mirror of https://github.com/acidanthera/audk.git
258 lines
7.3 KiB
C
258 lines
7.3 KiB
C
/** @file
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Pei Core Main Entry Point
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Copyright (c) 2006, Intel Corporation
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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 "PeiMain.h"
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EFI_PEI_PPI_DESCRIPTOR mMemoryDiscoveredPpi = {
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(EFI_PEI_PPI_DESCRIPTOR_PPI | EFI_PEI_PPI_DESCRIPTOR_TERMINATE_LIST),
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&gEfiPeiMemoryDiscoveredPpiGuid,
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NULL
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};
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///
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/// Pei service instance
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///
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EFI_PEI_SERVICES gPs = {
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{
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PEI_SERVICES_SIGNATURE,
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PEI_SERVICES_REVISION,
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sizeof (EFI_PEI_SERVICES),
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0,
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0
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},
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PeiInstallPpi,
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PeiReInstallPpi,
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PeiLocatePpi,
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PeiNotifyPpi,
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PeiGetBootMode,
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PeiSetBootMode,
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PeiGetHobList,
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PeiCreateHob,
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PeiFvFindNextVolume,
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PeiFfsFindNextFile,
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PeiFfsFindSectionData,
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PeiInstallPeiMemory,
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PeiAllocatePages,
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PeiAllocatePool,
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(EFI_PEI_COPY_MEM)CopyMem,
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(EFI_PEI_SET_MEM)SetMem,
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PeiReportStatusCode,
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PeiResetSystem,
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NULL,
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NULL,
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PeiFfsFindFileByName,
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PeiFfsGetFileInfo,
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PeiFfsGetVolumeInfo,
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PeiRegisterForShadow
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};
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/**
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This routine is invoked by main entry of PeiMain module during transition
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from SEC to PEI. After switching stack in the PEI core, it will restart
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with the old core data.
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@param SecCoreData Points to a data structure containing information about the PEI core's operating
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environment, such as the size and location of temporary RAM, the stack location and
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the BFV location.
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@param PpiList Points to a list of one or more PPI descriptors to be installed initially by the PEI core.
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An empty PPI list consists of a single descriptor with the end-tag
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EFI_PEI_PPI_DESCRIPTOR_TERMINATE_LIST. As part of its initialization
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phase, the PEI Foundation will add these SEC-hosted PPIs to its PPI database such
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that both the PEI Foundation and any modules can leverage the associated service
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calls and/or code in these early PPIs
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@param Data Pointer to old core data that is used to initialize the
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core's data areas.
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If NULL, it is first PeiCore entering.
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**/
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VOID
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EFIAPI
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PeiCore (
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IN CONST EFI_SEC_PEI_HAND_OFF *SecCoreData,
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IN CONST EFI_PEI_PPI_DESCRIPTOR *PpiList,
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IN VOID *Data
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)
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{
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PEI_CORE_INSTANCE PrivateData;
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EFI_STATUS Status;
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PEI_CORE_TEMP_POINTERS TempPtr;
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UINT64 Tick;
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PEI_CORE_INSTANCE *OldCoreData;
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EFI_PEI_CPU_IO_PPI *CpuIo;
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EFI_PEI_PCI_CFG2_PPI *PciCfg;
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PEICORE_FUNCTION_POINTER ShadowedPeiCore;
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Tick = 0;
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OldCoreData = (PEI_CORE_INSTANCE *) Data;
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//
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// Record the system tick for first entering PeiCore.
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// This tick is duration of executing platform seccore module.
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//
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if (PerformanceMeasurementEnabled()) {
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if (OldCoreData == NULL) {
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Tick = GetPerformanceCounter ();
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}
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}
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if (OldCoreData != NULL) {
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ShadowedPeiCore = (PEICORE_FUNCTION_POINTER) (UINTN) OldCoreData->ShadowedPeiCore;
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//
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// PeiCore has been shadowed to memory for first entering, so
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// just jump to PeiCore in memory here.
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//
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if (ShadowedPeiCore != NULL) {
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OldCoreData->ShadowedPeiCore = NULL;
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ShadowedPeiCore (
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SecCoreData,
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PpiList,
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OldCoreData
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);
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}
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CopyMem (&PrivateData, OldCoreData, sizeof (PEI_CORE_INSTANCE));
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CpuIo = (VOID*)PrivateData.ServiceTableShadow.CpuIo;
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PciCfg = (VOID*)PrivateData.ServiceTableShadow.PciCfg;
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CopyMem (&PrivateData.ServiceTableShadow, &gPs, sizeof (gPs));
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PrivateData.ServiceTableShadow.CpuIo = CpuIo;
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PrivateData.ServiceTableShadow.PciCfg = PciCfg;
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} else {
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//
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// If OldCoreData is NULL, means current is first Peicore's entering.
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//
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ZeroMem (&PrivateData, sizeof (PEI_CORE_INSTANCE));
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PrivateData.Signature = PEI_CORE_HANDLE_SIGNATURE;
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CopyMem (&PrivateData.ServiceTableShadow, &gPs, sizeof (gPs));
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}
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PrivateData.PS = &PrivateData.ServiceTableShadow;
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//
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// Initialize libraries that the PeiCore is linked against
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//
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ProcessLibraryConstructorList (NULL, (CONST EFI_PEI_SERVICES **)&PrivateData.PS);
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InitializeMemoryServices (&PrivateData, SecCoreData, OldCoreData);
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InitializePpiServices (&PrivateData, OldCoreData);
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//
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// Save PeiServicePointer so that it can be retrieved anywhere.
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//
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SetPeiServicesTablePointer((CONST EFI_PEI_SERVICES **) &PrivateData.PS);
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if (OldCoreData != NULL) {
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PERF_END (NULL,"PreMem", NULL, 0);
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PERF_START (NULL,"PostMem", NULL, 0);
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//
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// Alert any listeners that there is permanent memory available
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//
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PERF_START (NULL,"DisMem", NULL, 0);
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Status = PeiServicesInstallPpi (&mMemoryDiscoveredPpi);
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PERF_END (NULL,"DisMem", NULL, 0);
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} else {
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//
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// Report Status Code EFI_SW_PC_INIT
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//
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REPORT_STATUS_CODE (
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EFI_PROGRESS_CODE,
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FixedPcdGet32 (PcdStatusCodeValuePeiCoreEntry)
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);
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PERF_START (NULL, "SEC", NULL, 1);
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PERF_END (NULL, "SEC", NULL, Tick);
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PERF_START (NULL,"PEI", NULL, Tick);
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//
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// If first pass, start performance measurement.
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//
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PERF_START (NULL,"PreMem", NULL, Tick);
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//
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// If SEC provided any PPI services to PEI, install them.
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//
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if (PpiList != NULL) {
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Status = PeiServicesInstallPpi (PpiList);
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ASSERT_EFI_ERROR (Status);
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}
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}
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InitializeSecurityServices (&PrivateData.PS, OldCoreData);
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InitializeDispatcherData (&PrivateData, OldCoreData, SecCoreData);
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//
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// Install Pei Load File PPI.
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//
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InitializeImageServices (&PrivateData, OldCoreData);
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//
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// Call PEIM dispatcher
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//
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PeiDispatcher (SecCoreData, &PrivateData);
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//
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// Check if InstallPeiMemory service was called.
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//
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ASSERT(PrivateData.PeiMemoryInstalled == TRUE);
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//
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// Till now, PEI phase will be finished, get performace count
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// for computing duration of PEI phase
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//
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PERF_END (NULL, "PostMem", NULL, 0);
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Status = PeiServicesLocatePpi (
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&gEfiDxeIplPpiGuid,
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0,
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NULL,
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(VOID **)&TempPtr.DxeIpl
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);
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ASSERT_EFI_ERROR (Status);
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//
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// Enter DxeIpl to load Dxe core.
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//
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DEBUG ((EFI_D_INFO, "DXE IPL Entry\n"));
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Status = TempPtr.DxeIpl->Entry (
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TempPtr.DxeIpl,
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&PrivateData.PS,
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PrivateData.HobList
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);
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//
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// Should never reach here.
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//
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ASSERT_EFI_ERROR (Status);
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CpuDeadLoop();
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}
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