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svc: SignalProcessWideKey should apply to all cores.
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parent
6a890023e9
commit
1c36f2a798
@ -635,53 +635,60 @@ static ResultCode SignalProcessWideKey(VAddr condition_variable_addr, s32 target
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condition_variable_addr, target);
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u32 processed = 0;
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auto& thread_list = Core::System::GetInstance().CurrentScheduler().GetThreadList();
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for (auto& thread : thread_list) {
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if (thread->condvar_wait_address != condition_variable_addr)
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continue;
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auto signal_process_wide_key = [&](size_t core_index) {
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const auto& scheduler = Core::System::GetInstance().Scheduler(core_index);
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for (auto& thread : scheduler->GetThreadList()) {
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if (thread->condvar_wait_address != condition_variable_addr)
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continue;
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// Only process up to 'target' threads, unless 'target' is -1, in which case process
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// them all.
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if (target != -1 && processed >= target)
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break;
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// Only process up to 'target' threads, unless 'target' is -1, in which case process
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// them all.
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if (target != -1 && processed >= target)
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break;
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// If the mutex is not yet acquired, acquire it.
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u32 mutex_val = Memory::Read32(thread->mutex_wait_address);
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// If the mutex is not yet acquired, acquire it.
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u32 mutex_val = Memory::Read32(thread->mutex_wait_address);
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if (mutex_val == 0) {
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// We were able to acquire the mutex, resume this thread.
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Memory::Write32(thread->mutex_wait_address, thread->wait_handle);
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ASSERT(thread->status == THREADSTATUS_WAIT_MUTEX);
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thread->ResumeFromWait();
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if (mutex_val == 0) {
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// We were able to acquire the mutex, resume this thread.
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Memory::Write32(thread->mutex_wait_address, thread->wait_handle);
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ASSERT(thread->status == THREADSTATUS_WAIT_MUTEX);
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thread->ResumeFromWait();
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auto lock_owner = thread->lock_owner;
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if (lock_owner)
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lock_owner->RemoveMutexWaiter(thread);
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auto lock_owner = thread->lock_owner;
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if (lock_owner)
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lock_owner->RemoveMutexWaiter(thread);
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thread->lock_owner = nullptr;
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thread->mutex_wait_address = 0;
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thread->condvar_wait_address = 0;
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thread->wait_handle = 0;
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} else {
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// Couldn't acquire the mutex, block the thread.
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Handle owner_handle = static_cast<Handle>(mutex_val & Mutex::MutexOwnerMask);
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auto owner = g_handle_table.Get<Thread>(owner_handle);
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ASSERT(owner);
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ASSERT(thread->status != THREADSTATUS_RUNNING);
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thread->status = THREADSTATUS_WAIT_MUTEX;
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thread->wakeup_callback = nullptr;
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thread->lock_owner = nullptr;
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thread->mutex_wait_address = 0;
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thread->condvar_wait_address = 0;
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thread->wait_handle = 0;
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} else {
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// Couldn't acquire the mutex, block the thread.
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Handle owner_handle = static_cast<Handle>(mutex_val & Mutex::MutexOwnerMask);
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auto owner = g_handle_table.Get<Thread>(owner_handle);
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ASSERT(owner);
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ASSERT(thread->status != THREADSTATUS_RUNNING);
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thread->status = THREADSTATUS_WAIT_MUTEX;
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thread->wakeup_callback = nullptr;
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// Signal that the mutex now has a waiting thread.
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Memory::Write32(thread->mutex_wait_address, mutex_val | Mutex::MutexHasWaitersFlag);
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// Signal that the mutex now has a waiting thread.
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Memory::Write32(thread->mutex_wait_address, mutex_val | Mutex::MutexHasWaitersFlag);
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owner->AddMutexWaiter(thread);
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owner->AddMutexWaiter(thread);
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Core::System::GetInstance().PrepareReschedule();
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Core::System::GetInstance().PrepareReschedule();
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}
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++processed;
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}
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};
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++processed;
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}
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signal_process_wide_key(0);
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signal_process_wide_key(1);
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signal_process_wide_key(2);
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signal_process_wide_key(3);
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return RESULT_SUCCESS;
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}
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