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c76acec6
JF
1/*
2 * IPv4 over IEEE 1394, per RFC 2734
cb6bf355 3 * IPv6 over IEEE 1394, per RFC 3146
c76acec6
JF
4 *
5 * Copyright (C) 2009 Jay Fenlason <fenlason@redhat.com>
6 *
7 * based on eth1394 by Ben Collins et al
8 */
9
f91e3bd8 10#include <linux/bug.h>
bf337b15 11#include <linux/compiler.h>
48553011 12#include <linux/delay.h>
c76acec6 13#include <linux/device.h>
c1671470 14#include <linux/ethtool.h>
c76acec6
JF
15#include <linux/firewire.h>
16#include <linux/firewire-constants.h>
17#include <linux/highmem.h>
18#include <linux/in.h>
19#include <linux/ip.h>
f91e3bd8 20#include <linux/jiffies.h>
c76acec6
JF
21#include <linux/mod_devicetable.h>
22#include <linux/module.h>
23#include <linux/moduleparam.h>
5a124d38 24#include <linux/mutex.h>
c76acec6
JF
25#include <linux/netdevice.h>
26#include <linux/skbuff.h>
5a0e3ad6 27#include <linux/slab.h>
5a124d38 28#include <linux/spinlock.h>
c76acec6
JF
29
30#include <asm/unaligned.h>
31#include <net/arp.h>
6752c8db 32#include <net/firewire.h>
c76acec6 33
b2268830
SR
34/* rx limits */
35#define FWNET_MAX_FRAGMENTS 30 /* arbitrary, > TX queue depth */
36#define FWNET_ISO_PAGE_COUNT (PAGE_SIZE < 16*1024 ? 4 : 2)
37
38/* tx limits */
39#define FWNET_MAX_QUEUED_DATAGRAMS 20 /* < 64 = number of tlabels */
40#define FWNET_MIN_QUEUED_DATAGRAMS 10 /* should keep AT DMA busy enough */
41#define FWNET_TX_QUEUE_LEN FWNET_MAX_QUEUED_DATAGRAMS /* ? */
c76acec6 42
f91e3bd8
SR
43#define IEEE1394_BROADCAST_CHANNEL 31
44#define IEEE1394_ALL_NODES (0xffc0 | 0x003f)
45#define IEEE1394_MAX_PAYLOAD_S100 512
46#define FWNET_NO_FIFO_ADDR (~0ULL)
c76acec6 47
f91e3bd8
SR
48#define IANA_SPECIFIER_ID 0x00005eU
49#define RFC2734_SW_VERSION 0x000001U
cb6bf355 50#define RFC3146_SW_VERSION 0x000002U
c76acec6 51
f91e3bd8 52#define IEEE1394_GASP_HDR_SIZE 8
c76acec6 53
f91e3bd8
SR
54#define RFC2374_UNFRAG_HDR_SIZE 4
55#define RFC2374_FRAG_HDR_SIZE 8
56#define RFC2374_FRAG_OVERHEAD 4
c76acec6 57
f91e3bd8
SR
58#define RFC2374_HDR_UNFRAG 0 /* unfragmented */
59#define RFC2374_HDR_FIRSTFRAG 1 /* first fragment */
60#define RFC2374_HDR_LASTFRAG 2 /* last fragment */
61#define RFC2374_HDR_INTFRAG 3 /* interior fragment */
c76acec6 62
021b97e4
YH
63static bool fwnet_hwaddr_is_multicast(u8 *ha)
64{
65 return !!(*ha & 1);
66}
67
f91e3bd8
SR
68/* IPv4 and IPv6 encapsulation header */
69struct rfc2734_header {
c76acec6
JF
70 u32 w0;
71 u32 w1;
72};
73
f91e3bd8
SR
74#define fwnet_get_hdr_lf(h) (((h)->w0 & 0xc0000000) >> 30)
75#define fwnet_get_hdr_ether_type(h) (((h)->w0 & 0x0000ffff))
e9300a4b 76#define fwnet_get_hdr_dg_size(h) ((((h)->w0 & 0x0fff0000) >> 16) + 1)
f91e3bd8
SR
77#define fwnet_get_hdr_fg_off(h) (((h)->w0 & 0x00000fff))
78#define fwnet_get_hdr_dgl(h) (((h)->w1 & 0xffff0000) >> 16)
c76acec6 79
e9300a4b 80#define fwnet_set_hdr_lf(lf) ((lf) << 30)
f91e3bd8 81#define fwnet_set_hdr_ether_type(et) (et)
e9300a4b 82#define fwnet_set_hdr_dg_size(dgs) (((dgs) - 1) << 16)
f91e3bd8 83#define fwnet_set_hdr_fg_off(fgo) (fgo)
c76acec6 84
f91e3bd8 85#define fwnet_set_hdr_dgl(dgl) ((dgl) << 16)
c76acec6 86
f91e3bd8
SR
87static inline void fwnet_make_uf_hdr(struct rfc2734_header *hdr,
88 unsigned ether_type)
89{
90 hdr->w0 = fwnet_set_hdr_lf(RFC2374_HDR_UNFRAG)
91 | fwnet_set_hdr_ether_type(ether_type);
92}
c76acec6 93
f91e3bd8
SR
94static inline void fwnet_make_ff_hdr(struct rfc2734_header *hdr,
95 unsigned ether_type, unsigned dg_size, unsigned dgl)
96{
97 hdr->w0 = fwnet_set_hdr_lf(RFC2374_HDR_FIRSTFRAG)
98 | fwnet_set_hdr_dg_size(dg_size)
99 | fwnet_set_hdr_ether_type(ether_type);
100 hdr->w1 = fwnet_set_hdr_dgl(dgl);
101}
c76acec6 102
f91e3bd8
SR
103static inline void fwnet_make_sf_hdr(struct rfc2734_header *hdr,
104 unsigned lf, unsigned dg_size, unsigned fg_off, unsigned dgl)
105{
106 hdr->w0 = fwnet_set_hdr_lf(lf)
107 | fwnet_set_hdr_dg_size(dg_size)
108 | fwnet_set_hdr_fg_off(fg_off);
109 hdr->w1 = fwnet_set_hdr_dgl(dgl);
110}
c76acec6
JF
111
112/* This list keeps track of what parts of the datagram have been filled in */
f91e3bd8
SR
113struct fwnet_fragment_info {
114 struct list_head fi_link;
c76acec6
JF
115 u16 offset;
116 u16 len;
117};
118
f91e3bd8
SR
119struct fwnet_partial_datagram {
120 struct list_head pd_link;
121 struct list_head fi_list;
c76acec6
JF
122 struct sk_buff *skb;
123 /* FIXME Why not use skb->data? */
124 char *pbuf;
125 u16 datagram_label;
126 u16 ether_type;
127 u16 datagram_size;
128};
129
5a124d38
SR
130static DEFINE_MUTEX(fwnet_device_mutex);
131static LIST_HEAD(fwnet_device_list);
c76acec6 132
f91e3bd8 133struct fwnet_device {
5a124d38 134 struct list_head dev_link;
c76acec6 135 spinlock_t lock;
f91e3bd8
SR
136 enum {
137 FWNET_BROADCAST_ERROR,
138 FWNET_BROADCAST_RUNNING,
139 FWNET_BROADCAST_STOPPED,
140 } broadcast_state;
c76acec6
JF
141 struct fw_iso_context *broadcast_rcv_context;
142 struct fw_iso_buffer broadcast_rcv_buffer;
143 void **broadcast_rcv_buffer_ptrs;
144 unsigned broadcast_rcv_next_ptr;
145 unsigned num_broadcast_rcv_ptrs;
146 unsigned rcv_buffer_size;
147 /*
148 * This value is the maximum unfragmented datagram size that can be
149 * sent by the hardware. It already has the GASP overhead and the
150 * unfragmented datagram header overhead calculated into it.
151 */
152 unsigned broadcast_xmt_max_payload;
153 u16 broadcast_xmt_datagramlabel;
154
155 /*
f91e3bd8 156 * The CSR address that remote nodes must send datagrams to for us to
c76acec6
JF
157 * receive them.
158 */
159 struct fw_address_handler handler;
160 u64 local_fifo;
161
48553011
SR
162 /* Number of tx datagrams that have been queued but not yet acked */
163 int queued_datagrams;
c76acec6 164
c1671470 165 int peer_count;
5a124d38 166 struct list_head peer_list;
c76acec6 167 struct fw_card *card;
5a124d38
SR
168 struct net_device *netdev;
169};
170
171struct fwnet_peer {
172 struct list_head peer_link;
173 struct fwnet_device *dev;
174 u64 guid;
5a124d38
SR
175
176 /* guarded by dev->lock */
177 struct list_head pd_list; /* received partial datagrams */
178 unsigned pdg_size; /* pd_list size */
179
180 u16 datagram_label; /* outgoing datagram label */
48553011 181 u16 max_payload; /* includes RFC2374_FRAG_HDR_SIZE overhead */
5a124d38
SR
182 int node_id;
183 int generation;
184 unsigned speed;
c76acec6
JF
185};
186
187/* This is our task struct. It's used for the packet complete callback. */
f91e3bd8 188struct fwnet_packet_task {
c76acec6 189 struct fw_transaction transaction;
f91e3bd8 190 struct rfc2734_header hdr;
c76acec6 191 struct sk_buff *skb;
f91e3bd8
SR
192 struct fwnet_device *dev;
193
c76acec6 194 int outstanding_pkts;
c76acec6
JF
195 u64 fifo_addr;
196 u16 dest_node;
48553011 197 u16 max_payload;
c76acec6
JF
198 u8 generation;
199 u8 speed;
48553011 200 u8 enqueued;
c76acec6
JF
201};
202
6752c8db
YH
203/*
204 * Get fifo address embedded in hwaddr
205 */
206static __u64 fwnet_hwaddr_fifo(union fwnet_hwaddr *ha)
207{
208 return (u64)get_unaligned_be16(&ha->uc.fifo_hi) << 32
209 | get_unaligned_be32(&ha->uc.fifo_lo);
210}
211
f91e3bd8
SR
212/*
213 * saddr == NULL means use device source address.
214 * daddr == NULL means leave destination address (eg unresolved arp).
215 */
216static int fwnet_header_create(struct sk_buff *skb, struct net_device *net,
217 unsigned short type, const void *daddr,
218 const void *saddr, unsigned len)
219{
220 struct fwnet_header *h;
c76acec6 221
d58ff351 222 h = skb_push(skb, sizeof(*h));
f91e3bd8 223 put_unaligned_be16(type, &h->h_proto);
c76acec6 224
f91e3bd8
SR
225 if (net->flags & (IFF_LOOPBACK | IFF_NOARP)) {
226 memset(h->h_dest, 0, net->addr_len);
c76acec6 227
f91e3bd8 228 return net->hard_header_len;
c76acec6
JF
229 }
230
231 if (daddr) {
f91e3bd8
SR
232 memcpy(h->h_dest, daddr, net->addr_len);
233
234 return net->hard_header_len;
c76acec6
JF
235 }
236
f91e3bd8 237 return -net->hard_header_len;
c76acec6
JF
238}
239
f91e3bd8 240static int fwnet_header_cache(const struct neighbour *neigh,
e69dd336 241 struct hh_cache *hh, __be16 type)
f91e3bd8
SR
242{
243 struct net_device *net;
244 struct fwnet_header *h;
c76acec6 245
e69dd336 246 if (type == cpu_to_be16(ETH_P_802_3))
c76acec6 247 return -1;
f91e3bd8 248 net = neigh->dev;
82586340 249 h = (struct fwnet_header *)((u8 *)hh->hh_data + HH_DATA_OFF(sizeof(*h)));
e69dd336 250 h->h_proto = type;
f91e3bd8
SR
251 memcpy(h->h_dest, neigh->ha, net->addr_len);
252 hh->hh_len = FWNET_HLEN;
c76acec6 253
c76acec6
JF
254 return 0;
255}
256
257/* Called by Address Resolution module to notify changes in address. */
f91e3bd8
SR
258static void fwnet_header_cache_update(struct hh_cache *hh,
259 const struct net_device *net, const unsigned char *haddr)
260{
82586340 261 memcpy((u8 *)hh->hh_data + HH_DATA_OFF(FWNET_HLEN), haddr, net->addr_len);
c76acec6
JF
262}
263
f91e3bd8
SR
264static int fwnet_header_parse(const struct sk_buff *skb, unsigned char *haddr)
265{
266 memcpy(haddr, skb->dev->dev_addr, FWNET_ALEN);
267
268 return FWNET_ALEN;
c76acec6
JF
269}
270
f91e3bd8
SR
271static const struct header_ops fwnet_header_ops = {
272 .create = fwnet_header_create,
f91e3bd8
SR
273 .cache = fwnet_header_cache,
274 .cache_update = fwnet_header_cache_update,
275 .parse = fwnet_header_parse,
c76acec6
JF
276};
277
c76acec6 278/* FIXME: is this correct for all cases? */
f91e3bd8
SR
279static bool fwnet_frag_overlap(struct fwnet_partial_datagram *pd,
280 unsigned offset, unsigned len)
c76acec6 281{
f91e3bd8 282 struct fwnet_fragment_info *fi;
c76acec6
JF
283 unsigned end = offset + len;
284
f91e3bd8
SR
285 list_for_each_entry(fi, &pd->fi_list, fi_link)
286 if (offset < fi->offset + fi->len && end > fi->offset)
c76acec6 287 return true;
f91e3bd8 288
c76acec6
JF
289 return false;
290}
291
292/* Assumes that new fragment does not overlap any existing fragments */
f91e3bd8
SR
293static struct fwnet_fragment_info *fwnet_frag_new(
294 struct fwnet_partial_datagram *pd, unsigned offset, unsigned len)
295{
296 struct fwnet_fragment_info *fi, *fi2, *new;
c76acec6
JF
297 struct list_head *list;
298
f91e3bd8
SR
299 list = &pd->fi_list;
300 list_for_each_entry(fi, &pd->fi_list, fi_link) {
c76acec6
JF
301 if (fi->offset + fi->len == offset) {
302 /* The new fragment can be tacked on to the end */
303 /* Did the new fragment plug a hole? */
f91e3bd8
SR
304 fi2 = list_entry(fi->fi_link.next,
305 struct fwnet_fragment_info, fi_link);
c76acec6 306 if (fi->offset + fi->len == fi2->offset) {
c76acec6
JF
307 /* glue fragments together */
308 fi->len += len + fi2->len;
f91e3bd8 309 list_del(&fi2->fi_link);
c76acec6
JF
310 kfree(fi2);
311 } else {
c76acec6
JF
312 fi->len += len;
313 }
f91e3bd8 314
c76acec6
JF
315 return fi;
316 }
317 if (offset + len == fi->offset) {
318 /* The new fragment can be tacked on to the beginning */
319 /* Did the new fragment plug a hole? */
f91e3bd8
SR
320 fi2 = list_entry(fi->fi_link.prev,
321 struct fwnet_fragment_info, fi_link);
c76acec6
JF
322 if (fi2->offset + fi2->len == fi->offset) {
323 /* glue fragments together */
c76acec6 324 fi2->len += fi->len + len;
f91e3bd8 325 list_del(&fi->fi_link);
c76acec6 326 kfree(fi);
f91e3bd8 327
c76acec6
JF
328 return fi2;
329 }
c76acec6
JF
330 fi->offset = offset;
331 fi->len += len;
f91e3bd8 332
c76acec6
JF
333 return fi;
334 }
335 if (offset > fi->offset + fi->len) {
f91e3bd8 336 list = &fi->fi_link;
c76acec6
JF
337 break;
338 }
339 if (offset + len < fi->offset) {
f91e3bd8 340 list = fi->fi_link.prev;
c76acec6
JF
341 break;
342 }
343 }
344
345 new = kmalloc(sizeof(*new), GFP_ATOMIC);
cfb0c9d1 346 if (!new)
c76acec6 347 return NULL;
c76acec6
JF
348
349 new->offset = offset;
350 new->len = len;
f91e3bd8
SR
351 list_add(&new->fi_link, list);
352
c76acec6
JF
353 return new;
354}
355
f91e3bd8
SR
356static struct fwnet_partial_datagram *fwnet_pd_new(struct net_device *net,
357 struct fwnet_peer *peer, u16 datagram_label, unsigned dg_size,
358 void *frag_buf, unsigned frag_off, unsigned frag_len)
359{
360 struct fwnet_partial_datagram *new;
361 struct fwnet_fragment_info *fi;
c76acec6
JF
362
363 new = kmalloc(sizeof(*new), GFP_ATOMIC);
364 if (!new)
365 goto fail;
f91e3bd8
SR
366
367 INIT_LIST_HEAD(&new->fi_list);
368 fi = fwnet_frag_new(new, frag_off, frag_len);
369 if (fi == NULL)
c76acec6 370 goto fail_w_new;
f91e3bd8 371
c76acec6
JF
372 new->datagram_label = datagram_label;
373 new->datagram_size = dg_size;
82586340 374 new->skb = dev_alloc_skb(dg_size + LL_RESERVED_SPACE(net));
f91e3bd8 375 if (new->skb == NULL)
c76acec6 376 goto fail_w_fi;
f91e3bd8 377
82586340 378 skb_reserve(new->skb, LL_RESERVED_SPACE(net));
c76acec6
JF
379 new->pbuf = skb_put(new->skb, dg_size);
380 memcpy(new->pbuf + frag_off, frag_buf, frag_len);
f91e3bd8
SR
381 list_add_tail(&new->pd_link, &peer->pd_list);
382
c76acec6
JF
383 return new;
384
385fail_w_fi:
386 kfree(fi);
387fail_w_new:
388 kfree(new);
389fail:
c76acec6
JF
390 return NULL;
391}
392
f91e3bd8
SR
393static struct fwnet_partial_datagram *fwnet_pd_find(struct fwnet_peer *peer,
394 u16 datagram_label)
395{
396 struct fwnet_partial_datagram *pd;
c76acec6 397
f91e3bd8
SR
398 list_for_each_entry(pd, &peer->pd_list, pd_link)
399 if (pd->datagram_label == datagram_label)
c76acec6 400 return pd;
f91e3bd8 401
c76acec6
JF
402 return NULL;
403}
404
405
f91e3bd8
SR
406static void fwnet_pd_delete(struct fwnet_partial_datagram *old)
407{
408 struct fwnet_fragment_info *fi, *n;
c76acec6 409
f91e3bd8 410 list_for_each_entry_safe(fi, n, &old->fi_list, fi_link)
c76acec6 411 kfree(fi);
f91e3bd8
SR
412
413 list_del(&old->pd_link);
c76acec6
JF
414 dev_kfree_skb_any(old->skb);
415 kfree(old);
416}
417
f91e3bd8
SR
418static bool fwnet_pd_update(struct fwnet_peer *peer,
419 struct fwnet_partial_datagram *pd, void *frag_buf,
420 unsigned frag_off, unsigned frag_len)
421{
422 if (fwnet_frag_new(pd, frag_off, frag_len) == NULL)
c76acec6 423 return false;
f91e3bd8 424
c76acec6
JF
425 memcpy(pd->pbuf + frag_off, frag_buf, frag_len);
426
427 /*
25985edc 428 * Move list entry to beginning of list so that oldest partial
c76acec6
JF
429 * datagrams percolate to the end of the list
430 */
f91e3bd8
SR
431 list_move_tail(&pd->pd_link, &peer->pd_list);
432
c76acec6
JF
433 return true;
434}
435
f91e3bd8
SR
436static bool fwnet_pd_is_complete(struct fwnet_partial_datagram *pd)
437{
438 struct fwnet_fragment_info *fi;
c76acec6 439
f91e3bd8 440 fi = list_entry(pd->fi_list.next, struct fwnet_fragment_info, fi_link);
c76acec6 441
f91e3bd8 442 return fi->len == pd->datagram_size;
c76acec6
JF
443}
444
5a124d38 445/* caller must hold dev->lock */
f91e3bd8
SR
446static struct fwnet_peer *fwnet_peer_find_by_guid(struct fwnet_device *dev,
447 u64 guid)
448{
5a124d38 449 struct fwnet_peer *peer;
c76acec6 450
5a124d38
SR
451 list_for_each_entry(peer, &dev->peer_list, peer_link)
452 if (peer->guid == guid)
453 return peer;
c76acec6 454
5a124d38 455 return NULL;
c76acec6
JF
456}
457
5a124d38 458/* caller must hold dev->lock */
f91e3bd8 459static struct fwnet_peer *fwnet_peer_find_by_node_id(struct fwnet_device *dev,
5a124d38 460 int node_id, int generation)
f91e3bd8 461{
5a124d38 462 struct fwnet_peer *peer;
c76acec6 463
5a124d38
SR
464 list_for_each_entry(peer, &dev->peer_list, peer_link)
465 if (peer->node_id == node_id &&
466 peer->generation == generation)
467 return peer;
f91e3bd8 468
5a124d38 469 return NULL;
c76acec6
JF
470}
471
5a124d38
SR
472/* See IEEE 1394-2008 table 6-4, table 8-8, table 16-18. */
473static unsigned fwnet_max_payload(unsigned max_rec, unsigned speed)
f91e3bd8 474{
5a124d38 475 max_rec = min(max_rec, speed + 8);
4ec4a67a 476 max_rec = clamp(max_rec, 8U, 11U); /* 512...4096 */
5a124d38
SR
477
478 return (1 << (max_rec + 1)) - RFC2374_FRAG_HDR_SIZE;
c76acec6
JF
479}
480
5a124d38 481
f91e3bd8
SR
482static int fwnet_finish_incoming_packet(struct net_device *net,
483 struct sk_buff *skb, u16 source_node_id,
484 bool is_broadcast, u16 ether_type)
485{
486 struct fwnet_device *dev;
c76acec6 487 int status;
f91e3bd8 488 __be64 guid;
c76acec6 489
18406d7e
YH
490 switch (ether_type) {
491 case ETH_P_ARP:
492 case ETH_P_IP:
cb6bf355
YH
493#if IS_ENABLED(CONFIG_IPV6)
494 case ETH_P_IPV6:
495#endif
18406d7e
YH
496 break;
497 default:
498 goto err;
499 }
500
f91e3bd8 501 dev = netdev_priv(net);
c76acec6 502 /* Write metadata, and then pass to the receive level */
f91e3bd8 503 skb->dev = net;
b577d7e2 504 skb->ip_summed = CHECKSUM_NONE;
c76acec6
JF
505
506 /*
507 * Parse the encapsulation header. This actually does the job of
6752c8db 508 * converting to an ethernet-like pseudo frame header.
c76acec6 509 */
f91e3bd8
SR
510 guid = cpu_to_be64(dev->card->guid);
511 if (dev_hard_header(skb, net, ether_type,
6752c8db 512 is_broadcast ? net->broadcast : net->dev_addr,
f91e3bd8
SR
513 NULL, skb->len) >= 0) {
514 struct fwnet_header *eth;
c76acec6
JF
515 u16 *rawp;
516 __be16 protocol;
517
518 skb_reset_mac_header(skb);
519 skb_pull(skb, sizeof(*eth));
f91e3bd8 520 eth = (struct fwnet_header *)skb_mac_header(skb);
021b97e4 521 if (fwnet_hwaddr_is_multicast(eth->h_dest)) {
f91e3bd8
SR
522 if (memcmp(eth->h_dest, net->broadcast,
523 net->addr_len) == 0)
c76acec6 524 skb->pkt_type = PACKET_BROADCAST;
c76acec6
JF
525#if 0
526 else
527 skb->pkt_type = PACKET_MULTICAST;
528#endif
529 } else {
156ce867 530 if (memcmp(eth->h_dest, net->dev_addr, net->addr_len))
c76acec6 531 skb->pkt_type = PACKET_OTHERHOST;
c76acec6 532 }
e5c5d22e 533 if (ntohs(eth->h_proto) >= ETH_P_802_3_MIN) {
c76acec6
JF
534 protocol = eth->h_proto;
535 } else {
536 rawp = (u16 *)skb->data;
f91e3bd8 537 if (*rawp == 0xffff)
c76acec6 538 protocol = htons(ETH_P_802_3);
f91e3bd8 539 else
c76acec6 540 protocol = htons(ETH_P_802_2);
c76acec6
JF
541 }
542 skb->protocol = protocol;
543 }
544 status = netif_rx(skb);
f91e3bd8
SR
545 if (status == NET_RX_DROP) {
546 net->stats.rx_errors++;
547 net->stats.rx_dropped++;
c76acec6 548 } else {
f91e3bd8
SR
549 net->stats.rx_packets++;
550 net->stats.rx_bytes += skb->len;
c76acec6 551 }
f91e3bd8 552
c76acec6
JF
553 return 0;
554
18406d7e 555 err:
f91e3bd8
SR
556 net->stats.rx_errors++;
557 net->stats.rx_dropped++;
558
c76acec6 559 dev_kfree_skb_any(skb);
f91e3bd8 560
1bf145fe 561 return -ENOENT;
c76acec6
JF
562}
563
f91e3bd8 564static int fwnet_incoming_packet(struct fwnet_device *dev, __be32 *buf, int len,
5a124d38
SR
565 int source_node_id, int generation,
566 bool is_broadcast)
f91e3bd8 567{
c76acec6 568 struct sk_buff *skb;
5a124d38 569 struct net_device *net = dev->netdev;
f91e3bd8 570 struct rfc2734_header hdr;
c76acec6
JF
571 unsigned lf;
572 unsigned long flags;
f91e3bd8
SR
573 struct fwnet_peer *peer;
574 struct fwnet_partial_datagram *pd;
c76acec6
JF
575 int fg_off;
576 int dg_size;
577 u16 datagram_label;
578 int retval;
579 u16 ether_type;
580
667121ac
SR
581 if (len <= RFC2374_UNFRAG_HDR_SIZE)
582 return 0;
583
f91e3bd8
SR
584 hdr.w0 = be32_to_cpu(buf[0]);
585 lf = fwnet_get_hdr_lf(&hdr);
586 if (lf == RFC2374_HDR_UNFRAG) {
c76acec6
JF
587 /*
588 * An unfragmented datagram has been received by the ieee1394
589 * bus. Build an skbuff around it so we can pass it to the
590 * high level network layer.
591 */
f91e3bd8 592 ether_type = fwnet_get_hdr_ether_type(&hdr);
c76acec6 593 buf++;
f91e3bd8 594 len -= RFC2374_UNFRAG_HDR_SIZE;
c76acec6 595
82586340 596 skb = dev_alloc_skb(len + LL_RESERVED_SPACE(net));
c76acec6 597 if (unlikely(!skb)) {
f91e3bd8
SR
598 net->stats.rx_dropped++;
599
1bf145fe 600 return -ENOMEM;
c76acec6 601 }
82586340 602 skb_reserve(skb, LL_RESERVED_SPACE(net));
59ae1d12 603 skb_put_data(skb, buf, len);
f91e3bd8
SR
604
605 return fwnet_finish_incoming_packet(net, skb, source_node_id,
606 is_broadcast, ether_type);
c76acec6 607 }
667121ac 608
c76acec6 609 /* A datagram fragment has been received, now the fun begins. */
667121ac
SR
610
611 if (len <= RFC2374_FRAG_HDR_SIZE)
612 return 0;
613
c76acec6 614 hdr.w1 = ntohl(buf[1]);
f91e3bd8
SR
615 buf += 2;
616 len -= RFC2374_FRAG_HDR_SIZE;
617 if (lf == RFC2374_HDR_FIRSTFRAG) {
618 ether_type = fwnet_get_hdr_ether_type(&hdr);
c76acec6
JF
619 fg_off = 0;
620 } else {
f91e3bd8
SR
621 ether_type = 0;
622 fg_off = fwnet_get_hdr_fg_off(&hdr);
c76acec6 623 }
f91e3bd8 624 datagram_label = fwnet_get_hdr_dgl(&hdr);
e9300a4b 625 dg_size = fwnet_get_hdr_dg_size(&hdr);
f91e3bd8 626
667121ac
SR
627 if (fg_off + len > dg_size)
628 return 0;
f91e3bd8 629
5a124d38
SR
630 spin_lock_irqsave(&dev->lock, flags);
631
632 peer = fwnet_peer_find_by_node_id(dev, source_node_id, generation);
1bf145fe
SR
633 if (!peer) {
634 retval = -ENOENT;
635 goto fail;
636 }
f91e3bd8
SR
637
638 pd = fwnet_pd_find(peer, datagram_label);
c76acec6 639 if (pd == NULL) {
f91e3bd8 640 while (peer->pdg_size >= FWNET_MAX_FRAGMENTS) {
c76acec6 641 /* remove the oldest */
f91e3bd8
SR
642 fwnet_pd_delete(list_first_entry(&peer->pd_list,
643 struct fwnet_partial_datagram, pd_link));
644 peer->pdg_size--;
c76acec6 645 }
f91e3bd8
SR
646 pd = fwnet_pd_new(net, peer, datagram_label,
647 dg_size, buf, fg_off, len);
648 if (pd == NULL) {
c76acec6 649 retval = -ENOMEM;
1bf145fe 650 goto fail;
c76acec6 651 }
f91e3bd8 652 peer->pdg_size++;
c76acec6 653 } else {
f91e3bd8
SR
654 if (fwnet_frag_overlap(pd, fg_off, len) ||
655 pd->datagram_size != dg_size) {
c76acec6
JF
656 /*
657 * Differing datagram sizes or overlapping fragments,
f91e3bd8 658 * discard old datagram and start a new one.
c76acec6 659 */
f91e3bd8
SR
660 fwnet_pd_delete(pd);
661 pd = fwnet_pd_new(net, peer, datagram_label,
662 dg_size, buf, fg_off, len);
663 if (pd == NULL) {
f91e3bd8 664 peer->pdg_size--;
1bf145fe
SR
665 retval = -ENOMEM;
666 goto fail;
c76acec6
JF
667 }
668 } else {
f91e3bd8 669 if (!fwnet_pd_update(peer, pd, buf, fg_off, len)) {
c76acec6
JF
670 /*
671 * Couldn't save off fragment anyway
672 * so might as well obliterate the
673 * datagram now.
674 */
f91e3bd8
SR
675 fwnet_pd_delete(pd);
676 peer->pdg_size--;
1bf145fe
SR
677 retval = -ENOMEM;
678 goto fail;
c76acec6
JF
679 }
680 }
681 } /* new datagram or add to existing one */
682
f91e3bd8 683 if (lf == RFC2374_HDR_FIRSTFRAG)
c76acec6 684 pd->ether_type = ether_type;
f91e3bd8
SR
685
686 if (fwnet_pd_is_complete(pd)) {
c76acec6 687 ether_type = pd->ether_type;
f91e3bd8 688 peer->pdg_size--;
c76acec6 689 skb = skb_get(pd->skb);
f91e3bd8
SR
690 fwnet_pd_delete(pd);
691
5a124d38 692 spin_unlock_irqrestore(&dev->lock, flags);
f91e3bd8
SR
693
694 return fwnet_finish_incoming_packet(net, skb, source_node_id,
695 false, ether_type);
c76acec6
JF
696 }
697 /*
698 * Datagram is not complete, we're done for the
699 * moment.
700 */
b2268830 701 retval = 0;
1bf145fe 702 fail:
5a124d38 703 spin_unlock_irqrestore(&dev->lock, flags);
f91e3bd8 704
1bf145fe 705 return retval;
c76acec6
JF
706}
707
f91e3bd8
SR
708static void fwnet_receive_packet(struct fw_card *card, struct fw_request *r,
709 int tcode, int destination, int source, int generation,
33e553fe
SR
710 unsigned long long offset, void *payload, size_t length,
711 void *callback_data)
f91e3bd8 712{
00635b8e
SR
713 struct fwnet_device *dev = callback_data;
714 int rcode;
c76acec6 715
00635b8e
SR
716 if (destination == IEEE1394_ALL_NODES) {
717 kfree(r);
f91e3bd8 718
c76acec6
JF
719 return;
720 }
f91e3bd8 721
00635b8e
SR
722 if (offset != dev->handler.offset)
723 rcode = RCODE_ADDRESS_ERROR;
724 else if (tcode != TCODE_WRITE_BLOCK_REQUEST)
725 rcode = RCODE_TYPE_ERROR;
726 else if (fwnet_incoming_packet(dev, payload, length,
727 source, generation, false) != 0) {
8408dc1c 728 dev_err(&dev->netdev->dev, "incoming packet failure\n");
00635b8e
SR
729 rcode = RCODE_CONFLICT_ERROR;
730 } else
731 rcode = RCODE_COMPLETE;
f91e3bd8 732
00635b8e 733 fw_send_response(card, r, rcode);
c76acec6
JF
734}
735
667121ac
SR
736static int gasp_source_id(__be32 *p)
737{
738 return be32_to_cpu(p[0]) >> 16;
739}
740
741static u32 gasp_specifier_id(__be32 *p)
742{
743 return (be32_to_cpu(p[0]) & 0xffff) << 8 |
744 (be32_to_cpu(p[1]) & 0xff000000) >> 24;
745}
746
747static u32 gasp_version(__be32 *p)
748{
749 return be32_to_cpu(p[1]) & 0xffffff;
750}
751
f91e3bd8
SR
752static void fwnet_receive_broadcast(struct fw_iso_context *context,
753 u32 cycle, size_t header_length, void *header, void *data)
754{
755 struct fwnet_device *dev;
c76acec6 756 struct fw_iso_packet packet;
f91e3bd8
SR
757 __be16 *hdr_ptr;
758 __be32 *buf_ptr;
c76acec6
JF
759 int retval;
760 u32 length;
c76acec6
JF
761 unsigned long offset;
762 unsigned long flags;
763
f91e3bd8 764 dev = data;
c76acec6 765 hdr_ptr = header;
f91e3bd8
SR
766 length = be16_to_cpup(hdr_ptr);
767
768 spin_lock_irqsave(&dev->lock, flags);
769
770 offset = dev->rcv_buffer_size * dev->broadcast_rcv_next_ptr;
771 buf_ptr = dev->broadcast_rcv_buffer_ptrs[dev->broadcast_rcv_next_ptr++];
772 if (dev->broadcast_rcv_next_ptr == dev->num_broadcast_rcv_ptrs)
773 dev->broadcast_rcv_next_ptr = 0;
774
775 spin_unlock_irqrestore(&dev->lock, flags);
c76acec6 776
667121ac
SR
777 if (length > IEEE1394_GASP_HDR_SIZE &&
778 gasp_specifier_id(buf_ptr) == IANA_SPECIFIER_ID &&
779 (gasp_version(buf_ptr) == RFC2734_SW_VERSION
cb6bf355 780#if IS_ENABLED(CONFIG_IPV6)
667121ac 781 || gasp_version(buf_ptr) == RFC3146_SW_VERSION
cb6bf355 782#endif
667121ac
SR
783 ))
784 fwnet_incoming_packet(dev, buf_ptr + 2,
785 length - IEEE1394_GASP_HDR_SIZE,
786 gasp_source_id(buf_ptr),
9d237342 787 context->card->generation, true);
f91e3bd8
SR
788
789 packet.payload_length = dev->rcv_buffer_size;
c76acec6
JF
790 packet.interrupt = 1;
791 packet.skip = 0;
792 packet.tag = 3;
793 packet.sy = 0;
f91e3bd8
SR
794 packet.header_length = IEEE1394_GASP_HDR_SIZE;
795
796 spin_lock_irqsave(&dev->lock, flags);
c76acec6 797
f91e3bd8
SR
798 retval = fw_iso_context_queue(dev->broadcast_rcv_context, &packet,
799 &dev->broadcast_rcv_buffer, offset);
800
801 spin_unlock_irqrestore(&dev->lock, flags);
802
13882a82
CL
803 if (retval >= 0)
804 fw_iso_context_queue_flush(dev->broadcast_rcv_context);
805 else
8408dc1c 806 dev_err(&dev->netdev->dev, "requeue failed\n");
c76acec6
JF
807}
808
f91e3bd8
SR
809static struct kmem_cache *fwnet_packet_task_cache;
810
110f82d7
SR
811static void fwnet_free_ptask(struct fwnet_packet_task *ptask)
812{
813 dev_kfree_skb_any(ptask->skb);
814 kmem_cache_free(fwnet_packet_task_cache, ptask);
815}
816
b2268830
SR
817/* Caller must hold dev->lock. */
818static void dec_queued_datagrams(struct fwnet_device *dev)
819{
820 if (--dev->queued_datagrams == FWNET_MIN_QUEUED_DATAGRAMS)
821 netif_wake_queue(dev->netdev);
822}
823
f91e3bd8
SR
824static int fwnet_send_packet(struct fwnet_packet_task *ptask);
825
826static void fwnet_transmit_packet_done(struct fwnet_packet_task *ptask)
827{
110f82d7 828 struct fwnet_device *dev = ptask->dev;
902bca00 829 struct sk_buff *skb = ptask->skb;
c76acec6 830 unsigned long flags;
110f82d7 831 bool free;
f91e3bd8
SR
832
833 spin_lock_irqsave(&dev->lock, flags);
f91e3bd8 834
110f82d7
SR
835 ptask->outstanding_pkts--;
836
837 /* Check whether we or the networking TX soft-IRQ is last user. */
48553011 838 free = (ptask->outstanding_pkts == 0 && ptask->enqueued);
7ee11fa8 839 if (free)
b2268830 840 dec_queued_datagrams(dev);
110f82d7 841
902bca00 842 if (ptask->outstanding_pkts == 0) {
902bca00
SR
843 dev->netdev->stats.tx_packets++;
844 dev->netdev->stats.tx_bytes += skb->len;
845 }
110f82d7
SR
846
847 spin_unlock_irqrestore(&dev->lock, flags);
f91e3bd8
SR
848
849 if (ptask->outstanding_pkts > 0) {
c76acec6
JF
850 u16 dg_size;
851 u16 fg_off;
852 u16 datagram_label;
853 u16 lf;
c76acec6
JF
854
855 /* Update the ptask to point to the next fragment and send it */
f91e3bd8 856 lf = fwnet_get_hdr_lf(&ptask->hdr);
c76acec6 857 switch (lf) {
f91e3bd8
SR
858 case RFC2374_HDR_LASTFRAG:
859 case RFC2374_HDR_UNFRAG:
c76acec6 860 default:
8408dc1c
SR
861 dev_err(&dev->netdev->dev,
862 "outstanding packet %x lf %x, header %x,%x\n",
863 ptask->outstanding_pkts, lf, ptask->hdr.w0,
864 ptask->hdr.w1);
c76acec6
JF
865 BUG();
866
f91e3bd8 867 case RFC2374_HDR_FIRSTFRAG:
c76acec6 868 /* Set frag type here for future interior fragments */
f91e3bd8
SR
869 dg_size = fwnet_get_hdr_dg_size(&ptask->hdr);
870 fg_off = ptask->max_payload - RFC2374_FRAG_HDR_SIZE;
871 datagram_label = fwnet_get_hdr_dgl(&ptask->hdr);
c76acec6
JF
872 break;
873
f91e3bd8
SR
874 case RFC2374_HDR_INTFRAG:
875 dg_size = fwnet_get_hdr_dg_size(&ptask->hdr);
876 fg_off = fwnet_get_hdr_fg_off(&ptask->hdr)
877 + ptask->max_payload - RFC2374_FRAG_HDR_SIZE;
878 datagram_label = fwnet_get_hdr_dgl(&ptask->hdr);
c76acec6
JF
879 break;
880 }
902bca00 881
9d237342
SG
882 if (ptask->dest_node == IEEE1394_ALL_NODES) {
883 skb_pull(skb,
884 ptask->max_payload + IEEE1394_GASP_HDR_SIZE);
885 } else {
886 skb_pull(skb, ptask->max_payload);
887 }
f91e3bd8
SR
888 if (ptask->outstanding_pkts > 1) {
889 fwnet_make_sf_hdr(&ptask->hdr, RFC2374_HDR_INTFRAG,
890 dg_size, fg_off, datagram_label);
c76acec6 891 } else {
f91e3bd8
SR
892 fwnet_make_sf_hdr(&ptask->hdr, RFC2374_HDR_LASTFRAG,
893 dg_size, fg_off, datagram_label);
894 ptask->max_payload = skb->len + RFC2374_FRAG_HDR_SIZE;
c76acec6 895 }
f91e3bd8 896 fwnet_send_packet(ptask);
c76acec6 897 }
110f82d7
SR
898
899 if (free)
900 fwnet_free_ptask(ptask);
c76acec6
JF
901}
902
7ee11fa8
SR
903static void fwnet_transmit_packet_failed(struct fwnet_packet_task *ptask)
904{
905 struct fwnet_device *dev = ptask->dev;
906 unsigned long flags;
907 bool free;
908
909 spin_lock_irqsave(&dev->lock, flags);
910
911 /* One fragment failed; don't try to send remaining fragments. */
912 ptask->outstanding_pkts = 0;
913
914 /* Check whether we or the networking TX soft-IRQ is last user. */
48553011 915 free = ptask->enqueued;
7ee11fa8 916 if (free)
b2268830 917 dec_queued_datagrams(dev);
7ee11fa8
SR
918
919 dev->netdev->stats.tx_dropped++;
920 dev->netdev->stats.tx_errors++;
921
922 spin_unlock_irqrestore(&dev->lock, flags);
923
924 if (free)
925 fwnet_free_ptask(ptask);
926}
927
f91e3bd8
SR
928static void fwnet_write_complete(struct fw_card *card, int rcode,
929 void *payload, size_t length, void *data)
930{
c4d6fd40
ML
931 struct fwnet_packet_task *ptask = data;
932 static unsigned long j;
933 static int last_rcode, errors_skipped;
c76acec6 934
7ee11fa8 935 if (rcode == RCODE_COMPLETE) {
f91e3bd8 936 fwnet_transmit_packet_done(ptask);
7ee11fa8 937 } else {
c4d6fd40 938 if (printk_timed_ratelimit(&j, 1000) || rcode != last_rcode) {
8408dc1c
SR
939 dev_err(&ptask->dev->netdev->dev,
940 "fwnet_write_complete failed: %x (skipped %d)\n",
941 rcode, errors_skipped);
c4d6fd40
ML
942
943 errors_skipped = 0;
944 last_rcode = rcode;
89875833 945 } else {
c4d6fd40 946 errors_skipped++;
89875833
SR
947 }
948 fwnet_transmit_packet_failed(ptask);
7ee11fa8 949 }
c76acec6
JF
950}
951
f91e3bd8
SR
952static int fwnet_send_packet(struct fwnet_packet_task *ptask)
953{
954 struct fwnet_device *dev;
c76acec6 955 unsigned tx_len;
f91e3bd8 956 struct rfc2734_header *bufhdr;
c76acec6 957 unsigned long flags;
110f82d7 958 bool free;
c76acec6 959
f91e3bd8 960 dev = ptask->dev;
c76acec6 961 tx_len = ptask->max_payload;
f91e3bd8
SR
962 switch (fwnet_get_hdr_lf(&ptask->hdr)) {
963 case RFC2374_HDR_UNFRAG:
d58ff351 964 bufhdr = skb_push(ptask->skb, RFC2374_UNFRAG_HDR_SIZE);
f91e3bd8 965 put_unaligned_be32(ptask->hdr.w0, &bufhdr->w0);
c76acec6
JF
966 break;
967
f91e3bd8
SR
968 case RFC2374_HDR_FIRSTFRAG:
969 case RFC2374_HDR_INTFRAG:
970 case RFC2374_HDR_LASTFRAG:
d58ff351 971 bufhdr = skb_push(ptask->skb, RFC2374_FRAG_HDR_SIZE);
f91e3bd8
SR
972 put_unaligned_be32(ptask->hdr.w0, &bufhdr->w0);
973 put_unaligned_be32(ptask->hdr.w1, &bufhdr->w1);
c76acec6
JF
974 break;
975
976 default:
977 BUG();
978 }
f91e3bd8
SR
979 if (ptask->dest_node == IEEE1394_ALL_NODES) {
980 u8 *p;
c76acec6 981 int generation;
f91e3bd8 982 int node_id;
cb6bf355 983 unsigned int sw_version;
c76acec6
JF
984
985 /* ptask->generation may not have been set yet */
f91e3bd8 986 generation = dev->card->generation;
c76acec6 987 smp_rmb();
f91e3bd8
SR
988 node_id = dev->card->node_id;
989
cb6bf355
YH
990 switch (ptask->skb->protocol) {
991 default:
992 sw_version = RFC2734_SW_VERSION;
993 break;
994#if IS_ENABLED(CONFIG_IPV6)
995 case htons(ETH_P_IPV6):
996 sw_version = RFC3146_SW_VERSION;
997#endif
998 }
999
9d237342 1000 p = skb_push(ptask->skb, IEEE1394_GASP_HDR_SIZE);
f91e3bd8
SR
1001 put_unaligned_be32(node_id << 16 | IANA_SPECIFIER_ID >> 8, p);
1002 put_unaligned_be32((IANA_SPECIFIER_ID & 0xff) << 24
cb6bf355 1003 | sw_version, &p[4]);
f91e3bd8
SR
1004
1005 /* We should not transmit if broadcast_channel.valid == 0. */
1006 fw_send_request(dev->card, &ptask->transaction,
1007 TCODE_STREAM_DATA,
1008 fw_stream_packet_destination_id(3,
1009 IEEE1394_BROADCAST_CHANNEL, 0),
1010 generation, SCODE_100, 0ULL, ptask->skb->data,
1011 tx_len + 8, fwnet_write_complete, ptask);
1012
f91e3bd8 1013 spin_lock_irqsave(&dev->lock, flags);
110f82d7
SR
1014
1015 /* If the AT tasklet already ran, we may be last user. */
48553011 1016 free = (ptask->outstanding_pkts == 0 && !ptask->enqueued);
110f82d7 1017 if (!free)
48553011
SR
1018 ptask->enqueued = true;
1019 else
b2268830 1020 dec_queued_datagrams(dev);
110f82d7 1021
f91e3bd8
SR
1022 spin_unlock_irqrestore(&dev->lock, flags);
1023
110f82d7 1024 goto out;
c76acec6 1025 }
f91e3bd8
SR
1026
1027 fw_send_request(dev->card, &ptask->transaction,
1028 TCODE_WRITE_BLOCK_REQUEST, ptask->dest_node,
1029 ptask->generation, ptask->speed, ptask->fifo_addr,
1030 ptask->skb->data, tx_len, fwnet_write_complete, ptask);
1031
f91e3bd8 1032 spin_lock_irqsave(&dev->lock, flags);
110f82d7
SR
1033
1034 /* If the AT tasklet already ran, we may be last user. */
48553011 1035 free = (ptask->outstanding_pkts == 0 && !ptask->enqueued);
110f82d7 1036 if (!free)
48553011
SR
1037 ptask->enqueued = true;
1038 else
b2268830 1039 dec_queued_datagrams(dev);
110f82d7 1040
f91e3bd8
SR
1041 spin_unlock_irqrestore(&dev->lock, flags);
1042
860e9538 1043 netif_trans_update(dev->netdev);
110f82d7
SR
1044 out:
1045 if (free)
1046 fwnet_free_ptask(ptask);
f91e3bd8 1047
c76acec6
JF
1048 return 0;
1049}
1050
9d39c90a
YH
1051static void fwnet_fifo_stop(struct fwnet_device *dev)
1052{
1053 if (dev->local_fifo == FWNET_NO_FIFO_ADDR)
1054 return;
1055
1056 fw_core_remove_address_handler(&dev->handler);
1057 dev->local_fifo = FWNET_NO_FIFO_ADDR;
1058}
1059
1060static int fwnet_fifo_start(struct fwnet_device *dev)
1061{
1062 int retval;
1063
1064 if (dev->local_fifo != FWNET_NO_FIFO_ADDR)
1065 return 0;
1066
1067 dev->handler.length = 4096;
1068 dev->handler.address_callback = fwnet_receive_packet;
1069 dev->handler.callback_data = dev;
1070
1071 retval = fw_core_add_address_handler(&dev->handler,
1072 &fw_high_memory_region);
1073 if (retval < 0)
1074 return retval;
1075
1076 dev->local_fifo = dev->handler.offset;
1077
1078 return 0;
1079}
1080
111534cd
YH
1081static void __fwnet_broadcast_stop(struct fwnet_device *dev)
1082{
1083 unsigned u;
1084
1085 if (dev->broadcast_state != FWNET_BROADCAST_ERROR) {
1086 for (u = 0; u < FWNET_ISO_PAGE_COUNT; u++)
1087 kunmap(dev->broadcast_rcv_buffer.pages[u]);
1088 fw_iso_buffer_destroy(&dev->broadcast_rcv_buffer, dev->card);
1089 }
1090 if (dev->broadcast_rcv_context) {
1091 fw_iso_context_destroy(dev->broadcast_rcv_context);
1092 dev->broadcast_rcv_context = NULL;
1093 }
1094 kfree(dev->broadcast_rcv_buffer_ptrs);
1095 dev->broadcast_rcv_buffer_ptrs = NULL;
1096 dev->broadcast_state = FWNET_BROADCAST_ERROR;
1097}
1098
1099static void fwnet_broadcast_stop(struct fwnet_device *dev)
1100{
1101 if (dev->broadcast_state == FWNET_BROADCAST_ERROR)
1102 return;
1103 fw_iso_context_stop(dev->broadcast_rcv_context);
1104 __fwnet_broadcast_stop(dev);
1105}
1106
f91e3bd8
SR
1107static int fwnet_broadcast_start(struct fwnet_device *dev)
1108{
c76acec6
JF
1109 struct fw_iso_context *context;
1110 int retval;
1111 unsigned num_packets;
1112 unsigned max_receive;
1113 struct fw_iso_packet packet;
1114 unsigned long offset;
f2090594 1115 void **ptrptr;
c76acec6 1116 unsigned u;
c76acec6 1117
2fbd8dfe
YH
1118 if (dev->broadcast_state != FWNET_BROADCAST_ERROR)
1119 return 0;
1120
f91e3bd8
SR
1121 max_receive = 1U << (dev->card->max_receive + 1);
1122 num_packets = (FWNET_ISO_PAGE_COUNT * PAGE_SIZE) / max_receive;
1123
eac31d58
YH
1124 ptrptr = kmalloc(sizeof(void *) * num_packets, GFP_KERNEL);
1125 if (!ptrptr) {
1126 retval = -ENOMEM;
111534cd 1127 goto failed;
eac31d58
YH
1128 }
1129 dev->broadcast_rcv_buffer_ptrs = ptrptr;
1130
f2090594
YH
1131 context = fw_iso_context_create(dev->card, FW_ISO_CONTEXT_RECEIVE,
1132 IEEE1394_BROADCAST_CHANNEL,
1133 dev->card->link_speed, 8,
1134 fwnet_receive_broadcast, dev);
1135 if (IS_ERR(context)) {
1136 retval = PTR_ERR(context);
111534cd 1137 goto failed;
f2090594 1138 }
f91e3bd8 1139
f2090594
YH
1140 retval = fw_iso_buffer_init(&dev->broadcast_rcv_buffer, dev->card,
1141 FWNET_ISO_PAGE_COUNT, DMA_FROM_DEVICE);
1142 if (retval < 0)
111534cd
YH
1143 goto failed;
1144
1145 dev->broadcast_state = FWNET_BROADCAST_STOPPED;
f91e3bd8 1146
f2090594
YH
1147 for (u = 0; u < FWNET_ISO_PAGE_COUNT; u++) {
1148 void *ptr;
1149 unsigned v;
c76acec6 1150
f2090594
YH
1151 ptr = kmap(dev->broadcast_rcv_buffer.pages[u]);
1152 for (v = 0; v < num_packets / FWNET_ISO_PAGE_COUNT; v++)
1153 *ptrptr++ = (void *) ((char *)ptr + v * max_receive);
f91e3bd8 1154 }
f2090594 1155 dev->broadcast_rcv_context = context;
c76acec6
JF
1156
1157 packet.payload_length = max_receive;
1158 packet.interrupt = 1;
1159 packet.skip = 0;
1160 packet.tag = 3;
1161 packet.sy = 0;
f91e3bd8 1162 packet.header_length = IEEE1394_GASP_HDR_SIZE;
c76acec6 1163 offset = 0;
f91e3bd8
SR
1164
1165 for (u = 0; u < num_packets; u++) {
1166 retval = fw_iso_context_queue(context, &packet,
1167 &dev->broadcast_rcv_buffer, offset);
1168 if (retval < 0)
111534cd 1169 goto failed;
f91e3bd8 1170
c76acec6
JF
1171 offset += max_receive;
1172 }
f91e3bd8
SR
1173 dev->num_broadcast_rcv_ptrs = num_packets;
1174 dev->rcv_buffer_size = max_receive;
1175 dev->broadcast_rcv_next_ptr = 0U;
1176 retval = fw_iso_context_start(context, -1, 0,
1177 FW_ISO_CONTEXT_MATCH_ALL_TAGS); /* ??? sync */
1178 if (retval < 0)
111534cd 1179 goto failed;
f91e3bd8
SR
1180
1181 /* FIXME: adjust it according to the min. speed of all known peers? */
1182 dev->broadcast_xmt_max_payload = IEEE1394_MAX_PAYLOAD_S100
1183 - IEEE1394_GASP_HDR_SIZE - RFC2374_UNFRAG_HDR_SIZE;
1184 dev->broadcast_state = FWNET_BROADCAST_RUNNING;
1185
c76acec6
JF
1186 return 0;
1187
111534cd
YH
1188 failed:
1189 __fwnet_broadcast_stop(dev);
c76acec6
JF
1190 return retval;
1191}
1192
c1671470
SR
1193static void set_carrier_state(struct fwnet_device *dev)
1194{
1195 if (dev->peer_count > 1)
1196 netif_carrier_on(dev->netdev);
1197 else
1198 netif_carrier_off(dev->netdev);
1199}
1200
f91e3bd8
SR
1201/* ifup */
1202static int fwnet_open(struct net_device *net)
1203{
1204 struct fwnet_device *dev = netdev_priv(net);
c76acec6
JF
1205 int ret;
1206
2fbd8dfe
YH
1207 ret = fwnet_broadcast_start(dev);
1208 if (ret)
382c4b40 1209 return ret;
2fbd8dfe 1210
f91e3bd8
SR
1211 netif_start_queue(net);
1212
c1671470
SR
1213 spin_lock_irq(&dev->lock);
1214 set_carrier_state(dev);
1215 spin_unlock_irq(&dev->lock);
1216
c76acec6
JF
1217 return 0;
1218}
1219
f91e3bd8
SR
1220/* ifdown */
1221static int fwnet_stop(struct net_device *net)
c76acec6 1222{
8559e7f0
YH
1223 struct fwnet_device *dev = netdev_priv(net);
1224
f91e3bd8 1225 netif_stop_queue(net);
8559e7f0 1226 fwnet_broadcast_stop(dev);
c76acec6 1227
c76acec6
JF
1228 return 0;
1229}
1230
424efe9c 1231static netdev_tx_t fwnet_tx(struct sk_buff *skb, struct net_device *net)
c76acec6 1232{
f91e3bd8
SR
1233 struct fwnet_header hdr_buf;
1234 struct fwnet_device *dev = netdev_priv(net);
c76acec6
JF
1235 __be16 proto;
1236 u16 dest_node;
c76acec6
JF
1237 unsigned max_payload;
1238 u16 dg_size;
1239 u16 *datagram_label_ptr;
f91e3bd8 1240 struct fwnet_packet_task *ptask;
5a124d38
SR
1241 struct fwnet_peer *peer;
1242 unsigned long flags;
c76acec6 1243
b2268830
SR
1244 spin_lock_irqsave(&dev->lock, flags);
1245
1246 /* Can this happen? */
1247 if (netif_queue_stopped(dev->netdev)) {
1248 spin_unlock_irqrestore(&dev->lock, flags);
1249
1250 return NETDEV_TX_BUSY;
1251 }
1252
f91e3bd8 1253 ptask = kmem_cache_alloc(fwnet_packet_task_cache, GFP_ATOMIC);
c76acec6
JF
1254 if (ptask == NULL)
1255 goto fail;
1256
1257 skb = skb_share_check(skb, GFP_ATOMIC);
1258 if (!skb)
1259 goto fail;
1260
1261 /*
f91e3bd8 1262 * Make a copy of the driver-specific header.
c76acec6
JF
1263 * We might need to rebuild the header on tx failure.
1264 */
1265 memcpy(&hdr_buf, skb->data, sizeof(hdr_buf));
c76acec6 1266 proto = hdr_buf.h_proto;
18406d7e
YH
1267
1268 switch (proto) {
1269 case htons(ETH_P_ARP):
1270 case htons(ETH_P_IP):
cb6bf355
YH
1271#if IS_ENABLED(CONFIG_IPV6)
1272 case htons(ETH_P_IPV6):
1273#endif
18406d7e
YH
1274 break;
1275 default:
1276 goto fail;
1277 }
1278
1279 skb_pull(skb, sizeof(hdr_buf));
c76acec6
JF
1280 dg_size = skb->len;
1281
1282 /*
1283 * Set the transmission type for the packet. ARP packets and IP
1284 * broadcast packets are sent via GASP.
1285 */
021b97e4 1286 if (fwnet_hwaddr_is_multicast(hdr_buf.h_dest)) {
5a124d38 1287 max_payload = dev->broadcast_xmt_max_payload;
f91e3bd8
SR
1288 datagram_label_ptr = &dev->broadcast_xmt_datagramlabel;
1289
5a124d38
SR
1290 ptask->fifo_addr = FWNET_NO_FIFO_ADDR;
1291 ptask->generation = 0;
1292 ptask->dest_node = IEEE1394_ALL_NODES;
1293 ptask->speed = SCODE_100;
c76acec6 1294 } else {
6752c8db
YH
1295 union fwnet_hwaddr *ha = (union fwnet_hwaddr *)hdr_buf.h_dest;
1296 __be64 guid = get_unaligned(&ha->uc.uniq_id);
c76acec6
JF
1297 u8 generation;
1298
f91e3bd8 1299 peer = fwnet_peer_find_by_guid(dev, be64_to_cpu(guid));
6752c8db 1300 if (!peer)
b2268830 1301 goto fail;
c76acec6 1302
5a124d38
SR
1303 generation = peer->generation;
1304 dest_node = peer->node_id;
1305 max_payload = peer->max_payload;
f91e3bd8 1306 datagram_label_ptr = &peer->datagram_label;
c76acec6 1307
6752c8db 1308 ptask->fifo_addr = fwnet_hwaddr_fifo(ha);
5a124d38
SR
1309 ptask->generation = generation;
1310 ptask->dest_node = dest_node;
1311 ptask->speed = peer->speed;
c76acec6
JF
1312 }
1313
c76acec6
JF
1314 ptask->hdr.w0 = 0;
1315 ptask->hdr.w1 = 0;
1316 ptask->skb = skb;
f91e3bd8
SR
1317 ptask->dev = dev;
1318
c76acec6 1319 /* Does it all fit in one packet? */
f91e3bd8
SR
1320 if (dg_size <= max_payload) {
1321 fwnet_make_uf_hdr(&ptask->hdr, ntohs(proto));
c76acec6 1322 ptask->outstanding_pkts = 1;
f91e3bd8 1323 max_payload = dg_size + RFC2374_UNFRAG_HDR_SIZE;
c76acec6
JF
1324 } else {
1325 u16 datagram_label;
1326
f91e3bd8 1327 max_payload -= RFC2374_FRAG_OVERHEAD;
c76acec6 1328 datagram_label = (*datagram_label_ptr)++;
f91e3bd8
SR
1329 fwnet_make_ff_hdr(&ptask->hdr, ntohs(proto), dg_size,
1330 datagram_label);
c76acec6 1331 ptask->outstanding_pkts = DIV_ROUND_UP(dg_size, max_payload);
f91e3bd8 1332 max_payload += RFC2374_FRAG_HDR_SIZE;
c76acec6 1333 }
5a124d38 1334
b2268830
SR
1335 if (++dev->queued_datagrams == FWNET_MAX_QUEUED_DATAGRAMS)
1336 netif_stop_queue(dev->netdev);
48553011 1337
5a124d38
SR
1338 spin_unlock_irqrestore(&dev->lock, flags);
1339
c76acec6 1340 ptask->max_payload = max_payload;
48553011 1341 ptask->enqueued = 0;
110f82d7 1342
f91e3bd8
SR
1343 fwnet_send_packet(ptask);
1344
c76acec6
JF
1345 return NETDEV_TX_OK;
1346
1347 fail:
b2268830
SR
1348 spin_unlock_irqrestore(&dev->lock, flags);
1349
c76acec6 1350 if (ptask)
f91e3bd8 1351 kmem_cache_free(fwnet_packet_task_cache, ptask);
c76acec6
JF
1352
1353 if (skb != NULL)
1354 dev_kfree_skb(skb);
1355
f91e3bd8
SR
1356 net->stats.tx_dropped++;
1357 net->stats.tx_errors++;
c76acec6
JF
1358
1359 /*
1360 * FIXME: According to a patch from 2003-02-26, "returning non-zero
1361 * causes serious problems" here, allegedly. Before that patch,
1362 * -ERRNO was returned which is not appropriate under Linux 2.6.
1363 * Perhaps more needs to be done? Stop the queue in serious
1364 * conditions and restart it elsewhere?
1365 */
1366 return NETDEV_TX_OK;
1367}
1368
18bb36f9
ML
1369static const struct ethtool_ops fwnet_ethtool_ops = {
1370 .get_link = ethtool_op_get_link,
1371};
1372
f91e3bd8
SR
1373static const struct net_device_ops fwnet_netdev_ops = {
1374 .ndo_open = fwnet_open,
1375 .ndo_stop = fwnet_stop,
1376 .ndo_start_xmit = fwnet_tx,
c76acec6
JF
1377};
1378
f91e3bd8
SR
1379static void fwnet_init_dev(struct net_device *net)
1380{
1381 net->header_ops = &fwnet_header_ops;
1382 net->netdev_ops = &fwnet_netdev_ops;
1337f853 1383 net->watchdog_timeo = 2 * HZ;
f91e3bd8
SR
1384 net->flags = IFF_BROADCAST | IFF_MULTICAST;
1385 net->features = NETIF_F_HIGHDMA;
1386 net->addr_len = FWNET_ALEN;
1387 net->hard_header_len = FWNET_HLEN;
1388 net->type = ARPHRD_IEEE1394;
b2268830 1389 net->tx_queue_len = FWNET_TX_QUEUE_LEN;
18bb36f9 1390 net->ethtool_ops = &fwnet_ethtool_ops;
c76acec6
JF
1391}
1392
5a124d38
SR
1393/* caller must hold fwnet_device_mutex */
1394static struct fwnet_device *fwnet_dev_find(struct fw_card *card)
1395{
1396 struct fwnet_device *dev;
1397
1398 list_for_each_entry(dev, &fwnet_device_list, dev_link)
1399 if (dev->card == card)
1400 return dev;
1401
1402 return NULL;
1403}
1404
1405static int fwnet_add_peer(struct fwnet_device *dev,
1406 struct fw_unit *unit, struct fw_device *device)
1407{
1408 struct fwnet_peer *peer;
1409
1410 peer = kmalloc(sizeof(*peer), GFP_KERNEL);
1411 if (!peer)
1412 return -ENOMEM;
1413
b01b4bab
SR
1414 dev_set_drvdata(&unit->device, peer);
1415
5a124d38
SR
1416 peer->dev = dev;
1417 peer->guid = (u64)device->config_rom[3] << 32 | device->config_rom[4];
5a124d38
SR
1418 INIT_LIST_HEAD(&peer->pd_list);
1419 peer->pdg_size = 0;
1420 peer->datagram_label = 0;
1421 peer->speed = device->max_speed;
1422 peer->max_payload = fwnet_max_payload(device->max_rec, peer->speed);
1423
1424 peer->generation = device->generation;
1425 smp_rmb();
1426 peer->node_id = device->node_id;
1427
1428 spin_lock_irq(&dev->lock);
1429 list_add_tail(&peer->peer_link, &dev->peer_list);
18bb36f9 1430 dev->peer_count++;
c1671470 1431 set_carrier_state(dev);
5a124d38
SR
1432 spin_unlock_irq(&dev->lock);
1433
1434 return 0;
1435}
1436
94a87157
SR
1437static int fwnet_probe(struct fw_unit *unit,
1438 const struct ieee1394_device_id *id)
f91e3bd8 1439{
f91e3bd8
SR
1440 struct fw_device *device = fw_parent_device(unit);
1441 struct fw_card *card = device->card;
1442 struct net_device *net;
b01b4bab 1443 bool allocated_netdev = false;
f91e3bd8 1444 struct fwnet_device *dev;
5a124d38 1445 int ret;
6752c8db 1446 union fwnet_hwaddr *ha;
c76acec6 1447
5a124d38 1448 mutex_lock(&fwnet_device_mutex);
c76acec6 1449
5a124d38
SR
1450 dev = fwnet_dev_find(card);
1451 if (dev) {
5a124d38
SR
1452 net = dev->netdev;
1453 goto have_dev;
c76acec6 1454 }
5a124d38 1455
c835a677
TG
1456 net = alloc_netdev(sizeof(*dev), "firewire%d", NET_NAME_UNKNOWN,
1457 fwnet_init_dev);
f91e3bd8 1458 if (net == NULL) {
1118f8d0
DY
1459 mutex_unlock(&fwnet_device_mutex);
1460 return -ENOMEM;
c76acec6
JF
1461 }
1462
b01b4bab 1463 allocated_netdev = true;
f91e3bd8
SR
1464 SET_NETDEV_DEV(net, card->device);
1465 dev = netdev_priv(net);
c76acec6 1466
f91e3bd8
SR
1467 spin_lock_init(&dev->lock);
1468 dev->broadcast_state = FWNET_BROADCAST_ERROR;
1469 dev->broadcast_rcv_context = NULL;
1470 dev->broadcast_xmt_max_payload = 0;
1471 dev->broadcast_xmt_datagramlabel = 0;
f91e3bd8 1472 dev->local_fifo = FWNET_NO_FIFO_ADDR;
48553011 1473 dev->queued_datagrams = 0;
5a124d38 1474 INIT_LIST_HEAD(&dev->peer_list);
f91e3bd8 1475 dev->card = card;
5a124d38 1476 dev->netdev = net;
c76acec6 1477
382c4b40
YH
1478 ret = fwnet_fifo_start(dev);
1479 if (ret < 0)
1480 goto out;
1481 dev->local_fifo = dev->handler.offset;
1482
89ab88b0 1483 net->mtu = 1500U;
b3e3893e 1484 net->min_mtu = ETH_MIN_MTU;
357f4aae 1485 net->max_mtu = 0xfff;
c76acec6
JF
1486
1487 /* Set our hardware address while we're at it */
6752c8db
YH
1488 ha = (union fwnet_hwaddr *)net->dev_addr;
1489 put_unaligned_be64(card->guid, &ha->uc.uniq_id);
1490 ha->uc.max_rec = dev->card->max_receive;
1491 ha->uc.sspd = dev->card->link_speed;
1492 put_unaligned_be16(dev->local_fifo >> 32, &ha->uc.fifo_hi);
1493 put_unaligned_be32(dev->local_fifo & 0xffffffff, &ha->uc.fifo_lo);
1494
1495 memset(net->broadcast, -1, net->addr_len);
1496
5a124d38 1497 ret = register_netdev(net);
8408dc1c 1498 if (ret)
c76acec6 1499 goto out;
c76acec6 1500
5a124d38 1501 list_add_tail(&dev->dev_link, &fwnet_device_list);
cb6bf355 1502 dev_notice(&net->dev, "IP over IEEE 1394 on card %s\n",
8408dc1c 1503 dev_name(card->device));
5a124d38
SR
1504 have_dev:
1505 ret = fwnet_add_peer(dev, unit, device);
b01b4bab 1506 if (ret && allocated_netdev) {
5a124d38
SR
1507 unregister_netdev(net);
1508 list_del(&dev->dev_link);
c76acec6 1509 out:
382c4b40 1510 fwnet_fifo_stop(dev);
f91e3bd8 1511 free_netdev(net);
382c4b40 1512 }
f91e3bd8 1513
5a124d38
SR
1514 mutex_unlock(&fwnet_device_mutex);
1515
1516 return ret;
1517}
1518
94a87157
SR
1519/*
1520 * FIXME abort partially sent fragmented datagrams,
1521 * discard partially received fragmented datagrams
1522 */
1523static void fwnet_update(struct fw_unit *unit)
1524{
1525 struct fw_device *device = fw_parent_device(unit);
1526 struct fwnet_peer *peer = dev_get_drvdata(&unit->device);
1527 int generation;
1528
1529 generation = device->generation;
1530
1531 spin_lock_irq(&peer->dev->lock);
1532 peer->node_id = device->node_id;
1533 peer->generation = generation;
1534 spin_unlock_irq(&peer->dev->lock);
1535}
1536
c1671470 1537static void fwnet_remove_peer(struct fwnet_peer *peer, struct fwnet_device *dev)
5a124d38
SR
1538{
1539 struct fwnet_partial_datagram *pd, *pd_next;
1540
c1671470 1541 spin_lock_irq(&dev->lock);
5a124d38 1542 list_del(&peer->peer_link);
c1671470
SR
1543 dev->peer_count--;
1544 set_carrier_state(dev);
1545 spin_unlock_irq(&dev->lock);
5a124d38
SR
1546
1547 list_for_each_entry_safe(pd, pd_next, &peer->pd_list, pd_link)
1548 fwnet_pd_delete(pd);
1549
1550 kfree(peer);
c76acec6
JF
1551}
1552
94a87157 1553static void fwnet_remove(struct fw_unit *unit)
f91e3bd8 1554{
94a87157 1555 struct fwnet_peer *peer = dev_get_drvdata(&unit->device);
5a124d38 1556 struct fwnet_device *dev = peer->dev;
f91e3bd8 1557 struct net_device *net;
48553011 1558 int i;
f91e3bd8 1559
5a124d38 1560 mutex_lock(&fwnet_device_mutex);
c76acec6 1561
74a14504 1562 net = dev->netdev;
74a14504 1563
c1671470 1564 fwnet_remove_peer(peer, dev);
18bb36f9 1565
5a124d38 1566 if (list_empty(&dev->peer_list)) {
f91e3bd8
SR
1567 unregister_netdev(net);
1568
382c4b40
YH
1569 fwnet_fifo_stop(dev);
1570
48553011
SR
1571 for (i = 0; dev->queued_datagrams && i < 5; i++)
1572 ssleep(1);
1573 WARN_ON(dev->queued_datagrams);
b01b4bab
SR
1574 list_del(&dev->dev_link);
1575
f91e3bd8 1576 free_netdev(net);
c76acec6 1577 }
f91e3bd8 1578
5a124d38 1579 mutex_unlock(&fwnet_device_mutex);
c76acec6
JF
1580}
1581
f91e3bd8
SR
1582static const struct ieee1394_device_id fwnet_id_table[] = {
1583 {
1584 .match_flags = IEEE1394_MATCH_SPECIFIER_ID |
1585 IEEE1394_MATCH_VERSION,
1586 .specifier_id = IANA_SPECIFIER_ID,
1587 .version = RFC2734_SW_VERSION,
1588 },
cb6bf355
YH
1589#if IS_ENABLED(CONFIG_IPV6)
1590 {
1591 .match_flags = IEEE1394_MATCH_SPECIFIER_ID |
1592 IEEE1394_MATCH_VERSION,
1593 .specifier_id = IANA_SPECIFIER_ID,
1594 .version = RFC3146_SW_VERSION,
1595 },
1596#endif
f91e3bd8
SR
1597 { }
1598};
1599
1600static struct fw_driver fwnet_driver = {
c76acec6 1601 .driver = {
f91e3bd8 1602 .owner = THIS_MODULE,
59759ff6 1603 .name = KBUILD_MODNAME,
f91e3bd8 1604 .bus = &fw_bus_type,
c76acec6 1605 },
94a87157 1606 .probe = fwnet_probe,
f91e3bd8 1607 .update = fwnet_update,
94a87157 1608 .remove = fwnet_remove,
f91e3bd8
SR
1609 .id_table = fwnet_id_table,
1610};
1611
1612static const u32 rfc2374_unit_directory_data[] = {
1613 0x00040000, /* directory_length */
1614 0x1200005e, /* unit_specifier_id: IANA */
1615 0x81000003, /* textual descriptor offset */
1616 0x13000001, /* unit_sw_version: RFC 2734 */
1617 0x81000005, /* textual descriptor offset */
1618 0x00030000, /* descriptor_length */
1619 0x00000000, /* text */
1620 0x00000000, /* minimal ASCII, en */
1621 0x49414e41, /* I A N A */
1622 0x00030000, /* descriptor_length */
1623 0x00000000, /* text */
1624 0x00000000, /* minimal ASCII, en */
1625 0x49507634, /* I P v 4 */
1626};
1627
1628static struct fw_descriptor rfc2374_unit_directory = {
1629 .length = ARRAY_SIZE(rfc2374_unit_directory_data),
1630 .key = (CSR_DIRECTORY | CSR_UNIT) << 24,
1631 .data = rfc2374_unit_directory_data
c76acec6
JF
1632};
1633
cb6bf355
YH
1634#if IS_ENABLED(CONFIG_IPV6)
1635static const u32 rfc3146_unit_directory_data[] = {
1636 0x00040000, /* directory_length */
1637 0x1200005e, /* unit_specifier_id: IANA */
1638 0x81000003, /* textual descriptor offset */
1639 0x13000002, /* unit_sw_version: RFC 3146 */
1640 0x81000005, /* textual descriptor offset */
1641 0x00030000, /* descriptor_length */
1642 0x00000000, /* text */
1643 0x00000000, /* minimal ASCII, en */
1644 0x49414e41, /* I A N A */
1645 0x00030000, /* descriptor_length */
1646 0x00000000, /* text */
1647 0x00000000, /* minimal ASCII, en */
1648 0x49507636, /* I P v 6 */
1649};
1650
1651static struct fw_descriptor rfc3146_unit_directory = {
1652 .length = ARRAY_SIZE(rfc3146_unit_directory_data),
1653 .key = (CSR_DIRECTORY | CSR_UNIT) << 24,
1654 .data = rfc3146_unit_directory_data
1655};
1656#endif
1657
f91e3bd8
SR
1658static int __init fwnet_init(void)
1659{
1660 int err;
1661
1662 err = fw_core_add_descriptor(&rfc2374_unit_directory);
1663 if (err)
1664 return err;
c76acec6 1665
cb6bf355
YH
1666#if IS_ENABLED(CONFIG_IPV6)
1667 err = fw_core_add_descriptor(&rfc3146_unit_directory);
1668 if (err)
1669 goto out;
1670#endif
1671
f91e3bd8
SR
1672 fwnet_packet_task_cache = kmem_cache_create("packet_task",
1673 sizeof(struct fwnet_packet_task), 0, 0, NULL);
1674 if (!fwnet_packet_task_cache) {
1675 err = -ENOMEM;
cb6bf355 1676 goto out2;
f91e3bd8
SR
1677 }
1678
1679 err = driver_register(&fwnet_driver.driver);
1680 if (!err)
1681 return 0;
1682
1683 kmem_cache_destroy(fwnet_packet_task_cache);
cb6bf355
YH
1684out2:
1685#if IS_ENABLED(CONFIG_IPV6)
1686 fw_core_remove_descriptor(&rfc3146_unit_directory);
f91e3bd8 1687out:
cb6bf355 1688#endif
f91e3bd8
SR
1689 fw_core_remove_descriptor(&rfc2374_unit_directory);
1690
1691 return err;
c76acec6 1692}
f91e3bd8 1693module_init(fwnet_init);
c76acec6 1694
f91e3bd8
SR
1695static void __exit fwnet_cleanup(void)
1696{
1697 driver_unregister(&fwnet_driver.driver);
1698 kmem_cache_destroy(fwnet_packet_task_cache);
cb6bf355
YH
1699#if IS_ENABLED(CONFIG_IPV6)
1700 fw_core_remove_descriptor(&rfc3146_unit_directory);
1701#endif
f91e3bd8 1702 fw_core_remove_descriptor(&rfc2374_unit_directory);
c76acec6 1703}
f91e3bd8 1704module_exit(fwnet_cleanup);
c76acec6 1705
f91e3bd8 1706MODULE_AUTHOR("Jay Fenlason <fenlason@redhat.com>");
cb6bf355 1707MODULE_DESCRIPTION("IP over IEEE1394 as per RFC 2734/3146");
f91e3bd8
SR
1708MODULE_LICENSE("GPL");
1709MODULE_DEVICE_TABLE(ieee1394, fwnet_id_table);