2018-05-18 07:49:27 +04:00
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use simple_filesystem::*;
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use alloc::boxed::Box;
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2018-07-14 13:41:45 +04:00
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#[cfg(target_arch = "x86_64")]
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2018-05-23 20:25:27 +04:00
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use arch::driver::ide;
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2018-10-17 17:34:15 +04:00
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use sync::SpinLock as Mutex;
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2018-05-18 07:49:27 +04:00
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2018-08-04 19:08:10 +04:00
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// Hard link user program
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#[cfg(target_arch = "riscv32")]
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global_asm!(r#"
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.section .rodata
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.align 12
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_binary_user_riscv_img_start:
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.incbin "../user/user-riscv.img"
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_binary_user_riscv_img_end:
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"#);
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2018-07-16 13:31:29 +04:00
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pub fn shell() {
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2018-08-04 12:20:25 +04:00
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#[cfg(target_arch = "riscv32")]
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2018-07-14 13:41:45 +04:00
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let device = {
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extern {
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fn _binary_user_riscv_img_start();
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fn _binary_user_riscv_img_end();
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}
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Box::new(unsafe { MemBuf::new(_binary_user_riscv_img_start, _binary_user_riscv_img_end) })
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};
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#[cfg(target_arch = "x86_64")]
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2018-09-18 13:47:42 +04:00
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let device = Box::new(&ide::DISK1);
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let sfs = SimpleFileSystem::open(device).expect("failed to open SFS");
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2018-05-23 20:25:27 +04:00
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let root = sfs.root_inode();
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let files = root.borrow().list().unwrap();
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2018-07-16 13:31:29 +04:00
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println!("Available programs: {:?}", files);
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2018-05-23 20:25:27 +04:00
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2018-08-06 15:04:18 +04:00
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// Avoid stack overflow in release mode
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// Equal to: `buf = Box::new([0; 64 << 12])`
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use alloc::alloc::{alloc, dealloc, Layout};
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const BUF_SIZE: usize = 0x40000;
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let layout = Layout::from_size_align(BUF_SIZE, 0x1000).unwrap();
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let buf = unsafe{ slice::from_raw_parts_mut(alloc(layout), BUF_SIZE) };
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2018-07-16 13:31:29 +04:00
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loop {
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2018-07-16 18:02:03 +04:00
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print!(">> ");
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2018-07-16 13:31:29 +04:00
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use console::get_line;
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let name = get_line();
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if name == "" {
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continue;
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}
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if let Ok(file) = root.borrow().lookup(name.as_str()) {
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2018-07-16 20:23:02 +04:00
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use process::*;
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2018-07-17 06:47:05 +04:00
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let len = file.borrow().read_at(0, &mut *buf).unwrap();
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2018-10-25 20:49:19 +04:00
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let pid = processor().manager().add(ContextImpl::new_user(&buf[..len]));
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processor().manager().wait(thread::current().id(), pid);
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processor().yield_now();
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2018-07-16 13:31:29 +04:00
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} else {
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println!("Program not exist");
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}
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2018-05-23 20:25:27 +04:00
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}
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2018-08-06 15:04:18 +04:00
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unsafe { dealloc(buf.as_mut_ptr(), layout) };
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2018-05-23 20:25:27 +04:00
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}
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2018-05-18 07:49:27 +04:00
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struct MemBuf(&'static [u8]);
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impl MemBuf {
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unsafe fn new(begin: unsafe extern fn(), end: unsafe extern fn()) -> Self {
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use core::slice;
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MemBuf(slice::from_raw_parts(begin as *const u8, end as usize - begin as usize))
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}
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}
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impl Device for MemBuf {
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fn read_at(&mut self, offset: usize, buf: &mut [u8]) -> Option<usize> {
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let slice = self.0;
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let len = buf.len().min(slice.len() - offset);
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buf[..len].copy_from_slice(&slice[offset..offset + len]);
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Some(len)
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}
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fn write_at(&mut self, offset: usize, buf: &[u8]) -> Option<usize> {
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None
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}
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}
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2018-05-23 20:25:27 +04:00
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use core::slice;
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2018-05-18 07:49:27 +04:00
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2018-07-14 13:41:45 +04:00
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#[cfg(target_arch = "x86_64")]
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2018-09-18 13:47:42 +04:00
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impl BlockedDevice for &'static ide::DISK1 {
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2018-07-15 12:44:21 +04:00
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const BLOCK_SIZE_LOG2: u8 = 9;
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2018-05-23 20:25:27 +04:00
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fn read_at(&mut self, block_id: usize, buf: &mut [u8]) -> bool {
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assert!(buf.len() >= ide::BLOCK_SIZE);
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let buf = unsafe { slice::from_raw_parts_mut(buf.as_ptr() as *mut u32, ide::BLOCK_SIZE / 4) };
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self.0.lock().read(block_id as u64, 1, buf).is_ok()
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}
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fn write_at(&mut self, block_id: usize, buf: &[u8]) -> bool {
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assert!(buf.len() >= ide::BLOCK_SIZE);
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let buf = unsafe { slice::from_raw_parts(buf.as_ptr() as *mut u32, ide::BLOCK_SIZE / 4) };
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self.0.lock().write(block_id as u64, 1, buf).is_ok()
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2018-05-18 07:49:27 +04:00
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}
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}
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