2019-02-22 10:10:24 +04:00
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//! Syscalls for process
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use super::*;
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/// Fork the current process. Return the child's PID.
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pub fn sys_fork(tf: &TrapFrame) -> SysResult {
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let context = current_thread().fork(tf);
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let pid = processor().manager().add(context, thread::current().id());
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info!("fork: {} -> {}", thread::current().id(), pid);
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Ok(pid as isize)
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}
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/// Wait the process exit.
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/// Return the PID. Store exit code to `code` if it's not null.
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pub fn sys_wait(pid: usize, code: *mut i32) -> SysResult {
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2019-03-02 21:27:30 +04:00
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process().memory_set.check_mut_ptr(code)?;
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2019-02-22 10:10:24 +04:00
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loop {
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use alloc::vec;
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let wait_procs = match pid {
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0 => processor().manager().get_children(thread::current().id()),
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_ => vec![pid],
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};
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if wait_procs.is_empty() {
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return Ok(-1);
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}
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for pid in wait_procs {
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match processor().manager().get_status(pid) {
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Some(Status::Exited(exit_code)) => {
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if !code.is_null() {
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unsafe { code.write(exit_code as i32); }
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}
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processor().manager().remove(pid);
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info!("wait: {} -> {}", thread::current().id(), pid);
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return Ok(0);
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}
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None => return Ok(-1),
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_ => {}
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}
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}
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info!("wait: {} -> {}, sleep", thread::current().id(), pid);
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if pid == 0 {
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processor().manager().wait_child(thread::current().id());
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processor().yield_now();
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} else {
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processor().manager().wait(thread::current().id(), pid);
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processor().yield_now();
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}
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}
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}
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2019-03-07 10:21:26 +04:00
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pub fn sys_exec(name: *const u8, argv: *const *const u8, envp: *const *const u8, tf: &mut TrapFrame) -> SysResult {
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info!("exec: name: {:?}, argv: {:?} envp: {:?}", name, argv, envp);
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2019-03-02 15:09:39 +04:00
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let proc = process();
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let name = if name.is_null() { String::from("") } else {
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2019-03-02 21:27:30 +04:00
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unsafe { proc.memory_set.check_and_clone_cstr(name)? }
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2019-02-22 10:10:24 +04:00
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};
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2019-03-07 10:21:26 +04:00
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if argv.is_null() {
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2019-02-28 06:59:52 +04:00
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return Err(SysError::EINVAL);
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2019-02-22 10:10:24 +04:00
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}
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2019-03-02 15:09:39 +04:00
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// Check and copy args to kernel
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let mut args = Vec::new();
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unsafe {
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2019-03-07 10:21:26 +04:00
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let mut current_argv = argv as *const *const u8;
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while !(*current_argv).is_null() {
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let arg = proc.memory_set.check_and_clone_cstr(*current_argv)?;
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2019-03-02 15:09:39 +04:00
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args.push(arg);
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2019-03-07 10:21:26 +04:00
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current_argv = current_argv.add(1);
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2019-03-02 15:09:39 +04:00
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}
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}
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2019-03-07 10:21:26 +04:00
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info!("exec: args {:?}", args);
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2019-03-02 15:09:39 +04:00
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2019-02-22 10:10:24 +04:00
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// Read program file
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let path = args[0].as_str();
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let inode = crate::fs::ROOT_INODE.lookup(path)?;
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2019-02-22 13:10:07 +04:00
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let size = inode.metadata()?.size;
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2019-02-22 10:10:24 +04:00
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let mut buf = Vec::with_capacity(size);
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unsafe { buf.set_len(size); }
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inode.read_at(0, buf.as_mut_slice())?;
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// Make new Thread
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let iter = args.iter().map(|s| s.as_str());
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let mut thread = Thread::new_user(buf.as_slice(), iter);
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2019-03-07 10:21:26 +04:00
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thread.proc.lock().files = proc.files.clone();
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thread.proc.lock().cwd = proc.cwd.clone();
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2019-02-22 10:10:24 +04:00
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// Activate new page table
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unsafe { thread.proc.lock().memory_set.activate(); }
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// Modify the TrapFrame
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*tf = unsafe { thread.context.get_init_tf() };
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// Swap Context but keep KStack
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::core::mem::swap(&mut current_thread().kstack, &mut thread.kstack);
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::core::mem::swap(current_thread(), &mut *thread);
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Ok(0)
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}
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pub fn sys_yield() -> SysResult {
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thread::yield_now();
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Ok(0)
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}
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/// Kill the process
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pub fn sys_kill(pid: usize) -> SysResult {
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info!("{} killed: {}", thread::current().id(), pid);
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processor().manager().exit(pid, 0x100);
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if pid == thread::current().id() {
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processor().yield_now();
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}
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Ok(0)
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}
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/// Get the current process id
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pub fn sys_getpid() -> SysResult {
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Ok(thread::current().id() as isize)
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}
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2019-03-02 15:09:39 +04:00
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/// Get the parent process id
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pub fn sys_getppid() -> SysResult {
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let pid = thread::current().id();
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let ppid = processor().manager().get_parent(pid);
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Ok(ppid as isize)
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}
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2019-02-22 10:10:24 +04:00
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/// Exit the current process
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2019-02-27 20:15:33 +04:00
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pub fn sys_exit(exit_code: isize) -> ! {
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2019-02-22 10:10:24 +04:00
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let pid = thread::current().id();
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info!("exit: {}, code: {}", pid, exit_code);
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2019-03-07 10:55:31 +04:00
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// close all files.
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// TODO: close them in all possible ways a process can exit
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let mut proc = process();
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let fds: Vec<usize> = proc.files.keys().cloned().collect();
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for fd in fds.into_iter() {
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2019-03-07 15:31:46 +04:00
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sys_close_internal(&mut proc, fd).unwrap();
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2019-03-07 10:55:31 +04:00
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}
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drop(proc);
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2019-02-22 10:10:24 +04:00
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processor().manager().exit(pid, exit_code as usize);
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processor().yield_now();
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unreachable!();
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}
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pub fn sys_sleep(time: usize) -> SysResult {
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if time >= 1 << 31 {
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thread::park();
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} else {
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use core::time::Duration;
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thread::sleep(Duration::from_millis(time as u64 * 10));
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}
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Ok(0)
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}
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pub fn sys_set_priority(priority: usize) -> SysResult {
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let pid = thread::current().id();
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processor().manager().set_priority(pid, priority as u8);
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Ok(0)
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}
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