ip_vs.h 45.5 KB
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/* IP Virtual Server
 * data structure and functionality definitions
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 */

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#ifndef _NET_IP_VS_H
#define _NET_IP_VS_H
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#include <linux/ip_vs.h>                /* definitions shared with userland */
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#include <asm/types.h>                  /* for __uXX types */

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#include <linux/list.h>                 /* for struct list_head */
#include <linux/spinlock.h>             /* for struct rwlock_t */
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#include <linux/atomic.h>               /* for struct atomic_t */
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#include <linux/compiler.h>
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#include <linux/timer.h>
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#include <linux/bug.h>
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#include <net/checksum.h>
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#include <linux/netfilter.h>		/* for union nf_inet_addr */
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#include <linux/ip.h>
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#include <linux/ipv6.h>			/* for struct ipv6hdr */
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#include <net/ipv6.h>
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#if IS_ENABLED(CONFIG_IP_VS_IPV6)
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#include <linux/netfilter_ipv6/ip6_tables.h>
#endif
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#if IS_ENABLED(CONFIG_NF_CONNTRACK)
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#include <net/netfilter/nf_conntrack.h>
#endif
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#include <net/net_namespace.h>		/* Netw namespace */

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/* Generic access of ipvs struct */
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static inline struct netns_ipvs *net_ipvs(struct net* net)
{
	return net->ipvs;
}
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/* Get net ptr from skb in traffic cases
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 * use skb_sknet when call is from userland (ioctl or netlink)
 */
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static inline struct net *skb_net(const struct sk_buff *skb)
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{
#ifdef CONFIG_NET_NS
#ifdef CONFIG_IP_VS_DEBUG
	/*
	 * This is used for debug only.
	 * Start with the most likely hit
	 * End with BUG
	 */
	if (likely(skb->dev && skb->dev->nd_net))
		return dev_net(skb->dev);
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	if (skb_dst(skb) && skb_dst(skb)->dev)
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		return dev_net(skb_dst(skb)->dev);
	WARN(skb->sk, "Maybe skb_sknet should be used in %s() at line:%d\n",
		      __func__, __LINE__);
	if (likely(skb->sk && skb->sk->sk_net))
		return sock_net(skb->sk);
	pr_err("There is no net ptr to find in the skb in %s() line:%d\n",
		__func__, __LINE__);
	BUG();
#else
	return dev_net(skb->dev ? : skb_dst(skb)->dev);
#endif
#else
	return &init_net;
#endif
}

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static inline struct net *skb_sknet(const struct sk_buff *skb)
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{
#ifdef CONFIG_NET_NS
#ifdef CONFIG_IP_VS_DEBUG
	/* Start with the most likely hit */
	if (likely(skb->sk && skb->sk->sk_net))
		return sock_net(skb->sk);
	WARN(skb->dev, "Maybe skb_net should be used instead in %s() line:%d\n",
		       __func__, __LINE__);
	if (likely(skb->dev && skb->dev->nd_net))
		return dev_net(skb->dev);
	pr_err("There is no net ptr to find in the skb in %s() line:%d\n",
		__func__, __LINE__);
	BUG();
#else
	return sock_net(skb->sk);
#endif
#else
	return &init_net;
#endif
}
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/* This one needed for single_open_net since net is stored directly in
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 * private not as a struct i.e. seq_file_net can't be used.
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 */
static inline struct net *seq_file_single_net(struct seq_file *seq)
{
#ifdef CONFIG_NET_NS
	return (struct net *)seq->private;
#else
	return &init_net;
#endif
}
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/* Connections' size value needed by ip_vs_ctl.c */
extern int ip_vs_conn_tab_size;

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struct ip_vs_iphdr {
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	__u32 len;	/* IPv4 simply where L4 starts
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			 * IPv6 where L4 Transport Header starts */
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	__u16 fragoffs; /* IPv6 fragment offset, 0 if first frag (or not frag)*/
	__s16 protocol;
	__s32 flags;
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	union nf_inet_addr saddr;
	union nf_inet_addr daddr;
};

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static inline void *frag_safe_skb_hp(const struct sk_buff *skb, int offset,
				      int len, void *buffer,
				      const struct ip_vs_iphdr *ipvsh)
{
	return skb_header_pointer(skb, offset, len, buffer);
}

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static inline void
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ip_vs_fill_ip4hdr(const void *nh, struct ip_vs_iphdr *iphdr)
{
	const struct iphdr *iph = nh;

	iphdr->len	= iph->ihl * 4;
	iphdr->fragoffs	= 0;
	iphdr->protocol	= iph->protocol;
	iphdr->saddr.ip	= iph->saddr;
	iphdr->daddr.ip	= iph->daddr;
}

/* This function handles filling *ip_vs_iphdr, both for IPv4 and IPv6.
 * IPv6 requires some extra work, as finding proper header position,
 * depend on the IPv6 extension headers.
 */
static inline void
ip_vs_fill_iph_skb(int af, const struct sk_buff *skb, struct ip_vs_iphdr *iphdr)
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{
#ifdef CONFIG_IP_VS_IPV6
	if (af == AF_INET6) {
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		const struct ipv6hdr *iph =
			(struct ipv6hdr *)skb_network_header(skb);
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		iphdr->saddr.in6 = iph->saddr;
		iphdr->daddr.in6 = iph->daddr;
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		/* ipv6_find_hdr() updates len, flags */
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		iphdr->len	 = 0;
		iphdr->flags	 = 0;
		iphdr->protocol  = ipv6_find_hdr(skb, &iphdr->len, -1,
						 &iphdr->fragoffs,
						 &iphdr->flags);
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	} else
#endif
	{
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		const struct iphdr *iph =
			(struct iphdr *)skb_network_header(skb);
		iphdr->len	= iph->ihl * 4;
		iphdr->fragoffs	= 0;
		iphdr->protocol	= iph->protocol;
		iphdr->saddr.ip	= iph->saddr;
		iphdr->daddr.ip	= iph->daddr;
	}
}

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static inline void ip_vs_addr_copy(int af, union nf_inet_addr *dst,
				   const union nf_inet_addr *src)
{
#ifdef CONFIG_IP_VS_IPV6
	if (af == AF_INET6)
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		dst->in6 = src->in6;
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	else
#endif
	dst->ip = src->ip;
}

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static inline void ip_vs_addr_set(int af, union nf_inet_addr *dst,
				  const union nf_inet_addr *src)
{
#ifdef CONFIG_IP_VS_IPV6
	if (af == AF_INET6) {
		dst->in6 = src->in6;
		return;
	}
#endif
	dst->ip = src->ip;
	dst->all[1] = 0;
	dst->all[2] = 0;
	dst->all[3] = 0;
}

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static inline int ip_vs_addr_equal(int af, const union nf_inet_addr *a,
				   const union nf_inet_addr *b)
{
#ifdef CONFIG_IP_VS_IPV6
	if (af == AF_INET6)
		return ipv6_addr_equal(&a->in6, &b->in6);
#endif
	return a->ip == b->ip;
}

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#ifdef CONFIG_IP_VS_DEBUG
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#include <linux/net.h>

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int ip_vs_get_debug_level(void);
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static inline const char *ip_vs_dbg_addr(int af, char *buf, size_t buf_len,
					 const union nf_inet_addr *addr,
					 int *idx)
{
	int len;
#ifdef CONFIG_IP_VS_IPV6
	if (af == AF_INET6)
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		len = snprintf(&buf[*idx], buf_len - *idx, "[%pI6c]",
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			       &addr->in6) + 1;
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	else
#endif
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		len = snprintf(&buf[*idx], buf_len - *idx, "%pI4",
			       &addr->ip) + 1;
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	*idx += len;
	BUG_ON(*idx > buf_len + 1);
	return &buf[*idx - len];
}

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#define IP_VS_DBG_BUF(level, msg, ...)					\
	do {								\
		char ip_vs_dbg_buf[160];				\
		int ip_vs_dbg_idx = 0;					\
		if (level <= ip_vs_get_debug_level())			\
			printk(KERN_DEBUG pr_fmt(msg), ##__VA_ARGS__);	\
	} while (0)
#define IP_VS_ERR_BUF(msg...)						\
	do {								\
		char ip_vs_dbg_buf[160];				\
		int ip_vs_dbg_idx = 0;					\
		pr_err(msg);						\
	} while (0)
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/* Only use from within IP_VS_DBG_BUF() or IP_VS_ERR_BUF macros */
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#define IP_VS_DBG_ADDR(af, addr)					\
	ip_vs_dbg_addr(af, ip_vs_dbg_buf,				\
		       sizeof(ip_vs_dbg_buf), addr,			\
		       &ip_vs_dbg_idx)

#define IP_VS_DBG(level, msg, ...)					\
	do {								\
		if (level <= ip_vs_get_debug_level())			\
			printk(KERN_DEBUG pr_fmt(msg), ##__VA_ARGS__);	\
	} while (0)
#define IP_VS_DBG_RL(msg, ...)						\
	do {								\
		if (net_ratelimit())					\
			printk(KERN_DEBUG pr_fmt(msg), ##__VA_ARGS__);	\
	} while (0)
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#define IP_VS_DBG_PKT(level, af, pp, skb, ofs, msg)			\
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	do {								\
		if (level <= ip_vs_get_debug_level())			\
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			pp->debug_packet(af, pp, skb, ofs, msg);	\
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	} while (0)
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#define IP_VS_DBG_RL_PKT(level, af, pp, skb, ofs, msg)			\
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	do {								\
		if (level <= ip_vs_get_debug_level() &&			\
		    net_ratelimit())					\
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			pp->debug_packet(af, pp, skb, ofs, msg);	\
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	} while (0)
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#else	/* NO DEBUGGING at ALL */
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#define IP_VS_DBG_BUF(level, msg...)  do {} while (0)
#define IP_VS_ERR_BUF(msg...)  do {} while (0)
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#define IP_VS_DBG(level, msg...)  do {} while (0)
#define IP_VS_DBG_RL(msg...)  do {} while (0)
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#define IP_VS_DBG_PKT(level, af, pp, skb, ofs, msg)	do {} while (0)
#define IP_VS_DBG_RL_PKT(level, af, pp, skb, ofs, msg)	do {} while (0)
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#endif

#define IP_VS_BUG() BUG()
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#define IP_VS_ERR_RL(msg, ...)						\
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	do {								\
		if (net_ratelimit())					\
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			pr_err(msg, ##__VA_ARGS__);			\
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	} while (0)
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#ifdef CONFIG_IP_VS_DEBUG
#define EnterFunction(level)						\
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	do {								\
		if (level <= ip_vs_get_debug_level())			\
			printk(KERN_DEBUG				\
			       pr_fmt("Enter: %s, %s line %i\n"),	\
			       __func__, __FILE__, __LINE__);		\
	} while (0)
#define LeaveFunction(level)						\
	do {								\
		if (level <= ip_vs_get_debug_level())			\
			printk(KERN_DEBUG				\
			       pr_fmt("Leave: %s, %s line %i\n"),	\
			       __func__, __FILE__, __LINE__);		\
	} while (0)
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#else
#define EnterFunction(level)   do {} while (0)
#define LeaveFunction(level)   do {} while (0)
#endif

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/* The port number of FTP service (in network order). */
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#define FTPPORT  cpu_to_be16(21)
#define FTPDATA  cpu_to_be16(20)
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/* TCP State Values */
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enum {
	IP_VS_TCP_S_NONE = 0,
	IP_VS_TCP_S_ESTABLISHED,
	IP_VS_TCP_S_SYN_SENT,
	IP_VS_TCP_S_SYN_RECV,
	IP_VS_TCP_S_FIN_WAIT,
	IP_VS_TCP_S_TIME_WAIT,
	IP_VS_TCP_S_CLOSE,
	IP_VS_TCP_S_CLOSE_WAIT,
	IP_VS_TCP_S_LAST_ACK,
	IP_VS_TCP_S_LISTEN,
	IP_VS_TCP_S_SYNACK,
	IP_VS_TCP_S_LAST
};

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/* UDP State Values */
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enum {
	IP_VS_UDP_S_NORMAL,
	IP_VS_UDP_S_LAST,
};

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/* ICMP State Values */
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enum {
	IP_VS_ICMP_S_NORMAL,
	IP_VS_ICMP_S_LAST,
};

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/* SCTP State Values */
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enum ip_vs_sctp_states {
	IP_VS_SCTP_S_NONE,
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	IP_VS_SCTP_S_INIT1,
	IP_VS_SCTP_S_INIT,
	IP_VS_SCTP_S_COOKIE_SENT,
	IP_VS_SCTP_S_COOKIE_REPLIED,
	IP_VS_SCTP_S_COOKIE_WAIT,
	IP_VS_SCTP_S_COOKIE,
	IP_VS_SCTP_S_COOKIE_ECHOED,
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	IP_VS_SCTP_S_ESTABLISHED,
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	IP_VS_SCTP_S_SHUTDOWN_SENT,
	IP_VS_SCTP_S_SHUTDOWN_RECEIVED,
	IP_VS_SCTP_S_SHUTDOWN_ACK_SENT,
	IP_VS_SCTP_S_REJECTED,
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	IP_VS_SCTP_S_CLOSED,
	IP_VS_SCTP_S_LAST
};

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/* Delta sequence info structure
 * Each ip_vs_conn has 2 (output AND input seq. changes).
 * Only used in the VS/NAT.
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 */
struct ip_vs_seq {
	__u32			init_seq;	/* Add delta from this seq */
	__u32			delta;		/* Delta in sequence numbers */
	__u32			previous_delta;	/* Delta in sequence numbers
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						 * before last resized pkt */
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};

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/* counters per cpu */
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struct ip_vs_counters {
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	__u64		conns;		/* connections scheduled */
	__u64		inpkts;		/* incoming packets */
	__u64		outpkts;	/* outgoing packets */
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	__u64		inbytes;	/* incoming bytes */
	__u64		outbytes;	/* outgoing bytes */
};
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/* Stats per cpu */
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struct ip_vs_cpu_stats {
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	struct ip_vs_counters   cnt;
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	struct u64_stats_sync   syncp;
};
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/* IPVS statistics objects */
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struct ip_vs_estimator {
	struct list_head	list;

	u64			last_inbytes;
	u64			last_outbytes;
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	u64			last_conns;
	u64			last_inpkts;
	u64			last_outpkts;

	u64			cps;
	u64			inpps;
	u64			outpps;
	u64			inbps;
	u64			outbps;
};

/*
 * IPVS statistics object, 64-bit kernel version of struct ip_vs_stats_user
 */
struct ip_vs_kstats {
	u64			conns;		/* connections scheduled */
	u64			inpkts;		/* incoming packets */
	u64			outpkts;	/* outgoing packets */
	u64			inbytes;	/* incoming bytes */
	u64			outbytes;	/* outgoing bytes */

	u64			cps;		/* current connection rate */
	u64			inpps;		/* current in packet rate */
	u64			outpps;		/* current out packet rate */
	u64			inbps;		/* current in byte rate */
	u64			outbps;		/* current out byte rate */
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};

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struct ip_vs_stats {
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	struct ip_vs_kstats	kstats;		/* kernel statistics */
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	struct ip_vs_estimator	est;		/* estimator */
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	struct ip_vs_cpu_stats __percpu	*cpustats;	/* per cpu counters */
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	spinlock_t		lock;		/* spin lock */
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	struct ip_vs_kstats	kstats0;	/* reset values */
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};

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struct dst_entry;
struct iphdr;
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struct ip_vs_conn;
struct ip_vs_app;
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struct sk_buff;
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struct ip_vs_proto_data;
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struct ip_vs_protocol {
	struct ip_vs_protocol	*next;
	char			*name;
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	u16			protocol;
	u16			num_states;
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	int			dont_defrag;

	void (*init)(struct ip_vs_protocol *pp);

	void (*exit)(struct ip_vs_protocol *pp);

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	int (*init_netns)(struct net *net, struct ip_vs_proto_data *pd);
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	void (*exit_netns)(struct net *net, struct ip_vs_proto_data *pd);

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	int (*conn_schedule)(int af, struct sk_buff *skb,
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			     struct ip_vs_proto_data *pd,
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			     int *verdict, struct ip_vs_conn **cpp,
			     struct ip_vs_iphdr *iph);
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	struct ip_vs_conn *
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	(*conn_in_get)(int af,
		       const struct sk_buff *skb,
		       const struct ip_vs_iphdr *iph,
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		       int inverse);

	struct ip_vs_conn *
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	(*conn_out_get)(int af,
			const struct sk_buff *skb,
			const struct ip_vs_iphdr *iph,
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			int inverse);

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	int (*snat_handler)(struct sk_buff *skb, struct ip_vs_protocol *pp,
			    struct ip_vs_conn *cp, struct ip_vs_iphdr *iph);
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	int (*dnat_handler)(struct sk_buff *skb, struct ip_vs_protocol *pp,
			    struct ip_vs_conn *cp, struct ip_vs_iphdr *iph);
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	int (*csum_check)(int af, struct sk_buff *skb,
			  struct ip_vs_protocol *pp);
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	const char *(*state_name)(int state);

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	void (*state_transition)(struct ip_vs_conn *cp, int direction,
				 const struct sk_buff *skb,
				 struct ip_vs_proto_data *pd);
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	int (*register_app)(struct net *net, struct ip_vs_app *inc);
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	void (*unregister_app)(struct net *net, struct ip_vs_app *inc);
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	int (*app_conn_bind)(struct ip_vs_conn *cp);

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	void (*debug_packet)(int af, struct ip_vs_protocol *pp,
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			     const struct sk_buff *skb,
			     int offset,
			     const char *msg);

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	void (*timeout_change)(struct ip_vs_proto_data *pd, int flags);
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};

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/* protocol data per netns */
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struct ip_vs_proto_data {
	struct ip_vs_proto_data	*next;
	struct ip_vs_protocol	*pp;
	int			*timeout_table;	/* protocol timeout table */
	atomic_t		appcnt;		/* counter of proto app incs. */
	struct tcp_states_t	*tcp_state_table;
};

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struct ip_vs_protocol   *ip_vs_proto_get(unsigned short proto);
struct ip_vs_proto_data *ip_vs_proto_data_get(struct net *net,
					      unsigned short proto);
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struct ip_vs_conn_param {
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	struct net			*net;
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	const union nf_inet_addr	*caddr;
	const union nf_inet_addr	*vaddr;
	__be16				cport;
	__be16				vport;
	__u16				protocol;
	u16				af;
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	const struct ip_vs_pe		*pe;
	char				*pe_data;
	__u8				pe_data_len;
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};

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/* IP_VS structure allocated for each dynamically scheduled connection */
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struct ip_vs_conn {
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	struct hlist_node	c_list;         /* hashed list heads */
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	/* Protocol, addresses and port numbers */
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	__be16                  cport;
	__be16                  dport;
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	__be16                  vport;
	u16			af;		/* address family */
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	union nf_inet_addr      caddr;          /* client address */
	union nf_inet_addr      vaddr;          /* virtual address */
	union nf_inet_addr      daddr;          /* destination address */
	volatile __u32          flags;          /* status flags */
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	__u16                   protocol;       /* Which protocol (TCP/UDP) */
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	__u16			daf;		/* Address family of the dest */
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#ifdef CONFIG_NET_NS
	struct net              *net;           /* Name space */
#endif
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	/* counter and timer */
	atomic_t		refcnt;		/* reference count */
	struct timer_list	timer;		/* Expiration timer */
	volatile unsigned long	timeout;	/* timeout */

	/* Flags and state transition */
	spinlock_t              lock;           /* lock for state transition */
	volatile __u16          state;          /* state info */
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	volatile __u16          old_state;      /* old state, to be used for
						 * state transition triggerd
						 * synchronization
						 */
547
	__u32			fwmark;		/* Fire wall mark from skb */
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	unsigned long		sync_endtime;	/* jiffies + sent_retries */
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	/* Control members */
	struct ip_vs_conn       *control;       /* Master control connection */
	atomic_t                n_control;      /* Number of controlled ones */
	struct ip_vs_dest       *dest;          /* real server */
	atomic_t                in_pkts;        /* incoming packet counter */

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	/* Packet transmitter for different forwarding methods.  If it
	 * mangles the packet, it must return NF_DROP or better NF_STOLEN,
	 * otherwise this must be changed to a sk_buff **.
	 * NF_ACCEPT can be returned when destination is local.
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	 */
	int (*packet_xmit)(struct sk_buff *skb, struct ip_vs_conn *cp,
562
			   struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
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	/* Note: we can group the following members into a structure,
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	 * in order to save more space, and the following members are
	 * only used in VS/NAT anyway
	 */
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	struct ip_vs_app        *app;           /* bound ip_vs_app object */
	void                    *app_data;      /* Application private data */
	struct ip_vs_seq        in_seq;         /* incoming seq. struct */
	struct ip_vs_seq        out_seq;        /* outgoing seq. struct */
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	const struct ip_vs_pe	*pe;
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	char			*pe_data;
	__u8			pe_data_len;
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	struct rcu_head		rcu_head;
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};

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/* To save some memory in conn table when name space is disabled. */
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static inline struct net *ip_vs_conn_net(const struct ip_vs_conn *cp)
{
#ifdef CONFIG_NET_NS
	return cp->net;
#else
	return &init_net;
#endif
}
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static inline void ip_vs_conn_net_set(struct ip_vs_conn *cp, struct net *net)
{
#ifdef CONFIG_NET_NS
	cp->net = net;
#endif
}

static inline int ip_vs_conn_net_eq(const struct ip_vs_conn *cp,
				    struct net *net)
{
#ifdef CONFIG_NET_NS
	return cp->net == net;
#else
	return 1;
#endif
}
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/* Extended internal versions of struct ip_vs_service_user and ip_vs_dest_user
 * for IPv6 support.
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 *
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 * We need these to conveniently pass around service and destination
 * options, but unfortunately, we also need to keep the old definitions to
 * maintain userspace backwards compatibility for the setsockopt interface.
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 */
struct ip_vs_service_user_kern {
	/* virtual service addresses */
	u16			af;
	u16			protocol;
	union nf_inet_addr	addr;		/* virtual ip address */
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	__be16			port;
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	u32			fwmark;		/* firwall mark of service */

	/* virtual service options */
	char			*sched_name;
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	char			*pe_name;
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	unsigned int		flags;		/* virtual service flags */
	unsigned int		timeout;	/* persistent timeout in sec */
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	__be32			netmask;	/* persistent netmask or plen */
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};


struct ip_vs_dest_user_kern {
	/* destination server address */
	union nf_inet_addr	addr;
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	__be16			port;
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	/* real server options */
637
	unsigned int		conn_flags;	/* connection flags */
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	int			weight;		/* destination weight */

	/* thresholds for active connections */
	u32			u_threshold;	/* upper threshold */
	u32			l_threshold;	/* lower threshold */
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	/* Address family of addr */
	u16			af;
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};


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/*
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 * The information about the virtual service offered to the net and the
 * forwarding entries.
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 */
struct ip_vs_service {
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	struct hlist_node	s_list;   /* for normal service table */
	struct hlist_node	f_list;   /* for fwmark-based service table */
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	atomic_t		refcnt;   /* reference counter */

658
	u16			af;       /* address family */
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	__u16			protocol; /* which protocol (TCP/UDP) */
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	union nf_inet_addr	addr;	  /* IP address for virtual service */
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	__be16			port;	  /* port number for the service */
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	__u32                   fwmark;   /* firewall mark of the service */
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	unsigned int		flags;	  /* service status flags */
	unsigned int		timeout;  /* persistent timeout in ticks */
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	__be32			netmask;  /* grouping granularity, mask/plen */
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	struct net		*net;
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	struct list_head	destinations;  /* real server d-linked list */
	__u32			num_dests;     /* number of servers */
	struct ip_vs_stats      stats;         /* statistics for the service */

	/* for scheduling */
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	struct ip_vs_scheduler __rcu *scheduler; /* bound scheduler object */
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	spinlock_t		sched_lock;    /* lock sched_data */
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	void			*sched_data;   /* scheduler application data */
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	/* alternate persistence engine */
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	struct ip_vs_pe __rcu	*pe;

	struct rcu_head		rcu_head;
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};

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/* Information for cached dst */
struct ip_vs_dest_dst {
	struct dst_entry	*dst_cache;	/* destination cache entry */
	u32			dst_cookie;
	union nf_inet_addr	dst_saddr;
	struct rcu_head		rcu_head;
};
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/* The real server destination forwarding entry with ip address, port number,
 * and so on.
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 */
struct ip_vs_dest {
	struct list_head	n_list;   /* for the dests in the service */
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	struct hlist_node	d_list;   /* for table with all the dests */
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	u16			af;		/* address family */
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	__be16			port;		/* port number of the server */
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	union nf_inet_addr	addr;		/* IP address of the server */
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	volatile unsigned int	flags;		/* dest status flags */
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	atomic_t		conn_flags;	/* flags to copy to conn */
	atomic_t		weight;		/* server weight */

	atomic_t		refcnt;		/* reference counter */
	struct ip_vs_stats      stats;          /* statistics */
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	unsigned long		idle_start;	/* start time, jiffies */
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	/* connection counters and thresholds */
	atomic_t		activeconns;	/* active connections */
	atomic_t		inactconns;	/* inactive connections */
	atomic_t		persistconns;	/* persistent connections */
	__u32			u_threshold;	/* upper threshold */
	__u32			l_threshold;	/* lower threshold */

	/* for destination cache */
	spinlock_t		dst_lock;	/* lock of dst_cache */
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	struct ip_vs_dest_dst __rcu *dest_dst;	/* cached dst info */
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	/* for virtual service */
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	struct ip_vs_service __rcu *svc;	/* service it belongs to */
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	__u16			protocol;	/* which protocol (TCP/UDP) */
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	__be16			vport;		/* virtual port number */
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	union nf_inet_addr	vaddr;		/* virtual IP address */
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	__u32			vfwmark;	/* firewall mark of service */
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	struct list_head	t_list;		/* in dest_trash */
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	unsigned int		in_rs_table:1;	/* we are in rs_table */
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};

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/* The scheduler object */
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struct ip_vs_scheduler {
	struct list_head	n_list;		/* d-linked list head */
	char			*name;		/* scheduler name */
	atomic_t		refcnt;		/* reference counter */
	struct module		*module;	/* THIS_MODULE/NULL */

	/* scheduler initializing service */
	int (*init_service)(struct ip_vs_service *svc);
	/* scheduling service finish */
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	void (*done_service)(struct ip_vs_service *svc);
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	/* dest is linked */
	int (*add_dest)(struct ip_vs_service *svc, struct ip_vs_dest *dest);
	/* dest is unlinked */
	int (*del_dest)(struct ip_vs_service *svc, struct ip_vs_dest *dest);
	/* dest is updated */
	int (*upd_dest)(struct ip_vs_service *svc, struct ip_vs_dest *dest);
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	/* selecting a server from the given service */
	struct ip_vs_dest* (*schedule)(struct ip_vs_service *svc,
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				       const struct sk_buff *skb,
				       struct ip_vs_iphdr *iph);
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};

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/* The persistence engine object */
struct ip_vs_pe {
	struct list_head	n_list;		/* d-linked list head */
	char			*name;		/* scheduler name */
	atomic_t		refcnt;		/* reference counter */
	struct module		*module;	/* THIS_MODULE/NULL */

	/* get the connection template, if any */
	int (*fill_param)(struct ip_vs_conn_param *p, struct sk_buff *skb);
	bool (*ct_match)(const struct ip_vs_conn_param *p,
			 struct ip_vs_conn *ct);
	u32 (*hashkey_raw)(const struct ip_vs_conn_param *p, u32 initval,
			   bool inverse);
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	int (*show_pe_data)(const struct ip_vs_conn *cp, char *buf);
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};
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/* The application module object (a.k.a. app incarnation) */
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struct ip_vs_app {
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	struct list_head	a_list;		/* member in app list */
	int			type;		/* IP_VS_APP_TYPE_xxx */
	char			*name;		/* application module name */
	__u16			protocol;
	struct module		*module;	/* THIS_MODULE/NULL */
	struct list_head	incs_list;	/* list of incarnations */

	/* members for application incarnations */
	struct list_head	p_list;		/* member in proto app list */
	struct ip_vs_app	*app;		/* its real application */
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	__be16			port;		/* port number in net order */
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	atomic_t		usecnt;		/* usage counter */
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	struct rcu_head		rcu_head;
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	/* output hook: Process packet in inout direction, diff set for TCP.
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	 * Return: 0=Error, 1=Payload Not Mangled/Mangled but checksum is ok,
	 *	   2=Mangled but checksum was not updated
	 */
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	int (*pkt_out)(struct ip_vs_app *, struct ip_vs_conn *,
792
		       struct sk_buff *, int *diff);
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	/* input hook: Process packet in outin direction, diff set for TCP.
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	 * Return: 0=Error, 1=Payload Not Mangled/Mangled but checksum is ok,
	 *	   2=Mangled but checksum was not updated
	 */
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	int (*pkt_in)(struct ip_vs_app *, struct ip_vs_conn *,
799
		      struct sk_buff *, int *diff);
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	/* ip_vs_app initializer */
	int (*init_conn)(struct ip_vs_app *, struct ip_vs_conn *);

	/* ip_vs_app finish */
	int (*done_conn)(struct ip_vs_app *, struct ip_vs_conn *);


	/* not used now */
	int (*bind_conn)(struct ip_vs_app *, struct ip_vs_conn *,
			 struct ip_vs_protocol *);

	void (*unbind_conn)(struct ip_vs_app *, struct ip_vs_conn *);

	int *			timeout_table;
	int *			timeouts;
	int			timeouts_size;

	int (*conn_schedule)(struct sk_buff *skb, struct ip_vs_app *app,
			     int *verdict, struct ip_vs_conn **cpp);

	struct ip_vs_conn *
	(*conn_in_get)(const struct sk_buff *skb, struct ip_vs_app *app,
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		       const struct iphdr *iph, int inverse);
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	struct ip_vs_conn *
	(*conn_out_get)(const struct sk_buff *skb, struct ip_vs_app *app,
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			const struct iphdr *iph, int inverse);
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	int (*state_transition)(struct ip_vs_conn *cp, int direction,
				const struct sk_buff *skb,
				struct ip_vs_app *app);

	void (*timeout_change)(struct ip_vs_app *app, int flags);
};

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struct ipvs_master_sync_state {
	struct list_head	sync_queue;
	struct ip_vs_sync_buff	*sync_buff;
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	unsigned long		sync_queue_len;
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	unsigned int		sync_queue_delay;
	struct task_struct	*master_thread;
	struct delayed_work	master_wakeup_work;
	struct netns_ipvs	*ipvs;
};

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/* How much time to keep dests in trash */
#define IP_VS_DEST_TRASH_PERIOD		(120 * HZ)

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/* IPVS in network namespace */
struct netns_ipvs {
	int			gen;		/* Generation */
852
	int			enable;		/* enable like nf_hooks do */
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	/* Hash table: for real service lookups */
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	#define IP_VS_RTAB_BITS 4
	#define IP_VS_RTAB_SIZE (1 << IP_VS_RTAB_BITS)
	#define IP_VS_RTAB_MASK (IP_VS_RTAB_SIZE - 1)

858
	struct hlist_head	rs_table[IP_VS_RTAB_SIZE];
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	/* ip_vs_app */
	struct list_head	app_list;
	/* ip_vs_proto */
	#define IP_VS_PROTO_TAB_SIZE	32	/* must be power of 2 */
	struct ip_vs_proto_data *proto_data_table[IP_VS_PROTO_TAB_SIZE];
	/* ip_vs_proto_tcp */
#ifdef CONFIG_IP_VS_PROTO_TCP
	#define	TCP_APP_TAB_BITS	4
	#define	TCP_APP_TAB_SIZE	(1 << TCP_APP_TAB_BITS)
	#define	TCP_APP_TAB_MASK	(TCP_APP_TAB_SIZE - 1)
	struct list_head	tcp_apps[TCP_APP_TAB_SIZE];
#endif
	/* ip_vs_proto_udp */
#ifdef CONFIG_IP_VS_PROTO_UDP
	#define	UDP_APP_TAB_BITS	4
	#define	UDP_APP_TAB_SIZE	(1 << UDP_APP_TAB_BITS)
	#define	UDP_APP_TAB_MASK	(UDP_APP_TAB_SIZE - 1)
	struct list_head	udp_apps[UDP_APP_TAB_SIZE];
#endif
	/* ip_vs_proto_sctp */
#ifdef CONFIG_IP_VS_PROTO_SCTP
	#define SCTP_APP_TAB_BITS	4
	#define SCTP_APP_TAB_SIZE	(1 << SCTP_APP_TAB_BITS)
	#define SCTP_APP_TAB_MASK	(SCTP_APP_TAB_SIZE - 1)
	/* Hash table for SCTP application incarnations	 */
	struct list_head	sctp_apps[SCTP_APP_TAB_SIZE];
#endif
	/* ip_vs_conn */
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	atomic_t		conn_count;      /* connection counter */
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	/* ip_vs_ctl */
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	struct ip_vs_stats		tot_stats;  /* Statistics & est. */
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	int			num_services;    /* no of virtual services */
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	/* Trash for destinations */
	struct list_head	dest_trash;
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	spinlock_t		dest_trash_lock;
	struct timer_list	dest_trash_timer; /* expiration timer */
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	/* Service counters */
	atomic_t		ftpsvc_counter;
	atomic_t		nullsvc_counter;

#ifdef CONFIG_SYSCTL
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	/* 1/rate drop and drop-entry variables */
	struct delayed_work	defense_work;   /* Work handler */
	int			drop_rate;
	int			drop_counter;
	atomic_t		dropentry;
	/* locks in ctl.c */
	spinlock_t		dropentry_lock;  /* drop entry handling */
	spinlock_t		droppacket_lock; /* drop packet handling */
	spinlock_t		securetcp_lock;  /* state and timeout tables */

	/* sys-ctl struct */
	struct ctl_table_header	*sysctl_hdr;
	struct ctl_table	*sysctl_tbl;
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#endif

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	/* sysctl variables */
	int			sysctl_amemthresh;
	int			sysctl_am_droprate;
	int			sysctl_drop_entry;
	int			sysctl_drop_packet;
	int			sysctl_secure_tcp;
#ifdef CONFIG_IP_VS_NFCT
	int			sysctl_conntrack;
#endif
	int			sysctl_snat_reroute;
	int			sysctl_sync_ver;
929
	int			sysctl_sync_ports;
930
	int			sysctl_sync_persist_mode;
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	unsigned long		sysctl_sync_qlen_max;
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	int			sysctl_sync_sock_size;
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	int			sysctl_cache_bypass;
	int			sysctl_expire_nodest_conn;
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	int			sysctl_sloppy_tcp;
	int			sysctl_sloppy_sctp;
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	int			sysctl_expire_quiescent_template;
	int			sysctl_sync_threshold[2];
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	unsigned int		sysctl_sync_refresh_period;
	int			sysctl_sync_retries;
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	int			sysctl_nat_icmp_send;
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	int			sysctl_pmtu_disc;
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	int			sysctl_backup_only;
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	/* ip_vs_lblc */
	int			sysctl_lblc_expiration;
	struct ctl_table_header	*lblc_ctl_header;
	struct ctl_table	*lblc_ctl_table;
	/* ip_vs_lblcr */
	int			sysctl_lblcr_expiration;
	struct ctl_table_header	*lblcr_ctl_header;
	struct ctl_table	*lblcr_ctl_table;
	/* ip_vs_est */
	struct list_head	est_list;	/* estimator list */
	spinlock_t		est_lock;
	struct timer_list	est_timer;	/* Estimation timer */
	/* ip_vs_sync */
	spinlock_t		sync_lock;
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	struct ipvs_master_sync_state *ms;
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	spinlock_t		sync_buff_lock;
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	struct task_struct	**backup_threads;
	int			threads_mask;
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	int			send_mesg_maxlen;
	int			recv_mesg_maxlen;
	volatile int		sync_state;
	volatile int		master_syncid;
	volatile int		backup_syncid;
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	struct mutex		sync_mutex;
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	/* multicast interface name */
	char			master_mcast_ifn[IP_VS_IFNAME_MAXLEN];
	char			backup_mcast_ifn[IP_VS_IFNAME_MAXLEN];
	/* net name space ptr */
	struct net		*net;            /* Needed by timer routines */
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	/* Number of heterogeneous destinations, needed becaus heterogeneous
	 * are not supported when synchronization is enabled.
	 */
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	unsigned int		mixed_address_family_dests;
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};
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#define DEFAULT_SYNC_THRESHOLD	3
#define DEFAULT_SYNC_PERIOD	50
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#define DEFAULT_SYNC_VER	1
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#define DEFAULT_SLOPPY_TCP	0
#define DEFAULT_SLOPPY_SCTP	0
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#define DEFAULT_SYNC_REFRESH_PERIOD	(0U * HZ)
#define DEFAULT_SYNC_RETRIES		0
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#define IPVS_SYNC_WAKEUP_RATE	8
#define IPVS_SYNC_QLEN_MAX	(IPVS_SYNC_WAKEUP_RATE * 4)
#define IPVS_SYNC_SEND_DELAY	(HZ / 50)
#define IPVS_SYNC_CHECK_PERIOD	HZ
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#define IPVS_SYNC_FLUSH_TIME	(HZ * 2)
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#define IPVS_SYNC_PORTS_MAX	(1 << 6)
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#ifdef CONFIG_SYSCTL

static inline int sysctl_sync_threshold(struct netns_ipvs *ipvs)
{
	return ipvs->sysctl_sync_threshold[0];
}

static inline int sysctl_sync_period(struct netns_ipvs *ipvs)
{
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	return ACCESS_ONCE(ipvs->sysctl_sync_threshold[1]);
}

static inline unsigned int sysctl_sync_refresh_period(struct netns_ipvs *ipvs)
{
	return ACCESS_ONCE(ipvs->sysctl_sync_refresh_period);
}

static inline int sysctl_sync_retries(struct netns_ipvs *ipvs)
{
	return ipvs->sysctl_sync_retries;
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}

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static inline int sysctl_sync_ver(struct netns_ipvs *ipvs)
{
	return ipvs->sysctl_sync_ver;
}

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static inline int sysctl_sloppy_tcp(struct netns_ipvs *ipvs)
{
	return ipvs->sysctl_sloppy_tcp;
}

static inline int sysctl_sloppy_sctp(struct netns_ipvs *ipvs)
{
	return ipvs->sysctl_sloppy_sctp;
}

1031 1032 1033 1034 1035
static inline int sysctl_sync_ports(struct netns_ipvs *ipvs)
{
	return ACCESS_ONCE(ipvs->sysctl_sync_ports);
}

1036 1037 1038 1039 1040
static inline int sysctl_sync_persist_mode(struct netns_ipvs *ipvs)
{
	return ipvs->sysctl_sync_persist_mode;
}

1041
static inline unsigned long sysctl_sync_qlen_max(struct netns_ipvs *ipvs)
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{
	return ipvs->sysctl_sync_qlen_max;
}

static inline int sysctl_sync_sock_size(struct netns_ipvs *ipvs)
{
	return ipvs->sysctl_sync_sock_size;
}

1051 1052 1053 1054 1055
static inline int sysctl_pmtu_disc(struct netns_ipvs *ipvs)
{
	return ipvs->sysctl_pmtu_disc;
}

1056 1057 1058 1059 1060 1061
static inline int sysctl_backup_only(struct netns_ipvs *ipvs)
{
	return ipvs->sync_state & IP_VS_STATE_BACKUP &&
	       ipvs->sysctl_backup_only;
}

1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073
#else

static inline int sysctl_sync_threshold(struct netns_ipvs *ipvs)
{
	return DEFAULT_SYNC_THRESHOLD;
}

static inline int sysctl_sync_period(struct netns_ipvs *ipvs)
{
	return DEFAULT_SYNC_PERIOD;
}

1074 1075 1076 1077 1078 1079 1080 1081 1082 1083
static inline unsigned int sysctl_sync_refresh_period(struct netns_ipvs *ipvs)
{
	return DEFAULT_SYNC_REFRESH_PERIOD;
}

static inline int sysctl_sync_retries(struct netns_ipvs *ipvs)
{
	return DEFAULT_SYNC_RETRIES & 3;
}

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static inline int sysctl_sync_ver(struct netns_ipvs *ipvs)
{
	return DEFAULT_SYNC_VER;
}

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static inline int sysctl_sloppy_tcp(struct netns_ipvs *ipvs)
{
	return DEFAULT_SLOPPY_TCP;
}

static inline int sysctl_sloppy_sctp(struct netns_ipvs *ipvs)
{
	return DEFAULT_SLOPPY_SCTP;
}

1099 1100 1101 1102 1103
static inline int sysctl_sync_ports(struct netns_ipvs *ipvs)
{
	return 1;
}

1104 1105 1106 1107 1108
static inline int sysctl_sync_persist_mode(struct netns_ipvs *ipvs)
{
	return 0;
}

1109
static inline unsigned long sysctl_sync_qlen_max(struct netns_ipvs *ipvs)
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{
	return IPVS_SYNC_QLEN_MAX;
}

static inline int sysctl_sync_sock_size(struct netns_ipvs *ipvs)
{
	return 0;
}

1119 1120 1121 1122 1123
static inline int sysctl_pmtu_disc(struct netns_ipvs *ipvs)
{
	return 1;
}

1124 1125 1126 1127 1128
static inline int sysctl_backup_only(struct netns_ipvs *ipvs)
{
	return 0;
}

1129 1130
#endif

1131 1132
/* IPVS core functions
 * (from ip_vs_core.c)
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 */
1134 1135
const char *ip_vs_proto_name(unsigned int proto);
void ip_vs_init_hash_table(struct list_head *table, int rows);
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#define IP_VS_INIT_HASH_TABLE(t) ip_vs_init_hash_table((t), ARRAY_SIZE((t)))
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#define IP_VS_APP_TYPE_FTP	1

1140 1141
/* ip_vs_conn handling functions
 * (from ip_vs_conn.c)
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 */
enum {
	IP_VS_DIR_INPUT = 0,
	IP_VS_DIR_OUTPUT,
	IP_VS_DIR_INPUT_ONLY,
	IP_VS_DIR_LAST,
};

1150
static inline void ip_vs_conn_fill_param(struct net *net, int af, int protocol,
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					 const union nf_inet_addr *caddr,
					 __be16 cport,
					 const union nf_inet_addr *vaddr,
					 __be16 vport,
					 struct ip_vs_conn_param *p)
{
1157
	p->net = net;
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	p->af = af;
	p->protocol = protocol;
	p->caddr = caddr;
	p->cport = cport;
	p->vaddr = vaddr;
	p->vport = vport;
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	p->pe = NULL;
	p->pe_data = NULL;
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}
1167

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struct ip_vs_conn *ip_vs_conn_in_get(const struct ip_vs_conn_param *p);
struct ip_vs_conn *ip_vs_ct_in_get(const struct ip_vs_conn_param *p);
1170

1171 1172 1173 1174
struct ip_vs_conn * ip_vs_conn_in_get_proto(int af, const struct sk_buff *skb,
					    const struct ip_vs_iphdr *iph,
					    int inverse);

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struct ip_vs_conn *ip_vs_conn_out_get(const struct ip_vs_conn_param *p);
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1177 1178 1179 1180
struct ip_vs_conn * ip_vs_conn_out_get_proto(int af, const struct sk_buff *skb,
					     const struct ip_vs_iphdr *iph,
					     int inverse);

1181 1182 1183 1184 1185 1186 1187 1188 1189
/* Get reference to gain full access to conn.
 * By default, RCU read-side critical sections have access only to
 * conn fields and its PE data, see ip_vs_conn_rcu_free() for reference.
 */
static inline bool __ip_vs_conn_get(struct ip_vs_conn *cp)
{
	return atomic_inc_not_zero(&cp->refcnt);
}

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/* put back the conn without restarting its timer */
static inline void __ip_vs_conn_put(struct ip_vs_conn *cp)
{
1193
	smp_mb__before_atomic();
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	atomic_dec(&cp->refcnt);
}
1196 1197
void ip_vs_conn_put(struct ip_vs_conn *cp);
void ip_vs_conn_fill_cport(struct ip_vs_conn *cp, __be16 cport);
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1199
struct ip_vs_conn *ip_vs_conn_new(const struct ip_vs_conn_param *p, int dest_af,
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				  const union nf_inet_addr *daddr,
1201
				  __be16 dport, unsigned int flags,
1202
				  struct ip_vs_dest *dest, __u32 fwmark);
1203
void ip_vs_conn_expire_now(struct ip_vs_conn *cp);
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1205
const char *ip_vs_state_name(__u16 proto, int state);
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1207 1208 1209 1210 1211
void ip_vs_tcp_conn_listen(struct net *net, struct ip_vs_conn *cp);
int ip_vs_check_template(struct ip_vs_conn *ct);
void ip_vs_random_dropentry(struct net *net);
int ip_vs_conn_init(void);
void ip_vs_conn_cleanup(void);
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static inline void ip_vs_control_del(struct ip_vs_conn *cp)
{
	struct ip_vs_conn *ctl_cp = cp->control;
	if (!ctl_cp) {
1217 1218 1219 1220 1221 1222 1223
		IP_VS_ERR_BUF("request control DEL for uncontrolled: "
			      "%s:%d to %s:%d\n",
			      IP_VS_DBG_ADDR(cp->af, &cp->caddr),
			      ntohs(cp->cport),
			      IP_VS_DBG_ADDR(cp->af, &cp->vaddr),
			      ntohs(cp->vport));

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		return;
	}

1227 1228 1229 1230 1231 1232
	IP_VS_DBG_BUF(7, "DELeting control for: "
		      "cp.dst=%s:%d ctl_cp.dst=%s:%d\n",
		      IP_VS_DBG_ADDR(cp->af, &cp->caddr),
		      ntohs(cp->cport),
		      IP_VS_DBG_ADDR(cp->af, &ctl_cp->caddr),
		      ntohs(ctl_cp->cport));
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	cp->control = NULL;
	if (atomic_read(&ctl_cp->n_control) == 0) {
1236 1237 1238 1239 1240 1241 1242
		IP_VS_ERR_BUF("BUG control DEL with n=0 : "
			      "%s:%d to %s:%d\n",
			      IP_VS_DBG_ADDR(cp->af, &cp->caddr),
			      ntohs(cp->cport),
			      IP_VS_DBG_ADDR(cp->af, &cp->vaddr),
			      ntohs(cp->vport));

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		return;
	}
	atomic_dec(&ctl_cp->n_control);
}

static inline void
ip_vs_control_add(struct ip_vs_conn *cp, struct ip_vs_conn *ctl_cp)
{
	if (cp->control) {
1252 1253 1254 1255 1256 1257 1258
		IP_VS_ERR_BUF("request control ADD for already controlled: "
			      "%s:%d to %s:%d\n",
			      IP_VS_DBG_ADDR(cp->af, &cp->caddr),
			      ntohs(cp->cport),
			      IP_VS_DBG_ADDR(cp->af, &cp->vaddr),
			      ntohs(cp->vport));

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		ip_vs_control_del(cp);
	}

1262 1263 1264 1265 1266 1267
	IP_VS_DBG_BUF(7, "ADDing control for: "
		      "cp.dst=%s:%d ctl_cp.dst=%s:%d\n",
		      IP_VS_DBG_ADDR(cp->af, &cp->caddr),
		      ntohs(cp->cport),
		      IP_VS_DBG_ADDR(cp->af, &ctl_cp->caddr),
		      ntohs(ctl_cp->cport));
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	cp->control = ctl_cp;
	atomic_inc(&ctl_cp->n_control);
}

1273
/* IPVS netns init & cleanup functions */
1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286
int ip_vs_estimator_net_init(struct net *net);
int ip_vs_control_net_init(struct net *net);
int ip_vs_protocol_net_init(struct net *net);
int ip_vs_app_net_init(struct net *net);
int ip_vs_conn_net_init(struct net *net);
int ip_vs_sync_net_init(struct net *net);
void ip_vs_conn_net_cleanup(struct net *net);
void ip_vs_app_net_cleanup(struct net *net);
void ip_vs_protocol_net_cleanup(struct net *net);
void ip_vs_control_net_cleanup(struct net *net);
void ip_vs_estimator_net_cleanup(struct net *net);
void ip_vs_sync_net_cleanup(struct net *net);
void ip_vs_service_net_cleanup(struct net *net);
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1288 1289
/* IPVS application functions
 * (from ip_vs_app.c)
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 */
#define IP_VS_APP_MAX_PORTS  8
1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302
struct ip_vs_app *register_ip_vs_app(struct net *net, struct ip_vs_app *app);
void unregister_ip_vs_app(struct net *net, struct ip_vs_app *app);
int ip_vs_bind_app(struct ip_vs_conn *cp, struct ip_vs_protocol *pp);
void ip_vs_unbind_app(struct ip_vs_conn *cp);
int register_ip_vs_app_inc(struct net *net, struct ip_vs_app *app, __u16 proto,
			   __u16 port);
int ip_vs_app_inc_get(struct ip_vs_app *inc);
void ip_vs_app_inc_put(struct ip_vs_app *inc);

int ip_vs_app_pkt_out(struct ip_vs_conn *, struct sk_buff *skb);
int ip_vs_app_pkt_in(struct ip_vs_conn *, struct sk_buff *skb);
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1304 1305
int register_ip_vs_pe(struct ip_vs_pe *pe);
int unregister_ip_vs_pe(struct ip_vs_pe *pe);
1306
struct ip_vs_pe *ip_vs_pe_getbyname(const char *name);
1307
struct ip_vs_pe *__ip_vs_pe_getbyname(const char *pe_name);
1308

1309
/* Use a #define to avoid all of module.h just for these trivial ops */
1310 1311
#define ip_vs_pe_get(pe)			\
	if (pe && pe->module)			\
1312 1313
		__module_get(pe->module);

1314 1315
#define ip_vs_pe_put(pe)			\
	if (pe && pe->module)			\
1316
		module_put(pe->module);
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1318
/* IPVS protocol functions (from ip_vs_proto.c) */
1319 1320 1321 1322 1323 1324 1325 1326 1327
int ip_vs_protocol_init(void);
void ip_vs_protocol_cleanup(void);
void ip_vs_protocol_timeout_change(struct netns_ipvs *ipvs, int flags);
int *ip_vs_create_timeout_table(int *table, int size);
int ip_vs_set_state_timeout(int *table, int num, const char *const *names,
			    const char *name, int to);
void ip_vs_tcpudp_debug_packet(int af, struct ip_vs_protocol *pp,
			       const struct sk_buff *skb, int offset,
			       const char *msg);
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extern struct ip_vs_protocol ip_vs_protocol_tcp;
extern struct ip_vs_protocol ip_vs_protocol_udp;
extern struct ip_vs_protocol ip_vs_protocol_icmp;
extern struct ip_vs_protocol ip_vs_protocol_esp;
extern struct ip_vs_protocol ip_vs_protocol_ah;
1334
extern struct ip_vs_protocol ip_vs_protocol_sctp;
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1336 1337
/* Registering/unregistering scheduler functions
 * (from ip_vs_sched.c)
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 */
1339 1340 1341 1342 1343 1344 1345 1346 1347
int register_ip_vs_scheduler(struct ip_vs_scheduler *scheduler);
int unregister_ip_vs_scheduler(struct ip_vs_scheduler *scheduler);
int ip_vs_bind_scheduler(struct ip_vs_service *svc,
			 struct ip_vs_scheduler *scheduler);
void ip_vs_unbind_scheduler(struct ip_vs_service *svc,
			    struct ip_vs_scheduler *sched);
struct ip_vs_scheduler *ip_vs_scheduler_get(const char *sched_name);
void ip_vs_scheduler_put(struct ip_vs_scheduler *scheduler);
struct ip_vs_conn *
1348
ip_vs_schedule(struct ip_vs_service *svc, struct sk_buff *skb,
1349 1350
	       struct ip_vs_proto_data *pd, int *ignored,
	       struct ip_vs_iphdr *iph);
1351 1352
int ip_vs_leave(struct ip_vs_service *svc, struct sk_buff *skb,
		struct ip_vs_proto_data *pd, struct ip_vs_iphdr *iph);
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1354
void ip_vs_scheduler_err(struct ip_vs_service *svc, const char *msg);
1355

1356
/* IPVS control data and functions (from ip_vs_ctl.c) */
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extern struct ip_vs_stats ip_vs_stats;
1358
extern int sysctl_ip_vs_sync_ver;
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1360
struct ip_vs_service *
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ip_vs_service_find(struct net *net, int af, __u32 fwmark, __u16 protocol,
1362
		  const union nf_inet_addr *vaddr, __be16 vport);
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1364 1365 1366 1367 1368 1369 1370 1371 1372 1373
bool ip_vs_has_real_service(struct net *net, int af, __u16 protocol,
			    const union nf_inet_addr *daddr, __be16 dport);

int ip_vs_use_count_inc(void);
void ip_vs_use_count_dec(void);
int ip_vs_register_nl_ioctl(void);
void ip_vs_unregister_nl_ioctl(void);
int ip_vs_control_init(void);
void ip_vs_control_cleanup(void);
struct ip_vs_dest *
1374 1375 1376
ip_vs_find_dest(struct net *net, int svc_af, int dest_af,
		const union nf_inet_addr *daddr, __be16 dport,
		const union nf_inet_addr *vaddr, __be16 vport,
1377
		__u16 protocol, __u32 fwmark, __u32 flags);
1378
void ip_vs_try_bind_dest(struct ip_vs_conn *cp);
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1380 1381 1382 1383 1384 1385 1386
static inline void ip_vs_dest_hold(struct ip_vs_dest *dest)
{
	atomic_inc(&dest->refcnt);
}

static inline void ip_vs_dest_put(struct ip_vs_dest *dest)
{
1387
	smp_mb__before_atomic();
1388 1389
	atomic_dec(&dest->refcnt);
}
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1391 1392 1393 1394 1395 1396
static inline void ip_vs_dest_put_and_free(struct ip_vs_dest *dest)
{
	if (atomic_dec_return(&dest->refcnt) < 0)
		kfree(dest);
}

1397 1398
/* IPVS sync daemon data and function prototypes
 * (from ip_vs_sync.c)
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 */
1400 1401 1402
int start_sync_thread(struct net *net, int state, char *mcast_ifn, __u8 syncid);
int stop_sync_thread(struct net *net, int state);
void ip_vs_sync_conn(struct net *net, struct ip_vs_conn *cp, int pkts);
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1404
/* IPVS rate estimator prototypes (from ip_vs_est.c) */
1405 1406 1407
void ip_vs_start_estimator(struct net *net, struct ip_vs_stats *stats);
void ip_vs_stop_estimator(struct net *net, struct ip_vs_stats *stats);
void ip_vs_zero_estimator(struct ip_vs_stats *stats);
1408
void ip_vs_read_estimator(struct ip_vs_kstats *dst, struct ip_vs_stats *stats);
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1410
/* Various IPVS packet transmitters (from ip_vs_xmit.c) */
1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424
int ip_vs_null_xmit(struct sk_buff *skb, struct ip_vs_conn *cp,
		    struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_bypass_xmit(struct sk_buff *skb, struct ip_vs_conn *cp,
		      struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_nat_xmit(struct sk_buff *skb, struct ip_vs_conn *cp,
		   struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_tunnel_xmit(struct sk_buff *skb, struct ip_vs_conn *cp,
		      struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_dr_xmit(struct sk_buff *skb, struct ip_vs_conn *cp,
		  struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_icmp_xmit(struct sk_buff *skb, struct ip_vs_conn *cp,
		    struct ip_vs_protocol *pp, int offset,
		    unsigned int hooknum, struct ip_vs_iphdr *iph);
void ip_vs_dest_dst_rcu_free(struct rcu_head *head);
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1426
#ifdef CONFIG_IP_VS_IPV6
1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437
int ip_vs_bypass_xmit_v6(struct sk_buff *skb, struct ip_vs_conn *cp,
			 struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_nat_xmit_v6(struct sk_buff *skb, struct ip_vs_conn *cp,
		      struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_tunnel_xmit_v6(struct sk_buff *skb, struct ip_vs_conn *cp,
			 struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_dr_xmit_v6(struct sk_buff *skb, struct ip_vs_conn *cp,
		     struct ip_vs_protocol *pp, struct ip_vs_iphdr *iph);
int ip_vs_icmp_xmit_v6(struct sk_buff *skb, struct ip_vs_conn *cp,
		       struct ip_vs_protocol *pp, int offset,
		       unsigned int hooknum, struct ip_vs_iphdr *iph);
1438
#endif
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1440
#ifdef CONFIG_SYSCTL
1441 1442 1443
/* This is a simple mechanism to ignore packets when
 * we are loaded. Just set ip_vs_drop_rate to 'n' and
 * we start to drop 1/rate of the packets
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 */
1445
static inline int ip_vs_todrop(struct netns_ipvs *ipvs)
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{
1447 1448 1449 1450 1451
	if (!ipvs->drop_rate)
		return 0;
	if (--ipvs->drop_counter > 0)
		return 0;
	ipvs->drop_counter = ipvs->drop_rate;
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	return 1;
}
1454 1455 1456
#else
static inline int ip_vs_todrop(struct netns_ipvs *ipvs) { return 0; }
#endif
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1458
/* ip_vs_fwd_tag returns the forwarding tag of the connection */
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#define IP_VS_FWD_METHOD(cp)  (cp->flags & IP_VS_CONN_F_FWD_MASK)

1461
static inline char ip_vs_fwd_tag(struct ip_vs_conn *cp)
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{
	char fwd;

	switch (IP_VS_FWD_METHOD(cp)) {
	case IP_VS_CONN_F_MASQ:
		fwd = 'M'; break;
	case IP_VS_CONN_F_LOCALNODE:
		fwd = 'L'; break;
	case IP_VS_CONN_F_TUNNEL:
		fwd = 'T'; break;
	case IP_VS_CONN_F_DROUTE:
		fwd = 'R'; break;
	case IP_VS_CONN_F_BYPASS:
		fwd = 'B'; break;
	default:
		fwd = '?'; break;
	}
	return fwd;
}

1482 1483
void ip_vs_nat_icmp(struct sk_buff *skb, struct ip_vs_protocol *pp,
		    struct ip_vs_conn *cp, int dir);
1484 1485

#ifdef CONFIG_IP_VS_IPV6
1486 1487
void ip_vs_nat_icmp_v6(struct sk_buff *skb, struct ip_vs_protocol *pp,
		       struct ip_vs_conn *cp, int dir);
1488
#endif
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1490
__sum16 ip_vs_checksum_complete(struct sk_buff *skb, int offset);
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1492
static inline __wsum ip_vs_check_diff4(__be32 old, __be32 new, __wsum oldsum)
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1493
{
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1494
	__be32 diff[2] = { ~old, new };
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1496
	return csum_partial(diff, sizeof(diff), oldsum);
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}

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#ifdef CONFIG_IP_VS_IPV6
static inline __wsum ip_vs_check_diff16(const __be32 *old, const __be32 *new,
					__wsum oldsum)
{
	__be32 diff[8] = { ~old[3], ~old[2], ~old[1], ~old[0],
			    new[3],  new[2],  new[1],  new[0] };

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	return csum_partial(diff, sizeof(diff), oldsum);
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}
#endif

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Al Viro 已提交
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static inline __wsum ip_vs_check_diff2(__be16 old, __be16 new, __wsum oldsum)
{
	__be16 diff[2] = { ~old, new };

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	return csum_partial(diff, sizeof(diff), oldsum);
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Linus Torvalds 已提交
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}

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/* Forget current conntrack (unconfirmed) and attach notrack entry */
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Julian Anastasov 已提交
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static inline void ip_vs_notrack(struct sk_buff *skb)
{
#if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE)
	enum ip_conntrack_info ctinfo;
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	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
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Julian Anastasov 已提交
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	if (!ct || !nf_ct_is_untracked(ct)) {
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		nf_conntrack_put(skb->nfct);
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Julian Anastasov 已提交
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		skb->nfct = &nf_ct_untracked_get()->ct_general;
		skb->nfctinfo = IP_CT_NEW;
		nf_conntrack_get(skb->nfct);
	}
#endif
}

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#ifdef CONFIG_IP_VS_NFCT
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/* Netfilter connection tracking
 * (from ip_vs_nfct.c)
1536
 */
1537
static inline int ip_vs_conntrack_enabled(struct netns_ipvs *ipvs)
1538
{
1539
#ifdef CONFIG_SYSCTL
1540
	return ipvs->sysctl_conntrack;
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#else
	return 0;
#endif
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}

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void ip_vs_update_conntrack(struct sk_buff *skb, struct ip_vs_conn *cp,
			    int outin);
int ip_vs_confirm_conntrack(struct sk_buff *skb);
void ip_vs_nfct_expect_related(struct sk_buff *skb, struct nf_conn *ct,
			       struct ip_vs_conn *cp, u_int8_t proto,
			       const __be16 port, int from_rs);
void ip_vs_conn_drop_conntrack(struct ip_vs_conn *cp);
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#else

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static inline int ip_vs_conntrack_enabled(struct netns_ipvs *ipvs)
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{
	return 0;
}

static inline void ip_vs_update_conntrack(struct sk_buff *skb,
					  struct ip_vs_conn *cp, int outin)
{
}

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static inline int ip_vs_confirm_conntrack(struct sk_buff *skb)
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{
	return NF_ACCEPT;
}

static inline void ip_vs_conn_drop_conntrack(struct ip_vs_conn *cp)
{
}
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#endif /* CONFIG_IP_VS_NFCT */
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Julian Anastasov 已提交
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static inline int
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ip_vs_dest_conn_overhead(struct ip_vs_dest *dest)
{
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	/* We think the overhead of processing active connections is 256
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	 * times higher than that of inactive connections in average. (This
	 * 256 times might not be accurate, we will change it later) We
	 * use the following formula to estimate the overhead now:
	 *		  dest->activeconns*256 + dest->inactconns
	 */
	return (atomic_read(&dest->activeconns) << 8) +
		atomic_read(&dest->inactconns);
}

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#endif	/* _NET_IP_VS_H */