REF: https://bugzilla.tianocore.org/show_bug.cgi?id=4097 The BaseCryptLib in the CryptoPkg currently supports ParallelHash algorithm for SMM. The MP Services PPI and MP Services Protocol could be used to enable ParallelHash in PEI and DXE versions of the BaseCryptLib. Cc: Jiewen Yao <jiewen.yao@intel.com> Cc: Jian J Wang <jian.j.wang@intel.com> Signed-off-by: Zhihao Li <zhihao.li@intel.com> Reviewed-by: Jiewen Yao <jiewen.yao@intel.com>
		
			
				
	
	
		
			255 lines
		
	
	
		
			6.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			255 lines
		
	
	
		
			6.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/** @file
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  ParallelHash Implementation.
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Copyright (c) 2022, Intel Corporation. All rights reserved.<BR>
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SPDX-License-Identifier: BSD-2-Clause-Patent
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**/
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#include "CryptParallelHash.h"
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#include <Library/SynchronizationLib.h>
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#define PARALLELHASH_CUSTOMIZATION  "ParallelHash"
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UINTN      mBlockNum;
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UINTN      mBlockSize;
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UINTN      mLastBlockSize;
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UINT8      *mInput;
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UINTN      mBlockResultSize;
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UINT8      *mBlockHashResult;
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BOOLEAN    *mBlockIsCompleted;
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SPIN_LOCK  *mSpinLockList;
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/**
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  Complete computation of digest of each block.
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  Each AP perform the function called by BSP.
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  @param[in] ProcedureArgument Argument of the procedure.
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**/
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VOID
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EFIAPI
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ParallelHashApExecute (
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  IN VOID  *ProcedureArgument
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  )
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{
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  UINTN    Index;
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  BOOLEAN  Status;
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  for (Index = 0; Index < mBlockNum; Index++) {
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    if (AcquireSpinLockOrFail (&mSpinLockList[Index])) {
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      //
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      // Completed, try next one.
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      //
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      if (mBlockIsCompleted[Index]) {
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        ReleaseSpinLock (&mSpinLockList[Index]);
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        continue;
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      }
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      //
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      // Calculate CShake256 for this block.
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      //
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      Status = CShake256HashAll (
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                 mInput + Index * mBlockSize,
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                 (Index == (mBlockNum - 1)) ? mLastBlockSize : mBlockSize,
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                 mBlockResultSize,
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                 NULL,
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                 0,
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                 NULL,
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                 0,
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                 mBlockHashResult + Index * mBlockResultSize
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                 );
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      if (!EFI_ERROR (Status)) {
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        mBlockIsCompleted[Index] = TRUE;
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      }
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      ReleaseSpinLock (&mSpinLockList[Index]);
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    }
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  }
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}
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/**
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  Parallel hash function ParallelHash256, as defined in NIST's Special Publication 800-185,
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  published December 2016.
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  @param[in]   Input            Pointer to the input message (X).
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  @param[in]   InputByteLen     The number(>0) of input bytes provided for the input data.
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  @param[in]   BlockSize        The size of each block (B).
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  @param[out]  Output           Pointer to the output buffer.
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  @param[in]   OutputByteLen    The desired number of output bytes (L).
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  @param[in]   Customization    Pointer to the customization string (S).
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  @param[in]   CustomByteLen    The length of the customization string in bytes.
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  @retval TRUE   ParallelHash256 digest computation succeeded.
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  @retval FALSE  ParallelHash256 digest computation failed.
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  @retval FALSE  This interface is not supported.
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**/
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BOOLEAN
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EFIAPI
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ParallelHash256HashAll (
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  IN CONST VOID   *Input,
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  IN       UINTN  InputByteLen,
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  IN       UINTN  BlockSize,
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  OUT      VOID   *Output,
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  IN       UINTN  OutputByteLen,
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  IN CONST VOID   *Customization,
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  IN       UINTN  CustomByteLen
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  )
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{
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  UINT8    EncBufB[sizeof (UINTN)+1];
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  UINTN    EncSizeB;
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  UINT8    EncBufN[sizeof (UINTN)+1];
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  UINTN    EncSizeN;
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  UINT8    EncBufL[sizeof (UINTN)+1];
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  UINTN    EncSizeL;
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  UINTN    Index;
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  UINT8    *CombinedInput;
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  UINTN    CombinedInputSize;
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  BOOLEAN  AllCompleted;
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  UINTN    Offset;
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  BOOLEAN  ReturnValue;
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  if ((InputByteLen == 0) || (OutputByteLen == 0) || (BlockSize == 0)) {
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    return FALSE;
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  }
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  if ((Input == NULL) || (Output == NULL)) {
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    return FALSE;
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  }
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  if ((CustomByteLen != 0) && (Customization == NULL)) {
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    return FALSE;
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  }
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  mBlockSize = BlockSize;
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  //
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  // Calculate block number n.
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  //
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  mBlockNum = InputByteLen % mBlockSize == 0 ? InputByteLen / mBlockSize : InputByteLen / mBlockSize + 1;
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  //
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  // Set hash result size of each block in bytes.
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  //
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  mBlockResultSize = OutputByteLen;
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  //
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  // Encode B, n, L to string and record size.
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  //
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  EncSizeB = LeftEncode (EncBufB, mBlockSize);
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  EncSizeN = RightEncode (EncBufN, mBlockNum);
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  EncSizeL = RightEncode (EncBufL, OutputByteLen * CHAR_BIT);
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  //
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  // Allocate buffer for combined input (newX), Block completed flag and SpinLock.
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  //
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  CombinedInputSize = EncSizeB + EncSizeN + EncSizeL + mBlockNum * mBlockResultSize;
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  CombinedInput     = AllocateZeroPool (CombinedInputSize);
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  mBlockIsCompleted = AllocateZeroPool (mBlockNum * sizeof (BOOLEAN));
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  mSpinLockList     = AllocatePool (mBlockNum * sizeof (SPIN_LOCK));
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  if ((CombinedInput == NULL) || (mBlockIsCompleted == NULL) || (mSpinLockList == NULL)) {
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    ReturnValue = FALSE;
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    goto Exit;
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  }
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  //
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  // Fill LeftEncode(B).
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  //
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  CopyMem (CombinedInput, EncBufB, EncSizeB);
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  //
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  // Prepare for parallel hash.
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  //
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  mBlockHashResult = CombinedInput + EncSizeB;
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  mInput           = (UINT8 *)Input;
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  mLastBlockSize   = InputByteLen % mBlockSize == 0 ? mBlockSize : InputByteLen % mBlockSize;
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  //
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  // Initialize SpinLock for each result block.
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  //
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  for (Index = 0; Index < mBlockNum; Index++) {
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    InitializeSpinLock (&mSpinLockList[Index]);
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  }
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  //
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  // Dispatch blocklist to each AP.
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  //
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  DispatchBlockToAp ();
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  //
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  // Wait until all block hash completed.
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  //
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  do {
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    AllCompleted = TRUE;
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    for (Index = 0; Index < mBlockNum; Index++) {
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      if (AcquireSpinLockOrFail (&mSpinLockList[Index])) {
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        if (!mBlockIsCompleted[Index]) {
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          AllCompleted = FALSE;
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          ReturnValue  = CShake256HashAll (
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                           mInput + Index * mBlockSize,
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                           (Index == (mBlockNum - 1)) ? mLastBlockSize : mBlockSize,
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                           mBlockResultSize,
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                           NULL,
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                           0,
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                           NULL,
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                           0,
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                           mBlockHashResult + Index * mBlockResultSize
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                           );
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          if (ReturnValue) {
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            mBlockIsCompleted[Index] = TRUE;
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          }
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          ReleaseSpinLock (&mSpinLockList[Index]);
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          break;
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        }
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        ReleaseSpinLock (&mSpinLockList[Index]);
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      } else {
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        AllCompleted = FALSE;
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        break;
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      }
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    }
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  } while (!AllCompleted);
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  //
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  // Fill LeftEncode(n).
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  //
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  Offset = EncSizeB + mBlockNum * mBlockResultSize;
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  CopyMem (CombinedInput + Offset, EncBufN, EncSizeN);
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  //
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  // Fill LeftEncode(L).
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  //
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  Offset += EncSizeN;
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  CopyMem (CombinedInput + Offset, EncBufL, EncSizeL);
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  ReturnValue = CShake256HashAll (
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                  CombinedInput,
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                  CombinedInputSize,
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                  OutputByteLen,
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                  PARALLELHASH_CUSTOMIZATION,
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                  AsciiStrLen (PARALLELHASH_CUSTOMIZATION),
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                  Customization,
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                  CustomByteLen,
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                  Output
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                  );
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Exit:
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  ZeroMem (CombinedInput, CombinedInputSize);
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  if (CombinedInput != NULL) {
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    FreePool (CombinedInput);
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  }
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  if (mSpinLockList != NULL) {
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    FreePool ((VOID *)mSpinLockList);
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  }
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  if (mBlockIsCompleted != NULL) {
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    FreePool (mBlockIsCompleted);
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  }
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  return ReturnValue;
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}
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