2f7a8021b5
Details: https://lists.gnu.org/archive/html/grub-devel/2020-07/msg00034.html Fixes the following security issues: * CVE-2020-10713 A flaw was found in grub2, prior to version 2.06. An attacker may use the GRUB 2 flaw to hijack and tamper the GRUB verification process. This flaw also allows the bypass of Secure Boot protections. In order to load an untrusted or modified kernel, an attacker would first need to establish access to the system such as gaining physical access, obtain the ability to alter a pxe-boot network, or have remote access to a networked system with root access. With this access, an attacker could then craft a string to cause a buffer overflow by injecting a malicious payload that leads to arbitrary code execution within GRUB. The highest threat from this vulnerability is to data confidentiality and integrity as well as system availability. * CVE-2020-14308 In grub2 versions before 2.06 the grub memory allocator doesn't check for possible arithmetic overflows on the requested allocation size. This leads the function to return invalid memory allocations which can be further used to cause possible integrity, confidentiality and availability impacts during the boot process. * CVE-2020-14309 There's an issue with grub2 in all versions before 2.06 when handling squashfs filesystems containing a symbolic link with name length of UINT32 bytes in size. The name size leads to an arithmetic overflow leading to a zero-size allocation further causing a heap-based buffer overflow with attacker controlled data. * CVE-2020-14310 An integer overflow in read_section_from_string may lead to a heap based buffer overflow. * CVE-2020-14311 An integer overflow in grub_ext2_read_link may lead to a heap-based buffer overflow. * CVE-2020-15706 GRUB2 contains a race condition in grub_script_function_create() leading to a use-after-free vulnerability which can be triggered by redefining a function whilst the same function is already executing, leading to arbitrary code execution and secure boot restriction bypass * CVE-2020-15707 Integer overflows were discovered in the functions grub_cmd_initrd and grub_initrd_init in the efilinux component of GRUB2, as shipped in Debian, Red Hat, and Ubuntu (the functionality is not included in GRUB2 upstream), leading to a heap-based buffer overflow. These could be triggered by an extremely large number of arguments to the initrd command on 32-bit architectures, or a crafted filesystem with very large files on any architecture. An attacker could use this to execute arbitrary code and bypass UEFI Secure Boot restrictions. This issue affects GRUB2 version 2.04 and prior versions. Signed-off-by: Stefan Sørensen <stefan.sorensen@spectralink.com> Signed-off-by: Peter Korsgaard <peter@korsgaard.com>
160 lines
4.9 KiB
Makefile
160 lines
4.9 KiB
Makefile
################################################################################
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#
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# grub2
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#
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################################################################################
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GRUB2_VERSION = 2.04
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GRUB2_SITE = http://ftp.gnu.org/gnu/grub
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GRUB2_SOURCE = grub-$(GRUB2_VERSION).tar.xz
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GRUB2_LICENSE = GPL-3.0+
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GRUB2_LICENSE_FILES = COPYING
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GRUB2_DEPENDENCIES = host-bison host-flex host-grub2
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HOST_GRUB2_DEPENDENCIES = host-bison host-flex
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GRUB2_INSTALL_IMAGES = YES
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# 0001-build-Fix-GRUB-i386-pc-build-with-Ubuntu-gcc.patch
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define GRUB2_AVOID_AUTORECONF
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$(Q)touch $(@D)/Makefile.util.am
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$(Q)touch $(@D)/Makefile.in
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endef
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GRUB2_POST_PATCH_HOOKS += GRUB2_AVOID_AUTORECONF
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HOST_GRUB2_POST_PATCH_HOOKS += GRUB2_AVOID_AUTORECONF
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# 0002-yylex-Make-lexer-fatal-errors-actually-be-fatal.patch
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GRUB2_IGNORE_CVES += CVE-2020-10713
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# 0005-calloc-Use-calloc-at-most-places.patch
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GRUB2_IGNORE_CVES += CVE-2020-14308
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# 0006-malloc-Use-overflow-checking-primitives-where-we-do-.patch
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GRUB2_IGNORE_CVES += CVE-2020-14309 CVE-2020-14310 CVE-2020-14311
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# 0019-script-Avoid-a-use-after-free-when-redefining-a-func.patch
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GRUB2_IGNORE_CVES += CVE-2020-15706
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# 0028-linux-Fix-integer-overflows-in-initrd-size-handling.patch
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GRUB2_IGNORE_CVES += CVE-2020-15707
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ifeq ($(BR2_TARGET_GRUB2_INSTALL_TOOLS),y)
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GRUB2_INSTALL_TARGET = YES
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else
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GRUB2_INSTALL_TARGET = NO
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endif
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GRUB2_BUILTIN_MODULES = $(call qstrip,$(BR2_TARGET_GRUB2_BUILTIN_MODULES))
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GRUB2_BUILTIN_CONFIG = $(call qstrip,$(BR2_TARGET_GRUB2_BUILTIN_CONFIG))
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GRUB2_BOOT_PARTITION = $(call qstrip,$(BR2_TARGET_GRUB2_BOOT_PARTITION))
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ifeq ($(BR2_TARGET_GRUB2_I386_PC),y)
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GRUB2_IMAGE = $(BINARIES_DIR)/grub.img
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GRUB2_CFG = $(TARGET_DIR)/boot/grub/grub.cfg
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GRUB2_PREFIX = ($(GRUB2_BOOT_PARTITION))/boot/grub
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GRUB2_TUPLE = i386-pc
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GRUB2_TARGET = i386
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GRUB2_PLATFORM = pc
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else ifeq ($(BR2_TARGET_GRUB2_I386_EFI),y)
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GRUB2_IMAGE = $(BINARIES_DIR)/efi-part/EFI/BOOT/bootia32.efi
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GRUB2_CFG = $(BINARIES_DIR)/efi-part/EFI/BOOT/grub.cfg
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GRUB2_PREFIX = /EFI/BOOT
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GRUB2_TUPLE = i386-efi
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GRUB2_TARGET = i386
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GRUB2_PLATFORM = efi
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else ifeq ($(BR2_TARGET_GRUB2_X86_64_EFI),y)
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GRUB2_IMAGE = $(BINARIES_DIR)/efi-part/EFI/BOOT/bootx64.efi
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GRUB2_CFG = $(BINARIES_DIR)/efi-part/EFI/BOOT/grub.cfg
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GRUB2_PREFIX = /EFI/BOOT
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GRUB2_TUPLE = x86_64-efi
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GRUB2_TARGET = x86_64
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GRUB2_PLATFORM = efi
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else ifeq ($(BR2_TARGET_GRUB2_ARM_UBOOT),y)
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GRUB2_IMAGE = $(BINARIES_DIR)/boot-part/grub/grub.img
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GRUB2_CFG = $(BINARIES_DIR)/boot-part/grub/grub.cfg
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GRUB2_PREFIX = ($(GRUB2_BOOT_PARTITION))/boot/grub
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GRUB2_TUPLE = arm-uboot
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GRUB2_TARGET = arm
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GRUB2_PLATFORM = uboot
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else ifeq ($(BR2_TARGET_GRUB2_ARM_EFI),y)
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GRUB2_IMAGE = $(BINARIES_DIR)/efi-part/EFI/BOOT/bootarm.efi
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GRUB2_CFG = $(BINARIES_DIR)/efi-part/EFI/BOOT/grub.cfg
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GRUB2_PREFIX = /EFI/BOOT
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GRUB2_TUPLE = arm-efi
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GRUB2_TARGET = arm
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GRUB2_PLATFORM = efi
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else ifeq ($(BR2_TARGET_GRUB2_ARM64_EFI),y)
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GRUB2_IMAGE = $(BINARIES_DIR)/efi-part/EFI/BOOT/bootaa64.efi
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GRUB2_CFG = $(BINARIES_DIR)/efi-part/EFI/BOOT/grub.cfg
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GRUB2_PREFIX = /EFI/BOOT
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GRUB2_TUPLE = arm64-efi
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GRUB2_TARGET = aarch64
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GRUB2_PLATFORM = efi
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endif
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# Grub2 is kind of special: it considers CC, LD and so on to be the
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# tools to build the host programs and uses TARGET_CC, TARGET_CFLAGS,
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# TARGET_CPPFLAGS, TARGET_LDFLAGS to build the bootloader itself.
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#
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# NOTE: TARGET_STRIP is overridden by !BR2_STRIP_strip, so always
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# use the cross compile variant to ensure grub2 builds
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HOST_GRUB2_CONF_ENV = \
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CPP="$(HOSTCC) -E"
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GRUB2_CONF_ENV = \
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CPP="$(TARGET_CC) -E" \
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TARGET_CC="$(TARGET_CC)" \
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TARGET_CFLAGS="$(TARGET_CFLAGS)" \
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TARGET_CPPFLAGS="$(TARGET_CPPFLAGS) -fno-stack-protector" \
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TARGET_LDFLAGS="$(TARGET_LDFLAGS)" \
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TARGET_NM="$(TARGET_NM)" \
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TARGET_OBJCOPY="$(TARGET_OBJCOPY)" \
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TARGET_STRIP="$(TARGET_CROSS)strip"
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GRUB2_CONF_OPTS = \
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--target=$(GRUB2_TARGET) \
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--with-platform=$(GRUB2_PLATFORM) \
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--prefix=/ \
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--exec-prefix=/ \
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--disable-grub-mkfont \
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--enable-efiemu=no \
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ac_cv_lib_lzma_lzma_code=no \
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--enable-device-mapper=no \
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--enable-libzfs=no \
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--disable-werror
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HOST_GRUB2_CONF_OPTS = \
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--disable-grub-mkfont \
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--enable-efiemu=no \
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ac_cv_lib_lzma_lzma_code=no \
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--enable-device-mapper=no \
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--enable-libzfs=no \
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--disable-werror
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ifeq ($(BR2_TARGET_GRUB2_I386_PC),y)
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define GRUB2_IMAGE_INSTALL_ELTORITO
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cat $(HOST_DIR)/lib/grub/$(GRUB2_TUPLE)/cdboot.img $(GRUB2_IMAGE) > \
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$(BINARIES_DIR)/grub-eltorito.img
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endef
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endif
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define GRUB2_INSTALL_IMAGES_CMDS
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mkdir -p $(dir $(GRUB2_IMAGE))
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$(HOST_DIR)/usr/bin/grub-mkimage \
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-d $(@D)/grub-core/ \
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-O $(GRUB2_TUPLE) \
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-o $(GRUB2_IMAGE) \
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-p "$(GRUB2_PREFIX)" \
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$(if $(GRUB2_BUILTIN_CONFIG),-c $(GRUB2_BUILTIN_CONFIG)) \
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$(GRUB2_BUILTIN_MODULES)
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mkdir -p $(dir $(GRUB2_CFG))
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$(INSTALL) -D -m 0644 boot/grub2/grub.cfg $(GRUB2_CFG)
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$(GRUB2_IMAGE_INSTALL_ELTORITO)
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endef
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ifeq ($(GRUB2_PLATFORM),efi)
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define GRUB2_EFI_STARTUP_NSH
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echo $(notdir $(GRUB2_IMAGE)) > \
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$(BINARIES_DIR)/efi-part/startup.nsh
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endef
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GRUB2_POST_INSTALL_IMAGES_HOOKS += GRUB2_EFI_STARTUP_NSH
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endif
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$(eval $(autotools-package))
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$(eval $(host-autotools-package))
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