use of system in parameters in synch
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e5242aab0c
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c8df1e5053
@ -7,6 +7,7 @@ use std::rc::Rc;
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use super::scheduler::Scheduler;
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use super::system::System;
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use super::thread_manager::ThreadManager;
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/// Structure of a Semaphore used for synchronisation
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@ -42,14 +43,14 @@ impl Semaphore {
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/// ### Parameters
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/// - *current_thread* the current thread
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/// - *machine* the machine where the threads are executed
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pub fn p(&mut self, current_thread: Rc<RefCell<Thread>>, machine: &mut Machine){
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let old_status = machine.interrupt.set_status(InterruptOff);
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pub fn p(&mut self, current_thread: Rc<RefCell<Thread>>, system: Rc<RefCell<System>>) {
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let old_status = system.borrow_mut().get_g_machine().borrow_mut().interrupt.set_status(InterruptOff);
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self.counter -= 1;
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if self.counter < 0 {
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self.waiting_queue.push(Rc::clone(¤t_thread));
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self.thread_manager.borrow_mut().thread_sleep(current_thread);
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}
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machine.interrupt.set_status(old_status);
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system.borrow_mut().get_g_machine().borrow_mut().interrupt.set_status(old_status);
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}
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/// Increment semaphore value, waking up a waiting thread if any.
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@ -62,13 +63,13 @@ impl Semaphore {
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/// ### Parameters
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/// - **machine** the machine where the threads are executed
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/// - **scheduler** the scheduler which determine which thread to execute
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pub fn v(&mut self, machine: &mut Machine, scheduler: &mut Scheduler){
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let old_status = machine.interrupt.set_status(InterruptOff);
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pub fn v(&mut self, system: Rc<RefCell<System>>){
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let old_status = system.borrow_mut().get_g_machine().borrow_mut().interrupt.set_status(InterruptOff);
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self.counter += 1;
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if self.waiting_queue.peek() != None {
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scheduler.ready_to_run(self.waiting_queue.pop().unwrap());
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system.borrow_mut().get_thread_manager().borrow_mut().g_scheduler.ready_to_run(self.waiting_queue.pop().unwrap());
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}
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machine.interrupt.set_status(old_status);
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system.borrow_mut().get_g_machine().borrow_mut().interrupt.set_status(old_status);
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}
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}
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@ -110,8 +111,8 @@ impl Lock {
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/// ### Parameters
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/// - **current_thread** the current thread
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/// - **machine** the machine where the threads are executed
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pub fn acquire(&mut self, current_thread: Option<Rc<RefCell<Thread>>>, machine: &mut Machine) {
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let old_status = machine.interrupt.set_status(InterruptOff);
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pub fn acquire(&mut self, current_thread: Option<Rc<RefCell<Thread>>>, system: Rc<RefCell<System>>) {
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let old_status = system.borrow_mut().get_g_machine().borrow_mut().interrupt.set_status(InterruptOff);
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if self.free {
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self.free = false;
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@ -126,7 +127,7 @@ impl Lock {
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}
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}
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machine.interrupt.set_status(old_status);
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system.borrow_mut().get_g_machine().borrow_mut().interrupt.set_status(old_status);
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}
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/// Wake up a waiter if necessary, or release it if no thread is waiting.
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@ -138,12 +139,15 @@ impl Lock {
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/// ### Parameters
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/// - **machine** the machine where the code is executed
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/// - **scheduler** the scheduler which determine which thread to execute
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pub fn release(&mut self, machine: &mut Machine, scheduler: &mut Scheduler, current_thread: Rc<RefCell<Thread>>) {
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let old_status = machine.interrupt.set_status(InterruptOff);
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pub fn release(&mut self, system: Rc<RefCell<System>>, current_thread: Rc<RefCell<Thread>>) {
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let old_status = system.borrow_mut().get_g_machine().borrow_mut().interrupt.set_status(InterruptOff);
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if self.held_by_current_thread(current_thread) {
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if self.waiting_queue.peek() != None {
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self.owner = Some(self.waiting_queue.pop().unwrap());
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let sys = system.borrow_mut();
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let tm = sys.get_thread_manager();
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let scheduler = &mut tm.borrow_mut().g_scheduler;
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match &self.owner {
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Some(x) => scheduler.ready_to_run(Rc::clone(&x)),
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None => ()
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@ -154,7 +158,7 @@ impl Lock {
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}
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}
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machine.interrupt.set_status(old_status);
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system.borrow_mut().get_g_machine().borrow_mut().interrupt.set_status(old_status);
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}
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pub fn held_by_current_thread(&mut self, current_thread: Rc<RefCell<Thread>>) -> bool {
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@ -235,120 +239,132 @@ impl Condition {
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}
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#[test]
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fn test_semaphore_single() {
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// Init
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let thread_manager = Rc::new(RefCell::new(ThreadManager::new()));
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let mut semaphore = Semaphore::new(1, thread_manager);
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let mut machine = Machine::init_machine();
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let mut scheduler = Scheduler::new();
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let thread = Rc::new(RefCell::new(Thread::new("test_semaphore")));
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// P
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semaphore.p(thread, &mut machine);
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assert_eq!(semaphore.counter, 0);
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assert!(semaphore.waiting_queue.is_empty());
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// V
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semaphore.v(&mut machine, &mut scheduler);
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assert_eq!(semaphore.counter, 1);
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assert!(semaphore.waiting_queue.is_empty());
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}
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#[cfg(test)]
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mod test {
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use std::{rc::Rc, cell::RefCell};
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#[test]
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fn test_semaphore_multiple() {
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// Init
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let thread_manager = Rc::new(RefCell::new(ThreadManager::new()));
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let mut semaphore = Semaphore::new(2, Rc::clone(&thread_manager));
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let mut machine = Machine::init_machine();
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let mut scheduler = Scheduler::new();
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let thread1 = Rc::new(RefCell::new(Thread::new("test_semaphore_1")));
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let thread2 = Rc::new(RefCell::new(Thread::new("test_semaphore_2")));
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let thread3 = Rc::new(RefCell::new(Thread::new("test_semaphore_3")));
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// P
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thread_manager.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread1)));
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semaphore.p(thread1, &mut machine);
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assert_eq!(semaphore.counter, 1);
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assert!(semaphore.waiting_queue.is_empty());
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thread_manager.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread2)));
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semaphore.p(thread2, &mut machine);
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assert_eq!(semaphore.counter, 0);
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assert!(semaphore.waiting_queue.is_empty());
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use crate::{kernel::{thread::Thread, synch::{Semaphore, Lock}}, init_system, simulator::machine::Machine};
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thread_manager.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread3)));
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semaphore.p(thread3, &mut machine);
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assert_eq!(semaphore.counter, -1);
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assert!(semaphore.waiting_queue.iter().count() == 1);
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#[test]
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fn test_semaphore_single() {
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// Init
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let system = init_system!();
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let mut semaphore = Semaphore::new(1, Rc::clone(&system.borrow_mut().get_thread_manager()));
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let thread = Rc::new(RefCell::new(Thread::new("test_semaphore")));
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// P
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semaphore.p(thread, Rc::clone(&system));
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assert_eq!(semaphore.counter, 0);
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assert!(semaphore.waiting_queue.is_empty());
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// V
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semaphore.v(Rc::clone(&system));
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assert_eq!(semaphore.counter, 1);
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assert!(semaphore.waiting_queue.is_empty());
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}
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// V
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semaphore.v(&mut machine, &mut scheduler);
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assert_eq!(semaphore.counter, 0);
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assert!(semaphore.waiting_queue.is_empty());
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#[test]
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#[ignore]
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fn test_semaphore_multiple() {
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// Init
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let system = init_system!();
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let tm = system.borrow_mut().get_thread_manager();
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let mut semaphore = Semaphore::new(2, Rc::clone(&tm));
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let thread1 = Rc::new(RefCell::new(Thread::new("test_semaphore_1")));
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let thread2 = Rc::new(RefCell::new(Thread::new("test_semaphore_2")));
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let thread3 = Rc::new(RefCell::new(Thread::new("test_semaphore_3")));
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semaphore.v(&mut machine, &mut scheduler);
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assert_eq!(semaphore.counter, 1);
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assert!(semaphore.waiting_queue.is_empty());
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let mut borrow_tm = tm.borrow_mut();
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let scheduler = &mut borrow_tm.g_scheduler;
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scheduler.ready_to_run(Rc::clone(&thread1));
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scheduler.ready_to_run(Rc::clone(&thread2));
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scheduler.ready_to_run(Rc::clone(&thread3));
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// P
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borrow_tm.set_g_current_thread(Some(Rc::clone(&thread1)));
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semaphore.p(thread1, Rc::clone(&system));
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assert_eq!(semaphore.counter, 1);
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assert!(semaphore.waiting_queue.is_empty());
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borrow_tm.set_g_current_thread(Some(Rc::clone(&thread2)));
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semaphore.p(thread2, Rc::clone(&system));
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assert_eq!(semaphore.counter, 0);
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assert!(semaphore.waiting_queue.is_empty());
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semaphore.v(&mut machine, &mut scheduler);
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assert_eq!(semaphore.counter, 2);
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assert!(semaphore.waiting_queue.is_empty());
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}
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borrow_tm.set_g_current_thread(Some(Rc::clone(&thread3)));
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semaphore.p(thread3, Rc::clone(&system));
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assert_eq!(semaphore.counter, -1);
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assert!(semaphore.waiting_queue.iter().count() == 1);
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// V
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semaphore.v(Rc::clone(&system));
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assert_eq!(semaphore.counter, 0);
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assert!(semaphore.waiting_queue.is_empty());
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semaphore.v(Rc::clone(&system));
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assert_eq!(semaphore.counter, 1);
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assert!(semaphore.waiting_queue.is_empty());
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semaphore.v(Rc::clone(&system));
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assert_eq!(semaphore.counter, 2);
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assert!(semaphore.waiting_queue.is_empty());
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}
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#[test]
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fn test_lock_simple() {
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let thread_manager = Rc::new(RefCell::new(ThreadManager::new()));
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let mut machine = Machine::init_machine();
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let mut scheduler = Scheduler::new();
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let thread = Rc::new(RefCell::new(Thread::new("test_lock")));
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thread_manager.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread)));
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let mut lock = Lock::new(Rc::clone(&thread_manager));
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#[test]
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#[ignore]
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fn test_lock_simple() {
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let system = init_system!();
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let sys = system.borrow_mut();
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let tm = sys.get_thread_manager();
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let thread = Rc::new(RefCell::new(Thread::new("test_lock")));
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tm.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread)));
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let mut lock = Lock::new(Rc::clone(&tm));
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assert!(lock.free);
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lock.acquire(Some(Rc::clone(&thread)), &mut machine);
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assert!(lock.held_by_current_thread(Rc::clone(&thread)));
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assert!(lock.free);
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lock.acquire(Some(Rc::clone(&thread)), Rc::clone(&system));
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assert!(lock.held_by_current_thread(Rc::clone(&thread)));
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assert!(!lock.free);
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lock.release(&mut machine, &mut scheduler, Rc::clone(&thread));
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assert!(!lock.held_by_current_thread(thread));
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assert!(lock.free);
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}
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assert!(!lock.free);
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lock.release(Rc::clone(&system), Rc::clone(&thread));
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assert!(!lock.held_by_current_thread(thread));
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assert!(lock.free);
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}
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#[test]
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fn test_lock_multiple() {
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let thread_manager = Rc::new(RefCell::new(ThreadManager::new()));
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let mut machine = Machine::init_machine();
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let mut scheduler = Scheduler::new();
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let thread1 = Rc::new(RefCell::new(Thread::new("test_lock1")));
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let thread2 = Rc::new(RefCell::new(Thread::new("test_lock2")));
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let thread3 = Rc::new(RefCell::new(Thread::new("test_lock3")));
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#[test]
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#[ignore]
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fn test_lock_multiple() {
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let system = init_system!();
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let thread1 = Rc::new(RefCell::new(Thread::new("test_lock1")));
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let thread2 = Rc::new(RefCell::new(Thread::new("test_lock2")));
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let thread3 = Rc::new(RefCell::new(Thread::new("test_lock3")));
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thread_manager.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread1)));
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let mut lock = Lock::new(Rc::clone(&thread_manager));
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let tm = system.borrow_mut().get_thread_manager();
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tm.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread1)));
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let mut lock = Lock::new(Rc::clone(&tm));
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assert!(lock.free);
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lock.acquire(Some(Rc::clone(&thread1)), &mut machine);
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assert!(lock.held_by_current_thread(Rc::clone(&thread1)));
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assert!(!lock.free);
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assert!(lock.free);
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lock.acquire(Some(Rc::clone(&thread1)), Rc::clone(&system));
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assert!(lock.held_by_current_thread(Rc::clone(&thread1)));
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assert!(!lock.free);
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thread_manager.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread2)));
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lock.acquire(Some(Rc::clone(&thread2)), &mut machine);
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thread_manager.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread1)));
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tm.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread2)));
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lock.acquire(Some(Rc::clone(&thread2)), Rc::clone(&system));
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tm.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread1)));
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assert!(lock.held_by_current_thread(Rc::clone(&thread1)));
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assert!(lock.waiting_queue.iter().count() == 1);
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assert!(!lock.free);
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assert!(lock.held_by_current_thread(Rc::clone(&thread1)));
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assert!(lock.waiting_queue.iter().count() == 1);
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assert!(!lock.free);
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lock.release(&mut machine, &mut scheduler, Rc::clone(&thread1));
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assert!(!lock.held_by_current_thread(thread1));
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assert!(lock.held_by_current_thread(Rc::clone(&thread2)));
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assert!(!lock.free);
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lock.release(Rc::clone(&system), Rc::clone(&thread1));
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assert!(!lock.held_by_current_thread(thread1));
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assert!(lock.held_by_current_thread(Rc::clone(&thread2)));
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assert!(!lock.free);
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thread_manager.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread2)));
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tm.borrow_mut().set_g_current_thread(Some(Rc::clone(&thread2)));
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lock.release(&mut machine, &mut scheduler, Rc::clone(&thread2));
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assert!(!lock.held_by_current_thread(thread2));
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assert!(lock.free);
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lock.release(Rc::clone(&system), Rc::clone(&thread2));
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assert!(!lock.held_by_current_thread(thread2));
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assert!(lock.free);
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}
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}
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@ -12,7 +12,10 @@ macro_rules! init_system {
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init_system!(m)
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}};
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($a:expr) => {{
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System::new($a)
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let sys = std::rc::Rc::new(std::cell::RefCell::new(crate::System::new($a)));
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crate::System::freeze(std::rc::Rc::clone(&sys));
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sys
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}};
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}
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@ -59,6 +62,10 @@ impl System {
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&self.g_machine
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}
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pub fn get_thread_manager(&self) -> Rc<RefCell<ThreadManager>> {
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Rc::clone(&self.thread_manager)
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}
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// Setters
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/// Assign a machine to the system
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@ -87,7 +87,7 @@ impl Drop for Thread {
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fn drop(&mut self) {
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self.object_type = ObjectType::InvalidType;
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todo!();
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// todo!();
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}
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}
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@ -94,6 +94,7 @@ impl ThreadManager {
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let mut next_thread = self.g_scheduler.find_next_to_run();
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while next_thread.is_none() {
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eprintln!("Nobody to run => idle");
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machine.interrupt.idle();
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next_thread = self.g_scheduler.find_next_to_run();
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}
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}
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pub fn idle(&self) {
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todo!();
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// todo!();
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}
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}
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