Kernel: Add Semaphore to block threads
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@ -57,6 +57,7 @@ kernel/PIT.o \
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kernel/Process.o \
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kernel/RTC.o \
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kernel/Scheduler.o \
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kernel/Semaphore.o \
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kernel/Serial.o \
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kernel/Shell.o \
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kernel/SpinLock.o \
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@ -4,6 +4,7 @@
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#include <kernel/Input/KeyEvent.h>
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#include <kernel/Input/PS2Controller.h>
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#include <kernel/Input/PS2Keymap.h>
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#include <kernel/Semaphore.h>
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namespace Kernel::Input
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{
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@ -60,6 +61,8 @@ namespace Kernel::Input
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State m_state { State::Normal };
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Semaphore m_semaphore;
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BAN::String m_name;
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public:
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@ -2,6 +2,7 @@
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#include <BAN/LinkedList.h>
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#include <BAN/Memory.h>
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#include <kernel/Semaphore.h>
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#include <kernel/Thread.h>
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namespace Kernel
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@ -21,6 +22,9 @@ namespace Kernel
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void set_current_thread_sleeping(uint64_t);
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[[noreturn]] void set_current_thread_done();
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void block_current_thread(Semaphore*);
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void unblock_threads(Semaphore*);
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BAN::RefPtr<Thread> current_thread();
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private:
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@ -47,9 +51,18 @@ namespace Kernel
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uint64_t wake_time;
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};
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struct BlockingThread
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{
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BlockingThread(const BAN::RefPtr<Thread>& thread, Semaphore* semaphore) : thread(thread), semaphore(semaphore) {}
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BAN::RefPtr<Thread> thread;
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Semaphore* semaphore;
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uint8_t padding[sizeof(uint64_t) - sizeof(Semaphore*)];
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};
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BAN::RefPtr<Thread> m_idle_thread;
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BAN::LinkedList<ActiveThread> m_active_threads;
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BAN::LinkedList<SleepingThread> m_sleeping_threads;
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BAN::LinkedList<BlockingThread> m_blocking_threads;
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BAN::LinkedList<ActiveThread>::iterator m_current_thread;
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@ -0,0 +1,24 @@
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#pragma once
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#include <kernel/SpinLock.h>
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namespace Kernel
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{
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class Semaphore
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{
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public:
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void block();
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void unblock();
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bool is_blocked() const { return m_blocked; }
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private:
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void set_blocked(bool blocked) { m_blocked = blocked; }
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private:
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bool m_blocked { false };
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friend class Scheduler;
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};
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}
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@ -211,8 +211,9 @@ namespace Kernel::Input
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m_event_queue.pop();
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}
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m_event_queue.push(event);
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}
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m_semaphore.unblock();
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}
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void PS2Keyboard::update_leds()
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{
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@ -231,14 +232,20 @@ namespace Kernel::Input
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if (size < sizeof(KeyEvent))
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return BAN::Error::from_errno(ENOBUFS);
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while (m_event_queue.empty())
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PIT::sleep(1);
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while (true)
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{
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if (m_event_queue.empty())
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m_semaphore.block();
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CriticalScope _;
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if (m_event_queue.empty())
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continue;
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*(KeyEvent*)buffer = m_event_queue.front();
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m_event_queue.pop();
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return sizeof(KeyEvent);
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}
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}
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}
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@ -211,4 +211,58 @@ namespace Kernel
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ASSERT_NOT_REACHED();
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}
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#pragma GCC push_options
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#pragma GCC optimize("O0")
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void Scheduler::block_current_thread(Semaphore* semaphore)
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{
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VERIFY_STI();
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DISABLE_INTERRUPTS();
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ASSERT(m_current_thread);
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auto blocking = m_current_thread->thread;
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if (save_current_thread())
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{
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ENABLE_INTERRUPTS();
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return;
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}
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remove_and_advance_current_thread();
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// This should work as we released enough memory from active thread
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static_assert(sizeof(ActiveThread) == sizeof(BlockingThread));
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MUST(m_blocking_threads.emplace_back(blocking, semaphore));
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blocking.clear();
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semaphore->m_blocked = true;
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execute_current_thread();
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ASSERT_NOT_REACHED();
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}
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#pragma GCC pop_options
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void Scheduler::unblock_threads(Semaphore* semaphore)
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{
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Kernel::CriticalScope critical;
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for (auto it = m_blocking_threads.begin(); it != m_blocking_threads.end();)
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{
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if (it->semaphore == semaphore)
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{
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auto thread = it->thread;
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it = m_blocking_threads.remove(it);
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// This should work as we released enough memory from active thread
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static_assert(sizeof(ActiveThread) == sizeof(BlockingThread));
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MUST(m_active_threads.emplace_back(thread));
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}
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else
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{
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it++;
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}
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}
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semaphore->m_blocked = false;
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}
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}
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@ -0,0 +1,20 @@
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#include <kernel/LockGuard.h>
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#include <kernel/Scheduler.h>
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#include <kernel/Semaphore.h>
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namespace Kernel
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{
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void Semaphore::block()
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{
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Scheduler::get().block_current_thread(this);
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}
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void Semaphore::unblock()
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{
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if (!m_blocked)
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return;
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Scheduler::get().unblock_threads(this);
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}
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}
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