT_RNR_RETRY     = 1 << 13,
182         MTHCA_QP_OPTPAR_ACK_TIMEOUT       = 1 << 14,
183         MTHCA_QP_OPTPAR_RNR_RETRY         = 1 << 15,
184         MTHCA_QP_OPTPAR_SCHED_QUEUE       = 1 << 16
185 };
186
187 static const u8 mthca_opcode[] = {
188         [IB_WR_SEND]                 = MTHCA_OPCODE_SEND,
189         [IB_WR_SEND_WITH_IMM]        = MTHCA_OPCODE_SEND_IMM,
190         [IB_WR_RDMA_WRITE]           = MTHCA_OPCODE_RDMA_WRITE,
191         [IB_WR_RDMA_WRITE_WITH_IMM]  = MTHCA_OPCODE_RDMA_WRITE_IMM,
192         [IB_WR_RDMA_READ]            = MTHCA_OPCODE_RDMA_READ,
193         [IB_WR_ATOMIC_CMP_AND_SWP]   = MTHCA_OPCODE_ATOMIC_CS,
194         [IB_WR_ATOMIC_FETCH_AND_ADD] = MTHCA_OPCODE_ATOMIC_FA,
195 };
196
197 static int is_sqp(struct mthca_dev *dev, struct mthca_qp *qp)
198 {
199         return qp->qpn >= dev->qp_table.sqp_start &&
200                 qp->qpn <= dev->qp_table.sqp_start + 3;
201 }
202
203 static int is_qp0(struct mthca_dev *dev, struct mthca_qp *qp)
204 {
205         return qp->qpn >= dev->qp_table.sqp_start &&
206                 qp->qpn <= dev->qp_table.sqp_start + 1;
207 }
208
209 static void *get_recv_wqe(struct mthca_qp *qp, int n)
210 {
211         if (qp->is_direct)
212                 return qp->queue.direct.buf + (n << qp->rq.wqe_shift);
213         else
214                 return qp->queue.page_list[(n << qp->rq.wqe_shift) >> PAGE_SHIFT].buf +
215                         ((n << qp->rq.wqe_shift) & (PAGE_SIZE - 1));
216 }
217
218 static void *get_send_wqe(struct mthca_qp *qp, int n)
219 {
220         if (qp->is_direct)
221                 return qp->queue.direct.buf + qp->send_wqe_offset +
222                         (n << qp->sq.wqe_shift);
223         else
224                 return qp->queue.page_list[(qp->send_wqe_offset +
225                                             (n << qp->sq.wqe_shift)) >>
226                                            PAGE_SHIFT].buf +
227                         ((qp->send_wqe_offset + (n << qp->sq.wqe_shift)) &
228                          (PAGE_SIZE - 1));
229 }
230
231 static void mthca_wq_reset(struct mthca_wq *wq)
232 {
233         wq->next_ind  = 0;
234         wq->last_comp = wq->max - 1;
235         wq->head      = 0;
236         wq->tail      = 0;
237 }
238
239 void mthca_qp_event(struct mthca_dev *dev, u32 qpn,
240                     enum ib_event_type event_type)
241 {
242         struct mthca_qp *qp;
243         struct ib_event event;
244
245         spin_lock(&dev->qp_table.lock);
246         qp = mthca_array_get(&dev->qp_table.qp, qpn & (dev->limits.num_qps - 1));
247         if (qp)
248                 ++qp->refcount;
249         spin_unlock(&dev->qp_table.lock);
250
251         if (!qp) {
252                 mthca_warn(dev, "Async event for bogus QP %08x\n", qpn);
253                 return;
254         }
255
256         if (event_type == IB_EVENT_PATH_MIG)
257                 qp->port = qp->alt_port;
258
259         event.device      = &dev->ib_dev;
260         event.event       = event_type;
261         event.element.qp  = &qp->ibqp;
262         if (qp->ibqp.event_handler)
263                 qp->ibqp.event_handler(&event, qp->ibqp.qp_context);
264
265         spin_lock(&dev->qp_table.lock);
266         if (!--qp->refcount)
267                 wake_up(&qp->wait);
268         spin_unlock(&dev->qp_table.lock);
269 }
270
271 static int to_mthca_state(enum ib_qp_state ib_state)
272 {
273         switch (ib_state) {
274         case IB_QPS_RESET: return MTHCA_QP_STATE_RST;
275         case IB_QPS_INIT:  return MTHCA_QP_STATE_INIT;
276         case IB_QPS_RTR:   return MTHCA_QP_STATE_RTR;
277         case IB_QPS_RTS:   return MTHCA_QP_STATE_RTS;
278         case IB_QPS_SQD:   return MTHCA_QP_STATE_SQD;
279         case IB_QPS_SQE:   return MTHCA_QP_STATE_SQE;
280         case IB_QPS_ERR:   return MTHCA_QP_STATE_ERR;
281         default:                return -1;
282         }
283 }
284
285 enum { RC, UC, UD, RD, RDEE, MLX, NUM_TRANS };
286
287 static int to_mthca_st(int transport)
288 {
289         switch (transport) {
290         case RC:  return MTHCA_QP_ST_RC;
291         case UC:  return MTHCA_QP_ST_UC;
292         case UD:  return MTHCA_QP_ST_UD;
293         case RD:  return MTHCA_QP_ST_RD;
294         case MLX: return MTHCA_QP_ST_MLX;
295         default:  return -1;
296         }
297 }
298
299 static void store_attrs(struct mthca_sqp *sqp, const struct ib_qp_attr *attr,
300                         int attr_mask)
301 {
302         if (attr_mask & IB_QP_PKEY_INDEX)
303                 sqp->pkey_index = attr->pkey_index;
304         if (attr_mask & IB_QP_QKEY)
305                 sqp->qkey = attr->qkey;
306         if (attr_mask & IB_QP_SQ_PSN)
307                 sqp->send_psn = attr->sq_psn;
308 }
309
310 static void init_port(struct mthca_dev *dev, int port)
311 {
312         int err;
313         u8 status;
314         struct mthca_init_ib_param param;
315
316         memset(&param, 0, sizeof param);
317
318         param.port_width = dev->limits.port_width_cap;
319         param.vl_cap     = dev->limits.vl_cap;
320         param.mtu_cap    = dev->limits.mtu_cap;
321         param.gid_cap    = dev->limits.gid_table_len;
322         param.pkey_cap   = dev->limits.pkey_table_len;
323
324         err = mthca_INIT_IB(dev, &param, port, &status);
325         if (err)
326                 mthca_warn(dev, "INIT_IB failed, return code %d.\n", err);
327         if (status)
328                 mthca_warn(dev, "INIT_IB returned status %02x.\n", status);
329 }
330
331 static __be32 get_hw_access_flags(struct mthca_qp *qp, const struct ib_qp_attr *attr,
332                                   int attr_mask)
333 {
334         u8 dest_rd_atomic;
335         u32 access_flags;
336         u32 hw_access_flags = 0;
337
338         if (attr_mask & IB_QP_MAX_DEST_RD_ATOMIC)
339                 dest_rd_atomic = attr->max_dest_rd_atomic;
340         else
341                 dest_rd_atomic = qp->resp_depth;
342
343         if (attr_mask & IB_QP_ACCESS_FLAGS)
344                 access_flags = attr->qp_access_flags;
345         else
346                 access_flags = qp->atomic_rd_en;
347
348         if (!dest_rd_atomic)
349                 access_flags &= IB_ACCESS_REMOTE_WRITE;
350
351         if (access_flags & IB_ACCESS_REMOTE_READ)
352                 hw_access_flags |= MTHCA_QP_BIT_RRE;
353         if (access_flags & IB_ACCESS_REMOTE_ATOMIC)
354                 hw_access_flags |= MTHCA_QP_BIT_RAE;
355         if (access_flags & IB_ACCESS_REMOTE_WRITE)
356                 hw_access_flags |= MTHCA_QP_BIT_RWE;
357
358         return cpu_to_be32(hw_access_flags);
359 }
360
361 static inline enum ib_qp_state to_ib_qp_state(int mthca_state)
362 {
363         switch (mthca_state) {
364         case MTHCA_QP_STATE_RST:      return IB_QPS_RESET;
365         case MTHCA_QP_STATE_INIT:     return IB_QPS_INIT;
366         case MTHCA_QP_STATE_RTR:      return IB_QPS_RTR;
367         case MTHCA_QP_STATE_RTS:      return IB_QPS_RTS;
368         case MTHCA_QP_STATE_DRAINING:
369         case MTHCA_QP_STATE_SQD:      return IB_QPS_SQD;
370         case MTHCA_QP_STATE_SQE:      return IB_QPS_SQE;
371         case MTHCA_QP_STATE_ERR:      return IB_QPS_ERR;
372         default:                      return -1;
373         }
374 }
375
376 static inline enum ib_mig_state to_ib_mig_state(int mthca_mig_state)
377 {
378         switch (mthca_mig_state) {
379         case 0:  return IB_MIG_ARMED;
380         case 1:  return IB_MIG_REARM;
381         case 3:  return IB_MIG_MIGRATED;
382         default: return -1;
383         }
384 }
385
386 static int to_ib_qp_access_flags(int mthca_flags)
387 {
388         int ib_flags = 0;
389
390         if (mthca_flags & MTHCA_QP_BIT_RRE)
391                 ib_flags |= IB_ACCESS_REMOTE_READ;
392         if (mthca_flags & MTHCA_QP_BIT_RWE)
393                 ib_flags |= IB_ACCESS_REMOTE_WRITE;
394         if (mthca_flags & MTHCA_QP_BIT_RAE)
395                 ib_flags |= IB_ACCESS_REMOTE_ATOMIC;
396
397         return ib_flags;
398 }
399
400 static void to_ib_ah_attr(struct mthca_dev *dev, struct ib_ah_attr *ib_ah_attr,
401                                 struct mthca_qp_path *path)
402 {
403         memset(ib_ah_attr, 0, sizeof *ib_ah_attr);
404         ib_ah_attr->port_num      = (be32_to_cpu(path->port_pkey) >> 24) & 0x3;
405
406         if (ib_ah_attr->port_num == 0 || ib_ah_attr->port_num > dev->limits.num_ports)
407                 return;
408
409         ib_ah_attr->dlid          = be16_to_cpu(path->rlid);
410         ib_ah_attr->sl            = be32_to_cpu(path->sl_tclass_flowlabel) >> 28;
411         ib_ah_attr->src_path_bits = path->g_mylmc & 0x7f;
412         ib_ah_attr->static_rate   = mthca_rate_to_ib(dev,
413                                                      path->static_rate & 0xf,
414                                                      ib_ah_attr->port_num);
415         ib_ah_attr->ah_flags      = (path->g_mylmc & (1 << 7)) ? IB_AH_GRH : 0;
416         if (ib_ah_attr->ah_flags) {
417                 ib_ah_attr->grh.sgid_index = path->mgid_index & (dev->limits.gid_table_len - 1);
418                 ib_ah_attr->grh.hop_limit  = path->hop_limit;
419                 ib_ah_attr->grh.traffic_class =
420                         (be32_to_cpu(path->sl_tclass_flowlabel) >> 20) & 0xff;
421                 ib_ah_attr->grh.flow_label =
422                         be32_to_cpu(path->sl_tclass_flowlabel) & 0xfffff;
423                 memcpy(ib_ah_attr->grh.dgid.raw,
424                         path->rgid, sizeof ib_ah_attr->grh.dgid.raw);
425         }
426 }
427
428 int mthca_query_qp(struct ib_qp *ibqp, struct ib_qp_attr *qp_attr, int qp_attr_mask,
429                    struct ib_qp_init_attr *qp_init_attr)
430 {
431         struct mthca_dev *dev = to_mdev(ibqp->device);
432         struct mthca_qp *qp = to_mqp(ibqp);
433         int err = 0;
434         struct mthca_mailbox *mailbox = NULL;
435         struct mthca_qp_param *qp_param;
436         struct mthca_qp_context *context;
437         int mthca_state;
438         u8 status;
439
440         if (qp->state == IB_QPS_RESET) {
441                 qp_attr->qp_state = IB_QPS_RESET;
442                 goto done;
443         }
444
445         mailbox = mthca_alloc_mailbox(dev, GFP_KERNEL);
446         if (IS_ERR(mailbox))
447                 return PTR_ERR(mailbox);
448
449         err = mthca_QUERY_QP(dev, qp->qpn, 0, mailbox, &status);
450         if (err)
451                 goto out;
452         if (status) {
453                 mthca_warn(dev, "QUERY_QP returned status %02x\n", status);
454                 err = -EINVAL;
455                 goto out;
456         }
457
458         qp_param    = mailbox->buf;
459         context     = &qp_param->context;
460         mthca_state = be32_to_cpu(context->flags) >> 28;
461
462         qp_attr->qp_state            = to_ib_qp_state(mthca_state);
463         qp_attr->path_mtu            = context->mtu_msgmax >> 5;
464         qp_attr->path_mig_state      =
465                 to_ib_mig_state((be32_to_cpu(context->flags) >> 11) & 0x3);
466         qp_attr->qkey                = be32_to_cpu(context->qkey);
467         qp_attr->rq_psn              = be32_to_cpu(context->rnr_nextrecvpsn) & 0xffffff;
468         qp_attr->sq_psn              = be32_to_cpu(context->next_send_psn) & 0xffffff;
469         qp_attr->dest_qp_num         = be32_to_cpu(context->remote_qpn) & 0xffffff;
470         qp_attr->qp_access_flags     =
471                 to_ib_qp_access_flags(be32_to_cpu(context->params2));
472
473         if (qp->transport == RC || qp->transport == UC) {
474                 to_ib_ah_attr(dev, &qp_attr->ah_attr, &context->pri_path);
475                 to_ib_ah_attr(dev, &qp_attr->alt_ah_attr, &context->alt_path);
476                 qp_attr->alt_pkey_index =
477                         be32_to_cpu(context->alt_path.port_pkey) & 0x7f;
478                 qp_attr->alt_port_num   = qp_attr->alt_ah_attr.port_num;
479         }
480
481         qp_attr->pkey_index = be32_to_cpu(context->pri_path.port_pkey) & 0x7f;
482         qp_attr->port_num   =
483                 (be32_to_cpu(context->pri_path.port_pkey) >> 24) & 0x3;
484
485         /* qp_attr->en_sqd_async_notify is only applicable in modify qp */
486         qp_attr->sq_draining = mthca_state == MTHCA_QP_STATE_DRAINING;
487
488         qp_attr->max_rd_atomic = 1 << ((be32_to_cpu(context->params1) >> 21) & 0x7);
489
490         qp_attr->max_dest_rd_atomic =
491                 1 << ((be32_to_cpu(context->params2) >> 21) & 0x7);
492         qp_attr->min_rnr_timer      =
493                 (be32_to_cpu(context->rnr_nextrecvpsn) >> 24) & 0x1f;
494         qp_attr->timeout            = context->pri_path.ackto >> 3;
495         qp_attr->retry_cnt          = (be32_to_cpu(context->params1) >> 16) & 0x7;
496         qp_attr->rnr_retry          = context->pri_path.rnr_retry >> 5;
497         qp_attr->alt_timeout        = context->alt_path.ackto >> 3;
498
499 done:
500         qp_attr->cur_qp_state        = qp_attr->qp_state;
501         qp_attr->cap.max_send_wr     = qp->sq.max;
502         qp_attr->cap.max_recv_wr     = qp->rq.max;
503         qp_attr->cap.max_send_sge    = qp->sq.max_gs;
504         qp_attr->cap.max_recv_sge    = qp->rq.max_gs;
505         qp_attr->cap.max_inline_data = qp->max_inline_data;
506
507         qp_init_attr->cap            = qp_attr->cap;
508
509 out:
510         mthca_free_mailbox(dev, mailbox);
511         return err;
512 }
513
514 static int mthca_path_set(struct mthca_dev *dev, const struct ib_ah_attr *ah,
515                           struct mthca_qp_path *path, u8 port)
516 {
517         path->g_mylmc     = ah->src_path_bits & 0x7f;
518         path->rlid        = cpu_to_be16(ah->dlid);
519         path->static_rate = mthca_get_rate(dev, ah->static_rate, port);
520
521         if (ah->ah_flags & IB_AH_GRH) {
522                 if (ah->grh.sgid_index >= dev->limits.gid_table_len) {
523                         mthca_dbg(dev, "sgid_index (%u) too large. max is %d\n",
524                                   ah->grh.sgid_index, dev->limits.gid_table_len-1);
525                         return -1;
526                 }
527
528                 path->g_mylmc   |= 1 << 7;
529                 path->mgid_index = ah->grh.sgid_index;
530                 path->hop_limit  = ah->grh.hop_limit;
531                 path->sl_tclass_flowlabel =
532                         cpu_to_be32((ah->sl << 28)                |
533                                     (ah->grh.traffic_class << 20) |
534                                     (ah->grh.flow_label));
535                 memcpy(path->rgid, ah->grh.dgid.raw, 16);
536         } else
537                 path->sl_tclass_flowlabel = cpu_to_be32(ah->sl << 28);
538
539         return 0;
540 }
541
542 static int __mthca_modify_qp(struct ib_qp *ibqp,
543                              const struct ib_qp_attr *attr, int attr_mask,
544                              enum ib_qp_state cur_state, enum ib_qp_state new_state)
545 {
546         struct mthca_dev *dev = to_mdev(ibqp->device);
547         struct mthca_qp *qp = to_mqp(ibqp);
548         struct mthca_mailbox *mailbox;
549         struct mthca_qp_param *qp_param;
550         struct mthca_qp_context *qp_context;
551         u32 sqd_event = 0;
552         u8 status;
553         int err = -EINVAL;
554
555         mailbox = mthca_alloc_mailbox(dev, GFP_KERNEL);
556         if (IS_ERR(mailbox)) {
557                 err = PTR_ERR(mailbox);
558                 goto out;
559         }
560         qp_param = mailbox->buf;
561         qp_context = &qp_param->context;
562         memset(qp_param, 0, sizeof *qp_param);
563
564         qp_context->flags      = cpu_to_be32((to_mthca_state(new_state) << 28) |
565                                              (to_mthca_st(qp->transport) << 16));
566         qp_context->flags     |= cpu_to_be32(MTHCA_QP_BIT_DE);
567         if (!(attr_mask & IB_QP_PATH_MIG_STATE))
568                 qp_context->flags |= cpu_to_be32(MTHCA_QP_PM_MIGRATED << 11);
569         else {
570                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_PM_STATE);
571                 switch (attr->path_mig_state) {
572                 case IB_MIG_MIGRATED:
573                         qp_context->flags |= cpu_to_be32(MTHCA_QP_PM_MIGRATED << 11);
574                         break;
575                 case IB_MIG_REARM:
576                         qp_context->flags |= cpu_to_be32(MTHCA_QP_PM_REARM << 11);
577                         break;
578                 case IB_MIG_ARMED:
579                         qp_context->flags |= cpu_to_be32(MTHCA_QP_PM_ARMED << 11);
580                         break;
581                 }
582         }
583
584         /* leave tavor_sched_queue as 0 */
585
586         if (qp->transport == MLX || qp->transport == UD)
587                 qp_context->mtu_msgmax = (IB_MTU_2048 << 5) | 11;
588         else if (attr_mask & IB_QP_PATH_MTU) {
589                 if (attr->path_mtu < IB_MTU_256 || attr->path_mtu > IB_MTU_2048) {
590                         mthca_dbg(dev, "path MTU (%u) is invalid\n",
591                                   attr->path_mtu);
592                         goto out_mailbox;
593                 }
594                 qp_context->mtu_msgmax = (attr->path_mtu << 5) | 31;
595         }
596
597         if (mthca_is_memfree(dev)) {
598                 if (qp->rq.max)
599                         qp_context->rq_size_stride = ilog2(qp->rq.max) << 3;
600                 qp_context->rq_size_stride |= qp->rq.wqe_shift - 4;
601
602                 if (qp->sq.max)
603                         qp_context->sq_size_stride = ilog2(qp->sq.max) << 3;
604                 qp_context->sq_size_stride |= qp->sq.wqe_shift - 4;
605         }
606
607         /* leave arbel_sched_queue as 0 */
608
609         if (qp->ibqp.uobject)
610                 qp_context->usr_page =
611                         cpu_to_be32(to_mucontext(qp->ibqp.uobject->context)->uar.index);
612         else
613                 qp_context->usr_page = cpu_to_be32(dev->driver_uar.index);
614         qp_context->local_qpn  = cpu_to_be32(qp->qpn);
615         if (attr_mask & IB_QP_DEST_QPN) {
616                 qp_context->remote_qpn = cpu_to_be32(attr->dest_qp_num);
617         }
618
619         if (qp->transport == MLX)
620                 qp_context->pri_path.port_pkey |=
621                         cpu_to_be32(qp->port << 24);
622         else {
623                 if (attr_mask & IB_QP_PORT) {
624                         qp_context->pri_path.port_pkey |=
625                                 cpu_to_be32(attr->port_num << 24);
626                         qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_PORT_NUM);
627                 }
628         }
629
630         if (attr_mask & IB_QP_PKEY_INDEX) {
631                 qp_context->pri_path.port_pkey |=
632                         cpu_to_be32(attr->pkey_index);
633                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_PKEY_INDEX);
634         }
635
636         if (attr_mask & IB_QP_RNR_RETRY) {
637                 qp_context->alt_path.rnr_retry = qp_context->pri_path.rnr_retry =
638                         attr->rnr_retry << 5;
639                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_RNR_RETRY |
640                                                         MTHCA_QP_OPTPAR_ALT_RNR_RETRY);
641         }
642
643         if (attr_mask & IB_QP_AV) {
644                 if (mthca_path_set(dev, &attr->ah_attr, &qp_context->pri_path,
645                                    attr_mask & IB_QP_PORT ? attr->port_num : qp->port))
646                         goto out_mailbox;
647
648                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_PRIMARY_ADDR_PATH);
649         }
650
651         if (ibqp->qp_type == IB_QPT_RC &&
652             cur_state == IB_QPS_INIT && new_state == IB_QPS_RTR) {
653                 u8 sched_queue = ibqp->uobject ? 0x2 : 0x1;
654
655                 if (mthca_is_memfree(dev))
656                         qp_context->rlkey_arbel_sched_queue |= sched_queue;
657                 else
658                         qp_context->tavor_sched_queue |= cpu_to_be32(sched_queue);
659
660                 qp_param->opt_param_mask |=
661                         cpu_to_be32(MTHCA_QP_OPTPAR_SCHED_QUEUE);
662         }
663
664         if (attr_mask & IB_QP_TIMEOUT) {
665                 qp_context->pri_path.ackto = attr->timeout << 3;
666                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_ACK_TIMEOUT);
667         }
668
669         if (attr_mask & IB_QP_ALT_PATH) {
670                 if (attr->alt_pkey_index >= dev->limits.pkey_table_len) {
671                         mthca_dbg(dev, "Alternate P_Key index (%u) too large. max is %d\n",
672                                   attr->alt_pkey_index, dev->limits.pkey_table_len-1);
673                         goto out_mailbox;
674                 }
675
676                 if (attr->alt_port_num == 0 || attr->alt_port_num > dev->limits.num_ports) {
677                         mthca_dbg(dev, "Alternate port number (%u) is invalid\n",
678                                 attr->alt_port_num);
679                         goto out_mailbox;
680                 }
681
682                 if (mthca_path_set(dev, &attr->alt_ah_attr, &qp_context->alt_path,
683                                    attr->alt_ah_attr.port_num))
684                         goto out_mailbox;
685
686                 qp_context->alt_path.port_pkey |= cpu_to_be32(attr->alt_pkey_index |
687                                                               attr->alt_port_num << 24);
688                 qp_context->alt_path.ackto = attr->alt_timeout << 3;
689                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_ALT_ADDR_PATH);
690         }
691
692         /* leave rdd as 0 */
693         qp_context->pd         = cpu_to_be32(to_mpd(ibqp->pd)->pd_num);
694         /* leave wqe_base as 0 (we always create an MR based at 0 for WQs) */
695         qp_context->wqe_lkey   = cpu_to_be32(qp->mr.ibmr.lkey);
696         qp_context->params1    = cpu_to_be32((MTHCA_ACK_REQ_FREQ << 28) |
697                                              (MTHCA_FLIGHT_LIMIT << 24) |
698                                              MTHCA_QP_BIT_SWE);
699         if (qp->sq_policy == IB_SIGNAL_ALL_WR)
700                 qp_context->params1 |= cpu_to_be32(MTHCA_QP_BIT_SSC);
701         if (attr_mask & IB_QP_RETRY_CNT) {
702                 qp_context->params1 |= cpu_to_be32(attr->retry_cnt << 16);
703                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_RETRY_COUNT);
704         }
705
706         if (attr_mask & IB_QP_MAX_QP_RD_ATOMIC) {
707                 if (attr->max_rd_atomic) {
708                         qp_context->params1 |=
709                                 cpu_to_be32(MTHCA_QP_BIT_SRE |
710                                             MTHCA_QP_BIT_SAE);
711                         qp_context->params1 |=
712                                 cpu_to_be32(fls(attr->max_rd_atomic - 1) << 21);
713                 }
714                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_SRA_MAX);
715         }
716
717         if (attr_mask & IB_QP_SQ_PSN)
718                 qp_context->next_send_psn = cpu_to_be32(attr->sq_psn);
719         qp_context->cqn_snd = cpu_to_be32(to_mcq(ibqp->send_cq)->cqn);
720
721         if (mthca_is_memfree(dev)) {
722                 qp_context->snd_wqe_base_l = cpu_to_be32(qp->send_wqe_offset);
723                 qp_context->snd_db_index   = cpu_to_be32(qp->sq.db_index);
724         }
725
726         if (attr_mask & IB_QP_MAX_DEST_RD_ATOMIC) {
727                 if (attr->max_dest_rd_atomic)
728                         qp_context->params2 |=
729                                 cpu_to_be32(fls(attr->max_dest_rd_atomic - 1) << 21);
730
731                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_RRA_MAX);
732         }
733
734         if (attr_mask & (IB_QP_ACCESS_FLAGS | IB_QP_MAX_DEST_RD_ATOMIC)) {
735                 qp_context->params2      |= get_hw_access_flags(qp, attr, attr_mask);
736                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_RWE |
737                                                         MTHCA_QP_OPTPAR_RRE |
738                                                         MTHCA_QP_OPTPAR_RAE);
739         }
740
741         qp_context->params2 |= cpu_to_be32(MTHCA_QP_BIT_RSC);
742
743         if (ibqp->srq)
744                 qp_context->params2 |= cpu_to_be32(MTHCA_QP_BIT_RIC);
745
746         if (attr_mask & IB_QP_MIN_RNR_TIMER) {
747                 qp_context->rnr_nextrecvpsn |= cpu_to_be32(attr->min_rnr_timer << 24);
748                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_RNR_TIMEOUT);
749         }
750         if (attr_mask & IB_QP_RQ_PSN)
751                 qp_context->rnr_nextrecvpsn |= cpu_to_be32(attr->rq_psn);
752
753         qp_context->ra_buff_indx =
754                 cpu_to_be32(dev->qp_table.rdb_base +
755                             ((qp->qpn & (dev->limits.num_qps - 1)) * MTHCA_RDB_ENTRY_SIZE <<
756                              dev->qp_table.rdb_shift));
757
758         qp_context->cqn_rcv = cpu_to_be32(to_mcq(ibqp->recv_cq)->cqn);
759
760         if (mthca_is_memfree(dev))
761                 qp_context->rcv_db_index   = cpu_to_be32(qp->rq.db_index);
762
763         if (attr_mask & IB_QP_QKEY) {
764                 qp_context->qkey = cpu_to_be32(attr->qkey);
765                 qp_param->opt_param_mask |= cpu_to_be32(MTHCA_QP_OPTPAR_Q_KEY);
766         }
767
768         if (ibqp->srq)
769                 qp_context->srqn = cpu_to_be32(1 << 24 |
770                                                to_msrq(ibqp->srq)->srqn);
771
772         if (cur_state == IB_QPS_RTS && new_state == IB_QPS_SQD  &&
773             attr_mask & IB_QP_EN_SQD_ASYNC_NOTIFY               &&
774             attr->en_sqd_async_notify)
775                 sqd_event = 1 << 31;
776
777         err = mthca_MODIFY_QP(dev, cur_state, new_state, qp->qpn, 0,
778                               mailbox, sqd_event, &status);
779         if (err)
780                 goto out_mailbox;
781         if (status) {
782                 mthca_warn(dev, "modify QP %d->%d returned status %02x.\n",
783                            cur_state, new_state, status);
784                 err = -EINVAL;
785                 goto out_mailbox;
786         }
787
788         qp->state = new_state;
789         if (attr_mask & IB_QP_ACCESS_FLAGS)
790                 qp->atomic_rd_en = attr->qp_access_flags;
791         if (attr_mask & IB_QP_MAX_DEST_RD_ATOMIC)
792                 qp->resp_depth = attr->max_dest_rd_atomic;
793         if (attr_mask & IB_QP_PORT)
794                 qp->port = attr->port_num;
795         if (attr_mask & IB_QP_ALT_PATH)
796                 qp->alt_port = attr->alt_port_num;
797
798         if (is_sqp(dev, qp))
799                 store_attrs(to_msqp(qp), attr, attr_mask);
800
801         /*
802          * If we moved QP0 to RTR, bring the IB link up; if we moved
803          * QP0 to RESET or ERROR, bring the link back down.
804          */
805         if (is_qp0(dev, qp)) {
806                 if (cur_state != IB_QPS_RTR &&
807                     new_state == IB_QPS_RTR)
808                         init_port(dev, qp->port);
809
810                 if (cur_state != IB_QPS_RESET &&
811                     cur_state != IB_QPS_ERR &&
812                     (new_state == IB_QPS_RESET ||
813                      new_state == IB_QPS_ERR))
814                         mthca_CLOSE_IB(dev, qp->port, &status);
815         }
816
817         /*
818          * If we moved a kernel QP to RESET, clean up all old CQ
819          * entries and reinitialize the QP.
820          */
821         if (new_state == IB_QPS_RESET && !qp->ibqp.uobject) {
822                 mthca_cq_clean(dev, to_mcq(qp->ibqp.recv_cq), qp->qpn,
823                                qp->ibqp.srq ? to_msrq(qp->ibqp.srq) : NULL);
824                 if (qp->ibqp.send_cq != qp->ibqp.recv_cq)
825                         mthca_cq_clean(dev, to_mcq(qp->ibqp.send_cq), qp->qpn, NULL);
826
827                 mthca_wq_reset(&qp->sq);
828                 qp->sq.last = get_send_wqe(qp, qp->sq.max - 1);
829
830                 mthca_wq_reset(&qp->rq);
831                 qp->rq.last = get_recv_wqe(qp, qp->rq.max - 1);
832
833                 if (mthca_is_memfree(dev)) {
834                         *qp->sq.db = 0;
835                         *qp->rq.db = 0;
836                 }
837         }
838
839 out_mailbox:
840         mthca_free_mailbox(dev, mailbox);
841 out:
842         return err;
843 }
844
845 static const struct ib_qp_attr dummy_init_attr = { .port_num = 1 };
846 static const int dummy_init_attr_mask[] = {
847         [IB_QPT_UD]  = (IB_QP_PKEY_INDEX                |
848                         IB_QP_PORT                      |
849                         IB_QP_QKEY),
850         [IB_QPT_UC]  = (IB_QP_PKEY_INDEX                |
851                         IB_QP_PORT                      |
852                         IB_QP_ACCESS_FLAGS),
853         [IB_QPT_RC]  = (IB_QP_PKEY_INDEX                |
854                         IB_QP_PORT                      |
855                         IB_QP_ACCESS_FLAGS),
856         [IB_QPT_SMI] = (IB_QP_PKEY_INDEX                |
857                         IB_QP_QKEY),
858         [IB_QPT_GSI] = (IB_QP_PKEY_INDEX                |
859                         IB_QP_QKEY),
860 };
861
862 int mthca_modify_qp(struct ib_qp *ibqp, struct ib_qp_attr *attr, int attr_mask,
863                     struct ib_udata *udata)
864 {
865         struct mthca_dev *dev = to_mdev(ibqp->device);
866         struct mthca_qp *qp = to_mqp(ibqp);
867         enum ib_qp_state cur_state, new_state;
868         int err = -EINVAL;
869
870         mutex_lock(&qp->mutex);
871         if (attr_mask & IB_QP_CUR_STATE) {
872                 cur_state = attr->cur_qp_state;
873         } else {
874                 spin_lock_irq(&qp->sq.lock);
875                 spin_lock(&qp->rq.lock);
876                 cur_state = qp->state;
877                 spin_unlock(&qp->rq.lock);
878                 spin_unlock_irq(&qp->sq.lock);
879         }
880
881         new_state = attr_mask & IB_QP_STATE ? attr->qp_state : cur_state;
882
883         if (!ib_modify_qp_is_ok(cur_state, new_state, ibqp->qp_type, attr_mask)) {
884                 mthca_dbg(dev, "Bad QP transition (transport %d) "
885                           "%d->%d with attr 0x%08x\n",
886                           qp->transport, cur_state, new_state,
887                           attr_mask);
888                 goto out;
889         }
890
891         if ((attr_mask & IB_QP_PKEY_INDEX) &&
892              attr->pkey_index >= dev->limits.pkey_table_len) {
893                 mthca_dbg(dev, "P_Key index (%u) too large. max is %d\n",
894                           attr->pkey_index, dev->limits.pkey_table_len-1);
895                 goto out;
896         }
897
898         if ((attr_mask & IB_QP_PORT) &&
899             (attr->port_num == 0 || attr->port_num > dev->limits.num_ports)) {
900                 mthca_dbg(dev, "Port number (%u) is invalid\n", attr->port_num);
901                 goto out;
902         }
903
904         if (attr_mask & IB_QP_MAX_QP_RD_ATOMIC &&
905             attr->max_rd_atomic > dev->limits.max_qp_init_rdma) {
906                 mthca_dbg(dev, "Max rdma_atomic as initiator %u too large (max is %d)\n",
907                           attr->max_rd_atomic, dev->limits.max_qp_init_rdma);
908                 goto out;
909         }
910
911         if (attr_mask & IB_QP_MAX_DEST_RD_ATOMIC &&
912             attr->max_dest_rd_atomic > 1 << dev->qp_table.rdb_shift) {
913                 mthca_dbg(dev, "Max rdma_atomic as responder %u too large (max %d)\n",
914                           attr->max_dest_rd_atomic, 1 << dev->qp_table.rdb_shift);
915                 goto out;
916         }
917
918         if (cur_state == new_state && cur_state == IB_QPS_RESET) {
919                 err = 0;
920                 goto out;
921         }
922
923         if (cur_state == IB_QPS_RESET && new_state == IB_QPS_ERR) {
924                 err = __mthca_modify_qp(ibqp, &dummy_init_attr,
925                                         dummy_init_attr_mask[ibqp->qp_type],
926                                         IB_QPS_RESET, IB_QPS_INIT);
927                 if (err)
928                         goto out;
929                 cur_state = IB_QPS_INIT;
930         }
931
932         err = __mthca_modify_qp(ibqp, attr, attr_mask, cur_state, new_state);
933
934 out:
935         mutex_unlock(&qp->mutex);
936         return err;
937 }
938
939 static int mthca_max_data_size(struct mthca_dev *dev, struct mthca_qp *qp, int desc_sz)
940 {
941         /*
942          * Calculate the maximum size of WQE s/g segments, excluding
943          * the next segment and other non-data segments.
944          */
945         int max_data_size = desc_sz - sizeof (struct mthca_next_seg);
946
947         switch (qp->transport) {
948         case MLX:
949                 max_data_size -= 2 * sizeof (struct mthca_data_seg);
950                 break;
951
952         case UD:
953                 if (mthca_is_memfree(dev))
954                         max_data_size -= sizeof (struct mthca_arbel_ud_seg);
955                 else
956                         max_data_size -= sizeof (struct mthca_tavor_ud_seg);
957                 break;
958
959         default:
960                 max_data_size -= sizeof (struct mthca_raddr_seg);
961                 break;
962         }
963
964         return max_data_size;
965 }
966
967 static inline int mthca_max_inline_data(struct mthca_pd *pd, int max_data_size)
968 {
969         /* We don't support inline data for kernel QPs (yet). */
970         return pd->ibpd.uobject ? max_data_size - MTHCA_INLINE_HEADER_SIZE : 0;
971 }
972
973 static void mthca_adjust_qp_caps(struct mthca_dev *dev,
974                                  struct mthca_pd *pd,
975                                  struct mthca_qp *qp)
976 {
977         int max_data_size = mthca_max_data_size(dev, qp,
978                                                 min(dev->limits.max_desc_sz,
979                                                     1 << qp->sq.wqe_shift));
980
981         qp->max_inline_data = mthca_max_inline_data(pd, max_data_size);
982
983         qp->sq.max_gs = min_t(int, dev->limits.max_sg,
984                               max_data_size / sizeof (struct mthca_data_seg));
985         qp->rq.max_gs = min_t(int, dev->limits.max_sg,
986                                (min(dev->limits.max_desc_sz, 1 << qp->rq.wqe_shift) -
987                                 sizeof (struct mthca_next_seg)) /
988                                sizeof (struct mthca_data_seg));
989 }
990
991 /*
992  * Allocate and register buffer for WQEs.  qp->rq.max, sq.max,
993  * rq.max_gs and sq.max_gs must all be assigned.
994  * mthca_alloc_wqe_buf will calculate rq.wqe_shift and
995  * sq.wqe_shift (as well as send_wqe_offset, is_direct, and
996  * queue)
997  */
998 static int mthca_alloc_wqe_buf(struct mthca_dev *dev,
999                                struct mthca_pd *pd,
1000                                struct mthca_qp *qp)
1001 {
1002         int size;
1003         int err = -ENOMEM;
1004
1005         size = sizeof (struct mthca_next_seg) +
1006                 qp->rq.max_gs * sizeof (struct mthca_data_seg);
1007
1008         if (size > dev->limits.max_desc_sz)
1009                 return -EINVAL;
1010
1011         for (qp->rq.wqe_shift = 6; 1 << qp->rq.wqe_shift < size;
1012              qp->rq.wqe_shift++)
1013                 ; /* nothing */
1014
1015         size = qp->sq.max_gs * sizeof (struct mthca_data_seg);
1016         switch (qp->transport) {
1017         case MLX:
1018                 size += 2 * sizeof (struct mthca_data_seg);
1019                 break;
1020
1021         case UD:
1022                 size += mthca_is_memfree(dev) ?
1023                         sizeof (struct mthca_arbel_ud_seg) :
1024                         sizeof (struct mthca_tavor_ud_seg);
1025                 break;
1026
1027         case UC:
1028                 size += sizeof (struct mthca_raddr_seg);
1029                 break;
1030
1031         case RC:
1032                 size += sizeof (struct mthca_raddr_seg);
1033                 /*
1034                  * An atomic op will require an atomic segment, a
1035                  * remote address segment and one scatter entry.
1036                  */
1037                 size = max_t(int, size,
1038                              sizeof (struct mthca_atomic_seg) +
1039                              sizeof (struct mthca_raddr_seg) +
1040                              sizeof (struct mthca_data_seg));
1041                 break;
1042
1043         default:
1044                 break;
1045         }
1046
1047         /* Make sure that we have enough space for a bind request */
1048         size = max_t(int, size, sizeof (struct mthca_bind_seg));
1049
1050         size += sizeof (struct mthca_next_seg);
1051
1052         if (size > dev->limits.max_desc_sz)
1053                 return -EINVAL;
1054
1055         for (qp->sq.wqe_shift = 6; 1 << qp->sq.wqe_shift < size;
1056              qp->sq.wqe_shift++)
1057                 ; /* nothing */
1058
1059         qp->send_wqe_offset = ALIGN(qp->rq.max << qp->rq.wqe_shift,
1060                                     1 << qp->sq.wqe_shift);
1061
1062         /*
1063          * If this is a userspace QP, we don't actually have to
1064          * allocate anything.  All we need is to calculate the WQE
1065          * sizes and the send_wqe_offset, so we're done now.
1066          */
1067         if (pd->ibpd.uobject)
1068                 return 0;
1069
1070         size = PAGE_ALIGN(qp->send_wqe_offset +
1071                           (qp->sq.max << qp->sq.wqe_shift));
1072
1073         qp->wrid = kmalloc((qp->rq.max + qp->sq.max) * sizeof (u64),
1074                            GFP_KERNEL);
1075         if (!qp->wrid)
1076                 goto err_out;
1077
1078         err = mthca_buf_alloc(dev, size, MTHCA_MAX_DIRECT_QP_SIZE,
1079                               &qp->queue, &qp->is_direct, pd, 0, &qp->mr);
1080         if (err)
1081                 goto err_out;
1082
1083         return 0;
1084
1085 err_out:
1086         kfree(qp->wrid);
1087         return err;
1088 }
1089
1090 static void mthca_free_wqe_buf(struct mthca_dev *dev,
1091                                struct mthca_qp *qp)
1092 {
1093         mthca_buf_free(dev, PAGE_ALIGN(qp->send_wqe_offset +
1094                                        (qp->sq.max << qp->sq.wqe_shift)),
1095                        &qp->queue, qp->is_direct, &qp->mr);
1096         kfree(qp->wrid);
1097 }
1098
1099 static int mthca_map_memfree(struct mthca_dev *dev,
1100                              struct mthca_qp *qp)
1101 {
1102         int ret;
1103
1104         if (mthca_is_memfree(dev)) {
1105                 ret = mthca_table_get(dev, dev->qp_table.qp_table, qp->qpn);
1106                 if (ret)
1107                         return ret;
1108
1109                 ret = mthca_table_get(dev, dev->qp_table.eqp_table, qp->qpn);
1110                 if (ret)
1111                         goto err_qpc;
1112
1113                 ret = mthca_table_get(dev, dev->qp_table.rdb_table,
1114                                       qp->qpn << dev->qp_table.rdb_shift);
1115                 if (ret)
1116                         goto err_eqpc;
1117
1118         }
1119
1120         return 0;
1121
1122 err_eqpc:
1123         mthca_table_put(dev, dev->qp_table.eqp_table, qp->qpn);
1124
1125 err_qpc:
1126         mthca_table_put(dev, dev->qp_table.qp_table, qp->qpn);
1127
1128         return ret;
1129 }
1130
1131 static void mthca_unmap_memfree(struct mthca_dev *dev,
1132                                 struct mthca_qp *qp)
1133 {
1134         mthca_table_put(dev, dev->qp_table.rdb_table,
1135                         qp->qpn << dev->qp_table.rdb_shift);
1136         mthca_table_put(dev, dev->qp_table.eqp_table, qp->qpn);
1137         mthca_table_put(dev, dev->qp_table.qp_table, qp->qpn);
1138 }
1139
1140 static int mthca_alloc_memfree(struct mthca_dev *dev,
1141                                struct mthca_qp *qp)
1142 {
1143         if (mthca_is_memfree(dev)) {
1144                 qp->rq.db_index = mthca_alloc_db(dev, MTHCA_DB_TYPE_RQ,
1145                                                  qp->qpn, &qp->rq.db);
1146                 if (qp->rq.db_index < 0)
1147                         return -ENOMEM;
1148
1149                 qp->sq.db_index = mthca_alloc_db(dev, MTHCA_DB_TYPE_SQ,
1150                                                  qp->qpn, &qp->sq.db);
1151                 if (qp->sq.db_index < 0) {
1152                         mthca_free_db(dev, MTHCA_DB_TYPE_RQ, qp->rq.db_index);
1153                         return -ENOMEM;
1154                 }
1155         }
1156
1157         return 0;
1158 }
1159
1160 static void mthca_free_memfree(struct mthca_dev *dev,
1161                                struct mthca_qp *qp)
1162 {
1163         if (mthca_is_memfree(dev)) {
1164                 mthca_free_db(dev, MTHCA_DB_TYPE_SQ, qp->sq.db_index);
1165                 mthca_free_db(dev, MTHCA_DB_TYPE_RQ, qp->rq.db_index);
1166         }
1167 }
1168
1169 static int mthca_alloc_qp_common(struct mthca_dev *dev,
1170                                  struct mthca_pd *pd,
1171                                  struct mthca_cq *send_cq,
1172                                  struct mthca_cq *recv_cq,
1173                                  enum ib_sig_type send_policy,
1174                                  struct mthca_qp *qp)
1175 {
1176         int ret;
1177         int i;
1178
1179         qp->refcount = 1;
1180         init_waitqueue_head(&qp->wait);
1181         mutex_init(&qp->mutex);
1182         qp->state        = IB_QPS_RESET;
1183         qp->atomic_rd_en = 0;
1184         qp->resp_depth   = 0;
1185         qp->sq_policy    = send_policy;
1186         mthca_wq_reset(&qp->sq);
1187         mthca_wq_reset(&qp->rq);
1188
1189         spin_lock_init(&qp->sq.lock);
1190         spin_lock_init(&qp->rq.lock);
1191
1192         ret = mthca_map_memfree(dev, qp);
1193         if (ret)
1194                 return ret;
1195
1196         ret = mthca_alloc_wqe_buf(dev, pd, qp);
1197         if (ret) {
1198                 mthca_unmap_memfree(dev, qp);
1199                 return ret;
1200         }
1201
1202         mthca_adjust_qp_caps(dev, pd, qp);
1203
1204         /*
1205          * If this is a userspace QP, we're done now.  The doorbells
1206          * will be allocated and buffers will be initialized in
1207          * userspace.
1208          */
1209         if (pd->ibpd.uobject)
1210                 return 0;
1211
1212         ret = mthca_alloc_memfree(dev, qp);
1213         if (ret) {
1214                 mthca_free_wqe_buf(dev, qp);
1215                 mthca_unmap_memfree(dev, qp);
1216                 return ret;
1217         }
1218
1219         if (mthca_is_memfree(dev)) {
1220                 struct mthca_next_seg *next;
1221                 struct mthca_data_seg *scatter;
1222                 int size = (sizeof (struct mthca_next_seg) +
1223                             qp->rq.max_gs * sizeof (struct mthca_data_seg)) / 16;
1224
1225                 for (i = 0; i < qp->rq.max; ++i) {
1226                         next = get_recv_wqe(qp, i);
1227                         next->nda_op = cpu_to_be32(((i + 1) & (qp->rq.max - 1)) <<
1228                                                    qp->rq.wqe_shift);
1229                         next->ee_nds = cpu_to_be32(size);
1230
1231                         for (scatter = (void *) (next + 1);
1232                              (void *) scatter < (void *) next + (1 << qp->rq.wqe_shift);
1233                              ++scatter)
1234                                 scatter->lkey = cpu_to_be32(MTHCA_INVAL_LKEY);
1235                 }
1236
1237                 for (i = 0; i < qp->sq.max; ++i) {
1238                         next = get_send_wqe(qp, i);
1239                         next->nda_op = cpu_to_be32((((i + 1) & (qp->sq.max - 1)) <<
1240                                                     qp->sq.wqe_shift) +
1241                                                    qp->send_wqe_offset);
1242                 }
1243         }
1244
1245         qp->sq.last = get_send_wqe(qp, qp->sq.max - 1);
1246         qp->rq.last = get_recv_wqe(qp, qp->rq.max - 1);
1247
1248         return 0;
1249 }
1250
1251 static int mthca_set_qp_size(struct mthca_dev *dev, struct ib_qp_cap *cap,
1252                              struct mthca_pd *pd, struct mthca_qp *qp)
1253 {
1254         int max_data_size = mthca_max_data_size(dev, qp, dev->limits.max_desc_sz);
1255
1256         /* Sanity check QP size before proceeding */
1257         if (cap->max_send_wr     > dev->limits.max_wqes ||
1258             cap->max_recv_wr     > dev->limits.max_wqes ||
1259             cap->max_send_sge    > dev->limits.max_sg   ||
1260             cap->max_recv_sge    > dev->limits.max_sg   ||
1261             cap->max_inline_data > mthca_max_inline_data(pd, max_data_size))
1262                 return -EINVAL;
1263
1264         /*
1265          * For MLX transport we need 2 extra S/G entries:
1266          * one for the header and one for the checksum at the end
1267          */
1268         if (qp->transport == MLX && cap->max_recv_sge + 2 > dev->limits.max_sg)
1269                 return -EINVAL;
1270
1271         if (mthca_is_memfree(dev)) {
1272                 qp->rq.max = cap->max_recv_wr ?
1273                         roundup_pow_of_two(cap->max_recv_wr) : 0;
1274                 qp->sq.max = cap->max_send_wr ?
1275                         roundup_pow_of_two(cap->max_send_wr) : 0;
1276         } else {
1277                 qp->rq.max = cap->max_recv_wr;
1278                 qp->sq.max = cap->max_send_wr;
1279         }
1280
1281         qp->rq.max_gs = cap->max_recv_sge;
1282         qp->sq.max_gs = max_t(int, cap->max_send_sge,
1283                               ALIGN(cap->max_inline_data + MTHCA_INLINE_HEADER_SIZE,
1284                                     MTHCA_INLINE_CHUNK_SIZE) /
1285                               sizeof (struct mthca_data_seg));
1286
1287         return 0;
1288 }
1289
1290 int mthca_alloc_qp(struct mthca_dev *dev,
1291                    struct mthca_pd *pd,
1292                    struct mthca_cq *send_cq,
1293                    struct mthca_cq *recv_cq,
1294                    enum ib_qp_type type,
1295                    enum ib_sig_type send_policy,
1296                    struct ib_qp_cap *cap,
1297                    struct mthca_qp *qp)
1298 {
1299         int err;
1300
1301         switch (type) {
1302         case IB_QPT_RC: qp->transport = RC; break;
1303         case IB_QPT_UC: qp->transport = UC; break;
1304         case IB_QPT_UD: qp->transport = UD; break;
1305         default: return -EINVAL;
1306         }
1307
1308         err = mthca_set_qp_size(dev, cap, pd, qp);
1309         if (err)
1310                 return err;
1311
1312         qp->qpn = mthca_alloc(&dev->qp_table.alloc);
1313         if (qp->qpn == -1)
1314                 return -ENOMEM;
1315
1316         /* initialize port to zero for error-catching. */
1317         qp->port = 0;
1318
1319         err = mthca_alloc_qp_common(dev, pd, send_cq, recv_cq,
1320                                     send_policy, qp);
1321         if (err) {
1322                 mthca_free(&dev->qp_table.alloc, qp->qpn);
1323                 return err;
1324         }
1325
1326         spin_lock_irq(&dev->qp_table.lock);
1327         mthca_array_set(&dev->qp_table.qp,
1328                         qp->qpn & (dev->limits.num_qps - 1), qp);
1329         spin_unlock_irq(&dev->qp_table.lock);
1330
1331         return 0;
1332 }
1333
1334 static void mthca_lock_cqs(struct mthca_cq *send_cq, struct mthca_cq *recv_cq)
1335 {
1336         if (send_cq == recv_cq)
1337                 spin_lock_irq(&send_cq->lock);
1338         else if (send_cq->cqn < recv_cq->cqn) {
1339                 spin_lock_irq(&send_cq->lock);
1340                 spin_lock_nested(&recv_cq->lock, SINGLE_DEPTH_NESTING);
1341         } else {
1342                 spin_lock_irq(&recv_cq->lock);
1343                 spin_lock_nested(&send_cq->lock, SINGLE_DEPTH_NESTING);
1344         }
1345 }
1346
1347 static void mthca_unlock_cqs(struct mthca_cq *send_cq, struct mthca_cq *recv_cq)
1348 {
1349         if (send_cq == recv_cq)
1350                 spin_unlock_irq(&send_cq->lock);
1351         else if (send_cq->cqn < recv_cq->cqn) {
1352                 spin_unlock(&recv_cq->lock);
1353                 spin_unlock_irq(&send_cq->lock);
1354         } else {
1355                 spin_unlock(&send_cq->lock);
1356                 spin_unlock_irq(&recv_cq->lock);
1357         }
1358 }
1359
1360 int mthca_alloc_sqp(struct mthca_dev *dev,
1361                     struct mthca_pd *pd,
1362                     struct mthca_cq *send_cq,
1363                     struct mthca_cq *recv_cq,
1364                     enum ib_sig_type send_policy,
1365                     struct ib_qp_cap *cap,
1366                     int qpn,
1367                     int port,
1368                     struct mthca_sqp *sqp)
1369 {
1370         u32 mqpn = qpn * 2 + dev->qp_table.sqp_start + port - 1;
1371         int err;
1372
1373         sqp->qp.transport = MLX;
1374         err = mthca_set_qp_size(dev, cap, pd, &sqp->qp);
1375         if (err)
1376                 return err;
1377
1378         sqp->header_buf_size = sqp->qp.sq.max * MTHCA_UD_HEADER_SIZE;
1379         sqp->header_buf = dma_alloc_coherent(&dev->pdev->dev, sqp->header_buf_size,
1380                                              &sqp->header_dma, GFP_KERNEL);
1381         if (!sqp->header_buf)
1382                 return -ENOMEM;
1383
1384         spin_lock_irq(&dev->qp_table.lock);
1385         if (mthca_array_get(&dev->qp_table.qp, mqpn))
1386                 err = -EBUSY;
1387         else
1388                 mthca_array_set(&dev->qp_table.qp, mqpn, sqp);
1389         spin_unlock_irq(&dev->qp_table.lock);
1390
1391         if (err)
1392                 goto err_out;
1393
1394         sqp->qp.port      = port;
1395         sqp->qp.qpn       = mqpn;
1396         sqp->qp.transport = MLX;
1397
1398         err = mthca_alloc_qp_common(dev, pd, send_cq, recv_cq,
1399                                     send_policy, &sqp->qp);
1400         if (err)
1401                 goto err_out_free;
1402
1403         atomic_inc(&pd->sqp_count);
1404
1405         return 0;
1406
1407  err_out_free:
1408         /*
1409          * Lock CQs here, so that CQ polling code can do QP lookup
1410          * without taking a lock.
1411          */
1412         mthca_lock_cqs(send_cq, recv_cq);
1413
1414         spin_lock(&dev->qp_table.lock);
1415         mthca_array_clear(&dev->qp_table.qp, mqpn);
1416         spin_unlock(&dev->qp_table.lock);
1417
1418         mthca_unlock_cqs(send_cq, recv_cq);
1419
1420  err_out:
1421         dma_free_coherent(&dev->pdev->dev, sqp->header_buf_size,
1422                           sqp->header_buf, sqp->header_dma);
1423
1424         return err;
1425 }
1426
1427 static inline int get_qp_refcount(struct mthca_dev *dev, struct mthca_qp *qp)
1428 {
1429         int c;
1430
1431         spin_lock_irq(&dev->qp_table.lock);
1432         c = qp->refcount;
1433         spin_unlock_irq(&dev->qp_table.lock);
1434
1435         return c;
1436 }
1437
1438 void mthca_free_qp(struct mthca_dev *dev,
1439                    struct mthca_qp *qp)
1440 {
1441         u8 status;
1442         struct mthca_cq *send_cq;
1443         struct mthca_cq *recv_cq;
1444
1445         send_cq = to_mcq(qp->ibqp.send_cq);
1446         recv_cq = to_mcq(qp->ibqp.recv_cq);
1447
1448         /*
1449          * Lock CQs here, so that CQ polling code can do QP lookup
1450          * without taking a lock.
1451          */
1452         mthca_lock_cqs(send_cq, recv_cq);
1453
1454         spin_lock(&dev->qp_table.lock);
1455         mthca_array_clear(&dev->qp_table.qp,
1456                           qp->qpn & (dev->limits.num_qps - 1));
1457         --qp->refcount;
1458         spin_unlock(&dev->qp_table.lock);
1459
1460         mthca_unlock_cqs(send_cq, recv_cq);
1461
1462         wait_event(qp->wait, !get_qp_refcount(dev, qp));
1463
1464         if (qp->state != IB_QPS_RESET)
1465                 mthca_MODIFY_QP(dev, qp->state, IB_QPS_RESET, qp->qpn, 0,
1466                                 NULL, 0, &status);
1467
1468         /*
1469          * If this is a userspace QP, the buffers, MR, CQs and so on
1470          * will be cleaned up in userspace, so all we have to do is
1471          * unref the mem-free tables and free the QPN in our table.
1472          */
1473         if (!qp->ibqp.uobject) {
1474                 mthca_cq_clean(dev, recv_cq, qp->qpn,
1475                                qp->ibqp.srq ? to_msrq(qp->ibqp.srq) : NULL);
1476                 if (send_cq != recv_cq)
1477                         mthca_cq_clean(dev, send_cq, qp->qpn, NULL);
1478
1479                 mthca_free_memfree(dev, qp);
1480                 mthca_free_wqe_buf(dev, qp);
1481         }
1482
1483         mthca_unmap_memfree(dev, qp);
1484
1485         if (is_sqp(dev, qp)) {
1486                 atomic_dec(&(to_mpd(qp->ibqp.pd)->sqp_count));
1487                 dma_free_coherent(&dev->pdev->dev,
1488                                   to_msqp(qp)->header_buf_size,
1489                                   to_msqp(qp)->header_buf,
1490                                   to_msqp(qp)->header_dma);
1491         } else
1492                 mthca_free(&dev->qp_table.alloc, qp->qpn);
1493 }
1494
1495 /* Create UD header for an MLX send and build a data segment for it */
1496 static int build_mlx_header(struct mthca_dev *dev, struct mthca_sqp *sqp,
1497                             int ind, struct ib_send_wr *wr,
1498                             struct mthca_mlx_seg *mlx,
1499                             struct mthca_data_seg *data)
1500 {
1501         int header_size;
1502         int err;
1503         u16 pkey;
1504
1505         ib_ud_header_init(256, /* assume a MAD */
1506                           mthca_ah_grh_present(to_mah(wr->wr.ud.ah)),
1507                           &sqp->ud_header);
1508
1509         err = mthca_read_ah(dev, to_mah(wr->wr.ud.ah), &sqp->ud_header);
1510         if (err)
1511                 return err;
1512         mlx->flags &= ~cpu_to_be32(MTHCA_NEXT_SOLICIT | 1);
1513         mlx->flags |= cpu_to_be32((!sqp->qp.ibqp.qp_num ? MTHCA_MLX_VL15 : 0) |
1514                                   (sqp->ud_header.lrh.destination_lid ==
1515                                    IB_LID_PERMISSIVE ? MTHCA_MLX_SLR : 0) |
1516                                   (sqp->ud_header.lrh.service_level << 8));
1517         mlx->rlid = sqp->ud_header.lrh.destination_lid;
1518         mlx->vcrc = 0;
1519
1520         switch (wr->opcode) {
1521         case IB_WR_SEND:
1522                 sqp->ud_header.bth.opcode = IB_OPCODE_UD_SEND_ONLY;
1523                 sqp->ud_header.immediate_present = 0;
1524                 break;
1525         case IB_WR_SEND_WITH_IMM:
1526                 sqp->ud_header.bth.opcode = IB_OPCODE_UD_SEND_ONLY_WITH_IMMEDIATE;
1527                 sqp->ud_header.immediate_present = 1;
1528                 sqp->ud_header.immediate_data = wr->imm_data;
1529                 break;
1530         default:
1531                 return -EINVAL;
1532         }
1533
1534         sqp->ud_header.lrh.virtual_lane    = !sqp->qp.ibqp.qp_num ? 15 : 0;
1535         if (sqp->ud_header.lrh.destination_lid == IB_LID_PERMISSIVE)
1536                 sqp->ud_header.lrh.source_lid = IB_LID_PERMISSIVE;
1537         sqp->ud_header.bth.solicited_event = !!(wr->send_flags & IB_SEND_SOLICITED);
1538         if (!sqp->qp.ibqp.qp_num)
1539                 ib_get_cached_pkey(&dev->ib_dev, sqp->qp.port,
1540                                    sqp->pkey_index, &pkey);
1541         else
1542                 ib_get_cached_pkey(&dev->ib_dev, sqp->qp.port,
1543                                    wr->wr.ud.pkey_index, &pkey);
1544         sqp->ud_header.bth.pkey = cpu_to_be16(pkey);
1545         sqp->ud_header.bth.destination_qpn = cpu_to_be32(wr->wr.ud.remote_qpn);
1546         sqp->ud_header.bth.psn = cpu_to_be32((sqp->send_psn++) & ((1 << 24) - 1));
1547         sqp->ud_header.deth.qkey = cpu_to_be32(wr->wr.ud.remote_qkey & 0x80000000 ?
1548                                                sqp->qkey : wr->wr.ud.remote_qkey);
1549         sqp->ud_header.deth.source_qpn = cpu_to_be32(sqp->qp.ibqp.qp_num);
1550
1551         header_size = ib_ud_header_pack(&sqp->ud_header,
1552                                         sqp->header_buf +
1553                                         ind * MTHCA_UD_HEADER_SIZE);
1554
1555         data->byte_count = cpu_to_be32(header_size);
1556         data->lkey       = cpu_to_be32(to_mpd(sqp->qp.ibqp.pd)->ntmr.ibmr.lkey);
1557         data->addr       = cpu_to_be64(sqp->header_dma +
1558                                        ind * MTHCA_UD_HEADER_SIZE);
1559
1560         return 0;
1561 }
1562
1563 static inline int mthca_wq_overflow(struct mthca_wq *wq, int nreq,
1564                                     struct ib_cq *ib_cq)
1565 {
1566         unsigned cur;
1567         struct mthca_cq *cq;
1568
1569         cur = wq->head - wq->tail;
1570         if (likely(cur + nreq < wq->max))
1571                 return 0;
1572
1573         cq = to_mcq(ib_cq);
1574         spin_lock(&cq->lock);
1575         cur = wq->head - wq->tail;
1576         spin_unlock(&cq->lock);
1577
1578         return cur + nreq >= wq->max;
1579 }
1580
1581 static __always_inline void set_raddr_seg(struct mthca_raddr_seg *rseg,
1582                                           u64 remote_addr, u32 rkey)
1583 {
1584         rseg->raddr    = cpu_to_be64(remote_addr);
1585         rseg->rkey     = cpu_to_be32(rkey);
1586         rseg->reserved = 0;
1587 }
1588
1589 static __always_inline void set_atomic_seg(struct mthca_atomic_seg *aseg,
1590                                            struct ib_send_wr *wr)
1591 {
1592         if (wr->opcode == IB_WR_ATOMIC_CMP_AND_SWP) {
1593                 aseg->swap_add = cpu_to_be64(wr->wr.atomic.swap);
1594                 aseg->compare  = cpu_to_be64(wr->wr.atomic.compare_add);
1595         } else {
1596                 aseg->swap_add = cpu_to_be64(wr->wr.atomic.compare_add);
1597                 aseg->compare  = 0;
1598         }
1599
1600 }
1601
1602 static void set_tavor_ud_seg(struct mthca_tavor_ud_seg *useg,
1603                              struct ib_send_wr *wr)
1604 {
1605         useg->lkey    = cpu_to_be32(to_mah(wr->wr.ud.ah)->key);
1606         useg->av_addr = cpu_to_be64(to_mah(wr->wr.ud.ah)->avdma);
1607         useg->dqpn    = cpu_to_be32(wr->wr.ud.remote_qpn);
1608         useg->qkey    = cpu_to_be32(wr->wr.ud.remote_qkey);
1609
1610 }
1611
1612 static void set_arbel_ud_seg(struct mthca_arbel_ud_seg *useg,
1613                              struct ib_send_wr *wr)
1614 {
1615         memcpy(useg->av, to_mah(wr->wr.ud.ah)->av, MTHCA_AV_SIZE);
1616         useg->dqpn = cpu_to_be32(wr->wr.ud.remote_qpn);
1617         useg->qkey = cpu_to_be32(wr->wr.ud.remote_qkey);
1618 }
1619
1620 int mthca_tavor_post_send(struct ib_qp *ibqp, struct ib_send_wr *wr,
1621                           struct ib_send_wr **bad_wr)
1622 {
1623         struct mthca_dev *dev = to_mdev(ibqp->device);
1624         struct mthca_qp *qp = to_mqp(ibqp);
1625         void *wqe;
1626         void *prev_wqe;
1627         unsigned long flags;
1628         int err = 0;
1629         int nreq;
1630         int i;
1631         int size;
1632         /*
1633          * f0 and size0 are only used if nreq != 0, and they will
1634          * always be initialized the first time through the main loop
1635          * before nreq is incremented.  So nreq cannot become non-zero
1636          * without initializing f0 and size0, and they are in fact
1637          * never used uninitialized.
1638          */
1639         int uninitialized_var(size0);
1640         u32 uninitialized_var(f0);
1641         int ind;
1642         u8 op0 = 0;
1643
1644         spin_lock_irqsave(&qp->sq.lock, flags);
1645
1646         /* XXX check that state is OK to post send */
1647
1648         ind = qp->sq.next_ind;
1649
1650         for (nreq = 0; wr; ++nreq, wr = wr->next) {
1651                 if (mthca_wq_overflow(&qp->sq, nreq, qp->ibqp.send_cq)) {
1652                         mthca_err(dev, "SQ %06x full (%u head, %u tail,"
1653                                         " %d max, %d nreq)\n", qp->qpn,
1654                                         qp->sq.head, qp->sq.tail,
1655                                         qp->sq.max, nreq);
1656                         err = -ENOMEM;
1657                         *bad_wr = wr;
1658                         goto out;
1659                 }
1660
1661                 wqe = get_send_wqe(qp, ind);
1662                 prev_wqe = qp->sq.last;
1663                 qp->sq.last = wqe;
1664
1665                 ((struct mthca_next_seg *) wqe)->nda_op = 0;
1666                 ((struct mthca_next_seg *) wqe)->ee_nds = 0;
1667                 ((struct mthca_next_seg *) wqe)->flags =
1668                         ((wr->send_flags & IB_SEND_SIGNALED) ?
1669                          cpu_to_be32(MTHCA_NEXT_CQ_UPDATE) : 0) |
1670                         ((wr->send_flags & IB_SEND_SOLICITED) ?
1671                          cpu_to_be32(MTHCA_NEXT_SOLICIT) : 0)   |
1672                         cpu_to_be32(1);
1673                 if (wr->opcode == IB_WR_SEND_WITH_IMM ||
1674                     wr->opcode == IB_WR_RDMA_WRITE_WITH_IMM)
1675                         ((struct mthca_next_seg *) wqe)->imm = wr->imm_data;
1676
1677                 wqe += sizeof (struct mthca_next_seg);
1678                 size = sizeof (struct mthca_next_seg) / 16;
1679
1680                 switch (qp->transport) {
1681                 case RC:
1682                         switch (wr->opcode) {
1683                         case IB_WR_ATOMIC_CMP_AND_SWP:
1684                         case IB_WR_ATOMIC_FETCH_AND_ADD:
1685                                 set_raddr_seg(wqe, wr->wr.atomic.remote_addr,
1686                                               wr->wr.atomic.rkey);
1687                                 wqe += sizeof (struct mthca_raddr_seg);
1688
1689                                 set_atomic_seg(wqe, wr);
1690                                 wqe += sizeof (struct mthca_atomic_seg);
1691                                 size += (sizeof (struct mthca_raddr_seg) +
1692                                          sizeof (struct mthca_atomic_seg)) / 16;
1693                                 break;
1694
1695                         case IB_WR_RDMA_WRITE:
1696                         case IB_WR_RDMA_WRITE_WITH_IMM:
1697                         case IB_WR_RDMA_READ:
1698                                 set_raddr_seg(wqe, wr->wr.rdma.remote_addr,
1699                                               wr->wr.rdma.rkey);
1700                                 wqe  += sizeof (struct mthca_raddr_seg);
1701                                 size += sizeof (struct mthca_raddr_seg) / 16;
1702                                 break;
1703
1704                         default:
1705                                 /* No extra segments required for sends */
1706                                 break;
1707                         }
1708
1709                         break;
1710
1711                 case UC:
1712                         switch (wr->opcode) {
1713                         case IB_WR_RDMA_WRITE:
1714                         case IB_WR_RDMA_WRITE_WITH_IMM:
1715                                 set_raddr_seg(wqe, wr->wr.rdma.remote_addr,
1716                                               wr->wr.rdma.rkey);
1717                                 wqe  += sizeof (struct mthca_raddr_seg);
1718                                 size += sizeof (struct mthca_raddr_seg) / 16;
1719                                 break;
1720
1721                         default:
1722                                 /* No extra segments required for sends */
1723                                 break;
1724                         }
1725
1726                         break;
1727
1728                 case UD:
1729                         set_tavor_ud_seg(wqe, wr);
1730                         wqe  += sizeof (struct mthca_tavor_ud_seg);
1731                         size += sizeof (struct mthca_tavor_ud_seg) / 16;
1732                         break;
1733
1734                 case MLX:
1735                         err = build_mlx_header(dev, to_msqp(qp), ind, wr,
1736                                                wqe - sizeof (struct mthca_next_seg),
1737                                                wqe);
1738                         if (err) {
1739                                 *bad_wr = wr;
1740                                 goto out;
1741                         }
1742                         wqe += sizeof (struct mthca_data_seg);
1743                         size += sizeof (struct mthca_data_seg) / 16;
1744                         break;
1745                 }
1746
1747                 if (wr->num_sge > qp->sq.max_gs) {
1748                         mthca_err(dev, "too many gathers\n");
1749                         err = -EINVAL;
1750                         *bad_wr = wr;
1751                         goto out;
1752                 }
1753
1754                 for (i = 0; i < wr->num_sge; ++i) {
1755                         mthca_set_data_seg(wqe, wr->sg_list + i);
1756                         wqe  += sizeof (struct mthca_data_seg);
1757                         size += sizeof (struct mthca_data_seg) / 16;
1758                 }
1759
1760                 /* Add one more inline data segment for ICRC */
1761                 if (qp->transport == MLX) {
1762                         ((struct mthca_data_seg *) wqe)->byte_count =
1763                                 cpu_to_be32((1 << 31) | 4);
1764                         ((u32 *) wqe)[1] = 0;
1765                         wqe += sizeof (struct mthca_data_seg);
1766                         size += sizeof (struct mthca_data_seg) / 16;
1767                 }
1768
1769                 qp->wrid[ind + qp->rq.max] = wr->wr_id;
1770
1771                 if (wr->opcode >= ARRAY_SIZE(mthca_opcode)) {
1772                         mthca_err(dev, "opcode invalid\n");
1773                         err = -EINVAL;
1774                         *bad_wr = wr;
1775                         goto out;
1776                 }
1777
1778                 ((struct mthca_next_seg *) prev_wqe)->nda_op =
1779                         cpu_to_be32(((ind << qp->sq.wqe_shift) +
1780                                      qp->send_wqe_offset) |
1781                                     mthca_opcode[wr->opcode]);
1782                 wmb();
1783                 ((struct mthca_next_seg *) prev_wqe)->ee_nds =
1784                         cpu_to_be32((nreq ? 0 : MTHCA_NEXT_DBD) | size |
1785                                     ((wr->send_flags & IB_SEND_FENCE) ?
1786                                     MTHCA_NEXT_FENCE : 0));
1787
1788                 if (!nreq) {
1789                         size0 = size;
1790                         op0   = mthca_opcode[wr->opcode];
1791                         f0    = wr->send_flags & IB_SEND_FENCE ?
1792                                 MTHCA_SEND_DOORBELL_FENCE : 0;
1793                 }
1794
1795                 ++ind;
1796                 if (unlikely(ind >= qp->sq.max))
1797                         ind -= qp->sq.max;
1798         }
1799
1800 out:
1801         if (likely(nreq)) {
1802                 __be32 doorbell[2];
1803
1804                 doorbell[0] = cpu_to_be32(((qp->sq.next_ind << qp->sq.wqe_shift) +
1805                                            qp->send_wqe_offset) | f0 | op0);
1806                 doorbell[1] = cpu_to_be32((qp->qpn << 8) | size0);
1807
1808                 wmb();
1809
1810                 mthca_write64(doorbell,
1811                               dev->kar + MTHCA_SEND_DOORBELL,
1812                               MTHCA_GET_DOORBELL_LOCK(&dev->doorbell_lock));
1813                 /*
1814                  * Make sure doorbells don't leak out of SQ spinlock
1815                  * and reach the HCA out of order:
1816                  */
1817                 mmiowb();
1818         }
1819
1820         qp->sq.next_ind = ind;
1821         qp->sq.head    += nreq;
1822
1823         spin_unlock_irqrestore(&qp->sq.lock, flags);
1824         return err;
1825 }
1826
1827 int mthca_tavor_post_receive(struct ib_qp *ibqp, struct ib_recv_wr *wr,
1828                              struct ib_recv_wr **bad_wr)
1829 {
1830         struct mthca_dev *dev = to_mdev(ibqp->device);
1831         struct mthca_qp *qp = to_mqp(ibqp);
1832         __be32 doorbell[2];
1833         unsigned long flags;
1834         int err = 0;
1835         int nreq;
1836         int i;
1837         int size;
1838         /*
1839          * size0 is only used if nreq != 0, and it will always be
1840          * initialized the first time through the main loop before
1841          * nreq is incremented.  So nreq cannot become non-zero
1842          * without initializing size0, and it is in fact never used
1843          * uninitialized.
1844          */
1845         int uninitialized_var(size0);
1846         int ind;
1847         void *wqe;
1848         void *prev_wqe;
1849
1850         spin_lock_irqsave(&qp->rq.lock, flags);
1851
1852         /* XXX check that state is OK to post receive */
1853
1854         ind = qp->rq.next_ind;
1855
1856         for (nreq = 0; wr; wr = wr->next) {
1857                 if (mthca_wq_overflow(&qp->rq, nreq, qp->ibqp.recv_cq)) {
1858                         mthca_err(dev, "RQ %06x full (%u head, %u tail,"
1859                                         " %d max, %d nreq)\n", qp->qpn,
1860                                         qp->rq.head, qp->rq.tail,
1861                                         qp->rq.max, nreq);
1862                         err = -ENOMEM;
1863                         *bad_wr = wr;
1864                         goto out;
1865                 }
1866
1867                 wqe = get_recv_wqe(qp, ind);
1868                 prev_wqe = qp->rq.last;
1869                 qp->rq.last = wqe;
1870
1871                 ((struct mthca_next_seg *) wqe)->nda_op = 0;
1872                 ((struct mthca_next_seg *) wqe)->ee_nds =
1873                         cpu_to_be32(MTHCA_NEXT_DBD);
1874                 ((struct mthca_next_seg *) wqe)->flags = 0;
1875
1876                 wqe += sizeof (struct mthca_next_seg);
1877                 size = sizeof (struct mthca_next_seg) / 16;
1878
1879                 if (unlikely(wr->num_sge > qp->rq.max_gs)) {
1880                         err = -EINVAL;
1881                         *bad_wr = wr;
1882                         goto out;
1883                 }
1884
1885                 for (i = 0; i < wr->num_sge; ++i) {
1886                         mthca_set_data_seg(wqe, wr->sg_list + i);
1887                         wqe  += sizeof (struct mthca_data_seg);
1888                         size += sizeof (struct mthca_data_seg) / 16;
1889                 }
1890
1891                 qp->wrid[ind] = wr->wr_id;
1892
1893                 ((struct mthca_next_seg *) prev_wqe)->nda_op =
1894                         cpu_to_be32((ind << qp->rq.wqe_shift) | 1);
1895                 wmb();
1896                 ((struct mthca_next_seg *) prev_wqe)->ee_nds =
1897                         cpu_to_be32(MTHCA_NEXT_DBD | size);
1898
1899                 if (!nreq)
1900                         size0 = size;
1901
1902                 ++ind;
1903                 if (unlikely(ind >= qp->rq.max))
1904                         ind -= qp->rq.max;
1905
1906                 ++nreq;
1907                 if (unlikely(nreq == MTHCA_TAVOR_MAX_WQES_PER_RECV_DB)) {
1908                         nreq = 0;
1909
1910                         doorbell[0] = cpu_to_be32((qp->rq.next_ind << qp->rq.wqe_shift) | size0);
1911                         doorbell[1] = cpu_to_be32(qp->qpn << 8);
1912
1913                         wmb();
1914
1915                         mthca_write64(doorbell,
1916                                       dev->kar + MTHCA_RECEIVE_DOORBELL,
1917                                       MTHCA_GET_DOORBELL_LOCK(&dev->doorbell_lock));
1918
1919                         qp->rq.next_ind = ind;
1920                         qp->rq.head += MTHCA_TAVOR_MAX_WQES_PER_RECV_DB;
1921                 }
1922         }
1923
1924 out:
1925         if (likely(nreq)) {
1926                 doorbell[0] = cpu_to_be32((qp->rq.next_ind << qp->rq.wqe_shift) | size0);
1927                 doorbell[1] = cpu_to_be32((qp->qpn << 8) | nreq);
1928
1929                 wmb();
1930
1931                 mthca_write64(doorbell,
1932                               dev->kar + MTHCA_RECEIVE_DOORBELL,
1933                               MTHCA_GET_DOORBELL_LOCK(&dev->doorbell_lock));
1934         }
1935
1936         qp->rq.next_ind = ind;
1937         qp->rq.head    += nreq;
1938
1939         /*
1940          * Make sure doorbells don't leak out of RQ spinlock and reach
1941          * the HCA out of order:
1942          */
1943         mmiowb();
1944
1945         spin_unlock_irqrestore(&qp->rq.lock, flags);
1946         return err;
1947 }
1948
1949 int mthca_arbel_post_send(struct ib_qp *ibqp, struct ib_send_wr *wr,
1950                           struct ib_send_wr **bad_wr)
1951 {
1952         struct mthca_dev *dev = to_mdev(ibqp->device);
1953         struct mthca_qp *qp = to_mqp(ibqp);
1954         __be32 doorbell[2];
1955         void *wqe;
1956         void *prev_wqe;
1957         unsigned long flags;
1958         int err = 0;
1959         int nreq;
1960         int i;
1961         int size;
1962         /*
1963          * f0 and size0 are only used if nreq != 0, and they will
1964          * always be initialized the first time through the main loop
1965          * before nreq is incremented.  So nreq cannot become non-zero
1966          * without initializing f0 and size0, and they are in fact
1967          * never used uninitialized.
1968          */
1969         int uninitialized_var(size0);
1970         u32 uninitialized_var(f0);
1971         int ind;
1972         u8 op0 = 0;
1973
1974         spin_lock_irqsave(&qp->sq.lock, flags);
1975
1976         /* XXX check that state is OK to post send */
1977
1978         ind = qp->sq.head & (qp->sq.max - 1);
1979
1980         for (nreq = 0; wr; ++nreq, wr = wr->next) {
1981                 if (unlikely(nreq == MTHCA_ARBEL_MAX_WQES_PER_SEND_DB)) {
1982                         nreq = 0;
1983
1984                         doorbell[0] = cpu_to_be32((MTHCA_ARBEL_MAX_WQES_PER_SEND_DB << 24) |
1985                                                   ((qp->sq.head & 0xffff) << 8) |
1986                                                   f0 | op0);
1987                         doorbell[1] = cpu_to_be32((qp->qpn << 8) | size0);
1988
1989                         qp->sq.head += MTHCA_ARBEL_MAX_WQES_PER_SEND_DB;
1990
1991                         /*
1992                          * Make sure that descriptors are written before
1993                          * doorbell record.
1994                          */
1995                         wmb();
1996                         *qp->sq.db = cpu_to_be32(qp->sq.head & 0xffff);
1997
1998                         /*
1999                          * Make sure doorbell record is written before we
2000                          * write MMIO send doorbell.
2001                          */
2002                         wmb();
2003                         mthca_write64(doorbell,
2004                                       dev->kar + MTHCA_SEND_DOORBELL,
2005                                       MTHCA_GET_DOORBELL_LOCK(&dev->doorbell_lock));
2006                 }
2007
2008                 if (mthca_wq_overflow(&qp->sq, nreq, qp->ibqp.send_cq)) {
2009                         mthca_err(dev, "SQ %06x full (%u head, %u tail,"
2010                                         " %d max, %d nreq)\n", qp->qpn,
2011                                         qp->sq.head, qp->sq.tail,
2012                                         qp->sq.max, nreq);
2013                         err = -ENOMEM;
2014                         *bad_wr = wr;
2015                         goto out;
2016                 }
2017
2018                 wqe = get_send_wqe(qp, ind);
2019                 prev_wqe = qp->sq.last;
2020                 qp->sq.last = wqe;
2021
2022                 ((struct mthca_next_seg *) wqe)->flags =
2023                         ((wr->send_flags & IB_SEND_SIGNALED) ?
2024                          cpu_to_be32(MTHCA_NEXT_CQ_UPDATE) : 0) |
2025                         ((wr->send_flags & IB_SEND_SOLICITED) ?
2026                          cpu_to_be32(MTHCA_NEXT_SOLICIT) : 0)   |
2027                         cpu_to_be32(1);
2028                 if (wr->opcode == IB_WR_SEND_WITH_IMM ||
2029                     wr->opcode == IB_WR_RDMA_WRITE_WITH_IMM)
2030                         ((struct mthca_next_seg *) wqe)->imm = wr->imm_data;
2031
2032                 wqe += sizeof (struct mthca_next_seg);
2033                 size = sizeof (struct mthca_next_seg) / 16;
2034
2035                 switch (qp->transport) {
2036                 case RC:
2037                         switch (wr->opcode) {
2038                         case IB_WR_ATOMIC_CMP_AND_SWP:
2039                         case IB_WR_ATOMIC_FETCH_AND_ADD:
2040                                 set_raddr_seg(wqe, wr->wr.atomic.remote_addr,
2041                                               wr->wr.atomic.rkey);
2042                                 wqe += sizeof (struct mthca_raddr_seg);
2043
2044                                 set_atomic_seg(wqe, wr);
2045                                 wqe  += sizeof (struct mthca_atomic_seg);
2046                                 size += (sizeof (struct mthca_raddr_seg) +
2047                                          sizeof (struct mthca_atomic_seg)) / 16;
2048                                 break;
2049
2050                         case IB_WR_RDMA_READ:
2051                         case IB_WR_RDMA_WRITE:
2052                         case IB_WR_RDMA_WRITE_WITH_IMM:
2053                                 set_raddr_seg(wqe, wr->wr.rdma.remote_addr,
2054                                               wr->wr.rdma.rkey);
2055                                 wqe  += sizeof (struct mthca_raddr_seg);
2056                                 size += sizeof (struct mthca_raddr_seg) / 16;
2057                                 break;
2058
2059                         default:
2060                                 /* No extra segments required for sends */
2061                                 break;
2062                         }
2063
2064                         break;
2065
2066                 case UC:
2067                         switch (wr->opcode) {
2068                         case IB_WR_RDMA_WRITE:
2069                         case IB_WR_RDMA_WRITE_WITH_IMM:
2070                                 set_raddr_seg(wqe, wr->wr.rdma.remote_addr,
2071                                               wr->wr.rdma.rkey);
2072                                 wqe  += sizeof (struct mthca_raddr_seg);
2073                                 size += sizeof (struct mthca_raddr_seg) / 16;
2074                                 break;
2075
2076                         default:
2077                                 /* No extra segments required for sends */
2078                                 break;
2079                         }
2080
2081                         break;
2082
2083                 case UD:
2084                         set_arbel_ud_seg(wqe, wr);
2085                         wqe  += sizeof (struct mthca_arbel_ud_seg);
2086                         size += sizeof (struct mthca_arbel_ud_seg) / 16;
2087                         break;
2088
2089                 case MLX:
2090                         err = build_mlx_header(dev, to_msqp(qp), ind, wr,
2091                                                wqe - sizeof (struct mthca_next_seg),
2092                                                wqe);
2093                         if (err) {
2094                                 *bad_wr = wr;
2095                                 goto out;
2096                         }
2097                         wqe += sizeof (struct mthca_data_seg);
2098                         size += sizeof (struct mthca_data_seg) / 16;
2099                         break;
2100                 }
2101
2102                 if (wr->num_sge > qp->sq.max_gs) {
2103                         mthca_err(dev, "too many gathers\n");
2104                         err = -EINVAL;
2105                         *bad_wr = wr;
2106                         goto out;
2107                 }
2108
2109                 for (i = 0; i < wr->num_sge; ++i) {
2110                         mthca_set_data_seg(wqe, wr->sg_list + i);
2111                         wqe  += sizeof (struct mthca_data_seg);
2112                         size += sizeof (struct mthca_data_seg) / 16;
2113                 }
2114
2115                 /* Add one more inline data segment for ICRC */
2116                 if (qp->transport == MLX) {
2117                         ((struct mthca_data_seg *) wqe)->byte_count =
2118                                 cpu_to_be32((1 << 31) | 4);
2119                         ((u32 *) wqe)[1] = 0;
2120                         wqe += sizeof (struct mthca_data_seg);
2121                         size += sizeof (struct mthca_data_seg) / 16;
2122                 }
2123
2124                 qp->wrid[ind + qp->rq.max] = wr->wr_id;
2125
2126                 if (wr->opcode >= ARRAY_SIZE(mthca_opcode)) {
2127                         mthca_err(dev, "opcode invalid\n");
2128                         err = -EINVAL;
2129                         *bad_wr = wr;
2130                         goto out;
2131                 }
2132
2133                 ((struct mthca_next_seg *) prev_wqe)->nda_op =
2134                         cpu_to_be32(((ind << qp->sq.wqe_shift) +
2135                                      qp->send_wqe_offset) |
2136                                     mthca_opcode[wr->opcode]);
2137                 wmb();
2138                 ((struct mthca_next_seg *) prev_wqe)->ee_nds =
2139                         cpu_to_be32(MTHCA_NEXT_DBD | size |
2140                                     ((wr->send_flags & IB_SEND_FENCE) ?
2141                                      MTHCA_NEXT_FENCE : 0));
2142
2143                 if (!nreq) {
2144                         size0 = size;
2145                         op0   = mthca_opcode[wr->opcode];
2146                         f0    = wr->send_flags & IB_SEND_FENCE ?
2147                                 MTHCA_SEND_DOORBELL_FENCE : 0;
2148                 }
2149
2150                 ++ind;
2151                 if (unlikely(ind >= qp->sq.max))
2152                         ind -= qp->sq.max;
2153         }
2154
2155 out:
2156         if (likely(nreq)) {
2157                 doorbell[0] = cpu_to_be32((nreq << 24)                  |
2158                                           ((qp->sq.head & 0xffff) << 8) |
2159                                           f0 | op0);
2160                 doorbell[1] = cpu_to_be32((qp->qpn << 8) | size0);
2161
2162                 qp->sq.head += nreq;
2163
2164                 /*
2165                  * Make sure that descriptors are written before
2166                  * doorbell record.
2167                  */
2168                 wmb();
2169                 *qp->sq.db = cpu_to_be32(qp->sq.head & 0xffff);
2170
2171                 /*
2172                  * Make sure doorbell record is written before we
2173                  * write MMIO send doorbell.
2174                  */
2175                 wmb();
2176                 mthca_write64(doorbell,
2177                               dev->kar + MTHCA_SEND_DOORBELL,
2178                               MTHCA_GET_DOORBELL_LOCK(&dev->doorbell_lock));
2179         }
2180
2181         /*
2182          * Make sure doorbells don't leak out of SQ spinlock and reach
2183          * the HCA out of order:
2184          */
2185         mmiowb();
2186
2187         spin_unlock_irqrestore(&qp->sq.lock, flags);
2188         return err;
2189 }
2190
2191 int mthca_arbel_post_receive(struct ib_qp *ibqp, struct ib_recv_wr *wr,
2192                              struct ib_recv_wr **bad_wr)
2193 {
2194         struct mthca_dev *dev = to_mdev(ibqp->device);
2195         struct mthca_qp *qp = to_mqp(ibqp);
2196         unsigned long flags;
2197         int err = 0;
2198         int nreq;
2199         int ind;
2200         int i;
2201         void *wqe;
2202
2203         spin_lock_irqsave(&qp->rq.lock, flags);
2204
2205         /* XXX check that state is OK to post receive */
2206
2207         ind = qp->rq.head & (qp->rq.max - 1);
2208
2209         for (nreq = 0; wr; ++nreq, wr = wr->next) {
2210                 if (mthca_wq_overflow(&qp->rq, nreq, qp->ibqp.recv_cq)) {
2211                         mthca_err(dev, "RQ %06x full (%u head, %u tail,"
2212                                         " %d max, %d nreq)\n", qp->qpn,
2213                                         qp->rq.head, qp->rq.tail,
2214                                         qp->rq.max, nreq);
2215                         err = -ENOMEM;
2216                         *bad_wr = wr;
2217                         goto out;
2218                 }
2219
2220                 wqe = get_recv_wqe(qp, ind);
2221
2222                 ((struct mthca_next_seg *) wqe)->flags = 0;
2223
2224                 wqe += sizeof (struct mthca_next_seg);
2225
2226                 if (unlikely(wr->num_sge > qp->rq.max_gs)) {
2227                         err = -EINVAL;
2228                         *bad_wr = wr;
2229                         goto out;
2230                 }
2231
2232                 for (i = 0; i < wr->num_sge; ++i) {
2233                         mthca_set_data_seg(wqe, wr->sg_list + i);
2234                         wqe += sizeof (struct mthca_data_seg);
2235                 }
2236
2237                 if (i < qp->rq.max_gs)
2238                         mthca_set_data_seg_inval(wqe);
2239
2240                 qp->wrid[ind] = wr->wr_id;
2241
2242                 ++ind;
2243                 if (unlikely(ind >= qp->rq.max))
2244                         ind -= qp->rq.max;
2245         }
2246 out:
2247         if (likely(nreq)) {
2248                 qp->rq.head += nreq;
2249
2250                 /*
2251                  * Make sure that descriptors are written before
2252                  * doorbell record.
2253                  */
2254                 wmb();
2255                 *qp->rq.db = cpu_to_be32(qp->rq.head & 0xffff);
2256         }
2257
2258         spin_unlock_irqrestore(&qp->rq.lock, flags);
2259         return err;
2260 }
2261
2262 void mthca_free_err_wqe(struct mthca_dev *dev, struct mthca_qp *qp, int is_send,
2263                         int index, int *dbd, __be32 *new_wqe)
2264 {
2265         struct mthca_next_seg *next;
2266
2267         /*
2268          * For SRQs, all receive WQEs generate a CQE, so we're always
2269          * at the end of the doorbell chain.
2270          */
2271         if (qp->ibqp.srq && !is_send) {
2272                 *new_wqe = 0;
2273                 return;
2274         }
2275
2276         if (is_send)
2277                 next = get_send_wqe(qp, index);
2278         else
2279                 next = get_recv_wqe(qp, index);
2280
2281         *dbd = !!(next->ee_nds & cpu_to_be32(MTHCA_NEXT_DBD));
2282         if (next->ee_nds & cpu_to_be32(0x3f))
2283                 *new_wqe = (next->nda_op & cpu_to_be32(~0x3f)) |
2284                         (next->ee_nds & cpu_to_be32(0x3f));
2285         else
2286                 *new_wqe = 0;
2287 }
2288
2289 int mthca_init_qp_table(struct mthca_dev *dev)
2290 {
2291         int err;
2292         u8 status;
2293         int i;
2294
2295         spin_lock_init(&dev->qp_table.lock);
2296
2297         /*
2298          * We reserve 2 extra QPs per port for the special QPs.  The
2299          * special QP for port 1 has to be even, so round up.
2300          */
2301         dev->qp_table.sqp_start = (dev->limits.reserved_qps + 1) & ~1UL;
2302         err = mthca_alloc_init(&dev->qp_table.alloc,
2303                                dev->limits.num_qps,
2304                                (1 << 24) - 1,
2305                                dev->qp_table.sqp_start +
2306                                MTHCA_MAX_PORTS * 2);
2307         if (err)
2308                 return err;
2309
2310         err = mthca_array_init(&dev->qp_table.qp,
2311                                dev->limits.num_qps);
2312         if (err) {
2313                 mthca_alloc_cleanup(&dev->qp_table.alloc);
2314                 return err;
2315         }
2316
2317         for (i = 0; i < 2; ++i) {
2318                 err = mthca_CONF_SPECIAL_QP(dev, i ? IB_QPT_GSI : IB_QPT_SMI,
2319                                             dev->qp_table.sqp_start + i * 2,
2320                                             &status);
2321                 if (err)
2322                         goto err_out;
2323                 if (status) {
2324                         mthca_warn(dev, "CONF_SPECIAL_QP returned "
2325                                    "status %02x, aborting.\n",
2326                                    status);
2327                         err = -EINVAL;
2328                         goto err_out;
2329                 }
2330         }
2331         return 0;
2332
2333  err_out:
2334         for (i = 0; i < 2; ++i)
2335                 mthca_CONF_SPECIAL_QP(dev, i, 0, &status);
2336
2337         mthca_array_cleanup(&dev->qp_table.qp, dev->limits.num_qps);
2338         mthca_alloc_cleanup(&dev->qp_table.alloc);
2339
2340         return err;
2341 }
2342
2343 void mthca_cleanup_qp_table(struct mthca_dev *dev)
2344 {
2345         int i;
2346         u8 status;
2347
2348         for (i = 0; i < 2; ++i)
2349                 mthca_CONF_SPECIAL_QP(dev, i, 0, &status);
2350
2351         mthca_array_cleanup(&dev->qp_table.qp, dev->limits.num_qps);
2352         mthca_alloc_cleanup(&dev->qp_table.alloc);
2353 }