Загрузить файлы в «src»
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70
src/lib.rs
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70
src/lib.rs
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#![no_std]
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#![cfg_attr(test, no_main)]
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#![feature(custom_test_frameworks)]
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#![test_runner(crate::test_runner)]
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#![reexport_test_harness_main = "test_main"]
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use core::panic::PanicInfo;
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pub mod serial;
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pub mod vga_buffer;
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pub trait Testable {
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fn run(&self) -> ();
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}
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impl<T> Testable for T
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where
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T: Fn(),
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{
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fn run(&self) {
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serial_print!("{}...\t", core::any::type_name::<T>());
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self();
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serial_println!("[ok]");
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}
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}
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pub fn test_runner(tests: &[&dyn Testable]) {
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serial_println!("Running {} tests", tests.len());
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for test in tests {
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test.run();
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}
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exit_qemu(QemuExitCode::Success);
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}
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pub fn test_panic_handler(info: &PanicInfo) -> ! {
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serial_println!("[failed]\n");
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serial_println!("Error: {}\n", info);
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exit_qemu(QemuExitCode::Failed);
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loop {}
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}
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// Entry point for `cargo test`
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#[cfg(test)]
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#[unsafe(no_mangle)]
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pub extern "C" fn _start() -> ! {
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test_main();
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loop {}
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}
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#[cfg(test)]
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#[panic_handler]
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fn panic(info: &PanicInfo) -> ! {
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test_panic_handler(info);
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}
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#[derive(Debug, Clone, Copy, PartialEq, Eq)]
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#[repr(u32)]
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pub enum QemuExitCode {
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Success = 0x10,
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Failed = 0x11,
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}
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pub fn exit_qemu(exit_code: QemuExitCode) {
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use x86_64::instructions::port::Port;
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unsafe {
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let mut port = Port::new(0xf4);
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port.write(exit_code as u32);
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}
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}
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22
src/main.rs
22
src/main.rs
@@ -1,24 +1,32 @@
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#![no_std] // don't link the Rust standart library
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#![no_main] // disable all Rust-level entry points
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#![feature(custom_test_frameworks)]
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#![test_runner(amix::test_runner)]
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#![reexport_test_harness_main = "test_main"]
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use amix::println;
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use core::panic::PanicInfo;
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mod vga_buffer;
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#[unsafe(no_mangle)] // don't mangle the name of this function
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#[unsafe(no_mangle)]
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pub extern "C" fn _start() -> ! {
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// this function is the entry point, since the linker looks for a function
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// named `_start` by default
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println!("Welcome to Amix{}", "!");
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panic!("ERROR!!!");
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#[cfg(test)]
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test_main();
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loop {}
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}
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// This function is called on panic.
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#[cfg(not(test))]
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#[panic_handler]
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fn panic(info: &PanicInfo) -> ! {
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println!("{}", info);
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loop {}
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}
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#[cfg(test)]
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#[panic_handler]
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fn panic(info: &PanicInfo) -> ! {
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amix::test_panic_handler(info)
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}
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37
src/serial.rs
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37
src/serial.rs
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@@ -0,0 +1,37 @@
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use lazy_static::lazy_static;
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use spin::Mutex;
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use uart_16550::SerialPort;
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lazy_static! {
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pub static ref SERIAL1: Mutex<SerialPort> = {
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let mut serial_port = unsafe { SerialPort::new(0x3F8) };
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serial_port.init();
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Mutex::new(serial_port)
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};
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}
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#[doc(hidden)]
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pub fn _print(args: ::core::fmt::Arguments) {
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use core::fmt::Write;
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SERIAL1
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.lock()
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.write_fmt(args)
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.expect("Printing to serial failed");
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}
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// Prints to the host through the serial interface.
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#[macro_export]
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macro_rules! serial_print {
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($($arg:tt)*) => {
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$crate::serial::_print(format_args!($($arg)*));
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};
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}
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// Prints to the host through the serial interface, appending a newline.
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#[macro_export]
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macro_rules! serial_println {
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() => ($crate::serial_print!("\n"));
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($fmt:expr) => ($crate::serial_print!(concat!($fmt, "\n")));
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($fmt:expr, $($arg:tt)*) => ($crate::serial_print!(
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concat!($fmt, "\n"), $($arg)*));
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}
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@@ -68,7 +68,7 @@ impl Writer {
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let row = BUFFER_HEIGHT - 1;
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let col = self.column_position;
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let color_code = self.color_code;
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//let color_code = self.color_code;
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self.buffer.chars[row][col].write(ScreenChar {
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ascii_character: byte,
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color_code: self.color_code,
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@@ -121,7 +121,7 @@ impl fmt::Write for Writer {
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lazy_static! {
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pub static ref WRITER: Mutex<Writer> = Mutex::new(Writer {
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column_position: 0,
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color_code: ColorCode::new(Color::Yellow, Color::Black),
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color_code: ColorCode::new(Color::White, Color::Black),
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buffer: unsafe { &mut *(0xb8000 as *mut Buffer) },
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});
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}
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@@ -142,3 +142,25 @@ pub fn _print(args: fmt::Arguments) {
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use core::fmt::Write;
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WRITER.lock().write_fmt(args).unwrap();
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}
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#[test_case]
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fn test_println_simple() {
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println!("test_println_simple output");
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}
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#[test_case]
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fn test_println_many() {
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for _ in 0..200 {
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println!("test_println_many output");
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}
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}
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#[test_case]
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fn test_println_output() {
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let s = "Some test string that fits on a single line";
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println!("{}", s);
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for (i, c) in s.chars().enumerate() {
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let screen_char = WRITER.lock().buffer.chars[BUFFER_HEIGHT - 2][i].read();
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assert_eq!(char::from(screen_char.ascii_character), c);
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}
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}
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