1 /*
2 * Copyright (c) 2005 Topspin Communications. All rights reserved.
3 * Copyright (c) 2006, 2007 Cisco Systems, Inc. All rights reserved.
4 *
5 * This software is available to you under a choice of one of two
6 * licenses. You may choose to be licensed under the terms of the GNU
7 * General Public License (GPL) Version 2, available from the file
8 * COPYING in the main directory of this source tree, or the
9 * OpenIB.org BSD license below:
10 *
11 * Redistribution and use in source and binary forms, with or
12 * without modification, are permitted provided that the following
13 * conditions are met:
14 *
15 * - Redistributions of source code must retain the above
16 * copyright notice, this list of conditions and the following
17 * disclaimer.
18 *
19 * - Redistributions in binary form must reproduce the above
20 * copyright notice, this list of conditions and the following
21 * disclaimer in the documentation and/or other materials
22 * provided with the distribution.
23 *
24 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
25 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
26 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
27 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
28 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
29 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
30 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
31 * SOFTWARE.
32 */
33
34 #define _GNU_SOURCE
35 #include <config.h>
36
37 #include <infiniband/endian.h>
38 #include <stdio.h>
39 #include <unistd.h>
40 #include <stdlib.h>
41 #include <errno.h>
42 #include <string.h>
43 #include <dirent.h>
44 #include <netinet/in.h>
45 #include <netinet/ip.h>
46 #include <sys/socket.h>
47
48 #include "ibverbs.h"
49 #ifndef NRESOLVE_NEIGH
50 #include <net/if.h>
51 #include <net/if_arp.h>
52 #include "neigh.h"
53 #endif
54
55 /* Hack to avoid GCC's -Wmissing-prototypes and the similar error from sparse
56 with these prototypes. Symbol versionining requires the goofy names, the
57 prototype must match the version in verbs.h.
58 */
59 int __ibv_query_device(struct ibv_context *context,
60 struct ibv_device_attr *device_attr);
61 int __ibv_query_port(struct ibv_context *context, uint8_t port_num,
62 struct ibv_port_attr *port_attr);
63 int __ibv_query_gid(struct ibv_context *context, uint8_t port_num, int index,
64 union ibv_gid *gid);
65 int __ibv_query_pkey(struct ibv_context *context, uint8_t port_num, int index,
66 __be16 *pkey);
67 struct ibv_pd *__ibv_alloc_pd(struct ibv_context *context);
68 int __ibv_dealloc_pd(struct ibv_pd *pd);
69 struct ibv_mr *__ibv_reg_mr(struct ibv_pd *pd, void *addr, size_t length,
70 int access);
71 int __ibv_rereg_mr(struct ibv_mr *mr, int flags, struct ibv_pd *pd, void *addr,
72 size_t length, int access);
73 int __ibv_dereg_mr(struct ibv_mr *mr);
74 struct ibv_cq *__ibv_create_cq(struct ibv_context *context, int cqe,
75 void *cq_context,
76 struct ibv_comp_channel *channel,
77 int comp_vector);
78 int __ibv_resize_cq(struct ibv_cq *cq, int cqe);
79 int __ibv_destroy_cq(struct ibv_cq *cq);
80 int __ibv_get_cq_event(struct ibv_comp_channel *channel, struct ibv_cq **cq,
81 void **cq_context);
82 void __ibv_ack_cq_events(struct ibv_cq *cq, unsigned int nevents);
83 struct ibv_srq *__ibv_create_srq(struct ibv_pd *pd,
84 struct ibv_srq_init_attr *srq_init_attr);
85 int __ibv_modify_srq(struct ibv_srq *srq, struct ibv_srq_attr *srq_attr,
86 int srq_attr_mask);
87 int __ibv_query_srq(struct ibv_srq *srq, struct ibv_srq_attr *srq_attr);
88 int __ibv_destroy_srq(struct ibv_srq *srq);
89 struct ibv_qp *__ibv_create_qp(struct ibv_pd *pd,
90 struct ibv_qp_init_attr *qp_init_attr);
91 int __ibv_query_qp(struct ibv_qp *qp, struct ibv_qp_attr *attr, int attr_mask,
92 struct ibv_qp_init_attr *init_attr);
93 int __ibv_modify_qp(struct ibv_qp *qp, struct ibv_qp_attr *attr, int attr_mask);
94 int __ibv_destroy_qp(struct ibv_qp *qp);
95 struct ibv_ah *__ibv_create_ah(struct ibv_pd *pd, struct ibv_ah_attr *attr);
96 int __ibv_destroy_ah(struct ibv_ah *ah);
97 int __ibv_attach_mcast(struct ibv_qp *qp, const union ibv_gid *gid,
98 uint16_t lid);
99 int __ibv_detach_mcast(struct ibv_qp *qp, const union ibv_gid *gid,
100 uint16_t lid);
101
ibv_rate_to_mult(enum ibv_rate rate)102 int __attribute__((const)) ibv_rate_to_mult(enum ibv_rate rate)
103 {
104 switch (rate) {
105 case IBV_RATE_2_5_GBPS: return 1;
106 case IBV_RATE_5_GBPS: return 2;
107 case IBV_RATE_10_GBPS: return 4;
108 case IBV_RATE_20_GBPS: return 8;
109 case IBV_RATE_30_GBPS: return 12;
110 case IBV_RATE_40_GBPS: return 16;
111 case IBV_RATE_60_GBPS: return 24;
112 case IBV_RATE_80_GBPS: return 32;
113 case IBV_RATE_120_GBPS: return 48;
114 case IBV_RATE_28_GBPS: return 11;
115 case IBV_RATE_50_GBPS: return 20;
116 case IBV_RATE_400_GBPS: return 160;
117 case IBV_RATE_600_GBPS: return 240;
118 default: return -1;
119 }
120 }
121
mult_to_ibv_rate(int mult)122 enum ibv_rate __attribute__((const)) mult_to_ibv_rate(int mult)
123 {
124 switch (mult) {
125 case 1: return IBV_RATE_2_5_GBPS;
126 case 2: return IBV_RATE_5_GBPS;
127 case 4: return IBV_RATE_10_GBPS;
128 case 8: return IBV_RATE_20_GBPS;
129 case 12: return IBV_RATE_30_GBPS;
130 case 16: return IBV_RATE_40_GBPS;
131 case 24: return IBV_RATE_60_GBPS;
132 case 32: return IBV_RATE_80_GBPS;
133 case 48: return IBV_RATE_120_GBPS;
134 case 11: return IBV_RATE_28_GBPS;
135 case 20: return IBV_RATE_50_GBPS;
136 case 160: return IBV_RATE_400_GBPS;
137 case 240: return IBV_RATE_600_GBPS;
138 default: return IBV_RATE_MAX;
139 }
140 }
141
ibv_rate_to_mbps(enum ibv_rate rate)142 int __attribute__((const)) ibv_rate_to_mbps(enum ibv_rate rate)
143 {
144 switch (rate) {
145 case IBV_RATE_2_5_GBPS: return 2500;
146 case IBV_RATE_5_GBPS: return 5000;
147 case IBV_RATE_10_GBPS: return 10000;
148 case IBV_RATE_20_GBPS: return 20000;
149 case IBV_RATE_30_GBPS: return 30000;
150 case IBV_RATE_40_GBPS: return 40000;
151 case IBV_RATE_60_GBPS: return 60000;
152 case IBV_RATE_80_GBPS: return 80000;
153 case IBV_RATE_120_GBPS: return 120000;
154 case IBV_RATE_14_GBPS: return 14062;
155 case IBV_RATE_56_GBPS: return 56250;
156 case IBV_RATE_112_GBPS: return 112500;
157 case IBV_RATE_168_GBPS: return 168750;
158 case IBV_RATE_25_GBPS: return 25781;
159 case IBV_RATE_100_GBPS: return 103125;
160 case IBV_RATE_200_GBPS: return 206250;
161 case IBV_RATE_300_GBPS: return 309375;
162 case IBV_RATE_28_GBPS: return 28125;
163 case IBV_RATE_50_GBPS: return 53125;
164 case IBV_RATE_400_GBPS: return 425000;
165 case IBV_RATE_600_GBPS: return 637500;
166 default: return -1;
167 }
168 }
169
mbps_to_ibv_rate(int mbps)170 enum ibv_rate __attribute__((const)) mbps_to_ibv_rate(int mbps)
171 {
172 switch (mbps) {
173 case 2500: return IBV_RATE_2_5_GBPS;
174 case 5000: return IBV_RATE_5_GBPS;
175 case 10000: return IBV_RATE_10_GBPS;
176 case 20000: return IBV_RATE_20_GBPS;
177 case 30000: return IBV_RATE_30_GBPS;
178 case 40000: return IBV_RATE_40_GBPS;
179 case 60000: return IBV_RATE_60_GBPS;
180 case 80000: return IBV_RATE_80_GBPS;
181 case 120000: return IBV_RATE_120_GBPS;
182 case 14062: return IBV_RATE_14_GBPS;
183 case 56250: return IBV_RATE_56_GBPS;
184 case 112500: return IBV_RATE_112_GBPS;
185 case 168750: return IBV_RATE_168_GBPS;
186 case 25781: return IBV_RATE_25_GBPS;
187 case 103125: return IBV_RATE_100_GBPS;
188 case 206250: return IBV_RATE_200_GBPS;
189 case 309375: return IBV_RATE_300_GBPS;
190 case 28125: return IBV_RATE_28_GBPS;
191 case 53125: return IBV_RATE_50_GBPS;
192 case 425000: return IBV_RATE_400_GBPS;
193 case 637500: return IBV_RATE_600_GBPS;
194 default: return IBV_RATE_MAX;
195 }
196 }
197
__ibv_query_device(struct ibv_context * context,struct ibv_device_attr * device_attr)198 int __ibv_query_device(struct ibv_context *context,
199 struct ibv_device_attr *device_attr)
200 {
201 return context->ops.query_device(context, device_attr);
202 }
203 default_symver(__ibv_query_device, ibv_query_device);
204
__ibv_query_port(struct ibv_context * context,uint8_t port_num,struct ibv_port_attr * port_attr)205 int __ibv_query_port(struct ibv_context *context, uint8_t port_num,
206 struct ibv_port_attr *port_attr)
207 {
208 return context->ops.query_port(context, port_num, port_attr);
209 }
210 default_symver(__ibv_query_port, ibv_query_port);
211
__ibv_query_gid(struct ibv_context * context,uint8_t port_num,int index,union ibv_gid * gid)212 int __ibv_query_gid(struct ibv_context *context, uint8_t port_num,
213 int index, union ibv_gid *gid)
214 {
215 char name[24];
216 char attr[41];
217 uint16_t val;
218 int i;
219
220 snprintf(name, sizeof name, "ports/%d/gids/%d", port_num, index);
221
222 if (ibv_read_sysfs_file(context->device->ibdev_path, name,
223 attr, sizeof attr) < 0)
224 return -1;
225
226 for (i = 0; i < 8; ++i) {
227 if (sscanf(attr + i * 5, "%hx", &val) != 1)
228 return -1;
229 gid->raw[i * 2 ] = val >> 8;
230 gid->raw[i * 2 + 1] = val & 0xff;
231 }
232
233 return 0;
234 }
235 default_symver(__ibv_query_gid, ibv_query_gid);
236
__ibv_query_pkey(struct ibv_context * context,uint8_t port_num,int index,__be16 * pkey)237 int __ibv_query_pkey(struct ibv_context *context, uint8_t port_num,
238 int index, __be16 *pkey)
239 {
240 char name[24];
241 char attr[8];
242 uint16_t val;
243
244 snprintf(name, sizeof name, "ports/%d/pkeys/%d", port_num, index);
245
246 if (ibv_read_sysfs_file(context->device->ibdev_path, name,
247 attr, sizeof attr) < 0)
248 return -1;
249
250 if (sscanf(attr, "%hx", &val) != 1)
251 return -1;
252
253 *pkey = htobe16(val);
254 return 0;
255 }
256 default_symver(__ibv_query_pkey, ibv_query_pkey);
257
__ibv_alloc_pd(struct ibv_context * context)258 struct ibv_pd *__ibv_alloc_pd(struct ibv_context *context)
259 {
260 struct ibv_pd *pd;
261
262 pd = context->ops.alloc_pd(context);
263 if (pd)
264 pd->context = context;
265
266 return pd;
267 }
268 default_symver(__ibv_alloc_pd, ibv_alloc_pd);
269
__ibv_dealloc_pd(struct ibv_pd * pd)270 int __ibv_dealloc_pd(struct ibv_pd *pd)
271 {
272 return pd->context->ops.dealloc_pd(pd);
273 }
274 default_symver(__ibv_dealloc_pd, ibv_dealloc_pd);
275
__ibv_reg_mr(struct ibv_pd * pd,void * addr,size_t length,int access)276 struct ibv_mr *__ibv_reg_mr(struct ibv_pd *pd, void *addr,
277 size_t length, int access)
278 {
279 struct ibv_mr *mr;
280
281 if (ibv_dontfork_range(addr, length))
282 return NULL;
283
284 mr = pd->context->ops.reg_mr(pd, addr, length, access);
285 if (mr) {
286 mr->context = pd->context;
287 mr->pd = pd;
288 mr->addr = addr;
289 mr->length = length;
290 } else
291 ibv_dofork_range(addr, length);
292
293 return mr;
294 }
295 default_symver(__ibv_reg_mr, ibv_reg_mr);
296
__ibv_rereg_mr(struct ibv_mr * mr,int flags,struct ibv_pd * pd,void * addr,size_t length,int access)297 int __ibv_rereg_mr(struct ibv_mr *mr, int flags,
298 struct ibv_pd *pd, void *addr,
299 size_t length, int access)
300 {
301 int dofork_onfail = 0;
302 int err;
303 void *old_addr;
304 size_t old_len;
305
306 if (flags & ~IBV_REREG_MR_FLAGS_SUPPORTED) {
307 errno = EINVAL;
308 return IBV_REREG_MR_ERR_INPUT;
309 }
310
311 if ((flags & IBV_REREG_MR_CHANGE_TRANSLATION) &&
312 (!length || !addr)) {
313 errno = EINVAL;
314 return IBV_REREG_MR_ERR_INPUT;
315 }
316
317 if (access && !(flags & IBV_REREG_MR_CHANGE_ACCESS)) {
318 errno = EINVAL;
319 return IBV_REREG_MR_ERR_INPUT;
320 }
321
322 if (!mr->context->ops.rereg_mr) {
323 errno = ENOSYS;
324 return IBV_REREG_MR_ERR_INPUT;
325 }
326
327 if (flags & IBV_REREG_MR_CHANGE_TRANSLATION) {
328 err = ibv_dontfork_range(addr, length);
329 if (err)
330 return IBV_REREG_MR_ERR_DONT_FORK_NEW;
331 dofork_onfail = 1;
332 }
333
334 old_addr = mr->addr;
335 old_len = mr->length;
336 err = mr->context->ops.rereg_mr(mr, flags, pd, addr, length, access);
337 if (!err) {
338 if (flags & IBV_REREG_MR_CHANGE_PD)
339 mr->pd = pd;
340 if (flags & IBV_REREG_MR_CHANGE_TRANSLATION) {
341 mr->addr = addr;
342 mr->length = length;
343 err = ibv_dofork_range(old_addr, old_len);
344 if (err)
345 return IBV_REREG_MR_ERR_DO_FORK_OLD;
346 }
347 } else {
348 err = IBV_REREG_MR_ERR_CMD;
349 if (dofork_onfail) {
350 if (ibv_dofork_range(addr, length))
351 err = IBV_REREG_MR_ERR_CMD_AND_DO_FORK_NEW;
352 }
353 }
354
355 return err;
356 }
357 default_symver(__ibv_rereg_mr, ibv_rereg_mr);
358
__ibv_dereg_mr(struct ibv_mr * mr)359 int __ibv_dereg_mr(struct ibv_mr *mr)
360 {
361 int ret;
362 void *addr = mr->addr;
363 size_t length = mr->length;
364
365 ret = mr->context->ops.dereg_mr(mr);
366 if (!ret)
367 ibv_dofork_range(addr, length);
368
369 return ret;
370 }
371 default_symver(__ibv_dereg_mr, ibv_dereg_mr);
372
ibv_create_comp_channel_v2(struct ibv_context * context)373 static struct ibv_comp_channel *ibv_create_comp_channel_v2(struct ibv_context *context)
374 {
375 struct ibv_abi_compat_v2 *t = context->abi_compat;
376 static int warned;
377
378 if (!pthread_mutex_trylock(&t->in_use))
379 return &t->channel;
380
381 if (!warned) {
382 fprintf(stderr, PFX "Warning: kernel's ABI version %d limits capacity.\n"
383 " Only one completion channel can be created per context.\n",
384 abi_ver);
385 ++warned;
386 }
387
388 return NULL;
389 }
390
ibv_create_comp_channel(struct ibv_context * context)391 struct ibv_comp_channel *ibv_create_comp_channel(struct ibv_context *context)
392 {
393 struct ibv_comp_channel *channel;
394 struct ibv_create_comp_channel cmd;
395 struct ibv_create_comp_channel_resp resp;
396
397 if (abi_ver <= 2)
398 return ibv_create_comp_channel_v2(context);
399
400 channel = malloc(sizeof *channel);
401 if (!channel)
402 return NULL;
403
404 IBV_INIT_CMD_RESP(&cmd, sizeof cmd, CREATE_COMP_CHANNEL, &resp, sizeof resp);
405 if (write(context->cmd_fd, &cmd, sizeof cmd) != sizeof cmd) {
406 free(channel);
407 return NULL;
408 }
409
410 (void) VALGRIND_MAKE_MEM_DEFINED(&resp, sizeof resp);
411
412 channel->context = context;
413 channel->fd = resp.fd;
414 channel->refcnt = 0;
415
416 return channel;
417 }
418
ibv_destroy_comp_channel_v2(struct ibv_comp_channel * channel)419 static int ibv_destroy_comp_channel_v2(struct ibv_comp_channel *channel)
420 {
421 struct ibv_abi_compat_v2 *t = (struct ibv_abi_compat_v2 *) channel;
422 pthread_mutex_unlock(&t->in_use);
423 return 0;
424 }
425
ibv_destroy_comp_channel(struct ibv_comp_channel * channel)426 int ibv_destroy_comp_channel(struct ibv_comp_channel *channel)
427 {
428 struct ibv_context *context;
429 int ret;
430
431 context = channel->context;
432 pthread_mutex_lock(&context->mutex);
433
434 if (channel->refcnt) {
435 ret = EBUSY;
436 goto out;
437 }
438
439 if (abi_ver <= 2) {
440 ret = ibv_destroy_comp_channel_v2(channel);
441 goto out;
442 }
443
444 close(channel->fd);
445 free(channel);
446 ret = 0;
447
448 out:
449 pthread_mutex_unlock(&context->mutex);
450
451 return ret;
452 }
453
__ibv_create_cq(struct ibv_context * context,int cqe,void * cq_context,struct ibv_comp_channel * channel,int comp_vector)454 struct ibv_cq *__ibv_create_cq(struct ibv_context *context, int cqe, void *cq_context,
455 struct ibv_comp_channel *channel, int comp_vector)
456 {
457 struct ibv_cq *cq;
458
459 cq = context->ops.create_cq(context, cqe, channel, comp_vector);
460
461 if (cq)
462 verbs_init_cq(cq, context, channel, cq_context);
463
464 return cq;
465 }
466 default_symver(__ibv_create_cq, ibv_create_cq);
467
__ibv_resize_cq(struct ibv_cq * cq,int cqe)468 int __ibv_resize_cq(struct ibv_cq *cq, int cqe)
469 {
470 if (!cq->context->ops.resize_cq)
471 return ENOSYS;
472
473 return cq->context->ops.resize_cq(cq, cqe);
474 }
475 default_symver(__ibv_resize_cq, ibv_resize_cq);
476
__ibv_destroy_cq(struct ibv_cq * cq)477 int __ibv_destroy_cq(struct ibv_cq *cq)
478 {
479 struct ibv_comp_channel *channel = cq->channel;
480 int ret;
481
482 ret = cq->context->ops.destroy_cq(cq);
483
484 if (channel) {
485 if (!ret) {
486 pthread_mutex_lock(&channel->context->mutex);
487 --channel->refcnt;
488 pthread_mutex_unlock(&channel->context->mutex);
489 }
490 }
491
492 return ret;
493 }
494 default_symver(__ibv_destroy_cq, ibv_destroy_cq);
495
__ibv_get_cq_event(struct ibv_comp_channel * channel,struct ibv_cq ** cq,void ** cq_context)496 int __ibv_get_cq_event(struct ibv_comp_channel *channel,
497 struct ibv_cq **cq, void **cq_context)
498 {
499 struct ibv_comp_event ev;
500
501 if (read(channel->fd, &ev, sizeof ev) != sizeof ev)
502 return -1;
503
504 *cq = (struct ibv_cq *) (uintptr_t) ev.cq_handle;
505 *cq_context = (*cq)->cq_context;
506
507 if ((*cq)->context->ops.cq_event)
508 (*cq)->context->ops.cq_event(*cq);
509
510 return 0;
511 }
512 default_symver(__ibv_get_cq_event, ibv_get_cq_event);
513
__ibv_ack_cq_events(struct ibv_cq * cq,unsigned int nevents)514 void __ibv_ack_cq_events(struct ibv_cq *cq, unsigned int nevents)
515 {
516 pthread_mutex_lock(&cq->mutex);
517 cq->comp_events_completed += nevents;
518 pthread_cond_signal(&cq->cond);
519 pthread_mutex_unlock(&cq->mutex);
520 }
521 default_symver(__ibv_ack_cq_events, ibv_ack_cq_events);
522
__ibv_create_srq(struct ibv_pd * pd,struct ibv_srq_init_attr * srq_init_attr)523 struct ibv_srq *__ibv_create_srq(struct ibv_pd *pd,
524 struct ibv_srq_init_attr *srq_init_attr)
525 {
526 struct ibv_srq *srq;
527
528 if (!pd->context->ops.create_srq)
529 return NULL;
530
531 srq = pd->context->ops.create_srq(pd, srq_init_attr);
532 if (srq) {
533 srq->context = pd->context;
534 srq->srq_context = srq_init_attr->srq_context;
535 srq->pd = pd;
536 srq->events_completed = 0;
537 pthread_mutex_init(&srq->mutex, NULL);
538 pthread_cond_init(&srq->cond, NULL);
539 }
540
541 return srq;
542 }
543 default_symver(__ibv_create_srq, ibv_create_srq);
544
__ibv_modify_srq(struct ibv_srq * srq,struct ibv_srq_attr * srq_attr,int srq_attr_mask)545 int __ibv_modify_srq(struct ibv_srq *srq,
546 struct ibv_srq_attr *srq_attr,
547 int srq_attr_mask)
548 {
549 return srq->context->ops.modify_srq(srq, srq_attr, srq_attr_mask);
550 }
551 default_symver(__ibv_modify_srq, ibv_modify_srq);
552
__ibv_query_srq(struct ibv_srq * srq,struct ibv_srq_attr * srq_attr)553 int __ibv_query_srq(struct ibv_srq *srq, struct ibv_srq_attr *srq_attr)
554 {
555 return srq->context->ops.query_srq(srq, srq_attr);
556 }
557 default_symver(__ibv_query_srq, ibv_query_srq);
558
__ibv_destroy_srq(struct ibv_srq * srq)559 int __ibv_destroy_srq(struct ibv_srq *srq)
560 {
561 return srq->context->ops.destroy_srq(srq);
562 }
563 default_symver(__ibv_destroy_srq, ibv_destroy_srq);
564
__ibv_create_qp(struct ibv_pd * pd,struct ibv_qp_init_attr * qp_init_attr)565 struct ibv_qp *__ibv_create_qp(struct ibv_pd *pd,
566 struct ibv_qp_init_attr *qp_init_attr)
567 {
568 struct ibv_qp *qp = pd->context->ops.create_qp(pd, qp_init_attr);
569
570 if (qp) {
571 qp->context = pd->context;
572 qp->qp_context = qp_init_attr->qp_context;
573 qp->pd = pd;
574 qp->send_cq = qp_init_attr->send_cq;
575 qp->recv_cq = qp_init_attr->recv_cq;
576 qp->srq = qp_init_attr->srq;
577 qp->qp_type = qp_init_attr->qp_type;
578 qp->state = IBV_QPS_RESET;
579 qp->events_completed = 0;
580 pthread_mutex_init(&qp->mutex, NULL);
581 pthread_cond_init(&qp->cond, NULL);
582 }
583
584 return qp;
585 }
586 default_symver(__ibv_create_qp, ibv_create_qp);
587
__ibv_query_qp(struct ibv_qp * qp,struct ibv_qp_attr * attr,int attr_mask,struct ibv_qp_init_attr * init_attr)588 int __ibv_query_qp(struct ibv_qp *qp, struct ibv_qp_attr *attr,
589 int attr_mask,
590 struct ibv_qp_init_attr *init_attr)
591 {
592 int ret;
593
594 ret = qp->context->ops.query_qp(qp, attr, attr_mask, init_attr);
595 if (ret)
596 return ret;
597
598 if (attr_mask & IBV_QP_STATE)
599 qp->state = attr->qp_state;
600
601 return 0;
602 }
603 default_symver(__ibv_query_qp, ibv_query_qp);
604
__ibv_modify_qp(struct ibv_qp * qp,struct ibv_qp_attr * attr,int attr_mask)605 int __ibv_modify_qp(struct ibv_qp *qp, struct ibv_qp_attr *attr,
606 int attr_mask)
607 {
608 int ret;
609
610 ret = qp->context->ops.modify_qp(qp, attr, attr_mask);
611 if (ret)
612 return ret;
613
614 if (attr_mask & IBV_QP_STATE)
615 qp->state = attr->qp_state;
616
617 return 0;
618 }
619 default_symver(__ibv_modify_qp, ibv_modify_qp);
620
__ibv_destroy_qp(struct ibv_qp * qp)621 int __ibv_destroy_qp(struct ibv_qp *qp)
622 {
623 return qp->context->ops.destroy_qp(qp);
624 }
625 default_symver(__ibv_destroy_qp, ibv_destroy_qp);
626
__ibv_create_ah(struct ibv_pd * pd,struct ibv_ah_attr * attr)627 struct ibv_ah *__ibv_create_ah(struct ibv_pd *pd, struct ibv_ah_attr *attr)
628 {
629 struct ibv_ah *ah = pd->context->ops.create_ah(pd, attr);
630
631 if (ah) {
632 ah->context = pd->context;
633 ah->pd = pd;
634 }
635
636 return ah;
637 }
638 default_symver(__ibv_create_ah, ibv_create_ah);
639
640 /* GID types as appear in sysfs, no change is expected as of ABI
641 * compatibility.
642 */
643 #define V1_TYPE "IB/RoCE v1"
644 #define V2_TYPE "RoCE v2"
ibv_query_gid_type(struct ibv_context * context,uint8_t port_num,unsigned int index,enum ibv_gid_type * type)645 int ibv_query_gid_type(struct ibv_context *context, uint8_t port_num,
646 unsigned int index, enum ibv_gid_type *type)
647 {
648 char name[32];
649 char buff[11];
650
651 snprintf(name, sizeof(name), "ports/%d/gid_attrs/types/%d", port_num,
652 index);
653
654 /* Reset errno so that we can rely on its value upon any error flow in
655 * ibv_read_sysfs_file.
656 */
657 errno = 0;
658 if (ibv_read_sysfs_file(context->device->ibdev_path, name, buff,
659 sizeof(buff)) <= 0) {
660 char *dir_path;
661 DIR *dir;
662
663 if (errno == EINVAL) {
664 /* In IB, this file doesn't exist and the kernel sets
665 * errno to -EINVAL.
666 */
667 *type = IBV_GID_TYPE_IB_ROCE_V1;
668 return 0;
669 }
670 if (asprintf(&dir_path, "%s/%s/%d/%s/",
671 context->device->ibdev_path, "ports", port_num,
672 "gid_attrs") < 0)
673 return -1;
674 dir = opendir(dir_path);
675 free(dir_path);
676 if (!dir) {
677 if (errno == ENOENT)
678 /* Assuming that if gid_attrs doesn't exist,
679 * we have an old kernel and all GIDs are
680 * IB/RoCE v1
681 */
682 *type = IBV_GID_TYPE_IB_ROCE_V1;
683 else
684 return -1;
685 } else {
686 closedir(dir);
687 errno = EFAULT;
688 return -1;
689 }
690 } else {
691 if (!strcmp(buff, V1_TYPE)) {
692 *type = IBV_GID_TYPE_IB_ROCE_V1;
693 } else if (!strcmp(buff, V2_TYPE)) {
694 *type = IBV_GID_TYPE_ROCE_V2;
695 } else {
696 errno = ENOTSUP;
697 return -1;
698 }
699 }
700
701 return 0;
702 }
703
ibv_find_gid_index(struct ibv_context * context,uint8_t port_num,union ibv_gid * gid,enum ibv_gid_type gid_type)704 static int ibv_find_gid_index(struct ibv_context *context, uint8_t port_num,
705 union ibv_gid *gid, enum ibv_gid_type gid_type)
706 {
707 enum ibv_gid_type sgid_type = 0;
708 union ibv_gid sgid;
709 int i = 0, ret;
710
711 do {
712 ret = ibv_query_gid(context, port_num, i, &sgid);
713 if (!ret) {
714 ret = ibv_query_gid_type(context, port_num, i,
715 &sgid_type);
716 }
717 i++;
718 } while (!ret && (memcmp(&sgid, gid, sizeof(*gid)) ||
719 (gid_type != sgid_type)));
720
721 return ret ? ret : i - 1;
722 }
723
map_ipv4_addr_to_ipv6(__be32 ipv4,struct in6_addr * ipv6)724 static inline void map_ipv4_addr_to_ipv6(__be32 ipv4, struct in6_addr *ipv6)
725 {
726 ipv6->s6_addr32[0] = 0;
727 ipv6->s6_addr32[1] = 0;
728 ipv6->s6_addr32[2] = htobe32(0x0000FFFF);
729 ipv6->s6_addr32[3] = ipv4;
730 }
731
ipv4_calc_hdr_csum(uint16_t * data,unsigned int num_hwords)732 static inline __sum16 ipv4_calc_hdr_csum(uint16_t *data, unsigned int num_hwords)
733 {
734 unsigned int i = 0;
735 uint32_t sum = 0;
736
737 for (i = 0; i < num_hwords; i++)
738 sum += *(data++);
739
740 sum = (sum & 0xffff) + (sum >> 16);
741
742 return (__sum16)~sum;
743 }
744
get_grh_header_version(struct ibv_grh * grh)745 static inline int get_grh_header_version(struct ibv_grh *grh)
746 {
747 int ip6h_version = (be32toh(grh->version_tclass_flow) >> 28) & 0xf;
748 struct ip *ip4h = (struct ip *)((void *)grh + 20);
749 struct ip ip4h_checked;
750
751 if (ip6h_version != 6) {
752 if (ip4h->ip_v == 4)
753 return 4;
754 errno = EPROTONOSUPPORT;
755 return -1;
756 }
757 /* version may be 6 or 4 */
758 if (ip4h->ip_hl != 5) /* IPv4 header length must be 5 for RoCE v2. */
759 return 6;
760 /*
761 * Verify checksum.
762 * We can't write on scattered buffers so we have to copy to temp
763 * buffer.
764 */
765 memcpy(&ip4h_checked, ip4h, sizeof(ip4h_checked));
766 /* Need to set the checksum field (check) to 0 before re-calculating
767 * the checksum.
768 */
769 ip4h_checked.ip_sum = 0;
770 ip4h_checked.ip_sum = ipv4_calc_hdr_csum((uint16_t *)&ip4h_checked, 10);
771 /* if IPv4 header checksum is OK, believe it */
772 if (ip4h->ip_sum == ip4h_checked.ip_sum)
773 return 4;
774 return 6;
775 }
776
set_ah_attr_generic_fields(struct ibv_ah_attr * ah_attr,struct ibv_wc * wc,struct ibv_grh * grh,uint8_t port_num)777 static inline void set_ah_attr_generic_fields(struct ibv_ah_attr *ah_attr,
778 struct ibv_wc *wc,
779 struct ibv_grh *grh,
780 uint8_t port_num)
781 {
782 uint32_t flow_class;
783
784 flow_class = be32toh(grh->version_tclass_flow);
785 ah_attr->grh.flow_label = flow_class & 0xFFFFF;
786 ah_attr->dlid = wc->slid;
787 ah_attr->sl = wc->sl;
788 ah_attr->src_path_bits = wc->dlid_path_bits;
789 ah_attr->port_num = port_num;
790 }
791
set_ah_attr_by_ipv4(struct ibv_context * context,struct ibv_ah_attr * ah_attr,struct ip * ip4h,uint8_t port_num)792 static inline int set_ah_attr_by_ipv4(struct ibv_context *context,
793 struct ibv_ah_attr *ah_attr,
794 struct ip *ip4h, uint8_t port_num)
795 {
796 union ibv_gid sgid;
797 int ret;
798
799 /* No point searching multicast GIDs in GID table */
800 if (IN_CLASSD(be32toh(ip4h->ip_dst.s_addr))) {
801 errno = EINVAL;
802 return -1;
803 }
804
805 map_ipv4_addr_to_ipv6(ip4h->ip_dst.s_addr, (struct in6_addr *)&sgid);
806 ret = ibv_find_gid_index(context, port_num, &sgid,
807 IBV_GID_TYPE_ROCE_V2);
808 if (ret < 0)
809 return ret;
810
811 map_ipv4_addr_to_ipv6(ip4h->ip_src.s_addr,
812 (struct in6_addr *)&ah_attr->grh.dgid);
813 ah_attr->grh.sgid_index = (uint8_t) ret;
814 ah_attr->grh.hop_limit = ip4h->ip_ttl;
815 ah_attr->grh.traffic_class = ip4h->ip_tos;
816
817 return 0;
818 }
819
820 #define IB_NEXT_HDR 0x1b
set_ah_attr_by_ipv6(struct ibv_context * context,struct ibv_ah_attr * ah_attr,struct ibv_grh * grh,uint8_t port_num)821 static inline int set_ah_attr_by_ipv6(struct ibv_context *context,
822 struct ibv_ah_attr *ah_attr,
823 struct ibv_grh *grh, uint8_t port_num)
824 {
825 uint32_t flow_class;
826 uint32_t sgid_type;
827 int ret;
828
829 /* No point searching multicast GIDs in GID table */
830 if (grh->dgid.raw[0] == 0xFF) {
831 errno = EINVAL;
832 return -1;
833 }
834
835 ah_attr->grh.dgid = grh->sgid;
836 if (grh->next_hdr == IPPROTO_UDP) {
837 sgid_type = IBV_GID_TYPE_ROCE_V2;
838 } else if (grh->next_hdr == IB_NEXT_HDR) {
839 sgid_type = IBV_GID_TYPE_IB_ROCE_V1;
840 } else {
841 errno = EPROTONOSUPPORT;
842 return -1;
843 }
844
845 ret = ibv_find_gid_index(context, port_num, &grh->dgid,
846 sgid_type);
847 if (ret < 0)
848 return ret;
849
850 ah_attr->grh.sgid_index = (uint8_t) ret;
851 flow_class = be32toh(grh->version_tclass_flow);
852 ah_attr->grh.hop_limit = grh->hop_limit;
853 ah_attr->grh.traffic_class = (flow_class >> 20) & 0xFF;
854
855 return 0;
856 }
857
ibv_init_ah_from_wc(struct ibv_context * context,uint8_t port_num,struct ibv_wc * wc,struct ibv_grh * grh,struct ibv_ah_attr * ah_attr)858 int ibv_init_ah_from_wc(struct ibv_context *context, uint8_t port_num,
859 struct ibv_wc *wc, struct ibv_grh *grh,
860 struct ibv_ah_attr *ah_attr)
861 {
862 int version;
863 int ret = 0;
864
865 memset(ah_attr, 0, sizeof *ah_attr);
866 set_ah_attr_generic_fields(ah_attr, wc, grh, port_num);
867
868 if (wc->wc_flags & IBV_WC_GRH) {
869 ah_attr->is_global = 1;
870 version = get_grh_header_version(grh);
871
872 if (version == 4)
873 ret = set_ah_attr_by_ipv4(context, ah_attr,
874 (struct ip *)((void *)grh + 20),
875 port_num);
876 else if (version == 6)
877 ret = set_ah_attr_by_ipv6(context, ah_attr, grh,
878 port_num);
879 else
880 ret = -1;
881 }
882
883 return ret;
884 }
885
ibv_create_ah_from_wc(struct ibv_pd * pd,struct ibv_wc * wc,struct ibv_grh * grh,uint8_t port_num)886 struct ibv_ah *ibv_create_ah_from_wc(struct ibv_pd *pd, struct ibv_wc *wc,
887 struct ibv_grh *grh, uint8_t port_num)
888 {
889 struct ibv_ah_attr ah_attr;
890 int ret;
891
892 ret = ibv_init_ah_from_wc(pd->context, port_num, wc, grh, &ah_attr);
893 if (ret)
894 return NULL;
895
896 return ibv_create_ah(pd, &ah_attr);
897 }
898
__ibv_destroy_ah(struct ibv_ah * ah)899 int __ibv_destroy_ah(struct ibv_ah *ah)
900 {
901 return ah->context->ops.destroy_ah(ah);
902 }
903 default_symver(__ibv_destroy_ah, ibv_destroy_ah);
904
__ibv_attach_mcast(struct ibv_qp * qp,const union ibv_gid * gid,uint16_t lid)905 int __ibv_attach_mcast(struct ibv_qp *qp, const union ibv_gid *gid, uint16_t lid)
906 {
907 return qp->context->ops.attach_mcast(qp, gid, lid);
908 }
909 default_symver(__ibv_attach_mcast, ibv_attach_mcast);
910
__ibv_detach_mcast(struct ibv_qp * qp,const union ibv_gid * gid,uint16_t lid)911 int __ibv_detach_mcast(struct ibv_qp *qp, const union ibv_gid *gid, uint16_t lid)
912 {
913 return qp->context->ops.detach_mcast(qp, gid, lid);
914 }
915 default_symver(__ibv_detach_mcast, ibv_detach_mcast);
916
ipv6_addr_v4mapped(const struct in6_addr * a)917 static inline int ipv6_addr_v4mapped(const struct in6_addr *a)
918 {
919 return IN6_IS_ADDR_V4MAPPED(a) ||
920 /* IPv4 encoded multicast addresses */
921 (a->s6_addr32[0] == htobe32(0xff0e0000) &&
922 ((a->s6_addr32[1] |
923 (a->s6_addr32[2] ^ htobe32(0x0000ffff))) == 0UL));
924 }
925
926 struct peer_address {
927 void *address;
928 uint32_t size;
929 };
930
create_peer_from_gid(int family,void * raw_gid,struct peer_address * peer_address)931 static inline int create_peer_from_gid(int family, void *raw_gid,
932 struct peer_address *peer_address)
933 {
934 switch (family) {
935 case AF_INET:
936 peer_address->address = raw_gid + 12;
937 peer_address->size = 4;
938 break;
939 case AF_INET6:
940 peer_address->address = raw_gid;
941 peer_address->size = 16;
942 break;
943 default:
944 return -1;
945 }
946
947 return 0;
948 }
949
950 #define NEIGH_GET_DEFAULT_TIMEOUT_MS 3000
ibv_resolve_eth_l2_from_gid(struct ibv_context * context,struct ibv_ah_attr * attr,uint8_t eth_mac[ETHERNET_LL_SIZE],uint16_t * vid)951 int ibv_resolve_eth_l2_from_gid(struct ibv_context *context,
952 struct ibv_ah_attr *attr,
953 uint8_t eth_mac[ETHERNET_LL_SIZE],
954 uint16_t *vid)
955 {
956 #ifndef NRESOLVE_NEIGH
957 int dst_family;
958 int src_family;
959 int oif;
960 struct get_neigh_handler neigh_handler;
961 union ibv_gid sgid;
962 int ether_len;
963 struct peer_address src;
964 struct peer_address dst;
965 uint16_t ret_vid;
966 int ret = -EINVAL;
967 int err;
968
969 err = ibv_query_gid(context, attr->port_num,
970 attr->grh.sgid_index, &sgid);
971
972 if (err)
973 return err;
974
975 err = neigh_init_resources(&neigh_handler,
976 NEIGH_GET_DEFAULT_TIMEOUT_MS);
977
978 if (err)
979 return err;
980
981 dst_family = ipv6_addr_v4mapped((struct in6_addr *)attr->grh.dgid.raw) ?
982 AF_INET : AF_INET6;
983 src_family = ipv6_addr_v4mapped((struct in6_addr *)sgid.raw) ?
984 AF_INET : AF_INET6;
985
986 if (create_peer_from_gid(dst_family, attr->grh.dgid.raw, &dst))
987 goto free_resources;
988
989 if (create_peer_from_gid(src_family, &sgid.raw, &src))
990 goto free_resources;
991
992 if (neigh_set_dst(&neigh_handler, dst_family, dst.address,
993 dst.size))
994 goto free_resources;
995
996 if (neigh_set_src(&neigh_handler, src_family, src.address,
997 src.size))
998 goto free_resources;
999
1000 oif = neigh_get_oif_from_src(&neigh_handler);
1001
1002 if (oif > 0)
1003 neigh_set_oif(&neigh_handler, oif);
1004 else
1005 goto free_resources;
1006
1007 ret = -EHOSTUNREACH;
1008
1009 /* blocking call */
1010 if (process_get_neigh(&neigh_handler))
1011 goto free_resources;
1012
1013 ret_vid = neigh_get_vlan_id_from_dev(&neigh_handler);
1014
1015 if (ret_vid <= 0xfff)
1016 neigh_set_vlan_id(&neigh_handler, ret_vid);
1017
1018 /* We are using only Ethernet here */
1019 ether_len = neigh_get_ll(&neigh_handler,
1020 eth_mac,
1021 sizeof(uint8_t) * ETHERNET_LL_SIZE);
1022
1023 if (ether_len <= 0)
1024 goto free_resources;
1025
1026 *vid = ret_vid;
1027
1028 ret = 0;
1029
1030 free_resources:
1031 neigh_free_resources(&neigh_handler);
1032
1033 return ret;
1034 #else
1035 return -ENOSYS;
1036 #endif
1037 }
1038