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403 lines
11 KiB
403 lines
11 KiB
/*++
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Copyright (c) 1991, 1992, 1993 Microsoft Corporation
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Module Name:
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registry.c
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Abstract:
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This module contains the code that is used to get values from the
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registry and to manipulate entries in the registry.
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Author:
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Anthony V. Ercolano 26-Sep-1991
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Environment:
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Kernel mode
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Revision History :
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--*/
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#include "precomp.h"
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#ifdef ALLOC_PRAGMA
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#pragma alloc_text(INIT,SerialGetConfigDefaults)
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#pragma alloc_text(PAGESRP0,SerialGetRegistryKeyValue)
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#pragma alloc_text(PAGESRP0,SerialPutRegistryKeyValue)
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#endif // ALLOC_PRAGMA
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NTSTATUS
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SerialGetConfigDefaults(
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IN PSERIAL_FIRMWARE_DATA DriverDefaultsPtr,
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IN PUNICODE_STRING RegistryPath
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)
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/*++
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Routine Description:
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This routine reads the default configuration data from the
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registry for the serial driver.
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It also builds fields in the registry for several configuration
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options if they don't exist.
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Arguments:
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DriverDefaultsPtr - Pointer to a structure that will contain
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the default configuration values.
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RegistryPath - points to the entry for this driver in the
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current control set of the registry.
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Return Value:
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STATUS_SUCCESS if we got the defaults, otherwise we failed.
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The only way to fail this call is if the STATUS_INSUFFICIENT_RESOURCES.
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--*/
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{
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NTSTATUS Status = STATUS_SUCCESS; // return value
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//
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// We use this to query into the registry for defaults
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//
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RTL_QUERY_REGISTRY_TABLE paramTable[8];
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PWCHAR path;
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ULONG zero = 0;
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ULONG DbgDefault = 0;//SER_DBG_DEFAULT;
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ULONG notThereDefault = SERIAL_UNINITIALIZED_DEFAULT;
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PAGED_CODE();
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//
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// Since the registry path parameter is a "counted" UNICODE string, it
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// might not be zero terminated. For a very short time allocate memory
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// to hold the registry path zero terminated so that we can use it to
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// delve into the registry.
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//
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// NOTE NOTE!!!! This is not an architected way of breaking into
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// a driver. It happens to work for this driver because the author
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// likes to do things this way.
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//
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path = ExAllocatePool (PagedPool, RegistryPath->Length+sizeof(WCHAR));
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if (!path) {
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Status = STATUS_INSUFFICIENT_RESOURCES;
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return (Status);
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}
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RtlZeroMemory (DriverDefaultsPtr, sizeof(SERIAL_FIRMWARE_DATA));
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RtlZeroMemory (¶mTable[0], sizeof(paramTable));
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RtlZeroMemory (path, RegistryPath->Length+sizeof(WCHAR));
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RtlMoveMemory (path, RegistryPath->Buffer, RegistryPath->Length);
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paramTable[0].Flags = RTL_QUERY_REGISTRY_DIRECT;
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paramTable[0].Name = L"BreakOnEntry";
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paramTable[0].EntryContext = &DriverDefaultsPtr->ShouldBreakOnEntry;
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paramTable[0].DefaultType = REG_DWORD;
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paramTable[0].DefaultData = &zero;
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paramTable[0].DefaultLength = sizeof(ULONG);
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paramTable[1].Flags = RTL_QUERY_REGISTRY_DIRECT;
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paramTable[1].Name = L"DebugLevel";
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paramTable[1].EntryContext = &DriverDefaultsPtr->DebugLevel;
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paramTable[1].DefaultType = REG_DWORD;
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paramTable[1].DefaultData = &DbgDefault;
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paramTable[1].DefaultLength = sizeof(ULONG);
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paramTable[2].Flags = RTL_QUERY_REGISTRY_DIRECT;
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paramTable[2].Name = L"ForceFifoEnable";
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paramTable[2].EntryContext = &DriverDefaultsPtr->ForceFifoEnableDefault;
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paramTable[2].DefaultType = REG_DWORD;
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paramTable[2].DefaultData = ¬ThereDefault;
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paramTable[2].DefaultLength = sizeof(ULONG);
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paramTable[3].Flags = RTL_QUERY_REGISTRY_DIRECT;
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paramTable[3].Name = L"RxFIFO";
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paramTable[3].EntryContext = &DriverDefaultsPtr->RxFIFODefault;
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paramTable[3].DefaultType = REG_DWORD;
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paramTable[3].DefaultData = ¬ThereDefault;
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paramTable[3].DefaultLength = sizeof(ULONG);
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paramTable[4].Flags = RTL_QUERY_REGISTRY_DIRECT;
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paramTable[4].Name = L"TxFIFO";
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paramTable[4].EntryContext = &DriverDefaultsPtr->TxFIFODefault;
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paramTable[4].DefaultType = REG_DWORD;
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paramTable[4].DefaultData = ¬ThereDefault;
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paramTable[4].DefaultLength = sizeof(ULONG);
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paramTable[5].Flags = RTL_QUERY_REGISTRY_DIRECT;
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paramTable[5].Name = L"PermitShare";
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paramTable[5].EntryContext = &DriverDefaultsPtr->PermitShareDefault;
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paramTable[5].DefaultType = REG_DWORD;
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paramTable[5].DefaultData = ¬ThereDefault;
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paramTable[5].DefaultLength = sizeof(ULONG);
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paramTable[6].Flags = RTL_QUERY_REGISTRY_DIRECT;
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paramTable[6].Name = L"LogFifo";
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paramTable[6].EntryContext = &DriverDefaultsPtr->LogFifoDefault;
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paramTable[6].DefaultType = REG_DWORD;
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paramTable[6].DefaultData = ¬ThereDefault;
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paramTable[6].DefaultLength = sizeof(ULONG);
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Status = RtlQueryRegistryValues( RTL_REGISTRY_ABSOLUTE | RTL_REGISTRY_OPTIONAL,
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path,
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¶mTable[0],
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NULL,
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NULL);
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if (!NT_SUCCESS(Status)) {
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DriverDefaultsPtr->ShouldBreakOnEntry = 0;
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DriverDefaultsPtr->DebugLevel = 0;
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}
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//
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// Check to see if there was a forcefifo or an rxfifo size.
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// If there isn't then write out values so that they could
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// be adjusted later.
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//
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if (DriverDefaultsPtr->ForceFifoEnableDefault == notThereDefault) {
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DriverDefaultsPtr->ForceFifoEnableDefault = SERIAL_FORCE_FIFO_DEFAULT;
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RtlWriteRegistryValue(
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RTL_REGISTRY_ABSOLUTE,
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path,
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L"ForceFifoEnable",
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REG_DWORD,
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&DriverDefaultsPtr->ForceFifoEnableDefault,
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sizeof(ULONG)
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);
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}
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if (DriverDefaultsPtr->RxFIFODefault == notThereDefault) {
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DriverDefaultsPtr->RxFIFODefault = SERIAL_RX_FIFO_DEFAULT;
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RtlWriteRegistryValue(
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RTL_REGISTRY_ABSOLUTE,
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path,
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L"RxFIFO",
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REG_DWORD,
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&DriverDefaultsPtr->RxFIFODefault,
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sizeof(ULONG)
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);
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}
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if (DriverDefaultsPtr->TxFIFODefault == notThereDefault) {
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DriverDefaultsPtr->TxFIFODefault = SERIAL_TX_FIFO_DEFAULT;
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RtlWriteRegistryValue(
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RTL_REGISTRY_ABSOLUTE,
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path,
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L"TxFIFO",
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REG_DWORD,
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&DriverDefaultsPtr->TxFIFODefault,
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sizeof(ULONG)
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);
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}
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if (DriverDefaultsPtr->PermitShareDefault == notThereDefault) {
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DriverDefaultsPtr->PermitShareDefault = SERIAL_PERMIT_SHARE_DEFAULT;
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//
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// Only share if the user actual changes switch.
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//
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RtlWriteRegistryValue(
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RTL_REGISTRY_ABSOLUTE,
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path,
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L"PermitShare",
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REG_DWORD,
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&DriverDefaultsPtr->PermitShareDefault,
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sizeof(ULONG)
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);
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}
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if (DriverDefaultsPtr->LogFifoDefault == notThereDefault) {
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//
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// Wasn't there. After this load don't log
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// the message anymore. However this first
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// time log the message.
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//
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DriverDefaultsPtr->LogFifoDefault = SERIAL_LOG_FIFO_DEFAULT;
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RtlWriteRegistryValue(
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RTL_REGISTRY_ABSOLUTE,
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path,
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L"LogFifo",
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REG_DWORD,
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&DriverDefaultsPtr->LogFifoDefault,
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sizeof(ULONG)
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);
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DriverDefaultsPtr->LogFifoDefault = 1;
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}
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//
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// We don't need that path anymore.
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//
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if (path) {
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ExFreePool(path);
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}
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//
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// Set the defaults for other values
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//
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DriverDefaultsPtr->PermitSystemWideShare = FALSE;
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return (Status);
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}
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NTSTATUS
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SerialGetRegistryKeyValue (
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IN HANDLE Handle,
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IN PWCHAR KeyNameString,
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IN ULONG KeyNameStringLength,
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IN PVOID Data,
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IN ULONG DataLength
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)
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/*++
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Routine Description:
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Reads a registry key value from an already opened registry key.
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Arguments:
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Handle Handle to the opened registry key
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KeyNameString ANSI string to the desired key
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KeyNameStringLength Length of the KeyNameString
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Data Buffer to place the key value in
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DataLength Length of the data buffer
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Return Value:
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STATUS_SUCCESS if all works, otherwise status of system call that
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went wrong.
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--*/
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{
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UNICODE_STRING keyName;
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ULONG length;
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PKEY_VALUE_FULL_INFORMATION fullInfo;
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NTSTATUS ntStatus = STATUS_INSUFFICIENT_RESOURCES;
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PAGED_CODE();
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SerialDump(SERTRACECALLS, ("SERIAL: Enter SerialGetRegistryKeyValue\n"));
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RtlInitUnicodeString (&keyName, KeyNameString);
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length = sizeof(KEY_VALUE_FULL_INFORMATION) + KeyNameStringLength
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+ DataLength;
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fullInfo = ExAllocatePool(PagedPool, length);
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if (fullInfo) {
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ntStatus = ZwQueryValueKey (Handle,
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&keyName,
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KeyValueFullInformation,
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fullInfo,
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length,
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&length);
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if (NT_SUCCESS(ntStatus)) {
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//
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// If there is enough room in the data buffer, copy the output
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//
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if (DataLength >= fullInfo->DataLength) {
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RtlCopyMemory (Data,
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((PUCHAR) fullInfo) + fullInfo->DataOffset,
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fullInfo->DataLength);
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}
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}
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ExFreePool(fullInfo);
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}
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return ntStatus;
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}
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NTSTATUS
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SerialPutRegistryKeyValue(IN HANDLE Handle, IN PWCHAR PKeyNameString,
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IN ULONG KeyNameStringLength, IN ULONG Dtype,
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IN PVOID PData, IN ULONG DataLength)
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/*++
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Routine Description:
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Writes a registry key value to an already opened registry key.
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Arguments:
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Handle Handle to the opened registry key
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PKeyNameString ANSI string to the desired key
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KeyNameStringLength Length of the KeyNameString
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Dtype REG_XYZ value type
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PData Buffer to place the key value in
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DataLength Length of the data buffer
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Return Value:
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STATUS_SUCCESS if all works, otherwise status of system call that
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went wrong.
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--*/
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{
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NTSTATUS status;
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UNICODE_STRING keyname;
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PAGED_CODE();
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SerialDump(SERTRACECALLS,("SERIAL: Enter SerialPutRegistryKeyValue\n"));
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RtlInitUnicodeString(&keyname, NULL);
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keyname.MaximumLength = (USHORT)(KeyNameStringLength + sizeof(WCHAR));
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keyname.Buffer = ExAllocatePool(PagedPool, keyname.MaximumLength);
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if (keyname.Buffer == NULL) {
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return STATUS_INSUFFICIENT_RESOURCES;
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}
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RtlAppendUnicodeToString(&keyname, PKeyNameString);
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status = ZwSetValueKey(Handle, &keyname, 0, Dtype, PData, DataLength);
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ExFreePool(keyname.Buffer);
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return status;
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}
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