Add new Tpm12DeviceLib instance for an Atmel I2C TPM Cc: Kelly Steele <kelly.steele@intel.com> Cc: Jiewen Yao <jiewen.yao@intel.com> Contributed-under: TianoCore Contribution Agreement 1.0 Signed-off-by: Michael Kinney <michael.d.kinney@intel.com> Reviewed-by: Kelly Steele <kelly.steele@intel.com> Reviewed-by: Jiewen Yao <jiewen.yao@intel.com> git-svn-id: https://svn.code.sf.net/p/edk2/code/trunk/edk2@19730 6f19259b-4bc3-4df7-8a09-765794883524
		
			
				
	
	
		
			420 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			420 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/** @file
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  Basic TIS (TPM Interface Specification) functions for Atmel I2C TPM.
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  Copyright (c) 2016, Intel Corporation. All rights reserved.<BR>
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  This program and the accompanying materials
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  are licensed and made available under the terms and conditions of the BSD License
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  which accompanies this distribution.  The full text of the license may be found at
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  http://opensource.org/licenses/bsd-license.php
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  THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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  WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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**/
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#include <PiPei.h>
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#include <Library/Tpm12DeviceLib.h>
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#include <Library/BaseLib.h>
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#include <Library/TimerLib.h>
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#include <Library/DebugLib.h>
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#include <Library/I2cLib.h>
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#include <Library/Tpm12CommandLib.h>
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//
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// Atmel I2C TPM slave address
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//
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#define ATMEL_I2C_TPM_SLAVE_ADDRESS      0x29
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//
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// Maximum I2C transfer size for Atmel I2C TPM
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//
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#define ATMEL_I2C_TPM_MAX_TRANSFER_SIZE  0x10
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//
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// Default TimeOut values in microseconds
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//
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#define TIS_TIMEOUT_A  ( 750 * 1000)  // 750ms
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#define TIS_TIMEOUT_B  (2000 * 1000)  // 2s
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#define TIS_TIMEOUT_C  ( 750 * 1000)  // 750ms
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#define TIS_TIMEOUT_D  ( 750 * 1000)  // 750ms
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/**
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  Send command to Atmel I2c TPM breaking request up into multiple I2C transfers
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  if required.
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  @param[in] Buffer  Pointer to TPM command data.
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  @param[in] Length  Number of bytes of TPM command data.
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  @retval EFI_SUCCESS    TPM command sent.
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  @retval EFI_NOT_FOUND  TPM chip doesn't exit.
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  @retval EFI_TIMEOUT    Can't get the TPM control in time.
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**/
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EFI_STATUS
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WriteTpmBufferMultiple (
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  IN UINT8  *Buffer,
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  IN UINTN  Length
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  )
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{
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  EFI_STATUS              Status;
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  EFI_I2C_DEVICE_ADDRESS  I2CDeviceAddr;
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  UINTN                   Index;
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  UINTN                   PartialLength;
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  I2CDeviceAddr.I2CDeviceAddress = ATMEL_I2C_TPM_SLAVE_ADDRESS;
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  DEBUG ((EFI_D_VERBOSE, "WriteTpmBufferMultiple: Addr=%02x  Length=%02x\n", I2CDeviceAddr.I2CDeviceAddress, Length));
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  for (PartialLength = 0; Length > 0; Length -= PartialLength, Buffer += PartialLength) {
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    //
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    // Write data to TPM.
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    //
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    PartialLength = MIN (Length, ATMEL_I2C_TPM_MAX_TRANSFER_SIZE);
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    Status = I2cWriteMultipleByte (
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      I2CDeviceAddr,
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      EfiI2CSevenBitAddrMode,
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      &PartialLength,
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      Buffer
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      );
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    DEBUG ((EFI_D_VERBOSE, "  "));
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    for (Index = 0; Index < PartialLength; Index++) {
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      DEBUG ((EFI_D_VERBOSE, "%02x ", Buffer[Index]));
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    }
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    DEBUG ((EFI_D_VERBOSE, "\n"));
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    if (EFI_ERROR (Status)) {
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      DEBUG ((EFI_D_VERBOSE, "  Status = %r\n", Status));
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      return Status;
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    }
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  }
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  DEBUG ((EFI_D_VERBOSE, "  Status = %r\n", Status));
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  return Status;
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}
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/**
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  Receive a response to a command from Atmel I2c TPM breaking response into
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  multiple I2C transfers if required.
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  @param[out] Buffer  Pointer to TPM response data.
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  @param[in]  Length  Maximum number of bytes to receive.
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  @retval EFI_SUCCESS    TPM response received.
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  @retval EFI_NOT_FOUND  TPM chip doesn't exit.
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  @retval EFI_TIMEOUT    Can't get the TPM control in time.
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**/
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EFI_STATUS
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ReadTpmBufferMultiple (
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  OUT UINT8  *Buffer,
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  IN  UINTN  Length
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  )
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{
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  EFI_STATUS              Status;
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  EFI_I2C_DEVICE_ADDRESS  I2CDeviceAddr;
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  UINTN                   WriteLength;
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  UINTN                   Index;
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  UINTN                   PartialLength;
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  I2CDeviceAddr.I2CDeviceAddress = ATMEL_I2C_TPM_SLAVE_ADDRESS;
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  WriteLength = 0;
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  DEBUG ((EFI_D_VERBOSE, "ReadTpmBufferMultiple: Addr=%02x  Length=%02x\n", I2CDeviceAddr.I2CDeviceAddress, Length));
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  for (PartialLength = 0; Length > 0; Length -= PartialLength, Buffer += PartialLength) {
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    //
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    // Read data from TPM.
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    //
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    PartialLength = MIN (Length, ATMEL_I2C_TPM_MAX_TRANSFER_SIZE);
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    Status = I2cReadMultipleByte (
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      I2CDeviceAddr,
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      EfiI2CSevenBitAddrMode,
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      &WriteLength,
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      &PartialLength,
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      Buffer
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      );
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    if (!EFI_ERROR (Status)) {
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      DEBUG ((EFI_D_VERBOSE, "  "));
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      for (Index = 0; Index < PartialLength; Index++) {
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        DEBUG ((EFI_D_VERBOSE, "%02x ", Buffer[Index]));
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      }
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      DEBUG ((EFI_D_VERBOSE, "\n"));
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    }
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    if (EFI_ERROR (Status)) {
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      DEBUG ((EFI_D_VERBOSE, "  Status = %r\n", Status));
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      return Status;
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    }
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  }
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  DEBUG ((EFI_D_VERBOSE, "  Status = %r\n", Status));
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  return Status;
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}
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/**
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  This service requests use TPM12.
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  @retval EFI_SUCCESS       Get the control of TPM12 chip.
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  @retval EFI_NOT_FOUND     TPM12 not found.
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  @retval EFI_DEVICE_ERROR  Unexpected device behavior.
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**/
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EFI_STATUS
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EFIAPI
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Tpm12RequestUseTpm (
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  VOID
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  )
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{
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  EFI_STATUS                 Status;
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  UINT8                      Data;
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  UINT64                     Current;
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  UINT64                     Previous;
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  UINT64                     Total;
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  UINT64                     Start;
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  UINT64                     End;
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  UINT64                     Timeout;
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  INT64                      Cycle;
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  INT64                      Delta;
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  //
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  // Get the current timer value
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  //
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  Current = GetPerformanceCounter();
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  //
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  // Initialize local variables
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  //
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  Start = 0;
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  End   = 0;
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  Total = 0;
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  //
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  // Retrieve the performance counter properties and compute the number of
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  // performance counter ticks required to reach the maximum TIS timeout of
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  // TIS_TIMEOUT_A.  TIS_TIMEOUT_A is in microseconds.
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  //
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  Timeout = DivU64x32 (
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              MultU64x32 (
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                GetPerformanceCounterProperties (&Start, &End),
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                TIS_TIMEOUT_A
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                ),
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              1000000
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              );
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  Cycle = End - Start;
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  if (Cycle < 0) {
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    Cycle = -Cycle;
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  }
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  Cycle++;
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  //
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  // Attempt to read a byte from the Atmel I2C TPM
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  //
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  do {
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    Status = ReadTpmBufferMultiple (&Data, sizeof(Data));
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    Previous = Current;
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    Current  = GetPerformanceCounter();
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    Delta = (INT64) (Current - Previous);
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    if (Start > End) {
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      Delta = -Delta;
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    }
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    if (Delta < 0) {
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      Delta += Cycle;
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    }
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    Total += Delta;
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    if (Total >= Timeout) {
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      Status = EFI_TIMEOUT;
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      DEBUG ((EFI_D_ERROR, "Atmel I2C TPM failed to read: %r\n", Status));
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      return Status;
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    }
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  } while (EFI_ERROR (Status));
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  //
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  // Send Physical Presence Command to Atmel I2C TPM
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  //
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  Status = Tpm12PhysicalPresence (TPM_PHYSICAL_PRESENCE_PRESENT);
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  if (EFI_ERROR (Status)) {
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    DEBUG ((EFI_D_ERROR, "Atmel I2C TPM failed to submit physical presence command: %r\n", Status));
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    return Status;
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  }
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  return EFI_SUCCESS;
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}
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/**
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  This service enables the sending of commands to the TPM12.
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  @param[in]     InputParameterBlockSize   Size of the TPM12 input parameter block.
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  @param[in]     InputParameterBlock       Pointer to the TPM12 input parameter block.
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  @param[in,out] OutputParameterBlockSize  Size of the TPM12 output parameter block.
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  @param[in]     OutputParameterBlock      Pointer to the TPM12 output parameter block.
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  @retval EFI_SUCCESS           The command byte stream was successfully sent to
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                                the device and a response was successfully received.
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  @retval EFI_DEVICE_ERROR      The command was not successfully sent to the
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                                device or a response was not successfully received
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                                from the device.
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  @retval EFI_BUFFER_TOO_SMALL  The output parameter block is too small.
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**/
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EFI_STATUS
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EFIAPI
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Tpm12SubmitCommand (
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  IN UINT32      InputParameterBlockSize,
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  IN UINT8       *InputParameterBlock,
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  IN OUT UINT32  *OutputParameterBlockSize,
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  IN UINT8       *OutputParameterBlock
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  )
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{
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  EFI_STATUS           Status;
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  UINT32               TpmOutSize;
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  TPM_RSP_COMMAND_HDR  *ResponseHeader;
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  UINT64               Current;
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  UINT64               Previous;
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  UINT64               Total;
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  UINT64               Start;
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  UINT64               End;
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  UINT64               Timeout;
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  INT64                Cycle;
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  INT64                Delta;
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  //
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  // Make sure response buffer is big enough to hold a response header
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  //
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  if (*OutputParameterBlockSize < sizeof (TPM_RSP_COMMAND_HDR)) {
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    Status = EFI_BUFFER_TOO_SMALL;
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    goto Done;
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  }
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  //
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  // Get the current timer value
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  //
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  Current = GetPerformanceCounter();
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  //
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  // Initialize local variables
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  //
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  Start = 0;
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  End   = 0;
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  Total = 0;
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  //
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  // Retrieve the performance counter properties and compute the number of
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  // performance counter ticks required to reach the maximum TIS timeout of
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  // TIS_TIMEOUT_A.  TIS_TIMEOUT_A is in microseconds.
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  //
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  Timeout = DivU64x32 (
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              MultU64x32 (
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                GetPerformanceCounterProperties (&Start, &End),
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                TIS_TIMEOUT_A
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                ),
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              1000000
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              );
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  Cycle = End - Start;
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  if (Cycle < 0) {
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    Cycle = -Cycle;
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  }
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  Cycle++;
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  //
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  // Send command
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  //
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  do {
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    Status = WriteTpmBufferMultiple (InputParameterBlock, InputParameterBlockSize);
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    Previous = Current;
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    Current  = GetPerformanceCounter();
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    Delta = (INT64) (Current - Previous);
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    if (Start > End) {
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      Delta = -Delta;
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    }
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    if (Delta < 0) {
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      Delta += Cycle;
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    }
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    Total += Delta;
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    if (Total >= Timeout) {
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      Status = EFI_TIMEOUT;
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      goto Done;
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    }
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  } while (EFI_ERROR (Status));
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  //
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  // Receive response header
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  //
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  do {
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    Status = ReadTpmBufferMultiple (OutputParameterBlock, sizeof (TPM_RSP_COMMAND_HDR));
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    Previous = Current;
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    Current  = GetPerformanceCounter();
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    Delta = (INT64) (Current - Previous);
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    if (Start > End) {
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      Delta = -Delta;
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    }
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    if (Delta < 0) {
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      Delta += Cycle;
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    }
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    Total += Delta;
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    if (Total >= Timeout) {
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      Status = EFI_TIMEOUT;
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      goto Done;
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    }
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  } while (EFI_ERROR (Status));
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  //
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  // Check the response data header (tag, parasize and returncode)
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  //
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  ResponseHeader = (TPM_RSP_COMMAND_HDR *)OutputParameterBlock;
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  if (SwapBytes16 (ReadUnaligned16 (&ResponseHeader->tag)) != TPM_TAG_RSP_COMMAND) {
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    Status = EFI_DEVICE_ERROR;
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    goto Done;
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  }
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  TpmOutSize = SwapBytes32 (ReadUnaligned32 (&ResponseHeader->paramSize));
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  if (TpmOutSize == sizeof (TPM_RSP_COMMAND_HDR)) {
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    Status = EFI_SUCCESS;
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    goto Done;
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  }
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  if (TpmOutSize < sizeof (TPM_RSP_COMMAND_HDR)) {
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    Status = EFI_DEVICE_ERROR;
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    goto Done;
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  }
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  if (*OutputParameterBlockSize < TpmOutSize) {
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    Status = EFI_BUFFER_TOO_SMALL;
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    goto Done;
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  }
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  *OutputParameterBlockSize = TpmOutSize;
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  //
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  // Receive the remaining data in the response header
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  //
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  do {
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    Status = ReadTpmBufferMultiple (
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               OutputParameterBlock + sizeof (TPM_RSP_COMMAND_HDR),
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               TpmOutSize - sizeof (TPM_RSP_COMMAND_HDR)
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               );
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    Previous = Current;
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    Current  = GetPerformanceCounter();
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    Delta = (INT64) (Current - Previous);
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    if (Start > End) {
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      Delta = -Delta;
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    }
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    if (Delta < 0) {
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      Delta += Cycle;
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    }
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    Total += Delta;
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    if (Total >= Timeout) {
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      Status = EFI_TIMEOUT;
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      goto Done;
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    }
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  } while (EFI_ERROR (Status));
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Done:
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  DEBUG ((
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    EFI_D_VERBOSE,
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    "Tpm12SubmitCommand() Status = %r  Time = %ld ms\n",
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    Status,
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    DivU64x64Remainder (
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      MultU64x32 (Total, 1000),
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      GetPerformanceCounterProperties (NULL, NULL),
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      NULL
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      )
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    ));
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  return Status;
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}
 |