mirror of https://github.com/acidanthera/audk.git
354 lines
11 KiB
C
354 lines
11 KiB
C
/** @file
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*
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* Copyright (c) 2011-2012, ARM Limited. All rights reserved.
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*
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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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*
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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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**/
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#include "LinuxInternal.h"
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#define DEFAULT_BOOT_ENTRY_DESCRIPTION L"Linux"
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#define MAX_STR_INPUT 300
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#define MAX_ASCII_INPUT 300
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typedef enum {
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LINUX_LOADER_NEW = 1,
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LINUX_LOADER_UPDATE
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} LINUX_LOADER_ACTION;
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STATIC
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EFI_STATUS
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EditHIInputStr (
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IN OUT CHAR16 *CmdLine,
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IN UINTN MaxCmdLine
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)
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{
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UINTN CmdLineIndex;
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UINTN WaitIndex;
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CHAR8 Char;
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EFI_INPUT_KEY Key;
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EFI_STATUS Status;
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Print (CmdLine);
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for (CmdLineIndex = StrLen (CmdLine); CmdLineIndex < MaxCmdLine; ) {
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Status = gBS->WaitForEvent (1, &gST->ConIn->WaitForKey, &WaitIndex);
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ASSERT_EFI_ERROR (Status);
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Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);
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ASSERT_EFI_ERROR (Status);
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// Unicode character is valid when Scancode is NUll
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if (Key.ScanCode == SCAN_NULL) {
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// Scan code is NUll, hence read Unicode character
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Char = (CHAR8)Key.UnicodeChar;
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} else {
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Char = CHAR_NULL;
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}
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if ((Char == CHAR_LINEFEED) || (Char == CHAR_CARRIAGE_RETURN) || (Char == 0x7f)) {
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CmdLine[CmdLineIndex] = '\0';
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Print (L"\n\r");
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return EFI_SUCCESS;
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} else if ((Key.UnicodeChar == L'\b') || (Key.ScanCode == SCAN_LEFT) || (Key.ScanCode == SCAN_DELETE)){
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if (CmdLineIndex != 0) {
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CmdLineIndex--;
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Print (L"\b \b");
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}
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} else if ((Key.ScanCode == SCAN_ESC) || (Char == 0x1B) || (Char == 0x0)) {
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return EFI_INVALID_PARAMETER;
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} else {
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CmdLine[CmdLineIndex++] = Key.UnicodeChar;
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Print (L"%c", Key.UnicodeChar);
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}
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}
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return EFI_SUCCESS;
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}
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STATIC
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EFI_STATUS
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EditHIInputAscii (
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IN OUT CHAR8 *CmdLine,
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IN UINTN MaxCmdLine
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)
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{
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CHAR16* Str;
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EFI_STATUS Status;
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Str = (CHAR16*)AllocatePool (MaxCmdLine * sizeof(CHAR16));
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AsciiStrToUnicodeStr (CmdLine, Str);
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Status = EditHIInputStr (Str, MaxCmdLine);
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UnicodeStrToAsciiStr (Str, CmdLine);
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FreePool (Str);
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return Status;
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}
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STATIC
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EFI_STATUS
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GetHIInputInteger (
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OUT UINTN *Integer
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)
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{
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CHAR16 CmdLine[255];
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EFI_STATUS Status;
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CmdLine[0] = '\0';
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Status = EditHIInputStr (CmdLine, 255);
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if (!EFI_ERROR(Status)) {
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*Integer = StrDecimalToUintn (CmdLine);
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}
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return Status;
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}
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#if 0
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EFI_STATUS
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GenerateDeviceDescriptionName (
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IN EFI_HANDLE Handle,
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IN OUT CHAR16* Description
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)
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{
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EFI_STATUS Status;
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EFI_COMPONENT_NAME_PROTOCOL* ComponentName2Protocol;
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EFI_DEVICE_PATH_TO_TEXT_PROTOCOL* DevicePathToTextProtocol;
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EFI_DEVICE_PATH_PROTOCOL* DevicePathProtocol;
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CHAR16* DriverName;
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CHAR16* DevicePathTxt;
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EFI_DEVICE_PATH* DevicePathNode;
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ComponentName2Protocol = NULL;
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Status = gBS->HandleProtocol (Handle, &gEfiComponentName2ProtocolGuid, (VOID **)&ComponentName2Protocol);
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if (!EFI_ERROR(Status)) {
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//TODO: Fixme. we must find the best langague
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Status = ComponentName2Protocol->GetDriverName (ComponentName2Protocol,"en",&DriverName);
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if (!EFI_ERROR(Status)) {
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StrnCpy (Description,DriverName,BOOT_DEVICE_DESCRIPTION_MAX);
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}
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}
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if (EFI_ERROR(Status)) {
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// Use the lastest non null entry of the Device path as a description
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Status = gBS->HandleProtocol (Handle, &gEfiDevicePathProtocolGuid, (VOID **)&DevicePathProtocol);
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if (EFI_ERROR(Status)) {
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return Status;
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}
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// Convert the last non end-type Device Path Node in text for the description
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DevicePathNode = GetLastDevicePathNode (DevicePathProtocol);
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Status = gBS->LocateProtocol (&gEfiDevicePathToTextProtocolGuid, NULL, (VOID **)&DevicePathToTextProtocol);
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ASSERT_EFI_ERROR(Status);
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DevicePathTxt = DevicePathToTextProtocol->ConvertDevicePathToText(DevicePathNode,TRUE,TRUE);
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StrnCpy (Description, DevicePathTxt, BOOT_DEVICE_DESCRIPTION_MAX);
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FreePool (DevicePathTxt);
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}
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return EFI_SUCCESS;
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}
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#endif
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EFI_STATUS
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LinuxLoaderConfig (
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IN EFI_LOADED_IMAGE_PROTOCOL *LoadedImage
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)
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{
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EFI_STATUS Status;
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LINUX_LOADER_ACTION Choice;
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UINTN BootOrderSize;
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UINT16* BootOrder;
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UINTN BootOrderCount;
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UINTN Index;
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CHAR16 Description[MAX_ASCII_INPUT];
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CHAR8 CmdLine[MAX_ASCII_INPUT];
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CHAR16 Initrd[MAX_STR_INPUT];
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UINT16 InitrdPathListLength;
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UINT16 CmdLineLength;
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BDS_LOAD_OPTION* BdsLoadOption;
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BDS_LOAD_OPTION** SupportedBdsLoadOptions;
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UINTN SupportedBdsLoadOptionCount;
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LINUX_LOADER_OPTIONAL_DATA* LinuxOptionalData;
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EFI_DEVICE_PATH* DevicePathRoot;
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SupportedBdsLoadOptions = NULL;
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SupportedBdsLoadOptionCount = 0;
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do {
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Print (L"[%d] Create new Linux Boot Entry\n",LINUX_LOADER_NEW);
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Print (L"[%d] Update Linux Boot Entry\n",LINUX_LOADER_UPDATE);
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Print (L"Option: ");
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Status = GetHIInputInteger (&Choice);
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if (Status == EFI_INVALID_PARAMETER) {
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Print (L"\n");
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return Status;
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} else if ((Choice != LINUX_LOADER_NEW) && (Choice != LINUX_LOADER_UPDATE)) {
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Print (L"Error: the option should be either '%d' or '%d'\n",LINUX_LOADER_NEW,LINUX_LOADER_UPDATE);
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Status = EFI_INVALID_PARAMETER;
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}
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} while (EFI_ERROR(Status));
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if (Choice == LINUX_LOADER_UPDATE) {
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// If no compatible entry then we just create a new entry
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Choice = LINUX_LOADER_NEW;
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// Scan the OptionalData of every entry for the correct signature
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Status = GetEnvironmentVariable (L"BootOrder", NULL, &BootOrderSize, (VOID**)&BootOrder);
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if (!EFI_ERROR(Status)) {
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BootOrderCount = BootOrderSize / sizeof(UINT16);
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// Allocate an array to handle maximum number of supported Boot Entry
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SupportedBdsLoadOptions = (BDS_LOAD_OPTION**)AllocatePool(sizeof(BDS_LOAD_OPTION*) * BootOrderCount);
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SupportedBdsLoadOptionCount = 0;
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// Check if the signature is present in the list of the current Boot entries
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for (Index = 0; Index < BootOrderCount; Index++) {
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Status = BootOptionFromLoadOptionIndex (BootOrder[Index], &BdsLoadOption);
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if (!EFI_ERROR(Status)) {
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if ((BdsLoadOption->OptionalDataSize >= sizeof(UINT32)) &&
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(*(UINT32*)BdsLoadOption->OptionalData == LINUX_LOADER_SIGNATURE)) {
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SupportedBdsLoadOptions[SupportedBdsLoadOptionCount++] = BdsLoadOption;
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Choice = LINUX_LOADER_UPDATE;
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}
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}
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}
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}
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FreePool (BootOrder);
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}
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if (Choice == LINUX_LOADER_NEW) {
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Description[0] = '\0';
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CmdLine[0] = '\0';
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Initrd[0] = '\0';
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BdsLoadOption = (BDS_LOAD_OPTION*)AllocateZeroPool (sizeof(BDS_LOAD_OPTION));
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DEBUG_CODE_BEGIN();
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CHAR16* DevicePathTxt;
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EFI_DEVICE_PATH_TO_TEXT_PROTOCOL* DevicePathToTextProtocol;
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Status = gBS->LocateProtocol (&gEfiDevicePathToTextProtocolGuid, NULL, (VOID **)&DevicePathToTextProtocol);
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ASSERT_EFI_ERROR(Status);
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DevicePathTxt = DevicePathToTextProtocol->ConvertDevicePathToText (LoadedImage->FilePath, TRUE, TRUE);
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Print(L"EFI OS Loader: %s\n",DevicePathTxt);
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FreePool(DevicePathTxt);
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DEBUG_CODE_END();
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//
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// Fill the known fields of BdsLoadOption
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//
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BdsLoadOption->Attributes = LOAD_OPTION_ACTIVE | LOAD_OPTION_CATEGORY_BOOT;
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// Get the full Device Path for this file
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Status = gBS->HandleProtocol (LoadedImage->DeviceHandle, &gEfiDevicePathProtocolGuid, (VOID **)&DevicePathRoot);
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ASSERT_EFI_ERROR(Status);
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BdsLoadOption->FilePathList = AppendDevicePath (DevicePathRoot, LoadedImage->FilePath);
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BdsLoadOption->FilePathListLength = GetDevicePathSize (BdsLoadOption->FilePathList);
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} else {
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if (SupportedBdsLoadOptionCount > 1) {
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for (Index = 0; Index < SupportedBdsLoadOptionCount; Index++) {
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Print (L"[%d] %s\n",Index + 1,SupportedBdsLoadOptions[Index]->Description);
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}
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do {
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Print (L"Update Boot Entry: ");
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Status = GetHIInputInteger (&Choice);
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if (Status == EFI_INVALID_PARAMETER) {
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Print (L"\n");
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return Status;
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} else if ((Choice < 1) && (Choice > SupportedBdsLoadOptionCount)) {
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Print (L"Choose entry from 1 to %d\n",SupportedBdsLoadOptionCount);
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Status = EFI_INVALID_PARAMETER;
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}
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} while (EFI_ERROR(Status));
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BdsLoadOption = SupportedBdsLoadOptions[Choice-1];
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}
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StrnCpy (Description, BdsLoadOption->Description, MAX_STR_INPUT);
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LinuxOptionalData = (LINUX_LOADER_OPTIONAL_DATA*)BdsLoadOption->OptionalData;
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if (LinuxOptionalData->CmdLineLength > 0) {
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CopyMem (CmdLine, (CHAR8*)LinuxOptionalData + sizeof(LINUX_LOADER_OPTIONAL_DATA), LinuxOptionalData->CmdLineLength);
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} else {
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CmdLine[0] = '\0';
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}
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if (LinuxOptionalData->InitrdPathListLength > 0) {
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CopyMem (Initrd, (CHAR8*)LinuxOptionalData + sizeof(LINUX_LOADER_OPTIONAL_DATA) + LinuxOptionalData->CmdLineLength, LinuxOptionalData->InitrdPathListLength);
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} else {
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Initrd[0] = L'\0';
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}
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DEBUG((EFI_D_ERROR,"L\n"));
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}
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// Description
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Print (L"Description: ");
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Status = EditHIInputStr (Description, MAX_STR_INPUT);
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if (EFI_ERROR(Status)) {
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return Status;
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}
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if (StrLen (Description) == 0) {
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StrnCpy (Description, DEFAULT_BOOT_ENTRY_DESCRIPTION, MAX_STR_INPUT);
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}
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BdsLoadOption->Description = Description;
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// CmdLine
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Print (L"Command Line: ");
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Status = EditHIInputAscii (CmdLine, MAX_ASCII_INPUT);
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if (EFI_ERROR(Status)) {
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return Status;
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}
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// Initrd
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Print (L"Initrd name: ");
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Status = EditHIInputStr (Initrd, MAX_STR_INPUT);
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if (EFI_ERROR(Status)) {
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return Status;
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}
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CmdLineLength = AsciiStrLen (CmdLine);
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if (CmdLineLength > 0) {
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CmdLineLength += sizeof(CHAR8);
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}
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InitrdPathListLength = StrLen (Initrd) * sizeof(CHAR16);
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if (InitrdPathListLength > 0) {
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InitrdPathListLength += sizeof(CHAR16);
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}
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BdsLoadOption->OptionalDataSize = sizeof(LINUX_LOADER_OPTIONAL_DATA) + CmdLineLength + InitrdPathListLength;
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LinuxOptionalData = (LINUX_LOADER_OPTIONAL_DATA*)AllocatePool (BdsLoadOption->OptionalDataSize);
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BdsLoadOption->OptionalData = LinuxOptionalData;
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LinuxOptionalData->Signature = LINUX_LOADER_SIGNATURE;
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LinuxOptionalData->CmdLineLength = CmdLineLength;
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LinuxOptionalData->InitrdPathListLength = InitrdPathListLength;
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if (CmdLineLength > 0) {
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CopyMem (LinuxOptionalData + 1, CmdLine, CmdLineLength);
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}
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if (InitrdPathListLength > 0) {
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CopyMem ((UINT8*)(LinuxOptionalData + 1) + CmdLineLength, Initrd, InitrdPathListLength);
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}
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// Create or Update the boot entry
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Status = BootOptionToLoadOptionVariable (BdsLoadOption);
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return Status;
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}
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