ntdll: Moved stack allocation for thread and process to a common routine in virtual.c.
[wine] / dlls / ntdll / cdrom.c
1 /* -*- tab-width: 8; c-basic-offset: 4 -*- */
2 /* Main file for CD-ROM support
3  *
4  * Copyright 1994 Martin Ayotte
5  * Copyright 1999, 2001, 2003 Eric Pouech
6  * Copyright 2000 Andreas Mohr
7  * Copyright 2005 Ivan Leo Puoti
8  *
9  * This library is free software; you can redistribute it and/or
10  * modify it under the terms of the GNU Lesser General Public
11  * License as published by the Free Software Foundation; either
12  * version 2.1 of the License, or (at your option) any later version.
13  *
14  * This library is distributed in the hope that it will be useful,
15  * but WITHOUT ANY WARRANTY; without even the implied warranty of
16  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
17  * Lesser General Public License for more details.
18  *
19  * You should have received a copy of the GNU Lesser General Public
20  * License along with this library; if not, write to the Free Software
21  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
22  */
23
24 #include "config.h"
25 #include "wine/port.h"
26
27 #include <errno.h>
28 #include <string.h>
29 #include <stdarg.h>
30 #include <stdio.h>
31 #ifdef HAVE_IO_H
32 # include <io.h>
33 #endif
34 #ifdef HAVE_UNISTD_H
35 # include <unistd.h>
36 #endif
37 #include <fcntl.h>
38 #ifdef HAVE_SYS_STAT_H
39 # include <sys/stat.h>
40 #endif
41 #include <sys/types.h>
42
43 #ifdef HAVE_SYS_IOCTL_H
44 #include <sys/ioctl.h>
45 #endif
46 #ifdef HAVE_SCSI_SG_H
47 # include <scsi/sg.h>
48 #endif
49 #ifdef HAVE_SCSI_SCSI_H
50 # include <scsi/scsi.h>
51 # undef REASSIGN_BLOCKS  /* avoid conflict with winioctl.h */
52 # undef FAILED           /* avoid conflict with winerror.h */
53 #endif
54 #ifdef HAVE_SCSI_SCSI_IOCTL_H
55 # include <scsi/scsi_ioctl.h>
56 #endif
57 #ifdef HAVE_LINUX_MAJOR_H
58 # include <linux/major.h>
59 #endif
60 #ifdef HAVE_LINUX_HDREG_H
61 # include <linux/hdreg.h>
62 #endif
63 #ifdef HAVE_LINUX_PARAM_H
64 # include <linux/param.h>
65 #endif
66 #ifdef HAVE_LINUX_CDROM_H
67 # include <linux/cdrom.h>
68 #endif
69 #ifdef HAVE_LINUX_UCDROM_H
70 # include <linux/ucdrom.h>
71 #endif
72 #ifdef HAVE_SYS_CDIO_H
73 # include <sys/cdio.h>
74 #endif
75 #ifdef HAVE_SYS_SCSIIO_H
76 # include <sys/scsiio.h>
77 #endif
78
79 #ifdef HAVE_IOKIT_IOKITLIB_H
80 # include <sys/disk.h>
81 # include <IOKit/IOKitLib.h>
82 # include <IOKit/storage/IOMedia.h>
83 # include <IOKit/storage/IOCDMediaBSDClient.h>
84 # include <IOKit/scsi/SCSICmds_REQUEST_SENSE_Defs.h>
85 # define SENSEBUFLEN kSenseDefaultSize
86 #endif
87
88 #define NONAMELESSUNION
89 #define NONAMELESSSTRUCT
90 #include "ntstatus.h"
91 #define WIN32_NO_STATUS
92 #include "windef.h"
93 #include "winternl.h"
94 #include "winioctl.h"
95 #include "ntddstor.h"
96 #include "ntddcdrm.h"
97 #include "ddk/ntddcdvd.h"
98 #include "ntddscsi.h"
99 #include "ntdll_misc.h"
100 #include "wine/server.h"
101 #include "wine/library.h"
102 #include "wine/debug.h"
103
104 WINE_DEFAULT_DEBUG_CHANNEL(cdrom);
105
106 /* Non-Linux systems do not have linux/cdrom.h and the like, and thus
107    lack the following constants. */
108
109 #ifndef CD_SECS
110 # define CD_SECS              60 /* seconds per minute */
111 #endif
112 #ifndef CD_FRAMES
113 # define CD_FRAMES            75 /* frames per second */
114 #endif
115
116 static const struct iocodexs
117 {
118   DWORD code;
119   const char *codex;
120 } iocodextable[] = {
121 #define X(x) { x, #x },
122 X(IOCTL_CDROM_CHECK_VERIFY)
123 X(IOCTL_CDROM_CURRENT_POSITION)
124 X(IOCTL_CDROM_DISK_TYPE)
125 X(IOCTL_CDROM_GET_CONTROL)
126 X(IOCTL_CDROM_GET_DRIVE_GEOMETRY)
127 X(IOCTL_CDROM_GET_VOLUME)
128 X(IOCTL_CDROM_LOAD_MEDIA)
129 X(IOCTL_CDROM_MEDIA_CATALOG)
130 X(IOCTL_CDROM_MEDIA_REMOVAL)
131 X(IOCTL_CDROM_PAUSE_AUDIO)
132 X(IOCTL_CDROM_PLAY_AUDIO_MSF)
133 X(IOCTL_CDROM_RAW_READ)
134 X(IOCTL_CDROM_READ_Q_CHANNEL)
135 X(IOCTL_CDROM_READ_TOC)
136 X(IOCTL_CDROM_RESUME_AUDIO)
137 X(IOCTL_CDROM_SEEK_AUDIO_MSF)
138 X(IOCTL_CDROM_SET_VOLUME)
139 X(IOCTL_CDROM_STOP_AUDIO)
140 X(IOCTL_CDROM_TRACK_ISRC)
141 X(IOCTL_DISK_MEDIA_REMOVAL)
142 X(IOCTL_DVD_END_SESSION)
143 X(IOCTL_DVD_GET_REGION)
144 X(IOCTL_DVD_READ_KEY)
145 X(IOCTL_DVD_READ_STRUCTURE)
146 X(IOCTL_DVD_SEND_KEY)
147 X(IOCTL_DVD_START_SESSION)
148 X(IOCTL_SCSI_GET_ADDRESS)
149 X(IOCTL_SCSI_GET_CAPABILITIES)
150 X(IOCTL_SCSI_GET_INQUIRY_DATA)
151 X(IOCTL_SCSI_PASS_THROUGH)
152 X(IOCTL_SCSI_PASS_THROUGH_DIRECT)
153 X(IOCTL_STORAGE_CHECK_VERIFY)
154 X(IOCTL_STORAGE_EJECTION_CONTROL)
155 X(IOCTL_STORAGE_EJECT_MEDIA)
156 X(IOCTL_STORAGE_GET_DEVICE_NUMBER)
157 X(IOCTL_STORAGE_LOAD_MEDIA)
158 X(IOCTL_STORAGE_MEDIA_REMOVAL)
159 X(IOCTL_STORAGE_RESET_DEVICE)
160 #undef X
161 };
162 static const char *iocodex(DWORD code)
163 {
164    unsigned int i;
165    static char buffer[25];
166    for(i=0; i<sizeof(iocodextable)/sizeof(struct iocodexs); i++)
167       if (code==iocodextable[i].code)
168          return iocodextable[i].codex;
169    sprintf(buffer, "IOCTL_CODE_%x", (int)code);
170    return buffer;
171 }
172
173 #define INQ_REPLY_LEN 36
174 #define INQ_CMD_LEN 6
175
176 #define FRAME_OF_ADDR(a) (((int)(a)[1] * CD_SECS + (a)[2]) * CD_FRAMES + (a)[3])
177 #define FRAME_OF_MSF(a) (((int)(a).M * CD_SECS + (a).S) * CD_FRAMES + (a).F)
178 #define FRAME_OF_TOC(toc, idx)  FRAME_OF_ADDR((toc).TrackData[idx - (toc).FirstTrack].Address)
179 #define MSF_OF_FRAME(m,fr) {int f=(fr); ((UCHAR *)&(m))[2]=f%CD_FRAMES;f/=CD_FRAMES;((UCHAR *)&(m))[1]=f%CD_SECS;((UCHAR *)&(m))[0]=f/CD_SECS;}
180
181 /* The documented format of DVD_LAYER_DESCRIPTOR is wrong. Even the format in the
182  * DDK's header is wrong. There are four bytes at the start which always seem to
183  * follow the sequence "02 08 00 00".
184  */
185 typedef struct
186 {
187     UCHAR MagicHeader[4];
188     UCHAR BookVersion : 4;
189     UCHAR BookType : 4;
190     UCHAR MinimumRate : 4;
191     UCHAR DiskSize : 4;
192     UCHAR LayerType : 4;
193     UCHAR TrackPath : 1;
194     UCHAR NumberOfLayers : 2;
195     UCHAR Reserved1 : 1;
196     UCHAR TrackDensity : 4;
197     UCHAR LinearDensity : 4;
198     ULONG StartingDataSector;
199     ULONG EndDataSector;
200     ULONG EndLayerZeroSector;
201     UCHAR Reserved5 : 7;
202     UCHAR BCAFlag : 1;
203     UCHAR Reserved6;
204 } internal_dvd_layer_descriptor;
205
206
207 static NTSTATUS CDROM_ReadTOC(int, int, CDROM_TOC*);
208 static NTSTATUS CDROM_GetStatusCode(int);
209
210
211 #ifdef linux
212
213 # ifndef IDE6_MAJOR
214 #  define IDE6_MAJOR 88
215 # endif
216 # ifndef IDE7_MAJOR
217 #  define IDE7_MAJOR 89
218 # endif
219
220 # ifdef CDROM_SEND_PACKET
221 /* structure for CDROM_PACKET_COMMAND ioctl */
222 /* not all Linux versions have all the fields, so we define the
223  * structure ourselves to make sure */
224 struct linux_cdrom_generic_command
225 {
226     unsigned char          cmd[CDROM_PACKET_SIZE];
227     unsigned char         *buffer;
228     unsigned int           buflen;
229     int                    stat;
230     struct request_sense  *sense;
231     unsigned char          data_direction;
232     int                    quiet;
233     int                    timeout;
234     void                  *reserved[1];
235 };
236 # endif  /* CDROM_SEND_PACKET */
237
238 #endif  /* linux */
239
240 /* FIXME: this is needed because we can't open simultaneously several times /dev/cdrom
241  * this should be removed when a proper device interface is implemented
242  * 
243  * (WS) We need this to keep track of current position and to safely
244  * detect media changes. Besides this should provide a great speed up
245  * for toc inquiries.
246  */
247 struct cdrom_cache {
248     dev_t       device;
249     ino_t       inode;
250     char        toc_good; /* if false, will reread TOC from disk */
251     CDROM_TOC   toc;
252     SUB_Q_CURRENT_POSITION CurrentPosition;
253 };
254 /* who has more than 5 cdroms on his/her machine ?? */
255 /* FIXME: this should grow depending on the number of cdroms we install/configure 
256  * at startup
257  */
258 #define MAX_CACHE_ENTRIES       5
259 static struct cdrom_cache cdrom_cache[MAX_CACHE_ENTRIES];
260
261 static RTL_CRITICAL_SECTION cache_section;
262 static RTL_CRITICAL_SECTION_DEBUG critsect_debug =
263 {
264     0, 0, &cache_section,
265     { &critsect_debug.ProcessLocksList, &critsect_debug.ProcessLocksList },
266       0, 0, { (DWORD_PTR)(__FILE__ ": cache_section") }
267 };
268 static RTL_CRITICAL_SECTION cache_section = { &critsect_debug, -1, 0, 0, 0, 0 };
269
270 /* Proposed media change function: not really needed at this time */
271 /* This is a 1 or 0 type of function */
272 #if 0
273 static int CDROM_MediaChanged(int dev)
274 {
275    int i;
276
277    struct cdrom_tochdr  hdr;
278    struct cdrom_tocentry entry;
279
280    if (dev < 0 || dev >= MAX_CACHE_ENTRIES)
281       return 0;
282    if ( ioctl(cdrom_cache[dev].fd, CDROMREADTOCHDR, &hdr) == -1 )
283       return 0;
284
285    if ( memcmp(&hdr, &cdrom_cache[dev].hdr, sizeof(struct cdrom_tochdr)) )
286       return 1;
287
288    for (i=hdr.cdth_trk0; i<=hdr.cdth_trk1+1; i++)
289    {
290       if (i == hdr.cdth_trk1 + 1)
291       {
292          entry.cdte_track = CDROM_LEADOUT;
293       } else {
294          entry.cdte_track = i;
295       }
296       entry.cdte_format = CDROM_MSF;
297       if ( ioctl(cdrom_cache[dev].fd, CDROMREADTOCENTRY, &entry) == -1)
298          return 0;
299       if ( memcmp(&entry, cdrom_cache[dev].entry+i-hdr.cdth_trk0,
300                               sizeof(struct cdrom_tocentry)) )
301          return 1;
302    }
303    return 0;
304 }
305 #endif
306
307
308 /******************************************************************
309  *              get_parent_device
310  *
311  * On Mac OS, get the device for the whole disk from a fd that points to a partition.
312  * This is ugly and inefficient, but we have no choice since the partition fd doesn't
313  * support the eject ioctl.
314  */
315 #ifdef __APPLE__
316 static NTSTATUS get_parent_device( int fd, char *name, size_t len )
317 {
318     NTSTATUS status = STATUS_NO_SUCH_FILE;
319     struct stat st;
320     int i;
321     io_service_t service;
322     CFMutableDictionaryRef dict;
323     CFTypeRef val;
324
325     if (fstat( fd, &st ) == -1) return FILE_GetNtStatus();
326     if (!S_ISCHR( st.st_mode )) return STATUS_OBJECT_TYPE_MISMATCH;
327
328     /* create a dictionary with the right major/minor numbers */
329
330     if (!(dict = IOServiceMatching( kIOMediaClass ))) return STATUS_NO_MEMORY;
331
332     i = major( st.st_rdev );
333     val = CFNumberCreate( NULL, kCFNumberIntType, &i );
334     CFDictionaryAddValue( dict, CFSTR( "BSD Major" ), val );
335     CFRelease( val );
336
337     i = minor( st.st_rdev );
338     val = CFNumberCreate( NULL, kCFNumberIntType, &i );
339     CFDictionaryAddValue( dict, CFSTR( "BSD Minor" ), val );
340     CFRelease( val );
341
342     CFDictionaryAddValue( dict, CFSTR("Removable"), kCFBooleanTrue );
343
344     service = IOServiceGetMatchingService( kIOMasterPortDefault, dict );
345
346     /* now look for the parent that has the "Whole" attribute set to TRUE */
347
348     while (service)
349     {
350         io_service_t parent = 0;
351         CFBooleanRef whole;
352         CFStringRef str;
353         int ok;
354
355         if (!IOObjectConformsTo( service, kIOMediaClass ))
356             goto next;
357         if (!(whole = IORegistryEntryCreateCFProperty( service, CFSTR("Whole"), NULL, 0 )))
358             goto next;
359         ok = (whole == kCFBooleanTrue);
360         CFRelease( whole );
361         if (!ok) goto next;
362
363         if ((str = IORegistryEntryCreateCFProperty( service, CFSTR("BSD Name"), NULL, 0 )))
364         {
365             strcpy( name, "/dev/r" );
366             CFStringGetCString( str, name + 6, len - 6, kCFStringEncodingUTF8 );
367             CFRelease( str );
368             status = STATUS_SUCCESS;
369         }
370         IOObjectRelease( service );
371         break;
372
373 next:
374         IORegistryEntryGetParentEntry( service, kIOServicePlane, &parent );
375         IOObjectRelease( service );
376         service = parent;
377     }
378     return status;
379 }
380 #endif
381
382
383 /******************************************************************
384  *              CDROM_SyncCache                          [internal]
385  *
386  * Read the TOC in and store it in the cdrom_cache structure.
387  * Further requests for the TOC will be copied from the cache
388  * unless certain events like disk ejection is detected, in which
389  * case the cache will be cleared, causing it to be resynced.
390  * The cache section must be held by caller.
391  */
392 static NTSTATUS CDROM_SyncCache(int dev, int fd)
393 {
394 #ifdef linux
395    int i, tsz;
396    struct cdrom_tochdr          hdr;
397    struct cdrom_tocentry        entry;
398
399    CDROM_TOC *toc = &cdrom_cache[dev].toc;
400    cdrom_cache[dev].toc_good = 0;
401
402    if (ioctl(fd, CDROMREADTOCHDR, &hdr) == -1)
403    {
404       WARN("(%d) -- Error occurred (%s)!\n", dev, strerror(errno));
405       return FILE_GetNtStatus();
406    }
407
408    toc->FirstTrack = hdr.cdth_trk0;
409    toc->LastTrack  = hdr.cdth_trk1;
410    tsz = sizeof(toc->FirstTrack) + sizeof(toc->LastTrack)
411        + sizeof(TRACK_DATA) * (toc->LastTrack-toc->FirstTrack+2);
412    toc->Length[0] = tsz >> 8;
413    toc->Length[1] = tsz;
414
415    TRACE("caching toc from=%d to=%d\n", toc->FirstTrack, toc->LastTrack );
416
417    for (i = toc->FirstTrack; i <= toc->LastTrack + 1; i++)
418    {
419      if (i == toc->LastTrack + 1)
420        entry.cdte_track = CDROM_LEADOUT;
421      else 
422        entry.cdte_track = i;
423      entry.cdte_format = CDROM_MSF;
424      if (ioctl(fd, CDROMREADTOCENTRY, &entry) == -1)
425      {
426        WARN("error read entry (%s)\n", strerror(errno));
427        return FILE_GetNtStatus();
428      }
429      toc->TrackData[i - toc->FirstTrack].Control = entry.cdte_ctrl;
430      toc->TrackData[i - toc->FirstTrack].Adr = entry.cdte_adr;
431      /* marking last track with leadout value as index */
432      toc->TrackData[i - toc->FirstTrack].TrackNumber = entry.cdte_track;
433      toc->TrackData[i - toc->FirstTrack].Address[0] = 0;
434      toc->TrackData[i - toc->FirstTrack].Address[1] = entry.cdte_addr.msf.minute;
435      toc->TrackData[i - toc->FirstTrack].Address[2] = entry.cdte_addr.msf.second;
436      toc->TrackData[i - toc->FirstTrack].Address[3] = entry.cdte_addr.msf.frame;
437    }
438    cdrom_cache[dev].toc_good = 1;
439    return STATUS_SUCCESS;
440
441 #elif defined(__FreeBSD__) || defined(__NetBSD__)
442
443    int i, tsz;
444    struct ioc_toc_header hdr;
445    struct ioc_read_toc_entry entry;
446    struct cd_toc_entry toc_buffer;
447
448    CDROM_TOC *toc = &cdrom_cache[dev].toc;
449    cdrom_cache[dev].toc_good = 0;
450
451     if (ioctl(fd, CDIOREADTOCHEADER, &hdr) == -1)
452     {
453         WARN("(%d) -- Error occurred (%s)!\n", dev, strerror(errno));
454         return FILE_GetNtStatus();
455     }
456     toc->FirstTrack = hdr.starting_track;
457     toc->LastTrack  = hdr.ending_track;
458     tsz = sizeof(toc->FirstTrack) + sizeof(toc->LastTrack)
459         + sizeof(TRACK_DATA) * (toc->LastTrack-toc->FirstTrack+2);
460     toc->Length[0] = tsz >> 8;
461     toc->Length[1] = tsz;
462
463     TRACE("caching toc from=%d to=%d\n", toc->FirstTrack, toc->LastTrack );
464
465     for (i = toc->FirstTrack; i <= toc->LastTrack + 1; i++)
466     {
467         if (i == toc->LastTrack + 1)
468         {
469 #define LEADOUT 0xaa
470             entry.starting_track = LEADOUT;
471         } else {
472             entry.starting_track = i;
473         }
474         memset((char *)&toc_buffer, 0, sizeof(toc_buffer));
475         entry.address_format = CD_MSF_FORMAT;
476         entry.data_len = sizeof(toc_buffer);
477         entry.data = &toc_buffer;
478         if (ioctl(fd, CDIOREADTOCENTRYS, &entry) == -1)
479         {
480             WARN("error read entry (%s)\n", strerror(errno));
481             return FILE_GetNtStatus();
482         }
483         toc->TrackData[i - toc->FirstTrack].Control = toc_buffer.control;
484         toc->TrackData[i - toc->FirstTrack].Adr = toc_buffer.addr_type;
485         /* marking last track with leadout value as index */
486         toc->TrackData[i - toc->FirstTrack].TrackNumber = entry.starting_track;
487         toc->TrackData[i - toc->FirstTrack].Address[0] = 0;
488         toc->TrackData[i - toc->FirstTrack].Address[1] = toc_buffer.addr.msf.minute;
489         toc->TrackData[i - toc->FirstTrack].Address[2] = toc_buffer.addr.msf.second;
490         toc->TrackData[i - toc->FirstTrack].Address[3] = toc_buffer.addr.msf.frame;
491     }
492     cdrom_cache[dev].toc_good = 1;
493     return STATUS_SUCCESS;
494
495 #elif defined(__APPLE__)
496     int i;
497     dk_cd_read_toc_t hdr;
498     CDROM_TOC *toc = &cdrom_cache[dev].toc;
499     cdrom_cache[dev].toc_good = 0;
500
501     memset( &hdr, 0, sizeof(hdr) );
502     hdr.buffer = toc;
503     hdr.bufferLength = sizeof(*toc);
504     if (ioctl(fd, DKIOCCDREADTOC, &hdr) == -1)
505     {
506         WARN("(%d) -- Error occurred (%s)!\n", dev, strerror(errno));
507         return FILE_GetNtStatus();
508     }
509     for (i = toc->FirstTrack; i <= toc->LastTrack + 1; i++)
510     {
511         /* convert address format */
512         TRACK_DATA *data = &toc->TrackData[i - toc->FirstTrack];
513         DWORD frame = (((DWORD)data->Address[0] << 24) | ((DWORD)data->Address[1] << 16) |
514                        ((DWORD)data->Address[2] << 8) | data->Address[3]);
515         MSF_OF_FRAME( data->Address[1], frame );
516         data->Address[0] = 0;
517     }
518
519     cdrom_cache[dev].toc_good = 1;
520     return STATUS_SUCCESS;
521 #else
522     return STATUS_NOT_SUPPORTED;
523 #endif
524 }
525
526 static void CDROM_ClearCacheEntry(int dev)
527 {
528     RtlEnterCriticalSection( &cache_section );
529     cdrom_cache[dev].toc_good = 0;
530     RtlLeaveCriticalSection( &cache_section );
531 }
532
533
534
535 /******************************************************************
536  *              CDROM_GetInterfaceInfo
537  *
538  * Determines the ide interface (the number after the ide), and the
539  * number of the device on that interface for ide cdroms (*iface <= 1).
540  * Determines the scsi information for scsi cdroms (*iface >= 2).
541  * Returns false if the info cannot not be obtained.
542  */
543 static int CDROM_GetInterfaceInfo(int fd, UCHAR* iface, UCHAR* port, UCHAR* device, UCHAR* lun)
544 {
545 #if defined(linux)
546     struct stat st;
547     if ( fstat(fd, &st) == -1 || ! S_ISBLK(st.st_mode)) return 0;
548     *port = 0;
549     *iface = 0;
550     *device = 0;
551     *lun = 0;
552     switch (major(st.st_rdev)) {
553     case IDE0_MAJOR: *iface = 0; break;
554     case IDE1_MAJOR: *iface = 1; break;
555     case IDE2_MAJOR: *iface = 2; break;
556     case IDE3_MAJOR: *iface = 3; break;
557     case IDE4_MAJOR: *iface = 4; break;
558     case IDE5_MAJOR: *iface = 5; break;
559     case IDE6_MAJOR: *iface = 6; break;
560     case IDE7_MAJOR: *iface = 7; break;
561     default: *port = 1; break;
562     }
563
564     if (*port == 0)
565         *device = (minor(st.st_rdev) >> 6);
566     else
567     {
568 #ifdef SCSI_IOCTL_GET_IDLUN
569         UINT32 idlun[2];
570         if (ioctl(fd, SCSI_IOCTL_GET_IDLUN, &idlun) != -1)
571         {
572             *port = (idlun[0] >> 24) & 0xff;
573             *iface = ((idlun[0] >> 16) & 0xff) + 2;
574             *device = idlun[0] & 0xff;
575             *lun = (idlun[0] >> 8) & 0xff;
576         }
577         else
578 #endif
579         {
580             WARN("CD-ROM device (%d, %d) not supported\n", major(st.st_rdev), minor(st.st_rdev));
581             return 0;
582         }
583     }
584     return 1;
585 #elif defined(__NetBSD__)
586     struct scsi_addr addr;
587     if (ioctl(fd, SCIOCIDENTIFY, &addr) != -1)
588     {
589         switch (addr.type) 
590         {
591         case TYPE_SCSI:  *port = 1;
592             *iface = addr.addr.scsi.scbus;
593             *device = addr.addr.scsi.target;
594             *lun = addr.addr.scsi.lun;
595             break;
596         case TYPE_ATAPI: *port = 0;
597             *iface = addr.addr.atapi.atbus;
598             *device = addr.addr.atapi.drive;
599             *lun = 0;
600             break;
601         }
602         return 1;
603     }
604     return 0;
605 #elif defined(__FreeBSD__)
606     FIXME("not implemented for BSD\n");
607     return 0;
608 #else
609     FIXME("not implemented for nonlinux\n");
610     return 0;
611 #endif
612 }
613
614
615 /******************************************************************
616  *              CDROM_Open
617  *
618  */
619 static NTSTATUS CDROM_Open(int fd, int* dev)
620 {
621     struct stat st;
622     NTSTATUS ret = STATUS_SUCCESS;
623     int         empty = -1;
624
625     fstat(fd, &st);
626
627     RtlEnterCriticalSection( &cache_section );
628     for (*dev = 0; *dev < MAX_CACHE_ENTRIES; (*dev)++)
629     {
630         if (empty == -1 &&
631             cdrom_cache[*dev].device == 0 &&
632             cdrom_cache[*dev].inode == 0)
633             empty = *dev;
634         else if (cdrom_cache[*dev].device == st.st_dev &&
635                  cdrom_cache[*dev].inode == st.st_ino)
636             break;
637     }
638     if (*dev == MAX_CACHE_ENTRIES)
639     {
640         if (empty == -1) ret = STATUS_NOT_IMPLEMENTED;
641         else
642         {
643             *dev = empty;
644             cdrom_cache[*dev].device  = st.st_dev;
645             cdrom_cache[*dev].inode   = st.st_ino;
646         }
647     }
648     RtlLeaveCriticalSection( &cache_section );
649
650     TRACE("%d, %d\n", *dev, fd);
651     return ret;
652 }
653
654 /******************************************************************
655  *              CDROM_GetStatusCode
656  *
657  *
658  */
659 static NTSTATUS CDROM_GetStatusCode(int io)
660 {
661     if (io == 0) return STATUS_SUCCESS;
662     return FILE_GetNtStatus();
663 }
664
665 /******************************************************************
666  *              CDROM_GetControl
667  *
668  */
669 static NTSTATUS CDROM_GetControl(int dev, CDROM_AUDIO_CONTROL* cac)
670 {
671     cac->LbaFormat = 0; /* FIXME */
672     cac->LogicalBlocksPerSecond = 1; /* FIXME */
673     return  STATUS_NOT_SUPPORTED;
674 }
675
676 /******************************************************************
677  *              CDROM_GetDeviceNumber
678  *
679  */
680 static NTSTATUS CDROM_GetDeviceNumber(int dev, STORAGE_DEVICE_NUMBER* devnum)
681 {
682     FIXME( "stub\n" );
683     devnum->DeviceType = FILE_DEVICE_DISK;
684     devnum->DeviceNumber = 1;
685     devnum->PartitionNumber = 1;
686     return STATUS_SUCCESS;
687 }
688
689 /******************************************************************
690  *              CDROM_GetDriveGeometry
691  *
692  */
693 static NTSTATUS CDROM_GetDriveGeometry(int dev, int fd, DISK_GEOMETRY* dg)
694 {
695   CDROM_TOC     toc;
696   NTSTATUS      ret = 0;
697   int           fsize = 0;
698
699   if ((ret = CDROM_ReadTOC(dev, fd, &toc)) != 0) return ret;
700
701   fsize = FRAME_OF_TOC(toc, toc.LastTrack+1)
702         - FRAME_OF_TOC(toc, 1); /* Total size in frames */
703   
704   dg->Cylinders.u.LowPart = fsize / (64 * 32); 
705   dg->Cylinders.u.HighPart = 0; 
706   dg->MediaType = RemovableMedia;  
707   dg->TracksPerCylinder = 64; 
708   dg->SectorsPerTrack = 32;  
709   dg->BytesPerSector= 2048; 
710   return ret;
711 }
712
713 /**************************************************************************
714  *                              CDROM_Reset                     [internal]
715  */
716 static NTSTATUS CDROM_ResetAudio(int fd)
717 {
718 #if defined(linux)
719     return CDROM_GetStatusCode(ioctl(fd, CDROMRESET));
720 #elif defined(__FreeBSD__) || defined(__NetBSD__)
721     return CDROM_GetStatusCode(ioctl(fd, CDIOCRESET, NULL));
722 #else
723     return STATUS_NOT_SUPPORTED;
724 #endif
725 }
726
727 /******************************************************************
728  *              CDROM_SetTray
729  *
730  *
731  */
732 static NTSTATUS CDROM_SetTray(int fd, BOOL doEject)
733 {
734 #if defined(linux)
735     return CDROM_GetStatusCode(ioctl(fd, doEject ? CDROMEJECT : CDROMCLOSETRAY));
736 #elif defined(__FreeBSD__) || defined(__NetBSD__)
737     return CDROM_GetStatusCode((ioctl(fd, CDIOCALLOW, NULL)) ||
738                                (ioctl(fd, doEject ? CDIOCEJECT : CDIOCCLOSE, NULL)) ||
739                                (ioctl(fd, CDIOCPREVENT, NULL)));
740 #elif defined(__APPLE__)
741     if (doEject) return CDROM_GetStatusCode( ioctl( fd, DKIOCEJECT, NULL ) );
742     else return STATUS_NOT_SUPPORTED;
743 #else
744     return STATUS_NOT_SUPPORTED;
745 #endif
746 }
747
748 /******************************************************************
749  *              CDROM_ControlEjection
750  *
751  *
752  */
753 static NTSTATUS CDROM_ControlEjection(int fd, const PREVENT_MEDIA_REMOVAL* rmv)
754 {
755 #if defined(linux)
756     return CDROM_GetStatusCode(ioctl(fd, CDROM_LOCKDOOR, rmv->PreventMediaRemoval));
757 #elif defined(__FreeBSD__) || defined(__NetBSD__)
758     return CDROM_GetStatusCode(ioctl(fd, (rmv->PreventMediaRemoval) ? CDIOCPREVENT : CDIOCALLOW, NULL));
759 #else
760     return STATUS_NOT_SUPPORTED;
761 #endif
762 }
763
764 /******************************************************************
765  *              CDROM_ReadTOC
766  *
767  *
768  */
769 static NTSTATUS CDROM_ReadTOC(int dev, int fd, CDROM_TOC* toc)
770 {
771     NTSTATUS       ret = STATUS_NOT_SUPPORTED;
772
773     if (dev < 0 || dev >= MAX_CACHE_ENTRIES)
774         return STATUS_INVALID_PARAMETER;
775
776     RtlEnterCriticalSection( &cache_section );
777     if (cdrom_cache[dev].toc_good || !(ret = CDROM_SyncCache(dev, fd)))
778     {
779         *toc = cdrom_cache[dev].toc;
780         ret = STATUS_SUCCESS;
781     }
782     RtlLeaveCriticalSection( &cache_section );
783     return ret;
784 }
785
786 /******************************************************************
787  *              CDROM_GetDiskData
788  *
789  *
790  */
791 static NTSTATUS CDROM_GetDiskData(int dev, int fd, CDROM_DISK_DATA* data)
792 {
793     CDROM_TOC   toc;
794     NTSTATUS    ret;
795     int         i;
796
797     if ((ret = CDROM_ReadTOC(dev, fd, &toc)) != 0) return ret;
798     data->DiskData = 0;
799     for (i = toc.FirstTrack; i <= toc.LastTrack; i++) {
800         if (toc.TrackData[i-toc.FirstTrack].Control & 0x04)
801             data->DiskData |= CDROM_DISK_DATA_TRACK;
802         else
803             data->DiskData |= CDROM_DISK_AUDIO_TRACK;
804     }
805     return STATUS_SUCCESS;
806 }
807
808 /******************************************************************
809  *              CDROM_ReadQChannel
810  *
811  *
812  */
813 static NTSTATUS CDROM_ReadQChannel(int dev, int fd, const CDROM_SUB_Q_DATA_FORMAT* fmt,
814                                    SUB_Q_CHANNEL_DATA* data)
815 {
816     NTSTATUS            ret = STATUS_NOT_SUPPORTED;
817 #ifdef linux
818     unsigned            size;
819     SUB_Q_HEADER*       hdr = (SUB_Q_HEADER*)data;
820     int                 io;
821     struct cdrom_subchnl        sc;
822     sc.cdsc_format = CDROM_MSF;
823
824     io = ioctl(fd, CDROMSUBCHNL, &sc);
825     if (io == -1)
826     {
827         TRACE("opened or no_media (%s)!\n", strerror(errno));
828         hdr->AudioStatus = AUDIO_STATUS_NO_STATUS;
829         CDROM_ClearCacheEntry(dev);
830         goto end;
831     }
832
833     hdr->AudioStatus = AUDIO_STATUS_NOT_SUPPORTED;
834
835     switch (sc.cdsc_audiostatus) {
836     case CDROM_AUDIO_INVALID:
837         CDROM_ClearCacheEntry(dev);
838         hdr->AudioStatus = AUDIO_STATUS_NOT_SUPPORTED;
839         break;
840     case CDROM_AUDIO_NO_STATUS:
841         CDROM_ClearCacheEntry(dev);
842         hdr->AudioStatus = AUDIO_STATUS_NO_STATUS;
843         break;
844     case CDROM_AUDIO_PLAY:
845         hdr->AudioStatus = AUDIO_STATUS_IN_PROGRESS;
846         break;
847     case CDROM_AUDIO_PAUSED:
848         hdr->AudioStatus = AUDIO_STATUS_PAUSED;
849         break;
850     case CDROM_AUDIO_COMPLETED:
851         hdr->AudioStatus = AUDIO_STATUS_PLAY_COMPLETE;
852         break;
853     case CDROM_AUDIO_ERROR:
854         hdr->AudioStatus = AUDIO_STATUS_PLAY_ERROR;
855         break;
856     default:
857         TRACE("status=%02X !\n", sc.cdsc_audiostatus);
858         break;
859     }
860     switch (fmt->Format)
861     {
862     case IOCTL_CDROM_CURRENT_POSITION:
863         size = sizeof(SUB_Q_CURRENT_POSITION);
864         RtlEnterCriticalSection( &cache_section );
865         if (hdr->AudioStatus==AUDIO_STATUS_IN_PROGRESS) {
866           data->CurrentPosition.FormatCode = IOCTL_CDROM_CURRENT_POSITION;
867           data->CurrentPosition.Control = sc.cdsc_ctrl; 
868           data->CurrentPosition.ADR = sc.cdsc_adr; 
869           data->CurrentPosition.TrackNumber = sc.cdsc_trk; 
870           data->CurrentPosition.IndexNumber = sc.cdsc_ind; 
871
872           data->CurrentPosition.AbsoluteAddress[0] = 0; 
873           data->CurrentPosition.AbsoluteAddress[1] = sc.cdsc_absaddr.msf.minute; 
874           data->CurrentPosition.AbsoluteAddress[2] = sc.cdsc_absaddr.msf.second;
875           data->CurrentPosition.AbsoluteAddress[3] = sc.cdsc_absaddr.msf.frame;
876  
877           data->CurrentPosition.TrackRelativeAddress[0] = 0; 
878           data->CurrentPosition.TrackRelativeAddress[1] = sc.cdsc_reladdr.msf.minute; 
879           data->CurrentPosition.TrackRelativeAddress[2] = sc.cdsc_reladdr.msf.second;
880           data->CurrentPosition.TrackRelativeAddress[3] = sc.cdsc_reladdr.msf.frame;
881
882           cdrom_cache[dev].CurrentPosition = data->CurrentPosition;
883         }
884         else /* not playing */
885         {
886           cdrom_cache[dev].CurrentPosition.Header = *hdr; /* Preserve header info */
887           data->CurrentPosition = cdrom_cache[dev].CurrentPosition;
888         }
889         RtlLeaveCriticalSection( &cache_section );
890         break;
891     case IOCTL_CDROM_MEDIA_CATALOG:
892         size = sizeof(SUB_Q_MEDIA_CATALOG_NUMBER);
893         data->MediaCatalog.FormatCode = IOCTL_CDROM_MEDIA_CATALOG;
894         {
895             struct cdrom_mcn mcn;
896             if ((io = ioctl(fd, CDROM_GET_MCN, &mcn)) == -1) goto end;
897
898             data->MediaCatalog.FormatCode = IOCTL_CDROM_MEDIA_CATALOG;
899             data->MediaCatalog.Mcval = 0; /* FIXME */
900             memcpy(data->MediaCatalog.MediaCatalog, mcn.medium_catalog_number, 14);
901             data->MediaCatalog.MediaCatalog[14] = 0;
902         }
903         break;
904     case IOCTL_CDROM_TRACK_ISRC:
905         size = sizeof(SUB_Q_CURRENT_POSITION);
906         FIXME("TrackIsrc: NIY on linux\n");
907         data->TrackIsrc.FormatCode = IOCTL_CDROM_TRACK_ISRC;
908         data->TrackIsrc.Tcval = 0;
909         io = 0;
910         break;
911     }
912
913  end:
914     ret = CDROM_GetStatusCode(io);
915 #elif defined(__FreeBSD__) || defined(__NetBSD__)
916     unsigned            size;
917     SUB_Q_HEADER*       hdr = (SUB_Q_HEADER*)data;
918     int                 io;
919     struct ioc_read_subchannel  read_sc;
920     struct cd_sub_channel_info  sc;
921
922     read_sc.address_format = CD_MSF_FORMAT;
923     read_sc.track          = 0;
924     read_sc.data_len       = sizeof(sc);
925     read_sc.data           = &sc;
926     switch (fmt->Format)
927     {
928     case IOCTL_CDROM_CURRENT_POSITION:
929         read_sc.data_format    = CD_CURRENT_POSITION;
930         break;
931     case IOCTL_CDROM_MEDIA_CATALOG:
932         read_sc.data_format    = CD_MEDIA_CATALOG;
933         break;
934     case IOCTL_CDROM_TRACK_ISRC:
935         read_sc.data_format    = CD_TRACK_INFO;
936         sc.what.track_info.track_number = data->TrackIsrc.Track;
937         break;
938     }
939     io = ioctl(fd, CDIOCREADSUBCHANNEL, &read_sc);
940     if (io == -1)
941     {
942         TRACE("opened or no_media (%s)!\n", strerror(errno));
943         CDROM_ClearCacheEntry(dev);
944         hdr->AudioStatus = AUDIO_STATUS_NO_STATUS;
945         goto end;
946     }
947
948     hdr->AudioStatus = AUDIO_STATUS_NOT_SUPPORTED;
949
950     switch (sc.header.audio_status) {
951     case CD_AS_AUDIO_INVALID:
952         CDROM_ClearCacheEntry(dev);
953         hdr->AudioStatus = AUDIO_STATUS_NOT_SUPPORTED;
954         break;
955     case CD_AS_NO_STATUS:
956         CDROM_ClearCacheEntry(dev);
957         hdr->AudioStatus = AUDIO_STATUS_NO_STATUS;
958         break;
959     case CD_AS_PLAY_IN_PROGRESS:
960         hdr->AudioStatus = AUDIO_STATUS_IN_PROGRESS;
961         break;
962     case CD_AS_PLAY_PAUSED:
963         hdr->AudioStatus = AUDIO_STATUS_PAUSED;
964         break;
965     case CD_AS_PLAY_COMPLETED:
966         hdr->AudioStatus = AUDIO_STATUS_PLAY_COMPLETE;
967         break;
968     case CD_AS_PLAY_ERROR:
969         hdr->AudioStatus = AUDIO_STATUS_PLAY_ERROR;
970         break;
971     default:
972         TRACE("status=%02X !\n", sc.header.audio_status);
973     }
974     switch (fmt->Format)
975     {
976     case IOCTL_CDROM_CURRENT_POSITION:
977         size = sizeof(SUB_Q_CURRENT_POSITION);
978         RtlEnterCriticalSection( &cache_section );
979         if (hdr->AudioStatus==AUDIO_STATUS_IN_PROGRESS) {
980           data->CurrentPosition.FormatCode = IOCTL_CDROM_CURRENT_POSITION;
981           data->CurrentPosition.Control = sc.what.position.control;
982           data->CurrentPosition.ADR = sc.what.position.addr_type;
983           data->CurrentPosition.TrackNumber = sc.what.position.track_number;
984           data->CurrentPosition.IndexNumber = sc.what.position.index_number;
985
986           data->CurrentPosition.AbsoluteAddress[0] = 0;
987           data->CurrentPosition.AbsoluteAddress[1] = sc.what.position.absaddr.msf.minute;
988           data->CurrentPosition.AbsoluteAddress[2] = sc.what.position.absaddr.msf.second;
989           data->CurrentPosition.AbsoluteAddress[3] = sc.what.position.absaddr.msf.frame;
990           data->CurrentPosition.TrackRelativeAddress[0] = 0;
991           data->CurrentPosition.TrackRelativeAddress[1] = sc.what.position.reladdr.msf.minute;
992           data->CurrentPosition.TrackRelativeAddress[2] = sc.what.position.reladdr.msf.second;
993           data->CurrentPosition.TrackRelativeAddress[3] = sc.what.position.reladdr.msf.frame;
994           cdrom_cache[dev].CurrentPosition = data->CurrentPosition;
995         }
996         else { /* not playing */
997           cdrom_cache[dev].CurrentPosition.Header = *hdr; /* Preserve header info */
998           data->CurrentPosition = cdrom_cache[dev].CurrentPosition;
999         }
1000         RtlLeaveCriticalSection( &cache_section );
1001         break;
1002     case IOCTL_CDROM_MEDIA_CATALOG:
1003         size = sizeof(SUB_Q_MEDIA_CATALOG_NUMBER);
1004         data->MediaCatalog.FormatCode = IOCTL_CDROM_MEDIA_CATALOG;
1005         data->MediaCatalog.Mcval = sc.what.media_catalog.mc_valid;
1006         memcpy(data->MediaCatalog.MediaCatalog, sc.what.media_catalog.mc_number, 15);
1007         break;
1008     case IOCTL_CDROM_TRACK_ISRC:
1009         size = sizeof(SUB_Q_CURRENT_POSITION);
1010         data->TrackIsrc.FormatCode = IOCTL_CDROM_TRACK_ISRC;
1011         data->TrackIsrc.Tcval = sc.what.track_info.ti_valid;
1012         memcpy(data->TrackIsrc.TrackIsrc, sc.what.track_info.ti_number, 15);
1013         break;
1014     }
1015
1016  end:
1017     ret = CDROM_GetStatusCode(io);
1018 #endif
1019     return ret;
1020 }
1021
1022 /******************************************************************
1023  *              CDROM_Verify
1024  *  Implements: IOCTL_STORAGE_CHECK_VERIFY
1025  *              IOCTL_CDROM_CHECK_VERIFY
1026  *              IOCTL_DISK_CHECK_VERIFY
1027  *
1028  */
1029 static NTSTATUS CDROM_Verify(int dev, int fd)
1030 {
1031 #if defined(linux)
1032     int ret;
1033
1034     ret = ioctl(fd,  CDROM_DRIVE_STATUS, NULL);
1035     if(ret == -1) {
1036         TRACE("ioctl CDROM_DRIVE_STATUS failed(%s)!\n", strerror(errno));
1037         return CDROM_GetStatusCode(ret);
1038     }
1039
1040     if(ret == CDS_DISC_OK)
1041         return STATUS_SUCCESS;
1042     else
1043         return STATUS_NO_MEDIA_IN_DEVICE;
1044 #elif defined(__FreeBSD__)
1045     int ret;
1046     ret = ioctl(fd, CDIOCSTART, NULL);
1047     if(ret == 0)
1048         return STATUS_SUCCESS;
1049     else
1050         return STATUS_NO_MEDIA_IN_DEVICE;
1051 #else
1052     FIXME("not implemented for non-linux\n");
1053     return STATUS_NOT_SUPPORTED;
1054 #endif
1055 }
1056
1057 /******************************************************************
1058  *              CDROM_PlayAudioMSF
1059  *
1060  *
1061  */
1062 static NTSTATUS CDROM_PlayAudioMSF(int fd, const CDROM_PLAY_AUDIO_MSF* audio_msf)
1063 {
1064     NTSTATUS       ret = STATUS_NOT_SUPPORTED;
1065 #ifdef linux
1066     struct      cdrom_msf       msf;
1067     int         io;
1068
1069     msf.cdmsf_min0   = audio_msf->StartingM;
1070     msf.cdmsf_sec0   = audio_msf->StartingS;
1071     msf.cdmsf_frame0 = audio_msf->StartingF;
1072     msf.cdmsf_min1   = audio_msf->EndingM;
1073     msf.cdmsf_sec1   = audio_msf->EndingS;
1074     msf.cdmsf_frame1 = audio_msf->EndingF;
1075
1076     io = ioctl(fd, CDROMSTART);
1077     if (io == -1)
1078     {
1079         WARN("motor doesn't start !\n");
1080         goto end;
1081     }
1082     io = ioctl(fd, CDROMPLAYMSF, &msf);
1083     if (io == -1)
1084     {
1085         WARN("device doesn't play !\n");
1086         goto end;
1087     }
1088     TRACE("msf = %d:%d:%d %d:%d:%d\n",
1089           msf.cdmsf_min0, msf.cdmsf_sec0, msf.cdmsf_frame0,
1090           msf.cdmsf_min1, msf.cdmsf_sec1, msf.cdmsf_frame1);
1091  end:
1092     ret = CDROM_GetStatusCode(io);
1093 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1094     struct      ioc_play_msf    msf;
1095     int         io;
1096
1097     msf.start_m      = audio_msf->StartingM;
1098     msf.start_s      = audio_msf->StartingS;
1099     msf.start_f      = audio_msf->StartingF;
1100     msf.end_m        = audio_msf->EndingM;
1101     msf.end_s        = audio_msf->EndingS;
1102     msf.end_f        = audio_msf->EndingF;
1103
1104     io = ioctl(fd, CDIOCSTART, NULL);
1105     if (io == -1)
1106     {
1107         WARN("motor doesn't start !\n");
1108         goto end;
1109     }
1110     io = ioctl(fd, CDIOCPLAYMSF, &msf);
1111     if (io == -1)
1112     {
1113         WARN("device doesn't play !\n");
1114         goto end;
1115     }
1116     TRACE("msf = %d:%d:%d %d:%d:%d\n",
1117           msf.start_m, msf.start_s, msf.start_f,
1118           msf.end_m,   msf.end_s,   msf.end_f);
1119 end:
1120     ret = CDROM_GetStatusCode(io);
1121 #endif
1122     return ret;
1123 }
1124
1125 /******************************************************************
1126  *              CDROM_SeekAudioMSF
1127  *
1128  *
1129  */
1130 static NTSTATUS CDROM_SeekAudioMSF(int dev, int fd, const CDROM_SEEK_AUDIO_MSF* audio_msf)
1131 {
1132     CDROM_TOC toc;
1133     int i, io, frame;
1134     SUB_Q_CURRENT_POSITION *cp;
1135 #if defined(linux)
1136     struct cdrom_msf0   msf;
1137     struct cdrom_subchnl sc;
1138 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1139     struct ioc_play_msf msf;
1140     struct ioc_read_subchannel  read_sc;
1141     struct cd_sub_channel_info  sc;
1142     int final_frame;
1143 #endif
1144
1145     /* Use the information on the TOC to compute the new current
1146      * position, which is shadowed on the cache. [Portable]. */
1147     frame = FRAME_OF_MSF(*audio_msf);
1148
1149     if ((io = CDROM_ReadTOC(dev, fd, &toc)) != 0) return io;
1150
1151     for(i=toc.FirstTrack;i<=toc.LastTrack+1;i++)
1152       if (FRAME_OF_TOC(toc,i)>frame) break;
1153     if (i <= toc.FirstTrack || i > toc.LastTrack+1)
1154       return STATUS_INVALID_PARAMETER;
1155     i--;
1156     RtlEnterCriticalSection( &cache_section );
1157     cp = &cdrom_cache[dev].CurrentPosition;
1158     cp->FormatCode = IOCTL_CDROM_CURRENT_POSITION; 
1159     cp->Control = toc.TrackData[i-toc.FirstTrack].Control; 
1160     cp->ADR = toc.TrackData[i-toc.FirstTrack].Adr; 
1161     cp->TrackNumber = toc.TrackData[i-toc.FirstTrack].TrackNumber;
1162     cp->IndexNumber = 0; /* FIXME: where do they keep these? */
1163     cp->AbsoluteAddress[0] = 0; 
1164     cp->AbsoluteAddress[1] = toc.TrackData[i-toc.FirstTrack].Address[1];
1165     cp->AbsoluteAddress[2] = toc.TrackData[i-toc.FirstTrack].Address[2];
1166     cp->AbsoluteAddress[3] = toc.TrackData[i-toc.FirstTrack].Address[3];
1167     frame -= FRAME_OF_TOC(toc,i);
1168     cp->TrackRelativeAddress[0] = 0;
1169     MSF_OF_FRAME(cp->TrackRelativeAddress[1], frame); 
1170     RtlLeaveCriticalSection( &cache_section );
1171
1172     /* If playing, then issue a seek command, otherwise do nothing */
1173 #ifdef linux
1174     sc.cdsc_format = CDROM_MSF;
1175
1176     io = ioctl(fd, CDROMSUBCHNL, &sc);
1177     if (io == -1)
1178     {
1179         TRACE("opened or no_media (%s)!\n", strerror(errno));
1180         CDROM_ClearCacheEntry(dev);
1181         return CDROM_GetStatusCode(io);
1182     }
1183     if (sc.cdsc_audiostatus==CDROM_AUDIO_PLAY)
1184     {
1185       msf.minute = audio_msf->M;
1186       msf.second = audio_msf->S;
1187       msf.frame  = audio_msf->F;
1188       return CDROM_GetStatusCode(ioctl(fd, CDROMSEEK, &msf));
1189     }
1190     return STATUS_SUCCESS;
1191 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1192     read_sc.address_format = CD_MSF_FORMAT;
1193     read_sc.track          = 0;
1194     read_sc.data_len       = sizeof(sc);
1195     read_sc.data           = &sc;
1196     read_sc.data_format    = CD_CURRENT_POSITION;
1197
1198     io = ioctl(fd, CDIOCREADSUBCHANNEL, &read_sc);
1199     if (io == -1)
1200     {
1201         TRACE("opened or no_media (%s)!\n", strerror(errno));
1202         CDROM_ClearCacheEntry(dev);
1203         return CDROM_GetStatusCode(io);
1204     }
1205     if (sc.header.audio_status==CD_AS_PLAY_IN_PROGRESS) 
1206     {
1207
1208       msf.start_m      = audio_msf->M;
1209       msf.start_s      = audio_msf->S;
1210       msf.start_f      = audio_msf->F;
1211       final_frame = FRAME_OF_TOC(toc,toc.LastTrack+1)-1;
1212       MSF_OF_FRAME(msf.end_m, final_frame);
1213
1214       return CDROM_GetStatusCode(ioctl(fd, CDIOCPLAYMSF, &msf));
1215     }
1216     return STATUS_SUCCESS;
1217 #else
1218     return STATUS_NOT_SUPPORTED;
1219 #endif
1220 }
1221
1222 /******************************************************************
1223  *              CDROM_PauseAudio
1224  *
1225  *
1226  */
1227 static NTSTATUS CDROM_PauseAudio(int fd)
1228 {
1229 #if defined(linux)
1230     return CDROM_GetStatusCode(ioctl(fd, CDROMPAUSE));
1231 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1232     return CDROM_GetStatusCode(ioctl(fd, CDIOCPAUSE, NULL));
1233 #else
1234     return STATUS_NOT_SUPPORTED;
1235 #endif
1236 }
1237
1238 /******************************************************************
1239  *              CDROM_ResumeAudio
1240  *
1241  *
1242  */
1243 static NTSTATUS CDROM_ResumeAudio(int fd)
1244 {
1245 #if defined(linux)
1246     return CDROM_GetStatusCode(ioctl(fd, CDROMRESUME));
1247 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1248     return CDROM_GetStatusCode(ioctl(fd, CDIOCRESUME, NULL));
1249 #else
1250     return STATUS_NOT_SUPPORTED;
1251 #endif
1252 }
1253
1254 /******************************************************************
1255  *              CDROM_StopAudio
1256  *
1257  *
1258  */
1259 static NTSTATUS CDROM_StopAudio(int fd)
1260 {
1261 #if defined(linux)
1262     return CDROM_GetStatusCode(ioctl(fd, CDROMSTOP));
1263 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1264     return CDROM_GetStatusCode(ioctl(fd, CDIOCSTOP, NULL));
1265 #else
1266     return STATUS_NOT_SUPPORTED;
1267 #endif
1268 }
1269
1270 /******************************************************************
1271  *              CDROM_GetVolume
1272  *
1273  *
1274  */
1275 static NTSTATUS CDROM_GetVolume(int fd, VOLUME_CONTROL* vc)
1276 {
1277 #if defined(linux)
1278     struct cdrom_volctrl volc;
1279     int io;
1280
1281     io = ioctl(fd, CDROMVOLREAD, &volc);
1282     if (io != -1)
1283     {
1284         vc->PortVolume[0] = volc.channel0;
1285         vc->PortVolume[1] = volc.channel1;
1286         vc->PortVolume[2] = volc.channel2;
1287         vc->PortVolume[3] = volc.channel3;
1288     }
1289     return CDROM_GetStatusCode(io);
1290 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1291     struct  ioc_vol     volc;
1292     int io;
1293
1294     io = ioctl(fd, CDIOCGETVOL, &volc);
1295     if (io != -1)
1296     {
1297         vc->PortVolume[0] = volc.vol[0];
1298         vc->PortVolume[1] = volc.vol[1];
1299         vc->PortVolume[2] = volc.vol[2];
1300         vc->PortVolume[3] = volc.vol[3];
1301     }
1302     return CDROM_GetStatusCode(io);
1303 #else
1304     return STATUS_NOT_SUPPORTED;
1305 #endif
1306 }
1307
1308 /******************************************************************
1309  *              CDROM_SetVolume
1310  *
1311  *
1312  */
1313 static NTSTATUS CDROM_SetVolume(int fd, const VOLUME_CONTROL* vc)
1314 {
1315 #if defined(linux)
1316     struct cdrom_volctrl volc;
1317
1318     volc.channel0 = vc->PortVolume[0];
1319     volc.channel1 = vc->PortVolume[1];
1320     volc.channel2 = vc->PortVolume[2];
1321     volc.channel3 = vc->PortVolume[3];
1322
1323     return CDROM_GetStatusCode(ioctl(fd, CDROMVOLCTRL, &volc));
1324 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1325     struct  ioc_vol     volc;
1326
1327     volc.vol[0] = vc->PortVolume[0];
1328     volc.vol[1] = vc->PortVolume[1];
1329     volc.vol[2] = vc->PortVolume[2];
1330     volc.vol[3] = vc->PortVolume[3];
1331
1332     return CDROM_GetStatusCode(ioctl(fd, CDIOCSETVOL, &volc));
1333 #else
1334     return STATUS_NOT_SUPPORTED;
1335 #endif
1336 }
1337
1338 /******************************************************************
1339  *              CDROM_RawRead
1340  *
1341  * Some features of this IOCTL are rather poorly documented and
1342  * not really intuitive either:
1343  *
1344  *   1. Although the DiskOffset parameter is meant to be a
1345  *      byte offset into the disk, it is in fact the sector
1346  *      number multiplied by 2048 regardless of the actual
1347  *      sector size.
1348  *
1349  *   2. The least significant 11 bits of DiskOffset are ignored.
1350  *
1351  *   3. The TrackMode parameter has no effect on the sector
1352  *      size. The entire raw sector (i.e. 2352 bytes of data)
1353  *      is always returned. IMO the TrackMode is only used
1354  *      to check the correct sector type.
1355  *
1356  */
1357 static NTSTATUS CDROM_RawRead(int fd, const RAW_READ_INFO* raw, void* buffer, DWORD len, DWORD* sz)
1358 {
1359     int         ret = STATUS_NOT_SUPPORTED;
1360     int         io = -1;
1361
1362     TRACE("RAW_READ_INFO: DiskOffset=%i,%i SectorCount=%i TrackMode=%i\n buffer=%p len=%i sz=%p\n",
1363           raw->DiskOffset.u.HighPart, raw->DiskOffset.u.LowPart, raw->SectorCount, raw->TrackMode, buffer, len, sz);
1364
1365     if (len < raw->SectorCount * 2352) return STATUS_BUFFER_TOO_SMALL;
1366
1367 #if defined(linux)
1368     if (raw->DiskOffset.u.HighPart & ~2047) {
1369         WARN("DiskOffset points to a sector >= 2**32\n");
1370         return ret;
1371     }
1372
1373     switch (raw->TrackMode)
1374     {
1375     case YellowMode2:
1376     case XAForm2:
1377     {
1378         DWORD lba = raw->DiskOffset.QuadPart >> 11;
1379         struct cdrom_msf*       msf;
1380         PBYTE                   *bp; /* current buffer pointer */
1381         int i;
1382
1383         if ((lba + raw->SectorCount) >
1384             ((1 << 8*sizeof(msf->cdmsf_min0)) * CD_SECS * CD_FRAMES
1385              - CD_MSF_OFFSET)) {
1386             WARN("DiskOffset not accessible with MSF\n");
1387             return ret;
1388         }
1389
1390         /* Linux reads only one sector at a time.
1391          * ioctl CDROMREADRAW takes struct cdrom_msf as an argument
1392          * on the contrary to what header comments state.
1393          */
1394         lba += CD_MSF_OFFSET;
1395         for (i = 0, bp = buffer; i < raw->SectorCount;
1396              i++, lba++, bp += 2352)
1397         {
1398             msf = (struct cdrom_msf*)bp;
1399             msf->cdmsf_min0   = lba / CD_FRAMES / CD_SECS;
1400             msf->cdmsf_sec0   = lba / CD_FRAMES % CD_SECS;
1401             msf->cdmsf_frame0 = lba % CD_FRAMES;
1402             io = ioctl(fd, CDROMREADRAW, msf);
1403             if (io != 0)
1404             {
1405                 *sz = 2352 * i;
1406                 return CDROM_GetStatusCode(io);
1407             }
1408         }
1409         break;
1410     }
1411
1412     case CDDA:
1413     {
1414         struct cdrom_read_audio cdra;
1415
1416         cdra.addr.lba = raw->DiskOffset.QuadPart >> 11;
1417         TRACE("reading at %u\n", cdra.addr.lba);
1418         cdra.addr_format = CDROM_LBA;
1419         cdra.nframes = raw->SectorCount;
1420         cdra.buf = buffer;
1421         io = ioctl(fd, CDROMREADAUDIO, &cdra);
1422         break;
1423     }
1424
1425     default:
1426         FIXME("NIY: %d\n", raw->TrackMode);
1427         return STATUS_INVALID_PARAMETER;
1428     }
1429 #else
1430     switch (raw->TrackMode)
1431     {
1432     case YellowMode2:
1433         FIXME("YellowMode2: NIY\n");
1434         return ret;
1435     case XAForm2:
1436         FIXME("XAForm2: NIY\n");
1437         return ret;
1438     case CDDA:
1439         FIXME("CDDA: NIY\n");
1440         return ret;
1441     default:
1442         FIXME("NIY: %d\n", raw->TrackMode);
1443         return STATUS_INVALID_PARAMETER;
1444     }
1445 #endif
1446
1447     *sz = 2352 * raw->SectorCount;
1448     ret = CDROM_GetStatusCode(io);
1449     return ret;
1450 }
1451
1452 /******************************************************************
1453  *        CDROM_ScsiPassThroughDirect
1454  *        Implements IOCTL_SCSI_PASS_THROUGH_DIRECT
1455  *
1456  */
1457 static NTSTATUS CDROM_ScsiPassThroughDirect(int fd, PSCSI_PASS_THROUGH_DIRECT pPacket)
1458 {
1459     int ret = STATUS_NOT_SUPPORTED;
1460 #ifdef HAVE_SG_IO_HDR_T_INTERFACE_ID
1461     sg_io_hdr_t cmd;
1462     int io;
1463 #elif defined HAVE_SCSIREQ_T_CMD
1464     scsireq_t cmd;
1465     int io;
1466 #endif
1467
1468     if (pPacket->Length < sizeof(SCSI_PASS_THROUGH_DIRECT))
1469         return STATUS_BUFFER_TOO_SMALL;
1470
1471     if (pPacket->CdbLength > 16)
1472         return STATUS_INVALID_PARAMETER;
1473
1474 #ifdef SENSEBUFLEN
1475     if (pPacket->SenseInfoLength > SENSEBUFLEN)
1476         return STATUS_INVALID_PARAMETER;
1477 #elif defined HAVE_REQUEST_SENSE
1478     if (pPacket->SenseInfoLength > sizeof(struct request_sense))
1479         return STATUS_INVALID_PARAMETER;
1480 #endif
1481
1482     if (pPacket->DataTransferLength > 0 && !pPacket->DataBuffer)
1483         return STATUS_INVALID_PARAMETER;
1484
1485 #ifdef HAVE_SG_IO_HDR_T_INTERFACE_ID
1486     RtlZeroMemory(&cmd, sizeof(cmd));
1487
1488     cmd.interface_id   = 'S';
1489     cmd.cmd_len        = pPacket->CdbLength;
1490     cmd.mx_sb_len      = pPacket->SenseInfoLength;
1491     cmd.dxfer_len      = pPacket->DataTransferLength;
1492     cmd.dxferp         = pPacket->DataBuffer;
1493     cmd.cmdp           = pPacket->Cdb;
1494     cmd.sbp            = (unsigned char*)pPacket + pPacket->SenseInfoOffset;
1495     cmd.timeout        = pPacket->TimeOutValue*1000;
1496
1497     switch (pPacket->DataIn)
1498     {
1499     case SCSI_IOCTL_DATA_IN:
1500         cmd.dxfer_direction = SG_DXFER_FROM_DEV;
1501         break;
1502     case SCSI_IOCTL_DATA_OUT:
1503         cmd.dxfer_direction = SG_DXFER_TO_DEV;
1504         break;
1505     case SCSI_IOCTL_DATA_UNSPECIFIED:
1506         cmd.dxfer_direction = SG_DXFER_NONE;
1507         break;
1508     default:
1509        return STATUS_INVALID_PARAMETER;
1510     }
1511
1512     io = ioctl(fd, SG_IO, &cmd);
1513
1514     pPacket->ScsiStatus         = cmd.status;
1515     pPacket->DataTransferLength = cmd.resid;
1516     pPacket->SenseInfoLength    = cmd.sb_len_wr;
1517
1518     ret = CDROM_GetStatusCode(io);
1519
1520 #elif defined HAVE_SCSIREQ_T_CMD
1521
1522     memset(&cmd, 0, sizeof(cmd));
1523     memcpy(&(cmd.cmd), &(pPacket->Cdb), pPacket->CdbLength);
1524
1525     cmd.cmdlen         = pPacket->CdbLength;
1526     cmd.databuf        = pPacket->DataBuffer;
1527     cmd.datalen        = pPacket->DataTransferLength;
1528     cmd.senselen       = pPacket->SenseInfoLength;
1529     cmd.timeout        = pPacket->TimeOutValue*1000; /* in milliseconds */
1530
1531     switch (pPacket->DataIn)
1532     {
1533     case SCSI_IOCTL_DATA_OUT:
1534         cmd.flags |= SCCMD_WRITE;
1535         break;
1536     case SCSI_IOCTL_DATA_IN:
1537         cmd.flags |= SCCMD_READ;
1538         break;
1539     case SCSI_IOCTL_DATA_UNSPECIFIED:
1540         cmd.flags = 0;
1541         break;
1542     default:
1543        return STATUS_INVALID_PARAMETER;
1544     }
1545
1546     io = ioctl(fd, SCIOCCOMMAND, &cmd);
1547
1548     switch (cmd.retsts)
1549     {
1550     case SCCMD_OK:         break;
1551     case SCCMD_TIMEOUT:    return STATUS_TIMEOUT;
1552                            break;
1553     case SCCMD_BUSY:       return STATUS_DEVICE_BUSY;
1554                            break;
1555     case SCCMD_SENSE:      break;
1556     case SCCMD_UNKNOWN:    return STATUS_UNSUCCESSFUL;
1557                            break;
1558     }
1559
1560     if (pPacket->SenseInfoLength != 0)
1561     {
1562         memcpy((char*)pPacket + pPacket->SenseInfoOffset,
1563                cmd.sense, pPacket->SenseInfoLength);
1564     }
1565
1566     pPacket->ScsiStatus = cmd.status;
1567
1568     ret = CDROM_GetStatusCode(io);
1569 #endif
1570     return ret;
1571 }
1572
1573 /******************************************************************
1574  *              CDROM_ScsiPassThrough
1575  *              Implements IOCTL_SCSI_PASS_THROUGH
1576  *
1577  */
1578 static NTSTATUS CDROM_ScsiPassThrough(int fd, PSCSI_PASS_THROUGH pPacket)
1579 {
1580     int ret = STATUS_NOT_SUPPORTED;
1581 #ifdef HAVE_SG_IO_HDR_T_INTERFACE_ID
1582     sg_io_hdr_t cmd;
1583     int io;
1584 #elif defined HAVE_SCSIREQ_T_CMD
1585     scsireq_t cmd;
1586     int io;
1587 #endif
1588
1589     if (pPacket->Length < sizeof(SCSI_PASS_THROUGH))
1590         return STATUS_BUFFER_TOO_SMALL;
1591
1592     if (pPacket->CdbLength > 16)
1593         return STATUS_INVALID_PARAMETER;
1594
1595 #ifdef SENSEBUFLEN
1596     if (pPacket->SenseInfoLength > SENSEBUFLEN)
1597         return STATUS_INVALID_PARAMETER;
1598 #elif defined HAVE_REQUEST_SENSE
1599     if (pPacket->SenseInfoLength > sizeof(struct request_sense))
1600         return STATUS_INVALID_PARAMETER;
1601 #endif
1602
1603     if (pPacket->DataTransferLength > 0 && pPacket->DataBufferOffset < sizeof(SCSI_PASS_THROUGH))
1604         return STATUS_INVALID_PARAMETER;
1605
1606 #ifdef HAVE_SG_IO_HDR_T_INTERFACE_ID
1607     RtlZeroMemory(&cmd, sizeof(cmd));
1608
1609     cmd.interface_id   = 'S';
1610     cmd.dxfer_len      = pPacket->DataTransferLength;
1611     cmd.dxferp         = (char*)pPacket + pPacket->DataBufferOffset;
1612     cmd.cmd_len        = pPacket->CdbLength;
1613     cmd.cmdp           = pPacket->Cdb;
1614     cmd.mx_sb_len      = pPacket->SenseInfoLength;
1615     cmd.timeout        = pPacket->TimeOutValue*1000;
1616
1617     if(cmd.mx_sb_len > 0)
1618         cmd.sbp = (unsigned char*)pPacket + pPacket->SenseInfoOffset;
1619
1620     switch (pPacket->DataIn)
1621     {
1622     case SCSI_IOCTL_DATA_IN:
1623         cmd.dxfer_direction = SG_DXFER_FROM_DEV;
1624                              break;
1625     case SCSI_IOCTL_DATA_OUT:
1626         cmd.dxfer_direction = SG_DXFER_TO_DEV;
1627                              break;
1628     case SCSI_IOCTL_DATA_UNSPECIFIED:
1629         cmd.dxfer_direction = SG_DXFER_NONE;
1630                              break;
1631     default:
1632        return STATUS_INVALID_PARAMETER;
1633     }
1634
1635     io = ioctl(fd, SG_IO, &cmd);
1636
1637     pPacket->ScsiStatus         = cmd.status;
1638     pPacket->DataTransferLength = cmd.resid;
1639     pPacket->SenseInfoLength    = cmd.sb_len_wr;
1640
1641     ret = CDROM_GetStatusCode(io);
1642
1643 #elif defined HAVE_SCSIREQ_T_CMD
1644
1645     memset(&cmd, 0, sizeof(cmd));
1646     memcpy(&(cmd.cmd), &(pPacket->Cdb), pPacket->CdbLength);
1647
1648     if ( pPacket->DataBufferOffset > 0x1000 )
1649     {
1650         cmd.databuf     = (void*)pPacket->DataBufferOffset;
1651     }
1652     else
1653     {
1654         cmd.databuf     = (char*)pPacket + pPacket->DataBufferOffset;
1655     }
1656
1657     cmd.cmdlen         = pPacket->CdbLength;
1658     cmd.datalen        = pPacket->DataTransferLength;
1659     cmd.senselen       = pPacket->SenseInfoLength;
1660     cmd.timeout        = pPacket->TimeOutValue*1000; /* in milliseconds */
1661
1662     switch (pPacket->DataIn)
1663     {
1664     case SCSI_IOCTL_DATA_OUT:
1665         cmd.flags |= SCCMD_WRITE;
1666         break;
1667     case SCSI_IOCTL_DATA_IN:
1668         cmd.flags |= SCCMD_READ;
1669         break;
1670     case SCSI_IOCTL_DATA_UNSPECIFIED:
1671         cmd.flags = 0;
1672         break;
1673     default:
1674        return STATUS_INVALID_PARAMETER;
1675     }
1676
1677     io = ioctl(fd, SCIOCCOMMAND, &cmd);
1678
1679     switch (cmd.retsts)
1680     {
1681     case SCCMD_OK:         break;
1682     case SCCMD_TIMEOUT:    return STATUS_TIMEOUT;
1683                            break;
1684     case SCCMD_BUSY:       return STATUS_DEVICE_BUSY;
1685                            break;
1686     case SCCMD_SENSE:      break;
1687     case SCCMD_UNKNOWN:    return STATUS_UNSUCCESSFUL;
1688                            break;
1689     }
1690
1691     if (pPacket->SenseInfoLength != 0)
1692     {
1693         memcpy((char*)pPacket + pPacket->SenseInfoOffset,
1694                cmd.sense, pPacket->SenseInfoLength);
1695     }
1696
1697     pPacket->ScsiStatus = cmd.status;
1698
1699     ret = CDROM_GetStatusCode(io);
1700 #endif
1701     return ret;
1702 }
1703
1704 /******************************************************************
1705  *              CDROM_ScsiGetCaps
1706  *
1707  *
1708  */
1709 static NTSTATUS CDROM_ScsiGetCaps(PIO_SCSI_CAPABILITIES caps)
1710 {
1711     NTSTATUS    ret = STATUS_NOT_IMPLEMENTED;
1712
1713     caps->Length = sizeof(*caps);
1714 #ifdef SG_SCATTER_SZ
1715     caps->MaximumTransferLength = SG_SCATTER_SZ; /* FIXME */
1716     caps->MaximumPhysicalPages = SG_SCATTER_SZ / getpagesize();
1717     caps->SupportedAsynchronousEvents = TRUE;
1718     caps->AlignmentMask = getpagesize();
1719     caps->TaggedQueuing = FALSE; /* we could check that it works and answer TRUE */
1720     caps->AdapterScansDown = FALSE; /* FIXME ? */
1721     caps->AdapterUsesPio = FALSE; /* FIXME ? */
1722     ret = STATUS_SUCCESS;
1723 #else
1724     FIXME("Unimplemented\n");
1725 #endif
1726     return ret;
1727 }
1728
1729 /******************************************************************
1730  *              CDROM_GetAddress
1731  *
1732  * implements IOCTL_SCSI_GET_ADDRESS
1733  */
1734 static NTSTATUS CDROM_GetAddress(int fd, SCSI_ADDRESS* address)
1735 {
1736     UCHAR portnum, busid, targetid, lun;
1737
1738     address->Length = sizeof(SCSI_ADDRESS);
1739     if ( ! CDROM_GetInterfaceInfo(fd, &portnum, &busid, &targetid, &lun))
1740         return STATUS_NOT_SUPPORTED;
1741
1742     address->PortNumber = portnum; /* primary=0 secondary=1 for ide */
1743     address->PathId = busid;       /* always 0 for ide */
1744     address->TargetId = targetid;  /* master=0 slave=1 for ide */
1745     address->Lun = lun;
1746     return STATUS_SUCCESS;
1747 }
1748
1749 /******************************************************************
1750  *              DVD_StartSession
1751  *
1752  *
1753  */
1754 static NTSTATUS DVD_StartSession(int fd, const DVD_SESSION_ID *sid_in, PDVD_SESSION_ID sid_out)
1755 {
1756 #if defined(linux)
1757     NTSTATUS ret = STATUS_NOT_SUPPORTED;
1758     dvd_authinfo auth_info;
1759
1760     memset( &auth_info, 0, sizeof( auth_info ) );
1761     auth_info.type = DVD_LU_SEND_AGID;
1762     if (sid_in) auth_info.lsa.agid = *(const int*)sid_in; /* ?*/
1763
1764     TRACE("fd 0x%08x\n",fd);
1765     ret =CDROM_GetStatusCode(ioctl(fd, DVD_AUTH, &auth_info));
1766     *sid_out = auth_info.lsa.agid;
1767     return ret;
1768 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1769     return STATUS_NOT_SUPPORTED;
1770 #else
1771     return STATUS_NOT_SUPPORTED;
1772 #endif
1773 }
1774
1775 /******************************************************************
1776  *              DVD_EndSession
1777  *
1778  *
1779  */
1780 static NTSTATUS DVD_EndSession(int fd, const DVD_SESSION_ID *sid)
1781 {
1782 #if defined(linux)
1783     dvd_authinfo auth_info;
1784
1785     memset( &auth_info, 0, sizeof( auth_info ) );
1786     auth_info.type = DVD_INVALIDATE_AGID;
1787     auth_info.lsa.agid = *(const int*)sid;
1788
1789     TRACE("\n");
1790     return CDROM_GetStatusCode(ioctl(fd, DVD_AUTH, &auth_info));
1791 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1792     return STATUS_NOT_SUPPORTED;
1793 #else
1794     return STATUS_NOT_SUPPORTED;
1795 #endif
1796 }
1797
1798 /******************************************************************
1799  *              DVD_SendKey
1800  *
1801  *
1802  */
1803 static NTSTATUS DVD_SendKey(int fd, const DVD_COPY_PROTECT_KEY *key)
1804 {
1805 #if defined(linux)
1806     NTSTATUS ret = STATUS_NOT_SUPPORTED;
1807     dvd_authinfo auth_info;
1808
1809     memset( &auth_info, 0, sizeof( auth_info ) );
1810     switch (key->KeyType)
1811     {
1812     case DvdChallengeKey:
1813         auth_info.type = DVD_HOST_SEND_CHALLENGE;
1814         auth_info.hsc.agid = (int)key->SessionId;
1815         TRACE("DvdChallengeKey ioc 0x%x\n", DVD_AUTH );
1816         memcpy( auth_info.hsc.chal, key->KeyData, DVD_CHALLENGE_SIZE );
1817         ret = CDROM_GetStatusCode(ioctl( fd, DVD_AUTH, &auth_info ));
1818         break;
1819     case DvdBusKey2:
1820         auth_info.type = DVD_HOST_SEND_KEY2;
1821         auth_info.hsk.agid = (int)key->SessionId;
1822
1823         memcpy( auth_info.hsk.key, key->KeyData, DVD_KEY_SIZE );
1824         
1825         TRACE("DvdBusKey2\n");
1826         ret = CDROM_GetStatusCode(ioctl( fd, DVD_AUTH, &auth_info ));
1827         break;
1828
1829     default:
1830         FIXME("Unknown Keytype 0x%x\n",key->KeyType);
1831     }
1832     return ret;
1833 #else
1834     FIXME("unsupported on this platform\n");
1835     return STATUS_NOT_SUPPORTED;
1836 #endif    
1837 }
1838
1839 /******************************************************************
1840  *              DVD_ReadKey
1841  *
1842  *
1843  */
1844 static NTSTATUS DVD_ReadKey(int fd, PDVD_COPY_PROTECT_KEY key)
1845 {
1846 #if defined(linux)
1847     NTSTATUS ret = STATUS_NOT_SUPPORTED;
1848     dvd_struct dvd;
1849     dvd_authinfo auth_info;
1850
1851     memset( &dvd, 0, sizeof( dvd_struct ) );
1852     memset( &auth_info, 0, sizeof( auth_info ) );
1853     switch (key->KeyType)
1854     {
1855     case DvdDiskKey:
1856         
1857         dvd.type = DVD_STRUCT_DISCKEY;
1858         dvd.disckey.agid = (int)key->SessionId;
1859         memset( dvd.disckey.value, 0, DVD_DISCKEY_SIZE );
1860         
1861         TRACE("DvdDiskKey\n");
1862         ret = CDROM_GetStatusCode(ioctl( fd, DVD_READ_STRUCT, &dvd ));
1863         if (ret == STATUS_SUCCESS)
1864             memcpy(key->KeyData,dvd.disckey.value,DVD_DISCKEY_SIZE);
1865         break;
1866     case DvdTitleKey:
1867         auth_info.type = DVD_LU_SEND_TITLE_KEY;
1868         auth_info.lstk.agid = (int)key->SessionId;
1869         auth_info.lstk.lba = (int)(key->Parameters.TitleOffset.QuadPart>>11);
1870         TRACE("DvdTitleKey session %d Quadpart 0x%08lx offset 0x%08x\n",
1871               (int)key->SessionId, (long)key->Parameters.TitleOffset.QuadPart, 
1872               auth_info.lstk.lba);
1873         ret = CDROM_GetStatusCode(ioctl( fd, DVD_AUTH, &auth_info ));
1874         if (ret == STATUS_SUCCESS)
1875             memcpy(key->KeyData, auth_info.lstk.title_key, DVD_KEY_SIZE );
1876         break;
1877     case DvdChallengeKey:
1878
1879         auth_info.type = DVD_LU_SEND_CHALLENGE;
1880         auth_info.lsc.agid = (int)key->SessionId;
1881
1882         TRACE("DvdChallengeKey\n");
1883         ret = CDROM_GetStatusCode(ioctl( fd, DVD_AUTH, &auth_info ));
1884         if (ret == STATUS_SUCCESS)
1885             memcpy( key->KeyData, auth_info.lsc.chal, DVD_CHALLENGE_SIZE );
1886         break;
1887     case DvdAsf:
1888         auth_info.type = DVD_LU_SEND_ASF;
1889         TRACE("DvdAsf\n");
1890         auth_info.lsasf.asf=((PDVD_ASF)key->KeyData)->SuccessFlag;
1891         ret = CDROM_GetStatusCode(ioctl( fd, DVD_AUTH, &auth_info ));
1892         ((PDVD_ASF)key->KeyData)->SuccessFlag = auth_info.lsasf.asf;
1893         break;
1894     case DvdBusKey1:
1895         auth_info.type = DVD_LU_SEND_KEY1;
1896         auth_info.lsk.agid = (int)key->SessionId;
1897
1898         TRACE("DvdBusKey1\n");
1899         ret = CDROM_GetStatusCode(ioctl( fd, DVD_AUTH, &auth_info ));
1900
1901         if (ret == STATUS_SUCCESS)
1902             memcpy( key->KeyData, auth_info.lsk.key, DVD_KEY_SIZE );
1903         break;
1904     case DvdGetRpcKey:
1905         auth_info.type = DVD_LU_SEND_RPC_STATE;
1906
1907         TRACE("DvdGetRpcKey\n");
1908         ret = CDROM_GetStatusCode(ioctl( fd, DVD_AUTH, &auth_info ));
1909
1910         if (ret == STATUS_SUCCESS)
1911         {
1912             ((PDVD_RPC_KEY)key->KeyData)->TypeCode = auth_info.lrpcs.type;
1913             ((PDVD_RPC_KEY)key->KeyData)->RegionMask = auth_info.lrpcs.region_mask;
1914             ((PDVD_RPC_KEY)key->KeyData)->RpcScheme = auth_info.lrpcs.rpc_scheme;
1915         }
1916         break;
1917     default:
1918         FIXME("Unknown keytype 0x%x\n",key->KeyType);
1919     }
1920     return ret;
1921 #elif defined(__FreeBSD__) || defined(__NetBSD__)
1922     TRACE("bsd\n");
1923     return STATUS_NOT_SUPPORTED;
1924 #else
1925     TRACE("outside\n");
1926     return STATUS_NOT_SUPPORTED;
1927 #endif
1928 }
1929
1930 /******************************************************************
1931  *              DVD_GetRegion
1932  *
1933  *
1934  */
1935 static NTSTATUS DVD_GetRegion(int dev, PDVD_REGION region)
1936 {
1937     FIXME("\n");
1938     return STATUS_SUCCESS;
1939
1940 }
1941
1942 /******************************************************************
1943  *              DVD_GetRegion
1944  *
1945  *
1946  */
1947 static NTSTATUS DVD_ReadStructure(int dev, const DVD_READ_STRUCTURE *structure, PDVD_LAYER_DESCRIPTOR layer)
1948 {
1949 #ifdef DVD_READ_STRUCT
1950     dvd_struct s;
1951
1952     if (structure->BlockByteOffset.u.HighPart || structure->BlockByteOffset.u.LowPart)
1953         FIXME(": BlockByteOffset is not handled\n");
1954
1955     switch (structure->Format)
1956     {
1957     case DvdPhysicalDescriptor:
1958         s.type = DVD_STRUCT_PHYSICAL;
1959         s.physical.layer_num = structure->LayerNumber;
1960         break;
1961
1962     case DvdCopyrightDescriptor:
1963         s.type = DVD_STRUCT_COPYRIGHT;
1964         s.copyright.layer_num = structure->LayerNumber;
1965         break;
1966
1967     case DvdDiskKeyDescriptor:
1968         s.type = DVD_STRUCT_DISCKEY;
1969         s.disckey.agid = structure->SessionId;
1970         break;
1971
1972     case DvdBCADescriptor:
1973         s.type = DVD_STRUCT_BCA;
1974         break;
1975
1976     case DvdManufacturerDescriptor:
1977         s.type = DVD_STRUCT_MANUFACT;
1978         s.manufact.layer_num = structure->LayerNumber;
1979         break;
1980
1981     case DvdMaxDescriptor: /* This is not a real request, no matter what MSDN says! */
1982     default:
1983         return STATUS_INVALID_PARAMETER;
1984     }
1985
1986     if (ioctl(dev, DVD_READ_STRUCT, &s) < 0)
1987        return STATUS_INVALID_PARAMETER;
1988
1989     switch (structure->Format)
1990     {
1991     case DvdPhysicalDescriptor:
1992         {
1993             internal_dvd_layer_descriptor *p = (internal_dvd_layer_descriptor *) layer;
1994             struct dvd_layer *l = &s.physical.layer[s.physical.layer_num];
1995
1996             p->MagicHeader[0] = 2;
1997             p->MagicHeader[1] = 8;
1998             p->MagicHeader[2] = 0;
1999             p->MagicHeader[3] = 0;
2000             p->BookVersion = l->book_version;
2001             p->BookType = l->book_type;
2002             p->MinimumRate = l->min_rate;
2003             p->DiskSize = l->disc_size;
2004             p->LayerType = l->layer_type;
2005             p->TrackPath = l->track_path;
2006             p->NumberOfLayers = l->nlayers;
2007             p->Reserved1 = 0;
2008             p->TrackDensity = l->track_density;
2009             p->LinearDensity = l->linear_density;
2010             p->StartingDataSector = l->start_sector;
2011             p->EndDataSector = l->end_sector;
2012             p->EndLayerZeroSector = l->end_sector_l0;
2013             p->Reserved5 = 0;
2014             p->BCAFlag = l->bca;
2015             p->Reserved6 = 0;
2016         }
2017         break;
2018
2019     case DvdCopyrightDescriptor:
2020         {
2021             PDVD_COPYRIGHT_DESCRIPTOR p = (PDVD_COPYRIGHT_DESCRIPTOR) layer;
2022
2023             p->CopyrightProtectionType = s.copyright.cpst;
2024             p->RegionManagementInformation = s.copyright.rmi;
2025             p->Reserved = 0;
2026         }
2027         break;
2028
2029     case DvdDiskKeyDescriptor:
2030         {
2031             PDVD_DISK_KEY_DESCRIPTOR p = (PDVD_DISK_KEY_DESCRIPTOR) layer;
2032
2033             memcpy(p->DiskKeyData, s.disckey.value, 2048);
2034         }
2035         break;
2036
2037     case DvdBCADescriptor:
2038         {
2039             PDVD_BCA_DESCRIPTOR p = (PDVD_BCA_DESCRIPTOR) layer;
2040
2041             memcpy(p->BCAInformation, s.bca.value, s.bca.len);
2042         }
2043         break;
2044
2045     case DvdManufacturerDescriptor:
2046         {
2047             PDVD_MANUFACTURER_DESCRIPTOR p = (PDVD_MANUFACTURER_DESCRIPTOR) layer;
2048
2049             memcpy(p->ManufacturingInformation, s.manufact.value, 2048);
2050         }
2051         break;
2052
2053     case DvdMaxDescriptor: /* Suppress warning */
2054         break;
2055     }
2056 #else
2057     FIXME("\n");
2058 #endif
2059     return STATUS_SUCCESS;
2060
2061 }
2062
2063 /******************************************************************
2064  *        GetInquiryData
2065  *        Implements the IOCTL_GET_INQUIRY_DATA ioctl.
2066  *        Returns Inquiry data for all devices on the specified scsi bus
2067  *        Returns STATUS_BUFFER_TOO_SMALL if the output buffer is too small, 
2068  *        STATUS_INVALID_DEVICE_REQUEST if the given handle isn't to a SCSI device,
2069  *        or STATUS_NOT_SUPPORTED if the OS driver is too old
2070  */
2071 static NTSTATUS GetInquiryData(int fd, PSCSI_ADAPTER_BUS_INFO BufferOut, DWORD OutBufferSize)
2072 {
2073 #ifdef HAVE_SG_IO_HDR_T_INTERFACE_ID
2074     PSCSI_INQUIRY_DATA pInquiryData = NULL;
2075     UCHAR sense_buffer[32];
2076     int iochk, version;
2077     sg_io_hdr_t iocmd;
2078     UCHAR inquiry[INQ_CMD_LEN] = {INQUIRY, 0, 0, 0, INQ_REPLY_LEN, 0};
2079
2080     /* Check we have a SCSI device and a supported driver */
2081     if(ioctl(fd, SG_GET_VERSION_NUM, &version) != 0)
2082     {
2083         WARN("IOCTL_SCSI_GET_INQUIRY_DATA sg driver is not loaded\n");
2084         return STATUS_INVALID_DEVICE_REQUEST;
2085     }
2086     if(version < 30000 )
2087         return STATUS_NOT_SUPPORTED;
2088
2089     /* FIXME: Enumerate devices on the bus */
2090     BufferOut->NumberOfBuses = 1;
2091     BufferOut->BusData[0].NumberOfLogicalUnits = 1;
2092     BufferOut->BusData[0].InquiryDataOffset = sizeof(SCSI_ADAPTER_BUS_INFO);
2093
2094     pInquiryData = (PSCSI_INQUIRY_DATA)(BufferOut + 1);
2095
2096     RtlZeroMemory(&iocmd, sizeof(iocmd));
2097     iocmd.interface_id = 'S';
2098     iocmd.cmd_len = sizeof(inquiry);
2099     iocmd.mx_sb_len = sizeof(sense_buffer);
2100     iocmd.dxfer_direction = SG_DXFER_FROM_DEV;
2101     iocmd.dxfer_len = INQ_REPLY_LEN;
2102     iocmd.dxferp = pInquiryData->InquiryData;
2103     iocmd.cmdp = inquiry;
2104     iocmd.sbp = sense_buffer;
2105     iocmd.timeout = 1000;
2106
2107     iochk = ioctl(fd, SG_IO, &iocmd);
2108     if(iochk != 0)
2109         WARN("ioctl SG_IO returned %d, error (%s)\n", iochk, strerror(errno));
2110
2111     CDROM_GetInterfaceInfo(fd, &BufferOut->BusData[0].InitiatorBusId, &pInquiryData->PathId, &pInquiryData->TargetId, &pInquiryData->Lun);
2112     pInquiryData->DeviceClaimed = TRUE;
2113     pInquiryData->InquiryDataLength = INQ_REPLY_LEN;
2114     pInquiryData->NextInquiryDataOffset = 0;
2115     return STATUS_SUCCESS;
2116 #else
2117     FIXME("not implemented for nonlinux\n");
2118     return STATUS_NOT_SUPPORTED;
2119 #endif
2120 }
2121
2122 /******************************************************************
2123  *              CDROM_DeviceIoControl
2124  *
2125  *
2126  */
2127 NTSTATUS CDROM_DeviceIoControl(HANDLE hDevice, 
2128                                HANDLE hEvent, PIO_APC_ROUTINE UserApcRoutine,
2129                                PVOID UserApcContext, 
2130                                PIO_STATUS_BLOCK piosb, 
2131                                ULONG dwIoControlCode,
2132                                LPVOID lpInBuffer, DWORD nInBufferSize,
2133                                LPVOID lpOutBuffer, DWORD nOutBufferSize)
2134 {
2135     DWORD       sz = 0;
2136     NTSTATUS    status = STATUS_SUCCESS;
2137     int fd, needs_close, dev;
2138
2139     TRACE("%p %s %p %d %p %d %p\n",
2140           hDevice, iocodex(dwIoControlCode), lpInBuffer, nInBufferSize,
2141           lpOutBuffer, nOutBufferSize, piosb);
2142
2143     piosb->Information = 0;
2144
2145     if ((status = server_get_unix_fd( hDevice, 0, &fd, &needs_close, NULL, NULL )))
2146     {
2147         if (status == STATUS_BAD_DEVICE_TYPE) return status;  /* no associated fd */
2148         goto error;
2149     }
2150
2151     if ((status = CDROM_Open(fd, &dev)))
2152     {
2153         if (needs_close) close( fd );
2154         goto error;
2155     }
2156
2157     switch (dwIoControlCode)
2158     {
2159     case IOCTL_STORAGE_CHECK_VERIFY:
2160     case IOCTL_CDROM_CHECK_VERIFY:
2161     case IOCTL_DISK_CHECK_VERIFY:
2162         sz = 0;
2163         CDROM_ClearCacheEntry(dev);
2164         if (lpInBuffer != NULL || nInBufferSize != 0 || lpOutBuffer != NULL || nOutBufferSize != 0)
2165             status = STATUS_INVALID_PARAMETER;
2166         else status = CDROM_Verify(dev, fd);
2167         break;
2168
2169 /* EPP     case IOCTL_STORAGE_CHECK_VERIFY2: */
2170
2171 /* EPP     case IOCTL_STORAGE_FIND_NEW_DEVICES: */
2172 /* EPP     case IOCTL_CDROM_FIND_NEW_DEVICES: */
2173
2174     case IOCTL_STORAGE_LOAD_MEDIA:
2175     case IOCTL_CDROM_LOAD_MEDIA:
2176         sz = 0;
2177         CDROM_ClearCacheEntry(dev);
2178         if (lpInBuffer != NULL || nInBufferSize != 0 || lpOutBuffer != NULL || nOutBufferSize != 0)
2179             status = STATUS_INVALID_PARAMETER;
2180         else status = CDROM_SetTray(fd, FALSE);
2181         break;
2182      case IOCTL_STORAGE_EJECT_MEDIA:
2183         sz = 0;
2184         CDROM_ClearCacheEntry(dev);
2185         if (lpInBuffer != NULL || nInBufferSize != 0 || lpOutBuffer != NULL || nOutBufferSize != 0)
2186             status = STATUS_INVALID_PARAMETER;
2187         else
2188         {
2189 #ifdef __APPLE__
2190             char name[100];
2191
2192             /* This is ugly as hell, but Mac OS is unable to eject from the device fd,
2193              * it wants an fd for the whole device, and it also requires the device fd
2194              * to be closed first, so we have to close the handle that the caller gave us.
2195              * Also for some reason it wants the fd to be closed before we even open the parent.
2196              */
2197             if ((status = get_parent_device( fd, name, sizeof(name) ))) break;
2198             NtClose( hDevice );
2199             if (needs_close) close( fd );
2200             TRACE("opening parent %s\n", name );
2201             if ((fd = open( name, O_RDONLY )) == -1)
2202             {
2203                 status = FILE_GetNtStatus();
2204                 break;
2205             }
2206             needs_close = 1;
2207 #endif
2208             status = CDROM_SetTray(fd, TRUE);
2209         }
2210         break;
2211
2212     case IOCTL_CDROM_MEDIA_REMOVAL:
2213     case IOCTL_DISK_MEDIA_REMOVAL:
2214     case IOCTL_STORAGE_MEDIA_REMOVAL:
2215     case IOCTL_STORAGE_EJECTION_CONTROL:
2216         /* FIXME the last ioctl:s is not the same as the two others...
2217          * lockcount/owner should be handled */
2218         sz = 0;
2219         CDROM_ClearCacheEntry(dev);
2220         if (lpOutBuffer != NULL || nOutBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2221         else if (nInBufferSize < sizeof(PREVENT_MEDIA_REMOVAL)) status = STATUS_BUFFER_TOO_SMALL;
2222         else status = CDROM_ControlEjection(fd, (const PREVENT_MEDIA_REMOVAL*)lpInBuffer);
2223         break;
2224
2225 /* EPP     case IOCTL_STORAGE_GET_MEDIA_TYPES: */
2226
2227     case IOCTL_STORAGE_GET_DEVICE_NUMBER:
2228         sz = sizeof(STORAGE_DEVICE_NUMBER);
2229         if (lpInBuffer != NULL || nInBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2230         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2231         else status = CDROM_GetDeviceNumber(dev, (STORAGE_DEVICE_NUMBER*)lpOutBuffer);
2232         break;
2233
2234     case IOCTL_STORAGE_RESET_DEVICE:
2235         sz = 0;
2236         CDROM_ClearCacheEntry(dev);
2237         if (lpInBuffer != NULL || nInBufferSize != 0 || lpOutBuffer != NULL || nOutBufferSize != 0)
2238             status = STATUS_INVALID_PARAMETER;
2239         else status = CDROM_ResetAudio(fd);
2240         break;
2241
2242     case IOCTL_CDROM_GET_CONTROL:
2243         sz = sizeof(CDROM_AUDIO_CONTROL);
2244         if (lpInBuffer != NULL || nInBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2245         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2246         else status = CDROM_GetControl(dev, (CDROM_AUDIO_CONTROL*)lpOutBuffer);
2247         break;
2248
2249     case IOCTL_CDROM_GET_DRIVE_GEOMETRY:
2250         sz = sizeof(DISK_GEOMETRY);
2251         if (lpInBuffer != NULL || nInBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2252         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2253         else status = CDROM_GetDriveGeometry(dev, fd, (DISK_GEOMETRY*)lpOutBuffer);
2254         break;
2255
2256     case IOCTL_CDROM_DISK_TYPE:
2257         sz = sizeof(CDROM_DISK_DATA);
2258         /* CDROM_ClearCacheEntry(dev); */
2259         if (lpInBuffer != NULL || nInBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2260         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2261         else status = CDROM_GetDiskData(dev, fd, (CDROM_DISK_DATA*)lpOutBuffer);
2262         break;
2263
2264 /* EPP     case IOCTL_CDROM_GET_LAST_SESSION: */
2265
2266     case IOCTL_CDROM_READ_Q_CHANNEL:
2267         sz = sizeof(SUB_Q_CHANNEL_DATA);
2268         if (lpInBuffer == NULL || nInBufferSize < sizeof(CDROM_SUB_Q_DATA_FORMAT))
2269             status = STATUS_INVALID_PARAMETER;
2270         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2271         else status = CDROM_ReadQChannel(dev, fd, (const CDROM_SUB_Q_DATA_FORMAT*)lpInBuffer,
2272                                         (SUB_Q_CHANNEL_DATA*)lpOutBuffer);
2273         break;
2274
2275     case IOCTL_CDROM_READ_TOC:
2276         sz = sizeof(CDROM_TOC);
2277         if (lpInBuffer != NULL || nInBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2278         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2279         else status = CDROM_ReadTOC(dev, fd, (CDROM_TOC*)lpOutBuffer);
2280         break;
2281
2282 /* EPP     case IOCTL_CDROM_READ_TOC_EX: */
2283
2284     case IOCTL_CDROM_PAUSE_AUDIO:
2285         sz = 0;
2286         if (lpInBuffer != NULL || nInBufferSize != 0 || lpOutBuffer != NULL || nOutBufferSize != 0)
2287             status = STATUS_INVALID_PARAMETER;
2288         else status = CDROM_PauseAudio(fd);
2289         break;
2290     case IOCTL_CDROM_PLAY_AUDIO_MSF:
2291         sz = 0;
2292         if (lpOutBuffer != NULL || nOutBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2293         else if (nInBufferSize < sizeof(CDROM_PLAY_AUDIO_MSF)) status = STATUS_BUFFER_TOO_SMALL;
2294         else status = CDROM_PlayAudioMSF(fd, (const CDROM_PLAY_AUDIO_MSF*)lpInBuffer);
2295         break;
2296     case IOCTL_CDROM_RESUME_AUDIO:
2297         sz = 0;
2298         if (lpInBuffer != NULL || nInBufferSize != 0 || lpOutBuffer != NULL || nOutBufferSize != 0)
2299             status = STATUS_INVALID_PARAMETER;
2300         else status = CDROM_ResumeAudio(fd);
2301         break;
2302     case IOCTL_CDROM_SEEK_AUDIO_MSF:
2303         sz = 0;
2304         if (lpOutBuffer != NULL || nOutBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2305         else if (nInBufferSize < sizeof(CDROM_SEEK_AUDIO_MSF)) status = STATUS_BUFFER_TOO_SMALL;
2306         else status = CDROM_SeekAudioMSF(dev, fd, (const CDROM_SEEK_AUDIO_MSF*)lpInBuffer);
2307         break;
2308     case IOCTL_CDROM_STOP_AUDIO:
2309         sz = 0;
2310         CDROM_ClearCacheEntry(dev); /* Maybe intention is to change media */
2311         if (lpInBuffer != NULL || nInBufferSize != 0 || lpOutBuffer != NULL || nOutBufferSize != 0)
2312             status = STATUS_INVALID_PARAMETER;
2313         else status = CDROM_StopAudio(fd);
2314         break;
2315     case IOCTL_CDROM_GET_VOLUME:
2316         sz = sizeof(VOLUME_CONTROL);
2317         if (lpInBuffer != NULL || nInBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2318         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2319         else status = CDROM_GetVolume(fd, (VOLUME_CONTROL*)lpOutBuffer);
2320         break;
2321     case IOCTL_CDROM_SET_VOLUME:
2322         sz = 0;
2323         CDROM_ClearCacheEntry(dev);
2324         if (lpInBuffer == NULL || nInBufferSize < sizeof(VOLUME_CONTROL) || lpOutBuffer != NULL)
2325             status = STATUS_INVALID_PARAMETER;
2326         else status = CDROM_SetVolume(fd, (const VOLUME_CONTROL*)lpInBuffer);
2327         break;
2328     case IOCTL_CDROM_RAW_READ:
2329         sz = 0;
2330         if (nInBufferSize < sizeof(RAW_READ_INFO)) status = STATUS_INVALID_PARAMETER;
2331         else if (lpOutBuffer == NULL) status = STATUS_BUFFER_TOO_SMALL;
2332         else status = CDROM_RawRead(fd, (const RAW_READ_INFO*)lpInBuffer,
2333                                    lpOutBuffer, nOutBufferSize, &sz);
2334         break;
2335     case IOCTL_SCSI_GET_ADDRESS:
2336         sz = sizeof(SCSI_ADDRESS);
2337         if (lpInBuffer != NULL || nInBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2338         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2339         else status = CDROM_GetAddress(fd, (SCSI_ADDRESS*)lpOutBuffer);
2340         break;
2341     case IOCTL_SCSI_PASS_THROUGH_DIRECT:
2342         sz = sizeof(SCSI_PASS_THROUGH_DIRECT);
2343         if (lpOutBuffer == NULL) status = STATUS_INVALID_PARAMETER;
2344         else if (nOutBufferSize < sizeof(SCSI_PASS_THROUGH_DIRECT)) status = STATUS_BUFFER_TOO_SMALL;
2345         else status = CDROM_ScsiPassThroughDirect(fd, (PSCSI_PASS_THROUGH_DIRECT)lpOutBuffer);
2346         break;
2347     case IOCTL_SCSI_PASS_THROUGH:
2348         sz = sizeof(SCSI_PASS_THROUGH);
2349         if (lpOutBuffer == NULL) status = STATUS_INVALID_PARAMETER;
2350         else if (nOutBufferSize < sizeof(SCSI_PASS_THROUGH)) status = STATUS_BUFFER_TOO_SMALL;
2351         else status = CDROM_ScsiPassThrough(fd, (PSCSI_PASS_THROUGH)lpOutBuffer);
2352         break;
2353     case IOCTL_SCSI_GET_CAPABILITIES:
2354         sz = sizeof(IO_SCSI_CAPABILITIES);
2355         if (lpOutBuffer == NULL) status = STATUS_INVALID_PARAMETER;
2356         else if (nOutBufferSize < sizeof(IO_SCSI_CAPABILITIES)) status = STATUS_BUFFER_TOO_SMALL;
2357         else status = CDROM_ScsiGetCaps((PIO_SCSI_CAPABILITIES)lpOutBuffer);
2358         break;
2359     case IOCTL_DVD_START_SESSION:
2360         sz = sizeof(DVD_SESSION_ID);
2361         if (lpOutBuffer == NULL) status = STATUS_INVALID_PARAMETER;
2362         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2363         else
2364         {
2365             TRACE("before in 0x%08x out 0x%08x\n",(lpInBuffer)?*(PDVD_SESSION_ID)lpInBuffer:0,
2366                   *(PDVD_SESSION_ID)lpOutBuffer);
2367             status = DVD_StartSession(fd, (PDVD_SESSION_ID)lpInBuffer, (PDVD_SESSION_ID)lpOutBuffer);
2368             TRACE("before in 0x%08x out 0x%08x\n",(lpInBuffer)?*(PDVD_SESSION_ID)lpInBuffer:0,
2369                   *(PDVD_SESSION_ID)lpOutBuffer);
2370         }
2371         break;
2372     case IOCTL_DVD_END_SESSION:
2373         sz = sizeof(DVD_SESSION_ID);
2374         if ((lpInBuffer == NULL) ||  (nInBufferSize < sz))status = STATUS_INVALID_PARAMETER;
2375         else status = DVD_EndSession(fd, (PDVD_SESSION_ID)lpInBuffer);
2376         break;
2377     case IOCTL_DVD_SEND_KEY:
2378         sz = 0;
2379         if (!lpInBuffer ||
2380             (((PDVD_COPY_PROTECT_KEY)lpInBuffer)->KeyLength != nInBufferSize))
2381             status = STATUS_INVALID_PARAMETER;
2382         else
2383         {
2384             TRACE("doing DVD_SendKey\n");
2385             status = DVD_SendKey(fd, (PDVD_COPY_PROTECT_KEY)lpInBuffer);
2386         }
2387         break;
2388     case IOCTL_DVD_READ_KEY:
2389         if (!lpInBuffer ||
2390             (((PDVD_COPY_PROTECT_KEY)lpInBuffer)->KeyLength != nInBufferSize))
2391             status = STATUS_INVALID_PARAMETER;
2392         else if (lpInBuffer !=lpOutBuffer) status = STATUS_BUFFER_TOO_SMALL;
2393         else
2394         {
2395             TRACE("doing DVD_READ_KEY\n");
2396             sz = ((PDVD_COPY_PROTECT_KEY)lpInBuffer)->KeyLength;
2397             status = DVD_ReadKey(fd, (PDVD_COPY_PROTECT_KEY)lpInBuffer);
2398         }
2399         break;
2400     case IOCTL_DVD_GET_REGION:
2401         sz = sizeof(DVD_REGION);
2402         if (lpInBuffer != NULL || nInBufferSize != 0) status = STATUS_INVALID_PARAMETER;
2403         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2404         TRACE("doing DVD_Get_REGION\n");
2405         status = DVD_GetRegion(fd, (PDVD_REGION)lpOutBuffer);
2406         break;
2407     case IOCTL_DVD_READ_STRUCTURE:
2408         sz = sizeof(DVD_LAYER_DESCRIPTOR);
2409         if (lpInBuffer == NULL || nInBufferSize != sizeof(DVD_READ_STRUCTURE)) status = STATUS_INVALID_PARAMETER;
2410         else if (nOutBufferSize < sz) status = STATUS_BUFFER_TOO_SMALL;
2411         else
2412         {
2413             TRACE("doing DVD_READ_STRUCTURE\n");
2414             status = DVD_ReadStructure(fd, (PDVD_READ_STRUCTURE)lpInBuffer, (PDVD_LAYER_DESCRIPTOR)lpOutBuffer);
2415         }
2416         break;
2417
2418     case IOCTL_SCSI_GET_INQUIRY_DATA:
2419         sz = INQ_REPLY_LEN;
2420         status = GetInquiryData(fd, (PSCSI_ADAPTER_BUS_INFO)lpOutBuffer, nOutBufferSize);
2421         break;
2422
2423     default:
2424         if (needs_close) close( fd );
2425         return STATUS_NOT_SUPPORTED;
2426     }
2427     if (needs_close) close( fd );
2428  error:
2429     piosb->u.Status = status;
2430     piosb->Information = sz;
2431     if (hEvent) NtSetEvent(hEvent, NULL);
2432     return status;
2433 }