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x86/efi: Wire up CONFIG_EFI_MIXED
Add the Kconfig option and bump the kernel header version so that boot loaders can check whether the handover code is available if they want. The xloadflags field in the bzImage header is also updated to reflect that the kernel supports both entry points by setting both of XLF_EFI_HANDOVER_32 and XLF_EFI_HANDOVER_64 when CONFIG_EFI_MIXED=y. XLF_CAN_BE_LOADED_ABOVE_4G is disabled so that the kernel text is guaranteed to be addressable with 32-bits. Note that no boot loaders should be using the bits set in xloadflags to decide which entry point to jump to. The entire scheme is based on the concept that 32-bit bootloaders always jump to ->handover_offset and 64-bit loaders always jump to ->handover_offset + 512. We set both bits merely to inform the boot loader that it's safe to use the native handover offset even if the machine type in the PE/COFF header claims otherwise. Signed-off-by: Matt Fleming <matt.fleming@intel.com>
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@ -1585,6 +1585,20 @@ config EFI_STUB
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See Documentation/efi-stub.txt for more information.
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config EFI_MIXED
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bool "EFI mixed-mode support"
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depends on EFI_STUB && X86_64
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---help---
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Enabling this feature allows a 64-bit kernel to be booted
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on a 32-bit firmware, provided that your CPU supports 64-bit
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mode.
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Note that it is not possible to boot a mixed-mode enabled
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kernel via the EFI boot stub - a bootloader that supports
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the EFI handover protocol must be used.
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If unsure, say N.
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config SECCOMP
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def_bool y
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prompt "Enable seccomp to safely compute untrusted bytecode"
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@ -283,7 +283,7 @@ _start:
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# Part 2 of the header, from the old setup.S
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.ascii "HdrS" # header signature
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.word 0x020c # header version number (>= 0x0105)
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.word 0x020d # header version number (>= 0x0105)
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# or else old loadlin-1.5 will fail)
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.globl realmode_swtch
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realmode_swtch: .word 0, 0 # default_switch, SETUPSEG
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@ -375,7 +375,8 @@ xloadflags:
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# define XLF0 0
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#endif
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#if defined(CONFIG_RELOCATABLE) && defined(CONFIG_X86_64)
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#if defined(CONFIG_RELOCATABLE) && defined(CONFIG_X86_64) && \
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!defined(CONFIG_EFI_MIXED)
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/* kernel/boot_param/ramdisk could be loaded above 4g */
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# define XLF1 XLF_CAN_BE_LOADED_ABOVE_4G
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#else
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@ -383,10 +384,14 @@ xloadflags:
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#endif
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#ifdef CONFIG_EFI_STUB
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# ifdef CONFIG_X86_64
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# define XLF23 XLF_EFI_HANDOVER_64 /* 64-bit EFI handover ok */
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# ifdef CONFIG_EFI_MIXED
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# define XLF23 (XLF_EFI_HANDOVER_32|XLF_EFI_HANDOVER_64)
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# else
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# define XLF23 XLF_EFI_HANDOVER_32 /* 32-bit EFI handover ok */
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# ifdef CONFIG_X86_64
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# define XLF23 XLF_EFI_HANDOVER_64 /* 64-bit EFI handover ok */
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# else
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# define XLF23 XLF_EFI_HANDOVER_32 /* 32-bit EFI handover ok */
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# endif
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# endif
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#else
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# define XLF23 0
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@ -152,6 +152,17 @@ static inline bool efi_is_native(void)
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return IS_ENABLED(CONFIG_X86_64) == efi_enabled(EFI_64BIT);
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}
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static inline bool efi_runtime_supported(void)
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{
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if (efi_is_native())
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return true;
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if (IS_ENABLED(CONFIG_EFI_MIXED) && !efi_enabled(EFI_OLD_MEMMAP))
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return true;
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return false;
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}
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extern struct console early_efi_console;
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extern void parse_efi_setup(u64 phys_addr, u32 data_len);
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@ -1243,7 +1243,7 @@ void __init setup_arch(char **cmdline_p)
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* mismatched firmware/kernel archtectures since there is no
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* support for runtime services.
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*/
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if (efi_enabled(EFI_BOOT) && !efi_is_native()) {
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if (efi_enabled(EFI_BOOT) && !efi_runtime_supported()) {
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pr_info("efi: Setup done, disabling due to 32/64-bit mismatch\n");
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efi_unmap_memmap();
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}
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@ -802,7 +802,7 @@ void __init efi_init(void)
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* that doesn't match the kernel 32/64-bit mode.
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*/
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if (!efi_is_native())
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if (!efi_runtime_supported())
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pr_info("No EFI runtime due to 32/64-bit mismatch with kernel\n");
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else {
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if (disable_runtime || efi_runtime_init())
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