470 lines
13 KiB
C
470 lines
13 KiB
C
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/*++
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Copyright (c) Microsoft Corporation. All rights reserved.
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Module Name:
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IoDevObj.c
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Abstract:
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This module contains functions for managing device objects.
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Author:
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Adrian J. Oney - April 21, 2002
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Revision History:
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--*/
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#include "WlDef.h"
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#include "IopDevObj.h"
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#pragma hdrstop
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#ifdef ALLOC_PRAGMA
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#pragma alloc_text(PAGE, IoDevObjCreateDeviceSecure)
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#pragma alloc_text(PAGE, IopDevObjAdjustNewDeviceParameters)
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#pragma alloc_text(PAGE, IopDevObjApplyPostCreationSettings)
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#endif
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NTSTATUS
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IoDevObjCreateDeviceSecure(
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IN PDRIVER_OBJECT DriverObject,
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IN ULONG DeviceExtensionSize,
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IN PUNICODE_STRING DeviceName OPTIONAL,
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IN DEVICE_TYPE DeviceType,
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IN ULONG DeviceCharacteristics,
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IN BOOLEAN Exclusive,
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IN PCUNICODE_STRING DefaultSDDLString,
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IN LPCGUID DeviceClassGuid OPTIONAL,
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OUT PDEVICE_OBJECT *DeviceObject
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)
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/*++
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Routine Description:
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This routine creates a securable named device object. The security settings
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for the device object are retrieved from the registry or constructed using
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the passed in defaults if registry overrides are not available.
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It should be used
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1. To secure legacy device objects
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2. To secure raw PnP PDOs
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It should not be used to create FDOs, non-raw PDOs, or any unnamed objects.
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For those operations, IoCreateDevice should be used.
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Arguments:
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DriverObject - A pointer to the driver object for this device.
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DeviceExtensionSize - Size, in bytes, of extension to device object;
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i.e., the size of the driver-specific data for this device object.
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DeviceName - Optional name that should be associated with this device.
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If the DeviceCharacteristics has the FILE_AUTOGENERATED_DEVICE_NAME
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flag set, this parameter is ignored.
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DeviceType - The type of device that the device object should represent.
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Possibly overriden by registry.
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DeviceCharacteristics - The characteristics for the device. Additional
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flags may be supplied by the registry.
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Exclusive - Indicates that the device object should be created with using
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the exclusive object attribute. Possibly overriden by registry.
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NOTE: This flag should not be used for WDM drivers. Since only the
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PDO is named, it is the only device object in a devnode attachment
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stack that is openable. However, since this device object is created
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by the underlying bus driver (which has no knowledge about what type
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of device this is), there is no way to know whether this flag should
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be set. Therefore, this parameter should always be FALSE for WDM
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drivers. Drivers attached to the PDO (e.g., the function driver) must
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enforce any exclusivity rules.
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DefaultSDDLString - In the absense of registry settings, this string
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specifies the security to supply for the device object.
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Only the subset of the SDDL format is currently supported. The format
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is:
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D:P(ACE)(ACE)(ACE), where (ACE) is (AceType;;Access;;;SID)
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Where:
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AceType - Only Allow ("A") is supported.
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Access - Rights specified in either hex format (0xnnnnnnnn), or via the
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SDDL Generic/Standard abbreviations
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SID - Abbreviated security ID
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(WD, BA, SY, IU, RC, AU, NU, AN, BG, BU, LS, NS)
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The S-w-x-y-z form for SIDs is not supported
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The unimplemented ace fields are:
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AceFlags - Describes features such as inheritance for sub-objects
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(ie files) and containers (ie keys/folders). An example SDDL
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AceFlag string would be ("OICI"). While control over
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inheritance is crucial for registry keys and files, it's
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irrelevant for device objects. As such, this function supports
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no ACE flags.
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ObjectGuid - Used for describing rights that transcent the 32bit
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mask supplied by the OS. Typically used for Active Directory
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objects.
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InheritObjectGuid - - Used for describing rights that transcent the
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32bit mask supplied by the OS. Typically used for Active
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Directory objects.
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Example -
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"D:P(A;;GA;;;SY)" which is Allow System to have Generic All access.
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DeviceClassGuid - Supplies a device install class GUID. This class is
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looked up in the registry to see if any potential overrides exist.
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For legacy device objects, the caller may need to invent an appropriate
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class GUID (see IoCreateDeviceSecure documention on how to properly
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install a full class).
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Note that if no registry override exists, the registry will
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automatically be updated to *reflect* the default SDDL string.
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Therefore it is a very bad idea to use the same device class GUID with
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different DefaultSDDLString values (objects needing different default
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security should have different classes, or be secured via INFs where
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possible).
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DeviceObject - Pointer to the device object pointer this routine will
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return.
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Return Value:
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NTSTATUS.
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--*/
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{
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PSECURITY_DESCRIPTOR securityDescriptor;
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STACK_CREATION_SETTINGS stackSettings, updateSettings;
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PDEVICE_OBJECT newDeviceObject;
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UNICODE_STRING classKeyName;
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DEVICE_TYPE finalDeviceType;
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ULONG finalCharacteristics;
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BOOLEAN finalExclusivity;
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ULONG disposition;
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NTSTATUS status;
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PAGED_CODE();
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//
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// Preinit for failure
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//
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*DeviceObject = NULL;
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newDeviceObject = NULL;
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//
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// The device object is securable only if it has a name. Therefore, we fail
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// the create call if the device doesn't have a name.
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//
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if (!(ARGUMENT_PRESENT(DeviceName) ||
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(DeviceCharacteristics & FILE_AUTOGENERATED_DEVICE_NAME))) {
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return STATUS_INVALID_PARAMETER;
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}
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if (ARGUMENT_PRESENT(DeviceClassGuid)) {
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//
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// Try to find the appropriate security descriptor for the device. First
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// look for an override in the registry using the class GUID. We will
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// create a section in the registry if one doesn't exist as well. This is
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// a clue to the system administrator that there is something to lock down
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// in the system.
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//
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status = PpRegStateReadCreateClassCreationSettings(
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DeviceClassGuid,
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DriverObject,
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&stackSettings
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);
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if (!NT_SUCCESS(status)) {
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return status;
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}
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} else {
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PpRegStateInitEmptyCreationSettings(&stackSettings);
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}
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//
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// If a registry setting wasn't specified, parse the default SDDL string.
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//
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if (!(stackSettings.Flags & DSIFLAG_SECURITY_DESCRIPTOR)) {
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//
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// Parse the SDDL string into a security descriptor, and mark it
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// "default" as well. SE_DACL_DEFAULT means the DACL came from a
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// "default" mechanism, typically implying parental inheritance or
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// object default security. In our case, the "default source" is the
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// library as opposed to the user or an INF.
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//
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status = SeSddlSecurityDescriptorFromSDDL(
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DefaultSDDLString,
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TRUE,
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&securityDescriptor
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);
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if (!NT_SUCCESS(status)) {
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goto Exit;
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}
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PpRegStateLoadSecurityDescriptor(
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securityDescriptor,
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&stackSettings
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);
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if (ARGUMENT_PRESENT(DeviceClassGuid)) {
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//
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// Update the registry with the default SDDL string so that the
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// admin knows what settings are being used for this class. Note
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// that we don't free updateSettings, as the security descriptor
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// is also used by stackSettings.
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//
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PpRegStateInitEmptyCreationSettings(&updateSettings);
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PpRegStateLoadSecurityDescriptor(
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securityDescriptor,
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&updateSettings
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);
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status = PpRegStateUpdateStackCreationSettings(
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DeviceClassGuid,
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&updateSettings
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);
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if (!NT_SUCCESS(status)) {
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goto Exit;
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}
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}
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}
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//
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// Fill out the default values
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//
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finalDeviceType = DeviceType;
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finalCharacteristics = DeviceCharacteristics;
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finalExclusivity = Exclusive;
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//
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// Adjust the parameters based on the registry overrides
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//
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IopDevObjAdjustNewDeviceParameters(
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&stackSettings,
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&finalDeviceType,
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&finalCharacteristics,
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&finalExclusivity
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);
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//
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// Create the device object. The newly created object should have the
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// DO_DEVICE_INITIALIZING flag on it, meaning it cannot be opened. We
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// therefore still have an opportunity to apply security.
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//
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status = IoCreateDevice(
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DriverObject,
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DeviceExtensionSize,
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DeviceName,
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finalDeviceType,
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finalCharacteristics,
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finalExclusivity,
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&newDeviceObject
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);
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if (!NT_SUCCESS(status)) {
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goto Exit;
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}
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ASSERT(newDeviceObject->Flags & DO_DEVICE_INITIALIZING);
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status = IopDevObjApplyPostCreationSettings(
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newDeviceObject,
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&stackSettings
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);
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if (!NT_SUCCESS(status)) {
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IoDeleteDevice(newDeviceObject);
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goto Exit;
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}
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*DeviceObject = newDeviceObject;
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Exit:
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//
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// Clean up the security descriptor as appropriate.
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//
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PpRegStateFreeStackCreationSettings(&stackSettings);
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return status;
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}
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VOID
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IopDevObjAdjustNewDeviceParameters(
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IN PSTACK_CREATION_SETTINGS StackCreationSettings,
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IN OUT PDEVICE_TYPE DeviceType,
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IN OUT PULONG DeviceCharacteristics,
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IN OUT PBOOLEAN Exclusive
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)
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/*++
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Routine Description:
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This routine adjusts a newly created device object to reflect the passed
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in stack creation settings.
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Arguments:
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StackCreationSettings - Information reflecting the settings to apply.
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DeviceType - On input, the device type specified by the caller. This field
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is updated to reflect any changes specified in the registry.
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DeviceCharacteristics - On input, the characteristics specified by the
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caller. This field is updated to reflect any changes specified in the
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registry.
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Exclusive - On input, the exclusivity specified by the caller. This field
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is updated to reflect any changes specified in the registry.
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Return Value:
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None.
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--*/
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{
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PAGED_CODE();
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if (StackCreationSettings->Flags & DSIFLAG_DEVICE_TYPE) {
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*DeviceType = StackCreationSettings->DeviceType;
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}
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if (StackCreationSettings->Flags & DSIFLAG_CHARACTERISTICS) {
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*DeviceCharacteristics = StackCreationSettings->Characteristics;
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}
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if (StackCreationSettings->Flags & DSIFLAG_EXCLUSIVE) {
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*Exclusive = (BOOLEAN) StackCreationSettings->Exclusivity;
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}
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}
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NTSTATUS
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IopDevObjApplyPostCreationSettings(
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IN PDEVICE_OBJECT DeviceObject,
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IN PSTACK_CREATION_SETTINGS StackCreationSettings
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)
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/*++
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Routine Description:
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This routine adjusts a newly created device object to reflect the passed
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in stack creation settings.
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Arguments:
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DeviceObject - Device object who's settings to adjust.
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StackCreationSettings - Information reflecting the settings to apply.
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Return Value:
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NTSTATUS.
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--*/
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{
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SECURITY_INFORMATION securityInformation;
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ACCESS_MASK desiredAccess;
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BOOLEAN fromDefaultSource;
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NTSTATUS status;
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HANDLE handle;
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PAGED_CODE();
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if (!(StackCreationSettings->Flags & DSIFLAG_SECURITY_DESCRIPTOR)) {
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return STATUS_SUCCESS;
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}
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//
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// Get the corresponding securityInformation from the descriptor.
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//
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status = SeUtilSecurityInfoFromSecurityDescriptor(
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StackCreationSettings->SecurityDescriptor,
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&fromDefaultSource,
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&securityInformation
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);
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if (!NT_SUCCESS(status)) {
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return status;
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}
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#ifdef _KERNELIMPLEMENTATION_
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status = ObSetSecurityObjectByPointer(
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DeviceObject,
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securityInformation,
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StackCreationSettings->SecurityDescriptor
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);
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#else
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//
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// Since ObSetSecurityObjectByPointer isn't available on Win2K, we have to
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// use a rather sneaky trick. The device technically isn't openable yet.
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// However, ObOpenObjectByPointer doesn't bother doing any parse stuff.
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// Therefore, we can get a quick handle to the object, set the security
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// descriptor, and then dump the handle without the driver being any wiser.
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//
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SeSetSecurityAccessMask(securityInformation, &desiredAccess);
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status = ObOpenObjectByPointer(
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DeviceObject,
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OBJ_KERNEL_HANDLE,
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NULL,
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desiredAccess,
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*IoDeviceObjectType,
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KernelMode,
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&handle
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);
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if (!NT_SUCCESS(status)) {
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return status;
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}
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status = ZwSetSecurityObject(
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handle,
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securityInformation,
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StackCreationSettings->SecurityDescriptor
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);
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ZwClose(handle);
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#endif // _KERNELIMPLEMENTATION_
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return status;
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}
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