aebe31c375
Let's provide file type info to the I/O layer. This way verifiers framework and its users will be able to differentiate files and verify only required ones. This is preparatory patch. Signed-off-by: Vladimir Serbinenko <phcoder@gmail.com> Signed-off-by: Daniel Kiper <daniel.kiper@oracle.com> Reviewed-by: Ross Philipson <ross.philipson@oracle.com>
234 lines
6.1 KiB
C
234 lines
6.1 KiB
C
/* loadbios.c - command to load a bios dump */
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/*
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* GRUB -- GRand Unified Bootloader
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* Copyright (C) 2009 Free Software Foundation, Inc.
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*
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* GRUB is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* GRUB is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with GRUB. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <grub/dl.h>
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#include <grub/misc.h>
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#include <grub/file.h>
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#include <grub/efi/efi.h>
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#include <grub/pci.h>
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#include <grub/command.h>
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#include <grub/i18n.h>
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GRUB_MOD_LICENSE ("GPLv3+");
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static grub_efi_guid_t acpi_guid = GRUB_EFI_ACPI_TABLE_GUID;
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static grub_efi_guid_t acpi2_guid = GRUB_EFI_ACPI_20_TABLE_GUID;
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static grub_efi_guid_t smbios_guid = GRUB_EFI_SMBIOS_TABLE_GUID;
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static grub_efi_guid_t smbios3_guid = GRUB_EFI_SMBIOS3_TABLE_GUID;
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#define EBDA_SEG_ADDR 0x40e
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#define LOW_MEM_ADDR 0x413
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#define FAKE_EBDA_SEG 0x9fc0
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#define BLANK_MEM 0xffffffff
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#define VBIOS_ADDR 0xc0000
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#define SBIOS_ADDR 0xf0000
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static int
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enable_rom_area (void)
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{
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grub_pci_address_t addr;
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grub_uint32_t *rom_ptr;
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grub_pci_device_t dev = { .bus = 0, .device = 0, .function = 0};
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rom_ptr = (grub_uint32_t *) VBIOS_ADDR;
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if (*rom_ptr != BLANK_MEM)
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{
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grub_puts_ (N_("ROM image is present."));
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return 0;
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}
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/* FIXME: should be macroified. */
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addr = grub_pci_make_address (dev, 144);
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grub_pci_write_byte (addr++, 0x30);
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grub_pci_write_byte (addr++, 0x33);
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grub_pci_write_byte (addr++, 0x33);
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grub_pci_write_byte (addr++, 0x33);
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grub_pci_write_byte (addr++, 0x33);
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grub_pci_write_byte (addr++, 0x33);
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grub_pci_write_byte (addr++, 0x33);
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grub_pci_write_byte (addr, 0);
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*rom_ptr = 0;
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if (*rom_ptr != 0)
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{
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grub_puts_ (N_("Can\'t enable ROM area."));
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return 0;
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}
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return 1;
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}
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static void
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lock_rom_area (void)
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{
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grub_pci_address_t addr;
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grub_pci_device_t dev = { .bus = 0, .device = 0, .function = 0};
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/* FIXME: should be macroified. */
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addr = grub_pci_make_address (dev, 144);
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grub_pci_write_byte (addr++, 0x10);
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grub_pci_write_byte (addr++, 0x11);
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grub_pci_write_byte (addr++, 0x11);
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grub_pci_write_byte (addr++, 0x11);
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grub_pci_write_byte (addr, 0x11);
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}
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static void
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fake_bios_data (int use_rom)
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{
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unsigned i;
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void *acpi, *smbios, *smbios3;
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grub_uint16_t *ebda_seg_ptr, *low_mem_ptr;
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ebda_seg_ptr = (grub_uint16_t *) EBDA_SEG_ADDR;
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low_mem_ptr = (grub_uint16_t *) LOW_MEM_ADDR;
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if ((*ebda_seg_ptr) || (*low_mem_ptr))
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return;
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acpi = 0;
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smbios = 0;
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smbios3 = 0;
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for (i = 0; i < grub_efi_system_table->num_table_entries; i++)
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{
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grub_efi_packed_guid_t *guid =
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&grub_efi_system_table->configuration_table[i].vendor_guid;
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if (! grub_memcmp (guid, &acpi2_guid, sizeof (grub_efi_guid_t)))
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{
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acpi = grub_efi_system_table->configuration_table[i].vendor_table;
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grub_dprintf ("efi", "ACPI2: %p\n", acpi);
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}
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else if (! grub_memcmp (guid, &acpi_guid, sizeof (grub_efi_guid_t)))
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{
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void *t;
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t = grub_efi_system_table->configuration_table[i].vendor_table;
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if (! acpi)
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acpi = t;
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grub_dprintf ("efi", "ACPI: %p\n", t);
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}
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else if (! grub_memcmp (guid, &smbios_guid, sizeof (grub_efi_guid_t)))
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{
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smbios = grub_efi_system_table->configuration_table[i].vendor_table;
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grub_dprintf ("efi", "SMBIOS: %p\n", smbios);
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}
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else if (! grub_memcmp (guid, &smbios3_guid, sizeof (grub_efi_guid_t)))
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{
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smbios3 = grub_efi_system_table->configuration_table[i].vendor_table;
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grub_dprintf ("efi", "SMBIOS3: %p\n", smbios3);
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}
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}
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*ebda_seg_ptr = FAKE_EBDA_SEG;
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*low_mem_ptr = (FAKE_EBDA_SEG >> 6);
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*((grub_uint16_t *) (FAKE_EBDA_SEG << 4)) = 640 - *low_mem_ptr;
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if (acpi)
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grub_memcpy ((char *) ((FAKE_EBDA_SEG << 4) + 16), acpi, 1024 - 16);
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if (use_rom)
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{
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if (smbios)
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grub_memcpy ((char *) SBIOS_ADDR, (char *) smbios, 31);
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if (smbios3)
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grub_memcpy ((char *) SBIOS_ADDR + 32, (char *) smbios3, 24);
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}
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}
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static grub_err_t
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grub_cmd_fakebios (struct grub_command *cmd __attribute__ ((unused)),
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int argc __attribute__ ((unused)),
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char *argv[] __attribute__ ((unused)))
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{
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if (enable_rom_area ())
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{
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fake_bios_data (1);
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lock_rom_area ();
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}
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else
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fake_bios_data (0);
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return 0;
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}
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static grub_err_t
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grub_cmd_loadbios (grub_command_t cmd __attribute__ ((unused)),
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int argc, char *argv[])
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{
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grub_file_t file;
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int size;
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if (argc == 0)
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return grub_error (GRUB_ERR_BAD_ARGUMENT, N_("filename expected"));
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if (argc > 1)
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{
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file = grub_file_open (argv[1], GRUB_FILE_TYPE_VBE_DUMP);
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if (! file)
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return grub_errno;
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if (file->size != 4)
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grub_error (GRUB_ERR_BAD_ARGUMENT, "invalid int10 dump size");
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else
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grub_file_read (file, (void *) 0x40, 4);
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grub_file_close (file);
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if (grub_errno)
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return grub_errno;
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}
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file = grub_file_open (argv[0], GRUB_FILE_TYPE_VBE_DUMP);
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if (! file)
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return grub_errno;
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size = file->size;
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if ((size < 0x10000) || (size > 0x40000))
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grub_error (GRUB_ERR_BAD_ARGUMENT, "invalid bios dump size");
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else if (enable_rom_area ())
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{
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grub_file_read (file, (void *) VBIOS_ADDR, size);
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fake_bios_data (size <= 0x40000);
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lock_rom_area ();
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}
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grub_file_close (file);
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return grub_errno;
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}
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static grub_command_t cmd_fakebios, cmd_loadbios;
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GRUB_MOD_INIT(loadbios)
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{
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cmd_fakebios = grub_register_command ("fakebios", grub_cmd_fakebios,
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0, N_("Create BIOS-like structures for"
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" backward compatibility with"
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" existing OS."));
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cmd_loadbios = grub_register_command ("loadbios", grub_cmd_loadbios,
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N_("BIOS_DUMP [INT10_DUMP]"),
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N_("Load BIOS dump."));
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}
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GRUB_MOD_FINI(loadbios)
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{
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grub_unregister_command (cmd_fakebios);
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grub_unregister_command (cmd_loadbios);
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}
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