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GSP_GPU: move used_thread_ids into the class
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@ -72,7 +72,7 @@ public:
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protected:
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/// Creates the storage for the session data of the service.
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virtual std::unique_ptr<SessionDataBase> MakeSessionData() const = 0;
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virtual std::unique_ptr<SessionDataBase> MakeSessionData() = 0;
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/// Returns the session data associated with the server session.
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template <typename T>
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@ -50,12 +50,6 @@ constexpr ResultCode ERR_REGS_INVALID_SIZE(ErrorDescription::InvalidSize, ErrorM
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ErrorSummary::InvalidArgument,
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ErrorLevel::Usage); // 0xE0E02BEC
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/// Maximum number of threads that can be registered at the same time in the GSP module.
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constexpr u32 MaxGSPThreads = 4;
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/// Thread ids currently in use by the sessions connected to the GSPGPU service.
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static std::array<bool, MaxGSPThreads> used_thread_ids = {false, false, false, false};
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static PAddr VirtualToPhysicalAddress(VAddr addr) {
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if (addr == 0) {
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return 0;
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@ -79,7 +73,7 @@ static PAddr VirtualToPhysicalAddress(VAddr addr) {
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return addr | 0x80000000;
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}
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static u32 GetUnusedThreadId() {
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u32 GSP_GPU::GetUnusedThreadId() {
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for (u32 id = 0; id < MaxGSPThreads; ++id) {
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if (!used_thread_ids[id])
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return id;
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@ -821,17 +815,25 @@ GSP_GPU::GSP_GPU(Core::System& system) : ServiceFramework("gsp::Gpu", 2), system
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first_initialization = true;
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};
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std::unique_ptr<Kernel::SessionRequestHandler::SessionDataBase> GSP_GPU::MakeSessionData() {
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return std::make_unique<SessionData>(this);
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}
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SessionData::SessionData() {
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UNREACHABLE();
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}
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SessionData::SessionData(GSP_GPU* gsp) : gsp(gsp) {
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// Assign a new thread id to this session when it connects. Note: In the real GSP service this
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// is done through a real thread (svcCreateThread) but we have to simulate it since our HLE
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// services don't have threads.
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thread_id = GetUnusedThreadId();
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used_thread_ids[thread_id] = true;
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thread_id = gsp->GetUnusedThreadId();
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gsp->used_thread_ids[thread_id] = true;
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}
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SessionData::~SessionData() {
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// Free the thread id slot so that other sessions can use it.
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used_thread_ids[thread_id] = false;
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gsp->used_thread_ids[thread_id] = false;
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}
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} // namespace Service::GSP
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@ -183,10 +183,15 @@ struct CommandBuffer {
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};
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static_assert(sizeof(CommandBuffer) == 0x200, "CommandBuffer struct has incorrect size");
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class GSP_GPU;
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struct SessionData : public Kernel::SessionRequestHandler::SessionDataBase {
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SessionData();
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SessionData(GSP_GPU* gsp);
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~SessionData();
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GSP_GPU* gsp;
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/// Event triggered when GSP interrupt has been signalled
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std::shared_ptr<Kernel::Event> interrupt_event;
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/// Thread index into interrupt relay queue
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@ -404,6 +409,10 @@ private:
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/// Returns the session data for the specified registered thread id, or nullptr if not found.
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SessionData* FindRegisteredThreadData(u32 thread_id);
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u32 GetUnusedThreadId();
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std::unique_ptr<Kernel::SessionRequestHandler::SessionDataBase> MakeSessionData() override;
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Core::System& system;
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/// GSP shared memory
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@ -413,6 +422,14 @@ private:
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int active_thread_id = -1;
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bool first_initialization = true;
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/// Maximum number of threads that can be registered at the same time in the GSP module.
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static constexpr u32 MaxGSPThreads = 4;
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/// Thread ids currently in use by the sessions connected to the GSPGPU service.
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std::array<bool, MaxGSPThreads> used_thread_ids = {false, false, false, false};
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friend class SessionData;
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};
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ResultCode SetBufferSwap(u32 screen_id, const FrameBufferInfo& info);
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@ -156,7 +156,7 @@ protected:
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RegisterHandlersBase(functions, n);
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}
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std::unique_ptr<SessionDataBase> MakeSessionData() const override {
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std::unique_ptr<SessionDataBase> MakeSessionData() override {
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return std::make_unique<SessionData>();
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}
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