GNU Linux-libre 4.9.309-gnu1
[releases.git] / net / 802 / mrp.c
1 /*
2  *      IEEE 802.1Q Multiple Registration Protocol (MRP)
3  *
4  *      Copyright (c) 2012 Massachusetts Institute of Technology
5  *
6  *      Adapted from code in net/802/garp.c
7  *      Copyright (c) 2008 Patrick McHardy <kaber@trash.net>
8  *
9  *      This program is free software; you can redistribute it and/or
10  *      modify it under the terms of the GNU General Public License
11  *      version 2 as published by the Free Software Foundation.
12  */
13 #include <linux/kernel.h>
14 #include <linux/timer.h>
15 #include <linux/skbuff.h>
16 #include <linux/netdevice.h>
17 #include <linux/etherdevice.h>
18 #include <linux/rtnetlink.h>
19 #include <linux/slab.h>
20 #include <linux/module.h>
21 #include <net/mrp.h>
22 #include <asm/unaligned.h>
23
24 static unsigned int mrp_join_time __read_mostly = 200;
25 module_param(mrp_join_time, uint, 0644);
26 MODULE_PARM_DESC(mrp_join_time, "Join time in ms (default 200ms)");
27
28 static unsigned int mrp_periodic_time __read_mostly = 1000;
29 module_param(mrp_periodic_time, uint, 0644);
30 MODULE_PARM_DESC(mrp_periodic_time, "Periodic time in ms (default 1s)");
31
32 MODULE_LICENSE("GPL");
33
34 static const u8
35 mrp_applicant_state_table[MRP_APPLICANT_MAX + 1][MRP_EVENT_MAX + 1] = {
36         [MRP_APPLICANT_VO] = {
37                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
38                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_VP,
39                 [MRP_EVENT_LV]          = MRP_APPLICANT_VO,
40                 [MRP_EVENT_TX]          = MRP_APPLICANT_VO,
41                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_VO,
42                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_AO,
43                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_VO,
44                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_VO,
45                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_VO,
46                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VO,
47                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VO,
48                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VO,
49                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_VO,
50         },
51         [MRP_APPLICANT_VP] = {
52                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
53                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_VP,
54                 [MRP_EVENT_LV]          = MRP_APPLICANT_VO,
55                 [MRP_EVENT_TX]          = MRP_APPLICANT_AA,
56                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_VP,
57                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_AP,
58                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_VP,
59                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_VP,
60                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_VP,
61                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VP,
62                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VP,
63                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VP,
64                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_VP,
65         },
66         [MRP_APPLICANT_VN] = {
67                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
68                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_VN,
69                 [MRP_EVENT_LV]          = MRP_APPLICANT_LA,
70                 [MRP_EVENT_TX]          = MRP_APPLICANT_AN,
71                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_VN,
72                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_VN,
73                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_VN,
74                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_VN,
75                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_VN,
76                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VN,
77                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VN,
78                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VN,
79                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_VN,
80         },
81         [MRP_APPLICANT_AN] = {
82                 [MRP_EVENT_NEW]         = MRP_APPLICANT_AN,
83                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_AN,
84                 [MRP_EVENT_LV]          = MRP_APPLICANT_LA,
85                 [MRP_EVENT_TX]          = MRP_APPLICANT_QA,
86                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_AN,
87                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_AN,
88                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_AN,
89                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_AN,
90                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_AN,
91                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VN,
92                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VN,
93                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VN,
94                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_AN,
95         },
96         [MRP_APPLICANT_AA] = {
97                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
98                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_AA,
99                 [MRP_EVENT_LV]          = MRP_APPLICANT_LA,
100                 [MRP_EVENT_TX]          = MRP_APPLICANT_QA,
101                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_AA,
102                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_QA,
103                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_AA,
104                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_AA,
105                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_AA,
106                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VP,
107                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VP,
108                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VP,
109                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_AA,
110         },
111         [MRP_APPLICANT_QA] = {
112                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
113                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_QA,
114                 [MRP_EVENT_LV]          = MRP_APPLICANT_LA,
115                 [MRP_EVENT_TX]          = MRP_APPLICANT_QA,
116                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_QA,
117                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_QA,
118                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_QA,
119                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_AA,
120                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_AA,
121                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VP,
122                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VP,
123                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VP,
124                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_AA,
125         },
126         [MRP_APPLICANT_LA] = {
127                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
128                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_AA,
129                 [MRP_EVENT_LV]          = MRP_APPLICANT_LA,
130                 [MRP_EVENT_TX]          = MRP_APPLICANT_VO,
131                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_LA,
132                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_LA,
133                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_LA,
134                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_LA,
135                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_LA,
136                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_LA,
137                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_LA,
138                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_LA,
139                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_LA,
140         },
141         [MRP_APPLICANT_AO] = {
142                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
143                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_AP,
144                 [MRP_EVENT_LV]          = MRP_APPLICANT_AO,
145                 [MRP_EVENT_TX]          = MRP_APPLICANT_AO,
146                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_AO,
147                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_QO,
148                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_AO,
149                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_AO,
150                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_AO,
151                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VO,
152                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VO,
153                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VO,
154                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_AO,
155         },
156         [MRP_APPLICANT_QO] = {
157                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
158                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_QP,
159                 [MRP_EVENT_LV]          = MRP_APPLICANT_QO,
160                 [MRP_EVENT_TX]          = MRP_APPLICANT_QO,
161                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_QO,
162                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_QO,
163                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_QO,
164                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_AO,
165                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_AO,
166                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VO,
167                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VO,
168                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VO,
169                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_QO,
170         },
171         [MRP_APPLICANT_AP] = {
172                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
173                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_AP,
174                 [MRP_EVENT_LV]          = MRP_APPLICANT_AO,
175                 [MRP_EVENT_TX]          = MRP_APPLICANT_QA,
176                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_AP,
177                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_QP,
178                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_AP,
179                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_AP,
180                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_AP,
181                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VP,
182                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VP,
183                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VP,
184                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_AP,
185         },
186         [MRP_APPLICANT_QP] = {
187                 [MRP_EVENT_NEW]         = MRP_APPLICANT_VN,
188                 [MRP_EVENT_JOIN]        = MRP_APPLICANT_QP,
189                 [MRP_EVENT_LV]          = MRP_APPLICANT_QO,
190                 [MRP_EVENT_TX]          = MRP_APPLICANT_QP,
191                 [MRP_EVENT_R_NEW]       = MRP_APPLICANT_QP,
192                 [MRP_EVENT_R_JOIN_IN]   = MRP_APPLICANT_QP,
193                 [MRP_EVENT_R_IN]        = MRP_APPLICANT_QP,
194                 [MRP_EVENT_R_JOIN_MT]   = MRP_APPLICANT_AP,
195                 [MRP_EVENT_R_MT]        = MRP_APPLICANT_AP,
196                 [MRP_EVENT_R_LV]        = MRP_APPLICANT_VP,
197                 [MRP_EVENT_R_LA]        = MRP_APPLICANT_VP,
198                 [MRP_EVENT_REDECLARE]   = MRP_APPLICANT_VP,
199                 [MRP_EVENT_PERIODIC]    = MRP_APPLICANT_AP,
200         },
201 };
202
203 static const u8
204 mrp_tx_action_table[MRP_APPLICANT_MAX + 1] = {
205         [MRP_APPLICANT_VO] = MRP_TX_ACTION_S_IN_OPTIONAL,
206         [MRP_APPLICANT_VP] = MRP_TX_ACTION_S_JOIN_IN,
207         [MRP_APPLICANT_VN] = MRP_TX_ACTION_S_NEW,
208         [MRP_APPLICANT_AN] = MRP_TX_ACTION_S_NEW,
209         [MRP_APPLICANT_AA] = MRP_TX_ACTION_S_JOIN_IN,
210         [MRP_APPLICANT_QA] = MRP_TX_ACTION_S_JOIN_IN_OPTIONAL,
211         [MRP_APPLICANT_LA] = MRP_TX_ACTION_S_LV,
212         [MRP_APPLICANT_AO] = MRP_TX_ACTION_S_IN_OPTIONAL,
213         [MRP_APPLICANT_QO] = MRP_TX_ACTION_S_IN_OPTIONAL,
214         [MRP_APPLICANT_AP] = MRP_TX_ACTION_S_JOIN_IN,
215         [MRP_APPLICANT_QP] = MRP_TX_ACTION_S_IN_OPTIONAL,
216 };
217
218 static void mrp_attrvalue_inc(void *value, u8 len)
219 {
220         u8 *v = (u8 *)value;
221
222         /* Add 1 to the last byte. If it becomes zero,
223          * go to the previous byte and repeat.
224          */
225         while (len > 0 && !++v[--len])
226                 ;
227 }
228
229 static int mrp_attr_cmp(const struct mrp_attr *attr,
230                          const void *value, u8 len, u8 type)
231 {
232         if (attr->type != type)
233                 return attr->type - type;
234         if (attr->len != len)
235                 return attr->len - len;
236         return memcmp(attr->value, value, len);
237 }
238
239 static struct mrp_attr *mrp_attr_lookup(const struct mrp_applicant *app,
240                                         const void *value, u8 len, u8 type)
241 {
242         struct rb_node *parent = app->mad.rb_node;
243         struct mrp_attr *attr;
244         int d;
245
246         while (parent) {
247                 attr = rb_entry(parent, struct mrp_attr, node);
248                 d = mrp_attr_cmp(attr, value, len, type);
249                 if (d > 0)
250                         parent = parent->rb_left;
251                 else if (d < 0)
252                         parent = parent->rb_right;
253                 else
254                         return attr;
255         }
256         return NULL;
257 }
258
259 static struct mrp_attr *mrp_attr_create(struct mrp_applicant *app,
260                                         const void *value, u8 len, u8 type)
261 {
262         struct rb_node *parent = NULL, **p = &app->mad.rb_node;
263         struct mrp_attr *attr;
264         int d;
265
266         while (*p) {
267                 parent = *p;
268                 attr = rb_entry(parent, struct mrp_attr, node);
269                 d = mrp_attr_cmp(attr, value, len, type);
270                 if (d > 0)
271                         p = &parent->rb_left;
272                 else if (d < 0)
273                         p = &parent->rb_right;
274                 else {
275                         /* The attribute already exists; re-use it. */
276                         return attr;
277                 }
278         }
279         attr = kmalloc(sizeof(*attr) + len, GFP_ATOMIC);
280         if (!attr)
281                 return attr;
282         attr->state = MRP_APPLICANT_VO;
283         attr->type  = type;
284         attr->len   = len;
285         memcpy(attr->value, value, len);
286
287         rb_link_node(&attr->node, parent, p);
288         rb_insert_color(&attr->node, &app->mad);
289         return attr;
290 }
291
292 static void mrp_attr_destroy(struct mrp_applicant *app, struct mrp_attr *attr)
293 {
294         rb_erase(&attr->node, &app->mad);
295         kfree(attr);
296 }
297
298 static void mrp_attr_destroy_all(struct mrp_applicant *app)
299 {
300         struct rb_node *node, *next;
301         struct mrp_attr *attr;
302
303         for (node = rb_first(&app->mad);
304              next = node ? rb_next(node) : NULL, node != NULL;
305              node = next) {
306                 attr = rb_entry(node, struct mrp_attr, node);
307                 mrp_attr_destroy(app, attr);
308         }
309 }
310
311 static int mrp_pdu_init(struct mrp_applicant *app)
312 {
313         struct sk_buff *skb;
314         struct mrp_pdu_hdr *ph;
315
316         skb = alloc_skb(app->dev->mtu + LL_RESERVED_SPACE(app->dev),
317                         GFP_ATOMIC);
318         if (!skb)
319                 return -ENOMEM;
320
321         skb->dev = app->dev;
322         skb->protocol = app->app->pkttype.type;
323         skb_reserve(skb, LL_RESERVED_SPACE(app->dev));
324         skb_reset_network_header(skb);
325         skb_reset_transport_header(skb);
326
327         ph = (struct mrp_pdu_hdr *)__skb_put(skb, sizeof(*ph));
328         ph->version = app->app->version;
329
330         app->pdu = skb;
331         return 0;
332 }
333
334 static int mrp_pdu_append_end_mark(struct mrp_applicant *app)
335 {
336         __be16 *endmark;
337
338         if (skb_tailroom(app->pdu) < sizeof(*endmark))
339                 return -1;
340         endmark = (__be16 *)__skb_put(app->pdu, sizeof(*endmark));
341         put_unaligned(MRP_END_MARK, endmark);
342         return 0;
343 }
344
345 static void mrp_pdu_queue(struct mrp_applicant *app)
346 {
347         if (!app->pdu)
348                 return;
349
350         if (mrp_cb(app->pdu)->mh)
351                 mrp_pdu_append_end_mark(app);
352         mrp_pdu_append_end_mark(app);
353
354         dev_hard_header(app->pdu, app->dev, ntohs(app->app->pkttype.type),
355                         app->app->group_address, app->dev->dev_addr,
356                         app->pdu->len);
357
358         skb_queue_tail(&app->queue, app->pdu);
359         app->pdu = NULL;
360 }
361
362 static void mrp_queue_xmit(struct mrp_applicant *app)
363 {
364         struct sk_buff *skb;
365
366         while ((skb = skb_dequeue(&app->queue)))
367                 dev_queue_xmit(skb);
368 }
369
370 static int mrp_pdu_append_msg_hdr(struct mrp_applicant *app,
371                                   u8 attrtype, u8 attrlen)
372 {
373         struct mrp_msg_hdr *mh;
374
375         if (mrp_cb(app->pdu)->mh) {
376                 if (mrp_pdu_append_end_mark(app) < 0)
377                         return -1;
378                 mrp_cb(app->pdu)->mh = NULL;
379                 mrp_cb(app->pdu)->vah = NULL;
380         }
381
382         if (skb_tailroom(app->pdu) < sizeof(*mh))
383                 return -1;
384         mh = (struct mrp_msg_hdr *)__skb_put(app->pdu, sizeof(*mh));
385         mh->attrtype = attrtype;
386         mh->attrlen = attrlen;
387         mrp_cb(app->pdu)->mh = mh;
388         return 0;
389 }
390
391 static int mrp_pdu_append_vecattr_hdr(struct mrp_applicant *app,
392                                       const void *firstattrvalue, u8 attrlen)
393 {
394         struct mrp_vecattr_hdr *vah;
395
396         if (skb_tailroom(app->pdu) < sizeof(*vah) + attrlen)
397                 return -1;
398         vah = (struct mrp_vecattr_hdr *)__skb_put(app->pdu,
399                                                   sizeof(*vah) + attrlen);
400         put_unaligned(0, &vah->lenflags);
401         memcpy(vah->firstattrvalue, firstattrvalue, attrlen);
402         mrp_cb(app->pdu)->vah = vah;
403         memcpy(mrp_cb(app->pdu)->attrvalue, firstattrvalue, attrlen);
404         return 0;
405 }
406
407 static int mrp_pdu_append_vecattr_event(struct mrp_applicant *app,
408                                         const struct mrp_attr *attr,
409                                         enum mrp_vecattr_event vaevent)
410 {
411         u16 len, pos;
412         u8 *vaevents;
413         int err;
414 again:
415         if (!app->pdu) {
416                 err = mrp_pdu_init(app);
417                 if (err < 0)
418                         return err;
419         }
420
421         /* If there is no Message header in the PDU, or the Message header is
422          * for a different attribute type, add an EndMark (if necessary) and a
423          * new Message header to the PDU.
424          */
425         if (!mrp_cb(app->pdu)->mh ||
426             mrp_cb(app->pdu)->mh->attrtype != attr->type ||
427             mrp_cb(app->pdu)->mh->attrlen != attr->len) {
428                 if (mrp_pdu_append_msg_hdr(app, attr->type, attr->len) < 0)
429                         goto queue;
430         }
431
432         /* If there is no VectorAttribute header for this Message in the PDU,
433          * or this attribute's value does not sequentially follow the previous
434          * attribute's value, add a new VectorAttribute header to the PDU.
435          */
436         if (!mrp_cb(app->pdu)->vah ||
437             memcmp(mrp_cb(app->pdu)->attrvalue, attr->value, attr->len)) {
438                 if (mrp_pdu_append_vecattr_hdr(app, attr->value, attr->len) < 0)
439                         goto queue;
440         }
441
442         len = be16_to_cpu(get_unaligned(&mrp_cb(app->pdu)->vah->lenflags));
443         pos = len % 3;
444
445         /* Events are packed into Vectors in the PDU, three to a byte. Add a
446          * byte to the end of the Vector if necessary.
447          */
448         if (!pos) {
449                 if (skb_tailroom(app->pdu) < sizeof(u8))
450                         goto queue;
451                 vaevents = (u8 *)__skb_put(app->pdu, sizeof(u8));
452         } else {
453                 vaevents = (u8 *)(skb_tail_pointer(app->pdu) - sizeof(u8));
454         }
455
456         switch (pos) {
457         case 0:
458                 *vaevents = vaevent * (__MRP_VECATTR_EVENT_MAX *
459                                        __MRP_VECATTR_EVENT_MAX);
460                 break;
461         case 1:
462                 *vaevents += vaevent * __MRP_VECATTR_EVENT_MAX;
463                 break;
464         case 2:
465                 *vaevents += vaevent;
466                 break;
467         default:
468                 WARN_ON(1);
469         }
470
471         /* Increment the length of the VectorAttribute in the PDU, as well as
472          * the value of the next attribute that would continue its Vector.
473          */
474         put_unaligned(cpu_to_be16(++len), &mrp_cb(app->pdu)->vah->lenflags);
475         mrp_attrvalue_inc(mrp_cb(app->pdu)->attrvalue, attr->len);
476
477         return 0;
478
479 queue:
480         mrp_pdu_queue(app);
481         goto again;
482 }
483
484 static void mrp_attr_event(struct mrp_applicant *app,
485                            struct mrp_attr *attr, enum mrp_event event)
486 {
487         enum mrp_applicant_state state;
488
489         state = mrp_applicant_state_table[attr->state][event];
490         if (state == MRP_APPLICANT_INVALID) {
491                 WARN_ON(1);
492                 return;
493         }
494
495         if (event == MRP_EVENT_TX) {
496                 /* When appending the attribute fails, don't update its state
497                  * in order to retry at the next TX event.
498                  */
499
500                 switch (mrp_tx_action_table[attr->state]) {
501                 case MRP_TX_ACTION_NONE:
502                 case MRP_TX_ACTION_S_JOIN_IN_OPTIONAL:
503                 case MRP_TX_ACTION_S_IN_OPTIONAL:
504                         break;
505                 case MRP_TX_ACTION_S_NEW:
506                         if (mrp_pdu_append_vecattr_event(
507                                     app, attr, MRP_VECATTR_EVENT_NEW) < 0)
508                                 return;
509                         break;
510                 case MRP_TX_ACTION_S_JOIN_IN:
511                         if (mrp_pdu_append_vecattr_event(
512                                     app, attr, MRP_VECATTR_EVENT_JOIN_IN) < 0)
513                                 return;
514                         break;
515                 case MRP_TX_ACTION_S_LV:
516                         if (mrp_pdu_append_vecattr_event(
517                                     app, attr, MRP_VECATTR_EVENT_LV) < 0)
518                                 return;
519                         /* As a pure applicant, sending a leave message
520                          * implies that the attribute was unregistered and
521                          * can be destroyed.
522                          */
523                         mrp_attr_destroy(app, attr);
524                         return;
525                 default:
526                         WARN_ON(1);
527                 }
528         }
529
530         attr->state = state;
531 }
532
533 int mrp_request_join(const struct net_device *dev,
534                      const struct mrp_application *appl,
535                      const void *value, u8 len, u8 type)
536 {
537         struct mrp_port *port = rtnl_dereference(dev->mrp_port);
538         struct mrp_applicant *app = rtnl_dereference(
539                 port->applicants[appl->type]);
540         struct mrp_attr *attr;
541
542         if (sizeof(struct mrp_skb_cb) + len >
543             FIELD_SIZEOF(struct sk_buff, cb))
544                 return -ENOMEM;
545
546         spin_lock_bh(&app->lock);
547         attr = mrp_attr_create(app, value, len, type);
548         if (!attr) {
549                 spin_unlock_bh(&app->lock);
550                 return -ENOMEM;
551         }
552         mrp_attr_event(app, attr, MRP_EVENT_JOIN);
553         spin_unlock_bh(&app->lock);
554         return 0;
555 }
556 EXPORT_SYMBOL_GPL(mrp_request_join);
557
558 void mrp_request_leave(const struct net_device *dev,
559                        const struct mrp_application *appl,
560                        const void *value, u8 len, u8 type)
561 {
562         struct mrp_port *port = rtnl_dereference(dev->mrp_port);
563         struct mrp_applicant *app = rtnl_dereference(
564                 port->applicants[appl->type]);
565         struct mrp_attr *attr;
566
567         if (sizeof(struct mrp_skb_cb) + len >
568             FIELD_SIZEOF(struct sk_buff, cb))
569                 return;
570
571         spin_lock_bh(&app->lock);
572         attr = mrp_attr_lookup(app, value, len, type);
573         if (!attr) {
574                 spin_unlock_bh(&app->lock);
575                 return;
576         }
577         mrp_attr_event(app, attr, MRP_EVENT_LV);
578         spin_unlock_bh(&app->lock);
579 }
580 EXPORT_SYMBOL_GPL(mrp_request_leave);
581
582 static void mrp_mad_event(struct mrp_applicant *app, enum mrp_event event)
583 {
584         struct rb_node *node, *next;
585         struct mrp_attr *attr;
586
587         for (node = rb_first(&app->mad);
588              next = node ? rb_next(node) : NULL, node != NULL;
589              node = next) {
590                 attr = rb_entry(node, struct mrp_attr, node);
591                 mrp_attr_event(app, attr, event);
592         }
593 }
594
595 static void mrp_join_timer_arm(struct mrp_applicant *app)
596 {
597         unsigned long delay;
598
599         delay = (u64)msecs_to_jiffies(mrp_join_time) * prandom_u32() >> 32;
600         mod_timer(&app->join_timer, jiffies + delay);
601 }
602
603 static void mrp_join_timer(unsigned long data)
604 {
605         struct mrp_applicant *app = (struct mrp_applicant *)data;
606
607         spin_lock(&app->lock);
608         mrp_mad_event(app, MRP_EVENT_TX);
609         mrp_pdu_queue(app);
610         spin_unlock(&app->lock);
611
612         mrp_queue_xmit(app);
613         mrp_join_timer_arm(app);
614 }
615
616 static void mrp_periodic_timer_arm(struct mrp_applicant *app)
617 {
618         mod_timer(&app->periodic_timer,
619                   jiffies + msecs_to_jiffies(mrp_periodic_time));
620 }
621
622 static void mrp_periodic_timer(unsigned long data)
623 {
624         struct mrp_applicant *app = (struct mrp_applicant *)data;
625
626         spin_lock(&app->lock);
627         mrp_mad_event(app, MRP_EVENT_PERIODIC);
628         mrp_pdu_queue(app);
629         spin_unlock(&app->lock);
630
631         mrp_periodic_timer_arm(app);
632 }
633
634 static int mrp_pdu_parse_end_mark(struct sk_buff *skb, int *offset)
635 {
636         __be16 endmark;
637
638         if (skb_copy_bits(skb, *offset, &endmark, sizeof(endmark)) < 0)
639                 return -1;
640         if (endmark == MRP_END_MARK) {
641                 *offset += sizeof(endmark);
642                 return -1;
643         }
644         return 0;
645 }
646
647 static void mrp_pdu_parse_vecattr_event(struct mrp_applicant *app,
648                                         struct sk_buff *skb,
649                                         enum mrp_vecattr_event vaevent)
650 {
651         struct mrp_attr *attr;
652         enum mrp_event event;
653
654         attr = mrp_attr_lookup(app, mrp_cb(skb)->attrvalue,
655                                mrp_cb(skb)->mh->attrlen,
656                                mrp_cb(skb)->mh->attrtype);
657         if (attr == NULL)
658                 return;
659
660         switch (vaevent) {
661         case MRP_VECATTR_EVENT_NEW:
662                 event = MRP_EVENT_R_NEW;
663                 break;
664         case MRP_VECATTR_EVENT_JOIN_IN:
665                 event = MRP_EVENT_R_JOIN_IN;
666                 break;
667         case MRP_VECATTR_EVENT_IN:
668                 event = MRP_EVENT_R_IN;
669                 break;
670         case MRP_VECATTR_EVENT_JOIN_MT:
671                 event = MRP_EVENT_R_JOIN_MT;
672                 break;
673         case MRP_VECATTR_EVENT_MT:
674                 event = MRP_EVENT_R_MT;
675                 break;
676         case MRP_VECATTR_EVENT_LV:
677                 event = MRP_EVENT_R_LV;
678                 break;
679         default:
680                 return;
681         }
682
683         mrp_attr_event(app, attr, event);
684 }
685
686 static int mrp_pdu_parse_vecattr(struct mrp_applicant *app,
687                                  struct sk_buff *skb, int *offset)
688 {
689         struct mrp_vecattr_hdr _vah;
690         u16 valen;
691         u8 vaevents, vaevent;
692
693         mrp_cb(skb)->vah = skb_header_pointer(skb, *offset, sizeof(_vah),
694                                               &_vah);
695         if (!mrp_cb(skb)->vah)
696                 return -1;
697         *offset += sizeof(_vah);
698
699         if (get_unaligned(&mrp_cb(skb)->vah->lenflags) &
700             MRP_VECATTR_HDR_FLAG_LA)
701                 mrp_mad_event(app, MRP_EVENT_R_LA);
702         valen = be16_to_cpu(get_unaligned(&mrp_cb(skb)->vah->lenflags) &
703                             MRP_VECATTR_HDR_LEN_MASK);
704
705         /* The VectorAttribute structure in a PDU carries event information
706          * about one or more attributes having consecutive values. Only the
707          * value for the first attribute is contained in the structure. So
708          * we make a copy of that value, and then increment it each time we
709          * advance to the next event in its Vector.
710          */
711         if (sizeof(struct mrp_skb_cb) + mrp_cb(skb)->mh->attrlen >
712             FIELD_SIZEOF(struct sk_buff, cb))
713                 return -1;
714         if (skb_copy_bits(skb, *offset, mrp_cb(skb)->attrvalue,
715                           mrp_cb(skb)->mh->attrlen) < 0)
716                 return -1;
717         *offset += mrp_cb(skb)->mh->attrlen;
718
719         /* In a VectorAttribute, the Vector contains events which are packed
720          * three to a byte. We process one byte of the Vector at a time.
721          */
722         while (valen > 0) {
723                 if (skb_copy_bits(skb, *offset, &vaevents,
724                                   sizeof(vaevents)) < 0)
725                         return -1;
726                 *offset += sizeof(vaevents);
727
728                 /* Extract and process the first event. */
729                 vaevent = vaevents / (__MRP_VECATTR_EVENT_MAX *
730                                       __MRP_VECATTR_EVENT_MAX);
731                 if (vaevent >= __MRP_VECATTR_EVENT_MAX) {
732                         /* The byte is malformed; stop processing. */
733                         return -1;
734                 }
735                 mrp_pdu_parse_vecattr_event(app, skb, vaevent);
736
737                 /* If present, extract and process the second event. */
738                 if (!--valen)
739                         break;
740                 mrp_attrvalue_inc(mrp_cb(skb)->attrvalue,
741                                   mrp_cb(skb)->mh->attrlen);
742                 vaevents %= (__MRP_VECATTR_EVENT_MAX *
743                              __MRP_VECATTR_EVENT_MAX);
744                 vaevent = vaevents / __MRP_VECATTR_EVENT_MAX;
745                 mrp_pdu_parse_vecattr_event(app, skb, vaevent);
746
747                 /* If present, extract and process the third event. */
748                 if (!--valen)
749                         break;
750                 mrp_attrvalue_inc(mrp_cb(skb)->attrvalue,
751                                   mrp_cb(skb)->mh->attrlen);
752                 vaevents %= __MRP_VECATTR_EVENT_MAX;
753                 vaevent = vaevents;
754                 mrp_pdu_parse_vecattr_event(app, skb, vaevent);
755         }
756         return 0;
757 }
758
759 static int mrp_pdu_parse_msg(struct mrp_applicant *app, struct sk_buff *skb,
760                              int *offset)
761 {
762         struct mrp_msg_hdr _mh;
763
764         mrp_cb(skb)->mh = skb_header_pointer(skb, *offset, sizeof(_mh), &_mh);
765         if (!mrp_cb(skb)->mh)
766                 return -1;
767         *offset += sizeof(_mh);
768
769         if (mrp_cb(skb)->mh->attrtype == 0 ||
770             mrp_cb(skb)->mh->attrtype > app->app->maxattr ||
771             mrp_cb(skb)->mh->attrlen == 0)
772                 return -1;
773
774         while (skb->len > *offset) {
775                 if (mrp_pdu_parse_end_mark(skb, offset) < 0)
776                         break;
777                 if (mrp_pdu_parse_vecattr(app, skb, offset) < 0)
778                         return -1;
779         }
780         return 0;
781 }
782
783 static int mrp_rcv(struct sk_buff *skb, struct net_device *dev,
784                    struct packet_type *pt, struct net_device *orig_dev)
785 {
786         struct mrp_application *appl = container_of(pt, struct mrp_application,
787                                                     pkttype);
788         struct mrp_port *port;
789         struct mrp_applicant *app;
790         struct mrp_pdu_hdr _ph;
791         const struct mrp_pdu_hdr *ph;
792         int offset = skb_network_offset(skb);
793
794         /* If the interface is in promiscuous mode, drop the packet if
795          * it was unicast to another host.
796          */
797         if (unlikely(skb->pkt_type == PACKET_OTHERHOST))
798                 goto out;
799         skb = skb_share_check(skb, GFP_ATOMIC);
800         if (unlikely(!skb))
801                 goto out;
802         port = rcu_dereference(dev->mrp_port);
803         if (unlikely(!port))
804                 goto out;
805         app = rcu_dereference(port->applicants[appl->type]);
806         if (unlikely(!app))
807                 goto out;
808
809         ph = skb_header_pointer(skb, offset, sizeof(_ph), &_ph);
810         if (!ph)
811                 goto out;
812         offset += sizeof(_ph);
813
814         if (ph->version != app->app->version)
815                 goto out;
816
817         spin_lock(&app->lock);
818         while (skb->len > offset) {
819                 if (mrp_pdu_parse_end_mark(skb, &offset) < 0)
820                         break;
821                 if (mrp_pdu_parse_msg(app, skb, &offset) < 0)
822                         break;
823         }
824         spin_unlock(&app->lock);
825 out:
826         kfree_skb(skb);
827         return 0;
828 }
829
830 static int mrp_init_port(struct net_device *dev)
831 {
832         struct mrp_port *port;
833
834         port = kzalloc(sizeof(*port), GFP_KERNEL);
835         if (!port)
836                 return -ENOMEM;
837         rcu_assign_pointer(dev->mrp_port, port);
838         return 0;
839 }
840
841 static void mrp_release_port(struct net_device *dev)
842 {
843         struct mrp_port *port = rtnl_dereference(dev->mrp_port);
844         unsigned int i;
845
846         for (i = 0; i <= MRP_APPLICATION_MAX; i++) {
847                 if (rtnl_dereference(port->applicants[i]))
848                         return;
849         }
850         RCU_INIT_POINTER(dev->mrp_port, NULL);
851         kfree_rcu(port, rcu);
852 }
853
854 int mrp_init_applicant(struct net_device *dev, struct mrp_application *appl)
855 {
856         struct mrp_applicant *app;
857         int err;
858
859         ASSERT_RTNL();
860
861         if (!rtnl_dereference(dev->mrp_port)) {
862                 err = mrp_init_port(dev);
863                 if (err < 0)
864                         goto err1;
865         }
866
867         err = -ENOMEM;
868         app = kzalloc(sizeof(*app), GFP_KERNEL);
869         if (!app)
870                 goto err2;
871
872         err = dev_mc_add(dev, appl->group_address);
873         if (err < 0)
874                 goto err3;
875
876         app->dev = dev;
877         app->app = appl;
878         app->mad = RB_ROOT;
879         spin_lock_init(&app->lock);
880         skb_queue_head_init(&app->queue);
881         rcu_assign_pointer(dev->mrp_port->applicants[appl->type], app);
882         setup_timer(&app->join_timer, mrp_join_timer, (unsigned long)app);
883         mrp_join_timer_arm(app);
884         setup_timer(&app->periodic_timer, mrp_periodic_timer,
885                     (unsigned long)app);
886         mrp_periodic_timer_arm(app);
887         return 0;
888
889 err3:
890         kfree(app);
891 err2:
892         mrp_release_port(dev);
893 err1:
894         return err;
895 }
896 EXPORT_SYMBOL_GPL(mrp_init_applicant);
897
898 void mrp_uninit_applicant(struct net_device *dev, struct mrp_application *appl)
899 {
900         struct mrp_port *port = rtnl_dereference(dev->mrp_port);
901         struct mrp_applicant *app = rtnl_dereference(
902                 port->applicants[appl->type]);
903
904         ASSERT_RTNL();
905
906         RCU_INIT_POINTER(port->applicants[appl->type], NULL);
907
908         /* Delete timer and generate a final TX event to flush out
909          * all pending messages before the applicant is gone.
910          */
911         del_timer_sync(&app->join_timer);
912         del_timer_sync(&app->periodic_timer);
913
914         spin_lock_bh(&app->lock);
915         mrp_mad_event(app, MRP_EVENT_TX);
916         mrp_attr_destroy_all(app);
917         mrp_pdu_queue(app);
918         spin_unlock_bh(&app->lock);
919
920         mrp_queue_xmit(app);
921
922         dev_mc_del(dev, appl->group_address);
923         kfree_rcu(app, rcu);
924         mrp_release_port(dev);
925 }
926 EXPORT_SYMBOL_GPL(mrp_uninit_applicant);
927
928 int mrp_register_application(struct mrp_application *appl)
929 {
930         appl->pkttype.func = mrp_rcv;
931         dev_add_pack(&appl->pkttype);
932         return 0;
933 }
934 EXPORT_SYMBOL_GPL(mrp_register_application);
935
936 void mrp_unregister_application(struct mrp_application *appl)
937 {
938         dev_remove_pack(&appl->pkttype);
939 }
940 EXPORT_SYMBOL_GPL(mrp_unregister_application);