mirror of https://github.com/acidanthera/audk.git
1107 lines
38 KiB
C
1107 lines
38 KiB
C
/** @file
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The logic to process capsule.
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Copyright (c) 2011, Intel Corporation. All rights reserved.<BR>
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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 <Uefi.h>
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#include <PiPei.h>
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#include <Guid/CapsuleVendor.h>
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#include <Library/BaseMemoryLib.h>
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#include <Library/DebugLib.h>
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#include <Library/PrintLib.h>
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#include <Library/BaseLib.h>
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#define MIN_COALESCE_ADDR (1024 * 1024)
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#define MAX_SUPPORT_CAPSULE_NUM 50
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#define EFI_CAPSULE_PEIM_PRIVATE_DATA_SIGNATURE SIGNATURE_32 ('C', 'a', 'p', 'D')
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typedef struct {
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UINT32 Signature;
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UINT32 CapsuleSize;
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} EFI_CAPSULE_PEIM_PRIVATE_DATA;
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/**
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Given a pointer to the capsule block list, info on the available system
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memory, and the size of a buffer, find a free block of memory where a
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buffer of the given size can be copied to safely.
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@param BlockList Pointer to head of capsule block descriptors
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@param MemBase Pointer to the base of memory in which we want to find free space
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@param MemSize The size of the block of memory pointed to by MemBase
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@param DataSize How big a free block we want to find
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@return A pointer to a memory block of at least DataSize that lies somewhere
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between MemBase and (MemBase + MemSize). The memory pointed to does not
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contain any of the capsule block descriptors or capsule blocks pointed to
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by the BlockList.
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**/
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UINT8 *
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FindFreeMem (
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EFI_CAPSULE_BLOCK_DESCRIPTOR *BlockList,
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UINT8 *MemBase,
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UINTN MemSize,
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UINTN DataSize
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);
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/**
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Check the integrity of the capsule descriptors.
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@param BlockList Pointer to the capsule descriptors
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@retval NULL BlockList is not valid.
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@retval LastBlockDesc Last one Block in BlockList
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**/
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EFI_CAPSULE_BLOCK_DESCRIPTOR *
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ValidateCapsuleIntegrity (
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IN EFI_CAPSULE_BLOCK_DESCRIPTOR *BlockList
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);
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/**
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The capsule block descriptors may be fragmented and spread all over memory.
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To simplify the coalescing of capsule blocks, first coalesce all the
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capsule block descriptors low in memory.
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The descriptors passed in can be fragmented throughout memory. Here
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they are relocated into memory to turn them into a contiguous (null
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terminated) array.
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@param PeiServices pointer to PEI services table
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@param BlockList pointer to the capsule block descriptors
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@param MemBase base of system memory in which we can work
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@param MemSize size of the system memory pointed to by MemBase
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@retval NULL could not relocate the descriptors
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@retval Pointer to the base of the successfully-relocated block descriptors.
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**/
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EFI_CAPSULE_BLOCK_DESCRIPTOR *
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RelocateBlockDescriptors (
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IN EFI_PEI_SERVICES **PeiServices,
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IN EFI_CAPSULE_BLOCK_DESCRIPTOR *BlockList,
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IN UINT8 *MemBase,
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IN UINTN MemSize
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);
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/**
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Check every capsule header.
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@param CapsuleHeader The pointer to EFI_CAPSULE_HEADER
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@retval FALSE Capsule is OK
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@retval TRUE Capsule is corrupted
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**/
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BOOLEAN
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IsCapsuleCorrupted (
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IN EFI_CAPSULE_HEADER *CapsuleHeader
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);
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/**
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Determine if two buffers overlap in memory.
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@param Buff1 pointer to first buffer
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@param Size1 size of Buff1
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@param Buff2 pointer to second buffer
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@param Size2 size of Buff2
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@retval TRUE Buffers overlap in memory.
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@retval FALSE Buffer doesn't overlap.
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**/
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BOOLEAN
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IsOverlapped (
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UINT8 *Buff1,
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UINTN Size1,
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UINT8 *Buff2,
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UINTN Size2
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);
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/**
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Given a pointer to a capsule block descriptor, traverse the list to figure
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out how many legitimate descriptors there are, and how big the capsule it
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refers to is.
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@param Desc Pointer to the capsule block descriptors
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NumDescriptors - optional pointer to where to return the number of descriptors
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CapsuleSize - optional pointer to where to return the capsule size
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@param NumDescriptors Optional pointer to where to return the number of descriptors
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@param CapsuleSize Optional pointer to where to return the capsule size
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@retval EFI_NOT_FOUND No descriptors containing data in the list
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@retval EFI_SUCCESS Return data is valid
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**/
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EFI_STATUS
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GetCapsuleInfo (
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IN EFI_CAPSULE_BLOCK_DESCRIPTOR *Desc,
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IN OUT UINTN *NumDescriptors OPTIONAL,
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IN OUT UINTN *CapsuleSize OPTIONAL
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);
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/**
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Given a pointer to the capsule block list, info on the available system
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memory, and the size of a buffer, find a free block of memory where a
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buffer of the given size can be copied to safely.
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@param BlockList Pointer to head of capsule block descriptors
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@param MemBase Pointer to the base of memory in which we want to find free space
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@param MemSize The size of the block of memory pointed to by MemBase
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@param DataSize How big a free block we want to find
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@return A pointer to a memory block of at least DataSize that lies somewhere
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between MemBase and (MemBase + MemSize). The memory pointed to does not
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contain any of the capsule block descriptors or capsule blocks pointed to
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by the BlockList.
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**/
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UINT8 *
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FindFreeMem (
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EFI_CAPSULE_BLOCK_DESCRIPTOR *BlockList,
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UINT8 *MemBase,
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UINTN MemSize,
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UINTN DataSize
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)
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{
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UINTN Size;
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EFI_CAPSULE_BLOCK_DESCRIPTOR *CurrDesc;
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EFI_CAPSULE_BLOCK_DESCRIPTOR *TempDesc;
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UINT8 *MemEnd;
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BOOLEAN Failed;
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//
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// Need at least enough to copy the data to at the end of the buffer, so
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// say the end is less the data size for easy comparisons here.
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//
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MemEnd = MemBase + MemSize - DataSize;
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CurrDesc = BlockList;
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//
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// Go through all the descriptor blocks and see if any obstruct the range
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//
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while (CurrDesc != NULL) {
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//
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// Get the size of this block list and see if it's in the way
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//
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Failed = FALSE;
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TempDesc = CurrDesc;
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Size = sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
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while (TempDesc->Length != 0) {
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Size += sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
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TempDesc++;
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}
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if (IsOverlapped (MemBase, DataSize, (UINT8 *) CurrDesc, Size)) {
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//
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// Set our new base to the end of this block list and start all over
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//
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MemBase = (UINT8 *) CurrDesc + Size;
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CurrDesc = BlockList;
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if (MemBase > MemEnd) {
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return NULL;
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}
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Failed = TRUE;
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}
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//
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// Now go through all the blocks and make sure none are in the way
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//
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while ((CurrDesc->Length != 0) && (!Failed)) {
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if (IsOverlapped (MemBase, DataSize, (UINT8 *) (UINTN) CurrDesc->Union.DataBlock, (UINTN) CurrDesc->Length)) {
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//
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// Set our new base to the end of this block and start all over
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//
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Failed = TRUE;
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MemBase = (UINT8 *) ((UINTN) CurrDesc->Union.DataBlock) + CurrDesc->Length;
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CurrDesc = BlockList;
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if (MemBase > MemEnd) {
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return NULL;
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}
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}
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CurrDesc++;
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}
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//
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// Normal continuation -- jump to next block descriptor list
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//
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if (!Failed) {
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CurrDesc = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) (UINTN) CurrDesc->Union.ContinuationPointer;
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}
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}
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return MemBase;
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}
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/**
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Check the integrity of the capsule descriptors.
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@param BlockList Pointer to the capsule descriptors
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@retval NULL BlockList is not valid.
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@retval LastBlockDesc Last one Block in BlockList
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**/
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EFI_CAPSULE_BLOCK_DESCRIPTOR *
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ValidateCapsuleIntegrity (
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IN EFI_CAPSULE_BLOCK_DESCRIPTOR *BlockList
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)
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{
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EFI_CAPSULE_HEADER *CapsuleHeader;
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UINT64 CapsuleSize;
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UINT32 CapsuleCount;
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EFI_CAPSULE_BLOCK_DESCRIPTOR *Ptr;
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//
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// Go through the list to look for inconsistencies. Check for:
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// * misaligned block descriptors.
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// * The first capsule header guid
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// * The first capsule header flag
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// * Data + Length < Data (wrap)
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CapsuleSize = 0;
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CapsuleCount = 0;
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Ptr = BlockList;
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while ((Ptr->Length != 0) || (Ptr->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
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//
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// Make sure the descriptor is aligned at UINT64 in memory
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//
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if ((UINTN) Ptr & 0x07) {
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DEBUG ((EFI_D_ERROR, "BlockList address failed alignment check\n"));
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return NULL;
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}
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if (Ptr->Length == 0) {
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//
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// Descriptor points to another list of block descriptors somewhere
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// else.
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//
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Ptr = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) (UINTN) Ptr->Union.ContinuationPointer;
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} else {
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//
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//To enhance the reliability of check-up, the first capsule's header is checked here.
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//More reliabilities check-up will do later.
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//
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if (CapsuleSize == 0) {
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//
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//Move to the first capsule to check its header.
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//
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CapsuleHeader = (EFI_CAPSULE_HEADER*)((UINTN)Ptr->Union.DataBlock);
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if (IsCapsuleCorrupted (CapsuleHeader)) {
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return NULL;
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}
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CapsuleCount ++;
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CapsuleSize = CapsuleHeader->CapsuleImageSize;
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} else {
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if (CapsuleSize >= Ptr->Length) {
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CapsuleSize = CapsuleSize - Ptr->Length;
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} else {
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CapsuleSize = 0;
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}
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}
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//
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// Move to next BLOCK descriptor
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//
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Ptr++;
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}
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}
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if (CapsuleCount == 0) {
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//
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// No any capsule is found in BlockList.
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//
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return NULL;
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}
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return Ptr;
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}
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/**
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The capsule block descriptors may be fragmented and spread all over memory.
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To simplify the coalescing of capsule blocks, first coalesce all the
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capsule block descriptors low in memory.
|
|
|
|
The descriptors passed in can be fragmented throughout memory. Here
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|
they are relocated into memory to turn them into a contiguous (null
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|
terminated) array.
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@param PeiServices pointer to PEI services table
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@param BlockList pointer to the capsule block descriptors
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@param MemBase base of system memory in which we can work
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@param MemSize size of the system memory pointed to by MemBase
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@retval NULL could not relocate the descriptors
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@retval Pointer to the base of the successfully-relocated block descriptors.
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**/
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EFI_CAPSULE_BLOCK_DESCRIPTOR *
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RelocateBlockDescriptors (
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IN EFI_PEI_SERVICES **PeiServices,
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IN EFI_CAPSULE_BLOCK_DESCRIPTOR *BlockList,
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IN UINT8 *MemBase,
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IN UINTN MemSize
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)
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{
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EFI_CAPSULE_BLOCK_DESCRIPTOR *NewBlockList;
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EFI_CAPSULE_BLOCK_DESCRIPTOR *CurrBlockDescHead;
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EFI_CAPSULE_BLOCK_DESCRIPTOR *TempBlockDesc;
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EFI_CAPSULE_BLOCK_DESCRIPTOR *PrevBlockDescTail;
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UINTN NumDescriptors;
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UINTN BufferSize;
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UINT8 *RelocBuffer;
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UINTN BlockListSize;
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//
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// Get the info on the blocks and descriptors. Since we're going to move
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// the descriptors low in memory, adjust the base/size values accordingly here.
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// GetCapsuleInfo() returns the number of legit descriptors, so add one for
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// a terminator.
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//
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if (GetCapsuleInfo (BlockList, &NumDescriptors, NULL) != EFI_SUCCESS) {
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return NULL;
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}
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NumDescriptors++;
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BufferSize = NumDescriptors * sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
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NewBlockList = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) MemBase;
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if (MemSize < BufferSize) {
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return NULL;
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}
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MemSize -= BufferSize;
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MemBase += BufferSize;
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//
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// Go through all the blocks and make sure none are in the way
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//
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TempBlockDesc = BlockList;
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while (TempBlockDesc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL) {
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if (TempBlockDesc->Length == 0) {
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//
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// Next block of descriptors
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//
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TempBlockDesc = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) (UINTN) TempBlockDesc->Union.ContinuationPointer;
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} else {
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//
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// If the capsule data pointed to by this descriptor is in the way,
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// move it.
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//
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if (IsOverlapped (
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(UINT8 *) NewBlockList,
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BufferSize,
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(UINT8 *) (UINTN) TempBlockDesc->Union.DataBlock,
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(UINTN) TempBlockDesc->Length
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)) {
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//
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// Relocate the block
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//
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RelocBuffer = FindFreeMem (BlockList, MemBase, MemSize, (UINTN) TempBlockDesc->Length);
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if (RelocBuffer == NULL) {
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return NULL;
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}
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CopyMem ((VOID *) RelocBuffer, (VOID *) (UINTN) TempBlockDesc->Union.DataBlock, (UINTN) TempBlockDesc->Length);
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TempBlockDesc->Union.DataBlock = (EFI_PHYSICAL_ADDRESS) (UINTN) RelocBuffer;
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DEBUG ((EFI_D_INFO, "Capsule relocate descriptors from/to/size 0x%X 0x%X 0x%X\n", (UINT32)(UINTN)TempBlockDesc->Union.DataBlock, (UINT32)(UINTN)RelocBuffer, (UINT32)(UINTN)TempBlockDesc->Length));
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}
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}
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TempBlockDesc++;
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}
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//
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// Now go through all the block descriptors to make sure that they're not
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// in the memory region we want to copy them to.
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//
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CurrBlockDescHead = BlockList;
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PrevBlockDescTail = NULL;
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while ((CurrBlockDescHead != NULL) && (CurrBlockDescHead->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
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//
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// Get the size of this list then see if it overlaps our low region
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//
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TempBlockDesc = CurrBlockDescHead;
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BlockListSize = sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
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while (TempBlockDesc->Length != 0) {
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BlockListSize += sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
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TempBlockDesc++;
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}
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if (IsOverlapped (
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(UINT8 *) NewBlockList,
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BufferSize,
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(UINT8 *) CurrBlockDescHead,
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BlockListSize
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)) {
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//
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// Overlaps, so move it out of the way
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//
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RelocBuffer = FindFreeMem (BlockList, MemBase, MemSize, BlockListSize);
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if (RelocBuffer == NULL) {
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return NULL;
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}
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CopyMem ((VOID *) RelocBuffer, (VOID *) CurrBlockDescHead, BlockListSize);
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DEBUG ((EFI_D_INFO, "Capsule reloc descriptor block #2\n"));
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//
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// Point the previous block's next point to this copied version. If
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// the tail pointer is null, then this is the first descriptor block.
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//
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if (PrevBlockDescTail == NULL) {
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BlockList = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) RelocBuffer;
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} else {
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PrevBlockDescTail->Union.DataBlock = (EFI_PHYSICAL_ADDRESS) (UINTN) RelocBuffer;
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}
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}
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//
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// Save our new tail and jump to the next block list
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//
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PrevBlockDescTail = TempBlockDesc;
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CurrBlockDescHead = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) (UINTN) TempBlockDesc->Union.ContinuationPointer;
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}
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//
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// Cleared out low memory. Now copy the descriptors down there.
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//
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TempBlockDesc = BlockList;
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CurrBlockDescHead = NewBlockList;
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while ((TempBlockDesc != NULL) && (TempBlockDesc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
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if (TempBlockDesc->Length != 0) {
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CurrBlockDescHead->Union.DataBlock = TempBlockDesc->Union.DataBlock;
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CurrBlockDescHead->Length = TempBlockDesc->Length;
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CurrBlockDescHead++;
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TempBlockDesc++;
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} else {
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TempBlockDesc = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) (UINTN) TempBlockDesc->Union.ContinuationPointer;
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}
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}
|
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//
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|
// Null terminate
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|
//
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|
CurrBlockDescHead->Union.ContinuationPointer = (EFI_PHYSICAL_ADDRESS) (UINTN) NULL;
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CurrBlockDescHead->Length = 0;
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return NewBlockList;
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}
|
|
|
|
/**
|
|
Determine if two buffers overlap in memory.
|
|
|
|
@param Buff1 pointer to first buffer
|
|
@param Size1 size of Buff1
|
|
@param Buff2 pointer to second buffer
|
|
@param Size2 size of Buff2
|
|
|
|
@retval TRUE Buffers overlap in memory.
|
|
@retval FALSE Buffer doesn't overlap.
|
|
|
|
**/
|
|
BOOLEAN
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|
IsOverlapped (
|
|
UINT8 *Buff1,
|
|
UINTN Size1,
|
|
UINT8 *Buff2,
|
|
UINTN Size2
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|
)
|
|
{
|
|
//
|
|
// If buff1's end is less than the start of buff2, then it's ok.
|
|
// Also, if buff1's start is beyond buff2's end, then it's ok.
|
|
//
|
|
if (((Buff1 + Size1) <= Buff2) || (Buff1 >= (Buff2 + Size2))) {
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return FALSE;
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|
}
|
|
|
|
return TRUE;
|
|
}
|
|
|
|
/**
|
|
Given a pointer to a capsule block descriptor, traverse the list to figure
|
|
out how many legitimate descriptors there are, and how big the capsule it
|
|
refers to is.
|
|
|
|
@param Desc Pointer to the capsule block descriptors
|
|
NumDescriptors - optional pointer to where to return the number of descriptors
|
|
CapsuleSize - optional pointer to where to return the capsule size
|
|
@param NumDescriptors Optional pointer to where to return the number of descriptors
|
|
@param CapsuleSize Optional pointer to where to return the capsule size
|
|
|
|
@retval EFI_NOT_FOUND No descriptors containing data in the list
|
|
@retval EFI_SUCCESS Return data is valid
|
|
|
|
**/
|
|
EFI_STATUS
|
|
GetCapsuleInfo (
|
|
IN EFI_CAPSULE_BLOCK_DESCRIPTOR *Desc,
|
|
IN OUT UINTN *NumDescriptors OPTIONAL,
|
|
IN OUT UINTN *CapsuleSize OPTIONAL
|
|
)
|
|
{
|
|
UINTN Count;
|
|
UINTN Size;
|
|
|
|
ASSERT (Desc != NULL);
|
|
|
|
Count = 0;
|
|
Size = 0;
|
|
|
|
while (Desc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL) {
|
|
if (Desc->Length == 0) {
|
|
//
|
|
// Descriptor points to another list of block descriptors somewhere
|
|
//
|
|
Desc = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) (UINTN) Desc->Union.ContinuationPointer;
|
|
} else {
|
|
Size += (UINTN) Desc->Length;
|
|
Count++;
|
|
Desc++;
|
|
}
|
|
}
|
|
//
|
|
// If no descriptors, then fail
|
|
//
|
|
if (Count == 0) {
|
|
return EFI_NOT_FOUND;
|
|
}
|
|
|
|
if (NumDescriptors != NULL) {
|
|
*NumDescriptors = Count;
|
|
}
|
|
|
|
if (CapsuleSize != NULL) {
|
|
*CapsuleSize = Size;
|
|
}
|
|
|
|
return EFI_SUCCESS;
|
|
}
|
|
|
|
/**
|
|
Check every capsule header.
|
|
|
|
@param CapsuleHeader The pointer to EFI_CAPSULE_HEADER
|
|
|
|
@retval FALSE Capsule is OK
|
|
@retval TRUE Capsule is corrupted
|
|
|
|
**/
|
|
BOOLEAN
|
|
IsCapsuleCorrupted (
|
|
IN EFI_CAPSULE_HEADER *CapsuleHeader
|
|
)
|
|
{
|
|
//
|
|
//A capsule to be updated across a system reset should contain CAPSULE_FLAGS_PERSIST_ACROSS_RESET.
|
|
//
|
|
if ((CapsuleHeader->Flags & CAPSULE_FLAGS_PERSIST_ACROSS_RESET) == 0) {
|
|
return TRUE;
|
|
}
|
|
//
|
|
//Make sure the flags combination is supported by the platform.
|
|
//
|
|
if ((CapsuleHeader->Flags & (CAPSULE_FLAGS_PERSIST_ACROSS_RESET | CAPSULE_FLAGS_POPULATE_SYSTEM_TABLE)) == CAPSULE_FLAGS_POPULATE_SYSTEM_TABLE) {
|
|
return TRUE;
|
|
}
|
|
if ((CapsuleHeader->Flags & (CAPSULE_FLAGS_PERSIST_ACROSS_RESET | CAPSULE_FLAGS_INITIATE_RESET)) == CAPSULE_FLAGS_INITIATE_RESET) {
|
|
return TRUE;
|
|
}
|
|
|
|
return FALSE;
|
|
}
|
|
|
|
/**
|
|
Try to verify the integrity of a capsule test pattern before the
|
|
capsule gets coalesced. This can be useful in narrowing down
|
|
where capsule data corruption occurs.
|
|
|
|
The test pattern mode fills in memory with a counting UINT32 value.
|
|
If the capsule is not divided up in a multiple of 4-byte blocks, then
|
|
things get messy doing the check. Therefore there are some cases
|
|
here where we just give up and skip the pre-coalesce check.
|
|
|
|
@param PeiServices PEI services table
|
|
@param Desc Pointer to capsule descriptors
|
|
**/
|
|
VOID
|
|
CapsuleTestPatternPreCoalesce (
|
|
IN EFI_PEI_SERVICES **PeiServices,
|
|
IN EFI_CAPSULE_BLOCK_DESCRIPTOR *Desc
|
|
)
|
|
{
|
|
UINT32 *TestPtr;
|
|
UINT32 TestCounter;
|
|
UINT32 TestSize;
|
|
//
|
|
// Find first data descriptor
|
|
//
|
|
while ((Desc->Length == 0) && (Desc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
|
|
Desc = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) (UINTN) Desc->Union.ContinuationPointer;
|
|
}
|
|
|
|
if (Desc->Union.ContinuationPointer == 0) {
|
|
return ;
|
|
}
|
|
//
|
|
// First one better be long enough to at least hold the test signature
|
|
//
|
|
if (Desc->Length < sizeof (UINT32)) {
|
|
DEBUG ((EFI_D_INFO, "Capsule test pattern pre-coalesce punted #1\n"));
|
|
return ;
|
|
}
|
|
|
|
TestPtr = (UINT32 *) (UINTN) Desc->Union.DataBlock;
|
|
//
|
|
// 0x54534554 "TEST"
|
|
//
|
|
if (*TestPtr != 0x54534554) {
|
|
return ;
|
|
}
|
|
|
|
TestCounter = 0;
|
|
TestSize = (UINT32) Desc->Length - 2 * sizeof (UINT32);
|
|
//
|
|
// Skip over the signature and the size fields in the pattern data header
|
|
//
|
|
TestPtr += 2;
|
|
while (1) {
|
|
if ((TestSize & 0x03) != 0) {
|
|
DEBUG ((EFI_D_INFO, "Capsule test pattern pre-coalesce punted #2\n"));
|
|
return ;
|
|
}
|
|
|
|
while (TestSize > 0) {
|
|
if (*TestPtr != TestCounter) {
|
|
DEBUG ((EFI_D_INFO, "Capsule test pattern pre-coalesce failed data corruption check\n"));
|
|
return ;
|
|
}
|
|
|
|
TestSize -= sizeof (UINT32);
|
|
TestCounter++;
|
|
TestPtr++;
|
|
}
|
|
Desc++;
|
|
while ((Desc->Length == 0) && (Desc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
|
|
Desc = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) (UINTN) Desc->Union.ContinuationPointer;
|
|
}
|
|
|
|
if (Desc->Union.ContinuationPointer == (EFI_PHYSICAL_ADDRESS) (UINTN) NULL) {
|
|
return ;
|
|
}
|
|
TestSize = (UINT32) Desc->Length;
|
|
TestPtr = (UINT32 *) (UINTN) Desc->Union.DataBlock;
|
|
}
|
|
}
|
|
|
|
/**
|
|
Checks for the presence of capsule descriptors.
|
|
Get capsule descriptors from variable CapsuleUpdateData, CapsuleUpdateData1, CapsuleUpdateData2...
|
|
|
|
@param BlockListBuffer Pointer to the buffer of capsule descriptors variables
|
|
@param BlockDescriptorList Pointer to the capsule descriptors list
|
|
|
|
@retval EFI_SUCCESS a valid capsule is present
|
|
@retval EFI_NOT_FOUND if a valid capsule is not present
|
|
**/
|
|
EFI_STATUS
|
|
BuildCapsuleDescriptors (
|
|
IN EFI_PHYSICAL_ADDRESS *BlockListBuffer,
|
|
OUT EFI_CAPSULE_BLOCK_DESCRIPTOR **BlockDescriptorList
|
|
)
|
|
{
|
|
UINTN Index;
|
|
EFI_CAPSULE_BLOCK_DESCRIPTOR *LastBlock;
|
|
EFI_CAPSULE_BLOCK_DESCRIPTOR *TempBlock;
|
|
EFI_CAPSULE_BLOCK_DESCRIPTOR *HeadBlock;
|
|
|
|
LastBlock = NULL;
|
|
HeadBlock = NULL;
|
|
TempBlock = NULL;
|
|
Index = 0;
|
|
|
|
while (BlockListBuffer[Index] != 0) {
|
|
if (Index == 0) {
|
|
//
|
|
// For the first Capsule Image, test integrity of descriptors.
|
|
//
|
|
LastBlock = ValidateCapsuleIntegrity ((EFI_CAPSULE_BLOCK_DESCRIPTOR *)(UINTN)BlockListBuffer[Index]);
|
|
if (LastBlock == NULL) {
|
|
return EFI_NOT_FOUND;
|
|
}
|
|
//
|
|
// Return the base of the block descriptors
|
|
//
|
|
HeadBlock = (EFI_CAPSULE_BLOCK_DESCRIPTOR *)(UINTN)BlockListBuffer[Index];
|
|
} else {
|
|
//
|
|
// Test integrity of descriptors.
|
|
//
|
|
TempBlock = ValidateCapsuleIntegrity ((EFI_CAPSULE_BLOCK_DESCRIPTOR *)(UINTN)BlockListBuffer[Index]);
|
|
if (TempBlock == NULL) {
|
|
return EFI_NOT_FOUND;
|
|
}
|
|
//
|
|
// Combine the different BlockList into single BlockList.
|
|
//
|
|
LastBlock->Union.DataBlock = (EFI_PHYSICAL_ADDRESS)(UINTN)BlockListBuffer[Index];
|
|
LastBlock->Length = 0;
|
|
LastBlock = TempBlock;
|
|
}
|
|
Index ++;
|
|
}
|
|
|
|
if (HeadBlock != NULL) {
|
|
*BlockDescriptorList = HeadBlock;
|
|
return EFI_SUCCESS;
|
|
}
|
|
return EFI_NOT_FOUND;
|
|
}
|
|
|
|
/**
|
|
The function to coalesce a fragmented capsule in memory.
|
|
|
|
Memory Map for coalesced capsule:
|
|
MemBase + ---->+---------------------------+<-----------+
|
|
MemSize | CapsuleOffset[49] | |
|
|
+---------------------------+ |
|
|
| ................ | |
|
|
+---------------------------+ |
|
|
| CapsuleOffset[2] | |
|
|
+---------------------------+ |
|
|
| CapsuleOffset[1] | |
|
|
+---------------------------+ |
|
|
| CapsuleOffset[0] | CapsuleSize
|
|
+---------------------------+ |
|
|
| CapsuleNumber | |
|
|
+---------------------------+ |
|
|
| | |
|
|
| | |
|
|
| Capsule Image | |
|
|
| | |
|
|
| | |
|
|
+---------------------------+ |
|
|
| PrivateData | |
|
|
DestPtr ----> +---------------------------+<-----------+
|
|
| | |
|
|
| FreeMem | FreeMemSize
|
|
| | |
|
|
FreeMemBase --->+---------------------------+<-----------+
|
|
| Terminator |
|
|
+---------------------------+
|
|
| BlockDescriptor n |
|
|
+---------------------------+
|
|
| ................. |
|
|
+---------------------------+
|
|
| BlockDescriptor 1 |
|
|
+---------------------------+
|
|
| BlockDescriptor 0 |
|
|
+---------------------------+
|
|
| PrivateDataDesc 0 |
|
|
MemBase ---->+---------------------------+<----- BlockList
|
|
|
|
@param PeiServices General purpose services available to every PEIM.
|
|
@param BlockListBuffer Point to the buffer of Capsule Descriptor Variables.
|
|
@param MemoryBase Pointer to the base of a block of memory that we can walk
|
|
all over while trying to coalesce our buffers.
|
|
On output, this variable will hold the base address of
|
|
a coalesced capsule.
|
|
@param MemorySize Size of the memory region pointed to by MemoryBase.
|
|
On output, this variable will contain the size of the
|
|
coalesced capsule.
|
|
|
|
@retval EFI_NOT_FOUND If we could not find the capsule descriptors.
|
|
|
|
@retval EFI_BUFFER_TOO_SMALL
|
|
If we could not coalesce the capsule in the memory
|
|
region provided to us.
|
|
|
|
@retval EFI_SUCCESS Processed the capsule successfully.
|
|
**/
|
|
EFI_STATUS
|
|
EFIAPI
|
|
CapsuleDataCoalesce (
|
|
IN EFI_PEI_SERVICES **PeiServices,
|
|
IN EFI_PHYSICAL_ADDRESS *BlockListBuffer,
|
|
IN OUT VOID **MemoryBase,
|
|
IN OUT UINTN *MemorySize
|
|
)
|
|
{
|
|
VOID *NewCapsuleBase;
|
|
VOID *DataPtr;
|
|
UINT8 CapsuleIndex;
|
|
UINT8 *FreeMemBase;
|
|
UINT8 *DestPtr;
|
|
UINT8 *RelocPtr;
|
|
UINT32 CapsuleOffset[MAX_SUPPORT_CAPSULE_NUM];
|
|
UINT32 *AddDataPtr;
|
|
UINT32 CapsuleTimes;
|
|
UINT64 SizeLeft;
|
|
UINT64 CapsuleImageSize;
|
|
UINTN CapsuleSize;
|
|
UINTN DescriptorsSize;
|
|
UINTN FreeMemSize;
|
|
UINTN NumDescriptors;
|
|
BOOLEAN IsCorrupted;
|
|
BOOLEAN CapsuleBeginFlag;
|
|
EFI_STATUS Status;
|
|
EFI_CAPSULE_HEADER *CapsuleHeader;
|
|
EFI_CAPSULE_PEIM_PRIVATE_DATA PrivateData;
|
|
EFI_CAPSULE_PEIM_PRIVATE_DATA *PrivateDataPtr;
|
|
EFI_CAPSULE_BLOCK_DESCRIPTOR *BlockList;
|
|
EFI_CAPSULE_BLOCK_DESCRIPTOR *CurrentBlockDesc;
|
|
EFI_CAPSULE_BLOCK_DESCRIPTOR *TempBlockDesc;
|
|
EFI_CAPSULE_BLOCK_DESCRIPTOR PrivateDataDesc[2];
|
|
|
|
CapsuleIndex = 0;
|
|
SizeLeft = 0;
|
|
CapsuleTimes = 0;
|
|
CapsuleImageSize = 0;
|
|
PrivateDataPtr = NULL;
|
|
AddDataPtr = NULL;
|
|
CapsuleHeader = NULL;
|
|
CapsuleBeginFlag = TRUE;
|
|
IsCorrupted = TRUE;
|
|
CapsuleSize = 0;
|
|
NumDescriptors = 0;
|
|
|
|
//
|
|
// Build capsule descriptors list
|
|
//
|
|
Status = BuildCapsuleDescriptors (BlockListBuffer, &BlockList);
|
|
if (EFI_ERROR (Status)) {
|
|
return Status;
|
|
}
|
|
|
|
DEBUG_CODE (
|
|
CapsuleTestPatternPreCoalesce (PeiServices, BlockList);
|
|
);
|
|
|
|
//
|
|
// Get the size of our descriptors and the capsule size. GetCapsuleInfo()
|
|
// returns the number of descriptors that actually point to data, so add
|
|
// one for a terminator. Do that below.
|
|
//
|
|
GetCapsuleInfo (BlockList, &NumDescriptors, &CapsuleSize);
|
|
if ((CapsuleSize == 0) || (NumDescriptors == 0)) {
|
|
return EFI_NOT_FOUND;
|
|
}
|
|
|
|
//
|
|
// Initialize our local copy of private data. When we're done, we'll create a
|
|
// descriptor for it as well so that it can be put into free memory without
|
|
// trashing anything.
|
|
//
|
|
PrivateData.Signature = EFI_CAPSULE_PEIM_PRIVATE_DATA_SIGNATURE;
|
|
PrivateData.CapsuleSize = (UINT32) CapsuleSize;
|
|
PrivateDataDesc[0].Union.DataBlock = (EFI_PHYSICAL_ADDRESS) (UINTN) &PrivateData;
|
|
PrivateDataDesc[0].Length = sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA);
|
|
PrivateDataDesc[1].Union.DataBlock = (EFI_PHYSICAL_ADDRESS) (UINTN) BlockList;
|
|
PrivateDataDesc[1].Length = 0;
|
|
//
|
|
// In addition to PrivateDataDesc[1:0], one terminator is added
|
|
// See below RelocateBlockDescriptors()
|
|
//
|
|
NumDescriptors += 3;
|
|
CapsuleSize += sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA) + sizeof(CapsuleOffset) + sizeof(UINT32);
|
|
BlockList = PrivateDataDesc;
|
|
DescriptorsSize = NumDescriptors * sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
|
|
|
|
//
|
|
// Don't go below some min address. If the base is below it,
|
|
// then move it up and adjust the size accordingly.
|
|
//
|
|
DEBUG ((EFI_D_INFO, "Capsule Memory range from 0x%8X to 0x%8X\n", (UINTN) *MemoryBase, (UINTN)*MemoryBase + *MemorySize));
|
|
if ((UINTN)*MemoryBase < (UINTN) MIN_COALESCE_ADDR) {
|
|
if (((UINTN)*MemoryBase + *MemorySize) < (UINTN) MIN_COALESCE_ADDR) {
|
|
return EFI_BUFFER_TOO_SMALL;
|
|
} else {
|
|
*MemorySize = *MemorySize - ((UINTN) MIN_COALESCE_ADDR - (UINTN) *MemoryBase);
|
|
*MemoryBase = (VOID *) (UINTN) MIN_COALESCE_ADDR;
|
|
}
|
|
}
|
|
|
|
if (*MemorySize <= (CapsuleSize + DescriptorsSize)) {
|
|
return EFI_BUFFER_TOO_SMALL;
|
|
}
|
|
|
|
FreeMemBase = *MemoryBase;
|
|
FreeMemSize = *MemorySize;
|
|
DEBUG ((EFI_D_INFO, "Capsule Free Memory from 0x%8X to 0x%8X\n", (UINTN) FreeMemBase, (UINTN) FreeMemBase + FreeMemSize));
|
|
|
|
//
|
|
// Relocate all the block descriptors to low memory to make further
|
|
// processing easier.
|
|
//
|
|
BlockList = RelocateBlockDescriptors (PeiServices, BlockList, FreeMemBase, FreeMemSize);
|
|
if (BlockList == NULL) {
|
|
//
|
|
// Not enough room to relocate the descriptors
|
|
//
|
|
return EFI_BUFFER_TOO_SMALL;
|
|
}
|
|
|
|
//
|
|
// Take the top of memory for the capsule. Naturally align.
|
|
//
|
|
DestPtr = FreeMemBase + FreeMemSize - CapsuleSize;
|
|
DestPtr = (UINT8 *) ((UINTN) DestPtr &~ (UINTN) (sizeof (UINTN) - 1));
|
|
FreeMemBase = (UINT8 *) BlockList + DescriptorsSize;
|
|
FreeMemSize = FreeMemSize - DescriptorsSize - CapsuleSize;
|
|
NewCapsuleBase = (VOID *) DestPtr;
|
|
|
|
//
|
|
// Move all the blocks to the top (high) of memory.
|
|
// Relocate all the obstructing blocks. Note that the block descriptors
|
|
// were coalesced when they were relocated, so we can just ++ the pointer.
|
|
//
|
|
CurrentBlockDesc = BlockList;
|
|
while ((CurrentBlockDesc->Length != 0) || (CurrentBlockDesc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
|
|
//
|
|
// See if any of the remaining capsule blocks are in the way
|
|
//
|
|
TempBlockDesc = CurrentBlockDesc;
|
|
while (TempBlockDesc->Length != 0) {
|
|
//
|
|
// Is this block in the way of where we want to copy the current descriptor to?
|
|
//
|
|
if (IsOverlapped (
|
|
(UINT8 *) DestPtr,
|
|
(UINTN) CurrentBlockDesc->Length,
|
|
(UINT8 *) (UINTN) TempBlockDesc->Union.DataBlock,
|
|
(UINTN) TempBlockDesc->Length
|
|
)) {
|
|
//
|
|
// Relocate the block
|
|
//
|
|
RelocPtr = FindFreeMem (BlockList, FreeMemBase, FreeMemSize, (UINTN) TempBlockDesc->Length);
|
|
if (RelocPtr == NULL) {
|
|
return EFI_BUFFER_TOO_SMALL;
|
|
}
|
|
|
|
CopyMem ((VOID *) RelocPtr, (VOID *) (UINTN) TempBlockDesc->Union.DataBlock, (UINTN) TempBlockDesc->Length);
|
|
DEBUG ((EFI_D_INFO, "Capsule reloc data block from 0x%8X to 0x%8X with size 0x%8X\n",
|
|
(UINTN) TempBlockDesc->Union.DataBlock, (UINTN) RelocPtr, (UINTN) TempBlockDesc->Length));
|
|
|
|
TempBlockDesc->Union.DataBlock = (EFI_PHYSICAL_ADDRESS) (UINTN) RelocPtr;
|
|
}
|
|
//
|
|
// Next descriptor
|
|
//
|
|
TempBlockDesc++;
|
|
}
|
|
//
|
|
// Ok, we made it through. Copy the block.
|
|
// we just support greping one capsule from the lists of block descs list.
|
|
//
|
|
CapsuleTimes ++;
|
|
//
|
|
//Skip the first block descriptor that filled with EFI_CAPSULE_PEIM_PRIVATE_DATA
|
|
//
|
|
if (CapsuleTimes > 1) {
|
|
//
|
|
//For every capsule entry point, check its header to determine whether to relocate it.
|
|
//If it is invalid, skip it and move on to the next capsule. If it is valid, relocate it.
|
|
//
|
|
if (CapsuleBeginFlag) {
|
|
CapsuleBeginFlag = FALSE;
|
|
CapsuleHeader = (EFI_CAPSULE_HEADER*)(UINTN)CurrentBlockDesc->Union.DataBlock;
|
|
SizeLeft = CapsuleHeader->CapsuleImageSize;
|
|
if (!IsCapsuleCorrupted (CapsuleHeader)) {
|
|
|
|
if (CapsuleIndex > (MAX_SUPPORT_CAPSULE_NUM - 1)) {
|
|
DEBUG ((EFI_D_ERROR, "Capsule number exceeds the max number of %d!\n", MAX_SUPPORT_CAPSULE_NUM));
|
|
return EFI_BUFFER_TOO_SMALL;
|
|
}
|
|
|
|
//
|
|
// Relocate this valid capsule
|
|
//
|
|
IsCorrupted = FALSE;
|
|
CapsuleImageSize += SizeLeft;
|
|
CopyMem ((VOID *) DestPtr, (VOID *) (UINTN) CurrentBlockDesc->Union.DataBlock, (UINTN) CurrentBlockDesc->Length);
|
|
DEBUG ((EFI_D_INFO, "Capsule coalesce block no.0x%8X from 0x%8lX to 0x%8lX with size 0x%8X\n",CapsuleTimes,
|
|
(UINTN)CurrentBlockDesc->Union.DataBlock, (UINTN)DestPtr, (UINTN)CurrentBlockDesc->Length));
|
|
//
|
|
// Cache the begin offset of this capsule
|
|
//
|
|
CapsuleOffset[CapsuleIndex++] = (UINT32) (UINTN) DestPtr - (UINT32)(UINTN)NewCapsuleBase - (UINT32)sizeof(EFI_CAPSULE_PEIM_PRIVATE_DATA);
|
|
DestPtr += CurrentBlockDesc->Length;
|
|
}
|
|
//
|
|
// If the current block length is greater than or equal to SizeLeft, this is the
|
|
// start of the next capsule
|
|
//
|
|
if (CurrentBlockDesc->Length < SizeLeft) {
|
|
SizeLeft -= CurrentBlockDesc->Length;
|
|
} else {
|
|
//
|
|
// Start the next cycle
|
|
//
|
|
SizeLeft = 0;
|
|
IsCorrupted = TRUE;
|
|
CapsuleBeginFlag = TRUE;
|
|
}
|
|
} else {
|
|
//
|
|
//Go on relocating the current capule image.
|
|
//
|
|
if (CurrentBlockDesc->Length < SizeLeft) {
|
|
if (!IsCorrupted) {
|
|
CopyMem ((VOID *) DestPtr, (VOID *) (UINTN) (CurrentBlockDesc->Union.DataBlock), (UINTN)CurrentBlockDesc->Length);
|
|
DEBUG ((EFI_D_INFO, "Capsule coalesce block no.0x%8X from 0x%8lX to 0x%8lX with size 0x%8X\n",CapsuleTimes,
|
|
(UINTN)CurrentBlockDesc->Union.DataBlock, (UINTN)DestPtr, (UINTN)CurrentBlockDesc->Length));
|
|
DestPtr += CurrentBlockDesc->Length;
|
|
}
|
|
SizeLeft -= CurrentBlockDesc->Length;
|
|
} else {
|
|
//
|
|
//Here is the end of the current capsule image.
|
|
//
|
|
if (!IsCorrupted) {
|
|
CopyMem ((VOID *) DestPtr, (VOID *)(UINTN)(CurrentBlockDesc->Union.DataBlock), (UINTN)CurrentBlockDesc->Length);
|
|
DEBUG ((EFI_D_INFO, "Capsule coalesce block no.0x%8X from 0x%8lX to 0x%8lX with size 0x%8X\n",CapsuleTimes,
|
|
(UINTN)CurrentBlockDesc->Union.DataBlock, (UINTN)DestPtr, (UINTN)CurrentBlockDesc->Length));
|
|
DestPtr += CurrentBlockDesc->Length;
|
|
}
|
|
//
|
|
// Start the next cycle
|
|
//
|
|
SizeLeft = 0;
|
|
IsCorrupted = TRUE;
|
|
CapsuleBeginFlag = TRUE;
|
|
}
|
|
}
|
|
} else {
|
|
//
|
|
//The first entry is the block descriptor for EFI_CAPSULE_PEIM_PRIVATE_DATA.
|
|
//
|
|
CopyMem ((VOID *) DestPtr, (VOID *) (UINTN) CurrentBlockDesc->Union.DataBlock, (UINTN) CurrentBlockDesc->Length);
|
|
DestPtr += CurrentBlockDesc->Length;
|
|
}
|
|
//
|
|
//Walk through the block descriptor list.
|
|
//
|
|
CurrentBlockDesc++;
|
|
}
|
|
//
|
|
// We return the base of memory we want reserved, and the size.
|
|
// The memory peim should handle it appropriately from there.
|
|
//
|
|
*MemorySize = (UINTN) CapsuleImageSize;
|
|
*MemoryBase = (VOID *) NewCapsuleBase;
|
|
|
|
//
|
|
//Append the offsets of mutiply capsules to the continous buffer
|
|
//
|
|
DataPtr = (VOID*)((UINTN)NewCapsuleBase + sizeof(EFI_CAPSULE_PEIM_PRIVATE_DATA) + (UINTN)CapsuleImageSize);
|
|
AddDataPtr = (UINT32*)(((UINTN) DataPtr + sizeof(UINT32) - 1) &~ (UINT32) (sizeof (UINT32) - 1));
|
|
|
|
*AddDataPtr++ = CapsuleIndex;
|
|
|
|
CopyMem (AddDataPtr, &CapsuleOffset[0], sizeof (UINT32) * CapsuleIndex);
|
|
|
|
PrivateDataPtr = (EFI_CAPSULE_PEIM_PRIVATE_DATA *) NewCapsuleBase;
|
|
PrivateDataPtr->CapsuleSize = (UINT32) CapsuleImageSize;
|
|
|
|
return EFI_SUCCESS;
|
|
}
|