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/** @file
Definition of Pei Core Structures and Services
Copyright (c) 2006 - 2025, Intel Corporation. All rights reserved.<BR>
SPDX-License-Identifier: BSD-2-Clause-Patent
**/
#pragma once
#include <PiPei.h>
#include <Ppi/DxeIpl.h>
#include <Ppi/DelayedDispatch.h>
#include <Ppi/EndOfPeiPhase.h>
#include <Ppi/MemoryDiscovered.h>
#include <Ppi/StatusCode.h>
#include <Ppi/Reset.h>
#include <Ppi/Reset2.h>
#include <Ppi/FirmwareVolume.h>
#include <Ppi/FirmwareVolumeInfo.h>
#include <Ppi/FirmwareVolumeInfo2.h>
#include <Ppi/Decompress.h>
#include <Ppi/GuidedSectionExtraction.h>
#include <Ppi/LoadFile.h>
#include <Ppi/Security2.h>
#include <Ppi/TemporaryRamSupport.h>
#include <Ppi/TemporaryRamDone.h>
#include <Ppi/SecHobData.h>
#include <Ppi/PeiCoreFvLocation.h>
#include <Ppi/MigrateTempRam.h>
#include <Library/DebugLib.h>
#include <Library/PeiCoreEntryPoint.h>
#include <Library/BaseLib.h>
#include <Library/HobLib.h>
#include <Library/PerformanceLib.h>
#include <Library/PeiServicesLib.h>
#include <Library/ReportStatusCodeLib.h>
#include <Library/PeCoffLib.h>
#include <Library/PeCoffGetEntryPointLib.h>
#include <Library/BaseMemoryLib.h>
#include <Library/CacheMaintenanceLib.h>
#include <Library/PcdLib.h>
#include <IndustryStandard/PeImage.h>
#include <Library/PeiServicesTablePointerLib.h>
#include <Library/MemoryAllocationLib.h>
#include <Library/TimerLib.h>
#include <Library/SafeIntLib.h>
#include <Guid/FirmwareFileSystem2.h>
#include <Guid/FirmwareFileSystem3.h>
#include <Guid/AprioriFileName.h>
#include <Guid/MigratedFvInfo.h>
#include <Guid/DelayedDispatch.h>
#include <Guid/MemoryTypeInformation.h>
#include <MemoryBin.h>
///
/// It is an FFS type extension used for PeiFindFileEx. It indicates current
/// FFS searching is for all PEIMs can be dispatched by PeiCore.
///
#define PEI_CORE_INTERNAL_FFS_FILE_DISPATCH_TYPE 0xff
///
/// Pei Core private data structures
///
typedef union {
EFI_PEI_PPI_DESCRIPTOR *Ppi;
EFI_PEI_NOTIFY_DESCRIPTOR *Notify;
VOID *Raw;
} PEI_PPI_LIST_POINTERS;
///
/// Number of PEI_PPI_LIST_POINTERS to grow by each time we run out of room
///
#define PPI_GROWTH_STEP 64
#define CALLBACK_NOTIFY_GROWTH_STEP 32
#define DISPATCH_NOTIFY_GROWTH_STEP 8
typedef struct {
UINTN CurrentCount;
UINTN MaxCount;
UINTN LastDispatchedCount;
///
/// MaxCount number of entries.
///
PEI_PPI_LIST_POINTERS *PpiPtrs;
} PEI_PPI_LIST;
typedef struct {
UINTN CurrentCount;
UINTN MaxCount;
///
/// MaxCount number of entries.
///
PEI_PPI_LIST_POINTERS *NotifyPtrs;
} PEI_CALLBACK_NOTIFY_LIST;
typedef struct {
UINTN CurrentCount;
UINTN MaxCount;
UINTN LastDispatchedCount;
///
/// MaxCount number of entries.
///
PEI_PPI_LIST_POINTERS *NotifyPtrs;
} PEI_DISPATCH_NOTIFY_LIST;
///
/// PPI database structure which contains three links:
/// PpiList, CallbackNotifyList and DispatchNotifyList.
///
typedef struct {
///
/// PPI List.
///
PEI_PPI_LIST PpiList;
///
/// Notify List at dispatch level.
///
PEI_CALLBACK_NOTIFY_LIST CallbackNotifyList;
///
/// Notify List at callback level.
///
PEI_DISPATCH_NOTIFY_LIST DispatchNotifyList;
} PEI_PPI_DATABASE;
//
// PEI_CORE_FV_HANDLE.PeimState
// Do not change these values as there is code doing math to change states.
// Look for Private->Fv[FvCount].PeimState[PeimCount]++;
//
#define PEIM_STATE_NOT_DISPATCHED 0x00
#define PEIM_STATE_DISPATCHED 0x01
#define PEIM_STATE_REGISTER_FOR_SHADOW 0x02
#define PEIM_STATE_DONE 0x03
//
// Number of FV instances to grow by each time we run out of room
//
#define FV_GROWTH_STEP 8
typedef struct {
EFI_FIRMWARE_VOLUME_HEADER *FvHeader;
EFI_PEI_FIRMWARE_VOLUME_PPI *FvPpi;
EFI_PEI_FV_HANDLE FvHandle;
UINTN PeimCount;
//
// Pointer to the buffer with the PeimCount number of Entries.
//
UINT8 *PeimState;
//
// Pointer to the buffer with the PeimCount number of Entries.
//
EFI_PEI_FILE_HANDLE *FvFileHandles;
BOOLEAN ScanFv;
UINT32 AuthenticationStatus;
} PEI_CORE_FV_HANDLE;
typedef struct {
EFI_GUID FvFormat;
VOID *FvInfo;
UINT32 FvInfoSize;
UINT32 AuthenticationStatus;
EFI_PEI_NOTIFY_DESCRIPTOR NotifyDescriptor;
} PEI_CORE_UNKNOW_FORMAT_FV_INFO;
#define CACHE_SETION_MAX_NUMBER 0x10
typedef struct {
EFI_COMMON_SECTION_HEADER *Section[CACHE_SETION_MAX_NUMBER];
VOID *SectionData[CACHE_SETION_MAX_NUMBER];
UINTN SectionSize[CACHE_SETION_MAX_NUMBER];
UINT32 AuthenticationStatus[CACHE_SETION_MAX_NUMBER];
UINTN AllSectionCount;
UINTN SectionIndex;
} CACHE_SECTION_DATA;
#define HOLE_MAX_NUMBER 0x3
typedef struct {
EFI_PHYSICAL_ADDRESS Base;
UINTN Size;
UINTN Offset;
BOOLEAN OffsetPositive;
} HOLE_MEMORY_DATA;
///
/// Forward declaration for PEI_CORE_INSTANCE
///
typedef struct _PEI_CORE_INSTANCE PEI_CORE_INSTANCE;
/**
Function Pointer type for PeiCore function.
@param SecCoreData Points to a data structure containing SEC to PEI handoff data, such as the size
and location of temporary RAM, the stack location and the BFV location.
@param PpiList Points to a list of one or more PPI descriptors to be installed initially by the PEI core.
An empty PPI list consists of a single descriptor with the end-tag
EFI_PEI_PPI_DESCRIPTOR_TERMINATE_LIST. As part of its initialization
phase, the PEI Foundation will add these SEC-hosted PPIs to its PPI database such
that both the PEI Foundation and any modules can leverage the associated service
calls and/or code in these early PPIs
@param OldCoreData Pointer to old core data that is used to initialize the
core's data areas.
**/
typedef
EFI_STATUS
(EFIAPI *PEICORE_FUNCTION_POINTER)(
IN CONST EFI_SEC_PEI_HAND_OFF *SecCoreData,
IN CONST EFI_PEI_PPI_DESCRIPTOR *PpiList,
IN PEI_CORE_INSTANCE *OldCoreData
);
//
// Number of files to grow by each time we run out of room
//
#define TEMP_FILE_GROWTH_STEP 32
#define PEI_CORE_HANDLE_SIGNATURE SIGNATURE_32('P','e','i','C')
//
// Converts elapsed ticks of performance counter to time in microseconds.
// This macro converts the elapsed ticks of running performance counter to
// time value in unit of microseconds.
//
// NOTE: To support Delayed Dispatch functionality, the timer ticks are required
// to be:
// 1. A 64bit register;
// 2. Guaranteed to be monotonically increasing from 0;
// 3. Not wrapped throughout the duration of a boot;
//
// The requirement above is set to avoid the timer overflow issue to keep the
// Delayed Dispatch meet the PI specification with minimal change (instead of
// implementing a control-yielding multi-threaded PEI core).
//
#define GET_TIME_IN_US() ((UINT32)DivU64x32(GetTimeInNanoSecond(GetPerformanceCounter ()), 1000))
///
/// Pei Core private data structure instance
///
struct _PEI_CORE_INSTANCE {
UINTN Signature;
///
/// Point to ServiceTableShadow
///
EFI_PEI_SERVICES *Ps;
PEI_PPI_DATABASE PpiData;
///
/// The count of FVs which contains FFS and could be dispatched by PeiCore.
///
UINTN FvCount;
///
/// The max count of FVs which contains FFS and could be dispatched by PeiCore.
///
UINTN MaxFvCount;
///
/// Pointer to the buffer with the MaxFvCount number of entries.
/// Each entry is for one FV which contains FFS and could be dispatched by PeiCore.
///
PEI_CORE_FV_HANDLE *Fv;
///
/// Pointer to the buffer with the MaxUnknownFvInfoCount number of entries.
/// Each entry is for one FV which could not be dispatched by PeiCore.
///
PEI_CORE_UNKNOW_FORMAT_FV_INFO *UnknownFvInfo;
UINTN MaxUnknownFvInfoCount;
UINTN UnknownFvInfoCount;
///
/// Pointer to the buffer FvFileHandlers in PEI_CORE_FV_HANDLE specified by CurrentPeimFvCount.
///
EFI_PEI_FILE_HANDLE *CurrentFvFileHandles;
UINTN AprioriCount;
UINTN CurrentPeimFvCount;
UINTN CurrentPeimCount;
EFI_PEI_FILE_HANDLE CurrentFileHandle;
BOOLEAN PeimNeedingDispatch;
BOOLEAN PeimDispatchOnThisPass;
BOOLEAN PeimDispatcherReenter;
EFI_PEI_HOB_POINTERS HobList;
BOOLEAN SwitchStackSignal;
BOOLEAN PeiMemoryInstalled;
VOID *CpuIo;
EFI_PEI_SECURITY2_PPI *PrivateSecurityPpi;
EFI_PEI_SERVICES ServiceTableShadow;
EFI_PEI_PPI_DESCRIPTOR *XipLoadFile;
EFI_PHYSICAL_ADDRESS PhysicalMemoryBegin;
UINT64 PhysicalMemoryLength;
EFI_PHYSICAL_ADDRESS FreePhysicalMemoryTop;
UINTN HeapOffset;
BOOLEAN HeapOffsetPositive;
UINTN StackOffset;
BOOLEAN StackOffsetPositive;
//
// Information for migrating memory pages allocated in pre-memory phase.
//
HOLE_MEMORY_DATA MemoryPages;
PEICORE_FUNCTION_POINTER ShadowedPeiCore;
CACHE_SECTION_DATA CacheSection;
//
// For Loading modules at fixed address feature to cache the top address below which the
// Runtime code, boot time code and PEI memory will be placed. Please note that the offset between this field
// and Ps should not be changed since maybe user could get this top address by using the offset to Ps.
//
EFI_PHYSICAL_ADDRESS LoadModuleAtFixAddressTopAddress;
//
// The field is define for Loading modules at fixed address feature to tracker the PEI code
// memory range usage. It is a bit mapped array in which every bit indicates the corresponding memory page
// available or not.
//
UINT64 *PeiCodeMemoryRangeUsageBitMap;
//
// This field points to the shadowed image read function
//
PE_COFF_LOADER_READ_FILE ShadowedImageRead;
UINTN TempPeimCount;
//
// Pointer to the temp buffer with the TempPeimCount number of entries.
//
EFI_PEI_FILE_HANDLE *TempFileHandles;
//
// Pointer to the temp buffer with the TempPeimCount number of entries.
//
EFI_GUID *TempFileGuid;
//
// Temp Memory Range is not covered by PeiTempMem and Stack.
// Those Memory Range will be migrated into physical memory.
//
HOLE_MEMORY_DATA HoleData[HOLE_MAX_NUMBER];
//
// Table of delayed dispatch requests
//
DELAYED_DISPATCH_TABLE *DelayedDispatchTable;
//
// Whether memory bins are initialized and being used in PEI
//
BOOLEAN MemoryTypeInformationInitialized;
//
// Memory type information for all memory types. The array index is the memory type.
// This is used for the memory bin feature, if enabled, to track bin sizes.
//
EFI_MEMORY_TYPE_INFORMATION *MemoryTypeInformation;
//
// Memory type statistics for all memory types. The array index is the memory type.
// This is used for the memory bin feature, if enabled, to track bin locations.
//
EFI_MEMORY_TYPE_STATISTICS *MemoryTypeStatistics;
///
/// Count pre-memory events that may produce reusable conventional-memory ranges.
///
UINTN FreeMemorySearchHintCount;
};
///
/// Pei Core Instance Data Macros
///
#define PEI_CORE_INSTANCE_FROM_PS_THIS(a) \
CR(a, PEI_CORE_INSTANCE, Ps, PEI_CORE_HANDLE_SIGNATURE)
///
/// Union of temporarily used function pointers (to save stack space)
///
typedef union {
PEICORE_FUNCTION_POINTER PeiCore;
EFI_PEIM_ENTRY_POINT2 PeimEntry;
EFI_PEIM_NOTIFY_ENTRY_POINT PeimNotifyEntry;
EFI_DXE_IPL_PPI *DxeIpl;
EFI_PEI_PPI_DESCRIPTOR *PpiDescriptor;
EFI_PEI_NOTIFY_DESCRIPTOR *NotifyDescriptor;
VOID *Raw;
} PEI_CORE_TEMP_POINTERS;
typedef struct {
CONST EFI_SEC_PEI_HAND_OFF *SecCoreData;
EFI_PEI_PPI_DESCRIPTOR *PpiList;
VOID *Data;
} PEI_CORE_PARAMETERS;
//
// PeiCore function
//
/**
The entry routine to Pei Core, invoked by PeiMain during transition
from SEC to PEI. After switching stack in the PEI core, it will restart
with the old core data.
@param SecCoreData Points to a data structure containing SEC to PEI handoff data, such as the size
and location of temporary RAM, the stack location and the BFV location.
@param PpiList Points to a list of one or more PPI descriptors to be installed initially by the PEI core.
An empty PPI list consists of a single descriptor with the end-tag
EFI_PEI_PPI_DESCRIPTOR_TERMINATE_LIST. As part of its initialization
phase, the PEI Foundation will add these SEC-hosted PPIs to its PPI database such
that both the PEI Foundation and any modules can leverage the associated service
calls and/or code in these early PPIs
@param Data Pointer to old core data that is used to initialize the
core's data areas.
**/
VOID
EFIAPI
PeiCore (
IN CONST EFI_SEC_PEI_HAND_OFF *SecCoreData,
IN CONST EFI_PEI_PPI_DESCRIPTOR *PpiList,
IN VOID *Data
);
//
// Dispatcher support functions
//
/**
This is the POSTFIX version of the dependency evaluator. When a
PUSH [PPI GUID] is encountered, a pointer to the GUID is stored on
the evaluation stack. When that entry is popped from the evaluation
stack, the PPI is checked if it is installed. This method allows
some time savings as not all PPIs must be checked for certain
operation types (AND, OR).
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param DependencyExpression Pointer to a dependency expression. The Grammar adheres to
the BNF described above and is stored in postfix notation.
@retval TRUE if it is a well-formed Grammar
@retval FALSE if the dependency expression overflows the evaluation stack
if the dependency expression underflows the evaluation stack
if the dependency expression is not a well-formed Grammar.
**/
BOOLEAN
PeimDispatchReadiness (
IN EFI_PEI_SERVICES **PeiServices,
IN VOID *DependencyExpression
);
/**
Migrate a PEIM from temporary RAM to permanent memory.
@param PeimFileHandle Pointer to the FFS file header of the image.
@param MigratedFileHandle Pointer to the FFS file header of the migrated image.
@retval EFI_SUCCESS Sucessfully migrated the PEIM to permanent memory.
**/
EFI_STATUS
EFIAPI
MigratePeim (
IN EFI_PEI_FILE_HANDLE FileHandle,
IN EFI_PEI_FILE_HANDLE MigratedFileHandle
);
/**
Migrate FVs out of temporary RAM before the cache is flushed.
@param Private PeiCore's private data structure
@param SecCoreData Points to a data structure containing information about the PEI core's operating
environment, such as the size and location of temporary RAM, the stack location and
the BFV location.
@retval EFI_SUCCESS Successfully migrated installed FVs from temporary RAM to permanent memory.
@retval EFI_OUT_OF_RESOURCES Insufficient memory exists to allocate needed pages.
**/
EFI_STATUS
EFIAPI
EvacuateTempRam (
IN PEI_CORE_INSTANCE *Private,
IN CONST EFI_SEC_PEI_HAND_OFF *SecCoreData
);
/**
Conduct PEIM dispatch.
@param SecCoreData Pointer to the data structure containing SEC to PEI handoff data
@param PrivateData Pointer to the private data passed in from caller
**/
VOID
PeiDispatcher (
IN CONST EFI_SEC_PEI_HAND_OFF *SecCoreData,
IN PEI_CORE_INSTANCE *PrivateData
);
/**
Initialize the Dispatcher's data members
@param PrivateData PeiCore's private data structure
@param OldCoreData Old data from SecCore
NULL if being run in non-permanent memory mode.
@param SecCoreData Points to a data structure containing SEC to PEI handoff data, such as the size
and location of temporary RAM, the stack location and the BFV location.
**/
VOID
InitializeDispatcherData (
IN PEI_CORE_INSTANCE *PrivateData,
IN PEI_CORE_INSTANCE *OldCoreData,
IN CONST EFI_SEC_PEI_HAND_OFF *SecCoreData
);
/**
This routine parses the Dependency Expression, if available, and
decides if the module can be executed.
@param Private PeiCore's private data structure
@param FileHandle PEIM's file handle
@param PeimCount The index of last dispatched PEIM.
@retval TRUE Can be dispatched
@retval FALSE Cannot be dispatched
**/
BOOLEAN
DepexSatisfied (
IN PEI_CORE_INSTANCE *Private,
IN EFI_PEI_FILE_HANDLE FileHandle,
IN UINTN PeimCount
);
//
// PPI support functions
//
/**
Initialize PPI services.
@param PrivateData Pointer to the PEI Core data.
@param OldCoreData Pointer to old PEI Core data.
NULL if being run in non-permanent memory mode.
**/
VOID
InitializePpiServices (
IN PEI_CORE_INSTANCE *PrivateData,
IN PEI_CORE_INSTANCE *OldCoreData
);
/**
Migrate the Hob list from the temporary memory to PEI installed memory.
@param SecCoreData Points to a data structure containing SEC to PEI handoff data, such as the size
and location of temporary RAM, the stack location and the BFV location.
@param PrivateData Pointer to PeiCore's private data structure.
**/
VOID
ConvertPpiPointers (
IN CONST EFI_SEC_PEI_HAND_OFF *SecCoreData,
IN PEI_CORE_INSTANCE *PrivateData
);
/**
Migrate Notify Pointers inside an FV from temporary memory to permanent memory.
@param PrivateData Pointer to PeiCore's private data structure.
@param OrgFvHandle Address of FV Handle in temporary memory.
@param FvHandle Address of FV Handle in permanent memory.
@param FvSize Size of the FV.
**/
VOID
ConvertPpiPointersFv (
IN PEI_CORE_INSTANCE *PrivateData,
IN UINTN OrgFvHandle,
IN UINTN FvHandle,
IN UINTN FvSize
);
/**
Migrate PPI Pointers of PEI_CORE from temporary memory to permanent memory.
@param PrivateData Pointer to PeiCore's private data structure.
@param CoreFvHandle Address of PEI_CORE FV Handle in temporary memory.
**/
VOID
ConvertPeiCorePpiPointers (
IN PEI_CORE_INSTANCE *PrivateData,
IN PEI_CORE_FV_HANDLE *CoreFvHandle
);
/**
Dumps the PPI lists to debug output.
@param PrivateData Points to PeiCore's private instance data.
**/
VOID
DumpPpiList (
IN PEI_CORE_INSTANCE *PrivateData
);
/**
Install PPI services. It is implementation of EFI_PEI_SERVICE.InstallPpi.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param PpiList Pointer to PPI array that want to be installed.
@retval EFI_SUCCESS if all PPIs in PpiList are successfully installed.
@retval EFI_INVALID_PARAMETER if PpiList is NULL pointer
if any PPI in PpiList is not valid
@retval EFI_OUT_OF_RESOURCES if there is no more memory resource to install PPI
**/
EFI_STATUS
EFIAPI
PeiInstallPpi (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN CONST EFI_PEI_PPI_DESCRIPTOR *PpiList
);
/**
Re-Install PPI services.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param OldPpi Pointer to the old PEI PPI Descriptors.
@param NewPpi Pointer to the new PEI PPI Descriptors.
@retval EFI_SUCCESS if the operation was successful
@retval EFI_INVALID_PARAMETER if OldPpi or NewPpi is NULL
if NewPpi is not valid
@retval EFI_NOT_FOUND if the PPI was not in the database
**/
EFI_STATUS
EFIAPI
PeiReInstallPpi (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN CONST EFI_PEI_PPI_DESCRIPTOR *OldPpi,
IN CONST EFI_PEI_PPI_DESCRIPTOR *NewPpi
);
/**
Locate a given named PPI.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param Guid Pointer to GUID of the PPI.
@param Instance Instance Number to discover.
@param PpiDescriptor Pointer to reference the found descriptor. If not NULL,
returns a pointer to the descriptor (includes flags, etc)
@param Ppi Pointer to reference the found PPI
@retval EFI_SUCCESS if the PPI is in the database
@retval EFI_NOT_FOUND if the PPI is not in the database
**/
EFI_STATUS
EFIAPI
PeiLocatePpi (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN CONST EFI_GUID *Guid,
IN UINTN Instance,
IN OUT EFI_PEI_PPI_DESCRIPTOR **PpiDescriptor,
IN OUT VOID **Ppi
);
/**
Install a notification for a given PPI.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param NotifyList Pointer to list of Descriptors to notify upon.
@retval EFI_SUCCESS if successful
@retval EFI_OUT_OF_RESOURCES if no space in the database
@retval EFI_INVALID_PARAMETER if not a good descriptor
**/
EFI_STATUS
EFIAPI
PeiNotifyPpi (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN CONST EFI_PEI_NOTIFY_DESCRIPTOR *NotifyList
);
/**
Process the Notify List at dispatch level.
@param PrivateData PeiCore's private data structure.
**/
VOID
ProcessDispatchNotifyList (
IN PEI_CORE_INSTANCE *PrivateData
);
/**
Process notifications.
@param PrivateData PeiCore's private data structure
@param NotifyType Type of notify to fire.
@param InstallStartIndex Install Beginning index.
@param InstallStopIndex Install Ending index.
@param NotifyStartIndex Notify Beginning index.
@param NotifyStopIndex Notify Ending index.
**/
VOID
ProcessNotify (
IN PEI_CORE_INSTANCE *PrivateData,
IN UINTN NotifyType,
IN INTN InstallStartIndex,
IN INTN InstallStopIndex,
IN INTN NotifyStartIndex,
IN INTN NotifyStopIndex
);
/**
Process PpiList from SEC phase.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param PpiList Points to a list of one or more PPI descriptors to be installed initially by the PEI core.
These PPI's will be installed and/or immediately signaled if they are notification type.
**/
VOID
ProcessPpiListFromSec (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN CONST EFI_PEI_PPI_DESCRIPTOR *PpiList
);
//
// Boot mode support functions
//
/**
This service enables PEIMs to ascertain the present value of the boot mode.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param BootMode A pointer to contain the value of the boot mode.
@retval EFI_SUCCESS The boot mode was returned successfully.
@retval EFI_INVALID_PARAMETER BootMode is NULL.
**/
EFI_STATUS
EFIAPI
PeiGetBootMode (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN OUT EFI_BOOT_MODE *BootMode
);
/**
This service enables PEIMs to update the boot mode variable.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param BootMode The value of the boot mode to set.
@return EFI_SUCCESS The value was successfully updated
**/
EFI_STATUS
EFIAPI
PeiSetBootMode (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN EFI_BOOT_MODE BootMode
);
//
// Security support functions
//
/**
Initialize the security services.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param OldCoreData Pointer to the old core data.
NULL if being run in non-permanent memory mode.
**/
VOID
InitializeSecurityServices (
IN EFI_PEI_SERVICES **PeiServices,
IN PEI_CORE_INSTANCE *OldCoreData
);
/**
Verify a Firmware volume.
@param CurrentFvAddress Pointer to the current Firmware Volume under consideration
@retval EFI_SUCCESS Firmware Volume is legal
@retval EFI_SECURITY_VIOLATION Firmware Volume fails integrity test
**/
EFI_STATUS
VerifyFv (
IN EFI_FIRMWARE_VOLUME_HEADER *CurrentFvAddress
);
/**
Provide a callout to the security verification service.
@param PrivateData PeiCore's private data structure
@param VolumeHandle Handle of FV
@param FileHandle Handle of PEIM's FFS
@param AuthenticationStatus Authentication status
@retval EFI_SUCCESS Image is OK
@retval EFI_SECURITY_VIOLATION Image is illegal
@retval EFI_NOT_FOUND If security PPI is not installed.
**/
EFI_STATUS
VerifyPeim (
IN PEI_CORE_INSTANCE *PrivateData,
IN EFI_PEI_FV_HANDLE VolumeHandle,
IN EFI_PEI_FILE_HANDLE FileHandle,
IN UINT32 AuthenticationStatus
);
/**
Gets the pointer to the HOB List.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param HobList Pointer to the HOB List.
@retval EFI_SUCCESS Get the pointer of HOB List
@retval EFI_NOT_AVAILABLE_YET the HOB List is not yet published
@retval EFI_INVALID_PARAMETER HobList is NULL (in debug mode)
**/
EFI_STATUS
EFIAPI
PeiGetHobList (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN OUT VOID **HobList
);
/**
Add a new HOB to the HOB List.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param Type Type of the new HOB.
@param Length Length of the new HOB to allocate.
@param Hob Pointer to the new HOB.
@return EFI_SUCCESS Success to create HOB.
@retval EFI_INVALID_PARAMETER if Hob is NULL
@retval EFI_NOT_AVAILABLE_YET if HobList is still not available.
@retval EFI_OUT_OF_RESOURCES if there is no more memory to grow the Hoblist.
**/
EFI_STATUS
EFIAPI
PeiCreateHob (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN UINT16 Type,
IN UINT16 Length,
IN OUT VOID **Hob
);
/**
Builds a Handoff Information Table HOB
@param BootMode - Current Bootmode
@param MemoryBegin - Start Memory Address.
@param MemoryLength - Length of Memory.
**/
VOID
PeiCoreBuildHobHandoffInfoTable (
IN EFI_BOOT_MODE BootMode,
IN EFI_PHYSICAL_ADDRESS MemoryBegin,
IN UINT64 MemoryLength
);
/**
Install SEC HOB data to the HOB List.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param SecHobList Pointer to SEC HOB List.
@return EFI_SUCCESS Success to install SEC HOB data.
@retval EFI_OUT_OF_RESOURCES If there is no more memory to grow the Hoblist.
**/
EFI_STATUS
PeiInstallSecHobData (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN EFI_HOB_GENERIC_HEADER *SecHobList
);
//
// FFS Fw Volume support functions
//
/**
Searches for the next matching file in the firmware volume.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param SearchType Filter to find only files of this type.
Type EFI_FV_FILETYPE_ALL causes no filtering to be done.
@param FvHandle Handle of firmware volume in which to search.
@param FileHandle On entry, points to the current handle from which to begin searching or NULL to start
at the beginning of the firmware volume. On exit, points the file handle of the next file
in the volume or NULL if there are no more files.
@retval EFI_NOT_FOUND The file was not found.
@retval EFI_NOT_FOUND The header checksum was not zero.
@retval EFI_SUCCESS The file was found.
**/
EFI_STATUS
EFIAPI
PeiFfsFindNextFile (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN UINT8 SearchType,
IN EFI_PEI_FV_HANDLE FvHandle,
IN OUT EFI_PEI_FILE_HANDLE *FileHandle
);
/**
Go through the file to search SectionType section.
Search within encapsulation sections (compression and GUIDed) recursively,
until the match section is found.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param SectionType Filter to find only section of this type.
@param SectionInstance Pointer to the filter to find the specific instance of section.
@param Section From where to search.
@param SectionSize The file size to search.
@param OutputBuffer A pointer to the discovered section, if successful.
NULL if section not found.
@param AuthenticationStatus Updated upon return to point to the authentication status for this section.
@param IsFfs3Fv Indicates the FV format.
@return EFI_NOT_FOUND The match section is not found.
@return EFI_SUCCESS The match section is found.
**/
EFI_STATUS
ProcessSection (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN EFI_SECTION_TYPE SectionType,
IN OUT UINTN *SectionInstance,
IN EFI_COMMON_SECTION_HEADER *Section,
IN UINTN SectionSize,
OUT VOID **OutputBuffer,
OUT UINT32 *AuthenticationStatus,
IN BOOLEAN IsFfs3Fv
);
/**
Searches for the next matching section within the specified file.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation
@param SectionType Filter to find only sections of this type.
@param FileHandle Pointer to the current file to search.
@param SectionData A pointer to the discovered section, if successful.
NULL if section not found
@retval EFI_NOT_FOUND The section was not found.
@retval EFI_SUCCESS The section was found.
**/
EFI_STATUS
EFIAPI
PeiFfsFindSectionData (
IN CONST EFI_PEI_SERVICES **PeiServices,
IN EFI_SECTION_TYPE SectionType,
IN EFI_PEI_FILE_HANDLE FileHandle,
OUT VOID **SectionData
);
/**
Searches for the next matching section within the specified file.
@param PeiServices An indirect pointer to the EFI_PEI_SERVICES table published by the PEI Foundation.
@param SectionType The value of the section type to find.