openvswitch: Compact sw_flow_key.
Minimize padding in sw_flow_key and move 'tp' top the main struct. These changes simplify code when accessing the transport port numbers and the tcp flags, and makes the sw_flow_key 8 bytes smaller on 64-bit systems (128->120 bytes). These changes also make the keys for IPv4 packets to fit in one cache line. There is a valid concern for safety of packing the struct ovs_key_ipv4_tunnel, as it would be possible to take the address of the tun_id member as a __be64 * which could result in unaligned access in some systems. However: - sw_flow_key itself is 64-bit aligned, so the tun_id within is always 64-bit aligned. - We never make arrays of ovs_key_ipv4_tunnel (which would force every second tun_key to be misaligned). - We never take the address of the tun_id in to a __be64 *. - Whereever we use struct ovs_key_ipv4_tunnel outside the sw_flow_key, it is in stack (on tunnel input functions), where compiler has full control of the alignment. Signed-off-by: Jarno Rajahalme <jrajahalme@nicira.com> Signed-off-by: Pravin B Shelar <pshelar@nicira.com>
This commit is contained in:
parent
091b64868b
commit
1139e241ec
@ -64,17 +64,11 @@ u64 ovs_flow_used_time(unsigned long flow_jiffies)
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void ovs_flow_stats_update(struct sw_flow *flow, struct sk_buff *skb)
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{
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struct flow_stats *stats;
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__be16 tcp_flags = 0;
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__be16 tcp_flags = flow->key.tp.flags;
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int node = numa_node_id();
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stats = rcu_dereference(flow->stats[node]);
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if (likely(flow->key.ip.proto == IPPROTO_TCP)) {
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if (likely(flow->key.eth.type == htons(ETH_P_IP)))
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tcp_flags = flow->key.ipv4.tp.flags;
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else if (likely(flow->key.eth.type == htons(ETH_P_IPV6)))
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tcp_flags = flow->key.ipv6.tp.flags;
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}
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/* Check if already have node-specific stats. */
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if (likely(stats)) {
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spin_lock(&stats->lock);
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@ -357,8 +351,8 @@ static int parse_icmpv6(struct sk_buff *skb, struct sw_flow_key *key,
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/* The ICMPv6 type and code fields use the 16-bit transport port
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* fields, so we need to store them in 16-bit network byte order.
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*/
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key->ipv6.tp.src = htons(icmp->icmp6_type);
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key->ipv6.tp.dst = htons(icmp->icmp6_code);
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key->tp.src = htons(icmp->icmp6_type);
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key->tp.dst = htons(icmp->icmp6_code);
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if (icmp->icmp6_code == 0 &&
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(icmp->icmp6_type == NDISC_NEIGHBOUR_SOLICITATION ||
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@ -520,21 +514,21 @@ int ovs_flow_extract(struct sk_buff *skb, u16 in_port, struct sw_flow_key *key)
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if (key->ip.proto == IPPROTO_TCP) {
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if (tcphdr_ok(skb)) {
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struct tcphdr *tcp = tcp_hdr(skb);
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key->ipv4.tp.src = tcp->source;
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key->ipv4.tp.dst = tcp->dest;
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key->ipv4.tp.flags = TCP_FLAGS_BE16(tcp);
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key->tp.src = tcp->source;
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key->tp.dst = tcp->dest;
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key->tp.flags = TCP_FLAGS_BE16(tcp);
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}
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} else if (key->ip.proto == IPPROTO_UDP) {
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if (udphdr_ok(skb)) {
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struct udphdr *udp = udp_hdr(skb);
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key->ipv4.tp.src = udp->source;
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key->ipv4.tp.dst = udp->dest;
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key->tp.src = udp->source;
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key->tp.dst = udp->dest;
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}
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} else if (key->ip.proto == IPPROTO_SCTP) {
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if (sctphdr_ok(skb)) {
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struct sctphdr *sctp = sctp_hdr(skb);
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key->ipv4.tp.src = sctp->source;
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key->ipv4.tp.dst = sctp->dest;
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key->tp.src = sctp->source;
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key->tp.dst = sctp->dest;
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}
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} else if (key->ip.proto == IPPROTO_ICMP) {
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if (icmphdr_ok(skb)) {
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@ -542,8 +536,8 @@ int ovs_flow_extract(struct sk_buff *skb, u16 in_port, struct sw_flow_key *key)
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/* The ICMP type and code fields use the 16-bit
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* transport port fields, so we need to store
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* them in 16-bit network byte order. */
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key->ipv4.tp.src = htons(icmp->type);
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key->ipv4.tp.dst = htons(icmp->code);
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key->tp.src = htons(icmp->type);
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key->tp.dst = htons(icmp->code);
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}
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}
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@ -589,21 +583,21 @@ int ovs_flow_extract(struct sk_buff *skb, u16 in_port, struct sw_flow_key *key)
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if (key->ip.proto == NEXTHDR_TCP) {
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if (tcphdr_ok(skb)) {
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struct tcphdr *tcp = tcp_hdr(skb);
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key->ipv6.tp.src = tcp->source;
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key->ipv6.tp.dst = tcp->dest;
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key->ipv6.tp.flags = TCP_FLAGS_BE16(tcp);
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key->tp.src = tcp->source;
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key->tp.dst = tcp->dest;
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key->tp.flags = TCP_FLAGS_BE16(tcp);
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}
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} else if (key->ip.proto == NEXTHDR_UDP) {
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if (udphdr_ok(skb)) {
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struct udphdr *udp = udp_hdr(skb);
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key->ipv6.tp.src = udp->source;
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key->ipv6.tp.dst = udp->dest;
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key->tp.src = udp->source;
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key->tp.dst = udp->dest;
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}
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} else if (key->ip.proto == NEXTHDR_SCTP) {
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if (sctphdr_ok(skb)) {
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struct sctphdr *sctp = sctp_hdr(skb);
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key->ipv6.tp.src = sctp->source;
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key->ipv6.tp.dst = sctp->dest;
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key->tp.src = sctp->source;
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key->tp.dst = sctp->dest;
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}
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} else if (key->ip.proto == NEXTHDR_ICMP) {
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if (icmp6hdr_ok(skb)) {
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@ -47,7 +47,7 @@ struct ovs_key_ipv4_tunnel {
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__be16 tun_flags;
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u8 ipv4_tos;
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u8 ipv4_ttl;
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};
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} __packed __aligned(4); /* Minimize padding. */
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static inline void ovs_flow_tun_key_init(struct ovs_key_ipv4_tunnel *tun_key,
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const struct iphdr *iph, __be64 tun_id,
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@ -71,7 +71,7 @@ struct sw_flow_key {
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u32 priority; /* Packet QoS priority. */
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u32 skb_mark; /* SKB mark. */
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u16 in_port; /* Input switch port (or DP_MAX_PORTS). */
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} phy;
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} __packed phy; /* Safe when right after 'tun_key'. */
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struct {
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u8 src[ETH_ALEN]; /* Ethernet source address. */
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u8 dst[ETH_ALEN]; /* Ethernet destination address. */
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@ -84,23 +84,21 @@ struct sw_flow_key {
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u8 ttl; /* IP TTL/hop limit. */
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u8 frag; /* One of OVS_FRAG_TYPE_*. */
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} ip;
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struct {
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__be16 src; /* TCP/UDP/SCTP source port. */
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__be16 dst; /* TCP/UDP/SCTP destination port. */
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__be16 flags; /* TCP flags. */
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} tp;
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union {
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struct {
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struct {
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__be32 src; /* IP source address. */
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__be32 dst; /* IP destination address. */
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} addr;
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union {
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struct {
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__be16 src; /* TCP/UDP/SCTP source port. */
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__be16 dst; /* TCP/UDP/SCTP destination port. */
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__be16 flags; /* TCP flags. */
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} tp;
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struct {
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u8 sha[ETH_ALEN]; /* ARP source hardware address. */
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u8 tha[ETH_ALEN]; /* ARP target hardware address. */
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} arp;
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};
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struct {
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u8 sha[ETH_ALEN]; /* ARP source hardware address. */
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u8 tha[ETH_ALEN]; /* ARP target hardware address. */
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} arp;
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} ipv4;
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struct {
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struct {
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@ -108,11 +106,6 @@ struct sw_flow_key {
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struct in6_addr dst; /* IPv6 destination address. */
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} addr;
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__be32 label; /* IPv6 flow label. */
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struct {
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__be16 src; /* TCP/UDP/SCTP source port. */
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__be16 dst; /* TCP/UDP/SCTP destination port. */
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__be16 flags; /* TCP flags. */
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} tp;
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struct {
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struct in6_addr target; /* ND target address. */
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u8 sll[ETH_ALEN]; /* ND source link layer address. */
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@ -204,11 +204,11 @@ static bool match_validate(const struct sw_flow_match *match,
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if (match->mask && (match->mask->key.ip.proto == 0xff))
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mask_allowed |= 1 << OVS_KEY_ATTR_ICMPV6;
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if (match->key->ipv6.tp.src ==
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if (match->key->tp.src ==
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htons(NDISC_NEIGHBOUR_SOLICITATION) ||
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match->key->ipv6.tp.src == htons(NDISC_NEIGHBOUR_ADVERTISEMENT)) {
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match->key->tp.src == htons(NDISC_NEIGHBOUR_ADVERTISEMENT)) {
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key_expected |= 1 << OVS_KEY_ATTR_ND;
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if (match->mask && (match->mask->key.ipv6.tp.src == htons(0xffff)))
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if (match->mask && (match->mask->key.tp.src == htons(0xffff)))
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mask_allowed |= 1 << OVS_KEY_ATTR_ND;
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}
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}
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@ -630,27 +630,18 @@ static int ovs_key_from_nlattrs(struct sw_flow_match *match, u64 attrs,
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const struct ovs_key_tcp *tcp_key;
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tcp_key = nla_data(a[OVS_KEY_ATTR_TCP]);
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if (orig_attrs & (1 << OVS_KEY_ATTR_IPV4)) {
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SW_FLOW_KEY_PUT(match, ipv4.tp.src,
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tcp_key->tcp_src, is_mask);
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SW_FLOW_KEY_PUT(match, ipv4.tp.dst,
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tcp_key->tcp_dst, is_mask);
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} else {
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SW_FLOW_KEY_PUT(match, ipv6.tp.src,
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tcp_key->tcp_src, is_mask);
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SW_FLOW_KEY_PUT(match, ipv6.tp.dst,
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tcp_key->tcp_dst, is_mask);
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}
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SW_FLOW_KEY_PUT(match, tp.src, tcp_key->tcp_src, is_mask);
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SW_FLOW_KEY_PUT(match, tp.dst, tcp_key->tcp_dst, is_mask);
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attrs &= ~(1 << OVS_KEY_ATTR_TCP);
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}
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if (attrs & (1 << OVS_KEY_ATTR_TCP_FLAGS)) {
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if (orig_attrs & (1 << OVS_KEY_ATTR_IPV4)) {
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SW_FLOW_KEY_PUT(match, ipv4.tp.flags,
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SW_FLOW_KEY_PUT(match, tp.flags,
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nla_get_be16(a[OVS_KEY_ATTR_TCP_FLAGS]),
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is_mask);
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} else {
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SW_FLOW_KEY_PUT(match, ipv6.tp.flags,
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SW_FLOW_KEY_PUT(match, tp.flags,
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nla_get_be16(a[OVS_KEY_ATTR_TCP_FLAGS]),
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is_mask);
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}
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@ -661,17 +652,8 @@ static int ovs_key_from_nlattrs(struct sw_flow_match *match, u64 attrs,
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const struct ovs_key_udp *udp_key;
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udp_key = nla_data(a[OVS_KEY_ATTR_UDP]);
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if (orig_attrs & (1 << OVS_KEY_ATTR_IPV4)) {
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SW_FLOW_KEY_PUT(match, ipv4.tp.src,
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udp_key->udp_src, is_mask);
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SW_FLOW_KEY_PUT(match, ipv4.tp.dst,
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udp_key->udp_dst, is_mask);
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} else {
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SW_FLOW_KEY_PUT(match, ipv6.tp.src,
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udp_key->udp_src, is_mask);
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SW_FLOW_KEY_PUT(match, ipv6.tp.dst,
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udp_key->udp_dst, is_mask);
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}
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SW_FLOW_KEY_PUT(match, tp.src, udp_key->udp_src, is_mask);
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SW_FLOW_KEY_PUT(match, tp.dst, udp_key->udp_dst, is_mask);
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attrs &= ~(1 << OVS_KEY_ATTR_UDP);
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}
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@ -679,17 +661,8 @@ static int ovs_key_from_nlattrs(struct sw_flow_match *match, u64 attrs,
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const struct ovs_key_sctp *sctp_key;
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sctp_key = nla_data(a[OVS_KEY_ATTR_SCTP]);
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if (orig_attrs & (1 << OVS_KEY_ATTR_IPV4)) {
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SW_FLOW_KEY_PUT(match, ipv4.tp.src,
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sctp_key->sctp_src, is_mask);
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SW_FLOW_KEY_PUT(match, ipv4.tp.dst,
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sctp_key->sctp_dst, is_mask);
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} else {
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SW_FLOW_KEY_PUT(match, ipv6.tp.src,
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sctp_key->sctp_src, is_mask);
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SW_FLOW_KEY_PUT(match, ipv6.tp.dst,
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sctp_key->sctp_dst, is_mask);
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}
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SW_FLOW_KEY_PUT(match, tp.src, sctp_key->sctp_src, is_mask);
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SW_FLOW_KEY_PUT(match, tp.dst, sctp_key->sctp_dst, is_mask);
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attrs &= ~(1 << OVS_KEY_ATTR_SCTP);
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}
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@ -697,9 +670,9 @@ static int ovs_key_from_nlattrs(struct sw_flow_match *match, u64 attrs,
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const struct ovs_key_icmp *icmp_key;
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icmp_key = nla_data(a[OVS_KEY_ATTR_ICMP]);
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SW_FLOW_KEY_PUT(match, ipv4.tp.src,
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SW_FLOW_KEY_PUT(match, tp.src,
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htons(icmp_key->icmp_type), is_mask);
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SW_FLOW_KEY_PUT(match, ipv4.tp.dst,
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SW_FLOW_KEY_PUT(match, tp.dst,
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htons(icmp_key->icmp_code), is_mask);
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attrs &= ~(1 << OVS_KEY_ATTR_ICMP);
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}
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@ -708,9 +681,9 @@ static int ovs_key_from_nlattrs(struct sw_flow_match *match, u64 attrs,
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const struct ovs_key_icmpv6 *icmpv6_key;
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icmpv6_key = nla_data(a[OVS_KEY_ATTR_ICMPV6]);
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SW_FLOW_KEY_PUT(match, ipv6.tp.src,
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SW_FLOW_KEY_PUT(match, tp.src,
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htons(icmpv6_key->icmpv6_type), is_mask);
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SW_FLOW_KEY_PUT(match, ipv6.tp.dst,
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SW_FLOW_KEY_PUT(match, tp.dst,
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htons(icmpv6_key->icmpv6_code), is_mask);
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attrs &= ~(1 << OVS_KEY_ATTR_ICMPV6);
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}
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@ -1024,19 +997,11 @@ int ovs_nla_put_flow(const struct sw_flow_key *swkey,
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if (!nla)
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goto nla_put_failure;
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tcp_key = nla_data(nla);
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if (swkey->eth.type == htons(ETH_P_IP)) {
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tcp_key->tcp_src = output->ipv4.tp.src;
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tcp_key->tcp_dst = output->ipv4.tp.dst;
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if (nla_put_be16(skb, OVS_KEY_ATTR_TCP_FLAGS,
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output->ipv4.tp.flags))
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goto nla_put_failure;
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} else if (swkey->eth.type == htons(ETH_P_IPV6)) {
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tcp_key->tcp_src = output->ipv6.tp.src;
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tcp_key->tcp_dst = output->ipv6.tp.dst;
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if (nla_put_be16(skb, OVS_KEY_ATTR_TCP_FLAGS,
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output->ipv6.tp.flags))
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goto nla_put_failure;
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}
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tcp_key->tcp_src = output->tp.src;
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tcp_key->tcp_dst = output->tp.dst;
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if (nla_put_be16(skb, OVS_KEY_ATTR_TCP_FLAGS,
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output->tp.flags))
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goto nla_put_failure;
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} else if (swkey->ip.proto == IPPROTO_UDP) {
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struct ovs_key_udp *udp_key;
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@ -1044,13 +1009,8 @@ int ovs_nla_put_flow(const struct sw_flow_key *swkey,
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if (!nla)
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goto nla_put_failure;
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udp_key = nla_data(nla);
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if (swkey->eth.type == htons(ETH_P_IP)) {
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udp_key->udp_src = output->ipv4.tp.src;
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udp_key->udp_dst = output->ipv4.tp.dst;
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} else if (swkey->eth.type == htons(ETH_P_IPV6)) {
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udp_key->udp_src = output->ipv6.tp.src;
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udp_key->udp_dst = output->ipv6.tp.dst;
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}
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udp_key->udp_src = output->tp.src;
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udp_key->udp_dst = output->tp.dst;
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} else if (swkey->ip.proto == IPPROTO_SCTP) {
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struct ovs_key_sctp *sctp_key;
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@ -1058,13 +1018,8 @@ int ovs_nla_put_flow(const struct sw_flow_key *swkey,
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if (!nla)
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goto nla_put_failure;
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sctp_key = nla_data(nla);
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if (swkey->eth.type == htons(ETH_P_IP)) {
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sctp_key->sctp_src = output->ipv4.tp.src;
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sctp_key->sctp_dst = output->ipv4.tp.dst;
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} else if (swkey->eth.type == htons(ETH_P_IPV6)) {
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sctp_key->sctp_src = output->ipv6.tp.src;
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sctp_key->sctp_dst = output->ipv6.tp.dst;
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}
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sctp_key->sctp_src = output->tp.src;
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sctp_key->sctp_dst = output->tp.dst;
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} else if (swkey->eth.type == htons(ETH_P_IP) &&
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swkey->ip.proto == IPPROTO_ICMP) {
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struct ovs_key_icmp *icmp_key;
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@ -1073,8 +1028,8 @@ int ovs_nla_put_flow(const struct sw_flow_key *swkey,
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if (!nla)
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goto nla_put_failure;
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icmp_key = nla_data(nla);
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icmp_key->icmp_type = ntohs(output->ipv4.tp.src);
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icmp_key->icmp_code = ntohs(output->ipv4.tp.dst);
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icmp_key->icmp_type = ntohs(output->tp.src);
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icmp_key->icmp_code = ntohs(output->tp.dst);
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} else if (swkey->eth.type == htons(ETH_P_IPV6) &&
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swkey->ip.proto == IPPROTO_ICMPV6) {
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struct ovs_key_icmpv6 *icmpv6_key;
|
||||
@ -1084,8 +1039,8 @@ int ovs_nla_put_flow(const struct sw_flow_key *swkey,
|
||||
if (!nla)
|
||||
goto nla_put_failure;
|
||||
icmpv6_key = nla_data(nla);
|
||||
icmpv6_key->icmpv6_type = ntohs(output->ipv6.tp.src);
|
||||
icmpv6_key->icmpv6_code = ntohs(output->ipv6.tp.dst);
|
||||
icmpv6_key->icmpv6_type = ntohs(output->tp.src);
|
||||
icmpv6_key->icmpv6_code = ntohs(output->tp.dst);
|
||||
|
||||
if (icmpv6_key->icmpv6_type == NDISC_NEIGHBOUR_SOLICITATION ||
|
||||
icmpv6_key->icmpv6_type == NDISC_NEIGHBOUR_ADVERTISEMENT) {
|
||||
@ -1263,13 +1218,10 @@ static int validate_and_copy_sample(const struct nlattr *attr,
|
||||
|
||||
static int validate_tp_port(const struct sw_flow_key *flow_key)
|
||||
{
|
||||
if (flow_key->eth.type == htons(ETH_P_IP)) {
|
||||
if (flow_key->ipv4.tp.src || flow_key->ipv4.tp.dst)
|
||||
return 0;
|
||||
} else if (flow_key->eth.type == htons(ETH_P_IPV6)) {
|
||||
if (flow_key->ipv6.tp.src || flow_key->ipv6.tp.dst)
|
||||
return 0;
|
||||
}
|
||||
if ((flow_key->eth.type == htons(ETH_P_IP) ||
|
||||
flow_key->eth.type == htons(ETH_P_IPV6)) &&
|
||||
(flow_key->tp.src || flow_key->tp.dst))
|
||||
return 0;
|
||||
|
||||
return -EINVAL;
|
||||
}
|
||||
|
Loading…
Reference in New Issue
Block a user