1/*
2 * lib/route/act.c       Action
3 *
4 *	This library is free software; you can redistribute it and/or
5 *	modify it under the terms of the GNU Lesser General Public
6 *	License as published by the Free Software Foundation version 2.1
7 *	of the License.
8 *
9 * Copyright (c) 2013 Cong Wang <xiyou.wangcong@gmail.com>
10 */
11
12/**
13 * @ingroup tc
14 * @defgroup act Action
15 * @{
16 */
17
18#include <netlink-private/netlink.h>
19#include <netlink-private/tc.h>
20#include <netlink/netlink.h>
21#include <netlink/utils.h>
22#include <netlink-private/route/tc-api.h>
23#include <netlink/route/link.h>
24
25
26static struct nl_object_ops act_obj_ops;
27static struct nl_cache_ops rtnl_act_ops;
28
29int rtnl_act_append(struct rtnl_act **head, struct rtnl_act *new)
30{
31	struct rtnl_act *p_act;
32	int count = 1;
33
34	if (*head == NULL) {
35		*head = new;
36		return 0;
37	}
38
39	p_act = *head;
40	while (p_act->a_next) {
41		++count;
42		p_act = p_act->a_next;
43	}
44
45	if (count > TCA_ACT_MAX_PRIO)
46		return -NLE_RANGE;
47
48	p_act->a_next = new;
49	return 0;
50}
51
52int rtnl_act_remove(struct rtnl_act **head, struct rtnl_act *act)
53{
54	struct rtnl_act *a, **ap;
55
56        for (ap = head; (a = *ap) != NULL; ap = &a->a_next)
57                if (a == act)
58                        break;
59        if (a) {
60                *ap = a->a_next;
61                a->a_next = NULL;
62                return 0;
63        }
64
65	return -NLE_OBJ_NOTFOUND;
66}
67
68static int rtnl_act_fill_one(struct nl_msg *msg, struct rtnl_act *act, int order)
69{
70	struct rtnl_tc *tc = TC_CAST(act);
71	struct rtnl_tc_ops *ops;
72	struct nlattr *nest;
73	int err = -NLE_NOMEM;
74
75	nest = nla_nest_start(msg, order);
76	if (!nest)
77		goto nla_put_failure;
78
79	if (tc->ce_mask & TCA_ATTR_KIND)
80	    NLA_PUT_STRING(msg, TCA_ACT_KIND, tc->tc_kind);
81
82	ops = rtnl_tc_get_ops(tc);
83	if (ops && (ops->to_msg_fill || ops->to_msg_fill_raw)) {
84		struct nlattr *opts;
85		void *data = rtnl_tc_data(tc);
86
87		if (ops->to_msg_fill) {
88			if (!(opts = nla_nest_start(msg, TCA_ACT_OPTIONS)))
89				goto nla_put_failure;
90
91			if ((err = ops->to_msg_fill(tc, data, msg)) < 0)
92				goto nla_put_failure;
93
94			nla_nest_end(msg, opts);
95		} else if ((err = ops->to_msg_fill_raw(tc, data, msg)) < 0)
96			goto nla_put_failure;
97	}
98	nla_nest_end(msg, nest);
99	return 0;
100
101nla_put_failure:
102	return err;
103}
104
105int rtnl_act_fill(struct nl_msg *msg, int attrtype, struct rtnl_act *act)
106{
107	struct rtnl_act *p_act = act;
108	struct nlattr *nest;
109	int err, order = 0;
110
111	nest = nla_nest_start(msg, attrtype);
112	if (!nest)
113		return -NLE_MSGSIZE;
114
115	while (p_act) {
116		err = rtnl_act_fill_one(msg, p_act, ++order);
117		if (err)
118			return err;
119		p_act = p_act->a_next;
120	}
121
122	nla_nest_end(msg, nest);
123	return 0;
124}
125
126static int rtnl_act_msg_build(struct rtnl_act *act, int type, int flags,
127		      struct nl_msg **result)
128{
129	struct nl_msg *msg;
130	struct tcamsg tcahdr = {
131		.tca_family = AF_UNSPEC,
132	};
133	int err = -NLE_MSGSIZE;
134
135	msg = nlmsg_alloc_simple(type, flags);
136	if (!msg)
137		return -NLE_NOMEM;
138
139	if (nlmsg_append(msg, &tcahdr, sizeof(tcahdr), NLMSG_ALIGNTO) < 0)
140		goto nla_put_failure;
141
142	err = rtnl_act_fill(msg, TCA_ACT_TAB, act);
143	if (err < 0)
144		goto nla_put_failure;
145
146	*result = msg;
147	return 0;
148
149nla_put_failure:
150	nlmsg_free(msg);
151	return err;
152}
153
154static int act_build(struct rtnl_act *act, int type, int flags,
155		     struct nl_msg **result)
156{
157	int err;
158
159	err = rtnl_act_msg_build(act, type, flags, result);
160	if (err < 0)
161		return err;
162	return 0;
163}
164
165/**
166 * @name Allocation/Freeing
167 * @{
168 */
169
170struct rtnl_act *rtnl_act_alloc(void)
171{
172	struct rtnl_tc *tc;
173
174	tc = TC_CAST(nl_object_alloc(&act_obj_ops));
175	if (tc)
176		tc->tc_type = RTNL_TC_TYPE_ACT;
177
178	return (struct rtnl_act *) tc;
179}
180
181void rtnl_act_get(struct rtnl_act *act)
182{
183	nl_object_get(OBJ_CAST(act));
184}
185
186void rtnl_act_put(struct rtnl_act *act)
187{
188	nl_object_put((struct nl_object *) act);
189}
190
191/** @} */
192
193/**
194 * @name Addition/Modification/Deletion
195 * @{
196 */
197
198/**
199 * Build a netlink message requesting the addition of an action
200 * @arg act		Action to add
201 * @arg flags		Additional netlink message flags
202 * @arg result		Pointer to store resulting netlink message
203 *
204 * The behaviour of this function is identical to rtnl_act_add() with
205 * the exception that it will not send the message but return it int the
206 * provided return pointer instead.
207 *
208 * @see rtnl_act_add()
209 *
210 * @return 0 on success or a negative error code.
211 */
212int rtnl_act_build_add_request(struct rtnl_act *act, int flags,
213			       struct nl_msg **result)
214{
215	return act_build(act, RTM_NEWACTION, flags, result);
216}
217
218/**
219 * Add/Update action
220 * @arg sk		Netlink socket
221 * @arg act		Action to add/update
222 * @arg flags		Additional netlink message flags
223 *
224 * Builds a \c RTM_NEWACTION netlink message requesting the addition
225 * of a new action and sends the message to the kernel. The
226 * configuration of the action is derived from the attributes of
227 * the specified traffic class.
228 *
229 * The following flags may be specified:
230 *  - \c NLM_F_CREATE:  Create action if it does not exist,
231 *                      otherwise -NLE_OBJ_NOTFOUND is returned.
232 *  - \c NLM_F_EXCL:    Return -NLE_EXISTS if an action with
233 *                      matching handle exists already.
234 *
235 * Existing actions with matching handles will be updated, unless
236 * the flag \c NLM_F_EXCL is specified. If no matching action
237 * exists, it will be created if the flag \c NLM_F_CREATE is set,
238 * otherwise the error -NLE_OBJ_NOTFOUND is returned.
239 *
240 * After sending, the function will wait for the ACK or an eventual
241 * error message to be received and will therefore block until the
242 * operation has been completed.
243 *
244 * @note Disabling auto-ack (nl_socket_disable_auto_ack()) will cause
245 *       this function to return immediately after sending. In this case,
246 *       it is the responsibility of the caller to handle any error
247 *       messages returned.
248 *
249 * @return 0 on success or a negative error code.
250 */
251int rtnl_act_add(struct nl_sock *sk, struct rtnl_act *act, int flags)
252{
253	struct nl_msg *msg;
254	int err;
255
256	if ((err = rtnl_act_build_add_request(act, flags, &msg)) < 0)
257		return err;
258
259	return nl_send_sync(sk, msg);
260}
261
262/**
263 * Build a netlink message to change action attributes
264 * @arg act		Action to change
265 * @arg flags		additional netlink message flags
266 * @arg result		Pointer to store resulting message.
267 *
268 * Builds a new netlink message requesting a change of a neigh
269 * attributes. The netlink message header isn't fully equipped with
270 * all relevant fields and must thus be sent out via nl_send_auto_complete()
271 * or supplemented as needed.
272 *
273 * @return 0 on success or a negative error code.
274 */
275int rtnl_act_build_change_request(struct rtnl_act *act, int flags,
276				  struct nl_msg **result)
277{
278	return act_build(act, RTM_NEWACTION, NLM_F_REPLACE | flags, result);
279}
280
281/**
282 * Change an action
283 * @arg sk		Netlink socket.
284 * @arg act		action to change
285 * @arg flags		additional netlink message flags
286 *
287 * Builds a netlink message by calling rtnl_act_build_change_request(),
288 * sends the request to the kernel and waits for the next ACK to be
289 * received and thus blocks until the request has been processed.
290 *
291 * @return 0 on sucess or a negative error if an error occured.
292 */
293int rtnl_act_change(struct nl_sock *sk, struct rtnl_act *act, int flags)
294{
295	struct nl_msg *msg;
296	int err;
297
298	if ((err = rtnl_act_build_change_request(act, flags, &msg)) < 0)
299		return err;
300
301	return nl_send_sync(sk, msg);
302}
303
304/**
305 * Build netlink message requesting the deletion of an action
306 * @arg act		Action to delete
307 * @arg flags		Additional netlink message flags
308 * @arg result		Pointer to store resulting netlink message
309 *
310 * The behaviour of this function is identical to rtnl_act_delete() with
311 * the exception that it will not send the message but return it in the
312 * provided return pointer instead.
313 *
314 * @see rtnl_act_delete()
315 *
316 * @return 0 on success or a negative error code.
317 */
318int rtnl_act_build_delete_request(struct rtnl_act *act, int flags,
319				  struct nl_msg **result)
320{
321	return act_build(act, RTM_DELACTION, flags, result);
322}
323
324/**
325 * Delete action
326 * @arg sk		Netlink socket
327 * @arg act		Action to delete
328 * @arg flags		Additional netlink message flags
329 *
330 * Builds a \c RTM_DELACTION netlink message requesting the deletion
331 * of an action and sends the message to the kernel.
332 *
333 * The message is constructed out of the following attributes:
334 * - \c ifindex (required)
335 * - \c prio (required)
336 * - \c protocol (required)
337 * - \c handle (required)
338 * - \c parent (optional, if not specified parent equals root-qdisc)
339 * - \c kind (optional, must match if provided)
340 *
341 * All other action attributes including all class type specific
342 * attributes are ignored.
343 *
344 * After sending, the function will wait for the ACK or an eventual
345 * error message to be received and will therefore block until the
346 * operation has been completed.
347 *
348 * @note Disabling auto-ack (nl_socket_disable_auto_ack()) will cause
349 *       this function to return immediately after sending. In this case,
350 *       it is the responsibility of the caller to handle any error
351 *       messages returned.
352 *
353 * @return 0 on success or a negative error code.
354 */
355int rtnl_act_delete(struct nl_sock *sk, struct rtnl_act *act, int flags)
356{
357	struct nl_msg *msg;
358	int err;
359
360	if ((err = rtnl_act_build_delete_request(act, flags, &msg)) < 0)
361		return err;
362
363	return nl_send_sync(sk, msg);
364}
365
366/** @} */
367
368static void act_dump_line(struct rtnl_tc *tc, struct nl_dump_params *p)
369{
370}
371
372void rtnl_act_put_all(struct rtnl_act **head)
373{
374	struct rtnl_act *curr, *next;
375
376	curr = *head;
377	while (curr) {
378		next = curr->a_next;
379		rtnl_act_put(curr);
380		curr = next;
381	}
382	*head = NULL;
383}
384
385int rtnl_act_parse(struct rtnl_act **head, struct nlattr *tb)
386{
387	struct rtnl_act *act;
388	struct rtnl_tc_ops *ops;
389	struct nlattr *tb2[TCA_ACT_MAX + 1];
390	struct nlattr *nla[TCA_ACT_MAX_PRIO + 1];
391	char kind[TCKINDSIZ];
392	int err, i;
393
394	err = nla_parse(nla, TCA_ACT_MAX_PRIO, nla_data(tb),
395			NLMSG_ALIGN(nla_len(tb)), NULL);
396	if (err < 0)
397		return err;
398
399	for (i = 0; i < TCA_ACT_MAX_PRIO; i++) {
400		struct rtnl_tc *tc;
401
402		if (nla[i] == NULL)
403			continue;
404
405		act = rtnl_act_alloc();
406		if (!act) {
407			err = -NLE_NOMEM;
408			goto err_free;
409		}
410		tc = TC_CAST(act);
411		err = nla_parse(tb2, TCA_ACT_MAX, nla_data(nla[i]),
412				nla_len(nla[i]), NULL);
413		if (err < 0)
414			goto err_free;
415
416		if (tb2[TCA_ACT_KIND] == NULL) {
417			err = -NLE_MISSING_ATTR;
418			goto err_free;
419		}
420
421		nla_strlcpy(kind, tb2[TCA_ACT_KIND], sizeof(kind));
422		rtnl_tc_set_kind(tc, kind);
423
424		if (tb2[TCA_ACT_OPTIONS]) {
425			tc->tc_opts = nl_data_alloc_attr(tb2[TCA_ACT_OPTIONS]);
426			if (!tc->tc_opts) {
427				err = -NLE_NOMEM;
428				goto err_free;
429			}
430			tc->ce_mask |= TCA_ATTR_OPTS;
431		}
432
433		ops = rtnl_tc_get_ops(tc);
434		if (ops && ops->to_msg_parser) {
435			void *data = rtnl_tc_data(tc);
436
437			if (!data) {
438				err = -NLE_NOMEM;
439				goto err_free;
440			}
441
442			err = ops->to_msg_parser(tc, data);
443			if (err < 0)
444				goto err_free;
445		}
446		err = rtnl_act_append(head, act);
447		if (err < 0)
448			goto err_free;
449	}
450	return 0;
451
452err_free:
453	rtnl_act_put (act);
454	rtnl_act_put_all(head);
455
456	return err;
457}
458
459static int rtnl_act_msg_parse(struct nlmsghdr *n, struct rtnl_act **act)
460{
461	struct rtnl_tc *tc = TC_CAST(*act);
462	struct nl_cache *link_cache;
463	struct nlattr *tb[TCAA_MAX + 1];
464	struct tcamsg *tm;
465	int err;
466
467	tc->ce_msgtype = n->nlmsg_type;
468
469	err = nlmsg_parse(n, sizeof(*tm), tb, TCAA_MAX, NULL);
470	if (err < 0)
471		return err;
472
473	tm = nlmsg_data(n);
474	tc->tc_family  = tm->tca_family;
475
476	if (tb[TCA_ACT_TAB] == NULL)
477		return -NLE_MISSING_ATTR;
478
479	err = rtnl_act_parse(act, tb[TCA_ACT_TAB]);
480	if (err < 0)
481		return err;
482
483	if ((link_cache = __nl_cache_mngt_require("route/link"))) {
484		struct rtnl_link *link;
485
486		if ((link = rtnl_link_get(link_cache, tc->tc_ifindex))) {
487			rtnl_tc_set_link(tc, link);
488
489			/* rtnl_tc_set_link incs refcnt */
490			rtnl_link_put(link);
491		}
492	}
493
494	return 0;
495}
496static int act_msg_parser(struct nl_cache_ops *ops, struct sockaddr_nl *who,
497			  struct nlmsghdr *nlh, struct nl_parser_param *pp)
498{
499	struct rtnl_act *act, *p_act;
500	int err;
501
502	if (!(act = rtnl_act_alloc()))
503		return -NLE_NOMEM;
504
505	if ((err = rtnl_act_msg_parse(nlh, &act)) < 0)
506		goto errout;
507
508	p_act = act;
509	while(p_act) {
510		err = pp->pp_cb(OBJ_CAST(act), pp);
511		if (err)
512			break;
513		p_act = p_act->a_next;
514	}
515errout:
516	rtnl_act_put(act);
517
518	return err;
519}
520
521static int act_request_update(struct nl_cache *cache, struct nl_sock *sk)
522{
523	struct tcamsg tcahdr = {
524		.tca_family = AF_UNSPEC,
525	};
526
527	return nl_send_simple(sk, RTM_GETACTION, NLM_F_DUMP, &tcahdr,
528			      sizeof(tcahdr));
529}
530
531static struct rtnl_tc_type_ops act_ops = {
532	.tt_type		= RTNL_TC_TYPE_ACT,
533	.tt_dump_prefix		= "act",
534	.tt_dump = {
535		[NL_DUMP_LINE]	= act_dump_line,
536	},
537};
538
539static struct nl_cache_ops rtnl_act_ops = {
540	.co_name		= "route/act",
541	.co_hdrsize		= sizeof(struct tcmsg),
542	.co_msgtypes		= {
543					{ RTM_NEWACTION, NL_ACT_NEW, "new" },
544					{ RTM_DELACTION, NL_ACT_DEL, "del" },
545					{ RTM_GETACTION, NL_ACT_GET, "get" },
546					END_OF_MSGTYPES_LIST,
547				  },
548	.co_protocol		= NETLINK_ROUTE,
549	.co_request_update	= act_request_update,
550	.co_msg_parser		= act_msg_parser,
551	.co_obj_ops		= &act_obj_ops,
552};
553
554static struct nl_object_ops act_obj_ops = {
555	.oo_name		= "route/act",
556	.oo_size		= sizeof(struct rtnl_act),
557	.oo_free_data		= rtnl_tc_free_data,
558	.oo_clone		= rtnl_tc_clone,
559	.oo_dump = {
560	    [NL_DUMP_LINE]	= rtnl_tc_dump_line,
561	    [NL_DUMP_DETAILS]	= rtnl_tc_dump_details,
562	    [NL_DUMP_STATS]	= rtnl_tc_dump_stats,
563	},
564	.oo_compare		= rtnl_tc_compare,
565	.oo_id_attrs		= (TCA_ATTR_IFINDEX | TCA_ATTR_HANDLE),
566};
567
568static void __init act_init(void)
569{
570	rtnl_tc_type_register(&act_ops);
571	nl_cache_mngt_register(&rtnl_act_ops);
572}
573
574static void __exit act_exit(void)
575{
576	nl_cache_mngt_unregister(&rtnl_act_ops);
577	rtnl_tc_type_unregister(&act_ops);
578}
579
580/** @} */
581