mirror of
https://github.com/reactos/reactos.git
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6073359086
- SIZE_T -> ULONG in KsecGatherEntropyData - Add missing ZwQueryInformationProcess() prototype for x64 build of btrfs - Fix ml.exe path for VS 2017 Community Edition - Add missing Handle32ToHandle to basetsd.h
207 lines
6.3 KiB
C
207 lines
6.3 KiB
C
/*
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* COPYRIGHT: See COPYING in the top level directory
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* PROJECT: ReactOS Drivers
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* PURPOSE: Kernel Security Support Provider Interface Driver
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*
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* PROGRAMMERS: Timo Kreuzer (timo.kreuzer@reactos.org)
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*/
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/* INCLUDES *******************************************************************/
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#include "ksecdd.h"
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#define NDEBUG
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#include <debug.h>
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/* GLOBALS ********************************************************************/
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static ULONG KsecRandomSeed = 0x62b409a1;
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/* FUNCTIONS ******************************************************************/
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NTSTATUS
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NTAPI
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KsecGenRandom(
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PVOID Buffer,
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SIZE_T Length)
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{
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LARGE_INTEGER TickCount;
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ULONG i, RandomValue;
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PULONG P;
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/* Try to generate a more random seed */
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KeQueryTickCount(&TickCount);
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KsecRandomSeed ^= _rotl(TickCount.LowPart, (KsecRandomSeed % 23));
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P = Buffer;
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for (i = 0; i < Length / sizeof(ULONG); i++)
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{
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P[i] = RtlRandomEx(&KsecRandomSeed);
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}
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Length &= (sizeof(ULONG) - 1);
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if (Length > 0)
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{
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RandomValue = RtlRandomEx(&KsecRandomSeed);
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RtlCopyMemory(&P[i], &RandomValue, Length);
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}
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return STATUS_SUCCESS;
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}
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VOID
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NTAPI
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KsecReadMachineSpecificCounters(
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_Out_ PKSEC_MACHINE_SPECIFIC_COUNTERS MachineSpecificCounters)
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{
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#if defined(_M_IX86) || defined(_M_AMD64)
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/* Check if RDTSC is available */
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if (ExIsProcessorFeaturePresent(PF_RDTSC_INSTRUCTION_AVAILABLE))
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{
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/* Read the TSC value */
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MachineSpecificCounters->Tsc = __rdtsc();
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}
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#if 0 // FIXME: investigate what the requirements are for these
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/* Read the CPU event counter MSRs */
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//MachineSpecificCounters->Ctr0 = __readmsr(0x12);
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//MachineSpecificCounters->Ctr1 = __readmsr(0x13);
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/* Check if this is an MMX capable CPU */
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if (ExIsProcessorFeaturePresent(PF_MMX_INSTRUCTIONS_AVAILABLE))
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{
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/* Read the CPU performance counters 0 and 1 */
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MachineSpecificCounters->Pmc0 = __readpmc(0);
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MachineSpecificCounters->Pmc1 = __readpmc(1);
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}
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#endif
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#elif defined(_M_ARM)
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/* Read the Cycle Counter Register */
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MachineSpecificCounters->Ccr = _MoveFromCoprocessor(CP15_PMCCNTR);
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#else
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#error Implement me!
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#endif
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}
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/*!
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* \see http://blogs.msdn.com/b/michael_howard/archive/2005/01/14/353379.aspx
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*/
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NTSTATUS
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NTAPI
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KsecGatherEntropyData(
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PKSEC_ENTROPY_DATA EntropyData)
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{
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MD4_CTX Md4Context;
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PTEB Teb;
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PPEB Peb;
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PWSTR String;
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ULONG ReturnLength;
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NTSTATUS Status;
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/* Query some generic values */
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EntropyData->CurrentProcessId = PsGetCurrentProcessId();
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EntropyData->CurrentThreadId = PsGetCurrentThreadId();
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KeQueryTickCount(&EntropyData->TickCount);
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KeQuerySystemTime(&EntropyData->SystemTime);
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EntropyData->PerformanceCounter = KeQueryPerformanceCounter(
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&EntropyData->PerformanceFrequency);
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/* Check if we have a TEB/PEB for the process environment */
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Teb = PsGetCurrentThread()->Tcb.Teb;
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if (Teb != NULL)
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{
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Peb = Teb->ProcessEnvironmentBlock;
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/* Initialize the MD4 context */
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MD4Init(&Md4Context);
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_SEH2_TRY
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{
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/* Get the end of the environment */
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String = Peb->ProcessParameters->Environment;
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while (*String)
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{
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String += wcslen(String) + 1;
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}
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/* Update the MD4 context from the environment data */
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MD4Update(&Md4Context,
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(PUCHAR)Peb->ProcessParameters->Environment,
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(ULONG)((PUCHAR)String - (PUCHAR)Peb->ProcessParameters->Environment));
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}
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_SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER)
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{
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/* Simply ignore the exception */
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}
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_SEH2_END;
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/* Finalize and copy the MD4 hash */
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MD4Final(&Md4Context);
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RtlCopyMemory(&EntropyData->EnvironmentHash, Md4Context.digest, 16);
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}
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/* Read some machine specific hardware counters */
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KsecReadMachineSpecificCounters(&EntropyData->MachineSpecificCounters);
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/* Query processor performance information */
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Status = ZwQuerySystemInformation(SystemProcessorPerformanceInformation,
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&EntropyData->SystemProcessorPerformanceInformation,
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sizeof(SYSTEM_PROCESSOR_PERFORMANCE_INFORMATION),
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&ReturnLength);
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if (!NT_SUCCESS(Status))
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{
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return Status;
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}
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/* Query system performance information */
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Status = ZwQuerySystemInformation(SystemPerformanceInformation,
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&EntropyData->SystemPerformanceInformation,
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sizeof(SYSTEM_PERFORMANCE_INFORMATION),
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&ReturnLength);
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if (!NT_SUCCESS(Status))
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{
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return Status;
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}
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/* Query exception information */
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Status = ZwQuerySystemInformation(SystemExceptionInformation,
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&EntropyData->SystemExceptionInformation,
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sizeof(SYSTEM_EXCEPTION_INFORMATION),
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&ReturnLength);
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if (!NT_SUCCESS(Status))
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{
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return Status;
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}
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/* Query lookaside information */
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Status = ZwQuerySystemInformation(SystemLookasideInformation,
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&EntropyData->SystemLookasideInformation,
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sizeof(SYSTEM_LOOKASIDE_INFORMATION),
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&ReturnLength);
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if (!NT_SUCCESS(Status))
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{
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return Status;
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}
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/* Query interrupt information */
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Status = ZwQuerySystemInformation(SystemInterruptInformation,
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&EntropyData->SystemInterruptInformation,
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sizeof(SYSTEM_INTERRUPT_INFORMATION),
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&ReturnLength);
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if (!NT_SUCCESS(Status))
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{
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return Status;
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}
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/* Query process information */
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Status = ZwQuerySystemInformation(SystemProcessInformation,
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&EntropyData->SystemProcessInformation,
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sizeof(SYSTEM_PROCESS_INFORMATION),
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&ReturnLength);
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if (!NT_SUCCESS(Status))
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{
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return Status;
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}
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return STATUS_SUCCESS;
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}
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