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384 lines
15 KiB
C
384 lines
15 KiB
C
/*++
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Copyright (C) Microsoft Corporation. All rights reserved.
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Module Name:
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cdromp.h
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Abstract:
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Private header file for cdrom.sys modules. This contains private
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structure and function declarations as well as constant values which do
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not need to be exported.
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Author:
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Environment:
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kernel mode only
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Notes:
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Revision History:
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--*/
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#ifndef __CDROMP_H__
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#define __CDROMP_H__
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#include <scsi.h>
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#include <storduid.h>
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#include <mountdev.h>
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#include <ioevent.h>
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#include <ntintsafe.h>
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/*
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* IA64 requires 8-byte alignment for pointers, but the IA64 NT kernel expects 16-byte alignment
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*/
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#ifdef _WIN64
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#define PTRALIGN DECLSPEC_ALIGN(16)
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#else
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#define PTRALIGN
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#endif
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// NOTE: Start with a smaller 100 second maximum, due to current assert in CLASSPNP
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// 0x0000 00C9'2A69 C000 (864,000,000,000) is 24 hours in 100ns units
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// 0x0000 0000'3B9A CA00 ( 1,000,000,000) is 100 seconds in 100ns units
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#define MAXIMUM_RETRY_FOR_SINGLE_IO_IN_100NS_UNITS (0x3B9ACA00)
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// structures to simplify matching devices, ids, and hacks required for
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// these ids.
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typedef struct _CDROM_SCAN_FOR_SPECIAL_INFO {
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//
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// * NULL pointers indicates that no match is required.
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// * empty string will only match an empty string. non-existant strings
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// in the device descriptor are considered empty strings for this match.
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// (ie. "" will only match "")
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// * all other strings will do partial matches, based upon
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// string provided (ie. "hi" will match "hitazen" and "higazui")
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// * array must end with all three PCHARs being set to NULL.
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//
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PCHAR VendorId;
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PCHAR ProductId;
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PCHAR ProductRevision;
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//
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// marked as a ULONG_PTR to allow use as either a ptr to a data block
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// or 32 bits worth of flags. (64 bits on 64 bit systems) no longer a
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// const so that it may be dynamically built.
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//
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ULONG_PTR Data;
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} CDROM_SCAN_FOR_SPECIAL_INFO, *PCDROM_SCAN_FOR_SPECIAL_INFO;
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// Define the various states that media can be in for autorun.
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typedef enum _MEDIA_CHANGE_DETECTION_STATE {
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MediaUnknown,
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MediaPresent,
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MediaNotPresent,
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MediaUnavailable // e.g. cd-r media undergoing burn
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} MEDIA_CHANGE_DETECTION_STATE, *PMEDIA_CHANGE_DETECTION_STATE;
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/*++////////////////////////////////////////////////////////////////////////////
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This structure defines the history kept for a given transfer packet.
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It includes a srb status/sense data structure that is always either valid
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or zero-filled for the full 18 bytes, time sent/completed, and how long
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the retry delay was requested to be.
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--*/
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typedef struct _SRB_HISTORY_ITEM {
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LARGE_INTEGER TickCountSent; // 0x00..0x07
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LARGE_INTEGER TickCountCompleted; // 0x08..0x0F
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ULONG MillisecondsDelayOnRetry; // 0x10..0x13
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SENSE_DATA NormalizedSenseData; // 0x14..0x25 (0x12 bytes)
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UCHAR SrbStatus; // 0x26
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UCHAR ClassDriverUse; // 0x27 -- one byte free (alignment)
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} SRB_HISTORY_ITEM, *PSRB_HISTORY_ITEM;
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typedef struct _SRB_HISTORY {
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ULONG_PTR ClassDriverUse[4]; // for the class driver to use as they please
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_Field_range_(1,30000)
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ULONG TotalHistoryCount;
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_Field_range_(0,TotalHistoryCount)
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ULONG UsedHistoryCount;
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_Field_size_part_(TotalHistoryCount, UsedHistoryCount)
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SRB_HISTORY_ITEM History[1];
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} SRB_HISTORY, *PSRB_HISTORY;
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extern CDROM_SCAN_FOR_SPECIAL_INFO CdRomBadItems[];
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/*++////////////////////////////////////////////////////////////////////////////*/
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// legacy registry key and values.
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#define CLASSP_REG_SUBKEY_NAME (L"Classpnp")
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#define CLASSP_REG_HACK_VALUE_NAME (L"HackMask")
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#define CLASSP_REG_MMC_DETECTION_VALUE_NAME (L"MMCDetectionState")
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#define CLASSP_REG_WRITE_CACHE_VALUE_NAME (L"WriteCacheEnableOverride")
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#define CLASSP_REG_PERF_RESTORE_VALUE_NAME (L"RestorePerfAtCount")
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#define CLASSP_REG_REMOVAL_POLICY_VALUE_NAME (L"UserRemovalPolicy")
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#define WINPE_REG_KEY_NAME (L"\\Registry\\Machine\\System\\CurrentControlSet\\Control\\MiniNT")
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#define CLASS_PERF_RESTORE_MINIMUM (0x10)
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#define CLASS_ERROR_LEVEL_1 (0x4)
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#define CLASS_ERROR_LEVEL_2 (0x8)
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#define FDO_HACK_CANNOT_LOCK_MEDIA (0x00000001)
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#define FDO_HACK_GESN_IS_BAD (0x00000002)
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#define FDO_HACK_NO_RESERVE6 (0x00000008)
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#define FDO_HACK_GESN_IGNORE_OPCHANGE (0x00000010)
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#define FDO_HACK_NO_STREAMING (0x00000020)
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#define FDO_HACK_NO_ASYNCHRONOUS_NOTIFICATION (0x00000040)
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#define FDO_HACK_VALID_FLAGS (0x0000007F)
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#define FDO_HACK_INVALID_FLAGS (~FDO_HACK_VALID_FLAGS)
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/*
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* Lots of retries of synchronized SCSI commands that devices may not
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* even support really slows down the system (especially while booting).
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* (Even GetDriveCapacity may be failed on purpose if an external disk is powered off).
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* If a disk cannot return a small initialization buffer at startup
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* in two attempts (with delay interval) then we cannot expect it to return
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* data consistently with four retries.
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* So don't set the retry counts as high here as for data SRBs.
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*
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* If we find that these requests are failing consecutively,
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* despite the retry interval, on otherwise reliable media,
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* then we should either increase the retry interval for
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* that failure or (by all means) increase these retry counts as appropriate.
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*/
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//#define NUM_LOCKMEDIAREMOVAL_RETRIES 1
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//#define NUM_MODESENSE_RETRIES 1
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//#define NUM_DRIVECAPACITY_RETRIES 1
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/*
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* We retry failed I/O requests at 1-second intervals.
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* In the case of a failure due to bus reset, we want to make sure that we retry after the allowable
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* reset time. For SCSI, the allowable reset time is 5 seconds. ScsiPort queues requests during
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* a bus reset, which should cause us to retry after the reset is over; but the requests queued in
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* the miniport are failed all the way back to us immediately. In any event, in order to make
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* extra sure that our retries span the allowable reset time, we should retry more than 5 times.
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*/
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//#define NUM_IO_RETRIES 8
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#define CDROM_VOLUME_VERIFY_CHECKED 0x34
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#define CDROM_TAG_PRIVATE_DATA 'CPcS'
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typedef struct _MEDIA_CHANGE_DETECTION_INFO {
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// Use AN if supported so that we don't need to poll for media change notifications.
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BOOLEAN AsynchronousNotificationSupported;
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// If AN is turned on and we received an AN signal when the device is exclusively locked,
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// we should take a note and send down a GESN when the lock is lifted, since otherwise
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// we will lose the signal. Even worse, some ODD models will signal the event again next
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// time a SYNC CACHE is sent down, and processing the event in that arbitrary timing may
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// cause unexpected behaviors.
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BOOLEAN ANSignalPendingDueToExclusiveLock;
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// Mutex to synchronize enable/disable requests and media state changes
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KMUTEX MediaChangeMutex;
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// For request erialization use.
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// This irp is used in timer callback routine, will be sent to the device itself.
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// so that the sequentail queue will get request wrapped on this irp. After doing
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// the real work, this irp will be completed to indicate it's ok to send the next
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// MCN request.
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PIRP MediaChangeSyncIrp;
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// The last known state of the media (present, not present, unknown).
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// Protected by MediaChangeMutex.
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MEDIA_CHANGE_DETECTION_STATE LastKnownMediaDetectionState;
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// The last state of the media (present, not present, unknown) reported to apps
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// via notifications. Protected by MediaChangeMutex
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MEDIA_CHANGE_DETECTION_STATE LastReportedMediaDetectionState;
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// This is a count of how many time MCD has been disabled. if it is
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// set to zero, then we'll poll the device for MCN events with the
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// then-current method (ie. TEST UNIT READY or GESN). this is
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// protected by MediaChangeMutex
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LONG MediaChangeDetectionDisableCount;
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// recent changes allowed instant retries of the MCN REQUEST. Since this
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// could cause an infinite loop, keep a count of how many times we've
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// retried immediately so that we can catch if the count exceeds an
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// arbitrary limit.
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LONG MediaChangeRetryCount;
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// use GESN if it's available
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struct {
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BOOLEAN Supported;
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BOOLEAN HackEventMask;
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UCHAR EventMask;
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UCHAR NoChangeEventMask;
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PUCHAR Buffer;
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PMDL Mdl;
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ULONG BufferSize;
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} Gesn;
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// If this value is one, then the REQUEST is currently in use.
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// If this value is zero, then the REQUEST is available.
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// Use InterlockedCompareExchange() to set from "available" to "in use".
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// ASSERT that InterlockedCompareExchange() showed previous value of
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// "in use" when changing back to "available" state.
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// This also implicitly protects the MediaChangeSrb and SenseBuffer
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//
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// This protect is needed in the polling case since the timer is fired asynchronous
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// to our sequential I/O queues, and when the timer is fired, our Sync Irp could be
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// still using the MediaChangeRequest. However, if AN is used, then each interrupt
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// will cause us to queue a request, so interrupts are serialized, and within the
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// handling of each request, we already sequentially use the MediaChangeRequest if
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// we need retries. We still use it in case of AN to be consistent with polling, but
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// if in the future we remove polling altogether, then we don't need this field anymore.
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LONG MediaChangeRequestInUse;
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// Pointer to the REQUEST to be used for media change detection.
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// protected by Interlocked MediaChangeRequestInUse
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WDFREQUEST MediaChangeRequest;
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// The srb for the media change detection.
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// protected by Interlocked MediaChangeIrpInUse
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SCSI_REQUEST_BLOCK MediaChangeSrb;
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PUCHAR SenseBuffer;
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ULONG SrbFlags;
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// Handle to the display state notification registration.
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PVOID DisplayStateCallbackHandle;
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} MEDIA_CHANGE_DETECTION_INFO, *PMEDIA_CHANGE_DETECTION_INFO;
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#define DELAY_TIME_TO_ENTER_ZERO_POWER_IN_MS (60 * 1000)
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#define DELAY_TIME_TO_ENTER_AOAC_IDLE_POWER_IN_MS (10 * 1000)
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#define BECOMING_READY_RETRY_COUNT (15)
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#define BECOMING_READY_RETRY_INTERNVAL_IN_100NS (2 * 1000 * 1000)
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typedef struct _ZERO_POWER_ODD_INFO {
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UCHAR LoadingMechanism; // From Removable Medium Feature Descriptor
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UCHAR Load; // From Removable Medium Feature Descriptor
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D3COLD_SUPPORT_INTERFACE D3ColdInterface; // D3Cold interface from ACPI
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BOOLEAN Reserved; // Reserved
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BOOLEAN InZeroPowerState; // Is device currently in Zero Power State
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BOOLEAN RetryFirstCommand; // First command after power resume should be retried
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BOOLEAN MonitorStartStopUnit; // If 1. drawer 2. soft eject 3. no media 4. Immed=0,
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// we will not receive any GESN events, and so we should
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// monitor the command to get notified
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ULONG BecomingReadyRetryCount; // How many times we should retry for becoming ready
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UCHAR SenseKey; // sense code from TUR to check media & tray status
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UCHAR AdditionalSenseCode; // sense code from TUR to check media & tray status
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UCHAR AdditionalSenseCodeQualifier; // sense code from TUR to check media & tray status
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PGET_CONFIGURATION_HEADER GetConfigurationBuffer; // Cached Get Configuration response from device
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ULONG GetConfigurationBufferSize; // Size of the above buffer
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} ZERO_POWER_ODD_INFO, *PZERO_POWER_ODD_INFO;
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typedef enum {
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SimpleMediaLock,
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SecureMediaLock,
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InternalMediaLock
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} MEDIA_LOCK_TYPE, *PMEDIA_LOCK_TYPE;
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typedef enum _CDROM_DETECTION_STATE {
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CdromDetectionUnknown = 0,
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CdromDetectionUnsupported = 1,
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CdromDetectionSupported = 2
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} CDROM_DETECTION_STATE, *PCDROM_DETECTION_STATE;
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typedef struct _CDROM_ERROR_LOG_DATA {
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LARGE_INTEGER TickCount; // Offset 0x00
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ULONG PortNumber; // Offset 0x08
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UCHAR ErrorPaging : 1; // Offset 0x0c
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UCHAR ErrorRetried : 1;
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UCHAR ErrorUnhandled : 1;
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UCHAR ErrorReserved : 5;
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UCHAR Reserved[3];
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SCSI_REQUEST_BLOCK Srb; // Offset 0x10
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// We define the SenseData as the default length.
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// Since the sense data returned by the port driver may be longer,
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// SenseData must be at the end of this structure.
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// For our internal error log, we only log the default length.
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SENSE_DATA SenseData; // Offset 0x50 for x86 (or 0x68 for ia64) (ULONG32 Alignment required!)
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} CDROM_ERROR_LOG_DATA, *PCDROM_ERROR_LOG_DATA;
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#define NUM_ERROR_LOG_ENTRIES 16
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//
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// add to the front of this structure to help prevent illegal
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// snooping by other utilities.
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//
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typedef struct _CDROM_PRIVATE_FDO_DATA {
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// this private structure allows us to
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// dynamically re-enable the perf benefits
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// lost due to transient error conditions.
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// in w2k, a reboot was required. :(
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struct {
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ULONG OriginalSrbFlags;
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ULONG SuccessfulIO;
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ULONG ReEnableThreshhold; // 0 means never
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} Perf;
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ULONG_PTR HackFlags;
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STORAGE_HOTPLUG_INFO HotplugInfo;
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BOOLEAN TimerStarted;
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BOOLEAN LoggedTURFailureSinceLastIO;
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BOOLEAN LoggedSYNCFailure;
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// not use WDFSPINLOCK to avoid exposing private object creation
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// in initialization code. (cdrom.sys was in WDK example)
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KSPIN_LOCK SpinLock;
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// Circular array of timestamped logs of errors that occurred on this device.
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ULONG ErrorLogNextIndex;
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CDROM_ERROR_LOG_DATA ErrorLogs[NUM_ERROR_LOG_ENTRIES];
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}CDROM_PRIVATE_FDO_DATA, *PCDROM_PRIVATE_FDO_DATA;
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//
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// this is a private structure, but must be kept here
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// to properly compile size of FUNCTIONAL_DEVICE_EXTENSION
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//
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typedef struct _FILE_OBJECT_CONTEXT {
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WDFFILEOBJECT FileObject;
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WDFDEVICE DeviceObject;
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ULONG LockCount;
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ULONG McnDisableCount;
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BOOLEAN EnforceStreamingRead;
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BOOLEAN EnforceStreamingWrite;
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} FILE_OBJECT_CONTEXT, *PFILE_OBJECT_CONTEXT;
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WDF_DECLARE_CONTEXT_TYPE_WITH_NAME(FILE_OBJECT_CONTEXT, FileObjectGetContext)
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#define NOT_READY_RETRY_INTERVAL 10
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#define MODE_PAGE_DATA_SIZE 192
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//
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// per session device
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//
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#define INVALID_SESSION ((ULONG)-1)
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#endif // __CDROMP_H__
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