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Core/Memory: Add TLS support for creating up to 300 threads
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@ -74,6 +74,9 @@ public:
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/// The id of this process
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/// The id of this process
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u32 process_id = next_process_id++;
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u32 process_id = next_process_id++;
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/// Bitmask of the used TLS slots
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std::bitset<300> used_tls_slots;
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/**
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/**
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* Parses a list of kernel capability descriptors (as found in the ExHeader) and applies them
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* Parses a list of kernel capability descriptors (as found in the ExHeader) and applies them
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* to this process.
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* to this process.
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@ -107,6 +107,8 @@ void Thread::Stop() {
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for (auto& wait_object : wait_objects) {
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for (auto& wait_object : wait_objects) {
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wait_object->RemoveWaitingThread(this);
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wait_object->RemoveWaitingThread(this);
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}
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}
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Kernel::g_current_process->used_tls_slots[tls_index] = false;
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}
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}
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Thread* ArbitrateHighestPriorityThread(u32 address) {
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Thread* ArbitrateHighestPriorityThread(u32 address) {
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@ -404,12 +406,19 @@ ResultVal<SharedPtr<Thread>> Thread::Create(std::string name, VAddr entry_point,
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thread->name = std::move(name);
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thread->name = std::move(name);
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thread->callback_handle = wakeup_callback_handle_table.Create(thread).MoveFrom();
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thread->callback_handle = wakeup_callback_handle_table.Create(thread).MoveFrom();
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thread->owner_process = g_current_process;
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thread->owner_process = g_current_process;
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thread->tls_index = -1;
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VAddr tls_address = Memory::TLS_AREA_VADDR + (thread->thread_id - 1) * 0x200;
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// Find the next available TLS index, and mark it as used
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auto& used_tls_slots = Kernel::g_current_process->used_tls_slots;
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for (unsigned int i = 0; i < used_tls_slots.size(); ++i) {
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if (used_tls_slots[i] == false) {
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thread->tls_index = i;
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used_tls_slots[i] = true;
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break;
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}
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}
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ASSERT_MSG(tls_address < Memory::TLS_AREA_VADDR_END, "Too many threads");
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ASSERT_MSG(thread->tls_index != -1, "Out of TLS space");
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thread->tls_address = tls_address;
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// TODO(peachum): move to ScheduleThread() when scheduler is added so selected core is used
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// TODO(peachum): move to ScheduleThread() when scheduler is added so selected core is used
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// to initialize the context
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// to initialize the context
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@ -505,7 +514,7 @@ void Thread::SetWaitSynchronizationOutput(s32 output) {
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}
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}
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VAddr Thread::GetTLSAddress() const {
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VAddr Thread::GetTLSAddress() const {
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return tls_address;
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return Memory::TLS_AREA_VADDR + tls_index * 0x200;
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}
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}
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////////////////////////////////////////////////////////////////////////////////////////////////////
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////////////////////////////////////////////////////////////////////////////////////////////////////
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@ -157,7 +157,7 @@ public:
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s32 processor_id;
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s32 processor_id;
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VAddr tls_address; ///< Address of the Thread Local Storage of the thread
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s32 tls_index; ///< Index of the Thread Local Storage of the thread
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/// Mutexes currently held by this thread, which will be released when it exits.
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/// Mutexes currently held by this thread, which will be released when it exits.
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boost::container::flat_set<SharedPtr<Mutex>> held_mutexes;
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boost::container::flat_set<SharedPtr<Mutex>> held_mutexes;
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@ -94,10 +94,12 @@ enum : VAddr {
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SHARED_PAGE_SIZE = 0x00001000,
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SHARED_PAGE_SIZE = 0x00001000,
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SHARED_PAGE_VADDR_END = SHARED_PAGE_VADDR + SHARED_PAGE_SIZE,
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SHARED_PAGE_VADDR_END = SHARED_PAGE_VADDR + SHARED_PAGE_SIZE,
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// TODO(yuriks): The exact location and size of this area is uncomfirmed.
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// TODO(yuriks): The size of this area is dynamic, the kernel grows
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// it as more and more threads are created. For now we'll just use a
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// hardcoded value.
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/// Area where TLS (Thread-Local Storage) buffers are allocated.
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/// Area where TLS (Thread-Local Storage) buffers are allocated.
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TLS_AREA_VADDR = 0x1FFA0000,
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TLS_AREA_VADDR = 0x1FF82000,
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TLS_AREA_SIZE = 0x00002000, // Each TLS buffer is 0x200 bytes, allows for 16 threads
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TLS_AREA_SIZE = 0x00030000, // Each TLS buffer is 0x200 bytes, allows for 300 threads
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TLS_AREA_VADDR_END = TLS_AREA_VADDR + TLS_AREA_SIZE,
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TLS_AREA_VADDR_END = TLS_AREA_VADDR + TLS_AREA_SIZE,
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};
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};
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