2 * Copyright (c) 2007-2014 Nicira, Inc.
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of version 2 of the GNU General Public
6 * License as published by the Free Software Foundation.
8 * This program is distributed in the hope that it will be useful, but
9 * WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * General Public License for more details.
13 * You should have received a copy of the GNU General Public License
14 * along with this program; if not, write to the Free Software
15 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
22 #include <linux/cache.h>
23 #include <linux/kernel.h>
24 #include <linux/netlink.h>
25 #include <linux/openvswitch.h>
26 #include <linux/spinlock.h>
27 #include <linux/types.h>
28 #include <linux/rcupdate.h>
29 #include <linux/if_ether.h>
30 #include <linux/in6.h>
31 #include <linux/jiffies.h>
32 #include <linux/time.h>
33 #include <linux/flex_array.h>
34 #include <net/inet_ecn.h>
38 /* Used to memset ovs_key_ipv4_tunnel padding. */
39 #define OVS_TUNNEL_KEY_SIZE \
40 (offsetof(struct ovs_key_ipv4_tunnel, tp_dst) + \
41 FIELD_SIZEOF(struct ovs_key_ipv4_tunnel, tp_dst))
43 struct ovs_key_ipv4_tunnel
{
52 } __packed
__aligned(4); /* Minimize padding. */
54 struct ovs_tunnel_info
{
55 struct ovs_key_ipv4_tunnel tunnel
;
56 const struct geneve_opt
*options
;
60 /* Store options at the end of the array if they are less than the
61 * maximum size. This allows us to get the benefits of variable length
62 * matching for small options.
64 #define GENEVE_OPTS(flow_key, opt_len) \
65 ((struct geneve_opt *)((flow_key)->tun_opts + \
66 FIELD_SIZEOF(struct sw_flow_key, tun_opts) - \
69 static inline void __ovs_flow_tun_info_init(struct ovs_tunnel_info
*tun_info
,
70 __be32 saddr
, __be32 daddr
,
76 const struct geneve_opt
*opts
,
79 tun_info
->tunnel
.tun_id
= tun_id
;
80 tun_info
->tunnel
.ipv4_src
= saddr
;
81 tun_info
->tunnel
.ipv4_dst
= daddr
;
82 tun_info
->tunnel
.ipv4_tos
= tos
;
83 tun_info
->tunnel
.ipv4_ttl
= ttl
;
84 tun_info
->tunnel
.tun_flags
= tun_flags
;
86 /* For the tunnel types on the top of IPsec, the tp_src and tp_dst of
87 * the upper tunnel are used.
88 * E.g: GRE over IPSEC, the tp_src and tp_port are zero.
90 tun_info
->tunnel
.tp_src
= tp_src
;
91 tun_info
->tunnel
.tp_dst
= tp_dst
;
93 /* Clear struct padding. */
94 if (sizeof(tun_info
->tunnel
) != OVS_TUNNEL_KEY_SIZE
)
95 memset((unsigned char *)&tun_info
->tunnel
+ OVS_TUNNEL_KEY_SIZE
,
96 0, sizeof(tun_info
->tunnel
) - OVS_TUNNEL_KEY_SIZE
);
98 tun_info
->options
= opts
;
99 tun_info
->options_len
= opts_len
;
102 static inline void ovs_flow_tun_info_init(struct ovs_tunnel_info
*tun_info
,
103 const struct iphdr
*iph
,
108 const struct geneve_opt
*opts
,
111 __ovs_flow_tun_info_init(tun_info
, iph
->saddr
, iph
->daddr
,
118 #define OVS_SW_FLOW_KEY_METADATA_SIZE \
119 (offsetof(struct sw_flow_key, recirc_id) + \
120 FIELD_SIZEOF(struct sw_flow_key, recirc_id))
125 struct ovs_key_ipv4_tunnel tun_key
; /* Encapsulating tunnel key. */
127 u32 priority
; /* Packet QoS priority. */
128 u32 skb_mark
; /* SKB mark. */
129 u16 in_port
; /* Input switch port (or DP_MAX_PORTS). */
130 } __packed phy
; /* Safe when right after 'tun_key'. */
131 u32 ovs_flow_hash
; /* Datapath computed hash value. */
132 u32 recirc_id
; /* Recirculation ID. */
134 u8 src
[ETH_ALEN
]; /* Ethernet source address. */
135 u8 dst
[ETH_ALEN
]; /* Ethernet destination address. */
136 __be16 tci
; /* 0 if no VLAN, VLAN_TAG_PRESENT set otherwise. */
137 __be16 type
; /* Ethernet frame type. */
141 __be32 top_lse
; /* top label stack entry */
144 u8 proto
; /* IP protocol or lower 8 bits of ARP opcode. */
145 u8 tos
; /* IP ToS. */
146 u8 ttl
; /* IP TTL/hop limit. */
147 u8 frag
; /* One of OVS_FRAG_TYPE_*. */
151 __be16 src
; /* TCP/UDP/SCTP source port. */
152 __be16 dst
; /* TCP/UDP/SCTP destination port. */
153 __be16 flags
; /* TCP flags. */
158 __be32 src
; /* IP source address. */
159 __be32 dst
; /* IP destination address. */
162 u8 sha
[ETH_ALEN
]; /* ARP source hardware address. */
163 u8 tha
[ETH_ALEN
]; /* ARP target hardware address. */
168 struct in6_addr src
; /* IPv6 source address. */
169 struct in6_addr dst
; /* IPv6 destination address. */
171 __be32 label
; /* IPv6 flow label. */
173 struct in6_addr target
; /* ND target address. */
174 u8 sll
[ETH_ALEN
]; /* ND source link layer address. */
175 u8 tll
[ETH_ALEN
]; /* ND target link layer address. */
179 } __aligned(BITS_PER_LONG
/8); /* Ensure that we can do comparisons as longs. */
181 struct sw_flow_key_range
{
182 unsigned short int start
;
183 unsigned short int end
;
186 struct sw_flow_mask
{
189 struct list_head list
;
190 struct sw_flow_key_range range
;
191 struct sw_flow_key key
;
194 struct sw_flow_match
{
195 struct sw_flow_key
*key
;
196 struct sw_flow_key_range range
;
197 struct sw_flow_mask
*mask
;
200 struct sw_flow_actions
{
203 struct nlattr actions
[];
207 u64 packet_count
; /* Number of packets matched. */
208 u64 byte_count
; /* Number of bytes matched. */
209 unsigned long used
; /* Last used time (in jiffies). */
210 spinlock_t lock
; /* Lock for atomic stats update. */
211 __be16 tcp_flags
; /* Union of seen TCP flags. */
216 struct hlist_node hash_node
[2];
218 int stats_last_writer
; /* NUMA-node id of the last writer on
221 struct sw_flow_key key
;
222 struct sw_flow_key unmasked_key
;
223 struct sw_flow_mask
*mask
;
224 struct sw_flow_actions __rcu
*sf_acts
;
225 struct flow_stats __rcu
*stats
[]; /* One for each NUMA node. First one
226 * is allocated at flow creation time,
227 * the rest are allocated on demand
228 * while holding the 'stats[0].lock'.
232 struct arp_eth_header
{
233 __be16 ar_hrd
; /* format of hardware address */
234 __be16 ar_pro
; /* format of protocol address */
235 unsigned char ar_hln
; /* length of hardware address */
236 unsigned char ar_pln
; /* length of protocol address */
237 __be16 ar_op
; /* ARP opcode (command) */
239 /* Ethernet+IPv4 specific members. */
240 unsigned char ar_sha
[ETH_ALEN
]; /* sender hardware address */
241 unsigned char ar_sip
[4]; /* sender IP address */
242 unsigned char ar_tha
[ETH_ALEN
]; /* target hardware address */
243 unsigned char ar_tip
[4]; /* target IP address */
246 void ovs_flow_stats_update(struct sw_flow
*, __be16 tcp_flags
,
247 const struct sk_buff
*);
248 void ovs_flow_stats_get(const struct sw_flow
*, struct ovs_flow_stats
*,
249 unsigned long *used
, __be16
*tcp_flags
);
250 void ovs_flow_stats_clear(struct sw_flow
*);
251 u64
ovs_flow_used_time(unsigned long flow_jiffies
);
253 int ovs_flow_key_update(struct sk_buff
*skb
, struct sw_flow_key
*key
);
254 int ovs_flow_key_extract(const struct ovs_tunnel_info
*tun_info
,
256 struct sw_flow_key
*key
);
257 /* Extract key from packet coming from userspace. */
258 int ovs_flow_key_extract_userspace(const struct nlattr
*attr
,
260 struct sw_flow_key
*key
, bool log
);