2017-01-24 21:19:52 +01:00
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#pragma once
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#include "types.h"
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#include "Atomic.h"
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// Lightweight semaphore helper class
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class semaphore_base
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{
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// Semaphore value (shifted; negative values imply 0 with waiters, LSB is used to ping-pong signals between threads)
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atomic_t<s32> m_value;
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void imp_wait(bool lsb);
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void imp_post(s32 _old);
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2016-09-07 00:38:52 +02:00
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friend class semaphore_lock;
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2017-01-24 21:19:52 +01:00
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protected:
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explicit constexpr semaphore_base(s32 value)
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: m_value{value}
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{
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}
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void wait()
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{
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// Unconditional decrement
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if (UNLIKELY(m_value.sub_fetch(1 << 1) < 0))
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{
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imp_wait(false);
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}
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}
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bool try_wait();
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void post(s32 _max)
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{
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// Unconditional increment
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const s32 value = m_value.fetch_add(1 << 1);
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if (UNLIKELY(value < 0 || value >= _max))
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{
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imp_post(value & ~1);
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}
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}
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bool try_post(s32 _max);
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public:
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// Get current semaphore value
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s32 get() const
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{
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// Load value
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const s32 value = m_value;
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// Return only positive value
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return value < 0 ? 0 : value >> 1;
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}
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};
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// Lightweight semaphore template (default arguments define binary semaphore and Def == Max)
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template <s32 Max = 1, s32 Def = Max>
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class semaphore final : public semaphore_base
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{
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static_assert(Max >= 0 && Max < (1 << 30), "semaphore<>: Max is out of bounds");
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static_assert(Def >= 0 && Def < (1 << 30), "semaphore<>: Def is out of bounds");
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static_assert(Def <= Max, "semaphore<>: Def is too big");
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using base = semaphore_base;
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public:
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// Default constructor (recommended)
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constexpr semaphore()
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: base{Def << 1}
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{
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}
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// Explicit value constructor (not recommended)
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explicit constexpr semaphore(s32 value)
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: base{value << 1}
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{
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}
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// Obtain a semaphore
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void wait()
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{
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return base::wait();
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}
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// Try to obtain a semaphore
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explicit_bool_t try_wait()
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{
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return base::try_wait();
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}
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// Return a semaphore
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void post()
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{
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return base::post(Max << 1);
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}
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// Try to return a semaphore
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explicit_bool_t try_post()
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{
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return base::try_post(Max << 1);
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}
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// Get max semaphore value
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static constexpr s32 size()
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{
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return Max;
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}
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};
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2016-09-07 00:38:52 +02:00
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class semaphore_lock
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{
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semaphore_base& m_base;
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void lock()
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{
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m_base.wait();
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}
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void unlock()
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{
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m_base.post(INT32_MAX);
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}
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friend class cond_variable;
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public:
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explicit semaphore_lock(const semaphore_lock&) = delete;
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semaphore_lock(semaphore_base& sema)
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: m_base(sema)
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{
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lock();
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}
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~semaphore_lock()
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{
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unlock();
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}
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};
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