1088 lines
29 KiB
C
1088 lines
29 KiB
C
/*
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$Id: device.c,v 1.41 2008/04/22 15:29:12 karl Exp $
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Copyright (C) 2005, 2006, 2008 Rocky Bernstein <rocky@gnu.org>
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU 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, see <http://www.gnu.org/licenses/>.
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*/
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/*! device- and driver-related routines. */
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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#include <cdio/cdio.h>
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#include <cdio/cd_types.h>
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#include <cdio/logging.h>
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#include "cdio_private.h"
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#ifdef HAVE_STDLIB_H
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#include <stdlib.h>
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#endif
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#ifdef HAVE_STRING_H
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#include <string.h>
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#endif
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/* This probably will get moved to driver code, i.e _cdio_linux.c */
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#ifdef HAVE_LINUX_MAJOR_H
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#include <linux/major.h>
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#endif
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#ifdef HAVE_SYS_STAT_H
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#include <sys/stat.h>
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#endif
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/* The below array gives of the drivers that are currently available for
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on a particular host. */
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CdIo_driver_t CdIo_driver[CDIO_MAX_DRIVER] = {
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{0, 0, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL} };
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/* The last valid entry of Cdio_driver.
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-1 or (CDIO_DRIVER_UNINIT) means uninitialzed.
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-2 means some sort of error.
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*/
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#define CDIO_DRIVER_UNINIT -1
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int CdIo_last_driver = CDIO_DRIVER_UNINIT;
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#ifdef HAVE_AIX_CDROM
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const driver_id_t cdio_os_driver = DRIVER_AIX;
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#elif HAVE_BSDI_CDROM
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const driver_id_t cdio_os_driver = DRIVER_BSDI;
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#elif HAVE_FREEBSD_CDROM
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const driver_id_t cdio_os_driver = DRIVER_FREEBSD;
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#elif HAVE_LINUX_CDROM
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const driver_id_t cdio_os_driver = DRIVER_LINUX;
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#elif HAVE_DARWIN_CDROM
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const driver_id_t cdio_os_driver = DRIVER_OSX;
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#elif HAVE_OS2_CDROM
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const driver_id_t cdio_os_driver = DRIVER_OS2;
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#elif HAVE_SOLARIS_CDROM
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const driver_id_t cdio_os_driver = DRIVER_SOLARIS;
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#elif HAVE_WIN32_CDROM
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const driver_id_t cdio_os_driver = DRIVER_WIN32;
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#else
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const driver_id_t cdio_os_driver = DRIVER_UNKNOWN;
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#endif
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/** The below variables are trickery to force enum symbol values to be
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recorded in debug symbol tables. They are used to allow one to refer
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to the enumeration value names in the typedefs above in a debugger
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and debugger expressions.
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*/
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cdio_drive_cap_misc_t debug_cdio_drive_cap_misc;
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cdio_drive_cap_read_t debug_cdio_drive_cap_read_t;
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cdio_drive_cap_write_t debug_drive_cap_write_t;
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cdio_mmc_hw_len_t debug_cdio_mmc_hw_len;
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cdio_src_category_mask_t debug_cdio_src_category_mask;
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static bool
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cdio_have_false(void)
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{
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return false;
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}
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/* The below array gives all drivers that can possibly appear.
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on a particular host. */
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CdIo_driver_t CdIo_all_drivers[CDIO_MAX_DRIVER+1] = {
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{DRIVER_UNKNOWN,
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0,
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"Unknown",
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"No driver",
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&cdio_have_false,
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NULL,
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NULL,
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NULL,
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NULL,
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NULL,
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NULL
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},
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{DRIVER_AIX,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK|CDIO_SRC_IS_SCSI_MASK,
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"AIX",
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"AIX SCSI driver",
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&cdio_have_aix,
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&cdio_open_aix,
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&cdio_open_am_aix,
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&cdio_get_default_device_aix,
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&cdio_is_device_generic,
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&cdio_get_devices_aix,
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NULL
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},
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{DRIVER_BSDI,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK|CDIO_SRC_IS_SCSI_MASK,
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"BSDI",
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"BSDI ATAPI and SCSI driver",
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&cdio_have_bsdi,
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&cdio_open_bsdi,
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&cdio_open_am_bsdi,
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&cdio_get_default_device_bsdi,
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&cdio_is_device_generic,
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&cdio_get_devices_bsdi,
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&close_tray_bsdi
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},
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{DRIVER_FREEBSD,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK|CDIO_SRC_IS_SCSI_MASK,
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"FreeBSD",
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"FreeBSD driver",
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&cdio_have_freebsd,
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&cdio_open_freebsd,
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&cdio_open_am_freebsd,
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&cdio_get_default_device_freebsd,
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&cdio_is_device_generic,
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&cdio_get_devices_freebsd,
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&close_tray_freebsd
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},
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{DRIVER_NETBSD,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK|CDIO_SRC_IS_SCSI_MASK,
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"NetBSD",
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"NetBSD driver",
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&cdio_have_netbsd,
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&cdio_open_netbsd,
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&cdio_open_am_netbsd,
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&cdio_get_default_device_netbsd,
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&cdio_is_device_generic,
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&cdio_get_devices_netbsd,
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&close_tray_netbsd
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},
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{DRIVER_LINUX,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK,
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"GNU/Linux",
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"GNU/Linux ioctl and MMC driver",
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&cdio_have_linux,
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&cdio_open_linux,
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&cdio_open_am_linux,
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&cdio_get_default_device_linux,
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&cdio_is_device_generic,
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&cdio_get_devices_linux,
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&close_tray_linux
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},
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{DRIVER_SOLARIS,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK|CDIO_SRC_IS_SCSI_MASK,
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"Solaris",
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"Solaris ATAPI and SCSI driver",
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&cdio_have_solaris,
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&cdio_open_solaris,
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&cdio_open_am_solaris,
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&cdio_get_default_device_solaris,
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&cdio_is_device_generic,
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&cdio_get_devices_solaris,
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&close_tray_solaris
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},
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{DRIVER_OS2,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK|CDIO_SRC_IS_SCSI_MASK,
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"OS2",
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"IBM OS/2 driver",
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&cdio_have_os2,
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&cdio_open_os2,
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&cdio_open_am_os2,
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&cdio_get_default_device_os2,
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&cdio_is_device_os2,
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&cdio_get_devices_os2,
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&close_tray_os2
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},
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{DRIVER_OSX,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK|CDIO_SRC_IS_SCSI_MASK,
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"OS X",
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"Apple Darwin OS X driver",
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&cdio_have_osx,
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&cdio_open_osx,
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&cdio_open_am_osx,
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&cdio_get_default_device_osx,
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&cdio_is_device_generic,
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&cdio_get_devices_osx,
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&close_tray_osx
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},
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{DRIVER_WIN32,
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CDIO_SRC_IS_DEVICE_MASK|CDIO_SRC_IS_NATIVE_MASK|CDIO_SRC_IS_SCSI_MASK,
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"WIN32",
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"MS Windows ASPI and ioctl driver",
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&cdio_have_win32,
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&cdio_open_win32,
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&cdio_open_am_win32,
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&cdio_get_default_device_win32,
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&cdio_is_device_win32,
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&cdio_get_devices_win32,
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&close_tray_win32
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},
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{DRIVER_CDRDAO,
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CDIO_SRC_IS_DISK_IMAGE_MASK,
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"CDRDAO",
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"cdrdao (TOC) disk image driver",
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&cdio_have_cdrdao,
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&cdio_open_cdrdao,
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&cdio_open_am_cdrdao,
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&cdio_get_default_device_cdrdao,
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NULL,
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&cdio_get_devices_cdrdao,
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NULL
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},
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{DRIVER_BINCUE,
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CDIO_SRC_IS_DISK_IMAGE_MASK,
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"BIN/CUE",
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"bin/cuesheet disk image driver",
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&cdio_have_bincue,
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&cdio_open_bincue,
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&cdio_open_am_bincue,
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&cdio_get_default_device_bincue,
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NULL,
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&cdio_get_devices_bincue,
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NULL
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},
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{DRIVER_NRG,
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CDIO_SRC_IS_DISK_IMAGE_MASK,
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"NRG",
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"Nero NRG disk image driver",
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&cdio_have_nrg,
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&cdio_open_nrg,
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&cdio_open_am_nrg,
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&cdio_get_default_device_nrg,
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NULL,
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&cdio_get_devices_nrg,
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NULL
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}
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};
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const driver_id_t cdio_drivers[] = {
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DRIVER_AIX,
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DRIVER_BSDI,
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DRIVER_FREEBSD,
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DRIVER_NETBSD,
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DRIVER_LINUX,
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DRIVER_SOLARIS,
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DRIVER_OS2,
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DRIVER_OSX,
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DRIVER_WIN32,
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DRIVER_CDRDAO,
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DRIVER_BINCUE,
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DRIVER_NRG,
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DRIVER_UNKNOWN
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};
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const driver_id_t cdio_device_drivers[] = {
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DRIVER_AIX,
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DRIVER_BSDI,
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DRIVER_FREEBSD,
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DRIVER_NETBSD,
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DRIVER_LINUX,
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DRIVER_SOLARIS,
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DRIVER_OS2,
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DRIVER_OSX,
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DRIVER_WIN32,
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DRIVER_UNKNOWN
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};
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const char *
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cdio_driver_errmsg(driver_return_code_t drc)
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{
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switch(drc) {
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case DRIVER_OP_SUCCESS:
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return "driver operation was successful";
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case DRIVER_OP_ERROR:
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return "driver I/O error";
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case DRIVER_OP_UNSUPPORTED:
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return "driver operatation not supported";
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case DRIVER_OP_UNINIT:
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return "driver not initialized";
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case DRIVER_OP_NOT_PERMITTED:
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return "driver operatation not permitted";
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case DRIVER_OP_BAD_PARAMETER:
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return "bad parameter passed";
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case DRIVER_OP_BAD_POINTER:
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return "bad pointer to memory area";
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case DRIVER_OP_NO_DRIVER:
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return "driver not available";
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default:
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return "unknown or bad driver return status";
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}
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}
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static CdIo *
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scan_for_driver(driver_id_t start, driver_id_t end,
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const char *psz_source, const char *access_mode)
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{
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driver_id_t driver_id;
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for (driver_id=start; driver_id<=end; driver_id++) {
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if ((*CdIo_all_drivers[driver_id].have_driver)()) {
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CdIo *ret=
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(*CdIo_all_drivers[driver_id].driver_open_am)(psz_source, access_mode);
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if (ret != NULL) {
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ret->driver_id = driver_id;
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return ret;
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}
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}
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||
}
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return NULL;
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}
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const char *
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cdio_driver_describe(driver_id_t driver_id)
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{
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return CdIo_all_drivers[driver_id].describe;
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}
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/*!
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Initialize CD Reading and control routines. Should be called first.
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May be implicitly called by other routines if not called first.
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*/
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bool
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cdio_init(void)
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{
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CdIo_driver_t *all_dp;
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CdIo_driver_t *dp = CdIo_driver;
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driver_id_t driver_id;
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if (CdIo_last_driver != CDIO_DRIVER_UNINIT) {
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cdio_warn ("Init routine called more than once.");
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return false;
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}
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for (driver_id=DRIVER_UNKNOWN+1; driver_id<=CDIO_MAX_DRIVER; driver_id++) {
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all_dp = &CdIo_all_drivers[driver_id];
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if ((*CdIo_all_drivers[driver_id].have_driver)()) {
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*dp++ = *all_dp;
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CdIo_last_driver++;
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}
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}
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return true;
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}
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/*!
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Free any resources associated with cdio.
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*/
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void
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cdio_destroy (CdIo_t *p_cdio)
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{
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CdIo_last_driver = CDIO_DRIVER_UNINIT;
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if (p_cdio == NULL) return;
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|
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if (p_cdio->op.free != NULL && p_cdio->env)
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p_cdio->op.free (p_cdio->env);
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p_cdio->env = NULL;
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free (p_cdio);
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}
|
||
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/*!
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Close media tray in CD drive if there is a routine to do so.
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@param psz_drive the name of CD-ROM to be closed. If NULL, we will
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use the default device.
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@param p_driver_id is the driver to be used or that got used if
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it was DRIVER_UNKNOWN or DRIVER_DEVICE; If this is NULL, we won't
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report back the driver used.
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||
*/
|
||
driver_return_code_t
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cdio_close_tray (const char *psz_orig_drive, /*in/out*/ driver_id_t
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*p_driver_id)
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{
|
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driver_id_t temp_driver_id = DRIVER_DEVICE;
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char *psz_drive;
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driver_return_code_t drc;
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|
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if (!p_driver_id) p_driver_id = &temp_driver_id;
|
||
|
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if (!psz_orig_drive || !*psz_orig_drive)
|
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psz_drive = cdio_get_default_device_driver(p_driver_id);
|
||
else
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||
psz_drive = strdup(psz_orig_drive);
|
||
|
||
if (DRIVER_UNKNOWN == *p_driver_id || DRIVER_DEVICE == *p_driver_id) {
|
||
*p_driver_id = CDIO_MIN_DEVICE_DRIVER;
|
||
|
||
/* Scan for driver */
|
||
for ( ; *p_driver_id<=CDIO_MAX_DRIVER; (*p_driver_id)++) {
|
||
if ( (*CdIo_all_drivers[*p_driver_id].have_driver)() &&
|
||
*CdIo_all_drivers[*p_driver_id].close_tray ) {
|
||
drc = (*CdIo_all_drivers[*p_driver_id].close_tray)(psz_drive);
|
||
free(psz_drive);
|
||
return drc;
|
||
}
|
||
}
|
||
return DRIVER_OP_UNSUPPORTED;
|
||
}
|
||
|
||
/* The driver id was specified. Use that. */
|
||
if ( (*CdIo_all_drivers[*p_driver_id].have_driver)() &&
|
||
*CdIo_all_drivers[*p_driver_id].close_tray ) {
|
||
drc = (*CdIo_all_drivers[*p_driver_id].close_tray)(psz_drive);
|
||
free(psz_drive);
|
||
return drc;
|
||
}
|
||
return DRIVER_OP_UNSUPPORTED;
|
||
}
|
||
|
||
/*!
|
||
Eject media in CD drive if there is a routine to do so.
|
||
|
||
@param p_cdio the CD object to be acted upon.
|
||
If the CD is ejected *p_cdio is freed and p_cdio set to NULL.
|
||
*/
|
||
driver_return_code_t
|
||
cdio_eject_media (CdIo_t **pp_cdio)
|
||
{
|
||
if ((pp_cdio == NULL) || (*pp_cdio == NULL)) return DRIVER_OP_UNINIT;
|
||
|
||
if ((*pp_cdio)->op.eject_media) {
|
||
int ret = (*pp_cdio)->op.eject_media ((*pp_cdio)->env);
|
||
if (0 == ret) {
|
||
cdio_destroy(*pp_cdio);
|
||
*pp_cdio = NULL;
|
||
}
|
||
return ret;
|
||
} else {
|
||
cdio_destroy(*pp_cdio);
|
||
*pp_cdio = NULL;
|
||
return DRIVER_OP_UNSUPPORTED;
|
||
}
|
||
}
|
||
|
||
/*!
|
||
Eject media in CD drive if there is a routine to do so. If you want
|
||
to scan for any CD-ROM and eject that, pass NULL for psz_drive.
|
||
|
||
@param psz_drive the CD object to be acted upon.
|
||
If NULL is given as the drive, we'll use the default driver device.
|
||
*/
|
||
driver_return_code_t
|
||
cdio_eject_media_drive (const char *psz_drive)
|
||
{
|
||
CdIo_t *p_cdio = cdio_open (psz_drive, DRIVER_DEVICE);
|
||
if (p_cdio) {
|
||
return cdio_eject_media(&p_cdio);
|
||
} else {
|
||
return DRIVER_OP_UNINIT;
|
||
}
|
||
}
|
||
|
||
/*!
|
||
Free device list returned by cdio_get_devices or
|
||
cdio_get_devices_with_cap.
|
||
*/
|
||
void
|
||
cdio_free_device_list (char * ppsz_device_list[])
|
||
{
|
||
char **ppsz_device_list_save=ppsz_device_list;
|
||
if (!ppsz_device_list) return;
|
||
for ( ; NULL != *ppsz_device_list ; ppsz_device_list++ ) {
|
||
free(*ppsz_device_list);
|
||
*ppsz_device_list = NULL;
|
||
}
|
||
free(ppsz_device_list_save);
|
||
}
|
||
|
||
|
||
/*!
|
||
Return a string containing the default CD device if none is specified.
|
||
if p_cdio is NULL (we haven't initialized a specific device driver),
|
||
then find a suitable one and return the default device for that.
|
||
|
||
NULL is returned if we couldn't get a default device.
|
||
*/
|
||
char *
|
||
cdio_get_default_device (const CdIo_t *p_cdio)
|
||
{
|
||
if (p_cdio == NULL) {
|
||
driver_id_t driver_id;
|
||
/* Scan for driver */
|
||
for (driver_id=DRIVER_UNKNOWN+1; driver_id<=CDIO_MAX_DRIVER; driver_id++) {
|
||
if ( (*CdIo_all_drivers[driver_id].have_driver)() &&
|
||
*CdIo_all_drivers[driver_id].get_default_device ) {
|
||
return (*CdIo_all_drivers[driver_id].get_default_device)();
|
||
}
|
||
}
|
||
return NULL;
|
||
}
|
||
|
||
if (p_cdio->op.get_default_device) {
|
||
return p_cdio->op.get_default_device ();
|
||
} else {
|
||
return NULL;
|
||
}
|
||
}
|
||
|
||
/*!
|
||
Return a string containing the default CD device if none is specified.
|
||
if p_driver_id is DRIVER_UNKNOWN or DRIVER_DEVICE
|
||
then find a suitable one set the default device for that.
|
||
|
||
NULL is returned if we couldn't get a default device.
|
||
*/
|
||
char *
|
||
cdio_get_default_device_driver (/*in/out*/ driver_id_t *p_driver_id)
|
||
{
|
||
if (DRIVER_UNKNOWN == *p_driver_id || DRIVER_DEVICE == *p_driver_id) {
|
||
if (DRIVER_UNKNOWN == *p_driver_id)
|
||
(*p_driver_id)++;
|
||
else
|
||
*p_driver_id = CDIO_MIN_DEVICE_DRIVER;
|
||
|
||
/* Scan for driver */
|
||
for ( ; *p_driver_id<=CDIO_MAX_DRIVER; (*p_driver_id)++) {
|
||
if ( (*CdIo_all_drivers[*p_driver_id].have_driver)() &&
|
||
*CdIo_all_drivers[*p_driver_id].get_default_device ) {
|
||
return (*CdIo_all_drivers[*p_driver_id].get_default_device)();
|
||
}
|
||
}
|
||
return NULL;
|
||
}
|
||
|
||
/* The driver id was specified. Use that. */
|
||
if ( (*CdIo_all_drivers[*p_driver_id].have_driver)() &&
|
||
*CdIo_all_drivers[*p_driver_id].get_default_device ) {
|
||
return (*CdIo_all_drivers[*p_driver_id].get_default_device)();
|
||
}
|
||
return NULL;
|
||
}
|
||
|
||
/*!Return an array of device names. If you want a specific
|
||
devices, dor a driver give that device, if you want hardware
|
||
devices, give DRIVER_DEVICE and if you want all possible devices,
|
||
image drivers and hardware drivers give DRIVER_UNKNOWN.
|
||
|
||
NULL is returned if we couldn't return a list of devices.
|
||
*/
|
||
char **
|
||
cdio_get_devices (driver_id_t driver_id)
|
||
{
|
||
/* Probably could get away with &driver_id below. */
|
||
driver_id_t driver_id_temp = driver_id;
|
||
return cdio_get_devices_ret (&driver_id_temp);
|
||
}
|
||
|
||
char **
|
||
cdio_get_devices_ret (/*in/out*/ driver_id_t *p_driver_id)
|
||
{
|
||
CdIo_t *p_cdio;
|
||
|
||
switch (*p_driver_id) {
|
||
/* FIXME: spit out unknown to give image drivers as well. */
|
||
case DRIVER_DEVICE:
|
||
p_cdio = scan_for_driver(DRIVER_UNKNOWN+1, CDIO_MAX_DEVICE_DRIVER,
|
||
NULL, NULL);
|
||
*p_driver_id = cdio_get_driver_id(p_cdio);
|
||
break;
|
||
case DRIVER_UNKNOWN:
|
||
p_cdio = scan_for_driver(DRIVER_UNKNOWN+1, CDIO_MAX_DRIVER, NULL, NULL);
|
||
*p_driver_id = cdio_get_driver_id(p_cdio);
|
||
break;
|
||
default:
|
||
return (*CdIo_all_drivers[*p_driver_id].get_devices)();
|
||
}
|
||
|
||
if (p_cdio == NULL) return NULL;
|
||
if (p_cdio->op.get_devices) {
|
||
char **devices = p_cdio->op.get_devices ();
|
||
cdio_destroy(p_cdio);
|
||
return devices;
|
||
} else {
|
||
return NULL;
|
||
}
|
||
}
|
||
|
||
/*!
|
||
Return an array of device names in search_devices that have at
|
||
least the capabilities listed by cap. If search_devices is NULL,
|
||
then we'll search all possible CD drives.
|
||
|
||
If "any" is set false then every capability listed in the extended
|
||
portion of capabilities (i.e. not the basic filesystem) must be
|
||
satisified. If "any" is set true, then if any of the capabilities
|
||
matches, we call that a success.
|
||
|
||
To find a CD-drive of any type, use the mask CDIO_FS_MATCH_ALL.
|
||
|
||
NULL is returned if we couldn't get a default device.
|
||
It is also possible to return a non NULL but after dereferencing the
|
||
the value is NULL. This also means nothing was found.
|
||
*/
|
||
char **
|
||
cdio_get_devices_with_cap (/*in*/ char* search_devices[],
|
||
cdio_fs_anal_t capabilities, bool any)
|
||
{
|
||
driver_id_t p_driver_id;
|
||
return cdio_get_devices_with_cap_ret (search_devices, capabilities, any,
|
||
&p_driver_id);
|
||
}
|
||
|
||
char **
|
||
cdio_get_devices_with_cap_ret (/*in*/ char* search_devices[],
|
||
cdio_fs_anal_t need_cap, bool b_any,
|
||
/*out*/ driver_id_t *p_driver_id)
|
||
{
|
||
char **ppsz_drives=search_devices;
|
||
char **ppsz_drives_ret=NULL;
|
||
unsigned int i_drives=0;
|
||
bool b_free_ppsz_drives = false;
|
||
|
||
*p_driver_id = DRIVER_DEVICE;
|
||
|
||
if (!ppsz_drives) {
|
||
ppsz_drives=cdio_get_devices_ret(p_driver_id);
|
||
b_free_ppsz_drives = true;
|
||
}
|
||
|
||
if (!ppsz_drives) return NULL;
|
||
|
||
if (need_cap == CDIO_FS_MATCH_ALL) {
|
||
/* Duplicate drives into drives_ret. */
|
||
char **d = ppsz_drives;
|
||
|
||
for( ; *d != NULL; d++ ) {
|
||
cdio_add_device_list(&ppsz_drives_ret, *d, &i_drives);
|
||
}
|
||
} else {
|
||
const cdio_fs_anal_t need_fs = CDIO_FSTYPE(need_cap);
|
||
char **d = ppsz_drives;
|
||
|
||
for( ; *d != NULL; d++ ) {
|
||
CdIo_t *p_cdio = cdio_open(*d, *p_driver_id);
|
||
|
||
if (NULL != p_cdio) {
|
||
track_t i_first_track = cdio_get_first_track_num(p_cdio);
|
||
cdio_iso_analysis_t cdio_iso_analysis;
|
||
|
||
if (CDIO_INVALID_TRACK != i_first_track) {
|
||
const cdio_fs_anal_t got_cap =
|
||
cdio_guess_cd_type(p_cdio, 0, i_first_track, &cdio_iso_analysis);
|
||
|
||
/* Match on filesystem. Here either we don't know what the
|
||
filesystem is - automatic match, or we no that the file
|
||
system is in the set of those specified.
|
||
We refine the logic further after this initial test. */
|
||
if ( CDIO_FS_UNKNOWN == need_fs || 0 == need_fs
|
||
|| (CDIO_FSTYPE(got_cap) == need_fs) ) {
|
||
/* Match on analysis type. If we haven't set any
|
||
analysis type, then an automatic match. Otherwise
|
||
a match is determined by whether we need all
|
||
analysis types or any of them. */
|
||
const cdio_fs_anal_t need_anal = need_cap & ~CDIO_FS_MASK;
|
||
const cdio_fs_anal_t got_anal = got_cap & ~CDIO_FS_MASK;
|
||
const bool b_match = !need_anal
|
||
|| (b_any
|
||
? (got_anal & need_anal) != 0
|
||
: (got_anal & need_anal) == need_anal);
|
||
if (b_match)
|
||
cdio_add_device_list(&ppsz_drives_ret, *d, &i_drives);
|
||
}
|
||
}
|
||
|
||
cdio_destroy(p_cdio);
|
||
}
|
||
}
|
||
}
|
||
cdio_add_device_list(&ppsz_drives_ret, NULL, &i_drives);
|
||
if (b_free_ppsz_drives) {
|
||
cdio_free_device_list(ppsz_drives);
|
||
}
|
||
return ppsz_drives_ret;
|
||
}
|
||
|
||
/*!
|
||
Return the the kind of drive capabilities of device.
|
||
|
||
Note: string is malloc'd so caller should free() then returned
|
||
string when done with it.
|
||
|
||
*/
|
||
void
|
||
cdio_get_drive_cap (const CdIo_t *p_cdio,
|
||
cdio_drive_read_cap_t *p_read_cap,
|
||
cdio_drive_write_cap_t *p_write_cap,
|
||
cdio_drive_misc_cap_t *p_misc_cap)
|
||
{
|
||
/* This seems like a safe bet. */
|
||
*p_read_cap = CDIO_DRIVE_CAP_UNKNOWN;
|
||
*p_write_cap = CDIO_DRIVE_CAP_UNKNOWN;
|
||
*p_misc_cap = CDIO_DRIVE_CAP_UNKNOWN;
|
||
|
||
if (p_cdio && p_cdio->op.get_drive_cap) {
|
||
p_cdio->op.get_drive_cap(p_cdio->env, p_read_cap, p_write_cap, p_misc_cap);
|
||
}
|
||
}
|
||
|
||
/*!
|
||
Return the the kind of drive capabilities of device.
|
||
|
||
Note: string is malloc'd so caller should free() then returned
|
||
string when done with it.
|
||
|
||
*/
|
||
void
|
||
cdio_get_drive_cap_dev (const char *device,
|
||
cdio_drive_read_cap_t *p_read_cap,
|
||
cdio_drive_write_cap_t *p_write_cap,
|
||
cdio_drive_misc_cap_t *p_misc_cap)
|
||
{
|
||
/* This seems like a safe bet. */
|
||
CdIo_t *cdio=scan_for_driver(CDIO_MIN_DRIVER, CDIO_MAX_DRIVER,
|
||
device, NULL);
|
||
if (cdio) {
|
||
cdio_get_drive_cap(cdio, p_read_cap, p_write_cap, p_misc_cap);
|
||
cdio_destroy(cdio);
|
||
} else {
|
||
*p_read_cap = CDIO_DRIVE_CAP_UNKNOWN;
|
||
*p_write_cap = CDIO_DRIVE_CAP_UNKNOWN;
|
||
*p_misc_cap = CDIO_DRIVE_CAP_UNKNOWN;
|
||
}
|
||
}
|
||
|
||
|
||
/*!
|
||
Return a string containing the name of the driver in use.
|
||
if CdIo is NULL (we haven't initialized a specific device driver),
|
||
then return NULL.
|
||
*/
|
||
const char *
|
||
cdio_get_driver_name (const CdIo_t *p_cdio)
|
||
{
|
||
if (NULL==p_cdio) return NULL;
|
||
return CdIo_all_drivers[p_cdio->driver_id].name;
|
||
}
|
||
|
||
/*!
|
||
Return the driver id.
|
||
if CdIo is NULL (we haven't initialized a specific device driver),
|
||
then return DRIVER_UNKNOWN.
|
||
*/
|
||
driver_id_t
|
||
cdio_get_driver_id (const CdIo_t *p_cdio)
|
||
{
|
||
if (!p_cdio) return DRIVER_UNKNOWN;
|
||
return p_cdio->driver_id;
|
||
}
|
||
|
||
/*!
|
||
Return a string containing the name of the driver in use.
|
||
if CdIo is NULL (we haven't initialized a specific device driver),
|
||
then return NULL.
|
||
*/
|
||
bool
|
||
cdio_get_hwinfo (const CdIo_t *p_cdio, cdio_hwinfo_t *hw_info)
|
||
{
|
||
if (!p_cdio) return false;
|
||
if (p_cdio->op.get_hwinfo) {
|
||
return p_cdio->op.get_hwinfo (p_cdio, hw_info);
|
||
} else {
|
||
/* Perhaps driver forgot to initialize. We are no worse off Using
|
||
mmc than returning false here. */
|
||
return mmc_get_hwinfo(p_cdio, hw_info);
|
||
}
|
||
}
|
||
|
||
/*!
|
||
Return the session number of the last on the CD.
|
||
|
||
@param p_cdio the CD object to be acted upon.
|
||
@param i_last_session pointer to the session number to be returned.
|
||
*/
|
||
driver_return_code_t cdio_get_last_session (CdIo_t *p_cdio,
|
||
/*out*/ lsn_t *i_last_session)
|
||
{
|
||
if (!p_cdio) return DRIVER_OP_UNINIT;
|
||
if (p_cdio->op.get_last_session)
|
||
return p_cdio->op.get_last_session(p_cdio->env, i_last_session);
|
||
return DRIVER_OP_UNSUPPORTED;
|
||
}
|
||
|
||
/*!
|
||
Find out if media has changed since the last call.
|
||
@param p_cdio the CD object to be acted upon.
|
||
@return 1 if media has changed since last call, 0 if not. Error
|
||
return codes are the same as driver_return_code_t
|
||
*/
|
||
int
|
||
cdio_get_media_changed(CdIo_t *p_cdio)
|
||
{
|
||
if (!p_cdio) return DRIVER_OP_UNINIT;
|
||
if (p_cdio->op.get_media_changed)
|
||
return p_cdio->op.get_media_changed(p_cdio->env);
|
||
return DRIVER_OP_UNSUPPORTED;
|
||
}
|
||
|
||
bool_3way_t
|
||
cdio_have_atapi(CdIo_t *p_cdio)
|
||
{
|
||
bool_3way_t i_status;
|
||
|
||
if (!p_cdio) return nope;
|
||
i_status = mmc_have_interface(p_cdio, CDIO_MMC_FEATURE_INTERFACE_ATAPI);
|
||
if (dunno != i_status) return i_status;
|
||
|
||
{
|
||
/* cdparanoia seems to think that if we have a mode sense command
|
||
we have an atapi drive or is atapi compatible.
|
||
*/
|
||
uint8_t buf[22];
|
||
if (DRIVER_OP_SUCCESS == mmc_mode_sense(p_cdio, buf, sizeof(buf),
|
||
CDIO_MMC_CAPABILITIES_PAGE) ) {
|
||
uint8_t *b = buf;
|
||
b+=b[3]+4;
|
||
if( CDIO_MMC_CAPABILITIES_PAGE == (b[0]&0x3F) ) {
|
||
/* MMC style drive! */
|
||
return yep;
|
||
}
|
||
}
|
||
}
|
||
|
||
/* Put these in the various drivers? If we get more, yes!
|
||
*/
|
||
#ifdef HAVE_LINUX_MAJOR_H
|
||
{
|
||
/* This too is from cdparanoia. */
|
||
struct stat st;
|
||
generic_img_private_t *p_env = p_cdio->env;
|
||
if ( 0 == lstat(p_env->source_name, &st) ) {
|
||
if (S_ISCHR(st.st_mode) || S_ISBLK(st.st_mode)) {
|
||
int drive_type=(int)(st.st_rdev>>8);
|
||
switch (drive_type) {
|
||
case IDE0_MAJOR:
|
||
case IDE1_MAJOR:
|
||
case IDE2_MAJOR:
|
||
case IDE3_MAJOR:
|
||
/* Yay, ATAPI... */
|
||
return yep;
|
||
break;
|
||
case CDU31A_CDROM_MAJOR:
|
||
case CDU535_CDROM_MAJOR:
|
||
case MATSUSHITA_CDROM_MAJOR:
|
||
case MATSUSHITA_CDROM2_MAJOR:
|
||
case MATSUSHITA_CDROM3_MAJOR:
|
||
case MATSUSHITA_CDROM4_MAJOR:
|
||
case SANYO_CDROM_MAJOR:
|
||
case MITSUMI_CDROM_MAJOR:
|
||
case MITSUMI_X_CDROM_MAJOR:
|
||
case OPTICS_CDROM_MAJOR:
|
||
case AZTECH_CDROM_MAJOR:
|
||
case GOLDSTAR_CDROM_MAJOR:
|
||
case CM206_CDROM_MAJOR:
|
||
case SCSI_CDROM_MAJOR:
|
||
case SCSI_GENERIC_MAJOR:
|
||
return nope;
|
||
break;
|
||
default:
|
||
return dunno;
|
||
}
|
||
}
|
||
}
|
||
}
|
||
#endif /*HAVE_LINUX_MAJOR_H*/
|
||
return dunno;
|
||
}
|
||
|
||
bool
|
||
cdio_have_driver(driver_id_t driver_id)
|
||
{
|
||
if (driver_id < CDIO_MIN_DRIVER ||
|
||
driver_id > CDIO_MAX_DRIVER)
|
||
return false;
|
||
return (*CdIo_all_drivers[driver_id].have_driver)();
|
||
}
|
||
|
||
bool
|
||
cdio_is_device(const char *psz_source, driver_id_t driver_id)
|
||
{
|
||
if (DRIVER_UNKNOWN == driver_id || DRIVER_DEVICE == driver_id) {
|
||
if (DRIVER_UNKNOWN == driver_id)
|
||
driver_id++;
|
||
else
|
||
driver_id = CDIO_MIN_DEVICE_DRIVER;
|
||
|
||
/* Scan for driver */
|
||
for ( ; driver_id<=CDIO_MAX_DRIVER; driver_id++) {
|
||
if ( (*CdIo_all_drivers[driver_id].have_driver)() &&
|
||
CdIo_all_drivers[driver_id].is_device ) {
|
||
return (*CdIo_all_drivers[driver_id].is_device)(psz_source);
|
||
}
|
||
}
|
||
}
|
||
if (CdIo_all_drivers[driver_id].is_device == NULL) return false;
|
||
return (*CdIo_all_drivers[driver_id].is_device)(psz_source);
|
||
}
|
||
|
||
|
||
/*! Sets up to read from place specified by source_name and
|
||
driver_id. This should be called before using any other routine,
|
||
except cdio_init. This will call cdio_init, if that hasn't been
|
||
done previously.
|
||
|
||
NULL is returned on error.
|
||
*/
|
||
CdIo_t *
|
||
cdio_open (const char *orig_source_name, driver_id_t driver_id)
|
||
{
|
||
return cdio_open_am(orig_source_name, driver_id, NULL);
|
||
}
|
||
|
||
/*! Sets up to read from place specified by source_name and
|
||
driver_id. This should be called before using any other routine,
|
||
except cdio_init. This will call cdio_init, if that hasn't been
|
||
done previously.
|
||
|
||
NULL is returned on error.
|
||
*/
|
||
CdIo_t *
|
||
cdio_open_am (const char *psz_orig_source, driver_id_t driver_id,
|
||
const char *psz_access_mode)
|
||
{
|
||
char *psz_source;
|
||
|
||
if (CdIo_last_driver == -1) cdio_init();
|
||
|
||
if (!psz_orig_source || !*psz_orig_source)
|
||
psz_source = cdio_get_default_device(NULL);
|
||
else
|
||
psz_source = strdup(psz_orig_source);
|
||
|
||
switch (driver_id) {
|
||
case DRIVER_UNKNOWN:
|
||
{
|
||
CdIo_t *p_cdio=scan_for_driver(CDIO_MIN_DRIVER, CDIO_MAX_DRIVER,
|
||
psz_source, psz_access_mode);
|
||
free(psz_source);
|
||
return p_cdio;
|
||
}
|
||
case DRIVER_DEVICE:
|
||
{
|
||
/* Scan for a driver. */
|
||
CdIo_t *ret = cdio_open_am_cd(psz_source, psz_access_mode);
|
||
free(psz_source);
|
||
return ret;
|
||
}
|
||
break;
|
||
case DRIVER_AIX:
|
||
case DRIVER_BSDI:
|
||
case DRIVER_FREEBSD:
|
||
case DRIVER_LINUX:
|
||
case DRIVER_NETBSD:
|
||
case DRIVER_SOLARIS:
|
||
case DRIVER_WIN32:
|
||
case DRIVER_OSX:
|
||
case DRIVER_OS2:
|
||
case DRIVER_NRG:
|
||
case DRIVER_BINCUE:
|
||
case DRIVER_CDRDAO:
|
||
if ((*CdIo_all_drivers[driver_id].have_driver)()) {
|
||
CdIo_t *ret =
|
||
(*CdIo_all_drivers[driver_id].driver_open_am)(psz_source,
|
||
psz_access_mode);
|
||
if (ret) ret->driver_id = driver_id;
|
||
free(psz_source);
|
||
return ret;
|
||
}
|
||
}
|
||
|
||
free(psz_source);
|
||
return NULL;
|
||
}
|
||
|
||
|
||
/*!
|
||
Set up CD-ROM for reading. The device_name is
|
||
the some sort of device name.
|
||
|
||
@return the cdio object for subsequent operations.
|
||
NULL on error or there is no driver for a some sort of hardware CD-ROM.
|
||
*/
|
||
CdIo_t *
|
||
cdio_open_cd (const char *psz_source)
|
||
{
|
||
return cdio_open_am_cd(psz_source, NULL);
|
||
}
|
||
|
||
/*!
|
||
Set up CD-ROM for reading. The device_name is
|
||
the some sort of device name.
|
||
|
||
@return the cdio object for subsequent operations.
|
||
NULL on error or there is no driver for a some sort of hardware CD-ROM.
|
||
*/
|
||
/* In the future we'll have more complicated code to allow selection
|
||
of an I/O routine as well as code to find an appropriate default
|
||
routine among the "registered" routines. Possibly classes too
|
||
disk-based, SCSI-based, native-based, vendor (e.g. Sony, or
|
||
Plextor) based
|
||
|
||
For now though, we'll start more simply...
|
||
*/
|
||
CdIo_t *
|
||
cdio_open_am_cd (const char *psz_source, const char *psz_access_mode)
|
||
{
|
||
if (CdIo_last_driver == -1) cdio_init();
|
||
|
||
/* Scan for a driver. */
|
||
return scan_for_driver(CDIO_MIN_DEVICE_DRIVER, CDIO_MAX_DEVICE_DRIVER,
|
||
psz_source, psz_access_mode);
|
||
}
|
||
|
||
/*!
|
||
Set the blocksize for subsequent reads.
|
||
*/
|
||
driver_return_code_t
|
||
cdio_set_blocksize ( const CdIo_t *p_cdio, int i_blocksize )
|
||
{
|
||
if (!p_cdio) return DRIVER_OP_UNINIT;
|
||
if (p_cdio->op.set_blocksize) return DRIVER_OP_UNSUPPORTED;
|
||
return p_cdio->op.set_blocksize(p_cdio->env, i_blocksize);
|
||
}
|
||
|
||
/*!
|
||
Set the drive speed.
|
||
|
||
@param p_cdio CD structure set by cdio_open().
|
||
@param i_drive_speed speed in CD-ROM speed units. Note this
|
||
not Kbs as would be used in the MMC spec or
|
||
in mmc_set_speed(). To convert CD-ROM speed units
|
||
to Kbs, multiply the number by 176 (for raw data)
|
||
and by 150 (for filesystem data). On many CD-ROM
|
||
drives, specifying a value too large will result
|
||
in using the fastest speed.
|
||
|
||
@see mmc_set_speed and mmc_set_drive_speed
|
||
*/
|
||
driver_return_code_t
|
||
cdio_set_speed (const CdIo_t *p_cdio, int i_speed)
|
||
{
|
||
if (!p_cdio) return DRIVER_OP_UNINIT;
|
||
if (!p_cdio->op.set_speed) return DRIVER_OP_UNSUPPORTED;
|
||
return p_cdio->op.set_speed(p_cdio->env, i_speed);
|
||
}
|
||
|
||
|
||
/*
|
||
* Local variables:
|
||
* c-file-style: "gnu"
|
||
* tab-width: 8
|
||
* indent-tabs-mode: nil
|
||
* End:
|
||
*/
|