mirror of
https://github.com/CloverHackyColor/CloverBootloader.git
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7c0aa811ec
Signed-off-by: Sergey Isakov <isakov-sl@bk.ru>
312 lines
7.0 KiB
C
312 lines
7.0 KiB
C
/** @file
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Common I/O Library routines.
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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 "BaseIoLibIntrinsicInternal.h"
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/**
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Reads a 64-bit I/O port.
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Reads the 64-bit I/O port specified by Port. The 64-bit read value is returned.
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This function must guarantee that all I/O read and write operations are
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serialized.
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If 64-bit I/O port operations are not supported, then ASSERT().
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If Port is not aligned on a 64-bit boundary, then ASSERT().
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@param Port The I/O port to read.
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@return The value read.
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**/
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UINT64
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EFIAPI
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IoRead64 (
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IN UINTN Port
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)
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{
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ASSERT (FALSE);
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return 0;
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}
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/**
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Writes a 64-bit I/O port.
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Writes the 64-bit I/O port specified by Port with the value specified by Value
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and returns Value. This function must guarantee that all I/O read and write
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operations are serialized.
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If 64-bit I/O port operations are not supported, then ASSERT().
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If Port is not aligned on a 64-bit boundary, then ASSERT().
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@param Port The I/O port to write.
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@param Value The value to write to the I/O port.
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@return The value written the I/O port.
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**/
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UINT64
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EFIAPI
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IoWrite64 (
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IN UINTN Port,
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IN UINT64 Value
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)
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{
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ASSERT (FALSE);
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return 0;
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}
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/**
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Reads an 8-bit MMIO register.
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Reads the 8-bit MMIO register specified by Address. The 8-bit read value is
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returned. This function must guarantee that all MMIO read and write
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operations are serialized.
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If 8-bit MMIO register operations are not supported, then ASSERT().
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@param Address The MMIO register to read.
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@return The value read.
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**/
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UINT8
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EFIAPI
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MmioRead8 (
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IN UINTN Address
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)
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{
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UINT8 Value;
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MemoryFence ();
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Value = *(volatile UINT8*)Address;
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MemoryFence ();
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return Value;
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}
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/**
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Writes an 8-bit MMIO register.
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Writes the 8-bit MMIO register specified by Address with the value specified
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by Value and returns Value. This function must guarantee that all MMIO read
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and write operations are serialized.
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If 8-bit MMIO register operations are not supported, then ASSERT().
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@param Address The MMIO register to write.
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@param Value The value to write to the MMIO register.
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@return Value.
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**/
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UINT8
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EFIAPI
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MmioWrite8 (
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IN UINTN Address,
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IN UINT8 Value
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)
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{
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MemoryFence ();
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*(volatile UINT8*)Address = Value;
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MemoryFence ();
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return Value;
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}
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/**
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Reads a 16-bit MMIO register.
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Reads the 16-bit MMIO register specified by Address. The 16-bit read value is
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returned. This function must guarantee that all MMIO read and write
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operations are serialized.
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If 16-bit MMIO register operations are not supported, then ASSERT().
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If Address is not aligned on a 16-bit boundary, then ASSERT().
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@param Address The MMIO register to read.
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@return The value read.
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**/
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UINT16
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EFIAPI
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MmioRead16 (
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IN UINTN Address
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)
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{
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UINT16 Value;
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ASSERT ((Address & 1) == 0);
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MemoryFence ();
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Value = *(volatile UINT16*)Address;
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MemoryFence ();
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return Value;
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}
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/**
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Writes a 16-bit MMIO register.
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Writes the 16-bit MMIO register specified by Address with the value specified
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by Value and returns Value. This function must guarantee that all MMIO read
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and write operations are serialized.
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If 16-bit MMIO register operations are not supported, then ASSERT().
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If Address is not aligned on a 16-bit boundary, then ASSERT().
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@param Address The MMIO register to write.
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@param Value The value to write to the MMIO register.
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@return Value.
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**/
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UINT16
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EFIAPI
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MmioWrite16 (
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IN UINTN Address,
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IN UINT16 Value
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)
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{
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ASSERT ((Address & 1) == 0);
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MemoryFence ();
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*(volatile UINT16*)Address = Value;
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MemoryFence ();
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return Value;
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}
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/**
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Reads a 32-bit MMIO register.
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Reads the 32-bit MMIO register specified by Address. The 32-bit read value is
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returned. This function must guarantee that all MMIO read and write
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operations are serialized.
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If 32-bit MMIO register operations are not supported, then ASSERT().
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If Address is not aligned on a 32-bit boundary, then ASSERT().
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@param Address The MMIO register to read.
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@return The value read.
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**/
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UINT32
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EFIAPI
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MmioRead32 (
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IN UINTN Address
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)
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{
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UINT32 Value;
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ASSERT ((Address & 3) == 0);
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MemoryFence ();
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Value = *(volatile UINT32*)Address;
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MemoryFence ();
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return Value;
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}
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/**
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Writes a 32-bit MMIO register.
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Writes the 32-bit MMIO register specified by Address with the value specified
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by Value and returns Value. This function must guarantee that all MMIO read
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and write operations are serialized.
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If 32-bit MMIO register operations are not supported, then ASSERT().
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If Address is not aligned on a 32-bit boundary, then ASSERT().
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@param Address The MMIO register to write.
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@param Value The value to write to the MMIO register.
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@return Value.
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**/
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UINT32
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EFIAPI
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MmioWrite32 (
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IN UINTN Address,
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IN UINT32 Value
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)
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{
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ASSERT ((Address & 3) == 0);
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MemoryFence ();
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*(volatile UINT32*)Address = Value;
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MemoryFence ();
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return Value;
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}
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/**
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Reads a 64-bit MMIO register.
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Reads the 64-bit MMIO register specified by Address. The 64-bit read value is
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returned. This function must guarantee that all MMIO read and write
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operations are serialized.
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If 64-bit MMIO register operations are not supported, then ASSERT().
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If Address is not aligned on a 64-bit boundary, then ASSERT().
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@param Address The MMIO register to read.
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@return The value read.
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**/
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UINT64
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EFIAPI
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MmioRead64 (
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IN UINTN Address
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)
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{
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UINT64 Value;
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ASSERT ((Address & 7) == 0);
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MemoryFence ();
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Value = *(volatile UINT64*)Address;
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MemoryFence ();
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return Value;
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}
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/**
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Writes a 64-bit MMIO register.
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Writes the 64-bit MMIO register specified by Address with the value specified
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by Value and returns Value. This function must guarantee that all MMIO read
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and write operations are serialized.
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If 64-bit MMIO register operations are not supported, then ASSERT().
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If Address is not aligned on a 64-bit boundary, then ASSERT().
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@param Address The MMIO register to write.
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@param Value The value to write to the MMIO register.
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**/
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UINT64
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EFIAPI
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MmioWrite64 (
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IN UINTN Address,
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IN UINT64 Value
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)
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{
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ASSERT ((Address & 7) == 0);
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MemoryFence ();
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*(volatile UINT64*)Address = Value;
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MemoryFence ();
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return Value;
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}
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