#include <assert.h>
#include "strfile.h"
#include "libioP.h"
#include <string.h>
#include <wchar.h>
#include <stdio_ext.h>
void
_IO_wstr_init_static (fp, ptr, size, pstart)
_IO_FILE *fp;
wchar_t *ptr;
_IO_size_t size;
wchar_t *pstart;
{
wchar_t *end;
if (size == 0)
end = ptr + __wcslen (ptr);
else if ((_IO_size_t) ptr + size * sizeof (wchar_t) > (_IO_size_t) ptr)
end = ptr + size;
else
end = ptr + (-1 - (_IO_size_t) ptr) / sizeof (wchar_t);
_IO_wsetb (fp, ptr, end, 0);
fp->_wide_data->_IO_write_base = ptr;
fp->_wide_data->_IO_read_base = ptr;
fp->_wide_data->_IO_read_ptr = ptr;
if (pstart)
{
fp->_wide_data->_IO_write_ptr = pstart;
fp->_wide_data->_IO_write_end = end;
fp->_wide_data->_IO_read_end = pstart;
}
else
{
fp->_wide_data->_IO_write_ptr = ptr;
fp->_wide_data->_IO_write_end = ptr;
fp->_wide_data->_IO_read_end = end;
}
(((_IO_strfile *) fp)->_s._allocate_buffer) = (_IO_alloc_type)0;
}
_IO_wint_t
_IO_wstr_overflow (fp, c)
_IO_FILE *fp;
_IO_wint_t c;
{
int flush_only = c == WEOF;
_IO_size_t pos;
if (fp->_flags & _IO_NO_WRITES)
return flush_only ? 0 : WEOF;
if ((fp->_flags & _IO_TIED_PUT_GET) && !(fp->_flags & _IO_CURRENTLY_PUTTING))
{
fp->_flags |= _IO_CURRENTLY_PUTTING;
fp->_wide_data->_IO_write_ptr = fp->_wide_data->_IO_read_ptr;
fp->_wide_data->_IO_read_ptr = fp->_wide_data->_IO_read_end;
}
pos = fp->_wide_data->_IO_write_ptr - fp->_wide_data->_IO_write_base;
if (pos >= (_IO_size_t) (_IO_wblen (fp) + flush_only))
{
if (fp->_flags2 & _IO_FLAGS2_USER_WBUF)
return WEOF;
else
{
wchar_t *new_buf;
wchar_t *old_buf = fp->_wide_data->_IO_buf_base;
size_t old_wblen = _IO_wblen (fp);
_IO_size_t new_size = 2 * old_wblen + 100;
if (new_size < old_wblen)
return EOF;
new_buf
= (wchar_t *) (*((_IO_strfile *) fp)->_s._allocate_buffer) (new_size
* sizeof (wchar_t));
if (new_buf == NULL)
{
return WEOF;
}
if (old_buf)
{
__wmemcpy (new_buf, old_buf, old_wblen);
(*((_IO_strfile *) fp)->_s._free_buffer) (old_buf);
fp->_wide_data->_IO_buf_base = NULL;
}
wmemset (new_buf + old_wblen, L'\0', new_size - old_wblen);
_IO_wsetb (fp, new_buf, new_buf + new_size, 1);
fp->_wide_data->_IO_read_base =
new_buf + (fp->_wide_data->_IO_read_base - old_buf);
fp->_wide_data->_IO_read_ptr =
new_buf + (fp->_wide_data->_IO_read_ptr - old_buf);
fp->_wide_data->_IO_read_end =
new_buf + (fp->_wide_data->_IO_read_end - old_buf);
fp->_wide_data->_IO_write_ptr =
new_buf + (fp->_wide_data->_IO_write_ptr - old_buf);
fp->_wide_data->_IO_write_base = new_buf;
fp->_wide_data->_IO_write_end = fp->_wide_data->_IO_buf_end;
}
}
if (!flush_only)
*fp->_wide_data->_IO_write_ptr++ = c;
if (fp->_wide_data->_IO_write_ptr > fp->_wide_data->_IO_read_end)
fp->_wide_data->_IO_read_end = fp->_wide_data->_IO_write_ptr;
return c;
}
_IO_wint_t
_IO_wstr_underflow (fp)
_IO_FILE *fp;
{
if (fp->_wide_data->_IO_write_ptr > fp->_wide_data->_IO_read_end)
fp->_wide_data->_IO_read_end = fp->_wide_data->_IO_write_ptr;
if ((fp->_flags & _IO_TIED_PUT_GET) && (fp->_flags & _IO_CURRENTLY_PUTTING))
{
fp->_flags &= ~_IO_CURRENTLY_PUTTING;
fp->_wide_data->_IO_read_ptr = fp->_wide_data->_IO_write_ptr;
fp->_wide_data->_IO_write_ptr = fp->_wide_data->_IO_write_end;
}
if (fp->_wide_data->_IO_read_ptr < fp->_wide_data->_IO_read_end)
return *fp->_wide_data->_IO_read_ptr;
else
return WEOF;
}
_IO_ssize_t
_IO_wstr_count (fp)
_IO_FILE *fp;
{
struct _IO_wide_data *wd = fp->_wide_data;
return ((wd->_IO_write_ptr > wd->_IO_read_end
? wd->_IO_write_ptr : wd->_IO_read_end)
- wd->_IO_read_base);
}
static int
enlarge_userbuf (_IO_FILE *fp, _IO_off64_t offset, int reading)
{
struct _IO_wide_data *wd;
_IO_ssize_t oldend;
_IO_size_t newsize;
wchar_t *oldbuf, *newbuf;
if ((_IO_ssize_t) offset <= _IO_blen (fp))
return 0;
wd = fp->_wide_data;
oldend = wd->_IO_write_end - wd->_IO_write_base;
if (fp->_flags2 & _IO_FLAGS2_USER_WBUF)
return 1;
newsize = offset + 100;
oldbuf = wd->_IO_buf_base;
newbuf
= (wchar_t *) (*((_IO_strfile *) fp)->_s._allocate_buffer) (newsize
* sizeof (wchar_t));
if (newbuf == NULL)
return 1;
if (oldbuf != NULL)
{
__wmemcpy (newbuf, oldbuf, _IO_wblen (fp));
(*((_IO_strfile *) fp)->_s._free_buffer) (oldbuf);
wd->_IO_buf_base = NULL;
}
_IO_wsetb (fp, newbuf, newbuf + newsize, 1);
if (reading)
{
wd->_IO_write_base = newbuf + (wd->_IO_write_base - oldbuf);
wd->_IO_write_ptr = newbuf + (wd->_IO_write_ptr - oldbuf);
wd->_IO_write_end = newbuf + (wd->_IO_write_end - oldbuf);
wd->_IO_read_ptr = newbuf + (wd->_IO_read_ptr - oldbuf);
wd->_IO_read_base = newbuf;
wd->_IO_read_end = wd->_IO_buf_end;
}
else
{
wd->_IO_read_base = newbuf + (wd->_IO_read_base - oldbuf);
wd->_IO_read_ptr = newbuf + (wd->_IO_read_ptr - oldbuf);
wd->_IO_read_end = newbuf + (wd->_IO_read_end - oldbuf);
wd->_IO_write_ptr = newbuf + (wd->_IO_write_ptr - oldbuf);
wd->_IO_write_base = newbuf;
wd->_IO_write_end = wd->_IO_buf_end;
}
assert (offset >= oldend);
if (reading)
wmemset (wd->_IO_read_base + oldend, L'\0', offset - oldend);
else
wmemset (wd->_IO_write_base + oldend, L'\0', offset - oldend);
return 0;
}
_IO_off64_t
_IO_wstr_seekoff (fp, offset, dir, mode)
_IO_FILE *fp;
_IO_off64_t offset;
int dir;
int mode;
{
_IO_off64_t new_pos;
if (mode == 0 && (fp->_flags & _IO_TIED_PUT_GET))
mode = (fp->_flags & _IO_CURRENTLY_PUTTING ? _IOS_OUTPUT : _IOS_INPUT);
if (mode == 0)
{
if (fp->_IO_file_flags & _IO_NO_WRITES)
new_pos = fp->_wide_data->_IO_read_ptr - fp->_wide_data->_IO_read_base;
else
new_pos = (fp->_wide_data->_IO_write_ptr
- fp->_wide_data->_IO_write_base);
}
else
{
_IO_ssize_t cur_size = _IO_wstr_count (fp);
new_pos = EOF;
if (mode & _IOS_INPUT)
{
switch (dir)
{
case _IO_seek_end:
offset += cur_size;
break;
case _IO_seek_cur:
offset += (fp->_wide_data->_IO_read_ptr
- fp->_wide_data->_IO_read_base);
break;
default:
break;
}
if (offset < 0)
return EOF;
if ((_IO_ssize_t) offset > cur_size
&& enlarge_userbuf (fp, offset, 1) != 0)
return EOF;
fp->_wide_data->_IO_read_ptr = (fp->_wide_data->_IO_read_base
+ offset);
fp->_wide_data->_IO_read_end = (fp->_wide_data->_IO_read_base
+ cur_size);
new_pos = offset;
}
if (mode & _IOS_OUTPUT)
{
switch (dir)
{
case _IO_seek_end:
offset += cur_size;
break;
case _IO_seek_cur:
offset += (fp->_wide_data->_IO_write_ptr
- fp->_wide_data->_IO_write_base);
break;
default:
break;
}
if (offset < 0)
return EOF;
if ((_IO_ssize_t) offset > cur_size
&& enlarge_userbuf (fp, offset, 0) != 0)
return EOF;
fp->_wide_data->_IO_write_ptr = (fp->_wide_data->_IO_write_base
+ offset);
new_pos = offset;
}
}
return new_pos;
}
_IO_wint_t
_IO_wstr_pbackfail (fp, c)
_IO_FILE *fp;
_IO_wint_t c;
{
if ((fp->_flags & _IO_NO_WRITES) && c != WEOF)
return WEOF;
return _IO_wdefault_pbackfail (fp, c);
}
void
_IO_wstr_finish (fp, dummy)
_IO_FILE *fp;
int dummy;
{
if (fp->_wide_data->_IO_buf_base && !(fp->_flags2 & _IO_FLAGS2_USER_WBUF))
(((_IO_strfile *) fp)->_s._free_buffer) (fp->_wide_data->_IO_buf_base);
fp->_wide_data->_IO_buf_base = NULL;
_IO_wdefault_finish (fp, 0);
}
const struct _IO_jump_t _IO_wstr_jumps =
{
JUMP_INIT_DUMMY,
JUMP_INIT(finish, _IO_wstr_finish),
JUMP_INIT(overflow, (_IO_overflow_t) _IO_wstr_overflow),
JUMP_INIT(underflow, (_IO_underflow_t) _IO_wstr_underflow),
JUMP_INIT(uflow, (_IO_underflow_t) _IO_wdefault_uflow),
JUMP_INIT(pbackfail, (_IO_pbackfail_t) _IO_wstr_pbackfail),
JUMP_INIT(xsputn, _IO_wdefault_xsputn),
JUMP_INIT(xsgetn, _IO_wdefault_xsgetn),
JUMP_INIT(seekoff, _IO_wstr_seekoff),
JUMP_INIT(seekpos, _IO_default_seekpos),
JUMP_INIT(setbuf, _IO_default_setbuf),
JUMP_INIT(sync, _IO_default_sync),
JUMP_INIT(doallocate, _IO_wdefault_doallocate),
JUMP_INIT(read, _IO_default_read),
JUMP_INIT(write, _IO_default_write),
JUMP_INIT(seek, _IO_default_seek),
JUMP_INIT(close, _IO_default_close),
JUMP_INIT(stat, _IO_default_stat),
JUMP_INIT(showmanyc, _IO_default_showmanyc),
JUMP_INIT(imbue, _IO_default_imbue)
};