xfrm.h 52.9 KB
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#ifndef _NET_XFRM_H
#define _NET_XFRM_H

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#include <linux/compiler.h>
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#include <linux/xfrm.h>
#include <linux/spinlock.h>
#include <linux/list.h>
#include <linux/skbuff.h>
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#include <linux/socket.h>
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#include <linux/pfkeyv2.h>
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#include <linux/ipsec.h>
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#include <linux/in6.h>
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#include <linux/mutex.h>
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#include <linux/audit.h>
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#include <linux/slab.h>
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#include <linux/refcount.h>
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#include <net/sock.h>
#include <net/dst.h>
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#include <net/ip.h>
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#include <net/route.h>
#include <net/ipv6.h>
#include <net/ip6_fib.h>
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#include <net/flow.h>
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#include <linux/interrupt.h>

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#ifdef CONFIG_XFRM_STATISTICS
#include <net/snmp.h>
#endif
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#define XFRM_PROTO_ESP		50
#define XFRM_PROTO_AH		51
#define XFRM_PROTO_COMP		108
#define XFRM_PROTO_IPIP		4
#define XFRM_PROTO_IPV6		41
#define XFRM_PROTO_ROUTING	IPPROTO_ROUTING
#define XFRM_PROTO_DSTOPTS	IPPROTO_DSTOPTS

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#define XFRM_ALIGN4(len)	(((len) + 3) & ~3)
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#define XFRM_ALIGN8(len)	(((len) + 7) & ~7)
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#define MODULE_ALIAS_XFRM_MODE(family, encap) \
	MODULE_ALIAS("xfrm-mode-" __stringify(family) "-" __stringify(encap))
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#define MODULE_ALIAS_XFRM_TYPE(family, proto) \
	MODULE_ALIAS("xfrm-type-" __stringify(family) "-" __stringify(proto))
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#ifdef CONFIG_XFRM_STATISTICS
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#define XFRM_INC_STATS(net, field)	SNMP_INC_STATS((net)->mib.xfrm_statistics, field)
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#else
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#define XFRM_INC_STATS(net, field)	((void)(net))
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#endif

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/* Organization of SPD aka "XFRM rules"
   ------------------------------------

   Basic objects:
   - policy rule, struct xfrm_policy (=SPD entry)
   - bundle of transformations, struct dst_entry == struct xfrm_dst (=SA bundle)
   - instance of a transformer, struct xfrm_state (=SA)
   - template to clone xfrm_state, struct xfrm_tmpl

   SPD is plain linear list of xfrm_policy rules, ordered by priority.
   (To be compatible with existing pfkeyv2 implementations,
   many rules with priority of 0x7fffffff are allowed to exist and
   such rules are ordered in an unpredictable way, thanks to bsd folks.)

   Lookup is plain linear search until the first match with selector.

   If "action" is "block", then we prohibit the flow, otherwise:
   if "xfrms_nr" is zero, the flow passes untransformed. Otherwise,
   policy entry has list of up to XFRM_MAX_DEPTH transformations,
   described by templates xfrm_tmpl. Each template is resolved
   to a complete xfrm_state (see below) and we pack bundle of transformations
   to a dst_entry returned to requestor.

   dst -. xfrm  .-> xfrm_state #1
    |---. child .-> dst -. xfrm .-> xfrm_state #2
                     |---. child .-> dst -. xfrm .-> xfrm_state #3
                                      |---. child .-> NULL

   Bundles are cached at xrfm_policy struct (field ->bundles).


   Resolution of xrfm_tmpl
   -----------------------
   Template contains:
   1. ->mode		Mode: transport or tunnel
   2. ->id.proto	Protocol: AH/ESP/IPCOMP
   3. ->id.daddr	Remote tunnel endpoint, ignored for transport mode.
      Q: allow to resolve security gateway?
   4. ->id.spi          If not zero, static SPI.
   5. ->saddr		Local tunnel endpoint, ignored for transport mode.
   6. ->algos		List of allowed algos. Plain bitmask now.
      Q: ealgos, aalgos, calgos. What a mess...
   7. ->share		Sharing mode.
      Q: how to implement private sharing mode? To add struct sock* to
      flow id?

   Having this template we search through SAD searching for entries
   with appropriate mode/proto/algo, permitted by selector.
   If no appropriate entry found, it is requested from key manager.

   PROBLEMS:
   Q: How to find all the bundles referring to a physical path for
      PMTU discovery? Seems, dst should contain list of all parents...
      and enter to infinite locking hierarchy disaster.
      No! It is easier, we will not search for them, let them find us.
      We add genid to each dst plus pointer to genid of raw IP route,
      pmtu disc will update pmtu on raw IP route and increase its genid.
      dst_check() will see this for top level and trigger resyncing
      metrics. Plus, it will be made via sk->sk_dst_cache. Solved.
 */

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struct xfrm_state_walk {
	struct list_head	all;
	u8			state;
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	u8			dying;
	u8			proto;
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	u32			seq;
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	struct xfrm_address_filter *filter;
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};

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struct xfrm_state_offload {
	struct net_device	*dev;
	unsigned long		offload_handle;
	unsigned int		num_exthdrs;
	u8			flags;
};

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/* Full description of state of transformer. */
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struct xfrm_state {
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	possible_net_t		xs_net;
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	union {
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		struct hlist_node	gclist;
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		struct hlist_node	bydst;
	};
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	struct hlist_node	bysrc;
	struct hlist_node	byspi;
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	refcount_t		refcnt;
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	spinlock_t		lock;

	struct xfrm_id		id;
	struct xfrm_selector	sel;
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	struct xfrm_mark	mark;
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	u32			tfcpad;
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	u32			genid;

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	/* Key manager bits */
	struct xfrm_state_walk	km;
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	/* Parameters of this state. */
	struct {
		u32		reqid;
		u8		mode;
		u8		replay_window;
		u8		aalgo, ealgo, calgo;
		u8		flags;
		u16		family;
		xfrm_address_t	saddr;
		int		header_len;
		int		trailer_len;
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		u32		extra_flags;
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	} props;

	struct xfrm_lifetime_cfg lft;

	/* Data for transformer */
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	struct xfrm_algo_auth	*aalg;
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	struct xfrm_algo	*ealg;
	struct xfrm_algo	*calg;
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	struct xfrm_algo_aead	*aead;
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	const char		*geniv;
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	/* Data for encapsulator */
	struct xfrm_encap_tmpl	*encap;

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	/* Data for care-of address */
	xfrm_address_t	*coaddr;

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	/* IPComp needs an IPIP tunnel for handling uncompressed packets */
	struct xfrm_state	*tunnel;

	/* If a tunnel, number of users + 1 */
	atomic_t		tunnel_users;

	/* State for replay detection */
	struct xfrm_replay_state replay;
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	struct xfrm_replay_state_esn *replay_esn;
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	/* Replay detection state at the time we sent the last notification */
	struct xfrm_replay_state preplay;
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	struct xfrm_replay_state_esn *preplay_esn;
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	/* The functions for replay detection. */
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	const struct xfrm_replay *repl;
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	/* internal flag that only holds state for delayed aevent at the
	 * moment
	*/
	u32			xflags;

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	/* Replay detection notification settings */
	u32			replay_maxage;
	u32			replay_maxdiff;

	/* Replay detection notification timer */
	struct timer_list	rtimer;

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	/* Statistics */
	struct xfrm_stats	stats;

	struct xfrm_lifetime_cur curlft;
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	struct tasklet_hrtimer	mtimer;
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	struct xfrm_state_offload xso;

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	/* used to fix curlft->add_time when changing date */
	long		saved_tmo;

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	/* Last used time */
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	unsigned long		lastused;
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	struct page_frag xfrag;

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	/* Reference to data common to all the instances of this
	 * transformer. */
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	const struct xfrm_type	*type;
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	struct xfrm_mode	*inner_mode;
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	struct xfrm_mode	*inner_mode_iaf;
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	struct xfrm_mode	*outer_mode;
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	const struct xfrm_type_offload	*type_offload;

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	/* Security context */
	struct xfrm_sec_ctx	*security;

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	/* Private data of this transformer, format is opaque,
	 * interpreted by xfrm_type methods. */
	void			*data;
};

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static inline struct net *xs_net(struct xfrm_state *x)
{
	return read_pnet(&x->xs_net);
}

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/* xflags - make enum if more show up */
#define XFRM_TIME_DEFER	1
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#define XFRM_SOFT_EXPIRE 2
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enum {
	XFRM_STATE_VOID,
	XFRM_STATE_ACQ,
	XFRM_STATE_VALID,
	XFRM_STATE_ERROR,
	XFRM_STATE_EXPIRED,
	XFRM_STATE_DEAD
};

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/* callback structure passed from either netlink or pfkey */
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struct km_event {
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	union {
		u32 hard;
		u32 proto;
		u32 byid;
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		u32 aevent;
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		u32 type;
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	} data;

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	u32	seq;
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	u32	portid;
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	u32	event;
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	struct net *net;
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};

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struct xfrm_replay {
	void	(*advance)(struct xfrm_state *x, __be32 net_seq);
	int	(*check)(struct xfrm_state *x,
			 struct sk_buff *skb,
			 __be32 net_seq);
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	int	(*recheck)(struct xfrm_state *x,
			   struct sk_buff *skb,
			   __be32 net_seq);
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	void	(*notify)(struct xfrm_state *x, int event);
	int	(*overflow)(struct xfrm_state *x, struct sk_buff *skb);
};

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struct net_device;
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struct xfrm_type;
struct xfrm_dst;
struct xfrm_policy_afinfo {
	struct dst_ops		*dst_ops;
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	struct dst_entry	*(*dst_lookup)(struct net *net,
					       int tos, int oif,
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					       const xfrm_address_t *saddr,
					       const xfrm_address_t *daddr);
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	int			(*get_saddr)(struct net *net, int oif,
					     xfrm_address_t *saddr,
					     xfrm_address_t *daddr);
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	void			(*decode_session)(struct sk_buff *skb,
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						  struct flowi *fl,
						  int reverse);
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	int			(*get_tos)(const struct flowi *fl);
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	int			(*init_path)(struct xfrm_dst *path,
					     struct dst_entry *dst,
					     int nfheader_len);
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	int			(*fill_dst)(struct xfrm_dst *xdst,
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					    struct net_device *dev,
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					    const struct flowi *fl);
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	struct dst_entry	*(*blackhole_route)(struct net *net, struct dst_entry *orig);
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};

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int xfrm_policy_register_afinfo(const struct xfrm_policy_afinfo *afinfo, int family);
void xfrm_policy_unregister_afinfo(const struct xfrm_policy_afinfo *afinfo);
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void km_policy_notify(struct xfrm_policy *xp, int dir,
		      const struct km_event *c);
void km_state_notify(struct xfrm_state *x, const struct km_event *c);
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struct xfrm_tmpl;
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int km_query(struct xfrm_state *x, struct xfrm_tmpl *t,
	     struct xfrm_policy *pol);
void km_state_expired(struct xfrm_state *x, int hard, u32 portid);
int __xfrm_state_delete(struct xfrm_state *x);
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struct xfrm_state_afinfo {
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	unsigned int			family;
	unsigned int			proto;
	__be16				eth_proto;
	struct module			*owner;
	const struct xfrm_type		*type_map[IPPROTO_MAX];
	const struct xfrm_type_offload	*type_offload_map[IPPROTO_MAX];
	struct xfrm_mode		*mode_map[XFRM_MODE_MAX];

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	int			(*init_flags)(struct xfrm_state *x);
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	void			(*init_tempsel)(struct xfrm_selector *sel,
						const struct flowi *fl);
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	void			(*init_temprop)(struct xfrm_state *x,
						const struct xfrm_tmpl *tmpl,
						const xfrm_address_t *daddr,
						const xfrm_address_t *saddr);
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	int			(*tmpl_sort)(struct xfrm_tmpl **dst, struct xfrm_tmpl **src, int n);
	int			(*state_sort)(struct xfrm_state **dst, struct xfrm_state **src, int n);
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	int			(*output)(struct net *net, struct sock *sk, struct sk_buff *skb);
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	int			(*output_finish)(struct sock *sk, struct sk_buff *skb);
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	int			(*extract_input)(struct xfrm_state *x,
						 struct sk_buff *skb);
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	int			(*extract_output)(struct xfrm_state *x,
						  struct sk_buff *skb);
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	int			(*transport_finish)(struct sk_buff *skb,
						    int async);
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	void			(*local_error)(struct sk_buff *skb, u32 mtu);
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};

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int xfrm_state_register_afinfo(struct xfrm_state_afinfo *afinfo);
int xfrm_state_unregister_afinfo(struct xfrm_state_afinfo *afinfo);
struct xfrm_state_afinfo *xfrm_state_get_afinfo(unsigned int family);
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struct xfrm_state_afinfo *xfrm_state_afinfo_get_rcu(unsigned int family);
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struct xfrm_input_afinfo {
	unsigned int		family;
	int			(*callback)(struct sk_buff *skb, u8 protocol,
					    int err);
};

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int xfrm_input_register_afinfo(const struct xfrm_input_afinfo *afinfo);
int xfrm_input_unregister_afinfo(const struct xfrm_input_afinfo *afinfo);
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void xfrm_state_delete_tunnel(struct xfrm_state *x);
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struct xfrm_type {
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	char			*description;
	struct module		*owner;
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	u8			proto;
	u8			flags;
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#define XFRM_TYPE_NON_FRAGMENT	1
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#define XFRM_TYPE_REPLAY_PROT	2
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#define XFRM_TYPE_LOCAL_COADDR	4
#define XFRM_TYPE_REMOTE_COADDR	8
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	int			(*init_state)(struct xfrm_state *x);
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	void			(*destructor)(struct xfrm_state *);
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	int			(*input)(struct xfrm_state *, struct sk_buff *skb);
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	int			(*output)(struct xfrm_state *, struct sk_buff *pskb);
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	int			(*reject)(struct xfrm_state *, struct sk_buff *,
					  const struct flowi *);
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	int			(*hdr_offset)(struct xfrm_state *, struct sk_buff *, u8 **);
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	/* Estimate maximal size of result of transformation of a dgram */
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	u32			(*get_mtu)(struct xfrm_state *, int size);
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};

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int xfrm_register_type(const struct xfrm_type *type, unsigned short family);
int xfrm_unregister_type(const struct xfrm_type *type, unsigned short family);
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struct xfrm_type_offload {
	char		*description;
	struct module	*owner;
	u8		proto;
	void		(*encap)(struct xfrm_state *, struct sk_buff *pskb);
	int		(*input_tail)(struct xfrm_state *x, struct sk_buff *skb);
	int		(*xmit)(struct xfrm_state *, struct sk_buff *pskb, netdev_features_t features);
};

int xfrm_register_type_offload(const struct xfrm_type_offload *type, unsigned short family);
int xfrm_unregister_type_offload(const struct xfrm_type_offload *type, unsigned short family);

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struct xfrm_mode {
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	/*
	 * Remove encapsulation header.
	 *
	 * The IP header will be moved over the top of the encapsulation
	 * header.
	 *
	 * On entry, the transport header shall point to where the IP header
	 * should be and the network header shall be set to where the IP
	 * header currently is.  skb->data shall point to the start of the
	 * payload.
	 */
	int (*input2)(struct xfrm_state *x, struct sk_buff *skb);

	/*
	 * This is the actual input entry point.
	 *
	 * For transport mode and equivalent this would be identical to
	 * input2 (which does not need to be set).  While tunnel mode
	 * and equivalent would set this to the tunnel encapsulation function
	 * xfrm4_prepare_input that would in turn call input2.
	 */
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	int (*input)(struct xfrm_state *x, struct sk_buff *skb);
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	/*
	 * Add encapsulation header.
	 *
	 * On exit, the transport header will be set to the start of the
	 * encapsulation header to be filled in by x->type->output and
	 * the mac header will be set to the nextheader (protocol for
	 * IPv4) field of the extension header directly preceding the
	 * encapsulation header, or in its absence, that of the top IP
	 * header.  The value of the network header will always point
	 * to the top IP header while skb->data will point to the payload.
	 */
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	int (*output2)(struct xfrm_state *x,struct sk_buff *skb);

	/*
	 * This is the actual output entry point.
	 *
	 * For transport mode and equivalent this would be identical to
	 * output2 (which does not need to be set).  While tunnel mode
	 * and equivalent would set this to a tunnel encapsulation function
	 * (xfrm4_prepare_output or xfrm6_prepare_output) that would in turn
	 * call output2.
	 */
	int (*output)(struct xfrm_state *x, struct sk_buff *skb);
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	/*
	 * Adjust pointers into the packet and do GSO segmentation.
	 */
	struct sk_buff *(*gso_segment)(struct xfrm_state *x, struct sk_buff *skb, netdev_features_t features);

	/*
	 * Adjust pointers into the packet when IPsec is done at layer2.
	 */
	void (*xmit)(struct xfrm_state *x, struct sk_buff *skb);

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	struct xfrm_state_afinfo *afinfo;
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	struct module *owner;
	unsigned int encap;
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	int flags;
};

/* Flags for xfrm_mode. */
enum {
	XFRM_MODE_FLAG_TUNNEL = 1,
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};

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int xfrm_register_mode(struct xfrm_mode *mode, int family);
int xfrm_unregister_mode(struct xfrm_mode *mode, int family);
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static inline int xfrm_af2proto(unsigned int family)
{
	switch(family) {
	case AF_INET:
		return IPPROTO_IPIP;
	case AF_INET6:
		return IPPROTO_IPV6;
	default:
		return 0;
	}
}

static inline struct xfrm_mode *xfrm_ip2inner_mode(struct xfrm_state *x, int ipproto)
{
	if ((ipproto == IPPROTO_IPIP && x->props.family == AF_INET) ||
	    (ipproto == IPPROTO_IPV6 && x->props.family == AF_INET6))
		return x->inner_mode;
	else
		return x->inner_mode_iaf;
}

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struct xfrm_tmpl {
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/* id in template is interpreted as:
 * daddr - destination of tunnel, may be zero for transport mode.
 * spi   - zero to acquire spi. Not zero if spi is static, then
 *	   daddr must be fixed too.
 * proto - AH/ESP/IPCOMP
 */
	struct xfrm_id		id;

/* Source address of tunnel. Ignored, if it is not a tunnel. */
	xfrm_address_t		saddr;

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	unsigned short		encap_family;

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	u32			reqid;
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/* Mode: transport, tunnel etc. */
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	u8			mode;
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/* Sharing mode: unique, this session only, this user only etc. */
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	u8			share;
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/* May skip this transfomration if no SA is found */
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	u8			optional;
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/* Skip aalgos/ealgos/calgos checks. */
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	u8			allalgs;
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/* Bit mask of algos allowed for acquisition */
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	u32			aalgos;
	u32			ealgos;
	u32			calgos;
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};

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#define XFRM_MAX_DEPTH		6
537
#define XFRM_MAX_OFFLOAD_DEPTH	1
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struct xfrm_policy_walk_entry {
	struct list_head	all;
	u8			dead;
};

struct xfrm_policy_walk {
	struct xfrm_policy_walk_entry walk;
	u8 type;
	u32 seq;
};

550 551 552 553 554 555
struct xfrm_policy_queue {
	struct sk_buff_head	hold_queue;
	struct timer_list	hold_timer;
	unsigned long		timeout;
};

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struct xfrm_policy {
557
	possible_net_t		xp_net;
558 559
	struct hlist_node	bydst;
	struct hlist_node	byidx;
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	/* This lock only affects elements except for entry. */
	rwlock_t		lock;
563
	refcount_t		refcnt;
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	struct timer_list	timer;

566
	struct flow_cache_object flo;
567
	atomic_t		genid;
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	u32			priority;
	u32			index;
570
	struct xfrm_mark	mark;
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	struct xfrm_selector	selector;
	struct xfrm_lifetime_cfg lft;
	struct xfrm_lifetime_cur curlft;
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	struct xfrm_policy_walk_entry walk;
575
	struct xfrm_policy_queue polq;
576 577 578 579
	u8			type;
	u8			action;
	u8			flags;
	u8			xfrm_nr;
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	u16			family;
581
	struct xfrm_sec_ctx	*security;
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	struct xfrm_tmpl       	xfrm_vec[XFRM_MAX_DEPTH];
583
	struct rcu_head		rcu;
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};

586
static inline struct net *xp_net(const struct xfrm_policy *xp)
587 588 589 590
{
	return read_pnet(&xp->xp_net);
}

591 592 593 594 595 596 597
struct xfrm_kmaddress {
	xfrm_address_t          local;
	xfrm_address_t          remote;
	u32			reserved;
	u16			family;
};

598 599 600 601 602 603 604 605 606 607 608 609 610
struct xfrm_migrate {
	xfrm_address_t		old_daddr;
	xfrm_address_t		old_saddr;
	xfrm_address_t		new_daddr;
	xfrm_address_t		new_saddr;
	u8			proto;
	u8			mode;
	u16			reserved;
	u32			reqid;
	u16			old_family;
	u16			new_family;
};

611 612 613 614 615 616 617 618 619 620 621
#define XFRM_KM_TIMEOUT                30
/* what happened */
#define XFRM_REPLAY_UPDATE	XFRM_AE_CR
#define XFRM_REPLAY_TIMEOUT	XFRM_AE_CE

/* default aevent timeout in units of 100ms */
#define XFRM_AE_ETIME			10
/* Async Event timer multiplier */
#define XFRM_AE_ETH_M			10
/* default seq threshold size */
#define XFRM_AE_SEQT_SIZE		2
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struct xfrm_mgr {
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	struct list_head	list;
625
	int			(*notify)(struct xfrm_state *x, const struct km_event *c);
626
	int			(*acquire)(struct xfrm_state *x, struct xfrm_tmpl *, struct xfrm_policy *xp);
627
	struct xfrm_policy	*(*compile_policy)(struct sock *sk, int opt, u8 *data, int len, int *dir);
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	int			(*new_mapping)(struct xfrm_state *x, xfrm_address_t *ipaddr, __be16 sport);
629
	int			(*notify_policy)(struct xfrm_policy *x, int dir, const struct km_event *c);
630
	int			(*report)(struct net *net, u8 proto, struct xfrm_selector *sel, xfrm_address_t *addr);
631 632 633 634
	int			(*migrate)(const struct xfrm_selector *sel,
					   u8 dir, u8 type,
					   const struct xfrm_migrate *m,
					   int num_bundles,
635 636
					   const struct xfrm_kmaddress *k,
					   const struct xfrm_encap_tmpl *encap);
637
	bool			(*is_alive)(const struct km_event *c);
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};

640 641
int xfrm_register_km(struct xfrm_mgr *km);
int xfrm_unregister_km(struct xfrm_mgr *km);
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643 644 645 646 647 648 649 650 651 652 653 654 655 656
struct xfrm_tunnel_skb_cb {
	union {
		struct inet_skb_parm h4;
		struct inet6_skb_parm h6;
	} header;

	union {
		struct ip_tunnel *ip4;
		struct ip6_tnl *ip6;
	} tunnel;
};

#define XFRM_TUNNEL_SKB_CB(__skb) ((struct xfrm_tunnel_skb_cb *)&((__skb)->cb[0]))

657 658 659 660 661 662
/*
 * This structure is used for the duration where packets are being
 * transformed by IPsec.  As soon as the packet leaves IPsec the
 * area beyond the generic IP part may be overwritten.
 */
struct xfrm_skb_cb {
663
	struct xfrm_tunnel_skb_cb header;
664 665

        /* Sequence number for replay protection. */
666
	union {
667 668 669 670 671 672 673 674
		struct {
			__u32 low;
			__u32 hi;
		} output;
		struct {
			__be32 low;
			__be32 hi;
		} input;
675
	} seq;
676 677 678 679
};

#define XFRM_SKB_CB(__skb) ((struct xfrm_skb_cb *)&((__skb)->cb[0]))

680 681 682 683 684
/*
 * This structure is used by the afinfo prepare_input/prepare_output functions
 * to transmit header information to the mode input/output functions.
 */
struct xfrm_mode_skb_cb {
685
	struct xfrm_tunnel_skb_cb header;
686 687 688 689 690

	/* Copied from header for IPv4, always set to zero and DF for IPv6. */
	__be16 id;
	__be16 frag_off;

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	/* IP header length (excluding options or extension headers). */
	u8 ihl;

694 695 696 697 698 699 700 701 702
	/* TOS for IPv4, class for IPv6. */
	u8 tos;

	/* TTL for IPv4, hop limitfor IPv6. */
	u8 ttl;

	/* Protocol for IPv4, NH for IPv6. */
	u8 protocol;

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	/* Option length for IPv4, zero for IPv6. */
	u8 optlen;

706 707 708 709 710 711
	/* Used by IPv6 only, zero for IPv4. */
	u8 flow_lbl[3];
};

#define XFRM_MODE_SKB_CB(__skb) ((struct xfrm_mode_skb_cb *)&((__skb)->cb[0]))

712 713 714 715 716
/*
 * This structure is used by the input processing to locate the SPI and
 * related information.
 */
struct xfrm_spi_skb_cb {
717
	struct xfrm_tunnel_skb_cb header;
718 719

	unsigned int daddroff;
720
	unsigned int family;
721
	__be32 seq;
722 723 724 725
};

#define XFRM_SPI_SKB_CB(__skb) ((struct xfrm_spi_skb_cb *)&((__skb)->cb[0]))

726
#ifdef CONFIG_AUDITSYSCALL
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static inline struct audit_buffer *xfrm_audit_start(const char *op)
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728 729 730
{
	struct audit_buffer *audit_buf = NULL;

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731 732
	if (audit_enabled == 0)
		return NULL;
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	audit_buf = audit_log_start(current->audit_context, GFP_ATOMIC,
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734
				    AUDIT_MAC_IPSEC_EVENT);
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735 736
	if (audit_buf == NULL)
		return NULL;
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	audit_log_format(audit_buf, "op=%s", op);
	return audit_buf;
}
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741
static inline void xfrm_audit_helper_usrinfo(bool task_valid,
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742 743
					     struct audit_buffer *audit_buf)
{
744 745 746 747 748 749 750
	const unsigned int auid = from_kuid(&init_user_ns, task_valid ?
					    audit_get_loginuid(current) :
					    INVALID_UID);
	const unsigned int ses = task_valid ? audit_get_sessionid(current) :
		(unsigned int) -1;

	audit_log_format(audit_buf, " auid=%u ses=%u", auid, ses);
751
	audit_log_task_context(audit_buf);
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}

754 755 756 757 758
void xfrm_audit_policy_add(struct xfrm_policy *xp, int result, bool task_valid);
void xfrm_audit_policy_delete(struct xfrm_policy *xp, int result,
			      bool task_valid);
void xfrm_audit_state_add(struct xfrm_state *x, int result, bool task_valid);
void xfrm_audit_state_delete(struct xfrm_state *x, int result, bool task_valid);
759 760 761 762 763 764 765 766 767
void xfrm_audit_state_replay_overflow(struct xfrm_state *x,
				      struct sk_buff *skb);
void xfrm_audit_state_replay(struct xfrm_state *x, struct sk_buff *skb,
			     __be32 net_seq);
void xfrm_audit_state_notfound_simple(struct sk_buff *skb, u16 family);
void xfrm_audit_state_notfound(struct sk_buff *skb, u16 family, __be32 net_spi,
			       __be32 net_seq);
void xfrm_audit_state_icvfail(struct xfrm_state *x, struct sk_buff *skb,
			      u8 proto);
768
#else
769 770

static inline void xfrm_audit_policy_add(struct xfrm_policy *xp, int result,
771
					 bool task_valid)
772 773 774 775
{
}

static inline void xfrm_audit_policy_delete(struct xfrm_policy *xp, int result,
776
					    bool task_valid)
777 778 779 780
{
}

static inline void xfrm_audit_state_add(struct xfrm_state *x, int result,
781
					bool task_valid)
782 783 784 785
{
}

static inline void xfrm_audit_state_delete(struct xfrm_state *x, int result,
786
					   bool task_valid)
787 788 789 790 791 792 793 794
{
}

static inline void xfrm_audit_state_replay_overflow(struct xfrm_state *x,
					     struct sk_buff *skb)
{
}

795 796 797 798 799
static inline void xfrm_audit_state_replay(struct xfrm_state *x,
					   struct sk_buff *skb, __be32 net_seq)
{
}

800 801 802 803 804 805 806 807 808 809 810 811 812 813
static inline void xfrm_audit_state_notfound_simple(struct sk_buff *skb,
				      u16 family)
{
}

static inline void xfrm_audit_state_notfound(struct sk_buff *skb, u16 family,
				      __be32 net_spi, __be32 net_seq)
{
}

static inline void xfrm_audit_state_icvfail(struct xfrm_state *x,
				     struct sk_buff *skb, u8 proto)
{
}
814
#endif /* CONFIG_AUDITSYSCALL */
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static inline void xfrm_pol_hold(struct xfrm_policy *policy)
{
	if (likely(policy != NULL))
819
		refcount_inc(&policy->refcnt);
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}

822
void xfrm_policy_destroy(struct xfrm_policy *policy);
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823 824 825

static inline void xfrm_pol_put(struct xfrm_policy *policy)
{
826
	if (refcount_dec_and_test(&policy->refcnt))
827
		xfrm_policy_destroy(policy);
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}

830 831 832 833 834 835 836
static inline void xfrm_pols_put(struct xfrm_policy **pols, int npols)
{
	int i;
	for (i = npols - 1; i >= 0; --i)
		xfrm_pol_put(pols[i]);
}

837
void __xfrm_state_destroy(struct xfrm_state *);
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838

839 840
static inline void __xfrm_state_put(struct xfrm_state *x)
{
841
	refcount_dec(&x->refcnt);
842 843
}

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844 845
static inline void xfrm_state_put(struct xfrm_state *x)
{
846
	if (refcount_dec_and_test(&x->refcnt))
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847 848 849 850 851
		__xfrm_state_destroy(x);
}

static inline void xfrm_state_hold(struct xfrm_state *x)
{
852
	refcount_inc(&x->refcnt);
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}

855
static inline bool addr_match(const void *token1, const void *token2,
856
			      unsigned int prefixlen)
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857
{
858 859
	const __be32 *a1 = token1;
	const __be32 *a2 = token2;
860 861
	unsigned int pdw;
	unsigned int pbi;
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862

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863
	pdw = prefixlen >> 5;	  /* num of whole u32 in prefix */
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864 865 866 867
	pbi = prefixlen &  0x1f;  /* num of bits in incomplete u32 in prefix */

	if (pdw)
		if (memcmp(a1, a2, pdw << 2))
868
			return false;
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869 870

	if (pbi) {
A
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871
		__be32 mask;
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872 873 874 875

		mask = htonl((0xffffffff) << (32 - pbi));

		if ((a1[pdw] ^ a2[pdw]) & mask)
876
			return false;
L
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877 878
	}

879
	return true;
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880 881
}

882 883 884
static inline bool addr4_match(__be32 a1, __be32 a2, u8 prefixlen)
{
	/* C99 6.5.7 (3): u32 << 32 is undefined behaviour */
885
	if (sizeof(long) == 4 && prefixlen == 0)
886
		return true;
887
	return !((a1 ^ a2) & htonl(~0UL << (32 - prefixlen)));
888 889
}

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890
static __inline__
891
__be16 xfrm_flowi_sport(const struct flowi *fl, const union flowi_uli *uli)
L
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892
{
893
	__be16 port;
894
	switch(fl->flowi_proto) {
L
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895 896
	case IPPROTO_TCP:
	case IPPROTO_UDP:
897
	case IPPROTO_UDPLITE:
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898
	case IPPROTO_SCTP:
899
		port = uli->ports.sport;
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900 901 902
		break;
	case IPPROTO_ICMP:
	case IPPROTO_ICMPV6:
903
		port = htons(uli->icmpt.type);
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904
		break;
905
	case IPPROTO_MH:
906
		port = htons(uli->mht.type);
907
		break;
908
	case IPPROTO_GRE:
909
		port = htons(ntohl(uli->gre_key) >> 16);
910
		break;
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911 912 913 914 915 916 917
	default:
		port = 0;	/*XXX*/
	}
	return port;
}

static __inline__
918
__be16 xfrm_flowi_dport(const struct flowi *fl, const union flowi_uli *uli)
L
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919
{
920
	__be16 port;
921
	switch(fl->flowi_proto) {
L
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922 923
	case IPPROTO_TCP:
	case IPPROTO_UDP:
924
	case IPPROTO_UDPLITE:
L
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925
	case IPPROTO_SCTP:
926
		port = uli->ports.dport;
L
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927 928 929
		break;
	case IPPROTO_ICMP:
	case IPPROTO_ICMPV6:
930
		port = htons(uli->icmpt.code);
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931
		break;
932
	case IPPROTO_GRE:
933
		port = htons(ntohl(uli->gre_key) & 0xffff);
934
		break;
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935 936 937 938 939 940
	default:
		port = 0;	/*XXX*/
	}
	return port;
}

941 942
bool xfrm_selector_match(const struct xfrm_selector *sel,
			 const struct flowi *fl, unsigned short family);
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943

944 945 946 947
#ifdef CONFIG_SECURITY_NETWORK_XFRM
/*	If neither has a context --> match
 * 	Otherwise, both must have a context and the sids, doi, alg must match
 */
948
static inline bool xfrm_sec_ctx_match(struct xfrm_sec_ctx *s1, struct xfrm_sec_ctx *s2)
949 950 951 952 953 954 955 956
{
	return ((!s1 && !s2) ||
		(s1 && s2 &&
		 (s1->ctx_sid == s2->ctx_sid) &&
		 (s1->ctx_doi == s2->ctx_doi) &&
		 (s1->ctx_alg == s2->ctx_alg)));
}
#else
957
static inline bool xfrm_sec_ctx_match(struct xfrm_sec_ctx *s1, struct xfrm_sec_ctx *s2)
958
{
959
	return true;
960 961 962
}
#endif

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/* A struct encoding bundle of transformations to apply to some set of flow.
 *
 * dst->child points to the next element of bundle.
 * dst->xfrm  points to an instanse of transformer.
 *
 * Due to unfortunate limitations of current routing cache, which we
 * have no time to fix, it mirrors struct rtable and bound to the same
 * routing key, including saddr,daddr. However, we can have many of
 * bundles differing by session id. All the bundles grow from a parent
 * policy rule.
 */
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struct xfrm_dst {
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975 976 977 978 979 980
	union {
		struct dst_entry	dst;
		struct rtable		rt;
		struct rt6_info		rt6;
	} u;
	struct dst_entry *route;
981 982 983 984 985
	struct flow_cache_object flo;
	struct xfrm_policy *pols[XFRM_POLICY_TYPE_MAX];
	int num_pols, num_xfrms;
	u32 xfrm_genid;
	u32 policy_genid;
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	u32 route_mtu_cached;
	u32 child_mtu_cached;
988 989
	u32 route_cookie;
	u32 path_cookie;
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};

992
#ifdef CONFIG_XFRM
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993 994
static inline void xfrm_dst_destroy(struct xfrm_dst *xdst)
{
995
	xfrm_pols_put(xdst->pols, xdst->num_pols);
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996 997 998 999
	dst_release(xdst->route);
	if (likely(xdst->u.dst.xfrm))
		xfrm_state_put(xdst->u.dst.xfrm);
}
1000
#endif
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1002
void xfrm_dst_ifdown(struct dst_entry *dst, struct net_device *dev);
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1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031
struct xfrm_offload {
	/* Output sequence number for replay protection on offloading. */
	struct {
		__u32 low;
		__u32 hi;
	} seq;

	__u32			flags;
#define	SA_DELETE_REQ		1
#define	CRYPTO_DONE		2
#define	CRYPTO_NEXT_DONE	4
#define	CRYPTO_FALLBACK		8
#define	XFRM_GSO_SEGMENT	16
#define	XFRM_GRO		32

	__u32			status;
#define CRYPTO_SUCCESS				1
#define CRYPTO_GENERIC_ERROR			2
#define CRYPTO_TRANSPORT_AH_AUTH_FAILED		4
#define CRYPTO_TRANSPORT_ESP_AUTH_FAILED	8
#define CRYPTO_TUNNEL_AH_AUTH_FAILED		16
#define CRYPTO_TUNNEL_ESP_AUTH_FAILED		32
#define CRYPTO_INVALID_PACKET_SYNTAX		64
#define CRYPTO_INVALID_PROTOCOL			128

	__u8			proto;
};

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1032
struct sec_path {
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1033 1034
	atomic_t		refcnt;
	int			len;
1035 1036
	int			olen;

1037
	struct xfrm_state	*xvec[XFRM_MAX_DEPTH];
1038
	struct xfrm_offload	ovec[XFRM_MAX_OFFLOAD_DEPTH];
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};

1041 1042 1043 1044 1045 1046 1047 1048 1049
static inline int secpath_exists(struct sk_buff *skb)
{
#ifdef CONFIG_XFRM
	return skb->sp != NULL;
#else
	return 0;
#endif
}

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1050 1051 1052 1053 1054 1055 1056 1057
static inline struct sec_path *
secpath_get(struct sec_path *sp)
{
	if (sp)
		atomic_inc(&sp->refcnt);
	return sp;
}

1058
void __secpath_destroy(struct sec_path *sp);
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1059 1060 1061 1062 1063 1064 1065 1066

static inline void
secpath_put(struct sec_path *sp)
{
	if (sp && atomic_dec_and_test(&sp->refcnt))
		__secpath_destroy(sp);
}

1067
struct sec_path *secpath_dup(struct sec_path *src);
1068
int secpath_set(struct sk_buff *skb);
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static inline void
secpath_reset(struct sk_buff *skb)
{
#ifdef CONFIG_XFRM
	secpath_put(skb->sp);
	skb->sp = NULL;
#endif
}

1079
static inline int
1080
xfrm_addr_any(const xfrm_address_t *addr, unsigned short family)
1081 1082 1083 1084 1085
{
	switch (family) {
	case AF_INET:
		return addr->a4 == 0;
	case AF_INET6:
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		return ipv6_addr_any(&addr->in6);
1087 1088 1089 1090
	}
	return 0;
}

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1091
static inline int
1092
__xfrm4_state_addr_cmp(const struct xfrm_tmpl *tmpl, const struct xfrm_state *x)
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{
	return	(tmpl->saddr.a4 &&
		 tmpl->saddr.a4 != x->props.saddr.a4);
}

static inline int
1099
__xfrm6_state_addr_cmp(const struct xfrm_tmpl *tmpl, const struct xfrm_state *x)
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{
	return	(!ipv6_addr_any((struct in6_addr*)&tmpl->saddr) &&
1102
		 !ipv6_addr_equal((struct in6_addr *)&tmpl->saddr, (struct in6_addr*)&x->props.saddr));
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}

static inline int
1106
xfrm_state_addr_cmp(const struct xfrm_tmpl *tmpl, const struct xfrm_state *x, unsigned short family)
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{
	switch (family) {
	case AF_INET:
		return __xfrm4_state_addr_cmp(tmpl, x);
	case AF_INET6:
		return __xfrm6_state_addr_cmp(tmpl, x);
	}
	return !0;
}

#ifdef CONFIG_XFRM
1118 1119
int __xfrm_policy_check(struct sock *, int dir, struct sk_buff *skb,
			unsigned short family);
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1121 1122 1123
static inline int __xfrm_policy_check2(struct sock *sk, int dir,
				       struct sk_buff *skb,
				       unsigned int family, int reverse)
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{
1125
	struct net *net = dev_net(skb->dev);
1126 1127
	int ndir = dir | (reverse ? XFRM_POLICY_MASK + 1 : 0);

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	if (sk && sk->sk_policy[XFRM_POLICY_IN])
1129
		return __xfrm_policy_check(sk, ndir, skb, family);
1130

1131
	return	(!net->xfrm.policy_count[dir] && !skb->sp) ||
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		(skb_dst(skb)->flags & DST_NOPOLICY) ||
1133 1134 1135 1136 1137 1138
		__xfrm_policy_check(sk, ndir, skb, family);
}

static inline int xfrm_policy_check(struct sock *sk, int dir, struct sk_buff *skb, unsigned short family)
{
	return __xfrm_policy_check2(sk, dir, skb, family, 0);
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}

static inline int xfrm4_policy_check(struct sock *sk, int dir, struct sk_buff *skb)
{
	return xfrm_policy_check(sk, dir, skb, AF_INET);
}

static inline int xfrm6_policy_check(struct sock *sk, int dir, struct sk_buff *skb)
{
	return xfrm_policy_check(sk, dir, skb, AF_INET6);
}

1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162
static inline int xfrm4_policy_check_reverse(struct sock *sk, int dir,
					     struct sk_buff *skb)
{
	return __xfrm_policy_check2(sk, dir, skb, AF_INET, 1);
}

static inline int xfrm6_policy_check_reverse(struct sock *sk, int dir,
					     struct sk_buff *skb)
{
	return __xfrm_policy_check2(sk, dir, skb, AF_INET6, 1);
}

1163 1164
int __xfrm_decode_session(struct sk_buff *skb, struct flowi *fl,
			  unsigned int family, int reverse);
1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178

static inline int xfrm_decode_session(struct sk_buff *skb, struct flowi *fl,
				      unsigned int family)
{
	return __xfrm_decode_session(skb, fl, family, 0);
}

static inline int xfrm_decode_session_reverse(struct sk_buff *skb,
					      struct flowi *fl,
					      unsigned int family)
{
	return __xfrm_decode_session(skb, fl, family, 1);
}

1179
int __xfrm_route_forward(struct sk_buff *skb, unsigned short family);
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static inline int xfrm_route_forward(struct sk_buff *skb, unsigned short family)
{
1183 1184 1185
	struct net *net = dev_net(skb->dev);

	return	!net->xfrm.policy_count[XFRM_POLICY_OUT] ||
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		(skb_dst(skb)->flags & DST_NOXFRM) ||
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		__xfrm_route_forward(skb, family);
}

static inline int xfrm4_route_forward(struct sk_buff *skb)
{
	return xfrm_route_forward(skb, AF_INET);
}

static inline int xfrm6_route_forward(struct sk_buff *skb)
{
	return xfrm_route_forward(skb, AF_INET6);
}

1200
int __xfrm_sk_clone_policy(struct sock *sk, const struct sock *osk);
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1202
static inline int xfrm_sk_clone_policy(struct sock *sk, const struct sock *osk)
L
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{
1204 1205 1206 1207
	sk->sk_policy[0] = NULL;
	sk->sk_policy[1] = NULL;
	if (unlikely(osk->sk_policy[0] || osk->sk_policy[1]))
		return __xfrm_sk_clone_policy(sk, osk);
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	return 0;
}

1211
int xfrm_policy_delete(struct xfrm_policy *pol, int dir);
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1212 1213 1214

static inline void xfrm_sk_free_policy(struct sock *sk)
{
1215 1216 1217 1218 1219
	struct xfrm_policy *pol;

	pol = rcu_dereference_protected(sk->sk_policy[0], 1);
	if (unlikely(pol != NULL)) {
		xfrm_policy_delete(pol, XFRM_POLICY_MAX);
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		sk->sk_policy[0] = NULL;
	}
1222 1223 1224
	pol = rcu_dereference_protected(sk->sk_policy[1], 1);
	if (unlikely(pol != NULL)) {
		xfrm_policy_delete(pol, XFRM_POLICY_MAX+1);
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1225 1226 1227 1228
		sk->sk_policy[1] = NULL;
	}
}

1229
void xfrm_garbage_collect(struct net *net);
1230
void xfrm_garbage_collect_deferred(struct net *net);
1231

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1232 1233 1234
#else

static inline void xfrm_sk_free_policy(struct sock *sk) {}
1235
static inline int xfrm_sk_clone_policy(struct sock *sk, const struct sock *osk) { return 0; }
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1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249
static inline int xfrm6_route_forward(struct sk_buff *skb) { return 1; }  
static inline int xfrm4_route_forward(struct sk_buff *skb) { return 1; } 
static inline int xfrm6_policy_check(struct sock *sk, int dir, struct sk_buff *skb)
{ 
	return 1; 
} 
static inline int xfrm4_policy_check(struct sock *sk, int dir, struct sk_buff *skb)
{
	return 1;
}
static inline int xfrm_policy_check(struct sock *sk, int dir, struct sk_buff *skb, unsigned short family)
{
	return 1;
}
1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265
static inline int xfrm_decode_session_reverse(struct sk_buff *skb,
					      struct flowi *fl,
					      unsigned int family)
{
	return -ENOSYS;
}
static inline int xfrm4_policy_check_reverse(struct sock *sk, int dir,
					     struct sk_buff *skb)
{
	return 1;
}
static inline int xfrm6_policy_check_reverse(struct sock *sk, int dir,
					     struct sk_buff *skb)
{
	return 1;
}
1266 1267 1268
static inline void xfrm_garbage_collect(struct net *net)
{
}
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#endif

static __inline__
1272
xfrm_address_t *xfrm_flowi_daddr(const struct flowi *fl, unsigned short family)
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{
	switch (family){
	case AF_INET:
1276
		return (xfrm_address_t *)&fl->u.ip4.daddr;
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	case AF_INET6:
1278
		return (xfrm_address_t *)&fl->u.ip6.daddr;
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	}
	return NULL;
}

static __inline__
1284
xfrm_address_t *xfrm_flowi_saddr(const struct flowi *fl, unsigned short family)
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{
	switch (family){
	case AF_INET:
1288
		return (xfrm_address_t *)&fl->u.ip4.saddr;
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	case AF_INET6:
1290
		return (xfrm_address_t *)&fl->u.ip6.saddr;
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	}
	return NULL;
}

1295
static __inline__
1296
void xfrm_flowi_addr_get(const struct flowi *fl,
1297 1298 1299 1300 1301
			 xfrm_address_t *saddr, xfrm_address_t *daddr,
			 unsigned short family)
{
	switch(family) {
	case AF_INET:
1302 1303
		memcpy(&saddr->a4, &fl->u.ip4.saddr, sizeof(saddr->a4));
		memcpy(&daddr->a4, &fl->u.ip4.daddr, sizeof(daddr->a4));
1304 1305
		break;
	case AF_INET6:
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		saddr->in6 = fl->u.ip6.saddr;
		daddr->in6 = fl->u.ip6.daddr;
1308 1309 1310 1311
		break;
	}
}

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static __inline__ int
1313 1314
__xfrm4_state_addr_check(const struct xfrm_state *x,
			 const xfrm_address_t *daddr, const xfrm_address_t *saddr)
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{
	if (daddr->a4 == x->id.daddr.a4 &&
	    (saddr->a4 == x->props.saddr.a4 || !saddr->a4 || !x->props.saddr.a4))
		return 1;
	return 0;
}

static __inline__ int
1323 1324
__xfrm6_state_addr_check(const struct xfrm_state *x,
			 const xfrm_address_t *daddr, const xfrm_address_t *saddr)
L
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{
1326 1327
	if (ipv6_addr_equal((struct in6_addr *)daddr, (struct in6_addr *)&x->id.daddr) &&
	    (ipv6_addr_equal((struct in6_addr *)saddr, (struct in6_addr *)&x->props.saddr) ||
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	     ipv6_addr_any((struct in6_addr *)saddr) || 
	     ipv6_addr_any((struct in6_addr *)&x->props.saddr)))
		return 1;
	return 0;
}

static __inline__ int
1335 1336
xfrm_state_addr_check(const struct xfrm_state *x,
		      const xfrm_address_t *daddr, const xfrm_address_t *saddr,
L
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		      unsigned short family)
{
	switch (family) {
	case AF_INET:
		return __xfrm4_state_addr_check(x, daddr, saddr);
	case AF_INET6:
		return __xfrm6_state_addr_check(x, daddr, saddr);
	}
	return 0;
}

1348
static __inline__ int
1349
xfrm_state_addr_flow_check(const struct xfrm_state *x, const struct flowi *fl,
1350 1351 1352 1353 1354
			   unsigned short family)
{
	switch (family) {
	case AF_INET:
		return __xfrm4_state_addr_check(x,
1355 1356
						(const xfrm_address_t *)&fl->u.ip4.daddr,
						(const xfrm_address_t *)&fl->u.ip4.saddr);
1357 1358
	case AF_INET6:
		return __xfrm6_state_addr_check(x,
1359 1360
						(const xfrm_address_t *)&fl->u.ip6.daddr,
						(const xfrm_address_t *)&fl->u.ip6.saddr);
1361 1362 1363 1364
	}
	return 0;
}

1365
static inline int xfrm_state_kern(const struct xfrm_state *x)
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{
	return atomic_read(&x->tunnel_users);
}

1370 1371
static inline int xfrm_id_proto_match(u8 proto, u8 userproto)
{
1372 1373 1374 1375
	return (!userproto || proto == userproto ||
		(userproto == IPSEC_PROTO_ANY && (proto == IPPROTO_AH ||
						  proto == IPPROTO_ESP ||
						  proto == IPPROTO_COMP)));
1376 1377
}

L
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/*
 * xfrm algorithm information
 */
1381
struct xfrm_algo_aead_info {
1382
	char *geniv;
1383 1384 1385
	u16 icv_truncbits;
};

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struct xfrm_algo_auth_info {
	u16 icv_truncbits;
	u16 icv_fullbits;
};

struct xfrm_algo_encr_info {
1392
	char *geniv;
L
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1393 1394 1395 1396 1397 1398 1399 1400 1401 1402
	u16 blockbits;
	u16 defkeybits;
};

struct xfrm_algo_comp_info {
	u16 threshold;
};

struct xfrm_algo_desc {
	char *name;
1403
	char *compat;
L
Linus Torvalds 已提交
1404
	u8 available:1;
1405
	u8 pfkey_supported:1;
L
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1406
	union {
1407
		struct xfrm_algo_aead_info aead;
L
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1408 1409 1410 1411 1412 1413 1414
		struct xfrm_algo_auth_info auth;
		struct xfrm_algo_encr_info encr;
		struct xfrm_algo_comp_info comp;
	} uinfo;
	struct sadb_alg desc;
};

1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426
/* XFRM protocol handlers.  */
struct xfrm4_protocol {
	int (*handler)(struct sk_buff *skb);
	int (*input_handler)(struct sk_buff *skb, int nexthdr, __be32 spi,
			     int encap_type);
	int (*cb_handler)(struct sk_buff *skb, int err);
	int (*err_handler)(struct sk_buff *skb, u32 info);

	struct xfrm4_protocol __rcu *next;
	int priority;
};

1427
struct xfrm6_protocol {
L
Linus Torvalds 已提交
1428
	int (*handler)(struct sk_buff *skb);
1429 1430 1431
	int (*cb_handler)(struct sk_buff *skb, int err);
	int (*err_handler)(struct sk_buff *skb, struct inet6_skb_parm *opt,
			   u8 type, u8 code, int offset, __be32 info);
H
Herbert Xu 已提交
1432

1433
	struct xfrm6_protocol __rcu *next;
H
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1434
	int priority;
L
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1435 1436 1437 1438
};

/* XFRM tunnel handlers.  */
struct xfrm_tunnel {
1439
	int (*handler)(struct sk_buff *skb);
J
jamal 已提交
1440
	int (*err_handler)(struct sk_buff *skb, u32 info);
H
Herbert Xu 已提交
1441

E
Eric Dumazet 已提交
1442
	struct xfrm_tunnel __rcu *next;
1443 1444 1445
	int priority;
};

L
Linus Torvalds 已提交
1446
struct xfrm6_tunnel {
H
Herbert Xu 已提交
1447 1448
	int (*handler)(struct sk_buff *skb);
	int (*err_handler)(struct sk_buff *skb, struct inet6_skb_parm *opt,
1449
			   u8 type, u8 code, int offset, __be32 info);
E
Eric Dumazet 已提交
1450
	struct xfrm6_tunnel __rcu *next;
H
Herbert Xu 已提交
1451
	int priority;
L
Linus Torvalds 已提交
1452 1453
};

1454 1455 1456 1457 1458
void xfrm_init(void);
void xfrm4_init(void);
int xfrm_state_init(struct net *net);
void xfrm_state_fini(struct net *net);
void xfrm4_state_init(void);
1459
void xfrm4_protocol_init(void);
1460
#ifdef CONFIG_XFRM
1461 1462 1463 1464
int xfrm6_init(void);
void xfrm6_fini(void);
int xfrm6_state_init(void);
void xfrm6_state_fini(void);
1465 1466
int xfrm6_protocol_init(void);
void xfrm6_protocol_fini(void);
1467 1468 1469 1470 1471 1472 1473 1474 1475 1476
#else
static inline int xfrm6_init(void)
{
	return 0;
}
static inline void xfrm6_fini(void)
{
	;
}
#endif
L
Linus Torvalds 已提交
1477

1478
#ifdef CONFIG_XFRM_STATISTICS
1479 1480
int xfrm_proc_init(struct net *net);
void xfrm_proc_fini(struct net *net);
1481 1482
#endif

1483
int xfrm_sysctl_init(struct net *net);
A
Alexey Dobriyan 已提交
1484
#ifdef CONFIG_SYSCTL
1485
void xfrm_sysctl_fini(struct net *net);
A
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1486 1487 1488 1489 1490 1491
#else
static inline void xfrm_sysctl_fini(struct net *net)
{
}
#endif

1492
void xfrm_state_walk_init(struct xfrm_state_walk *walk, u8 proto,
1493
			  struct xfrm_address_filter *filter);
1494 1495
int xfrm_state_walk(struct net *net, struct xfrm_state_walk *walk,
		    int (*func)(struct xfrm_state *, int, void*), void *);
F
Fan Du 已提交
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void xfrm_state_walk_done(struct xfrm_state_walk *walk, struct net *net);
1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508
struct xfrm_state *xfrm_state_alloc(struct net *net);
struct xfrm_state *xfrm_state_find(const xfrm_address_t *daddr,
				   const xfrm_address_t *saddr,
				   const struct flowi *fl,
				   struct xfrm_tmpl *tmpl,
				   struct xfrm_policy *pol, int *err,
				   unsigned short family);
struct xfrm_state *xfrm_stateonly_find(struct net *net, u32 mark,
				       xfrm_address_t *daddr,
				       xfrm_address_t *saddr,
				       unsigned short family,
				       u8 mode, u8 proto, u32 reqid);
1509 1510
struct xfrm_state *xfrm_state_lookup_byspi(struct net *net, __be32 spi,
					      unsigned short family);
1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522
int xfrm_state_check_expire(struct xfrm_state *x);
void xfrm_state_insert(struct xfrm_state *x);
int xfrm_state_add(struct xfrm_state *x);
int xfrm_state_update(struct xfrm_state *x);
struct xfrm_state *xfrm_state_lookup(struct net *net, u32 mark,
				     const xfrm_address_t *daddr, __be32 spi,
				     u8 proto, unsigned short family);
struct xfrm_state *xfrm_state_lookup_byaddr(struct net *net, u32 mark,
					    const xfrm_address_t *daddr,
					    const xfrm_address_t *saddr,
					    u8 proto,
					    unsigned short family);
1523
#ifdef CONFIG_XFRM_SUB_POLICY
1524
int xfrm_tmpl_sort(struct xfrm_tmpl **dst, struct xfrm_tmpl **src, int n,
F
Fan Du 已提交
1525
		   unsigned short family, struct net *net);
1526 1527
int xfrm_state_sort(struct xfrm_state **dst, struct xfrm_state **src, int n,
		    unsigned short family);
1528 1529
#else
static inline int xfrm_tmpl_sort(struct xfrm_tmpl **dst, struct xfrm_tmpl **src,
F
Fan Du 已提交
1530
				 int n, unsigned short family, struct net *net)
1531 1532 1533 1534 1535 1536 1537 1538 1539 1540
{
	return -ENOSYS;
}

static inline int xfrm_state_sort(struct xfrm_state **dst, struct xfrm_state **src,
				  int n, unsigned short family)
{
	return -ENOSYS;
}
#endif
1541 1542 1543 1544 1545 1546 1547

struct xfrmk_sadinfo {
	u32 sadhcnt; /* current hash bkts */
	u32 sadhmcnt; /* max allowed hash bkts */
	u32 sadcnt; /* current running count */
};

1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558
struct xfrmk_spdinfo {
	u32 incnt;
	u32 outcnt;
	u32 fwdcnt;
	u32 inscnt;
	u32 outscnt;
	u32 fwdscnt;
	u32 spdhcnt;
	u32 spdhmcnt;
};

1559 1560
struct xfrm_state *xfrm_find_acq_byseq(struct net *net, u32 mark, u32 seq);
int xfrm_state_delete(struct xfrm_state *x);
1561
int xfrm_state_flush(struct net *net, u8 proto, bool task_valid);
1562
int xfrm_dev_state_flush(struct net *net, struct net_device *dev, bool task_valid);
1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573
void xfrm_sad_getinfo(struct net *net, struct xfrmk_sadinfo *si);
void xfrm_spd_getinfo(struct net *net, struct xfrmk_spdinfo *si);
u32 xfrm_replay_seqhi(struct xfrm_state *x, __be32 net_seq);
int xfrm_init_replay(struct xfrm_state *x);
int xfrm_state_mtu(struct xfrm_state *x, int mtu);
int __xfrm_init_state(struct xfrm_state *x, bool init_replay);
int xfrm_init_state(struct xfrm_state *x);
int xfrm_prepare_input(struct xfrm_state *x, struct sk_buff *skb);
int xfrm_input(struct sk_buff *skb, int nexthdr, __be32 spi, int encap_type);
int xfrm_input_resume(struct sk_buff *skb, int nexthdr);
int xfrm_output_resume(struct sk_buff *skb, int err);
1574
int xfrm_output(struct sock *sk, struct sk_buff *skb);
1575 1576 1577 1578 1579 1580 1581 1582
int xfrm_inner_extract_output(struct xfrm_state *x, struct sk_buff *skb);
void xfrm_local_error(struct sk_buff *skb, int mtu);
int xfrm4_extract_header(struct sk_buff *skb);
int xfrm4_extract_input(struct xfrm_state *x, struct sk_buff *skb);
int xfrm4_rcv_encap(struct sk_buff *skb, int nexthdr, __be32 spi,
		    int encap_type);
int xfrm4_transport_finish(struct sk_buff *skb, int async);
int xfrm4_rcv(struct sk_buff *skb);
S
Steffen Klassert 已提交
1583
int xfrm_parse_spi(struct sk_buff *skb, u8 nexthdr, __be32 *spi, __be32 *seq);
1584 1585 1586

static inline int xfrm4_rcv_spi(struct sk_buff *skb, int nexthdr, __be32 spi)
{
1587
	XFRM_TUNNEL_SKB_CB(skb)->tunnel.ip4 = NULL;
1588 1589 1590
	XFRM_SPI_SKB_CB(skb)->family = AF_INET;
	XFRM_SPI_SKB_CB(skb)->daddroff = offsetof(struct iphdr, daddr);
	return xfrm_input(skb, nexthdr, spi, 0);
1591 1592
}

1593 1594
int xfrm4_extract_output(struct xfrm_state *x, struct sk_buff *skb);
int xfrm4_prepare_output(struct xfrm_state *x, struct sk_buff *skb);
E
Eric W. Biederman 已提交
1595
int xfrm4_output(struct net *net, struct sock *sk, struct sk_buff *skb);
1596
int xfrm4_output_finish(struct sock *sk, struct sk_buff *skb);
1597 1598 1599
int xfrm4_rcv_cb(struct sk_buff *skb, u8 protocol, int err);
int xfrm4_protocol_register(struct xfrm4_protocol *handler, unsigned char protocol);
int xfrm4_protocol_deregister(struct xfrm4_protocol *handler, unsigned char protocol);
1600 1601 1602 1603 1604
int xfrm4_tunnel_register(struct xfrm_tunnel *handler, unsigned short family);
int xfrm4_tunnel_deregister(struct xfrm_tunnel *handler, unsigned short family);
void xfrm4_local_error(struct sk_buff *skb, u32 mtu);
int xfrm6_extract_header(struct sk_buff *skb);
int xfrm6_extract_input(struct xfrm_state *x, struct sk_buff *skb);
N
Nicolas Dichtel 已提交
1605 1606
int xfrm6_rcv_spi(struct sk_buff *skb, int nexthdr, __be32 spi,
		  struct ip6_tnl *t);
1607
int xfrm6_transport_finish(struct sk_buff *skb, int async);
N
Nicolas Dichtel 已提交
1608
int xfrm6_rcv_tnl(struct sk_buff *skb, struct ip6_tnl *t);
1609 1610 1611
int xfrm6_rcv(struct sk_buff *skb);
int xfrm6_input_addr(struct sk_buff *skb, xfrm_address_t *daddr,
		     xfrm_address_t *saddr, u8 proto);
1612
void xfrm6_local_error(struct sk_buff *skb, u32 mtu);
1613 1614 1615
int xfrm6_rcv_cb(struct sk_buff *skb, u8 protocol, int err);
int xfrm6_protocol_register(struct xfrm6_protocol *handler, unsigned char protocol);
int xfrm6_protocol_deregister(struct xfrm6_protocol *handler, unsigned char protocol);
1616
int xfrm6_tunnel_register(struct xfrm6_tunnel *handler, unsigned short family);
1617
int xfrm6_tunnel_deregister(struct xfrm6_tunnel *handler, unsigned short family);
1618 1619 1620 1621
__be32 xfrm6_tunnel_alloc_spi(struct net *net, xfrm_address_t *saddr);
__be32 xfrm6_tunnel_spi_lookup(struct net *net, const xfrm_address_t *saddr);
int xfrm6_extract_output(struct xfrm_state *x, struct sk_buff *skb);
int xfrm6_prepare_output(struct xfrm_state *x, struct sk_buff *skb);
E
Eric W. Biederman 已提交
1622
int xfrm6_output(struct net *net, struct sock *sk, struct sk_buff *skb);
1623
int xfrm6_output_finish(struct sock *sk, struct sk_buff *skb);
1624 1625
int xfrm6_find_1stfragopt(struct xfrm_state *x, struct sk_buff *skb,
			  u8 **prevhdr);
L
Linus Torvalds 已提交
1626 1627

#ifdef CONFIG_XFRM
1628 1629 1630
int xfrm4_udp_encap_rcv(struct sock *sk, struct sk_buff *skb);
int xfrm_user_policy(struct sock *sk, int optname,
		     u8 __user *optval, int optlen);
L
Linus Torvalds 已提交
1631 1632 1633 1634 1635 1636
#else
static inline int xfrm_user_policy(struct sock *sk, int optname, u8 __user *optval, int optlen)
{
 	return -ENOPROTOOPT;
} 

1637
static inline int xfrm4_udp_encap_rcv(struct sock *sk, struct sk_buff *skb)
L
Linus Torvalds 已提交
1638 1639 1640 1641 1642 1643 1644
{
 	/* should not happen */
 	kfree_skb(skb);
	return 0;
}
#endif

1645 1646 1647 1648 1649
struct dst_entry *__xfrm_dst_lookup(struct net *net, int tos, int oif,
				    const xfrm_address_t *saddr,
				    const xfrm_address_t *daddr,
				    int family);

1650
struct xfrm_policy *xfrm_policy_alloc(struct net *net, gfp_t gfp);
1651

1652 1653 1654 1655
void xfrm_policy_walk_init(struct xfrm_policy_walk *walk, u8 type);
int xfrm_policy_walk(struct net *net, struct xfrm_policy_walk *walk,
		     int (*func)(struct xfrm_policy *, int, int, void*),
		     void *);
F
Fan Du 已提交
1656
void xfrm_policy_walk_done(struct xfrm_policy_walk *walk, struct net *net);
L
Linus Torvalds 已提交
1657
int xfrm_policy_insert(int dir, struct xfrm_policy *policy, int excl);
1658 1659
struct xfrm_policy *xfrm_policy_bysel_ctx(struct net *net, u32 mark,
					  u8 type, int dir,
1660
					  struct xfrm_selector *sel,
1661 1662
					  struct xfrm_sec_ctx *ctx, int delete,
					  int *err);
1663 1664
struct xfrm_policy *xfrm_policy_byid(struct net *net, u32 mark, u8, int dir,
				     u32 id, int delete, int *err);
1665
int xfrm_policy_flush(struct net *net, u8 type, bool task_valid);
1666
void xfrm_policy_hash_rebuild(struct net *net);
L
Linus Torvalds 已提交
1667
u32 xfrm_get_acqseq(void);
1668
int verify_spi_info(u8 proto, u32 min, u32 max);
1669
int xfrm_alloc_spi(struct xfrm_state *x, u32 minspi, u32 maxspi);
1670
struct xfrm_state *xfrm_find_acq(struct net *net, const struct xfrm_mark *mark,
1671
				 u8 mode, u32 reqid, u8 proto,
1672 1673
				 const xfrm_address_t *daddr,
				 const xfrm_address_t *saddr, int create,
1674
				 unsigned short family);
1675
int xfrm_sk_policy_insert(struct sock *sk, int dir, struct xfrm_policy *pol);
L
Linus Torvalds 已提交
1676

1677
#ifdef CONFIG_XFRM_MIGRATE
1678 1679
int km_migrate(const struct xfrm_selector *sel, u8 dir, u8 type,
	       const struct xfrm_migrate *m, int num_bundles,
1680 1681
	       const struct xfrm_kmaddress *k,
	       const struct xfrm_encap_tmpl *encap);
F
Fan Du 已提交
1682
struct xfrm_state *xfrm_migrate_state_find(struct xfrm_migrate *m, struct net *net);
1683
struct xfrm_state *xfrm_state_migrate(struct xfrm_state *x,
1684 1685
				      struct xfrm_migrate *m,
				      struct xfrm_encap_tmpl *encap);
1686 1687
int xfrm_migrate(const struct xfrm_selector *sel, u8 dir, u8 type,
		 struct xfrm_migrate *m, int num_bundles,
1688 1689
		 struct xfrm_kmaddress *k, struct net *net,
		 struct xfrm_encap_tmpl *encap);
1690 1691
#endif

1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712
int km_new_mapping(struct xfrm_state *x, xfrm_address_t *ipaddr, __be16 sport);
void km_policy_expired(struct xfrm_policy *pol, int dir, int hard, u32 portid);
int km_report(struct net *net, u8 proto, struct xfrm_selector *sel,
	      xfrm_address_t *addr);

void xfrm_input_init(void);
int xfrm_parse_spi(struct sk_buff *skb, u8 nexthdr, __be32 *spi, __be32 *seq);

void xfrm_probe_algs(void);
int xfrm_count_pfkey_auth_supported(void);
int xfrm_count_pfkey_enc_supported(void);
struct xfrm_algo_desc *xfrm_aalg_get_byidx(unsigned int idx);
struct xfrm_algo_desc *xfrm_ealg_get_byidx(unsigned int idx);
struct xfrm_algo_desc *xfrm_aalg_get_byid(int alg_id);
struct xfrm_algo_desc *xfrm_ealg_get_byid(int alg_id);
struct xfrm_algo_desc *xfrm_calg_get_byid(int alg_id);
struct xfrm_algo_desc *xfrm_aalg_get_byname(const char *name, int probe);
struct xfrm_algo_desc *xfrm_ealg_get_byname(const char *name, int probe);
struct xfrm_algo_desc *xfrm_calg_get_byname(const char *name, int probe);
struct xfrm_algo_desc *xfrm_aead_get_byname(const char *name, int icv_len,
					    int probe);
L
Linus Torvalds 已提交
1713

1714 1715 1716 1717 1718 1719 1720 1721 1722 1723
static inline bool xfrm6_addr_equal(const xfrm_address_t *a,
				    const xfrm_address_t *b)
{
	return ipv6_addr_equal((const struct in6_addr *)a,
			       (const struct in6_addr *)b);
}

static inline bool xfrm_addr_equal(const xfrm_address_t *a,
				   const xfrm_address_t *b,
				   sa_family_t family)
L
Linus Torvalds 已提交
1724 1725 1726 1727
{
	switch (family) {
	default:
	case AF_INET:
1728
		return ((__force u32)a->a4 ^ (__force u32)b->a4) == 0;
L
Linus Torvalds 已提交
1729
	case AF_INET6:
1730
		return xfrm6_addr_equal(a, b);
L
Linus Torvalds 已提交
1731 1732 1733
	}
}

1734 1735 1736 1737 1738
static inline int xfrm_policy_id2dir(u32 index)
{
	return index & 7;
}

1739 1740
#ifdef CONFIG_XFRM
static inline int xfrm_aevent_is_on(struct net *net)
1741
{
1742 1743 1744 1745
	struct sock *nlsk;
	int ret = 0;

	rcu_read_lock();
1746
	nlsk = rcu_dereference(net->xfrm.nlsk);
1747 1748 1749 1750
	if (nlsk)
		ret = netlink_has_listeners(nlsk, XFRMNLGRP_AEVENTS);
	rcu_read_unlock();
	return ret;
1751
}
1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765

static inline int xfrm_acquire_is_on(struct net *net)
{
	struct sock *nlsk;
	int ret = 0;

	rcu_read_lock();
	nlsk = rcu_dereference(net->xfrm.nlsk);
	if (nlsk)
		ret = netlink_has_listeners(nlsk, XFRMNLGRP_ACQUIRE);
	rcu_read_unlock();

	return ret;
}
1766
#endif
1767

1768 1769 1770 1771 1772
static inline int aead_len(struct xfrm_algo_aead *alg)
{
	return sizeof(*alg) + ((alg->alg_key_len + 7) / 8);
}

1773
static inline int xfrm_alg_len(const struct xfrm_algo *alg)
1774 1775 1776 1777
{
	return sizeof(*alg) + ((alg->alg_key_len + 7) / 8);
}

1778
static inline int xfrm_alg_auth_len(const struct xfrm_algo_auth *alg)
1779 1780 1781 1782
{
	return sizeof(*alg) + ((alg->alg_key_len + 7) / 8);
}

1783 1784 1785 1786 1787
static inline int xfrm_replay_state_esn_len(struct xfrm_replay_state_esn *replay_esn)
{
	return sizeof(*replay_esn) + replay_esn->bmp_len * sizeof(__u32);
}

1788
#ifdef CONFIG_XFRM_MIGRATE
1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810
static inline int xfrm_replay_clone(struct xfrm_state *x,
				     struct xfrm_state *orig)
{
	x->replay_esn = kzalloc(xfrm_replay_state_esn_len(orig->replay_esn),
				GFP_KERNEL);
	if (!x->replay_esn)
		return -ENOMEM;

	x->replay_esn->bmp_len = orig->replay_esn->bmp_len;
	x->replay_esn->replay_window = orig->replay_esn->replay_window;

	x->preplay_esn = kmemdup(x->replay_esn,
				 xfrm_replay_state_esn_len(x->replay_esn),
				 GFP_KERNEL);
	if (!x->preplay_esn) {
		kfree(x->replay_esn);
		return -ENOMEM;
	}

	return 0;
}

1811 1812 1813 1814 1815 1816
static inline struct xfrm_algo_aead *xfrm_algo_aead_clone(struct xfrm_algo_aead *orig)
{
	return kmemdup(orig, aead_len(orig), GFP_KERNEL);
}


1817 1818
static inline struct xfrm_algo *xfrm_algo_clone(struct xfrm_algo *orig)
{
1819
	return kmemdup(orig, xfrm_alg_len(orig), GFP_KERNEL);
1820 1821
}

1822 1823 1824 1825 1826
static inline struct xfrm_algo_auth *xfrm_algo_auth_clone(struct xfrm_algo_auth *orig)
{
	return kmemdup(orig, xfrm_alg_auth_len(orig), GFP_KERNEL);
}

1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840
static inline void xfrm_states_put(struct xfrm_state **states, int n)
{
	int i;
	for (i = 0; i < n; i++)
		xfrm_state_put(*(states + i));
}

static inline void xfrm_states_delete(struct xfrm_state **states, int n)
{
	int i;
	for (i = 0; i < n; i++)
		xfrm_state_delete(*(states + i));
}
#endif
1841

1842
#ifdef CONFIG_XFRM
1843 1844 1845 1846
static inline struct xfrm_state *xfrm_input_state(struct sk_buff *skb)
{
	return skb->sp->xvec[skb->sp->len - 1];
}
1847 1848 1849 1850 1851 1852 1853 1854 1855
static inline struct xfrm_offload *xfrm_offload(struct sk_buff *skb)
{
	struct sec_path *sp = skb->sp;

	if (!sp || !sp->olen || sp->len != sp->olen)
		return NULL;

	return &sp->ovec[sp->olen - 1];
}
1856
#endif
1857

1858
void __net_init xfrm_dev_init(void);
1859 1860

#ifdef CONFIG_XFRM_OFFLOAD
1861
int validate_xmit_xfrm(struct sk_buff *skb, netdev_features_t features);
1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885
int xfrm_dev_state_add(struct net *net, struct xfrm_state *x,
		       struct xfrm_user_offload *xuo);
bool xfrm_dev_offload_ok(struct sk_buff *skb, struct xfrm_state *x);

static inline void xfrm_dev_state_delete(struct xfrm_state *x)
{
	struct xfrm_state_offload *xso = &x->xso;

	if (xso->dev)
		xso->dev->xfrmdev_ops->xdo_dev_state_delete(x);
}

static inline void xfrm_dev_state_free(struct xfrm_state *x)
{
	struct xfrm_state_offload *xso = &x->xso;
	 struct net_device *dev = xso->dev;

	if (dev && dev->xfrmdev_ops) {
		dev->xfrmdev_ops->xdo_dev_state_free(x);
		xso->dev = NULL;
		dev_put(dev);
	}
}
#else
1886 1887 1888 1889 1890
static inline int validate_xmit_xfrm(struct sk_buff *skb, netdev_features_t features)
{
	return 0;
}

1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909
static inline int xfrm_dev_state_add(struct net *net, struct xfrm_state *x, struct xfrm_user_offload *xuo)
{
	return 0;
}

static inline void xfrm_dev_state_delete(struct xfrm_state *x)
{
}

static inline void xfrm_dev_state_free(struct xfrm_state *x)
{
}

static inline bool xfrm_dev_offload_ok(struct sk_buff *skb, struct xfrm_state *x)
{
	return false;
}
#endif

1910 1911 1912
static inline int xfrm_mark_get(struct nlattr **attrs, struct xfrm_mark *m)
{
	if (attrs[XFRMA_MARK])
1913
		memcpy(m, nla_data(attrs[XFRMA_MARK]), sizeof(struct xfrm_mark));
1914 1915 1916 1917 1918 1919
	else
		m->v = m->m = 0;

	return m->v & m->m;
}

1920
static inline int xfrm_mark_put(struct sk_buff *skb, const struct xfrm_mark *m)
1921
{
1922
	int ret = 0;
1923

1924 1925 1926
	if (m->m | m->v)
		ret = nla_put(skb, XFRMA_MARK, sizeof(struct xfrm_mark), m);
	return ret;
1927 1928
}

1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948
static inline int xfrm_tunnel_check(struct sk_buff *skb, struct xfrm_state *x,
				    unsigned int family)
{
	bool tunnel = false;

	switch(family) {
	case AF_INET:
		if (XFRM_TUNNEL_SKB_CB(skb)->tunnel.ip4)
			tunnel = true;
		break;
	case AF_INET6:
		if (XFRM_TUNNEL_SKB_CB(skb)->tunnel.ip6)
			tunnel = true;
		break;
	}
	if (tunnel && !(x->outer_mode->flags & XFRM_MODE_FLAG_TUNNEL))
		return -EINVAL;

	return 0;
}
L
Linus Torvalds 已提交
1949
#endif	/* _NET_XFRM_H */