actions.c 38.5 KB
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// SPDX-License-Identifier: GPL-2.0-only
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/*
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 * Copyright (c) 2007-2017 Nicira, Inc.
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 */

#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

#include <linux/skbuff.h>
#include <linux/in.h>
#include <linux/ip.h>
#include <linux/openvswitch.h>
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#include <linux/sctp.h>
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#include <linux/tcp.h>
#include <linux/udp.h>
#include <linux/in6.h>
#include <linux/if_arp.h>
#include <linux/if_vlan.h>
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#include <net/dst.h>
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#include <net/ip.h>
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#include <net/ipv6.h>
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#include <net/ip6_fib.h>
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#include <net/checksum.h>
#include <net/dsfield.h>
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#include <net/mpls.h>
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#include <net/sctp/checksum.h>
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#include "datapath.h"
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#include "flow.h"
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#include "conntrack.h"
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#include "vport.h"
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#include "flow_netlink.h"
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struct deferred_action {
	struct sk_buff *skb;
	const struct nlattr *actions;
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	int actions_len;
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	/* Store pkt_key clone when creating deferred action. */
	struct sw_flow_key pkt_key;
};

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#define MAX_L2_LEN	(VLAN_ETH_HLEN + 3 * MPLS_HLEN)
struct ovs_frag_data {
	unsigned long dst;
	struct vport *vport;
	struct ovs_skb_cb cb;
	__be16 inner_protocol;
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	u16 network_offset;	/* valid only for MPLS */
	u16 vlan_tci;
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	__be16 vlan_proto;
	unsigned int l2_len;
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	u8 mac_proto;
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	u8 l2_data[MAX_L2_LEN];
};

static DEFINE_PER_CPU(struct ovs_frag_data, ovs_frag_data_storage);

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#define DEFERRED_ACTION_FIFO_SIZE 10
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#define OVS_RECURSION_LIMIT 5
#define OVS_DEFERRED_ACTION_THRESHOLD (OVS_RECURSION_LIMIT - 2)
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struct action_fifo {
	int head;
	int tail;
	/* Deferred action fifo queue storage. */
	struct deferred_action fifo[DEFERRED_ACTION_FIFO_SIZE];
};

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struct action_flow_keys {
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	struct sw_flow_key key[OVS_DEFERRED_ACTION_THRESHOLD];
};

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static struct action_fifo __percpu *action_fifos;
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static struct action_flow_keys __percpu *flow_keys;
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static DEFINE_PER_CPU(int, exec_actions_level);

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/* Make a clone of the 'key', using the pre-allocated percpu 'flow_keys'
 * space. Return NULL if out of key spaces.
 */
static struct sw_flow_key *clone_key(const struct sw_flow_key *key_)
{
	struct action_flow_keys *keys = this_cpu_ptr(flow_keys);
	int level = this_cpu_read(exec_actions_level);
	struct sw_flow_key *key = NULL;

	if (level <= OVS_DEFERRED_ACTION_THRESHOLD) {
		key = &keys->key[level - 1];
		*key = *key_;
	}

	return key;
}

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static void action_fifo_init(struct action_fifo *fifo)
{
	fifo->head = 0;
	fifo->tail = 0;
}

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static bool action_fifo_is_empty(const struct action_fifo *fifo)
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{
	return (fifo->head == fifo->tail);
}

static struct deferred_action *action_fifo_get(struct action_fifo *fifo)
{
	if (action_fifo_is_empty(fifo))
		return NULL;

	return &fifo->fifo[fifo->tail++];
}

static struct deferred_action *action_fifo_put(struct action_fifo *fifo)
{
	if (fifo->head >= DEFERRED_ACTION_FIFO_SIZE - 1)
		return NULL;

	return &fifo->fifo[fifo->head++];
}

/* Return true if fifo is not full */
static struct deferred_action *add_deferred_actions(struct sk_buff *skb,
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				    const struct sw_flow_key *key,
				    const struct nlattr *actions,
				    const int actions_len)
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{
	struct action_fifo *fifo;
	struct deferred_action *da;

	fifo = this_cpu_ptr(action_fifos);
	da = action_fifo_put(fifo);
	if (da) {
		da->skb = skb;
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		da->actions = actions;
		da->actions_len = actions_len;
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		da->pkt_key = *key;
	}

	return da;
}

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static void invalidate_flow_key(struct sw_flow_key *key)
{
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	key->mac_proto |= SW_FLOW_KEY_INVALID;
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}

static bool is_flow_key_valid(const struct sw_flow_key *key)
{
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	return !(key->mac_proto & SW_FLOW_KEY_INVALID);
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}

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static int clone_execute(struct datapath *dp, struct sk_buff *skb,
			 struct sw_flow_key *key,
			 u32 recirc_id,
			 const struct nlattr *actions, int len,
			 bool last, bool clone_flow_key);

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static int do_execute_actions(struct datapath *dp, struct sk_buff *skb,
			      struct sw_flow_key *key,
			      const struct nlattr *attr, int len);

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static int push_mpls(struct sk_buff *skb, struct sw_flow_key *key,
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		     __be32 mpls_lse, __be16 mpls_ethertype, __u16 mac_len)
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{
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	int err;
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	err = skb_mpls_push(skb, mpls_lse, mpls_ethertype, mac_len, !!mac_len);
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	if (err)
		return err;
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	if (!mac_len)
		key->mac_proto = MAC_PROTO_NONE;

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	invalidate_flow_key(key);
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	return 0;
}

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static int pop_mpls(struct sk_buff *skb, struct sw_flow_key *key,
		    const __be16 ethertype)
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{
	int err;

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	err = skb_mpls_pop(skb, ethertype, skb->mac_len,
			   ovs_key_mac_proto(key) == MAC_PROTO_ETHERNET);
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	if (err)
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		return err;

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	if (ethertype == htons(ETH_P_TEB))
		key->mac_proto = MAC_PROTO_ETHERNET;

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	invalidate_flow_key(key);
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	return 0;
}

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static int set_mpls(struct sk_buff *skb, struct sw_flow_key *flow_key,
		    const __be32 *mpls_lse, const __be32 *mask)
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{
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	struct mpls_shim_hdr *stack;
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	__be32 lse;
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	int err;

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	if (!pskb_may_pull(skb, skb_network_offset(skb) + MPLS_HLEN))
		return -ENOMEM;

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	stack = mpls_hdr(skb);
	lse = OVS_MASKED(stack->label_stack_entry, *mpls_lse, *mask);
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	err = skb_mpls_update_lse(skb, lse);
	if (err)
		return err;
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	flow_key->mpls.lse[0] = lse;
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	return 0;
}

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static int pop_vlan(struct sk_buff *skb, struct sw_flow_key *key)
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{
	int err;

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	err = skb_vlan_pop(skb);
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	if (skb_vlan_tag_present(skb)) {
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		invalidate_flow_key(key);
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	} else {
		key->eth.vlan.tci = 0;
		key->eth.vlan.tpid = 0;
	}
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	return err;
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}

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static int push_vlan(struct sk_buff *skb, struct sw_flow_key *key,
		     const struct ovs_action_push_vlan *vlan)
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{
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	if (skb_vlan_tag_present(skb)) {
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		invalidate_flow_key(key);
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	} else {
		key->eth.vlan.tci = vlan->vlan_tci;
		key->eth.vlan.tpid = vlan->vlan_tpid;
	}
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	return skb_vlan_push(skb, vlan->vlan_tpid,
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			     ntohs(vlan->vlan_tci) & ~VLAN_CFI_MASK);
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}

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/* 'src' is already properly masked. */
static void ether_addr_copy_masked(u8 *dst_, const u8 *src_, const u8 *mask_)
{
	u16 *dst = (u16 *)dst_;
	const u16 *src = (const u16 *)src_;
	const u16 *mask = (const u16 *)mask_;

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	OVS_SET_MASKED(dst[0], src[0], mask[0]);
	OVS_SET_MASKED(dst[1], src[1], mask[1]);
	OVS_SET_MASKED(dst[2], src[2], mask[2]);
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}

static int set_eth_addr(struct sk_buff *skb, struct sw_flow_key *flow_key,
			const struct ovs_key_ethernet *key,
			const struct ovs_key_ethernet *mask)
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{
	int err;
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	err = skb_ensure_writable(skb, ETH_HLEN);
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	if (unlikely(err))
		return err;

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	skb_postpull_rcsum(skb, eth_hdr(skb), ETH_ALEN * 2);

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	ether_addr_copy_masked(eth_hdr(skb)->h_source, key->eth_src,
			       mask->eth_src);
	ether_addr_copy_masked(eth_hdr(skb)->h_dest, key->eth_dst,
			       mask->eth_dst);
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	skb_postpush_rcsum(skb, eth_hdr(skb), ETH_ALEN * 2);
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	ether_addr_copy(flow_key->eth.src, eth_hdr(skb)->h_source);
	ether_addr_copy(flow_key->eth.dst, eth_hdr(skb)->h_dest);
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	return 0;
}

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/* pop_eth does not support VLAN packets as this action is never called
 * for them.
 */
static int pop_eth(struct sk_buff *skb, struct sw_flow_key *key)
{
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	int err;

	err = skb_eth_pop(skb);
	if (err)
		return err;
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	/* safe right before invalidate_flow_key */
	key->mac_proto = MAC_PROTO_NONE;
	invalidate_flow_key(key);
	return 0;
}

static int push_eth(struct sk_buff *skb, struct sw_flow_key *key,
		    const struct ovs_action_push_eth *ethh)
{
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	int err;
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	err = skb_eth_push(skb, ethh->addresses.eth_dst,
			   ethh->addresses.eth_src);
	if (err)
		return err;
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	/* safe right before invalidate_flow_key */
	key->mac_proto = MAC_PROTO_ETHERNET;
	invalidate_flow_key(key);
	return 0;
}

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static int push_nsh(struct sk_buff *skb, struct sw_flow_key *key,
		    const struct nshhdr *nh)
{
	int err;

	err = nsh_push(skb, nh);
	if (err)
		return err;

	/* safe right before invalidate_flow_key */
	key->mac_proto = MAC_PROTO_NONE;
	invalidate_flow_key(key);
	return 0;
}

static int pop_nsh(struct sk_buff *skb, struct sw_flow_key *key)
{
	int err;

	err = nsh_pop(skb);
	if (err)
		return err;

	/* safe right before invalidate_flow_key */
	if (skb->protocol == htons(ETH_P_TEB))
		key->mac_proto = MAC_PROTO_ETHERNET;
	else
		key->mac_proto = MAC_PROTO_NONE;
	invalidate_flow_key(key);
	return 0;
}

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static void update_ip_l4_checksum(struct sk_buff *skb, struct iphdr *nh,
				  __be32 addr, __be32 new_addr)
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{
	int transport_len = skb->len - skb_transport_offset(skb);

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	if (nh->frag_off & htons(IP_OFFSET))
		return;

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	if (nh->protocol == IPPROTO_TCP) {
		if (likely(transport_len >= sizeof(struct tcphdr)))
			inet_proto_csum_replace4(&tcp_hdr(skb)->check, skb,
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						 addr, new_addr, true);
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	} else if (nh->protocol == IPPROTO_UDP) {
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		if (likely(transport_len >= sizeof(struct udphdr))) {
			struct udphdr *uh = udp_hdr(skb);

			if (uh->check || skb->ip_summed == CHECKSUM_PARTIAL) {
				inet_proto_csum_replace4(&uh->check, skb,
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							 addr, new_addr, true);
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				if (!uh->check)
					uh->check = CSUM_MANGLED_0;
			}
		}
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	}
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}
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static void set_ip_addr(struct sk_buff *skb, struct iphdr *nh,
			__be32 *addr, __be32 new_addr)
{
	update_ip_l4_checksum(skb, nh, *addr, new_addr);
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	csum_replace4(&nh->check, *addr, new_addr);
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	skb_clear_hash(skb);
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	*addr = new_addr;
}

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static void update_ipv6_checksum(struct sk_buff *skb, u8 l4_proto,
				 __be32 addr[4], const __be32 new_addr[4])
{
	int transport_len = skb->len - skb_transport_offset(skb);

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	if (l4_proto == NEXTHDR_TCP) {
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		if (likely(transport_len >= sizeof(struct tcphdr)))
			inet_proto_csum_replace16(&tcp_hdr(skb)->check, skb,
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						  addr, new_addr, true);
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	} else if (l4_proto == NEXTHDR_UDP) {
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		if (likely(transport_len >= sizeof(struct udphdr))) {
			struct udphdr *uh = udp_hdr(skb);

			if (uh->check || skb->ip_summed == CHECKSUM_PARTIAL) {
				inet_proto_csum_replace16(&uh->check, skb,
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							  addr, new_addr, true);
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				if (!uh->check)
					uh->check = CSUM_MANGLED_0;
			}
		}
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	} else if (l4_proto == NEXTHDR_ICMP) {
		if (likely(transport_len >= sizeof(struct icmp6hdr)))
			inet_proto_csum_replace16(&icmp6_hdr(skb)->icmp6_cksum,
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						  skb, addr, new_addr, true);
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	}
}

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static void mask_ipv6_addr(const __be32 old[4], const __be32 addr[4],
			   const __be32 mask[4], __be32 masked[4])
{
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	masked[0] = OVS_MASKED(old[0], addr[0], mask[0]);
	masked[1] = OVS_MASKED(old[1], addr[1], mask[1]);
	masked[2] = OVS_MASKED(old[2], addr[2], mask[2]);
	masked[3] = OVS_MASKED(old[3], addr[3], mask[3]);
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}

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static void set_ipv6_addr(struct sk_buff *skb, u8 l4_proto,
			  __be32 addr[4], const __be32 new_addr[4],
			  bool recalculate_csum)
{
	if (recalculate_csum)
		update_ipv6_checksum(skb, l4_proto, addr, new_addr);

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	skb_clear_hash(skb);
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	memcpy(addr, new_addr, sizeof(__be32[4]));
}

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static void set_ipv6_fl(struct ipv6hdr *nh, u32 fl, u32 mask)
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{
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	/* Bits 21-24 are always unmasked, so this retains their values. */
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	OVS_SET_MASKED(nh->flow_lbl[0], (u8)(fl >> 16), (u8)(mask >> 16));
	OVS_SET_MASKED(nh->flow_lbl[1], (u8)(fl >> 8), (u8)(mask >> 8));
	OVS_SET_MASKED(nh->flow_lbl[2], (u8)fl, (u8)mask);
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}

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static void set_ip_ttl(struct sk_buff *skb, struct iphdr *nh, u8 new_ttl,
		       u8 mask)
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{
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	new_ttl = OVS_MASKED(nh->ttl, new_ttl, mask);
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	csum_replace2(&nh->check, htons(nh->ttl << 8), htons(new_ttl << 8));
	nh->ttl = new_ttl;
}

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static int set_ipv4(struct sk_buff *skb, struct sw_flow_key *flow_key,
		    const struct ovs_key_ipv4 *key,
		    const struct ovs_key_ipv4 *mask)
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{
	struct iphdr *nh;
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	__be32 new_addr;
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	int err;

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	err = skb_ensure_writable(skb, skb_network_offset(skb) +
				  sizeof(struct iphdr));
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	if (unlikely(err))
		return err;

	nh = ip_hdr(skb);

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	/* Setting an IP addresses is typically only a side effect of
	 * matching on them in the current userspace implementation, so it
	 * makes sense to check if the value actually changed.
	 */
	if (mask->ipv4_src) {
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		new_addr = OVS_MASKED(nh->saddr, key->ipv4_src, mask->ipv4_src);
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		if (unlikely(new_addr != nh->saddr)) {
			set_ip_addr(skb, nh, &nh->saddr, new_addr);
			flow_key->ipv4.addr.src = new_addr;
		}
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	}
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	if (mask->ipv4_dst) {
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		new_addr = OVS_MASKED(nh->daddr, key->ipv4_dst, mask->ipv4_dst);
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		if (unlikely(new_addr != nh->daddr)) {
			set_ip_addr(skb, nh, &nh->daddr, new_addr);
			flow_key->ipv4.addr.dst = new_addr;
		}
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	}
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	if (mask->ipv4_tos) {
		ipv4_change_dsfield(nh, ~mask->ipv4_tos, key->ipv4_tos);
		flow_key->ip.tos = nh->tos;
	}
	if (mask->ipv4_ttl) {
		set_ip_ttl(skb, nh, key->ipv4_ttl, mask->ipv4_ttl);
		flow_key->ip.ttl = nh->ttl;
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	}
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	return 0;
}

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static bool is_ipv6_mask_nonzero(const __be32 addr[4])
{
	return !!(addr[0] | addr[1] | addr[2] | addr[3]);
}

static int set_ipv6(struct sk_buff *skb, struct sw_flow_key *flow_key,
		    const struct ovs_key_ipv6 *key,
		    const struct ovs_key_ipv6 *mask)
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{
	struct ipv6hdr *nh;
	int err;

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	err = skb_ensure_writable(skb, skb_network_offset(skb) +
				  sizeof(struct ipv6hdr));
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	if (unlikely(err))
		return err;

	nh = ipv6_hdr(skb);

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	/* Setting an IP addresses is typically only a side effect of
	 * matching on them in the current userspace implementation, so it
	 * makes sense to check if the value actually changed.
	 */
	if (is_ipv6_mask_nonzero(mask->ipv6_src)) {
		__be32 *saddr = (__be32 *)&nh->saddr;
		__be32 masked[4];

		mask_ipv6_addr(saddr, key->ipv6_src, mask->ipv6_src, masked);

		if (unlikely(memcmp(saddr, masked, sizeof(masked)))) {
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			set_ipv6_addr(skb, flow_key->ip.proto, saddr, masked,
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				      true);
			memcpy(&flow_key->ipv6.addr.src, masked,
			       sizeof(flow_key->ipv6.addr.src));
		}
	}
	if (is_ipv6_mask_nonzero(mask->ipv6_dst)) {
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		unsigned int offset = 0;
		int flags = IP6_FH_F_SKIP_RH;
		bool recalc_csum = true;
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		__be32 *daddr = (__be32 *)&nh->daddr;
		__be32 masked[4];

		mask_ipv6_addr(daddr, key->ipv6_dst, mask->ipv6_dst, masked);

		if (unlikely(memcmp(daddr, masked, sizeof(masked)))) {
			if (ipv6_ext_hdr(nh->nexthdr))
				recalc_csum = (ipv6_find_hdr(skb, &offset,
							     NEXTHDR_ROUTING,
							     NULL, &flags)
					       != NEXTHDR_ROUTING);

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			set_ipv6_addr(skb, flow_key->ip.proto, daddr, masked,
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				      recalc_csum);
			memcpy(&flow_key->ipv6.addr.dst, masked,
			       sizeof(flow_key->ipv6.addr.dst));
		}
	}
	if (mask->ipv6_tclass) {
		ipv6_change_dsfield(nh, ~mask->ipv6_tclass, key->ipv6_tclass);
		flow_key->ip.tos = ipv6_get_dsfield(nh);
	}
	if (mask->ipv6_label) {
		set_ipv6_fl(nh, ntohl(key->ipv6_label),
			    ntohl(mask->ipv6_label));
		flow_key->ipv6.label =
		    *(__be32 *)nh & htonl(IPV6_FLOWINFO_FLOWLABEL);
	}
	if (mask->ipv6_hlimit) {
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		OVS_SET_MASKED(nh->hop_limit, key->ipv6_hlimit,
			       mask->ipv6_hlimit);
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		flow_key->ip.ttl = nh->hop_limit;
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	}
	return 0;
}

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static int set_nsh(struct sk_buff *skb, struct sw_flow_key *flow_key,
		   const struct nlattr *a)
{
	struct nshhdr *nh;
	size_t length;
	int err;
	u8 flags;
	u8 ttl;
	int i;

	struct ovs_key_nsh key;
	struct ovs_key_nsh mask;

	err = nsh_key_from_nlattr(a, &key, &mask);
	if (err)
		return err;

	/* Make sure the NSH base header is there */
	if (!pskb_may_pull(skb, skb_network_offset(skb) + NSH_BASE_HDR_LEN))
		return -ENOMEM;

	nh = nsh_hdr(skb);
	length = nsh_hdr_len(nh);

	/* Make sure the whole NSH header is there */
	err = skb_ensure_writable(skb, skb_network_offset(skb) +
				       length);
	if (unlikely(err))
		return err;

	nh = nsh_hdr(skb);
	skb_postpull_rcsum(skb, nh, length);
	flags = nsh_get_flags(nh);
	flags = OVS_MASKED(flags, key.base.flags, mask.base.flags);
	flow_key->nsh.base.flags = flags;
	ttl = nsh_get_ttl(nh);
	ttl = OVS_MASKED(ttl, key.base.ttl, mask.base.ttl);
	flow_key->nsh.base.ttl = ttl;
	nsh_set_flags_and_ttl(nh, flags, ttl);
	nh->path_hdr = OVS_MASKED(nh->path_hdr, key.base.path_hdr,
				  mask.base.path_hdr);
	flow_key->nsh.base.path_hdr = nh->path_hdr;
	switch (nh->mdtype) {
	case NSH_M_TYPE1:
		for (i = 0; i < NSH_MD1_CONTEXT_SIZE; i++) {
			nh->md1.context[i] =
			    OVS_MASKED(nh->md1.context[i], key.context[i],
				       mask.context[i]);
		}
		memcpy(flow_key->nsh.context, nh->md1.context,
		       sizeof(nh->md1.context));
		break;
	case NSH_M_TYPE2:
		memset(flow_key->nsh.context, 0,
		       sizeof(flow_key->nsh.context));
		break;
	default:
		return -EINVAL;
	}
	skb_postpush_rcsum(skb, nh, length);
	return 0;
}

628
/* Must follow skb_ensure_writable() since that can move the skb data. */
629
static void set_tp_port(struct sk_buff *skb, __be16 *port,
630
			__be16 new_port, __sum16 *check)
631
{
632
	inet_proto_csum_replace2(check, skb, *port, new_port, false);
633
	*port = new_port;
634 635
}

636 637 638
static int set_udp(struct sk_buff *skb, struct sw_flow_key *flow_key,
		   const struct ovs_key_udp *key,
		   const struct ovs_key_udp *mask)
639 640
{
	struct udphdr *uh;
641
	__be16 src, dst;
642 643
	int err;

644 645
	err = skb_ensure_writable(skb, skb_transport_offset(skb) +
				  sizeof(struct udphdr));
646 647 648 649
	if (unlikely(err))
		return err;

	uh = udp_hdr(skb);
650
	/* Either of the masks is non-zero, so do not bother checking them. */
651 652
	src = OVS_MASKED(uh->source, key->udp_src, mask->udp_src);
	dst = OVS_MASKED(uh->dest, key->udp_dst, mask->udp_dst);
653

654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670
	if (uh->check && skb->ip_summed != CHECKSUM_PARTIAL) {
		if (likely(src != uh->source)) {
			set_tp_port(skb, &uh->source, src, &uh->check);
			flow_key->tp.src = src;
		}
		if (likely(dst != uh->dest)) {
			set_tp_port(skb, &uh->dest, dst, &uh->check);
			flow_key->tp.dst = dst;
		}

		if (unlikely(!uh->check))
			uh->check = CSUM_MANGLED_0;
	} else {
		uh->source = src;
		uh->dest = dst;
		flow_key->tp.src = src;
		flow_key->tp.dst = dst;
671
	}
672

673 674
	skb_clear_hash(skb);

675 676 677
	return 0;
}

678 679 680
static int set_tcp(struct sk_buff *skb, struct sw_flow_key *flow_key,
		   const struct ovs_key_tcp *key,
		   const struct ovs_key_tcp *mask)
681 682
{
	struct tcphdr *th;
683
	__be16 src, dst;
684 685
	int err;

686 687
	err = skb_ensure_writable(skb, skb_transport_offset(skb) +
				  sizeof(struct tcphdr));
688 689 690 691
	if (unlikely(err))
		return err;

	th = tcp_hdr(skb);
692
	src = OVS_MASKED(th->source, key->tcp_src, mask->tcp_src);
693 694 695
	if (likely(src != th->source)) {
		set_tp_port(skb, &th->source, src, &th->check);
		flow_key->tp.src = src;
696
	}
697
	dst = OVS_MASKED(th->dest, key->tcp_dst, mask->tcp_dst);
698 699 700
	if (likely(dst != th->dest)) {
		set_tp_port(skb, &th->dest, dst, &th->check);
		flow_key->tp.dst = dst;
701
	}
702
	skb_clear_hash(skb);
703 704 705 706

	return 0;
}

707 708 709
static int set_sctp(struct sk_buff *skb, struct sw_flow_key *flow_key,
		    const struct ovs_key_sctp *key,
		    const struct ovs_key_sctp *mask)
J
Joe Stringer 已提交
710
{
711
	unsigned int sctphoff = skb_transport_offset(skb);
J
Joe Stringer 已提交
712
	struct sctphdr *sh;
713
	__le32 old_correct_csum, new_csum, old_csum;
J
Joe Stringer 已提交
714 715
	int err;

716
	err = skb_ensure_writable(skb, sctphoff + sizeof(struct sctphdr));
J
Joe Stringer 已提交
717 718 719 720
	if (unlikely(err))
		return err;

	sh = sctp_hdr(skb);
721 722
	old_csum = sh->checksum;
	old_correct_csum = sctp_compute_cksum(skb, sctphoff);
J
Joe Stringer 已提交
723

724 725
	sh->source = OVS_MASKED(sh->source, key->sctp_src, mask->sctp_src);
	sh->dest = OVS_MASKED(sh->dest, key->sctp_dst, mask->sctp_dst);
J
Joe Stringer 已提交
726

727
	new_csum = sctp_compute_cksum(skb, sctphoff);
J
Joe Stringer 已提交
728

729 730
	/* Carry any checksum errors through. */
	sh->checksum = old_csum ^ old_correct_csum ^ new_csum;
J
Joe Stringer 已提交
731

732 733 734
	skb_clear_hash(skb);
	flow_key->tp.src = sh->source;
	flow_key->tp.dst = sh->dest;
J
Joe Stringer 已提交
735 736 737 738

	return 0;
}

739 740
static int ovs_vport_output(struct net *net, struct sock *sk,
			    struct sk_buff *skb)
J
Joe Stringer 已提交
741 742 743 744 745 746 747 748 749 750 751 752
{
	struct ovs_frag_data *data = this_cpu_ptr(&ovs_frag_data_storage);
	struct vport *vport = data->vport;

	if (skb_cow_head(skb, data->l2_len) < 0) {
		kfree_skb(skb);
		return -ENOMEM;
	}

	__skb_dst_copy(skb, data->dst);
	*OVS_CB(skb) = data->cb;
	skb->inner_protocol = data->inner_protocol;
753 754 755 756
	if (data->vlan_tci & VLAN_CFI_MASK)
		__vlan_hwaccel_put_tag(skb, data->vlan_proto, data->vlan_tci & ~VLAN_CFI_MASK);
	else
		__vlan_hwaccel_clear_tag(skb);
J
Joe Stringer 已提交
757 758 759 760

	/* Reconstruct the MAC header.  */
	skb_push(skb, data->l2_len);
	memcpy(skb->data, &data->l2_data, data->l2_len);
761
	skb_postpush_rcsum(skb, skb->data, data->l2_len);
J
Joe Stringer 已提交
762 763
	skb_reset_mac_header(skb);

764 765 766 767 768 769
	if (eth_p_mpls(skb->protocol)) {
		skb->inner_network_header = skb->network_header;
		skb_set_network_header(skb, data->network_offset);
		skb_reset_mac_len(skb);
	}

770
	ovs_vport_send(vport, skb, data->mac_proto);
J
Joe Stringer 已提交
771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787
	return 0;
}

static unsigned int
ovs_dst_get_mtu(const struct dst_entry *dst)
{
	return dst->dev->mtu;
}

static struct dst_ops ovs_dst_ops = {
	.family = AF_UNSPEC,
	.mtu = ovs_dst_get_mtu,
};

/* prepare_frag() is called once per (larger-than-MTU) frame; its inverse is
 * ovs_vport_output(), which is called once per fragmented packet.
 */
788
static void prepare_frag(struct vport *vport, struct sk_buff *skb,
789
			 u16 orig_network_offset, u8 mac_proto)
J
Joe Stringer 已提交
790 791 792 793 794 795 796 797 798
{
	unsigned int hlen = skb_network_offset(skb);
	struct ovs_frag_data *data;

	data = this_cpu_ptr(&ovs_frag_data_storage);
	data->dst = skb->_skb_refdst;
	data->vport = vport;
	data->cb = *OVS_CB(skb);
	data->inner_protocol = skb->inner_protocol;
799
	data->network_offset = orig_network_offset;
800 801 802 803
	if (skb_vlan_tag_present(skb))
		data->vlan_tci = skb_vlan_tag_get(skb) | VLAN_CFI_MASK;
	else
		data->vlan_tci = 0;
J
Joe Stringer 已提交
804
	data->vlan_proto = skb->vlan_proto;
805
	data->mac_proto = mac_proto;
J
Joe Stringer 已提交
806 807 808 809 810 811 812
	data->l2_len = hlen;
	memcpy(&data->l2_data, skb->data, hlen);

	memset(IPCB(skb), 0, sizeof(struct inet_skb_parm));
	skb_pull(skb, hlen);
}

813
static void ovs_fragment(struct net *net, struct vport *vport,
814 815
			 struct sk_buff *skb, u16 mru,
			 struct sw_flow_key *key)
J
Joe Stringer 已提交
816
{
817 818 819 820 821 822 823
	u16 orig_network_offset = 0;

	if (eth_p_mpls(skb->protocol)) {
		orig_network_offset = skb_network_offset(skb);
		skb->network_header = skb->inner_network_header;
	}

J
Joe Stringer 已提交
824 825
	if (skb_network_offset(skb) > MAX_L2_LEN) {
		OVS_NLERR(1, "L2 header too long to fragment");
826
		goto err;
J
Joe Stringer 已提交
827 828
	}

829
	if (key->eth.type == htons(ETH_P_IP)) {
J
Joe Stringer 已提交
830 831 832
		struct dst_entry ovs_dst;
		unsigned long orig_dst;

833 834
		prepare_frag(vport, skb, orig_network_offset,
			     ovs_key_mac_proto(key));
J
Joe Stringer 已提交
835 836 837 838 839 840 841 842
		dst_init(&ovs_dst, &ovs_dst_ops, NULL, 1,
			 DST_OBSOLETE_NONE, DST_NOCOUNT);
		ovs_dst.dev = vport->dev;

		orig_dst = skb->_skb_refdst;
		skb_dst_set_noref(skb, &ovs_dst);
		IPCB(skb)->frag_max_size = mru;

843
		ip_do_fragment(net, skb->sk, skb, ovs_vport_output);
J
Joe Stringer 已提交
844
		refdst_drop(orig_dst);
845
	} else if (key->eth.type == htons(ETH_P_IPV6)) {
J
Joe Stringer 已提交
846 847 848
		unsigned long orig_dst;
		struct rt6_info ovs_rt;

849 850
		prepare_frag(vport, skb, orig_network_offset,
			     ovs_key_mac_proto(key));
J
Joe Stringer 已提交
851 852 853 854 855 856 857 858 859
		memset(&ovs_rt, 0, sizeof(ovs_rt));
		dst_init(&ovs_rt.dst, &ovs_dst_ops, NULL, 1,
			 DST_OBSOLETE_NONE, DST_NOCOUNT);
		ovs_rt.dst.dev = vport->dev;

		orig_dst = skb->_skb_refdst;
		skb_dst_set_noref(skb, &ovs_rt.dst);
		IP6CB(skb)->frag_max_size = mru;

860
		ipv6_stub->ipv6_fragment(net, skb->sk, skb, ovs_vport_output);
J
Joe Stringer 已提交
861 862 863
		refdst_drop(orig_dst);
	} else {
		WARN_ONCE(1, "Failed fragment ->%s: eth=%04x, MRU=%d, MTU=%d.",
864
			  ovs_vport_name(vport), ntohs(key->eth.type), mru,
J
Joe Stringer 已提交
865
			  vport->dev->mtu);
866
		goto err;
J
Joe Stringer 已提交
867
	}
868 869 870 871

	return;
err:
	kfree_skb(skb);
J
Joe Stringer 已提交
872 873 874 875
}

static void do_output(struct datapath *dp, struct sk_buff *skb, int out_port,
		      struct sw_flow_key *key)
876
{
877
	struct vport *vport = ovs_vport_rcu(dp, out_port);
878

J
Joe Stringer 已提交
879 880
	if (likely(vport)) {
		u16 mru = OVS_CB(skb)->mru;
881 882 883
		u32 cutlen = OVS_CB(skb)->cutlen;

		if (unlikely(cutlen > 0)) {
884
			if (skb->len - cutlen > ovs_mac_header_len(key))
885 886
				pskb_trim(skb, skb->len - cutlen);
			else
887
				pskb_trim(skb, ovs_mac_header_len(key));
888
		}
J
Joe Stringer 已提交
889

890 891
		if (likely(!mru ||
		           (skb->len <= mru + vport->dev->hard_header_len))) {
892
			ovs_vport_send(vport, skb, ovs_key_mac_proto(key));
J
Joe Stringer 已提交
893
		} else if (mru <= vport->dev->mtu) {
894
			struct net *net = read_pnet(&dp->net);
J
Joe Stringer 已提交
895

896
			ovs_fragment(net, vport, skb, mru, key);
J
Joe Stringer 已提交
897 898 899 900
		} else {
			kfree_skb(skb);
		}
	} else {
901
		kfree_skb(skb);
J
Joe Stringer 已提交
902
	}
903 904 905
}

static int output_userspace(struct datapath *dp, struct sk_buff *skb,
906
			    struct sw_flow_key *key, const struct nlattr *attr,
907 908
			    const struct nlattr *actions, int actions_len,
			    uint32_t cutlen)
909 910 911 912 913
{
	struct dp_upcall_info upcall;
	const struct nlattr *a;
	int rem;

914
	memset(&upcall, 0, sizeof(upcall));
915
	upcall.cmd = OVS_PACKET_CMD_ACTION;
J
Joe Stringer 已提交
916
	upcall.mru = OVS_CB(skb)->mru;
917 918

	for (a = nla_data(attr), rem = nla_len(attr); rem > 0;
919
	     a = nla_next(a, &rem)) {
920 921 922 923 924 925
		switch (nla_type(a)) {
		case OVS_USERSPACE_ATTR_USERDATA:
			upcall.userdata = a;
			break;

		case OVS_USERSPACE_ATTR_PID:
926
			upcall.portid = nla_get_u32(a);
927
			break;
928 929 930 931 932 933 934 935 936

		case OVS_USERSPACE_ATTR_EGRESS_TUN_PORT: {
			/* Get out tunnel info. */
			struct vport *vport;

			vport = ovs_vport_rcu(dp, nla_get_u32(a));
			if (vport) {
				int err;

937 938 939
				err = dev_fill_metadata_dst(vport->dev, skb);
				if (!err)
					upcall.egress_tun_info = skb_tunnel_info(skb);
940
			}
941

942
			break;
943
		}
944

945 946 947 948 949 950 951
		case OVS_USERSPACE_ATTR_ACTIONS: {
			/* Include actions. */
			upcall.actions = actions;
			upcall.actions_len = actions_len;
			break;
		}

952
		} /* End of switch. */
953 954
	}

955
	return ovs_dp_upcall(dp, skb, key, &upcall, cutlen);
956 957
}

958 959 960 961 962 963 964 965
static int dec_ttl_exception_handler(struct datapath *dp, struct sk_buff *skb,
				     struct sw_flow_key *key,
				     const struct nlattr *attr, bool last)
{
	/* The first action is always 'OVS_DEC_TTL_ATTR_ARG'. */
	struct nlattr *dec_ttl_arg = nla_data(attr);

	if (nla_len(dec_ttl_arg)) {
966
		struct nlattr *actions = nla_data(dec_ttl_arg);
967 968

		if (actions)
969 970
			return clone_execute(dp, skb, key, 0, nla_data(actions),
					     nla_len(actions), last, false);
971 972 973 974 975
	}
	consume_skb(skb);
	return 0;
}

976 977 978 979
/* When 'last' is true, sample() should always consume the 'skb'.
 * Otherwise, sample() should keep 'skb' intact regardless what
 * actions are executed within sample().
 */
980
static int sample(struct datapath *dp, struct sk_buff *skb,
981
		  struct sw_flow_key *key, const struct nlattr *attr,
982
		  bool last)
983
{
984 985 986 987
	struct nlattr *actions;
	struct nlattr *sample_arg;
	int rem = nla_len(attr);
	const struct sample_arg *arg;
988
	bool clone_flow_key;
989

990 991 992 993
	/* The first action is always 'OVS_SAMPLE_ATTR_ARG'. */
	sample_arg = nla_data(attr);
	arg = nla_data(sample_arg);
	actions = nla_next(sample_arg, &rem);
994

995 996 997 998 999
	if ((arg->probability != U32_MAX) &&
	    (!arg->probability || prandom_u32() > arg->probability)) {
		if (last)
			consume_skb(skb);
		return 0;
1000 1001
	}

1002 1003 1004
	clone_flow_key = !arg->exec;
	return clone_execute(dp, skb, key, 0, actions, rem, last,
			     clone_flow_key);
1005 1006
}

1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028
/* When 'last' is true, clone() should always consume the 'skb'.
 * Otherwise, clone() should keep 'skb' intact regardless what
 * actions are executed within clone().
 */
static int clone(struct datapath *dp, struct sk_buff *skb,
		 struct sw_flow_key *key, const struct nlattr *attr,
		 bool last)
{
	struct nlattr *actions;
	struct nlattr *clone_arg;
	int rem = nla_len(attr);
	bool dont_clone_flow_key;

	/* The first action is always 'OVS_CLONE_ATTR_ARG'. */
	clone_arg = nla_data(attr);
	dont_clone_flow_key = nla_get_u32(clone_arg);
	actions = nla_next(clone_arg, &rem);

	return clone_execute(dp, skb, key, 0, actions, rem, last,
			     !dont_clone_flow_key);
}

1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041
static void execute_hash(struct sk_buff *skb, struct sw_flow_key *key,
			 const struct nlattr *attr)
{
	struct ovs_action_hash *hash_act = nla_data(attr);
	u32 hash = 0;

	/* OVS_HASH_ALG_L4 is the only possible hash algorithm.  */
	hash = skb_get_hash(skb);
	hash = jhash_1word(hash, hash_act->hash_basis);
	if (!hash)
		hash = 0x1;

	key->ovs_flow_hash = hash;
1042 1043
}

1044 1045 1046 1047 1048 1049
static int execute_set_action(struct sk_buff *skb,
			      struct sw_flow_key *flow_key,
			      const struct nlattr *a)
{
	/* Only tunnel set execution is supported without a mask. */
	if (nla_type(a) == OVS_KEY_ATTR_TUNNEL_INFO) {
1050 1051 1052 1053 1054
		struct ovs_tunnel_info *tun = nla_data(a);

		skb_dst_drop(skb);
		dst_hold((struct dst_entry *)tun->tun_dst);
		skb_dst_set(skb, (struct dst_entry *)tun->tun_dst);
1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066
		return 0;
	}

	return -EINVAL;
}

/* Mask is at the midpoint of the data. */
#define get_mask(a, type) ((const type)nla_data(a) + 1)

static int execute_masked_set_action(struct sk_buff *skb,
				     struct sw_flow_key *flow_key,
				     const struct nlattr *a)
1067 1068 1069
{
	int err = 0;

1070
	switch (nla_type(a)) {
1071
	case OVS_KEY_ATTR_PRIORITY:
1072 1073
		OVS_SET_MASKED(skb->priority, nla_get_u32(a),
			       *get_mask(a, u32 *));
1074
		flow_key->phy.priority = skb->priority;
1075 1076
		break;

1077
	case OVS_KEY_ATTR_SKB_MARK:
1078
		OVS_SET_MASKED(skb->mark, nla_get_u32(a), *get_mask(a, u32 *));
1079
		flow_key->phy.skb_mark = skb->mark;
1080 1081
		break;

1082
	case OVS_KEY_ATTR_TUNNEL_INFO:
1083 1084
		/* Masked data not supported for tunnel. */
		err = -EINVAL;
1085 1086
		break;

1087
	case OVS_KEY_ATTR_ETHERNET:
1088 1089
		err = set_eth_addr(skb, flow_key, nla_data(a),
				   get_mask(a, struct ovs_key_ethernet *));
1090 1091
		break;

Y
Yi Yang 已提交
1092 1093 1094 1095
	case OVS_KEY_ATTR_NSH:
		err = set_nsh(skb, flow_key, a);
		break;

1096
	case OVS_KEY_ATTR_IPV4:
1097 1098
		err = set_ipv4(skb, flow_key, nla_data(a),
			       get_mask(a, struct ovs_key_ipv4 *));
1099 1100
		break;

A
Ansis Atteka 已提交
1101
	case OVS_KEY_ATTR_IPV6:
1102 1103
		err = set_ipv6(skb, flow_key, nla_data(a),
			       get_mask(a, struct ovs_key_ipv6 *));
A
Ansis Atteka 已提交
1104 1105
		break;

1106
	case OVS_KEY_ATTR_TCP:
1107 1108
		err = set_tcp(skb, flow_key, nla_data(a),
			      get_mask(a, struct ovs_key_tcp *));
1109 1110 1111
		break;

	case OVS_KEY_ATTR_UDP:
1112 1113
		err = set_udp(skb, flow_key, nla_data(a),
			      get_mask(a, struct ovs_key_udp *));
1114
		break;
J
Joe Stringer 已提交
1115 1116

	case OVS_KEY_ATTR_SCTP:
1117 1118
		err = set_sctp(skb, flow_key, nla_data(a),
			       get_mask(a, struct ovs_key_sctp *));
J
Joe Stringer 已提交
1119
		break;
1120 1121

	case OVS_KEY_ATTR_MPLS:
1122 1123
		err = set_mpls(skb, flow_key, nla_data(a), get_mask(a,
								    __be32 *));
1124
		break;
J
Joe Stringer 已提交
1125 1126 1127

	case OVS_KEY_ATTR_CT_STATE:
	case OVS_KEY_ATTR_CT_ZONE:
1128
	case OVS_KEY_ATTR_CT_MARK:
J
Joe Stringer 已提交
1129
	case OVS_KEY_ATTR_CT_LABELS:
1130 1131
	case OVS_KEY_ATTR_CT_ORIG_TUPLE_IPV4:
	case OVS_KEY_ATTR_CT_ORIG_TUPLE_IPV6:
J
Joe Stringer 已提交
1132 1133
		err = -EINVAL;
		break;
1134 1135 1136 1137 1138
	}

	return err;
}

1139 1140
static int execute_recirc(struct datapath *dp, struct sk_buff *skb,
			  struct sw_flow_key *key,
1141
			  const struct nlattr *a, bool last)
1142
{
1143
	u32 recirc_id;
1144

1145 1146 1147 1148 1149 1150 1151 1152
	if (!is_flow_key_valid(key)) {
		int err;

		err = ovs_flow_key_update(skb, key);
		if (err)
			return err;
	}
	BUG_ON(!is_flow_key_valid(key));
1153

1154 1155
	recirc_id = nla_get_u32(a);
	return clone_execute(dp, skb, key, recirc_id, NULL, 0, last, true);
1156 1157
}

1158 1159 1160 1161
static int execute_check_pkt_len(struct datapath *dp, struct sk_buff *skb,
				 struct sw_flow_key *key,
				 const struct nlattr *attr, bool last)
{
1162
	struct ovs_skb_cb *ovs_cb = OVS_CB(skb);
1163
	const struct nlattr *actions, *cpl_arg;
1164
	int len, max_len, rem = nla_len(attr);
1165 1166 1167 1168 1169 1170 1171 1172 1173
	const struct check_pkt_len_arg *arg;
	bool clone_flow_key;

	/* The first netlink attribute in 'attr' is always
	 * 'OVS_CHECK_PKT_LEN_ATTR_ARG'.
	 */
	cpl_arg = nla_data(attr);
	arg = nla_data(cpl_arg);

1174 1175 1176 1177 1178
	len = ovs_cb->mru ? ovs_cb->mru + skb->mac_len : skb->len;
	max_len = arg->pkt_len;

	if ((skb_is_gso(skb) && skb_gso_validate_mac_len(skb, max_len)) ||
	    len <= max_len) {
1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196
		/* Second netlink attribute in 'attr' is always
		 * 'OVS_CHECK_PKT_LEN_ATTR_ACTIONS_IF_LESS_EQUAL'.
		 */
		actions = nla_next(cpl_arg, &rem);
		clone_flow_key = !arg->exec_for_lesser_equal;
	} else {
		/* Third netlink attribute in 'attr' is always
		 * 'OVS_CHECK_PKT_LEN_ATTR_ACTIONS_IF_GREATER'.
		 */
		actions = nla_next(cpl_arg, &rem);
		actions = nla_next(actions, &rem);
		clone_flow_key = !arg->exec_for_greater;
	}

	return clone_execute(dp, skb, key, 0, nla_data(actions),
			     nla_len(actions), last, clone_flow_key);
}

1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235
static int execute_dec_ttl(struct sk_buff *skb, struct sw_flow_key *key)
{
	int err;

	if (skb->protocol == htons(ETH_P_IPV6)) {
		struct ipv6hdr *nh;

		err = skb_ensure_writable(skb, skb_network_offset(skb) +
					  sizeof(*nh));
		if (unlikely(err))
			return err;

		nh = ipv6_hdr(skb);

		if (nh->hop_limit <= 1)
			return -EHOSTUNREACH;

		key->ip.ttl = --nh->hop_limit;
	} else {
		struct iphdr *nh;
		u8 old_ttl;

		err = skb_ensure_writable(skb, skb_network_offset(skb) +
					  sizeof(*nh));
		if (unlikely(err))
			return err;

		nh = ip_hdr(skb);
		if (nh->ttl <= 1)
			return -EHOSTUNREACH;

		old_ttl = nh->ttl--;
		csum_replace2(&nh->check, htons(old_ttl << 8),
			      htons(nh->ttl << 8));
		key->ip.ttl = nh->ttl;
	}
	return 0;
}

1236 1237
/* Execute a list of actions against 'skb'. */
static int do_execute_actions(struct datapath *dp, struct sk_buff *skb,
1238
			      struct sw_flow_key *key,
1239
			      const struct nlattr *attr, int len)
1240 1241 1242 1243 1244 1245 1246 1247
{
	const struct nlattr *a;
	int rem;

	for (a = attr, rem = len; rem > 0;
	     a = nla_next(a, &rem)) {
		int err = 0;

1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262
		switch (nla_type(a)) {
		case OVS_ACTION_ATTR_OUTPUT: {
			int port = nla_get_u32(a);
			struct sk_buff *clone;

			/* Every output action needs a separate clone
			 * of 'skb', In case the output action is the
			 * last action, cloning can be avoided.
			 */
			if (nla_is_last(a, rem)) {
				do_output(dp, skb, port, key);
				/* 'skb' has been used for output.
				 */
				return 0;
			}
1263

1264 1265 1266
			clone = skb_clone(skb, GFP_ATOMIC);
			if (clone)
				do_output(dp, clone, port, key);
1267
			OVS_CB(skb)->cutlen = 0;
1268
			break;
1269
		}
1270

1271 1272 1273 1274 1275 1276 1277 1278
		case OVS_ACTION_ATTR_TRUNC: {
			struct ovs_action_trunc *trunc = nla_data(a);

			if (skb->len > trunc->max_len)
				OVS_CB(skb)->cutlen = skb->len - trunc->max_len;
			break;
		}

1279
		case OVS_ACTION_ATTR_USERSPACE:
1280 1281 1282
			output_userspace(dp, skb, key, a, attr,
						     len, OVS_CB(skb)->cutlen);
			OVS_CB(skb)->cutlen = 0;
1283 1284
			break;

1285 1286 1287 1288
		case OVS_ACTION_ATTR_HASH:
			execute_hash(skb, key, a);
			break;

1289 1290 1291 1292 1293
		case OVS_ACTION_ATTR_PUSH_MPLS: {
			struct ovs_action_push_mpls *mpls = nla_data(a);

			err = push_mpls(skb, key, mpls->mpls_lse,
					mpls->mpls_ethertype, skb->mac_len);
1294
			break;
1295 1296 1297 1298 1299 1300 1301
		}
		case OVS_ACTION_ATTR_ADD_MPLS: {
			struct ovs_action_add_mpls *mpls = nla_data(a);
			__u16 mac_len = 0;

			if (mpls->tun_flags & OVS_MPLS_L3_TUNNEL_FLAG_MASK)
				mac_len = skb->mac_len;
1302

1303 1304 1305 1306
			err = push_mpls(skb, key, mpls->mpls_lse,
					mpls->mpls_ethertype, mac_len);
			break;
		}
1307
		case OVS_ACTION_ATTR_POP_MPLS:
1308
			err = pop_mpls(skb, key, nla_get_be16(a));
1309 1310
			break;

1311
		case OVS_ACTION_ATTR_PUSH_VLAN:
1312
			err = push_vlan(skb, key, nla_data(a));
1313 1314 1315
			break;

		case OVS_ACTION_ATTR_POP_VLAN:
1316
			err = pop_vlan(skb, key);
1317 1318
			break;

1319 1320 1321 1322 1323
		case OVS_ACTION_ATTR_RECIRC: {
			bool last = nla_is_last(a, rem);

			err = execute_recirc(dp, skb, key, a, last);
			if (last) {
1324 1325 1326 1327 1328 1329 1330
				/* If this is the last action, the skb has
				 * been consumed or freed.
				 * Return immediately.
				 */
				return err;
			}
			break;
1331
		}
1332

1333
		case OVS_ACTION_ATTR_SET:
1334
			err = execute_set_action(skb, key, nla_data(a));
1335 1336
			break;

1337 1338 1339 1340 1341
		case OVS_ACTION_ATTR_SET_MASKED:
		case OVS_ACTION_ATTR_SET_TO_MASKED:
			err = execute_masked_set_action(skb, key, nla_data(a));
			break;

1342 1343 1344 1345 1346 1347 1348
		case OVS_ACTION_ATTR_SAMPLE: {
			bool last = nla_is_last(a, rem);

			err = sample(dp, skb, key, a, last);
			if (last)
				return err;

1349
			break;
1350
		}
J
Joe Stringer 已提交
1351 1352

		case OVS_ACTION_ATTR_CT:
1353 1354 1355 1356 1357 1358
			if (!is_flow_key_valid(key)) {
				err = ovs_flow_key_update(skb, key);
				if (err)
					return err;
			}

J
Joe Stringer 已提交
1359 1360 1361 1362
			err = ovs_ct_execute(ovs_dp_get_net(dp), skb, key,
					     nla_data(a));

			/* Hide stolen IP fragments from user space. */
1363 1364
			if (err)
				return err == -EINPROGRESS ? 0 : err;
J
Joe Stringer 已提交
1365
			break;
1366

E
Eric Garver 已提交
1367 1368 1369 1370
		case OVS_ACTION_ATTR_CT_CLEAR:
			err = ovs_ct_clear(skb, key);
			break;

1371 1372 1373 1374 1375 1376 1377
		case OVS_ACTION_ATTR_PUSH_ETH:
			err = push_eth(skb, key, nla_data(a));
			break;

		case OVS_ACTION_ATTR_POP_ETH:
			err = pop_eth(skb, key);
			break;
Y
Yi Yang 已提交
1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393

		case OVS_ACTION_ATTR_PUSH_NSH: {
			u8 buffer[NSH_HDR_MAX_LEN];
			struct nshhdr *nh = (struct nshhdr *)buffer;

			err = nsh_hdr_from_nlattr(nla_data(a), nh,
						  NSH_HDR_MAX_LEN);
			if (unlikely(err))
				break;
			err = push_nsh(skb, key, nh);
			break;
		}

		case OVS_ACTION_ATTR_POP_NSH:
			err = pop_nsh(skb, key);
			break;
A
Andy Zhou 已提交
1394 1395 1396 1397 1398 1399

		case OVS_ACTION_ATTR_METER:
			if (ovs_meter_execute(dp, skb, key, nla_get_u32(a))) {
				consume_skb(skb);
				return 0;
			}
1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410
			break;

		case OVS_ACTION_ATTR_CLONE: {
			bool last = nla_is_last(a, rem);

			err = clone(dp, skb, key, a, last);
			if (last)
				return err;

			break;
		}
1411 1412 1413 1414 1415 1416 1417 1418 1419 1420

		case OVS_ACTION_ATTR_CHECK_PKT_LEN: {
			bool last = nla_is_last(a, rem);

			err = execute_check_pkt_len(dp, skb, key, a, last);
			if (last)
				return err;

			break;
		}
1421 1422 1423 1424 1425 1426 1427 1428 1429

		case OVS_ACTION_ATTR_DEC_TTL:
			err = execute_dec_ttl(skb, key);
			if (err == -EHOSTUNREACH) {
				err = dec_ttl_exception_handler(dp, skb, key,
								a, true);
				return err;
			}
			break;
1430 1431 1432 1433 1434 1435 1436 1437
		}

		if (unlikely(err)) {
			kfree_skb(skb);
			return err;
		}
	}

1438
	consume_skb(skb);
1439 1440 1441
	return 0;
}

1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514
/* Execute the actions on the clone of the packet. The effect of the
 * execution does not affect the original 'skb' nor the original 'key'.
 *
 * The execution may be deferred in case the actions can not be executed
 * immediately.
 */
static int clone_execute(struct datapath *dp, struct sk_buff *skb,
			 struct sw_flow_key *key, u32 recirc_id,
			 const struct nlattr *actions, int len,
			 bool last, bool clone_flow_key)
{
	struct deferred_action *da;
	struct sw_flow_key *clone;

	skb = last ? skb : skb_clone(skb, GFP_ATOMIC);
	if (!skb) {
		/* Out of memory, skip this action.
		 */
		return 0;
	}

	/* When clone_flow_key is false, the 'key' will not be change
	 * by the actions, then the 'key' can be used directly.
	 * Otherwise, try to clone key from the next recursion level of
	 * 'flow_keys'. If clone is successful, execute the actions
	 * without deferring.
	 */
	clone = clone_flow_key ? clone_key(key) : key;
	if (clone) {
		int err = 0;

		if (actions) { /* Sample action */
			if (clone_flow_key)
				__this_cpu_inc(exec_actions_level);

			err = do_execute_actions(dp, skb, clone,
						 actions, len);

			if (clone_flow_key)
				__this_cpu_dec(exec_actions_level);
		} else { /* Recirc action */
			clone->recirc_id = recirc_id;
			ovs_dp_process_packet(skb, clone);
		}
		return err;
	}

	/* Out of 'flow_keys' space. Defer actions */
	da = add_deferred_actions(skb, key, actions, len);
	if (da) {
		if (!actions) { /* Recirc action */
			key = &da->pkt_key;
			key->recirc_id = recirc_id;
		}
	} else {
		/* Out of per CPU action FIFO space. Drop the 'skb' and
		 * log an error.
		 */
		kfree_skb(skb);

		if (net_ratelimit()) {
			if (actions) { /* Sample action */
				pr_warn("%s: deferred action limit reached, drop sample action\n",
					ovs_dp_name(dp));
			} else {  /* Recirc action */
				pr_warn("%s: deferred action limit reached, drop recirc action\n",
					ovs_dp_name(dp));
			}
		}
	}
	return 0;
}

1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528
static void process_deferred_actions(struct datapath *dp)
{
	struct action_fifo *fifo = this_cpu_ptr(action_fifos);

	/* Do not touch the FIFO in case there is no deferred actions. */
	if (action_fifo_is_empty(fifo))
		return;

	/* Finishing executing all deferred actions. */
	do {
		struct deferred_action *da = action_fifo_get(fifo);
		struct sk_buff *skb = da->skb;
		struct sw_flow_key *key = &da->pkt_key;
		const struct nlattr *actions = da->actions;
1529
		int actions_len = da->actions_len;
1530 1531

		if (actions)
1532
			do_execute_actions(dp, skb, key, actions, actions_len);
1533 1534 1535 1536 1537 1538 1539 1540
		else
			ovs_dp_process_packet(skb, key);
	} while (!action_fifo_is_empty(fifo));

	/* Reset FIFO for the next packet.  */
	action_fifo_init(fifo);
}

1541
/* Execute a list of actions against 'skb'. */
1542
int ovs_execute_actions(struct datapath *dp, struct sk_buff *skb,
1543 1544
			const struct sw_flow_actions *acts,
			struct sw_flow_key *key)
1545
{
1546 1547 1548
	int err, level;

	level = __this_cpu_inc_return(exec_actions_level);
1549
	if (unlikely(level > OVS_RECURSION_LIMIT)) {
1550 1551 1552 1553 1554 1555
		net_crit_ratelimited("ovs: recursion limit reached on datapath %s, probable configuration error\n",
				     ovs_dp_name(dp));
		kfree_skb(skb);
		err = -ENETDOWN;
		goto out;
	}
1556

1557
	OVS_CB(skb)->acts_origlen = acts->orig_len;
1558 1559 1560
	err = do_execute_actions(dp, skb, key,
				 acts->actions, acts->actions_len);

1561
	if (level == 1)
1562 1563
		process_deferred_actions(dp);

1564 1565
out:
	__this_cpu_dec(exec_actions_level);
1566 1567 1568 1569 1570 1571 1572 1573
	return err;
}

int action_fifos_init(void)
{
	action_fifos = alloc_percpu(struct action_fifo);
	if (!action_fifos)
		return -ENOMEM;
1574

1575 1576
	flow_keys = alloc_percpu(struct action_flow_keys);
	if (!flow_keys) {
1577 1578 1579 1580
		free_percpu(action_fifos);
		return -ENOMEM;
	}

1581 1582 1583 1584 1585 1586
	return 0;
}

void action_fifos_exit(void)
{
	free_percpu(action_fifos);
1587
	free_percpu(flow_keys);
1588
}