REF: https://bugzilla.tianocore.org/show_bug.cgi?id=3737 Apply uncrustify changes to .c/.h files in the MdeModulePkg package Cc: Andrew Fish <afish@apple.com> Cc: Leif Lindholm <leif@nuviainc.com> Cc: Michael D Kinney <michael.d.kinney@intel.com> Signed-off-by: Michael Kubacki <michael.kubacki@microsoft.com> Reviewed-by: Liming Gao <gaoliming@byosoft.com.cn>
		
			
				
	
	
		
			426 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			426 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /** @file
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| 
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| Copyright (c) 2016 - 2017, Intel Corporation. All rights reserved.<BR>
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| 
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| SPDX-License-Identifier: BSD-2-Clause-Patent
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| 
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| **/
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| 
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| #include "EmmcBlockIoPei.h"
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| 
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| /**
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|   Allocate a block of memory to be used by the buffer pool.
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| 
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|   @param  Pages          How many pages to allocate.
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| 
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|   @return The allocated memory block or NULL if failed.
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| 
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| **/
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| EMMC_PEIM_MEM_BLOCK *
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| EmmcPeimAllocMemBlock (
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|   IN  UINTN  Pages
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|   )
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| {
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|   EMMC_PEIM_MEM_BLOCK   *Block;
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|   VOID                  *BufHost;
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|   VOID                  *Mapping;
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|   EFI_PHYSICAL_ADDRESS  MappedAddr;
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|   EFI_STATUS            Status;
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|   VOID                  *TempPtr;
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| 
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|   TempPtr = NULL;
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|   Block   = NULL;
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| 
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|   Status = PeiServicesAllocatePool (sizeof (EMMC_PEIM_MEM_BLOCK), &TempPtr);
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|   if (EFI_ERROR (Status)) {
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|     return NULL;
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|   }
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| 
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|   ZeroMem ((VOID *)(UINTN)TempPtr, sizeof (EMMC_PEIM_MEM_BLOCK));
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| 
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|   //
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|   // each bit in the bit array represents EMMC_PEIM_MEM_UNIT
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|   // bytes of memory in the memory block.
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|   //
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|   ASSERT (EMMC_PEIM_MEM_UNIT * 8 <= EFI_PAGE_SIZE);
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| 
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|   Block          = (EMMC_PEIM_MEM_BLOCK *)(UINTN)TempPtr;
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|   Block->BufLen  = EFI_PAGES_TO_SIZE (Pages);
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|   Block->BitsLen = Block->BufLen / (EMMC_PEIM_MEM_UNIT * 8);
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| 
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|   Status = PeiServicesAllocatePool (Block->BitsLen, &TempPtr);
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|   if (EFI_ERROR (Status)) {
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|     return NULL;
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|   }
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| 
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|   ZeroMem ((VOID *)(UINTN)TempPtr, Block->BitsLen);
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| 
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|   Block->Bits = (UINT8 *)(UINTN)TempPtr;
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| 
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|   Status = IoMmuAllocateBuffer (
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|              Pages,
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|              &BufHost,
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|              &MappedAddr,
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|              &Mapping
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|              );
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|   if (EFI_ERROR (Status)) {
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|     return NULL;
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|   }
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| 
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|   ZeroMem ((VOID *)(UINTN)BufHost, EFI_PAGES_TO_SIZE (Pages));
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| 
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|   Block->BufHost = (UINT8 *)(UINTN)BufHost;
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|   Block->Buf     = (UINT8 *)(UINTN)MappedAddr;
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|   Block->Mapping = Mapping;
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|   Block->Next    = NULL;
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| 
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|   return Block;
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| }
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| 
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| /**
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|   Free the memory block from the memory pool.
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| 
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|   @param  Pool           The memory pool to free the block from.
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|   @param  Block          The memory block to free.
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| 
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| **/
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| VOID
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| EmmcPeimFreeMemBlock (
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|   IN EMMC_PEIM_MEM_POOL   *Pool,
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|   IN EMMC_PEIM_MEM_BLOCK  *Block
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|   )
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| {
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|   ASSERT ((Pool != NULL) && (Block != NULL));
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| 
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|   IoMmuFreeBuffer (EFI_SIZE_TO_PAGES (Block->BufLen), Block->BufHost, Block->Mapping);
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| }
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| 
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| /**
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|   Alloc some memory from the block.
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| 
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|   @param  Block          The memory block to allocate memory from.
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|   @param  Units          Number of memory units to allocate.
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| 
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|   @return The pointer to the allocated memory. If couldn't allocate the needed memory,
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|           the return value is NULL.
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| 
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| **/
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| VOID *
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| EmmcPeimAllocMemFromBlock (
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|   IN  EMMC_PEIM_MEM_BLOCK  *Block,
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|   IN  UINTN                Units
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|   )
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| {
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|   UINTN  Byte;
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|   UINT8  Bit;
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|   UINTN  StartByte;
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|   UINT8  StartBit;
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|   UINTN  Available;
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|   UINTN  Count;
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| 
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|   ASSERT ((Block != 0) && (Units != 0));
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| 
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|   StartByte = 0;
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|   StartBit  = 0;
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|   Available = 0;
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| 
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|   for (Byte = 0, Bit = 0; Byte < Block->BitsLen;) {
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|     //
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|     // If current bit is zero, the corresponding memory unit is
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|     // available, otherwise we need to restart our searching.
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|     // Available counts the consecutive number of zero bit.
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|     //
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|     if (!EMMC_PEIM_MEM_BIT_IS_SET (Block->Bits[Byte], Bit)) {
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|       Available++;
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| 
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|       if (Available >= Units) {
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|         break;
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|       }
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| 
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|       EMMC_PEIM_NEXT_BIT (Byte, Bit);
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|     } else {
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|       EMMC_PEIM_NEXT_BIT (Byte, Bit);
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| 
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|       Available = 0;
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|       StartByte = Byte;
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|       StartBit  = Bit;
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|     }
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|   }
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| 
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|   if (Available < Units) {
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|     return NULL;
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|   }
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| 
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|   //
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|   // Mark the memory as allocated
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|   //
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|   Byte = StartByte;
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|   Bit  = StartBit;
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| 
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|   for (Count = 0; Count < Units; Count++) {
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|     ASSERT (!EMMC_PEIM_MEM_BIT_IS_SET (Block->Bits[Byte], Bit));
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| 
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|     Block->Bits[Byte] = (UINT8)(Block->Bits[Byte] | (UINT8)EMMC_PEIM_MEM_BIT (Bit));
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|     EMMC_PEIM_NEXT_BIT (Byte, Bit);
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|   }
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| 
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|   return Block->Buf + (StartByte * 8 + StartBit) * EMMC_PEIM_MEM_UNIT;
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| }
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| 
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| /**
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|   Insert the memory block to the pool's list of the blocks.
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| 
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|   @param  Head           The head of the memory pool's block list.
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|   @param  Block          The memory block to insert.
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| 
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| **/
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| VOID
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| EmmcPeimInsertMemBlockToPool (
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|   IN EMMC_PEIM_MEM_BLOCK  *Head,
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|   IN EMMC_PEIM_MEM_BLOCK  *Block
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|   )
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| {
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|   ASSERT ((Head != NULL) && (Block != NULL));
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|   Block->Next = Head->Next;
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|   Head->Next  = Block;
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| }
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| 
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| /**
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|   Is the memory block empty?
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| 
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|   @param  Block   The memory block to check.
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| 
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|   @retval TRUE    The memory block is empty.
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|   @retval FALSE   The memory block isn't empty.
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| 
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| **/
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| BOOLEAN
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| EmmcPeimIsMemBlockEmpty (
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|   IN EMMC_PEIM_MEM_BLOCK  *Block
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|   )
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| {
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|   UINTN  Index;
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| 
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|   for (Index = 0; Index < Block->BitsLen; Index++) {
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|     if (Block->Bits[Index] != 0) {
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|       return FALSE;
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|     }
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|   }
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| 
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|   return TRUE;
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| }
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| 
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| /**
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|   Initialize the memory management pool for the host controller.
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| 
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|   @param  Private               The Emmc Peim driver private data.
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| 
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|   @retval EFI_SUCCESS           The memory pool is initialized.
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|   @retval Others                Fail to init the memory pool.
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| 
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| **/
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| EFI_STATUS
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| EmmcPeimInitMemPool (
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|   IN  EMMC_PEIM_HC_PRIVATE_DATA  *Private
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|   )
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| {
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|   EMMC_PEIM_MEM_POOL  *Pool;
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|   EFI_STATUS          Status;
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|   VOID                *TempPtr;
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| 
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|   TempPtr = NULL;
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|   Pool    = NULL;
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| 
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|   Status = PeiServicesAllocatePool (sizeof (EMMC_PEIM_MEM_POOL), &TempPtr);
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|   if (EFI_ERROR (Status)) {
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|     return EFI_OUT_OF_RESOURCES;
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|   }
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| 
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|   ZeroMem ((VOID *)(UINTN)TempPtr, sizeof (EMMC_PEIM_MEM_POOL));
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| 
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|   Pool = (EMMC_PEIM_MEM_POOL *)((UINTN)TempPtr);
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| 
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|   Pool->Head = EmmcPeimAllocMemBlock (EMMC_PEIM_MEM_DEFAULT_PAGES);
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| 
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|   if (Pool->Head == NULL) {
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|     return EFI_OUT_OF_RESOURCES;
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|   }
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| 
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|   Private->Pool = Pool;
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|   return EFI_SUCCESS;
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| }
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| 
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| /**
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|   Release the memory management pool.
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| 
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|   @param  Pool                  The memory pool to free.
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| 
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|   @retval EFI_DEVICE_ERROR      Fail to free the memory pool.
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|   @retval EFI_SUCCESS           The memory pool is freed.
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| 
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| **/
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| EFI_STATUS
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| EmmcPeimFreeMemPool (
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|   IN EMMC_PEIM_MEM_POOL  *Pool
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|   )
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| {
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|   EMMC_PEIM_MEM_BLOCK  *Block;
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| 
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|   ASSERT (Pool->Head != NULL);
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| 
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|   //
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|   // Unlink all the memory blocks from the pool, then free them.
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|   //
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|   for (Block = Pool->Head->Next; Block != NULL; Block = Pool->Head->Next) {
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|     EmmcPeimFreeMemBlock (Pool, Block);
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|   }
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| 
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|   EmmcPeimFreeMemBlock (Pool, Pool->Head);
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| 
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|   return EFI_SUCCESS;
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| }
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| 
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| /**
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|   Allocate some memory from the host controller's memory pool
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|   which can be used to communicate with host controller.
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| 
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|   @param  Pool      The host controller's memory pool.
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|   @param  Size      Size of the memory to allocate.
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| 
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|   @return The allocated memory or NULL.
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| 
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| **/
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| VOID *
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| EmmcPeimAllocateMem (
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|   IN  EMMC_PEIM_MEM_POOL  *Pool,
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|   IN  UINTN               Size
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|   )
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| {
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|   EMMC_PEIM_MEM_BLOCK  *Head;
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|   EMMC_PEIM_MEM_BLOCK  *Block;
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|   EMMC_PEIM_MEM_BLOCK  *NewBlock;
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|   VOID                 *Mem;
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|   UINTN                AllocSize;
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|   UINTN                Pages;
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| 
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|   Mem       = NULL;
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|   AllocSize = EMMC_PEIM_MEM_ROUND (Size);
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|   Head      = Pool->Head;
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|   ASSERT (Head != NULL);
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| 
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|   //
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|   // First check whether current memory blocks can satisfy the allocation.
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|   //
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|   for (Block = Head; Block != NULL; Block = Block->Next) {
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|     Mem = EmmcPeimAllocMemFromBlock (Block, AllocSize / EMMC_PEIM_MEM_UNIT);
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| 
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|     if (Mem != NULL) {
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|       ZeroMem (Mem, Size);
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|       break;
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|     }
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|   }
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| 
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|   if (Mem != NULL) {
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|     return Mem;
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|   }
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| 
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|   //
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|   // Create a new memory block if there is not enough memory
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|   // in the pool. If the allocation size is larger than the
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|   // default page number, just allocate a large enough memory
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|   // block. Otherwise allocate default pages.
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|   //
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|   if (AllocSize > EFI_PAGES_TO_SIZE (EMMC_PEIM_MEM_DEFAULT_PAGES)) {
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|     Pages = EFI_SIZE_TO_PAGES (AllocSize) + 1;
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|   } else {
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|     Pages = EMMC_PEIM_MEM_DEFAULT_PAGES;
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|   }
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| 
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|   NewBlock = EmmcPeimAllocMemBlock (Pages);
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|   if (NewBlock == NULL) {
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|     return NULL;
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|   }
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| 
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|   //
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|   // Add the new memory block to the pool, then allocate memory from it
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|   //
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|   EmmcPeimInsertMemBlockToPool (Head, NewBlock);
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|   Mem = EmmcPeimAllocMemFromBlock (NewBlock, AllocSize / EMMC_PEIM_MEM_UNIT);
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| 
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|   if (Mem != NULL) {
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|     ZeroMem (Mem, Size);
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|   }
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| 
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|   return Mem;
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| }
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| 
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| /**
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|   Free the allocated memory back to the memory pool.
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| 
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|   @param  Pool           The memory pool of the host controller.
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|   @param  Mem            The memory to free.
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|   @param  Size           The size of the memory to free.
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| 
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| **/
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| VOID
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| EmmcPeimFreeMem (
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|   IN EMMC_PEIM_MEM_POOL  *Pool,
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|   IN VOID                *Mem,
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|   IN UINTN               Size
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|   )
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| {
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|   EMMC_PEIM_MEM_BLOCK  *Head;
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|   EMMC_PEIM_MEM_BLOCK  *Block;
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|   UINT8                *ToFree;
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|   UINTN                AllocSize;
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|   UINTN                Byte;
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|   UINTN                Bit;
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|   UINTN                Count;
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| 
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|   Head      = Pool->Head;
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|   AllocSize = EMMC_PEIM_MEM_ROUND (Size);
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|   ToFree    = (UINT8 *)Mem;
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| 
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|   for (Block = Head; Block != NULL; Block = Block->Next) {
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|     //
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|     // scan the memory block list for the memory block that
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|     // completely contains the memory to free.
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|     //
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|     if ((Block->Buf <= ToFree) && ((ToFree + AllocSize) <= (Block->Buf + Block->BufLen))) {
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|       //
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|       // compute the start byte and bit in the bit array
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|       //
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|       Byte = ((ToFree - Block->Buf) / EMMC_PEIM_MEM_UNIT) / 8;
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|       Bit  = ((ToFree - Block->Buf) / EMMC_PEIM_MEM_UNIT) % 8;
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| 
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|       //
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|       // reset associated bits in bit array
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|       //
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|       for (Count = 0; Count < (AllocSize / EMMC_PEIM_MEM_UNIT); Count++) {
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|         ASSERT (EMMC_PEIM_MEM_BIT_IS_SET (Block->Bits[Byte], Bit));
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| 
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|         Block->Bits[Byte] = (UINT8)(Block->Bits[Byte] ^ EMMC_PEIM_MEM_BIT (Bit));
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|         EMMC_PEIM_NEXT_BIT (Byte, Bit);
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|       }
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| 
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|       break;
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|     }
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|   }
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| 
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|   //
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|   // If Block == NULL, it means that the current memory isn't
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|   // in the host controller's pool. This is critical because
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|   // the caller has passed in a wrong memory point
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|   //
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|   ASSERT (Block != NULL);
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| 
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|   //
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|   // Release the current memory block if it is empty and not the head
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|   //
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|   if ((Block != Head) && EmmcPeimIsMemBlockEmpty (Block)) {
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|     EmmcPeimFreeMemBlock (Pool, Block);
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|   }
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| 
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|   return;
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| }
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