OvmfPkg/EmuVariableFvbRuntimeDxe: change block size to 4KB

EmuVariableFvbRuntimeDxe currently produces a Firmware Volume Block
protocol that is based on a block map of two blocks, each block having
PcdFlashNvStorageFtwSpareSize for size.

(The total size is 2 * PcdFlashNvStorageFtwSpareSize.)

FaultTolerantWriteDxe in turn expects the block size to be a power of two.

In the 4MB build of OVMF, PcdFlashNvStorageFtwSpareSize is 264KB, which is
not a power of two. In order to equip EmuVariableFvbRuntimeDxe for this
build, shrink the block size to 4KB (EFI_PAGE_SIZE), and grow the block
count from 2 to EFI_SIZE_TO_PAGES(2 * PcdFlashNvStorageFtwSpareSize). The
total size remains

  2 * PcdFlashNvStorageFtwSpareSize
  --------------------------------- * EFI_PAGE_SIZE
            EFI_PAGE_SIZE

Right now EmuVariableFvbRuntimeDxe open-codes the block count of 2 in
various limit checks, so introduce a few new macros:
- EMU_FVB_NUM_TOTAL_BLOCKS, for the LHS of the above product,
- EMU_FVB_NUM_SPARE_BLOCKS for the half of that.

Also rework the FVB protocol members to support an arbitrary count of
blocks.

Keep the invariant intact that the first half of the firmware volume hosts
the variable store and the FTW working block, and that the second half
maps the FTW spare area.

Cc: Jordan Justen <jordan.l.justen@intel.com>
Ref: https://bugzilla.tianocore.org/show_bug.cgi?id=527
Contributed-under: TianoCore Contribution Agreement 1.0
Signed-off-by: Laszlo Ersek <lersek@redhat.com>
Regression-tested-by: Gary Lin <glin@suse.com>
Reviewed-by: Jordan Justen <jordan.l.justen@intel.com>
This commit is contained in:
Laszlo Ersek 2017-05-06 13:17:58 +02:00
parent 89f385ce0a
commit 7e8329267e
2 changed files with 77 additions and 82 deletions

View File

@ -74,8 +74,8 @@ EFI_FW_VOL_BLOCK_DEVICE mEmuVarsFvb = {
}
},
NULL, // BufferPtr
FixedPcdGet32 (PcdFlashNvStorageFtwSpareSize), // BlockSize
2 * FixedPcdGet32 (PcdFlashNvStorageFtwSpareSize), // Size
EMU_FVB_BLOCK_SIZE, // BlockSize
EMU_FVB_SIZE, // Size
{ // FwVolBlockInstance
FvbProtocolGetAttributes,
FvbProtocolSetAttributes,
@ -185,14 +185,14 @@ FvbProtocolGetBlockSize (
{
EFI_FW_VOL_BLOCK_DEVICE *FvbDevice;
if (Lba > 1) {
if (Lba >= EMU_FVB_NUM_TOTAL_BLOCKS) {
return EFI_INVALID_PARAMETER;
}
FvbDevice = FVB_DEVICE_FROM_THIS (This);
*BlockSize = FvbDevice->BlockSize;
*NumberOfBlocks = (UINTN) (2 - (UINTN) Lba);
*NumberOfBlocks = (UINTN)(EMU_FVB_NUM_TOTAL_BLOCKS - Lba);
return EFI_SUCCESS;
}
@ -322,68 +322,58 @@ FvbProtocolEraseBlocks (
)
{
EFI_FW_VOL_BLOCK_DEVICE *FvbDevice;
VA_LIST args;
VA_LIST Args;
EFI_LBA StartingLba;
UINTN NumOfLba;
UINT8 Erase;
VOID *ErasePtr;
UINT8 *ErasePtr;
UINTN EraseSize;
FvbDevice = FVB_DEVICE_FROM_THIS (This);
Erase = 0;
VA_START (args, This);
//
// Check input parameters
//
VA_START (Args, This);
do {
StartingLba = VA_ARG (args, EFI_LBA);
StartingLba = VA_ARG (Args, EFI_LBA);
if (StartingLba == EFI_LBA_LIST_TERMINATOR) {
break;
}
NumOfLba = VA_ARG (Args, UINTN);
NumOfLba = VA_ARG (args, UINTN);
//
// Check input parameters
//
if ((NumOfLba == 0) || (StartingLba > 1) || ((StartingLba + NumOfLba) > 2)) {
VA_END (args);
if (StartingLba > EMU_FVB_NUM_TOTAL_BLOCKS ||
NumOfLba > EMU_FVB_NUM_TOTAL_BLOCKS - StartingLba) {
VA_END (Args);
return EFI_INVALID_PARAMETER;
}
if (StartingLba == 0) {
Erase = (UINT8) (Erase | BIT0);
}
if ((StartingLba + NumOfLba) == 2) {
Erase = (UINT8) (Erase | BIT1);
}
} while (1);
VA_END (Args);
VA_END (args);
//
// Erase blocks
//
VA_START (Args, This);
do {
StartingLba = VA_ARG (Args, EFI_LBA);
if (StartingLba == EFI_LBA_LIST_TERMINATOR) {
break;
}
NumOfLba = VA_ARG (Args, UINTN);
ErasePtr = (UINT8*) FvbDevice->BufferPtr;
EraseSize = 0;
ErasePtr = FvbDevice->BufferPtr;
ErasePtr += (UINTN)StartingLba * FvbDevice->BlockSize;
EraseSize = NumOfLba * FvbDevice->BlockSize;
if ((Erase & BIT0) != 0) {
EraseSize = EraseSize + FvbDevice->BlockSize;
} else {
ErasePtr = (VOID*) ((UINT8*)ErasePtr + FvbDevice->BlockSize);
}
SetMem (ErasePtr, EraseSize, ERASED_UINT8);
} while (1);
VA_END (Args);
if ((Erase & BIT1) != 0) {
EraseSize = EraseSize + FvbDevice->BlockSize;
}
if (EraseSize != 0) {
SetMem (
(VOID*) ErasePtr,
EraseSize,
ERASED_UINT8
);
VA_START (args, This);
PlatformFvbBlocksErased (This, args);
VA_END (args);
}
//
// Call platform hook
//
VA_START (Args, This);
PlatformFvbBlocksErased (This, Args);
VA_END (Args);
return EFI_SUCCESS;
}
@ -458,31 +448,30 @@ FvbProtocolWrite (
IN UINT8 *Buffer
)
{
EFI_FW_VOL_BLOCK_DEVICE *FvbDevice;
UINT8 *FvbDataPtr;
EFI_STATUS Status;
FvbDevice = FVB_DEVICE_FROM_THIS (This);
if ((Lba > 1) || (Offset > FvbDevice->BlockSize)) {
if (Lba >= EMU_FVB_NUM_TOTAL_BLOCKS ||
Offset > FvbDevice->BlockSize) {
return EFI_INVALID_PARAMETER;
}
if ((Offset + *NumBytes) > FvbDevice->BlockSize) {
Status = EFI_SUCCESS;
if (*NumBytes > FvbDevice->BlockSize - Offset) {
*NumBytes = FvbDevice->BlockSize - Offset;
Status = EFI_BAD_BUFFER_SIZE;
}
FvbDataPtr =
(UINT8*) FvbDevice->BufferPtr +
MultU64x32 (Lba, (UINT32) FvbDevice->BlockSize) +
Offset;
FvbDataPtr = FvbDevice->BufferPtr;
FvbDataPtr += (UINTN)Lba * FvbDevice->BlockSize;
FvbDataPtr += Offset;
if (*NumBytes > 0) {
CopyMem (FvbDataPtr, Buffer, *NumBytes);
PlatformFvbDataWritten (This, Lba, Offset, *NumBytes, Buffer);
}
return EFI_SUCCESS;
CopyMem (FvbDataPtr, Buffer, *NumBytes);
PlatformFvbDataWritten (This, Lba, Offset, *NumBytes, Buffer);
return Status;
}
@ -545,28 +534,28 @@ FvbProtocolRead (
{
EFI_FW_VOL_BLOCK_DEVICE *FvbDevice;
UINT8 *FvbDataPtr;
EFI_STATUS Status;
FvbDevice = FVB_DEVICE_FROM_THIS (This);
if ((Lba > 1) || (Offset > FvbDevice->BlockSize)) {
if (Lba >= EMU_FVB_NUM_TOTAL_BLOCKS ||
Offset > FvbDevice->BlockSize) {
return EFI_INVALID_PARAMETER;
}
if ((Offset + *NumBytes) > FvbDevice->BlockSize) {
Status = EFI_SUCCESS;
if (*NumBytes > FvbDevice->BlockSize - Offset) {
*NumBytes = FvbDevice->BlockSize - Offset;
Status = EFI_BAD_BUFFER_SIZE;
}
FvbDataPtr =
(UINT8*) FvbDevice->BufferPtr +
MultU64x32 (Lba, (UINT32) FvbDevice->BlockSize) +
Offset;
FvbDataPtr = FvbDevice->BufferPtr;
FvbDataPtr += (UINTN)Lba * FvbDevice->BlockSize;
FvbDataPtr += Offset;
if (*NumBytes > 0) {
CopyMem (Buffer, FvbDataPtr, *NumBytes);
PlatformFvbDataRead (This, Lba, Offset, *NumBytes, Buffer);
}
return EFI_SUCCESS;
CopyMem (Buffer, FvbDataPtr, *NumBytes);
PlatformFvbDataRead (This, Lba, Offset, *NumBytes, Buffer);
return Status;
}
@ -663,7 +652,7 @@ InitializeFvAndVariableStoreHeaders (
// EFI_FV_BLOCK_MAP_ENTRY BlockMap[1];
{
{
2, // UINT32 NumBlocks;
EMU_FVB_NUM_TOTAL_BLOCKS, // UINT32 NumBlocks;
EMU_FVB_BLOCK_SIZE // UINT32 Length;
}
}
@ -741,11 +730,13 @@ FvbInitialize (
//
// Verify that the PCD's are set correctly.
//
ASSERT (FixedPcdGet32 (PcdFlashNvStorageFtwSpareSize) %
EMU_FVB_BLOCK_SIZE == 0);
if (
(PcdGet32 (PcdVariableStoreSize) +
PcdGet32 (PcdFlashNvStorageFtwWorkingSize)
) >
EMU_FVB_BLOCK_SIZE
EMU_FVB_NUM_SPARE_BLOCKS * EMU_FVB_BLOCK_SIZE
) {
DEBUG ((EFI_D_ERROR, "EMU Variable invalid PCD sizes\n"));
return EFI_INVALID_PARAMETER;
@ -779,10 +770,7 @@ FvbInitialize (
Initialize = FALSE;
}
} else {
Ptr = AllocateAlignedRuntimePages (
EFI_SIZE_TO_PAGES (EMU_FVB_SIZE),
SIZE_64KB
);
Ptr = AllocateRuntimePages (EFI_SIZE_TO_PAGES (EMU_FVB_SIZE));
}
mEmuVarsFvb.BufferPtr = Ptr;
@ -808,7 +796,8 @@ FvbInitialize (
//
// Initialize the Fault Tolerant Write spare block
//
SubPtr = (VOID*) ((UINT8*) Ptr + EMU_FVB_BLOCK_SIZE);
SubPtr = (VOID*) ((UINT8*) Ptr +
EMU_FVB_NUM_SPARE_BLOCKS * EMU_FVB_BLOCK_SIZE);
PcdStatus = PcdSet32S (PcdFlashNvStorageFtwSpareBase,
(UINT32)(UINTN) SubPtr);
ASSERT_RETURN_ERROR (PcdStatus);

View File

@ -58,8 +58,14 @@ typedef struct {
//
// Constants
//
#define EMU_FVB_BLOCK_SIZE (FixedPcdGet32 (PcdFlashNvStorageFtwSpareSize))
#define EMU_FVB_SIZE (2 * FixedPcdGet32 (PcdFlashNvStorageFtwSpareSize))
#define EMU_FVB_BLOCK_SIZE \
EFI_PAGE_SIZE
#define EMU_FVB_NUM_SPARE_BLOCKS \
EFI_SIZE_TO_PAGES ((UINTN)FixedPcdGet32 (PcdFlashNvStorageFtwSpareSize))
#define EMU_FVB_NUM_TOTAL_BLOCKS \
(2 * EMU_FVB_NUM_SPARE_BLOCKS)
#define EMU_FVB_SIZE \
(EMU_FVB_NUM_TOTAL_BLOCKS * EMU_FVB_BLOCK_SIZE)
#define FTW_WRITE_QUEUE_SIZE \
(FixedPcdGet32 (PcdFlashNvStorageFtwWorkingSize) - \
sizeof (EFI_FAULT_TOLERANT_WORKING_BLOCK_HEADER))