1 /*
2 * Copyright (c) 2005 Voltaire Inc. All rights reserved.
3 * Copyright (c) 2002-2005, Network Appliance, Inc. All rights reserved.
4 * Copyright (c) 1999-2005, Mellanox Technologies, Inc. All rights reserved.
5 * Copyright (c) 2005-2006 Intel Corporation. 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
36 #include <linux/completion.h>
37 #include <linux/in.h>
38 #include <linux/in6.h>
39 #include <linux/mutex.h>
40 #include <linux/random.h>
41 #include <linux/igmp.h>
42 #include <linux/idr.h>
43 #include <linux/inetdevice.h>
44 #include <linux/slab.h>
45 #include <linux/module.h>
46 #include <net/route.h>
47
48 #include <net/net_namespace.h>
49 #include <net/netns/generic.h>
50 #include <net/tcp.h>
51 #include <net/ipv6.h>
52 #include <net/ip_fib.h>
53 #include <net/ip6_route.h>
54
55 #include <rdma/rdma_cm.h>
56 #include <rdma/rdma_cm_ib.h>
57 #include <rdma/rdma_netlink.h>
58 #include <rdma/ib.h>
59 #include <rdma/ib_cache.h>
60 #include <rdma/ib_cm.h>
61 #include <rdma/ib_sa.h>
62 #include <rdma/iw_cm.h>
63
64 #include "core_priv.h"
65
66 MODULE_AUTHOR("Sean Hefty");
67 MODULE_DESCRIPTION("Generic RDMA CM Agent");
68 MODULE_LICENSE("Dual BSD/GPL");
69
70 #define CMA_CM_RESPONSE_TIMEOUT 20
71 #define CMA_QUERY_CLASSPORT_INFO_TIMEOUT 3000
72 #define CMA_MAX_CM_RETRIES 15
73 #define CMA_CM_MRA_SETTING (IB_CM_MRA_FLAG_DELAY | 24)
74 #define CMA_IBOE_PACKET_LIFETIME 18
75 #define CMA_PREFERRED_ROCE_GID_TYPE IB_GID_TYPE_ROCE_UDP_ENCAP
76
77 static const char * const cma_events[] = {
78 [RDMA_CM_EVENT_ADDR_RESOLVED] = "address resolved",
79 [RDMA_CM_EVENT_ADDR_ERROR] = "address error",
80 [RDMA_CM_EVENT_ROUTE_RESOLVED] = "route resolved ",
81 [RDMA_CM_EVENT_ROUTE_ERROR] = "route error",
82 [RDMA_CM_EVENT_CONNECT_REQUEST] = "connect request",
83 [RDMA_CM_EVENT_CONNECT_RESPONSE] = "connect response",
84 [RDMA_CM_EVENT_CONNECT_ERROR] = "connect error",
85 [RDMA_CM_EVENT_UNREACHABLE] = "unreachable",
86 [RDMA_CM_EVENT_REJECTED] = "rejected",
87 [RDMA_CM_EVENT_ESTABLISHED] = "established",
88 [RDMA_CM_EVENT_DISCONNECTED] = "disconnected",
89 [RDMA_CM_EVENT_DEVICE_REMOVAL] = "device removal",
90 [RDMA_CM_EVENT_MULTICAST_JOIN] = "multicast join",
91 [RDMA_CM_EVENT_MULTICAST_ERROR] = "multicast error",
92 [RDMA_CM_EVENT_ADDR_CHANGE] = "address change",
93 [RDMA_CM_EVENT_TIMEWAIT_EXIT] = "timewait exit",
94 };
95
rdma_event_msg(enum rdma_cm_event_type event)96 const char *__attribute_const__ rdma_event_msg(enum rdma_cm_event_type event)
97 {
98 size_t index = event;
99
100 return (index < ARRAY_SIZE(cma_events) && cma_events[index]) ?
101 cma_events[index] : "unrecognized event";
102 }
103 EXPORT_SYMBOL(rdma_event_msg);
104
rdma_reject_msg(struct rdma_cm_id * id,int reason)105 const char *__attribute_const__ rdma_reject_msg(struct rdma_cm_id *id,
106 int reason)
107 {
108 if (rdma_ib_or_roce(id->device, id->port_num))
109 return ibcm_reject_msg(reason);
110
111 if (rdma_protocol_iwarp(id->device, id->port_num))
112 return iwcm_reject_msg(reason);
113
114 WARN_ON_ONCE(1);
115 return "unrecognized transport";
116 }
117 EXPORT_SYMBOL(rdma_reject_msg);
118
rdma_is_consumer_reject(struct rdma_cm_id * id,int reason)119 bool rdma_is_consumer_reject(struct rdma_cm_id *id, int reason)
120 {
121 if (rdma_ib_or_roce(id->device, id->port_num))
122 return reason == IB_CM_REJ_CONSUMER_DEFINED;
123
124 if (rdma_protocol_iwarp(id->device, id->port_num))
125 return reason == -ECONNREFUSED;
126
127 WARN_ON_ONCE(1);
128 return false;
129 }
130 EXPORT_SYMBOL(rdma_is_consumer_reject);
131
rdma_consumer_reject_data(struct rdma_cm_id * id,struct rdma_cm_event * ev,u8 * data_len)132 const void *rdma_consumer_reject_data(struct rdma_cm_id *id,
133 struct rdma_cm_event *ev, u8 *data_len)
134 {
135 const void *p;
136
137 if (rdma_is_consumer_reject(id, ev->status)) {
138 *data_len = ev->param.conn.private_data_len;
139 p = ev->param.conn.private_data;
140 } else {
141 *data_len = 0;
142 p = NULL;
143 }
144 return p;
145 }
146 EXPORT_SYMBOL(rdma_consumer_reject_data);
147
148 static void cma_add_one(struct ib_device *device);
149 static void cma_remove_one(struct ib_device *device, void *client_data);
150
151 static struct ib_client cma_client = {
152 .name = "cma",
153 .add = cma_add_one,
154 .remove = cma_remove_one
155 };
156
157 static struct ib_sa_client sa_client;
158 static struct rdma_addr_client addr_client;
159 static LIST_HEAD(dev_list);
160 static LIST_HEAD(listen_any_list);
161 static DEFINE_MUTEX(lock);
162 static struct workqueue_struct *cma_wq;
163 static unsigned int cma_pernet_id;
164
165 struct cma_pernet {
166 struct idr tcp_ps;
167 struct idr udp_ps;
168 struct idr ipoib_ps;
169 struct idr ib_ps;
170 };
171
cma_pernet(struct net * net)172 static struct cma_pernet *cma_pernet(struct net *net)
173 {
174 return net_generic(net, cma_pernet_id);
175 }
176
cma_pernet_idr(struct net * net,enum rdma_port_space ps)177 static struct idr *cma_pernet_idr(struct net *net, enum rdma_port_space ps)
178 {
179 struct cma_pernet *pernet = cma_pernet(net);
180
181 switch (ps) {
182 case RDMA_PS_TCP:
183 return &pernet->tcp_ps;
184 case RDMA_PS_UDP:
185 return &pernet->udp_ps;
186 case RDMA_PS_IPOIB:
187 return &pernet->ipoib_ps;
188 case RDMA_PS_IB:
189 return &pernet->ib_ps;
190 default:
191 return NULL;
192 }
193 }
194
195 struct cma_device {
196 struct list_head list;
197 struct ib_device *device;
198 struct completion comp;
199 atomic_t refcount;
200 struct list_head id_list;
201 enum ib_gid_type *default_gid_type;
202 u8 *default_roce_tos;
203 };
204
205 struct rdma_bind_list {
206 enum rdma_port_space ps;
207 struct hlist_head owners;
208 unsigned short port;
209 };
210
211 struct class_port_info_context {
212 struct ib_class_port_info *class_port_info;
213 struct ib_device *device;
214 struct completion done;
215 struct ib_sa_query *sa_query;
216 u8 port_num;
217 };
218
cma_ps_alloc(struct net * net,enum rdma_port_space ps,struct rdma_bind_list * bind_list,int snum)219 static int cma_ps_alloc(struct net *net, enum rdma_port_space ps,
220 struct rdma_bind_list *bind_list, int snum)
221 {
222 struct idr *idr = cma_pernet_idr(net, ps);
223
224 return idr_alloc(idr, bind_list, snum, snum + 1, GFP_KERNEL);
225 }
226
cma_ps_find(struct net * net,enum rdma_port_space ps,int snum)227 static struct rdma_bind_list *cma_ps_find(struct net *net,
228 enum rdma_port_space ps, int snum)
229 {
230 struct idr *idr = cma_pernet_idr(net, ps);
231
232 return idr_find(idr, snum);
233 }
234
cma_ps_remove(struct net * net,enum rdma_port_space ps,int snum)235 static void cma_ps_remove(struct net *net, enum rdma_port_space ps, int snum)
236 {
237 struct idr *idr = cma_pernet_idr(net, ps);
238
239 idr_remove(idr, snum);
240 }
241
242 enum {
243 CMA_OPTION_AFONLY,
244 };
245
cma_ref_dev(struct cma_device * cma_dev)246 void cma_ref_dev(struct cma_device *cma_dev)
247 {
248 atomic_inc(&cma_dev->refcount);
249 }
250
cma_enum_devices_by_ibdev(cma_device_filter filter,void * cookie)251 struct cma_device *cma_enum_devices_by_ibdev(cma_device_filter filter,
252 void *cookie)
253 {
254 struct cma_device *cma_dev;
255 struct cma_device *found_cma_dev = NULL;
256
257 mutex_lock(&lock);
258
259 list_for_each_entry(cma_dev, &dev_list, list)
260 if (filter(cma_dev->device, cookie)) {
261 found_cma_dev = cma_dev;
262 break;
263 }
264
265 if (found_cma_dev)
266 cma_ref_dev(found_cma_dev);
267 mutex_unlock(&lock);
268 return found_cma_dev;
269 }
270
cma_get_default_gid_type(struct cma_device * cma_dev,unsigned int port)271 int cma_get_default_gid_type(struct cma_device *cma_dev,
272 unsigned int port)
273 {
274 if (!rdma_is_port_valid(cma_dev->device, port))
275 return -EINVAL;
276
277 return cma_dev->default_gid_type[port - rdma_start_port(cma_dev->device)];
278 }
279
cma_set_default_gid_type(struct cma_device * cma_dev,unsigned int port,enum ib_gid_type default_gid_type)280 int cma_set_default_gid_type(struct cma_device *cma_dev,
281 unsigned int port,
282 enum ib_gid_type default_gid_type)
283 {
284 unsigned long supported_gids;
285
286 if (!rdma_is_port_valid(cma_dev->device, port))
287 return -EINVAL;
288
289 supported_gids = roce_gid_type_mask_support(cma_dev->device, port);
290
291 if (!(supported_gids & 1 << default_gid_type))
292 return -EINVAL;
293
294 cma_dev->default_gid_type[port - rdma_start_port(cma_dev->device)] =
295 default_gid_type;
296
297 return 0;
298 }
299
cma_get_default_roce_tos(struct cma_device * cma_dev,unsigned int port)300 int cma_get_default_roce_tos(struct cma_device *cma_dev, unsigned int port)
301 {
302 if (!rdma_is_port_valid(cma_dev->device, port))
303 return -EINVAL;
304
305 return cma_dev->default_roce_tos[port - rdma_start_port(cma_dev->device)];
306 }
307
cma_set_default_roce_tos(struct cma_device * cma_dev,unsigned int port,u8 default_roce_tos)308 int cma_set_default_roce_tos(struct cma_device *cma_dev, unsigned int port,
309 u8 default_roce_tos)
310 {
311 if (!rdma_is_port_valid(cma_dev->device, port))
312 return -EINVAL;
313
314 cma_dev->default_roce_tos[port - rdma_start_port(cma_dev->device)] =
315 default_roce_tos;
316
317 return 0;
318 }
cma_get_ib_dev(struct cma_device * cma_dev)319 struct ib_device *cma_get_ib_dev(struct cma_device *cma_dev)
320 {
321 return cma_dev->device;
322 }
323
324 /*
325 * Device removal can occur at anytime, so we need extra handling to
326 * serialize notifying the user of device removal with other callbacks.
327 * We do this by disabling removal notification while a callback is in process,
328 * and reporting it after the callback completes.
329 */
330 struct rdma_id_private {
331 struct rdma_cm_id id;
332
333 struct rdma_bind_list *bind_list;
334 struct hlist_node node;
335 struct list_head list; /* listen_any_list or cma_device.list */
336 struct list_head listen_list; /* per device listens */
337 struct cma_device *cma_dev;
338 struct list_head mc_list;
339
340 int internal_id;
341 enum rdma_cm_state state;
342 spinlock_t lock;
343 struct mutex qp_mutex;
344
345 struct completion comp;
346 atomic_t refcount;
347 struct mutex handler_mutex;
348
349 int backlog;
350 int timeout_ms;
351 struct ib_sa_query *query;
352 int query_id;
353 union {
354 struct ib_cm_id *ib;
355 struct iw_cm_id *iw;
356 } cm_id;
357
358 u32 seq_num;
359 u32 qkey;
360 u32 qp_num;
361 pid_t owner;
362 u32 options;
363 u8 srq;
364 u8 tos;
365 bool tos_set;
366 u8 reuseaddr;
367 u8 afonly;
368 enum ib_gid_type gid_type;
369 };
370
371 struct cma_multicast {
372 struct rdma_id_private *id_priv;
373 union {
374 struct ib_sa_multicast *ib;
375 } multicast;
376 struct list_head list;
377 void *context;
378 struct sockaddr_storage addr;
379 struct kref mcref;
380 bool igmp_joined;
381 u8 join_state;
382 };
383
384 struct cma_work {
385 struct work_struct work;
386 struct rdma_id_private *id;
387 enum rdma_cm_state old_state;
388 enum rdma_cm_state new_state;
389 struct rdma_cm_event event;
390 };
391
392 struct cma_ndev_work {
393 struct work_struct work;
394 struct rdma_id_private *id;
395 struct rdma_cm_event event;
396 };
397
398 struct iboe_mcast_work {
399 struct work_struct work;
400 struct rdma_id_private *id;
401 struct cma_multicast *mc;
402 };
403
404 union cma_ip_addr {
405 struct in6_addr ip6;
406 struct {
407 __be32 pad[3];
408 __be32 addr;
409 } ip4;
410 };
411
412 struct cma_hdr {
413 u8 cma_version;
414 u8 ip_version; /* IP version: 7:4 */
415 __be16 port;
416 union cma_ip_addr src_addr;
417 union cma_ip_addr dst_addr;
418 };
419
420 #define CMA_VERSION 0x00
421
422 struct cma_req_info {
423 struct sockaddr_storage listen_addr_storage;
424 struct sockaddr_storage src_addr_storage;
425 struct ib_device *device;
426 int port;
427 union ib_gid local_gid;
428 __be64 service_id;
429 u16 pkey;
430 bool has_gid:1;
431 };
432
cma_comp(struct rdma_id_private * id_priv,enum rdma_cm_state comp)433 static int cma_comp(struct rdma_id_private *id_priv, enum rdma_cm_state comp)
434 {
435 unsigned long flags;
436 int ret;
437
438 spin_lock_irqsave(&id_priv->lock, flags);
439 ret = (id_priv->state == comp);
440 spin_unlock_irqrestore(&id_priv->lock, flags);
441 return ret;
442 }
443
cma_comp_exch(struct rdma_id_private * id_priv,enum rdma_cm_state comp,enum rdma_cm_state exch)444 static int cma_comp_exch(struct rdma_id_private *id_priv,
445 enum rdma_cm_state comp, enum rdma_cm_state exch)
446 {
447 unsigned long flags;
448 int ret;
449
450 spin_lock_irqsave(&id_priv->lock, flags);
451 if ((ret = (id_priv->state == comp)))
452 id_priv->state = exch;
453 spin_unlock_irqrestore(&id_priv->lock, flags);
454 return ret;
455 }
456
cma_exch(struct rdma_id_private * id_priv,enum rdma_cm_state exch)457 static enum rdma_cm_state cma_exch(struct rdma_id_private *id_priv,
458 enum rdma_cm_state exch)
459 {
460 unsigned long flags;
461 enum rdma_cm_state old;
462
463 spin_lock_irqsave(&id_priv->lock, flags);
464 old = id_priv->state;
465 id_priv->state = exch;
466 spin_unlock_irqrestore(&id_priv->lock, flags);
467 return old;
468 }
469
cma_get_ip_ver(const struct cma_hdr * hdr)470 static inline u8 cma_get_ip_ver(const struct cma_hdr *hdr)
471 {
472 return hdr->ip_version >> 4;
473 }
474
cma_set_ip_ver(struct cma_hdr * hdr,u8 ip_ver)475 static inline void cma_set_ip_ver(struct cma_hdr *hdr, u8 ip_ver)
476 {
477 hdr->ip_version = (ip_ver << 4) | (hdr->ip_version & 0xF);
478 }
479
cma_igmp_send(struct net_device * ndev,union ib_gid * mgid,bool join)480 static int cma_igmp_send(struct net_device *ndev, union ib_gid *mgid, bool join)
481 {
482 struct in_device *in_dev = NULL;
483
484 if (ndev) {
485 rtnl_lock();
486 in_dev = __in_dev_get_rtnl(ndev);
487 if (in_dev) {
488 if (join)
489 ip_mc_inc_group(in_dev,
490 *(__be32 *)(mgid->raw + 12));
491 else
492 ip_mc_dec_group(in_dev,
493 *(__be32 *)(mgid->raw + 12));
494 }
495 rtnl_unlock();
496 }
497 return (in_dev) ? 0 : -ENODEV;
498 }
499
_cma_attach_to_dev(struct rdma_id_private * id_priv,struct cma_device * cma_dev)500 static void _cma_attach_to_dev(struct rdma_id_private *id_priv,
501 struct cma_device *cma_dev)
502 {
503 cma_ref_dev(cma_dev);
504 id_priv->cma_dev = cma_dev;
505 id_priv->gid_type = 0;
506 id_priv->id.device = cma_dev->device;
507 id_priv->id.route.addr.dev_addr.transport =
508 rdma_node_get_transport(cma_dev->device->node_type);
509 list_add_tail(&id_priv->list, &cma_dev->id_list);
510 }
511
cma_attach_to_dev(struct rdma_id_private * id_priv,struct cma_device * cma_dev)512 static void cma_attach_to_dev(struct rdma_id_private *id_priv,
513 struct cma_device *cma_dev)
514 {
515 _cma_attach_to_dev(id_priv, cma_dev);
516 id_priv->gid_type =
517 cma_dev->default_gid_type[id_priv->id.port_num -
518 rdma_start_port(cma_dev->device)];
519 }
520
cma_deref_dev(struct cma_device * cma_dev)521 void cma_deref_dev(struct cma_device *cma_dev)
522 {
523 if (atomic_dec_and_test(&cma_dev->refcount))
524 complete(&cma_dev->comp);
525 }
526
release_mc(struct kref * kref)527 static inline void release_mc(struct kref *kref)
528 {
529 struct cma_multicast *mc = container_of(kref, struct cma_multicast, mcref);
530
531 kfree(mc->multicast.ib);
532 kfree(mc);
533 }
534
cma_release_dev(struct rdma_id_private * id_priv)535 static void cma_release_dev(struct rdma_id_private *id_priv)
536 {
537 mutex_lock(&lock);
538 list_del(&id_priv->list);
539 cma_deref_dev(id_priv->cma_dev);
540 id_priv->cma_dev = NULL;
541 mutex_unlock(&lock);
542 }
543
cma_src_addr(struct rdma_id_private * id_priv)544 static inline struct sockaddr *cma_src_addr(struct rdma_id_private *id_priv)
545 {
546 return (struct sockaddr *) &id_priv->id.route.addr.src_addr;
547 }
548
cma_dst_addr(struct rdma_id_private * id_priv)549 static inline struct sockaddr *cma_dst_addr(struct rdma_id_private *id_priv)
550 {
551 return (struct sockaddr *) &id_priv->id.route.addr.dst_addr;
552 }
553
cma_family(struct rdma_id_private * id_priv)554 static inline unsigned short cma_family(struct rdma_id_private *id_priv)
555 {
556 return id_priv->id.route.addr.src_addr.ss_family;
557 }
558
cma_set_qkey(struct rdma_id_private * id_priv,u32 qkey)559 static int cma_set_qkey(struct rdma_id_private *id_priv, u32 qkey)
560 {
561 struct ib_sa_mcmember_rec rec;
562 int ret = 0;
563
564 if (id_priv->qkey) {
565 if (qkey && id_priv->qkey != qkey)
566 return -EINVAL;
567 return 0;
568 }
569
570 if (qkey) {
571 id_priv->qkey = qkey;
572 return 0;
573 }
574
575 switch (id_priv->id.ps) {
576 case RDMA_PS_UDP:
577 case RDMA_PS_IB:
578 id_priv->qkey = RDMA_UDP_QKEY;
579 break;
580 case RDMA_PS_IPOIB:
581 ib_addr_get_mgid(&id_priv->id.route.addr.dev_addr, &rec.mgid);
582 ret = ib_sa_get_mcmember_rec(id_priv->id.device,
583 id_priv->id.port_num, &rec.mgid,
584 &rec);
585 if (!ret)
586 id_priv->qkey = be32_to_cpu(rec.qkey);
587 break;
588 default:
589 break;
590 }
591 return ret;
592 }
593
cma_translate_ib(struct sockaddr_ib * sib,struct rdma_dev_addr * dev_addr)594 static void cma_translate_ib(struct sockaddr_ib *sib, struct rdma_dev_addr *dev_addr)
595 {
596 dev_addr->dev_type = ARPHRD_INFINIBAND;
597 rdma_addr_set_sgid(dev_addr, (union ib_gid *) &sib->sib_addr);
598 ib_addr_set_pkey(dev_addr, ntohs(sib->sib_pkey));
599 }
600
cma_translate_addr(struct sockaddr * addr,struct rdma_dev_addr * dev_addr)601 static int cma_translate_addr(struct sockaddr *addr, struct rdma_dev_addr *dev_addr)
602 {
603 int ret;
604
605 if (addr->sa_family != AF_IB) {
606 ret = rdma_translate_ip(addr, dev_addr, NULL);
607 } else {
608 cma_translate_ib((struct sockaddr_ib *) addr, dev_addr);
609 ret = 0;
610 }
611
612 return ret;
613 }
614
cma_validate_port(struct ib_device * device,u8 port,enum ib_gid_type gid_type,union ib_gid * gid,int dev_type,int bound_if_index)615 static inline int cma_validate_port(struct ib_device *device, u8 port,
616 enum ib_gid_type gid_type,
617 union ib_gid *gid, int dev_type,
618 int bound_if_index)
619 {
620 int ret = -ENODEV;
621 struct net_device *ndev = NULL;
622
623 if ((dev_type == ARPHRD_INFINIBAND) && !rdma_protocol_ib(device, port))
624 return ret;
625
626 if ((dev_type != ARPHRD_INFINIBAND) && rdma_protocol_ib(device, port))
627 return ret;
628
629 if (dev_type == ARPHRD_ETHER && rdma_protocol_roce(device, port)) {
630 ndev = dev_get_by_index(&init_net, bound_if_index);
631 if (!ndev)
632 return ret;
633 } else {
634 gid_type = IB_GID_TYPE_IB;
635 }
636
637 ret = ib_find_cached_gid_by_port(device, gid, gid_type, port,
638 ndev, NULL);
639
640 if (ndev)
641 dev_put(ndev);
642
643 return ret;
644 }
645
cma_acquire_dev(struct rdma_id_private * id_priv,struct rdma_id_private * listen_id_priv)646 static int cma_acquire_dev(struct rdma_id_private *id_priv,
647 struct rdma_id_private *listen_id_priv)
648 {
649 struct rdma_dev_addr *dev_addr = &id_priv->id.route.addr.dev_addr;
650 struct cma_device *cma_dev;
651 union ib_gid gid, iboe_gid, *gidp;
652 int ret = -ENODEV;
653 u8 port;
654
655 if (dev_addr->dev_type != ARPHRD_INFINIBAND &&
656 id_priv->id.ps == RDMA_PS_IPOIB)
657 return -EINVAL;
658
659 mutex_lock(&lock);
660 rdma_ip2gid((struct sockaddr *)&id_priv->id.route.addr.src_addr,
661 &iboe_gid);
662
663 memcpy(&gid, dev_addr->src_dev_addr +
664 rdma_addr_gid_offset(dev_addr), sizeof gid);
665
666 if (listen_id_priv) {
667 cma_dev = listen_id_priv->cma_dev;
668 port = listen_id_priv->id.port_num;
669 gidp = rdma_protocol_roce(cma_dev->device, port) ?
670 &iboe_gid : &gid;
671
672 ret = cma_validate_port(cma_dev->device, port,
673 rdma_protocol_ib(cma_dev->device, port) ?
674 IB_GID_TYPE_IB :
675 listen_id_priv->gid_type, gidp,
676 dev_addr->dev_type,
677 dev_addr->bound_dev_if);
678 if (!ret) {
679 id_priv->id.port_num = port;
680 goto out;
681 }
682 }
683
684 list_for_each_entry(cma_dev, &dev_list, list) {
685 for (port = 1; port <= cma_dev->device->phys_port_cnt; ++port) {
686 if (listen_id_priv &&
687 listen_id_priv->cma_dev == cma_dev &&
688 listen_id_priv->id.port_num == port)
689 continue;
690
691 gidp = rdma_protocol_roce(cma_dev->device, port) ?
692 &iboe_gid : &gid;
693
694 ret = cma_validate_port(cma_dev->device, port,
695 rdma_protocol_ib(cma_dev->device, port) ?
696 IB_GID_TYPE_IB :
697 cma_dev->default_gid_type[port - 1],
698 gidp, dev_addr->dev_type,
699 dev_addr->bound_dev_if);
700 if (!ret) {
701 id_priv->id.port_num = port;
702 goto out;
703 }
704 }
705 }
706
707 out:
708 if (!ret)
709 cma_attach_to_dev(id_priv, cma_dev);
710
711 mutex_unlock(&lock);
712 return ret;
713 }
714
715 /*
716 * Select the source IB device and address to reach the destination IB address.
717 */
cma_resolve_ib_dev(struct rdma_id_private * id_priv)718 static int cma_resolve_ib_dev(struct rdma_id_private *id_priv)
719 {
720 struct cma_device *cma_dev, *cur_dev;
721 struct sockaddr_ib *addr;
722 union ib_gid gid, sgid, *dgid;
723 u16 pkey, index;
724 u8 p;
725 enum ib_port_state port_state;
726 int i;
727
728 cma_dev = NULL;
729 addr = (struct sockaddr_ib *) cma_dst_addr(id_priv);
730 dgid = (union ib_gid *) &addr->sib_addr;
731 pkey = ntohs(addr->sib_pkey);
732
733 mutex_lock(&lock);
734 list_for_each_entry(cur_dev, &dev_list, list) {
735 for (p = 1; p <= cur_dev->device->phys_port_cnt; ++p) {
736 if (!rdma_cap_af_ib(cur_dev->device, p))
737 continue;
738
739 if (ib_find_cached_pkey(cur_dev->device, p, pkey, &index))
740 continue;
741
742 if (ib_get_cached_port_state(cur_dev->device, p, &port_state))
743 continue;
744 for (i = 0; !ib_get_cached_gid(cur_dev->device, p, i,
745 &gid, NULL);
746 i++) {
747 if (!memcmp(&gid, dgid, sizeof(gid))) {
748 cma_dev = cur_dev;
749 sgid = gid;
750 id_priv->id.port_num = p;
751 goto found;
752 }
753
754 if (!cma_dev && (gid.global.subnet_prefix ==
755 dgid->global.subnet_prefix) &&
756 port_state == IB_PORT_ACTIVE) {
757 cma_dev = cur_dev;
758 sgid = gid;
759 id_priv->id.port_num = p;
760 goto found;
761 }
762 }
763 }
764 }
765 mutex_unlock(&lock);
766 return -ENODEV;
767
768 found:
769 cma_attach_to_dev(id_priv, cma_dev);
770 mutex_unlock(&lock);
771 addr = (struct sockaddr_ib *)cma_src_addr(id_priv);
772 memcpy(&addr->sib_addr, &sgid, sizeof(sgid));
773 cma_translate_ib(addr, &id_priv->id.route.addr.dev_addr);
774 return 0;
775 }
776
cma_deref_id(struct rdma_id_private * id_priv)777 static void cma_deref_id(struct rdma_id_private *id_priv)
778 {
779 if (atomic_dec_and_test(&id_priv->refcount))
780 complete(&id_priv->comp);
781 }
782
rdma_create_id(struct net * net,rdma_cm_event_handler event_handler,void * context,enum rdma_port_space ps,enum ib_qp_type qp_type)783 struct rdma_cm_id *rdma_create_id(struct net *net,
784 rdma_cm_event_handler event_handler,
785 void *context, enum rdma_port_space ps,
786 enum ib_qp_type qp_type)
787 {
788 struct rdma_id_private *id_priv;
789
790 id_priv = kzalloc(sizeof *id_priv, GFP_KERNEL);
791 if (!id_priv)
792 return ERR_PTR(-ENOMEM);
793
794 id_priv->owner = task_pid_nr(current);
795 id_priv->state = RDMA_CM_IDLE;
796 id_priv->id.context = context;
797 id_priv->id.event_handler = event_handler;
798 id_priv->id.ps = ps;
799 id_priv->id.qp_type = qp_type;
800 id_priv->tos_set = false;
801 spin_lock_init(&id_priv->lock);
802 mutex_init(&id_priv->qp_mutex);
803 init_completion(&id_priv->comp);
804 atomic_set(&id_priv->refcount, 1);
805 mutex_init(&id_priv->handler_mutex);
806 INIT_LIST_HEAD(&id_priv->listen_list);
807 INIT_LIST_HEAD(&id_priv->mc_list);
808 get_random_bytes(&id_priv->seq_num, sizeof id_priv->seq_num);
809 id_priv->id.route.addr.dev_addr.net = get_net(net);
810 id_priv->seq_num &= 0x00ffffff;
811
812 return &id_priv->id;
813 }
814 EXPORT_SYMBOL(rdma_create_id);
815
cma_init_ud_qp(struct rdma_id_private * id_priv,struct ib_qp * qp)816 static int cma_init_ud_qp(struct rdma_id_private *id_priv, struct ib_qp *qp)
817 {
818 struct ib_qp_attr qp_attr;
819 int qp_attr_mask, ret;
820
821 qp_attr.qp_state = IB_QPS_INIT;
822 ret = rdma_init_qp_attr(&id_priv->id, &qp_attr, &qp_attr_mask);
823 if (ret)
824 return ret;
825
826 ret = ib_modify_qp(qp, &qp_attr, qp_attr_mask);
827 if (ret)
828 return ret;
829
830 qp_attr.qp_state = IB_QPS_RTR;
831 ret = ib_modify_qp(qp, &qp_attr, IB_QP_STATE);
832 if (ret)
833 return ret;
834
835 qp_attr.qp_state = IB_QPS_RTS;
836 qp_attr.sq_psn = 0;
837 ret = ib_modify_qp(qp, &qp_attr, IB_QP_STATE | IB_QP_SQ_PSN);
838
839 return ret;
840 }
841
cma_init_conn_qp(struct rdma_id_private * id_priv,struct ib_qp * qp)842 static int cma_init_conn_qp(struct rdma_id_private *id_priv, struct ib_qp *qp)
843 {
844 struct ib_qp_attr qp_attr;
845 int qp_attr_mask, ret;
846
847 qp_attr.qp_state = IB_QPS_INIT;
848 ret = rdma_init_qp_attr(&id_priv->id, &qp_attr, &qp_attr_mask);
849 if (ret)
850 return ret;
851
852 return ib_modify_qp(qp, &qp_attr, qp_attr_mask);
853 }
854
rdma_create_qp(struct rdma_cm_id * id,struct ib_pd * pd,struct ib_qp_init_attr * qp_init_attr)855 int rdma_create_qp(struct rdma_cm_id *id, struct ib_pd *pd,
856 struct ib_qp_init_attr *qp_init_attr)
857 {
858 struct rdma_id_private *id_priv;
859 struct ib_qp *qp;
860 int ret;
861
862 id_priv = container_of(id, struct rdma_id_private, id);
863 if (id->device != pd->device)
864 return -EINVAL;
865
866 qp_init_attr->port_num = id->port_num;
867 qp = ib_create_qp(pd, qp_init_attr);
868 if (IS_ERR(qp))
869 return PTR_ERR(qp);
870
871 if (id->qp_type == IB_QPT_UD)
872 ret = cma_init_ud_qp(id_priv, qp);
873 else
874 ret = cma_init_conn_qp(id_priv, qp);
875 if (ret)
876 goto err;
877
878 id->qp = qp;
879 id_priv->qp_num = qp->qp_num;
880 id_priv->srq = (qp->srq != NULL);
881 return 0;
882 err:
883 ib_destroy_qp(qp);
884 return ret;
885 }
886 EXPORT_SYMBOL(rdma_create_qp);
887
rdma_destroy_qp(struct rdma_cm_id * id)888 void rdma_destroy_qp(struct rdma_cm_id *id)
889 {
890 struct rdma_id_private *id_priv;
891
892 id_priv = container_of(id, struct rdma_id_private, id);
893 mutex_lock(&id_priv->qp_mutex);
894 ib_destroy_qp(id_priv->id.qp);
895 id_priv->id.qp = NULL;
896 mutex_unlock(&id_priv->qp_mutex);
897 }
898 EXPORT_SYMBOL(rdma_destroy_qp);
899
cma_modify_qp_rtr(struct rdma_id_private * id_priv,struct rdma_conn_param * conn_param)900 static int cma_modify_qp_rtr(struct rdma_id_private *id_priv,
901 struct rdma_conn_param *conn_param)
902 {
903 struct ib_qp_attr qp_attr;
904 int qp_attr_mask, ret;
905
906 mutex_lock(&id_priv->qp_mutex);
907 if (!id_priv->id.qp) {
908 ret = 0;
909 goto out;
910 }
911
912 /* Need to update QP attributes from default values. */
913 qp_attr.qp_state = IB_QPS_INIT;
914 ret = rdma_init_qp_attr(&id_priv->id, &qp_attr, &qp_attr_mask);
915 if (ret)
916 goto out;
917
918 ret = ib_modify_qp(id_priv->id.qp, &qp_attr, qp_attr_mask);
919 if (ret)
920 goto out;
921
922 qp_attr.qp_state = IB_QPS_RTR;
923 ret = rdma_init_qp_attr(&id_priv->id, &qp_attr, &qp_attr_mask);
924 if (ret)
925 goto out;
926
927 BUG_ON(id_priv->cma_dev->device != id_priv->id.device);
928
929 if (conn_param)
930 qp_attr.max_dest_rd_atomic = conn_param->responder_resources;
931 ret = ib_modify_qp(id_priv->id.qp, &qp_attr, qp_attr_mask);
932 out:
933 mutex_unlock(&id_priv->qp_mutex);
934 return ret;
935 }
936
cma_modify_qp_rts(struct rdma_id_private * id_priv,struct rdma_conn_param * conn_param)937 static int cma_modify_qp_rts(struct rdma_id_private *id_priv,
938 struct rdma_conn_param *conn_param)
939 {
940 struct ib_qp_attr qp_attr;
941 int qp_attr_mask, ret;
942
943 mutex_lock(&id_priv->qp_mutex);
944 if (!id_priv->id.qp) {
945 ret = 0;
946 goto out;
947 }
948
949 qp_attr.qp_state = IB_QPS_RTS;
950 ret = rdma_init_qp_attr(&id_priv->id, &qp_attr, &qp_attr_mask);
951 if (ret)
952 goto out;
953
954 if (conn_param)
955 qp_attr.max_rd_atomic = conn_param->initiator_depth;
956 ret = ib_modify_qp(id_priv->id.qp, &qp_attr, qp_attr_mask);
957 out:
958 mutex_unlock(&id_priv->qp_mutex);
959 return ret;
960 }
961
cma_modify_qp_err(struct rdma_id_private * id_priv)962 static int cma_modify_qp_err(struct rdma_id_private *id_priv)
963 {
964 struct ib_qp_attr qp_attr;
965 int ret;
966
967 mutex_lock(&id_priv->qp_mutex);
968 if (!id_priv->id.qp) {
969 ret = 0;
970 goto out;
971 }
972
973 qp_attr.qp_state = IB_QPS_ERR;
974 ret = ib_modify_qp(id_priv->id.qp, &qp_attr, IB_QP_STATE);
975 out:
976 mutex_unlock(&id_priv->qp_mutex);
977 return ret;
978 }
979
cma_ib_init_qp_attr(struct rdma_id_private * id_priv,struct ib_qp_attr * qp_attr,int * qp_attr_mask)980 static int cma_ib_init_qp_attr(struct rdma_id_private *id_priv,
981 struct ib_qp_attr *qp_attr, int *qp_attr_mask)
982 {
983 struct rdma_dev_addr *dev_addr = &id_priv->id.route.addr.dev_addr;
984 int ret;
985 u16 pkey;
986
987 if (rdma_cap_eth_ah(id_priv->id.device, id_priv->id.port_num))
988 pkey = 0xffff;
989 else
990 pkey = ib_addr_get_pkey(dev_addr);
991
992 ret = ib_find_cached_pkey(id_priv->id.device, id_priv->id.port_num,
993 pkey, &qp_attr->pkey_index);
994 if (ret)
995 return ret;
996
997 qp_attr->port_num = id_priv->id.port_num;
998 *qp_attr_mask = IB_QP_STATE | IB_QP_PKEY_INDEX | IB_QP_PORT;
999
1000 if (id_priv->id.qp_type == IB_QPT_UD) {
1001 ret = cma_set_qkey(id_priv, 0);
1002 if (ret)
1003 return ret;
1004
1005 qp_attr->qkey = id_priv->qkey;
1006 *qp_attr_mask |= IB_QP_QKEY;
1007 } else {
1008 qp_attr->qp_access_flags = 0;
1009 *qp_attr_mask |= IB_QP_ACCESS_FLAGS;
1010 }
1011 return 0;
1012 }
1013
rdma_init_qp_attr(struct rdma_cm_id * id,struct ib_qp_attr * qp_attr,int * qp_attr_mask)1014 int rdma_init_qp_attr(struct rdma_cm_id *id, struct ib_qp_attr *qp_attr,
1015 int *qp_attr_mask)
1016 {
1017 struct rdma_id_private *id_priv;
1018 int ret = 0;
1019
1020 id_priv = container_of(id, struct rdma_id_private, id);
1021 if (rdma_cap_ib_cm(id->device, id->port_num)) {
1022 if (!id_priv->cm_id.ib || (id_priv->id.qp_type == IB_QPT_UD))
1023 ret = cma_ib_init_qp_attr(id_priv, qp_attr, qp_attr_mask);
1024 else
1025 ret = ib_cm_init_qp_attr(id_priv->cm_id.ib, qp_attr,
1026 qp_attr_mask);
1027
1028 if (qp_attr->qp_state == IB_QPS_RTR)
1029 qp_attr->rq_psn = id_priv->seq_num;
1030 } else if (rdma_cap_iw_cm(id->device, id->port_num)) {
1031 if (!id_priv->cm_id.iw) {
1032 qp_attr->qp_access_flags = 0;
1033 *qp_attr_mask = IB_QP_STATE | IB_QP_ACCESS_FLAGS;
1034 } else
1035 ret = iw_cm_init_qp_attr(id_priv->cm_id.iw, qp_attr,
1036 qp_attr_mask);
1037 qp_attr->port_num = id_priv->id.port_num;
1038 *qp_attr_mask |= IB_QP_PORT;
1039 } else
1040 ret = -ENOSYS;
1041
1042 return ret;
1043 }
1044 EXPORT_SYMBOL(rdma_init_qp_attr);
1045
cma_zero_addr(struct sockaddr * addr)1046 static inline int cma_zero_addr(struct sockaddr *addr)
1047 {
1048 switch (addr->sa_family) {
1049 case AF_INET:
1050 return ipv4_is_zeronet(((struct sockaddr_in *)addr)->sin_addr.s_addr);
1051 case AF_INET6:
1052 return ipv6_addr_any(&((struct sockaddr_in6 *) addr)->sin6_addr);
1053 case AF_IB:
1054 return ib_addr_any(&((struct sockaddr_ib *) addr)->sib_addr);
1055 default:
1056 return 0;
1057 }
1058 }
1059
cma_loopback_addr(struct sockaddr * addr)1060 static inline int cma_loopback_addr(struct sockaddr *addr)
1061 {
1062 switch (addr->sa_family) {
1063 case AF_INET:
1064 return ipv4_is_loopback(((struct sockaddr_in *) addr)->sin_addr.s_addr);
1065 case AF_INET6:
1066 return ipv6_addr_loopback(&((struct sockaddr_in6 *) addr)->sin6_addr);
1067 case AF_IB:
1068 return ib_addr_loopback(&((struct sockaddr_ib *) addr)->sib_addr);
1069 default:
1070 return 0;
1071 }
1072 }
1073
cma_any_addr(struct sockaddr * addr)1074 static inline int cma_any_addr(struct sockaddr *addr)
1075 {
1076 return cma_zero_addr(addr) || cma_loopback_addr(addr);
1077 }
1078
cma_addr_cmp(struct sockaddr * src,struct sockaddr * dst)1079 static int cma_addr_cmp(struct sockaddr *src, struct sockaddr *dst)
1080 {
1081 if (src->sa_family != dst->sa_family)
1082 return -1;
1083
1084 switch (src->sa_family) {
1085 case AF_INET:
1086 return ((struct sockaddr_in *) src)->sin_addr.s_addr !=
1087 ((struct sockaddr_in *) dst)->sin_addr.s_addr;
1088 case AF_INET6:
1089 return ipv6_addr_cmp(&((struct sockaddr_in6 *) src)->sin6_addr,
1090 &((struct sockaddr_in6 *) dst)->sin6_addr);
1091 default:
1092 return ib_addr_cmp(&((struct sockaddr_ib *) src)->sib_addr,
1093 &((struct sockaddr_ib *) dst)->sib_addr);
1094 }
1095 }
1096
cma_port(struct sockaddr * addr)1097 static __be16 cma_port(struct sockaddr *addr)
1098 {
1099 struct sockaddr_ib *sib;
1100
1101 switch (addr->sa_family) {
1102 case AF_INET:
1103 return ((struct sockaddr_in *) addr)->sin_port;
1104 case AF_INET6:
1105 return ((struct sockaddr_in6 *) addr)->sin6_port;
1106 case AF_IB:
1107 sib = (struct sockaddr_ib *) addr;
1108 return htons((u16) (be64_to_cpu(sib->sib_sid) &
1109 be64_to_cpu(sib->sib_sid_mask)));
1110 default:
1111 return 0;
1112 }
1113 }
1114
cma_any_port(struct sockaddr * addr)1115 static inline int cma_any_port(struct sockaddr *addr)
1116 {
1117 return !cma_port(addr);
1118 }
1119
cma_save_ib_info(struct sockaddr * src_addr,struct sockaddr * dst_addr,struct rdma_cm_id * listen_id,struct sa_path_rec * path)1120 static void cma_save_ib_info(struct sockaddr *src_addr,
1121 struct sockaddr *dst_addr,
1122 struct rdma_cm_id *listen_id,
1123 struct sa_path_rec *path)
1124 {
1125 struct sockaddr_ib *listen_ib, *ib;
1126
1127 listen_ib = (struct sockaddr_ib *) &listen_id->route.addr.src_addr;
1128 if (src_addr) {
1129 ib = (struct sockaddr_ib *)src_addr;
1130 ib->sib_family = AF_IB;
1131 if (path) {
1132 ib->sib_pkey = path->pkey;
1133 ib->sib_flowinfo = path->flow_label;
1134 memcpy(&ib->sib_addr, &path->sgid, 16);
1135 ib->sib_sid = path->service_id;
1136 ib->sib_scope_id = 0;
1137 } else {
1138 ib->sib_pkey = listen_ib->sib_pkey;
1139 ib->sib_flowinfo = listen_ib->sib_flowinfo;
1140 ib->sib_addr = listen_ib->sib_addr;
1141 ib->sib_sid = listen_ib->sib_sid;
1142 ib->sib_scope_id = listen_ib->sib_scope_id;
1143 }
1144 ib->sib_sid_mask = cpu_to_be64(0xffffffffffffffffULL);
1145 }
1146 if (dst_addr) {
1147 ib = (struct sockaddr_ib *)dst_addr;
1148 ib->sib_family = AF_IB;
1149 if (path) {
1150 ib->sib_pkey = path->pkey;
1151 ib->sib_flowinfo = path->flow_label;
1152 memcpy(&ib->sib_addr, &path->dgid, 16);
1153 }
1154 }
1155 }
1156
cma_save_ip4_info(struct sockaddr_in * src_addr,struct sockaddr_in * dst_addr,struct cma_hdr * hdr,__be16 local_port)1157 static void cma_save_ip4_info(struct sockaddr_in *src_addr,
1158 struct sockaddr_in *dst_addr,
1159 struct cma_hdr *hdr,
1160 __be16 local_port)
1161 {
1162 if (src_addr) {
1163 *src_addr = (struct sockaddr_in) {
1164 .sin_family = AF_INET,
1165 .sin_addr.s_addr = hdr->dst_addr.ip4.addr,
1166 .sin_port = local_port,
1167 };
1168 }
1169
1170 if (dst_addr) {
1171 *dst_addr = (struct sockaddr_in) {
1172 .sin_family = AF_INET,
1173 .sin_addr.s_addr = hdr->src_addr.ip4.addr,
1174 .sin_port = hdr->port,
1175 };
1176 }
1177 }
1178
cma_save_ip6_info(struct sockaddr_in6 * src_addr,struct sockaddr_in6 * dst_addr,struct cma_hdr * hdr,__be16 local_port)1179 static void cma_save_ip6_info(struct sockaddr_in6 *src_addr,
1180 struct sockaddr_in6 *dst_addr,
1181 struct cma_hdr *hdr,
1182 __be16 local_port)
1183 {
1184 if (src_addr) {
1185 *src_addr = (struct sockaddr_in6) {
1186 .sin6_family = AF_INET6,
1187 .sin6_addr = hdr->dst_addr.ip6,
1188 .sin6_port = local_port,
1189 };
1190 }
1191
1192 if (dst_addr) {
1193 *dst_addr = (struct sockaddr_in6) {
1194 .sin6_family = AF_INET6,
1195 .sin6_addr = hdr->src_addr.ip6,
1196 .sin6_port = hdr->port,
1197 };
1198 }
1199 }
1200
cma_port_from_service_id(__be64 service_id)1201 static u16 cma_port_from_service_id(__be64 service_id)
1202 {
1203 return (u16)be64_to_cpu(service_id);
1204 }
1205
cma_save_ip_info(struct sockaddr * src_addr,struct sockaddr * dst_addr,struct ib_cm_event * ib_event,__be64 service_id)1206 static int cma_save_ip_info(struct sockaddr *src_addr,
1207 struct sockaddr *dst_addr,
1208 struct ib_cm_event *ib_event,
1209 __be64 service_id)
1210 {
1211 struct cma_hdr *hdr;
1212 __be16 port;
1213
1214 hdr = ib_event->private_data;
1215 if (hdr->cma_version != CMA_VERSION)
1216 return -EINVAL;
1217
1218 port = htons(cma_port_from_service_id(service_id));
1219
1220 switch (cma_get_ip_ver(hdr)) {
1221 case 4:
1222 cma_save_ip4_info((struct sockaddr_in *)src_addr,
1223 (struct sockaddr_in *)dst_addr, hdr, port);
1224 break;
1225 case 6:
1226 cma_save_ip6_info((struct sockaddr_in6 *)src_addr,
1227 (struct sockaddr_in6 *)dst_addr, hdr, port);
1228 break;
1229 default:
1230 return -EAFNOSUPPORT;
1231 }
1232
1233 return 0;
1234 }
1235
cma_save_net_info(struct sockaddr * src_addr,struct sockaddr * dst_addr,struct rdma_cm_id * listen_id,struct ib_cm_event * ib_event,sa_family_t sa_family,__be64 service_id)1236 static int cma_save_net_info(struct sockaddr *src_addr,
1237 struct sockaddr *dst_addr,
1238 struct rdma_cm_id *listen_id,
1239 struct ib_cm_event *ib_event,
1240 sa_family_t sa_family, __be64 service_id)
1241 {
1242 if (sa_family == AF_IB) {
1243 if (ib_event->event == IB_CM_REQ_RECEIVED)
1244 cma_save_ib_info(src_addr, dst_addr, listen_id,
1245 ib_event->param.req_rcvd.primary_path);
1246 else if (ib_event->event == IB_CM_SIDR_REQ_RECEIVED)
1247 cma_save_ib_info(src_addr, dst_addr, listen_id, NULL);
1248 return 0;
1249 }
1250
1251 return cma_save_ip_info(src_addr, dst_addr, ib_event, service_id);
1252 }
1253
cma_save_req_info(const struct ib_cm_event * ib_event,struct cma_req_info * req)1254 static int cma_save_req_info(const struct ib_cm_event *ib_event,
1255 struct cma_req_info *req)
1256 {
1257 const struct ib_cm_req_event_param *req_param =
1258 &ib_event->param.req_rcvd;
1259 const struct ib_cm_sidr_req_event_param *sidr_param =
1260 &ib_event->param.sidr_req_rcvd;
1261
1262 switch (ib_event->event) {
1263 case IB_CM_REQ_RECEIVED:
1264 req->device = req_param->listen_id->device;
1265 req->port = req_param->port;
1266 memcpy(&req->local_gid, &req_param->primary_path->sgid,
1267 sizeof(req->local_gid));
1268 req->has_gid = true;
1269 req->service_id = req_param->primary_path->service_id;
1270 req->pkey = be16_to_cpu(req_param->primary_path->pkey);
1271 if (req->pkey != req_param->bth_pkey)
1272 pr_warn_ratelimited("RDMA CMA: got different BTH P_Key (0x%x) and primary path P_Key (0x%x)\n"
1273 "RDMA CMA: in the future this may cause the request to be dropped\n",
1274 req_param->bth_pkey, req->pkey);
1275 break;
1276 case IB_CM_SIDR_REQ_RECEIVED:
1277 req->device = sidr_param->listen_id->device;
1278 req->port = sidr_param->port;
1279 req->has_gid = false;
1280 req->service_id = sidr_param->service_id;
1281 req->pkey = sidr_param->pkey;
1282 if (req->pkey != sidr_param->bth_pkey)
1283 pr_warn_ratelimited("RDMA CMA: got different BTH P_Key (0x%x) and SIDR request payload P_Key (0x%x)\n"
1284 "RDMA CMA: in the future this may cause the request to be dropped\n",
1285 sidr_param->bth_pkey, req->pkey);
1286 break;
1287 default:
1288 return -EINVAL;
1289 }
1290
1291 return 0;
1292 }
1293
validate_ipv4_net_dev(struct net_device * net_dev,const struct sockaddr_in * dst_addr,const struct sockaddr_in * src_addr)1294 static bool validate_ipv4_net_dev(struct net_device *net_dev,
1295 const struct sockaddr_in *dst_addr,
1296 const struct sockaddr_in *src_addr)
1297 {
1298 __be32 daddr = dst_addr->sin_addr.s_addr,
1299 saddr = src_addr->sin_addr.s_addr;
1300 struct fib_result res;
1301 struct flowi4 fl4;
1302 int err;
1303 bool ret;
1304
1305 if (ipv4_is_multicast(saddr) || ipv4_is_lbcast(saddr) ||
1306 ipv4_is_lbcast(daddr) || ipv4_is_zeronet(saddr) ||
1307 ipv4_is_zeronet(daddr) || ipv4_is_loopback(daddr) ||
1308 ipv4_is_loopback(saddr))
1309 return false;
1310
1311 memset(&fl4, 0, sizeof(fl4));
1312 fl4.flowi4_iif = net_dev->ifindex;
1313 fl4.daddr = daddr;
1314 fl4.saddr = saddr;
1315
1316 rcu_read_lock();
1317 err = fib_lookup(dev_net(net_dev), &fl4, &res, 0);
1318 ret = err == 0 && FIB_RES_DEV(res) == net_dev;
1319 rcu_read_unlock();
1320
1321 return ret;
1322 }
1323
validate_ipv6_net_dev(struct net_device * net_dev,const struct sockaddr_in6 * dst_addr,const struct sockaddr_in6 * src_addr)1324 static bool validate_ipv6_net_dev(struct net_device *net_dev,
1325 const struct sockaddr_in6 *dst_addr,
1326 const struct sockaddr_in6 *src_addr)
1327 {
1328 #if IS_ENABLED(CONFIG_IPV6)
1329 const int strict = ipv6_addr_type(&dst_addr->sin6_addr) &
1330 IPV6_ADDR_LINKLOCAL;
1331 struct rt6_info *rt = rt6_lookup(dev_net(net_dev), &dst_addr->sin6_addr,
1332 &src_addr->sin6_addr, net_dev->ifindex,
1333 strict);
1334 bool ret;
1335
1336 if (!rt)
1337 return false;
1338
1339 ret = rt->rt6i_idev->dev == net_dev;
1340 ip6_rt_put(rt);
1341
1342 return ret;
1343 #else
1344 return false;
1345 #endif
1346 }
1347
validate_net_dev(struct net_device * net_dev,const struct sockaddr * daddr,const struct sockaddr * saddr)1348 static bool validate_net_dev(struct net_device *net_dev,
1349 const struct sockaddr *daddr,
1350 const struct sockaddr *saddr)
1351 {
1352 const struct sockaddr_in *daddr4 = (const struct sockaddr_in *)daddr;
1353 const struct sockaddr_in *saddr4 = (const struct sockaddr_in *)saddr;
1354 const struct sockaddr_in6 *daddr6 = (const struct sockaddr_in6 *)daddr;
1355 const struct sockaddr_in6 *saddr6 = (const struct sockaddr_in6 *)saddr;
1356
1357 switch (daddr->sa_family) {
1358 case AF_INET:
1359 return saddr->sa_family == AF_INET &&
1360 validate_ipv4_net_dev(net_dev, daddr4, saddr4);
1361
1362 case AF_INET6:
1363 return saddr->sa_family == AF_INET6 &&
1364 validate_ipv6_net_dev(net_dev, daddr6, saddr6);
1365
1366 default:
1367 return false;
1368 }
1369 }
1370
cma_get_net_dev(struct ib_cm_event * ib_event,struct cma_req_info * req)1371 static struct net_device *cma_get_net_dev(struct ib_cm_event *ib_event,
1372 struct cma_req_info *req)
1373 {
1374 struct sockaddr *listen_addr =
1375 (struct sockaddr *)&req->listen_addr_storage;
1376 struct sockaddr *src_addr = (struct sockaddr *)&req->src_addr_storage;
1377 struct net_device *net_dev;
1378 const union ib_gid *gid = req->has_gid ? &req->local_gid : NULL;
1379 int err;
1380
1381 err = cma_save_ip_info(listen_addr, src_addr, ib_event,
1382 req->service_id);
1383 if (err)
1384 return ERR_PTR(err);
1385
1386 net_dev = ib_get_net_dev_by_params(req->device, req->port, req->pkey,
1387 gid, listen_addr);
1388 if (!net_dev)
1389 return ERR_PTR(-ENODEV);
1390
1391 return net_dev;
1392 }
1393
rdma_ps_from_service_id(__be64 service_id)1394 static enum rdma_port_space rdma_ps_from_service_id(__be64 service_id)
1395 {
1396 return (be64_to_cpu(service_id) >> 16) & 0xffff;
1397 }
1398
cma_match_private_data(struct rdma_id_private * id_priv,const struct cma_hdr * hdr)1399 static bool cma_match_private_data(struct rdma_id_private *id_priv,
1400 const struct cma_hdr *hdr)
1401 {
1402 struct sockaddr *addr = cma_src_addr(id_priv);
1403 __be32 ip4_addr;
1404 struct in6_addr ip6_addr;
1405
1406 if (cma_any_addr(addr) && !id_priv->afonly)
1407 return true;
1408
1409 switch (addr->sa_family) {
1410 case AF_INET:
1411 ip4_addr = ((struct sockaddr_in *)addr)->sin_addr.s_addr;
1412 if (cma_get_ip_ver(hdr) != 4)
1413 return false;
1414 if (!cma_any_addr(addr) &&
1415 hdr->dst_addr.ip4.addr != ip4_addr)
1416 return false;
1417 break;
1418 case AF_INET6:
1419 ip6_addr = ((struct sockaddr_in6 *)addr)->sin6_addr;
1420 if (cma_get_ip_ver(hdr) != 6)
1421 return false;
1422 if (!cma_any_addr(addr) &&
1423 memcmp(&hdr->dst_addr.ip6, &ip6_addr, sizeof(ip6_addr)))
1424 return false;
1425 break;
1426 case AF_IB:
1427 return true;
1428 default:
1429 return false;
1430 }
1431
1432 return true;
1433 }
1434
cma_protocol_roce_dev_port(struct ib_device * device,int port_num)1435 static bool cma_protocol_roce_dev_port(struct ib_device *device, int port_num)
1436 {
1437 enum rdma_link_layer ll = rdma_port_get_link_layer(device, port_num);
1438 enum rdma_transport_type transport =
1439 rdma_node_get_transport(device->node_type);
1440
1441 return ll == IB_LINK_LAYER_ETHERNET && transport == RDMA_TRANSPORT_IB;
1442 }
1443
cma_protocol_roce(const struct rdma_cm_id * id)1444 static bool cma_protocol_roce(const struct rdma_cm_id *id)
1445 {
1446 struct ib_device *device = id->device;
1447 const int port_num = id->port_num ?: rdma_start_port(device);
1448
1449 return cma_protocol_roce_dev_port(device, port_num);
1450 }
1451
cma_match_net_dev(const struct rdma_cm_id * id,const struct net_device * net_dev,u8 port_num)1452 static bool cma_match_net_dev(const struct rdma_cm_id *id,
1453 const struct net_device *net_dev,
1454 u8 port_num)
1455 {
1456 const struct rdma_addr *addr = &id->route.addr;
1457
1458 if (!net_dev)
1459 /* This request is an AF_IB request or a RoCE request */
1460 return (!id->port_num || id->port_num == port_num) &&
1461 (addr->src_addr.ss_family == AF_IB ||
1462 cma_protocol_roce_dev_port(id->device, port_num));
1463
1464 /*
1465 * Net namespaces must match, and if the listner is listening
1466 * on a specific netdevice than netdevice must match as well.
1467 */
1468 if (net_eq(dev_net(net_dev), addr->dev_addr.net) &&
1469 (!!addr->dev_addr.bound_dev_if ==
1470 (addr->dev_addr.bound_dev_if == net_dev->ifindex)))
1471 return true;
1472 else
1473 return false;
1474 }
1475
cma_find_listener(const struct rdma_bind_list * bind_list,const struct ib_cm_id * cm_id,const struct ib_cm_event * ib_event,const struct cma_req_info * req,const struct net_device * net_dev)1476 static struct rdma_id_private *cma_find_listener(
1477 const struct rdma_bind_list *bind_list,
1478 const struct ib_cm_id *cm_id,
1479 const struct ib_cm_event *ib_event,
1480 const struct cma_req_info *req,
1481 const struct net_device *net_dev)
1482 {
1483 struct rdma_id_private *id_priv, *id_priv_dev;
1484
1485 if (!bind_list)
1486 return ERR_PTR(-EINVAL);
1487
1488 hlist_for_each_entry(id_priv, &bind_list->owners, node) {
1489 if (cma_match_private_data(id_priv, ib_event->private_data)) {
1490 if (id_priv->id.device == cm_id->device &&
1491 cma_match_net_dev(&id_priv->id, net_dev, req->port))
1492 return id_priv;
1493 list_for_each_entry(id_priv_dev,
1494 &id_priv->listen_list,
1495 listen_list) {
1496 if (id_priv_dev->id.device == cm_id->device &&
1497 cma_match_net_dev(&id_priv_dev->id, net_dev, req->port))
1498 return id_priv_dev;
1499 }
1500 }
1501 }
1502
1503 return ERR_PTR(-EINVAL);
1504 }
1505
cma_id_from_event(struct ib_cm_id * cm_id,struct ib_cm_event * ib_event,struct net_device ** net_dev)1506 static struct rdma_id_private *cma_id_from_event(struct ib_cm_id *cm_id,
1507 struct ib_cm_event *ib_event,
1508 struct net_device **net_dev)
1509 {
1510 struct cma_req_info req;
1511 struct rdma_bind_list *bind_list;
1512 struct rdma_id_private *id_priv;
1513 int err;
1514
1515 err = cma_save_req_info(ib_event, &req);
1516 if (err)
1517 return ERR_PTR(err);
1518
1519 *net_dev = cma_get_net_dev(ib_event, &req);
1520 if (IS_ERR(*net_dev)) {
1521 if (PTR_ERR(*net_dev) == -EAFNOSUPPORT) {
1522 /* Assuming the protocol is AF_IB */
1523 *net_dev = NULL;
1524 } else if (cma_protocol_roce_dev_port(req.device, req.port)) {
1525 /* TODO find the net dev matching the request parameters
1526 * through the RoCE GID table */
1527 *net_dev = NULL;
1528 } else {
1529 return ERR_CAST(*net_dev);
1530 }
1531 }
1532
1533 /*
1534 * Net namespace might be getting deleted while route lookup,
1535 * cm_id lookup is in progress. Therefore, perform netdevice
1536 * validation, cm_id lookup under rcu lock.
1537 * RCU lock along with netdevice state check, synchronizes with
1538 * netdevice migrating to different net namespace and also avoids
1539 * case where net namespace doesn't get deleted while lookup is in
1540 * progress.
1541 * If the device state is not IFF_UP, its properties such as ifindex
1542 * and nd_net cannot be trusted to remain valid without rcu lock.
1543 * net/core/dev.c change_net_namespace() ensures to synchronize with
1544 * ongoing operations on net device after device is closed using
1545 * synchronize_net().
1546 */
1547 rcu_read_lock();
1548 if (*net_dev) {
1549 /*
1550 * If netdevice is down, it is likely that it is administratively
1551 * down or it might be migrating to different namespace.
1552 * In that case avoid further processing, as the net namespace
1553 * or ifindex may change.
1554 */
1555 if (((*net_dev)->flags & IFF_UP) == 0) {
1556 id_priv = ERR_PTR(-EHOSTUNREACH);
1557 goto err;
1558 }
1559
1560 if (!validate_net_dev(*net_dev,
1561 (struct sockaddr *)&req.listen_addr_storage,
1562 (struct sockaddr *)&req.src_addr_storage)) {
1563 id_priv = ERR_PTR(-EHOSTUNREACH);
1564 goto err;
1565 }
1566 }
1567
1568 bind_list = cma_ps_find(*net_dev ? dev_net(*net_dev) : &init_net,
1569 rdma_ps_from_service_id(req.service_id),
1570 cma_port_from_service_id(req.service_id));
1571 id_priv = cma_find_listener(bind_list, cm_id, ib_event, &req, *net_dev);
1572 err:
1573 rcu_read_unlock();
1574 if (IS_ERR(id_priv) && *net_dev) {
1575 dev_put(*net_dev);
1576 *net_dev = NULL;
1577 }
1578 return id_priv;
1579 }
1580
cma_user_data_offset(struct rdma_id_private * id_priv)1581 static inline u8 cma_user_data_offset(struct rdma_id_private *id_priv)
1582 {
1583 return cma_family(id_priv) == AF_IB ? 0 : sizeof(struct cma_hdr);
1584 }
1585
cma_cancel_route(struct rdma_id_private * id_priv)1586 static void cma_cancel_route(struct rdma_id_private *id_priv)
1587 {
1588 if (rdma_cap_ib_sa(id_priv->id.device, id_priv->id.port_num)) {
1589 if (id_priv->query)
1590 ib_sa_cancel_query(id_priv->query_id, id_priv->query);
1591 }
1592 }
1593
cma_cancel_listens(struct rdma_id_private * id_priv)1594 static void cma_cancel_listens(struct rdma_id_private *id_priv)
1595 {
1596 struct rdma_id_private *dev_id_priv;
1597
1598 /*
1599 * Remove from listen_any_list to prevent added devices from spawning
1600 * additional listen requests.
1601 */
1602 mutex_lock(&lock);
1603 list_del(&id_priv->list);
1604
1605 while (!list_empty(&id_priv->listen_list)) {
1606 dev_id_priv = list_entry(id_priv->listen_list.next,
1607 struct rdma_id_private, listen_list);
1608 /* sync with device removal to avoid duplicate destruction */
1609 list_del_init(&dev_id_priv->list);
1610 list_del(&dev_id_priv->listen_list);
1611 mutex_unlock(&lock);
1612
1613 rdma_destroy_id(&dev_id_priv->id);
1614 mutex_lock(&lock);
1615 }
1616 mutex_unlock(&lock);
1617 }
1618
cma_cancel_operation(struct rdma_id_private * id_priv,enum rdma_cm_state state)1619 static void cma_cancel_operation(struct rdma_id_private *id_priv,
1620 enum rdma_cm_state state)
1621 {
1622 switch (state) {
1623 case RDMA_CM_ADDR_QUERY:
1624 rdma_addr_cancel(&id_priv->id.route.addr.dev_addr);
1625 break;
1626 case RDMA_CM_ROUTE_QUERY:
1627 cma_cancel_route(id_priv);
1628 break;
1629 case RDMA_CM_LISTEN:
1630 if (cma_any_addr(cma_src_addr(id_priv)) && !id_priv->cma_dev)
1631 cma_cancel_listens(id_priv);
1632 break;
1633 default:
1634 break;
1635 }
1636 }
1637
cma_release_port(struct rdma_id_private * id_priv)1638 static void cma_release_port(struct rdma_id_private *id_priv)
1639 {
1640 struct rdma_bind_list *bind_list = id_priv->bind_list;
1641 struct net *net = id_priv->id.route.addr.dev_addr.net;
1642
1643 if (!bind_list)
1644 return;
1645
1646 mutex_lock(&lock);
1647 hlist_del(&id_priv->node);
1648 if (hlist_empty(&bind_list->owners)) {
1649 cma_ps_remove(net, bind_list->ps, bind_list->port);
1650 kfree(bind_list);
1651 }
1652 mutex_unlock(&lock);
1653 }
1654
cma_leave_mc_groups(struct rdma_id_private * id_priv)1655 static void cma_leave_mc_groups(struct rdma_id_private *id_priv)
1656 {
1657 struct cma_multicast *mc;
1658
1659 while (!list_empty(&id_priv->mc_list)) {
1660 mc = container_of(id_priv->mc_list.next,
1661 struct cma_multicast, list);
1662 list_del(&mc->list);
1663 if (rdma_cap_ib_mcast(id_priv->cma_dev->device,
1664 id_priv->id.port_num)) {
1665 ib_sa_free_multicast(mc->multicast.ib);
1666 kfree(mc);
1667 } else {
1668 if (mc->igmp_joined) {
1669 struct rdma_dev_addr *dev_addr =
1670 &id_priv->id.route.addr.dev_addr;
1671 struct net_device *ndev = NULL;
1672
1673 if (dev_addr->bound_dev_if)
1674 ndev = dev_get_by_index(&init_net,
1675 dev_addr->bound_dev_if);
1676 if (ndev) {
1677 cma_igmp_send(ndev,
1678 &mc->multicast.ib->rec.mgid,
1679 false);
1680 dev_put(ndev);
1681 }
1682 }
1683 kref_put(&mc->mcref, release_mc);
1684 }
1685 }
1686 }
1687
rdma_destroy_id(struct rdma_cm_id * id)1688 void rdma_destroy_id(struct rdma_cm_id *id)
1689 {
1690 struct rdma_id_private *id_priv;
1691 enum rdma_cm_state state;
1692
1693 id_priv = container_of(id, struct rdma_id_private, id);
1694 state = cma_exch(id_priv, RDMA_CM_DESTROYING);
1695 cma_cancel_operation(id_priv, state);
1696
1697 /*
1698 * Wait for any active callback to finish. New callbacks will find
1699 * the id_priv state set to destroying and abort.
1700 */
1701 mutex_lock(&id_priv->handler_mutex);
1702 mutex_unlock(&id_priv->handler_mutex);
1703
1704 if (id_priv->cma_dev) {
1705 if (rdma_cap_ib_cm(id_priv->id.device, 1)) {
1706 if (id_priv->cm_id.ib)
1707 ib_destroy_cm_id(id_priv->cm_id.ib);
1708 } else if (rdma_cap_iw_cm(id_priv->id.device, 1)) {
1709 if (id_priv->cm_id.iw)
1710 iw_destroy_cm_id(id_priv->cm_id.iw);
1711 }
1712 cma_leave_mc_groups(id_priv);
1713 cma_release_dev(id_priv);
1714 }
1715
1716 cma_release_port(id_priv);
1717 cma_deref_id(id_priv);
1718 wait_for_completion(&id_priv->comp);
1719
1720 if (id_priv->internal_id)
1721 cma_deref_id(id_priv->id.context);
1722
1723 kfree(id_priv->id.route.path_rec);
1724 put_net(id_priv->id.route.addr.dev_addr.net);
1725 kfree(id_priv);
1726 }
1727 EXPORT_SYMBOL(rdma_destroy_id);
1728
cma_rep_recv(struct rdma_id_private * id_priv)1729 static int cma_rep_recv(struct rdma_id_private *id_priv)
1730 {
1731 int ret;
1732
1733 ret = cma_modify_qp_rtr(id_priv, NULL);
1734 if (ret)
1735 goto reject;
1736
1737 ret = cma_modify_qp_rts(id_priv, NULL);
1738 if (ret)
1739 goto reject;
1740
1741 ret = ib_send_cm_rtu(id_priv->cm_id.ib, NULL, 0);
1742 if (ret)
1743 goto reject;
1744
1745 return 0;
1746 reject:
1747 pr_debug_ratelimited("RDMA CM: CONNECT_ERROR: failed to handle reply. status %d\n", ret);
1748 cma_modify_qp_err(id_priv);
1749 ib_send_cm_rej(id_priv->cm_id.ib, IB_CM_REJ_CONSUMER_DEFINED,
1750 NULL, 0, NULL, 0);
1751 return ret;
1752 }
1753
cma_set_rep_event_data(struct rdma_cm_event * event,struct ib_cm_rep_event_param * rep_data,void * private_data)1754 static void cma_set_rep_event_data(struct rdma_cm_event *event,
1755 struct ib_cm_rep_event_param *rep_data,
1756 void *private_data)
1757 {
1758 event->param.conn.private_data = private_data;
1759 event->param.conn.private_data_len = IB_CM_REP_PRIVATE_DATA_SIZE;
1760 event->param.conn.responder_resources = rep_data->responder_resources;
1761 event->param.conn.initiator_depth = rep_data->initiator_depth;
1762 event->param.conn.flow_control = rep_data->flow_control;
1763 event->param.conn.rnr_retry_count = rep_data->rnr_retry_count;
1764 event->param.conn.srq = rep_data->srq;
1765 event->param.conn.qp_num = rep_data->remote_qpn;
1766 }
1767
cma_ib_handler(struct ib_cm_id * cm_id,struct ib_cm_event * ib_event)1768 static int cma_ib_handler(struct ib_cm_id *cm_id, struct ib_cm_event *ib_event)
1769 {
1770 struct rdma_id_private *id_priv = cm_id->context;
1771 struct rdma_cm_event event;
1772 int ret = 0;
1773
1774 mutex_lock(&id_priv->handler_mutex);
1775 if ((ib_event->event != IB_CM_TIMEWAIT_EXIT &&
1776 id_priv->state != RDMA_CM_CONNECT) ||
1777 (ib_event->event == IB_CM_TIMEWAIT_EXIT &&
1778 id_priv->state != RDMA_CM_DISCONNECT))
1779 goto out;
1780
1781 memset(&event, 0, sizeof event);
1782 switch (ib_event->event) {
1783 case IB_CM_REQ_ERROR:
1784 case IB_CM_REP_ERROR:
1785 event.event = RDMA_CM_EVENT_UNREACHABLE;
1786 event.status = -ETIMEDOUT;
1787 break;
1788 case IB_CM_REP_RECEIVED:
1789 if (cma_comp(id_priv, RDMA_CM_CONNECT) &&
1790 (id_priv->id.qp_type != IB_QPT_UD))
1791 ib_send_cm_mra(cm_id, CMA_CM_MRA_SETTING, NULL, 0);
1792 if (id_priv->id.qp) {
1793 event.status = cma_rep_recv(id_priv);
1794 event.event = event.status ? RDMA_CM_EVENT_CONNECT_ERROR :
1795 RDMA_CM_EVENT_ESTABLISHED;
1796 } else {
1797 event.event = RDMA_CM_EVENT_CONNECT_RESPONSE;
1798 }
1799 cma_set_rep_event_data(&event, &ib_event->param.rep_rcvd,
1800 ib_event->private_data);
1801 break;
1802 case IB_CM_RTU_RECEIVED:
1803 case IB_CM_USER_ESTABLISHED:
1804 event.event = RDMA_CM_EVENT_ESTABLISHED;
1805 break;
1806 case IB_CM_DREQ_ERROR:
1807 event.status = -ETIMEDOUT; /* fall through */
1808 case IB_CM_DREQ_RECEIVED:
1809 case IB_CM_DREP_RECEIVED:
1810 if (!cma_comp_exch(id_priv, RDMA_CM_CONNECT,
1811 RDMA_CM_DISCONNECT))
1812 goto out;
1813 event.event = RDMA_CM_EVENT_DISCONNECTED;
1814 break;
1815 case IB_CM_TIMEWAIT_EXIT:
1816 event.event = RDMA_CM_EVENT_TIMEWAIT_EXIT;
1817 break;
1818 case IB_CM_MRA_RECEIVED:
1819 /* ignore event */
1820 goto out;
1821 case IB_CM_REJ_RECEIVED:
1822 pr_debug_ratelimited("RDMA CM: REJECTED: %s\n", rdma_reject_msg(&id_priv->id,
1823 ib_event->param.rej_rcvd.reason));
1824 cma_modify_qp_err(id_priv);
1825 event.status = ib_event->param.rej_rcvd.reason;
1826 event.event = RDMA_CM_EVENT_REJECTED;
1827 event.param.conn.private_data = ib_event->private_data;
1828 event.param.conn.private_data_len = IB_CM_REJ_PRIVATE_DATA_SIZE;
1829 break;
1830 default:
1831 pr_err("RDMA CMA: unexpected IB CM event: %d\n",
1832 ib_event->event);
1833 goto out;
1834 }
1835
1836 ret = id_priv->id.event_handler(&id_priv->id, &event);
1837 if (ret) {
1838 /* Destroy the CM ID by returning a non-zero value. */
1839 id_priv->cm_id.ib = NULL;
1840 cma_exch(id_priv, RDMA_CM_DESTROYING);
1841 mutex_unlock(&id_priv->handler_mutex);
1842 rdma_destroy_id(&id_priv->id);
1843 return ret;
1844 }
1845 out:
1846 mutex_unlock(&id_priv->handler_mutex);
1847 return ret;
1848 }
1849
cma_new_conn_id(struct rdma_cm_id * listen_id,struct ib_cm_event * ib_event,struct net_device * net_dev)1850 static struct rdma_id_private *cma_new_conn_id(struct rdma_cm_id *listen_id,
1851 struct ib_cm_event *ib_event,
1852 struct net_device *net_dev)
1853 {
1854 struct rdma_id_private *id_priv;
1855 struct rdma_cm_id *id;
1856 struct rdma_route *rt;
1857 const sa_family_t ss_family = listen_id->route.addr.src_addr.ss_family;
1858 struct sa_path_rec *path = ib_event->param.req_rcvd.primary_path;
1859 const __be64 service_id =
1860 ib_event->param.req_rcvd.primary_path->service_id;
1861 int ret;
1862
1863 id = rdma_create_id(listen_id->route.addr.dev_addr.net,
1864 listen_id->event_handler, listen_id->context,
1865 listen_id->ps, ib_event->param.req_rcvd.qp_type);
1866 if (IS_ERR(id))
1867 return NULL;
1868
1869 id_priv = container_of(id, struct rdma_id_private, id);
1870 if (cma_save_net_info((struct sockaddr *)&id->route.addr.src_addr,
1871 (struct sockaddr *)&id->route.addr.dst_addr,
1872 listen_id, ib_event, ss_family, service_id))
1873 goto err;
1874
1875 rt = &id->route;
1876 rt->num_paths = ib_event->param.req_rcvd.alternate_path ? 2 : 1;
1877 rt->path_rec = kmalloc(sizeof *rt->path_rec * rt->num_paths,
1878 GFP_KERNEL);
1879 if (!rt->path_rec)
1880 goto err;
1881
1882 rt->path_rec[0] = *path;
1883 if (rt->num_paths == 2)
1884 rt->path_rec[1] = *ib_event->param.req_rcvd.alternate_path;
1885
1886 if (net_dev) {
1887 ret = rdma_copy_addr(&rt->addr.dev_addr, net_dev, NULL);
1888 if (ret)
1889 goto err;
1890 } else {
1891 if (!cma_protocol_roce(listen_id) &&
1892 cma_any_addr(cma_src_addr(id_priv))) {
1893 rt->addr.dev_addr.dev_type = ARPHRD_INFINIBAND;
1894 rdma_addr_set_sgid(&rt->addr.dev_addr, &rt->path_rec[0].sgid);
1895 ib_addr_set_pkey(&rt->addr.dev_addr, be16_to_cpu(rt->path_rec[0].pkey));
1896 } else if (!cma_any_addr(cma_src_addr(id_priv))) {
1897 ret = cma_translate_addr(cma_src_addr(id_priv), &rt->addr.dev_addr);
1898 if (ret)
1899 goto err;
1900 }
1901 }
1902 rdma_addr_set_dgid(&rt->addr.dev_addr, &rt->path_rec[0].dgid);
1903
1904 id_priv->state = RDMA_CM_CONNECT;
1905 return id_priv;
1906
1907 err:
1908 rdma_destroy_id(id);
1909 return NULL;
1910 }
1911
cma_new_udp_id(struct rdma_cm_id * listen_id,struct ib_cm_event * ib_event,struct net_device * net_dev)1912 static struct rdma_id_private *cma_new_udp_id(struct rdma_cm_id *listen_id,
1913 struct ib_cm_event *ib_event,
1914 struct net_device *net_dev)
1915 {
1916 struct rdma_id_private *id_priv;
1917 struct rdma_cm_id *id;
1918 const sa_family_t ss_family = listen_id->route.addr.src_addr.ss_family;
1919 struct net *net = listen_id->route.addr.dev_addr.net;
1920 int ret;
1921
1922 id = rdma_create_id(net, listen_id->event_handler, listen_id->context,
1923 listen_id->ps, IB_QPT_UD);
1924 if (IS_ERR(id))
1925 return NULL;
1926
1927 id_priv = container_of(id, struct rdma_id_private, id);
1928 if (cma_save_net_info((struct sockaddr *)&id->route.addr.src_addr,
1929 (struct sockaddr *)&id->route.addr.dst_addr,
1930 listen_id, ib_event, ss_family,
1931 ib_event->param.sidr_req_rcvd.service_id))
1932 goto err;
1933
1934 if (net_dev) {
1935 ret = rdma_copy_addr(&id->route.addr.dev_addr, net_dev, NULL);
1936 if (ret)
1937 goto err;
1938 } else {
1939 if (!cma_any_addr(cma_src_addr(id_priv))) {
1940 ret = cma_translate_addr(cma_src_addr(id_priv),
1941 &id->route.addr.dev_addr);
1942 if (ret)
1943 goto err;
1944 }
1945 }
1946
1947 id_priv->state = RDMA_CM_CONNECT;
1948 return id_priv;
1949 err:
1950 rdma_destroy_id(id);
1951 return NULL;
1952 }
1953
cma_set_req_event_data(struct rdma_cm_event * event,struct ib_cm_req_event_param * req_data,void * private_data,int offset)1954 static void cma_set_req_event_data(struct rdma_cm_event *event,
1955 struct ib_cm_req_event_param *req_data,
1956 void *private_data, int offset)
1957 {
1958 event->param.conn.private_data = private_data + offset;
1959 event->param.conn.private_data_len = IB_CM_REQ_PRIVATE_DATA_SIZE - offset;
1960 event->param.conn.responder_resources = req_data->responder_resources;
1961 event->param.conn.initiator_depth = req_data->initiator_depth;
1962 event->param.conn.flow_control = req_data->flow_control;
1963 event->param.conn.retry_count = req_data->retry_count;
1964 event->param.conn.rnr_retry_count = req_data->rnr_retry_count;
1965 event->param.conn.srq = req_data->srq;
1966 event->param.conn.qp_num = req_data->remote_qpn;
1967 }
1968
cma_check_req_qp_type(struct rdma_cm_id * id,struct ib_cm_event * ib_event)1969 static int cma_check_req_qp_type(struct rdma_cm_id *id, struct ib_cm_event *ib_event)
1970 {
1971 return (((ib_event->event == IB_CM_REQ_RECEIVED) &&
1972 (ib_event->param.req_rcvd.qp_type == id->qp_type)) ||
1973 ((ib_event->event == IB_CM_SIDR_REQ_RECEIVED) &&
1974 (id->qp_type == IB_QPT_UD)) ||
1975 (!id->qp_type));
1976 }
1977
cma_req_handler(struct ib_cm_id * cm_id,struct ib_cm_event * ib_event)1978 static int cma_req_handler(struct ib_cm_id *cm_id, struct ib_cm_event *ib_event)
1979 {
1980 struct rdma_id_private *listen_id, *conn_id = NULL;
1981 struct rdma_cm_event event;
1982 struct net_device *net_dev;
1983 u8 offset;
1984 int ret;
1985
1986 listen_id = cma_id_from_event(cm_id, ib_event, &net_dev);
1987 if (IS_ERR(listen_id))
1988 return PTR_ERR(listen_id);
1989
1990 if (!cma_check_req_qp_type(&listen_id->id, ib_event)) {
1991 ret = -EINVAL;
1992 goto net_dev_put;
1993 }
1994
1995 mutex_lock(&listen_id->handler_mutex);
1996 if (listen_id->state != RDMA_CM_LISTEN) {
1997 ret = -ECONNABORTED;
1998 goto err1;
1999 }
2000
2001 memset(&event, 0, sizeof event);
2002 offset = cma_user_data_offset(listen_id);
2003 event.event = RDMA_CM_EVENT_CONNECT_REQUEST;
2004 if (ib_event->event == IB_CM_SIDR_REQ_RECEIVED) {
2005 conn_id = cma_new_udp_id(&listen_id->id, ib_event, net_dev);
2006 event.param.ud.private_data = ib_event->private_data + offset;
2007 event.param.ud.private_data_len =
2008 IB_CM_SIDR_REQ_PRIVATE_DATA_SIZE - offset;
2009 } else {
2010 conn_id = cma_new_conn_id(&listen_id->id, ib_event, net_dev);
2011 cma_set_req_event_data(&event, &ib_event->param.req_rcvd,
2012 ib_event->private_data, offset);
2013 }
2014 if (!conn_id) {
2015 ret = -ENOMEM;
2016 goto err1;
2017 }
2018
2019 mutex_lock_nested(&conn_id->handler_mutex, SINGLE_DEPTH_NESTING);
2020 ret = cma_acquire_dev(conn_id, listen_id);
2021 if (ret)
2022 goto err2;
2023
2024 conn_id->cm_id.ib = cm_id;
2025 cm_id->context = conn_id;
2026 cm_id->cm_handler = cma_ib_handler;
2027
2028 /*
2029 * Protect against the user destroying conn_id from another thread
2030 * until we're done accessing it.
2031 */
2032 atomic_inc(&conn_id->refcount);
2033 ret = conn_id->id.event_handler(&conn_id->id, &event);
2034 if (ret)
2035 goto err3;
2036 /*
2037 * Acquire mutex to prevent user executing rdma_destroy_id()
2038 * while we're accessing the cm_id.
2039 */
2040 mutex_lock(&lock);
2041 if (cma_comp(conn_id, RDMA_CM_CONNECT) &&
2042 (conn_id->id.qp_type != IB_QPT_UD))
2043 ib_send_cm_mra(cm_id, CMA_CM_MRA_SETTING, NULL, 0);
2044 mutex_unlock(&lock);
2045 mutex_unlock(&conn_id->handler_mutex);
2046 mutex_unlock(&listen_id->handler_mutex);
2047 cma_deref_id(conn_id);
2048 if (net_dev)
2049 dev_put(net_dev);
2050 return 0;
2051
2052 err3:
2053 cma_deref_id(conn_id);
2054 /* Destroy the CM ID by returning a non-zero value. */
2055 conn_id->cm_id.ib = NULL;
2056 err2:
2057 cma_exch(conn_id, RDMA_CM_DESTROYING);
2058 mutex_unlock(&conn_id->handler_mutex);
2059 err1:
2060 mutex_unlock(&listen_id->handler_mutex);
2061 if (conn_id)
2062 rdma_destroy_id(&conn_id->id);
2063
2064 net_dev_put:
2065 if (net_dev)
2066 dev_put(net_dev);
2067
2068 return ret;
2069 }
2070
rdma_get_service_id(struct rdma_cm_id * id,struct sockaddr * addr)2071 __be64 rdma_get_service_id(struct rdma_cm_id *id, struct sockaddr *addr)
2072 {
2073 if (addr->sa_family == AF_IB)
2074 return ((struct sockaddr_ib *) addr)->sib_sid;
2075
2076 return cpu_to_be64(((u64)id->ps << 16) + be16_to_cpu(cma_port(addr)));
2077 }
2078 EXPORT_SYMBOL(rdma_get_service_id);
2079
cma_iw_handler(struct iw_cm_id * iw_id,struct iw_cm_event * iw_event)2080 static int cma_iw_handler(struct iw_cm_id *iw_id, struct iw_cm_event *iw_event)
2081 {
2082 struct rdma_id_private *id_priv = iw_id->context;
2083 struct rdma_cm_event event;
2084 int ret = 0;
2085 struct sockaddr *laddr = (struct sockaddr *)&iw_event->local_addr;
2086 struct sockaddr *raddr = (struct sockaddr *)&iw_event->remote_addr;
2087
2088 mutex_lock(&id_priv->handler_mutex);
2089 if (id_priv->state != RDMA_CM_CONNECT)
2090 goto out;
2091
2092 memset(&event, 0, sizeof event);
2093 switch (iw_event->event) {
2094 case IW_CM_EVENT_CLOSE:
2095 event.event = RDMA_CM_EVENT_DISCONNECTED;
2096 break;
2097 case IW_CM_EVENT_CONNECT_REPLY:
2098 memcpy(cma_src_addr(id_priv), laddr,
2099 rdma_addr_size(laddr));
2100 memcpy(cma_dst_addr(id_priv), raddr,
2101 rdma_addr_size(raddr));
2102 switch (iw_event->status) {
2103 case 0:
2104 event.event = RDMA_CM_EVENT_ESTABLISHED;
2105 event.param.conn.initiator_depth = iw_event->ird;
2106 event.param.conn.responder_resources = iw_event->ord;
2107 break;
2108 case -ECONNRESET:
2109 case -ECONNREFUSED:
2110 event.event = RDMA_CM_EVENT_REJECTED;
2111 break;
2112 case -ETIMEDOUT:
2113 event.event = RDMA_CM_EVENT_UNREACHABLE;
2114 break;
2115 default:
2116 event.event = RDMA_CM_EVENT_CONNECT_ERROR;
2117 break;
2118 }
2119 break;
2120 case IW_CM_EVENT_ESTABLISHED:
2121 event.event = RDMA_CM_EVENT_ESTABLISHED;
2122 event.param.conn.initiator_depth = iw_event->ird;
2123 event.param.conn.responder_resources = iw_event->ord;
2124 break;
2125 default:
2126 BUG_ON(1);
2127 }
2128
2129 event.status = iw_event->status;
2130 event.param.conn.private_data = iw_event->private_data;
2131 event.param.conn.private_data_len = iw_event->private_data_len;
2132 ret = id_priv->id.event_handler(&id_priv->id, &event);
2133 if (ret) {
2134 /* Destroy the CM ID by returning a non-zero value. */
2135 id_priv->cm_id.iw = NULL;
2136 cma_exch(id_priv, RDMA_CM_DESTROYING);
2137 mutex_unlock(&id_priv->handler_mutex);
2138 rdma_destroy_id(&id_priv->id);
2139 return ret;
2140 }
2141
2142 out:
2143 mutex_unlock(&id_priv->handler_mutex);
2144 return ret;
2145 }
2146
iw_conn_req_handler(struct iw_cm_id * cm_id,struct iw_cm_event * iw_event)2147 static int iw_conn_req_handler(struct iw_cm_id *cm_id,
2148 struct iw_cm_event *iw_event)
2149 {
2150 struct rdma_cm_id *new_cm_id;
2151 struct rdma_id_private *listen_id, *conn_id;
2152 struct rdma_cm_event event;
2153 int ret = -ECONNABORTED;
2154 struct sockaddr *laddr = (struct sockaddr *)&iw_event->local_addr;
2155 struct sockaddr *raddr = (struct sockaddr *)&iw_event->remote_addr;
2156
2157 listen_id = cm_id->context;
2158
2159 mutex_lock(&listen_id->handler_mutex);
2160 if (listen_id->state != RDMA_CM_LISTEN)
2161 goto out;
2162
2163 /* Create a new RDMA id for the new IW CM ID */
2164 new_cm_id = rdma_create_id(listen_id->id.route.addr.dev_addr.net,
2165 listen_id->id.event_handler,
2166 listen_id->id.context,
2167 RDMA_PS_TCP, IB_QPT_RC);
2168 if (IS_ERR(new_cm_id)) {
2169 ret = -ENOMEM;
2170 goto out;
2171 }
2172 conn_id = container_of(new_cm_id, struct rdma_id_private, id);
2173 mutex_lock_nested(&conn_id->handler_mutex, SINGLE_DEPTH_NESTING);
2174 conn_id->state = RDMA_CM_CONNECT;
2175
2176 ret = rdma_translate_ip(laddr, &conn_id->id.route.addr.dev_addr, NULL);
2177 if (ret) {
2178 mutex_unlock(&conn_id->handler_mutex);
2179 rdma_destroy_id(new_cm_id);
2180 goto out;
2181 }
2182
2183 ret = cma_acquire_dev(conn_id, listen_id);
2184 if (ret) {
2185 mutex_unlock(&conn_id->handler_mutex);
2186 rdma_destroy_id(new_cm_id);
2187 goto out;
2188 }
2189
2190 conn_id->cm_id.iw = cm_id;
2191 cm_id->context = conn_id;
2192 cm_id->cm_handler = cma_iw_handler;
2193
2194 memcpy(cma_src_addr(conn_id), laddr, rdma_addr_size(laddr));
2195 memcpy(cma_dst_addr(conn_id), raddr, rdma_addr_size(raddr));
2196
2197 memset(&event, 0, sizeof event);
2198 event.event = RDMA_CM_EVENT_CONNECT_REQUEST;
2199 event.param.conn.private_data = iw_event->private_data;
2200 event.param.conn.private_data_len = iw_event->private_data_len;
2201 event.param.conn.initiator_depth = iw_event->ird;
2202 event.param.conn.responder_resources = iw_event->ord;
2203
2204 /*
2205 * Protect against the user destroying conn_id from another thread
2206 * until we're done accessing it.
2207 */
2208 atomic_inc(&conn_id->refcount);
2209 ret = conn_id->id.event_handler(&conn_id->id, &event);
2210 if (ret) {
2211 /* User wants to destroy the CM ID */
2212 conn_id->cm_id.iw = NULL;
2213 cma_exch(conn_id, RDMA_CM_DESTROYING);
2214 mutex_unlock(&conn_id->handler_mutex);
2215 mutex_unlock(&listen_id->handler_mutex);
2216 cma_deref_id(conn_id);
2217 rdma_destroy_id(&conn_id->id);
2218 return ret;
2219 }
2220
2221 mutex_unlock(&conn_id->handler_mutex);
2222 cma_deref_id(conn_id);
2223
2224 out:
2225 mutex_unlock(&listen_id->handler_mutex);
2226 return ret;
2227 }
2228
cma_ib_listen(struct rdma_id_private * id_priv)2229 static int cma_ib_listen(struct rdma_id_private *id_priv)
2230 {
2231 struct sockaddr *addr;
2232 struct ib_cm_id *id;
2233 __be64 svc_id;
2234
2235 addr = cma_src_addr(id_priv);
2236 svc_id = rdma_get_service_id(&id_priv->id, addr);
2237 id = ib_cm_insert_listen(id_priv->id.device, cma_req_handler, svc_id);
2238 if (IS_ERR(id))
2239 return PTR_ERR(id);
2240 id_priv->cm_id.ib = id;
2241
2242 return 0;
2243 }
2244
cma_iw_listen(struct rdma_id_private * id_priv,int backlog)2245 static int cma_iw_listen(struct rdma_id_private *id_priv, int backlog)
2246 {
2247 int ret;
2248 struct iw_cm_id *id;
2249
2250 id = iw_create_cm_id(id_priv->id.device,
2251 iw_conn_req_handler,
2252 id_priv);
2253 if (IS_ERR(id))
2254 return PTR_ERR(id);
2255
2256 id->tos = id_priv->tos;
2257 id_priv->cm_id.iw = id;
2258
2259 memcpy(&id_priv->cm_id.iw->local_addr, cma_src_addr(id_priv),
2260 rdma_addr_size(cma_src_addr(id_priv)));
2261
2262 ret = iw_cm_listen(id_priv->cm_id.iw, backlog);
2263
2264 if (ret) {
2265 iw_destroy_cm_id(id_priv->cm_id.iw);
2266 id_priv->cm_id.iw = NULL;
2267 }
2268
2269 return ret;
2270 }
2271
cma_listen_handler(struct rdma_cm_id * id,struct rdma_cm_event * event)2272 static int cma_listen_handler(struct rdma_cm_id *id,
2273 struct rdma_cm_event *event)
2274 {
2275 struct rdma_id_private *id_priv = id->context;
2276
2277 id->context = id_priv->id.context;
2278 id->event_handler = id_priv->id.event_handler;
2279 return id_priv->id.event_handler(id, event);
2280 }
2281
cma_listen_on_dev(struct rdma_id_private * id_priv,struct cma_device * cma_dev)2282 static void cma_listen_on_dev(struct rdma_id_private *id_priv,
2283 struct cma_device *cma_dev)
2284 {
2285 struct rdma_id_private *dev_id_priv;
2286 struct rdma_cm_id *id;
2287 struct net *net = id_priv->id.route.addr.dev_addr.net;
2288 int ret;
2289
2290 if (cma_family(id_priv) == AF_IB && !rdma_cap_ib_cm(cma_dev->device, 1))
2291 return;
2292
2293 id = rdma_create_id(net, cma_listen_handler, id_priv, id_priv->id.ps,
2294 id_priv->id.qp_type);
2295 if (IS_ERR(id))
2296 return;
2297
2298 dev_id_priv = container_of(id, struct rdma_id_private, id);
2299
2300 dev_id_priv->state = RDMA_CM_ADDR_BOUND;
2301 memcpy(cma_src_addr(dev_id_priv), cma_src_addr(id_priv),
2302 rdma_addr_size(cma_src_addr(id_priv)));
2303
2304 _cma_attach_to_dev(dev_id_priv, cma_dev);
2305 list_add_tail(&dev_id_priv->listen_list, &id_priv->listen_list);
2306 atomic_inc(&id_priv->refcount);
2307 dev_id_priv->internal_id = 1;
2308 dev_id_priv->afonly = id_priv->afonly;
2309
2310 ret = rdma_listen(id, id_priv->backlog);
2311 if (ret)
2312 pr_warn("RDMA CMA: cma_listen_on_dev, error %d, listening on device %s\n",
2313 ret, cma_dev->device->name);
2314 }
2315
cma_listen_on_all(struct rdma_id_private * id_priv)2316 static void cma_listen_on_all(struct rdma_id_private *id_priv)
2317 {
2318 struct cma_device *cma_dev;
2319
2320 mutex_lock(&lock);
2321 list_add_tail(&id_priv->list, &listen_any_list);
2322 list_for_each_entry(cma_dev, &dev_list, list)
2323 cma_listen_on_dev(id_priv, cma_dev);
2324 mutex_unlock(&lock);
2325 }
2326
rdma_set_service_type(struct rdma_cm_id * id,int tos)2327 void rdma_set_service_type(struct rdma_cm_id *id, int tos)
2328 {
2329 struct rdma_id_private *id_priv;
2330
2331 id_priv = container_of(id, struct rdma_id_private, id);
2332 id_priv->tos = (u8) tos;
2333 id_priv->tos_set = true;
2334 }
2335 EXPORT_SYMBOL(rdma_set_service_type);
2336
cma_query_handler(int status,struct sa_path_rec * path_rec,void * context)2337 static void cma_query_handler(int status, struct sa_path_rec *path_rec,
2338 void *context)
2339 {
2340 struct cma_work *work = context;
2341 struct rdma_route *route;
2342
2343 route = &work->id->id.route;
2344
2345 if (!status) {
2346 route->num_paths = 1;
2347 *route->path_rec = *path_rec;
2348 } else {
2349 work->old_state = RDMA_CM_ROUTE_QUERY;
2350 work->new_state = RDMA_CM_ADDR_RESOLVED;
2351 work->event.event = RDMA_CM_EVENT_ROUTE_ERROR;
2352 work->event.status = status;
2353 pr_debug_ratelimited("RDMA CM: ROUTE_ERROR: failed to query path. status %d\n",
2354 status);
2355 }
2356
2357 queue_work(cma_wq, &work->work);
2358 }
2359
cma_query_ib_route(struct rdma_id_private * id_priv,int timeout_ms,struct cma_work * work)2360 static int cma_query_ib_route(struct rdma_id_private *id_priv, int timeout_ms,
2361 struct cma_work *work)
2362 {
2363 struct rdma_dev_addr *dev_addr = &id_priv->id.route.addr.dev_addr;
2364 struct sa_path_rec path_rec;
2365 ib_sa_comp_mask comp_mask;
2366 struct sockaddr_in6 *sin6;
2367 struct sockaddr_ib *sib;
2368
2369 memset(&path_rec, 0, sizeof path_rec);
2370
2371 if (rdma_cap_opa_ah(id_priv->id.device, id_priv->id.port_num))
2372 path_rec.rec_type = SA_PATH_REC_TYPE_OPA;
2373 else
2374 path_rec.rec_type = SA_PATH_REC_TYPE_IB;
2375 rdma_addr_get_sgid(dev_addr, &path_rec.sgid);
2376 rdma_addr_get_dgid(dev_addr, &path_rec.dgid);
2377 path_rec.pkey = cpu_to_be16(ib_addr_get_pkey(dev_addr));
2378 path_rec.numb_path = 1;
2379 path_rec.reversible = 1;
2380 path_rec.service_id = rdma_get_service_id(&id_priv->id,
2381 cma_dst_addr(id_priv));
2382
2383 comp_mask = IB_SA_PATH_REC_DGID | IB_SA_PATH_REC_SGID |
2384 IB_SA_PATH_REC_PKEY | IB_SA_PATH_REC_NUMB_PATH |
2385 IB_SA_PATH_REC_REVERSIBLE | IB_SA_PATH_REC_SERVICE_ID;
2386
2387 switch (cma_family(id_priv)) {
2388 case AF_INET:
2389 path_rec.qos_class = cpu_to_be16((u16) id_priv->tos);
2390 comp_mask |= IB_SA_PATH_REC_QOS_CLASS;
2391 break;
2392 case AF_INET6:
2393 sin6 = (struct sockaddr_in6 *) cma_src_addr(id_priv);
2394 path_rec.traffic_class = (u8) (be32_to_cpu(sin6->sin6_flowinfo) >> 20);
2395 comp_mask |= IB_SA_PATH_REC_TRAFFIC_CLASS;
2396 break;
2397 case AF_IB:
2398 sib = (struct sockaddr_ib *) cma_src_addr(id_priv);
2399 path_rec.traffic_class = (u8) (be32_to_cpu(sib->sib_flowinfo) >> 20);
2400 comp_mask |= IB_SA_PATH_REC_TRAFFIC_CLASS;
2401 break;
2402 }
2403
2404 id_priv->query_id = ib_sa_path_rec_get(&sa_client, id_priv->id.device,
2405 id_priv->id.port_num, &path_rec,
2406 comp_mask, timeout_ms,
2407 GFP_KERNEL, cma_query_handler,
2408 work, &id_priv->query);
2409
2410 return (id_priv->query_id < 0) ? id_priv->query_id : 0;
2411 }
2412
cma_work_handler(struct work_struct * _work)2413 static void cma_work_handler(struct work_struct *_work)
2414 {
2415 struct cma_work *work = container_of(_work, struct cma_work, work);
2416 struct rdma_id_private *id_priv = work->id;
2417 int destroy = 0;
2418
2419 mutex_lock(&id_priv->handler_mutex);
2420 if (!cma_comp_exch(id_priv, work->old_state, work->new_state))
2421 goto out;
2422
2423 if (id_priv->id.event_handler(&id_priv->id, &work->event)) {
2424 cma_exch(id_priv, RDMA_CM_DESTROYING);
2425 destroy = 1;
2426 }
2427 out:
2428 mutex_unlock(&id_priv->handler_mutex);
2429 cma_deref_id(id_priv);
2430 if (destroy)
2431 rdma_destroy_id(&id_priv->id);
2432 kfree(work);
2433 }
2434
cma_ndev_work_handler(struct work_struct * _work)2435 static void cma_ndev_work_handler(struct work_struct *_work)
2436 {
2437 struct cma_ndev_work *work = container_of(_work, struct cma_ndev_work, work);
2438 struct rdma_id_private *id_priv = work->id;
2439 int destroy = 0;
2440
2441 mutex_lock(&id_priv->handler_mutex);
2442 if (id_priv->state == RDMA_CM_DESTROYING ||
2443 id_priv->state == RDMA_CM_DEVICE_REMOVAL)
2444 goto out;
2445
2446 if (id_priv->id.event_handler(&id_priv->id, &work->event)) {
2447 cma_exch(id_priv, RDMA_CM_DESTROYING);
2448 destroy = 1;
2449 }
2450
2451 out:
2452 mutex_unlock(&id_priv->handler_mutex);
2453 cma_deref_id(id_priv);
2454 if (destroy)
2455 rdma_destroy_id(&id_priv->id);
2456 kfree(work);
2457 }
2458
cma_resolve_ib_route(struct rdma_id_private * id_priv,int timeout_ms)2459 static int cma_resolve_ib_route(struct rdma_id_private *id_priv, int timeout_ms)
2460 {
2461 struct rdma_route *route = &id_priv->id.route;
2462 struct cma_work *work;
2463 int ret;
2464
2465 work = kzalloc(sizeof *work, GFP_KERNEL);
2466 if (!work)
2467 return -ENOMEM;
2468
2469 work->id = id_priv;
2470 INIT_WORK(&work->work, cma_work_handler);
2471 work->old_state = RDMA_CM_ROUTE_QUERY;
2472 work->new_state = RDMA_CM_ROUTE_RESOLVED;
2473 work->event.event = RDMA_CM_EVENT_ROUTE_RESOLVED;
2474
2475 route->path_rec = kmalloc(sizeof *route->path_rec, GFP_KERNEL);
2476 if (!route->path_rec) {
2477 ret = -ENOMEM;
2478 goto err1;
2479 }
2480
2481 ret = cma_query_ib_route(id_priv, timeout_ms, work);
2482 if (ret)
2483 goto err2;
2484
2485 return 0;
2486 err2:
2487 kfree(route->path_rec);
2488 route->path_rec = NULL;
2489 err1:
2490 kfree(work);
2491 return ret;
2492 }
2493
rdma_set_ib_paths(struct rdma_cm_id * id,struct sa_path_rec * path_rec,int num_paths)2494 int rdma_set_ib_paths(struct rdma_cm_id *id,
2495 struct sa_path_rec *path_rec, int num_paths)
2496 {
2497 struct rdma_id_private *id_priv;
2498 int ret;
2499
2500 id_priv = container_of(id, struct rdma_id_private, id);
2501 if (!cma_comp_exch(id_priv, RDMA_CM_ADDR_RESOLVED,
2502 RDMA_CM_ROUTE_RESOLVED))
2503 return -EINVAL;
2504
2505 id->route.path_rec = kmemdup(path_rec, sizeof *path_rec * num_paths,
2506 GFP_KERNEL);
2507 if (!id->route.path_rec) {
2508 ret = -ENOMEM;
2509 goto err;
2510 }
2511
2512 id->route.num_paths = num_paths;
2513 return 0;
2514 err:
2515 cma_comp_exch(id_priv, RDMA_CM_ROUTE_RESOLVED, RDMA_CM_ADDR_RESOLVED);
2516 return ret;
2517 }
2518 EXPORT_SYMBOL(rdma_set_ib_paths);
2519
cma_resolve_iw_route(struct rdma_id_private * id_priv,int timeout_ms)2520 static int cma_resolve_iw_route(struct rdma_id_private *id_priv, int timeout_ms)
2521 {
2522 struct cma_work *work;
2523
2524 work = kzalloc(sizeof *work, GFP_KERNEL);
2525 if (!work)
2526 return -ENOMEM;
2527
2528 work->id = id_priv;
2529 INIT_WORK(&work->work, cma_work_handler);
2530 work->old_state = RDMA_CM_ROUTE_QUERY;
2531 work->new_state = RDMA_CM_ROUTE_RESOLVED;
2532 work->event.event = RDMA_CM_EVENT_ROUTE_RESOLVED;
2533 queue_work(cma_wq, &work->work);
2534 return 0;
2535 }
2536
iboe_tos_to_sl(struct net_device * ndev,int tos)2537 static int iboe_tos_to_sl(struct net_device *ndev, int tos)
2538 {
2539 int prio;
2540 struct net_device *dev;
2541
2542 prio = rt_tos2priority(tos);
2543 dev = is_vlan_dev(ndev) ? vlan_dev_real_dev(ndev) : ndev;
2544 if (dev->num_tc)
2545 return netdev_get_prio_tc_map(dev, prio);
2546
2547 #if IS_ENABLED(CONFIG_VLAN_8021Q)
2548 if (is_vlan_dev(ndev))
2549 return (vlan_dev_get_egress_qos_mask(ndev, prio) &
2550 VLAN_PRIO_MASK) >> VLAN_PRIO_SHIFT;
2551 #endif
2552 return 0;
2553 }
2554
cma_route_gid_type(enum rdma_network_type network_type,unsigned long supported_gids,enum ib_gid_type default_gid)2555 static enum ib_gid_type cma_route_gid_type(enum rdma_network_type network_type,
2556 unsigned long supported_gids,
2557 enum ib_gid_type default_gid)
2558 {
2559 if ((network_type == RDMA_NETWORK_IPV4 ||
2560 network_type == RDMA_NETWORK_IPV6) &&
2561 test_bit(IB_GID_TYPE_ROCE_UDP_ENCAP, &supported_gids))
2562 return IB_GID_TYPE_ROCE_UDP_ENCAP;
2563
2564 return default_gid;
2565 }
2566
cma_resolve_iboe_route(struct rdma_id_private * id_priv)2567 static int cma_resolve_iboe_route(struct rdma_id_private *id_priv)
2568 {
2569 struct rdma_route *route = &id_priv->id.route;
2570 struct rdma_addr *addr = &route->addr;
2571 struct cma_work *work;
2572 int ret;
2573 struct net_device *ndev = NULL;
2574 enum ib_gid_type gid_type = IB_GID_TYPE_IB;
2575 u8 default_roce_tos = id_priv->cma_dev->default_roce_tos[id_priv->id.port_num -
2576 rdma_start_port(id_priv->cma_dev->device)];
2577 u8 tos = id_priv->tos_set ? id_priv->tos : default_roce_tos;
2578
2579
2580 work = kzalloc(sizeof *work, GFP_KERNEL);
2581 if (!work)
2582 return -ENOMEM;
2583
2584 work->id = id_priv;
2585 INIT_WORK(&work->work, cma_work_handler);
2586
2587 route->path_rec = kzalloc(sizeof *route->path_rec, GFP_KERNEL);
2588 if (!route->path_rec) {
2589 ret = -ENOMEM;
2590 goto err1;
2591 }
2592
2593 route->num_paths = 1;
2594
2595 if (addr->dev_addr.bound_dev_if) {
2596 unsigned long supported_gids;
2597
2598 ndev = dev_get_by_index(&init_net, addr->dev_addr.bound_dev_if);
2599 if (!ndev) {
2600 ret = -ENODEV;
2601 goto err2;
2602 }
2603
2604 supported_gids = roce_gid_type_mask_support(id_priv->id.device,
2605 id_priv->id.port_num);
2606 gid_type = cma_route_gid_type(addr->dev_addr.network,
2607 supported_gids,
2608 id_priv->gid_type);
2609 route->path_rec->rec_type =
2610 sa_conv_gid_to_pathrec_type(gid_type);
2611 sa_path_set_ndev(route->path_rec, &init_net);
2612 sa_path_set_ifindex(route->path_rec, ndev->ifindex);
2613 }
2614 if (!ndev) {
2615 ret = -ENODEV;
2616 goto err2;
2617 }
2618
2619 sa_path_set_dmac(route->path_rec, addr->dev_addr.dst_dev_addr);
2620
2621 rdma_ip2gid((struct sockaddr *)&id_priv->id.route.addr.src_addr,
2622 &route->path_rec->sgid);
2623 rdma_ip2gid((struct sockaddr *)&id_priv->id.route.addr.dst_addr,
2624 &route->path_rec->dgid);
2625
2626 /* Use the hint from IP Stack to select GID Type */
2627 if (gid_type < ib_network_to_gid_type(addr->dev_addr.network))
2628 gid_type = ib_network_to_gid_type(addr->dev_addr.network);
2629 route->path_rec->rec_type = sa_conv_gid_to_pathrec_type(gid_type);
2630
2631 if (((struct sockaddr *)&id_priv->id.route.addr.dst_addr)->sa_family != AF_IB)
2632 /* TODO: get the hoplimit from the inet/inet6 device */
2633 route->path_rec->hop_limit = addr->dev_addr.hoplimit;
2634 else
2635 route->path_rec->hop_limit = 1;
2636 route->path_rec->reversible = 1;
2637 route->path_rec->pkey = cpu_to_be16(0xffff);
2638 route->path_rec->mtu_selector = IB_SA_EQ;
2639 route->path_rec->sl = iboe_tos_to_sl(ndev, tos);
2640 route->path_rec->traffic_class = tos;
2641 route->path_rec->mtu = iboe_get_mtu(ndev->mtu);
2642 route->path_rec->rate_selector = IB_SA_EQ;
2643 route->path_rec->rate = iboe_get_rate(ndev);
2644 dev_put(ndev);
2645 route->path_rec->packet_life_time_selector = IB_SA_EQ;
2646 route->path_rec->packet_life_time = CMA_IBOE_PACKET_LIFETIME;
2647 if (!route->path_rec->mtu) {
2648 ret = -EINVAL;
2649 goto err2;
2650 }
2651
2652 work->old_state = RDMA_CM_ROUTE_QUERY;
2653 work->new_state = RDMA_CM_ROUTE_RESOLVED;
2654 work->event.event = RDMA_CM_EVENT_ROUTE_RESOLVED;
2655 work->event.status = 0;
2656
2657 queue_work(cma_wq, &work->work);
2658
2659 return 0;
2660
2661 err2:
2662 kfree(route->path_rec);
2663 route->path_rec = NULL;
2664 err1:
2665 kfree(work);
2666 return ret;
2667 }
2668
rdma_resolve_route(struct rdma_cm_id * id,int timeout_ms)2669 int rdma_resolve_route(struct rdma_cm_id *id, int timeout_ms)
2670 {
2671 struct rdma_id_private *id_priv;
2672 int ret;
2673
2674 id_priv = container_of(id, struct rdma_id_private, id);
2675 if (!cma_comp_exch(id_priv, RDMA_CM_ADDR_RESOLVED, RDMA_CM_ROUTE_QUERY))
2676 return -EINVAL;
2677
2678 atomic_inc(&id_priv->refcount);
2679 if (rdma_cap_ib_sa(id->device, id->port_num))
2680 ret = cma_resolve_ib_route(id_priv, timeout_ms);
2681 else if (rdma_protocol_roce(id->device, id->port_num))
2682 ret = cma_resolve_iboe_route(id_priv);
2683 else if (rdma_protocol_iwarp(id->device, id->port_num))
2684 ret = cma_resolve_iw_route(id_priv, timeout_ms);
2685 else
2686 ret = -ENOSYS;
2687
2688 if (ret)
2689 goto err;
2690
2691 return 0;
2692 err:
2693 cma_comp_exch(id_priv, RDMA_CM_ROUTE_QUERY, RDMA_CM_ADDR_RESOLVED);
2694 cma_deref_id(id_priv);
2695 return ret;
2696 }
2697 EXPORT_SYMBOL(rdma_resolve_route);
2698
cma_set_loopback(struct sockaddr * addr)2699 static void cma_set_loopback(struct sockaddr *addr)
2700 {
2701 switch (addr->sa_family) {
2702 case AF_INET:
2703 ((struct sockaddr_in *) addr)->sin_addr.s_addr = htonl(INADDR_LOOPBACK);
2704 break;
2705 case AF_INET6:
2706 ipv6_addr_set(&((struct sockaddr_in6 *) addr)->sin6_addr,
2707 0, 0, 0, htonl(1));
2708 break;
2709 default:
2710 ib_addr_set(&((struct sockaddr_ib *) addr)->sib_addr,
2711 0, 0, 0, htonl(1));
2712 break;
2713 }
2714 }
2715
cma_bind_loopback(struct rdma_id_private * id_priv)2716 static int cma_bind_loopback(struct rdma_id_private *id_priv)
2717 {
2718 struct cma_device *cma_dev, *cur_dev;
2719 union ib_gid gid;
2720 enum ib_port_state port_state;
2721 u16 pkey;
2722 int ret;
2723 u8 p;
2724
2725 cma_dev = NULL;
2726 mutex_lock(&lock);
2727 list_for_each_entry(cur_dev, &dev_list, list) {
2728 if (cma_family(id_priv) == AF_IB &&
2729 !rdma_cap_ib_cm(cur_dev->device, 1))
2730 continue;
2731
2732 if (!cma_dev)
2733 cma_dev = cur_dev;
2734
2735 for (p = 1; p <= cur_dev->device->phys_port_cnt; ++p) {
2736 if (!ib_get_cached_port_state(cur_dev->device, p, &port_state) &&
2737 port_state == IB_PORT_ACTIVE) {
2738 cma_dev = cur_dev;
2739 goto port_found;
2740 }
2741 }
2742 }
2743
2744 if (!cma_dev) {
2745 ret = -ENODEV;
2746 goto out;
2747 }
2748
2749 p = 1;
2750
2751 port_found:
2752 ret = ib_get_cached_gid(cma_dev->device, p, 0, &gid, NULL);
2753 if (ret)
2754 goto out;
2755
2756 ret = ib_get_cached_pkey(cma_dev->device, p, 0, &pkey);
2757 if (ret)
2758 goto out;
2759
2760 id_priv->id.route.addr.dev_addr.dev_type =
2761 (rdma_protocol_ib(cma_dev->device, p)) ?
2762 ARPHRD_INFINIBAND : ARPHRD_ETHER;
2763
2764 rdma_addr_set_sgid(&id_priv->id.route.addr.dev_addr, &gid);
2765 ib_addr_set_pkey(&id_priv->id.route.addr.dev_addr, pkey);
2766 id_priv->id.port_num = p;
2767 cma_attach_to_dev(id_priv, cma_dev);
2768 cma_set_loopback(cma_src_addr(id_priv));
2769 out:
2770 mutex_unlock(&lock);
2771 return ret;
2772 }
2773
addr_handler(int status,struct sockaddr * src_addr,struct rdma_dev_addr * dev_addr,void * context)2774 static void addr_handler(int status, struct sockaddr *src_addr,
2775 struct rdma_dev_addr *dev_addr, void *context)
2776 {
2777 struct rdma_id_private *id_priv = context;
2778 struct rdma_cm_event event;
2779
2780 memset(&event, 0, sizeof event);
2781 mutex_lock(&id_priv->handler_mutex);
2782 if (!cma_comp_exch(id_priv, RDMA_CM_ADDR_QUERY,
2783 RDMA_CM_ADDR_RESOLVED))
2784 goto out;
2785
2786 memcpy(cma_src_addr(id_priv), src_addr, rdma_addr_size(src_addr));
2787 if (!status && !id_priv->cma_dev) {
2788 status = cma_acquire_dev(id_priv, NULL);
2789 if (status)
2790 pr_debug_ratelimited("RDMA CM: ADDR_ERROR: failed to acquire device. status %d\n",
2791 status);
2792 } else if (status) {
2793 pr_debug_ratelimited("RDMA CM: ADDR_ERROR: failed to resolve IP. status %d\n", status);
2794 }
2795
2796 if (status) {
2797 if (!cma_comp_exch(id_priv, RDMA_CM_ADDR_RESOLVED,
2798 RDMA_CM_ADDR_BOUND))
2799 goto out;
2800 event.event = RDMA_CM_EVENT_ADDR_ERROR;
2801 event.status = status;
2802 } else
2803 event.event = RDMA_CM_EVENT_ADDR_RESOLVED;
2804
2805 if (id_priv->id.event_handler(&id_priv->id, &event)) {
2806 cma_exch(id_priv, RDMA_CM_DESTROYING);
2807 mutex_unlock(&id_priv->handler_mutex);
2808 cma_deref_id(id_priv);
2809 rdma_destroy_id(&id_priv->id);
2810 return;
2811 }
2812 out:
2813 mutex_unlock(&id_priv->handler_mutex);
2814 cma_deref_id(id_priv);
2815 }
2816
cma_resolve_loopback(struct rdma_id_private * id_priv)2817 static int cma_resolve_loopback(struct rdma_id_private *id_priv)
2818 {
2819 struct cma_work *work;
2820 union ib_gid gid;
2821 int ret;
2822
2823 work = kzalloc(sizeof *work, GFP_KERNEL);
2824 if (!work)
2825 return -ENOMEM;
2826
2827 if (!id_priv->cma_dev) {
2828 ret = cma_bind_loopback(id_priv);
2829 if (ret)
2830 goto err;
2831 }
2832
2833 rdma_addr_get_sgid(&id_priv->id.route.addr.dev_addr, &gid);
2834 rdma_addr_set_dgid(&id_priv->id.route.addr.dev_addr, &gid);
2835
2836 work->id = id_priv;
2837 INIT_WORK(&work->work, cma_work_handler);
2838 work->old_state = RDMA_CM_ADDR_QUERY;
2839 work->new_state = RDMA_CM_ADDR_RESOLVED;
2840 work->event.event = RDMA_CM_EVENT_ADDR_RESOLVED;
2841 queue_work(cma_wq, &work->work);
2842 return 0;
2843 err:
2844 kfree(work);
2845 return ret;
2846 }
2847
cma_resolve_ib_addr(struct rdma_id_private * id_priv)2848 static int cma_resolve_ib_addr(struct rdma_id_private *id_priv)
2849 {
2850 struct cma_work *work;
2851 int ret;
2852
2853 work = kzalloc(sizeof *work, GFP_KERNEL);
2854 if (!work)
2855 return -ENOMEM;
2856
2857 if (!id_priv->cma_dev) {
2858 ret = cma_resolve_ib_dev(id_priv);
2859 if (ret)
2860 goto err;
2861 }
2862
2863 rdma_addr_set_dgid(&id_priv->id.route.addr.dev_addr, (union ib_gid *)
2864 &(((struct sockaddr_ib *) &id_priv->id.route.addr.dst_addr)->sib_addr));
2865
2866 work->id = id_priv;
2867 INIT_WORK(&work->work, cma_work_handler);
2868 work->old_state = RDMA_CM_ADDR_QUERY;
2869 work->new_state = RDMA_CM_ADDR_RESOLVED;
2870 work->event.event = RDMA_CM_EVENT_ADDR_RESOLVED;
2871 queue_work(cma_wq, &work->work);
2872 return 0;
2873 err:
2874 kfree(work);
2875 return ret;
2876 }
2877
cma_bind_addr(struct rdma_cm_id * id,struct sockaddr * src_addr,struct sockaddr * dst_addr)2878 static int cma_bind_addr(struct rdma_cm_id *id, struct sockaddr *src_addr,
2879 struct sockaddr *dst_addr)
2880 {
2881 if (!src_addr || !src_addr->sa_family) {
2882 src_addr = (struct sockaddr *) &id->route.addr.src_addr;
2883 src_addr->sa_family = dst_addr->sa_family;
2884 if (IS_ENABLED(CONFIG_IPV6) &&
2885 dst_addr->sa_family == AF_INET6) {
2886 struct sockaddr_in6 *src_addr6 = (struct sockaddr_in6 *) src_addr;
2887 struct sockaddr_in6 *dst_addr6 = (struct sockaddr_in6 *) dst_addr;
2888 src_addr6->sin6_scope_id = dst_addr6->sin6_scope_id;
2889 if (ipv6_addr_type(&dst_addr6->sin6_addr) & IPV6_ADDR_LINKLOCAL)
2890 id->route.addr.dev_addr.bound_dev_if = dst_addr6->sin6_scope_id;
2891 } else if (dst_addr->sa_family == AF_IB) {
2892 ((struct sockaddr_ib *) src_addr)->sib_pkey =
2893 ((struct sockaddr_ib *) dst_addr)->sib_pkey;
2894 }
2895 }
2896 return rdma_bind_addr(id, src_addr);
2897 }
2898
rdma_resolve_addr(struct rdma_cm_id * id,struct sockaddr * src_addr,struct sockaddr * dst_addr,int timeout_ms)2899 int rdma_resolve_addr(struct rdma_cm_id *id, struct sockaddr *src_addr,
2900 struct sockaddr *dst_addr, int timeout_ms)
2901 {
2902 struct rdma_id_private *id_priv;
2903 int ret;
2904
2905 id_priv = container_of(id, struct rdma_id_private, id);
2906 memcpy(cma_dst_addr(id_priv), dst_addr, rdma_addr_size(dst_addr));
2907 if (id_priv->state == RDMA_CM_IDLE) {
2908 ret = cma_bind_addr(id, src_addr, dst_addr);
2909 if (ret) {
2910 memset(cma_dst_addr(id_priv), 0, rdma_addr_size(dst_addr));
2911 return ret;
2912 }
2913 }
2914
2915 if (cma_family(id_priv) != dst_addr->sa_family) {
2916 memset(cma_dst_addr(id_priv), 0, rdma_addr_size(dst_addr));
2917 return -EINVAL;
2918 }
2919
2920 if (!cma_comp_exch(id_priv, RDMA_CM_ADDR_BOUND, RDMA_CM_ADDR_QUERY)) {
2921 memset(cma_dst_addr(id_priv), 0, rdma_addr_size(dst_addr));
2922 return -EINVAL;
2923 }
2924
2925 atomic_inc(&id_priv->refcount);
2926 if (cma_any_addr(dst_addr)) {
2927 ret = cma_resolve_loopback(id_priv);
2928 } else {
2929 if (dst_addr->sa_family == AF_IB) {
2930 ret = cma_resolve_ib_addr(id_priv);
2931 } else {
2932 ret = rdma_resolve_ip(&addr_client, cma_src_addr(id_priv),
2933 dst_addr, &id->route.addr.dev_addr,
2934 timeout_ms, addr_handler, id_priv);
2935 }
2936 }
2937 if (ret)
2938 goto err;
2939
2940 return 0;
2941 err:
2942 cma_comp_exch(id_priv, RDMA_CM_ADDR_QUERY, RDMA_CM_ADDR_BOUND);
2943 cma_deref_id(id_priv);
2944 return ret;
2945 }
2946 EXPORT_SYMBOL(rdma_resolve_addr);
2947
rdma_set_reuseaddr(struct rdma_cm_id * id,int reuse)2948 int rdma_set_reuseaddr(struct rdma_cm_id *id, int reuse)
2949 {
2950 struct rdma_id_private *id_priv;
2951 unsigned long flags;
2952 int ret;
2953
2954 id_priv = container_of(id, struct rdma_id_private, id);
2955 spin_lock_irqsave(&id_priv->lock, flags);
2956 if (reuse || id_priv->state == RDMA_CM_IDLE) {
2957 id_priv->reuseaddr = reuse;
2958 ret = 0;
2959 } else {
2960 ret = -EINVAL;
2961 }
2962 spin_unlock_irqrestore(&id_priv->lock, flags);
2963 return ret;
2964 }
2965 EXPORT_SYMBOL(rdma_set_reuseaddr);
2966
rdma_set_afonly(struct rdma_cm_id * id,int afonly)2967 int rdma_set_afonly(struct rdma_cm_id *id, int afonly)
2968 {
2969 struct rdma_id_private *id_priv;
2970 unsigned long flags;
2971 int ret;
2972
2973 id_priv = container_of(id, struct rdma_id_private, id);
2974 spin_lock_irqsave(&id_priv->lock, flags);
2975 if (id_priv->state == RDMA_CM_IDLE || id_priv->state == RDMA_CM_ADDR_BOUND) {
2976 id_priv->options |= (1 << CMA_OPTION_AFONLY);
2977 id_priv->afonly = afonly;
2978 ret = 0;
2979 } else {
2980 ret = -EINVAL;
2981 }
2982 spin_unlock_irqrestore(&id_priv->lock, flags);
2983 return ret;
2984 }
2985 EXPORT_SYMBOL(rdma_set_afonly);
2986
cma_bind_port(struct rdma_bind_list * bind_list,struct rdma_id_private * id_priv)2987 static void cma_bind_port(struct rdma_bind_list *bind_list,
2988 struct rdma_id_private *id_priv)
2989 {
2990 struct sockaddr *addr;
2991 struct sockaddr_ib *sib;
2992 u64 sid, mask;
2993 __be16 port;
2994
2995 addr = cma_src_addr(id_priv);
2996 port = htons(bind_list->port);
2997
2998 switch (addr->sa_family) {
2999 case AF_INET:
3000 ((struct sockaddr_in *) addr)->sin_port = port;
3001 break;
3002 case AF_INET6:
3003 ((struct sockaddr_in6 *) addr)->sin6_port = port;
3004 break;
3005 case AF_IB:
3006 sib = (struct sockaddr_ib *) addr;
3007 sid = be64_to_cpu(sib->sib_sid);
3008 mask = be64_to_cpu(sib->sib_sid_mask);
3009 sib->sib_sid = cpu_to_be64((sid & mask) | (u64) ntohs(port));
3010 sib->sib_sid_mask = cpu_to_be64(~0ULL);
3011 break;
3012 }
3013 id_priv->bind_list = bind_list;
3014 hlist_add_head(&id_priv->node, &bind_list->owners);
3015 }
3016
cma_alloc_port(enum rdma_port_space ps,struct rdma_id_private * id_priv,unsigned short snum)3017 static int cma_alloc_port(enum rdma_port_space ps,
3018 struct rdma_id_private *id_priv, unsigned short snum)
3019 {
3020 struct rdma_bind_list *bind_list;
3021 int ret;
3022
3023 bind_list = kzalloc(sizeof *bind_list, GFP_KERNEL);
3024 if (!bind_list)
3025 return -ENOMEM;
3026
3027 ret = cma_ps_alloc(id_priv->id.route.addr.dev_addr.net, ps, bind_list,
3028 snum);
3029 if (ret < 0)
3030 goto err;
3031
3032 bind_list->ps = ps;
3033 bind_list->port = (unsigned short)ret;
3034 cma_bind_port(bind_list, id_priv);
3035 return 0;
3036 err:
3037 kfree(bind_list);
3038 return ret == -ENOSPC ? -EADDRNOTAVAIL : ret;
3039 }
3040
cma_port_is_unique(struct rdma_bind_list * bind_list,struct rdma_id_private * id_priv)3041 static int cma_port_is_unique(struct rdma_bind_list *bind_list,
3042 struct rdma_id_private *id_priv)
3043 {
3044 struct rdma_id_private *cur_id;
3045 struct sockaddr *daddr = cma_dst_addr(id_priv);
3046 struct sockaddr *saddr = cma_src_addr(id_priv);
3047 __be16 dport = cma_port(daddr);
3048
3049 hlist_for_each_entry(cur_id, &bind_list->owners, node) {
3050 struct sockaddr *cur_daddr = cma_dst_addr(cur_id);
3051 struct sockaddr *cur_saddr = cma_src_addr(cur_id);
3052 __be16 cur_dport = cma_port(cur_daddr);
3053
3054 if (id_priv == cur_id)
3055 continue;
3056
3057 /* different dest port -> unique */
3058 if (!cma_any_port(daddr) &&
3059 !cma_any_port(cur_daddr) &&
3060 (dport != cur_dport))
3061 continue;
3062
3063 /* different src address -> unique */
3064 if (!cma_any_addr(saddr) &&
3065 !cma_any_addr(cur_saddr) &&
3066 cma_addr_cmp(saddr, cur_saddr))
3067 continue;
3068
3069 /* different dst address -> unique */
3070 if (!cma_any_addr(daddr) &&
3071 !cma_any_addr(cur_daddr) &&
3072 cma_addr_cmp(daddr, cur_daddr))
3073 continue;
3074
3075 return -EADDRNOTAVAIL;
3076 }
3077 return 0;
3078 }
3079
cma_alloc_any_port(enum rdma_port_space ps,struct rdma_id_private * id_priv)3080 static int cma_alloc_any_port(enum rdma_port_space ps,
3081 struct rdma_id_private *id_priv)
3082 {
3083 static unsigned int last_used_port;
3084 int low, high, remaining;
3085 unsigned int rover;
3086 struct net *net = id_priv->id.route.addr.dev_addr.net;
3087
3088 inet_get_local_port_range(net, &low, &high);
3089 remaining = (high - low) + 1;
3090 rover = prandom_u32() % remaining + low;
3091 retry:
3092 if (last_used_port != rover) {
3093 struct rdma_bind_list *bind_list;
3094 int ret;
3095
3096 bind_list = cma_ps_find(net, ps, (unsigned short)rover);
3097
3098 if (!bind_list) {
3099 ret = cma_alloc_port(ps, id_priv, rover);
3100 } else {
3101 ret = cma_port_is_unique(bind_list, id_priv);
3102 if (!ret)
3103 cma_bind_port(bind_list, id_priv);
3104 }
3105 /*
3106 * Remember previously used port number in order to avoid
3107 * re-using same port immediately after it is closed.
3108 */
3109 if (!ret)
3110 last_used_port = rover;
3111 if (ret != -EADDRNOTAVAIL)
3112 return ret;
3113 }
3114 if (--remaining) {
3115 rover++;
3116 if ((rover < low) || (rover > high))
3117 rover = low;
3118 goto retry;
3119 }
3120 return -EADDRNOTAVAIL;
3121 }
3122
3123 /*
3124 * Check that the requested port is available. This is called when trying to
3125 * bind to a specific port, or when trying to listen on a bound port. In
3126 * the latter case, the provided id_priv may already be on the bind_list, but
3127 * we still need to check that it's okay to start listening.
3128 */
cma_check_port(struct rdma_bind_list * bind_list,struct rdma_id_private * id_priv,uint8_t reuseaddr)3129 static int cma_check_port(struct rdma_bind_list *bind_list,
3130 struct rdma_id_private *id_priv, uint8_t reuseaddr)
3131 {
3132 struct rdma_id_private *cur_id;
3133 struct sockaddr *addr, *cur_addr;
3134
3135 addr = cma_src_addr(id_priv);
3136 hlist_for_each_entry(cur_id, &bind_list->owners, node) {
3137 if (id_priv == cur_id)
3138 continue;
3139
3140 if ((cur_id->state != RDMA_CM_LISTEN) && reuseaddr &&
3141 cur_id->reuseaddr)
3142 continue;
3143
3144 cur_addr = cma_src_addr(cur_id);
3145 if (id_priv->afonly && cur_id->afonly &&
3146 (addr->sa_family != cur_addr->sa_family))
3147 continue;
3148
3149 if (cma_any_addr(addr) || cma_any_addr(cur_addr))
3150 return -EADDRNOTAVAIL;
3151
3152 if (!cma_addr_cmp(addr, cur_addr))
3153 return -EADDRINUSE;
3154 }
3155 return 0;
3156 }
3157
cma_use_port(enum rdma_port_space ps,struct rdma_id_private * id_priv)3158 static int cma_use_port(enum rdma_port_space ps,
3159 struct rdma_id_private *id_priv)
3160 {
3161 struct rdma_bind_list *bind_list;
3162 unsigned short snum;
3163 int ret;
3164
3165 snum = ntohs(cma_port(cma_src_addr(id_priv)));
3166 if (snum < PROT_SOCK && !capable(CAP_NET_BIND_SERVICE))
3167 return -EACCES;
3168
3169 bind_list = cma_ps_find(id_priv->id.route.addr.dev_addr.net, ps, snum);
3170 if (!bind_list) {
3171 ret = cma_alloc_port(ps, id_priv, snum);
3172 } else {
3173 ret = cma_check_port(bind_list, id_priv, id_priv->reuseaddr);
3174 if (!ret)
3175 cma_bind_port(bind_list, id_priv);
3176 }
3177 return ret;
3178 }
3179
cma_bind_listen(struct rdma_id_private * id_priv)3180 static int cma_bind_listen(struct rdma_id_private *id_priv)
3181 {
3182 struct rdma_bind_list *bind_list = id_priv->bind_list;
3183 int ret = 0;
3184
3185 mutex_lock(&lock);
3186 if (bind_list->owners.first->next)
3187 ret = cma_check_port(bind_list, id_priv, 0);
3188 mutex_unlock(&lock);
3189 return ret;
3190 }
3191
cma_select_inet_ps(struct rdma_id_private * id_priv)3192 static enum rdma_port_space cma_select_inet_ps(
3193 struct rdma_id_private *id_priv)
3194 {
3195 switch (id_priv->id.ps) {
3196 case RDMA_PS_TCP:
3197 case RDMA_PS_UDP:
3198 case RDMA_PS_IPOIB:
3199 case RDMA_PS_IB:
3200 return id_priv->id.ps;
3201 default:
3202
3203 return 0;
3204 }
3205 }
3206
cma_select_ib_ps(struct rdma_id_private * id_priv)3207 static enum rdma_port_space cma_select_ib_ps(struct rdma_id_private *id_priv)
3208 {
3209 enum rdma_port_space ps = 0;
3210 struct sockaddr_ib *sib;
3211 u64 sid_ps, mask, sid;
3212
3213 sib = (struct sockaddr_ib *) cma_src_addr(id_priv);
3214 mask = be64_to_cpu(sib->sib_sid_mask) & RDMA_IB_IP_PS_MASK;
3215 sid = be64_to_cpu(sib->sib_sid) & mask;
3216
3217 if ((id_priv->id.ps == RDMA_PS_IB) && (sid == (RDMA_IB_IP_PS_IB & mask))) {
3218 sid_ps = RDMA_IB_IP_PS_IB;
3219 ps = RDMA_PS_IB;
3220 } else if (((id_priv->id.ps == RDMA_PS_IB) || (id_priv->id.ps == RDMA_PS_TCP)) &&
3221 (sid == (RDMA_IB_IP_PS_TCP & mask))) {
3222 sid_ps = RDMA_IB_IP_PS_TCP;
3223 ps = RDMA_PS_TCP;
3224 } else if (((id_priv->id.ps == RDMA_PS_IB) || (id_priv->id.ps == RDMA_PS_UDP)) &&
3225 (sid == (RDMA_IB_IP_PS_UDP & mask))) {
3226 sid_ps = RDMA_IB_IP_PS_UDP;
3227 ps = RDMA_PS_UDP;
3228 }
3229
3230 if (ps) {
3231 sib->sib_sid = cpu_to_be64(sid_ps | ntohs(cma_port((struct sockaddr *) sib)));
3232 sib->sib_sid_mask = cpu_to_be64(RDMA_IB_IP_PS_MASK |
3233 be64_to_cpu(sib->sib_sid_mask));
3234 }
3235 return ps;
3236 }
3237
cma_get_port(struct rdma_id_private * id_priv)3238 static int cma_get_port(struct rdma_id_private *id_priv)
3239 {
3240 enum rdma_port_space ps;
3241 int ret;
3242
3243 if (cma_family(id_priv) != AF_IB)
3244 ps = cma_select_inet_ps(id_priv);
3245 else
3246 ps = cma_select_ib_ps(id_priv);
3247 if (!ps)
3248 return -EPROTONOSUPPORT;
3249
3250 mutex_lock(&lock);
3251 if (cma_any_port(cma_src_addr(id_priv)))
3252 ret = cma_alloc_any_port(ps, id_priv);
3253 else
3254 ret = cma_use_port(ps, id_priv);
3255 mutex_unlock(&lock);
3256
3257 return ret;
3258 }
3259
cma_check_linklocal(struct rdma_dev_addr * dev_addr,struct sockaddr * addr)3260 static int cma_check_linklocal(struct rdma_dev_addr *dev_addr,
3261 struct sockaddr *addr)
3262 {
3263 #if IS_ENABLED(CONFIG_IPV6)
3264 struct sockaddr_in6 *sin6;
3265
3266 if (addr->sa_family != AF_INET6)
3267 return 0;
3268
3269 sin6 = (struct sockaddr_in6 *) addr;
3270
3271 if (!(ipv6_addr_type(&sin6->sin6_addr) & IPV6_ADDR_LINKLOCAL))
3272 return 0;
3273
3274 if (!sin6->sin6_scope_id)
3275 return -EINVAL;
3276
3277 dev_addr->bound_dev_if = sin6->sin6_scope_id;
3278 #endif
3279 return 0;
3280 }
3281
rdma_listen(struct rdma_cm_id * id,int backlog)3282 int rdma_listen(struct rdma_cm_id *id, int backlog)
3283 {
3284 struct rdma_id_private *id_priv;
3285 int ret;
3286
3287 id_priv = container_of(id, struct rdma_id_private, id);
3288 if (id_priv->state == RDMA_CM_IDLE) {
3289 id->route.addr.src_addr.ss_family = AF_INET;
3290 ret = rdma_bind_addr(id, cma_src_addr(id_priv));
3291 if (ret)
3292 return ret;
3293 }
3294
3295 if (!cma_comp_exch(id_priv, RDMA_CM_ADDR_BOUND, RDMA_CM_LISTEN))
3296 return -EINVAL;
3297
3298 if (id_priv->reuseaddr) {
3299 ret = cma_bind_listen(id_priv);
3300 if (ret)
3301 goto err;
3302 }
3303
3304 id_priv->backlog = backlog;
3305 if (id->device) {
3306 if (rdma_cap_ib_cm(id->device, 1)) {
3307 ret = cma_ib_listen(id_priv);
3308 if (ret)
3309 goto err;
3310 } else if (rdma_cap_iw_cm(id->device, 1)) {
3311 ret = cma_iw_listen(id_priv, backlog);
3312 if (ret)
3313 goto err;
3314 } else {
3315 ret = -ENOSYS;
3316 goto err;
3317 }
3318 } else
3319 cma_listen_on_all(id_priv);
3320
3321 return 0;
3322 err:
3323 id_priv->backlog = 0;
3324 cma_comp_exch(id_priv, RDMA_CM_LISTEN, RDMA_CM_ADDR_BOUND);
3325 return ret;
3326 }
3327 EXPORT_SYMBOL(rdma_listen);
3328
rdma_bind_addr(struct rdma_cm_id * id,struct sockaddr * addr)3329 int rdma_bind_addr(struct rdma_cm_id *id, struct sockaddr *addr)
3330 {
3331 struct rdma_id_private *id_priv;
3332 int ret;
3333 struct sockaddr *daddr;
3334
3335 if (addr->sa_family != AF_INET && addr->sa_family != AF_INET6 &&
3336 addr->sa_family != AF_IB)
3337 return -EAFNOSUPPORT;
3338
3339 id_priv = container_of(id, struct rdma_id_private, id);
3340 if (!cma_comp_exch(id_priv, RDMA_CM_IDLE, RDMA_CM_ADDR_BOUND))
3341 return -EINVAL;
3342
3343 ret = cma_check_linklocal(&id->route.addr.dev_addr, addr);
3344 if (ret)
3345 goto err1;
3346
3347 memcpy(cma_src_addr(id_priv), addr, rdma_addr_size(addr));
3348 if (!cma_any_addr(addr)) {
3349 ret = cma_translate_addr(addr, &id->route.addr.dev_addr);
3350 if (ret)
3351 goto err1;
3352
3353 ret = cma_acquire_dev(id_priv, NULL);
3354 if (ret)
3355 goto err1;
3356 }
3357
3358 if (!(id_priv->options & (1 << CMA_OPTION_AFONLY))) {
3359 if (addr->sa_family == AF_INET)
3360 id_priv->afonly = 1;
3361 #if IS_ENABLED(CONFIG_IPV6)
3362 else if (addr->sa_family == AF_INET6) {
3363 struct net *net = id_priv->id.route.addr.dev_addr.net;
3364
3365 id_priv->afonly = net->ipv6.sysctl.bindv6only;
3366 }
3367 #endif
3368 }
3369 daddr = cma_dst_addr(id_priv);
3370 daddr->sa_family = addr->sa_family;
3371
3372 ret = cma_get_port(id_priv);
3373 if (ret)
3374 goto err2;
3375
3376 return 0;
3377 err2:
3378 if (id_priv->cma_dev)
3379 cma_release_dev(id_priv);
3380 err1:
3381 cma_comp_exch(id_priv, RDMA_CM_ADDR_BOUND, RDMA_CM_IDLE);
3382 return ret;
3383 }
3384 EXPORT_SYMBOL(rdma_bind_addr);
3385
cma_format_hdr(void * hdr,struct rdma_id_private * id_priv)3386 static int cma_format_hdr(void *hdr, struct rdma_id_private *id_priv)
3387 {
3388 struct cma_hdr *cma_hdr;
3389
3390 cma_hdr = hdr;
3391 cma_hdr->cma_version = CMA_VERSION;
3392 if (cma_family(id_priv) == AF_INET) {
3393 struct sockaddr_in *src4, *dst4;
3394
3395 src4 = (struct sockaddr_in *) cma_src_addr(id_priv);
3396 dst4 = (struct sockaddr_in *) cma_dst_addr(id_priv);
3397
3398 cma_set_ip_ver(cma_hdr, 4);
3399 cma_hdr->src_addr.ip4.addr = src4->sin_addr.s_addr;
3400 cma_hdr->dst_addr.ip4.addr = dst4->sin_addr.s_addr;
3401 cma_hdr->port = src4->sin_port;
3402 } else if (cma_family(id_priv) == AF_INET6) {
3403 struct sockaddr_in6 *src6, *dst6;
3404
3405 src6 = (struct sockaddr_in6 *) cma_src_addr(id_priv);
3406 dst6 = (struct sockaddr_in6 *) cma_dst_addr(id_priv);
3407
3408 cma_set_ip_ver(cma_hdr, 6);
3409 cma_hdr->src_addr.ip6 = src6->sin6_addr;
3410 cma_hdr->dst_addr.ip6 = dst6->sin6_addr;
3411 cma_hdr->port = src6->sin6_port;
3412 }
3413 return 0;
3414 }
3415
cma_sidr_rep_handler(struct ib_cm_id * cm_id,struct ib_cm_event * ib_event)3416 static int cma_sidr_rep_handler(struct ib_cm_id *cm_id,
3417 struct ib_cm_event *ib_event)
3418 {
3419 struct rdma_id_private *id_priv = cm_id->context;
3420 struct rdma_cm_event event;
3421 struct ib_cm_sidr_rep_event_param *rep = &ib_event->param.sidr_rep_rcvd;
3422 int ret = 0;
3423
3424 mutex_lock(&id_priv->handler_mutex);
3425 if (id_priv->state != RDMA_CM_CONNECT)
3426 goto out;
3427
3428 memset(&event, 0, sizeof event);
3429 switch (ib_event->event) {
3430 case IB_CM_SIDR_REQ_ERROR:
3431 event.event = RDMA_CM_EVENT_UNREACHABLE;
3432 event.status = -ETIMEDOUT;
3433 break;
3434 case IB_CM_SIDR_REP_RECEIVED:
3435 event.param.ud.private_data = ib_event->private_data;
3436 event.param.ud.private_data_len = IB_CM_SIDR_REP_PRIVATE_DATA_SIZE;
3437 if (rep->status != IB_SIDR_SUCCESS) {
3438 event.event = RDMA_CM_EVENT_UNREACHABLE;
3439 event.status = ib_event->param.sidr_rep_rcvd.status;
3440 pr_debug_ratelimited("RDMA CM: UNREACHABLE: bad SIDR reply. status %d\n",
3441 event.status);
3442 break;
3443 }
3444 ret = cma_set_qkey(id_priv, rep->qkey);
3445 if (ret) {
3446 pr_debug_ratelimited("RDMA CM: ADDR_ERROR: failed to set qkey. status %d\n", ret);
3447 event.event = RDMA_CM_EVENT_ADDR_ERROR;
3448 event.status = ret;
3449 break;
3450 }
3451 ib_init_ah_from_path(id_priv->id.device, id_priv->id.port_num,
3452 id_priv->id.route.path_rec,
3453 &event.param.ud.ah_attr);
3454 event.param.ud.qp_num = rep->qpn;
3455 event.param.ud.qkey = rep->qkey;
3456 event.event = RDMA_CM_EVENT_ESTABLISHED;
3457 event.status = 0;
3458 break;
3459 default:
3460 pr_err("RDMA CMA: unexpected IB CM event: %d\n",
3461 ib_event->event);
3462 goto out;
3463 }
3464
3465 ret = id_priv->id.event_handler(&id_priv->id, &event);
3466 if (ret) {
3467 /* Destroy the CM ID by returning a non-zero value. */
3468 id_priv->cm_id.ib = NULL;
3469 cma_exch(id_priv, RDMA_CM_DESTROYING);
3470 mutex_unlock(&id_priv->handler_mutex);
3471 rdma_destroy_id(&id_priv->id);
3472 return ret;
3473 }
3474 out:
3475 mutex_unlock(&id_priv->handler_mutex);
3476 return ret;
3477 }
3478
cma_resolve_ib_udp(struct rdma_id_private * id_priv,struct rdma_conn_param * conn_param)3479 static int cma_resolve_ib_udp(struct rdma_id_private *id_priv,
3480 struct rdma_conn_param *conn_param)
3481 {
3482 struct ib_cm_sidr_req_param req;
3483 struct ib_cm_id *id;
3484 void *private_data;
3485 u8 offset;
3486 int ret;
3487
3488 memset(&req, 0, sizeof req);
3489 offset = cma_user_data_offset(id_priv);
3490 req.private_data_len = offset + conn_param->private_data_len;
3491 if (req.private_data_len < conn_param->private_data_len)
3492 return -EINVAL;
3493
3494 if (req.private_data_len) {
3495 private_data = kzalloc(req.private_data_len, GFP_ATOMIC);
3496 if (!private_data)
3497 return -ENOMEM;
3498 } else {
3499 private_data = NULL;
3500 }
3501
3502 if (conn_param->private_data && conn_param->private_data_len)
3503 memcpy(private_data + offset, conn_param->private_data,
3504 conn_param->private_data_len);
3505
3506 if (private_data) {
3507 ret = cma_format_hdr(private_data, id_priv);
3508 if (ret)
3509 goto out;
3510 req.private_data = private_data;
3511 }
3512
3513 id = ib_create_cm_id(id_priv->id.device, cma_sidr_rep_handler,
3514 id_priv);
3515 if (IS_ERR(id)) {
3516 ret = PTR_ERR(id);
3517 goto out;
3518 }
3519 id_priv->cm_id.ib = id;
3520
3521 req.path = id_priv->id.route.path_rec;
3522 req.service_id = rdma_get_service_id(&id_priv->id, cma_dst_addr(id_priv));
3523 req.timeout_ms = 1 << (CMA_CM_RESPONSE_TIMEOUT - 8);
3524 req.max_cm_retries = CMA_MAX_CM_RETRIES;
3525
3526 ret = ib_send_cm_sidr_req(id_priv->cm_id.ib, &req);
3527 if (ret) {
3528 ib_destroy_cm_id(id_priv->cm_id.ib);
3529 id_priv->cm_id.ib = NULL;
3530 }
3531 out:
3532 kfree(private_data);
3533 return ret;
3534 }
3535
cma_connect_ib(struct rdma_id_private * id_priv,struct rdma_conn_param * conn_param)3536 static int cma_connect_ib(struct rdma_id_private *id_priv,
3537 struct rdma_conn_param *conn_param)
3538 {
3539 struct ib_cm_req_param req;
3540 struct rdma_route *route;
3541 void *private_data;
3542 struct ib_cm_id *id;
3543 u8 offset;
3544 int ret;
3545
3546 memset(&req, 0, sizeof req);
3547 offset = cma_user_data_offset(id_priv);
3548 req.private_data_len = offset + conn_param->private_data_len;
3549 if (req.private_data_len < conn_param->private_data_len)
3550 return -EINVAL;
3551
3552 if (req.private_data_len) {
3553 private_data = kzalloc(req.private_data_len, GFP_ATOMIC);
3554 if (!private_data)
3555 return -ENOMEM;
3556 } else {
3557 private_data = NULL;
3558 }
3559
3560 if (conn_param->private_data && conn_param->private_data_len)
3561 memcpy(private_data + offset, conn_param->private_data,
3562 conn_param->private_data_len);
3563
3564 id = ib_create_cm_id(id_priv->id.device, cma_ib_handler, id_priv);
3565 if (IS_ERR(id)) {
3566 ret = PTR_ERR(id);
3567 goto out;
3568 }
3569 id_priv->cm_id.ib = id;
3570
3571 route = &id_priv->id.route;
3572 if (private_data) {
3573 ret = cma_format_hdr(private_data, id_priv);
3574 if (ret)
3575 goto out;
3576 req.private_data = private_data;
3577 }
3578
3579 req.primary_path = &route->path_rec[0];
3580 if (route->num_paths == 2)
3581 req.alternate_path = &route->path_rec[1];
3582
3583 req.service_id = rdma_get_service_id(&id_priv->id, cma_dst_addr(id_priv));
3584 req.qp_num = id_priv->qp_num;
3585 req.qp_type = id_priv->id.qp_type;
3586 req.starting_psn = id_priv->seq_num;
3587 req.responder_resources = conn_param->responder_resources;
3588 req.initiator_depth = conn_param->initiator_depth;
3589 req.flow_control = conn_param->flow_control;
3590 req.retry_count = min_t(u8, 7, conn_param->retry_count);
3591 req.rnr_retry_count = min_t(u8, 7, conn_param->rnr_retry_count);
3592 req.remote_cm_response_timeout = CMA_CM_RESPONSE_TIMEOUT;
3593 req.local_cm_response_timeout = CMA_CM_RESPONSE_TIMEOUT;
3594 req.max_cm_retries = CMA_MAX_CM_RETRIES;
3595 req.srq = id_priv->srq ? 1 : 0;
3596
3597 ret = ib_send_cm_req(id_priv->cm_id.ib, &req);
3598 out:
3599 if (ret && !IS_ERR(id)) {
3600 ib_destroy_cm_id(id);
3601 id_priv->cm_id.ib = NULL;
3602 }
3603
3604 kfree(private_data);
3605 return ret;
3606 }
3607
cma_connect_iw(struct rdma_id_private * id_priv,struct rdma_conn_param * conn_param)3608 static int cma_connect_iw(struct rdma_id_private *id_priv,
3609 struct rdma_conn_param *conn_param)
3610 {
3611 struct iw_cm_id *cm_id;
3612 int ret;
3613 struct iw_cm_conn_param iw_param;
3614
3615 cm_id = iw_create_cm_id(id_priv->id.device, cma_iw_handler, id_priv);
3616 if (IS_ERR(cm_id))
3617 return PTR_ERR(cm_id);
3618
3619 cm_id->tos = id_priv->tos;
3620 id_priv->cm_id.iw = cm_id;
3621
3622 memcpy(&cm_id->local_addr, cma_src_addr(id_priv),
3623 rdma_addr_size(cma_src_addr(id_priv)));
3624 memcpy(&cm_id->remote_addr, cma_dst_addr(id_priv),
3625 rdma_addr_size(cma_dst_addr(id_priv)));
3626
3627 ret = cma_modify_qp_rtr(id_priv, conn_param);
3628 if (ret)
3629 goto out;
3630
3631 if (conn_param) {
3632 iw_param.ord = conn_param->initiator_depth;
3633 iw_param.ird = conn_param->responder_resources;
3634 iw_param.private_data = conn_param->private_data;
3635 iw_param.private_data_len = conn_param->private_data_len;
3636 iw_param.qpn = id_priv->id.qp ? id_priv->qp_num : conn_param->qp_num;
3637 } else {
3638 memset(&iw_param, 0, sizeof iw_param);
3639 iw_param.qpn = id_priv->qp_num;
3640 }
3641 ret = iw_cm_connect(cm_id, &iw_param);
3642 out:
3643 if (ret) {
3644 iw_destroy_cm_id(cm_id);
3645 id_priv->cm_id.iw = NULL;
3646 }
3647 return ret;
3648 }
3649
rdma_connect(struct rdma_cm_id * id,struct rdma_conn_param * conn_param)3650 int rdma_connect(struct rdma_cm_id *id, struct rdma_conn_param *conn_param)
3651 {
3652 struct rdma_id_private *id_priv;
3653 int ret;
3654
3655 id_priv = container_of(id, struct rdma_id_private, id);
3656 if (!cma_comp_exch(id_priv, RDMA_CM_ROUTE_RESOLVED, RDMA_CM_CONNECT))
3657 return -EINVAL;
3658
3659 if (!id->qp) {
3660 id_priv->qp_num = conn_param->qp_num;
3661 id_priv->srq = conn_param->srq;
3662 }
3663
3664 if (rdma_cap_ib_cm(id->device, id->port_num)) {
3665 if (id->qp_type == IB_QPT_UD)
3666 ret = cma_resolve_ib_udp(id_priv, conn_param);
3667 else
3668 ret = cma_connect_ib(id_priv, conn_param);
3669 } else if (rdma_cap_iw_cm(id->device, id->port_num))
3670 ret = cma_connect_iw(id_priv, conn_param);
3671 else
3672 ret = -ENOSYS;
3673 if (ret)
3674 goto err;
3675
3676 return 0;
3677 err:
3678 cma_comp_exch(id_priv, RDMA_CM_CONNECT, RDMA_CM_ROUTE_RESOLVED);
3679 return ret;
3680 }
3681 EXPORT_SYMBOL(rdma_connect);
3682
cma_accept_ib(struct rdma_id_private * id_priv,struct rdma_conn_param * conn_param)3683 static int cma_accept_ib(struct rdma_id_private *id_priv,
3684 struct rdma_conn_param *conn_param)
3685 {
3686 struct ib_cm_rep_param rep;
3687 int ret;
3688
3689 ret = cma_modify_qp_rtr(id_priv, conn_param);
3690 if (ret)
3691 goto out;
3692
3693 ret = cma_modify_qp_rts(id_priv, conn_param);
3694 if (ret)
3695 goto out;
3696
3697 memset(&rep, 0, sizeof rep);
3698 rep.qp_num = id_priv->qp_num;
3699 rep.starting_psn = id_priv->seq_num;
3700 rep.private_data = conn_param->private_data;
3701 rep.private_data_len = conn_param->private_data_len;
3702 rep.responder_resources = conn_param->responder_resources;
3703 rep.initiator_depth = conn_param->initiator_depth;
3704 rep.failover_accepted = 0;
3705 rep.flow_control = conn_param->flow_control;
3706 rep.rnr_retry_count = min_t(u8, 7, conn_param->rnr_retry_count);
3707 rep.srq = id_priv->srq ? 1 : 0;
3708
3709 ret = ib_send_cm_rep(id_priv->cm_id.ib, &rep);
3710 out:
3711 return ret;
3712 }
3713
cma_accept_iw(struct rdma_id_private * id_priv,struct rdma_conn_param * conn_param)3714 static int cma_accept_iw(struct rdma_id_private *id_priv,
3715 struct rdma_conn_param *conn_param)
3716 {
3717 struct iw_cm_conn_param iw_param;
3718 int ret;
3719
3720 if (!conn_param)
3721 return -EINVAL;
3722
3723 ret = cma_modify_qp_rtr(id_priv, conn_param);
3724 if (ret)
3725 return ret;
3726
3727 iw_param.ord = conn_param->initiator_depth;
3728 iw_param.ird = conn_param->responder_resources;
3729 iw_param.private_data = conn_param->private_data;
3730 iw_param.private_data_len = conn_param->private_data_len;
3731 if (id_priv->id.qp) {
3732 iw_param.qpn = id_priv->qp_num;
3733 } else
3734 iw_param.qpn = conn_param->qp_num;
3735
3736 return iw_cm_accept(id_priv->cm_id.iw, &iw_param);
3737 }
3738
cma_send_sidr_rep(struct rdma_id_private * id_priv,enum ib_cm_sidr_status status,u32 qkey,const void * private_data,int private_data_len)3739 static int cma_send_sidr_rep(struct rdma_id_private *id_priv,
3740 enum ib_cm_sidr_status status, u32 qkey,
3741 const void *private_data, int private_data_len)
3742 {
3743 struct ib_cm_sidr_rep_param rep;
3744 int ret;
3745
3746 memset(&rep, 0, sizeof rep);
3747 rep.status = status;
3748 if (status == IB_SIDR_SUCCESS) {
3749 ret = cma_set_qkey(id_priv, qkey);
3750 if (ret)
3751 return ret;
3752 rep.qp_num = id_priv->qp_num;
3753 rep.qkey = id_priv->qkey;
3754 }
3755 rep.private_data = private_data;
3756 rep.private_data_len = private_data_len;
3757
3758 return ib_send_cm_sidr_rep(id_priv->cm_id.ib, &rep);
3759 }
3760
rdma_accept(struct rdma_cm_id * id,struct rdma_conn_param * conn_param)3761 int rdma_accept(struct rdma_cm_id *id, struct rdma_conn_param *conn_param)
3762 {
3763 struct rdma_id_private *id_priv;
3764 int ret;
3765
3766 id_priv = container_of(id, struct rdma_id_private, id);
3767
3768 id_priv->owner = task_pid_nr(current);
3769
3770 if (!cma_comp(id_priv, RDMA_CM_CONNECT))
3771 return -EINVAL;
3772
3773 if (!id->qp && conn_param) {
3774 id_priv->qp_num = conn_param->qp_num;
3775 id_priv->srq = conn_param->srq;
3776 }
3777
3778 if (rdma_cap_ib_cm(id->device, id->port_num)) {
3779 if (id->qp_type == IB_QPT_UD) {
3780 if (conn_param)
3781 ret = cma_send_sidr_rep(id_priv, IB_SIDR_SUCCESS,
3782 conn_param->qkey,
3783 conn_param->private_data,
3784 conn_param->private_data_len);
3785 else
3786 ret = cma_send_sidr_rep(id_priv, IB_SIDR_SUCCESS,
3787 0, NULL, 0);
3788 } else {
3789 if (conn_param)
3790 ret = cma_accept_ib(id_priv, conn_param);
3791 else
3792 ret = cma_rep_recv(id_priv);
3793 }
3794 } else if (rdma_cap_iw_cm(id->device, id->port_num))
3795 ret = cma_accept_iw(id_priv, conn_param);
3796 else
3797 ret = -ENOSYS;
3798
3799 if (ret)
3800 goto reject;
3801
3802 return 0;
3803 reject:
3804 cma_modify_qp_err(id_priv);
3805 rdma_reject(id, NULL, 0);
3806 return ret;
3807 }
3808 EXPORT_SYMBOL(rdma_accept);
3809
rdma_notify(struct rdma_cm_id * id,enum ib_event_type event)3810 int rdma_notify(struct rdma_cm_id *id, enum ib_event_type event)
3811 {
3812 struct rdma_id_private *id_priv;
3813 int ret;
3814
3815 id_priv = container_of(id, struct rdma_id_private, id);
3816 if (!id_priv->cm_id.ib)
3817 return -EINVAL;
3818
3819 switch (id->device->node_type) {
3820 case RDMA_NODE_IB_CA:
3821 ret = ib_cm_notify(id_priv->cm_id.ib, event);
3822 break;
3823 default:
3824 ret = 0;
3825 break;
3826 }
3827 return ret;
3828 }
3829 EXPORT_SYMBOL(rdma_notify);
3830
rdma_reject(struct rdma_cm_id * id,const void * private_data,u8 private_data_len)3831 int rdma_reject(struct rdma_cm_id *id, const void *private_data,
3832 u8 private_data_len)
3833 {
3834 struct rdma_id_private *id_priv;
3835 int ret;
3836
3837 id_priv = container_of(id, struct rdma_id_private, id);
3838 if (!id_priv->cm_id.ib)
3839 return -EINVAL;
3840
3841 if (rdma_cap_ib_cm(id->device, id->port_num)) {
3842 if (id->qp_type == IB_QPT_UD)
3843 ret = cma_send_sidr_rep(id_priv, IB_SIDR_REJECT, 0,
3844 private_data, private_data_len);
3845 else
3846 ret = ib_send_cm_rej(id_priv->cm_id.ib,
3847 IB_CM_REJ_CONSUMER_DEFINED, NULL,
3848 0, private_data, private_data_len);
3849 } else if (rdma_cap_iw_cm(id->device, id->port_num)) {
3850 ret = iw_cm_reject(id_priv->cm_id.iw,
3851 private_data, private_data_len);
3852 } else
3853 ret = -ENOSYS;
3854
3855 return ret;
3856 }
3857 EXPORT_SYMBOL(rdma_reject);
3858
rdma_disconnect(struct rdma_cm_id * id)3859 int rdma_disconnect(struct rdma_cm_id *id)
3860 {
3861 struct rdma_id_private *id_priv;
3862 int ret;
3863
3864 id_priv = container_of(id, struct rdma_id_private, id);
3865 if (!id_priv->cm_id.ib)
3866 return -EINVAL;
3867
3868 if (rdma_cap_ib_cm(id->device, id->port_num)) {
3869 ret = cma_modify_qp_err(id_priv);
3870 if (ret)
3871 goto out;
3872 /* Initiate or respond to a disconnect. */
3873 if (ib_send_cm_dreq(id_priv->cm_id.ib, NULL, 0))
3874 ib_send_cm_drep(id_priv->cm_id.ib, NULL, 0);
3875 } else if (rdma_cap_iw_cm(id->device, id->port_num)) {
3876 ret = iw_cm_disconnect(id_priv->cm_id.iw, 0);
3877 } else
3878 ret = -EINVAL;
3879
3880 out:
3881 return ret;
3882 }
3883 EXPORT_SYMBOL(rdma_disconnect);
3884
cma_ib_mc_handler(int status,struct ib_sa_multicast * multicast)3885 static int cma_ib_mc_handler(int status, struct ib_sa_multicast *multicast)
3886 {
3887 struct rdma_id_private *id_priv;
3888 struct cma_multicast *mc = multicast->context;
3889 struct rdma_cm_event event;
3890 int ret = 0;
3891
3892 id_priv = mc->id_priv;
3893 mutex_lock(&id_priv->handler_mutex);
3894 if (id_priv->state != RDMA_CM_ADDR_BOUND &&
3895 id_priv->state != RDMA_CM_ADDR_RESOLVED)
3896 goto out;
3897
3898 if (!status)
3899 status = cma_set_qkey(id_priv, be32_to_cpu(multicast->rec.qkey));
3900 else
3901 pr_debug_ratelimited("RDMA CM: MULTICAST_ERROR: failed to join multicast. status %d\n",
3902 status);
3903 mutex_lock(&id_priv->qp_mutex);
3904 if (!status && id_priv->id.qp) {
3905 status = ib_attach_mcast(id_priv->id.qp, &multicast->rec.mgid,
3906 be16_to_cpu(multicast->rec.mlid));
3907 if (status)
3908 pr_debug_ratelimited("RDMA CM: MULTICAST_ERROR: failed to attach QP. status %d\n",
3909 status);
3910 }
3911 mutex_unlock(&id_priv->qp_mutex);
3912
3913 memset(&event, 0, sizeof event);
3914 event.status = status;
3915 event.param.ud.private_data = mc->context;
3916 if (!status) {
3917 struct rdma_dev_addr *dev_addr =
3918 &id_priv->id.route.addr.dev_addr;
3919 struct net_device *ndev =
3920 dev_get_by_index(&init_net, dev_addr->bound_dev_if);
3921 enum ib_gid_type gid_type =
3922 id_priv->cma_dev->default_gid_type[id_priv->id.port_num -
3923 rdma_start_port(id_priv->cma_dev->device)];
3924
3925 event.event = RDMA_CM_EVENT_MULTICAST_JOIN;
3926 ib_init_ah_from_mcmember(id_priv->id.device,
3927 id_priv->id.port_num, &multicast->rec,
3928 ndev, gid_type,
3929 &event.param.ud.ah_attr);
3930 event.param.ud.qp_num = 0xFFFFFF;
3931 event.param.ud.qkey = be32_to_cpu(multicast->rec.qkey);
3932 if (ndev)
3933 dev_put(ndev);
3934 } else
3935 event.event = RDMA_CM_EVENT_MULTICAST_ERROR;
3936
3937 ret = id_priv->id.event_handler(&id_priv->id, &event);
3938 if (ret) {
3939 cma_exch(id_priv, RDMA_CM_DESTROYING);
3940 mutex_unlock(&id_priv->handler_mutex);
3941 rdma_destroy_id(&id_priv->id);
3942 return 0;
3943 }
3944
3945 out:
3946 mutex_unlock(&id_priv->handler_mutex);
3947 return 0;
3948 }
3949
cma_set_mgid(struct rdma_id_private * id_priv,struct sockaddr * addr,union ib_gid * mgid)3950 static void cma_set_mgid(struct rdma_id_private *id_priv,
3951 struct sockaddr *addr, union ib_gid *mgid)
3952 {
3953 unsigned char mc_map[MAX_ADDR_LEN];
3954 struct rdma_dev_addr *dev_addr = &id_priv->id.route.addr.dev_addr;
3955 struct sockaddr_in *sin = (struct sockaddr_in *) addr;
3956 struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *) addr;
3957
3958 if (cma_any_addr(addr)) {
3959 memset(mgid, 0, sizeof *mgid);
3960 } else if ((addr->sa_family == AF_INET6) &&
3961 ((be32_to_cpu(sin6->sin6_addr.s6_addr32[0]) & 0xFFF0FFFF) ==
3962 0xFF10A01B)) {
3963 /* IPv6 address is an SA assigned MGID. */
3964 memcpy(mgid, &sin6->sin6_addr, sizeof *mgid);
3965 } else if (addr->sa_family == AF_IB) {
3966 memcpy(mgid, &((struct sockaddr_ib *) addr)->sib_addr, sizeof *mgid);
3967 } else if ((addr->sa_family == AF_INET6)) {
3968 ipv6_ib_mc_map(&sin6->sin6_addr, dev_addr->broadcast, mc_map);
3969 if (id_priv->id.ps == RDMA_PS_UDP)
3970 mc_map[7] = 0x01; /* Use RDMA CM signature */
3971 *mgid = *(union ib_gid *) (mc_map + 4);
3972 } else {
3973 ip_ib_mc_map(sin->sin_addr.s_addr, dev_addr->broadcast, mc_map);
3974 if (id_priv->id.ps == RDMA_PS_UDP)
3975 mc_map[7] = 0x01; /* Use RDMA CM signature */
3976 *mgid = *(union ib_gid *) (mc_map + 4);
3977 }
3978 }
3979
cma_join_ib_multicast(struct rdma_id_private * id_priv,struct cma_multicast * mc)3980 static int cma_join_ib_multicast(struct rdma_id_private *id_priv,
3981 struct cma_multicast *mc)
3982 {
3983 struct ib_sa_mcmember_rec rec;
3984 struct rdma_dev_addr *dev_addr = &id_priv->id.route.addr.dev_addr;
3985 ib_sa_comp_mask comp_mask;
3986 int ret;
3987
3988 ib_addr_get_mgid(dev_addr, &rec.mgid);
3989 ret = ib_sa_get_mcmember_rec(id_priv->id.device, id_priv->id.port_num,
3990 &rec.mgid, &rec);
3991 if (ret)
3992 return ret;
3993
3994 ret = cma_set_qkey(id_priv, 0);
3995 if (ret)
3996 return ret;
3997
3998 cma_set_mgid(id_priv, (struct sockaddr *) &mc->addr, &rec.mgid);
3999 rec.qkey = cpu_to_be32(id_priv->qkey);
4000 rdma_addr_get_sgid(dev_addr, &rec.port_gid);
4001 rec.pkey = cpu_to_be16(ib_addr_get_pkey(dev_addr));
4002 rec.join_state = mc->join_state;
4003
4004 if ((rec.join_state == BIT(SENDONLY_FULLMEMBER_JOIN)) &&
4005 (!ib_sa_sendonly_fullmem_support(&sa_client,
4006 id_priv->id.device,
4007 id_priv->id.port_num))) {
4008 pr_warn("RDMA CM: %s port %u Unable to multicast join\n"
4009 "RDMA CM: SM doesn't support Send Only Full Member option\n",
4010 id_priv->id.device->name, id_priv->id.port_num);
4011 return -EOPNOTSUPP;
4012 }
4013
4014 comp_mask = IB_SA_MCMEMBER_REC_MGID | IB_SA_MCMEMBER_REC_PORT_GID |
4015 IB_SA_MCMEMBER_REC_PKEY | IB_SA_MCMEMBER_REC_JOIN_STATE |
4016 IB_SA_MCMEMBER_REC_QKEY | IB_SA_MCMEMBER_REC_SL |
4017 IB_SA_MCMEMBER_REC_FLOW_LABEL |
4018 IB_SA_MCMEMBER_REC_TRAFFIC_CLASS;
4019
4020 if (id_priv->id.ps == RDMA_PS_IPOIB)
4021 comp_mask |= IB_SA_MCMEMBER_REC_RATE |
4022 IB_SA_MCMEMBER_REC_RATE_SELECTOR |
4023 IB_SA_MCMEMBER_REC_MTU_SELECTOR |
4024 IB_SA_MCMEMBER_REC_MTU |
4025 IB_SA_MCMEMBER_REC_HOP_LIMIT;
4026
4027 mc->multicast.ib = ib_sa_join_multicast(&sa_client, id_priv->id.device,
4028 id_priv->id.port_num, &rec,
4029 comp_mask, GFP_KERNEL,
4030 cma_ib_mc_handler, mc);
4031 return PTR_ERR_OR_ZERO(mc->multicast.ib);
4032 }
4033
iboe_mcast_work_handler(struct work_struct * work)4034 static void iboe_mcast_work_handler(struct work_struct *work)
4035 {
4036 struct iboe_mcast_work *mw = container_of(work, struct iboe_mcast_work, work);
4037 struct cma_multicast *mc = mw->mc;
4038 struct ib_sa_multicast *m = mc->multicast.ib;
4039
4040 mc->multicast.ib->context = mc;
4041 cma_ib_mc_handler(0, m);
4042 kref_put(&mc->mcref, release_mc);
4043 kfree(mw);
4044 }
4045
cma_iboe_set_mgid(struct sockaddr * addr,union ib_gid * mgid,enum ib_gid_type gid_type)4046 static void cma_iboe_set_mgid(struct sockaddr *addr, union ib_gid *mgid,
4047 enum ib_gid_type gid_type)
4048 {
4049 struct sockaddr_in *sin = (struct sockaddr_in *)addr;
4050 struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)addr;
4051
4052 if (cma_any_addr(addr)) {
4053 memset(mgid, 0, sizeof *mgid);
4054 } else if (addr->sa_family == AF_INET6) {
4055 memcpy(mgid, &sin6->sin6_addr, sizeof *mgid);
4056 } else {
4057 mgid->raw[0] = (gid_type == IB_GID_TYPE_IB) ? 0xff : 0;
4058 mgid->raw[1] = (gid_type == IB_GID_TYPE_IB) ? 0x0e : 0;
4059 mgid->raw[2] = 0;
4060 mgid->raw[3] = 0;
4061 mgid->raw[4] = 0;
4062 mgid->raw[5] = 0;
4063 mgid->raw[6] = 0;
4064 mgid->raw[7] = 0;
4065 mgid->raw[8] = 0;
4066 mgid->raw[9] = 0;
4067 mgid->raw[10] = 0xff;
4068 mgid->raw[11] = 0xff;
4069 *(__be32 *)(&mgid->raw[12]) = sin->sin_addr.s_addr;
4070 }
4071 }
4072
cma_iboe_join_multicast(struct rdma_id_private * id_priv,struct cma_multicast * mc)4073 static int cma_iboe_join_multicast(struct rdma_id_private *id_priv,
4074 struct cma_multicast *mc)
4075 {
4076 struct iboe_mcast_work *work;
4077 struct rdma_dev_addr *dev_addr = &id_priv->id.route.addr.dev_addr;
4078 int err = 0;
4079 struct sockaddr *addr = (struct sockaddr *)&mc->addr;
4080 struct net_device *ndev = NULL;
4081 enum ib_gid_type gid_type;
4082 bool send_only;
4083
4084 send_only = mc->join_state == BIT(SENDONLY_FULLMEMBER_JOIN);
4085
4086 if (cma_zero_addr((struct sockaddr *)&mc->addr))
4087 return -EINVAL;
4088
4089 work = kzalloc(sizeof *work, GFP_KERNEL);
4090 if (!work)
4091 return -ENOMEM;
4092
4093 mc->multicast.ib = kzalloc(sizeof(struct ib_sa_multicast), GFP_KERNEL);
4094 if (!mc->multicast.ib) {
4095 err = -ENOMEM;
4096 goto out1;
4097 }
4098
4099 gid_type = id_priv->cma_dev->default_gid_type[id_priv->id.port_num -
4100 rdma_start_port(id_priv->cma_dev->device)];
4101 cma_iboe_set_mgid(addr, &mc->multicast.ib->rec.mgid, gid_type);
4102
4103 mc->multicast.ib->rec.pkey = cpu_to_be16(0xffff);
4104 if (id_priv->id.ps == RDMA_PS_UDP)
4105 mc->multicast.ib->rec.qkey = cpu_to_be32(RDMA_UDP_QKEY);
4106
4107 if (dev_addr->bound_dev_if)
4108 ndev = dev_get_by_index(&init_net, dev_addr->bound_dev_if);
4109 if (!ndev) {
4110 err = -ENODEV;
4111 goto out2;
4112 }
4113 mc->multicast.ib->rec.rate = iboe_get_rate(ndev);
4114 mc->multicast.ib->rec.hop_limit = 1;
4115 mc->multicast.ib->rec.mtu = iboe_get_mtu(ndev->mtu);
4116
4117 if (addr->sa_family == AF_INET) {
4118 if (gid_type == IB_GID_TYPE_ROCE_UDP_ENCAP) {
4119 mc->multicast.ib->rec.hop_limit = IPV6_DEFAULT_HOPLIMIT;
4120 if (!send_only) {
4121 err = cma_igmp_send(ndev, &mc->multicast.ib->rec.mgid,
4122 true);
4123 if (!err)
4124 mc->igmp_joined = true;
4125 }
4126 }
4127 } else {
4128 if (gid_type == IB_GID_TYPE_ROCE_UDP_ENCAP)
4129 err = -ENOTSUPP;
4130 }
4131 dev_put(ndev);
4132 if (err || !mc->multicast.ib->rec.mtu) {
4133 if (!err)
4134 err = -EINVAL;
4135 goto out2;
4136 }
4137 rdma_ip2gid((struct sockaddr *)&id_priv->id.route.addr.src_addr,
4138 &mc->multicast.ib->rec.port_gid);
4139 work->id = id_priv;
4140 work->mc = mc;
4141 INIT_WORK(&work->work, iboe_mcast_work_handler);
4142 kref_get(&mc->mcref);
4143 queue_work(cma_wq, &work->work);
4144
4145 return 0;
4146
4147 out2:
4148 kfree(mc->multicast.ib);
4149 out1:
4150 kfree(work);
4151 return err;
4152 }
4153
rdma_join_multicast(struct rdma_cm_id * id,struct sockaddr * addr,u8 join_state,void * context)4154 int rdma_join_multicast(struct rdma_cm_id *id, struct sockaddr *addr,
4155 u8 join_state, void *context)
4156 {
4157 struct rdma_id_private *id_priv;
4158 struct cma_multicast *mc;
4159 int ret;
4160
4161 if (!id->device)
4162 return -EINVAL;
4163
4164 id_priv = container_of(id, struct rdma_id_private, id);
4165 if (!cma_comp(id_priv, RDMA_CM_ADDR_BOUND) &&
4166 !cma_comp(id_priv, RDMA_CM_ADDR_RESOLVED))
4167 return -EINVAL;
4168
4169 mc = kmalloc(sizeof *mc, GFP_KERNEL);
4170 if (!mc)
4171 return -ENOMEM;
4172
4173 memcpy(&mc->addr, addr, rdma_addr_size(addr));
4174 mc->context = context;
4175 mc->id_priv = id_priv;
4176 mc->igmp_joined = false;
4177 mc->join_state = join_state;
4178 spin_lock(&id_priv->lock);
4179 list_add(&mc->list, &id_priv->mc_list);
4180 spin_unlock(&id_priv->lock);
4181
4182 if (rdma_protocol_roce(id->device, id->port_num)) {
4183 kref_init(&mc->mcref);
4184 ret = cma_iboe_join_multicast(id_priv, mc);
4185 } else if (rdma_cap_ib_mcast(id->device, id->port_num))
4186 ret = cma_join_ib_multicast(id_priv, mc);
4187 else
4188 ret = -ENOSYS;
4189
4190 if (ret) {
4191 spin_lock_irq(&id_priv->lock);
4192 list_del(&mc->list);
4193 spin_unlock_irq(&id_priv->lock);
4194 kfree(mc);
4195 }
4196 return ret;
4197 }
4198 EXPORT_SYMBOL(rdma_join_multicast);
4199
rdma_leave_multicast(struct rdma_cm_id * id,struct sockaddr * addr)4200 void rdma_leave_multicast(struct rdma_cm_id *id, struct sockaddr *addr)
4201 {
4202 struct rdma_id_private *id_priv;
4203 struct cma_multicast *mc;
4204
4205 id_priv = container_of(id, struct rdma_id_private, id);
4206 spin_lock_irq(&id_priv->lock);
4207 list_for_each_entry(mc, &id_priv->mc_list, list) {
4208 if (!memcmp(&mc->addr, addr, rdma_addr_size(addr))) {
4209 list_del(&mc->list);
4210 spin_unlock_irq(&id_priv->lock);
4211
4212 if (id->qp)
4213 ib_detach_mcast(id->qp,
4214 &mc->multicast.ib->rec.mgid,
4215 be16_to_cpu(mc->multicast.ib->rec.mlid));
4216
4217 BUG_ON(id_priv->cma_dev->device != id->device);
4218
4219 if (rdma_cap_ib_mcast(id->device, id->port_num)) {
4220 ib_sa_free_multicast(mc->multicast.ib);
4221 kfree(mc);
4222 } else if (rdma_protocol_roce(id->device, id->port_num)) {
4223 if (mc->igmp_joined) {
4224 struct rdma_dev_addr *dev_addr =
4225 &id->route.addr.dev_addr;
4226 struct net_device *ndev = NULL;
4227
4228 if (dev_addr->bound_dev_if)
4229 ndev = dev_get_by_index(&init_net,
4230 dev_addr->bound_dev_if);
4231 if (ndev) {
4232 cma_igmp_send(ndev,
4233 &mc->multicast.ib->rec.mgid,
4234 false);
4235 dev_put(ndev);
4236 }
4237 mc->igmp_joined = false;
4238 }
4239 kref_put(&mc->mcref, release_mc);
4240 }
4241 return;
4242 }
4243 }
4244 spin_unlock_irq(&id_priv->lock);
4245 }
4246 EXPORT_SYMBOL(rdma_leave_multicast);
4247
cma_netdev_change(struct net_device * ndev,struct rdma_id_private * id_priv)4248 static int cma_netdev_change(struct net_device *ndev, struct rdma_id_private *id_priv)
4249 {
4250 struct rdma_dev_addr *dev_addr;
4251 struct cma_ndev_work *work;
4252
4253 dev_addr = &id_priv->id.route.addr.dev_addr;
4254
4255 if ((dev_addr->bound_dev_if == ndev->ifindex) &&
4256 (net_eq(dev_net(ndev), dev_addr->net)) &&
4257 memcmp(dev_addr->src_dev_addr, ndev->dev_addr, ndev->addr_len)) {
4258 pr_info("RDMA CM addr change for ndev %s used by id %p\n",
4259 ndev->name, &id_priv->id);
4260 work = kzalloc(sizeof *work, GFP_KERNEL);
4261 if (!work)
4262 return -ENOMEM;
4263
4264 INIT_WORK(&work->work, cma_ndev_work_handler);
4265 work->id = id_priv;
4266 work->event.event = RDMA_CM_EVENT_ADDR_CHANGE;
4267 atomic_inc(&id_priv->refcount);
4268 queue_work(cma_wq, &work->work);
4269 }
4270
4271 return 0;
4272 }
4273
cma_netdev_callback(struct notifier_block * self,unsigned long event,void * ptr)4274 static int cma_netdev_callback(struct notifier_block *self, unsigned long event,
4275 void *ptr)
4276 {
4277 struct net_device *ndev = netdev_notifier_info_to_dev(ptr);
4278 struct cma_device *cma_dev;
4279 struct rdma_id_private *id_priv;
4280 int ret = NOTIFY_DONE;
4281
4282 if (event != NETDEV_BONDING_FAILOVER)
4283 return NOTIFY_DONE;
4284
4285 if (!(ndev->flags & IFF_MASTER) || !(ndev->priv_flags & IFF_BONDING))
4286 return NOTIFY_DONE;
4287
4288 mutex_lock(&lock);
4289 list_for_each_entry(cma_dev, &dev_list, list)
4290 list_for_each_entry(id_priv, &cma_dev->id_list, list) {
4291 ret = cma_netdev_change(ndev, id_priv);
4292 if (ret)
4293 goto out;
4294 }
4295
4296 out:
4297 mutex_unlock(&lock);
4298 return ret;
4299 }
4300
4301 static struct notifier_block cma_nb = {
4302 .notifier_call = cma_netdev_callback
4303 };
4304
cma_add_one(struct ib_device * device)4305 static void cma_add_one(struct ib_device *device)
4306 {
4307 struct cma_device *cma_dev;
4308 struct rdma_id_private *id_priv;
4309 unsigned int i;
4310 unsigned long supported_gids = 0;
4311
4312 cma_dev = kmalloc(sizeof *cma_dev, GFP_KERNEL);
4313 if (!cma_dev)
4314 return;
4315
4316 cma_dev->device = device;
4317 cma_dev->default_gid_type = kcalloc(device->phys_port_cnt,
4318 sizeof(*cma_dev->default_gid_type),
4319 GFP_KERNEL);
4320 if (!cma_dev->default_gid_type)
4321 goto free_cma_dev;
4322
4323 cma_dev->default_roce_tos = kcalloc(device->phys_port_cnt,
4324 sizeof(*cma_dev->default_roce_tos),
4325 GFP_KERNEL);
4326 if (!cma_dev->default_roce_tos)
4327 goto free_gid_type;
4328
4329 for (i = rdma_start_port(device); i <= rdma_end_port(device); i++) {
4330 supported_gids = roce_gid_type_mask_support(device, i);
4331 WARN_ON(!supported_gids);
4332 if (supported_gids & (1 << CMA_PREFERRED_ROCE_GID_TYPE))
4333 cma_dev->default_gid_type[i - rdma_start_port(device)] =
4334 CMA_PREFERRED_ROCE_GID_TYPE;
4335 else
4336 cma_dev->default_gid_type[i - rdma_start_port(device)] =
4337 find_first_bit(&supported_gids, BITS_PER_LONG);
4338 cma_dev->default_roce_tos[i - rdma_start_port(device)] = 0;
4339 }
4340
4341 init_completion(&cma_dev->comp);
4342 atomic_set(&cma_dev->refcount, 1);
4343 INIT_LIST_HEAD(&cma_dev->id_list);
4344 ib_set_client_data(device, &cma_client, cma_dev);
4345
4346 mutex_lock(&lock);
4347 list_add_tail(&cma_dev->list, &dev_list);
4348 list_for_each_entry(id_priv, &listen_any_list, list)
4349 cma_listen_on_dev(id_priv, cma_dev);
4350 mutex_unlock(&lock);
4351
4352 return;
4353
4354 free_gid_type:
4355 kfree(cma_dev->default_gid_type);
4356
4357 free_cma_dev:
4358 kfree(cma_dev);
4359
4360 return;
4361 }
4362
cma_remove_id_dev(struct rdma_id_private * id_priv)4363 static int cma_remove_id_dev(struct rdma_id_private *id_priv)
4364 {
4365 struct rdma_cm_event event;
4366 enum rdma_cm_state state;
4367 int ret = 0;
4368
4369 /* Record that we want to remove the device */
4370 state = cma_exch(id_priv, RDMA_CM_DEVICE_REMOVAL);
4371 if (state == RDMA_CM_DESTROYING)
4372 return 0;
4373
4374 cma_cancel_operation(id_priv, state);
4375 mutex_lock(&id_priv->handler_mutex);
4376
4377 /* Check for destruction from another callback. */
4378 if (!cma_comp(id_priv, RDMA_CM_DEVICE_REMOVAL))
4379 goto out;
4380
4381 memset(&event, 0, sizeof event);
4382 event.event = RDMA_CM_EVENT_DEVICE_REMOVAL;
4383 ret = id_priv->id.event_handler(&id_priv->id, &event);
4384 out:
4385 mutex_unlock(&id_priv->handler_mutex);
4386 return ret;
4387 }
4388
cma_process_remove(struct cma_device * cma_dev)4389 static void cma_process_remove(struct cma_device *cma_dev)
4390 {
4391 struct rdma_id_private *id_priv;
4392 int ret;
4393
4394 mutex_lock(&lock);
4395 while (!list_empty(&cma_dev->id_list)) {
4396 id_priv = list_entry(cma_dev->id_list.next,
4397 struct rdma_id_private, list);
4398
4399 list_del(&id_priv->listen_list);
4400 list_del_init(&id_priv->list);
4401 atomic_inc(&id_priv->refcount);
4402 mutex_unlock(&lock);
4403
4404 ret = id_priv->internal_id ? 1 : cma_remove_id_dev(id_priv);
4405 cma_deref_id(id_priv);
4406 if (ret)
4407 rdma_destroy_id(&id_priv->id);
4408
4409 mutex_lock(&lock);
4410 }
4411 mutex_unlock(&lock);
4412
4413 cma_deref_dev(cma_dev);
4414 wait_for_completion(&cma_dev->comp);
4415 }
4416
cma_remove_one(struct ib_device * device,void * client_data)4417 static void cma_remove_one(struct ib_device *device, void *client_data)
4418 {
4419 struct cma_device *cma_dev = client_data;
4420
4421 if (!cma_dev)
4422 return;
4423
4424 mutex_lock(&lock);
4425 list_del(&cma_dev->list);
4426 mutex_unlock(&lock);
4427
4428 cma_process_remove(cma_dev);
4429 kfree(cma_dev->default_roce_tos);
4430 kfree(cma_dev->default_gid_type);
4431 kfree(cma_dev);
4432 }
4433
cma_get_id_stats(struct sk_buff * skb,struct netlink_callback * cb)4434 static int cma_get_id_stats(struct sk_buff *skb, struct netlink_callback *cb)
4435 {
4436 struct nlmsghdr *nlh;
4437 struct rdma_cm_id_stats *id_stats;
4438 struct rdma_id_private *id_priv;
4439 struct rdma_cm_id *id = NULL;
4440 struct cma_device *cma_dev;
4441 int i_dev = 0, i_id = 0;
4442
4443 /*
4444 * We export all of the IDs as a sequence of messages. Each
4445 * ID gets its own netlink message.
4446 */
4447 mutex_lock(&lock);
4448
4449 list_for_each_entry(cma_dev, &dev_list, list) {
4450 if (i_dev < cb->args[0]) {
4451 i_dev++;
4452 continue;
4453 }
4454
4455 i_id = 0;
4456 list_for_each_entry(id_priv, &cma_dev->id_list, list) {
4457 if (i_id < cb->args[1]) {
4458 i_id++;
4459 continue;
4460 }
4461
4462 id_stats = ibnl_put_msg(skb, &nlh, cb->nlh->nlmsg_seq,
4463 sizeof *id_stats, RDMA_NL_RDMA_CM,
4464 RDMA_NL_RDMA_CM_ID_STATS,
4465 NLM_F_MULTI);
4466 if (!id_stats)
4467 goto out;
4468
4469 memset(id_stats, 0, sizeof *id_stats);
4470 id = &id_priv->id;
4471 id_stats->node_type = id->route.addr.dev_addr.dev_type;
4472 id_stats->port_num = id->port_num;
4473 id_stats->bound_dev_if =
4474 id->route.addr.dev_addr.bound_dev_if;
4475
4476 if (ibnl_put_attr(skb, nlh,
4477 rdma_addr_size(cma_src_addr(id_priv)),
4478 cma_src_addr(id_priv),
4479 RDMA_NL_RDMA_CM_ATTR_SRC_ADDR))
4480 goto out;
4481 if (ibnl_put_attr(skb, nlh,
4482 rdma_addr_size(cma_dst_addr(id_priv)),
4483 cma_dst_addr(id_priv),
4484 RDMA_NL_RDMA_CM_ATTR_DST_ADDR))
4485 goto out;
4486
4487 id_stats->pid = id_priv->owner;
4488 id_stats->port_space = id->ps;
4489 id_stats->cm_state = id_priv->state;
4490 id_stats->qp_num = id_priv->qp_num;
4491 id_stats->qp_type = id->qp_type;
4492
4493 i_id++;
4494 nlmsg_end(skb, nlh);
4495 }
4496
4497 cb->args[1] = 0;
4498 i_dev++;
4499 }
4500
4501 out:
4502 mutex_unlock(&lock);
4503 cb->args[0] = i_dev;
4504 cb->args[1] = i_id;
4505
4506 return skb->len;
4507 }
4508
4509 static const struct rdma_nl_cbs cma_cb_table[RDMA_NL_RDMA_CM_NUM_OPS] = {
4510 [RDMA_NL_RDMA_CM_ID_STATS] = { .dump = cma_get_id_stats},
4511 };
4512
cma_init_net(struct net * net)4513 static int cma_init_net(struct net *net)
4514 {
4515 struct cma_pernet *pernet = cma_pernet(net);
4516
4517 idr_init(&pernet->tcp_ps);
4518 idr_init(&pernet->udp_ps);
4519 idr_init(&pernet->ipoib_ps);
4520 idr_init(&pernet->ib_ps);
4521
4522 return 0;
4523 }
4524
cma_exit_net(struct net * net)4525 static void cma_exit_net(struct net *net)
4526 {
4527 struct cma_pernet *pernet = cma_pernet(net);
4528
4529 idr_destroy(&pernet->tcp_ps);
4530 idr_destroy(&pernet->udp_ps);
4531 idr_destroy(&pernet->ipoib_ps);
4532 idr_destroy(&pernet->ib_ps);
4533 }
4534
4535 static struct pernet_operations cma_pernet_operations = {
4536 .init = cma_init_net,
4537 .exit = cma_exit_net,
4538 .id = &cma_pernet_id,
4539 .size = sizeof(struct cma_pernet),
4540 };
4541
cma_init(void)4542 static int __init cma_init(void)
4543 {
4544 int ret;
4545
4546 cma_wq = alloc_ordered_workqueue("rdma_cm", WQ_MEM_RECLAIM);
4547 if (!cma_wq)
4548 return -ENOMEM;
4549
4550 ret = register_pernet_subsys(&cma_pernet_operations);
4551 if (ret)
4552 goto err_wq;
4553
4554 ib_sa_register_client(&sa_client);
4555 rdma_addr_register_client(&addr_client);
4556 register_netdevice_notifier(&cma_nb);
4557
4558 ret = ib_register_client(&cma_client);
4559 if (ret)
4560 goto err;
4561
4562 rdma_nl_register(RDMA_NL_RDMA_CM, cma_cb_table);
4563 cma_configfs_init();
4564
4565 return 0;
4566
4567 err:
4568 unregister_netdevice_notifier(&cma_nb);
4569 rdma_addr_unregister_client(&addr_client);
4570 ib_sa_unregister_client(&sa_client);
4571 unregister_pernet_subsys(&cma_pernet_operations);
4572 err_wq:
4573 destroy_workqueue(cma_wq);
4574 return ret;
4575 }
4576
cma_cleanup(void)4577 static void __exit cma_cleanup(void)
4578 {
4579 cma_configfs_exit();
4580 rdma_nl_unregister(RDMA_NL_RDMA_CM);
4581 ib_unregister_client(&cma_client);
4582 unregister_netdevice_notifier(&cma_nb);
4583 rdma_addr_unregister_client(&addr_client);
4584 ib_sa_unregister_client(&sa_client);
4585 unregister_pernet_subsys(&cma_pernet_operations);
4586 destroy_workqueue(cma_wq);
4587 }
4588
4589 MODULE_ALIAS_RDMA_NETLINK(RDMA_NL_RDMA_CM, 1);
4590
4591 module_init(cma_init);
4592 module_exit(cma_cleanup);
4593