mirror of https://github.com/acidanthera/audk.git
366 lines
9.7 KiB
C
366 lines
9.7 KiB
C
/** @file
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General purpose supporting routines for FAT recovery PEIM
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Copyright (c) 2006 - 2018, 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 "FatLitePeim.h"
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#define CHAR_FAT_VALID 0x01
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/**
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Converts a union code character to upper case.
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This functions converts a unicode character to upper case.
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If the input Letter is not a lower-cased letter,
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the original value is returned.
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@param Letter The input unicode character.
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@return The upper cased letter.
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**/
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CHAR16
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ToUpper (
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IN CHAR16 Letter
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)
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{
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if (('a' <= Letter) && (Letter <= 'z')) {
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Letter = (CHAR16)(Letter - 0x20);
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}
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return Letter;
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}
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/**
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Reads a block of data from the block device by calling
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underlying Block I/O service.
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@param PrivateData Global memory map for accessing global variables
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@param BlockDeviceNo The index for the block device number.
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@param Lba The logic block address to read data from.
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@param BufferSize The size of data in byte to read.
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@param Buffer The buffer of the
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@retval EFI_DEVICE_ERROR The specified block device number exceeds the maximum
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device number.
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@retval EFI_DEVICE_ERROR The maximum address has exceeded the maximum address
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of the block device.
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**/
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EFI_STATUS
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FatReadBlock (
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IN PEI_FAT_PRIVATE_DATA *PrivateData,
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IN UINTN BlockDeviceNo,
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IN EFI_PEI_LBA Lba,
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IN UINTN BufferSize,
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OUT VOID *Buffer
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)
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{
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EFI_STATUS Status;
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PEI_FAT_BLOCK_DEVICE *BlockDev;
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if (BlockDeviceNo > PEI_FAT_MAX_BLOCK_DEVICE - 1) {
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return EFI_DEVICE_ERROR;
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}
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Status = EFI_SUCCESS;
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BlockDev = &(PrivateData->BlockDevice[BlockDeviceNo]);
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if (BufferSize > MultU64x32 (BlockDev->LastBlock - Lba + 1, BlockDev->BlockSize)) {
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return EFI_DEVICE_ERROR;
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}
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if (!BlockDev->Logical) {
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//
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// Status = BlockDev->ReadFunc
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// (PrivateData->PeiServices, BlockDev->PhysicalDevNo, Lba, BufferSize, Buffer);
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//
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if (BlockDev->BlockIo2 != NULL) {
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Status = BlockDev->BlockIo2->ReadBlocks (
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(EFI_PEI_SERVICES **)GetPeiServicesTablePointer (),
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BlockDev->BlockIo2,
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BlockDev->PhysicalDevNo,
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Lba,
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BufferSize,
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Buffer
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);
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} else {
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Status = BlockDev->BlockIo->ReadBlocks (
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(EFI_PEI_SERVICES **)GetPeiServicesTablePointer (),
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BlockDev->BlockIo,
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BlockDev->PhysicalDevNo,
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Lba,
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BufferSize,
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Buffer
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);
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}
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} else {
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Status = FatReadDisk (
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PrivateData,
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BlockDev->ParentDevNo,
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BlockDev->StartingPos + MultU64x32 (Lba, BlockDev->BlockSize),
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BufferSize,
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Buffer
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);
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}
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return Status;
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}
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/**
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Find a cache block designated to specific Block device and Lba.
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If not found, invalidate an oldest one and use it. (LRU cache)
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@param PrivateData the global memory map.
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@param BlockDeviceNo the Block device.
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@param Lba the Logical Block Address
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@param CachePtr Ptr to the starting address of the memory holding the
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data;
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@retval EFI_SUCCESS The function completed successfully.
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@retval EFI_DEVICE_ERROR Something error while accessing media.
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**/
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EFI_STATUS
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FatGetCacheBlock (
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IN PEI_FAT_PRIVATE_DATA *PrivateData,
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IN UINTN BlockDeviceNo,
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IN UINT64 Lba,
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OUT CHAR8 **CachePtr
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)
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{
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EFI_STATUS Status;
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PEI_FAT_CACHE_BUFFER *CacheBuffer;
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INTN Index;
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STATIC UINT8 Seed;
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Status = EFI_SUCCESS;
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CacheBuffer = NULL;
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//
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// go through existing cache buffers
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//
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for (Index = 0; Index < PEI_FAT_CACHE_SIZE; Index++) {
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CacheBuffer = &(PrivateData->CacheBuffer[Index]);
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if (CacheBuffer->Valid && (CacheBuffer->BlockDeviceNo == BlockDeviceNo) && (CacheBuffer->Lba == Lba)) {
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break;
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}
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}
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if (Index < PEI_FAT_CACHE_SIZE) {
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*CachePtr = (CHAR8 *)CacheBuffer->Buffer;
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return EFI_SUCCESS;
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}
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//
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// We have to find an invalid cache buffer
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//
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for (Index = 0; Index < PEI_FAT_CACHE_SIZE; Index++) {
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if (!PrivateData->CacheBuffer[Index].Valid) {
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break;
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}
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}
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//
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// Use the cache buffer
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//
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if (Index == PEI_FAT_CACHE_SIZE) {
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Index = (Seed++) % PEI_FAT_CACHE_SIZE;
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}
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//
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// Current device ID should be less than maximum device ID.
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//
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if (BlockDeviceNo >= PEI_FAT_MAX_BLOCK_DEVICE) {
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return EFI_DEVICE_ERROR;
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}
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CacheBuffer = &(PrivateData->CacheBuffer[Index]);
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CacheBuffer->BlockDeviceNo = BlockDeviceNo;
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CacheBuffer->Lba = Lba;
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CacheBuffer->Size = PrivateData->BlockDevice[BlockDeviceNo].BlockSize;
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//
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// Read in the data
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//
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Status = FatReadBlock (
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PrivateData,
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BlockDeviceNo,
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Lba,
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CacheBuffer->Size,
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CacheBuffer->Buffer
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);
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if (EFI_ERROR (Status)) {
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return EFI_DEVICE_ERROR;
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}
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CacheBuffer->Valid = TRUE;
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*CachePtr = (CHAR8 *)CacheBuffer->Buffer;
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return Status;
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}
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/**
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Disk reading.
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@param PrivateData the global memory map;
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@param BlockDeviceNo the block device to read;
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@param StartingAddress the starting address.
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@param Size the amount of data to read.
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@param Buffer the buffer holding the data
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@retval EFI_SUCCESS The function completed successfully.
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@retval EFI_DEVICE_ERROR Something error.
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**/
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EFI_STATUS
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FatReadDisk (
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IN PEI_FAT_PRIVATE_DATA *PrivateData,
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IN UINTN BlockDeviceNo,
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IN UINT64 StartingAddress,
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IN UINTN Size,
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OUT VOID *Buffer
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)
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{
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EFI_STATUS Status;
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UINT32 BlockSize;
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CHAR8 *BufferPtr;
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CHAR8 *CachePtr;
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UINT32 Offset;
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UINT64 Lba;
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UINT64 OverRunLba;
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UINTN Amount;
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Status = EFI_SUCCESS;
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BufferPtr = Buffer;
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BlockSize = PrivateData->BlockDevice[BlockDeviceNo].BlockSize;
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//
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// Read underrun
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//
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Lba = DivU64x32Remainder (StartingAddress, BlockSize, &Offset);
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Status = FatGetCacheBlock (PrivateData, BlockDeviceNo, Lba, &CachePtr);
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if (EFI_ERROR (Status)) {
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return EFI_DEVICE_ERROR;
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}
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Amount = Size < (BlockSize - Offset) ? Size : (BlockSize - Offset);
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CopyMem (BufferPtr, CachePtr + Offset, Amount);
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if (Size == Amount) {
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return EFI_SUCCESS;
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}
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Size -= Amount;
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BufferPtr += Amount;
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StartingAddress += Amount;
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Lba += 1;
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//
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// Read aligned parts
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//
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OverRunLba = Lba + DivU64x32Remainder (Size, BlockSize, &Offset);
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Size -= Offset;
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Status = FatReadBlock (PrivateData, BlockDeviceNo, Lba, Size, BufferPtr);
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if (EFI_ERROR (Status)) {
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return EFI_DEVICE_ERROR;
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}
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BufferPtr += Size;
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//
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// Read overrun
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//
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if (Offset != 0) {
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Status = FatGetCacheBlock (PrivateData, BlockDeviceNo, OverRunLba, &CachePtr);
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if (EFI_ERROR (Status)) {
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return EFI_DEVICE_ERROR;
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}
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CopyMem (BufferPtr, CachePtr, Offset);
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}
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return Status;
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}
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/**
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This version is different from the version in Unicode collation
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protocol in that this version strips off trailing blanks.
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Converts an 8.3 FAT file name using an OEM character set
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to a Null-terminated Unicode string.
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Here does not expand DBCS FAT chars.
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@param FatSize The size of the string Fat in bytes.
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@param Fat A pointer to a Null-terminated string that contains
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an 8.3 file name using an OEM character set.
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@param Str A pointer to a Null-terminated Unicode string. The
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string must be allocated in advance to hold FatSize
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Unicode characters
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**/
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VOID
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EngFatToStr (
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IN UINTN FatSize,
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IN CHAR8 *Fat,
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OUT CHAR16 *Str
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)
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{
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CHAR16 *String;
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String = Str;
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//
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// No DBCS issues, just expand and add null terminate to end of string
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//
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while (*Fat != 0 && FatSize != 0) {
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if (*Fat == ' ') {
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break;
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}
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*String = *Fat;
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String += 1;
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Fat += 1;
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FatSize -= 1;
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}
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*String = 0;
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}
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/**
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Performs a case-insensitive comparison of two Null-terminated Unicode strings.
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@param PrivateData Global memory map for accessing global variables
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@param Str1 First string to perform case insensitive comparison.
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@param Str2 Second string to perform case insensitive comparison.
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**/
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BOOLEAN
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EngStriColl (
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IN PEI_FAT_PRIVATE_DATA *PrivateData,
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IN CHAR16 *Str1,
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IN CHAR16 *Str2
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)
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{
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CHAR16 UpperS1;
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CHAR16 UpperS2;
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UpperS1 = ToUpper (*Str1);
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UpperS2 = ToUpper (*Str2);
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while (*Str1 != 0) {
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if (UpperS1 != UpperS2) {
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return FALSE;
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}
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Str1++;
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Str2++;
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UpperS1 = ToUpper (*Str1);
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UpperS2 = ToUpper (*Str2);
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}
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return (BOOLEAN)((*Str2 != 0) ? FALSE : TRUE);
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}
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