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#pragma once
#ifdef __serenity__
#include <AK/Assertions.h>
#include <AK/Types.h>
#include <AK/Atomic.h>
#include <unistd.h>
namespace LibThread {
class Lock {
public:
Lock() {}
~Lock() {}
void lock();
void unlock();
private:
AK::Atomic<bool> m_lock { false };
u32 m_level { 0 };
int m_holder { -1 };
};
class Locker {
public:
[[gnu::always_inline]] inline explicit Locker(Lock& l)
: m_lock(l)
{
lock();
}
[[gnu::always_inline]] inline ~Locker() { unlock(); }
[[gnu::always_inline]] inline void unlock() { m_lock.unlock(); }
[[gnu::always_inline]] inline void lock() { m_lock.lock(); }
private:
Lock& m_lock;
};
[[gnu::always_inline]] inline void Lock::lock()
{
int tid = gettid();
for (;;) {
bool expected = false;
if (m_lock.compare_exchange_strong(expected, true, AK::memory_order_acq_rel)) {
if (m_holder == -1 || m_holder == tid) {
m_holder = tid;
++m_level;
m_lock.store(false, AK::memory_order_release);
return;
}
m_lock.store(false, AK::memory_order_release);
}
donate(m_holder);
}
}
inline void Lock::unlock()
{
for (;;) {
bool expected = false;
if (m_lock.compare_exchange_strong(expected, true, AK::memory_order_acq_rel)) {
ASSERT(m_holder == gettid());
ASSERT(m_level);
--m_level;
if (m_level) {
m_lock.store(false, AK::memory_order_release);
return;
}
m_holder = -1;
m_lock.store(false, AK::memory_order_release);
return;
}
donate(m_holder);
}
}
#define LOCKER(lock) LibThread::Locker locker(lock)
template<typename T>
class Lockable {
public:
Lockable() {}
Lockable(T&& resource)
: m_resource(move(resource))
{
}
Lock& lock() { return m_lock; }
T& resource() { return m_resource; }
T lock_and_copy()
{
LOCKER(m_lock);
return m_resource;
}
private:
T m_resource;
Lock m_lock;
};
}
#else
namespace LibThread {
class Lock {
public:
Lock() { }
~Lock() { }
};
}
#define LOCKER(x)
#endif
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