128 lines
4.4 KiB
C
128 lines
4.4 KiB
C
/* SPDX-License-Identifier: LGPL-2.1+ */
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#include <efi.h>
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#include <efilib.h>
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#include "linux.h"
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#include "util.h"
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#define SETUP_MAGIC 0x53726448 /* "HdrS" */
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struct SetupHeader {
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UINT8 boot_sector[0x01f1];
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UINT8 setup_secs;
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UINT16 root_flags;
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UINT32 sys_size;
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UINT16 ram_size;
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UINT16 video_mode;
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UINT16 root_dev;
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UINT16 signature;
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UINT16 jump;
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UINT32 header;
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UINT16 version;
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UINT16 su_switch;
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UINT16 setup_seg;
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UINT16 start_sys;
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UINT16 kernel_ver;
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UINT8 loader_id;
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UINT8 load_flags;
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UINT16 movesize;
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UINT32 code32_start;
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UINT32 ramdisk_start;
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UINT32 ramdisk_len;
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UINT32 bootsect_kludge;
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UINT16 heap_end;
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UINT8 ext_loader_ver;
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UINT8 ext_loader_type;
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UINT32 cmd_line_ptr;
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UINT32 ramdisk_max;
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UINT32 kernel_alignment;
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UINT8 relocatable_kernel;
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UINT8 min_alignment;
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UINT16 xloadflags;
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UINT32 cmdline_size;
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UINT32 hardware_subarch;
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UINT64 hardware_subarch_data;
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UINT32 payload_offset;
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UINT32 payload_length;
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UINT64 setup_data;
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UINT64 pref_address;
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UINT32 init_size;
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UINT32 handover_offset;
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} __attribute__((packed));
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#ifdef __x86_64__
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typedef VOID(*handover_f)(VOID *image, EFI_SYSTEM_TABLE *table, struct SetupHeader *setup);
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static inline VOID linux_efi_handover(EFI_HANDLE image, struct SetupHeader *setup) {
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handover_f handover;
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asm volatile ("cli");
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handover = (handover_f)((UINTN)setup->code32_start + 512 + setup->handover_offset);
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handover(image, ST, setup);
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}
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#else
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typedef VOID(*handover_f)(VOID *image, EFI_SYSTEM_TABLE *table, struct SetupHeader *setup) __attribute__((regparm(0)));
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static inline VOID linux_efi_handover(EFI_HANDLE image, struct SetupHeader *setup) {
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handover_f handover;
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handover = (handover_f)((UINTN)setup->code32_start + setup->handover_offset);
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handover(image, ST, setup);
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}
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#endif
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EFI_STATUS linux_exec(EFI_HANDLE *image,
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CHAR8 *cmdline, UINTN cmdline_len,
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UINTN linux_addr,
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UINTN initrd_addr, UINTN initrd_size, BOOLEAN secure) {
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struct SetupHeader *image_setup;
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struct SetupHeader *boot_setup;
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EFI_PHYSICAL_ADDRESS addr;
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EFI_STATUS err;
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image_setup = (struct SetupHeader *)(linux_addr);
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if (image_setup->signature != 0xAA55 || image_setup->header != SETUP_MAGIC)
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return EFI_LOAD_ERROR;
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if (image_setup->version < 0x20b || !image_setup->relocatable_kernel)
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return EFI_LOAD_ERROR;
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addr = 0x3fffffff;
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err = uefi_call_wrapper(BS->AllocatePages, 4, AllocateMaxAddress, EfiLoaderData,
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EFI_SIZE_TO_PAGES(0x4000), &addr);
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if (EFI_ERROR(err))
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return err;
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boot_setup = (struct SetupHeader *)(UINTN)addr;
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ZeroMem(boot_setup, 0x4000);
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CopyMem(boot_setup, image_setup, sizeof(struct SetupHeader));
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boot_setup->loader_id = 0xff;
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if (secure) {
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/* set secure boot flag in linux kernel zero page, see
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- Documentation/x86/zero-page.txt
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- arch/x86/include/uapi/asm/bootparam.h
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- drivers/firmware/efi/libstub/secureboot.c
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in the linux kernel source tree
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Possible values: 0 (unassigned), 1 (undetected), 2 (disabled), 3 (enabled)
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*/
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boot_setup->boot_sector[0x1ec] = 3;
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}
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boot_setup->code32_start = (UINT32)linux_addr + (image_setup->setup_secs+1) * 512;
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if (cmdline) {
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addr = 0xA0000;
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err = uefi_call_wrapper(BS->AllocatePages, 4, AllocateMaxAddress, EfiLoaderData,
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EFI_SIZE_TO_PAGES(cmdline_len + 1), &addr);
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if (EFI_ERROR(err))
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return err;
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CopyMem((VOID *)(UINTN)addr, cmdline, cmdline_len);
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((CHAR8 *)(UINTN)addr)[cmdline_len] = 0;
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boot_setup->cmd_line_ptr = (UINT32)addr;
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}
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boot_setup->ramdisk_start = (UINT32)initrd_addr;
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boot_setup->ramdisk_len = (UINT32)initrd_size;
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linux_efi_handover(image, boot_setup);
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return EFI_LOAD_ERROR;
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}
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