syscall.c 89.9 KB
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/*
 *  Linux syscalls
 * 
 *  Copyright (c) 2003 Fabrice Bellard
 *
 *  This program is free software; you can redistribute it and/or modify
 *  it under the terms of the GNU General Public License as published by
 *  the Free Software Foundation; either version 2 of the License, or
 *  (at your option) any later version.
 *
 *  This program is distributed in the hope that it will be useful,
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 *  GNU General Public License for more details.
 *
 *  You should have received a copy of the GNU General Public License
 *  along with this program; if not, write to the Free Software
 *  Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
 */
#include <stdlib.h>
#include <stdio.h>
#include <stdarg.h>
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#include <string.h>
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#include <elf.h>
#include <endian.h>
#include <errno.h>
#include <unistd.h>
#include <fcntl.h>
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#include <time.h>
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#include <sys/types.h>
#include <sys/wait.h>
#include <sys/time.h>
#include <sys/stat.h>
#include <sys/mount.h>
#include <sys/resource.h>
#include <sys/mman.h>
#include <sys/swap.h>
#include <signal.h>
#include <sched.h>
#include <sys/socket.h>
#include <sys/uio.h>
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#include <sys/poll.h>
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#include <sys/times.h>
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#include <utime.h>
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//#include <sys/user.h>
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#include <netinet/tcp.h>
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#define termios host_termios
#define winsize host_winsize
#define termio host_termio
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#define sgttyb host_sgttyb /* same as target */
#define tchars host_tchars /* same as target */
#define ltchars host_ltchars /* same as target */
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#include <linux/termios.h>
#include <linux/unistd.h>
#include <linux/utsname.h>
#include <linux/cdrom.h>
#include <linux/hdreg.h>
#include <linux/soundcard.h>
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#include <linux/dirent.h>
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#include <linux/kd.h>
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#include "qemu.h"
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//#define DEBUG
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#if defined(TARGET_I386) || defined(TARGET_ARM) || defined(TARGET_SPARC)
/* 16 bit uid wrappers emulation */
#define USE_UID16
#endif

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//#include <linux/msdos_fs.h>
#define	VFAT_IOCTL_READDIR_BOTH		_IOR('r', 1, struct dirent [2])
#define	VFAT_IOCTL_READDIR_SHORT	_IOR('r', 2, struct dirent [2])

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#if defined(__powerpc__)
#undef __syscall_nr
#undef __sc_loadargs_0
#undef __sc_loadargs_1
#undef __sc_loadargs_2
#undef __sc_loadargs_3
#undef __sc_loadargs_4
#undef __sc_loadargs_5
#undef __sc_asm_input_0
#undef __sc_asm_input_1
#undef __sc_asm_input_2
#undef __sc_asm_input_3
#undef __sc_asm_input_4
#undef __sc_asm_input_5
#undef _syscall0
#undef _syscall1
#undef _syscall2
#undef _syscall3
#undef _syscall4
#undef _syscall5

/* need to redefine syscalls as Linux kernel defines are incorrect for
   the clobber list */
/* On powerpc a system call basically clobbers the same registers like a
 * function call, with the exception of LR (which is needed for the
 * "sc; bnslr" sequence) and CR (where only CR0.SO is clobbered to signal
 * an error return status).
 */

#define __syscall_nr(nr, type, name, args...)				\
	unsigned long __sc_ret, __sc_err;				\
	{								\
		register unsigned long __sc_0  __asm__ ("r0");		\
		register unsigned long __sc_3  __asm__ ("r3");		\
		register unsigned long __sc_4  __asm__ ("r4");		\
		register unsigned long __sc_5  __asm__ ("r5");		\
		register unsigned long __sc_6  __asm__ ("r6");		\
		register unsigned long __sc_7  __asm__ ("r7");		\
									\
		__sc_loadargs_##nr(name, args);				\
		__asm__ __volatile__					\
			("sc           \n\t"				\
			 "mfcr %0      "				\
			: "=&r" (__sc_0),				\
			  "=&r" (__sc_3),  "=&r" (__sc_4),		\
			  "=&r" (__sc_5),  "=&r" (__sc_6),		\
			  "=&r" (__sc_7)				\
			: __sc_asm_input_##nr				\
			: "cr0", "ctr", "memory",			\
			  "r8", "r9", "r10","r11", "r12");		\
		__sc_ret = __sc_3;					\
		__sc_err = __sc_0;					\
	}								\
	if (__sc_err & 0x10000000)					\
	{								\
		errno = __sc_ret;					\
		__sc_ret = -1;						\
	}								\
	return (type) __sc_ret

#define __sc_loadargs_0(name, dummy...)					\
	__sc_0 = __NR_##name
#define __sc_loadargs_1(name, arg1)					\
	__sc_loadargs_0(name);						\
	__sc_3 = (unsigned long) (arg1)
#define __sc_loadargs_2(name, arg1, arg2)				\
	__sc_loadargs_1(name, arg1);					\
	__sc_4 = (unsigned long) (arg2)
#define __sc_loadargs_3(name, arg1, arg2, arg3)				\
	__sc_loadargs_2(name, arg1, arg2);				\
	__sc_5 = (unsigned long) (arg3)
#define __sc_loadargs_4(name, arg1, arg2, arg3, arg4)			\
	__sc_loadargs_3(name, arg1, arg2, arg3);			\
	__sc_6 = (unsigned long) (arg4)
#define __sc_loadargs_5(name, arg1, arg2, arg3, arg4, arg5)		\
	__sc_loadargs_4(name, arg1, arg2, arg3, arg4);			\
	__sc_7 = (unsigned long) (arg5)

#define __sc_asm_input_0 "0" (__sc_0)
#define __sc_asm_input_1 __sc_asm_input_0, "1" (__sc_3)
#define __sc_asm_input_2 __sc_asm_input_1, "2" (__sc_4)
#define __sc_asm_input_3 __sc_asm_input_2, "3" (__sc_5)
#define __sc_asm_input_4 __sc_asm_input_3, "4" (__sc_6)
#define __sc_asm_input_5 __sc_asm_input_4, "5" (__sc_7)

#define _syscall0(type,name)						\
type name(void)								\
{									\
	__syscall_nr(0, type, name);					\
}

#define _syscall1(type,name,type1,arg1)					\
type name(type1 arg1)							\
{									\
	__syscall_nr(1, type, name, arg1);				\
}

#define _syscall2(type,name,type1,arg1,type2,arg2)			\
type name(type1 arg1, type2 arg2)					\
{									\
	__syscall_nr(2, type, name, arg1, arg2);			\
}

#define _syscall3(type,name,type1,arg1,type2,arg2,type3,arg3)		\
type name(type1 arg1, type2 arg2, type3 arg3)				\
{									\
	__syscall_nr(3, type, name, arg1, arg2, arg3);			\
}

#define _syscall4(type,name,type1,arg1,type2,arg2,type3,arg3,type4,arg4) \
type name(type1 arg1, type2 arg2, type3 arg3, type4 arg4)		\
{									\
	__syscall_nr(4, type, name, arg1, arg2, arg3, arg4);		\
}

#define _syscall5(type,name,type1,arg1,type2,arg2,type3,arg3,type4,arg4,type5,arg5) \
type name(type1 arg1, type2 arg2, type3 arg3, type4 arg4, type5 arg5)	\
{									\
	__syscall_nr(5, type, name, arg1, arg2, arg3, arg4, arg5);	\
}
#endif

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#define __NR_sys_uname __NR_uname
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#define __NR_sys_getcwd1 __NR_getcwd
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#define __NR_sys_statfs __NR_statfs
#define __NR_sys_fstatfs __NR_fstatfs
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#define __NR_sys_getdents __NR_getdents
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#define __NR_sys_getdents64 __NR_getdents64
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#define __NR_sys_rt_sigqueueinfo __NR_rt_sigqueueinfo
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#if defined(__alpha__) || defined (__ia64__)
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#define __NR__llseek __NR_lseek
#endif

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#ifdef __NR_gettid
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_syscall0(int, gettid)
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#else
static int gettid(void) {
    return -ENOSYS;
}
#endif
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_syscall1(int,sys_uname,struct new_utsname *,buf)
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_syscall2(int,sys_getcwd1,char *,buf,size_t,size)
_syscall3(int, sys_getdents, uint, fd, struct dirent *, dirp, uint, count);
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_syscall3(int, sys_getdents64, uint, fd, struct dirent64 *, dirp, uint, count);
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_syscall5(int, _llseek,  uint,  fd, ulong, hi, ulong, lo,
          loff_t *, res, uint, wh);
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_syscall2(int,sys_statfs,const char *,path,struct kernel_statfs *,buf)
_syscall2(int,sys_fstatfs,int,fd,struct kernel_statfs *,buf)
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_syscall3(int,sys_rt_sigqueueinfo,int,pid,int,sig,siginfo_t *,uinfo)
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#ifdef __NR_exit_group
_syscall1(int,exit_group,int,error_code)
#endif
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extern int personality(int);
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extern int flock(int, int);
extern int setfsuid(int);
extern int setfsgid(int);
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extern int setresuid(uid_t, uid_t, uid_t);
extern int getresuid(uid_t *, uid_t *, uid_t *);
extern int setresgid(gid_t, gid_t, gid_t);
extern int getresgid(gid_t *, gid_t *, gid_t *);
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extern int setgroups(int, gid_t *);
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#define put_user(x,ptr)\
({\
    int size = sizeof(*ptr);\
    switch(size) {\
    case 1:\
        stb(ptr, (typeof(*ptr))(x));\
        break;\
    case 2:\
        stw(ptr, (typeof(*ptr))(x));\
        break;\
    case 4:\
        stl(ptr, (typeof(*ptr))(x));\
        break;\
    case 8:\
        stq(ptr, (typeof(*ptr))(x));\
        break;\
    default:\
        abort();\
    }\
    0;\
})
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static inline long get_errno(long ret)
{
    if (ret == -1)
        return -errno;
    else
        return ret;
}

static inline int is_error(long ret)
{
    return (unsigned long)ret >= (unsigned long)(-4096);
}

static char *target_brk;
static char *target_original_brk;

void target_set_brk(char *new_brk)
{
    target_brk = new_brk;
    target_original_brk = new_brk;
}

static long do_brk(char *new_brk)
{
    char *brk_page;
    long mapped_addr;
    int	new_alloc_size;

    if (!new_brk)
        return (long)target_brk;
    if (new_brk < target_original_brk)
        return -ENOMEM;
    
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    brk_page = (char *)HOST_PAGE_ALIGN((unsigned long)target_brk);
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    /* If the new brk is less than this, set it and we're done... */
    if (new_brk < brk_page) {
	target_brk = new_brk;
    	return (long)target_brk;
    }

    /* We need to allocate more memory after the brk... */
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    new_alloc_size = HOST_PAGE_ALIGN(new_brk - brk_page + 1);
    mapped_addr = get_errno(target_mmap((unsigned long)brk_page, new_alloc_size, 
                                        PROT_READ|PROT_WRITE,
                                        MAP_ANON|MAP_FIXED|MAP_PRIVATE, 0, 0));
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    if (is_error(mapped_addr)) {
	return mapped_addr;
    } else {
	target_brk = new_brk;
    	return (long)target_brk;
    }
}

static inline fd_set *target_to_host_fds(fd_set *fds, 
                                         target_long *target_fds, int n)
{
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#if !defined(BSWAP_NEEDED) && !defined(WORDS_BIGENDIAN)
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    return (fd_set *)target_fds;
#else
    int i, b;
    if (target_fds) {
        FD_ZERO(fds);
        for(i = 0;i < n; i++) {
            b = (tswapl(target_fds[i / TARGET_LONG_BITS]) >>
                 (i & (TARGET_LONG_BITS - 1))) & 1;
            if (b)
                FD_SET(i, fds);
        }
        return fds;
    } else {
        return NULL;
    }
#endif
}

static inline void host_to_target_fds(target_long *target_fds, 
                                      fd_set *fds, int n)
{
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#if !defined(BSWAP_NEEDED) && !defined(WORDS_BIGENDIAN)
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    /* nothing to do */
#else
    int i, nw, j, k;
    target_long v;

    if (target_fds) {
        nw = n / TARGET_LONG_BITS;
        k = 0;
        for(i = 0;i < nw; i++) {
            v = 0;
            for(j = 0; j < TARGET_LONG_BITS; j++) {
                v |= ((FD_ISSET(k, fds) != 0) << j);
                k++;
            }
            target_fds[i] = tswapl(v);
        }
    }
#endif
}

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#if defined(__alpha__)
#define HOST_HZ 1024
#else
#define HOST_HZ 100
#endif

static inline long host_to_target_clock_t(long ticks)
{
#if HOST_HZ == TARGET_HZ
    return ticks;
#else
    return ((int64_t)ticks * TARGET_HZ) / HOST_HZ;
#endif
}

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static inline void host_to_target_rusage(struct target_rusage *target_rusage, 
                                         const struct rusage *rusage)
{
    target_rusage->ru_utime.tv_sec = tswapl(rusage->ru_utime.tv_sec);
    target_rusage->ru_utime.tv_usec = tswapl(rusage->ru_utime.tv_usec);
    target_rusage->ru_stime.tv_sec = tswapl(rusage->ru_stime.tv_sec);
    target_rusage->ru_stime.tv_usec = tswapl(rusage->ru_stime.tv_usec);
    target_rusage->ru_maxrss = tswapl(rusage->ru_maxrss);
    target_rusage->ru_ixrss = tswapl(rusage->ru_ixrss);
    target_rusage->ru_idrss = tswapl(rusage->ru_idrss);
    target_rusage->ru_isrss = tswapl(rusage->ru_isrss);
    target_rusage->ru_minflt = tswapl(rusage->ru_minflt);
    target_rusage->ru_majflt = tswapl(rusage->ru_majflt);
    target_rusage->ru_nswap = tswapl(rusage->ru_nswap);
    target_rusage->ru_inblock = tswapl(rusage->ru_inblock);
    target_rusage->ru_oublock = tswapl(rusage->ru_oublock);
    target_rusage->ru_msgsnd = tswapl(rusage->ru_msgsnd);
    target_rusage->ru_msgrcv = tswapl(rusage->ru_msgrcv);
    target_rusage->ru_nsignals = tswapl(rusage->ru_nsignals);
    target_rusage->ru_nvcsw = tswapl(rusage->ru_nvcsw);
    target_rusage->ru_nivcsw = tswapl(rusage->ru_nivcsw);
}

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static inline void target_to_host_timeval(struct timeval *tv, 
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                                          const struct target_timeval *target_tv)
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{
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    tv->tv_sec = tswapl(target_tv->tv_sec);
    tv->tv_usec = tswapl(target_tv->tv_usec);
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}

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static inline void host_to_target_timeval(struct target_timeval *target_tv, 
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                                          const struct timeval *tv)
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{
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    target_tv->tv_sec = tswapl(tv->tv_sec);
    target_tv->tv_usec = tswapl(tv->tv_usec);
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}


static long do_select(long n, 
                      target_long *target_rfds, target_long *target_wfds, 
                      target_long *target_efds, struct target_timeval *target_tv)
{
    fd_set rfds, wfds, efds;
    fd_set *rfds_ptr, *wfds_ptr, *efds_ptr;
    struct timeval tv, *tv_ptr;
    long ret;

    rfds_ptr = target_to_host_fds(&rfds, target_rfds, n);
    wfds_ptr = target_to_host_fds(&wfds, target_wfds, n);
    efds_ptr = target_to_host_fds(&efds, target_efds, n);
            
    if (target_tv) {
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        target_to_host_timeval(&tv, target_tv);
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        tv_ptr = &tv;
    } else {
        tv_ptr = NULL;
    }
    ret = get_errno(select(n, rfds_ptr, wfds_ptr, efds_ptr, tv_ptr));
    if (!is_error(ret)) {
        host_to_target_fds(target_rfds, rfds_ptr, n);
        host_to_target_fds(target_wfds, wfds_ptr, n);
        host_to_target_fds(target_efds, efds_ptr, n);

        if (target_tv) {
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            host_to_target_timeval(target_tv, &tv);
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        }
    }
    return ret;
}

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static inline void target_to_host_sockaddr(struct sockaddr *addr,
                                           struct target_sockaddr *target_addr,
                                           socklen_t len)
{
    memcpy(addr, target_addr, len);
    addr->sa_family = tswap16(target_addr->sa_family);
}

static inline void host_to_target_sockaddr(struct target_sockaddr *target_addr,
                                           struct sockaddr *addr,
                                           socklen_t len)
{
    memcpy(target_addr, addr, len);
    target_addr->sa_family = tswap16(addr->sa_family);
}

static inline void target_to_host_cmsg(struct msghdr *msgh,
                                       struct target_msghdr *target_msgh)
{
    struct cmsghdr *cmsg = CMSG_FIRSTHDR(msgh);
    struct target_cmsghdr *target_cmsg = TARGET_CMSG_FIRSTHDR(target_msgh);
    socklen_t space = 0;

    while (cmsg && target_cmsg) {
        void *data = CMSG_DATA(cmsg);
        void *target_data = TARGET_CMSG_DATA(target_cmsg);

        int len = tswapl(target_cmsg->cmsg_len) 
                  - TARGET_CMSG_ALIGN(sizeof (struct target_cmsghdr));

        space += CMSG_SPACE(len);
        if (space > msgh->msg_controllen) {
            space -= CMSG_SPACE(len);
            gemu_log("Host cmsg overflow");
            break;
        }

        cmsg->cmsg_level = tswap32(target_cmsg->cmsg_level);
        cmsg->cmsg_type = tswap32(target_cmsg->cmsg_type);
        cmsg->cmsg_len = CMSG_LEN(len);

        if (cmsg->cmsg_level != SOL_SOCKET || cmsg->cmsg_type != SCM_RIGHTS) {
            gemu_log("Unsupported ancillary data: %d/%d\n", cmsg->cmsg_level, cmsg->cmsg_type);
            memcpy(data, target_data, len);
        } else {
            int *fd = (int *)data;
            int *target_fd = (int *)target_data;
            int i, numfds = len / sizeof(int);

            for (i = 0; i < numfds; i++)
                fd[i] = tswap32(target_fd[i]);
        }

        cmsg = CMSG_NXTHDR(msgh, cmsg);
        target_cmsg = TARGET_CMSG_NXTHDR(target_msgh, target_cmsg);
    }

    msgh->msg_controllen = space;
}

static inline void host_to_target_cmsg(struct target_msghdr *target_msgh,
                                       struct msghdr *msgh)
{
    struct cmsghdr *cmsg = CMSG_FIRSTHDR(msgh);
    struct target_cmsghdr *target_cmsg = TARGET_CMSG_FIRSTHDR(target_msgh);
    socklen_t space = 0;

    while (cmsg && target_cmsg) {
        void *data = CMSG_DATA(cmsg);
        void *target_data = TARGET_CMSG_DATA(target_cmsg);

        int len = cmsg->cmsg_len - CMSG_ALIGN(sizeof (struct cmsghdr));

        space += TARGET_CMSG_SPACE(len);
        if (space > tswapl(target_msgh->msg_controllen)) {
            space -= TARGET_CMSG_SPACE(len);
            gemu_log("Target cmsg overflow");
            break;
        }

        target_cmsg->cmsg_level = tswap32(cmsg->cmsg_level);
        target_cmsg->cmsg_type = tswap32(cmsg->cmsg_type);
        target_cmsg->cmsg_len = tswapl(TARGET_CMSG_LEN(len));

        if (cmsg->cmsg_level != SOL_SOCKET || cmsg->cmsg_type != SCM_RIGHTS) {
            gemu_log("Unsupported ancillary data: %d/%d\n", cmsg->cmsg_level, cmsg->cmsg_type);
            memcpy(target_data, data, len);
        } else {
            int *fd = (int *)data;
            int *target_fd = (int *)target_data;
            int i, numfds = len / sizeof(int);

            for (i = 0; i < numfds; i++)
                target_fd[i] = tswap32(fd[i]);
        }

        cmsg = CMSG_NXTHDR(msgh, cmsg);
        target_cmsg = TARGET_CMSG_NXTHDR(target_msgh, target_cmsg);
    }

    msgh->msg_controllen = tswapl(space);
}

static long do_setsockopt(int sockfd, int level, int optname, 
                          void *optval, socklen_t optlen)
{
    if (level == SOL_TCP) {
        /* TCP options all take an 'int' value.  */
        int val;

        if (optlen < sizeof(uint32_t))
            return -EINVAL;

        val = tswap32(*(uint32_t *)optval);
        return get_errno(setsockopt(sockfd, level, optname, &val, sizeof(val)));
    }

    else if (level != SOL_SOCKET) {
        gemu_log("Unsupported setsockopt level: %d\n", level);
        return -ENOSYS;
    }

    switch (optname) {
    /* Options with 'int' argument.  */
    case SO_DEBUG:
    case SO_REUSEADDR:
    case SO_TYPE:
    case SO_ERROR:
    case SO_DONTROUTE:
    case SO_BROADCAST:
    case SO_SNDBUF:
    case SO_RCVBUF:
    case SO_KEEPALIVE:
    case SO_OOBINLINE:
    case SO_NO_CHECK:
    case SO_PRIORITY:
    case SO_BSDCOMPAT:
    case SO_PASSCRED:
    case SO_TIMESTAMP:
    case SO_RCVLOWAT:
    case SO_RCVTIMEO:
    case SO_SNDTIMEO:
    {
        int val;
        if (optlen < sizeof(uint32_t))
            return -EINVAL;
        val = tswap32(*(uint32_t *)optval);
        return get_errno(setsockopt(sockfd, level, optname, &val, sizeof(val)));
    }

    default:
        gemu_log("Unsupported setsockopt SOL_SOCKET option: %d\n", optname);
        return -ENOSYS;
    }
}

static long do_getsockopt(int sockfd, int level, int optname, 
                          void *optval, socklen_t *optlen)
{
    gemu_log("getsockopt not yet supported\n");
    return -ENOSYS;
}

static long do_socketcall(int num, int32_t *vptr)
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{
    long ret;

    switch(num) {
    case SOCKOP_socket:
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	{
            int domain = tswap32(vptr[0]);
            int type = tswap32(vptr[1]);
            int protocol = tswap32(vptr[2]);

            ret = get_errno(socket(domain, type, protocol));
	}
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        break;
    case SOCKOP_bind:
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	{
            int sockfd = tswap32(vptr[0]);
            void *target_addr = (void *)tswap32(vptr[1]);
            socklen_t addrlen = tswap32(vptr[2]);
            void *addr = alloca(addrlen);

            target_to_host_sockaddr(addr, target_addr, addrlen);
            ret = get_errno(bind(sockfd, addr, addrlen));
        }
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        break;
    case SOCKOP_connect:
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        {
            int sockfd = tswap32(vptr[0]);
            void *target_addr = (void *)tswap32(vptr[1]);
            socklen_t addrlen = tswap32(vptr[2]);
            void *addr = alloca(addrlen);

            target_to_host_sockaddr(addr, target_addr, addrlen);
            ret = get_errno(connect(sockfd, addr, addrlen));
        }
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        break;
    case SOCKOP_listen:
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        {
            int sockfd = tswap32(vptr[0]);
            int backlog = tswap32(vptr[1]);

            ret = get_errno(listen(sockfd, backlog));
        }
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        break;
    case SOCKOP_accept:
        {
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            int sockfd = tswap32(vptr[0]);
            void *target_addr = (void *)tswap32(vptr[1]);
            uint32_t *target_addrlen = (void *)tswap32(vptr[2]);
            socklen_t addrlen = tswap32(*target_addrlen);
            void *addr = alloca(addrlen);

            ret = get_errno(accept(sockfd, addr, &addrlen));
            if (!is_error(ret)) {
                host_to_target_sockaddr(target_addr, addr, addrlen);
                *target_addrlen = tswap32(addrlen);
            }
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        }
        break;
    case SOCKOP_getsockname:
        {
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            int sockfd = tswap32(vptr[0]);
            void *target_addr = (void *)tswap32(vptr[1]);
            uint32_t *target_addrlen = (void *)tswap32(vptr[2]);
            socklen_t addrlen = tswap32(*target_addrlen);
            void *addr = alloca(addrlen);

            ret = get_errno(getsockname(sockfd, addr, &addrlen));
            if (!is_error(ret)) {
                host_to_target_sockaddr(target_addr, addr, addrlen);
                *target_addrlen = tswap32(addrlen);
            }
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        }
        break;
    case SOCKOP_getpeername:
        {
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            int sockfd = tswap32(vptr[0]);
            void *target_addr = (void *)tswap32(vptr[1]);
            uint32_t *target_addrlen = (void *)tswap32(vptr[2]);
            socklen_t addrlen = tswap32(*target_addrlen);
            void *addr = alloca(addrlen);

            ret = get_errno(getpeername(sockfd, addr, &addrlen));
            if (!is_error(ret)) {
                host_to_target_sockaddr(target_addr, addr, addrlen);
                *target_addrlen = tswap32(addrlen);
            }
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        }
        break;
    case SOCKOP_socketpair:
        {
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            int domain = tswap32(vptr[0]);
            int type = tswap32(vptr[1]);
            int protocol = tswap32(vptr[2]);
            int32_t *target_tab = (void *)tswap32(vptr[3]);
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            int tab[2];
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            ret = get_errno(socketpair(domain, type, protocol, tab));
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            if (!is_error(ret)) {
                target_tab[0] = tswap32(tab[0]);
                target_tab[1] = tswap32(tab[1]);
            }
        }
        break;
    case SOCKOP_send:
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        {
            int sockfd = tswap32(vptr[0]);
            void *msg = (void *)tswap32(vptr[1]);
            size_t len = tswap32(vptr[2]);
            int flags = tswap32(vptr[3]);

            ret = get_errno(send(sockfd, msg, len, flags));
        }
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        break;
    case SOCKOP_recv:
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        {
            int sockfd = tswap32(vptr[0]);
            void *msg = (void *)tswap32(vptr[1]);
            size_t len = tswap32(vptr[2]);
            int flags = tswap32(vptr[3]);

            ret = get_errno(recv(sockfd, msg, len, flags));
        }
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        break;
    case SOCKOP_sendto:
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        {
            int sockfd = tswap32(vptr[0]);
            void *msg = (void *)tswap32(vptr[1]);
            size_t len = tswap32(vptr[2]);
            int flags = tswap32(vptr[3]);
            void *target_addr = (void *)tswap32(vptr[4]);
            socklen_t addrlen = tswap32(vptr[5]);
            void *addr = alloca(addrlen);

            target_to_host_sockaddr(addr, target_addr, addrlen);
            ret = get_errno(sendto(sockfd, msg, len, flags, addr, addrlen));
        }
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        break;
    case SOCKOP_recvfrom:
        {
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            int sockfd = tswap32(vptr[0]);
            void *msg = (void *)tswap32(vptr[1]);
            size_t len = tswap32(vptr[2]);
            int flags = tswap32(vptr[3]);
            void *target_addr = (void *)tswap32(vptr[4]);
            uint32_t *target_addrlen = (void *)tswap32(vptr[5]);
            socklen_t addrlen = tswap32(*target_addrlen);
            void *addr = alloca(addrlen);

            ret = get_errno(recvfrom(sockfd, msg, len, flags, addr, &addrlen));
            if (!is_error(ret)) {
                host_to_target_sockaddr(target_addr, addr, addrlen);
                *target_addrlen = tswap32(addrlen);
            }
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        }
        break;
    case SOCKOP_shutdown:
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        {
            int sockfd = tswap32(vptr[0]);
            int how = tswap32(vptr[1]);

            ret = get_errno(shutdown(sockfd, how));
        }
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        break;
    case SOCKOP_sendmsg:
    case SOCKOP_recvmsg:
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        {
            int fd;
            struct target_msghdr *msgp;
            struct msghdr msg;
            int flags, count, i;
            struct iovec *vec;
            struct target_iovec *target_vec;

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            msgp = (void *)tswap32(vptr[1]);
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            msg.msg_name = (void *)tswapl(msgp->msg_name);
            msg.msg_namelen = tswapl(msgp->msg_namelen);
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            msg.msg_controllen = 2 * tswapl(msgp->msg_controllen);
            msg.msg_control = alloca(msg.msg_controllen);
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            msg.msg_flags = tswap32(msgp->msg_flags);

            count = tswapl(msgp->msg_iovlen);
            vec = alloca(count * sizeof(struct iovec));
            target_vec = (void *)tswapl(msgp->msg_iov);
            for(i = 0;i < count; i++) {
                vec[i].iov_base = (void *)tswapl(target_vec[i].iov_base);
                vec[i].iov_len = tswapl(target_vec[i].iov_len);
            }
            msg.msg_iovlen = count;
            msg.msg_iov = vec;

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            fd = tswap32(vptr[0]);
            flags = tswap32(vptr[2]);
            if (num == SOCKOP_sendmsg) {
                target_to_host_cmsg(&msg, msgp);
                ret = get_errno(sendmsg(fd, &msg, flags));
            } else {
                ret = get_errno(recvmsg(fd, &msg, flags));
                if (!is_error(ret))
                  host_to_target_cmsg(msgp, &msg);
            }
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        }
        break;
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    case SOCKOP_setsockopt:
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        {
            int sockfd = tswap32(vptr[0]);
            int level = tswap32(vptr[1]);
            int optname = tswap32(vptr[2]);
            void *optval = (void *)tswap32(vptr[3]);
            socklen_t optlen = tswap32(vptr[4]);

            ret = do_setsockopt(sockfd, level, optname, optval, optlen);
        }
        break;
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    case SOCKOP_getsockopt:
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        {
            int sockfd = tswap32(vptr[0]);
            int level = tswap32(vptr[1]);
            int optname = tswap32(vptr[2]);
            void *optval = (void *)tswap32(vptr[3]);
            uint32_t *target_len = (void *)tswap32(vptr[4]);
            socklen_t optlen = tswap32(*target_len);

            ret = do_getsockopt(sockfd, level, optname, optval, &optlen);
            if (!is_error(ret))
                *target_len = tswap32(optlen);
        }
        break;
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    default:
        gemu_log("Unsupported socketcall: %d\n", num);
        ret = -ENOSYS;
        break;
    }
    return ret;
}

/* kernel structure types definitions */
#define IFNAMSIZ        16

#define STRUCT(name, list...) STRUCT_ ## name,
#define STRUCT_SPECIAL(name) STRUCT_ ## name,
enum {
#include "syscall_types.h"
};
#undef STRUCT
#undef STRUCT_SPECIAL

#define STRUCT(name, list...) const argtype struct_ ## name ## _def[] = { list, TYPE_NULL };
#define STRUCT_SPECIAL(name)
#include "syscall_types.h"
#undef STRUCT
#undef STRUCT_SPECIAL

typedef struct IOCTLEntry {
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    unsigned int target_cmd;
    unsigned int host_cmd;
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    const char *name;
    int access;
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    const argtype arg_type[5];
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} IOCTLEntry;

#define IOC_R 0x0001
#define IOC_W 0x0002
#define IOC_RW (IOC_R | IOC_W)

#define MAX_STRUCT_SIZE 4096

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IOCTLEntry ioctl_entries[] = {
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#define IOCTL(cmd, access, types...) \
    { TARGET_ ## cmd, cmd, #cmd, access, { types } },
#include "ioctls.h"
    { 0, 0, },
};

static long do_ioctl(long fd, long cmd, long arg)
{
    const IOCTLEntry *ie;
    const argtype *arg_type;
    long ret;
    uint8_t buf_temp[MAX_STRUCT_SIZE];

    ie = ioctl_entries;
    for(;;) {
        if (ie->target_cmd == 0) {
            gemu_log("Unsupported ioctl: cmd=0x%04lx\n", cmd);
            return -ENOSYS;
        }
        if (ie->target_cmd == cmd)
            break;
        ie++;
    }
    arg_type = ie->arg_type;
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#if defined(DEBUG)
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    gemu_log("ioctl: cmd=0x%04lx (%s)\n", cmd, ie->name);
#endif
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    switch(arg_type[0]) {
    case TYPE_NULL:
        /* no argument */
        ret = get_errno(ioctl(fd, ie->host_cmd));
        break;
    case TYPE_PTRVOID:
    case TYPE_INT:
        /* int argment */
        ret = get_errno(ioctl(fd, ie->host_cmd, arg));
        break;
    case TYPE_PTR:
        arg_type++;
        switch(ie->access) {
        case IOC_R:
            ret = get_errno(ioctl(fd, ie->host_cmd, buf_temp));
            if (!is_error(ret)) {
                thunk_convert((void *)arg, buf_temp, arg_type, THUNK_TARGET);
            }
            break;
        case IOC_W:
            thunk_convert(buf_temp, (void *)arg, arg_type, THUNK_HOST);
            ret = get_errno(ioctl(fd, ie->host_cmd, buf_temp));
            break;
        default:
        case IOC_RW:
            thunk_convert(buf_temp, (void *)arg, arg_type, THUNK_HOST);
            ret = get_errno(ioctl(fd, ie->host_cmd, buf_temp));
            if (!is_error(ret)) {
                thunk_convert((void *)arg, buf_temp, arg_type, THUNK_TARGET);
            }
            break;
        }
        break;
    default:
        gemu_log("Unsupported ioctl type: cmd=0x%04lx type=%d\n", cmd, arg_type[0]);
        ret = -ENOSYS;
        break;
    }
    return ret;
}

bitmask_transtbl iflag_tbl[] = {
        { TARGET_IGNBRK, TARGET_IGNBRK, IGNBRK, IGNBRK },
        { TARGET_BRKINT, TARGET_BRKINT, BRKINT, BRKINT },
        { TARGET_IGNPAR, TARGET_IGNPAR, IGNPAR, IGNPAR },
        { TARGET_PARMRK, TARGET_PARMRK, PARMRK, PARMRK },
        { TARGET_INPCK, TARGET_INPCK, INPCK, INPCK },
        { TARGET_ISTRIP, TARGET_ISTRIP, ISTRIP, ISTRIP },
        { TARGET_INLCR, TARGET_INLCR, INLCR, INLCR },
        { TARGET_IGNCR, TARGET_IGNCR, IGNCR, IGNCR },
        { TARGET_ICRNL, TARGET_ICRNL, ICRNL, ICRNL },
        { TARGET_IUCLC, TARGET_IUCLC, IUCLC, IUCLC },
        { TARGET_IXON, TARGET_IXON, IXON, IXON },
        { TARGET_IXANY, TARGET_IXANY, IXANY, IXANY },
        { TARGET_IXOFF, TARGET_IXOFF, IXOFF, IXOFF },
        { TARGET_IMAXBEL, TARGET_IMAXBEL, IMAXBEL, IMAXBEL },
        { 0, 0, 0, 0 }
};

bitmask_transtbl oflag_tbl[] = {
	{ TARGET_OPOST, TARGET_OPOST, OPOST, OPOST },
	{ TARGET_OLCUC, TARGET_OLCUC, OLCUC, OLCUC },
	{ TARGET_ONLCR, TARGET_ONLCR, ONLCR, ONLCR },
	{ TARGET_OCRNL, TARGET_OCRNL, OCRNL, OCRNL },
	{ TARGET_ONOCR, TARGET_ONOCR, ONOCR, ONOCR },
	{ TARGET_ONLRET, TARGET_ONLRET, ONLRET, ONLRET },
	{ TARGET_OFILL, TARGET_OFILL, OFILL, OFILL },
	{ TARGET_OFDEL, TARGET_OFDEL, OFDEL, OFDEL },
	{ TARGET_NLDLY, TARGET_NL0, NLDLY, NL0 },
	{ TARGET_NLDLY, TARGET_NL1, NLDLY, NL1 },
	{ TARGET_CRDLY, TARGET_CR0, CRDLY, CR0 },
	{ TARGET_CRDLY, TARGET_CR1, CRDLY, CR1 },
	{ TARGET_CRDLY, TARGET_CR2, CRDLY, CR2 },
	{ TARGET_CRDLY, TARGET_CR3, CRDLY, CR3 },
	{ TARGET_TABDLY, TARGET_TAB0, TABDLY, TAB0 },
	{ TARGET_TABDLY, TARGET_TAB1, TABDLY, TAB1 },
	{ TARGET_TABDLY, TARGET_TAB2, TABDLY, TAB2 },
	{ TARGET_TABDLY, TARGET_TAB3, TABDLY, TAB3 },
	{ TARGET_BSDLY, TARGET_BS0, BSDLY, BS0 },
	{ TARGET_BSDLY, TARGET_BS1, BSDLY, BS1 },
	{ TARGET_VTDLY, TARGET_VT0, VTDLY, VT0 },
	{ TARGET_VTDLY, TARGET_VT1, VTDLY, VT1 },
	{ TARGET_FFDLY, TARGET_FF0, FFDLY, FF0 },
	{ TARGET_FFDLY, TARGET_FF1, FFDLY, FF1 },
	{ 0, 0, 0, 0 }
};

bitmask_transtbl cflag_tbl[] = {
	{ TARGET_CBAUD, TARGET_B0, CBAUD, B0 },
	{ TARGET_CBAUD, TARGET_B50, CBAUD, B50 },
	{ TARGET_CBAUD, TARGET_B75, CBAUD, B75 },
	{ TARGET_CBAUD, TARGET_B110, CBAUD, B110 },
	{ TARGET_CBAUD, TARGET_B134, CBAUD, B134 },
	{ TARGET_CBAUD, TARGET_B150, CBAUD, B150 },
	{ TARGET_CBAUD, TARGET_B200, CBAUD, B200 },
	{ TARGET_CBAUD, TARGET_B300, CBAUD, B300 },
	{ TARGET_CBAUD, TARGET_B600, CBAUD, B600 },
	{ TARGET_CBAUD, TARGET_B1200, CBAUD, B1200 },
	{ TARGET_CBAUD, TARGET_B1800, CBAUD, B1800 },
	{ TARGET_CBAUD, TARGET_B2400, CBAUD, B2400 },
	{ TARGET_CBAUD, TARGET_B4800, CBAUD, B4800 },
	{ TARGET_CBAUD, TARGET_B9600, CBAUD, B9600 },
	{ TARGET_CBAUD, TARGET_B19200, CBAUD, B19200 },
	{ TARGET_CBAUD, TARGET_B38400, CBAUD, B38400 },
	{ TARGET_CBAUD, TARGET_B57600, CBAUD, B57600 },
	{ TARGET_CBAUD, TARGET_B115200, CBAUD, B115200 },
	{ TARGET_CBAUD, TARGET_B230400, CBAUD, B230400 },
	{ TARGET_CBAUD, TARGET_B460800, CBAUD, B460800 },
	{ TARGET_CSIZE, TARGET_CS5, CSIZE, CS5 },
	{ TARGET_CSIZE, TARGET_CS6, CSIZE, CS6 },
	{ TARGET_CSIZE, TARGET_CS7, CSIZE, CS7 },
	{ TARGET_CSIZE, TARGET_CS8, CSIZE, CS8 },
	{ TARGET_CSTOPB, TARGET_CSTOPB, CSTOPB, CSTOPB },
	{ TARGET_CREAD, TARGET_CREAD, CREAD, CREAD },
	{ TARGET_PARENB, TARGET_PARENB, PARENB, PARENB },
	{ TARGET_PARODD, TARGET_PARODD, PARODD, PARODD },
	{ TARGET_HUPCL, TARGET_HUPCL, HUPCL, HUPCL },
	{ TARGET_CLOCAL, TARGET_CLOCAL, CLOCAL, CLOCAL },
	{ TARGET_CRTSCTS, TARGET_CRTSCTS, CRTSCTS, CRTSCTS },
	{ 0, 0, 0, 0 }
};

bitmask_transtbl lflag_tbl[] = {
	{ TARGET_ISIG, TARGET_ISIG, ISIG, ISIG },
	{ TARGET_ICANON, TARGET_ICANON, ICANON, ICANON },
	{ TARGET_XCASE, TARGET_XCASE, XCASE, XCASE },
	{ TARGET_ECHO, TARGET_ECHO, ECHO, ECHO },
	{ TARGET_ECHOE, TARGET_ECHOE, ECHOE, ECHOE },
	{ TARGET_ECHOK, TARGET_ECHOK, ECHOK, ECHOK },
	{ TARGET_ECHONL, TARGET_ECHONL, ECHONL, ECHONL },
	{ TARGET_NOFLSH, TARGET_NOFLSH, NOFLSH, NOFLSH },
	{ TARGET_TOSTOP, TARGET_TOSTOP, TOSTOP, TOSTOP },
	{ TARGET_ECHOCTL, TARGET_ECHOCTL, ECHOCTL, ECHOCTL },
	{ TARGET_ECHOPRT, TARGET_ECHOPRT, ECHOPRT, ECHOPRT },
	{ TARGET_ECHOKE, TARGET_ECHOKE, ECHOKE, ECHOKE },
	{ TARGET_FLUSHO, TARGET_FLUSHO, FLUSHO, FLUSHO },
	{ TARGET_PENDIN, TARGET_PENDIN, PENDIN, PENDIN },
	{ TARGET_IEXTEN, TARGET_IEXTEN, IEXTEN, IEXTEN },
	{ 0, 0, 0, 0 }
};

static void target_to_host_termios (void *dst, const void *src)
{
    struct host_termios *host = dst;
    const struct target_termios *target = src;
    
    host->c_iflag = 
        target_to_host_bitmask(tswap32(target->c_iflag), iflag_tbl);
    host->c_oflag = 
        target_to_host_bitmask(tswap32(target->c_oflag), oflag_tbl);
    host->c_cflag = 
        target_to_host_bitmask(tswap32(target->c_cflag), cflag_tbl);
    host->c_lflag = 
        target_to_host_bitmask(tswap32(target->c_lflag), lflag_tbl);
    host->c_line = target->c_line;
    
    host->c_cc[VINTR] = target->c_cc[TARGET_VINTR]; 
    host->c_cc[VQUIT] = target->c_cc[TARGET_VQUIT]; 
    host->c_cc[VERASE] = target->c_cc[TARGET_VERASE];       
    host->c_cc[VKILL] = target->c_cc[TARGET_VKILL]; 
    host->c_cc[VEOF] = target->c_cc[TARGET_VEOF];   
    host->c_cc[VTIME] = target->c_cc[TARGET_VTIME]; 
    host->c_cc[VMIN] = target->c_cc[TARGET_VMIN];   
    host->c_cc[VSWTC] = target->c_cc[TARGET_VSWTC]; 
    host->c_cc[VSTART] = target->c_cc[TARGET_VSTART];       
    host->c_cc[VSTOP] = target->c_cc[TARGET_VSTOP]; 
    host->c_cc[VSUSP] = target->c_cc[TARGET_VSUSP]; 
    host->c_cc[VEOL] = target->c_cc[TARGET_VEOL];   
    host->c_cc[VREPRINT] = target->c_cc[TARGET_VREPRINT];   
    host->c_cc[VDISCARD] = target->c_cc[TARGET_VDISCARD];   
    host->c_cc[VWERASE] = target->c_cc[TARGET_VWERASE];     
    host->c_cc[VLNEXT] = target->c_cc[TARGET_VLNEXT];       
    host->c_cc[VEOL2] = target->c_cc[TARGET_VEOL2]; 
}
  
static void host_to_target_termios (void *dst, const void *src)
{
    struct target_termios *target = dst;
    const struct host_termios *host = src;

    target->c_iflag = 
        tswap32(host_to_target_bitmask(host->c_iflag, iflag_tbl));
    target->c_oflag = 
        tswap32(host_to_target_bitmask(host->c_oflag, oflag_tbl));
    target->c_cflag = 
        tswap32(host_to_target_bitmask(host->c_cflag, cflag_tbl));
    target->c_lflag = 
        tswap32(host_to_target_bitmask(host->c_lflag, lflag_tbl));
    target->c_line = host->c_line;
  
    target->c_cc[TARGET_VINTR] = host->c_cc[VINTR];
    target->c_cc[TARGET_VQUIT] = host->c_cc[VQUIT];
    target->c_cc[TARGET_VERASE] = host->c_cc[VERASE];
    target->c_cc[TARGET_VKILL] = host->c_cc[VKILL];
    target->c_cc[TARGET_VEOF] = host->c_cc[VEOF];
    target->c_cc[TARGET_VTIME] = host->c_cc[VTIME];
    target->c_cc[TARGET_VMIN] = host->c_cc[VMIN];
    target->c_cc[TARGET_VSWTC] = host->c_cc[VSWTC];
    target->c_cc[TARGET_VSTART] = host->c_cc[VSTART];
    target->c_cc[TARGET_VSTOP] = host->c_cc[VSTOP];
    target->c_cc[TARGET_VSUSP] = host->c_cc[VSUSP];
    target->c_cc[TARGET_VEOL] = host->c_cc[VEOL];
    target->c_cc[TARGET_VREPRINT] = host->c_cc[VREPRINT];
    target->c_cc[TARGET_VDISCARD] = host->c_cc[VDISCARD];
    target->c_cc[TARGET_VWERASE] = host->c_cc[VWERASE];
    target->c_cc[TARGET_VLNEXT] = host->c_cc[VLNEXT];
    target->c_cc[TARGET_VEOL2] = host->c_cc[VEOL2];
}

StructEntry struct_termios_def = {
    .convert = { host_to_target_termios, target_to_host_termios },
    .size = { sizeof(struct target_termios), sizeof(struct host_termios) },
    .align = { __alignof__(struct target_termios), __alignof__(struct host_termios) },
};

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static bitmask_transtbl mmap_flags_tbl[] = {
	{ TARGET_MAP_SHARED, TARGET_MAP_SHARED, MAP_SHARED, MAP_SHARED },
	{ TARGET_MAP_PRIVATE, TARGET_MAP_PRIVATE, MAP_PRIVATE, MAP_PRIVATE },
	{ TARGET_MAP_FIXED, TARGET_MAP_FIXED, MAP_FIXED, MAP_FIXED },
	{ TARGET_MAP_ANONYMOUS, TARGET_MAP_ANONYMOUS, MAP_ANONYMOUS, MAP_ANONYMOUS },
	{ TARGET_MAP_GROWSDOWN, TARGET_MAP_GROWSDOWN, MAP_GROWSDOWN, MAP_GROWSDOWN },
	{ TARGET_MAP_DENYWRITE, TARGET_MAP_DENYWRITE, MAP_DENYWRITE, MAP_DENYWRITE },
	{ TARGET_MAP_EXECUTABLE, TARGET_MAP_EXECUTABLE, MAP_EXECUTABLE, MAP_EXECUTABLE },
	{ TARGET_MAP_LOCKED, TARGET_MAP_LOCKED, MAP_LOCKED, MAP_LOCKED },
	{ 0, 0, 0, 0 }
};

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static bitmask_transtbl fcntl_flags_tbl[] = {
	{ TARGET_O_ACCMODE,   TARGET_O_WRONLY,    O_ACCMODE,   O_WRONLY,    },
	{ TARGET_O_ACCMODE,   TARGET_O_RDWR,      O_ACCMODE,   O_RDWR,      },
	{ TARGET_O_CREAT,     TARGET_O_CREAT,     O_CREAT,     O_CREAT,     },
	{ TARGET_O_EXCL,      TARGET_O_EXCL,      O_EXCL,      O_EXCL,      },
	{ TARGET_O_NOCTTY,    TARGET_O_NOCTTY,    O_NOCTTY,    O_NOCTTY,    },
	{ TARGET_O_TRUNC,     TARGET_O_TRUNC,     O_TRUNC,     O_TRUNC,     },
	{ TARGET_O_APPEND,    TARGET_O_APPEND,    O_APPEND,    O_APPEND,    },
	{ TARGET_O_NONBLOCK,  TARGET_O_NONBLOCK,  O_NONBLOCK,  O_NONBLOCK,  },
	{ TARGET_O_SYNC,      TARGET_O_SYNC,      O_SYNC,      O_SYNC,      },
	{ TARGET_FASYNC,      TARGET_FASYNC,      FASYNC,      FASYNC,      },
	{ TARGET_O_DIRECTORY, TARGET_O_DIRECTORY, O_DIRECTORY, O_DIRECTORY, },
	{ TARGET_O_NOFOLLOW,  TARGET_O_NOFOLLOW,  O_NOFOLLOW,  O_NOFOLLOW,  },
	{ TARGET_O_LARGEFILE, TARGET_O_LARGEFILE, O_LARGEFILE, O_LARGEFILE, },
	{ TARGET_O_DIRECT,    TARGET_O_DIRECT,    O_DIRECT,    O_DIRECT,    },
	{ 0, 0, 0, 0 }
};

1151
#if defined(TARGET_I386)
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/* NOTE: there is really one LDT for all the threads */
uint8_t *ldt_table;

static int read_ldt(void *ptr, unsigned long bytecount)
{
    int size;

    if (!ldt_table)
        return 0;
    size = TARGET_LDT_ENTRIES * TARGET_LDT_ENTRY_SIZE;
    if (size > bytecount)
        size = bytecount;
    memcpy(ptr, ldt_table, size);
    return size;
}

/* XXX: add locking support */
static int write_ldt(CPUX86State *env, 
                     void *ptr, unsigned long bytecount, int oldmode)
{
    struct target_modify_ldt_ldt_s ldt_info;
    int seg_32bit, contents, read_exec_only, limit_in_pages;
    int seg_not_present, useable;
    uint32_t *lp, entry_1, entry_2;

    if (bytecount != sizeof(ldt_info))
        return -EINVAL;
    memcpy(&ldt_info, ptr, sizeof(ldt_info));
    tswap32s(&ldt_info.entry_number);
    tswapls((long *)&ldt_info.base_addr);
    tswap32s(&ldt_info.limit);
    tswap32s(&ldt_info.flags);
    
    if (ldt_info.entry_number >= TARGET_LDT_ENTRIES)
        return -EINVAL;
    seg_32bit = ldt_info.flags & 1;
    contents = (ldt_info.flags >> 1) & 3;
    read_exec_only = (ldt_info.flags >> 3) & 1;
    limit_in_pages = (ldt_info.flags >> 4) & 1;
    seg_not_present = (ldt_info.flags >> 5) & 1;
    useable = (ldt_info.flags >> 6) & 1;

    if (contents == 3) {
        if (oldmode)
            return -EINVAL;
        if (seg_not_present == 0)
            return -EINVAL;
    }
    /* allocate the LDT */
    if (!ldt_table) {
        ldt_table = malloc(TARGET_LDT_ENTRIES * TARGET_LDT_ENTRY_SIZE);
        if (!ldt_table)
            return -ENOMEM;
        memset(ldt_table, 0, TARGET_LDT_ENTRIES * TARGET_LDT_ENTRY_SIZE);
        env->ldt.base = ldt_table;
        env->ldt.limit = 0xffff;
    }

    /* NOTE: same code as Linux kernel */
    /* Allow LDTs to be cleared by the user. */
    if (ldt_info.base_addr == 0 && ldt_info.limit == 0) {
        if (oldmode ||
            (contents == 0		&&
             read_exec_only == 1	&&
             seg_32bit == 0		&&
             limit_in_pages == 0	&&
             seg_not_present == 1	&&
             useable == 0 )) {
            entry_1 = 0;
            entry_2 = 0;
            goto install;
        }
    }
    
    entry_1 = ((ldt_info.base_addr & 0x0000ffff) << 16) |
        (ldt_info.limit & 0x0ffff);
    entry_2 = (ldt_info.base_addr & 0xff000000) |
        ((ldt_info.base_addr & 0x00ff0000) >> 16) |
        (ldt_info.limit & 0xf0000) |
        ((read_exec_only ^ 1) << 9) |
        (contents << 10) |
        ((seg_not_present ^ 1) << 15) |
        (seg_32bit << 22) |
        (limit_in_pages << 23) |
        0x7000;
    if (!oldmode)
        entry_2 |= (useable << 20);
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    /* Install the new entry ...  */
install:
    lp = (uint32_t *)(ldt_table + (ldt_info.entry_number << 3));
    lp[0] = tswap32(entry_1);
    lp[1] = tswap32(entry_2);
    return 0;
}

/* specific and weird i386 syscalls */
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int do_modify_ldt(CPUX86State *env, int func, void *ptr, unsigned long bytecount)
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{
    int ret = -ENOSYS;
    
    switch (func) {
    case 0:
        ret = read_ldt(ptr, bytecount);
        break;
    case 1:
        ret = write_ldt(env, ptr, bytecount, 1);
        break;
    case 0x11:
        ret = write_ldt(env, ptr, bytecount, 0);
        break;
    }
    return ret;
}
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#endif /* defined(TARGET_I386) */

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/* this stack is the equivalent of the kernel stack associated with a
   thread/process */
#define NEW_STACK_SIZE 8192

static int clone_func(void *arg)
{
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    CPUState *env = arg;
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    cpu_loop(env);
    /* never exits */
    return 0;
}

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int do_fork(CPUState *env, unsigned int flags, unsigned long newsp)
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{
    int ret;
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    TaskState *ts;
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    uint8_t *new_stack;
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    CPUState *new_env;
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    if (flags & CLONE_VM) {
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        ts = malloc(sizeof(TaskState) + NEW_STACK_SIZE);
        memset(ts, 0, sizeof(TaskState));
        new_stack = ts->stack;
        ts->used = 1;
        /* add in task state list */
        ts->next = first_task_state;
        first_task_state = ts;
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        /* we create a new CPU instance. */
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        new_env = cpu_init();
        memcpy(new_env, env, sizeof(CPUState));
#if defined(TARGET_I386)
        if (!newsp)
            newsp = env->regs[R_ESP];
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        new_env->regs[R_ESP] = newsp;
        new_env->regs[R_EAX] = 0;
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#elif defined(TARGET_ARM)
        if (!newsp)
            newsp = env->regs[13];
        new_env->regs[13] = newsp;
        new_env->regs[0] = 0;
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#elif defined(TARGET_SPARC)
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        printf ("HELPME: %s:%d\n", __FILE__, __LINE__);
#elif defined(TARGET_PPC)
        if (!newsp)
            newsp = env->gpr[1];
        new_env->gpr[1] = newsp;
        { 
            int i;
            for (i = 7; i < 32; i++)
                new_env->gpr[i] = 0;
        }
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#else
#error unsupported target CPU
#endif
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        new_env->opaque = ts;
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#ifdef __ia64__
        ret = clone2(clone_func, new_stack + NEW_STACK_SIZE, flags, new_env);
#else
	ret = clone(clone_func, new_stack + NEW_STACK_SIZE, flags, new_env);
#endif
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    } else {
        /* if no CLONE_VM, we consider it is a fork */
        if ((flags & ~CSIGNAL) != 0)
            return -EINVAL;
        ret = fork();
    }
    return ret;
}

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static long do_fcntl(int fd, int cmd, unsigned long arg)
{
    struct flock fl;
    struct target_flock *target_fl = (void *)arg;
    long ret;
    
    switch(cmd) {
    case TARGET_F_GETLK:
        ret = fcntl(fd, cmd, &fl);
        if (ret == 0) {
            target_fl->l_type = tswap16(fl.l_type);
            target_fl->l_whence = tswap16(fl.l_whence);
            target_fl->l_start = tswapl(fl.l_start);
            target_fl->l_len = tswapl(fl.l_len);
            target_fl->l_pid = tswapl(fl.l_pid);
        }
        break;
        
    case TARGET_F_SETLK:
    case TARGET_F_SETLKW:
        fl.l_type = tswap16(target_fl->l_type);
        fl.l_whence = tswap16(target_fl->l_whence);
        fl.l_start = tswapl(target_fl->l_start);
        fl.l_len = tswapl(target_fl->l_len);
        fl.l_pid = tswapl(target_fl->l_pid);
        ret = fcntl(fd, cmd, &fl);
        break;
        
    case TARGET_F_GETLK64:
    case TARGET_F_SETLK64:
    case TARGET_F_SETLKW64:
        ret = -1;
        errno = EINVAL;
        break;

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    case F_GETFL:
        ret = fcntl(fd, cmd, arg);
        ret = host_to_target_bitmask(ret, fcntl_flags_tbl);
        break;

    case F_SETFL:
        ret = fcntl(fd, cmd, target_to_host_bitmask(arg, fcntl_flags_tbl));
        break;

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    default:
        ret = fcntl(fd, cmd, arg);
        break;
    }
    return ret;
}

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#ifdef USE_UID16
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static inline int high2lowuid(int uid)
{
    if (uid > 65535)
        return 65534;
    else
        return uid;
}

static inline int high2lowgid(int gid)
{
    if (gid > 65535)
        return 65534;
    else
        return gid;
}

static inline int low2highuid(int uid)
{
    if ((int16_t)uid == -1)
        return -1;
    else
        return uid;
}

static inline int low2highgid(int gid)
{
    if ((int16_t)gid == -1)
        return -1;
    else
        return gid;
}

#endif /* USE_UID16 */
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void syscall_init(void)
{
1428 1429 1430 1431
    IOCTLEntry *ie;
    const argtype *arg_type;
    int size;

1432 1433 1434 1435 1436
#define STRUCT(name, list...) thunk_register_struct(STRUCT_ ## name, #name, struct_ ## name ## _def); 
#define STRUCT_SPECIAL(name) thunk_register_struct_direct(STRUCT_ ## name, #name, &struct_ ## name ## _def); 
#include "syscall_types.h"
#undef STRUCT
#undef STRUCT_SPECIAL
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    /* we patch the ioctl size if necessary. We rely on the fact that
       no ioctl has all the bits at '1' in the size field */
    ie = ioctl_entries;
    while (ie->target_cmd != 0) {
        if (((ie->target_cmd >> TARGET_IOC_SIZESHIFT) & TARGET_IOC_SIZEMASK) ==
            TARGET_IOC_SIZEMASK) {
            arg_type = ie->arg_type;
            if (arg_type[0] != TYPE_PTR) {
                fprintf(stderr, "cannot patch size for ioctl 0x%x\n", 
                        ie->target_cmd);
                exit(1);
            }
            arg_type++;
            size = thunk_type_size(arg_type, 0);
            ie->target_cmd = (ie->target_cmd & 
                              ~(TARGET_IOC_SIZEMASK << TARGET_IOC_SIZESHIFT)) |
                (size << TARGET_IOC_SIZESHIFT);
        }
        /* automatic consistency check if same arch */
#if defined(__i386__) && defined(TARGET_I386)
        if (ie->target_cmd != ie->host_cmd) {
            fprintf(stderr, "ERROR: ioctl: target=0x%x host=0x%x\n", 
                    ie->target_cmd, ie->host_cmd);
        }
#endif
        ie++;
    }
1465
}
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long do_syscall(void *cpu_env, int num, long arg1, long arg2, long arg3, 
1468 1469 1470 1471
                long arg4, long arg5, long arg6)
{
    long ret;
    struct stat st;
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    struct kernel_statfs *stfs;
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#ifdef DEBUG
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    gemu_log("syscall %d", num);
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#endif
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    switch(num) {
    case TARGET_NR_exit:
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#ifdef HAVE_GPROF
        _mcleanup();
#endif
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        /* XXX: should free thread stack and CPU env */
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        _exit(arg1);
        ret = 0; /* avoid warning */
        break;
    case TARGET_NR_read:
1487
        page_unprotect_range((void *)arg2, arg3);
1488 1489 1490 1491 1492 1493
        ret = get_errno(read(arg1, (void *)arg2, arg3));
        break;
    case TARGET_NR_write:
        ret = get_errno(write(arg1, (void *)arg2, arg3));
        break;
    case TARGET_NR_open:
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        ret = get_errno(open(path((const char *)arg1),
                             target_to_host_bitmask(arg2, fcntl_flags_tbl),
                             arg3));
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        break;
    case TARGET_NR_close:
        ret = get_errno(close(arg1));
        break;
    case TARGET_NR_brk:
        ret = do_brk((char *)arg1);
        break;
    case TARGET_NR_fork:
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        ret = get_errno(do_fork(cpu_env, SIGCHLD, 0));
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        break;
    case TARGET_NR_waitpid:
        {
            int *status = (int *)arg2;
            ret = get_errno(waitpid(arg1, status, arg3));
            if (!is_error(ret) && status)
                tswapls((long *)&status);
        }
        break;
    case TARGET_NR_creat:
        ret = get_errno(creat((const char *)arg1, arg2));
        break;
    case TARGET_NR_link:
        ret = get_errno(link((const char *)arg1, (const char *)arg2));
        break;
    case TARGET_NR_unlink:
        ret = get_errno(unlink((const char *)arg1));
        break;
    case TARGET_NR_execve:
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        {
            char **argp, **envp;
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            int argc, envc;
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            uint32_t *p;
            char **q;

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            argc = 0;
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            for (p = (void *)arg2; *p; p++)
                argc++;
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            envc = 0;
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            for (p = (void *)arg3; *p; p++)
                envc++;

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            argp = alloca((argc + 1) * sizeof(void *));
            envp = alloca((envc + 1) * sizeof(void *));
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            for (p = (void *)arg2, q = argp; *p; p++, q++)
                *q = (void *)tswap32(*p);
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            *q = NULL;

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            for (p = (void *)arg3, q = envp; *p; p++, q++)
                *q = (void *)tswap32(*p);
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            *q = NULL;
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            ret = get_errno(execve((const char *)arg1, argp, envp));
        }
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        break;
    case TARGET_NR_chdir:
        ret = get_errno(chdir((const char *)arg1));
        break;
    case TARGET_NR_time:
        {
            int *time_ptr = (int *)arg1;
            ret = get_errno(time((time_t *)time_ptr));
            if (!is_error(ret) && time_ptr)
                tswap32s(time_ptr);
        }
        break;
    case TARGET_NR_mknod:
        ret = get_errno(mknod((const char *)arg1, arg2, arg3));
        break;
    case TARGET_NR_chmod:
        ret = get_errno(chmod((const char *)arg1, arg2));
        break;
1569
#ifdef TARGET_NR_break
1570 1571
    case TARGET_NR_break:
        goto unimplemented;
1572 1573
#endif
#ifdef TARGET_NR_oldstat
1574 1575
    case TARGET_NR_oldstat:
        goto unimplemented;
1576
#endif
1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601
    case TARGET_NR_lseek:
        ret = get_errno(lseek(arg1, arg2, arg3));
        break;
    case TARGET_NR_getpid:
        ret = get_errno(getpid());
        break;
    case TARGET_NR_mount:
        /* need to look at the data field */
        goto unimplemented;
    case TARGET_NR_umount:
        ret = get_errno(umount((const char *)arg1));
        break;
    case TARGET_NR_stime:
        {
            int *time_ptr = (int *)arg1;
            if (time_ptr)
                tswap32s(time_ptr);
            ret = get_errno(stime((time_t *)time_ptr));
        }
        break;
    case TARGET_NR_ptrace:
        goto unimplemented;
    case TARGET_NR_alarm:
        ret = alarm(arg1);
        break;
1602
#ifdef TARGET_NR_oldfstat
1603 1604
    case TARGET_NR_oldfstat:
        goto unimplemented;
1605
#endif
1606 1607 1608 1609
    case TARGET_NR_pause:
        ret = get_errno(pause());
        break;
    case TARGET_NR_utime:
1610 1611 1612 1613 1614 1615 1616 1617 1618
        {
            struct utimbuf tbuf;
            struct target_utimbuf *target_tbuf = (void *)arg2;
            tbuf.actime = tswapl(target_tbuf->actime);
            tbuf.modtime = tswapl(target_tbuf->modtime);
            ret = get_errno(utime((const char *)arg1, &tbuf));
        }
        break;
#ifdef TARGET_NR_stty
1619 1620
    case TARGET_NR_stty:
        goto unimplemented;
1621 1622
#endif
#ifdef TARGET_NR_gtty
1623 1624
    case TARGET_NR_gtty:
        goto unimplemented;
1625
#endif
1626 1627 1628 1629 1630 1631
    case TARGET_NR_access:
        ret = get_errno(access((const char *)arg1, arg2));
        break;
    case TARGET_NR_nice:
        ret = get_errno(nice(arg1));
        break;
1632
#ifdef TARGET_NR_ftime
1633 1634
    case TARGET_NR_ftime:
        goto unimplemented;
1635
#endif
1636
    case TARGET_NR_sync:
B
bellard 已提交
1637 1638
        sync();
        ret = 0;
1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665
        break;
    case TARGET_NR_kill:
        ret = get_errno(kill(arg1, arg2));
        break;
    case TARGET_NR_rename:
        ret = get_errno(rename((const char *)arg1, (const char *)arg2));
        break;
    case TARGET_NR_mkdir:
        ret = get_errno(mkdir((const char *)arg1, arg2));
        break;
    case TARGET_NR_rmdir:
        ret = get_errno(rmdir((const char *)arg1));
        break;
    case TARGET_NR_dup:
        ret = get_errno(dup(arg1));
        break;
    case TARGET_NR_pipe:
        {
            int *pipe_ptr = (int *)arg1;
            ret = get_errno(pipe(pipe_ptr));
            if (!is_error(ret)) {
                tswap32s(&pipe_ptr[0]);
                tswap32s(&pipe_ptr[1]);
            }
        }
        break;
    case TARGET_NR_times:
B
bellard 已提交
1666 1667 1668 1669 1670
        {
            struct target_tms *tmsp = (void *)arg1;
            struct tms tms;
            ret = get_errno(times(&tms));
            if (tmsp) {
B
bellard 已提交
1671 1672 1673 1674
                tmsp->tms_utime = tswapl(host_to_target_clock_t(tms.tms_utime));
                tmsp->tms_stime = tswapl(host_to_target_clock_t(tms.tms_stime));
                tmsp->tms_cutime = tswapl(host_to_target_clock_t(tms.tms_cutime));
                tmsp->tms_cstime = tswapl(host_to_target_clock_t(tms.tms_cstime));
B
bellard 已提交
1675
            }
B
bellard 已提交
1676 1677
            if (!is_error(ret))
                ret = host_to_target_clock_t(ret);
B
bellard 已提交
1678 1679
        }
        break;
1680
#ifdef TARGET_NR_prof
1681 1682
    case TARGET_NR_prof:
        goto unimplemented;
1683
#endif
1684 1685
    case TARGET_NR_signal:
        goto unimplemented;
1686

1687 1688 1689 1690 1691
    case TARGET_NR_acct:
        goto unimplemented;
    case TARGET_NR_umount2:
        ret = get_errno(umount2((const char *)arg1, arg2));
        break;
1692
#ifdef TARGET_NR_lock
1693 1694
    case TARGET_NR_lock:
        goto unimplemented;
1695
#endif
1696 1697 1698 1699
    case TARGET_NR_ioctl:
        ret = do_ioctl(arg1, arg2, arg3);
        break;
    case TARGET_NR_fcntl:
B
bellard 已提交
1700
        ret = get_errno(do_fcntl(arg1, arg2, arg3));
1701
        break;
1702
#ifdef TARGET_NR_mpx
1703 1704
    case TARGET_NR_mpx:
        goto unimplemented;
1705
#endif
1706 1707 1708
    case TARGET_NR_setpgid:
        ret = get_errno(setpgid(arg1, arg2));
        break;
1709
#ifdef TARGET_NR_ulimit
1710 1711
    case TARGET_NR_ulimit:
        goto unimplemented;
1712 1713
#endif
#ifdef TARGET_NR_oldolduname
1714 1715
    case TARGET_NR_oldolduname:
        goto unimplemented;
1716
#endif
1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738
    case TARGET_NR_umask:
        ret = get_errno(umask(arg1));
        break;
    case TARGET_NR_chroot:
        ret = get_errno(chroot((const char *)arg1));
        break;
    case TARGET_NR_ustat:
        goto unimplemented;
    case TARGET_NR_dup2:
        ret = get_errno(dup2(arg1, arg2));
        break;
    case TARGET_NR_getppid:
        ret = get_errno(getppid());
        break;
    case TARGET_NR_getpgrp:
        ret = get_errno(getpgrp());
        break;
    case TARGET_NR_setsid:
        ret = get_errno(setsid());
        break;
    case TARGET_NR_sigaction:
        {
B
bellard 已提交
1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757
            struct target_old_sigaction *old_act = (void *)arg2;
            struct target_old_sigaction *old_oact = (void *)arg3;
            struct target_sigaction act, oact, *pact;
            if (old_act) {
                act._sa_handler = old_act->_sa_handler;
                target_siginitset(&act.sa_mask, old_act->sa_mask);
                act.sa_flags = old_act->sa_flags;
                act.sa_restorer = old_act->sa_restorer;
                pact = &act;
            } else {
                pact = NULL;
            }
            ret = get_errno(do_sigaction(arg1, pact, &oact));
            if (!is_error(ret) && old_oact) {
                old_oact->_sa_handler = oact._sa_handler;
                old_oact->sa_mask = oact.sa_mask.sig[0];
                old_oact->sa_flags = oact.sa_flags;
                old_oact->sa_restorer = oact.sa_restorer;
            }
1758 1759
        }
        break;
B
bellard 已提交
1760 1761 1762
    case TARGET_NR_rt_sigaction:
        ret = get_errno(do_sigaction(arg1, (void *)arg2, (void *)arg3));
        break;
1763
    case TARGET_NR_sgetmask:
B
bellard 已提交
1764 1765 1766 1767 1768 1769 1770 1771
        {
            sigset_t cur_set;
            target_ulong target_set;
            sigprocmask(0, NULL, &cur_set);
            host_to_target_old_sigset(&target_set, &cur_set);
            ret = target_set;
        }
        break;
1772
    case TARGET_NR_ssetmask:
B
bellard 已提交
1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920
        {
            sigset_t set, oset, cur_set;
            target_ulong target_set = arg1;
            sigprocmask(0, NULL, &cur_set);
            target_to_host_old_sigset(&set, &target_set);
            sigorset(&set, &set, &cur_set);
            sigprocmask(SIG_SETMASK, &set, &oset);
            host_to_target_old_sigset(&target_set, &oset);
            ret = target_set;
        }
        break;
    case TARGET_NR_sigprocmask:
        {
            int how = arg1;
            sigset_t set, oldset, *set_ptr;
            target_ulong *pset = (void *)arg2, *poldset = (void *)arg3;
            
            if (pset) {
                switch(how) {
                case TARGET_SIG_BLOCK:
                    how = SIG_BLOCK;
                    break;
                case TARGET_SIG_UNBLOCK:
                    how = SIG_UNBLOCK;
                    break;
                case TARGET_SIG_SETMASK:
                    how = SIG_SETMASK;
                    break;
                default:
                    ret = -EINVAL;
                    goto fail;
                }
                target_to_host_old_sigset(&set, pset);
                set_ptr = &set;
            } else {
                how = 0;
                set_ptr = NULL;
            }
            ret = get_errno(sigprocmask(arg1, set_ptr, &oldset));
            if (!is_error(ret) && poldset) {
                host_to_target_old_sigset(poldset, &oldset);
            }
        }
        break;
    case TARGET_NR_rt_sigprocmask:
        {
            int how = arg1;
            sigset_t set, oldset, *set_ptr;
            target_sigset_t *pset = (void *)arg2;
            target_sigset_t *poldset = (void *)arg3;
            
            if (pset) {
                switch(how) {
                case TARGET_SIG_BLOCK:
                    how = SIG_BLOCK;
                    break;
                case TARGET_SIG_UNBLOCK:
                    how = SIG_UNBLOCK;
                    break;
                case TARGET_SIG_SETMASK:
                    how = SIG_SETMASK;
                    break;
                default:
                    ret = -EINVAL;
                    goto fail;
                }
                target_to_host_sigset(&set, pset);
                set_ptr = &set;
            } else {
                how = 0;
                set_ptr = NULL;
            }
            ret = get_errno(sigprocmask(how, set_ptr, &oldset));
            if (!is_error(ret) && poldset) {
                host_to_target_sigset(poldset, &oldset);
            }
        }
        break;
    case TARGET_NR_sigpending:
        {
            sigset_t set;
            ret = get_errno(sigpending(&set));
            if (!is_error(ret)) {
                host_to_target_old_sigset((target_ulong *)arg1, &set);
            }
        }
        break;
    case TARGET_NR_rt_sigpending:
        {
            sigset_t set;
            ret = get_errno(sigpending(&set));
            if (!is_error(ret)) {
                host_to_target_sigset((target_sigset_t *)arg1, &set);
            }
        }
        break;
    case TARGET_NR_sigsuspend:
        {
            sigset_t set;
            target_to_host_old_sigset(&set, (target_ulong *)arg1);
            ret = get_errno(sigsuspend(&set));
        }
        break;
    case TARGET_NR_rt_sigsuspend:
        {
            sigset_t set;
            target_to_host_sigset(&set, (target_sigset_t *)arg1);
            ret = get_errno(sigsuspend(&set));
        }
        break;
    case TARGET_NR_rt_sigtimedwait:
        {
            target_sigset_t *target_set = (void *)arg1;
            target_siginfo_t *target_uinfo = (void *)arg2;
            struct target_timespec *target_uts = (void *)arg3;
            sigset_t set;
            struct timespec uts, *puts;
            siginfo_t uinfo;
            
            target_to_host_sigset(&set, target_set);
            if (target_uts) {
                puts = &uts;
                puts->tv_sec = tswapl(target_uts->tv_sec);
                puts->tv_nsec = tswapl(target_uts->tv_nsec);
            } else {
                puts = NULL;
            }
            ret = get_errno(sigtimedwait(&set, &uinfo, puts));
            if (!is_error(ret) && target_uinfo) {
                host_to_target_siginfo(target_uinfo, &uinfo);
            }
        }
        break;
    case TARGET_NR_rt_sigqueueinfo:
        {
            siginfo_t uinfo;
            target_to_host_siginfo(&uinfo, (target_siginfo_t *)arg3);
            ret = get_errno(sys_rt_sigqueueinfo(arg1, arg2, &uinfo));
        }
        break;
    case TARGET_NR_sigreturn:
        /* NOTE: ret is eax, so not transcoding must be done */
        ret = do_sigreturn(cpu_env);
        break;
    case TARGET_NR_rt_sigreturn:
        /* NOTE: ret is eax, so not transcoding must be done */
        ret = do_rt_sigreturn(cpu_env);
        break;
1921 1922 1923 1924
    case TARGET_NR_sethostname:
        ret = get_errno(sethostname((const char *)arg1, arg2));
        break;
    case TARGET_NR_setrlimit:
B
bellard 已提交
1925 1926 1927 1928 1929 1930 1931 1932 1933 1934
        {
            /* XXX: convert resource ? */
            int resource = arg1;
            struct target_rlimit *target_rlim = (void *)arg2;
            struct rlimit rlim;
            rlim.rlim_cur = tswapl(target_rlim->rlim_cur);
            rlim.rlim_max = tswapl(target_rlim->rlim_max);
            ret = get_errno(setrlimit(resource, &rlim));
        }
        break;
1935
    case TARGET_NR_getrlimit:
B
bellard 已提交
1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948
        {
            /* XXX: convert resource ? */
            int resource = arg1;
            struct target_rlimit *target_rlim = (void *)arg2;
            struct rlimit rlim;
            
            ret = get_errno(getrlimit(resource, &rlim));
            if (!is_error(ret)) {
                target_rlim->rlim_cur = tswapl(rlim.rlim_cur);
                target_rlim->rlim_max = tswapl(rlim.rlim_max);
            }
        }
        break;
1949
    case TARGET_NR_getrusage:
B
bellard 已提交
1950 1951 1952 1953 1954 1955 1956 1957 1958
        {
            struct rusage rusage;
            struct target_rusage *target_rusage = (void *)arg2;
            ret = get_errno(getrusage(arg1, &rusage));
            if (!is_error(ret)) {
                host_to_target_rusage(target_rusage, &rusage);
            }
        }
        break;
1959 1960 1961 1962 1963 1964
    case TARGET_NR_gettimeofday:
        {
            struct target_timeval *target_tv = (void *)arg1;
            struct timeval tv;
            ret = get_errno(gettimeofday(&tv, NULL));
            if (!is_error(ret)) {
B
bellard 已提交
1965
                host_to_target_timeval(target_tv, &tv);
1966 1967 1968 1969 1970 1971 1972
            }
        }
        break;
    case TARGET_NR_settimeofday:
        {
            struct target_timeval *target_tv = (void *)arg1;
            struct timeval tv;
B
bellard 已提交
1973
            target_to_host_timeval(&tv, target_tv);
1974 1975 1976 1977
            ret = get_errno(settimeofday(&tv, NULL));
        }
        break;
    case TARGET_NR_select:
B
bellard 已提交
1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988
        {
            struct target_sel_arg_struct *sel = (void *)arg1;
            sel->n = tswapl(sel->n);
            sel->inp = tswapl(sel->inp);
            sel->outp = tswapl(sel->outp);
            sel->exp = tswapl(sel->exp);
            sel->tvp = tswapl(sel->tvp);
            ret = do_select(sel->n, (void *)sel->inp, (void *)sel->outp,
                            (void *)sel->exp, (void *)sel->tvp);
        }
        break;
1989 1990 1991
    case TARGET_NR_symlink:
        ret = get_errno(symlink((const char *)arg1, (const char *)arg2));
        break;
1992
#ifdef TARGET_NR_oldlstat
1993 1994
    case TARGET_NR_oldlstat:
        goto unimplemented;
1995
#endif
1996
    case TARGET_NR_readlink:
1997
        ret = get_errno(readlink(path((const char *)arg1), (char *)arg2, arg3));
1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008
        break;
    case TARGET_NR_uselib:
        goto unimplemented;
    case TARGET_NR_swapon:
        ret = get_errno(swapon((const char *)arg1, arg2));
        break;
    case TARGET_NR_reboot:
        goto unimplemented;
    case TARGET_NR_readdir:
        goto unimplemented;
    case TARGET_NR_mmap:
B
bellard 已提交
2009
#if defined(TARGET_I386) || defined(TARGET_ARM)
2010 2011 2012 2013 2014 2015 2016 2017 2018
        {
            uint32_t v1, v2, v3, v4, v5, v6, *vptr;
            vptr = (uint32_t *)arg1;
            v1 = tswap32(vptr[0]);
            v2 = tswap32(vptr[1]);
            v3 = tswap32(vptr[2]);
            v4 = tswap32(vptr[3]);
            v5 = tswap32(vptr[4]);
            v6 = tswap32(vptr[5]);
B
bellard 已提交
2019 2020 2021
            ret = get_errno(target_mmap(v1, v2, v3, 
                                        target_to_host_bitmask(v4, mmap_flags_tbl),
                                        v5, v6));
2022 2023
        }
#else
B
bellard 已提交
2024 2025 2026 2027
        ret = get_errno(target_mmap(arg1, arg2, arg3, 
                                    target_to_host_bitmask(arg4, mmap_flags_tbl), 
                                    arg5,
                                    arg6));
2028
#endif
B
bellard 已提交
2029 2030
        break;
    case TARGET_NR_mmap2:
B
bellard 已提交
2031 2032 2033 2034 2035
#if defined(TARGET_SPARC)
#define MMAP_SHIFT 12
#else
#define MMAP_SHIFT TARGET_PAGE_BITS
#endif
B
bellard 已提交
2036 2037 2038
        ret = get_errno(target_mmap(arg1, arg2, arg3, 
                                    target_to_host_bitmask(arg4, mmap_flags_tbl), 
                                    arg5,
B
bellard 已提交
2039
                                    arg6 << MMAP_SHIFT));
2040 2041
        break;
    case TARGET_NR_munmap:
B
bellard 已提交
2042
        ret = get_errno(target_munmap(arg1, arg2));
2043
        break;
B
bellard 已提交
2044
    case TARGET_NR_mprotect:
B
bellard 已提交
2045
        ret = get_errno(target_mprotect(arg1, arg2, arg3));
B
bellard 已提交
2046 2047
        break;
    case TARGET_NR_mremap:
B
bellard 已提交
2048
        ret = get_errno(target_mremap(arg1, arg2, arg3, arg4, arg5));
B
bellard 已提交
2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064
        break;
    case TARGET_NR_msync:
        ret = get_errno(msync((void *)arg1, arg2, arg3));
        break;
    case TARGET_NR_mlock:
        ret = get_errno(mlock((void *)arg1, arg2));
        break;
    case TARGET_NR_munlock:
        ret = get_errno(munlock((void *)arg1, arg2));
        break;
    case TARGET_NR_mlockall:
        ret = get_errno(mlockall(arg1));
        break;
    case TARGET_NR_munlockall:
        ret = get_errno(munlockall());
        break;
2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079
    case TARGET_NR_truncate:
        ret = get_errno(truncate((const char *)arg1, arg2));
        break;
    case TARGET_NR_ftruncate:
        ret = get_errno(ftruncate(arg1, arg2));
        break;
    case TARGET_NR_fchmod:
        ret = get_errno(fchmod(arg1, arg2));
        break;
    case TARGET_NR_getpriority:
        ret = get_errno(getpriority(arg1, arg2));
        break;
    case TARGET_NR_setpriority:
        ret = get_errno(setpriority(arg1, arg2, arg3));
        break;
2080
#ifdef TARGET_NR_profil
2081 2082
    case TARGET_NR_profil:
        goto unimplemented;
2083
#endif
2084 2085
    case TARGET_NR_statfs:
        stfs = (void *)arg2;
2086
        ret = get_errno(sys_statfs(path((const char *)arg1), stfs));
2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104
    convert_statfs:
        if (!is_error(ret)) {
            tswap32s(&stfs->f_type);
            tswap32s(&stfs->f_bsize);
            tswap32s(&stfs->f_blocks);
            tswap32s(&stfs->f_bfree);
            tswap32s(&stfs->f_bavail);
            tswap32s(&stfs->f_files);
            tswap32s(&stfs->f_ffree);
            tswap32s(&stfs->f_fsid.val[0]);
            tswap32s(&stfs->f_fsid.val[1]);
            tswap32s(&stfs->f_namelen);
        }
        break;
    case TARGET_NR_fstatfs:
        stfs = (void *)arg2;
        ret = get_errno(sys_fstatfs(arg1, stfs));
        goto convert_statfs;
2105
#ifdef TARGET_NR_ioperm
2106 2107
    case TARGET_NR_ioperm:
        goto unimplemented;
2108
#endif
2109
    case TARGET_NR_socketcall:
B
bellard 已提交
2110
        ret = do_socketcall(arg1, (int32_t *)arg2);
2111 2112 2113 2114
        break;
    case TARGET_NR_syslog:
        goto unimplemented;
    case TARGET_NR_setitimer:
B
bellard 已提交
2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137
        {
            struct target_itimerval *target_value = (void *)arg2;
            struct target_itimerval *target_ovalue = (void *)arg3;
            struct itimerval value, ovalue, *pvalue;

            if (target_value) {
                pvalue = &value;
                target_to_host_timeval(&pvalue->it_interval, 
                                       &target_value->it_interval);
                target_to_host_timeval(&pvalue->it_value, 
                                       &target_value->it_value);
            } else {
                pvalue = NULL;
            }
            ret = get_errno(setitimer(arg1, pvalue, &ovalue));
            if (!is_error(ret) && target_ovalue) {
                host_to_target_timeval(&target_ovalue->it_interval, 
                                       &ovalue.it_interval);
                host_to_target_timeval(&target_ovalue->it_value, 
                                       &ovalue.it_value);
            }
        }
        break;
2138
    case TARGET_NR_getitimer:
B
bellard 已提交
2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151
        {
            struct target_itimerval *target_value = (void *)arg2;
            struct itimerval value;
            
            ret = get_errno(getitimer(arg1, &value));
            if (!is_error(ret) && target_value) {
                host_to_target_timeval(&target_value->it_interval, 
                                       &value.it_interval);
                host_to_target_timeval(&target_value->it_value, 
                                       &value.it_value);
            }
        }
        break;
2152
    case TARGET_NR_stat:
2153
        ret = get_errno(stat(path((const char *)arg1), &st));
2154 2155
        goto do_stat;
    case TARGET_NR_lstat:
2156
        ret = get_errno(lstat(path((const char *)arg1), &st));
2157 2158 2159 2160 2161 2162 2163 2164 2165
        goto do_stat;
    case TARGET_NR_fstat:
        {
            ret = get_errno(fstat(arg1, &st));
        do_stat:
            if (!is_error(ret)) {
                struct target_stat *target_st = (void *)arg2;
                target_st->st_dev = tswap16(st.st_dev);
                target_st->st_ino = tswapl(st.st_ino);
2166 2167 2168 2169 2170
#if defined(TARGET_PPC)
                target_st->st_mode = tswapl(st.st_mode); /* XXX: check this */
                target_st->st_uid = tswap32(st.st_uid);
                target_st->st_gid = tswap32(st.st_gid);
#else
2171
                target_st->st_mode = tswap16(st.st_mode);
2172 2173
                target_st->st_uid = tswap16(st.st_uid);
                target_st->st_gid = tswap16(st.st_gid);
2174 2175
#endif
                target_st->st_nlink = tswap16(st.st_nlink);
2176 2177 2178 2179
                target_st->st_rdev = tswap16(st.st_rdev);
                target_st->st_size = tswapl(st.st_size);
                target_st->st_blksize = tswapl(st.st_blksize);
                target_st->st_blocks = tswapl(st.st_blocks);
B
bellard 已提交
2180 2181 2182
                target_st->target_st_atime = tswapl(st.st_atime);
                target_st->target_st_mtime = tswapl(st.st_mtime);
                target_st->target_st_ctime = tswapl(st.st_ctime);
2183 2184 2185
            }
        }
        break;
2186
#ifdef TARGET_NR_olduname
2187 2188
    case TARGET_NR_olduname:
        goto unimplemented;
2189 2190
#endif
#ifdef TARGET_NR_iopl
2191 2192
    case TARGET_NR_iopl:
        goto unimplemented;
2193
#endif
2194 2195 2196
    case TARGET_NR_vhangup:
        ret = get_errno(vhangup());
        break;
2197
#ifdef TARGET_NR_idle
2198 2199
    case TARGET_NR_idle:
        goto unimplemented;
2200
#endif
2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215
    case TARGET_NR_wait4:
        {
            int status;
            target_long *status_ptr = (void *)arg2;
            struct rusage rusage, *rusage_ptr;
            struct target_rusage *target_rusage = (void *)arg4;
            if (target_rusage)
                rusage_ptr = &rusage;
            else
                rusage_ptr = NULL;
            ret = get_errno(wait4(arg1, &status, arg3, rusage_ptr));
            if (!is_error(ret)) {
                if (status_ptr)
                    *status_ptr = tswap32(status);
                if (target_rusage) {
B
bellard 已提交
2216
                    host_to_target_rusage(target_rusage, &rusage);
2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231
                }
            }
        }
        break;
    case TARGET_NR_swapoff:
        ret = get_errno(swapoff((const char *)arg1));
        break;
    case TARGET_NR_sysinfo:
        goto unimplemented;
    case TARGET_NR_ipc:
        goto unimplemented;
    case TARGET_NR_fsync:
        ret = get_errno(fsync(arg1));
        break;
    case TARGET_NR_clone:
B
bellard 已提交
2232 2233
        ret = get_errno(do_fork(cpu_env, arg1, arg2));
        break;
2234 2235 2236 2237 2238 2239
#ifdef __NR_exit_group
        /* new thread calls */
    case TARGET_NR_exit_group:
        ret = get_errno(exit_group(arg1));
        break;
#endif
2240 2241 2242 2243 2244 2245 2246
    case TARGET_NR_setdomainname:
        ret = get_errno(setdomainname((const char *)arg1, arg2));
        break;
    case TARGET_NR_uname:
        /* no need to transcode because we use the linux syscall */
        ret = get_errno(sys_uname((struct new_utsname *)arg1));
        break;
B
bellard 已提交
2247
#ifdef TARGET_I386
2248
    case TARGET_NR_modify_ldt:
B
bellard 已提交
2249 2250 2251 2252 2253 2254
        ret = get_errno(do_modify_ldt(cpu_env, arg1, (void *)arg2, arg3));
        break;
    case TARGET_NR_vm86old:
        goto unimplemented;
    case TARGET_NR_vm86:
        ret = do_vm86(cpu_env, arg1, (void *)arg2);
B
bellard 已提交
2255 2256
        break;
#endif
2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276
    case TARGET_NR_adjtimex:
        goto unimplemented;
    case TARGET_NR_create_module:
    case TARGET_NR_init_module:
    case TARGET_NR_delete_module:
    case TARGET_NR_get_kernel_syms:
        goto unimplemented;
    case TARGET_NR_quotactl:
        goto unimplemented;
    case TARGET_NR_getpgid:
        ret = get_errno(getpgid(arg1));
        break;
    case TARGET_NR_fchdir:
        ret = get_errno(fchdir(arg1));
        break;
    case TARGET_NR_bdflush:
        goto unimplemented;
    case TARGET_NR_sysfs:
        goto unimplemented;
    case TARGET_NR_personality:
B
bellard 已提交
2277
        ret = get_errno(personality(arg1));
2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290
        break;
    case TARGET_NR_afs_syscall:
        goto unimplemented;
    case TARGET_NR__llseek:
        {
            int64_t res;
            ret = get_errno(_llseek(arg1, arg2, arg3, &res, arg5));
            *(int64_t *)arg4 = tswap64(res);
        }
        break;
    case TARGET_NR_getdents:
#if TARGET_LONG_SIZE != 4
#error not supported
B
bellard 已提交
2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331
#elif TARGET_LONG_SIZE == 4 && HOST_LONG_SIZE == 8
        {
            struct target_dirent *target_dirp = (void *)arg2;
            struct dirent *dirp;
            long count = arg3;

	    dirp = malloc(count);
	    if (!dirp)
                return -ENOMEM;
            
            ret = get_errno(sys_getdents(arg1, dirp, count));
            if (!is_error(ret)) {
                struct dirent *de;
		struct target_dirent *tde;
                int len = ret;
                int reclen, treclen;
		int count1, tnamelen;

		count1 = 0;
                de = dirp;
		tde = target_dirp;
                while (len > 0) {
                    reclen = de->d_reclen;
		    treclen = reclen - (2 * (sizeof(long) - sizeof(target_long)));
                    tde->d_reclen = tswap16(treclen);
                    tde->d_ino = tswapl(de->d_ino);
                    tde->d_off = tswapl(de->d_off);
		    tnamelen = treclen - (2 * sizeof(target_long) + 2);
		    if (tnamelen > 256)
                        tnamelen = 256;
		    strncpy(tde->d_name, de->d_name, tnamelen);
                    de = (struct dirent *)((char *)de + reclen);
                    len -= reclen;
                    tde = (struct dirent *)((char *)tde + treclen);
		    count1 += treclen;
                }
		ret = count1;
            }
	    free(dirp);
        }
#else
2332 2333 2334
        {
            struct dirent *dirp = (void *)arg2;
            long count = arg3;
B
bellard 已提交
2335

B
bellard 已提交
2336
            ret = get_errno(sys_getdents(arg1, dirp, count));
2337 2338 2339 2340 2341 2342
            if (!is_error(ret)) {
                struct dirent *de;
                int len = ret;
                int reclen;
                de = dirp;
                while (len > 0) {
B
bellard 已提交
2343
                    reclen = de->d_reclen;
2344 2345
                    if (reclen > len)
                        break;
B
bellard 已提交
2346
                    de->d_reclen = tswap16(reclen);
2347 2348 2349 2350 2351 2352 2353
                    tswapls(&de->d_ino);
                    tswapls(&de->d_off);
                    de = (struct dirent *)((char *)de + reclen);
                    len -= reclen;
                }
            }
        }
B
bellard 已提交
2354
#endif
2355
        break;
B
bellard 已提交
2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366
    case TARGET_NR_getdents64:
        {
            struct dirent64 *dirp = (void *)arg2;
            long count = arg3;
            ret = get_errno(sys_getdents64(arg1, dirp, count));
            if (!is_error(ret)) {
                struct dirent64 *de;
                int len = ret;
                int reclen;
                de = dirp;
                while (len > 0) {
B
bellard 已提交
2367
                    reclen = de->d_reclen;
B
bellard 已提交
2368 2369
                    if (reclen > len)
                        break;
B
bellard 已提交
2370
                    de->d_reclen = tswap16(reclen);
B
bellard 已提交
2371 2372 2373 2374 2375 2376 2377 2378
                    tswap64s(&de->d_ino);
                    tswap64s(&de->d_off);
                    de = (struct dirent64 *)((char *)de + reclen);
                    len -= reclen;
                }
            }
        }
        break;
2379 2380 2381 2382
    case TARGET_NR__newselect:
        ret = do_select(arg1, (void *)arg2, (void *)arg3, (void *)arg4, 
                        (void *)arg5);
        break;
B
bellard 已提交
2383 2384 2385 2386 2387 2388
    case TARGET_NR_poll:
        {
            struct target_pollfd *target_pfd = (void *)arg1;
            unsigned int nfds = arg2;
            int timeout = arg3;
            struct pollfd *pfd;
B
bellard 已提交
2389
            unsigned int i;
B
bellard 已提交
2390 2391 2392

            pfd = alloca(sizeof(struct pollfd) * nfds);
            for(i = 0; i < nfds; i++) {
B
bellard 已提交
2393 2394
                pfd[i].fd = tswap32(target_pfd[i].fd);
                pfd[i].events = tswap16(target_pfd[i].events);
B
bellard 已提交
2395 2396 2397 2398
            }
            ret = get_errno(poll(pfd, nfds, timeout));
            if (!is_error(ret)) {
                for(i = 0; i < nfds; i++) {
B
bellard 已提交
2399
                    target_pfd[i].revents = tswap16(pfd[i].revents);
B
bellard 已提交
2400 2401 2402 2403
                }
            }
        }
        break;
2404
    case TARGET_NR_flock:
B
bellard 已提交
2405 2406 2407
        /* NOTE: the flock constant seems to be the same for every
           Linux platform */
        ret = get_errno(flock(arg1, arg2));
2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442
        break;
    case TARGET_NR_readv:
        {
            int count = arg3;
            int i;
            struct iovec *vec;
            struct target_iovec *target_vec = (void *)arg2;

            vec = alloca(count * sizeof(struct iovec));
            for(i = 0;i < count; i++) {
                vec[i].iov_base = (void *)tswapl(target_vec[i].iov_base);
                vec[i].iov_len = tswapl(target_vec[i].iov_len);
            }
            ret = get_errno(readv(arg1, vec, count));
        }
        break;
    case TARGET_NR_writev:
        {
            int count = arg3;
            int i;
            struct iovec *vec;
            struct target_iovec *target_vec = (void *)arg2;

            vec = alloca(count * sizeof(struct iovec));
            for(i = 0;i < count; i++) {
                vec[i].iov_base = (void *)tswapl(target_vec[i].iov_base);
                vec[i].iov_len = tswapl(target_vec[i].iov_len);
            }
            ret = get_errno(writev(arg1, vec, count));
        }
        break;
    case TARGET_NR_getsid:
        ret = get_errno(getsid(arg1));
        break;
    case TARGET_NR_fdatasync:
B
bellard 已提交
2443 2444
        ret = get_errno(fdatasync(arg1));
        break;
2445 2446 2447
    case TARGET_NR__sysctl:
        goto unimplemented;
    case TARGET_NR_sched_setparam:
B
bellard 已提交
2448 2449 2450 2451 2452 2453 2454
        {
            struct sched_param *target_schp = (void *)arg2;
            struct sched_param schp;
            schp.sched_priority = tswap32(target_schp->sched_priority);
            ret = get_errno(sched_setparam(arg1, &schp));
        }
        break;
2455
    case TARGET_NR_sched_getparam:
B
bellard 已提交
2456 2457 2458 2459 2460 2461 2462 2463 2464
        {
            struct sched_param *target_schp = (void *)arg2;
            struct sched_param schp;
            ret = get_errno(sched_getparam(arg1, &schp));
            if (!is_error(ret)) {
                target_schp->sched_priority = tswap32(schp.sched_priority);
            }
        }
        break;
2465
    case TARGET_NR_sched_setscheduler:
B
bellard 已提交
2466 2467 2468 2469 2470 2471 2472
        {
            struct sched_param *target_schp = (void *)arg3;
            struct sched_param schp;
            schp.sched_priority = tswap32(target_schp->sched_priority);
            ret = get_errno(sched_setscheduler(arg1, arg2, &schp));
        }
        break;
2473
    case TARGET_NR_sched_getscheduler:
B
bellard 已提交
2474 2475
        ret = get_errno(sched_getscheduler(arg1));
        break;
2476 2477 2478 2479
    case TARGET_NR_sched_yield:
        ret = get_errno(sched_yield());
        break;
    case TARGET_NR_sched_get_priority_max:
B
bellard 已提交
2480 2481
        ret = get_errno(sched_get_priority_max(arg1));
        break;
2482
    case TARGET_NR_sched_get_priority_min:
B
bellard 已提交
2483 2484
        ret = get_errno(sched_get_priority_min(arg1));
        break;
2485
    case TARGET_NR_sched_rr_get_interval:
B
bellard 已提交
2486 2487 2488 2489 2490 2491 2492 2493 2494 2495
        {
            struct target_timespec *target_ts = (void *)arg2;
            struct timespec ts;
            ret = get_errno(sched_rr_get_interval(arg1, &ts));
            if (!is_error(ret)) {
                target_ts->tv_sec = tswapl(ts.tv_sec);
                target_ts->tv_nsec = tswapl(ts.tv_nsec);
            }
        }
        break;
2496
    case TARGET_NR_nanosleep:
B
bellard 已提交
2497 2498 2499 2500 2501 2502 2503
        {
            struct target_timespec *target_req = (void *)arg1;
            struct target_timespec *target_rem = (void *)arg2;
            struct timespec req, rem;
            req.tv_sec = tswapl(target_req->tv_sec);
            req.tv_nsec = tswapl(target_req->tv_nsec);
            ret = get_errno(nanosleep(&req, &rem));
2504
            if (is_error(ret) && target_rem) {
B
bellard 已提交
2505 2506 2507 2508 2509
                target_rem->tv_sec = tswapl(rem.tv_sec);
                target_rem->tv_nsec = tswapl(rem.tv_nsec);
            }
        }
        break;
2510
    case TARGET_NR_query_module:
B
bellard 已提交
2511
        goto unimplemented;
2512
    case TARGET_NR_nfsservctl:
B
bellard 已提交
2513
        goto unimplemented;
2514
    case TARGET_NR_prctl:
B
bellard 已提交
2515
        goto unimplemented;
2516
#ifdef TARGET_NR_pread
2517
    case TARGET_NR_pread:
2518 2519 2520
        page_unprotect_range((void *)arg2, arg3);
        ret = get_errno(pread(arg1, (void *)arg2, arg3, arg4));
        break;
2521
    case TARGET_NR_pwrite:
2522 2523
        ret = get_errno(pwrite(arg1, (void *)arg2, arg3, arg4));
        break;
2524
#endif
2525
    case TARGET_NR_getcwd:
B
bellard 已提交
2526
        ret = get_errno(sys_getcwd1((char *)arg1, arg2));
2527 2528
        break;
    case TARGET_NR_capget:
B
bellard 已提交
2529
        goto unimplemented;
2530
    case TARGET_NR_capset:
B
bellard 已提交
2531
        goto unimplemented;
2532
    case TARGET_NR_sigaltstack:
B
bellard 已提交
2533
        goto unimplemented;
2534
    case TARGET_NR_sendfile:
B
bellard 已提交
2535
        goto unimplemented;
2536
#ifdef TARGET_NR_getpmsg
2537
    case TARGET_NR_getpmsg:
B
bellard 已提交
2538
        goto unimplemented;
2539 2540
#endif
#ifdef TARGET_NR_putpmsg
2541
    case TARGET_NR_putpmsg:
B
bellard 已提交
2542
        goto unimplemented;
2543
#endif
2544
    case TARGET_NR_vfork:
B
bellard 已提交
2545
        ret = get_errno(do_fork(cpu_env, CLONE_VFORK | CLONE_VM | SIGCHLD, 0));
2546
        break;
2547
#ifdef TARGET_NR_ugetrlimit
2548
    case TARGET_NR_ugetrlimit:
B
bellard 已提交
2549 2550 2551 2552 2553 2554 2555 2556 2557 2558
    {
	struct rlimit rlim;
	ret = get_errno(getrlimit(arg1, &rlim));
	if (!is_error(ret)) {
	    struct target_rlimit *target_rlim = (void *)arg2;
	    target_rlim->rlim_cur = tswapl(rlim.rlim_cur);
	    target_rlim->rlim_max = tswapl(rlim.rlim_max);
	}
	break;
    }
2559
#endif
2560
    case TARGET_NR_truncate64:
B
bellard 已提交
2561
        goto unimplemented;
2562
    case TARGET_NR_ftruncate64:
B
bellard 已提交
2563
        goto unimplemented;
2564
    case TARGET_NR_stat64:
2565
        ret = get_errno(stat(path((const char *)arg1), &st));
B
bellard 已提交
2566
        goto do_stat64;
2567
    case TARGET_NR_lstat64:
2568
        ret = get_errno(lstat(path((const char *)arg1), &st));
B
bellard 已提交
2569
        goto do_stat64;
2570
    case TARGET_NR_fstat64:
B
bellard 已提交
2571 2572 2573 2574 2575
        {
            ret = get_errno(fstat(arg1, &st));
        do_stat64:
            if (!is_error(ret)) {
                struct target_stat64 *target_st = (void *)arg2;
2576
                memset(target_st, 0, sizeof(struct target_stat64));
B
bellard 已提交
2577 2578
                put_user(st.st_dev, &target_st->st_dev);
                put_user(st.st_ino, &target_st->st_ino);
2579
#ifdef TARGET_STAT64_HAS_BROKEN_ST_INO
B
bellard 已提交
2580
                put_user(st.st_ino, &target_st->__st_ino);
2581
#endif
B
bellard 已提交
2582 2583 2584 2585 2586
                put_user(st.st_mode, &target_st->st_mode);
                put_user(st.st_nlink, &target_st->st_nlink);
                put_user(st.st_uid, &target_st->st_uid);
                put_user(st.st_gid, &target_st->st_gid);
                put_user(st.st_rdev, &target_st->st_rdev);
B
bellard 已提交
2587
                /* XXX: better use of kernel struct */
B
bellard 已提交
2588 2589 2590 2591 2592 2593
                put_user(st.st_size, &target_st->st_size);
                put_user(st.st_blksize, &target_st->st_blksize);
                put_user(st.st_blocks, &target_st->st_blocks);
                put_user(st.st_atime, &target_st->target_st_atime);
                put_user(st.st_mtime, &target_st->target_st_mtime);
                put_user(st.st_ctime, &target_st->target_st_ctime);
B
bellard 已提交
2594 2595 2596 2597
            }
        }
        break;

2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707
#ifdef USE_UID16
    case TARGET_NR_lchown:
        ret = get_errno(lchown((const char *)arg1, low2highuid(arg2), low2highgid(arg3)));
        break;
    case TARGET_NR_getuid:
        ret = get_errno(high2lowuid(getuid()));
        break;
    case TARGET_NR_getgid:
        ret = get_errno(high2lowgid(getgid()));
        break;
    case TARGET_NR_geteuid:
        ret = get_errno(high2lowuid(geteuid()));
        break;
    case TARGET_NR_getegid:
        ret = get_errno(high2lowgid(getegid()));
        break;
    case TARGET_NR_setreuid:
        ret = get_errno(setreuid(low2highuid(arg1), low2highuid(arg2)));
        break;
    case TARGET_NR_setregid:
        ret = get_errno(setregid(low2highgid(arg1), low2highgid(arg2)));
        break;
    case TARGET_NR_getgroups:
        {
            int gidsetsize = arg1;
            uint16_t *target_grouplist = (void *)arg2;
            gid_t *grouplist;
            int i;

            grouplist = alloca(gidsetsize * sizeof(gid_t));
            ret = get_errno(getgroups(gidsetsize, grouplist));
            if (!is_error(ret)) {
                for(i = 0;i < gidsetsize; i++)
                    target_grouplist[i] = tswap16(grouplist[i]);
            }
        }
        break;
    case TARGET_NR_setgroups:
        {
            int gidsetsize = arg1;
            uint16_t *target_grouplist = (void *)arg2;
            gid_t *grouplist;
            int i;

            grouplist = alloca(gidsetsize * sizeof(gid_t));
            for(i = 0;i < gidsetsize; i++)
                grouplist[i] = tswap16(target_grouplist[i]);
            ret = get_errno(setgroups(gidsetsize, grouplist));
        }
        break;
    case TARGET_NR_fchown:
        ret = get_errno(fchown(arg1, low2highuid(arg2), low2highgid(arg3)));
        break;
#ifdef TARGET_NR_setresuid
    case TARGET_NR_setresuid:
        ret = get_errno(setresuid(low2highuid(arg1), 
                                  low2highuid(arg2), 
                                  low2highuid(arg3)));
        break;
#endif
#ifdef TARGET_NR_getresuid
    case TARGET_NR_getresuid:
        {
            int ruid, euid, suid;
            ret = get_errno(getresuid(&ruid, &euid, &suid));
            if (!is_error(ret)) {
                *(uint16_t *)arg1 = tswap16(high2lowuid(ruid));
                *(uint16_t *)arg2 = tswap16(high2lowuid(euid));
                *(uint16_t *)arg3 = tswap16(high2lowuid(suid));
            }
        }
        break;
#endif
#ifdef TARGET_NR_getresgid
    case TARGET_NR_setresgid:
        ret = get_errno(setresgid(low2highgid(arg1), 
                                  low2highgid(arg2), 
                                  low2highgid(arg3)));
        break;
#endif
#ifdef TARGET_NR_getresgid
    case TARGET_NR_getresgid:
        {
            int rgid, egid, sgid;
            ret = get_errno(getresgid(&rgid, &egid, &sgid));
            if (!is_error(ret)) {
                *(uint16_t *)arg1 = tswap16(high2lowgid(rgid));
                *(uint16_t *)arg2 = tswap16(high2lowgid(egid));
                *(uint16_t *)arg3 = tswap16(high2lowgid(sgid));
            }
        }
        break;
#endif
    case TARGET_NR_chown:
        ret = get_errno(chown((const char *)arg1, low2highuid(arg2), low2highgid(arg3)));
        break;
    case TARGET_NR_setuid:
        ret = get_errno(setuid(low2highuid(arg1)));
        break;
    case TARGET_NR_setgid:
        ret = get_errno(setgid(low2highgid(arg1)));
        break;
    case TARGET_NR_setfsuid:
        ret = get_errno(setfsuid(arg1));
        break;
    case TARGET_NR_setfsgid:
        ret = get_errno(setfsgid(arg1));
        break;
#endif /* USE_UID16 */

2708
    case TARGET_NR_lchown32:
B
bellard 已提交
2709 2710
        ret = get_errno(lchown((const char *)arg1, arg2, arg3));
        break;
2711
    case TARGET_NR_getuid32:
B
bellard 已提交
2712 2713
        ret = get_errno(getuid());
        break;
2714
    case TARGET_NR_getgid32:
B
bellard 已提交
2715 2716
        ret = get_errno(getgid());
        break;
2717
    case TARGET_NR_geteuid32:
B
bellard 已提交
2718 2719
        ret = get_errno(geteuid());
        break;
2720
    case TARGET_NR_getegid32:
B
bellard 已提交
2721 2722
        ret = get_errno(getegid());
        break;
2723
    case TARGET_NR_setreuid32:
B
bellard 已提交
2724 2725
        ret = get_errno(setreuid(arg1, arg2));
        break;
2726
    case TARGET_NR_setregid32:
B
bellard 已提交
2727 2728
        ret = get_errno(setregid(arg1, arg2));
        break;
2729
    case TARGET_NR_getgroups32:
B
bellard 已提交
2730
        goto unimplemented;
2731
    case TARGET_NR_setgroups32:
B
bellard 已提交
2732
        goto unimplemented;
2733
    case TARGET_NR_fchown32:
B
bellard 已提交
2734 2735
        ret = get_errno(fchown(arg1, arg2, arg3));
        break;
2736
    case TARGET_NR_setresuid32:
B
bellard 已提交
2737 2738
        ret = get_errno(setresuid(arg1, arg2, arg3));
        break;
2739
    case TARGET_NR_getresuid32:
B
bellard 已提交
2740 2741 2742 2743 2744 2745 2746 2747 2748 2749
        {
            int ruid, euid, suid;
            ret = get_errno(getresuid(&ruid, &euid, &suid));
            if (!is_error(ret)) {
                *(uint32_t *)arg1 = tswap32(ruid);
                *(uint32_t *)arg2 = tswap32(euid);
                *(uint32_t *)arg3 = tswap32(suid);
            }
        }
        break;
2750
    case TARGET_NR_setresgid32:
B
bellard 已提交
2751 2752
        ret = get_errno(setresgid(arg1, arg2, arg3));
        break;
2753
    case TARGET_NR_getresgid32:
B
bellard 已提交
2754 2755 2756 2757 2758 2759 2760 2761 2762 2763
        {
            int rgid, egid, sgid;
            ret = get_errno(getresgid(&rgid, &egid, &sgid));
            if (!is_error(ret)) {
                *(uint32_t *)arg1 = tswap32(rgid);
                *(uint32_t *)arg2 = tswap32(egid);
                *(uint32_t *)arg3 = tswap32(sgid);
            }
        }
        break;
2764
    case TARGET_NR_chown32:
B
bellard 已提交
2765 2766
        ret = get_errno(chown((const char *)arg1, arg2, arg3));
        break;
2767
    case TARGET_NR_setuid32:
B
bellard 已提交
2768 2769
        ret = get_errno(setuid(arg1));
        break;
2770
    case TARGET_NR_setgid32:
B
bellard 已提交
2771 2772
        ret = get_errno(setgid(arg1));
        break;
2773
    case TARGET_NR_setfsuid32:
B
bellard 已提交
2774 2775
        ret = get_errno(setfsuid(arg1));
        break;
2776
    case TARGET_NR_setfsgid32:
B
bellard 已提交
2777 2778
        ret = get_errno(setfsgid(arg1));
        break;
2779

2780
    case TARGET_NR_pivot_root:
B
bellard 已提交
2781
        goto unimplemented;
B
bellard 已提交
2782
#ifdef TARGET_NR_mincore
2783
    case TARGET_NR_mincore:
B
bellard 已提交
2784
        goto unimplemented;
B
bellard 已提交
2785 2786
#endif
#ifdef TARGET_NR_madvise
2787
    case TARGET_NR_madvise:
B
bellard 已提交
2788
        goto unimplemented;
B
bellard 已提交
2789
#endif
B
bellard 已提交
2790
#if TARGET_LONG_BITS == 32
2791
    case TARGET_NR_fcntl64:
B
bellard 已提交
2792 2793 2794 2795
    {
	struct flock64 fl;
	struct target_flock64 *target_fl = (void *)arg3;

B
bellard 已提交
2796 2797
        switch(arg2) {
        case F_GETLK64:
B
bellard 已提交
2798 2799 2800 2801 2802 2803 2804 2805 2806 2807
            ret = get_errno(fcntl(arg1, arg2, &fl));
	    if (ret == 0) {
		target_fl->l_type = tswap16(fl.l_type);
		target_fl->l_whence = tswap16(fl.l_whence);
		target_fl->l_start = tswap64(fl.l_start);
		target_fl->l_len = tswap64(fl.l_len);
		target_fl->l_pid = tswapl(fl.l_pid);
	    }
	    break;

B
bellard 已提交
2808 2809
        case F_SETLK64:
        case F_SETLKW64:
B
bellard 已提交
2810 2811 2812 2813 2814 2815 2816
	    fl.l_type = tswap16(target_fl->l_type);
	    fl.l_whence = tswap16(target_fl->l_whence);
	    fl.l_start = tswap64(target_fl->l_start);
	    fl.l_len = tswap64(target_fl->l_len);
	    fl.l_pid = tswapl(target_fl->l_pid);
            ret = get_errno(fcntl(arg1, arg2, &fl));
	    break;
B
bellard 已提交
2817
        default:
B
bellard 已提交
2818
            ret = get_errno(do_fcntl(arg1, arg2, arg3));
B
bellard 已提交
2819 2820
            break;
        }
B
bellard 已提交
2821 2822
	break;
    }
B
bellard 已提交
2823
#endif
2824
#ifdef TARGET_NR_security
2825 2826
    case TARGET_NR_security:
        goto unimplemented;
B
bellard 已提交
2827 2828 2829 2830 2831
#endif
#ifdef TARGET_NR_getpagesize
    case TARGET_NR_getpagesize:
        ret = TARGET_PAGE_SIZE;
        break;
2832
#endif
2833 2834 2835 2836
    case TARGET_NR_gettid:
        ret = get_errno(gettid());
        break;
    case TARGET_NR_readahead:
B
bellard 已提交
2837
        goto unimplemented;
2838
#ifdef TARGET_NR_setxattr
2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850
    case TARGET_NR_setxattr:
    case TARGET_NR_lsetxattr:
    case TARGET_NR_fsetxattr:
    case TARGET_NR_getxattr:
    case TARGET_NR_lgetxattr:
    case TARGET_NR_fgetxattr:
    case TARGET_NR_listxattr:
    case TARGET_NR_llistxattr:
    case TARGET_NR_flistxattr:
    case TARGET_NR_removexattr:
    case TARGET_NR_lremovexattr:
    case TARGET_NR_fremovexattr:
B
bellard 已提交
2851
        goto unimplemented_nowarn;
2852 2853
#endif
#ifdef TARGET_NR_set_thread_area
B
bellard 已提交
2854 2855 2856
    case TARGET_NR_set_thread_area:
    case TARGET_NR_get_thread_area:
        goto unimplemented_nowarn;
2857
#endif
2858 2859
    default:
    unimplemented:
B
bellard 已提交
2860 2861
        gemu_log("qemu: Unsupported syscall: %d\n", num);
    unimplemented_nowarn:
2862 2863 2864 2865
        ret = -ENOSYS;
        break;
    }
 fail:
B
bellard 已提交
2866 2867 2868
#ifdef DEBUG
    gemu_log(" = %ld\n", ret);
#endif
2869 2870 2871
    return ret;
}