2017-04-11 17:02:21 +04:00
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#![feature(lang_items)]
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2017-04-12 21:16:04 +04:00
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#![feature(const_fn)]
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2017-11-19 15:41:20 +04:00
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#![feature(alloc)]
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2017-11-19 15:54:47 +04:00
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#![feature(const_unique_new, const_atomic_usize_new)]
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2017-04-12 21:20:15 +04:00
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#![feature(unique)]
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2017-11-19 15:50:16 +04:00
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#![feature(allocator_api)]
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2017-04-11 17:02:21 +04:00
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#![no_std]
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2017-11-19 15:41:20 +04:00
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#[macro_use]
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extern crate alloc;
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2017-04-11 20:25:51 +04:00
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extern crate rlibc;
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2017-04-12 21:24:25 +04:00
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extern crate volatile;
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2017-04-12 21:32:59 +04:00
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extern crate spin;
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2017-04-13 19:51:09 +04:00
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extern crate multiboot2;
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2017-04-13 20:27:39 +04:00
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#[macro_use]
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extern crate bitflags;
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2017-04-13 21:40:20 +04:00
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extern crate x86_64;
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2017-04-11 20:25:51 +04:00
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2017-04-12 21:35:08 +04:00
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#[macro_use]
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2017-04-12 21:16:04 +04:00
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mod vga_buffer;
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2017-04-13 19:59:12 +04:00
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mod memory;
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2017-04-12 21:16:04 +04:00
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2017-04-11 17:02:21 +04:00
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#[no_mangle]
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2017-04-13 19:49:27 +04:00
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pub extern fn rust_main(multiboot_information_address: usize) {
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2017-04-13 20:05:32 +04:00
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use memory::FrameAllocator;
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2017-04-12 21:35:08 +04:00
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vga_buffer::clear_screen();
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println!("Hello World{}", "!");
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2017-04-11 21:30:19 +04:00
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2017-04-13 19:52:32 +04:00
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let boot_info = unsafe{ multiboot2::load(multiboot_information_address) };
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let memory_map_tag = boot_info.memory_map_tag()
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.expect("Memory map tag required");
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2017-04-13 19:54:06 +04:00
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let elf_sections_tag = boot_info.elf_sections_tag()
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2017-04-18 14:22:36 +04:00
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.expect("Elf sections tag required");
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2017-04-13 19:54:06 +04:00
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2017-04-13 19:57:33 +04:00
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let kernel_start = elf_sections_tag.sections().map(|s| s.addr)
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.min().unwrap();
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let kernel_end = elf_sections_tag.sections().map(|s| s.addr + s.size)
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.max().unwrap();
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let multiboot_start = multiboot_information_address;
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let multiboot_end = multiboot_start + (boot_info.total_size as usize);
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2017-04-18 14:22:36 +04:00
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println!("kernel start: 0x{:x}, kernel end: 0x{:x}",
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kernel_start, kernel_end);
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println!("multiboot start: 0x{:x}, multiboot end: 0x{:x}",
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multiboot_start, multiboot_end);
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2017-04-13 20:05:32 +04:00
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let mut frame_allocator = memory::AreaFrameAllocator::new(
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kernel_start as usize, kernel_end as usize, multiboot_start,
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multiboot_end, memory_map_tag.memory_areas());
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2017-04-18 14:32:59 +04:00
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enable_nxe_bit();
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2017-04-18 14:33:53 +04:00
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enable_write_protect_bit();
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2017-04-18 14:21:47 +04:00
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memory::remap_the_kernel(&mut frame_allocator, boot_info);
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println!("It did not crash!");
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loop {}
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2017-04-11 20:25:51 +04:00
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}
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2017-04-11 17:02:21 +04:00
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2017-04-18 14:32:59 +04:00
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fn enable_nxe_bit() {
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use x86_64::registers::msr::{IA32_EFER, rdmsr, wrmsr};
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let nxe_bit = 1 << 11;
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unsafe {
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let efer = rdmsr(IA32_EFER);
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wrmsr(IA32_EFER, efer | nxe_bit);
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}
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}
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2017-04-18 14:33:53 +04:00
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fn enable_write_protect_bit() {
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use x86_64::registers::control_regs::{cr0, cr0_write, Cr0};
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unsafe { cr0_write(cr0() | Cr0::WRITE_PROTECT) };
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}
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2017-04-11 17:02:21 +04:00
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#[lang = "eh_personality"] extern fn eh_personality() {}
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2017-04-13 19:53:34 +04:00
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#[lang = "panic_fmt"]
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#[no_mangle]
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pub extern fn panic_fmt(fmt: core::fmt::Arguments, file: &'static str, line: u32) -> ! {
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println!("\n\nPANIC in {} at line {}:", file, line);
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println!(" {}", fmt);
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loop{}
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}
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