1c2c66affSColin Finck //////////////////////////////////////////////////////////////////// 2c2c66affSColin Finck // Copyright (C) Alexander Telyatnikov, Ivan Keliukh, Yegor Anchishkin, SKIF Software, 1999-2013. Kiev, Ukraine 3c2c66affSColin Finck // All rights reserved 4c2c66affSColin Finck // This file was released under the GPLv2 on June 2015. 5c2c66affSColin Finck //////////////////////////////////////////////////////////////////// 6c2c66affSColin Finck /* 7c2c66affSColin Finck 8c2c66affSColin Finck Module Name: FsCntrl.cpp 9c2c66affSColin Finck 10c2c66affSColin Finck Abstract: 11c2c66affSColin Finck 12c2c66affSColin Finck Contains code to handle the "File System IOCTL" dispatch entry point. 13c2c66affSColin Finck 14c2c66affSColin Finck Environment: 15c2c66affSColin Finck 16c2c66affSColin Finck Kernel mode only 17c2c66affSColin Finck 18c2c66affSColin Finck */ 19c2c66affSColin Finck 20c2c66affSColin Finck #include "udffs.h" 21c2c66affSColin Finck 22c2c66affSColin Finck // define the file specific bug-check id 23c2c66affSColin Finck #define UDF_BUG_CHECK_ID UDF_FILE_FS_CONTROL 24c2c66affSColin Finck 25c2c66affSColin Finck NTSTATUS UDFBlankMount(IN PVCB Vcb); 26c2c66affSColin Finck 27c2c66affSColin Finck PDIR_INDEX_HDR UDFDirIndexAlloc(IN uint_di i); 28c2c66affSColin Finck 29c2c66affSColin Finck /* 30c2c66affSColin Finck Function: UDFFSControl() 31c2c66affSColin Finck 32c2c66affSColin Finck Description: 33c2c66affSColin Finck The I/O Manager will invoke this routine to handle a File System 34c2c66affSColin Finck Control request (this is IRP_MJ_FILE_SYSTEM_CONTROL dispatch point) 35c2c66affSColin Finck 36c2c66affSColin Finck */ 37c2c66affSColin Finck NTSTATUS 38c2c66affSColin Finck NTAPI 39c2c66affSColin Finck UDFFSControl( 40c2c66affSColin Finck PDEVICE_OBJECT DeviceObject, // the logical volume device object 41c2c66affSColin Finck PIRP Irp // I/O Request Packet 42c2c66affSColin Finck ) 43c2c66affSColin Finck { 44c2c66affSColin Finck NTSTATUS RC = STATUS_SUCCESS; 45c2c66affSColin Finck PtrUDFIrpContext PtrIrpContext; 46c2c66affSColin Finck BOOLEAN AreWeTopLevel = FALSE; 47c2c66affSColin Finck 48c2c66affSColin Finck UDFPrint(("\nUDFFSControl: \n\n")); 49c2c66affSColin Finck 50c2c66affSColin Finck FsRtlEnterFileSystem(); 51c2c66affSColin Finck ASSERT(DeviceObject); 52c2c66affSColin Finck ASSERT(Irp); 53c2c66affSColin Finck 54c2c66affSColin Finck // set the top level context 55c2c66affSColin Finck AreWeTopLevel = UDFIsIrpTopLevel(Irp); 56c2c66affSColin Finck 57c2c66affSColin Finck _SEH2_TRY { 58c2c66affSColin Finck 59c2c66affSColin Finck // get an IRP context structure and issue the request 60c2c66affSColin Finck PtrIrpContext = UDFAllocateIrpContext(Irp, DeviceObject); 61c2c66affSColin Finck if(PtrIrpContext) { 62c2c66affSColin Finck RC = UDFCommonFSControl(PtrIrpContext, Irp); 63c2c66affSColin Finck } else { 64c2c66affSColin Finck RC = STATUS_INSUFFICIENT_RESOURCES; 65c2c66affSColin Finck Irp->IoStatus.Status = RC; 66c2c66affSColin Finck Irp->IoStatus.Information = 0; 67c2c66affSColin Finck // complete the IRP 68c2c66affSColin Finck IoCompleteRequest(Irp, IO_DISK_INCREMENT); 69c2c66affSColin Finck } 70c2c66affSColin Finck 71c2c66affSColin Finck } _SEH2_EXCEPT(UDFExceptionFilter(PtrIrpContext, _SEH2_GetExceptionInformation())) { 72c2c66affSColin Finck 73c2c66affSColin Finck UDFPrintErr(("UDFFSControl: exception ***")); 74c2c66affSColin Finck RC = UDFExceptionHandler(PtrIrpContext, Irp); 75c2c66affSColin Finck 76c2c66affSColin Finck UDFLogEvent(UDF_ERROR_INTERNAL_ERROR, RC); 77c2c66affSColin Finck } _SEH2_END; 78c2c66affSColin Finck 79c2c66affSColin Finck if(AreWeTopLevel) { 80c2c66affSColin Finck IoSetTopLevelIrp(NULL); 81c2c66affSColin Finck } 82c2c66affSColin Finck 83c2c66affSColin Finck FsRtlExitFileSystem(); 84c2c66affSColin Finck 85c2c66affSColin Finck return(RC); 86c2c66affSColin Finck } // end UDFFSControl() 87c2c66affSColin Finck 88c2c66affSColin Finck /* 89c2c66affSColin Finck Function: UDFCommonFSControl() 90c2c66affSColin Finck 91c2c66affSColin Finck Description: 92c2c66affSColin Finck The actual work is performed here. 93c2c66affSColin Finck 94c2c66affSColin Finck Expected Interrupt Level (for execution) : 95c2c66affSColin Finck IRQL_PASSIVE_LEVEL (invocation at higher IRQL will cause execution 96c2c66affSColin Finck to be deferred to a worker thread context) 97c2c66affSColin Finck 98c2c66affSColin Finck Return Value: STATUS_SUCCESS/Error 99c2c66affSColin Finck */ 100c2c66affSColin Finck 101c2c66affSColin Finck NTSTATUS 102c2c66affSColin Finck NTAPI 103c2c66affSColin Finck UDFCommonFSControl( 104c2c66affSColin Finck PtrUDFIrpContext PtrIrpContext, 105c2c66affSColin Finck PIRP Irp // I/O Request Packet 106c2c66affSColin Finck ) 107c2c66affSColin Finck { 108c2c66affSColin Finck NTSTATUS RC = STATUS_UNRECOGNIZED_VOLUME; 109c2c66affSColin Finck PIO_STACK_LOCATION IrpSp = NULL; 110c2c66affSColin Finck // PDEVICE_OBJECT PtrTargetDeviceObject = NULL; 111c2c66affSColin Finck 112c2c66affSColin Finck UDFPrint(("\nUDFCommonFSControl\n\n")); 113c2c66affSColin Finck // BrutePoint(); 114c2c66affSColin Finck 115c2c66affSColin Finck _SEH2_TRY { 116c2c66affSColin Finck 117c2c66affSColin Finck IrpSp = IoGetCurrentIrpStackLocation(Irp); 118c2c66affSColin Finck ASSERT(IrpSp); 119c2c66affSColin Finck 120c2c66affSColin Finck switch ((IrpSp)->MinorFunction) 121c2c66affSColin Finck { 122c2c66affSColin Finck case IRP_MN_USER_FS_REQUEST: 123c2c66affSColin Finck UDFPrint((" UDFFSControl: UserFsReq request ....\n")); 124c2c66affSColin Finck 125c2c66affSColin Finck RC = UDFUserFsCtrlRequest(PtrIrpContext,Irp); 126c2c66affSColin Finck break; 127c2c66affSColin Finck case IRP_MN_MOUNT_VOLUME: 128c2c66affSColin Finck 129c2c66affSColin Finck UDFPrint((" UDFFSControl: MOUNT_VOLUME request ....\n")); 130c2c66affSColin Finck 131c2c66affSColin Finck RC = UDFMountVolume(PtrIrpContext,Irp); 132c2c66affSColin Finck break; 133c2c66affSColin Finck case IRP_MN_VERIFY_VOLUME: 134c2c66affSColin Finck 135c2c66affSColin Finck UDFPrint((" UDFFSControl: VERIFY_VOLUME request ....\n")); 136c2c66affSColin Finck 137c2c66affSColin Finck RC = UDFVerifyVolume(Irp); 138c2c66affSColin Finck break; 139c2c66affSColin Finck default: 140c2c66affSColin Finck UDFPrintErr((" UDFFSControl: STATUS_INVALID_DEVICE_REQUEST MinorFunction %x\n", (IrpSp)->MinorFunction)); 141c2c66affSColin Finck RC = STATUS_INVALID_DEVICE_REQUEST; 142c2c66affSColin Finck 143c2c66affSColin Finck Irp->IoStatus.Status = RC; 144c2c66affSColin Finck Irp->IoStatus.Information = 0; 145c2c66affSColin Finck // complete the IRP 146c2c66affSColin Finck IoCompleteRequest(Irp, IO_DISK_INCREMENT); 147c2c66affSColin Finck break; 148c2c66affSColin Finck } 149c2c66affSColin Finck 150c2c66affSColin Finck //try_exit: NOTHING; 151c2c66affSColin Finck } _SEH2_FINALLY { 152c2c66affSColin Finck if (!_SEH2_AbnormalTermination()) { 153c2c66affSColin Finck // Free up the Irp Context 154c2c66affSColin Finck UDFPrint((" UDFCommonFSControl: finally\n")); 155c2c66affSColin Finck UDFReleaseIrpContext(PtrIrpContext); 156c2c66affSColin Finck } else { 157c2c66affSColin Finck UDFPrint((" UDFCommonFSControl: finally after exception ***\n")); 158c2c66affSColin Finck } 159c2c66affSColin Finck } _SEH2_END; 160c2c66affSColin Finck 161c2c66affSColin Finck return(RC); 162c2c66affSColin Finck } // end UDFCommonFSControl() 163c2c66affSColin Finck 164c2c66affSColin Finck /* 165c2c66affSColin Finck Routine Description: 166c2c66affSColin Finck This is the common routine for implementing the user's requests made 167c2c66affSColin Finck through NtFsControlFile. 168c2c66affSColin Finck 169c2c66affSColin Finck Arguments: 170c2c66affSColin Finck Irp - Supplies the Irp being processed 171c2c66affSColin Finck 172c2c66affSColin Finck Return Value: 173c2c66affSColin Finck NTSTATUS - The return status for the operation 174c2c66affSColin Finck 175c2c66affSColin Finck */ 176c2c66affSColin Finck NTSTATUS 177c2c66affSColin Finck NTAPI 178c2c66affSColin Finck UDFUserFsCtrlRequest( 179c2c66affSColin Finck PtrUDFIrpContext IrpContext, 180c2c66affSColin Finck PIRP Irp 181c2c66affSColin Finck ) 182c2c66affSColin Finck { 183c2c66affSColin Finck NTSTATUS RC; 184c2c66affSColin Finck PEXTENDED_IO_STACK_LOCATION IrpSp = (PEXTENDED_IO_STACK_LOCATION) IoGetCurrentIrpStackLocation( Irp ); 185c2c66affSColin Finck 186c2c66affSColin Finck // Case on the control code. 187c2c66affSColin Finck switch ( IrpSp->Parameters.FileSystemControl.FsControlCode ) { 188c2c66affSColin Finck 189c2c66affSColin Finck case FSCTL_REQUEST_OPLOCK_LEVEL_1 : 190c2c66affSColin Finck case FSCTL_REQUEST_OPLOCK_LEVEL_2 : 191c2c66affSColin Finck case FSCTL_REQUEST_BATCH_OPLOCK : 192c2c66affSColin Finck case FSCTL_OPLOCK_BREAK_ACKNOWLEDGE : 193c2c66affSColin Finck case FSCTL_OPBATCH_ACK_CLOSE_PENDING : 194c2c66affSColin Finck case FSCTL_OPLOCK_BREAK_NOTIFY : 195c2c66affSColin Finck case FSCTL_OPLOCK_BREAK_ACK_NO_2 : 196c2c66affSColin Finck case FSCTL_REQUEST_FILTER_OPLOCK : 197c2c66affSColin Finck 198c2c66affSColin Finck UDFPrint(("UDFUserFsCtrlRequest: OPLOCKS\n")); 199c2c66affSColin Finck RC = STATUS_INVALID_DEVICE_REQUEST; 200c2c66affSColin Finck 201c2c66affSColin Finck Irp->IoStatus.Information = 0; 202c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_DEVICE_REQUEST; 203c2c66affSColin Finck break; 204c2c66affSColin Finck /* 205c2c66affSColin Finck RC = UDFOplockRequest( IrpContext, Irp ); 206c2c66affSColin Finck break; 207c2c66affSColin Finck */ 208c2c66affSColin Finck case FSCTL_INVALIDATE_VOLUMES : 209c2c66affSColin Finck 210c2c66affSColin Finck RC = UDFInvalidateVolumes( IrpContext, Irp ); 211c2c66affSColin Finck break; 212c2c66affSColin Finck /* 213c2c66affSColin Finck case FSCTL_MOVE_FILE: 214c2c66affSColin Finck 215c2c66affSColin Finck case FSCTL_QUERY_ALLOCATED_RANGES: 216c2c66affSColin Finck case FSCTL_SET_ZERO_DATA: 217c2c66affSColin Finck case FSCTL_SET_SPARSE: 218c2c66affSColin Finck 219c2c66affSColin Finck case FSCTL_MARK_VOLUME_DIRTY: 220c2c66affSColin Finck 221c2c66affSColin Finck RC = UDFDirtyVolume( IrpContext, Irp ); 222c2c66affSColin Finck break; 223c2c66affSColin Finck 224c2c66affSColin Finck */ 225c2c66affSColin Finck case FSCTL_IS_VOLUME_DIRTY: 226c2c66affSColin Finck 227c2c66affSColin Finck RC = UDFIsVolumeDirty(IrpContext, Irp); 228c2c66affSColin Finck break; 229c2c66affSColin Finck 230c2c66affSColin Finck case FSCTL_ALLOW_EXTENDED_DASD_IO: 231c2c66affSColin Finck 232c2c66affSColin Finck UDFPrint(("UDFUserFsCtrlRequest: FSCTL_ALLOW_EXTENDED_DASD_IO\n")); 233c2c66affSColin Finck // DASD i/o is always permitted 234c2c66affSColin Finck // So, no-op this call 235c2c66affSColin Finck RC = STATUS_SUCCESS; 236c2c66affSColin Finck 237c2c66affSColin Finck Irp->IoStatus.Information = 0; 238c2c66affSColin Finck Irp->IoStatus.Status = STATUS_SUCCESS; 239c2c66affSColin Finck break; 240c2c66affSColin Finck 241c2c66affSColin Finck case FSCTL_DISMOUNT_VOLUME: 242c2c66affSColin Finck 243c2c66affSColin Finck RC = UDFDismountVolume( IrpContext, Irp ); 244c2c66affSColin Finck break; 245c2c66affSColin Finck 246c2c66affSColin Finck case FSCTL_IS_VOLUME_MOUNTED: 247c2c66affSColin Finck 248c2c66affSColin Finck RC = UDFIsVolumeMounted( IrpContext, Irp ); 249c2c66affSColin Finck break; 250c2c66affSColin Finck 251c2c66affSColin Finck case FSCTL_FILESYSTEM_GET_STATISTICS: 252c2c66affSColin Finck 253c2c66affSColin Finck RC = UDFGetStatistics( IrpContext, Irp ); 254c2c66affSColin Finck break; 255c2c66affSColin Finck 256c2c66affSColin Finck case FSCTL_LOCK_VOLUME: 257c2c66affSColin Finck 258c2c66affSColin Finck RC = UDFLockVolume( IrpContext, Irp ); 259c2c66affSColin Finck break; 260c2c66affSColin Finck 261c2c66affSColin Finck case FSCTL_UNLOCK_VOLUME: 262c2c66affSColin Finck 263c2c66affSColin Finck RC = UDFUnlockVolume( IrpContext, Irp ); 264c2c66affSColin Finck break; 265c2c66affSColin Finck 266c2c66affSColin Finck case FSCTL_IS_PATHNAME_VALID: 267c2c66affSColin Finck 268c2c66affSColin Finck RC = UDFIsPathnameValid( IrpContext, Irp ); 269c2c66affSColin Finck break; 270c2c66affSColin Finck 271c2c66affSColin Finck case FSCTL_GET_VOLUME_BITMAP: 272c2c66affSColin Finck 273c2c66affSColin Finck UDFPrint(("UDFUserFsCtrlRequest: FSCTL_GET_VOLUME_BITMAP\n")); 274c2c66affSColin Finck RC = UDFGetVolumeBitmap( IrpContext, Irp ); 275c2c66affSColin Finck break; 276c2c66affSColin Finck 277c2c66affSColin Finck case FSCTL_GET_RETRIEVAL_POINTERS: 278c2c66affSColin Finck 279c2c66affSColin Finck UDFPrint(("UDFUserFsCtrlRequest: FSCTL_GET_RETRIEVAL_POINTERS\n")); 280c2c66affSColin Finck RC = UDFGetRetrievalPointers( IrpContext, Irp, 0 ); 281c2c66affSColin Finck break; 282c2c66affSColin Finck 283c2c66affSColin Finck 284c2c66affSColin Finck // We don't support any of the known or unknown requests. 285c2c66affSColin Finck default: 286c2c66affSColin Finck 287c2c66affSColin Finck UDFPrintErr(("UDFUserFsCtrlRequest: STATUS_INVALID_DEVICE_REQUEST for %x\n", 288c2c66affSColin Finck IrpSp->Parameters.FileSystemControl.FsControlCode)); 289c2c66affSColin Finck RC = STATUS_INVALID_DEVICE_REQUEST; 290c2c66affSColin Finck 291c2c66affSColin Finck Irp->IoStatus.Information = 0; 292c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_DEVICE_REQUEST; 293c2c66affSColin Finck break; 294c2c66affSColin Finck } 295c2c66affSColin Finck 296c2c66affSColin Finck IoCompleteRequest(Irp,IO_DISK_INCREMENT); 297c2c66affSColin Finck return RC; 298c2c66affSColin Finck 299c2c66affSColin Finck } // end UDFUserFsCtrlRequest() 300c2c66affSColin Finck 301c2c66affSColin Finck 302c2c66affSColin Finck /* 303c2c66affSColin Finck Routine Description: 304c2c66affSColin Finck This is the common routine for implementing the mount requests 305c2c66affSColin Finck 306c2c66affSColin Finck Arguments: 307c2c66affSColin Finck Irp - Supplies the Irp being processed 308c2c66affSColin Finck 309c2c66affSColin Finck Return Value: 310c2c66affSColin Finck NTSTATUS - The return status for the operation 311c2c66affSColin Finck 312c2c66affSColin Finck */ 313c2c66affSColin Finck NTSTATUS 314c2c66affSColin Finck NTAPI 315c2c66affSColin Finck UDFMountVolume( 316c2c66affSColin Finck IN PtrUDFIrpContext PtrIrpContext, 317c2c66affSColin Finck IN PIRP Irp 318c2c66affSColin Finck ) 319c2c66affSColin Finck { 320c2c66affSColin Finck NTSTATUS RC; 321c2c66affSColin Finck PIO_STACK_LOCATION IrpSp = IoGetCurrentIrpStackLocation(Irp); 322c2c66affSColin Finck PDEVICE_OBJECT TargetDeviceObject = NULL; 323c2c66affSColin Finck PFILTER_DEV_EXTENSION filterDevExt; 324c2c66affSColin Finck PDEVICE_OBJECT fsDeviceObject; 325c2c66affSColin Finck PVPB Vpb = IrpSp->Parameters.MountVolume.Vpb; 326c2c66affSColin Finck PVCB Vcb = NULL; 327c2c66affSColin Finck // PVCB OldVcb = NULL; 328c2c66affSColin Finck PDEVICE_OBJECT VolDo = NULL; 329c2c66affSColin Finck IO_STATUS_BLOCK Iosb; 330c2c66affSColin Finck ULONG MediaChangeCount = 0; 331c2c66affSColin Finck ULONG Characteristics; 332c2c66affSColin Finck DEVICE_TYPE FsDeviceType; 333c2c66affSColin Finck BOOLEAN RestoreDoVerify = FALSE; 334c2c66affSColin Finck BOOLEAN WrongMedia = FALSE; 335c2c66affSColin Finck BOOLEAN RemovableMedia = TRUE; 336c2c66affSColin Finck BOOLEAN CompleteIrp = FALSE; 337c2c66affSColin Finck ULONG Mode; 338c2c66affSColin Finck TEST_UNIT_READY_USER_OUT TestUnitReadyBuffer; 339c2c66affSColin Finck ULONG i; 340c2c66affSColin Finck LARGE_INTEGER delay; 341c2c66affSColin Finck BOOLEAN VcbAcquired = FALSE; 342c2c66affSColin Finck BOOLEAN DeviceNotTouched = TRUE; 343c2c66affSColin Finck BOOLEAN Locked = FALSE; 344c2c66affSColin Finck int8* ioBuf = NULL; 345c2c66affSColin Finck 346c2c66affSColin Finck ASSERT(IrpSp); 347c2c66affSColin Finck UDFPrint(("\n !!! UDFMountVolume\n")); 348c2c66affSColin Finck // UDFPrint(("Build " VER_STR_PRODUCT "\n\n")); 349c2c66affSColin Finck 350c2c66affSColin Finck fsDeviceObject = PtrIrpContext->TargetDeviceObject; 351c2c66affSColin Finck UDFPrint(("Mount on device object %x\n", fsDeviceObject)); 352c2c66affSColin Finck filterDevExt = (PFILTER_DEV_EXTENSION)fsDeviceObject->DeviceExtension; 353c2c66affSColin Finck if (filterDevExt->NodeIdentifier.NodeType == UDF_NODE_TYPE_FILTER_DEVOBJ && 354c2c66affSColin Finck filterDevExt->NodeIdentifier.NodeSize == sizeof(FILTER_DEV_EXTENSION)) { 355c2c66affSColin Finck CompleteIrp = FALSE; 356c2c66affSColin Finck } else 357c2c66affSColin Finck if (filterDevExt->NodeIdentifier.NodeType == UDF_NODE_TYPE_UDFFS_DEVOBJ && 358c2c66affSColin Finck filterDevExt->NodeIdentifier.NodeSize == sizeof(UDFFS_DEV_EXTENSION)) { 359c2c66affSColin Finck CompleteIrp = TRUE; 360c2c66affSColin Finck } else { 361c2c66affSColin Finck UDFPrintErr(("Invalid node type in FS or FILTER DeviceObject\n")); 362c2c66affSColin Finck ASSERT(FALSE); 363c2c66affSColin Finck } 364c2c66affSColin Finck // Get a pointer to the target physical/virtual device object. 365c2c66affSColin Finck TargetDeviceObject = IrpSp->Parameters.MountVolume.DeviceObject; 366c2c66affSColin Finck 367c2c66affSColin Finck if(((Characteristics = TargetDeviceObject->Characteristics) & FILE_FLOPPY_DISKETTE) || 368c2c66affSColin Finck (UDFGlobalData.UDFFlags & UDF_DATA_FLAGS_BEING_UNLOADED) ) { 369c2c66affSColin Finck WrongMedia = TRUE; 370c2c66affSColin Finck } else { 371c2c66affSColin Finck RemovableMedia = (Characteristics & FILE_REMOVABLE_MEDIA) ? TRUE : FALSE; 372c2c66affSColin Finck if(TargetDeviceObject->DeviceType != FILE_DEVICE_CD_ROM) { 373c2c66affSColin Finck if(UDFGetRegParameter(NULL, REG_MOUNT_ON_CDONLY_NAME, TRUE)) { 374c2c66affSColin Finck WrongMedia = TRUE; 375c2c66affSColin Finck } 376c2c66affSColin Finck } 377c2c66affSColin Finck if(TargetDeviceObject->DeviceType == FILE_DEVICE_CD_ROM) { 378c2c66affSColin Finck FsDeviceType = FILE_DEVICE_CD_ROM_FILE_SYSTEM; 379c2c66affSColin Finck #ifdef UDF_HDD_SUPPORT 380c2c66affSColin Finck } else 381c2c66affSColin Finck if (TargetDeviceObject->DeviceType == FILE_DEVICE_DISK) { 382c2c66affSColin Finck if(RemovableMedia) { 383c2c66affSColin Finck if(!UDFGetRegParameter(NULL, REG_MOUNT_ON_ZIP_NAME, FALSE)) { 384c2c66affSColin Finck WrongMedia = TRUE; 385c2c66affSColin Finck } 386c2c66affSColin Finck } else { 387c2c66affSColin Finck if(!UDFGetRegParameter(NULL, REG_MOUNT_ON_HDD_NAME, FALSE)) { 388c2c66affSColin Finck WrongMedia = TRUE; 389c2c66affSColin Finck } 390c2c66affSColin Finck } 391c2c66affSColin Finck FsDeviceType = FILE_DEVICE_DISK_FILE_SYSTEM; 392c2c66affSColin Finck #endif //UDF_HDD_SUPPORT 393c2c66affSColin Finck } else { 394c2c66affSColin Finck WrongMedia = TRUE; 395c2c66affSColin Finck } 396c2c66affSColin Finck } 397c2c66affSColin Finck 398c2c66affSColin Finck // Acquire GlobalDataResource 399c2c66affSColin Finck UDFAcquireResourceExclusive(&(UDFGlobalData.GlobalDataResource), TRUE); 400c2c66affSColin Finck 401c2c66affSColin Finck _SEH2_TRY { 402c2c66affSColin Finck 403c2c66affSColin Finck UDFScanForDismountedVcb(PtrIrpContext); 404c2c66affSColin Finck 405c2c66affSColin Finck if(WrongMedia) try_return(RC = STATUS_UNRECOGNIZED_VOLUME); 406c2c66affSColin Finck 407c2c66affSColin Finck if(RemovableMedia) { 408c2c66affSColin Finck UDFPrint(("UDFMountVolume: removable media\n")); 409c2c66affSColin Finck // just remember current MediaChangeCount 410c2c66affSColin Finck // or fail if No Media .... 411c2c66affSColin Finck 412c2c66affSColin Finck // experimental CHECK_VERIFY, for fucking BENQ DVD_DD_1620 413c2c66affSColin Finck 414c2c66affSColin Finck // Now we can get device state via GET_EVENT (if supported) 415c2c66affSColin Finck // or still one TEST_UNIT_READY command 416c2c66affSColin Finck RC = UDFPhSendIOCTL( IOCTL_STORAGE_CHECK_VERIFY, 417c2c66affSColin Finck TargetDeviceObject, 418c2c66affSColin Finck NULL,0, 419c2c66affSColin Finck &MediaChangeCount,sizeof(ULONG), 420c2c66affSColin Finck FALSE,&Iosb ); 421c2c66affSColin Finck 422c2c66affSColin Finck // Send TEST_UNIT_READY comment 423c2c66affSColin Finck // This can spin-up or wake-up the device 424c2c66affSColin Finck if(UDFGetRegParameter(NULL, UDF_WAIT_CD_SPINUP, TRUE)) { 425c2c66affSColin Finck delay.QuadPart = -15000000LL; // 1.5 sec 426c2c66affSColin Finck for(i=0; i<UDF_READY_MAX_RETRY; i++) { 427c2c66affSColin Finck // Use device default ready timeout 428c2c66affSColin Finck Mode = 0; 429c2c66affSColin Finck RC = UDFPhSendIOCTL( IOCTL_CDRW_TEST_UNIT_READY, 430c2c66affSColin Finck TargetDeviceObject, 431c2c66affSColin Finck &Mode,sizeof(Mode), 432c2c66affSColin Finck &TestUnitReadyBuffer,sizeof(TEST_UNIT_READY_USER_OUT), 433c2c66affSColin Finck FALSE,NULL); 434c2c66affSColin Finck UDFPrint(("UDFMountVolume: TEST_UNIT_READY %x\n", RC)); 435c2c66affSColin Finck if(!NT_SUCCESS(RC)) 436c2c66affSColin Finck break; 437c2c66affSColin Finck if(TestUnitReadyBuffer.SenseKey == SCSI_SENSE_NOT_READY && 438c2c66affSColin Finck TestUnitReadyBuffer.AdditionalSenseCode == SCSI_ADSENSE_LUN_NOT_READY && 439c2c66affSColin Finck TestUnitReadyBuffer.AdditionalSenseCodeQualifier == SCSI_SENSEQ_BECOMING_READY) { 440c2c66affSColin Finck UDFPrint(("UDFMountVolume: retry\n")); 441c2c66affSColin Finck KeDelayExecutionThread(KernelMode, FALSE, &delay); 442c2c66affSColin Finck //delay.QuadPart -= 10000000LL; // 1.0 sec 443c2c66affSColin Finck } else { 444c2c66affSColin Finck break; 445c2c66affSColin Finck } 446c2c66affSColin Finck } 447c2c66affSColin Finck if(i) { 448c2c66affSColin Finck UDFPrint(("UDFMountVolume: additional delay 3 sec\n")); 449c2c66affSColin Finck delay.QuadPart = -30000000LL; // 3.0 sec 450c2c66affSColin Finck KeDelayExecutionThread(KernelMode, FALSE, &delay); 451c2c66affSColin Finck } 452c2c66affSColin Finck } 453c2c66affSColin Finck 454c2c66affSColin Finck // Now we can get device state via GET_EVENT (if supported) 455c2c66affSColin Finck // or still one TEST_UNIT_READY command 456c2c66affSColin Finck RC = UDFPhSendIOCTL( IOCTL_STORAGE_CHECK_VERIFY, 457c2c66affSColin Finck TargetDeviceObject, 458c2c66affSColin Finck NULL,0, 459c2c66affSColin Finck &MediaChangeCount,sizeof(ULONG), 460c2c66affSColin Finck FALSE,&Iosb ); 461c2c66affSColin Finck 462c2c66affSColin Finck if(RC == STATUS_IO_DEVICE_ERROR) { 463c2c66affSColin Finck UDFPrint(("UDFMountVolume: retry check verify\n")); 464c2c66affSColin Finck RC = UDFPhSendIOCTL( IOCTL_STORAGE_CHECK_VERIFY, 465c2c66affSColin Finck TargetDeviceObject, 466c2c66affSColin Finck NULL,0, 467c2c66affSColin Finck &MediaChangeCount,sizeof(ULONG), 468c2c66affSColin Finck FALSE,&Iosb ); 469c2c66affSColin Finck } 470c2c66affSColin Finck 471c2c66affSColin Finck if(!NT_SUCCESS(RC) && (RC != STATUS_VERIFY_REQUIRED)) 472c2c66affSColin Finck try_return(RC); 473c2c66affSColin Finck 474c2c66affSColin Finck // Be safe about the count in case the driver didn't fill it in 475c2c66affSColin Finck if(Iosb.Information != sizeof(ULONG)) { 476c2c66affSColin Finck MediaChangeCount = 0; 477c2c66affSColin Finck } 478c2c66affSColin Finck 479c2c66affSColin Finck if(FsDeviceType == FILE_DEVICE_CD_ROM_FILE_SYSTEM) { 480c2c66affSColin Finck // Check if device is busy before locking tray and performing 481c2c66affSColin Finck // further geomentry discovery. This is needed to avoid streaming 482c2c66affSColin Finck // loss during CD-R recording. Note, that some recording tools 483c2c66affSColin Finck // work with device via SPTI bypassing FS/Device driver layers. 484c2c66affSColin Finck 485c2c66affSColin Finck ioBuf = (int8*)MyAllocatePool__(NonPagedPool,4096); 486c2c66affSColin Finck if(!ioBuf) { 487c2c66affSColin Finck try_return(RC = STATUS_INSUFFICIENT_RESOURCES); 488c2c66affSColin Finck } 489c2c66affSColin Finck RC = UDFPhSendIOCTL(IOCTL_CDROM_GET_DRIVE_GEOMETRY,TargetDeviceObject, 490c2c66affSColin Finck ioBuf,sizeof(DISK_GEOMETRY), 491c2c66affSColin Finck ioBuf,sizeof(DISK_GEOMETRY), 492c2c66affSColin Finck FALSE, NULL ); 493c2c66affSColin Finck 494c2c66affSColin Finck if(RC == STATUS_DEVICE_NOT_READY) { 495c2c66affSColin Finck // probably, the device is really busy, may be by CD/DVD recording 496c2c66affSColin Finck UserPrint((" busy (*)\n")); 497c2c66affSColin Finck try_return(RC); 498c2c66affSColin Finck } 499c2c66affSColin Finck } 500c2c66affSColin Finck 501c2c66affSColin Finck // lock media for now 502c2c66affSColin Finck if(!WrongMedia) { 503c2c66affSColin Finck ((PPREVENT_MEDIA_REMOVAL_USER_IN)(&MediaChangeCount))->PreventMediaRemoval = TRUE; 504c2c66affSColin Finck RC = UDFPhSendIOCTL( IOCTL_STORAGE_MEDIA_REMOVAL, 505c2c66affSColin Finck TargetDeviceObject, 506c2c66affSColin Finck &MediaChangeCount,sizeof(PREVENT_MEDIA_REMOVAL_USER_IN), 507c2c66affSColin Finck NULL,0, 508c2c66affSColin Finck FALSE,NULL); 509c2c66affSColin Finck Locked = TRUE; 510c2c66affSColin Finck } 511c2c66affSColin Finck 512c2c66affSColin Finck } 513c2c66affSColin Finck // Now before we can initialize the Vcb we need to set up the 514c2c66affSColin Finck // Get our device object and alignment requirement. 515c2c66affSColin Finck // Device extension == VCB 516c2c66affSColin Finck UDFPrint(("UDFMountVolume: create device\n")); 517c2c66affSColin Finck RC = IoCreateDevice( UDFGlobalData.DriverObject, 518c2c66affSColin Finck sizeof(VCB), 519c2c66affSColin Finck NULL, 520c2c66affSColin Finck FsDeviceType, 521c2c66affSColin Finck 0, 522c2c66affSColin Finck FALSE, 523c2c66affSColin Finck &VolDo ); 524c2c66affSColin Finck 525c2c66affSColin Finck if(!NT_SUCCESS(RC)) try_return(RC); 526c2c66affSColin Finck 527c2c66affSColin Finck // Our alignment requirement is the larger of the processor alignment requirement 528c2c66affSColin Finck // already in the volume device object and that in the DeviceObjectWeTalkTo 529c2c66affSColin Finck if(TargetDeviceObject->AlignmentRequirement > VolDo->AlignmentRequirement) { 530c2c66affSColin Finck VolDo->AlignmentRequirement = TargetDeviceObject->AlignmentRequirement; 531c2c66affSColin Finck } 532c2c66affSColin Finck 533c2c66affSColin Finck VolDo->Flags &= ~DO_DEVICE_INITIALIZING; 534c2c66affSColin Finck 535c2c66affSColin Finck // device object field in the VPB to point to our new volume device 536c2c66affSColin Finck // object. 537c2c66affSColin Finck Vpb->DeviceObject = (PDEVICE_OBJECT) VolDo; 538c2c66affSColin Finck 539c2c66affSColin Finck // We must initialize the stack size in our device object before 540c2c66affSColin Finck // the following reads, because the I/O system has not done it yet. 541c2c66affSColin Finck ((PDEVICE_OBJECT)VolDo)->StackSize = (CCHAR) (TargetDeviceObject->StackSize + 1); 542c2c66affSColin Finck 543c2c66affSColin Finck Vcb = (PVCB)VolDo->DeviceExtension; 544c2c66affSColin Finck 545c2c66affSColin Finck // Initialize the Vcb. This routine will raise on an allocation 546c2c66affSColin Finck // failure. 547c2c66affSColin Finck RC = UDFInitializeVCB(VolDo,TargetDeviceObject,Vpb); 548c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 549c2c66affSColin Finck Vcb = NULL; 550c2c66affSColin Finck try_return(RC); 551c2c66affSColin Finck } 552c2c66affSColin Finck 553c2c66affSColin Finck VolDo = NULL; 554c2c66affSColin Finck Vpb = NULL; 555c2c66affSColin Finck 556c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->VCBResource), TRUE ); 557c2c66affSColin Finck VcbAcquired = TRUE; 558c2c66affSColin Finck 559c2c66affSColin Finck // Let's reference the Vpb to make sure we are the one to 560c2c66affSColin Finck // have the last dereference. 561c2c66affSColin Finck Vcb->Vpb->ReferenceCount ++; 562c2c66affSColin Finck 563c2c66affSColin Finck Vcb->MediaChangeCount = MediaChangeCount; 564c2c66affSColin Finck Vcb->FsDeviceType = FsDeviceType; 565c2c66affSColin Finck 566c2c66affSColin Finck // Clear the verify bit for the start of mount. 567c2c66affSColin Finck if(Vcb->Vpb->RealDevice->Flags & DO_VERIFY_VOLUME) { 568c2c66affSColin Finck Vcb->Vpb->RealDevice->Flags &= ~DO_VERIFY_VOLUME; 569c2c66affSColin Finck RestoreDoVerify = TRUE; 570c2c66affSColin Finck } 571c2c66affSColin Finck 572c2c66affSColin Finck DeviceNotTouched = FALSE; 573c2c66affSColin Finck RC = UDFGetDiskInfo(TargetDeviceObject,Vcb); 574c2c66affSColin Finck if(!NT_SUCCESS(RC)) try_return(RC); 575c2c66affSColin Finck 576c2c66affSColin Finck // **** Read registry settings **** 577c2c66affSColin Finck UDFReadRegKeys(Vcb, FALSE, FALSE); 578c2c66affSColin Finck 579c2c66affSColin Finck Vcb->MountPhErrorCount = 0; 580c2c66affSColin Finck 581c2c66affSColin Finck // Initialize internal cache 582c2c66affSColin Finck Mode = WCACHE_MODE_ROM; 583c2c66affSColin Finck RC = WCacheInit__(&(Vcb->FastCache), 584c2c66affSColin Finck Vcb->WCacheMaxFrames, 585c2c66affSColin Finck Vcb->WCacheMaxBlocks, 586c2c66affSColin Finck Vcb->WriteBlockSize, 587c2c66affSColin Finck 5, Vcb->BlockSizeBits, 588c2c66affSColin Finck Vcb->WCacheBlocksPerFrameSh, 589c2c66affSColin Finck 0/*Vcb->FirstLBA*/, Vcb->LastPossibleLBA, Mode, 590c2c66affSColin Finck 0/*WCACHE_CACHE_WHOLE_PACKET*/ | 591c2c66affSColin Finck (Vcb->DoNotCompareBeforeWrite ? WCACHE_DO_NOT_COMPARE : 0) | 592c2c66affSColin Finck (Vcb->CacheChainedIo ? WCACHE_CHAINED_IO : 0) | 593c2c66affSColin Finck WCACHE_MARK_BAD_BLOCKS | WCACHE_RO_BAD_BLOCKS, // this will be cleared after mount 594c2c66affSColin Finck Vcb->WCacheFramesToKeepFree, 595c2c66affSColin Finck // UDFTWrite, UDFTRead, 596c2c66affSColin Finck UDFTWriteVerify, UDFTReadVerify, 597c2c66affSColin Finck #ifdef UDF_ASYNC_IO 598c2c66affSColin Finck UDFTWriteAsync, UDFTReadAsync, 599c2c66affSColin Finck #else //UDF_ASYNC_IO 600c2c66affSColin Finck NULL, NULL, 601c2c66affSColin Finck #endif //UDF_ASYNC_IO 602c2c66affSColin Finck UDFIsBlockAllocated, 603c2c66affSColin Finck UDFUpdateVAT, 604c2c66affSColin Finck UDFWCacheErrorHandler); 605c2c66affSColin Finck if(!NT_SUCCESS(RC)) try_return(RC); 606c2c66affSColin Finck 607c2c66affSColin Finck RC = UDFVInit(Vcb); 608c2c66affSColin Finck if(!NT_SUCCESS(RC)) try_return(RC); 609c2c66affSColin Finck 610c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->BitMapResource1),TRUE); 611c2c66affSColin Finck RC = UDFGetDiskInfoAndVerify(TargetDeviceObject,Vcb); 612c2c66affSColin Finck UDFReleaseResource(&(Vcb->BitMapResource1)); 613c2c66affSColin Finck 614c2c66affSColin Finck ASSERT(!Vcb->Modified); 615c2c66affSColin Finck WCacheChFlags__(&(Vcb->FastCache), 616c2c66affSColin Finck WCACHE_CACHE_WHOLE_PACKET, // enable cache whole packet 617c2c66affSColin Finck WCACHE_MARK_BAD_BLOCKS | WCACHE_RO_BAD_BLOCKS); // let user retry request on Bad Blocks 618c2c66affSColin Finck 619c2c66affSColin Finck #ifdef UDF_READ_ONLY_BUILD 620c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_VOLUME_READ_ONLY; 621c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_MEDIA_READ_ONLY; 622c2c66affSColin Finck #endif //UDF_READ_ONLY_BUILD 623c2c66affSColin Finck 624c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 625c2c66affSColin Finck UDFPrint(("UDFMountVolume: try raw mount\n")); 626c2c66affSColin Finck if(Vcb->NSRDesc & VRS_ISO9660_FOUND) { 627c2c66affSColin Finck UDFPrint(("UDFMountVolume: block raw mount due to ISO9660 presence\n")); 628c2c66affSColin Finck Vcb->VCBFlags &= ~UDF_VCB_FLAGS_RAW_DISK; 629c2c66affSColin Finck try_return(RC); 630c2c66affSColin Finck } 631c2c66affSColin Finck try_raw_mount: 632c2c66affSColin Finck UDFPrint(("UDFMountVolume: try raw mount (2)\n")); 633c2c66affSColin Finck if(Vcb->VCBFlags & UDF_VCB_FLAGS_RAW_DISK) { 634c2c66affSColin Finck 635c2c66affSColin Finck UDFPrint(("UDFMountVolume: trying raw mount...\n")); 636c2c66affSColin Finck Vcb->VolIdent.Length = 637c2c66affSColin Finck (Vcb->VolIdent.MaximumLength = sizeof(UDF_BLANK_VOLUME_LABEL)) - 2; 638c2c66affSColin Finck if(Vcb->VolIdent.Buffer) 639c2c66affSColin Finck MyFreePool__(Vcb->VolIdent.Buffer); 640c2c66affSColin Finck Vcb->VolIdent.Buffer = (PWCHAR)MyAllocatePool__(NonPagedPool, sizeof(UDF_BLANK_VOLUME_LABEL)); 641c2c66affSColin Finck if(!Vcb->VolIdent.Buffer) 642c2c66affSColin Finck try_return(STATUS_INSUFFICIENT_RESOURCES); 643c2c66affSColin Finck RtlCopyMemory(Vcb->VolIdent.Buffer, UDF_BLANK_VOLUME_LABEL, sizeof(UDF_BLANK_VOLUME_LABEL)); 644c2c66affSColin Finck 645c2c66affSColin Finck RC = UDFBlankMount(Vcb); 646c2c66affSColin Finck if(!NT_SUCCESS(RC)) try_return(RC); 647c2c66affSColin Finck 648c2c66affSColin Finck } else { 649c2c66affSColin Finck // Vcb->VCBFlags &= ~UDF_VCB_FLAGS_RAW_DISK; 650c2c66affSColin Finck try_return(RC); 651c2c66affSColin Finck } 652c2c66affSColin Finck } else { 653c2c66affSColin Finck Vcb->MountPhErrorCount = -1; 654c2c66affSColin Finck #ifndef UDF_READ_ONLY_BUILD 655c2c66affSColin Finck // set cache mode according to media type 656c2c66affSColin Finck if(!(Vcb->VCBFlags & UDF_VCB_FLAGS_MEDIA_READ_ONLY)) { 657c2c66affSColin Finck UDFPrint(("UDFMountVolume: writable volume\n")); 658c2c66affSColin Finck if(!Vcb->CDR_Mode) { 659c2c66affSColin Finck if((FsDeviceType == FILE_DEVICE_DISK_FILE_SYSTEM) || 660c2c66affSColin Finck CdrwMediaClassEx_IsRAM(Vcb->MediaClassEx)) { 661c2c66affSColin Finck UDFPrint(("UDFMountVolume: RAM mode\n")); 662c2c66affSColin Finck Mode = WCACHE_MODE_RAM; 663c2c66affSColin Finck } else { 664c2c66affSColin Finck UDFPrint(("UDFMountVolume: RW mode\n")); 665c2c66affSColin Finck Mode = WCACHE_MODE_RW; 666c2c66affSColin Finck } 667c2c66affSColin Finck /* if(FsDeviceType == FILE_DEVICE_CD_ROM_FILE_SYSTEM) { 668c2c66affSColin Finck } else { 669c2c66affSColin Finck Vcb->WriteSecurity = TRUE; 670c2c66affSColin Finck }*/ 671c2c66affSColin Finck } else { 672c2c66affSColin Finck UDFPrint(("UDFMountVolume: R mode\n")); 673c2c66affSColin Finck Mode = WCACHE_MODE_R; 674c2c66affSColin Finck } 675c2c66affSColin Finck // we can't record ACL on old format disks 676c2c66affSColin Finck if(!UDFNtAclSupported(Vcb)) { 677c2c66affSColin Finck UDFPrint(("UDFMountVolume: NO ACL and ExtFE support\n")); 678c2c66affSColin Finck Vcb->WriteSecurity = FALSE; 679c2c66affSColin Finck Vcb->UseExtendedFE = FALSE; 680c2c66affSColin Finck } 681c2c66affSColin Finck } 682c2c66affSColin Finck WCacheSetMode__(&(Vcb->FastCache), Mode); 683c2c66affSColin Finck #endif //UDF_READ_ONLY_BUILD 684c2c66affSColin Finck // Complete mount operations: create root FCB 685c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->BitMapResource1),TRUE); 686c2c66affSColin Finck RC = UDFCompleteMount(Vcb); 687c2c66affSColin Finck UDFReleaseResource(&(Vcb->BitMapResource1)); 688c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 689c2c66affSColin Finck // We must have Vcb->VCBOpenCount = 1 for UDFBlankMount() 690c2c66affSColin Finck // Thus, we should not decrement it here 691c2c66affSColin Finck // Also, if we shall not perform BlankMount, 692c2c66affSColin Finck // but simply cleanup and return error, Vcb->VCBOpenCount 693c2c66affSColin Finck // will be decremented during cleanup. Thus anyway it must 694c2c66affSColin Finck // stay 1 unchanged here 695c2c66affSColin Finck //UDFInterlockedDecrement((PLONG)&(Vcb->VCBOpenCount)); 696c2c66affSColin Finck UDFCloseResidual(Vcb); 697c2c66affSColin Finck Vcb->VCBOpenCount = 1; 698c2c66affSColin Finck if(FsDeviceType == FILE_DEVICE_CD_ROM_FILE_SYSTEM) 699c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_RAW_DISK; 700c2c66affSColin Finck goto try_raw_mount; 701c2c66affSColin Finck } 702c2c66affSColin Finck Vcb->VCBFlags &= ~UDF_VCB_FLAGS_RAW_DISK; 703c2c66affSColin Finck } 704c2c66affSColin Finck 705c2c66affSColin Finck #ifndef UDF_READ_ONLY_BUILD 706c2c66affSColin Finck if(!(Vcb->VCBFlags & UDF_VCB_FLAGS_MEDIA_READ_ONLY)) { 707c2c66affSColin Finck RC = UDFStartEjectWaiter(Vcb); 708c2c66affSColin Finck if(!NT_SUCCESS(RC)) try_return(RC); 709c2c66affSColin Finck } else { 710c2c66affSColin Finck UDFPrint(("UDFMountVolume: RO mount\n")); 711c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_VOLUME_READ_ONLY; 712c2c66affSColin Finck } 713c2c66affSColin Finck #endif //UDF_READ_ONLY_BUILD 714c2c66affSColin Finck 715c2c66affSColin Finck Vcb->Vpb->SerialNumber = Vcb->PhSerialNumber; 716c2c66affSColin Finck Vcb->Vpb->VolumeLabelLength = Vcb->VolIdent.Length; 717c2c66affSColin Finck RtlCopyMemory( Vcb->Vpb->VolumeLabel, 718c2c66affSColin Finck Vcb->VolIdent.Buffer, 719c2c66affSColin Finck Vcb->VolIdent.Length ); 720c2c66affSColin Finck 721c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_VOLUME_MOUNTED; 722c2c66affSColin Finck 723c2c66affSColin Finck UDFInterlockedDecrement((PLONG)&(Vcb->VCBOpenCount)); 724c2c66affSColin Finck Vcb->TotalAllocUnits = UDFGetTotalSpace(Vcb); 725c2c66affSColin Finck Vcb->FreeAllocUnits = UDFGetFreeSpace(Vcb); 726c2c66affSColin Finck // Register shutdown routine 727c2c66affSColin Finck if(!Vcb->ShutdownRegistered) { 728c2c66affSColin Finck UDFPrint(("UDFMountVolume: Register shutdown routine\n")); 729c2c66affSColin Finck IoRegisterShutdownNotification(Vcb->VCBDeviceObject); 730c2c66affSColin Finck Vcb->ShutdownRegistered = TRUE; 731c2c66affSColin Finck } 732c2c66affSColin Finck 733c2c66affSColin Finck // unlock media 734c2c66affSColin Finck if(RemovableMedia) { 735c2c66affSColin Finck if(Vcb->VCBFlags & UDF_VCB_FLAGS_MEDIA_READ_ONLY) { 736c2c66affSColin Finck UDFPrint(("UDFMountVolume: unlock media on RO volume\n")); 737c2c66affSColin Finck ((PPREVENT_MEDIA_REMOVAL_USER_IN)(&MediaChangeCount))->PreventMediaRemoval = FALSE; 738c2c66affSColin Finck UDFPhSendIOCTL( IOCTL_STORAGE_MEDIA_REMOVAL, 739c2c66affSColin Finck TargetDeviceObject, 740c2c66affSColin Finck &MediaChangeCount,sizeof(PREVENT_MEDIA_REMOVAL_USER_IN), 741c2c66affSColin Finck NULL,0, 742c2c66affSColin Finck FALSE,NULL); 743c2c66affSColin Finck if(Vcb->VCBFlags & UDF_VCB_FLAGS_OUR_DEVICE_DRIVER) 744c2c66affSColin Finck UDFResetDeviceDriver(Vcb, Vcb->TargetDeviceObject, TRUE); 745c2c66affSColin Finck } 746c2c66affSColin Finck } 747c2c66affSColin Finck 748c2c66affSColin Finck if (UDFGlobalData.MountEvent) 749c2c66affSColin Finck { 750c2c66affSColin Finck Vcb->IsVolumeJustMounted = TRUE; 751c2c66affSColin Finck KeSetEvent(UDFGlobalData.MountEvent, 0, FALSE); 752c2c66affSColin Finck } 753c2c66affSColin Finck 754c2c66affSColin Finck // The new mount is complete. 755c2c66affSColin Finck UDFReleaseResource( &(Vcb->VCBResource) ); 756c2c66affSColin Finck VcbAcquired = FALSE; 757c2c66affSColin Finck Vcb = NULL; 758c2c66affSColin Finck 759c2c66affSColin Finck RC = STATUS_SUCCESS; 760c2c66affSColin Finck 761c2c66affSColin Finck try_exit: NOTHING; 762c2c66affSColin Finck } _SEH2_FINALLY { 763c2c66affSColin Finck 764c2c66affSColin Finck UDFPrint(("UDFMountVolume: RC = %x\n", RC)); 765c2c66affSColin Finck 766c2c66affSColin Finck if(ioBuf) { 767c2c66affSColin Finck MyFreePool__(ioBuf); 768c2c66affSColin Finck } 769c2c66affSColin Finck 770c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 771c2c66affSColin Finck 772c2c66affSColin Finck if(RemovableMedia && Locked) { 773c2c66affSColin Finck UDFPrint(("UDFMountVolume: unlock media\n")); 774c2c66affSColin Finck ((PPREVENT_MEDIA_REMOVAL_USER_IN)(&MediaChangeCount))->PreventMediaRemoval = FALSE; 775c2c66affSColin Finck UDFPhSendIOCTL( IOCTL_STORAGE_MEDIA_REMOVAL, 776c2c66affSColin Finck TargetDeviceObject, 777c2c66affSColin Finck &MediaChangeCount,sizeof(PREVENT_MEDIA_REMOVAL_USER_IN), 778c2c66affSColin Finck NULL,0, 779c2c66affSColin Finck FALSE,NULL); 780c2c66affSColin Finck } 781c2c66affSColin Finck /* if((RC != STATUS_DEVICE_NOT_READY) && 782c2c66affSColin Finck (RC != STATUS_NO_MEDIA_IN_DEVICE) ) {*/ 783c2c66affSColin Finck // reset driver 784c2c66affSColin Finck if(!DeviceNotTouched && 785c2c66affSColin Finck (!Vcb || (Vcb && (Vcb->VCBFlags & UDF_VCB_FLAGS_OUR_DEVICE_DRIVER)))) { 786c2c66affSColin Finck UDFPrint(("UDFMountVolume: reset driver\n")); 787c2c66affSColin Finck UDFResetDeviceDriver(Vcb, TargetDeviceObject, TRUE); 788c2c66affSColin Finck } 789c2c66affSColin Finck 790c2c66affSColin Finck if(RC == STATUS_CRC_ERROR || RC == STATUS_FILE_CORRUPT_ERROR) { 791c2c66affSColin Finck UDFPrint(("UDFMountVolume: status -> STATUS_UNRECOGNIZED_VOLUME\n")); 792c2c66affSColin Finck RC = STATUS_UNRECOGNIZED_VOLUME; 793c2c66affSColin Finck } 794c2c66affSColin Finck 795c2c66affSColin Finck // If we didn't complete the mount then cleanup any remaining structures. 796c2c66affSColin Finck if(Vpb) { 797c2c66affSColin Finck Vpb->DeviceObject = NULL; 798c2c66affSColin Finck } 799c2c66affSColin Finck 800c2c66affSColin Finck if(Vcb) { 801c2c66affSColin Finck // Restore the verify bit. 802c2c66affSColin Finck if(RestoreDoVerify) { 803c2c66affSColin Finck Vcb->Vpb->RealDevice->Flags |= DO_VERIFY_VOLUME; 804c2c66affSColin Finck } 805c2c66affSColin Finck // Make sure there is no Vcb since it could go away 806c2c66affSColin Finck if(Vcb->VCBOpenCount) 807c2c66affSColin Finck UDFInterlockedDecrement((PLONG)&(Vcb->VCBOpenCount)); 808c2c66affSColin Finck // This procedure will also delete the volume device object 809c2c66affSColin Finck if(UDFDismountVcb( Vcb, VcbAcquired )) { 810c2c66affSColin Finck UDFReleaseResource( &(Vcb->VCBResource) ); 811c2c66affSColin Finck } 812c2c66affSColin Finck } else if(VolDo) { 813c2c66affSColin Finck IoDeleteDevice( VolDo ); 814c2c66affSColin Finck } 815c2c66affSColin Finck } 816c2c66affSColin Finck // Release the global resource. 817c2c66affSColin Finck UDFReleaseResource( &(UDFGlobalData.GlobalDataResource) ); 818c2c66affSColin Finck 819c2c66affSColin Finck if (CompleteIrp || NT_SUCCESS(RC)) { 820c2c66affSColin Finck if(!_SEH2_AbnormalTermination()) { 821c2c66affSColin Finck // Set mount event 822c2c66affSColin Finck 823c2c66affSColin Finck UDFPrint(("UDFMountVolume: complete req RC %x\n", RC)); 824c2c66affSColin Finck UDFNotifyVolumeEvent(IrpSp->FileObject, FSRTL_VOLUME_MOUNT); 825c2c66affSColin Finck // Complete the IRP. 826c2c66affSColin Finck Irp->IoStatus.Status = RC; 827c2c66affSColin Finck IoCompleteRequest(Irp, IO_NO_INCREMENT); 828c2c66affSColin Finck } 829c2c66affSColin Finck } else { 830c2c66affSColin Finck // Pass Irp to lower driver (CDFS) 831c2c66affSColin Finck 832c2c66affSColin Finck // Get this driver out of the driver stack and get to the next driver as 833c2c66affSColin Finck // quickly as possible. 834c2c66affSColin Finck Irp->CurrentLocation++; 835c2c66affSColin Finck Irp->Tail.Overlay.CurrentStackLocation++; 836c2c66affSColin Finck 837c2c66affSColin Finck // Now call the appropriate file system driver with the request. 838c2c66affSColin Finck RC = IoCallDriver( filterDevExt->lowerFSDeviceObject, Irp ); 839c2c66affSColin Finck 840c2c66affSColin Finck } 841c2c66affSColin Finck 842c2c66affSColin Finck } _SEH2_END; 843c2c66affSColin Finck 844c2c66affSColin Finck UDFPrint(("UDFMountVolume: final RC = %x\n", RC)); 845c2c66affSColin Finck return RC; 846c2c66affSColin Finck 847c2c66affSColin Finck } // end UDFMountVolume() 848c2c66affSColin Finck 849c2c66affSColin Finck NTSTATUS 850c2c66affSColin Finck UDFStartEjectWaiter( 851c2c66affSColin Finck IN PVCB Vcb 852c2c66affSColin Finck ) 853c2c66affSColin Finck { 854c2c66affSColin Finck // NTSTATUS RC; 855c2c66affSColin Finck PREVENT_MEDIA_REMOVAL_USER_IN Buff; 856c2c66affSColin Finck UDFPrint(("UDFStartEjectWaiter:\n")); 857c2c66affSColin Finck 858c2c66affSColin Finck if(Vcb->VCBFlags & UDF_VCB_FLAGS_MEDIA_READ_ONLY) { 859c2c66affSColin Finck UDFPrint((" UDF_VCB_FLAGS_MEDIA_READ_ONLY\n")); 860c2c66affSColin Finck } 861c2c66affSColin Finck if(Vcb->VCBFlags & UDF_VCB_FLAGS_MEDIA_LOCKED) { 862c2c66affSColin Finck UDFPrint((" UDF_VCB_FLAGS_MEDIA_LOCKED\n")); 863c2c66affSColin Finck } 864c2c66affSColin Finck UDFPrint((" EjectWaiter=%x\n", Vcb->EjectWaiter)); 865c2c66affSColin Finck if(!(Vcb->VCBFlags & UDF_VCB_FLAGS_MEDIA_READ_ONLY) && 866c2c66affSColin Finck /*!(Vcb->VCBFlags & UDF_VCB_FLAGS_MEDIA_LOCKED) &&*/ 867c2c66affSColin Finck !(Vcb->EjectWaiter)) { 868c2c66affSColin Finck 869c2c66affSColin Finck UDFPrint(("UDFStartEjectWaiter: check driver\n")); 870c2c66affSColin Finck if(!(Vcb->VCBFlags & UDF_VCB_FLAGS_OUR_DEVICE_DRIVER) && 871c2c66affSColin Finck (Vcb->FsDeviceType == FILE_DEVICE_CD_ROM_FILE_SYSTEM)) { 872c2c66affSColin Finck // we don't know how to write without our device driver 873c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_VOLUME_READ_ONLY; 874c2c66affSColin Finck UDFPrint((" not our driver, ignore\n")); 875c2c66affSColin Finck return STATUS_SUCCESS; 876c2c66affSColin Finck } 877c2c66affSColin Finck UDFPrint(("UDFStartEjectWaiter: check removable\n")); 878c2c66affSColin Finck if(Vcb->VCBFlags & UDF_VCB_FLAGS_REMOVABLE_MEDIA) { 879c2c66affSColin Finck // prevent media removal 880c2c66affSColin Finck UDFPrint(("UDFStartEjectWaiter: lock media\n")); 881c2c66affSColin Finck Buff.PreventMediaRemoval = TRUE; 882c2c66affSColin Finck UDFTSendIOCTL( IOCTL_STORAGE_MEDIA_REMOVAL, 883c2c66affSColin Finck Vcb, 884c2c66affSColin Finck &Buff,sizeof(PREVENT_MEDIA_REMOVAL_USER_IN), 885c2c66affSColin Finck NULL,0, 886c2c66affSColin Finck FALSE,NULL ); 887c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_MEDIA_LOCKED; 888c2c66affSColin Finck } 889c2c66affSColin Finck UDFPrint(("UDFStartEjectWaiter: prepare to start\n")); 890c2c66affSColin Finck // initialize Eject Request waiter 891c2c66affSColin Finck Vcb->EjectWaiter = (PUDFEjectWaitContext)MyAllocatePool__(NonPagedPool, sizeof(UDFEjectWaitContext)); 892c2c66affSColin Finck if(!(Vcb->EjectWaiter)) return STATUS_INSUFFICIENT_RESOURCES; 893c2c66affSColin Finck KeInitializeEvent(&(Vcb->WaiterStopped), NotificationEvent, FALSE); 894c2c66affSColin Finck Vcb->EjectWaiter->Vcb = Vcb; 895c2c66affSColin Finck Vcb->EjectWaiter->SoftEjectReq = FALSE; 896c2c66affSColin Finck KeInitializeEvent(&(Vcb->EjectWaiter->StopReq), NotificationEvent, FALSE); 897c2c66affSColin Finck // Vcb->EjectWaiter->StopReq = FALSE; 898c2c66affSColin Finck Vcb->EjectWaiter->WaiterStopped = &(Vcb->WaiterStopped); 899c2c66affSColin Finck // This can occure after unexpected media loss, when EjectRequestWaiter 900c2c66affSColin Finck // terminates automatically 901c2c66affSColin Finck ASSERT(!(Vcb->VCBFlags & UDF_VCB_FLAGS_STOP_WAITER_EVENT)); 902c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_STOP_WAITER_EVENT; 903c2c66affSColin Finck ExInitializeWorkItem(&(Vcb->EjectWaiter->EjectReqWorkQueueItem), UDFEjectReqWaiter, Vcb->EjectWaiter); 904c2c66affSColin Finck UDFPrint(("UDFStartEjectWaiter: create thread\n")); 905c2c66affSColin Finck ExQueueWorkItem(&(Vcb->EjectWaiter->EjectReqWorkQueueItem), DelayedWorkQueue); 906c2c66affSColin Finck } else { 907c2c66affSColin Finck UDFPrint((" ignore\n")); 908c2c66affSColin Finck } 909c2c66affSColin Finck return STATUS_SUCCESS; 910c2c66affSColin Finck } // end UDFStartEjectWaiter() 911c2c66affSColin Finck 912c2c66affSColin Finck NTSTATUS 913c2c66affSColin Finck UDFCompleteMount( 914c2c66affSColin Finck IN PVCB Vcb 915c2c66affSColin Finck ) 916c2c66affSColin Finck { 917c2c66affSColin Finck NTSTATUS RC;// = STATUS_SUCCESS; 918c2c66affSColin Finck PtrUDFNTRequiredFCB NtReqFcb = NULL; 919c2c66affSColin Finck PFSRTL_COMMON_FCB_HEADER PtrCommonFCBHeader = NULL; 920c2c66affSColin Finck UNICODE_STRING LocalPath; 921c2c66affSColin Finck PtrUDFObjectName RootName; 922c2c66affSColin Finck PtrUDFFCB RootFcb; 923c2c66affSColin Finck 924c2c66affSColin Finck UDFPrint(("UDFCompleteMount:\n")); 925c2c66affSColin Finck Vcb->ZBuffer = (PCHAR)DbgAllocatePoolWithTag(NonPagedPool, max(Vcb->LBlockSize, PAGE_SIZE), 'zNWD'); 926c2c66affSColin Finck if(!Vcb->ZBuffer) return STATUS_INSUFFICIENT_RESOURCES; 927c2c66affSColin Finck RtlZeroMemory(Vcb->ZBuffer, Vcb->LBlockSize); 928c2c66affSColin Finck 929c2c66affSColin Finck UDFPrint(("UDFCompleteMount: alloc Root FCB\n")); 930c2c66affSColin Finck // Create the root index and reference it in the Vcb. 931c2c66affSColin Finck RootFcb = 932c2c66affSColin Finck Vcb->RootDirFCB = UDFAllocateFCB(); 933c2c66affSColin Finck if(!RootFcb) return STATUS_INSUFFICIENT_RESOURCES; 934c2c66affSColin Finck 935c2c66affSColin Finck UDFPrint(("UDFCompleteMount: alloc Root ObjName\n")); 936c2c66affSColin Finck // Allocate and set root FCB unique name 937c2c66affSColin Finck RootName = UDFAllocateObjectName(); 938c2c66affSColin Finck if(!RootName) { 939c2c66affSColin Finck UDFCleanUpFCB(RootFcb); 940c2c66affSColin Finck Vcb->RootDirFCB = NULL; 941c2c66affSColin Finck return STATUS_INSUFFICIENT_RESOURCES; 942c2c66affSColin Finck } 943c2c66affSColin Finck RC = MyInitUnicodeString(&(RootName->ObjectName),UDF_ROOTDIR_NAME); 944c2c66affSColin Finck if(!NT_SUCCESS(RC)) 945c2c66affSColin Finck goto insuf_res_1; 946c2c66affSColin Finck 947c2c66affSColin Finck RootFcb->FileInfo = (PUDF_FILE_INFO)MyAllocatePool__(NonPagedPool,sizeof(UDF_FILE_INFO)); 948c2c66affSColin Finck if(!RootFcb->FileInfo) { 949c2c66affSColin Finck RC = STATUS_INSUFFICIENT_RESOURCES; 950c2c66affSColin Finck insuf_res_1: 951c2c66affSColin Finck MyFreePool__(RootName->ObjectName.Buffer); 952c2c66affSColin Finck UDFReleaseObjectName(RootName); 953c2c66affSColin Finck UDFCleanUpFCB(RootFcb); 954c2c66affSColin Finck Vcb->RootDirFCB = NULL; 955c2c66affSColin Finck return RC; 956c2c66affSColin Finck } 957c2c66affSColin Finck UDFPrint(("UDFCompleteMount: open Root Dir\n")); 958c2c66affSColin Finck // Open Root Directory 959c2c66affSColin Finck RC = UDFOpenRootFile__( Vcb, &(Vcb->RootLbAddr), RootFcb->FileInfo ); 960c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 961c2c66affSColin Finck insuf_res_2: 962c2c66affSColin Finck UDFCleanUpFile__(Vcb, RootFcb->FileInfo); 963c2c66affSColin Finck MyFreePool__(RootFcb->FileInfo); 964c2c66affSColin Finck goto insuf_res_1; 965c2c66affSColin Finck } 966c2c66affSColin Finck RootFcb->FileInfo->Fcb = RootFcb; 967c2c66affSColin Finck 968c2c66affSColin Finck if(!(RootFcb->NTRequiredFCB = RootFcb->FileInfo->Dloc->CommonFcb)) { 969c2c66affSColin Finck UDFPrint(("UDFCompleteMount: alloc Root ObjName (2)\n")); 970c2c66affSColin Finck if(!(RootFcb->NTRequiredFCB = 971c2c66affSColin Finck (PtrUDFNTRequiredFCB)MyAllocatePool__(NonPagedPool, UDFQuadAlign(sizeof(UDFNTRequiredFCB))) ) ) { 972c2c66affSColin Finck RC = STATUS_INSUFFICIENT_RESOURCES; 973c2c66affSColin Finck goto insuf_res_2; 974c2c66affSColin Finck } 975c2c66affSColin Finck RtlZeroMemory(RootFcb->NTRequiredFCB, UDFQuadAlign(sizeof(UDFNTRequiredFCB))); 976c2c66affSColin Finck RootFcb->FileInfo->Dloc->CommonFcb = RootFcb->NTRequiredFCB; 977c2c66affSColin Finck } 978c2c66affSColin Finck UDFPrint(("UDFCompleteMount: init FCB\n")); 979c2c66affSColin Finck RC = UDFInitializeFCB(RootFcb,Vcb,RootName,UDF_FCB_ROOT_DIRECTORY | UDF_FCB_DIRECTORY,NULL); 980c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 981c2c66affSColin Finck // if we get here, no resources are inited 982c2c66affSColin Finck RootFcb->OpenHandleCount = 983c2c66affSColin Finck RootFcb->ReferenceCount = 984c2c66affSColin Finck RootFcb->NTRequiredFCB->CommonRefCount = 0; 985c2c66affSColin Finck 986c2c66affSColin Finck UDFCleanUpFile__(Vcb, RootFcb->FileInfo); 987c2c66affSColin Finck MyFreePool__(RootFcb->FileInfo); 988c2c66affSColin Finck MyFreePool__(RootFcb->NTRequiredFCB); 989c2c66affSColin Finck UDFCleanUpFCB(RootFcb); 990c2c66affSColin Finck Vcb->RootDirFCB = NULL; 991c2c66affSColin Finck return RC; 992c2c66affSColin Finck } 993c2c66affSColin Finck 994c2c66affSColin Finck // this is a part of UDF_RESIDUAL_REFERENCE 995c2c66affSColin Finck UDFInterlockedIncrement((PLONG)&(Vcb->VCBOpenCount)); 996c2c66affSColin Finck RootFcb->OpenHandleCount = 997c2c66affSColin Finck RootFcb->ReferenceCount = 998c2c66affSColin Finck RootFcb->NTRequiredFCB->CommonRefCount = 1; 999c2c66affSColin Finck 1000c2c66affSColin Finck UDFGetFileXTime(RootFcb->FileInfo, 1001c2c66affSColin Finck &(RootFcb->NTRequiredFCB->CreationTime.QuadPart), 1002c2c66affSColin Finck &(RootFcb->NTRequiredFCB->LastAccessTime.QuadPart), 1003c2c66affSColin Finck &(RootFcb->NTRequiredFCB->ChangeTime.QuadPart), 1004c2c66affSColin Finck &(RootFcb->NTRequiredFCB->LastWriteTime.QuadPart) ); 1005c2c66affSColin Finck 1006c2c66affSColin Finck if(Vcb->SysStreamLbAddr.logicalBlockNum) { 1007c2c66affSColin Finck Vcb->SysSDirFileInfo = (PUDF_FILE_INFO)MyAllocatePool__(NonPagedPool,sizeof(UDF_FILE_INFO)); 1008c2c66affSColin Finck if(!Vcb->SysSDirFileInfo) { 1009c2c66affSColin Finck RC = STATUS_INSUFFICIENT_RESOURCES; 1010c2c66affSColin Finck goto unwind_1; 1011c2c66affSColin Finck } 1012c2c66affSColin Finck // Open System SDir Directory 1013c2c66affSColin Finck RC = UDFOpenRootFile__( Vcb, &(Vcb->SysStreamLbAddr), Vcb->SysSDirFileInfo ); 1014c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 1015c2c66affSColin Finck UDFCleanUpFile__(Vcb, Vcb->SysSDirFileInfo); 1016c2c66affSColin Finck MyFreePool__(Vcb->SysSDirFileInfo); 1017c2c66affSColin Finck Vcb->SysSDirFileInfo = NULL; 1018c2c66affSColin Finck goto unwind_1; 1019c2c66affSColin Finck } else { 1020c2c66affSColin Finck Vcb->SysSDirFileInfo->Dloc->DataLoc.Flags |= EXTENT_FLAG_VERIFY; 1021c2c66affSColin Finck } 1022c2c66affSColin Finck } 1023c2c66affSColin Finck 1024c2c66affSColin Finck // Open Unallocatable space stream 1025c2c66affSColin Finck // Generally, it should be placed in SystemStreamDirectory, but some 1026c2c66affSColin Finck // stupid apps think that RootDirectory is much better place.... :(( 1027c2c66affSColin Finck RC = MyInitUnicodeString(&LocalPath, UDF_FN_NON_ALLOCATABLE); 1028c2c66affSColin Finck if(NT_SUCCESS(RC)) { 1029c2c66affSColin Finck RC = UDFOpenFile__(Vcb, FALSE, TRUE, &LocalPath, RootFcb->FileInfo, &(Vcb->NonAllocFileInfo), NULL); 1030c2c66affSColin Finck MyFreePool__(LocalPath.Buffer); 1031c2c66affSColin Finck } 1032c2c66affSColin Finck if(!NT_SUCCESS(RC) && (RC != STATUS_OBJECT_NAME_NOT_FOUND)) { 1033c2c66affSColin Finck 1034c2c66affSColin Finck //unwind_2: 1035c2c66affSColin Finck UDFCleanUpFile__(Vcb, Vcb->NonAllocFileInfo); 1036c2c66affSColin Finck Vcb->NonAllocFileInfo = NULL; 1037c2c66affSColin Finck // this was a part of UDF_RESIDUAL_REFERENCE 1038c2c66affSColin Finck UDFInterlockedDecrement((PLONG)&(Vcb->VCBOpenCount)); 1039c2c66affSColin Finck unwind_1: 1040c2c66affSColin Finck 1041c2c66affSColin Finck // UDFCloseResidual() will clean up everything 1042c2c66affSColin Finck 1043c2c66affSColin Finck return RC; 1044c2c66affSColin Finck } 1045c2c66affSColin Finck 1046c2c66affSColin Finck /* process Non-allocatable */ 1047c2c66affSColin Finck if(NT_SUCCESS(RC)) { 1048c2c66affSColin Finck UDFMarkSpaceAsXXX(Vcb, Vcb->NonAllocFileInfo->Dloc, Vcb->NonAllocFileInfo->Dloc->DataLoc.Mapping, AS_USED); // used 1049c2c66affSColin Finck UDFDirIndex(UDFGetDirIndexByFileInfo(Vcb->NonAllocFileInfo), Vcb->NonAllocFileInfo->Index)->FI_Flags |= UDF_FI_FLAG_FI_INTERNAL; 1050c2c66affSColin Finck } else { 1051c2c66affSColin Finck /* try to read Non-allocatable from alternate locations */ 1052c2c66affSColin Finck RC = MyInitUnicodeString(&LocalPath, UDF_FN_NON_ALLOCATABLE_2); 1053c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 1054c2c66affSColin Finck goto unwind_1; 1055c2c66affSColin Finck } 1056c2c66affSColin Finck RC = UDFOpenFile__(Vcb, FALSE, TRUE, &LocalPath, RootFcb->FileInfo, &(Vcb->NonAllocFileInfo), NULL); 1057c2c66affSColin Finck MyFreePool__(LocalPath.Buffer); 1058c2c66affSColin Finck if(!NT_SUCCESS(RC) && (RC != STATUS_OBJECT_NAME_NOT_FOUND)) { 1059c2c66affSColin Finck goto unwind_1; 1060c2c66affSColin Finck } 1061c2c66affSColin Finck if(NT_SUCCESS(RC)) { 1062c2c66affSColin Finck UDFMarkSpaceAsXXX(Vcb, Vcb->NonAllocFileInfo->Dloc, Vcb->NonAllocFileInfo->Dloc->DataLoc.Mapping, AS_USED); // used 1063c2c66affSColin Finck UDFDirIndex(UDFGetDirIndexByFileInfo(Vcb->NonAllocFileInfo), Vcb->NonAllocFileInfo->Index)->FI_Flags |= UDF_FI_FLAG_FI_INTERNAL; 1064c2c66affSColin Finck } else 1065c2c66affSColin Finck if(Vcb->SysSDirFileInfo) { 1066c2c66affSColin Finck RC = MyInitUnicodeString(&LocalPath, UDF_SN_NON_ALLOCATABLE); 1067c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 1068c2c66affSColin Finck goto unwind_1; 1069c2c66affSColin Finck } 1070c2c66affSColin Finck RC = UDFOpenFile__(Vcb, FALSE, TRUE, &LocalPath, Vcb->SysSDirFileInfo , &(Vcb->NonAllocFileInfo), NULL); 1071c2c66affSColin Finck MyFreePool__(LocalPath.Buffer); 1072c2c66affSColin Finck if(!NT_SUCCESS(RC) && (RC != STATUS_OBJECT_NAME_NOT_FOUND)) { 1073c2c66affSColin Finck goto unwind_1; 1074c2c66affSColin Finck } 1075c2c66affSColin Finck if(NT_SUCCESS(RC)) { 1076c2c66affSColin Finck UDFMarkSpaceAsXXX(Vcb, Vcb->NonAllocFileInfo->Dloc, Vcb->NonAllocFileInfo->Dloc->DataLoc.Mapping, AS_USED); // used 1077c2c66affSColin Finck // UDFDirIndex(UDFGetDirIndexByFileInfo(Vcb->NonAllocFileInfo), Vcb->NonAllocFileInfo->Index)->FI_Flags |= UDF_FI_FLAG_FI_INTERNAL; 1078c2c66affSColin Finck } else { 1079c2c66affSColin Finck RC = STATUS_SUCCESS; 1080c2c66affSColin Finck } 1081c2c66affSColin Finck } else { 1082c2c66affSColin Finck RC = STATUS_SUCCESS; 1083c2c66affSColin Finck } 1084c2c66affSColin Finck } 1085c2c66affSColin Finck 1086c2c66affSColin Finck /* Read SN UID mapping */ 1087c2c66affSColin Finck if(Vcb->SysSDirFileInfo) { 1088c2c66affSColin Finck RC = MyInitUnicodeString(&LocalPath, UDF_SN_UID_MAPPING); 1089c2c66affSColin Finck if(!NT_SUCCESS(RC)) 1090c2c66affSColin Finck goto unwind_3; 1091c2c66affSColin Finck RC = UDFOpenFile__(Vcb, FALSE, TRUE, &LocalPath, Vcb->SysSDirFileInfo , &(Vcb->UniqueIDMapFileInfo), NULL); 1092c2c66affSColin Finck MyFreePool__(LocalPath.Buffer); 1093c2c66affSColin Finck if(!NT_SUCCESS(RC) && (RC != STATUS_OBJECT_NAME_NOT_FOUND)) { 1094c2c66affSColin Finck unwind_3: 1095c2c66affSColin Finck // UDFCloseFile__(Vcb, Vcb->NonAllocFileInfo); 1096c2c66affSColin Finck // UDFCleanUpFile__(Vcb, Vcb->NonAllocFileInfo); 1097c2c66affSColin Finck // if(Vcb->NonAllocFileInfo) 1098c2c66affSColin Finck // MyFreePool__(Vcb->NonAllocFileInfo); 1099c2c66affSColin Finck // Vcb->NonAllocFileInfo = NULL; 1100c2c66affSColin Finck goto unwind_1; 1101c2c66affSColin Finck } else { 1102c2c66affSColin Finck Vcb->UniqueIDMapFileInfo->Dloc->DataLoc.Flags |= EXTENT_FLAG_VERIFY; 1103c2c66affSColin Finck } 1104c2c66affSColin Finck RC = STATUS_SUCCESS; 1105c2c66affSColin Finck } 1106c2c66affSColin Finck 1107c2c66affSColin Finck #define DWN_MAX_CFG_FILE_SIZE 0x10000 1108c2c66affSColin Finck 1109c2c66affSColin Finck /* Read DWN config file from disk with disk-specific options */ 1110c2c66affSColin Finck RC = MyInitUnicodeString(&LocalPath, UDF_CONFIG_STREAM_NAME_W); 1111c2c66affSColin Finck if(NT_SUCCESS(RC)) { 1112c2c66affSColin Finck 1113c2c66affSColin Finck int8* buff; 1114*c334c17dSTimo Kreuzer SIZE_T len; 1115c2c66affSColin Finck PUDF_FILE_INFO CfgFileInfo = NULL; 1116c2c66affSColin Finck 1117c2c66affSColin Finck RC = UDFOpenFile__(Vcb, FALSE, TRUE, &LocalPath, RootFcb->FileInfo, &CfgFileInfo, NULL); 1118c2c66affSColin Finck if(OS_SUCCESS(RC)) { 1119c2c66affSColin Finck 1120c2c66affSColin Finck len = (ULONG)UDFGetFileSize(CfgFileInfo); 1121c2c66affSColin Finck if(len && len < DWN_MAX_CFG_FILE_SIZE) { 1122c2c66affSColin Finck buff = (int8*)MyAllocatePool__(NonPagedPool, len); 1123c2c66affSColin Finck if(buff) { 1124c2c66affSColin Finck RC = UDFReadFile__(Vcb, CfgFileInfo, 0, len, FALSE, buff, &len); 1125c2c66affSColin Finck if(OS_SUCCESS(RC)) { 1126c2c66affSColin Finck // parse config 1127c2c66affSColin Finck Vcb->Cfg = (PUCHAR)buff; 1128c2c66affSColin Finck Vcb->CfgLength = len; 1129c2c66affSColin Finck UDFReadRegKeys(Vcb, TRUE /*update*/, TRUE /*cfg*/); 1130c2c66affSColin Finck Vcb->Cfg = NULL; 1131c2c66affSColin Finck Vcb->CfgLength = 0; 1132c2c66affSColin Finck Vcb->CfgVersion = 0; 1133c2c66affSColin Finck } 1134c2c66affSColin Finck MyFreePool__(buff); 1135c2c66affSColin Finck } 1136c2c66affSColin Finck } 1137c2c66affSColin Finck 1138c2c66affSColin Finck UDFCloseFile__(Vcb, CfgFileInfo); 1139c2c66affSColin Finck } 1140c2c66affSColin Finck if(CfgFileInfo) { 1141c2c66affSColin Finck UDFCleanUpFile__(Vcb, CfgFileInfo); 1142c2c66affSColin Finck } 1143c2c66affSColin Finck MyFreePool__(LocalPath.Buffer); 1144c2c66affSColin Finck } 1145c2c66affSColin Finck RC = STATUS_SUCCESS; 1146c2c66affSColin Finck 1147c2c66affSColin Finck // clear Modified flags. It was not real modify, just 1148c2c66affSColin Finck // bitmap construction 1149c2c66affSColin Finck Vcb->BitmapModified = FALSE; 1150c2c66affSColin Finck //Vcb->Modified = FALSE; 1151c2c66affSColin Finck UDFPreClrModified(Vcb); 1152c2c66affSColin Finck UDFClrModified(Vcb); 1153c2c66affSColin Finck // this is a part of UDF_RESIDUAL_REFERENCE 1154c2c66affSColin Finck UDFInterlockedIncrement((PLONG)&(Vcb->VCBOpenCount)); 1155c2c66affSColin Finck 1156c2c66affSColin Finck NtReqFcb = RootFcb->NTRequiredFCB; 1157c2c66affSColin Finck 1158c2c66affSColin Finck // Start initializing the fields contained in the CommonFCBHeader. 1159c2c66affSColin Finck PtrCommonFCBHeader = &(NtReqFcb->CommonFCBHeader); 1160c2c66affSColin Finck 1161c2c66affSColin Finck // DisAllow fast-IO for now. 1162c2c66affSColin Finck // PtrCommonFCBHeader->IsFastIoPossible = FastIoIsNotPossible; 1163c2c66affSColin Finck PtrCommonFCBHeader->IsFastIoPossible = FastIoIsPossible; 1164c2c66affSColin Finck 1165c2c66affSColin Finck // Initialize the MainResource and PagingIoResource pointers in 1166c2c66affSColin Finck // the CommonFCBHeader structure to point to the ERESOURCE structures we 1167c2c66affSColin Finck // have allocated and already initialized above. 1168c2c66affSColin Finck // PtrCommonFCBHeader->Resource = &(NtReqFcb->MainResource); 1169c2c66affSColin Finck // PtrCommonFCBHeader->PagingIoResource = &(NtReqFcb->PagingIoResource); 1170c2c66affSColin Finck 1171c2c66affSColin Finck // Initialize the file size values here. 1172c2c66affSColin Finck PtrCommonFCBHeader->AllocationSize.QuadPart = 0; 1173c2c66affSColin Finck PtrCommonFCBHeader->FileSize.QuadPart = 0; 1174c2c66affSColin Finck 1175c2c66affSColin Finck // The following will disable ValidDataLength support. 1176c2c66affSColin Finck // PtrCommonFCBHeader->ValidDataLength.QuadPart = 0x7FFFFFFFFFFFFFFFI64; 1177c2c66affSColin Finck PtrCommonFCBHeader->ValidDataLength.QuadPart = 0; 1178c2c66affSColin Finck 1179c2c66affSColin Finck if(!NT_SUCCESS(RC)) 1180c2c66affSColin Finck return RC; 1181c2c66affSColin Finck UDFAssignAcl(Vcb, NULL, RootFcb, NtReqFcb); 1182c2c66affSColin Finck /* 1183c2c66affSColin Finck Vcb->CDBurnerVolumeValid = true; 1184c2c66affSColin Finck 1185c2c66affSColin Finck len = 1186c2c66affSColin Finck Vcb->CDBurnerVolume.Length = 256; 1187c2c66affSColin Finck Vcb->CDBurnerVolume.MaximumLength = 256; 1188c2c66affSColin Finck Vcb->CDBurnerVolume.Buffer = (PWCHAR)ExAllocatePool(NonPagedPool, 256); 1189c2c66affSColin Finck RC = RegTGetStringValue(NULL, REG_CD_BURNER_KEY_NAME, REG_CD_BURNER_VOLUME_NAME, Vcb->CDBurnerVolume.Buffer, 1190c2c66affSColin Finck len); 1191c2c66affSColin Finck Vcb->CDBurnerVolume.Length = (USHORT)(wcslen(Vcb->CDBurnerVolume.Buffer)*sizeof(WCHAR)); 1192c2c66affSColin Finck 1193c2c66affSColin Finck if(RC != STATUS_OBJECT_NAME_NOT_FOUND && !NT_SUCCESS(RC) ) 1194c2c66affSColin Finck return RC; 1195c2c66affSColin Finck 1196c2c66affSColin Finck if (NT_SUCCESS(RC)) { 1197c2c66affSColin Finck RtlWriteRegistryValue(RTL_REGISTRY_ABSOLUTE | RTL_REGISTRY_OPTIONAL, 1198c2c66affSColin Finck REG_CD_BURNER_KEY_NAME, REG_CD_BURNER_VOLUME_NAME, 1199c2c66affSColin Finck REG_SZ,L"",sizeof(L"")+1); 1200c2c66affSColin Finck 1201c2c66affSColin Finck } else { 1202c2c66affSColin Finck Vcb->CDBurnerVolumeValid = false; 1203c2c66affSColin Finck RC = STATUS_SUCCESS; 1204c2c66affSColin Finck } 1205c2c66affSColin Finck */ 1206c2c66affSColin Finck ASSERT(!Vcb->Modified); 1207c2c66affSColin Finck 1208c2c66affSColin Finck return RC; 1209c2c66affSColin Finck } // end UDFCompleteMount() 1210c2c66affSColin Finck 1211c2c66affSColin Finck NTSTATUS 1212c2c66affSColin Finck UDFBlankMount( 1213c2c66affSColin Finck IN PVCB Vcb 1214c2c66affSColin Finck ) 1215c2c66affSColin Finck { 1216c2c66affSColin Finck NTSTATUS RC;// = STATUS_SUCCESS; 1217c2c66affSColin Finck PtrUDFNTRequiredFCB NtReqFcb = NULL; 1218c2c66affSColin Finck PFSRTL_COMMON_FCB_HEADER PtrCommonFCBHeader = NULL; 1219c2c66affSColin Finck PtrUDFObjectName RootName; 1220c2c66affSColin Finck PtrUDFFCB RootFcb; 1221c2c66affSColin Finck PDIR_INDEX_HDR hDirNdx; 1222c2c66affSColin Finck PDIR_INDEX_ITEM DirNdx; 1223c2c66affSColin Finck 1224c2c66affSColin Finck // Create the root index and reference it in the Vcb. 1225c2c66affSColin Finck RootFcb = 1226c2c66affSColin Finck Vcb->RootDirFCB = UDFAllocateFCB(); 1227c2c66affSColin Finck if(!RootFcb) return STATUS_INSUFFICIENT_RESOURCES; 1228c2c66affSColin Finck RtlZeroMemory(RootFcb,sizeof(UDFFCB)); 1229c2c66affSColin Finck 1230c2c66affSColin Finck // Allocate and set root FCB unique name 1231c2c66affSColin Finck RootName = UDFAllocateObjectName(); 1232c2c66affSColin Finck if(!RootName) { 1233c2c66affSColin Finck //bl_unwind_2: 1234c2c66affSColin Finck UDFCleanUpFCB(RootFcb); 1235c2c66affSColin Finck Vcb->RootDirFCB = NULL; 1236c2c66affSColin Finck return STATUS_INSUFFICIENT_RESOURCES; 1237c2c66affSColin Finck } 1238c2c66affSColin Finck RC = MyInitUnicodeString(&(RootName->ObjectName),UDF_ROOTDIR_NAME); 1239c2c66affSColin Finck if(!NT_SUCCESS(RC)) 1240c2c66affSColin Finck goto bl_unwind_1; 1241c2c66affSColin Finck 1242c2c66affSColin Finck RootFcb->NodeIdentifier.NodeType = UDF_NODE_TYPE_FCB; 1243c2c66affSColin Finck RootFcb->NodeIdentifier.NodeSize = sizeof(UDFFCB); 1244c2c66affSColin Finck 1245c2c66affSColin Finck RootFcb->FileInfo = (PUDF_FILE_INFO)MyAllocatePool__(NonPagedPool,sizeof(UDF_FILE_INFO)); 1246c2c66affSColin Finck if(!RootFcb->FileInfo) { 1247c2c66affSColin Finck MyFreePool__(RootName->ObjectName.Buffer); 1248c2c66affSColin Finck RC = STATUS_INSUFFICIENT_RESOURCES; 1249c2c66affSColin Finck bl_unwind_1: 1250c2c66affSColin Finck UDFReleaseObjectName(RootName); 1251c2c66affSColin Finck UDFCleanUpFCB(RootFcb); 1252c2c66affSColin Finck Vcb->RootDirFCB = NULL; 1253c2c66affSColin Finck return RC; 1254c2c66affSColin Finck } 1255c2c66affSColin Finck RtlZeroMemory(RootFcb->FileInfo, sizeof(UDF_FILE_INFO)); 1256c2c66affSColin Finck if(!OS_SUCCESS(RC = UDFStoreDloc(Vcb, RootFcb->FileInfo, 1))) { 1257c2c66affSColin Finck MyFreePool__(RootFcb->FileInfo); 1258c2c66affSColin Finck RootFcb->FileInfo = NULL; 1259c2c66affSColin Finck MyFreePool__(RootName->ObjectName.Buffer); 1260c2c66affSColin Finck goto bl_unwind_1; 1261c2c66affSColin Finck } 1262c2c66affSColin Finck RootFcb->FileInfo->NextLinkedFile = 1263c2c66affSColin Finck RootFcb->FileInfo->PrevLinkedFile = RootFcb->FileInfo; 1264c2c66affSColin Finck 1265c2c66affSColin Finck hDirNdx = UDFDirIndexAlloc(2); 1266c2c66affSColin Finck DirNdx = UDFDirIndex(hDirNdx,0); 1267c2c66affSColin Finck DirNdx->FileCharacteristics = FILE_DIRECTORY; 1268c2c66affSColin Finck DirNdx->FI_Flags = UDF_FI_FLAG_SYS_ATTR; 1269c2c66affSColin Finck DirNdx->SysAttr = FILE_ATTRIBUTE_READONLY; 1270c2c66affSColin Finck RtlInitUnicodeString(&DirNdx->FName, L"."); 1271c2c66affSColin Finck DirNdx->FileInfo = RootFcb->FileInfo; 1272c2c66affSColin Finck DirNdx->FI_Flags |= UDFBuildHashEntry(Vcb, &(DirNdx->FName), &(DirNdx->hashes), HASH_ALL | HASH_KEEP_NAME); 1273c2c66affSColin Finck 1274c2c66affSColin Finck DirNdx = UDFDirIndex(hDirNdx,1); 1275c2c66affSColin Finck DirNdx->FI_Flags = UDF_FI_FLAG_SYS_ATTR; 1276c2c66affSColin Finck if(Vcb->ShowBlankCd == 2) { 1277c2c66affSColin Finck DirNdx->FI_Flags |= UDF_FI_FLAG_FI_INTERNAL; 1278c2c66affSColin Finck } 1279c2c66affSColin Finck DirNdx->SysAttr = FILE_ATTRIBUTE_READONLY; 1280c2c66affSColin Finck RtlInitUnicodeString(&DirNdx->FName, L"Blank.CD"); 1281c2c66affSColin Finck DirNdx->FI_Flags |= UDFBuildHashEntry(Vcb, &(DirNdx->FName), &(DirNdx->hashes), HASH_ALL); 1282c2c66affSColin Finck 1283c2c66affSColin Finck RootFcb->FileInfo->Dloc->DirIndex = hDirNdx; 1284c2c66affSColin Finck RootFcb->FileInfo->Fcb = RootFcb; 1285c2c66affSColin Finck 1286c2c66affSColin Finck if(!(RootFcb->NTRequiredFCB = RootFcb->FileInfo->Dloc->CommonFcb)) { 1287c2c66affSColin Finck if(!(RootFcb->NTRequiredFCB = 1288c2c66affSColin Finck (PtrUDFNTRequiredFCB)MyAllocatePool__(NonPagedPool, UDFQuadAlign(sizeof(UDFNTRequiredFCB))) ) ) { 1289c2c66affSColin Finck MyFreePool__(RootName->ObjectName.Buffer); 1290c2c66affSColin Finck UDFReleaseObjectName(RootName); 1291c2c66affSColin Finck UDFCleanUpFCB(RootFcb); 1292c2c66affSColin Finck Vcb->RootDirFCB = NULL; 1293c2c66affSColin Finck return STATUS_INSUFFICIENT_RESOURCES; 1294c2c66affSColin Finck } 1295c2c66affSColin Finck RtlZeroMemory(RootFcb->NTRequiredFCB, UDFQuadAlign(sizeof(UDFNTRequiredFCB))); 1296c2c66affSColin Finck RootFcb->FileInfo->Dloc->CommonFcb = RootFcb->NTRequiredFCB; 1297c2c66affSColin Finck } 1298c2c66affSColin Finck RC = UDFInitializeFCB(RootFcb,Vcb,RootName,UDF_FCB_ROOT_DIRECTORY | UDF_FCB_DIRECTORY,NULL); 1299c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 1300c2c66affSColin Finck // if we get here, no resources are inited 1301c2c66affSColin Finck RootFcb->OpenHandleCount = 1302c2c66affSColin Finck RootFcb->ReferenceCount = 1303c2c66affSColin Finck RootFcb->NTRequiredFCB->CommonRefCount = 0; 1304c2c66affSColin Finck 1305c2c66affSColin Finck UDFCleanUpFile__(Vcb, RootFcb->FileInfo); 1306c2c66affSColin Finck MyFreePool__(RootFcb->FileInfo); 1307c2c66affSColin Finck MyFreePool__(RootFcb->NTRequiredFCB); 1308c2c66affSColin Finck UDFCleanUpFCB(RootFcb); 1309c2c66affSColin Finck Vcb->RootDirFCB = NULL; 1310c2c66affSColin Finck return RC; 1311c2c66affSColin Finck } 1312c2c66affSColin Finck 1313c2c66affSColin Finck // this is a part of UDF_RESIDUAL_REFERENCE 1314c2c66affSColin Finck UDFInterlockedIncrement((PLONG)&(Vcb->VCBOpenCount)); 1315c2c66affSColin Finck RootFcb->OpenHandleCount = 1316c2c66affSColin Finck RootFcb->ReferenceCount = 1317c2c66affSColin Finck RootFcb->NTRequiredFCB->CommonRefCount = 1318c2c66affSColin Finck RootFcb->FileInfo->RefCount = 1319c2c66affSColin Finck RootFcb->FileInfo->Dloc->LinkRefCount = 1; 1320c2c66affSColin Finck 1321c2c66affSColin Finck // this is a part of UDF_RESIDUAL_REFERENCE 1322c2c66affSColin Finck UDFInterlockedIncrement((PLONG)&(Vcb->VCBOpenCount)); 1323c2c66affSColin Finck 1324c2c66affSColin Finck NtReqFcb = RootFcb->NTRequiredFCB; 1325c2c66affSColin Finck 1326c2c66affSColin Finck // Start initializing the fields contained in the CommonFCBHeader. 1327c2c66affSColin Finck PtrCommonFCBHeader = &(NtReqFcb->CommonFCBHeader); 1328c2c66affSColin Finck 1329c2c66affSColin Finck // DisAllow fast-IO for now. 1330c2c66affSColin Finck PtrCommonFCBHeader->IsFastIoPossible = FastIoIsNotPossible; 1331c2c66affSColin Finck 1332c2c66affSColin Finck // Initialize the MainResource and PagingIoResource pointers in 1333c2c66affSColin Finck // the CommonFCBHeader structure to point to the ERESOURCE structures we 1334c2c66affSColin Finck // have allocated and already initialized above. 1335c2c66affSColin Finck PtrCommonFCBHeader->Resource = &(NtReqFcb->MainResource); 1336c2c66affSColin Finck PtrCommonFCBHeader->PagingIoResource = &(NtReqFcb->PagingIoResource); 1337c2c66affSColin Finck 1338c2c66affSColin Finck // Initialize the file size values here. 1339c2c66affSColin Finck PtrCommonFCBHeader->AllocationSize.QuadPart = 0; 1340c2c66affSColin Finck PtrCommonFCBHeader->FileSize.QuadPart = 0; 1341c2c66affSColin Finck 1342c2c66affSColin Finck // The following will disable ValidDataLength support. 1343c2c66affSColin Finck PtrCommonFCBHeader->ValidDataLength.QuadPart = 0x7FFFFFFFFFFFFFFFLL; 1344c2c66affSColin Finck 1345c2c66affSColin Finck return RC; 1346c2c66affSColin Finck } // end UDFBlankMount() 1347c2c66affSColin Finck 1348c2c66affSColin Finck VOID 1349c2c66affSColin Finck UDFCloseResidual( 1350c2c66affSColin Finck IN PVCB Vcb 1351c2c66affSColin Finck ) 1352c2c66affSColin Finck { 1353c2c66affSColin Finck // Deinitialize Non-alloc file 1354c2c66affSColin Finck if(Vcb->VCBOpenCount) 1355c2c66affSColin Finck UDFInterlockedDecrement((PLONG)&(Vcb->VCBOpenCount)); 1356c2c66affSColin Finck UDFPrint(("UDFCloseResidual: NonAllocFileInfo %x\n", Vcb->NonAllocFileInfo)); 1357c2c66affSColin Finck if(Vcb->NonAllocFileInfo) { 1358c2c66affSColin Finck UDFCloseFile__(Vcb,Vcb->NonAllocFileInfo); 1359c2c66affSColin Finck UDFCleanUpFile__(Vcb, Vcb->NonAllocFileInfo); 1360c2c66affSColin Finck MyFreePool__(Vcb->NonAllocFileInfo); 1361c2c66affSColin Finck Vcb->NonAllocFileInfo = NULL; 1362c2c66affSColin Finck } 1363c2c66affSColin Finck // Deinitialize Unique ID Mapping 1364c2c66affSColin Finck UDFPrint(("UDFCloseResidual: NonAllocFileInfo %x\n", Vcb->NonAllocFileInfo)); 1365c2c66affSColin Finck if(Vcb->UniqueIDMapFileInfo) { 1366c2c66affSColin Finck UDFCloseFile__(Vcb,Vcb->UniqueIDMapFileInfo); 1367c2c66affSColin Finck UDFCleanUpFile__(Vcb, Vcb->UniqueIDMapFileInfo); 1368c2c66affSColin Finck MyFreePool__(Vcb->UniqueIDMapFileInfo); 1369c2c66affSColin Finck Vcb->UniqueIDMapFileInfo = NULL; 1370c2c66affSColin Finck } 1371c2c66affSColin Finck // Deinitialize VAT file 1372c2c66affSColin Finck UDFPrint(("UDFCloseResidual: VatFileInfo %x\n", Vcb->VatFileInfo)); 1373c2c66affSColin Finck if(Vcb->VatFileInfo) { 1374c2c66affSColin Finck UDFCloseFile__(Vcb,Vcb->VatFileInfo); 1375c2c66affSColin Finck UDFCleanUpFile__(Vcb, Vcb->VatFileInfo); 1376c2c66affSColin Finck MyFreePool__(Vcb->VatFileInfo); 1377c2c66affSColin Finck Vcb->VatFileInfo = NULL; 1378c2c66affSColin Finck } 1379c2c66affSColin Finck // System StreamDir 1380c2c66affSColin Finck UDFPrint(("UDFCloseResidual: SysSDirFileInfo %x\n", Vcb->SysSDirFileInfo)); 1381c2c66affSColin Finck if(Vcb->SysSDirFileInfo) { 1382c2c66affSColin Finck UDFCloseFile__(Vcb, Vcb->SysSDirFileInfo); 1383c2c66affSColin Finck UDFCleanUpFile__(Vcb, Vcb->SysSDirFileInfo); 1384c2c66affSColin Finck MyFreePool__(Vcb->SysSDirFileInfo); 1385c2c66affSColin Finck Vcb->SysSDirFileInfo = NULL; 1386c2c66affSColin Finck } 1387c2c66affSColin Finck /* // Deinitialize root dir fcb 1388c2c66affSColin Finck if(Vcb->RootDirFCB) { 1389c2c66affSColin Finck UDFCloseFile__(Vcb,Vcb->RootDirFCB->FileInfo); 1390c2c66affSColin Finck UDFCleanUpFile__(Vcb, Vcb->RootDirFCB->FileInfo); 1391c2c66affSColin Finck MyFreePool__(Vcb->RootDirFCB->FileInfo); 1392c2c66affSColin Finck UDFCleanUpFCB(Vcb->RootDirFCB); 1393c2c66affSColin Finck // Remove root FCB reference in vcb 1394c2c66affSColin Finck if(Vcb->VCBOpenCount) Vcb->VCBOpenCount--; 1395c2c66affSColin Finck } 1396c2c66affSColin Finck 1397c2c66affSColin Finck // Deinitialize Non-alloc file 1398c2c66affSColin Finck if(Vcb->VCBOpenCount) Vcb->VCBOpenCount--; 1399c2c66affSColin Finck if(Vcb->NonAllocFileInfo) { 1400c2c66affSColin Finck UDFCloseFile__(Vcb,Vcb->NonAllocFileInfo); 1401c2c66affSColin Finck // We must release VCB here !!!! 1402c2c66affSColin Finck // UDFCleanUpFcbChain(Vcb, Vcb->NonAllocFileInfo, 1); 1403c2c66affSColin Finck Vcb->NonAllocFileInfo = NULL; 1404c2c66affSColin Finck } 1405c2c66affSColin Finck // Deinitialize VAT file 1406c2c66affSColin Finck if(Vcb->VatFileInfo) { 1407c2c66affSColin Finck UDFCloseFile__(Vcb,Vcb->VatFileInfo); 1408c2c66affSColin Finck // We must release VCB here !!!! 1409c2c66affSColin Finck // UDFCleanUpFcbChain(Vcb, Vcb->VatFileInfo, 1); 1410c2c66affSColin Finck Vcb->VatFileInfo = NULL; 1411c2c66affSColin Finck }*/ 1412c2c66affSColin Finck 1413c2c66affSColin Finck // Deinitialize root dir fcb 1414c2c66affSColin Finck UDFPrint(("UDFCloseResidual: RootDirFCB %x\n", Vcb->RootDirFCB)); 1415c2c66affSColin Finck if(Vcb->RootDirFCB) { 1416c2c66affSColin Finck UDFCloseFile__(Vcb,Vcb->RootDirFCB->FileInfo); 1417c2c66affSColin Finck if(Vcb->RootDirFCB->OpenHandleCount) 1418c2c66affSColin Finck Vcb->RootDirFCB->OpenHandleCount--; 1419c2c66affSColin Finck UDFCleanUpFcbChain(Vcb, Vcb->RootDirFCB->FileInfo, 1, TRUE); 1420c2c66affSColin Finck // Remove root FCB reference in vcb 1421c2c66affSColin Finck if(Vcb->VCBOpenCount) 1422c2c66affSColin Finck UDFInterlockedDecrement((PLONG)&(Vcb->VCBOpenCount)); 1423c2c66affSColin Finck Vcb->RootDirFCB = NULL; 1424c2c66affSColin Finck } 1425c2c66affSColin Finck } // end UDFCloseResidual() 1426c2c66affSColin Finck 1427c2c66affSColin Finck VOID 1428c2c66affSColin Finck UDFCleanupVCB( 1429c2c66affSColin Finck IN PVCB Vcb 1430c2c66affSColin Finck ) 1431c2c66affSColin Finck { 1432c2c66affSColin Finck _SEH2_TRY { 1433c2c66affSColin Finck UDFReleaseFileIdCache(Vcb); 1434c2c66affSColin Finck UDFReleaseDlocList(Vcb); 1435c2c66affSColin Finck } _SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER) { 1436c2c66affSColin Finck BrutePoint(); 1437c2c66affSColin Finck } _SEH2_END; 1438c2c66affSColin Finck 1439c2c66affSColin Finck if(Vcb->ShutdownRegistered && Vcb->VCBDeviceObject) { 1440c2c66affSColin Finck IoUnregisterShutdownNotification(Vcb->VCBDeviceObject); 1441c2c66affSColin Finck Vcb->ShutdownRegistered = FALSE; 1442c2c66affSColin Finck } 1443c2c66affSColin Finck 1444c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->Partitions); 1445c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->LVid); 1446c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->Vat); 1447c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->SparingTable); 1448c2c66affSColin Finck 1449c2c66affSColin Finck if(Vcb->FSBM_Bitmap) { 1450c2c66affSColin Finck DbgFreePool(Vcb->FSBM_Bitmap); 1451c2c66affSColin Finck Vcb->FSBM_Bitmap = NULL; 1452c2c66affSColin Finck } 1453c2c66affSColin Finck if(Vcb->ZSBM_Bitmap) { 1454c2c66affSColin Finck DbgFreePool(Vcb->ZSBM_Bitmap); 1455c2c66affSColin Finck Vcb->ZSBM_Bitmap = NULL; 1456c2c66affSColin Finck } 1457c2c66affSColin Finck if(Vcb->BSBM_Bitmap) { 1458c2c66affSColin Finck DbgFreePool(Vcb->BSBM_Bitmap); 1459c2c66affSColin Finck Vcb->BSBM_Bitmap = NULL; 1460c2c66affSColin Finck } 1461c2c66affSColin Finck #ifdef UDF_TRACK_ONDISK_ALLOCATION_OWNERS 1462c2c66affSColin Finck if(Vcb->FSBM_Bitmap_owners) { 1463c2c66affSColin Finck DbgFreePool(Vcb->FSBM_Bitmap_owners); 1464c2c66affSColin Finck Vcb->FSBM_Bitmap_owners = NULL; 1465c2c66affSColin Finck } 1466c2c66affSColin Finck #endif //UDF_TRACK_ONDISK_ALLOCATION_OWNERS 1467c2c66affSColin Finck if(Vcb->FSBM_OldBitmap) { 1468c2c66affSColin Finck DbgFreePool(Vcb->FSBM_OldBitmap); 1469c2c66affSColin Finck Vcb->FSBM_OldBitmap = NULL; 1470c2c66affSColin Finck } 1471c2c66affSColin Finck 1472c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->Statistics); 1473c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->NTRequiredFCB); 1474c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->VolIdent.Buffer); 1475c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->TargetDevName.Buffer); 1476c2c66affSColin Finck 1477c2c66affSColin Finck if(Vcb->ZBuffer) { 1478c2c66affSColin Finck DbgFreePool(Vcb->ZBuffer); 1479c2c66affSColin Finck Vcb->ZBuffer = NULL; 1480c2c66affSColin Finck } 1481c2c66affSColin Finck 1482c2c66affSColin Finck if(Vcb->fZBuffer) { 1483c2c66affSColin Finck DbgFreePool(Vcb->fZBuffer); 1484c2c66affSColin Finck Vcb->fZBuffer = NULL; 1485c2c66affSColin Finck } 1486c2c66affSColin Finck 1487c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->OPCh); 1488c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->WParams); 1489c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->Error); 1490c2c66affSColin Finck MyFreeMemoryAndPointer(Vcb->TrackMap); 1491c2c66affSColin Finck 1492c2c66affSColin Finck } // end UDFCleanupVCB() 1493c2c66affSColin Finck 1494c2c66affSColin Finck /* 1495c2c66affSColin Finck 1496c2c66affSColin Finck Routine Description: 1497c2c66affSColin Finck 1498c2c66affSColin Finck This routine walks through the list of Vcb's looking for any which may 1499c2c66affSColin Finck now be deleted. They may have been left on the list because there were 1500c2c66affSColin Finck outstanding references. 1501c2c66affSColin Finck 1502c2c66affSColin Finck Arguments: 1503c2c66affSColin Finck 1504c2c66affSColin Finck Return Value: 1505c2c66affSColin Finck 1506c2c66affSColin Finck None 1507c2c66affSColin Finck 1508c2c66affSColin Finck */ 1509c2c66affSColin Finck VOID 1510c2c66affSColin Finck UDFScanForDismountedVcb( 1511c2c66affSColin Finck IN PtrUDFIrpContext IrpContext 1512c2c66affSColin Finck ) 1513c2c66affSColin Finck { 1514c2c66affSColin Finck PVCB Vcb; 1515c2c66affSColin Finck PLIST_ENTRY Link; 1516c2c66affSColin Finck 1517c2c66affSColin Finck 1518c2c66affSColin Finck // Walk through all of the Vcb's attached to the global data. 1519c2c66affSColin Finck Link = UDFGlobalData.VCBQueue.Flink; 1520c2c66affSColin Finck 1521c2c66affSColin Finck while (Link != &(UDFGlobalData.VCBQueue)) { 1522c2c66affSColin Finck 1523c2c66affSColin Finck Vcb = CONTAINING_RECORD( Link, VCB, NextVCB ); 1524c2c66affSColin Finck 1525c2c66affSColin Finck // Move to the next link now since the current Vcb may be deleted. 1526c2c66affSColin Finck Link = Link->Flink; 1527c2c66affSColin Finck 1528c2c66affSColin Finck // If dismount is already underway then check if this Vcb can 1529c2c66affSColin Finck // go away. 1530c2c66affSColin Finck if((Vcb->VCBFlags & UDF_VCB_FLAGS_BEING_DISMOUNTED) || 1531c2c66affSColin Finck ((!(Vcb->VCBFlags & UDF_VCB_FLAGS_VOLUME_MOUNTED)) && (Vcb->VCBOpenCount <= UDF_RESIDUAL_REFERENCE))) { 1532c2c66affSColin Finck 1533c2c66affSColin Finck UDFCheckForDismount( IrpContext, Vcb, FALSE ); 1534c2c66affSColin Finck } 1535c2c66affSColin Finck } 1536c2c66affSColin Finck 1537c2c66affSColin Finck return; 1538c2c66affSColin Finck } // end UDFScanForDismountedVcb() 1539c2c66affSColin Finck 1540c2c66affSColin Finck /* 1541c2c66affSColin Finck Routine Description: 1542c2c66affSColin Finck This routine determines if a volume is currently mounted. 1543c2c66affSColin Finck 1544c2c66affSColin Finck Arguments: 1545c2c66affSColin Finck Irp - Supplies the Irp to process 1546c2c66affSColin Finck 1547c2c66affSColin Finck Return Value: 1548c2c66affSColin Finck NTSTATUS - The return status for the operation 1549c2c66affSColin Finck 1550c2c66affSColin Finck */ 1551c2c66affSColin Finck NTSTATUS 1552c2c66affSColin Finck UDFIsVolumeMounted( 1553c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 1554c2c66affSColin Finck IN PIRP Irp 1555c2c66affSColin Finck ) 1556c2c66affSColin Finck { 1557c2c66affSColin Finck PIO_STACK_LOCATION IrpSp = IoGetCurrentIrpStackLocation( Irp ); 1558c2c66affSColin Finck 1559c2c66affSColin Finck PtrUDFFCB Fcb; 1560c2c66affSColin Finck PtrUDFCCB Ccb; 1561c2c66affSColin Finck 1562c2c66affSColin Finck UDFPrint(("UDFIsVolumeMounted\n")); 1563c2c66affSColin Finck 1564c2c66affSColin Finck Ccb = (PtrUDFCCB)IrpSp->FileObject->FsContext2; 1565c2c66affSColin Finck if(!Ccb) { 1566c2c66affSColin Finck UDFPrintErr((" !Ccb\n")); 1567c2c66affSColin Finck Irp->IoStatus.Information = 0; 1568c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 1569c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 1570c2c66affSColin Finck } 1571c2c66affSColin Finck Fcb = Ccb->Fcb; 1572c2c66affSColin Finck 1573c2c66affSColin Finck if(Fcb && 1574c2c66affSColin Finck !(Fcb->Vcb->VCBFlags & UDF_VCB_FLAGS_RAW_DISK) && 1575c2c66affSColin Finck !(Fcb->Vcb->VCBFlags & UDF_VCB_FLAGS_VOLUME_LOCKED) ) { 1576c2c66affSColin Finck 1577c2c66affSColin Finck // Disable PopUps, we want to return any error. 1578c2c66affSColin Finck IrpContext->IrpContextFlags |= UDF_IRP_CONTEXT_FLAG_DISABLE_POPUPS; 1579c2c66affSColin Finck 1580c2c66affSColin Finck // Verify the Vcb. This will raise in the error condition. 1581c2c66affSColin Finck UDFVerifyVcb( IrpContext, Fcb->Vcb ); 1582c2c66affSColin Finck } 1583c2c66affSColin Finck 1584c2c66affSColin Finck Irp->IoStatus.Information = 0; 1585c2c66affSColin Finck Irp->IoStatus.Status = STATUS_SUCCESS; 1586c2c66affSColin Finck 1587c2c66affSColin Finck return STATUS_SUCCESS; 1588c2c66affSColin Finck } // end UDFIsVolumeMounted() 1589c2c66affSColin Finck 1590c2c66affSColin Finck /* 1591c2c66affSColin Finck This routine returns the filesystem performance counters from the 1592c2c66affSColin Finck appropriate VCB. 1593c2c66affSColin Finck 1594c2c66affSColin Finck Arguments: 1595c2c66affSColin Finck Irp - Supplies the Irp to process 1596c2c66affSColin Finck 1597c2c66affSColin Finck Return Value: 1598c2c66affSColin Finck NTSTATUS - The return status for the operation 1599c2c66affSColin Finck */ 1600c2c66affSColin Finck NTSTATUS 1601c2c66affSColin Finck UDFGetStatistics( 1602c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 1603c2c66affSColin Finck IN PIRP Irp 1604c2c66affSColin Finck ) 1605c2c66affSColin Finck { 1606c2c66affSColin Finck PEXTENDED_IO_STACK_LOCATION IrpSp = (PEXTENDED_IO_STACK_LOCATION)IoGetCurrentIrpStackLocation( Irp ); 1607c2c66affSColin Finck NTSTATUS status; 1608c2c66affSColin Finck PVCB Vcb; 1609c2c66affSColin Finck 1610c2c66affSColin Finck PFILE_SYSTEM_STATISTICS Buffer; 1611c2c66affSColin Finck ULONG BufferLength; 1612c2c66affSColin Finck ULONG StatsSize; 1613c2c66affSColin Finck ULONG BytesToCopy; 1614c2c66affSColin Finck 1615c2c66affSColin Finck UDFPrint(("UDFGetStatistics\n")); 1616c2c66affSColin Finck 1617c2c66affSColin Finck // Extract the buffer 1618c2c66affSColin Finck BufferLength = IrpSp->Parameters.FileSystemControl.OutputBufferLength; 1619c2c66affSColin Finck // Get a pointer to the output buffer. 1620c2c66affSColin Finck Buffer = (PFILE_SYSTEM_STATISTICS)(Irp->AssociatedIrp.SystemBuffer); 1621c2c66affSColin Finck 1622c2c66affSColin Finck // Make sure the buffer is big enough for at least the common part. 1623c2c66affSColin Finck if (BufferLength < sizeof(FILESYSTEM_STATISTICS)) { 1624c2c66affSColin Finck status = STATUS_BUFFER_TOO_SMALL; 1625c2c66affSColin Finck Irp->IoStatus.Information = 0; 1626c2c66affSColin Finck goto EO_stat; 1627c2c66affSColin Finck } 1628c2c66affSColin Finck 1629c2c66affSColin Finck // Now see how many bytes we can copy. 1630c2c66affSColin Finck StatsSize = sizeof(FILE_SYSTEM_STATISTICS) * KeNumberProcessors; 1631c2c66affSColin Finck if (BufferLength < StatsSize) { 1632c2c66affSColin Finck BytesToCopy = BufferLength; 1633c2c66affSColin Finck status = STATUS_BUFFER_OVERFLOW; 1634c2c66affSColin Finck } else { 1635c2c66affSColin Finck BytesToCopy = StatsSize; 1636c2c66affSColin Finck status = STATUS_SUCCESS; 1637c2c66affSColin Finck } 1638c2c66affSColin Finck 1639c2c66affSColin Finck Vcb = (PVCB)(((PDEVICE_OBJECT)IrpSp->DeviceObject)->DeviceExtension); 1640c2c66affSColin Finck // Fill in the output buffer 1641c2c66affSColin Finck RtlCopyMemory( Buffer, Vcb->Statistics, BytesToCopy ); 1642c2c66affSColin Finck Irp->IoStatus.Information = BytesToCopy; 1643c2c66affSColin Finck EO_stat: 1644c2c66affSColin Finck Irp->IoStatus.Status = status; 1645c2c66affSColin Finck 1646c2c66affSColin Finck return status; 1647c2c66affSColin Finck } // end UDFGetStatistics() 1648c2c66affSColin Finck 1649c2c66affSColin Finck 1650c2c66affSColin Finck /* 1651c2c66affSColin Finck This routine determines if pathname is valid path for UDF Filesystem 1652c2c66affSColin Finck 1653c2c66affSColin Finck Arguments: 1654c2c66affSColin Finck Irp - Supplies the Irp to process 1655c2c66affSColin Finck 1656c2c66affSColin Finck Return Value: 1657c2c66affSColin Finck NTSTATUS - The return status for the operation 1658c2c66affSColin Finck */ 1659c2c66affSColin Finck NTSTATUS 1660c2c66affSColin Finck UDFIsPathnameValid( 1661c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 1662c2c66affSColin Finck IN PIRP Irp 1663c2c66affSColin Finck ) 1664c2c66affSColin Finck { 1665c2c66affSColin Finck PEXTENDED_IO_STACK_LOCATION IrpSp = (PEXTENDED_IO_STACK_LOCATION)IoGetCurrentIrpStackLocation( Irp ); 1666c2c66affSColin Finck NTSTATUS RC; 1667c2c66affSColin Finck PPATHNAME_BUFFER PathnameBuffer; 1668c2c66affSColin Finck UNICODE_STRING PathName; 1669c2c66affSColin Finck UNICODE_STRING CurName; 1670c2c66affSColin Finck PWCHAR TmpBuffer; 1671c2c66affSColin Finck 1672c2c66affSColin Finck UDFPrint(("UDFIsPathnameValid\n")); 1673c2c66affSColin Finck 1674c2c66affSColin Finck // Extract the pathname 1675c2c66affSColin Finck PathnameBuffer = (PPATHNAME_BUFFER)Irp->AssociatedIrp.SystemBuffer; 1676c2c66affSColin Finck PathName.Buffer = PathnameBuffer->Name; 1677c2c66affSColin Finck PathName.Length = (USHORT)PathnameBuffer->PathNameLength; 1678c2c66affSColin Finck 1679c2c66affSColin Finck _SEH2_TRY { 1680c2c66affSColin Finck // Check for an invalid buffer 1681c2c66affSColin Finck if (FIELD_OFFSET(PATHNAME_BUFFER, Name[0]) + PathnameBuffer->PathNameLength > 1682c2c66affSColin Finck IrpSp->Parameters.FileSystemControl.InputBufferLength) { 1683c2c66affSColin Finck try_return( RC = STATUS_INVALID_PARAMETER); 1684c2c66affSColin Finck } 1685c2c66affSColin Finck while (TRUE) { 1686c2c66affSColin Finck // get next path part... 1687c2c66affSColin Finck TmpBuffer = PathName.Buffer; 1688c2c66affSColin Finck PathName.Buffer = UDFDissectName(PathName.Buffer,&(CurName.Length) ); 1689*c334c17dSTimo Kreuzer PathName.Length -= (USHORT)((ULONG_PTR)(PathName.Buffer) - (ULONG_PTR)TmpBuffer); 1690c2c66affSColin Finck CurName.Buffer = PathName.Buffer - CurName.Length; 1691c2c66affSColin Finck CurName.Length *= sizeof(WCHAR); 1692c2c66affSColin Finck CurName.MaximumLength -= CurName.Length; 1693c2c66affSColin Finck 1694c2c66affSColin Finck if (CurName.Length) { 1695c2c66affSColin Finck // check path fragment size 1696c2c66affSColin Finck if (CurName.Length > UDF_NAME_LEN*sizeof(WCHAR)) { 1697c2c66affSColin Finck try_return(RC = STATUS_OBJECT_NAME_INVALID); 1698c2c66affSColin Finck } 1699c2c66affSColin Finck if (!UDFIsNameValid(&CurName, NULL, NULL)) { 1700c2c66affSColin Finck try_return(RC = STATUS_OBJECT_NAME_INVALID); 1701c2c66affSColin Finck } 1702c2c66affSColin Finck } else { 1703c2c66affSColin Finck try_return(RC = STATUS_SUCCESS); 1704c2c66affSColin Finck } 1705c2c66affSColin Finck } 1706c2c66affSColin Finck try_exit: NOTHING; 1707c2c66affSColin Finck } _SEH2_FINALLY { 1708c2c66affSColin Finck Irp->IoStatus.Information = 0; 1709c2c66affSColin Finck Irp->IoStatus.Status = RC; 1710c2c66affSColin Finck } _SEH2_END; 1711c2c66affSColin Finck 1712c2c66affSColin Finck return RC; 1713c2c66affSColin Finck } // end UDFIsPathnameValid() 1714c2c66affSColin Finck 1715c2c66affSColin Finck /* 1716c2c66affSColin Finck This routine performs the lock volume operation. It is responsible for 1717c2c66affSColin Finck either completing of enqueuing the input Irp. 1718c2c66affSColin Finck Arguments: 1719c2c66affSColin Finck Irp - Supplies the Irp to process 1720c2c66affSColin Finck Return Value: 1721c2c66affSColin Finck NTSTATUS - The return status for the operation 1722c2c66affSColin Finck */ 1723c2c66affSColin Finck NTSTATUS 1724c2c66affSColin Finck UDFLockVolume( 1725c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 1726c2c66affSColin Finck IN PIRP Irp, 1727c2c66affSColin Finck IN ULONG PID 1728c2c66affSColin Finck ) 1729c2c66affSColin Finck { 1730c2c66affSColin Finck NTSTATUS RC; 1731c2c66affSColin Finck 1732c2c66affSColin Finck KIRQL SavedIrql; 1733c2c66affSColin Finck PIO_STACK_LOCATION IrpSp = IoGetCurrentIrpStackLocation( Irp ); 1734c2c66affSColin Finck 1735c2c66affSColin Finck PVCB Vcb; 1736c2c66affSColin Finck PtrUDFFCB Fcb; 1737c2c66affSColin Finck PtrUDFCCB Ccb; 1738c2c66affSColin Finck BOOLEAN VcbAcquired = FALSE; 1739c2c66affSColin Finck 1740c2c66affSColin Finck UDFPrint(("UDFLockVolume: PID %x\n", PID)); 1741c2c66affSColin Finck 1742c2c66affSColin Finck // Decode the file object, the only type of opens we accept are 1743c2c66affSColin Finck // user volume opens. 1744c2c66affSColin Finck Ccb = (PtrUDFCCB)(IrpSp->FileObject->FsContext2); 1745c2c66affSColin Finck if(!Ccb) { 1746c2c66affSColin Finck UDFPrintErr((" !Ccb\n")); 1747c2c66affSColin Finck Irp->IoStatus.Information = 0; 1748c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 1749c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 1750c2c66affSColin Finck } 1751c2c66affSColin Finck Fcb = Ccb->Fcb; 1752c2c66affSColin Finck Vcb = Fcb->Vcb; 1753c2c66affSColin Finck 1754c2c66affSColin Finck // Check for volume open 1755c2c66affSColin Finck if (Vcb != (PVCB)Fcb || !(Ccb->CCBFlags & UDF_CCB_VOLUME_OPEN)) { 1756c2c66affSColin Finck Irp->IoStatus.Information = 0; 1757c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 1758c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 1759c2c66affSColin Finck } 1760c2c66affSColin Finck 1761c2c66affSColin Finck UDFNotifyVolumeEvent(IrpSp->FileObject, FSRTL_VOLUME_LOCK); 1762c2c66affSColin Finck 1763c2c66affSColin Finck _SEH2_TRY { 1764c2c66affSColin Finck 1765c2c66affSColin Finck if(!(Vcb->VCBFlags & UDF_VCB_FLAGS_RAW_DISK)) 1766c2c66affSColin Finck UDFCloseAllSystemDelayedInDir(Vcb, Vcb->RootDirFCB->FileInfo); 1767c2c66affSColin Finck #ifdef UDF_DELAYED_CLOSE 1768c2c66affSColin Finck UDFCloseAllDelayed(Vcb); 1769c2c66affSColin Finck #endif //UDF_DELAYED_CLOSE 1770c2c66affSColin Finck 1771c2c66affSColin Finck // Acquire exclusive access to the Vcb. 1772c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->VCBResource), TRUE ); 1773c2c66affSColin Finck VcbAcquired = TRUE; 1774c2c66affSColin Finck 1775c2c66affSColin Finck // Verify the Vcb. 1776c2c66affSColin Finck UDFVerifyVcb( IrpContext, Vcb ); 1777c2c66affSColin Finck 1778c2c66affSColin Finck // If the volume is already locked then complete with success if this file 1779c2c66affSColin Finck // object has the volume locked, fail otherwise. 1780c2c66affSColin Finck /* if (Vcb->VCBFlags & UDF_VCB_FLAGS_VOLUME_LOCKED) { 1781c2c66affSColin Finck 1782c2c66affSColin Finck if (Vcb->VolumeLockFileObject == IrpSp->FileObject) { 1783c2c66affSColin Finck RC = STATUS_SUCCESS; 1784c2c66affSColin Finck } else { 1785c2c66affSColin Finck RC = STATUS_ACCESS_DENIED; 1786c2c66affSColin Finck } 1787c2c66affSColin Finck // If the open count for the volume is greater than 1 then this request 1788c2c66affSColin Finck // will fail. 1789c2c66affSColin Finck } else if (Vcb->VCBOpenCount > UDF_RESIDUAL_REFERENCE+1) { 1790c2c66affSColin Finck RC = STATUS_ACCESS_DENIED; 1791c2c66affSColin Finck // We will try to get rid of all of the user references. If there is only one 1792c2c66affSColin Finck // remaining after the purge then we can allow the volume to be locked. 1793c2c66affSColin Finck } else { 1794c2c66affSColin Finck // flush system cache 1795c2c66affSColin Finck UDFReleaseResource( &(Vcb->VCBResource) ); 1796c2c66affSColin Finck VcbAcquired = FALSE; 1797c2c66affSColin Finck }*/ 1798c2c66affSColin Finck 1799c2c66affSColin Finck } _SEH2_FINALLY { 1800c2c66affSColin Finck 1801c2c66affSColin Finck // Release the Vcb. 1802c2c66affSColin Finck if(VcbAcquired) { 1803c2c66affSColin Finck UDFReleaseResource( &(Vcb->VCBResource) ); 1804c2c66affSColin Finck VcbAcquired = FALSE; 1805c2c66affSColin Finck } 1806c2c66affSColin Finck } _SEH2_END; 1807c2c66affSColin Finck 1808c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->VCBResource), TRUE ); 1809c2c66affSColin Finck VcbAcquired = TRUE; 1810c2c66affSColin Finck UDFFlushLogicalVolume(NULL, NULL, Vcb/*, 0*/); 1811c2c66affSColin Finck UDFReleaseResource( &(Vcb->VCBResource) ); 1812c2c66affSColin Finck VcbAcquired = FALSE; 1813c2c66affSColin Finck // Check if the Vcb is already locked, or if the open file count 1814c2c66affSColin Finck // is greater than 1 (which implies that someone else also is 1815c2c66affSColin Finck // currently using the volume, or a file on the volume). 1816c2c66affSColin Finck IoAcquireVpbSpinLock( &SavedIrql ); 1817c2c66affSColin Finck 1818c2c66affSColin Finck if (!(Vcb->Vpb->Flags & VPB_LOCKED) && 1819c2c66affSColin Finck (Vcb->VolumeLockPID == (ULONG)-1) && 1820c2c66affSColin Finck (Vcb->VCBOpenCount <= UDF_RESIDUAL_REFERENCE+1) && 1821c2c66affSColin Finck (Vcb->Vpb->ReferenceCount == 2)) { 1822c2c66affSColin Finck 1823c2c66affSColin Finck // Mark volume as locked 1824c2c66affSColin Finck if(PID == (ULONG)-1) { 1825c2c66affSColin Finck Vcb->Vpb->Flags |= VPB_LOCKED; 1826c2c66affSColin Finck } 1827c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_VOLUME_LOCKED; 1828c2c66affSColin Finck Vcb->VolumeLockFileObject = IrpSp->FileObject; 1829c2c66affSColin Finck Vcb->VolumeLockPID = PID; 1830c2c66affSColin Finck 1831c2c66affSColin Finck RC = STATUS_SUCCESS; 1832c2c66affSColin Finck 1833c2c66affSColin Finck } else { 1834c2c66affSColin Finck 1835c2c66affSColin Finck RC = STATUS_ACCESS_DENIED; 1836c2c66affSColin Finck } 1837c2c66affSColin Finck 1838c2c66affSColin Finck IoReleaseVpbSpinLock( SavedIrql ); 1839c2c66affSColin Finck 1840c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 1841c2c66affSColin Finck UDFNotifyVolumeEvent(IrpSp->FileObject, FSRTL_VOLUME_LOCK_FAILED); 1842c2c66affSColin Finck } 1843c2c66affSColin Finck 1844c2c66affSColin Finck // Complete the request if there haven't been any exceptions. 1845c2c66affSColin Finck Irp->IoStatus.Information = 0; 1846c2c66affSColin Finck Irp->IoStatus.Status = RC; 1847c2c66affSColin Finck return RC; 1848c2c66affSColin Finck } // end UDFLockVolume() 1849c2c66affSColin Finck 1850c2c66affSColin Finck /* 1851c2c66affSColin Finck This routine performs the unlock volume operation. It is responsible for 1852c2c66affSColin Finck either completing of enqueuing the input Irp. 1853c2c66affSColin Finck Arguments: 1854c2c66affSColin Finck Irp - Supplies the Irp to process 1855c2c66affSColin Finck Return Value: 1856c2c66affSColin Finck NTSTATUS - The return status for the operation 1857c2c66affSColin Finck */ 1858c2c66affSColin Finck NTSTATUS 1859c2c66affSColin Finck UDFUnlockVolume( 1860c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 1861c2c66affSColin Finck IN PIRP Irp, 1862c2c66affSColin Finck IN ULONG PID 1863c2c66affSColin Finck ) 1864c2c66affSColin Finck { 1865c2c66affSColin Finck NTSTATUS RC = STATUS_INVALID_PARAMETER; 1866c2c66affSColin Finck 1867c2c66affSColin Finck KIRQL SavedIrql; 1868c2c66affSColin Finck PIO_STACK_LOCATION IrpSp = IoGetCurrentIrpStackLocation( Irp ); 1869c2c66affSColin Finck 1870c2c66affSColin Finck PVCB Vcb; 1871c2c66affSColin Finck PtrUDFFCB Fcb; 1872c2c66affSColin Finck PtrUDFCCB Ccb; 1873c2c66affSColin Finck 1874c2c66affSColin Finck UDFPrint(("UDFUnlockVolume: PID %x\n", PID)); 1875c2c66affSColin Finck 1876c2c66affSColin Finck // Decode the file object, the only type of opens we accept are 1877c2c66affSColin Finck // user volume opens. 1878c2c66affSColin Finck Ccb = (PtrUDFCCB)(IrpSp->FileObject->FsContext2); 1879c2c66affSColin Finck if(!Ccb) { 1880c2c66affSColin Finck UDFPrintErr((" !Ccb\n")); 1881c2c66affSColin Finck Irp->IoStatus.Information = 0; 1882c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 1883c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 1884c2c66affSColin Finck } 1885c2c66affSColin Finck Fcb = Ccb->Fcb; 1886c2c66affSColin Finck Vcb = Fcb->Vcb; 1887c2c66affSColin Finck 1888c2c66affSColin Finck // Check for volume open 1889c2c66affSColin Finck if(Vcb != (PVCB)Fcb || !(Ccb->CCBFlags & UDF_CCB_VOLUME_OPEN)) { 1890c2c66affSColin Finck Irp->IoStatus.Information = 0; 1891c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 1892c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 1893c2c66affSColin Finck } 1894c2c66affSColin Finck 1895c2c66affSColin Finck // Acquire exclusive access to the Vcb/Vpb. 1896c2c66affSColin Finck IoAcquireVpbSpinLock( &SavedIrql ); 1897c2c66affSColin Finck 1898c2c66affSColin Finck _SEH2_TRY { 1899c2c66affSColin Finck 1900c2c66affSColin Finck // We won't check for a valid Vcb for this request. An unlock will always 1901c2c66affSColin Finck // succeed on a locked volume. 1902c2c66affSColin Finck if(Vcb->Vpb->Flags & VPB_LOCKED || 1903c2c66affSColin Finck Vcb->VolumeLockPID == PID) { 1904c2c66affSColin Finck Vcb->Vpb->Flags &= ~VPB_LOCKED; 1905c2c66affSColin Finck Vcb->VCBFlags &= ~UDF_VCB_FLAGS_VOLUME_LOCKED; 1906c2c66affSColin Finck Vcb->VolumeLockFileObject = NULL; 1907c2c66affSColin Finck Vcb->VolumeLockPID = -1; 1908c2c66affSColin Finck UDFNotifyVolumeEvent(IrpSp->FileObject, FSRTL_VOLUME_UNLOCK); 1909c2c66affSColin Finck RC = STATUS_SUCCESS; 1910c2c66affSColin Finck } else { 1911c2c66affSColin Finck RC = STATUS_NOT_LOCKED; 1912c2c66affSColin Finck RC = STATUS_SUCCESS; 1913c2c66affSColin Finck RC = STATUS_VOLUME_DISMOUNTED; 1914c2c66affSColin Finck } 1915c2c66affSColin Finck 1916c2c66affSColin Finck } _SEH2_FINALLY { 1917c2c66affSColin Finck ; 1918c2c66affSColin Finck } _SEH2_END; 1919c2c66affSColin Finck 1920c2c66affSColin Finck // Release all of our resources 1921c2c66affSColin Finck IoReleaseVpbSpinLock( SavedIrql ); 1922c2c66affSColin Finck 1923c2c66affSColin Finck // Complete the request if there haven't been any exceptions. 1924c2c66affSColin Finck Irp->IoStatus.Information = 0; 1925c2c66affSColin Finck Irp->IoStatus.Status = RC; 1926c2c66affSColin Finck return RC; 1927c2c66affSColin Finck } // end UDFUnlockVolume() 1928c2c66affSColin Finck 1929c2c66affSColin Finck 1930c2c66affSColin Finck /* 1931c2c66affSColin Finck This routine performs the dismount volume operation. It is responsible for 1932c2c66affSColin Finck either completing of enqueuing the input Irp. We only dismount a volume which 1933c2c66affSColin Finck has been locked. The intent here is that someone has locked the volume (they are the 1934c2c66affSColin Finck only remaining handle). We set the verify bit here and the user will close his handle. 1935c2c66affSColin Finck We will dismount a volume with no user's handles in the verify path. 1936c2c66affSColin Finck Arguments: 1937c2c66affSColin Finck Irp - Supplies the Irp to process 1938c2c66affSColin Finck Return Value: 1939c2c66affSColin Finck NTSTATUS - The return status for the operation 1940c2c66affSColin Finck */ 1941c2c66affSColin Finck NTSTATUS 1942c2c66affSColin Finck UDFDismountVolume( 1943c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 1944c2c66affSColin Finck IN PIRP Irp 1945c2c66affSColin Finck ) 1946c2c66affSColin Finck { 1947c2c66affSColin Finck NTSTATUS RC; 1948c2c66affSColin Finck 1949c2c66affSColin Finck PIO_STACK_LOCATION IrpSp = IoGetCurrentIrpStackLocation( Irp ); 1950c2c66affSColin Finck 1951c2c66affSColin Finck PVCB Vcb; 1952c2c66affSColin Finck PtrUDFFCB Fcb; 1953c2c66affSColin Finck PtrUDFCCB Ccb; 1954c2c66affSColin Finck PPREVENT_MEDIA_REMOVAL_USER_IN Buf = NULL; 1955c2c66affSColin Finck BOOLEAN VcbAcquired = FALSE; 1956c2c66affSColin Finck 1957c2c66affSColin Finck UDFPrint(("\n ### UDFDismountVolume ###\n\n")); 1958c2c66affSColin Finck 1959c2c66affSColin Finck // Decode the file object, the only type of opens we accept are 1960c2c66affSColin Finck // user volume opens. 1961c2c66affSColin Finck Ccb = (PtrUDFCCB)(IrpSp->FileObject->FsContext2); 1962c2c66affSColin Finck if(!Ccb) { 1963c2c66affSColin Finck UDFPrintErr((" !Ccb\n")); 1964c2c66affSColin Finck Irp->IoStatus.Information = 0; 1965c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 1966c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 1967c2c66affSColin Finck } 1968c2c66affSColin Finck Fcb = Ccb->Fcb; 1969c2c66affSColin Finck Vcb = Fcb->Vcb; 1970c2c66affSColin Finck 1971c2c66affSColin Finck // Check for volume open 1972c2c66affSColin Finck if(Vcb != (PVCB)Fcb || !(Ccb->CCBFlags & UDF_CCB_VOLUME_OPEN)) { 1973c2c66affSColin Finck Irp->IoStatus.Information = 0; 1974c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 1975c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 1976c2c66affSColin Finck } 1977c2c66affSColin Finck 1978c2c66affSColin Finck UDFNotifyVolumeEvent(IrpSp->FileObject, FSRTL_VOLUME_DISMOUNT); 1979c2c66affSColin Finck 1980c2c66affSColin Finck if(!(Vcb->VCBFlags & UDF_VCB_FLAGS_RAW_DISK)) 1981c2c66affSColin Finck UDFCloseAllSystemDelayedInDir(Vcb, Vcb->RootDirFCB->FileInfo); 1982c2c66affSColin Finck #ifdef UDF_DELAYED_CLOSE 1983c2c66affSColin Finck UDFCloseAllDelayed(Vcb); 1984c2c66affSColin Finck #endif //UDF_DELAYED_CLOSE 1985c2c66affSColin Finck 1986c2c66affSColin Finck // Acquire exclusive access to the Vcb. 1987c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->VCBResource), TRUE ); 1988c2c66affSColin Finck VcbAcquired = TRUE; 1989c2c66affSColin Finck 1990c2c66affSColin Finck _SEH2_TRY { 1991c2c66affSColin Finck 1992c2c66affSColin Finck // Mark the volume as needs to be verified, but only do it if 1993c2c66affSColin Finck // the vcb is locked by this handle and the volume is currently mounted. 1994c2c66affSColin Finck 1995c2c66affSColin Finck if(!(Vcb->VCBFlags & UDF_VCB_FLAGS_VOLUME_MOUNTED)) { 1996c2c66affSColin Finck // disable Eject Request Waiter if any 1997c2c66affSColin Finck UDFReleaseResource( &(Vcb->VCBResource) ); 1998c2c66affSColin Finck VcbAcquired = FALSE; 1999c2c66affSColin Finck 2000c2c66affSColin Finck UDFStopEjectWaiter(Vcb); 2001c2c66affSColin Finck RC = STATUS_SUCCESS; 2002c2c66affSColin Finck } else 2003c2c66affSColin Finck if(/*!(Vcb->VCBFlags & UDF_VCB_FLAGS_VOLUME_MOUNTED) ||*/ 2004c2c66affSColin Finck !(Vcb->VCBFlags & UDF_VCB_FLAGS_VOLUME_LOCKED) || 2005c2c66affSColin Finck (Vcb->VCBOpenCount > (UDF_RESIDUAL_REFERENCE+1))) { 2006c2c66affSColin Finck 2007c2c66affSColin Finck RC = STATUS_NOT_LOCKED; 2008c2c66affSColin Finck } else 2009c2c66affSColin Finck if((Vcb->VolumeLockFileObject != IrpSp->FileObject)) { 2010c2c66affSColin Finck 2011c2c66affSColin Finck RC = STATUS_INVALID_PARAMETER; 2012c2c66affSColin Finck 2013c2c66affSColin Finck } else { 2014c2c66affSColin Finck 2015c2c66affSColin Finck Vcb->Vpb->RealDevice->Flags |= DO_VERIFY_VOLUME; 2016c2c66affSColin Finck Buf = (PPREVENT_MEDIA_REMOVAL_USER_IN)MyAllocatePool__(NonPagedPool, sizeof(PREVENT_MEDIA_REMOVAL_USER_IN)); 2017c2c66affSColin Finck if(!Buf) try_return(RC = STATUS_INSUFFICIENT_RESOURCES); 2018c2c66affSColin Finck UDFDoDismountSequence(Vcb, Buf, FALSE); 2019c2c66affSColin Finck Vcb->VCBFlags &= ~UDF_VCB_FLAGS_VOLUME_MOUNTED; 2020c2c66affSColin Finck Vcb->WriteSecurity = FALSE; 2021c2c66affSColin Finck // disable Eject Request Waiter if any 2022c2c66affSColin Finck UDFReleaseResource( &(Vcb->VCBResource) ); 2023c2c66affSColin Finck VcbAcquired = FALSE; 2024c2c66affSColin Finck 2025c2c66affSColin Finck UDFStopEjectWaiter(Vcb); 2026c2c66affSColin Finck RC = STATUS_SUCCESS; 2027c2c66affSColin Finck } 2028c2c66affSColin Finck try_exit: NOTHING; 2029c2c66affSColin Finck } _SEH2_FINALLY { 2030c2c66affSColin Finck // Free memory 2031c2c66affSColin Finck if(Buf) MyFreePool__(Buf); 2032c2c66affSColin Finck // Release all of our resources 2033c2c66affSColin Finck if(VcbAcquired) 2034c2c66affSColin Finck UDFReleaseResource( &(Vcb->VCBResource) ); 2035c2c66affSColin Finck } _SEH2_END; 2036c2c66affSColin Finck 2037c2c66affSColin Finck if(!NT_SUCCESS(RC)) { 2038c2c66affSColin Finck UDFNotifyVolumeEvent(IrpSp->FileObject, FSRTL_VOLUME_DISMOUNT_FAILED); 2039c2c66affSColin Finck } 2040c2c66affSColin Finck 2041c2c66affSColin Finck // Complete the request if there haven't been any exceptions. 2042c2c66affSColin Finck Irp->IoStatus.Information = 0; 2043c2c66affSColin Finck Irp->IoStatus.Status = RC; 2044c2c66affSColin Finck return RC; 2045c2c66affSColin Finck } // end UDFDismountVolume() 2046c2c66affSColin Finck 2047c2c66affSColin Finck /* 2048c2c66affSColin Finck 2049c2c66affSColin Finck This routine returns the volume allocation bitmap. 2050c2c66affSColin Finck 2051c2c66affSColin Finck Input = the STARTING_LCN_INPUT_BUFFER data structure is passed in 2052c2c66affSColin Finck through the input buffer. 2053c2c66affSColin Finck Output = the VOLUME_BITMAP_BUFFER data structure is returned through 2054c2c66affSColin Finck the output buffer. 2055c2c66affSColin Finck 2056c2c66affSColin Finck We return as much as the user buffer allows starting the specified input 2057c2c66affSColin Finck LCN (trucated to a byte). If there is no input buffer, we start at zero. 2058c2c66affSColin Finck 2059c2c66affSColin Finck Arguments: 2060c2c66affSColin Finck 2061c2c66affSColin Finck Irp - Supplies the Irp being processed. 2062c2c66affSColin Finck 2063c2c66affSColin Finck Return Value: 2064c2c66affSColin Finck 2065c2c66affSColin Finck NTSTATUS - The return status for the operation. 2066c2c66affSColin Finck 2067c2c66affSColin Finck */ 2068c2c66affSColin Finck NTSTATUS 2069c2c66affSColin Finck UDFGetVolumeBitmap( 2070c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 2071c2c66affSColin Finck IN PIRP Irp 2072c2c66affSColin Finck ) 2073c2c66affSColin Finck { 2074c2c66affSColin Finck // NTSTATUS RC; 2075c2c66affSColin Finck 2076c2c66affSColin Finck PEXTENDED_IO_STACK_LOCATION IrpSp = 2077c2c66affSColin Finck (PEXTENDED_IO_STACK_LOCATION)IoGetCurrentIrpStackLocation( Irp ); 2078c2c66affSColin Finck 2079c2c66affSColin Finck PVCB Vcb; 2080c2c66affSColin Finck PtrUDFFCB Fcb; 2081c2c66affSColin Finck PtrUDFCCB Ccb; 2082c2c66affSColin Finck 2083c2c66affSColin Finck UDFPrint(("UDFGetVolumeBitmap\n")); 2084c2c66affSColin Finck 2085c2c66affSColin Finck ULONG BytesToCopy; 2086c2c66affSColin Finck ULONG TotalClusters; 2087c2c66affSColin Finck ULONG DesiredClusters; 2088c2c66affSColin Finck ULONG StartingCluster; 2089c2c66affSColin Finck ULONG InputBufferLength; 2090c2c66affSColin Finck ULONG OutputBufferLength; 2091c2c66affSColin Finck LARGE_INTEGER StartingLcn; 2092c2c66affSColin Finck PVOLUME_BITMAP_BUFFER OutputBuffer; 2093c2c66affSColin Finck ULONG i, lim; 2094c2c66affSColin Finck PULONG FSBM; 2095c2c66affSColin Finck // PULONG Dest; 2096c2c66affSColin Finck ULONG LSh; 2097c2c66affSColin Finck 2098c2c66affSColin Finck // Decode the file object, the only type of opens we accept are 2099c2c66affSColin Finck // user volume opens. 2100c2c66affSColin Finck Ccb = (PtrUDFCCB)(IrpSp->FileObject->FsContext2); 2101c2c66affSColin Finck if(!Ccb) { 2102c2c66affSColin Finck UDFPrintErr((" !Ccb\n")); 2103c2c66affSColin Finck Irp->IoStatus.Information = 0; 2104c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 2105c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 2106c2c66affSColin Finck } 2107c2c66affSColin Finck Fcb = Ccb->Fcb; 2108c2c66affSColin Finck Vcb = Fcb->Vcb; 2109c2c66affSColin Finck 2110c2c66affSColin Finck InputBufferLength = IrpSp->Parameters.FileSystemControl.InputBufferLength; 2111c2c66affSColin Finck OutputBufferLength = IrpSp->Parameters.FileSystemControl.OutputBufferLength; 2112c2c66affSColin Finck 2113c2c66affSColin Finck OutputBuffer = (PVOLUME_BITMAP_BUFFER)UDFGetCallersBuffer(IrpContext, Irp); 2114c2c66affSColin Finck if(!OutputBuffer) 2115c2c66affSColin Finck return STATUS_INVALID_USER_BUFFER; 2116c2c66affSColin Finck 2117c2c66affSColin Finck // Check for a minimum length on the input and output buffers. 2118c2c66affSColin Finck if ((InputBufferLength < sizeof(STARTING_LCN_INPUT_BUFFER)) || 2119c2c66affSColin Finck (OutputBufferLength < sizeof(VOLUME_BITMAP_BUFFER))) { 2120c2c66affSColin Finck 2121c2c66affSColin Finck UDFUnlockCallersBuffer(IrpContext, Irp, OutputBuffer); 2122c2c66affSColin Finck Irp->IoStatus.Information = 0; 2123c2c66affSColin Finck Irp->IoStatus.Status = STATUS_BUFFER_TOO_SMALL; 2124c2c66affSColin Finck return STATUS_BUFFER_TOO_SMALL; 2125c2c66affSColin Finck } 2126c2c66affSColin Finck 2127c2c66affSColin Finck // Check if a starting cluster was specified. 2128c2c66affSColin Finck TotalClusters = Vcb->FSBM_BitCount; 2129c2c66affSColin Finck StartingLcn = ((PSTARTING_LCN_INPUT_BUFFER)IrpSp->Parameters.FileSystemControl.Type3InputBuffer)->StartingLcn; 2130c2c66affSColin Finck 2131c2c66affSColin Finck if (StartingLcn.HighPart || StartingLcn.LowPart >= TotalClusters) { 2132c2c66affSColin Finck 2133c2c66affSColin Finck UDFUnlockCallersBuffer(IrpContext, Irp, OutputBuffer); 2134c2c66affSColin Finck Irp->IoStatus.Information = 0; 2135c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 2136c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 2137c2c66affSColin Finck 2138c2c66affSColin Finck } else { 2139c2c66affSColin Finck 2140c2c66affSColin Finck StartingCluster = StartingLcn.LowPart & ~7; 2141c2c66affSColin Finck } 2142c2c66affSColin Finck 2143c2c66affSColin Finck OutputBufferLength -= FIELD_OFFSET(VOLUME_BITMAP_BUFFER, Buffer); 2144c2c66affSColin Finck DesiredClusters = TotalClusters - StartingCluster; 2145c2c66affSColin Finck 2146c2c66affSColin Finck if (OutputBufferLength < (DesiredClusters + 7) / 8) { 2147c2c66affSColin Finck 2148c2c66affSColin Finck BytesToCopy = OutputBufferLength; 2149c2c66affSColin Finck // RC = STATUS_BUFFER_OVERFLOW; 2150c2c66affSColin Finck 2151c2c66affSColin Finck } else { 2152c2c66affSColin Finck 2153c2c66affSColin Finck BytesToCopy = (DesiredClusters + 7) / 8; 2154c2c66affSColin Finck // RC = STATUS_SUCCESS; 2155c2c66affSColin Finck } 2156c2c66affSColin Finck 2157c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->VCBResource), TRUE ); 2158c2c66affSColin Finck 2159c2c66affSColin Finck _SEH2_TRY { 2160c2c66affSColin Finck 2161c2c66affSColin Finck // Fill in the fixed part of the output buffer 2162c2c66affSColin Finck OutputBuffer->StartingLcn.QuadPart = StartingCluster; 2163c2c66affSColin Finck OutputBuffer->BitmapSize.QuadPart = DesiredClusters; 2164c2c66affSColin Finck 2165c2c66affSColin Finck RtlZeroMemory( &OutputBuffer->Buffer[0], BytesToCopy ); 2166c2c66affSColin Finck lim = BytesToCopy * 8; 2167c2c66affSColin Finck FSBM = (PULONG)(Vcb->FSBM_Bitmap); 2168c2c66affSColin Finck LSh = Vcb->LB2B_Bits; 2169c2c66affSColin Finck // Dest = (PULONG)(&OutputBuffer->Buffer[0]); 2170c2c66affSColin Finck 2171c2c66affSColin Finck for(i=StartingCluster & ~7; i<lim; i++) { 2172c2c66affSColin Finck if(UDFGetFreeBit(FSBM, i<<LSh)) 2173c2c66affSColin Finck UDFSetFreeBit(FSBM, i); 2174c2c66affSColin Finck } 2175c2c66affSColin Finck 2176c2c66affSColin Finck } _SEH2_EXCEPT(UDFExceptionFilter(IrpContext, _SEH2_GetExceptionInformation())) { 2177c2c66affSColin Finck 2178c2c66affSColin Finck BrutePoint(); 2179c2c66affSColin Finck UDFPrintErr(("UDFGetVolumeBitmap: Exception\n")); 2180c2c66affSColin Finck // UDFUnlockCallersBuffer(IrpContext, Irp, OutputBuffer); 2181c2c66affSColin Finck BrutePoint(); 2182c2c66affSColin Finck // RC = UDFExceptionHandler(IrpContext, Irp); 2183c2c66affSColin Finck UDFReleaseResource(&(Vcb->VCBResource)); 2184c2c66affSColin Finck UDFUnlockCallersBuffer(IrpContext, Irp, OutputBuffer); 2185c2c66affSColin Finck 2186c2c66affSColin Finck Irp->IoStatus.Information = 0; 2187c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_USER_BUFFER; 2188c2c66affSColin Finck return STATUS_INVALID_USER_BUFFER; 2189c2c66affSColin Finck } _SEH2_END; 2190c2c66affSColin Finck 2191c2c66affSColin Finck UDFReleaseResource(&(Vcb->VCBResource)); 2192c2c66affSColin Finck 2193c2c66affSColin Finck UDFUnlockCallersBuffer(IrpContext, Irp, OutputBuffer); 2194c2c66affSColin Finck Irp->IoStatus.Information = FIELD_OFFSET(VOLUME_BITMAP_BUFFER, Buffer) + 2195c2c66affSColin Finck BytesToCopy; 2196c2c66affSColin Finck Irp->IoStatus.Status = STATUS_SUCCESS; 2197c2c66affSColin Finck 2198c2c66affSColin Finck return STATUS_SUCCESS; 2199c2c66affSColin Finck 2200c2c66affSColin Finck 2201c2c66affSColin Finck } // end UDFGetVolumeBitmap() 2202c2c66affSColin Finck 2203c2c66affSColin Finck 2204c2c66affSColin Finck NTSTATUS 2205c2c66affSColin Finck UDFGetRetrievalPointers( 2206c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 2207c2c66affSColin Finck IN PIRP Irp, 2208c2c66affSColin Finck IN ULONG Special 2209c2c66affSColin Finck ) 2210c2c66affSColin Finck { 2211c2c66affSColin Finck NTSTATUS RC; 2212c2c66affSColin Finck 2213c2c66affSColin Finck PEXTENDED_IO_STACK_LOCATION IrpSp = 2214c2c66affSColin Finck (PEXTENDED_IO_STACK_LOCATION)IoGetCurrentIrpStackLocation( Irp ); 2215c2c66affSColin Finck 2216c2c66affSColin Finck PVCB Vcb; 2217c2c66affSColin Finck PtrUDFFCB Fcb; 2218c2c66affSColin Finck PtrUDFCCB Ccb; 2219c2c66affSColin Finck PUDF_FILE_INFO FileInfo; 2220c2c66affSColin Finck 2221c2c66affSColin Finck ULONG InputBufferLength; 2222c2c66affSColin Finck ULONG OutputBufferLength; 2223c2c66affSColin Finck 2224c2c66affSColin Finck PRETRIEVAL_POINTERS_BUFFER OutputBuffer; 2225c2c66affSColin Finck PSTARTING_VCN_INPUT_BUFFER InputBuffer; 2226c2c66affSColin Finck 2227c2c66affSColin Finck LARGE_INTEGER StartingVcn; 2228c2c66affSColin Finck int64 AllocationSize; 2229c2c66affSColin Finck 2230c2c66affSColin Finck PEXTENT_MAP SubMapping = NULL; 2231c2c66affSColin Finck ULONG SubExtInfoSz; 2232c2c66affSColin Finck ULONG i; 2233c2c66affSColin Finck ULONG LBS; 2234c2c66affSColin Finck ULONG LBSh; 2235c2c66affSColin Finck ULONG L2BSh; 2236c2c66affSColin Finck 2237c2c66affSColin Finck UDFPrint(("UDFGetRetrievalPointers\n")); 2238c2c66affSColin Finck 2239c2c66affSColin Finck // Decode the file object, the only type of opens we accept are 2240c2c66affSColin Finck // user volume opens. 2241c2c66affSColin Finck Ccb = (PtrUDFCCB)(IrpSp->FileObject->FsContext2); 2242c2c66affSColin Finck if(!Ccb) { 2243c2c66affSColin Finck UDFPrintErr((" !Ccb\n")); 2244c2c66affSColin Finck Irp->IoStatus.Information = 0; 2245c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 2246c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 2247c2c66affSColin Finck } 2248c2c66affSColin Finck Fcb = Ccb->Fcb; 2249c2c66affSColin Finck Vcb = Fcb->Vcb; 2250c2c66affSColin Finck 2251c2c66affSColin Finck // Get the input and output buffer lengths and pointers. 2252c2c66affSColin Finck // Initialize some variables. 2253c2c66affSColin Finck InputBufferLength = IrpSp->Parameters.FileSystemControl.InputBufferLength; 2254c2c66affSColin Finck OutputBufferLength = IrpSp->Parameters.FileSystemControl.OutputBufferLength; 2255c2c66affSColin Finck 2256c2c66affSColin Finck //OutputBuffer = (PRETRIEVAL_POINTERS_BUFFER)UDFGetCallersBuffer( IrpContext, Irp ); 2257c2c66affSColin Finck if(Special) { 2258c2c66affSColin Finck OutputBuffer = (PRETRIEVAL_POINTERS_BUFFER)Irp->AssociatedIrp.SystemBuffer; 2259c2c66affSColin Finck } else { 2260c2c66affSColin Finck OutputBuffer = (PRETRIEVAL_POINTERS_BUFFER)Irp->UserBuffer; 2261c2c66affSColin Finck } 2262c2c66affSColin Finck InputBuffer = (PSTARTING_VCN_INPUT_BUFFER)IrpSp->Parameters.FileSystemControl.Type3InputBuffer; 2263c2c66affSColin Finck if(!InputBuffer) { 2264c2c66affSColin Finck InputBuffer = (PSTARTING_VCN_INPUT_BUFFER)OutputBuffer; 2265c2c66affSColin Finck } 2266c2c66affSColin Finck 2267c2c66affSColin Finck _SEH2_TRY { 2268c2c66affSColin Finck 2269c2c66affSColin Finck Irp->IoStatus.Information = 0; 2270c2c66affSColin Finck // Check for a minimum length on the input and ouput buffers. 2271c2c66affSColin Finck if ((InputBufferLength < sizeof(STARTING_VCN_INPUT_BUFFER)) || 2272c2c66affSColin Finck (OutputBufferLength < sizeof(RETRIEVAL_POINTERS_BUFFER))) { 2273c2c66affSColin Finck 2274c2c66affSColin Finck try_return( RC = STATUS_BUFFER_TOO_SMALL ); 2275c2c66affSColin Finck } 2276c2c66affSColin Finck 2277c2c66affSColin Finck _SEH2_TRY { 2278c2c66affSColin Finck 2279c2c66affSColin Finck if (Irp->RequestorMode != KernelMode) { 2280c2c66affSColin Finck ProbeForRead( IrpSp->Parameters.FileSystemControl.Type3InputBuffer, 2281c2c66affSColin Finck InputBufferLength, 2282c2c66affSColin Finck sizeof(UCHAR) ); 2283c2c66affSColin Finck ProbeForWrite( OutputBuffer, OutputBufferLength, sizeof(UCHAR) ); 2284c2c66affSColin Finck } 2285c2c66affSColin Finck StartingVcn = InputBuffer->StartingVcn; 2286c2c66affSColin Finck 2287c2c66affSColin Finck } _SEH2_EXCEPT(Irp->RequestorMode != KernelMode ? EXCEPTION_EXECUTE_HANDLER: EXCEPTION_CONTINUE_SEARCH) { 2288c2c66affSColin Finck 2289c2c66affSColin Finck RC = _SEH2_GetExceptionCode(); 2290c2c66affSColin Finck RC = FsRtlIsNtstatusExpected(RC) ? 2291c2c66affSColin Finck RC : STATUS_INVALID_USER_BUFFER; 2292c2c66affSColin Finck try_return(RC); 2293c2c66affSColin Finck } _SEH2_END; 2294c2c66affSColin Finck 2295c2c66affSColin Finck switch(Special) { 2296c2c66affSColin Finck case 0: 2297c2c66affSColin Finck FileInfo = Fcb->FileInfo; 2298c2c66affSColin Finck break; 2299c2c66affSColin Finck case 1: 2300c2c66affSColin Finck FileInfo = Vcb->NonAllocFileInfo; 2301c2c66affSColin Finck break; 2302c2c66affSColin Finck default: 2303c2c66affSColin Finck try_return( RC = STATUS_INVALID_PARAMETER ); 2304c2c66affSColin Finck } 2305c2c66affSColin Finck 2306c2c66affSColin Finck if(!FileInfo) { 2307c2c66affSColin Finck try_return( RC = STATUS_OBJECT_NAME_NOT_FOUND ); 2308c2c66affSColin Finck } 2309c2c66affSColin Finck 2310c2c66affSColin Finck AllocationSize = UDFGetFileAllocationSize(Vcb, FileInfo); 2311c2c66affSColin Finck 2312c2c66affSColin Finck LBS = Vcb->LBlockSize; 2313c2c66affSColin Finck LBSh = Vcb->LBlockSizeBits; 2314c2c66affSColin Finck L2BSh = Vcb->LB2B_Bits; 2315c2c66affSColin Finck 2316c2c66affSColin Finck if (StartingVcn.HighPart || 2317c2c66affSColin Finck StartingVcn.LowPart >= (ULONG)(AllocationSize >> LBSh)) { 2318c2c66affSColin Finck 2319c2c66affSColin Finck try_return( RC = STATUS_END_OF_FILE ); 2320c2c66affSColin Finck } 2321c2c66affSColin Finck 2322c2c66affSColin Finck SubExtInfoSz = (OutputBufferLength - FIELD_OFFSET(RETRIEVAL_POINTERS_BUFFER, Extents[0])) / (sizeof(LARGE_INTEGER)*2); 2323c2c66affSColin Finck // re-use AllocationSize as NextVcn 2324c2c66affSColin Finck RC = UDFReadFileLocation__(Vcb, FileInfo, StartingVcn.QuadPart << LBSh, 2325c2c66affSColin Finck &SubMapping, &SubExtInfoSz, &AllocationSize); 2326c2c66affSColin Finck if(!NT_SUCCESS(RC)) 2327c2c66affSColin Finck try_return(RC); 2328c2c66affSColin Finck 2329c2c66affSColin Finck OutputBuffer->ExtentCount = SubExtInfoSz; 2330c2c66affSColin Finck OutputBuffer->StartingVcn = StartingVcn; 2331c2c66affSColin Finck for(i=0; i<SubExtInfoSz; i++) { 2332c2c66affSColin Finck // assume, that 2333c2c66affSColin Finck // for not-allocated extents we have start Lba = -1 2334c2c66affSColin Finck // for not-recorded extents start Lba.LowPart contains real Lba, Lba.HighPart = 0x80000000 2335c2c66affSColin Finck // for recorded extents Lba.LowPart contains real Lba, Lba.HighPart = 0 2336c2c66affSColin Finck if(SubMapping[i].extLocation == LBA_NOT_ALLOCATED) { 2337c2c66affSColin Finck OutputBuffer->Extents[i].Lcn.QuadPart = (int64)(-1); 2338c2c66affSColin Finck } else 2339c2c66affSColin Finck if(SubMapping[i].extLocation & 0x80000000) { 2340c2c66affSColin Finck OutputBuffer->Extents[i].Lcn.LowPart = (SubMapping[i].extLocation & 0x7fffffff) >> L2BSh; 2341c2c66affSColin Finck OutputBuffer->Extents[i].Lcn.HighPart = 0x80000000; 2342c2c66affSColin Finck } else { 2343c2c66affSColin Finck OutputBuffer->Extents[i].Lcn.LowPart = SubMapping[i].extLocation >> L2BSh; 2344c2c66affSColin Finck OutputBuffer->Extents[i].Lcn.HighPart = 0; 2345c2c66affSColin Finck } 2346c2c66affSColin Finck // alignment for last sector 2347c2c66affSColin Finck SubMapping[i].extLength += LBS-1; 2348c2c66affSColin Finck StartingVcn.QuadPart += SubMapping[i].extLength >> LBSh; 2349c2c66affSColin Finck OutputBuffer->Extents[i].NextVcn = StartingVcn; 2350c2c66affSColin Finck } 2351c2c66affSColin Finck 2352c2c66affSColin Finck Irp->IoStatus.Information = FIELD_OFFSET(RETRIEVAL_POINTERS_BUFFER, Extents[0]) + i * sizeof(LARGE_INTEGER) * 2; 2353c2c66affSColin Finck 2354c2c66affSColin Finck try_exit: NOTHING; 2355c2c66affSColin Finck } _SEH2_FINALLY { 2356c2c66affSColin Finck 2357c2c66affSColin Finck if(SubMapping) 2358c2c66affSColin Finck MyFreePool__(SubMapping); 2359c2c66affSColin Finck Irp->IoStatus.Status = RC; 2360c2c66affSColin Finck } _SEH2_END; 2361c2c66affSColin Finck 2362c2c66affSColin Finck return RC; 2363c2c66affSColin Finck } // end UDFGetRetrievalPointers() 2364c2c66affSColin Finck 2365c2c66affSColin Finck 2366c2c66affSColin Finck NTSTATUS 2367c2c66affSColin Finck UDFIsVolumeDirty( 2368c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 2369c2c66affSColin Finck IN PIRP Irp 2370c2c66affSColin Finck ) 2371c2c66affSColin Finck { 2372c2c66affSColin Finck PULONG VolumeState; 2373c2c66affSColin Finck PEXTENDED_IO_STACK_LOCATION IrpSp = 2374c2c66affSColin Finck (PEXTENDED_IO_STACK_LOCATION)IoGetCurrentIrpStackLocation( Irp ); 2375c2c66affSColin Finck 2376c2c66affSColin Finck PVCB Vcb; 2377c2c66affSColin Finck PtrUDFFCB Fcb; 2378c2c66affSColin Finck PtrUDFCCB Ccb; 2379c2c66affSColin Finck 2380c2c66affSColin Finck UDFPrint(("UDFIsVolumeDirty\n")); 2381c2c66affSColin Finck 2382c2c66affSColin Finck Irp->IoStatus.Information = 0; 2383c2c66affSColin Finck 2384c2c66affSColin Finck if (Irp->AssociatedIrp.SystemBuffer != NULL) { 2385c2c66affSColin Finck VolumeState = (PULONG)(Irp->AssociatedIrp.SystemBuffer); 2386c2c66affSColin Finck } else if (Irp->MdlAddress != NULL) { 2387c2c66affSColin Finck VolumeState = (PULONG)MmGetSystemAddressForMdl(Irp->MdlAddress); 2388c2c66affSColin Finck } else { 2389c2c66affSColin Finck UDFPrintErr((" STATUS_INVALID_USER_BUFFER\n")); 2390c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_USER_BUFFER; 2391c2c66affSColin Finck return STATUS_INVALID_USER_BUFFER; 2392c2c66affSColin Finck } 2393c2c66affSColin Finck 2394c2c66affSColin Finck if (IrpSp->Parameters.FileSystemControl.OutputBufferLength < sizeof(ULONG)) { 2395c2c66affSColin Finck UDFPrintErr((" STATUS_BUFFER_TOO_SMALL\n")); 2396c2c66affSColin Finck Irp->IoStatus.Status = STATUS_BUFFER_TOO_SMALL; 2397c2c66affSColin Finck return STATUS_BUFFER_TOO_SMALL; 2398c2c66affSColin Finck } 2399c2c66affSColin Finck 2400c2c66affSColin Finck (*VolumeState) = 0; 2401c2c66affSColin Finck 2402c2c66affSColin Finck // Decode the file object, the only type of opens we accept are 2403c2c66affSColin Finck // user volume opens. 2404c2c66affSColin Finck Ccb = (PtrUDFCCB)(IrpSp->FileObject->FsContext2); 2405c2c66affSColin Finck if(!Ccb) { 2406c2c66affSColin Finck UDFPrintErr((" !Ccb\n")); 2407c2c66affSColin Finck Irp->IoStatus.Information = 0; 2408c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 2409c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 2410c2c66affSColin Finck } 2411c2c66affSColin Finck Fcb = Ccb->Fcb; 2412c2c66affSColin Finck Vcb = Fcb->Vcb; 2413c2c66affSColin Finck 2414c2c66affSColin Finck if(Vcb != (PVCB)Fcb || !(Ccb->CCBFlags & UDF_CCB_VOLUME_OPEN)) { 2415c2c66affSColin Finck UDFPrintErr((" !Volume\n")); 2416c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 2417c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 2418c2c66affSColin Finck } 2419c2c66affSColin Finck 2420c2c66affSColin Finck if(!(Vcb->VCBFlags & UDF_VCB_FLAGS_VOLUME_MOUNTED)) { 2421c2c66affSColin Finck UDFPrintErr((" !Mounted\n")); 2422c2c66affSColin Finck Irp->IoStatus.Status = STATUS_VOLUME_DISMOUNTED; 2423c2c66affSColin Finck return STATUS_VOLUME_DISMOUNTED; 2424c2c66affSColin Finck } 2425c2c66affSColin Finck 2426c2c66affSColin Finck if(Vcb->origIntegrityType == INTEGRITY_TYPE_OPEN) { 2427c2c66affSColin Finck UDFPrint((" Dirty\n")); 2428c2c66affSColin Finck (*VolumeState) |= VOLUME_IS_DIRTY; 2429c2c66affSColin Finck Irp->IoStatus.Information = sizeof(ULONG); 2430c2c66affSColin Finck } else { 2431c2c66affSColin Finck UDFPrint((" Clean\n")); 2432c2c66affSColin Finck } 2433c2c66affSColin Finck Irp->IoStatus.Status = STATUS_SUCCESS; 2434c2c66affSColin Finck 2435c2c66affSColin Finck return STATUS_SUCCESS; 2436c2c66affSColin Finck 2437c2c66affSColin Finck } // end UDFIsVolumeDirty() 2438c2c66affSColin Finck 2439c2c66affSColin Finck 2440c2c66affSColin Finck NTSTATUS 2441c2c66affSColin Finck UDFInvalidateVolumes( 2442c2c66affSColin Finck IN PtrUDFIrpContext IrpContext, 2443c2c66affSColin Finck IN PIRP Irp 2444c2c66affSColin Finck ) 2445c2c66affSColin Finck { 2446c2c66affSColin Finck NTSTATUS RC; 2447c2c66affSColin Finck PEXTENDED_IO_STACK_LOCATION IrpSp = 2448c2c66affSColin Finck (PEXTENDED_IO_STACK_LOCATION)IoGetCurrentIrpStackLocation( Irp ); 2449c2c66affSColin Finck PPREVENT_MEDIA_REMOVAL_USER_IN Buf = NULL; 2450c2c66affSColin Finck 2451c2c66affSColin Finck UDFPrint(("UDFInvalidateVolumes\n")); 2452c2c66affSColin Finck 2453c2c66affSColin Finck KIRQL SavedIrql; 2454c2c66affSColin Finck 2455c2c66affSColin Finck LUID TcbPrivilege = {SE_TCB_PRIVILEGE, 0}; 2456c2c66affSColin Finck 2457c2c66affSColin Finck HANDLE Handle; 2458c2c66affSColin Finck 2459c2c66affSColin Finck PVPB NewVpb; 2460c2c66affSColin Finck PVCB Vcb; 2461c2c66affSColin Finck 2462c2c66affSColin Finck PLIST_ENTRY Link; 2463c2c66affSColin Finck 2464c2c66affSColin Finck PFILE_OBJECT FileToMarkBad; 2465c2c66affSColin Finck PDEVICE_OBJECT DeviceToMarkBad; 2466c2c66affSColin Finck 2467c2c66affSColin Finck Irp->IoStatus.Information = 0; 2468c2c66affSColin Finck 2469c2c66affSColin Finck // Check for the correct security access. 2470c2c66affSColin Finck // The caller must have the SeTcbPrivilege. 2471c2c66affSColin Finck if (IrpSp->MajorFunction == IRP_MJ_FILE_SYSTEM_CONTROL && 2472c2c66affSColin Finck IrpSp->MinorFunction == IRP_MN_USER_FS_REQUEST && 2473c2c66affSColin Finck IrpSp->Parameters.FileSystemControl.FsControlCode == FSCTL_INVALIDATE_VOLUMES && 2474c2c66affSColin Finck !SeSinglePrivilegeCheck( TcbPrivilege, UserMode )) { 2475c2c66affSColin Finck UDFPrintErr(("UDFInvalidateVolumes: STATUS_PRIVILEGE_NOT_HELD\n")); 2476c2c66affSColin Finck Irp->IoStatus.Status = STATUS_PRIVILEGE_NOT_HELD; 2477c2c66affSColin Finck return STATUS_PRIVILEGE_NOT_HELD; 2478c2c66affSColin Finck } 2479c2c66affSColin Finck // Try to get a pointer to the device object from the handle passed in. 2480c2c66affSColin Finck if (IrpSp->Parameters.FileSystemControl.InputBufferLength != sizeof( HANDLE )) { 2481c2c66affSColin Finck UDFPrintErr(("UDFInvalidateVolumes: STATUS_INVALID_PARAMETER\n")); 2482c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INVALID_PARAMETER; 2483c2c66affSColin Finck return STATUS_INVALID_PARAMETER; 2484c2c66affSColin Finck } 2485c2c66affSColin Finck 2486c2c66affSColin Finck Handle = *((PHANDLE) Irp->AssociatedIrp.SystemBuffer); 2487c2c66affSColin Finck 2488c2c66affSColin Finck RC = ObReferenceObjectByHandle( Handle, 2489c2c66affSColin Finck 0, 2490c2c66affSColin Finck *IoFileObjectType, 2491c2c66affSColin Finck KernelMode, 2492c2c66affSColin Finck (PVOID*)&FileToMarkBad, 2493c2c66affSColin Finck NULL ); 2494c2c66affSColin Finck 2495c2c66affSColin Finck if (!NT_SUCCESS(RC)) { 2496c2c66affSColin Finck UDFPrintErr(("UDFInvalidateVolumes: can't get handle, RC=%x\n", RC)); 2497c2c66affSColin Finck Irp->IoStatus.Status = RC; 2498c2c66affSColin Finck return RC; 2499c2c66affSColin Finck } 2500c2c66affSColin Finck 2501c2c66affSColin Finck // We only needed the pointer, not a reference. 2502c2c66affSColin Finck ObDereferenceObject( FileToMarkBad ); 2503c2c66affSColin Finck 2504c2c66affSColin Finck // Grab the DeviceObject from the FileObject. 2505c2c66affSColin Finck DeviceToMarkBad = FileToMarkBad->DeviceObject; 2506c2c66affSColin Finck 2507c2c66affSColin Finck // Create a new Vpb for this device so that any new opens will mount 2508c2c66affSColin Finck // a new volume. 2509c2c66affSColin Finck NewVpb = (PVPB)DbgAllocatePoolWithTag( NonPagedPool, sizeof( VPB ), 'bpvU' ); 2510c2c66affSColin Finck if(!NewVpb) { 2511c2c66affSColin Finck UDFPrintErr(("UDFInvalidateVolumes: STATUS_INSUFFICIENT_RESOURCES\n")); 2512c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INSUFFICIENT_RESOURCES; 2513c2c66affSColin Finck return STATUS_INSUFFICIENT_RESOURCES; 2514c2c66affSColin Finck } 2515c2c66affSColin Finck RtlZeroMemory( NewVpb, sizeof( VPB ) ); 2516c2c66affSColin Finck 2517c2c66affSColin Finck NewVpb->Type = IO_TYPE_VPB; 2518c2c66affSColin Finck NewVpb->Size = sizeof( VPB ); 2519c2c66affSColin Finck NewVpb->RealDevice = DeviceToMarkBad; 2520c2c66affSColin Finck NewVpb->Flags = DeviceToMarkBad->Vpb->Flags & VPB_REMOVE_PENDING; 2521c2c66affSColin Finck 2522c2c66affSColin Finck // Acquire GlobalDataResource 2523c2c66affSColin Finck UDFAcquireResourceExclusive(&(UDFGlobalData.GlobalDataResource), TRUE); 2524c2c66affSColin Finck 2525c2c66affSColin Finck // Nothing can go wrong now. 2526c2c66affSColin Finck IoAcquireVpbSpinLock( &SavedIrql ); 2527c2c66affSColin Finck if (DeviceToMarkBad->Vpb->Flags & VPB_MOUNTED) { 2528c2c66affSColin Finck DeviceToMarkBad->Vpb = NewVpb; 2529c2c66affSColin Finck NewVpb = NULL; 2530c2c66affSColin Finck } 2531c2c66affSColin Finck ASSERT( DeviceToMarkBad->Vpb->DeviceObject == NULL ); 2532c2c66affSColin Finck IoReleaseVpbSpinLock( SavedIrql ); 2533c2c66affSColin Finck 2534c2c66affSColin Finck if (NewVpb) { 2535c2c66affSColin Finck DbgFreePool( NewVpb ); 2536c2c66affSColin Finck } 2537c2c66affSColin Finck 2538c2c66affSColin Finck // Walk through all of the Vcb's attached to the global data. 2539c2c66affSColin Finck Link = UDFGlobalData.VCBQueue.Flink; 2540c2c66affSColin Finck 2541c2c66affSColin Finck //ASSERT(FALSE); 2542c2c66affSColin Finck 2543c2c66affSColin Finck while (Link != &(UDFGlobalData.VCBQueue)) { 2544c2c66affSColin Finck // Get 'next' Vcb 2545c2c66affSColin Finck Vcb = CONTAINING_RECORD( Link, VCB, NextVCB ); 2546c2c66affSColin Finck // Move to the next link now since the current Vcb may be deleted. 2547c2c66affSColin Finck Link = Link->Flink; 2548c2c66affSColin Finck 2549c2c66affSColin Finck // Acquire Vcb resource 2550c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->VCBResource), TRUE); 2551c2c66affSColin Finck 2552c2c66affSColin Finck if (Vcb->Vpb->RealDevice == DeviceToMarkBad) { 2553c2c66affSColin Finck 2554c2c66affSColin Finck if(!Buf) { 2555c2c66affSColin Finck Buf = (PPREVENT_MEDIA_REMOVAL_USER_IN)MyAllocatePool__(NonPagedPool, sizeof(PREVENT_MEDIA_REMOVAL_USER_IN)*2); 2556c2c66affSColin Finck if(!Buf) { 2557c2c66affSColin Finck UDFPrintErr(("UDFInvalidateVolumes: STATUS_INSUFFICIENT_RESOURCES (2)\n")); 2558c2c66affSColin Finck UDFReleaseResource(&(Vcb->VCBResource)); 2559c2c66affSColin Finck MyFreePool__(NewVpb); 2560c2c66affSColin Finck Irp->IoStatus.Status = STATUS_INSUFFICIENT_RESOURCES; 2561c2c66affSColin Finck return STATUS_INSUFFICIENT_RESOURCES; 2562c2c66affSColin Finck } 2563c2c66affSColin Finck } 2564c2c66affSColin Finck 2565c2c66affSColin Finck #ifdef UDF_DELAYED_CLOSE 2566c2c66affSColin Finck UDFPrint((" UDFInvalidateVolumes: set UDF_VCB_FLAGS_NO_DELAYED_CLOSE\n")); 2567c2c66affSColin Finck Vcb->VCBFlags |= UDF_VCB_FLAGS_NO_DELAYED_CLOSE; 2568c2c66affSColin Finck UDFReleaseResource(&(Vcb->VCBResource)); 2569c2c66affSColin Finck #endif //UDF_DELAYED_CLOSE 2570c2c66affSColin Finck 2571c2c66affSColin Finck if(Vcb->RootDirFCB && Vcb->RootDirFCB->FileInfo) { 2572c2c66affSColin Finck UDFPrint((" UDFInvalidateVolumes: UDFCloseAllSystemDelayedInDir\n")); 2573c2c66affSColin Finck RC = UDFCloseAllSystemDelayedInDir(Vcb, Vcb->RootDirFCB->FileInfo); 2574c2c66affSColin Finck ASSERT(OS_SUCCESS(RC)); 2575c2c66affSColin Finck } 2576c2c66affSColin Finck #ifdef UDF_DELAYED_CLOSE 2577c2c66affSColin Finck UDFPrint((" UDFInvalidateVolumes: UDFCloseAllDelayed\n")); 2578c2c66affSColin Finck UDFCloseAllDelayed(Vcb); 2579c2c66affSColin Finck //ASSERT(OS_SUCCESS(RC)); 2580c2c66affSColin Finck #endif //UDF_DELAYED_CLOSE 2581c2c66affSColin Finck 2582c2c66affSColin Finck UDFAcquireResourceExclusive(&(Vcb->VCBResource), TRUE); 2583c2c66affSColin Finck 2584c2c66affSColin Finck UDFDoDismountSequence(Vcb, Buf, FALSE); 2585c2c66affSColin Finck UDFReleaseResource(&(Vcb->VCBResource)); 2586c2c66affSColin Finck 2587c2c66affSColin Finck UDFStopEjectWaiter(Vcb); 2588c2c66affSColin Finck UDFPrint(("UDFInvalidateVolumes: Vcb %x dismounted\n", Vcb)); 2589c2c66affSColin Finck break; 2590c2c66affSColin Finck } else { 2591c2c66affSColin Finck UDFPrint(("UDFInvalidateVolumes: skip Vcb %x\n", Vcb)); 2592c2c66affSColin Finck UDFReleaseResource(&(Vcb->VCBResource)); 2593c2c66affSColin Finck } 2594c2c66affSColin Finck 2595c2c66affSColin Finck } 2596c2c66affSColin Finck // Once we have processed all the mounted logical volumes, we can release 2597c2c66affSColin Finck // all acquired global resources and leave (in peace :-) 2598c2c66affSColin Finck UDFReleaseResource( &(UDFGlobalData.GlobalDataResource) ); 2599c2c66affSColin Finck 2600c2c66affSColin Finck Irp->IoStatus.Status = STATUS_SUCCESS; 2601c2c66affSColin Finck 2602c2c66affSColin Finck if(Buf) { 2603c2c66affSColin Finck UDFPrint(("UDFInvalidateVolumes: free buffer\n")); 2604c2c66affSColin Finck MyFreePool__(Buf); 2605c2c66affSColin Finck } 2606c2c66affSColin Finck 2607c2c66affSColin Finck // drop volume completly 2608c2c66affSColin Finck UDFPrint(("UDFInvalidateVolumes: drop volume completly\n")); 2609c2c66affSColin Finck UDFAcquireResourceExclusive(&(UDFGlobalData.GlobalDataResource), TRUE); 2610c2c66affSColin Finck UDFScanForDismountedVcb(IrpContext); 2611c2c66affSColin Finck UDFReleaseResource( &(UDFGlobalData.GlobalDataResource) ); 2612c2c66affSColin Finck 2613c2c66affSColin Finck UDFPrint(("UDFInvalidateVolumes: done\n")); 2614c2c66affSColin Finck return STATUS_SUCCESS; 2615c2c66affSColin Finck 2616c2c66affSColin Finck } // end UDFInvalidateVolumes() 2617