hle: kernel: KThread: Decrease DummyThread priority to ensure it is never scheduled.
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@ -741,6 +741,7 @@ void KScheduler::ScheduleImpl() {
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// We never want to schedule a dummy thread, as these are only used by host threads for locking.
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if (next_thread->GetThreadType() == ThreadType::Dummy) {
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ASSERT_MSG(false, "Dummy threads should never be scheduled!");
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next_thread = idle_thread;
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}
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@ -106,7 +106,7 @@ KThread::~KThread() = default;
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ResultCode KThread::Initialize(KThreadFunction func, uintptr_t arg, VAddr user_stack_top, s32 prio,
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s32 virt_core, KProcess* owner, ThreadType type) {
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// Assert parameters are valid.
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ASSERT((type == ThreadType::Main) ||
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ASSERT((type == ThreadType::Main) || (type == ThreadType::Dummy) ||
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(Svc::HighestThreadPriority <= prio && prio <= Svc::LowestThreadPriority));
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ASSERT((owner != nullptr) || (type != ThreadType::User));
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ASSERT(0 <= virt_core && virt_core < static_cast<s32>(Common::BitSize<u64>()));
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@ -262,7 +262,7 @@ ResultCode KThread::InitializeThread(KThread* thread, KThreadFunction func, uint
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}
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ResultCode KThread::InitializeDummyThread(KThread* thread) {
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return thread->Initialize({}, {}, {}, DefaultThreadPriority, 3, {}, ThreadType::Dummy);
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return thread->Initialize({}, {}, {}, DummyThreadPriority, 3, {}, ThreadType::Dummy);
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}
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ResultCode KThread::InitializeIdleThread(Core::System& system, KThread* thread, s32 virt_core) {
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@ -1099,6 +1099,7 @@ void KThread::EndWait(ResultCode wait_result_) {
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// Dummy threads are just used by host threads for locking, and will never have a wait_queue.
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if (thread_type == ThreadType::Dummy) {
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ASSERT_MSG(false, "Dummy threads should never call EndWait!");
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return;
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}
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@ -112,6 +112,7 @@ private:
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public:
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static constexpr s32 DefaultThreadPriority = 44;
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static constexpr s32 IdleThreadPriority = Svc::LowestThreadPriority + 1;
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static constexpr s32 DummyThreadPriority = Svc::LowestThreadPriority + 2;
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explicit KThread(KernelCore& kernel_);
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~KThread() override;
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