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