• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /* SPDX-License-Identifier: LGPL-2.1-only */
2 /*
3  * Copyright (C) 2012 Texas Instruments Incorporated - http://www.ti.com/
4  *
5  *
6  *  Redistribution and use in source and binary forms, with or without
7  *  modification, are permitted provided that the following conditions
8  *  are met:
9  *
10  *    Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  *
13  *    Redistributions in binary form must reproduce the above copyright
14  *    notice, this list of conditions and the following disclaimer in the
15  *    documentation and/or other materials provided with the
16  *    distribution.
17  *
18  *    Neither the name of Texas Instruments Incorporated nor the names of
19  *    its contributors may be used to endorse or promote products derived
20  *    from this software without specific prior written permission.
21  *
22  *  THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
23  *  "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
24  *  LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
25  *  A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
26  *  OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
27  *  SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
28  *  LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29  *  DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30  *  THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31  *  (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
32  *  OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33  *
34  */
35 
36 /**
37  * @ingroup xfrmnl
38  * @defgroup sp Security Policy
39  * @brief
40  */
41 
42 #include <netlink-private/netlink.h>
43 #include <netlink/netlink.h>
44 #include <netlink/cache.h>
45 #include <netlink/object.h>
46 #include <netlink/xfrm/selector.h>
47 #include <netlink/xfrm/lifetime.h>
48 #include <netlink/xfrm/template.h>
49 #include <netlink/xfrm/sp.h>
50 
51 /** @cond SKIP */
52 #define XFRM_SP_ATTR_SEL            0x01
53 #define XFRM_SP_ATTR_LTIME_CFG      0x02
54 #define XFRM_SP_ATTR_LTIME_CUR      0x04
55 #define XFRM_SP_ATTR_PRIO           0x08
56 #define XFRM_SP_ATTR_INDEX          0x10
57 #define XFRM_SP_ATTR_DIR            0x20
58 #define XFRM_SP_ATTR_ACTION         0x40
59 #define XFRM_SP_ATTR_FLAGS          0x80
60 #define XFRM_SP_ATTR_SHARE          0x100
61 #define XFRM_SP_ATTR_POLTYPE        0x200
62 #define XFRM_SP_ATTR_SECCTX         0x400
63 #define XFRM_SP_ATTR_TMPL           0x800
64 #define XFRM_SP_ATTR_MARK           0x1000
65 
66 static struct nl_cache_ops  xfrmnl_sp_ops;
67 static struct nl_object_ops xfrm_sp_obj_ops;
68 /** @endcond */
69 
xfrm_sp_alloc_data(struct nl_object * c)70 static void xfrm_sp_alloc_data(struct nl_object *c)
71 {
72 	struct xfrmnl_sp* sp =   nl_object_priv (c);
73 
74 	if ((sp->sel = xfrmnl_sel_alloc ()) == NULL)
75 		return;
76 
77 	if ((sp->lft = xfrmnl_ltime_cfg_alloc ()) == NULL)
78 		return;
79 
80 	nl_init_list_head(&sp->usertmpl_list);
81 
82 	return;
83 }
84 
xfrm_sp_free_data(struct nl_object * c)85 static void xfrm_sp_free_data(struct nl_object *c)
86 {
87 	struct xfrmnl_sp* sp =   nl_object_priv (c);
88 	struct xfrmnl_user_tmpl *utmpl, *tmp;
89 
90 	if (sp == NULL)
91 		return;
92 
93 	xfrmnl_sel_put (sp->sel);
94 	xfrmnl_ltime_cfg_put (sp->lft);
95 
96 	if (sp->sec_ctx) {
97 		free(sp->sec_ctx);
98 	}
99 
100 	nl_list_for_each_entry_safe(utmpl, tmp, &sp->usertmpl_list, utmpl_list) {
101 		xfrmnl_sp_remove_usertemplate (sp, utmpl);
102 		xfrmnl_user_tmpl_free (utmpl);
103 	}
104 }
105 
xfrm_sp_clone(struct nl_object * _dst,struct nl_object * _src)106 static int xfrm_sp_clone(struct nl_object *_dst, struct nl_object *_src)
107 {
108 	struct xfrmnl_sp*        dst = nl_object_priv(_dst);
109 	struct xfrmnl_sp*        src = nl_object_priv(_src);
110 	struct xfrmnl_user_tmpl *utmpl;
111 	struct xfrmnl_user_tmpl *new;
112 
113 	dst->sel = NULL;
114 	dst->lft = NULL;
115 	dst->sec_ctx = NULL;
116 	nl_init_list_head(&dst->usertmpl_list);
117 
118 	if (src->sel) {
119 		if ((dst->sel = xfrmnl_sel_clone (src->sel)) == NULL)
120 			return -NLE_NOMEM;
121 	}
122 
123 	if (src->lft) {
124 		if ((dst->lft = xfrmnl_ltime_cfg_clone (src->lft)) == NULL)
125 			return -NLE_NOMEM;
126 	}
127 
128 	if (src->sec_ctx) {
129 		uint32_t len =   sizeof (struct xfrmnl_user_sec_ctx) + src->sec_ctx->ctx_len;
130 
131 		if ((dst->sec_ctx = malloc (len)) == NULL)
132 			return -NLE_NOMEM;
133 		memcpy(dst->sec_ctx, src->sec_ctx, len);
134 	}
135 
136 	nl_list_for_each_entry(utmpl, &src->usertmpl_list, utmpl_list) {
137 		new = xfrmnl_user_tmpl_clone (utmpl);
138 		if (!new)
139 			return -NLE_NOMEM;
140 		xfrmnl_sp_add_usertemplate(dst, new);
141 	}
142 
143 	return 0;
144 }
145 
xfrm_sp_compare(struct nl_object * _a,struct nl_object * _b,uint64_t attrs,int flags)146 static uint64_t xfrm_sp_compare(struct nl_object *_a, struct nl_object *_b,
147 				uint64_t attrs, int flags)
148 {
149 	struct xfrmnl_sp* a  =   (struct xfrmnl_sp *) _a;
150 	struct xfrmnl_sp* b  =   (struct xfrmnl_sp *) _b;
151 	struct xfrmnl_user_tmpl *tmpl_a, *tmpl_b;
152 	uint64_t diff = 0;
153 
154 #define XFRM_SP_DIFF(ATTR, EXPR) ATTR_DIFF(attrs, XFRM_SP_ATTR_##ATTR, a, b, EXPR)
155 	diff |= XFRM_SP_DIFF(SEL,	xfrmnl_sel_cmp(a->sel, b->sel));
156 	diff |= XFRM_SP_DIFF(LTIME_CFG,	xfrmnl_ltime_cfg_cmp(a->lft, b->lft));
157 	diff |= XFRM_SP_DIFF(PRIO,	a->priority != b->priority);
158 	diff |= XFRM_SP_DIFF(INDEX,	a->index != b->index);
159 	diff |= XFRM_SP_DIFF(DIR,	a->dir != b->dir);
160 	diff |= XFRM_SP_DIFF(ACTION,	a->action != b->action);
161 	diff |= XFRM_SP_DIFF(FLAGS,	a->flags != b->flags);
162 	diff |= XFRM_SP_DIFF(SHARE,	a->share != b->share);
163 	diff |= XFRM_SP_DIFF(SECCTX,((a->sec_ctx->len != b->sec_ctx->len) ||
164 	                            (a->sec_ctx->exttype != b->sec_ctx->exttype) ||
165 	                            (a->sec_ctx->ctx_alg != b->sec_ctx->ctx_alg) ||
166 	                            (a->sec_ctx->ctx_doi != b->sec_ctx->ctx_doi) ||
167 	                            (a->sec_ctx->ctx_len != b->sec_ctx->ctx_len) ||
168 	                            strcmp(a->sec_ctx->ctx, b->sec_ctx->ctx)));
169 	diff |= XFRM_SP_DIFF(POLTYPE,(a->uptype.type != b->uptype.type));
170 	diff |= XFRM_SP_DIFF(TMPL,(a->nr_user_tmpl != b->nr_user_tmpl));
171 	diff |= XFRM_SP_DIFF(MARK,(a->mark.m != b->mark.m) ||
172 	                          (a->mark.v != b->mark.v));
173 
174 	/* Compare the templates */
175 	nl_list_for_each_entry(tmpl_b, &b->usertmpl_list, utmpl_list)
176 	nl_list_for_each_entry(tmpl_a, &a->usertmpl_list, utmpl_list)
177 	diff |= xfrmnl_user_tmpl_cmp (tmpl_a, tmpl_b);
178 #undef XFRM_SP_DIFF
179 
180 	return diff;
181 }
182 
183 /**
184  * @name XFRM SP Attribute Translations
185  * @{
186  */
187 static const struct trans_tbl sp_attrs[] = {
188 	__ADD(XFRM_SP_ATTR_SEL, selector),
189 	__ADD(XFRM_SP_ATTR_LTIME_CFG, lifetime_cfg),
190 	__ADD(XFRM_SP_ATTR_LTIME_CUR, lifetime_cur),
191 	__ADD(XFRM_SP_ATTR_PRIO, priority),
192 	__ADD(XFRM_SP_ATTR_INDEX, index),
193 	__ADD(XFRM_SP_ATTR_DIR, direction),
194 	__ADD(XFRM_SP_ATTR_ACTION, action),
195 	__ADD(XFRM_SP_ATTR_FLAGS, flags),
196 	__ADD(XFRM_SP_ATTR_SHARE, share),
197 	__ADD(XFRM_SP_ATTR_POLTYPE, policy_type),
198 	__ADD(XFRM_SP_ATTR_SECCTX, security_context),
199 	__ADD(XFRM_SP_ATTR_TMPL, user_template),
200 	__ADD(XFRM_SP_ATTR_MARK, mark),
201 };
202 
xfrm_sp_attrs2str(int attrs,char * buf,size_t len)203 static char* xfrm_sp_attrs2str(int attrs, char *buf, size_t len)
204 {
205 	return __flags2str (attrs, buf, len, sp_attrs, ARRAY_SIZE(sp_attrs));
206 }
207 /** @} */
208 
209 /**
210  * @name XFRM SP Action Translations
211  * @{
212  */
213 static const struct trans_tbl sa_actions[] = {
214 	__ADD(XFRM_POLICY_ALLOW, allow),
215 	__ADD(XFRM_POLICY_BLOCK, block),
216 };
217 
xfrmnl_sp_action2str(int action,char * buf,size_t len)218 char* xfrmnl_sp_action2str(int action, char *buf, size_t len)
219 {
220 	return __type2str (action, buf, len, sa_actions, ARRAY_SIZE(sa_actions));
221 }
222 
xfrmnl_sp_str2action(const char * name)223 int xfrmnl_sp_str2action(const char *name)
224 {
225 	return __str2type (name, sa_actions, ARRAY_SIZE(sa_actions));
226 }
227 /** @} */
228 
229 /**
230  * @name XFRM SP Flags Translations
231  * @{
232  */
233 static const struct trans_tbl sp_flags[] = {
234 	__ADD(XFRM_POLICY_LOCALOK, allow policy override by user),
235 	__ADD(XFRM_POLICY_ICMP, auto include ICMP in policy),
236 };
237 
xfrmnl_sp_flags2str(int flags,char * buf,size_t len)238 char* xfrmnl_sp_flags2str(int flags, char *buf, size_t len)
239 {
240 	return __flags2str (flags, buf, len, sp_flags, ARRAY_SIZE(sp_flags));
241 }
242 
xfrmnl_sp_str2flag(const char * name)243 int xfrmnl_sp_str2flag(const char *name)
244 {
245 	return __str2flags(name, sp_flags, ARRAY_SIZE(sp_flags));
246 }
247 /** @} */
248 
249 /**
250  * @name XFRM SP Type Translations
251  * @{
252  */
253 static const struct trans_tbl sp_types[] = {
254 	__ADD(XFRM_POLICY_TYPE_MAIN, main),
255 	__ADD(XFRM_POLICY_TYPE_SUB, sub),
256 	__ADD(XFRM_POLICY_TYPE_MAX, max),
257 	__ADD(XFRM_POLICY_TYPE_ANY, any),
258 };
259 
xfrmnl_sp_type2str(int type,char * buf,size_t len)260 char* xfrmnl_sp_type2str(int type, char *buf, size_t len)
261 {
262 	return __type2str(type, buf, len, sp_types, ARRAY_SIZE(sp_types));
263 }
264 
xfrmnl_sp_str2type(const char * name)265 int xfrmnl_sp_str2type(const char *name)
266 {
267 	return __str2type(name, sp_types, ARRAY_SIZE(sp_types));
268 }
269 /** @} */
270 
271 /**
272  * @name XFRM SP Direction Translations
273  * @{
274  */
275 static const struct trans_tbl sp_dir[] = {
276 	__ADD(XFRM_POLICY_IN, in),
277 	__ADD(XFRM_POLICY_OUT, out),
278 	__ADD(XFRM_POLICY_FWD, fwd),
279 	__ADD(XFRM_POLICY_MASK, mask),
280 };
281 
xfrmnl_sp_dir2str(int dir,char * buf,size_t len)282 char* xfrmnl_sp_dir2str(int dir, char *buf, size_t len)
283 {
284 	return __type2str (dir, buf, len, sp_dir, ARRAY_SIZE(sp_dir));
285 }
286 
xfrmnl_sp_str2dir(const char * name)287 int xfrmnl_sp_str2dir(const char *name)
288 {
289 	return __str2type (name, sp_dir, ARRAY_SIZE(sp_dir));
290 }
291 
xfrmnl_sp_index2dir(unsigned int index)292 int xfrmnl_sp_index2dir (unsigned int index)
293 {
294 	return index & 0x7;
295 }
296 /** @} */
297 
298 /**
299  * @name XFRM SP Share Translations
300  * @{
301  */
302 static const struct trans_tbl sp_share[] = {
303 	__ADD(XFRM_SHARE_ANY, any),
304 	__ADD(XFRM_SHARE_SESSION, session),
305 	__ADD(XFRM_SHARE_USER, user),
306 	__ADD(XFRM_SHARE_UNIQUE, unique),
307 };
308 
xfrmnl_sp_share2str(int share,char * buf,size_t len)309 char* xfrmnl_sp_share2str(int share, char *buf, size_t len)
310 {
311 	return __type2str (share, buf, len, sp_share, ARRAY_SIZE(sp_share));
312 }
313 
xfrmnl_sp_str2share(const char * name)314 int xfrmnl_sp_str2share(const char *name)
315 {
316 	return __str2type (name, sp_share, ARRAY_SIZE(sp_share));
317 }
318 /** @} */
319 
xfrm_sp_dump_line(struct nl_object * a,struct nl_dump_params * p)320 static void xfrm_sp_dump_line(struct nl_object *a, struct nl_dump_params *p)
321 {
322 	struct xfrmnl_sp*   sp  =   (struct xfrmnl_sp *) a;
323 	char                dir[32], action[32], share[32], flags[32];
324 	char                dst[INET6_ADDRSTRLEN+5], src[INET6_ADDRSTRLEN+5];
325 	time_t              add_time, use_time;
326 	struct tm           *add_time_tm, *use_time_tm;
327 
328 	nl_addr2str(xfrmnl_sel_get_saddr (sp->sel), src, sizeof(src));
329 	nl_addr2str (xfrmnl_sel_get_daddr (sp->sel), dst, sizeof (dst));
330 	nl_af2str (xfrmnl_sel_get_family (sp->sel), dir, 32);
331 	nl_dump_line(p, "src %s dst %s family: %s\n", src, dst, dir);
332 	nl_dump_line (p, "src port/mask: %d/%d dst port/mask: %d/%d\n",
333 	              xfrmnl_sel_get_dport (sp->sel), xfrmnl_sel_get_dportmask (sp->sel),
334 	              xfrmnl_sel_get_sport (sp->sel), xfrmnl_sel_get_sportmask (sp->sel));
335 	nl_dump_line (p, "protocol: %s ifindex: %u uid: %u\n",
336 	              nl_ip_proto2str (xfrmnl_sel_get_proto (sp->sel), dir, sizeof(dir)),
337 	              xfrmnl_sel_get_ifindex (sp->sel),
338 	              xfrmnl_sel_get_userid (sp->sel));
339 
340 	xfrmnl_sp_dir2str (sp->dir, dir, 32);
341 	xfrmnl_sp_action2str (sp->action, action, 32);
342 	xfrmnl_sp_share2str (sp->share, share, 32);
343 	xfrmnl_sp_flags2str (sp->flags, flags, 32);
344 	nl_dump_line(p, "\tdir: %s action: %s index: %u priority: %u share: %s flags: %s(0x%x) \n",
345 	             dir, action, sp->index, sp->priority, share, flags, sp->flags);
346 
347 	nl_dump_line(p, "\tlifetime configuration: \n");
348 	if (sp->lft->soft_byte_limit == XFRM_INF)
349 		sprintf (dir, "INF");
350 	else
351 		sprintf (dir, "%" PRIu64, sp->lft->soft_byte_limit);
352 	if (sp->lft->soft_packet_limit == XFRM_INF)
353 		sprintf (action, "INF");
354 	else
355 		sprintf (action, "%" PRIu64, sp->lft->soft_packet_limit);
356 	if (sp->lft->hard_byte_limit == XFRM_INF)
357 		sprintf (flags, "INF");
358 	else
359 		sprintf (flags, "%" PRIu64, sp->lft->hard_byte_limit);
360 	if (sp->lft->hard_packet_limit == XFRM_INF)
361 		sprintf (share, "INF");
362 	else
363 		sprintf (share, "%" PRIu64, sp->lft->hard_packet_limit);
364 	nl_dump_line(p, "\t\tsoft limit: %s (bytes), %s (packets) \n", dir,
365 		     action);
366 	nl_dump_line(p, "\t\thard limit: %s (bytes), %s (packets) \n", flags,
367 		     share);
368 	nl_dump_line(
369 		p,
370 		"\t\tsoft add_time: %llu (seconds), soft use_time: %llu (seconds) \n",
371 		(long long unsigned)sp->lft->soft_add_expires_seconds,
372 		(long long unsigned)sp->lft->soft_use_expires_seconds);
373 	nl_dump_line(
374 		p,
375 		"\t\thard add_time: %llu (seconds), hard use_time: %llu (seconds) \n",
376 		(long long unsigned)sp->lft->hard_add_expires_seconds,
377 		(long long unsigned)sp->lft->hard_use_expires_seconds);
378 
379 	nl_dump_line(p, "\tlifetime current: \n");
380 	nl_dump_line(p, "\t\t%llu bytes, %llu packets\n",
381 		     (long long unsigned)sp->curlft.bytes,
382 		     (long long unsigned)sp->curlft.packets);
383 
384 	if (sp->curlft.add_time != 0)
385 	{
386 		add_time = sp->curlft.add_time;
387 		add_time_tm = gmtime (&add_time);
388 		strftime (dst, INET6_ADDRSTRLEN+5, "%Y-%m-%d %H-%M-%S", add_time_tm);
389 	}
390 	else
391 	{
392 		sprintf (dst, "%s", "-");
393 	}
394 
395 	if (sp->curlft.use_time != 0)
396 	{
397 		use_time = sp->curlft.use_time;
398 		use_time_tm = gmtime (&use_time);
399 		strftime (src, INET6_ADDRSTRLEN+5, "%Y-%m-%d %H-%M-%S", use_time_tm);
400 	}
401 	else
402 	{
403 		sprintf (src, "%s", "-");
404 	}
405 	nl_dump_line(p, "\t\tadd_time: %s, use_time: %s\n", dst, src);
406 
407 	if (sp->ce_mask & XFRM_SP_ATTR_SECCTX)
408 	{
409 		nl_dump_line(p, "\tUser security context: \n");
410 		nl_dump_line(p, "\t\tlen: %d exttype: %d Algo: %d DOI: %d ctxlen: %d\n",
411 		             sp->sec_ctx->len, sp->sec_ctx->exttype,
412 		             sp->sec_ctx->ctx_alg, sp->sec_ctx->ctx_doi, sp->sec_ctx->ctx_len);
413 		nl_dump_line (p, "\t\tctx: %s \n", sp->sec_ctx->ctx);
414 	}
415 
416 	xfrmnl_sp_type2str (sp->uptype.type, flags, 32);
417 	if (sp->ce_mask & XFRM_SP_ATTR_POLTYPE)
418 		nl_dump_line(p, "\tUser policy type: %s\n", flags);
419 
420 	if (sp->ce_mask & XFRM_SP_ATTR_TMPL)
421 	{
422 		struct xfrmnl_user_tmpl*    utmpl;
423 
424 		nl_dump_line(p, "\tUser template: \n");
425 
426 		nl_list_for_each_entry(utmpl, &sp->usertmpl_list, utmpl_list)
427 			xfrmnl_user_tmpl_dump (utmpl, p);
428 	}
429 
430 	if (sp->ce_mask & XFRM_SP_ATTR_MARK)
431 		nl_dump_line(p, "\tMark mask: 0x%x Mark value: 0x%x\n", sp->mark.m, sp->mark.v);
432 
433 	nl_dump(p, "\n");
434 }
435 
xfrm_sp_dump_details(struct nl_object * a,struct nl_dump_params * p)436 static void xfrm_sp_dump_details(struct nl_object *a, struct nl_dump_params *p)
437 {
438 	xfrm_sp_dump_line(a, p);
439 }
440 
xfrm_sp_dump_stats(struct nl_object * a,struct nl_dump_params * p)441 static void xfrm_sp_dump_stats(struct nl_object *a, struct nl_dump_params *p)
442 {
443 	xfrm_sp_dump_details(a, p);
444 
445 	return;
446 }
447 
448 /**
449  * @name XFRM SP Object Allocation/Freeage
450  * @{
451  */
452 
xfrmnl_sp_alloc(void)453 struct xfrmnl_sp* xfrmnl_sp_alloc(void)
454 {
455 	return (struct xfrmnl_sp*) nl_object_alloc(&xfrm_sp_obj_ops);
456 }
457 
xfrmnl_sp_put(struct xfrmnl_sp * sp)458 void xfrmnl_sp_put(struct xfrmnl_sp* sp)
459 {
460 	nl_object_put((struct nl_object *) sp);
461 }
462 
463 /** @} */
464 
465 /**
466  * @name SP Cache Managament
467  * @{
468  */
469 
470 /**
471  * Build a SP cache including all SPs currently configured in the kernel.
472  * @arg sock		Netlink socket.
473  * @arg result		Pointer to store resulting cache.
474  *
475  * Allocates a new SP cache, initializes it properly and updates it
476  * to include all SPs currently configured in the kernel.
477  *
478  * @return 0 on success or a negative error code.
479  */
xfrmnl_sp_alloc_cache(struct nl_sock * sock,struct nl_cache ** result)480 int xfrmnl_sp_alloc_cache(struct nl_sock *sock, struct nl_cache **result)
481 {
482 	return nl_cache_alloc_and_fill(&xfrmnl_sp_ops, sock, result);
483 }
484 
485 /**
486  * Look up a SP by policy id and direction
487  * @arg cache		SP cache
488  * @arg index		Policy Id
489  * @arg dir         direction
490  * @return sp handle or NULL if no match was found.
491  */
xfrmnl_sp_get(struct nl_cache * cache,unsigned int index,unsigned int dir)492 struct xfrmnl_sp* xfrmnl_sp_get(struct nl_cache* cache, unsigned int index, unsigned int dir)
493 {
494 	struct xfrmnl_sp *sp;
495 
496 	//nl_list_for_each_entry(sp, &cache->c_items, ce_list) {
497 	for (sp = (struct xfrmnl_sp*)nl_cache_get_first (cache);
498 	     sp != NULL;
499 	     sp = (struct xfrmnl_sp*)nl_cache_get_next ((struct nl_object*)sp))
500 	{
501 		if (sp->index == index && sp->dir == dir)
502 		{
503 			nl_object_get((struct nl_object *) sp);
504 			return sp;
505 		}
506 	}
507 
508 	return NULL;
509 }
510 
511 
512 /** @} */
513 
514 
515 static struct nla_policy xfrm_sp_policy[XFRMA_MAX+1] = {
516 	[XFRMA_POLICY]          = { .minlen = sizeof(struct xfrm_userpolicy_info)},
517 	[XFRMA_SEC_CTX]         = { .minlen = sizeof(struct xfrm_sec_ctx) },
518 	[XFRMA_TMPL]            = { .minlen = sizeof(struct xfrm_user_tmpl) },
519 	[XFRMA_POLICY_TYPE]     = { .minlen = sizeof(struct xfrm_userpolicy_type)},
520 	[XFRMA_MARK]            = { .minlen = sizeof(struct xfrm_mark) },
521 };
522 
xfrm_sp_request_update(struct nl_cache * c,struct nl_sock * h)523 static int xfrm_sp_request_update(struct nl_cache *c, struct nl_sock *h)
524 {
525 	return nl_send_simple (h, XFRM_MSG_GETPOLICY, NLM_F_DUMP, NULL, 0);
526 }
527 
xfrmnl_sp_parse(struct nlmsghdr * n,struct xfrmnl_sp ** result)528 int xfrmnl_sp_parse(struct nlmsghdr *n, struct xfrmnl_sp **result)
529 {
530 	struct xfrmnl_sp                *sp;
531 	struct nlattr                   *tb[XFRMA_MAX + 1];
532 	struct xfrm_userpolicy_info     *sp_info;
533 	int                             len, err;
534 	struct nl_addr*                 addr;
535 
536 	sp = xfrmnl_sp_alloc();
537 	if (!sp) {
538 		err = -NLE_NOMEM;
539 		goto errout;
540 	}
541 
542 	sp->ce_msgtype = n->nlmsg_type;
543 	if (n->nlmsg_type == XFRM_MSG_DELPOLICY)
544 	{
545 		sp_info = (struct xfrm_userpolicy_info*)((char *)nlmsg_data(n) + sizeof (struct xfrm_userpolicy_id) + NLA_HDRLEN);
546 	}
547 	else
548 	{
549 		sp_info = nlmsg_data(n);
550 	}
551 
552 	err = nlmsg_parse(n, sizeof(struct xfrm_userpolicy_info), tb, XFRMA_MAX, xfrm_sp_policy);
553 	if (err < 0)
554 	{
555 		printf ("parse error: %d \n", err);
556 		goto errout;
557 	}
558 
559 	if (sp_info->sel.family == AF_INET)
560 		addr    = nl_addr_build (sp_info->sel.family, &sp_info->sel.daddr.a4, sizeof (sp_info->sel.daddr.a4));
561 	else
562 		addr    = nl_addr_build (sp_info->sel.family, &sp_info->sel.daddr.a6, sizeof (sp_info->sel.daddr.a6));
563 	nl_addr_set_prefixlen (addr, sp_info->sel.prefixlen_d);
564 	xfrmnl_sel_set_daddr (sp->sel, addr);
565 	xfrmnl_sel_set_prefixlen_d (sp->sel, sp_info->sel.prefixlen_d);
566 
567 	if (sp_info->sel.family == AF_INET)
568 		addr    = nl_addr_build (sp_info->sel.family, &sp_info->sel.saddr.a4, sizeof (sp_info->sel.saddr.a4));
569 	else
570 		addr    = nl_addr_build (sp_info->sel.family, &sp_info->sel.saddr.a6, sizeof (sp_info->sel.saddr.a6));
571 	nl_addr_set_prefixlen (addr, sp_info->sel.prefixlen_s);
572 	xfrmnl_sel_set_saddr (sp->sel, addr);
573 	xfrmnl_sel_set_prefixlen_s (sp->sel, sp_info->sel.prefixlen_s);
574 
575 	xfrmnl_sel_set_dport (sp->sel, ntohs (sp_info->sel.dport));
576 	xfrmnl_sel_set_dportmask (sp->sel, ntohs (sp_info->sel.dport_mask));
577 	xfrmnl_sel_set_sport (sp->sel, ntohs (sp_info->sel.sport));
578 	xfrmnl_sel_set_sportmask (sp->sel, ntohs (sp_info->sel.sport_mask));
579 	xfrmnl_sel_set_family (sp->sel, sp_info->sel.family);
580 	xfrmnl_sel_set_proto (sp->sel, sp_info->sel.proto);
581 	xfrmnl_sel_set_ifindex (sp->sel, sp_info->sel.ifindex);
582 	xfrmnl_sel_set_userid (sp->sel, sp_info->sel.user);
583 	sp->ce_mask             |= XFRM_SP_ATTR_SEL;
584 
585 	sp->lft->soft_byte_limit    =   sp_info->lft.soft_byte_limit;
586 	sp->lft->hard_byte_limit    =   sp_info->lft.hard_byte_limit;
587 	sp->lft->soft_packet_limit  =   sp_info->lft.soft_packet_limit;
588 	sp->lft->hard_packet_limit  =   sp_info->lft.hard_packet_limit;
589 	sp->lft->soft_add_expires_seconds   =   sp_info->lft.soft_add_expires_seconds;
590 	sp->lft->hard_add_expires_seconds   =   sp_info->lft.hard_add_expires_seconds;
591 	sp->lft->soft_use_expires_seconds   =   sp_info->lft.soft_use_expires_seconds;
592 	sp->lft->hard_use_expires_seconds   =   sp_info->lft.hard_use_expires_seconds;
593 	sp->ce_mask             |= XFRM_SP_ATTR_LTIME_CFG;
594 
595 	sp->curlft.bytes        = sp_info->curlft.bytes;
596 	sp->curlft.packets      = sp_info->curlft.packets;
597 	sp->curlft.add_time     = sp_info->curlft.add_time;
598 	sp->curlft.use_time     = sp_info->curlft.use_time;
599 	sp->ce_mask             |= XFRM_SP_ATTR_LTIME_CUR;
600 
601 	sp->priority            = sp_info->priority;
602 	sp->index               = sp_info->index;
603 	sp->dir                 = sp_info->dir;
604 	sp->action              = sp_info->action;
605 	sp->flags               = sp_info->flags;
606 	sp->share               = sp_info->share;
607 	sp->ce_mask             |= (XFRM_SP_ATTR_PRIO | XFRM_SP_ATTR_INDEX |
608 	                            XFRM_SP_ATTR_DIR | XFRM_SP_ATTR_ACTION |
609 	                            XFRM_SP_ATTR_FLAGS | XFRM_SP_ATTR_SHARE);
610 
611 	if (tb[XFRMA_SEC_CTX]) {
612 		struct xfrm_user_sec_ctx* ctx = nla_data(tb[XFRMA_SEC_CTX]);
613 		len = sizeof (struct xfrmnl_user_sec_ctx) + ctx->ctx_len;
614 		if ((sp->sec_ctx = calloc (1, len)) == NULL)
615 		{
616 			err = -NLE_NOMEM;
617 			goto errout;
618 		}
619 		memcpy ((void *)sp->sec_ctx, (void *)ctx, len);
620 		sp->ce_mask     |= XFRM_SP_ATTR_SECCTX;
621 	}
622 
623 	if (tb[XFRMA_POLICY_TYPE]) {
624 		struct xfrm_userpolicy_type* up = nla_data(tb[XFRMA_POLICY_TYPE]);
625 		memcpy ((void *)&sp->uptype, (void *)up, sizeof (struct xfrm_userpolicy_type));
626 		sp->ce_mask     |= XFRM_SP_ATTR_POLTYPE;
627 	}
628 
629 	if (tb[XFRMA_TMPL]) {
630 		struct xfrm_user_tmpl*      tmpl = nla_data(tb[XFRMA_TMPL]);
631 		struct xfrmnl_user_tmpl*    sputmpl;
632 		uint32_t                    i;
633 		uint32_t                    num_tmpls = nla_len(tb[XFRMA_TMPL]) / sizeof (*tmpl);
634 		struct  nl_addr*            addr;
635 
636 		for (i = 0; (i < num_tmpls) && (tmpl); i ++, tmpl++)
637 		{
638 			if ((sputmpl = xfrmnl_user_tmpl_alloc ()) == NULL)
639 			{
640 				err = -NLE_NOMEM;
641 				goto errout;
642 			}
643 
644 			if (tmpl->family == AF_INET)
645 				addr = nl_addr_build(tmpl->family, &tmpl->id.daddr.a4, sizeof (tmpl->id.daddr.a4));
646 			else
647 				addr = nl_addr_build(tmpl->family, &tmpl->id.daddr.a6, sizeof (tmpl->id.daddr.a6));
648 			xfrmnl_user_tmpl_set_daddr (sputmpl, addr);
649 			xfrmnl_user_tmpl_set_spi (sputmpl, ntohl(tmpl->id.spi));
650 			xfrmnl_user_tmpl_set_proto (sputmpl, tmpl->id.proto);
651 			xfrmnl_user_tmpl_set_family (sputmpl, tmpl->family);
652 
653 			if (tmpl->family == AF_INET)
654 				addr = nl_addr_build(tmpl->family, &tmpl->saddr.a4, sizeof (tmpl->saddr.a4));
655 			else
656 				addr = nl_addr_build(tmpl->family, &tmpl->saddr.a6, sizeof (tmpl->saddr.a6));
657 			xfrmnl_user_tmpl_set_saddr (sputmpl, addr);
658 
659 			xfrmnl_user_tmpl_set_reqid (sputmpl, tmpl->reqid);
660 			xfrmnl_user_tmpl_set_mode (sputmpl, tmpl->mode);
661 			xfrmnl_user_tmpl_set_share (sputmpl, tmpl->share);
662 			xfrmnl_user_tmpl_set_optional (sputmpl, tmpl->optional);
663 			xfrmnl_user_tmpl_set_aalgos (sputmpl, tmpl->aalgos);
664 			xfrmnl_user_tmpl_set_ealgos (sputmpl, tmpl->ealgos);
665 			xfrmnl_user_tmpl_set_calgos (sputmpl, tmpl->calgos);
666 			xfrmnl_sp_add_usertemplate (sp, sputmpl);
667 
668 			sp->ce_mask     |=  XFRM_SP_ATTR_TMPL;
669 		}
670 	}
671 
672 	if (tb[XFRMA_MARK]) {
673 		struct xfrm_mark* m =   nla_data(tb[XFRMA_MARK]);
674 		sp->mark.m  =   m->m;
675 		sp->mark.v  =   m->v;
676 		sp->ce_mask |= XFRM_SP_ATTR_MARK;
677 	}
678 
679 	*result = sp;
680 	return 0;
681 
682 errout:
683 	xfrmnl_sp_put(sp);
684 	return err;
685 }
686 
xfrm_sp_msg_parser(struct nl_cache_ops * ops,struct sockaddr_nl * who,struct nlmsghdr * n,struct nl_parser_param * pp)687 static int xfrm_sp_msg_parser(struct nl_cache_ops *ops, struct sockaddr_nl *who,
688 				struct nlmsghdr *n, struct nl_parser_param *pp)
689 {
690 	struct xfrmnl_sp*   sp;
691 	int                 err;
692 
693 	if ((err = xfrmnl_sp_parse(n, &sp)) < 0)
694 	{
695 		printf ("received error: %d \n", err);
696 		return err;
697 	}
698 
699 	err = pp->pp_cb((struct nl_object *) sp, pp);
700 
701 	xfrmnl_sp_put(sp);
702 	return err;
703 }
704 
705 /**
706  * @name XFRM SP Get
707  * @{
708  */
709 
xfrmnl_sp_build_get_request(unsigned int index,unsigned int dir,unsigned int mark_v,unsigned int mark_m,struct nl_msg ** result)710 int xfrmnl_sp_build_get_request(unsigned int index, unsigned int dir, unsigned int mark_v, unsigned int mark_m, struct nl_msg **result)
711 {
712 	struct nl_msg               *msg;
713 	struct xfrm_userpolicy_id   spid;
714 	struct xfrm_mark            mark;
715 
716 	memset(&spid, 0, sizeof(spid));
717 	spid.index          = index;
718 	spid.dir            = dir;
719 
720 	if (!(msg = nlmsg_alloc_simple(XFRM_MSG_GETPOLICY, 0)))
721 		return -NLE_NOMEM;
722 
723 	if (nlmsg_append(msg, &spid, sizeof(spid), NLMSG_ALIGNTO) < 0)
724 		goto nla_put_failure;
725 
726 	if ((mark_m & mark_v) != 0)
727 	{
728 		memset(&mark, 0, sizeof(struct xfrm_mark));
729 		mark.m = mark_m;
730 		mark.v = mark_v;
731 
732 		NLA_PUT (msg, XFRMA_MARK, sizeof (struct xfrm_mark), &mark);
733 	}
734 
735 	*result = msg;
736 	return 0;
737 
738 nla_put_failure:
739 	nlmsg_free(msg);
740 	return -NLE_MSGSIZE;
741 }
742 
xfrmnl_sp_get_kernel(struct nl_sock * sock,unsigned int index,unsigned int dir,unsigned int mark_v,unsigned int mark_m,struct xfrmnl_sp ** result)743 int xfrmnl_sp_get_kernel(struct nl_sock* sock, unsigned int index, unsigned int dir, unsigned int mark_v, unsigned int mark_m, struct xfrmnl_sp** result)
744 {
745 	struct nl_msg       *msg = NULL;
746 	struct nl_object    *obj;
747 	int err;
748 
749 	if ((err = xfrmnl_sp_build_get_request(index, dir, mark_m, mark_v, &msg)) < 0)
750 		return err;
751 
752 	err = nl_send_auto(sock, msg);
753 	nlmsg_free(msg);
754 	if (err < 0)
755 		return err;
756 
757 	if ((err = nl_pickup(sock, &xfrm_sp_msg_parser, &obj)) < 0)
758 		return err;
759 
760 	/* We have used xfrm_sp_msg_parser(), object is definitely a xfrm ae */
761 	*result = (struct xfrmnl_sp *) obj;
762 
763 	/* If an object has been returned, we also need to wait for the ACK */
764 	if (err == 0 && obj)
765 		nl_wait_for_ack(sock);
766 
767 	return 0;
768 }
769 
770 /** @} */
771 
build_xfrm_sp_message(struct xfrmnl_sp * tmpl,int cmd,int flags,struct nl_msg ** result)772 static int build_xfrm_sp_message(struct xfrmnl_sp *tmpl, int cmd, int flags, struct nl_msg **result)
773 {
774 	struct nl_msg*              msg;
775 	struct xfrm_userpolicy_info sp_info;
776 	uint32_t                    len;
777 	struct nl_addr*             addr;
778 
779 	if (!(tmpl->ce_mask & XFRM_SP_ATTR_DIR) ||
780 			(!(tmpl->ce_mask & XFRM_SP_ATTR_INDEX) &&
781 			 !(tmpl->ce_mask & XFRM_SP_ATTR_SEL)))
782 		return -NLE_MISSING_ATTR;
783 
784 	memset ((void*)&sp_info, 0, sizeof (sp_info));
785 	if (tmpl->ce_mask & XFRM_SP_ATTR_SEL)
786 	{
787 		addr = xfrmnl_sel_get_daddr (tmpl->sel);
788 		memcpy ((void*)&sp_info.sel.daddr, (void*)nl_addr_get_binary_addr (addr), sizeof (uint8_t) * nl_addr_get_len (addr));
789 		addr = xfrmnl_sel_get_saddr (tmpl->sel);
790 		memcpy ((void*)&sp_info.sel.saddr, (void*)nl_addr_get_binary_addr (addr), sizeof (uint8_t) * nl_addr_get_len (addr));
791 		sp_info.sel.dport       =   htons (xfrmnl_sel_get_dport (tmpl->sel));
792 		sp_info.sel.dport_mask  =   htons (xfrmnl_sel_get_dportmask (tmpl->sel));
793 		sp_info.sel.sport       =   htons (xfrmnl_sel_get_sport (tmpl->sel));
794 		sp_info.sel.sport_mask  =   htons (xfrmnl_sel_get_sportmask (tmpl->sel));
795 		sp_info.sel.family      =   xfrmnl_sel_get_family (tmpl->sel);
796 		sp_info.sel.prefixlen_d =   xfrmnl_sel_get_prefixlen_d (tmpl->sel);
797 		sp_info.sel.prefixlen_s =   xfrmnl_sel_get_prefixlen_s (tmpl->sel);
798 		sp_info.sel.proto       =   xfrmnl_sel_get_proto (tmpl->sel);
799 		sp_info.sel.ifindex     =   xfrmnl_sel_get_ifindex (tmpl->sel);
800 		sp_info.sel.user        =   xfrmnl_sel_get_userid (tmpl->sel);
801 	}
802 
803 	if (tmpl->ce_mask & XFRM_SP_ATTR_LTIME_CFG)
804 	{
805 		sp_info.lft.soft_byte_limit = xfrmnl_ltime_cfg_get_soft_bytelimit (tmpl->lft);
806 		sp_info.lft.hard_byte_limit = xfrmnl_ltime_cfg_get_hard_bytelimit (tmpl->lft);
807 		sp_info.lft.soft_packet_limit = xfrmnl_ltime_cfg_get_soft_packetlimit (tmpl->lft);
808 		sp_info.lft.hard_packet_limit = xfrmnl_ltime_cfg_get_hard_packetlimit (tmpl->lft);
809 		sp_info.lft.soft_add_expires_seconds = xfrmnl_ltime_cfg_get_soft_addexpires (tmpl->lft);
810 		sp_info.lft.hard_add_expires_seconds = xfrmnl_ltime_cfg_get_hard_addexpires (tmpl->lft);
811 		sp_info.lft.soft_use_expires_seconds = xfrmnl_ltime_cfg_get_soft_useexpires (tmpl->lft);
812 		sp_info.lft.hard_use_expires_seconds = xfrmnl_ltime_cfg_get_hard_useexpires (tmpl->lft);
813 	}
814 
815 	//Skip current lifetime: cur lifetime can be updated only via AE
816 
817 	if (tmpl->ce_mask & XFRM_SP_ATTR_PRIO)
818 		sp_info.priority    = tmpl->priority;
819 
820 	if (tmpl->ce_mask & XFRM_SP_ATTR_INDEX)
821 		sp_info.index       = tmpl->index;
822 
823 	if (tmpl->ce_mask & XFRM_SP_ATTR_DIR)
824 		sp_info.dir         = tmpl->dir;
825 
826 	if (tmpl->ce_mask & XFRM_SP_ATTR_ACTION)
827 		sp_info.action      = tmpl->action;
828 
829 	if (tmpl->ce_mask & XFRM_SP_ATTR_FLAGS)
830 		sp_info.flags       = tmpl->flags;
831 
832 	if (tmpl->ce_mask & XFRM_SP_ATTR_SHARE)
833 		sp_info.share       = tmpl->share;
834 
835 	msg = nlmsg_alloc_simple(cmd, flags);
836 	if (!msg)
837 		return -NLE_NOMEM;
838 
839 	if (nlmsg_append(msg, &sp_info, sizeof(sp_info), NLMSG_ALIGNTO) < 0)
840 		goto nla_put_failure;
841 
842 	if (tmpl->ce_mask & XFRM_SP_ATTR_SECCTX) {
843 		len = (sizeof (struct xfrm_user_sec_ctx)) + tmpl->sec_ctx->ctx_len;
844 		NLA_PUT (msg, XFRMA_SEC_CTX, len, tmpl->sec_ctx);
845 	}
846 
847 	if (tmpl->ce_mask & XFRM_SP_ATTR_POLTYPE) {
848 		len = sizeof (struct xfrm_userpolicy_type);
849 		NLA_PUT (msg, XFRMA_POLICY_TYPE, len, &tmpl->uptype);
850 	}
851 
852 	if (tmpl->ce_mask & XFRM_SP_ATTR_TMPL) {
853 		struct nlattr*              tmpls;
854 		struct xfrmnl_user_tmpl*    utmpl;
855 		struct nl_addr*             addr;
856 
857 		if (!(tmpls = nla_nest_start(msg, XFRMA_TMPL)))
858 			goto nla_put_failure;
859 
860 		nl_list_for_each_entry(utmpl, &tmpl->usertmpl_list, utmpl_list) {
861 			struct xfrm_user_tmpl*  tmpl;
862 
863 			tmpl = nlmsg_reserve(msg, sizeof(*tmpl), NLMSG_ALIGNTO);
864 			if (!tmpl)
865 				goto nla_put_failure;
866 			addr = xfrmnl_user_tmpl_get_daddr (utmpl);
867 			memcpy ((void *)&tmpl->id.daddr, nl_addr_get_binary_addr (addr),
868 			         nl_addr_get_len (addr));
869 			tmpl->id.spi    =   htonl(xfrmnl_user_tmpl_get_spi (utmpl));
870 			tmpl->id.proto  =   xfrmnl_user_tmpl_get_proto (utmpl);
871 			tmpl->family    =   xfrmnl_user_tmpl_get_family (utmpl);
872 			addr = xfrmnl_user_tmpl_get_saddr (utmpl);
873 			memcpy ((void *)&tmpl->saddr, nl_addr_get_binary_addr (addr),
874 			        nl_addr_get_len (addr));
875 			tmpl->reqid     =   xfrmnl_user_tmpl_get_reqid (utmpl);
876 			tmpl->mode      =   xfrmnl_user_tmpl_get_mode (utmpl);
877 			tmpl->share     =   xfrmnl_user_tmpl_get_share (utmpl);
878 			tmpl->optional  =   xfrmnl_user_tmpl_get_optional (utmpl);
879 			tmpl->aalgos    =   xfrmnl_user_tmpl_get_aalgos (utmpl);
880 			tmpl->ealgos    =   xfrmnl_user_tmpl_get_ealgos (utmpl);
881 			tmpl->calgos    =   xfrmnl_user_tmpl_get_calgos (utmpl);
882 		}
883 		nla_nest_end(msg, tmpls);
884 	}
885 
886 	if (tmpl->ce_mask & XFRM_SP_ATTR_MARK) {
887 		NLA_PUT (msg, XFRMA_MARK, sizeof (struct xfrm_mark), &tmpl->mark);
888 	}
889 
890 	*result = msg;
891 	return 0;
892 
893 nla_put_failure:
894 	nlmsg_free(msg);
895 	return -NLE_MSGSIZE;
896 }
897 
898 /**
899  * @name XFRM SP Add
900  * @{
901  */
902 
xfrmnl_sp_build_add_request(struct xfrmnl_sp * tmpl,int flags,struct nl_msg ** result)903 int xfrmnl_sp_build_add_request(struct xfrmnl_sp* tmpl, int flags, struct nl_msg **result)
904 {
905 	return build_xfrm_sp_message (tmpl, XFRM_MSG_NEWPOLICY, flags, result);
906 }
907 
xfrmnl_sp_add(struct nl_sock * sk,struct xfrmnl_sp * tmpl,int flags)908 int xfrmnl_sp_add(struct nl_sock* sk, struct xfrmnl_sp* tmpl, int flags)
909 {
910 	int             err;
911 	struct nl_msg   *msg;
912 
913 	if ((err = xfrmnl_sp_build_add_request(tmpl, flags, &msg)) < 0)
914 		return err;
915 
916 	err = nl_send_auto_complete(sk, msg);
917 	nlmsg_free(msg);
918 	if (err < 0)
919 		return err;
920 
921 	return nl_wait_for_ack(sk);
922 }
923 
924 /**
925  * @name XFRM SP Update
926  * @{
927  */
928 
xfrmnl_sp_build_update_request(struct xfrmnl_sp * tmpl,int flags,struct nl_msg ** result)929 int xfrmnl_sp_build_update_request(struct xfrmnl_sp* tmpl, int flags, struct nl_msg **result)
930 {
931 	return build_xfrm_sp_message (tmpl, XFRM_MSG_UPDPOLICY, flags, result);
932 }
933 
xfrmnl_sp_update(struct nl_sock * sk,struct xfrmnl_sp * tmpl,int flags)934 int xfrmnl_sp_update(struct nl_sock* sk, struct xfrmnl_sp* tmpl, int flags)
935 {
936 	int             err;
937 	struct nl_msg   *msg;
938 
939 	if ((err = xfrmnl_sp_build_update_request(tmpl, flags, &msg)) < 0)
940 		return err;
941 
942 	err = nl_send_auto_complete(sk, msg);
943 	nlmsg_free(msg);
944 	if (err < 0)
945 		return err;
946 
947 	return nl_wait_for_ack(sk);
948 }
949 
950 /** @} */
951 
952 /**
953  * \brief      Builds a xfrm_sp_delete_message. Uses either index and direction
954  *             or security-context (not set is a valid value), selector and
955  *             direction for identification.
956  *             Returns error if necessary values aren't set.
957  *
958  * \param      tmpl    The policy template.
959  * \param      cmd     The command. Should be XFRM_MSG_DELPOLICY.
960  * \param      flags   Additional flags
961  * \param      result  Resulting message.
962  *
963  * \return     0 if successful, else error value < 0
964  */
build_xfrm_sp_delete_message(struct xfrmnl_sp * tmpl,int cmd,int flags,struct nl_msg ** result)965 static int build_xfrm_sp_delete_message(struct xfrmnl_sp *tmpl, int cmd, int flags, struct nl_msg **result)
966 {
967 	struct nl_msg*              msg;
968 	struct xfrm_userpolicy_id   spid;
969 	struct nl_addr*             addr;
970 	uint32_t 					len;
971 
972 	if (!(tmpl->ce_mask & XFRM_SP_ATTR_DIR) ||
973 			(!(tmpl->ce_mask & XFRM_SP_ATTR_INDEX) &&
974 			 !(tmpl->ce_mask & XFRM_SP_ATTR_SEL)))
975 		return -NLE_MISSING_ATTR;
976 
977 	memset(&spid, 0, sizeof(spid));
978 	spid.dir            = tmpl->dir;
979 	if(tmpl->ce_mask & XFRM_SP_ATTR_INDEX)
980 		spid.index          = tmpl->index;
981 
982 	if (tmpl->ce_mask & XFRM_SP_ATTR_SEL)
983 	{
984 		addr = xfrmnl_sel_get_daddr (tmpl->sel);
985 		memcpy ((void*)&spid.sel.daddr, (void*)nl_addr_get_binary_addr (addr), sizeof (uint8_t) * nl_addr_get_len (addr));
986 		addr = xfrmnl_sel_get_saddr (tmpl->sel);
987 		memcpy ((void*)&spid.sel.saddr, (void*)nl_addr_get_binary_addr (addr), sizeof (uint8_t) * nl_addr_get_len (addr));
988 		spid.sel.dport       =   htons (xfrmnl_sel_get_dport (tmpl->sel));
989 		spid.sel.dport_mask  =   htons (xfrmnl_sel_get_dportmask (tmpl->sel));
990 		spid.sel.sport       =   htons (xfrmnl_sel_get_sport (tmpl->sel));
991 		spid.sel.sport_mask  =   htons (xfrmnl_sel_get_sportmask (tmpl->sel));
992 		spid.sel.family      =   xfrmnl_sel_get_family (tmpl->sel);
993 		spid.sel.prefixlen_d =   xfrmnl_sel_get_prefixlen_d (tmpl->sel);
994 		spid.sel.prefixlen_s =   xfrmnl_sel_get_prefixlen_s (tmpl->sel);
995 		spid.sel.proto       =   xfrmnl_sel_get_proto (tmpl->sel);
996 		spid.sel.ifindex     =   xfrmnl_sel_get_ifindex (tmpl->sel);
997 		spid.sel.user        =   xfrmnl_sel_get_userid (tmpl->sel);
998 	}
999 
1000 	msg = nlmsg_alloc_simple(cmd, flags);
1001 	if (!msg)
1002 		return -NLE_NOMEM;
1003 
1004 	if (nlmsg_append(msg, &spid, sizeof(spid), NLMSG_ALIGNTO) < 0)
1005 		goto nla_put_failure;
1006 
1007 	if (tmpl->ce_mask & XFRM_SP_ATTR_SECCTX) {
1008 		len = (sizeof (struct xfrm_user_sec_ctx)) + tmpl->sec_ctx->ctx_len;
1009 		NLA_PUT (msg, XFRMA_SEC_CTX, len, tmpl->sec_ctx);
1010 	}
1011 
1012 	if (tmpl->ce_mask & XFRM_SP_ATTR_MARK) {
1013 		len = sizeof (struct xfrm_mark);
1014 		NLA_PUT (msg, XFRMA_MARK, len, &tmpl->mark);
1015 	}
1016 
1017 	*result = msg;
1018 	return 0;
1019 
1020 nla_put_failure:
1021 	nlmsg_free(msg);
1022 	return -NLE_MSGSIZE;
1023 }
1024 
1025 /**
1026  * @name XFRM SA Delete
1027  * @{
1028  */
1029 
xfrmnl_sp_build_delete_request(struct xfrmnl_sp * tmpl,int flags,struct nl_msg ** result)1030 int xfrmnl_sp_build_delete_request(struct xfrmnl_sp* tmpl, int flags, struct nl_msg **result)
1031 {
1032 	return build_xfrm_sp_delete_message (tmpl, XFRM_MSG_DELPOLICY, flags, result);
1033 }
1034 
xfrmnl_sp_delete(struct nl_sock * sk,struct xfrmnl_sp * tmpl,int flags)1035 int xfrmnl_sp_delete(struct nl_sock* sk, struct xfrmnl_sp* tmpl, int flags)
1036 {
1037 	int             err;
1038 	struct nl_msg   *msg;
1039 
1040 	if ((err = xfrmnl_sp_build_delete_request(tmpl, flags, &msg)) < 0)
1041 		return err;
1042 
1043 	err = nl_send_auto_complete(sk, msg);
1044 	nlmsg_free(msg);
1045 	if (err < 0)
1046 		return err;
1047 
1048 	return nl_wait_for_ack(sk);
1049 }
1050 
1051 /** @} */
1052 
1053 
1054 /**
1055  * @name Attributes
1056  * @{
1057  */
1058 
xfrmnl_sp_get_sel(struct xfrmnl_sp * sp)1059 struct xfrmnl_sel* xfrmnl_sp_get_sel (struct xfrmnl_sp* sp)
1060 {
1061 	if (sp->ce_mask & XFRM_SP_ATTR_SEL)
1062 		return sp->sel;
1063 	else
1064 		return NULL;
1065 }
1066 
xfrmnl_sp_set_sel(struct xfrmnl_sp * sp,struct xfrmnl_sel * sel)1067 int xfrmnl_sp_set_sel (struct xfrmnl_sp* sp, struct xfrmnl_sel* sel)
1068 {
1069 	/* Release any previously held selector object from the SP */
1070 	if (sp->sel)
1071 		xfrmnl_sel_put (sp->sel);
1072 
1073 	/* Increment ref count on new selector and save it in the SP */
1074 	xfrmnl_sel_get (sel);
1075 	sp->sel     =   sel;
1076 	sp->ce_mask |=  XFRM_SP_ATTR_SEL;
1077 
1078 	return 0;
1079 }
1080 
xfrmnl_sp_get_lifetime_cfg(struct xfrmnl_sp * sp)1081 struct xfrmnl_ltime_cfg* xfrmnl_sp_get_lifetime_cfg (struct xfrmnl_sp* sp)
1082 {
1083 	if (sp->ce_mask & XFRM_SP_ATTR_LTIME_CFG)
1084 		return sp->lft;
1085 	else
1086 		return NULL;
1087 }
1088 
xfrmnl_sp_set_lifetime_cfg(struct xfrmnl_sp * sp,struct xfrmnl_ltime_cfg * ltime)1089 int xfrmnl_sp_set_lifetime_cfg (struct xfrmnl_sp* sp, struct xfrmnl_ltime_cfg* ltime)
1090 {
1091 	/* Release any previously held lifetime cfg object from the SP */
1092 	if (sp->lft)
1093 		xfrmnl_ltime_cfg_put (sp->lft);
1094 
1095 	/* Increment ref count on new lifetime object and save it in the SP */
1096 	xfrmnl_ltime_cfg_get (ltime);
1097 	sp->lft     =   ltime;
1098 	sp->ce_mask |=  XFRM_SP_ATTR_LTIME_CFG;
1099 
1100 	return 0;
1101 }
1102 
xfrmnl_sp_get_curlifetime(struct xfrmnl_sp * sp,unsigned long long int * curr_bytes,unsigned long long int * curr_packets,unsigned long long int * curr_add_time,unsigned long long int * curr_use_time)1103 int xfrmnl_sp_get_curlifetime (struct xfrmnl_sp* sp, unsigned long long int* curr_bytes,
1104                                unsigned long long int* curr_packets, unsigned long long int* curr_add_time, unsigned long long int* curr_use_time)
1105 {
1106 	if (sp == NULL || curr_bytes == NULL || curr_packets == NULL || curr_add_time == NULL || curr_use_time == NULL)
1107 		return -1;
1108 
1109 	*curr_bytes     =   sp->curlft.bytes;
1110 	*curr_packets   =   sp->curlft.packets;
1111 	*curr_add_time  =   sp->curlft.add_time;
1112 	*curr_use_time  =   sp->curlft.use_time;
1113 
1114 	return 0;
1115 }
1116 
xfrmnl_sp_get_priority(struct xfrmnl_sp * sp)1117 int xfrmnl_sp_get_priority (struct xfrmnl_sp* sp)
1118 {
1119 	if (sp->ce_mask & XFRM_SP_ATTR_PRIO)
1120 		return sp->priority;
1121 	else
1122 		return -1;
1123 }
1124 
xfrmnl_sp_set_priority(struct xfrmnl_sp * sp,unsigned int prio)1125 int xfrmnl_sp_set_priority (struct xfrmnl_sp* sp, unsigned int prio)
1126 {
1127 	sp->priority    = prio;
1128 	sp->ce_mask     |= XFRM_SP_ATTR_PRIO;
1129 
1130 	return 0;
1131 }
1132 
xfrmnl_sp_get_index(struct xfrmnl_sp * sp)1133 int xfrmnl_sp_get_index (struct xfrmnl_sp* sp)
1134 {
1135 	if (sp->ce_mask & XFRM_SP_ATTR_INDEX)
1136 		return sp->index;
1137 	else
1138 		return -1;
1139 }
1140 
xfrmnl_sp_set_index(struct xfrmnl_sp * sp,unsigned int index)1141 int xfrmnl_sp_set_index (struct xfrmnl_sp* sp, unsigned int index)
1142 {
1143 	sp->index       = index;
1144 	sp->ce_mask     |= XFRM_SP_ATTR_INDEX;
1145 
1146 	return 0;
1147 }
1148 
xfrmnl_sp_get_dir(struct xfrmnl_sp * sp)1149 int xfrmnl_sp_get_dir (struct xfrmnl_sp* sp)
1150 {
1151 	if (sp->ce_mask & XFRM_SP_ATTR_DIR)
1152 		return sp->dir;
1153 	else
1154 		return -1;
1155 }
1156 
xfrmnl_sp_set_dir(struct xfrmnl_sp * sp,unsigned int dir)1157 int xfrmnl_sp_set_dir (struct xfrmnl_sp* sp, unsigned int dir)
1158 {
1159 	sp->dir         = dir;
1160 	sp->ce_mask     |= XFRM_SP_ATTR_DIR;
1161 
1162 	return 0;
1163 }
1164 
xfrmnl_sp_get_action(struct xfrmnl_sp * sp)1165 int xfrmnl_sp_get_action (struct xfrmnl_sp* sp)
1166 {
1167 	if (sp->ce_mask & XFRM_SP_ATTR_ACTION)
1168 		return sp->action;
1169 	else
1170 		return -1;
1171 }
1172 
xfrmnl_sp_set_action(struct xfrmnl_sp * sp,unsigned int action)1173 int xfrmnl_sp_set_action (struct xfrmnl_sp* sp, unsigned int action)
1174 {
1175 	sp->action      = action;
1176 	sp->ce_mask     |= XFRM_SP_ATTR_ACTION;
1177 
1178 	return 0;
1179 }
1180 
xfrmnl_sp_get_flags(struct xfrmnl_sp * sp)1181 int xfrmnl_sp_get_flags (struct xfrmnl_sp* sp)
1182 {
1183 	if (sp->ce_mask & XFRM_SP_ATTR_FLAGS)
1184 		return sp->flags;
1185 	else
1186 		return -1;
1187 }
1188 
xfrmnl_sp_set_flags(struct xfrmnl_sp * sp,unsigned int flags)1189 int xfrmnl_sp_set_flags (struct xfrmnl_sp* sp, unsigned int flags)
1190 {
1191 	sp->flags       = flags;
1192 	sp->ce_mask     |= XFRM_SP_ATTR_FLAGS;
1193 
1194 	return 0;
1195 }
1196 
xfrmnl_sp_get_share(struct xfrmnl_sp * sp)1197 int xfrmnl_sp_get_share (struct xfrmnl_sp* sp)
1198 {
1199 	if (sp->ce_mask & XFRM_SP_ATTR_SHARE)
1200 		return sp->share;
1201 	else
1202 		return -1;
1203 }
1204 
xfrmnl_sp_set_share(struct xfrmnl_sp * sp,unsigned int share)1205 int xfrmnl_sp_set_share (struct xfrmnl_sp* sp, unsigned int share)
1206 {
1207 	sp->share       = share;
1208 	sp->ce_mask     |= XFRM_SP_ATTR_SHARE;
1209 
1210 	return 0;
1211 }
1212 
1213 /**
1214  * Get the security context.
1215  *
1216  * @arg sp              The xfrmnl_sp object.
1217  * @arg len             An optional output value for the ctx_str length including the xfrmnl_sp header.
1218  * @arg exttype         An optional output value.
1219  * @arg alg             An optional output value for the security context algorithm.
1220  * @arg doi             An optional output value for the security context domain of interpretation.
1221  * @arg ctx_len         An optional output value for the security context length, including the
1222  *                      terminating null byte ('\0').
1223  * @arg ctx_str         An optional buffer large enough for the security context string. It must
1224  *                      contain at least @ctx_len bytes. You are advised to create the ctx_str
1225  *                      buffer one element larger and ensure NUL termination yourself.
1226  *
1227  * Warning: you must ensure that @ctx_str is large enough. If you don't know the length before-hand,
1228  * call xfrmnl_sp_get_sec_ctx() without @ctx_str argument to query only the required buffer size.
1229  * This modified API is available in all versions of libnl3 that support the capability
1230  * @def NL_CAPABILITY_XFRM_SP_SEC_CTX_LEN (@see nl_has_capability for further information).
1231  *
1232  * @return 0 on success or a negative error code.
1233  */
xfrmnl_sp_get_sec_ctx(struct xfrmnl_sp * sp,unsigned int * len,unsigned int * exttype,unsigned int * alg,unsigned int * doi,unsigned int * ctx_len,char * ctx_str)1234 int xfrmnl_sp_get_sec_ctx (struct xfrmnl_sp* sp, unsigned int* len, unsigned int* exttype, unsigned int* alg, unsigned int* doi, unsigned int* ctx_len, char* ctx_str)
1235 {
1236 	if (sp->ce_mask & XFRM_SP_ATTR_SECCTX)
1237 	{
1238 		if (len)
1239 			*len = sizeof (struct xfrmnl_user_sec_ctx) + sp->sec_ctx->ctx_len;
1240 		if (exttype)
1241 			*exttype = sp->sec_ctx->exttype;
1242 		if (alg)
1243 			*alg = sp->sec_ctx->ctx_alg;
1244 		if (doi)
1245 			*doi = sp->sec_ctx->ctx_doi;
1246 		if (ctx_len)
1247 			*ctx_len = sp->sec_ctx->ctx_len;
1248 		if (ctx_str)
1249 			memcpy ((void *)ctx_str, (void *)sp->sec_ctx->ctx, sp->sec_ctx->ctx_len);
1250 	}
1251 	else
1252 		return -1;
1253 
1254 	return 0;
1255 }
1256 /**
1257  * @brief      Set security context (ctx_str) for XFRM Polixy.
1258  *
1259  * @param      sp       XFRM Policy
1260  * @param      len      !!! depricated unused parameter !!!
1261  * @param      exttype  netlink message attribute - probably XFRMA_SEC_CTX
1262  * @param      alg      security context algorithm
1263  * @param      doi      security context domain interpretation
1264  * @param      ctx_len  Length of the context string.
1265  * @param      ctx_str  The context string.
1266  *
1267  * @return     0 if sucessfull, else -1
1268  */
xfrmnl_sp_set_sec_ctx(struct xfrmnl_sp * sp,unsigned int len,unsigned int exttype,unsigned int alg,unsigned int doi,unsigned int ctx_len,char * ctx_str)1269 int xfrmnl_sp_set_sec_ctx (struct xfrmnl_sp* sp, unsigned int len __attribute__((unused)), unsigned int exttype, unsigned int alg, unsigned int doi, unsigned int ctx_len, char* ctx_str)
1270 {
1271 	/* Free up the old context string and allocate new one */
1272 	if (sp->sec_ctx)
1273 		free (sp->sec_ctx);
1274 	if ((sp->sec_ctx = calloc (1, sizeof (struct xfrmnl_user_sec_ctx) + 1 + ctx_len)) == NULL)
1275 		return -1;
1276 
1277 	/* Save the new info */
1278 	sp->sec_ctx->len        =   sizeof (struct xfrmnl_user_sec_ctx) + ctx_len;
1279 	sp->sec_ctx->exttype    =   exttype;
1280 	sp->sec_ctx->ctx_alg    =   alg;
1281 	sp->sec_ctx->ctx_doi    =   doi;
1282 	sp->sec_ctx->ctx_len    =   ctx_len;
1283 	memcpy ((void *)sp->sec_ctx->ctx, (void *)ctx_str, ctx_len);
1284 	sp->sec_ctx->ctx[ctx_len] = '\0';
1285 
1286 	sp->ce_mask |= XFRM_SP_ATTR_SECCTX;
1287 
1288 	return 0;
1289 }
1290 
xfrmnl_sp_get_userpolicy_type(struct xfrmnl_sp * sp)1291 int xfrmnl_sp_get_userpolicy_type (struct xfrmnl_sp* sp)
1292 {
1293 	if (sp->ce_mask & XFRM_SP_ATTR_POLTYPE)
1294 		return sp->uptype.type;
1295 	else
1296 		return -1;
1297 }
1298 
xfrmnl_sp_set_userpolicy_type(struct xfrmnl_sp * sp,unsigned int type)1299 int xfrmnl_sp_set_userpolicy_type (struct xfrmnl_sp* sp, unsigned int type)
1300 {
1301 	sp->uptype.type = type;
1302 	sp->ce_mask     |= XFRM_SP_ATTR_POLTYPE;
1303 
1304 	return 0;
1305 }
1306 
xfrmnl_sp_add_usertemplate(struct xfrmnl_sp * sp,struct xfrmnl_user_tmpl * utmpl)1307 void xfrmnl_sp_add_usertemplate(struct xfrmnl_sp *sp, struct xfrmnl_user_tmpl *utmpl)
1308 {
1309 	nl_list_add_tail(&utmpl->utmpl_list, &sp->usertmpl_list);
1310 	sp->nr_user_tmpl++;
1311 	sp->ce_mask |= XFRM_SP_ATTR_TMPL;
1312 }
1313 
xfrmnl_sp_remove_usertemplate(struct xfrmnl_sp * sp,struct xfrmnl_user_tmpl * utmpl)1314 void xfrmnl_sp_remove_usertemplate(struct xfrmnl_sp *sp, struct xfrmnl_user_tmpl *utmpl)
1315 {
1316 	if (sp->ce_mask & XFRM_SP_ATTR_TMPL) {
1317 		sp->nr_user_tmpl--;
1318 		nl_list_del(&utmpl->utmpl_list);
1319 	}
1320 }
1321 
xfrmnl_sp_get_usertemplates(struct xfrmnl_sp * sp)1322 struct nl_list_head *xfrmnl_sp_get_usertemplates(struct xfrmnl_sp *sp)
1323 {
1324 	if (sp->ce_mask & XFRM_SP_ATTR_TMPL)
1325 		return &sp->usertmpl_list;
1326 
1327 	return NULL;
1328 }
1329 
xfrmnl_sp_get_nusertemplates(struct xfrmnl_sp * sp)1330 int xfrmnl_sp_get_nusertemplates(struct xfrmnl_sp *sp)
1331 {
1332 	if (sp->ce_mask & XFRM_SP_ATTR_TMPL)
1333 		return sp->nr_user_tmpl;
1334 
1335 	return 0;
1336 }
1337 
xfrmnl_sp_foreach_usertemplate(struct xfrmnl_sp * r,void (* cb)(struct xfrmnl_user_tmpl *,void *),void * arg)1338 void xfrmnl_sp_foreach_usertemplate(struct xfrmnl_sp *r,
1339                                     void (*cb)(struct xfrmnl_user_tmpl *, void *),
1340                                     void *arg)
1341 {
1342 	struct xfrmnl_user_tmpl *utmpl;
1343 
1344 	if (r->ce_mask & XFRM_SP_ATTR_TMPL) {
1345 		nl_list_for_each_entry(utmpl, &r->usertmpl_list, utmpl_list) {
1346 			cb(utmpl, arg);
1347 		}
1348 	}
1349 }
1350 
xfrmnl_sp_usertemplate_n(struct xfrmnl_sp * r,int n)1351 struct xfrmnl_user_tmpl *xfrmnl_sp_usertemplate_n(struct xfrmnl_sp *r, int n)
1352 {
1353 	struct xfrmnl_user_tmpl *utmpl;
1354 	uint32_t i;
1355 
1356 	if (r->ce_mask & XFRM_SP_ATTR_TMPL && r->nr_user_tmpl > n) {
1357 		i = 0;
1358 		nl_list_for_each_entry(utmpl, &r->usertmpl_list, utmpl_list) {
1359 			if (i == n) return utmpl;
1360 			i++;
1361 		}
1362 	}
1363 		return NULL;
1364 }
1365 
xfrmnl_sp_get_mark(struct xfrmnl_sp * sp,unsigned int * mark_mask,unsigned int * mark_value)1366 int xfrmnl_sp_get_mark (struct xfrmnl_sp* sp, unsigned int* mark_mask, unsigned int* mark_value)
1367 {
1368 	if (mark_mask == NULL || mark_value == NULL)
1369 		return -1;
1370 
1371 	if (sp->ce_mask & XFRM_SP_ATTR_MARK)
1372 	{
1373 		*mark_mask  =   sp->mark.m;
1374 		*mark_value  =   sp->mark.v;
1375 
1376 		return 0;
1377 	}
1378 	else
1379 		return -1;
1380 }
1381 
xfrmnl_sp_set_mark(struct xfrmnl_sp * sp,unsigned int value,unsigned int mask)1382 int xfrmnl_sp_set_mark (struct xfrmnl_sp* sp, unsigned int value, unsigned int mask)
1383 {
1384 	sp->mark.v  = value;
1385 	sp->mark.m  = mask;
1386 	sp->ce_mask |= XFRM_SP_ATTR_MARK;
1387 
1388 	return 0;
1389 }
1390 
1391 /** @} */
1392 
1393 static struct nl_object_ops xfrm_sp_obj_ops = {
1394 	.oo_name        =   "xfrm/sp",
1395 	.oo_size        =   sizeof(struct xfrmnl_sp),
1396 	.oo_constructor =   xfrm_sp_alloc_data,
1397 	.oo_free_data   =   xfrm_sp_free_data,
1398 	.oo_clone       =   xfrm_sp_clone,
1399 	.oo_dump        =   {
1400 	                        [NL_DUMP_LINE]      =   xfrm_sp_dump_line,
1401 	                        [NL_DUMP_DETAILS]   =   xfrm_sp_dump_details,
1402 	                        [NL_DUMP_STATS]     =   xfrm_sp_dump_stats,
1403 	                    },
1404 	.oo_compare     =   xfrm_sp_compare,
1405 	.oo_attrs2str   =   xfrm_sp_attrs2str,
1406 	.oo_id_attrs    =   (XFRM_SP_ATTR_SEL | XFRM_SP_ATTR_INDEX | XFRM_SP_ATTR_DIR),
1407 };
1408 
1409 static struct nl_af_group xfrm_sp_groups[] = {
1410 	{ AF_UNSPEC, XFRMNLGRP_POLICY },
1411 	{ END_OF_GROUP_LIST },
1412 };
1413 
1414 static struct nl_cache_ops xfrmnl_sp_ops = {
1415 	.co_name            = "xfrm/sp",
1416 	.co_hdrsize         = sizeof(struct xfrm_userpolicy_info),
1417 	.co_msgtypes        = {
1418 	                        { XFRM_MSG_NEWPOLICY, NL_ACT_NEW, "new" },
1419 	                        { XFRM_MSG_DELPOLICY, NL_ACT_DEL, "del" },
1420 	                        { XFRM_MSG_GETPOLICY, NL_ACT_GET, "get" },
1421 	                        { XFRM_MSG_UPDPOLICY, NL_ACT_NEW, "update" },
1422 	                        END_OF_MSGTYPES_LIST,
1423 	                     },
1424 	.co_protocol        = NETLINK_XFRM,
1425 	.co_groups          = xfrm_sp_groups,
1426 	.co_request_update  = xfrm_sp_request_update,
1427 	.co_msg_parser      = xfrm_sp_msg_parser,
1428 	.co_obj_ops         = &xfrm_sp_obj_ops,
1429 };
1430 
1431 /**
1432  * @name XFRM SA Cache Managament
1433  * @{
1434  */
1435 
xfrm_sp_init(void)1436 static void __attribute__ ((constructor)) xfrm_sp_init(void)
1437 {
1438 	nl_cache_mngt_register(&xfrmnl_sp_ops);
1439 }
1440 
xfrm_sp_exit(void)1441 static void __attribute__ ((destructor)) xfrm_sp_exit(void)
1442 {
1443 	nl_cache_mngt_unregister(&xfrmnl_sp_ops);
1444 }
1445 
1446 /** @} */
1447