mes/lib/linux/x86_64-mes-mescc/syscall.c
Jan (janneke) Nieuwenhuizen e16d1e469a
mescc: Mes C Library: x86_64: Introduce __sys_call and friends.
This prepares for x86_64 syscall-internal.

* lib/linux/x86_64-mes-gcc/syscall.c (__sys_call, __sys_call1,
__sys_call2, __sys_call3, __sys_call4): New functions, copied from ...
(_sys_call, _sys_call1, _sys_call2, _sys_call3, _sys_call4): ... these.
Use them, handle errno only.
2020-10-06 10:05:33 +02:00

173 lines
3.7 KiB
C

/* -*-comment-start: "//";comment-end:""-*-
* GNU Mes --- Maxwell Equations of Software
* Copyright © 2016,2017,2018,2020 Jan (janneke) Nieuwenhuizen <janneke@gnu.org>
*
* This file is part of GNU Mes.
*
* GNU Mes 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 3 of the License, or (at
* your option) any later version.
*
* GNU Mes 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 GNU Mes. If not, see <http://www.gnu.org/licenses/>.
*/
#include <errno.h>
#include <linux/x86_64/syscall.h>
long
__sys_call (long sys_call)
{
#if 0 // !MES_CCAMD64
asm ("mov____0x8(%rbp),%rdi !0x10");
#else
asm ("mov____0x8(%rbp),%rax !0x10");
#endif
asm ("syscall");
}
long
__sys_call1 (long sys_call, long one)
{
#if 0 // !MES_CCAMD64
asm ("mov____0x8(%rbp),%rdi !0x10");
asm ("mov____0x8(%rbp),%rsi !0x18");
#else
asm ("mov____0x8(%rbp),%rax !0x10");
asm ("mov____0x8(%rbp),%rdi !0x18");
#endif
asm ("syscall");
}
long
__sys_call2 (long sys_call, long one, long two)
{
#if 0 // !MES_CCAMD64
asm ("mov____0x8(%rbp),%rdi !0x10");
asm ("mov____0x8(%rbp),%rsi !0x18");
asm ("mov____0x8(%rbp),%rdx !0x20");
#else
asm ("mov____0x8(%rbp),%rax !0x10");
asm ("mov____0x8(%rbp),%rdi !0x18");
asm ("mov____0x8(%rbp),%rsi !0x20");
#endif
asm ("syscall");
}
long
__sys_call3 (long sys_call, long one, long two, long three)
{
#if 0 // !MES_CCAMD64
asm ("mov____0x8(%rbp),%rdi !0x10");
asm ("mov____0x8(%rbp),%rsi !0x18");
asm ("mov____0x8(%rbp),%rdx !0x20");
asm ("mov____0x8(%rbp),%rdx !0x28");
#else
asm ("mov____0x8(%rbp),%rax !0x10");
asm ("mov____0x8(%rbp),%rdi !0x18");
asm ("mov____0x8(%rbp),%rsi !0x20");
asm ("mov____0x8(%rbp),%rdx !0x28");
#endif
asm ("syscall");
}
long
__sys_call4 (long sys_call, long one, long two, long three, long four)
{
#if 0 // !MES_CCAMD64
asm ("mov____0x8(%rbp),%rdi !0x10");
asm ("mov____0x8(%rbp),%rsi !0x18");
asm ("mov____0x8(%rbp),%rdx !0x20");
asm ("mov____0x8(%rbp),%rdx !0x28");
asm ("mov____0x8(%rbp),%r10 !0x30");
#else
asm ("mov____0x8(%rbp),%rax !0x10");
asm ("mov____0x8(%rbp),%rdi !0x18");
asm ("mov____0x8(%rbp),%rsi !0x20");
asm ("mov____0x8(%rbp),%rdx !0x28");
asm ("mov____0x8(%rbp),%r10 !0x30");
#endif
asm ("syscall");
}
long
_sys_call (long sys_call)
{
long r = __sys_call (sys_call);
if (r < 0)
{
errno = -r;
r = -1;
}
else
errno = 0;
return r;
}
long
_sys_call1 (long sys_call, long one)
{
long r = __sys_call1 (sys_call, one);
if (r < 0)
{
errno = -r;
r = -1;
}
else
errno = 0;
return r;
}
long
_sys_call2 (long sys_call, long one, long two)
{
long r = __sys_call2 (sys_call, one, two);
if (r < 0)
{
errno = -r;
r = -1;
}
else
errno = 0;
return r;
}
long
_sys_call3 (long sys_call, long one, long two, long three)
{
long r = __sys_call3 (sys_call, one, two, three);
if (r < 0)
{
errno = -r;
r = -1;
}
else
errno = 0;
return r;
}
long
_sys_call4 (long sys_call, long one, long two, long three, long four)
{
long r = __sys_call4 (sys_call, one, two, three, four);
if (r < 0)
{
errno = -r;
r = -1;
}
else
errno = 0;
return r;
}