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130 lines
2.1 KiB
C++
130 lines
2.1 KiB
C++
#pragma once
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#include "types.h"
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#include "Atomic.h"
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#include <shared_mutex>
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// Lightweight condition variable
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class cond_variable
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{
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// Internal waiter counter
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atomic_t<u32> m_value{0};
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friend class notifier;
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protected:
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// Internal waiting function
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bool imp_wait(u32 _old, u64 _timeout) noexcept;
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// Try to notify up to _count threads
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void imp_wake(u32 _count) noexcept;
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public:
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constexpr cond_variable() = default;
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// Intrusive wait algorithm for lockable objects
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template <typename T>
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bool wait(T& object, u64 usec_timeout = -1)
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{
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const u32 _old = m_value.fetch_add(1); // Increment waiter counter
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object.unlock();
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const bool res = imp_wait(_old, usec_timeout);
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object.lock();
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return res;
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}
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// Unlock all specified objects but don't lock them again
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template <typename... Locks>
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bool wait_unlock(u64 usec_timeout, Locks&&... locks)
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{
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const u32 _old = m_value.fetch_add(1); // Increment waiter counter
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(..., std::forward<Locks>(locks).unlock());
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return imp_wait(_old, usec_timeout);
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}
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// Wake one thread
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void notify_one() noexcept
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{
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if (m_value)
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{
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imp_wake(1);
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}
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}
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// Wake all threads
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void notify_all() noexcept
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{
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if (m_value)
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{
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imp_wake(-1);
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}
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}
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static constexpr u64 max_timeout = u64{UINT32_MAX} / 1000 * 1000000;
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};
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// Pair of a fake shared mutex (only limited shared locking) and a condition variable
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class notifier
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{
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atomic_t<u32> m_counter{0};
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cond_variable m_cond;
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bool imp_try_lock(u32 count);
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void imp_unlock(u32 count);
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u32 imp_notify(u32 count);
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public:
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constexpr notifier() = default;
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bool try_lock()
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{
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return imp_try_lock(max_readers);
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}
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void unlock()
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{
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imp_unlock(max_readers);
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}
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bool try_lock_shared()
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{
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return imp_try_lock(1);
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}
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void unlock_shared()
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{
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imp_unlock(1);
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}
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bool wait(u64 usec_timeout = -1);
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void notify_all()
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{
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if (m_counter)
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{
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imp_notify(-1);
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}
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// Notify after imaginary "exclusive" lock+unlock
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m_cond.notify_all();
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}
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void notify_one()
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{
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// TODO
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if (m_counter)
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{
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if (imp_notify(1))
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{
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return;
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}
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}
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m_cond.notify_one();
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}
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static constexpr u32 max_readers = 0x7f;
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};
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