mirror of https://github.com/acidanthera/audk.git
260 lines
7.4 KiB
C
260 lines
7.4 KiB
C
/** @file
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Null instance of Memory Test Library.
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Copyright (c) 2009, Intel Corporation.<BR>
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All rights reserved. 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 <Base.h>
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#include <Library/MemoryTestLib.h>
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#include <Library/BaseMemoryLib.h>
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#include <Library/CacheMaintenanceLib.h>
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#include <Library/DebugLib.h>
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#include <Library/PcdLib.h>
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#include <Library/ReportStatusCodeLib.h>
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UINT32 TestPattern[] = {
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0x5a5a5a5a,
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0xa5a5a5a5,
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0x5a5a5a5a,
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0xa5a5a5a5,
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0x5a5a5a5a,
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0xa5a5a5a5,
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0x5a5a5a5a,
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0xa5a5a5a5,
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0x5a5a5a5a,
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0xa5a5a5a5,
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0x5a5a5a5a,
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0xa5a5a5a5,
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0x5a5a5a5a,
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0xa5a5a5a5,
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0x5a5a5a5a,
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0xa5a5a5a5
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};
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/**
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Internal function to compare two memory buffers of a given length.
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This is the internal function to compare two memory buffers. We cannot
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use CompareMem() in BaseLib, for that function ASSERT when buffer address
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is zero.
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@param DestinationBuffer First memory buffer
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@param SourceBuffer Second memory buffer
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@param Length Length of DestinationBuffer and SourceBuffer memory
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regions to compare.
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@return 0 All Length bytes of the two buffers are identical.
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@retval Non-zero The first mismatched byte in SourceBuffer subtracted from the first
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mismatched byte in DestinationBuffer.
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**/
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INTN
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CompareMemoryWorker (
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IN CONST VOID *DestinationBuffer,
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IN CONST VOID *SourceBuffer,
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IN UINTN Length
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)
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{
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while ((--Length != 0) &&
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(*(INT8*)DestinationBuffer == *(INT8*)SourceBuffer)) {
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DestinationBuffer = (INT8*)DestinationBuffer + 1;
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SourceBuffer = (INT8*)SourceBuffer + 1;
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}
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return (INTN)*(UINT8*)DestinationBuffer - (INTN)*(UINT8*)SourceBuffer;
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}
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/**
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Internal worker function for system memory range test.
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This function is the internal worker function for system memory range test.
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It writes test pattern to memory range and then reads back to check if memory
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works well.
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@param StartAddress Start address of the memory range to test.
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@param Length Length of the memory range to test.
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@param ErrorAddress Address of the memory where error is encountered.
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@retval RETURN_SUCCESS The memory range passes test.
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@retval RETURN_DEVICE_ERROR The memory range does not pass test.
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**/
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RETURN_STATUS
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MemoryTestWorker (
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IN VOID *StartAddress,
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IN UINT64 Length,
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IN UINTN SpanSize,
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OUT VOID **ErrorAddress
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)
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{
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VOID *TempAddress;
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//
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// Make sure we don't try and test anything above the max physical address range
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//
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ASSERT ((UINTN) StartAddress + Length < MAX_ADDRESS);
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REPORT_STATUS_CODE (EFI_PROGRESS_CODE, PcdGet32 (PcdStatusCodeValueMemoryTestStarted));
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//
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// Write the test pattern into memory range
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//
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TempAddress = StartAddress;
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while ((UINTN) TempAddress < (UINTN) StartAddress + Length) {
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CopyMem (TempAddress, TestPattern, sizeof (TestPattern));
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TempAddress = (VOID *) ((UINTN) TempAddress + SpanSize);
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}
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//
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// Write back and invalidate cache to make sure data is in memory
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//
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WriteBackInvalidateDataCacheRange (StartAddress, (UINTN) Length);
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//
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// Read pattern from memory and compare it
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//
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TempAddress = StartAddress;
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while ((UINTN) TempAddress < (UINTN) StartAddress + Length) {
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if (CompareMemoryWorker (TempAddress, TestPattern, sizeof (TestPattern)) != 0) {
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//
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// Value read back does not equal to the value written, so error is detected.
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//
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*ErrorAddress = TempAddress;
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REPORT_STATUS_CODE (EFI_ERROR_CODE | EFI_ERROR_UNRECOVERED, PcdGet32 (PcdStatusCodeValueUncorrectableMemoryError));
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return RETURN_DEVICE_ERROR;
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}
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TempAddress = (VOID *) ((UINTN) TempAddress + SpanSize);
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}
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return RETURN_SUCCESS;
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}
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/**
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Perform a quick system memory range test.
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This function performs a quick system memory range test. It leads to quick performance
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but least reliability.
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@param StartAddress Start address of the memory range to test.
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@param Length Length of the memory range to test.
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@param ErrorAddress Address of the memory where error is encountered.
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@retval RETURN_SUCCESS The memory range passes test.
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@retval RETURN_DEVICE_ERROR The memory range does not pass test.
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**/
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RETURN_STATUS
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EFIAPI
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QuickMemoryTest (
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IN VOID *StartAddress,
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IN UINT64 Length,
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OUT VOID **ErrorAddress
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)
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{
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RETURN_STATUS Status;
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Status = MemoryTestWorker (
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StartAddress,
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Length,
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sizeof (TestPattern) * 0x20000,
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ErrorAddress
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);
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return Status;
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}
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/**
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Test a system memory range with sparsely sampled memory units.
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This function tests a system memory range, whose memory units
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are sampled sparsely. It leads to relatively good performance
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and partial reliability.
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@param StartAddress Start address of the memory range to test.
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@param Length Length of the memory range to test.
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@param ErrorAddress Address of the memory where error is encountered.
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@retval RETURN_SUCCESS The memory range passes test.
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@retval RETURN_DEVICE_ERROR The memory range does not pass test.
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**/
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RETURN_STATUS
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EFIAPI
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SparseMemoryTest (
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IN VOID *StartAddress,
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IN UINT64 Length,
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OUT VOID **ErrorAddress
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)
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{
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RETURN_STATUS Status;
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Status = MemoryTestWorker (
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StartAddress,
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Length,
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sizeof (TestPattern) * 0x8000,
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ErrorAddress
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);
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return Status;
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}
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/**
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Test a system memory range with extensively sampled memory units.
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This function tests a system memory range, whose memory units
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are sampled extensively. Compared with SparseMemoryTest, it achieves
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more reliability and less performance.
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@param StartAddress Start address of the memory range to test.
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@param Length Length of the memory range to test.
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@param ErrorAddress Address of the memory where error is encountered.
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@retval RETURN_SUCCESS The memory range passes test.
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@retval RETURN_DEVICE_ERROR The memory range does not pass test.
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**/
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RETURN_STATUS
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EFIAPI
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ExtensiveMemoryTest (
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IN VOID *StartAddress,
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IN UINT64 Length,
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OUT VOID **ErrorAddress
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)
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{
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RETURN_STATUS Status;
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Status = MemoryTestWorker (
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StartAddress,
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Length,
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sizeof (TestPattern),
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ErrorAddress
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);
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return Status;
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}
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/**
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Check if soft ECC initialzation is needed for system
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@retval TRUE Soft ECC initialzation is needed.
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@retval FALSE Soft ECC initialzation is not needed.
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**/
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BOOLEAN
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EFIAPI
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IsSoftEccInitRequired (
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VOID
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)
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{
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return FALSE;
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}
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