mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/herbert/cryptodev-2.6.git
synced 2026-04-18 03:23:53 -04:00
LLVM moved their issue tracker from their own Bugzilla instance to GitHub issues. While all of the links are still valid, they may not necessarily show the most up to date information around the issues, as all updates will occur on GitHub, not Bugzilla. Another complication is that the Bugzilla issue number is not always the same as the GitHub issue number. Thankfully, LLVM maintains this mapping through two shortlinks: https://llvm.org/bz<num> -> https://bugs.llvm.org/show_bug.cgi?id=<num> https://llvm.org/pr<num> -> https://github.com/llvm/llvm-project/issues/<mapped_num> Switch all "https://bugs.llvm.org/show_bug.cgi?id=<num>" links to the "https://llvm.org/pr<num>" shortlink so that the links show the most up to date information. Each migrated issue links back to the Bugzilla entry, so there should be no loss of fidelity of information here. Link: https://lkml.kernel.org/r/20240109-update-llvm-links-v1-3-eb09b59db071@kernel.org Signed-off-by: Nathan Chancellor <nathan@kernel.org> Reviewed-by: Kees Cook <keescook@chromium.org> Acked-by: Fangrui Song <maskray@google.com> Cc: Alexei Starovoitov <ast@kernel.org> Cc: Andrii Nakryiko <andrii@kernel.org> Cc: Daniel Borkmann <daniel@iogearbox.net> Cc: Mykola Lysenko <mykolal@fb.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
171 lines
6.6 KiB
Makefile
171 lines
6.6 KiB
Makefile
# SPDX-License-Identifier: GPL-2.0
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#
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# The stub may be linked into the kernel proper or into a separate boot binary,
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# but in either case, it executes before the kernel does (with MMU disabled) so
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# things like ftrace and stack-protector are likely to cause trouble if left
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# enabled, even if doing so doesn't break the build.
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#
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# non-x86 reuses KBUILD_CFLAGS, x86 does not
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cflags-y := $(KBUILD_CFLAGS)
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cflags-$(CONFIG_X86_32) := -march=i386
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cflags-$(CONFIG_X86_64) := -mcmodel=small
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cflags-$(CONFIG_X86) += -m$(BITS) -D__KERNEL__ \
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-fPIC -fno-strict-aliasing -mno-red-zone \
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-mno-mmx -mno-sse -fshort-wchar \
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-Wno-pointer-sign \
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$(call cc-disable-warning, address-of-packed-member) \
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$(call cc-disable-warning, gnu) \
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-fno-asynchronous-unwind-tables \
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$(CLANG_FLAGS)
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# arm64 uses the full KBUILD_CFLAGS so it's necessary to explicitly
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# disable the stackleak plugin
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cflags-$(CONFIG_ARM64) += -fpie $(DISABLE_STACKLEAK_PLUGIN) \
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-fno-unwind-tables -fno-asynchronous-unwind-tables
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cflags-$(CONFIG_ARM) += -DEFI_HAVE_STRLEN -DEFI_HAVE_STRNLEN \
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-DEFI_HAVE_MEMCHR -DEFI_HAVE_STRRCHR \
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-DEFI_HAVE_STRCMP -fno-builtin -fpic \
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$(call cc-option,-mno-single-pic-base)
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cflags-$(CONFIG_RISCV) += -fpic -DNO_ALTERNATIVE -mno-relax
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cflags-$(CONFIG_LOONGARCH) += -fpie
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cflags-$(CONFIG_EFI_PARAMS_FROM_FDT) += -I$(srctree)/scripts/dtc/libfdt
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KBUILD_CFLAGS := $(subst $(CC_FLAGS_FTRACE),,$(cflags-y)) \
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-Os -DDISABLE_BRANCH_PROFILING \
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-include $(srctree)/include/linux/hidden.h \
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-D__NO_FORTIFY \
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-ffreestanding \
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-fno-stack-protector \
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$(call cc-option,-fno-addrsig) \
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-D__DISABLE_EXPORTS
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#
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# struct randomization only makes sense for Linux internal types, which the EFI
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# stub code never touches, so let's turn off struct randomization for the stub
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# altogether
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#
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KBUILD_CFLAGS := $(filter-out $(RANDSTRUCT_CFLAGS), $(KBUILD_CFLAGS))
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# remove SCS flags from all objects in this directory
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KBUILD_CFLAGS := $(filter-out $(CC_FLAGS_SCS), $(KBUILD_CFLAGS))
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# disable CFI
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KBUILD_CFLAGS := $(filter-out $(CC_FLAGS_CFI), $(KBUILD_CFLAGS))
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# disable LTO
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KBUILD_CFLAGS := $(filter-out $(CC_FLAGS_LTO), $(KBUILD_CFLAGS))
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GCOV_PROFILE := n
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# Sanitizer runtimes are unavailable and cannot be linked here.
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KASAN_SANITIZE := n
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KCSAN_SANITIZE := n
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KMSAN_SANITIZE := n
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UBSAN_SANITIZE := n
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OBJECT_FILES_NON_STANDARD := y
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# Prevents link failures: __sanitizer_cov_trace_pc() is not linked in.
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KCOV_INSTRUMENT := n
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lib-y := efi-stub-helper.o gop.o secureboot.o tpm.o \
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file.o mem.o random.o randomalloc.o pci.o \
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skip_spaces.o lib-cmdline.o lib-ctype.o \
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alignedmem.o relocate.o printk.o vsprintf.o
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# include the stub's libfdt dependencies from lib/ when needed
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libfdt-deps := fdt_rw.c fdt_ro.c fdt_wip.c fdt.c \
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fdt_empty_tree.c fdt_sw.c
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lib-$(CONFIG_EFI_PARAMS_FROM_FDT) += fdt.o \
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$(patsubst %.c,lib-%.o,$(libfdt-deps))
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$(obj)/lib-%.o: $(srctree)/lib/%.c FORCE
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$(call if_changed_rule,cc_o_c)
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lib-$(CONFIG_EFI_GENERIC_STUB) += efi-stub.o string.o intrinsics.o systable.o \
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screen_info.o efi-stub-entry.o
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lib-$(CONFIG_ARM) += arm32-stub.o
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lib-$(CONFIG_ARM64) += kaslr.o arm64.o arm64-stub.o smbios.o
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lib-$(CONFIG_X86) += x86-stub.o
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lib-$(CONFIG_X86_64) += x86-5lvl.o
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lib-$(CONFIG_RISCV) += kaslr.o riscv.o riscv-stub.o
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lib-$(CONFIG_LOONGARCH) += loongarch.o loongarch-stub.o
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CFLAGS_arm32-stub.o := -DTEXT_OFFSET=$(TEXT_OFFSET)
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zboot-obj-$(CONFIG_RISCV) := lib-clz_ctz.o lib-ashldi3.o
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lib-$(CONFIG_EFI_ZBOOT) += zboot.o $(zboot-obj-y)
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lib-$(CONFIG_UNACCEPTED_MEMORY) += unaccepted_memory.o bitmap.o find.o
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extra-y := $(lib-y)
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lib-y := $(patsubst %.o,%.stub.o,$(lib-y))
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# Even when -mbranch-protection=none is set, Clang will generate a
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# .note.gnu.property for code-less object files (like lib/ctype.c),
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# so work around this by explicitly removing the unwanted section.
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# https://llvm.org/pr46480
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STUBCOPY_FLAGS-y += --remove-section=.note.gnu.property
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STUBCOPY_RELOC-$(CONFIG_X86_32) := R_386_32
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STUBCOPY_RELOC-$(CONFIG_X86_64) := R_X86_64_64
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#
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# ARM discards the .data section because it disallows r/w data in the
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# decompressor. So move our .data to .data.efistub and .bss to .bss.efistub,
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# which are preserved explicitly by the decompressor linker script.
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#
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STUBCOPY_FLAGS-$(CONFIG_ARM) += --rename-section .data=.data.efistub \
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--rename-section .bss=.bss.efistub,load,alloc
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STUBCOPY_RELOC-$(CONFIG_ARM) := R_ARM_ABS
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#
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# arm64 puts the stub in the kernel proper, which will unnecessarily retain all
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# code indefinitely unless it is annotated as __init/__initdata/__initconst etc.
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# So let's apply the __init annotations at the section level, by prefixing
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# the section names directly. This will ensure that even all the inline string
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# literals are covered.
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# The fact that the stub and the kernel proper are essentially the same binary
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# also means that we need to be extra careful to make sure that the stub does
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# not rely on any absolute symbol references, considering that the virtual
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# kernel mapping that the linker uses is not active yet when the stub is
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# executing. So build all C dependencies of the EFI stub into libstub, and do
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# a verification pass to see if any absolute relocations exist in any of the
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# object files.
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#
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STUBCOPY_FLAGS-$(CONFIG_ARM64) += --prefix-alloc-sections=.init \
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--prefix-symbols=__efistub_
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STUBCOPY_RELOC-$(CONFIG_ARM64) := R_AARCH64_ABS
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# For RISC-V, we don't need anything special other than arm64. Keep all the
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# symbols in .init section and make sure that no absolute symbols references
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# exist.
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STUBCOPY_FLAGS-$(CONFIG_RISCV) += --prefix-alloc-sections=.init \
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--prefix-symbols=__efistub_
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STUBCOPY_RELOC-$(CONFIG_RISCV) := -E R_RISCV_HI20\|R_RISCV_$(BITS)\|R_RISCV_RELAX
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# For LoongArch, keep all the symbols in .init section and make sure that no
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# absolute symbols references exist.
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STUBCOPY_FLAGS-$(CONFIG_LOONGARCH) += --prefix-alloc-sections=.init \
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--prefix-symbols=__efistub_
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STUBCOPY_RELOC-$(CONFIG_LOONGARCH) := R_LARCH_MARK_LA
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$(obj)/%.stub.o: $(obj)/%.o FORCE
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$(call if_changed,stubcopy)
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#
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# Strip debug sections and some other sections that may legally contain
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# absolute relocations, so that we can inspect the remaining sections for
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# such relocations. If none are found, regenerate the output object, but
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# this time, use objcopy and leave all sections in place.
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#
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quiet_cmd_stubcopy = STUBCPY $@
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cmd_stubcopy = \
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$(STRIP) --strip-debug -o $@ $<; \
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if $(OBJDUMP) -r $@ | grep $(STUBCOPY_RELOC-y); then \
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echo "$@: absolute symbol references not allowed in the EFI stub" >&2; \
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/bin/false; \
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fi; \
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$(OBJCOPY) $(STUBCOPY_FLAGS-y) $< $@
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