mirror of
https://github.com/genodelabs/genode.git
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eac4b61560
Fixes #533.
500 lines
14 KiB
C++
500 lines
14 KiB
C++
/*
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* \brief Facility for passing system-call arguments
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* \author Norman Feske
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* \date 2011-02-15
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*
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* The 'Sysio' data structure is shared between the noux environment
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* and the child. It is used to pass system-call arguments that would
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* traditionally be transferred via 'copy_from_user' and 'copy_to_user'.
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*/
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/*
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* Copyright (C) 2011-2012 Genode Labs GmbH
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*
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* This file is part of the Genode OS framework, which is distributed
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* under the terms of the GNU General Public License version 2.
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*/
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#ifndef _INCLUDE__NOUX_SESSION__SYSIO_H_
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#define _INCLUDE__NOUX_SESSION__SYSIO_H_
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/* Genode includes */
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#include <util/misc_math.h>
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#define SYSIO_DECL(syscall_name, args, results) \
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struct args syscall_name##_in; \
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struct results syscall_name##_out;
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namespace Noux {
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using namespace Genode;
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struct Sysio
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{
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/*
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* Information about pending signals
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*/
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enum { SIG_MAX = 32 };
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bool sig_mask[SIG_MAX];
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/*
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* Number of pending signals
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*/
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int sig_cnt;
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enum { MAX_PATH_LEN = 512 };
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typedef char Path[MAX_PATH_LEN];
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enum { CHUNK_SIZE = 7*1024 };
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typedef char Chunk[CHUNK_SIZE];
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enum { ARGS_MAX_LEN = 4*1024 };
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typedef char Args[ARGS_MAX_LEN];
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enum { ENV_MAX_LEN = 4*1024 };
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typedef char Env[ENV_MAX_LEN];
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typedef __SIZE_TYPE__ size_t;
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typedef long int ssize_t;
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/**
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* Flags of 'mode' argument of open syscall
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*/
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enum {
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OPEN_MODE_RDONLY = 0,
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OPEN_MODE_WRONLY = 1,
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OPEN_MODE_RDWR = 2,
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OPEN_MODE_ACCMODE = 3,
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OPEN_MODE_CREATE = 0x0800, /* libc O_EXCL */
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};
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enum {
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STAT_MODE_SYMLINK = 0120000,
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STAT_MODE_FILE = 0100000,
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STAT_MODE_DIRECTORY = 0040000,
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STAT_MODE_CHARDEV = 0020000,
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};
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struct Stat
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{
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size_t size;
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unsigned mode;
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unsigned uid;
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unsigned gid;
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unsigned long inode;
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unsigned device;
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};
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/**
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* Argument structure used for ioctl syscall
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*/
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struct Ioctl_in
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{
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enum Opcode { OP_UNDEFINED, OP_TIOCGWINSZ, OP_TIOCSETAF,
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OP_TIOCSETAW, OP_FIONBIO };
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enum Val { VAL_NULL, VAL_ECHO, VAL_ECHONL };
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Opcode request;
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int argp;
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};
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/**
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* Structure carrying the result values of 'ioctl' syscalls
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*/
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struct Ioctl_out
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{
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union
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{
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/* if request was 'OP_TIOCGSIZE' */
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struct {
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int rows;
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int columns;
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} tiocgwinsz;
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};
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};
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enum Lseek_whence { LSEEK_SET, LSEEK_CUR, LSEEK_END };
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enum { DIRENT_MAX_NAME_LEN = 128 };
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enum Dirent_type {
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DIRENT_TYPE_FILE,
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DIRENT_TYPE_DIRECTORY,
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DIRENT_TYPE_FIFO,
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DIRENT_TYPE_CHARDEV,
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DIRENT_TYPE_SYMLINK,
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DIRENT_TYPE_END
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};
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struct Dirent
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{
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int fileno;
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Dirent_type type;
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char name[DIRENT_MAX_NAME_LEN];
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};
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enum Fcntl_cmd {
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FCNTL_CMD_GET_FILE_STATUS_FLAGS,
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FCNTL_CMD_SET_FILE_STATUS_FLAGS,
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FCNTL_CMD_SET_FD_FLAGS
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};
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/**
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* Input and output argument type of select syscall
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*/
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struct Select_fds
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{
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/**
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* Maximum number of file descriptors supported
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*/
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enum { MAX_FDS = 32U };
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/**
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* Number of file descriptors to watch for read operations (rd),
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* write operations (wr), or exceptions (ex).
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*/
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size_t num_rd,
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num_wr,
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num_ex;
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/**
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* Array containing the file descriptors, starting with those
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* referring to rd, followed by wr, and finally ex
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*/
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int array[MAX_FDS];
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/**
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* Return total number of file descriptors contained in the array
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*/
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size_t total_fds() const {
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return min(num_rd + num_wr + num_ex, (size_t)MAX_FDS); }
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/**
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* Check for maximum population of fds array
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*/
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bool max_fds_exceeded() const
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{
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/*
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* Note that even though the corner case of num_rd + num_wr +
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* num_ex == MAX_FDS is technically valid, this condition hints
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* at a possible attempt to over popupate the array (see the
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* implementation of 'select' in the Noux libc plugin). Hence,
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* we regard this case as an error, too.
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*/
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return total_fds() >= MAX_FDS;
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}
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/**
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* Return true of fd set index should be watched for reading
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*/
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bool watch_for_rd(unsigned i) const { return i < num_rd; }
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/**
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* Return true if fd set index should be watched for writing
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*/
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bool watch_for_wr(unsigned i) const {
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return (i >= num_rd) && (i < num_rd + num_wr); }
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/**
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* Return true if fd set index should be watched for exceptions
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*/
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bool watch_for_ex(unsigned i) const {
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return (i >= num_rd + num_wr) && (i < total_fds()); }
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};
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struct Select_timeout
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{
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long sec, usec;
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/**
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* Set timeout to infinity
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*/
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void set_infinite() { sec = -1; usec = -1; }
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/**
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* Return true if the timeout is infinite
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*/
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bool infinite() const { return (sec == -1) && (usec == -1); }
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/**
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* Return true if the timeout is zero
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*/
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bool zero() const { return (sec == 0) && (usec == 0); }
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};
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/**
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* Socket related structures
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*/
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enum { MAX_HOSTNAME_LEN = 255 };
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typedef char Hostname[MAX_HOSTNAME_LEN];
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enum { MAX_SERVNAME_LEN = 255 };
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typedef char Servname[MAX_SERVNAME_LEN];
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enum { MAX_ADDRINFO_RESULTS = 4 };
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struct in_addr
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{
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unsigned int s_addr;
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};
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struct sockaddr
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{
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unsigned char sa_len;
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unsigned char sa_family;
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char sa_data[14];
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};
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struct sockaddr_in {
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unsigned char sin_len;
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unsigned char sin_family;
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unsigned short sin_port;
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struct in_addr sin_addr;
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char sin_zero[8];
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};
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typedef unsigned socklen_t;
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struct addrinfo {
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int ai_flags;
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int ai_family;
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int ai_socktype;
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int ai_protocol;
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socklen_t ai_addrlen;
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struct sockaddr *ai_addr;
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char *ai_canonname;
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struct addrinfo *ai_next;
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};
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struct Addrinfo {
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struct addrinfo addrinfo;
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struct sockaddr ai_addr;
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char ai_canonname[255];
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};
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/**
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* user info defintions
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*/
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enum { USERINFO_GET_ALL = 0, USERINFO_GET_UID, USERINFO_GET_GID };
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enum { MAX_USERNAME_LEN = 32 };
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typedef char User[MAX_USERNAME_LEN];
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enum { MAX_SHELL_LEN = 16 };
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typedef char Shell[MAX_SHELL_LEN];
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enum { MAX_HOME_LEN = 128 };
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typedef char Home[MAX_HOME_LEN];
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typedef unsigned int Uid;
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/**
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* time/clock definitions
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*/
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enum Clock_Id { CLOCK_ID_SECOND };
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enum General_error { ERR_FD_INVALID, NUM_GENERAL_ERRORS };
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enum Stat_error { STAT_ERR_NO_ENTRY = NUM_GENERAL_ERRORS };
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enum Fcntl_error { FCNTL_ERR_CMD_INVALID = NUM_GENERAL_ERRORS };
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enum Ftruncate_error { FTRUNCATE_ERR_NO_PERM = NUM_GENERAL_ERRORS };
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enum Open_error { OPEN_ERR_UNACCESSIBLE, OPEN_ERR_NO_PERM,
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OPEN_ERR_EXISTS };
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enum Execve_error { EXECVE_NONEXISTENT = NUM_GENERAL_ERRORS };
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enum Unlink_error { UNLINK_ERR_NO_ENTRY, UNLINK_ERR_NO_PERM };
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enum Readlink_error { READLINK_ERR_NO_ENTRY };
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enum Rename_error { RENAME_ERR_NO_ENTRY, RENAME_ERR_CROSS_FS,
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RENAME_ERR_NO_PERM };
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enum Mkdir_error { MKDIR_ERR_EXISTS, MKDIR_ERR_NO_ENTRY,
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MKDIR_ERR_NO_SPACE, MKDIR_ERR_NO_PERM,
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MKDIR_ERR_NAME_TOO_LONG};
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enum Symlink_error { SYMLINK_ERR_EXISTS, SYMLINK_ERR_NO_ENTRY,
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SYMLINK_ERR_NAME_TOO_LONG};
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enum Read_error { READ_ERR_AGAIN, READ_ERR_WOULD_BLOCK,
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READ_ERR_INVALID, READ_ERR_IO };
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enum Write_error { WRITE_ERR_AGAIN, WRITE_ERR_WOULD_BLOCK,
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WRITE_ERR_INVALID, WRITE_ERR_IO };
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enum Ioctl_error { IOCTL_ERR_INVALID, IOCTL_ERR_NOTTY };
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/**
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* Socket related errors
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*/
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enum Accept_error { ACCEPT_ERR_AGAIN, ACCEPT_ERR_WOULD_BLOCK,
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ACCEPT_ERR_INVALID, ACCEPT_ERR_NO_MEMORY,
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ACCEPT_ERR_NOT_SUPPORTED };
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enum Bind_error { BIND_ERR_ACCESS, BIND_ERR_ADDR_IN_USE,
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BIND_ERR_INVALID, BIND_ERR_NO_MEMORY };
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enum Connect_error { CONNECT_ERR_ACCESS, CONNECT_ERR_AGAIN,
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CONNECT_ERR_ALREADY, CONNECT_ERR_CONN_REFUSED,
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CONNECT_ERR_NO_PERM, CONNECT_ERR_ADDR_IN_USE,
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CONNECT_ERR_IN_PROGRESS, CONNECT_ERR_IS_CONNECTED };
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enum Listen_error { LISTEN_ERR_ADDR_IN_USE, LISTEN_ERR_NOT_SUPPORTED };
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enum Recv_error { RECV_ERR_AGAIN, RECV_ERR_WOULD_BLOCK,
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RECV_ERR_CONN_REFUSED, RECV_ERR_INVALID,
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RECV_ERR_NOT_CONNECTED, RECV_ERR_NO_MEMORY };
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enum Send_error { SEND_ERR_AGAIN, SEND_ERR_WOULD_BLOCK,
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SEND_ERR_CONNECTION_RESET, SEND_ERR_INVALID,
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SEND_ERR_IS_CONNECTED, SEND_ERR_NO_MEMORY };
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enum Shutdown_error { SHUTDOWN_ERR_NOT_CONNECTED };
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enum Socket_error { SOCKET_ERR_ACCESS, SOCKET_ERR_NO_AF_SUPPORT,
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SOCKET_ERR_INVALID, SOCKET_ERR_NO_MEMORY };
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enum Clock_error { CLOCK_ERR_INVALID, CLOCK_ERR_FAULT, CLOCK_ERR_NO_PERM };
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enum Utimes_error { UTIMES_ERR_ACCESS, UTIMES_ERR_FAUL, UTIMES_ERR_EIO,
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UTIMES_ERR_NAME_TOO_LONG, UTIMES_ERR_NO_ENTRY,
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UTIMES_ERR_NOT_DIRECTORY, UTIMES_ERR_NO_PERM,
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UTIMES_ERR_READ_ONLY };
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union {
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General_error general;
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Stat_error stat;
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Fcntl_error fcntl;
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Ftruncate_error ftruncate;
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Open_error open;
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Execve_error execve;
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Unlink_error unlink;
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Readlink_error readlink;
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Rename_error rename;
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Mkdir_error mkdir;
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Symlink_error symlink;
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Read_error read;
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Write_error write;
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Ioctl_error ioctl;
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Accept_error accept;
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Bind_error bind;
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Connect_error connect;
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Listen_error listen;
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Recv_error recv;
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Send_error send;
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Shutdown_error shutdown;
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Socket_error socket;
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Clock_error clock;
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Utimes_error utimes;
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} error;
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union {
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SYSIO_DECL(write, { int fd; size_t count; Chunk chunk; },
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{ size_t count; });
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SYSIO_DECL(stat, { Path path; }, { Stat st; });
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SYSIO_DECL(symlink, { Path oldpath; Path newpath; }, { });
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SYSIO_DECL(fstat, { int fd; }, { Stat st; });
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SYSIO_DECL(ftruncate, { int fd; off_t length; }, { });
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SYSIO_DECL(fcntl, { int fd; long long_arg; Fcntl_cmd cmd; },
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{ int result; });
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SYSIO_DECL(open, { Path path; int mode; }, { int fd; });
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SYSIO_DECL(close, { int fd; }, { });
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SYSIO_DECL(ioctl, : Ioctl_in { int fd; }, : Ioctl_out { });
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SYSIO_DECL(lseek, { int fd; off_t offset; Lseek_whence whence; },
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{ off_t offset; });
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SYSIO_DECL(dirent, { int fd; }, { Dirent entry; });
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SYSIO_DECL(read, { int fd; size_t count; },
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{ Chunk chunk; size_t count; });
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SYSIO_DECL(readlink, { Path path; size_t bufsiz; },
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{ Chunk chunk; ssize_t count; });
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SYSIO_DECL(execve, { Path filename; Args args; Env env; }, { });
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SYSIO_DECL(select, { Select_fds fds; Select_timeout timeout; },
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{ Select_fds fds; });
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SYSIO_DECL(fork, { addr_t ip; addr_t sp;
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addr_t parent_cap_addr; },
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{ int pid; });
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SYSIO_DECL(getpid, { }, { int pid; });
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SYSIO_DECL(wait4, { int pid; bool nohang; },
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{ int pid; int status; });
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SYSIO_DECL(pipe, { }, { int fd[2]; });
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SYSIO_DECL(dup2, { int fd; int to_fd; }, { int fd; });
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SYSIO_DECL(unlink, { Path path; }, { });
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SYSIO_DECL(rename, { Path from_path; Path to_path; }, { });
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SYSIO_DECL(mkdir, { Path path; int mode; }, { });
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SYSIO_DECL(socket, { int domain; int type; int protocol; },
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{ int fd; });
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/* XXX for now abuse Chunk for passing optval */
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SYSIO_DECL(getsockopt, { int fd; int level; int optname; Chunk optval;
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socklen_t optlen; }, { int result; });
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SYSIO_DECL(setsockopt, { int fd; int level;
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int optname; Chunk optval;
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socklen_t optlen; }, { });
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SYSIO_DECL(accept, { int fd; struct sockaddr addr; socklen_t addrlen; },
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{ int fd; });
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SYSIO_DECL(bind, { int fd; struct sockaddr addr;
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socklen_t addrlen; }, { int result; });
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SYSIO_DECL(getpeername, { int fd; struct sockaddr addr;
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socklen_t addrlen; }, { });
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SYSIO_DECL(listen, { int fd; int type; int backlog; },
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{ int result; });
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SYSIO_DECL(send, { int fd; Chunk buf; size_t len; int flags; },
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{ ssize_t len; });
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SYSIO_DECL(sendto, { int fd; Chunk buf; size_t len; int flags;
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struct sockaddr dest_addr; socklen_t addrlen; },
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{ ssize_t len; });
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SYSIO_DECL(recv, { int fd; Chunk buf; size_t len; int flags; },
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{ size_t len; });
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SYSIO_DECL(recvfrom, { int fd; Chunk buf; size_t len; int flags;
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struct sockaddr src_addr; socklen_t addrlen; },
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{ size_t len; });
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SYSIO_DECL(shutdown, { int fd; int how; }, { });
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SYSIO_DECL(connect, { int fd; struct sockaddr addr; socklen_t addrlen; },
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{ int result; });
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SYSIO_DECL(userinfo, { int request; Uid uid; },
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{ User name; Uid uid; Uid gid; Shell shell;
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Home home; });
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SYSIO_DECL(gettimeofday, { }, { unsigned long sec; unsigned int usec; });
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SYSIO_DECL(clock_gettime, { Clock_Id clock_id; },
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{ unsigned long sec; unsigned long nsec; });
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SYSIO_DECL(utimes, { Path path; unsigned long sec; unsigned long usec; },
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{ });
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};
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};
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};
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#undef SYSIO_DECL
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#endif /* _INCLUDE__NOUX_SESSION__SYSIO_H_ */
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