kopia lustrzana https://gitlab.com/sane-project/backends
449 wiersze
9.4 KiB
C
449 wiersze
9.4 KiB
C
/* sane - Scanner Access Now Easy.
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Copyright (C) 1997 David Mosberger-Tang
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This file is part of the SANE package.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the
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License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330, Boston,
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MA 02111-1307, USA.
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As a special exception, the authors of SANE give permission for
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additional uses of the libraries contained in this release of SANE.
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The exception is that, if you link a SANE library with other files
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to produce an executable, this does not by itself cause the
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resulting executable to be covered by the GNU General Public
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License. Your use of that executable is in no way restricted on
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account of linking the SANE library code into it.
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This exception does not, however, invalidate any other reasons why
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the executable file might be covered by the GNU General Public
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License.
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If you submit changes to SANE to the maintainers to be included in
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a subsequent release, you agree by submitting the changes that
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those changes may be distributed with this exception intact.
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If you write modifications of your own for SANE, it is your choice
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whether to permit this exception to apply to your modifications.
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If you do not wish that, delete this exception notice. */
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#include "sane/config.h"
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#include <errno.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/types.h>
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#include "sane/sane.h"
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#include "sane/sanei_wire.h"
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void
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sanei_w_space (Wire *w, size_t howmuch)
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{
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size_t nbytes, left_over;
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int fd = w->io.fd;
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ssize_t nread, nwritten;
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if (w->status != 0)
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return;
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if (w->buffer.curr + howmuch > w->buffer.end)
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{
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switch (w->direction)
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{
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case WIRE_ENCODE:
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nbytes = w->buffer.curr - w->buffer.start;
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w->buffer.curr = w->buffer.start;
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while (nbytes > 0)
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{
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nwritten = (*w->io.write) (fd, w->buffer.curr, nbytes);
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if (nwritten < 0)
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{
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w->status = errno;
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return;
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}
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w->buffer.curr += nwritten;
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nbytes -= nwritten;
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}
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w->buffer.curr = w->buffer.start;
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w->buffer.end = w->buffer.start + w->buffer.size;
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break;
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case WIRE_DECODE:
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left_over = w->buffer.end - w->buffer.curr;
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if ((signed)left_over < 0)
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return;
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if (left_over)
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memcpy (w->buffer.start, w->buffer.curr, left_over);
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w->buffer.curr = w->buffer.start;
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w->buffer.end = w->buffer.start + left_over;
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do {
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nread = (*w->io.read) (fd, w->buffer.end,
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w->buffer.size - left_over);
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if (nread <= 0)
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{
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if (nread == 0)
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errno = EINVAL;
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w->status = errno;
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return;
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}
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left_over += nread;
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w->buffer.end += nread;
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} while (left_over < howmuch);
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break;
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case WIRE_FREE:
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break;
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}
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}
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}
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void
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sanei_w_void (Wire *w)
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{
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}
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void
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sanei_w_array (Wire *w, SANE_Word *len_ptr, void **v, WireCodecFunc w_element,
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size_t element_size)
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{
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SANE_Word len;
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char *val;
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int i;
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if (w->direction == WIRE_FREE)
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{
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free (*v);
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return;
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}
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if (w->direction == WIRE_ENCODE)
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len = *len_ptr;
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sanei_w_word (w, &len);
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if (w->direction == WIRE_DECODE)
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{
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*len_ptr = len;
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if (len)
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{
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*v = malloc (len * element_size);
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if (*v == 0)
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{
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/* Malloc failed, so return an error. */
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w->status = ENOMEM;
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return;
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}
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}
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else
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*v = 0;
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}
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val = *v;
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for (i = 0; i < len; ++i)
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{
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(*w_element) (w, val);
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val += element_size;
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}
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}
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void
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sanei_w_ptr (Wire *w, void **v, WireCodecFunc w_value, size_t value_size)
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{
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SANE_Word is_null;
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if (w->direction == WIRE_FREE)
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{
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if (*v)
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free (*v);
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return;
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}
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if (w->direction == WIRE_ENCODE)
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is_null = (*v == 0);
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sanei_w_word (w, &is_null);
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if (!is_null)
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{
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if (w->direction == WIRE_DECODE)
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{
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*v = malloc (value_size);
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if (*v == 0)
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{
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/* Malloc failed, so return an error. */
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w->status = ENOMEM;
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return;
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}
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}
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(*w_value) (w, *v);
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}
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else if (w->direction == WIRE_DECODE)
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*v = 0;
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}
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void
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sanei_w_byte (Wire *w, SANE_Byte *v)
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{
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(*w->codec.w_byte) (w, v);
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}
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void
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sanei_w_char (Wire *w, SANE_Char *v)
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{
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(*w->codec.w_char) (w, v);
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}
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void
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sanei_w_word (Wire *w, SANE_Word *v)
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{
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(*w->codec.w_word) (w, v);
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}
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void
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sanei_w_string (Wire *w, SANE_String *v)
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{
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(*w->codec.w_string) (w, v);
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}
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void
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sanei_w_status (Wire *w, SANE_Status *v)
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{
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SANE_Word word = *v;
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sanei_w_word (w, &word);
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if (w->direction == WIRE_DECODE)
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*v = word;
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}
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void
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sanei_w_bool (Wire *w, SANE_Bool *v)
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{
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SANE_Word word = *v;
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sanei_w_word (w, &word);
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if (w->direction == WIRE_DECODE)
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*v = word;
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}
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void
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sanei_w_constraint_type (Wire *w, SANE_Constraint_Type *v)
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{
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SANE_Word word = *v;
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sanei_w_word (w, &word);
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if (w->direction == WIRE_DECODE)
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*v = word;
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}
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void
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sanei_w_value_type (Wire *w, SANE_Value_Type *v)
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{
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SANE_Word word = *v;
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sanei_w_word (w, &word);
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if (w->direction == WIRE_DECODE)
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*v = word;
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}
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void
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sanei_w_unit (Wire *w, SANE_Unit *v)
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{
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SANE_Word word = *v;
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sanei_w_word (w, &word);
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if (w->direction == WIRE_DECODE)
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*v = word;
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}
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void
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sanei_w_action (Wire *w, SANE_Action *v)
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{
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SANE_Word word = *v;
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sanei_w_word (w, &word);
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if (w->direction == WIRE_DECODE)
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*v = word;
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}
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void
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sanei_w_frame (Wire *w, SANE_Frame *v)
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{
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SANE_Word word = *v;
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sanei_w_word (w, &word);
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if (w->direction == WIRE_DECODE)
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*v = word;
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}
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void
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sanei_w_range (Wire *w, SANE_Range *v)
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{
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sanei_w_word (w, &v->min);
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sanei_w_word (w, &v->max);
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sanei_w_word (w, &v->quant);
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}
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void
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sanei_w_device (Wire *w, SANE_Device *v)
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{
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sanei_w_string (w, (SANE_String *) &v->name);
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sanei_w_string (w, (SANE_String *) &v->vendor);
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sanei_w_string (w, (SANE_String *) &v->model);
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sanei_w_string (w, (SANE_String *) &v->type);
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}
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void
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sanei_w_device_ptr (Wire *w, SANE_Device **v)
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{
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sanei_w_ptr (w, (void **) v,
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(WireCodecFunc) sanei_w_device, sizeof (**v));
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}
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void
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sanei_w_option_descriptor (Wire *w, SANE_Option_Descriptor *v)
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{
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SANE_Word len;
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sanei_w_string (w, (SANE_String *) &v->name);
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sanei_w_string (w, (SANE_String *) &v->title);
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sanei_w_string (w, (SANE_String *) &v->desc);
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sanei_w_value_type (w, &v->type);
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sanei_w_unit (w, &v->unit);
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sanei_w_word (w, &v->size);
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sanei_w_word (w, &v->cap);
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sanei_w_constraint_type (w, &v->constraint_type);
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switch (v->constraint_type)
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{
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case SANE_CONSTRAINT_NONE:
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break;
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case SANE_CONSTRAINT_RANGE:
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sanei_w_ptr (w, (void **) &v->constraint.range,
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(WireCodecFunc) sanei_w_range, sizeof (SANE_Range));
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break;
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case SANE_CONSTRAINT_WORD_LIST:
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if (w->direction == WIRE_ENCODE)
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len = v->constraint.word_list[0] + 1;
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sanei_w_array (w, &len, (void **) &v->constraint.word_list,
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w->codec.w_word, sizeof(SANE_Word));
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break;
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case SANE_CONSTRAINT_STRING_LIST:
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if (w->direction == WIRE_ENCODE)
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{
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for (len = 0; v->constraint.string_list[len]; ++len);
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++len; /* send NULL string, too */
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}
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sanei_w_array (w, &len, (void **) &v->constraint.string_list,
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w->codec.w_string, sizeof(SANE_String));
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break;
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}
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}
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void
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sanei_w_option_descriptor_ptr (Wire *w, SANE_Option_Descriptor **v)
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{
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sanei_w_ptr (w, (void **) v,
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(WireCodecFunc) sanei_w_option_descriptor, sizeof (**v));
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}
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void
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sanei_w_parameters (Wire *w, SANE_Parameters *v)
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{
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sanei_w_frame (w, &v->format);
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sanei_w_bool (w, &v->last_frame);
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sanei_w_word (w, &v->bytes_per_line);
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sanei_w_word (w, &v->pixels_per_line);
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sanei_w_word (w, &v->lines);
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sanei_w_word (w, &v->depth);
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}
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static void
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flush (Wire *w)
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{
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if (w->direction == WIRE_ENCODE)
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sanei_w_space (w, w->buffer.size + 1);
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else if (w->direction == WIRE_DECODE)
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w->buffer.curr = w->buffer.end = w->buffer.start;
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}
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void
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sanei_w_set_dir (Wire *w, WireDirection dir)
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{
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flush (w);
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w->direction = dir;
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flush (w);
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}
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void
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sanei_w_call (Wire *w,
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SANE_Word procnum,
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WireCodecFunc w_arg, void *arg,
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WireCodecFunc w_reply, void *reply)
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{
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w->status = 0;
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sanei_w_set_dir (w, WIRE_ENCODE);
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sanei_w_word (w, &procnum);
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(*w_arg) (w, arg);
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if (w->status == 0)
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{
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sanei_w_set_dir (w, WIRE_DECODE);
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(*w_reply) (w, reply);
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}
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}
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void
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sanei_w_reply (Wire *w, WireCodecFunc w_reply, void *reply)
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{
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w->status = 0;
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sanei_w_set_dir (w, WIRE_ENCODE);
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(*w_reply) (w, reply);
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flush (w);
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}
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void
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sanei_w_free (Wire *w, WireCodecFunc w_reply, void *reply)
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{
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WireDirection saved_dir = w->direction;
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w->direction = WIRE_FREE;
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(*w_reply) (w, reply);
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w->direction = saved_dir;
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}
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void
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sanei_w_init (Wire *w, void (*codec_init_func)(Wire *))
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{
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w->status = 0;
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w->direction = WIRE_ENCODE;
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w->buffer.size = 8192;
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w->buffer.start = malloc (w->buffer.size);
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if (w->buffer.start == 0)
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/* Malloc failed, so return an error. */
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w->status = ENOMEM;
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w->buffer.curr = w->buffer.start;
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w->buffer.end = w->buffer.start + w->buffer.size;
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if (codec_init_func != 0)
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(*codec_init_func) (w);
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}
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