409 строки
14 KiB
C
409 строки
14 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef _LINUX_SOCKET_H
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#define _LINUX_SOCKET_H
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#include <asm/socket.h> /* arch-dependent defines */
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#include <linux/sockios.h> /* the SIOCxxx I/O controls */
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#include <linux/uio.h> /* iovec support */
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#include <linux/types.h> /* pid_t */
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#include <linux/compiler.h> /* __user */
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#include <uapi/linux/socket.h>
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struct pid;
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struct cred;
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struct socket;
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#define __sockaddr_check_size(size) \
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BUILD_BUG_ON(((size) > sizeof(struct __kernel_sockaddr_storage)))
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#ifdef CONFIG_PROC_FS
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struct seq_file;
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extern void socket_seq_show(struct seq_file *seq);
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#endif
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typedef __kernel_sa_family_t sa_family_t;
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/*
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* 1003.1g requires sa_family_t and that sa_data is char.
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*/
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struct sockaddr {
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sa_family_t sa_family; /* address family, AF_xxx */
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char sa_data[14]; /* 14 bytes of protocol address */
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};
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struct linger {
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int l_onoff; /* Linger active */
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int l_linger; /* How long to linger for */
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};
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#define sockaddr_storage __kernel_sockaddr_storage
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/*
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* As we do 4.4BSD message passing we use a 4.4BSD message passing
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* system, not 4.3. Thus msg_accrights(len) are now missing. They
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* belong in an obscure libc emulation or the bin.
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*/
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struct msghdr {
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void *msg_name; /* ptr to socket address structure */
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int msg_namelen; /* size of socket address structure */
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struct iov_iter msg_iter; /* data */
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void *msg_control; /* ancillary data */
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__kernel_size_t msg_controllen; /* ancillary data buffer length */
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unsigned int msg_flags; /* flags on received message */
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struct kiocb *msg_iocb; /* ptr to iocb for async requests */
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};
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struct user_msghdr {
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void __user *msg_name; /* ptr to socket address structure */
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int msg_namelen; /* size of socket address structure */
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struct iovec __user *msg_iov; /* scatter/gather array */
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__kernel_size_t msg_iovlen; /* # elements in msg_iov */
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void __user *msg_control; /* ancillary data */
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__kernel_size_t msg_controllen; /* ancillary data buffer length */
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unsigned int msg_flags; /* flags on received message */
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};
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/* For recvmmsg/sendmmsg */
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struct mmsghdr {
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struct user_msghdr msg_hdr;
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unsigned int msg_len;
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};
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/*
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* POSIX 1003.1g - ancillary data object information
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* Ancillary data consits of a sequence of pairs of
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* (cmsghdr, cmsg_data[])
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*/
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struct cmsghdr {
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__kernel_size_t cmsg_len; /* data byte count, including hdr */
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int cmsg_level; /* originating protocol */
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int cmsg_type; /* protocol-specific type */
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};
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/*
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* Ancillary data object information MACROS
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* Table 5-14 of POSIX 1003.1g
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*/
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#define __CMSG_NXTHDR(ctl, len, cmsg) __cmsg_nxthdr((ctl),(len),(cmsg))
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#define CMSG_NXTHDR(mhdr, cmsg) cmsg_nxthdr((mhdr), (cmsg))
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#define CMSG_ALIGN(len) ( ((len)+sizeof(long)-1) & ~(sizeof(long)-1) )
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#define CMSG_DATA(cmsg) ((void *)((char *)(cmsg) + sizeof(struct cmsghdr)))
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#define CMSG_SPACE(len) (sizeof(struct cmsghdr) + CMSG_ALIGN(len))
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#define CMSG_LEN(len) (sizeof(struct cmsghdr) + (len))
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#define __CMSG_FIRSTHDR(ctl,len) ((len) >= sizeof(struct cmsghdr) ? \
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(struct cmsghdr *)(ctl) : \
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(struct cmsghdr *)NULL)
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#define CMSG_FIRSTHDR(msg) __CMSG_FIRSTHDR((msg)->msg_control, (msg)->msg_controllen)
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#define CMSG_OK(mhdr, cmsg) ((cmsg)->cmsg_len >= sizeof(struct cmsghdr) && \
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(cmsg)->cmsg_len <= (unsigned long) \
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((mhdr)->msg_controllen - \
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((char *)(cmsg) - (char *)(mhdr)->msg_control)))
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#define for_each_cmsghdr(cmsg, msg) \
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for (cmsg = CMSG_FIRSTHDR(msg); \
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cmsg; \
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cmsg = CMSG_NXTHDR(msg, cmsg))
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/*
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* Get the next cmsg header
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*
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* PLEASE, do not touch this function. If you think, that it is
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* incorrect, grep kernel sources and think about consequences
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* before trying to improve it.
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*
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* Now it always returns valid, not truncated ancillary object
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* HEADER. But caller still MUST check, that cmsg->cmsg_len is
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* inside range, given by msg->msg_controllen before using
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* ancillary object DATA. --ANK (980731)
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*/
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static inline struct cmsghdr * __cmsg_nxthdr(void *__ctl, __kernel_size_t __size,
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struct cmsghdr *__cmsg)
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{
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struct cmsghdr * __ptr;
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__ptr = (struct cmsghdr*)(((unsigned char *) __cmsg) + CMSG_ALIGN(__cmsg->cmsg_len));
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if ((unsigned long)((char*)(__ptr+1) - (char *) __ctl) > __size)
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return (struct cmsghdr *)0;
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return __ptr;
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}
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static inline struct cmsghdr * cmsg_nxthdr (struct msghdr *__msg, struct cmsghdr *__cmsg)
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{
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return __cmsg_nxthdr(__msg->msg_control, __msg->msg_controllen, __cmsg);
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}
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static inline size_t msg_data_left(struct msghdr *msg)
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{
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return iov_iter_count(&msg->msg_iter);
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}
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/* "Socket"-level control message types: */
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#define SCM_RIGHTS 0x01 /* rw: access rights (array of int) */
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#define SCM_CREDENTIALS 0x02 /* rw: struct ucred */
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#define SCM_SECURITY 0x03 /* rw: security label */
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struct ucred {
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__u32 pid;
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__u32 uid;
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__u32 gid;
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};
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/* Supported address families. */
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#define AF_UNSPEC 0
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#define AF_UNIX 1 /* Unix domain sockets */
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#define AF_LOCAL 1 /* POSIX name for AF_UNIX */
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#define AF_INET 2 /* Internet IP Protocol */
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#define AF_AX25 3 /* Amateur Radio AX.25 */
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#define AF_IPX 4 /* Novell IPX */
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#define AF_APPLETALK 5 /* AppleTalk DDP */
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#define AF_NETROM 6 /* Amateur Radio NET/ROM */
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#define AF_BRIDGE 7 /* Multiprotocol bridge */
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#define AF_ATMPVC 8 /* ATM PVCs */
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#define AF_X25 9 /* Reserved for X.25 project */
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#define AF_INET6 10 /* IP version 6 */
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#define AF_ROSE 11 /* Amateur Radio X.25 PLP */
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#define AF_DECnet 12 /* Reserved for DECnet project */
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#define AF_NETBEUI 13 /* Reserved for 802.2LLC project*/
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#define AF_SECURITY 14 /* Security callback pseudo AF */
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#define AF_KEY 15 /* PF_KEY key management API */
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#define AF_NETLINK 16
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#define AF_ROUTE AF_NETLINK /* Alias to emulate 4.4BSD */
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#define AF_PACKET 17 /* Packet family */
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#define AF_ASH 18 /* Ash */
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#define AF_ECONET 19 /* Acorn Econet */
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#define AF_ATMSVC 20 /* ATM SVCs */
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#define AF_RDS 21 /* RDS sockets */
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#define AF_SNA 22 /* Linux SNA Project (nutters!) */
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#define AF_IRDA 23 /* IRDA sockets */
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#define AF_PPPOX 24 /* PPPoX sockets */
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#define AF_WANPIPE 25 /* Wanpipe API Sockets */
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#define AF_LLC 26 /* Linux LLC */
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#define AF_IB 27 /* Native InfiniBand address */
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#define AF_MPLS 28 /* MPLS */
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#define AF_CAN 29 /* Controller Area Network */
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#define AF_TIPC 30 /* TIPC sockets */
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#define AF_BLUETOOTH 31 /* Bluetooth sockets */
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#define AF_IUCV 32 /* IUCV sockets */
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#define AF_RXRPC 33 /* RxRPC sockets */
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#define AF_ISDN 34 /* mISDN sockets */
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#define AF_PHONET 35 /* Phonet sockets */
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#define AF_IEEE802154 36 /* IEEE802154 sockets */
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#define AF_CAIF 37 /* CAIF sockets */
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#define AF_ALG 38 /* Algorithm sockets */
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#define AF_NFC 39 /* NFC sockets */
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#define AF_VSOCK 40 /* vSockets */
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#define AF_KCM 41 /* Kernel Connection Multiplexor*/
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#define AF_QIPCRTR 42 /* Qualcomm IPC Router */
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#define AF_SMC 43 /* smc sockets: reserve number for
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* PF_SMC protocol family that
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* reuses AF_INET address family
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*/
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#define AF_XDP 44 /* XDP sockets */
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#define AF_MAX 45 /* For now.. */
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/* Protocol families, same as address families. */
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#define PF_UNSPEC AF_UNSPEC
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#define PF_UNIX AF_UNIX
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#define PF_LOCAL AF_LOCAL
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#define PF_INET AF_INET
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#define PF_AX25 AF_AX25
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#define PF_IPX AF_IPX
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#define PF_APPLETALK AF_APPLETALK
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#define PF_NETROM AF_NETROM
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#define PF_BRIDGE AF_BRIDGE
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#define PF_ATMPVC AF_ATMPVC
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#define PF_X25 AF_X25
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#define PF_INET6 AF_INET6
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#define PF_ROSE AF_ROSE
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#define PF_DECnet AF_DECnet
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#define PF_NETBEUI AF_NETBEUI
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#define PF_SECURITY AF_SECURITY
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#define PF_KEY AF_KEY
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#define PF_NETLINK AF_NETLINK
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#define PF_ROUTE AF_ROUTE
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#define PF_PACKET AF_PACKET
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#define PF_ASH AF_ASH
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#define PF_ECONET AF_ECONET
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#define PF_ATMSVC AF_ATMSVC
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#define PF_RDS AF_RDS
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#define PF_SNA AF_SNA
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#define PF_IRDA AF_IRDA
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#define PF_PPPOX AF_PPPOX
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#define PF_WANPIPE AF_WANPIPE
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#define PF_LLC AF_LLC
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#define PF_IB AF_IB
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#define PF_MPLS AF_MPLS
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#define PF_CAN AF_CAN
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#define PF_TIPC AF_TIPC
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#define PF_BLUETOOTH AF_BLUETOOTH
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#define PF_IUCV AF_IUCV
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#define PF_RXRPC AF_RXRPC
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#define PF_ISDN AF_ISDN
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#define PF_PHONET AF_PHONET
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#define PF_IEEE802154 AF_IEEE802154
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#define PF_CAIF AF_CAIF
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#define PF_ALG AF_ALG
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#define PF_NFC AF_NFC
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#define PF_VSOCK AF_VSOCK
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#define PF_KCM AF_KCM
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#define PF_QIPCRTR AF_QIPCRTR
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#define PF_SMC AF_SMC
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#define PF_XDP AF_XDP
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#define PF_MAX AF_MAX
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/* Maximum queue length specifiable by listen. */
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#define SOMAXCONN 128
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/* Flags we can use with send/ and recv.
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Added those for 1003.1g not all are supported yet
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*/
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#define MSG_OOB 1
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#define MSG_PEEK 2
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#define MSG_DONTROUTE 4
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#define MSG_TRYHARD 4 /* Synonym for MSG_DONTROUTE for DECnet */
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#define MSG_CTRUNC 8
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#define MSG_PROBE 0x10 /* Do not send. Only probe path f.e. for MTU */
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#define MSG_TRUNC 0x20
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#define MSG_DONTWAIT 0x40 /* Nonblocking io */
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#define MSG_EOR 0x80 /* End of record */
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#define MSG_WAITALL 0x100 /* Wait for a full request */
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#define MSG_FIN 0x200
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#define MSG_SYN 0x400
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#define MSG_CONFIRM 0x800 /* Confirm path validity */
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#define MSG_RST 0x1000
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#define MSG_ERRQUEUE 0x2000 /* Fetch message from error queue */
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#define MSG_NOSIGNAL 0x4000 /* Do not generate SIGPIPE */
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#define MSG_MORE 0x8000 /* Sender will send more */
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#define MSG_WAITFORONE 0x10000 /* recvmmsg(): block until 1+ packets avail */
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#define MSG_SENDPAGE_NOPOLICY 0x10000 /* sendpage() internal : do no apply policy */
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#define MSG_SENDPAGE_NOTLAST 0x20000 /* sendpage() internal : not the last page */
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#define MSG_BATCH 0x40000 /* sendmmsg(): more messages coming */
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#define MSG_EOF MSG_FIN
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#define MSG_NO_SHARED_FRAGS 0x80000 /* sendpage() internal : page frags are not shared */
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#define MSG_ZEROCOPY 0x4000000 /* Use user data in kernel path */
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#define MSG_FASTOPEN 0x20000000 /* Send data in TCP SYN */
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#define MSG_CMSG_CLOEXEC 0x40000000 /* Set close_on_exec for file
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descriptor received through
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SCM_RIGHTS */
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#if defined(CONFIG_COMPAT)
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#define MSG_CMSG_COMPAT 0x80000000 /* This message needs 32 bit fixups */
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#else
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#define MSG_CMSG_COMPAT 0 /* We never have 32 bit fixups */
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#endif
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/* Setsockoptions(2) level. Thanks to BSD these must match IPPROTO_xxx */
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#define SOL_IP 0
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/* #define SOL_ICMP 1 No-no-no! Due to Linux :-) we cannot use SOL_ICMP=1 */
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#define SOL_TCP 6
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#define SOL_UDP 17
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#define SOL_IPV6 41
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#define SOL_ICMPV6 58
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#define SOL_SCTP 132
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#define SOL_UDPLITE 136 /* UDP-Lite (RFC 3828) */
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#define SOL_RAW 255
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#define SOL_IPX 256
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#define SOL_AX25 257
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#define SOL_ATALK 258
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#define SOL_NETROM 259
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#define SOL_ROSE 260
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#define SOL_DECNET 261
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#define SOL_X25 262
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#define SOL_PACKET 263
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#define SOL_ATM 264 /* ATM layer (cell level) */
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#define SOL_AAL 265 /* ATM Adaption Layer (packet level) */
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#define SOL_IRDA 266
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#define SOL_NETBEUI 267
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#define SOL_LLC 268
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#define SOL_DCCP 269
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#define SOL_NETLINK 270
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#define SOL_TIPC 271
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#define SOL_RXRPC 272
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#define SOL_PPPOL2TP 273
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#define SOL_BLUETOOTH 274
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#define SOL_PNPIPE 275
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#define SOL_RDS 276
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#define SOL_IUCV 277
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#define SOL_CAIF 278
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#define SOL_ALG 279
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#define SOL_NFC 280
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#define SOL_KCM 281
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#define SOL_TLS 282
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#define SOL_XDP 283
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/* IPX options */
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#define IPX_TYPE 1
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extern int move_addr_to_kernel(void __user *uaddr, int ulen, struct sockaddr_storage *kaddr);
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extern int put_cmsg(struct msghdr*, int level, int type, int len, void *data);
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struct timespec64;
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struct __kernel_timespec;
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struct old_timespec32;
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struct scm_timestamping_internal {
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struct timespec64 ts[3];
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};
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extern void put_cmsg_scm_timestamping64(struct msghdr *msg, struct scm_timestamping_internal *tss);
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extern void put_cmsg_scm_timestamping(struct msghdr *msg, struct scm_timestamping_internal *tss);
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/* The __sys_...msg variants allow MSG_CMSG_COMPAT iff
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* forbid_cmsg_compat==false
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*/
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extern long __sys_recvmsg(int fd, struct user_msghdr __user *msg,
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unsigned int flags, bool forbid_cmsg_compat);
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extern long __sys_sendmsg(int fd, struct user_msghdr __user *msg,
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unsigned int flags, bool forbid_cmsg_compat);
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extern int __sys_recvmmsg(int fd, struct mmsghdr __user *mmsg,
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unsigned int vlen, unsigned int flags,
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struct __kernel_timespec __user *timeout,
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struct old_timespec32 __user *timeout32);
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extern int __sys_sendmmsg(int fd, struct mmsghdr __user *mmsg,
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unsigned int vlen, unsigned int flags,
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bool forbid_cmsg_compat);
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extern long __sys_sendmsg_sock(struct socket *sock,
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struct user_msghdr __user *msg,
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unsigned int flags);
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extern long __sys_recvmsg_sock(struct socket *sock,
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struct user_msghdr __user *msg,
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unsigned int flags);
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/* helpers which do the actual work for syscalls */
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extern int __sys_recvfrom(int fd, void __user *ubuf, size_t size,
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unsigned int flags, struct sockaddr __user *addr,
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int __user *addr_len);
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extern int __sys_sendto(int fd, void __user *buff, size_t len,
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unsigned int flags, struct sockaddr __user *addr,
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int addr_len);
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extern int __sys_accept4(int fd, struct sockaddr __user *upeer_sockaddr,
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int __user *upeer_addrlen, int flags);
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extern int __sys_socket(int family, int type, int protocol);
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extern int __sys_bind(int fd, struct sockaddr __user *umyaddr, int addrlen);
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extern int __sys_connect(int fd, struct sockaddr __user *uservaddr,
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int addrlen);
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extern int __sys_listen(int fd, int backlog);
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extern int __sys_getsockname(int fd, struct sockaddr __user *usockaddr,
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int __user *usockaddr_len);
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extern int __sys_getpeername(int fd, struct sockaddr __user *usockaddr,
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int __user *usockaddr_len);
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extern int __sys_socketpair(int family, int type, int protocol,
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int __user *usockvec);
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extern int __sys_shutdown(int fd, int how);
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extern struct ns_common *get_net_ns(struct ns_common *ns);
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#endif /* _LINUX_SOCKET_H */
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