Double Faults
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@ -34,3 +34,7 @@ test-timeout = 300 # 设定 300 秒后超时
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[[test]]
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[[test]]
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name = "should_panic"
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name = "should_panic"
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harness = false # 禁用 test runner, 让 should_panic 作为一个常规的可执行文件存在
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harness = false # 禁用 test runner, 让 should_panic 作为一个常规的可执行文件存在
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[[test]]
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name = "stack_overflow"
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harness = false
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48
src/gdt.rs
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48
src/gdt.rs
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@ -0,0 +1,48 @@
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use x86_64::VirtAddr;
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use x86_64::structures::tss::TaskStateSegment;
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use lazy_static::lazy_static;
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use x86_64::structures::gdt::{GlobalDescriptorTable, Descriptor};
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use x86_64::structures::gdt::SegmentSelector;
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pub const DOUBLE_FAULT_IST_INDEX: u16 = 0;
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lazy_static! {
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static ref TSS: TaskStateSegment = {
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let mut tss = TaskStateSegment::new();
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tss.interrupt_stack_table[DOUBLE_FAULT_IST_INDEX as usize] = {
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const STACK_SIZE: usize = 4096 * 5;
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static mut STACK: [u8; STACK_SIZE] = [0; STACK_SIZE];
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let stack_start = VirtAddr::from_ptr(unsafe { &STACK });
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let stack_end = stack_start + STACK_SIZE;
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stack_end
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};
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tss
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};
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}
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lazy_static! {
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static ref GDT: (GlobalDescriptorTable, Selectors) = {
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let mut gdt = GlobalDescriptorTable::new();
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let code_selector = gdt.add_entry(Descriptor::kernel_code_segment());
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let tss_selector = gdt.add_entry(Descriptor::tss_segment(&TSS));
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(gdt, Selectors { code_selector, tss_selector })
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};
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}
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struct Selectors {
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code_selector: SegmentSelector,
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tss_selector: SegmentSelector,
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}
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pub fn init() {
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#[allow(deprecated)]
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use x86_64::instructions::segmentation::set_cs;
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use x86_64::instructions::tables::load_tss;
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GDT.0.load();
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unsafe {
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#[allow(deprecated)]
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set_cs(GDT.1.code_selector);
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load_tss(GDT.1.tss_selector);
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}
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}
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@ -1,11 +1,16 @@
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use x86_64::structures::idt::{InterruptDescriptorTable, InterruptStackFrame};
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use x86_64::structures::idt::{InterruptDescriptorTable, InterruptStackFrame};
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use crate::println;
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use crate::println;
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use lazy_static::lazy_static;
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use lazy_static::lazy_static;
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use crate::gdt;
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lazy_static! {
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lazy_static! {
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static ref IDT: InterruptDescriptorTable = {
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static ref IDT: InterruptDescriptorTable = {
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let mut idt = InterruptDescriptorTable::new();
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let mut idt = InterruptDescriptorTable::new();
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idt.breakpoint.set_handler_fn(breakpoint_handler);
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idt.breakpoint.set_handler_fn(breakpoint_handler);
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unsafe {
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idt.double_fault.set_handler_fn(double_fault_handler)
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.set_stack_index(gdt::DOUBLE_FAULT_IST_INDEX);
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}
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idt
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idt
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};
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};
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}
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}
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@ -17,3 +22,7 @@ pub fn init_idt() {
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extern "x86-interrupt" fn breakpoint_handler(stack_frame: InterruptStackFrame) {
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extern "x86-interrupt" fn breakpoint_handler(stack_frame: InterruptStackFrame) {
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println!("EXCEPTION: BREAKPOINT\n{:#?}", stack_frame);
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println!("EXCEPTION: BREAKPOINT\n{:#?}", stack_frame);
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}
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}
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extern "x86-interrupt" fn double_fault_handler(stack_frame: InterruptStackFrame, _error_code: u64) -> ! {
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panic!("EXCEPTION: DOUBLE FAULT\n{:#?}", stack_frame);
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}
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@ -9,6 +9,7 @@ use core::panic::PanicInfo;
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pub mod serial;
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pub mod serial;
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pub mod vga_buffer;
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pub mod vga_buffer;
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pub mod interrupts;
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pub mod interrupts;
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pub mod gdt;
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pub trait Testable {
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pub trait Testable {
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fn run(&self) -> ();
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fn run(&self) -> ();
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@ -79,5 +80,6 @@ pub fn exit_qemu(exit_code: QemuExitCode) {
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}
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}
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pub fn init() {
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pub fn init() {
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gdt::init();
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interrupts::init_idt();
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interrupts::init_idt();
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}
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}
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@ -15,9 +15,18 @@ pub extern "C" fn _start() -> ! {
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println!("Hello World{}", "!");
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println!("Hello World{}", "!");
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anos::init();
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anos::init();
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// 触发一个中断
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x86_64::instructions::interrupts::int3();
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x86_64::instructions::interrupts::int3();
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println!("It didn't crash!");
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println!("It didn't crash!");
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// 触发一个页错误
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// 由于我们没有设定页错误的处理函数
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// 所以会触发 double fault
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unsafe {
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*(0xdeadbeef as *mut u64) = 42; // 强制写入某个内存地址
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}
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#[cfg(test)]
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#[cfg(test)]
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test_main();
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test_main();
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50
tests/stack_overflow.rs
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50
tests/stack_overflow.rs
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@ -0,0 +1,50 @@
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#![no_std]
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#![no_main]
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#![feature(abi_x86_interrupt)]
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use core::panic::PanicInfo;
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use anos::{exit_qemu, QemuExitCode, serial_println, serial_print};
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use lazy_static::lazy_static;
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use x86_64::structures::idt::{InterruptDescriptorTable, InterruptStackFrame};
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lazy_static! {
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static ref TEST_IDT: InterruptDescriptorTable = {
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let mut idt = InterruptDescriptorTable::new();
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unsafe {
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idt.double_fault
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.set_handler_fn(test_double_fault_handler)
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.set_stack_index(anos::gdt::DOUBLE_FAULT_IST_INDEX);
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}
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idt
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};
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}
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#[no_mangle]
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pub extern "C" fn _start() -> ! {
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serial_print!("stack_overflow::stack_overflow...\t");
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anos::gdt::init();
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init_test_idt();
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stack_overflow();
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panic!("Execution continued after stack overflow");
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}
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#[panic_handler]
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fn panic(info: &PanicInfo) -> ! {
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anos::test_panic_handler(info)
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}
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#[allow(unconditional_recursion)]
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fn stack_overflow() {
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stack_overflow();
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volatile::Volatile::new(0).read();
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}
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pub fn init_test_idt() {
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TEST_IDT.load();
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}
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extern "x86-interrupt" fn test_double_fault_handler(_stack_frame: InterruptStackFrame, _error_code: u64) -> ! {
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serial_println!("[ok]");
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exit_qemu(QemuExitCode::Success);
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loop {}
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}
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