819 lines
23 KiB
C
819 lines
23 KiB
C
/*
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Copyright (C) 2004, 2005, 2008, 2009, 2010, 2011
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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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/* This file contains Win32-specific code and implements low-level
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control of the CD drive via the ASPI API.
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Inspired by vlc's cdrom.h code
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*/
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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# define __CDIO_CONFIG_H__ 1
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#endif
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#include <cdio/cdio.h>
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#include <cdio/sector.h>
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#include <cdio/util.h>
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#include <cdio/mmc.h>
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#include "cdio_assert.h"
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#include <string.h>
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#ifdef HAVE_WIN32_CDROM
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#include <ctype.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <errno.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <windows.h>
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#include "win32.h"
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#include <sys/stat.h>
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#include <sys/types.h>
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#include "aspi32.h"
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#include "cdtext_private.h"
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/* Amount of time we are willing to wait for an operation to complete.
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10 seconds?
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*/
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#define OP_TIMEOUT_MS 10000
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static const
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char *aspierror(int nErrorCode)
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{
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switch (nErrorCode)
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{
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case SS_PENDING:
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return "SRB being processed";
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break;
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case SS_COMP:
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return "SRB completed without error";
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break;
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case SS_ABORTED:
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return "SRB aborted";
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break;
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case SS_ABORT_FAIL:
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return "Unable to abort SRB";
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break;
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case SS_ERR:
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return "SRB completed with error";
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break;
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case SS_INVALID_CMD:
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return "Invalid ASPI command";
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break;
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case SS_INVALID_HA:
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return "Invalid host adapter number";
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break;
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case SS_NO_DEVICE:
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return "SCSI device not installed";
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break;
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case SS_INVALID_SRB:
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return "Invalid parameter set in SRB";
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break;
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case SS_OLD_MANAGER:
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return "ASPI manager doesn't support";
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break;
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case SS_ILLEGAL_MODE:
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return "Unsupported MS Windows mode";
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break;
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case SS_NO_ASPI:
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return "No ASPI managers";
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break;
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case SS_FAILED_INIT:
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return "ASPI for windows failed init";
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break;
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case SS_ASPI_IS_BUSY:
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return "No resources available to execute command.";
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break;
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case SS_BUFFER_TOO_BIG:
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return "Buffer size is too big to handle.";
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break;
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case SS_MISMATCHED_COMPONENTS:
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return "The DLLs/EXEs of ASPI don't version check";
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break;
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case SS_NO_ADAPTERS:
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return "No host adapters found";
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break;
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case SS_INSUFFICIENT_RESOURCES:
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return "Couldn't allocate resources needed to init";
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break;
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case SS_ASPI_IS_SHUTDOWN:
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return "Call came to ASPI after PROCESS_DETACH";
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break;
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case SS_BAD_INSTALL:
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return "The DLL or other components are installed wrong.";
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break;
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default:
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return "Unknown ASPI error.";
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}
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}
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/* General ioctl() CD-ROM command function */
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static bool
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mciSendCommand_aspi(int id, UINT msg, DWORD flags, void *arg)
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{
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MCIERROR mci_error;
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mci_error = mciSendCommand(id, msg, flags, (DWORD)arg);
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if ( mci_error ) {
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char error[256];
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mciGetErrorString(mci_error, error, 256);
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cdio_warn("mciSendCommand() error: %s", error);
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}
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return(mci_error == 0);
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}
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/*
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See if the ASPI DLL is loadable. If so pointers are returned
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and we return true. Return false if there was a problem.
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*/
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static bool
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have_aspi( HMODULE *hASPI,
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long (**lpGetSupport)( void ),
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long (**lpSendCommand)( void* ) )
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{
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/* check if aspi is available */
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*hASPI = LoadLibrary( "wnaspi32.dll" );
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if( *hASPI == NULL ) {
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cdio_warn("Unable to load ASPI DLL");
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return false;
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}
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*lpGetSupport = (void *) GetProcAddress( *hASPI,
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"GetASPI32SupportInfo" );
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*lpSendCommand = (void *) GetProcAddress( *hASPI,
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"SendASPI32Command" );
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/* make sure that we've got both function addresses */
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if( *lpGetSupport == NULL || *lpSendCommand == NULL ) {
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cdio_debug("Unable to get ASPI function pointers");
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FreeLibrary( *hASPI );
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return false;
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}
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return true;
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}
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/*!
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Get disc type associated with cd object.
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*/
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discmode_t
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get_discmode_aspi (_img_private_t *p_env)
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{
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track_t i_track;
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discmode_t discmode=CDIO_DISC_MODE_NO_INFO;
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/* See if this is a DVD. */
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cdio_dvd_struct_t dvd; /* DVD READ STRUCT for layer 0. */
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dvd.physical.type = CDIO_DVD_STRUCT_PHYSICAL;
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dvd.physical.layer_num = 0;
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if (0 == mmc_get_dvd_struct_physical_private (p_env, &run_mmc_cmd_aspi,
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&dvd)) {
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switch(dvd.physical.layer[0].book_type) {
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case CDIO_DVD_BOOK_DVD_ROM: return CDIO_DISC_MODE_DVD_ROM;
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case CDIO_DVD_BOOK_DVD_RAM: return CDIO_DISC_MODE_DVD_RAM;
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case CDIO_DVD_BOOK_DVD_R: return CDIO_DISC_MODE_DVD_R;
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case CDIO_DVD_BOOK_DVD_RW: return CDIO_DISC_MODE_DVD_RW;
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case CDIO_DVD_BOOK_DVD_PR: return CDIO_DISC_MODE_DVD_PR;
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case CDIO_DVD_BOOK_DVD_PRW: return CDIO_DISC_MODE_DVD_PRW;
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default: return CDIO_DISC_MODE_DVD_OTHER;
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}
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}
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if (!p_env->gen.toc_init)
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read_toc_aspi (p_env);
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if (!p_env->gen.toc_init)
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return CDIO_DISC_MODE_NO_INFO;
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for (i_track = p_env->gen.i_first_track;
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i_track < p_env->gen.i_first_track + p_env->gen.i_tracks ;
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i_track ++) {
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track_format_t track_fmt=get_track_format_aspi(p_env, i_track);
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switch(track_fmt) {
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case TRACK_FORMAT_AUDIO:
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switch(discmode) {
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case CDIO_DISC_MODE_NO_INFO:
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discmode = CDIO_DISC_MODE_CD_DA;
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break;
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case CDIO_DISC_MODE_CD_DA:
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case CDIO_DISC_MODE_CD_MIXED:
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case CDIO_DISC_MODE_ERROR:
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/* No change*/
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break;
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default:
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discmode = CDIO_DISC_MODE_CD_MIXED;
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}
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break;
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case TRACK_FORMAT_XA:
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switch(discmode) {
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case CDIO_DISC_MODE_NO_INFO:
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discmode = CDIO_DISC_MODE_CD_XA;
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break;
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case CDIO_DISC_MODE_CD_XA:
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case CDIO_DISC_MODE_CD_MIXED:
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case CDIO_DISC_MODE_ERROR:
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/* No change*/
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break;
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default:
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discmode = CDIO_DISC_MODE_CD_MIXED;
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}
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break;
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case TRACK_FORMAT_DATA:
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switch(discmode) {
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case CDIO_DISC_MODE_NO_INFO:
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discmode = CDIO_DISC_MODE_CD_DATA;
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break;
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case CDIO_DISC_MODE_CD_DATA:
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case CDIO_DISC_MODE_CD_MIXED:
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case CDIO_DISC_MODE_ERROR:
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/* No change*/
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break;
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default:
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discmode = CDIO_DISC_MODE_CD_MIXED;
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}
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break;
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case TRACK_FORMAT_ERROR:
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default:
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discmode = CDIO_DISC_MODE_ERROR;
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}
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}
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return discmode;
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}
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const char *
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is_cdrom_aspi(const char drive_letter)
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{
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static char psz_win32_drive[7];
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HMODULE hASPI = NULL;
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long (*lpGetSupport)( void ) = NULL;
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long (*lpSendCommand)( void* ) = NULL;
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DWORD dwSupportInfo;
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int i_adapter, i_hostadapters;
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char c_drive;
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int i_rc;
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if ( !have_aspi(&hASPI, &lpGetSupport, &lpSendCommand) )
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return NULL;
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/* ASPI support seems to be there. */
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dwSupportInfo = lpGetSupport();
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i_rc = HIBYTE( LOWORD ( dwSupportInfo ) );
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if( SS_COMP != i_rc ) {
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cdio_debug("ASPI: %s", aspierror(i_rc));
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FreeLibrary( hASPI );
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return NULL;
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}
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i_hostadapters = LOBYTE( LOWORD( dwSupportInfo ) );
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if( i_hostadapters == 0 ) {
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FreeLibrary( hASPI );
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return NULL;
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}
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c_drive = toupper(drive_letter) - 'A';
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for( i_adapter = 0; i_adapter < i_hostadapters; i_adapter++ ) {
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struct SRB_GetDiskInfo srbDiskInfo;
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int i_target;
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SRB_HAInquiry srbInquiry;
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srbInquiry.SRB_Cmd = SC_HA_INQUIRY;
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srbInquiry.SRB_HaId = i_adapter;
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lpSendCommand( (void*) &srbInquiry );
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if( srbInquiry.SRB_Status != SS_COMP ) continue;
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if( !srbInquiry.HA_Unique[3]) srbInquiry.HA_Unique[3]=8;
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for(i_target=0; i_target < srbInquiry.HA_Unique[3]; i_target++)
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{
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int i_lun;
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for( i_lun=0; i_lun<8; i_lun++)
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{
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srbDiskInfo.SRB_Cmd = SC_GET_DISK_INFO;
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srbDiskInfo.SRB_Flags = 0;
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srbDiskInfo.SRB_Hdr_Rsvd = 0;
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srbDiskInfo.SRB_HaId = i_adapter;
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srbDiskInfo.SRB_Target = i_target;
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srbDiskInfo.SRB_Lun = i_lun;
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lpSendCommand( (void*) &srbDiskInfo );
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if( (srbDiskInfo.SRB_Status == SS_COMP) &&
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(srbDiskInfo.SRB_Int13HDriveInfo == c_drive) ) {
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/* Make sure this is a CD-ROM device. */
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struct SRB_GDEVBlock srbGDEVBlock;
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memset( &srbGDEVBlock, 0, sizeof(struct SRB_GDEVBlock) );
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srbGDEVBlock.SRB_Cmd = SC_GET_DEV_TYPE;
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srbDiskInfo.SRB_HaId = i_adapter;
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srbGDEVBlock.SRB_Target = i_target;
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srbGDEVBlock.SRB_Lun = i_lun;
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lpSendCommand( (void*) &srbGDEVBlock );
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if( ( srbGDEVBlock.SRB_Status == SS_COMP ) &&
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( srbGDEVBlock.SRB_DeviceType == DTYPE_CDROM ) ) {
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sprintf( psz_win32_drive, "%c:", drive_letter );
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FreeLibrary( hASPI );
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return(psz_win32_drive);
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}
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}
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}
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}
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}
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FreeLibrary( hASPI );
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return NULL;
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}
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/*!
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Initialize CD device.
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*/
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bool
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init_aspi (_img_private_t *env)
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{
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HMODULE hASPI = NULL;
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long (*lpGetSupport)( void ) = NULL;
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long (*lpSendCommand)( void* ) = NULL;
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DWORD dwSupportInfo;
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int i_adapter, i_hostadapters;
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char c_drive;
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int i_rc;
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if (2 == strlen(env->gen.source_name) && isalpha(env->gen.source_name[0]) )
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{
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c_drive = env->gen.source_name[0];
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} else if ( 6 == strlen(env->gen.source_name)
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&& isalpha(env->gen.source_name[4] )) {
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c_drive = env->gen.source_name[4];
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} else {
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c_drive = 'C';
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}
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if ( !have_aspi(&hASPI, &lpGetSupport, &lpSendCommand) )
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return false;
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/* ASPI support seems to be there. */
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dwSupportInfo = lpGetSupport();
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i_rc = HIBYTE( LOWORD ( dwSupportInfo ) );
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if( SS_COMP != i_rc ) {
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cdio_info("ASPI: %s", aspierror(i_rc));
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FreeLibrary( hASPI );
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return false;
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}
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i_hostadapters = LOBYTE( LOWORD( dwSupportInfo ) );
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if( i_hostadapters == 0 ) {
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FreeLibrary( hASPI );
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return false;
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}
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c_drive = toupper(c_drive) - 'A';
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for( i_adapter = 0; i_adapter < i_hostadapters; i_adapter++ ) {
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struct SRB_GetDiskInfo srbDiskInfo;
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int i_target;
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SRB_HAInquiry srbInquiry;
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srbInquiry.SRB_Cmd = SC_HA_INQUIRY;
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srbInquiry.SRB_HaId = i_adapter;
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lpSendCommand( (void*) &srbInquiry );
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if( srbInquiry.SRB_Status != SS_COMP ) continue;
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if( !srbInquiry.HA_Unique[3]) srbInquiry.HA_Unique[3]=8;
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for(i_target=0; i_target < srbInquiry.HA_Unique[3]; i_target++)
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{
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int i_lun;
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for (i_lun = 0; i_lun < 8; i_lun++ ) {
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||
srbDiskInfo.SRB_Cmd = SC_GET_DISK_INFO;
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||
srbDiskInfo.SRB_Flags = 0;
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srbDiskInfo.SRB_Hdr_Rsvd = 0;
|
||
srbDiskInfo.SRB_HaId = i_adapter;
|
||
srbDiskInfo.SRB_Target = i_target;
|
||
srbDiskInfo.SRB_Lun = i_lun;
|
||
|
||
lpSendCommand( (void*) &srbDiskInfo );
|
||
|
||
if( (srbDiskInfo.SRB_Status == SS_COMP) ) {
|
||
|
||
if (srbDiskInfo.SRB_Int13HDriveInfo != c_drive)
|
||
{
|
||
continue;
|
||
} else {
|
||
/* Make sure this is a CD-ROM device. */
|
||
struct SRB_GDEVBlock srbGDEVBlock;
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||
|
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memset( &srbGDEVBlock, 0, sizeof(struct SRB_GDEVBlock) );
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srbGDEVBlock.SRB_Cmd = SC_GET_DEV_TYPE;
|
||
srbGDEVBlock.SRB_HaId = i_adapter;
|
||
srbGDEVBlock.SRB_Target = i_target;
|
||
|
||
lpSendCommand( (void*) &srbGDEVBlock );
|
||
|
||
if( ( srbGDEVBlock.SRB_Status == SS_COMP ) &&
|
||
( srbGDEVBlock.SRB_DeviceType == DTYPE_CDROM ) ) {
|
||
env->i_sid = MAKEWORD( i_adapter, i_target );
|
||
env->hASPI = (long)hASPI;
|
||
env->lpSendCommand = lpSendCommand;
|
||
env->b_aspi_init = true;
|
||
env->i_lun = i_lun;
|
||
cdio_debug("Using ASPI layer for %s",
|
||
env->gen.source_name);
|
||
|
||
return true;
|
||
} else {
|
||
FreeLibrary( hASPI );
|
||
cdio_debug( "%s: is not a CD-ROM drive",
|
||
env->gen.source_name );
|
||
return false;
|
||
}
|
||
}
|
||
}
|
||
}
|
||
}
|
||
}
|
||
|
||
FreeLibrary( hASPI );
|
||
cdio_info( "Unable to find host adapter id and target (ASPI) for %s",
|
||
env->gen.source_name );
|
||
return false;
|
||
}
|
||
|
||
/*!
|
||
Run a SCSI MMC command.
|
||
|
||
env private CD structure
|
||
i_timeout_ms time in milliseconds we will wait for the command
|
||
to complete. If this value is -1, use the default
|
||
time-out value.
|
||
p_buf Buffer for data, both sending and receiving
|
||
i_buf Size of buffer
|
||
e_direction direction the transfer is to go.
|
||
cdb CDB bytes. All values that are needed should be set on
|
||
input. We'll figure out what the right CDB length should be.
|
||
|
||
We return 0 if command completed successfully.
|
||
*/
|
||
int
|
||
run_mmc_cmd_aspi( void *p_user_data, unsigned int i_timeout_ms,
|
||
unsigned int i_cdb, const mmc_cdb_t * p_cdb,
|
||
cdio_mmc_direction_t e_direction,
|
||
unsigned int i_buf, /*in/out*/ void *p_buf )
|
||
{
|
||
_img_private_t *p_env = p_user_data;
|
||
HANDLE hEvent;
|
||
struct SRB_ExecSCSICmd ssc;
|
||
int sense_size;
|
||
|
||
/* Create the transfer completion event */
|
||
hEvent = CreateEvent( NULL, TRUE, FALSE, NULL );
|
||
if( hEvent == NULL ) {
|
||
cdio_info("CreateEvent failed");
|
||
return 1;
|
||
}
|
||
|
||
p_env->gen.scsi_mmc_sense_valid = 0;
|
||
memset( &ssc, 0, sizeof( ssc ) );
|
||
|
||
ssc.SRB_Cmd = SC_EXEC_SCSI_CMD;
|
||
|
||
ssc.SRB_Flags = SCSI_MMC_DATA_READ == e_direction ?
|
||
SRB_DIR_IN | SRB_EVENT_NOTIFY : SRB_DIR_OUT | SRB_EVENT_NOTIFY;
|
||
|
||
ssc.SRB_HaId = LOBYTE( p_env->i_sid );
|
||
ssc.SRB_Target = HIBYTE( p_env->i_sid );
|
||
ssc.SRB_Lun = p_env->i_lun;
|
||
ssc.SRB_SenseLen = SENSE_LEN;
|
||
|
||
ssc.SRB_PostProc = (LPVOID) hEvent;
|
||
ssc.SRB_CDBLen = i_cdb;
|
||
|
||
/* Result buffer */
|
||
ssc.SRB_BufPointer = p_buf;
|
||
ssc.SRB_BufLen = i_buf;
|
||
|
||
memcpy( ssc.CDBByte, p_cdb, i_cdb );
|
||
|
||
ResetEvent( hEvent );
|
||
p_env->lpSendCommand( (void*) &ssc );
|
||
|
||
/* If the command has still not been processed, wait until it's
|
||
* finished */
|
||
if( ssc.SRB_Status == SS_PENDING ) {
|
||
WaitForSingleObject( hEvent, msecs2secs(i_timeout_ms) );
|
||
}
|
||
CloseHandle( hEvent );
|
||
|
||
/* check that the transfer went as planned */
|
||
if( ssc.SRB_Status != SS_COMP ) {
|
||
cdio_info("ASPI: %s", aspierror(ssc.SRB_Status));
|
||
return DRIVER_OP_ERROR;
|
||
} else {
|
||
sense_size = ssc.SenseArea[7] + 8; /* SPC 4.5.3, Table 26:
|
||
252 bytes legal,
|
||
263 bytes possible */
|
||
if (sense_size > SENSE_LEN)
|
||
sense_size = SENSE_LEN;
|
||
memcpy((void *) p_env->gen.scsi_mmc_sense, ssc.SenseArea, sense_size);
|
||
p_env->gen.scsi_mmc_sense_valid = sense_size;
|
||
}
|
||
|
||
return DRIVER_OP_SUCCESS;
|
||
}
|
||
|
||
|
||
/*!
|
||
Reads nblocks sectors from cd device into data starting from lsn.
|
||
Returns 0 if no error.
|
||
*/
|
||
static int
|
||
read_sectors_aspi (_img_private_t *p_env, void *data, lsn_t lsn,
|
||
int sector_type, unsigned int nblocks)
|
||
{
|
||
mmc_cdb_t cdb = {{0, }};
|
||
unsigned int i_buf;
|
||
|
||
int sync = 0;
|
||
int header_code = 2;
|
||
int i_user_data = 1;
|
||
int edc_ecc = 0;
|
||
int error_field = 0;
|
||
|
||
#if 0
|
||
sector_type = 0; /*all types */
|
||
#endif
|
||
|
||
/* Set up passthrough command */
|
||
CDIO_MMC_SET_COMMAND (cdb.field, CDIO_MMC_GPCMD_READ_CD);
|
||
CDIO_MMC_SET_READ_TYPE (cdb.field, sector_type);
|
||
CDIO_MMC_SET_READ_LBA (cdb.field, lsn);
|
||
CDIO_MMC_SET_READ_LENGTH24(cdb.field, nblocks);
|
||
|
||
#if 1
|
||
cdb.field[ 9 ] = (sync << 7) |
|
||
(header_code << 5) |
|
||
(i_user_data << 4) |
|
||
(edc_ecc << 3) |
|
||
(error_field << 1);
|
||
/* ssc.CDBByte[ 9 ] = READ_CD_USERDATA_MODE2; */
|
||
#else
|
||
CDIO_MMC_SET_MAIN_CHANNEL_SELECTION_BITS(cmd,
|
||
CDIO_MMC_MCSB_ALL_HEADERS);
|
||
#endif
|
||
|
||
switch (sector_type) {
|
||
case CDIO_MMC_READ_TYPE_ANY:
|
||
case CDIO_MMC_READ_TYPE_CDDA:
|
||
i_buf = CDIO_CD_FRAMESIZE_RAW;
|
||
break;
|
||
case CDIO_MMC_READ_TYPE_M2F1:
|
||
i_buf = CDIO_CD_FRAMESIZE;
|
||
break;
|
||
case CDIO_MMC_READ_TYPE_M2F2:
|
||
i_buf = 2324;
|
||
break;
|
||
case CDIO_MMC_READ_TYPE_MODE1:
|
||
i_buf = CDIO_CD_FRAMESIZE;
|
||
break;
|
||
default:
|
||
i_buf = CDIO_CD_FRAMESIZE_RAW;
|
||
}
|
||
|
||
return run_mmc_cmd_aspi(p_env, OP_TIMEOUT_MS,
|
||
mmc_get_cmd_len(cdb.field[0]),
|
||
&cdb, SCSI_MMC_DATA_READ, i_buf*nblocks, data);
|
||
}
|
||
|
||
/*!
|
||
Reads an audio device into data starting from lsn.
|
||
Returns 0 if no error.
|
||
*/
|
||
int
|
||
read_audio_sectors_aspi (_img_private_t *p_env, void *data, lsn_t lsn,
|
||
unsigned int i_blocks)
|
||
{
|
||
if (read_sectors_aspi(p_env, data, lsn, CDIO_MMC_READ_TYPE_CDDA, i_blocks)) {
|
||
return read_sectors_aspi(p_env, data, lsn,
|
||
CDIO_MMC_READ_TYPE_ANY, i_blocks);
|
||
}
|
||
return 0;
|
||
}
|
||
|
||
/*!
|
||
Reads a single mode2 sector from cd device into data starting
|
||
from lsn. Returns 0 if no error.
|
||
*/
|
||
int
|
||
read_mode2_sector_aspi (_img_private_t *p_env, void *data, lsn_t lsn,
|
||
bool b_form2)
|
||
{
|
||
return read_sectors_aspi(p_env, data, lsn, b_form2
|
||
? CDIO_MMC_READ_TYPE_M2F2
|
||
: CDIO_MMC_READ_TYPE_M2F1,
|
||
1);
|
||
}
|
||
|
||
/*!
|
||
Reads a single mode2 sector from cd device into data starting
|
||
from lsn. Returns 0 if no error.
|
||
*/
|
||
int
|
||
read_mode1_sector_aspi (_img_private_t *p_env, void *data, lsn_t lsn,
|
||
bool b_form2)
|
||
{
|
||
return read_sectors_aspi(p_env, data, lsn, CDIO_MMC_READ_TYPE_MODE1, 1);
|
||
}
|
||
|
||
/*!
|
||
Read and cache the CD's Track Table of Contents and track info.
|
||
Return true if successful or false if an error.
|
||
*/
|
||
bool
|
||
read_toc_aspi (_img_private_t *p_env)
|
||
{
|
||
mmc_cdb_t cdb = {{0, }};
|
||
unsigned char tocheader[ 4 ];
|
||
int i_status;
|
||
|
||
/* Operation code */
|
||
CDIO_MMC_SET_COMMAND(cdb.field, CDIO_MMC_GPCMD_READ_TOC);
|
||
|
||
/* Format */
|
||
cdb.field[ 2 ] = CDIO_MMC_READTOC_FMT_TOC;
|
||
|
||
/* Starting track */
|
||
CDIO_MMC_SET_START_TRACK(cdb.field, 0);
|
||
|
||
CDIO_MMC_SET_READ_LENGTH16(cdb.field, sizeof(tocheader));
|
||
|
||
i_status = run_mmc_cmd_aspi (p_env, OP_TIMEOUT_MS,
|
||
mmc_get_cmd_len(cdb.field[0]),
|
||
&cdb, SCSI_MMC_DATA_READ,
|
||
sizeof(tocheader), &tocheader);
|
||
|
||
if (0 != i_status) return false;
|
||
|
||
p_env->gen.i_first_track = tocheader[2];
|
||
p_env->gen.i_tracks = tocheader[3] - tocheader[2] + 1;
|
||
|
||
{
|
||
int i, j, i_toclength;
|
||
unsigned char *p_fulltoc;
|
||
|
||
i_toclength = 4 /* header */ + tocheader[0] +
|
||
((unsigned int) tocheader[1] << 8);
|
||
|
||
p_fulltoc = malloc( i_toclength );
|
||
|
||
if( p_fulltoc == NULL ) {
|
||
cdio_error( "out of memory" );
|
||
return false;
|
||
}
|
||
|
||
CDIO_MMC_SET_READ_LENGTH16(cdb.field, i_toclength);
|
||
|
||
i_status = run_mmc_cmd_aspi (p_env, OP_TIMEOUT_MS,
|
||
mmc_get_cmd_len(cdb.field[0]),
|
||
&cdb, SCSI_MMC_DATA_READ,
|
||
i_toclength, p_fulltoc);
|
||
if( 0 != i_status ) {
|
||
p_env->gen.i_tracks = 0;
|
||
}
|
||
|
||
j = p_env->gen.i_first_track;
|
||
|
||
for( i = 0 ; i <= p_env->gen.i_tracks ; i++, j++ ) {
|
||
int i_index = 8 + 8 * i;
|
||
p_env->tocent[ i ].start_lsn = ((int)p_fulltoc[ i_index ] << 24) +
|
||
((int)p_fulltoc[ i_index+1 ] << 16) +
|
||
((int)p_fulltoc[ i_index+2 ] << 8) +
|
||
(int)p_fulltoc[ i_index+3 ];
|
||
p_env->tocent[i].Control = (UCHAR)p_fulltoc[ 1 + 8 * i ];
|
||
|
||
set_track_flags(&(p_env->gen.track_flags[j]), p_env->tocent[i].Control);
|
||
|
||
cdio_debug( "p_sectors: %i %lu",
|
||
i, (unsigned long int) p_env->tocent[i].start_lsn );
|
||
}
|
||
|
||
free( p_fulltoc );
|
||
}
|
||
|
||
p_env->gen.toc_init = true;
|
||
return true;
|
||
}
|
||
|
||
/* Eject media will eventually get removed from _cdio_win32.c */
|
||
#if 0
|
||
/*!
|
||
Eject media. Return 1 if successful, 0 otherwise.
|
||
*/
|
||
int
|
||
wnaspi32_eject_media (void *user_data) {
|
||
|
||
_img_private_t *env = user_data;
|
||
|
||
|
||
MCI_OPEN_PARMS op;
|
||
MCI_STATUS_PARMS st;
|
||
DWORD i_flags;
|
||
char psz_drive[4];
|
||
int ret;
|
||
|
||
memset( &op, 0, sizeof(MCI_OPEN_PARMS) );
|
||
op.lpstrDeviceType = (LPCSTR)MCI_DEVTYPE_CD_AUDIO;
|
||
strcpy( psz_drive, "X:" );
|
||
psz_drive[0] = env->gen.source_name[0];
|
||
op.lpstrElementName = psz_drive;
|
||
|
||
/* Set the flags for the device type */
|
||
i_flags = MCI_OPEN_TYPE | MCI_OPEN_TYPE_ID |
|
||
MCI_OPEN_ELEMENT | MCI_OPEN_SHAREABLE;
|
||
|
||
if( mciSendCommand_aspi( 0, MCI_OPEN, i_flags, &op ) ) {
|
||
st.dwItem = MCI_STATUS_READY;
|
||
/* Eject disc */
|
||
ret = mciSendCommand_aspi( op.wDeviceID, MCI_SET,
|
||
MCI_SET_DOOR_OPEN, 0 ) != 0;
|
||
/* Release access to the device */
|
||
mciSendCommand_aspi( op.wDeviceID, MCI_CLOSE, MCI_WAIT, 0 );
|
||
} else
|
||
ret = 0;
|
||
|
||
return ret;
|
||
}
|
||
#endif
|
||
|
||
/*!
|
||
Get format of track.
|
||
*/
|
||
track_format_t
|
||
get_track_format_aspi(const _img_private_t *p_env, track_t track_num)
|
||
{
|
||
MCI_OPEN_PARMS op;
|
||
MCI_STATUS_PARMS st;
|
||
DWORD i_flags;
|
||
int ret;
|
||
|
||
memset( &op, 0, sizeof(MCI_OPEN_PARMS) );
|
||
op.lpstrDeviceType = (LPCSTR)MCI_DEVTYPE_CD_AUDIO;
|
||
op.lpstrElementName = p_env->gen.source_name;
|
||
|
||
/* Set the flags for the device type */
|
||
i_flags = MCI_OPEN_TYPE | MCI_OPEN_TYPE_ID |
|
||
MCI_OPEN_ELEMENT | MCI_OPEN_SHAREABLE;
|
||
|
||
if( mciSendCommand_aspi( 0, MCI_OPEN, i_flags, &op ) ) {
|
||
st.dwItem = MCI_CDA_STATUS_TYPE_TRACK;
|
||
st.dwTrack = track_num;
|
||
i_flags = MCI_TRACK | MCI_STATUS_ITEM ;
|
||
ret = mciSendCommand_aspi( op.wDeviceID, MCI_STATUS, i_flags, &st );
|
||
|
||
/* Release access to the device */
|
||
mciSendCommand_aspi( op.wDeviceID, MCI_CLOSE, MCI_WAIT, 0 );
|
||
|
||
switch(st.dwReturn) {
|
||
case MCI_CDA_TRACK_AUDIO:
|
||
return TRACK_FORMAT_AUDIO;
|
||
case MCI_CDA_TRACK_OTHER:
|
||
return TRACK_FORMAT_DATA;
|
||
default:
|
||
return TRACK_FORMAT_XA;
|
||
}
|
||
}
|
||
return TRACK_FORMAT_ERROR;
|
||
}
|
||
|
||
#endif /* HAVE_WIN32_CDROM */
|