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https://github.com/AsahiLinux/u-boot
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An EFI binary smbiosdump.efi is provided that can be used to check the SMBIOS table for consistency and to dump it as a file. The tool provides the following commands: check Check the SMBIOS table for consistency. exit Leave the tool. help Show available commands. save Save the SMBIOS table to a file on the EFI system partition. The file can be further analyzed with the dmidecode command line tool:: dmidecode --from-dump <filename> Specifying 'nocolor' as load option data suppresses colored output and clearing of the screen. Signed-off-by: Heinrich Schuchardt <heinrich.schuchardt@canonical.com> Acked-by: Ilias Apalodimas <ilias.apalodimas@linaro.org>
622 lines
14 KiB
C
622 lines
14 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* Copyright 2023, Heinrich Schuchardt <heinrich.schuchardt@canonical.com>
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*
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* smbiosdump.efi saves the SMBIOS table as file.
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*
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* Specifying 'nocolor' as load option data suppresses colored output and
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* clearing of the screen.
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*/
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#include <efi_api.h>
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#include <part.h>
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#include <smbios.h>
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#include <string.h>
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#define BUFFER_SIZE 64
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static struct efi_simple_text_output_protocol *cerr;
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static struct efi_simple_text_output_protocol *cout;
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static struct efi_simple_text_input_protocol *cin;
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static struct efi_boot_services *bs;
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static efi_handle_t handle;
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static struct efi_system_table *systable;
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static const efi_guid_t smbios_guid = SMBIOS_TABLE_GUID;
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static const efi_guid_t smbios3_guid = SMBIOS3_TABLE_GUID;
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static const efi_guid_t loaded_image_guid = EFI_LOADED_IMAGE_PROTOCOL_GUID;
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static const efi_guid_t guid_simple_file_system_protocol =
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EFI_SIMPLE_FILE_SYSTEM_PROTOCOL_GUID;
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static const efi_guid_t efi_system_partition_guid = PARTITION_SYSTEM_GUID;
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static bool nocolor;
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/**
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* color() - set foreground color
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*
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* @color: foreground color
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*/
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static void color(u8 color)
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{
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if (!nocolor)
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cout->set_attribute(cout, color | EFI_BACKGROUND_BLACK);
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}
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/**
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* print() - print string
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*
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* @string: text
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*/
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static void print(u16 *string)
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{
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cout->output_string(cout, string);
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}
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/**
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* cls() - clear screen
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*/
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static void cls(void)
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{
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if (nocolor)
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print(u"\r\n");
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else
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cout->clear_screen(cout);
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}
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/**
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* error() - print error string
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*
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* @string: error text
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*/
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static void error(u16 *string)
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{
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color(EFI_LIGHTRED);
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print(string);
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color(EFI_LIGHTBLUE);
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}
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/**
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* efi_input_yn() - get answer to yes/no question
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*
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* Return:
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* y or Y
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* EFI_SUCCESS
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* n or N
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* EFI_ACCESS_DENIED
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* ESC
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* EFI_ABORTED
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*/
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static efi_status_t efi_input_yn(void)
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{
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struct efi_input_key key = {0};
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efi_uintn_t index;
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efi_status_t ret;
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/* Drain the console input */
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ret = cin->reset(cin, true);
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for (;;) {
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ret = bs->wait_for_event(1, &cin->wait_for_key, &index);
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if (ret != EFI_SUCCESS)
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continue;
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ret = cin->read_key_stroke(cin, &key);
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if (ret != EFI_SUCCESS)
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continue;
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switch (key.scan_code) {
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case 0x17: /* Escape */
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return EFI_ABORTED;
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default:
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break;
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}
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/* Convert to lower case */
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switch (key.unicode_char | 0x20) {
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case 'y':
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return EFI_SUCCESS;
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case 'n':
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return EFI_ACCESS_DENIED;
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default:
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break;
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}
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}
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}
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/**
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* efi_input() - read string from console
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*
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* @buffer: input buffer
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* @buffer_size: buffer size
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* Return: status code
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*/
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static efi_status_t efi_input(u16 *buffer, efi_uintn_t buffer_size)
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{
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struct efi_input_key key = {0};
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efi_uintn_t index;
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efi_uintn_t pos = 0;
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u16 outbuf[2] = u" ";
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efi_status_t ret;
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/* Drain the console input */
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ret = cin->reset(cin, true);
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*buffer = 0;
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for (;;) {
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ret = bs->wait_for_event(1, &cin->wait_for_key, &index);
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if (ret != EFI_SUCCESS)
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continue;
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ret = cin->read_key_stroke(cin, &key);
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if (ret != EFI_SUCCESS)
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continue;
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switch (key.scan_code) {
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case 0x17: /* Escape */
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print(u"\r\nAborted\r\n");
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return EFI_ABORTED;
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default:
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break;
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}
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switch (key.unicode_char) {
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case 0x08: /* Backspace */
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if (pos) {
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buffer[pos--] = 0;
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print(u"\b \b");
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}
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break;
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case 0x0a: /* Linefeed */
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case 0x0d: /* Carriage return */
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print(u"\r\n");
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return EFI_SUCCESS;
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default:
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break;
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}
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/* Ignore surrogate codes */
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if (key.unicode_char >= 0xD800 && key.unicode_char <= 0xDBFF)
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continue;
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if (key.unicode_char >= 0x20 &&
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pos < buffer_size - 1) {
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*outbuf = key.unicode_char;
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buffer[pos++] = key.unicode_char;
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buffer[pos] = 0;
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print(outbuf);
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}
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}
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}
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/**
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* skip_whitespace() - skip over leading whitespace
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*
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* @pos: UTF-16 string
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* Return: pointer to first non-whitespace
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*/
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static u16 *skip_whitespace(u16 *pos)
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{
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for (; *pos && *pos <= 0x20; ++pos)
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;
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return pos;
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}
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/**
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* starts_with() - check if @string starts with @keyword
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*
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* @string: string to search for keyword
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* @keyword: keyword to be searched
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* Return: true fi @string starts with the keyword
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*/
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static bool starts_with(u16 *string, u16 *keyword)
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{
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if (!string || !keyword)
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return NULL;
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for (; *keyword; ++string, ++keyword) {
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if (*string != *keyword)
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return false;
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}
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return true;
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}
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/**
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* open_file_system() - open simple file system protocol
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*
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* file_system: interface of the simple file system protocol
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* Return: status code
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*/
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static efi_status_t
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open_file_system(struct efi_simple_file_system_protocol **file_system)
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{
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struct efi_loaded_image *loaded_image;
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efi_status_t ret;
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efi_handle_t *handle_buffer = NULL;
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efi_uintn_t count;
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ret = bs->open_protocol(handle, &loaded_image_guid,
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(void **)&loaded_image, NULL, NULL,
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EFI_OPEN_PROTOCOL_GET_PROTOCOL);
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if (ret != EFI_SUCCESS) {
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error(u"Loaded image protocol not found\r\n");
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return ret;
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}
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/* Open the simple file system protocol on the same partition */
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ret = bs->open_protocol(loaded_image->device_handle,
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&guid_simple_file_system_protocol,
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(void **)file_system, NULL, NULL,
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EFI_OPEN_PROTOCOL_GET_PROTOCOL);
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if (ret == EFI_SUCCESS)
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return ret;
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/* Open the simple file system protocol on the UEFI system partition */
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ret = bs->locate_handle_buffer(BY_PROTOCOL, &efi_system_partition_guid,
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NULL, &count, &handle_buffer);
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if (ret == EFI_SUCCESS && handle_buffer)
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ret = bs->open_protocol(handle_buffer[0],
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&guid_simple_file_system_protocol,
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(void **)file_system, NULL, NULL,
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EFI_OPEN_PROTOCOL_GET_PROTOCOL);
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if (ret != EFI_SUCCESS)
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error(u"Failed to open simple file system protocol\r\n");
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if (handle)
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bs->free_pool(handle_buffer);
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return ret;
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}
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/**
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* do_help() - print help
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*/
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static void do_help(void)
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{
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error(u"check - check SMBIOS table\r\n");
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error(u"save <file> - save SMBIOS table to file\r\n");
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error(u"exit - exit the shell\r\n");
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}
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/**
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* get_config_table() - get configuration table
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*
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* @guid: GUID of the configuration table
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* Return: pointer to configuration table or NULL
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*/
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static void *get_config_table(const efi_guid_t *guid)
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{
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size_t i;
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for (i = 0; i < systable->nr_tables; ++i) {
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if (!memcmp(guid, &systable->tables[i].guid, 16))
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return systable->tables[i].table;
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}
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return NULL;
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}
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/**
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* checksum() - calculate checksum
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*
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* @buf: buffer to checksum
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* @len: length of buffer
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* Return: checksum
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*/
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u8 checksum(void *buf, int len)
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{
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u8 ret = 0;
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for (u8 *ptr = buf; len; --len, ++ptr)
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ret -= *ptr;
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return ret;
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}
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/**
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* do_check() - check SMBIOS table
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*
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* Return: status code
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*/
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efi_status_t do_check(void)
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{
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struct smbios3_entry *smbios3_anchor;
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void *table, *table_end;
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u32 len;
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smbios3_anchor = get_config_table(&smbios3_guid);
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if (smbios3_anchor) {
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int r;
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r = memcmp(smbios3_anchor->anchor, "_SM3_", 5);
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if (r) {
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error(u"Invalid anchor string\n");
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return EFI_LOAD_ERROR;
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}
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print(u"Found SMBIOS 3 entry point\n");
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if (smbios3_anchor->length != 0x18) {
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error(u"Invalid anchor length\n");
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return EFI_LOAD_ERROR;
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}
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if (checksum(smbios3_anchor, smbios3_anchor->length)) {
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error(u"Invalid anchor checksum\n");
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return EFI_LOAD_ERROR;
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}
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table = (void *)(uintptr_t)smbios3_anchor->struct_table_address;
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len = smbios3_anchor->max_struct_size;
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} else {
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struct smbios_entry *smbios_anchor;
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int r;
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smbios_anchor = get_config_table(&smbios_guid);
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if (!smbios_anchor) {
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error(u"No SMBIOS table\n");
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return EFI_NOT_FOUND;
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}
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r = memcmp(smbios_anchor->anchor, "_SM_", 4);
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if (r) {
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error(u"Invalid anchor string\n");
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return EFI_LOAD_ERROR;
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}
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print(u"Found SMBIOS 2.1 entry point\n");
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if (smbios_anchor->length != 0x1f) {
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error(u"Invalid anchor length\n");
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return EFI_LOAD_ERROR;
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}
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if (checksum(smbios_anchor, smbios_anchor->length)) {
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error(u"Invalid anchor checksum\n");
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return EFI_LOAD_ERROR;
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}
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r = memcmp(smbios_anchor->intermediate_anchor, "_DMI_", 5);
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if (r) {
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error(u"Invalid intermediate anchor string\n");
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return EFI_LOAD_ERROR;
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}
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if (checksum(&smbios_anchor->intermediate_anchor, 0xf)) {
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error(u"Invalid intermediate anchor checksum\n");
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return EFI_LOAD_ERROR;
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}
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table = (void *)(uintptr_t)smbios_anchor->struct_table_address;
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len = smbios_anchor->struct_table_length;
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}
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table_end = (void *)((u8 *)table + len);
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for (struct smbios_header *pos = table; ;) {
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u8 *str = (u8 *)pos + pos->length;
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if (!*str)
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++str;
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while (*str) {
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for (; *str; ++str) {
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if ((void *)str >= table_end) {
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error(u"Structure table length exceeded\n");
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return EFI_LOAD_ERROR;
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}
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}
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++str;
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}
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++str;
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if ((void *)str > table_end) {
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error(u"Structure table length exceeded\n");
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return EFI_LOAD_ERROR;
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}
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if (pos->type == 0x7f) /* End of table */
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break;
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pos = (struct smbios_header *)str;
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}
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return EFI_SUCCESS;
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}
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/**
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* save_file() - save file to EFI system partition
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*
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* @filename: file name
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* @buf: buffer to write
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* @size: size of the buffer
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*/
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efi_status_t save_file(u16 *filename, void *buf, efi_uintn_t size)
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{
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efi_uintn_t ret;
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struct efi_simple_file_system_protocol *file_system;
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struct efi_file_handle *root, *file;
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ret = open_file_system(&file_system);
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if (ret != EFI_SUCCESS)
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return ret;
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/* Open volume */
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ret = file_system->open_volume(file_system, &root);
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if (ret != EFI_SUCCESS) {
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error(u"Failed to open volume\r\n");
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return ret;
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}
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/* Check if file already exists */
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ret = root->open(root, &file, filename, EFI_FILE_MODE_READ, 0);
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if (ret == EFI_SUCCESS) {
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file->close(file);
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print(u"Overwrite existing file (y/n)? ");
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ret = efi_input_yn();
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print(u"\r\n");
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if (ret != EFI_SUCCESS) {
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root->close(root);
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error(u"Aborted by user\r\n");
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bs->free_pool(buf);
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return ret;
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}
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}
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/* Create file */
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ret = root->open(root, &file, filename,
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EFI_FILE_MODE_READ | EFI_FILE_MODE_WRITE |
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EFI_FILE_MODE_CREATE, EFI_FILE_ARCHIVE);
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if (ret == EFI_SUCCESS) {
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/* Write file */
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ret = file->write(file, &size, buf);
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if (ret != EFI_SUCCESS)
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error(u"Failed to write file\r\n");
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file->close(file);
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} else {
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error(u"Failed to open file\r\n");
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}
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root->close(root);
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return ret;
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}
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/**
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* do_save() - save SMBIOS table
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*
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* @filename: file name
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* Return: status code
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*/
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static efi_status_t do_save(u16 *filename)
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{
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struct smbios3_entry *smbios3_anchor;
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u8 *buf;
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efi_uintn_t size;
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efi_uintn_t ret;
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ret = do_check();
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if (ret != EFI_SUCCESS)
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return ret;
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smbios3_anchor = get_config_table(&smbios3_guid);
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if (smbios3_anchor) {
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size = 0x20 + smbios3_anchor->max_struct_size;
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ret = bs->allocate_pool(EFI_LOADER_DATA, size, (void **)&buf);
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if (ret != EFI_SUCCESS) {
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error(u"Out of memory\n");
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return ret;
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}
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memset(buf, 0, size);
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memcpy(buf, smbios3_anchor, smbios3_anchor->length);
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memcpy(buf + 0x20,
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(void *)(uintptr_t)smbios3_anchor->struct_table_address,
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smbios3_anchor->max_struct_size);
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smbios3_anchor = (struct smbios3_entry *)buf;
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smbios3_anchor->struct_table_address = 0x20;
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smbios3_anchor->checksum +=
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checksum(smbios3_anchor, smbios3_anchor->length);
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} else {
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struct smbios_entry *smbios_anchor;
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smbios_anchor = get_config_table(&smbios_guid);
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if (!smbios_anchor) {
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/* Should not be reached after successful do_check() */
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error(u"No SMBIOS table\n");
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return EFI_NOT_FOUND;
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}
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size = 0x20 + smbios_anchor->struct_table_length;
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ret = bs->allocate_pool(EFI_LOADER_DATA, size, (void **)&buf);
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if (ret != EFI_SUCCESS) {
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error(u"Out of memory\n");
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return ret;
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}
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memset(buf, 0, size);
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memcpy(buf, smbios_anchor, smbios_anchor->length);
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memcpy(buf + 0x20,
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(void *)(uintptr_t)smbios_anchor->struct_table_address,
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smbios_anchor->struct_table_length);
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smbios_anchor = (struct smbios_entry *)buf;
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smbios_anchor->struct_table_address = 0x20;
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smbios_anchor->intermediate_checksum +=
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checksum(&smbios_anchor->intermediate_anchor, 0xf);
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smbios_anchor->checksum +=
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checksum(smbios_anchor, smbios_anchor->length);
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}
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filename = skip_whitespace(filename);
|
|
|
|
ret = save_file(filename, buf, size);
|
|
|
|
if (ret == EFI_SUCCESS) {
|
|
print(filename);
|
|
print(u" written\r\n");
|
|
}
|
|
|
|
bs->free_pool(buf);
|
|
|
|
return ret;
|
|
}
|
|
|
|
/**
|
|
* get_load_options() - get load options
|
|
*
|
|
* Return: load options or NULL
|
|
*/
|
|
static u16 *get_load_options(void)
|
|
{
|
|
efi_status_t ret;
|
|
struct efi_loaded_image *loaded_image;
|
|
|
|
ret = bs->open_protocol(handle, &loaded_image_guid,
|
|
(void **)&loaded_image, NULL, NULL,
|
|
EFI_OPEN_PROTOCOL_GET_PROTOCOL);
|
|
if (ret != EFI_SUCCESS) {
|
|
error(u"Loaded image protocol not found\r\n");
|
|
return NULL;
|
|
}
|
|
|
|
if (!loaded_image->load_options_size || !loaded_image->load_options)
|
|
return NULL;
|
|
|
|
return loaded_image->load_options;
|
|
}
|
|
|
|
/**
|
|
* command_loop - process user commands
|
|
*/
|
|
static void command_loop(void)
|
|
{
|
|
for (;;) {
|
|
u16 command[BUFFER_SIZE];
|
|
u16 *pos;
|
|
efi_uintn_t ret;
|
|
|
|
print(u"=> ");
|
|
ret = efi_input(command, sizeof(command));
|
|
if (ret == EFI_ABORTED)
|
|
break;
|
|
pos = skip_whitespace(command);
|
|
if (starts_with(pos, u"exit")) {
|
|
break;
|
|
} else if (starts_with(pos, u"check")) {
|
|
ret = do_check();
|
|
if (ret == EFI_SUCCESS)
|
|
print(u"OK\n");
|
|
} else if (starts_with(pos, u"save ")) {
|
|
do_save(pos + 5);
|
|
} else {
|
|
do_help();
|
|
}
|
|
}
|
|
}
|
|
|
|
/**
|
|
* efi_main() - entry point of the EFI application.
|
|
*
|
|
* @handle: handle of the loaded image
|
|
* @systab: system table
|
|
* Return: status code
|
|
*/
|
|
efi_status_t EFIAPI efi_main(efi_handle_t image_handle,
|
|
struct efi_system_table *systab)
|
|
{
|
|
u16 *load_options;
|
|
|
|
handle = image_handle;
|
|
systable = systab;
|
|
cerr = systable->std_err;
|
|
cout = systable->con_out;
|
|
cin = systable->con_in;
|
|
bs = systable->boottime;
|
|
load_options = get_load_options();
|
|
|
|
if (starts_with(load_options, u"nocolor"))
|
|
nocolor = true;
|
|
|
|
color(EFI_WHITE);
|
|
cls();
|
|
print(u"SMBIOS Dump\r\n===========\r\n\r\n");
|
|
color(EFI_LIGHTBLUE);
|
|
|
|
command_loop();
|
|
|
|
color(EFI_LIGHTGRAY);
|
|
cls();
|
|
|
|
return EFI_SUCCESS;
|
|
}
|