mirror of
https://github.com/CloverHackyColor/CloverBootloader.git
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245 lines
5.9 KiB
C
245 lines
5.9 KiB
C
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/** @file
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Stateful and implicitly initialized fw_cfg library implementation.
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Copyright (C) 2013, Red Hat, Inc.
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Copyright (c) 2011 - 2013, Intel Corporation. All rights reserved.<BR>
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Copyright (c) 2017, Advanced Micro Devices. All rights reserved.<BR>
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SPDX-License-Identifier: BSD-2-Clause-Patent
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**/
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#include <PiPei.h>
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#include <Library/BaseLib.h>
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#include <Library/DebugLib.h>
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#include <Library/HobLib.h>
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#include <Library/IoLib.h>
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#include <Library/PlatformInitLib.h>
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#include <Library/QemuFwCfgLib.h>
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#include <WorkArea.h>
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#include "QemuFwCfgLibInternal.h"
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/**
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Check if it is Tdx guest
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@retval TRUE It is Tdx guest
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@retval FALSE It is not Tdx guest
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**/
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STATIC
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BOOLEAN
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QemuFwCfgIsCcGuest (
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VOID
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)
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{
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CONFIDENTIAL_COMPUTING_WORK_AREA_HEADER *CcWorkAreaHeader;
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CcWorkAreaHeader = (CONFIDENTIAL_COMPUTING_WORK_AREA_HEADER *)FixedPcdGet32 (PcdOvmfWorkAreaBase);
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return (CcWorkAreaHeader != NULL && CcWorkAreaHeader->GuestType != CcGuestTypeNonEncrypted);
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}
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/**
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Returns a boolean indicating if the firmware configuration interface
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is available or not.
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This function may change fw_cfg state.
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@retval TRUE The interface is available
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@retval FALSE The interface is not available
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**/
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BOOLEAN
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EFIAPI
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QemuFwCfgIsAvailable (
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VOID
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)
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{
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return InternalQemuFwCfgIsAvailable ();
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}
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STATIC
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VOID
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QemuFwCfgProbe (
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BOOLEAN *Supported,
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BOOLEAN *DmaSupported
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)
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{
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UINT32 Signature;
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UINT32 Revision;
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BOOLEAN CcGuest;
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// Use direct Io* calls for probing to avoid recursion.
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IoWrite16 (FW_CFG_IO_SELECTOR, (UINT16)QemuFwCfgItemSignature);
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IoReadFifo8 (FW_CFG_IO_DATA, sizeof Signature, &Signature);
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IoWrite16 (FW_CFG_IO_SELECTOR, (UINT16)QemuFwCfgItemInterfaceVersion);
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IoReadFifo8 (FW_CFG_IO_DATA, sizeof Revision, &Revision);
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CcGuest = QemuFwCfgIsCcGuest ();
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*Supported = FALSE;
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*DmaSupported = FALSE;
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if ((Signature == SIGNATURE_32 ('Q', 'E', 'M', 'U')) && (Revision >= 1)) {
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*Supported = TRUE;
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if ((Revision & FW_CFG_F_DMA) && !CcGuest) {
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*DmaSupported = TRUE;
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}
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}
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DEBUG ((
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DEBUG_INFO,
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"%a: Supported %d, DMA %d\n",
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__func__,
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*Supported,
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*DmaSupported
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));
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}
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STATIC
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EFI_HOB_PLATFORM_INFO *
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QemuFwCfgGetPlatformInfo (
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VOID
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)
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{
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EFI_HOB_PLATFORM_INFO *PlatformInfoHob;
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EFI_HOB_GUID_TYPE *GuidHob;
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GuidHob = GetFirstGuidHob (&gUefiOvmfPkgPlatformInfoGuid);
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if (GuidHob == NULL) {
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return NULL;
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}
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PlatformInfoHob = (EFI_HOB_PLATFORM_INFO *)GET_GUID_HOB_DATA (GuidHob);
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if (!PlatformInfoHob->QemuFwCfgChecked) {
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QemuFwCfgProbe (
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&PlatformInfoHob->QemuFwCfgSupported,
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&PlatformInfoHob->QemuFwCfgDmaSupported
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);
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PlatformInfoHob->QemuFwCfgChecked = TRUE;
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}
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return PlatformInfoHob;
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}
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RETURN_STATUS
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EFIAPI
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QemuFwCfgInitialize (
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VOID
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)
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{
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return RETURN_SUCCESS;
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}
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/**
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Returns a boolean indicating if the firmware configuration interface is
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available for library-internal purposes.
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This function never changes fw_cfg state.
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@retval TRUE The interface is available internally.
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@retval FALSE The interface is not available internally.
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**/
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BOOLEAN
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InternalQemuFwCfgIsAvailable (
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VOID
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)
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{
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EFI_HOB_PLATFORM_INFO *PlatformInfoHob = QemuFwCfgGetPlatformInfo ();
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return PlatformInfoHob->QemuFwCfgSupported;
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}
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/**
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Returns a boolean indicating whether QEMU provides the DMA-like access method
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for fw_cfg.
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@retval TRUE The DMA-like access method is available.
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@retval FALSE The DMA-like access method is unavailable.
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**/
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BOOLEAN
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InternalQemuFwCfgDmaIsAvailable (
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VOID
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)
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{
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EFI_HOB_PLATFORM_INFO *PlatformInfoHob = QemuFwCfgGetPlatformInfo ();
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return PlatformInfoHob->QemuFwCfgDmaSupported;
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}
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/**
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Transfer an array of bytes, or skip a number of bytes, using the DMA
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interface.
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@param[in] Size Size in bytes to transfer or skip.
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@param[in,out] Buffer Buffer to read data into or write data from. Ignored,
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and may be NULL, if Size is zero, or Control is
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FW_CFG_DMA_CTL_SKIP.
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@param[in] Control One of the following:
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FW_CFG_DMA_CTL_WRITE - write to fw_cfg from Buffer.
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FW_CFG_DMA_CTL_READ - read from fw_cfg into Buffer.
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FW_CFG_DMA_CTL_SKIP - skip bytes in fw_cfg.
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**/
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VOID
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InternalQemuFwCfgDmaBytes (
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IN UINT32 Size,
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IN OUT VOID *Buffer OPTIONAL,
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IN UINT32 Control
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)
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{
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volatile FW_CFG_DMA_ACCESS Access;
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UINT32 AccessHigh, AccessLow;
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UINT32 Status;
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ASSERT (
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Control == FW_CFG_DMA_CTL_WRITE || Control == FW_CFG_DMA_CTL_READ ||
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Control == FW_CFG_DMA_CTL_SKIP
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);
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if (Size == 0) {
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return;
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}
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//
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// TDX does not support DMA operations in PEI stage, we should
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// not have reached here.
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//
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ASSERT (!QemuFwCfgIsCcGuest ());
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Access.Control = SwapBytes32 (Control);
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Access.Length = SwapBytes32 (Size);
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Access.Address = SwapBytes64 ((UINTN)Buffer);
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//
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// Delimit the transfer from (a) modifications to Access, (b) in case of a
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// write, from writes to Buffer by the caller.
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//
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MemoryFence ();
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//
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// Start the transfer.
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//
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AccessHigh = (UINT32)RShiftU64 ((UINTN)&Access, 32);
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AccessLow = (UINT32)(UINTN)&Access;
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IoWrite32 (FW_CFG_IO_DMA_ADDRESS, SwapBytes32 (AccessHigh));
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IoWrite32 (FW_CFG_IO_DMA_ADDRESS + 4, SwapBytes32 (AccessLow));
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//
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// Don't look at Access.Control before starting the transfer.
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//
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MemoryFence ();
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//
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// Wait for the transfer to complete.
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//
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do {
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Status = SwapBytes32 (Access.Control);
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ASSERT ((Status & FW_CFG_DMA_CTL_ERROR) == 0);
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} while (Status != 0);
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//
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// After a read, the caller will want to use Buffer.
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//
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MemoryFence ();
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}
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