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9p
[ DIR ]
drwxr-xr-x
2018-04-05 07:11
bluetooth
[ DIR ]
drwxr-xr-x
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caif
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drwxr-xr-x
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irda
[ DIR ]
drwxr-xr-x
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iucv
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netfilter
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netns
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nfc
[ DIR ]
drwxr-xr-x
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phonet
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drwxr-xr-x
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sctp
[ DIR ]
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tc_act
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drwxr-xr-x
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6lowpan.h
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Space.h
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act_api.h
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addrconf.h
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af_ieee802154.h
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af_rxrpc.h
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af_unix.h
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af_vsock.h
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ah.h
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arp.h
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atmclip.h
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ax25.h
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ax88796.h
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bond_3ad.h
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bond_alb.h
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bond_options.h
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bonding.h
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busy_poll.h
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cfg80211-wext.h
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cfg80211.h
187.7
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cfg802154.h
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checksum.h
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cipso_ipv4.h
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cls_cgroup.h
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codel.h
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compat.h
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datalink.h
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dcbevent.h
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dcbnl.h
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dn.h
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dn_dev.h
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dn_fib.h
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dn_neigh.h
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dn_nsp.h
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dn_route.h
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dsa.h
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dsfield.h
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dst.h
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dst_metadata.h
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dst_ops.h
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esp.h
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ethoc.h
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fib_rules.h
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firewire.h
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flow.h
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flow_dissector.h
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flowcache.h
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fou.h
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garp.h
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gen_stats.h
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genetlink.h
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geneve.h
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gre.h
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gro_cells.h
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gue.h
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icmp.h
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ieee80211_radiotap.h
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ieee802154_netdev.h
9.13
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if_inet6.h
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inet6_connection_sock.h
1.1
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inet6_hashtables.h
3.25
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inet_common.h
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inet_connection_sock.h
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inet_ecn.h
6.02
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inet_frag.h
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inet_hashtables.h
12.02
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inet_sock.h
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inet_timewait_sock.h
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inetpeer.h
3.44
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ip.h
17.13
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ip6_checksum.h
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ip6_fib.h
7.21
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ip6_route.h
6.17
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ip6_tunnel.h
3.28
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ip_fib.h
9.36
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ip_tunnels.h
10.69
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ip_vs.h
46.13
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ipcomp.h
620
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ipconfig.h
772
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ipv6.h
28.59
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2018-04-02 18:07
ipx.h
4.32
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2016-01-11 00:01
iw_handler.h
22.21
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2018-04-02 18:07
l3mdev.h
5.18
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lapb.h
4.69
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lib80211.h
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llc.h
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llc_c_ac.h
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llc_c_ev.h
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llc_c_st.h
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llc_conn.h
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llc_if.h
2.16
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llc_pdu.h
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llc_s_ac.h
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llc_s_ev.h
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llc_s_st.h
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llc_sap.h
1.08
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lwtunnel.h
4.07
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mac80211.h
212.7
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mac802154.h
12.1
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mip6.h
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mld.h
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mpls.h
1.14
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mpls_iptunnel.h
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mrp.h
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ndisc.h
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neighbour.h
14.16
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2016-01-11 00:01
net_namespace.h
9.2
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net_ratelimit.h
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netevent.h
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netlabel.h
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netlink.h
36.13
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netprio_cgroup.h
1.08
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netrom.h
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nexthop.h
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nl802154.h
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p8022.h
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ping.h
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pkt_cls.h
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pkt_sched.h
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protocol.h
4.09
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psnap.h
312
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raw.h
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rawv6.h
543
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red.h
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regulatory.h
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request_sock.h
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rose.h
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route.h
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rtnetlink.h
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sch_generic.h
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scm.h
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secure_seq.h
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slhc_vj.h
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snmp.h
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sock.h
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stp.h
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switchdev.h
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tcp.h
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tcp_memcontrol.h
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tcp_states.h
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timewait_sock.h
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transp_v6.h
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tso.h
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udp.h
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udp_tunnel.h
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udplite.h
3.75
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vsock_addr.h
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vxlan.h
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wext.h
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wimax.h
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x25.h
9.35
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x25device.h
348
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xfrm.h
49.3
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2018-04-02 18:07
Save
Rename
/* * Operations on the network namespace */ #ifndef __NET_NET_NAMESPACE_H #define __NET_NET_NAMESPACE_H #include <linux/atomic.h> #include <linux/workqueue.h> #include <linux/list.h> #include <linux/sysctl.h> #include <net/flow.h> #include <net/netns/core.h> #include <net/netns/mib.h> #include <net/netns/unix.h> #include <net/netns/packet.h> #include <net/netns/ipv4.h> #include <net/netns/ipv6.h> #include <net/netns/ieee802154_6lowpan.h> #include <net/netns/sctp.h> #include <net/netns/dccp.h> #include <net/netns/netfilter.h> #include <net/netns/x_tables.h> #if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE) #include <net/netns/conntrack.h> #endif #include <net/netns/nftables.h> #include <net/netns/xfrm.h> #include <net/netns/mpls.h> #include <linux/ns_common.h> #include <linux/idr.h> #include <linux/skbuff.h> struct user_namespace; struct proc_dir_entry; struct net_device; struct sock; struct ctl_table_header; struct net_generic; struct sock; struct netns_ipvs; #define NETDEV_HASHBITS 8 #define NETDEV_HASHENTRIES (1 << NETDEV_HASHBITS) struct net { atomic_t passive; /* To decided when the network * namespace should be freed. */ atomic_t count; /* To decided when the network * namespace should be shut down. */ spinlock_t rules_mod_lock; atomic64_t cookie_gen; struct list_head list; /* list of network namespaces */ struct list_head cleanup_list; /* namespaces on death row */ struct list_head exit_list; /* Use only net_mutex */ struct user_namespace *user_ns; /* Owning user namespace */ spinlock_t nsid_lock; struct idr netns_ids; struct ns_common ns; struct proc_dir_entry *proc_net; struct proc_dir_entry *proc_net_stat; #ifdef CONFIG_SYSCTL struct ctl_table_set sysctls; #endif struct sock *rtnl; /* rtnetlink socket */ struct sock *genl_sock; struct list_head dev_base_head; struct hlist_head *dev_name_head; struct hlist_head *dev_index_head; unsigned int dev_base_seq; /* protected by rtnl_mutex */ int ifindex; unsigned int dev_unreg_count; /* core fib_rules */ struct list_head rules_ops; struct net_device *loopback_dev; /* The loopback */ struct netns_core core; struct netns_mib mib; struct netns_packet packet; struct netns_unix unx; struct netns_ipv4 ipv4; #if IS_ENABLED(CONFIG_IPV6) struct netns_ipv6 ipv6; #endif #if IS_ENABLED(CONFIG_IEEE802154_6LOWPAN) struct netns_ieee802154_lowpan ieee802154_lowpan; #endif #if defined(CONFIG_IP_SCTP) || defined(CONFIG_IP_SCTP_MODULE) struct netns_sctp sctp; #endif #if defined(CONFIG_IP_DCCP) || defined(CONFIG_IP_DCCP_MODULE) struct netns_dccp dccp; #endif #ifdef CONFIG_NETFILTER struct netns_nf nf; struct netns_xt xt; #if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE) struct netns_ct ct; #endif #if defined(CONFIG_NF_TABLES) || defined(CONFIG_NF_TABLES_MODULE) struct netns_nftables nft; #endif #if IS_ENABLED(CONFIG_NF_DEFRAG_IPV6) struct netns_nf_frag nf_frag; #endif struct sock *nfnl; struct sock *nfnl_stash; #if IS_ENABLED(CONFIG_NETFILTER_NETLINK_ACCT) struct list_head nfnl_acct_list; #endif #endif #ifdef CONFIG_WEXT_CORE struct sk_buff_head wext_nlevents; #endif struct net_generic __rcu *gen; /* Note : following structs are cache line aligned */ #ifdef CONFIG_XFRM struct netns_xfrm xfrm; #endif #if IS_ENABLED(CONFIG_IP_VS) struct netns_ipvs *ipvs; #endif #if IS_ENABLED(CONFIG_MPLS) struct netns_mpls mpls; #endif struct sock *diag_nlsk; atomic_t fnhe_genid; }; #include <linux/seq_file_net.h> /* Init's network namespace */ extern struct net init_net; #ifdef CONFIG_NET_NS struct net *copy_net_ns(unsigned long flags, struct user_namespace *user_ns, struct net *old_net); #else /* CONFIG_NET_NS */ #include <linux/sched.h> #include <linux/nsproxy.h> static inline struct net *copy_net_ns(unsigned long flags, struct user_namespace *user_ns, struct net *old_net) { if (flags & CLONE_NEWNET) return ERR_PTR(-EINVAL); return old_net; } #endif /* CONFIG_NET_NS */ extern struct list_head net_namespace_list; struct net *get_net_ns_by_pid(pid_t pid); struct net *get_net_ns_by_fd(int pid); #ifdef CONFIG_SYSCTL void ipx_register_sysctl(void); void ipx_unregister_sysctl(void); #else #define ipx_register_sysctl() #define ipx_unregister_sysctl() #endif #ifdef CONFIG_NET_NS void __put_net(struct net *net); static inline struct net *get_net(struct net *net) { atomic_inc(&net->count); return net; } static inline struct net *maybe_get_net(struct net *net) { /* Used when we know struct net exists but we * aren't guaranteed a previous reference count * exists. If the reference count is zero this * function fails and returns NULL. */ if (!atomic_inc_not_zero(&net->count)) net = NULL; return net; } static inline void put_net(struct net *net) { if (atomic_dec_and_test(&net->count)) __put_net(net); } static inline int net_eq(const struct net *net1, const struct net *net2) { return net1 == net2; } static inline int check_net(const struct net *net) { return atomic_read(&net->count) != 0; } void net_drop_ns(void *); #else static inline struct net *get_net(struct net *net) { return net; } static inline void put_net(struct net *net) { } static inline struct net *maybe_get_net(struct net *net) { return net; } static inline int net_eq(const struct net *net1, const struct net *net2) { return 1; } static inline int check_net(const struct net *net) { return 1; } #define net_drop_ns NULL #endif typedef struct { #ifdef CONFIG_NET_NS struct net *net; #endif } possible_net_t; static inline void write_pnet(possible_net_t *pnet, struct net *net) { #ifdef CONFIG_NET_NS pnet->net = net; #endif } static inline struct net *read_pnet(const possible_net_t *pnet) { #ifdef CONFIG_NET_NS return pnet->net; #else return &init_net; #endif } #define for_each_net(VAR) \ list_for_each_entry(VAR, &net_namespace_list, list) #define for_each_net_rcu(VAR) \ list_for_each_entry_rcu(VAR, &net_namespace_list, list) #ifdef CONFIG_NET_NS #define __net_init #define __net_exit #define __net_initdata #define __net_initconst #else #define __net_init __init #define __net_exit __exit_refok #define __net_initdata __initdata #define __net_initconst __initconst #endif int peernet2id_alloc(struct net *net, struct net *peer); int peernet2id(struct net *net, struct net *peer); bool peernet_has_id(struct net *net, struct net *peer); struct net *get_net_ns_by_id(struct net *net, int id); struct pernet_operations { struct list_head list; int (*init)(struct net *net); void (*exit)(struct net *net); void (*exit_batch)(struct list_head *net_exit_list); int *id; size_t size; }; /* * Use these carefully. If you implement a network device and it * needs per network namespace operations use device pernet operations, * otherwise use pernet subsys operations. * * Network interfaces need to be removed from a dying netns _before_ * subsys notifiers can be called, as most of the network code cleanup * (which is done from subsys notifiers) runs with the assumption that * dev_remove_pack has been called so no new packets will arrive during * and after the cleanup functions have been called. dev_remove_pack * is not per namespace so instead the guarantee of no more packets * arriving in a network namespace is provided by ensuring that all * network devices and all sockets have left the network namespace * before the cleanup methods are called. * * For the longest time the ipv4 icmp code was registered as a pernet * device which caused kernel oops, and panics during network * namespace cleanup. So please don't get this wrong. */ int register_pernet_subsys(struct pernet_operations *); void unregister_pernet_subsys(struct pernet_operations *); int register_pernet_device(struct pernet_operations *); void unregister_pernet_device(struct pernet_operations *); struct ctl_table; struct ctl_table_header; #ifdef CONFIG_SYSCTL int net_sysctl_init(void); struct ctl_table_header *register_net_sysctl(struct net *net, const char *path, struct ctl_table *table); void unregister_net_sysctl_table(struct ctl_table_header *header); #else static inline int net_sysctl_init(void) { return 0; } static inline struct ctl_table_header *register_net_sysctl(struct net *net, const char *path, struct ctl_table *table) { return NULL; } static inline void unregister_net_sysctl_table(struct ctl_table_header *header) { } #endif static inline int rt_genid_ipv4(struct net *net) { return atomic_read(&net->ipv4.rt_genid); } static inline void rt_genid_bump_ipv4(struct net *net) { atomic_inc(&net->ipv4.rt_genid); } extern void (*__fib6_flush_trees)(struct net *net); static inline void rt_genid_bump_ipv6(struct net *net) { if (__fib6_flush_trees) __fib6_flush_trees(net); } #if IS_ENABLED(CONFIG_IEEE802154_6LOWPAN) static inline struct netns_ieee802154_lowpan * net_ieee802154_lowpan(struct net *net) { return &net->ieee802154_lowpan; } #endif /* For callers who don't really care about whether it's IPv4 or IPv6 */ static inline void rt_genid_bump_all(struct net *net) { rt_genid_bump_ipv4(net); rt_genid_bump_ipv6(net); } static inline int fnhe_genid(struct net *net) { return atomic_read(&net->fnhe_genid); } static inline void fnhe_genid_bump(struct net *net) { atomic_inc(&net->fnhe_genid); } #endif /* __NET_NET_NAMESPACE_H */