kopia lustrzana https://gitlab.com/sane-project/backends
416 wiersze
12 KiB
C
416 wiersze
12 KiB
C
/* sane - Scanner Access Now Easy.
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Copyright (C) 2002 Frank Zago (sane at zago dot net)
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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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*/
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/*
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$Id$
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*/
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/* Commands supported by the Sceptre S1200 scanner. */
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#define SCSI_TEST_UNIT_READY 0x00
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#define SCSI_GET_STATUS 0x02
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#define SCSI_INQUIRY 0x12
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#define SCSI_MODE_SELECT 0x15
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#define SCSI_MODE_SENSE 0x1a
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#define SCSI_SCAN 0x1b
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#define SCSI_RECEIVE_DIAG 0x1c
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#define SCSI_SEND_DIAG 0x1D
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#define SCSI_SET_WINDOW 0x24
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#define SCSI_READ_10 0x28
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#define SCSI_REQUEST_SENSE 0x03
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#define SCSI_SEND_10 0x2a
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#define SCSI_GET_DATA_BUFFER_STATUS 0x34
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typedef struct
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{
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unsigned char data[16];
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int len;
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}
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CDB;
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/* Set a specific bit depending on a boolean.
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* MKSCSI_BIT(TRUE, 3) will generate 0x08. */
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#define MKSCSI_BIT(bit, pos) ((bit)? 1<<(pos): 0)
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/* Set a value in a range of bits.
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* MKSCSI_I2B(5, 3, 5) will generate 0x28 */
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#define MKSCSI_I2B(bits, pos_b, pos_e) ((bits) << (pos_b) & ((1<<((pos_e)-(pos_b)+1))-1))
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/* Store an integer in 2, 3 or 4 byte in an array. */
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#define Ito16(val, buf) { \
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((unsigned char *)buf)[0] = ((val) >> 8) & 0xff; \
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((unsigned char *)buf)[1] = ((val) >> 0) & 0xff; \
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}
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#define Ito24(val, buf) { \
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((unsigned char *)buf)[0] = ((val) >> 16) & 0xff; \
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((unsigned char *)buf)[1] = ((val) >> 8) & 0xff; \
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((unsigned char *)buf)[2] = ((val) >> 0) & 0xff; \
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}
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#define Ito32(val, buf) { \
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((unsigned char *)buf)[0] = ((val) >> 24) & 0xff; \
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((unsigned char *)buf)[1] = ((val) >> 16) & 0xff; \
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((unsigned char *)buf)[2] = ((val) >> 8) & 0xff; \
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((unsigned char *)buf)[3] = ((val) >> 0) & 0xff; \
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}
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#define MKSCSI_TEST_UNIT_READY(cdb) \
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cdb.data[0] = SCSI_TEST_UNIT_READY; \
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cdb.data[1] = 0; \
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cdb.data[2] = 0; \
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cdb.data[3] = 0; \
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cdb.data[4] = 0; \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_GET_STATUS(cdb, buflen) \
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cdb.data[0] = SCSI_GET_STATUS; \
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cdb.data[1] = 0; \
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cdb.data[2] = 0; \
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cdb.data[3] = 0; \
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cdb.data[4] = buflen; \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_INQUIRY(cdb, buflen) \
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cdb.data[0] = SCSI_INQUIRY; \
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cdb.data[1] = 0; \
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cdb.data[2] = 0; \
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cdb.data[3] = 0; \
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cdb.data[4] = buflen; \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_MODE_SELECT(cdb, pf, sp, buflen) \
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cdb.data[0] = SCSI_MODE_SELECT; \
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cdb.data[1] = MKSCSI_BIT(pf, 4) | MKSCSI_BIT(sp, 0); \
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cdb.data[2] = 0; \
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cdb.data[3] = 0; \
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cdb.data[4] = buflen; \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_MODE_SENSE(cdb, pc, page_code, buflen) \
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cdb.data[0] = SCSI_MODE_SENSE; \
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cdb.data[1] = 0; \
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cdb.data[2] = MKSCSI_I2B(pc, 6, 7) | MKSCSI_I2B(page_code, 0, 5); \
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cdb.data[3] = 0; \
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cdb.data[4] = buflen; \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_SCAN(cdb) \
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cdb.data[0] = SCSI_SCAN; \
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cdb.data[1] = 0; \
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cdb.data[2] = 0; \
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cdb.data[3] = 0; \
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cdb.data[4] = 0; \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_RECEIVE_DIAG(cdb, pc, buflen) \
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cdb.data[0] = SCSI_RECEIVE_DIAG; \
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cdb.data[1] = 0; \
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cdb.data[2] = pc; \
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cdb.data[3] = (((buflen) >> 8) & 0xff); \
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cdb.data[4] = (((buflen) >> 0) & 0xff); \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_SEND_DIAG(cdb, buflen) \
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cdb.data[0] = SCSI_SEND_DIAG; \
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cdb.data[1] = 0; \
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cdb.data[2] = 0; \
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cdb.data[3] = (((buflen) >> 8) & 0xff); \
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cdb.data[4] = (((buflen) >> 0) & 0xff); \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_SET_WINDOW(cdb, buflen) \
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cdb.data[0] = SCSI_SET_WINDOW; \
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cdb.data[1] = 0; \
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cdb.data[2] = 0; \
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cdb.data[3] = 0; \
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cdb.data[4] = 0; \
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cdb.data[5] = 0; \
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cdb.data[6] = (((buflen) >> 16) & 0xff); \
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cdb.data[7] = (((buflen) >> 8) & 0xff); \
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cdb.data[8] = (((buflen) >> 0) & 0xff); \
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cdb.data[9] = 0; \
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cdb.len = 10;
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#define MKSCSI_READ_10(cdb, dtc, dtq, buflen) \
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cdb.data[0] = SCSI_READ_10; \
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cdb.data[1] = 0; \
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cdb.data[2] = (dtc); \
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cdb.data[3] = 0; \
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cdb.data[4] = (((dtq) >> 8) & 0xff); \
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cdb.data[5] = (((dtq) >> 0) & 0xff); \
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cdb.data[6] = (((buflen) >> 16) & 0xff); \
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cdb.data[7] = (((buflen) >> 8) & 0xff); \
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cdb.data[8] = (((buflen) >> 0) & 0xff); \
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cdb.data[9] = 0; \
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cdb.len = 10;
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#define MKSCSI_REQUEST_SENSE(cdb, buflen) \
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cdb.data[0] = SCSI_REQUEST_SENSE; \
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cdb.data[1] = 0; \
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cdb.data[2] = 0; \
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cdb.data[3] = 0; \
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cdb.data[4] = (buflen); \
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cdb.data[5] = 0; \
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cdb.len = 6;
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#define MKSCSI_SEND_10(cdb, dtc, dtq, buflen) \
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cdb.data[0] = SCSI_SEND_10; \
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cdb.data[1] = 0; \
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cdb.data[2] = (dtc); \
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cdb.data[3] = 0; \
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cdb.data[4] = (((dtq) >> 8) & 0xff); \
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cdb.data[5] = (((dtq) >> 0) & 0xff); \
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cdb.data[6] = (((buflen) >> 16) & 0xff); \
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cdb.data[7] = (((buflen) >> 8) & 0xff); \
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cdb.data[8] = (((buflen) >> 0) & 0xff); \
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cdb.data[9] = 0; \
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cdb.len = 10;
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#define MKSCSI_GET_DATA_BUFFER_STATUS(cdb, wait, buflen) \
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cdb.data[0] = SCSI_GET_DATA_BUFFER_STATUS; \
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cdb.data[1] = MKSCSI_BIT(wait, 0); \
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cdb.data[2] = 0; \
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cdb.data[3] = 0; \
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cdb.data[4] = 0; \
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cdb.data[5] = 0; \
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cdb.data[6] = 0; \
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cdb.data[7] = (((buflen) >> 8) & 0xff); \
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cdb.data[8] = (((buflen) >> 0) & 0xff); \
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cdb.data[9] = 0; \
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cdb.len = 10;
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/*--------------------------------------------------------------------------*/
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#define MM_PER_INCH 25.4
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#define length_quant SANE_UNFIX(SANE_FIX(MM_PER_INCH / 600))
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#define mmToIlu(mm) ((mm) / length_quant)
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#define iluToMm(ilu) ((ilu) * length_quant)
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/*--------------------------------------------------------------------------*/
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#define GAMMA_LENGTH 0x100 /* number of value per color */
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/*--------------------------------------------------------------------------*/
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enum Sceptre_Option
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{
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OPT_NUM_OPTS = 0,
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OPT_MODE_GROUP,
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OPT_MODE, /* scanner modes */
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OPT_RESOLUTION, /* X and Y resolution */
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OPT_GEOMETRY_GROUP,
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OPT_TL_X, /* upper left X */
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OPT_TL_Y, /* upper left Y */
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OPT_BR_X, /* bottom right X */
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OPT_BR_Y, /* bottom right Y */
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OPT_ENHANCEMENT_GROUP,
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OPT_CUSTOM_GAMMA, /* Use the custom gamma tables */
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OPT_GAMMA_VECTOR_R, /* Custom Red gamma table */
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OPT_GAMMA_VECTOR_G, /* Custom Green Gamma table */
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OPT_GAMMA_VECTOR_B, /* Custom Blue Gamma table */
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OPT_THRESHOLD, /* Threshold */
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OPT_HALFTONE_PATTERN, /* Halftone pattern (1 to 4) */
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OPT_PREVIEW, /* preview mode */
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/* must come last: */
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OPT_NUM_OPTIONS
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};
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/*--------------------------------------------------------------------------*/
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/*
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* Scanner supported by this backend.
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*/
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struct scanners_supported
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{
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/* From scsi inquiry */
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int scsi_type;
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char scsi_vendor[9];
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char scsi_product[17];
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char *real_vendor;
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char *real_product;
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};
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/*--------------------------------------------------------------------------*/
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#define LINEART_STR SANE_I18N("Lineart")
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#define HALFTONE_STR SANE_I18N("Halftone")
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#define GRAY_STR SANE_I18N("Gray")
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#define COLOR_STR SANE_I18N("Color")
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/*--------------------------------------------------------------------------*/
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/* Define a scanner occurence. */
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typedef struct Sceptre_Scanner
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{
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struct Sceptre_Scanner *next;
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SANE_Device sane;
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char *devicename;
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int sfd; /* device handle */
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/* Infos from inquiry. */
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char scsi_type;
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char scsi_vendor[9];
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char scsi_product[17];
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char scsi_version[5];
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/* Scanner infos. */
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SANE_Range x_range;
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SANE_Range y_range;
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SANE_Range resolution_range;
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int scnum; /* index of that scanner in
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* scanners_supported */
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/* SCSI handling */
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SANE_Byte *buffer; /* for SCSI transfer. */
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size_t buffer_size; /* allocated size of buffer */
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/* Scanning handling. */
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int scanning; /* TRUE is a scan is running. */
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int resolution; /* scan resolution */
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int x_tl; /* X top left */
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int y_tl; /* Y top left */
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int x_br; /* X bottom right */
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int y_br; /* Y bottom right */
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int width; /* width of the scan area in mm */
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int length; /* length of the scan area in mm */
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enum
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{
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SCEPTRE_LINEART,
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SCEPTRE_HALFTONE,
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SCEPTRE_GRAYSCALE,
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SCEPTRE_COLOR
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}
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scan_mode;
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int depth; /* depth per color */
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int halftone_param; /* haltone number, valid for SCEPTRE_HALFTONE */
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size_t bytes_left; /* number of bytes left to give to the backend */
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size_t real_bytes_left; /* number of bytes left the scanner will return. */
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SANE_Byte *image; /* keep the raw image here */
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size_t image_size; /* allocated size of image */
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size_t image_begin; /* first significant byte in image */
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size_t image_end; /* first free byte in image */
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int color_shift; /* for color scan: number of lines to
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* shift the colors. The higher the
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* resolution, the higher this
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* number. */
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int raster_size; /* size of a raster */
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int raster_num; /* for colour scan, current raster read */
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int raster_real; /* real number of raster in the
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* scan. This is necessary since I
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* don't know how to reliably compute
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* the number of lines */
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int raster_ahead; /* max size of the incomplete lines */
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int line; /* current line of the scan */
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SANE_Parameters params;
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/* Options */
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SANE_Option_Descriptor opt[OPT_NUM_OPTIONS];
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Option_Value val[OPT_NUM_OPTIONS];
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/* Gamma table. 1 array per colour. */
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SANE_Word gamma_R[GAMMA_LENGTH];
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SANE_Word gamma_G[GAMMA_LENGTH];
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SANE_Word gamma_B[GAMMA_LENGTH];
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}
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Sceptre_Scanner;
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/*--------------------------------------------------------------------------*/
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/* Debug levels.
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* Should be common to all backends. */
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#define DBG_error0 0
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#define DBG_error 1
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#define DBG_sense 2
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#define DBG_warning 3
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#define DBG_inquiry 4
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#define DBG_info 5
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#define DBG_info2 6
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#define DBG_proc 7
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#define DBG_read 8
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#define DBG_sane_init 10
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#define DBG_sane_proc 11
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#define DBG_sane_info 12
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#define DBG_sane_option 13
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/*--------------------------------------------------------------------------*/
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/* 32 bits from an array to an integer (eg ntohl). */
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#define B32TOI(buf) \
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((((unsigned char *)buf)[0] << 24) | \
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(((unsigned char *)buf)[1] << 16) | \
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(((unsigned char *)buf)[2] << 8) | \
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(((unsigned char *)buf)[3] << 0))
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/* 16 bits from an array to an integer (eg ntohs). */
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#define B16TOI(buf) \
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((((unsigned char *)buf)[0] << 8) | \
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(((unsigned char *)buf)[1] << 0))
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