mirror of
https://github.com/tianocore/edk2
synced 2026-08-27 00:23:19 -04:00
This patch refactors low level NOR flash functions into a dedicated library to enable reuse, particularly for supporting the firmware upgrade feature. Signed-off-by: Tuan Phan <tphan@ventanamicro.com>
964 lines
30 KiB
C
964 lines
30 KiB
C
/** @file VirtNorFlashDeviceLib.c
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Copyright (c) 2011 - 2020, Arm Limited. All rights reserved.<BR>
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Copyright (c) 2020, Linaro, Ltd. All rights reserved.<BR>
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SPDX-License-Identifier: BSD-2-Clause-Patent
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**/
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#include <Base.h>
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#include <PiDxe.h>
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#include <Library/BaseMemoryLib.h>
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#include <Library/DebugLib.h>
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#include <Library/IoLib.h>
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#include <Library/VirtNorFlashDeviceLib.h>
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#define NOR_FLASH_ERASE_RETRY 10
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// Device access macros
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// These are necessary because we use 2 x 16bit parts to make up 32bit data
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#define HIGH_16_BITS 0xFFFF0000
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#define LOW_16_BITS 0x0000FFFF
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#define LOW_8_BITS 0x000000FF
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#define FOLD_32BIT_INTO_16BIT(value) ( ( value >> 16 ) | ( value & LOW_16_BITS ) )
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#define GET_LOW_BYTE(value) ( value & LOW_8_BITS )
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#define GET_HIGH_BYTE(value) ( GET_LOW_BYTE( value >> 16 ) )
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// Status Register Bits
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#define P30_SR_BIT_WRITE (BIT7 << 16 | BIT7)
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#define P30_SR_BIT_ERASE_SUSPEND (BIT6 << 16 | BIT6)
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#define P30_SR_BIT_ERASE (BIT5 << 16 | BIT5)
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#define P30_SR_BIT_PROGRAM (BIT4 << 16 | BIT4)
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#define P30_SR_BIT_VPP (BIT3 << 16 | BIT3)
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#define P30_SR_BIT_PROGRAM_SUSPEND (BIT2 << 16 | BIT2)
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#define P30_SR_BIT_BLOCK_LOCKED (BIT1 << 16 | BIT1)
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#define P30_SR_BIT_BEFP (BIT0 << 16 | BIT0)
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// Device Commands for Intel StrataFlash(R) Embedded Memory (P30) Family
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// On chip buffer size for buffered programming operations
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// There are 2 chips, each chip can buffer up to 32 (16-bit)words, and each word is 2 bytes.
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// Therefore the total size of the buffer is 2 x 32 x 2 = 128 bytes
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#define P30_MAX_BUFFER_SIZE_IN_BYTES ((UINTN)128)
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#define P30_MAX_BUFFER_SIZE_IN_WORDS (P30_MAX_BUFFER_SIZE_IN_BYTES/((UINTN)4))
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#define MAX_BUFFERED_PROG_ITERATIONS 10000000
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#define BOUNDARY_OF_32_WORDS ((UINTN)0x7F)
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// CFI Addresses
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#define P30_CFI_ADDR_QUERY_UNIQUE_QRY 0x10
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#define P30_CFI_ADDR_VENDOR_ID 0x13
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// CFI Data
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#define CFI_QRY 0x00595251
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// READ Commands
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#define P30_CMD_READ_DEVICE_ID 0x0090
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#define P30_CMD_READ_STATUS_REGISTER 0x0070
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#define P30_CMD_CLEAR_STATUS_REGISTER 0x0050
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#define P30_CMD_READ_ARRAY 0x00FF
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#define P30_CMD_READ_CFI_QUERY 0x0098
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// WRITE Commands
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#define P30_CMD_WORD_PROGRAM_SETUP 0x0040
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#define P30_CMD_ALTERNATE_WORD_PROGRAM_SETUP 0x0010
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#define P30_CMD_BUFFERED_PROGRAM_SETUP 0x00E8
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#define P30_CMD_BUFFERED_PROGRAM_CONFIRM 0x00D0
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#define P30_CMD_BEFP_SETUP 0x0080
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#define P30_CMD_BEFP_CONFIRM 0x00D0
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// ERASE Commands
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#define P30_CMD_BLOCK_ERASE_SETUP 0x0020
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#define P30_CMD_BLOCK_ERASE_CONFIRM 0x00D0
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// SUSPEND Commands
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#define P30_CMD_PROGRAM_OR_ERASE_SUSPEND 0x00B0
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#define P30_CMD_SUSPEND_RESUME 0x00D0
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// BLOCK LOCKING / UNLOCKING Commands
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#define P30_CMD_LOCK_BLOCK_SETUP 0x0060
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#define P30_CMD_LOCK_BLOCK 0x0001
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#define P30_CMD_UNLOCK_BLOCK 0x00D0
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#define P30_CMD_LOCK_DOWN_BLOCK 0x002F
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// PROTECTION Commands
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#define P30_CMD_PROGRAM_PROTECTION_REGISTER_SETUP 0x00C0
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// CONFIGURATION Commands
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#define P30_CMD_READ_CONFIGURATION_REGISTER_SETUP 0x0060
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#define P30_CMD_READ_CONFIGURATION_REGISTER 0x0003
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STATIC
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UINT32
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NorFlashReadStatusRegister (
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IN UINTN DeviceBaseAddress,
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IN UINTN SR_Address
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)
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{
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// Prepare to read the status register
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SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_READ_STATUS_REGISTER);
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return MmioRead32 (DeviceBaseAddress);
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}
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STATIC
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BOOLEAN
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NorFlashBlockIsLocked (
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IN UINTN DeviceBaseAddress,
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IN UINTN BlockAddress
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)
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{
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UINT32 LockStatus;
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// Send command for reading device id
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SEND_NOR_COMMAND (BlockAddress, 2, P30_CMD_READ_DEVICE_ID);
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// Read block lock status
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LockStatus = MmioRead32 (CREATE_NOR_ADDRESS (BlockAddress, 2));
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// Decode block lock status
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LockStatus = FOLD_32BIT_INTO_16BIT (LockStatus);
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if ((LockStatus & 0x2) != 0) {
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DEBUG ((DEBUG_ERROR, "NorFlashBlockIsLocked: WARNING: Block LOCKED DOWN\n"));
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}
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return ((LockStatus & 0x1) != 0);
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}
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STATIC
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EFI_STATUS
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NorFlashUnlockSingleBlock (
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IN UINTN DeviceBaseAddress,
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IN UINTN BlockAddress
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)
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{
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UINT32 LockStatus;
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// Raise the Task Priority Level to TPL_NOTIFY to serialise all its operations
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// and to protect shared data structures.
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// Request a lock setup
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SEND_NOR_COMMAND (BlockAddress, 0, P30_CMD_LOCK_BLOCK_SETUP);
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// Request an unlock
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SEND_NOR_COMMAND (BlockAddress, 0, P30_CMD_UNLOCK_BLOCK);
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// Wait until the status register gives us the all clear
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do {
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LockStatus = NorFlashReadStatusRegister (DeviceBaseAddress, BlockAddress);
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} while ((LockStatus & P30_SR_BIT_WRITE) != P30_SR_BIT_WRITE);
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// Put device back into Read Array mode
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SEND_NOR_COMMAND (BlockAddress, 0, P30_CMD_READ_ARRAY);
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DEBUG ((DEBUG_BLKIO, "UnlockSingleBlock: BlockAddress=0x%08x\n", BlockAddress));
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return EFI_SUCCESS;
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}
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EFI_STATUS
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EFIAPI
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NorFlashUnlockSingleBlockIfNecessary (
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IN UINTN DeviceBaseAddress,
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IN UINTN BlockAddress
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)
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{
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EFI_STATUS Status;
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Status = EFI_SUCCESS;
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if (NorFlashBlockIsLocked (DeviceBaseAddress, BlockAddress)) {
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Status = NorFlashUnlockSingleBlock (DeviceBaseAddress, BlockAddress);
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}
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return Status;
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}
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/**
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* The following function presumes that the block has already been unlocked.
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**/
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EFI_STATUS
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EFIAPI
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NorFlashEraseSingleBlock (
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IN UINTN DeviceBaseAddress,
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IN UINTN BlockAddress
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)
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{
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EFI_STATUS Status;
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UINT32 StatusRegister;
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Status = EFI_SUCCESS;
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// Request a block erase and then confirm it
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SEND_NOR_COMMAND (BlockAddress, 0, P30_CMD_BLOCK_ERASE_SETUP);
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SEND_NOR_COMMAND (BlockAddress, 0, P30_CMD_BLOCK_ERASE_CONFIRM);
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// Wait until the status register gives us the all clear
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do {
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StatusRegister = NorFlashReadStatusRegister (DeviceBaseAddress, BlockAddress);
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} while ((StatusRegister & P30_SR_BIT_WRITE) != P30_SR_BIT_WRITE);
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if (StatusRegister & P30_SR_BIT_VPP) {
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DEBUG ((DEBUG_ERROR, "EraseSingleBlock(BlockAddress=0x%08x: VPP Range Error\n", BlockAddress));
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Status = EFI_DEVICE_ERROR;
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}
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if ((StatusRegister & (P30_SR_BIT_ERASE | P30_SR_BIT_PROGRAM)) == (P30_SR_BIT_ERASE | P30_SR_BIT_PROGRAM)) {
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DEBUG ((DEBUG_ERROR, "EraseSingleBlock(BlockAddress=0x%08x: Command Sequence Error\n", BlockAddress));
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Status = EFI_DEVICE_ERROR;
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}
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if (StatusRegister & P30_SR_BIT_ERASE) {
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DEBUG ((DEBUG_ERROR, "EraseSingleBlock(BlockAddress=0x%08x: Block Erase Error StatusRegister:0x%X\n", BlockAddress, StatusRegister));
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Status = EFI_DEVICE_ERROR;
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}
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if (StatusRegister & P30_SR_BIT_BLOCK_LOCKED) {
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// The debug level message has been reduced because a device lock might happen. In this case we just retry it ...
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DEBUG ((DEBUG_INFO, "EraseSingleBlock(BlockAddress=0x%08x: Block Locked Error\n", BlockAddress));
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Status = EFI_WRITE_PROTECTED;
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}
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if (EFI_ERROR (Status)) {
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// Clear the Status Register
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SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_CLEAR_STATUS_REGISTER);
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}
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// Put device back into Read Array mode
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SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_READ_ARRAY);
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return Status;
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}
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EFI_STATUS
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EFIAPI
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NorFlashWriteSingleWord (
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IN UINTN DeviceBaseAddress,
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IN UINTN WordAddress,
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IN UINT32 WriteData
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)
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{
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EFI_STATUS Status;
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UINT32 StatusRegister;
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Status = EFI_SUCCESS;
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// Request a write single word command
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SEND_NOR_COMMAND (WordAddress, 0, P30_CMD_WORD_PROGRAM_SETUP);
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// Store the word into NOR Flash;
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MmioWrite32 (WordAddress, WriteData);
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// Wait for the write to complete and then check for any errors; i.e. check the Status Register
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do {
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// Prepare to read the status register
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StatusRegister = NorFlashReadStatusRegister (DeviceBaseAddress, WordAddress);
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// The chip is busy while the WRITE bit is not asserted
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} while ((StatusRegister & P30_SR_BIT_WRITE) != P30_SR_BIT_WRITE);
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// Perform a full status check:
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// Mask the relevant bits of Status Register.
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// Everything should be zero, if not, we have a problem
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if (StatusRegister & P30_SR_BIT_VPP) {
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DEBUG ((DEBUG_ERROR, "NorFlashWriteSingleWord(WordAddress:0x%X): VPP Range Error\n", WordAddress));
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Status = EFI_DEVICE_ERROR;
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}
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if (StatusRegister & P30_SR_BIT_PROGRAM) {
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DEBUG ((DEBUG_ERROR, "NorFlashWriteSingleWord(WordAddress:0x%X): Program Error\n", WordAddress));
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Status = EFI_DEVICE_ERROR;
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}
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if (StatusRegister & P30_SR_BIT_BLOCK_LOCKED) {
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DEBUG ((DEBUG_ERROR, "NorFlashWriteSingleWord(WordAddress:0x%X): Device Protect Error\n", WordAddress));
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Status = EFI_DEVICE_ERROR;
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}
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if (!EFI_ERROR (Status)) {
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// Clear the Status Register
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SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_CLEAR_STATUS_REGISTER);
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}
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return Status;
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}
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/*
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* Writes data to the NOR Flash using the Buffered Programming method.
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*
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* The maximum size of the on-chip buffer is 32-words, because of hardware restrictions.
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* Therefore this function will only handle buffers up to 32 words or 128 bytes.
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* To deal with larger buffers, call this function again.
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*
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* This function presumes that both the TargetAddress and the TargetAddress+BufferSize
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* exist entirely within the NOR Flash. Therefore these conditions will not be checked here.
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*
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* In buffered programming, if the target address not at the beginning of a 32-bit word boundary,
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* then programming time is doubled and power consumption is increased.
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* Therefore, it is a requirement to align buffer writes to 32-bit word boundaries.
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* i.e. the last 4 bits of the target start address must be zero: 0x......00
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*/
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EFI_STATUS
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EFIAPI
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NorFlashWriteBuffer (
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IN UINTN DeviceBaseAddress,
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IN UINTN TargetAddress,
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IN UINTN BufferSizeInBytes,
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IN UINT32 *Buffer
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)
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{
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EFI_STATUS Status;
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UINTN BufferSizeInWords;
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UINTN Count;
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volatile UINT32 *Data;
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UINTN WaitForBuffer;
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BOOLEAN BufferAvailable;
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UINT32 StatusRegister;
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WaitForBuffer = MAX_BUFFERED_PROG_ITERATIONS;
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BufferAvailable = FALSE;
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// Check that the target address does not cross a 32-word boundary.
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if ((TargetAddress & BOUNDARY_OF_32_WORDS) != 0) {
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return EFI_INVALID_PARAMETER;
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}
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// Check there are some data to program
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if (BufferSizeInBytes == 0) {
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return EFI_BUFFER_TOO_SMALL;
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}
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// Check that the buffer size does not exceed the maximum hardware buffer size on chip.
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if (BufferSizeInBytes > P30_MAX_BUFFER_SIZE_IN_BYTES) {
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return EFI_BAD_BUFFER_SIZE;
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}
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// Check that the buffer size is a multiple of 32-bit words
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if ((BufferSizeInBytes % 4) != 0) {
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return EFI_BAD_BUFFER_SIZE;
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}
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// Pre-programming conditions checked, now start the algorithm.
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// Prepare the data destination address
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Data = (UINT32 *)TargetAddress;
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// Check the availability of the buffer
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do {
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// Issue the Buffered Program Setup command
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SEND_NOR_COMMAND (TargetAddress, 0, P30_CMD_BUFFERED_PROGRAM_SETUP);
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// Read back the status register bit#7 from the same address
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if (((*Data) & P30_SR_BIT_WRITE) == P30_SR_BIT_WRITE) {
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BufferAvailable = TRUE;
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}
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// Update the loop counter
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WaitForBuffer--;
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} while ((WaitForBuffer > 0) && (BufferAvailable == FALSE));
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// The buffer was not available for writing
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if (WaitForBuffer == 0) {
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return EFI_DEVICE_ERROR;
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}
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// From now on we work in 32-bit words
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BufferSizeInWords = BufferSizeInBytes / (UINTN)4;
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// Write the word count, which is (buffer_size_in_words - 1),
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// because word count 0 means one word.
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SEND_NOR_COMMAND (TargetAddress, 0, (BufferSizeInWords - 1));
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// Write the data to the NOR Flash, advancing each address by 4 bytes
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for (Count = 0; Count < BufferSizeInWords; Count++, Data++, Buffer++) {
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MmioWrite32 ((UINTN)Data, *Buffer);
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}
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// Issue the Buffered Program Confirm command, to start the programming operation
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SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_BUFFERED_PROGRAM_CONFIRM);
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// Wait for the write to complete and then check for any errors; i.e. check the Status Register
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do {
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StatusRegister = NorFlashReadStatusRegister (DeviceBaseAddress, TargetAddress);
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// The chip is busy while the WRITE bit is not asserted
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} while ((StatusRegister & P30_SR_BIT_WRITE) != P30_SR_BIT_WRITE);
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// Perform a full status check:
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// Mask the relevant bits of Status Register.
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// Everything should be zero, if not, we have a problem
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Status = EFI_SUCCESS;
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if (StatusRegister & P30_SR_BIT_VPP) {
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DEBUG ((DEBUG_ERROR, "NorFlashWriteBuffer(TargetAddress:0x%X): VPP Range Error\n", TargetAddress));
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Status = EFI_DEVICE_ERROR;
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}
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if (StatusRegister & P30_SR_BIT_PROGRAM) {
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DEBUG ((DEBUG_ERROR, "NorFlashWriteBuffer(TargetAddress:0x%X): Program Error\n", TargetAddress));
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Status = EFI_DEVICE_ERROR;
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}
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if (StatusRegister & P30_SR_BIT_BLOCK_LOCKED) {
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DEBUG ((DEBUG_ERROR, "NorFlashWriteBuffer(TargetAddress:0x%X): Device Protect Error\n", TargetAddress));
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Status = EFI_DEVICE_ERROR;
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}
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if (!EFI_ERROR (Status)) {
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// Clear the Status Register
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SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_CLEAR_STATUS_REGISTER);
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}
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return Status;
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}
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/**
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* This function unlock and erase an entire NOR Flash block.
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**/
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EFI_STATUS
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NorFlashUnlockAndEraseSingleBlock (
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IN UINTN DeviceBaseAddress,
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IN UINTN BlockAddress
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)
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{
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EFI_STATUS Status;
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UINTN Index;
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Index = 0;
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// The block erase might fail a first time (SW bug ?). Retry it ...
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do {
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// Unlock the block if we have to
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Status = NorFlashUnlockSingleBlockIfNecessary (DeviceBaseAddress, BlockAddress);
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if (EFI_ERROR (Status)) {
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break;
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}
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Status = NorFlashEraseSingleBlock (DeviceBaseAddress, BlockAddress);
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Index++;
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} while ((Index < NOR_FLASH_ERASE_RETRY) && (Status == EFI_WRITE_PROTECTED));
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if (Index == NOR_FLASH_ERASE_RETRY) {
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DEBUG ((DEBUG_ERROR, "EraseSingleBlock(BlockAddress=0x%08x: Block Locked Error (try to erase %d times)\n", BlockAddress, Index));
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}
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return Status;
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}
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EFI_STATUS
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NorFlashWriteFullBlock (
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IN UINTN DeviceBaseAddress,
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IN UINTN RegionBaseAddress,
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IN EFI_LBA Lba,
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IN UINT32 *DataBuffer,
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IN UINT32 BlockSizeInWords
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)
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{
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EFI_STATUS Status;
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UINTN WordAddress;
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UINT32 WordIndex;
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UINTN BufferIndex;
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UINTN BlockAddress;
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UINTN BuffersInBlock;
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UINTN RemainingWords;
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UINTN Cnt;
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Status = EFI_SUCCESS;
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// Get the physical address of the block
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BlockAddress = GET_NOR_BLOCK_ADDRESS (RegionBaseAddress, Lba, BlockSizeInWords * 4);
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// Start writing from the first address at the start of the block
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WordAddress = BlockAddress;
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Status = NorFlashUnlockAndEraseSingleBlock (DeviceBaseAddress, BlockAddress);
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if (EFI_ERROR (Status)) {
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DEBUG ((DEBUG_ERROR, "WriteSingleBlock: ERROR - Failed to Unlock and Erase the single block at 0x%X\n", BlockAddress));
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goto EXIT;
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}
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// To speed up the programming operation, NOR Flash is programmed using the Buffered Programming method.
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// Check that the address starts at a 32-word boundary, i.e. last 7 bits must be zero
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if ((WordAddress & BOUNDARY_OF_32_WORDS) == 0x00) {
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// First, break the entire block into buffer-sized chunks.
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BuffersInBlock = (UINTN)(BlockSizeInWords * 4) / P30_MAX_BUFFER_SIZE_IN_BYTES;
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// Then feed each buffer chunk to the NOR Flash
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// If a buffer does not contain any data, don't write it.
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for (BufferIndex = 0;
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|
BufferIndex < BuffersInBlock;
|
|
BufferIndex++, WordAddress += P30_MAX_BUFFER_SIZE_IN_BYTES, DataBuffer += P30_MAX_BUFFER_SIZE_IN_WORDS
|
|
)
|
|
{
|
|
// Check the buffer to see if it contains any data (not set all 1s).
|
|
for (Cnt = 0; Cnt < P30_MAX_BUFFER_SIZE_IN_WORDS; Cnt++) {
|
|
if (~DataBuffer[Cnt] != 0 ) {
|
|
// Some data found, write the buffer.
|
|
Status = NorFlashWriteBuffer (
|
|
DeviceBaseAddress,
|
|
WordAddress,
|
|
P30_MAX_BUFFER_SIZE_IN_BYTES,
|
|
DataBuffer
|
|
);
|
|
if (EFI_ERROR (Status)) {
|
|
goto EXIT;
|
|
}
|
|
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
// Finally, finish off any remaining words that are less than the maximum size of the buffer
|
|
RemainingWords = BlockSizeInWords % P30_MAX_BUFFER_SIZE_IN_WORDS;
|
|
|
|
if (RemainingWords != 0) {
|
|
Status = NorFlashWriteBuffer (DeviceBaseAddress, WordAddress, (RemainingWords * 4), DataBuffer);
|
|
if (EFI_ERROR (Status)) {
|
|
goto EXIT;
|
|
}
|
|
}
|
|
} else {
|
|
// For now, use the single word programming algorithm
|
|
// It is unlikely that the NOR Flash will exist in an address which falls within a 32 word boundary range,
|
|
// i.e. which ends in the range 0x......01 - 0x......7F.
|
|
for (WordIndex = 0; WordIndex < BlockSizeInWords; WordIndex++, DataBuffer++, WordAddress = WordAddress + 4) {
|
|
Status = NorFlashWriteSingleWord (DeviceBaseAddress, WordAddress, *DataBuffer);
|
|
if (EFI_ERROR (Status)) {
|
|
goto EXIT;
|
|
}
|
|
}
|
|
}
|
|
|
|
EXIT:
|
|
// Put device back into Read Array mode
|
|
SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_READ_ARRAY);
|
|
|
|
if (EFI_ERROR (Status)) {
|
|
DEBUG ((DEBUG_ERROR, "NOR FLASH Programming [WriteSingleBlock] failed at address 0x%08x. Exit Status = \"%r\".\n", WordAddress, Status));
|
|
}
|
|
|
|
return Status;
|
|
}
|
|
|
|
EFI_STATUS
|
|
EFIAPI
|
|
NorFlashWriteBlocks (
|
|
IN UINTN DeviceBaseAddress,
|
|
IN UINTN RegionBaseAddress,
|
|
IN EFI_LBA Lba,
|
|
IN EFI_LBA LastBlock,
|
|
IN UINT32 BlockSize,
|
|
IN UINTN BufferSizeInBytes,
|
|
IN VOID *Buffer
|
|
)
|
|
{
|
|
UINT32 *pWriteBuffer;
|
|
EFI_STATUS Status;
|
|
EFI_LBA CurrentBlock;
|
|
UINT32 BlockSizeInWords;
|
|
UINT32 NumBlocks;
|
|
UINT32 BlockCount;
|
|
|
|
Status = EFI_SUCCESS;
|
|
|
|
// The buffer must be valid
|
|
if (Buffer == NULL) {
|
|
return EFI_INVALID_PARAMETER;
|
|
}
|
|
|
|
// We must have some bytes to read
|
|
DEBUG ((DEBUG_BLKIO, "NorFlashWriteBlocks: BufferSizeInBytes=0x%x\n", BufferSizeInBytes));
|
|
if (BufferSizeInBytes == 0) {
|
|
return EFI_BAD_BUFFER_SIZE;
|
|
}
|
|
|
|
// The size of the buffer must be a multiple of the block size
|
|
DEBUG ((DEBUG_BLKIO, "NorFlashWriteBlocks: BlockSize in bytes =0x%x\n", BlockSize));
|
|
if ((BufferSizeInBytes % BlockSize) != 0) {
|
|
return EFI_BAD_BUFFER_SIZE;
|
|
}
|
|
|
|
// All blocks must be within the device
|
|
NumBlocks = ((UINT32)BufferSizeInBytes) / BlockSize;
|
|
|
|
DEBUG ((DEBUG_BLKIO, "NorFlashWriteBlocks: NumBlocks=%d, LastBlock=%ld, Lba=%ld.\n", NumBlocks, LastBlock, Lba));
|
|
|
|
if ((Lba + NumBlocks) > (LastBlock + 1)) {
|
|
DEBUG ((DEBUG_ERROR, "NorFlashWriteBlocks: ERROR - Write will exceed last block.\n"));
|
|
return EFI_INVALID_PARAMETER;
|
|
}
|
|
|
|
BlockSizeInWords = BlockSize / 4;
|
|
|
|
// Because the target *Buffer is a pointer to VOID, we must put all the data into a pointer
|
|
// to a proper data type, so use *ReadBuffer
|
|
pWriteBuffer = (UINT32 *)Buffer;
|
|
|
|
CurrentBlock = Lba;
|
|
for (BlockCount = 0; BlockCount < NumBlocks; BlockCount++, CurrentBlock++, pWriteBuffer = pWriteBuffer + BlockSizeInWords) {
|
|
DEBUG ((DEBUG_BLKIO, "NorFlashWriteBlocks: Writing block #%d\n", (UINTN)CurrentBlock));
|
|
|
|
Status = NorFlashWriteFullBlock (
|
|
DeviceBaseAddress,
|
|
RegionBaseAddress,
|
|
CurrentBlock,
|
|
pWriteBuffer,
|
|
BlockSizeInWords
|
|
);
|
|
|
|
if (EFI_ERROR (Status)) {
|
|
break;
|
|
}
|
|
}
|
|
|
|
DEBUG ((DEBUG_BLKIO, "NorFlashWriteBlocks: Exit Status = \"%r\".\n", Status));
|
|
return Status;
|
|
}
|
|
|
|
EFI_STATUS
|
|
EFIAPI
|
|
NorFlashReadBlocks (
|
|
IN UINTN DeviceBaseAddress,
|
|
IN UINTN RegionBaseAddress,
|
|
IN EFI_LBA Lba,
|
|
IN EFI_LBA LastBlock,
|
|
IN UINT32 BlockSize,
|
|
IN UINTN BufferSizeInBytes,
|
|
OUT VOID *Buffer
|
|
)
|
|
{
|
|
UINT32 NumBlocks;
|
|
UINTN StartAddress;
|
|
|
|
DEBUG ((
|
|
DEBUG_BLKIO,
|
|
"NorFlashReadBlocks: BufferSize=0x%xB BlockSize=0x%xB LastBlock=%ld, Lba=%ld.\n",
|
|
BufferSizeInBytes,
|
|
BlockSize,
|
|
LastBlock,
|
|
Lba
|
|
));
|
|
|
|
// The buffer must be valid
|
|
if (Buffer == NULL) {
|
|
return EFI_INVALID_PARAMETER;
|
|
}
|
|
|
|
// Return if we have not any byte to read
|
|
if (BufferSizeInBytes == 0) {
|
|
return EFI_SUCCESS;
|
|
}
|
|
|
|
// The size of the buffer must be a multiple of the block size
|
|
if ((BufferSizeInBytes % BlockSize) != 0) {
|
|
return EFI_BAD_BUFFER_SIZE;
|
|
}
|
|
|
|
// All blocks must be within the device
|
|
NumBlocks = ((UINT32)BufferSizeInBytes) / BlockSize;
|
|
|
|
if ((Lba + NumBlocks) > (LastBlock + 1)) {
|
|
DEBUG ((DEBUG_ERROR, "NorFlashReadBlocks: ERROR - Read will exceed last block\n"));
|
|
return EFI_INVALID_PARAMETER;
|
|
}
|
|
|
|
// Get the address to start reading from
|
|
StartAddress = GET_NOR_BLOCK_ADDRESS (
|
|
RegionBaseAddress,
|
|
Lba,
|
|
BlockSize
|
|
);
|
|
|
|
// Put the device into Read Array mode
|
|
SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_READ_ARRAY);
|
|
|
|
// Readout the data
|
|
CopyMem (Buffer, (VOID *)StartAddress, BufferSizeInBytes);
|
|
|
|
return EFI_SUCCESS;
|
|
}
|
|
|
|
EFI_STATUS
|
|
EFIAPI
|
|
NorFlashRead (
|
|
IN UINTN DeviceBaseAddress,
|
|
IN UINTN RegionBaseAddress,
|
|
IN EFI_LBA Lba,
|
|
IN UINT32 BlockSize,
|
|
IN UINTN Size,
|
|
IN UINTN Offset,
|
|
IN UINTN BufferSizeInBytes,
|
|
OUT VOID *Buffer
|
|
)
|
|
{
|
|
UINTN StartAddress;
|
|
|
|
// The buffer must be valid
|
|
if (Buffer == NULL) {
|
|
return EFI_INVALID_PARAMETER;
|
|
}
|
|
|
|
// Return if we have not any byte to read
|
|
if (BufferSizeInBytes == 0) {
|
|
return EFI_SUCCESS;
|
|
}
|
|
|
|
if (((Lba * BlockSize) + Offset + BufferSizeInBytes) > Size) {
|
|
DEBUG ((DEBUG_ERROR, "NorFlashRead: ERROR - Read will exceed device size.\n"));
|
|
return EFI_INVALID_PARAMETER;
|
|
}
|
|
|
|
// Get the address to start reading from
|
|
StartAddress = GET_NOR_BLOCK_ADDRESS (
|
|
RegionBaseAddress,
|
|
Lba,
|
|
BlockSize
|
|
);
|
|
|
|
// Put the device into Read Array mode
|
|
SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_READ_ARRAY);
|
|
|
|
// Readout the data
|
|
CopyMem (Buffer, (VOID *)(StartAddress + Offset), BufferSizeInBytes);
|
|
|
|
return EFI_SUCCESS;
|
|
}
|
|
|
|
STATIC
|
|
EFI_STATUS
|
|
NorFlashWriteSingleBlockWithErase (
|
|
IN UINTN DeviceBaseAddress,
|
|
IN UINTN RegionBaseAddress,
|
|
IN EFI_LBA Lba,
|
|
IN UINT32 LastBlock,
|
|
IN UINT32 BlockSize,
|
|
IN UINTN Offset,
|
|
IN OUT UINTN *NumBytes,
|
|
IN UINT8 *Buffer,
|
|
IN VOID *ShadowBuffer
|
|
)
|
|
{
|
|
EFI_STATUS Status;
|
|
|
|
// Read NOR Flash data into shadow buffer
|
|
Status = NorFlashReadBlocks (
|
|
DeviceBaseAddress,
|
|
RegionBaseAddress,
|
|
Lba,
|
|
LastBlock,
|
|
BlockSize,
|
|
BlockSize,
|
|
ShadowBuffer
|
|
);
|
|
if (EFI_ERROR (Status)) {
|
|
// Return one of the pre-approved error statuses
|
|
return EFI_DEVICE_ERROR;
|
|
}
|
|
|
|
// Put the data at the appropriate location inside the buffer area
|
|
CopyMem ((VOID *)((UINTN)ShadowBuffer + Offset), Buffer, *NumBytes);
|
|
|
|
// Write the modified buffer back to the NorFlash
|
|
Status = NorFlashWriteBlocks (
|
|
DeviceBaseAddress,
|
|
RegionBaseAddress,
|
|
Lba,
|
|
LastBlock,
|
|
BlockSize,
|
|
BlockSize,
|
|
ShadowBuffer
|
|
);
|
|
if (EFI_ERROR (Status)) {
|
|
// Return one of the pre-approved error statuses
|
|
return EFI_DEVICE_ERROR;
|
|
}
|
|
|
|
return EFI_SUCCESS;
|
|
}
|
|
|
|
/*
|
|
Write a full or portion of a block. It must not span block boundaries; that is,
|
|
Offset + *NumBytes <= Instance->BlockSize.
|
|
*/
|
|
EFI_STATUS
|
|
EFIAPI
|
|
NorFlashWriteSingleBlock (
|
|
IN UINTN DeviceBaseAddress,
|
|
IN UINTN RegionBaseAddress,
|
|
IN EFI_LBA Lba,
|
|
IN UINT32 LastBlock,
|
|
IN UINT32 BlockSize,
|
|
IN UINTN Size,
|
|
IN UINTN Offset,
|
|
IN OUT UINTN *NumBytes,
|
|
IN UINT8 *Buffer,
|
|
IN VOID *ShadowBuffer
|
|
)
|
|
{
|
|
EFI_STATUS Status;
|
|
UINTN CurOffset;
|
|
UINTN BlockAddress;
|
|
UINT8 *OrigData;
|
|
UINTN Start, End;
|
|
UINT32 Index, Count;
|
|
|
|
DEBUG ((DEBUG_BLKIO, "NorFlashWriteSingleBlock(Parameters: Lba=%ld, Offset=0x%x, *NumBytes=0x%x, Buffer @ 0x%08x)\n", Lba, Offset, *NumBytes, Buffer));
|
|
|
|
// Check we did get some memory. Buffer is BlockSize.
|
|
if (ShadowBuffer == NULL) {
|
|
DEBUG ((DEBUG_ERROR, "FvbWrite: ERROR - Buffer not ready\n"));
|
|
return EFI_DEVICE_ERROR;
|
|
}
|
|
|
|
// The write must not span block boundaries.
|
|
// We need to check each variable individually because adding two large values together overflows.
|
|
if ((Offset >= BlockSize) ||
|
|
(*NumBytes > BlockSize) ||
|
|
((Offset + *NumBytes) > BlockSize))
|
|
{
|
|
DEBUG ((DEBUG_ERROR, "NorFlashWriteSingleBlock: ERROR - EFI_BAD_BUFFER_SIZE: (Offset=0x%x + NumBytes=0x%x) > BlockSize=0x%x\n", Offset, *NumBytes, BlockSize));
|
|
return EFI_BAD_BUFFER_SIZE;
|
|
}
|
|
|
|
// We must have some bytes to write
|
|
if (*NumBytes == 0) {
|
|
DEBUG ((DEBUG_ERROR, "NorFlashWriteSingleBlock: ERROR - EFI_BAD_BUFFER_SIZE: (Offset=0x%x + NumBytes=0x%x) > BlockSize=0x%x\n", Offset, *NumBytes, BlockSize));
|
|
return EFI_BAD_BUFFER_SIZE;
|
|
}
|
|
|
|
// Pick 4 * P30_MAX_BUFFER_SIZE_IN_BYTES (== 512 bytes) as a good
|
|
// start for word operations as opposed to erasing the block and
|
|
// writing the data regardless if an erase is really needed.
|
|
//
|
|
// Many NV variable updates are small enough for a a single
|
|
// P30_MAX_BUFFER_SIZE_IN_BYTES block write. In case the update is
|
|
// larger than a single block, or the update crosses a
|
|
// P30_MAX_BUFFER_SIZE_IN_BYTES boundary (as shown in the diagram
|
|
// below), or both, we might have to write two or more blocks.
|
|
//
|
|
// 0 128 256
|
|
// [----------------|----------------]
|
|
// ^ ^ ^ ^
|
|
// | | | |
|
|
// | | | End, the next "word" boundary beyond
|
|
// | | | the (logical) update
|
|
// | | |
|
|
// | | (Offset & BOUNDARY_OF_32_WORDS) + NumBytes;
|
|
// | | i.e., the relative offset inside (or just past)
|
|
// | | the *double-word* such that it is the
|
|
// | | *exclusive* end of the (logical) update.
|
|
// | |
|
|
// | Offset & BOUNDARY_OF_32_WORDS; i.e., Offset within the "word";
|
|
// | this is where the (logical) update is supposed to start
|
|
// |
|
|
// Start = Offset & ~BOUNDARY_OF_32_WORDS; i.e., Offset truncated to "word" boundary
|
|
|
|
Start = Offset & ~BOUNDARY_OF_32_WORDS;
|
|
End = ALIGN_VALUE (Offset + *NumBytes, P30_MAX_BUFFER_SIZE_IN_BYTES);
|
|
|
|
if ((End - Start) <= (4 * P30_MAX_BUFFER_SIZE_IN_BYTES)) {
|
|
// Check to see if we need to erase before programming the data into NOR.
|
|
// If the destination bits are only changing from 1s to 0s we can just write.
|
|
// After a block is erased all bits in the block is set to 1.
|
|
// If any byte requires us to erase we just give up and rewrite all of it.
|
|
|
|
// Read the old version of the data into the shadow buffer
|
|
Status = NorFlashRead (
|
|
DeviceBaseAddress,
|
|
RegionBaseAddress,
|
|
Lba,
|
|
BlockSize,
|
|
Size,
|
|
Start,
|
|
End - Start,
|
|
ShadowBuffer
|
|
);
|
|
if (EFI_ERROR (Status)) {
|
|
return EFI_DEVICE_ERROR;
|
|
}
|
|
|
|
// Make OrigData point to the start of the old version of the data inside
|
|
// the word aligned buffer
|
|
OrigData = ShadowBuffer + (Offset & BOUNDARY_OF_32_WORDS);
|
|
|
|
// Update the buffer containing the old version of the data with the new
|
|
// contents, while checking whether the old version had any bits cleared
|
|
// that we want to set. In that case, we will need to erase the block first.
|
|
for (CurOffset = 0; CurOffset < *NumBytes; CurOffset++) {
|
|
if (~(UINT32)OrigData[CurOffset] & (UINT32)Buffer[CurOffset]) {
|
|
Status = NorFlashWriteSingleBlockWithErase (
|
|
DeviceBaseAddress,
|
|
RegionBaseAddress,
|
|
Lba,
|
|
LastBlock,
|
|
BlockSize,
|
|
Offset,
|
|
NumBytes,
|
|
Buffer,
|
|
ShadowBuffer
|
|
);
|
|
return Status;
|
|
}
|
|
|
|
OrigData[CurOffset] = Buffer[CurOffset];
|
|
}
|
|
|
|
//
|
|
// Write the updated buffer to NOR.
|
|
//
|
|
BlockAddress = GET_NOR_BLOCK_ADDRESS (RegionBaseAddress, Lba, BlockSize);
|
|
|
|
// Unlock the block if we have to
|
|
Status = NorFlashUnlockSingleBlockIfNecessary (DeviceBaseAddress, BlockAddress);
|
|
if (EFI_ERROR (Status)) {
|
|
goto Exit;
|
|
}
|
|
|
|
Count = (End - Start) / P30_MAX_BUFFER_SIZE_IN_BYTES;
|
|
for (Index = 0; Index < Count; Index++) {
|
|
Status = NorFlashWriteBuffer (
|
|
DeviceBaseAddress,
|
|
BlockAddress + Start + Index * P30_MAX_BUFFER_SIZE_IN_BYTES,
|
|
P30_MAX_BUFFER_SIZE_IN_BYTES,
|
|
ShadowBuffer + Index * P30_MAX_BUFFER_SIZE_IN_BYTES
|
|
);
|
|
if (EFI_ERROR (Status)) {
|
|
goto Exit;
|
|
}
|
|
}
|
|
} else {
|
|
Status = NorFlashWriteSingleBlockWithErase (
|
|
DeviceBaseAddress,
|
|
RegionBaseAddress,
|
|
Lba,
|
|
LastBlock,
|
|
BlockSize,
|
|
Offset,
|
|
NumBytes,
|
|
Buffer,
|
|
ShadowBuffer
|
|
);
|
|
return Status;
|
|
}
|
|
|
|
Exit:
|
|
// Put device back into Read Array mode
|
|
SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_READ_ARRAY);
|
|
|
|
return Status;
|
|
}
|
|
|
|
EFI_STATUS
|
|
EFIAPI
|
|
NorFlashReset (
|
|
IN UINTN DeviceBaseAddress
|
|
)
|
|
{
|
|
// As there is no specific RESET to perform, ensure that the devices is in the default Read Array mode
|
|
SEND_NOR_COMMAND (DeviceBaseAddress, 0, P30_CMD_READ_ARRAY);
|
|
return EFI_SUCCESS;
|
|
}
|