xref: /linux/drivers/infiniband/sw/rxe/rxe_mcast.c (revision 01414b70cb6f7a5911b65de0cc97225061f60a59)
1 // SPDX-License-Identifier: GPL-2.0 OR Linux-OpenIB
2 /*
3  * Copyright (c) 2022 Hewlett Packard Enterprise, Inc. All rights reserved.
4  * Copyright (c) 2016 Mellanox Technologies Ltd. All rights reserved.
5  * Copyright (c) 2015 System Fabric Works, Inc. All rights reserved.
6  */
7 
8 /*
9  * rxe_mcast.c implements driver support for multicast transport.
10  * It is based on two data structures struct rxe_mcg ('mcg') and
11  * struct rxe_mca ('mca'). An mcg is allocated each time a qp is
12  * attached to a new mgid for the first time. These are indexed by
13  * a red-black tree using the mgid. This data structure is searched
14  * for the mcg when a multicast packet is received and when another
15  * qp is attached to the same mgid. It is cleaned up when the last qp
16  * is detached from the mcg. Each time a qp is attached to an mcg an
17  * mca is created. It holds a pointer to the qp and is added to a list
18  * of qp's that are attached to the mcg. The qp_list is used to replicate
19  * mcast packets in the rxe receive path.
20  */
21 
22 #include "rxe.h"
23 
24 /**
25  * rxe_mcast_add - add multicast address to rxe device
26  * @rxe: rxe device object
27  * @mgid: multicast address as a gid
28  *
29  * Returns 0 on success else an error
30  */
rxe_mcast_add(struct rxe_dev * rxe,union ib_gid * mgid)31 static int rxe_mcast_add(struct rxe_dev *rxe, union ib_gid *mgid)
32 {
33 	unsigned char ll_addr[ETH_ALEN];
34 	struct net_device *ndev;
35 	int ret;
36 
37 	ndev = ib_device_get_netdev(&rxe->ib_dev, 1);
38 	if (!ndev)
39 		return -ENODEV;
40 
41 	ipv6_eth_mc_map((struct in6_addr *)mgid->raw, ll_addr);
42 
43 	ret = dev_mc_add(ndev, ll_addr);
44 	dev_put(ndev);
45 
46 	return ret;
47 }
48 
49 /**
50  * rxe_mcast_del - delete multicast address from rxe device
51  * @rxe: rxe device object
52  * @mgid: multicast address as a gid
53  *
54  * Returns 0 on success else an error
55  */
rxe_mcast_del(struct rxe_dev * rxe,union ib_gid * mgid)56 static int rxe_mcast_del(struct rxe_dev *rxe, union ib_gid *mgid)
57 {
58 	unsigned char ll_addr[ETH_ALEN];
59 	struct net_device *ndev;
60 	int ret;
61 
62 	ndev = ib_device_get_netdev(&rxe->ib_dev, 1);
63 	if (!ndev)
64 		return -ENODEV;
65 
66 	ipv6_eth_mc_map((struct in6_addr *)mgid->raw, ll_addr);
67 
68 	ret = dev_mc_del(ndev, ll_addr);
69 	dev_put(ndev);
70 
71 	return ret;
72 }
73 
74 /**
75  * __rxe_insert_mcg - insert an mcg into red-black tree (rxe->mcg_tree)
76  * @mcg: mcg object with an embedded red-black tree node
77  *
78  * Context: caller must hold a reference to mcg and rxe->mcg_lock and
79  * is responsible to avoid adding the same mcg twice to the tree.
80  */
__rxe_insert_mcg(struct rxe_mcg * mcg)81 static void __rxe_insert_mcg(struct rxe_mcg *mcg)
82 {
83 	struct rb_root *tree = &mcg->rxe->mcg_tree;
84 	struct rb_node **link = &tree->rb_node;
85 	struct rb_node *node = NULL;
86 	struct rxe_mcg *tmp;
87 	int cmp;
88 
89 	while (*link) {
90 		node = *link;
91 		tmp = rb_entry(node, struct rxe_mcg, node);
92 
93 		cmp = memcmp(&tmp->mgid, &mcg->mgid, sizeof(mcg->mgid));
94 		if (cmp > 0)
95 			link = &(*link)->rb_left;
96 		else
97 			link = &(*link)->rb_right;
98 	}
99 
100 	rb_link_node(&mcg->node, node, link);
101 	rb_insert_color(&mcg->node, tree);
102 }
103 
104 /**
105  * __rxe_remove_mcg - remove an mcg from red-black tree holding lock
106  * @mcg: mcast group object with an embedded red-black tree node
107  *
108  * Context: caller must hold a reference to mcg and rxe->mcg_lock
109  */
__rxe_remove_mcg(struct rxe_mcg * mcg)110 static void __rxe_remove_mcg(struct rxe_mcg *mcg)
111 {
112 	rb_erase(&mcg->node, &mcg->rxe->mcg_tree);
113 }
114 
115 /**
116  * __rxe_lookup_mcg - lookup mcg in rxe->mcg_tree while holding lock
117  * @rxe: rxe device object
118  * @mgid: multicast IP address
119  *
120  * Context: caller must hold rxe->mcg_lock
121  * Returns: mcg on success and takes a ref to mcg else NULL
122  */
__rxe_lookup_mcg(struct rxe_dev * rxe,union ib_gid * mgid)123 static struct rxe_mcg *__rxe_lookup_mcg(struct rxe_dev *rxe,
124 					union ib_gid *mgid)
125 {
126 	struct rb_root *tree = &rxe->mcg_tree;
127 	struct rxe_mcg *mcg;
128 	struct rb_node *node;
129 	int cmp;
130 
131 	node = tree->rb_node;
132 
133 	while (node) {
134 		mcg = rb_entry(node, struct rxe_mcg, node);
135 
136 		cmp = memcmp(&mcg->mgid, mgid, sizeof(*mgid));
137 
138 		if (cmp > 0)
139 			node = node->rb_left;
140 		else if (cmp < 0)
141 			node = node->rb_right;
142 		else
143 			break;
144 	}
145 
146 	if (node) {
147 		kref_get(&mcg->ref_cnt);
148 		return mcg;
149 	}
150 
151 	return NULL;
152 }
153 
154 /**
155  * rxe_lookup_mcg - lookup up mcg in red-back tree
156  * @rxe: rxe device object
157  * @mgid: multicast IP address
158  *
159  * Returns: mcg if found else NULL
160  */
rxe_lookup_mcg(struct rxe_dev * rxe,union ib_gid * mgid)161 struct rxe_mcg *rxe_lookup_mcg(struct rxe_dev *rxe, union ib_gid *mgid)
162 {
163 	struct rxe_mcg *mcg;
164 
165 	spin_lock_bh(&rxe->mcg_lock);
166 	mcg = __rxe_lookup_mcg(rxe, mgid);
167 	spin_unlock_bh(&rxe->mcg_lock);
168 
169 	return mcg;
170 }
171 
172 /**
173  * __rxe_init_mcg - initialize a new mcg
174  * @rxe: rxe device
175  * @mgid: multicast address as a gid
176  * @mcg: new mcg object
177  *
178  * Initializes the mcg fields. The mcg is private and not yet visible in
179  * mcg_tree, so this may run without rxe->mcg_lock; __rxe_publish_mcg()
180  * makes it visible under the lock once it is ready.
181  */
__rxe_init_mcg(struct rxe_dev * rxe,union ib_gid * mgid,struct rxe_mcg * mcg)182 static void __rxe_init_mcg(struct rxe_dev *rxe, union ib_gid *mgid,
183 			   struct rxe_mcg *mcg)
184 {
185 	kref_init(&mcg->ref_cnt);
186 	memcpy(&mcg->mgid, mgid, sizeof(mcg->mgid));
187 	INIT_LIST_HEAD(&mcg->qp_list);
188 	mcg->rxe = rxe;
189 }
190 
191 /**
192  * __rxe_publish_mcg - make a fully initialized mcg visible in mcg_tree
193  * @mcg: the mcg object
194  *
195  * Context: caller must hold rxe->mcg_lock and a reference on mcg
196  */
__rxe_publish_mcg(struct rxe_mcg * mcg)197 static void __rxe_publish_mcg(struct rxe_mcg *mcg)
198 {
199 	/* caller holds a ref on mcg but that will be dropped when mcg goes
200 	 * out of scope. We need to take a ref on the pointer that will be
201 	 * saved in the red-black tree by __rxe_insert_mcg and used to lookup
202 	 * mcg from mgid later. Inserting mcg makes it visible to outside so
203 	 * this is done last after the object is ready and the multicast
204 	 * address has been programmed.
205 	 */
206 	kref_get(&mcg->ref_cnt);
207 	__rxe_insert_mcg(mcg);
208 }
209 
210 /**
211  * rxe_get_mcg - lookup or allocate a mcg
212  * @rxe: rxe device object
213  * @mgid: multicast IP address as a gid
214  *
215  * Returns: mcg on success else ERR_PTR(error)
216  */
rxe_get_mcg(struct rxe_dev * rxe,union ib_gid * mgid)217 static struct rxe_mcg *rxe_get_mcg(struct rxe_dev *rxe, union ib_gid *mgid)
218 {
219 	struct rxe_mcg *mcg, *tmp;
220 	int err;
221 
222 	if (rxe->attr.max_mcast_grp == 0)
223 		return ERR_PTR(-EINVAL);
224 
225 	/* check to see if mcg already exists */
226 	mcg = rxe_lookup_mcg(rxe, mgid);
227 	if (mcg)
228 		return mcg;
229 
230 	/* check to see if we have reached limit */
231 	if (atomic_inc_return(&rxe->mcg_num) > rxe->attr.max_mcast_grp) {
232 		err = -ENOMEM;
233 		goto err_dec;
234 	}
235 
236 	/* speculative alloc of new mcg */
237 	mcg = kzalloc_obj(*mcg);
238 	if (!mcg) {
239 		err = -ENOMEM;
240 		goto err_dec;
241 	}
242 	__rxe_init_mcg(rxe, mgid, mcg);
243 
244 	/* program the multicast address while mcg is still private, before
245 	 * it is inserted into mcg_tree. dev_mc_add() may sleep so this must
246 	 * run outside mcg_lock. On failure mcg was never published, so a
247 	 * plain free is correct and the tree is untouched.
248 	 */
249 	err = rxe_mcast_add(rxe, mgid);
250 	if (err) {
251 		kfree(mcg);
252 		goto err_dec;
253 	}
254 
255 	spin_lock_bh(&rxe->mcg_lock);
256 	/* re-check to see if someone else just added it while we were adding
257 	 * the multicast address; if so use theirs and drop ours
258 	 */
259 	tmp = __rxe_lookup_mcg(rxe, mgid);
260 	if (tmp) {
261 		spin_unlock_bh(&rxe->mcg_lock);
262 		rxe_mcast_del(rxe, mgid);
263 		atomic_dec(&rxe->mcg_num);
264 		kfree(mcg);
265 		return tmp;
266 	}
267 
268 	__rxe_publish_mcg(mcg);
269 	spin_unlock_bh(&rxe->mcg_lock);
270 
271 	return mcg;
272 
273 err_dec:
274 	atomic_dec(&rxe->mcg_num);
275 	return ERR_PTR(err);
276 }
277 
278 /**
279  * rxe_cleanup_mcg - cleanup mcg for kref_put
280  * @kref: struct kref embnedded in mcg
281  */
rxe_cleanup_mcg(struct kref * kref)282 void rxe_cleanup_mcg(struct kref *kref)
283 {
284 	struct rxe_mcg *mcg = container_of(kref, typeof(*mcg), ref_cnt);
285 
286 	kfree(mcg);
287 }
288 
289 /**
290  * __rxe_destroy_mcg - destroy mcg object holding rxe->mcg_lock
291  * @mcg: the mcg object
292  *
293  * Context: caller is holding rxe->mcg_lock
294  * no qp's are attached to mcg
295  */
__rxe_destroy_mcg(struct rxe_mcg * mcg)296 static void __rxe_destroy_mcg(struct rxe_mcg *mcg)
297 {
298 	struct rxe_dev *rxe = mcg->rxe;
299 
300 	/* remove mcg from red-black tree then drop ref */
301 	__rxe_remove_mcg(mcg);
302 	kref_put(&mcg->ref_cnt, rxe_cleanup_mcg);
303 
304 	atomic_dec(&rxe->mcg_num);
305 }
306 
307 /**
308  * rxe_destroy_mcg - destroy mcg object
309  * @mcg: the mcg object
310  *
311  * Context: no qp's are attached to mcg
312  */
rxe_destroy_mcg(struct rxe_mcg * mcg)313 static void rxe_destroy_mcg(struct rxe_mcg *mcg)
314 {
315 	/* delete mcast address outside of lock */
316 	rxe_mcast_del(mcg->rxe, &mcg->mgid);
317 
318 	spin_lock_bh(&mcg->rxe->mcg_lock);
319 	__rxe_destroy_mcg(mcg);
320 	spin_unlock_bh(&mcg->rxe->mcg_lock);
321 }
322 
323 /**
324  * __rxe_init_mca - initialize a new mca holding lock
325  * @qp: qp object
326  * @mcg: mcg object
327  * @mca: empty space for new mca
328  *
329  * Context: caller must hold references on qp and mcg, rxe->mcg_lock
330  * and pass memory for new mca
331  *
332  * Returns: 0 on success else an error
333  */
__rxe_init_mca(struct rxe_qp * qp,struct rxe_mcg * mcg,struct rxe_mca * mca)334 static int __rxe_init_mca(struct rxe_qp *qp, struct rxe_mcg *mcg,
335 			  struct rxe_mca *mca)
336 {
337 	struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
338 	int n;
339 
340 	n = atomic_inc_return(&rxe->mcg_attach);
341 	if (n > rxe->attr.max_total_mcast_qp_attach) {
342 		atomic_dec(&rxe->mcg_attach);
343 		return -ENOMEM;
344 	}
345 
346 	n = atomic_inc_return(&mcg->qp_num);
347 	if (n > rxe->attr.max_mcast_qp_attach) {
348 		atomic_dec(&mcg->qp_num);
349 		atomic_dec(&rxe->mcg_attach);
350 		return -ENOMEM;
351 	}
352 
353 	atomic_inc(&qp->mcg_num);
354 
355 	rxe_get(qp);
356 	mca->qp = qp;
357 
358 	list_add_tail(&mca->qp_list, &mcg->qp_list);
359 
360 	return 0;
361 }
362 
363 /**
364  * rxe_attach_mcg - attach qp to mcg if not already attached
365  * @qp: qp object
366  * @mcg: mcg object
367  *
368  * Context: caller must hold reference on qp and mcg.
369  * Returns: 0 on success else an error
370  */
rxe_attach_mcg(struct rxe_mcg * mcg,struct rxe_qp * qp)371 static int rxe_attach_mcg(struct rxe_mcg *mcg, struct rxe_qp *qp)
372 {
373 	struct rxe_dev *rxe = mcg->rxe;
374 	struct rxe_mca *mca, *tmp;
375 	int err;
376 
377 	/* check to see if the qp is already a member of the group */
378 	spin_lock_bh(&rxe->mcg_lock);
379 	list_for_each_entry(mca, &mcg->qp_list, qp_list) {
380 		if (mca->qp == qp) {
381 			spin_unlock_bh(&rxe->mcg_lock);
382 			return 0;
383 		}
384 	}
385 	spin_unlock_bh(&rxe->mcg_lock);
386 
387 	/* speculative alloc new mca without using GFP_ATOMIC */
388 	mca = kzalloc_obj(*mca);
389 	if (!mca)
390 		return -ENOMEM;
391 
392 	spin_lock_bh(&rxe->mcg_lock);
393 	/* re-check to see if someone else just attached qp */
394 	list_for_each_entry(tmp, &mcg->qp_list, qp_list) {
395 		if (tmp->qp == qp) {
396 			kfree(mca);
397 			err = 0;
398 			goto out;
399 		}
400 	}
401 
402 	err = __rxe_init_mca(qp, mcg, mca);
403 	if (err)
404 		kfree(mca);
405 out:
406 	spin_unlock_bh(&rxe->mcg_lock);
407 	return err;
408 }
409 
410 /**
411  * __rxe_cleanup_mca - cleanup mca object holding lock
412  * @mca: mca object
413  * @mcg: mcg object
414  *
415  * Context: caller must hold a reference to mcg and rxe->mcg_lock
416  */
__rxe_cleanup_mca(struct rxe_mca * mca,struct rxe_mcg * mcg)417 static void __rxe_cleanup_mca(struct rxe_mca *mca, struct rxe_mcg *mcg)
418 {
419 	list_del(&mca->qp_list);
420 
421 	atomic_dec(&mcg->qp_num);
422 	atomic_dec(&mcg->rxe->mcg_attach);
423 	atomic_dec(&mca->qp->mcg_num);
424 	rxe_put(mca->qp);
425 
426 	kfree(mca);
427 }
428 
429 /**
430  * rxe_detach_mcg - detach qp from mcg
431  * @mcg: mcg object
432  * @qp: qp object
433  *
434  * Returns: 0 on success else an error if qp is not attached.
435  */
rxe_detach_mcg(struct rxe_mcg * mcg,struct rxe_qp * qp)436 static int rxe_detach_mcg(struct rxe_mcg *mcg, struct rxe_qp *qp)
437 {
438 	struct rxe_dev *rxe = mcg->rxe;
439 	struct rxe_mca *mca, *tmp;
440 
441 	spin_lock_bh(&rxe->mcg_lock);
442 	list_for_each_entry_safe(mca, tmp, &mcg->qp_list, qp_list) {
443 		if (mca->qp == qp) {
444 			__rxe_cleanup_mca(mca, mcg);
445 
446 			/* if the number of qp's attached to the
447 			 * mcast group falls to zero go ahead and
448 			 * tear it down. This will not free the
449 			 * object since we are still holding a ref
450 			 * from the caller
451 			 */
452 			if (atomic_read(&mcg->qp_num) <= 0)
453 				__rxe_destroy_mcg(mcg);
454 
455 			spin_unlock_bh(&rxe->mcg_lock);
456 			return 0;
457 		}
458 	}
459 
460 	/* we didn't find the qp on the list */
461 	spin_unlock_bh(&rxe->mcg_lock);
462 	return -EINVAL;
463 }
464 
465 /**
466  * rxe_attach_mcast - attach qp to multicast group (see IBA-11.3.1)
467  * @ibqp: (IB) qp object
468  * @mgid: multicast IP address
469  * @mlid: multicast LID, ignored for RoCEv2 (see IBA-A17.5.6)
470  *
471  * Returns: 0 on success else an errno
472  */
rxe_attach_mcast(struct ib_qp * ibqp,union ib_gid * mgid,u16 mlid)473 int rxe_attach_mcast(struct ib_qp *ibqp, union ib_gid *mgid, u16 mlid)
474 {
475 	int err;
476 	struct rxe_dev *rxe = to_rdev(ibqp->device);
477 	struct rxe_qp *qp = to_rqp(ibqp);
478 	struct rxe_mcg *mcg;
479 
480 	/* takes a ref on mcg if successful */
481 	mcg = rxe_get_mcg(rxe, mgid);
482 	if (IS_ERR(mcg))
483 		return PTR_ERR(mcg);
484 
485 	err = rxe_attach_mcg(mcg, qp);
486 
487 	/* if we failed to attach the first qp to mcg tear it down */
488 	if (atomic_read(&mcg->qp_num) == 0)
489 		rxe_destroy_mcg(mcg);
490 
491 	kref_put(&mcg->ref_cnt, rxe_cleanup_mcg);
492 
493 	return err;
494 }
495 
496 /**
497  * rxe_detach_mcast - detach qp from multicast group (see IBA-11.3.2)
498  * @ibqp: address of (IB) qp object
499  * @mgid: multicast IP address
500  * @mlid: multicast LID, ignored for RoCEv2 (see IBA-A17.5.6)
501  *
502  * Returns: 0 on success else an errno
503  */
rxe_detach_mcast(struct ib_qp * ibqp,union ib_gid * mgid,u16 mlid)504 int rxe_detach_mcast(struct ib_qp *ibqp, union ib_gid *mgid, u16 mlid)
505 {
506 	struct rxe_dev *rxe = to_rdev(ibqp->device);
507 	struct rxe_qp *qp = to_rqp(ibqp);
508 	struct rxe_mcg *mcg;
509 	int err;
510 
511 	mcg = rxe_lookup_mcg(rxe, mgid);
512 	if (!mcg)
513 		return -EINVAL;
514 
515 	err = rxe_detach_mcg(mcg, qp);
516 	kref_put(&mcg->ref_cnt, rxe_cleanup_mcg);
517 
518 	return err;
519 }
520