boot.rs 1.3 KB

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  1. use core::arch::global_asm;
  2. use x86_64::registers::control::{Cr0Flags, Cr4Flags};
  3. use x86_64::registers::model_specific::EferFlags;
  4. const BOOT_STACK_SIZE: usize = 0x4000; // 16K
  5. /// Flags set in the ’flags’ member of the multiboot header.
  6. ///
  7. /// (bits 1, 16: memory information, address fields in header)
  8. const MULTIBOOT_HEADER_FLAGS: usize = 0x0001_0002;
  9. /// The magic field should contain this.
  10. const MULTIBOOT_HEADER_MAGIC: usize = 0x1BADB002;
  11. /// This should be in EAX.
  12. const MULTIBOOT_BOOTLOADER_MAGIC: usize = 0x2BADB002;
  13. const CR0: u64 = Cr0Flags::PROTECTED_MODE_ENABLE.bits()
  14. | Cr0Flags::MONITOR_COPROCESSOR.bits()
  15. | Cr0Flags::NUMERIC_ERROR.bits()
  16. | Cr0Flags::WRITE_PROTECT.bits()
  17. | Cr0Flags::PAGING.bits();
  18. const CR4: u64 = Cr4Flags::PHYSICAL_ADDRESS_EXTENSION.bits() | Cr4Flags::PAGE_GLOBAL.bits();
  19. const EFER: u64 = EferFlags::LONG_MODE_ENABLE.bits() | EferFlags::NO_EXECUTE_ENABLE.bits();
  20. global_asm!(
  21. include_str!("multiboot.S"),
  22. mb_magic = const MULTIBOOT_BOOTLOADER_MAGIC,
  23. mb_hdr_magic = const MULTIBOOT_HEADER_MAGIC,
  24. mb_hdr_flags = const MULTIBOOT_HEADER_FLAGS,
  25. entry = sym super::main,
  26. offset = const 0, // virt_addr == phys_addr
  27. boot_stack_size = const BOOT_STACK_SIZE,
  28. cr0 = const CR0,
  29. cr4 = const CR4,
  30. efer_msr = const 0xC000_0080u32,
  31. efer = const EFER,
  32. );