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Jay Fenlasonc76acec2009-05-18 13:08:06 -04001/*
2 * IPv4 over IEEE 1394, per RFC 2734
3 *
4 * Copyright (C) 2009 Jay Fenlason <fenlason@redhat.com>
5 *
6 * based on eth1394 by Ben Collins et al
7 */
8
Stefan Richterf91e3bd2009-06-07 22:57:53 +02009#include <linux/bug.h>
August Lilleaasbf337b12011-05-29 19:07:19 +020010#include <linux/compiler.h>
Stefan Richter48553012010-11-06 23:18:23 +010011#include <linux/delay.h>
Jay Fenlasonc76acec2009-05-18 13:08:06 -040012#include <linux/device.h>
Stefan Richterc1671472010-12-17 22:22:33 +010013#include <linux/ethtool.h>
Jay Fenlasonc76acec2009-05-18 13:08:06 -040014#include <linux/firewire.h>
15#include <linux/firewire-constants.h>
16#include <linux/highmem.h>
17#include <linux/in.h>
18#include <linux/ip.h>
Stefan Richterf91e3bd2009-06-07 22:57:53 +020019#include <linux/jiffies.h>
Jay Fenlasonc76acec2009-05-18 13:08:06 -040020#include <linux/mod_devicetable.h>
21#include <linux/module.h>
22#include <linux/moduleparam.h>
Stefan Richter5a124d32009-06-14 11:45:27 +020023#include <linux/mutex.h>
Jay Fenlasonc76acec2009-05-18 13:08:06 -040024#include <linux/netdevice.h>
25#include <linux/skbuff.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090026#include <linux/slab.h>
Stefan Richter5a124d32009-06-14 11:45:27 +020027#include <linux/spinlock.h>
Jay Fenlasonc76acec2009-05-18 13:08:06 -040028
29#include <asm/unaligned.h>
30#include <net/arp.h>
31
Stefan Richterb2268832010-11-14 14:35:40 +010032/* rx limits */
33#define FWNET_MAX_FRAGMENTS 30 /* arbitrary, > TX queue depth */
34#define FWNET_ISO_PAGE_COUNT (PAGE_SIZE < 16*1024 ? 4 : 2)
35
36/* tx limits */
37#define FWNET_MAX_QUEUED_DATAGRAMS 20 /* < 64 = number of tlabels */
38#define FWNET_MIN_QUEUED_DATAGRAMS 10 /* should keep AT DMA busy enough */
39#define FWNET_TX_QUEUE_LEN FWNET_MAX_QUEUED_DATAGRAMS /* ? */
Jay Fenlasonc76acec2009-05-18 13:08:06 -040040
Stefan Richterf91e3bd2009-06-07 22:57:53 +020041#define IEEE1394_BROADCAST_CHANNEL 31
42#define IEEE1394_ALL_NODES (0xffc0 | 0x003f)
43#define IEEE1394_MAX_PAYLOAD_S100 512
44#define FWNET_NO_FIFO_ADDR (~0ULL)
Jay Fenlasonc76acec2009-05-18 13:08:06 -040045
Stefan Richterf91e3bd2009-06-07 22:57:53 +020046#define IANA_SPECIFIER_ID 0x00005eU
47#define RFC2734_SW_VERSION 0x000001U
Jay Fenlasonc76acec2009-05-18 13:08:06 -040048
Stefan Richterf91e3bd2009-06-07 22:57:53 +020049#define IEEE1394_GASP_HDR_SIZE 8
Jay Fenlasonc76acec2009-05-18 13:08:06 -040050
Stefan Richterf91e3bd2009-06-07 22:57:53 +020051#define RFC2374_UNFRAG_HDR_SIZE 4
52#define RFC2374_FRAG_HDR_SIZE 8
53#define RFC2374_FRAG_OVERHEAD 4
Jay Fenlasonc76acec2009-05-18 13:08:06 -040054
Stefan Richterf91e3bd2009-06-07 22:57:53 +020055#define RFC2374_HDR_UNFRAG 0 /* unfragmented */
56#define RFC2374_HDR_FIRSTFRAG 1 /* first fragment */
57#define RFC2374_HDR_LASTFRAG 2 /* last fragment */
58#define RFC2374_HDR_INTFRAG 3 /* interior fragment */
Jay Fenlasonc76acec2009-05-18 13:08:06 -040059
Stefan Richterf91e3bd2009-06-07 22:57:53 +020060#define RFC2734_HW_ADDR_LEN 16
Jay Fenlasonc76acec2009-05-18 13:08:06 -040061
Stefan Richterf91e3bd2009-06-07 22:57:53 +020062struct rfc2734_arp {
63 __be16 hw_type; /* 0x0018 */
64 __be16 proto_type; /* 0x0806 */
Jay Fenlasonc76acec2009-05-18 13:08:06 -040065 u8 hw_addr_len; /* 16 */
Stefan Richterf91e3bd2009-06-07 22:57:53 +020066 u8 ip_addr_len; /* 4 */
67 __be16 opcode; /* ARP Opcode */
Jay Fenlasonc76acec2009-05-18 13:08:06 -040068 /* Above is exactly the same format as struct arphdr */
69
Stefan Richterf91e3bd2009-06-07 22:57:53 +020070 __be64 s_uniq_id; /* Sender's 64bit EUI */
71 u8 max_rec; /* Sender's max packet size */
Jay Fenlasonc76acec2009-05-18 13:08:06 -040072 u8 sspd; /* Sender's max speed */
Stefan Richterf91e3bd2009-06-07 22:57:53 +020073 __be16 fifo_hi; /* hi 16bits of sender's FIFO addr */
74 __be32 fifo_lo; /* lo 32bits of sender's FIFO addr */
75 __be32 sip; /* Sender's IP Address */
76 __be32 tip; /* IP Address of requested hw addr */
August Lilleaasbf337b12011-05-29 19:07:19 +020077} __packed;
Jay Fenlasonc76acec2009-05-18 13:08:06 -040078
Stefan Richterf91e3bd2009-06-07 22:57:53 +020079/* This header format is specific to this driver implementation. */
80#define FWNET_ALEN 8
81#define FWNET_HLEN 10
82struct fwnet_header {
83 u8 h_dest[FWNET_ALEN]; /* destination address */
84 __be16 h_proto; /* packet type ID field */
August Lilleaasbf337b12011-05-29 19:07:19 +020085} __packed;
Jay Fenlasonc76acec2009-05-18 13:08:06 -040086
Stefan Richterf91e3bd2009-06-07 22:57:53 +020087/* IPv4 and IPv6 encapsulation header */
88struct rfc2734_header {
Jay Fenlasonc76acec2009-05-18 13:08:06 -040089 u32 w0;
90 u32 w1;
91};
92
Stefan Richterf91e3bd2009-06-07 22:57:53 +020093#define fwnet_get_hdr_lf(h) (((h)->w0 & 0xc0000000) >> 30)
94#define fwnet_get_hdr_ether_type(h) (((h)->w0 & 0x0000ffff))
95#define fwnet_get_hdr_dg_size(h) (((h)->w0 & 0x0fff0000) >> 16)
96#define fwnet_get_hdr_fg_off(h) (((h)->w0 & 0x00000fff))
97#define fwnet_get_hdr_dgl(h) (((h)->w1 & 0xffff0000) >> 16)
98
99#define fwnet_set_hdr_lf(lf) ((lf) << 30)
100#define fwnet_set_hdr_ether_type(et) (et)
101#define fwnet_set_hdr_dg_size(dgs) ((dgs) << 16)
102#define fwnet_set_hdr_fg_off(fgo) (fgo)
103
104#define fwnet_set_hdr_dgl(dgl) ((dgl) << 16)
105
106static inline void fwnet_make_uf_hdr(struct rfc2734_header *hdr,
107 unsigned ether_type)
108{
109 hdr->w0 = fwnet_set_hdr_lf(RFC2374_HDR_UNFRAG)
110 | fwnet_set_hdr_ether_type(ether_type);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400111}
112
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200113static inline void fwnet_make_ff_hdr(struct rfc2734_header *hdr,
114 unsigned ether_type, unsigned dg_size, unsigned dgl)
115{
116 hdr->w0 = fwnet_set_hdr_lf(RFC2374_HDR_FIRSTFRAG)
117 | fwnet_set_hdr_dg_size(dg_size)
118 | fwnet_set_hdr_ether_type(ether_type);
119 hdr->w1 = fwnet_set_hdr_dgl(dgl);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400120}
121
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200122static inline void fwnet_make_sf_hdr(struct rfc2734_header *hdr,
123 unsigned lf, unsigned dg_size, unsigned fg_off, unsigned dgl)
124{
125 hdr->w0 = fwnet_set_hdr_lf(lf)
126 | fwnet_set_hdr_dg_size(dg_size)
127 | fwnet_set_hdr_fg_off(fg_off);
128 hdr->w1 = fwnet_set_hdr_dgl(dgl);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400129}
130
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400131/* This list keeps track of what parts of the datagram have been filled in */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200132struct fwnet_fragment_info {
133 struct list_head fi_link;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400134 u16 offset;
135 u16 len;
136};
137
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200138struct fwnet_partial_datagram {
139 struct list_head pd_link;
140 struct list_head fi_list;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400141 struct sk_buff *skb;
142 /* FIXME Why not use skb->data? */
143 char *pbuf;
144 u16 datagram_label;
145 u16 ether_type;
146 u16 datagram_size;
147};
148
Stefan Richter5a124d32009-06-14 11:45:27 +0200149static DEFINE_MUTEX(fwnet_device_mutex);
150static LIST_HEAD(fwnet_device_list);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400151
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200152struct fwnet_device {
Stefan Richter5a124d32009-06-14 11:45:27 +0200153 struct list_head dev_link;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400154 spinlock_t lock;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200155 enum {
156 FWNET_BROADCAST_ERROR,
157 FWNET_BROADCAST_RUNNING,
158 FWNET_BROADCAST_STOPPED,
159 } broadcast_state;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400160 struct fw_iso_context *broadcast_rcv_context;
161 struct fw_iso_buffer broadcast_rcv_buffer;
162 void **broadcast_rcv_buffer_ptrs;
163 unsigned broadcast_rcv_next_ptr;
164 unsigned num_broadcast_rcv_ptrs;
165 unsigned rcv_buffer_size;
166 /*
167 * This value is the maximum unfragmented datagram size that can be
168 * sent by the hardware. It already has the GASP overhead and the
169 * unfragmented datagram header overhead calculated into it.
170 */
171 unsigned broadcast_xmt_max_payload;
172 u16 broadcast_xmt_datagramlabel;
173
174 /*
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200175 * The CSR address that remote nodes must send datagrams to for us to
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400176 * receive them.
177 */
178 struct fw_address_handler handler;
179 u64 local_fifo;
180
Stefan Richter48553012010-11-06 23:18:23 +0100181 /* Number of tx datagrams that have been queued but not yet acked */
182 int queued_datagrams;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400183
Stefan Richterc1671472010-12-17 22:22:33 +0100184 int peer_count;
Stefan Richter5a124d32009-06-14 11:45:27 +0200185 struct list_head peer_list;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400186 struct fw_card *card;
Stefan Richter5a124d32009-06-14 11:45:27 +0200187 struct net_device *netdev;
188};
189
190struct fwnet_peer {
191 struct list_head peer_link;
192 struct fwnet_device *dev;
193 u64 guid;
194 u64 fifo;
Maxim Levitsky74a14502010-11-29 04:09:52 +0200195 __be32 ip;
Stefan Richter5a124d32009-06-14 11:45:27 +0200196
197 /* guarded by dev->lock */
198 struct list_head pd_list; /* received partial datagrams */
199 unsigned pdg_size; /* pd_list size */
200
201 u16 datagram_label; /* outgoing datagram label */
Stefan Richter48553012010-11-06 23:18:23 +0100202 u16 max_payload; /* includes RFC2374_FRAG_HDR_SIZE overhead */
Stefan Richter5a124d32009-06-14 11:45:27 +0200203 int node_id;
204 int generation;
205 unsigned speed;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400206};
207
208/* This is our task struct. It's used for the packet complete callback. */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200209struct fwnet_packet_task {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400210 struct fw_transaction transaction;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200211 struct rfc2734_header hdr;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400212 struct sk_buff *skb;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200213 struct fwnet_device *dev;
214
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400215 int outstanding_pkts;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400216 u64 fifo_addr;
217 u16 dest_node;
Stefan Richter48553012010-11-06 23:18:23 +0100218 u16 max_payload;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400219 u8 generation;
220 u8 speed;
Stefan Richter48553012010-11-06 23:18:23 +0100221 u8 enqueued;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400222};
223
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200224/*
225 * saddr == NULL means use device source address.
226 * daddr == NULL means leave destination address (eg unresolved arp).
227 */
228static int fwnet_header_create(struct sk_buff *skb, struct net_device *net,
229 unsigned short type, const void *daddr,
230 const void *saddr, unsigned len)
231{
232 struct fwnet_header *h;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400233
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200234 h = (struct fwnet_header *)skb_push(skb, sizeof(*h));
235 put_unaligned_be16(type, &h->h_proto);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400236
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200237 if (net->flags & (IFF_LOOPBACK | IFF_NOARP)) {
238 memset(h->h_dest, 0, net->addr_len);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400239
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200240 return net->hard_header_len;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400241 }
242
243 if (daddr) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200244 memcpy(h->h_dest, daddr, net->addr_len);
245
246 return net->hard_header_len;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400247 }
248
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200249 return -net->hard_header_len;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400250}
251
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200252static int fwnet_header_rebuild(struct sk_buff *skb)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400253{
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200254 struct fwnet_header *h = (struct fwnet_header *)skb->data;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400255
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200256 if (get_unaligned_be16(&h->h_proto) == ETH_P_IP)
257 return arp_find((unsigned char *)&h->h_dest, skb);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400258
Stefan Richter8408dc12012-02-19 12:48:36 +0100259 dev_notice(&skb->dev->dev, "unable to resolve type %04x addresses\n",
260 be16_to_cpu(h->h_proto));
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400261 return 0;
262}
263
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200264static int fwnet_header_cache(const struct neighbour *neigh,
David S. Millere69dd332011-07-12 23:28:12 -0700265 struct hh_cache *hh, __be16 type)
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200266{
267 struct net_device *net;
268 struct fwnet_header *h;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400269
David S. Millere69dd332011-07-12 23:28:12 -0700270 if (type == cpu_to_be16(ETH_P_802_3))
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400271 return -1;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200272 net = neigh->dev;
YOSHIFUJI Hideaki / 吉藤英明82586342013-01-19 22:03:07 +0000273 h = (struct fwnet_header *)((u8 *)hh->hh_data + HH_DATA_OFF(sizeof(*h)));
David S. Millere69dd332011-07-12 23:28:12 -0700274 h->h_proto = type;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200275 memcpy(h->h_dest, neigh->ha, net->addr_len);
276 hh->hh_len = FWNET_HLEN;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400277
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400278 return 0;
279}
280
281/* Called by Address Resolution module to notify changes in address. */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200282static void fwnet_header_cache_update(struct hh_cache *hh,
283 const struct net_device *net, const unsigned char *haddr)
284{
YOSHIFUJI Hideaki / 吉藤英明82586342013-01-19 22:03:07 +0000285 memcpy((u8 *)hh->hh_data + HH_DATA_OFF(FWNET_HLEN), haddr, net->addr_len);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400286}
287
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200288static int fwnet_header_parse(const struct sk_buff *skb, unsigned char *haddr)
289{
290 memcpy(haddr, skb->dev->dev_addr, FWNET_ALEN);
291
292 return FWNET_ALEN;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400293}
294
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200295static const struct header_ops fwnet_header_ops = {
296 .create = fwnet_header_create,
297 .rebuild = fwnet_header_rebuild,
298 .cache = fwnet_header_cache,
299 .cache_update = fwnet_header_cache_update,
300 .parse = fwnet_header_parse,
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400301};
302
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400303/* FIXME: is this correct for all cases? */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200304static bool fwnet_frag_overlap(struct fwnet_partial_datagram *pd,
305 unsigned offset, unsigned len)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400306{
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200307 struct fwnet_fragment_info *fi;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400308 unsigned end = offset + len;
309
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200310 list_for_each_entry(fi, &pd->fi_list, fi_link)
311 if (offset < fi->offset + fi->len && end > fi->offset)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400312 return true;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200313
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400314 return false;
315}
316
317/* Assumes that new fragment does not overlap any existing fragments */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200318static struct fwnet_fragment_info *fwnet_frag_new(
319 struct fwnet_partial_datagram *pd, unsigned offset, unsigned len)
320{
321 struct fwnet_fragment_info *fi, *fi2, *new;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400322 struct list_head *list;
323
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200324 list = &pd->fi_list;
325 list_for_each_entry(fi, &pd->fi_list, fi_link) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400326 if (fi->offset + fi->len == offset) {
327 /* The new fragment can be tacked on to the end */
328 /* Did the new fragment plug a hole? */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200329 fi2 = list_entry(fi->fi_link.next,
330 struct fwnet_fragment_info, fi_link);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400331 if (fi->offset + fi->len == fi2->offset) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400332 /* glue fragments together */
333 fi->len += len + fi2->len;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200334 list_del(&fi2->fi_link);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400335 kfree(fi2);
336 } else {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400337 fi->len += len;
338 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200339
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400340 return fi;
341 }
342 if (offset + len == fi->offset) {
343 /* The new fragment can be tacked on to the beginning */
344 /* Did the new fragment plug a hole? */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200345 fi2 = list_entry(fi->fi_link.prev,
346 struct fwnet_fragment_info, fi_link);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400347 if (fi2->offset + fi2->len == fi->offset) {
348 /* glue fragments together */
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400349 fi2->len += fi->len + len;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200350 list_del(&fi->fi_link);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400351 kfree(fi);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200352
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400353 return fi2;
354 }
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400355 fi->offset = offset;
356 fi->len += len;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200357
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400358 return fi;
359 }
360 if (offset > fi->offset + fi->len) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200361 list = &fi->fi_link;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400362 break;
363 }
364 if (offset + len < fi->offset) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200365 list = fi->fi_link.prev;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400366 break;
367 }
368 }
369
370 new = kmalloc(sizeof(*new), GFP_ATOMIC);
371 if (!new) {
Stefan Richter8408dc12012-02-19 12:48:36 +0100372 dev_err(&pd->skb->dev->dev, "out of memory\n");
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400373 return NULL;
374 }
375
376 new->offset = offset;
377 new->len = len;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200378 list_add(&new->fi_link, list);
379
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400380 return new;
381}
382
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200383static struct fwnet_partial_datagram *fwnet_pd_new(struct net_device *net,
384 struct fwnet_peer *peer, u16 datagram_label, unsigned dg_size,
385 void *frag_buf, unsigned frag_off, unsigned frag_len)
386{
387 struct fwnet_partial_datagram *new;
388 struct fwnet_fragment_info *fi;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400389
390 new = kmalloc(sizeof(*new), GFP_ATOMIC);
391 if (!new)
392 goto fail;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200393
394 INIT_LIST_HEAD(&new->fi_list);
395 fi = fwnet_frag_new(new, frag_off, frag_len);
396 if (fi == NULL)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400397 goto fail_w_new;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200398
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400399 new->datagram_label = datagram_label;
400 new->datagram_size = dg_size;
YOSHIFUJI Hideaki / 吉藤英明82586342013-01-19 22:03:07 +0000401 new->skb = dev_alloc_skb(dg_size + LL_RESERVED_SPACE(net));
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200402 if (new->skb == NULL)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400403 goto fail_w_fi;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200404
YOSHIFUJI Hideaki / 吉藤英明82586342013-01-19 22:03:07 +0000405 skb_reserve(new->skb, LL_RESERVED_SPACE(net));
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400406 new->pbuf = skb_put(new->skb, dg_size);
407 memcpy(new->pbuf + frag_off, frag_buf, frag_len);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200408 list_add_tail(&new->pd_link, &peer->pd_list);
409
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400410 return new;
411
412fail_w_fi:
413 kfree(fi);
414fail_w_new:
415 kfree(new);
416fail:
Stefan Richter8408dc12012-02-19 12:48:36 +0100417 dev_err(&net->dev, "out of memory\n");
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200418
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400419 return NULL;
420}
421
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200422static struct fwnet_partial_datagram *fwnet_pd_find(struct fwnet_peer *peer,
423 u16 datagram_label)
424{
425 struct fwnet_partial_datagram *pd;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400426
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200427 list_for_each_entry(pd, &peer->pd_list, pd_link)
428 if (pd->datagram_label == datagram_label)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400429 return pd;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200430
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400431 return NULL;
432}
433
434
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200435static void fwnet_pd_delete(struct fwnet_partial_datagram *old)
436{
437 struct fwnet_fragment_info *fi, *n;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400438
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200439 list_for_each_entry_safe(fi, n, &old->fi_list, fi_link)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400440 kfree(fi);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200441
442 list_del(&old->pd_link);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400443 dev_kfree_skb_any(old->skb);
444 kfree(old);
445}
446
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200447static bool fwnet_pd_update(struct fwnet_peer *peer,
448 struct fwnet_partial_datagram *pd, void *frag_buf,
449 unsigned frag_off, unsigned frag_len)
450{
451 if (fwnet_frag_new(pd, frag_off, frag_len) == NULL)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400452 return false;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200453
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400454 memcpy(pd->pbuf + frag_off, frag_buf, frag_len);
455
456 /*
Lucas De Marchi25985ed2011-03-30 22:57:33 -0300457 * Move list entry to beginning of list so that oldest partial
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400458 * datagrams percolate to the end of the list
459 */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200460 list_move_tail(&pd->pd_link, &peer->pd_list);
461
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400462 return true;
463}
464
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200465static bool fwnet_pd_is_complete(struct fwnet_partial_datagram *pd)
466{
467 struct fwnet_fragment_info *fi;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400468
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200469 fi = list_entry(pd->fi_list.next, struct fwnet_fragment_info, fi_link);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400470
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200471 return fi->len == pd->datagram_size;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400472}
473
Stefan Richter5a124d32009-06-14 11:45:27 +0200474/* caller must hold dev->lock */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200475static struct fwnet_peer *fwnet_peer_find_by_guid(struct fwnet_device *dev,
476 u64 guid)
477{
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200478 struct fwnet_peer *peer;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400479
Stefan Richter5a124d32009-06-14 11:45:27 +0200480 list_for_each_entry(peer, &dev->peer_list, peer_link)
481 if (peer->guid == guid)
482 return peer;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200483
Stefan Richter5a124d32009-06-14 11:45:27 +0200484 return NULL;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400485}
486
Stefan Richter5a124d32009-06-14 11:45:27 +0200487/* caller must hold dev->lock */
488static struct fwnet_peer *fwnet_peer_find_by_node_id(struct fwnet_device *dev,
489 int node_id, int generation)
490{
491 struct fwnet_peer *peer;
492
493 list_for_each_entry(peer, &dev->peer_list, peer_link)
494 if (peer->node_id == node_id &&
495 peer->generation == generation)
496 return peer;
497
498 return NULL;
499}
500
501/* See IEEE 1394-2008 table 6-4, table 8-8, table 16-18. */
502static unsigned fwnet_max_payload(unsigned max_rec, unsigned speed)
503{
504 max_rec = min(max_rec, speed + 8);
Stefan Richter4ec4a672011-09-19 00:20:48 +0200505 max_rec = clamp(max_rec, 8U, 11U); /* 512...4096 */
Stefan Richter5a124d32009-06-14 11:45:27 +0200506
507 return (1 << (max_rec + 1)) - RFC2374_FRAG_HDR_SIZE;
508}
509
510
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200511static int fwnet_finish_incoming_packet(struct net_device *net,
512 struct sk_buff *skb, u16 source_node_id,
513 bool is_broadcast, u16 ether_type)
514{
515 struct fwnet_device *dev;
516 static const __be64 broadcast_hw = cpu_to_be64(~0ULL);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400517 int status;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200518 __be64 guid;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400519
YOSHIFUJI Hideaki / 吉藤英明18406d72013-03-25 08:25:38 +0000520 switch (ether_type) {
521 case ETH_P_ARP:
522 case ETH_P_IP:
523 break;
524 default:
525 goto err;
526 }
527
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200528 dev = netdev_priv(net);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400529 /* Write metadata, and then pass to the receive level */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200530 skb->dev = net;
YOSHIFUJI Hideaki / 吉藤英明b577d7e2013-01-19 21:43:40 +0000531 skb->ip_summed = CHECKSUM_NONE;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400532
533 /*
534 * Parse the encapsulation header. This actually does the job of
535 * converting to an ethernet frame header, as well as arp
536 * conversion if needed. ARP conversion is easier in this
537 * direction, since we are using ethernet as our backend.
538 */
539 /*
540 * If this is an ARP packet, convert it. First, we want to make
541 * use of some of the fields, since they tell us a little bit
542 * about the sending machine.
543 */
544 if (ether_type == ETH_P_ARP) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200545 struct rfc2734_arp *arp1394;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400546 struct arphdr *arp;
547 unsigned char *arp_ptr;
548 u64 fifo_addr;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200549 u64 peer_guid;
Stefan Richter5a124d32009-06-14 11:45:27 +0200550 unsigned sspd;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400551 u16 max_payload;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200552 struct fwnet_peer *peer;
Stefan Richter5a124d32009-06-14 11:45:27 +0200553 unsigned long flags;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400554
Stefan Richter5a124d32009-06-14 11:45:27 +0200555 arp1394 = (struct rfc2734_arp *)skb->data;
556 arp = (struct arphdr *)skb->data;
557 arp_ptr = (unsigned char *)(arp + 1);
558 peer_guid = get_unaligned_be64(&arp1394->s_uniq_id);
559 fifo_addr = (u64)get_unaligned_be16(&arp1394->fifo_hi) << 32
560 | get_unaligned_be32(&arp1394->fifo_lo);
561
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400562 sspd = arp1394->sspd;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200563 /* Sanity check. OS X 10.3 PPC reportedly sends 131. */
564 if (sspd > SCODE_3200) {
Stefan Richter8408dc12012-02-19 12:48:36 +0100565 dev_notice(&net->dev, "sspd %x out of range\n", sspd);
Stefan Richter5a124d32009-06-14 11:45:27 +0200566 sspd = SCODE_3200;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400567 }
Stefan Richter5a124d32009-06-14 11:45:27 +0200568 max_payload = fwnet_max_payload(arp1394->max_rec, sspd);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400569
Stefan Richter5a124d32009-06-14 11:45:27 +0200570 spin_lock_irqsave(&dev->lock, flags);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200571 peer = fwnet_peer_find_by_guid(dev, peer_guid);
Stefan Richter5a124d32009-06-14 11:45:27 +0200572 if (peer) {
573 peer->fifo = fifo_addr;
574
575 if (peer->speed > sspd)
576 peer->speed = sspd;
577 if (peer->max_payload > max_payload)
578 peer->max_payload = max_payload;
Maxim Levitsky74a14502010-11-29 04:09:52 +0200579
580 peer->ip = arp1394->sip;
Stefan Richter5a124d32009-06-14 11:45:27 +0200581 }
582 spin_unlock_irqrestore(&dev->lock, flags);
583
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200584 if (!peer) {
Stefan Richter8408dc12012-02-19 12:48:36 +0100585 dev_notice(&net->dev,
586 "no peer for ARP packet from %016llx\n",
587 (unsigned long long)peer_guid);
Stefan Richter1bf145f2010-08-16 23:45:54 +0200588 goto no_peer;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400589 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200590
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400591 /*
592 * Now that we're done with the 1394 specific stuff, we'll
593 * need to alter some of the data. Believe it or not, all
594 * that needs to be done is sender_IP_address needs to be
595 * moved, the destination hardware address get stuffed
596 * in and the hardware address length set to 8.
597 *
598 * IMPORTANT: The code below overwrites 1394 specific data
599 * needed above so keep the munging of the data for the
600 * higher level IP stack last.
601 */
602
603 arp->ar_hln = 8;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200604 /* skip over sender unique id */
605 arp_ptr += arp->ar_hln;
606 /* move sender IP addr */
607 put_unaligned(arp1394->sip, (u32 *)arp_ptr);
608 /* skip over sender IP addr */
609 arp_ptr += arp->ar_pln;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400610
611 if (arp->ar_op == htons(ARPOP_REQUEST))
612 memset(arp_ptr, 0, sizeof(u64));
613 else
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200614 memcpy(arp_ptr, net->dev_addr, sizeof(u64));
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400615 }
616
617 /* Now add the ethernet header. */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200618 guid = cpu_to_be64(dev->card->guid);
619 if (dev_hard_header(skb, net, ether_type,
620 is_broadcast ? &broadcast_hw : &guid,
621 NULL, skb->len) >= 0) {
622 struct fwnet_header *eth;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400623 u16 *rawp;
624 __be16 protocol;
625
626 skb_reset_mac_header(skb);
627 skb_pull(skb, sizeof(*eth));
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200628 eth = (struct fwnet_header *)skb_mac_header(skb);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400629 if (*eth->h_dest & 1) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200630 if (memcmp(eth->h_dest, net->broadcast,
631 net->addr_len) == 0)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400632 skb->pkt_type = PACKET_BROADCAST;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400633#if 0
634 else
635 skb->pkt_type = PACKET_MULTICAST;
636#endif
637 } else {
Stefan Richter156ce862009-06-14 11:46:57 +0200638 if (memcmp(eth->h_dest, net->dev_addr, net->addr_len))
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400639 skb->pkt_type = PACKET_OTHERHOST;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400640 }
641 if (ntohs(eth->h_proto) >= 1536) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400642 protocol = eth->h_proto;
643 } else {
644 rawp = (u16 *)skb->data;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200645 if (*rawp == 0xffff)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400646 protocol = htons(ETH_P_802_3);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200647 else
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400648 protocol = htons(ETH_P_802_2);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400649 }
650 skb->protocol = protocol;
651 }
652 status = netif_rx(skb);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200653 if (status == NET_RX_DROP) {
654 net->stats.rx_errors++;
655 net->stats.rx_dropped++;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400656 } else {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200657 net->stats.rx_packets++;
658 net->stats.rx_bytes += skb->len;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400659 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200660
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400661 return 0;
662
Stefan Richter1bf145f2010-08-16 23:45:54 +0200663 no_peer:
YOSHIFUJI Hideaki / 吉藤英明18406d72013-03-25 08:25:38 +0000664 err:
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200665 net->stats.rx_errors++;
666 net->stats.rx_dropped++;
667
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400668 dev_kfree_skb_any(skb);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200669
Stefan Richter1bf145f2010-08-16 23:45:54 +0200670 return -ENOENT;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400671}
672
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200673static int fwnet_incoming_packet(struct fwnet_device *dev, __be32 *buf, int len,
Stefan Richter5a124d32009-06-14 11:45:27 +0200674 int source_node_id, int generation,
675 bool is_broadcast)
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200676{
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400677 struct sk_buff *skb;
Stefan Richter5a124d32009-06-14 11:45:27 +0200678 struct net_device *net = dev->netdev;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200679 struct rfc2734_header hdr;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400680 unsigned lf;
681 unsigned long flags;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200682 struct fwnet_peer *peer;
683 struct fwnet_partial_datagram *pd;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400684 int fg_off;
685 int dg_size;
686 u16 datagram_label;
687 int retval;
688 u16 ether_type;
689
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200690 hdr.w0 = be32_to_cpu(buf[0]);
691 lf = fwnet_get_hdr_lf(&hdr);
692 if (lf == RFC2374_HDR_UNFRAG) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400693 /*
694 * An unfragmented datagram has been received by the ieee1394
695 * bus. Build an skbuff around it so we can pass it to the
696 * high level network layer.
697 */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200698 ether_type = fwnet_get_hdr_ether_type(&hdr);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400699 buf++;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200700 len -= RFC2374_UNFRAG_HDR_SIZE;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400701
YOSHIFUJI Hideaki / 吉藤英明82586342013-01-19 22:03:07 +0000702 skb = dev_alloc_skb(len + LL_RESERVED_SPACE(net));
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400703 if (unlikely(!skb)) {
Stefan Richter8408dc12012-02-19 12:48:36 +0100704 dev_err(&net->dev, "out of memory\n");
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200705 net->stats.rx_dropped++;
706
Stefan Richter1bf145f2010-08-16 23:45:54 +0200707 return -ENOMEM;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400708 }
YOSHIFUJI Hideaki / 吉藤英明82586342013-01-19 22:03:07 +0000709 skb_reserve(skb, LL_RESERVED_SPACE(net));
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200710 memcpy(skb_put(skb, len), buf, len);
711
712 return fwnet_finish_incoming_packet(net, skb, source_node_id,
713 is_broadcast, ether_type);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400714 }
715 /* A datagram fragment has been received, now the fun begins. */
716 hdr.w1 = ntohl(buf[1]);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200717 buf += 2;
718 len -= RFC2374_FRAG_HDR_SIZE;
719 if (lf == RFC2374_HDR_FIRSTFRAG) {
720 ether_type = fwnet_get_hdr_ether_type(&hdr);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400721 fg_off = 0;
722 } else {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200723 ether_type = 0;
724 fg_off = fwnet_get_hdr_fg_off(&hdr);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400725 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200726 datagram_label = fwnet_get_hdr_dgl(&hdr);
727 dg_size = fwnet_get_hdr_dg_size(&hdr); /* ??? + 1 */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200728
Stefan Richter5a124d32009-06-14 11:45:27 +0200729 spin_lock_irqsave(&dev->lock, flags);
730
731 peer = fwnet_peer_find_by_node_id(dev, source_node_id, generation);
Stefan Richter1bf145f2010-08-16 23:45:54 +0200732 if (!peer) {
733 retval = -ENOENT;
734 goto fail;
735 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200736
737 pd = fwnet_pd_find(peer, datagram_label);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400738 if (pd == NULL) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200739 while (peer->pdg_size >= FWNET_MAX_FRAGMENTS) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400740 /* remove the oldest */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200741 fwnet_pd_delete(list_first_entry(&peer->pd_list,
742 struct fwnet_partial_datagram, pd_link));
743 peer->pdg_size--;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400744 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200745 pd = fwnet_pd_new(net, peer, datagram_label,
746 dg_size, buf, fg_off, len);
747 if (pd == NULL) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400748 retval = -ENOMEM;
Stefan Richter1bf145f2010-08-16 23:45:54 +0200749 goto fail;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400750 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200751 peer->pdg_size++;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400752 } else {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200753 if (fwnet_frag_overlap(pd, fg_off, len) ||
754 pd->datagram_size != dg_size) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400755 /*
756 * Differing datagram sizes or overlapping fragments,
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200757 * discard old datagram and start a new one.
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400758 */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200759 fwnet_pd_delete(pd);
760 pd = fwnet_pd_new(net, peer, datagram_label,
761 dg_size, buf, fg_off, len);
762 if (pd == NULL) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200763 peer->pdg_size--;
Stefan Richter1bf145f2010-08-16 23:45:54 +0200764 retval = -ENOMEM;
765 goto fail;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400766 }
767 } else {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200768 if (!fwnet_pd_update(peer, pd, buf, fg_off, len)) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400769 /*
770 * Couldn't save off fragment anyway
771 * so might as well obliterate the
772 * datagram now.
773 */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200774 fwnet_pd_delete(pd);
775 peer->pdg_size--;
Stefan Richter1bf145f2010-08-16 23:45:54 +0200776 retval = -ENOMEM;
777 goto fail;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400778 }
779 }
780 } /* new datagram or add to existing one */
781
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200782 if (lf == RFC2374_HDR_FIRSTFRAG)
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400783 pd->ether_type = ether_type;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200784
785 if (fwnet_pd_is_complete(pd)) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400786 ether_type = pd->ether_type;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200787 peer->pdg_size--;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400788 skb = skb_get(pd->skb);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200789 fwnet_pd_delete(pd);
790
Stefan Richter5a124d32009-06-14 11:45:27 +0200791 spin_unlock_irqrestore(&dev->lock, flags);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200792
793 return fwnet_finish_incoming_packet(net, skb, source_node_id,
794 false, ether_type);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400795 }
796 /*
797 * Datagram is not complete, we're done for the
798 * moment.
799 */
Stefan Richterb2268832010-11-14 14:35:40 +0100800 retval = 0;
Stefan Richter1bf145f2010-08-16 23:45:54 +0200801 fail:
Stefan Richter5a124d32009-06-14 11:45:27 +0200802 spin_unlock_irqrestore(&dev->lock, flags);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200803
Stefan Richter1bf145f2010-08-16 23:45:54 +0200804 return retval;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400805}
806
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200807static void fwnet_receive_packet(struct fw_card *card, struct fw_request *r,
808 int tcode, int destination, int source, int generation,
Stefan Richter33e553f2010-06-20 22:50:35 +0200809 unsigned long long offset, void *payload, size_t length,
810 void *callback_data)
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200811{
Stefan Richter00635b82009-06-16 22:35:32 +0200812 struct fwnet_device *dev = callback_data;
813 int rcode;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400814
Stefan Richter00635b82009-06-16 22:35:32 +0200815 if (destination == IEEE1394_ALL_NODES) {
816 kfree(r);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200817
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400818 return;
819 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200820
Stefan Richter00635b82009-06-16 22:35:32 +0200821 if (offset != dev->handler.offset)
822 rcode = RCODE_ADDRESS_ERROR;
823 else if (tcode != TCODE_WRITE_BLOCK_REQUEST)
824 rcode = RCODE_TYPE_ERROR;
825 else if (fwnet_incoming_packet(dev, payload, length,
826 source, generation, false) != 0) {
Stefan Richter8408dc12012-02-19 12:48:36 +0100827 dev_err(&dev->netdev->dev, "incoming packet failure\n");
Stefan Richter00635b82009-06-16 22:35:32 +0200828 rcode = RCODE_CONFLICT_ERROR;
829 } else
830 rcode = RCODE_COMPLETE;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200831
Stefan Richter00635b82009-06-16 22:35:32 +0200832 fw_send_response(card, r, rcode);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400833}
834
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200835static void fwnet_receive_broadcast(struct fw_iso_context *context,
836 u32 cycle, size_t header_length, void *header, void *data)
837{
838 struct fwnet_device *dev;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400839 struct fw_iso_packet packet;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200840 __be16 *hdr_ptr;
841 __be32 *buf_ptr;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400842 int retval;
843 u32 length;
844 u16 source_node_id;
845 u32 specifier_id;
846 u32 ver;
847 unsigned long offset;
848 unsigned long flags;
849
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200850 dev = data;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400851 hdr_ptr = header;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200852 length = be16_to_cpup(hdr_ptr);
853
854 spin_lock_irqsave(&dev->lock, flags);
855
856 offset = dev->rcv_buffer_size * dev->broadcast_rcv_next_ptr;
857 buf_ptr = dev->broadcast_rcv_buffer_ptrs[dev->broadcast_rcv_next_ptr++];
858 if (dev->broadcast_rcv_next_ptr == dev->num_broadcast_rcv_ptrs)
859 dev->broadcast_rcv_next_ptr = 0;
860
861 spin_unlock_irqrestore(&dev->lock, flags);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400862
863 specifier_id = (be32_to_cpu(buf_ptr[0]) & 0xffff) << 8
864 | (be32_to_cpu(buf_ptr[1]) & 0xff000000) >> 24;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200865 ver = be32_to_cpu(buf_ptr[1]) & 0xffffff;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400866 source_node_id = be32_to_cpu(buf_ptr[0]) >> 16;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200867
868 if (specifier_id == IANA_SPECIFIER_ID && ver == RFC2734_SW_VERSION) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400869 buf_ptr += 2;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200870 length -= IEEE1394_GASP_HDR_SIZE;
Stephan Gatzka9d237342012-11-28 20:04:32 +0100871 fwnet_incoming_packet(dev, buf_ptr, length, source_node_id,
872 context->card->generation, true);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200873 }
874
875 packet.payload_length = dev->rcv_buffer_size;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400876 packet.interrupt = 1;
877 packet.skip = 0;
878 packet.tag = 3;
879 packet.sy = 0;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200880 packet.header_length = IEEE1394_GASP_HDR_SIZE;
881
882 spin_lock_irqsave(&dev->lock, flags);
883
884 retval = fw_iso_context_queue(dev->broadcast_rcv_context, &packet,
885 &dev->broadcast_rcv_buffer, offset);
886
887 spin_unlock_irqrestore(&dev->lock, flags);
888
Clemens Ladisch13882a82011-05-02 09:33:56 +0200889 if (retval >= 0)
890 fw_iso_context_queue_flush(dev->broadcast_rcv_context);
891 else
Stefan Richter8408dc12012-02-19 12:48:36 +0100892 dev_err(&dev->netdev->dev, "requeue failed\n");
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400893}
894
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200895static struct kmem_cache *fwnet_packet_task_cache;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400896
Stefan Richter110f82d2010-01-18 22:36:49 +0100897static void fwnet_free_ptask(struct fwnet_packet_task *ptask)
898{
899 dev_kfree_skb_any(ptask->skb);
900 kmem_cache_free(fwnet_packet_task_cache, ptask);
901}
902
Stefan Richterb2268832010-11-14 14:35:40 +0100903/* Caller must hold dev->lock. */
904static void dec_queued_datagrams(struct fwnet_device *dev)
905{
906 if (--dev->queued_datagrams == FWNET_MIN_QUEUED_DATAGRAMS)
907 netif_wake_queue(dev->netdev);
908}
909
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200910static int fwnet_send_packet(struct fwnet_packet_task *ptask);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400911
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200912static void fwnet_transmit_packet_done(struct fwnet_packet_task *ptask)
913{
Stefan Richter110f82d2010-01-18 22:36:49 +0100914 struct fwnet_device *dev = ptask->dev;
Stefan Richter902bca02010-11-06 12:36:13 +0100915 struct sk_buff *skb = ptask->skb;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400916 unsigned long flags;
Stefan Richter110f82d2010-01-18 22:36:49 +0100917 bool free;
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200918
919 spin_lock_irqsave(&dev->lock, flags);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200920
Stefan Richter110f82d2010-01-18 22:36:49 +0100921 ptask->outstanding_pkts--;
922
923 /* Check whether we or the networking TX soft-IRQ is last user. */
Stefan Richter48553012010-11-06 23:18:23 +0100924 free = (ptask->outstanding_pkts == 0 && ptask->enqueued);
Stefan Richter7ee11fa2010-11-06 16:57:28 +0100925 if (free)
Stefan Richterb2268832010-11-14 14:35:40 +0100926 dec_queued_datagrams(dev);
Stefan Richter110f82d2010-01-18 22:36:49 +0100927
Stefan Richter902bca02010-11-06 12:36:13 +0100928 if (ptask->outstanding_pkts == 0) {
Stefan Richter902bca02010-11-06 12:36:13 +0100929 dev->netdev->stats.tx_packets++;
930 dev->netdev->stats.tx_bytes += skb->len;
931 }
Stefan Richter110f82d2010-01-18 22:36:49 +0100932
933 spin_unlock_irqrestore(&dev->lock, flags);
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200934
935 if (ptask->outstanding_pkts > 0) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400936 u16 dg_size;
937 u16 fg_off;
938 u16 datagram_label;
939 u16 lf;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400940
941 /* Update the ptask to point to the next fragment and send it */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200942 lf = fwnet_get_hdr_lf(&ptask->hdr);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400943 switch (lf) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200944 case RFC2374_HDR_LASTFRAG:
945 case RFC2374_HDR_UNFRAG:
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400946 default:
Stefan Richter8408dc12012-02-19 12:48:36 +0100947 dev_err(&dev->netdev->dev,
948 "outstanding packet %x lf %x, header %x,%x\n",
949 ptask->outstanding_pkts, lf, ptask->hdr.w0,
950 ptask->hdr.w1);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400951 BUG();
952
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200953 case RFC2374_HDR_FIRSTFRAG:
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400954 /* Set frag type here for future interior fragments */
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200955 dg_size = fwnet_get_hdr_dg_size(&ptask->hdr);
956 fg_off = ptask->max_payload - RFC2374_FRAG_HDR_SIZE;
957 datagram_label = fwnet_get_hdr_dgl(&ptask->hdr);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400958 break;
959
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200960 case RFC2374_HDR_INTFRAG:
961 dg_size = fwnet_get_hdr_dg_size(&ptask->hdr);
962 fg_off = fwnet_get_hdr_fg_off(&ptask->hdr)
963 + ptask->max_payload - RFC2374_FRAG_HDR_SIZE;
964 datagram_label = fwnet_get_hdr_dgl(&ptask->hdr);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400965 break;
966 }
Stefan Richter902bca02010-11-06 12:36:13 +0100967
Stephan Gatzka9d237342012-11-28 20:04:32 +0100968 if (ptask->dest_node == IEEE1394_ALL_NODES) {
969 skb_pull(skb,
970 ptask->max_payload + IEEE1394_GASP_HDR_SIZE);
971 } else {
972 skb_pull(skb, ptask->max_payload);
973 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200974 if (ptask->outstanding_pkts > 1) {
975 fwnet_make_sf_hdr(&ptask->hdr, RFC2374_HDR_INTFRAG,
976 dg_size, fg_off, datagram_label);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400977 } else {
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200978 fwnet_make_sf_hdr(&ptask->hdr, RFC2374_HDR_LASTFRAG,
979 dg_size, fg_off, datagram_label);
980 ptask->max_payload = skb->len + RFC2374_FRAG_HDR_SIZE;
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400981 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +0200982 fwnet_send_packet(ptask);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400983 }
Stefan Richter110f82d2010-01-18 22:36:49 +0100984
985 if (free)
986 fwnet_free_ptask(ptask);
Jay Fenlasonc76acec2009-05-18 13:08:06 -0400987}
988
Stefan Richter7ee11fa2010-11-06 16:57:28 +0100989static void fwnet_transmit_packet_failed(struct fwnet_packet_task *ptask)
990{
991 struct fwnet_device *dev = ptask->dev;
992 unsigned long flags;
993 bool free;
994
995 spin_lock_irqsave(&dev->lock, flags);
996
997 /* One fragment failed; don't try to send remaining fragments. */
998 ptask->outstanding_pkts = 0;
999
1000 /* Check whether we or the networking TX soft-IRQ is last user. */
Stefan Richter48553012010-11-06 23:18:23 +01001001 free = ptask->enqueued;
Stefan Richter7ee11fa2010-11-06 16:57:28 +01001002 if (free)
Stefan Richterb2268832010-11-14 14:35:40 +01001003 dec_queued_datagrams(dev);
Stefan Richter7ee11fa2010-11-06 16:57:28 +01001004
1005 dev->netdev->stats.tx_dropped++;
1006 dev->netdev->stats.tx_errors++;
1007
1008 spin_unlock_irqrestore(&dev->lock, flags);
1009
1010 if (free)
1011 fwnet_free_ptask(ptask);
1012}
1013
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001014static void fwnet_write_complete(struct fw_card *card, int rcode,
1015 void *payload, size_t length, void *data)
1016{
Maxim Levitskyc4d6fd42010-11-29 04:09:53 +02001017 struct fwnet_packet_task *ptask = data;
1018 static unsigned long j;
1019 static int last_rcode, errors_skipped;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001020
Stefan Richter7ee11fa2010-11-06 16:57:28 +01001021 if (rcode == RCODE_COMPLETE) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001022 fwnet_transmit_packet_done(ptask);
Stefan Richter7ee11fa2010-11-06 16:57:28 +01001023 } else {
Stefan Richter7ee11fa2010-11-06 16:57:28 +01001024 fwnet_transmit_packet_failed(ptask);
Maxim Levitskyc4d6fd42010-11-29 04:09:53 +02001025
1026 if (printk_timed_ratelimit(&j, 1000) || rcode != last_rcode) {
Stefan Richter8408dc12012-02-19 12:48:36 +01001027 dev_err(&ptask->dev->netdev->dev,
1028 "fwnet_write_complete failed: %x (skipped %d)\n",
1029 rcode, errors_skipped);
Maxim Levitskyc4d6fd42010-11-29 04:09:53 +02001030
1031 errors_skipped = 0;
1032 last_rcode = rcode;
1033 } else
1034 errors_skipped++;
Stefan Richter7ee11fa2010-11-06 16:57:28 +01001035 }
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001036}
1037
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001038static int fwnet_send_packet(struct fwnet_packet_task *ptask)
1039{
1040 struct fwnet_device *dev;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001041 unsigned tx_len;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001042 struct rfc2734_header *bufhdr;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001043 unsigned long flags;
Stefan Richter110f82d2010-01-18 22:36:49 +01001044 bool free;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001045
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001046 dev = ptask->dev;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001047 tx_len = ptask->max_payload;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001048 switch (fwnet_get_hdr_lf(&ptask->hdr)) {
1049 case RFC2374_HDR_UNFRAG:
1050 bufhdr = (struct rfc2734_header *)
1051 skb_push(ptask->skb, RFC2374_UNFRAG_HDR_SIZE);
1052 put_unaligned_be32(ptask->hdr.w0, &bufhdr->w0);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001053 break;
1054
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001055 case RFC2374_HDR_FIRSTFRAG:
1056 case RFC2374_HDR_INTFRAG:
1057 case RFC2374_HDR_LASTFRAG:
1058 bufhdr = (struct rfc2734_header *)
1059 skb_push(ptask->skb, RFC2374_FRAG_HDR_SIZE);
1060 put_unaligned_be32(ptask->hdr.w0, &bufhdr->w0);
1061 put_unaligned_be32(ptask->hdr.w1, &bufhdr->w1);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001062 break;
1063
1064 default:
1065 BUG();
1066 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001067 if (ptask->dest_node == IEEE1394_ALL_NODES) {
1068 u8 *p;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001069 int generation;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001070 int node_id;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001071
1072 /* ptask->generation may not have been set yet */
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001073 generation = dev->card->generation;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001074 smp_rmb();
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001075 node_id = dev->card->node_id;
1076
Stephan Gatzka9d237342012-11-28 20:04:32 +01001077 p = skb_push(ptask->skb, IEEE1394_GASP_HDR_SIZE);
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001078 put_unaligned_be32(node_id << 16 | IANA_SPECIFIER_ID >> 8, p);
1079 put_unaligned_be32((IANA_SPECIFIER_ID & 0xff) << 24
1080 | RFC2734_SW_VERSION, &p[4]);
1081
1082 /* We should not transmit if broadcast_channel.valid == 0. */
1083 fw_send_request(dev->card, &ptask->transaction,
1084 TCODE_STREAM_DATA,
1085 fw_stream_packet_destination_id(3,
1086 IEEE1394_BROADCAST_CHANNEL, 0),
1087 generation, SCODE_100, 0ULL, ptask->skb->data,
1088 tx_len + 8, fwnet_write_complete, ptask);
1089
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001090 spin_lock_irqsave(&dev->lock, flags);
Stefan Richter110f82d2010-01-18 22:36:49 +01001091
1092 /* If the AT tasklet already ran, we may be last user. */
Stefan Richter48553012010-11-06 23:18:23 +01001093 free = (ptask->outstanding_pkts == 0 && !ptask->enqueued);
Stefan Richter110f82d2010-01-18 22:36:49 +01001094 if (!free)
Stefan Richter48553012010-11-06 23:18:23 +01001095 ptask->enqueued = true;
1096 else
Stefan Richterb2268832010-11-14 14:35:40 +01001097 dec_queued_datagrams(dev);
Stefan Richter110f82d2010-01-18 22:36:49 +01001098
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001099 spin_unlock_irqrestore(&dev->lock, flags);
1100
Stefan Richter110f82d2010-01-18 22:36:49 +01001101 goto out;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001102 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001103
1104 fw_send_request(dev->card, &ptask->transaction,
1105 TCODE_WRITE_BLOCK_REQUEST, ptask->dest_node,
1106 ptask->generation, ptask->speed, ptask->fifo_addr,
1107 ptask->skb->data, tx_len, fwnet_write_complete, ptask);
1108
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001109 spin_lock_irqsave(&dev->lock, flags);
Stefan Richter110f82d2010-01-18 22:36:49 +01001110
1111 /* If the AT tasklet already ran, we may be last user. */
Stefan Richter48553012010-11-06 23:18:23 +01001112 free = (ptask->outstanding_pkts == 0 && !ptask->enqueued);
Stefan Richter110f82d2010-01-18 22:36:49 +01001113 if (!free)
Stefan Richter48553012010-11-06 23:18:23 +01001114 ptask->enqueued = true;
1115 else
Stefan Richterb2268832010-11-14 14:35:40 +01001116 dec_queued_datagrams(dev);
Stefan Richter110f82d2010-01-18 22:36:49 +01001117
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001118 spin_unlock_irqrestore(&dev->lock, flags);
1119
Stefan Richter5a124d32009-06-14 11:45:27 +02001120 dev->netdev->trans_start = jiffies;
Stefan Richter110f82d2010-01-18 22:36:49 +01001121 out:
1122 if (free)
1123 fwnet_free_ptask(ptask);
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001124
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001125 return 0;
1126}
1127
YOSHIFUJI Hideaki9d39c902013-03-08 10:42:26 +09001128static void fwnet_fifo_stop(struct fwnet_device *dev)
1129{
1130 if (dev->local_fifo == FWNET_NO_FIFO_ADDR)
1131 return;
1132
1133 fw_core_remove_address_handler(&dev->handler);
1134 dev->local_fifo = FWNET_NO_FIFO_ADDR;
1135}
1136
1137static int fwnet_fifo_start(struct fwnet_device *dev)
1138{
1139 int retval;
1140
1141 if (dev->local_fifo != FWNET_NO_FIFO_ADDR)
1142 return 0;
1143
1144 dev->handler.length = 4096;
1145 dev->handler.address_callback = fwnet_receive_packet;
1146 dev->handler.callback_data = dev;
1147
1148 retval = fw_core_add_address_handler(&dev->handler,
1149 &fw_high_memory_region);
1150 if (retval < 0)
1151 return retval;
1152
1153 dev->local_fifo = dev->handler.offset;
1154
1155 return 0;
1156}
1157
YOSHIFUJI Hideaki111534c2013-03-08 10:45:50 +09001158static void __fwnet_broadcast_stop(struct fwnet_device *dev)
1159{
1160 unsigned u;
1161
1162 if (dev->broadcast_state != FWNET_BROADCAST_ERROR) {
1163 for (u = 0; u < FWNET_ISO_PAGE_COUNT; u++)
1164 kunmap(dev->broadcast_rcv_buffer.pages[u]);
1165 fw_iso_buffer_destroy(&dev->broadcast_rcv_buffer, dev->card);
1166 }
1167 if (dev->broadcast_rcv_context) {
1168 fw_iso_context_destroy(dev->broadcast_rcv_context);
1169 dev->broadcast_rcv_context = NULL;
1170 }
1171 kfree(dev->broadcast_rcv_buffer_ptrs);
1172 dev->broadcast_rcv_buffer_ptrs = NULL;
1173 dev->broadcast_state = FWNET_BROADCAST_ERROR;
1174}
1175
1176static void fwnet_broadcast_stop(struct fwnet_device *dev)
1177{
1178 if (dev->broadcast_state == FWNET_BROADCAST_ERROR)
1179 return;
1180 fw_iso_context_stop(dev->broadcast_rcv_context);
1181 __fwnet_broadcast_stop(dev);
1182}
1183
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001184static int fwnet_broadcast_start(struct fwnet_device *dev)
1185{
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001186 struct fw_iso_context *context;
1187 int retval;
1188 unsigned num_packets;
1189 unsigned max_receive;
1190 struct fw_iso_packet packet;
1191 unsigned long offset;
YOSHIFUJI Hideakif2090592013-03-08 10:43:25 +09001192 void **ptrptr;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001193 unsigned u;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001194
YOSHIFUJI Hideaki2fbd8df2013-03-08 10:43:14 +09001195 if (dev->broadcast_state != FWNET_BROADCAST_ERROR)
1196 return 0;
1197
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001198 max_receive = 1U << (dev->card->max_receive + 1);
1199 num_packets = (FWNET_ISO_PAGE_COUNT * PAGE_SIZE) / max_receive;
1200
YOSHIFUJI Hideakieac31d52013-03-08 10:43:55 +09001201 ptrptr = kmalloc(sizeof(void *) * num_packets, GFP_KERNEL);
1202 if (!ptrptr) {
1203 retval = -ENOMEM;
YOSHIFUJI Hideaki111534c2013-03-08 10:45:50 +09001204 goto failed;
YOSHIFUJI Hideakieac31d52013-03-08 10:43:55 +09001205 }
1206 dev->broadcast_rcv_buffer_ptrs = ptrptr;
1207
YOSHIFUJI Hideakif2090592013-03-08 10:43:25 +09001208 context = fw_iso_context_create(dev->card, FW_ISO_CONTEXT_RECEIVE,
1209 IEEE1394_BROADCAST_CHANNEL,
1210 dev->card->link_speed, 8,
1211 fwnet_receive_broadcast, dev);
1212 if (IS_ERR(context)) {
1213 retval = PTR_ERR(context);
YOSHIFUJI Hideaki111534c2013-03-08 10:45:50 +09001214 goto failed;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001215 }
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001216
YOSHIFUJI Hideakif2090592013-03-08 10:43:25 +09001217 retval = fw_iso_buffer_init(&dev->broadcast_rcv_buffer, dev->card,
1218 FWNET_ISO_PAGE_COUNT, DMA_FROM_DEVICE);
1219 if (retval < 0)
YOSHIFUJI Hideaki111534c2013-03-08 10:45:50 +09001220 goto failed;
1221
1222 dev->broadcast_state = FWNET_BROADCAST_STOPPED;
YOSHIFUJI Hideakif2090592013-03-08 10:43:25 +09001223
YOSHIFUJI Hideakif2090592013-03-08 10:43:25 +09001224 for (u = 0; u < FWNET_ISO_PAGE_COUNT; u++) {
1225 void *ptr;
1226 unsigned v;
1227
1228 ptr = kmap(dev->broadcast_rcv_buffer.pages[u]);
1229 for (v = 0; v < num_packets / FWNET_ISO_PAGE_COUNT; v++)
1230 *ptrptr++ = (void *) ((char *)ptr + v * max_receive);
1231 }
1232 dev->broadcast_rcv_context = context;
1233
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001234 packet.payload_length = max_receive;
1235 packet.interrupt = 1;
1236 packet.skip = 0;
1237 packet.tag = 3;
1238 packet.sy = 0;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001239 packet.header_length = IEEE1394_GASP_HDR_SIZE;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001240 offset = 0;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001241
1242 for (u = 0; u < num_packets; u++) {
1243 retval = fw_iso_context_queue(context, &packet,
1244 &dev->broadcast_rcv_buffer, offset);
1245 if (retval < 0)
YOSHIFUJI Hideaki111534c2013-03-08 10:45:50 +09001246 goto failed;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001247
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001248 offset += max_receive;
1249 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001250 dev->num_broadcast_rcv_ptrs = num_packets;
1251 dev->rcv_buffer_size = max_receive;
1252 dev->broadcast_rcv_next_ptr = 0U;
1253 retval = fw_iso_context_start(context, -1, 0,
1254 FW_ISO_CONTEXT_MATCH_ALL_TAGS); /* ??? sync */
1255 if (retval < 0)
YOSHIFUJI Hideaki111534c2013-03-08 10:45:50 +09001256 goto failed;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001257
1258 /* FIXME: adjust it according to the min. speed of all known peers? */
1259 dev->broadcast_xmt_max_payload = IEEE1394_MAX_PAYLOAD_S100
1260 - IEEE1394_GASP_HDR_SIZE - RFC2374_UNFRAG_HDR_SIZE;
1261 dev->broadcast_state = FWNET_BROADCAST_RUNNING;
1262
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001263 return 0;
1264
YOSHIFUJI Hideaki111534c2013-03-08 10:45:50 +09001265 failed:
1266 __fwnet_broadcast_stop(dev);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001267 return retval;
1268}
1269
Stefan Richterc1671472010-12-17 22:22:33 +01001270static void set_carrier_state(struct fwnet_device *dev)
1271{
1272 if (dev->peer_count > 1)
1273 netif_carrier_on(dev->netdev);
1274 else
1275 netif_carrier_off(dev->netdev);
1276}
1277
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001278/* ifup */
1279static int fwnet_open(struct net_device *net)
1280{
1281 struct fwnet_device *dev = netdev_priv(net);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001282 int ret;
1283
YOSHIFUJI Hideakib9a88712013-03-08 10:42:38 +09001284 ret = fwnet_fifo_start(dev);
1285 if (ret)
1286 return ret;
1287
YOSHIFUJI Hideaki2fbd8df2013-03-08 10:43:14 +09001288 ret = fwnet_broadcast_start(dev);
1289 if (ret)
1290 goto out;
1291
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001292 netif_start_queue(net);
1293
Stefan Richterc1671472010-12-17 22:22:33 +01001294 spin_lock_irq(&dev->lock);
1295 set_carrier_state(dev);
1296 spin_unlock_irq(&dev->lock);
1297
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001298 return 0;
YOSHIFUJI Hideakib9a88712013-03-08 10:42:38 +09001299out:
1300 fwnet_fifo_stop(dev);
1301 return ret;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001302}
1303
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001304/* ifdown */
1305static int fwnet_stop(struct net_device *net)
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001306{
YOSHIFUJI Hideaki8559e7f2013-03-08 10:45:57 +09001307 struct fwnet_device *dev = netdev_priv(net);
1308
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001309 netif_stop_queue(net);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001310
YOSHIFUJI Hideaki8559e7f2013-03-08 10:45:57 +09001311 fwnet_broadcast_stop(dev);
1312 fwnet_fifo_stop(dev);
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001313
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001314 return 0;
1315}
1316
Stephen Hemminger424efe92009-08-31 19:50:51 +00001317static netdev_tx_t fwnet_tx(struct sk_buff *skb, struct net_device *net)
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001318{
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001319 struct fwnet_header hdr_buf;
1320 struct fwnet_device *dev = netdev_priv(net);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001321 __be16 proto;
1322 u16 dest_node;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001323 unsigned max_payload;
1324 u16 dg_size;
1325 u16 *datagram_label_ptr;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001326 struct fwnet_packet_task *ptask;
Stefan Richter5a124d32009-06-14 11:45:27 +02001327 struct fwnet_peer *peer;
1328 unsigned long flags;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001329
Stefan Richterb2268832010-11-14 14:35:40 +01001330 spin_lock_irqsave(&dev->lock, flags);
1331
1332 /* Can this happen? */
1333 if (netif_queue_stopped(dev->netdev)) {
1334 spin_unlock_irqrestore(&dev->lock, flags);
1335
1336 return NETDEV_TX_BUSY;
1337 }
1338
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001339 ptask = kmem_cache_alloc(fwnet_packet_task_cache, GFP_ATOMIC);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001340 if (ptask == NULL)
1341 goto fail;
1342
1343 skb = skb_share_check(skb, GFP_ATOMIC);
1344 if (!skb)
1345 goto fail;
1346
1347 /*
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001348 * Make a copy of the driver-specific header.
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001349 * We might need to rebuild the header on tx failure.
1350 */
1351 memcpy(&hdr_buf, skb->data, sizeof(hdr_buf));
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001352 proto = hdr_buf.h_proto;
YOSHIFUJI Hideaki / 吉藤英明18406d72013-03-25 08:25:38 +00001353
1354 switch (proto) {
1355 case htons(ETH_P_ARP):
1356 case htons(ETH_P_IP):
1357 break;
1358 default:
1359 goto fail;
1360 }
1361
1362 skb_pull(skb, sizeof(hdr_buf));
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001363 dg_size = skb->len;
1364
1365 /*
1366 * Set the transmission type for the packet. ARP packets and IP
1367 * broadcast packets are sent via GASP.
1368 */
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001369 if (memcmp(hdr_buf.h_dest, net->broadcast, FWNET_ALEN) == 0
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001370 || proto == htons(ETH_P_ARP)
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001371 || (proto == htons(ETH_P_IP)
1372 && IN_MULTICAST(ntohl(ip_hdr(skb)->daddr)))) {
Stefan Richter5a124d32009-06-14 11:45:27 +02001373 max_payload = dev->broadcast_xmt_max_payload;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001374 datagram_label_ptr = &dev->broadcast_xmt_datagramlabel;
1375
Stefan Richter5a124d32009-06-14 11:45:27 +02001376 ptask->fifo_addr = FWNET_NO_FIFO_ADDR;
1377 ptask->generation = 0;
1378 ptask->dest_node = IEEE1394_ALL_NODES;
1379 ptask->speed = SCODE_100;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001380 } else {
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001381 __be64 guid = get_unaligned((__be64 *)hdr_buf.h_dest);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001382 u8 generation;
1383
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001384 peer = fwnet_peer_find_by_guid(dev, be64_to_cpu(guid));
Stefan Richter5a124d32009-06-14 11:45:27 +02001385 if (!peer || peer->fifo == FWNET_NO_FIFO_ADDR)
Stefan Richterb2268832010-11-14 14:35:40 +01001386 goto fail;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001387
Stefan Richter5a124d32009-06-14 11:45:27 +02001388 generation = peer->generation;
1389 dest_node = peer->node_id;
1390 max_payload = peer->max_payload;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001391 datagram_label_ptr = &peer->datagram_label;
1392
Stefan Richter5a124d32009-06-14 11:45:27 +02001393 ptask->fifo_addr = peer->fifo;
1394 ptask->generation = generation;
1395 ptask->dest_node = dest_node;
1396 ptask->speed = peer->speed;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001397 }
1398
1399 /* If this is an ARP packet, convert it */
1400 if (proto == htons(ETH_P_ARP)) {
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001401 struct arphdr *arp = (struct arphdr *)skb->data;
1402 unsigned char *arp_ptr = (unsigned char *)(arp + 1);
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001403 struct rfc2734_arp *arp1394 = (struct rfc2734_arp *)skb->data;
1404 __be32 ipaddr;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001405
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001406 ipaddr = get_unaligned((__be32 *)(arp_ptr + FWNET_ALEN));
1407
1408 arp1394->hw_addr_len = RFC2734_HW_ADDR_LEN;
1409 arp1394->max_rec = dev->card->max_receive;
1410 arp1394->sspd = dev->card->link_speed;
1411
1412 put_unaligned_be16(dev->local_fifo >> 32,
1413 &arp1394->fifo_hi);
1414 put_unaligned_be32(dev->local_fifo & 0xffffffff,
1415 &arp1394->fifo_lo);
1416 put_unaligned(ipaddr, &arp1394->sip);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001417 }
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001418
1419 ptask->hdr.w0 = 0;
1420 ptask->hdr.w1 = 0;
1421 ptask->skb = skb;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001422 ptask->dev = dev;
1423
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001424 /* Does it all fit in one packet? */
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001425 if (dg_size <= max_payload) {
1426 fwnet_make_uf_hdr(&ptask->hdr, ntohs(proto));
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001427 ptask->outstanding_pkts = 1;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001428 max_payload = dg_size + RFC2374_UNFRAG_HDR_SIZE;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001429 } else {
1430 u16 datagram_label;
1431
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001432 max_payload -= RFC2374_FRAG_OVERHEAD;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001433 datagram_label = (*datagram_label_ptr)++;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001434 fwnet_make_ff_hdr(&ptask->hdr, ntohs(proto), dg_size,
1435 datagram_label);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001436 ptask->outstanding_pkts = DIV_ROUND_UP(dg_size, max_payload);
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001437 max_payload += RFC2374_FRAG_HDR_SIZE;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001438 }
Stefan Richter5a124d32009-06-14 11:45:27 +02001439
Stefan Richterb2268832010-11-14 14:35:40 +01001440 if (++dev->queued_datagrams == FWNET_MAX_QUEUED_DATAGRAMS)
1441 netif_stop_queue(dev->netdev);
Stefan Richter48553012010-11-06 23:18:23 +01001442
Stefan Richter5a124d32009-06-14 11:45:27 +02001443 spin_unlock_irqrestore(&dev->lock, flags);
1444
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001445 ptask->max_payload = max_payload;
Stefan Richter48553012010-11-06 23:18:23 +01001446 ptask->enqueued = 0;
Stefan Richter110f82d2010-01-18 22:36:49 +01001447
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001448 fwnet_send_packet(ptask);
1449
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001450 return NETDEV_TX_OK;
1451
1452 fail:
Stefan Richterb2268832010-11-14 14:35:40 +01001453 spin_unlock_irqrestore(&dev->lock, flags);
1454
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001455 if (ptask)
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001456 kmem_cache_free(fwnet_packet_task_cache, ptask);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001457
1458 if (skb != NULL)
1459 dev_kfree_skb(skb);
1460
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001461 net->stats.tx_dropped++;
1462 net->stats.tx_errors++;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001463
1464 /*
1465 * FIXME: According to a patch from 2003-02-26, "returning non-zero
1466 * causes serious problems" here, allegedly. Before that patch,
1467 * -ERRNO was returned which is not appropriate under Linux 2.6.
1468 * Perhaps more needs to be done? Stop the queue in serious
1469 * conditions and restart it elsewhere?
1470 */
1471 return NETDEV_TX_OK;
1472}
1473
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001474static int fwnet_change_mtu(struct net_device *net, int new_mtu)
1475{
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001476 if (new_mtu < 68)
1477 return -EINVAL;
1478
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001479 net->mtu = new_mtu;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001480 return 0;
1481}
1482
Maxim Levitsky18bb36f2010-12-08 04:22:57 +02001483static const struct ethtool_ops fwnet_ethtool_ops = {
1484 .get_link = ethtool_op_get_link,
1485};
1486
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001487static const struct net_device_ops fwnet_netdev_ops = {
1488 .ndo_open = fwnet_open,
1489 .ndo_stop = fwnet_stop,
1490 .ndo_start_xmit = fwnet_tx,
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001491 .ndo_change_mtu = fwnet_change_mtu,
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001492};
1493
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001494static void fwnet_init_dev(struct net_device *net)
1495{
1496 net->header_ops = &fwnet_header_ops;
1497 net->netdev_ops = &fwnet_netdev_ops;
Stefan Richter1337f852009-06-14 11:47:44 +02001498 net->watchdog_timeo = 2 * HZ;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001499 net->flags = IFF_BROADCAST | IFF_MULTICAST;
1500 net->features = NETIF_F_HIGHDMA;
1501 net->addr_len = FWNET_ALEN;
1502 net->hard_header_len = FWNET_HLEN;
1503 net->type = ARPHRD_IEEE1394;
Stefan Richterb2268832010-11-14 14:35:40 +01001504 net->tx_queue_len = FWNET_TX_QUEUE_LEN;
Maxim Levitsky18bb36f2010-12-08 04:22:57 +02001505 net->ethtool_ops = &fwnet_ethtool_ops;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001506}
1507
Stefan Richter5a124d32009-06-14 11:45:27 +02001508/* caller must hold fwnet_device_mutex */
1509static struct fwnet_device *fwnet_dev_find(struct fw_card *card)
1510{
1511 struct fwnet_device *dev;
1512
1513 list_for_each_entry(dev, &fwnet_device_list, dev_link)
1514 if (dev->card == card)
1515 return dev;
1516
1517 return NULL;
1518}
1519
1520static int fwnet_add_peer(struct fwnet_device *dev,
1521 struct fw_unit *unit, struct fw_device *device)
1522{
1523 struct fwnet_peer *peer;
1524
1525 peer = kmalloc(sizeof(*peer), GFP_KERNEL);
1526 if (!peer)
1527 return -ENOMEM;
1528
Stefan Richterb01b4ba2009-06-16 20:43:55 +02001529 dev_set_drvdata(&unit->device, peer);
1530
Stefan Richter5a124d32009-06-14 11:45:27 +02001531 peer->dev = dev;
1532 peer->guid = (u64)device->config_rom[3] << 32 | device->config_rom[4];
1533 peer->fifo = FWNET_NO_FIFO_ADDR;
Maxim Levitsky74a14502010-11-29 04:09:52 +02001534 peer->ip = 0;
Stefan Richter5a124d32009-06-14 11:45:27 +02001535 INIT_LIST_HEAD(&peer->pd_list);
1536 peer->pdg_size = 0;
1537 peer->datagram_label = 0;
1538 peer->speed = device->max_speed;
1539 peer->max_payload = fwnet_max_payload(device->max_rec, peer->speed);
1540
1541 peer->generation = device->generation;
1542 smp_rmb();
1543 peer->node_id = device->node_id;
1544
1545 spin_lock_irq(&dev->lock);
1546 list_add_tail(&peer->peer_link, &dev->peer_list);
Maxim Levitsky18bb36f2010-12-08 04:22:57 +02001547 dev->peer_count++;
Stefan Richterc1671472010-12-17 22:22:33 +01001548 set_carrier_state(dev);
Stefan Richter5a124d32009-06-14 11:45:27 +02001549 spin_unlock_irq(&dev->lock);
1550
1551 return 0;
1552}
1553
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001554static int fwnet_probe(struct device *_dev)
1555{
1556 struct fw_unit *unit = fw_unit(_dev);
1557 struct fw_device *device = fw_parent_device(unit);
1558 struct fw_card *card = device->card;
1559 struct net_device *net;
Stefan Richterb01b4ba2009-06-16 20:43:55 +02001560 bool allocated_netdev = false;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001561 struct fwnet_device *dev;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001562 unsigned max_mtu;
Stefan Richter5a124d32009-06-14 11:45:27 +02001563 int ret;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001564
Stefan Richter5a124d32009-06-14 11:45:27 +02001565 mutex_lock(&fwnet_device_mutex);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001566
Stefan Richter5a124d32009-06-14 11:45:27 +02001567 dev = fwnet_dev_find(card);
1568 if (dev) {
Stefan Richter5a124d32009-06-14 11:45:27 +02001569 net = dev->netdev;
1570 goto have_dev;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001571 }
Stefan Richter5a124d32009-06-14 11:45:27 +02001572
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001573 net = alloc_netdev(sizeof(*dev), "firewire%d", fwnet_init_dev);
1574 if (net == NULL) {
Stefan Richter5a124d32009-06-14 11:45:27 +02001575 ret = -ENOMEM;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001576 goto out;
1577 }
1578
Stefan Richterb01b4ba2009-06-16 20:43:55 +02001579 allocated_netdev = true;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001580 SET_NETDEV_DEV(net, card->device);
1581 dev = netdev_priv(net);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001582
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001583 spin_lock_init(&dev->lock);
1584 dev->broadcast_state = FWNET_BROADCAST_ERROR;
1585 dev->broadcast_rcv_context = NULL;
1586 dev->broadcast_xmt_max_payload = 0;
1587 dev->broadcast_xmt_datagramlabel = 0;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001588 dev->local_fifo = FWNET_NO_FIFO_ADDR;
Stefan Richter48553012010-11-06 23:18:23 +01001589 dev->queued_datagrams = 0;
Stefan Richter5a124d32009-06-14 11:45:27 +02001590 INIT_LIST_HEAD(&dev->peer_list);
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001591 dev->card = card;
Stefan Richter5a124d32009-06-14 11:45:27 +02001592 dev->netdev = net;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001593
1594 /*
1595 * Use the RFC 2734 default 1500 octets or the maximum payload
1596 * as initial MTU
1597 */
1598 max_mtu = (1 << (card->max_receive + 1))
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001599 - sizeof(struct rfc2734_header) - IEEE1394_GASP_HDR_SIZE;
1600 net->mtu = min(1500U, max_mtu);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001601
1602 /* Set our hardware address while we're at it */
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001603 put_unaligned_be64(card->guid, net->dev_addr);
1604 put_unaligned_be64(~0ULL, net->broadcast);
Stefan Richter5a124d32009-06-14 11:45:27 +02001605 ret = register_netdev(net);
Stefan Richter8408dc12012-02-19 12:48:36 +01001606 if (ret)
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001607 goto out;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001608
Stefan Richter5a124d32009-06-14 11:45:27 +02001609 list_add_tail(&dev->dev_link, &fwnet_device_list);
Stefan Richter8408dc12012-02-19 12:48:36 +01001610 dev_notice(&net->dev, "IPv4 over IEEE 1394 on card %s\n",
1611 dev_name(card->device));
Stefan Richter5a124d32009-06-14 11:45:27 +02001612 have_dev:
1613 ret = fwnet_add_peer(dev, unit, device);
Stefan Richterb01b4ba2009-06-16 20:43:55 +02001614 if (ret && allocated_netdev) {
Stefan Richter5a124d32009-06-14 11:45:27 +02001615 unregister_netdev(net);
1616 list_del(&dev->dev_link);
1617 }
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001618 out:
Stefan Richterb01b4ba2009-06-16 20:43:55 +02001619 if (ret && allocated_netdev)
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001620 free_netdev(net);
1621
Stefan Richter5a124d32009-06-14 11:45:27 +02001622 mutex_unlock(&fwnet_device_mutex);
1623
1624 return ret;
1625}
1626
Stefan Richterc1671472010-12-17 22:22:33 +01001627static void fwnet_remove_peer(struct fwnet_peer *peer, struct fwnet_device *dev)
Stefan Richter5a124d32009-06-14 11:45:27 +02001628{
1629 struct fwnet_partial_datagram *pd, *pd_next;
1630
Stefan Richterc1671472010-12-17 22:22:33 +01001631 spin_lock_irq(&dev->lock);
Stefan Richter5a124d32009-06-14 11:45:27 +02001632 list_del(&peer->peer_link);
Stefan Richterc1671472010-12-17 22:22:33 +01001633 dev->peer_count--;
1634 set_carrier_state(dev);
1635 spin_unlock_irq(&dev->lock);
Stefan Richter5a124d32009-06-14 11:45:27 +02001636
1637 list_for_each_entry_safe(pd, pd_next, &peer->pd_list, pd_link)
1638 fwnet_pd_delete(pd);
1639
1640 kfree(peer);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001641}
1642
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001643static int fwnet_remove(struct device *_dev)
1644{
Stefan Richterb01b4ba2009-06-16 20:43:55 +02001645 struct fwnet_peer *peer = dev_get_drvdata(_dev);
Stefan Richter5a124d32009-06-14 11:45:27 +02001646 struct fwnet_device *dev = peer->dev;
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001647 struct net_device *net;
Stefan Richter48553012010-11-06 23:18:23 +01001648 int i;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001649
Stefan Richter5a124d32009-06-14 11:45:27 +02001650 mutex_lock(&fwnet_device_mutex);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001651
Maxim Levitsky74a14502010-11-29 04:09:52 +02001652 net = dev->netdev;
1653 if (net && peer->ip)
1654 arp_invalidate(net, peer->ip);
1655
Stefan Richterc1671472010-12-17 22:22:33 +01001656 fwnet_remove_peer(peer, dev);
Maxim Levitsky18bb36f2010-12-08 04:22:57 +02001657
Stefan Richter5a124d32009-06-14 11:45:27 +02001658 if (list_empty(&dev->peer_list)) {
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001659 unregister_netdev(net);
1660
Stefan Richter48553012010-11-06 23:18:23 +01001661 for (i = 0; dev->queued_datagrams && i < 5; i++)
1662 ssleep(1);
1663 WARN_ON(dev->queued_datagrams);
Stefan Richterb01b4ba2009-06-16 20:43:55 +02001664 list_del(&dev->dev_link);
1665
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001666 free_netdev(net);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001667 }
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001668
Stefan Richter5a124d32009-06-14 11:45:27 +02001669 mutex_unlock(&fwnet_device_mutex);
1670
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001671 return 0;
1672}
1673
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001674/*
1675 * FIXME abort partially sent fragmented datagrams,
1676 * discard partially received fragmented datagrams
1677 */
1678static void fwnet_update(struct fw_unit *unit)
1679{
1680 struct fw_device *device = fw_parent_device(unit);
Stefan Richterb01b4ba2009-06-16 20:43:55 +02001681 struct fwnet_peer *peer = dev_get_drvdata(&unit->device);
Stefan Richter5a124d32009-06-14 11:45:27 +02001682 int generation;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001683
Stefan Richter5a124d32009-06-14 11:45:27 +02001684 generation = device->generation;
1685
1686 spin_lock_irq(&peer->dev->lock);
1687 peer->node_id = device->node_id;
1688 peer->generation = generation;
1689 spin_unlock_irq(&peer->dev->lock);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001690}
1691
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001692static const struct ieee1394_device_id fwnet_id_table[] = {
1693 {
1694 .match_flags = IEEE1394_MATCH_SPECIFIER_ID |
1695 IEEE1394_MATCH_VERSION,
1696 .specifier_id = IANA_SPECIFIER_ID,
1697 .version = RFC2734_SW_VERSION,
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001698 },
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001699 { }
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001700};
1701
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001702static struct fw_driver fwnet_driver = {
1703 .driver = {
1704 .owner = THIS_MODULE,
Stefan Richter59759ff2012-02-18 22:01:54 +01001705 .name = KBUILD_MODNAME,
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001706 .bus = &fw_bus_type,
1707 .probe = fwnet_probe,
1708 .remove = fwnet_remove,
1709 },
1710 .update = fwnet_update,
1711 .id_table = fwnet_id_table,
1712};
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001713
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001714static const u32 rfc2374_unit_directory_data[] = {
1715 0x00040000, /* directory_length */
1716 0x1200005e, /* unit_specifier_id: IANA */
1717 0x81000003, /* textual descriptor offset */
1718 0x13000001, /* unit_sw_version: RFC 2734 */
1719 0x81000005, /* textual descriptor offset */
1720 0x00030000, /* descriptor_length */
1721 0x00000000, /* text */
1722 0x00000000, /* minimal ASCII, en */
1723 0x49414e41, /* I A N A */
1724 0x00030000, /* descriptor_length */
1725 0x00000000, /* text */
1726 0x00000000, /* minimal ASCII, en */
1727 0x49507634, /* I P v 4 */
1728};
1729
1730static struct fw_descriptor rfc2374_unit_directory = {
1731 .length = ARRAY_SIZE(rfc2374_unit_directory_data),
1732 .key = (CSR_DIRECTORY | CSR_UNIT) << 24,
1733 .data = rfc2374_unit_directory_data
1734};
1735
1736static int __init fwnet_init(void)
1737{
1738 int err;
1739
1740 err = fw_core_add_descriptor(&rfc2374_unit_directory);
1741 if (err)
1742 return err;
1743
1744 fwnet_packet_task_cache = kmem_cache_create("packet_task",
1745 sizeof(struct fwnet_packet_task), 0, 0, NULL);
1746 if (!fwnet_packet_task_cache) {
1747 err = -ENOMEM;
1748 goto out;
1749 }
1750
1751 err = driver_register(&fwnet_driver.driver);
1752 if (!err)
1753 return 0;
1754
1755 kmem_cache_destroy(fwnet_packet_task_cache);
1756out:
1757 fw_core_remove_descriptor(&rfc2374_unit_directory);
1758
1759 return err;
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001760}
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001761module_init(fwnet_init);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001762
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001763static void __exit fwnet_cleanup(void)
1764{
1765 driver_unregister(&fwnet_driver.driver);
1766 kmem_cache_destroy(fwnet_packet_task_cache);
1767 fw_core_remove_descriptor(&rfc2374_unit_directory);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001768}
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001769module_exit(fwnet_cleanup);
Jay Fenlasonc76acec2009-05-18 13:08:06 -04001770
Stefan Richterf91e3bd2009-06-07 22:57:53 +02001771MODULE_AUTHOR("Jay Fenlason <fenlason@redhat.com>");
1772MODULE_DESCRIPTION("IPv4 over IEEE1394 as per RFC 2734");
1773MODULE_LICENSE("GPL");
1774MODULE_DEVICE_TABLE(ieee1394, fwnet_id_table);